Files correlati : cg0.exe cg0700a.msk cg0700b.msk cg3.exe cg4.exe Bug : Commento: Merge 1.0 libraries
315 lines
10 KiB
C++
315 lines
10 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 examples of the Qt Toolkit.
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**
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** $QT_BEGIN_LICENSE:BSD$
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** You may use this file under the terms of the BSD license as follows:
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**
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** "Redistribution and use in source and binary forms, with or without
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** modification, are permitted provided that the following conditions are
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** met:
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** * Redistributions of source code must retain the above copyright
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** notice, this list of conditions and the following disclaimer.
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** * Redistributions in binary form must reproduce the above copyright
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** notice, this list of conditions and the following disclaimer in
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** the documentation and/or other materials provided with the
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** distribution.
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** * Neither the name of The Qt Company Ltd nor the names of its
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** contributors may be used to endorse or promote products derived
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** from this software without specific prior written permission.
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**
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**
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** THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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** "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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** LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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** A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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** OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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** SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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** LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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** DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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** THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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** (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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** OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE."
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**
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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include <QDebug>
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#include <QVBoxLayout>
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#include <QAudioOutput>
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#include <QAudioDeviceInfo>
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#include <QtCore/qmath.h>
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#include <QtCore/qendian.h>
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#include "audiooutput.h"
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const QString AudioTest::PushModeLabel(tr("Enable push mode"));
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const QString AudioTest::PullModeLabel(tr("Enable pull mode"));
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const QString AudioTest::SuspendLabel(tr("Suspend playback"));
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const QString AudioTest::ResumeLabel(tr("Resume playback"));
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const int DurationSeconds = 1;
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const int ToneFrequencyHz = 600;
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const int DataFrequencyHz = 44100;
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const int BufferSize = 32768;
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Generator::Generator(const QAudioFormat &format,
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qint64 durationUs,
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int frequency,
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QObject *parent)
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: QIODevice(parent)
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, m_pos(0)
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{
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generateData(format, durationUs, frequency);
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}
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Generator::~Generator()
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{
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}
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void Generator::start()
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{
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open(QIODevice::ReadOnly);
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}
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void Generator::stop()
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{
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m_pos = 0;
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close();
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}
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void Generator::generateData(const QAudioFormat &format, qint64 durationUs, int frequency)
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{
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const int channelBytes = format.sampleSize() / 8;
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const int sampleBytes = format.channels() * channelBytes;
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qint64 length = (format.frequency() * format.channels() * (format.sampleSize() / 8))
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* durationUs / 100000;
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Q_ASSERT(length % sampleBytes == 0);
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Q_UNUSED(sampleBytes) // suppress warning in release builds
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m_buffer.resize(length);
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unsigned char *ptr = reinterpret_cast<unsigned char *>(m_buffer.data());
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int sampleIndex = 0;
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while (length) {
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const qreal x = qSin(2 * M_PI * frequency * qreal(sampleIndex % format.frequency()) / format.frequency());
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for (int i=0; i<format.channels(); ++i) {
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if (format.sampleSize() == 8 && format.sampleType() == QAudioFormat::UnSignedInt) {
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const quint8 value = static_cast<quint8>((1.0 + x) / 2 * 255);
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*reinterpret_cast<quint8*>(ptr) = value;
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} else if (format.sampleSize() == 8 && format.sampleType() == QAudioFormat::SignedInt) {
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const qint8 value = static_cast<qint8>(x * 127);
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*reinterpret_cast<quint8*>(ptr) = value;
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} else if (format.sampleSize() == 16 && format.sampleType() == QAudioFormat::UnSignedInt) {
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quint16 value = static_cast<quint16>((1.0 + x) / 2 * 65535);
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if (format.byteOrder() == QAudioFormat::LittleEndian)
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qToLittleEndian<quint16>(value, ptr);
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else
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qToBigEndian<quint16>(value, ptr);
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} else if (format.sampleSize() == 16 && format.sampleType() == QAudioFormat::SignedInt) {
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qint16 value = static_cast<qint16>(x * 32767);
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if (format.byteOrder() == QAudioFormat::LittleEndian)
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qToLittleEndian<qint16>(value, ptr);
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else
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qToBigEndian<qint16>(value, ptr);
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}
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ptr += channelBytes;
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length -= channelBytes;
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}
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++sampleIndex;
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}
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}
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qint64 Generator::readData(char *data, qint64 len)
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{
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qint64 total = 0;
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while (len - total > 0) {
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const qint64 chunk = qMin((m_buffer.size() - m_pos), len - total);
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memcpy(data + total, m_buffer.constData() + m_pos, chunk);
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m_pos = (m_pos + chunk) % m_buffer.size();
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total += chunk;
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}
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return total;
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}
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qint64 Generator::writeData(const char *data, qint64 len)
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{
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Q_UNUSED(data);
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Q_UNUSED(len);
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return 0;
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}
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qint64 Generator::bytesAvailable() const
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{
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return m_buffer.size() + QIODevice::bytesAvailable();
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}
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AudioTest::AudioTest()
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: m_pullTimer(new QTimer(this))
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, m_modeButton(0)
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, m_suspendResumeButton(0)
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, m_deviceBox(0)
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, m_device(QAudioDeviceInfo::defaultOutputDevice())
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, m_generator(0)
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, m_audioOutput(0)
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, m_output(0)
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, m_buffer(BufferSize, 0)
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{
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initializeWindow();
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initializeAudio();
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}
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void AudioTest::initializeWindow()
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{
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QScopedPointer<QWidget> window(new QWidget);
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QScopedPointer<QVBoxLayout> layout(new QVBoxLayout);
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m_deviceBox = new QComboBox(this);
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foreach (const QAudioDeviceInfo &deviceInfo, QAudioDeviceInfo::availableDevices(QAudio::AudioOutput))
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m_deviceBox->addItem(deviceInfo.deviceName(), QVariant::fromValue(deviceInfo));
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connect(m_deviceBox,SIGNAL(activated(int)),SLOT(deviceChanged(int)));
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layout->addWidget(m_deviceBox);
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m_modeButton = new QPushButton(this);
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m_modeButton->setText(PushModeLabel);
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connect(m_modeButton, SIGNAL(clicked()), SLOT(toggleMode()));
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layout->addWidget(m_modeButton);
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m_suspendResumeButton = new QPushButton(this);
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m_suspendResumeButton->setText(SuspendLabel);
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connect(m_suspendResumeButton, SIGNAL(clicked()), SLOT(toggleSuspendResume()));
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layout->addWidget(m_suspendResumeButton);
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window->setLayout(layout.data());
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layout.take(); // ownership transferred
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setCentralWidget(window.data());
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QWidget *const windowPtr = window.take(); // ownership transferred
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windowPtr->show();
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}
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void AudioTest::initializeAudio()
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{
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connect(m_pullTimer, SIGNAL(timeout()), SLOT(pullTimerExpired()));
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m_pullMode = true;
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m_format.setFrequency(DataFrequencyHz);
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m_format.setChannels(1);
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m_format.setSampleSize(16);
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m_format.setCodec("audio/pcm");
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m_format.setByteOrder(QAudioFormat::LittleEndian);
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m_format.setSampleType(QAudioFormat::SignedInt);
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QAudioDeviceInfo info(QAudioDeviceInfo::defaultOutputDevice());
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if (!info.isFormatSupported(m_format)) {
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qWarning() << "Default format not supported - trying to use nearest";
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m_format = info.nearestFormat(m_format);
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}
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m_generator = new Generator(m_format, DurationSeconds*1000000, ToneFrequencyHz, this);
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createAudioOutput();
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}
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void AudioTest::createAudioOutput()
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{
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delete m_audioOutput;
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m_audioOutput = 0;
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m_audioOutput = new QAudioOutput(m_device, m_format, this);
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connect(m_audioOutput, SIGNAL(notify()), SLOT(notified()));
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connect(m_audioOutput, SIGNAL(stateChanged(QAudio::State)), SLOT(stateChanged(QAudio::State)));
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m_generator->start();
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m_audioOutput->start(m_generator);
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}
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AudioTest::~AudioTest()
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{
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}
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void AudioTest::deviceChanged(int index)
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{
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m_pullTimer->stop();
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m_generator->stop();
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m_audioOutput->stop();
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m_audioOutput->disconnect(this);
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m_device = m_deviceBox->itemData(index).value<QAudioDeviceInfo>();
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createAudioOutput();
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}
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void AudioTest::notified()
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{
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qWarning() << "bytesFree = " << m_audioOutput->bytesFree()
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<< ", " << "elapsedUSecs = " << m_audioOutput->elapsedUSecs()
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<< ", " << "processedUSecs = " << m_audioOutput->processedUSecs();
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}
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void AudioTest::pullTimerExpired()
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{
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if (m_audioOutput && m_audioOutput->state() != QAudio::StoppedState) {
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int chunks = m_audioOutput->bytesFree()/m_audioOutput->periodSize();
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while (chunks) {
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const qint64 len = m_generator->read(m_buffer.data(), m_audioOutput->periodSize());
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if (len)
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m_output->write(m_buffer.data(), len);
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if (len != m_audioOutput->periodSize())
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break;
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--chunks;
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}
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}
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}
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void AudioTest::toggleMode()
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{
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m_pullTimer->stop();
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m_audioOutput->stop();
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if (m_pullMode) {
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m_modeButton->setText(PullModeLabel);
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m_output = m_audioOutput->start();
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m_pullMode = false;
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m_pullTimer->start(20);
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} else {
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m_modeButton->setText(PushModeLabel);
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m_pullMode = true;
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m_audioOutput->start(m_generator);
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}
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m_suspendResumeButton->setText(SuspendLabel);
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}
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void AudioTest::toggleSuspendResume()
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{
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if (m_audioOutput->state() == QAudio::SuspendedState) {
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qWarning() << "status: Suspended, resume()";
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m_audioOutput->resume();
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m_suspendResumeButton->setText(SuspendLabel);
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} else if (m_audioOutput->state() == QAudio::ActiveState) {
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qWarning() << "status: Active, suspend()";
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m_audioOutput->suspend();
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m_suspendResumeButton->setText(ResumeLabel);
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} else if (m_audioOutput->state() == QAudio::StoppedState) {
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qWarning() << "status: Stopped, resume()";
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m_audioOutput->resume();
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m_suspendResumeButton->setText(SuspendLabel);
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} else if (m_audioOutput->state() == QAudio::IdleState) {
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qWarning() << "status: IdleState";
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}
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}
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void AudioTest::stateChanged(QAudio::State state)
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{
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qWarning() << "state = " << state;
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}
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