338 lines
8.8 KiB
Objective-C
338 lines
8.8 KiB
Objective-C
//
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// FlacDecoder.m
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// zyVorbis
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//
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// Created by Vincent Spader on 1/25/05.
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// Copyright 2005 Vincent Spader All rights reserved.
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//
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#import "FlacDecoder.h"
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#import "Logging.h"
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@implementation FlacDecoder
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FLAC__StreamDecoderReadStatus ReadCallback(const FLAC__StreamDecoder *decoder, FLAC__byte blockBuffer[], size_t *bytes, void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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long bytesRead = [[flacDecoder source] read:blockBuffer amount:*bytes];
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if(bytesRead < 0) {
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*bytes = 0;
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return FLAC__STREAM_DECODER_READ_STATUS_ABORT;
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}
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else if(bytesRead == 0) {
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*bytes = 0;
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[flacDecoder setEndOfStream:YES];
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return FLAC__STREAM_DECODER_READ_STATUS_END_OF_STREAM;
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}
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else {
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*bytes = bytesRead;
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return FLAC__STREAM_DECODER_READ_STATUS_CONTINUE;
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}
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}
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FLAC__StreamDecoderSeekStatus SeekCallback(const FLAC__StreamDecoder *decoder, FLAC__uint64 absolute_byte_offset, void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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if(![[flacDecoder source] seek:absolute_byte_offset whence:SEEK_SET])
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return FLAC__STREAM_DECODER_SEEK_STATUS_ERROR;
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else
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return FLAC__STREAM_DECODER_SEEK_STATUS_OK;
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}
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FLAC__StreamDecoderTellStatus TellCallback(const FLAC__StreamDecoder *decoder, FLAC__uint64 *absolute_byte_offset, void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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off_t pos;
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if((pos = [[flacDecoder source] tell]) < 0)
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return FLAC__STREAM_DECODER_TELL_STATUS_ERROR;
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else {
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*absolute_byte_offset = (FLAC__uint64)pos;
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return FLAC__STREAM_DECODER_TELL_STATUS_OK;
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}
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}
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FLAC__bool EOFCallback(const FLAC__StreamDecoder *decoder, void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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return (FLAC__bool)[flacDecoder endOfStream];
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}
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FLAC__StreamDecoderLengthStatus LengthCallback(const FLAC__StreamDecoder *decoder, FLAC__uint64 *stream_length, void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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if ([[flacDecoder source] seekable]) {
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long currentPos = [[flacDecoder source] tell];
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[[flacDecoder source] seek:0 whence:SEEK_END];
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*stream_length = [[flacDecoder source] tell];
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[[flacDecoder source] seek:currentPos whence:SEEK_SET];
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return FLAC__STREAM_DECODER_LENGTH_STATUS_OK;
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}
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else {
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*stream_length = 0;
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return FLAC__STREAM_DECODER_LENGTH_STATUS_ERROR;
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}
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}
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FLAC__StreamDecoderWriteStatus WriteCallback(const FLAC__StreamDecoder *decoder, const FLAC__Frame *frame, const FLAC__int32 * const sampleblockBuffer[], void *client_data)
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{
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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void *blockBuffer = [flacDecoder blockBuffer];
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int8_t *alias8;
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int16_t *alias16;
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int32_t *alias32;
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int sample, channel;
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int32_t audioSample;
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switch(frame->header.bits_per_sample) {
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case 8:
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// Interleave the audio (no need for byte swapping)
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alias8 = blockBuffer;
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for(sample = 0; sample < frame->header.blocksize; ++sample) {
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for(channel = 0; channel < frame->header.channels; ++channel) {
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*alias8++ = (int8_t)sampleblockBuffer[channel][sample];
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}
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}
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break;
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case 16:
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// Interleave the audio, converting to big endian byte order
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alias16 = blockBuffer;
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for(sample = 0; sample < frame->header.blocksize; ++sample) {
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for(channel = 0; channel < frame->header.channels; ++channel) {
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*alias16++ = (int16_t)OSSwapHostToBigInt16((int16_t)sampleblockBuffer[channel][sample]);
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}
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}
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break;
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case 24:
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// Interleave the audio (no need for byte swapping)
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alias8 = blockBuffer;
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for(sample = 0; sample < frame->header.blocksize; ++sample) {
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for(channel = 0; channel < frame->header.channels; ++channel) {
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audioSample = sampleblockBuffer[channel][sample];
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*alias8++ = (int8_t)(audioSample >> 16);
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*alias8++ = (int8_t)(audioSample >> 8);
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*alias8++ = (int8_t)audioSample;
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}
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}
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break;
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case 32:
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// Interleave the audio, converting to big endian byte order
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alias32 = blockBuffer;
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for(sample = 0; sample < frame->header.blocksize; ++sample) {
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for(channel = 0; channel < frame->header.channels; ++channel) {
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*alias32++ = OSSwapHostToBigInt32(sampleblockBuffer[channel][sample]);
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}
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}
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default:
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ALog(@"Error, unsupported sample size.");
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}
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[flacDecoder setBlockBufferFrames:frame->header.blocksize];
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return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE;
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}
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// This callback is only called for STREAMINFO blocks
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void MetadataCallback(const FLAC__StreamDecoder *decoder, const FLAC__StreamMetadata *metadata, void *client_data)
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{
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// Some flacs observed in the wild have multiple STREAMINFO metadata blocks,
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// of which only first one has sane values, so only use values from the first STREAMINFO
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// to determine stream format (this seems to be consistent with flac spec: http://flac.sourceforge.net/format.html)
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FlacDecoder *flacDecoder = (FlacDecoder *)client_data;
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if (!flacDecoder->hasStreamInfo) {
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flacDecoder->channels = metadata->data.stream_info.channels;
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flacDecoder->frequency = metadata->data.stream_info.sample_rate;
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flacDecoder->bitsPerSample = metadata->data.stream_info.bits_per_sample;
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flacDecoder->totalFrames = metadata->data.stream_info.total_samples;
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[flacDecoder willChangeValueForKey:@"properties"];
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[flacDecoder didChangeValueForKey:@"properties"];
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flacDecoder->hasStreamInfo = YES;
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}
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}
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void ErrorCallback(const FLAC__StreamDecoder *decoder, FLAC__StreamDecoderErrorStatus status, void *client_data)
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{
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//Do nothing?
