Files
qt-creator/src/plugins/ios/iosrunconfiguration.cpp

436 lines
16 KiB
C++
Raw Normal View History

/****************************************************************************
**
** Copyright (C) 2016 The Qt Company Ltd.
** Contact: https://www.qt.io/licensing/
**
** This file is part of Qt Creator.
**
** Commercial License Usage
** Licensees holding valid commercial Qt licenses may use this file in
** accordance with the commercial license agreement provided with the
** Software or, alternatively, in accordance with the terms contained in
** a written agreement between you and The Qt Company. For licensing terms
** and conditions see https://www.qt.io/terms-conditions. For further
** information use the contact form at https://www.qt.io/contact-us.
**
** GNU General Public License Usage
** Alternatively, this file may be used under the terms of the GNU
** General Public License version 3 as published by the Free Software
** Foundation with exceptions as appearing in the file LICENSE.GPL3-EXCEPT
** included in the packaging of this file. Please review the following
** information to ensure the GNU General Public License requirements will
** be met: https://www.gnu.org/licenses/gpl-3.0.html.
**
****************************************************************************/
#include "iosrunconfiguration.h"
#include "iosconstants.h"
#include "iosdevice.h"
#include "simulatorcontrol.h"
#include <projectexplorer/buildconfiguration.h>
#include <projectexplorer/buildstep.h>
#include <projectexplorer/buildsteplist.h>
#include <projectexplorer/deployconfiguration.h>
#include <projectexplorer/devicesupport/devicemanager.h>
#include <projectexplorer/kitinformation.h>
#include <projectexplorer/project.h>
#include <projectexplorer/projectnodes.h>
#include <projectexplorer/runconfigurationaspects.h>
#include <projectexplorer/target.h>
#include <utils/algorithm.h>
#include <utils/fileutils.h>
#include <utils/qtcprocess.h>
#include <utils/qtcassert.h>
#include <utils/layoutbuilder.h>
#include <QAction>
#include <QApplication>
#include <QComboBox>
#include <QFormLayout>
#include <QHeaderView>
#include <QLabel>
#include <QLineEdit>
#include <QList>
#include <QVariant>
#include <QWidget>
using namespace ProjectExplorer;
using namespace Utils;
namespace Ios {
namespace Internal {
static const QLatin1String deviceTypeKey("Ios.device_type");
static QString displayName(const SimulatorInfo &device)
{
return QString("%1, %2").arg(device.name).arg(device.runtimeName);
}
static IosDeviceType toIosDeviceType(const SimulatorInfo &device)
{
IosDeviceType iosDeviceType(IosDeviceType::SimulatedDevice,
device.identifier,
displayName(device));
return iosDeviceType;
}
IosRunConfiguration::IosRunConfiguration(Target *target, Id id)
: RunConfiguration(target, id)
{
auto executableAspect = addAspect<ExecutableAspect>(target, ExecutableAspect::RunDevice);
executableAspect->setDisplayStyle(StringAspect::LabelDisplay);
addAspect<ArgumentsAspect>(macroExpander());
m_deviceTypeAspect = addAspect<IosDeviceTypeAspect>(this);
setUpdater([this, target, executableAspect] {
IDevice::ConstPtr dev = DeviceKitAspect::device(target->kit());
const QString devName = dev.isNull() ? IosDevice::name() : dev->displayName();
setDefaultDisplayName(tr("Run on %1").arg(devName));
setDisplayName(tr("Run %1 on %2").arg(applicationName()).arg(devName));
executableAspect->setExecutable(localExecutable());
m_deviceTypeAspect->updateDeviceType();
});
}
void IosDeviceTypeAspect::deviceChanges()
ProjectExplorer/all: Re-organize BuildSteps/{Deploy,Build}Config setup This follow the rough pattern of recent *RunConfigurationFactory changes for build and deploy configurations. - Collapse the two lines of constructors similar to what 890c1906e6fb2ec did for RunConfigurations * Deploy* was purely mechanical * Build* ctors are split in connects() in the ctor body to create "empty shell for clone" etc and build step additions in initialize() functions which are only used in the create() case. -- Allows to collapse the shared 'ctor()' functions, too. - Move FooBuildConfigurationFactory::create() implementations to FooBuildConfiguration() constructor. That was a strange and unneeded ping-pong between