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495 lines
14 KiB
495 lines
14 KiB
/*
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* FLAC decoder module for K3b.
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* Based on the Ogg Vorbis module for same.
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* Copyright (C) 1998-2007 Sebastian Trueg <trueg@k3b.org>
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* Copyright (C) 2003-2004 John Steele Scott <toojays@toojays.net>
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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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* See the file "COPYING" for the exact licensing terms.
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*/
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#include <config.h>
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#include "k3bflacdecoder.h"
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#include <k3bpluginfactory.h>
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#include <tqbuffer.h>
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#include <tqfile.h>
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#include <tqstringlist.h>
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#include <kurl.h>
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#include <kdebug.h>
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#include <klocale.h>
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#include <string.h>
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#include <math.h>
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#include <FLAC++/metadata.h>
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#include <FLAC++/decoder.h>
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#ifdef HAVE_TAGLIB
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#include <taglib/tag.h>
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#include <taglib/flacfile.h>
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#endif
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#if !defined FLACPP_API_VERSION_CURRENT || FLACPP_API_VERSION_CURRENT < 6
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#define LEGACY_FLAC
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#else
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#undef LEGACY_FLAC
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#endif
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K_EXPORT_COMPONENT_FACTORY( libk3bflacdecoder, K3bPluginFactory<K3bFLACDecoderFactory>( "libk3bflacdecoder" ) )
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class K3bFLACDecoder::Private
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#ifdef LEGACY_FLAC
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: public FLAC::Decoder::SeekableStream
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#else
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: public FLAC::Decoder::Stream
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#endif
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{
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public:
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void open(TQFile* f) {
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file = f;
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file->open(IO_ReadOnly);
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TQT_TQIODEVICE(internalBuffer)->flush();
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set_metadata_respond(FLAC__METADATA_TYPE_STREAMINFO);
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set_metadata_respond(FLAC__METADATA_TYPE_VORBIS_COMMENT);
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init();
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process_until_end_of_metadata();
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}
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void cleanup() {
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file->close();
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finish();
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delete comments;
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comments = 0;
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}
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Private(TQFile* f)
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#ifdef LEGACY_FLAC
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: FLAC::Decoder::SeekableStream(),
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#else
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: FLAC::Decoder::Stream(),
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#endif
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comments(0) {
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internalBuffer = new TQBuffer();
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internalBuffer->open(IO_ReadWrite);
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open(f);
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}
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~Private() {
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cleanup();
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delete internalBuffer;
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}
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bool seekToFrame(int frame);
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TQFile* file;
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TQBuffer* internalBuffer;
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FLAC::Metadata::VorbisComment* comments;
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unsigned rate;
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unsigned channels;
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unsigned bitsPerSample;
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unsigned maxFramesize;
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unsigned maxBlocksize;
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unsigned minFramesize;
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unsigned minBlocksize;
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FLAC__uint64 samples;
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protected:
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#ifdef LEGACY_FLAC
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virtual FLAC__SeekableStreamDecoderReadStatus read_callback(FLAC__byte buffer[], unsigned *bytes);
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virtual FLAC__SeekableStreamDecoderSeekStatus seek_callback(FLAC__uint64 absolute_byte_offset);
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virtual FLAC__SeekableStreamDecoderTellStatus tell_callback(FLAC__uint64 *absolute_byte_offset);
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virtual FLAC__SeekableStreamDecoderLengthStatus length_callback(FLAC__uint64 *stream_length);
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#else
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virtual FLAC__StreamDecoderReadStatus read_callback(FLAC__byte buffer[], size_t *bytes);
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virtual FLAC__StreamDecoderSeekStatus seek_callback(FLAC__uint64 absolute_byte_offset);
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virtual FLAC__StreamDecoderTellStatus tell_callback(FLAC__uint64 *absolute_byte_offset);
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virtual FLAC__StreamDecoderLengthStatus length_callback(FLAC__uint64 *stream_length);
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#endif
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virtual bool eof_callback();
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virtual void error_callback(FLAC__StreamDecoderErrorStatus){};
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virtual void metadata_callback(const ::FLAC__StreamMetadata *metadata);
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virtual ::FLAC__StreamDecoderWriteStatus write_callback(const ::FLAC__Frame *frame, const FLAC__int32 * const buffer[]);
