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456 lines
15 KiB
456 lines
15 KiB
11 years ago
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/*
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==============================================================================
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This file is part of the JUCE library.
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Copyright (c) 2013 - Raw Material Software Ltd.
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Permission is granted to use this software under the terms of either:
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a) the GPL v2 (or any later version)
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b) the Affero GPL v3
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Details of these licenses can be found at: www.gnu.org/licenses
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JUCE is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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------------------------------------------------------------------------------
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To release a closed-source product which uses JUCE, commercial licenses are
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available: visit www.juce.com for more information.
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==============================================================================
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*/
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const int kilobytesPerSecond1x = 176;
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struct AudioTrackProducerClass : public ObjCClass <NSObject>
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{
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AudioTrackProducerClass() : ObjCClass <NSObject> ("JUCEAudioTrackProducer_")
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{
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addIvar<AudioSourceHolder*> ("source");
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addMethod (@selector (initWithAudioSourceHolder:), initWithAudioSourceHolder, "@@:^v");
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addMethod (@selector (cleanupTrackAfterBurn:), cleanupTrackAfterBurn, "v@:@");
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addMethod (@selector (cleanupTrackAfterVerification:), cleanupTrackAfterVerification, "c@:@");
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addMethod (@selector (estimateLengthOfTrack:), estimateLengthOfTrack, "Q@:@");
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addMethod (@selector (prepareTrack:forBurn:toMedia:), prepareTrack, "c@:@@@");
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addMethod (@selector (prepareTrackForVerification:), prepareTrackForVerification, "c@:@");
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addMethod (@selector (produceDataForTrack:intoBuffer:length:atAddress:blockSize:ioFlags:),
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produceDataForTrack, "I@:@^cIQI^I");
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addMethod (@selector (producePreGapForTrack:intoBuffer:length:atAddress:blockSize:ioFlags:),
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produceDataForTrack, "I@:@^cIQI^I");
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addMethod (@selector (verifyDataForTrack:intoBuffer:length:atAddress:blockSize:ioFlags:),
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produceDataForTrack, "I@:@^cIQI^I");
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registerClass();
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}
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struct AudioSourceHolder
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{
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AudioSourceHolder (AudioSource* s, int numFrames)
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: source (s), readPosition (0), lengthInFrames (numFrames)
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{
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}
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~AudioSourceHolder()
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{
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if (source != nullptr)
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source->releaseResources();
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}
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ScopedPointer<AudioSource> source;
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int readPosition, lengthInFrames;
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};
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private:
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static id initWithAudioSourceHolder (id self, SEL, AudioSourceHolder* source)
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{
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self = sendSuperclassMessage (self, @selector (init));
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object_setInstanceVariable (self, "source", source);
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return self;
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}
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static AudioSourceHolder* getSource (id self)
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{
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return getIvar<AudioSourceHolder*> (self, "source");
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}
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static void dealloc (id self, SEL)
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{
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delete getSource (self);
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sendSuperclassMessage (self, @selector (dealloc));
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}
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static void cleanupTrackAfterBurn (id self, SEL, DRTrack*) {}
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static BOOL cleanupTrackAfterVerification (id self, SEL, DRTrack*) { return true; }
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static uint64_t estimateLengthOfTrack (id self, SEL, DRTrack*)
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{
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return getSource (self)->lengthInFrames;
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}
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static BOOL prepareTrack (id self, SEL, DRTrack*, DRBurn*, NSDictionary*)
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{
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if (AudioSourceHolder* const source = getSource (self))
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{
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source->source->prepareToPlay (44100 / 75, 44100);
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source->readPosition = 0;
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}
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return true;
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}
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static BOOL prepareTrackForVerification (id self, SEL, DRTrack*)
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{
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if (AudioSourceHolder* const source = getSource (self))
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source->source->prepareToPlay (44100 / 75, 44100);
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return true;
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}
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static uint32_t produceDataForTrack (id self, SEL, DRTrack*, char* buffer,
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uint32_t bufferLength, uint64_t /*address*/,
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uint32_t /*blockSize*/, uint32_t* /*flags*/)
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{
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if (AudioSourceHolder* const source = getSource (self))
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{
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const int numSamples = jmin ((int) bufferLength / 4,
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(source->lengthInFrames * (44100 / 75)) - source->readPosition);
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if (numSamples > 0)
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{
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AudioSampleBuffer tempBuffer (2, numSamples);
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AudioSourceChannelInfo info (tempBuffer);
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source->source->getNextAudioBlock (info);
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typedef AudioData::Pointer <AudioData::Int16, AudioData::LittleEndian, AudioData::Interleaved, AudioData::NonConst> CDSampleFormat;
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typedef AudioData::Pointer <AudioData::Float32, AudioData::NativeEndian, AudioData::NonInterleaved, AudioData::Const> SourceSampleFormat;
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CDSampleFormat left (buffer, 2);
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left.convertSamples (SourceSampleFormat (tempBuffer.getSampleData (0)), numSamples);
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CDSampleFormat right (buffer + 2, 2);
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right.convertSamples (SourceSampleFormat (tempBuffer.getSampleData (1)), numSamples);
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source->readPosition += numSamples;
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}
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return numSamples * 4;
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}
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return 0;
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}
