197 lines
5.3 KiB
C++
197 lines
5.3 KiB
C++
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/* copyright 2006 Ben Allison */
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#include "ALACMP4Decoder.h"
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#include "alac/ALACBitUtilities.h"
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#include "api__alac.h"
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#include "decomp.h"
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#include <math.h>
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#include <string.h>
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#include "../external_dependencies/libmp4v2/mp4.h"
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#include "../Plugins/Input/in_mp4/mpeg4audio.h"
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// {B6CB4A7C-A8D0-4c55-8E60-9F7A7A23DA0F}
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static const GUID playbackConfigGroupGUID =
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{ 0xb6cb4a7c, 0xa8d0, 0x4c55, { 0x8e, 0x60, 0x9f, 0x7a, 0x7a, 0x23, 0xda, 0xf } };
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int ALACMP4Decoder::OpenMP4(MP4FileHandle mp4_file, MP4TrackId mp4_track, size_t output_bits, size_t maxChannels, bool useFloat)
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{
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if (useFloat)
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return MP4_FAILURE;
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// get requested output bits
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this->output_bits = (int)output_bits;
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use_rg = false;
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rg = 1.0f;
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uint64_t val;
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if (MP4GetTrackIntegerProperty(mp4_file, mp4_track, "mdia.minf.stbl.stsd.*[0].channels", &val))
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channels = (int)val;
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else
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channels=2;
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if (MP4GetTrackIntegerProperty(mp4_file, mp4_track, "mdia.minf.stbl.stsd.*[0].sampleSize", &val))
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bps= (int)val;
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else
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bps=16;
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return MP4_SUCCESS;
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}
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int ALACMP4Decoder::GetCurrentBitrate(unsigned int *bitrate)
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{
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if (mpAlacDecoder->mConfig.avgBitRate)
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{
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*bitrate = mpAlacDecoder->mConfig.avgBitRate;
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return MP4_SUCCESS;
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}
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return MP4_GETCURRENTBITRATE_UNKNOWN; // TODO
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}
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/*
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* 32 bits atom size
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* 32 bits tag ("alac")
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*
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* Following data is passed to the function, ALACSpecificConfig structure (24 Bytes) does not contain
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* "tag version", check and skip if data contains it
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*
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* 32 bits tag version (0)
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* 32 bits samples per frame (used when not set explicitly in the frames) --> frameLength
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* 8 bits compatible version (0)
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* 8 bits sample size --> bitDepth
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* 8 bits history mult (40)
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* 8 bits initial history (10)
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* 8 bits rice param limit (14)
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* 8 bits channels --> numChannels
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* 16 bits maxRun (255)
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* 32 bits max coded frame size (0 means unknown) --> maxFrameBytes
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* 32 bits average bitrate (0 means unknown)
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* 32 bits samplerate
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*/
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int ALACMP4Decoder::AudioSpecificConfiguration(void *buffer, size_t buffer_size)
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{
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mpAlacDecoder = new ALACDecoder();
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if (buffer_size > sizeof(ALACSpecificConfig))
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{
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// we have the "tag version" embedded;
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// just skip
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size_t skip = sizeof(uint32_t);
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mpAlacDecoder->Init((void*)((char*)buffer + skip), sizeof(ALACSpecificConfig));
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}
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else
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{
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mpAlacDecoder->Init(buffer, buffer_size);
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}
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/*alac = create_alac(bps, channels);
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alac_set_info(alac, reinterpret_cast<char *>(buffer));*/
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return MP4_SUCCESS;
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}
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void ALACMP4Decoder::Flush()
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{
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// TODO
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}
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void ALACMP4Decoder::Close()
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{
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if (mpAlacDecoder)
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{
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delete mpAlacDecoder;