factories and objects, and furthermore allows one level less of indirection (and for a later, left out here, some reduction of the FooBuildConfiguration interfaces that were only used to accommodate the *Factory::create() functions. - Most {Build,Deploy}Configuration{,Factory} classes had a canHandle(), but there wasn't one in the base classses. Have one there. - Most canHandle() functions were checking simple restrictions on e.g. project or target types, specify those by setters in the constructors instead and check them in the base canHandle() - clone() is generally replaced by a creation of a "shell object" and a fromMap(source->toMap()), implemented in the base, there are two cases left for Android and Qbs that needed(?) some extra polish - generally use canHandle() in base implementation, instead of doing that in all Derived::canFoo() - as a result, canCreate/create/canClone/clone reimplementations are not needed anymore, keep the base implementation for now (could be inlined into their only users later), but de-virtualize them. - Combine Ios{Preset,DSym}BuildStepFactory. There was only one 'dsym' build step they could create. - Split the 'mangled' id into the ProjectConfiguration subtype specific constant identifier, and a QString extraId() bit. Only maintain the mangled id in saved settings. - Make ProjectConfiguration::m_id a constant member, adapt all constructors of derived classe. Not done in this patch: - Finish possible cosmetic changes on top - Add a way to specify restrictions to supported Qt versions (used in Android/Ios), as the base implementation does not depend on the qtsupport plugin - Combine the QList<X> availableFoo() + createFoo(X) function pairs to somthing like a direct QList<struct { X; std::function<X()>; }> fooCreators() to avoid e.g. the baseId.withSuffix() <-> id.suffixAfter(base) pingpong - Remove the *Factories from the global object pool - Do something about priority(). Falling back to plain qmake in android+qmake setup is not helpful. Change-Id: I2be7d88d554c5aa8b7db8edf5b93278e1ae0112a Reviewed-by: Tobias Hunger <tobias.hunger@qt.io>
2017-11-29 12:28:40 +01:00
{
m_runConfiguration->update();
}
void IosDeviceTypeAspect::updateDeviceType()
{
if (DeviceTypeKitAspect::deviceTypeId(m_runConfiguration->kit())
== Constants::IOS_DEVICE_TYPE)
m_deviceType = IosDeviceType(IosDeviceType::IosDevice);
else if (m_deviceType.type == IosDeviceType::IosDevice)
m_deviceType = IosDeviceType(IosDeviceType::SimulatedDevice);
}
bool IosRunConfiguration::isEnabled() const
{
Utils::Id devType = DeviceTypeKitAspect::deviceTypeId(kit());
if (devType != Constants::IOS_DEVICE_TYPE && devType != Constants::IOS_SIMULATOR_TYPE)
return false;
IDevice::ConstPtr dev = DeviceKitAspect::device(kit());
if (dev.isNull() || dev->deviceState() != IDevice::DeviceReadyToUse)
return false;
return true;
}
QString IosRunConfiguration::applicationName() const
{
if (ProjectNode *node = project()->findNodeForBuildKey(buildKey()))
return node->data(Constants::IosTarget).toString();
return QString();
}
FilePath IosRunConfiguration::bundleDirectory() const
{
Utils::Id devType = DeviceTypeKitAspect::deviceTypeId(kit());
bool isDevice = (devType == Constants::IOS_DEVICE_TYPE);
if (!isDevice && devType != Constants::IOS_SIMULATOR_TYPE) {
qCWarning(iosLog) << "unexpected device type in bundleDirForTarget: " << devType.toString();
return {};
}
FilePath res;
bool shouldAppendBuildTypeAndPlatform = true;
if (BuildConfiguration *bc = target()->activeBuildConfiguration()) {
Project *project = target()->project();
if (ProjectNode *node = project->findNodeForBuildKey(buildKey())) {
QString pathStr = node->data(Constants::IosBuildDir).toString();
const QString cmakeGenerator = node->data(Constants::IosCmakeGenerator).toString();
if (cmakeGenerator.isEmpty()) {
// qmake node gives absolute IosBuildDir
res = FilePath::fromString(pathStr);
} else {
// CMake node gives IosBuildDir relative to root build directory
bool useCmakePath = true;
if (pathStr.isEmpty())
useCmakePath = false;
if (useCmakePath && cmakeGenerator == "Xcode") {
// When generating Xcode project, CMake may put a "${EFFECTIVE_PLATFORM_NAME}" macro,
// which is expanded by Xcode at build time.
