ref: 8a83ad3cca8596b34ff0d0faadd0d7b5c801faea
dir: /src/src_zoh.c/
/* ** Copyright (c) 2002-2016, Erik de Castro Lopo <erikd@mega-nerd.com> ** All rights reserved. ** ** This code is released under 2-clause BSD license. Please see the ** file at : https://github.com/libsndfile/libsamplerate/blob/master/COPYING */ #include <stdio.h> #include <stdlib.h> #include <string.h> #include <math.h> #include "src_config.h" #include "common.h" static enum SRC_ERR zoh_vari_process (SRC_STATE *state, SRC_DATA *data) ; static void zoh_reset (SRC_STATE *state) ; static enum SRC_ERR zoh_copy (SRC_STATE *from, SRC_STATE *to) ; static void zoh_close (SRC_STATE *state) ; /*======================================================================================== */ #define ZOH_MAGIC_MARKER MAKE_MAGIC ('s', 'r', 'c', 'z', 'o', 'h') typedef struct { int zoh_magic_marker ; bool dirty ; long in_count, in_used ; long out_count, out_gen ; float last_value [] ; } ZOH_DATA ; /*---------------------------------------------------------------------------------------- */ static enum SRC_ERR zoh_vari_process (SRC_STATE *state, SRC_DATA *data) { ZOH_DATA *priv ; double src_ratio, input_index, rem ; int ch ; if (data->input_frames <= 0) return SRC_ERR_NO_ERROR ; if (state->private_data == NULL) return SRC_ERR_NO_PRIVATE ; priv = (ZOH_DATA*) state->private_data ; if (!priv->dirty) { /* If we have just been reset, set the last_value data. */ for (ch = 0 ; ch < state->channels ; ch++) priv->last_value [ch] = data->data_in [ch] ; priv->dirty = true ; } ; priv->in_count = data->input_frames * state->channels ; priv->out_count = data->output_frames * state->channels ; priv->in_used = priv->out_gen = 0 ; src_ratio = state->last_ratio ; if (is_bad_src_ratio (src_ratio)) return SRC_ERR_BAD_INTERNAL_STATE ; input_index = state->last_position ; /* Calculate samples before first sample in input array. */ while (input_index < 1.0 && priv->out_gen < priv->out_count) { if (priv->in_used + state->channels * input_index >= priv->in_count) break ; if (priv->out_count > 0 && fabs (state->last_ratio - data->src_ratio) > SRC_MIN_RATIO_DIFF) src_ratio = state->last_ratio + priv->out_gen * (data->src_ratio - state->last_ratio) / priv->out_count ; for (ch = 0 ; ch < state->channels ; ch++) { data->data_out [priv->out_gen] = priv->last_value [ch] ; priv->out_gen ++ ; } ; /* Figure out the next index. */ input_index += 1.0 / src_ratio ; } ; rem = fmod_one (input_index) ; priv->in_used += state->channels * lrint (input_index - rem) ; input_index = rem ; /* Main processing loop. */ while (priv->out_gen < priv->out_count && priv->in_used + state->channels * input_index <= priv->in_count) { if (priv->out_count > 0 && fabs (state->last_ratio - data->src_ratio) > SRC_MIN_RATIO_DIFF) src_ratio = state->last_ratio + priv->out_gen * (data->src_ratio - state->last_ratio) / priv->out_count ; for (ch = 0 ; ch < state->channels ; ch++) { data->data_out [priv->out_gen] = data->data_in [priv->in_used - state->channels + ch] ; priv->out_gen ++ ; } ; /* Figure out the next index. */ input_index += 1.0 / src_ratio ; rem = fmod_one (input_index) ; priv->in_used += state->channels * lrint (input_index - rem) ; input_index = rem ; } ; if (priv->in_used > priv->in_count) { input_index += (priv->in_used - priv->in_count) / state->channels ; priv->in_used = priv->in_count ; } ; state->last_position = input_index ; if (priv->in_used > 0) for (ch = 0 ; ch < state->channels ; ch++) priv->last_value [ch] = data->data_in [priv->in_used - state->channels + ch] ; /* Save current ratio rather then target ratio. */ state->last_ratio = src_ratio ; data->input_frames_used = priv->in_used / state->channels ; data->output_frames_gen = priv->out_gen / state->channels ; return SRC_ERR_NO_ERROR ; } /* zoh_vari_process */ /*------------------------------------------------------------------------------ */ const char* zoh_get_name (int src_enum) { if (src_enum == SRC_ZERO_ORDER_HOLD) return "ZOH Interpolator" ; return NULL ; } /* zoh_get_name */ const char* zoh_get_description (int src_enum) { if (src_enum == SRC_ZERO_ORDER_HOLD) return "Zero order hold interpolator, very fast, poor quality." ; return NULL ; } /* zoh_get_descrition */ enum SRC_ERR zoh_set_converter (SRC_STATE *state, int src_enum) { ZOH_DATA *priv = NULL ; if (src_enum != SRC_ZERO_ORDER_HOLD) return SRC_ERR_BAD_CONVERTER ; zoh_close (state) ; if (state->private_data == NULL) { priv = ZERO_ALLOC (ZOH_DATA, sizeof (*priv) + state->channels * sizeof (float)) ; state->private_data = priv ; } ; if (priv == NULL) return SRC_ERR_MALLOC_FAILED ; priv->zoh_magic_marker = ZOH_MAGIC_MARKER ; state->const_process = zoh_vari_process ; state->vari_process = zoh_vari_process ; state->reset = zoh_reset ; state->copy = zoh_copy ; state->close = zoh_close ; zoh_reset (state) ; return SRC_ERR_NO_ERROR ; } /* zoh_set_converter */ /*=================================================================================== */ static void zoh_reset (SRC_STATE *state) { ZOH_DATA *priv ; priv = (ZOH_DATA*) state->private_data ; if (priv == NULL) return ; priv->dirty = false ; memset (priv->last_value, 0, sizeof (priv->last_value [0]) * state->channels) ; return ; } /* zoh_reset */ static enum SRC_ERR zoh_copy (SRC_STATE *from, SRC_STATE *to) { if (from->private_data == NULL) return SRC_ERR_NO_PRIVATE ; ZOH_DATA *to_priv = NULL ; ZOH_DATA* from_priv = (ZOH_DATA*) from->private_data ; size_t private_size = sizeof (*to_priv) + from->channels * sizeof (float) ; if ((to_priv = ZERO_ALLOC (ZOH_DATA, private_size)) == NULL) return SRC_ERR_MALLOC_FAILED ; memcpy (to_priv, from_priv, private_size) ; to->private_data = to_priv ; return SRC_ERR_NO_ERROR ; } /* zoh_copy */ static void zoh_close (SRC_STATE *state) { if (state) { if (state->private_data) { free (state->private_data) ; state->private_data = NULL ; } } } /* zoh_close */