shithub: leaf

Download patch

ref: 5dc1c25ada0573ffc2edaa67994ef69a68ee7aad
parent: cf5c3f2742c62f36ee80cae80d74e2f5114aff2c
author: Matthew Wang <mjw7@princeton.edu>
date: Thu May 28 05:36:53 EDT 2020

fixing file organization

diff: cannot open a/LEAF/Externals//null: file does not exist: 'a/LEAF/Externals//null' diff: cannot open a/LEAF/Inc//null: file does not exist: 'a/LEAF/Inc//null' diff: cannot open a/LEAF/Src//null: file does not exist: 'a/LEAF/Src//null' diff: cannot open a/LEAF//null: file does not exist: 'a/LEAF//null'
binary files a/.DS_Store /dev/null differ
binary files a/LEAF/.DS_Store /dev/null differ
--- a/LEAF/.gitignore
+++ /dev/null
@@ -1,11 +1,0 @@
-*.DS_Store
-*.app
-*.a
-*.appex
-*.vst
-*.vst3
-*.component
-*.xcuserstate
-*.zip
-*.swp
-*/Builds
binary files a/LEAF/Externals/.DS_Store /dev/null differ
--- a/LEAF/Externals/d_fft_mayer.c
+++ /dev/null
@@ -1,423 +1,0 @@
-/*
-** FFT and FHT routines
-**  Copyright 1988, 1993; Ron Mayer
-**  
-**  mayer_fht(fz,n);
-**      Does a hartley transform of "n" points in the array "fz".
-**  mayer_fft(n,real,imag)
-**      Does a fourier transform of "n" points of the "real" and
-**      "imag" arrays.
-**  mayer_ifft(n,real,imag)
-**      Does an inverse fourier transform of "n" points of the "real"
-**      and "imag" arrays.
-**  mayer_realfft(n,real)
-**      Does a real-valued fourier transform of "n" points of the
-**      "real" array.  The real part of the transform ends
-**      up in the first half of the array and the imaginary part of the
-**      transform ends up in the second half of the array.
-**  mayer_realifft(n,real)
-**      The inverse of the realfft() routine above.
-**      
-**      
-** NOTE: This routine uses at least 2 patented algorithms, and may be
-**       under the restrictions of a bunch of different organizations.
-**       Although I wrote it completely myself, it is kind of a derivative
-**       of a routine I once authored and released under the GPL, so it
-**       may fall under the free software foundation's restrictions;
-**       it was worked on as a Stanford Univ project, so they claim
-**       some rights to it; it was further optimized at work here, so
-**       I think this company claims parts of it.  The patents are
-**       held by R. Bracewell (the FHT algorithm) and O. Buneman (the
-**       trig generator), both at Stanford Univ.
-**       If it were up to me, I'd say go do whatever you want with it;
-**       but it would be polite to give credit to the following people
-**       if you use this anywhere:
-**           Euler     - probable inventor of the fourier transform.
-**           Gauss     - probable inventor of the FFT.
-**           Hartley   - probable inventor of the hartley transform.
-**           Buneman   - for a really cool trig generator
-**           Mayer(me) - for authoring this particular version and
-**                       including all the optimizations in one package.
-**       Thanks,
-**       Ron Mayer; mayer@acuson.com
-**
-*/
-
-/* This is a slightly modified version of Mayer's contribution; write
-* msp@ucsd.edu for the original code.  Kudos to Mayer for a fine piece
-* of work.  -msp
-*/
-
-/* These pragmas are only used for MSVC, not MinGW or Cygwin <hans@at.or.at> */
-#ifdef _MSC_VER
-#pragma warning( disable : 4305 )  /* uncast const double to float */
-#pragma warning( disable : 4244 )  /* uncast double to float */
-#pragma warning( disable : 4101 )  /* unused local variables */
-#endif
-
-/* the following is needed only to declare pd_fft() as exportable in MSW */
-#define t_sample float
-
-#define REAL t_sample
-#define GOOD_TRIG
-
-#ifdef GOOD_TRIG
-#else
-#define FAST_TRIG
-#endif
-
-#if defined(GOOD_TRIG)
-#define FHT_SWAP(a,b,t) {(t)=(a);(a)=(b);(b)=(t);}
-#define TRIG_VARS                                                \
-      int t_lam=0;
-#define TRIG_INIT(k,c,s)                                         \
-     {                                                           \
-      int i;                                                     \
-      for (i=2 ; i<=k ; i++)                                     \
-          {coswrk[i]=costab[i];sinwrk[i]=sintab[i];}             \
-      t_lam = 0;                                                 \
-      c = 1;                                                     \
-      s = 0;                                                     \
-     }
-#define TRIG_NEXT(k,c,s)                                         \
-     {                                                           \
-         int i,j;                                                \
-         (t_lam)++;                                              \
-         for (i=0 ; !((1<<i)&t_lam) ; i++);                      \
-         i = k-i;                                                \
-         s = sinwrk[i];                                          \
-         c = coswrk[i];                                          \
-         if (i>1)                                                \
-            {                                                    \
-             for (j=k-i+2 ; (1<<j)&t_lam ; j++);                 \
-             j         = k - j;                                  \
-             sinwrk[i] = halsec[i] * (sinwrk[i-1] + sinwrk[j]);  \
-             coswrk[i] = halsec[i] * (coswrk[i-1] + coswrk[j]);  \
-            }                                                    \
-     }
-#define TRIG_RESET(k,c,s)
-#endif
-
-#if defined(FAST_TRIG)
-#define TRIG_VARS                                        \
-      REAL t_c,t_s;
-#define TRIG_INIT(k,c,s)                                 \
-    {                                                    \
-     t_c  = costab[k];                                   \
-     t_s  = sintab[k];                                   \
-     c    = 1;                                           \
-     s    = 0;                                           \
-    }
-#define TRIG_NEXT(k,c,s)                                 \
-    {                                                    \
-     REAL t = c;                                         \
-     c   = t*t_c - s*t_s;                                \
-     s   = t*t_s + s*t_c;                                \
-    }
-#define TRIG_RESET(k,c,s)
-#endif
-
-static REAL halsec[20]=
-    {
-     0,
-     0,
-     .54119610014619698439972320536638942006107206337801,
-     .50979557910415916894193980398784391368261849190893,
-     .50241928618815570551167011928012092247859337193963,
-     .50060299823519630134550410676638239611758632599591,
-     .50015063602065098821477101271097658495974913010340,
-     .50003765191554772296778139077905492847503165398345,
-     .50000941253588775676512870469186533538523133757983,
-     .50000235310628608051401267171204408939326297376426,
-     .50000058827484117879868526730916804925780637276181,
-     .50000014706860214875463798283871198206179118093251,
-     .50000003676714377807315864400643020315103490883972,
-     .50000000919178552207366560348853455333939112569380,
-     .50000000229794635411562887767906868558991922348920,
-     .50000000057448658687873302235147272458812263401372
-    };
-static REAL costab[20]=
-    {
-     .00000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768847,
-     .92387953251128675612818318939678828682241662586364,
-     .98078528040323044912618223613423903697393373089333,
-     .99518472667219688624483695310947992157547486872985,
-     .99879545620517239271477160475910069444320361470461,
-     .99969881869620422011576564966617219685006108125772,
-     .99992470183914454092164649119638322435060646880221,
-     .99998117528260114265699043772856771617391725094433,
-     .99999529380957617151158012570011989955298763362218,
-     .99999882345170190992902571017152601904826792288976,
-     .99999970586288221916022821773876567711626389934930,
-     .99999992646571785114473148070738785694820115568892,
-     .99999998161642929380834691540290971450507605124278,
-     .99999999540410731289097193313960614895889430318945,
-     .99999999885102682756267330779455410840053741619428
-    };
-static REAL sintab[20]=
-    {
-     1.0000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768846,
-     .38268343236508977172845998403039886676134456248561,
-     .19509032201612826784828486847702224092769161775195,
-     .09801714032956060199419556388864184586113667316749,
-     .04906767432741801425495497694268265831474536302574,
-     .02454122852291228803173452945928292506546611923944,
-     .01227153828571992607940826195100321214037231959176,
-     .00613588464915447535964023459037258091705788631738,
-     .00306795676296597627014536549091984251894461021344,
-     .00153398018628476561230369715026407907995486457522,
-     .00076699031874270452693856835794857664314091945205,
-     .00038349518757139558907246168118138126339502603495,
-     .00019174759731070330743990956198900093346887403385,
-     .00009587379909597734587051721097647635118706561284,
-     .00004793689960306688454900399049465887274686668768
-    };
-static REAL coswrk[20]=
-    {
-     .00000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768847,
-     .92387953251128675612818318939678828682241662586364,
-     .98078528040323044912618223613423903697393373089333,
-     .99518472667219688624483695310947992157547486872985,
-     .99879545620517239271477160475910069444320361470461,
-     .99969881869620422011576564966617219685006108125772,
-     .99992470183914454092164649119638322435060646880221,
-     .99998117528260114265699043772856771617391725094433,
-     .99999529380957617151158012570011989955298763362218,
-     .99999882345170190992902571017152601904826792288976,
-     .99999970586288221916022821773876567711626389934930,
-     .99999992646571785114473148070738785694820115568892,
-     .99999998161642929380834691540290971450507605124278,
-     .99999999540410731289097193313960614895889430318945,
-     .99999999885102682756267330779455410840053741619428
-    };
-static REAL sinwrk[20]=
-    {
-     1.0000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768846,
-     .38268343236508977172845998403039886676134456248561,
-     .19509032201612826784828486847702224092769161775195,
-     .09801714032956060199419556388864184586113667316749,
-     .04906767432741801425495497694268265831474536302574,
-     .02454122852291228803173452945928292506546611923944,
-     .01227153828571992607940826195100321214037231959176,
-     .00613588464915447535964023459037258091705788631738,
-     .00306795676296597627014536549091984251894461021344,
-     .00153398018628476561230369715026407907995486457522,
-     .00076699031874270452693856835794857664314091945205,
-     .00038349518757139558907246168118138126339502603495,
-     .00019174759731070330743990956198900093346887403385,
-     .00009587379909597734587051721097647635118706561284,
-     .00004793689960306688454900399049465887274686668768
-    };
-
-
-#define SQRT2_2   0.70710678118654752440084436210484
-#define SQRT2   2*0.70710678118654752440084436210484
-
-void mayer_fht(REAL *fz, int n)
-{
-/*  REAL a,b;
-REAL c1,s1,s2,c2,s3,c3,s4,c4;
- REAL f0,g0,f1,g1,f2,g2,f3,g3; */
- int  k,k1,k2,k3,k4,kx;
- REAL *fi,*fn,*gi;
- TRIG_VARS;
-
- for (k1=1,k2=0;k1<n;k1++)
-    {
-     REAL aa;
-     for (k=n>>1; (!((k2^=k)&k)); k>>=1);
-     if (k1>k2)
-        {
-             aa=fz[k1];fz[k1]=fz[k2];fz[k2]=aa;
-        }
-    }
- for ( k=0 ; (1<<k)<n ; k++ );
- k  &= 1;
- if (k==0)
-    {
-         for (fi=fz,fn=fz+n;fi<fn;fi+=4)
-            {
-             REAL f0,f1,f2,f3;
-             f1     = fi[0 ]-fi[1 ];
-             f0     = fi[0 ]+fi[1 ];
-             f3     = fi[2 ]-fi[3 ];
-             f2     = fi[2 ]+fi[3 ];
-             fi[2 ] = (f0-f2);  
-             fi[0 ] = (f0+f2);
-             fi[3 ] = (f1-f3);  
-             fi[1 ] = (f1+f3);
-            }
-    }
- else
-    {
-         for (fi=fz,fn=fz+n,gi=fi+1;fi<fn;fi+=8,gi+=8)
-            {
-             REAL bs1,bc1,bs2,bc2,bs3,bc3,bs4,bc4,
-                bg0,bf0,bf1,bg1,bf2,bg2,bf3,bg3;
-             bc1     = fi[0 ] - gi[0 ];
-             bs1     = fi[0 ] + gi[0 ];
-             bc2     = fi[2 ] - gi[2 ];
-             bs2     = fi[2 ] + gi[2 ];
-             bc3     = fi[4 ] - gi[4 ];
-             bs3     = fi[4 ] + gi[4 ];
-             bc4     = fi[6 ] - gi[6 ];
-             bs4     = fi[6 ] + gi[6 ];
-             bf1     = (bs1 - bs2);     
-             bf0     = (bs1 + bs2);
-             bg1     = (bc1 - bc2);     
-             bg0     = (bc1 + bc2);
-             bf3     = (bs3 - bs4);     
-             bf2     = (bs3 + bs4);
-             bg3     = SQRT2*bc4;               
-             bg2     = SQRT2*bc3;
-             fi[4 ] = bf0 - bf2;
-             fi[0 ] = bf0 + bf2;
-             fi[6 ] = bf1 - bf3;
-             fi[2 ] = bf1 + bf3;
-             gi[4 ] = bg0 - bg2;
-             gi[0 ] = bg0 + bg2;
-             gi[6 ] = bg1 - bg3;
-             gi[2 ] = bg1 + bg3;
-            }
-    }
- if (n<16) return;
-
- do
-    {
-     REAL s1,c1;
-     int ii;
-     k  += 2;
-     k1  = 1  << k;
-     k2  = k1 << 1;
-     k4  = k2 << 1;
-     k3  = k2 + k1;
-     kx  = k1 >> 1;
-         fi  = fz;
-         gi  = fi + kx;
-         fn  = fz + n;
-         do
-            {
-             REAL g0,f0,f1,g1,f2,g2,f3,g3;
-             f1      = fi[0 ] - fi[k1];
-             f0      = fi[0 ] + fi[k1];
-             f3      = fi[k2] - fi[k3];
-             f2      = fi[k2] + fi[k3];
-             fi[k2]  = f0         - f2;
-             fi[0 ]  = f0         + f2;
-             fi[k3]  = f1         - f3;
-             fi[k1]  = f1         + f3;
-             g1      = gi[0 ] - gi[k1];
-             g0      = gi[0 ] + gi[k1];
-             g3      = SQRT2  * gi[k3];
-             g2      = SQRT2  * gi[k2];
-             gi[k2]  = g0         - g2;
-             gi[0 ]  = g0         + g2;
-             gi[k3]  = g1         - g3;
-             gi[k1]  = g1         + g3;
-             gi     += k4;
-             fi     += k4;
-            } while (fi<fn);
-     TRIG_INIT(k,c1,s1);
-     for (ii=1;ii<kx;ii++)
-        {
-         REAL c2,s2;
-         TRIG_NEXT(k,c1,s1);
-         c2 = c1*c1 - s1*s1;
-         s2 = 2*(c1*s1);
-             fn = fz + n;
-             fi = fz +ii;
-             gi = fz +k1-ii;
-             do
-                {
-                 REAL a,b,g0,f0,f1,g1,f2,g2,f3,g3;
-                 b       = s2*fi[k1] - c2*gi[k1];
-                 a       = c2*fi[k1] + s2*gi[k1];
-                 f1      = fi[0 ]    - a;
-                 f0      = fi[0 ]    + a;
-                 g1      = gi[0 ]    - b;
-                 g0      = gi[0 ]    + b;
-                 b       = s2*fi[k3] - c2*gi[k3];
-                 a       = c2*fi[k3] + s2*gi[k3];
-                 f3      = fi[k2]    - a;
-                 f2      = fi[k2]    + a;
-                 g3      = gi[k2]    - b;
-                 g2      = gi[k2]    + b;
-                 b       = s1*f2     - c1*g3;
-                 a       = c1*f2     + s1*g3;
-                 fi[k2]  = f0        - a;
-                 fi[0 ]  = f0        + a;
-                 gi[k3]  = g1        - b;
-                 gi[k1]  = g1        + b;
-                 b       = c1*g2     - s1*f3;
-                 a       = s1*g2     + c1*f3;
-                 gi[k2]  = g0        - a;
-                 gi[0 ]  = g0        + a;
-                 fi[k3]  = f1        - b;
-                 fi[k1]  = f1        + b;
-                 gi     += k4;
-                 fi     += k4;
-                } while (fi<fn);
-        }
-     TRIG_RESET(k,c1,s1);
-    } while (k4<n);
-}
-
-void mayer_fft(int n, REAL *real, REAL *imag)
-{
- REAL a,b,c,d;
- REAL q,r,s,t;
- int i,j,k;
- for (i=1,j=n-1,k=n/2;i<k;i++,j--) {
-  a = real[i]; b = real[j];  q=a+b; r=a-b;
-  c = imag[i]; d = imag[j];  s=c+d; t=c-d;
-  real[i] = (q+t)*.5; real[j] = (q-t)*.5;
-  imag[i] = (s-r)*.5; imag[j] = (s+r)*.5;
- }
- mayer_fht(real,n);
- mayer_fht(imag,n);
-}
-
-void mayer_ifft(int n, REAL *real, REAL *imag)
-{
- REAL a,b,c,d;
- REAL q,r,s,t;
- int i,j,k;
- mayer_fht(real,n);
- mayer_fht(imag,n);
- for (i=1,j=n-1,k=n/2;i<k;i++,j--) {
-  a = real[i]; b = real[j];  q=a+b; r=a-b;
-  c = imag[i]; d = imag[j];  s=c+d; t=c-d;
-  imag[i] = (s+r)*0.5;  imag[j] = (s-r)*0.5;
-  real[i] = (q-t)*0.5;  real[j] = (q+t)*0.5;
- }
-}
-
-void mayer_realfft(int n, REAL *real)
-{
-    REAL a,b;
- int i,j,k;
- mayer_fht(real,n);
- for (i=1,j=n-1,k=n/2;i<k;i++,j--) {
-  a = real[i];
-  b = real[j];
-  real[j] = (a-b)*0.5;
-  real[i] = (a+b)*0.5;
- }
-}
-
-void mayer_realifft(int n, REAL *real)
-{
-    REAL a,b;
- int i,j,k;
- for (i=1,j=n-1,k=n/2;i<k;i++,j--) {
-  a = real[i];
-  b = real[j];
-  real[j] = (a-b);
-  real[i] = (a+b);
- }
- mayer_fht(real,n);
-}
--- a/LEAF/Externals/d_fft_mayer.h
+++ /dev/null
@@ -1,31 +1,0 @@
-/*
- * d_fft_mayer.h
- *
- * Created: 5/4/2017 10:33:59 PM
- *  Author: Kenny
- */ 
-
-
-#ifndef D_FFT_MAYER_H_
-#define D_FFT_MAYER_H_
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-typedef float t_sample;       /* a float type at most the same size */
-
-#define REAL t_sample
-
-void mayer_fht(REAL *fz, int n);
-void mayer_fft(int n, REAL *real, REAL *imag);
-void mayer_ifft(int n, REAL *real, REAL *imag);
-void mayer_realfft(int n, REAL *real);
-void mayer_realifft(int n, REAL *real);
-
-
-#ifdef __cplusplus
-}
-#endif
-
-#endif /* D_FFT_MAYER_H_ */
--- a/LEAF/Externals/trigtbl.h
+++ /dev/null
@@ -1,173 +1,0 @@
-
-/*
-** Please only distribute this with it's associated FHT routine.
-** This algorithm is apparently patented(!) and the code copyrighted. 
-** See the comment with the fht routine for more info.
-**   -Thanks,
-**   Ron Mayer
-*/
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-
-#ifdef REAL
-#else
-#define REAL double
-#endif
-
-#ifdef GOOD_TRIG
-#else
-#define FAST_TRIG
-#endif
-
-#if defined(GOOD_TRIG)
-#define FHT_SWAP(a,b,t) {(t)=(a);(a)=(b);(b)=(t);}
-#define TRIG_VARS					         \
-      int t_lam=0;
-#define TRIG_INIT(k,c,s)					 \
-     {								 \
-      int i;							 \
-      for (i=2 ; i<=k ; i++)					 \
-          {coswrk[i]=costab[i];sinwrk[i]=sintab[i];}		 \
-      t_lam = 0;					         \
-      c = 1;							 \
-      s = 0;							 \
-     }
-#define TRIG_NEXT(k,c,s)					 \
-     {								 \
-	 int i,j;	                                         \
-         (t_lam)++;	  					 \
-         for (i=0 ; !((1<<i)&t_lam) ; i++);			 \
-         i = k-i;						 \
-         s = sinwrk[i];						 \
-         c = coswrk[i];						 \
-         if (i>1)   						 \
-            {	    						 \
-             for (j=k-i+2 ; (1<<j)&t_lam ; j++);		 \
-             j	       = k - j;					 \
-             sinwrk[i] = halsec[i] * (sinwrk[i-1] + sinwrk[j]);  \
-             coswrk[i] = halsec[i] * (coswrk[i-1] + coswrk[j]);  \
-            }                                                    \
-     }
-#define TRIG_RESET(k,c,s)
-#endif
-
-#if defined(FAST_TRIG)
-#define TRIG_VARS					 \
-      REAL t_c,t_s;
-#define TRIG_INIT(k,c,s)				 \
-    {				        		 \
-     t_c  = costab[k];				         \
-     t_s  = sintab[k];				         \
-     c    = 1;				    		 \
-     s    = 0;				    		 \
-    }
-#define TRIG_NEXT(k,c,s)				 \
-    {                                                    \
-     REAL t = c;                                         \
-     c   = t*t_c - s*t_s;				 \
-     s   = t*t_s + s*t_c;				 \
-    }
-#define TRIG_RESET(k,c,s)
-#endif
-
-static REAL halsec[20]=
-    {
-     0,
-     0,
-     .54119610014619698439972320536638942006107206337801,
-     .50979557910415916894193980398784391368261849190893,
-     .50241928618815570551167011928012092247859337193963,
-     .50060299823519630134550410676638239611758632599591,
-     .50015063602065098821477101271097658495974913010340,
-     .50003765191554772296778139077905492847503165398345,
-     .50000941253588775676512870469186533538523133757983,
-     .50000235310628608051401267171204408939326297376426,
-     .50000058827484117879868526730916804925780637276181,
-     .50000014706860214875463798283871198206179118093251,
-     .50000003676714377807315864400643020315103490883972,
-     .50000000919178552207366560348853455333939112569380,
-     .50000000229794635411562887767906868558991922348920,
-     .50000000057448658687873302235147272458812263401372
-    };
-static REAL costab[20]=
-    {
-     .00000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768847,
-     .92387953251128675612818318939678828682241662586364,
-     .98078528040323044912618223613423903697393373089333,
-     .99518472667219688624483695310947992157547486872985,
-     .99879545620517239271477160475910069444320361470461,
-     .99969881869620422011576564966617219685006108125772,
-     .99992470183914454092164649119638322435060646880221,
-     .99998117528260114265699043772856771617391725094433,
-     .99999529380957617151158012570011989955298763362218,
-     .99999882345170190992902571017152601904826792288976,
-     .99999970586288221916022821773876567711626389934930,
-     .99999992646571785114473148070738785694820115568892,
-     .99999998161642929380834691540290971450507605124278,
-     .99999999540410731289097193313960614895889430318945,
-     .99999999885102682756267330779455410840053741619428
-    };
-static REAL sintab[20]=
-    {
-     1.0000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768846,
-     .38268343236508977172845998403039886676134456248561,
-     .19509032201612826784828486847702224092769161775195,
-     .09801714032956060199419556388864184586113667316749,
-     .04906767432741801425495497694268265831474536302574,
-     .02454122852291228803173452945928292506546611923944,
-     .01227153828571992607940826195100321214037231959176,
-     .00613588464915447535964023459037258091705788631738,
-     .00306795676296597627014536549091984251894461021344,
-     .00153398018628476561230369715026407907995486457522,
-     .00076699031874270452693856835794857664314091945205,
-     .00038349518757139558907246168118138126339502603495,
-     .00019174759731070330743990956198900093346887403385,
-     .00009587379909597734587051721097647635118706561284,
-     .00004793689960306688454900399049465887274686668768
-    };
-static REAL coswrk[20]=
-    {
-     .00000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768847,
-     .92387953251128675612818318939678828682241662586364,
-     .98078528040323044912618223613423903697393373089333,
-     .99518472667219688624483695310947992157547486872985,
-     .99879545620517239271477160475910069444320361470461,
-     .99969881869620422011576564966617219685006108125772,
-     .99992470183914454092164649119638322435060646880221,
-     .99998117528260114265699043772856771617391725094433,
-     .99999529380957617151158012570011989955298763362218,
-     .99999882345170190992902571017152601904826792288976,
-     .99999970586288221916022821773876567711626389934930,
-     .99999992646571785114473148070738785694820115568892,
-     .99999998161642929380834691540290971450507605124278,
-     .99999999540410731289097193313960614895889430318945,
-     .99999999885102682756267330779455410840053741619428
-    };
-static REAL sinwrk[20]=
-    {
-     1.0000000000000000000000000000000000000000000000000,
-     .70710678118654752440084436210484903928483593768846,
-     .38268343236508977172845998403039886676134456248561,
-     .19509032201612826784828486847702224092769161775195,
-     .09801714032956060199419556388864184586113667316749,
-     .04906767432741801425495497694268265831474536302574,
-     .02454122852291228803173452945928292506546611923944,
-     .01227153828571992607940826195100321214037231959176,
-     .00613588464915447535964023459037258091705788631738,
-     .00306795676296597627014536549091984251894461021344,
-     .00153398018628476561230369715026407907995486457522,
-     .00076699031874270452693856835794857664314091945205,
-     .00038349518757139558907246168118138126339502603495,
-     .00019174759731070330743990956198900093346887403385,
-     .00009587379909597734587051721097647635118706561284,
-     .00004793689960306688454900399049465887274686668768
-    };
-    
-#ifdef __cplusplus
-}
-#endif
--- a/LEAF/Inc/leaf-analysis.h
+++ /dev/null
@@ -1,296 +1,0 @@
-/*==============================================================================
- 
- leaf-analysis.h
- Created: 25 Oct 2019 10:30:52am
- Author:  Matthew Wang
- 
- ==============================================================================*/
-
-#ifndef LEAF_ANALYSIS_H_INCLUDED
-#define LEAF_ANALYSIS_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-mempool.h"
-#include "leaf-math.h"
-#include "leaf-filters.h"
-#include "leaf-envelopes.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    /* Envelope Follower */
-    typedef struct _tEnvelopeFollower
-    {
-        float y;
-        float a_thresh;
-        float d_coeff;
-        
-    } _tEnvelopeFollower;
-    
-    typedef _tEnvelopeFollower* tEnvelopeFollower;
-    
-    void    tEnvelopeFollower_init          (tEnvelopeFollower* const, float attackThreshold, float decayCoeff);
-    void    tEnvelopeFollower_free          (tEnvelopeFollower* const);
-    void    tEnvelopeFollower_initToPool    (tEnvelopeFollower* const, float attackThreshold, float decayCoeff, tMempool* const);
-    void    tEnvelopeFollower_freeFromPool  (tEnvelopeFollower* const, tMempool* const);
-    
-    float   tEnvelopeFollower_tick          (tEnvelopeFollower* const, float x);
-    int     tEnvelopeFollower_decayCoeff    (tEnvelopeFollower* const, float decayCoeff);
-    int     tEnvelopeFollower_attackThresh  (tEnvelopeFollower* const, float attackThresh);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-
-    /* Zero Crossing Detector */
-    typedef struct _tZeroCrossing {
-        int count;
-        int maxWindowSize;
-        int currentWindowSize;
-        float invCurrentWindowSize;
-        float* inBuffer;
-        uint16_t* countBuffer;
-        int prevPosition;
-        int position;
-    } _tZeroCrossing;
-
-    typedef _tZeroCrossing* tZeroCrossing;
-
-    void    tZeroCrossing_init         (tZeroCrossing* const, int maxWindowSize);
-    void    tZeroCrossing_free         (tZeroCrossing* const);
-    void    tZeroCrossing_initToPool   (tZeroCrossing* const, int maxWindowSize, tMempool* const);
-    void    tZeroCrossing_freeFromPool (tZeroCrossing* const, tMempool* const);
-
-    float   tZeroCrossing_tick         (tZeroCrossing* const, float input);
-    void    tZeroCrossing_setWindow        (tZeroCrossing* const, float windowSize);
-
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* PowerEnvelopeFollower */
-    typedef struct _tPowerFollower {
-        float factor, oneminusfactor;
-        float curr;
-        
-    } _tPowerFollower;
-    
-    typedef _tPowerFollower* tPowerFollower;
-    
-    void    tPowerFollower_init         (tPowerFollower* const, float factor);
-    void    tPowerFollower_free         (tPowerFollower* const);
-    void    tPowerFollower_initToPool   (tPowerFollower* const, float factor, tMempool* const);
-    void    tPowerFollower_freeFromPool (tPowerFollower* const, tMempool* const);
-    
-    float   tPowerFollower_tick         (tPowerFollower* const, float input);
-    float   tPowerFollower_sample       (tPowerFollower* const);
-    int     tPowerFollower_setFactor    (tPowerFollower* const, float factor);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    // ENV~ from PD, modified for LEAF
-#define MAXOVERLAP 32
-#define INITVSTAKEN 64
-#define ENV_WINDOW_SIZE 1024
-#define ENV_HOP_SIZE 256
-    
-    typedef struct _tEnvPD
-    {
-        float buf[ENV_WINDOW_SIZE + INITVSTAKEN];
-        uint16_t x_phase;                    /* number of points since last output */
-        uint16_t x_period;                   /* requested period of output */
-        uint16_t x_realperiod;               /* period rounded up to vecsize multiple */
-        uint16_t x_npoints;                  /* analysis window size in samples */
-        float x_result;                 /* result to output */
-        float x_sumbuf[MAXOVERLAP];     /* summing buffer */
-        float x_f;
-        uint16_t windowSize, hopSize, blockSize;
-        uint16_t x_allocforvs;               /* extra buffer for DSP vector size */
-    } _tEnvPD;
-    
-    typedef _tEnvPD* tEnvPD;
-    
-    void    tEnvPD_init             (tEnvPD* const, int windowSize, int hopSize, int blockSize);
-    void    tEnvPD_free             (tEnvPD* const);
-    void    tEnvPD_initToPool       (tEnvPD* const, int windowSize, int hopSize, int blockSize, tMempool* const);
-    void    tEnvPD_freeFromPool     (tEnvPD* const, tMempool* const);
-    
-    float   tEnvPD_tick             (tEnvPD* const);
-    void    tEnvPD_processBlock     (tEnvPD* const, float* in);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* tAttackDetection */
-#define DEFBLOCKSIZE 1024
-#define DEFTHRESHOLD 6
-#define DEFATTACK    10
-#define DEFRELEASE    10
-    
-    typedef struct _tAttackDetection
-    {
-        float env;
-        
-        //Attack & Release times in msec
-        int atk;
-        int rel;
-        
-        //Attack & Release coefficients based on times
-        float atk_coeff;
-        float rel_coeff;
-        
-        int blocksize;
-        int samplerate;
-        
-        //RMS amplitude of previous block - used to decide if attack is present
-        float prevAmp;
-        
-        float threshold;
-    } _tAttackDetection;
-    
-    typedef _tAttackDetection* tAttackDetection;
-    
-    void    tAttackDetection_init           (tAttackDetection* const, int blocksize, int atk, int rel);
-    void    tAttackDetection_free           (tAttackDetection* const);
-    void    tAttackDetection_initToPool     (tAttackDetection* const, int blocksize, int atk, int rel, tMempool* const);
-    void    tAttackDetection_freeFromPool   (tAttackDetection* const, tMempool* const);
-    
-    // set expected input blocksize
-    void    tAttackDetection_setBlocksize   (tAttackDetection* const, int size);
-    
-    // change atkDetector sample rate
-    void    tAttackDetection_setSamplerate  (tAttackDetection* const, int inRate);
-    
-    // set attack time and coeff
-    void    tAttackDetection_setAttack      (tAttackDetection* const, int inAtk);
-    
-    // set release time and coeff
-    void    tAttackDetection_setRelease     (tAttackDetection* const, int inRel);
-    
-    // set level above which values are identified as attacks
-    void    tAttackDetection_setThreshold   (tAttackDetection* const, float thres);
-    
-    // find largest transient in input block, return index of attack
-    int     tAttackDetection_detect         (tAttackDetection* const, float *in);
-    
-    //==============================================================================
-    
-    // tSNAC: period detector
-    // from Katja Vetters http://www.katjaas.nl/helmholtz/helmholtz.html
-#define SNAC_FRAME_SIZE 1024           // default analysis framesize // should be the same as (or smaller than?) PS_FRAME_SIZE
-#define DEFOVERLAP 1                // default overlap
-#define DEFBIAS 0.2f        // default bias
-#define DEFMINRMS 0.003f   // default minimum RMS
-#define SEEK 0.85f       // seek-length as ratio of framesize
-    
-    typedef struct _tSNAC
-    {
-        float* inputbuf;
-        float* processbuf;
-        float* spectrumbuf;
-        float* biasbuf;
-        uint16_t timeindex;
-        uint16_t framesize;
-        uint16_t overlap;
-        uint16_t periodindex;
-        
-        float periodlength;
-        float fidelity;
-        float biasfactor;
-        float minrms;
-        
-    } _tSNAC;
-    
-    typedef _tSNAC* tSNAC;
-    
-    void    tSNAC_init          (tSNAC* const, int overlaparg);
-    void    tSNAC_free          (tSNAC* const);
-    void    tSNAC_initToPool    (tSNAC* const, int overlaparg, tMempool* const);
-    void    tSNAC_freeFromPool  (tSNAC* const, tMempool* const);
-    
-    void    tSNAC_ioSamples     (tSNAC *s, float *in, float *out, int size);
-    void    tSNAC_setOverlap    (tSNAC *s, int lap);
-    void    tSNAC_setBias       (tSNAC *s, float bias);
-    void    tSNAC_setMinRMS     (tSNAC *s, float rms);
-    
-    /*To get freq, perform SAMPLE_RATE/snac_getperiod() */
-    float   tSNAC_getPeriod     (tSNAC *s);
-    float   tSNAC_getFidelity   (tSNAC *s);
-    
-#define DEFPITCHRATIO 2.0f
-#define DEFTIMECONSTANT 100.0f
-#define DEFHOPSIZE 64
-#define DEFWINDOWSIZE 64
-#define FBA 20
-#define HPFREQ 40.0f
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    // Period detection
-    typedef struct _tPeriodDetection
-    {
-        tEnvPD env;
-        tSNAC snac;
-        float* inBuffer;
-        float* outBuffer;
-        int frameSize;
-        int bufSize;
-        int framesPerBuffer;
-        int curBlock;
-        int lastBlock;
-        int i;
-        int indexstore;
-        int iLast;
-        int index;
-        float period;
-        
-        uint16_t hopSize;
-        uint16_t windowSize;
-        uint8_t fba;
-        
-        float timeConstant;
-        float radius;
-        float max;
-        float lastmax;
-        float deltamax;
-        
-        float fidelityThreshold;
-        
-        float history;
-        float alpha;
-        float tolerance;
-        
-    } _tPeriodDetection;
-    
-    typedef _tPeriodDetection* tPeriodDetection;
-    
-    void    tPeriodDetection_init               (tPeriodDetection* const, float* in, float* out, int bufSize, int frameSize);
-    void    tPeriodDetection_free               (tPeriodDetection* const);
-    void    tPeriodDetection_initToPool         (tPeriodDetection* const, float* in, float* out, int bufSize, int frameSize, tMempool* const);
-    void    tPeriodDetection_freeFromPool       (tPeriodDetection* const, tMempool* const);
-    
-    float   tPeriodDetection_tick               (tPeriodDetection* const, float sample);
-    float   tPeriodDetection_getPeriod          (tPeriodDetection* const);
-    void    tPeriodDetection_setHopSize         (tPeriodDetection* const, int hs);
-    void    tPeriodDetection_setWindowSize      (tPeriodDetection* const, int ws);
-    void    tPeriodDetection_setFidelityThreshold(tPeriodDetection* const, float threshold);
-    void     tPeriodDetection_setAlpha            (tPeriodDetection* const, float alpha);
-    void     tPeriodDetection_setTolerance        (tPeriodDetection* const, float tolerance);
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_ANALYSIS_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-delay.h
+++ /dev/null
@@ -1,229 +1,0 @@
-/*==============================================================================
- 
- leaf-delay.h
- Created: 20 Jan 2017 12:01:24pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#ifndef LEAF_DELAY_H_INCLUDED
-#define LEAF_DELAY_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    /* Non-interpolating delay, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tDelay
-    {
-        float gain;
-        float* buff;
-        
-        float lastOut, lastIn;
-        
-        uint32_t inPoint, outPoint;
-        
-        uint32_t delay, maxDelay;
-        
-    } _tDelay;
-    
-    typedef _tDelay* tDelay;
-    
-    void        tDelay_init         (tDelay* const, uint32_t delay, uint32_t maxDelay);
-    void        tDelay_free         (tDelay* const);
-    void        tDelay_initToPool   (tDelay* const, uint32_t delay, uint32_t maxDelay, tMempool* const);
-    void        tDelay_freeFromPool (tDelay* const, tMempool* const);
-    
-    void        tDelay_clear        (tDelay* const);
-    int         tDelay_setDelay     (tDelay* const, uint32_t delay);
-    uint32_t    tDelay_getDelay     (tDelay* const);
-    void        tDelay_tapIn        (tDelay* const, float in, uint32_t tapDelay);
-    float       tDelay_tapOut       (tDelay* const, uint32_t tapDelay);
-    float       tDelay_addTo        (tDelay* const, float value, uint32_t tapDelay);
-    float       tDelay_tick         (tDelay* const, float sample);
-    float       tDelay_getLastOut   (tDelay* const);
-    float       tDelay_getLastIn    (tDelay* const);
-    
-    //==============================================================================
-    
-    /* Linearly-interpolating delay, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tLinearDelay
-    {
-        float gain;
-        float* buff;
-        
-        float lastOut, lastIn;
-        
-        uint32_t inPoint, outPoint;
-        
-        uint32_t maxDelay;
-        
-        float delay;
-        
-        float alpha, omAlpha;
-        
-    } _tLinearDelay;
-    
-    typedef _tLinearDelay* tLinearDelay;
-    
-    void    tLinearDelay_init        (tLinearDelay* const, float delay, uint32_t maxDelay);
-    void    tLinearDelay_free        (tLinearDelay* const);
-    void    tLinearDelay_initToPool  (tLinearDelay* const, float delay, uint32_t maxDelay, tMempool* const);
-    void    tLinearDelay_freeFromPool(tLinearDelay* const, tMempool* const);
-    void    tLinearDelay_clear		 (tLinearDelay* const dl);
-    int     tLinearDelay_setDelay    (tLinearDelay* const, float delay);
-    float   tLinearDelay_getDelay    (tLinearDelay* const);
-    void    tLinearDelay_tapIn       (tLinearDelay* const, float in, uint32_t tapDelay);
-    float 	tLinearDelay_tapOut 	 (tLinearDelay* const, uint32_t tapDelay);
-    float   tLinearDelay_addTo       (tLinearDelay* const, float value, uint32_t tapDelay);
-    float   tLinearDelay_tick        (tLinearDelay* const, float sample);
-    void    tLinearDelay_tickIn      (tLinearDelay* const, float input);
-    float   tLinearDelay_tickOut     (tLinearDelay* const);
-    float   tLinearDelay_getLastOut  (tLinearDelay* const);
-    float   tLinearDelay_getLastIn   (tLinearDelay* const);
-    
-
-
-    //==============================================================================
-
-    /* Hermite-interpolating delay, created by adapting STK linear delay with Hermite interpolation */
-    typedef struct _tHermiteDelay
-    {
-        float gain;
-        float* buff;
-
-        float lastOut, lastIn;
-
-        uint32_t inPoint, outPoint;
-
-        uint32_t maxDelay;
-
-        float delay;
-
-        float alpha, omAlpha;
-
-    } _tHermiteDelay;
-
-    typedef _tHermiteDelay* tHermiteDelay;
-
-    void   	tHermiteDelay_init 			(tHermiteDelay* const dl, float delay, uint32_t maxDelay);
-    void 	tHermiteDelay_free			(tHermiteDelay* const dl);
-    void    tHermiteDelay_initToPool  	(tHermiteDelay* const dl, float delay, uint32_t maxDelay, tMempool* const mp);
-    void    tHermiteDelay_freeFromPool	(tHermiteDelay* const dl, tMempool* const mp);
-    void    tHermiteDelay_clear			(tHermiteDelay* const dl);
-    float   tHermiteDelay_tick 			(tHermiteDelay* const dl, float input);
-    void   	tHermiteDelay_tickIn 		(tHermiteDelay* const dl, float input);
-    float   tHermiteDelay_tickOut 		(tHermiteDelay* const dl);
-    int     tHermiteDelay_setDelay 		(tHermiteDelay* const dl, float delay);
-    float 	tHermiteDelay_tapOut 		(tHermiteDelay* const dl, uint32_t tapDelay);
-    void 	tHermiteDelay_tapIn 		(tHermiteDelay* const dl, float value, uint32_t tapDelay);
-    float 	tHermiteDelay_addTo 		(tHermiteDelay* const dl, float value, uint32_t tapDelay);
-    float   tHermiteDelay_getDelay 		(tHermiteDelay* const dl);
-    float   tHermiteDelay_getLastOut 	(tHermiteDelay* const dl);
-    float   tHermiteDelay_getLastIn 	(tHermiteDelay* const dl);
-    void 	tHermiteDelay_setGain 		(tHermiteDelay* const dl, float gain);
-    float 	tHermiteDelay_getGain 		(tHermiteDelay* const dl);
-
-
-    //==============================================================================
-    
-    /* Allpass-interpolating delay, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tAllpassDelay
-    {
-        float gain;
-        float* buff;
-        
-        float lastOut, lastIn;
-        
-        uint32_t inPoint, outPoint;
-        
-        uint32_t maxDelay;
-        
-        float delay;
-        
-        float alpha, omAlpha, coeff;
-        
-        float apInput;
-        
-    } _tAllpassDelay;
-    
-    typedef _tAllpassDelay* tAllpassDelay;
-    
-    void    tAllpassDelay_init        (tAllpassDelay* const, float delay, uint32_t maxDelay);
-    void    tAllpassDelay_free        (tAllpassDelay* const);
-    void    tAllpassDelay_initToPool  (tAllpassDelay* const, float delay, uint32_t maxDelay, tMempool* const);
-    void    tAllpassDelay_freeFromPool(tAllpassDelay* const, tMempool* const);
-    
-    void    tAllpassDelay_clear       (tAllpassDelay* const);
-    int     tAllpassDelay_setDelay    (tAllpassDelay* const, float delay);
-    float   tAllpassDelay_getDelay    (tAllpassDelay* const);
-    void    tAllpassDelay_tapIn       (tAllpassDelay* const, float in, uint32_t tapDelay);
-    float   tAllpassDelay_tapOut      (tAllpassDelay* const, uint32_t tapDelay);
-    float   tAllpassDelay_addTo       (tAllpassDelay* const, float value, uint32_t tapDelay);
-    float   tAllpassDelay_tick        (tAllpassDelay* const, float sample);
-    float   tAllpassDelay_getLastOut  (tAllpassDelay* const);
-    float   tAllpassDelay_getLastIn   (tAllpassDelay* const);
-    
-    //==============================================================================
-    
-    /* Linear interpolating delay with fixed read and write pointers, variable rate. */
-    typedef struct _tTapeDelay
-    {
-        float gain;
-        float* buff;
-        
-        float lastOut, lastIn;
-        
-        uint32_t inPoint;
-        
-        uint32_t maxDelay;
-        
-        float delay, inc, idx;
-        
-        float apInput;
-        
-    } _tTapeDelay;
-    
-    typedef _tTapeDelay* tTapeDelay;
-    
-    void    tTapeDelay_init        (tTapeDelay* const, float delay, uint32_t maxDelay);
-    void    tTapeDelay_free        (tTapeDelay* const);
-    void    tTapeDelay_initToPool  (tTapeDelay* const, float delay, uint32_t maxDelay, tMempool* const);
-    void    tTapeDelay_freeFromPool(tTapeDelay* const, tMempool* const);
-    
-    void    tTapeDelay_clear       (tTapeDelay* const);
-    void    tTapeDelay_setDelay    (tTapeDelay* const, float delay);
-    float   tTapeDelay_getDelay    (tTapeDelay* const);
-    void    tTapeDelay_tapIn       (tTapeDelay* const, float in, uint32_t tapDelay);
-    float   tTapeDelay_tapOut      (tTapeDelay* const d, float tapDelay);
-    float   tTapeDelay_addTo       (tTapeDelay* const, float value, uint32_t tapDelay);
-    float   tTapeDelay_tick        (tTapeDelay* const, float sample);
-    void    tTapeDelay_incrementInPoint(tTapeDelay* const dl);
-    float   tTapeDelay_getLastOut  (tTapeDelay* const);
-    float   tTapeDelay_getLastIn   (tTapeDelay* const);
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_DELAY_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-distortion.h
+++ /dev/null
@@ -1,164 +1,0 @@
-/*==============================================================================
- 
- leaf-distortion.h
- Created: 25 Oct 2019 10:23:28am
- Author:  Matthew Wang
- 
- ==============================================================================*/
-
-#ifndef LEAF_DISTORTION_H_INCLUDED
-#define LEAF_DISTORTION_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-mempool.h"
-#include "leaf-math.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    typedef struct _tSampleReducer
-    {
-        float invRatio;
-        float hold;
-        uint32_t count;
-    } _tSampleReducer;
-    
-    typedef _tSampleReducer* tSampleReducer;
-    
-    void    tSampleReducer_init    (tSampleReducer* const);
-    void    tSampleReducer_free    (tSampleReducer* const);
-    void    tSampleReducer_initToPool   (tSampleReducer* const, tMempool* const);
-    void    tSampleReducer_freeFromPool (tSampleReducer* const, tMempool* const);
-    
-    float   tSampleReducer_tick    (tSampleReducer* const, float input);
-    
-    // sampling ratio
-    void    tSampleReducer_setRatio (tSampleReducer* const, float ratio);
-    
-    //==============================================================================
-    
-    typedef struct _tOversampler
-    {
-        int ratio;
-        float* pCoeffs;
-        float* upState;
-        float* downState;
-        int numTaps;
-        int phaseLength;
-    } _tOversampler;
-    
-    typedef _tOversampler* tOversampler;
-    
-    void    tOversampler_init           (tOversampler* const, int order, oBool extraQuality);
-    void    tOversampler_free           (tOversampler* const);
-    void    tOversampler_initToPool     (tOversampler* const, int order, oBool extraQuality, tMempool* const);
-    void    tOversampler_freeFromPool   (tOversampler* const, tMempool* const);
-    
-    void    tOversampler_upsample       (tOversampler* const, float input, float* output);
-    float   tOversampler_downsample     (tOversampler* const os, float* input);
-    float   tOversampler_tick           (tOversampler* const, float input, float (*effectTick)(float));
-    int     tOversampler_getLatency     (tOversampler* const os);
-    
-    //==============================================================================
-    
-    /* tLockhartWavefolder */
-    
-    typedef struct _tLockhartWavefolder
-    {
-        double Ln1;
-        double Fn1;
-        double xn1;
-
-        double RL;
-        double R;
-        double VT;
-        double Is;
-
-        double a;
-        double b;
-        double d;
-
-        // Antialiasing error threshold
-        double AAthresh;
-        double half_a;
-        double longthing;
-
-        double LambertThresh, w, expw, p, r, s, myerr;
-        double l;
-        double u, Ln, Fn;
-        double tempsDenom;
-        double tempErrDenom;
-        double tempOutDenom;
-
-    } _tLockhartWavefolder;
-    
-    typedef _tLockhartWavefolder* tLockhartWavefolder;
-    
-    void    tLockhartWavefolder_init    (tLockhartWavefolder* const);
-    void    tLockhartWavefolder_free    (tLockhartWavefolder* const);
-    void    tLockhartWavefolder_initToPool   (tLockhartWavefolder* const, tMempool* const);
-    void    tLockhartWavefolder_freeFromPool (tLockhartWavefolder* const, tMempool* const);
-    
-    float   tLockhartWavefolder_tick    (tLockhartWavefolder* const, float samp);
-
-    //==============================================================================
-
-    typedef struct _tCrusher
-    {
-        float srr;
-        float mult, div;
-        float rnd;
-        
-        uint32_t  op; //which bitwise operation (0-7)
-        
-        float gain;
-        tSampleReducer sReducer;
-        
-    } _tCrusher;
-    
-    typedef _tCrusher* tCrusher;
-    
-    void    tCrusher_init    (tCrusher* const);
-    void    tCrusher_free    (tCrusher* const);
-    void    tCrusher_initToPool   (tCrusher* const, tMempool* const);
-    void    tCrusher_freeFromPool (tCrusher* const, tMempool* const);
-    
-    float   tCrusher_tick    (tCrusher* const, float input);
-    
-    // 0.0 - 1.0
-    void    tCrusher_setOperation (tCrusher* const, float op);
-    
-    // 0.0 - 1.0
-    void    tCrusher_setQuality (tCrusher* const, float val);
-    
-    // what division to round to
-    void    tCrusher_setRound (tCrusher* const, float rnd);
-    
-    // sampling ratio
-    void    tCrusher_setSamplingRatio (tCrusher* const, float ratio);
-    
-    //==============================================================================
-
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_DISTORTION_H_INCLUDED
-
-//==============================================================================
-
-
--- a/LEAF/Inc/leaf-dynamics.h
+++ /dev/null
@@ -1,122 +1,0 @@
-/*==============================================================================
- 
- leaf-dynamics.h
- Created: 30 Nov 2018 11:57:05am
- Author:  airship
- 
- ==============================================================================*/
-
-#ifndef LEAF_DYNAMICS_H_INCLUDED
-#define LEAF_DYNAMICS_H_INCLUDED
-
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-analysis.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* Compressor */
-    typedef struct _tCompressor
-    {
-        float tauAttack, tauRelease;
-        float T, R, W, M; // Threshold, compression Ratio, decibel Width of knee transition, decibel Make-up gain
-        
-        float x_G[2], y_G[2], x_T[2], y_T[2];
-        
-        oBool isActive;
-        
-    } _tCompressor;
-    
-    typedef _tCompressor* tCompressor;
-    
-    void    tCompressor_init        (tCompressor* const);
-    void    tCompressor_free        (tCompressor* const);
-    void    tCompressor_initToPool  (tCompressor* const, tMempool* const);
-    void    tCompressor_freeFromPool(tCompressor* const, tMempool* const);
-    
-    float   tCompressor_tick        (tCompressor* const, float input);
-    
-    ///
-    /* Feedback leveller */
-    // An auto VCA that you put into a feedback circuit to make it stay at the same level.
-    // It can enforce level bidirectionally (amplifying and attenuating as needed) or
-    // just attenutating. The former option allows for infinite sustain strings, for example, while
-    // The latter option allows for decaying strings, which can never exceed
-    // a specific level.
-    
-    typedef struct _tFeedbackLeveler {
-        float targetLevel;    // target power level
-        float strength;        // how strongly level difference affects the VCA
-        int      mode;            // 0 for upwards limiting only, 1 for biderctional limiting
-        float curr;
-        tPowerFollower pwrFlw;    // internal power follower needed for level tracking
-        
-    } _tFeedbackLeveler;
-    
-    typedef _tFeedbackLeveler* tFeedbackLeveler;
-    
-    void    tFeedbackLeveler_init           (tFeedbackLeveler* const, float targetLevel, float factor, float strength, int mode);
-    void    tFeedbackLeveler_free           (tFeedbackLeveler* const);
-    void    tFeedbackLeveler_initToPool     (tFeedbackLeveler* const, float targetLevel, float factor, float strength, int mode, tMempool* const);
-    void    tFeedbackLeveler_freeFromPool   (tFeedbackLeveler* const, tMempool* const);
-    
-    float   tFeedbackLeveler_tick           (tFeedbackLeveler* const, float input);
-    float   tFeedbackLeveler_sample         (tFeedbackLeveler* const);
-    void    tFeedbackLeveler_setTargetLevel (tFeedbackLeveler* const, float TargetLevel);
-    void    tFeedbackLeveler_setFactor      (tFeedbackLeveler* const, float factor);
-    void    tFeedbackLeveler_setMode        (tFeedbackLeveler* const, int mode); // 0 for upwards limiting only, 1 for biderctional limiting
-    void    tFeedbackLeveler_setStrength    (tFeedbackLeveler* const, float strength);
-    
-    
-    //==============================================================================
-    
-
-    //Threshold with hysteresis (like Max/MSP thresh~ object)
-
-    typedef struct _tThreshold {
-        float highThresh, lowThresh;
-		int currentValue;
-
-    } _tThreshold;
-
-    typedef _tThreshold* tThreshold;
-
-    void    tThreshold_init        (tThreshold* const, float low, float high);
-    void    tThreshold_free        (tThreshold* const);
-    void    tThreshold_initToPool  (tThreshold* const, float low, float high, tMempool* const);
-    void    tThreshold_freeFromPool(tThreshold* const, tMempool* const);
-
-    int   tThreshold_tick        (tThreshold* const, float input);
-    void   tThreshold_setLow        (tThreshold* const, float low);
-    void   tThreshold_setHigh       (tThreshold* const, float high);
-
-
-
-    //////======================================================================
-
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_DYNAMICS_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-effects.h
+++ /dev/null
@@ -1,360 +1,0 @@
-/*==============================================================================
- 
- leaf-effects.h
- Created: 20 Jan 2017 12:01:54pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#ifndef LEAF_EFFECTS_H_INCLUDED
-#define LEAF_EFFECTS_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-dynamics.h"
-#include "leaf-analysis.h"
-#include "leaf-envelopes.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    /* tTalkbox */
-#define NUM_TALKBOX_PARAM 4
-    
-    typedef struct _tTalkbox
-    {
-        float param[NUM_TALKBOX_PARAM];
-        
-        int bufsize;
-        float* car0;
-        float* car1;
-        float* window;
-        float* buf0;
-        float* buf1;
-        
-        float warpFactor;
-        int32_t warpOn;
-
-        float emphasis;
-        int32_t K, N, O, pos;
-        float wet, dry, FX;
-        float d0, d1, d2, d3, d4;
-        float u0, u1, u2, u3, u4;
-
-        
-    } _tTalkbox;
-    
-    typedef _tTalkbox* tTalkbox;
-    
-    void    tTalkbox_init           (tTalkbox* const, int bufsize);
-    void    tTalkbox_free           (tTalkbox* const);
-    void    tTalkbox_initToPool     (tTalkbox* const, int bufsize, tMempool* const);
-    void    tTalkbox_freeFromPool   (tTalkbox* const, tMempool* const);
-    
-    float   tTalkbox_tick           (tTalkbox* const, float synth, float voice);
-    void    tTalkbox_update         (tTalkbox* const);
-    void    tTalkbox_suspend        (tTalkbox* const);
-    void    tTalkbox_lpcDurbin      (float *r, int p, float *k, float *g);
-    void 	tTalkbox_lpc			(float *buf, float *car, int32_t n, int32_t o, float warp, int warpOn);
-    void    tTalkbox_setQuality     (tTalkbox* const, float quality);
-    void 	tTalkbox_setWarpFactor		(tTalkbox* const voc, float warp);
-    void 	tTalkbox_setWarpOn		(tTalkbox* const voc, float warpOn);
-    void 	tTalkbox_warpedAutocorrelate	(float * x, unsigned int L, float * R, unsigned int P, float lambda);
-    //==============================================================================
-    
-    /* tVocoder */
-#define NUM_VOCODER_PARAM 8
-#define NBANDS 16
-    
-    typedef struct _tVocoder
-    {
-        float param[NUM_VOCODER_PARAM];
-        
-        float gain;         //output level
-        float thru, high;   //hf thru
-        float kout;         //downsampled output
-        int32_t  kval;      //downsample counter
-        int32_t  nbnd;      //number of bands
-        
-        //filter coeffs and buffers - seems it's faster to leave this global than make local copy
-        float f[NBANDS][13]; //[0-8][0 1 2 | 0 1 2 3 | 0 1 2 3 | val rate]
-        
-    } _tVocoder;
-    
-    typedef _tVocoder* tVocoder;
-    
-    void    tVocoder_init           (tVocoder* const);
-    void    tVocoder_free           (tVocoder* const);
-    void    tVocoder_initToPool     (tVocoder* const, tMempool* const);
-    void    tVocoder_freeFromPool   (tVocoder* const, tMempool* const);
-    
-    float   tVocoder_tick           (tVocoder* const, float synth, float voice);
-    void    tVocoder_update         (tVocoder* const);
-    void    tVocoder_suspend        (tVocoder* const);
-    
-    //==============================================================================
-    
-    // tRosenbergGlottalPulse
-
-	typedef struct _tRosenbergGlottalPulse
-	{
-
-		float phase;
-		float openLength;
-		float pulseLength;
-		float freq;
-		float inc;
-
-
-	} _tRosenbergGlottalPulse;
-
-	typedef _tRosenbergGlottalPulse* tRosenbergGlottalPulse;
-
-	void    tRosenbergGlottalPulse_init           (tRosenbergGlottalPulse* const);
-	void    tRosenbergGlottalPulse_free           (tRosenbergGlottalPulse* const);
-	void    tRosenbergGlottalPulse_initToPool     (tRosenbergGlottalPulse* const, tMempool* const);
-	void    tRosenbergGlottalPulse_freeFromPool   (tRosenbergGlottalPulse* const, tMempool* const);
-
-	float   tRosenbergGlottalPulse_tick           (tRosenbergGlottalPulse* const);
-
-	void   tRosenbergGlottalPulse_setFreq           (tRosenbergGlottalPulse* const, float freq);
-
-	void   tRosenbergGlottalPulse_setOpenLength           (tRosenbergGlottalPulse* const, float openLength);
-
-	void   tRosenbergGlottalPulse_setPulseLength           (tRosenbergGlottalPulse* const, float pulseLength);
-    
-    //==============================================================================
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* tSOLAD : pitch shifting algorithm that underlies tRetune etc */
-    // from Katja Vetters http://www.katjaas.nl/pitchshiftlowlatency/pitchshiftlowlatency.html
-#define LOOPSIZE (2048*2)      // (4096*2) // loop size must be power of two
-#define LOOPMASK (LOOPSIZE - 1)
-#define PITCHFACTORDEFAULT 1.0f
-#define INITPERIOD 64.0f
-#define MAXPERIOD (float)((LOOPSIZE - w->blocksize) * 0.8f)
-#define MINPERIOD 8.0f
-    
-    typedef struct _tSOLAD
-    {
-        uint16_t timeindex;              // current reference time, write index
-        uint16_t blocksize;              // signal input / output block size
-        float pitchfactor;        // pitch factor between 0.25 and 4
-        float readlag;            // read pointer's lag behind write pointer
-        float period;             // period length in input signal
-        float jump;               // read pointer jump length and direction
-        float xfadelength;        // crossfade length expressed at input sample rate
-        float xfadevalue;         // crossfade phase and value
-        
-        float* delaybuf;
-        
-    } _tSOLAD;
-    
-    typedef _tSOLAD* tSOLAD;
-    
-    void    tSOLAD_init             (tSOLAD* const);
-    void    tSOLAD_free             (tSOLAD* const);
-    void    tSOLAD_initToPool       (tSOLAD* const, tMempool* const);
-    void    tSOLAD_freeFromPool     (tSOLAD* const, tMempool* const);
-    
-    // send one block of input samples, receive one block of output samples
-    void    tSOLAD_ioSamples        (tSOLAD *w, float* in, float* out, int blocksize);
-    // set periodicity analysis data
-    void    tSOLAD_setPeriod        (tSOLAD *w, float period);
-    // set pitch factor between 0.25 and 4
-    void    tSOLAD_setPitchFactor   (tSOLAD *w, float pitchfactor);
-    // force readpointer lag
-    void    tSOLAD_setReadLag       (tSOLAD *w, float readlag);
-    // reset state variables
-    void    tSOLAD_resetState       (tSOLAD *w);
-    
-    // Pitch shift
-    typedef struct _tPitchShift
-    {
-        tSOLAD sola;
-        tHighpass hp;
-        tPeriodDetection* p;
-        
-        float* outBuffer;
-        int frameSize;
-        int bufSize;
-        
-        int framesPerBuffer;
-        int curBlock;
-        int lastBlock;
-        int index;
-        
-        float pitchFactor;
-        float timeConstant;
-        float radius;
-    } _tPitchShift;
-    
-    typedef _tPitchShift* tPitchShift;
-    
-    void    tPitchShift_init            (tPitchShift* const, tPeriodDetection* const, float* out, int bufSize);
-    void    tPitchShift_free            (tPitchShift* const);
-    void    tPitchShift_initToPool      (tPitchShift* const, tPeriodDetection* const, float* out, int bufSize, tMempool* const);
-    void    tPitchShift_freeFromPool    (tPitchShift* const, tMempool* const);
-    
-    float   tPitchShift_shift           (tPitchShift* const);
-    float   tPitchShift_shiftToFunc     (tPitchShift* const, float (*fun)(float));
-    float   tPitchShift_shiftToFreq     (tPitchShift* const, float freq);
-    void    tPitchShift_setPitchFactor  (tPitchShift* const, float pf);
-    
-    // Retune
-    typedef struct _tRetune
-    {
-        tPeriodDetection pd;
-        tPitchShift* ps;
-        
-        float* inBuffer;
-        float** outBuffers;
-        float* tickOutput;
-        int frameSize;
-        int bufSize;
-        
-        uint16_t hopSize;
-        uint16_t windowSize;
-        uint8_t fba;
-        
-        float* pitchFactor;
-        float timeConstant;
-        float radius;
-        
-        float inputPeriod;
-        
-        int numVoices;
-    } _tRetune;
-    
-    typedef _tRetune* tRetune;
-    
-    void    tRetune_init                (tRetune* const, int numVoices, int bufSize, int frameSize);
-    void    tRetune_free                (tRetune* const);
-    void    tRetune_initToPool          (tRetune* const, int numVoices, int bufSize, int frameSize, tMempool* const);
-    void    tRetune_freeFromPool        (tRetune* const, tMempool* const);
-    
-    float*  tRetune_tick                (tRetune* const, float sample);
-    void    tRetune_setNumVoices        (tRetune* const, int numVoices);
-    void    tRetune_setPitchFactors     (tRetune* const, float pf);
-    void    tRetune_setPitchFactor      (tRetune* const, float pf, int voice);
-    void    tRetune_setTimeConstant     (tRetune* const, float tc);
-    void    tRetune_setHopSize          (tRetune* const, int hs);
-    void    tRetune_setWindowSize       (tRetune* const, int ws);
-    void    tRetune_setFidelityThreshold(tRetune* const, float threshold);
-    float   tRetune_getInputPeriod      (tRetune* const);
-    float   tRetune_getInputFreq        (tRetune* const);
-    
-    // Autotune
-    typedef struct _tAutotune
-    {
-        tPeriodDetection pd;
-        tPitchShift* ps;
-        
-        float* inBuffer;
-        float** outBuffers;
-        float* tickOutput;
-        int frameSize;
-        int bufSize;
-        
-        uint16_t hopSize;
-        uint16_t windowSize;
-        uint8_t fba;
-        
-        float* freq;
-        float timeConstant;
-        float radius;
-        
-        float inputPeriod;
-        
-        int numVoices;
-    } _tAutotune;
-    
-    typedef _tAutotune* tAutotune;
-    
-    void    tAutotune_init                  (tAutotune* const, int numVoices, int bufSize, int frameSize);
-    void    tAutotune_free                  (tAutotune* const);
-    void    tAutotune_initToPool            (tAutotune* const, int numVoices, int bufSize, int frameSize, tMempool* const);
-    void    tAutotune_freeFromPool          (tAutotune* const, tMempool* const);
-    
-    float*  tAutotune_tick                  (tAutotune* const, float sample);
-    void    tAutotune_setNumVoices          (tAutotune* const, int numVoices);
-    void    tAutotune_setFreqs              (tAutotune* const, float f);
-    void    tAutotune_setFreq               (tAutotune* const, float f, int voice);
-    void    tAutotune_setTimeConstant       (tAutotune* const, float tc);
-    void    tAutotune_setHopSize            (tAutotune* const, int hs);
-    void    tAutotune_setWindowSize         (tAutotune* const, int ws);
-    void    tAutotune_setFidelityThreshold  (tAutotune* const, float threshold);
-    void    tAutotune_setAlpha              (tAutotune* const, float alpha);
-    void    tAutotune_setTolerance          (tAutotune* const, float tolerance);
-    float   tAutotune_getInputPeriod        (tAutotune* const);
-    float   tAutotune_getInputFreq          (tAutotune* const);
-    
-    //==============================================================================
-    
-    
-    typedef struct _tFormantShifter
-    {
-        int ford;
-        float falph;
-        float flamb;
-        float* fk;
-        float* fb;
-        float* fc;
-        float* frb;
-        float* frc;
-        float* fsig;
-        float* fsmooth;
-        float fhp;
-        float flp;
-        float flpa;
-        float* fbuff;
-        float* ftvec;
-        float fmute;
-        float fmutealph;
-        unsigned int cbi;
-        float shiftFactor;
-        float intensity, invIntensity;
-        tHighpass hp;
-        tHighpass hp2;
-        tFeedbackLeveler fbl1;
-        tFeedbackLeveler fbl2;
-        
-    } _tFormantShifter;
-    
-    typedef _tFormantShifter* tFormantShifter;
-    
-    void    tFormantShifter_init            (tFormantShifter* const, int order);
-    void    tFormantShifter_free            (tFormantShifter* const);
-    void    tFormantShifter_initToPool      (tFormantShifter* const, int order, tMempool* const);
-    void    tFormantShifter_freeFromPool    (tFormantShifter* const, tMempool* const);
-    
-    float   tFormantShifter_tick            (tFormantShifter* const, float input);
-    float   tFormantShifter_remove          (tFormantShifter* const, float input);
-    float   tFormantShifter_add             (tFormantShifter* const, float input);
-    void    tFormantShifter_ioSamples       (tFormantShifter* const, float* in, float* out, int size, float fwarp);
-    void    tFormantShifter_setShiftFactor  (tFormantShifter* const, float shiftFactor);
-    void    tFormantShifter_setIntensity    (tFormantShifter* const, float intensity);
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_EFFECTS_H_INCLUDED
-
-//==============================================================================
--- a/LEAF/Inc/leaf-electrical.h
+++ /dev/null
@@ -1,103 +1,0 @@
-/*
- * leaf-electrical.h
- *
- *  Created on: Sep 25, 2019
- *      Author: jeffsnyder
- */
-
-#ifndef LEAF_INC_LEAF_ELECTRICAL_H_
-#define LEAF_INC_LEAF_ELECTRICAL_H_
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    typedef enum WDFComponentType
-    {
-        SeriesAdaptor = 0,
-        ParallelAdaptor,
-        Resistor,
-        Capacitor,
-        Inductor,
-        Inverter,
-        ResistiveSource,
-        IdealSource,
-        Diode,
-        DiodePair,
-        RootNil,
-        WDFComponentNil
-    } WDFComponentType;
-    
-    typedef struct _tWDF _tWDF; // needed to allow tWDF pointers in struct
-    typedef _tWDF* tWDF;
-    struct _tWDF
-    {
-        WDFComponentType type;
-        float port_resistance_up;
-        float port_resistance_left;
-        float port_resistance_right;
-        float port_conductance_up;
-        float port_conductance_left;
-        float port_conductance_right;
-        float incident_wave_up;
-        float incident_wave_left;
-        float incident_wave_right;
-        float reflected_wave_up;
-        float reflected_wave_left;
-        float reflected_wave_right;
-        float gamma_zero;
-        float sample_rate;
-        float value;
-        tWDF* child_left;
-        tWDF* child_right;
-        float (*get_port_resistance)(tWDF* const);
-        float (*get_reflected_wave_up)(tWDF* const, float);
-        float (*get_reflected_wave_down)(tWDF* const, float, float);
-        void (*set_incident_wave)(tWDF* const, float, float);
-    };
-    
-    //WDF Linear Components
-    void    tWDF_init                   (tWDF* const, WDFComponentType type, float value, tWDF* const rL, tWDF* const rR);
-    void    tWDF_free                   (tWDF* const);
-    void    tWDF_initToPool             (tWDF* const, WDFComponentType type, float value, tWDF* const rL, tWDF* const rR, tMempool* const);
-    void    tWDF_freeFromPool           (tWDF* const, tMempool* const);
-    
-    float   tWDF_tick                   (tWDF* const, float sample, tWDF* const outputPoint, uint8_t paramsChanged);
-    
-    void    tWDF_setValue               (tWDF* const, float value);
-    void    tWDF_setSampleRate          (tWDF* const, float sample_rate);
-    uint8_t tWDF_isLeaf                 (tWDF* const);
-    
-    float   tWDF_getPortResistance      (tWDF* const);
-    float   tWDF_getReflectedWaveUp     (tWDF* const, float input); //for tree, only uses input for resistive source
-    float   tWDF_getReflectedWaveDown   (tWDF* const, float input, float incident_wave); //for roots
-    void    tWDF_setIncidentWave        (tWDF* const, float incident_wave, float input);
-    
-    float   tWDF_getVoltage             (tWDF* const);
-    float   tWDF_getCurrent             (tWDF* const);
-    
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif /* LEAF_INC_LEAF_ELECTRICAL_H_ */
-
--- a/LEAF/Inc/leaf-envelopes.h
+++ /dev/null
@@ -1,366 +1,0 @@
-/*
- ==============================================================================
- 
- leaf-envelopes.h
- Created: 20 Jan 2017 12:02:17pm
- Author:  Michael R Mulshine
- 
- ==============================================================================
- */
-
-#ifndef LEAF_ENVELOPES_H_INCLUDED
-#define LEAF_ENVELOPES_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-filters.h"
-#include "leaf-delay.h"
-#include "leaf-analysis.h"
-#include "leaf-envelopes.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* Attack-Decay envelope */
-    typedef struct _tEnvelope {
-        
-       const float *exp_buff;
-       const float *inc_buff;
-        uint32_t buff_size;
-        
-        float next;
-        
-        float attackInc, decayInc, rampInc;
-        
-        int inAttack, inDecay, inRamp;
-        
-        int loop;
-        
-        float gain, rampPeak;
-        
-        float attackPhase, decayPhase, rampPhase;
-        
-    } _tEnvelope;
-    
-    typedef _tEnvelope* tEnvelope;
-    
-    void    tEnvelope_init          (tEnvelope* const, float attack, float decay, int loop);
-    void    tEnvelope_free          (tEnvelope* const);
-    void    tEnvelope_initToPool    (tEnvelope* const, float attack, float decay, int loop, tMempool* const);
-    void    tEnvelope_freeFromPool  (tEnvelope* const, tMempool* const);
-    
-    float   tEnvelope_tick          (tEnvelope* const);
-    void    tEnvelope_setAttack     (tEnvelope* const, float attack);
-    void    tEnvelope_setDecay      (tEnvelope* const, float decay);
-    void    tEnvelope_loop          (tEnvelope* const, int loop);
-    void    tEnvelope_on            (tEnvelope* const, float velocity);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-
-
-    /* Exponential Smoother */
-    typedef struct _tExpSmooth {
-        float factor, oneminusfactor;
-        float curr,dest;
-
-    } _tExpSmooth;
-
-    typedef _tExpSmooth* tExpSmooth;
-
-    void    tExpSmooth_init         (tExpSmooth* const, float val, float factor);
-    void    tExpSmooth_free         (tExpSmooth* const);
-    void    tExpSmooth_initToPool   (tExpSmooth* const, float val, float factor, tMempool* const);
-    void    tExpSmooth_freeFromPool (tExpSmooth* const, tMempool* const);
-
-    float   tExpSmooth_tick         (tExpSmooth* const);
-    float   tExpSmooth_sample       (tExpSmooth* const);
-    void    tExpSmooth_setFactor    (tExpSmooth* const, float factor);
-    void    tExpSmooth_setDest      (tExpSmooth* const, float dest);
-    void    tExpSmooth_setVal       (tExpSmooth* const, float val);
-    void    tExpSmooth_setValAndDest(tExpSmooth* const expsmooth, float val);
-
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-
-
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-
-
-    /* ADSR */
-        typedef struct _tADSR
-        {
-           const float *exp_buff;
-           const float *inc_buff;
-            uint32_t buff_size;
-
-            float next;
-
-            float attackInc, decayInc, releaseInc, rampInc;
-
-            oBool inAttack, inDecay, inSustain, inRelease, inRamp;
-
-            float sustain, gain, rampPeak, releasePeak;
-
-            float attackPhase, decayPhase, releasePhase, rampPhase;
-
-            float leakFactor;
-
-
-        } _tADSR;
-
-        typedef _tADSR* tADSR;
-
-        void    tADSR_init    (tADSR* const adsrenv, float attack, float decay, float sustain, float release);
-        void    tADSR_free          (tADSR* const);
-        void    tADSR_initToPool    (tADSR* const adsrenv, float attack, float decay, float sustain, float release, tMempool* const mp);
-        void    tADSR_freeFromPool  (tADSR* const, tMempool* const);
-
-        float   tADSR_tick          (tADSR* const);
-        void    tADSR_setAttack     (tADSR* const, float attack);
-        void    tADSR_setDecay      (tADSR* const, float decay);
-        void    tADSR_setSustain    (tADSR* const, float sustain);
-        void    tADSR_setRelease    (tADSR* const, float release);
-        void    tADSR_setLeakFactor (tADSR* const, float leakFactor);
-        void    tADSR_on            (tADSR* const, float velocity);
-        void    tADSR_off           (tADSR* const);
-
-
-    
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-
-
-    /* ADSR2 */
-     typedef struct _tADSR2
-     {
-         float sampleRateInMs;
-         float attack;
-         float decay;
-         float release;
-         float attackLambda;
-         float decayLambda;
-         float releaseLambda;
-         float sustain;
-         float leakGain;
-         float leakFactor;
-         float targetGainSquared;
-         float factor;
-         float oneMinusFactor;
-         float gain;
-         uint8_t attacking;
-         uint8_t gate;
-         float env;
-         float envTarget;
-     } _tADSR2;
-
-     typedef _tADSR2* tADSR2;
-
-     void    tADSR2_init          (tADSR2* const, float attack, float decay, float sustain, float release);
-     void    tADSR2_free          (tADSR2* const);
-     void    tADSR2_initToPool    (tADSR2* const, float attack, float decay, float sustain, float release, tMempool* const);
-     void    tADSR2_freeFromPool  (tADSR2* const, tMempool* const);
-
-     float   tADSR2_tick          (tADSR2* const);
-     void    tADSR2_setAttack     (tADSR2* const, float attack);
-     void    tADSR2_setDecay      (tADSR2* const, float decay);
-     void    tADSR2_setSustain    (tADSR2* const, float sustain);
-     void    tADSR2_setRelease    (tADSR2* const, float release);
-     void    tADSR2_setLeakFactor (tADSR2* const, float leakFactor);
-     void    tADSR2_on            (tADSR2* const, float velocity);
-     void    tADSR2_off           (tADSR2* const);
-
-
-     // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-
-     // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-     enum envState {
-         env_idle = 0,
-         env_attack,
-         env_decay,
-         env_sustain,
-         env_release,
-         env_ramp
-     };
-
-     /* ADSR3 */
-     typedef struct _tADSR3
-     {
-         float sampleRateInMs;
-         int state;
-         float output;
-         float attackRate;
-         float decayRate;
-         float releaseRate;
-         float attackCoef;
-         float decayCoef;
-         float releaseCoef;
-         float sustainLevel;
-         float targetRatioA;
-         float targetRatioDR;
-         float attackBase;
-         float decayBase;
-         float releaseBase;
-         float leakFactor;
-         float targetGainSquared;
-         float factor;
-         float oneMinusFactor;
-         float gain;
-
-     } _tADSR3;
-
-     typedef _tADSR3* tADSR3;
-
-     void    tADSR3_init          (tADSR3* const, float attack, float decay, float sustain, float release);
-     void    tADSR3_free          (tADSR3* const);
-     void    tADSR3_initToPool    (tADSR3* const, float attack, float decay, float sustain, float release, tMempool* const);
-     void    tADSR3_freeFromPool  (tADSR3* const, tMempool* const);
-
-     float   tADSR3_tick          (tADSR3* const);
-     void    tADSR3_setAttack     (tADSR3* const, float attack);
-     void    tADSR3_setDecay      (tADSR3* const, float decay);
-     void    tADSR3_setSustain    (tADSR3* const, float sustain);
-     void    tADSR3_setRelease    (tADSR3* const, float release);
-     void    tADSR3_setLeakFactor (tADSR3* const, float leakFactor);
-     void    tADSR3_on            (tADSR3* const, float velocity);
-     void    tADSR3_off           (tADSR3* const);
-
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    //ADSR4
-
-     
-     typedef struct _tADSR4
-         {
-            const float *exp_buff;
-             uint32_t buff_size;
-             uint32_t buff_sizeMinusOne;
-             float bufferSizeDividedBySampleRateInMs;
-             float next;
-
-             float attackInc, decayInc, releaseInc, rampInc;
-
-             uint32_t whichStage;
-
-             float sustain, gain, rampPeak, releasePeak;
-
-             float attackPhase, decayPhase, releasePhase, rampPhase;
-
-             float leakFactor;
-
-
-         } _tADSR4;
-
-         typedef _tADSR4* tADSR4;
-
-         void    tADSR4_init          (tADSR4* const, float attack, float decay, float sustain, float release, float* expBuffer, int bufferSize);
-         void    tADSR4_free          (tADSR4* const);
-         void    tADSR4_initToPool    (tADSR4* const, float attack, float decay, float sustain, float release, float* expBuffer, int bufferSize, tMempool* const);
-         void    tADSR4_freeFromPool  (tADSR4* const, tMempool* const);
-
-         float   tADSR4_tick          (tADSR4* const);
-         float   tADSR4_tickNoInterp  (tADSR4* const adsrenv);
-         void    tADSR4_setAttack     (tADSR4* const, float attack);
-         void    tADSR4_setDecay      (tADSR4* const, float decay);
-         void    tADSR4_setSustain    (tADSR4* const, float sustain);
-         void    tADSR4_setRelease    (tADSR4* const, float release);
-         void    tADSR4_setLeakFactor (tADSR4* const, float leakFactor);
-         void    tADSR4_on            (tADSR4* const, float velocity);
-         void    tADSR4_off           (tADSR4* const);
-     // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-
-    /* Ramp */
-    typedef struct _tRamp {
-        float inc;
-        float inv_sr_ms;
-        float minimum_time;
-        float curr,dest;
-        float time;
-        float factor;
-        int samples_per_tick;
-        
-    } _tRamp;
-    
-    typedef _tRamp* tRamp;
-    
-    void    tRamp_init          (tRamp* const, float time, int samplesPerTick);
-    void    tRamp_free          (tRamp* const);
-    void    tRamp_initToPool    (tRamp* const, float time, int samplesPerTick, tMempool* const);
-    void    tRamp_freeFromPool  (tRamp* const, tMempool* const);
-    
-    float   tRamp_tick          (tRamp* const);
-    float   tRamp_sample        (tRamp* const);
-    void    tRamp_setTime       (tRamp* const, float time);
-    void    tRamp_setDest       (tRamp* const, float dest);
-    void    tRamp_setVal        (tRamp* const, float val);
-
-    ///=============
-    /* Ramp Updown*/
-    typedef struct _tRampUpDown {
-        float upInc;
-        float downInc;
-        float inv_sr_ms;
-        float minimum_time;
-        float curr,dest;
-        float upTime;
-        float downTime;
-        int samples_per_tick;
-
-    } _tRampUpDown;
-
-    typedef _tRampUpDown* tRampUpDown;
-
-    void    tRampUpDown_init          (tRampUpDown* const, float upTime, float downTime, int samplesPerTick);
-    void    tRampUpDown_free          (tRampUpDown* const);
-    void    tRampUpDown_initToPool    (tRampUpDown* const, float upTime, float downTime, int samplesPerTick, tMempool* const);
-    void    tRampUpDown_freeFromPool  (tRampUpDown* const, tMempool* const);
-    
-    float   tRampUpDown_tick          (tRampUpDown* const);
-    float   tRampUpDown_sample        (tRampUpDown* const);
-    void    tRampUpDown_setUpTime       (tRampUpDown* const, float upTime);
-    void    tRampUpDown_setDownTime       (tRampUpDown* const, float downTime);
-    void    tRampUpDown_setDest       (tRampUpDown* const, float dest);
-    void    tRampUpDown_setVal        (tRampUpDown* const, float val);
-
-
-    ///=========================
-    //Slide (based on Max/MSP's slide~)
-	typedef struct _tSlide {
-		float prevOut;
-		float currentOut;
-		float prevIn;
-		float invUpSlide;
-		float invDownSlide;
-
-	} _tSlide;
-
-	typedef _tSlide* tSlide;
-
-	void    tSlide_init          (tSlide* const, float upSlide, float downSlide);
-	void    tSlide_free          (tSlide* const);
-	void    tSlide_initToPool    (tSlide* const, float upSlide, float downSlide, tMempool* const);
-	void    tSlide_freeFromPool  (tSlide* const, tMempool* const);
-
-	float   tSlide_tick          (tSlide* const, float in);
-
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_ENVELOPES_H_INCLUDED
-
-
-
--- a/LEAF/Inc/leaf-filters.h
+++ /dev/null
@@ -1,486 +1,0 @@
-/*==============================================================================
- 
- leaf-filters.h
- Created: 20 Jan 2017 12:01:10pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#ifndef LEAF_FILTERS_H_INCLUDED
-#define LEAF_FILTERS_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-delay.h"
-#include "leaf-tables.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    /* tAllpass: Schroeder allpass. Comb-filter with feedforward and feedback. */
-    typedef struct _tAllpass
-    {
-        float gain;
-        
-        tLinearDelay delay;
-        
-        float lastOut;
-        
-    } _tAllpass;
-    
-    typedef _tAllpass* tAllpass;
-    
-    void    tAllpass_init           (tAllpass* const, float initDelay, uint32_t maxDelay);
-    void    tAllpass_free           (tAllpass* const);
-    void    tAllpass_initToPool     (tAllpass* const, float initDelay, uint32_t maxDelay, tMempool* const);
-    void    tAllpass_freeFromPool   (tAllpass* const, tMempool* const);
-    
-    float   tAllpass_tick           (tAllpass* const, float input);
-    void    tAllpass_setGain        (tAllpass* const, float gain);
-    void    tAllpass_setDelay       (tAllpass* const, float delay);
-    
-    
-    //==============================================================================
-    
-    /* tOnePole: OnePole filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tOnePole
-    {
-        float gain;
-        float a0,a1;
-        float b0,b1;
-        float lastIn, lastOut;
-
-        
-    } _tOnePole;
-    
-    typedef _tOnePole* tOnePole;
-    
-    void    tOnePole_init           (tOnePole* const, float thePole);
-    void    tOnePole_free           (tOnePole* const);
-    void    tOnePole_initToPool     (tOnePole* const, float thePole, tMempool* const);
-    void    tOnePole_freeFromPool   (tOnePole* const, tMempool* const);
-    
-    float   tOnePole_tick           (tOnePole* const, float input);
-    void    tOnePole_setB0          (tOnePole* const, float b0);
-    void    tOnePole_setA1          (tOnePole* const, float a1);
-    void    tOnePole_setPole        (tOnePole* const, float thePole);
-    void    tOnePole_setFreq        (tOnePole* const, float freq);
-    void    tOnePole_setCoefficients(tOnePole* const, float b0, float a1);
-    void    tOnePole_setGain        (tOnePole* const, float gain);
-    
-    //==============================================================================
-    
-    /* TwoPole filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tTwoPole
-    {
-        float gain;
-        float a0, a1, a2;
-        float b0;
-        
-        float radius, frequency;
-        oBool normalize;
-
-        float lastOut[2];
-        
-    } _tTwoPole;
-    
-    typedef _tTwoPole* tTwoPole;
-    
-    void    tTwoPole_init           (tTwoPole* const);
-    void    tTwoPole_free           (tTwoPole* const);
-    void    tTwoPole_initToPool     (tTwoPole* const, tMempool* const);
-    void    tTwoPole_freeFromPool   (tTwoPole* const, tMempool* const);
-    
-    float   tTwoPole_tick           (tTwoPole* const, float input);
-    void    tTwoPole_setB0          (tTwoPole* const, float b0);
-    void    tTwoPole_setA1          (tTwoPole* const, float a1);
-    void    tTwoPole_setA2          (tTwoPole* const, float a2);
-    void    tTwoPole_setResonance   (tTwoPole* const, float freq, float radius, oBool normalize);
-    void    tTwoPole_setCoefficients(tTwoPole* const, float b0, float a1, float a2);
-    void    tTwoPole_setGain        (tTwoPole* const, float gain);
-    
-    //==============================================================================
-    
-    /* OneZero filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tOneZero
-    {
-        float gain;
-        float b0,b1;
-        float lastIn, lastOut, frequency;
-        
-    } _tOneZero;
-    
-    typedef _tOneZero* tOneZero;
-    
-    void    tOneZero_init           (tOneZero* const, float theZero);
-    void    tOneZero_free           (tOneZero* const);
-    void    tOneZero_initToPool     (tOneZero* const, float theZero, tMempool* const);
-    void    tOneZero_freeFromPool   (tOneZero* const, tMempool* const);
-    
-    float   tOneZero_tick           (tOneZero* const, float input);
-    void    tOneZero_setB0          (tOneZero* const, float b0);
-    void    tOneZero_setB1          (tOneZero* const, float b1);
-    void    tOneZero_setZero        (tOneZero* const, float theZero);
-    void    tOneZero_setCoefficients(tOneZero* const, float b0, float b1);
-    void    tOneZero_setGain        (tOneZero* const, float gain);
-    float   tOneZero_getPhaseDelay  (tOneZero *f, float frequency );
-    
-    //==============================================================================
-    
-    /* TwoZero filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tTwoZero
-    {
-        float gain;
-        float b0, b1, b2;
-        
-        float frequency, radius;
-        
-        float lastIn[2];
-        
-    } _tTwoZero;
-    
-    typedef _tTwoZero* tTwoZero;
-    
-    void    tTwoZero_init           (tTwoZero* const);
-    void    tTwoZero_free           (tTwoZero* const);
-    void    tTwoZero_initToPool     (tTwoZero* const, tMempool* const);
-    void    tTwoZero_freeFromPool   (tTwoZero* const, tMempool* const);
-    
-    float   tTwoZero_tick           (tTwoZero* const, float input);
-    void    tTwoZero_setB0          (tTwoZero* const, float b0);
-    void    tTwoZero_setB1          (tTwoZero* const, float b1);
-    void    tTwoZero_setB2          (tTwoZero* const, float b2);
-    void    tTwoZero_setNotch       (tTwoZero* const, float frequency, float radius);
-    void    tTwoZero_setCoefficients(tTwoZero* const, float b0, float b1, float b2);
-    void    tTwoZero_setGain        (tTwoZero* const, float gain);
-    
-    //==============================================================================
-    
-    /* PoleZero filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tPoleZero
-    {
-        float gain;
-        float a0,a1;
-        float b0,b1;
-        
-        float lastIn, lastOut;
-        
-    } _tPoleZero;
-    
-    typedef _tPoleZero* tPoleZero;
-    
-    void    tPoleZero_init              (tPoleZero* const);
-    void    tPoleZero_free              (tPoleZero* const);
-    void    tPoleZero_initToPool        (tPoleZero* const, tMempool* const);
-    void    tPoleZero_freeFromPool      (tPoleZero* const, tMempool* const);
-    
-    float   tPoleZero_tick              (tPoleZero* const, float input);
-    void    tPoleZero_setB0             (tPoleZero* const, float b0);
-    void    tPoleZero_setB1             (tPoleZero* const, float b1);
-    void    tPoleZero_setA1             (tPoleZero* const, float a1);
-    void    tPoleZero_setCoefficients   (tPoleZero* const, float b0, float b1, float a1);
-    void    tPoleZero_setAllpass        (tPoleZero* const, float coeff);
-    void    tPoleZero_setBlockZero      (tPoleZero* const, float thePole);
-    void    tPoleZero_setGain           (tPoleZero* const, float gain);
-    
-    //==============================================================================
-    
-    /* BiQuad filter, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tBiQuad
-    {
-        float gain;
-        float a0, a1, a2;
-        float b0, b1, b2;
-        
-        float lastIn[2];
-        float lastOut[2];
-        
-        float frequency, radius;
-        oBool normalize;
-    } _tBiQuad;
-    
-    typedef _tBiQuad* tBiQuad;
-    
-    void    tBiQuad_init           (tBiQuad* const);
-    void    tBiQuad_free           (tBiQuad* const);
-    void    tBiQuad_initToPool     (tBiQuad* const, tMempool* const);
-    void    tBiQuad_freeFromPool   (tBiQuad* const, tMempool* const);
-    
-    float   tBiQuad_tick           (tBiQuad* const, float input);
-    void    tBiQuad_setB0          (tBiQuad* const, float b0);
-    void    tBiQuad_setB1          (tBiQuad* const, float b1);
-    void    tBiQuad_setB2          (tBiQuad* const, float b2);
-    void    tBiQuad_setA1          (tBiQuad* const, float a1);
-    void    tBiQuad_setA2          (tBiQuad* const, float a2);
-    void    tBiQuad_setNotch       (tBiQuad* const, float freq, float radius);
-    void    tBiQuad_setResonance   (tBiQuad* const, float freq, float radius, oBool normalize);
-    void    tBiQuad_setCoefficients(tBiQuad* const, float b0, float b1, float b2, float a1, float a2);
-    void    tBiQuad_setGain        (tBiQuad* const, float gain);
-    
-    //==============================================================================
-    
-/* State Variable Filter, algorithm from Andy Simper. */
-    typedef enum SVFType
-    {
-        SVFTypeHighpass = 0,
-        SVFTypeLowpass,
-        SVFTypeBandpass,
-        SVFTypeNotch,
-        SVFTypePeak,
-        SVFTypeLowShelf,
-        SVFTypeHighShelf
-    } SVFType;
-    
-    typedef struct _tSVF
-    {
-        SVFType type;
-        float cutoff, Q;
-        float ic1eq,ic2eq;
-        float g,k,a1,a2,a3,cH,cB,cL,cBK;
-
-        
-    } _tSVF;
-    
-    typedef _tSVF* tSVF;
-    
-    void    tSVF_init           (tSVF* const, SVFType type, float freq, float Q);
-    void    tSVF_free           (tSVF* const);
-    void    tSVF_initToPool     (tSVF* const, SVFType type, float freq, float Q, tMempool* const);
-    void    tSVF_freeFromPool   (tSVF* const, tMempool* const);
-    
-    float   tSVF_tick           (tSVF* const, float v0);
-    void    tSVF_setFreq        (tSVF* const, float freq);
-    void    tSVF_setQ           (tSVF* const, float Q);
-    void    tSVF_setFreqAndQ    (tSVF* const svff, float freq, float Q);
-    //==============================================================================
-    
-    /* Efficient State Variable Filter for 14-bit control input, [0, 4096). */
-    typedef struct _tEfficientSVF
-    {
-        SVFType type;
-        float cutoff, Q;
-        float ic1eq,ic2eq;
-        float g,k,a1,a2,a3;
-        
-    } _tEfficientSVF;
-    
-    typedef _tEfficientSVF* tEfficientSVF;
-    
-    void    tEfficientSVF_init          (tEfficientSVF* const, SVFType type, uint16_t input, float Q);
-    void    tEfficientSVF_free          (tEfficientSVF* const);
-    void    tEfficientSVF_initToPool    (tEfficientSVF* const, SVFType type, uint16_t input, float Q, tMempool* const);
-    void    tEfficientSVF_freeFromPool  (tEfficientSVF* const, tMempool* const);
-    
-    float   tEfficientSVF_tick          (tEfficientSVF* const, float v0);
-    void    tEfficientSVF_setFreq       (tEfficientSVF* const, uint16_t controlFreq);
-    void    tEfficientSVF_setQ          (tEfficientSVF* const, float Q);
-    
-    //==============================================================================
-    
-    /* Simple Highpass filter. */
-    typedef struct _tHighpass
-    {
-        float xs, ys, R;
-        float frequency;
-        
-    } _tHighpass;
-    
-    typedef _tHighpass* tHighpass;
-    
-    void    tHighpass_init          (tHighpass* const, float freq);
-    void    tHighpass_free          (tHighpass* const);
-    void    tHighpass_initToPool    (tHighpass* const, float freq, tMempool* const);
-    void    tHighpass_freeFromPool  (tHighpass* const, tMempool* const);
-    
-    float   tHighpass_tick          (tHighpass* const, float x);
-    void    tHighpass_setFreq       (tHighpass* const, float freq);
-    float   tHighpass_getFreq       (tHighpass* const);
-    
-    //==============================================================================
-    
-    // Butterworth Filter
-#define NUM_SVF_BW 16
-    typedef struct _tButterworth
-    {
-        float gain;
-        
-        int N;
-        
-        tSVF low[NUM_SVF_BW];
-        tSVF high[NUM_SVF_BW];
-        
-        float f1,f2;
-        
-    } _tButterworth;
-    
-    typedef _tButterworth* tButterworth;
-    
-    void    tButterworth_init           (tButterworth* const, int N, float f1, float f2);
-    void    tButterworth_free           (tButterworth* const);
-    void    tButterworth_initToPool     (tButterworth* const, int N, float f1, float f2, tMempool* const);
-    void    tButterworth_freeFromPool   (tButterworth* const, tMempool* const);
-    
-    float   tButterworth_tick           (tButterworth* const, float input);
-    void    tButterworth_setF1          (tButterworth* const, float in);
-    void    tButterworth_setF2          (tButterworth* const, float in);
-    void    tButterworth_setFreqs       (tButterworth* const, float f1, float f2);
-    
-    //==============================================================================
-    
-    typedef struct _tFIR
-    {
-        float* past;
-        float* coeff;
-        int numTaps;
-    } _tFIR;
-    
-    typedef _tFIR* tFIR;
-    
-    void    tFIR_init           (tFIR* const, float* coeffs, int numTaps);
-    void    tFIR_free           (tFIR* const);
-    void    tFIR_initToPool     (tFIR* const, float* coeffs, int numTaps, tMempool* const);
-    void    tFIR_freeFromPool   (tFIR* const, tMempool* const);
-    
-    float   tFIR_tick           (tFIR* const, float input);
-
-    
-    //==============================================================================
-    
-
-    typedef struct _tMedianFilter
-    {
-    	float* val;
-    	int* age;
-    	int m;
-    	int size;
-    	int middlePosition;
-    	int last;
-    	int pos;
-    } _tMedianFilter;
-
-    typedef _tMedianFilter* tMedianFilter;
-
-    void    tMedianFilter_init           (tMedianFilter* const, int size);
-	void    tMedianFilter_free           (tMedianFilter* const);
-	void    tMedianFilter_initToPool     (tMedianFilter* const, int size, tMempool* const);
-	void    tMedianFilter_freeFromPool   (tMedianFilter* const, tMempool* const);
-
-	float   tMedianFilter_tick           (tMedianFilter* const, float input);
-
-
-
-
-
-	//Vadim Zavalishin style from VA book (from implementation in RSlib posted to kvr forum)
-
-    typedef enum VZFilterType
-    {
-    	Highpass = 0,
-        Lowpass,
-        BandpassSkirt,
-		BandpassPeak,
-		BandReject,
-        Bell,
-		Lowshelf,
-		Highshelf,
-		Morph,
-		Bypass,
-		Allpass
-    } VZFilterType;
-
-
-	typedef struct _tVZFilter
-	    {
-			VZFilterType type;
-			// state:
-			float s1, s2;
-
-			// filter coefficients:
-			float g;          // embedded integrator gain
-			float R2;         // twice the damping coefficient (R2 == 2*R == 1/Q)
-			float h;          // factor for feedback (== 1/(1+2*R*g+g*g))
-			float cL, cB, cH; // coefficients for low-, band-, and highpass signals
-
-			// parameters:
-			float fs;    // sample-rate
-			float fc;    // characteristic frequency
-			float G;     // gain
-			float invG;		//1/gain
-			float B;     // bandwidth (in octaves)
-			float m;     // morph parameter (0...1)
-
-			float sr;    //local sampling rate of filter (may be different from leaf sr if oversampled)
-			float inv_sr;
-
-	    } _tVZFilter;
-
-	    typedef _tVZFilter* tVZFilter;
-
-	    void    tVZFilter_init           (tVZFilter* const, VZFilterType type, float freq, float Q);
-		void    tVZFilter_free           (tVZFilter* const);
-		void    tVZFilter_initToPool     (tVZFilter* const, VZFilterType type, float freq, float Q, tMempool* const);
-		void    tVZFilter_freeFromPool   (tVZFilter* const, tMempool* const);
-		void 	tVZFilter_setSampleRate  (tVZFilter* const, float sampleRate);
-		float   tVZFilter_tick           	(tVZFilter* const, float input);
-		float   tVZFilter_tickEfficient           	(tVZFilter* const vf, float in);
-		void   tVZFilter_calcCoeffs           (tVZFilter* const);
-		void   tVZFilter_setBandwidth        	(tVZFilter* const, float bandWidth);
-		void   tVZFilter_setFreq           (tVZFilter* const, float freq);
-		void   tVZFilter_setFreqAndBandwidth    (tVZFilter* const vf, float freq, float bw);
-		void   tVZFilter_setGain          		(tVZFilter* const, float gain);
-		void   tVZFilter_setType          		(tVZFilter* const, VZFilterType type);
-		float 	tVZFilter_BandwidthToR		(tVZFilter* const vf, float B);
-
-
-
-
-		//diode ladder filter
-		typedef struct _tDiodeFilter
-		    {
-
-			 	 float f;
-			 	 float r;
-			 	 float Vt;
-			 	 float n;
-			 	 float gamma;
-			 	 float zi;
-			 	 float g0inv;
-			 	 float g1inv;
-			 	 float g2inv;
-			 	 float s0, s1, s2, s3;
-
-		    } _tDiodeFilter;
-
-		    typedef _tDiodeFilter* tDiodeFilter;
-
-		    void    tDiodeFilter_init           (tDiodeFilter* const, float freq, float Q);
-			void    tDiodeFilter_free           (tDiodeFilter* const);
-			void    tDiodeFilter_initToPool     (tDiodeFilter* const, float freq, float Q, tMempool* const);
-			void    tDiodeFilter_freeFromPool   (tDiodeFilter* const, tMempool* const);
-
-			float   tDiodeFilter_tick           	(tDiodeFilter* const, float input);
-			void    tDiodeFilter_setFreq     (tDiodeFilter* const vf, float cutoff);
-			void    tDiodeFilter_setQ     (tDiodeFilter* const vf, float resonance);
-
-
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_FILTERS_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-global.h
+++ /dev/null
@@ -1,52 +1,0 @@
-/*
- ==============================================================================
- 
- leaf-global.h
- Created: 24 Oct 2019 2:24:38pm
- Author:  Matthew Wang
- 
- ==============================================================================
- */
-
-#ifndef LEAF_GLOBAL_H_INCLUDED
-#define LEAF_GLOBAL_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-#include "leaf-mempool.h"
-    
-    /*!
-     * @ingroup leaf
-     * @brief The struct of the global LEAF instance `leaf`. Contains global variables and settings.
-     */
-    struct LEAF
-    {
-        ///@{ 
-        float   sampleRate; //!< The current audio sample rate. Set with LEAF_setSampleRate().
-        float   invSampleRate; //!< The inverse of the current sample rate.
-        int     blockSize; //!< The audio block size.
-        float   twoPiTimesInvSampleRate; //!<  Two-pi times the inverse of the current sample rate.
-        float   (*random)(void); //!< A pointer to the random() function provided on initialization.
-        int     clearOnAllocation; //!< A flag that determines whether memory allocated from the LEAF memory pool will be cleared.
-        tMempool mempool; //!< The default LEAF mempool object.
-        _tMempool _mempool;
-        size_t header_size; //!< The size in bytes of memory region headers within mempools.
-        ///@}
-    };
-    typedef struct LEAF LEAF;
-    
-    extern LEAF leaf;
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_GLOBAL_H_INCLUDED
-
-//==============================================================================
-
-
--- a/LEAF/Inc/leaf-instruments.h
+++ /dev/null
@@ -1,209 +1,0 @@
-/*==============================================================================
- 
- leaf-instruments.h
- Created: 30 Nov 2018 10:24:44am
- Author:  airship
- 
- ==============================================================================*/
-
-#ifndef LEAF_INSTRUMENTS_H_INCLUDED
-#define LEAF_INSTRUMENTS_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-oscillators.h"
-#include "leaf-filters.h"
-#include "leaf-envelopes.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    // 808 Cowbell
-    typedef struct _t808Cowbell {
-        
-        tSquare p[2];
-        tNoise stick;
-        tSVF bandpassOsc;
-        tSVF bandpassStick;
-        tEnvelope envGain;
-        tEnvelope envStick;
-        tEnvelope envFilter;
-        tHighpass highpass;
-        float oscMix;
-        float filterCutoff;
-        uint8_t useStick;
-        
-    } _t808Cowbell;
-    
-    typedef _t808Cowbell* t808Cowbell;
-    
-    void    t808Cowbell_init            (t808Cowbell* const, int useStick);
-    void    t808Cowbell_free            (t808Cowbell* const);
-    void    t808Cowbell_initToPool      (t808Cowbell* const, int useStick, tMempool* const);
-    void    t808Cowbell_freeFromPool    (t808Cowbell* const, tMempool* const);
-    
-    float   t808Cowbell_tick            (t808Cowbell* const);
-    void    t808Cowbell_on              (t808Cowbell* const, float vel);
-    void    t808Cowbell_setDecay        (t808Cowbell* const, float decay);
-    void    t808Cowbell_setHighpassFreq (t808Cowbell* const, float freq);
-    void    t808Cowbell_setBandpassFreq (t808Cowbell* const, float freq);
-    void    t808Cowbell_setFreq         (t808Cowbell* const, float freq);
-    void    t808Cowbell_setOscMix       (t808Cowbell* const, float oscMix);
-    void    t808Cowbell_setStick        (t808Cowbell* const, int useStick);
-    
-    //==============================================================================
-    
-    // 808 Hihat
-    typedef struct _t808Hihat {
-        
-        // 6 Square waves
-        tSquare p[6];
-        tNoise n;
-        tSVF bandpassOsc;
-        tSVF bandpassStick;
-        tEnvelope envGain;
-        tEnvelope envStick;
-        tEnvelope noiseFMGain;
-        tHighpass highpass;
-        tNoise stick;
-        
-        float freq;
-        float stretch;
-        float FM_amount;
-        float oscNoiseMix;
-        
-    } _t808Hihat;
-    
-    typedef _t808Hihat* t808Hihat;
-    
-    void    t808Hihat_init                  (t808Hihat* const);
-    void    t808Hihat_free                  (t808Hihat* const);
-    void    t808Hihat_initToPool            (t808Hihat* const, tMempool* const);
-    void    t808Hihat_freeFromPool          (t808Hihat* const, tMempool* const);
-    
-    float   t808Hihat_tick                  (t808Hihat* const);
-    void    t808Hihat_on                    (t808Hihat* const, float vel);
-    void    t808Hihat_setOscNoiseMix        (t808Hihat* const, float oscNoiseMix);
-    void    t808Hihat_setDecay              (t808Hihat* const, float decay);
-    void    t808Hihat_setHighpassFreq       (t808Hihat* const, float freq);
-    void    t808Hihat_setOscBandpassFreq    (t808Hihat* const, float freq);
-    void    t808Hihat_setOscBandpassQ       (t808Hihat* const hihat, float Q);
-    void    t808Hihat_setStickBandPassFreq  (t808Hihat* const, float freq);
-    void    t808Hihat_setStickBandPassQ     (t808Hihat* const hihat, float Q);
-    void    t808Hihat_setOscFreq            (t808Hihat* const, float freq);
-    void    t808Hihat_setStretch            (t808Hihat* const hihat, float stretch);
-    void    t808Hihat_setFM                 (t808Hihat* const hihat, float FM_amount);
-    
-    //==============================================================================
-    
-    // 808 Snare
-    typedef struct _t808Snare {
-        
-        // Tone 1, Tone 2, Noise
-        tTriangle tone[2]; // Tri (not yet antialiased or wavetabled)
-        tNoise noiseOsc;
-        tSVF toneLowpass[2];
-        tSVF noiseLowpass; // Lowpass from SVF filter
-        tEnvelope toneEnvOsc[2];
-        tEnvelope toneEnvGain[2];
-        tEnvelope noiseEnvGain;
-        tEnvelope toneEnvFilter[2];
-        tEnvelope noiseEnvFilter;
-        
-        float toneGain[2];
-        float noiseGain;
-        
-        float toneNoiseMix;
-        
-        float tone1Freq, tone2Freq;
-        
-        float noiseFilterFreq;
-        
-    } _t808Snare;
-    
-    typedef _t808Snare* t808Snare;
-    
-    void    t808Snare_init                  (t808Snare* const);
-    void    t808Snare_free                  (t808Snare* const);
-    void    t808Snare_initToPool            (t808Snare* const, tMempool* const);
-    void    t808Snare_freeFromPool          (t808Snare* const, tMempool* const);
-    
-    float   t808Snare_tick                  (t808Snare* const);
-    void    t808Snare_on                    (t808Snare* const, float vel);
-    void    t808Snare_setTone1Freq          (t808Snare* const, float freq);
-    void    t808Snare_setTone2Freq          (t808Snare* const, float freq);
-    void    t808Snare_setTone1Decay         (t808Snare* const, float decay);
-    void    t808Snare_setTone2Decay         (t808Snare* const, float decay);
-    void    t808Snare_setNoiseDecay         (t808Snare* const, float decay);
-    void    t808Snare_setToneNoiseMix       (t808Snare* const, float toneNoiseMix);
-    void    t808Snare_setNoiseFilterFreq    (t808Snare* const, float noiseFilterFreq);
-    void    t808Snare_setNoiseFilterQ       (t808Snare* const, float noiseFilterQ);
-    
-    //==============================================================================
-    
-    // 808 Kick
-    typedef struct _t808Kick {
-        
-        
-        tCycle tone; // Tri
-        tNoise noiseOsc;
-        tSVF toneLowpass;
-        tEnvelope toneEnvOscChirp;
-        tEnvelope toneEnvOscSigh;
-        tEnvelope toneEnvGain;
-        tEnvelope noiseEnvGain;
-        tEnvelope toneEnvFilter;
-        
-        float toneGain;
-        float noiseGain;
-        
-        float toneInitialFreq;
-        float sighAmountInHz;
-        float chirpRatioMinusOne;
-        float noiseFilterFreq;
-        
-    } _t808Kick;
-    
-    typedef _t808Kick* t808Kick;
-    
-    void    t808Kick_init               (t808Kick* const);
-    void    t808Kick_free               (t808Kick* const);
-    void    t808Kick_initToPool         (t808Kick* const, tMempool* const);
-    void    t808Kick_freeFromPool       (t808Kick* const, tMempool* const);
-    
-    float   t808Kick_tick               (t808Kick* const);
-    void    t808Kick_on                 (t808Kick* const, float vel);
-    void    t808Kick_setToneFreq        (t808Kick* const, float freq);
-    void    t808Kick_setToneDecay       (t808Kick* const, float decay);
-    void    t808Kick_setNoiseDecay      (t808Kick* const, float decay);
-    void    t808Kick_setSighAmount      (t808Kick* const, float sigh);
-    void    t808Kick_setChirpAmount     (t808Kick* const, float chirp);
-    void    t808Kick_setToneNoiseMix    (t808Kick* const, float toneNoiseMix);
-    void    t808Kick_setNoiseFilterFreq (t808Kick* const, float noiseFilterFreq);
-    void    t808Kick_setNoiseFilterQ    (t808Kick* const, float noiseFilterQ);
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_INSTRUMENTS_H_INCLUDED
-
-//==============================================================================
-
-
-
--- a/LEAF/Inc/leaf-math.h
+++ /dev/null
@@ -1,212 +1,0 @@
-/*==============================================================================
- 
- leaf-math.h
- Created: 22 Jan 2017 7:02:56pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#ifndef LEAF_MATH_H_INCLUDED
-#define LEAF_MATH_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-#include "leaf-global.h"
-#include "math.h"
-#include "stdint.h"
-#include "stdlib.h"
-    
-    //==============================================================================
-    
-    //==============================================================================
-    
-    typedef enum oBool
-    {
-        OTRUE  = 1,
-        OFALSE = 0
-    }oBool;
-    
-    // Allows for bitwise operations on floats
-    union unholy_t { /* a union between a float and an integer */
-        float f;
-        int i;
-    };
-
-#define SQRT8 2.82842712475f
-#define WSCALE 1.30612244898f
-#define PI              (3.14159265358979f)
-#define TWO_PI          (6.28318530717958f)
-#define HALF_PI			(1.570796326794897f)
-
-#define VSF             1.0e-38f
-    
-#define MAX_DELAY       8192
-#define INV_128         0.0078125f
-    
-#define INV_20         0.05f
-#define INV_40         0.025f
-#define INV_80         0.0125f
-#define INV_160        0.00625f
-#define INV_320        0.003125f
-#define INV_640        0.0015625f
-#define INV_1280       0.00078125f
-#define INV_2560       0.000390625f
-#define INV_5120       0.0001953125f
-#define INV_10240      0.00009765625f
-#define INV_20480      0.000048828125f
-    
-    
-#define INV_TWELVE                 0.0833333333f
-#define INV_440                     0.0022727273f
-    
-#define LOG2                             0.3010299957f
-#define INV_LOG2                     3.321928095f
-    
-#define SOS_M                         343.0f
-#define TWO_TO_5                     32.0f
-#define INV_TWO_TO_5             0.03125f
-#define TWO_TO_7                     128.f
-#define INV_TWO_TO_7             0.0078125f
-#define TWO_TO_8                     256.f
-#define INV_TWO_TO_8             0.00390625f
-#define TWO_TO_9                     512.f
-#define INV_TWO_TO_9             0.001953125f
-#define TWO_TO_10                 1024.f
-#define INV_TWO_TO_10         0.0009765625f
-#define TWO_TO_11                 2048.f
-#define INV_TWO_TO_11         0.00048828125f
-#define TWO_TO_12                 4096.f
-#define INV_TWO_TO_12         0.00024414062f
-#define TWO_TO_15                 32768.f
-#define TWO_TO_16                 65536.f
-#define INV_TWO_TO_15         0.00003051757f
-#define INV_TWO_TO_16         0.00001525878f
-#define TWO_TO_16_MINUS_ONE 65535.0f
-#define TWO_TO_23        8388608.0f
-#define INV_TWO_TO_23    0.00000011920929f
-#define TWO_TO_31        2147483648.0f
-#define INV_TWO_TO_31    0.000000000465661f
-#define TWO_TO_32        4294967296.0f
-#define INV_TWO_TO_32    0.000000000232831f
-    
-#define ONE_OVER_SQRT2	0.707106781186548f
-
-#define LOGTEN 2.302585092994
-
-    // Jones shaper
-    float LEAF_shaper     (float input, float m_drive);
-    float LEAF_reedTable  (float input, float offset, float slope);
-    
-    float LEAF_reduct (float input, float ratio);
-    float LEAF_round (float input, float rnd);
-    float LEAF_bitwise_xor(float input, uint32_t op);
-    
-    float LEAF_reduct (float input, float ratio);
-    float LEAF_round (float input, float rnd);
-    float LEAF_bitwise_xor(float input, uint32_t op);
-    
-    float       LEAF_clip               (float min, float val, float max);
-    int         LEAF_clipInt            (int min, int val, int max);
-    float       LEAF_softClip            (float val, float thresh);
-    oBool       LEAF_isPrime            (uint64_t number );
-    
-    float       LEAF_midiToFrequency    (float f);
-    float       LEAF_frequencyToMidi(float f);
-    
-    void        LEAF_generate_sine     (float* buffer, int size);
-    void        LEAF_generate_sawtooth (float* buffer, float basefreq, int size);
-    void        LEAF_generate_triangle (float* buffer, float basefreq, int size);
-    void        LEAF_generate_square   (float* buffer, float basefreq, int size);
-    
-    // dope af
-    float       LEAF_chebyshevT(float in, int n);
-    float       LEAF_CompoundChebyshevT(float in, int n, float* amps);
-    
-    // Hermite interpolation
-    float LEAF_interpolate_hermite (float A, float B, float C, float D, float t);
-    float LEAF_interpolate_hermite_x(float yy0, float yy1, float yy2, float yy3, float xx);
-    float LEAF_interpolation_linear (float A, float B, float t);
-    
-    float interpolate3max(float *buf, const int peakindex);
-    float interpolate3phase(float *buf, const int peakindex);
-    
-    // alternative implementation for abs()
-    // REQUIRES: 32 bit integers
-    int fastabs_int(int in);
-    
-    // alternative implementation for abs()
-    // REQUIRES: 32 bit floats
-    float fastabsf(float f);
-    
-    float fastexp2f(float f);
-    
-    float fastPowf(float a, float b) ;
-    double fastPow(double a, double b);
-
-    
-    void LEAF_crossfade(float fade, float* volumes);
-
-
-    float LEAF_tanh(float x);
-    void LEAF_generate_sine(float* buffer, int size);
-    void LEAF_generate_sawtooth(float* buffer, float basefreq, int size);
-    void LEAF_generate_triangle(float* buffer, float basefreq, int size);
-    void LEAF_generate_square(float* buffer, float basefreq, int size);
-
-    //0.001 base gives a good curve that goes from 1 to near zero
-    //1000 gives a good curve from -1.0 to 0.0
-    void LEAF_generate_exp(float* buffer, float base, float start, float end, float offset, int size);
-
-    float LEAF_poly_blep(float t, float dt);
-    float LEAF_midiToFrequency(float f);
-
-
-    float fast_mtof(float f);
-
-    double fastexp(double x);
-
-    float fastexpf(float x);
-
-    double fasterexp(double x);
-
-    float fasterexpf(float x);
-
-    float mtof(float f);
-    
-    float fast_mtof(float f);
-
-    float faster_mtof(float f);
-
-    float ftom(float f);
-    
-    float powtodb(float f);
-    
-    float rmstodb(float f);
-    
-    float dbtopow(float f);
-    
-    float dbtorms(float f);
-    
-    float atodb(float a);
-
-    float dbtoa(float db);
-
-    float fastdbtoa(float db);
-
-    float maximum (float num1, float num2);
-
-    float minimum (float num1, float num2);
-
-
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_MATH_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-mempool.h
+++ /dev/null
@@ -1,159 +1,0 @@
-/*==============================================================================
- 
- In short, mpool is distributed under so called "BSD license",
- 
- Copyright (c) 2009-2010 Tatsuhiko Kubo <cubicdaiya@gmail.com>
- All rights reserved.
