412 lines
10 KiB
C++
412 lines
10 KiB
C++
/*
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* Copyright (C) 2003-2014 The Music Player Daemon Project
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* http://www.musicpd.org
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License along
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* with this program; if not, write to the Free Software Foundation, Inc.,
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* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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*/
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#include "config.h"
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#include "PcmFormat.hxx"
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#include "PcmBuffer.hxx"
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#include "PcmUtils.hxx"
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#include "Traits.hxx"
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#include "util/ConstBuffer.hxx"
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#include "util/WritableBuffer.hxx"
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#include "PcmDither.cxx" // including the .cxx file to get inlined templates
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template<typename T>
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static inline ConstBuffer<T>
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ToConst(WritableBuffer<T> b)
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{
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return { b.data, b.size };
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}
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static void
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pcm_convert_8_to_16(int16_t *out, const int8_t *in, size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 8;
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}
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static void
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pcm_convert_24_to_16(PcmDither &dither,
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int16_t *out, const int32_t *in, const int32_t *in_end)
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{
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dither.Dither24To16(out, in, in_end);
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}
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static void
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pcm_convert_32_to_16(PcmDither &dither,
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int16_t *out, const int32_t *in, const int32_t *in_end)
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{
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dither.Dither32To16(out, in, in_end);
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}
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template<SampleFormat F, class Traits=SampleTraits<F>>
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static void
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ConvertFromFloat(typename Traits::pointer_type dest,
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const float *src, size_t n)
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{
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constexpr auto bits = Traits::BITS;
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const float factor = 1 << (bits - 1);
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for (size_t i = 0; i != n; ++i) {
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typename Traits::long_type sample(src[i] * factor);
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dest[i] = PcmClamp<F, Traits>(sample);
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}
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}
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template<SampleFormat F, class Traits=SampleTraits<F>>
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static typename Traits::pointer_type
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AllocateFromFloat(PcmBuffer &buffer, const float *src, size_t src_size,
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size_t *dest_size_r)
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{
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constexpr size_t src_sample_size = sizeof(*src);
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assert(src_size % src_sample_size == 0);
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const size_t num_samples = src_size / src_sample_size;
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*dest_size_r = num_samples * sizeof(typename Traits::value_type);
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auto dest = (typename Traits::pointer_type)buffer.Get(*dest_size_r);
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ConvertFromFloat<F, Traits>(dest, src, src_size / sizeof(*src));
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return dest;
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}
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template<SampleFormat F, class Traits=SampleTraits<F>>
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static WritableBuffer<typename Traits::value_type>
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AllocateFromFloat(PcmBuffer &buffer, ConstBuffer<float> src)
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{
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auto dest = buffer.GetT<typename Traits::value_type>(src.size);
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ConvertFromFloat<F, Traits>(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int16_t>
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pcm_allocate_8_to_16(PcmBuffer &buffer, ConstBuffer<int8_t> src)
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{
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auto dest = buffer.GetT<int16_t>(src.size);
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pcm_convert_8_to_16(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int16_t>
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pcm_allocate_24p32_to_16(PcmBuffer &buffer, PcmDither &dither,
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ConstBuffer<int32_t> src)
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{
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auto dest = buffer.GetT<int16_t>(src.size);
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pcm_convert_24_to_16(dither, dest, src.data, src.end());
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return { dest, src.size };
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}
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static ConstBuffer<int16_t>
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pcm_allocate_32_to_16(PcmBuffer &buffer, PcmDither &dither,
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ConstBuffer<int32_t> src)
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{
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auto dest = buffer.GetT<int16_t>(src.size);
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pcm_convert_32_to_16(dither, dest, src.data, src.end());
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return { dest, src.size };
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}
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static ConstBuffer<int16_t>
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pcm_allocate_float_to_16(PcmBuffer &buffer, ConstBuffer<float> src)
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{
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return ToConst(AllocateFromFloat<SampleFormat::S16>(buffer, src));
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}
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ConstBuffer<int16_t>
