Delete obsolete methods from QAudioFormat and QAudioDeviceInfo and update code that relied on the obsolete methods. Change-Id: I007e36375a45399b1d5a289341bc5d5a05dc68cc Reviewed-by: Michael Goddard <michael.goddard@nokia.com>
206 lines
6.7 KiB
C++
Executable File
206 lines
6.7 KiB
C++
Executable File
/****************************************************************************
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**
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** Copyright (C) 2012 Nokia Corporation and/or its subsidiary(-ies).
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** Contact: http://www.qt-project.org/
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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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** GNU Lesser General Public License Usage
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** This file may be used under the terms of the GNU Lesser General Public
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** License version 2.1 as published by the Free Software Foundation and
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** appearing in the file LICENSE.LGPL included in the packaging of this
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** file. Please review the following information to ensure the GNU Lesser
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** General Public License version 2.1 requirements will be met:
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** 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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** GNU General Public License Usage
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** Alternatively, this file may be used under the terms of the GNU General
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** Public License version 3.0 as published by the Free Software Foundation
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** and appearing in the file LICENSE.GPL included in the packaging of this
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** file. Please review the following information to ensure the GNU General
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** Public License version 3.0 requirements will be met:
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** http://www.gnu.org/copyleft/gpl.html.
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**
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** Other Usage
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** Alternatively, this file may be used in accordance with the terms and
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** conditions contained in a signed written agreement between you and Nokia.
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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 <QtCore/qendian.h>
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#include "wavheader.h"
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struct chunk
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{
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char id[4];
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quint32 size;
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};
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struct RIFFHeader
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{
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chunk descriptor; // "RIFF"
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char type[4]; // "WAVE"
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};
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struct WAVEHeader
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{
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chunk descriptor;
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quint16 audioFormat;
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quint16 numChannels;
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quint32 sampleRate;
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quint32 byteRate;
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quint16 blockAlign;
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quint16 bitsPerSample;
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};
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struct DATAHeader
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{
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chunk descriptor;
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};
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struct CombinedHeader
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{
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RIFFHeader riff;
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WAVEHeader wave;
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DATAHeader data;
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};
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static const int HeaderLength = sizeof(CombinedHeader);
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WavHeader::WavHeader(const QAudioFormat &format, qint64 dataLength)
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: m_format(format)
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, m_dataLength(dataLength)
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{
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}
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bool WavHeader::read(QIODevice &device)
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{
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bool result = true;
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if (!device.isSequential())
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result = device.seek(0);
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// else, assume that current position is the start of the header
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if (result) {
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CombinedHeader header;
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result = (device.read(reinterpret_cast<char *>(&header), HeaderLength) == HeaderLength);
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if (result) {
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if ((memcmp(&header.riff.descriptor.id, "RIFF", 4) == 0
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|| memcmp(&header.riff.descriptor.id, "RIFX", 4) == 0)
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&& memcmp(&header.riff.type, "WAVE", 4) == 0
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&& memcmp(&header.wave.descriptor.id, "fmt ", 4) == 0
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&& header.wave.audioFormat == 1 // PCM
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) {
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if (memcmp(&header.riff.descriptor.id, "RIFF", 4) == 0)
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m_format.setByteOrder(QAudioFormat::LittleEndian);
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else
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m_format.setByteOrder(QAudioFormat::BigEndian);
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m_format.setChannelCount(qFromLittleEndian<quint16>(header.wave.numChannels));
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m_format.setCodec("audio/pcm");
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m_format.setSampleRate(qFromLittleEndian<quint32>(header.wave.sampleRate));
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m_format.setSampleSize(qFromLittleEndian<quint16>(header.wave.bitsPerSample));
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switch(header.wave.bitsPerSample) {
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case 8:
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m_format.setSampleType(QAudioFormat::UnSignedInt);
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break;
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case 16:
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m_format.setSampleType(QAudioFormat::SignedInt);
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break;
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default:
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result = false;
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}
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m_dataLength = device.size() - HeaderLength;
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} else {
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result = false;
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}
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}
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}
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return result;
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}
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bool WavHeader::write(QIODevice &device)
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{
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CombinedHeader header;
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memset(&header, 0, HeaderLength);
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// RIFF header
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if (m_format.byteOrder() == QAudioFormat::LittleEndian)
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memcpy(header.riff.descriptor.id,"RIFF",4);
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else
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memcpy(header.riff.descriptor.id,"RIFX",4);
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qToLittleEndian<quint32>(quint32(m_dataLength + HeaderLength - 8),
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reinterpret_cast<unsigned char*>(&header.riff.descriptor.size));
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memcpy(header.riff.type, "WAVE",4);
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// WAVE header
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memcpy(header.wave.descriptor.id,"fmt ",4);
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qToLittleEndian<quint32>(quint32(16),
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reinterpret_cast<unsigned char*>(&header.wave.descriptor.size));
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qToLittleEndian<quint16>(quint16(1),
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reinterpret_cast<unsigned char*>(&header.wave.audioFormat));
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qToLittleEndian<quint16>(quint16(m_format.channelCount()),
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reinterpret_cast<unsigned char*>(&header.wave.numChannels));
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qToLittleEndian<quint32>(quint32(m_format.sampleRate()),
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reinterpret_cast<unsigned char*>(&header.wave.sampleRate));
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qToLittleEndian<quint32>(quint32(m_format.sampleRate() * m_format.channelCount() * m_format.sampleSize() / 8),
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reinterpret_cast<unsigned char*>(&header.wave.byteRate));
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qToLittleEndian<quint16>(quint16(m_format.channelCount() * m_format.sampleSize() / 8),
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reinterpret_cast<unsigned char*>(&header.wave.blockAlign));
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qToLittleEndian<quint16>(quint16(m_format.sampleSize()),
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reinterpret_cast<unsigned char*>(&header.wave.bitsPerSample));
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// DATA header
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memcpy(header.data.descriptor.id,"data",4);
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qToLittleEndian<quint32>(quint32(m_dataLength),
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reinterpret_cast<unsigned char*>(&header.data.descriptor.size));
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return (device.write(reinterpret_cast<const char *>(&header), HeaderLength) == HeaderLength);
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}
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const QAudioFormat& WavHeader::format() const
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{
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return m_format;
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}
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qint64 WavHeader::dataLength() const
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{
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return m_dataLength;
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}
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qint64 WavHeader::headerLength()
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{
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return HeaderLength;
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}
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bool WavHeader::writeDataLength(QIODevice &device, qint64 dataLength)
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{
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bool result = false;
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if (!device.isSequential()) {
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device.seek(40);
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unsigned char dataLengthLE[4];
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qToLittleEndian<quint32>(quint32(dataLength), dataLengthLE);
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result = (device.write(reinterpret_cast<const char *>(dataLengthLE), 4) == 4);
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}
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return result;
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}
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