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};
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bool K3bFLACDecoder::Private::seekToFrame(int frame) {
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FLAC__uint64 sample = frame * rate / 75;
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return seek_absolute(sample);
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}
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bool K3bFLACDecoder::Private::eof_callback() {
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return file->atEnd();
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}
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#ifdef LEGACY_FLAC
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FLAC__SeekableStreamDecoderReadStatus K3bFLACDecoder::Private::read_callback(FLAC__byte buffer[], unsigned *bytes) {
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long retval = file->readBlock((char *)buffer, (*bytes));
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if(-1 == retval) {
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return FLAC__SEEKABLE_STREAM_DECODER_READ_STATUS_ERROR;
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} else {
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(*bytes) = retval;
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return FLAC__SEEKABLE_STREAM_DECODER_READ_STATUS_OK;
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}
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}
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#else
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FLAC__StreamDecoderReadStatus K3bFLACDecoder::Private::read_callback(FLAC__byte buffer[], size_t *bytes) {
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long retval = file->readBlock((char *)buffer, (*bytes));
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if(-1 == retval) {
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return FLAC__STREAM_DECODER_READ_STATUS_ABORT;
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} else {
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(*bytes) = retval;
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return FLAC__STREAM_DECODER_READ_STATUS_CONTINUE;
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}
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}
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#endif
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#ifdef LEGACY_FLAC
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FLAC__SeekableStreamDecoderSeekStatus
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K3bFLACDecoder::Private::seek_callback(FLAC__uint64 absolute_byte_offset) {
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if(!file->at(absolute_byte_offset))
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return FLAC__SEEKABLE_STREAM_DECODER_SEEK_STATUS_ERROR;
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else
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return FLAC__SEEKABLE_STREAM_DECODER_SEEK_STATUS_OK;
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}
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#else
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FLAC__StreamDecoderSeekStatus
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K3bFLACDecoder::Private::seek_callback(FLAC__uint64 absolute_byte_offset) {
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if(file->at(absolute_byte_offset) == FALSE)
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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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#endif
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#ifdef LEGACY_FLAC
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FLAC__SeekableStreamDecoderTellStatus
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K3bFLACDecoder::Private::tell_callback(FLAC__uint64 *absolute_byte_offset) {
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(*absolute_byte_offset) = file->at();
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return FLAC__SEEKABLE_STREAM_DECODER_TELL_STATUS_OK;
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}
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#else
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FLAC__StreamDecoderTellStatus
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K3bFLACDecoder::Private::tell_callback(FLAC__uint64 *absolute_byte_offset) {
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(*absolute_byte_offset) = file->at();
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return FLAC__STREAM_DECODER_TELL_STATUS_OK;
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}
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#endif
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#ifdef LEGACY_FLAC
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FLAC__SeekableStreamDecoderLengthStatus
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K3bFLACDecoder::Private::length_callback(FLAC__uint64 *stream_length) {
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(*stream_length) = file->size();
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return FLAC__SEEKABLE_STREAM_DECODER_LENGTH_STATUS_OK;
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}
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#else
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FLAC__StreamDecoderLengthStatus
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K3bFLACDecoder::Private::length_callback(FLAC__uint64 *stream_length) {
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(*stream_length) = file->size();
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return FLAC__STREAM_DECODER_LENGTH_STATUS_OK;
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}
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#endif
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void K3bFLACDecoder::Private::metadata_callback(const FLAC__StreamMetadata *metadata) {
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switch (metadata->type) {
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case FLAC__METADATA_TYPE_STREAMINFO:
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channels = metadata->data.stream_info.channels;
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rate = metadata->data.stream_info.sample_rate;
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bitsPerSample = metadata->data.stream_info.bits_per_sample;
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samples = metadata->data.stream_info.total_samples;
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maxFramesize = metadata->data.stream_info.max_framesize;
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minFramesize = metadata->data.stream_info.min_framesize;
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maxBlocksize = metadata->data.stream_info.max_blocksize;
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minBlocksize = metadata->data.stream_info.min_blocksize;
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break;
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case FLAC__METADATA_TYPE_VORBIS_COMMENT:
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comments = new FLAC::Metadata::VorbisComment((FLAC__StreamMetadata *)metadata, true);
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break;
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default:
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break;
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}
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}
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FLAC__StreamDecoderWriteStatus K3bFLACDecoder::Private::write_callback(const FLAC__Frame *frame, const FLAC__int32 * const buffer[]) {
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unsigned i, j;
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// Note that in canDecode we made sure that the input is 1-16 bit stereo or mono.
