PcmUtils: remove pcm_range(), use PcmClamp() instead
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@ -37,7 +37,7 @@ pcm_add_vol_8(int8_t *buffer1, const int8_t *buffer2,
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pcm_volume_dither() + PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer1++ = pcm_range(sample1, 8);
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*buffer1++ = PcmClamp<int8_t, int32_t, 8>(sample1);
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--num_samples;
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}
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}
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@ -54,7 +54,7 @@ pcm_add_vol_16(int16_t *buffer1, const int16_t *buffer2,
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pcm_volume_dither() + PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer1++ = pcm_range(sample1, 16);
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*buffer1++ = PcmClamp<int16_t, int32_t, 16>(sample1);
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--num_samples;
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}
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}
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@ -71,7 +71,7 @@ pcm_add_vol_24(int32_t *buffer1, const int32_t *buffer2,
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pcm_volume_dither() + PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer1++ = pcm_range(sample1, 24);
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*buffer1++ = PcmClamp<int32_t, int64_t, 24>(sample1);
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--num_samples;
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}
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}
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@ -88,7 +88,7 @@ pcm_add_vol_32(int32_t *buffer1, const int32_t *buffer2,
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pcm_volume_dither() + PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer1++ = pcm_range_64(sample1, 32);
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*buffer1++ = PcmClamp<int32_t, int64_t, 32>(sample1);
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--num_samples;
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}
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}
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@ -160,7 +160,7 @@ pcm_add_8(int8_t *buffer1, const int8_t *buffer2, unsigned num_samples)
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sample1 += sample2;
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*buffer1++ = pcm_range(sample1, 8);
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*buffer1++ = PcmClamp<int8_t, int32_t, 8>(sample1);
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--num_samples;
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}
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}
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@ -174,7 +174,7 @@ pcm_add_16(int16_t *buffer1, const int16_t *buffer2, unsigned num_samples)
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sample1 += sample2;
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*buffer1++ = pcm_range(sample1, 16);
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*buffer1++ = PcmClamp<int16_t, int32_t, 16>(sample1);
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--num_samples;
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}
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}
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@ -188,7 +188,7 @@ pcm_add_24(int32_t *buffer1, const int32_t *buffer2, unsigned num_samples)
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sample1 += sample2;
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*buffer1++ = pcm_range(sample1, 24);
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*buffer1++ = PcmClamp<int32_t, int64_t, 24>(sample1);
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--num_samples;
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}
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}
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@ -202,7 +202,7 @@ pcm_add_32(int32_t *buffer1, const int32_t *buffer2, unsigned num_samples)
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sample1 += sample2;
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*buffer1++ = pcm_range_64(sample1, 32);
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*buffer1++ = PcmClamp<int32_t, int64_t, 32>(sample1);
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--num_samples;
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}
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}
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@ -42,30 +42,6 @@ pcm_end_pointer(const T *p, size_t size)
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* Check if the value is within the range of the provided bit size,
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* and caps it if necessary.
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*/
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static inline int32_t
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pcm_range(int32_t sample, unsigned bits)
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{
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if (gcc_unlikely(sample < (-1 << (bits - 1))))
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return -1 << (bits - 1);
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if (gcc_unlikely(sample >= (1 << (bits - 1))))
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return (1 << (bits - 1)) - 1;
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return sample;
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}
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/**
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* Check if the value is within the range of the provided bit size,
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* and caps it if necessary.
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*/
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static inline int64_t
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pcm_range_64(int64_t sample, unsigned bits)
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{
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if (gcc_unlikely(sample < ((int64_t)-1 << (bits - 1))))
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return (int64_t)-1 << (bits - 1);
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if (gcc_unlikely(sample >= ((int64_t)1 << (bits - 1))))
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return ((int64_t)1 << (bits - 1)) - 1;
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return sample;
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}
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template<typename T, typename U, unsigned bits>
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gcc_const
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static inline T
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@ -40,7 +40,7 @@ pcm_volume_change_8(int8_t *buffer, const int8_t *end, int volume)
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PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer++ = pcm_range(sample, 8);
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*buffer++ = PcmClamp<int8_t, int16_t, 8>(sample);
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}
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}
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@ -54,7 +54,7 @@ pcm_volume_change_16(int16_t *buffer, const int16_t *end, int volume)
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PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer++ = pcm_range(sample, 16);
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*buffer++ = PcmClamp<int16_t, int32_t, 16>(sample);
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}
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}
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@ -107,7 +107,7 @@ pcm_volume_change_24(int32_t *buffer, const int32_t *end, int volume)
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PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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#endif
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*buffer++ = pcm_range(sample, 24);
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*buffer++ = PcmClamp<int32_t, int32_t, 24>(sample);
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}
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}
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@ -127,7 +127,7 @@ pcm_volume_change_32(int32_t *buffer, const int32_t *end, int volume)
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sample = (sample * volume + pcm_volume_dither() +
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PCM_VOLUME_1 / 2)
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/ PCM_VOLUME_1;
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*buffer++ = pcm_range_64(sample, 32);
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*buffer++ = PcmClamp<int32_t, int64_t, 32>(sample);
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#endif
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}
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}
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