- 
- Redistribution and use in source and binary forms, with or without modification,
- are permitted provided that the following conditions are met:
- 
- * Redistributions of source code must retain the above copyright notice,
- this list of conditions and the following disclaimer.
- 
- * Redistributions in binary form must reproduce the above copyright notice,
- this list of conditions and the following disclaimer in the documentation
- and/or other materials provided with the distribution.
- 
- * Neither the name of the authors nor the names of its contributors
- may be used to endorse or promote products derived from this software
- without specific prior written permission.
- 
- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
- OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
- 
- written by C99 style
- ==============================================================================*/
-
-#ifndef LEAF_MPOOL_H_INCLUDED
-#define LEAF_MPOOL_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include <stdio.h>
-#include <stdlib.h>
-#include <string.h>
-#include <stdbool.h>
-    
-    //==============================================================================
-    
-#define MPOOL_ALIGN_SIZE (8)
-    
-    //#define size_t unsigned long
-    
-    /*!
-     * @defgroup tmempool tMempool
-     * @ingroup mempool
-     * An object that can contain an additional mempool for the allocation of LEAF objects.
-     * @{
-     */
-    
-    // node of free list
-    typedef struct mpool_node_t {
-        char                *pool;     // memory pool field
-        struct mpool_node_t *next;     // next node pointer
-        struct mpool_node_t *prev;     // prev node pointer
-        size_t size;
-    } mpool_node_t;
-    
-    typedef struct _tMempool
-    {
-        char*         mpool;       // start of the mpool
-        size_t        usize;       // used size of the pool
-        size_t        msize;       // max size of the pool
-        mpool_node_t* head;        // first node of memory pool free list
-    } _tMempool;
-
-    typedef _tMempool* tMempool;
-    
-    //! Initialize a tMempool for a given memory location and size to the default LEAF mempool.
-    /*!
-     @param pool A pointer to the tMempool to be initialized.
-     @param memory A pointer to the chunk of memory to be used as a mempool.
-     @param size The size of the chunk of memory to be used as a mempool.
-     */
-    void    tMempool_init           (tMempool* const pool, char* memory, size_t size);
-    
-    
-    //! Free a tMempool from the default LEAF mempool.
-    /*!
-     @param pool A pointer to the tMempool to be freed.
-     */
-    void    tMempool_free           (tMempool* const pool);
-    
-    
-    //! Initialize a tMempool for a given memory location and size to a specified mempool.
-    /*!
-     @param pool A pointer to the tMempool to be initialized.
-     @param memory A pointer to the chunk of memory to be used as a mempool.
-     @param size The size of the chuck of memory to be used as a mempool.
-     @param poolTo A pointer to the tMempool to which a tMempool should be initialized.
-     */
-    void    tMempool_initToPool     (tMempool* const pool, char* memory, size_t size, tMempool* const poolTo);
-    
-    
-    //! Free a tMempool from a specified mempool.
-    /*!
-     @param pool A pointer to the tMempool to be freed from the default LEAF mempool.
-     @param poolFrom A pointer to the tMempool from which a tMempool should be freed.
-     */
-    void    tMempool_freeFromPool   (tMempool* const pool, tMempool* const poolFrom);
-    
-    /*! @} */
-    
-    //==============================================================================
-
-    //    typedef struct mpool_t {
-    //        char*         mpool;       // start of the mpool
-    //        size_t        usize;       // used size of the pool
-    //        size_t        msize;       // max size of the pool
-    //        mpool_node_t* head;        // first node of memory pool free list
-    //    } mpool_t;
-    
-    void mpool_create (char* memory, size_t size, _tMempool* pool);
-    
-    char* mpool_alloc(size_t size, _tMempool* pool);
-    char* mpool_calloc(size_t asize, _tMempool* pool);
-    
-    void mpool_free(char* ptr, _tMempool* pool);
-    
-    size_t mpool_get_size(_tMempool* pool);
-    size_t mpool_get_used(_tMempool* pool);
-    
-    void leaf_pool_init(char* memory, size_t size);
-    
-    char* leaf_alloc(size_t size);
-    char* leaf_calloc(size_t size);
-    
-    void leaf_free(char* ptr);
-    
-    size_t leaf_pool_get_size(void);
-    size_t leaf_pool_get_used(void);
-    
-    char* leaf_pool_get_pool(void);
-    
-    void leaf_mempool_overrun(void);
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_MPOOL_H
-
-//==============================================================================
-
-
-
--- a/LEAF/Inc/leaf-midi.h
+++ /dev/null
@@ -1,510 +1,0 @@
-/*==============================================================================
- 
- leaf-midi.h
- Created: 30 Nov 2018 11:29:26am
- Author:  airship
- 
- ==============================================================================*/
-
-#ifndef LEAF_MIDI_H_INCLUDED
-#define LEAF_MIDI_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-mempool.h"
-#include "leaf-math.h"
-#include "leaf-envelopes.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /*!
-     * @defgroup tstack tStack
-     * @ingroup midi
-     * @brief A basic stack of integers with a fixed max size of 128, used by tPoly to keep track of MIDI notes.
-     * @{
-     */
-    
-    // STACK implementation (fixed size)
-#define STACK_SIZE 128
-    typedef struct _tStack
-    {
-        int data[STACK_SIZE];
-        uint16_t pos;
-        uint16_t size;
-        uint16_t capacity;
-        oBool ordered;
-        
-    } _tStack;
-    
-    typedef _tStack* tStack;
-    
-    //! Initialize a tStack to the default LEAF mempool.
-    /*!
-     @param stack A pointer to the tStack to be initialized.
-     */
-    void    tStack_init                 (tStack* const stack);
-    
-    
-    //! Free a tStack from the default LEAF mempool.
-    /*!
-     @param stack A pointer to the tStack to be freed.
-     */
-    void    tStack_free                 (tStack* const stack);
-    
-    
-    //! Initialize a tStack to a specified mempool.
-    /*!
-     @param stack A pointer to the tStack to be initialized.
-     @param pool A pointer to the tMempool to which the tStack should be initialized.
-     */
-    void    tStack_initToPool           (tStack* const stack, tMempool* const pool);
-    
-    
-    //! Free a tStack from a specified mempool.
-    /*!
-     @param stack A pointer to the tStack to be freed.
-     @param pool A pointer to the tMempool from which the tStack should be freed.
-     */
-    void    tStack_freeFromPool         (tStack* const stack, tMempool* const pool);
-    
-    //! Set the capacity of the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param cap The new capacity.
-     */
-    void    tStack_setCapacity          (tStack* const stack, uint16_t cap);
-    
-    
-    //! Add a value to the stack only if that value is not already in the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param item The value to be added.
-     */
-    int     tStack_addIfNotAlreadyThere (tStack* const stack, uint16_t item);
-    
-    
-    //! Add a value to the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param item The value to be added.
-     */
-    void    tStack_add                  (tStack* const stack, uint16_t item);
-    
-    
-    //! Remove a single instance of a value from the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param item The value to be removed.
-     */
-    int     tStack_remove               (tStack* const stack, uint16_t item);
-    
-    
-    //! Clear the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     */
-    void    tStack_clear                (tStack* const stack);
-    
-    
-    //! Get the first value in the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @return The first value in the stack.
-     */
-    int     tStack_first                (tStack* const stack);
-    
-    
-    //! Get the current size of the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @return The current size of the stack.
-     */
-    int     tStack_getSize              (tStack* const stack);
-    
-    //! Check if the stack contains a value, and if it does, get the index of that value.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param item The value to check against the stack.
-     @return The index of the value or -1 if the stack does not contain the value.
-     */
-    int     tStack_contains             (tStack* const stack, uint16_t item);
-    
-    //! Get the next value in the stack, starting from the earliest added values.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @return The next value in the stack or -1 if there are no values in the stack.
-     */
-    int     tStack_next                 (tStack* const stack);
-    
-    //! Get the value at a given index of the stack.
-    /*!
-     @param stack A pointer to the relevant tStack.
-     @param index The index of the stack from which to get a value.
-     @return The value at the given index.
-     */
-    int     tStack_get                  (tStack* const stack, int index);
-    
-    /*! @} */
-    
-    /*!
-     * @defgroup tpoly tPoly
-     * @ingroup midi
-     * @brief An object for polyphonic handling.
-     * @{
-     */
-    
-    /* tPoly */
-    typedef struct _tPoly
-    {
-        tStack stack;
-        tStack orderStack;
-        
-        tRamp* ramps;
-        float* rampVals;
-        oBool* firstReceived;
-        float glideTime;
-        oBool pitchGlideIsActive;
-        
-        int numVoices;
-        int maxNumVoices;
-        
-        //int voices[POLY_NUM_MAX_VOICES][2];
-        int** voices;
-        
-        int notes[128][2];
-        
-        int CCs[128];
-        
-        uint8_t CCsRaw[128];
-        
-        int lastVoiceToChange;
-        
-        float pitchBend;
-        tRamp pitchBendRamp;
-        
-        int currentNote;
-        int currentVoice;
-        int currentVelocity;
-        int maxLength;
-        
-    } _tPoly;
-    
-    typedef _tPoly* tPoly;
-    
-    /* MPoly*/
-    //! Initialize a tPoly to the default LEAF mempool.
-    /*!
-     @param poly A pointer to the tPoly to be initialized.
-     @param maxNumVoices The maximum number of voices this tPoly can handle at once.
-     */
-    void    tPoly_init                  (tPoly* const poly, int maxNumVoices);
-    
-    
-    //! Free a tPoly from the default LEAF mempool.
-    /*!
-     @param poly A pointer to the tPoly to be freed.
-     */
-    void    tPoly_free                  (tPoly* const poly);
-    
-    
-    //! Initialize a tPoly to a specified mempool.
-    /*!
-     @param poly A pointer to the tPoly to be initialized.
-     @param pool A pointer to the tMempool to which the tPoly should be initialized.
-     */
-    void    tPoly_initToPool            (tPoly* const poly, int maxNumVoices, tMempool* const pool);
-    
-    
-    //! Free a tPoly from a specified mempool.
-    /*!
-     @param poly A pointer to the tPoly to be freed.
-     @param pool A pointer to the tMempool from which the tPoly should be freed.
-     */
-    void    tPoly_freeFromPool          (tPoly* const poly, tMempool* const pool);
-    
-    //! Add a note with a given velocity to the poly handler.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param note The MIDI note number to add.
-     @param vel The MIDI velocity of the note to add.
-     @return The voice that will play the note.
-     */
-    int     tPoly_noteOn                (tPoly* const poly, int note, uint8_t vel);
-    
-    
-    //! Remove a note from the poly handler.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param note The MIDI note number to remove.
-     @return The voice that was playing the removed note.
-     */
-    int     tPoly_noteOff               (tPoly* const poly, uint8_t note);
-    
-    void    tPoly_orderedAddToStack     (tPoly* const poly, uint8_t note);
-    
-    
-    //! Set the number of voices available to play notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param numVoices The new number of available voices. Cannot be greater than the max number voices given in tPoly_init().
-     */
-    void    tPoly_setNumVoices          (tPoly* const poly, uint8_t numVoices);
-    
-    //! Set whether pitch glide over note changes in voices is active.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param isActive Whether pitch glide should be active or not.
-     */
-    void    tPoly_setPitchGlideActive   (tPoly* const poly, oBool isActive);
-    
-    //! Set how long pitch glide over note changes in voices takes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param t The time to glide in milliseconds.
-     */
-    void    tPoly_setPitchGlideTime     (tPoly* const poly, float t);
-    
-    //! Set the amount of pitch bend
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param pitchBend The new amount of pitch bend.
-     */
-    void    tPoly_setPitchBend          (tPoly* const poly, float pitchBend);
-    void 	tPoly_setBendGlideTime		(tPoly* const poly, float t);
-    void 	tPoly_setBendSamplesPerTick	(tPoly* const poly, float t);
-
-    
-    //! Execute all tick-rate changes in the poly handler's pitch, including glide and bend.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     */
-    void    tPoly_tickPitch             (tPoly* const poly);
-    
-    
-    //! Execute the tick-rate change of the poly handler's pitch glide.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     */
-    void    tPoly_tickPitchGlide        (tPoly* const poly);
-    
-    
-    //! Execute the tick-rate change of the poly handler's pitch bend.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     */
-    void    tPoly_tickPitchBend         (tPoly* const poly);
-    
-    
-    //! Get the current number of voices available to play notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @return The current number of voices available to play notes.
-     */
-    int     tPoly_getNumVoices          (tPoly* const poly);
-    
-    //! Get the number of voices currently playing notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @return The number of voices currently playing notes.
-     */
-    int     tPoly_getNumActiveVoices    (tPoly* const poly);
-    
-    //! Get the current pitch of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the pitch of.
-     @return The current pitch of the given voice as a fractional MIDI note number.
-     */
-    float   tPoly_getPitch              (tPoly* const poly, uint8_t voice);
-    
-    
-    //! Get the current MIDI note number of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the MIDI note number of.
-     @return The MIDI note number of the given voice.
-     */
-    int     tPoly_getKey                (tPoly* const poly, uint8_t voice);
-    
-    
-    //! Get the current MIDI velocity of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the MIDI velocity of.
-     @return The current MIDI velocity of the given voice.
-     */
-    int     tPoly_getVelocity           (tPoly* const poly, uint8_t voice);
-    
-    
-    //! Get the current play state of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the state of.
-     @return The current play state of the given voice.
-     */
-    int     tPoly_isOn                  (tPoly* const poly, uint8_t voice);
-    
-    /*! @} */
-    
-    //==============================================================================
-
-    
-    /* tPoly */
-    typedef struct _tSimplePoly
-    {
-        tStack stack;
-
-        int numVoices;
-        int maxNumVoices;
-        int** voices;
-        int stealing_on;
-        int recover_stolen;
-
-        int notes[128][2];
-    } _tSimplePoly;
-
-    typedef _tSimplePoly* tSimplePoly;
-
-    //! Initialize a tPoly to the default LEAF mempool.
-    /*!
-     @param poly A pointer to the tPoly to be initialized.
-     @param maxNumVoices The maximum number of voices this tPoly can handle at once.
-     */
-    void    tSimplePoly_init                  (tSimplePoly* const poly, int maxNumVoices);
-
-
-    //! Free a tPoly from the default LEAF mempool.
-    /*!
-     @param poly A pointer to the tPoly to be freed.
-     */
-    void    tSimplePoly_free                  (tSimplePoly* const poly);
-
-
-    //! Initialize a tPoly to a specified mempool.
-    /*!
-     @param poly A pointer to the tPoly to be initialized.
-     @param pool A pointer to the tMempool to which the tPoly should be initialized.
-     */
-    void    tSimplePoly_initToPool            (tSimplePoly* const poly, int maxNumVoices, tMempool* const pool);
-
-
-    //! Free a tPoly from a specified mempool.
-    /*!
-     @param poly A pointer to the tPoly to be freed.
-     @param pool A pointer to the tMempool from which the tPoly should be freed.
-     */
-    void    tSimplePoly_freeFromPool          (tSimplePoly* const poly, tMempool* const pool);
-
-    //! Add a note with a given velocity to the poly handler.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param note The MIDI note number to add.
-     @param vel The MIDI velocity of the note to add.
-     @return The voice that will play the note.
-     */
-    int     tSimplePoly_noteOn                (tSimplePoly* const poly, int note, uint8_t vel);
-
-
-    //! Remove a note from the poly handler.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param note The MIDI note number to remove.
-     @return The voice that was playing the removed note.
-     */
-    int     tSimplePoly_noteOff               (tSimplePoly* const poly, uint8_t note);
-
-
-
-    void tSimplePoly_deactivateVoice(tSimplePoly* const polyh, uint8_t voice);
-
-    int tSimplePoly_markPendingNoteOff(tSimplePoly* const polyh, uint8_t note);
-
-
-    //find if there is a voice with that note -- useful for note offs where you want to wait to remove it from the poly until the release phase of the envelope is finished
-    int tSimplePoly_findVoiceAssignedToNote(tSimplePoly* const polyh, uint8_t note);
-
-    //! Set the number of voices available to play notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param numVoices The new number of available voices. Cannot be greater than the max number voices given in tPoly_init().
-     */
-    void    tSimplePoly_setNumVoices          (tSimplePoly* const poly, uint8_t numVoices);
-
-    //! Set whether pitch glide over note changes in voices is active.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param isActive Whether pitch glide should be active or not.
-     */
-
-    //! Get the current number of voices available to play notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @return The current number of voices available to play notes.
-     */
-    int     tSimplePoly_getNumVoices          (tSimplePoly* const poly);
-
-    //! Get the number of voices currently playing notes.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @return The number of voices currently playing notes.
-     */
-    int     tSimplePoly_getNumActiveVoices    (tSimplePoly* const poly);
-
-    //! Get the current MIDI note number of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the MIDI note number of.
-     @return The MIDI note number of the given voice.
-     */
-
-    int   tSimplePoly_getPitch              (tSimplePoly* const poly, uint8_t voice);
-
-
-    //this one returns negative one if the voice is inactive
-    int tSimplePoly_getPitchAndCheckActive(tSimplePoly* const polyh, uint8_t voice);
-
-
-    //! Get the current MIDI velocity of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the MIDI velocity of.
-     @return The current MIDI velocity of the given voice.
-     */
-    int     tSimplePoly_getVelocity           (tSimplePoly* const poly, uint8_t voice);
-
-
-    //! Get the current play state of a given voice.
-    /*!
-     @param poly A pointer to the relevant tPoly.
-     @param voice The voice to get the state of.
-     @return The current play state of the given voice.
-     */
-    int     tSimplePoly_isOn                  (tSimplePoly* const poly, uint8_t voice);
-
-    /*! @} */
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_MIDI_H_INCLUDED
-
-//==============================================================================
-
-
--- a/LEAF/Inc/leaf-oscillators.h
+++ /dev/null
@@ -1,1143 +1,0 @@
-/*==============================================================================
- leaf-oscillators.h
- Created: 20 Jan 2017 12:00:58pm
- Author:  Michael R Mulshine
- ==============================================================================*/
-
-#ifndef LEAF_OSCILLATORS_H_INCLUDED
-#define LEAF_OSCILLATORS_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-tables.h"
-#include "leaf-filters.h"
-    
-    /*!
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    typedef struct _tCycle
-    {
-        // Underlying phasor
-        float phase;
-        float inc,freq;
-    } _tCycle;
-    
-    typedef _tCycle* tCycle;
-    
-    /*!
-     * @defgroup tcycle tCycle
-     * @ingroup oscillators
-     * @brief A cycle/sine waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tCycle to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tCycle to be initialized.
-     */
-    void    tCycle_init         (tCycle* const osc);
-    
-    
-    //! Free a tCycle from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tCycle to be freed.
-     */
-    void    tCycle_free         (tCycle* const osc);
-    
-    
-    //! Initialize a tCycle to a specified mempool.
-    /*!
-     @param osc A pointer to the tCycle to be initialized.
-     @param pool A pointer to the tMempool to which the tCycle should be initialized.
-     */
-    void    tCycle_initToPool   (tCycle* const osc, tMempool* const pool);
-    
-    
-    //! Free a tCycle from a specified mempool.
-    /*!
-     @param osc A pointer to the tCycle to be freed.
-     @param pool A pointer to the tMempool from which the tCycle should be freed.
-     */
-    void    tCycle_freeFromPool (tCycle* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tCycle oscillator.
-    /*!
-     @param osc A pointer to the relevant tCycle.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tCycle_tick         (tCycle* const osc);
-    
-    
-    //! Set the frequency of a tCycle oscillator.
-    /*!
-     @param osc A pointer to the relevant tCycle.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tCycle_setFreq      (tCycle* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tTriangle: Anti-aliased Triangle waveform using wavetable interpolation. Wavetables constructed from sine components. */
-    typedef struct _tTriangle
-    {
-        // Underlying phasor
-        float phase;
-        float inc,freq;
-        int oct;
-        float w;
-    } _tTriangle;
-    
-    typedef _tTriangle* tTriangle;
-    
-    /*!
-     * @defgroup ttriangle tTriangle
-     * @ingroup oscillators
-     * @brief An anti-aliased triangle waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tTriangle to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tTriangle to be initialized.
-     */
-    void    tTriangle_init          (tTriangle* const osc);
-    
-    
-    //! Free a tTriangle from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tTriangle to be freed.
-     */
-    void    tTriangle_free          (tTriangle* const osc);
-    
-    
-    //! Initialize a tTriangle to a specified mempool.
-    /*!
-     @param osc A pointer to the tTriangle to be initialized.
-     @param pool A pointer to the tMempool to which the tTriangle should be initialized.
-     */
-    void    tTriangle_initToPool    (tTriangle* const osc, tMempool* const pool);
-    
-    
-    //! Free a tTriangle from a specified mempool.
-    /*!
-     @param osc A pointer to the tTriangle to be freed.
-     @param pool A pointer to the tMempool from which the tTriangle should be freed.
-     */
-    void    tTriangle_freeFromPool  (tTriangle* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tTriangle oscillator.
-    /*!
-     @param osc A pointer to the relevant tTriangle.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tTriangle_tick          (tTriangle* const osc);
-    
-    
-    //! Set the frequency of a tTriangle oscillator.
-    /*!
-     @param osc A pointer to the relevant tTriangle.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tTriangle_setFreq       (tTriangle* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tSquare: Anti-aliased Square waveform using wavetable interpolation. Wavetables constructed from sine components. */
-    typedef struct _tSquare
-    {
-        // Underlying phasor
-        float phase;
-        float inc,freq;
-        int oct;
-        float w;
-    } _tSquare;
-    
-    typedef _tSquare* tSquare;
-    
-    /*!
-     * @defgroup tsquare tSquare
-     * @ingroup oscillators
-     * @brief An anti-aliased square waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tSquare to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSquare to be initialized.
-     */
-    void    tSquare_init        (tSquare* const osc);
-    
-    
-    //! Free a tSquare from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSquare to be freed.
-     */
-    void    tSquare_free        (tSquare* const osc);
-    
-    
-    //! Initialize a tSquare to a specified mempool.
-    /*!
-     @param osc A pointer to the tSquare to be initialized.
-     @param pool A pointer to the tMempool to which the tSquare should be initialized.
-     */
-    void    tSquare_initToPool  (tSquare* const osc, tMempool* const);
-    
-    
-    //! Free a tSquare from a specified mempool.
-    /*!
-     @param osc A pointer to the tSquare to be freed.
-     @param pool A pointer to the tMempool from which the tSquare should be freed.
-     */
-    void    tSquare_freeFromPool(tSquare* const osc, tMempool* const);
-    
-    
-    //! Tick a tSquare oscillator.
-    /*!
-     @param osc A pointer to the relevant tSquare.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tSquare_tick        (tSquare* const osc);
-
-    
-    //! Set the frequency of a tSquare oscillator.
-    /*!
-     @param osc A pointer to the relevant tSquare.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tSquare_setFreq     (tSquare* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tSawtooth: Anti-aliased Sawtooth waveform using wavetable interpolation. Wavetables constructed from sine components. */
-    typedef struct _tSawtooth
-    {
-        // Underlying phasor
-        float phase;
-        float inc,freq;
-        int oct;
-        float w;
-    } _tSawtooth;
-    
-    typedef _tSawtooth* tSawtooth;
-    
-    /*!
-     * @defgroup tsawtooth tSawtooth
-     * @ingroup oscillators
-     * @brief An anti-aliased sawtooth waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tSawtooth to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSawtooth to be initialized.
-     */
-    void    tSawtooth_init          (tSawtooth* const osc);
-    
-    
-    //! Free a tSawtooth from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSawtooth to be freed.
-     */
-    void    tSawtooth_free          (tSawtooth* const osc);
-    
-    
-    //! Initialize a tSawtooth to a specified mempool.
-    /*!
-     @param osc A pointer to the tSawtooth to be initialized.
-     @param pool A pointer to the tMempool to which the tSawtooth should be initialized.
-     */
-    void    tSawtooth_initToPool    (tSawtooth* const osc, tMempool* const pool);
-    
-    
-    //! Free a tSawtooth from a specified mempool.
-    /*!
-     @param osc A pointer to the tSawtooth to be freed.
-     @param pool A pointer to the tMempool from which the tSawtooth should be freed.
-     */
-    void    tSawtooth_freeFromPool  (tSawtooth* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tSawtooth oscillator.
-    /*!
-     @param osc A pointer to the relevant tSawtooth.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tSawtooth_tick          (tSawtooth* const osc);
-    
-    
-    //! Set the frequency of a tSawtooth oscillator.
-    /*!
-     @param osc A pointer to the relevant tSawtooth.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tSawtooth_setFreq       (tSawtooth* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    typedef struct _tSine
-    {
-        float* sine;
-        int size;
-        float phase;
-        float inc,freq;
-    } _tSine;
-    
-    typedef _tSine* tSine;
-    
-    /*!
-     * @defgroup tsine tSine
-     * @ingroup oscillators
-     * @brief A cycle/sine waveform oscillator.
-     * @{
-     */
-    
-    //! Initialize a tSine to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSine to be initialized.
-     */
-    void    tSine_init         (tSine* const osc, int size);
-    
-    
-    //! Free a tSine from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSine to be freed.
-     */
-    void    tSine_free         (tSine* const osc);
-    
-    
-    //! Initialize a tSine to a specified mempool.
-    /*!
-     @param osc A pointer to the tSine to be initialized.
-     @param pool A pointer to the tMempool to which the tSine should be initialized.
-     */
-    void    tSine_initToPool   (tSine* const osc, int size, tMempool* const pool);
-    
-    
-    //! Free a tSine from a specified mempool.
-    /*!
-     @param osc A pointer to the tSine to be freed.
-     @param pool A pointer to the tMempool from which the tSine should be freed.
-     */
-    void    tSine_freeFromPool (tSine* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tSine oscillator.
-    /*!
-     @param osc A pointer to the relevant tSine.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tSine_tick         (tSine* const osc);
-    
-    
-    //! Set the frequency of a tSine oscillator.
-    /*!
-     @param osc A pointer to the relevant tSine.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tSine_setFreq      (tSine* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tTri: Anti-aliased Triangle waveform using wavetable interpolation. */
-    typedef struct _tTri
-    {
-        float phase;
-        float inc,freq;
-        float skew;
-        float lastOut;
-    } _tTri;
-    
-    typedef _tTri* tTri;
-    
-    /*!
-     * @defgroup tTri tTri
-     * @ingroup oscillators
-     * @brief An anti-aliased triangle waveform oscillator.
-     * @{
-     */
-    
-    //! Initialize a tTri to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tTri to be initialized.
-     */
-    void    tTri_init          (tTri* const osc);
-    
-    
-    //! Free a tTri from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tTri to be freed.
-     */
-    void    tTri_free          (tTri* const osc);
-    
-    
-    //! Initialize a tTri to a specified mempool.
-    /*!
-     @param osc A pointer to the tTri to be initialized.
-     @param pool A pointer to the tMempool to which the tTri should be initialized.
-     */
-    void    tTri_initToPool    (tTri* const osc, tMempool* const pool);
-    
-    
-    //! Free a tTri from a specified mempool.
-    /*!
-     @param osc A pointer to the tTri to be freed.
-     @param pool A pointer to the tMempool from which the tTri should be freed.
-     */
-    void    tTri_freeFromPool  (tTri* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tTri oscillator.
-    /*!
-     @param osc A pointer to the relevant tTri.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tTri_tick          (tTri* const osc);
-    
-    
-    //! Set the frequency of a tTri oscillator.
-    /*!
-     @param osc A pointer to the relevant tTriangle.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tTri_setFreq       (tTri* const osc, float freq);
-    
-    void    tTri_setSkew       (tTri* const osc, float skew);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tPulse: Anti-aliased Square waveform. */
-    typedef struct _tPulse
-    {
-        float phase;
-        float inc,freq;
-        float width;
-    } _tPulse;
-    
-    typedef _tPulse* tPulse;
-    
-    /*!
-     * @defgroup tPulse tPulse
-     * @ingroup oscillators
-     * @brief An anti-aliased pulse waveform oscillator with changeable pulse width.
-     * @{
-     */
-    
-    //! Initialize a tPulse to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tPulse to be initialized.
-     */
-    void    tPulse_init        (tPulse* const osc);
-    
-    
-    //! Free a tPulse from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tPulse to be freed.
-     */
-    void    tPulse_free        (tPulse* const osc);
-    
-    
-    //! Initialize a tPulse to a specified mempool.
-    /*!
-     @param osc A pointer to the tPulse to be initialized.
-     @param pool A pointer to the tMempool to which the tPulse should be initialized.
-     */
-    void    tPulse_initToPool  (tPulse* const osc, tMempool* const);
-    
-    
-    //! Free a tPulse from a specified mempool.
-    /*!
-     @param osc A pointer to the tPulse to be freed.
-     @param pool A pointer to the tMempool from which the tPulse should be freed.
-     */
-    void    tPulse_freeFromPool(tPulse* const osc, tMempool* const);
-    
-    
-    //! Tick a tPulse oscillator.
-    /*!
-     @param osc A pointer to the relevant tPulse.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tPulse_tick        (tPulse* const osc);
-    
-    
-    //! Set the frequency of a tPulse oscillator.
-    /*!
-     @param osc A pointer to the relevant tPulse.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tPulse_setFreq     (tPulse* const osc, float freq);
-    
-    void    tPulse_setWidth    (tPulse* const osc, float width);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tSawtooth: Anti-aliased Sawtooth waveform. */
-    typedef struct _tSaw
-    {
-        float phase;
-        float inc,freq;
-    } _tSaw;
-    
-    typedef _tSaw* tSaw;
-    
-    /*!
-     * @defgroup tsaw tSaw
-     * @ingroup oscillators
-     * @brief An anti-aliased sawtooth waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tSaw to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSaw to be initialized.
-     */
-    void    tSaw_init          (tSaw* const osc);
-    
-    
-    //! Free a tSaw from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tSaw to be freed.
-     */
-    void    tSaw_free          (tSaw* const osc);
-    
-    
-    //! Initialize a tSaw to a specified mempool.
-    /*!
-     @param osc A pointer to the tSaw to be initialized.
-     @param pool A pointer to the tMempool to which the tSaw should be initialized.
-     */
-    void    tSaw_initToPool    (tSaw* const osc, tMempool* const pool);
-    
-    
-    //! Free a tSaw from a specified mempool.
-    /*!
-     @param osc A pointer to the tSaw to be freed.
-     @param pool A pointer to the tMempool from which the tSaw should be freed.
-     */
-    void    tSaw_freeFromPool  (tSaw* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tSaw oscillator.
-    /*!
-     @param osc A pointer to the relevant tSaw.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tSaw_tick          (tSaw* const osc);
-    
-    
-    //! Set the frequency of a tSaw oscillator.
-    /*!
-     @param osc A pointer to the relevant tSaw.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tSaw_setFreq       (tSaw* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tPhasor: Aliasing phasor [0.0, 1.0) */
-    typedef struct _tPhasor
-    {
-        float phase;
-        float inc,freq;
-        uint8_t phaseDidReset;
-        
-    } _tPhasor;
-    
-    typedef _tPhasor* tPhasor;
-    
-    /*!
-     * @defgroup tphasor Phasor
-     * @ingroup oscillators
-     * @brief An aliasing phasor.
-     * @{
-     */
-    
-    //! Initialize a tPhasor to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tPhasor to be initialized.
-     */
-    void    tPhasor_init        (tPhasor* const osc);
-    
-    
-    //! Free a tPhasor from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tPhasor to be freed.
-     */
-    void    tPhasor_free        (tPhasor* const osc);
-    
-    
-    //! Initialize a tPhasor to a specified mempool.
-    /*!
-     @param osc A pointer to the tPhasor to be initialized.
-     @param pool A pointer to the tMempool to which the tPhasor should be initialized.
-     */
-    void    tPhasor_initToPool  (tPhasor* const osc, tMempool* const);
-    
-    
-    //! Free a tPhasor from a specified mempool.
-    /*!
-     @param osc A pointer to the tPhasor to be freed.
-     @param pool A pointer to the tMempool from which the tPhasor should be freed.
-     */
-    void    tPhasor_freeFromPool(tPhasor* const osc, tMempool* const);
-    
-    
-    //! Tick a tPhasor oscillator.
-    /*!
-     @param osc A pointer to the relevant tPhasor.
-     @return The ticked sample as a float from 0 to 1.
-     */
-    float   tPhasor_tick        (tPhasor* const osc);
-    
-    
-    //! Set the frequency of a tPhasor oscillator.
-    /*!
-     @param osc A pointer to the relevant tPhasor.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tPhasor_setFreq     (tPhasor* const osc, float freq);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /*!
-     * @defgroup tnoise tNoise
-     * @ingroup oscillators
-     * @brief A noise generator.
-     * @{
-     */
-    
-    /* tNoise. WhiteNoise, PinkNoise. */
-    /*!
-     * Noise types
-     */
-    enum NoiseType
-    {
-        WhiteNoise, //!< White noise. Full spectrum.
-        PinkNoise, //!< Pink noise. Inverse frequency-proportional spectrum.
-        NoiseTypeNil,
-    };
-    
-    typedef enum NoiseType NoiseType;
-    
-    typedef struct _tNoise
-    {
-        NoiseType type;
-        float pinkb0, pinkb1, pinkb2;
-        float(*rand)(void);
-        
-    } _tNoise;
-    
-    typedef _tNoise* tNoise;
-    
-    //! Initialize a tNoise to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tNoise to be initialized.
-     */
-    void    tNoise_init         (tNoise* const noise, NoiseType type);
-    
-    
-    //! Free a tNoise from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tNoise to be freed.
-     */
-    void    tNoise_free         (tNoise* const noise);
-    
-    
-    //! Initialize a tNoise to a specified mempool.
-    /*!
-     @param osc A pointer to the tNoise to be initialized.
-     @param pool A pointer to the tMempool to which the tNoise should be initialized.
-     */
-    void    tNoise_initToPool   (tNoise* const noise, NoiseType type, tMempool* const);
-    
-    
-    //! Free a tNoise from a specified mempool.
-    /*!
-     @param osc A pointer to the tNoise to be freed.
-     @param pool A pointer to the tMempool from which the tNoise should be freed.
-     */
-    void    tNoise_freeFromPool (tNoise* const noise, tMempool* const);
-    
-    
-    //! Tick a tNoise oscillator.
-    /*!
-     @param osc A pointer to the relevant tNoise.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tNoise_tick         (tNoise* const noise);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /*!
-     * @defgroup tneuron tNeuron
-     * @ingroup oscillators
-     * @brief A model of a neuron, adapted to act as an oscillator.
-     * @{
-     */
-    
-    /*!
-     * Neuron modes
-     */
-    enum NeuronMode
-    {
-        NeuronNormal, //!< Normal operation
-        NeuronTanh, //!< Tanh voltage shaping
-        NeuronAaltoShaper, //!< Aalto voltage shaping
-        NeuronModeNil
-    };
-    typedef enum NeuronMode NeuronMode;
-    
-    typedef struct _tNeuron
-    {
-        tPoleZero f;
-        
-        NeuronMode mode;
-        
-        float voltage, current;
-        float timeStep;
-        
-        float alpha[3];
-        float beta[3];
-        float rate[3];
-        float V[3];
-        float P[3];
-        float gK, gN, gL, C;
-    } _tNeuron;
-    
-    typedef _tNeuron* tNeuron;
-    
-    //! Initialize a tNeuron to the default LEAF mempool.
-    /*!
-     @param neuron A pointer to the tNeuron to be initialized.
-     */
-    void    tNeuron_init        (tNeuron* const neuron);
-    
-    
-    //! Free a tNeuron from the default LEAF mempool.
-    /*!
-     @param neuron A pointer to the tNeuron to be freed.
-     */
-    void    tNeuron_free        (tNeuron* const neuron);
-    
-    
-    //! Initialize a tNeuron to a specified mempool.
-    /*!
-     @param neuron A pointer to the tNeuron to be initialized.
-     @param pool A pointer to the tMempool to which the tNeuron should be initialized.
-     */
-    void    tNeuron_initToPool  (tNeuron* const neuron, tMempool* const pool);
-    
-    
-    //! Free a tNeuron from a specified mempool.
-    /*!
-     @param neuron A pointer to the tNeuron to be freed.
-     @param pool A pointer to the tMempool from which the tNeuron should be freed.
-     */
-    void    tNeuron_freeFromPool(tNeuron* const neuron, tMempool* const pool);
-    
-    
-    //! Reset the neuron model.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     */
-    void    tNeuron_reset       (tNeuron* const neuron);
-    
-    
-    //! Tick a tNeuron oscillator.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tNeuron_tick        (tNeuron* const neuron);
-    
-    
-    //! Set the tNeuron shaping mode.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param mode The mode to set the tNeuron to.
-     */
-    void    tNeuron_setMode     (tNeuron* const neuron, NeuronMode mode);
-    
-    
-    //! Set the current.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param current The new current.
-     */
-    void    tNeuron_setCurrent  (tNeuron* const neuron, float current);
-    
-    
-    //! Set the potassium value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param K The new potassium.
-     */
-    void    tNeuron_setK        (tNeuron* const neuron, float K);
-    
-    
-    //! Set the chloride value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param L The new chloride value.
-     */
-    void    tNeuron_setL        (tNeuron* const neuron, float L);
-    
-    
-    //! Set the sodium value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param N The new sodium value.
-     */
-    void    tNeuron_setN        (tNeuron* const neuron, float N);
-    
-    
-    //! Set the calcium value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param C The new calcium.
-     */
-    void    tNeuron_setC        (tNeuron* const neuron, float C);
-    
-    
-    //! Set the V1 value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param V1 The new V1.
-     */
-    void    tNeuron_setV1       (tNeuron* const neuron, float V1);
-    
-    
-    //! Set the V2 value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param V2 The new V2.
-     */
-    void    tNeuron_setV2       (tNeuron* const neuron, float V2);
-    
-    
-    //! Set the V3 value.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param V3 The new V3.
-     */
-    void    tNeuron_setV3       (tNeuron* const neuron, float V3);
-    
-    
-    //! Set the time step.
-    /*!
-     @param neuron A pointer to the relevant tNeuron.
-     @param timestep The new time step
-     */
-    void    tNeuron_setTimeStep (tNeuron* const neuron, float timestep);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    typedef struct _tMinBLEP
-    {
-        float coeffs[6];
-        
-        // FilterState
-        float* x1, x2, y1, y2;
-        
-        float ratio, lastRatio;
-        
-        float overSamplingRatio;
-        int zeroCrossings;
-        
-        float lastValue;
-        float lastDelta; // previous derivative ...
-        
-        // Tweaking the Blep F
-        float proportionalBlepFreq;
-        uint8_t returnDerivative; // set this to return the FIRST DERIVATIVE of the blep (for first der. discontinuities)
-        
-        int blepIndex;
-        int numActiveBleps;
-        //currentActiveBlepOffsets;
-        float* offset;
-        float* freqMultiple;
-        float* pos_change_magnitude;
-        float* vel_change_magnitude;
-        
-        int minBlepSize;
-        float* minBlepArray;
-        float* minBlepDerivArray;
-    } _tMinBLEP;
-    
-    typedef _tMinBLEP* tMinBLEP;
-    
-    void    tMinBLEP_init           (tMinBLEP* const minblep, int zeroCrossings, int oversamplerRatio);
-    void    tMinBLEP_free           (tMinBLEP* const minblep);
-    void    tMinBLEP_initToPool     (tMinBLEP* const minblep, int zeroCrossings, int oversamplerRatio, tMempool* const pool);
-    void    tMinBLEP_freeFromPool   (tMinBLEP* const minblep, tMempool* const pool);
-    
-    // pass in audio, identify discontinuities and return the audio with minbleps inserted
-    float   tMinBLEP_tick           (tMinBLEP* const minblep, float input);
-    void    tMinBLEP_buildBLEP      (tMinBLEP* const minblep);
-    void    tMinBLEP_addBLEP        (tMinBLEP* const minblep, float offset, float posChange, float velChange);
-    
-    void    tMinBLEP_setOversamplingRatio   (tMinBLEP* const minblep, float ratio);
-    void    tMinBLEP_setNumZeroCrossings    (tMinBLEP* const minblep, int numCrossings);
-    
-    //==============================================================================
-    
-    /* tMBTriangle: Anti-aliased Triangle waveform using wavetable interpolation. */
-    typedef struct _tMBTriangle
-    {
-        float phase;
-        float inc,freq;
-        float skew;
-        float lastOut;
-        
-        tMinBLEP minBlep;
-        tHighpass dcBlock;
-    } _tMBTriangle;
-    
-    typedef _tMBTriangle* tMBTriangle;
-    
-    /*!
-     * @defgroup tMBTriangle tMBTriangle
-     * @ingroup oscillators
-     * @brief An anti-aliased triangle waveform oscillator.
-     * @{
-     */
-    
-    //! Initialize a tMBTriangle to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBTriangle to be initialized.
-     */
-    void    tMBTriangle_init          (tMBTriangle* const osc);
-    
-    
-    //! Free a tMBTriangle from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBTriangle to be freed.
-     */
-    void    tMBTriangle_free          (tMBTriangle* const osc);
-    
-    
-    //! Initialize a tMBTriangle to a specified mempool.
-    /*!
-     @param osc A pointer to the tMBTriangle to be initialized.
-     @param pool A pointer to the tMempool to which the tMBTriangle should be initialized.
-     */
-    void    tMBTriangle_initToPool    (tMBTriangle* const osc, tMempool* const pool);
-    
-    
-    //! Free a tMBTriangle from a specified mempool.
-    /*!
-     @param osc A pointer to the tMBTriangle to be freed.
-     @param pool A pointer to the tMempool from which the tMBTriangle should be freed.
-     */
-    void    tMBTriangle_freeFromPool  (tMBTriangle* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tMBTriangle oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBTriangle.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tMBTriangle_tick          (tMBTriangle* const osc);
-    
-    
-    //! Set the frequency of a tMBTriangle oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBTriangleangle.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tMBTriangle_setFreq       (tMBTriangle* const osc, float freq);
-    
-    void    tMBTriangle_setSkew       (tMBTriangle* const osc, float skew);
-    
-    void    tMBTriangle_sync          (tMBTriangle* const osc, float phase);
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tMBPulse: Anti-aliased Square waveform. */
-    typedef struct _tMBPulse
-    {
-        float phase;
-        float inc,freq;
-        float width;
-        
-        tMinBLEP minBlep;
-        tHighpass dcBlock;
-    } _tMBPulse;
-    
-    typedef _tMBPulse* tMBPulse;
-    
-    /*!
-     * @defgroup tMBPulse tMBPulse
-     * @ingroup oscillators
-     * @brief An anti-aliased pulse waveform oscillator with changeable pulse width.
-     * @{
-     */
-    
-    //! Initialize a tMBPulse to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBPulse to be initialized.
-     */
-    void    tMBPulse_init        (tMBPulse* const osc);
-    
-    
-    //! Free a tMBPulse from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBPulse to be freed.
-     */
-    void    tMBPulse_free        (tMBPulse* const osc);
-    
-    
-    //! Initialize a tMBPulse to a specified mempool.
-    /*!
-     @param osc A pointer to the tMBPulse to be initialized.
-     @param pool A pointer to the tMempool to which the tMBPulse should be initialized.
-     */
-    void    tMBPulse_initToPool  (tMBPulse* const osc, tMempool* const);
-    
-    
-    //! Free a tMBPulse from a specified mempool.
-    /*!
-     @param osc A pointer to the tMBPulse to be freed.
-     @param pool A pointer to the tMempool from which the tMBPulse should be freed.
-     */
-    void    tMBPulse_freeFromPool(tMBPulse* const osc, tMempool* const);
-    
-    
-    //! Tick a tMBPulse oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBPulse.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tMBPulse_tick        (tMBPulse* const osc);
-    
-    
-    //! Set the frequency of a tMBPulse oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBPulse.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tMBPulse_setFreq     (tMBPulse* const osc, float freq);
-    
-    void    tMBPulse_setWidth    (tMBPulse* const osc, float width);
-    
-    void    tMBPulse_sync          (tMBPulse* const osc, float phase);
-    
-    
-    /*! @} */
-    
-    //==============================================================================
-    
-    /* tMBSawtooth: Anti-aliased Sawtooth waveform. */
-    typedef struct _tMBSaw
-    {
-        float phase;
-        float inc,freq;
-        
-        tMinBLEP minBlep;
-        tHighpass dcBlock;
-    } _tMBSaw;
-    
-    typedef _tMBSaw* tMBSaw;
-    
-    /*!
-     * @defgroup tMBSaw tMBSaw
-     * @ingroup oscillators
-     * @brief An anti-aliased sawtooth waveform oscillator. Uses wavetable synthesis.
-     * @{
-     */
-    
-    //! Initialize a tMBSaw to the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBSaw to be initialized.
-     */
-    void    tMBSaw_init          (tMBSaw* const osc);
-    
-    
-    //! Free a tMBSaw from the default LEAF mempool.
-    /*!
-     @param osc A pointer to the tMBSaw to be freed.
-     */
-    void    tMBSaw_free          (tMBSaw* const osc);
-    
-    
-    //! Initialize a tMBSaw to a specified mempool.
-    /*!
-     @param osc A pointer to the tMBSaw to be initialized.
-     @param pool A pointer to the tMempool to which the tMBSaw should be initialized.
-     */
-    void    tMBSaw_initToPool    (tMBSaw* const osc, tMempool* const pool);
-    
-    
-    //! Free a tMBSaw from a specified mempool.
-    /*!
-     @param osc A pointer to the tMBSaw to be freed.
-     @param pool A pointer to the tMempool from which the tMBSaw should be freed.
-     */
-    void    tMBSaw_freeFromPool  (tMBSaw* const osc, tMempool* const pool);
-    
-    
-    //! Tick a tMBSaw oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBSaw.
-     @return The ticked sample as a float from -1 to 1.
-     */
-    float   tMBSaw_tick          (tMBSaw* const osc);
-    
-    
-    //! Set the frequency of a tMBSaw oscillator.
-    /*!
-     @param osc A pointer to the relevant tMBSaw.
-     @param freq The frequency to set the oscillator to.
-     */
-    void    tMBSaw_setFreq       (tMBSaw* const osc, float freq);
-    
-    void    tMBSaw_sync          (tMBSaw* const osc, float phase);
-    
-    /*! @} */
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_OSCILLATORS_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-physical.h
+++ /dev/null
@@ -1,259 +1,0 @@
-/*
- ==============================================================================
- 
- leaf-physical.h
- Created: 30 Nov 2018 10:41:55am
- Author:  airship
- 
- ==============================================================================
- */
-
-#ifndef LEAF_PHYSICAL_H_INCLUDED
-#define LEAF_PHYSICAL_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-delay.h"
-#include "leaf-filters.h"
-#include "leaf-oscillators.h"
-#include "leaf-envelopes.h"
-#include "leaf-dynamics.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    /* Karplus Strong model */
-    typedef struct _tPluck
-    {
-        tAllpassDelay     delayLine; // Allpass or Linear??  big difference...
-        tOneZero    loopFilter;
-        tOnePole    pickFilter;
-        tNoise      noise;
-        
-        float lastOut;
-        float loopGain;
-        float lastFreq;
-        
-        float sr;
-        
-    } _tPluck;
-    
-    typedef _tPluck* tPluck;
-    
-    void    tPluck_init          (tPluck* const, float lowestFrequency); //float delayBuff[DELAY_LENGTH]);
-    void    tPluck_free          (tPluck* const);
-    void    tPluck_initToPool    (tPluck* const, float lowestFrequency, tMempool* const);
-    void    tPluck_freeFromPool  (tPluck* const, tMempool* const);
-    
-    float       tPluck_tick          (tPluck* const);
-    
-    // Pluck the string.
-    void    tPluck_pluck         (tPluck* const, float amplitude);
-    
-    // Start a note with the given frequency and amplitude.;
-    void    tPluck_noteOn        (tPluck* const, float frequency, float amplitude );
-    
-    // Stop a note with the given amplitude (speed of decay).
-    void    tPluck_noteOff       (tPluck* const, float amplitude );
-    
-    // Set instrument parameters for a particular frequency.
-    void    tPluck_setFrequency  (tPluck* const, float frequency );
-    
-    // Perform the control change specified by \e number and \e value (0.0 - 128.0).
-    void    tPluck_controlChange (tPluck* const, int number, float value);
-    
-    // tPluck Utilities.
-    float   tPluck_getLastOut    (tPluck* const);
-    
-    //==============================================================================
-    
-    typedef enum SKControlType
-    {
-        SKPickPosition = 0,
-        SKStringDamping,
-        SKDetune,
-        SKControlTypeNil
-    } SKControlType;
-    
-    /* Stif Karplus Strong model */
-    typedef struct _tKarplusStrong
-    {
-        tAllpassDelay  delayLine;
-        tLinearDelay combDelay;
-        tOneZero filter;
-        tNoise   noise;
-        tBiQuad  biquad[4];
-        
-        uint32_t length;
-        float loopGain;
-        float baseLoopGain;
-        float lastFrequency;
-        float lastLength;
-        float stretching;
-        float pluckAmplitude;
-        float pickupPosition;
-        
-        float lastOut;
-        
-    } _tKarplusStrong;
-    
-    typedef _tKarplusStrong* tKarplusStrong;
-    
-    void    tKarplusStrong_init               (tKarplusStrong* const, float lowestFrequency); // float delayBuff[2][DELAY_LENGTH]);
-    void    tKarplusStrong_free               (tKarplusStrong* const);
-    void    tKarplusStrong_initToPool         (tKarplusStrong* const, float lowestFrequency, tMempool* const);
-    void    tKarplusStrong_freeFromPool       (tKarplusStrong* const, tMempool* const);
-    
-    float   tKarplusStrong_tick               (tKarplusStrong* const);
-    
-    // Pluck the string.
-    void    tKarplusStrong_pluck              (tKarplusStrong* const, float amplitude);
-    
-    // Start a note with the given frequency and amplitude.;
-    void    tKarplusStrong_noteOn             (tKarplusStrong* const, float frequency, float amplitude );
-    
-    // Stop a note with the given amplitude (speed of decay).
-    void    tKarplusStrong_noteOff            (tKarplusStrong* const, float amplitude );
-    
-    // Set instrument parameters for a particular frequency.
-    void    tKarplusStrong_setFrequency       (tKarplusStrong* const, float frequency );
-    
-    // Perform the control change specified by \e number and \e value (0.0 - 128.0).
-    // Use SKPickPosition, SKStringDamping, or SKDetune for type.
-    void    tKarplusStrong_controlChange      (tKarplusStrong* const, SKControlType type, float value);
-    
-    // Set the stretch "factor" of the string (0.0 - 1.0).
-    void    tKarplusStrong_setStretch         (tKarplusStrong* const, float stretch );
-    
-    // Set the pluck or "excitation" position along the string (0.0 - 1.0).
-    void    tKarplusStrong_setPickupPosition  (tKarplusStrong* const, float position );
-    
-    // Set the base loop gain.
-    void    tKarplusStrong_setBaseLoopGain    (tKarplusStrong* const, float aGain );
-    
-    // tKarplusStrong utilities.
-    float   tKarplusStrong_getLastOut         (tKarplusStrong* const);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* Simple Living String */
-    typedef struct _tSimpleLivingString {
-        float freq, waveLengthInSamples;        // the frequency of the string, determining delay length
-        float dampFreq;    // frequency for the bridge LP filter, in Hz
-        float decay; // amplitude damping factor for the string (only active in mode 0)
-        float levMode;
-        float curr;
-        tLinearDelay delayLine;
-        tOnePole bridgeFilter;
-        tHighpass DCblocker;
-        tFeedbackLeveler fbLev;
-        tExpSmooth wlSmooth;
-    } _tSimpleLivingString;
-    
-    typedef _tSimpleLivingString* tSimpleLivingString;
-    
-    void    tSimpleLivingString_init                (tSimpleLivingString* const, float freq, float dampFreq,
-                                                     float decay, float targetLev, float levSmoothFactor,
-                                                     float levStrength, int levMode);
-    void    tSimpleLivingString_free                (tSimpleLivingString* const);
-    void    tSimpleLivingString_initToPool          (tSimpleLivingString* const, float freq, float dampFreq,
-                                                     float decay, float targetLev, float levSmoothFactor,
-                                                     float levStrength, int levMode, tMempool* const);
-    void    tSimpleLivingString_freeFromPool        (tSimpleLivingString* const, tMempool* const);
-    
-    float   tSimpleLivingString_tick                (tSimpleLivingString* const, float input);
-    float   tSimpleLivingString_sample              (tSimpleLivingString* const);
-    void    tSimpleLivingString_setFreq             (tSimpleLivingString* const, float freq);
-    void    tSimpleLivingString_setWaveLength       (tSimpleLivingString* const, float waveLength); // in samples
-    void    tSimpleLivingString_setDampFreq         (tSimpleLivingString* const, float dampFreq);
-    void    tSimpleLivingString_setDecay            (tSimpleLivingString* const, float decay); // should be near 1.0
-    void    tSimpleLivingString_setTargetLev        (tSimpleLivingString* const, float targetLev);
-    void    tSimpleLivingString_setLevSmoothFactor  (tSimpleLivingString* const, float levSmoothFactor);
-    void    tSimpleLivingString_setLevStrength      (tSimpleLivingString* const, float levStrength);
-    void    tSimpleLivingString_setLevMode          (tSimpleLivingString* const, int levMode);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    /* Living String */
-    typedef struct _tLivingString {
-        float freq, waveLengthInSamples;        // the frequency of the whole string, determining delay length
-        float pickPos;    // the pick position, dividing the string in two, in ratio
-        float prepIndex;    // the amount of pressure on the pickpoint of the string (near 0=soft obj, near 1=hard obj)
-        float dampFreq;    // frequency for the bridge LP filter, in Hz
-        float decay; // amplitude damping factor for the string (only active in mode 0)
-        float levMode;
-        float curr;
-        tLinearDelay delLF,delUF,delUB,delLB;    // delay for lower/upper/forward/backward part of the waveguide model
-        tOnePole bridgeFilter, nutFilter, prepFilterU, prepFilterL;
-        tHighpass DCblockerL, DCblockerU;
-        tFeedbackLeveler fbLevU, fbLevL;
-        tExpSmooth wlSmooth, ppSmooth;
-    } _tLivingString;
-    
-    typedef _tLivingString* tLivingString;
-    
-    void    tLivingString_init                  (tLivingString* const, float freq, float pickPos, float prepIndex,
-                                                 float dampFreq, float decay, float targetLev, float levSmoothFactor,
-                                                 float levStrength, int levMode);
-    void    tLivingString_free                  (tLivingString* const);
-    void    tLivingString_initToPool            (tLivingString* const, float freq, float pickPos, float prepIndex,
-                                                 float dampFreq, float decay, float targetLev, float levSmoothFactor,
-                                                 float levStrength, int levMode, tMempool* const);
-    void    tLivingString_freeFromPool          (tLivingString* const, tMempool* const);
-    
-    float   tLivingString_tick                  (tLivingString* const, float input);
-    float   tLivingString_sample                (tLivingString* const);
-    void    tLivingString_setFreq               (tLivingString* const, float freq);
-    void    tLivingString_setWaveLength         (tLivingString* const, float waveLength); // in samples
-    void    tLivingString_setPickPos            (tLivingString* const, float pickPos);
-    void    tLivingString_setPrepIndex          (tLivingString* const, float prepIndex);
-    void    tLivingString_setDampFreq           (tLivingString* const, float dampFreq);
-    void    tLivingString_setDecay              (tLivingString* const, float decay); // should be near 1.0
-    void    tLivingString_setTargetLev          (tLivingString* const, float targetLev);
-    void    tLivingString_setLevSmoothFactor    (tLivingString* const, float levSmoothFactor);
-    void    tLivingString_setLevStrength        (tLivingString* const, float levStrength);
-    void    tLivingString_setLevMode            (tLivingString* const, int levMode);
-    
-    // ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~
-    
-    //Reed Table - borrowed from STK
-    typedef struct _tReedTable {
-        float offset, slope;
-    } _tReedTable;
-    
-    typedef _tReedTable* tReedTable;
-    
-    void    tReedTable_init         (tReedTable* const, float offset, float slope);
-    void    tReedTable_free         (tReedTable* const);
-    void    tReedTable_initToPool   (tReedTable* const, float offset, float slope, tMempool* const);
-    void    tReedTable_freeFromPool (tReedTable* const, tMempool* const);
-    
-    float   tReedTable_tick         (tReedTable* const, float input);
-    float   tReedTable_tanh_tick    (tReedTable* const, float input); //tanh softclip version of reed table - replacing the hard clip in original stk code
-    void    tReedTable_setOffset    (tReedTable* const, float offset);
-    void    tReedTable_setSlope     (tReedTable* const, float slope);
-    
-    //==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_PHYSICAL_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-reverb.h
+++ /dev/null
@@ -1,175 +1,0 @@
-/*==============================================================================
- 
- leaf-reverb.h
- Created: 20 Jan 2017 12:02:04pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#ifndef LEAF_REVERB_H_INCLUDED
-#define LEAF_REVERB_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-delay.h"
-#include "leaf-filters.h"
-#include "leaf-oscillators.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-
-    //==============================================================================
-    
-    /* PRCReverb: Reverb, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tPRCReverb
-    {
-        float mix, t60;
-        
-        float inv_441;
-        
-        tDelay allpassDelays[2];
-        tDelay combDelay;
-        float allpassCoeff;
-        float combCoeff;
-        
-        float lastIn, lastOut;
-        
-    } _tPRCReverb;
-    
-    typedef _tPRCReverb* tPRCReverb;
-    
-    void    tPRCReverb_init         (tPRCReverb* const, float t60);
-    void    tPRCReverb_free         (tPRCReverb* const);
-    void    tPRCReverb_initToPool   (tPRCReverb* const, float t60, tMempool* const);
-    void    tPRCReverb_freeFromPool (tPRCReverb* const, tMempool* const);
-    
-    void    tPRCReverb_clear        (tPRCReverb* const);
-    float   tPRCReverb_tick         (tPRCReverb* const, float input);
-    
-    // Set reverb time in seconds.
-    void    tPRCReverb_setT60       (tPRCReverb* const, float t60);
-    
-    // Set mix between dry input and wet output signal.
-    void    tPRCReverb_setMix       (tPRCReverb* const, float mix);
-    
-    //==============================================================================
-    
-    /* NReverb: Reverb, reimplemented from STK (Cook and Scavone). */
-    typedef struct _tNReverb
-    {
-        float mix, t60;
-        
-        float inv_sr, inv_441;
-        
-        tLinearDelay allpassDelays[8];
-        tLinearDelay combDelays[6];
-        float allpassCoeff;
-        float combCoeffs[6];
-        float lowpassState;
-        
-        float lastIn, lastOut;
-        
-    } _tNReverb;
-    
-    typedef _tNReverb* tNReverb;
-    
-    void    tNReverb_init           (tNReverb* const, float t60);
-    void    tNReverb_free           (tNReverb* const);
-    void    tNReverb_initToPool     (tNReverb* const, float t60, tMempool* const);
-    void    tNReverb_freeFromPool   (tNReverb* const, tMempool* const);
-    
-    void    tNReverb_clear          (tNReverb* const);
-    float   tNReverb_tick           (tNReverb* const, float input);
-    void    tNReverb_tickStereo     (tNReverb* const rev, float input, float* output);
-    
-    // Set reverb time in seconds.
-    void    tNReverb_setT60         (tNReverb* const, float t60);
-    
-    // Set mix between dry input and wet output signal.
-    void    tNReverb_setMix         (tNReverb* const, float mix);
-    
-    //==============================================================================
-    
-    typedef struct _tDattorroReverb
-    {
-        float   predelay;
-        float   input_filter;
-        float   feedback_filter;
-        float   feedback_gain;
-        float   mix;
-        uint32_t frozen;
-        
-        float   size, size_max, t;
-        
-        float   f1_delay_2_last,
-        f2_delay_2_last;
-        
-        float   f1_last,
-        f2_last;
-        
-        // INPUT
-        tTapeDelay  in_delay;
-        tOnePole    in_filter;
-        tAllpass    in_allpass[4];
-        
-        // FEEDBACK 1
-        tAllpass    f1_allpass;
-        tTapeDelay  f1_delay_1;
-        tOnePole    f1_filter;
-        tTapeDelay  f1_delay_2;
-        tTapeDelay  f1_delay_3;
-        tHighpass   f1_hp;
-        
-        tCycle      f1_lfo;
-        
-        // FEEDBACK 2
-        tAllpass    f2_allpass;
-        tTapeDelay  f2_delay_1;
-        tOnePole    f2_filter;
-        tTapeDelay  f2_delay_2;
-        tTapeDelay  f2_delay_3;
-        tHighpass   f2_hp;
-        
-        tCycle      f2_lfo;
-        
-    } _tDattorroReverb;
-    
-    typedef _tDattorroReverb* tDattorroReverb;
-    
-    void    tDattorroReverb_init              (tDattorroReverb* const);
-    void    tDattorroReverb_free              (tDattorroReverb* const);
-    void    tDattorroReverb_initToPool        (tDattorroReverb* const, tMempool* const);
-    void    tDattorroReverb_freeFromPool      (tDattorroReverb* const, tMempool* const);
-    
-    void    tDattorroReverb_clear             (tDattorroReverb* const);
-    float   tDattorroReverb_tick              (tDattorroReverb* const, float input);
-    void    tDattorroReverb_tickStereo        (tDattorroReverb* const rev, float input, float* output);
-    void    tDattorroReverb_setMix            (tDattorroReverb* const, float mix);
-    void    tDattorroReverb_setFreeze         (tDattorroReverb* const rev, uint32_t freeze);
-    void    tDattorroReverb_setHP             (tDattorroReverb* const, float freq);
-    void    tDattorroReverb_setSize           (tDattorroReverb* const, float size);
-    void    tDattorroReverb_setInputDelay     (tDattorroReverb* const, float preDelay);
-    void    tDattorroReverb_setInputFilter    (tDattorroReverb* const, float freq);
-    void    tDattorroReverb_setFeedbackFilter (tDattorroReverb* const, float freq);
-    void    tDattorroReverb_setFeedbackGain   (tDattorroReverb* const, float gain);
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_REVERB_H_INCLUDED
-
-//==============================================================================
-
--- a/LEAF/Inc/leaf-sampling.h
+++ /dev/null
@@ -1,188 +1,0 @@
-/*==============================================================================
- 
- leaf-sampling.h
- Created: 23 Jan 2019 11:22:09am
- Author:  Mike Mulshine
- 
- ==============================================================================*/
-
-
-#ifndef LEAF_SAMPLING_H_INCLUDED
-#define LEAF_SAMPLING_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    //==============================================================================
-    
-#include "leaf-global.h"
-#include "leaf-math.h"
-#include "leaf-mempool.h"
-#include "leaf-envelopes.h"
-#include "leaf-mempool.h"
-#include "leaf-analysis.h"
-    
-    /*!
-     * @internal
-     * Header.
-     * @include basic-oscillators.h
-     * @example basic-oscillators.c
-     * An example.
-     */
-    
-    //==============================================================================
-    
-    typedef enum RecordMode
-    {
-        RecordOneShot = 0,
-        RecordLoop,
-        RecordModeNil
-    } RecordMode;
-    
-    typedef struct _tBuffer
-    {
-        float* buff;
-        
-        uint32_t idx;
-        uint32_t bufferLength;
-        uint32_t recordedLength;
-        RecordMode mode;
-        
-        int active;
-        
-    } _tBuffer;
-    
-    typedef _tBuffer* tBuffer;
-    
-    void  tBuffer_init                  (tBuffer* const, uint32_t length);
-    void  tBuffer_free                  (tBuffer* const);
-    void  tBuffer_initToPool            (tBuffer* const, uint32_t length, tMempool* const);
-    void  tBuffer_freeFromPool          (tBuffer* const, tMempool* const);
-    
-    void  tBuffer_tick                  (tBuffer* const, float sample);
-    
-    void  tBuffer_read                  (tBuffer* const, float* buff, uint32_t len);
-    
-    float tBuffer_get                   (tBuffer* const, int idx);
-    
-    void  tBuffer_record                (tBuffer* const);
-    void  tBuffer_stop                  (tBuffer* const);
-    int   tBuffer_getRecordPosition     (tBuffer* const);
-    
-    void  tBuffer_setRecordMode         (tBuffer* const, RecordMode mode);
-    
-    void  tBuffer_clear                 (tBuffer* const);
-    
-    uint32_t tBuffer_getBufferLength    (tBuffer* const);
-    uint32_t tBuffer_getRecordedLength  (tBuffer* const sb);
-    
-    //==============================================================================
-    
-    typedef enum PlayMode
-    {
-        PlayNormal,
-        PlayLoop,
-        PlayBackAndForth,
-        PlayModeNil
-    } PlayMode;
-    
-    typedef struct _tSampler
-    {
-        tBuffer samp;
-        
-        tRamp gain;
-        
-        float idx;
-        float inc;
-        float last;
-        float iinc;
-        int8_t dir;
-        int8_t flip;
-        int8_t bnf;
-        
-        int32_t start, targetstart;
-        int32_t end, targetend;
-        
-        uint32_t len;
-        uint32_t cfxlen;
-        float numticks;
-        PlayMode mode;
-        int retrigger;
-        
-        int active;
-        
-        uint8_t inCrossfade;
-        
-        float flipStart;
-        float flipIdx;
-        
-    } _tSampler;
-    
-    typedef _tSampler* tSampler;
-    
-    void    tSampler_init               (tSampler* const, tBuffer* const);
-    void    tSampler_free               (tSampler* const);
-    void    tSampler_initToPool         (tSampler* const, tBuffer* const, tMempool* const);
-    void    tSampler_freeFromPool       (tSampler* const, tMempool* const);
-    
-    float   tSampler_tick               (tSampler* const);
-    
-    void    tSampler_setSample          (tSampler* const, tBuffer* const);
-    
-    void    tSampler_setMode            (tSampler* const, PlayMode mode);
-    
-    void    tSampler_play               (tSampler* const);
-    void    tSampler_stop               (tSampler* const);
-    
-    void    tSampler_setStart           (tSampler* const, int32_t start);
-    void    tSampler_setEnd             (tSampler* const, int32_t end);
-    void    tSampler_setLength             (tSampler* const, int32_t length);
-    
-    void    tSampler_setCrossfadeLength (tSampler* const sp, uint32_t length);
-    
-    void    tSampler_setRate            (tSampler* const, float rate);
-    
-    //==============================================================================
-    
-    typedef struct _tAutoSampler
-    {
-        tSampler sampler;
-        tEnvelopeFollower ef;
-        uint32_t windowSize;
-        float threshold;
-        float previousPower;
-        uint32_t sampleCounter;
-        uint32_t powerCounter;
-        uint8_t sampleTriggered;
-    } _tAutoSampler;
-    
-    typedef _tAutoSampler* tAutoSampler;
-    
-    void    tAutoSampler_init               (tAutoSampler* const, tBuffer* const);
-    void    tAutoSampler_free               (tAutoSampler* const);
-    void    tAutoSampler_initToPool         (tAutoSampler* const, tBuffer* const, tMempool* const);
-    void    tAutoSampler_freeFromPool       (tAutoSampler* const, tMempool* const);
-    
-    float   tAutoSampler_tick               (tAutoSampler* const, float input);
-    
-    void    tAutoSampler_setBuffer          (tAutoSampler* const, tBuffer* const);
-    
-    void    tAutoSampler_setMode            (tAutoSampler* const, PlayMode mode);
-    
-    void    tAutoSampler_play               (tAutoSampler* const);
-    void    tAutoSampler_stop               (tAutoSampler* const);
-    
-    void    tAutoSampler_setThreshold       (tAutoSampler* const, float thresh);
-    void    tAutoSampler_setWindowSize      (tAutoSampler* const, uint32_t size);
-    void    tAutoSampler_setCrossfadeLength (tAutoSampler* const, uint32_t length);
-    
-    void    tAutoSampler_setRate            (tAutoSampler* const, float rate);
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif // LEAF_SAMPLING_H_INCLUDED
-
-//==============================================================================
--- a/LEAF/Inc/leaf-tables.h
+++ /dev/null
@@ -1,104 +1,0 @@
-/*==============================================================================
-
-    leaf-tables.h
-    Created: 4 Dec 2016 9:42:41pm
-    Author:  Michael R Mulshine
-
-==============================================================================*/
-
-#ifndef LEAF_TABLES_H_INCLUDED
-#define LEAF_TABLES_H_INCLUDED
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-//==============================================================================
-
-#include "leaf-math.h"
-
-//==============================================================================
-
-#define USE_SAWTOOTH_TABLE 1
-#define USE_SQUARE_TABLE 1
-#define USE_TRIANGLE_TABLE 1
-#define USE_SHAPER_TABLE 1
-    
-#define SINE_TABLE_SIZE 2048
-#define SAW_TABLE_SIZE 2048
-#define SQR_TABLE_SIZE 2048
-#define TRI_TABLE_SIZE 2048
-#define EXP_DECAY_TABLE_SIZE 65536
-#define ATTACK_DECAY_INC_TABLE_SIZE 65536
-#define TANH1_TABLE_SIZE 65536
-#define DECAY_COEFF_TABLE_SIZE 4096
-#define MTOF1_TABLE_SIZE 4096
-#define FILTERTAN_TABLE_SIZE 4096
-    
-#define SHAPER1_TABLE_SIZE 65536
-extern const float __leaf_table_shaper1[SHAPER1_TABLE_SIZE];
-    
-#define COEFFS_SIZE 32
-extern const float* __leaf_tableref_firCoeffs[COEFFS_SIZE];
-extern const float __leaf_tablesize_firNumTaps[COEFFS_SIZE];
-extern const float __leaf_table_fir2XLow[32];
-extern const float __leaf_table_fir4XLow[64];
-extern const float __leaf_table_fir8XLow[64];
-extern const float __leaf_table_fir16XLow[128];
-extern const float __leaf_table_fir32XLow[256];
-extern const float __leaf_table_fir64XLow[256];
-extern const float __leaf_table_fir2XHigh[128];
-extern const float __leaf_table_fir4XHigh[256];
-extern const float __leaf_table_fir8XHigh[256];
-extern const float __leaf_table_fir16XHigh[512];
-extern const float __leaf_table_fir32XHigh[512];
-extern const float __leaf_table_fir64XHigh[1024];
-
-typedef enum TableName
-{
-    T20 = 0,
-    T40,
-    T80,
-    T160,
-    T320,
-    T640,
-    T1280,
-    T2560,
-    T5120,
-    T10240,
-    T20480,
-    TableNameNil
-} TableName;
-
-// mtof lookup table based on input range [0.0,1.0) in 4096 increments - midi frequency values scaled between m25 and m134 (from the Snyderphonics DrumBox code)
-
-extern const float __leaf_table_exp_decay[EXP_DECAY_TABLE_SIZE];
-extern const float __leaf_table_attack_decay_inc[ATTACK_DECAY_INC_TABLE_SIZE];
-
-extern const float __leaf_table_filtertan[FILTERTAN_TABLE_SIZE];
-
-extern const float __leaf_table_mtof1[MTOF1_TABLE_SIZE];
-extern const float __leaf_table_decayCoeffTable[DECAY_COEFF_TABLE_SIZE];
-
-extern const float __leaf_table_tanh1[TANH1_TABLE_SIZE];
-
-//==============================================================================
-
-/* Sine wave table ripped from http://aquaticus.info/pwm-sine-wave. */
-extern const float __leaf_table_sinewave[SINE_TABLE_SIZE];
-
-extern const float __leaf_table_sawtooth[11][SAW_TABLE_SIZE];
-
-extern const float __leaf_table_triangle[11][TRI_TABLE_SIZE];
-
-extern const float __leaf_table_squarewave[11][SQR_TABLE_SIZE];
-
-//==============================================================================
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_TABLES_H_INCLUDED
-
-//==============================================================================
--- a/LEAF/Src/leaf-analysis.c
+++ /dev/null
@@ -1,1054 +1,0 @@
-/*==============================================================================
-
-    leaf-analysis.c
-    Created: 30 Nov 2018 11:56:49am
-    Author:  airship
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-analysis.h"
-#include "..\Externals\d_fft_mayer.h"
-
-#else
-
-#include "../Inc/leaf-analysis.h"
-#include "../Externals/d_fft_mayer.h"
-
-#endif
-
-//===========================================================================
-/* Envelope Follower */
-//===========================================================================
-
-void    tEnvelopeFollower_init(tEnvelopeFollower* const ef, float attackThreshold, float decayCoeff)
-{
-    _tEnvelopeFollower* e = *ef = (_tEnvelopeFollower*) leaf_alloc(sizeof(_tEnvelopeFollower));
-    
-    e->y = 0.0f;
-    e->a_thresh = attackThreshold;
-    e->d_coeff = decayCoeff;
-}
-
-void tEnvelopeFollower_free(tEnvelopeFollower* const ef)
-{
-    _tEnvelopeFollower* e = *ef;
-    
-    leaf_free((char*)e);
-}
-
-void    tEnvelopeFollower_initToPool    (tEnvelopeFollower* const ef, float attackThreshold, float decayCoeff, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvelopeFollower* e = *ef = (_tEnvelopeFollower*) mpool_alloc(sizeof(_tEnvelopeFollower), m);
-    
-    e->y = 0.0f;
-    e->a_thresh = attackThreshold;
-    e->d_coeff = decayCoeff;
-}
-
-void    tEnvelopeFollower_freeFromPool  (tEnvelopeFollower* const ef, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvelopeFollower* e = *ef;
-    
-    mpool_free((char*)e, m);
-}
-
-float   tEnvelopeFollower_tick(tEnvelopeFollower* const ef, float x)
-{
-    _tEnvelopeFollower* e = *ef;
-    
-    if (x < 0.0f ) x = -x;  /* Absolute value. */
-    
-    if ((x >= e->y) && (x > e->a_thresh)) e->y = x;                      /* If we hit a peak, ride the peak to the top. */
-    else                                    e->y = e->y * e->d_coeff;    /* Else, exponential decay of output. */
-    
-    //ef->y = envelope_pow[(uint16_t)(ef->y * (float)UINT16_MAX)] * ef->d_coeff; //not quite the right behavior - too much loss of precision?
-    //ef->y = powf(ef->y, 1.000009f) * ef->d_coeff;  // too expensive
-    
-    if( e->y < VSF)   e->y = 0.0f;
-    
-    return e->y;
-}
-
-int     tEnvelopeFollower_decayCoeff(tEnvelopeFollower* const ef, float decayCoeff)
-{
-    _tEnvelopeFollower* e = *ef;
-    return e->d_coeff = decayCoeff;
-}
-
-int     tEnvelopeFollower_attackThresh(tEnvelopeFollower* const ef, float attackThresh)
-{
-    _tEnvelopeFollower* e = *ef;
-    return e->a_thresh = attackThresh;
-}
-
-
-
-
-
-// zero crossing detector
-
-void    tZeroCrossing_init         (tZeroCrossing* const zc, int maxWindowSize)
-{
-    tZeroCrossing_initToPool   (zc, maxWindowSize, &leaf.mempool);
-}
-void    tZeroCrossing_free         (tZeroCrossing* const zc)
-{
-    tZeroCrossing_freeFromPool   (zc, &leaf.mempool);
-}
-void    tZeroCrossing_initToPool   (tZeroCrossing* const zc, int maxWindowSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tZeroCrossing* z = *zc = (_tZeroCrossing*) mpool_alloc(sizeof(_tZeroCrossing), m);
-
-    z->count = 0;
-    z->maxWindowSize = maxWindowSize;
-    z->currentWindowSize = maxWindowSize;
-    z->invCurrentWindowSize = 1.0f / maxWindowSize;
-    z->position = 0;
-    z->prevPosition = maxWindowSize;
-    z->inBuffer = (float*) mpool_calloc(sizeof(float) * maxWindowSize, m);
-    z->countBuffer = (uint16_t*) mpool_calloc(sizeof(uint16_t) * maxWindowSize, m);
-}
-
-void    tZeroCrossing_freeFromPool (tZeroCrossing* const zc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tZeroCrossing* z = *zc;
-    mpool_free((char*)z->inBuffer, m);
-    mpool_free((char*)z->countBuffer, m);
-    mpool_free((char*)z, m);
-}
-
-//returns proportion of zero crossings within window size (0.0 would be none in window, 1.0 would be all zero crossings)
-float   tZeroCrossing_tick         (tZeroCrossing* const zc, float input)
-{
-    _tZeroCrossing* z = *zc;
-
-    z->inBuffer[z->position] = input;
-    int futurePosition = ((z->position + 1) % z->currentWindowSize);
-    float output = 0.0f;
-
-    //add new value to count
-    if ((z->inBuffer[z->position] * z->inBuffer[z->prevPosition]) < 0.0f)
-    {
-        //zero crossing happened, add it to the count array
-        z->countBuffer[z->position] = 1;
-        z->count++;
-    }
-    else
-    {
-        z->countBuffer[z->position] = 0;
-    }
-
-    //remove oldest value from count
-    if (z->countBuffer[futurePosition] > 0)
-    {
-        z->count--;
-        if (z->count < 0)
-        {
-            z->count = 0;
-        }
-    }
-
-    z->prevPosition = z->position;
-    z->position = futurePosition;
-
-    output = z->count * z->invCurrentWindowSize;
-
-    return output;
-}
-
-
-void    tZeroCrossing_setWindow        (tZeroCrossing* const zc, float windowSize)
-{
-    _tZeroCrossing* z = *zc;
-    if (windowSize <= z->maxWindowSize)
-        {
-            z->currentWindowSize = windowSize;
-        }
-    else
-    {
-        z->currentWindowSize = z->maxWindowSize;
-    }
-    z->invCurrentWindowSize = 1.0f / z->currentWindowSize;
-}
-
-
-
-
-
-//===========================================================================
-/* Power Follower */
-//===========================================================================
-void    tPowerFollower_init(tPowerFollower* const pf, float factor)
-{
-    _tPowerFollower* p = *pf = (_tPowerFollower*) leaf_alloc(sizeof(_tPowerFollower));
-    
-    p->curr=0.0f;
-    p->factor=factor;
-    p->oneminusfactor=1.0f-factor;
-}
-
-void tPowerFollower_free(tPowerFollower* const pf)
-{
-    _tPowerFollower* p = *pf;
-    
-    leaf_free((char*)p);
-}
-
-void    tPowerFollower_initToPool   (tPowerFollower* const pf, float factor, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPowerFollower* p = *pf = (_tPowerFollower*) mpool_alloc(sizeof(_tPowerFollower), m);
-    
-    p->curr=0.0f;
-    p->factor=factor;
-    p->oneminusfactor=1.0f-factor;
-}
-
-void    tPowerFollower_freeFromPool (tPowerFollower* const pf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPowerFollower* p = *pf;
-    
-    mpool_free((char*)p, m);
-}
-
-int     tPowerFollower_setFactor(tPowerFollower* const pf, float factor)
-{
-    _tPowerFollower* p = *pf;
-    
-    if (factor<0) factor=0;
-    if (factor>1) factor=1;
-    p->factor=factor;
-    p->oneminusfactor=1.0f-factor;
-    return 0;
-}
-
-float   tPowerFollower_tick(tPowerFollower* const pf, float input)
-{
-    _tPowerFollower* p = *pf;
-    p->curr = p->factor*input*input+p->oneminusfactor*p->curr;
-    return p->curr;
-}
-
-float   tPowerFollower_sample(tPowerFollower* const pf)
-{
-    _tPowerFollower* p = *pf;
-    return p->curr;
-}
-
-
-
-
-//===========================================================================
-/* ---------------- env~ - simple envelope follower. ----------------- */
-//===========================================================================
-
-void tEnvPD_init(tEnvPD* const xpd, int ws, int hs, int bs)
-{
-    _tEnvPD* x = *xpd = (_tEnvPD*) leaf_calloc(sizeof(_tEnvPD));
-    
-    int period = hs, npoints = ws;
-    
-    int i;
-    
-    if (npoints < 1) npoints = 1024;
-    if (period < 1) period = npoints/2;
-    if (period < npoints / MAXOVERLAP + 1)
-        period = npoints / MAXOVERLAP + 1;
-    
-    x->x_npoints = npoints;
-    x->x_phase = 0;
-    x->x_period = period;
-    
-    x->windowSize = npoints;
-    x->hopSize = period;
-    x->blockSize = bs;
-    
-    for (i = 0; i < MAXOVERLAP; i++) x->x_sumbuf[i] = 0.0f;
-    for (i = 0; i < npoints; i++)
-        x->buf[i] = (1.0f - cosf((TWO_PI * i) / npoints))/npoints;
-    for (; i < npoints+INITVSTAKEN; i++) x->buf[i] = 0.0f;
-    
-    x->x_f = 0.0f;
-    
-    x->x_allocforvs = INITVSTAKEN;
-    
-    // ~ ~ ~ dsp ~ ~ ~
-    if (x->x_period % x->blockSize)
-    {
-        x->x_realperiod = x->x_period + x->blockSize - (x->x_period % x->blockSize);
-    }
-    else
-    {
-        x->x_realperiod = x->x_period;
-    }
-    // ~ ~ ~ ~ ~ ~ ~ ~
-}
-
-void tEnvPD_free (tEnvPD* const xpd)
-{
-    _tEnvPD* x = *xpd;
-    
-    leaf_free((char*)x);
-}
-
-void    tEnvPD_initToPool       (tEnvPD* const xpd, int ws, int hs, int bs, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvPD* x = *xpd = (_tEnvPD*) mpool_calloc(sizeof(_tEnvPD), m);
-    
-    int period = hs, npoints = ws;
-    
-    int i;
-    
-    if (npoints < 1) npoints = 1024;
-    if (period < 1) period = npoints/2;
-    if (period < npoints / MAXOVERLAP + 1)
-        period = npoints / MAXOVERLAP + 1;
-    
-    x->x_npoints = npoints;
-    x->x_phase = 0;
-    x->x_period = period;
-    
-    x->windowSize = npoints;
-    x->hopSize = period;
-    x->blockSize = bs;
-    
-    for (i = 0; i < MAXOVERLAP; i++) x->x_sumbuf[i] = 0;
-    for (i = 0; i < npoints; i++)
-        x->buf[i] = (1.0f - cosf((2 * PI * i) / npoints))/npoints;
-    for (; i < npoints+INITVSTAKEN; i++) x->buf[i] = 0;
-    
-    x->x_f = 0;
-    
-    x->x_allocforvs = INITVSTAKEN;
-    
-    // ~ ~ ~ dsp ~ ~ ~
-    if (x->x_period % x->blockSize)
-    {
-        x->x_realperiod = x->x_period + x->blockSize - (x->x_period % x->blockSize);
-    }
-    else
-    {
-        x->x_realperiod = x->x_period;
-    }
-    // ~ ~ ~ ~ ~ ~ ~ ~
-}
-
-void    tEnvPD_freeFromPool     (tEnvPD* const xpd, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvPD* x = *xpd;
-    
-    mpool_free((char*)x, m);
-}
-
-float tEnvPD_tick (tEnvPD* const xpd)
-{
-    _tEnvPD* x = *xpd;
-    return powtodb(x->x_result);
-}
-
-void tEnvPD_processBlock(tEnvPD* const xpd, float* in)
-{
-    _tEnvPD* x = *xpd;
-    
-    int n = x->blockSize;
-    
-    int count;
-    t_sample *sump;
-    in += n;
-    for (count = x->x_phase, sump = x->x_sumbuf;
-         count < x->x_npoints; count += x->x_realperiod, sump++)
-    {
-        t_sample *hp = x->buf + count;
-        t_sample *fp = in;
-        t_sample sum = *sump;
-        int i;
-        
-        for (i = 0; i < n; i++)
-        {
-            fp--;
-            sum += *hp++ * (*fp * *fp);
-        }
-        *sump = sum;
-    }
-    sump[0] = 0;
-    x->x_phase -= n;
-    if (x->x_phase < 0)
-    {
-        x->x_result = x->x_sumbuf[0];
-        for (count = x->x_realperiod, sump = x->x_sumbuf;
-             count < x->x_npoints; count += x->x_realperiod, sump++)
-            sump[0] = sump[1];
-        sump[0] = 0;
-        x->x_phase = x->x_realperiod - n;
-    }
-}
-
-//===========================================================================
-// ATTACKDETECTION
-//===========================================================================
-/********Private function prototypes**********/
-static void atkdtk_init(tAttackDetection* const a, int blocksize, int atk, int rel);
-static void atkdtk_envelope(tAttackDetection* const a, float *in);
-
-/********Constructor/Destructor***************/
-
-void tAttackDetection_init(tAttackDetection* const ad, int blocksize, int atk, int rel)
-{
-    *ad = (_tAttackDetection*) leaf_alloc(sizeof(_tAttackDetection));
-    
-    atkdtk_init(ad, blocksize, atk, rel);
-}
-
-void tAttackDetection_free(tAttackDetection* const ad)
-{
-    _tAttackDetection* a = *ad;
-    
-    leaf_free((char*)a);
-}
-
-void    tAttackDetection_initToPool     (tAttackDetection* const ad, int blocksize, int atk, int rel, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    *ad = (_tAttackDetection*) mpool_alloc(sizeof(_tAttackDetection), m);
-    
-    atkdtk_init(ad, blocksize, atk, rel);
-}
-
-void    tAttackDetection_freeFromPool   (tAttackDetection* const ad, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAttackDetection* a = *ad;
-    
-    mpool_free((char*)a, m);
-}
-
-/*******Public Functions***********/
-
-
-void tAttackDetection_setBlocksize(tAttackDetection* const ad, int size)
-{
-    _tAttackDetection* a = *ad;
-    
-    if(!((size==64)|(size==128)|(size==256)|(size==512)|(size==1024)|(size==2048)))
-        size = DEFBLOCKSIZE;
-    a->blocksize = size;
-    
-    return;
-    
-}
-
-void tAttackDetection_setSamplerate(tAttackDetection* const ad, int inRate)
-{
-    _tAttackDetection* a = *ad;
-    
-    a->samplerate = inRate;
-    
-    //Reset atk and rel to recalculate coeff
-    tAttackDetection_setAttack(ad, a->atk);
-    tAttackDetection_setRelease(ad, a->rel);
-}
-
-void tAttackDetection_setThreshold(tAttackDetection* const ad, float thres)
-{
-    _tAttackDetection* a = *ad;
-    a->threshold = thres;
-}
-
-void tAttackDetection_setAttack(tAttackDetection* const ad, int inAtk)
-{
-    _tAttackDetection* a = *ad;
-    a->atk = inAtk;
-    a->atk_coeff = pow(0.01, 1.0/(a->atk * a->samplerate * 0.001));
-}
-
-void tAttackDetection_setRelease(tAttackDetection* const ad, int inRel)
-{
-    _tAttackDetection* a = *ad;
-    a->rel = inRel;
-    a->rel_coeff = pow(0.01, 1.0/(a->rel * a->samplerate * 0.001));
-}
-
-
-int tAttackDetection_detect(tAttackDetection* const ad, float *in)
-{
-    _tAttackDetection* a = *ad;
-    
-    int result;
-    
-    atkdtk_envelope(ad, in);
-    
-    if(a->env >= a->prevAmp*2) //2 times greater = 6dB increase
-        result = 1;
-    else
-        result = 0;
-    
-    a->prevAmp = a->env;
-    
-    return result;
-}
-
-/*******Private Functions**********/
-
-static void atkdtk_init(tAttackDetection* const ad, int blocksize, int atk, int rel)
-{
-    _tAttackDetection* a = *ad;
-    
-    a->env = 0;
-    a->blocksize = blocksize;
-    a->threshold = DEFTHRESHOLD;
-    a->samplerate = leaf.sampleRate;
-    a->prevAmp = 0;
-    
-    a->env = 0;
-    
-    tAttackDetection_setAttack(ad, atk);
-    tAttackDetection_setRelease(ad, rel);
-}
-
-static void atkdtk_envelope(tAttackDetection* const ad, float *in)
-{
-    _tAttackDetection* a = *ad;
-    
-    int i = 0;
-    float tmp;
-    for(i = 0; i < a->blocksize; ++i){
-        tmp = fastabsf(in[i]);
-        
-        if(tmp > a->env)
-            a->env = a->atk_coeff * (a->env - tmp) + tmp;
-        else
-            a->env = a->rel_coeff * (a->env - tmp) + tmp;
-    }
-    
-}
-
-//===========================================================================
-// SNAC
-//===========================================================================
-/******************************************************************************/
-/***************************** private procedures *****************************/
-/******************************************************************************/
-
-#define REALFFT mayer_realfft
-#define REALIFFT mayer_realifft
-
-static void snac_analyzeframe(tSNAC* const s);
-static void snac_autocorrelation(tSNAC* const s);
-static void snac_normalize(tSNAC* const s);
-static void snac_pickpeak(tSNAC* const s);
-static void snac_periodandfidelity(tSNAC* const s);
-static void snac_biasbuf(tSNAC* const s);
-static float snac_spectralpeak(tSNAC* const s, float periodlength);
-
-
-/******************************************************************************/
-/******************************** constructor, destructor *********************/
-/******************************************************************************/
-
-
-void tSNAC_init(tSNAC* const snac, int overlaparg)
-{
-    _tSNAC* s = *snac = (_tSNAC*) leaf_calloc(sizeof(_tSNAC));
-    
-    s->biasfactor = DEFBIAS;
-    s->timeindex = 0;
-    s->periodindex = 0;
-    s->periodlength = 0.;
-    s->fidelity = 0.;
-    s->minrms = DEFMINRMS;
-    s->framesize = SNAC_FRAME_SIZE;
-    
-    s->inputbuf = (float*) leaf_calloc(sizeof(float) * SNAC_FRAME_SIZE);
-    s->processbuf = (float*) leaf_calloc(sizeof(float) * (SNAC_FRAME_SIZE * 2));
-    s->spectrumbuf = (float*) leaf_calloc(sizeof(float) * (SNAC_FRAME_SIZE / 2));
-    s->biasbuf = (float*) leaf_calloc(sizeof(float) * SNAC_FRAME_SIZE);
-    
-    snac_biasbuf(snac);
-    tSNAC_setOverlap(snac, overlaparg);
-}
-
-void tSNAC_free(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    leaf_free((char*)s->inputbuf);
-    leaf_free((char*)s->processbuf);
-    leaf_free((char*)s->spectrumbuf);
-    leaf_free((char*)s->biasbuf);
-    leaf_free((char*)s);
-}
-
-void    tSNAC_initToPool    (tSNAC* const snac, int overlaparg, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSNAC* s = *snac = (_tSNAC*) mpool_alloc(sizeof(_tSNAC), m);
-    
-    s->biasfactor = DEFBIAS;
-    s->timeindex = 0;
-    s->periodindex = 0;
-    s->periodlength = 0.;
-    s->fidelity = 0.;
-    s->minrms = DEFMINRMS;
-    s->framesize = SNAC_FRAME_SIZE;
-
-    s->inputbuf = (float*) mpool_calloc(sizeof(float) * SNAC_FRAME_SIZE, m);
-    s->processbuf = (float*) mpool_calloc(sizeof(float) * (SNAC_FRAME_SIZE * 2), m);
-    s->spectrumbuf = (float*) mpool_calloc(sizeof(float) * (SNAC_FRAME_SIZE / 2), m);
-    s->biasbuf = (float*) mpool_calloc(sizeof(float) * SNAC_FRAME_SIZE, m);
-    
-    snac_biasbuf(snac);
-    tSNAC_setOverlap(snac, overlaparg);
-}
-
-void    tSNAC_freeFromPool  (tSNAC* const snac, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSNAC* s = *snac;
-    
-    mpool_free((char*)s->inputbuf, m);
-    mpool_free((char*)s->processbuf, m);
-    mpool_free((char*)s->spectrumbuf, m);
-    mpool_free((char*)s->biasbuf, m);
-    mpool_free((char*)s, m);
-}
-
-/******************************************************************************/
-/************************** public access functions****************************/
-/******************************************************************************/
-
-
-void tSNAC_ioSamples(tSNAC* const snac, float *in, float *out, int size)
-{
-    _tSNAC* s = *snac;
-    
-    int timeindex = s->timeindex;
-    int mask = s->framesize - 1;
-    int outindex = 0;
-    float *inputbuf = s->inputbuf;
-    float *processbuf = s->processbuf;
-    
-    // call analysis function when it is time
-    if(!(timeindex & (s->framesize / s->overlap - 1))) snac_analyzeframe(snac);
-    
-    while(size--)
-    {
-        inputbuf[timeindex] = *in++;
-        out[outindex++] = processbuf[timeindex++];
-        timeindex &= mask;
-    }
-    s->timeindex = timeindex;
-}
-
-void tSNAC_setOverlap(tSNAC* const snac, int lap)
-{
-    _tSNAC* s = *snac;
-    if(!((lap==1)|(lap==2)|(lap==4)|(lap==8))) lap = DEFOVERLAP;
-    s->overlap = lap;
-}
-
-
-void tSNAC_setBias(tSNAC* const snac, float bias)
-{
-    _tSNAC* s = *snac;
-    if(bias > 1.) bias = 1.;
-    if(bias < 0.) bias = 0.;
-    s->biasfactor = bias;
-    snac_biasbuf(snac);
-    return;
-}
-
-
-void tSNAC_setMinRMS(tSNAC* const snac, float rms)
-{
-    _tSNAC* s = *snac;
-    if(rms > 1.) rms = 1.;
-    if(rms < 0.) rms = 0.;
-    s->minrms = rms;
-    return;
-}
-
-
-float tSNAC_getPeriod(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    return(s->periodlength);
-}
-
-
-float tSNAC_getFidelity(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    return(s->fidelity);
-}
-
-
-/******************************************************************************/
-/***************************** private procedures *****************************/
-/******************************************************************************/
-
-
-// main analysis function
-static void snac_analyzeframe(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    int n, tindex = s->timeindex;
-    int framesize = s->framesize;
-    int mask = framesize - 1;
-    float norm = 1. / sqrt((float)(framesize * 2));
-    
-    float *inputbuf = s->inputbuf;
-    float *processbuf = s->processbuf;
-    
-    // copy input to processing buffers
-    for(n=0; n<framesize; n++)
-    {
-        processbuf[n] = inputbuf[tindex] * norm;
-        tindex++;
-        tindex &= mask;
-    }
-    
-    // zeropadding
-    for(n=framesize; n<(framesize<<1); n++) processbuf[n] = 0.;
-    
-    // call analysis procedures
-    snac_autocorrelation(snac);
-    snac_normalize(snac);
-    snac_pickpeak(snac);
-    snac_periodandfidelity(snac);
-}
-
-
-static void snac_autocorrelation(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    int n, m;
-    int framesize = s->framesize;
-    int fftsize = framesize * 2;
-    float *processbuf = s->processbuf;
-    float *spectrumbuf = s->spectrumbuf;
-    
-    REALFFT(fftsize, processbuf);
-    
-    // compute power spectrum
-    processbuf[0] *= processbuf[0];                      // DC
-    processbuf[framesize] *= processbuf[framesize];      // Nyquist
-    
-    for(n=1; n<framesize; n++)
-    {
-        processbuf[n] = processbuf[n] * processbuf[n]
-        + processbuf[fftsize-n] * processbuf[fftsize-n]; // imag coefficients appear reversed
-        processbuf[fftsize-n] = 0.;
-    }
-    
-    // store power spectrum up to SR/4 for possible later use
-    for(m=0; m<(framesize>>1); m++)
-    {
-        spectrumbuf[m] = processbuf[m];
-    }
-    
-    // transform power spectrum to autocorrelation function
-    REALIFFT(fftsize, processbuf);
-    return;
-}
-
-
-static void snac_normalize(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    int framesize = s->framesize;
-    int framesizeplustimeindex = s->framesize + s->timeindex;
-    int timeindexminusone = s->timeindex - 1;
-    int n, m;
-    int mask = framesize - 1;
-    int seek = framesize * SEEK;
-    float *inputbuf = s->inputbuf;
-    float *processbuf= s->processbuf;
-    float signal1, signal2;
-    
-    // minimum RMS implemented as minimum autocorrelation at index 0
-    // functionally equivalent to white noise floor
-    float rms = s->minrms / sqrt(1.0f / (float)framesize);
-    float minrzero = rms * rms;
-    float rzero = processbuf[0];
-    if(rzero < minrzero) rzero = minrzero;
-    double normintegral = (double)rzero * 2.;
-    
-    // normalize biased autocorrelation function
-    // inputbuf is circular buffer: timeindex may be non-zero when overlap > 1
-    processbuf[0] = 1;
-    for(n=1, m=s->timeindex+1; n<seek; n++, m++)
-    {
-        signal1 = inputbuf[(n + timeindexminusone)&mask];
-        signal2 = inputbuf[(framesizeplustimeindex - n)&mask];
-        normintegral -= (double)(signal1 * signal1 + signal2 * signal2);
-        processbuf[n] /= (float)normintegral * 0.5f;
-    }
-    
-    // flush instable function tail
-    for(n = seek; n<framesize; n++) processbuf[n] = 0.;
-    return;
-}
-
-
-static void snac_periodandfidelity(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    float periodlength;
-    
-    if(s->periodindex)
-    {
-        periodlength = (float)s->periodindex +
-        interpolate3phase(s->processbuf, s->periodindex);
-        if(periodlength < 8) periodlength = snac_spectralpeak(snac, periodlength);
-        s->periodlength = periodlength;
-        s->fidelity = interpolate3max(s->processbuf, s->periodindex);
-    }
-    return;
-}
-
-// select the peak which most probably represents period length
-static void snac_pickpeak(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    int n, peakindex=0;
-    int seek = s->framesize * SEEK;
-    float *processbuf= s->processbuf;
-    float maxvalue = 0.;
-    float biasedpeak;
-    float *biasbuf = s->biasbuf;
-    
-    // skip main lobe
-    for(n=1; n<seek; n++)
-    {
-        if(processbuf[n] < 0.) break;
-    }
-    
-    // find interpolated / biased maximum in SNAC function
-    // interpolation finds the 'real maximum'
-    // biasing favours the first candidate
-    for(; n<seek-1; n++)
-    {
-        if(processbuf[n] >= processbuf[n-1])
-        {
-            if(processbuf[n] > processbuf[n+1])     // we have a local peak
-            {
-                biasedpeak = interpolate3max(processbuf, n) * biasbuf[n];
-                
-                if(biasedpeak > maxvalue)
-                {
-                    maxvalue = biasedpeak;
-                    peakindex = n;
-                }
-            }
-        }
-    }
-    s->periodindex = peakindex;
-    return;
-}
-
-
-// verify period length via frequency domain (up till SR/4)
-// frequency domain is more precise than lag domain for period lengths < 8
-// argument 'periodlength' is initial estimation from autocorrelation
-static float snac_spectralpeak(tSNAC* const snac, float periodlength)
-{
-    _tSNAC* s = *snac;
-    
-    if(periodlength < 4.0f) return periodlength;
-    
-    float max = 0.;
-    int n, startbin, stopbin, peakbin = 0;
-    int spectrumsize = s->framesize>>1;
-    float *spectrumbuf = s->spectrumbuf;
-    float peaklocation = (float)(s->framesize * 2.0f) / periodlength;
-    
-    startbin = (int)(peaklocation * 0.8f + 0.5f);
-    if(startbin < 1) startbin = 1;
-    stopbin = (int)(peaklocation * 1.25f + 0.5f);
-    if(stopbin >= spectrumsize - 1) stopbin = spectrumsize - 1;
-    
-    for(n=startbin; n<stopbin; n++)
-    {
-        if(spectrumbuf[n] >= spectrumbuf[n-1])
-        {
-            if(spectrumbuf[n] > spectrumbuf[n+1])
-            {
-                if(spectrumbuf[n] > max)
-                {
-                    max = spectrumbuf[n];
-                    peakbin = n;
-                }
-            }
-        }
-    }
-    
-    // calculate amplitudes in peak region
-    for(n=(peakbin-1); n<(peakbin+2); n++)
-    {
-        spectrumbuf[n] = sqrtf(spectrumbuf[n]);
-    }
-    
-    peaklocation = (float)peakbin + interpolate3phase(spectrumbuf, peakbin);
-    periodlength = (float)(s->framesize * 2.0f) / peaklocation;
-    
-    return periodlength;
-}
-
-
-// modified logarithmic bias function
-static void snac_biasbuf(tSNAC* const snac)
-{
-    _tSNAC* s = *snac;
-    
-    int n;
-    int maxperiod = (int)(s->framesize * (float)SEEK);
-    float bias = s->biasfactor / logf((float)(maxperiod - 4));
-    float *biasbuf = s->biasbuf;
-    
-    for(n=0; n<5; n++)    // periods < 5 samples can't be tracked
-    {
-        biasbuf[n] = 0.0f;
-    }
-    
-    for(n=5; n<maxperiod; n++)
-    {
-        biasbuf[n] = 1.0f - (float)logf(n - 4) * bias;
-    }
-}
-
-//===========================================================================
-// PERIODDETECTION
-//===========================================================================
-void    tPeriodDetection_init    (tPeriodDetection* const pd, float* in, float* out, int bufSize, int frameSize)
-{
-    tPeriodDetection_initToPool(pd, in, out, bufSize, frameSize, &leaf.mempool);
-}
-
-void tPeriodDetection_free (tPeriodDetection* const pd)
-{
-    tPeriodDetection_freeFromPool(pd, &leaf.mempool);
-}
-
-void    tPeriodDetection_initToPool  (tPeriodDetection* const pd, float* in, float* out, int bufSize, int frameSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPeriodDetection* p = *pd = (_tPeriodDetection*) mpool_calloc(sizeof(_tPeriodDetection), m);
-    
-    p->inBuffer = in;
-    p->outBuffer = out;
-    p->bufSize = bufSize;
-    p->frameSize = frameSize;
-    p->framesPerBuffer = p->bufSize / p->frameSize;
-    p->curBlock = 1;
-    p->lastBlock = 0;
-    p->index = 0;
-    
-    p->hopSize = DEFHOPSIZE;
-    p->windowSize = DEFWINDOWSIZE;
-    p->fba = FBA;
-    
-    tEnvPD_initToPool(&p->env, p->windowSize, p->hopSize, p->frameSize, mp);
-    
-    tSNAC_initToPool(&p->snac, DEFOVERLAP, mp);
-    
-    p->timeConstant = DEFTIMECONSTANT;
-    p->radius = expf(-1000.0f * p->hopSize * leaf.invSampleRate / p->timeConstant);
-    p->fidelityThreshold = 0.95;
-}
-
-void    tPeriodDetection_freeFromPool       (tPeriodDetection* const pd, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPeriodDetection* p = *pd;
-    
-    tEnvPD_freeFromPool(&p->env, mp);
-    tSNAC_freeFromPool(&p->snac, mp);
-    mpool_free((char*)p, m);
-}
-
-float tPeriodDetection_tick (tPeriodDetection* pd, float sample)
-{
-    _tPeriodDetection* p = *pd;
-    
-    int i, iLast;
-    
-    i = (p->curBlock*p->frameSize);
-    iLast = (p->lastBlock*p->frameSize)+p->index;
-    
-    p->i = i;
-    p->iLast = iLast;
-    
-    p->inBuffer[i+p->index] = sample;
-    
-    p->index++;
-    p->indexstore = p->index;
-    if (p->index >= p->frameSize)
-    {
-        p->index = 0;
-        
-        tEnvPD_processBlock(&p->env, &(p->inBuffer[i]));
-        
-        tSNAC_ioSamples(&p->snac, &(p->inBuffer[i]), &(p->outBuffer[i]), p->frameSize);
-        float fidelity = tSNAC_getFidelity(&p->snac);
-        // Fidelity threshold recommended by Katja Vetters is 0.95 for most instruments/voices http://www.katjaas.nl/helmholtz/helmholtz.html
-        if (fidelity > p->fidelityThreshold) p->period = tSNAC_getPeriod(&p->snac);
-        
-        p->curBlock++;
-        if (p->curBlock >= p->framesPerBuffer) p->curBlock = 0;
-        p->lastBlock++;
-        if (p->lastBlock >= p->framesPerBuffer) p->lastBlock = 0;
-    }
-    
-    return p->period;
-}
-
-float tPeriodDetection_getPeriod(tPeriodDetection* pd)
-{
-    _tPeriodDetection* p = *pd;
-    return p->period;
-}
-
-void tPeriodDetection_setHopSize(tPeriodDetection* pd, int hs)
-{
-    _tPeriodDetection* p = *pd;
-    p->hopSize = hs;
-}
-
-void tPeriodDetection_setWindowSize(tPeriodDetection* pd, int ws)
-{
-    _tPeriodDetection* p = *pd;
-    p->windowSize = ws;
-}
-
-void tPeriodDetection_setFidelityThreshold(tPeriodDetection* pd, float threshold)
-{
-    _tPeriodDetection* p = *pd;
-    p->fidelityThreshold = threshold;
-}
-
-void tPeriodDetection_setAlpha            (tPeriodDetection* pd, float alpha)
-{
-    _tPeriodDetection* p = *pd;
-    p->alpha = LEAF_clip(0.0f, alpha, 1.0f);
-}
-
-void tPeriodDetection_setTolerance        (tPeriodDetection* pd, float tolerance)
-{
-    _tPeriodDetection* p = *pd;
-    if (tolerance < 0.0f) p->tolerance = 0.0f;
-    else p->tolerance = tolerance;
-}
--- a/LEAF/Src/leaf-delay.c
+++ /dev/null
@@ -1,928 +1,0 @@
-/*==============================================================================
-
-    leaf-delay.c
-    Created: 20 Jan 2017 12:01:24pm
-    Author:  Michael R Mulshine
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-delay.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-delay.h"
-#include "../leaf.h"
-
-#endif
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ Delay ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tDelay_init (tDelay* const dl, uint32_t delay, uint32_t maxDelay)
-{
-    tDelay_initToPool(dl, delay, maxDelay, &leaf.mempool);
-}
-
-void    tDelay_free(tDelay* const dl)
-{
-    tDelay_freeFromPool(dl, &leaf.mempool);
-}
-
-void    tDelay_initToPool   (tDelay* const dl, uint32_t delay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tDelay* d = *dl = (_tDelay*) mpool_alloc(sizeof(_tDelay), m);
-    
-    d->maxDelay = maxDelay;
-    
-    d->delay = delay;
-    
-    d->buff = (float*) mpool_alloc(sizeof(float) * maxDelay, m);
-    
-    d->inPoint = 0;
-    d->outPoint = 0;
-    
-    d->lastIn = 0.0f;
-    d->lastOut = 0.0f;
-    
-    d->gain = 1.0f;
-    
-    tDelay_setDelay(dl, d->delay);
-}
-
-void        tDelay_freeFromPool (tDelay* const dl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tDelay* d = *dl;
-    
-    mpool_free((char*)d->buff, m);
-    mpool_free((char*)d, m);
-}
-
-void    tDelay_clear(tDelay* const dl)
-{
-    _tDelay* d = *dl;
-    for (int i = 0; i < d->maxDelay; i++)
-    {
-        d->buff[i] = 0;
-    }
-}
-
-float   tDelay_tick (tDelay* const dl, float input)
-{
-    _tDelay* d = *dl;
-    
-    // Input
-    d->lastIn = input;
-    d->buff[d->inPoint] = input * d->gain;
-    if (++(d->inPoint) == d->maxDelay)     d->inPoint = 0;
-    
-    // Output
-    d->lastOut = d->buff[d->outPoint];
-    if (++(d->outPoint) == d->maxDelay)    d->outPoint = 0;
-    
-    return d->lastOut;
-}
-
-int     tDelay_setDelay (tDelay* const dl, uint32_t delay)
-{
-    _tDelay* d = *dl;
-    
-    d->delay = LEAF_clip(0.0f, delay,  d->maxDelay);
-    
-    // read chases write
-    if ( d->inPoint >= delay )  d->outPoint = d->inPoint - d->delay;
-    else                        d->outPoint = d->maxDelay + d->inPoint - d->delay;
-    
-    return 0;
-}
-
-float tDelay_tapOut (tDelay* const dl, uint32_t tapDelay)
-{
-    _tDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return d->buff[tap];
-    
-}
-
-void tDelay_tapIn (tDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    d->buff[tap] = value;
-}
-
-float tDelay_addTo (tDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return (d->buff[tap] += value);
-}
-
-uint32_t   tDelay_getDelay (tDelay* const dl)
-{
-    _tDelay* d = *dl;
-    return d->delay;
-}
-
-float   tDelay_getLastOut (tDelay* const dl)
-{
-    _tDelay* d = *dl;
-    return d->lastOut;
-}
-
-float   tDelay_getLastIn (tDelay* const dl)
-{
-    _tDelay* d = *dl;
-    return d->lastIn;
-}
-
-void tDelay_setGain (tDelay* const dl, float gain)
-{
-    _tDelay* d = *dl;
-    if (gain < 0.0f)    d->gain = 0.0f;
-    else                d->gain = gain;
-}
-
-float tDelay_getGain (tDelay* const dl)
-{
-    _tDelay* d = *dl;
-    return d->gain;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ LinearDelay ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void   tLinearDelay_init (tLinearDelay* const dl, float delay, uint32_t maxDelay)
-{
-    tLinearDelay_initToPool(dl, delay, maxDelay, &leaf.mempool);
-}
-
-void tLinearDelay_free(tLinearDelay* const dl)
-{
-    tLinearDelay_freeFromPool(dl, &leaf.mempool);
-}
-
-void    tLinearDelay_initToPool  (tLinearDelay* const dl, float delay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLinearDelay* d = *dl = (_tLinearDelay*) mpool_alloc(sizeof(_tLinearDelay), m);
-    
-    d->maxDelay = maxDelay;
-    
-    if (delay > maxDelay)   d->delay = maxDelay;
-    else if (delay < 0.0f)  d->delay = 0.0f;
-    else                    d->delay = delay;
-    
-    d->buff = (float*) mpool_alloc(sizeof(float) * maxDelay, m);
-    
-    d->gain = 1.0f;
-    
-    d->lastIn = 0.0f;
-    d->lastOut = 0.0f;
-    
-    d->inPoint = 0;
-    d->outPoint = 0;
-    
-    tLinearDelay_setDelay(dl, d->delay);
-}
-
-void    tLinearDelay_freeFromPool(tLinearDelay* const dl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLinearDelay* d = *dl;
-    
-    mpool_free((char*)d->buff, m);
-    mpool_free((char*)d, m);
-}
-
-void    tLinearDelay_clear(tLinearDelay* const dl)
-{
-	_tLinearDelay* d = *dl;
-	for (int i = 0; i < d->maxDelay; i++)
-	{
-		d->buff[i] = 0;
-	}
-}
-
-float   tLinearDelay_tick (tLinearDelay* const dl, float input)
-{
-    _tLinearDelay* d = *dl;
-    
-    d->buff[d->inPoint] = input * d->gain;
-    
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-
-    uint32_t idx = (uint32_t) d->outPoint;
-    // First 1/2 of interpolation
-    d->lastOut = d->buff[idx] * d->omAlpha;
-        // Second 1/2 of interpolation
-    if ((idx + 1) < d->maxDelay)
-        d->lastOut += d->buff[idx+1] * d->alpha;
-    else
-        d->lastOut += d->buff[0] * d->alpha;
-
-    // Increment output pointer modulo length
-    if ( (++d->outPoint) >= d->maxDelay )   d->outPoint = 0;
-    
-    return d->lastOut;
-}
-
-void   tLinearDelay_tickIn (tLinearDelay* const dl, float input)
-{
-    _tLinearDelay* d = *dl;
-    
-    d->buff[d->inPoint] = input * d->gain;
-
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-}
-
-float   tLinearDelay_tickOut (tLinearDelay* const dl)
-{
-    _tLinearDelay* d = *dl;
-    
-	uint32_t idx = (uint32_t) d->outPoint;
-	// First 1/2 of interpolation
-	d->lastOut = d->buff[idx] * d->omAlpha;
-		// Second 1/2 of interpolation
-	if ((idx + 1) < d->maxDelay)
-		d->lastOut += d->buff[idx+1] * d->alpha;
-	else
-		d->lastOut += d->buff[0] * d->alpha;
-
-	// Increment output pointer modulo length
-	if ( (++d->outPoint) >= d->maxDelay )   d->outPoint = 0;
-
-	return d->lastOut;
-}
-
-int     tLinearDelay_setDelay (tLinearDelay* const dl, float delay)
-{
-    _tLinearDelay* d = *dl;
-    
-    d->delay = LEAF_clip(0.0f, delay,  d->maxDelay);
-    
-    float outPointer = d->inPoint - d->delay;
-    
-    while ( outPointer < 0 )
-        outPointer += d->maxDelay; // modulo maximum length
-    
-    d->outPoint = (uint32_t) outPointer;   // integer part
-    
-    d->alpha = outPointer - d->outPoint; // fractional part
-    d->omAlpha = 1.0f - d->alpha;
-    
-    if ( d->outPoint == d->maxDelay ) d->outPoint = 0;
-    
-    return 0;
-}
-
-float tLinearDelay_tapOut (tLinearDelay* const dl, uint32_t tapDelay)
-{
-    _tLinearDelay* d = *dl;
-    
-    uint32_t tap = d->inPoint - tapDelay - 1;
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return d->buff[tap];
-}
-
-void tLinearDelay_tapIn (tLinearDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tLinearDelay* d = *dl;
-    
-    uint32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    d->buff[tap] = value;
-}
-
-float tLinearDelay_addTo (tLinearDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tLinearDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return (d->buff[tap] += value);
-}
-
-float   tLinearDelay_getDelay (tLinearDelay* const dl)
-{
-    _tLinearDelay* d = *dl;
-    return d->delay;
-}
-
-float   tLinearDelay_getLastOut (tLinearDelay* const dl)
-{
-    _tLinearDelay* d = *dl;
-    return d->lastOut;
-}
-
-float   tLinearDelay_getLastIn (tLinearDelay* const dl)
-{
-    _tLinearDelay* d = *dl;
-    return d->lastIn;
-}
-
-void tLinearDelay_setGain (tLinearDelay* const dl, float gain)
-{
-    _tLinearDelay* d = *dl;
-    if (gain < 0.0f)    d->gain = 0.0f;
-    else                d->gain = gain;
-}
-
-float tLinearDelay_getGain (tLinearDelay* const dl)
-{
-    _tLinearDelay* d = *dl;
-    return d->gain;
-}
-
-
-
-
-
-/// Hermite Interpolated Delay
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ LinearDelay ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void   tHermiteDelay_init (tHermiteDelay* const dl, float delay, uint32_t maxDelay)
-{
-    tHermiteDelay_initToPool(dl, delay, maxDelay, &leaf.mempool);
-}
-
-void tHermiteDelay_free(tHermiteDelay* const dl)
-{
-    tHermiteDelay_freeFromPool(dl, &leaf.mempool);
-}
-
-void    tHermiteDelay_initToPool  (tHermiteDelay* const dl, float delay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tHermiteDelay* d = *dl = (_tHermiteDelay*) mpool_alloc(sizeof(_tHermiteDelay), m);
-
-    d->maxDelay = maxDelay;
-
-    if (delay > maxDelay)   d->delay = maxDelay;
-    else if (delay < 0.0f)  d->delay = 0.0f;
-    else                    d->delay = delay;
-
-    d->buff = (float*) mpool_alloc(sizeof(float) * maxDelay, m);
-
-    d->gain = 1.0f;
-
-    d->lastIn = 0.0f;
-    d->lastOut = 0.0f;
-
-    d->inPoint = 0;
-    d->outPoint = 0;
-
-    tHermiteDelay_setDelay(dl, d->delay);
-}
-
-void    tHermiteDelay_freeFromPool(tHermiteDelay* const dl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tHermiteDelay* d = *dl;
-
-    mpool_free((char*)d->buff, m);
-    mpool_free((char*)d, m);
-}
-
-
-void    tHermiteDelay_clear(tHermiteDelay* const dl)
-{
-	_tHermiteDelay* d = *dl;
-	for (int i = 0; i < d->maxDelay; i++)
-	{
-		d->buff[i] = 0;
-	}
-}
-
-float   tHermiteDelay_tick (tHermiteDelay* const dl, float input)
-{
-	_tHermiteDelay* d = *dl;
-
-    d->buff[d->inPoint] = input * d->gain;
-
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-
-
-    uint32_t idx = (uint32_t) d->outPoint;
-    d->lastOut =    LEAF_interpolate_hermite (d->buff[((idx - 1) + d->maxDelay) % d->maxDelay],
-                                              d->buff[idx],
-                                              d->buff[(idx + 1) % d->maxDelay],
-                                              d->buff[(idx + 2) % d->maxDelay],
-                                              d->alpha);
-
-    // Increment output pointer modulo length
-    if ( (++d->outPoint) >= d->maxDelay )   d->outPoint = 0;
-
-    return d->lastOut;
-}
-
-void   tHermiteDelay_tickIn (tHermiteDelay* const dl, float input)
-{
-	_tHermiteDelay* d = *dl;
-
-    d->buff[d->inPoint] = input * d->gain;
-
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-}
-
-float   tHermiteDelay_tickOut (tHermiteDelay* const dl)
-{
-	_tHermiteDelay* d = *dl;
-
-    uint32_t idx = (uint32_t) d->outPoint;
-
-
-
-    d->lastOut =    LEAF_interpolate_hermite (d->buff[((idx - 1) + d->maxDelay) % d->maxDelay],
-                                              d->buff[idx],
-                                              d->buff[(idx + 1) % d->maxDelay],
-                                              d->buff[(idx + 2) % d->maxDelay],
-                                              d->alpha);
-
-    // Increment output pointer modulo length
-    if ( (++d->outPoint) >= d->maxDelay )   d->outPoint = 0;
-
-    return d->lastOut;
-}
-
-int     tHermiteDelay_setDelay (tHermiteDelay* const dl, float delay)
-{
-	_tHermiteDelay* d = *dl;
-
-    d->delay = LEAF_clip(0.0f, delay,  d->maxDelay);
-
-    float outPointer = d->inPoint - d->delay;
-
-    while ( outPointer < 0 )
-        outPointer += d->maxDelay; // modulo maximum length
-
-    d->outPoint = (uint32_t) outPointer;   // integer part
-
-    d->alpha = outPointer - d->outPoint; // fractional part
-    d->omAlpha = 1.0f - d->alpha;
-
-    if ( d->outPoint == d->maxDelay ) d->outPoint = 0;
-
-    return 0;
-}
-
-float tHermiteDelay_tapOut (tHermiteDelay* const dl, uint32_t tapDelay)
-{
-	_tHermiteDelay* d = *dl;
-
-    uint32_t tap = d->inPoint - tapDelay - 1;
-
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-
-    return d->buff[tap];
-
-}
-
-void tHermiteDelay_tapIn (tHermiteDelay* const dl, float value, uint32_t tapDelay)
-{
-	_tHermiteDelay* d = *dl;
-
-    int32_t tap = d->inPoint - tapDelay - 1;
-
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-
-    d->buff[tap] = value;
-}
-
-float tHermiteDelay_addTo (tHermiteDelay* const dl, float value, uint32_t tapDelay)
-{
-	_tHermiteDelay* d = *dl;
-
-    int32_t tap = d->inPoint - tapDelay - 1;
-
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-
-    return (d->buff[tap] += value);
-}
-
-float   tHermiteDelay_getDelay (tHermiteDelay* const dl)
-{
-    _tHermiteDelay* d = *dl;
-    return d->delay;
-}
-
-float   tHermiteDelay_getLastOut (tHermiteDelay* const dl)
-{
-	_tHermiteDelay* d = *dl;
-    return d->lastOut;
-}
-
-float   tHermiteDelay_getLastIn (tHermiteDelay* const dl)
-{
-	_tHermiteDelay* d = *dl;
-    return d->lastIn;
-}
-
-void tHermiteDelay_setGain (tHermiteDelay* const dl, float gain)
-{
-	_tHermiteDelay* d = *dl;
-    if (gain < 0.0f)    d->gain = 0.0f;
-    else                d->gain = gain;
-}
-
-float tHermiteDelay_getGain (tHermiteDelay* const dl)
-{
-	_tHermiteDelay* d = *dl;
-    return d->gain;
-}
-
-
-
-
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ AllpassDelay ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void  tAllpassDelay_init (tAllpassDelay* const dl, float delay, uint32_t maxDelay)
-{
-    tAllpassDelay_initToPool(dl, delay, maxDelay, &leaf.mempool);
-}
-
-void tAllpassDelay_free(tAllpassDelay* const dl)
-{
-    tAllpassDelay_freeFromPool(dl, &leaf.mempool);
-}
-
-void    tAllpassDelay_initToPool  (tAllpassDelay* const dl, float delay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAllpassDelay* d = *dl = (_tAllpassDelay*) mpool_alloc(sizeof(_tAllpassDelay), m);
-    
-    d->maxDelay = maxDelay;
-    
-    if (delay > maxDelay)   d->delay = maxDelay;
-    else if (delay < 0.0f)  d->delay = 0.0f;
-    else                    d->delay = delay;
-    
-    d->buff = (float*) mpool_alloc(sizeof(float) * maxDelay, m);
-    
-    d->gain = 1.0f;
-    
-    d->lastIn = 0.0f;
-    d->lastOut = 0.0f;
-    
-    d->inPoint = 0;
-    d->outPoint = 0;
-    
-    tAllpassDelay_setDelay(dl, d->delay);
-    
-    d->apInput = 0.0f;
-}
-
-void    tAllpassDelay_freeFromPool(tAllpassDelay* const dl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAllpassDelay* d = *dl;
-    
-    mpool_free((char*)d->buff, m);
-    mpool_free((char*)d, m);
-}
-
-void    tAllpassDelay_clear(tAllpassDelay* const dl)
-{
-    _tAllpassDelay* d = *dl;
-    for (int i = 0; i < d->maxDelay; i++)
-    {
-        d->buff[i] = 0;
-    }
-}
-
-float   tAllpassDelay_tick (tAllpassDelay* const dl, float input)
-{
-    _tAllpassDelay* d = *dl;
-    
-    d->buff[d->inPoint] = input * d->gain;
-    
-    // Increment input pointer modulo length.
