pcm_format: implement conversion to float
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@ -24,6 +24,7 @@
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#include "pcm_byteswap.h"
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#include "pcm_pack.h"
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#include "audio_format.h"
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#include "glib_compat.h"
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#include <assert.h>
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#include <string.h>
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@ -56,7 +57,6 @@ void pcm_convert_deinit(struct pcm_convert_state *state)
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pcm_buffer_deinit(&state->byteswap_buffer);
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}
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G_GNUC_UNUSED
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static const void *
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pcm_convert_channels(struct pcm_buffer *buffer, enum sample_format format,
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uint8_t dest_channels,
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@ -312,6 +312,67 @@ pcm_convert_32(struct pcm_convert_state *state,
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return buf;
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}
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static const float *
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pcm_convert_float(struct pcm_convert_state *state,
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const struct audio_format *src_format,
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const void *src_buffer, size_t src_size,
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const struct audio_format *dest_format, size_t *dest_size_r,
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GError **error_r)
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{
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const float *buffer = src_buffer;
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size_t size = src_size;
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assert(dest_format->format == SAMPLE_FORMAT_FLOAT);
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if (src_format->reverse_endian || dest_format->reverse_endian) {
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g_set_error_literal(error_r, pcm_convert_quark(), 0,
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"Reverse endian not supported");
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return NULL;
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}
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/* convert channels first, hoping the source format is
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supported (float is not) */
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if (dest_format->channels != src_format->channels) {
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buffer = pcm_convert_channels(&state->channels_buffer,
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src_format->format,
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dest_format->channels,
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src_format->channels,
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buffer, size, &size, error_r);
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if (buffer == NULL)
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return NULL;
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}
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/* convert to float now */
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buffer = pcm_convert_to_float(&state->format_buffer,
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src_format->format,
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buffer, size, &size);
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if (buffer == NULL) {
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g_set_error(error_r, pcm_convert_quark(), 0,
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"Conversion from %s to float is not implemented",
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sample_format_to_string(src_format->format));
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return NULL;
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}
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/* resample with float, because this is the best format for
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libsamplerate */
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if (src_format->sample_rate != dest_format->sample_rate) {
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buffer = pcm_resample_float(&state->resample,
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dest_format->channels,
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src_format->sample_rate,
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buffer, size,
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dest_format->sample_rate, &size,
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error_r);
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if (buffer == NULL)
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return NULL;
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}
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*dest_size_r = size;
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return buffer;
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}
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const void *
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pcm_convert(struct pcm_convert_state *state,
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const struct audio_format *src_format,
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@ -359,6 +420,12 @@ pcm_convert(struct pcm_convert_state *state,
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dest_format, dest_size_r,
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error_r);
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case SAMPLE_FORMAT_FLOAT:
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return pcm_convert_float(state,
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src_format, src, src_size,
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dest_format, dest_size_r,
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error_r);
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default:
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g_set_error(error_r, pcm_convert_quark(), 0,
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"PCM conversion to %s is not implemented",
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135
src/pcm_format.c
135
src/pcm_format.c
@ -418,3 +418,138 @@ pcm_convert_to_32(struct pcm_buffer *buffer,
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return NULL;
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}
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static void
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pcm_convert_8_to_float(float *out, const int8_t *in, const int8_t *in_end)
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{
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enum { in_bits = sizeof(*in) * 8 };
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static const float factor = 2.0f / (1 << in_bits);
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while (in < in_end)
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*out++ = (float)*in++ * factor;
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}
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static void
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pcm_convert_16_to_float(float *out, const int16_t *in, const int16_t *in_end)
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{
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enum { in_bits = sizeof(*in) * 8 };
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static const float factor = 2.0f / (1 << in_bits);
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while (in < in_end)
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*out++ = (float)*in++ * factor;
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}
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static void
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pcm_convert_24_to_float(float *out, const int32_t *in, const int32_t *in_end)
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{
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enum { in_bits = 24 };
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static const float factor = 2.0f / (1 << in_bits);
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while (in < in_end)
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*out++ = (float)*in++ * factor;
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}
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static void
