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328 lines
9.7 KiB
C++
328 lines
9.7 KiB
C++
/*
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* StreamEncoder.h
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* ---------------
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* Purpose: Exporting streamed music files.
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* Notes : none
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* Authors: Joern Heusipp
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* OpenMPT Devs
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* The OpenMPT source code is released under the BSD license. Read LICENSE for more details.
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*/
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#pragma once
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#include "openmpt/all/BuildSettings.hpp"
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#include "mpt/base/bit.hpp"
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#include "openmpt/soundbase/SampleFormat.hpp"
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#include "../soundlib/Tagging.h"
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#include <iosfwd>
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#include <string>
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#include <vector>
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OPENMPT_NAMESPACE_BEGIN
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inline constexpr int opus_bitrates [] = {
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8, 16, 24, 32, 40, 48, 56, 64, 80, 96, 112, 128, 144, 160, 192, 224, 256, 320, 384, 448, 510
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};
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inline constexpr int vorbis_bitrates [] = {
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32, 48, 64, 80, 96, 112, 128, 160, 192, 224, 256, 320, 500
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};
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inline constexpr int layer3_bitrates [] = {
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8, 16, 24, 32, 40, 48, 56, 64, 80, 96, 112, 128, 144, 160, 192, 224, 256, 320
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};
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inline constexpr int mpeg1layer3_bitrates [] = {
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32, 40, 48, 56, 64, 80, 96, 112, 128, 160, 192, 224, 256, 320
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};
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inline constexpr uint32 opus_samplerates [] = {
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48000,
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24000, 16000,
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12000, 8000
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};
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inline constexpr uint32 opus_all_samplerates [] = {
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48000, 44100, 32000,
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24000, 22050, 16000,
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12000, 11025, 8000
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};
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inline constexpr uint32 vorbis_samplerates [] = {
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48000, 44100, 32000,
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24000, 22050, 16000,
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12000, 11025, 8000
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};
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inline constexpr uint32 layer3_samplerates [] = {
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48000, 44100, 32000,
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24000, 22050, 16000
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};
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inline constexpr uint32 mpeg1layer3_samplerates [] = {
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48000, 44100, 32000
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};
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namespace Encoder
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{
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enum Mode
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{
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ModeCBR = 1<<0,
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ModeABR = 1<<1,
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ModeVBR = 1<<2,
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ModeQuality = 1<<3,
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ModeLossless = 1<<4,
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ModeInvalid = 0
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};
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struct Format
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{
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enum class Encoding
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{
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Float = 1,
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Integer = 2,
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Alaw = 3,
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ulaw = 4,
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Unsigned = 5,
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};
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Encoding encoding;
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uint8 bits;
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mpt::endian endian;
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bool operator==(const Format &other) const
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{
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return encoding == other.encoding && bits == other.bits && endian == other.endian;
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}
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bool operator!=(const Format& other) const
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{
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return encoding != other.encoding || bits != other.bits || endian != other.endian;
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}
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int32 AsInt() const
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{
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return (static_cast<int32>(endian == mpt::endian::little) << 16) | (static_cast<int32>(encoding) << 8) | static_cast<int32>(bits);
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}
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static Format FromInt(int32 val)
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{
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Encoder::Format f;
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f.bits = val & 0xff;
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f.encoding = static_cast<Encoder::Format::Encoding>((val >> 8) & 0xff);
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f.endian = ((val >> 16) & 0xff) ? mpt::endian::little : mpt::endian::big;
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return f;
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}
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SampleFormat GetSampleFormat() const
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{
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SampleFormat result = SampleFormat::Invalid;
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switch(encoding)
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{
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case Encoding::Float:
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switch(bits)
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{
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case 32:
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result = SampleFormat::Float32;
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break;
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case 64:
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result = SampleFormat::Float64;
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break;
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}
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break;
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case Encoding::Integer:
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switch(bits)
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{
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case 8:
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result = SampleFormat::Int8;
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break;
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case 16:
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result = SampleFormat::Int16;
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break;
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case 24:
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result = SampleFormat::Int24;
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break;
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case 32:
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result = SampleFormat::Int32;
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break;
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}
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break;
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case Encoding::Alaw:
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switch (bits)
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{
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case 16:
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result = SampleFormat::Int16;
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break;
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}
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break;
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case Encoding::ulaw:
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switch (bits)
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{
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case 16:
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result = SampleFormat::Int16;
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break;
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}
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break;
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case Encoding::Unsigned:
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switch (bits)