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pcm_convert_to_16(PcmBuffer &buffer, PcmDither &dither,
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SampleFormat src_format, ConstBuffer<void> src)
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{
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switch (src_format) {
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case SampleFormat::UNDEFINED:
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case SampleFormat::DSD:
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break;
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case SampleFormat::S8:
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return pcm_allocate_8_to_16(buffer,
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ConstBuffer<int8_t>::FromVoid(src));
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case SampleFormat::S16:
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return ConstBuffer<int16_t>::FromVoid(src);
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case SampleFormat::S24_P32:
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return pcm_allocate_24p32_to_16(buffer, dither,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::S32:
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return pcm_allocate_32_to_16(buffer, dither,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::FLOAT:
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return pcm_allocate_float_to_16(buffer,
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ConstBuffer<float>::FromVoid(src));
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}
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return nullptr;
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}
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static void
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pcm_convert_8_to_24(int32_t *out, const int8_t *in, size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 16;
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}
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static void
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pcm_convert_16_to_24(int32_t *out, const int16_t *in, size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 8;
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}
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static void
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pcm_convert_32_to_24(int32_t *gcc_restrict out,
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const int32_t *gcc_restrict in,
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size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] >> 8;
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}
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static ConstBuffer<int32_t>
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pcm_allocate_8_to_24(PcmBuffer &buffer, ConstBuffer<int8_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_8_to_24(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int32_t>
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pcm_allocate_16_to_24(PcmBuffer &buffer, ConstBuffer<int16_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_16_to_24(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int32_t>
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pcm_allocate_32_to_24(PcmBuffer &buffer, ConstBuffer<int32_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_32_to_24(dest, src.data, src.size);
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return { dest, src.size };
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}
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static WritableBuffer<int32_t>
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pcm_allocate_float_to_24(PcmBuffer &buffer, ConstBuffer<float> src)
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{
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return AllocateFromFloat<SampleFormat::S24_P32>(buffer, src);
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}
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ConstBuffer<int32_t>
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pcm_convert_to_24(PcmBuffer &buffer,
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SampleFormat src_format, ConstBuffer<void> src)
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{
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switch (src_format) {
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case SampleFormat::UNDEFINED:
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case SampleFormat::DSD:
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break;
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case SampleFormat::S8:
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return pcm_allocate_8_to_24(buffer,
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ConstBuffer<int8_t>::FromVoid(src));
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case SampleFormat::S16:
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return pcm_allocate_16_to_24(buffer,
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ConstBuffer<int16_t>::FromVoid(src));
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case SampleFormat::S24_P32:
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return ConstBuffer<int32_t>::FromVoid(src);
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case SampleFormat::S32:
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return pcm_allocate_32_to_24(buffer,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::FLOAT:
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return ToConst(pcm_allocate_float_to_24(buffer,
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ConstBuffer<float>::FromVoid(src)));
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}
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return nullptr;
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}
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static void
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pcm_convert_8_to_32(int32_t *out, const int8_t *in, size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 24;
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}
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static void
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pcm_convert_16_to_32(int32_t *out, const int16_t *in, size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 16;
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}
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static void
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pcm_convert_24_to_32(int32_t *gcc_restrict out,
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const int32_t *gcc_restrict in,
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size_t n)
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{
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for (size_t i = 0; i != n; ++i)
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out[i] = in[i] << 8;
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}
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static ConstBuffer<int32_t>
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pcm_allocate_8_to_32(PcmBuffer &buffer, ConstBuffer<int8_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_8_to_32(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int32_t>
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pcm_allocate_16_to_32(PcmBuffer &buffer, ConstBuffer<int16_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_16_to_32(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int32_t>
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pcm_allocate_24p32_to_32(PcmBuffer &buffer, ConstBuffer<int32_t> src)
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{
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auto dest = buffer.GetT<int32_t>(src.size);