-    if ( ++(d->inPoint) >= d->maxDelay )    d->inPoint = 0;
-    
-    // Do allpass interpolation delay.
-    float out = d->lastOut * -d->coeff;
-    out += d->apInput + ( d->coeff * d->buff[d->outPoint] );
-    d->lastOut = out;
-    
-    // Save allpass input
-    d->apInput = d->buff[d->outPoint];
-    
-    // Increment output pointer modulo length.
-    if (++(d->outPoint) >= d->maxDelay )   d->outPoint = 0;
-    
-    return d->lastOut;
-}
-
-int     tAllpassDelay_setDelay (tAllpassDelay* const dl, float delay)
-{
-    _tAllpassDelay* d = *dl;
-    
-    d->delay = LEAF_clip(0.5f, delay,  d->maxDelay);
-    
-    // outPoint chases inPoint
-    float outPointer = (float)d->inPoint - d->delay + 1.0f;
-    
-    while ( outPointer < 0 )    outPointer += d->maxDelay;  // mod max length
-    
-    d->outPoint = (uint32_t) outPointer;         // integer part
-    
-    if ( d->outPoint >= d->maxDelay )   d->outPoint = 0;
-    
-    d->alpha = 1.0f + (float)d->outPoint - outPointer; // fractional part
-    
-    if ( d->alpha < 0.5f )
-    {
-        // The optimal range for alpha is about 0.5 - 1.5 in order to
-        // achieve the flattest phase delay response.
-        
-        d->outPoint += 1;
-        
-        if ( d->outPoint >= d->maxDelay ) d->outPoint -= d->maxDelay;
-        
-        d->alpha += 1.0f;
-    }
-    
-    d->coeff = (1.0f - d->alpha) / (1.0f + d->alpha);  // coefficient for allpass
-    
-    return 0;
-}
-
-float tAllpassDelay_tapOut (tAllpassDelay* const dl, uint32_t tapDelay)
-{
-    _tAllpassDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return d->buff[tap];
-    
-}
-
-void tAllpassDelay_tapIn (tAllpassDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tAllpassDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    d->buff[tap] = value;
-}
-
-float tAllpassDelay_addTo (tAllpassDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tAllpassDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return (d->buff[tap] += value);
-}
-
-float   tAllpassDelay_getDelay (tAllpassDelay* const dl)
-{
-    _tAllpassDelay* d = *dl;
-    return d->delay;
-}
-
-float   tAllpassDelay_getLastOut (tAllpassDelay* const dl)
-{
-    _tAllpassDelay* d = *dl;
-    return d->lastOut;
-}
-
-float   tAllpassDelay_getLastIn (tAllpassDelay* const dl)
-{
-    _tAllpassDelay* d = *dl;
-    return d->lastIn;
-}
-
-void tAllpassDelay_setGain (tAllpassDelay* const dl, float gain)
-{
-    _tAllpassDelay* d = *dl;
-    if (gain < 0.0f)    d->gain = 0.0f;
-    else                d->gain = gain;
-}
-
-float tAllpassDelay_getGain (tAllpassDelay* const dl)
-{
-    _tAllpassDelay* d = *dl;
-    return d->gain;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ TapeDelay ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void   tTapeDelay_init (tTapeDelay* const dl, float delay, uint32_t maxDelay)
-{
-    tTapeDelay_initToPool(dl, delay, maxDelay, &leaf.mempool);
-}
-
-void tTapeDelay_free(tTapeDelay* const dl)
-{
-    tTapeDelay_freeFromPool(dl, &leaf.mempool);
-}
-
-void    tTapeDelay_initToPool  (tTapeDelay* const dl, float delay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTapeDelay* d = *dl = (_tTapeDelay*) mpool_alloc(sizeof(_tTapeDelay), m);
-    
-    d->maxDelay = maxDelay;
-    
-    d->buff = (float*) mpool_alloc(sizeof(float) * maxDelay, m);
-    
-    d->gain = 1.0f;
-    
-    d->lastIn = 0.0f;
-    d->lastOut = 0.0f;
-    
-    d->idx = 0.0f;
-    d->inc = 1.0f;
-    d->inPoint = 0;
-    
-    tTapeDelay_setDelay(dl, delay);
-}
-
-void    tTapeDelay_freeFromPool(tTapeDelay* const dl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTapeDelay* d = *dl;
-    
-    mpool_free((char*)d->buff, m);
-    mpool_free((char*)d, m);
-}
-
-void    tTapeDelay_clear(tTapeDelay* const dl)
-{
-    _tTapeDelay* d = *dl;
-    for (int i = 0; i < d->maxDelay; i++)
-    {
-        d->buff[i] = 0;
-    }
-}
-
-//#define SMOOTH_FACTOR 10.f
-
-float   tTapeDelay_tick (tTapeDelay* const dl, float input)
-{
-    _tTapeDelay* d = *dl;
-    
-    d->buff[d->inPoint] = input * d->gain;
-    
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-
-    int idx =  (int) d->idx;
-    float alpha = d->idx - idx;
-    
-    d->lastOut =    LEAF_interpolate_hermite_x (d->buff[((idx - 1) + d->maxDelay) % d->maxDelay],
-                                              d->buff[idx],
-                                              d->buff[(idx + 1) % d->maxDelay],
-                                              d->buff[(idx + 2) % d->maxDelay],
-                                              alpha);
-    
-    float diff = (d->inPoint - d->idx);
-    while (diff < 0.f) diff += d->maxDelay;
-    
-    d->inc = 1.0f + (diff - d->delay) / d->delay; //* SMOOTH_FACTOR;
-
-    d->idx += d->inc;
-    
-    if (d->idx >= d->maxDelay) d->idx = 0.0f;
-
-    if (d->lastOut)
-        return d->lastOut;
-    return 0.0f;
-}
-
-void  tTapeDelay_incrementInPoint(tTapeDelay* const dl)
-{
-    _tTapeDelay* d = *dl;
-    // Increment input pointer modulo length.
-    if (++(d->inPoint) == d->maxDelay )    d->inPoint = 0;
-}
-
-
-void tTapeDelay_setRate(tTapeDelay* const dl, float rate)
-{
-    _tTapeDelay* d = *dl;
-    d->inc = rate;
-}
-
-void     tTapeDelay_setDelay (tTapeDelay* const dl, float delay)
-{
-    _tTapeDelay* d = *dl;
-    d->delay = LEAF_clip(1.f, delay,  d->maxDelay);
-}
-
-float tTapeDelay_tapOut (tTapeDelay* const dl, float tapDelay)
-{
-    _tTapeDelay* d = *dl;
-    
-    float tap = (float) d->inPoint - tapDelay - 1.f;
-    
-    // Check for wraparound.
-    while ( tap < 0.f )   tap += (float)d->maxDelay;
-    
-    int idx =  (int) tap;
-    
-    float alpha = tap - idx;
-    
-    float samp =    LEAF_interpolate_hermite_x (d->buff[((idx - 1) + d->maxDelay) % d->maxDelay],
-                                              d->buff[idx],
-                                              d->buff[(idx + 1) % d->maxDelay],
-                                              d->buff[(idx + 2) % d->maxDelay],
-                                              alpha);
-    
-    return samp;
-    
-}
-
-void tTapeDelay_tapIn (tTapeDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tTapeDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    d->buff[tap] = value;
-}
-
-float tTapeDelay_addTo (tTapeDelay* const dl, float value, uint32_t tapDelay)
-{
-    _tTapeDelay* d = *dl;
-    
-    int32_t tap = d->inPoint - tapDelay - 1;
-    
-    // Check for wraparound.
-    while ( tap < 0 )   tap += d->maxDelay;
-    
-    return (d->buff[tap] += value);
-}
-
-float   tTapeDelay_getDelay (tTapeDelay *dl)
-{
-    _tTapeDelay* d = *dl;
-    return d->delay;
-}
-
-float   tTapeDelay_getLastOut (tTapeDelay* const dl)
-{
-    _tTapeDelay* d = *dl;
-    return d->lastOut;
-}
-
-float   tTapeDelay_getLastIn (tTapeDelay* const dl)
-{
-    _tTapeDelay* d = *dl;
-    return d->lastIn;
-}
-
-void tTapeDelay_setGain (tTapeDelay* const dl, float gain)
-{
-    _tTapeDelay* d = *dl;
-    if (gain < 0.0f)    d->gain = 0.0f;
-    else                d->gain = gain;
-}
-
-float tTapeDelay_getGain (tTapeDelay* const dl)
-{
-    _tTapeDelay* d = *dl;
-    return d->gain;
-}
-
--- a/LEAF/Src/leaf-distortion.c
+++ /dev/null
@@ -1,695 +1,0 @@
-//
-//  leaf-distortion.c
-//  LEAF
-//
-//  Created by Jeff Snyder, Matthew Wang, Michael Mulshine, and Joshua Becker
-//  Copyright © 2019 Princeton University. All rights reserved.
-//
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-distortion.h"
-#include "..\Inc\leaf-tables.h"
-#else
-
-
-#include "../Inc/leaf-distortion.h"
-#include "../Inc/leaf-tables.h"
-
-#endif
-
-//============================================================================================================
-// Sample-Rate reducer
-//============================================================================================================
-
-
-void tSampleReducer_init(tSampleReducer* const sr)
-{
-    _tSampleReducer* s = *sr = (_tSampleReducer*) leaf_alloc(sizeof(_tSampleReducer));
-    
-    s->invRatio = 1.0f;
-    s->hold = 0.0f;
-    s->count = 0;
-}
-
-void    tSampleReducer_free    (tSampleReducer* const sr)
-{
-    _tSampleReducer* s = *sr;
-    
-    leaf_free((char*)s);
-}
-
-void    tSampleReducer_initToPool   (tSampleReducer* const sr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSampleReducer* s = *sr = (_tSampleReducer*) mpool_alloc(sizeof(_tSampleReducer), m);
-    
-    s->invRatio = 1.0f;
-    s->hold = 0.0f;
-    s->count = 0;
-}
-
-void    tSampleReducer_freeFromPool (tSampleReducer* const sr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSampleReducer* s = *sr;
-    
-    mpool_free((char*)s, m);
-}
-
-float tSampleReducer_tick(tSampleReducer* const sr, float input)
-{
-    _tSampleReducer* s = *sr;
-    if (s->count > s->invRatio)
-    {
-        s->hold = input;
-        s->count = 0;
-    }
-    
-    s->count++;
-    return s->hold;
-}
-
-
-void tSampleReducer_setRatio(tSampleReducer* const sr, float ratio)
-{
-    _tSampleReducer* s = *sr;
-    if ((ratio <= 1.0f) && (ratio >= 0.0f))
-        s->invRatio = 1.0f / ratio;
-    
-}
-
-//============================================================================================================
-// Oversampler
-//============================================================================================================
-// Latency is equal to the phase length (numTaps / ratio)
-void tOversampler_init(tOversampler* const osr, int ratio, oBool extraQuality)
-{
-    _tOversampler* os = *osr = (_tOversampler*) leaf_alloc(sizeof(_tOversampler));
-    
-    uint8_t offset = 0;
-    if (extraQuality) offset = 6;
-    if (ratio == 2 || ratio == 4  ||
-        ratio == 8 || ratio == 16 ||
-        ratio == 32 || ratio == 64) {
-        os->ratio = ratio;
-        int idx = (int)(log2f(os->ratio))-1+offset;
-        os->numTaps = __leaf_tablesize_firNumTaps[idx];
-        os->phaseLength = os->numTaps / os->ratio;
-        os->pCoeffs = (float*) __leaf_tableref_firCoeffs[idx];
-        os->upState = (float*) leaf_alloc(sizeof(float) * os->numTaps * 2);
-        os->downState = (float*) leaf_alloc(sizeof(float) * os->numTaps * 2);
-    }
-}
-
-void tOversampler_free(tOversampler* const osr)
-{
-    _tOversampler* os = *osr;
-    
-    leaf_free((char*)os->upState);
-    leaf_free((char*)os->downState);
-    leaf_free((char*)os);
-}
-
-void    tOversampler_initToPool     (tOversampler* const osr, int ratio, oBool extraQuality, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOversampler* os = *osr = (_tOversampler*) mpool_alloc(sizeof(_tOversampler), m);
-    
-    uint8_t offset = 0;
-    if (extraQuality) offset = 6;
-    if (ratio == 2 || ratio == 4  ||
-        ratio == 8 || ratio == 16 ||
-        ratio == 32 || ratio == 64) {
-        os->ratio = ratio;
-        int idx = (int)(log2f(os->ratio))-1+offset;
-        os->numTaps = __leaf_tablesize_firNumTaps[idx];
-        os->phaseLength = os->numTaps / os->ratio;
-        os->pCoeffs = (float*) __leaf_tableref_firCoeffs[idx];
-        os->upState = (float*) mpool_alloc(sizeof(float) * os->numTaps * 2, m);
-        os->downState = (float*) mpool_alloc(sizeof(float) * os->numTaps * 2, m);
-    }
-}
-
-void    tOversampler_freeFromPool   (tOversampler* const osr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOversampler* os = *osr;
-    
-    mpool_free((char*)os->upState, m);
-    mpool_free((char*)os->downState, m);
-    mpool_free((char*)os, m);
-}
-
-float tOversampler_tick(tOversampler* const osr, float input, float (*effectTick)(float))
-{
-    _tOversampler* os = *osr;
-    
-    float buf[os->ratio];
-    
-    tOversampler_upsample(osr, input, buf);
-    
-    for (int i = 0; i < os->ratio; ++i) {
-        buf[i] = effectTick(buf[i]);
-    }
-    
-    return tOversampler_downsample(osr, buf);
-}
-
-// From CMSIS DSP Library
-void tOversampler_upsample(tOversampler* const osr, float input, float* output)
-{
-    _tOversampler* os = *osr;
-    
-    float *pState = os->upState;                 /* State pointer */
-    float *pCoeffs = os->pCoeffs;               /* Coefficient pointer */
-    float *pStateCur;
-    float *ptr1;                               /* Temporary pointer for state buffer */
-    float *ptr2;                               /* Temporary pointer for coefficient buffer */
-    float sum0;                                /* Accumulators */
-    uint32_t i, tapCnt;                    /* Loop counters */
-    uint32_t phaseLen = os->phaseLength;            /* Length of each polyphase filter component */
-    uint32_t j;
-    
-    /* os->pState buffer contains previous frame (phaseLen - 1) samples */
-    /* pStateCur points to the location where the new input data should be written */
-    pStateCur = os->upState + (phaseLen - 1U);
-    
-    /* Copy new input sample into the state buffer */
-    *pStateCur = input;
-    
-    /* Address modifier index of coefficient buffer */
-    j = 1U;
-    
-    /* Loop over the Interpolation factor. */
-    i = os->ratio;
-    
-    while (i > 0U)
-    {
-        /* Set accumulator to zero */
-        sum0 = 0.0f;
-        
-        /* Initialize state pointer */
-        ptr1 = pState;
-        
-        /* Initialize coefficient pointer */
-        ptr2 = pCoeffs + (os->ratio - j);
-        
-        /* Loop over the polyPhase length.
-         Repeat until we've computed numTaps-(4*os->L) coefficients. */
-        
-        /* Initialize tapCnt with number of samples */
-        tapCnt = phaseLen;
-        
-        while (tapCnt > 0U)
-        {
-            /* Perform the multiply-accumulate */
-            sum0 += *ptr1++ * *ptr2;
-            
-            /* Upsampling is done by stuffing L-1 zeros between each sample.
-             * So instead of multiplying zeros with coefficients,
-             * Increment the coefficient pointer by interpolation factor times. */
-            ptr2 += os->ratio;
-            
-            /* Decrement loop counter */
-            tapCnt--;
-        }
-        
-        /* The result is in the accumulator, store in the destination buffer. */
-        *output++ = sum0 * os->ratio;
-        
-        /* Increment the address modifier index of coefficient buffer */
-        j++;
-        
-        /* Decrement the loop counter */
-        i--;
-    }
-    
-    /* Advance the state pointer by 1
-     * to process the next group of interpolation factor number samples */
-    pState = pState + 1;
-    
-    /* Processing is complete.
-     Now copy the last phaseLen - 1 samples to the satrt of the state buffer.
-     This prepares the state buffer for the next function call. */
-    
-    /* Points to the start of the state buffer */
-    pStateCur = os->upState;
-    
-    /* Initialize tapCnt with number of samples */
-    tapCnt = (phaseLen - 1U);
-    
-    /* Copy data */
-    while (tapCnt > 0U)
-    {
-        *pStateCur++ = *pState++;
-        
-        /* Decrement loop counter */
-        tapCnt--;
-    }
-}
-
-// From CMSIS DSP Library
-float tOversampler_downsample(tOversampler *const osr, float* input)
-{
-    _tOversampler* os = *osr;
-    
-    float *pState = os->downState;                 /* State pointer */
-    float *pCoeffs = os->pCoeffs;               /* Coefficient pointer */
-    float *pStateCur;                          /* Points to the current sample of the state */
-    float *px0;                                /* Temporary pointer for state buffer */
-    float *pb;                                 /* Temporary pointer for coefficient buffer */
-    float x0, c0;                              /* Temporary variables to hold state and coefficient values */
-    float acc0;                                /* Accumulator */
-    uint32_t numTaps = os->numTaps;                 /* Number of filter coefficients in the filter */
-    uint32_t i, tapCnt;
-    float output;
-    
-    /* os->pState buffer contains previous frame (numTaps - 1) samples */
-    /* pStateCur points to the location where the new input data should be written */
-    pStateCur = os->downState + (numTaps - 1U);
-    
-    /* Copy decimation factor number of new input samples into the state buffer */
-    i = os->ratio;
-    
-    do
-    {
-        *pStateCur++ = *input++;
-        
-    } while (--i);
-    
-    /* Set accumulator to zero */
-    acc0 = 0.0f;
-    
-    /* Initialize state pointer */
-    px0 = pState;
-    
-    /* Initialize coeff pointer */
-    pb = pCoeffs;
-    
-    /* Initialize tapCnt with number of taps */
-    tapCnt = numTaps;
-    
-    while (tapCnt > 0U)
-    {
-        /* Read coefficients */
-        c0 = *pb++;
-        
-        /* Fetch 1 state variable */
-        x0 = *px0++;
-        
-        /* Perform the multiply-accumulate */
-        acc0 += x0 * c0;
-        
-        /* Decrement loop counter */
-        tapCnt--;
-    }
-    
-    /* Advance the state pointer by the decimation factor
-     * to process the next group of decimation factor number samples */
-    pState = pState + os->ratio;
-    
-    /* The result is in the accumulator, store in the destination buffer. */
-    output = acc0;
-    
-    /* Processing is complete.
-     Now copy the last numTaps - 1 samples to the start of the state buffer.
-     This prepares the state buffer for the next function call. */
-    
-    /* Points to the start of the state buffer */
-    pStateCur = os->downState;
-    
-    /* Initialize tapCnt with number of taps */
-    tapCnt = (numTaps - 1U);
-    
-    /* Copy data */
-    while (tapCnt > 0U)
-    {
-        *pStateCur++ = *pState++;
-        
-        /* Decrement loop counter */
-        tapCnt--;
-    }
-    
-    return output;
-}
-
-int tOversampler_getLatency(tOversampler* const osr)
-{
-    _tOversampler* os = *osr;
-    return os->phaseLength;
-}
-
-//============================================================================================================
-// WAVEFOLDER
-//============================================================================================================
-
-
-//from the paper: Virtual Analog Model of the Lockhart Wavefolder
-//by Fabián Esqueda, Henri Pöntynen, Julian D. Parker and Stefan Bilbao
-
-void tLockhartWavefolder_init(tLockhartWavefolder* const wf)
-{
-	tLockhartWavefolder_initToPool   (wf,  &leaf.mempool);
-}
-
-void tLockhartWavefolder_free(tLockhartWavefolder* const wf)
-{
-    _tLockhartWavefolder* w = *wf;
-    
-    leaf_free((char*)w);
-}
-
-void    tLockhartWavefolder_initToPool   (tLockhartWavefolder* const wf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLockhartWavefolder* w = *wf = (_tLockhartWavefolder*) mpool_alloc(sizeof(_tLockhartWavefolder), m);
-    
-    w->Ln1 = 0.0;
-    w->Fn1 = 0.0;
-    w->xn1 = 0.0;
-    
-    w->RL = 7.5e3;
-    w->R = 15e3;
-    w->VT = 26e-3;
-    w->Is = 10e-16;
-    
-    w->a = 2.0*w->RL/w->R;
-    w->b = (w->R+2.0*w->RL)/(w->VT*w->R);
-    w->d = (w->RL*w->Is)/w->VT;
-    w->half_a = 0.5 * w->a;
-    w->longthing = (0.5*w->VT/w->b);
-    
-    
-    // Antialiasing error threshold
-    w->AAthresh = 10e-10; //10
-
-	w->LambertThresh = 10e-10; //12  //was 8
-
-
-    w->w = 0.0f;
-    w->expw = 0.0f;
-    w->p = 0.0f;
-    w->r = 0.0f;
-    w->s= 0.0f;
-    w->myerr = 0.0f;
-    w->l = 0.0f;
-    w->u = 0.0f;
-    w->Ln = 0.0f;
-	w->Fn = 0.0f;
-    w->tempsDenom = 0.0f;
-    w->tempErrDenom = 0.0f;
-    w->tempOutDenom = 0.0f;
-
-
-}
-
-void    tLockhartWavefolder_freeFromPool (tLockhartWavefolder* const wf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLockhartWavefolder* w = *wf;
-    
-    mpool_free((char*)w, m);
-}
-
-
-
-double tLockhartWavefolderLambert(tLockhartWavefolder* const wf, double x, double ln)
-{
-	_tLockhartWavefolder* mwf = *wf;
-
-
-    // Initial guess (use previous value)
-	mwf->w = ln;
-    
-    // Haley's method (Sec. 4.2 of the paper)
-    for(int i=0; i<3000; i+=1) { //1000
-        
-    	mwf->expw = exp(mwf->w);
-    	/*
-        if (isinf(mwf->expw) || isnan(mwf->expw))
-        {
-        	mwf->expw = 10e-5;
-        	LEAF_error();
-        }
-        */
-    	mwf->p = mwf->w*mwf->expw - x;
-    	/*
-        if (isinf(mwf->p) || isnan(mwf->p))
-        {
-        	mwf->p = 10e-5;
-        	LEAF_error();
-        }
-        */
-    	mwf->r = (mwf->w+1.0)*mwf->expw;
-    	/*
-        if (isinf(mwf->r) || isnan(mwf->r))
-        {
-        	mwf->r = 10e-5;
-        	LEAF_error();
-        }
-        */
-    	mwf->tempsDenom = (2.0*(mwf->w+1.0));
-    	/*
-        if ((mwf->tempsDenom == 0.0) || isinf(mwf->tempsDenom) || isnan(mwf->tempsDenom))
-        {
-        	mwf->tempsDenom = 10e-5;
-        	LEAF_error();
-        }
-        */
-        mwf->s = (mwf->w+2.0)/mwf->tempsDenom;
-        /*
-        if (isnan(mwf->s) || isinf(mwf->s))
-        {
-        	mwf->s = 10e-5;
-        	LEAF_error();
-        }
-        */
-        mwf->tempErrDenom = (mwf->r-(mwf->p*mwf->s));
-         /*
-        if ((mwf->tempErrDenom == 0.0) || isinf(mwf->tempErrDenom) || isnan(mwf->tempErrDenom))
-        {
-        	mwf->tempErrDenom = 10e-5;
-        	LEAF_error();
-        }
-        */
-        mwf->myerr = (mwf->p/mwf->tempErrDenom);
-         /*
-        if (isnan(mwf->myerr) || isinf(mwf->myerr))
-        {
-        	mwf->myerr = 10e-5;
-        	LEAF_error();
-        }
-        */
-
-        if ((fabs(mwf->myerr))<mwf->LambertThresh) {
-
-        	break;
-        }
-
-        mwf->w = mwf->w - mwf->myerr;
-
-         /*
-        if (isinf(mwf->w) || isnan(mwf->w))
-        {
-        	mwf->w = 10e-5;
-        	LEAF_error();
-        }
-*/
-
-    }
-    return mwf->w;
-}
-
-float tLockhartWavefolder_tick(tLockhartWavefolder* const wf, float in)
-{
-    _tLockhartWavefolder* w = *wf;
-
-    float out = 0.0f;
-    
-    // Compute Antiderivative
-    w->l = (in > 0.0) - (in < 0.0);
-    w->u = w->d*exp(w->l*w->b*in);
-    /*
-    if ((w->u == 0.0) || isinf(w->u) || isnan(w->u))
-    {
-    	w->u = 10e-5;
-    	LEAF_error();
-    }
-    */
-
-    w->Ln = tLockhartWavefolderLambert(wf,w->u,w->Ln1);
-    /*
-    if ((w->Ln == 0.0) || isinf(w->Ln) || isnan(w->Ln))
-	{
-		w->Ln = 10e-5;
-		LEAF_error();
-	}
-*/
-    w->Fn = (w->longthing*(w->Ln*(w->Ln + 2.0))) - (w->half_a*in*in);
-    /*
-    if ((w->Fn == 0.0) || isinf(w->Fn) || isnan(w->Fn))
-	{
-		w->Fn = 10e-5;
-		LEAF_error();
-	}
-	*/
-    // Check for ill-conditioning
-
-    if (fabs(in-w->xn1)<w->AAthresh)
-    {
-        
-        // Compute Averaged Wavefolder Output
-    	double xn = 0.5*(in+w->xn1);
-    	w->u = w->d*exp(w->l*w->b*xn);
-        /*
-    	if ((w->u == 0.0) || isinf(w->u) || isnan(w->u))
-        {
-        	w->u = 10e-5;
-        	LEAF_error();
-
-        }
-        */
-    	w->Ln = tLockhartWavefolderLambert(wf,w->u,w->Ln1);
-    	/*
-        if ((w->Ln == 0.0) || isinf(w->Ln) || isnan(w->Ln))
-    	{
-    		w->Ln = 10e-5;
-    		LEAF_error();
-    	}
-    	*/
-        out = (float)((w->l*w->VT*w->Ln) - (w->a*xn));
-
-    }
-    else
-    {
-
-        // Apply AA Form
-    	w->tempOutDenom = (in-w->xn1);
-    	/*
-    	if ((w->tempOutDenom == 0.0) || isinf(w->tempOutDenom))
-    	{
-    		w->tempOutDenom = 10e-5;
-    		LEAF_error();
-    	}
-    	*/
-        out = ((w->Fn-w->Fn1)/w->tempOutDenom);
-        /*
-        if (isinf(out) || isnan(out))
-		{
-        	out = 10e-5;
-        	LEAF_error();
-		}
-		*/
-
-    }
-
-    // Update States
-    w->Ln1 = w->Ln;
-    w->Fn1 = w->Fn;
-    w->xn1 = (double)in;
-    
-    return out;
-}
-
-//============================================================================================================
-// CRUSHER
-//============================================================================================================
-#define SCALAR 5000.f
-
-void    tCrusher_init    (tCrusher* const cr)
-{
-    _tCrusher* c = *cr = (_tCrusher*) leaf_alloc(sizeof(_tCrusher));
-    
-    c->op = 4;
-    c->div = SCALAR;
-    c->rnd = 0.25f;
-    c->srr = 0.25f;
-    tSampleReducer_init(&c->sReducer);
-    c->gain = (c->div / SCALAR) * 0.7f + 0.3f;
-}
-
-void    tCrusher_free    (tCrusher* const cr)
-{
-    _tCrusher* c = *cr;
-    tSampleReducer_free(&c->sReducer);
-    leaf_free((char*)c);
-}
-
-void    tCrusher_initToPool   (tCrusher* const cr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCrusher* c = *cr = (_tCrusher*) mpool_alloc(sizeof(_tCrusher), m);
-    
-    c->op = 4;
-    c->div = SCALAR;
-    c->rnd = 0.25f;
-    c->srr = 0.25f;
-    tSampleReducer_initToPool(&c->sReducer, mp);
-    c->gain = (c->div / SCALAR) * 0.7f + 0.3f;
-}
-
-void    tCrusher_freeFromPool (tCrusher* const cr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCrusher* c = *cr;
-    tSampleReducer_freeFromPool(&c->sReducer, mp);
-    mpool_free((char*)c, m);
-}
-
-float   tCrusher_tick    (tCrusher* const cr, float input)
-{
-    _tCrusher* c = *cr;
-    
-    float sample = input;
-    
-    sample *= SCALAR; // SCALAR is 5000 by default
-    
-    sample = (int32_t) sample;
-    
-    sample /= c->div;
-    
-    sample = LEAF_bitwise_xor(sample, c->op << 23);
-    
-    sample = LEAF_clip(-1.f, sample, 1.f);
-    
-    sample = LEAF_round(sample, c->rnd);
-    
-    sample = tSampleReducer_tick(&c->sReducer, sample);
-    
-    return sample * c->gain;
-    
-}
-
-void    tCrusher_setOperation (tCrusher* const cr, float op)
-{
-    _tCrusher* c = *cr;
-    c->op = (uint32_t) (op * 8.0f);
-}
-
-// 0.0 - 1.0
-void    tCrusher_setQuality (tCrusher* const cr, float val)
-{
-    _tCrusher* c = *cr;
-    
-    val = LEAF_clip(0.0f, val, 1.0f);
-    
-    c->div = 0.01f + val * SCALAR;
-    
-    c->gain = (c->div / SCALAR) * 0.7f + 0.3f;
-}
-
-// what decimal to round to
-void    tCrusher_setRound (tCrusher* const cr, float rnd)
-{
-    _tCrusher* c = *cr;
-    c->rnd = fabsf(rnd);
-}
-
-void    tCrusher_setSamplingRatio (tCrusher* const cr, float ratio)
-{
-    _tCrusher* c = *cr;
-    c->srr = ratio;
-    tSampleReducer_setRatio(&c->sReducer, ratio);
-
-}
--- a/LEAF/Src/leaf-dynamics.c
+++ /dev/null
@@ -1,281 +1,0 @@
-/*==============================================================================
-
-    leaf-dynamics.c
-    Created: 30 Nov 2018 11:56:49am
-    Author:  airship
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-dynamics.h"
-
-#else
-
-#include "../Inc/leaf-dynamics.h"
-
-#endif
-
-//==============================================================================
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ Compressor ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-
-/*
- tCompressor*    tCompressorInit(int tauAttack, int tauRelease)
- {
- tCompressor* c = &leaf.tCompressorRegistry[leaf.registryIndex[T_COMPRESSOR]++];
- 
- c->tauAttack = tauAttack;
- c->tauRelease = tauRelease;
- 
- c->x_G[0] = 0.0f, c->x_G[1] = 0.0f,
- c->y_G[0] = 0.0f, c->y_G[1] = 0.0f,
- c->x_T[0] = 0.0f, c->x_T[1] = 0.0f,
- c->y_T[0] = 0.0f, c->y_T[1] = 0.0f;
- 
- c->T = 0.0f; // Threshold
- c->R = 1.0f; // compression Ratio
- c->M = 0.0f; // decibel Make-up gain
- c->W = 0.0f; // decibel Width of knee transition
- 
- return c;
- }
- */
-void    tCompressor_init(tCompressor* const comp)
-{
-    _tCompressor* c = *comp = (_tCompressor*) leaf_alloc(sizeof(_tCompressor));
-    
-    c->tauAttack = 100;
-    c->tauRelease = 100;
-    
-    c->isActive = OFALSE;
-    
-    c->T = 0.0f; // Threshold
-    c->R = 0.5f; // compression Ratio
-    c->M = 3.0f; // decibel Width of knee transition
-    c->W = 1.0f; // decibel Make-up gain
-}
-
-void tCompressor_free(tCompressor* const comp)
-{
-    _tCompressor* c = *comp;
-    
-    leaf_free((char*)c);
-}
-
-void    tCompressor_initToPool  (tCompressor* const comp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCompressor* c = *comp = (_tCompressor*) mpool_alloc(sizeof(_tCompressor), m);
-    
-    c->tauAttack = 100;
-    c->tauRelease = 100;
-    
-    c->isActive = OFALSE;
-    
-    c->T = 0.0f; // Threshold
-    c->R = 0.5f; // compression Ratio
-    c->M = 3.0f; // decibel Width of knee transition
-    c->W = 1.0f; // decibel Make-up gain
-}
-
-void    tCompressor_freeFromPool(tCompressor* const comp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCompressor* c = *comp;
-    
-    mpool_free((char*)c, m);
-}
-
-float tCompressor_tick(tCompressor* const comp, float in)
-{
-    _tCompressor* c = *comp;
-    
-    float slope, overshoot;
-    float alphaAtt, alphaRel;
-    
-    float in_db = 20.0f * log10f( fmaxf( fabsf( in), 0.000001f)), out_db = 0.0f;
-    
-    c->y_T[1] = c->y_T[0];
-    
-    slope = c->R - 1.0f; // feed-forward topology; was 1/C->R - 1
-    
-    overshoot = in_db - c->T;
-    
-    
-    if (overshoot <= -(c->W * 0.5f))
-    {
-        out_db = in_db;
-        c->isActive = OFALSE;
-    }
-    else if ((overshoot > -(c->W * 0.5f)) && (overshoot < (c->W * 0.5f)))
-    {
-        out_db = in_db + slope * (powf((overshoot + c->W*0.5f),2) / (2.0f * c->W)); // .^ 2 ???
-        c->isActive = OTRUE;
-    }
-    else if (overshoot >= (c->W * 0.5f))
-    {
-        out_db = in_db + slope * overshoot;
-        c->isActive = OTRUE;
-    }
-    
-    
-    
-    c->x_T[0] = out_db - in_db;
-    
-    alphaAtt = expf(-1.0f/(0.001f * c->tauAttack * leaf.sampleRate));
-    alphaRel = expf(-1.0f/(0.001f * c->tauRelease * leaf.sampleRate));
-    
-    if (c->x_T[0] > c->y_T[1])
-        c->y_T[0] = alphaAtt * c->y_T[1] + (1-alphaAtt) * c->x_T[0];
-    else
-        c->y_T[0] = alphaRel * c->y_T[1] + (1-alphaRel) * c->x_T[0];
-    
-    float attenuation = powf(10.0f, ((c->M - c->y_T[0])/20.0f));
-    
-    return attenuation * in;
-}
-
-/* Feedback Leveler */
-
-void    tFeedbackLeveler_init(tFeedbackLeveler* const fb, float targetLevel, float factor, float strength, int mode)
-{
-    _tFeedbackLeveler* p = *fb = (_tFeedbackLeveler*) leaf_alloc(sizeof(_tFeedbackLeveler));
-    
-    p->curr=0.0f;
-    p->targetLevel=targetLevel;
-    tPowerFollower_init(&p->pwrFlw,factor);
-    p->mode=mode;
-    p->strength=strength;
-}
-
-void tFeedbackLeveler_free(tFeedbackLeveler* const fb)
-{
-    _tFeedbackLeveler* p = *fb;
-    
-    tPowerFollower_free(&p->pwrFlw);
-    leaf_free((char*)p);
-}
-
-void    tFeedbackLeveler_initToPool     (tFeedbackLeveler* const fb, float targetLevel, float factor, float strength, int mode, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFeedbackLeveler* p = *fb = (_tFeedbackLeveler*) mpool_alloc(sizeof(_tFeedbackLeveler), m);
-    
-    p->curr=0.0f;
-    p->targetLevel=targetLevel;
-    tPowerFollower_initToPool(&p->pwrFlw,factor, mp);
-    p->mode=mode;
-    p->strength=strength;
-}
-
-void    tFeedbackLeveler_freeFromPool   (tFeedbackLeveler* const fb, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFeedbackLeveler* p = *fb;
-    
-    tPowerFollower_freeFromPool(&p->pwrFlw, mp);
-    mpool_free((char*)p, m);
-}
-
-void     tFeedbackLeveler_setStrength(tFeedbackLeveler* const fb, float strength)
-{    // strength is how strongly level diff is affecting the amp ratio
-    // try 0.125 for a start
-    _tFeedbackLeveler* p = *fb;
-    p->strength=strength;
-}
-
-void     tFeedbackLeveler_setFactor(tFeedbackLeveler* const fb, float factor)
-{
-    _tFeedbackLeveler* p = *fb;
-    tPowerFollower_setFactor(&p->pwrFlw,factor);
-}
-
-void     tFeedbackLeveler_setMode(tFeedbackLeveler* const fb, int mode)
-{    // 0 for decaying with upwards lev limiting, 1 for constrained absolute level (also downwards limiting)
-    _tFeedbackLeveler* p = *fb;
-    p->mode=mode;
-}
-
-float   tFeedbackLeveler_tick(tFeedbackLeveler* const fb, float input)
-{
-    _tFeedbackLeveler* p = *fb;
-    float levdiff=(tPowerFollower_tick(&p->pwrFlw, input)-p->targetLevel);
-    if (p->mode==0 && levdiff<0.0f) levdiff=0.0f;
-    p->curr=input*(1.0f-p->strength*levdiff);
-    return p->curr;
-}
-
-float   tFeedbackLeveler_sample(tFeedbackLeveler* const fb)
-{
-    _tFeedbackLeveler* p = *fb;
-    return p->curr;
-}
-
-
-void     tFeedbackLeveler_setTargetLevel   (tFeedbackLeveler* const fb, float TargetLevel)
-{
-    _tFeedbackLeveler* p = *fb;
-    p->targetLevel=TargetLevel;
-}
-
-
-
-void    tThreshold_init(tThreshold* const th, float low, float high)
-{
-	tThreshold_initToPool(th, low, high, &leaf.mempool);
-}
-
-void tThreshold_free(tThreshold* const th)
-{
-	tThreshold_freeFromPool(th, &leaf.mempool);
-}
-
-void    tThreshold_initToPool  (tThreshold* const th, float low, float high, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tThreshold* t = *th = (_tThreshold*) mpool_alloc(sizeof(_tThreshold), m);
-
-    t->highThresh = high;
-    t->lowThresh = low;
-
-    t->currentValue = 0;
-}
-
-void    tThreshold_freeFromPool(tThreshold* const th, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tThreshold* t = *th;
-
-    mpool_free((char*)t, m);
-}
-
-int tThreshold_tick(tThreshold* const th, float in)
-{
-    _tThreshold* t = *th;
-
-    if (in >= t->highThresh)
-    {
-    	t->currentValue = 1;
-    }
-    else if (in <= t->lowThresh)
-	{
-    	t->currentValue = 0;
-	}
-
-    return t->currentValue;
-}
-
-void tThreshold_setLow(tThreshold* const th, float low)
-{
-    _tThreshold* t = *th;
-
-    t->lowThresh = low;
-}
-
-void tThreshold_setHigh(tThreshold* const th, float high)
-{
-    _tThreshold* t = *th;
-
-    t->highThresh = high;
-}
--- a/LEAF/Src/leaf-effects.c
+++ /dev/null
@@ -1,1853 +1,0 @@
-/*==============================================================================
- 
- leaf-vocoder.c
- Created: 20 Jan 2017 12:01:54pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-effects.c"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-effects.h"
-#include "../leaf.h"
-
-#endif
-
-
-
-//============================================================================================================
-// TALKBOX
-//============================================================================================================
-
-//LPC vocoder adapted from MDA's excellent open source talkbox plugin code
-void tTalkbox_init(tTalkbox* const voc, int bufsize)
-{
-    
-    _tTalkbox* v = *voc = (_tTalkbox*) leaf_alloc(sizeof(_tTalkbox));
-    
-    v->param[0] = 0.5f;  //wet
-    v->param[1] = 0.0f;  //dry
-    v->param[2] = 0; // Swap
-    v->param[3] = 1.0f;  //quality
-    v->warpFactor = 0.0f;
-    v->warpOn = 0;
-    v->bufsize = bufsize;
-    
-    v->car0 =   (float*) leaf_alloc(sizeof(float) * v->bufsize);
-    v->car1 =   (float*) leaf_alloc(sizeof(float) * v->bufsize);
-    v->window = (float*) leaf_alloc(sizeof(float) * v->bufsize);
-    v->buf0 =   (float*) leaf_alloc(sizeof(float) * v->bufsize);
-    v->buf1 =   (float*) leaf_alloc(sizeof(float) * v->bufsize);
-    
-    tTalkbox_update(voc);
-    tTalkbox_suspend(voc);
-}
-
-void tTalkbox_free(tTalkbox* const voc)
-{
-    _tTalkbox* v = *voc;
-    
-    leaf_free((char*)v->buf1);
-    leaf_free((char*)v->buf0);
-    leaf_free((char*)v->window);
-    leaf_free((char*)v->car1);
-    leaf_free((char*)v->car0);
-    
-    leaf_free((char*)v);
-}
-
-void    tTalkbox_initToPool     (tTalkbox* const voc, int bufsize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTalkbox* v = *voc = (_tTalkbox*) mpool_alloc(sizeof(_tTalkbox), m);
-    
-    v->param[0] = 0.5f;  //wet
-    v->param[1] = 0.0f;  //dry
-    v->param[2] = 0; // Swap
-    v->param[3] = 1.0f;  //quality
-    v->warpFactor = 0.0f;
-    v->warpOn = 0;
-    v->bufsize = bufsize;
-    
-    v->car0 =   (float*) mpool_alloc(sizeof(float) * v->bufsize, m);
-    v->car1 =   (float*) mpool_alloc(sizeof(float) * v->bufsize, m);
-    v->window = (float*) mpool_alloc(sizeof(float) * v->bufsize, m);
-    v->buf0 =   (float*) mpool_alloc(sizeof(float) * v->bufsize, m);
-    v->buf1 =   (float*) mpool_alloc(sizeof(float) * v->bufsize, m);
-    
-    tTalkbox_update(voc);
-    tTalkbox_suspend(voc);
-}
-
-void    tTalkbox_freeFromPool   (tTalkbox* const voc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTalkbox* v = *voc;
-    
-    mpool_free((char*)v->buf1, m);
-    mpool_free((char*)v->buf0, m);
-    mpool_free((char*)v->window, m);
-    mpool_free((char*)v->car1, m);
-    mpool_free((char*)v->car0, m);
-    
-    mpool_free((char*)v, m);
-}
-
-void tTalkbox_update(tTalkbox* const voc) ///update internal parameters...
-{
-    _tTalkbox* v = *voc;
-    
-    float fs = leaf.sampleRate;
-    if(fs <  8000.0f) fs =  8000.0f;
-    if(fs > 96000.0f) fs = 96000.0f;
-    
-    int32_t n = (int32_t)(0.01633f * fs); //this sets the window time to 16ms if the buffer is large enough. Buffer needs to be at least 784 samples at 48000
-    if(n > v->bufsize) n = v->bufsize;
-    
-    //O = (VstInt32)(0.0005f * fs);
-    v->O = (int32_t)((0.0001f + 0.0004f * v->param[3]) * fs);
-    
-    if(n != v->N) //recalc hanning window
-    {
-        v->N = n;
-        float dp = TWO_PI / v->N;
-        float p = 0.0f;
-        for(n=0; n<v->N; n++)
-        {
-            v->window[n] = 0.5f - 0.5f * cosf(p);
-            p += dp;
-        }
-    }
-    v->wet = 0.5f * v->param[0] * v->param[0];
-    v->dry = 2.0f * v->param[1] * v->param[1];
-}
-
-void tTalkbox_suspend(tTalkbox* const voc) ///clear any buffers...
-{
-    _tTalkbox* v = *voc;
-    
-    v->pos = v->K = 0;
-    v->emphasis = 0.0f;
-    v->FX = 0;
-    
-    v->u0 = v->u1 = v->u2 = v->u3 = v->u4 = 0.0f;
-    v->d0 = v->d1 = v->d2 = v->d3 = v->d4 = 0.0f;
-    
-    for (int32_t i = 0; i < v->bufsize; i++)
-    {
-        v->buf0[i] = 0;
-        v->buf1[i] = 0;
-        v->car0[i] = 0;
-        v->car1[i] = 0;
-    }
-}
-
-// warped autocorrelation adapted from ten.enegatum@liam's post on music-dsp 2004-04-07 09:37:51
-//find the order-P autocorrelation array, R, for the sequence x of length L and warping of lambda
-//wAutocorrelate(&pfSrc[stIndex],siglen,R,P,0);
-void tTalkbox_warpedAutocorrelate(float * x, unsigned int L, float * R, unsigned int P, float lambda)
-{
-    double dl[L];
-    double Rt[L];
-    double r1,r2,r1t;
-    R[0]=0;
-    Rt[0]=0;
-    r1=0;
-    r2=0;
-    r1t=0;
-    for(int32_t k=0; k<L;k++)
-    {
-                    Rt[0] += (double)(x[k]) * (double)(x[k]);
-
-                    dl[k]= r1 - (double)(lambda) * (double)(x[k]-r2);
-                    r1 = x[k];
-                    r2 = dl[k];
-    }
-    for(int32_t i=1; i<=P; i++)
-    {
-            Rt[i]=0;
-            r1=0;
-            r2=0;
-            for(unsigned int k=0; k<L;k++)
-            {
-                    Rt[i] += (double) (dl[k]) * (double)(x[k]);
-
-                    r1t = dl[k];
-                    dl[k]= r1 - (double)(lambda) * (double)(r1t-r2);
-                    r1 = r1t;
-                    r2 = dl[k];
-            }
-    }
-    for(int32_t i=0; i<=P; i++)
-    {
-            R[i]=(float)(Rt[i]);
-    }
-
-}
-
-
-
-#define ORD_MAX           35 // Was 100.
-// order is defined by the set_quality function.
-// it's set to max out at 0.0005 of sample rate (if you don't go above 1.0f in the quality setting) == at 48000 that's 24.
-// -JS
-void tTalkbox_lpc(float *buf, float *car, int32_t n, int32_t o, float warp, int warpOn)
-{
-    float z[ORD_MAX], r[ORD_MAX], k[ORD_MAX], G, x;
-    int32_t i, j, nn=n;
-    
-    if (warpOn == 0)
-    {
-        for(j=0; j<=o; j++, nn--)  //buf[] is already emphasized and windowed
-        {
-            z[j] = r[j] = 0.0f;
-            for(i=0; i<nn; i++) r[j] += buf[i] * buf[i+j]; //autocorrelation
-        }
-    }
-    else
-    {
-        for(j=0; j<=o; j++, nn--)  //buf[] is already emphasized and windowed
-        {
-            z[j] = r[j] = 0.0f;
-        }
-    	tTalkbox_warpedAutocorrelate(buf, n, r, o, warp);
-    }
-
-    r[0] *= 1.001f;  //stability fix
-    
-    float min = 0.00001f;
-    if(r[0] < min) { for(i=0; i<n; i++) buf[i] = 0.0f; return; }
-    
-    tTalkbox_lpcDurbin(r, o, k, &G);  //calc reflection coeffs
-    
-    //this is for stability to keep reflection coefficients inside the unit circle
-    //but in Harma's papers I've seen 0.998.  just needs to be less than 1 it seems but maybe some wiggle room to avoid instability from floating point precision -JS
-    for(i=0; i<=o; i++)
-    {
-        if(k[i] > 0.995f) k[i] = 0.995f; else if(k[i] < -0.995f) k[i] = -.995f;
-    }
-    
-    for(i=0; i<n; i++)
-    {
-        x = G * car[i];
-        for(j=o; j>0; j--)  //lattice filter
-        {
-            x -= k[j] * z[j-1];
-            z[j] = z[j-1] + k[j] * x;
-        }
-        buf[i] = z[0] = x;  //output buf[] will be windowed elsewhere
-    }
-}
-
-
-void tTalkbox_lpcDurbin(float *r, int p, float *k, float *g)
-{
-    int i, j;
-    float a[ORD_MAX], at[ORD_MAX], e=r[0];
-    
-    for(i=0; i<=p; i++) a[i] = 0.0f; //probably don't need to clear at[] or k[]
-    at[0] = 0.0f;
-    for(i=1; i<=p; i++)
-    {
-        k[i] = -r[i];
-        
-        for(j=1; j<i; j++)
-        {
-            at[j] = a[j];
-            k[i] -= a[j] * r[i-j];
-        }
-        if(fabs(e) < 1.0e-20f) { e = 0.0f;  break; }
-        k[i] /= e;
-        
-        a[i] = k[i];
-        for(j=1; j<i; j++) a[j] = at[j] + k[i] * at[i-j];
-        
-        e *= 1.0f - k[i] * k[i];
-    }
-    
-    if(e < 1.0e-20f) e = 0.0f;
-    *g = sqrtf(e);
-}
-
-float tTalkbox_tick(tTalkbox* const voc, float synth, float voice)
-{
-    _tTalkbox* v = *voc;
-    
-    int32_t  p0=v->pos, p1 = (v->pos + v->N/2) % v->N;
-    float e=v->emphasis, w, o, x, fx=v->FX;
-    float p, q, h0=0.3f, h1=0.77f;
-    
-    o = voice;
-    x = synth;
-    
-
-
-    p = v->d0 + h0 *  x; v->d0 = v->d1;  v->d1 = x  - h0 * p;
-    q = v->d2 + h1 * v->d4; v->d2 = v->d3;  v->d3 = v->d4 - h1 * q;
-    v->d4 = x;
-    x = p + q;
-    
-    if(v->K++)
-    {
-        v->K = 0;
-        
-        v->car0[p0] = v->car1[p1] = x; //carrier input
-        
-        x = o - e;  e = o;  //6dB/oct pre-emphasis
-        
-        w = v->window[p0]; fx = v->buf0[p0] * w;  v->buf0[p0] = x * w;  //50% overlapping hanning windows
-        if(++p0 >= v->N) { tTalkbox_lpc(v->buf0, v->car0, v->N, v->O, v->warpFactor, v->warpOn);  p0 = 0; }
-        
-        w = 1.0f - w;  fx += v->buf1[p1] * w;  v->buf1[p1] = x * w;
-        if(++p1 >= v->N) { tTalkbox_lpc(v->buf1, v->car1, v->N, v->O, v->warpFactor, v->warpOn);  p1 = 0; }
-    }
-    
-    p = v->u0 + h0 * fx; v->u0 = v->u1;  v->u1 = fx - h0 * p;
-    q = v->u2 + h1 * v->u4; v->u2 = v->u3;  v->u3 = v->u4 - h1 * q;
-    v->u4 = fx;
-    x = p + q;
-    
-    o = x;
-    
-    v->emphasis = e;
-    v->pos = p0;
-    v->FX = fx;
-    
-
-    return o;
-}
-
-void tTalkbox_setQuality(tTalkbox* const voc, float quality)
-{
-    _tTalkbox* v = *voc;
-    
-    v->param[3] = quality;
-    v->O = (int32_t)((0.0001f + 0.0004f * v->param[3]) * leaf.sampleRate);
-    if (v->O >= ORD_MAX)
-    {
-    	v->O = ORD_MAX-1;
-    }
-}
-
-void tTalkbox_setWarpFactor(tTalkbox* const voc, float warpFactor)
-{
-    _tTalkbox* v = *voc;
-
-    v->warpFactor = warpFactor;
-}
-
-void tTalkbox_setWarpOn(tTalkbox* const voc, float warpOn)
-{
-    _tTalkbox* v = *voc;
-
-    v->warpOn = warpOn;
-}
-
-
-//============================================================================================================
-// VOCODER
-//============================================================================================================
-
-void   tVocoder_init        (tVocoder* const voc)
-{
-    _tVocoder* v = *voc = (_tVocoder*) leaf_alloc(sizeof(_tVocoder));
-    
-    v->param[0] = 0.33f;  //input select
-    v->param[1] = 0.50f;  //output dB
-    v->param[2] = 0.40f;  //hi thru
-    v->param[3] = 0.40f;  //hi band
-    v->param[4] = 0.16f;  //envelope
-    v->param[5] = 0.55f;  //filter q
-    v->param[6] = 0.6667f;//freq range
-    v->param[7] = 0.33f;  //num bands
-    
-    tVocoder_update(voc);
-}
-
-void tVocoder_free (tVocoder* const voc)
-{
-    _tVocoder* v = *voc;
-    
-    leaf_free((char*)v);
-}
-
-void    tVocoder_initToPool     (tVocoder* const voc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tVocoder* v = *voc = (_tVocoder*) mpool_alloc(sizeof(_tVocoder), m);
-    
-    v->param[0] = 0.33f;  //input select
-    v->param[1] = 0.50f;  //output dB
-    v->param[2] = 0.40f;  //hi thru
-    v->param[3] = 0.40f;  //hi band
-    v->param[4] = 0.16f;  //envelope
-    v->param[5] = 0.55f;  //filter q
-    v->param[6] = 0.6667f;//freq range
-    v->param[7] = 0.33f;  //num bands
-    
-    tVocoder_update(voc);
-}
-
-void    tVocoder_freeFromPool   (tVocoder* const voc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tVocoder* v = *voc;
-    
-    mpool_free((char*)v, m);
-}
-
-void        tVocoder_update      (tVocoder* const voc)
-{
-    _tVocoder* v = *voc;
-    
-    float tpofs = 6.2831853f * leaf.invSampleRate;
-    
-    float rr, th, re;
-    
-    float sh;
-    
-    int32_t i;
-    
-    v->gain = (float)pow(10.0f, 2.0f * v->param[1] - 3.0f * v->param[5] - 2.0f);
-    
-    v->thru = (float)pow(10.0f, 0.5f + 2.0f * v->param[1]);
-    v->high =  v->param[3] * v->param[3] * v->param[3] * v->thru;
-    v->thru *= v->param[2] * v->param[2] * v->param[2];
-    
-    if(v->param[7]<0.5f)
-    {
-        v->nbnd=8;
-        re=0.003f;
-        v->f[1][2] = 3000.0f;
-        v->f[2][2] = 2200.0f;
-        v->f[3][2] = 1500.0f;
-        v->f[4][2] = 1080.0f;
-        v->f[5][2] = 700.0f;
-        v->f[6][2] = 390.0f;
-        v->f[7][2] = 190.0f;
-    }
-    else
-    {
-        v->nbnd=16;
-        re=0.0015f;
-        v->f[ 1][2] = 5000.0f; //+1000
-        v->f[ 2][2] = 4000.0f; //+750
-        v->f[ 3][2] = 3250.0f; //+500
-        v->f[ 4][2] = 2750.0f; //+450
-        v->f[ 5][2] = 2300.0f; //+300
-        v->f[ 6][2] = 2000.0f; //+250
-        v->f[ 7][2] = 1750.0f; //+250
-        v->f[ 8][2] = 1500.0f; //+250
-        v->f[ 9][2] = 1250.0f; //+250
-        v->f[10][2] = 1000.0f; //+250
-        v->f[11][2] =  750.0f; //+210
-        v->f[12][2] =  540.0f; //+190
-        v->f[13][2] =  350.0f; //+155
-        v->f[14][2] =  195.0f; //+100
-        v->f[15][2] =   95.0f;
-    }
-    
-    if(v->param[4]<0.05f) //freeze
-    {
-        for(i=0;i<v->nbnd;i++) v->f[i][12]=0.0f;
-    }
-    else
-    {
-        v->f[0][12] = (float)pow(10.0, -1.7 - 2.7f * v->param[4]); //envelope speed
-        
-        rr = 0.022f / (float)v->nbnd; //minimum proportional to frequency to stop distortion
-        for(i=1;i<v->nbnd;i++)
-        {
-            v->f[i][12] = (float)(0.025 - rr * (double)i);
-            if(v->f[0][12] < v->f[i][12]) v->f[i][12] = v->f[0][12];
-        }
-        v->f[0][12] = 0.5f * v->f[0][12]; //only top band is at full rate
-    }
-    
-    rr = 1.0 - pow(10.0f, -1.0f - 1.2f * v->param[5]);
-    sh = (float)pow(2.0f, 3.0f * v->param[6] - 1.0f); //filter bank range shift
-    
-    for(i=1;i<v->nbnd;i++)
-    {
-        v->f[i][2] *= sh;
-        th = acos((2.0 * rr * cos(tpofs * v->f[i][2])) / (1.0 + rr * rr));
-        v->f[i][0] = (float)(2.0 * rr * cos(th)); //a0
-        v->f[i][1] = (float)(-rr * rr);           //a1
-        //was .98
-        v->f[i][2] *= 0.96f; //shift 2nd stage slightly to stop high resonance peaks
-        th = acos((2.0 * rr * cos(tpofs * v->f[i][2])) / (1.0 + rr * rr));
-        v->f[i][2] = (float)(2.0 * rr * cos(th));
-    }
-}
-
-float       tVocoder_tick        (tVocoder* const voc, float synth, float voice)
-{
-    _tVocoder* v = *voc;
-    
-    float a, b, o=0.0f, aa, bb, oo = v->kout, g = v->gain, ht = v->thru, hh = v->high, tmp;
-    uint32_t i, k = v->kval, nb = v->nbnd;
-    
-    a = voice; //speech
-    b = synth; //synth
-    
-    tmp = a - v->f[0][7]; //integrate modulator for HF band and filter bank pre-emphasis
-    v->f[0][7] = a;
-    a = tmp;
-    
-    if(tmp<0.0f) tmp = -tmp;
-    v->f[0][11] -= v->f[0][12] * (v->f[0][11] - tmp);      //high band envelope
-    o = v->f[0][11] * (ht * a + hh * (b - v->f[0][3])); //high band + high thru
-    
-    v->f[0][3] = b; //integrate carrier for HF band
-    
-    if(++k & 0x1) //this block runs at half sample rate
-    {
-        oo = 0.0f;
-        aa = a + v->f[0][9] - v->f[0][8] - v->f[0][8];  //apply zeros here instead of in each reson
-        v->f[0][9] = v->f[0][8];  v->f[0][8] = a;
-        bb = b + v->f[0][5] - v->f[0][4] - v->f[0][4];
-        v->f[0][5] = v->f[0][4];  v->f[0][4] = b;
-        
-        for(i=1; i<nb; i++) //filter bank: 4th-order band pass
-        {
-            tmp = v->f[i][0] * v->f[i][3] + v->f[i][1] * v->f[i][4] + bb;
-            v->f[i][4] = v->f[i][3];
-            v->f[i][3] = tmp;
-            tmp += v->f[i][2] * v->f[i][5] + v->f[i][1] * v->f[i][6];
-            v->f[i][6] = v->f[i][5];
-            v->f[i][5] = tmp;
-            
-            tmp = v->f[i][0] * v->f[i][7] + v->f[i][1] * v->f[i][8] + aa;
-            v->f[i][8] = v->f[i][7];
-            v->f[i][7] = tmp;
-            tmp += v->f[i][2] * v->f[i][9] + v->f[i][1] * v->f[i][10];
-            v->f[i][10] = v->f[i][9];
-            v->f[i][9] = tmp;
-            
-            if(tmp<0.0f) tmp = -tmp;
-            v->f[i][11] -= v->f[i][12] * (v->f[i][11] - tmp);
-            oo += v->f[i][5] * v->f[i][11];
-        }
-    }
-    o += oo * g; //effect of interpolating back up to Fs would be minimal (aliasing >16kHz)
-    
-    v->kout = oo;
-    v->kval = k & 0x1;
-    if(fabs(v->f[0][11])<1.0e-10) v->f[0][11] = 0.0f; //catch HF envelope denormal
-    
-    for(i=1;i<nb;i++)
-        if(fabs(v->f[i][3])<1.0e-10 || fabs(v->f[i][7])<1.0e-10)
-            for(k=3; k<12; k++) v->f[i][k] = 0.0f; //catch reson & envelope denormals
-    
-    if(fabs(o)>10.0f) tVocoder_suspend(voc); //catch instability
-    
-    return o;
-    
-}
-
-void        tVocoder_suspend     (tVocoder* const voc)
-{
-    _tVocoder* v = *voc;
-    
-    int32_t i, j;
-    
-    for(i=0; i<v->nbnd; i++) for(j=3; j<12; j++) v->f[i][j] = 0.0f; //zero band filters and envelopes
-    v->kout = 0.0f;
-    v->kval = 0;
-}
-
-
-
-/// Glottal Pulse (Rosenberg model)
-
-void    tRosenbergGlottalPulse_init           (tRosenbergGlottalPulse* const gp)
-{
-	tRosenbergGlottalPulse_initToPool(gp, &leaf.mempool);
-}
-void    tRosenbergGlottalPulse_free           (tRosenbergGlottalPulse* const gp)
-{
-	tRosenbergGlottalPulse_freeFromPool(gp, &leaf.mempool);
-}
-void    tRosenbergGlottalPulse_initToPool     (tRosenbergGlottalPulse* const gp, tMempool* const mp)
-{
-
-	 _tMempool* m = *mp;
-	_tRosenbergGlottalPulse* g = *gp = (_tRosenbergGlottalPulse*) mpool_alloc(sizeof(_tRosenbergGlottalPulse), m);
-
-	g->phase  = 0.0f;
-	g->openLength = 0.0f;
-	g->pulseLength = 0.0f;
-	g->freq = 0.0f;
-	g->inc = 0.0f;
-
-
-}
-void    tRosenbergGlottalPulse_freeFromPool   (tRosenbergGlottalPulse* const gp, tMempool* const mp)
-{
-	_tMempool* m = *mp;
-	_tRosenbergGlottalPulse* g = *gp;
-	mpool_free((char*)g, m);
-}
-
-float   tRosenbergGlottalPulse_tick           (tRosenbergGlottalPulse* const gp)
-{
-	_tRosenbergGlottalPulse* g = *gp;
-
-	float output = 0.0f;
-
-    // Phasor increment
-    g->phase += g->inc;
-    while (g->phase >= 1.0f) g->phase -= 1.0f;
-    while (g->phase < 0.0f) g->phase += 1.0f;
-
-	if (g->phase < g->openLength)
-	{
-		output = 0.5f*(1.0f-cosf(PI * g->phase));
-	}
-
-	else if (g->phase < g->pulseLength)
-	{
-		output = cosf(HALF_PI * (g->phase-g->openLength)/(g->pulseLength-g->openLength));
-	}
-
-	else
-	{
-		output = 0.0f;
-	}
-	return output;
-}
-
-void   tRosenbergGlottalPulse_setFreq           (tRosenbergGlottalPulse* const gp, float freq)
-{
-	_tRosenbergGlottalPulse* g = *gp;
-	g->freq = freq;
-	g->inc = freq * leaf.invSampleRate;
-}
-
-void   tRosenbergGlottalPulse_setOpenLength           (tRosenbergGlottalPulse* const gp, float openLength)
-{
-	_tRosenbergGlottalPulse* g = *gp;
-	g->openLength = openLength;
-}
-
-void   tRosenbergGlottalPulse_setPulseLength           (tRosenbergGlottalPulse* const gp, float pulseLength)
-{
-	_tRosenbergGlottalPulse* g = *gp;
-	g->pulseLength = pulseLength;
-}
-
-
-
-
-//============================================================================================================
-// SOLAD
-//============================================================================================================
-/******************************************************************************/
-/***************** static function declarations *******************************/
-/******************************************************************************/
-
-static void solad_init(_tSOLAD *w);
-static inline float read_sample(_tSOLAD *w, float floatindex);
-static void pitchdown(_tSOLAD *w, float *out);
-static void pitchup(_tSOLAD *w, float *out);
-
-/******************************************************************************/
-/***************** public access functions ************************************/
-/******************************************************************************/
-
-// init
-void     tSOLAD_init(tSOLAD* const wp)
-{
-    _tSOLAD* w = *wp = (_tSOLAD*) leaf_calloc(sizeof(_tSOLAD));
-    
-    w->pitchfactor = 1.;
-    w->delaybuf = (float*) leaf_calloc(sizeof(float) * (LOOPSIZE+16));
-    
-    solad_init(w);
-}
-
-void tSOLAD_free(tSOLAD* const wp)
-{
-    _tSOLAD* w = *wp;
-    
-    leaf_free((char*)w->delaybuf);
-    leaf_free((char*)w);
-}
-
-void    tSOLAD_initToPool       (tSOLAD* const wp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-
-    _tSOLAD* w = *wp = (_tSOLAD*) mpool_calloc(sizeof(_tSOLAD), m);
-    
-    w->pitchfactor = 1.;
-    w->delaybuf = (float*) mpool_calloc(sizeof(float) * (LOOPSIZE+16), m);
-
-    solad_init(w);
-}
-
-void    tSOLAD_freeFromPool     (tSOLAD* const wp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSOLAD* w = *wp;
-    
-    mpool_free((char*)w->delaybuf, m);
-    mpool_free((char*)w, m);
-}
-
-// send one block of input samples, receive one block of output samples
-void tSOLAD_ioSamples(tSOLAD* const wp, float* in, float* out, int blocksize)
-{
-    _tSOLAD* w = *wp;
-    
-    int i = w->timeindex;
-    int n = w->blocksize = blocksize;
-    
-    if(!i) w->delaybuf[LOOPSIZE] = in[0];   // copy one sample for interpolation
-    while(n--) w->delaybuf[i++] = *in++;    // copy one input block to delay buffer
-    
-    if(w->pitchfactor > 1) pitchup(w, out);
-    else pitchdown(w, out);
-    
-    w->timeindex += blocksize;
-    w->timeindex &= LOOPMASK;
-}
-
-// set periodicity analysis data
-void tSOLAD_setPeriod(tSOLAD* const wp, float period)
-{
-    _tSOLAD* w = *wp;
-    
-    if(period > MAXPERIOD) period = MAXPERIOD;
-    if(period > MINPERIOD) w->period = period;  // ignore period when too small
-}
-
-// set pitch factor between 0.25 and 4
-void tSOLAD_setPitchFactor(tSOLAD* const wp, float pitchfactor)
-{
-    _tSOLAD* w = *wp;
-    
-    if (pitchfactor <= 0.0f) return;
-    w->pitchfactor = pitchfactor;
-}
-
-// force readpointer lag
-void tSOLAD_setReadLag(tSOLAD* const wp, float readlag)
-{
-    _tSOLAD* w = *wp;
-    
-    if(readlag < 0) readlag = 0;
-    if(readlag < w->readlag)               // do not jump backward, only forward
-    {
-        w->jump = w->readlag - readlag;
-        w->readlag = readlag;
-        w->xfadelength = readlag;
-        w->xfadevalue = 1;
-    }
-}
-
-// reset state variables
-void tSOLAD_resetState(tSOLAD* const wp)
-{
-    _tSOLAD* w = *wp;
-    
-    int n = LOOPSIZE + 1;
-    float *buf = w->delaybuf;
-    
-    while(n--) *buf++ = 0;
-    solad_init(w);
-}
-
-/******************************************************************************/
-/******************** private procedures **************************************/
-/******************************************************************************/
-
-/*
- Function pitchdown() is called to read samples from the delay buffer when pitch
- factor is between 0.25 and 1. The read pointer lags behind because of the slowed
- down speed, and it must jump forward towards the write pointer soon as there is
- sufficient space to jump. That is, if there is at least one period of the input
- signal between read pointer and write pointer.  When short periods follow up on
- long periods, the read pointer may have space to jump over more than one period
- lenghts. Jump length must be [periodlength ^ 2] in any case.
- 
- A linear crossfade function joins the jump-from point with the jump-to point.
- The crossfade must be completed before another read pointer jump is allowed.
- Length of the crossfade function is stored as a number of samples in terms of
- the input sample rate. This length is dynamically translated
- to a crossfade length expressed in output reading rate, according to pitch
- factor which can change before the crossfade is completed. Crossfade length does
- not cover an invariable length in periods for all pitch transposition factors.
- For pitch factors from 0.5 till 1, crossfade length is stretched in the
- output just as much as the signal itself, as crossfade speed is set to equal
- pitch factor. For pitch factors below 0.5, the read pointer wants to jump
- forward before one period is read, therefore the crossfade length as expressed
- in output periods must be shorter. Crossfade speed is set to [1 - pitchfactor]
- for those cases. Pitch factor 0.5 is the natural switch point between crossfade
- speeds [pitchfactor] and [1 - pitchfactor] because 0.5 == 1 - 0.5. The crossfade
- speed modification for pitch factors below 0.5 also means that much of the
- original signal content will be skipped.
- */
-
-
-static void pitchdown(_tSOLAD* const w, float *out)
-{
-    int n = w->blocksize;
-    float refindex = (float)(w->timeindex + LOOPSIZE); // no negative values!
-    float pitchfactor = w->pitchfactor;
-    float period = w->period;
-    float readlag = w->readlag;
-    float readlagstep = 1 - pitchfactor;
-    float jump = w->jump;
-    float xfadevalue = w->xfadevalue;
-    float xfadelength = w->xfadelength;
-    float xfadespeed, xfadestep, readindex, outputsample;
-    
-    if(pitchfactor > 0.5) xfadespeed = pitchfactor;
-    else xfadespeed = 1 - pitchfactor;
-    xfadestep = xfadespeed / xfadelength;
-    
-    while(n--)
-    {
-        if(readlag > period)        // check if read pointer may jump forward...
-        {
-            if(xfadevalue <= 0)      // ...but do not interrupt crossfade
-            {
-                jump = period;                           // jump forward
-                while((jump * 2) < readlag) jump *= 2;   // use available space
-                readlag -= jump;                         // reduce read pointer lag
-                xfadevalue = 1;                          // start crossfade
-                xfadelength = period - 1;
-                xfadestep = xfadespeed / xfadelength;
-            }
-        }
-        
-        readindex = refindex - readlag;
-        outputsample = read_sample(w, readindex);
-        
-        if(xfadevalue > 0)
-        {
-            outputsample *= (1 - xfadevalue);                               // fadein
-            outputsample += read_sample(w, readindex - jump) * xfadevalue;  // fadeout
-            xfadevalue -= xfadestep;
-        }
-        
-        *out++ = outputsample;
-        refindex += 1;
-        readlag += readlagstep;
-    }
-    
-    w->jump = jump;                 // state variables
-    w->readlag = readlag;
-    w->xfadevalue = xfadevalue;
-    w->xfadelength = xfadelength;
-}
-
-
-/*
- Function pitchup() for pitch factors above 1 is more complicated than
- pitchdown(). The read pointer increments faster than the write pointer and a
- backward jump must happen in time, reckoning with the crossfade region. The read
- pointer backward jump length is always one period. In order to minimize the area
- of signal duplicates, crossfade length is aimed at [period / pitchfactor].
- This leads to a crossfade speed of [pitchfactor * pitchfactor].
- 
- Some samples for the fade out (but not all of them) must already be in the
- buffer, otherwise we will run out of input samples before the crossfade is
- completed. The ratio of past samples and future samples for a crossfade of any
- length is as follows:
- 
- past samples: xfadelength * (1 - 1 / pitchfactor)
- future samples: xfadelength * (1 / pitchfactor)
- 
- For example in the case of pitch factor 1.5 this would be:
- 
- past samples: xfadelength * (1 - 1 / 1.5) = xfadelength * 1 / 3
- future samples: xfadelength * (1 / 1.5) = xfadelength * 2 / 3
- 
- In the case of pitch factor 4 this would be:
- 
- past samples: xfadelength * (1 - 1 / 4) = xfadelength * 3 / 4
- future samples: xfadelength * (1 / 4) = xfadelength * 1 / 4
- 
- The read pointer lag must therefore preserve a minimum dependent on pitch
- factor. The minimum is called 'limit' here:
- 
- limit = period * (pitchfactor - 1) / pitchfactor * pitchfactor
- 
- Components of this expression are combined to reuse them in operations, while
- (pitchfactor - 1) is changed to (pitchfactor - 0.99) to avoid numerical
- resolution issues for pitch factors slightly above 1:
- 
- xfadespeed = pitchfactor * pitchfactor
- limitfactor = (pitchfactor - 0.99) / xfadespeed
- limit = period * limitfactor
- 
- When read lag is smaller than this limit, the read pointer must preferably
- jump backward, unless a previous crossfade is not yet completed. Crossfades must
- preferably be completed, unless the read pointer lag becomes smaller than zero.
- With fluctuating period lengths and pitch factors, the readpointer lag limit may
- change from one input block to the next in such a way that the actual lag is
- suddenly much smaller than the limit, and the intended crossfade length can not
- be applied. Therefore the crossfade length is simply calculated from the
- available amount of samples for all cases, like so:
- 
- xfadelength = readlag / limitfactor
- 
- For most occurrences, this will amount to a crossfade length reduced to
- [period / pitchfactor] in the output for pitch factors above 1, while in some
- cases it will be considerably shorter. Fortunately, an incidental aberration of
- the intended crossfade length hardly ever creates an audible artifact. The
- reason to specify preferred crossfade length according to pitch factor is to
- minimize the impression of echoes without sacrificing too much of the signal
- content. The readpointer jump length remains one period in any case.
- 
- Sometimes, the input signal periodicity may decrease substantially between one
- signal block and the next. In such cases it may be possible for the read pointer
- to jump forward and reduce latency. For every signal block, a check on this
- possibility is done. A previous crossfade must be completed before a forward
- jump is allowed.
- */
-static void pitchup(_tSOLAD* const w, float *out)
-{
-    int n = w->blocksize;
-    float refindex = (float)(w->timeindex + LOOPSIZE); // no negative values
-    float pitchfactor = w->pitchfactor;
-    float period = w->period;
-    float readlag = w->readlag;
-    float jump = w->jump;
-    float xfadevalue = w->xfadevalue;
-    float xfadelength = w->xfadelength;
-    
-    float readlagstep = pitchfactor - 1;
-    float xfadespeed = pitchfactor * pitchfactor;
-    float xfadestep = xfadespeed / xfadelength;
-    float limitfactor = (pitchfactor - (float)0.99) / xfadespeed;
-    float limit = period * limitfactor;
-    float readindex, outputsample;
-    
-    if((readlag > (period + 2 * limit)) & (xfadevalue < 0))
-    {
-        jump = period;                                        // jump forward
-        while((jump * 2) < (readlag - 2 * limit)) jump *= 2;  // use available space
-        readlag -= jump;                                      // reduce read pointer lag
-        xfadevalue = 1;                                       // start crossfade
-        xfadelength = period - 1;
-        xfadestep = xfadespeed / xfadelength;
-    }
-    
-    while(n--)
-    {
-        if(readlag < limit)  // check if read pointer should jump backward...
-        {
-            if((xfadevalue < 0) | (readlag < 0)) // ...but try not to interrupt crossfade
-            {
-                xfadelength = readlag / limitfactor;
-                if(xfadelength < 1) xfadelength = 1;
-                xfadestep = xfadespeed / xfadelength;
-                
-                jump = -period;         // jump backward
-                readlag += period;      // increase read pointer lag
-                xfadevalue = 1;         // start crossfade
-            }
-        }
-        
-        readindex = refindex - readlag;
-        outputsample = read_sample(w, readindex);
-        
-        if(xfadevalue > 0)
-        {
-            outputsample *= (1 - xfadevalue);
-            outputsample += read_sample(w, readindex - jump) * xfadevalue;
-            xfadevalue -= xfadestep;
-        }
-        
-        *out++ = outputsample;
-        refindex += 1;
-        readlag -= readlagstep;
-    }
-    
-    w->readlag = readlag;               // state variables
-    w->jump = jump;
-    w->xfadelength = xfadelength;
-    w->xfadevalue = xfadevalue;
-}
-
-// read one sample from delay buffer, with linear interpolation
-static inline float read_sample(_tSOLAD* const w, float floatindex)
-{
-    int index = (int)floatindex;
-    float fraction = floatindex - (float)index;
-    float *buf = w->delaybuf;
-    index &= LOOPMASK;
-    
-    return (buf[index] + (fraction * (buf[index+1] - buf[index])));
-}
-
-static void solad_init(_tSOLAD* const w)
-{
-    w->timeindex = 0;
-    w->xfadevalue = -1;
-    w->period = INITPERIOD;
-    w->readlag = INITPERIOD;
-    w->blocksize = INITPERIOD;
-}
-
-//============================================================================================================
-// PITCHSHIFT
-//============================================================================================================
-
-static int pitchshift_attackdetect(_tPitchShift* ps)
-{
-    float envout;
-    
-    _tPeriodDetection* p = *ps->p;
-    
-    envout = tEnvPD_tick(&p->env);
-    
-    if (envout >= 1.0f)
-    {
-        p->lastmax = p->max;
-        if (envout > p->max)
-        {
-            p->max = envout;
-        }
-        else
-        {
-            p->deltamax = envout - p->max;
-            p->max = p->max * ps->radius;
-        }
-        p->deltamax = p->max - p->lastmax;
-    }
-    
-    p->fba = p->fba ? (p->fba - 1) : 0;
-    
-    return (p->fba == 0 && (p->max > 60 && p->deltamax > 6)) ? 1 : 0;
-}
-
-void tPitchShift_init (tPitchShift* const psr, tPeriodDetection* pd, float* out, int bufSize)
-{
-    _tPitchShift* ps = *psr = (_tPitchShift*) leaf_calloc(sizeof(_tPitchShift));
-    _tPeriodDetection* p = *pd;
-    
-    ps->p = pd;
-    
-    ps->outBuffer = out;
-    ps->bufSize = bufSize;
-    ps->frameSize = p->frameSize;
-    ps->framesPerBuffer = ps->bufSize / ps->frameSize;
-    ps->curBlock = 1;
-    ps->lastBlock = 0;
-    ps->index = 0;
-    ps->pitchFactor = 1.0f;
-    
-    tSOLAD_init(&ps->sola);
-    
-    tHighpass_init(&ps->hp, HPFREQ);
-    
-    tSOLAD_setPitchFactor(&ps->sola, DEFPITCHRATIO);
-}
-
-void tPitchShift_free(tPitchShift* const psr)
-{
-    _tPitchShift* ps = *psr;
-    
-    tSOLAD_free(&ps->sola);
-    tHighpass_free(&ps->hp);
-    leaf_free((char*)ps);
-}
-
-void    tPitchShift_initToPool      (tPitchShift* const psr, tPeriodDetection* const pd, float* out, int bufSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-
-    _tPitchShift* ps = *psr = (_tPitchShift*) mpool_calloc(sizeof(_tPitchShift), m);
-
-    _tPeriodDetection* p = *pd;
-    
-    ps->p = pd;
-    
-    ps->outBuffer = out;
-    ps->bufSize = bufSize;
-    ps->frameSize = p->frameSize;
-    ps->framesPerBuffer = ps->bufSize / ps->frameSize;
-    ps->curBlock = 1;
-    ps->lastBlock = 0;
-    ps->index = 0;
-    ps->pitchFactor = 1.0f;
-    
-    tSOLAD_initToPool(&ps->sola, mp);
-    
-    tHighpass_initToPool(&ps->hp, HPFREQ, mp);
-    
-    tSOLAD_setPitchFactor(&ps->sola, DEFPITCHRATIO);
-}
-
-void    tPitchShift_freeFromPool    (tPitchShift* const psr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPitchShift* ps = *psr;
-    
-    tSOLAD_freeFromPool(&ps->sola, mp);
-    tHighpass_freeFromPool(&ps->hp, mp);
-    mpool_free((char*)ps, m);
-}
-
-void tPitchShift_setPitchFactor(tPitchShift* psr, float pf)
-{
-    _tPitchShift* ps = *psr;
-    
-    ps->pitchFactor = pf;
-}
-
-float tPitchShift_shift (tPitchShift* psr)
-{
-    _tPitchShift* ps = *psr;
-    _tPeriodDetection* p = *ps->p;
-    
-    float period, out;
-    int i, iLast;
-    
-    i = p->i;
-    iLast = p->iLast;
-    
-    out = tHighpass_tick(&ps->hp, ps->outBuffer[iLast]);
-    
-    if (p->indexstore >= ps->frameSize)
-    {
-        period = tPeriodDetection_getPeriod(&p);
-        
-        if(pitchshift_attackdetect(ps) == 1)
-        {
-            p->fba = 5;
-            tSOLAD_setReadLag(&ps->sola, p->windowSize);
-        }
-        
-        tSOLAD_setPeriod(&ps->sola, period);
-        tSOLAD_setPitchFactor(&ps->sola, ps->pitchFactor);
-        
-        tSOLAD_ioSamples(&ps->sola, &(p->inBuffer[i]), &(ps->outBuffer[i]), ps->frameSize);
-    }
-    
-    return out;
-}
-
-float tPitchShift_shiftToFreq (tPitchShift* psr, float freq)
-{
-    _tPitchShift* ps = *psr;
-    _tPeriodDetection* p = *ps->p;
-    
-    float period, out;
-    int i, iLast;
-    
-    i = p->i;
-    iLast = p->iLast;
-    
-    out = tHighpass_tick(&ps->hp, ps->outBuffer[iLast]);
-    
-    if (p->indexstore >= ps->frameSize)
-    {
-        period = tPeriodDetection_getPeriod(&p);
-        
-        if(pitchshift_attackdetect(ps) == 1)
-        {
-            p->fba = 5;
-            tSOLAD_setReadLag(&ps->sola, p->windowSize);
-        }
-        
-        tSOLAD_setPeriod(&ps->sola, period);
-        
-        if (period != 0) ps->pitchFactor = period*freq*leaf.invSampleRate;
-        else ps->pitchFactor = 1.0f;
-        
-        tSOLAD_setPitchFactor(&ps->sola, ps->pitchFactor);
-        
-        tSOLAD_ioSamples(&ps->sola, &(p->inBuffer[i]), &(ps->outBuffer[i]), ps->frameSize);
-    }
-    return out;
-}
-
-float tPitchShift_shiftToFunc (tPitchShift* psr, float (*fun)(float))
-{
-    _tPitchShift* ps = *psr;
-    _tPeriodDetection* p = *ps->p;
-    
-    float period, out;
-    int i, iLast;
-    
-    i = p->i;
-    iLast = p->iLast;
-    
-    out = tHighpass_tick(&ps->hp, ps->outBuffer[iLast]);
-    
-    if (p->indexstore >= ps->frameSize)
-    {
-        period = tPeriodDetection_getPeriod(&p);
-        
-        if(pitchshift_attackdetect(ps) == 1)
-        {
-            p->fba = 5;
-            tSOLAD_setReadLag(&ps->sola, p->windowSize);
-        }
-        
-        tSOLAD_setPeriod(&ps->sola, period);
-        
-        ps->pitchFactor = period/fun(period);
-        tSOLAD_setPitchFactor(&ps->sola, ps->pitchFactor);
-        
-        tSOLAD_ioSamples(&ps->sola, &(p->inBuffer[i]), &(ps->outBuffer[i]), ps->frameSize);
-        
-        ps->curBlock++;
-        if (ps->curBlock >= p->framesPerBuffer) ps->curBlock = 0;
-        ps->lastBlock++;
-        if (ps->lastBlock >= ps->framesPerBuffer) ps->lastBlock = 0;
-    }
-    
-    return out;
-}
-
-//============================================================================================================
-// RETUNE
-//============================================================================================================
-
-void tRetune_init(tRetune* const rt, int numVoices, int bufSize, int frameSize)
-{
-    tRetune_initToPool(rt, numVoices, bufSize, frameSize, &leaf.mempool);
-}
-
-void tRetune_free(tRetune* const rt)
-{
-    tRetune_freeFromPool(rt, &leaf.mempool);
-}
-
-void    tRetune_initToPool      (tRetune* const rt, int numVoices, int bufSize, int frameSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRetune* r = *rt = (_tRetune*) mpool_alloc(sizeof(_tRetune), m);
-    
-    r->bufSize = bufSize;
-    r->frameSize = frameSize;
-    r->numVoices = numVoices;
-    
-    r->inBuffer = (float*) mpool_calloc(sizeof(float) * r->bufSize, m);
-    r->outBuffers = (float**) mpool_calloc(sizeof(float*) * r->numVoices, m);
-    
-    r->hopSize = DEFHOPSIZE;
-    r->windowSize = DEFWINDOWSIZE;
-    r->fba = FBA;
-    tRetune_setTimeConstant(rt, DEFTIMECONSTANT);
-    
-    r->inputPeriod = 0.0f;
-
-    r->ps = (tPitchShift*) mpool_calloc(sizeof(tPitchShift) * r->numVoices, m);
-    r->pitchFactor = (float*) mpool_calloc(sizeof(float) * r->numVoices, m);
-    r->tickOutput = (float*) mpool_calloc(sizeof(float) * r->numVoices, m);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->outBuffers[i] = (float*) mpool_calloc(sizeof(float) * r->bufSize, m);
-    }
-    
-    tPeriodDetection_initToPool(&r->pd, r->inBuffer, r->outBuffers[0], r->bufSize, r->frameSize, mp);
-
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_initToPool(&r->ps[i], &r->pd, r->outBuffers[i], r->bufSize, mp);
-    }
-}
-
-void    tRetune_freeFromPool    (tRetune* const rt, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRetune* r = *rt;
-    
-    tPeriodDetection_freeFromPool(&r->pd, mp);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_freeFromPool(&r->ps[i], mp);
-        mpool_free((char*)r->outBuffers[i], m);
-    }
-    mpool_free((char*)r->tickOutput, m);
-    mpool_free((char*)r->pitchFactor, m);
-    mpool_free((char*)r->ps, m);
-    mpool_free((char*)r->inBuffer, m);
-    mpool_free((char*)r->outBuffers, m);
-    mpool_free((char*)r, m);
-}
-
-float* tRetune_tick(tRetune* const rt, float sample)
-{
-    _tRetune* r = *rt;
-    
-    r->inputPeriod = tPeriodDetection_tick(&r->pd, sample);
-    
-    for (int v = 0; v < r->numVoices; ++v)
-    {
-        r->tickOutput[v] = tPitchShift_shift(&r->ps[v]);
-    }
-    
-    return r->tickOutput;
-}
-
-void tRetune_setNumVoices(tRetune* const rt, int numVoices)
-{
-    _tRetune* r = *rt;
-    
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_free(&r->ps[i]);
-        leaf_free((char*)r->outBuffers[i]);
-    }
-    leaf_free((char*)r->tickOutput);
-    leaf_free((char*)r->pitchFactor);
-    leaf_free((char*)r->ps);
-    leaf_free((char*)r->outBuffers);
-    
-    r->numVoices = numVoices;
-    
-    r->outBuffers = (float**) leaf_alloc(sizeof(float*) * r->numVoices);
-    r->ps = (tPitchShift*) leaf_alloc(sizeof(tPitchShift) * r->numVoices);
-    r->pitchFactor = (float*) leaf_alloc(sizeof(float) * r->numVoices);
-    r->tickOutput = (float*) leaf_alloc(sizeof(float) * r->numVoices);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->outBuffers[i] = (float*) leaf_alloc(sizeof(float) * r->bufSize);
-        tPitchShift_init(&r->ps[i], &r->pd, r->outBuffers[i], r->bufSize);
-    }
-}
-
-void tRetune_setPitchFactors(tRetune* const rt, float pf)
-{
-    _tRetune* r = *rt;
-    
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->pitchFactor[i] = pf;
-        tPitchShift_setPitchFactor(&r->ps[i], r->pitchFactor[i]);
-    }
-}
-
-void tRetune_setPitchFactor(tRetune* const rt, float pf, int voice)
-{
-    _tRetune* r = *rt;
-    
-    r->pitchFactor[voice] = pf;
-    tPitchShift_setPitchFactor(&r->ps[voice], r->pitchFactor[voice]);
-}
-
-void tRetune_setTimeConstant(tRetune* const rt, float tc)
-{
-    _tRetune* r = *rt;
-    
-    r->timeConstant = tc;
-    r->radius = expf(-1000.0f * r->hopSize * leaf.invSampleRate / r->timeConstant);
-}
-
-void tRetune_setHopSize(tRetune* const rt, int hs)
-{
-    _tRetune* r = *rt;
-    
-    r->hopSize = hs;
-    tPeriodDetection_setHopSize(&r->pd, r->hopSize);
-}
-
-void tRetune_setWindowSize(tRetune* const rt, int ws)
-{
-    _tRetune* r = *rt;
-    
-    r->windowSize = ws;
-    tPeriodDetection_setWindowSize(&r->pd, r->windowSize);
-}
-
-void tRetune_setFidelityThreshold(tRetune* const rt, float threshold)
-{
-    _tRetune* r = *rt;
-    
-    tPeriodDetection_setFidelityThreshold(&r->pd, threshold);
-}
-
-float tRetune_getInputPeriod(tRetune* const rt)
-{
-    _tRetune* r = *rt;
-    
-    return (r->inputPeriod * leaf.invSampleRate);
-}
-
-float tRetune_getInputFreq(tRetune* const rt)
-{
-    _tRetune* r = *rt;
-    
-    return 1.0f/(r->inputPeriod * leaf.invSampleRate);
-}
-
-//============================================================================================================
-// AUTOTUNE
-//============================================================================================================
-
-void tAutotune_init(tAutotune* const rt, int numVoices, int bufSize, int frameSize)
-{
-    tAutotune_initToPool(rt, numVoices, bufSize, frameSize, &leaf.mempool);
-}
-
-void tAutotune_free(tAutotune* const rt)
-{
-    tAutotune_freeFromPool(rt, &leaf.mempool);
-}
-
-void    tAutotune_initToPool        (tAutotune* const rt, int numVoices, int bufSize, int frameSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAutotune* r = *rt = (_tAutotune*) mpool_alloc(sizeof(_tAutotune), m);
-    
-    r->bufSize = bufSize;
-    r->frameSize = frameSize;
-    r->numVoices = numVoices;
-    
-    r->inBuffer = (float*) mpool_alloc(sizeof(float) * r->bufSize, m);
-    r->outBuffers = (float**) mpool_alloc(sizeof(float*) * r->numVoices, m);
-    
-    r->hopSize = DEFHOPSIZE;
-    r->windowSize = DEFWINDOWSIZE;
-    r->fba = FBA;
-    tAutotune_setTimeConstant(rt, DEFTIMECONSTANT);
-    
-    r->ps = (tPitchShift*) mpool_alloc(sizeof(tPitchShift) * r->numVoices, m);
-    r->freq = (float*) mpool_alloc(sizeof(float) * r->numVoices, m);
-    r->tickOutput = (float*) mpool_alloc(sizeof(float) * r->numVoices, m);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->outBuffers[i] = (float*) mpool_alloc(sizeof(float) * r->bufSize, m);
-    }
-    
-    tPeriodDetection_initToPool(&r->pd, r->inBuffer, r->outBuffers[0], r->bufSize, r->frameSize, mp);
-
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_initToPool(&r->ps[i], &r->pd, r->outBuffers[i], r->bufSize, mp);
-    }
-    
-    r->inputPeriod = 0.0f;
-}
-
-void    tAutotune_freeFromPool      (tAutotune* const rt, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAutotune* r = *rt;
-    
-    tPeriodDetection_freeFromPool(&r->pd, mp);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_freeFromPool(&r->ps[i], mp);
-        mpool_free((char*)r->outBuffers[i], m);
-    }
-    mpool_free((char*)r->tickOutput, m);
-    mpool_free((char*)r->freq, m);
-    mpool_free((char*)r->ps, m);
-    mpool_free((char*)r->inBuffer, m);
-    mpool_free((char*)r->outBuffers, m);
-    mpool_free((char*)r, m);
-}
-
-float* tAutotune_tick(tAutotune* const rt, float sample)
-{
-    _tAutotune* r = *rt;
-    
-    float tempPeriod = tPeriodDetection_tick(&r->pd, sample);
-    if (tempPeriod < 1000.0f) //to avoid trying to follow consonants JS
-	{
-		r->inputPeriod = tempPeriod;
-	}
-
-	for (int v = 0; v < r->numVoices; ++v)
-	{
-		r->tickOutput[v] = tPitchShift_shiftToFreq(&r->ps[v], r->freq[v]);
-	}
-
-    return r->tickOutput;
-}
-
-void tAutotune_setNumVoices(tAutotune* const rt, int numVoices)
-{
-    _tAutotune* r = *rt;
-    
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        tPitchShift_free(&r->ps[i]);
-        leaf_free((char*)r->outBuffers[i]);
-    }
-    leaf_free((char*)r->tickOutput);
-    leaf_free((char*)r->freq);
-    leaf_free((char*)r->ps);
-    leaf_free((char*)r->outBuffers);
-    
-    r->numVoices = numVoices;
-    
-    r->outBuffers = (float**) leaf_alloc(sizeof(float*) * r->numVoices);
-    r->ps = (tPitchShift*) leaf_alloc(sizeof(tPitchShift) * r->numVoices);
-    r->freq = (float*) leaf_alloc(sizeof(float) * r->numVoices);
-    r->tickOutput = (float*) leaf_alloc(sizeof(float) * r->numVoices);
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->outBuffers[i] = (float*) leaf_alloc(sizeof(float) * r->bufSize);
-        tPitchShift_init(&r->ps[i], &r->pd, r->outBuffers[i], r->bufSize);
-    }
-}
-
-void tAutotune_setFreqs(tAutotune* const rt, float f)
-{
-    _tAutotune* r = *rt;
-    
-    for (int i = 0; i < r->numVoices; ++i)
-    {
-        r->freq[i] = f;
-    }
-}
-
-void tAutotune_setFreq(tAutotune* const rt, float f, int voice)
-{
-    _tAutotune* r = *rt;
-    
-    r->freq[voice] = f;
-}
-
-void tAutotune_setTimeConstant(tAutotune* const rt, float tc)
-{
-    _tAutotune* r = *rt;
-    
-    r->timeConstant = tc;
-    r->radius = expf(-1000.0f * r->hopSize * leaf.invSampleRate / r->timeConstant);
-}
-
-void tAutotune_setHopSize(tAutotune* const rt, int hs)
-{
-    _tAutotune* r = *rt;
-    
-    r->hopSize = hs;
-    tPeriodDetection_setHopSize(&r->pd, r->hopSize);
-}
-
-void tAutotune_setWindowSize(tAutotune* const rt, int ws)
-{
-    _tAutotune* r = *rt;
-    
-    r->windowSize = ws;
-    tPeriodDetection_setWindowSize(&r->pd, r->windowSize);
-}
-
-void tAutotune_setFidelityThreshold(tAutotune* const rt, float threshold)
-{
-    _tAutotune* r = *rt;
-
-    tPeriodDetection_setFidelityThreshold(&r->pd, threshold);
-}
-
-void     tAutotune_setAlpha                (tAutotune* rt, float alpha)
-{
-    _tAutotune* r = *rt;
-    tPeriodDetection_setAlpha(&r->pd, alpha);
-}
-
-void     tAutotune_setTolerance            (tAutotune* rt, float tolerance)
-{
-    _tAutotune* r = *rt;
-    tPeriodDetection_setTolerance(&r->pd, tolerance);
-}
-
-float tAutotune_getInputPeriod(tAutotune* const rt)
-{
-    _tAutotune* r = *rt;
-    
-    return r->inputPeriod;
-}
-
-float tAutotune_getInputFreq(tAutotune* const rt)
-{
-    _tAutotune* r = *rt;
-    
-    return 1.0f/r->inputPeriod;
-}
-
-//============================================================================================================
-// FORMANTSHIFTER
-//============================================================================================================
-// algorithm from Tom Baran's autotalent code.
-
-void tFormantShifter_init(tFormantShifter* const fsr, int order)
-{
-    _tFormantShifter* fs = *fsr = (_tFormantShifter*) leaf_alloc(sizeof(_tFormantShifter));
-    
-    fs->ford = order;
-    fs->fk = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->fb = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->fc = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->frb = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->frc = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->fsig = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->fsmooth = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->ftvec = (float*) leaf_calloc(sizeof(float) * fs->ford);
-    fs->fbuff = (float*) leaf_calloc(sizeof(float*) * fs->ford);
-
-    fs->falph = powf(0.001f, 40.0f * leaf.invSampleRate);
-    fs->flamb = -(0.8517f*sqrtf(atanf(0.06583f*leaf.sampleRate))-0.1916f);
-    fs->fhp = 0.0f;
-    fs->flp = 0.0f;
-    fs->flpa = powf(0.001f, 10.0f * leaf.invSampleRate);
-    fs->fmute = 1.0f;
-    fs->fmutealph = powf(0.001f, 0.5f * leaf.invSampleRate);
-    fs->cbi = 0;
-    fs->intensity = 1.0f;
-	fs->invIntensity = 1.0f;
-	tHighpass_init(&fs->hp, 10.0f);
-	tHighpass_init(&fs->hp2, 10.0f);
-	tFeedbackLeveler_init(&fs->fbl1, 0.99f, 0.005f, 0.125f, 0);
-	tFeedbackLeveler_init(&fs->fbl2, 0.99f, 0.005f, 0.125f, 0);
-}
-
-void tFormantShifter_free(tFormantShifter* const fsr)
-{
-    _tFormantShifter* fs = *fsr;
-    
-    leaf_free((char*)fs->fk);
-    leaf_free((char*)fs->fb);
-    leaf_free((char*)fs->fc);
-    leaf_free((char*)fs->frb);
-    leaf_free((char*)fs->frc);
-    leaf_free((char*)fs->fsig);
-    leaf_free((char*)fs->fsmooth);
-    leaf_free((char*)fs->ftvec);
-    leaf_free((char*)fs->fbuff);
-    tHighpass_free(&fs->hp);
-    tHighpass_free(&fs->hp2);
-	tFeedbackLeveler_free(&fs->fbl1);
-	tFeedbackLeveler_free(&fs->fbl2);
-    leaf_free((char*)fs);
-}
-
-void    tFormantShifter_initToPool      (tFormantShifter* const fsr, int order, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFormantShifter* fs = *fsr = (_tFormantShifter*) mpool_alloc(sizeof(_tFormantShifter), m);
-    
-    fs->ford = order;
-    fs->fk = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->fb = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->fc = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->frb = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->frc = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->fsig = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->fsmooth = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    fs->ftvec = (float*) mpool_calloc(sizeof(float) * fs->ford, m);
-    
-    fs->fbuff = (float*) mpool_calloc(sizeof(float*) * fs->ford, m);
-
-    
-    fs->falph = powf(0.001f, 10.0f * leaf.invSampleRate);
-    fs->flamb = -(0.8517f*sqrtf(atanf(0.06583f*leaf.sampleRate))-0.1916f);
-    fs->fhp = 0.0f;
-    fs->flp = 0.0f;
-    fs->flpa = powf(0.001f, 10.0f * leaf.invSampleRate);
-    fs->fmute = 1.0f;
-    fs->fmutealph = powf(0.001f, 1.0f * leaf.invSampleRate);
-    fs->cbi = 0;
-    fs->intensity = 1.0f;
-    fs->invIntensity = 1.0f;
-    tHighpass_initToPool(&fs->hp, 20.0f, mp);
-    tHighpass_initToPool(&fs->hp2, 20.0f, mp);
-    tFeedbackLeveler_initToPool(&fs->fbl1, 0.8f, .005f, 0.125, 1, mp);
-    tFeedbackLeveler_initToPool(&fs->fbl2, 0.8f, .005f, 0.125, 1, mp);
-}
-
-void    tFormantShifter_freeFromPool    (tFormantShifter* const fsr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFormantShifter* fs = *fsr;
-    
-    mpool_free((char*)fs->fk, m);
-    mpool_free((char*)fs->fb, m);
-    mpool_free((char*)fs->fc, m);
-    mpool_free((char*)fs->frb, m);
-    mpool_free((char*)fs->frc, m);
-    mpool_free((char*)fs->fsig, m);
-    mpool_free((char*)fs->fsmooth, m);
-    mpool_free((char*)fs->ftvec, m);
-    mpool_free((char*)fs->fbuff, m);
-    tHighpass_freeFromPool(&fs->hp, mp);
-    tHighpass_freeFromPool(&fs->hp2, mp);
-    tFeedbackLeveler_freeFromPool(&fs->fbl1, mp);
-    tFeedbackLeveler_freeFromPool(&fs->fbl2, mp);
-    mpool_free((char*)fs, m);
-}
-
-float tFormantShifter_tick(tFormantShifter* const fsr, float in)
-{
-    return tFormantShifter_add(fsr, tFormantShifter_remove(fsr, in));
-}
-
-float tFormantShifter_remove(tFormantShifter* const fsr, float in)
-{
-    _tFormantShifter* fs = *fsr;
-    in = tFeedbackLeveler_tick(&fs->fbl1, in);
-    in = tHighpass_tick(&fs->hp, in * fs->intensity);
-    
-
-    float fa, fb, fc, foma, falph, ford, flamb, tf, fk;
-
-    ford = fs->ford;
-    falph = fs->falph;
-    foma = (1.0f - falph);
-    flamb = fs->flamb;
-    
-    tf = in;
-    
-    fa = tf - fs->fhp;
-    fs->fhp = tf;
-    fb = fa;
-    for(int i = 0; i < ford; i++)
-    {
-        fs->fsig[i] = fa*fa*foma + fs->fsig[i]*falph;
-        fc = (fb - fs->fc[i])*flamb + fs->fb[i];
-        fs->fc[i] = fc;
-        fs->fb[i] = fb;
-        fk = fa*fc*foma + fs->fk[i]*falph;
-        fs->fk[i] = fk;
-        tf = fk/(fs->fsig[i] + 0.000001f);
-        tf = tf*foma + fs->fsmooth[i]*falph;
-        fs->fsmooth[i] = tf;
-        fs->fbuff[i] = tf;
-        fb = fc - tf*fa;
-        fa = fa - tf*fc;
-    }
-
-    //return fa * 0.1f;
-    return fa;
-}
-
-float tFormantShifter_add(tFormantShifter* const fsr, float in)
-{
-    _tFormantShifter* fs = *fsr;
-    
-    float fa, fb, fc, ford, flpa, flamb, tf, tf2, f0resp, f1resp, frlamb;
-    ford = fs->ford;
-
-    flpa = fs->flpa;
-    flamb = fs->flamb;
-    tf = fs->shiftFactor * (1.0f+flamb)/(1.0f-flamb);
-    frlamb = (tf-1.0f)/(tf+1.0f);
-    
-    tf2 = in;
-    fa = 0.0f;
-    fb = fa;
-    for (int i=0; i<ford; i++)
-    {
-        fc = (fb-fs->frc[i])*frlamb + fs->frb[i];
-        tf = fs->fbuff[i];
-        fb = fc - tf*fa;
-        fs->ftvec[i] = tf*fc;
-        fa = fa - fs->ftvec[i];
-    }
-    tf = -fa;
-    for (int i=ford-1; i>=0; i--)
-    {
-        tf = tf + fs->ftvec[i];
-    }
-    f0resp = tf;
-    
-    //  second time: compute 1-response
-    fa = 1.0f;
-    fb = fa;
-    for (int i=0; i<ford; i++)
-    {
-        fc = (fb-fs->frc[i])*frlamb + fs->frb[i];
-        tf = fs->fbuff[i];
-        fb = fc - tf*fa;
-        fs->ftvec[i] = tf*fc;
-        fa = fa - fs->ftvec[i];
-    }
-    tf = -fa;
-    for (int i=ford-1; i>=0; i--)
-    {
-        tf = tf + fs->ftvec[i];
-    }
-    f1resp = tf;
-    
-    //  now solve equations for output, based on 0-response and 1-response
-    tf = 2.0f*tf2;
-    tf2 = tf;
-    tf = (1.0f - f1resp + f0resp);
-    if (tf!=0.0f)
-    {
-        tf2 = (tf2 + f0resp) / tf;
-    }
-    else
-    {
-        tf2 = 0.0f;
-    }
-    
-    //  third time: update delay registers
-    fa = tf2;
-    fb = fa;
-    for (int i=0; i<ford; i++)
-    {
-        fc = (fb-fs->frc[i])*frlamb + fs->frb[i];
-        fs->frc[i] = fc;
-        fs->frb[i] = fb;
-        tf = fs->fbuff[i];
-        fb = fc - tf*fa;
-        fa = fa - tf*fc;
-    }
-    tf = tf2;
-    tf = tf + flpa * fs->flp;  // lowpass post-emphasis filter
-    fs->flp = tf;
-    
-    // Bring up the gain slowly when formant correction goes from disabled
-    // to enabled, while things stabilize.