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{
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case 8:
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result = SampleFormat::Unsigned8;
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break;
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}
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break;
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}
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return result;
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}
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};
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struct Traits
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{
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mpt::PathString fileExtension;
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mpt::ustring fileShortDescription;
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mpt::ustring encoderSettingsName;
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mpt::ustring fileDescription;
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bool canTags = false;
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std::vector<mpt::ustring> genres;
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int modesWithFixedGenres = 0;
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bool canCues = false;
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int maxChannels = 0;
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std::vector<uint32> samplerates;
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int modes = Encoder::ModeInvalid;
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std::vector<int> bitrates;
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std::vector<Format> formats;
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uint32 defaultSamplerate = 48000;
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uint16 defaultChannels = 2;
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Encoder::Mode defaultMode = Encoder::ModeInvalid;
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int defaultBitrate = 0;
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float defaultQuality = 0.0f;
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Format defaultFormat = { Encoder::Format::Encoding::Float, 32, mpt::endian::little };
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int defaultDitherType = 1;
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};
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struct StreamSettings
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{
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int32 FLACCompressionLevel = 5; // 8
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uint32 AUPaddingAlignHint = 4096;
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uint32 MP3ID3v2MinPadding = 1024;
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uint32 MP3ID3v2PaddingAlignHint = 4096;
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bool MP3ID3v2WriteReplayGainTXXX = true;
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int32 MP3LameQuality = 3; // 0
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bool MP3LameID3v2UseLame = false;
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bool MP3LameCalculateReplayGain = true;
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bool MP3LameCalculatePeakSample = true;
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int32 OpusComplexity = -1; // 10
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};
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struct Settings
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{
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bool Cues;
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bool Tags;
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uint32 Samplerate;
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uint16 Channels;
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Encoder::Mode Mode;
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int Bitrate;
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float Quality;
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Encoder::Format Format;
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int Dither;
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StreamSettings Details;
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};
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} // namespace Encoder
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class IAudioStreamEncoder
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{
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protected:
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IAudioStreamEncoder() { }
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public:
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virtual ~IAudioStreamEncoder() = default;
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public:
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virtual SampleFormat GetSampleFormat() const = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const double *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const float *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const int32 *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const int24 *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const int16 *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const int8 *interleaved) = 0;
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virtual void WriteInterleaved(std::size_t frameCount, const uint8 *interleaved) = 0;
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virtual void WriteCues(const std::vector<uint64> &cues) = 0; // optional
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virtual void WriteFinalize() = 0;
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};
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const double *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const float *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int32 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int24 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int16 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int8 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedLE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const uint8 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const double *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const float *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int32 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int24 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int16 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const int8 *interleaved);
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std::pair<bool, std::size_t> WriteInterleavedBE(std::ostream &f, uint16 channels, Encoder::Format format, std::size_t frameCount, const uint8 *interleaved);
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class StreamWriterBase
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: public IAudioStreamEncoder
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{
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protected:
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std::ostream &f;
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std::streampos fStart;
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std::vector<char> buf;
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public:
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StreamWriterBase(std::ostream &stream);
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virtual ~StreamWriterBase();
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public:
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SampleFormat GetSampleFormat() const override;
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void WriteInterleaved(std::size_t frameCount, const double *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const float *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const int32 *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const int24 *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const int16 *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const int8 *interleaved) override;
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void WriteInterleaved(std::size_t frameCount, const uint8 *interleaved) override;
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void WriteCues(const std::vector<uint64> &cues) override;
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void WriteFinalize() override;
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protected:
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void WriteBuffer();
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};
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class EncoderFactoryBase
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{
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private:
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Encoder::Traits m_Traits;
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protected:
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EncoderFactoryBase() { }
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virtual ~EncoderFactoryBase() = default;
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void SetTraits(const Encoder::Traits &traits);
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public:
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virtual std::unique_ptr<IAudioStreamEncoder> ConstructStreamEncoder(std::ostream &file, const Encoder::Settings &settings, const FileTags &tags) const = 0;
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const Encoder::Traits &GetTraits() const
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{
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return m_Traits;
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}
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virtual bool IsBitrateSupported(int samplerate, int channels, int bitrate) const;
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virtual mpt::ustring DescribeQuality(float quality) const;
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virtual mpt::ustring DescribeBitrateVBR(int bitrate) const;
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virtual mpt::ustring DescribeBitrateABR(int bitrate) const;
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virtual mpt::ustring DescribeBitrateCBR(int bitrate) const;
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virtual bool IsAvailable() const = 0;
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};
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OPENMPT_NAMESPACE_END
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