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556 lines
16 KiB
556 lines
16 KiB
/*
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*
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* $Id: k3boggvorbisencoder.cpp 619556 2007-01-03 17:38:12Z trueg $
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* Copyright (C) 2003 Sebastian Trueg <trueg@k3b.org>
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*
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* This file is part of the K3b project.
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* Copyright (C) 1998-2007 Sebastian Trueg <trueg@k3b.org>
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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 "k3boggvorbisencoder.h"
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#include "base_k3boggvorbisencodersettingswidget.h"
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#include <k3bcore.h>
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#include <k3bpluginfactory.h>
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#include <tdelocale.h>
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#include <tdeconfig.h>
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#include <kdebug.h>
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#include <knuminput.h>
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#include <tqlayout.h>
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#include <tqradiobutton.h>
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#include <tqslider.h>
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#include <tqlcdnumber.h>
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#include <tqcheckbox.h>
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#include <tqcstring.h>
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#include <tqtooltip.h>
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#include <tqwhatsthis.h>
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#include <tqlabel.h>
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#include <vorbis/vorbisenc.h>
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// for the random generator
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#include <stdlib.h>
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#include <time.h>
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K_EXPORT_COMPONENT_FACTORY( libk3boggvorbisencoder, K3bPluginFactory<K3bOggVorbisEncoder>( "libk3boggvorbisencoder" ) )
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// quality levels -1 to 10 map to 0 to 11
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static const int s_rough_average_quality_level_bitrates[] = {
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45,
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64,
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80,
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96,
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112,
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128,
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160,
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192,
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224,
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256,
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320,
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400
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};
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// quality levels -1 to 10 map to 0 to 11
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// static const char* s_ogg_quality_level_strings[] = {
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// I18N_NOOP("Low quality"),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// I18N_NOOP("targetted %1 kbps"),
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// I18N_NOOP("targetted %1 kbps"),
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// I18N_NOOP("targetted %1 kbps"),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// I18N_NOOP(""),
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// };
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// THIS IS BASED ON THE OGG VORBIS LIB EXAMPLE
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// BECAUSE OF THE LACK OF DOCUMENTATION
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class K3bOggVorbisEncoder::Private
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{
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public:
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Private()
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: manualBitrate(false),
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qualityLevel(4),
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bitrateUpper(-1),
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bitrateNominal(-1),
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bitrateLower(-1),
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// sampleRate(44100),
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oggStream(0),
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oggPage(0),
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oggPacket(0),
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vorbisInfo(0),
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vorbisComment(0),
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vorbisDspState(0),
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vorbisBlock(0),
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headersWritten(false) {
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}
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// encoding settings
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bool manualBitrate;
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// 0 to 10 -> 0.0 - 1.0
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int qualityLevel;
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int bitrateUpper;
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int bitrateNominal;
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int bitrateLower;
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// int sampleRate;
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// encoding structures
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ogg_stream_state *oggStream; // take physical pages, weld into a logical stream of packets
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ogg_page *oggPage; // one Ogg bitstream page. Vorbis packets are inside
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ogg_packet *oggPacket; // one raw packet of data for decode
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vorbis_info *vorbisInfo; // struct that stores all the static vorbis bitstream settings
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vorbis_comment *vorbisComment; // struct that stores all the user comments
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vorbis_dsp_state *vorbisDspState; // central working state for the packet->PCM decoder
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vorbis_block *vorbisBlock; // local working space for packet->PCM decode
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bool headersWritten;
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};
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K3bOggVorbisEncoder::K3bOggVorbisEncoder( TQObject* parent, const char* name )