-    if (fs->fmute>0.5f)
-    {
-        tf = tf*(fs->fmute - 0.5f)*2.0f;
-    }
-    else
-    {
-        tf = 0.0f;
-    }
-    tf2 = fs->fmutealph;
-    fs->fmute = (1.0f-tf2) + tf2*fs->fmute;
-    // now tf is signal output
-    // ...and we're done messing with formants
-    //tf = tFeedbackLeveler_tick(&fs->fbl2, tf);
-    tf = tHighpass_tick(&fs->hp2, tanhf(tf));
-
-    return tf * fs->invIntensity;
-}
-
-// 1.0f is no change, 2.0f is an octave up, 0.5f is an octave down
-void tFormantShifter_setShiftFactor(tFormantShifter* const fsr, float shiftFactor)
-{
-    _tFormantShifter* fs = *fsr;
-    fs->shiftFactor = shiftFactor;
-}
-
-void tFormantShifter_setIntensity(tFormantShifter* const fsr, float intensity)
-{
-    _tFormantShifter* fs = *fsr;
-
-
-
-    fs->intensity = LEAF_clip(1.0f, intensity, 100.0f);
-
-   // tFeedbackLeveler_setTargetLevel(&fs->fbl1, fs->intensity);
-    //tFeedbackLeveler_setTargetLevel(&fs->fbl2, fs->intensity);
-    //make sure you don't divide by zero, doofies
-    if (fs->intensity != 0.0f)
-    {
-    	fs->invIntensity = 1.0f/fs->intensity;
-    }
-    else
-    {
-    	fs->invIntensity = 1.0f;
-    }
-
-}
--- a/LEAF/Src/leaf-electrical.c
+++ /dev/null
@@ -1,551 +1,0 @@
-/*
- * leaf-electrical.c
- *
- *  Created on: Sep 25, 2019
- *      Author: jeffsnyder
- */
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-electrical.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-electrical.h"
-#include "../leaf.h"
-
-#endif
-
-//==============================================================================
-
-static float get_port_resistance_for_resistor(tWDF* const r);
-static float get_port_resistance_for_capacitor(tWDF* const r);
-static float get_port_resistance_for_inductor(tWDF* const r);
-static float get_port_resistance_for_resistive(tWDF* const r);
-static float get_port_resistance_for_inverter(tWDF* const r);
-static float get_port_resistance_for_series(tWDF* const r);
-static float get_port_resistance_for_parallel(tWDF* const r);
-static float get_port_resistance_for_root(tWDF* const r);
-
-static void set_incident_wave_for_leaf(tWDF* const r, float incident_wave, float input);
-static void set_incident_wave_for_leaf_inverted(tWDF* const r, float incident_wave, float input);
-static void set_incident_wave_for_inverter(tWDF* const r, float incident_wave, float input);
-static void set_incident_wave_for_series(tWDF* const r, float incident_wave, float input);
-static void set_incident_wave_for_parallel(tWDF* const r, float incident_wave, float input);
-
-static float get_reflected_wave_for_resistor(tWDF* const r, float input);
-static float get_reflected_wave_for_capacitor(tWDF* const r, float input);
-static float get_reflected_wave_for_resistive(tWDF* const r, float input);
-static float get_reflected_wave_for_inverter(tWDF* const r, float input);
-static float get_reflected_wave_for_series(tWDF* const r, float input);
-static float get_reflected_wave_for_parallel(tWDF* const r, float input);
-
-static float get_reflected_wave_for_ideal(tWDF* const n, float input, float incident_wave);
-static float get_reflected_wave_for_diode(tWDF* const n, float input, float incident_wave);
-static float get_reflected_wave_for_diode_pair(tWDF* const n, float input, float incident_wave);
-
-static void wdf_init(tWDF* const wdf, WDFComponentType type, float value, tWDF* const rL, tWDF* const rR)
-{
-    _tWDF* r = *wdf;
-    
-    r->type = type;
-    r->child_left = rL;
-    r->child_right = rR;
-    r->incident_wave_up = 0.0f;
-    r->incident_wave_left = 0.0f;
-    r->incident_wave_right = 0.0f;
-    r->reflected_wave_up = 0.0f;
-    r->reflected_wave_left = 0.0f;
-    r->reflected_wave_right = 0.0f;
-    r->sample_rate = leaf.sampleRate;
-    r->value = value;
-    
-    tWDF* child;
-    if (r->child_left != NULL) child = r->child_left;
-    else child = r->child_right;
-    
-    if (r->type == Resistor)
-    {
-        r->port_resistance_up = r->value;
-        r->port_conductance_up = 1.0f / r->value;
-        
-        r->get_port_resistance = &get_port_resistance_for_resistor;
-        r->get_reflected_wave_up = &get_reflected_wave_for_resistor;
-        r->set_incident_wave = &set_incident_wave_for_leaf;
-    }
-    else if (r->type == Capacitor)
-    {
-        r->port_conductance_up = r->sample_rate * 2.0f * r->value;
-        r->port_resistance_up = 1.0f / r->port_conductance_up; //based on trapezoidal discretization
-        
-        r->get_port_resistance = &get_port_resistance_for_capacitor;
-        r->get_reflected_wave_up = &get_reflected_wave_for_capacitor;
-        r->set_incident_wave = &set_incident_wave_for_leaf;
-    }
-    else if (r->type == Inductor)
-    {
-        r->port_resistance_up = r->sample_rate * 2.0f * r->value; //based on trapezoidal discretization
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_port_resistance = &get_port_resistance_for_inductor;
-        r->get_reflected_wave_up = &get_reflected_wave_for_capacitor; // same as capacitor
-        r->set_incident_wave = &set_incident_wave_for_leaf_inverted;
-    }
-    else if (r->type == ResistiveSource)
-    {
-        r->port_resistance_up = r->value;
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_port_resistance = &get_port_resistance_for_resistive;
-        r->get_reflected_wave_up = &get_reflected_wave_for_resistive;
-        r->set_incident_wave = &set_incident_wave_for_leaf;
-    }
-    else if (r->type == Inverter)
-    {
-        r->port_resistance_up = tWDF_getPortResistance(r->child_left);
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_port_resistance = &get_port_resistance_for_inverter;
-        r->get_reflected_wave_up = &get_reflected_wave_for_inverter;
-        r->set_incident_wave = &set_incident_wave_for_inverter;
-    }
-    else if (r->type == SeriesAdaptor)
-    {
-        r->port_resistance_left = tWDF_getPortResistance(r->child_left);
-        r->port_resistance_right = tWDF_getPortResistance(r->child_right);
-        r->port_resistance_up = r->port_resistance_left + r->port_resistance_right;
-        r->port_conductance_up  = 1.0f / r->port_resistance_up;
-        r->port_conductance_left = 1.0f / r->port_resistance_left;
-        r->port_conductance_right = 1.0f / r->port_resistance_right;
-        r->gamma_zero = 1.0f / (r->port_resistance_right + r->port_resistance_left);
-        
-        r->get_port_resistance = &get_port_resistance_for_series;
-        r->get_reflected_wave_up = &get_reflected_wave_for_series;
-        r->set_incident_wave = &set_incident_wave_for_series;
-    }
-    else if (r->type == ParallelAdaptor)
-    {
-        r->port_resistance_left = tWDF_getPortResistance(r->child_left);
-        r->port_resistance_right = tWDF_getPortResistance(r->child_right);
-        r->port_resistance_up = (r->port_resistance_left * r->port_resistance_right) / (r->port_resistance_left + r->port_resistance_right);
-        r->port_conductance_up  = 1.0f / r->port_resistance_up;
-        r->port_conductance_left = 1.0f / r->port_resistance_left;
-        r->port_conductance_right = 1.0f / r->port_resistance_right;
-        r->gamma_zero = 1.0f / (r->port_resistance_right + r->port_resistance_left);
-        
-        r->get_port_resistance = &get_port_resistance_for_parallel;
-        r->get_reflected_wave_up = &get_reflected_wave_for_parallel;
-        r->set_incident_wave = &set_incident_wave_for_parallel;
-    }
-    else if (r->type == IdealSource)
-    {
-        r->port_resistance_up = tWDF_getPortResistance(child);
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_reflected_wave_down = &get_reflected_wave_for_ideal;
-        r->get_port_resistance = &get_port_resistance_for_root;
-    }
-    else if (r->type == Diode)
-    {
-        r->port_resistance_up = tWDF_getPortResistance(child);
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_reflected_wave_down = &get_reflected_wave_for_diode;
-        r->get_port_resistance = &get_port_resistance_for_root;
-    }
-    else if (r->type == DiodePair)
-    {
-        r->port_resistance_up = tWDF_getPortResistance(child);
-        r->port_conductance_up = 1.0f / r->port_resistance_up;
-        
-        r->get_reflected_wave_down = &get_reflected_wave_for_diode_pair;
-        r->get_port_resistance = &get_port_resistance_for_root;
-    }
-}
-//WDF
-void tWDF_init(tWDF* const wdf, WDFComponentType type, float value, tWDF* const rL, tWDF* const rR)
-{
-    *wdf = (_tWDF*) leaf_alloc(sizeof(_tWDF));
-    
-    wdf_init(wdf, type, value, rL, rR);
-}
-
-void tWDF_free(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-    leaf_free((char*)r);
-}
-
-void    tWDF_initToPool             (tWDF* const wdf, WDFComponentType type, float value, tWDF* const rL, tWDF* const rR, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    *wdf = (_tWDF*) mpool_alloc(sizeof(_tWDF), m);
-    
-    wdf_init(wdf, type, value, rL, rR);
-}
-
-void    tWDF_freeFromPool           (tWDF* const wdf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tWDF* r = *wdf;
-    
-    mpool_free((char*)r, m);
-}
-
-float tWDF_tick(tWDF* const wdf, float sample, tWDF* const outputPoint, uint8_t paramsChanged)
-{
-    _tWDF* r = *wdf;
-    
-    tWDF* child;
-    if (r->child_left != NULL) child = r->child_left;
-    else child = r->child_right;
-    
-	//step 0 : update port resistances if something changed
-	if (paramsChanged) tWDF_getPortResistance(wdf);
-
-	//step 1 : set inputs to what they should be
-	float input = sample;
-
-	//step 2 : scan the waves up the tree
-	r->incident_wave_up = tWDF_getReflectedWaveUp(child, input);
-
-	//step 3 : do root scattering computation
-	r->reflected_wave_up = tWDF_getReflectedWaveDown(wdf, input, r->incident_wave_up);
-
-	//step 4 : propogate waves down the tree
-	tWDF_setIncidentWave(child, r->reflected_wave_up, input);
-
-	//step 5 : grab whatever voltages or currents we want as outputs
-    return tWDF_getVoltage(outputPoint);
-}
-
-void tWDF_setValue(tWDF* const wdf, float value)
-{
-    _tWDF* r = *wdf;
-	r->value = value;
-}
-
-void tWDF_setSampleRate(tWDF* const wdf, float sample_rate)
-{
-    _tWDF* r = *wdf;
-    r->sample_rate = sample_rate;
-}
-
-uint8_t tWDF_isLeaf(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    if (r->child_left == NULL && r->child_right == NULL) return 1;
-    return 0;
-}
-
-float tWDF_getPortResistance(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-	return r->get_port_resistance(wdf);
-}
-
-void tWDF_setIncidentWave(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-	r->set_incident_wave(wdf, incident_wave, input);
-}
-
-float tWDF_getReflectedWaveUp(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-	return r->get_reflected_wave_up(wdf, input);
-}
-
-float tWDF_getReflectedWaveDown(tWDF* const wdf, float input, float incident_wave)
-{
-    _tWDF* r = *wdf;
-    return r->get_reflected_wave_down(wdf, input, incident_wave);
-}
-
-float tWDF_getVoltage(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-	return ((r->incident_wave_up * 0.5f) + (r->reflected_wave_up * 0.5f));
-}
-
-float tWDF_getCurrent(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-	return (((r->incident_wave_up * 0.5f) - (r->reflected_wave_up * 0.5f)) * r->port_conductance_up);
-}
-
-//============ Static Functions to be Pointed To ====================
-//===================================================================
-//============ Get and Calculate Port Resistances ===================
-
-static float get_port_resistance_for_resistor(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-	r->port_resistance_up = r->value;
-	r->port_conductance_up = 1.0f / r->value;
-
-	return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_capacitor(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-	r->port_conductance_up = r->sample_rate * 2.0f * r->value; //based on trapezoidal discretization
-	r->port_resistance_up = (1.0f / r->port_conductance_up);
-
-	return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_inductor(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-    r->port_resistance_up = r->sample_rate * 2.0f * r->value; //based on trapezoidal discretization
-    r->port_conductance_up = (1.0f / r->port_resistance_up);
-    
-    return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_resistive(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-    r->port_resistance_up = r->value;
-    r->port_conductance_up = 1.0f / r->port_resistance_up;
-    
-    return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_inverter(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-    r->port_resistance_up = tWDF_getPortResistance(r->child_left);
-    r->port_conductance_up = 1.0f / r->port_resistance_up;
-    
-    return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_series(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-	r->port_resistance_left = tWDF_getPortResistance(r->child_left);
-	r->port_resistance_right = tWDF_getPortResistance(r->child_right);
-	r->port_resistance_up = r->port_resistance_left + r->port_resistance_right;
-	r->port_conductance_up  = 1.0f / r->port_resistance_up;
-	r->port_conductance_left = 1.0f / r->port_resistance_left;
-	r->port_conductance_right = 1.0f / r->port_resistance_right;
-	r->gamma_zero = 1.0f / (r->port_resistance_right + r->port_resistance_left);
-
-	return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_parallel(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-	r->port_resistance_left = tWDF_getPortResistance(r->child_left);
-	r->port_resistance_right = tWDF_getPortResistance(r->child_right);
-	r->port_resistance_up = (r->port_resistance_left * r->port_resistance_right) / (r->port_resistance_left + r->port_resistance_right);
-	r->port_conductance_up  = 1.0f / r->port_resistance_up;
-	r->port_conductance_left = 1.0f / r->port_resistance_left;
-	r->port_conductance_right = 1.0f / r->port_resistance_right;
-	r->gamma_zero = 1.0f / (r->port_conductance_right + r->port_conductance_left);
-
-	return r->port_resistance_up;
-}
-
-static float get_port_resistance_for_root(tWDF* const wdf)
-{
-    _tWDF* r = *wdf;
-    
-    tWDF* child;
-    if (r->child_left != NULL) child = r->child_left;
-    else child = r->child_right;
-    
-    r->port_resistance_up = tWDF_getPortResistance(child);
-    r->port_conductance_up = 1.0f / r->port_resistance_up;
-    
-    return r->port_resistance_up;
-}
-
-//===================================================================
-//================ Set Incident Waves ===============================
-
-static void set_incident_wave_for_leaf(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-	r->incident_wave_up = incident_wave;
-}
-
-static void set_incident_wave_for_leaf_inverted(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-    r->incident_wave_up = -1.0f * incident_wave;
-}
-
-static void set_incident_wave_for_inverter(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-    r->incident_wave_up = incident_wave;
-    tWDF_setIncidentWave(r->child_left, -1.0f * incident_wave, input);
-}
-
-static void set_incident_wave_for_series(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-    
-    r->incident_wave_up = incident_wave;
-	float gamma_left = r->port_resistance_left * r->gamma_zero;
-	float gamma_right = r->port_resistance_right * r->gamma_zero;
-	float left_wave = tWDF_getReflectedWaveUp(r->child_left, input);
-	float right_wave = tWDF_getReflectedWaveUp(r->child_right, input);
-//    downPorts[0]->b = yl * ( downPorts[0]->a * ((1.0 / yl) - 1) - downPorts[1]->a - descendingWave );
-//    downPorts[1]->b = yr * ( downPorts[1]->a * ((1.0 / yr) - 1) - downPorts[0]->a - descendingWave );
-	tWDF_setIncidentWave(r->child_left, (-1.0f * gamma_left * incident_wave) + (gamma_right * left_wave) - (gamma_left * right_wave), input);
-	tWDF_setIncidentWave(r->child_right, (-1.0f * gamma_right * incident_wave) + (gamma_left * right_wave) - (gamma_right * left_wave), input);
-	// From rt-wdf
-//	tWDF_setIncidentWave(r->child_left, gamma_left * (left_wave * ((1.0f / gamma_left) - 1.0f) - right_wave - incident_wave));
-//	tWDF_setIncidentWave(r->child_right, gamma_right * (right_wave * ((1.0f / gamma_right) - 1.0f) - left_wave - incident_wave));
-
-}
-
-static void set_incident_wave_for_parallel(tWDF* const wdf, float incident_wave, float input)
-{
-    _tWDF* r = *wdf;
-    
-    r->incident_wave_up = incident_wave;
-	float gamma_left = r->port_conductance_left * r->gamma_zero;
-	float gamma_right = r->port_conductance_right * r->gamma_zero;
-	float left_wave = tWDF_getReflectedWaveUp(r->child_left, input);
-	float right_wave = tWDF_getReflectedWaveUp(r->child_right, input);
-//    downPorts[0]->b = ( ( dl - 1 ) * downPorts[0]->a + dr * downPorts[1]->a + du * descendingWave );
-//    downPorts[1]->b = ( dl * downPorts[0]->a + ( dr - 1 ) * downPorts[1]->a + du * descendingWave );
-	tWDF_setIncidentWave(r->child_left, (gamma_left - 1.0f) * left_wave + gamma_right * right_wave + incident_wave, input);
-	tWDF_setIncidentWave(r->child_right, gamma_left * left_wave + (gamma_right - 1.0f) * right_wave + incident_wave, input);
-}
-
-//===================================================================
-//================ Get Reflected Waves ==============================
-
-static float get_reflected_wave_for_resistor(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-	r->reflected_wave_up = 0.0f;
-	return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_capacitor(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-	r->reflected_wave_up = r->incident_wave_up;
-	return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_resistive(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-    r->reflected_wave_up = input;
-    return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_inverter(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-    r->reflected_wave_up = -1.0f * tWDF_getReflectedWaveUp(r->child_left, input);
-    return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_series(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-	//-( downPorts[0]->a + downPorts[1]->a );
-    r->reflected_wave_up = (-1.0f * (tWDF_getReflectedWaveUp(r->child_left, input) + tWDF_getReflectedWaveUp(r->child_right, input)));
-	return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_parallel(tWDF* const wdf, float input)
-{
-    _tWDF* r = *wdf;
-    
-	float gamma_left = r->port_conductance_left * r->gamma_zero;
-	float gamma_right = r->port_conductance_right * r->gamma_zero;
-	//return ( dl * downPorts[0]->a + dr * downPorts[1]->a );
-    r->reflected_wave_up = (gamma_left * tWDF_getReflectedWaveUp(r->child_left, input) + gamma_right * tWDF_getReflectedWaveUp(r->child_right, input));
-	return r->reflected_wave_up;
-}
-
-static float get_reflected_wave_for_ideal(tWDF* const wdf, float input, float incident_wave)
-{
-    return (2.0f * input) - incident_wave;
-}
-
-#define l2A 0.1640425613334452f
-#define l2B -1.098865286222744f
-#define l2Y 3.148297929334117f
-#define l2K -2.213475204444817f
-static float log2Approximation(float x)
-{
-    return (l2A * x*x*x) + (l2B * x*x) + (l2Y * x) + l2K;
-}
-
-#define wX1 -3.684303659906469f
-#define wX2 1.972967391708859f
-#define wA  9.451797158780131e-3f
-#define wB  0.1126446405111627f
-#define wY  0.4451353886588814f
-#define wK  0.5836596684310648f
-static float wrightOmega3(float x)
-{
-    if (x <= wX1)
-    {
-        return 0;
-    }
-    else if (x < wX2)
-    {
-        return (wA * x*x*x) + (wB * x*x) + (wY * x) + wK;
-    }
-    else
-    {
-        return x - logf(x);
-    }
-}
-
-static float wrightOmegaApproximation(float x)
-{
-    float w3 = wrightOmega3(x);
-    return w3 - ((w3 - expf(x - w3)) / (w3 + 1.0f));
-}
-
-static float lambertW(float a, float r, float I, float iVT)
-{
-    return wrightOmegaApproximation(((a + r*I) * iVT) + log((r * I) * iVT));
-}
-
-#define Is_DIODE    2.52e-9f
-#define VT_DIODE    0.02585f
-static float get_reflected_wave_for_diode(tWDF* const wdf, float input, float incident_wave)
-{
-    _tWDF* n = *wdf;
-    
-    float a = incident_wave;
-    float r = n->port_resistance_up;
-    return a + 2.0f*r*Is_DIODE - 2.0f*VT_DIODE*lambertW(a, r, Is_DIODE, 1.0f/VT_DIODE);
-}
-
-static float get_reflected_wave_for_diode_pair(tWDF* const wdf, float input, float incident_wave)
-{
-    _tWDF* n = *wdf;
-    
-    float a = incident_wave;
-    float sgn = 0.0f;
-    if (a > 0.0f) sgn = 1.0f;
-    else if (a < 0.0f) sgn = -1.0f;
-    float r = n->port_resistance_up;
-    return a + 2 * sgn * (r*Is_DIODE - VT_DIODE*lambertW(sgn*a, r, Is_DIODE, 1.0f/VT_DIODE));
-}
--- a/LEAF/Src/leaf-envelopes.c
+++ /dev/null
@@ -1,1612 +1,0 @@
-/*
-  ==============================================================================
-
-    leaf-envelopes.c
-    Created: 20 Jan 2017 12:02:17pm
-    Author:  Michael R Mulshine
-
-  ==============================================================================
-*/
-
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-envelopes.h"
-#include "..\Inc\leaf-tables.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-envelopes.h"
-#include "../Inc/leaf-tables.h"
-#include "../leaf.h"
-
-#endif
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ Envelope ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tEnvelope_init(tEnvelope* const envlp, float attack, float decay, int loop)
-{
-    _tEnvelope* env = *envlp = (_tEnvelope*) leaf_alloc(sizeof(_tEnvelope));
-    
-    env->exp_buff = __leaf_table_exp_decay;
-    env->inc_buff = __leaf_table_attack_decay_inc;
-    env->buff_size = sizeof(__leaf_table_exp_decay);
-    
-    env->loop = loop;
-    
-    if (attack > 8192.0f)
-        attack = 8192.0f;
-    if (attack < 0.0f)
-        attack = 0.0f;
-    
-    if (decay > 8192.0f)
-        decay = 8192.0f;
-    if (decay < 0.0f)
-        decay = 0.0f;
-    
-    int16_t attackIndex = ((int16_t)(attack * 8.0f))-1;
-    int16_t decayIndex = ((int16_t)(decay * 8.0f))-1;
-    int16_t rampIndex = ((int16_t)(2.0f * 8.0f))-1;
-    
-    if (attackIndex < 0)
-        attackIndex = 0;
-    if (decayIndex < 0)
-        decayIndex = 0;
-    if (rampIndex < 0)
-        rampIndex = 0;
-    
-    env->inRamp = OFALSE;
-    env->inAttack = OFALSE;
-    env->inDecay = OFALSE;
-    
-    env->attackInc = env->inc_buff[attackIndex];
-    env->decayInc = env->inc_buff[decayIndex];
-    env->rampInc = env->inc_buff[rampIndex];
-}
-
-void tEnvelope_free(tEnvelope* const envlp)
-{
-    _tEnvelope* env = *envlp;
-    leaf_free((char*)env);
-}
-
-void    tEnvelope_initToPool    (tEnvelope* const envlp, float attack, float decay, int loop, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvelope* env = *envlp = (_tEnvelope*) mpool_alloc(sizeof(_tEnvelope), m);
-    
-    env->exp_buff = __leaf_table_exp_decay;
-    env->inc_buff = __leaf_table_attack_decay_inc;
-    env->buff_size = sizeof(__leaf_table_exp_decay);
-    
-    env->loop = loop;
-    
-    if (attack > 8192.0f)
-        attack = 8192.0f;
-    if (attack < 0.0f)
-        attack = 0.0f;
-    
-    if (decay > 8192.0f)
-        decay = 8192.0f;
-    if (decay < 0.0f)
-        decay = 0.0f;
-    
-    int16_t attackIndex = ((int16_t)(attack * 8.0f))-1;
-    int16_t decayIndex = ((int16_t)(decay * 8.0f))-1;
-    int16_t rampIndex = ((int16_t)(2.0f * 8.0f))-1;
-    
-    if (attackIndex < 0)
-        attackIndex = 0;
-    if (decayIndex < 0)
-        decayIndex = 0;
-    if (rampIndex < 0)
-        rampIndex = 0;
-    
-    env->inRamp = OFALSE;
-    env->inAttack = OFALSE;
-    env->inDecay = OFALSE;
-    
-    env->attackInc = env->inc_buff[attackIndex];
-    env->decayInc = env->inc_buff[decayIndex];
-    env->rampInc = env->inc_buff[rampIndex];
-}
-
-void    tEnvelope_freeFromPool  (tEnvelope* const envlp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEnvelope* env = *envlp;
-    mpool_free((char*)env, m);
-}
-
-void     tEnvelope_setAttack(tEnvelope* const envlp, float attack)
-{
-    _tEnvelope* env = *envlp;
-    
-    int32_t attackIndex;
-    
-    if (attack < 0.0f) {
-        attackIndex = 0.0f;
-    } else if (attack < 8192.0f) {
-        attackIndex = ((int32_t)(attack * 8.0f))-1;
-    } else {
-        attackIndex = ((int32_t)(8192.0f * 8.0f))-1;
-    }
-    
-    env->attackInc = env->inc_buff[attackIndex];
-}
-
-void     tEnvelope_setDecay(tEnvelope* const envlp, float decay)
-{
-    _tEnvelope* env = *envlp;
-    
-    int32_t decayIndex;
-    
-    if (decay < 0.0f) {
-        decayIndex = 0;
-    } else if (decay < 8192.0f) {
-        decayIndex = ((int32_t)(decay * 8.0f)) - 1;
-    } else {
-        decayIndex = ((int32_t)(8192.0f * 8.0f)) - 1; 
-    }
-    
-    env->decayInc = env->inc_buff[decayIndex];
-}
-
-void     tEnvelope_loop(tEnvelope* const envlp, int loop)
-{
-    _tEnvelope* env = *envlp;
-    env->loop = loop;
-}
-
-
-void     tEnvelope_on(tEnvelope* const envlp, float velocity)
-{
-    _tEnvelope* env = *envlp;
-    
-    if (env->inAttack || env->inDecay) // In case envelope retriggered while it is still happening.
-    {
-        env->rampPhase = 0;
-        env->inRamp = OTRUE;
-        env->rampPeak = env->next;
-    }
-    else // Normal start.
-    {
-        env->inAttack = OTRUE;
-    }
-    
-    
-    env->attackPhase = 0;
-    env->decayPhase = 0;
-    env->inDecay = OFALSE;
-    env->gain = velocity;
-}
-
-float   tEnvelope_tick(tEnvelope* const envlp)
-{
-    _tEnvelope* env = *envlp;
-    
-    if (env->inRamp)
-    {
-        if (env->rampPhase > UINT16_MAX)
-        {
-            env->inRamp = OFALSE;
-            env->inAttack = OTRUE;
-            env->next = 0.0f;
-        }
-        else
-        {
-            env->next = env->rampPeak * env->exp_buff[(uint32_t)env->rampPhase];
-        }
-        
-        env->rampPhase += env->rampInc;
-    }
-    
-    if (env->inAttack)
-    {
-        
-        // If attack done, time to turn around.
-        if (env->attackPhase > UINT16_MAX)
-        {
-            env->inDecay = OTRUE;
-            env->inAttack = OFALSE;
-            env->next = env->gain * 1.0f;
-        }
-        else
-        {
-            // do interpolation !
-            env->next = env->gain * env->exp_buff[UINT16_MAX - (uint32_t)env->attackPhase]; // inverted and backwards to get proper rising exponential shape/perception
-        }
-        
-        // Increment envelope attack.
-        env->attackPhase += env->attackInc;
-        
-    }
-    
-    if (env->inDecay)
-    {
-        
-        // If decay done, finish.
-        if (env->decayPhase >= UINT16_MAX)
-        {
-            env->inDecay = OFALSE;
-            
-            if (env->loop)
-            {
-                env->attackPhase = 0;
-                env->decayPhase = 0;
-                env->inAttack = OTRUE;
-            }
-            else
-            {
-                env->next = 0.0f;
-            }
-            
-        } else {
-            
-            env->next = env->gain * (env->exp_buff[(uint32_t)env->decayPhase]); // do interpolation !
-        }
-        
-        // Increment envelope decay;
-        env->decayPhase += env->decayInc;
-    }
-    
-    return env->next;
-}
-
-
-
-/* ADSR */
-void    tADSR_init(tADSR* const adsrenv, float attack, float decay, float sustain, float release)
-{
-    tADSR_initToPool(adsrenv, attack, decay, sustain, release, &leaf.mempool);
-}
-
-void tADSR_free(tADSR* const adsrenv)
-{
-    tADSR_freeFromPool(adsrenv, &leaf.mempool);
-}
-
-void    tADSR_initToPool    (tADSR* const adsrenv, float attack, float decay, float sustain, float release, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR* adsr = *adsrenv = (_tADSR*) mpool_alloc(sizeof(_tADSR), m);
-
-    adsr->exp_buff = __leaf_table_exp_decay;
-    adsr->inc_buff = __leaf_table_attack_decay_inc;
-    adsr->buff_size = sizeof(__leaf_table_exp_decay);
-
-    if (attack > 8192.0f)
-        attack = 8192.0f;
-    if (attack < 0.0f)
-        attack = 0.0f;
-
-    if (decay > 8192.0f)
-        decay = 8192.0f;
-    if (decay < 0.0f)
-        decay = 0.0f;
-
-    if (sustain > 1.0f)
-        sustain = 1.0f;
-    if (sustain < 0.0f)
-        sustain = 0.0f;
-
-    if (release > 8192.0f)
-        release = 8192.0f;
-    if (release < 0.0f)
-        release = 0.0f;
-
-    int16_t attackIndex = ((int16_t)(attack * 8.0f))-1;
-    int16_t decayIndex = ((int16_t)(decay * 8.0f))-1;
-    int16_t releaseIndex = ((int16_t)(release * 8.0f))-1;
-    int16_t rampIndex = ((int16_t)(2.0f * 8.0f))-1;
-
-    if (attackIndex < 0)
-        attackIndex = 0;
-    if (decayIndex < 0)
-        decayIndex = 0;
-    if (releaseIndex < 0)
-        releaseIndex = 0;
-    if (rampIndex < 0)
-        rampIndex = 0;
-
-    adsr->next = 0.0f;
-
-    adsr->inRamp = OFALSE;
-    adsr->inAttack = OFALSE;
-    adsr->inDecay = OFALSE;
-    adsr->inSustain = OFALSE;
-    adsr->inRelease = OFALSE;
-
-    adsr->sustain = sustain;
-
-    adsr->attackInc = adsr->inc_buff[attackIndex];
-    adsr->decayInc = adsr->inc_buff[decayIndex];
-    adsr->releaseInc = adsr->inc_buff[releaseIndex];
-    adsr->rampInc = adsr->inc_buff[rampIndex];
-
-    adsr->leakFactor = 1.0f;
-}
-
-void    tADSR_freeFromPool  (tADSR* const adsrenv, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR* adsr = *adsrenv;
-    mpool_free((char*)adsr, m);
-}
-
-void     tADSR_setAttack(tADSR* const adsrenv, float attack)
-{
-    _tADSR* adsr = *adsrenv;
-
-    int32_t attackIndex;
-
-    if (attack < 0.0f) {
-        attackIndex = 0.0f;
-    } else if (attack < 8192.0f) {
-        attackIndex = ((int32_t)(attack * 8.0f))-1;
-    } else {
-        attackIndex = ((int32_t)(8192.0f * 8.0f))-1;
-    }
-
-    adsr->attackInc = adsr->inc_buff[attackIndex];
-}
-
-void     tADSR_setDecay(tADSR* const adsrenv, float decay)
-{
-    _tADSR* adsr = *adsrenv;
-
-    int32_t decayIndex;
-
-    if (decay < 0.0f) {
-        decayIndex = 0.0f;
-    } else if (decay < 8192.0f) {
-        decayIndex = ((int32_t)(decay * 8.0f)) - 1;
-    } else {
-        decayIndex = ((int32_t)(8192.0f * 8.0f)) - 1;
-    }
-
-    adsr->decayInc = adsr->inc_buff[decayIndex];
-}
-
-void     tADSR_setSustain(tADSR* const adsrenv, float sustain)
-{
-    _tADSR* adsr = *adsrenv;
-
-    if (sustain > 1.0f)      adsr->sustain = 1.0f;
-    else if (sustain < 0.0f) adsr->sustain = 0.0f;
-    else                     adsr->sustain = sustain;
-}
-
-void     tADSR_setRelease(tADSR* const adsrenv, float release)
-{
-    _tADSR* adsr = *adsrenv;
-
-    int32_t releaseIndex;
-
-    if (release < 0.0f) {
-        releaseIndex = 0.0f;
-    } else if (release < 8192.0f) {
-        releaseIndex = ((int32_t)(release * 8.0f)) - 1;
-    } else {
-        releaseIndex = ((int32_t)(8192.0f * 8.0f)) - 1;
-    }
-
-    adsr->releaseInc = adsr->inc_buff[releaseIndex];
-}
-
-// 0.999999 is slow leak, 0.9 is fast leak
-void     tADSR_setLeakFactor(tADSR* const adsrenv, float leakFactor)
-{
-    _tADSR* adsr = *adsrenv;
-
-
-    adsr->leakFactor = leakFactor;
-}
-
-void tADSR_on(tADSR* const adsrenv, float velocity)
-{
-    _tADSR* adsr = *adsrenv;
-
-    if ((adsr->inAttack || adsr->inDecay) || (adsr->inSustain || adsr->inRelease)) // In case ADSR retriggered while it is still happening.
-    {
-        adsr->rampPhase = 0;
-        adsr->inRamp = OTRUE;
-        adsr->rampPeak = adsr->next;
-    }
-    else // Normal start.
-    {
-        adsr->inAttack = OTRUE;
-    }
-
-    adsr->attackPhase = 0;
-    adsr->decayPhase = 0;
-    adsr->releasePhase = 0;
-    adsr->inDecay = OFALSE;
-    adsr->inSustain = OFALSE;
-    adsr->inRelease = OFALSE;
-    adsr->gain = velocity;
-}
-
-void tADSR_off(tADSR* const adsrenv)
-{
-    _tADSR* adsr = *adsrenv;
-
-    if (adsr->inRelease) return;
-
-    adsr->inAttack = OFALSE;
-    adsr->inDecay = OFALSE;
-    adsr->inSustain = OFALSE;
-    adsr->inRelease = OTRUE;
-
-    adsr->releasePeak = adsr->next;
-}
-
-float   tADSR_tick(tADSR* const adsrenv)
-{
-    _tADSR* adsr = *adsrenv;
-
-
-    if (adsr->inRamp)
-    {
-        if (adsr->rampPhase > UINT16_MAX)
-        {
-            adsr->inRamp = OFALSE;
-            adsr->inAttack = OTRUE;
-            adsr->next = 0.0f;
-        }
-        else
-        {
-            adsr->next = adsr->rampPeak * adsr->exp_buff[(uint32_t)adsr->rampPhase];
-        }
-
-        adsr->rampPhase += adsr->rampInc;
-    }
-
-    if (adsr->inAttack)
-    {
-
-        // If attack done, time to turn around.
-        if (adsr->attackPhase > UINT16_MAX)
-        {
-            adsr->inDecay = OTRUE;
-            adsr->inAttack = OFALSE;
-            adsr->next = adsr->gain * 1.0f;
-        }
-        else
-        {
-            // do interpolation !
-            adsr->next = adsr->gain * adsr->exp_buff[UINT16_MAX - (uint32_t)adsr->attackPhase]; // inverted and backwards to get proper rising exponential shape/perception
-        }
-
-        // Increment ADSR attack.
-        adsr->attackPhase += adsr->attackInc;
-
-    }
-
-    if (adsr->inDecay)
-    {
-
-        // If decay done, sustain.
-        if (adsr->decayPhase >= UINT16_MAX)
-        {
-            adsr->inDecay = OFALSE;
-            adsr->inSustain = OTRUE;
-            adsr->next = adsr->gain * adsr->sustain;
-        }
-
-        else
-        {
-            adsr->next = (adsr->gain * (adsr->sustain + ((adsr->exp_buff[(uint32_t)adsr->decayPhase]) * (1.0f - adsr->sustain)))) * adsr->leakFactor; // do interpolation !
-        }
-
-        // Increment ADSR decay.
-        adsr->decayPhase += adsr->decayInc;
-    }
-
-    if (adsr->inSustain)
-    {
-        adsr->next = adsr->next * adsr->leakFactor;
-    }
-
-    if (adsr->inRelease)
-    {
-        // If release done, finish.
-        if (adsr->releasePhase >= UINT16_MAX)
-        {
-            adsr->inRelease = OFALSE;
-            adsr->next = 0.0f;
-        }
-        else {
-
-            adsr->next = adsr->releasePeak * (adsr->exp_buff[(uint32_t)adsr->releasePhase]); // do interpolation !
-        }
-
-        // Increment envelope release;
-        adsr->releasePhase += adsr->releaseInc;
-    }
-
-
-    return adsr->next;
-}
-
-
-
-
-/* ADSR 2*/
-//This one is adapted from the VCV Rack code
-//-JS
-
-
-
-const float ADSR2_MIN_TIME = 1e-3f;
-const float ADSR2_INV_MIN_TIME = 1000.0f;
-const float ADSR2_MAX_TIME = 10.f;
-const float ADSR2_LAMBDA_BASE = 10000.0f;
-
-
-void    tADSR2_init(tADSR2* const adsrenv, float attack, float decay, float sustain, float release)
-{
-    tADSR2_initToPool(adsrenv, attack, decay, sustain, release, &leaf.mempool);
-}
-
-void tADSR2_free(tADSR2* const adsrenv)
-{
-    tADSR2_freeFromPool(adsrenv, &leaf.mempool);
-}
-
-void    tADSR2_initToPool    (tADSR2* const adsrenv, float attack, float decay, float sustain, float release, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR2* adsr = *adsrenv = (_tADSR2*) mpool_alloc(sizeof(_tADSR2), m);
-    adsr->sampleRateInMs =  leaf.sampleRate * 0.001f;
-    adsr->attack = LEAF_clip(0.0f, attack * 0.001f, 1.0f);
-    adsr->attackLambda = powf(ADSR2_LAMBDA_BASE, -adsr->attack) * ADSR2_INV_MIN_TIME;
-
-
-    adsr->decay = LEAF_clip(0.0f, decay * 0.001f, 1.0f);
-    adsr->decayLambda = powf(ADSR2_LAMBDA_BASE, -adsr->decay) * ADSR2_INV_MIN_TIME;
-
-
-    adsr->sustain= sustain;
-
-
-    adsr->release = LEAF_clip(0.0f, release * 0.001f, 1.0f);
-    adsr->releaseLambda = powf(ADSR2_LAMBDA_BASE, -adsr->release) * ADSR2_INV_MIN_TIME;
-
-    adsr->attacking = 0;
-    adsr->gate = 0;
-    adsr->gain = 1.0f;
-    adsr->targetGainSquared = 1.0f;
-    adsr->factor = 0.01f;
-    adsr->oneMinusFactor = 0.99f;
-    adsr->env = 0.0f;
-    adsr->leakFactor = 1.0f;
-}
-
-void    tADSR2_freeFromPool  (tADSR2* const adsrenv, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR2* adsr = *adsrenv;
-    mpool_free((char*)adsr, m);
-}
-
-void     tADSR2_setAttack(tADSR2* const adsrenv, float attack)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->attack = LEAF_clip(0.0f, attack * 0.001f, 1.0f);
-    adsr->attackLambda = fastPow(ADSR2_LAMBDA_BASE, -adsr->attack) * ADSR2_INV_MIN_TIME;
-
-}
-
-void     tADSR2_setDecay(tADSR2* const adsrenv, float decay)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->decay = LEAF_clip(0.0f, decay * 0.001f, 1.0f);
-    adsr->decayLambda = fastPow(ADSR2_LAMBDA_BASE, -adsr->decay) * ADSR2_INV_MIN_TIME;
-
-}
-
-void     tADSR2_setSustain(tADSR2* const adsrenv, float sustain)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->sustain = sustain;
-
-    if (adsr->gate)
-    {
-        if (adsr->attacking == 0)
-        {
-            adsr->envTarget = sustain;
-        }
-    }
-}
-
-void     tADSR2_setRelease(tADSR2* const adsrenv, float release)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->release = LEAF_clip(0.0f, release * 0.001f, 1.0f);
-    adsr->releaseLambda = fastPow(ADSR2_LAMBDA_BASE, -adsr->release) * ADSR2_INV_MIN_TIME;
-}
-
-// 0.999999 is slow leak, 0.9 is fast leak
-void     tADSR2_setLeakFactor(tADSR2* const adsrenv, float leakFactor)
-{
-    _tADSR2* adsr = *adsrenv;
-
-    adsr->leakFactor = leakFactor;
-}
-
-void tADSR2_on(tADSR2* const adsrenv, float velocity)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->targetGainSquared = velocity * velocity;
-    adsr->envTarget = 1.2f;
-    adsr->leakGain = 1.0f;
-    adsr->gate = 1;
-    adsr->attacking = 1;
-}
-
-void tADSR2_off(tADSR2* const adsrenv)
-{
-    _tADSR2* adsr = *adsrenv;
-    adsr->gate = 0;
-    adsr->envTarget = 0.0f;
-}
-
-float   tADSR2_tick(tADSR2* const adsrenv)
-{
-    _tADSR2* adsr = *adsrenv;
-    float lambda;
-
-    if (adsr->gate)
-    {
-        if (adsr->attacking)
-        {
-            lambda = adsr->attackLambda;
-        }
-        else
-        {
-            lambda = adsr->decayLambda;
-        }
-    }
-    else
-    {
-        lambda = adsr->releaseLambda;
-    }
-
-
-    // Adjust env
-    adsr->env += (adsr->envTarget - adsr->env) * lambda * leaf.invSampleRate;
-
-    // Turn off attacking state if envelope is HIGH
-    if (adsr->env >= 1.0f)
-    {
-        adsr->attacking = 0;
-        adsr->envTarget = adsr->sustain;
-    }
-
-    //smooth the gain value   -- this is not ideal, a retrigger while the envelope is still going with a new gain will cause a jump, although it will be smoothed quickly. Maybe doing the math so the range is computed based on the gain rather than 0.->1. is preferable? But that's harder to get the exponential curve right without a lookup.
-    adsr->gain = ((adsr->factor*adsr->targetGainSquared)+(adsr->oneMinusFactor*adsr->gain));
-    adsr->leakGain *= adsr->leakFactor;
-    return adsr->env * adsr->gain * adsr->leakGain;
-}
-
-/* ADSR 3*/
-//This one doesn't use any lookup table - by Nigel Redmon from his blog. Thanks, Nigel!
-//-JS
-
-float calcADSR3Coef(double rate, double targetRatio)
-{
-    return (rate <= 0.0f) ? 0.0f : exp(-log((1.0 + targetRatio) / targetRatio) / rate);
-}
-
-
-void    tADSR3_init(tADSR3* const adsrenv, float attack, float decay, float sustain, float release)
-{
-    tADSR3_initToPool(adsrenv, attack, decay, sustain, release, &leaf.mempool);
-}
-
-void tADSR3_free(tADSR3* const adsrenv)
-{
-    tADSR3_freeFromPool(adsrenv, &leaf.mempool);
-}
-
-void    tADSR3_initToPool    (tADSR3* const adsrenv, float attack, float decay, float sustain, float release, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR3* adsr = *adsrenv = (_tADSR3*) mpool_alloc(sizeof(_tADSR3), m);
-    adsr->sampleRateInMs =  leaf.sampleRate * 0.001f;
-    adsr->targetRatioA = 0.3f;
-    adsr->targetRatioDR = 0.0001f;
-    adsr->attackRate = attack * adsr->sampleRateInMs;
-    adsr->attackCoef = calcADSR3Coef(attack * adsr->sampleRateInMs, adsr->targetRatioA);
-    adsr->attackBase = (1.0f + adsr->targetRatioA) * (1.0f - adsr->attackCoef);
-
-    adsr->decayRate = decay * adsr->sampleRateInMs;
-    adsr->decayCoef = calcADSR3Coef(decay * adsr->sampleRateInMs,adsr-> targetRatioDR);
-    adsr->decayBase = (adsr->sustainLevel - adsr->targetRatioDR) * (1.0f - adsr->decayCoef);
-
-    adsr->sustainLevel = sustain;
-    adsr->decayBase = (adsr->sustainLevel - adsr->targetRatioDR) * (1.0f - adsr->decayCoef);
-
-    adsr->releaseRate = release * adsr->sampleRateInMs;
-    adsr->releaseCoef = calcADSR3Coef(release * adsr->sampleRateInMs, adsr->targetRatioDR);
-    adsr->releaseBase = -adsr->targetRatioDR * (1.0f - adsr->releaseCoef);
-
-    adsr->state = env_idle;
-    adsr->gain = 1.0f;
-    adsr->targetGainSquared = 1.0f;
-    adsr->factor = 0.01f;
-    adsr->oneMinusFactor = 0.99f;
-    adsr->output = 0.0f;
-    adsr->leakFactor = 1.0f;
-}
-
-void    tADSR3_freeFromPool  (tADSR3* const adsrenv, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR3* adsr = *adsrenv;
-    mpool_free((char*)adsr, m);
-}
-
-void     tADSR3_setAttack(tADSR3* const adsrenv, float attack)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    adsr->attackRate = attack * adsr->sampleRateInMs;
-    adsr->attackCoef = calcADSR3Coef(adsr->attackRate, adsr->targetRatioA);
-    adsr->attackBase = (1.0f + adsr->targetRatioA) * (1.0f - adsr->attackCoef);
-}
-
-void     tADSR3_setDecay(tADSR3* const adsrenv, float decay)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    adsr->decayRate = decay * adsr->sampleRateInMs;
-    adsr->decayCoef = calcADSR3Coef(adsr->decayRate,adsr-> targetRatioDR);
-    adsr->decayBase = (adsr->sustainLevel - adsr->targetRatioDR) * (1.0f - adsr->decayCoef);
-}
-
-void     tADSR3_setSustain(tADSR3* const adsrenv, float sustain)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    adsr->sustainLevel = sustain;
-    adsr->decayBase = (adsr->sustainLevel - adsr->targetRatioDR) * (1.0f - adsr->decayCoef);
-}
-
-void     tADSR3_setRelease(tADSR3* const adsrenv, float release)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    adsr->releaseRate = release * adsr->sampleRateInMs;
-    adsr->releaseCoef = calcADSR3Coef(adsr->releaseRate, adsr->targetRatioDR);
-    adsr->releaseBase = -adsr->targetRatioDR * (1.0f - adsr->releaseCoef);
-}
-
-// 0.999999 is slow leak, 0.9 is fast leak
-void     tADSR3_setLeakFactor(tADSR3* const adsrenv, float leakFactor)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    adsr->leakFactor = leakFactor;
-}
-
-void tADSR3_on(tADSR3* const adsrenv, float velocity)
-{
-    _tADSR3* adsr = *adsrenv;
-    adsr->state = env_attack;
-    adsr->targetGainSquared = velocity * velocity;
-}
-
-void tADSR3_off(tADSR3* const adsrenv)
-{
-    _tADSR3* adsr = *adsrenv;
-
-    if (adsr->state != env_idle)
-    {
-        adsr->state = env_release;
-    }
-}
-
-float   tADSR3_tick(tADSR3* const adsrenv)
-{
-    _tADSR3* adsr = *adsrenv;
-
-
-    switch (adsr->state) {
-        case env_idle:
-            break;
-        case env_attack:
-            adsr->output = adsr->attackBase + adsr->output * adsr->attackCoef;
-            if (adsr->output >= 1.0f) {
-                adsr->output = 1.0f;
-                adsr->state = env_decay;
-            }
-            break;
-        case env_decay:
-            adsr->output = adsr->decayBase + adsr->output * adsr->decayCoef * adsr->leakFactor;
-            if (adsr->output <= adsr->sustainLevel) {
-                adsr->output = adsr->sustainLevel;
-                adsr->state = env_sustain;
-            }
-            break;
-        case env_sustain:
-            adsr->output = adsr->output * adsr->leakFactor;
-            break;
-        case env_release:
-            adsr->output = adsr->releaseBase + adsr->output * adsr->releaseCoef;
-            if (adsr->output <= 0.0f) {
-                adsr->output = 0.0f;
-                adsr->state = env_idle;
-            }
-    }
-    //smooth the gain value   -- this is not ideal, a retrigger while the envelope is still going with a new gain will cause a jump, although it will be smoothed quickly. Maybe doing the math so the range is computed based on the gain rather than 0.->1. is preferable? But that's harder to get the exponential curve right without a lookup.
-    adsr->gain = (adsr->factor*adsr->targetGainSquared)+(adsr->oneMinusFactor*adsr->gain);
-    return adsr->output * adsr->gain;
-}
-
-
-/* ADSR 4 */ // new version of our original table-based ADSR but with the table passed in by the user
-// use this if the size of the big ADSR tables is too much.
-void    tADSR4_init    (tADSR4* const adsrenv, float attack, float decay, float sustain, float release, float* expBuffer, int bufferSize)
-{
-    tADSR4_initToPool    (adsrenv, attack, decay, sustain, release, expBuffer, bufferSize, &leaf.mempool);
-}
-
-void tADSR4_free(tADSR4* const adsrenv)
-{
-    tADSR4_freeFromPool(adsrenv, &leaf.mempool);
-}
-
-//initialize with an exponential function that decays -- i.e. a call to LEAF_generate_exp(expBuffer, 0.001f, 0.0f, 1.0f, -0.0008f, EXP_BUFFER_SIZE);
-//times are in ms
-void    tADSR4_initToPool    (tADSR4* const adsrenv, float attack, float decay, float sustain, float release, float* expBuffer, int bufferSize, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR4* adsr = *adsrenv = (_tADSR4*) mpool_alloc(sizeof(_tADSR4), m);
-
-    adsr->exp_buff = expBuffer;
-    adsr->buff_size = bufferSize;
-    adsr->buff_sizeMinusOne = bufferSize - 1;
-
-    adsr->bufferSizeDividedBySampleRateInMs = bufferSize / (leaf.sampleRate * 0.001f);
-
-    if (attack < 0.0f)
-        attack = 0.0f;
-
-    if (decay < 0.0f)
-        decay = 0.0f;
-
-    if (sustain > 1.0f)
-        sustain = 1.0f;
-    if (sustain < 0.0f)
-        sustain = 0.0f;
-
-    if (release < 0.0f)
-        release = 0.0f;
-
-    adsr->next = 0.0f;
-
-    adsr->whichStage = env_idle;
-
-    adsr->sustain = sustain;
-
-    adsr->attackInc = adsr->bufferSizeDividedBySampleRateInMs / attack;
-    adsr->decayInc = adsr->bufferSizeDividedBySampleRateInMs / decay;
-    adsr->releaseInc = adsr->bufferSizeDividedBySampleRateInMs / release;
-    adsr->rampInc = adsr->bufferSizeDividedBySampleRateInMs / 8.0f;
-
-    adsr->leakFactor = 1.0f;
-}
-
-void    tADSR4_freeFromPool  (tADSR4* const adsrenv, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tADSR4* adsr = *adsrenv;
-    mpool_free((char*)adsr, m);
-}
-
-void     tADSR4_setAttack(tADSR4* const adsrenv, float attack)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (attack < 0.0f)
-    {
-        attack = 0.0f;
-    }
-
-    adsr->attackInc = adsr->bufferSizeDividedBySampleRateInMs / attack;
-}
-
-void     tADSR4_setDecay(tADSR4* const adsrenv, float decay)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (decay < 0.0f)
-    {
-        decay = 0.0f;
-    }
-    adsr->decayInc = adsr->bufferSizeDividedBySampleRateInMs / decay;
-}
-
-void     tADSR4_setSustain(tADSR4* const adsrenv, float sustain)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (sustain > 1.0f)      adsr->sustain = 1.0f;
-    else if (sustain < 0.0f) adsr->sustain = 0.0f;
-    else                     adsr->sustain = sustain;
-}
-
-void     tADSR4_setRelease(tADSR4* const adsrenv, float release)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (release < 0.0f)
-    {
-        release = 0.0f;
-    }
-    adsr->releaseInc = adsr->bufferSizeDividedBySampleRateInMs / release;
-}
-
-// 0.999999 is slow leak, 0.9 is fast leak
-void     tADSR4_setLeakFactor(tADSR4* const adsrenv, float leakFactor)
-{
-    _tADSR4* adsr = *adsrenv;
-
-
-    adsr->leakFactor = leakFactor;
-}
-
-void tADSR4_on(tADSR4* const adsrenv, float velocity)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (adsr->whichStage != env_idle) // In case ADSR retriggered while it is still happening.
-    {
-        adsr->rampPhase = 0;
-        adsr->whichStage = env_ramp;
-        adsr->rampPeak = adsr->next;
-    }
-    else // Normal start.
-    {
-        adsr->whichStage = env_attack;
-    }
-
-    adsr->attackPhase = 0;
-    adsr->decayPhase = 0;
-    adsr->releasePhase = 0;
-    adsr->gain = velocity;
-}
-
-void tADSR4_off(tADSR4* const adsrenv)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    if (adsr->whichStage == env_idle)
-    {
-        return;
-    }
-    else
-    {
-        adsr->whichStage = env_release;
-        adsr->releasePeak = adsr->next;
-    }
-}
-
-float   tADSR4_tick(tADSR4* const adsrenv)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    switch (adsr->whichStage)
-    {
-        case env_ramp:
-            if (adsr->rampPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_attack;
-                adsr->next = 0.0f;
-            }
-            else
-            {
-                uint32_t intPart = (uint32_t)adsr->rampPhase;
-                float floatPart = adsr->rampPhase - intPart;
-                float secondValue;
-                if (adsr->rampPhase + 1.0f > adsr->buff_sizeMinusOne)
-                {
-                    secondValue = 0.0f;
-                }
-                else
-                {
-                    secondValue = adsr->exp_buff[(uint32_t)((adsr->rampPhase)+1)];
-                }
-                adsr->next = adsr->rampPeak * LEAF_interpolation_linear(adsr->exp_buff[intPart], secondValue, floatPart);
-            }
-
-            adsr->rampPhase += adsr->rampInc;
-            break;
-
-
-        case env_attack:
-
-            // If attack done, time to turn around.
-            if (adsr->attackPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_decay;
-                adsr->next = adsr->gain;
-            }
-            else
-            {
-                // do interpolation !
-                uint32_t intPart = (uint32_t)adsr->attackPhase;
-                float floatPart = adsr->attackPhase - intPart;
-                float secondValue;
-                if (adsr->attackPhase + 1.0f > adsr->buff_sizeMinusOne)
-                {
-                    secondValue = 0.0f;
-                }
-                else
-                {
-                    secondValue = adsr->exp_buff[(uint32_t)((adsr->attackPhase)+1)];
-                }
-
-                adsr->next = adsr->gain * (1.0f - LEAF_interpolation_linear(adsr->exp_buff[intPart], secondValue, floatPart)); // inverted and backwards to get proper rising exponential shape/perception
-            }
-
-            // Increment ADSR attack.
-            adsr->attackPhase += adsr->attackInc;
-            break;
-
-        case env_decay:
-
-            // If decay done, sustain.
-            if (adsr->decayPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_sustain;
-                adsr->next = adsr->gain * adsr->sustain;
-            }
-
-            else
-            {
-                uint32_t intPart = (uint32_t)adsr->decayPhase;
-                float floatPart = adsr->decayPhase - intPart;
-                float secondValue;
-                if (adsr->decayPhase + 1.0f > adsr->buff_sizeMinusOne)
-                {
-                    secondValue = 0.0f;
-                }
-                else
-                {
-                    secondValue = adsr->exp_buff[(uint32_t)((adsr->decayPhase)+1)];
-                }
-                float interpValue = (LEAF_interpolation_linear(adsr->exp_buff[intPart], secondValue, floatPart));
-                adsr->next = (adsr->gain * (adsr->sustain + (interpValue * (1.0f - adsr->sustain)))) * adsr->leakFactor; // do interpolation !
-            }
-
-            // Increment ADSR decay.
-            adsr->decayPhase += adsr->decayInc;
-            break;
-
-        case env_sustain:
-            adsr->next = adsr->next * adsr->leakFactor;
-            break;
-
-        case env_release:
-            // If release done, finish.
-            if (adsr->releasePhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_idle;
-                adsr->next = 0.0f;
-            }
-            else {
-                uint32_t intPart = (uint32_t)adsr->releasePhase;
-                float floatPart = adsr->releasePhase - intPart;
-                float secondValue;
-                if (adsr->releasePhase + 1.0f > adsr->buff_sizeMinusOne)
-                {
-                    secondValue = 0.0f;
-                }
-                else
-                {
-                    secondValue = adsr->exp_buff[(uint32_t)((adsr->releasePhase)+1)];
-                }
-                adsr->next = adsr->releasePeak * (LEAF_interpolation_linear(adsr->exp_buff[intPart], secondValue, floatPart)); // do interpolation !
-            }
-
-            // Increment envelope release;
-            adsr->releasePhase += adsr->releaseInc;
-            break;
-    }
-    return adsr->next;
-}
-
-float   tADSR4_tickNoInterp(tADSR4* const adsrenv)
-{
-    _tADSR4* adsr = *adsrenv;
-
-    switch (adsr->whichStage)
-    {
-        case env_ramp:
-            if (adsr->rampPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_attack;
-                adsr->next = 0.0f;
-            }
-            else
-            {
-                adsr->next = adsr->rampPeak * adsr->exp_buff[(uint32_t)adsr->rampPhase];
-            }
-
-            adsr->rampPhase += adsr->rampInc;
-            break;
-
-
-        case env_attack:
-
-            // If attack done, time to turn around.
-            if (adsr->attackPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_decay;
-                adsr->next = adsr->gain;
-            }
-            else
-            {
-                adsr->next = adsr->gain * (1.0f - adsr->exp_buff[(uint32_t)adsr->attackPhase]); // inverted and backwards to get proper rising exponential shape/perception
-            }
-
-            // Increment ADSR attack.
-            adsr->attackPhase += adsr->attackInc;
-            break;
-
-        case env_decay:
-
-            // If decay done, sustain.
-            if (adsr->decayPhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_sustain;
-                adsr->next = adsr->gain * adsr->sustain;
-            }
-
-            else
-            {
-                adsr->next = (adsr->gain * (adsr->sustain + (adsr->exp_buff[(uint32_t)adsr->decayPhase] * (1.0f - adsr->sustain)))) * adsr->leakFactor;
-            }
-
-            // Increment ADSR decay.
-            adsr->decayPhase += adsr->decayInc;
-            break;
-
-        case env_sustain:
-            adsr->next = adsr->next * adsr->leakFactor;
-            break;
-
-        case env_release:
-            // If release done, finish.
-            if (adsr->releasePhase > adsr->buff_sizeMinusOne)
-            {
-                adsr->whichStage = env_idle;
-                adsr->next = 0.0f;
-            }
-            else {
-                adsr->next = adsr->releasePeak * adsr->exp_buff[(uint32_t)adsr->releasePhase];
-            }
-
-            // Increment envelope release;
-            adsr->releasePhase += adsr->releaseInc;
-            break;
-    }
-    return adsr->next;
-}
-
-
-
-/////-----------------
-/* Ramp */
-void    tRamp_init(tRamp* const r, float time, int samples_per_tick)
-{
-    _tRamp* ramp = *r = (_tRamp*) leaf_alloc(sizeof(_tRamp));
-    
-    ramp->inv_sr_ms = 1.0f/(leaf.sampleRate*0.001f);
-	ramp->minimum_time = ramp->inv_sr_ms * samples_per_tick;
-    ramp->curr = 0.0f;
-    ramp->dest = 0.0f;
-    
-    if (time < ramp->minimum_time)
-    {
-        ramp->time = ramp->minimum_time;
-    }
-    else
-    {
-        ramp->time = time;
-    }
-    ramp->factor = (1.0f / ramp->time) * ramp->inv_sr_ms;
-    ramp->samples_per_tick = samples_per_tick;
-    ramp->inc = ((ramp->dest - ramp->curr) / ramp->time * ramp->inv_sr_ms) * (float)ramp->samples_per_tick;
-}
-
-void tRamp_free(tRamp* const r)
-{
-    _tRamp* ramp = *r;
-    
-    leaf_free((char*)ramp);
-}
-
-void    tRamp_initToPool    (tRamp* const r, float time, int samples_per_tick, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRamp* ramp = *r = (_tRamp*) mpool_alloc(sizeof(_tRamp), m);
-    
-    ramp->inv_sr_ms = 1.0f/(leaf.sampleRate*0.001f);
-    ramp->minimum_time = ramp->inv_sr_ms * samples_per_tick;
-    ramp->curr = 0.0f;
-    ramp->dest = 0.0f;
-    
-    if (time < ramp->minimum_time)
-    {
-        ramp->time = ramp->minimum_time;
-    }
-    else
-    {
-        ramp->time = time;
-    }
-    ramp->samples_per_tick = samples_per_tick;
-    ramp->factor = (1.0f / ramp->time) * ramp->inv_sr_ms * (float)ramp->samples_per_tick;
-    ramp->inc = (ramp->dest - ramp->curr) * ramp->factor;
-}
-
-void    tRamp_freeFromPool  (tRamp* const r, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRamp* ramp = *r;
-    
-    mpool_free((char*)ramp, m);
-}
-
-void     tRamp_setTime(tRamp* const ramp, float time)
-{
-    _tRamp* r = *ramp;
-    
-	if (time < r->minimum_time)
-	{
-		r->time = r->minimum_time;
-	}
-	else
-	{
-		r->time = time;
-	}
-    r->factor = (1.0f / r->time) * r->inv_sr_ms * (float)r->samples_per_tick;
-    r->inc = (r->dest - r->curr) * r->factor;
-
-}
-
-void     tRamp_setDest(tRamp* const ramp, float dest)
-{
-    _tRamp* r = *ramp;
-    r->dest = dest;
-    r->inc = (r->dest - r->curr) * r->factor;
-}
-
-void     tRamp_setVal(tRamp* const ramp, float val)
-{
-    _tRamp* r = *ramp;
-    r->curr = val;
-    r->inc = (r->dest - r->curr) * r->factor;
-}
-
-float   tRamp_tick(tRamp* const ramp)
-{
-    _tRamp* r = *ramp;
-    
-    r->curr += r->inc;
-    
-    if (((r->curr >= r->dest) && (r->inc > 0.0f)) || ((r->curr <= r->dest) && (r->inc < 0.0f)))
-	{
-		r->inc = 0.0f;
-		r->curr=r->dest;
-	}
-    
-    return r->curr;
-}
-
-float   tRamp_sample(tRamp* const ramp)
-{
-    _tRamp* r = *ramp;
-    return r->curr;
-}
-
-void    tRampSampleRateChanged(tRamp* const ramp)
-{
-    _tRamp* r = *ramp;
-    r->inv_sr_ms = 1.0f / (leaf.sampleRate * 0.001f);
-    r->factor = (1.0f / r->time) * r->inv_sr_ms * (float)r->samples_per_tick;
-    r->inc = (r->dest - r->curr) * r->factor;
-}
-
-
-
-/* RampUpDown */
-void    tRampUpDown_init(tRampUpDown* const r, float upTime, float downTime, int samples_per_tick)
-{
-	tRampUpDown_initToPool(r, upTime, downTime, samples_per_tick, &leaf.mempool);
-}
-
-void tRampUpDown_free(tRampUpDown* const r)
-{
-	tRampUpDown_freeFromPool(r, &leaf.mempool);
-}
-
-void    tRampUpDown_initToPool(tRampUpDown* const r, float upTime, float downTime, int samples_per_tick, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRampUpDown* ramp = *r = (_tRampUpDown*) mpool_alloc(sizeof(_tRampUpDown), m);
-
-    ramp->inv_sr_ms = 1.0f/(leaf.sampleRate*0.001f);
-    ramp->minimum_time = ramp->inv_sr_ms * samples_per_tick;
-    ramp->curr = 0.0f;
-    ramp->dest = 0.0f;
-
-    if (upTime < ramp->minimum_time)
-    {
-        ramp->upTime = ramp->minimum_time;
-    }
-    else
-    {
-        ramp->upTime = upTime;
-    }
-
-    if (downTime < ramp->minimum_time)
-    {
-        ramp->downTime = ramp->minimum_time;
-    }
-    else
-    {
-        ramp->downTime = downTime;
-    }
-
-    ramp->samples_per_tick = samples_per_tick;
-    ramp->upInc = ((ramp->dest - ramp->curr) / ramp->upTime * ramp->inv_sr_ms) * (float)ramp->samples_per_tick;
-    ramp->downInc = ((ramp->dest - ramp->curr) / ramp->downTime * ramp->inv_sr_ms) * (float)ramp->samples_per_tick;
-}
-
-void    tRampUpDown_freeFromPool  (tRampUpDown* const r, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tRampUpDown* ramp = *r;
-
-    mpool_free((char*)ramp, m);
-}
-
-void     tRampUpDown_setUpTime(tRampUpDown* const ramp, float upTime)
-{
-    _tRampUpDown* r = *ramp;
-
-    if (upTime < r->minimum_time)
-    {
-        r->upTime = r->minimum_time;
-    }
-    else
-    {
-        r->upTime = upTime;
-    }
-    r->upInc = ((r->dest - r->curr) / r->upTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-}
-
-
-void     tRampUpDown_setDownTime(tRampUpDown* const ramp, float downTime)
-{
-    _tRampUpDown* r = *ramp;
-
-    if (downTime < r->minimum_time)
-    {
-        r->downTime = r->minimum_time;
-    }
-    else
-    {
-        r->downTime = downTime;
-    }
-    r->downInc = ((r->dest - r->curr) / r->downTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-}
-
-void     tRampUpDown_setDest(tRampUpDown* const ramp, float dest)
-{
-    _tRampUpDown* r = *ramp;
-    r->dest = dest;
-    r->upInc = ((r->dest - r->curr) / r->upTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-    r->downInc = ((r->dest - r->curr) / r->downTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-}
-
-void     tRampUpDown_setVal(tRampUpDown* const ramp, float val)
-{
-    _tRampUpDown* r = *ramp;
-    r->curr = val;
-    r->upInc = ((r->dest - r->curr) / r->upTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-    r->downInc = ((r->dest - r->curr) / r->downTime * r->inv_sr_ms) * (float)r->samples_per_tick;
-}
-
-float   tRampUpDown_tick(tRampUpDown* const ramp)
-{
-    _tRampUpDown* r = *ramp;
-    float test;
-
-    if (r->dest < r->curr)
-    {
-    	test = r->curr + r->downInc;
-    	if (test > r->dest)
-    	{
-    		r->curr = test;
-    	}
-    	else
-    	{
-    		r->downInc = 0.0f;
-    		r->curr = r->dest;
-    	}
-    }
-    else if (r->dest > r->curr)
-    {
-    	test = r->curr + r->upInc;
-    	if (test < r->dest)
-    	{
-    		r->curr = test;
-    	}
-    	else
-    	{
-    		r->upInc = 0.0f;
-    		r->curr = r->dest;
-    	}
-    }
-    return r->curr;
-}
-
-float   tRampUpDown_sample(tRampUpDown* const ramp)
-{
-    _tRampUpDown* r = *ramp;
-    return r->curr;
-}
-
-
-
-
-
-
-/* Exponential Smoother */
-void    tExpSmooth_init(tExpSmooth* const expsmooth, float val, float factor)
-{	// factor is usually a value between 0 and 0.1. Lower value is slower. 0.01 for example gives you a smoothing time of about 10ms
-    _tExpSmooth* smooth = *expsmooth = (_tExpSmooth*) leaf_alloc(sizeof(_tExpSmooth));
-    
-	smooth->curr=val;
-	smooth->dest=val;
-	if (factor<0) factor=0;
-	if (factor>1) factor=1;
-	smooth->factor=factor;
-	smooth->oneminusfactor=1.0f-factor;
-}
-
-void tExpSmooth_free(tExpSmooth* const expsmooth)
-{
-    _tExpSmooth* smooth = *expsmooth;
-    
-    leaf_free((char*)smooth);
-}
-
-void    tExpSmooth_initToPool   (tExpSmooth* const expsmooth, float val, float factor, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tExpSmooth* smooth = *expsmooth = (_tExpSmooth*) mpool_alloc(sizeof(_tExpSmooth), m);
-    
-    smooth->curr=val;
-    smooth->dest=val;
-    if (factor<0) factor=0;
-    if (factor>1) factor=1;
-    smooth->factor=factor;
-    smooth->oneminusfactor=1.0f-factor;
-}
-
-void    tExpSmooth_freeFromPool (tExpSmooth* const expsmooth, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tExpSmooth* smooth = *expsmooth;
-    
-    mpool_free((char*)smooth, m);
-}
-
-void     tExpSmooth_setFactor(tExpSmooth* const expsmooth, float factor)
-{	// factor is usually a value between 0 and 0.1. Lower value is slower. 0.01 for example gives you a smoothing time of about 10ms
-    _tExpSmooth* smooth = *expsmooth;
-    
-	if (factor<0)
-		factor=0;
-	else
-		if (factor>1) factor=1;
-	smooth->factor=factor;
-	smooth->oneminusfactor=1.0f-factor;
-}
-
-void     tExpSmooth_setDest(tExpSmooth* const expsmooth, float dest)
-{
-    _tExpSmooth* smooth = *expsmooth;
-	smooth->dest=dest;
-}
-
-void     tExpSmooth_setVal(tExpSmooth* const expsmooth, float val)
-{
-    _tExpSmooth* smooth = *expsmooth;
-	smooth->curr=val;
-}
-
-void     tExpSmooth_setValAndDest(tExpSmooth* const expsmooth, float val)
-{
-    _tExpSmooth* smooth = *expsmooth;
-	smooth->curr=val;
-	smooth->dest=val;
-}
-
-float   tExpSmooth_tick(tExpSmooth* const expsmooth)
-{
-    _tExpSmooth* smooth = *expsmooth;
-    smooth->curr = smooth->factor*smooth->dest+smooth->oneminusfactor*smooth->curr;
-    return smooth->curr;
-}
-
-float   tExpSmooth_sample(tExpSmooth* const expsmooth)
-{
-    _tExpSmooth* smooth = *expsmooth;
-    return smooth->curr;
-}
-
-//tSlide is based on the max/msp slide~ object
-////
-
-void    tSlide_init          (tSlide* const sl, float upSlide, float downSlide)
-{
-	tSlide_initToPool    (sl, upSlide, downSlide, &leaf.mempool);
-}
-void    tSlide_free          (tSlide* const sl)
-{
-	tSlide_freeFromPool    (sl, &leaf.mempool);
-}
-void    tSlide_initToPool    (tSlide* const sl, float upSlide, float downSlide, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSlide* s = *sl = (_tSlide*) mpool_alloc(sizeof(_tSlide), m);
-    s->prevIn = 0.0f;
-    s->currentOut = 0.0f;
-    s->prevOut = 0.0f;
-    if (upSlide < 1.0f)
-    {
-    	upSlide = 1.0f;
-    }
-
-    if (downSlide < 1.0f)
-    {
-    	downSlide = 1.0f;
-    }
-    s->invUpSlide = 1.0f / upSlide;
-    s->invDownSlide = 1.0f / downSlide;
-}
-
-void    tSlide_freeFromPool  (tSlide* const sl, tMempool* const mp)
-{
-	_tMempool* m = *mp;
-	    _tSlide* s = *sl;
-
-	    mpool_free((char*)s, m);
-}
-
-float tSlide_tick(tSlide* const sl, float in)
-{
-	_tSlide* s = *sl;
-
-
-	if (in >= s->prevOut)
-	{
-		s->currentOut = s->prevOut + ((in - s->prevOut) * s->invUpSlide);
-	}
-	else
-	{
-		s->currentOut = s->prevOut + ((in - s->prevOut) * s->invDownSlide);
-	}
-	if (s->currentOut < VSF) s->currentOut = 0.0f;
-	s->prevIn = in;
-	s->prevOut = s->currentOut;
-	return s->currentOut;
-}
-
--- a/LEAF/Src/leaf-filters.c
+++ /dev/null
@@ -1,1802 +1,0 @@
-/*==============================================================================
-
-    leaf-filter.c
-    Created: 20 Jan 2017 12:01:10pm
-    Author:  Michael R Mulshine
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-filters.h"
-#include "..\Inc\leaf-tables.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-filters.h"
-#include "../Inc/leaf-tables.h"
-#include "../leaf.h"
-//#include "tim.h"
-#endif
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ OnePole Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tAllpass_init(tAllpass* const ft, float initDelay, uint32_t maxDelay)
-{
-    _tAllpass* f = *ft = (_tAllpass*) leaf_alloc(sizeof(_tAllpass));
-    
-    f->gain = 0.7f;
-    
-    f->lastOut = 0.0f;
-    
-    tLinearDelay_init(&f->delay, initDelay, maxDelay);
-}
-
-void tAllpass_free(tAllpass* const ft)
-{
-    _tAllpass* f = *ft;
-    
-    tLinearDelay_free(&f->delay);
-    leaf_free((char*)f);
-}
-
-void    tAllpass_initToPool     (tAllpass* const ft, float initDelay, uint32_t maxDelay, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAllpass* f = *ft = (_tAllpass*) mpool_alloc(sizeof(_tAllpass), m);
-    
-    f->gain = 0.7f;
-    
-    f->lastOut = 0.0f;
-    
-    tLinearDelay_initToPool(&f->delay, initDelay, maxDelay, mp);
-}
-
-void    tAllpass_freeFromPool   (tAllpass* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAllpass* f = *ft;
-    
-    tLinearDelay_freeFromPool(&f->delay, mp);
-    mpool_free((char*)f, m);
-}
-
-void    tAllpass_setDelay(tAllpass* const ft, float delay)
-{
-    _tAllpass* f = *ft;
-    
-    tLinearDelay_setDelay(&f->delay, delay);
-}
-
-void    tAllpass_setGain(tAllpass* const ft, float gain)
-{
-    _tAllpass* f = *ft;
-    
-    f->gain = gain;
-}
-
-float   tAllpass_tick(tAllpass* const ft, float input)
-{
-    _tAllpass* f = *ft;
-    
-    float s1 = (-f->gain) * f->lastOut + input;
-    
-    float s2 = tLinearDelay_tick(&f->delay, s1) + (f->gain) * input;
-    
-    f->lastOut = s2;
-    
-    return f->lastOut;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ OnePole Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tOnePole_init(tOnePole* const ft, float freq)
-{
-    _tOnePole* f = *ft = (_tOnePole*) leaf_alloc(sizeof(_tOnePole));
-    
-    f->gain = 1.0f;
-    f->a0 = 1.0;
-    
-    tOnePole_setFreq(ft, freq);
-    
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-}
-
-void    tOnePole_free(tOnePole* const ft)
-{
-    _tOnePole* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tOnePole_initToPool     (tOnePole* const ft, float freq, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOnePole* f = *ft = (_tOnePole*) mpool_alloc(sizeof(_tOnePole), m);
-    
-    f->gain = 1.0f;
-    f->a0 = 1.0;
-    
-    tOnePole_setFreq(ft, freq);
-    
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-}
-
-void    tOnePole_freeFromPool   (tOnePole* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOnePole* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-void    tOnePole_setB0(tOnePole* const ft, float b0)
-{
-    _tOnePole* f = *ft;
-    f->b0 = b0;
-}
-
-void    tOnePole_setA1(tOnePole* const ft, float a1)
-{
-    _tOnePole* f = *ft;
-    if (a1 >= 1.0f)     a1 = 0.999999f;
-    f->a1 = a1;
-}
-
-void    tOnePole_setPole(tOnePole* const ft, float thePole)
-{
-    _tOnePole* f = *ft;
-    
-    if (thePole >= 1.0f)    thePole = 0.999999f;
-    
-    // Normalize coefficients for peak unity gain.
-    if (thePole > 0.0f)     f->b0 = (1.0f - thePole);
-    else                    f->b0 = (1.0f + thePole);
-    
-    f->a1 = -thePole;
-}
-
-void        tOnePole_setFreq        (tOnePole* const ft, float freq)
-{
-    _tOnePole* f = *ft;
-    f->b0 = freq * leaf.twoPiTimesInvSampleRate;
-    f->b0 = LEAF_clip(0.0f, f->b0, 1.0f);
-    f->a1 = 1.0f - f->b0;
-}
-
-void    tOnePole_setCoefficients(tOnePole* const ft, float b0, float a1)
-{
-    _tOnePole* f = *ft;
-    if (a1 >= 1.0f)     a1 = 0.999999f;
-    f->b0 = b0;
-    f->a1 = a1;
-}
-
-void    tOnePole_setGain(tOnePole* const ft, float gain)
-{
-    _tOnePole* f = *ft;
-    f->gain = gain;
-}
-
-float   tOnePole_tick(tOnePole* const ft, float input)
-{
-    _tOnePole* f = *ft;
-    
-    float in = input * f->gain;
-    float out = (f->b0 * in) + (f->a1 * f->lastOut);
-    
-    f->lastIn = in;
-    f->lastOut = out;
-    
-    return out;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ TwoPole Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tTwoPole_init(tTwoPole* const ft)
-{
-    _tTwoPole* f = *ft = (_tTwoPole*) leaf_alloc(sizeof(_tTwoPole));
-    
-    f->gain = 1.0f;
-    f->a0 = 1.0;
-    f->b0 = 1.0;
-    
-    f->lastOut[0] = 0.0f;
-    f->lastOut[1] = 0.0f;
-}
-
-void    tTwoPole_free(tTwoPole* const ft)
-{
-    _tTwoPole* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tTwoPole_initToPool     (tTwoPole* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTwoPole* f = *ft = (_tTwoPole*) mpool_alloc(sizeof(_tTwoPole), m);
-    
-    f->gain = 1.0f;
-    f->a0 = 1.0;
-    f->b0 = 1.0;
-    
-    f->lastOut[0] = 0.0f;
-    f->lastOut[1] = 0.0f;
-}
-
-void    tTwoPole_freeFromPool   (tTwoPole* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTwoPole* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-float   tTwoPole_tick(tTwoPole* const ft, float input)
-{
-    _tTwoPole* f = *ft;
-    
-    float in = input * f->gain;
-    float out = (f->b0 * in) - (f->a1 * f->lastOut[0]) - (f->a2 * f->lastOut[1]);
-    
-    f->lastOut[1] = f->lastOut[0];
-    f->lastOut[0] = out;
-    
-    return out;
-}
-
-void    tTwoPole_setB0(tTwoPole* const ft, float b0)
-{
-    _tTwoPole* f = *ft;
-    f->b0 = b0;
-}
-
-void    tTwoPole_setA1(tTwoPole* const ft, float a1)
-{
-    _tTwoPole* f = *ft;
-    f->a1 = a1;
-}
-
-void    tTwoPole_setA2(tTwoPole* const ft, float a2)
-{
-    _tTwoPole* f = *ft;
-    f->a2 = a2;
-}
-
-
-void    tTwoPole_setResonance(tTwoPole* const ft, float frequency, float radius, oBool normalize)
-{
-    _tTwoPole* f = *ft;
-    
-    if (frequency < 0.0f)   frequency = 0.0f;
-    if (frequency > (leaf.sampleRate * 0.49f))   frequency = leaf.sampleRate * 0.49f;
-    if (radius < 0.0f)      radius = 0.0f;
-    if (radius >= 1.0f)     radius = 0.999999f;
-    
-    f->radius = radius;
-    f->frequency = frequency;
-    f->normalize = normalize;
-    
-    f->a2 = radius * radius;
-    f->a1 =  -2.0f * radius * cosf(frequency * leaf.twoPiTimesInvSampleRate);
-    
-    if ( normalize )
-    {
-        // Normalize the filter gain ... not terribly efficient.
-        float real = 1 - radius + (f->a2 - radius) * cosf(2 * frequency * leaf.twoPiTimesInvSampleRate);
-        float imag = (f->a2 - radius) * sinf(2 * frequency * leaf.twoPiTimesInvSampleRate);
-        f->b0 = sqrtf( powf(real, 2) + powf(imag, 2) );
-    }
-}
-
-void    tTwoPole_setCoefficients(tTwoPole* const ft, float b0, float a1, float a2)
-{
-    _tTwoPole* f = *ft;
-    f->b0 = b0;
-    f->a1 = a1;
-    f->a2 = a2;
-}
-
-void    tTwoPole_setGain(tTwoPole* const ft, float gain)
-{
-    _tTwoPole* f = *ft;
-    f->gain = gain;
-}
-
-void     tTwoPoleSampleRateChanged (tTwoPole* const ft)
-{
-    _tTwoPole* f = *ft;
-    
-    f->a2 = f->radius * f->radius;
-    f->a1 =  -2.0f * f->radius * cosf(f->frequency * leaf.twoPiTimesInvSampleRate);
-    
-    if ( f->normalize )
-    {
-        // Normalize the filter gain ... not terribly efficient.
-        float real = 1 - f->radius + (f->a2 - f->radius) * cosf(2 * f->frequency * leaf.twoPiTimesInvSampleRate);
-        float imag = (f->a2 - f->radius) * sinf(2 * f->frequency * leaf.twoPiTimesInvSampleRate);
-        f->b0 = sqrtf( powf(real, 2) + powf(imag, 2) );
-    }
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ OneZero Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tOneZero_init(tOneZero* const ft, float theZero)
-{
-    _tOneZero* f = *ft = (_tOneZero*) leaf_alloc(sizeof(_tOneZero));
-    
-    f->gain = 1.0f;
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-    tOneZero_setZero(ft, theZero);
-}
-
-void    tOneZero_free(tOneZero* const ft)
-{
-    _tOneZero* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tOneZero_initToPool     (tOneZero* const ft, float theZero, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOneZero* f = *ft = (_tOneZero*) mpool_alloc(sizeof(_tOneZero), m);
-    
-    f->gain = 1.0f;
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-    tOneZero_setZero(ft, theZero);
-}
-
-void    tOneZero_freeFromPool   (tOneZero* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tOneZero* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-float   tOneZero_tick(tOneZero* const ft, float input)
-{
-    _tOneZero* f = *ft;
-    
-    float in = input * f->gain;
-    float out = f->b1 * f->lastIn + f->b0 * in;
-    
-    f->lastIn = in;
-    
-    return out;
-}
-
-void    tOneZero_setZero(tOneZero* const ft, float theZero)
-{
-    _tOneZero* f = *ft;
-    
-    if (theZero > 0.0f) f->b0 = 1.0f / (1.0f + theZero);
-    else                f->b0 = 1.0f / (1.0f - theZero);
-    
-    f->b1 = -theZero * f->b0;
-    
-}
-
-void    tOneZero_setB0(tOneZero* const ft, float b0)
-{
-    _tOneZero* f = *ft;
-    
-    f->b0 = b0;
-}
-
-void    tOneZero_setB1(tOneZero* const ft, float b1)
-{
-    _tOneZero* f = *ft;
-    f->b1 = b1;
-}
-
-void    tOneZero_setCoefficients(tOneZero* const ft, float b0, float b1)
-{
-    _tOneZero* f = *ft;
-    f->b0 = b0;
-    f->b1 = b1;
-}
-
-void    tOneZero_setGain(tOneZero *ft, float gain)
-{
-    _tOneZero* f = *ft;
-    f->gain = gain;
-}
-
-float   tOneZero_getPhaseDelay(tOneZero* const ft, float frequency )
-{
-    _tOneZero* f = *ft;
-    
-    if ( frequency <= 0.0f) frequency = 0.05f;
-    
-    f->frequency = frequency;
-    
-    float omegaT = 2 * PI * frequency * leaf.invSampleRate;
-    float real = 0.0, imag = 0.0;
-    
-    real += f->b0;
-    
-    real += f->b1 * cosf(omegaT);
-    imag -= f->b1 * sinf(omegaT);
-    
-    real *= f->gain;
-    imag *= f->gain;
-    
-    float phase = atan2f( imag, real );
-    
-    real = 0.0; imag = 0.0;
-    
-    phase -= atan2f( imag, real );
-    
-    phase = fmodf( -phase, 2 * PI );
-    
-    return phase / omegaT;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ TwoZero Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tTwoZero_init(tTwoZero* const ft)
-{
-    _tTwoZero* f = *ft = (_tTwoZero*) leaf_alloc(sizeof(_tTwoZero));
-    
-    f->gain = 1.0f;
-    f->lastIn[0] = 0.0f;
-    f->lastIn[1] = 0.0f;
-}
-
-void    tTwoZero_free(tTwoZero* const ft)
-{
-    _tTwoZero* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tTwoZero_initToPool     (tTwoZero* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTwoZero* f = *ft = (_tTwoZero*) mpool_alloc(sizeof(_tTwoZero), m);
-    
-    f->gain = 1.0f;
-    f->lastIn[0] = 0.0f;
-    f->lastIn[1] = 0.0f;
-}
-
-void    tTwoZero_freeFromPool   (tTwoZero* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTwoZero* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-float   tTwoZero_tick(tTwoZero* const ft, float input)
-{
-    _tTwoZero* f = *ft;
-    
-    float in = input * f->gain;
-    float out = f->b2 * f->lastIn[1] + f->b1 * f->lastIn[0] + f->b0 * in;
-    
-    f->lastIn[1] = f->lastIn[0];
-    f->lastIn[0] = in;
-    
-    return out;
-}
-
-void    tTwoZero_setNotch(tTwoZero* const ft, float freq, float radius)
-{
-    _tTwoZero* f = *ft;
-    
-    // Should also deal with frequency being > half sample rate / nyquist. See STK
-    if (freq < 0.0f)    freq = 0.0f;
-    if (radius < 0.0f)  radius = 0.0f;
-    
-    f->frequency = freq;
-    f->radius = radius;
-    
-    f->b2 = radius * radius;
-    f->b1 = -2.0f * radius * cosf(freq * leaf.twoPiTimesInvSampleRate); // OPTIMIZE with LOOKUP or APPROXIMATION
-    
-    // Normalize the filter gain. From STK.
-    if ( f->b1 > 0.0f ) // Maximum at z = 0.
-        f->b0 = 1.0f / ( 1.0f + f->b1 + f->b2 );
-    else            // Maximum at z = -1.
-        f->b0 = 1.0f / ( 1.0f - f->b1 + f->b2 );
-    f->b1 *= f->b0;
-    f->b2 *= f->b0;
-    
-}
-
-void    tTwoZero_setB0(tTwoZero* const ft, float b0)
-{
-    _tTwoZero* f = *ft;
-    f->b0 = b0;
-}
-
-void    tTwoZero_setB1(tTwoZero* const ft, float b1)
-{
-    _tTwoZero* f = *ft;
-    f->b1 = b1;
-}
-
-void    tTwoZero_setCoefficients(tTwoZero* const ft, float b0, float b1, float b2)
-{
-    _tTwoZero* f = *ft;
-    f->b0 = b0;
-    f->b1 = b1;
-    f->b2 = b2;
-}
-
-void    tTwoZero_setGain(tTwoZero* const ft, float gain)
-{
-    _tTwoZero* f = *ft;
-    f->gain = gain;
-}
-
-void tTwoZeroSampleRateChanged(tTwoZero* const ft)
-{
-    _tTwoZero* f = *ft;
-    
-    tTwoZero_setNotch(ft, f->frequency, f->radius);
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ PoleZero Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void   tPoleZero_init(tPoleZero* const pzf)
-{
-    _tPoleZero* f = *pzf = (_tPoleZero*) leaf_alloc(sizeof(_tPoleZero));
-    
-    f->gain = 1.0f;
-    f->b0 = 1.0;
-    f->a0 = 1.0;
-    
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-}
-
-void   tPoleZero_free(tPoleZero* const pzf)
-{
-    _tPoleZero* f = *pzf;
-    
-    leaf_free((char*)f);
-}
-
-void    tPoleZero_initToPool        (tPoleZero* const pzf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPoleZero* f = *pzf = (_tPoleZero*) mpool_alloc(sizeof(_tPoleZero), m);
-    
-    f->gain = 1.0f;
-    f->b0 = 1.0;
-    f->a0 = 1.0;
-    
-    f->lastIn = 0.0f;
-    f->lastOut = 0.0f;
-}
-
-void    tPoleZero_freeFromPool      (tPoleZero* const pzf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPoleZero* f = *pzf;
-    
-    mpool_free((char*)f, m);
-}
-
-void    tPoleZero_setB0(tPoleZero* const pzf, float b0)
-{
-    _tPoleZero* f = *pzf;
-    f->b0 = b0;
-}
-
-void    tPoleZero_setB1(tPoleZero* const pzf, float b1)
-{
-    _tPoleZero* f = *pzf;
-    f->b1 = b1;
-}
-
-void    tPoleZero_setA1(tPoleZero* const pzf, float a1)
-{
-    _tPoleZero* f = *pzf;
-    
-    if (a1 >= 1.0f) // a1 should be less than 1.0
-    {
-        a1 = 0.999999f;
-    }
-    
-    f->a1 = a1;
-}
-
-void    tPoleZero_setCoefficients(tPoleZero* const pzf, float b0, float b1, float a1)
-{
-    _tPoleZero* f = *pzf;
-    
-    if (a1 >= 1.0f) // a1 should be less than 1.0
-    {
-        a1 = 0.999999f;
-    }
-    
-    f->b0 = b0;
-    f->b1 = b1;
-    f->a1 = a1;
-}
-
-void    tPoleZero_setAllpass(tPoleZero* const pzf, float coeff)
-{
-    _tPoleZero* f = *pzf;
-    
-    if (coeff >= 1.0f) // allpass coefficient >= 1.0 makes filter unstable
-    {
-        coeff = 0.999999f;
-    }
-    
-    f->b0 = coeff;
-    f->b1 = 1.0f;
-    f->a0 = 1.0f;
-    f->a1 = coeff;
-}
-
-void    tPoleZero_setBlockZero(tPoleZero* const pzf, float thePole)
-{
-    _tPoleZero* f = *pzf;
-    
-    if (thePole >= 1.0f) // allpass coefficient >= 1.0 makes filter unstable
-    {
-        thePole = 0.999999f;
-    }
-    
-    f->b0 = 1.0f;
-    f->b1 = -1.0f;
-    f->a0 = 1.0f;
-    f->a1 = -thePole;
-}
-
-void    tPoleZero_setGain(tPoleZero* const pzf, float gain)
-{
-    _tPoleZero* f = *pzf;
-    f->gain = gain;
-}
-
-float   tPoleZero_tick(tPoleZero* const pzf, float input)
-{
-    _tPoleZero* f = *pzf;
-    
-    float in = input * f->gain;
-    float out = (f->b0 * in) + (f->b1 * f->lastIn) - (f->a1 * f->lastOut);
-    
-    f->lastIn = in;
-    f->lastOut = out;
-    
-    return out;
-}
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ BiQuad Filter ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tBiQuad_init(tBiQuad* const ft)
-{
-    _tBiQuad* f = *ft = (_tBiQuad*) leaf_alloc(sizeof(_tBiQuad));
-    
-    f->gain = 1.0f;
-    
-    f->b0 = 0.0f;
-    f->a0 = 0.0f;
-    
-    f->lastIn[0] = 0.0f;
-    f->lastIn[1] = 0.0f;
-    f->lastOut[0] = 0.0f;
-    f->lastOut[1] = 0.0f;
-}
-
-void    tBiQuad_free(tBiQuad* const ft)
-{
-    _tBiQuad* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tBiQuad_initToPool     (tBiQuad* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tBiQuad* f = *ft = (_tBiQuad*) mpool_alloc(sizeof(_tBiQuad), m);
-    
-    f->gain = 1.0f;
-    
-    f->b0 = 0.0f;
-    f->a0 = 0.0f;
-    
-    f->lastIn[0] = 0.0f;
-    f->lastIn[1] = 0.0f;
-    f->lastOut[0] = 0.0f;
-    f->lastOut[1] = 0.0f;
-}
-
-void    tBiQuad_freeFromPool   (tBiQuad* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tBiQuad* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-float   tBiQuad_tick(tBiQuad* const ft, float input)
-{
-    _tBiQuad* f = *ft;
-    
-    float in = input * f->gain;
-    float out = f->b0 * in + f->b1 * f->lastIn[0] + f->b2 * f->lastIn[1];
-    out -= f->a2 * f->lastOut[1] + f->a1 * f->lastOut[0];
-    
-    f->lastIn[1] = f->lastIn[0];
-    f->lastIn[0] = in;
-    
-    f->lastOut[1] = f->lastOut[0];
-    f->lastOut[0] = out;
-    
-    return out;
-}
-
-void    tBiQuad_setResonance(tBiQuad* const ft, float freq, float radius, oBool normalize)
-{
-    _tBiQuad* f = *ft;
-    
-    if (freq < 0.0f)    freq = 0.0f;
-    if (freq > (leaf.sampleRate * 0.49f))   freq = leaf.sampleRate * 0.49f;
-    if (radius < 0.0f)  radius = 0.0f;
-    if (radius >= 1.0f)  radius = 1.0f;
-    
-    f->frequency = freq;
-    f->radius = radius;
-    f->normalize = normalize;
-    
-    f->a2 = radius * radius;
-    f->a1 = -2.0f * radius * cosf(freq * leaf.twoPiTimesInvSampleRate);
-    
-    if (normalize)
-    {
-        f->b0 = 0.5f - 0.5f * f->a2;
-        f->b1 = 0.0f;
-        f->b2 = -f->b0;
-    }
-}
-
-void    tBiQuad_setNotch(tBiQuad* const ft, float freq, float radius)
-{
-    _tBiQuad* f = *ft;
-    
-    if (freq < 0.0f)    freq = 0.0f;
-    if (freq > (leaf.sampleRate * 0.49f))   freq = leaf.sampleRate * 0.49f;
-    if (radius < 0.0f)  radius = 0.0f;
-    
-    f->b2 = radius * radius;
-    f->b1 = -2.0f * radius * cosf(freq * leaf.twoPiTimesInvSampleRate); // OPTIMIZE with LOOKUP or APPROXIMATION
-    
-    // Does not attempt to normalize filter gain.
-}
-
-void tBiQuad_setEqualGainZeros(tBiQuad* const ft)
-{
-    _tBiQuad* f = *ft;
-    f->b0 = 1.0f;
-    f->b1 = 0.0f;
-    f->b2 = -1.0f;
-}
-
-void    tBiQuad_setB0(tBiQuad* const ft, float b0)
-{
-    _tBiQuad* f = *ft;
-    f->b0 = b0;
-}
-
-void    tBiQuad_setB1(tBiQuad* const ft, float b1)
-{
-    _tBiQuad* f = *ft;
-    f->b1 = b1;
-}
-
-void    tBiQuad_setB2(tBiQuad* const ft, float b2)
-{
-    _tBiQuad* f = *ft;
-    f->b2 = b2;
-}
-
-void    tBiQuad_setA1(tBiQuad* const ft, float a1)
-{
-    _tBiQuad* f = *ft;
-    f->a1 = a1;
-}
-
-void    tBiQuad_setA2(tBiQuad* const ft, float a2)
-{
-    _tBiQuad* f = *ft;
-    f->a2 = a2;
-}
-
-void    tBiQuad_setCoefficients(tBiQuad* const ft, float b0, float b1, float b2, float a1, float a2)
-{
-    _tBiQuad* f = *ft;
-    f->b0 = b0;
-    f->b1 = b1;
-    f->b2 = b2;
-    f->a1 = a1;
-    f->a2 = a2;
-}
-
-void    tBiQuad_setGain(tBiQuad* const ft, float gain)
-{
-    _tBiQuad* f = *ft;
-    f->gain = gain;
-}
-
-void    tBiQuadSampleRateChanged(tBiQuad* const ft)
-{
-    _tBiQuad* f = *ft;
-    f->a2 = f->radius * f->radius;
-    f->a1 = -2.0f * f->radius * cosf(f->frequency * leaf.twoPiTimesInvSampleRate);
-    
-    if (f->normalize)
-    {
-        f->b0 = 0.5f - 0.5f * f->a2;
-        f->b1 = 0.0f;
-        f->b2 = -f->b0;
-    }
-}
-
-// Less efficient, more accurate version of SVF, in which cutoff frequency is taken as floating point Hz value and tanf
-// is calculated when frequency changes.
-void tSVF_init(tSVF* const svff, SVFType type, float freq, float Q)
-{
-    tSVF_initToPool     (svff, type, freq, Q, &leaf.mempool);
-
-    // or maybe this?
-    /*
-     * hp=1 bp=A/Q (where A is 10^(G/40) and G is gain in decibels) and lp = 1
-     */
-
-}
-
-void tSVF_free(tSVF* const svff)
-{
-    tSVF_freeFromPool     (svff, &leaf.mempool);
-}
-
-void    tSVF_initToPool     (tSVF* const svff, SVFType type, float freq, float Q, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSVF* svf = *svff = (_tSVF*) mpool_alloc(sizeof(_tSVF), m);
-
-    svf->type = type;
-
-    svf->ic1eq = 0;
-    svf->ic2eq = 0;
-    svf->Q = Q;
-    svf->cutoff = freq;
-    svf->g = tanf(PI * freq * leaf.invSampleRate);
-    svf->k = 1.0f/Q;
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g*svf->a1;
-    svf->a3 = svf->g*svf->a2;
-    svf->cH = 0.0f;
-    svf->cB = 0.0f;
-    svf->cL = 1.0f;
-
-    if (type == SVFTypeLowpass)
-    {
-        svf->cH = 0.0f;
-        svf->cB = 0.0f;
-        svf->cBK = 0.0f;
-        svf->cL = 1.0f;
-    }
-    else if (type == SVFTypeBandpass)
-    {
-        svf->cH = 0.0f;
-        svf->cB = 1.0f;
-        svf->cBK = 0.0f;
-        svf->cL = 0.0f;
-    }
-
-    else if (type == SVFTypeHighpass)
-    {
-        svf->cH = 1.0f;
-        svf->cB = 0.0f;
-        svf->cBK = -1.0f;
-        svf->cL = -1.0f;
-    }
-
-    else if (type == SVFTypeNotch)
-    {
-        svf->cH = 1.0f;
-        svf->cB = 0.0f;
-        svf->cBK = -1.0f;
-        svf->cL = 0.0f;
-    }
-
-
-    else if (type == SVFTypePeak)
-    {
-        svf->cH = 1.0f;
-        svf->cB = 0.0f;
-        svf->cBK = -1.0f;
-        svf->cL = -2.0f;
-    }
-}
-
-void    tSVF_freeFromPool   (tSVF* const svff, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSVF* svf = *svff;
-    
-    mpool_free((char*)svf, m);
-}
-
-float   tSVF_tick(tSVF* const svff, float v0)
-{
-    _tSVF* svf = *svff;
-    
-    float v1,v2,v3;
-    v3 = v0 - svf->ic2eq;
-    v1 = (svf->a1 * svf->ic1eq) + (svf->a2 * v3);
-    v2 = svf->ic2eq + (svf->a2 * svf->ic1eq) + (svf->a3 * v3);
-    svf->ic1eq = (2.0f * v1) - svf->ic1eq;
-    svf->ic2eq = (2.0f * v2) - svf->ic2eq;
-    
-    return (v0 * svf->cH) + (v1 * svf->cB) + (svf->k * v1 * svf->cBK) + (v2 * svf->cL);
-}
-
-void     tSVF_setFreq(tSVF* const svff, float freq)
-{
-    _tSVF* svf = *svff;
-    svf->cutoff = freq;
-    svf->g = tanf(PI * freq * leaf.invSampleRate);
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g * svf->a1;
-    svf->a3 = svf->g * svf->a2;
-}
-
-void     tSVF_setQ(tSVF* const svff, float Q)
-{
-    _tSVF* svf = *svff;
-    svf->Q = Q;
-    svf->k = 1.0f/Q;
-
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g * svf->a1;
-    svf->a3 = svf->g * svf->a2;
-}
-
-void    tSVF_setFreqAndQ(tSVF* const svff, float freq, float Q)
-{
-    _tSVF* svf = *svff;
-    svf->k = 1.0f/Q;
-    svf->g = tanf(PI * freq * leaf.invSampleRate);
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g * svf->a1;
-    svf->a3 = svf->g * svf->a2;
-}
-
-// Efficient version of tSVF where frequency is set based on 12-bit integer input for lookup in tanh wavetable.
-void   tEfficientSVF_init(tEfficientSVF* const svff, SVFType type, uint16_t input, float Q)
-{
-    _tEfficientSVF* svf = *svff = (_tEfficientSVF*) leaf_alloc(sizeof(_tEfficientSVF));
-    
-    svf->type = type;
-    
-    svf->ic1eq = 0;
-    svf->ic2eq = 0;
-    
-    svf->g = __leaf_table_filtertan[input];
-    svf->k = 1.0f/Q;
-    svf->a1 = 1.0f/(1.0f+svf->g*(svf->g+svf->k));
-    svf->a2 = svf->g*svf->a1;
-    svf->a3 = svf->g*svf->a2;
-}
-
-void tEfficientSVF_free(tEfficientSVF* const svff)
-{
-    _tEfficientSVF* svf = *svff;
-    
-    leaf_free((char*)svf);
-}
-
-void    tEfficientSVF_initToPool    (tEfficientSVF* const svff, SVFType type, uint16_t input, float Q, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEfficientSVF* svf = *svff = (_tEfficientSVF*) mpool_alloc(sizeof(_tEfficientSVF), m);
-    
-    svf->type = type;
-    
-    svf->ic1eq = 0;
-    svf->ic2eq = 0;
-    
-    svf->g = __leaf_table_filtertan[input];
-    svf->k = 1.0f/Q;
-    svf->a1 = 1.0f/(1.0f+svf->g*(svf->g+svf->k));
-    svf->a2 = svf->g*svf->a1;
-    svf->a3 = svf->g*svf->a2;
-}
-
-void    tEfficientSVF_freeFromPool  (tEfficientSVF* const svff, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tEfficientSVF* svf = *svff;
-    
-    mpool_free((char*)svf, m);
-}
-
-float   tEfficientSVF_tick(tEfficientSVF* const svff, float v0)
-{
-    _tEfficientSVF* svf = *svff;
-    
-    float v1,v2,v3;
-    v3 = v0 - svf->ic2eq;
-    v1 = (svf->a1 * svf->ic1eq) + (svf->a2 * v3);
-    v2 = svf->ic2eq + (svf->a2 * svf->ic1eq) + (svf->a3 * v3);
-    svf->ic1eq = (2.0f * v1) - svf->ic1eq;
-    svf->ic2eq = (2.0f * v2) - svf->ic2eq;
-    
-    if (svf->type == SVFTypeLowpass)        return v2;
-    else if (svf->type == SVFTypeBandpass)  return v1;
-    else if (svf->type == SVFTypeHighpass)  return v0 - (svf->k * v1) - v2;
-    else if (svf->type == SVFTypeNotch)     return v0 - (svf->k * v1);
-    else if (svf->type == SVFTypePeak)      return v0 - (svf->k * v1) - (2.0f * v2);
-    else                                    return 0.0f;
-    
-}
-
-void     tEfficientSVF_setFreq(tEfficientSVF* const svff, uint16_t input)
-{
-    _tEfficientSVF* svf = *svff;
-    
-    svf->g = __leaf_table_filtertan[input];
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g * svf->a1;
-    svf->a3 = svf->g * svf->a2;
-}
-
-void     tEfficientSVF_setQ(tEfficientSVF* const svff, float Q)
-{
-    _tEfficientSVF* svf = *svff;
-    
-    svf->k = 1.0f/Q;
-    svf->a1 = 1.0f/(1.0f + svf->g * (svf->g + svf->k));
-    svf->a2 = svf->g * svf->a1;
-    svf->a3 = svf->g * svf->a2;
-}
-
-/* Highpass */
-void    tHighpass_init(tHighpass* const ft, float freq)
-{
-    _tHighpass* f = *ft = (_tHighpass*) leaf_alloc(sizeof(_tHighpass));
-    
-    f->R = (1.0f - (freq * leaf.twoPiTimesInvSampleRate));
-    f->ys = 0.0f;
-    f->xs = 0.0f;
-    
-    f->frequency = freq;
-}
-
-void    tHighpass_free(tHighpass* const ft)
-{
-    _tHighpass* f = *ft;
-    
-    leaf_free((char*)f);
-}
-
-void    tHighpass_initToPool    (tHighpass* const ft, float freq, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tHighpass* f = *ft = (_tHighpass*) mpool_calloc(sizeof(_tHighpass), m);
-    
-    f->R = (1.0f - (freq * leaf.twoPiTimesInvSampleRate));
-    f->ys = 0.0f;
-    f->xs = 0.0f;
-    
-    f->frequency = freq;
-}
-
-void    tHighpass_freeFromPool  (tHighpass* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tHighpass* f = *ft;
-    
-    mpool_free((char*)f, m);
-}
-
-void     tHighpass_setFreq(tHighpass* const ft, float freq)
-{
-    _tHighpass* f = *ft;
-    f->frequency = freq;
-    f->R = (1.0f - (freq * leaf.twoPiTimesInvSampleRate));
-    
-}
-
-float     tHighpass_getFreq(tHighpass* const ft)
-{
-    _tHighpass* f = *ft;
-    return f->frequency;
-}
-
-// From JOS DC Blocker
-float   tHighpass_tick(tHighpass* const ft, float x)
-{
-    _tHighpass* f = *ft;
-    f->ys = x - f->xs + f->R * f->ys;
-    f->xs = x;
-    return f->ys;
-}
-
-void tHighpassSampleRateChanged(tHighpass* const ft)
-{
-    _tHighpass* f = *ft;
-    f->R = (1.0f-((f->frequency * 2.0f * 3.14f) * leaf.invSampleRate));
-}
-
-void tButterworth_init(tButterworth* const ft, int N, float f1, float f2)
-{
-    _tButterworth* f = *ft = (_tButterworth*) leaf_alloc(sizeof(_tButterworth));
-    
-    f->f1 = f1;
-    f->f2 = f2;
-    f->gain = 1.0f;
-    
-    f->N = N;
-    
-    if (f->N > NUM_SVF_BW) f->N = NUM_SVF_BW;
-    
-    for(int i = 0; i < N/2; ++i)
-    {
-        tSVF_init(&f->low[i], SVFTypeHighpass, f1, 0.5f/cosf((1.0f+2.0f*i)*PI/(2*N)));
-        tSVF_init(&f->high[i], SVFTypeLowpass, f2, 0.5f/cosf((1.0f+2.0f*i)*PI/(2*N)));
-    }
-}
-
-void tButterworth_free(tButterworth* const ft)
-{
-    _tButterworth* f = *ft;
-    
-    for(int i = 0; i < f->N/2; ++i)
-    {
-        tSVF_free(&f->low[i]);
-        tSVF_free(&f->high[i]);
-    }
-    
-    leaf_free((char*)f);
-}
-
-void    tButterworth_initToPool     (tButterworth* const ft, int N, float f1, float f2, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tButterworth* f = *ft = (_tButterworth*) mpool_alloc(sizeof(_tButterworth), m);
-    
-    f->f1 = f1;
-    f->f2 = f2;
-    f->gain = 1.0f;
-    
-    f->N = N;
-    
-    if (f->N > NUM_SVF_BW) f->N = NUM_SVF_BW;
-    
-    for(int i = 0; i < N/2; ++i)
-    {
-        tSVF_initToPool(&f->low[i], SVFTypeHighpass, f1, 0.5f/cosf((1.0f+2.0f*i)*PI/(2*N)), mp);
-        tSVF_initToPool(&f->high[i], SVFTypeLowpass, f2, 0.5f/cosf((1.0f+2.0f*i)*PI/(2*N)), mp);
-    }
-}
-
-void    tButterworth_freeFromPool   (tButterworth* const ft, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tButterworth* f = *ft;
-    
-    for(int i = 0; i < f->N/2; ++i)
-    {
-        tSVF_freeFromPool(&f->low[i], mp);
-        tSVF_freeFromPool(&f->high[i], mp);
-    }
-    
-    mpool_free((char*)f, m);
-}
-
-float tButterworth_tick(tButterworth* const ft, float samp)
-{
-    _tButterworth* f = *ft;
-    
-    for(int i = 0; i < ((f->N)/2); ++i)
-    {
-        samp = tSVF_tick(&f->low[i],samp);
-        samp = tSVF_tick(&f->high[i],samp);
-    }
-    return samp;
-}
-
-void tButterworth_setF1(tButterworth* const ft, float f1)
-{
-    _tButterworth* f = *ft;
-    
-    f->f1 = f1;
-    for(int i = 0; i < ((f->N)/2); ++i)        tSVF_setFreq(&f->low[i], f1);
-}
-
-void tButterworth_setF2(tButterworth* const ft, float f2)
-{
-    _tButterworth* f = *ft;
-    
-    f->f2 = f2;
-    for(int i = 0; i < ((f->N)/2); ++i)        tSVF_setFreq(&f->high[i], f2);
-}
-
-void tButterworth_setFreqs(tButterworth* const ft, float f1, float f2)
-{
-    _tButterworth* f = *ft;
-    
-    f->f1 = f1;
-    f->f2 = f2;
-    for(int i = 0; i < ((f->N)/2); ++i)
-    {
-        tSVF_setFreq(&f->low[i], f1);
-        tSVF_setFreq(&f->high[i], f2);
-    }
-}
-
-void	tFIR_init(tFIR* const firf, float* coeffs, int numTaps)
-{
-    _tFIR* fir = *firf = (_tFIR*) leaf_alloc(sizeof(_tFIR));
-    
-    fir->numTaps = numTaps;
-    fir->coeff = coeffs;
-    fir->past = (float*)leaf_alloc(sizeof(float) * fir->numTaps);
-    for (int i = 0; i < fir->numTaps; ++i) fir->past[i] = 0.0f;
-}
-
-void    tFIR_free(tFIR* const firf)
-{
-    _tFIR* fir = *firf;
-    
-    leaf_free((char*)fir->past);
-    leaf_free((char*)fir);
-}
-
-void    tFIR_initToPool     (tFIR* const firf, float* coeffs, int numTaps, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFIR* fir = *firf = (_tFIR*) mpool_alloc(sizeof(_tFIR), m);
-    
-    fir->numTaps = numTaps;
-    fir->coeff = coeffs;
-    fir->past = (float*) mpool_alloc(sizeof(float) * fir->numTaps, m);
-    for (int i = 0; i < fir->numTaps; ++i) fir->past[i] = 0.0f;
-}
-
-void    tFIR_freeFromPool   (tFIR* const firf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tFIR* fir = *firf;
-    
-    mpool_free((char*)fir->past, m);
-    mpool_free((char*)fir, m);
-}
-
-float	tFIR_tick(tFIR* const firf, float input)
-{
-    _tFIR* fir = *firf;
-    
-	fir->past[0] = input;
-	float y = 0.0f;
-	for (int i = 0; i < fir->numTaps; ++i) y += fir->past[i]*fir->coeff[i];
-	for (int i = fir->numTaps-1; i > 0; --i) fir->past[i] = fir->past[i-1];
-	return y;
-}
-
-//---------------------------------------------
-////
-/// Median filter implemented based on James McCartney's median filter in Supercollider,
-/// translated from a Gen~ port of the Supercollider code that I believe was made by Rodrigo Costanzo and which I got from PA Tremblay - JS
-
-
-void    tMedianFilter_init           (tMedianFilter* const f, int size)
-{
-	tMedianFilter_initToPool(f, size, &leaf.mempool);
-}
-void    tMedianFilter_free           (tMedianFilter* const f)
-{
-	tMedianFilter_freeFromPool(f, &leaf.mempool);
-}
-void    tMedianFilter_initToPool     (tMedianFilter* const mf, int size, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMedianFilter* f = *mf = (_tMedianFilter*) mpool_alloc(sizeof(_tMedianFilter), m);
-
-    f->size = size;
-    f->middlePosition = size / 2;
-	f->last = size - 1;
-	f->pos = -1;
-    f->val = (float*) mpool_alloc(sizeof(float) * size, m);
-    f->age = (int*) mpool_alloc(sizeof(int) * size, m);
-    for (int i = 0; i < f->size; ++i)
-	{
-    	f->val[i] = 0.0f;
-    	f->age[i] = i;
-	}
-
-}
-void    tMedianFilter_freeFromPool   (tMedianFilter* const mf, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMedianFilter* f = *mf;
-
-    mpool_free((char*)f->val, m);
-    mpool_free((char*)f->age, m);
-    mpool_free((char*)f, m);
-}
-
-float   tMedianFilter_tick           (tMedianFilter* const mf, float input)
-{
-	_tMedianFilter* f = *mf;
-
-	for(int i=0; i<f->size; i++) {
-		int thisAge = f->age[i];
-		if(thisAge == f->last) {
-			f->pos = i;
-		}
-		else {
-			thisAge++;
-			f->age[i] = thisAge;
-		}
-	}
-
-	while( f->pos!=0 ) {
-		float test = f->val[f->pos-1];
-		if(input < test) {
-			f->val[f->pos]=test;
-			f->age[f->pos]=f->age[f->pos-1];
-			f->pos -= 1;
-		} else {break;}
-	}
-
-	while(f->pos != f->last) {
-		float test = f->val[f->pos+1];
-		if( input > test) {
-			f->val[f->pos] = test;
-			f->age[f->pos] = f->age[f->pos+1];
-			f->pos += 1;
-		} else {break;}
-	}
-
-	f->val[f->pos] = input;
-	f->age[f->pos] = 0;
-
-	return  f->val[f->middlePosition];
-}
-
-/////
-
-void    tVZFilter_init           (tVZFilter* const vf, VZFilterType type, float freq, float bandWidth)
-{
-	tVZFilter_initToPool(vf, type, freq, bandWidth, &leaf.mempool);
-}
-
-void    tVZFilter_free           (tVZFilter* const vf)
-{
-	tVZFilter_freeFromPool(vf, &leaf.mempool);
-}
-void    tVZFilter_initToPool     (tVZFilter* const vf, VZFilterType type, float freq, float bandWidth, tMempool* const mp)
-{
-
-	 _tMempool* m = *mp;
-	 _tVZFilter* f = *vf = (_tVZFilter*) mpool_alloc(sizeof(_tVZFilter), m);
-	f->fc   = freq;
-	f->type = type;
-	f->G    = ONE_OVER_SQRT2;
-	f->invG    = 1.0f/ONE_OVER_SQRT2;
-	f->B    = bandWidth;
-	f->m    = 0.0f;
-	f->s1 = 0.0f;
-	f->s2 = 0.0f;
-	f->sr = leaf.sampleRate;
-	f->inv_sr = leaf.invSampleRate;
-	tVZFilter_calcCoeffs(vf);
-
-
-}
-void    tVZFilter_freeFromPool   (tVZFilter* const vf, tMempool* const mp)
-{
-	 _tMempool* m = *mp;
-		 _tVZFilter* f = *vf = (_tVZFilter*) mpool_alloc(sizeof(_tVZFilter), m);
-		 mpool_free((char*)f, m);
-}
-
-void 	tVZFilter_setSampleRate  (tVZFilter* const vf, float sampleRate)
-{
-	_tVZFilter* f = *vf;
-	f->sr = sampleRate;
-	f->inv_sr = 1.0f/sampleRate;
-}
-
-float   tVZFilter_tick           	(tVZFilter* const vf, float in)
-{
-	_tVZFilter* f = *vf;
-
-	float yL, yB, yH;
-
-	// compute highpass output via Eq. 5.1:
-	yH = (in - f->R2*f->s1 - f->g*f->s1 - f->s2) * f->h;
-
-	// compute bandpass output by applying 1st integrator to highpass output:
-	yB = tanhf(f->g*yH) + f->s1;
-	f->s1 = f->g*yH + yB; // state update in 1st integrator
-
-	// compute lowpass output by applying 2nd integrator to bandpass output:
-	yL = tanhf(f->g*yB) + f->s2;
-	f->s2 = f->g*yB + yL; // state update in 2nd integrator
-
-	//according to the Vadim paper, we could add saturation to this model by adding a tanh in the integration stage.