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pcm_convert_32_to_float(float *out, const int32_t *in, const int32_t *in_end)
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{
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enum { in_bits = sizeof(*in) * 8 };
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static const float factor = 0.5f / (1 << (in_bits - 2));
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while (in < in_end)
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*out++ = (float)*in++ * factor;
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}
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static float *
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pcm_allocate_8_to_float(struct pcm_buffer *buffer,
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const int8_t *src, size_t src_size,
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size_t *dest_size_r)
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{
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float *dest;
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*dest_size_r = src_size / sizeof(*src) * sizeof(*dest);
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dest = pcm_buffer_get(buffer, *dest_size_r);
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pcm_convert_8_to_float(dest, src, pcm_end_pointer(src, src_size));
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return dest;
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}
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static float *
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pcm_allocate_16_to_float(struct pcm_buffer *buffer,
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const int16_t *src, size_t src_size,
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size_t *dest_size_r)
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{
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float *dest;
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*dest_size_r = src_size * 2;
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assert(*dest_size_r == src_size / sizeof(*src) * sizeof(*dest));
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dest = pcm_buffer_get(buffer, *dest_size_r);
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pcm_convert_16_to_float(dest, src, pcm_end_pointer(src, src_size));
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return dest;
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}
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static float *
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pcm_allocate_24_to_float(struct pcm_buffer *buffer,
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const uint8_t *src,
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size_t src_size, size_t *dest_size_r)
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{
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/* convert to S24_P32 first */
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int32_t *tmp = pcm_allocate_24_to_24p32(buffer, src, src_size,
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dest_size_r);
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/* convert to float in-place */
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float *dest = (float *)tmp;
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pcm_convert_24_to_float(dest, tmp, pcm_end_pointer(tmp, *dest_size_r));
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return dest;
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}
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static float *
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pcm_allocate_24p32_to_float(struct pcm_buffer *buffer,
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const int32_t *src, size_t src_size,
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size_t *dest_size_r)
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{
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*dest_size_r = src_size;
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float *dest = pcm_buffer_get(buffer, *dest_size_r);
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pcm_convert_24_to_float(dest, src, pcm_end_pointer(src, src_size));
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return dest;
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}
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static float *
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pcm_allocate_32_to_float(struct pcm_buffer *buffer,
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const int32_t *src, size_t src_size,
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size_t *dest_size_r)
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{
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*dest_size_r = src_size;
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float *dest = pcm_buffer_get(buffer, *dest_size_r);
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pcm_convert_32_to_float(dest, src, pcm_end_pointer(src, src_size));
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return dest;
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}
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const float *
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pcm_convert_to_float(struct pcm_buffer *buffer,
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enum sample_format src_format, const void *src,
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size_t src_size, size_t *dest_size_r)
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{
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switch (src_format) {
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case SAMPLE_FORMAT_UNDEFINED:
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break;
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case SAMPLE_FORMAT_S8:
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return pcm_allocate_8_to_float(buffer,
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src, src_size, dest_size_r);
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case SAMPLE_FORMAT_S16:
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return pcm_allocate_16_to_float(buffer,
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src, src_size, dest_size_r);
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case SAMPLE_FORMAT_S24:
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return pcm_allocate_24_to_float(buffer,
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src, src_size, dest_size_r);
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case SAMPLE_FORMAT_S24_P32:
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return pcm_allocate_24p32_to_float(buffer,
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src, src_size, dest_size_r);
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case SAMPLE_FORMAT_S32:
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return pcm_allocate_32_to_float(buffer,
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src, src_size, dest_size_r);
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case SAMPLE_FORMAT_FLOAT:
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*dest_size_r = src_size;
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return src;
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}
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return NULL;
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}
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@ -75,4 +75,19 @@ pcm_convert_to_32(struct pcm_buffer *buffer,
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enum sample_format src_format, const void *src,
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size_t src_size, size_t *dest_size_r);
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/**
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* Converts PCM samples to 32 bit floating point.
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*
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* @param buffer a pcm_buffer object
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* @param bits the number of in the source buffer
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* @param src the source PCM buffer
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* @param src_size the size of #src in bytes
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* @param dest_size_r returns the number of bytes of the destination buffer
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* @return the destination buffer
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*/
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const float *
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pcm_convert_to_float(struct pcm_buffer *buffer,
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enum sample_format src_format, const void *src,
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size_t src_size, size_t *dest_size_r);
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#endif
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