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static uint32_t producePreGapForTrack (id self, SEL, DRTrack*, char* buffer,
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uint32_t bufferLength, uint64_t /*address*/,
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uint32_t /*blockSize*/, uint32_t* /*flags*/)
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{
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zeromem (buffer, bufferLength);
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return bufferLength;
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}
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static BOOL verifyDataForTrack (id self, SEL, DRTrack*, const char*,
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uint32_t /*bufferLength*/, uint64_t /*address*/,
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uint32_t /*blockSize*/, uint32_t* /*flags*/)
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{
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return true;
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}
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};
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struct OpenDiskDevice
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{
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OpenDiskDevice (DRDevice* d)
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: device (d),
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tracks ([[NSMutableArray alloc] init]),
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underrunProtection (true)
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{
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}
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~OpenDiskDevice()
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{
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[tracks release];
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}
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void addSourceTrack (AudioSource* source, int numSamples)
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{
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if (source != nullptr)
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{
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const int numFrames = (numSamples + 587) / 588;
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static AudioTrackProducerClass cls;
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NSObject* producer = [cls.createInstance() performSelector: @selector (initWithAudioSourceHolder:)
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withObject: (id) new AudioTrackProducerClass::AudioSourceHolder (source, numFrames)];
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DRTrack* track = [[DRTrack alloc] initWithProducer: producer];
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{
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NSMutableDictionary* p = [[track properties] mutableCopy];
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[p setObject: [DRMSF msfWithFrames: numFrames] forKey: DRTrackLengthKey];
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[p setObject: [NSNumber numberWithUnsignedShort: 2352] forKey: DRBlockSizeKey];
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[p setObject: [NSNumber numberWithInt: 0] forKey: DRDataFormKey];
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[p setObject: [NSNumber numberWithInt: 0] forKey: DRBlockTypeKey];
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[p setObject: [NSNumber numberWithInt: 0] forKey: DRTrackModeKey];
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[p setObject: [NSNumber numberWithInt: 0] forKey: DRSessionFormatKey];
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[track setProperties: p];
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[p release];
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}
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[tracks addObject: track];
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[track release];
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[producer release];
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}
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}
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String burn (AudioCDBurner::BurnProgressListener* listener,
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bool shouldEject, bool peformFakeBurnForTesting, int burnSpeed)
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{
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DRBurn* burn = [DRBurn burnForDevice: device];
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if (! [device acquireExclusiveAccess])
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return "Couldn't open or write to the CD device";
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[device acquireMediaReservation];
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NSMutableDictionary* d = [[burn properties] mutableCopy];
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[d autorelease];
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[d setObject: [NSNumber numberWithBool: peformFakeBurnForTesting] forKey: DRBurnTestingKey];
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[d setObject: [NSNumber numberWithBool: false] forKey: DRBurnVerifyDiscKey];
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[d setObject: (shouldEject ? DRBurnCompletionActionEject : DRBurnCompletionActionMount) forKey: DRBurnCompletionActionKey];
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if (burnSpeed > 0)
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[d setObject: [NSNumber numberWithFloat: burnSpeed * kilobytesPerSecond1x] forKey: DRBurnRequestedSpeedKey];
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if (! underrunProtection)
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[d setObject: [NSNumber numberWithBool: false] forKey: DRBurnUnderrunProtectionKey];
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[burn setProperties: d];
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[burn writeLayout: tracks];
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for (;;)
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{
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Thread::sleep (300);
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float progress = [[[burn status] objectForKey: DRStatusPercentCompleteKey] floatValue];
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if (listener != nullptr && listener->audioCDBurnProgress (progress))
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{
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[burn abort];
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return "User cancelled the write operation";
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}
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if ([[[burn status] objectForKey: DRStatusStateKey] isEqualTo: DRStatusStateFailed])
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return "Write operation failed";
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if ([[[burn status] objectForKey: DRStatusStateKey] isEqualTo: DRStatusStateDone])
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break;
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NSString* err = (NSString*) [[[burn status] objectForKey: DRErrorStatusKey]
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objectForKey: DRErrorStatusErrorStringKey];
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if ([err length] > 0)
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return nsStringToJuce (err);
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}
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[device releaseMediaReservation];
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[device releaseExclusiveAccess];
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return String::empty;
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}
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DRDevice* device;
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NSMutableArray* tracks;
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bool underrunProtection;
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};
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//==============================================================================
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class AudioCDBurner::Pimpl : public Timer
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{
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public:
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Pimpl (AudioCDBurner& b, int deviceIndex) : owner (b)
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{
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if (DRDevice* dev = [[DRDevice devices] objectAtIndex: deviceIndex])
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{
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device = new OpenDiskDevice (dev);
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lastState = getDiskState();
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startTimer (1000);
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}
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}
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~Pimpl()
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{
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stopTimer();
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}
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void timerCallback() override
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{
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const DiskState state = getDiskState();
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if (state != lastState)
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{
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lastState = state;
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owner.sendChangeMessage();
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}
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}