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pcm_convert_24_to_32(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<int32_t>
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pcm_allocate_float_to_32(PcmBuffer &buffer, ConstBuffer<float> src)
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{
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/* convert to S24_P32 first */
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auto dest = pcm_allocate_float_to_24(buffer, src);
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/* convert to 32 bit in-place */
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pcm_convert_24_to_32(dest.data, dest.data, src.size);
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return ToConst(dest);
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}
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ConstBuffer<int32_t>
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pcm_convert_to_32(PcmBuffer &buffer,
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SampleFormat src_format, ConstBuffer<void> src)
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{
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switch (src_format) {
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case SampleFormat::UNDEFINED:
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case SampleFormat::DSD:
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break;
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case SampleFormat::S8:
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return pcm_allocate_8_to_32(buffer,
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ConstBuffer<int8_t>::FromVoid(src));
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case SampleFormat::S16:
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return pcm_allocate_16_to_32(buffer,
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ConstBuffer<int16_t>::FromVoid(src));
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case SampleFormat::S24_P32:
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return pcm_allocate_24p32_to_32(buffer,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::S32:
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return ConstBuffer<int32_t>::FromVoid(src);
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case SampleFormat::FLOAT:
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return pcm_allocate_float_to_32(buffer,
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ConstBuffer<float>::FromVoid(src));
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}
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return nullptr;
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}
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template<SampleFormat F, class Traits=SampleTraits<F>>
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static void
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ConvertToFloat(float *dest,
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typename Traits::const_pointer_type src,
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size_t n)
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{
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constexpr float factor = 0.5 / (1 << (Traits::BITS - 2));
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for (size_t i = 0; i != n; ++i)
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dest[i] = float(src[i]) * factor;
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}
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template<SampleFormat F, class Traits=SampleTraits<F>>
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static ConstBuffer<float>
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AllocateToFloat(PcmBuffer &buffer,
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ConstBuffer<typename Traits::value_type> src)
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{
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float *dest = buffer.GetT<float>(src.size);
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ConvertToFloat<F, Traits>(dest, src.data, src.size);
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return { dest, src.size };
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}
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static ConstBuffer<float>
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pcm_allocate_8_to_float(PcmBuffer &buffer, ConstBuffer<int8_t> src)
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{
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return AllocateToFloat<SampleFormat::S8>(buffer, src);
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}
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static ConstBuffer<float>
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pcm_allocate_16_to_float(PcmBuffer &buffer, ConstBuffer<int16_t> src)
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{
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return AllocateToFloat<SampleFormat::S16>(buffer, src);
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}
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static ConstBuffer<float>
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pcm_allocate_24p32_to_float(PcmBuffer &buffer, ConstBuffer<int32_t> src)
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{
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return AllocateToFloat<SampleFormat::S24_P32>(buffer, src);
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}
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static ConstBuffer<float>
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pcm_allocate_32_to_float(PcmBuffer &buffer, ConstBuffer<int32_t> src)
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{
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return AllocateToFloat<SampleFormat::S32>(buffer, src);
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}
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ConstBuffer<float>
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pcm_convert_to_float(PcmBuffer &buffer,
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SampleFormat src_format, ConstBuffer<void> src)
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{
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switch (src_format) {
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case SampleFormat::UNDEFINED:
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case SampleFormat::DSD:
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break;
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case SampleFormat::S8:
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return pcm_allocate_8_to_float(buffer,
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ConstBuffer<int8_t>::FromVoid(src));
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case SampleFormat::S16:
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return pcm_allocate_16_to_float(buffer,
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ConstBuffer<int16_t>::FromVoid(src));
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case SampleFormat::S32:
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return pcm_allocate_32_to_float(buffer,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::S24_P32:
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return pcm_allocate_24p32_to_float(buffer,
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ConstBuffer<int32_t>::FromVoid(src));
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case SampleFormat::FLOAT:
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return ConstBuffer<float>::FromVoid(src);
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}
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return nullptr;
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}
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