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}
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- (BOOL)open:(id<CogSource>)s
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{
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[self setSource:s];
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decoder = FLAC__stream_decoder_new();
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if (decoder == NULL)
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return NO;
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if (FLAC__stream_decoder_init_stream(decoder,
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ReadCallback,
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([source seekable] ? SeekCallback : NULL),
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([source seekable] ? TellCallback : NULL),
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([source seekable] ? LengthCallback : NULL),
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([source seekable] ? EOFCallback : NULL),
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WriteCallback,
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MetadataCallback,
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ErrorCallback,
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self
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) != FLAC__STREAM_DECODER_INIT_STATUS_OK)
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{
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return NO;
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}
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FLAC__stream_decoder_process_until_end_of_metadata(decoder);
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blockBuffer = malloc(SAMPLE_blockBuffer_SIZE);
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return YES;
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}
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- (int)readAudio:(void *)buffer frames:(UInt32)frames
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{
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int framesRead = 0;
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int bytesPerFrame = (bitsPerSample/8) * channels;
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while (framesRead < frames)
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{
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if (blockBufferFrames == 0)
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{
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if (FLAC__stream_decoder_get_state (decoder) == FLAC__STREAM_DECODER_END_OF_STREAM)
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{
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break;
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}
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FLAC__stream_decoder_process_single(decoder);
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}
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int framesToRead = blockBufferFrames;
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if (blockBufferFrames > frames)
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{
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framesToRead = frames;
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}
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memcpy(((uint8_t *)buffer) + (framesRead * bytesPerFrame), (uint8_t *)blockBuffer, framesToRead * bytesPerFrame);
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frames -= framesToRead;
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framesRead += framesToRead;
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blockBufferFrames -= framesToRead;
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if (blockBufferFrames > 0)
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{
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memmove((uint8_t *)blockBuffer, ((uint8_t *)blockBuffer) + (framesToRead * bytesPerFrame), blockBufferFrames * bytesPerFrame);
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}
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}
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return framesRead;
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}
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- (void)close
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{
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if (decoder)
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{
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FLAC__stream_decoder_finish(decoder);
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FLAC__stream_decoder_delete(decoder);
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}
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if (blockBuffer)
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{
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free(blockBuffer);
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}
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[source close];
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[self setSource:nil];
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decoder = NULL;
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blockBuffer = NULL;
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}
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- (long)seek:(long)sample
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{
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FLAC__stream_decoder_seek_absolute(decoder, sample);
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return sample;
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}
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//bs methods
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- (char *)blockBuffer
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{
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return blockBuffer;
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}
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- (int)blockBufferFrames
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{
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return blockBufferFrames;
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}
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- (void)setBlockBufferFrames:(int)frames
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{
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blockBufferFrames = frames;
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}
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- (FLAC__StreamDecoder *)decoder
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{
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return decoder;
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}
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- (void)setSource:(id<CogSource>)s
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{
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[s retain];
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[source release];
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source = s;
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}
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- (id<CogSource>)source
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{
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return source;
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}
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- (void)setEndOfStream:(BOOL)eos
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{
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endOfStream = eos;
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}
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- (BOOL)endOfStream
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{
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return endOfStream;
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}
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- (NSDictionary *)properties
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{
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return [NSDictionary dictionaryWithObjectsAndKeys:
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[NSNumber numberWithInt:channels],@"channels",
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[NSNumber numberWithInt:bitsPerSample],@"bitsPerSample",
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[NSNumber numberWithFloat:frequency],@"sampleRate",
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[NSNumber numberWithDouble:totalFrames],@"totalFrames",
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[NSNumber numberWithBool:[source seekable]], @"seekable",
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@"big",@"endian",
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nil];
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}
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+ (NSArray *)fileTypes
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{
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return [NSArray arrayWithObjects:@"flac", nil];
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}
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+ (NSArray *)mimeTypes
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{
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return [NSArray arrayWithObjects:@"audio/x-flac", nil];
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}
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+ (float)priority
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{
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return 1.0;
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}
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@end
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