-	//
-	//seems like that might look like this:
-    // y = tanh(g*x) + s; // output computation
-    // s = g*x + y; // state update
-
-	//instead of this:
-    // y = g*x + s; // output computation
-    // s = g*x + y; // state update
-
-	return f->cL*yL + f->cB*yB + f->cH*yH;
-
-}
-
-float   tVZFilter_tickEfficient           	(tVZFilter* const vf, float in)
-{
-	_tVZFilter* f = *vf;
-
-	float yL, yB, yH;
-
-	// compute highpass output via Eq. 5.1:
-	yH = (in - f->R2*f->s1 - f->g*f->s1 - f->s2) * f->h;
-
-	// compute bandpass output by applying 1st integrator to highpass output:
-	yB = (f->g*yH) + f->s1;
-	f->s1 = f->g*yH + yB; // state update in 1st integrator
-
-	// compute lowpass output by applying 2nd integrator to bandpass output:
-	yL = (f->g*yB) + f->s2;
-	f->s2 = f->g*yB + yL; // state update in 2nd integrator
-
-	//according to the Vadim paper, we could add saturation to this model by adding a tanh in the integration stage.
-	//
-	//seems like that might look like this:
-    // y = tanh(g*x) + s; // output computation
-    // s = g*x + y; // state update
-
-	//instead of this:
-    // y = g*x + s; // output computation
-    // s = g*x + y; // state update
-
-	return f->cL*yL + f->cB*yB + f->cH*yH;
-
-}
-
-float   tVZFilter_tickEfficientBP           	(tVZFilter* const vf, float in)
-{
-	_tVZFilter* f = *vf;
-
-	float yL, yB, yH;
-
-	// compute highpass output via Eq. 5.1:
-	yH = (in - f->R2*f->s1 - f->g*f->s1 - f->s2) * f->h;
-
-	// compute bandpass output by applying 1st integrator to highpass output:
-	yB = (f->g*yH) + f->s1;
-	f->s1 = f->g*yH + yB; // state update in 1st integrator
-
-	// compute lowpass output by applying 2nd integrator to bandpass output:
-	yL = (f->g*yB) + f->s2;
-	f->s2 = f->g*yB + yL; // state update in 2nd integrator
-
-	//according to the Vadim paper, we could add saturation to this model by adding a tanh in the integration stage.
-	//
-	//seems like that might look like this:
-    // y = tanh(g*x) + s; // output computation
-    // s = g*x + y; // state update
-
-	//instead of this:
-    // y = g*x + s; // output computation
-    // s = g*x + y; // state update
-
-	return f->cL*yL + f->cB*yB + f->cH*yH;
-
-}
-
-
-void   tVZFilter_calcCoeffs           (tVZFilter* const vf)
-{
-
-	_tVZFilter* f = *vf;
-	f->g = tanf(PI * f->fc * f->inv_sr);  // embedded integrator gain (Fig 3.11)
-
-	  switch( f->type )
-	  {
-	  case Bypass:
-		{
-		  f->R2 = f->invG;  // can we use an arbitrary value here, for example R2 = 1?
-		  f->cL = 1.0f;
-		  f->cB = f->R2;
-		  f->cH = 1.0f;
-		}
-		break;
-	  case Lowpass:
-		{
-			f->R2 = f->invG;
-			f->cL = 1.0f; f->cB = 0.0f; f->cH = 0.0f;
-		}
-		break;
-	  case Highpass:
-		{
-			f->R2 = f->invG;
-			f->cL = 0.0f; f->cB = 0.0f; f->cH = 1.0f;
-		}
-		break;
-	  case BandpassSkirt:
-		{
-			f->R2 = f->invG;
-			f->cL = 0.0f; f->cB = 1.0f; f->cH = 0.0f;
-		}
-		break;
-	  case BandpassPeak:
-		{
-			f->R2 = 2.0f*tVZFilter_BandwidthToR(vf, f->B);
-			f->cL = 0.0f; f->cB = f->R2; f->cH = 0.0f;
-		}
-		break;
-	  case BandReject:
-		{
-			f->R2 = 2.0f*tVZFilter_BandwidthToR(vf, f->B);
-			f->cL = 1.0f; f->cB = 0.0f; f->cH = 1.0f;
-		}
-		break;
-	  case Bell:
-		{
-			float fl = f->fc*powf(2.0f, (-f->B)*0.5f); // lower bandedge frequency (in Hz)
-			float wl = tanf(PI*fl*f->inv_sr);   // warped radian lower bandedge frequency /(2*fs)
-			float r  = f->g/wl;
-			r *= r;    // warped frequency ratio wu/wl == (wc/wl)^2 where wu is the
-									   // warped upper bandedge, wc the center
-			f->R2 = 2.0f*sqrtf(((r*r+1.0f)/r-2.0f)/(4.0f*f->G));
-			f->cL = 1.0f; f->cB = f->R2*f->G; f->cH = 1.0f;
-		}
-		break;
-	  case Lowshelf:
-		{
-			float A = sqrtf(f->G);
-		  f->g /= sqrtf(A);               // scale SVF-cutoff frequency for shelvers
-		  f->R2 = 2*sinhf(f->B*logf(2.0f)*0.5f);
-		  f->cL = f->G; f->cB = f->R2*A; f->cH = 1.0f;
-		}
-		break;
-	  case Highshelf:
-		{
-		  float A = sqrtf(f->G);
-		  f->g *= sqrtf(A);               // scale SVF-cutoff frequency for shelvers
-		  f->R2 = 2.0f*sinhf(f->B*logf(2.0f)*0.5f);
-		  f->cL = 1.0f; f->cB = f->R2*A; f->cH = f->G;
-		}
-		break;
-	  case Allpass:
-		{
-			f->R2 = 2.0f*tVZFilter_BandwidthToR(vf, f->B);
-			f->cL = 1.0f; f->cB = -f->R2; f->cH = 1.0f;
-		}
-		break;
-
-		// experimental - maybe we must find better curves for cL, cB, cH:
-	  case Morph:
-		{
-			f->R2 = f->invG;
-		  float x  = 2.0f*f->m-1.0f;
-
-		  f->cL = maximum(-x, 0.0f); /*cL *= cL;*/
-		  f->cH = minimum( x, 0.0f); /*cH *= cH;*/
-		  f->cB = 1.0f-x*x;
-
-			// bottom line: we need to test different versions for how they feel when tweaking the
-			// morph parameter
-
-		  // this scaling ensures constant magnitude at the cutoff point (we divide the coefficients by
-		  // the magnitude response value at the cutoff frequency and scale back by the gain):
-		  float s = f->G * sqrtf((f->R2*f->R2) / (f->cL*f->cL + f->cB*f->cB + f->cH*f->cH - 2.0f*f->cL*f->cH));
-		  f->cL *= s; f->cB *= s; f->cH *= s;
-		}
-		break;
-
-	  }
-
-	  f->h = 1.0f / (1.0f + f->R2*f->g + f->g*f->g);  // factor for feedback precomputation
-}
-
-
-void   tVZFilter_setBandwidth           	(tVZFilter* const vf, float B)
-{
-	_tVZFilter* f = *vf;
-	f->B = LEAF_clip(0.0f, B, 100.0f);
-	tVZFilter_calcCoeffs(vf);
-}
-void   tVZFilter_setFreq           (tVZFilter* const vf, float freq)
-{
-	_tVZFilter* f = *vf;
-	f->fc = LEAF_clip(0.0f, freq, 0.5f*leaf.sampleRate);
-	tVZFilter_calcCoeffs(vf);
-}
-void   tVZFilter_setFreqAndBandwidth           (tVZFilter* const vf, float freq, float bw)
-{
-	_tVZFilter* f = *vf;
-	f->B = LEAF_clip(0.0f,bw, 100.0f);
-	f->fc = LEAF_clip(0.0f, freq, 0.5f*leaf.sampleRate);
-	tVZFilter_calcCoeffs(vf);
-}
-
-void   tVZFilter_setGain          		(tVZFilter* const vf, float gain)
-{
-	_tVZFilter* f = *vf;
-	f->G = LEAF_clip(0.000001f, gain, 100.0f);
-	f->invG = 1.0f/f->G;
-	tVZFilter_calcCoeffs(vf);
-}
-
-void   tVZFilter_setMorph          		(tVZFilter* const vf, float morph)
-{
-	_tVZFilter* f = *vf;
-	f->m = LEAF_clip(0.0f, morph, 1.0f);
-	tVZFilter_calcCoeffs(vf);
-}
-
-void tVZFilter_setType         		(tVZFilter* const vf, VZFilterType type)
-{
-	_tVZFilter* f = *vf;
-	f->type = type;
-	tVZFilter_calcCoeffs(vf);
-}
-
-float tVZFilter_BandwidthToR(tVZFilter* const vf, float B)
-{
-	_tVZFilter* f = *vf;
-  float fl = f->fc*powf(2.0f, -B*0.5f); // lower bandedge frequency (in Hz)
-  float gl = tanf(PI*fl*f->inv_sr);   // warped radian lower bandedge frequency /(2*fs)
-  float r  = gl/f->g;            // ratio between warped lower bandedge- and center-frequencies
-							   // unwarped: r = pow(2, -B/2) -> approximation for low
-							   // center-frequencies
-  return sqrtf((1.0f-r*r)*(1.0f-r*r)/(4.0f*r*r));
-}
-
-
-
-void    tDiodeFilter_init           (tDiodeFilter* const vf, float cutoff, float resonance)
-{
-	tDiodeFilter_initToPool(vf, cutoff, resonance, &leaf.mempool);
-}
-
-void    tDiodeFilter_free           (tDiodeFilter* const vf)
-{
-	tDiodeFilter_freeFromPool(vf, &leaf.mempool);
-}
-void    tDiodeFilter_initToPool     (tDiodeFilter* const vf, float cutoff, float resonance, tMempool* const mp)
-{
-
-	 _tMempool* m = *mp;
-	 _tDiodeFilter* f = *vf = (_tDiodeFilter*) mpool_alloc(sizeof(_tDiodeFilter), m);
-	 // initialization (the resonance factor is between 0 and 8 according to the article)
-	 f->f = tan(PI * cutoff/leaf.sampleRate);
-	 f->r = (7.f * resonance + 0.5f);
-	 f->Vt = 0.5f;
-	 f->n = 1.836f;
-	 f->zi = 0.0f; //previous input value
-	 f->gamma = f->Vt*f->n;
-	 f->s0 = 0.01f;
-	 f->s1 = 0.02f;
-	 f->s2 = 0.03f;
-	 f->s3 = 0.04f;
-	 f->g0inv = 1.f/(2.f*f->Vt);
-	 f->g1inv = 1.f/(2.f*f->gamma);
-	 f->g2inv = 1.f/(6.f*f->gamma);
-
-
-}
-void    tDiodeFilter_freeFromPool   (tDiodeFilter* const vf, tMempool* const mp)
-{
-	 _tMempool* m = *mp;
-	 _tDiodeFilter* f = *vf = (_tDiodeFilter*) mpool_alloc(sizeof(_tDiodeFilter), m);
-	 mpool_free((char*)f, m);
-}
-
-float tanhXdX(float x)
-{
-    float a = x*x;
-    // IIRC I got this as Pade-approx for tanh(sqrt(x))/sqrt(x)
-    return ((a + 105.0f)*a + 945.0f) / ((15.0f*a + 420.0f)*a + 945.0f);
-}
-
-float   tDiodeFilter_tick           	(tDiodeFilter* const vf, float in)
-{
-	_tDiodeFilter* f = *vf;
-
-	// the input x[n+1] is given by 'in', and x[n] by zi
-	// input with half delay
-	float ih = 0.5f * (in + f->zi);
-
-	// evaluate the non-linear factors
-	float t0 = f->f*tanhXdX((ih - f->r * f->s3)*f->g0inv)*f->g0inv;
-	float t1 = f->f*tanhXdX((f->s1-f->s0)*f->g1inv)*f->g1inv;
-	float t2 = f->f*tanhXdX((f->s2-f->s1)*f->g1inv)*f->g1inv;
-	float t3 = f->f*tanhXdX((f->s3-f->s2)*f->g1inv)*f->g1inv;
-	float t4 = f->f*tanhXdX((f->s3)*f->g2inv)*f->g2inv;
-
-
-
-	// This formula gives the result for y3 thanks to MATLAB
-	float y3 = (f->s2 + f->s3 + t2*(f->s1 + f->s2 + f->s3 + t1*(f->s0 + f->s1 + f->s2 + f->s3 + t0*in)) + t1*(2.0f*f->s2 + 2.0f*f->s3))*t3 + f->s3 + 2.0f*f->s3*t1 + t2*(2.0f*f->s3 + 3.0f*f->s3*t1);
-//    if (isnan(y3))
-//    {
-//        __HAL_TIM_SET_COMPARE(&htim3, TIM_CHANNEL_2, 400);
-//    }
-	float tempy3denom = (t4 + t1*(2.0f*t4 + 4.0f) + t2*(t4 + t1*(t4 + f->r*t0 + 4.0f) + 3.0f) + 2.0f)*t3 + t4 + t1*(2.0f*t4 + 2.0f) + t2*(2.0f*t4 + t1*(3.0f*t4 + 3.0f) + 2.0f) + 1.0f;
-//    if (isnan(tempy3denom))
-//    {
-//        __HAL_TIM_SET_COMPARE(&htim3, TIM_CHANNEL_2, 400);
-//    }
-	if (tempy3denom == 0.0f)
-	{
-		tempy3denom = 0.000001f;
-	}
-	y3 = y3 / tempy3denom;
-//    if (isnan(y3))
-//    {
-//        __HAL_TIM_SET_COMPARE(&htim3, TIM_CHANNEL_2, 400);
-//    }
-	if (t1 == 0.0f)
-	{
-		t1 = 0.000001f;
-	}
-	if (t2 == 0.0f)
-	{
-		t2 = 0.000001f;
-	}
-	if (t3 == 0.0f)
-	{
-		t3 = 0.000001f;
-	}
-	// Other outputs
-	float y2 = (f->s3 - (1+t4+t3)*y3) / (-t3);
-	float y1 = (f->s2 - (1+t3+t2)*y2 + t3*y3) / (-t2);
-	float y0 = (f->s1 - (1+t2+t1)*y1 + t2*y2) / (-t1);
-	float xx = (in - f->r*y3);
-
-	// update state
-	f->s0 += 2.0f * (t0*xx + t1*(y1-y0));
-//    if (isnan(f->s0))
-//    {
-//        __HAL_TIM_SET_COMPARE(&htim3, TIM_CHANNEL_2, 400);
-//    }
-
-//    if (isinf(f->s0))
-//    {
-//        __HAL_TIM_SET_COMPARE(&htim3, TIM_CHANNEL_2, 400);
-//    }
-	f->s1 += 2.0f * (t2*(y2-y1) - t1*(y1-y0));
-	f->s2 += 2.0f * (t3*(y3-y2) - t2*(y2-y1));
-	f->s3 += 2.0f * (-t4*(y3) - t3*(y3-y2));
-
-	f->zi = in;
-	return y3*f->r;
-
-}
-
-
-
-void    tDiodeFilter_setFreq     (tDiodeFilter* const vf, float cutoff)
-{
-	 _tDiodeFilter* f = *vf;
-	 f->f = tanf(PI * LEAF_clip(10.0f, cutoff, 20000.0f)*leaf.invSampleRate);
-}
-
-
-void    tDiodeFilter_setQ     (tDiodeFilter* const vf, float resonance)
-{
-	 _tDiodeFilter* f = *vf;
-	 f->r = LEAF_clip(0.5, (7.f * resonance + 0.5f), 8.0f);
-
-}
-
--- a/LEAF/Src/leaf-instruments.c
+++ /dev/null
@@ -1,706 +1,0 @@
-/*==============================================================================
-
-    leaf-instruments.c
-    Created: 30 Nov 2018 10:24:21am
-    Author:  airship
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-instruments.h"
-
-#else
-
-#include "../Inc/leaf-instruments.h"
-
-#endif
-
-// ----------------- COWBELL ----------------------------//
-
-void t808Cowbell_init(t808Cowbell* const cowbellInst, int useStick)
-{
-    _t808Cowbell* cowbell = *cowbellInst = (_t808Cowbell*) leaf_alloc(sizeof(_t808Cowbell));
-    
-    tSquare_init(&cowbell->p[0]);
-    tSquare_setFreq(&cowbell->p[0], 540.0f);
-    
-    tSquare_init(&cowbell->p[1]);
-    tSquare_setFreq(&cowbell->p[1], 1.48148f * 540.0f);
-    
-    cowbell->oscMix = 0.5f;
-    
-    tSVF_init(&cowbell->bandpassOsc, SVFTypeBandpass, 2500, 1.0f);
-    
-    tSVF_init(&cowbell->bandpassStick, SVFTypeBandpass, 1800, 1.0f);
-    
-    tEnvelope_init(&cowbell->envGain, 5.0f, 100.0f, OFALSE);
-    
-    tEnvelope_init(&cowbell->envFilter, 5.0, 100.0f, OFALSE);
-    
-    tHighpass_init(&cowbell->highpass, 1000.0f);
-    
-    tNoise_init(&cowbell->stick, WhiteNoise);
-    
-    tEnvelope_init(&cowbell->envStick, 5.0f, 5.0f, 0);
-    
-    cowbell->useStick = useStick;
-}
-
-void t808Cowebell_free(t808Cowbell* const cowbellInst)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    
-    tSquare_free(&cowbell->p[0]);
-    tSquare_free(&cowbell->p[1]);
-    tSVF_free(&cowbell->bandpassOsc);
-    tSVF_free(&cowbell->bandpassStick);
-    tEnvelope_free(&cowbell->envGain);
-    tEnvelope_free(&cowbell->envFilter);
-    tHighpass_free(&cowbell->highpass);
-    tNoise_free(&cowbell->stick);
-    tEnvelope_free(&cowbell->envStick);
-    leaf_free((char*)cowbell);
-}
-
-void        t808Cowbell_initToPool      (t808Cowbell* const cowbellInst, int useStick, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Cowbell* cowbell = *cowbellInst = (_t808Cowbell*) mpool_alloc(sizeof(_t808Cowbell), m);
-    
-    tSquare_initToPool(&cowbell->p[0], mp);
-    tSquare_setFreq(&cowbell->p[0], 540.0f);
-    
-    tSquare_initToPool(&cowbell->p[1], mp);
-    tSquare_setFreq(&cowbell->p[1], 1.48148f * 540.0f);
-    
-    cowbell->oscMix = 0.5f;
-    
-    tSVF_initToPool(&cowbell->bandpassOsc, SVFTypeBandpass, 2500, 1.0f, mp);
-    
-    tSVF_initToPool(&cowbell->bandpassStick, SVFTypeBandpass, 1800, 1.0f, mp);
-    
-    tEnvelope_initToPool(&cowbell->envGain, 5.0f, 100.0f, OFALSE, mp);
-    
-    tEnvelope_initToPool(&cowbell->envFilter, 5.0, 100.0f, OFALSE, mp);
-    
-    tHighpass_initToPool(&cowbell->highpass, 1000.0f, mp);
-    
-    tNoise_initToPool(&cowbell->stick, WhiteNoise, mp);
-    
-    tEnvelope_initToPool(&cowbell->envStick, 5.0f, 5.0f, 0, mp);
-    
-    cowbell->useStick = useStick;
-}
-
-void        t808Cowbell_freeFromPool    (t808Cowbell* const cowbellInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Cowbell* cowbell = *cowbellInst;
-    
-    tSquare_freeFromPool(&cowbell->p[0], mp);
-    tSquare_freeFromPool(&cowbell->p[1], mp);
-    tSVF_freeFromPool(&cowbell->bandpassOsc, mp);
-    tSVF_freeFromPool(&cowbell->bandpassStick, mp);
-    tEnvelope_freeFromPool(&cowbell->envGain, mp);
-    tEnvelope_freeFromPool(&cowbell->envFilter, mp);
-    tHighpass_freeFromPool(&cowbell->highpass, mp);
-    tNoise_freeFromPool(&cowbell->stick, mp);
-    tEnvelope_freeFromPool(&cowbell->envStick, mp);
-    mpool_free((char*)cowbell, m);
-}
-
-void t808Cowbell_on(t808Cowbell* const cowbellInst, float vel)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    
-    tEnvelope_on(&cowbell->envGain, vel);
-    
-    if (cowbell->useStick)
-        tEnvelope_on(&cowbell->envStick,vel);
-}
-
-float t808Cowbell_tick(t808Cowbell* const cowbellInst)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    
-    float sample = 0.0f;
-    
-    // Mix oscillators.
-    sample = (cowbell->oscMix * tSquare_tick(&cowbell->p[0])) + ((1.0f-cowbell->oscMix) * tSquare_tick(&cowbell->p[1]));
-    
-    // Filter dive and filter.
-    tSVF_setFreq(&cowbell->bandpassOsc, cowbell->filterCutoff + 1000.0f * tEnvelope_tick(&cowbell->envFilter));
-    sample = tSVF_tick(&cowbell->bandpassOsc,sample);
-    
-    sample *= (0.9f * tEnvelope_tick(&cowbell->envGain));
-    
-    if (cowbell->useStick)
-        sample += (0.1f * tEnvelope_tick(&cowbell->envStick) * tSVF_tick(&cowbell->bandpassStick, tNoise_tick(&cowbell->stick)));
-
-    
-    sample = tHighpass_tick(&cowbell->highpass, sample);
-    
-    return sample;
-}
-
-void t808Cowbell_setDecay(t808Cowbell* const cowbellInst, float decay)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    tEnvelope_setDecay(&cowbell->envGain,decay);
-}
-
-void t808Cowbell_setHighpassFreq(t808Cowbell *cowbellInst, float freq)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    tHighpass_setFreq(&cowbell->highpass,freq);
-}
-
-void t808Cowbell_setBandpassFreq(t808Cowbell* const cowbellInst, float freq)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    cowbell->filterCutoff = freq;
-}
-
-void t808Cowbell_setFreq(t808Cowbell* const cowbellInst, float freq)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    tSquare_setFreq(&cowbell->p[0],freq);
-    tSquare_setFreq(&cowbell->p[1],1.48148f*freq);
-}
-
-void t808Cowbell_setOscMix(t808Cowbell* const cowbellInst, float oscMix)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    cowbell->oscMix = oscMix;
-}
-
-void t808Cowbell_setStick(t808Cowbell* const cowbellInst, int useStick)
-{
-    _t808Cowbell* cowbell = *cowbellInst;
-    cowbell->useStick = useStick;
-}
-
-// ----------------- HIHAT ----------------------------//
-
-void t808Hihat_init(t808Hihat* const hihatInst)
-{
-    _t808Hihat* hihat = *hihatInst = (_t808Hihat*) leaf_alloc(sizeof(_t808Hihat));
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tSquare_init(&hihat->p[i]);
-    }
-    
-    tNoise_init(&hihat->stick, PinkNoise);
-    tNoise_init(&hihat->n, WhiteNoise);
-    
-    // need to fix SVF to be generic
-    tSVF_init(&hihat->bandpassStick, SVFTypeBandpass,2500.0f,1.2f);
-    tSVF_init(&hihat->bandpassOsc, SVFTypeBandpass,3500.0f,0.3f);
-    
-    tEnvelope_init(&hihat->envGain, 0.0f, 50.0f, OFALSE);
-    tEnvelope_init(&hihat->envStick, 0.0f, 7.0f, OFALSE);
-    
-    
-    tHighpass_init(&hihat->highpass, 7000.0f);
-    
-    hihat->freq = 40.0f;
-    hihat->stretch = 0.0f;
-    
-    tSquare_setFreq(&hihat->p[0], 2.0f * hihat->freq);
-    tSquare_setFreq(&hihat->p[1], 3.00f * hihat->freq);
-    tSquare_setFreq(&hihat->p[2], 4.16f * hihat->freq);
-    tSquare_setFreq(&hihat->p[3], 5.43f * hihat->freq);
-    tSquare_setFreq(&hihat->p[4], 6.79f * hihat->freq);
-    tSquare_setFreq(&hihat->p[5], 8.21f * hihat->freq);
-}
-
-void t808Hihat_free(t808Hihat* const hihatInst)
-{
-    _t808Hihat* hihat = *hihatInst;
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tSquare_free(&hihat->p[i]);
-    }
-    
-    tNoise_free(&hihat->stick);
-    tNoise_free(&hihat->n);
-    
-    // need to fix SVF to be generic
-    tSVF_free(&hihat->bandpassStick);
-    tSVF_free(&hihat->bandpassOsc);
-    tEnvelope_free(&hihat->envGain);
-    tEnvelope_free(&hihat->envStick);
-    
-    tHighpass_free(&hihat->highpass);
-    
-    leaf_free((char*)hihat);
-}
-
-void    t808Hihat_initToPool  (t808Hihat* const hihatInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Hihat* hihat = *hihatInst = (_t808Hihat*) mpool_alloc(sizeof(_t808Hihat), m);
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tSquare_initToPool(&hihat->p[i], mp);
-    }
-    
-    tNoise_initToPool(&hihat->stick, PinkNoise, mp);
-    tNoise_initToPool(&hihat->n, WhiteNoise, mp);
-    
-    // need to fix SVF to be generic
-    tSVF_initToPool(&hihat->bandpassStick, SVFTypeBandpass,2500.0f,1.2f, mp);
-    tSVF_initToPool(&hihat->bandpassOsc, SVFTypeBandpass,3500.0f,0.3f, mp);
-    
-    tEnvelope_initToPool(&hihat->envGain, 0.0f, 50.0f, OFALSE, mp);
-    tEnvelope_initToPool(&hihat->envStick, 0.0f, 7.0f, OFALSE, mp);
-    
-    
-    tHighpass_initToPool(&hihat->highpass, 7000.0f, mp);
-    
-    hihat->freq = 40.0f;
-    hihat->stretch = 0.0f;
-    
-    tSquare_setFreq(&hihat->p[0], 2.0f * hihat->freq);
-    tSquare_setFreq(&hihat->p[1], 3.00f * hihat->freq);
-    tSquare_setFreq(&hihat->p[2], 4.16f * hihat->freq);
-    tSquare_setFreq(&hihat->p[3], 5.43f * hihat->freq);
-    tSquare_setFreq(&hihat->p[4], 6.79f * hihat->freq);
-    tSquare_setFreq(&hihat->p[5], 8.21f * hihat->freq);
-}
-
-void    t808Hihat_freeFromPool  (t808Hihat* const hihatInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Hihat* hihat = *hihatInst;
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tSquare_freeFromPool(&hihat->p[i], mp);
-    }
-    
-    tNoise_freeFromPool(&hihat->stick, mp);
-    tNoise_freeFromPool(&hihat->n, mp);
-    
-    // need to fix SVF to be generic
-    tSVF_freeFromPool(&hihat->bandpassStick, mp);
-    tSVF_freeFromPool(&hihat->bandpassOsc, mp);
-    tEnvelope_freeFromPool(&hihat->envGain, mp);
-    tEnvelope_freeFromPool(&hihat->envStick, mp);
-    
-    tHighpass_freeFromPool(&hihat->highpass, mp);
-    
-    mpool_free((char*)hihat, m);
-}
-
-void t808Hihat_on(t808Hihat* const hihatInst, float vel)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tEnvelope_on(&hihat->envGain, vel);
-    tEnvelope_on(&hihat->envStick, vel);
-}
-
-void t808Hihat_setOscNoiseMix(t808Hihat* const hihatInst, float oscNoiseMix)
-{
-    _t808Hihat* hihat = *hihatInst;
-    hihat->oscNoiseMix = oscNoiseMix;
-}
-
-float t808Hihat_tick(t808Hihat* const hihatInst)
-{
-    _t808Hihat* hihat = *hihatInst;
-    
-    float sample = 0.0f;
-    float gainScale = 0.1666f;
-
-    float myNoise = tNoise_tick(&hihat->n);
-
-	tSquare_setFreq(&hihat->p[0], ((2.0f + hihat->stretch) * hihat->freq));
-	tSquare_setFreq(&hihat->p[1], ((3.00f + hihat->stretch) * hihat->freq));
-	tSquare_setFreq(&hihat->p[2], ((4.16f + hihat->stretch) * hihat->freq));
-	tSquare_setFreq(&hihat->p[3], ((5.43f + hihat->stretch) * hihat->freq));
-	tSquare_setFreq(&hihat->p[4], ((6.79f + hihat->stretch) * hihat->freq));
-	tSquare_setFreq(&hihat->p[5], ((8.21f + hihat->stretch) * hihat->freq));
-
-    for (int i = 0; i < 6; i++)
-    {
-        sample += tSquare_tick(&hihat->p[i]);
-    }
-    
-    sample *= gainScale;
-    
-    sample = (hihat->oscNoiseMix * sample) + ((1.0f-hihat->oscNoiseMix) * myNoise);
-    
-    sample = tSVF_tick(&hihat->bandpassOsc, sample);
-    
-    float myGain = tEnvelope_tick(&hihat->envGain);
-    sample *= (myGain*myGain);//square the output gain envelope
-    sample = tHighpass_tick(&hihat->highpass, sample);
-    sample += ((0.5f * tEnvelope_tick(&hihat->envStick)) * tSVF_tick(&hihat->bandpassStick, tNoise_tick(&hihat->stick)));
-    sample = tanhf(sample * 2.0f);
-
-    return sample;
-}
-
-void t808Hihat_setDecay(t808Hihat* const hihatInst, float decay)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tEnvelope_setDecay(&hihat->envGain,decay);
-}
-
-void t808Hihat_setHighpassFreq(t808Hihat* const hihatInst, float freq)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tHighpass_setFreq(&hihat->highpass,freq);
-}
-
-void t808Hihat_setStretch(t808Hihat* const hihatInst, float stretch)
-{
-    _t808Hihat* hihat = *hihatInst;
-    hihat->stretch = stretch;
-}
-
-void t808Hihat_setFM(t808Hihat* const hihatInst, float FM_amount)
-{
-    _t808Hihat* hihat = *hihatInst;
-    hihat->FM_amount = FM_amount;
-}
-
-void t808Hihat_setOscBandpassFreq(t808Hihat* const hihatInst, float freq)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tSVF_setFreq(&hihat->bandpassOsc,freq);
-}
-
-void t808Hihat_setOscBandpassQ(t808Hihat* const hihatInst, float Q)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tSVF_setQ(&hihat->bandpassOsc,Q);
-}
-
-void t808Hihat_setStickBandPassFreq(t808Hihat* const hihatInst, float freq)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tSVF_setFreq(&hihat->bandpassStick,freq);
-}
-
-void t808Hihat_setStickBandPassQ(t808Hihat* const hihatInst, float Q)
-{
-    _t808Hihat* hihat = *hihatInst;
-    tSVF_setQ(&hihat->bandpassStick,Q);
-}
-
-void t808Hihat_setOscFreq(t808Hihat* const hihatInst, float freq)
-{
-    _t808Hihat* hihat = *hihatInst;
-    hihat->freq = freq;
-}
-
-// ----------------- SNARE ----------------------------//
-
-void t808Snare_init(t808Snare* const snareInst)
-{
-    _t808Snare* snare = *snareInst = (_t808Snare*) leaf_alloc(sizeof(_t808Snare));
-    
-    float ratio[2] = {1.0, 1.5};
-    for (int i = 0; i < 2; i++)
-    {
-        tTriangle_init(&snare->tone[i]);
-        
-        tTriangle_setFreq(&snare->tone[i], ratio[i] * 400.0f);
-        tSVF_init(&snare->toneLowpass[i], SVFTypeLowpass, 4000, 1.0f);
-        tEnvelope_init(&snare->toneEnvOsc[i], 0.0f, 50.0f, OFALSE);
-        tEnvelope_init(&snare->toneEnvGain[i], 1.0f, 150.0f, OFALSE);
-        tEnvelope_init(&snare->toneEnvFilter[i], 1.0f, 2000.0f, OFALSE);
-        
-        snare->toneGain[i] = 0.5f;
-    }
-    
-    snare->tone1Freq = ratio[0] * 100.0f;
-    snare->tone2Freq = ratio[1] * 100.0f;
-    snare->noiseFilterFreq = 3000.0f;
-    tNoise_init(&snare->noiseOsc, WhiteNoise);
-    tSVF_init(&snare->noiseLowpass, SVFTypeLowpass, 12000.0f, 0.8f);
-    tEnvelope_init(&snare->noiseEnvGain, 0.0f, 100.0f, OFALSE);
-    tEnvelope_init(&snare->noiseEnvFilter, 0.0f, 1000.0f, OFALSE);
-    snare->noiseGain = 1.0f;
-}
-
-void        t808Snare_free                  (t808Snare* const snareInst)
-{
-    _t808Snare* snare = *snareInst;
-    
-    for (int i = 0; i < 2; i++)
-    {
-        tTriangle_free(&snare->tone[i]);
-        tSVF_free(&snare->toneLowpass[i]);
-        tEnvelope_free(&snare->toneEnvOsc[i]);
-        tEnvelope_free(&snare->toneEnvGain[i]);
-        tEnvelope_free(&snare->toneEnvFilter[i]);
-    }
-    
-    tNoise_free(&snare->noiseOsc);
-    tSVF_free(&snare->noiseLowpass);
-    tEnvelope_free(&snare->noiseEnvGain);
-    tEnvelope_free(&snare->noiseEnvFilter);
-    
-    leaf_free((char*)snare);
-}
-
-void    t808Snare_initToPool    (t808Snare* const snareInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Snare* snare = *snareInst = (_t808Snare*) mpool_alloc(sizeof(_t808Snare), m);
-    
-    float ratio[2] = {1.0, 1.5};
-    for (int i = 0; i < 2; i++)
-    {
-        tTriangle_initToPool(&snare->tone[i], mp);
-        
-        tTriangle_setFreq(&snare->tone[i], ratio[i] * 400.0f);
-        tSVF_initToPool(&snare->toneLowpass[i], SVFTypeLowpass, 4000, 1.0f, mp);
-        tEnvelope_initToPool(&snare->toneEnvOsc[i], 0.0f, 50.0f, OFALSE, mp);
-        tEnvelope_initToPool(&snare->toneEnvGain[i], 1.0f, 150.0f, OFALSE, mp);
-        tEnvelope_initToPool(&snare->toneEnvFilter[i], 1.0f, 2000.0f, OFALSE, mp);
-        
-        snare->toneGain[i] = 0.5f;
-    }
-    
-    snare->tone1Freq = ratio[0] * 100.0f;
-    snare->tone2Freq = ratio[1] * 100.0f;
-    snare->noiseFilterFreq = 3000.0f;
-    tNoise_initToPool(&snare->noiseOsc, WhiteNoise, mp);
-    tSVF_initToPool(&snare->noiseLowpass, SVFTypeLowpass, 12000.0f, 0.8f, mp);
-    tEnvelope_initToPool(&snare->noiseEnvGain, 0.0f, 100.0f, OFALSE, mp);
-    tEnvelope_initToPool(&snare->noiseEnvFilter, 0.0f, 1000.0f, OFALSE, mp);
-    snare->noiseGain = 1.0f;
-}
-
-void    t808Snare_freeFromPool  (t808Snare* const snareInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Snare* snare = *snareInst;
-    
-    for (int i = 0; i < 2; i++)
-    {
-        tTriangle_freeFromPool(&snare->tone[i], mp);
-        tSVF_freeFromPool(&snare->toneLowpass[i], mp);
-        tEnvelope_freeFromPool(&snare->toneEnvOsc[i], mp);
-        tEnvelope_freeFromPool(&snare->toneEnvGain[i], mp);
-        tEnvelope_freeFromPool(&snare->toneEnvFilter[i], mp);
-    }
-    
-    tNoise_freeFromPool(&snare->noiseOsc, mp);
-    tSVF_freeFromPool(&snare->noiseLowpass, mp);
-    tEnvelope_freeFromPool(&snare->noiseEnvGain, mp);
-    tEnvelope_freeFromPool(&snare->noiseEnvFilter, mp);
-    
-    mpool_free((char*)snare, m);
-}
-
-void t808Snare_on(t808Snare* const snareInst, float vel)
-{
-    _t808Snare* snare = *snareInst;
-    
-    for (int i = 0; i < 2; i++)
-    {
-        tEnvelope_on(&snare->toneEnvOsc[i], vel);
-        tEnvelope_on(&snare->toneEnvGain[i], vel);
-        tEnvelope_on(&snare->toneEnvFilter[i], vel);
-    }
-    
-    tEnvelope_on(&snare->noiseEnvGain, vel);
-    tEnvelope_on(&snare->noiseEnvFilter, vel);
-}
-
-void t808Snare_setTone1Freq(t808Snare* const snareInst, float freq)
-{
-    _t808Snare* snare = *snareInst;
-    snare->tone1Freq = freq;
-    tTriangle_setFreq(&snare->tone[0], freq);
-}
-
-void t808Snare_setTone2Freq(t808Snare* const snareInst, float freq)
-{
-    _t808Snare* snare = *snareInst;
-    snare->tone2Freq = freq;
-    tTriangle_setFreq(&snare->tone[1],freq);
-}
-
-void t808Snare_setTone1Decay(t808Snare* const snareInst, float decay)
-{
-    _t808Snare* snare = *snareInst;
-    tEnvelope_setDecay(&snare->toneEnvGain[0],decay);
-}
-
-void t808Snare_setTone2Decay(t808Snare* const snareInst, float decay)
-{
-    _t808Snare* snare = *snareInst;
-    tEnvelope_setDecay(&snare->toneEnvGain[1],decay);
-}
-
-void t808Snare_setNoiseDecay(t808Snare* const snareInst, float decay)
-{
-    _t808Snare* snare = *snareInst;
-    tEnvelope_setDecay(&snare->noiseEnvGain,decay);
-}
-
-void t808Snare_setToneNoiseMix(t808Snare* const snareInst, float toneNoiseMix)
-{
-    _t808Snare* snare = *snareInst;
-    snare->toneNoiseMix = toneNoiseMix;
-}
-
-void t808Snare_setNoiseFilterFreq(t808Snare* const snareInst, float noiseFilterFreq)
-{
-    _t808Snare* snare = *snareInst;
-    snare->noiseFilterFreq = noiseFilterFreq;
-}
-
-void t808Snare_setNoiseFilterQ(t808Snare* const snareInst, float noiseFilterQ)
-{
-    _t808Snare* snare = *snareInst;
-    tSVF_setQ(&snare->noiseLowpass, noiseFilterQ);
-}
-
-static float tone[2];
-
-float t808Snare_tick(t808Snare* const snareInst)
-{
-    _t808Snare* snare = *snareInst;
-    
-    for (int i = 0; i < 2; i++)
-    {
-        tTriangle_setFreq(&snare->tone[i], snare->tone1Freq + (20.0f * tEnvelope_tick(&snare->toneEnvOsc[i])));
-        tone[i] = tTriangle_tick(&snare->tone[i]);
-        
-        tSVF_setFreq(&snare->toneLowpass[i], 2000.0f + (500.0f * tEnvelope_tick(&snare->toneEnvFilter[i])));
-        tone[i] = tSVF_tick(&snare->toneLowpass[i], tone[i]) * tEnvelope_tick(&snare->toneEnvGain[i]);
-    }
-    
-    float noise = tNoise_tick(&snare->noiseOsc);
-    tSVF_setFreq(&snare->noiseLowpass, snare->noiseFilterFreq + (1000.0f * tEnvelope_tick(&snare->noiseEnvFilter)));
-    noise = tSVF_tick(&snare->noiseLowpass, noise) * tEnvelope_tick(&snare->noiseEnvGain);
-    
-    float sample = (snare->toneNoiseMix)*(tone[0] * snare->toneGain[0] + tone[1] * snare->toneGain[1]) + (1.0f-snare->toneNoiseMix) * (noise * snare->noiseGain);
-    sample = tanhf(sample * 2.0f);
-    return sample;
-}
-
-// ----------------- KICK ----------------------------//
-
-void        t808Kick_init        			(t808Kick* const kickInst)
-{
-    _t808Kick* kick = *kickInst = (_t808Kick*) leaf_alloc(sizeof(_t808Kick));
-    
-	tCycle_init(&kick->tone);
-	kick->toneInitialFreq = 40.0f;
-	kick->sighAmountInHz = 7.0f;
-	kick->chirpRatioMinusOne = 3.3f;
-	tCycle_setFreq(&kick->tone, 50.0f);
-	tSVF_init(&kick->toneLowpass, SVFTypeLowpass, 2000.0f, 0.5f);
-	tEnvelope_init(&kick->toneEnvOscChirp, 0.0f, 20.0f, OFALSE);
-	tEnvelope_init(&kick->toneEnvOscSigh, 0.0f, 2500.0f, OFALSE);
-	tEnvelope_init(&kick->toneEnvGain, 0.0f, 800.0f, OFALSE);
-	tNoise_init(&kick->noiseOsc, PinkNoise);
-	tEnvelope_init(&kick->noiseEnvGain, 0.0f, 1.0f, OFALSE);
-	kick->noiseGain = 0.3f;
-}
-
-void        t808Kick_free                  (t808Kick* const kickInst)
-{
-    _t808Kick* kick = *kickInst;
-    
-	tCycle_free(&kick->tone);
-	tSVF_free(&kick->toneLowpass);
-	tEnvelope_free(&kick->toneEnvOscChirp);
-	tEnvelope_free(&kick->toneEnvOscSigh);
-	tEnvelope_free(&kick->toneEnvGain);
-	tNoise_free(&kick->noiseOsc);
-	tEnvelope_free(&kick->noiseEnvGain);
-    
-    leaf_free((char*)kick);
-}
-
-void    t808Kick_initToPool (t808Kick* const kickInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Kick* kick = *kickInst = (_t808Kick*) mpool_alloc(sizeof(_t808Kick), m);
-    
-    tCycle_initToPool(&kick->tone, mp);
-    kick->toneInitialFreq = 40.0f;
-    kick->sighAmountInHz = 7.0f;
-    kick->chirpRatioMinusOne = 3.3f;
-    tCycle_setFreq(&kick->tone, 50.0f);
-    tSVF_initToPool(&kick->toneLowpass, SVFTypeLowpass, 2000.0f, 0.5f, mp);
-    tEnvelope_initToPool(&kick->toneEnvOscChirp, 0.0f, 20.0f, OFALSE, mp);
-    tEnvelope_initToPool(&kick->toneEnvOscSigh, 0.0f, 2500.0f, OFALSE, mp);
-    tEnvelope_initToPool(&kick->toneEnvGain, 0.0f, 800.0f, OFALSE, mp);
-    tNoise_initToPool(&kick->noiseOsc, PinkNoise, mp);
-    tEnvelope_initToPool(&kick->noiseEnvGain, 0.0f, 1.0f, OFALSE, mp);
-    kick->noiseGain = 0.3f;
-}
-
-void    t808Kick_freeFromPool   (t808Kick* const kickInst, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _t808Kick* kick = *kickInst;
-    
-    tCycle_freeFromPool(&kick->tone, mp);
-    tSVF_freeFromPool(&kick->toneLowpass, mp);
-    tEnvelope_freeFromPool(&kick->toneEnvOscChirp, mp);
-    tEnvelope_freeFromPool(&kick->toneEnvOscSigh, mp);
-    tEnvelope_freeFromPool(&kick->toneEnvGain, mp);
-    tNoise_freeFromPool(&kick->noiseOsc, mp);
-    tEnvelope_freeFromPool(&kick->noiseEnvGain, mp);
-    
-    mpool_free((char*)kick, m);
-}
-
-float       t808Kick_tick                  (t808Kick* const kickInst)
-{
-    _t808Kick* kick = *kickInst;
-    
-	tCycle_setFreq(&kick->tone, (kick->toneInitialFreq * (1.0f + (kick->chirpRatioMinusOne * tEnvelope_tick(&kick->toneEnvOscChirp)))) + (kick->sighAmountInHz * tEnvelope_tick(&kick->toneEnvOscSigh)));
-	float sample = tCycle_tick(&kick->tone) * tEnvelope_tick(&kick->toneEnvGain);
-	sample+= tNoise_tick(&kick->noiseOsc) * tEnvelope_tick(&kick->noiseEnvGain);
-	//add distortion here
-	sample = tSVF_tick(&kick->toneLowpass, sample);
-	return sample;
-}
-
-void        t808Kick_on                    (t808Kick* const kickInst, float vel)
-{
-    _t808Kick* kick = *kickInst;
-	tEnvelope_on(&kick->toneEnvOscChirp, vel);
-	tEnvelope_on(&kick->toneEnvOscSigh, vel);
-	tEnvelope_on(&kick->toneEnvGain, vel);
-	tEnvelope_on(&kick->noiseEnvGain, vel);
-
-}
-void        t808Kick_setToneFreq          (t808Kick* const kickInst, float freq)
-{
-    _t808Kick* kick = *kickInst;
-	kick->toneInitialFreq = freq;
-
-}
-
-void        t808Kick_setToneDecay         (t808Kick* const kickInst, float decay)
-{
-    _t808Kick* kick = *kickInst;
-	tEnvelope_setDecay(&kick->toneEnvGain,decay);
-	tEnvelope_setDecay(&kick->toneEnvGain,decay * 3.0f);
-}
-
-void        t808Kick_setNoiseDecay         (t808Kick* const kickInst, float decay);
-void        t808Kick_setSighAmount         (t808Kick* const kickInst, float sigh);
-void        t808Kick_setChirpAmount         (t808Kick* const kickInst, float chirp);
-void        t808Kick_setToneNoiseMix       (t808Kick* const kickInst, float toneNoiseMix);
-void        t808Kick_setNoiseFilterFreq    (t808Kick* const kickInst, float noiseFilterFreq);
-void        t808Kick_setNoiseFilterQ       (t808Kick* const kickInst, float noiseFilterQ);
-
-
--- a/LEAF/Src/leaf-math.c
+++ /dev/null
@@ -1,655 +1,0 @@
-/*==============================================================================
- 
- leaf-math.c
- Created: 22 Jan 2017 7:02:56pm
- Author:  Michael R Mulshine
- 
- ==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-math.h"
-#include "..\Inc\leaf-tables.h"
-
-#else
-
-#include "../Inc/leaf-math.h"
-#include "../Inc/leaf-tables.h"
-
-#endif
-
-
-#define EXPONENTIAL_TABLE_SIZE 65536
-
-#define log10f_fast(x)  (log2f_approx(x)*0.3010299956639812f)
-
-// This is a fast approximation to log2() found on http://openaudio.blogspot.com/2017/02/faster-log10-and-pow.html credited to this post https://community.arm.com/developer/tools-software/tools/f/armds-forum/4292/cmsis-dsp-new-functionality-proposal/22621#22621
-// Y = C[0]*F*F*F + C[1]*F*F + C[2]*F + C[3] + E;
-float log2f_approx(float X) {
-    float Y, F;
-    int E;
-    F = frexpf(fabsf(X), &E);
-    Y = 1.23149591368684f;
-    Y *= F;
-    Y += -4.11852516267426f;
-    Y *= F;
-    Y += 6.02197014179219f;
-    Y *= F;
-    Y += -3.13396450166353f;
-    Y += E;
-    return(Y);
-}
-
-float interpolate3max(float *buf, const int peakindex)
-{
-    float a = buf[peakindex-1];
-    float b = buf[peakindex];
-    float c = buf[peakindex+1];
-    float realpeak;
-    
-    realpeak = b + (float)0.125 * (c - a) * (c - a) / ((float)2. * b - a - c);
-    
-    return(realpeak);
-}
-
-float interpolate3phase(float *buf, const int peakindex)
-{
-    float a = buf[peakindex-1];
-    float b = buf[peakindex];
-    float c = buf[peakindex+1];
-    float fraction;
-    
-    fraction = ((float)0.5 * (c - a)) / ((float)2. * b - a - c);
-    
-    return(fraction);
-}
-
-// alternative implementation for abs()
-// REQUIRES: 32 bit integers
-int fastabs_int(int in){
-    unsigned int r;
-    int const mask = in >> 31;
-    
-    r = (in ^ mask) - mask;
-    
-    return (r);
-}
-
-// alternative implementation for abs()
-// REQUIRES: 32 bit floats
-float fastabsf(float f)
-{
-    union
-    {
-        float f;
-        unsigned int ui;
-    }alias;
-    
-    alias.f = f;
-    alias.ui &= 0x7fffffff;
-    return alias.f;
-}
-
-double fastexp(double x) {
-    x = 1.0 + (x * 0.0009765625);
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x;
-    return x;
-}
-
-float fastexpf(float x) {
-    x = 1.0f + (x * 0.0009765625f);
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x;
-    return x;
-}
-
-double fasterexp(double x) {
-    x = 1.0 + (x * 0.00390625);
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x; x *= x; x *= x;
-    return x;
-}
-
-float fasterexpf(float x) {
-    x = 1.0f + (x * 0.00390625f);
-    x *= x; x *= x; x *= x; x *= x;
-    x *= x; x *= x; x *= x; x *= x;
-    return x;
-}
-
-// fast floating-point exp2 function taken from Robert Bristow Johnson's
-// post in the music-dsp list on Date: Tue, 02 Sep 2014 16:50:11 -0400
-float fastexp2f(float x)
-{
-    if (x >= -127.0)
-    {
-        float accumulator, xPower;
-        union {float f; int32_t i;} xBits;
-        
-        xBits.i = (int32_t)(x + 4096.0f) - 4096L;               /* integer part */
-        x -= (float)(xBits.i);                                             /* fractional part */
-        
-        accumulator = 1.0f + 0.69303212081966f*x;
-        xPower = x*x;
-        accumulator += 0.24137976293709f*xPower;
-        xPower *= x;
-        accumulator += 0.05203236900844f*xPower;
-        xPower *= x;
-        accumulator += 0.01355574723481f*xPower;
-        
-        xBits.i += 127;                                                    /* bias integer part */
-        xBits.i<<= 23;                                                     /* move biased int part into exponent bits */
-        
-        return accumulator * xBits.f;
-    }
-    else
-    {
-        return 0.0f;
-    }
-}
-
-
-float fastPowf(float a, float b) {
-    union 
-    { 
-        float d; int x; 
-    } 
-    u = { a };
-
-    u.x = (int)(b * (u.x - 1064866805) + 1064866805);
-    return u.d;
-}
-
-
-double fastPow(double a, double b) {
-    union {
-        double d;
-        int x[2];
-    } u = { a };
-
-    u.x[1] = (int)(b * (u.x[1] - 1072632447) + 1072632447);
-    
-    u.x[0] = 0;
-    return u.d;
-}
-
-
-
-
-
-/*
- you pass in a float array to get back two indexes representing the volumes of the left (index 0) and right (index 1) channels
- when t is -1, volumes[0] = 0, volumes[1] = 1
- when t = 0, volumes[0] = 0.707, volumes[1] = 0.707 (equal-power cross fade)
- when t = 1, volumes[0] = 1, volumes[1] = 0
- */
-
-void LEAF_crossfade(float fade, float* volumes) {
-    volumes[0] = sqrtf(0.5f * (1.0f + fade));
-    volumes[1] = sqrtf(0.5f * (1.0f - fade));
-}
-
-// dope af
-float LEAF_chebyshevT(float in, int n){
-    if (n == 0) return 1;
-    else if (n == 1) return in;
-    else return 2.0f * in * LEAF_chebyshevT(in, n-1) - LEAF_chebyshevT(in, n-2);
-}
-
-#if !(_WIN32 || _WIN64)
-float LEAF_CompoundChebyshevT(float in, int n, float* amps){
-    float T[n+1];
-    T[0] = 1.0f;
-    T[1] = in;
-    for (int i = 2; i <= n; ++i)
-        T[i] = 2*in*T[i-1] - T[i-2];
-    float out = 0;
-    float amp = 0;
-    for (int i = 0; i < n; ++i){
-        out += amps[i]*T[i+1];
-        amp += amps[i];
-    }
-    return out / amp ;
-}
-#endif
-
-float LEAF_frequencyToMidi(float f)
-{
-    return (69.0f + 12.0f * log2f(f * INV_440));
-}
-
-// Jones shaper
-float LEAF_shaper(float input, float m_drive)
-{
-    float fx = input * 2.0f;    // prescale
-    float w, c, xc, xc2, xc4;
-    
-    xc = LEAF_clip(-SQRT8, fx, SQRT8);
-    xc2 = xc*xc;
-    c = 0.5f*fx*(3.0f - (xc2));
-    xc4 = xc2 * xc2;
-    w = (1.0f - xc2*0.25f + xc4*0.015625f) * WSCALE;
-    float shaperOut = w*(c+ 0.05f*xc2)*(m_drive + 0.75f);
-    shaperOut *= 0.5f;    // post_scale
-    return shaperOut;
-}
-
-// round input to nearest rnd
-float LEAF_round (float input, float rnd)
-{
-    rnd = fabsf(rnd);
-    
-    if (rnd <= 0.0000001f) return input;
-    
-    float scale = 1.f / rnd;
-    
-    return roundf(input * scale) / scale;
-}
-
-
-
-float LEAF_bitwise_xor(float input, uint32_t op)
-{
-    union unholy_t unholy;
-    unholy.f = input;
-    unholy.i = (unholy.i ^ op);
-    
-    return unholy.f;
-}
-
-float LEAF_reedTable(float input, float offset, float slope)
-{
-    float output = offset + (slope * input);
-    if ( output > 1.0f) output = 1.0f;
-    if ( output < -1.0f) output = -1.0f;
-    return output;
-}
-
-float   LEAF_softClip(float val, float thresh)
-{
-    float x;
-    
-    if(val > thresh)
-    {
-        x = thresh / val;
-        return (1.0f - x) * (1.0f - thresh) + thresh;
-    }
-    else if(val < -thresh)
-    {
-        x = -thresh / val;
-        return -((1.0f - x) * (1.0f - thresh) + thresh);
-    }
-    else
-    {
-        return val;
-    }
-}
-
-float   LEAF_clip(float min, float val, float max)
-{
-    float tempmin = min;
-    float tempmax = max;
-    if (min > max)
-    {
-        tempmin = max;
-        tempmax = min;
-    }
-    if (val < tempmin) {
-        return tempmin;
-    } else if (val > tempmax) {
-        return tempmax;
-    } else {
-        return val;
-    }
-}
-
-int   LEAF_clipInt(int min, int val, int max)
-{
-    int tempmin = min;
-    int tempmax = max;
-    if (min > max)
-    {
-        tempmin = max;
-        tempmax = min;
-    }
-    if (val < tempmin) {
-        return tempmin;
-    } else if (val > tempmax) {
-        return tempmax;
-    } else {
-        return val;
-    }
-}
-
-oBool     LEAF_isPrime(uint64_t number )
-{
-    if ( number == 2 ) return OTRUE;
-    if ( number & 1 ) {
-        for ( int i=3; i<(int)sqrt((double)number)+1; i+=2 )
-            if ( (number % i) == 0 ) return OFALSE;
-        return OTRUE; // prime
-    }
-    else return OFALSE; // even
-}
-
-// Adapted from MusicDSP: http://www.musicdsp.org/showone.php?id=238
-float LEAF_tanh(float x)
-{
-    
-    if( x < -3.0f )
-        return -1.0f;
-    else if( x > 3.0f )
-        return 1.0f;
-    else
-        return x * ( 27.0f + x * x ) / ( 27.0f + 9.0f * x * x );
-}
-
-
-void LEAF_generate_sine(float* buffer, int size)
-{
-    float phase;
-    for (int i = 0; i < size; i++)
-    {
-        phase = (float) i / (float) size;
-        buffer[i] = sinf(phase * TWO_PI);
-    }
-}
-
-void LEAF_generate_sawtooth(float* buffer, float basefreq, int size)
-{
-    int harmonic = 1;
-    float phase = 0.0f;
-    float freq = harmonic * basefreq;
-    float amp;
-    
-    while (freq < (leaf.sampleRate * 0.5))
-    {
-        amp = 1.0f / harmonic;
-        for (int i = 0; i < size; i++)
-        {
-            phase = (float) i / (float) size;
-            buffer[i] += (amp * sinf(harmonic * phase * TWO_PI));
-        }
-        
-        harmonic++;
-        freq = harmonic * basefreq;
-    }
-}
-
-
-void LEAF_generate_triangle(float* buffer, float basefreq, int size)
-{
-    int harmonic = 1;
-    float phase = 0.0f;
-    float freq = harmonic * basefreq;
-    float amp = 1.0f;
-    
-    int count = 0;
-    float mult = 1.0f;
-    
-    while (freq < (leaf.sampleRate * 0.5))
-    {
-        amp = 1.0f / (float)(harmonic * harmonic);
-        
-        if (count % 2)  mult = -1.0f;
-        else            mult =  1.0f;
-        
-        for (int i = 0; i < size; i++)
-        {
-            phase = (float) i / (float) size;
-            buffer[i] += (mult * amp * sinf(harmonic * phase * TWO_PI));
-        }
-        
-        count++;
-        harmonic += 2;
-        freq = harmonic * basefreq;
-    }
-}
-
-void LEAF_generate_square(float* buffer, float basefreq, int size)
-{
-    int harmonic = 1;
-    float phase = 0.0f;
-    float freq = harmonic * basefreq;
-    float amp = 1.0f;
-    
-    while (freq < (leaf.sampleRate * 0.5))
-    {
-        amp = 1.0f / (float)(harmonic);
-        
-        for (int i = 0; i < size; i++)
-        {
-            phase = (float) i / (float) size;
-            buffer[i] += (amp * sinf(harmonic * phase * TWO_PI));
-        }
-        
-        harmonic += 2;
-        freq = harmonic * basefreq;
-    }
-}
-
-
-//0.001 base gives a good curve that goes from 1 to near zero
-void LEAF_generate_exp(float* buffer, float base, float start, float end, float offset, int size)
-{
-	float increment = (end - start) / (float)size;
-	float x = start;
-	for (int i = 0; i < size; i++)
-	{
-		buffer[i] = powf(base, x) + offset;
-		x += increment;
-    }
-}
-
-
-// http://www.martin-finke.de/blog/articles/audio-plugins-018-polyblep-oscillator/
-// http://www.kvraudio.com/forum/viewtopic.php?t=375517
-// t = phase, dt = inc, assuming 0-1 phase
-// assumes discontinuity at 0, so offset inputs as needed
-float LEAF_poly_blep(float t, float dt)
-{
-    // 0 <= t < 1
-    if (t < dt) {
-        t /= dt;
-        return t+t - t*t - 1.0f;
-    }
-    // -1 < t < 0
-    else if (t > 1.0f - dt) {
-        t = (t - 1.0f) / dt;
-        return t*t + t+t + 1.0f;
-    }
-    // 0 otherwise
-    else return 0.0f;
-    
-//
-//    float y = 0.0f;
-//    if (t < 2.0f * dt)
-//    {
-//        float x = t / dt;
-//        float u = 2.0f - x;
-//        u *= u;
-//        u *= u;
-//        y += u;
-//        if (t < dt) {
-//            float v = 1.0f - x;
-//            v *= v;
-//            v *= v;
-//            y -= 4.0f * v;
-//        }
-//    }
-//    else if (t > 1.0f - (2.0f * dt))
-//    {
-//        float x = (t - 1.0f) / dt;
-//        float u = 2.0f - x;
-//        u *= u;
-//        u *= u;
-//        y += u;
-//        if (t > 1.0f - dt) {
-//            float v = 1.0f - x;
-//            v *= v;
-//            v *= v;
-//            y += 4.0f * v;
-//        }
-//    }
-//    return y / 12.0f;
-}
-
-
-//-----------------------------------------------------------------------------
-// name: mtof()
-// desc: midi to freq, from PD source
-//-----------------------------------------------------------------------------
-float LEAF_midiToFrequency(float f)
-{
-    if( f <= -1500.0f ) return (0);
-    else if( f > 1499.0f ) return (LEAF_midiToFrequency(1499.0f));
-    else return ( powf(2.0f, (f - 69.0f) * 0.083333333333333f) * 440.0f );
-}
-
-
-// alpha, [0.0, 1.0]
-float LEAF_interpolate_hermite (float A, float B, float C, float D, float alpha)
-{
-    alpha = LEAF_clip(0.0f, alpha, 1.0f);
-    
-    float a = -A*0.5f + (3.0f*B)*0.5f - (3.0f*C)*0.5f + D*0.5f;
-    float b = A - (5.0f*B)*0.5f + 2.0f*C - D * 0.5f;
-    float c = -A*0.5f + C*0.5f;
-    float d = B;
-    
-    return a*alpha*alpha*alpha + b*alpha*alpha + c*alpha + d;
-}
-
-
-// from http://www.musicdsp.org/archive.php?classid=5#93
-//xx is alpha (fractional part of sample value)
-//grabbed this from Tom Erbe's Delay pd code
-float LEAF_interpolate_hermite_x(float yy0, float yy1, float yy2, float yy3, float xx)
-{
-    // 4-point, 3rd-order Hermite (x-form)
-    float c0 = yy1;
-    float c1 = 0.5f * (yy2 - yy0);
-    float y0my1 = yy0 - yy1;
-    float c3 = (yy1 - yy2) + 0.5f * (yy3 - y0my1 - yy2);
-    float c2 = y0my1 + c1 - c3;
-    
-    return ((c3 * xx + c2) * xx + c1) * xx + c0;
-}
-
-// alpha, [0.0, 1.0]
-float LEAF_interpolation_linear (float A, float B, float alpha)
-{
-    alpha = LEAF_clip(0.0f, alpha, 1.0f);
-    
-    float omAlpha = 1.0f - alpha;
-    
-    // First 1/2 of interpolation
-    float out = A * omAlpha;
-    
-    out += B * alpha;
-    
-    return out;
-}
-
-#define LOGTEN 2.302585092994
-
-float mtof(float f)
-{
-    if (f <= -1500.0f) return(0);
-    else if (f > 1499.0f) return(mtof(1499.0f));
-    else return (8.17579891564f * expf(0.0577622650f * f));
-}
-
-float fast_mtof(float f)
-{
-    return (8.17579891564f * fastexpf(0.0577622650f * f));
-}
-
-float faster_mtof(float f)
-{
-    return (8.17579891564f * fastexpf(0.0577622650f * f));
-}
-
-float ftom(float f)
-{
-    return (f > 0 ? 17.3123405046f * logf(.12231220585f * f) : -1500.0f);
-}
-
-float powtodb(float f)
-{
-    if (f <= 0) return (0);
-    else
-    {
-        float val = 100.0f + 10.0f/LOGTEN * logf(f);
-        return (val < 0.0f ? 0.0f : val);
-    }
-}
-
-float rmstodb(float f)
-{
-    if (f <= 0) return (0);
-    else
-    {
-        float val = 100 + 20.f/LOGTEN * log(f);
-        return (val < 0 ? 0 : val);
-    }
-}
-
-float dbtopow(float f)
-{
-    if (f <= 0)
-        return(0);
-    else
-    {
-        if (f > 870.0f)
-            f = 870.0f;
-        return (expf((LOGTEN * 0.1f) * (f-100.0f)));
-    }
-}
-
-float dbtorms(float f)
-{
-    if (f <= 0)
-        return(0);
-    else
-    {
-        if (f > 485.0f)
-            f = 485.0f;
-    }
-    return (expf((LOGTEN * 0.05f) * (f-100.0f)));
-}
-
-
-float atodb(float a)
-{
-    return 20.0f*log10f(a);
-}
-
-float dbtoa(float db)
-{
-    return powf(10.0f, db * 0.05f);
-    //return expf(0.115129254649702f * db); //faster version from http://openaudio.blogspot.com/2017/02/faster-log10-and-pow.html
-}
-
-
-float fastdbtoa(float db)
-{
-    //return powf(10.0f, db * 0.05f);
-    return expf(0.115129254649702f * db); //faster version from http://openaudio.blogspot.com/2017/02/faster-log10-and-pow.html
-}
-
-
-float maximum (float num1, float num2)
-{
-    return (num1 > num2 ) ? num1 : num2;
-}
-
-float minimum (float num1, float num2)
-{
-    return (num1 < num2 ) ? num1 : num2;
-}
-
-
--- a/LEAF/Src/leaf-mempool.c
+++ /dev/null
@@ -1,412 +1,0 @@
-
-/** mpool source significantly modified by Mike Mulshine, Jeff Snyder, et al., Princeton University Music Department **/
-
-/**
- In short, mpool is distributed under so called "BSD license",
- 
- Copyright (c) 2009-2010 Tatsuhiko Kubo <cubicdaiya@gmail.com>
- All rights reserved.
- 
- Redistribution and use in source and binary forms, with or without modification,
- are permitted provided that the following conditions are met:
- 
- * Redistributions of source code must retain the above copyright notice,
- this list of conditions and the following disclaimer.
- 
- * Redistributions in binary form must reproduce the above copyright notice,
- this list of conditions and the following disclaimer in the documentation
- and/or other materials provided with the distribution.
- 
- * Neither the name of the authors nor the names of its contributors
- may be used to endorse or promote products derived from this software
- without specific prior written permission.
- 
- THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
- "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
- LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
- A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
- OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
- SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED
- TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
- PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
- LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
- NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
- SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
- */
-
-/* written with C99 style */
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-mempool.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-mempool.h"
-#include "../leaf.h"
-
-#endif
-
-/**
- * private function
- */
-static inline size_t mpool_align(size_t size);
-static inline mpool_node_t* create_node(char* block_location, mpool_node_t* next, mpool_node_t* prev, size_t size);
-static inline void delink_node(mpool_node_t* node);
-
-/**
- * create memory pool
- */
-void mpool_create (char* memory, size_t size, _tMempool* pool)
-{
-    leaf.header_size = mpool_align(sizeof(mpool_node_t));
-    
-    pool->mpool = (char*)memory;
-    pool->usize  = 0;
-    pool->msize  = size;
-    
-    pool->head = create_node(pool->mpool, NULL, NULL, pool->msize-leaf.header_size);
-    
-    /*
-    for (int i = 0; i < pool->head->size; i++)
-    {
-        memory[i+leaf.header_size]=0;
-    }
-    */
-    //is zeroing out the memory necessary? This takes a long time on large pools - JS
-}
-
-void leaf_pool_init(char* memory, size_t size)
-{
-    mpool_create(memory, size, &leaf._mempool);
-    
-    leaf.mempool = &leaf._mempool;
-}
-
-/**
- * allocate memory from memory pool
- */
-char* mpool_alloc(size_t asize, _tMempool* pool)
-{
-    // If the head is NULL, the mempool is full
-    if (pool->head == NULL)
-    {
-        leaf_mempool_overrun();
-        return NULL;
-    }
-    
-    // Should we alloc the first block large enough or check all blocks and pick the one closest in size?
-    size_t size_to_alloc = mpool_align(asize);
-    mpool_node_t* node_to_alloc = pool->head;
-    
-    // Traverse the free list for a large enough block
-    while (node_to_alloc->size < size_to_alloc)
-    {
-        node_to_alloc = node_to_alloc->next;
-        
-        // If we reach the end of the free list, there
-        // are no blocks large enough, return NULL
-        if (node_to_alloc == NULL)
-        {
-            leaf_mempool_overrun();
-            return NULL;
-        }
-    }
-    
-    // Create a new node after the node to be allocated if there is enough space
-    mpool_node_t* new_node;
-    size_t leftover = node_to_alloc->size - size_to_alloc;
-    node_to_alloc->size = size_to_alloc;
-    if (leftover > leaf.header_size)
-    {
-        long offset = (char*) node_to_alloc - (char*) pool->mpool;
-        offset += leaf.header_size + node_to_alloc->size;
-        new_node = create_node(&pool->mpool[offset],
-                               node_to_alloc->next,
-                               node_to_alloc->prev,
-                               leftover - leaf.header_size);
-    }
-    else
-    {
-        // Add any leftover space to the allocated node to avoid fragmentation
-        node_to_alloc->size += leftover;
-        
-        new_node = node_to_alloc->next;
-    }
-    
-    // Update the head if we are allocating the first node of the free list
-    // The head will be NULL if there is no space left
-    if (pool->head == node_to_alloc)
-    {
-        pool->head = new_node;
-    }
-    
-    // Remove the allocated node from the free list
-    delink_node(node_to_alloc);
-    
-    pool->usize += leaf.header_size + node_to_alloc->size;
-    
-    if (leaf.clearOnAllocation > 0)
-    {
-        char* new_pool = (char*)node_to_alloc->pool;
-        for (int i = 0; i < node_to_alloc->size; i++) new_pool[i] = 0;
-    }
-    
-    // Return the pool of the allocated node;
-    return node_to_alloc->pool;
-}
-
-
-/**
- * allocate memory from memory pool and also clear that memory to be blank
- */
-char* mpool_calloc(size_t asize, _tMempool* pool)
-{
-    // If the head is NULL, the mempool is full
-    if (pool->head == NULL)
-    {
-        leaf_mempool_overrun();
-        return NULL;
-    }
-    
-    // Should we alloc the first block large enough or check all blocks and pick the one closest in size?
-    size_t size_to_alloc = mpool_align(asize);
-    mpool_node_t* node_to_alloc = pool->head;
-    
-    // Traverse the free list for a large enough block
-    while (node_to_alloc->size < size_to_alloc)
-    {
-        node_to_alloc = node_to_alloc->next;
-        
-        // If we reach the end of the free list, there
-        // are no blocks large enough, return NULL
-        if (node_to_alloc == NULL)
-        {
-            leaf_mempool_overrun();
-            return NULL;
-        }
-    }
-    
-    // Create a new node after the node to be allocated if there is enough space
-    mpool_node_t* new_node;
-    size_t leftover = node_to_alloc->size - size_to_alloc;
-    node_to_alloc->size = size_to_alloc;
-    if (leftover > leaf.header_size)
-    {
-        long offset = (char*) node_to_alloc - (char*) pool->mpool;
-        offset += leaf.header_size + node_to_alloc->size;
-        new_node = create_node(&pool->mpool[offset],
-                               node_to_alloc->next,
-                               node_to_alloc->prev,
-                               leftover - leaf.header_size);
-    }
-    else
-    {
-        // Add any leftover space to the allocated node to avoid fragmentation
-        node_to_alloc->size += leftover;
-        
-        new_node = node_to_alloc->next;
-    }
-    
-    // Update the head if we are allocating the first node of the free list
-    // The head will be NULL if there is no space left
-    if (pool->head == node_to_alloc)
-    {
-        pool->head = new_node;
-    }
-    
-    // Remove the allocated node from the free list
-    delink_node(node_to_alloc);
-    
-    pool->usize += leaf.header_size + node_to_alloc->size;
-    // Format the new pool
-    char* new_pool = (char*)node_to_alloc->pool;
-    for (int i = 0; i < node_to_alloc->size; i++) new_pool[i] = 0;
-    // Return the pool of the allocated node;
-    return node_to_alloc->pool;
-}
-
-char* leaf_alloc(size_t size)
-{
-    //printf("alloc %i\n", size);
-    char* block = mpool_alloc(size, &leaf._mempool);
-    
-    if (block == NULL) leaf_mempool_overrun();
-    
-    return block;
-}
-
-char* leaf_calloc(size_t size)
-{
-    //printf("alloc %i\n", size);
-    char* block = mpool_calloc(size, &leaf._mempool);
-    
-    if (block == NULL) leaf_mempool_overrun();
-    
-    
-    return block;
-}
-
-void mpool_free(char* ptr, _tMempool* pool)
-{
-    //if (ptr < pool->mpool || ptr >= pool->mpool + pool->msize)
-    // Get the node at the freed space
-    mpool_node_t* freed_node = (mpool_node_t*) (ptr - leaf.header_size);
-    
-    pool->usize -= leaf.header_size + freed_node->size;
-    
-    // Check each node in the list against the newly freed one to see if it's adjacent in memory
-    mpool_node_t* other_node = pool->head;
-    mpool_node_t* next_node;
-    while (other_node != NULL)
-    {
-        next_node = other_node->next;
-        // Check if a node is directly after the freed node
-        if ((long) freed_node + (leaf.header_size + freed_node->size) == (long) other_node)
-        {
-            // Increase freed node's size
-            freed_node->size += leaf.header_size + other_node->size;
-            // If we are merging with the head, move the head forward
-            if (other_node == pool->head) pool->head = pool->head->next;
-            // Delink the merged node
-            delink_node(other_node);
-        }
-        
-        // Check if a node is directly before the freed node
-        else if ((long) other_node + (leaf.header_size + other_node->size) == (long) freed_node)
-        {
-            // Increase the merging node's size
-            other_node->size += leaf.header_size + freed_node->size;
-            
-            if (other_node != pool->head)
-            {
-                // Delink the merging node
-                delink_node(other_node);
-                // Attach the merging node to the head
-                other_node->next = pool->head;
-                // Merge
-                freed_node = other_node;
-            }
-            else
-            {
-                // If we are merging with the head, move the head forward
-                pool->head = pool->head->next;
-                // Merge
-                freed_node = other_node;
-            }
-        }
-        
-        other_node = next_node;
-    }
-    
-    // Ensure the freed node is attached to the head
-    freed_node->next = pool->head;
-    if (pool->head != NULL) pool->head->prev = freed_node;
-    pool->head = freed_node;
-    
-    // Format the freed pool
-    //    char* freed_pool = (char*)freed_node->pool;
-    //    for (int i = 0; i < freed_node->size; i++) freed_pool[i] = 0;
-}
-
-void leaf_free(char* ptr)
-{
-    mpool_free(ptr, &leaf._mempool);
-}
-
-size_t mpool_get_size(_tMempool* pool)
-{
-    return pool->msize;
-}
-
-size_t mpool_get_used(_tMempool* pool)
-{
-    return pool->usize;
-}
-
-size_t leaf_pool_get_size(void)
-{
-    return mpool_get_size(&leaf._mempool);
-}
-
-size_t leaf_pool_get_used(void)
-{
-    return mpool_get_used(&leaf._mempool);
-}
-
-char* leaf_pool_get_pool(void)
-{
-    char* buff = leaf._mempool.mpool;
-    
-    return buff;
-}
-
-/**
- * align byte boundary
- */
-static inline size_t mpool_align(size_t size) {
-    return (size + (MPOOL_ALIGN_SIZE - 1)) & ~(MPOOL_ALIGN_SIZE - 1);
-}
-
-static inline mpool_node_t* create_node(char* block_location, mpool_node_t* next, mpool_node_t* prev, size_t size)
-{
-    mpool_node_t* node = (mpool_node_t*)block_location;
-    node->pool = block_location + leaf.header_size;
-    node->next = next;
-    node->prev = prev;
-    node->size = size;
-    
-    return node;
-}
-
-static inline void delink_node(mpool_node_t* node)
-{
-    // If there is a node after the node to remove
-    if (node->next != NULL)
-    {
-        // Close the link
-        node->next->prev = node->prev;
-    }
-    // If there is a node before the node to remove
-    if (node->prev != NULL)
-    {
-        // Close the link
-        node->prev->next = node->next;
-    }
-    
-    node->next = NULL;
-    node->prev = NULL;
-}
-
-void leaf_mempool_overrun(void)
-{
-    LEAF_error(1);
-    //TODO: we should make a set of real error codes that are in an enum type
-}
-
-void tMempool_init(tMempool* const mp, char* memory, size_t size)
-{
-    tMempool_initToPool(mp, memory, size, &leaf.mempool);
-}
-
-void tMempool_free(tMempool* const mp)
-{
-    tMempool_freeFromPool(mp, &leaf.mempool);
-}
-
-void    tMempool_initToPool     (tMempool* const mp, char* memory, size_t size, tMempool* const mem)
-{
-    _tMempool* mm = *mem;
-    _tMempool* m = *mp = (_tMempool*) mpool_alloc(sizeof(_tMempool), mm);
-    
-    mpool_create (memory, size, m);
-}
-
-void    tMempool_freeFromPool   (tMempool* const mp, tMempool* const mem)
-{
-    _tMempool* mm = *mem;
-    _tMempool* m = *mp;
-    
-    mpool_free((char*)m, mm);
-}
--- a/LEAF/Src/leaf-midi.c
+++ /dev/null
@@ -1,980 +1,0 @@
-/*==============================================================================
-
-    leaf-midi.c
-    Created: 30 Nov 2018 11:29:16am
-    Author:  airship
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-midi.h"
-
-#else
-
-#include "../Inc/leaf-midi.h"
-
-#endif
-
-//====================================================================================
-/* Stack */
-//====================================================================================
-
-void tStack_init(tStack* const stack)
-{
-    _tStack* ns = *stack = (_tStack*) leaf_alloc(sizeof(_tStack));
-    
-    ns->ordered = OFALSE;
-    ns->size = 0;
-    ns->pos = 0;
-    ns->capacity = STACK_SIZE;
-    
-    for (int i = 0; i < STACK_SIZE; i++) ns->data[i] = -1;
-}
-
-void tStack_free(tStack* const stack)
-{
-    _tStack* ns = *stack;
-    
-    leaf_free((char*)ns);
-}
-
-void    tStack_initToPool           (tStack* const stack, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tStack* ns = *stack = (_tStack*) mpool_alloc(sizeof(_tStack), m);
-    
-    ns->ordered = OFALSE;
-    ns->size = 0;
-    ns->pos = 0;
-    ns->capacity = STACK_SIZE;
-    
-    for (int i = 0; i < STACK_SIZE; i++) ns->data[i] = -1;
-}
-
-void    tStack_freeFromPool         (tStack* const stack, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tStack* ns = *stack;
-    
-    mpool_free((char*)ns, m);
-}
-
-// If stack contains note, returns index. Else returns -1;
-int tStack_contains(tStack* const stack, uint16_t noteVal)
-{
-    _tStack* ns = *stack;
-    for (int i = 0; i < ns->size; i++)
-    {
-        if (ns->data[i] == noteVal)    return i;
-    }
-    return -1;
-}
-
-void tStack_add(tStack* const stack, uint16_t noteVal)
-{
-    _tStack* ns = *stack;
-    
-    uint8_t j;
-    
-    int whereToInsert = 0;
-    if (ns->ordered)
-    {
-        for (j = 0; j < ns->size; j++)
-        {
-            if (noteVal > ns->data[j])
-            {
-                if ((noteVal < ns->data[j+1]) || (ns->data[j+1] == -1))
-                {
-                    whereToInsert = j+1;
-                    break;
-                }
-            }
-        }
-    }
-    
-    //first move notes that are already in the stack one position to the right
-    for (j = ns->size; j > whereToInsert; j--)
-    {
-        ns->data[j] = ns->data[(j - 1)];
-    }
-    
-    //then, insert the new note into the front of the stack
-    ns->data[whereToInsert] = noteVal;
-    
-    ns->size++;
-}
-
-int tStack_addIfNotAlreadyThere(tStack* const stack, uint16_t noteVal)
-{
-    _tStack* ns = *stack;
-    
-    uint8_t j;
-    
-    int added = 0;
-    
-    if (tStack_contains(stack, noteVal) == -1)
-    {
-        int whereToInsert = 0;
-        if (ns->ordered)
-        {
-            for (j = 0; j < ns->size; j++)
-            {
-                if (noteVal > ns->data[j])
-                {
-                    if ((noteVal < ns->data[j+1]) || (ns->data[j+1] == -1))
-                    {
-                        whereToInsert = j+1;
-                        break;
-                    }
-                }
-            }
-        }
-        
-        //first move notes that are already in the stack one position to the right
-        for (j = ns->size; j > whereToInsert; j--)
-        {
-            ns->data[j] = ns->data[(j - 1)];
-        }
-        
-        //then, insert the new note into the front of the stack
-        ns->data[whereToInsert] = noteVal;
-        
-        ns->size++;
-        
-        added = 1;
-    }
-    
-    return added;
-}
-
-// Remove noteVal. return 1 if removed, 0 if not
-int tStack_remove(tStack* const stack, uint16_t noteVal)
-{
-    _tStack* ns = *stack;
-    
-    uint8_t k;
-    int foundIndex = tStack_contains(stack, noteVal);
-    int removed = 0;
-    
-    if (foundIndex >= 0)
-    {
-        for (k = 0; k < (ns->size - foundIndex); k++)
-        {
-            if ((k+foundIndex) >= (ns->capacity - 1))
-            {
-                ns->data[k + foundIndex] = -1;
-            }
-            else
-            {
-                ns->data[k + foundIndex] = ns->data[k + foundIndex + 1];
-                if ((k + foundIndex) == (ns->size - 1))
-                {
-                    ns->data[k + foundIndex + 1] = -1;
-                }
-            }
-            
-        }
-        // in case it got put on the stack multiple times
-        foundIndex--;
-        ns->size--;
-        removed = 1;
-    }
-    
-    return removed;
-}
-
-// Doesn't change size of data types
-void tStack_setCapacity(tStack* const stack, uint16_t cap)
-{
-    _tStack* ns = *stack;
-    
-    if (cap <= 0)
-        ns->capacity = 1;
-    else if (cap <= STACK_SIZE)
-        ns->capacity = cap;
-    else
-        ns->capacity = STACK_SIZE;
-    
-    for (int i = cap; i < STACK_SIZE; i++)
-    {
-        if ((int)ns->data[i] != -1)
-        {
-            ns->data[i] = -1;
-            ns->size -= 1;
-        }
-    }
-    
-    if (ns->pos >= cap)
-    {
-        ns->pos = 0;
-    }
-}
-
-int tStack_getSize(tStack* const stack)
-{
-    _tStack* ns = *stack;
-    
-    return ns->size;
-}
-
-void tStack_clear(tStack* const stack)
-{
-    _tStack* ns = *stack;
-    
-    for (int i = 0; i < STACK_SIZE; i++)
-    {
-        ns->data[i] = -1;
-    }
-    ns->pos = 0;
-    ns->size = 0;
-}
-
-// Next item in order of addition to stack. Return 0-31 if there is a next item to move to. Returns -1 otherwise.
-int tStack_next(tStack* const stack)
-{
-    _tStack* ns = *stack;
-    
-    int step = 0;
-    if (ns->size != 0) // if there is at least one note in the stack
-    {
-        if (ns->pos > 0) // if you're not at the most recent note (first one), then go backward in the array (moving from earliest to latest)
-        {
-            ns->pos--;
-        }
-        else
-        {
-            ns->pos = (ns->size - 1); // if you are the most recent note, go back to the earliest note in the array
-        }
-        
-        step = ns->data[ns->pos];
-        return step;
-    }
-    else
-    {
-        return -1;
-    }
-}
-
-int tStack_get(tStack* const stack, int which)
-{
-    _tStack* ns = *stack;
-    return ns->data[which];
-}
-
-int tStack_first(tStack* const stack)
-{
-    _tStack* ns = *stack;
-    return ns->data[0];
-}
-
-
-// POLY
-void tPoly_init(tPoly* const polyh, int maxNumVoices)
-{
-    _tPoly* poly = *polyh = (_tPoly*) leaf_alloc(sizeof(_tPoly));
-    
-    poly->numVoices = maxNumVoices;
-    poly->maxNumVoices = maxNumVoices;
-    poly->lastVoiceToChange = 0;
-    
-    // Arp mode stuff
-    poly->currentVoice = 0;
-    poly->maxLength = 128;
-    poly->currentNote = -1;
-    
-    //default learned CCs and notes are just the CCs 1-128 - notes are skipped
-    for (int i = 0; i < 128; i++)
-    {
-        poly->notes[i][0] = 0;
-        poly->notes[i][1] = -1;
-    }
-    
-    poly->glideTime = 5.0f;
-    
-    poly->ramps = (tRamp*) leaf_alloc(sizeof(tRamp) * poly->maxNumVoices);
-    poly->rampVals = (float*) leaf_alloc(sizeof(float) * poly->maxNumVoices);
-    poly->firstReceived = (oBool*) leaf_alloc(sizeof(oBool) * poly->maxNumVoices);
-    poly->voices = (int**) leaf_alloc(sizeof(int*) * poly->maxNumVoices);
-    
-    for (int i = 0; i < poly->maxNumVoices; ++i)
-    {
-        poly->voices[i] = (int*) leaf_alloc(sizeof(int) * 2);
-        poly->voices[i][0] = -1;
-        poly->firstReceived[i] = OFALSE;
-        
-        tRamp_init(&poly->ramps[i], poly->glideTime, 1);
-    }
-    
-    poly->pitchBend = 0.0f;
-    
-    tRamp_init(&poly->pitchBendRamp, 1.0f, 1);
-    tStack_init(&poly->stack);
-    tStack_init(&poly->orderStack);
-    
-    poly->pitchGlideIsActive = OFALSE;
-}
-
-void tPoly_free(tPoly* const polyh)
-{
-    _tPoly* poly = *polyh;
-    
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        tRamp_free(&poly->ramps[i]);
-        leaf_free((char*)poly->voices[i]);
-    }
-    tRamp_free(&poly->pitchBendRamp);
-    tStack_free(&poly->stack);
-    tStack_free(&poly->orderStack);
-    
-    leaf_free((char*)poly->voices);
-    leaf_free((char*)poly->ramps);
-    leaf_free((char*)poly->rampVals);
-    leaf_free((char*)poly->firstReceived);
-    
-    leaf_free((char*)poly);
-}
-
-void    tPoly_initToPool            (tPoly* const polyh, int maxNumVoices, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPoly* poly = *polyh = (_tPoly*) mpool_alloc(sizeof(_tPoly), m);
-    
-    poly->numVoices = maxNumVoices;
-    poly->maxNumVoices = maxNumVoices;
-    poly->lastVoiceToChange = 0;
-    
-    // Arp mode stuff
-    poly->currentVoice = 0;
-    poly->maxLength = 128;
-    poly->currentNote = -1;
-    
-    //default learned CCs and notes are just the CCs 1-128 - notes are skipped
-    for (int i = 0; i < 128; i++)
-    {
-        poly->notes[i][0] = 0;
-        poly->notes[i][1] = -1;
-    }
-    
-    poly->glideTime = 5.0f;
-    
-    poly->ramps = (tRamp*) mpool_alloc(sizeof(tRamp) * poly->maxNumVoices, m);
-    poly->rampVals = (float*) mpool_alloc(sizeof(float) * poly->maxNumVoices, m);
-    poly->firstReceived = (oBool*) mpool_alloc(sizeof(oBool) * poly->maxNumVoices, m);
-    poly->voices = (int**) mpool_alloc(sizeof(int*) * poly->maxNumVoices, m);
-    
-    for (int i = 0; i < poly->maxNumVoices; ++i)
-    {
-        poly->voices[i] = (int*) mpool_alloc(sizeof(int) * 2, m);
-        poly->voices[i][0] = -1;
-        poly->firstReceived[i] = OFALSE;
-        
-        tRamp_initToPool(&poly->ramps[i], poly->glideTime, 1, mp);
-    }
-    
-    poly->pitchBend = 0.0f;
-    
-    tRamp_initToPool(&poly->pitchBendRamp, 1.0f, 1, mp);
-    tStack_initToPool(&poly->stack, mp);
-    tStack_initToPool(&poly->orderStack, mp);
-    
-    poly->pitchGlideIsActive = OFALSE;
-}
-
-void    tPoly_freeFromPool  (tPoly* const polyh, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPoly* poly = *polyh;
-    
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        tRamp_freeFromPool(&poly->ramps[i], mp);
-        mpool_free((char*)poly->voices[i], m);
-    }
-    tRamp_freeFromPool(&poly->pitchBendRamp, mp);
-    tStack_freeFromPool(&poly->stack, mp);
-    tStack_freeFromPool(&poly->orderStack, mp);
-    
-    mpool_free((char*)poly->voices, m);
-    mpool_free((char*)poly->ramps, m);
-    mpool_free((char*)poly->rampVals, m);
-    mpool_free((char*)poly->firstReceived, m);
-    
-    mpool_free((char*)poly, m);
-}
-
-void tPoly_tickPitch(tPoly* polyh)
-{
-    tPoly_tickPitchGlide(polyh);
-    tPoly_tickPitchBend(polyh);
-}
-
-void tPoly_tickPitchGlide(tPoly* polyh)
-{
-    _tPoly* poly = *polyh;
-    for (int i = 0; i < poly->maxNumVoices; ++i)
-    {
-        tRamp_tick(&poly->ramps[i]);
-    }
-}
-
-void tPoly_tickPitchBend(tPoly* polyh)
-{
-    _tPoly* poly = *polyh;
-    tRamp_tick(&poly->pitchBendRamp);
-}
-
-void tPoly_setPitchBend(tPoly* const polyh, float pitchBend)
-{
-    _tPoly* poly = *polyh;
-    poly->pitchBend = pitchBend;
-    tRamp_setDest(&poly->pitchBendRamp, poly->pitchBend);
-}
-
-int tPoly_noteOn(tPoly* const polyh, int note, uint8_t vel)
-{
-    _tPoly* poly = *polyh;
-    
-    // if not in keymap or already on stack, dont do anything. else, add that note.
-    if (tStack_contains(&poly->stack, note) >= 0) return -1;
-    else
-    {
-        tPoly_orderedAddToStack(polyh, note);
-        tStack_add(&poly->stack, note);
-        
-        int alteredVoice = -1;
-        oBool found = OFALSE;
-        for (int i = 0; i < poly->numVoices; i++)
-        {
-            if (poly->voices[i][0] < 0)    // if inactive voice, give this note to voice
-            {
-                if (!poly->firstReceived[i] || !poly->pitchGlideIsActive)
-                {
-                    tRamp_setVal(&poly->ramps[i], note);
-                    poly->firstReceived[i] = OTRUE;
-                }
-                
-                found = OTRUE;
-                
-                poly->voices[i][0] = note;
-                poly->voices[i][1] = vel;
-                poly->lastVoiceToChange = i;
-                poly->notes[note][0] = vel;
-                poly->notes[note][1] = i;
-                
-                tRamp_setDest(&poly->ramps[i], poly->voices[i][0]);
-                
-                alteredVoice = i;
-                break;
-            }
-        }
-        
-        if (!found) //steal
-        {
-            int whichVoice, whichNote;
-            for (int j = tStack_getSize(&poly->stack) - 1; j >= 0; j--)
-            {
-                whichNote = tStack_get(&poly->stack, j);
-                whichVoice = poly->notes[whichNote][1];
-                if (whichVoice >= 0)
-                {
-                    poly->lastVoiceToChange = whichVoice;
-                    int oldNote = poly->voices[whichVoice][0];
-                    poly->voices[whichVoice][0] = note;
-                    poly->voices[whichVoice][1] = vel;
-                    poly->notes[oldNote][1] = -1; //mark the stolen voice as inactive (in the second dimension of the notes array)
-                    poly->notes[note][0] = vel;
-                    poly->notes[note][1] = whichVoice;
-                    
-                    if (poly->pitchGlideIsActive)
-                    {
-                    	tRamp_setTime(&poly->ramps[whichVoice], poly->glideTime);
-                    }
-                    else
-                    {
-                    	tRamp_setVal(&poly->ramps[whichVoice], note);
-                    }
-                    tRamp_setDest(&poly->ramps[whichVoice], poly->voices[whichVoice][0]);
-                    
-                    alteredVoice = whichVoice;
-                    
-                    break;
-                }
-            }
-        }
-        return alteredVoice;
-    }
-}
-
-
-int16_t noteToTest = -1;
-
-int tPoly_noteOff(tPoly* const polyh, uint8_t note)
-{
-    _tPoly* poly = *polyh;
-    
-    tStack_remove(&poly->stack, note);
-    tStack_remove(&poly->orderStack, note);
-    poly->notes[note][0] = 0;
-    poly->notes[note][1] = -1;
-    
-    int deactivatedVoice = -1;
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        if (poly->voices[i][0] == note)
-        {
-            poly->voices[i][0] = -1;
-            poly->voices[i][1] = 0;
-            poly->lastVoiceToChange = i;
-            deactivatedVoice = i;
-            break;
-        }
-    }
-    /*
-     //monophonic handling
-     if ((poly->numVoices == 1) && (tStack_getSize(poly->stack) > 0))
-     {
-     int oldNote = tStack_first(poly->stack);
-     poly->voices[0][0] = oldNote;
-     poly->voices[0][1] = poly->notes[oldNote][0];
-     poly->lastVoiceToChange = 0;
-     }
-     */
-    
-    //grab old notes off the stack if there are notes waiting to replace the free voice
-    if (deactivatedVoice >= 0)
-    {
-        for (int j = 0; j < tStack_getSize(&poly->stack); ++j)
-        {
-            noteToTest = tStack_get(&poly->stack, j);
-            
-            if (poly->notes[noteToTest][1] < 0) //if there is a stolen note waiting (marked inactive but on the stack)
-            {
-                poly->voices[deactivatedVoice][0] = noteToTest; //set the newly free voice to use the old stolen note
-                if (poly->pitchGlideIsActive)
-                {
-                	tRamp_setTime(&poly->ramps[deactivatedVoice], poly->glideTime);
-                }
-                else
-                {
-                	tRamp_setVal(&poly->ramps[deactivatedVoice], noteToTest);
-                }
-                tRamp_setDest(&poly->ramps[deactivatedVoice], poly->voices[deactivatedVoice][0]);
-                poly->voices[deactivatedVoice][1] = poly->notes[noteToTest][0]; // set the velocity of the voice to be the velocity of that note
-                poly->notes[noteToTest][1] = deactivatedVoice; //mark that it is no longer stolen and is now active
-                return -1;
-            }
-        }
-    }
-    return deactivatedVoice;
-}
-
-void tPoly_orderedAddToStack(tPoly* const polyh, uint8_t noteVal)
-{
-    _tPoly* poly = *polyh;
-    
-    uint8_t j;
-    int myPitch, thisPitch, nextPitch;
-    
-    tStack ns = poly->orderStack;
-    
-    int whereToInsert = 0;
-    
-    for (j = 0; j < ns->size; j++)
-    {
-        myPitch = noteVal;
-        thisPitch = ns->data[j];
-        nextPitch = ns->data[j+1];
-        
-        if (myPitch > thisPitch)
-        {
-            if ((myPitch < nextPitch) || (nextPitch == -1))
-            {
-                whereToInsert = j+1;
-                break;
-            }
-        }
-    }
-    
-    //first move notes that are already in the stack one position to the right
-    for (j = ns->size; j > whereToInsert; j--)
-    {
-        ns->data[j] = ns->data[(j - 1)];
-    }
-    
-    //then, insert the new note into the front of the stack
-    ns->data[whereToInsert] =  noteVal;
-    
-    ns->size++;
-    
-}
-
-void tPoly_setNumVoices(tPoly* const polyh, uint8_t numVoices)
-{
-    _tPoly* poly = *polyh;
-    poly->numVoices = (numVoices > poly->maxNumVoices) ? poly->maxNumVoices : numVoices;
-}
-
-void tPoly_setPitchGlideActive(tPoly* const polyh, oBool isActive)
-{
-    _tPoly* poly = *polyh;
-    poly->pitchGlideIsActive = isActive;
-}
-
-void tPoly_setPitchGlideTime(tPoly* const polyh, float t)
-{
-    _tPoly* poly = *polyh;
-    poly->glideTime = t;
-    for (int i = 0; i < poly->maxNumVoices; ++i)
-    {
-        tRamp_setTime(&poly->ramps[i], poly->glideTime);
-    }
-}
-
-void tPoly_setBendGlideTime(tPoly* const polyh, float t)
-{
-    _tPoly* poly = *polyh;
-    tRamp_setTime(&poly->pitchBendRamp, t);
-}
-
-void tPoly_setBendSamplesPerTick(tPoly* const polyh, float t)
-{
-	 _tPoly* poly = *polyh;
-	 poly->pitchBendRamp->samples_per_tick =  t;
-}
-
-int tPoly_getNumVoices(tPoly* const polyh)
-{
-    _tPoly* poly = *polyh;
-    return poly->numVoices;
-}
-
-int tPoly_getNumActiveVoices(tPoly* const polyh)
-{
-    _tPoly* poly = *polyh;
-    return LEAF_clip(0, tStack_getSize(&poly->stack), poly->numVoices);
-}
-
-float tPoly_getPitch(tPoly* const polyh, uint8_t voice)
-{
-    _tPoly* poly = *polyh;
-    return tRamp_sample(&poly->ramps[voice]) + tRamp_sample(&poly->pitchBendRamp);
-}
-
-int tPoly_getKey(tPoly* const polyh, uint8_t voice)
-{
-    _tPoly* poly = *polyh;
-    return poly->voices[voice][0];
-}
-
-int tPoly_getVelocity(tPoly* const polyh, uint8_t voice)
-{
-    _tPoly* poly = *polyh;
-    return poly->voices[voice][1];
-}
-
-int tPoly_isOn(tPoly* const polyh, uint8_t voice)
-{
-    _tPoly* poly = *polyh;
-    return (poly->voices[voice][0] > 0) ? 1 : 0;
-}
-
-
-
-
-//tSimplePoly = much more efficient implementation without ramps and glide
-
-
-// SIMPLE POLY
-void tSimplePoly_init(tSimplePoly* const polyh, int maxNumVoices)
-{
-    tSimplePoly_initToPool(polyh, maxNumVoices, &leaf.mempool);
-}
-
-void tSimplePoly_free(tSimplePoly* const polyh)
-{
-    tSimplePoly_freeFromPool(polyh, &leaf.mempool);
-}
-
-void    tSimplePoly_initToPool            (tSimplePoly* const polyh, int maxNumVoices, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSimplePoly* poly = *polyh = (_tSimplePoly*) mpool_alloc(sizeof(_tSimplePoly), m);
-
-    poly->numVoices = maxNumVoices;
-    poly->maxNumVoices = maxNumVoices;
-
-    for (int i = 0; i < 128; i++)
-    {
-        poly->notes[i][0] = -1;
-        poly->notes[i][1] = 0;
-    }
-    poly->stealing_on = 1;
-    poly->recover_stolen = 1;
-    poly->voices = (int**) mpool_alloc(sizeof(int*) * poly->maxNumVoices, m);
-
-    for (int i = 0; i < poly->maxNumVoices; ++i)
-    {
-        poly->voices[i] = (int*) mpool_alloc(sizeof(int) * 3, m);
-        poly->voices[i][0] = -1;
-    }
-    tStack_initToPool(&poly->stack, mp);
-
-}
-
-void    tSimplePoly_freeFromPool  (tSimplePoly* const polyh, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSimplePoly* poly = *polyh;
-
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        mpool_free((char*)poly->voices[i], m);
-    }
-    tStack_freeFromPool(&poly->stack, mp);
-    mpool_free((char*)poly->voices, m);
-    mpool_free((char*)poly, m);
-}
-
-int tSimplePoly_noteOn(tSimplePoly* const polyh, int note, uint8_t vel)
-{
-    _tSimplePoly* poly = *polyh;
-    int whichVoice, whichNote, oldNote, alteredVoice;
-    // if not in keymap or already on stack, dont do anything. else, add that note.