// To get an actual executable path at configure time, replace this macro here
// depending on the device type.
const QString before = "${EFFECTIVE_PLATFORM_NAME}";
int idx = pathStr.indexOf(before);
if (idx == -1) {
useCmakePath = false;
} else {
QString after;
if (isDevice)
after = "-iphoneos";
else
after = "-iphonesimulator";
pathStr.replace(idx, before.length(), after);
}
}
if (useCmakePath) {
// With Ninja generator IosBuildDir may be just "." when executable is in the root directory,
// so use canonical path to ensure that redundand dot is removed.
res = bc->buildDirectory().pathAppended(pathStr).canonicalPath();
// All done with path provided by CMake
shouldAppendBuildTypeAndPlatform = false;
} else {
res = bc->buildDirectory();
}
}
}
if (res.isEmpty()) {
// Fallback
res = bc->buildDirectory();
shouldAppendBuildTypeAndPlatform = true;
}
if (shouldAppendBuildTypeAndPlatform) {
switch (bc->buildType()) {
case BuildConfiguration::Debug :
case BuildConfiguration::Unknown :
if (isDevice)
res = res / "Debug-iphoneos";
else
res = res.pathAppended("Debug-iphonesimulator");
break;
case BuildConfiguration::Profile :
case BuildConfiguration::Release :
if (isDevice)
res = res.pathAppended("Release-iphoneos");
else
res = res.pathAppended("Release-iphonesimulator");
break;
default:
qCWarning(iosLog) << "IosBuildStep had an unknown buildType "
<< target()->activeBuildConfiguration()->buildType();
}
}
}
return res.pathAppended(applicationName() + ".app");
}
FilePath IosRunConfiguration::localExecutable() const
{
return bundleDirectory().pathAppended(applicationName());
}
void IosDeviceTypeAspect::fromMap(const QVariantMap &map)
{
bool deviceTypeIsInt;
map.value(deviceTypeKey).toInt(&deviceTypeIsInt);
if (deviceTypeIsInt || !m_deviceType.fromMap(map.value(deviceTypeKey).toMap()))
updateDeviceType();
ProjectExplorer/all: Re-organize BuildSteps/{Deploy,Build}Config setup This follow the rough pattern of recent *RunConfigurationFactory changes for build and deploy configurations. - Collapse the two lines of constructors similar to what 890c1906e6fb2ec did for RunConfigurations * Deploy* was purely mechanical * Build* ctors are split in connects() in the ctor body to create "empty shell for clone" etc and build step additions in initialize() functions which are only used in the create() case. -- Allows to collapse the shared 'ctor()' functions, too. - Move FooBuildConfigurationFactory::create() implementations to FooBuildConfiguration() constructor. That was a strange and unneeded ping-pong between factories and objects, and furthermore allows one level less of indirection (and for a later, left out here, some reduction of the FooBuildConfiguration interfaces that were only used to accommodate the *Factory::create() functions. - Most {Build,Deploy}Configuration{,Factory} classes had a canHandle(), but there wasn't one in the base classses. Have one there. - Most canHandle() functions were checking simple restrictions on e.g. project or target types, specify those by setters in the constructors instead and check them in the base canHandle() - clone() is generally replaced by a creation of a "shell object" and a fromMap(source->toMap()), implemented in the base, there are two cases left for Android and Qbs that needed(?) some extra polish - generally use canHandle() in base implementation, instead of doing that in all Derived::canFoo() - as a result, canCreate/create/canClone/clone reimplementations are not needed anymore, keep the base implementation for now (could be inlined into their only users later), but de-virtualize them. - Combine Ios{Preset,DSym}BuildStepFactory. There was only one 'dsym' build step