Qt copyrights are now in The Qt Company, so we could update the source code headers accordingly. In the same go we should also fix the links to point to qt.io. Change-Id: I1c6faa4f59f8eca54f01ef20941fa60161dd7872 Reviewed-by: Yoann Lopes <yoann.lopes@theqtcompany.com>
311 lines
12 KiB
C++
311 lines
12 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2015 The Qt Company Ltd.
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** Contact: http://www.qt.io/licensing/
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**
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** This file is part of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:LGPL21$
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** Commercial License Usage
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** Licensees holding valid commercial Qt licenses may use this file in
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** accordance with the commercial license agreement provided with the
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** Software or, alternatively, in accordance with the terms contained in
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** a written agreement between you and The Qt Company. For licensing terms
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** and conditions see http://www.qt.io/terms-conditions. For further
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** information use the contact form at http://www.qt.io/contact-us.
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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 or version 3 as published by the Free
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** Software Foundation and appearing in the file LICENSE.LGPLv21 and
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** LICENSE.LGPLv3 included in the packaging of this file. Please review the
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** following information to ensure the GNU Lesser General Public License
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** requirements will be met: https://www.gnu.org/licenses/lgpl.html and
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** http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html.
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**
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** As a special exception, The Qt Company gives you certain additional
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** rights. These rights are described in The Qt Company 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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** $QT_END_LICENSE$
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**
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****************************************************************************/
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//TESTED_COMPONENT=src/multimedia
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#include <QtTest/QtTest>
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#include <private/qwavedecoder_p.h>
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#include <QNetworkAccessManager>
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#include <QNetworkRequest>
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#include <QNetworkReply>
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class tst_QWaveDecoder : public QObject
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{
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Q_OBJECT
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public:
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enum Corruption {
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None = 1,
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NotAWav = 2,
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NoSampleData = 4,
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FormatDescriptor = 8,
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FormatString = 16,
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DataDescriptor = 32
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};
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public slots:
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void initTestCase();
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void cleanupTestCase();
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void init();
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void cleanup();
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private slots:
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void file_data();
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void file();
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void http_data() {file_data();}
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void http();
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void readAllAtOnce();
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void readPerByte();
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};
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Q_DECLARE_METATYPE(tst_QWaveDecoder::Corruption)
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void tst_QWaveDecoder::init()
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{
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}
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void tst_QWaveDecoder::cleanup()
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{
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}
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void tst_QWaveDecoder::initTestCase()
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{
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}
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void tst_QWaveDecoder::cleanupTestCase()
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{
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}
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static QString testFilePath(const char *filename)
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{
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QString path = QString("data/%1").arg(filename);
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return QFINDTESTDATA(path);
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}
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void tst_QWaveDecoder::file_data()
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{
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QTest::addColumn<QString>("file");
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QTest::addColumn<tst_QWaveDecoder::Corruption>("corruption");
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QTest::addColumn<int>("channels");
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QTest::addColumn<int>("samplesize");
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QTest::addColumn<int>("samplerate");
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QTest::addColumn<QAudioFormat::Endian>("byteorder");
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QTest::newRow("File is empty") << testFilePath("empty.wav") << tst_QWaveDecoder::NotAWav << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("File is one byte") << testFilePath("onebyte.wav") << tst_QWaveDecoder::NotAWav << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("File is not a wav(text)") << testFilePath("notawav.wav") << tst_QWaveDecoder::NotAWav << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("Wav file has no sample data") << testFilePath("nosampledata.wav") << tst_QWaveDecoder::NoSampleData << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("corrupt fmt chunk descriptor") << testFilePath("corrupt_fmtdesc_1_16_8000.le.wav") << tst_QWaveDecoder::FormatDescriptor << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("corrupt fmt string") << testFilePath("corrupt_fmtstring_1_16_8000.le.wav") << tst_QWaveDecoder::FormatString << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("corrupt data chunk descriptor") << testFilePath("corrupt_datadesc_1_16_8000.le.wav") << tst_QWaveDecoder::DataDescriptor << -1 << -1 << -1 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_1_8_8000.wav") << testFilePath("isawav_1_8_8000.wav") << tst_QWaveDecoder::None << 1 << 8 << 8000 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_1_8_44100.wav") << testFilePath("isawav_1_8_44100.wav") << tst_QWaveDecoder::None << 1 << 8 << 44100 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_2_8_8000.wav") << testFilePath("isawav_2_8_8000.wav") << tst_QWaveDecoder::None << 2 << 8 << 8000 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_2_8_44100.wav") << testFilePath("isawav_2_8_44100.wav") << tst_QWaveDecoder::None << 2 << 8 << 44100 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_1_16_8000_le.wav") << testFilePath("isawav_1_16_8000_le.wav") << tst_QWaveDecoder::None << 1 << 16 << 8000 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_1_16_44100_le.wav") << testFilePath("isawav_1_16_44100_le.wav") << tst_QWaveDecoder::None << 1 << 16 << 44100 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_2_16_8000_be.wav") << testFilePath("isawav_2_16_8000_be.wav") << tst_QWaveDecoder::None << 2 << 16 << 8000 << QAudioFormat::BigEndian;
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QTest::newRow("File isawav_2_16_44100_be.wav") << testFilePath("isawav_2_16_44100_be.wav") << tst_QWaveDecoder::None << 2 << 16 << 44100 << QAudioFormat::BigEndian;
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// The next file has extra data in the wave header.
