audio_format: basic support for floating point samples
Support for conversion from float to 16, 24 and 32 bit integer samples.
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13ad2b4dc2
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NEWS
1
NEWS
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@ -25,6 +25,7 @@ ver 0.17 (2011/??/??)
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* state_file: add option "restore_paused"
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* cue: show CUE track numbers
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* allow port specification in "bind_to_address" settings
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* support floating point samples
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ver 0.16.5 (2010/10/09)
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@ -332,7 +332,8 @@ cd mpd-version</programlisting>
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<varname>24_3</varname> (signed 24 bit integer
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samples, no padding, 3 bytes per sample),
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<varname>32</varname> (signed 32 bit integer
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samples).
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samples), <varname>f</varname> (32 bit floating
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point, -1.0 to 1.0).
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</para>
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</entry>
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</row>
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@ -68,6 +68,9 @@ sample_format_to_string(enum sample_format format)
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case SAMPLE_FORMAT_S32:
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return "32";
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case SAMPLE_FORMAT_FLOAT:
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return "f";
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}
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/* unreachable */
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@ -43,6 +43,12 @@ enum sample_format {
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SAMPLE_FORMAT_S24_P32,
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SAMPLE_FORMAT_S32,
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/**
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* 32 bit floating point samples in the host's format. The
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* range is -1.0f to +1.0f.
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*/
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SAMPLE_FORMAT_FLOAT,
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};
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static const unsigned MAX_CHANNELS = 8;
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@ -168,6 +174,7 @@ audio_valid_sample_format(enum sample_format format)
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case SAMPLE_FORMAT_S24:
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case SAMPLE_FORMAT_S24_P32:
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case SAMPLE_FORMAT_S32:
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case SAMPLE_FORMAT_FLOAT:
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return true;
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case SAMPLE_FORMAT_UNDEFINED:
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@ -241,6 +248,7 @@ sample_format_size(enum sample_format format)
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case SAMPLE_FORMAT_S24_P32:
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case SAMPLE_FORMAT_S32:
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case SAMPLE_FORMAT_FLOAT:
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return 4;
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case SAMPLE_FORMAT_UNDEFINED:
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@ -81,6 +81,12 @@ parse_sample_format(const char *src, bool mask,
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return true;
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}
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if (*src == 'f') {
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*sample_format_r = SAMPLE_FORMAT_FLOAT;
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*endptr_r = src + 1;
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return true;
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}
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value = strtoul(src, &endptr, 10);
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if (endptr == src) {
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g_set_error(error_r, audio_parser_quark(), 0,
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@ -102,6 +102,7 @@ flac_convert(void *dest,
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break;
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case SAMPLE_FORMAT_S24:
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case SAMPLE_FORMAT_FLOAT:
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case SAMPLE_FORMAT_UNDEFINED:
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/* unreachable */
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assert(false);
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@ -212,6 +212,9 @@ get_bitformat(enum sample_format sample_format)
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case SAMPLE_FORMAT_S32:
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return SND_PCM_FORMAT_S32;
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case SAMPLE_FORMAT_FLOAT:
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return SND_PCM_FORMAT_FLOAT;
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}
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assert(false);
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@ -395,6 +395,7 @@ sample_format_to_oss(enum sample_format format)
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{
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switch (format) {
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case SAMPLE_FORMAT_UNDEFINED:
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case SAMPLE_FORMAT_FLOAT:
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return AFMT_QUERY;
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case SAMPLE_FORMAT_S8:
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@ -69,6 +69,7 @@ pcm_byteswap(struct pcm_buffer *buffer, enum sample_format format,
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switch (format) {
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case SAMPLE_FORMAT_UNDEFINED:
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case SAMPLE_FORMAT_S24:
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case SAMPLE_FORMAT_FLOAT:
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/* not implemented */
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return NULL;
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@ -46,6 +46,18 @@ pcm_convert_32_to_16(struct pcm_dither *dither,
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pcm_dither_32_to_16(dither, out, in, in_end);
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}
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static void
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pcm_convert_float_to_16(int16_t *out, const float *in, const float *in_end)
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{
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const unsigned OUT_BITS = 16;
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const float factor = 1 << (OUT_BITS - 1);
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while (in < in_end) {
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int sample = *in++ * factor;
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*out++ = pcm_clamp_16(sample);
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}
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}
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static int16_t *
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pcm_allocate_8_to_16(struct pcm_buffer *buffer,
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const int8_t *src, size_t src_size, size_t *dest_size_r)
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@ -112,6 +124,20 @@ pcm_allocate_32_to_16(struct pcm_buffer *buffer, struct pcm_dither *dither,
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return dest;
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}
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static int16_t *
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pcm_allocate_float_to_16(struct pcm_buffer *buffer,
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const float *src, size_t src_size,
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size_t *dest_size_r)
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{
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int16_t *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_float_to_16(dest, src,
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pcm_end_pointer(src, src_size));
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return dest;
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}
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const int16_t *
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pcm_convert_to_16(struct pcm_buffer *buffer, struct pcm_dither *dither,
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enum sample_format src_format, const void *src,
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@ -142,6 +168,10 @@ pcm_convert_to_16(struct pcm_buffer *buffer, struct pcm_dither *dither,
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case SAMPLE_FORMAT_S32:
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return pcm_allocate_32_to_16(buffer, dither, src, src_size,
