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/****************************************************************************
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**
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** Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies).
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** All rights reserved.
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** Contact: Nokia Corporation (qt-info@nokia.com)
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**
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** This file is part of the test suite of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:LGPL$
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** No Commercial Usage
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** This file contains pre-release code and may not be distributed.
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** You may use this file in accordance with the terms and conditions
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** contained in the Technology Preview License Agreement accompanying
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** this package.
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**
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** GNU Lesser General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU Lesser
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** General Public License version 2.1 as published by the Free Software
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** Foundation and appearing in the file LICENSE.LGPL included in the
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** packaging of this file. Please review the following information to
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** ensure the GNU Lesser General Public License version 2.1 requirements
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** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html.
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**
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** In addition, as a special exception, Nokia gives you certain additional
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** rights. These rights are described in the Nokia Qt LGPL Exception
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** version 1.1, included in the file LGPL_EXCEPTION.txt in this package.
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**
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** If you have questions regarding the use of this file, please contact
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** Nokia at qt-info@nokia.com.
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**
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**
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**
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**
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**
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**
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**
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include <QtTest/QtTest>
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#include <QtCore/qlocale.h>
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#include <qaudiooutput.h>
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#include <qaudiodeviceinfo.h>
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#include <qaudio.h>
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#include <qaudioformat.h>
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class tst_QAudioOutput : public QObject
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{
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Q_OBJECT
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public:
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tst_QAudioOutput(QObject* parent=0) : QObject(parent) {}
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private slots:
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void initTestCase();
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void settings();
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void buffers();
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void notifyInterval();
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void pullFile();
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void pushFile();
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private:
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bool available;
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QAudioFormat format;
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QAudioOutput* audio;
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};
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void tst_QAudioOutput::initTestCase()
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{
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format.setFrequency(8000);
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format.setChannels(1);
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format.setSampleSize(8);
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format.setCodec("audio/pcm");
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format.setByteOrder(QAudioFormat::LittleEndian);
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format.setSampleType(QAudioFormat::UnSignedInt);
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// Only perform tests if audio output device exists!
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QList<QAudioDeviceInfo> devices = QAudioDeviceInfo::deviceList(QAudio::AudioOutput);
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if(devices.size() > 0)
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available = true;
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else {
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qWarning()<<"NOTE: no audio output device found, no test will be performed";
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available = false;
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}
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audio = new QAudioOutput(format, this);
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}
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void tst_QAudioOutput::settings()
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{
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if(available) {
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// Confirm the setting we added in the init function.
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QAudioFormat f = audio->format();
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QVERIFY(format.channels() == f.channels());
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QVERIFY(format.frequency() == f.frequency());
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QVERIFY(format.sampleSize() == f.sampleSize());
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QVERIFY(format.codec() == f.codec());
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QVERIFY(format.byteOrder() == f.byteOrder());
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QVERIFY(format.sampleType() == f.sampleType());
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}
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}
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void tst_QAudioOutput::buffers()
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{
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if(available) {
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// Should always have a buffer size greater than zero.
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int store = audio->bufferSize();
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audio->setBufferSize(4096);
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QVERIFY(audio->bufferSize() > 0);
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audio->setBufferSize(store);
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QVERIFY(audio->bufferSize() == store);
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}
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}
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void tst_QAudioOutput::notifyInterval()
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{
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if(available) {
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QVERIFY(audio->notifyInterval() == 1000); // Default
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audio->setNotifyInterval(500);
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QVERIFY(audio->notifyInterval() == 500); // Custom
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audio->setNotifyInterval(1000); // reset
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}
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}
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void tst_QAudioOutput::pullFile()
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{
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if(available) {
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QFile file(SRCDIR "4.wav");
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QVERIFY(file.exists());
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file.open(QIODevice::ReadOnly);
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QSignalSpy readSignal(audio, SIGNAL(notify()));
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QSignalSpy stateSignal(audio, SIGNAL(stateChanged(QAudio::State)));
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audio->setNotifyInterval(100);
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// Always have default states, before start
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QVERIFY(audio->state() == QAudio::StopState);
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QVERIFY(audio->error() == QAudio::NoError);
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QVERIFY(audio->clock() == 0);
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audio->start(&file);
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QTest::qWait(20); // wait 20ms
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// Check state, bytesFree() and periodSize() are valid non-zero values.
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QVERIFY(audio->state() == QAudio::ActiveState);
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QVERIFY(audio->error() == QAudio::NoError);
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QVERIFY(audio->periodSize() > 0);
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QVERIFY(audio->clock() > 10000 && audio->clock() < 800000);
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QVERIFY(stateSignal.count() == 1); // State changed to QAudio::ActiveState
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// Wait until finished...
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QTestEventLoop::instance().enterLoop(1);
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QCOMPARE(audio->totalTime(), qint64(692250));
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#ifdef Q_OS_WINCE
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// 4.wav is a little less than 700ms, so notify should fire 4 times on Wince!
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QVERIFY(readSignal.count() >= 4);
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#else
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// 4.wav is a little less than 700ms, so notify should fire 6 times!
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QVERIFY(readSignal.count() >= 6);
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#endif
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audio->stop();
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QTest::qWait(20); // wait 20ms
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QVERIFY(audio->state() == QAudio::StopState);
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QVERIFY(audio->clock() == 0);
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// Can only check to make sure we got at least 1 more signal, but can be more.
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QVERIFY(stateSignal.count() > 1);
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file.close();
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}
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}
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void tst_QAudioOutput::pushFile()
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{
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if(available) {
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QFile file(SRCDIR "4.wav");
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QVERIFY(file.exists());
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file.open(QIODevice::ReadOnly);
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const qint64 fileSize = file.size();
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QIODevice* feed = audio->start(0);
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char* buffer = new char[fileSize];
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file.read(buffer, fileSize);
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qint64 counter=0;
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qint64 written=0;
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while(written < fileSize) {
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written+=feed->write(buffer+written,fileSize-written);
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QTest::qWait(20);
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counter++;
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}
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QTestEventLoop::instance().enterLoop(1);
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QVERIFY(written == fileSize);
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QVERIFY(audio->totalTime() == 692250);
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audio->stop();
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file.close();
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delete [] buffer;
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delete audio;
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}
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}
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QTEST_MAIN(tst_QAudioOutput)
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#include "tst_qaudiooutput.moc"
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