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unsigned samples = frame->header.blocksize;
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for(i=0; i < samples; i++) {
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// in FLAC channel 0 is left, 1 is right
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for(j=0; j < this->channels; j++) {
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FLAC__int32 value = (buffer[j][i])<<(16 - frame->header.bits_per_sample);
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internalBuffer->putch(value >> 8); // msb
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internalBuffer->putch(value & 0xFF); // lsb
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}
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}
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// Rewind the buffer so the decode method will take data from the beginning.
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internalBuffer->at(0);
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return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE;
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}
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K3bFLACDecoder::K3bFLACDecoder( TQObject* parent, const char* name )
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: K3bAudioDecoder( parent, name )
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{
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d = 0;
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}
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K3bFLACDecoder::~K3bFLACDecoder()
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{
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delete d;
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}
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void K3bFLACDecoder::cleanup()
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{
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if (d) {
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d->cleanup();
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d->open(new TQFile(filename()));
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}
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else
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d = new Private(new TQFile(filename()));
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}
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bool K3bFLACDecoder::analyseFileInternal( K3b::Msf& frames, int& samplerate, int& ch )
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{
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cleanup();
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frames = (unsigned long)ceil((d->samples * 75.0)/d->rate);
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samplerate = d->rate;
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ch = d->channels;
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// add meta info
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if( d->comments != 0 ) {
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kdDebug() << "(K3bFLACDecoder) unpacking Vorbis tags" << endl;
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for( unsigned int i = 0; i < d->comments->get_num_comments(); ++i ) {
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TQString key = TQString::fromUtf8( d->comments->get_comment(i).get_field_name(),
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d->comments->get_comment(i).get_field_name_length() );
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TQString value = TQString::fromUtf8( d->comments->get_comment(i).get_field_value(),
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d->comments->get_comment(i).get_field_value_length() );
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if( key.upper() == "TITLE" )
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addMetaInfo( META_TITLE, value );
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else if( key.upper() == "ARTIST" )
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addMetaInfo( META_ARTIST, value );
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else if( key.upper() == "DESCRIPTION" )
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addMetaInfo( META_COMMENT, value );
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}
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}
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#ifdef HAVE_TAGLIB
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if ((d->comments == 0) || (d->comments->get_num_comments() == 0)) {
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// no Vorbis comments, check for ID3 tags
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kdDebug() << "(K3bFLACDecoder) using taglib to read tag" << endl;
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TagLib::FLAC::File f( TQFile::encodeName(filename()) );
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if( f.isOpen() ) {
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addMetaInfo( META_TITLE, TStringToQString( f.tag()->title() ) );
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addMetaInfo( META_ARTIST, TStringToQString( f.tag()->artist() ) );
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addMetaInfo( META_COMMENT, TStringToQString( f.tag()->comment() ) );
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}
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}
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#endif
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return true;
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}
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bool K3bFLACDecoder::initDecoderInternal()
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{
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cleanup();
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return true;
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}
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int K3bFLACDecoder::decodeInternal( char* _data, int maxLen )
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{
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int bytesToCopy;
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int bytesCopied;
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int bytesAvailable;
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#ifdef LEGACY_FLAC
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if(d->internalBuffer->size() == 0) {
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// want more data
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switch(d->get_state()) {
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case FLAC__SEEKABLE_STREAM_DECODER_END_OF_STREAM:
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d->finish();
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break;
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case FLAC__SEEKABLE_STREAM_DECODER_OK:
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if(! d->process_single())
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return -1;
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break;
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default:
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return -1;
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}
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}
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#else
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if(d->internalBuffer->size() == 0) {
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// want more data
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if(d->get_state() == FLAC__STREAM_DECODER_END_OF_STREAM)
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d->finish();
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else if(d->get_state() < FLAC__STREAM_DECODER_END_OF_STREAM) {
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if(! d->process_single())
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return -1;
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}
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else
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return -1;
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}
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#endif
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bytesAvailable = d->internalBuffer->size() - d->internalBuffer->at();
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bytesToCopy = TQMIN(maxLen, bytesAvailable);
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bytesCopied = (int)d->internalBuffer->readBlock(_data, bytesToCopy);
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if(bytesCopied == bytesAvailable) {
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// reset the buffer
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d->internalBuffer->close();
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d->internalBuffer->open(IO_ReadWrite|IO_Truncate);