-    if (tStack_contains(&poly->stack, note) >= 0) return -1;
-    else
-    {
-        alteredVoice = -1;
-        oBool found = OFALSE;
-        for (int i = 0; i < poly->numVoices; i++)
-        {
-            if (poly->voices[i][0] == -1)    // if inactive voice, give this note to voice
-            {
-
-                found = OTRUE;
-
-                poly->voices[i][0] = note;
-                poly->voices[i][1] = vel;
-                poly->notes[note][0] = i;
-                poly->notes[note][1] = vel;
-                poly->voices[i][2] = note; // voices[i][2] is the output midi note, (avoiding the -1 when a voice is inactive)
-
-                alteredVoice = i;
-                tStack_add(&poly->stack, note);
-                break;
-            }
-        }
-        if (!found)
-        {
-            //second preference is grabbing one that is in release phase but not finished sounding yet
-            for (int i = 0 ; i < poly->numVoices; i++)
-            {
-                if (poly->voices[i][0] == -2)    // if voice is released but still sounding, take over this voice
-                {
-
-                    found = OTRUE;
-
-                    poly->voices[i][0] = note;
-                    poly->voices[i][1] = vel;
-                    poly->notes[note][0] = i;
-                    poly->notes[note][1] = vel;
-                    poly->voices[i][2] = note; // voices[i][2] is the output midi note, (avoiding the -1 when a voice is inactive)
-
-                    alteredVoice = i;
-                    tStack_add(&poly->stack, note);
-                    break;
-                }
-            }
-        }
-        if ((!found) && (poly->stealing_on)) //steal
-        {
-            for (int j = tStack_getSize(&poly->stack) - 1; j >= 0; j--)
-            {
-                whichNote = tStack_get(&poly->stack, j);
-                whichVoice = poly->notes[whichNote][0];
-                if (whichVoice >= 0)
-                {
-                    oldNote = poly->voices[whichVoice][0];
-                    poly->voices[whichVoice][0] = note;
-                    poly->voices[whichVoice][1] = vel;
-                    poly->notes[oldNote][0] = -3; //mark the stolen voice as stolen (in the second dimension of the notes array)
-                    poly->notes[note][0] = whichVoice;
-                    poly->notes[note][1] = vel;
-
-                    poly->voices[whichVoice][2] = note;
-
-                    alteredVoice = whichVoice;
-                    tStack_add(&poly->stack, note);
-                    break;
-                }
-            }
-        }
-        return alteredVoice;
-    }
-}
-
-
-
-int tSimplePoly_noteOff(tSimplePoly* const polyh, uint8_t note)
-{
-    _tSimplePoly* poly = *polyh;
-    int16_t noteToTest = -1;
-
-    tStack_remove(&poly->stack, note);
-    poly->notes[note][0] = -1;
-
-    int deactivatedVoice = -1;
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        if (poly->voices[i][0] == note)
-        {
-            poly->voices[i][0] = -1;
-            poly->voices[i][1] = 0;
-            deactivatedVoice = i;
-            break;
-        }
-    }
-
-    if (poly->recover_stolen)
-    {
-        //grab old notes off the stack if there are notes waiting to replace the free voice
-        if (deactivatedVoice >= 0)
-        {
-            for (int j = 0; j < tStack_getSize(&poly->stack); ++j)
-            {
-                noteToTest = tStack_get(&poly->stack, j);
-
-                if (poly->notes[noteToTest][0] == -3) //if there is a stolen note waiting (marked inactive but on the stack)
-                {
-                    poly->voices[deactivatedVoice][0] = noteToTest; //set the newly free voice to use the old stolen note
-                    poly->voices[deactivatedVoice][1] = poly->notes[noteToTest][1]; // set the velocity of the voice to be the velocity of that note
-                    poly->voices[deactivatedVoice][2] = noteToTest;
-                    poly->notes[noteToTest][0] = deactivatedVoice; //mark that it is no longer stolen and is now active
-                    return -1;
-                }
-            }
-        }
-    }
-    return deactivatedVoice;
-}
-
-
-void tSimplePoly_deactivateVoice(tSimplePoly* const polyh, uint8_t voice)
-{
-    _tSimplePoly* poly = *polyh;
-
-    if (poly->voices[voice][0] == -2) //only do this if the voice is waiting for deactivation (not already reassigned while waiting)
-    {
-        poly->voices[voice][0] = -1;
-        poly->voices[voice][1] = 0;
-        if (poly->recover_stolen)
-        {
-            //grab old notes off the stack if there are notes waiting to replace the free voice
-            for (int j = 0; j < tStack_getSize(&poly->stack); ++j)
-            {
-                noteToTest = tStack_get(&poly->stack, j);
-
-                if (poly->notes[noteToTest][0] == -3) //if there is a stolen note waiting (marked inactive but on the stack)
-                {
-                    poly->voices[voice][0] = noteToTest; //set the newly free voice to use the old stolen note
-                    poly->voices[voice][1] = poly->notes[noteToTest][1]; // set the velocity of the voice to be the velocity of that note
-                    poly->voices[voice][2] = noteToTest;
-                    poly->notes[noteToTest][0] = voice; //mark that it is no longer stolen and is now active
-                }
-            }
-        }
-    }
-}
-
-int tSimplePoly_findVoiceAssignedToNote(tSimplePoly* const polyh, uint8_t note)
-{
-    _tSimplePoly* poly = *polyh;
-
-
-    int voiceWithThatNote = -1;
-    for (int i = 0; i < poly->maxNumVoices; i++)
-    {
-        if (poly->voices[i][0] == note)
-        {
-            voiceWithThatNote = i;
-            break;
-        }
-    }
-    return voiceWithThatNote;
-}
-
-
-int tSimplePoly_markPendingNoteOff(tSimplePoly* const polyh, uint8_t note)
-{
-    _tSimplePoly* poly = *polyh;
-    int deactivatedVoice = -1;
-
-    if (tStack_remove(&poly->stack, note))
-
-    {
-
-        poly->notes[note][0] = -2;
-
-
-
-        for (int i = 0; i < poly->maxNumVoices; i++)
-        {
-            if (poly->voices[i][0] == note)
-            {
-                poly->voices[i][0] = -2;
-                poly->voices[i][1] = 0;
-                deactivatedVoice = i;
-                break;
-            }
-        }
-
-
-    }
-    return deactivatedVoice;
-}
-
-void tSimplePoly_setNumVoices(tSimplePoly* const polyh, uint8_t numVoices)
-{
-    _tSimplePoly* poly = *polyh;
-    poly->numVoices = (numVoices > poly->maxNumVoices) ? poly->maxNumVoices : numVoices;
-}
-
-
-int tSimplePoly_getNumVoices(tSimplePoly* const polyh)
-{
-    _tSimplePoly* poly = *polyh;
-    return poly->numVoices;
-}
-
-int tSimplePoly_getNumActiveVoices(tSimplePoly* const polyh)
-{
-    _tSimplePoly* poly = *polyh;
-    return LEAF_clip(0, tStack_getSize(&poly->stack), poly->numVoices);
-}
-
-
-int tSimplePoly_getPitch(tSimplePoly* const polyh, uint8_t voice)
-{
-    _tSimplePoly* poly = *polyh;
-    return poly->voices[voice][2];
-}
-
-//this one returns negative one if the voice is inactive
-int tSimplePoly_getPitchAndCheckActive(tSimplePoly* const polyh, uint8_t voice)
-{
-    _tSimplePoly* poly = *polyh;
-    return poly->voices[voice][0];
-}
-
-int tSimplePoly_getVelocity(tSimplePoly* const polyh, uint8_t voice)
-{
-    _tSimplePoly* poly = *polyh;
-    return poly->voices[voice][1];
-}
-
-int tSimplePoly_isOn(tSimplePoly* const polyh, uint8_t voice)
-{
-    _tSimplePoly* poly = *polyh;
-    return (poly->voices[voice][0] > 0) ? 1 : 0;
-}
--- a/LEAF/Src/leaf-oscillators.c
+++ /dev/null
@@ -1,1660 +1,0 @@
-/*==============================================================================
- leaf-oscillators.c
- Created: 20 Jan 2017 12:00:58pm
- Author:  Michael R Mulshine
- ==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-oscillators.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-oscillators.h"
-#include "../leaf.h"
-
-#endif
-
-// Cycle
-void    tCycle_init(tCycle* const cy)
-{
-    tCycle_initToPool(cy, &leaf.mempool);
-}
-
-void    tCycle_free(tCycle* const cy)
-{
-    tCycle_freeFromPool(cy, &leaf.mempool);
-}
-
-void    tCycle_initToPool   (tCycle* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCycle* c = *cy = (_tCycle*) mpool_alloc(sizeof(_tCycle), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-
-}
-
-void    tCycle_freeFromPool (tCycle* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tCycle* c = *cy;
-    
-    mpool_free((char*)c, m);
-}
-
-void     tCycle_setFreq(tCycle* const cy, float freq)
-{
-    _tCycle* c = *cy;
-    
-    c->freq  = freq;
-
-    c->inc = freq * leaf.invSampleRate;
-}
-
-//need to check bounds and wrap table properly to allow through-zero FM
-float   tCycle_tick(tCycle* const cy)
-{
-    _tCycle* c = *cy;
-    float temp;;
-    int intPart;;
-    float fracPart;
-    float samp0;
-    float samp1;
-    
-    // Phasor increment
-    c->phase += c->inc;
-    while (c->phase >= 1.0f) c->phase -= 1.0f;
-    while (c->phase < 0.0f) c->phase += 1.0f;
-
-    // Wavetable synthesis
-
-	temp = SINE_TABLE_SIZE * c->phase;
-	intPart = (int)temp;
-	fracPart = temp - (float)intPart;
-	samp0 = __leaf_table_sinewave[intPart];
-	if (++intPart >= SINE_TABLE_SIZE) intPart = 0;
-	samp1 = __leaf_table_sinewave[intPart];
-
-    return (samp0 + (samp1 - samp0) * fracPart);
-
-}
-
-void     tCycleSampleRateChanged (tCycle* const cy)
-{
-    _tCycle* c = *cy;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-}
-
-//========================================================================
-/* Triangle */
-void   tTriangle_init(tTriangle* const cy)
-{
-    tTriangle_initToPool(cy, &leaf.mempool);
-}
-
-void   tTriangle_free(tTriangle* const cy)
-{
-    tTriangle_freeFromPool(cy, &leaf.mempool);
-}
-
-void    tTriangle_initToPool    (tTriangle* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTriangle* c = *cy = (_tTriangle*) mpool_alloc(sizeof(_tTriangle), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    tTriangle_setFreq(cy, 220);
-}
-
-void    tTriangle_freeFromPool  (tTriangle* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTriangle* c = *cy;
-    
-    mpool_free((char*)c, m);
-}
-
-void tTriangle_setFreq(tTriangle* const cy, float freq)
-{
-    _tTriangle* c = *cy;
-    
-    c->freq  = freq;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-    
-    c->w = c->freq * INV_20;
-    for (c->oct = 0; c->w > 2.0f; c->oct++)
-    {
-        c->w = 0.5f * c->w;
-    }
-    c->w = 2.0f - c->w;
-}
-
-
-float   tTriangle_tick(tTriangle* const cy)
-{
-    _tTriangle* c = *cy;
-    
-    // Phasor increment
-    c->phase += c->inc;
-    while (c->phase >= 1.0f) c->phase -= 1.0f;
-    while (c->phase < 0.0f) c->phase += 1.0f;
-    
-    float out = 0.0f;
-    
-    int idx = (int)(c->phase * TRI_TABLE_SIZE);
-    
-    // Wavetable synthesis
-    out = __leaf_table_triangle[c->oct+1][idx] +
-         (__leaf_table_triangle[c->oct][idx] - __leaf_table_triangle[c->oct+1][idx]) * c->w;
-    
-    return out;
-}
-
-void     tTriangleSampleRateChanged (tTriangle* const cy)
-{
-    _tTriangle* c = *cy;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-}
-
-//========================================================================
-/* Square */
-void   tSquare_init(tSquare* const cy)
-{
-    tSquare_initToPool(cy, &leaf.mempool);
-}
-
-void   tSquare_free(tSquare* const cy)
-{
-    tSquare_freeFromPool(cy, &leaf.mempool);
-}
-
-void    tSquare_initToPool  (tSquare* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSquare* c = *cy = (_tSquare*) mpool_alloc(sizeof(_tSquare), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    tSquare_setFreq(cy, 220);
-}
-
-void    tSquare_freeFromPool(tSquare* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSquare* c = *cy;
-    
-    mpool_free((char*)c, m);
-}
-
-void    tSquare_setFreq(tSquare* const cy, float freq)
-{
-    _tSquare* c = *cy;
-
-    c->freq  = freq;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-    
-    c->w = c->freq * INV_20;
-    for (c->oct = 0; c->w > 2.0f; c->oct++)
-    {
-        c->w = 0.5f * c->w;
-    }
-    c->w = 2.0f - c->w;
-}
-
-float   tSquare_tick(tSquare* const cy)
-{
-    _tSquare* c = *cy;
-    
-    // Phasor increment
-    c->phase += c->inc;
-    while (c->phase >= 1.0f) c->phase -= 1.0f;
-    while (c->phase < 0.0f) c->phase += 1.0f;
-    
-    float out = 0.0f;
-    
-    int idx = (int)(c->phase * SQR_TABLE_SIZE);
-    
-    // Wavetable synthesis
-    out = __leaf_table_squarewave[c->oct+1][idx] +
-         (__leaf_table_squarewave[c->oct][idx] - __leaf_table_squarewave[c->oct+1][idx]) * c->w;
-    
-    return out;
-}
-
-void     tSquareSampleRateChanged (tSquare* const cy)
-{
-    _tSquare* c = *cy;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-}
-
-//=====================================================================
-// Sawtooth
-void    tSawtooth_init(tSawtooth* const cy)
-{
-    tSawtooth_initToPool(cy, &leaf.mempool);
-}
-
-void    tSawtooth_free(tSawtooth* const cy)
-{
-    tSawtooth_freeFromPool(cy, &leaf.mempool);
-}
-
-void    tSawtooth_initToPool    (tSawtooth* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSawtooth* c = *cy = (_tSawtooth*) mpool_alloc(sizeof(_tSawtooth), m);
-    
-    c->inc      = 0.0f;
-    c->phase    = 0.0f;
-    tSawtooth_setFreq(cy, 220);
-}
-
-void    tSawtooth_freeFromPool  (tSawtooth* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSawtooth* c = *cy;
-    
-    mpool_free((char*)c, m);
-}
-
-void    tSawtooth_setFreq(tSawtooth* const cy, float freq)
-{
-    _tSawtooth* c = *cy;
-    
-    c->freq  = freq;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-    
-    c->w = c->freq * INV_20;
-    for (c->oct = 0; c->w > 2.0f; c->oct++)
-    {
-        c->w = 0.5f * c->w;
-    }
-    c->w = 2.0f - c->w;
-}
-
-float   tSawtooth_tick(tSawtooth* const cy)
-{
-    _tSawtooth* c = *cy;
-    
-    // Phasor increment
-    c->phase += c->inc;
-    while (c->phase >= 1.0f) c->phase -= 1.0f;
-    while (c->phase < 0.0f) c->phase += 1.0f;
-    
-    float out = 0.0f;
-    
-    int idx = (int)(c->phase * SAW_TABLE_SIZE);
-    
-    // Wavetable synthesis
-    out = __leaf_table_sawtooth[c->oct+1][idx] +
-         (__leaf_table_sawtooth[c->oct][idx] - __leaf_table_sawtooth[c->oct+1][idx]) * c->w;
-    
-    return out;
-}
-
-void     tSawtoothSampleRateChanged (tSawtooth* const cy)
-{
-    _tSawtooth* c = *cy;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-}
-
-//========================================================================
-// Sine
-void    tSine_init(tSine* const cy, int size)
-{
-    tSine_initToPool(cy, size, &leaf.mempool);
-}
-
-void    tSine_free(tSine* const cy)
-{
-    tSine_freeFromPool(cy, &leaf.mempool);
-}
-
-void    tSine_initToPool   (tSine* const cy, int size, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSine* c = *cy = (_tSine*) mpool_alloc(sizeof(_tSine), m);
-    
-    c->size = size;
-    c->sine = (float*) mpool_alloc(sizeof(float) * c->size, m);
-    LEAF_generate_sine(c->sine, size);
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-}
-
-void    tSine_freeFromPool (tSine* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSine* c = *cy;
-    
-    mpool_free((char*)c->sine, m);
-    mpool_free((char*)c, m);
-}
-
-void     tSine_setFreq(tSine* const cy, float freq)
-{
-    _tSine* c = *cy;
-    
-    c->freq  = freq;
-    c->inc = freq * leaf.invSampleRate;
-}
-
-float   tSine_tick(tSine* const cy)
-{
-    _tSine* c = *cy;
-    float temp;
-    int intPart;
-    float fracPart;
-    float samp0;
-    float samp1;
-    
-    // Phasor increment
-    c->phase += c->inc;
-    while (c->phase >= 1.0f) c->phase -= 1.0f;
-    while (c->phase < 0.0f) c->phase += 1.0f;
-    
-    // Wavetable synthesis
-    
-    temp = c->size * c->phase;
-    intPart = (int)temp;
-    fracPart = temp - (float)intPart;
-    samp0 = c->sine[intPart];
-    if (++intPart >= c->size) intPart = 0;
-    samp1 = c->sine[intPart];
-    
-    return (samp0 + (samp1 - samp0) * fracPart);
-    
-}
-
-void     tSineSampleRateChanged (tSine* const cy)
-{
-    _tSine* c = *cy;
-    
-    c->inc = c->freq * leaf.invSampleRate;
-}
-
-//==============================================================================
-
-/* tTri: Anti-aliased Triangle waveform. */
-void    tTri_init          (tTri* const osc)
-{
-    tTri_initToPool(osc, &leaf.mempool);
-}
-
-void    tTri_free          (tTri* const osc)
-{
-    tTri_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tTri_initToPool    (tTri* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTri* c = *osc = (_tTri*) mpool_alloc(sizeof(_tTri), m);
-
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    c->skew     =  0.5f;
-    c->lastOut  =  0.0f;
-}
-
-void    tTri_freeFromPool  (tTri* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tTri* c = *cy;
-    
-    mpool_free((char*)c, m);
-}
-
-float   tTri_tick          (tTri* const osc)
-{
-    _tTri* c = *osc;
-    
-    float out;
-    float skew;
-    
-    if (c->phase < c->skew)
-    {
-        out = 1.0f;
-        skew = (1.0f - c->skew) * 2.0f;
-    }
-    else
-    {
-        out = -1.0f;
-        skew = c->skew * 2.0f;
-    }
-    
-    out += LEAF_poly_blep(c->phase, c->inc);
-    out -= LEAF_poly_blep(fmod(c->phase + (1.0f - c->skew), 1.0f), c->inc);
-    
-    out = (skew * c->inc * out) + ((1 - c->inc) * c->lastOut);
-    c->lastOut = out;
-    
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-    }
-    
-    return out;
-}
-
-void    tTri_setFreq       (tTri* const osc, float freq)
-{
-    _tTri* c = *osc;
-    
-    c->freq  = freq;
-    c->inc = freq * leaf.invSampleRate;
-}
-
-void    tTri_setSkew       (tTri* const osc, float skew)
-{
-    _tTri* c = *osc;
-    c->skew = (skew + 1.0f) * 0.5f;
-}
-
-
-//==============================================================================
-
-/* tPulse: Anti-aliased pulse waveform. */
-void    tPulse_init        (tPulse* const osc)
-{
-    tPulse_initToPool(osc, &leaf.mempool);
-}
-
-void    tPulse_free        (tPulse* const osc)
-{
-    tPulse_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tPulse_initToPool  (tPulse* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPulse* c = *osc = (_tPulse*) mpool_alloc(sizeof(_tPulse), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    c->width     =  0.5f;
-}
-
-void    tPulse_freeFromPool(tPulse* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPulse* c = *osc;
-    
-    mpool_free((char*)c, m);
-}
-
-float   tPulse_tick        (tPulse* const osc)
-{
-    _tPulse* c = *osc;
-    
-    float out;
-    if (c->phase < c->width) out = 1.0f;
-    else out = -1.0f;
-    out += LEAF_poly_blep(c->phase, c->inc);
-    out -= LEAF_poly_blep(fmod(c->phase + (1.0f - c->width), 1.0f), c->inc);
-    
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-    }
-    
-    return out;
-}
-
-void    tPulse_setFreq     (tPulse* const osc, float freq)
-{
-    _tPulse* c = *osc;
-    
-    c->freq  = freq;
-    c->inc = freq * leaf.invSampleRate;
-}
-
-void    tPulse_setWidth    (tPulse* const osc, float width)
-{
-    _tPulse* c = *osc;
-    c->width = width;
-}
-
-
-//==============================================================================
-
-/* tSawtooth: Anti-aliased Sawtooth waveform. */
-void    tSaw_init          (tSaw* const osc)
-{
-    tSaw_initToPool(osc, &leaf.mempool);
-}
-
-void    tSaw_free          (tSaw* const osc)
-{
-    tSaw_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tSaw_initToPool    (tSaw* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSaw* c = *osc = (_tSaw*) mpool_alloc(sizeof(_tSaw), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-}
-
-void    tSaw_freeFromPool  (tSaw* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSaw* c = *osc;
-    
-    mpool_free((char*)c, m);
-}
-
-float   tSaw_tick          (tSaw* const osc)
-{
-    _tSaw* c = *osc;
-    
-    float out = (c->phase * 2.0f) - 1.0f;
-    out -= LEAF_poly_blep(c->phase, c->inc);
-    
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-    }
-    
-    return out;
-}
-
-void    tSaw_setFreq       (tSaw* const osc, float freq)
-{
-    _tSaw* c = *osc;
-    
-    c->freq  = freq;
-    
-    c->inc = freq * leaf.invSampleRate;
-}
-
-//========================================================================
-/* Phasor */
-void     tPhasorSampleRateChanged (tPhasor* const ph)
-{
-    _tPhasor* p = *ph;
-    
-    p->inc = p->freq * leaf.invSampleRate;
-};
-
-void    tPhasor_init(tPhasor* const ph)
-{
-    tPhasor_initToPool(ph, &leaf.mempool);
-}
-
-void    tPhasor_free(tPhasor* const ph)
-{
-    tPhasor_freeFromPool(ph, &leaf.mempool);
-}
-
-void    tPhasor_initToPool  (tPhasor* const ph, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPhasor* p = *ph = (_tPhasor*) mpool_alloc(sizeof(_tPhasor), m);
-    
-    p->phase = 0.0f;
-    p->inc = 0.0f;
-    p->phaseDidReset = 0;
-}
-
-void    tPhasor_freeFromPool(tPhasor* const ph, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPhasor* p = *ph;
-    
-    mpool_free((char*)p, m);
-}
-
-void    tPhasor_setFreq(tPhasor* const ph, float freq)
-{
-    _tPhasor* p = *ph;
-
-    p->freq  = freq;
-    
-    p->inc = freq * leaf.invSampleRate;
-}
-
-float   tPhasor_tick(tPhasor* const ph)
-{
-    _tPhasor* p = *ph;
-    
-    p->phase += p->inc;
-    
-    
-    p->phaseDidReset = 0;
-    if (p->phase >= 1.0f)
-    {
-        p->phaseDidReset = 1;
-        p->phase -= 1.0f;
-    }
-    
-    return p->phase;
-}
-
-/* Noise */
-void    tNoise_init(tNoise* const ns, NoiseType type)
-{
-    tNoise_initToPool(ns, type, &leaf.mempool);
-}
-
-void    tNoise_free(tNoise* const ns)
-{
-    tNoise_freeFromPool(ns, &leaf.mempool);
-}
-
-void    tNoise_initToPool   (tNoise* const ns, NoiseType type, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNoise* n = *ns = (_tNoise*) mpool_alloc(sizeof(_tNoise), m);
-    
-    n->type = type;
-    n->rand = leaf.random;
-}
-
-void    tNoise_freeFromPool (tNoise* const ns, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNoise* n = *ns;
-    
-    mpool_free((char*)n, m);
-}
-
-float   tNoise_tick(tNoise* const ns)
-{
-    _tNoise* n = *ns;
-    
-    float rand = (n->rand() * 2.0f) - 1.0f;
-    
-    if (n->type == PinkNoise)
-    {
-        float tmp;
-        n->pinkb0 = 0.99765f * n->pinkb0 + rand * 0.0990460f;
-        n->pinkb1 = 0.96300f * n->pinkb1 + rand * 0.2965164f;
-        n->pinkb2 = 0.57000f * n->pinkb2 + rand * 1.0526913f;
-        tmp = n->pinkb0 + n->pinkb1 + n->pinkb2 + rand * 0.1848f;
-        return (tmp * 0.05f);
-    }
-    else // WhiteNoise
-    {
-        return rand;
-    }
-}
-
-//=================================================================================
-/* Neuron */
-
-void     tNeuronSampleRateChanged(tNeuron* nr)
-{
-    
-}
-
-void    tNeuron_init(tNeuron* const nr)
-{
-    tNeuron_initToPool(nr, &leaf.mempool);
-}
-
-void    tNeuron_free(tNeuron* const nr)
-{
-    tNeuron_freeFromPool(nr, &leaf.mempool);
-}
-
-void    tNeuron_initToPool  (tNeuron* const nr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNeuron* n = *nr = (_tNeuron*) mpool_alloc(sizeof(_tNeuron), m);
-    
-    tPoleZero_initToPool(&n->f, mp);
-    
-    tPoleZero_setBlockZero(&n->f, 0.99f);
-    
-    n->timeStep = 1.0f / 50.0f;
-    
-    n->current = 0.0f; // 100.0f for sound
-    n->voltage = 0.0f;
-    
-    n->mode = NeuronNormal;
-    
-    n->P[0] = 0.0f;
-    n->P[1] = 0.0f;
-    n->P[2] = 1.0f;
-    
-    n->V[0] = -12.0f;
-    n->V[1] = 115.0f;
-    n->V[2] = 10.613f;
-    
-    n->gK = 36.0f;
-    n->gN = 120.0f;
-    n->gL = 0.3f;
-    n->C = 1.0f;
-    
-    n->rate[2] = n->gL/n->C;
-}
-
-void    tNeuron_freeFromPool(tNeuron* const nr, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNeuron* n = *nr;
-    
-    tPoleZero_free(&n->f);
-    mpool_free((char*)n, m);
-}
-
-void   tNeuron_reset(tNeuron* const nr)
-{
-    _tNeuron* n = *nr;
-    
-    tPoleZero_setBlockZero(&n->f, 0.99f);
-    
-    n->timeStep = 1.0f / 50.0f;
-    
-    n->current = 0.0f; // 100.0f for sound
-    n->voltage = 0.0f;
-    
-    n->mode = NeuronNormal;
-    
-    n->P[0] = 0.0f;
-    n->P[1] = 0.0f;
-    n->P[2] = 1.0f;
-    
-    n->V[0] = -12.0f;
-    n->V[1] = 115.0f;
-    n->V[2] = 10.613f;
-    
-    n->gK = 36.0f;
-    n->gN = 120.0f;
-    n->gL = 0.3f;
-    n->C = 1.0f;
-    
-    n->rate[2] = n->gL/n->C;
-}
-
-void        tNeuron_setV1(tNeuron* const nr, float V1)
-{
-    _tNeuron* n = *nr;
-    n->V[0] = V1;
-}
-
-
-void        tNeuron_setV2(tNeuron* const nr, float V2)
-{
-    _tNeuron* n = *nr;
-    n->V[1] = V2;
-}
-
-void        tNeuron_setV3(tNeuron* const nr, float V3)
-{
-    _tNeuron* n = *nr;
-    n->V[2] = V3;
-}
-
-void        tNeuron_setTimeStep(tNeuron* const nr, float timeStep)
-{
-    _tNeuron* n = *nr;
-    n->timeStep = timeStep;
-}
-
-void        tNeuron_setK(tNeuron* const nr, float K)
-{
-    _tNeuron* n = *nr;
-    n->gK = K;
-}
-
-void        tNeuron_setL(tNeuron* const nr, float L)
-{
-    _tNeuron* n = *nr;
-    n->gL = L;
-    n->rate[2] = n->gL/n->C;
-}
-
-void        tNeuron_setN(tNeuron* const nr, float N)
-{
-    _tNeuron* n = *nr;
-    n->gN = N;
-}
-
-void        tNeuron_setC(tNeuron* const nr, float C)
-{
-    _tNeuron* n = *nr;
-    n->C = C;
-    n->rate[2] = n->gL/n->C;
-}
-
-float   tNeuron_tick(tNeuron* const nr)
-{
-    _tNeuron* n = *nr;
-    
-    float output = 0.0f;
-    float voltage = n->voltage;
-    
-    n->alpha[0] = (0.01f * (10.0f - voltage)) / (expf((10.0f - voltage)/10.0f) - 1.0f);
-    n->alpha[1] = (0.1f * (25.0f-voltage)) / (expf((25.0f-voltage)/10.0f) - 1.0f);
-    n->alpha[2] = (0.07f * expf((-1.0f * voltage)/20.0f));
-    
-    n->beta[0] = (0.125f * expf((-1.0f* voltage)/80.0f));
-    n->beta[1] = (4.0f * expf((-1.0f * voltage)/18.0f));
-    n->beta[2] = (1.0f / (expf((30.0f-voltage)/10.0f) + 1.0f));
-    
-    for (int i = 0; i < 3; i++)
-    {
-        n->P[i] = (n->alpha[i] * n->timeStep) + ((1.0f - ((n->alpha[i] + n->beta[i]) * n->timeStep)) * n->P[i]);
-        
-        if (n->P[i] > 1.0f)         n->P[i] = 0.0f;
-        else if (n->P[i] < -1.0f)   n->P[i] = 0.0f;
-    }
-    // rate[0]= k ; rate[1] = Na ; rate[2] = l
-    n->rate[0] = ((n->gK * powf(n->P[0], 4.0f)) / n->C);
-    n->rate[1] = ((n->gN * powf(n->P[1], 3.0f) * n->P[2]) / n->C);
-    
-    //calculate the final membrane voltage based on the computed variables
-    n->voltage = voltage +
-    (n->timeStep * n->current / n->C) -
-    (n->timeStep * ( n->rate[0] * (voltage - n->V[0]) + n->rate[1] * (voltage - n->V[1]) + n->rate[2] * (voltage - n->V[2])));
-    
-    if (n->mode == NeuronTanh)
-    {
-        n->voltage = 100.0f * tanhf(0.01f * n->voltage);
-    }
-    else if (n->mode == NeuronAaltoShaper)
-    {
-        float shapeVoltage = 0.01f * n->voltage;
-        
-        float w, c, xc, xc2, xc4;
-        
-        float sqrt8 = 2.82842712475f;
-        
-        float wscale = 1.30612244898f;
-        float m_drive = 1.0f;
-        
-        xc = LEAF_clip(-sqrt8, shapeVoltage, sqrt8);
-        
-        xc2 = xc*xc;
-        
-        c = 0.5f * shapeVoltage * (3.0f - (xc2));
-        
-        xc4 = xc2 * xc2;
-        
-        w = (1.0f - xc2 * 0.25f + xc4 * 0.015625f) * wscale;
-        
-        shapeVoltage = w * (c + 0.05f * xc2) * (m_drive + 0.75f);
-        
-        n->voltage = 100.0f * shapeVoltage;
-    }
-    
-    
-    if (n->voltage > 100.0f)  n->voltage = 100.0f;
-    else if (n->voltage < -100.) n->voltage = -100.0f;
-    
-    //(inputCurrent + (voltage - ((voltage * timeStep) / timeConstant)) + P[0] + P[1] + P[2]) => voltage;
-    // now we should have a result
-    //set the output voltage to the "step" ugen, which controls the DAC.
-    output = n->voltage * 0.01f; // volts
-    
-    output = tPoleZero_tick(&n->f, output);
-    
-    return output;
-    
-}
-
-void        tNeuron_setMode  (tNeuron* const nr, NeuronMode mode)
-{
-    _tNeuron* n = *nr;
-    n->mode = mode;
-}
-
-void        tNeuron_setCurrent  (tNeuron* const nr, float current)
-{
-    _tNeuron* n = *nr;
-    n->current = current;
-}
-
-
-
-void    tMinBLEP_init           (tMinBLEP* const minblep, int zeroCrossings, int oversamplerRatio)
-{
-    tMinBLEP_initToPool(minblep, zeroCrossings, oversamplerRatio, &leaf.mempool);
-}
-
-void    tMinBLEP_free           (tMinBLEP* const minblep)
-{
-    tMinBLEP_freeFromPool(minblep, &leaf.mempool);
-}
-
-void    tMinBLEP_initToPool     (tMinBLEP* const minblep, int zeroCrossings, int oversamplerRatio, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMinBLEP* mb = *minblep = (_tMinBLEP*) mpool_alloc(sizeof(_tMinBLEP), m);
-    
-    mb->overSamplingRatio = zeroCrossings;
-    mb->zeroCrossings = oversamplerRatio;
-    mb->returnDerivative = 0;
-    mb->proportionalBlepFreq = (float) mb->zeroCrossings / (float) mb->overSamplingRatio; // defaults to NyQuist ....
-    
-    mb->lastValue = 0;
-    mb->lastDelta = 0;
-    
-//     float* x1, x2, y1, y2;
-    // AA FILTER
-//    zeromem (coefficients, sizeof (coefficients));
-    
-    mb->minBlepSize = (mb->zeroCrossings * 2 * mb->overSamplingRatio) + 1;
-    
-    mb->ratio = 1;
-    mb->lastRatio = 1;
-    
-//    createLowPass (ratio);
-//    resetFilters();
-    
-    mb->blepIndex = 0;
-    mb->numActiveBleps = 0;
-    //currentActiveBlepOffsets;
-    
-    // These probably don't need to be this large
-    mb->offset = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-//    mb->freqMultiple = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-    mb->pos_change_magnitude = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-    mb->vel_change_magnitude = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-    
-    mb->minBlepArray = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-    mb->minBlepDerivArray = (float*) mpool_alloc(sizeof(float) * mb->minBlepSize, m);
-    
-    tMinBLEP_buildBLEP(minblep);
-}
-
-void    tMinBLEP_freeFromPool   (tMinBLEP* const minblep, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMinBLEP* mb = *minblep;
-    
-    mpool_free((char*)mb->offset, m);
-//    mpool_free(mb->freqMultiple, m);
-    mpool_free((char*)mb->pos_change_magnitude, m);
-    mpool_free((char*)mb->vel_change_magnitude, m);
-    
-    mpool_free((char*)mb->minBlepArray, m);
-    mpool_free((char*)mb->minBlepDerivArray, m);
-    
-    mpool_free((char*)mb, m);
-}
-
-// SINC Function
-static float SINC(float x)
-{
-    float pix;
-    
-    if(x == 0.0f)
-        return 1.0f;
-    else
-    {
-        pix = PI * x;
-        return sinf(pix) / pix;
-    }
-}
-
-// Generate Blackman Window
-static void BlackmanWindow(int n, float *w)
-{
-    int m = n - 1;
-    int i;
-    float f1, f2, fm;
-    
-    fm = (float)m;
-    for(i = 0; i <= m; i++)
-    {
-        f1 = (2.0f * PI * (float)i) / fm;
-        f2 = 2.0f * f1;
-        w[i] = 0.42f - (0.5f * cosf(f1)) + (0.08f * cosf(f2));
-    }
-}
-
-// Discrete Fourier Transform
-static void DFT(int n, float *realTime, float *imagTime, float *realFreq, float *imagFreq)
-{
-    int k, i;
-    float sr, si, p;
-    
-    for(k = 0; k < n; k++)
-    {
-        realFreq[k] = 0.0f;
-        imagFreq[k] = 0.0f;
-    }
-    
-    for(k = 0; k < n; k++)
-        for(i = 0; i < n; i++)
-        {
-            p = (2.0f * PI * (float)(k * i)) / n;
-            sr = cosf(p);
-            si = -sinf(p);
-            realFreq[k] += (realTime[i] * sr) - (imagTime[i] * si);
-            imagFreq[k] += (realTime[i] * si) + (imagTime[i] * sr);
-        }
-}
-
-// Inverse Discrete Fourier Transform
-static void InverseDFT(int n, float *realTime, float *imagTime, float *realFreq, float *imagFreq)
-{
-    int k, i;
-    float sr, si, p;
-    
-    for(k = 0; k < n; k++)
-    {
-        realTime[k] = 0.0f;
-        imagTime[k] = 0.0f;
-    }
-    
-    for(k = 0; k < n; k++)
-    {
-        for(i = 0; i < n; i++)
-        {
-            p = (2.0f * PI * (float)(k * i)) / n;
-            sr = cosf(p);
-            si = -sinf(p);
-            realTime[k] += (realFreq[i] * sr) + (imagFreq[i] * si);
-            imagTime[k] += (realFreq[i] * si) - (imagFreq[i] * sr);
-        }
-        realTime[k] /= n;
-        imagTime[k] /= n;
-    }
-}
-
-// Complex Absolute Value
-static float complexabs(float x, float y)
-{
-    return sqrtf((x * x) + (y * y));
-}
-
-// Complex Exponential
-static void complexexp(float x, float y, float *zx, float *zy)
-{
-    float expx;
-    
-    expx = expf(x);
-    *zx = expx * cosf(y);
-    *zy = expx * sinf(y);
-}
-
-// Compute Real Cepstrum Of Signal
-static void RealCepstrum(int n, float *signal, float *realCepstrum)
-{
-    int i;
-    
-    float realTime[n];
-    float imagTime[n];
-    float realFreq[n];
-    float imagFreq[n];
-    
-    // Compose Complex FFT Input
-    
-    for(i = 0; i < n; i++)
-    {
-        realTime[i] = signal[i];
-        imagTime[i] = 0.0f;
-    }
-    
-    // Perform DFT
-    
-    DFT(n, realTime, imagTime, realFreq, imagFreq);
-    
-    // Calculate Log Of Absolute Value
-    
-    for(i = 0; i < n; i++)
-    {
-        realFreq[i] = logf(complexabs(realFreq[i], imagFreq[i]));
-        imagFreq[i] = 0.0f;
-    }
-    
-    // Perform Inverse FFT
-    
-    InverseDFT(n, realTime, imagTime, realFreq, imagFreq);
-    
-    // Output Real Part Of FFT
-    for(i = 0; i < n; i++)
-        realCepstrum[i] = realTime[i];
-}
-
-// Compute Minimum Phase Reconstruction Of Signal
-static void MinimumPhase(int n, float *realCepstrum, float *minimumPhase)
-{
-    int i, nd2;
-    float realTime[n];
-    float imagTime[n];
-    float realFreq[n];
-    float imagFreq[n];
-    
-    nd2 = n / 2;
-    
-    if((n % 2) == 1)
-    {
-        realTime[0] = realCepstrum[0];
-        for(i = 1; i < nd2; i++)
-            realTime[i] = 2.0f * realCepstrum[i];
-        for(i = nd2; i < n; i++)
-            realTime[i] = 0.0f;
-    }
-    else
-    {
-        realTime[0] = realCepstrum[0];
-        for(i = 1; i < nd2; i++)
-            realTime[i] = 2.0f * realCepstrum[i];
-        realTime[nd2] = realCepstrum[nd2];
-        for(i = nd2 + 1; i < n; i++)
-            realTime[i] = 0.0f;
-    }
-    
-    for(i = 0; i < n; i++)
-        imagTime[i] = 0.0f;
-    
-    DFT(n, realTime, imagTime, realFreq, imagFreq);
-    
-    for(i = 0; i < n; i++)
-        complexexp(realFreq[i], imagFreq[i], &realFreq[i], &imagFreq[i]);
-    
-    InverseDFT(n, realTime, imagTime, realFreq, imagFreq);
-    
-    for(i = 0; i < n; i++)
-        minimumPhase[i] = realTime[i];
-}
-
-
-// Generate the MinBLEP
-void tMinBLEP_buildBLEP(tMinBLEP* const minblep)
-{
-    _tMinBLEP* m = *minblep;
-    
-    int i, n;
-    float r, a, b;
-    
-    n = m->minBlepSize;
-    
-    // Generate Sinc
-    
-    a = -m->overSamplingRatio;
-    b = m->overSamplingRatio;
-    for(i = 0; i < n; i++)
-    {
-        r = ((float)i) / ((float)(n - 1));
-        m->minBlepArray[i] = SINC(a + (r * (b - a)));
-        m->minBlepDerivArray[i] = 0;
-    }
-    
-    // Window Sinc
-    
-    BlackmanWindow(n, m->minBlepDerivArray);
-    for(i = 0; i < n; i++)
-        m->minBlepArray[i] *= m->minBlepDerivArray[i];
-    
-    // Minimum Phase Reconstruction
-    
-    RealCepstrum(n, m->minBlepArray, m->minBlepDerivArray);
-    MinimumPhase(n, m->minBlepDerivArray, m->minBlepArray);
-    
-    // Integrate Into MinBLEP
-    a = 0.0f;
-    float secondInt = 0.0f;
-    for(i = 0; i < n; i++)
-    {
-        a += m->minBlepArray[i];
-        m->minBlepArray[i] = a;
-        
-        secondInt += a;
-        m->minBlepDerivArray[i] = secondInt;
-    }
-    
-    // Normalize
-    a = m->minBlepArray[n - 1];
-    a = 1.0f / a;
-    b = 0.0f;
-    for(i = 0; i < n; i++)
-    {
-        m->minBlepArray[i] *= a;
-        b = fmaxf(b, m->minBlepDerivArray[i]);
-    }
-    
-    // Normalize ...
-    b = 1.0f/b;
-    for (i = 0; i < n; i++)
-    {
-        m->minBlepDerivArray[i] *= b;
-        m->minBlepDerivArray[i] -= ((float)i) / ((float) n-1);
-        
-        // SUBTRACT 1 and invert so the signal (so it goes 1->0)
-        m->minBlepArray[i] -= 1.0f;
-        m->minBlepArray[i] = -m->minBlepArray[i];
-    }
-}
-
-void    tMinBLEP_addBLEP        (tMinBLEP* const minblep, float offset, float posChange, float velChange)
-{
-    _tMinBLEP* m = *minblep;
-    
-    int n = m->minBlepSize;
-    
-    m->offset[m->blepIndex] = offset;
-//    m->freqMultiple[m->blepIndex] = m->overSamplingRatio*m->proportionalBlepFreq;
-    m->pos_change_magnitude[m->blepIndex] = posChange;
-    m->vel_change_magnitude[m->blepIndex] = velChange;
-    
-    m->blepIndex++;
-    if (m->blepIndex >= n) m->blepIndex = 0;
-    
-    m->numActiveBleps++;
-}
-
-float   tMinBLEP_tick           (tMinBLEP* const minblep, float input)
-{
-    _tMinBLEP* m = *minblep;
-    // PROCESS ALL BLEPS -
-    /// for each offset, copy a portion of the blep array to the output ....
-    
-    float sample = input;
-    
-    int n = m->minBlepSize;
-
-    for (int blep = 1; blep <= m->numActiveBleps; blep++)
-    {
-        int i = (m->blepIndex - blep + n) % n;
-        float adjusted_Freq = m->overSamplingRatio*m->proportionalBlepFreq;//m->freqMultiple[i];
-        float exactPosition = m->offset[i];
-        
-        float blepPosExact = adjusted_Freq*(exactPosition + 1); // +1 because this needs to trigger on the LOW SAMPLE
-        float blepPosSample = 0;
-        float fraction = modff(blepPosExact, &blepPosSample);
-        
-        // LIMIT the scaling on the derivative array
-        // otherwise, it can get TOO large
-        float depthLimited = m->proportionalBlepFreq; //jlimit<double>(.1, 1, proportionalBlepFreq);
-        float blepDeriv_PosExact = depthLimited*m->overSamplingRatio*(exactPosition + 1);
-        float blepDeriv_Sample = 0;
-        float fraction_Deriv = modff(blepDeriv_PosExact, &blepDeriv_Sample);
-        
-        
-        // DONE ... we reached the end ...
-        if (((int) blepPosExact > n) && ((int) blepDeriv_PosExact > n))
-            break;
-        
-        // BLEP has not yet occurred ...
-        if (blepPosExact < 0)
-            continue;
-        
-        
-        // 0TH ORDER COMPENSATION ::::
-        /// add the BLEP to compensate for discontinuties in the POSITION
-        if ( fabs(m->pos_change_magnitude[i]) > 0 && blepPosSample < n)
-        {
-            // LINEAR INTERPOLATION ::::
-            float lowValue = m->minBlepArray[(int) blepPosSample];
-            float hiValue = lowValue;
-            
-            if ((int) blepPosSample + 1 < n)
-                hiValue = m->minBlepArray[(int) blepPosSample + 1];
-            
-            float delta = hiValue - lowValue;
-            float exactValue = lowValue + fraction*delta;
-            
-            // SCALE by the discontinuity magnitude
-            exactValue *= m->pos_change_magnitude[i];
-            
-            // ADD to the thruput
-            sample += exactValue;
-        }
-        
-        
-        // 1ST ORDER COMPENSATION ::::
-        /// add the BLEP DERIVATIVE to compensate for discontinuties in the VELOCITY
-        if ( fabs(m->vel_change_magnitude[i]) > 0 && blepDeriv_PosExact < n)
-        {
-            
-            // LINEAR INTERPOLATION ::::
-            double lowValue = m->minBlepDerivArray[(int) blepDeriv_PosExact];
-            double hiValue = lowValue;
-            
-            if ((int) blepDeriv_PosExact + 1 < n)
-                hiValue = m->minBlepDerivArray[(int) blepDeriv_PosExact + 1];
-            
-            double delta = hiValue - lowValue;
-            double exactValue = lowValue + fraction_Deriv*delta;
-            
-            // SCALE by the discontinuity magnitude`
-            exactValue *= m->vel_change_magnitude[i];
-            
-            // ADD to the thruput
-            sample += exactValue;
-            
-        }
-    
-        // UPDATE ::::
-        m->offset[i] += 1.0f;
-        if (m->offset[i] * adjusted_Freq > n)
-        {
-            m->numActiveBleps--;
-        }
-    }
-    return sample;
-}
-
-//==============================================================================
-
-/* tMBTriangle: Anti-aliased Triangle waveform. */
-void    tMBTriangle_init          (tMBTriangle* const osc)
-{
-    tMBTriangle_initToPool(osc, &leaf.mempool);
-}
-
-void    tMBTriangle_free          (tMBTriangle* const osc)
-{
-    tMBTriangle_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tMBTriangle_initToPool    (tMBTriangle* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBTriangle* c = *osc = (_tMBTriangle*) mpool_alloc(sizeof(_tMBTriangle), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    c->skew     =  0.5f;
-    c->lastOut  =  0.0f;
-    
-    tMinBLEP_initToPool(&c->minBlep, 16, 32, mp);
-    tHighpass_initToPool(&c->dcBlock, 5.0f, mp);
-}
-
-void    tMBTriangle_freeFromPool  (tMBTriangle* const cy, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBTriangle* c = *cy;
-    
-    tMinBLEP_freeFromPool(&c->minBlep, mp);
-    tHighpass_freeFromPool(&c->dcBlock, mp);
-    
-    mpool_free((char*)c, m);
-}
-
-float   tMBTriangle_tick          (tMBTriangle* const osc)
-{
-    _tMBTriangle* c = *osc;
-    
-    float out;
-
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-        float offset = 1.0f - ((c->inc - c->phase) / c->inc);
-        tMinBLEP_addBLEP(&c->minBlep, offset, -2, 0.0f);
-    }
-    if (c->skew <= c->phase && c->phase < c->skew + c->inc)
-    {
-        float offset = 1.0f - ((c->inc - c->phase + c->skew) / c->inc);
-        tMinBLEP_addBLEP(&c->minBlep, offset, 2, 0.0f);
-    }
-
-    if (c->phase < c->skew)
-    {
-        out = (1.0f - c->skew) * 2.0f;
-    }
-    else
-    {
-        out = -c->skew * 2.0f;
-    }
-
-    out = tMinBLEP_tick(&c->minBlep, out);// - phasor->inc * 2.0f;
-    
-    out = (c->inc * out) + ((1 - c->inc) * c->lastOut);
-    c->lastOut = out;
-    
-    return tHighpass_tick(&c->dcBlock, out * 4.0f);
-    
-//    float offset;
-//    float vel = 2;
-//    c->phase += c->inc;
-//    if (c->phase >= 1.0f)
-//    {
-//        c->phase -= 1.0f;
-//        offset = 1.0f - ((c->inc - c->phase) / c->inc);
-//        tMinBLEP_addBLEP(&c->minBlep, offset, 0.0f, -vel);
-//    }
-//    if (c->skew <= c->phase && c->phase < c->skew + c->inc)
-//    {
-//        offset = 1.0f - ((c->inc - c->phase + c->skew) / c->inc);
-//        tMinBLEP_addBLEP(&c->minBlep, offset, 0.0f, vel);
-//    }
-//
-//    float out;
-//    if (c->phase < c->skew) out = 1.0f - (c->phase / c->skew);
-//    else out = (c->phase - c->skew) / (1 - c->skew);
-//
-//    out = (out - 0.5f) * 2.0f;
-//
-////    return tHighpass_tick(&c->dcBlock, tMinBLEP_tick(&c->minBlep, out));
-//    return tMinBLEP_tick(&c->minBlep, out);
-}
-
-void    tMBTriangle_setFreq       (tMBTriangle* const osc, float freq)
-{
-    _tMBTriangle* c = *osc;
-    
-    c->freq  = freq;
-    c->inc = freq * leaf.invSampleRate;
-    
-//    tHighpass_setFreq(&c->dcBlock, freq*0.5);
-}
-
-void    tMBTriangle_setSkew       (tMBTriangle* const osc, float skew)
-{
-    _tMBTriangle* c = *osc;
-    c->skew = (skew + 1.0f) * 0.5f;
-}
-
-void    tMBTriangle_sync          (tMBTriangle* const osc, float phase)
-{
-    _tMBTriangle* c = *osc;
-    
-    phase += 0.5f;
-    
-    int intPart = (int) phase;
-    phase = phase - (float) intPart;
-    
-    float before, after;
-    
-    if (c->phase < c->skew) before = (1.0f - c->skew - c->phase) * 2.0f;
-    else before = -(c->skew - c->phase) * 2.0f;
-
-    if (phase < c->skew) after = (1.0f - c->skew - c->phase) * 2.0f;
-    else after = -(c->skew - c->phase) * 2.0f;
-
-    c->phase = phase;
-
-    float offset = 0.0f;//1.0f - ((c->inc - c->phase) / c->inc);
-    tMinBLEP_addBLEP(&c->minBlep, offset, before - after, 0.0f);
-    
-    if (c->phase < c->skew) c->lastOut = 1.0f - (c->phase / c->skew);
-    else c->lastOut = (c->phase - c->skew) / (1.0f - c->skew);
-}
-
-//==============================================================================
-
-/* tMBPulse: Anti-aliased pulse waveform. */
-void    tMBPulse_init        (tMBPulse* const osc)
-{
-    tMBPulse_initToPool(osc, &leaf.mempool);
-}
-
-void    tMBPulse_free        (tMBPulse* const osc)
-{
-    tMBPulse_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tMBPulse_initToPool  (tMBPulse* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBPulse* c = *osc = (_tMBPulse*) mpool_alloc(sizeof(_tMBPulse), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    c->width     =  0.5f;
-    
-    tMinBLEP_initToPool(&c->minBlep, 16, 32, mp);
-    tHighpass_initToPool(&c->dcBlock, 10.0f, mp);
-}
-
-void    tMBPulse_freeFromPool(tMBPulse* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBPulse* c = *osc;
-    
-    tMinBLEP_freeFromPool(&c->minBlep, mp);
-    tHighpass_freeFromPool(&c->dcBlock, mp);
-    
-    mpool_free((char*)c, m);
-}
-
-float   tMBPulse_tick        (tMBPulse* const osc)
-{
-    _tMBPulse* c = *osc;
-    
-
-    
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-        float offset = 1.0f - ((c->inc - c->phase) / c->inc);
-        tMinBLEP_addBLEP(&c->minBlep, offset, -2.0f, 0.0f);
-    }
-    if (c->width <= c->phase && c->phase < c->width + c->inc)
-    {
-        float offset = 1.0f - ((c->inc - c->phase + c->width) / c->inc);
-        tMinBLEP_addBLEP(&c->minBlep, offset, 2.0f, 0.0f);
-    }
-    
-    float out;
-    if (c->phase < c->width) out = 1.0f;
-    else out = -1.0f;
-    
-    return tHighpass_tick(&c->dcBlock, tMinBLEP_tick(&c->minBlep, out));
-}
-
-void    tMBPulse_setFreq     (tMBPulse* const osc, float freq)
-{
-    _tMBPulse* c = *osc;
-    
-    c->freq  = freq;
-    c->inc = freq * leaf.invSampleRate;
-}
-
-void    tMBPulse_setWidth    (tMBPulse* const osc, float width)
-{
-    _tMBPulse* c = *osc;
-    c->width = width;
-}
-
-void    tMBPulse_sync          (tMBPulse* const osc, float phase)
-{
-    _tMBPulse* c = *osc;
-    int intPart = (int) phase;
-    phase = phase - (float) intPart;
-    
-    float before, after;
-    
-    if (c->phase < c->width) before = 1.0f;
-    else before = -1.0f;
-    
-    if (phase < c->width) after = 1.0;
-    else after = -1.0f;
-    
-    float offset = 0.0f;//1.0f - ((c->inc - c->phase) / c->inc);
-    tMinBLEP_addBLEP(&c->minBlep, offset, before - after, 0.0f);
-    
-    c->phase = phase;
-}
-
-
-//==============================================================================
-
-/* tMBSawtooth: Anti-aliased Sawtooth waveform. */
-void    tMBSaw_init          (tMBSaw* const osc)
-{
-    tMBSaw_initToPool(osc, &leaf.mempool);
-}
-
-void    tMBSaw_free          (tMBSaw* const osc)
-{
-    tMBSaw_freeFromPool(osc, &leaf.mempool);
-}
-
-void    tMBSaw_initToPool    (tMBSaw* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBSaw* c = *osc = (_tMBSaw*) mpool_alloc(sizeof(_tMBSaw), m);
-    
-    c->inc      =  0.0f;
-    c->phase    =  0.0f;
-    
-    tMinBLEP_initToPool(&c->minBlep, 16, 32, mp);
-    tHighpass_initToPool(&c->dcBlock, 10.0f, mp);
-}
-
-void    tMBSaw_freeFromPool  (tMBSaw* const osc, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tMBSaw* c = *osc;
-    
-    tMinBLEP_freeFromPool(&c->minBlep, mp);
-    tHighpass_freeFromPool(&c->dcBlock, mp);
-    
-    mpool_free((char*)c, m);
-}
-
-float   tMBSaw_tick          (tMBSaw* const osc)
-{
-    _tMBSaw* c = *osc;
-    
-    c->phase += c->inc;
-    if (c->phase >= 1.0f)
-    {
-        c->phase -= 1.0f;
-        float offset = 1.0f - ((c->inc - c->phase) / c->inc);
-        tMinBLEP_addBLEP(&c->minBlep, offset, 2.0f, 0.0f);
-    }
-    
-    float out = (c->phase * 2.0f) - 1.0f;
-    
-    return tHighpass_tick(&c->dcBlock, tMinBLEP_tick(&c->minBlep, out));
-}
-
-void    tMBSaw_setFreq       (tMBSaw* const osc, float freq)
-{
-    _tMBSaw* c = *osc;
-    
-    c->freq  = freq;
-    
-    c->inc = freq * leaf.invSampleRate;
-}
-
-void    tMBSaw_sync          (tMBSaw* const osc, float phase)
-{
-    _tMBSaw* c = *osc;
-    int intPart = (int) phase;
-    phase = phase - (float) intPart;
-    
-    float offset = 0.0f;//1.0f - ((c->inc - phase +) / c->inc);
-    tMinBLEP_addBLEP(&c->minBlep, offset, (c->phase - phase) * 2.0f, 0.0f);
-    
-    c->phase = phase;
-}
--- a/LEAF/Src/leaf-physical.c
+++ /dev/null
@@ -1,747 +1,0 @@
-/*==============================================================================
-
-    leaf-string.c
-    Created: 30 Nov 2018 10:41:42am
-    Author:  airship
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-physical.h"
-
-#else
-
-#include "../Inc/leaf-physical.h"
-
-#endif
-
-/* ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ tPluck ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ */
-void    tPluck_init         (tPluck* const pl, float lowestFrequency)
-{
-    tPluck_initToPool(pl, lowestFrequency, &leaf.mempool);
-}
-
-void tPluck_free (tPluck* const pl)
-{
-    tPluck_freeFromPool(pl, &leaf.mempool);
-}
-
-void    tPluck_initToPool    (tPluck* const pl, float lowestFrequency, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPluck* p = *pl = (_tPluck*) mpool_alloc(sizeof(_tPluck), m);
-    
-    if ( lowestFrequency <= 0.0f )  lowestFrequency = 10.0f;
-    
-    tNoise_initToPool(&p->noise, WhiteNoise, mp);
-    
-    tOnePole_initToPool(&p->pickFilter, 0.0f, mp);
-    
-    tOneZero_initToPool(&p->loopFilter, 0.0f, mp);
-    
-    tAllpassDelay_initToPool(&p->delayLine, 0.0f, leaf.sampleRate * 2, mp);
-    tAllpassDelay_clear(&p->delayLine);
-    
-    tPluck_setFrequency(pl, 220.0f);
-}
-
-void    tPluck_freeFromPool  (tPluck* const pl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPluck* p = *pl;
-    
-    tNoise_freeFromPool(&p->noise, mp);
-    tOnePole_freeFromPool(&p->pickFilter, mp);
-    tOneZero_freeFromPool(&p->loopFilter, mp);
-    tAllpassDelay_freeFromPool(&p->delayLine, mp);
-    
-    mpool_free((char*)p, m);
-}
-
-float   tPluck_getLastOut    (tPluck* const pl)
-{
-    _tPluck* p = *pl;
-    return p->lastOut;
-}
-
-float   tPluck_tick          (tPluck* const pl)
-{
-    _tPluck* p = *pl;
-    return (p->lastOut = 3.0f * tAllpassDelay_tick(&p->delayLine, tOneZero_tick(&p->loopFilter, tAllpassDelay_getLastOut(&p->delayLine) * p->loopGain ) ));
-}
-
-void    tPluck_pluck         (tPluck* const pl, float amplitude)
-{
-    _tPluck* p = *pl;
-    
-    if ( amplitude < 0.0f)      amplitude = 0.0f;
-    else if (amplitude > 1.0f)  amplitude = 1.0f;
-    
-    tOnePole_setPole(&p->pickFilter, 0.999f - (amplitude * 0.15f));
-    tOnePole_setGain(&p->pickFilter, amplitude * 0.5f );
-    
-    // Fill delay with noise additively with current contents.
-    for ( uint32_t i = 0; i < (uint32_t)tAllpassDelay_getDelay(&p->delayLine); i++ )
-        tAllpassDelay_tick(&p->delayLine, 0.6f * tAllpassDelay_getLastOut(&p->delayLine) + tOnePole_tick(&p->pickFilter, tNoise_tick(&p->noise) ) );
-}
-
-// Start a note with the given frequency and amplitude.;
-void    tPluck_noteOn        (tPluck* const pl, float frequency, float amplitude )
-{
-    _tPluck* p = *pl;
-    p->lastFreq = frequency;
-    tPluck_setFrequency( pl, frequency );
-    tPluck_pluck( pl, amplitude );
-}
-
-// Stop a note with the given amplitude (speed of decay).
-void    tPluck_noteOff       (tPluck* const pl, float amplitude )
-{
-    _tPluck* p = *pl;
-    
-    if ( amplitude < 0.0f)      amplitude = 0.0f;
-    else if (amplitude > 1.0f)  amplitude = 1.0f;
-    
-    p->loopGain = 1.0f - amplitude;
-}
-
-// Set instrument parameters for a particular frequency.
-void    tPluck_setFrequency  (tPluck* const pl, float frequency )
-{
-    _tPluck* p = *pl;
-    
-    if ( frequency <= 0.0f )   frequency = 0.001f;
-    
-    // Delay = length - filter delay.
-    float delay = ( leaf.sampleRate / frequency ) - tOneZero_getPhaseDelay(&p->loopFilter, frequency );
-    
-    tAllpassDelay_setDelay(&p->delayLine, delay );
-    
-    p->loopGain = 0.99f + (frequency * 0.000005f);
-    
-    if ( p->loopGain >= 0.999f ) p->loopGain = 0.999f;
-    
-}
-
-// Perform the control change specified by \e number and \e value (0.0 - 128.0).
-void    tPluck_controlChange (tPluck* const pl, int number, float value)
-{
-    return;
-}
-
-void tPluckSampleRateChanged(tPluck* const pl)
-{
-    _tPluck* p = *pl;
-    tPluck_setFrequency(pl, p->lastFreq);
-}
-
-/* ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ tKarplusStrong ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ */
-void    tKarplusStrong_init (tKarplusStrong* const pl, float lowestFrequency)
-{
-    tKarplusStrong_initToPool(pl, lowestFrequency, &leaf.mempool);
-}
-
-void tKarplusStrong_free (tKarplusStrong* const pl)
-{
-    tKarplusStrong_freeFromPool(pl, &leaf.mempool);
-}
-
-void    tKarplusStrong_initToPool   (tKarplusStrong* const pl, float lowestFrequency, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tKarplusStrong* p = *pl = (_tKarplusStrong*) mpool_alloc(sizeof(_tKarplusStrong), m);
-    
-    if ( lowestFrequency <= 0.0f )  lowestFrequency = 8.0f;
-    
-    tAllpassDelay_initToPool(&p->delayLine, 0.0f, leaf.sampleRate * 2, mp);
-    tAllpassDelay_clear(&p->delayLine);
-    
-    tLinearDelay_initToPool(&p->combDelay, 0.0f, leaf.sampleRate * 2, mp);
-    tLinearDelay_clear(&p->combDelay);
-    
-    tOneZero_initToPool(&p->filter, 0.0f, mp);
-    
-    tNoise_initToPool(&p->noise, WhiteNoise, mp);
-    
-    for (int i = 0; i < 4; i++)
-    {
-        tBiQuad_initToPool(&p->biquad[i], mp);
-    }
-    
-    p->pluckAmplitude = 0.3f;
-    p->pickupPosition = 0.4f;
-    
-    p->stretching = 0.9999f;
-    p->baseLoopGain = 0.995f;
-    p->loopGain = 0.999f;
-    
-    tKarplusStrong_setFrequency( pl, 220.0f );
-}
-
-void    tKarplusStrong_freeFromPool (tKarplusStrong* const pl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tKarplusStrong* p = *pl;
-    
-    tAllpassDelay_freeFromPool(&p->delayLine, mp);
-    tLinearDelay_freeFromPool(&p->combDelay, mp);
-    tOneZero_freeFromPool(&p->filter, mp);
-    tNoise_freeFromPool(&p->noise, mp);
-    
-    for (int i = 0; i < 4; i++)
-    {
-        tBiQuad_freeFromPool(&p->biquad[i], mp);
-    }
-    
-    mpool_free((char*)p, m);
-}
-
-float   tKarplusStrong_getLastOut    (tKarplusStrong* const pl)
-{
-    _tKarplusStrong* p = *pl;
-    return p->lastOut;
-}
-
-float   tKarplusStrong_tick          (tKarplusStrong* const pl)
-{
-    _tKarplusStrong* p = *pl;
-    
-    float temp = tAllpassDelay_getLastOut(&p->delayLine) * p->loopGain;
-    
-    // Calculate allpass stretching.
-    for (int i=0; i<4; i++)     temp = tBiQuad_tick(&p->biquad[i],temp);
-    
-    // Moving average filter.
-    temp = tOneZero_tick(&p->filter, temp);
-    
-    float out = tAllpassDelay_tick(&p->delayLine, temp);
-    out = out - tLinearDelay_tick(&p->combDelay, out);
-    p->lastOut = out;
-    
-    return p->lastOut;
-}
-
-void    tKarplusStrong_pluck         (tKarplusStrong* const pl, float amplitude)
-{
-    _tKarplusStrong* p = *pl;
-    
-    if ( amplitude < 0.0f)      amplitude = 0.0f;
-    else if (amplitude > 1.0f)  amplitude = 1.0f;
-    
-    p->pluckAmplitude = amplitude;
-    
-    for ( uint32_t i=0; i < (uint32_t)tAllpassDelay_getDelay(&p->delayLine); i++ )
-    {
-        // Fill delay with noise additively with current contents.
-        tAllpassDelay_tick(&p->delayLine, (tAllpassDelay_getLastOut(&p->delayLine) * 0.6f) + 0.4f * tNoise_tick(&p->noise) * p->pluckAmplitude );
-        //delayLine_.tick( combDelay_.tick((delayLine_.lastOut() * 0.6) + 0.4 * noise->tick() * pluckAmplitude_) );
-    }
-}
-
-// Start a note with the given frequency and amplitude.;
-void    tKarplusStrong_noteOn        (tKarplusStrong* const pl, float frequency, float amplitude )
-{
-    tKarplusStrong_setFrequency( pl, frequency );
-    tKarplusStrong_pluck( pl, amplitude );
-}
-
-// Stop a note with the given amplitude (speed of decay).
-void    tKarplusStrong_noteOff       (tKarplusStrong* const pl, float amplitude )
-{
-    _tKarplusStrong* p = *pl;
-    
-    if ( amplitude < 0.0f)      amplitude = 0.0f;
-    else if (amplitude > 1.0f)  amplitude = 1.0f;
-    
-    p->loopGain = 1.0f - amplitude;
-}
-
-// Set instrument parameters for a particular frequency.
-void    tKarplusStrong_setFrequency  (tKarplusStrong* const pl, float frequency )
-{
-    _tKarplusStrong* p = *pl;
-    
-    if ( frequency <= 0.0f )   frequency = 0.001f;
-    
-    p->lastFrequency = frequency;
-    p->lastLength = leaf.sampleRate / p->lastFrequency;
-    float delay = p->lastLength - 0.5f;
-    tAllpassDelay_setDelay(&p->delayLine, delay);
-    
-    // MAYBE MODIFY LOOP GAINS
-    p->loopGain = p->baseLoopGain + (frequency * 0.000005f);
-    if (p->loopGain >= 1.0f) p->loopGain = 0.99999f;
-    
-    tKarplusStrong_setStretch(pl, p->stretching);
-    
-    tLinearDelay_setDelay(&p->combDelay, 0.5f * p->pickupPosition * p->lastLength );
-    
-}
-
-// Set the stretch "factor" of the string (0.0 - 1.0).
-void    tKarplusStrong_setStretch         (tKarplusStrong* const pl, float stretch )
-{
-    _tKarplusStrong* p = *pl;
-    
-    p->stretching = stretch;
-    float coefficient;
-    float freq = p->lastFrequency * 2.0f;
-    float dFreq = ( (0.5f * leaf.sampleRate) - freq ) * 0.25f;
-    float temp = 0.5f + (stretch * 0.5f);
-    if ( temp > 0.9999f ) temp = 0.9999f;
-    
-    for ( int i=0; i<4; i++ )
-    {
-        coefficient = temp * temp;
-        tBiQuad_setA2(&p->biquad[i], coefficient);
-        tBiQuad_setB0(&p->biquad[i], coefficient);
-        tBiQuad_setB2(&p->biquad[i], 1.0f);
-        
-        coefficient = -2.0f * temp * cos(TWO_PI * freq / leaf.sampleRate);
-        tBiQuad_setA1(&p->biquad[i], coefficient);
-        tBiQuad_setB1(&p->biquad[i], coefficient);
-        
-        freq += dFreq;
-    }
-}
-
-// Set the pluck or "excitation" position along the string (0.0 - 1.0).
-void    tKarplusStrong_setPickupPosition  (tKarplusStrong* const pl, float position )
-{
-    _tKarplusStrong* p = *pl;
-    
-    if (position < 0.0f)        p->pickupPosition = 0.0f;
-    else if (position <= 1.0f)  p->pickupPosition = position;
-    else                        p->pickupPosition = 1.0f;
-    
-    tLinearDelay_setDelay(&p->combDelay, 0.5f * p->pickupPosition * p->lastLength);
-}
-
-// Set the base loop gain.
-void    tKarplusStrong_setBaseLoopGain    (tKarplusStrong* const pl, float aGain )
-{
-    _tKarplusStrong* p = *pl;
-    
-    p->baseLoopGain = aGain;
-    p->loopGain = p->baseLoopGain + (p->lastFrequency * 0.000005f);
-    if ( p->loopGain > 0.99999f ) p->loopGain = 0.99999f;
-}
-
-// Perform the control change specified by \e number and \e value (0.0 - 128.0).
-void    tKarplusStrong_controlChange (tKarplusStrong* const pl, SKControlType type, float value)
-{
-    if ( value < 0.0f )         value = 0.0f;
-    else if (value > 128.0f)   value = 128.0f;
-    
-    float normalizedValue = value * INV_128;
-    
-    if (type == SKPickPosition) // 4
-        tKarplusStrong_setPickupPosition( pl, normalizedValue );
-    else if (type == SKStringDamping) // 11
-        tKarplusStrong_setBaseLoopGain( pl, 0.97f + (normalizedValue * 0.03f) );
-    else if (type == SKDetune) // 1
-        tKarplusStrong_setStretch( pl, 0.91f + (0.09f * (1.0f - normalizedValue)) );
-}
-
-void    tKarplusStrongSampleRateChanged (tKarplusStrong* const pl)
-{
-    _tKarplusStrong* p = *pl;
-    
-    tKarplusStrong_setFrequency(pl, p->lastFrequency);
-    tKarplusStrong_setStretch(pl, p->stretching);
-}
-
-/* Simple Living String*/
-
-void    tSimpleLivingString_init(tSimpleLivingString* const pl, float freq, float dampFreq,
-                                 float decay, float targetLev, float levSmoothFactor,
-                                 float levStrength, int levMode)
-{
-    tSimpleLivingString_initToPool(pl, freq, dampFreq, decay, targetLev, levSmoothFactor, levStrength, levMode, &leaf.mempool);
-}
-
-void tSimpleLivingString_free(tSimpleLivingString* const pl)
-{
-    tSimpleLivingString_freeFromPool(pl, &leaf.mempool);
-}
-
-void    tSimpleLivingString_initToPool  (tSimpleLivingString* const pl, float freq, float dampFreq,
-                                         float decay, float targetLev, float levSmoothFactor,
-                                         float levStrength, int levMode, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSimpleLivingString* p = *pl = (_tSimpleLivingString*) mpool_alloc(sizeof(_tSimpleLivingString), m);
-    
-    p->curr=0.0f;
-    tExpSmooth_initToPool(&p->wlSmooth, leaf.sampleRate/freq, 0.01, mp); // smoother for string wavelength (not freq, to avoid expensive divisions)
-    tSimpleLivingString_setFreq(pl, freq);
-    tLinearDelay_initToPool(&p->delayLine,p->waveLengthInSamples, 2400, mp);
-    tLinearDelay_clear(&p->delayLine);
-    tOnePole_initToPool(&p->bridgeFilter, dampFreq, mp);
-    tHighpass_initToPool(&p->DCblocker,13, mp);
-    p->decay=decay;
-    tFeedbackLeveler_initToPool(&p->fbLev, targetLev, levSmoothFactor, levStrength, levMode, mp);
-    p->levMode=levMode;
-}
-
-void    tSimpleLivingString_freeFromPool    (tSimpleLivingString* const pl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSimpleLivingString* p = *pl;
-    
-    tExpSmooth_freeFromPool(&p->wlSmooth, mp);
-    tLinearDelay_freeFromPool(&p->delayLine, mp);
-    tOnePole_freeFromPool(&p->bridgeFilter, mp);
-    tHighpass_freeFromPool(&p->DCblocker, mp);
-    tFeedbackLeveler_freeFromPool(&p->fbLev, mp);
-    
-    mpool_free((char*)p, m);
-}
-
-void     tSimpleLivingString_setFreq(tSimpleLivingString* const pl, float freq)
-{
-    _tSimpleLivingString* p = *pl;
-    
-    if (freq<20) freq=20;
-    else if (freq>10000) freq=10000;
-    p->waveLengthInSamples = leaf.sampleRate/freq;
-    tExpSmooth_setDest(&p->wlSmooth, p->waveLengthInSamples);
-}
-
-void     tSimpleLivingString_setWaveLength(tSimpleLivingString* const pl, float waveLength)
-{
-    _tSimpleLivingString* p = *pl;
-    
-    if (waveLength<4.8) waveLength=4.8;
-    else if (waveLength>2400) waveLength=2400;
-    p->waveLengthInSamples = waveLength;
-    tExpSmooth_setDest(&p->wlSmooth, p->waveLengthInSamples);
-}
-
-void     tSimpleLivingString_setDampFreq(tSimpleLivingString* const pl, float dampFreq)
-{
-    _tSimpleLivingString* p = *pl;
-    tOnePole_setFreq(&p->bridgeFilter, dampFreq);
-}
-
-void     tSimpleLivingString_setDecay(tSimpleLivingString* const pl, float decay)
-{
-    _tSimpleLivingString* p = *pl;
-    p->decay=decay;
-}
-
-void     tSimpleLivingString_setTargetLev(tSimpleLivingString* const pl, float targetLev)
-{
-    _tSimpleLivingString* p = *pl;
-    tFeedbackLeveler_setTargetLevel(&p->fbLev, targetLev);
-}
-
-void     tSimpleLivingString_setLevSmoothFactor(tSimpleLivingString* const pl, float levSmoothFactor)
-{
-    _tSimpleLivingString* p = *pl;
-    tFeedbackLeveler_setFactor(&p->fbLev, levSmoothFactor);
-}
-
-void     tSimpleLivingString_setLevStrength(tSimpleLivingString* const pl, float levStrength)
-{
-    _tSimpleLivingString* p = *pl;
-    tFeedbackLeveler_setStrength(&p->fbLev, levStrength);
-}
-
-void     tSimpleLivingString_setLevMode(tSimpleLivingString* const pl, int levMode)
-{
-    _tSimpleLivingString* p = *pl;
-    tFeedbackLeveler_setMode(&p->fbLev, levMode);
-    p->levMode=levMode;
-}
-
-float   tSimpleLivingString_tick(tSimpleLivingString* const pl, float input)
-{
-    _tSimpleLivingString* p = *pl;
-    
-    float stringOut=tOnePole_tick(&p->bridgeFilter,tLinearDelay_tickOut(&p->delayLine));
-    float stringInput=tHighpass_tick(&p->DCblocker, tFeedbackLeveler_tick(&p->fbLev, (p->levMode==0?p->decay*stringOut:stringOut)+input));
-    tLinearDelay_tickIn(&p->delayLine, stringInput);
-    tLinearDelay_setDelay(&p->delayLine, tExpSmooth_tick(&p->wlSmooth));
-    p->curr = stringOut;
-    return p->curr;
-}
-
-float   tSimpleLivingString_sample(tSimpleLivingString* const pl)
-{
-    _tSimpleLivingString* p = *pl;
-    return p->curr;
-}
-
-/* Living String*/
-
-void    tLivingString_init(tLivingString* const pl, float freq, float pickPos, float prepIndex,
-                           float dampFreq, float decay, float targetLev, float levSmoothFactor,
-                           float levStrength, int levMode)
-{
-    tLivingString_initToPool(pl, freq, pickPos, prepIndex, dampFreq, decay, targetLev, levSmoothFactor, levStrength, levMode, &leaf.mempool);
-}
-
-void tLivingString_free(tLivingString* const pl)
-{
-    tLivingString_freeFromPool(pl, &leaf.mempool);
-}
-
-void    tLivingString_initToPool    (tLivingString* const pl, float freq, float pickPos, float prepIndex,
-                                     float dampFreq, float decay, float targetLev, float levSmoothFactor,
-                                     float levStrength, int levMode, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLivingString* p = *pl = (_tLivingString*) mpool_alloc(sizeof(_tLivingString), m);
-    
-    p->curr=0.0f;
-    tExpSmooth_initToPool(&p->wlSmooth, leaf.sampleRate/freq, 0.01, mp); // smoother for string wavelength (not freq, to avoid expensive divisions)
-    tLivingString_setFreq(pl, freq);
-    p->freq = freq;
-    tExpSmooth_initToPool(&p->ppSmooth, pickPos, 0.01, mp); // smoother for pick position
-    tLivingString_setPickPos(pl, pickPos);
-    p->prepIndex=prepIndex;
-    tLinearDelay_initToPool(&p->delLF,p->waveLengthInSamples, 2400, mp);
-    tLinearDelay_initToPool(&p->delUF,p->waveLengthInSamples, 2400, mp);
-    tLinearDelay_initToPool(&p->delUB,p->waveLengthInSamples, 2400, mp);
-    tLinearDelay_initToPool(&p->delLB,p->waveLengthInSamples, 2400, mp);
-    tLinearDelay_clear(&p->delLF);
-    tLinearDelay_clear(&p->delUF);
-    tLinearDelay_clear(&p->delUB);
-    tLinearDelay_clear(&p->delLB);
-    p->dampFreq = dampFreq;
-    tOnePole_initToPool(&p->bridgeFilter, dampFreq, mp);
-    tOnePole_initToPool(&p->nutFilter, dampFreq, mp);
-    tOnePole_initToPool(&p->prepFilterU, dampFreq, mp);
-    tOnePole_initToPool(&p->prepFilterL, dampFreq, mp);
-    tHighpass_initToPool(&p->DCblockerU,13, mp);
-    tHighpass_initToPool(&p->DCblockerL,13, mp);
-    p->decay=decay;
-    p->prepIndex = prepIndex;
-    tFeedbackLeveler_initToPool(&p->fbLevU, targetLev, levSmoothFactor, levStrength, levMode, mp);
-    tFeedbackLeveler_initToPool(&p->fbLevL, targetLev, levSmoothFactor, levStrength, levMode, mp);
-    p->levMode=levMode;
-}
-
-void    tLivingString_freeFromPool  (tLivingString* const pl, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tLivingString* p = *pl;
-    
-    tExpSmooth_freeFromPool(&p->wlSmooth, mp);
-    tExpSmooth_freeFromPool(&p->ppSmooth, mp);
-    tLinearDelay_freeFromPool(&p->delLF, mp);
-    tLinearDelay_freeFromPool(&p->delUF, mp);
-    tLinearDelay_freeFromPool(&p->delUB, mp);
-    tLinearDelay_freeFromPool(&p->delLB, mp);
-    tOnePole_freeFromPool(&p->bridgeFilter, mp);
-    tOnePole_freeFromPool(&p->nutFilter, mp);
-    tOnePole_freeFromPool(&p->prepFilterU, mp);
-    tOnePole_freeFromPool(&p->prepFilterL, mp);
-    tHighpass_freeFromPool(&p->DCblockerU, mp);
-    tHighpass_freeFromPool(&p->DCblockerL, mp);
-    tFeedbackLeveler_freeFromPool(&p->fbLevU, mp);
-    tFeedbackLeveler_freeFromPool(&p->fbLevL, mp);
-    
-    mpool_free((char*)p, m);
-}
-
-void     tLivingString_setFreq(tLivingString* const pl, float freq)
-{    // NOTE: It is faster to set wavelength in samples directly
-    _tLivingString* p = *pl;
-    if (freq<20) freq=20;
-    else if (freq>10000) freq=10000;
-    p->waveLengthInSamples = leaf.sampleRate/freq;
-    tExpSmooth_setDest(&p->wlSmooth, p->waveLengthInSamples);
-}
-
-void     tLivingString_setWaveLength(tLivingString* const pl, float waveLength)
-{
-    _tLivingString* p = *pl;
-    if (waveLength<4.8) waveLength=4.8;
-    else if (waveLength>2400) waveLength=2400;
-    p->waveLengthInSamples = waveLength;
-    tExpSmooth_setDest(&p->wlSmooth, p->waveLengthInSamples);
-}
-
-void     tLivingString_setPickPos(tLivingString* const pl, float pickPos)
-{    // between 0 and 1
-    _tLivingString* p = *pl;
-    if (pickPos<0.f) pickPos=0.f;
-    else if (pickPos>1.f) pickPos=1.f;
-    p->pickPos = pickPos;
-    tExpSmooth_setDest(&p->ppSmooth, p->pickPos);
-}
-
-void     tLivingString_setPrepIndex(tLivingString* const pl, float prepIndex)
-{    // between 0 and 1
-    _tLivingString* p = *pl;
-    if (prepIndex<0.f) prepIndex=0.f;
-    else if (prepIndex>1.f) prepIndex=1.f;
-    p->prepIndex = prepIndex;
-}
-
-void     tLivingString_setDampFreq(tLivingString* const pl, float dampFreq)
-{
-    _tLivingString* p = *pl;
-    tOnePole_setFreq(&p->bridgeFilter, dampFreq);
-    tOnePole_setFreq(&p->nutFilter, dampFreq);
-    tOnePole_setFreq(&p->prepFilterU, dampFreq);
-    tOnePole_setFreq(&p->prepFilterL, dampFreq);
-}
-
-void     tLivingString_setDecay(tLivingString* const pl, float decay)
-{
-    _tLivingString* p = *pl;
-    p->decay=decay;
-}
-
-void     tLivingString_setTargetLev(tLivingString* const pl, float targetLev)
-{
-    _tLivingString* p = *pl;
-    tFeedbackLeveler_setTargetLevel(&p->fbLevU, targetLev);
-    tFeedbackLeveler_setTargetLevel(&p->fbLevL, targetLev);
-}
-
-void     tLivingString_setLevSmoothFactor(tLivingString* const pl, float levSmoothFactor)
-{
-    _tLivingString* p = *pl;
-    tFeedbackLeveler_setFactor(&p->fbLevU, levSmoothFactor);
-    tFeedbackLeveler_setFactor(&p->fbLevL, levSmoothFactor);
-}
-
-void     tLivingString_setLevStrength(tLivingString* const pl, float levStrength)
-{
-    _tLivingString* p = *pl;
-    tFeedbackLeveler_setStrength(&p->fbLevU, levStrength);
-    tFeedbackLeveler_setStrength(&p->fbLevL, levStrength);
-}
-
-void     tLivingString_setLevMode(tLivingString* const pl, int levMode)
-{
-    _tLivingString* p = *pl;
-    tFeedbackLeveler_setMode(&p->fbLevU, levMode);
-    tFeedbackLeveler_setMode(&p->fbLevL, levMode);
-    p->levMode=levMode;
-}
-
-float   tLivingString_tick(tLivingString* const pl, float input)
-{
-    _tLivingString* p = *pl;
-    
-    // from pickPos upwards=forwards
-    float fromLF=tLinearDelay_tickOut(&p->delLF);
-    float fromUF=tLinearDelay_tickOut(&p->delUF);
-    float fromUB=tLinearDelay_tickOut(&p->delUB);
-    float fromLB=tLinearDelay_tickOut(&p->delLB);
-    // into upper half of string, from nut, going backwards
-    float fromNut=-tFeedbackLeveler_tick(&p->fbLevU, (p->levMode==0?p->decay:1)*tHighpass_tick(&p->DCblockerU, tOnePole_tick(&p->nutFilter, fromUF)));
-    tLinearDelay_tickIn(&p->delUB, fromNut);
-    // into lower half of string, from pickpoint, going backwards
-    float fromLowerPrep=-tOnePole_tick(&p->prepFilterL, fromLF);
-    float intoLower=p->prepIndex*fromLowerPrep+(1.0f - p->prepIndex)*fromUB+input;
-    tLinearDelay_tickIn(&p->delLB, intoLower);
-    // into lower half of string, from bridge
-    float fromBridge=-tFeedbackLeveler_tick(&p->fbLevL, (p->levMode==0?p->decay:1.0f)*tHighpass_tick(&p->DCblockerL, tOnePole_tick(&p->bridgeFilter, fromLB)));
-    tLinearDelay_tickIn(&p->delLF, fromBridge);
-    // into upper half of string, from pickpoint, going forwards/upwards
-    float fromUpperPrep=-tOnePole_tick(&p->prepFilterU, fromUB);
-    float intoUpper=p->prepIndex*fromUpperPrep+(1.0f - p->prepIndex)*fromLF+input;
-    tLinearDelay_tickIn(&p->delUF, intoUpper);
-    // update all delay lengths
-    float pickP=tExpSmooth_tick(&p->ppSmooth);
-    float wLen=tExpSmooth_tick(&p->wlSmooth);
-    float lowLen=pickP*wLen;
-    float upLen=(1.0f-pickP)*wLen;
-    tLinearDelay_setDelay(&p->delLF, lowLen);
-    tLinearDelay_setDelay(&p->delLB, lowLen);
-    tLinearDelay_setDelay(&p->delUF, upLen);
-    tLinearDelay_setDelay(&p->delUB, upLen);
-    p->curr = fromBridge;
-    return p->curr;
-}
-
-float   tLivingString_sample(tLivingString* const pl)
-{
-    _tLivingString* p = *pl;
-    return p->curr;
-}
-
-///Reed Table model
-//default values from STK are 0.6 offset and -0.8 slope
-
-void    tReedTable_init      (tReedTable* const pm, float offset, float slope)
-{
-    _tReedTable* p = *pm = (_tReedTable*) leaf_alloc(sizeof(_tReedTable));
-    
-    p->offset = offset;
-    p->slope = slope;
-}
-
-void    tReedTable_free      (tReedTable* const pm)
-{
-    _tReedTable* p = *pm;
-    
-    leaf_free((char*)p);
-}
-
-void    tReedTable_initToPool   (tReedTable* const pm, float offset, float slope, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tReedTable* p = *pm = (_tReedTable*) mpool_alloc(sizeof(_tReedTable), m);
-    
-    p->offset = offset;
-    p->slope = slope;
-}
-
-void    tReedTable_freeFromPool (tReedTable* const pm, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tReedTable* p = *pm;
-    
-    mpool_free((char*)p, m);
-}
-
-float   tReedTable_tick      (tReedTable* const pm, float input)
-{
-    _tReedTable* p = *pm;
-    
-    // The input is differential pressure across the reed.
-    float output = p->offset + (p->slope * input);
-    
-    // If output is > 1, the reed has slammed shut and the
-    // reflection function value saturates at 1.0.
-    if ( output > 1.0f) output = 1.0f;
-    
-    // This is nearly impossible in a physical system, but
-    // a reflection function value of -1.0 corresponds to
-    // an open end (and no discontinuity in bore profile).
-    if ( output < -1.0f) output = -1.0f;
-    
-    return output;
-}
-
-float   tReedTable_tanh_tick     (tReedTable* const pm, float input)
-{
-    _tReedTable* p = *pm;
-    
-    // The input is differential pressure across the reed.
-    float output = p->offset + (p->slope * input);
-    
-    // If output is > 1, the reed has slammed shut and the
-    // reflection function value saturates at 1.0.
-    return tanhf(output);
-}
-
-void     tReedTable_setOffset   (tReedTable* const pm, float offset)
-{
-    _tReedTable* p = *pm;
-    p->offset = offset;
-}
-
-void     tReedTable_setSlope   (tReedTable* const pm, float slope)
-{
-    _tReedTable* p = *pm;
-    p->slope = slope;
-}
--- a/LEAF/Src/leaf-reverb.c
+++ /dev/null
@@ -1,925 +1,0 @@
-/*==============================================================================
-
-    leaf-reverb.c
-    Created: 20 Jan 2017 12:02:04pm
-    Author:  Michael R Mulshine
-
-==============================================================================*/
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-reverb.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-reverb.h"
-#include "../leaf.h"
-
-#endif
-
-// ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ PRCReverb ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ //
-void    tPRCReverb_init(tPRCReverb* const rev, float t60)
-{
-    _tPRCReverb* r = *rev = (_tPRCReverb*) leaf_alloc(sizeof(_tPRCReverb));
-    
-    if (t60 <= 0.0f) t60 = 0.001f;
-    
-    r->inv_441 = 1.0f/44100.0f;
-    
-    int lengths[4] = { 341, 613, 1557, 2137 }; // Delay lengths for 44100 Hz sample rate.
-    double scaler = leaf.sampleRate * r->inv_441;
-    
-    int delay, i;
-    if (scaler != 1.0f)
-    {
-        for (i=0; i<4; i++)
-        {
-            delay = (int) scaler * lengths[i];
-            
-            if ( (delay & 1) == 0)          delay++;
-            
-            while ( !LEAF_isPrime(delay) )  delay += 2;
-            
-            lengths[i] = delay;
-        }
-    }
-    
-    tDelay_init(&r->allpassDelays[0], lengths[0], lengths[0] * 2);
-    tDelay_init(&r->allpassDelays[1], lengths[1], lengths[1] * 2);
-    tDelay_init(&r->combDelay, lengths[2], lengths[2] * 2);
-    
-    tPRCReverb_setT60(rev, t60);
-    
-    r->allpassCoeff = 0.7f;
-    r->mix = 0.5f;
-}
-
-void tPRCReverb_free(tPRCReverb* const rev)
-{
-    _tPRCReverb* r = *rev;
-    
-    tDelay_free(&r->allpassDelays[0]);
-    tDelay_free(&r->allpassDelays[1]);
-    tDelay_free(&r->combDelay);
-    leaf_free((char*)r);
-}
-
-void    tPRCReverb_initToPool   (tPRCReverb* const rev, float t60, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPRCReverb* r = *rev = (_tPRCReverb*) mpool_alloc(sizeof(_tPRCReverb), m);
-    
-    if (t60 <= 0.0f) t60 = 0.001f;
-    
-    r->inv_441 = 1.0f/44100.0f;
-    
-    int lengths[4] = { 341, 613, 1557, 2137 }; // Delay lengths for 44100 Hz sample rate.
-    double scaler = leaf.sampleRate * r->inv_441;
-    
-    int delay, i;
-    if (scaler != 1.0f)
-    {
-        for (i=0; i<4; i++)
-        {
-            delay = (int) scaler * lengths[i];
-            
-            if ( (delay & 1) == 0)          delay++;
-            
-            while ( !LEAF_isPrime(delay) )  delay += 2;
-            
-            lengths[i] = delay;
-        }
-    }
-    
-    tDelay_initToPool(&r->allpassDelays[0], lengths[0], lengths[0] * 2, mp);
-    tDelay_initToPool(&r->allpassDelays[1], lengths[1], lengths[1] * 2, mp);
-    tDelay_initToPool(&r->combDelay, lengths[2], lengths[2] * 2, mp);
-    
-    tPRCReverb_setT60(rev, t60);
-    
-    r->allpassCoeff = 0.7f;
-    r->mix = 0.5f;
-}
-
-void    tPRCReverb_freeFromPool (tPRCReverb* const rev, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tPRCReverb* r = *rev;
-    
-    tDelay_freeFromPool(&r->allpassDelays[0], mp);
-    tDelay_freeFromPool(&r->allpassDelays[1], mp);
-    tDelay_freeFromPool(&r->combDelay, mp);
-    mpool_free((char*)r, m);
-}
-
-void    tPRCRevert_clear(tPRCReverb* const rev)
-{
-    _tPRCReverb* r = *rev;
-    
-    tDelay_clear(&r->allpassDelays[0]);
-    tDelay_clear(&r->allpassDelays[1]);
-    tDelay_clear(&r->combDelay);
-}
-
-void    tPRCReverb_setT60(tPRCReverb* const rev, float t60)
-{
-    _tPRCReverb* r = *rev;
-    
-    if ( t60 <= 0.0f ) t60 = 0.001f;
-    
-    r->t60 = t60;
-    
-    r->combCoeff = pow(10.0f, (-3.0f * tDelay_getDelay(&r->combDelay) * leaf.invSampleRate / t60 ));
-    
-}
-
-void    tPRCReverb_setMix(tPRCReverb* const rev, float mix)
-{
-    _tPRCReverb* r = *rev;
-    r->mix = mix;
-}
-
-float   tPRCReverb_tick(tPRCReverb* const rev, float input)
-{
-    _tPRCReverb* r = *rev;
-    
-    float temp, temp0, temp1, temp2;
-    float out;
-    
-    r->lastIn = input;
-    
-    temp = tDelay_getLastOut(&r->allpassDelays[0]);
-    temp0 = r->allpassCoeff * temp;
-    temp0 += input;
-    tDelay_tick(&r->allpassDelays[0], temp0);
-    temp0 = -( r->allpassCoeff * temp0) + temp;
-    
-    temp = tDelay_getLastOut(&r->allpassDelays[1]);
-    temp1 = r->allpassCoeff * temp;
-    temp1 += temp0;
-    tDelay_tick(&r->allpassDelays[1], temp1);
-    temp1 = -(r->allpassCoeff * temp1) + temp;
-    
-    temp2 = temp1 + ( r->combCoeff * tDelay_getLastOut(&r->combDelay));
-    
-    out = r->mix * tDelay_tick(&r->combDelay, temp2);
-    
-    temp = (1.0f - r->mix) * input;
-    
-    out += temp;
-    
-    r->lastOut = out;
-    
-    return out;
-}
-
-void     tPRCReverbSampleRateChanged (tPRCReverb* const rev)
-{
-    _tPRCReverb* r = *rev;
-    r->combCoeff = pow(10.0f, (-3.0f * tDelay_getDelay(&r->combDelay) * leaf.invSampleRate / r->t60 ));
-}
-
-/* ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ NReverb ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ ~ */
-void    tNReverb_init(tNReverb* const rev, float t60)
-{
-    _tNReverb* r = *rev = (_tNReverb*) leaf_alloc(sizeof(_tNReverb));
-    
-    if (t60 <= 0.0f) t60 = 0.001f;
-    
-    r->inv_441 = 1.0f/44100.0f;
-    
-    int lengths[15] = {1433, 1601, 1867, 2053, 2251, 2399, 347, 113, 37, 59, 53, 43, 37, 29, 19}; // Delay lengths for 44100 Hz sample rate.
-    double scaler = leaf.sampleRate / 25641.0f;
-    
-    int delay, i;
-    
-    for (i=0; i < 15; i++)
-    {
-        delay = (int) scaler * lengths[i];
-        if ( (delay & 1) == 0)
-            delay++;
-        while ( !LEAF_isPrime(delay) )
-            delay += 2;
-        lengths[i] = delay;
-    }
-    
-    for ( i=0; i<6; i++ )
-    {
-    	tLinearDelay_init(&r->combDelays[i], lengths[i], lengths[i] * 2.0f);
-    	tLinearDelay_clear(&r->combDelays[i]);
-        r->combCoeffs[i] = pow(10.0, (-3 * lengths[i] * leaf.invSampleRate / t60));
-    }
-    
-    for ( i=0; i<8; i++ )
-    {
-    	tLinearDelay_init(&r->allpassDelays[i], lengths[i+6], lengths[i+6] * 2.0f);
-    	tLinearDelay_clear(&r->allpassDelays[i]);
-    }
-
-    
-    tNReverb_setT60(rev, t60);
-    r->allpassCoeff = 0.7f;
-    r->mix = 0.3f;
-}
-
-void    tNReverb_free(tNReverb* const rev)
-{
-    _tNReverb* r = *rev;
-    
-    for (int i = 0; i < 6; i++)
-    {
-    	tLinearDelay_free(&r->combDelays[i]);
-    }
-    
-    for (int i = 0; i < 8; i++)
-    {
-    	tLinearDelay_free(&r->allpassDelays[i]);
-    }
-    
-    leaf_free((char*)r);
-}
-
-void    tNReverb_initToPool     (tNReverb* const rev, float t60, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNReverb* r = *rev = (_tNReverb*) mpool_alloc(sizeof(_tNReverb), m);
-    
-    if (t60 <= 0.0f) t60 = 0.001f;
-    
-    r->inv_441 = 1.0f/44100.0f;
-    
-    int lengths[15] = {1433, 1601, 1867, 2053, 2251, 2399, 347, 113, 37, 59, 53, 43, 37, 29, 19}; // Delay lengths for 44100 Hz sample rate.
-    double scaler = leaf.sampleRate / 25641.0f;
-    
-    int delay, i;
-    
-    for (i=0; i < 15; i++)
-    {
-        delay = (int) scaler * lengths[i];
-        if ( (delay & 1) == 0)
-            delay++;
-        while ( !LEAF_isPrime(delay) )
-            delay += 2;
-        lengths[i] = delay;
-    }
-    
-    for ( i=0; i<6; i++ )
-    {
-        tLinearDelay_initToPool(&r->combDelays[i], lengths[i], lengths[i] * 2.0f, mp);
-        r->combCoeffs[i] = pow(10.0, (-3 * lengths[i] * leaf.invSampleRate / t60));
-    }
-    
-    for ( i=0; i<8; i++ )
-    {
-        tLinearDelay_initToPool(&r->allpassDelays[i], lengths[i+6], lengths[i+6] * 2.0f, mp);
-    }
-    
-    
-    tNReverb_setT60(rev, t60);
-    r->allpassCoeff = 0.7f;
-    r->mix = 0.3f;
-}
-
-void    tNReverb_freeFromPool   (tNReverb* const rev, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tNReverb* r = *rev;
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tLinearDelay_freeFromPool(&r->combDelays[i], mp);
-    }
-    
-    for (int i = 0; i < 8; i++)
-    {
-        tLinearDelay_freeFromPool(&r->allpassDelays[i], mp);
-    }
-    
-    mpool_free((char*)r, m);
-}
-
-void    tNReverb_setT60(tNReverb* const rev, float t60)
-{
-    _tNReverb* r = *rev;
-    
-    if (t60 <= 0.0f)           t60 = 0.001f;
-    
-    r->t60 = t60;
-    
-    for (int i=0; i<6; i++)   r->combCoeffs[i] = pow(10.0, (-3.0 * tLinearDelay_getDelay(&r->combDelays[i]) * leaf.invSampleRate / t60 ));
-    
-}
-
-void    tNReverb_setMix(tNReverb* const rev, float mix)
-{
-    _tNReverb* r = *rev;
-    r->mix = mix;
-}
-
-void    tNReverb_clear             (tNReverb* const rev)
-{
-    _tNReverb* r = *rev;
-    
-    for (int i = 0; i < 6; i++)
-    {
-        tLinearDelay_clear(&r->combDelays[i]);
-    }
-    
-    for (int i = 0; i < 8; i++)
-    {
-        tLinearDelay_clear(&r->allpassDelays[i]);
-    }
-}
-
-float   tNReverb_tick(tNReverb* const rev, float input)
-{
-    _tNReverb* r = *rev;
-    r->lastIn = input;
-    
-    float temp, temp0, temp1, temp2, out;
-    int i;
-    
-    temp0 = 0.0;
-    for ( i=0; i<6; i++ )
-    {
-        temp = input + (r->combCoeffs[i] * tLinearDelay_getLastOut(&r->combDelays[i]));
-        temp0 += tLinearDelay_tick(&r->combDelays[i],temp);
-    }
-    
-    for ( i=0; i<3; i++ )
-    {
-        temp = tLinearDelay_getLastOut(&r->allpassDelays[i]);
-        temp1 = r->allpassCoeff * temp;
-        temp1 += temp0;
-        tLinearDelay_tick(&r->allpassDelays[i], temp1);
-        temp0 = -(r->allpassCoeff * temp1) + temp;
-    }
-    
-    // One-pole lowpass filter.
-    r->lowpassState = 0.7f * r->lowpassState + 0.3f * temp0;
-
-    temp = tLinearDelay_getLastOut(&r->allpassDelays[3]);
-    temp1 = r->allpassCoeff * temp;
-    temp1 += r->lowpassState;
-    tLinearDelay_tick(&r->allpassDelays[3], temp1 );
-    temp1 = -(r->allpassCoeff * temp1) + temp;
-    
-    temp = tLinearDelay_getLastOut(&r->allpassDelays[4]);
-    temp2 = r->allpassCoeff * temp;
-    temp2 += temp1;
-    tLinearDelay_tick(&r->allpassDelays[4], temp2 );
-    out = -( r->allpassCoeff * temp2 ) + temp ;
-    
-    //the other channel in stereo version below
-/*
-     temp = tLinearDelay_getLastOut(&r->allpassDelays[5]);
-     temp3 = r->allpassCoeff * temp;
-     temp3 += temp1;
-     tLinearDelay_tick(&r->allpassDelays[5], temp3 );
-     out = r->mix *( - ( r->allpassCoeff * temp3 ) + temp );
-*/
-
-    temp = ( 1.0f - r->mix ) * input;
-
-    out += temp;
-
-    r->lastOut = out;
-
-    return out;
-}
-
-void   tNReverb_tickStereo(tNReverb* const rev, float input, float* output)
-{
-    _tNReverb* r = *rev;
-    r->lastIn = input;
-
-    float temp, temp0, temp1, temp2, temp3, out;
-    int i;
-
-    temp0 = 0.0;
-    for ( i=0; i<6; i++ )
-    {
-        temp = input + (r->combCoeffs[i] * tLinearDelay_getLastOut(&r->combDelays[i]));
-        temp0 += tLinearDelay_tick(&r->combDelays[i],temp);
-    }
-
-    for ( i=0; i<3; i++ )
-    {
-        temp = tLinearDelay_getLastOut(&r->allpassDelays[i]);
-        temp1 = r->allpassCoeff * temp;
-        temp1 += temp0;
-        tLinearDelay_tick(&r->allpassDelays[i], temp1);
-        temp0 = -(r->allpassCoeff * temp1) + temp;
-    }
-
-    // One-pole lowpass filter.
-    r->lowpassState = 0.7f * r->lowpassState + 0.3f * temp0;
-
-    temp = tLinearDelay_getLastOut(&r->allpassDelays[3]);
-    temp1 = r->allpassCoeff * temp;
-    temp1 += r->lowpassState;
-    tLinearDelay_tick(&r->allpassDelays[3], temp1 );
-    temp1 = -(r->allpassCoeff * temp1) + temp;
-
-    float drymix = ( 1.0f - r->mix ) * input;
-
-    temp = tLinearDelay_getLastOut(&r->allpassDelays[4]);
-    temp2 = r->allpassCoeff * temp;
-    temp2 += temp1;
-    tLinearDelay_tick(&r->allpassDelays[4], temp2 );
-    output[0] = -( r->allpassCoeff * temp2 ) + temp + drymix;
-    out = output[0];
-
-
-    temp = tLinearDelay_getLastOut(&r->allpassDelays[5]);
-    temp3 = r->allpassCoeff * temp;
-    temp3 += temp1;
-    tLinearDelay_tick(&r->allpassDelays[5], temp3 );
-    output[1] = r->mix *( - ( r->allpassCoeff * temp3 ) + temp + drymix);
-
-    r->lastOut = out;
-}
-
-void     tNReverbSampleRateChanged (tNReverb* const rev)
-{
-    _tNReverb* r = *rev;
-    for (int i=0; i<6; i++)   r->combCoeffs[i] = pow(10.0, (-3.0 * tLinearDelay_getDelay(&r->combDelays[i]) * leaf.invSampleRate / r->t60 ));
-}
-
-// ======================================DATTORRO=========================================
-
-#define SAMP(in) (in*r->t)
-
-float       in_allpass_delays[4] = { 4.771f, 3.595f, 12.73f, 9.307f };
-float       in_allpass_gains[4] = { 0.75f, 0.75f, 0.625f, 0.625f };
-
-
-void    tDattorroReverb_init              (tDattorroReverb* const rev)
-{
-    tDattorroReverb_initToPool(rev, &leaf.mempool);
-}
-
-void    tDattorroReverb_free              (tDattorroReverb* const rev)
-{
-    tDattorroReverb_freeFromPool(rev, &leaf.mempool);
-}
-
-void    tDattorroReverb_initToPool        (tDattorroReverb* const rev, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tDattorroReverb* r = *rev = (_tDattorroReverb*) mpool_alloc(sizeof(_tDattorroReverb), m);
-    
-    r->size_max = 2.0f;
-    r->size = 1.f;
-    r->t = r->size * leaf.sampleRate * 0.001f;
-    r->frozen = 0;
-    // INPUT
-    tTapeDelay_initToPool(&r->in_delay, 0.f, SAMP(200.f), mp);
-    tOnePole_initToPool(&r->in_filter, 1.f, mp);
-    
-    for (int i = 0; i < 4; i++)
-    {
-        tAllpass_initToPool(&r->in_allpass[i], SAMP(in_allpass_delays[i]), SAMP(20.f), mp); // * r->size_max
-        tAllpass_setGain(&r->in_allpass[i], in_allpass_gains[i]);
-    }
-    
-    // FEEDBACK 1
-    tAllpass_initToPool(&r->f1_allpass, SAMP(30.51f), SAMP(100.f), mp); // * r->size_max
-    tAllpass_setGain(&r->f1_allpass, 0.7f);
-    
-    tTapeDelay_initToPool(&r->f1_delay_1, SAMP(141.69f), SAMP(200.0f) * r->size_max + 1, mp);
-    tTapeDelay_initToPool(&r->f1_delay_2, SAMP(89.24f), SAMP(100.0f) * r->size_max + 1, mp);
-    tTapeDelay_initToPool(&r->f1_delay_3, SAMP(125.f), SAMP(200.0f) * r->size_max + 1, mp);
-    
-    tOnePole_initToPool(&r->f1_filter, 1.f, mp);
-    
-    tHighpass_initToPool(&r->f1_hp, 20.f, mp);
-    
-    tCycle_initToPool(&r->f1_lfo, mp);
-    tCycle_setFreq(&r->f1_lfo, 0.1f);
-    
-    // FEEDBACK 2
-    tAllpass_initToPool(&r->f2_allpass, SAMP(22.58f), SAMP(100.f), mp); // * r->size_max
-    tAllpass_setGain(&r->f2_allpass, 0.7f);
-    
-    tTapeDelay_initToPool(&r->f2_delay_1, SAMP(149.62f), SAMP(200.f) * r->size_max + 1, mp);
-    tTapeDelay_initToPool(&r->f2_delay_2, SAMP(60.48f), SAMP(100.f) * r->size_max + 1, mp);
-    tTapeDelay_initToPool(&r->f2_delay_3, SAMP(106.28f), SAMP(200.f) * r->size_max + 1, mp);
-    
-    tOnePole_initToPool(&r->f2_filter, 1.f, mp);
-    
-    tHighpass_initToPool(&r->f2_hp, 20.f, mp);
-    
-    tCycle_initToPool(&r->f2_lfo, mp);
-    tCycle_setFreq(&r->f2_lfo, 0.07f);
-    
-    
-    // PARAMETERS
-    tDattorroReverb_setMix(rev, 0.5f);
-    
-    tDattorroReverb_setInputDelay(rev,  0.f);
-    
-    tDattorroReverb_setInputFilter(rev, 10000.f);
-    
-    tDattorroReverb_setFeedbackFilter(rev, 5000.f);
-    
-    tDattorroReverb_setFeedbackGain(rev, 0.4f);
-}
-
-void    tDattorroReverb_freeFromPool      (tDattorroReverb* const rev, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tDattorroReverb* r = *rev;
-    
-    // INPUT
-    tTapeDelay_freeFromPool(&r->in_delay, mp);
-    tOnePole_freeFromPool(&r->in_filter, mp);
-    
-    for (int i = 0; i < 4; i++)
-    {
-        tAllpass_freeFromPool(&r->in_allpass[i], mp);
-    }
-    
-    // FEEDBACK 1
-    tAllpass_freeFromPool(&r->f1_allpass, mp);
-    
-    tTapeDelay_freeFromPool(&r->f1_delay_1, mp);
-    tTapeDelay_freeFromPool(&r->f1_delay_2, mp);
-    tTapeDelay_freeFromPool(&r->f1_delay_3, mp);
-    
-    tOnePole_freeFromPool(&r->f1_filter, mp);
-    
-    tHighpass_freeFromPool(&r->f1_hp, mp);
-    
-    tCycle_freeFromPool(&r->f1_lfo, mp);
-    
-    // FEEDBACK 2
-    tAllpass_freeFromPool(&r->f2_allpass, mp);
-    
-    tTapeDelay_freeFromPool(&r->f2_delay_1, mp);
-    tTapeDelay_freeFromPool(&r->f2_delay_2, mp);
-    tTapeDelay_freeFromPool(&r->f2_delay_3, mp);
-    
-    tOnePole_freeFromPool(&r->f2_filter, mp);
-    
-    tHighpass_freeFromPool(&r->f2_hp, mp);
-    
-    tCycle_freeFromPool(&r->f2_lfo, mp);
-    
-    mpool_free((char*)r, m);
-}
-
-void    tDattorroReverb_clear             (tDattorroReverb* const rev)
-{
-    _tDattorroReverb* r = *rev;
-    
-    tTapeDelay_clear(&r->in_delay);
-    tTapeDelay_clear(&r->f1_delay_1);
-    tTapeDelay_clear(&r->f1_delay_2);
-    tTapeDelay_clear(&r->f1_delay_3);
-    tTapeDelay_clear(&r->f2_delay_1);
-    tTapeDelay_clear(&r->f2_delay_2);
-    tTapeDelay_clear(&r->f2_delay_3);
-}
-
-float   tDattorroReverb_tick              (tDattorroReverb* const rev, float input)
-{
-    _tDattorroReverb* r = *rev;
-    
-
-    float in_sample, f1_sample,f1_delay_2_sample,  f2_sample, f2_delay_2_sample;
-
-    if (r->frozen)
-    {
-    	input = 0.0f;
-    	//r->f1_last = 0.0f;
-    	//r->f2_last = 0.0f;
-	}
-	// INPUT
-	in_sample = tTapeDelay_tick(&r->in_delay, input);
-
-	in_sample = tOnePole_tick(&r->in_filter, in_sample);
-
-	for (int i = 0; i < 4; i++)
-	{
-		in_sample = tAllpass_tick(&r->in_allpass[i], in_sample);
-	}
-
-	// FEEDBACK 1
-	f1_sample = in_sample + r->f2_last; // + f2_last_out;
-
-	tAllpass_setDelay(&r->f1_allpass, SAMP(30.51f) + tCycle_tick(&r->f1_lfo) * SAMP(4.0f));
-
-	f1_sample = tAllpass_tick(&r->f1_allpass, f1_sample);
-
-	f1_sample = tTapeDelay_tick(&r->f1_delay_1, f1_sample);
-
-	f1_sample = tOnePole_tick(&r->f1_filter, f1_sample);
-
-	f1_sample = f1_sample + r->f1_delay_2_last * 0.5f;
-
-	f1_delay_2_sample = tTapeDelay_tick(&r->f1_delay_2, f1_sample * 0.5f);
-
-	r->f1_delay_2_last = f1_delay_2_sample;
-
-	f1_sample = r->f1_delay_2_last + f1_sample;
-
-	f1_sample = tHighpass_tick(&r->f1_hp, f1_sample);
-
-	f1_sample *= r->feedback_gain;
-
-	r->f1_last = tTapeDelay_tick(&r->f1_delay_3, f1_sample);
-
-	// FEEDBACK 2
-	f2_sample = in_sample + r->f1_last;
-
-	tAllpass_setDelay(&r->f2_allpass, SAMP(22.58f) + tCycle_tick(&r->f2_lfo) * SAMP(4.0f));
-
-	f2_sample = tAllpass_tick(&r->f2_allpass, f2_sample);
-
-	f2_sample = tTapeDelay_tick(&r->f2_delay_1, f2_sample);
-
-	f2_sample = tOnePole_tick(&r->f2_filter, f2_sample);
-
-	f2_sample = f2_sample + r->f2_delay_2_last * 0.5f;
-
-	f2_delay_2_sample = tTapeDelay_tick(&r->f2_delay_2, f2_sample * 0.5f);
-
-	r->f2_delay_2_last = f2_delay_2_sample;
-
-	f2_sample = r->f2_delay_2_last + f2_sample;
-
-	f2_sample = tHighpass_tick(&r->f2_hp, f2_sample);
-
-	f2_sample *= r->feedback_gain;
-
-	r->f2_last = tTapeDelay_tick(&r->f2_delay_3, f2_sample);
-    
-    // TAP OUT 1
-    f1_sample =     tTapeDelay_tapOut(&r->f1_delay_1, SAMP(8.9f)) +
-    tTapeDelay_tapOut(&r->f1_delay_1, SAMP(99.8f));
-    
-    f1_sample -=    tTapeDelay_tapOut(&r->f1_delay_2, SAMP(64.2f));
-    
-    f1_sample +=    tTapeDelay_tapOut(&r->f1_delay_3, SAMP(67.f));
-    
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_1, SAMP(66.8f));
-    
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_2, SAMP(6.3f));
-    
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_3, SAMP(35.8f));
-    
-    f1_sample *=    0.14f;
-    
-    // TAP OUT 2
-    f2_sample =     tTapeDelay_tapOut(&r->f2_delay_1, SAMP(11.8f)) +
-    tTapeDelay_tapOut(&r->f2_delay_1, SAMP(121.7f));
-    
-    f2_sample -=    tTapeDelay_tapOut(&r->f2_delay_2, SAMP(6.3f));
-    
-    f2_sample +=    tTapeDelay_tapOut(&r->f2_delay_3, SAMP(89.7f));
-    
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_1, SAMP(70.8f));
-    
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_2, SAMP(11.2f));
-    
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_3, SAMP(4.1f));
-    
-    f2_sample *=    0.14f;
-    
-    float sample = (f1_sample + f2_sample) * 0.5f;
-    
-    return (input * (1.0f - r->mix) + sample * r->mix);
-}
-
-void   tDattorroReverb_tickStereo              (tDattorroReverb* const rev, float input, float* output)
-{
-    _tDattorroReverb* r = *rev;
-    float in_sample, f1_sample,f1_delay_2_sample,  f2_sample, f2_delay_2_sample;
-
-    if (r->frozen)
-    {
-    	input = 0.0f;
-    	//r->f1_last = 0.0f;
-    	//r->f2_last = 0.0f;
-    }
-	// INPUT
-	in_sample = tTapeDelay_tick(&r->in_delay, input);
-
-	in_sample = tOnePole_tick(&r->in_filter, in_sample);
-
-	for (int i = 0; i < 4; i++)
-	{
-		in_sample = tAllpass_tick(&r->in_allpass[i], in_sample);
-	}
-
-
-		// FEEDBACK 1
-		f1_sample = in_sample + r->f2_last; // + f2_last_out;
-
-		tAllpass_setDelay(&r->f1_allpass, SAMP(30.51f) + tCycle_tick(&r->f1_lfo) * SAMP(4.0f));
-
-		f1_sample = tAllpass_tick(&r->f1_allpass, f1_sample);
-
-		f1_sample = tTapeDelay_tick(&r->f1_delay_1, f1_sample);
-
-		f1_sample = tOnePole_tick(&r->f1_filter, f1_sample);
-
-		f1_sample = f1_sample + r->f1_delay_2_last * 0.5f;
-
-		f1_delay_2_sample = tTapeDelay_tick(&r->f1_delay_2, f1_sample * 0.5f);
-
-		r->f1_delay_2_last = f1_delay_2_sample;
-
-		f1_sample = r->f1_delay_2_last + f1_sample;
-
-		f1_sample = tHighpass_tick(&r->f1_hp, f1_sample);
-
-		f1_sample *= r->feedback_gain;
-
-		if (r->frozen)
-		{
-			f1_sample = 0.0f;
-		}
-
-		r->f1_last = tTapeDelay_tick(&r->f1_delay_3, f1_sample);
-
-		// FEEDBACK 2
-		f2_sample = in_sample + r->f1_last;
-
-		tAllpass_setDelay(&r->f2_allpass, SAMP(22.58f) + tCycle_tick(&r->f2_lfo) * SAMP(4.0f));
-
-		f2_sample = tAllpass_tick(&r->f2_allpass, f2_sample);
-
-		f2_sample = tTapeDelay_tick(&r->f2_delay_1, f2_sample);
-
-		f2_sample = tOnePole_tick(&r->f2_filter, f2_sample);
-
-		f2_sample = f2_sample + r->f2_delay_2_last * 0.5f;
-
-		f2_delay_2_sample = tTapeDelay_tick(&r->f2_delay_2, f2_sample * 0.5f);
-
-		r->f2_delay_2_last = f2_delay_2_sample;
-
-		f2_sample = r->f2_delay_2_last + f2_sample;
-
-		f2_sample = tHighpass_tick(&r->f2_hp, f2_sample);
-
-		f2_sample *= r->feedback_gain;
-
-		if (r->frozen)
-		{
-			f2_sample = 0.0f;
-		}
-		r->f2_last = tTapeDelay_tick(&r->f2_delay_3, f2_sample);
-
-
-
-    // TAP OUT 1
-    f1_sample =     tTapeDelay_tapOut(&r->f1_delay_1, SAMP(8.9f)) +
-    tTapeDelay_tapOut(&r->f1_delay_1, SAMP(99.8f));
-
-    f1_sample -=    tTapeDelay_tapOut(&r->f1_delay_2, SAMP(64.2f));
-
-    f1_sample +=    tTapeDelay_tapOut(&r->f1_delay_3, SAMP(67.f));
-
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_1, SAMP(66.8f));
-
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_2, SAMP(6.3f));
-
-    f1_sample -=    tTapeDelay_tapOut(&r->f2_delay_3, SAMP(35.8f));
-
-    f1_sample *=    0.14f;
-
-    // TAP OUT 2
-    f2_sample =     tTapeDelay_tapOut(&r->f2_delay_1, SAMP(11.8f)) +
-    tTapeDelay_tapOut(&r->f2_delay_1, SAMP(121.7f));
-
-    f2_sample -=    tTapeDelay_tapOut(&r->f2_delay_2, SAMP(6.3f));
-
-    f2_sample +=    tTapeDelay_tapOut(&r->f2_delay_3, SAMP(89.7f));
-
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_1, SAMP(70.8f));
-
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_2, SAMP(11.2f));
-
-    f2_sample -=    tTapeDelay_tapOut(&r->f1_delay_3, SAMP(4.1f));
-
-    f2_sample *=    0.14f;
-
-    output[0] = input * (1.0f - r->mix) + f1_sample  * r->mix;
-    output[1] = input * (1.0f - r->mix) + f2_sample * r->mix;
-
-}
-
-void    tDattorroReverb_setMix            (tDattorroReverb* const rev, float mix)
-{
-    _tDattorroReverb* r = *rev;
-    r->mix = LEAF_clip(0.0f, mix, 1.0f);
-}
-
-void    tDattorroReverb_setFreeze            (tDattorroReverb* const rev, uint32_t freeze)
-{
-    _tDattorroReverb* r = *rev;
-    r->frozen = freeze;
-    if (freeze)
-    {
-    	tAllpass_setGain(&r->f2_allpass, 1.0f);
-    	tAllpass_setGain(&r->f1_allpass, 1.0f);
-		for (int i = 0; i < 4; i++)
-		{
-
-			//tAllpass_setGain(&r->in_allpass[i], 1.0f);
-		}
-    	tCycle_setFreq(&r->f1_lfo, 0.0f);
-    	tCycle_setFreq(&r->f2_lfo, 0.0f);
-    }
-    else
-    {
-    	tAllpass_setGain(&r->f2_allpass, 0.7f);
-    	tAllpass_setGain(&r->f1_allpass, 0.7f);
-    	for (int i = 0; i < 4; i++)
-		{
-    		 //tAllpass_setGain(&r->in_allpass[i], in_allpass_gains[i]);
-		}
-    	tCycle_setFreq(&r->f1_lfo, 0.1f);
-    	tCycle_setFreq(&r->f2_lfo, 0.07f);
-    }
-}
-
-
-void    tDattorroReverb_setHP           (tDattorroReverb* const rev, float freq)
-{
-    _tDattorroReverb* r = *rev;
-    float newFreq = LEAF_clip(20.0f, freq, 20000.0f);
-    tHighpass_setFreq(&r->f1_hp, newFreq);
-    tHighpass_setFreq(&r->f2_hp, newFreq);
-}
-
-
-void    tDattorroReverb_setSize           (tDattorroReverb* const rev, float size)
-{
-    _tDattorroReverb* r = *rev;
-    
-    r->size = LEAF_clip(0.01f, size*r->size_max, r->size_max);
-    r->t = r->size * leaf.sampleRate * 0.001f;
-    
-    /*
-     for (int i = 0; i < 4; i++)
-     {
-     tAllpass_setDelay(&r->in_allpass[i], SAMP(in_allpass_delays[i]));
-     }
-     */
-    
-    // FEEDBACK 1
-    //tAllpass_setDelay(&r->f1_allpass, SAMP(30.51f));
-    
-    tTapeDelay_setDelay(&r->f1_delay_1, SAMP(141.69f));
-    tTapeDelay_setDelay(&r->f1_delay_2, SAMP(89.24f));
-    tTapeDelay_setDelay(&r->f1_delay_3, SAMP(125.f));
-    
-    // maybe change rate of SINE LFO's when size changes?
