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279 lines
6.4 KiB
C++
279 lines
6.4 KiB
C++
#include "ADTS_MPG123.h"
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#include "../winamp/wa_ipc.h"
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#include <math.h>
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#include "../nsutil/pcm.h"
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#include <assert.h>
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ADTS_MPG123::ADTS_MPG123() : decoder(0), gain(1.f)
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{
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decoderDelay = 529;
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bitsPerSample = 0;
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allowRG = false;
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useFloat = false;
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channels = 0;
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sampleRate = 0;
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decode_buffer = 0;
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decode_buffer_length = 0;
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}
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ADTS_MPG123::~ADTS_MPG123()
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{
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if (decoder) {
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mpg123_delete(decoder);
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decoder = 0;
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}
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free(decode_buffer);
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}
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int ADTS_MPG123::Initialize(bool forceMono, bool reverseStereo, bool allowSurround, int maxBits, bool _allowRG, bool _useFloat, bool _useCRC)
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{
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allowRG = _allowRG;
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useFloat = _useFloat;
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int downmix = 0;
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if (reverseStereo)
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downmix = 2;
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else
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downmix = forceMono ? 1 : 0;
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bitsPerSample = maxBits;
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decoder = mpg123_new(NULL, NULL);
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long flags = MPG123_QUIET|MPG123_FORCE_FLOAT|MPG123_SKIP_ID3V2|MPG123_IGNORE_STREAMLENGTH|MPG123_IGNORE_INFOFRAME;
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if (forceMono) {
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flags |= MPG123_FORCE_MONO;
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}
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mpg123_param(decoder, MPG123_FLAGS, flags, 0);
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mpg123_param(decoder, MPG123_RVA, MPG123_RVA_OFF, 0);
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return 0;
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}
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bool ADTS_MPG123::Open(ifc_mpeg_stream_reader *file)
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{
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mpg123_open_feed(decoder);
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if (allowRG) {
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gain = file->MPEGStream_Gain();
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}
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return true;
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}
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void ADTS_MPG123::Close()
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{
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if (decoder) {
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mpg123_delete(decoder);
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decoder = 0;
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}
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}
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bool ADTS_MPG123::_UpdateProperties()
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{
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if (decoder && (!channels || !sampleRate)) {
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long sample_rate = 44100;
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int channels = 2;
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int encoding = 0;
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if (mpg123_getformat(decoder, &sample_rate, &channels, &encoding) == MPG123_OK) {
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this->channels = channels;
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this->sampleRate = sample_rate;
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}
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}
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return channels && sampleRate;
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}
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void ADTS_MPG123::GetOutputParameters(size_t *numBits, int *numChannels, int *sampleRate)
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{
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_UpdateProperties();
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*sampleRate = this->sampleRate;
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*numChannels = this->channels;
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*numBits = bitsPerSample;
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}
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void ADTS_MPG123::CalculateFrameSize(int *frameSize)
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{
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_UpdateProperties();
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*frameSize = (int)(bitsPerSample/8) * channels * mpg123_spf(decoder);
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#if 0 // TODO?
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if (decoder->GetStreamInfo()->GetLayer() == 1)
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*frameSize *= 3;
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#endif
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}
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void ADTS_MPG123::Flush(ifc_mpeg_stream_reader *file)
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{
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mpg123_open_feed(decoder);
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}
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size_t ADTS_MPG123::GetCurrentBitrate()
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{
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mpg123_frameinfo frameInfo;
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if (mpg123_info(decoder, &frameInfo) == MPG123_OK) {
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return frameInfo.bitrate;
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} else {
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return 0;
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}
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}
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size_t ADTS_MPG123::GetDecoderDelay()
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{
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return decoderDelay;
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}
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static void Decimate(const float *input, void *output, size_t numSamples, size_t *outputWritten, int bitsPerSample, bool useFloat, float gain)
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{
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if (!useFloat)
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{
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// TODO seen a few crashes reported where 'output' is 0
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nsutil_pcm_FloatToInt_Interleaved_Gain(output, input, bitsPerSample, numSamples, gain);
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}
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else if (gain != 1.f)
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{
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float *data = (float *)output;
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for (size_t i=0;i<numSamples;i++)
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data[i]*=gain;
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//data[i]=input[i]*gain;
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}
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*outputWritten = numSamples * (bitsPerSample / 8);
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}
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int ADTS_MPG123::_Read(ifc_mpeg_stream_reader *_file)
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{
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int err;
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do {
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unsigned char buffer[4096];
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size_t bytes = 0;
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_file->MPEGStream_Read(buffer, sizeof(buffer), &bytes);