they could create. - Split the 'mangled' id into the ProjectConfiguration subtype specific constant identifier, and a QString extraId() bit. Only maintain the mangled id in saved settings. - Make ProjectConfiguration::m_id a constant member, adapt all constructors of derived classe. Not done in this patch: - Finish possible cosmetic changes on top - Add a way to specify restrictions to supported Qt versions (used in Android/Ios), as the base implementation does not depend on the qtsupport plugin - Combine the QList<X> availableFoo() + createFoo(X) function pairs to somthing like a direct QList<struct { X; std::function<X()>; }> fooCreators() to avoid e.g. the baseId.withSuffix() <-> id.suffixAfter(base) pingpong - Remove the *Factories from the global object pool - Do something about priority(). Falling back to plain qmake in android+qmake setup is not helpful. Change-Id: I2be7d88d554c5aa8b7db8edf5b93278e1ae0112a Reviewed-by: Tobias Hunger <tobias.hunger@qt.io>
2017-11-29 12:28:40 +01:00
m_runConfiguration->update();
}
void IosDeviceTypeAspect::toMap(QVariantMap &map) const
{
map.insert(deviceTypeKey, deviceType().toMap());
}
QString IosRunConfiguration::disabledReason() const
{
Utils::Id devType = DeviceTypeKitAspect::deviceTypeId(kit());
if (devType != Constants::IOS_DEVICE_TYPE && devType != Constants::IOS_SIMULATOR_TYPE)
return tr("Kit has incorrect device type for running on iOS devices.");
IDevice::ConstPtr dev = DeviceKitAspect::device(kit());
QString validDevName;
bool hasConncetedDev = false;
if (devType == Constants::IOS_DEVICE_TYPE) {
DeviceManager *dm = DeviceManager::instance();
for (int idev = 0; idev < dm->deviceCount(); ++idev) {
IDevice::ConstPtr availDev = dm->deviceAt(idev);
if (!availDev.isNull() && availDev->type() == Constants::IOS_DEVICE_TYPE) {
if (availDev->deviceState() == IDevice::DeviceReadyToUse) {
validDevName += QLatin1Char(' ');
validDevName += availDev->displayName();
} else if (availDev->deviceState() == IDevice::DeviceConnected) {
hasConncetedDev = true;
}
}
}
}
if (dev.isNull()) {
if (!validDevName.isEmpty())
return tr("No device chosen. Select %1.").arg(validDevName); // should not happen
else if (hasConncetedDev)
return tr("No device chosen. Enable developer mode on a device."); // should not happen
else
return tr("No device available.");
} else {
switch (dev->deviceState()) {
case IDevice::DeviceReadyToUse:
break;
case IDevice::DeviceConnected:
return tr("To use this device you need to enable developer mode on it.");
case IDevice::DeviceDisconnected:
case IDevice::DeviceStateUnknown:
if (!validDevName.isEmpty())
return tr("%1 is not connected. Select %2?")
.arg(dev->displayName(), validDevName);
else if (hasConncetedDev)
return tr("%1 is not connected. Enable developer mode on a device?")
.arg(dev->displayName());
else
return tr("%1 is not connected.").arg(dev->displayName());
}
}
return RunConfiguration::disabledReason();
}
IosDeviceType IosRunConfiguration::deviceType() const
{
return m_deviceTypeAspect->deviceType();
}
IosDeviceType IosDeviceTypeAspect::deviceType() const
{
if (m_deviceType.type == IosDeviceType::SimulatedDevice) {
QList<SimulatorInfo> availableSimulators = SimulatorControl::availableSimulators();
if (availableSimulators.isEmpty())
return m_deviceType;
if (Utils::contains(availableSimulators,
Utils::equal(&SimulatorInfo::identifier, m_deviceType.identifier))) {
return m_deviceType;
}
const QStringList parts = m_deviceType.displayName.split(QLatin1Char(','));
if (parts.count() < 2)
return toIosDeviceType(availableSimulators.last());
QList<SimulatorInfo> eligibleDevices;
eligibleDevices = Utils::filtered(availableSimulators, [parts](const SimulatorInfo &info) {