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QTest::newRow("File isawav_1_16_44100_le_2.wav") << testFilePath("isawav_1_16_44100_le_2.wav") << tst_QWaveDecoder::None << 1 << 16 << 44100 << QAudioFormat::LittleEndian;
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// 32 bit waves are not supported
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QTest::newRow("File isawav_1_32_8000_le.wav") << testFilePath("isawav_1_32_8000_le.wav") << tst_QWaveDecoder::FormatDescriptor << 1 << 32 << 8000 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_1_32_44100_le.wav") << testFilePath("isawav_1_32_44100_le.wav") << tst_QWaveDecoder::FormatDescriptor << 1 << 32 << 44100 << QAudioFormat::LittleEndian;
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QTest::newRow("File isawav_2_32_8000_be.wav") << testFilePath("isawav_2_32_8000_be.wav") << tst_QWaveDecoder::FormatDescriptor << 2 << 32 << 8000 << QAudioFormat::BigEndian;
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QTest::newRow("File isawav_2_32_44100_be.wav") << testFilePath("isawav_2_32_44100_be.wav") << tst_QWaveDecoder::FormatDescriptor << 2 << 32 << 44100 << QAudioFormat::BigEndian;
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}
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void tst_QWaveDecoder::file()
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{
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QFETCH(QString, file);
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QFETCH(tst_QWaveDecoder::Corruption, corruption);
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QFETCH(int, channels);
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QFETCH(int, samplesize);
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QFETCH(int, samplerate);
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QFETCH(QAudioFormat::Endian, byteorder);
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QFile stream;
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stream.setFileName(file);
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stream.open(QIODevice::ReadOnly);
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QVERIFY(stream.isOpen());
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QWaveDecoder waveDecoder(&stream);
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QSignalSpy validFormatSpy(&waveDecoder, SIGNAL(formatKnown()));
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QSignalSpy parsingErrorSpy(&waveDecoder, SIGNAL(parsingError()));
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if (corruption == NotAWav) {
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QSKIP("Not all failures detected correctly yet");
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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} else if (corruption == NoSampleData) {
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QCOMPARE(parsingErrorSpy.count(), 0);
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QVERIFY(waveDecoder.audioFormat().isValid());
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QVERIFY(waveDecoder.size() == 0);
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QVERIFY(waveDecoder.duration() == 0);
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} else if (corruption == FormatDescriptor) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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} else if (corruption == FormatString) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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QVERIFY(!waveDecoder.audioFormat().isValid());
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} else if (corruption == DataDescriptor) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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QVERIFY(waveDecoder.size() == 0);
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} else if (corruption == None) {
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QCOMPARE(parsingErrorSpy.count(), 0);
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QVERIFY(waveDecoder.audioFormat().isValid());
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QVERIFY(waveDecoder.size() > 0);
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QVERIFY(waveDecoder.duration() == 250);
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QAudioFormat format = waveDecoder.audioFormat();
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QVERIFY(format.isValid());
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QVERIFY(format.channelCount() == channels);
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QVERIFY(format.sampleSize() == samplesize);
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QVERIFY(format.sampleRate() == samplerate);
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if (format.sampleSize() != 8) {
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QVERIFY(format.byteOrder() == byteorder);
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}
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}
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stream.close();
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}
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void tst_QWaveDecoder::http()
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{
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QFETCH(QString, file);
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QFETCH(tst_QWaveDecoder::Corruption, corruption);
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QFETCH(int, channels);
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QFETCH(int, samplesize);
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QFETCH(int, samplerate);
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QFETCH(QAudioFormat::Endian, byteorder);
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QFile stream;
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stream.setFileName(file);
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stream.open(QIODevice::ReadOnly);
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QVERIFY(stream.isOpen());
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QNetworkAccessManager nam;
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QNetworkReply *reply = nam.get(QNetworkRequest(QUrl::fromLocalFile(file)));