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}
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return bytesCopied;
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}
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bool K3bFLACDecoder::seekInternal( const K3b::Msf& pos )
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{
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return d->seekToFrame(pos.totalFrames());
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}
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TQString K3bFLACDecoder::fileType() const
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{
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return i18n("FLAC");
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}
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TQStringList K3bFLACDecoder::supportedTechnicalInfos() const
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{
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return TQStringList::split( ";",
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i18n("Channels") + ";" +
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i18n("Sampling Rate") + ";" +
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i18n("Sample Size") );
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}
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TQString K3bFLACDecoder::technicalInfo( const TQString& info ) const
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{
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if( d->comments != 0 ) {
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if( info == i18n("Vendor") )
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#ifdef FLAC_NEWER_THAN_1_1_1
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return TQString::fromUtf8((char*)d->comments->get_vendor_string());
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#else
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return TQString::fromUtf8(d->comments->get_vendor_string().get_field());
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#endif
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else if( info == i18n("Channels") )
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return TQString::number(d->channels);
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else if( info == i18n("Sampling Rate") )
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return i18n("%1 Hz").tqarg(d->rate);
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else if( info == i18n("Sample Size") )
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return i18n("%1 bits").tqarg(d->bitsPerSample);
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}
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return TQString();
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}
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K3bFLACDecoderFactory::K3bFLACDecoderFactory( TQObject* parent, const char* name )
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: K3bAudioDecoderFactory( parent, name )
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{
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}
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K3bFLACDecoderFactory::~K3bFLACDecoderFactory()
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{
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}
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K3bAudioDecoder* K3bFLACDecoderFactory::createDecoder( TQObject* parent,
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const char* name ) const
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{
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return new K3bFLACDecoder( parent, name );
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}
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bool K3bFLACDecoderFactory::canDecode( const KURL& url )
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{
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// buffer large enough to read an ID3 tag header
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char buf[10];
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// Note: since file is created on the stack it will be closed automatically
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// by its destructor when this method (i.e. canDecode) returns.
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TQFile file(url.path());
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if(!file.open(IO_ReadOnly)) {
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kdDebug() << "(K3bFLACDecoder) Could not open file " << url.path() << endl;
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return false;
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}
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// look for a fLaC magic number or ID3 tag header
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if(10 != file.readBlock(buf, 10)) {
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kdDebug() << "(K3bFLACDecorder) File " << url.path()
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<< " is too small to be a FLAC file" << endl;
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return false;
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}
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if(0 == memcmp(buf, "ID3", 3)) {
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// Found ID3 tag, try and seek past it.
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kdDebug() << "(K3bFLACDecorder) File " << url.path() << ": found ID3 tag" << endl;
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// See www.id3.org for details of the header, note that the size field
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// unpacks to 7-bit bytes, then the +10 is for the header itself.
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int pos;
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pos = ((buf[6]<<21)|(buf[7]<<14)|(buf[8]<<7)|buf[9]) + 10;
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kdDebug() << "(K3bFLACDecoder) " << url.path() << ": seeking to "
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<< pos << endl;
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if(!file.at(pos)) {
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kdDebug() << "(K3bFLACDecoder) " << url.path() << ": couldn't seek to "
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<< pos << endl;
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return false;
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}else{
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// seek was okay, try and read magic number into buf
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if(4 != file.readBlock(buf, 4)) {
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kdDebug() << "(K3bFLACDecorder) File " << url.path()
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<< " has ID3 tag but naught else!" << endl;
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return false;
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}
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}
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}
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if(memcmp(buf, "fLaC", 4) != 0) {
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kdDebug() << "(K3bFLACDecoder) " << url.path() << ": not a FLAC file" << endl;
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return false;
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}
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FLAC::Metadata::StreamInfo info = FLAC::Metadata::StreamInfo();
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FLAC::Metadata::get_streaminfo(url.path().ascii(), info);
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if((info.get_channels() <= 2) &&
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(info.get_bits_per_sample() <= 16)) {
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return true;
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} else {
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kdDebug() << "(K3bFLACDecoder) " << url.path() << ": wrong format:" << endl
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<< " channels: "
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<< TQString::number(info.get_channels()) << endl
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<< " samplerate: "
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<< TQString::number(info.get_sample_rate()) << endl
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<< " bits/sample: "
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<< TQString::number(info.get_bits_per_sample()) << endl;
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return false;
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}
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}
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#include "k3bflacdecoder.moc"
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