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: K3bAudioEncoder( parent, name )
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{
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d = new Private();
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}
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K3bOggVorbisEncoder::~K3bOggVorbisEncoder()
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{
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cleanup();
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delete d;
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}
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bool K3bOggVorbisEncoder::initEncoderInternal( const TQString&, const K3b::Msf& )
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{
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cleanup();
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// load user settings
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loadConfig();
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d->oggPage = new ogg_page;
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d->oggPacket = new ogg_packet;
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d->vorbisInfo = new vorbis_info;
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vorbis_info_init( d->vorbisInfo );
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int ret = 0;
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if( d->manualBitrate ) {
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kdDebug() << "(K3bOggVorbisEncoder) calling: "
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<< "vorbis_encode_init( d->vorbisInfo, 2, 44100, "
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<< (d->bitrateUpper != -1 ? d->bitrateUpper*1000 : -1) << ", "
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<< (d->bitrateNominal != -1 ? d->bitrateNominal*1000 : -1) << ", "
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<< (d->bitrateLower != -1 ? d->bitrateLower*1000 : -1) << " );" << endl;
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ret = vorbis_encode_init( d->vorbisInfo,
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2, // 2 channels: stereo
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44100,
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d->bitrateUpper != -1 ? d->bitrateUpper*1000 : -1,
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d->bitrateNominal != -1 ? d->bitrateNominal*1000 : -1,
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d->bitrateLower != -1 ? d->bitrateLower*1000 : -1 );
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}
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else {
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if( d->qualityLevel < -1 )
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d->qualityLevel = -1;
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else if( d->qualityLevel > 10 )
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d->qualityLevel = 10;
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kdDebug() << "(K3bOggVorbisEncoder) calling: "
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<< "vorbis_encode_init_vbr( d->vorbisInfo, 2, 44100, "
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<< (float)d->qualityLevel/10.0 << ");" << endl;
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ret = vorbis_encode_init_vbr( d->vorbisInfo,
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2, // 2 channels: stereo
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44100,
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(float)d->qualityLevel/10.0 );
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}
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if( ret ) {
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kdDebug() << "(K3bOggVorbisEncoder) vorbis_encode_init failed: " << ret << endl;
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cleanup();
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return false;
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}
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// init the comment stuff
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d->vorbisComment = new vorbis_comment;
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vorbis_comment_init( d->vorbisComment );
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// add the encoder tag (so everybody knows we did it! ;)
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vorbis_comment_add_tag( d->vorbisComment, TQCString("ENCODER").data(), TQCString("K3bOggVorbisEncoderPlugin").data() );
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// set up the analysis state and auxiliary encoding storage
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d->vorbisDspState = new vorbis_dsp_state;
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d->vorbisBlock = new vorbis_block;
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vorbis_analysis_init( d->vorbisDspState, d->vorbisInfo );
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vorbis_block_init( d->vorbisDspState, d->vorbisBlock );
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// set up our packet->stream encoder
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// pick a random serial number; that way we can more likely build
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// chained streams just by concatenation
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d->oggStream = new ogg_stream_state;
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srand( time(0) );
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ogg_stream_init( d->oggStream, rand() );
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return true;
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}
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bool K3bOggVorbisEncoder::writeOggHeaders()
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{
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if( !d->oggStream ) {
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kdDebug() << "(K3bOggVorbisEncoder) call to writeOggHeaders without init." << endl;
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return false;
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}
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if( d->headersWritten ) {
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kdDebug() << "(K3bOggVorbisEncoder) headers already written." << endl;
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return true;
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}
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//
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// Vorbis streams begin with three headers; the initial header (with
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// most of the codec setup parameters) which is mandated by the Ogg
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// bitstream spec. The second header holds any comment fields. The
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// third header holds the bitstream codebook. We merely need to
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// make the headers, then pass them to libvorbis one at a time;
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// libvorbis handles the additional Ogg bitstream constraints