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mpAlacDecoder = 0;
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}
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}
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int ALACMP4Decoder::GetOutputProperties(unsigned int *sampleRate, unsigned int *channels, unsigned int *bitsPerSample)
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{
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*sampleRate = mpAlacDecoder->mConfig.sampleRate; // TODO: verify
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*channels = mpAlacDecoder->mConfig.numChannels;
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*bitsPerSample = mpAlacDecoder->mConfig.bitDepth;
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return MP4_SUCCESS;
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}
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int ALACMP4Decoder::OutputFrameSize(size_t *frameSize)
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{
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*frameSize = mpAlacDecoder->mConfig.frameLength; // TODO: verify
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return MP4_SUCCESS;
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}
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#define PA_CLIP_( val, min, max )\
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{ val = ((val) < (min)) ? (min) : (((val) > (max)) ? (max) : (val)); }
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inline static void clip(double &x, double a, double b)
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{
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double x1 = fabs (x - a);
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double x2 = fabs (x - b);
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x = x1 + (a + b);
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x -= x2;
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x *= 0.5;
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}
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int ALACMP4Decoder::DecodeSample(void *inputBuffer, size_t inputBufferBytes, void *outputBuffer, size_t *outputBufferBytes)
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{
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struct BitBuffer inputChunk;
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BitBufferInit(&inputChunk, (uint8_t*)(inputBuffer), inputBufferBytes);
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uint32_t numFrames = 0;
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mpAlacDecoder->Decode(&inputChunk, (uint8_t*)(outputBuffer), mpAlacDecoder->mConfig.frameLength , mpAlacDecoder->mConfig.numChannels, &numFrames);
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size_t bytesPerSample = (mpAlacDecoder->mConfig.bitDepth / 8) * mpAlacDecoder->mConfig.numChannels;
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*outputBufferBytes = mpAlacDecoder->mConfig.frameLength * bytesPerSample;
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if (use_rg && mpAlacDecoder->mConfig.bitDepth == 16)
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{
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size_t numSamples = *outputBufferBytes / (mpAlacDecoder->mConfig.bitDepth / 8);
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//if (bitsPerSample == 16)
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{
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// TODO: this algorithm assumes ALAC bps is 16!!
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int16_t* audioBuffer = (int16_t*)outputBuffer;
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for (size_t i = 0; i != numSamples; i++)
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{
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float sample = (float)audioBuffer[i];
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int32_t temp = (int32_t)(sample * rg);
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PA_CLIP_(temp, -0x8000, 0x7FFF);
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audioBuffer[i] = (uint16_t)temp;
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}
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}
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}
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return MP4_SUCCESS;
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}
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const char *ALACMP4Decoder::GetCodecInfoString()
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{
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return "mdia.minf.stbl.stsd.alac.alac.decoderConfig";
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}
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int ALACMP4Decoder::CanHandleCodec(const char *codecName)
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{
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return !strcmp(codecName, "alac");
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}
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int ALACMP4Decoder::SetGain(float gain)
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{
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if (gain != 1.0f)
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{
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use_rg = true;
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rg = gain;
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}
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return MP4_SUCCESS;
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}
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#ifdef CBCLASS
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#undef CBCLASS
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#endif
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#define CBCLASS ALACMP4Decoder
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START_DISPATCH;
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CB(MPEG4_AUDIO_OPENMP4, OpenMP4)
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CB(MPEG4_AUDIO_ASC, AudioSpecificConfiguration)
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CB(MPEG4_AUDIO_BITRATE, GetCurrentBitrate)
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CB(MPEG4_AUDIO_FRAMESIZE, OutputFrameSize)
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CB(MPEG4_AUDIO_OUTPUTINFO, GetOutputProperties)
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CB(MPEG4_AUDIO_DECODE, DecodeSample)
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VCB(MPEG4_AUDIO_FLUSH, Flush)
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VCB(MPEG4_AUDIO_CLOSE, Close)
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CB(MPEG4_AUDIO_CODEC_INFO_STRING, GetCodecInfoString)
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CB(MPEG4_AUDIO_HANDLES_CODEC, CanHandleCodec)
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CB(MPEG4_AUDIO_SET_GAIN, SetGain)
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END_DISPATCH;
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