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err = mpg123_feed(decoder, buffer, bytes);
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} while (err == MPG123_NEED_MORE);
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switch(err) {
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case MPG123_OK:
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return adts::SUCCESS;
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case MPG123_NEED_MORE:
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if (_file->MPEGStream_EOF()) {
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return adts::ENDOFFILE;
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} else {
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return adts::NEEDMOREDATA;
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}
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default:
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return adts::FAILURE;
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}
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}
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/*
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notes for mp3 surround implementations
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need to check the first two frames for ancillary data
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store first valid in temp
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store second valid frame in delay line
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decimate first valid into output buffer
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ancillary data is stored one frame behind, so PCM data decoded from mp3 frame n combines with anc data from frame n+1
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*/
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int ADTS_MPG123::Sync(ifc_mpeg_stream_reader *_file, unsigned __int8 *output, size_t outputSize, size_t *outputWritten, size_t *bitrate)
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{
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if (outputWritten) {
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*outputWritten = 0;
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}
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int err = _Read(_file);
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if (err == adts::SUCCESS) {
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err = mpg123_read(decoder, 0, 0, 0);
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if (err == MPG123_NEED_MORE) {
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return adts::NEEDMOREDATA;
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}
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if (err != MPG123_NEW_FORMAT
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&& err != MPG123_OK) {
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return adts::FAILURE;
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}
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_UpdateProperties();
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mpg123_frameinfo frameInfo;
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err = mpg123_info(decoder, &frameInfo);
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if (err == MPG123_OK) {
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*bitrate = frameInfo.bitrate;
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return adts::SUCCESS;
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} else {
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return adts::NEEDMOREDATA;
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}
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} else {
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return err;
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}
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}
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int ADTS_MPG123::Decode(ifc_mpeg_stream_reader *_file, unsigned __int8 *output, size_t outputSize, size_t *outputWritten, size_t *bitrate, size_t *endCut)
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{
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bool retried=false;
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for (;;) {
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if (!decode_buffer) {
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int channels = 2;
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long sample_rate;
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int encoding;
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if (mpg123_getformat(decoder, &sample_rate, &channels, &encoding) == MPG123_OK) {
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this->channels = channels;
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decode_buffer_length = sizeof(float) * channels * mpg123_spf(decoder);
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decode_buffer = (float *)malloc(decode_buffer_length);
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if (!decode_buffer) {
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return adts::FAILURE;
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}
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}
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}
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float *flData=useFloat?(float *)output:decode_buffer;
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size_t flDataSize=useFloat?outputSize:decode_buffer_length;
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size_t done=0;
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int err = mpg123_read(decoder, (unsigned char *)flData, flDataSize, &done);
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switch(err) {
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case MPG123_OK:
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{
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Decimate(flData, output, done / sizeof(float), outputWritten, (int)bitsPerSample, useFloat, (float)gain);
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mpg123_frameinfo frameInfo;
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if (mpg123_info(decoder, &frameInfo) == MPG123_OK) {
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*bitrate = frameInfo.bitrate;
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}
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}
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return adts::SUCCESS;
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case MPG123_NEW_FORMAT:
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assert(done == 0);
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return adts::SUCCESS;
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case MPG123_NEED_MORE:
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if (done) {
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Decimate(flData, output, done / sizeof(float), outputWritten, (int)bitsPerSample, useFloat, (float)gain);
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mpg123_frameinfo frameInfo;
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if (mpg123_info(decoder, &frameInfo) == MPG123_OK) {
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*bitrate = frameInfo.bitrate;
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}
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return adts::SUCCESS;
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} else if (_file->MPEGStream_EOF()) {
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return adts::ENDOFFILE;
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} else {
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if (retried) {
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return adts::NEEDMOREDATA;
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} else {
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retried=true;
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err = _Read(_file);
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if (err != adts::SUCCESS) {
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return err;
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} else {
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break;
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}
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}
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}
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default:
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assert(done == 0);
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return adts::FAILURE;
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}
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}
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}
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int ADTS_MPG123::GetLayer()
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{
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if (decoder) {
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mpg123_frameinfo frameInfo;
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mpg123_info(decoder, &frameInfo);
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return frameInfo.layer;
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} else {
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return 0;
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}
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}
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void ADTS_MPG123::Release()
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{
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delete this;
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} |