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dest_size_r);
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case SAMPLE_FORMAT_FLOAT:
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return pcm_allocate_float_to_16(buffer, src, src_size,
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dest_size_r);
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}
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return NULL;
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@ -170,6 +200,18 @@ pcm_convert_32_to_24(int32_t *restrict out,
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*out++ = *in++ >> 8;
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}
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static void
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pcm_convert_float_to_24(int32_t *out, const float *in, const float *in_end)
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{
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const unsigned OUT_BITS = 24;
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const float factor = 1 << (OUT_BITS - 1);
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while (in < in_end) {
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int sample = *in++ * factor;
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*out++ = pcm_clamp_24(sample);
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}
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}
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static int32_t *
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pcm_allocate_8_to_24(struct pcm_buffer *buffer,
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const int8_t *src, size_t src_size, size_t *dest_size_r)
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@ -203,6 +245,17 @@ pcm_allocate_32_to_24(struct pcm_buffer *buffer,
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return dest;
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}
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static int32_t *
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pcm_allocate_float_to_24(struct pcm_buffer *buffer,
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const float *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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int32_t *dest = pcm_buffer_get(buffer, *dest_size_r);
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pcm_convert_float_to_24(dest, src, pcm_end_pointer(src, src_size));
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return dest;
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}
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const int32_t *
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pcm_convert_to_24(struct pcm_buffer *buffer,
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enum sample_format src_format, const void *src,
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@ -233,6 +286,10 @@ pcm_convert_to_24(struct pcm_buffer *buffer,
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case SAMPLE_FORMAT_S32:
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return pcm_allocate_32_to_24(buffer, src, src_size,
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dest_size_r);
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case SAMPLE_FORMAT_FLOAT:
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return pcm_allocate_float_to_24(buffer, src, src_size,
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dest_size_r);
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}
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return NULL;
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@ -309,6 +366,20 @@ pcm_allocate_24p32_to_32(struct pcm_buffer *buffer,
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return dest;
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}
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static int32_t *
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pcm_allocate_float_to_32(struct pcm_buffer *buffer,
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const float *src, size_t src_size,
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size_t *dest_size_r)
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{
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/* convert to S24_P32 first */
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int32_t *dest = pcm_allocate_float_to_24(buffer, src, src_size,
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dest_size_r);
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/* convert to 32 bit in-place */
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pcm_convert_24_to_32(dest, dest, pcm_end_pointer(dest, *dest_size_r));
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return dest;
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}
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const int32_t *
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pcm_convert_to_32(struct pcm_buffer *buffer,
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enum sample_format src_format, const void *src,
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@ -339,6 +410,10 @@ pcm_convert_to_32(struct pcm_buffer *buffer,
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case SAMPLE_FORMAT_S32:
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*dest_size_r = src_size;
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return src;
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case SAMPLE_FORMAT_FLOAT:
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return pcm_allocate_float_to_32(buffer, src, src_size,
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dest_size_r);
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}
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return NULL;
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@ -128,6 +128,10 @@ pcm_add_vol(void *buffer1, const void *buffer2, size_t size,
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pcm_add_vol_32((int32_t *)buffer1, (const int32_t *)buffer2,
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size / 4, vol1, vol2);
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return true;
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case SAMPLE_FORMAT_FLOAT:
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/* XXX */
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return false;
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}
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/* unreachable */
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@ -216,6 +220,10 @@ pcm_add(void *buffer1, const void *buffer2, size_t size,
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case SAMPLE_FORMAT_S32:
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pcm_add_32((int32_t *)buffer1, (const int32_t *)buffer2, size / 4);
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return true;
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case SAMPLE_FORMAT_FLOAT:
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/* XXX */
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return false;
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}
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/* unreachable */
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@ -63,4 +63,32 @@ pcm_range_64(int64_t sample, unsigned bits)
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return sample;
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}
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G_GNUC_CONST
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static inline int16_t
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pcm_clamp_16(int x)
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{
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static const int32_t MIN_VALUE = G_MININT16;
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static const int32_t MAX_VALUE = G_MAXINT16;
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if (G_UNLIKELY(x < MIN_VALUE))
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return MIN_VALUE;
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if (G_UNLIKELY(x > MAX_VALUE))
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return MAX_VALUE;
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return x;
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}
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G_GNUC_CONST
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static inline int32_t
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pcm_clamp_24(int x)
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{
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static const int32_t MIN_VALUE = -(1 << 23);
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static const int32_t MAX_VALUE = (1 << 23) - 1;
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if (G_UNLIKELY(x < MIN_VALUE))
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return MIN_VALUE;
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if (G_UNLIKELY(x > MAX_VALUE))
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return MAX_VALUE;
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return x;
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}
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#endif
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@ -167,6 +167,10 @@ pcm_volume(void *buffer, size_t length,
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case SAMPLE_FORMAT_S32:
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pcm_volume_change_32(buffer, end, volume);
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return true;
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case SAMPLE_FORMAT_FLOAT:
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/* XXX */
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return false;
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}
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/* unreachable */
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