pcm/Volume: improved dithering

Instead of just adding a rectangular random value before shifting back
to the normal scale, use the existing PcmDither library.
This commit is contained in:
Max Kellermann 2013-12-22 17:39:26 +01:00
parent 394e2815db
commit afcf0795c4
6 changed files with 59 additions and 22 deletions

2
NEWS
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@ -3,6 +3,8 @@ ver 0.19 (not yet released)
- new commands "addtagid", "cleartagid"
* input
- alsa: new input plugin
* filter
- volume: improved software volume dithering
* new resampler option using libsoxr
ver 0.18.6 (2013/12/24)

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@ -62,6 +62,19 @@ PcmDither::Dither(T sample)
return output >> scale_bits;
}
template<typename ST, unsigned SBITS, unsigned DBITS>
inline ST
PcmDither::DitherShift(ST sample)
{
static_assert(sizeof(ST) * 8 > SBITS, "Source type too small");
static_assert(SBITS > DBITS, "Non-positive scale_bits");
static constexpr ST MIN = -(ST(1) << (SBITS - 1));
static constexpr ST MAX = (ST(1) << (SBITS - 1)) - 1;
return Dither<ST, MIN, MAX, SBITS - DBITS>(sample);
}
template<typename ST, typename DT>
inline typename DT::value_type
PcmDither::DitherConvert(typename ST::value_type sample)

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@ -32,6 +32,18 @@ public:
constexpr PcmDither()
:error{0, 0, 0}, random(0) {}
/**
* Shift the given sample by #SBITS-#DBITS to the right, and
* apply dithering.
*
* @param ST the input sample type
* @param SBITS the input bit width
* @param DBITS the output bit width
* @param sample the input sample value
*/
template<typename ST, unsigned SBITS, unsigned DBITS>
ST DitherShift(ST sample);
void Dither24To16(int16_t *dest, const int32_t *src,
const int32_t *src_end);

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@ -25,62 +25,69 @@
#include "util/ConstBuffer.hxx"
#include "util/Error.hxx"
#include "PcmDither.cxx" // including the .cxx file to get inlined templates
#include <stdint.h>
#include <string.h>
template<SampleFormat F, class Traits=SampleTraits<F>>
static inline typename Traits::value_type
pcm_volume_sample(typename Traits::value_type _sample,
pcm_volume_sample(PcmDither &dither,
typename Traits::value_type _sample,
int volume)
{
typename Traits::long_type sample(_sample);
sample = (sample * volume + pcm_volume_dither() +
PCM_VOLUME_1S / 2)
>> PCM_VOLUME_BITS;
return PcmClamp<F, Traits>(sample);
return dither.DitherShift<typename Traits::long_type,
Traits::BITS + PCM_VOLUME_BITS,
Traits::BITS>(sample * volume);
}
template<SampleFormat F, class Traits=SampleTraits<F>>
static void
pcm_volume_change(typename Traits::pointer_type dest,
pcm_volume_change(PcmDither &dither,
typename Traits::pointer_type dest,
typename Traits::const_pointer_type src,
typename Traits::const_pointer_type end,
int volume)
{
while (src < end) {
const auto sample = *src++;
*dest++ = pcm_volume_sample<F, Traits>(sample, volume);
*dest++ = pcm_volume_sample<F, Traits>(dither, sample, volume);
}
}
static void
pcm_volume_change_8(int8_t *dest, const int8_t *src, const int8_t *end,
pcm_volume_change_8(PcmDither &dither,
int8_t *dest, const int8_t *src, const int8_t *end,
int volume)
{
pcm_volume_change<SampleFormat::S8>(dest, src, end, volume);
pcm_volume_change<SampleFormat::S8>(dither, dest, src, end, volume);
}
static void
pcm_volume_change_16(int16_t *dest, const int16_t *src, const int16_t *end,
pcm_volume_change_16(PcmDither &dither,
int16_t *dest, const int16_t *src, const int16_t *end,
int volume)
{
pcm_volume_change<SampleFormat::S16>(dest, src, end, volume);
pcm_volume_change<SampleFormat::S16>(dither, dest, src, end, volume);
}
static void
pcm_volume_change_24(int32_t *dest, const int32_t *src, const int32_t *end,
pcm_volume_change_24(PcmDither &dither,
int32_t *dest, const int32_t *src, const int32_t *end,
int volume)
{
pcm_volume_change<SampleFormat::S24_P32>(dest, src, end, volume);
pcm_volume_change<SampleFormat::S24_P32>(dither, dest, src, end,
volume);
}
static void
pcm_volume_change_32(int32_t *dest, const int32_t *src, const int32_t *end,
pcm_volume_change_32(PcmDither &dither,
int32_t *dest, const int32_t *src, const int32_t *end,
int volume)
{
pcm_volume_change<SampleFormat::S32>(dest, src, end, volume);
pcm_volume_change<SampleFormat::S32>(dither, dest, src, end, volume);
}
static void
@ -143,28 +150,28 @@ PcmVolume::Apply(ConstBuffer<void> src)
gcc_unreachable();
case SampleFormat::S8:
pcm_volume_change_8((int8_t *)data,
pcm_volume_change_8(dither, (int8_t *)data,
(const int8_t *)src.data,
(const int8_t *)end,
volume);
break;
case SampleFormat::S16:
pcm_volume_change_16((int16_t *)data,
pcm_volume_change_16(dither, (int16_t *)data,
(const int16_t *)src.data,
(const int16_t *)end,
volume);
break;
case SampleFormat::S24_P32:
pcm_volume_change_24((int32_t *)data,
pcm_volume_change_24(dither, (int32_t *)data,
(const int32_t *)src.data,
(const int32_t *)end,
volume);
break;
case SampleFormat::S32:
pcm_volume_change_32((int32_t *)data,
pcm_volume_change_32(dither, (int32_t *)data,
(const int32_t *)src.data,
(const int32_t *)end,
volume);

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@ -23,6 +23,7 @@
#include "PcmPrng.hxx"
#include "AudioFormat.hxx"
#include "PcmBuffer.hxx"
#include "PcmDither.hxx"
#include <stdint.h>
#include <stddef.h>
@ -87,6 +88,7 @@ class PcmVolume {
unsigned volume;
PcmBuffer buffer;
PcmDither dither;
public:
PcmVolume()

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@ -60,8 +60,9 @@ TestVolume(G g=G())
const auto _dest = ConstBuffer<value_type>::FromVoid(dest);
for (unsigned i = 0; i < N; ++i) {
CPPUNIT_ASSERT(_dest.data[i] >= (_src[i] - 1) / 2);
CPPUNIT_ASSERT(_dest.data[i] <= _src[i] / 2 + 1);
const auto expected = (_src[i] + 1) / 2;
CPPUNIT_ASSERT(_dest.data[i] >= expected - 4);
CPPUNIT_ASSERT(_dest.data[i] <= expected + 4);
}
pv.Close();