-    //tCycle_setFreq(&r->f2_lfo, 0.07f * size * r->size_max);
-    
-    // FEEDBACK 2
-    //tAllpass_setDelay(&r->f2_allpass, SAMP(22.58f));
-    
-    tTapeDelay_setDelay(&r->f2_delay_1, SAMP(149.62f));
-    tTapeDelay_setDelay(&r->f2_delay_2, SAMP(60.48f));
-    tTapeDelay_setDelay(&r->f2_delay_3, SAMP(106.28f));
-}
-
-void    tDattorroReverb_setInputDelay     (tDattorroReverb* const rev, float preDelay)
-{
-    _tDattorroReverb* r = *rev;
-    
-    r->predelay = LEAF_clip(0.0f, preDelay, 200.0f);
-    
-    tTapeDelay_setDelay(&r->in_delay, SAMP(r->predelay));
-}
-
-void    tDattorroReverb_setInputFilter    (tDattorroReverb* const rev, float freq)
-{
-    _tDattorroReverb* r = *rev;
-    
-    r->input_filter = LEAF_clip(0.0f, freq, 20000.0f);
-    
-    tOnePole_setFreq(&r->in_filter, r->input_filter);
-}
-
-void    tDattorroReverb_setFeedbackFilter (tDattorroReverb* const rev, float freq)
-{
-    _tDattorroReverb* r = *rev;
-    
-    r->feedback_filter = LEAF_clip(0.0f, freq, 20000.0f);
-    
-    tOnePole_setFreq(&r->f1_filter, r->feedback_filter);
-    tOnePole_setFreq(&r->f2_filter, r->feedback_filter);
-}
-
-void    tDattorroReverb_setFeedbackGain   (tDattorroReverb* const rev, float gain)
-{
-    _tDattorroReverb* r = *rev;
-    r->feedback_gain = gain;
-}
--- a/LEAF/Src/leaf-sampling.c
+++ /dev/null
@@ -1,866 +1,0 @@
-/*
- ==============================================================================
- 
- leaf-sampling.c
- Created: 20 Jan 2017 12:02:17pm
- Author:  Michael R Mulshine
- 
- ==============================================================================
- */
-
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-sampling.h"
-#include "..\leaf.h"
-
-#else
-
-#include "../Inc/leaf-sampling.h"
-#include "../leaf.h"
-
-
-#endif
-
-//==============================================================================
-
-void  tBuffer_init (tBuffer* const sb, uint32_t length)
-{
-    tBuffer_initToPool(sb, length, &leaf.mempool);
-}
-
-void  tBuffer_free (tBuffer* const sb)
-{
-    tBuffer_freeFromPool(sb, &leaf.mempool);
-}
-
-void  tBuffer_initToPool (tBuffer* const sb, uint32_t length, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tBuffer* s = *sb = (_tBuffer*) mpool_alloc(sizeof(_tBuffer), m);
-    
-    s->buff = (float*) mpool_alloc( sizeof(float) * length, m);
-    
-    s->bufferLength = length;
-    s->recordedLength = 0;
-    s->active = 0;
-    s->idx = 0;
-    s->mode = RecordOneShot;
-}
-
-void  tBuffer_freeFromPool (tBuffer* const sb, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tBuffer* s = *sb;
-    
-    mpool_free((char*)s->buff, m);
-    mpool_free((char*)s, m);
-}
-
-void tBuffer_tick (tBuffer* const sb, float sample)
-{
-    _tBuffer* s = *sb;
-    
-    if (s->active == 1)
-    {
-        s->buff[s->idx] = sample;
-        
-        s->idx += 1;
-        
-        if (s->idx >= s->bufferLength)
-        {
-            if (s->mode == RecordOneShot)
-            {
-                tBuffer_stop(sb);
-            }
-            else if (s->mode == RecordLoop)
-            {
-                s->idx = 0;
-            }
-        }
-    }
-}
-
-void  tBuffer_read(tBuffer* const sb, float* buff, uint32_t len)
-{
-    _tBuffer* s = *sb;
-    for (int i = 0; i < s->bufferLength; i++)
-    {
-        if (i < len)    s->buff[i] = buff[i];
-        else            s->buff[i] = 0.f;
-    }
-    s->recordedLength = len;
-}
-
-float tBuffer_get (tBuffer* const sb, int idx)
-{
-    _tBuffer* s = *sb;
-    if ((idx < 0) || (idx >= s->bufferLength)) return 0.f;
-    return s->buff[idx];
-}
-
-void  tBuffer_record(tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    s->active = 1;
-    s->idx = 0;
-}
-
-void  tBuffer_stop(tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    s->active = 0;
-    s->recordedLength = s->idx;
-}
-
-int   tBuffer_getRecordPosition(tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    return s->idx;
-}
-
-void  tBuffer_setRecordMode (tBuffer* const sb, RecordMode mode)
-{
-    _tBuffer* s = *sb;
-    s->mode = mode;
-}
-
-void  tBuffer_clear (tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    for (int i = 0; i < s->bufferLength; i++)
-    {
-        s->buff[i] = 0.f;
-    }
-}
-
-uint32_t tBuffer_getBufferLength(tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    return s->bufferLength;
-}
-
-uint32_t tBuffer_getRecordedLength(tBuffer* const sb)
-{
-    _tBuffer* s = *sb;
-    return s->recordedLength;
-}
-
-//================================tSampler=====================================
-
-static void handleStartEndChange(tSampler* const sp);
-
-static void attemptStartEndChange(tSampler* const sp);
-
-void tSampler_init(tSampler* const sp, tBuffer* const b)
-{
-    tSampler_initToPool(sp, b, &leaf.mempool);
-}
-
-void tSampler_free         (tSampler* const sp)
-{
-    tSampler_freeFromPool(sp, &leaf.mempool);
-}
-
-void tSampler_initToPool(tSampler* const sp, tBuffer* const b, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSampler* p = *sp = (_tSampler*) mpool_alloc(sizeof(_tSampler), m);
-    _tBuffer* s = *b;
-    
-    p->samp = s;
-    
-    p->active = 0;
-    
-    p->start = 0;
-    p->end = 0;
-    
-    p->len = p->end - p->start;
-    
-    p->idx = 0.f;
-    p->inc = 1.f;
-    p->iinc = 1.f;
-    
-    p->dir = 1;
-    p->flip = 1;
-    p->bnf = 1;
-    
-    p->mode = PlayNormal;
-    
-    p->cfxlen = 500; // default 300 sample crossfade
-    
-    tRamp_initToPool(&p->gain, 7.0f, 1, mp);
-    tRamp_setVal(&p->gain, 0.f);
-    
-    p->targetstart = -1;
-    p->targetend = -1;
-    
-    p->inCrossfade = 0;
-    p->flipStart = -1;
-    p->flipIdx = -1;
-}
-
-void tSampler_freeFromPool         (tSampler* const sp, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tSampler* p = *sp;
-    tRamp_freeFromPool(&p->gain, mp);
-    
-    mpool_free((char*)p, m);
-}
-
-void tSampler_setSample (tSampler* const sp, tBuffer* const b)
-{
-    _tSampler* p = *sp;
-    _tBuffer* s = *b;
-    
-    p->samp = s;
-    
-    p->start = 0;
-    p->end = p->samp->bufferLength - 1;
-    
-    p->len = p->end - p->start;
-    
-    p->idx = 0.f;
-}
-
-volatile uint32_t errorState = 0;
-
-float tSampler_tick        (tSampler* const sp)
-{
-    _tSampler* p = *sp;
-    
-    attemptStartEndChange(sp);
-    
-    if (p->active == 0)         return 0.f;
-    
-    if ((p->inc == 0.0f) || (p->len < 2))
-    {
-        //        p->inCrossfade = 1;
-        return p->last;
-    }
-    
-    float sample = 0.0f;
-    float cfxsample = 0.0f;
-    float crossfadeMix = 0.0f;
-    float flipsample = 0.0f;
-    float flipMix = 0.0f;
-    
-    float* buff = p->samp->buff;
-    
-    // Variables so start is also before end
-    int32_t start = p->start;
-    int32_t end = p->end;
-    if (p->flip < 0)
-    {
-        start = p->end;
-        end = p->start;
-    }
-    
-    // Get the direction and a reverse flag for some calcs
-    int dir = p->bnf * p->dir * p->flip;
-    int rev = 0;
-    if (dir < 0) rev = 1;
-    
-    // Get the current integer index and alpha for interpolation
-    int idx = (int) p->idx;
-    float alpha = rev + (p->idx - idx) * dir;
-    idx += rev;
-    
-    // Get the indexes for interpolation
-    int i1 = idx-(1*dir);
-    int i2 = idx;
-    int i3 = idx+(1*dir);
-    int i4 = idx+(2*dir);
-    
-    int length = p->samp->recordedLength;
-    
-    // Wrap as needed
-    i1 = (i1 < length*rev) ? i1 + (length * (1-rev)) : i1 - (length * rev);
-    i2 = (i2 < length*rev) ? i2 + (length * (1-rev)) : i2 - (length * rev);
-    i3 = (i3 < length*(1-rev)) ? i3 + (length * rev) : i3 - (length * (1-rev));
-    i4 = (i4 < length*(1-rev)) ? i4 + (length * rev) : i4 - (length * (1-rev));
-    
-    sample = LEAF_interpolate_hermite_x (buff[i1],
-                                         buff[i2],
-                                         buff[i3],
-                                         buff[i4],
-                                         alpha);
-    
-    uint32_t cfxlen = p->cfxlen;
-    if (p->len * 0.25f < cfxlen) cfxlen = p->len * 0.25f;
-    
-    // Determine crossfade points
-    uint32_t fadeLeftStart = 0;
-    if (start >= cfxlen) fadeLeftStart = start - cfxlen;
-    uint32_t fadeLeftEnd = fadeLeftStart + cfxlen;
-    
-    uint32_t fadeRightEnd = end;// + (fadeLeftEnd - start);
-    //    if (fadeRightEnd >= length) fadeRightEnd = length - 1;
-    uint32_t fadeRightStart = fadeRightEnd - cfxlen;
-    
-
-
-
-    if (p->mode == PlayLoop)
-    {
-        
-        int offset = 0;
-        int cdx = 0;
-        if ((fadeLeftStart <= idx) && (idx <= fadeLeftEnd))
-        {
-            offset = fadeLeftEnd - idx;
-            cdx = fadeRightEnd - offset;
-            p->inCrossfade = 1;
-        }
-        else if ((fadeRightStart <= idx) && (idx <= fadeRightEnd))
-        {
-            offset = idx - fadeRightStart;
-            cdx = fadeLeftStart + offset;
-            p->inCrossfade = 1;
-        }
-        else p->inCrossfade = 0;
-        
-        if (p->inCrossfade)
-        {
-            int c1 = cdx-(1*dir);
-            int c2 = cdx;
-            int c3 = cdx+(1*dir);
-            int c4 = cdx+(2*dir);
-            
-            // Wrap as needed
-            c1 = (c1 < length * rev) ? c1 + (length * (1-rev)) : c1 - (length * rev);
-            c2 = (c2 < length * rev) ? c2 + (length * (1-rev)) : c2 - (length * rev);
-            c3 = (c3 < length * (1-rev)) ? c3 + (length * rev) : c3 - (length * (1-rev));
-            c4 = (c4 < length * (1-rev)) ? c4 + (length * rev) : c4 - (length * (1-rev));
-            
-            cfxsample = LEAF_interpolate_hermite_x (buff[c1],
-                                                    buff[c2],
-                                                    buff[c3],
-                                                    buff[c4],
-                                                    alpha);
-            crossfadeMix = (float) offset / (float) cfxlen;
-        }
-        
-        float flipLength = fabsf(p->flipIdx - p->flipStart);
-        if (flipLength > cfxlen)
-        {
-            p->flipStart = -1;
-            p->flipIdx = -1;
-        }
-        if (p->flipIdx >= 0)
-        {
-            if (p->flipStart == -1)
-            {
-                p->flipStart = p->idx;
-                p->flipIdx = p->idx;
-            }
-            flipLength = fabsf(p->flipIdx - p->flipStart);
-            
-            int fdx = (int) p->flipIdx;
-            float falpha = (1-rev) - (p->flipIdx - fdx) * dir;
-            idx += (1-rev);
-            
-            // Get the indexes for interpolation
-            int f1 = fdx+(1*dir);
-            int f2 = fdx;
-            int f3 = fdx-(1*dir);
-            int f4 = fdx-(2*dir);
-            
-            // Wrap as needed
-            f1 = (f1 < length*(1-rev)) ? f1 + (length * rev) : f1 - (length * (1-rev));
-            f2 = (f2 < length*(1-rev)) ? f2 + (length * rev) : f2 - (length * (1-rev));
-            f3 = (f3 < length*rev) ? f3 + (length * (1-rev)) : f3 - (length * rev);
-            f4 = (f4 < length*rev) ? f4 + (length * (1-rev)) : f4 - (length * rev);
-            
-            flipsample = LEAF_interpolate_hermite_x (buff[f1],
-                                                     buff[f2],
-                                                     buff[f3],
-                                                     buff[f4],
-                                                     falpha);
-            flipMix = (float) (cfxlen - flipLength) / (float) cfxlen;
-        }
-    }
-    
-    float inc = fmod(p->inc, p->len);
-    p->idx += (dir * inc);
-    if (p->flipStart >= 0)
-    {
-        p->flipIdx += (-dir * inc);
-        if((int)p->flipIdx < 0)
-        {
-            p->idx += (float)length;
-        }
-        if((int)p->idx >= length)
-        {
-            
-            p->idx -= (float)length;
-        }
-    }
-    
-
-
-    attemptStartEndChange(sp);
-
-
-    if (p->mode == PlayLoop)
-    {
-        if((int)p->idx < start)
-        {
-            p->idx += (float)(fadeRightEnd - fadeLeftEnd);
-        }
-        if((int)p->idx > end)
-        {
-            
-            p->idx -= (float)(fadeRightEnd - fadeLeftEnd);
-        }
-    }
-    else if (p->mode == PlayBackAndForth)
-    {
-        if (p->idx < start)
-        {
-            p->bnf = -p->bnf;
-            p->idx = start + 1;
-        }
-        else if (p->idx > end)
-        {
-            p->bnf = -p->bnf;
-            p->idx = end - 1;
-        }
-    }
-    
-    float ticksToEnd = rev ? ((idx - start) * p->iinc) : ((end - idx) * p->iinc);
-    if (p->mode == PlayNormal)
-    {
-        if (ticksToEnd < (0.007f * leaf.sampleRate))
-        {
-            tRamp_setDest(&p->gain, 0.f);
-            p->active = -1;
-        }
-    }
-    
-    sample = ((sample * (1.0f - crossfadeMix)) + (cfxsample * crossfadeMix)) * (1.0f - flipMix) + (flipsample * flipMix);
-    
-    sample = sample * tRamp_tick(&p->gain);
-    
-    if (p->active < 0)
-    {
-        if (tRamp_sample(&p->gain) <= 0.00001f)
-        {
-            if (p->retrigger == 1)
-            {
-                p->active = 1;
-                p->retrigger = 0;
-                tRamp_setDest(&p->gain, 1.f);
-                
-                if (p->dir > 0)
-                {
-                    if (p->flip > 0)    p->idx = p->start;
-                    else                p->idx = p->end;
-                }
-                else
-                {
-                    if (p->flip > 0)    p->idx = p->end;
-                    else                p->idx = p->start;
-                }
-            }
-            else
-            {
-                p->active = 0;
-            }
-            
-        }
-    }
-    
-    if (fabsf(sample-p->last) > 0.1f)
-    {
-        errorState = 1;
-    }
-    
-    p->last = sample;
-    
-    
-    return p->last;
-}
-
-void tSampler_setMode      (tSampler* const sp, PlayMode mode)
-{
-    _tSampler* p = *sp;
-    p->mode = mode;
-}
-
-void tSampler_setCrossfadeLength  (tSampler* const sp, uint32_t length)
-{
-    _tSampler* p = *sp;
-    
-    uint32_t cfxlen = LEAF_clip(0, length, p->len * 0.25f);
-    
-    p->cfxlen = cfxlen;
-}
-
-void tSampler_play         (tSampler* const sp)
-{
-    _tSampler* p = *sp;
-    
-    if (p->active != 0)
-    {
-        p->active = -1;
-        p->retrigger = 1;
-        
-        tRamp_setDest(&p->gain, 0.f);
-    }
-    else
-    {
-        p->active = 1;
-        p->retrigger = 0;
-        
-        tRamp_setDest(&p->gain, 1.f);
-        
-        if (p->dir > 0)
-        {
-            if (p->flip > 0)    p->idx = p->start;
-            else                p->idx = p->end;
-        }
-        else
-        {
-            if (p->flip > 0)    p->idx = p->end;
-            else                p->idx = p->start;
-        }
-        handleStartEndChange(&p);
-    }
-}
-
-void tSampler_stop         (tSampler* const sp)
-{
-    _tSampler* p = *sp;
-    
-    p->active = -1;
-    
-    tRamp_setDest(&p->gain, 0.f);
-}
-
-static void handleStartEndChange(tSampler* const sp)
-{
-    _tSampler* p = *sp;
-    
-    p->len = abs(p->end - p->start);
-    
-    if (p->cfxlen > (p->len * 0.25f)) p->cfxlen = p->len * 0.25f;
-    
-    if (p->start > p->end)
-    {
-        p->flip = -1;
-    }
-    else
-    {
-        p->flip = 1;
-    }
-}
-
-static void attemptStartEndChange(tSampler* const sp)
-{
-    _tSampler* p = *sp;
-    
-    // Try to update start/end if needed
-    if (p->targetstart >= 0)
-    {
-        tSampler_setStart(sp, p->targetstart);
-    }
-    if (p->targetend >= 0)
-    {
-        tSampler_setEnd(sp, p->targetend);
-    }
-}
-
-void tSampler_setStart     (tSampler* const sp, int32_t start)
-{
-    _tSampler* p = *sp;
-    
-    int tempflip;
-    /*
-    if (start == p->end)
-    {
-        return;
-    }
-    */
-    if (p->active) // only bother with these checks if we're actually playing
-    {
-        if (start > p->end)
-        {
-            tempflip = -1;
-        }
-        else
-        {
-            tempflip = 1;
-        }
-        
-        int dir = p->bnf * p->dir * tempflip;
-        
-        uint32_t cfxlen = p->cfxlen;
-        if (p->len * 0.25f < cfxlen) cfxlen = p->len * 0.25f;
-        
-        if (p->inCrossfade || p->flipStart >= 0)
-        {
-            p->targetstart = start;
-            return;
-        }
-        if ((tempflip > 0) && (dir > 0)) // start is start and we're playing forward
-        {
-            if (start > p->idx)// start given is after current index or we're in a crossfade
-            {
-                p->targetstart = start;
-                float tempLen = abs(p->end - start) * 0.25f;
-                if (cfxlen > tempLen)
-                {
-                    p->cfxlen = tempLen;
-                }
-                return;
-            }
-        }
-        else if ((tempflip < 0) && (dir < 0)) // start is end and we're playing in reverse
-        {
-            if (start < p->idx)// start given is before current index or we're in a crossfade
-            {
-                p->targetstart = start;
-                float tempLen = abs(p->end - start) * 0.25f;
-                if (cfxlen > tempLen)
-                {
-                    p->cfxlen = tempLen;
-                }
-                return;
-            }
-        }
-        if (tempflip != p->flip && p->flipStart < 0)
-        {
-            p->flipIdx = 0;
-        }
-    }
-    
-    p->start = LEAF_clipInt(0, start, p->samp->recordedLength-1);
-    handleStartEndChange(sp);
-    p->targetstart = -1;
-    
-}
-
-void tSampler_setEnd       (tSampler* const sp, int32_t end)
-{
-    _tSampler* p = *sp;
-    
-    int tempflip;
-    
-    /*
-    if (end == p->start)
-    {
-        return;
-    }
-    */
-    if (p->active) // only bother with these checks if we're actually playing
-    {
-        if (p->start > end)
-        {
-            tempflip = -1;
-        }
-        else
-        {
-            tempflip = 1;
-        }
-        
-        int dir = p->bnf * p->dir * tempflip;
-        
-        uint32_t cfxlen = p->cfxlen;
-        if (p->len * 0.25f < cfxlen) cfxlen = p->len * 0.25f;
-        
-        if (p->inCrossfade || p->flipStart >= 0)
-        {
-            p->targetend = end;
-            return;
-        }
-        if (tempflip > 0 && dir < 0) // end is end and we're playing in reverse
-        {
-            if (end < p->idx) // end given is before current index or we're in a crossfade
-            {
-                p->targetend = end;
-                float tempLen = abs(end - p->start) * 0.25f;
-                if (cfxlen > tempLen)
-                {
-                    p->cfxlen = tempLen;
-                }
-                return;
-            }
-        }
-        else if (tempflip < 0 && dir > 0) // end is start and we're playing forward
-        {
-            if (end > p->idx) // end given is after current index or we're in a crossfade
-            {
-                p->targetend = end;
-                float tempLen = abs(end - p->start) * 0.25f;
-                if (cfxlen > tempLen)
-                {
-                    p->cfxlen = tempLen;
-                }
-                return;
-            }
-        }
-        if (tempflip != p->flip && p->flipStart < 0)
-        {
-            p->flipIdx = 0;
-        }
-    }
-    
-    p->end = LEAF_clipInt(0, end, p->samp->recordedLength-1);
-    handleStartEndChange(sp);
-    p->targetend = -1;
-}
-
-void    tSampler_setLength    (tSampler* const sp, int32_t length)
-{
-    _tSampler* p = *sp;
-    if (length == 0) length = 1;
-    tSampler_setEnd(sp, p->start + length);
-}
-
-void tSampler_setRate      (tSampler* const sp, float rate)
-{
-    _tSampler* p = *sp;
-    
-    if (rate < 0.f)
-    {
-        rate = -rate;
-        p->dir = -1;
-    }
-    else
-    {
-        p->dir = 1;
-    }
-    
-    p->inc = rate;
-    p->iinc = 1.f / p->inc;
-}
-
-//==============================================================================
-
-void    tAutoSampler_init   (tAutoSampler* const as, tBuffer* const b)
-{
-    tAutoSampler_initToPool(as, b, &leaf.mempool);
-}
-
-void    tAutoSampler_free   (tAutoSampler* const as)
-{
-    tAutoSampler_freeFromPool(as, &leaf.mempool);
-}
-
-void    tAutoSampler_initToPool (tAutoSampler* const as, tBuffer* const b, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAutoSampler* a = *as = (_tAutoSampler*) mpool_alloc(sizeof(_tAutoSampler), m);
-    
-    tBuffer_setRecordMode(b, RecordOneShot);
-    tSampler_initToPool(&a->sampler, b, mp);
-    tSampler_setMode(&a->sampler, PlayLoop);
-    tEnvelopeFollower_initToPool(&a->ef, 0.05f, 0.9999f, mp);
-}
-
-void    tAutoSampler_freeFromPool       (tAutoSampler* const as, tMempool* const mp)
-{
-    _tMempool* m = *mp;
-    _tAutoSampler* a = *as;
-    
-    tEnvelopeFollower_freeFromPool(&a->ef, mp);
-    tSampler_freeFromPool(&a->sampler, mp);
-    
-    mpool_free((char*)a, m);
-}
-
-float   tAutoSampler_tick               (tAutoSampler* const as, float input)
-{
-    _tAutoSampler* a = *as;
-    float currentPower = tEnvelopeFollower_tick(&a->ef, input);
-    
-    if ((currentPower > (a->threshold)) &&
-        (currentPower > a->previousPower + 0.001f) &&
-        (a->sampleTriggered == 0) &&
-        (a->sampleCounter == 0))
-    {
-        a->sampleTriggered = 1;
-        tBuffer_record(&a->sampler->samp);
-        a->sampler->samp->recordedLength = a->sampler->samp->bufferLength;
-        a->sampleCounter = a->windowSize + 24;//arbitrary extra time to avoid resampling while playing previous sample - better solution would be alternating buffers and crossfading
-        a->powerCounter = 1000;
-    }
-    
-    if (a->sampleCounter > 0)
-    {
-        a->sampleCounter--;
-    }
-    
-    
-    tSampler_setEnd(&a->sampler, a->windowSize);
-    tBuffer_tick(&a->sampler->samp, input);
-    //on it's way down
-    if (currentPower <= a->previousPower)
-    {
-        if (a->powerCounter > 0)
-        {
-            a->powerCounter--;
-        }
-        else if (a->sampleTriggered == 1)
-        {
-            a->sampleTriggered = 0;
-        }
-    }
-    
-    a->previousPower = currentPower;
-    
-    return tSampler_tick(&a->sampler);
-}
-
-void    tAutoSampler_setBuffer         (tAutoSampler* const as, tBuffer* const b)
-{
-    _tAutoSampler* a = *as;
-    tBuffer_setRecordMode(b, RecordOneShot);
-    if (a->windowSize > tBuffer_getBufferLength(b))
-        a->windowSize = tBuffer_getBufferLength(b);
-    tSampler_setSample(&a->sampler, b);
-}
-
-void    tAutoSampler_setMode            (tAutoSampler* const as, PlayMode mode)
-{
-    _tAutoSampler* a = *as;
-    tSampler_setMode(&a->sampler, mode);
-}
-
-void    tAutoSampler_play               (tAutoSampler* const as)
-{
-    _tAutoSampler* a = *as;
-    tSampler_play(&a->sampler);
-}
-void    tAutoSampler_stop               (tAutoSampler* const as)
-{
-    _tAutoSampler* a = *as;
-    tSampler_stop(&a->sampler);
-}
-
-void    tAutoSampler_setThreshold       (tAutoSampler* const as, float thresh)
-{
-    _tAutoSampler* a = *as;
-    a->threshold = thresh;
-}
-
-void    tAutoSampler_setWindowSize      (tAutoSampler* const as, uint32_t size)
-{
-    _tAutoSampler* a = *as;
-    if (size > tBuffer_getBufferLength(&a->sampler->samp))
-        a->windowSize = tBuffer_getBufferLength(&a->sampler->samp);
-    else a->windowSize = size;
-}
-
-void    tAutoSampler_setCrossfadeLength (tAutoSampler* const as, uint32_t length)
-{
-    _tAutoSampler* a = *as;
-    tSampler_setCrossfadeLength(&a->sampler, length);
-}
-
-void    tAutoSampler_setRate    (tAutoSampler* const as, float rate)
-{
-    ;
-}
--- a/LEAF/Src/leaf-tables.c
+++ /dev/null
@@ -1,14061 +1,0 @@
-/* sine wave table ripped from http://aquaticus.info/pwm-sine-wave */
-
-#if _WIN32 || _WIN64
-
-#include "..\Inc\leaf-tables.h"
-#include "..\Inc\leaf-global.h"
-#else
-
-#include "../Inc/leaf-tables.h"
-#include "../Inc/leaf-global.h"
-
-#endif
-
-
-#include "stdlib.h"
-
-const float __leaf_table_fir2XLow[32] = { 0.001067048115027622,    -0.004557728776555209,    -0.016711590887520535,    -0.021065500881657994,    -0.003828695019946828,    0.01865935152799254,    0.012036365576553658,    -0.02064070362810112,    -0.02682399333687091,    0.017862623081258543,    0.0492716766870816,    -0.004310232755957251,    -0.08571879958189704,    -0.03828300159135686,    0.18420501161808442,    0.4054061613074031,    0.4054061613074031,    0.18420501161808442,    -0.03828300159135686,    -0.08571879958189704,    -0.004310232755957251,    0.0492716766870816,    0.017862623081258543,    -0.02682399333687091,    -0.02064070362810112,    0.012036365576553658,    0.01865935152799254,    -0.003828695019946828,    -0.021065500881657994,    -0.016711590887520535,    -0.004557728776555209,    0.001067048115027622
-    
-};
-const float __leaf_table_fir4XLow[64] = { 0.0006952369848543607,    -0.0021602595656775407,    -0.005046940892783684,    -0.009045400833780066,    -0.01291169046367334,    -0.015115999752735221,    -0.014305643164290147,    -0.009951858009311934,    -0.0028258377448417927,    0.004999374847547033,    0.010750729432710248,    0.012011264580991868,    0.007846433846826574,    -0.0005004296670167205,    -0.009772888585453377,    -0.015810363406761653,    -0.01525350231205246,    -0.007226084282741553,    0.005835838890105145,    0.018676910759237414,    0.025091142837250335,    0.02056199072613674,    0.004658087892329196,    -0.017877850338462058,    -0.03800800914197999,    -0.04518029996599868,    -0.031146769751981856,    0.006553281738260734,    0.06282284508297871,    0.1257919544316159,    0.18007204974638935,    0.21145499612282317,    0.21145499612282317,    0.18007204974638935,    0.1257919544316159,    0.06282284508297871,    0.006553281738260734,    -0.031146769751981856,    -0.04518029996599868,    -0.03800800914197999,    -0.017877850338462058,    0.004658087892329196,    0.02056199072613674,    0.025091142837250335,    0.018676910759237414,    0.005835838890105145,    -0.007226084282741553,    -0.01525350231205246,    -0.015810363406761653,    -0.009772888585453377,    -0.0005004296670167205,    0.007846433846826574,    0.012011264580991868,    0.010750729432710248,    0.004999374847547033,    -0.0028258377448417927,    -0.009951858009311934,    -0.014305643164290147,    -0.015115999752735221,    -0.01291169046367334,    -0.009045400833780066,    -0.005046940892783684,    -0.0021602595656775407,    0.0006952369848543607
-};
-const float __leaf_table_fir8XLow[64] = { 0.0006754949160790157,    0.0002779478357299437,    0.00016529299248029802,    -0.00013134896547707938,    -0.0006717131404275674,    -0.0015110701381990592,    -0.002691718323402088,    -0.004233151560515273,    -0.006122759810873029,    -0.008309678451155357,    -0.010700324896169348,    -0.013154262594364387,    -0.015486775440587882,    -0.01748014690133886,    -0.018887653514132675,    -0.019456772349369558,    -0.01894272181784527,    -0.017131243827335194,    -0.013858969256894846,    -0.009032963777720983,    -0.0026459262830678125,    0.00521276165394513,    0.01435273458276724,    0.024486845310977834,    0.03524172116254876,    0.04617574968276393,    0.05680505888194891,    0.06663123541320262,    0.07517390607705798,    0.08200222626654773,    0.0867639105153248,    0.08920930675382921,    0.08920930675382921,    0.0867639105153248,    0.08200222626654773,    0.07517390607705798,    0.06663123541320262,    0.05680505888194891,    0.04617574968276393,    0.03524172116254876,    0.024486845310977834,    0.01435273458276724,    0.00521276165394513,    -0.0026459262830678125,    -0.009032963777720983,    -0.013858969256894846,    -0.017131243827335194,    -0.01894272181784527,    -0.019456772349369558,    -0.018887653514132675,    -0.01748014690133886,    -0.015486775440587882,    -0.013154262594364387,    -0.010700324896169348,    -0.008309678451155357,    -0.006122759810873029,    -0.004233151560515273,    -0.002691718323402088,    -0.0015110701381990592,    -0.0006717131404275674,    -0.00013134896547707938,    0.00016529299248029802,    0.0002779478357299437,    0.0006754949160790157
-};
-
-
-const float __leaf_table_fir16XLow[128] = {    0.0046126349429950276,    0.002418251320043122,    0.002998396982119693,    0.0036278090719021024,    0.0042975430005925104,    0.004996222179947315,    0.005711926725799716,    0.00643079625328543,    0.007135468516004265,    0.007808520869830334,    0.008432568881455365,    0.008987453845736109,    0.00945525638237626,    0.009815890031354925,    0.01005214318250272,    0.0101471696783731,    0.010086582032584102,    0.009858344528406827,    0.009453351108896472,    0.00886647074448095,    0.008096771309653635,    0.00714751717242796,    0.006026566967445846,    0.004745997071949807,    0.0033222377606249025,    0.0017766711441555428,    0.00013504407845816216,    -0.0015717347700967995,    -0.0033094088955885038,    -0.005040712758495562,    -0.0067262136355625045,    -0.00832548062138737,    -0.009796853749250854,    -0.011097728611024173,    -0.012187337326564303,    -0.013023698103098556,    -0.013573509920266506,    -0.013801755448129987,    -0.013685636499932173,    -0.0132011750541409,    -0.012328290422335804,    -0.011059565013468301,    -0.009397775060844537,    -0.007349071952063118,    -0.004920665178899413,    -0.002134336426912994,    0.0009664872092121234,    0.00436478920287496,    0.008003553325930378,    0.011839210717492617,    0.015814297525442545,    0.01987142580304551,    0.023948983229671674,    0.0279823843957138,    0.03190689232743185,    0.03565816745288488,    0.03917373689862927,    0.042395392373465575,    0.04526788671987817,    0.0477424527036618,    0.04977580760639264,    0.051332653704811104,    0.05238580079738586,    0.05291690409987073,    0.05291690409987073,    0.05238580079738586,    0.051332653704811104,    0.04977580760639264,    0.0477424527036618,    0.04526788671987817,    0.042395392373465575,    0.03917373689862927,    0.03565816745288488,    0.03190689232743185,    0.0279823843957138,    0.023948983229671674,    0.01987142580304551,    0.015814297525442545,    0.011839210717492617,    0.008003553325930378,    0.00436478920287496,    0.0009664872092121234,    -0.002134336426912994,    -0.004920665178899413,    -0.007349071952063118,    -0.009397775060844537,    -0.011059565013468301,    -0.012328290422335804,    -0.0132011750541409,    -0.013685636499932173,    -0.013801755448129987,    -0.013573509920266506,    -0.013023698103098556,    -0.012187337326564303,    -0.011097728611024173,    -0.009796853749250854,    -0.00832548062138737,    -0.0067262136355625045,    -0.005040712758495562,    -0.0033094088955885038,    -0.0015717347700967995,    0.00013504407845816216,    0.0017766711441555428,    0.0033222377606249025,    0.004745997071949807,    0.006026566967445846,    0.00714751717242796,    0.008096771309653635,    0.00886647074448095,    0.009453351108896472,    0.009858344528406827,    0.010086582032584102,    0.0101471696783731,    0.01005214318250272,    0.009815890031354925,    0.00945525638237626,    0.008987453845736109,    0.008432568881455365,    0.007808520869830334,    0.007135468516004265,    0.00643079625328543,    0.005711926725799716,    0.004996222179947315,    0.0042975430005925104,    0.0036278090719021024,    0.002998396982119693,    0.002418251320043122,    0.0046126349429950276
-};
-
-const float __leaf_table_fir32XLow[256] = {    0.003135815035675548,    0.0008156232239328851,    0.000917068197598276,    0.0010233321389754753,    0.001134110218761504,    0.0012491667970169805,    0.0013680375075057851,    0.001490070275243389,    0.0016147643011084855,    0.0017417157238882276,    0.0018700914504121836,    0.0019991579415749683,    0.002128471863076254,    0.0022567566738769186,    0.002383672659264704,    0.002508166194956474,    0.002629506399721181,    0.0027467683378931368,    0.0028590361951993043,    0.0029653540222406116,    0.0030647286416823558,    0.00315623470697179,    0.003238837936508139,    0.0033114996375323753,    0.003373275427426179,    0.003423120728613286,    0.0034602078573979502,    0.00348370126489233,    0.0034928589363555137,    0.003487024926580723,    0.00346544617544127,    0.0034275901596743786,    0.003372744288160786,    0.003300374368830668,    0.0032100011629779615,    0.0031011259873207366,    0.0029734835473811155,    0.002826966057696581,    0.002661647372342504,    0.002477856491791658,    0.0022758592957851788,    0.002056324802981239,    0.0018188203182857804,    0.0015643564184398945,    0.0012926118931092972,    0.0010045690459120843,    0.0007018867678747181,    0.0003860391202902529,    0.00005849980158161824,    -0.0002799696936324717,    -0.0006296005356373679,    -0.0009895247437558183,    -0.0013546785675169304,    -0.0017195561866995873,    -0.0020963876502479964,    -0.002468260301862593,    -0.0028417218921490055,    -0.0032120394918615683,    -0.0035773608021516137,    -0.003935505336691309,    -0.004284369920502227,    -0.004621670593236145,    -0.004945031807804129,    -0.005252279037886353,    -0.005541035510098375,    -0.0058089264241534076,    -0.006054095814242929,    -0.006274068947767563,    -0.00646696244866887,    -0.0066305675756926155,    -0.006762900683506128,    -0.0068620368760529005,    -0.006926182735003765,    -0.0069537046122919695,    -0.006943019919480639,    -0.006892771889917669,    -0.006801741377343995,    -0.006668838708546407,    -0.006493264006045824,    -0.006274267867821416,    -0.006011320357808483,    -0.0057040303527059145,    -0.0053521596030233955,    -0.004955865565614219,    -0.0045153171035821945,    -0.004031251472901679,    -0.0035043462024212605,    -0.002935495552851842,    -0.0023258420785969196,    -0.0016765768456949962,    -0.0009892344368254917,    -0.0002656979807816483,    0.0004919846584003508,    0.0012815018066687268,    0.0021009777555761797,    0.002947120990883713,    0.003818897132096946,    0.004711821532573362,    0.005623441877750917,    0.0065507318610126455,    0.00749007256295643,    0.008438601047417412,    0.009393231377415961,    0.010349728929990198,    0.011304034683748016,    0.012253787036798792,    0.0131957325172224,    0.014123534046112132,    0.015037407721547907,    0.015930638333497147,    0.016801083762848282,    0.017644931748342123,    0.018458926379618365,    0.019239740862760844,    0.0199842074278331,    0.02068926196032209,    0.021351902836904902,    0.021969538576994418,    0.022539688024890127,    0.02305979792910538,    0.023527892067270753,    0.023941757493848588,    0.02429975740762361,    0.024600378168866704,    0.02484241441905009,    0.025024893038415853,    0.025146995906550493,    0.025208214258904054,    0.025208214258904054,    0.025146995906550493,    0.025024893038415853,    0.02484241441905009,    0.024600378168866704,    0.02429975740762361,    0.023941757493848588,    0.023527892067270753,    0.02305979792910538,    0.022539688024890127,    0.021969538576994418,    0.021351902836904902,    0.02068926196032209,    0.0199842074278331,    0.019239740862760844,    0.018458926379618365,    0.017644931748342123,    0.016801083762848282,    0.015930638333497147,    0.015037407721547907,    0.014123534046112132,    0.0131957325172224,    0.012253787036798792,    0.011304034683748016,    0.010349728929990198,    0.009393231377415961,    0.008438601047417412,    0.00749007256295643,    0.0065507318610126455,    0.005623441877750917,    0.004711821532573362, 
\ No newline at end of file
-};
-const float __leaf_table_fir64XLow[256] = {    -0.007573012406345277,    0.00024079274850113426,    0.00024263723882202515,    0.0002481761013286244,    0.0002570861260137623,    0.0002699368701027846,    0.0002857208679875607,    0.00030498547559247845,    0.0003276748319944884,    0.0003537347795633787,    0.0003828493219762104,    0.00041517688767673063,    0.00045068714217736007,    0.0004893648798719514,    0.0005311398297784606,    0.0005760959724897604,    0.0006241866818625697,    0.00067534060229161,    0.0007295120216703175,    0.0007867375202056556,    0.00084702149975344,    0.0009103261049980538,    0.000976697360607544,    0.001046184181770156,    0.0011188000414977899,    0.0011944092399743605,    0.0012730564419046215,    0.0013547197757430203,    0.0014394035452673572,    0.0015269066196715306,    0.0016175658016292192,    0.0017113538530254156,    0.0018082288964809644,    0.0019074086707092258,    0.0020102102191501834,    0.002115750178775707,    0.0022249923434846707,    0.002324224442263978,    0.0024546715656463027,    0.0025707750602413674,    0.0026886907797787993,    0.0028092893752555753,    0.0029332425986383416,    0.003059760096689252,    0.0031892620828723227,    0.0033216131163189126,    0.00345667963318062,    0.003594116005810746,    0.00373401564369845,    0.003876285696289593,    0.004020837780560375,    0.004167535061341574,    0.004316384032044447,    0.004467271202856345,    0.004620059305184111,    0.00477464934326076,    0.004931017978539705,    0.005089107569792517,    0.005248795189805357,    0.005410043882397958,    0.00557279812512997,    0.005736960631925176,    0.005902264421456515,    0.006068673112862706,    0.006236075536115428,    0.006404404103216645,    0.006573347381526989,    0.006743241263261084,    0.006913918086775748,    0.007085185727911214,    0.007255841416075524,    0.007427788300814843,    0.007599440425756014,    0.007771491831017079,    0.007940210385740073,    0.008115982431613405,    0.008286230477311076,    0.008455728261315427,    0.008624828065636171,    0.0087938382520137,    0.008961934603559608,    0.009129309914478244,    0.009295705048569773,    0.009460895719293651,    0.009624512383898252,    0.009786590519239425,    0.009946995212091796,    0.010105592312872629,    0.010262212502414601,    0.010416818688520148,    0.010569268906811192,    0.010719396502249774,    0.010867082742078902,    0.011012274230511132,    0.011154883295408143,    0.01129473907939671,    0.011431766458575066,    0.011565861880187342,    0.011696890630696698,    0.011824548066976817,    0.011948823922340134,    0.012069629781346847,    0.012186937947306629,    0.012300432892104241,    0.01241055721228422,    0.012517086983512674,    0.012619772868365714,    0.01271694508250919,    0.012811738843612799,    0.012901614577029171,    0.012987520090940792,    0.013067705672196494,    0.013146659639966262,    0.013218602399208508,    0.013285987093409357,    0.013349032229359648,    0.013407929990549725,    0.013461999810303231,    0.013511437444384976,    0.013556082697096088,    0.013595835757053917,    0.013630499982440026,    0.01366023670087255,    0.013685042776887582,    0.013704903172994373,    0.013719772986706352,    0.013729721512429531,    0.01373472352074017,    0.01373472352074017,    0.013729721512429531,    0.013719772986706352,    0.013704903172994373,    0.013685042776887582,    0.01366023670087255,    0.013630499982440026,    0.013595835757053917,    0.013556082697096088,    0.013511437444384976,    0.013461999810303231,    0.013407929990549725,    0.013349032229359648,    0.013285987093409357,    0.013218602399208508,    0.013146659639966262,    0.013067705672196494,    0.012987520090940792,    0.012901614577029171,    0.012811738843612799,    0.01271694508250919,    0.012619772868365714,    0.012517086983512674,    0.01241055721228422,    0.012300432892104241,    0.012186937947306629,    0.012069629781346847,    0.011948823922340134,    0.011824548066976817,    0.011696890630696698,    0.011565861880187342,    0.011431766458575066,    0.01129473907939671, 
\ No newline at end of file
-};
-
-const float __leaf_table_fir2XHigh[128] = { -2.84059575423864e-7,    -0.00000136947295895967,    -0.00000213110629785921,    5.807441351521463e-7,    0.000005239591854415941,    0.0000017841093721093506,    -0.000011653029986124283,    -0.000012481751035611902,    0.000014692437654954816,    0.00003091988960026406,    -0.000011636477685383897,    -0.00006163665493961978,    -0.00001118322316939516,    0.0000961395818492714,    0.00006083206665324362,    -0.00012648324239817438,    -0.0001504708418330321,    0.00012753607518766694,    0.00027753923597010266,    -0.00007473591299809917,    -0.0004344444061086839,    -0.00006832501012358436,    0.0005862297350582802,    0.00032465365599127654,    -0.0006850628390191059,    -0.0007096577214822187,    0.0006552234666252462,    0.0012010034203710784,    -0.00041922406056782083,    -0.0017446179378994388,    -0.00010392099105524336,    0.002230631291161319,    0.0009594567093737222,    -0.0025128059157130817,    -0.002149706133662562,    0.0024038381899768617,    0.0035931253272614688,    -0.0017176062590590708,    -0.005125004981810711,    0.0002868765073834209,    0.006475023818177746,    0.001977797493927114,    -0.007294746305130189,    -0.005063375113227534,    0.007166496494812792,    0.008801581540883702,    -0.005659099397006974,    -0.012862366201787455,    0.00235384598511852,    0.016726921191779598,    0.0031052434033518096,    -0.01970178000552065,    -0.011028401875416302,    0.020882193937533836,    0.021743369519245558,    -0.019061942568474207,    -0.03589474387520175,    0.012292311428695956,    0.05536768370150782,    0.0038607600693388554,    -0.08741418160721261,    -0.046877671142694095,    0.18124004024261609,    0.41210996873316647,    0.41210996873316647,    0.18124004024261609,    -0.046877671142694095,    -0.08741418160721261,    0.0038607600693388554,    0.05536768370150782,    0.012292311428695956,    -0.03589474387520175,    -0.019061942568474207,    0.021743369519245558,    0.020882193937533836,    -0.011028401875416302,    -0.01970178000552065,    0.0031052434033518096,    0.016726921191779598,    0.00235384598511852,    -0.012862366201787455,    -0.005659099397006974,    0.008801581540883702,    0.007166496494812792,    -0.005063375113227534,    -0.007294746305130189,    0.001977797493927114,    0.006475023818177746,    0.0002868765073834209,    -0.005125004981810711,    -0.0017176062590590708,    0.0035931253272614688,    0.0024038381899768617,    -0.002149706133662562,    -0.0025128059157130817,    0.0009594567093737222,    0.002230631291161319,    -0.00010392099105524336,    -0.0017446179378994388,    -0.00041922406056782083,    0.0012010034203710784,    0.0006552234666252462,    -0.0007096577214822187,    -0.0006850628390191059,    0.00032465365599127654,    0.0005862297350582802,    -0.00006832501012358436,    -0.0004344444061086839,    -0.00007473591299809917,    0.00027753923597010266,    0.00012753607518766694,    -0.0001504708418330321,    -0.00012648324239817438,    0.00006083206665324362,    0.0000961395818492714,    -0.00001118322316939516,    -0.00006163665493961978,    -0.000011636477685383897,    0.00003091988960026406,    0.000014692437654954816,    -0.000012481751035611902,    -0.000011653029986124283,    0.0000017841093721093506,    0.000005239591854415941,    5.807441351521463e-7,    -0.00000213110629785921,    -0.00000136947295895967,    -2.84059575423864e-7
-};
-const float __leaf_table_fir4XHigh[256] = {    -0.000005005316694254475,    -0.000010486216859223391,    -0.000020341389435584184,    -0.000028297461945285203,    -0.00003403970018224806,    -0.00003356141383522181,    -0.000028580071407296435,    -0.000021726870316473222,    -0.000018929805847104457,    -0.000024937785475375726,    -0.00004148092321827023,    -0.00006494904958257674,    -0.00008704299086494871,    -0.00009817726370665003,    -0.00009207287115371104,    -0.000070350790919461,    -0.000043204247279965386,    -0.000026338754429996997,    -0.00003337527183661095,    -0.00006864404983689099,    -0.00012208654155480072,    -0.00017229784061896603,    -0.00019443471041769651,    -0.0001738448733058993,    -0.00011458014625437172,    -0.00004241909459592675,    0.000005858218684625342,    -0.000001824861163195929,    -0.00007376494795165521,    -0.0001870435534541462,    -0.00029242213522170924,    -0.00033660459070401045,    -0.00028781004597914193,    -0.00015737268974254042,    2.4069038430437714e-7,    0.00010675981100488967,    0.00009819903503597289,    -0.000041503003504151876,    -0.00026298229853436046,    -0.0004679330143401381,    -0.000550680089032831,    -0.00045235278384860993,    -0.0001968527747134386,    0.00010787721721971545,    0.00031390651451180623,    0.0003015617300329922,    0.00004577001768172358,    -0.0003593242009009715,    -0.0007303801286775824,    -0.0008768456304295432,    -0.0006955854650565154,    -0.00023554905807185743,    0.00030790928383371996,    0.0006717577010285365,    0.0006504775398685704,    0.00020580176646200433,    -0.0004919858457618222,    -0.0011250441730682327,    -0.001368894036877941,    -0.0010555177901930952,    -0.00027554321698262794,    0.0006358082850902164,    0.0012391753523202087,    0.0011981314765901019,    0.0004602570434921762,    -0.0006853292543951153,    -0.0017133793271509106,    -0.0020995520812018714,    -0.0015812527530506791,    -0.00031822317984990035,    0.0011425257824338887,    0.0020968295391595774,    0.0020180799074488486,    0.000837174097496827,    -0.0009743823002432432,    -0.0025836938014065975,    -0.00317200799245191,    -0.0023436048910665127,    -0.0003642960983689493,    0.0019025392919524162,    0.0033649169125380706,    0.003219398725098763,    0.0013786588356217962,    -0.001415068708295585,    -0.003874469283244301,    -0.004750945120551563,    -0.0034548726172607498,    -0.0004124431830693066,    0.003046185830666762,    0.005254266475282044,    0.004999101428335298,    0.002164099554982996,    -0.0021053850268023615,    -0.005843180111542266,    -0.0071497618238720055,    -0.0051353491910507984,    -0.0004583930086451031,    0.004842595616255233,    0.008213402548972962,    0.00778770755309392,    0.003376641721920036,    -0.003263596560752136,    -0.00908888688929085,    -0.011124936147882954,    -0.007935453568187856,    -0.0004986705357686102,    0.007998600315936934,    0.013466881500422878,    0.012810645017913123,    0.0055655403444453775,    -0.00554207852540761,    -0.015510462180576574,    -0.019193722858760427,    -0.013786276388279539,    -0.0005292356782833587,    0.01526523041211863,    0.026109899142542758,    0.02555053211054643,    0.011414259133477645,    -0.01233979307221452,    -0.036160130412882435,    -0.04790631293501779,    -0.03735668670551693,    -0.0005458966005379449,    0.0578178869957579,    0.12496957303698586,    0.18372600900451644,    0.21795911568314993,    0.21795911568314993,    0.18372600900451644,    0.12496957303698586,    0.0578178869957579,    -0.0005458966005379449,    -0.03735668670551693,    -0.04790631293501779,    -0.036160130412882435,    -0.01233979307221452,    0.011414259133477645,    0.02555053211054643,    0.026109899142542758,    0.01526523041211863,    -0.0005292356782833587,    -0.013786276388279539,    -0.019193722858760427,    -0.015510462180576574,    -0.00554207852540761,    0.0055655403444453775,    0.012810645017913123,    0.013466881500422878,    0.007998600315936934,    -0.0004986705357686102,    -0.007935453568187856,    -0.011124936147882954,    -0.
\ No newline at end of file
-};
-const float __leaf_table_fir8XHigh[256] = {  0.00003151783634577697,    0.00009875809063575779,    0.00011952623149469952,    0.00019849261073490482,    0.0002696485066015727,    0.0003584099608999308,    0.00044625388761023913,    0.0005319258847527823,    0.0006044238440905041,    0.0006561179367621888,    0.0006780841482803052,    0.0006636425833116022,    0.0006082918945412483,    0.0005111129662557197,    0.00037520607336543075,    0.00020804636935322743,    0.000021269501878054377,    -0.00017002451555728345,    -0.00034851615605358005,    -0.0004962768841556523,    -0.0005966792410792791,    -0.0006363992327126103,    -0.0006072812580573203,    -0.0005078006712943802,    -0.00034391453642163835,    -0.0001291740152058233,    0.00011608199926386939,    0.0003663883172395964,    0.0005935643814352129,    0.0007697197860148682,    0.0008705060394986916,    0.0008782421413312541,    0.0007845404678866458,    0.0005921472961030223,    0.0003155390021514345,    -0.00001975662025403667,    -0.0003792242746719516,    -0.0007226903878816747,    -0.0010085916592065419,    -0.0011987843551975912,    -0.0012633390417589486,    -0.0011847927602402282,    -0.0009612078105002279,    -0.000607656728473499,    -0.00015580100244720835,    0.0003485912201162041,    0.0008499567444557006,    0.0012888238057625968,    0.0016085750487669262,    0.0017624573232133487,    0.0017198572703654494,    0.0014712649629561752,    0.0010309092850789008,    0.0004369297346610886,    -0.0002514846038907312,    -0.0009595058667715721,    -0.0016045955886596882,    -0.002105611566700304,    -0.002392827139552557,    -0.0024168530933362325,    -0.00215621955374809,    -0.0016217376891380843,    -0.0008577023023227786,    0.00006118480472750677,    0.0010364584424907685,    0.001956049351551786,    0.002706696800527712,    0.00318733017834542,    0.003322096376141488,    0.0030709922507173265,    0.0024373280210738995,    0.0014701293295941087,    0.0002616176696267551,    -0.0010608870493178752,    -0.002347699681593795,    -0.0034429894732297774,    -0.004203029219555798,    -0.00451398893736866,    -0.004307677839041472,    -0.0035726927213363046,    -0.0023597776381211666,    -0.0007800969761600126,    0.00100380173046076,    0.0027935634872831047,    0.0043761562977185555,    0.005547954061740437,    0.006139532362567163,    0.006038187372164252,    0.005205193104614497,    0.003685832364921369,    0.001610065959141185,    -0.000816509624547802,    -0.003331179568244694,    -0.005640769473740277,    -0.007453565321222198,    -0.008513609412918493,    -0.008633348531283494,    -0.0077207439401804495,    -0.005797651634024999,    -0.003006470630061831,    0.00039645931697321107,    0.004060688288708085,    0.007573881722373314,    0.010503477916637444,    0.012443852783009171,    0.013064660267980682,    0.012154652149365373,    0.009656403107118496,    0.005687627159122434,    0.000545686660735971,    -0.0053060804504155646,    -0.011269885881064536,    -0.016661104177372186,    -0.02076782817847515,    -0.022917127850131423,    -0.022542073972735464,    -0.01924294503235089,    -0.012836088871532723,    -0.0033855865368634104,    0.008786222880026725,    0.023111259021133423,    0.038810833745067747,    0.05495087979175688,    0.0705128544598909,    0.08447430461530625,    0.0958915908436123,    0.10397774191970133,    0.10816816138474043,    0.10816816138474043,    0.10397774191970133,    0.0958915908436123,    0.08447430461530625,    0.0705128544598909,    0.05495087979175688,    0.038810833745067747,    0.023111259021133423,    0.008786222880026725,    -0.0033855865368634104,    -0.012836088871532723,    -0.01924294503235089,    -0.022542073972735464,    -0.022917127850131423,    -0.02076782817847515,    -0.016661104177372186,    -0.011269885881064536,    -0.0053060804504155646,    0.000545686660735971,    0.005687627159122434,    0.009656403107118496,    0.012154652149365373,    0.013064660267980682,    0.012443852783009171,    0.010503477916637444,    0.007573881722373314,    0.004060688288708085,    0.00039645931697321107,    -0.0030064706
\ No newline at end of file
-};
-const float __leaf_table_fir16XHigh[512] = {    -0.00004017374344384353,    -0.00003227078919691645,    -0.000044582740239682106,    -0.000059425359817699515,    -0.00007697752128893082,    -0.00009737601811785888,    -0.0001207053885646365,    -0.0001469875004658367,    -0.00017617089070723918,    -0.00020812277783425573,    -0.00024262055862920822,    -0.0002793450290387454,    -0.00031787504789909166,    -0.0003576848687093178,    -0.00039814402944626006,    -0.0004385193477821247,    -0.0004779801054675081,    -0.0005156064224889276,    -0.0005503998661674507,    -0.0005812986840141297,    -0.0006071960902571958,    -0.0006269579055230081,    -0.0006394482697590037,    -0.0006435494696099878,    -0.0006381976745823161,    -0.0006223990810339609,    -0.0005952724709135361,    -0.0005560644539084499,    -0.0005041884015231086,    -0.00043924670962451254,    -0.0003610522906867853,    -0.00026965679983683306,    -0.0001653614058088566,    -0.00004873297752271577,    0.00007938716594862651,    0.0002178851248768366,    0.0003653745221459382,    0.0005202048736767491,    0.0006804822788501571,    0.000844091795557933,    0.0010087245432410705,    0.001171916285444633,    0.0013310914106543618,    0.0014836070887652329,    0.0016268044135357975,    0.0017580661564216042,    0.0018748692581644735,    0.0019748436871571654,    0.002055827323171664,    0.0021159244704237914,    0.002153555697975211,    0.002167506085967786,    0.0021569688626138744,    0.0021215783384772617,    0.002061435847387089,    0.0019771222276341416,    0.0018697088674027409,    0.0017407508215061904,    0.0015922694449783334,    0.0014267282165683897,    0.0012469961488860717,    0.001056296589672521,    0.0008581466323761644,    0.0006562897137528959,    0.0004546180492460159,    0.00025709020784146465,    0.00006764748603812152,    -0.00010987539810307727,    -0.00027183788464963423,    -0.0004148795460643277,    -0.0005360117384990369,    -0.0006326924816840852,    -0.0007028976477190042,    -0.0007451789241688792,    -0.0007587025992854616,    -0.00074329154026803,    -0.00069943732077003,    -0.0006283153390612298,    -0.0005317674541381928,    -0.0004122736350806254,    -0.0002728965175373041,    -0.00011721898154916056,    0.000050727732077616854,    0.00022654511040849531,    0.0004055654685261572,    0.0005829725151929097,    0.0007539299891718014,    0.0009136968081628693,    0.001057727366040496,    0.0011817838315511687,    0.0012820768752281682,    0.0013553936088779655,    0.0013991567634035874,    0.0014114626691980761,    0.0013911994521601603,    0.001338158623469115,    0.0012529312652788224,    0.0011368782078168052,    0.0009924227419316402,    0.0008225367782712132,    0.0006311126153653432,    0.000422596130820185,    0.00020202566973633374,    -0.000025140126274052846,    -0.00025314012889659734,    -0.00047605825978268214,    -0.0006879757889763613,    -0.0008831265836660278,    -0.001056052961049124,    -0.0012017570118505278,    -0.0013158443800074546,    -0.0013946550179738235,    -0.00143537714856422,    -0.0014361430413177665,    -0.0013961025273104373,    -0.0013154698934900741,    -0.0011955448624625515,    -0.001038705445344848,    -0.000848370211905452,    -0.0006289357238567322,    -0.00038567726087640876,    -0.00012464084542349136,    0.00014751424024790855,    0.00042365555592108265,    0.000696381707633601,    0.0009581911739190034,    0.0012016945125591883,    0.0014198129038021875,    0.0016059677163340854,    0.0017542822302381216,    0.0018597489437935104,    0.0019183843680031518,    0.001927370582069373,    0.0018851569558006424,    0.0017915316423764106,    0.0016476681649469273,    0.001456129721890939,    0.0012208322294896099,    0.0009469770920907817,    0.0006409478559993642,    0.0003101659717946291,    -0.00003708137047780295,    -0.0003918367361265021,    -0.0007446984520565823,    -0.0010860619549777095,    -0.0014063764577860907,    -0.001696397687712767,    -0.0019474488265779002,    -0.002151669227747982,    -0.002302249012563522,    -0.0023936395957784356,    -0.0024217386080201218,    -0.002
\ No newline at end of file
-};
-
-const float __leaf_table_fir32XHigh[512] = {    0.00001695726883388158,    0.000007675466747345142,    0.000009369969074343828,    0.000011279085806814155,    0.000013415806582636418,    0.00001579269222570207,    0.000018421887123570193,    0.00002131472780344219,    0.000024481596821410856,    0.000027931521966672674,    0.00003167253546774698,    0.00003571156802204514,    0.00004005385180859527,    0.00004470260388316558,    0.00004965901316017587,    0.00005492204008152043,    0.00006048845305842843,    0.00006635289665744708,    0.00007250665288501187,    0.0000789384885513108,    0.00008563367774264342,    0.00009257537368625661,    0.00009974252621593992,    0.00010711124658254552,    0.00011465337570751053,    0.00012233800287448705,    0.0001301305708291957,    0.00013799197926318244,    0.00014587929227876596,    0.00015374657372226684,    0.000161543746522965,    0.0001692168951984779,    0.00017670780599526637,    0.0001839550739841348,    0.00019089427588832468,    0.00019745677767765902,    0.00020357062514912954,    0.00020916210971675997,    0.0002141545274069432,    0.00021846768000518762,    0.00022202071352577454,    0.00022473075934779818,    0.00022651220405928228,    0.00022728022159501112,    0.0002269491553453425,    0.00022543136577234978,    0.00022264296187547415,    0.0002184968451898252,    0.00021291103136150344,    0.00020580302601570826,    0.00019709428929377538,    0.00018670887176183611,    0.00017457550213741742,    0.00016062706678436397,    0.0001448013951907719,    0.0001270421247034733,    0.00010729940118257597,    0.00008553038364340326,    0.00006169965119086659,    0.00003577991793585758,    0.000007752990690551504,    -0.000022389783957090243,    -0.00005464753929697829,    -0.00008900834335751579,    -0.0001254499161703673,    -0.00016393632811230729,    -0.0002044234554405178,    -0.00024684930385593585,    -0.000291146274450184,    -0.0003372278537321366,    -0.00038499799259658716,    -0.00043434821843157495,    -0.0004851539797413716,    -0.000537279458928773,    -0.0005905762825387684,    -0.0006448805823763886,    -0.0007000164290861944,    -0.0007557967574505448,    -0.0008120214850938284,    -0.0008684784362018723,    -0.000924945795118327,    -0.0009811922513964621,    -0.0010369764412132298,    -0.0010920476659586364,    -0.0011461469777671403,    -0.0011990092591572569,    -0.0012503626824092186,    -0.001299930348337511,    -0.0013474327014007098,    -0.0013925895075579725,    -0.0014351200205514354,    -0.0014747442974922531,    -0.0015111829899403478,    -0.0015441601544571469,    -0.0015734040663474662,    -0.0015986504297413274,    -0.0016196438588602622,    -0.0016361410571864347,    -0.0016479110521030553,    -0.0016547353303458935,    -0.0016564077630374632,    -0.0016527363435263026,    -0.0016435483225404998,    -0.0016286956518505767,    -0.0016080553748913375,    -0.0015815237521207347,    -0.0015490117157615478,    -0.0015104528831698094,    -0.001465823165002548,    -0.0014151394219170251,    -0.001358416974565312,    -0.0012956736049528927,    -0.0012270686956067616,    -0.001152656073186285,    -0.0010726190880063075,    -0.0009871267066080157,    -0.0008963952696138223,    -0.0008006703533508123,    -0.0007002299686741377,    -0.0005953836139186328,    -0.0004864723381871633,    -0.0003738679720682553,    -0.00025797228061734796,    -0.00013921599931306062,    -0.000018057446410729332,    0.00010501885598494471,    0.00022950336047164354,    0.00035486342787289485,    0.00048054572124056215,    0.0006059774135387564,    0.0007305691337782367,    0.0008537161333655127,    0.0009748030963864794,    0.0010932046990955392,    0.0012082904750566619,    0.0013194249851955161,    0.0014259733376771368,    0.001527303743896754,    0.0016227897956312704,    0.001711814456379326,    0.0017937737205012431,    0.0018680795987737412,    0.0019341641568400244,    0.0019914815935822066,    0.002039512595508008,    0.0020777684004774366,    0.002105792845115274,    0.002123165845077641,    0.0021295078285898787,    0.002124481676328226,    0.0021077949476114846,
\ No newline at end of file
-};
-const float __leaf_table_fir64XHigh[1024] = {    0.000022913289467138396,    0.0000053659189590266235,    0.0000059874129268137184,    0.000006651966903409214,    0.000007360859185648702,    0.000008116254962232182,    0.000008919034969234169,    0.000009771649771624484,    0.00001067513223630924,    0.000011631201209261511,    0.000012641797347255405,    0.00001370786337628007,    0.000014831347439124435,    0.00001601386713533323,    0.00001725659281802051,    0.000018561209740219567,    0.00001992924403854817,    0.00002136207377464052,    0.000022860960742170415,    0.00002442737159197627,    0.000026062787460182665,    0.00002776823090942686,    0.00002954497152514943,    0.000031394387750225555,    0.0000333174817796639,    0.00003531515315607694,    0.000037388352711032095,    0.00003953809180607858,    0.000041765124869157065,    0.00004406996003435772,    0.00004645314118637872,    0.00004891512239763599,    0.000051456283434024254,    0.000054076836400090634,    0.00005677675565218903,    0.00005955600371707976,    0.00006241451652786996,    0.0000653520878490535,    0.00006836828400903681,    0.00007146257248874113,    0.00007463447593939765,    0.00007788334878376474,    0.00008120828768996651,    0.00008460822180317937,    0.00008808197111592392,    0.00009162826246394013,    0.00009524561718379787,    0.0000989323217880672,    0.00010268641529207459,    0.00010650572670297642,    0.00011038797758602729,    0.00011433071893118852,    0.00011833127277888537,    0.0001223867211507117,    0.0001264939791526471,    0.0001306498943438022,    0.00013485120459499745,    0.0001390945080465441,    0.0001433761787732808,    0.0001476923508970611,    0.0001520390228045441,    0.00015641203030453322,    0.0001608069510673283,    0.00016521898552431528,    0.0001696430686231646,    0.0001740740165774301,    0.00017850636200629103,    0.0001829343448175031,    0.00018735205242694257,    0.000191753562437378,    0.00019613295450734188,    0.00020048414321002534,    0.00020480094575553342,    0.00020907706346541747,    0.00021330607883745088,    0.00021748145118260308,    0.00022159611743123445,    0.0002256425365807074,    0.0002296129456080256,    0.00023349938436811445,    0.00023729369397980805,    0.00024098757818162363,    0.0002445732198467269,    0.00024804316088030066,    0.00025138980120093706,    0.00025460575109546185,    0.00025768336513093236,    0.000260614166491108,    0.00026338871874574443,    0.000265996883919168,    0.00026842872851524756,    0.0002706745796903796,    0.00027272653793114146,    0.0002745790007011535,    0.0002762259706331217,    0.0002776600678298683,    0.0002788693645809233,    0.0002798371088712506,    0.0002805501390130166,    0.0002810071637276198,    0.0002812218387032567,    0.0002811853995116189,    0.0002808065268305555,    0.000280197444464886,    0.00027926833477321045,    0.0002780409500002217,    0.0002765020258372484,    0.00027464338678576605,    0.00027245845620400524,    0.0002699387312629035,    0.0002670776879725044,    0.0002638682356241208,    0.00026030295633048156,    0.0002563760351381784,    0.00025208079324849864,    0.00024741089077219824,    0.00024236092911432053,    0.00023692535214431433,    0.00023109887243694582,    0.0002248766203312044,    0.00021825436568685826,    0.0002112279751888258,    0.00020379342129965214,    0.00019594765441000844,    0.00018768793613519225,    0.00017901156693343162,    0.0001699163889323255,    0.00016040086314937234,    0.00015046397564821766,    0.00014010492118016657,    0.00012932331202118152,    0.00011811939311034222,    0.00010649390448787931,    0.00009444816369190979,    0.00008198390428241564,    0.00006910334679829026,    0.00005580947004681174,    0.000042105866991998394,    0.000027996578416041823,    0.000013486064917873263,    -0.0000014205550195404417,    -0.000016717431552354825,    -0.00003239824489309241,    -0.00004845619470295486,    -0.00006488392097284113,    -0.00008167344072768395,    -0.00009881608266779326,    -0.00011630254584578235,    -0.000134122927443183,    -0.0001522667855569792,    -0.0001
\ No newline at end of file
-};
-
-
-const float* __leaf_tableref_firCoeffs[COEFFS_SIZE] = { __leaf_table_fir2XLow, __leaf_table_fir4XLow, __leaf_table_fir8XLow, __leaf_table_fir16XLow, __leaf_table_fir32XLow, __leaf_table_fir64XLow, __leaf_table_fir2XHigh, __leaf_table_fir4XHigh, __leaf_table_fir8XHigh, __leaf_table_fir16XHigh, __leaf_table_fir32XHigh, __leaf_table_fir64XHigh
-};
-
-const float __leaf_tablesize_firNumTaps[COEFFS_SIZE] = { 32, 32, 64, 128, 256, 256, 128, 256, 256, 512, 512, 1024 };
-
-
-#ifdef USE_SHAPER_TABLE
-const float __leaf_table_shaper1[SHAPER1_TABLE_SIZE] = {0.333061f, 0.333022f, 0.332983f, 0.332944f, 0.332905f, 0.332866f, 0.332827f, 0.332788f, 0.332749f, 0.33271f, 0.332671f, 0.332632f, 0.332593f, 0.332554f, 0.332515f, 0.332475f, 0.332436f, 0.332397f, 0.332358f, 0.332319f,
-0.33228f, 0.33224f, 0.332201f, 0.332162f, 0.332123f, 0.332083f, 0.332044f, 0.332005f, 0.331966f, 0.331926f, 0.331887f, 0.331848f, 0.331808f, 0.331769f, 0.33173f, 0.33169f, 0.331651f, 0.331611f, 0.331572f, 0.331533f,
-0.331493f, 0.331454f, 0.331414f, 0.331375f, 0.331335f, 0.331296f, 0.331256f, 0.331217f, 0.331177f, 0.331138f, 0.331098f, 0.331059f, 0.331019f, 0.330979f, 0.33094f, 0.3309f, 0.330861f, 0.330821f, 0.330781f, 0.330742f,
-0.330702f, 0.330662f, 0.330623f, 0.330583f, 0.330543f, 0.330504f, 0.330464f, 0.330424f, 0.330384f, 0.330344f, 0.330305f, 0.330265f, 0.330225f, 0.330185f, 0.330145f, 0.330106f, 0.330066f, 0.330026f, 0.329986f, 0.329946f,
-0.329906f, 0.329866f, 0.329826f, 0.329786f, 0.329746f, 0.329706f, 0.329667f, 0.329627f, 0.329587f, 0.329547f, 0.329506f, 0.329466f, 0.329426f, 0.329386f, 0.329346f, 0.329306f, 0.329266f, 0.329226f, 0.329186f, 0.329146f,
-0.329106f, 0.329065f, 0.329025f, 0.328985f, 0.328945f, 0.328905f, 0.328864f, 0.328824f, 0.328784f, 0.328744f, 0.328704f, 0.328663f, 0.328623f, 0.328583f, 0.328542f, 0.328502f, 0.328462f, 0.328421f, 0.328381f, 0.328341f,
-0.3283f, 0.32826f, 0.328219f, 0.328179f, 0.328139f, 0.328098f, 0.328058f, 0.328017f, 0.327977f, 0.327936f, 0.327896f, 0.327855f, 0.327815f, 0.327774f, 0.327734f, 0.327693f, 0.327653f, 0.327612f, 0.327571f, 0.327531f,
-0.32749f, 0.32745f, 0.327409f, 0.327368f, 0.327328f, 0.327287f, 0.327246f, 0.327206f, 0.327165f, 0.327124f, 0.327084f, 0.327043f, 0.327002f, 0.326961f, 0.32692f, 0.32688f, 0.326839f, 0.326798f, 0.326757f, 0.326716f,
-0.326676f, 0.326635f, 0.326594f, 0.326553f, 0.326512f, 0.326471f, 0.32643f, 0.326389f, 0.326348f, 0.326307f, 0.326266f, 0.326225f, 0.326184f, 0.326143f, 0.326102f, 0.326061f, 0.32602f, 0.325979f, 0.325938f, 0.325897f,
-0.325856f, 0.325815f, 0.325774f, 0.325733f, 0.325692f, 0.325651f, 0.325609f, 0.325568f, 0.325527f, 0.325486f, 0.325445f, 0.325403f, 0.325362f, 0.325321f, 0.32528f, 0.325239f, 0.325197f, 0.325156f, 0.325115f, 0.325073f,
-0.325032f, 0.324991f, 0.324949f, 0.324908f, 0.324867f, 0.324825f, 0.324784f, 0.324743f, 0.324701f, 0.32466f, 0.324618f, 0.324577f, 0.324535f, 0.324494f, 0.324452f, 0.324411f, 0.324369f, 0.324328f, 0.324286f, 0.324245f,
-0.324203f, 0.324162f, 0.32412f, 0.324079f, 0.324037f, 0.323995f, 0.323954f, 0.323912f, 0.323871f, 0.323829f, 0.323787f, 0.323746f, 0.323704f, 0.323662f, 0.32362f, 0.323579f, 0.323537f, 0.323495f, 0.323453f, 0.323412f,
-0.32337f, 0.323328f, 0.323286f, 0.323244f, 0.323203f, 0.323161f, 0.323119f, 0.323077f, 0.323035f, 0.322993f, 0.322951f, 0.32291f, 0.322868f, 0.322826f, 0.322784f, 0.322742f, 0.3227f, 0.322658f, 0.322616f, 0.322574f,
-0.322532f, 0.32249f, 0.322448f, 0.322406f, 0.322364f, 0.322322f, 0.322279f, 0.322237f, 0.322195f, 0.322153f, 0.322111f, 0.322069f, 0.322027f, 0.321985f, 0.321942f, 0.3219f, 0.321858f, 0.321816f, 0.321774f, 0.321731f,
-0.321689f, 0.321647f, 0.321605f, 0.321562f, 0.32152f, 0.321478f, 0.321435f, 0.321393f, 0.321351f, 0.321308f, 0.321266f, 0.321224f, 0.321181f, 0.321139f, 0.321096f, 0.321054f, 0.321012f, 0.320969f, 0.320927f, 0.320884f,
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--0.185564f, -0.185617f, -0.185671f, -0.185724f, -0.185777f, -0.185831f, -0.185884f, -0.185938f, -0.185991f, -0.186044f, -0.186098f, -0.186151f, -0.186204f, -0.186257f, -0.186311f, -0.186364f, -0.186417f, -0.18647f, -0.186524f, -0.186577f,
--0.18663f, -0.186683f, -0.186737f, -0.18679f, -0.186843f, -0.186896f, -0.186949f, -0.187002f, -0.187056f, -0.187109f, -0.187162f, -0.187215f, -0.187268f, -0.187321f, -0.187374f, -0.187427f, -0.18748f, -0.187533f, -0.187586f, -0.187639f,
--0.187692f, -0.187745f, -0.187798f, -0.187851f, -0.187904f, -0.187957f, -0.18801f, -0.188063f, -0.188116f, -0.188169f, -0.188222f, -0.188275f, -0.188328f, -0.188381f, -0.188434f, -0.188486f, -0.188539f, -0.188592f, -0.188645f, -0.188698f,
--0.188751f, -0.188803f, -0.188856f, -0.188909f, -0.188962f, -0.189015f, -0.189067f, -0.18912f, -0.189173f, -0.189225f, -0.189278f, -0.189331f, -0.189384f, -0.189436f, -0.189489f, -0.189542f, -0.189594f, -0.189647f, -0.1897f, -0.189752f,
--0.189805f, -0.189857f, -0.18991f, -0.189963f, -0.190015f, -0.190068f, -0.19012f, -0.190173f, -0.190225f, -0.190278f, -0.19033f, -0.190383f, -0.190435f, -0.190488f, -0.19054f, -0.190593f, -0.190645f, -0.190698f, -0.19075f, -0.190802f,
--0.190855f, -0.190907f, -0.19096f, -0.191012f, -0.191064f, -0.191117f, -0.191169f, -0.191221f, -0.191274f, -0.191326f, -0.191378f, -0.191431f, -0.191483f, -0.191535f, -0.191588f, -0.19164f, -0.191692f, -0.191744f, -0.191797f, -0.191849f,
--0.191901f, -0.191953f, -0.192005f, -0.192058f, -0.19211f, -0.192162f, -0.192214f, -0.192266f, -0.192318f, -0.19237f, -0.192423f, -0.192475f, -0.192527f, -0.192579f, -0.192631f, -0.192683f, -0.192735f, -0.192787f, -0.192839f, -0.192891f,
--0.192943f, -0.192995f, -0.193047f, -0.193099f, -0.193151f, -0.193203f, -0.193255f, -0.193307f, -0.193359f, -0.193411f, -0.193463f, -0.193514f, -0.193566f, -0.193618f, -0.19367f, -0.193722f, -0.193774f, -0.193826f, -0.193877f, -0.193929f,
--0.193981f, -0.194033f, -0.194085f, -0.194136f, -0.194188f, -0.19424f, -0.194292f, -0.194343f, -0.194395f, -0.194447f, -0.194498f, -0.19455f, -0.194602f, -0.194653f, -0.194705f, -0.194757f, -0.194808f, -0.19486f, -0.194912f, -0.194963f,
--0.195015f, -0.195066f, -0.195118f, -0.19517f, -0.195221f, -0.195273f, -0.195324f, -0.195376f, -0.195427f, -0.195479f, -0.19553f, -0.195582f, -0.195633f, -0.195685f, -0.195736f, -0.195788f, -0.195839f, -0.19589f, -0.195942f, -0.195993f,
--0.196045f, -0.196096f, -0.196147f, -0.196199f, -0.19625f, -0.196301f, -0.196353f, -0.196404f, -0.196455f, -0.196507f, -0.196558f, -0.196609f, -0.196661f, -0.196712f, -0.196763f, -0.196814f, -0.196866f, -0.196917f, -0.196968f, -0.197019f,
--0.19707f, -0.197122f, -0.197173f, -0.197224f, -0.197275f, -0.197326f, -0.197377f, -0.197428f, -0.19748f, -0.197531f, -0.197582f, -0.197633f, -0.197684f, -0.197735f, -0.197786f, -0.197837f, -0.197888f, -0.197939f, -0.19799f, -0.198041f,
--0.198092f, -0.198143f, -0.198194f, -0.198245f, -0.198296f, -0.198347f, -0.198398f, -0.198449f, -0.198499f, -0.19855f, -0.198601f, -0.198652f, -0.198703f, -0.198754f, -0.198805f, -0.198855f, -0.198906f, -0.198957f, -0.199008f, -0.199059f,
--0.199109f, -0.19916f, -0.199211f, -0.199262f, -0.199312f, -0.199363f, -0.199414f, -0.199465f, -0.199515f, -0.199566f, -0.199617f, -0.199667f, -0.199718f, -0.199769f, -0.199819f, -0.19987f, -0.19992f, -0.199971f, -0.200022f, -0.200072f,
--0.200123f, -0.200173f, -0.200224f, -0.200274f, -0.200325f, -0.200375f, -0.200426f, -0.200477f, -0.200527f, -0.200577f, -0.200628f, -0.200678f, -0.200729f, -0.200779f, -0.20083f, -0.20088f, -0.200931f, -0.200981f, -0.201031f, -0.201082f,
--0.201132f, -0.201182f, -0.201233f, -0.201283f, -0.201333f, -0.201384f, -0.201434f, -0.201484f, -0.201535f, -0.201585f, -0.201635f, -0.201685f, -0.201736f, -0.201786f, -0.201836f, -0.201886f, -0.201936f, -0.201987f, -0.202037f, -0.202087f,
--0.202137f, -0.202187f, -0.202237f, -0.202287f, -0.202338f, -0.202388f, -0.202438f, -0.202488f, -0.202538f, -0.202588f, -0.202638f, -0.202688f, -0.202738f, -0.202788f, -0.202838f, -0.202888f, -0.202938f, -0.202988f, -0.203038f, -0.203088f,
--0.203138f, -0.203188f, -0.203238f, -0.203288f, -0.203338f, -0.203388f, -0.203437f, -0.203487f, -0.203537f, -0.203587f, -0.203637f, -0.203687f, -0.203737f, -0.203786f, -0.203836f, -0.203886f, -0.203936f, -0.203985f, -0.204035f, -0.204085f,
--0.204135f, -0.204184f, -0.204234f, -0.204284f, -0.204334f, -0.204383f, -0.204433f, -0.204483f, -0.204532f, -0.204582f, -0.204632f, -0.204681f, -0.204731f, -0.20478f, -0.20483f, -0.20488f, -0.204929f, -0.204979f, -0.205028f, -0.205078f,
--0.205127f, -0.205177f, -0.205226f, -0.205276f, -0.205325f, -0.205375f, -0.205424f, -0.205474f, -0.205523f, -0.205573f, -0.205622f, -0.205671f, -0.205721f, -0.20577f, -0.20582f, -0.205869f, -0.205918f, -0.205968f, -0.206017f, -0.206066f,
--0.206116f, -0.206165f, -0.206214f, -0.206264f, -0.206313f, -0.206362f, -0.206411f, -0.206461f, -0.20651f, -0.206559f, -0.206608f, -0.206658f, -0.206707f, -0.206756f, -0.206805f, -0.206854f, -0.206903f, -0.206953f, -0.207002f, -0.207051f,
--0.2071f, -0.207149f, -0.207198f, -0.207247f, -0.207296f, -0.207345f, -0.207394f, -0.207443f, -0.207492f, -0.207541f, -0.20759f, -0.207639f, -0.207688f, -0.207737f, -0.207786f, -0.207835f, -0.207884f, -0.207933f, -0.207982f, -0.208031f,
--0.20808f, -0.208129f, -0.208178f, -0.208227f, -0.208275f, -0.208324f, -0.208373f, -0.208422f, -0.208471f, -0.20852f, -0.208568f, -0.208617f, -0.208666f, -0.208715f, -0.208763f, -0.208812f, -0.208861f, -0.20891f, -0.208958f, -0.209007f,
--0.209056f, -0.209104f, -0.209153f, -0.209202f, -0.20925f, -0.209299f, -0.209348f, -0.209396f, -0.209445f, -0.209493f, -0.209542f, -0.209591f, -0.209639f, -0.209688f, -0.209736f, -0.209785f, -0.209833f, -0.209882f, -0.20993f, -0.209979f,
--0.210027f, -0.210076f, -0.210124f, -0.210173f, -0.210221f, -0.210269f, -0.210318f, -0.210366f, -0.210415f, -0.210463f, -0.210511f, -0.21056f, -0.210608f, -0.210656f, -0.210705f, -0.210753f, -0.210801f, -0.21085f, -0.210898f, -0.210946f,
--0.210995f, -0.211043f, -0.211091f, -0.211139f, -0.211188f, -0.211236f, -0.211284f, -0.211332f, -0.21138f, -0.211428f, -0.211477f, -0.211525f, -0.211573f, -0.211621f, -0.211669f, -0.211717f, -0.211765f, -0.211813f, -0.211862f, -0.21191f,
--0.211958f, -0.212006f, -0.212054f, -0.212102f, -0.21215f, -0.212198f, -0.212246f, -0.212294f, -0.212342f, -0.21239f, -0.212438f, -0.212486f, -0.212533f, -0.212581f, -0.212629f, -0.212677f, -0.212725f, -0.212773f, -0.212821f, -0.212869f,
--0.212917f, -0.212964f, -0.213012f, -0.21306f, -0.213108f, -0.213156f, -0.213203f, -0.213251f, -0.213299f, -0.213347f, -0.213394f, -0.213442f, -0.21349f, -0.213537f, -0.213585f, -0.213633f, -0.213681f, -0.213728f, -0.213776f, -0.213823f,
--0.213871f, -0.213919f, -0.213966f, -0.214014f, -0.214062f, -0.214109f, -0.214157f, -0.214204f, -0.214252f, -0.214299f, -0.214347f, -0.214394f, -0.214442f, -0.214489f, -0.214537f, -0.214584f, -0.214632f, -0.214679f, -0.214727f, -0.214774f,
--0.214821f, -0.214869f, -0.214916f, -0.214964f, -0.215011f, -0.215058f, -0.215106f, -0.215153f, -0.2152f, -0.215248f, -0.215295f, -0.215342f, -0.21539f, -0.215437f, -0.215484f, -0.215531f, -0.215579f, -0.215626f, -0.215673f, -0.21572f,
--0.215767f, -0.215815f, -0.215862f, -0.215909f, -0.215956f, -0.216003f, -0.21605f, -0.216098f, -0.216145f, -0.216192f, -0.216239f, -0.216286f, -0.216333f, -0.21638f, -0.216427f, -0.216474f, -0.216521f, -0.216568f, -0.216615f, -0.216662f,
--0.216709f, -0.216756f, -0.216803f, -0.21685f, -0.216897f, -0.216944f, -0.216991f, -0.217038f, -0.217085f, -0.217132f, -0.217179f, -0.217225f, -0.217272f, -0.217319f, -0.217366f, -0.217413f, -0.21746f, -0.217506f, -0.217553f, -0.2176f,
--0.217647f, -0.217693f, -0.21774f, -0.217787f, -0.217834f, -0.21788f, -0.217927f, -0.217974f, -0.21802f, -0.218067f, -0.218114f, -0.21816f, -0.218207f, -0.218254f, -0.2183f, -0.218347f, -0.218394f, -0.21844f, -0.218487f, -0.218533f,
--0.21858f, -0.218626f, -0.218673f, -0.218719f, -0.218766f, -0.218813f, -0.218859f, -0.218905f, -0.218952f, -0.218998f, -0.219045f, -0.219091f, -0.219138f, -0.219184f, -0.219231f, -0.219277f, -0.219323f, -0.21937f, -0.219416f, -0.219462f,
--0.219509f, -0.219555f, -0.219601f, -0.219648f, -0.219694f, -0.21974f, -0.219787f, -0.219833f, -0.219879f, -0.219925f, -0.219972f, -0.220018f, -0.220064f, -0.22011f, -0.220156f, -0.220203f, -0.220249f, -0.220295f, -0.220341f, -0.220387f,
--0.220433f, -0.220479f, -0.220526f, -0.220572f, -0.220618f, -0.220664f, -0.22071f, -0.220756f, -0.220802f, -0.220848f, -0.220894f, -0.22094f, -0.220986f, -0.221032f, -0.221078f, -0.221124f, -0.22117f, -0.221216f, -0.221262f, -0.221308f,
--0.221354f, -0.221399f, -0.221445f, -0.221491f, -0.221537f, -0.221583f, -0.221629f, -0.221675f, -0.22172f, -0.221766f, -0.221812f, -0.221858f, -0.221904f, -0.221949f, -0.221995f, -0.222041f, };
-#endif
-
-
-#ifdef USE_SAWTOOTH_TABLE
-const float __leaf_table_sawtooth[11][SAW_TABLE_SIZE] =
-{
-    
-    {
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\ No newline at end of file
-    },
-
-};
-#endif
-
-#ifdef USE_TRIANGLE_TABLE
-
-const float __leaf_table_triangle[11][TRI_TABLE_SIZE] =
-{
-    
-    {
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\ No newline at end of file
-    },
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\ No newline at end of file
-    }
-};
-#endif
-
-#ifdef USE_SQUARE_TABLE
-const float __leaf_table_squarewave[11][SQR_TABLE_SIZE] =
-{
-    
-    {
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\ No newline at end of file
-    },
-    
-    {
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\ No newline at end of file
-    },
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\ No newline at end of file
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-    {
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\ No newline at end of file
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\ No newline at end of file
-    },
-
-};
-#endif
-
-
-
-
-#if DECAY_TABLES_USED
-const float __leaf_table_exp_decay[EXP_DECAY_TABLE_SIZE] = { 
-	1.0f, 0.999969f, 0.999939f, 0.999908f, 0.999878f, 0.999847f, 0.999817f, 0.999786f, 0.999756f, 0.999725f, 0.999695f, 0.999664f, 0.999634f, 0.999603f, 0.999573f, 0.999542f, 0.999512f, 0.999481f, 0.999451f, 0.99942f,
-0.99939f, 0.999359f, 0.999329f, 0.999298f, 0.999268f, 0.999237f, 0.999207f, 0.999176f, 0.999146f, 0.999115f, 0.999085f, 0.999054f, 0.999024f, 0.998993f, 0.998963f, 0.998932f, 0.998902f, 0.998871f, 0.998841f, 0.99881f,
-0.99878f, 0.998749f, 0.998719f, 0.998688f, 0.998658f, 0.998627f, 0.998597f, 0.998566f, 0.998536f, 0.998505f, 0.998475f, 0.998444f, 0.998414f, 0.998383f, 0.998353f, 0.998322f, 0.998292f, 0.998261f, 0.998231f, 0.9982f,
-0.99817f, 0.998139f, 0.998109f, 0.998078f, 0.998048f, 0.998017f, 0.997987f, 0.997956f, 0.997926f, 0.997895f, 0.997865f, 0.997834f, 0.997804f, 0.997773f, 0.997743f, 0.997712f, 0.997682f, 0.997652f, 0.997621f, 0.997591f,
-0.99756f, 0.99753f, 0.997499f, 0.997469f, 0.997438f, 0.997408f, 0.997377f, 0.997347f, 0.997316f, 0.997286f, 0.997255f, 0.997225f, 0.997194f, 0.997164f, 0.997133f, 0.997103f, 0.997072f, 0.997042f, 0.997012f, 0.996981f,
-0.996951f, 0.99692f, 0.99689f, 0.996859f, 0.996829f, 0.996798f, 0.996768f, 0.996737f, 0.996707f, 0.996676f, 0.996646f, 0.996615f, 0.996585f, 0.996554f, 0.996524f, 0.996494f, 0.996463f, 0.996433f, 0.996402f, 0.996372f,
-0.996341f, 0.996311f, 0.99628f, 0.99625f, 0.996219f, 0.996189f, 0.996158f, 0.996128f, 0.996098f, 0.996067f, 0.996037f, 0.996006f, 0.995976f, 0.995945f, 0.995915f, 0.995884f, 0.995854f, 0.995823f, 0.995793f, 0.995763f,
-0.995732f, 0.995702f, 0.995671f, 0.995641f, 0.99561f, 0.99558f, 0.995549f, 0.995519f, 0.995488f, 0.995458f, 0.995428f, 0.995397f, 0.995367f, 0.995336f, 0.995306f, 0.995275f, 0.995245f, 0.995214f, 0.995184f, 0.995154f,
-0.995123f, 0.995093f, 0.995062f, 0.995032f, 0.995001f, 0.994971f, 0.99494f, 0.99491f, 0.99488f, 0.994849f, 0.994819f, 0.994788f, 0.994758f, 0.994727f, 0.994697f, 0.994667f, 0.994636f, 0.994606f, 0.994575f, 0.994545f,
-0.994514f, 0.994484f, 0.994454f, 0.994423f, 0.994393f, 0.994362f, 0.994332f, 0.994301f, 0.994271f, 0.99424f, 0.99421f, 0.99418f, 0.994149f, 0.994119f, 0.994088f, 0.994058f, 0.994027f, 0.993997f, 0.993967f, 0.993936f,
-0.993906f, 0.993875f, 0.993845f, 0.993815f, 0.993784f, 0.993754f, 0.993723f, 0.993693f, 0.993662f, 0.993632f, 0.993602f, 0.993571f, 0.993541f, 0.99351f, 0.99348f, 0.993449f, 0.993419f, 0.993389f, 0.993358f, 0.993328f,
-0.993297f, 0.993267f, 0.993237f, 0.993206f, 0.993176f, 0.993145f, 0.993115f, 0.993085f, 0.993054f, 0.993024f, 0.992993f, 0.992963f, 0.992932f, 0.992902f, 0.992872f, 0.992841f, 0.992811f, 0.99278f, 0.99275f, 0.99272f,
-0.992689f, 0.992659f, 0.992628f, 0.992598f, 0.992568f, 0.992537f, 0.992507f, 0.992476f, 0.992446f, 0.992416f, 0.992385f, 0.992355f, 0.992324f, 0.992294f, 0.992264f, 0.992233f, 0.992203f, 0.992172f, 0.992142f, 0.992112f,
-0.992081f, 0.992051f, 0.99202f, 0.99199f, 0.99196f, 0.991929f, 0.991899f, 0.991868f, 0.991838f, 0.991808f, 0.991777f, 0.991747f, 0.991716f, 0.991686f, 0.991656f, 0.991625f, 0.991595f, 0.991564f, 0.991534f, 0.991504f,
-0.991473f, 0.991443f, 0.991413f, 0.991382f, 0.991352f, 0.991321f, 0.991291f, 0.991261f, 0.99123f, 0.9912f, 0.991169f, 0.991139f, 0.991109f, 0.991078f, 0.991048f, 0.991018f, 0.990987f, 0.990957f, 0.990926f, 0.990896f,
-0.990866f, 0.990835f, 0.990805f, 0.990775f, 0.990744f, 0.990714f, 0.990683f, 0.990653f, 0.990623f, 0.990592f, 0.990562f, 0.990532f, 0.990501f, 0.990471f, 0.99044f, 0.99041f, 0.99038f, 0.990349f, 0.990319f, 0.990289f,
-0.990258f, 0.990228f, 0.990197f, 0.990167f, 0.990137f, 0.990106f, 0.990076f, 0.990046f, 0.990015f, 0.989985f, 0.989955f, 0.989924f, 0.989894f, 0.989863f, 0.989833f, 0.989803f, 0.989772f, 0.989742f, 0.989712f, 0.989681f,
-0.989651f, 0.989621f, 0.98959f, 0.98956f, 0.98953f, 0.989499f, 0.989469f, 0.989438f, 0.989408f, 0.989378f, 0.989347f, 0.989317f, 0.989287f, 0.989256f, 0.989226f, 0.989196f, 0.989165f, 0.989135f, 0.989105f, 0.989074f,
-0.989044f, 0.989013f, 0.988983f, 0.988953f, 0.988922f, 0.988892f, 0.988862f, 0.988831f, 0.988801f, 0.988771f, 0.98874f, 0.98871f, 0.98868f, 0.988649f, 0.988619f, 0.988589f, 0.988558f, 0.988528f, 0.988498f, 0.988467f,
-0.988437f, 0.988407f, 0.988376f, 0.988346f, 0.988316f, 0.988285f, 0.988255f, 0.988225f, 0.988194f, 0.988164f, 0.988134f, 0.988103f, 0.988073f, 0.988043f, 0.988012f, 0.987982f, 0.987952f, 0.987921f, 0.987891f, 0.987861f,
-0.98783f, 0.9878f, 0.98777f, 0.987739f, 0.987709f, 0.987679f, 0.987648f, 0.987618f, 0.987588f, 0.987557f, 0.987527f, 0.987497f, 0.987466f, 0.987436f, 0.987406f, 0.987375f, 0.987345f, 0.987315f, 0.987284f, 0.987254f,
-0.987224f, 0.987193f, 0.987163f, 0.987133f, 0.987102f, 0.987072f, 0.987042f, 0.987011f, 0.986981f, 0.986951f, 0.98692f, 0.98689f, 0.98686f, 0.98683f, 0.986799f, 0.986769f, 0.986739f, 0.986708f, 0.986678f, 0.986648f,
-0.986617f, 0.986587f, 0.986557f, 0.986526f, 0.986496f, 0.986466f, 0.986435f, 0.986405f, 0.986375f, 0.986345f, 0.986314f, 0.986284f, 0.986254f, 0.986223f, 0.986193f, 0.986163f, 0.986132f, 0.986102f, 0.986072f, 0.986041f,
-0.986011f, 0.985981f, 0.985951f, 0.98592f, 0.98589f, 0.98586f, 0.985829f, 0.985799f, 0.985769f, 0.985738f, 0.985708f, 0.985678f, 0.985648f, 0.985617f, 0.985587f, 0.985557f, 0.985526f, 0.985496f, 0.985466f, 0.985436f,
-0.985405f, 0.985375f, 0.985345f, 0.985314f, 0.985284f, 0.985254f, 0.985223f, 0.985193f, 0.985163f, 0.985133f, 0.985102f, 0.985072f, 0.985042f, 0.985011f, 0.984981f, 0.984951f, 0.984921f, 0.98489f, 0.98486f, 0.98483f,
-0.984799f, 0.984769f, 0.984739f, 0.984709f, 0.984678f, 0.984648f, 0.984618f, 0.984587f, 0.984557f, 0.984527f, 0.984497f, 0.984466f, 0.984436f, 0.984406f, 0.984375f, 0.984345f, 0.984315f, 0.984285f, 0.984254f, 0.984224f,
-0.984194f, 0.984164f, 0.984133f, 0.984103f, 0.984073f, 0.984042f, 0.984012f, 0.983982f, 0.983952f, 0.983921f, 0.983891f, 0.983861f, 0.983831f, 0.9838f, 0.98377f, 0.98374f, 0.983709f, 0.983679f, 0.983649f, 0.983619f,
-0.983588f, 0.983558f, 0.983528f, 0.983498f, 0.983467f, 0.983437f, 0.983407f, 0.983377f, 0.983346f, 0.983316f, 0.983286f, 0.983256f, 0.983225f, 0.983195f, 0.983165f, 0.983134f, 0.983104f, 0.983074f, 0.983044f, 0.983013f,
-0.982983f, 0.982953f, 0.982923f, 0.982892f, 0.982862f, 0.982832f, 0.982802f, 0.982771f, 0.982741f, 0.982711f, 0.982681f, 0.98265f, 0.98262f, 0.98259f, 0.98256f, 0.982529f, 0.982499f, 0.982469f, 0.982439f, 0.982408f,
-0.982378f, 0.982348f, 0.982318f, 0.982287f, 0.982257f, 0.982227f, 0.982197f, 0.982166f, 0.982136f, 0.982106f, 0.982076f, 0.982045f, 0.982015f, 0.981985f, 0.981955f, 0.981924f, 0.981894f, 0.981864f, 0.981834f, 0.981804f,
-0.981773f, 0.981743f, 0.981713f, 0.981683f, 0.981652f, 0.981622f, 0.981592f, 0.981562f, 0.981531f, 0.981501f, 0.981471f, 0.981441f, 0.98141f, 0.98138f, 0.98135f, 0.98132f, 0.98129f, 0.981259f, 0.981229f, 0.981199f,
-0.981169f, 0.981138f, 0.981108f, 0.981078f, 0.981048f, 0.981017f, 0.980987f, 0.980957f, 0.980927f, 0.980897f, 0.980866f, 0.980836f, 0.980806f, 0.980776f, 0.980745f, 0.980715f, 0.980685f, 0.980655f, 0.980625f, 0.980594f,
-0.980564f, 0.980534f, 0.980504f, 0.980473f, 0.980443f, 0.980413f, 0.980383f, 0.980353f, 0.980322f, 0.980292f, 0.980262f, 0.980232f, 0.980202f, 0.980171f, 0.980141f, 0.980111f, 0.980081f, 0.98005f, 0.98002f, 0.97999f,
-0.97996f, 0.97993f, 0.979899f, 0.979869f, 0.979839f, 0.979809f, 0.979779f, 0.979748f, 0.979718f, 0.979688f, 0.979658f, 0.979628f, 0.979597f, 0.979567f, 0.979537f, 0.979507f, 0.979477f, 0.979446f, 0.979416f, 0.979386f,
-0.979356f, 0.979326f, 0.979295f, 0.979265f, 0.979235f, 0.979205f, 0.979175f, 0.979144f, 0.979114f, 0.979084f, 0.979054f, 0.979024f, 0.978993f, 0.978963f, 0.978933f, 0.978903f, 0.978873f, 0.978842f, 0.978812f, 0.978782f,
-0.978752f, 0.978722f, 0.978691f, 0.978661f, 0.978631f, 0.978601f, 0.978571f, 0.97854f, 0.97851f, 0.97848f, 0.97845f, 0.97842f, 0.97839f, 0.978359f, 0.978329f, 0.978299f, 0.978269f, 0.978239f, 0.978208f, 0.978178f,
-0.978148f, 0.978118f, 0.978088f, 0.978057f, 0.978027f, 0.977997f, 0.977967f, 0.977937f, 0.977907f, 0.977876f, 0.977846f, 0.977816f, 0.977786f, 0.977756f, 0.977726f, 0.977695f, 0.977665f, 0.977635f, 0.977605f, 0.977575f,
-0.977544f, 0.977514f, 0.977484f, 0.977454f, 0.977424f, 0.977394f, 0.977363f, 0.977333f, 0.977303f, 0.977273f, 0.977243f, 0.977213f, 0.977182f, 0.977152f, 0.977122f, 0.977092f, 0.977062f, 0.977032f, 0.977001f, 0.976971f,
-0.976941f, 0.976911f, 0.976881f, 0.976851f, 0.97682f, 0.97679f, 0.97676f, 0.97673f, 0.9767f, 0.97667f, 0.97664f, 0.976609f, 0.976579f, 0.976549f, 0.976519f, 0.976489f, 0.976459f, 0.976428f, 0.976398f, 0.976368f,
-0.976338f, 0.976308f, 0.976278f, 0.976247f, 0.976217f, 0.976187f, 0.976157f, 0.976127f, 0.976097f, 0.976067f, 0.976036f, 0.976006f, 0.975976f, 0.975946f, 0.975916f, 0.975886f, 0.975856f, 0.975825f, 0.975795f, 0.975765f,
-0.975735f, 0.975705f, 0.975675f, 0.975645f, 0.975614f, 0.975584f, 0.975554f, 0.975524f, 0.975494f, 0.975464f, 0.975434f, 0.975403f, 0.975373f, 0.975343f, 0.975313f, 0.975283f, 0.975253f, 0.975223f, 0.975192f, 0.975162f,
-0.975132f, 0.975102f, 0.975072f, 0.975042f, 0.975012f, 0.974981f, 0.974951f, 0.974921f, 0.974891f, 0.974861f, 0.974831f, 0.974801f, 0.974771f, 0.97474f, 0.97471f, 0.97468f, 0.97465f, 0.97462f, 0.97459f, 0.97456f,
-0.97453f, 0.974499f, 0.974469f, 0.974439f, 0.974409f, 0.974379f, 0.974349f, 0.974319f, 0.974289f, 0.974258f, 0.974228f, 0.974198f, 0.974168f, 0.974138f, 0.974108f, 0.974078f, 0.974048f, 0.974017f, 0.973987f, 0.973957f,
-0.973927f, 0.973897f, 0.973867f, 0.973837f, 0.973807f, 0.973777f, 0.973746f, 0.973716f, 0.973686f, 0.973656f, 0.973626f, 0.973596f, 0.973566f, 0.973536f, 0.973505f, 0.973475f, 0.973445f, 0.973415f, 0.973385f, 0.973355f,
-0.973325f, 0.973295f, 0.973265f, 0.973235f, 0.973204f, 0.973174f, 0.973144f, 0.973114f, 0.973084f, 0.973054f, 0.973024f, 0.972994f, 0.972964f, 0.972933f, 0.972903f, 0.972873f, 0.972843f, 0.972813f, 0.972783f, 0.972753f,
-0.972723f, 0.972693f, 0.972663f, 0.972632f, 0.972602f, 0.972572f, 0.972542f, 0.972512f, 0.972482f, 0.972452f, 0.972422f, 0.972392f, 0.972362f, 0.972332f, 0.972301f, 0.972271f, 0.972241f, 0.972211f, 0.972181f, 0.972151f,
-0.972121f, 0.972091f, 0.972061f, 0.972031f, 0.972001f, 0.97197f, 0.97194f, 0.97191f, 0.97188f, 0.97185f, 0.97182f, 0.97179f, 0.97176f, 0.97173f, 0.9717f, 0.97167f, 0.97164f, 0.971609f, 0.971579f, 0.971549f,