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//
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ogg_packet header;
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ogg_packet header_comm;
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ogg_packet header_code;
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vorbis_analysis_headerout( d->vorbisDspState,
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d->vorbisComment,
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&header,
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&header_comm,
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&header_code);
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// automatically placed in its own page
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ogg_stream_packetin( d->oggStream, &header );
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ogg_stream_packetin( d->oggStream, &header_comm );
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ogg_stream_packetin( d->oggStream, &header_code );
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//
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// This ensures the actual
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// audio data will start on a new page, as per spec
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//
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TQByteArray data;
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while( ogg_stream_flush( d->oggStream, d->oggPage ) ) {
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writeData( (char*)d->oggPage->header, d->oggPage->header_len );
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writeData( (char*)d->oggPage->body, d->oggPage->body_len );
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}
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d->headersWritten = true;
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return true;
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}
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long K3bOggVorbisEncoder::encodeInternal( const char* data, TQ_ULONG len )
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{
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if( !d->headersWritten )
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if( !writeOggHeaders() )
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return -1;
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// expose the buffer to submit data
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float** buffer = vorbis_analysis_buffer( d->vorbisDspState, len/4 );
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// uninterleave samples
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unsigned long i = 0;
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for( i = 0; i < len/4; i++ ) {
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buffer[0][i]=( (data[i*4+1]<<8) | (0x00ff&(int)data[i*4]) ) / 32768.f;
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buffer[1][i]=( (data[i*4+3]<<8) | (0x00ff&(int)data[i*4+2]) ) / 32768.f;
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}
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// tell the library how much we actually submitted
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vorbis_analysis_wrote( d->vorbisDspState, i );
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return flushVorbis();
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}
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long K3bOggVorbisEncoder::flushVorbis()
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{
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// vorbis does some data preanalysis, then divvies up blocks for
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// more involved (potentially parallel) processing. Get a single
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// block for encoding now
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long writtenData = 0;
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while( vorbis_analysis_blockout( d->vorbisDspState, d->vorbisBlock ) == 1 ) {
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// analysis
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vorbis_analysis( d->vorbisBlock, 0 );
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vorbis_bitrate_addblock( d->vorbisBlock );
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while( vorbis_bitrate_flushpacket( d->vorbisDspState, d->oggPacket ) ) {
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// weld the packet into the bitstream
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ogg_stream_packetin( d->oggStream, d->oggPacket );
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// write out pages (if any)
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while( ogg_stream_pageout( d->oggStream, d->oggPage ) ) {
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writeData( (char*)d->oggPage->header, d->oggPage->header_len );
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writeData( (char*)d->oggPage->body, d->oggPage->body_len );
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writtenData += ( d->oggPage->header_len + d->oggPage->body_len );
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}
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}
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}
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return writtenData;
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}
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void K3bOggVorbisEncoder::finishEncoderInternal()
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{
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if( d->vorbisDspState ) {
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vorbis_analysis_wrote( d->vorbisDspState, 0 );
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flushVorbis();
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}
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else
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kdDebug() << "(K3bOggVorbisEncoder) call to finishEncoderInternal without init." << endl;
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}
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void K3bOggVorbisEncoder::setMetaDataInternal( K3bAudioEncoder::MetaDataField f, const TQString& value )
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{
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if( d->vorbisComment ) {
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TQCString key;
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switch( f ) {
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case META_TRACK_TITLE:
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key = "TITLE";
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break;
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case META_TRACK_ARTIST:
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key = "ARTIST";
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break;
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case META_ALBUM_TITLE:
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key = "ALBUM";
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break;
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case META_ALBUM_COMMENT:
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key = "DESCRIPTION";
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break;
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case META_YEAR:
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key = "DATE";
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break;
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case META_TRACK_NUMBER:
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key = "TRACKNUMBER";
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break;
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case META_GENRE:
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key = "GENRE";
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break;
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default:
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return;
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}
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vorbis_comment_add_tag( d->vorbisComment, key.data(), value.utf8().data() );
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}
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else
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kdDebug() << "(K3bOggVorbisEncoder) call to setMetaDataInternal without init." << endl;
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}
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void K3bOggVorbisEncoder::cleanup()
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{
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if( d->oggStream ) {
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ogg_stream_clear( d->oggStream );
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delete d->oggStream;
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d->oggStream = 0;
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}
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if( d->vorbisBlock ) {
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vorbis_block_clear( d->vorbisBlock );
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delete d->vorbisBlock;
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d->vorbisBlock = 0;
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}
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if( d->vorbisDspState ) {
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vorbis_dsp_clear( d->vorbisDspState );
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delete d->vorbisDspState;
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d->vorbisDspState = 0;
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}
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if( d->vorbisComment ) {
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vorbis_comment_clear( d->vorbisComment );
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delete d->vorbisComment;
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d->vorbisComment = 0;
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}
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if( d->vorbisInfo ) {
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vorbis_info_clear( d->vorbisInfo );
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delete d->vorbisInfo;
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d->vorbisInfo = 0;
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}
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// ogg_page and ogg_packet structs always point to storage in
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// libvorbis. They're never freed or manipulated directly
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if( d->oggPage ) {
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delete d->oggPage;
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d->oggPage = 0;
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}
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if( d->oggPacket ) {
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delete d->oggPacket;
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d->oggPacket = 0;
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}
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d->headersWritten = false;
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}
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void K3bOggVorbisEncoder::loadConfig()
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{
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TDEConfig* c = k3bcore->config();
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c->setGroup( "K3bOggVorbisEncoderPlugin" );
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d->manualBitrate = c->readBoolEntry( "manual bitrate", false );
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d->qualityLevel = c->readNumEntry( "quality level", 4 );
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d->bitrateUpper = c->readNumEntry( "bitrate upper", -1 );
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d->bitrateNominal = c->readNumEntry( "bitrate nominal", -1 );
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d->bitrateLower = c->readNumEntry( "bitrate lower", -1 );
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// d->sampleRate = c->readNumEntry( "samplerate", 44100 );
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}
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K3bOggVorbisEncoderSettingsWidget::K3bOggVorbisEncoderSettingsWidget( TQWidget* parent, const char* name )
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: K3bPluginConfigWidget( parent, name )
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{
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w = new base_K3bOggVorbisEncoderSettingsWidget( this );
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TQString ttQuality = i18n("Controls the quality of the encoded files.");
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TQString wsQuality = i18n("<p>Vorbis' audio quality is not best measured in kilobits per second, "
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"but on a scale from -1 to 10 called <em>quality</em>."
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"<p>For now, quality -1 is roughly equivalent to 45kbps average, "
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"5 is roughly 160kbps, and 10 gives about 400kbps. "
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"Most people seeking very-near-CD-quality audio encode at a quality of 5 or, "
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"for lossless stereo coupling, 6. The quality 3 gives, at "
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"approximately 110kbps a smaller filesize and significantly better fidelity "
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"than .mp3 compression at 128kbps."
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"<p><em>This explanation is based on the one from the www.vorbis.com FAQ.</em>");
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TQToolTip::add( w->m_radioQualityLevel, ttQuality );
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TQToolTip::add( w->m_labelQualityLevel, ttQuality );
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TQToolTip::add( w->m_slideQualityLevel, ttQuality );
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TQWhatsThis::add( w->m_radioQualityLevel, wsQuality );
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TQWhatsThis::add( w->m_labelQualityLevel, wsQuality );