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QWaveDecoder waveDecoder(reply);
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QSignalSpy validFormatSpy(&waveDecoder, SIGNAL(formatKnown()));
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QSignalSpy parsingErrorSpy(&waveDecoder, SIGNAL(parsingError()));
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if (corruption == NotAWav) {
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QSKIP("Not all failures detected correctly yet");
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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} else if (corruption == NoSampleData) {
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QCOMPARE(parsingErrorSpy.count(), 0);
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QVERIFY(waveDecoder.audioFormat().isValid());
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QVERIFY(waveDecoder.size() == 0);
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QVERIFY(waveDecoder.duration() == 0);
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} else if (corruption == FormatDescriptor) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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} else if (corruption == FormatString) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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QVERIFY(!waveDecoder.audioFormat().isValid());
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} else if (corruption == DataDescriptor) {
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QTRY_COMPARE(parsingErrorSpy.count(), 1);
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QCOMPARE(validFormatSpy.count(), 0);
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QVERIFY(waveDecoder.size() == 0);
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} else if (corruption == None) {
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QCOMPARE(parsingErrorSpy.count(), 0);
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QVERIFY(waveDecoder.audioFormat().isValid());
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QVERIFY(waveDecoder.size() > 0);
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QVERIFY(waveDecoder.duration() == 250);
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QAudioFormat format = waveDecoder.audioFormat();
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QVERIFY(format.isValid());
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QVERIFY(format.channelCount() == channels);
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QVERIFY(format.sampleSize() == samplesize);
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QVERIFY(format.sampleRate() == samplerate);
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if (format.sampleSize() != 8) {
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QVERIFY(format.byteOrder() == byteorder);
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}
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}
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delete reply;
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}
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void tst_QWaveDecoder::readAllAtOnce()
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{
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QFile stream;
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stream.setFileName(testFilePath("isawav_2_8_44100.wav"));
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stream.open(QIODevice::ReadOnly);
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QVERIFY(stream.isOpen());
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QWaveDecoder waveDecoder(&stream);
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QSignalSpy validFormatSpy(&waveDecoder, SIGNAL(formatKnown()));
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QVERIFY(waveDecoder.size() > 0);
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QByteArray buffer;
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buffer.resize(waveDecoder.size());
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qint64 readSize = waveDecoder.read(buffer.data(), waveDecoder.size());
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QVERIFY(readSize == waveDecoder.size());
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readSize = waveDecoder.read(buffer.data(), 1);
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QVERIFY(readSize == 0);
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stream.close();
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}
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void tst_QWaveDecoder::readPerByte()
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{
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QFile stream;
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stream.setFileName(testFilePath("isawav_2_8_44100.wav"));
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stream.open(QIODevice::ReadOnly);
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QVERIFY(stream.isOpen());
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QWaveDecoder waveDecoder(&stream);
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QSignalSpy validFormatSpy(&waveDecoder, SIGNAL(formatKnown()));
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QTRY_COMPARE(validFormatSpy.count(), 1);
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QVERIFY(waveDecoder.size() > 0);
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qint64 readSize = 0;
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char buf;
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for (int ii = 0; ii < waveDecoder.size(); ++ii)
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readSize += waveDecoder.read(&buf, 1);
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QVERIFY(readSize == waveDecoder.size());
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QVERIFY(waveDecoder.read(&buf,1) == 0);
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stream.close();
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}
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QTEST_MAIN(tst_QWaveDecoder)
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#include "tst_qwavedecoder.moc"
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