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DiskState getDiskState() const
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{
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if ([device->device isValid])
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{
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NSDictionary* status = [device->device status];
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NSString* state = [status objectForKey: DRDeviceMediaStateKey];
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if ([state isEqualTo: DRDeviceMediaStateNone])
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{
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if ([[status objectForKey: DRDeviceIsTrayOpenKey] boolValue])
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return trayOpen;
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return noDisc;
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}
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if ([state isEqualTo: DRDeviceMediaStateMediaPresent])
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{
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if ([[[status objectForKey: DRDeviceMediaInfoKey] objectForKey: DRDeviceMediaBlocksFreeKey] intValue] > 0)
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return writableDiskPresent;
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return readOnlyDiskPresent;
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}
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}
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return unknown;
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}
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bool openTray() { return [device->device isValid] && [device->device ejectMedia]; }
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Array<int> getAvailableWriteSpeeds() const
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{
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Array<int> results;
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if ([device->device isValid])
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for (id kbPerSec in [[[device->device status] objectForKey: DRDeviceMediaInfoKey] objectForKey: DRDeviceBurnSpeedsKey])
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results.add ([kbPerSec intValue] / kilobytesPerSecond1x);
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return results;
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}
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bool setBufferUnderrunProtection (const bool shouldBeEnabled)
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{
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if ([device->device isValid])
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{
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device->underrunProtection = shouldBeEnabled;
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return shouldBeEnabled && [[[device->device status] objectForKey: DRDeviceCanUnderrunProtectCDKey] boolValue];
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}
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return false;
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}
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int getNumAvailableAudioBlocks() const
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{
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return [[[[device->device status] objectForKey: DRDeviceMediaInfoKey]
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objectForKey: DRDeviceMediaBlocksFreeKey] intValue];
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}
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ScopedPointer<OpenDiskDevice> device;
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private:
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DiskState lastState;
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AudioCDBurner& owner;
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};
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//==============================================================================
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AudioCDBurner::AudioCDBurner (const int deviceIndex)
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{
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pimpl = new Pimpl (*this, deviceIndex);
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}
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AudioCDBurner::~AudioCDBurner()
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{
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}
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AudioCDBurner* AudioCDBurner::openDevice (const int deviceIndex)
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{
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ScopedPointer<AudioCDBurner> b (new AudioCDBurner (deviceIndex));
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if (b->pimpl->device == nil)
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b = nullptr;
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return b.release();
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}
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StringArray AudioCDBurner::findAvailableDevices()
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{
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StringArray s;
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for (NSDictionary* dic in [DRDevice devices])
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if (NSString* name = [dic valueForKey: DRDeviceProductNameKey])
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s.add (nsStringToJuce (name));
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return s;
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}
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AudioCDBurner::DiskState AudioCDBurner::getDiskState() const
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{
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return pimpl->getDiskState();
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}
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bool AudioCDBurner::isDiskPresent() const
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{
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return getDiskState() == writableDiskPresent;
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}
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bool AudioCDBurner::openTray()
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{
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return pimpl->openTray();
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}
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AudioCDBurner::DiskState AudioCDBurner::waitUntilStateChange (int timeOutMilliseconds)
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{
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const int64 timeout = Time::currentTimeMillis() + timeOutMilliseconds;
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DiskState oldState = getDiskState();
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DiskState newState = oldState;
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while (newState == oldState && Time::currentTimeMillis() < timeout)
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{
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newState = getDiskState();
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Thread::sleep (100);
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}
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return newState;
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}
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Array<int> AudioCDBurner::getAvailableWriteSpeeds() const
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{
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return pimpl->getAvailableWriteSpeeds();
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}
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bool AudioCDBurner::setBufferUnderrunProtection (const bool shouldBeEnabled)
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{
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return pimpl->setBufferUnderrunProtection (shouldBeEnabled);
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}
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int AudioCDBurner::getNumAvailableAudioBlocks() const
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{
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return pimpl->getNumAvailableAudioBlocks();
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}
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bool AudioCDBurner::addAudioTrack (AudioSource* source, int numSamps)
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{
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if ([pimpl->device->device isValid])
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{
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pimpl->device->addSourceTrack (source, numSamps);
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return true;
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}
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return false;
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}
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String AudioCDBurner::burn (AudioCDBurner::BurnProgressListener* listener,
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bool ejectDiscAfterwards,
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bool performFakeBurnForTesting,
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int writeSpeed)
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{
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if ([pimpl->device->device isValid])
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return pimpl->device->burn (listener, ejectDiscAfterwards, performFakeBurnForTesting, writeSpeed);
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return "Couldn't open or write to the CD device";
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}
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