return info.name == parts.at(0) && info.runtimeName == parts.at(1);
});
return toIosDeviceType(eligibleDevices.isEmpty() ? availableSimulators.last()
: eligibleDevices.last());
}
return m_deviceType;
}
void IosDeviceTypeAspect::setDeviceType(const IosDeviceType &deviceType)
{
m_deviceType = deviceType;
}
IosDeviceTypeAspect::IosDeviceTypeAspect(IosRunConfiguration *runConfiguration)
: m_runConfiguration(runConfiguration)
{
addDataExtractor(this, &IosDeviceTypeAspect::deviceType, &Data::deviceType);
addDataExtractor(this, &IosDeviceTypeAspect::bundleDirectory, &Data::bundleDirectory);
addDataExtractor(this, &IosDeviceTypeAspect::applicationName, &Data::applicationName);
addDataExtractor(this, &IosDeviceTypeAspect::localExecutable, &Data::localExecutable);
connect(DeviceManager::instance(), &DeviceManager::updated,
this, &IosDeviceTypeAspect::deviceChanges);
connect(KitManager::instance(), &KitManager::kitsChanged,
this, &IosDeviceTypeAspect::deviceChanges);
}
void IosDeviceTypeAspect::addToLayout(LayoutBuilder &builder)
{
m_deviceTypeComboBox = new QComboBox;
m_deviceTypeComboBox->setModel(&m_deviceTypeModel);
m_deviceTypeLabel = new QLabel(IosRunConfiguration::tr("Device type:"));
builder.addItems({m_deviceTypeLabel, m_deviceTypeComboBox});
updateValues();
connect(m_deviceTypeComboBox, QOverload<int>::of(&QComboBox::currentIndexChanged),
this, &IosDeviceTypeAspect::setDeviceTypeIndex);
}
void IosDeviceTypeAspect::setDeviceTypeIndex(int devIndex)
{
QVariant selectedDev = m_deviceTypeModel.data(m_deviceTypeModel.index(devIndex, 0), Qt::UserRole + 1);
if (selectedDev.isValid())
setDeviceType(toIosDeviceType(selectedDev.value<SimulatorInfo>()));
}
void IosDeviceTypeAspect::updateValues()
{
bool showDeviceSelector = deviceType().type != IosDeviceType::IosDevice;
m_deviceTypeLabel->setVisible(showDeviceSelector);
m_deviceTypeComboBox->setVisible(showDeviceSelector);
if (showDeviceSelector && m_deviceTypeModel.rowCount() == 0) {
const QList<SimulatorInfo> devices = SimulatorControl::availableSimulators();
for (const SimulatorInfo &device : devices) {
QStandardItem *item = new QStandardItem(Internal::displayName(device));
QVariant v;
v.setValue(device);
item->setData(v);
m_deviceTypeModel.appendRow(item);
}
}
IosDeviceType currentDType = deviceType();
QVariant currentData = m_deviceTypeComboBox->currentData();
if (currentDType.type == IosDeviceType::SimulatedDevice && !currentDType.identifier.isEmpty()
&& (!currentData.isValid()
|| currentDType != toIosDeviceType(currentData.value<SimulatorInfo>())))
{
bool didSet = false;
for (int i = 0; m_deviceTypeModel.hasIndex(i, 0); ++i) {
QVariant vData = m_deviceTypeModel.data(m_deviceTypeModel.index(i, 0), Qt::UserRole + 1);
SimulatorInfo dType = vData.value<SimulatorInfo>();
if (dType.identifier == currentDType.identifier) {
m_deviceTypeComboBox->setCurrentIndex(i);
didSet = true;
break;
}
}
if (!didSet) {
qCWarning(iosLog) << "could not set " << currentDType << " as it is not in model";
}
}
}
FilePath IosDeviceTypeAspect::bundleDirectory() const
{
return m_runConfiguration->bundleDirectory();
}
QString IosDeviceTypeAspect::applicationName() const
{
return m_runConfiguration->applicationName();
}
FilePath IosDeviceTypeAspect::localExecutable() const
{
return m_runConfiguration->localExecutable();
}
// IosRunConfigurationFactory
IosRunConfigurationFactory::IosRunConfigurationFactory()
{
registerRunConfiguration<IosRunConfiguration>("Qt4ProjectManager.IosRunConfiguration:");
addSupportedTargetDeviceType(Constants::IOS_DEVICE_TYPE);
addSupportedTargetDeviceType(Constants::IOS_SIMULATOR_TYPE);
}
} // namespace Internal
} // namespace Ios