-0.971519f, 0.971489f, 0.971459f, 0.971429f, 0.971399f, 0.971369f, 0.971339f, 0.971309f, 0.971279f, 0.971249f, 0.971218f, 0.971188f, 0.971158f, 0.971128f, 0.971098f, 0.971068f, 0.971038f, 0.971008f, 0.970978f, 0.970948f,
-0.970918f, 0.970888f, 0.970858f, 0.970827f, 0.970797f, 0.970767f, 0.970737f, 0.970707f, 0.970677f, 0.970647f, 0.970617f, 0.970587f, 0.970557f, 0.970527f, 0.970497f, 0.970467f, 0.970437f, 0.970407f, 0.970377f, 0.970346f,
-0.970316f, 0.970286f, 0.970256f, 0.970226f, 0.970196f, 0.970166f, 0.970136f, 0.970106f, 0.970076f, 0.970046f, 0.970016f, 0.969986f, 0.969956f, 0.969926f, 0.969896f, 0.969866f, 0.969835f, 0.969805f, 0.969775f, 0.969745f,
-0.969715f, 0.969685f, 0.969655f, 0.969625f, 0.969595f, 0.969565f, 0.969535f, 0.969505f, 0.969475f, 0.969445f, 0.969415f, 0.969385f, 0.969355f, 0.969325f, 0.969295f, 0.969265f, 0.969234f, 0.969204f, 0.969174f, 0.969144f,
-0.969114f, 0.969084f, 0.969054f, 0.969024f, 0.968994f, 0.968964f, 0.968934f, 0.968904f, 0.968874f, 0.968844f, 0.968814f, 0.968784f, 0.968754f, 0.968724f, 0.968694f, 0.968664f, 0.968634f, 0.968604f, 0.968574f, 0.968544f,
-0.968514f, 0.968484f, 0.968453f, 0.968423f, 0.968393f, 0.968363f, 0.968333f, 0.968303f, 0.968273f, 0.968243f, 0.968213f, 0.968183f, 0.968153f, 0.968123f, 0.968093f, 0.968063f, 0.968033f, 0.968003f, 0.967973f, 0.967943f,
-0.967913f, 0.967883f, 0.967853f, 0.967823f, 0.967793f, 0.967763f, 0.967733f, 0.967703f, 0.967673f, 0.967643f, 0.967613f, 0.967583f, 0.967553f, 0.967523f, 0.967493f, 0.967463f, 0.967433f, 0.967403f, 0.967373f, 0.967343f,
-0.967313f, 0.967283f, 0.967253f, 0.967223f, 0.967193f, 0.967163f, 0.967133f, 0.967102f, 0.967072f, 0.967042f, 0.967012f, 0.966982f, 0.966952f, 0.966922f, 0.966892f, 0.966862f, 0.966832f, 0.966802f, 0.966772f, 0.966742f,
-0.966712f, 0.966682f, 0.966652f, 0.966622f, 0.966592f, 0.966562f, 0.966532f, 0.966502f, 0.966472f, 0.966442f, 0.966412f, 0.966382f, 0.966352f, 0.966322f, 0.966292f, 0.966262f, 0.966232f, 0.966202f, 0.966172f, 0.966142f,
-0.966112f, 0.966082f, 0.966052f, 0.966022f, 0.965992f, 0.965962f, 0.965932f, 0.965902f, 0.965872f, 0.965842f, 0.965812f, 0.965782f, 0.965752f, 0.965722f, 0.965692f, 0.965662f, 0.965632f, 0.965603f, 0.965573f, 0.965543f,
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-3e-05f, 2.9e-05f, 2.9e-05f, 2.9e-05f, 2.9e-05f, 2.9e-05f, 2.9e-05f, 2.8e-05f, 2.8e-05f, 2.8e-05f, 2.8e-05f, 2.8e-05f, 2.8e-05f, 2.7e-05f, 2.7e-05f, 2.7e-05f, 2.7e-05f, 2.7e-05f, 2.7e-05f, 2.6e-05f,
-2.6e-05f, 2.6e-05f, 2.6e-05f, 2.6e-05f, 2.6e-05f, 2.6e-05f, 2.5e-05f, 2.5e-05f, 2.5e-05f, 2.5e-05f, 2.5e-05f, 2.5e-05f, 2.4e-05f, 2.4e-05f, 2.4e-05f, 2.4e-05f, 2.4e-05f, 2.4e-05f, 2.4e-05f, 2.3e-05f,
-2.3e-05f, 2.3e-05f, 2.3e-05f, 2.3e-05f, 2.3e-05f, 2.3e-05f, 2.2e-05f, 2.2e-05f, 2.2e-05f, 2.2e-05f, 2.2e-05f, 2.2e-05f, 2.2e-05f, 2.1e-05f, 2.1e-05f, 2.1e-05f, 2.1e-05f, 2.1e-05f, 2.1e-05f, 2.1e-05f,
-2e-05f, 2e-05f, 2e-05f, 2e-05f, 2e-05f, 2e-05f, 2e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.9e-05f, 1.8e-05f, 1.8e-05f, 1.8e-05f, 1.8e-05f, 1.8e-05f,
-1.8e-05f, 1.8e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.7e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.6e-05f, 1.5e-05f, 1.5e-05f,
-1.5e-05f, 1.5e-05f, 1.5e-05f, 1.5e-05f, 1.5e-05f, 1.5e-05f, 1.5e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.4e-05f, 1.3e-05f, 1.3e-05f, 1.3e-05f, 1.3e-05f,
-1.3e-05f, 1.3e-05f, 1.3e-05f, 1.3e-05f, 1.3e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.2e-05f, 1.1e-05f, 1.1e-05f, 1.1e-05f, 1.1e-05f, 1.1e-05f, 1.1e-05f,
-1.1e-05f, 1.1e-05f, 1.1e-05f, 1.1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 1e-05f, 9e-06f, 9e-06f, 9e-06f, 9e-06f, 9e-06f,
-9e-06f, 9e-06f, 9e-06f, 9e-06f, 9e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 8e-06f, 7e-06f, 7e-06f, 7e-06f,
-7e-06f, 7e-06f, 7e-06f, 7e-06f, 7e-06f, 7e-06f, 7e-06f, 7e-06f, 7e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f, 6e-06f,
-6e-06f, 6e-06f, 6e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 5e-06f, 4e-06f, 4e-06f, 4e-06f,
-4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 4e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f,
-3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 3e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f,
-2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 2e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f,
-1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f,
-1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 1e-06f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f,
-0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f,
-0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 0.0f, 
-};
-
-const float __leaf_table_attack_decay_inc[ATTACK_DECAY_INC_TABLE_SIZE] = {
-	18000.0f, 10922.666667f, 5461.333333f, 3640.888889f, 2730.666667f, 2184.533333f, 1820.444444f, 1560.380952f, 1365.333333f, 1213.62963f, 1092.266667f, 992.969697f, 910.222222f, 840.205128f, 780.190476f, 728.177778f, 682.666667f, 642.509804f, 606.814815f, 574.877193f,
-546.133333f, 520.126984f, 496.484848f, 474.898551f, 455.111111f, 436.906667f, 420.102564f, 404.54321f, 390.095238f, 376.643678f, 364.088889f, 352.344086f, 341.333333f, 330.989899f, 321.254902f, 312.07619f, 303.407407f, 295.207207f, 287.438596f, 280.068376f,
-273.066667f, 266.406504f, 260.063492f, 254.015504f, 248.242424f, 242.725926f, 237.449275f, 232.397163f, 227.555556f, 222.911565f, 218.453333f, 214.169935f, 210.051282f, 206.08805f, 202.271605f, 198.593939f, 195.047619f, 191.625731f, 188.321839f, 185.129944f,
-182.044444f, 179.060109f, 176.172043f, 173.375661f, 170.666667f, 168.041026f, 165.494949f, 163.024876f, 160.627451f, 158.299517f, 156.038095f, 153.840376f, 151.703704f, 149.625571f, 147.603604f, 145.635556f, 143.719298f, 141.852814f, 140.034188f, 138.261603f,
-136.533333f, 134.847737f, 133.203252f, 131.598394f, 130.031746f, 128.501961f, 127.007752f, 125.547893f, 124.121212f, 122.726592f, 121.362963f, 120.029304f, 118.724638f, 117.448029f, 116.198582f, 114.975439f, 113.777778f, 112.604811f, 111.455782f, 110.329966f,
-109.226667f, 108.145215f, 107.084967f, 106.045307f, 105.025641f, 104.025397f, 103.044025f, 102.080997f, 101.135802f, 100.207951f, 99.29697f, 98.402402f, 97.52381f, 96.660767f, 95.812865f, 94.97971f, 94.16092f, 93.356125f, 92.564972f, 91.787115f,
-91.022222f, 90.269972f, 89.530055f, 88.802168f, 88.086022f, 87.381333f, 86.687831f, 86.005249f, 85.333333f, 84.671835f, 84.020513f, 83.379135f, 82.747475f, 82.125313f, 81.512438f, 80.908642f, 80.313725f, 79.727494f, 79.149758f, 78.580336f,
-78.019048f, 77.465721f, 76.920188f, 76.382284f, 75.851852f, 75.328736f, 74.812785f, 74.303855f, 73.801802f, 73.306488f, 72.817778f, 72.335541f, 71.859649f, 71.389978f, 70.926407f, 70.468817f, 70.017094f, 69.571125f, 69.130802f, 68.696017f,
-68.266667f, 67.84265f, 67.423868f, 67.010225f, 66.601626f, 66.19798f, 65.799197f, 65.40519f, 65.015873f, 64.631164f, 64.25098f, 63.875244f, 63.503876f, 63.136802f, 62.773946f, 62.415238f, 62.060606f, 61.709981f, 61.363296f, 61.020484f,
-60.681481f, 60.346225f, 60.014652f, 59.686703f, 59.362319f, 59.041441f, 58.724014f, 58.409982f, 58.099291f, 57.791887f, 57.487719f, 57.186736f, 56.888889f, 56.594128f, 56.302405f, 56.013675f, 55.727891f, 55.445008f, 55.164983f, 54.887772f,
-54.613333f, 54.341625f, 54.072607f, 53.80624f, 53.542484f, 53.281301f, 53.022654f, 52.766506f, 52.512821f, 52.261563f, 52.012698f, 51.766193f, 51.522013f, 51.280125f, 51.040498f, 50.803101f, 50.567901f, 50.334869f, 50.103976f, 49.87519f,
-49.648485f, 49.423831f, 49.201201f, 48.980568f, 48.761905f, 48.545185f, 48.330383f, 48.117474f, 47.906433f, 47.697234f, 47.489855f, 47.284271f, 47.08046f, 46.878398f, 46.678063f, 46.479433f, 46.282486f, 46.087201f, 45.893557f, 45.701534f,
-45.511111f, 45.322268f, 45.134986f, 44.949246f, 44.765027f, 44.582313f, 44.401084f, 44.221323f, 44.043011f, 43.866131f, 43.690667f, 43.5166f, 43.343915f, 43.172596f, 43.002625f, 42.833987f, 42.666667f, 42.500649f, 42.335917f, 42.172458f,
-42.010256f, 41.849298f, 41.689567f, 41.531052f, 41.373737f, 41.21761f, 41.062657f, 40.908864f, 40.756219f, 40.604709f, 40.454321f, 40.305043f, 40.156863f, 40.009768f, 39.863747f, 39.718788f, 39.574879f, 39.43201f, 39.290168f, 39.149343f,
-39.009524f, 38.8707f, 38.732861f, 38.595995f, 38.460094f, 38.325146f, 38.191142f, 38.058072f, 37.925926f, 37.794694f, 37.664368f, 37.534937f, 37.406393f, 37.278726f, 37.151927f, 37.025989f, 36.900901f, 36.776655f, 36.653244f, 36.530658f,
-36.408889f, 36.287929f, 36.16777f, 36.048405f, 35.929825f, 35.812022f, 35.694989f, 35.578719f, 35.463203f, 35.348436f, 35.234409f, 35.121115f, 35.008547f, 34.896699f, 34.785563f, 34.675132f, 34.565401f, 34.456362f, 34.348008f, 34.240334f,
-34.133333f, 34.026999f, 33.921325f, 33.816305f, 33.711934f, 33.608205f, 33.505112f, 33.40265f, 33.300813f, 33.199595f, 33.09899f, 32.998993f, 32.899598f, 32.800801f, 32.702595f, 32.604975f, 32.507937f, 32.411474f, 32.315582f, 32.220256f,
-32.12549f, 32.031281f, 31.937622f, 31.844509f, 31.751938f, 31.659903f, 31.568401f, 31.477426f, 31.386973f, 31.297039f, 31.207619f, 31.118708f, 31.030303f, 30.942398f, 30.854991f, 30.768075f, 30.681648f, 30.595705f, 30.510242f, 30.425255f,
-30.340741f, 30.256694f, 30.173112f, 30.089991f, 30.007326f, 29.925114f, 29.843352f, 29.762035f, 29.681159f, 29.600723f, 29.520721f, 29.44115f, 29.362007f, 29.283289f, 29.204991f, 29.127111f, 29.049645f, 28.972591f, 28.895944f, 28.819701f,
-28.74386f, 28.668416f, 28.593368f, 28.518712f, 28.444444f, 28.370563f, 28.297064f, 28.223945f, 28.151203f, 28.078835f, 28.006838f, 27.935209f, 27.863946f, 27.793045f, 27.722504f, 27.652321f, 27.582492f, 27.513014f, 27.443886f, 27.375104f,
-27.306667f, 27.23857f, 27.170813f, 27.103391f, 27.036304f, 26.969547f, 26.90312f, 26.837019f, 26.771242f, 26.705786f, 26.64065f, 26.575831f, 26.511327f, 26.447135f, 26.383253f, 26.319679f, 26.25641f, 26.193445f, 26.130781f, 26.068417f,
-26.006349f, 25.944576f, 25.883096f, 25.821907f, 25.761006f, 25.700392f, 25.640063f, 25.580016f, 25.520249f, 25.460761f, 25.40155f, 25.342614f, 25.283951f, 25.225558f, 25.167435f, 25.109579f, 25.051988f, 24.994661f, 24.937595f, 24.88079f,
-24.824242f, 24.767952f, 24.711916f, 24.656132f, 24.600601f, 24.545318f, 24.490284f, 24.435496f, 24.380952f, 24.326652f, 24.272593f, 24.218773f, 24.165192f, 24.111847f, 24.058737f, 24.005861f, 23.953216f, 23.900802f, 23.848617f, 23.796659f,
-23.744928f, 23.69342f, 23.642136f, 23.591073f, 23.54023f, 23.489606f, 23.439199f, 23.389008f, 23.339031f, 23.289268f, 23.239716f, 23.190375f, 23.141243f, 23.092319f, 23.043601f, 22.995088f, 22.946779f, 22.898672f, 22.850767f, 22.803062f,
-22.755556f, 22.708247f, 22.661134f, 22.614217f, 22.567493f, 22.520962f, 22.474623f, 22.428474f, 22.382514f, 22.336742f, 22.291156f, 22.245757f, 22.200542f, 22.15551f, 22.110661f, 22.065993f, 22.021505f, 21.977197f, 21.933066f, 21.889112f,
-21.845333f, 21.80173f, 21.7583f, 21.715043f, 21.671958f, 21.629043f, 21.586298f, 21.543721f, 21.501312f, 21.45907f, 21.416993f, 21.375082f, 21.333333f, 21.291748f, 21.250324f, 21.209061f, 21.167959f, 21.127015f, 21.086229f, 21.045601f,
-21.005128f, 20.964811f, 20.924649f, 20.88464f, 20.844784f, 20.805079f, 20.765526f, 20.726123f, 20.686869f, 20.647763f, 20.608805f, 20.569994f, 20.531328f, 20.492808f, 20.454432f, 20.416199f, 20.378109f, 20.340161f, 20.302354f, 20.264688f,
-20.22716f, 20.189772f, 20.152522f, 20.115408f, 20.078431f, 20.04159f, 20.004884f, 19.968312f, 19.931873f, 19.895568f, 19.859394f, 19.823351f, 19.78744f, 19.751658f, 19.716005f, 19.68048f, 19.645084f, 19.609814f, 19.574671f, 19.539654f,
-19.504762f, 19.469994f, 19.43535f, 19.400829f, 19.36643f, 19.332153f, 19.297998f, 19.263962f, 19.230047f, 19.196251f, 19.162573f, 19.129013f, 19.095571f, 19.062245f, 19.029036f, 18.995942f, 18.962963f, 18.930098f, 18.897347f, 18.864709f,
-18.832184f, 18.799771f, 18.767468f, 18.735277f, 18.703196f, 18.671225f, 18.639363f, 18.607609f, 18.575964f, 18.544426f, 18.512994f, 18.481669f, 18.45045f, 18.419337f, 18.388328f, 18.357423f, 18.326622f, 18.295924f, 18.265329f, 18.234836f,
-18.204444f, 18.174154f, 18.143965f, 18.113875f, 18.083885f, 18.053994f, 18.024202f, 17.994509f, 17.964912f, 17.935413f, 17.906011f, 17.876705f, 17.847495f, 17.81838f, 17.789359f, 17.760434f, 17.731602f, 17.702863f, 17.674218f, 17.645665f,
-17.617204f, 17.588835f, 17.560557f, 17.53237f, 17.504274f, 17.476267f, 17.448349f, 17.420521f, 17.392781f, 17.36513f, 17.337566f, 17.31009f, 17.2827f, 17.255398f, 17.228181f, 17.20105f, 17.174004f, 17.147043f, 17.120167f, 17.093375f,
-17.066667f, 17.040042f, 17.013499f, 16.98704f, 16.960663f, 16.934367f, 16.908153f, 16.88202f, 16.855967f, 16.829995f, 16.804103f, 16.77829f, 16.752556f, 16.726901f, 16.701325f, 16.675827f, 16.650407f, 16.625063f, 16.599797f, 16.574608f,
-16.549495f, 16.524458f, 16.499496f, 16.47461f, 16.449799f, 16.425063f, 16.4004f, 16.375812f, 16.351297f, 16.326856f, 16.302488f, 16.278192f, 16.253968f, 16.229817f, 16.205737f, 16.181728f, 16.157791f, 16.133924f, 16.110128f, 16.086402f,
-16.062745f, 16.039158f, 16.01564f, 15.992191f, 15.968811f, 15.945499f, 15.922255f, 15.899078f, 15.875969f, 15.852927f, 15.829952f, 15.807043f, 15.7842f, 15.761424f, 15.738713f, 15.716067f, 15.693487f, 15.670971f, 15.64852f, 15.626133f,
-15.60381f, 15.58155f, 15.559354f, 15.537221f, 15.515152f, 15.493144f, 15.471199f, 15.449316f, 15.427495f, 15.405736f, 15.384038f, 15.3624f, 15.340824f, 15.319308f, 15.297852f, 15.276457f, 15.255121f, 15.233845f, 15.212628f, 15.19147f,
-15.17037f, 15.14933f, 15.128347f, 15.107423f, 15.086556f, 15.065747f, 15.044995f, 15.024301f, 15.003663f, 14.983082f, 14.962557f, 14.942088f, 14.921676f, 14.901319f, 14.881017f, 14.860771f, 14.84058f, 14.820443f, 14.800361f, 14.780334f,
-14.76036f, 14.740441f, 14.720575f, 14.700763f, 14.681004f, 14.661298f, 14.641644f, 14.622044f, 14.602496f, 14.583f, 14.563556f, 14.544163f, 14.524823f, 14.505533f, 14.486295f, 14.467108f, 14.447972f, 14.428886f, 14.40985f, 14.390865f,
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-0.169344f, 0.169341f, 0.169338f, 0.169336f, 0.169333f, 0.169331f, 0.169328f, 0.169325f, 0.169323f, 0.16932f, 0.169317f, 0.169315f, 0.169312f, 0.16931f, 0.169307f, 0.169304f, 0.169302f, 0.169299f, 0.169296f, 0.169294f,
-0.169291f, 0.169289f, 0.169286f, 0.169283f, 0.169281f, 0.169278f, 0.169275f, 0.169273f, 0.16927f, 0.169268f, 0.169265f, 0.169262f, 0.16926f, 0.169257f, 0.169254f, 0.169252f, 0.169249f, 0.169247f, 0.169244f, 0.169241f,
-0.169239f, 0.169236f, 0.169233f, 0.169231f, 0.169228f, 0.169226f, 0.169223f, 0.16922f, 0.169218f, 0.169215f, 0.169212f, 0.16921f, 0.169207f, 0.169205f, 0.169202f, 0.169199f, 0.169197f, 0.169194f, 0.169192f, 0.169189f,
-0.169186f, 0.169184f, 0.169181f, 0.169178f, 0.169176f, 0.169173f, 0.169171f, 0.169168f, 0.169165f, 0.169163f, 0.16916f, 0.169157f, 0.169155f, 0.169152f, 0.16915f, 0.169147f, 0.169144f, 0.169142f, 0.169139f, 0.169137f,
-0.169134f, 0.169131f, 0.169129f, 0.169126f, 0.169123f, 0.169121f, 0.169118f, 0.169116f, 0.169113f, 0.16911f, 0.169108f, 0.169105f, 0.169102f, 0.1691f, 0.169097f, 0.169095f, 0.169092f, 0.169089f, 0.169087f, 0.169084f,
-0.169082f, 0.169079f, 0.169076f, 0.169074f, 0.169071f, 0.169068f, 0.169066f, 0.169063f, 0.169061f, 0.169058f, 0.169055f, 0.169053f, 0.16905f, 0.169048f, 0.169045f, 0.169042f, 0.16904f, 0.169037f, 0.169034f, 0.169032f,
-0.169029f, 0.169027f, 0.169024f, 0.169021f, 0.169019f, 0.169016f, 0.169014f, 0.169011f, 0.169008f, 0.169006f, 0.169003f, 0.169f, 0.168998f, 0.168995f, 0.168993f, 0.16899f, 0.168987f, 0.168985f, 0.168982f, 0.16898f,
-0.168977f, 0.168974f, 0.168972f, 0.168969f, 0.168966f, 0.168964f, 0.168961f, 0.168959f, 0.168956f, 0.168953f, 0.168951f, 0.168948f, 0.168946f, 0.168943f, 0.16894f, 0.168938f, 0.168935f, 0.168932f, 0.16893f, 0.168927f,
-0.168925f, 0.168922f, 0.168919f, 0.168917f, 0.168914f, 0.168912f, 0.168909f, 0.168906f, 0.168904f, 0.168901f, 0.168899f, 0.168896f, 0.168893f, 0.168891f, 0.168888f, 0.168885f, 0.168883f, 0.16888f, 0.168878f, 0.168875f,
-0.168872f, 0.16887f, 0.168867f, 0.168865f, 0.168862f, 0.168859f, 0.168857f, 0.168854f, 0.168852f, 0.168849f, 0.168846f, 0.168844f, 0.168841f, 0.168838f, 0.168836f, 0.168833f, 0.168831f, 0.168828f, 0.168825f, 0.168823f,
-0.16882f, 0.168818f, 0.168815f, 0.168812f, 0.16881f, 0.168807f, 0.168805f, 0.168802f, 0.168799f, 0.168797f, 0.168794f, 0.168791f, 0.168789f, 0.168786f, 0.168784f, 0.168781f, 0.168778f, 0.168776f, 0.168773f, 0.168771f,
-0.168768f, 0.168765f, 0.168763f, 0.16876f, 0.168758f, 0.168755f, 0.168752f, 0.16875f, 0.168747f, 0.168745f, 0.168742f, 0.168739f, 0.168737f, 0.168734f, 0.168732f, 0.168729f, 0.168726f, 0.168724f, 0.168721f, 0.168718f,
-0.168716f, 0.168713f, 0.168711f, 0.168708f, 0.168705f, 0.168703f, 0.1687f, 0.168698f, 0.168695f, 0.168692f, 0.16869f, 0.168687f, 0.168685f, 0.168682f, 0.168679f, 0.168677f, 0.168674f, 0.168672f, 0.168669f, 0.168666f,
-0.168664f, 0.168661f, 0.168659f, 0.168656f, 0.168653f, 0.168651f, 0.168648f, 0.168646f, 0.168643f, 0.16864f, 0.168638f, 0.168635f, 0.168633f, 0.16863f, 0.168627f, 0.168625f, 0.168622f, 0.16862f, 0.168617f, 0.168614f,
-0.168612f, 0.168609f, 0.168607f, 0.168604f, 0.168601f, 0.168599f, 0.168596f, 0.168593f, 0.168591f, 0.168588f, 0.168586f, 0.168583f, 0.16858f, 0.168578f, 0.168575f, 0.168573f, 0.16857f, 0.168567f, 0.168565f, 0.168562f,
-0.16856f, 0.168557f, 0.168554f, 0.168552f, 0.168549f, 0.168547f, 0.168544f, 0.168541f, 0.168539f, 0.168536f, 0.168534f, 0.168531f, 0.168528f, 0.168526f, 0.168523f, 0.168521f, 0.168518f, 0.168515f, 0.168513f, 0.16851f,
-0.168508f, 0.168505f, 0.168502f, 0.1685f, 0.168497f, 0.168495f, 0.168492f, 0.168489f, 0.168487f, 0.168484f, 0.168482f, 0.168479f, 0.168476f, 0.168474f, 0.168471f, 0.168469f, 0.168466f, 0.168463f, 0.168461f, 0.168458f,
-0.168456f, 0.168453f, 0.16845f, 0.168448f, 0.168445f, 0.168443f, 0.16844f, 0.168438f, 0.168435f, 0.168432f, 0.16843f, 0.168427f, 0.168425f, 0.168422f, 0.168419f, 0.168417f, 0.168414f, 0.168412f, 0.168409f, 0.168406f,
-0.168404f, 0.168401f, 0.168399f, 0.168396f, 0.168393f, 0.168391f, 0.168388f, 0.168386f, 0.168383f, 0.16838f, 0.168378f, 0.168375f, 0.168373f, 0.16837f, 0.168367f, 0.168365f, 0.168362f, 0.16836f, 0.168357f, 0.168354f,
-0.168352f, 0.168349f, 0.168347f, 0.168344f, 0.168341f, 0.168339f, 0.168336f, 0.168334f, 0.168331f, 0.168328f, 0.168326f, 0.168323f, 0.168321f, 0.168318f, 0.168316f, 0.168313f, 0.16831f, 0.168308f, 0.168305f, 0.168303f,
-0.1683f, 0.168297f, 0.168295f, 0.168292f, 0.16829f, 0.168287f, 0.168284f, 0.168282f, 0.168279f, 0.168277f, 0.168274f, 0.168271f, 0.168269f, 0.168266f, 0.168264f, 0.168261f, 0.168258f, 0.168256f, 0.168253f, 0.168251f,
-0.168248f, 0.168246f, 0.168243f, 0.16824f, 0.168238f, 0.168235f, 0.168233f, 0.16823f, 0.168227f, 0.168225f, 0.168222f, 0.16822f, 0.168217f, 0.168214f, 0.168212f, 0.168209f, 0.168207f, 0.168204f, 0.168201f, 0.168199f,
-0.168196f, 0.168194f, 0.168191f, 0.168189f, 0.168186f, 0.168183f, 0.168181f, 0.168178f, 0.168176f, 0.168173f, 0.16817f, 0.168168f, 0.168165f, 0.168163f, 0.16816f, 0.168157f, 0.168155f, 0.168152f, 0.16815f, 0.168147f,
-0.168144f, 0.168142f, 0.168139f, 0.168137f, 0.168134f, 0.168132f, 0.168129f, 0.168126f, 0.168124f, 0.168121f, 0.168119f, 0.168116f, 0.168113f, 0.168111f, 0.168108f, 0.168106f, 0.168103f, 0.168101f, 0.168098f, 0.168095f,
-0.168093f, 0.16809f, 0.168088f, 0.168085f, 0.168082f, 0.16808f, 0.168077f, 0.168075f, 0.168072f, 0.168069f, 0.168067f, 0.168064f, 0.168062f, 0.168059f, 0.168057f, 0.168054f, 0.168051f, 0.168049f, 0.168046f, 0.168044f,
-0.168041f, 0.168038f, 0.168036f, 0.168033f, 0.168031f, 0.168028f, 0.168026f, 0.168023f, 0.16802f, 0.168018f, 0.168015f, 0.168013f, 0.16801f, 0.168007f, 0.168005f, 0.168002f, 0.168f, 0.167997f, 0.167995f, 0.167992f,
-0.167989f, 0.167987f, 0.167984f, 0.167982f, 0.167979f, 0.167976f, 0.167974f, 0.167971f, 0.167969f, 0.167966f, 0.167964f, 0.167961f, 0.167958f, 0.167956f, 0.167953f, 0.167951f, 0.167948f, 0.167945f, 0.167943f, 0.16794f,
-0.167938f, 0.167935f, 0.167933f, 0.16793f, 0.167927f, 0.167925f, 0.167922f, 0.16792f, 0.167917f, 0.167914f, 0.167912f, 0.167909f, 0.167907f, 0.167904f, 0.167902f, 0.167899f, 0.167896f, 0.167894f, 0.167891f, 0.167889f,
-0.167886f, 0.167883f, 0.167881f, 0.167878f, 0.167876f, 0.167873f, 0.167871f, 0.167868f, 0.167865f, 0.167863f, 0.16786f, 0.167858f, 0.167855f, 0.167853f, 0.16785f, 0.167847f, 0.167845f, 0.167842f, 0.16784f, 0.167837f,
-0.167834f, 0.167832f, 0.167829f, 0.167827f, 0.167824f, 0.167822f, 0.167819f, 0.167816f, 0.167814f, 0.167811f, 0.167809f, 0.167806f, 0.167804f, 0.167801f, 0.167798f, 0.167796f, 0.167793f, 0.167791f, 0.167788f, 0.167785f,
-0.167783f, 0.16778f, 0.167778f, 0.167775f, 0.167773f, 0.16777f, 0.167767f, 0.167765f, 0.167762f, 0.16776f, 0.167757f, 0.167755f, 0.167752f, 0.167749f, 0.167747f, 0.167744f, 0.167742f, 0.167739f, 0.167737f, 0.167734f,
-0.167731f, 0.167729f, 0.167726f, 0.167724f, 0.167721f, 0.167718f, 0.167716f, 0.167713f, 0.167711f, 0.167708f, 0.167706f, 0.167703f, 0.1677f, 0.167698f, 0.167695f, 0.167693f, 0.16769f, 0.167688f, 0.167685f, 0.167682f,
-0.16768f, 0.167677f, 0.167675f, 0.167672f, 0.16767f, 0.167667f, 0.167664f, 0.167662f, 0.167659f, 0.167657f, 0.167654f, 0.167652f, 0.167649f, 0.167646f, 0.167644f, 0.167641f, 0.167639f, 0.167636f, 0.167634f, 0.167631f,
-0.167628f, 0.167626f, 0.167623f, 0.167621f, 0.167618f, 0.167616f, 0.167613f, 0.16761f, 0.167608f, 0.167605f, 0.167603f, 0.1676f, 0.167598f, 0.167595f, 0.167592f, 0.16759f, 0.167587f, 0.167585f, 0.167582f, 0.16758f,
-0.167577f, 0.167574f, 0.167572f, 0.167569f, 0.167567f, 0.167564f, 0.167562f, 0.167559f, 0.167556f, 0.167554f, 0.167551f, 0.167549f, 0.167546f, 0.167544f, 0.167541f, 0.167538f, 0.167536f, 0.167533f, 0.167531f, 0.167528f,
-0.167526f, 0.167523f, 0.16752f, 0.167518f, 0.167515f, 0.167513f, 0.16751f, 0.167508f, 0.167505f, 0.167502f, 0.1675f, 0.167497f, 0.167495f, 0.167492f, 0.16749f, 0.167487f, 0.167484f, 0.167482f, 0.167479f, 0.167477f,
-0.167474f, 0.167472f, 0.167469f, 0.167466f, 0.167464f, 0.167461f, 0.167459f, 0.167456f, 0.167454f, 0.167451f, 0.167449f, 0.167446f, 0.167443f, 0.167441f, 0.167438f, 0.167436f, 0.167433f, 0.167431f, 0.167428f, 0.167425f,
-0.167423f, 0.16742f, 0.167418f, 0.167415f, 0.167413f, 0.16741f, 0.167407f, 0.167405f, 0.167402f, 0.1674f, 0.167397f, 0.167395f, 0.167392f, 0.167389f, 0.167387f, 0.167384f, 0.167382f, 0.167379f, 0.167377f, 0.167374f,
-0.167372f, 0.167369f, 0.167366f, 0.167364f, 0.167361f, 0.167359f, 0.167356f, 0.167354f, 0.167351f, 0.167348f, 0.167346f, 0.167343f, 0.167341f, 0.167338f, 0.167336f, 0.167333f, 0.167331f, 0.167328f, 0.167325f, 0.167323f,
-0.16732f, 0.167318f, 0.167315f, 0.167313f, 0.16731f, 0.167307f, 0.167305f, 0.167302f, 0.1673f, 0.167297f, 0.167295f, 0.167292f, 0.16729f, 0.167287f, 0.167284f, 0.167282f, 0.167279f, 0.167277f, 0.167274f, 0.167272f,
-0.167269f, 0.167266f, 0.167264f, 0.167261f, 0.167259f, 0.167256f, 0.167254f, 0.167251f, 0.167249f, 0.167246f, 0.167243f, 0.167241f, 0.167238f, 0.167236f, 0.167233f, 0.167231f, 0.167228f, 0.167225f, 0.167223f, 0.16722f,
-0.167218f, 0.167215f, 0.167213f, 0.16721f, 0.167208f, 0.167205f, 0.167202f, 0.1672f, 0.167197f, 0.167195f, 0.167192f, 0.16719f, 0.167187f, 0.167185f, 0.167182f, 0.167179f, 0.167177f, 0.167174f, 0.167172f, 0.167169f,
-0.167167f, 0.167164f, 0.167161f, 0.167159f, 0.167156f, 0.167154f, 0.167151f, 0.167149f, 0.167146f, 0.167144f, 0.167141f, 0.167138f, 0.167136f, 0.167133f, 0.167131f, 0.167128f, 0.167126f, 0.167123f, 0.167121f, 0.167118f,
-0.167115f, 0.167113f, 0.16711f, 0.167108f, 0.167105f, 0.167103f, 0.1671f, 0.167098f, 0.167095f, 0.167092f, 0.16709f, 0.167087f, 0.167085f, 0.167082f, 0.16708f, 0.167077f, 0.167075f, 0.167072f, 0.167069f, 0.167067f,
-0.167064f, 0.167062f, 0.167059f, 0.167057f, 0.167054f, 0.167052f, 0.167049f, 0.167046f, 0.167044f, 0.167041f, 0.167039f, 0.167036f, 0.167034f, 0.167031f, 0.167029f, 0.167026f, 0.167023f, 0.167021f, 0.167018f, 0.167016f,
-0.167013f, 0.167011f, 0.167008f, 0.167006f, 0.167003f, 0.167f, 0.166998f, 0.166995f, 0.166993f, 0.16699f, 0.166988f, 0.166985f, 0.166983f, 0.16698f, 0.166978f, 0.166975f, 0.166972f, 0.16697f, 0.166967f, 0.166965f,
-0.166962f, 0.16696f, 0.166957f, 0.166955f, 0.166952f, 0.166949f, 0.166947f, 0.166944f, 0.166942f, 0.166939f, 0.166937f, 0.166934f, 0.166932f, 0.166929f, 0.166926f, 0.166924f, 0.166921f, 0.166919f, 0.166916f, 0.166914f,
-0.166911f, 0.166909f, 0.166906f, 0.166904f, 0.166901f, 0.166898f, 0.166896f, 0.166893f, 0.166891f, 0.166888f, 0.166886f, 0.166883f, 0.166881f, 0.166878f, 0.166875f, 0.166873f, 0.16687f, 0.166868f, 0.166865f, 0.166863f,
-0.16686f, 0.166858f, 0.166855f, 0.166853f, 0.16685f, 0.166847f, 0.166845f, 0.166842f, 0.16684f, 0.166837f, 0.166835f, 0.166832f, 0.16683f, 0.166827f, 0.166824f, 0.166822f, 0.166819f, 0.166817f, 0.166814f, 0.166812f,
-0.166809f, 0.166807f, 0.166804f, 0.166802f, 0.166799f, 0.166796f, 0.166794f, 0.166791f, 0.166789f, 0.166786f, 0.166784f, 0.166781f, 0.166779f, 0.166776f, 0.166774f, 0.166771f, 0.166768f, 0.166766f, 0.166763f, 0.166761f,
-0.166758f, 0.166756f, 0.166753f, 0.166751f, 0.166748f, 0.166746f, 0.166743f, 0.16674f, 0.166738f, 0.166735f, 0.166733f, 0.16673f, 0.166728f, 0.166725f, 0.166723f, 0.16672f, 0.166718f, 0.166715f, 0.166712f, 0.16671f,
-0.166707f, 0.166705f, 0.166702f, 0.1667f, 0.166697f, 0.166695f, 0.166692f, 0.16669f, 0.166687f, 0.166684f, 0.166682f, 0.166679f, 0.166677f, 0.166674f, 0.166672f, 0.166669f, 
-};
-#endif
-
-
-const float __leaf_table_filtertan[FILTERTAN_TABLE_SIZE] = { 
-	0.001349f, 0.001351f, 0.001354f, 0.001356f, 0.001358f, 0.00136f, 0.001362f, 0.001365f, 0.001367f, 0.001369f, 0.001371f, 0.001373f, 0.001376f, 0.001378f, 0.00138f, 0.001382f, 0.001384f, 0.001387f, 0.001389f, 0.001391f,
-0.001393f, 0.001396f, 0.001398f, 0.0014f, 0.001402f, 0.001405f, 0.001407f, 0.001409f, 0.001411f, 0.001414f, 0.001416f, 0.001418f, 0.00142f, 0.001423f, 0.001425f, 0.001427f, 0.00143f, 0.001432f, 0.001434f, 0.001437f,
-0.001439f, 0.001441f, 0.001444f, 0.001446f, 0.001448f, 0.00145f, 0.001453f, 0.001455f, 0.001458f, 0.00146f, 0.001462f, 0.001465f, 0.001467f, 0.001469f, 0.001472f, 0.001474f, 0.001476f, 0.001479f, 0.001481f, 0.001484f,
-0.001486f, 0.001488f, 0.001491f, 0.001493f, 0.001495f, 0.001498f, 0.0015f, 0.001503f, 0.001505f, 0.001508f, 0.00151f, 0.001512f, 0.001515f, 0.001517f, 0.00152f, 0.001522f, 0.001525f, 0.001527f, 0.00153f, 0.001532f,
-0.001534f, 0.001537f, 0.001539f, 0.001542f, 0.001544f, 0.001547f, 0.001549f, 0.001552f, 0.001554f, 0.001557f, 0.001559f, 0.001562f, 0.001564f, 0.001567f, 0.001569f, 0.001572f, 0.001574f, 0.001577f, 0.00158f, 0.001582f,
-0.001585f, 0.001587f, 0.00159f, 0.001592f, 0.001595f, 0.001597f, 0.0016f, 0.001603f, 0.001605f, 0.001608f, 0.00161f, 0.001613f, 0.001615f, 0.001618f, 0.001621f, 0.001623f, 0.001626f, 0.001628f, 0.001631f, 0.001634f,
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-0.666424f, 0.667791f, 0.669161f, 0.670536f, 0.671914f, 0.673297f, 0.674684f, 0.676074f, 0.677469f, 0.678867f, 0.68027f, 0.681677f, 0.683088f, 0.684503f, 0.685922f, 0.687345f, 0.688773f, 0.690205f, 0.691641f, 0.693081f,
-0.694525f, 0.695974f, 0.697427f, 0.698885f, 0.700347f, 0.701813f, 0.703283f, 0.704758f, 0.706238f, 0.707721f, 0.70921f, 0.710702f, 0.7122f, 0.713702f, 0.715208f, 0.716719f, 0.718235f, 0.719755f, 0.72128f, 0.722809f,
-0.724343f, 0.725882f, 0.727426f, 0.728974f, 0.730527f, 0.732085f, 0.733648f, 0.735216f, 0.736789f, 0.738366f, 0.739948f, 0.741536f, 0.743128f, 0.744725f, 0.746328f, 0.747935f, 0.749548f, 0.751165f, 0.752788f, 0.754416f,
-0.756049f, 0.757687f, 0.75933f, 0.760979f, 0.762633f, 0.764292f, 0.765957f, 0.767627f, 0.769302f, 0.770983f, 0.772669f, 0.774361f, 0.776058f, 0.777761f, 0.779469f, 0.781183f, 0.782903f, 0.784628f, 0.786359f, 0.788096f,
-0.789838f, 0.791586f, 0.79334f, 0.7951f, 0.796865f, 0.798637f, 0.800414f, 0.802197f, 0.803987f, 0.805782f, 0.807583f, 0.809391f, 0.811204f, 0.813024f, 0.81485f, 0.816682f, 0.818521f, 0.820365f, 0.822216f, 0.824074f,
-0.825938f, 0.827808f, 0.829684f, 0.831567f, 0.833457f, 0.835353f, 0.837256f, 0.839166f, 0.841082f, 0.843005f, 0.844934f, 0.846871f, 0.848814f, 0.850764f, 0.852721f, 0.854685f, 0.856656f, 0.858634f, 0.860619f, 0.862611f,
-0.86461f, 0.866617f, 0.868631f, 0.870652f, 0.87268f, 0.874716f, 0.876759f, 0.878809f, 0.880867f, 0.882933f, 0.885006f, 0.887087f, 0.889175f, 0.891271f, 0.893375f, 0.895487f, 0.897606f, 0.899734f, 0.901869f, 0.904012f,
-0.906164f, 0.908323f, 0.910491f, 0.912667f, 0.914851f, 0.917043f, 0.919244f, 0.921453f, 0.92367f, 0.925896f, 0.928131f, 0.930374f, 0.932625f, 0.934886f, 0.937155f, 0.939433f, 0.94172f, 0.944016f, 0.946321f, 0.948635f,
-0.950958f, 0.95329f, 0.955631f, 0.957982f, 0.960342f, 0.962711f, 0.96509f, 0.967478f, 0.969876f, 0.972283f, 0.9747f, 0.977127f, 0.979564f, 0.982011f, 0.984467f, 0.986934f, 0.989411f, 0.991897f, 0.994394f, 0.996902f,
-0.999419f, 1.001948f, 1.004486f, 1.007035f, 1.009595f, 1.012166f, 1.014747f, 1.017339f, 1.019942f, 1.022556f, 1.025181f, 1.027817f, 1.030465f, 1.033124f, 1.035794f, 1.038475f, 1.041169f, 1.043873f, 1.04659f, 1.049318f,
-1.052058f, 1.05481f, 1.057574f, 1.06035f, 1.063139f, 1.06594f, 1.068753f, 1.071578f, 1.074416f, 1.077267f, 1.08013f, 1.083007f, 1.085896f, 1.088798f, 1.091713f, 1.094642f, 1.097584f, 1.100539f, 1.103508f, 1.10649f,
-1.109486f, 1.112496f, 1.115519f, 1.118557f, 1.121609f, 1.124675f, 1.127755f, 1.13085f, 1.133959f, 1.137083f, 1.140222f, 1.143376f, 1.146544f, 1.149728f, 1.152927f, 1.156141f, 1.159371f, 1.162616f, 1.165877f, 1.169153f,
-1.172446f, 1.175755f, 1.17908f, 1.182421f, 1.185779f, 1.189153f, 1.192544f, 1.195952f, 1.199377f, 1.202819f, 1.206278f, 1.209754f, 1.213249f, 1.21676f, 1.22029f, 1.223838f, 1.227403f, 1.230987f, 1.23459f, 1.238211f,
-1.24185f, 1.245509f, 1.249186f, 1.252883f, 1.256599f, 1.260335f, 1.26409f, 1.267865f, 1.27166f, 1.275476f, 1.279312f, 1.283168f, 1.287045f, 1.290943f, 1.294862f, 1.298802f, 1.302763f, 1.306747f, 1.310752f, 1.314779f,
-1.318828f, 1.3229f, 1.326994f, 1.331111f, 1.335252f, 1.339415f, 1.343602f, 1.347812f, 1.352046f, 1.356305f, 1.360587f, 1.364894f, 1.369226f, 1.373583f, 1.377965f, 1.382373f, 1.386806f, 1.391265f, 1.39575f, 1.400261f,
-1.4048f, 1.409365f, 1.413957f, 1.418577f, 1.423224f, 1.427899f, 1.432603f, 1.437335f, 1.442095f, 1.446885f, 1.451704f, 1.456553f, 1.461431f, 1.46634f, 1.471279f, 1.476249f, 
-};
-
-
-#if INC_MISC_WT
-// mtof lookup table based on input range [0.0,1.0) in 4096 increments - midi frequency values scaled between m25 and m134 (as done in previous code)
-const float mtof1[MTOF1_TABLE_SIZE] = {34.66965f, 34.722983f, 34.776398f, 34.829895f, 34.883474f, 34.937136f, 34.99088f, 35.044707f, 35.098617f, 35.152609f, 35.206685f, 35.260844f, 35.315086f, 35.369412f, 35.423821f, 35.478314f, 35.532891f, 35.587551f, 35.642296f, 35.697125f,
-35.752038f, 35.807036f, 35.862119f, 35.917286f, 35.972538f, 36.027875f, 36.083297f, 36.138804f, 36.194397f, 36.250075f, 36.305839f, 36.361689f, 36.417625f, 36.473646f, 36.529754f, 36.585948f, 36.642229f, 36.698596f, 36.75505f, 36.811591f,
-36.868219f, 36.924934f, 36.981736f, 37.038625f, 37.095602f, 37.152667f, 37.209819f, 37.267059f, 37.324388f, 37.381804f, 37.439309f, 37.496903f, 37.554585f, 37.612355f, 37.670215f, 37.728163f, 37.786201f, 37.844328f, 37.902545f, 37.96085f,
-38.019246f, 38.077732f, 38.136307f, 38.194973f, 38.253728f, 38.312575f, 38.371511f, 38.430539f, 38.489657f, 38.548866f, 38.608166f, 38.667558f, 38.72704f, 38.786615f, 38.846281f, 38.906038f, 38.965888f, 39.02583f, 39.085864f, 39.14599f,
-39.206209f, 39.26652f, 39.326924f, 39.387421f, 39.448012f, 39.508695f, 39.569472f, 39.630342f, 39.691306f, 39.752363f, 39.813515f, 39.874761f, 39.9361f, 39.997535f, 40.059063f, 40.120687f, 40.182405f, 40.244218f, 40.306126f, 40.36813f,
-40.430228f, 40.492423f, 40.554713f, 40.617099f, 40.67958f, 40.742158f, 40.804832f, 40.867603f, 40.93047f, 40.993434f, 41.056495f, 41.119652f, 41.182907f, 41.24626f, 41.309709f, 41.373256f, 41.436901f, 41.500644f, 41.564485f, 41.628424f,
-41.692462f, 41.756598f, 41.820833f, 41.885166f, 41.949599f, 42.01413f, 42.078761f, 42.143491f, 42.208321f, 42.273251f, 42.33828f, 42.40341f, 42.46864f, 42.53397f, 42.5994f, 42.664931f, 42.730563f, 42.796296f, 42.86213f, 42.928066f,
-42.994103f, 43.060241f, 43.126481f, 43.192823f, 43.259267f, 43.325813f, 43.392462f, 43.459213f, 43.526067f, 43.593024f, 43.660083f, 43.727246f, 43.794512f, 43.861882f, 43.929355f, 43.996932f, 44.064613f, 44.132399f, 44.200288f, 44.268282f,
-44.33638f, 44.404584f, 44.472892f, 44.541305f, 44.609823f, 44.678447f, 44.747177f, 44.816012f, 44.884953f, 44.954f, 45.023153f, 45.092413f, 45.161779f, 45.231252f, 45.300832f, 45.370519f, 45.440313f, 45.510214f, 45.580223f, 45.65034f,
-45.720564f, 45.790897f, 45.861337f, 45.931887f, 46.002544f, 46.07331f, 46.144186f, 46.21517f, 46.286263f, 46.357466f, 46.428778f, 46.5002f, 46.571732f, 46.643374f, 46.715126f, 46.786988f, 46.858961f, 46.931045f, 47.00324f, 47.075545f,
-47.147962f, 47.220491f, 47.293131f, 47.365882f, 47.438746f, 47.511721f, 47.584809f, 47.658009f, 47.731322f, 47.804748f, 47.878287f, 47.951938f, 48.025704f, 48.099582f, 48.173574f, 48.24768f, 48.3219f, 48.396235f, 48.470683f, 48.545246f,
-48.619924f, 48.694717f, 48.769624f, 48.844647f, 48.919785f, 48.995039f, 49.070409f, 49.145895f, 49.221496f, 49.297214f, 49.373049f, 49.449f, 49.525068f, 49.601253f, 49.677555f, 49.753975f, 49.830512f, 49.907167f, 49.98394f, 50.060831f,
-50.13784f, 50.214968f, 50.292214f, 50.369579f, 50.447063f, 50.524667f, 50.602389f, 50.680232f, 50.758194f, 50.836276f, 50.914478f, 50.9928f, 51.071243f, 51.149807f, 51.228491f, 51.307296f, 51.386223f, 51.465271f, 51.544441f, 51.623732f,
-51.703146f, 51.782681f, 51.862339f, 51.94212f, 52.022023f, 52.102049f, 52.182198f, 52.262471f, 52.342867f, 52.423387f, 52.50403f, 52.584798f, 52.66569f, 52.746706f, 52.827847f, 52.909113f, 52.990503f, 53.072019f, 53.153661f, 53.235428f,
-53.31732f, 53.399339f, 53.481484f, 53.563755f, 53.646153f, 53.728678f, 53.811329f, 53.894108f, 53.977014f, 54.060047f, 54.143208f, 54.226498f, 54.309915f, 54.393461f, 54.477135f, 54.560938f, 54.644869f, 54.72893f, 54.81312f, 54.89744f,
-54.98189f, 55.066469f, 55.151178f, 55.236018f, 55.320988f, 55.406089f, 55.491321f, 55.576684f, 55.662179f, 55.747804f, 55.833562f, 55.919451f, 56.005473f, 56.091627f, 56.177913f, 56.264333f, 56.350885f, 56.43757f, 56.524389f, 56.611341f,
-56.698427f, 56.785647f, 56.873001f, 56.960489f, 57.048112f, 57.13587f, 57.223763f, 57.311791f, 57.399954f, 57.488253f, 57.576688f, 57.665259f, 57.753966f, 57.84281f, 57.93179f, 58.020908f, 58.110162f, 58.199553f, 58.289083f, 58.378749f,
-58.468554f, 58.558497f, 58.648578f, 58.738798f, 58.829157f, 58.919654f, 59.010291f, 59.101068f, 59.191983f, 59.283039f, 59.374235f, 59.465571f, 59.557048f, 59.648665f, 59.740424f, 59.832323f, 59.924364f, 60.016546f, 60.10887f, 60.201337f,
-60.293945f, 60.386696f, 60.47959f, 60.572626f, 60.665806f, 60.759129f, 60.852595f, 60.946206f, 61.03996f, 61.133858f, 61.227901f, 61.322089f, 61.416422f, 61.510899f, 61.605522f, 61.700291f, 61.795205f, 61.890265f, 61.985472f, 62.080825f,
-62.176325f, 62.271971f, 62.367765f, 62.463706f, 62.559795f, 62.656032f, 62.752416f, 62.848949f, 62.94563f, 63.04246f, 63.139439f, 63.236568f, 63.333845f, 63.431272f, 63.528849f, 63.626577f, 63.724454f, 63.822482f, 63.920661f, 64.018991f,
-64.117473f, 64.216105f, 64.31489f, 64.413826f, 64.512915f, 64.612156f, 64.711549f, 64.811096f, 64.910796f, 65.010649f, 65.110656f, 65.210816f, 65.311131f, 65.4116f, 65.512223f, 65.613001f, 65.713935f, 65.815023f, 65.916267f, 66.017667f,
-66.119223f, 66.220935f, 66.322803f, 66.424829f, 66.527011f, 66.62935f, 66.731847f, 66.834501f, 66.937314f, 67.040284f, 67.143413f, 67.246701f, 67.350147f, 67.453753f, 67.557518f, 67.661442f, 67.765527f, 67.869771f, 67.974176f, 68.078742f,
-68.183468f, 68.288356f, 68.393404f, 68.498615f, 68.603987f, 68.709522f, 68.815218f, 68.921078f, 69.0271f, 69.133285f, 69.239634f, 69.346146f, 69.452822f, 69.559662f, 69.666666f, 69.773836f, 69.88117f, 69.988669f, 70.096333f, 70.204163f,
-70.312159f, 70.420321f, 70.52865f, 70.637145f, 70.745807f, 70.854636f, 70.963633f, 71.072797f, 71.182129f, 71.291629f, 71.401298f, 71.511136f, 71.621142f, 71.731318f, 71.841663f, 71.952178f, 72.062863f, 72.173718f, 72.284744f, 72.39594f,
-72.507308f, 72.618847f, 72.730557f, 72.84244f, 72.954494f, 73.066721f, 73.17912f, 73.291693f, 73.404438f, 73.517357f, 73.63045f, 73.743717f, 73.857157f, 73.970773f, 74.084563f, 74.198528f, 74.312669f, 74.426985f, 74.541477f, 74.656145f,
-74.770989f, 74.886011f, 75.001209f, 75.116584f, 75.232137f, 75.347867f, 75.463776f, 75.579863f, 75.696128f, 75.812573f, 75.929196f, 76.045999f, 76.162981f, 76.280144f, 76.397486f, 76.51501f, 76.632714f, 76.750599f, 76.868665f, 76.986913f,
-77.105343f, 77.223955f, 77.34275f, 77.461727f, 77.580888f, 77.700231f, 77.819758f, 77.93947f, 78.059365f, 78.179444f, 78.299709f, 78.420158f, 78.540793f, 78.661613f, 78.782619f, 78.903812f, 79.025191f, 79.146756f, 79.268508f, 79.390448f,
-79.512575f, 79.634891f, 79.757394f, 79.880086f, 80.002966f, 80.126036f, 80.249295f, 80.372743f, 80.496382f, 80.62021f, 80.744229f, 80.868439f, 80.99284f, 81.117433f, 81.242216f, 81.367192f, 81.492361f, 81.617721f, 81.743275f, 81.869022f,
-81.994962f, 82.121096f, 82.247424f, 82.373946f, 82.500663f, 82.627574f, 82.754681f, 82.881984f, 83.009482f, 83.137177f, 83.265068f, 83.393156f, 83.52144f, 83.649922f, 83.778602f, 83.90748f, 84.036556f, 84.16583f, 84.295304f, 84.424976f,
-84.554848f, 84.68492f, 84.815192f, 84.945664f, 85.076337f, 85.207211f, 85.338286f, 85.469563f, 85.601042f, 85.732723f, 85.864607f, 85.996694f, 86.128984f, 86.261477f, 86.394174f, 86.527075f, 86.660181f, 86.793491f, 86.927007f, 87.060728f,
-87.194654f, 87.328787f, 87.463126f, 87.597672f, 87.732424f, 87.867384f, 88.002552f, 88.137927f, 88.273511f, 88.409303f, 88.545304f, 88.681515f, 88.817934f, 88.954564f, 89.091404f, 89.228455f, 89.365716f, 89.503188f, 89.640872f, 89.778768f,
-89.916876f, 90.055196f, 90.193729f, 90.332475f, 90.471435f, 90.610608f, 90.749995f, 90.889597f, 91.029414f, 91.169446f, 91.309693f, 91.450155f, 91.590834f, 91.73173f, 91.872842f, 92.014171f, 92.155718f, 92.297482f, 92.439464f, 92.581665f,
-92.724085f, 92.866723f, 93.009581f, 93.152659f, 93.295957f, 93.439475f, 93.583214f, 93.727175f, 93.871356f, 94.01576f, 94.160385f, 94.305234f, 94.450304f, 94.595599f, 94.741116f, 94.886858f, 95.032823f, 95.179013f, 95.325428f, 95.472069f,
-95.618935f, 95.766026f, 95.913345f, 96.060889f, 96.208661f, 96.35666f, 96.504887f, 96.653341f, 96.802024f, 96.950936f, 97.100077f, 97.249447f, 97.399047f, 97.548877f, 97.698938f, 97.84923f, 97.999752f, 98.150507f, 98.301493f, 98.452711f,
-98.604162f, 98.755846f, 98.907764f, 99.059915f, 99.2123f, 99.364919f, 99.517774f, 99.670863f, 99.824188f, 99.977749f, 100.131546f, 100.285579f, 100.43985f, 100.594358f, 100.749103f, 100.904087f, 101.059309f, 101.21477f, 101.37047f, 101.526409f,
-101.682589f, 101.839008f, 101.995668f, 102.15257f, 102.309712f, 102.467097f, 102.624723f, 102.782592f, 102.940704f, 103.099059f, 103.257657f, 103.4165f, 103.575587f, 103.734918f, 103.894495f, 104.054317f, 104.214385f, 104.3747f, 104.535261f, 104.696068f,
-104.857124f, 105.018427f, 105.179978f, 105.341778f, 105.503826f, 105.666124f, 105.828672f, 105.991469f, 106.154517f, 106.317816f, 106.481366f, 106.645168f, 106.809221f, 106.973527f, 107.138086f, 107.302898f, 107.467963f, 107.633283f, 107.798856f, 107.964685f,
-108.130768f, 108.297107f, 108.463702f, 108.630553f, 108.79766f, 108.965025f, 109.132648f, 109.300528f, 109.468666f, 109.637063f, 109.805719f, 109.974635f, 110.14381f, 110.313246f, 110.482942f, 110.652899f, 110.823118f, 110.993599f, 111.164341f, 111.335347f,
-111.506615f, 111.678148f, 111.849943f, 112.022004f, 112.194328f, 112.366918f, 112.539774f, 112.712895f, 112.886283f, 113.059937f, 113.233859f, 113.408048f, 113.582505f, 113.75723f, 113.932224f, 114.107488f, 114.283021f, 114.458824f, 114.634897f, 114.811242f,
-114.987857f, 115.164744f, 115.341904f, 115.519336f, 115.697041f, 115.875019f, 116.053271f, 116.231797f, 116.410598f, 116.589674f, 116.769025f, 116.948652f, 117.128556f, 117.308736f, 117.489194f, 117.669929f, 117.850942f, 118.032234f, 118.213804f, 118.395654f,
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-17255.259088f, 17281.803071f, 17308.387886f, 17335.013596f, 17361.680266f, 17388.387957f, 17415.136733f, 17441.926657f, 17468.757792f, 17495.630202f, 17522.54395f, 17549.4991f, 17576.495715f, 17603.533859f, 17630.613597f, 17657.734992f, 17684.898107f, 17712.103009f, 17739.34976f, 17766.638424f,
-17793.969068f, 17821.341754f, 17848.756548f, 17876.213515f, 17903.712719f, 17931.254226f, 17958.8381f, 17986.464406f, 18014.133211f, 18041.844578f, 18069.598575f, 18097.395266f, 18125.234716f, 18153.116993f, 18181.042161f, 18209.010287f, 18237.021437f, 18265.075676f, 18293.173072f, 18321.31369f,
-18349.497597f, 18377.72486f, 18405.995546f, 18434.30972f, 18462.667451f, 18491.068804f, 18519.513848f, 18548.002649f, 18576.535275f, 18605.111793f, 18633.73227f, 18662.396775f, 18691.105375f, 18719.858137f, 18748.655131f, 18777.496423f };
-
-const float adc1[ADC1_TABLE_SIZE] = {0.865537f, 0.958907f, 0.975752f, 0.982802f, 0.986676f, 0.989126f, 0.990814f, 0.992049f, 0.992991f, 0.993734f, 0.994334f, 0.994829f, 0.995245f, 0.995599f, 0.995904f, 0.996169f, 0.996402f, 0.996608f, 0.996792f, 0.996957f,
-0.997106f, 0.997241f, 0.997364f, 0.997477f, 0.99758f, 0.997675f, 0.997763f, 0.997844f, 0.99792f, 0.997991f, 0.998057f, 0.998119f, 0.998177f, 0.998231f, 0.998283f, 0.998331f, 0.998377f, 0.99842f, 0.998461f, 0.9985f,
-0.998537f, 0.998573f, 0.998606f, 0.998638f, 0.998669f, 0.998698f, 0.998726f, 0.998753f, 0.998779f, 0.998804f, 0.998827f, 0.99885f, 0.998872f, 0.998893f, 0.998913f, 0.998933f, 0.998952f, 0.99897f, 0.998988f, 0.999005f,
-0.999021f, 0.999037f, 0.999053f, 0.999068f, 0.999082f, 0.999096f, 0.99911f, 0.999123f, 0.999136f, 0.999148f, 0.99916f, 0.999172f, 0.999183f, 0.999195f, 0.999205f, 0.999216f, 0.999226f, 0.999236f, 0.999246f, 0.999255f,
-0.999265f, 0.999274f, 0.999283f, 0.999291f, 0.9993f, 0.999308f, 0.999316f, 0.999324f, 0.999331f, 0.999339f, 0.999346f, 0.999353f, 0.99936f, 0.999367f, 0.999374f, 0.99938f, 0.999387f, 0.999393f, 0.999399f, 0.999405f,
-0.999411f, 0.999417f, 0.999423f, 0.999428f, 0.999434f, 0.999439f, 0.999444f, 0.999449f, 0.999455f, 0.99946f, 0.999464f, 0.999469f, 0.999474f, 0.999479f, 0.999483f, 0.999488f, 0.999492f, 0.999496f, 0.999501f, 0.999505f,
-0.999509f, 0.999513f, 0.999517f, 0.999521f, 0.999525f, 0.999528f, 0.999532f, 0.999536f, 0.999539f, 0.999543f, 0.999547f, 0.99955f, 0.999553f, 0.999557f, 0.99956f, 0.999563f, 0.999566f, 0.99957f, 0.999573f, 0.999576f,
-0.999579f, 0.999582f, 0.999585f, 0.999588f, 0.99959f, 0.999593f, 0.999596f, 0.999599f, 0.999602f, 0.999604f, 0.999607f, 0.999609f, 0.999612f, 0.999615f, 0.999617f, 0.999619f, 0.999622f, 0.999624f, 0.999627f, 0.999629f,
-0.999631f, 0.999634f, 0.999636f, 0.999638f, 0.99964f, 0.999642f, 0.999645f, 0.999647f, 0.999649f, 0.999651f, 0.999653f, 0.999655f, 0.999657f, 0.999659f, 0.999661f, 0.999663f, 0.999665f, 0.999667f, 0.999669f, 0.99967f,
-0.999672f, 0.999674f, 0.999676f, 0.999678f, 0.999679f, 0.999681f, 0.999683f, 0.999684f, 0.999686f, 0.999688f, 0.999689f, 0.999691f, 0.999693f, 0.999694f, 0.999696f, 0.999697f, 0.999699f, 0.9997f, 0.999702f, 0.999703f,
-0.999705f, 0.999706f, 0.999708f, 0.999709f, 0.999711f, 0.999712f, 0.999713f, 0.999715f, 0.999716f, 0.999718f, 0.999719f, 0.99972f, 0.999722f, 0.999723f, 0.999724f, 0.999725f, 0.999727f, 0.999728f, 0.999729f, 0.99973f,
-0.999732f, 0.999733f, 0.999734f, 0.999735f, 0.999736f, 0.999738f, 0.999739f, 0.99974f, 0.999741f, 0.999742f, 0.999743f, 0.999744f, 0.999746f, 0.999747f, 0.999748f, 0.999749f, 0.99975f, 0.999751f, 0.999752f, 0.999753f,
-0.999754f, 0.999755f, 0.999756f, 0.999757f, 0.999758f, 0.999759f, 0.99976f, 0.999761f, 0.999762f, 0.999763f, 0.999764f, 0.999765f, 0.999766f, 0.999767f, 0.999768f, 0.999768f, 0.999769f, 0.99977f, 0.999771f, 0.999772f,
-0.999773f, 0.999774f, 0.999775f, 0.999775f, 0.999776f, 0.999777f, 0.999778f, 0.999779f, 0.99978f, 0.99978f, 0.999781f, 0.999782f, 0.999783f, 0.999784f, 0.999784f, 0.999785f, 0.999786f, 0.999787f, 0.999788f, 0.999788f,
-0.999789f, 0.99979f, 0.999791f, 0.999791f, 0.999792f, 0.999793f, 0.999794f, 0.999794f, 0.999795f, 0.999796f, 0.999796f, 0.999797f, 0.999798f, 0.999798f, 0.999799f, 0.9998f, 0.9998f, 0.999801f, 0.999802f, 0.999802f,
-0.999803f, 0.999804f, 0.999804f, 0.999805f, 0.999806f, 0.999806f, 0.999807f, 0.999808f, 0.999808f, 0.999809f, 0.999809f, 0.99981f, 0.999811f, 0.999811f, 0.999812f, 0.999812f, 0.999813f, 0.999814f, 0.999814f, 0.999815f,
-0.999815f, 0.999816f, 0.999817f, 0.999817f, 0.999818f, 0.999818f, 0.999819f, 0.999819f, 0.99982f, 0.99982f, 0.999821f, 0.999822f, 0.999822f, 0.999823f, 0.999823f, 0.999824f, 0.999824f, 0.999825f, 0.999825f, 0.999826f,
-0.999826f, 0.999827f, 0.999827f, 0.999828f, 0.999828f, 0.999829f, 0.999829f, 0.99983f, 0.99983f, 0.999831f, 0.999831f, 0.999832f, 0.999832f, 0.999833f, 0.999833f, 0.999834f, 0.999834f, 0.999835f, 0.999835f, 0.999835f,
-0.999836f, 0.999836f, 0.999837f, 0.999837f, 0.999838f, 0.999838f, 0.999839f, 0.999839f, 0.999839f, 0.99984f, 0.99984f, 0.999841f, 0.999841f, 0.999842f, 0.999842f, 0.999842f, 0.999843f, 0.999843f, 0.999844f, 0.999844f,
-0.999845f, 0.999845f, 0.999845f, 0.999846f, 0.999846f, 0.999847f, 0.999847f, 0.999847f, 0.999848f, 0.999848f, 0.999849f, 0.999849f, 0.999849f, 0.99985f, 0.99985f, 0.99985f, 0.999851f, 0.999851f, 0.999852f, 0.999852f,
-0.999852f, 0.999853f, 0.999853f, 0.999853f, 0.999854f, 0.999854f, 0.999854f, 0.999855f, 0.999855f, 0.999856f, 0.999856f, 0.999856f, 0.999857f, 0.999857f, 0.999857f, 0.999858f, 0.999858f, 0.999858f, 0.999859f, 0.999859f,
-0.999859f, 0.99986f, 0.99986f, 0.99986f, 0.999861f, 0.999861f, 0.999861f, 0.999862f, 0.999862f, 0.999862f, 0.999863f, 0.999863f, 0.999863f, 0.999864f, 0.999864f, 0.999864f, 0.999864f, 0.999865f, 0.999865f, 0.999865f,
-0.999866f, 0.999866f, 0.999866f, 0.999867f, 0.999867f, 0.999867f, 0.999868f, 0.999868f, 0.999868f, 0.999868f, 0.999869f, 0.999869f, 0.999869f, 0.99987f, 0.99987f, 0.99987f, 0.99987f, 0.999871f, 0.999871f, 0.999871f,
-0.999872f, 0.999872f, 0.999872f, 0.999872f, 0.999873f, 0.999873f, 0.999873f, 0.999873f, 0.999874f, 0.999874f, 0.999874f, 0.999875f, 0.999875f, 0.999875f, 0.999875f, 0.999876f, 0.999876f, 0.999876f, 0.999876f, 0.999877f,
-0.999877f, 0.999877f, 0.999877f, 0.999878f, 0.999878f, 0.999878f, 0.999878f, 0.999879f, 0.999879f, 0.999879f, 0.999879f, 0.99988f, 0.99988f, 0.99988f, 0.99988f, 0.999881f, 0.999881f, 0.999881f, 0.999881f, 0.999882f,
-0.999882f, 0.999882f, 0.999882f, 0.999883f, 0.999883f, 0.999883f, 0.999883f, 0.999883f, 0.999884f, 0.999884f, 0.999884f, 0.999884f, 0.999885f, 0.999885f, 0.999885f, 0.999885f, 0.999885f, 0.999886f, 0.999886f, 0.999886f,
-0.999886f, 0.999887f, 0.999887f, 0.999887f, 0.999887f, 0.999887f, 0.999888f, 0.999888f, 0.999888f, 0.999888f, 0.999888f, 0.999889f, 0.999889f, 0.999889f, 0.999889f, 0.99989f, 0.99989f, 0.99989f, 0.99989f, 0.99989f,
-0.999891f, 0.999891f, 0.999891f, 0.999891f, 0.999891f, 0.999892f, 0.999892f, 0.999892f, 0.999892f, 0.999892f, 0.999893f, 0.999893f, 0.999893f, 0.999893f, 0.999893f, 0.999894f, 0.999894f, 0.999894f, 0.999894f, 0.999894f,
-0.999894f, 0.999895f, 0.999895f, 0.999895f, 0.999895f, 0.999895f, 0.999896f, 0.999896f, 0.999896f, 0.999896f, 0.999896f, 0.999896f, 0.999897f, 0.999897f, 0.999897f, 0.999897f, 0.999897f, 0.999898f, 0.999898f, 0.999898f,
-0.999898f, 0.999898f, 0.999898f, 0.999899f, 0.999899f, 0.999899f, 0.999899f, 0.999899f, 0.999899f, 0.9999f, 0.9999f, 0.9999f, 0.9999f, 0.9999f, 0.9999f, 0.999901f, 0.999901f, 0.999901f, 0.999901f, 0.999901f,
-0.999901f, 0.999902f, 0.999902f, 0.999902f, 0.999902f, 0.999902f, 0.999902f, 0.999903f, 0.999903f, 0.999903f, 0.999903f, 0.999903f, 0.999903f, 0.999904f, 0.999904f, 0.999904f, 0.999904f, 0.999904f, 0.999904f, 0.999905f,
-0.999905f, 0.999905f, 0.999905f, 0.999905f, 0.999905f, 0.999905f, 0.999906f, 0.999906f, 0.999906f, 0.999906f, 0.999906f, 0.999906f, 0.999906f, 0.999907f, 0.999907f, 0.999907f, 0.999907f, 0.999907f, 0.999907f, 0.999907f,
-0.999908f, 0.999908f, 0.999908f, 0.999908f, 0.999908f, 0.999908f, 0.999909f, 0.999909f, 0.999909f, 0.999909f, 0.999909f, 0.999909f, 0.999909f, 0.999909f, 0.99991f, 0.99991f, 0.99991f, 0.99991f, 0.99991f, 0.99991f,
-0.99991f, 0.999911f, 0.999911f, 0.999911f, 0.999911f, 0.999911f, 0.999911f, 0.999911f, 0.999912f, 0.999912f, 0.999912f, 0.999912f, 0.999912f, 0.999912f, 0.999912f, 0.999912f, 0.999913f, 0.999913f, 0.999913f, 0.999913f,
-0.999913f, 0.999913f, 0.999913f, 0.999913f, 0.999914f, 0.999914f, 0.999914f, 0.999914f, 0.999914f, 0.999914f, 0.999914f, 0.999914f, 0.999915f, 0.999915f, 0.999915f, 0.999915f, 0.999915f, 0.999915f, 0.999915f, 0.999915f,
-0.999916f, 0.999916f, 0.999916f, 0.999916f, 0.999916f, 0.999916f, 0.999916f, 0.999916f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999917f, 0.999918f, 0.999918f, 0.999918f,
-0.999918f, 0.999918f, 0.999918f, 0.999918f, 0.999918f, 0.999918f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.999919f, 0.99992f, 0.99992f, 0.99992f, 0.99992f, 0.99992f,
-0.99992f, 0.99992f, 0.99992f, 0.99992f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999921f, 0.999922f, 0.999922f, 0.999922f, 0.999922f, 0.999922f, 0.999922f,
-0.999922f, 0.999922f, 0.999922f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999923f, 0.999924f, 0.999924f, 0.999924f, 0.999924f, 0.999924f, 0.999924f, 0.999924f,
-0.999924f, 0.999924f, 0.999924f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999925f, 0.999926f, 0.999926f, 0.999926f, 0.999926f, 0.999926f, 0.999926f,
-0.999926f, 0.999926f, 0.999926f, 0.999926f, 0.999926f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999927f, 0.999928f, 0.999928f, 0.999928f, 0.999928f,
-0.999928f, 0.999928f, 0.999928f, 0.999928f, 0.999928f, 0.999928f, 0.999928f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.999929f, 0.99993f,
-0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.99993f, 0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999931f,
-0.999931f, 0.999931f, 0.999931f, 0.999931f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999932f, 0.999933f, 0.999933f, 0.999933f, 0.999933f,
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-0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f,
-0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f,
-0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f,
-0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f,
-0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999984f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f,
-0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999985f, 0.999986f,
-0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, 0.999986f, };
-
-const float tanh1[TANH1_TABLE_SIZE] = {-0.964028f, -0.964023f, -0.964019f, -0.964015f, -0.96401f, -0.964006f, -0.964002f, -0.963997f, -0.963993f, -0.963989f, -0.963984f, -0.96398f, -0.963976f, -0.963971f, -0.963967f, -0.963963f, -0.963959f, -0.963954f, -0.96395f, -0.963946f,
--0.963941f, -0.963937f, -0.963933f, -0.963928f, -0.963924f, -0.96392f, -0.963915f, -0.963911f, -0.963907f, -0.963902f, -0.963898f, -0.963894f, -0.963889f, -0.963885f, -0.963881f, -0.963876f, -0.963872f, -0.963868f, -0.963863f, -0.963859f,
--0.963855f, -0.96385f, -0.963846f, -0.963842f, -0.963837f, -0.963833f, -0.963829f, -0.963824f, -0.96382f, -0.963816f, -0.963811f, -0.963807f, -0.963803f, -0.963798f, -0.963794f, -0.96379f, -0.963785f, -0.963781f, -0.963777f, -0.963772f,
--0.963768f, -0.963764f, -0.963759f, -0.963755f, -0.963751f, -0.963746f, -0.963742f, -0.963738f, -0.963733f, -0.963729f, -0.963724f, -0.96372f, -0.963716f, -0.963711f, -0.963707f, -0.963703f, -0.963698f, -0.963694f, -0.96369f, -0.963685f,
--0.963681f, -0.963677f, -0.963672f, -0.963668f, -0.963664f, -0.963659f, -0.963655f, -0.96365f, -0.963646f, -0.963642f, -0.963637f, -0.963633f, -0.963629f, -0.963624f, -0.96362f, -0.963616f, -0.963611f, -0.963607f, -0.963603f, -0.963598f,
--0.963594f, -0.963589f, -0.963585f, -0.963581f, -0.963576f, -0.963572f, -0.963568f, -0.963563f, -0.963559f, -0.963555f, -0.96355f, -0.963546f, -0.963541f, -0.963537f, -0.963533f, -0.963528f, -0.963524f, -0.96352f, -0.963515f, -0.963511f,
--0.963506f, -0.963502f, -0.963498f, -0.963493f, -0.963489f, -0.963485f, -0.96348f, -0.963476f, -0.963471f, -0.963467f, -0.963463f, -0.963458f, -0.963454f, -0.96345f, -0.963445f, -0.963441f, -0.963436f, -0.963432f, -0.963428f, -0.963423f,
--0.963419f, -0.963414f, -0.96341f, -0.963406f, -0.963401f, -0.963397f, -0.963393f, -0.963388f, -0.963384f, -0.963379f, -0.963375f, -0.963371f, -0.963366f, -0.963362f, -0.963357f, -0.963353f, -0.963349f, -0.963344f, -0.96334f, -0.963335f,
--0.963331f, -0.963327f, -0.963322f, -0.963318f, -0.963314f, -0.963309f, -0.963305f, -0.9633f, -0.963296f, -0.963292f, -0.963287f, -0.963283f, -0.963278f, -0.963274f, -0.96327f, -0.963265f, -0.963261f, -0.963256f, -0.963252f, -0.963248f,
--0.963243f, -0.963239f, -0.963234f, -0.96323f, -0.963225f, -0.963221f, -0.963217f, -0.963212f, -0.963208f, -0.963203f, -0.963199f, -0.963195f, -0.96319f, -0.963186f, -0.963181f, -0.963177f, -0.963173f, -0.963168f, -0.963164f, -0.963159f,
--0.963155f, -0.96315f, -0.963146f, -0.963142f, -0.963137f, -0.963133f, -0.963128f, -0.963124f, -0.96312f, -0.963115f, -0.963111f, -0.963106f, -0.963102f, -0.963097f, -0.963093f, -0.963089f, -0.963084f, -0.96308f, -0.963075f, -0.963071f,
--0.963067f, -0.963062f, -0.963058f, -0.963053f, -0.963049f, -0.963044f, -0.96304f, -0.963036f, -0.963031f, -0.963027f, -0.963022f, -0.963018f, -0.963013f, -0.963009f, -0.963004f, -0.963f, -0.962996f, -0.962991f, -0.962987f, -0.962982f,
--0.962978f, -0.962973f, -0.962969f, -0.962965f, -0.96296f, -0.962956f, -0.962951f, -0.962947f, -0.962942f, -0.962938f, -0.962934f, -0.962929f, -0.962925f, -0.96292f, -0.962916f, -0.962911f, -0.962907f, -0.962902f, -0.962898f, -0.962894f,
--0.962889f, -0.962885f, -0.96288f, -0.962876f, -0.962871f, -0.962867f, -0.962862f, -0.962858f, -0.962853f, -0.962849f, -0.962845f, -0.96284f, -0.962836f, -0.962831f, -0.962827f, -0.962822f, -0.962818f, -0.962813f, -0.962809f, -0.962805f,
--0.9628f, -0.962796f, -0.962791f, -0.962787f, -0.962782f, -0.962778f, -0.962773f, -0.962769f, -0.962764f, -0.96276f, -0.962755f, -0.962751f, -0.962747f, -0.962742f, -0.962738f, -0.962733f, -0.962729f, -0.962724f, -0.96272f, -0.962715f,
--0.962711f, -0.962706f, -0.962702f, -0.962697f, -0.962693f, -0.962688f, -0.962684f, -0.96268f, -0.962675f, -0.962671f, -0.962666f, -0.962662f, -0.962657f, -0.962653f, -0.962648f, -0.962644f, -0.962639f, -0.962635f, -0.96263f, -0.962626f,
--0.962621f, -0.962617f, -0.962612f, -0.962608f, -0.962603f, -0.962599f, -0.962594f, -0.96259f, -0.962586f, -0.962581f, -0.962577f, -0.962572f, -0.962568f, -0.962563f, -0.962559f, -0.962554f, -0.96255f, -0.962545f, -0.962541f, -0.962536f,
--0.962532f, -0.962527f, -0.962523f, -0.962518f, -0.962514f, -0.962509f, -0.962505f, -0.9625f, -0.962496f, -0.962491f, -0.962487f, -0.962482f, -0.962478f, -0.962473f, -0.962469f, -0.962464f, -0.96246f, -0.962455f, -0.962451f, -0.962446f,
--0.962442f, -0.962437f, -0.962433f, -0.962428f, -0.962424f, -0.962419f, -0.962415f, -0.96241f, -0.962406f, -0.962401f, -0.962397f, -0.962392f, -0.962388f, -0.962383f, -0.962379f, -0.962374f, -0.96237f, -0.962365f, -0.962361f, -0.962356f,
--0.962352f, -0.962347f, -0.962343f, -0.962338f, -0.962334f, -0.962329f, -0.962325f, -0.96232f, -0.962316f, -0.962311f, -0.962307f, -0.962302f, -0.962298f, -0.962293f, -0.962289f, -0.962284f, -0.96228f, -0.962275f, -0.962271f, -0.962266f,
--0.962261f, -0.962257f, -0.962252f, -0.962248f, -0.962243f, -0.962239f, -0.962234f, -0.96223f, -0.962225f, -0.962221f, -0.962216f, -0.962212f, -0.962207f, -0.962203f, -0.962198f, -0.962194f, -0.962189f, -0.962185f, -0.96218f, -0.962175f,
--0.962171f, -0.962166f, -0.962162f, -0.962157f, -0.962153f, -0.962148f, -0.962144f, -0.962139f, -0.962135f, -0.96213f, -0.962126f, -0.962121f, -0.962117f, -0.962112f, -0.962107f, -0.962103f, -0.962098f, -0.962094f, -0.962089f, -0.962085f,
--0.96208f, -0.962076f, -0.962071f, -0.962067f, -0.962062f, -0.962058f, -0.962053f, -0.962048f, -0.962044f, -0.962039f, -0.962035f, -0.96203f, -0.962026f, -0.962021f, -0.962017f, -0.962012f, -0.962008f, -0.962003f, -0.961998f, -0.961994f,
--0.961989f, -0.961985f, -0.96198f, -0.961976f, -0.961971f, -0.961967f, -0.961962f, -0.961957f, -0.961953f, -0.961948f, -0.961944f, -0.961939f, -0.961935f, -0.96193f, -0.961926f, -0.961921f, -0.961916f, -0.961912f, -0.961907f, -0.961903f,
--0.961898f, -0.961894f, -0.961889f, -0.961884f, -0.96188f, -0.961875f, -0.961871f, -0.961866f, -0.961862f, -0.961857f, -0.961853f, -0.961848f, -0.961843f, -0.961839f, -0.961834f, -0.96183f, -0.961825f, -0.961821f, -0.961816f, -0.961811f,
--0.961807f, -0.961802f, -0.961798f, -0.961793f, -0.961789f, -0.961784f, -0.961779f, -0.961775f, -0.96177f, -0.961766f, -0.961761f, -0.961756f, -0.961752f, -0.961747f, -0.961743f, -0.961738f, -0.961734f, -0.961729f, -0.961724f, -0.96172f,
--0.961715f, -0.961711f, -0.961706f, -0.961701f, -0.961697f, -0.961692f, -0.961688f, -0.961683f, -0.961679f, -0.961674f, -0.961669f, -0.961665f, -0.96166f, -0.961656f, -0.961651f, -0.961646f, -0.961642f, -0.961637f, -0.961633f, -0.961628f,
--0.961623f, -0.961619f, -0.961614f, -0.96161f, -0.961605f, -0.9616f, -0.961596f, -0.961591f, -0.961587f, -0.961582f, -0.961577f, -0.961573f, -0.961568f, -0.961564f, -0.961559f, -0.961554f, -0.96155f, -0.961545f, -0.961541f, -0.961536f,
--0.961531f, -0.961527f, -0.961522f, -0.961518f, -0.961513f, -0.961508f, -0.961504f, -0.961499f, -0.961495f, -0.96149f, -0.961485f, -0.961481f, -0.961476f, -0.961472f, -0.961467f, -0.961462f, -0.961458f, -0.961453f, -0.961448f, -0.961444f,
--0.961439f, -0.961435f, -0.96143f, -0.961425f, -0.961421f, -0.961416f, -0.961412f, -0.961407f, -0.961402f, -0.961398f, -0.961393f, -0.961388f, -0.961384f, -0.961379f, -0.961375f, -0.96137f, -0.961365f, -0.961361f, -0.961356f, -0.961351f,
--0.961347f, -0.961342f, -0.961338f, -0.961333f, -0.961328f, -0.961324f, -0.961319f, -0.961314f, -0.96131f, -0.961305f, -0.9613f, -0.961296f, -0.961291f, -0.961287f, -0.961282f, -0.961277f, -0.961273f, -0.961268f, -0.961263f, -0.961259f,
--0.961254f, -0.961249f, -0.961245f, -0.96124f, -0.961236f, -0.961231f, -0.961226f, -0.961222f, -0.961217f, -0.961212f, -0.961208f, -0.961203f, -0.961198f, -0.961194f, -0.961189f, -0.961184f, -0.96118f, -0.961175f, -0.961171f, -0.961166f,
--0.961161f, -0.961157f, -0.961152f, -0.961147f, -0.961143f, -0.961138f, -0.961133f, -0.961129f, -0.961124f, -0.961119f, -0.961115f, -0.96111f, -0.961105f, -0.961101f, -0.961096f, -0.961091f, -0.961087f, -0.961082f, -0.961077f, -0.961073f,
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-0.962103f, 0.962107f, 0.962112f, 0.962117f, 0.962121f, 0.962126f, 0.96213f, 0.962135f, 0.962139f, 0.962144f, 0.962148f, 0.962153f, 0.962157f, 0.962162f, 0.962166f, 0.962171f, 0.962175f, 0.96218f, 0.962185f, 0.962189f,
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-0.963089f, 0.963093f, 0.963097f, 0.963102f, 0.963106f, 0.963111f, 0.963115f, 0.96312f, 0.963124f, 0.963128f, 0.963133f, 0.963137f, 0.963142f, 0.963146f, 0.96315f, 0.963155f, 0.963159f, 0.963164f, 0.963168f, 0.963173f,
-0.963177f, 0.963181f, 0.963186f, 0.96319f, 0.963195f, 0.963199f, 0.963203f, 0.963208f, 0.963212f, 0.963217f, 0.963221f, 0.963225f, 0.96323f, 0.963234f, 0.963239f, 0.963243f, 0.963248f, 0.963252f, 0.963256f, 0.963261f,
-0.963265f, 0.96327f, 0.963274f, 0.963278f, 0.963283f, 0.963287f, 0.963292f, 0.963296f, 0.9633f, 0.963305f, 0.963309f, 0.963314f, 0.963318f, 0.963322f, 0.963327f, 0.963331f, 0.963335f, 0.96334f, 0.963344f, 0.963349f,
-0.963353f, 0.963357f, 0.963362f, 0.963366f, 0.963371f, 0.963375f, 0.963379f, 0.963384f, 0.963388f, 0.963393f, 0.963397f, 0.963401f, 0.963406f, 0.96341f, 0.963414f, 0.963419f, 0.963423f, 0.963428f, 0.963432f, 0.963436f,
-0.963441f, 0.963445f, 0.96345f, 0.963454f, 0.963458f, 0.963463f, 0.963467f, 0.963471f, 0.963476f, 0.96348f, 0.963485f, 0.963489f, 0.963493f, 0.963498f, 0.963502f, 0.963506f, 0.963511f, 0.963515f, 0.96352f, 0.963524f,
-0.963528f, 0.963533f, 0.963537f, 0.963541f, 0.963546f, 0.96355f, 0.963555f, 0.963559f, 0.963563f, 0.963568f, 0.963572f, 0.963576f, 0.963581f, 0.963585f, 0.963589f, 0.963594f, 0.963598f, 0.963603f, 0.963607f, 0.963611f,
-0.963616f, 0.96362f, 0.963624f, 0.963629f, 0.963633f, 0.963637f, 0.963642f, 0.963646f, 0.96365f, 0.963655f, 0.963659f, 0.963664f, 0.963668f, 0.963672f, 0.963677f, 0.963681f, 0.963685f, 0.96369f, 0.963694f, 0.963698f,
-0.963703f, 0.963707f, 0.963711f, 0.963716f, 0.96372f, 0.963724f, 0.963729f, 0.963733f, 0.963738f, 0.963742f, 0.963746f, 0.963751f, 0.963755f, 0.963759f, 0.963764f, 0.963768f, 0.963772f, 0.963777f, 0.963781f, 0.963785f,
-0.96379f, 0.963794f, 0.963798f, 0.963803f, 0.963807f, 0.963811f, 0.963816f, 0.96382f, 0.963824f, 0.963829f, 0.963833f, 0.963837f, 0.963842f, 0.963846f, 0.96385f, 0.963855f, 0.963859f, 0.963863f, 0.963868f, 0.963872f,
-0.963876f, 0.963881f, 0.963885f, 0.963889f, 0.963894f, 0.963898f, 0.963902f, 0.963907f, 0.963911f, 0.963915f, 0.96392f, 0.963924f, 0.963928f, 0.963933f, 0.963937f, 0.963941f, 0.963946f, 0.96395f, 0.963954f, 0.963959f,
-0.963963f, 0.963967f, 0.963971f, 0.963976f, 0.96398f, 0.963984f, 0.963989f, 0.963993f, 0.963997f, 0.964002f, 0.964006f, 0.96401f, 0.964015f, 0.964019f, 0.964023f, 0.964028f, };
-
-#endif
-
-const float __leaf_table_sinewave[SINE_TABLE_SIZE] = {0.0f, 0.00305f, 0.00613f, 0.00919f, 0.01227f, 0.01532f, 0.0184f, 0.02145f, 0.02454f, 0.02759f, 0.03067f, 0.03372f, 0.0368f, 0.03986f, 0.04291f, 0.04599f, 0.04904f, 0.05212f, 0.05518f, 0.05823f,
-0.06131f, 0.06436f, 0.06741f, 0.0705f, 0.07355f, 0.0766f, 0.07965f, 0.08273f, 0.08578f, 0.08884f, 0.09189f, 0.09494f, 0.09799f, 0.10104f, 0.1041f, 0.10715f, 0.1102f, 0.11325f, 0.1163f, 0.11935f,
-0.12241f, 0.12543f, 0.12848f, 0.13153f, 0.13455f, 0.1376f, 0.14066f, 0.14368f, 0.1467f, 0.14975f, 0.15277f, 0.15582f, 0.15884f, 0.16187f, 0.16489f, 0.16791f, 0.17093f, 0.17398f, 0.17697f, 0.17999f,
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--0.70712f, -0.70929f, -0.71143f, -0.71359f, -0.71573f, -0.71786f, -0.72f, -0.72214f, -0.72424f, -0.72635f, -0.72845f, -0.73056f, -0.73267f, -0.73474f, -0.73682f, -0.73889f, -0.74097f, -0.74301f, -0.74506f, -0.7471f,
--0.74915f, -0.75116f, -0.7532f, -0.75522f, -0.7572f, -0.75922f, -0.7612f, -0.76318f, -0.76517f, -0.76715f, -0.7691f, -0.77106f, -0.77301f, -0.77496f, -0.77689f, -0.77881f, -0.78073f, -0.78265f, -0.78455f, -0.78647f,
--0.78836f, -0.79022f, -0.79211f, -0.79398f, -0.79584f, -0.7977f, -0.79953f, -0.80139f, -0.80322f, -0.80502f, -0.80685f, -0.80865f, -0.81046f, -0.81226f, -0.81403f, -0.81583f, -0.8176f, -0.81934f, -0.82111f, -0.82285f,
--0.82458f, -0.82632f, -0.82803f, -0.82977f, -0.83148f, -0.83316f, -0.83487f, -0.83655f, -0.83823f, -0.8399f, -0.84155f, -0.8432f, -0.84485f, -0.8465f, -0.84811f, -0.84973f, -0.85135f, -0.85297f, -0.85455f, -0.85614f,
--0.85773f, -0.85931f, -0.86087f, -0.86243f, -0.86398f, -0.86551f, -0.86703f, -0.86856f, -0.87009f, -0.87158f, -0.87311f, -0.8746f, -0.87607f, -0.87753f, -0.87903f, -0.88046f, -0.88193f, -0.88336f, -0.8848f, -0.88623f,
--0.88763f, -0.88904f, -0.89044f, -0.89185f, -0.89322f, -0.89459f, -0.89597f, -0.89734f, -0.89868f, -0.90002f, -0.90134f, -0.90268f, -0.90399f, -0.9053f, -0.90659f, -0.9079f, -0.90918f, -0.91043f, -0.91171f, -0.91296f,
--0.91422f, -0.91544f, -0.91669f, -0.91791f, -0.91913f, -0.92032f, -0.92151f, -0.9227f, -0.92389f, -0.92505f, -0.92621f, -0.92737f, -0.9285f, -0.92966f, -0.93076f, -0.93188f, -0.93298f, -0.93408f, -0.93518f, -0.93628f,
--0.93735f, -0.93842f, -0.93945f, -0.94052f, -0.94156f, -0.94257f, -0.9436f, -0.94461f, -0.94562f, -0.94659f, -0.9476f, -0.94855f, -0.94952f, -0.9505f, -0.95145f, -0.95236f, -0.95331f, -0.95422f, -0.95514f, -0.95605f,
--0.95694f, -0.95782f, -0.95871f, -0.95956f, -0.96042f, -0.96127f, -0.96213f, -0.96295f, -0.96378f, -0.9646f, -0.96539f, -0.96619f, -0.96698f, -0.96774f, -0.96854f, -0.96927f, -0.97003f, -0.97076f, -0.9715f, -0.97223f,
--0.97293f, -0.97363f, -0.97433f, -0.97504f, -0.97571f, -0.97638f, -0.97702f, -0.97769f, -0.97833f, -0.97894f, -0.97958f, -0.98019f, -0.98077f, -0.98138f, -0.98196f, -0.98254f, -0.98309f, -0.98367f, -0.98422f, -0.98474f,
--0.98529f, -0.98581f, -0.9863f, -0.98682f, -0.9873f, -0.98779f, -0.98825f, -0.98871f, -0.98917f, -0.98962f, -0.99005f, -0.99048f, -0.99091f, -0.9913f, -0.9917f, -0.9921f, -0.99249f, -0.99286f, -0.99323f, -0.99356f,
--0.9939f, -0.99423f, -0.99457f, -0.99487f, -0.99518f, -0.99548f, -0.99576f, -0.99603f, -0.99631f, -0.99658f, -0.99683f, -0.99707f, -0.99728f, -0.9975f, -0.99771f, -0.99792f, -0.99811f, -0.99829f, -0.99847f, -0.99863f,
--0.99881f, -0.99893f, -0.99908f, -0.99921f, -0.99933f, -0.99942f, -0.99954f, -0.99963f, -0.99969f, -0.99976f, -0.99982f, -0.99988f, -0.99994f, -0.99997f, -0.99997f, -1.0f, -1.0f, -1.0f, -0.99997f, -0.99997f,
--0.99994f, -0.99988f, -0.99982f, -0.99976f, -0.99969f, -0.99963f, -0.99954f, -0.99942f, -0.99933f, -0.99921f, -0.99908f, -0.99893f, -0.99881f, -0.99863f, -0.99847f, -0.99829f, -0.99811f, -0.99792f, -0.99771f, -0.9975f,
--0.99728f, -0.99707f, -0.99683f, -0.99658f, -0.99631f, -0.99603f, -0.99576f, -0.99548f, -0.99518f, -0.99487f, -0.99457f, -0.99423f, -0.9939f, -0.99356f, -0.99323f, -0.99286f, -0.99249f, -0.9921f, -0.9917f, -0.9913f,
--0.99091f, -0.99048f, -0.99005f, -0.98962f, -0.98917f, -0.98871f, -0.98825f, -0.98779f, -0.9873f, -0.98682f, -0.9863f, -0.98581f, -0.98529f, -0.98474f, -0.98422f, -0.98367f, -0.98309f, -0.98254f, -0.98196f, -0.98138f,
--0.98077f, -0.98019f, -0.97958f, -0.97894f, -0.97833f, -0.97769f, -0.97702f, -0.97638f, -0.97571f, -0.97504f, -0.97433f, -0.97363f, -0.97293f, -0.97223f, -0.9715f, -0.97076f, -0.97003f, -0.96927f, -0.96854f, -0.96774f,
--0.96698f, -0.96619f, -0.96539f, -0.9646f, -0.96378f, -0.96295f, -0.96213f, -0.96127f, -0.96042f, -0.95956f, -0.95871f, -0.95782f, -0.95694f, -0.95605f, -0.95514f, -0.95422f, -0.95331f, -0.95236f, -0.95145f, -0.9505f,
--0.94952f, -0.94855f, -0.9476f, -0.94659f, -0.94562f, -0.94461f, -0.9436f, -0.94257f, -0.94156f, -0.94052f, -0.93945f, -0.93842f, -0.93735f, -0.93628f, -0.93518f, -0.93408f, -0.93298f, -0.93188f, -0.93076f, -0.92966f,
--0.9285f, -0.92737f, -0.92621f, -0.92505f, -0.92389f, -0.9227f, -0.92151f, -0.92032f, -0.91913f, -0.91791f, -0.91669f, -0.91544f, -0.91422f, -0.91296f, -0.91171f, -0.91043f, -0.90918f, -0.9079f, -0.90659f, -0.9053f,
--0.90399f, -0.90268f, -0.90134f, -0.90002f, -0.89868f, -0.89734f, -0.89597f, -0.89459f, -0.89322f, -0.89185f, -0.89044f, -0.88904f, -0.88763f, -0.88623f, -0.8848f, -0.88336f, -0.88193f, -0.88046f, -0.87903f, -0.87753f,
--0.87607f, -0.8746f, -0.87311f, -0.87158f, -0.87009f, -0.86856f, -0.86703f, -0.86551f, -0.86398f, -0.86243f, -0.86087f, -0.85931f, -0.85773f, -0.85614f, -0.85455f, -0.85297f, -0.85135f, -0.84973f, -0.84811f, -0.8465f,
--0.84485f, -0.8432f, -0.84155f, -0.8399f, -0.83823f, -0.83655f, -0.83487f, -0.83316f, -0.83148f, -0.82977f, -0.82803f, -0.82632f, -0.82458f, -0.82285f, -0.82111f, -0.81934f, -0.8176f, -0.81583f, -0.81403f, -0.81226f,
--0.81046f, -0.80865f, -0.80685f, -0.80502f, -0.80322f, -0.80139f, -0.79953f, -0.7977f, -0.79584f, -0.79398f, -0.79211f, -0.79022f, -0.78836f, -0.78647f, -0.78455f, -0.78265f, -0.78073f, -0.77881f, -0.77689f, -0.77496f,
--0.77301f, -0.77106f, -0.7691f, -0.76715f, -0.76517f, -0.76318f, -0.7612f, -0.75922f, -0.7572f, -0.75522f, -0.7532f, -0.75116f, -0.74915f, -0.7471f, -0.74506f, -0.74301f, -0.74097f, -0.73889f, -0.73682f, -0.73474f,
--0.73267f, -0.73056f, -0.72845f, -0.72635f, -0.72424f, -0.72214f, -0.72f, -0.71786f, -0.71573f, -0.71359f, -0.71143f, -0.70929f, -0.70712f, -0.70493f, -0.70276f, -0.70056f, -0.69839f, -0.69617f, -0.69397f, -0.69177f,
--0.68954f, -0.68732f, -0.68509f, -0.68286f, -0.6806f, -0.67834f, -0.67609f, -0.67383f, -0.67157f, -0.66928f, -0.66699f, -0.6647f, -0.66241f, -0.66013f, -0.65781f, -0.65549f, -0.65317f, -0.65085f, -0.64853f, -0.64618f,
--0.64383f, -0.64148f, -0.63913f, -0.63678f, -0.6344f, -0.63202f, -0.62964f, -0.62726f, -0.62488f, -0.62247f, -0.62006f, -0.61765f, -0.61523f, -0.61282f, -0.61038f, -0.60794f, -0.60553f, -0.60306f, -0.60062f, -0.59818f,
--0.5957f, -0.59323f, -0.59076f, -0.58829f, -0.58582f, -0.58331f, -0.58081f, -0.57831f, -0.57581f, -0.5733f, -0.5708f, -0.56827f, -0.56573f, -0.5632f, -0.56067f, -0.55814f, -0.55557f, -0.55301f, -0.55048f, -0.54791f,
--0.54532f, -0.54276f, -0.54019f, -0.5376f, -0.535f, -0.53241f, -0.52982f, -0.52719f, -0.5246f, -0.52197f, -0.51935f, -0.51675f, -0.5141f, -0.51147f, -0.50885f, -0.5062f, -0.50354f, -0.50089f, -0.49823f, -0.49557f,
--0.49292f, -0.49023f, -0.48755f, -0.48486f, -0.48218f, -0.47949f, -0.47681f, -0.47412f, -0.47141f, -0.46869f, -0.46597f, -0.46326f, -0.46054f, -0.45782f, -0.45508f, -0.45236f, -0.44962f, -0.44687f, -0.44412f, -0.44138f,
--0.43863f, -0.43585f, -0.43311f, -0.43033f, -0.42755f, -0.42477f, -0.422f, -0.41922f, -0.41644f, -0.41364f, -0.41086f, -0.40805f, -0.40524f, -0.40244f, -0.39963f, -0.39682f, -0.39401f, -0.39117f, -0.38837f, -0.38553f,
--0.38269f, -0.37985f, -0.37701f, -0.37418f, -0.37134f, -0.36847f, -0.36563f, -0.36276f, -0.35989f, -0.35706f, -0.35419f, -0.35129f, -0.34842f, -0.34555f, -0.34268f, -0.33978f, -0.33691f, -0.33401f, -0.33112f, -0.32822f,
--0.32532f, -0.32242f, -0.31952f, -0.31659f, -0.31369f, -0.31079f, -0.30786f, -0.30493f, -0.302f, -0.2991f, -0.29617f, -0.29324f, -0.29028f, -0.28735f, -0.28442f, -0.28146f, -0.27853f, -0.27557f, -0.27264f, -0.26968f,
--0.26672f, -0.26376f, -0.2608f, -0.25784f, -0.25488f, -0.25192f, -0.24893f, -0.24597f, -0.24298f, -0.24002f, -0.23703f, -0.23404f, -0.23108f, -0.22809f, -0.2251f, -0.22211f, -0.21912f, -0.21613f, -0.21313f, -0.21011f,
--0.20712f, -0.20413f, -0.20111f, -0.19812f, -0.1951f, -0.19208f, -0.18909f, -0.18607f, -0.18304f, -0.18002f, -0.177f, -0.17401f, -0.17096f, -0.16794f, -0.16492f, -0.1619f, -0.15887f, -0.15585f, -0.1528f, -0.14978f,
--0.14673f, -0.14371f, -0.14069f, -0.13763f, -0.13458f, -0.13156f, -0.12851f, -0.12546f, -0.12244f, -0.11938f, -0.11633f, -0.11328f, -0.11023f, -0.10718f, -0.10413f, -0.10107f, -0.09802f, -0.09497f, -0.09192f, -0.08887f,
--0.08582f, -0.08276f, -0.07968f, -0.07663f, -0.07358f, -0.07053f, -0.06744f, -0.06439f, -0.06134f, -0.05826f, -0.05521f, -0.05215f, -0.04907f, -0.04602f, -0.04294f, -0.03989f, -0.03683f, -0.03375f, -0.0307f, -0.02762f,
--0.02457f, -0.02148f, -0.01843f, -0.01535f, -0.0123f, -0.00922f, -0.00616f, -0.00308f
-};
--- a/LEAF/Src/leaf.c
+++ /dev/null
@@ -1,60 +1,0 @@
-/*
-  ==============================================================================
-
-    LEAFCore.c
-    Created: 20 Jan 2017 12:08:14pm
-    Author:  Michael R Mulshine
-
-  ==============================================================================
-*/
-
-#if _WIN32 || _WIN64
-
-#include "..\leaf.h"
-
-#else
-
-#include "../leaf.h"
-
-#endif
-
-LEAF leaf;
-
-void LEAF_init(float sr, int blocksize, char* memory, size_t memorysize, float(*random)(void))
-
-{
-    leaf_pool_init(memory, memorysize);
-    
-    leaf.sampleRate = sr;
-
-    leaf.blockSize = blocksize;
-    
-    leaf.invSampleRate = 1.0f/sr;
-    
-    leaf.twoPiTimesInvSampleRate = leaf.invSampleRate * TWO_PI;
-
-    leaf.random = random;
-    
-    leaf.clearOnAllocation = 0;
-}
-
-
-#define LEAFSampleRateChanged(THIS) leaf.THIS.sampleRateChanged(&leaf.THIS)
-
-void LEAF_setSampleRate(float sampleRate)
-{
-    leaf.sampleRate = sampleRate;
-    leaf.invSampleRate = 1.0f/sampleRate;
-}
-
-float LEAF_getSampleRate()
-{
-    return leaf.sampleRate;
-}
-
-
-//implement a function called this in your user code to catch errors
-__attribute__((weak)) uint8_t LEAF_error(uint8_t whichone)
-{
-    return whichone;
-}
--- a/LEAF/leaf.cpp
+++ /dev/null
@@ -1,45 +1,0 @@
-#if _WIN32 || _WIN64
-
-#include ".\leaf.h"
-#include ".\Src\leaf-math.c"
-#include ".\Src\leaf-mempool.c"
-#include ".\Src\leaf-tables.c"
-#include ".\Src\leaf-distortion.c"
-#include ".\Src\leaf-oscillators.c"
-#include ".\Src\leaf-filters.c"
-#include ".\Src\leaf-delay.c"
-#include ".\Src\leaf-reverb.c"
-#include ".\Src\leaf-effects.c"
-#include ".\Src\leaf-envelopes.c"
-#include ".\Src\leaf-dynamics.c"
-#include ".\Src\leaf-analysis.c"
-#include ".\Src\leaf-instruments.c"
-#include ".\Src\leaf-midi.c"
-#include ".\Src\leaf-sampling.c"
-#include ".\Src\leaf-physical.c"
-#include ".\Src\leaf-electrical.c"
-#include ".\Src\leaf.c"
-
-#else
-
-#include "./leaf.h"
-#include "./Src/leaf-math.c"
-#include "./Src/leaf-mempool.c"
-#include "./Src/leaf-tables.c"
-#include "./Src/leaf-distortion.c"
-#include "./Src/leaf-dynamics.c"
-#include "./Src/leaf-oscillators.c"
-#include "./Src/leaf-filters.c"
-#include "./Src/leaf-delay.c"
-#include "./Src/leaf-reverb.c"
-#include "./Src/leaf-effects.c"
-#include "./Src/leaf-envelopes.c"
-#include "./Src/leaf-analysis.c"
-#include "./Src/leaf-instruments.c"
-#include "./Src/leaf-midi.c"
-#include "./Src/leaf-sampling.c"
-#include "./Src/leaf-physical.c"
-#include "./Src/leaf-electrical.c"
-#include "./Src/leaf.c"
-
-#endif
--- a/LEAF/leaf.h
+++ /dev/null
@@ -1,154 +1,0 @@
-/** BEGIN_JUCE_MODULE_DECLARATION
- 
- ID:            leaf
- vendor:
- version:        0.0.1
- name:
- description:
- website:
- license:        Proprietary
- 
- dependencies:
- 
- END_JUCE_MODULE_DECLARATION
- */
-/*
- ==============================================================================
- 
- leaf.h
- Created: 20 Jan 2017 12:07:26pm
- Author:  Michael R Mulshine
- 
- ==============================================================================
- */
-
-#ifndef LEAF_H_INCLUDED
-#define LEAF_H_INCLUDED
-
-#define LEAF_DEBUG 0
-
-#if LEAF_DEBUG
-#include "../LEAF_JUCEPlugin/JuceLibraryCode/JuceHeader.h"
-#endif
-
-#if _WIN32 || _WIN64
-
-#include ".\Inc\leaf-global.h"
-#include ".\Inc\leaf-math.h"
-#include ".\Inc\leaf-mempool.h"
-#include ".\Inc\leaf-tables.h"
-#include ".\Inc\leaf-distortion.h"
-#include ".\Inc\leaf-oscillators.h"
-#include ".\Inc\leaf-filters.h"
-#include ".\Inc\leaf-delay.h"
-#include ".\Inc\leaf-reverb.h"
-#include ".\Inc\leaf-effects.h"
-#include ".\Inc\leaf-envelopes.h"
-#include ".\Inc\leaf-dynamics.h"
-#include ".\Inc\leaf-analysis.h"
-#include ".\Inc\leaf-instruments.h"
-#include ".\Inc\leaf-midi.h"
-#include ".\Inc\leaf-sampling.h"
-#include ".\Inc\leaf-physical.h"
-#include ".\Inc\leaf-electrical.h"
-
-#else
-
-#include "./Inc/leaf-global.h"
-#include "./Inc/leaf-math.h"
-#include "./Inc/leaf-mempool.h"
-#include "./Inc/leaf-tables.h"
-#include "./Inc/leaf-distortion.h"
-#include "./Inc/leaf-dynamics.h"
-#include "./Inc/leaf-oscillators.h"
-#include "./Inc/leaf-filters.h"
-#include "./Inc/leaf-delay.h"
-#include "./Inc/leaf-reverb.h"
-#include "./Inc/leaf-effects.h"
-#include "./Inc/leaf-envelopes.h"
-#include "./Inc/leaf-analysis.h"
-#include "./Inc/leaf-instruments.h"
-#include "./Inc/leaf-midi.h"
-#include "./Inc/leaf-sampling.h"
-#include "./Inc/leaf-physical.h"
-#include "./Inc/leaf-electrical.h"
-
-#endif
-
-/*! \mainpage LEAF
- *
- * \section intro_sec Introduction
- *
- * This is the introduction.
- *
- * \section install_sec Installation
- *
- * \subsection step1 Step 1: Opening the box
- *
- * etc...
- */
-
-/*!
- * @defgroup leaf LEAF
- * @defgroup oscillators Oscillators
- * @defgroup filters Filters
- * @defgroup delay Delay
- * @defgroup reverb Reverb
- * @defgroup distortion Distortion
- * @defgroup effects Effects
- * @defgroup envelopes Envelopes
- * @defgroup dynamics Dynamics
- * @defgroup analysis Analysis
- * @defgroup instruments Instruments
- * @defgroup midi MIDI
- * @defgroup sampling Sampling
- * @defgroup physical Physical Models
- * @defgroup electrical Electrical Models
- * @defgroup mempool Mempool
- * @defgroup math Math
- */
-
-#ifdef __cplusplus
-extern "C" {
-#endif
-    
-    /*!
-     * @ingroup leaf
-     * @{
-     */
-    
-    //! Initialize the LEAF instance.
-    /*!
-     @param sampleRate The audio sample rate.
-     @param blockSize The audio block size.
-     @param memory A pointer to the memory that will make up the default LEAF mempool.
-     @param memorySize The size of the memory that will make up the default LEAF mempool.
-     @param random A pointer to a random number function. Should return a float >= 0 and < 1.
-     */
-    void        LEAF_init            (float sampleRate, int blockSize, char* memory, size_t memorySize, float(*random)(void));
-    
-    //! Set the sample rate of LEAF.
-    /*!
-     @param sampleRate The new audio sample rate.
-     */
-    void        LEAF_setSampleRate   (float sampleRate);
-    
-    //! Get the sample rate of LEAF.
-    /*!
-     @return The current sample rate as a float.
-     */
-    float       LEAF_getSampleRate   (void);
-    
-
-    __attribute__((weak)) uint8_t LEAF_error(uint8_t whichone);
-    
-    /*!
-     * @}
-     */
-    
-#ifdef __cplusplus
-}
-#endif
-
-#endif  // LEAF_H_INCLUDED
-
binary files a/LEAF_JUCEPlugin/.DS_Store /dev/null differ
--- a/LEAF_JUCEPlugin/LEAF.jucer
+++ b/LEAF_JUCEPlugin/LEAF.jucer
@@ -19,66 +19,66 @@
       <FILE id="mVSe2h" name="basic-oscillators.h" compile="0" resource="0"
             file="../Examples/basic-oscillators.h"/>
     </GROUP>
-    <GROUP id="{14C5E2CD-5D51-3FD3-5677-28BECA29E95E}" name="Source">
-      <GROUP id="{C9F79DF0-2C57-F2B0-7B1B-78A14937E038}" name="LEAF">
-        <GROUP id="{B591B686-9726-94F1-28CD-B08349461C76}" name="Externals">
-          <FILE id="O0YJRY" name="d_fft_mayer.c" compile="1" resource="0" file="../LEAF/Externals/d_fft_mayer.c"/>
-          <FILE id="HdG3WV" name="d_fft_mayer.h" compile="0" resource="0" file="../LEAF/Externals/d_fft_mayer.h"/>
-          <FILE id="Hu4b98" name="trigtbl.h" compile="0" resource="0" file="../LEAF/Externals/trigtbl.h"/>
-        </GROUP>
-        <GROUP id="{0E2E673D-2AE5-AECB-4E28-A1EE29180BD2}" name="Inc">
-          <FILE id="IwBoc4" name="leaf-global.h" compile="0" resource="0" file="../LEAF/Inc/leaf-global.h"/>
-          <FILE id="cmehFw" name="leaf-math.h" compile="0" resource="0" file="../LEAF/Inc/leaf-math.h"/>
-          <FILE id="XQTGHV" name="leaf-mempool.h" compile="0" resource="0" file="../LEAF/Inc/leaf-mempool.h"/>
-          <FILE id="JvZKsP" name="leaf-tables.h" compile="0" resource="0" file="../LEAF/Inc/leaf-tables.h"/>
-          <FILE id="ZBcTKF" name="leaf-oscillators.h" compile="0" resource="0"
-                file="../LEAF/Inc/leaf-oscillators.h"/>
-          <FILE id="EnRmjE" name="leaf-filters.h" compile="0" resource="0" file="../LEAF/Inc/leaf-filters.h"/>
-          <FILE id="wn8tAr" name="leaf-delay.h" compile="0" resource="0" file="../LEAF/Inc/leaf-delay.h"/>
-          <FILE id="XmL4ZE" name="leaf-reverb.h" compile="0" resource="0" file="../LEAF/Inc/leaf-reverb.h"/>
-          <FILE id="dWHebV" name="leaf-distortion.h" compile="0" resource="0"
-                file="../LEAF/Inc/leaf-distortion.h"/>
-          <FILE id="Szb5LP" name="leaf-effects.h" compile="0" resource="0" file="../LEAF/Inc/leaf-effects.h"/>
-          <FILE id="OS2D83" name="leaf-envelopes.h" compile="0" resource="0"
-                file="../LEAF/Inc/leaf-envelopes.h"/>
-          <FILE id="PRkOp2" name="leaf-dynamics.h" compile="0" resource="0" file="../LEAF/Inc/leaf-dynamics.h"/>
-          <FILE id="LPMRGU" name="leaf-analysis.h" compile="0" resource="0" file="../LEAF/Inc/leaf-analysis.h"/>
-          <FILE id="k0yQ8k" name="leaf-instruments.h" compile="0" resource="0"
-                file="../LEAF/Inc/leaf-instruments.h"/>
-          <FILE id="pXe6b5" name="leaf-midi.h" compile="0" resource="0" file="../LEAF/Inc/leaf-midi.h"/>
-          <FILE id="T6KXi7" name="leaf-sampling.h" compile="0" resource="0" file="../LEAF/Inc/leaf-sampling.h"/>
-          <FILE id="KQca5l" name="leaf-physical.h" compile="0" resource="0" file="../LEAF/Inc/leaf-physical.h"/>
-          <FILE id="lJdTFA" name="leaf-electrical.h" compile="0" resource="0"
-                file="../LEAF/Inc/leaf-electrical.h"/>
-        </GROUP>
-        <GROUP id="{A3AE8C8C-29BA-ADB3-DD7D-EEDC2F7B58F3}" name="Src">
-          <FILE id="BFkVGu" name="leaf.c" compile="1" resource="0" file="../LEAF/Src/leaf.c"/>
-          <FILE id="g41P2E" name="leaf-math.c" compile="1" resource="0" file="../LEAF/Src/leaf-math.c"/>
-          <FILE id="Uc4jO6" name="leaf-mempool.c" compile="1" resource="0" file="../LEAF/Src/leaf-mempool.c"/>
-          <FILE id="TxA1Gg" name="leaf-tables.c" compile="1" resource="0" file="../LEAF/Src/leaf-tables.c"/>
-          <FILE id="q5y59A" name="leaf-oscillators.c" compile="1" resource="0"
-                file="../LEAF/Src/leaf-oscillators.c"/>
-          <FILE id="nh9xAo" name="leaf-filters.c" compile="1" resource="0" file="../LEAF/Src/leaf-filters.c"/>
-          <FILE id="lLb7eq" name="leaf-delay.c" compile="1" resource="0" file="../LEAF/Src/leaf-delay.c"/>
-          <FILE id="uyYwEd" name="leaf-reverb.c" compile="1" resource="0" file="../LEAF/Src/leaf-reverb.c"/>
-          <FILE id="E8JjWS" name="leaf-distortion.c" compile="1" resource="0"
-                file="../LEAF/Src/leaf-distortion.c"/>
-          <FILE id="u1aLLR" name="leaf-effects.c" compile="1" resource="0" file="../LEAF/Src/leaf-effects.c"/>
-          <FILE id="uKHzgz" name="leaf-envelopes.c" compile="1" resource="0"
-                file="../LEAF/Src/leaf-envelopes.c"/>
-          <FILE id="Oymcac" name="leaf-dynamics.c" compile="1" resource="0" file="../LEAF/Src/leaf-dynamics.c"/>
-          <FILE id="LVoaGm" name="leaf-analysis.c" compile="1" resource="0" file="../LEAF/Src/leaf-analysis.c"/>
-          <FILE id="HbG7LO" name="leaf-instruments.c" compile="1" resource="0"
-                file="../LEAF/Src/leaf-instruments.c"/>
-          <FILE id="LuoIDh" name="leaf-midi.c" compile="1" resource="0" file="../LEAF/Src/leaf-midi.c"/>
-          <FILE id="nmtoFJ" name="leaf-sampling.c" compile="1" resource="0" file="../LEAF/Src/leaf-sampling.c"/>
-          <FILE id="dgAVr5" name="leaf-physical.c" compile="1" resource="0" file="../LEAF/Src/leaf-physical.c"/>
-          <FILE id="Oh72PT" name="leaf-electrical.c" compile="1" resource="0"
-                file="../LEAF/Src/leaf-electrical.c"/>
-        </GROUP>
-        <FILE id="XvFyGq" name="leaf.cpp" compile="1" resource="0" file="../LEAF/leaf.cpp"/>
-        <FILE id="dmljDQ" name="leaf.h" compile="0" resource="0" file="../LEAF/leaf.h"/>
+    <GROUP id="{C0DBCE2E-4D9F-962C-C47E-F7CB38606873}" name="leaf">
+      <GROUP id="{7B669CEF-E494-BF27-3FB1-FB4DEF70B9B7}" name="Externals">
+        <FILE id="VSPv73" name="d_fft_mayer.c" compile="1" resource="0" file="../leaf/Externals/d_fft_mayer.c"/>
+        <FILE id="aeWDeM" name="d_fft_mayer.h" compile="0" resource="0" file="../leaf/Externals/d_fft_mayer.h"/>
+        <FILE id="KdxKPj" name="trigtbl.h" compile="0" resource="0" file="../leaf/Externals/trigtbl.h"/>
       </GROUP>
+      <GROUP id="{EC3EDB8A-0956-5284-C54A-F810600CDEC2}" name="Inc">
+        <FILE id="msTLOW" name="leaf-analysis.h" compile="0" resource="0" file="../leaf/Inc/leaf-analysis.h"/>
+        <FILE id="tKEeZE" name="leaf-delay.h" compile="0" resource="0" file="../leaf/Inc/leaf-delay.h"/>
+        <FILE id="qOzdHU" name="leaf-distortion.h" compile="0" resource="0"
+              file="../leaf/Inc/leaf-distortion.h"/>
+        <FILE id="nsWjl8" name="leaf-dynamics.h" compile="0" resource="0" file="../leaf/Inc/leaf-dynamics.h"/>
+        <FILE id="XoYynR" name="leaf-effects.h" compile="0" resource="0" file="../leaf/Inc/leaf-effects.h"/>
+        <FILE id="R9q2wU" name="leaf-electrical.h" compile="0" resource="0"
+              file="../leaf/Inc/leaf-electrical.h"/>
+        <FILE id="QU4TIw" name="leaf-envelopes.h" compile="0" resource="0"
+              file="../leaf/Inc/leaf-envelopes.h"/>
+        <FILE id="RAc5kG" name="leaf-filters.h" compile="0" resource="0" file="../leaf/Inc/leaf-filters.h"/>
+        <FILE id="ycRcSF" name="leaf-global.h" compile="0" resource="0" file="../leaf/Inc/leaf-global.h"/>
+        <FILE id="K0YJNC" name="leaf-instruments.h" compile="0" resource="0"
+              file="../leaf/Inc/leaf-instruments.h"/>
+        <FILE id="j38x1X" name="leaf-math.h" compile="0" resource="0" file="../leaf/Inc/leaf-math.h"/>
+        <FILE id="ZkrZ5C" name="leaf-mempool.h" compile="0" resource="0" file="../leaf/Inc/leaf-mempool.h"/>
+        <FILE id="zm7spT" name="leaf-midi.h" compile="0" resource="0" file="../leaf/Inc/leaf-midi.h"/>
+        <FILE id="sYGLnq" name="leaf-oscillators.h" compile="0" resource="0"
+              file="../leaf/Inc/leaf-oscillators.h"/>
+        <FILE id="XLd1j8" name="leaf-physical.h" compile="0" resource="0" file="../leaf/Inc/leaf-physical.h"/>
+        <FILE id="G04QJZ" name="leaf-reverb.h" compile="0" resource="0" file="../leaf/Inc/leaf-reverb.h"/>
+        <FILE id="ersQ3H" name="leaf-sampling.h" compile="0" resource="0" file="../leaf/Inc/leaf-sampling.h"/>
+        <FILE id="d9gT16" name="leaf-tables.h" compile="0" resource="0" file="../leaf/Inc/leaf-tables.h"/>
+      </GROUP>
+      <GROUP id="{5AC3E39D-3FB8-4DBC-E4DF-58089B39F56B}" name="Src">
+        <FILE id="mvqzWv" name="leaf-analysis.c" compile="1" resource="0" file="../leaf/Src/leaf-analysis.c"/>
+        <FILE id="GhICMu" name="leaf-delay.c" compile="1" resource="0" file="../leaf/Src/leaf-delay.c"/>
+        <FILE id="ni7IrI" name="leaf-distortion.c" compile="1" resource="0"
+              file="../leaf/Src/leaf-distortion.c"/>
+        <FILE id="m9nHyV" name="leaf-dynamics.c" compile="1" resource="0" file="../leaf/Src/leaf-dynamics.c"/>
+        <FILE id="kYyMRy" name="leaf-effects.c" compile="1" resource="0" file="../leaf/Src/leaf-effects.c"/>
+        <FILE id="RQ0UQg" name="leaf-electrical.c" compile="1" resource="0"
+              file="../leaf/Src/leaf-electrical.c"/>
+        <FILE id="wAUFsO" name="leaf-envelopes.c" compile="1" resource="0"
+              file="../leaf/Src/leaf-envelopes.c"/>
+        <FILE id="vxRnRA" name="leaf-filters.c" compile="1" resource="0" file="../leaf/Src/leaf-filters.c"/>
+        <FILE id="r9Lgbm" name="leaf-instruments.c" compile="1" resource="0"
+              file="../leaf/Src/leaf-instruments.c"/>
+        <FILE id="RGRryt" name="leaf-math.c" compile="1" resource="0" file="../leaf/Src/leaf-math.c"/>
+        <FILE id="CPYpj6" name="leaf-mempool.c" compile="1" resource="0" file="../leaf/Src/leaf-mempool.c"/>
+        <FILE id="qKY7Zo" name="leaf-midi.c" compile="1" resource="0" file="../leaf/Src/leaf-midi.c"/>
+        <FILE id="PtwEIj" name="leaf-oscillators.c" compile="1" resource="0"
+              file="../leaf/Src/leaf-oscillators.c"/>
+        <FILE id="kExe4m" name="leaf-physical.c" compile="1" resource="0" file="../leaf/Src/leaf-physical.c"/>
+        <FILE id="MzKQoB" name="leaf-reverb.c" compile="1" resource="0" file="../leaf/Src/leaf-reverb.c"/>
+        <FILE id="lNL3cQ" name="leaf-sampling.c" compile="1" resource="0" file="../leaf/Src/leaf-sampling.c"/>
+        <FILE id="itYOGw" name="leaf-tables.c" compile="1" resource="0" file="../leaf/Src/leaf-tables.c"/>
+        <FILE id="l1ISv0" name="leaf.c" compile="1" resource="0" file="../leaf/Src/leaf.c"/>
+      </GROUP>
+      <FILE id="dcLQIn" name="leaf.cpp" compile="1" resource="0" file="../leaf/leaf.cpp"/>
+      <FILE id="mFVaLG" name="leaf.h" compile="0" resource="0" file="../leaf/leaf.h"/>
+    </GROUP>
+    <GROUP id="{14C5E2CD-5D51-3FD3-5677-28BECA29E95E}" name="Source">
       <GROUP id="{FFA9F0EC-F45A-74FC-5A10-9B3CAA731E7C}" name="External">
         <FILE id="ixwZea" name="Yin.h" compile="0" resource="0" file="Source/Yin.h"/>
         <FILE id="wbnjmF" name="Yin.cpp" compile="1" resource="0" file="Source/Yin.cpp"/>
binary files a/LEAF_JUCEPlugin/Source/.DS_Store /dev/null differ
--- a/LEAF_JUCEPlugin/Source/LEAFTest.h
+++ b/LEAF_JUCEPlugin/Source/LEAFTest.h
@@ -13,7 +13,7 @@
 
 #include "LEAFLink.h"
 
-#include "../../LEAF/leaf.h"
+#include "../../leaf/leaf.h"
 
 #include "Yin.h"
 
binary files a/leaf/.DS_Store /dev/null differ
binary files a/leaf/Externals/.DS_Store /dev/null differ
--- a/leaf/leaf.h
+++ b/leaf/leaf.h
@@ -6,7 +6,7 @@
  name:
  description:
  website:
- license:        Proprietary
+ license:        
  
  dependencies: