1fdfc2abfe
Change-Id: I02f2c620296fcd91d4967d58767ea33fc4e1e7dc Reviewed-by: Rohan McGovern <rohan.mcgovern@nokia.com>
537 lines
15 KiB
C++
537 lines
15 KiB
C++
/****************************************************************************
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**
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** Copyright (C) 2012 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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** 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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** $QT_END_LICENSE$
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**
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****************************************************************************/
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#include "baselineprotocol.h"
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#include <QLibraryInfo>
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#include <QImage>
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#include <QBuffer>
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#include <QHostInfo>
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#include <QSysInfo>
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#include <QProcess>
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#include <QFileInfo>
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#include <QDir>
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#include <QTime>
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#include <QPointer>
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const QString PI_TestCase(QLS("TestCase"));
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const QString PI_HostName(QLS("HostName"));
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const QString PI_HostAddress(QLS("HostAddress"));
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const QString PI_OSName(QLS("OSName"));
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const QString PI_OSVersion(QLS("OSVersion"));
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const QString PI_QtVersion(QLS("QtVersion"));
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const QString PI_QtBuildMode(QLS("QtBuildMode"));
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const QString PI_GitCommit(QLS("GitCommit"));
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const QString PI_QMakeSpec(QLS("QMakeSpec"));
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const QString PI_PulseGitBranch(QLS("PulseGitBranch"));
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const QString PI_PulseTestrBranch(QLS("PulseTestrBranch"));
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#ifndef QMAKESPEC
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#define QMAKESPEC "Unknown"
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#endif
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#if defined(Q_OS_WIN)
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#include <QtCore/qt_windows.h>
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#endif
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#if defined(Q_OS_UNIX)
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#include <time.h>
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#endif
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void BaselineProtocol::sysSleep(int ms)
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{
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#if defined(Q_OS_WIN)
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Sleep(DWORD(ms));
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#else
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struct timespec ts = { ms / 1000, (ms % 1000) * 1000 * 1000 };
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nanosleep(&ts, NULL);
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#endif
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}
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PlatformInfo::PlatformInfo()
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: QMap<QString, QString>(), adHoc(true)
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{
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}
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PlatformInfo PlatformInfo::localHostInfo()
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{
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PlatformInfo pi;
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pi.insert(PI_HostName, QHostInfo::localHostName());
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pi.insert(PI_QtVersion, QLS(qVersion()));
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pi.insert(PI_QMakeSpec, QString(QLS(QMAKESPEC)).remove(QRegExp(QLS("^.*mkspecs/"))));
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#if QT_VERSION >= 0x050000
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pi.insert(PI_QtBuildMode, QLibraryInfo::isDebugBuild() ? QLS("QtDebug") : QLS("QtRelease"));
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#endif
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#if defined(Q_OS_LINUX)
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pi.insert(PI_OSName, QLS("Linux"));
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QProcess uname;
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uname.start(QLS("uname"), QStringList() << QLS("-r"));
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if (uname.waitForFinished(3000))
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pi.insert(PI_OSVersion, QString::fromLocal8Bit(uname.readAllStandardOutput().constData()).simplified());
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#elif defined(Q_OS_WINCE)
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pi.insert(PI_OSName, QLS("WinCE"));
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pi.insert(PI_OSVersion, QString::number(QSysInfo::windowsVersion()));
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#elif defined(Q_OS_WIN)
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pi.insert(PI_OSName, QLS("Windows"));
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pi.insert(PI_OSVersion, QString::number(QSysInfo::windowsVersion()));
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#elif defined(Q_OS_MAC)
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pi.insert(PI_OSName, QLS("MacOS"));
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pi.insert(PI_OSVersion, QString::number(qMacVersion()));
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#else
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pi.insert(PI_OSName, QLS("Other"));
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#endif
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QProcess git;
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QString cmd;
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QStringList args;
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#if defined(Q_OS_WIN)
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cmd = QLS("cmd.exe");
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args << QLS("/c") << QLS("git");
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#else
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cmd = QLS("git");
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#endif
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args << QLS("log") << QLS("--max-count=1") << QLS("--pretty=%H [%an] [%ad] %s");
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git.start(cmd, args);
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git.waitForFinished(3000);
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if (!git.exitCode())
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pi.insert(PI_GitCommit, QString::fromLocal8Bit(git.readAllStandardOutput().constData()).simplified());
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else
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pi.insert(PI_GitCommit, QLS("Unknown"));
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QByteArray gb = qgetenv("PULSE_GIT_BRANCH");
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if (!gb.isEmpty()) {
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pi.insert(PI_PulseGitBranch, QString::fromLatin1(gb));
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pi.setAdHocRun(false);
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}
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QByteArray tb = qgetenv("PULSE_TESTR_BRANCH");
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if (!tb.isEmpty()) {
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pi.insert(PI_PulseTestrBranch, QString::fromLatin1(tb));
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pi.setAdHocRun(false);
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}
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return pi;
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}
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PlatformInfo::PlatformInfo(const PlatformInfo &other)
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: QMap<QString, QString>(other)
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{
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orides = other.orides;
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adHoc = other.adHoc;
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}
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PlatformInfo &PlatformInfo::operator=(const PlatformInfo &other)
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{
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QMap<QString, QString>::operator=(other);
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orides = other.orides;
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adHoc = other.adHoc;
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return *this;
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}
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void PlatformInfo::addOverride(const QString& key, const QString& value)
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{
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orides.append(key);
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orides.append(value);
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}
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QStringList PlatformInfo::overrides() const
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{
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return orides;
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}
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void PlatformInfo::setAdHocRun(bool isAdHoc)
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{
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adHoc = isAdHoc;
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}
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bool PlatformInfo::isAdHocRun() const
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{
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return adHoc;
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}
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QDataStream & operator<< (QDataStream &stream, const PlatformInfo &pi)
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{
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stream << static_cast<const QMap<QString, QString>&>(pi);
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stream << pi.orides << pi.adHoc;
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return stream;
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}
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QDataStream & operator>> (QDataStream &stream, PlatformInfo &pi)
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{
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stream >> static_cast<QMap<QString, QString>&>(pi);
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stream >> pi.orides >> pi.adHoc;
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return stream;
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}
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ImageItem &ImageItem::operator=(const ImageItem &other)
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{
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testFunction = other.testFunction;
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itemName = other.itemName;
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itemChecksum = other.itemChecksum;
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status = other.status;
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image = other.image;
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imageChecksums = other.imageChecksums;
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return *this;
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}
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// Defined in lookup3.c:
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void hashword2 (
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const quint32 *k, /* the key, an array of quint32 values */
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size_t length, /* the length of the key, in quint32s */
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quint32 *pc, /* IN: seed OUT: primary hash value */
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quint32 *pb); /* IN: more seed OUT: secondary hash value */
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quint64 ImageItem::computeChecksum(const QImage &image)
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{
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QImage img(image);
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const int bpl = img.bytesPerLine();
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const int padBytes = bpl - (img.width() * img.depth() / 8);
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if (padBytes) {
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uchar *p = img.bits() + bpl - padBytes;
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const int h = img.height();
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for (int y = 0; y < h; ++y) {
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qMemSet(p, 0, padBytes);
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p += bpl;
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}
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}
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quint32 h1 = 0xfeedbacc;
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quint32 h2 = 0x21604894;
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hashword2((const quint32 *)img.constBits(), img.byteCount()/4, &h1, &h2);
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return (quint64(h1) << 32) | h2;
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}
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#if 0
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QString ImageItem::engineAsString() const
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{
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switch (engine) {
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case Raster:
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return QLS("Raster");
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break;
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case OpenGL:
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return QLS("OpenGL");
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break;
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default:
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break;
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}
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return QLS("Unknown");
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}
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QString ImageItem::formatAsString() const
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{
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static const int numFormats = 16;
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static const char *formatNames[numFormats] = {
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"Invalid",
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"Mono",
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"MonoLSB",
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"Indexed8",
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"RGB32",
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"ARGB32",
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"ARGB32-Premult",
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"RGB16",
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"ARGB8565-Premult",
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"RGB666",
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"ARGB6666-Premult",
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"RGB555",
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"ARGB8555-Premult",
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"RGB888",
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"RGB444",
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"ARGB4444-Premult"
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};
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if (renderFormat < 0 || renderFormat >= numFormats)
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return QLS("UnknownFormat");
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return QLS(formatNames[renderFormat]);
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}
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#endif
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void ImageItem::writeImageToStream(QDataStream &out) const
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{
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if (image.isNull() || image.format() == QImage::Format_Invalid) {
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out << quint8(0);
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return;
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}
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out << quint8('Q') << quint8(image.format());
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out << quint8(QSysInfo::ByteOrder) << quint8(0); // pad to multiple of 4 bytes
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out << quint32(image.width()) << quint32(image.height()) << quint32(image.bytesPerLine());
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out << qCompress((const uchar *)image.constBits(), image.byteCount());
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//# can be followed by colormap for formats that use it
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}
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void ImageItem::readImageFromStream(QDataStream &in)
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{
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quint8 hdr, fmt, endian, pad;
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quint32 width, height, bpl;
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QByteArray data;
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in >> hdr;
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if (hdr != 'Q') {
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image = QImage();
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return;
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}
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in >> fmt >> endian >> pad;
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if (!fmt || fmt >= QImage::NImageFormats) {
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image = QImage();
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return;
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}
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if (endian != QSysInfo::ByteOrder) {
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qWarning("ImageItem cannot read streamed image with different endianness");
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image = QImage();
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return;
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}
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in >> width >> height >> bpl;
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in >> data;
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data = qUncompress(data);
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QImage res((const uchar *)data.constData(), width, height, bpl, QImage::Format(fmt));
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image = res.copy(); //# yuck, seems there is currently no way to avoid data copy
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}
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QDataStream & operator<< (QDataStream &stream, const ImageItem &ii)
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{
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stream << ii.testFunction << ii.itemName << ii.itemChecksum << quint8(ii.status) << ii.imageChecksums << ii.misc;
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ii.writeImageToStream(stream);
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return stream;
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}
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QDataStream & operator>> (QDataStream &stream, ImageItem &ii)
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{
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quint8 encStatus;
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stream >> ii.testFunction >> ii.itemName >> ii.itemChecksum >> encStatus >> ii.imageChecksums >> ii.misc;
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ii.status = ImageItem::ItemStatus(encStatus);
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ii.readImageFromStream(stream);
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return stream;
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}
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BaselineProtocol::BaselineProtocol()
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{
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}
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BaselineProtocol::~BaselineProtocol()
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{
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socket.close();
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if (socket.state() != QTcpSocket::UnconnectedState)
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socket.waitForDisconnected(Timeout);
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}
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bool BaselineProtocol::connect(const QString &testCase, bool *dryrun, const PlatformInfo& clientInfo)
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{
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errMsg.clear();
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QByteArray serverName(qgetenv("QT_LANCELOT_SERVER"));
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if (serverName.isNull())
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serverName = "lancelot.test.qt.nokia.com";
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socket.connectToHost(serverName, ServerPort);
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if (!socket.waitForConnected(Timeout)) {
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sysSleep(Timeout); // Wait a bit and try again, the server might just be restarting
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if (!socket.waitForConnected(Timeout)) {
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errMsg += QLS("TCP connectToHost failed. Host:") + serverName + QLS(" port:") + QString::number(ServerPort);
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return false;
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}
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}
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PlatformInfo pi = clientInfo.isEmpty() ? PlatformInfo::localHostInfo() : clientInfo;
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pi.insert(PI_TestCase, testCase);
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QByteArray block;
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QDataStream ds(&block, QIODevice::ReadWrite);
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ds << pi;
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if (!sendBlock(AcceptPlatformInfo, block)) {
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errMsg += QLS("Failed to send data to server.");
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return false;
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}
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Command cmd = UnknownError;
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if (!receiveBlock(&cmd, &block)) {
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errMsg.prepend(QLS("Failed to get response from server. "));
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return false;
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}
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if (cmd == Abort) {
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errMsg += QLS("Server rejected connection. Reason: ") + QString::fromLatin1(block);
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return false;
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}
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if (dryrun)
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*dryrun = (cmd == DoDryRun);
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if (cmd != Ack && cmd != DoDryRun) {
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errMsg += QLS("Unexpected response from server.");
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return false;
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}
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return true;
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}
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bool BaselineProtocol::acceptConnection(PlatformInfo *pi)
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{
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errMsg.clear();
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QByteArray block;
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Command cmd = AcceptPlatformInfo;
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if (!receiveBlock(&cmd, &block) || cmd != AcceptPlatformInfo)
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return false;
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if (pi) {
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QDataStream ds(block);
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ds >> *pi;
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pi->insert(PI_HostAddress, socket.peerAddress().toString());
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}
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return true;
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}
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bool BaselineProtocol::requestBaselineChecksums(const QString &testFunction, ImageItemList *itemList)
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{
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errMsg.clear();
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if (!itemList)
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return false;
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for(ImageItemList::iterator it = itemList->begin(); it != itemList->end(); it++)
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it->testFunction = testFunction;
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QByteArray block;
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QDataStream ds(&block, QIODevice::WriteOnly);
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ds << *itemList;
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if (!sendBlock(RequestBaselineChecksums, block))
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return false;
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Command cmd;
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QByteArray rcvBlock;
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if (!receiveBlock(&cmd, &rcvBlock) || cmd != BaselineProtocol::Ack)
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return false;
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QDataStream rds(&rcvBlock, QIODevice::ReadOnly);
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rds >> *itemList;
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return true;
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}
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bool BaselineProtocol::submitNewBaseline(const ImageItem &item, QByteArray *serverMsg)
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{
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Command cmd;
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return (sendItem(AcceptNewBaseline, item) && receiveBlock(&cmd, serverMsg) && cmd == Ack);
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}
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bool BaselineProtocol::submitMismatch(const ImageItem &item, QByteArray *serverMsg)
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{
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Command cmd;
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return (sendItem(AcceptMismatch, item) && receiveBlock(&cmd, serverMsg) && cmd == Ack);
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}
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bool BaselineProtocol::sendItem(Command cmd, const ImageItem &item)
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{
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errMsg.clear();
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QBuffer buf;
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buf.open(QIODevice::WriteOnly);
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QDataStream ds(&buf);
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ds << item;
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if (!sendBlock(cmd, buf.data())) {
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errMsg.prepend(QLS("Failed to submit image to server. "));
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return false;
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}
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return true;
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}
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bool BaselineProtocol::sendBlock(Command cmd, const QByteArray &block)
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{
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QDataStream s(&socket);
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// TBD: set qds version as a constant
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s << quint16(ProtocolVersion) << quint16(cmd);
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s.writeBytes(block.constData(), block.size());
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return true;
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}
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bool BaselineProtocol::receiveBlock(Command *cmd, QByteArray *block)
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{
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while (socket.bytesAvailable() < int(2*sizeof(quint16) + sizeof(quint32))) {
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if (!socket.waitForReadyRead(Timeout))
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return false;
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}
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QDataStream ds(&socket);
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quint16 rcvProtocolVersion, rcvCmd;
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ds >> rcvProtocolVersion >> rcvCmd;
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if (rcvProtocolVersion != ProtocolVersion) {
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errMsg = QLS("Baseline protocol version mismatch, received:") + QString::number(rcvProtocolVersion)
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+ QLS(" expected:") + QString::number(ProtocolVersion);
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return false;
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}
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if (cmd)
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*cmd = Command(rcvCmd);
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QByteArray uMsg;
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quint32 remaining;
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ds >> remaining;
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uMsg.resize(remaining);
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int got = 0;
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char* uMsgBuf = uMsg.data();
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do {
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got = ds.readRawData(uMsgBuf, remaining);
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remaining -= got;
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uMsgBuf += got;
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} while (remaining && got >= 0 && socket.waitForReadyRead(Timeout));
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if (got < 0)
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return false;
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if (block)
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*block = uMsg;
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return true;
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}
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QString BaselineProtocol::errorMessage()
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{
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QString ret = errMsg;
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if (socket.error() >= 0)
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ret += QLS(" Socket state: ") + socket.errorString();
|
|
return ret;
|
|
}
|
|
|