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TQWhatsThis::add( w->m_slideQualityLevel, wsQuality );
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TQHBoxLayout* lay = new TQHBoxLayout( this );
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lay->setMargin( 0 );
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lay->addWidget( w );
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connect( w->m_slideQualityLevel, TQT_SIGNAL(valueChanged(int)),
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this, TQT_SLOT(slotQualityLevelChanged(int)) );
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slotQualityLevelChanged( 4 );
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}
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K3bOggVorbisEncoderSettingsWidget::~K3bOggVorbisEncoderSettingsWidget()
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{
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}
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void K3bOggVorbisEncoderSettingsWidget::slotQualityLevelChanged( int val )
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{
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w->m_labelQualityLevel->setText( TQString::number(val) + " "
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+ i18n("(targetted VBR of %1)").arg(s_rough_average_quality_level_bitrates[val+1]) );
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}
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void K3bOggVorbisEncoderSettingsWidget::loadConfig()
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{
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TDEConfig* c = k3bcore->config();
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c->setGroup( "K3bOggVorbisEncoderPlugin" );
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if( c->readBoolEntry( "manual bitrate", false ) )
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w->m_radioManual->setChecked(true);
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else
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w->m_radioQualityLevel->setChecked(true);
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w->m_slideQualityLevel->setValue( c->readNumEntry( "quality level", 4 ) );
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w->m_inputBitrateUpper->setValue( c->readNumEntry( "bitrate upper", -1 ) );
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w->m_checkBitrateUpper->setChecked( c->readNumEntry( "bitrate upper", -1 ) != -1 );
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w->m_inputBitrateNominal->setValue( c->readNumEntry( "bitrate nominal", -1 ) );
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w->m_checkBitrateNominal->setChecked( c->readNumEntry( "bitrate nominal", -1 ) != -1 );
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w->m_inputBitrateLower->setValue( c->readNumEntry( "bitrate lower", -1 ) );
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w->m_checkBitrateLower->setChecked( c->readNumEntry( "bitrate lower", -1 ) != -1 );
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// w->m_inputSamplerate->setValue( c->readNumEntry( "samplerate", 44100 ) );
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}
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void K3bOggVorbisEncoderSettingsWidget::saveConfig()
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{
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TDEConfig* c = k3bcore->config();
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c->setGroup( "K3bOggVorbisEncoderPlugin" );
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c->writeEntry( "manual bitrate", w->m_radioManual->isChecked() );
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c->writeEntry( "quality level", w->m_slideQualityLevel->value() );
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c->writeEntry( "bitrate upper", w->m_checkBitrateUpper->isChecked() ? w->m_inputBitrateUpper->value() : -1 );
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c->writeEntry( "bitrate nominal", w->m_checkBitrateNominal->isChecked() ? w->m_inputBitrateNominal->value() : -1 );
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c->writeEntry( "bitrate lower", w->m_checkBitrateLower->isChecked() ? w->m_inputBitrateLower->value() : -1 );
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// c->writeEntry( "samplerate", w->m_inputSamplerate->value() );
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}
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TQString K3bOggVorbisEncoder::fileTypeComment( const TQString& ) const
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{
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return i18n("Ogg-Vorbis");
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}
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long long K3bOggVorbisEncoder::fileSize( const TQString&, const K3b::Msf& msf ) const
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{
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TDEConfig* c = k3bcore->config();
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c->setGroup( "K3bOggVorbisEncoderPlugin" );
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// the following code is based on the size estimation from the audiocd tdeioslave
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// TODO: reimplement.
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if( !c->readBoolEntry( "manual bitrate", false ) ) {
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// Estimated numbers based on the Vorbis FAQ:
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// http://www.xiph.org/archives/vorbis-faq/200203/0030.html
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// static long vorbis_q_bitrate[] = { 45, 60, 74, 86, 106, 120, 152,
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// 183, 207, 239, 309, 440 };
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int qualityLevel = c->readNumEntry( "quality level", 4 );
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if( qualityLevel < -1 )
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qualityLevel = -1;
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else if( qualityLevel > 10 )
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qualityLevel = 10;
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return ( (msf.totalFrames()/75) * s_rough_average_quality_level_bitrates[qualityLevel+1] * 1000 ) / 8;
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}
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else {
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return (msf.totalFrames()/75) * c->readNumEntry( "bitrate nominal", 160 ) * 1000 / 8;
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}
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}
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K3bPluginConfigWidget* K3bOggVorbisEncoder::createConfigWidget( TQWidget* parent,
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const char* name ) const
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{
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return new K3bOggVorbisEncoderSettingsWidget( parent, name );
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}
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#include "k3boggvorbisencoder.moc"
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