lint: remove reinterpret_cast lint
Unhelpful.
This commit is contained in:
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be5e5fc4a5
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3fc1c914c7
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@ -17,6 +17,7 @@ Checks: >
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-cppcoreguidelines-avoid-goto,
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-cppcoreguidelines-pro-bounds-array-to-pointer-decay,
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-cppcoreguidelines-avoid-do-while,
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-cppcoreguidelines-pro-type-reinterpret-cast,
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google-global-names-in-headers,
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google-readability-casting,
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google-runtime-int,
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@ -485,23 +485,21 @@ void WriteBuffer::writeBytes(const char* data, qsizetype length) {
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this->buffer.append(data, length);
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}
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void WriteBuffer::writeU8(quint8 data) {
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this->writeBytes(reinterpret_cast<char*>(&data), 1); // NOLINT
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}
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void WriteBuffer::writeU8(quint8 data) { this->writeBytes(reinterpret_cast<char*>(&data), 1); }
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void WriteBuffer::writeU16(quint16 data) {
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data = qToLittleEndian(data);
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this->writeBytes(reinterpret_cast<char*>(&data), 2); // NOLINT
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this->writeBytes(reinterpret_cast<char*>(&data), 2);
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}
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void WriteBuffer::writeU32(quint32 data) {
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data = qToLittleEndian(data);
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this->writeBytes(reinterpret_cast<char*>(&data), 4); // NOLINT
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this->writeBytes(reinterpret_cast<char*>(&data), 4);
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}
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void WriteBuffer::writeU64(quint64 data) {
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data = qToLittleEndian(data);
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this->writeBytes(reinterpret_cast<char*>(&data), 8); // NOLINT
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this->writeBytes(reinterpret_cast<char*>(&data), 8);
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}
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void DeviceReader::setDevice(QIODevice* device) { this->device = device; }
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@ -518,19 +516,19 @@ qsizetype DeviceReader::peekBytes(char* data, qsizetype length) {
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bool DeviceReader::skip(qsizetype length) { return this->device->skip(length) == length; }
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bool DeviceReader::readU8(quint8* data) {
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return this->readBytes(reinterpret_cast<char*>(data), 1); // NOLINT
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return this->readBytes(reinterpret_cast<char*>(data), 1);
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}
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bool DeviceReader::readU16(quint16* data) {
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return this->readBytes(reinterpret_cast<char*>(data), 2); // NOLINT
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return this->readBytes(reinterpret_cast<char*>(data), 2);
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}
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bool DeviceReader::readU32(quint32* data) {
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return this->readBytes(reinterpret_cast<char*>(data), 4); // NOLINT
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return this->readBytes(reinterpret_cast<char*>(data), 4);
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}
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bool DeviceReader::readU64(quint64* data) {
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return this->readBytes(reinterpret_cast<char*>(data), 8); // NOLINT
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return this->readBytes(reinterpret_cast<char*>(data), 8);
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}
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void EncodedLogWriter::setDevice(QIODevice* target) { this->buffer.setDevice(target); }
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@ -712,18 +710,18 @@ void EncodedLogWriter::writeVarInt(quint32 n) {
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bool EncodedLogReader::readVarInt(quint32* slot) {
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auto bytes = std::array<quint8, 7>();
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auto readLength = this->reader.peekBytes(reinterpret_cast<char*>(bytes.data()), 7); // NOLINT
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auto readLength = this->reader.peekBytes(reinterpret_cast<char*>(bytes.data()), 7);
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if (bytes[0] != 0xff && readLength >= 1) {
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auto n = *reinterpret_cast<quint8*>(bytes.data()); // NOLINT
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auto n = *reinterpret_cast<quint8*>(bytes.data());
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if (!this->reader.skip(1)) return false;
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*slot = qFromLittleEndian(n);
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} else if ((bytes[1] != 0xff || bytes[2] != 0xff) && readLength >= 3) {
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auto n = *reinterpret_cast<quint16*>(bytes.data() + 1); // NOLINT
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auto n = *reinterpret_cast<quint16*>(bytes.data() + 1);
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if (!this->reader.skip(3)) return false;
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*slot = qFromLittleEndian(n);
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} else if (readLength == 7) {
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auto n = *reinterpret_cast<quint32*>(bytes.data() + 3); // NOLINT
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auto n = *reinterpret_cast<quint32*>(bytes.data() + 3);
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if (!this->reader.skip(7)) return false;
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*slot = qFromLittleEndian(n);
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} else return false;
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@ -65,7 +65,7 @@ public:
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template <class O>
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DropEmitter(O* object, void (*signal)(O*))
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: object(object)
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, signal(*reinterpret_cast<void (*)(void*)>(signal)) {} // NOLINT
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, signal(*reinterpret_cast<void (*)(void*)>(signal)) {}
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DropEmitter() = default;
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@ -105,11 +105,11 @@ QQmlListProperty<QsMenuEntry> DBusMenuItem::children() {
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}
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qsizetype DBusMenuItem::childrenCount(QQmlListProperty<QsMenuEntry>* property) {
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return reinterpret_cast<DBusMenuItem*>(property->object)->enabledChildren.count(); // NOLINT
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return reinterpret_cast<DBusMenuItem*>(property->object)->enabledChildren.count();
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}
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QsMenuEntry* DBusMenuItem::childAt(QQmlListProperty<QsMenuEntry>* property, qsizetype index) {
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auto* item = reinterpret_cast<DBusMenuItem*>(property->object); // NOLINT
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auto* item = reinterpret_cast<DBusMenuItem*>(property->object);
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return item->menu->items.value(item->enabledChildren.at(index));
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}
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@ -37,7 +37,7 @@ QDBusError demarshallVariant(const QVariant& variant, const QMetaType& type, voi
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if (variant.metaType() == type) {
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if (type.id() == QMetaType::QVariant) {
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*reinterpret_cast<QVariant*>(slot) = variant; // NOLINT
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*reinterpret_cast<QVariant*>(slot) = variant;
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} else {
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type.destruct(slot);
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type.construct(slot, variant.constData());
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@ -281,7 +281,7 @@ void FileViewWriter::write(
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if (shouldCancel.loadAcquire()) return;
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if (doAtomicWrite) {
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if (!reinterpret_cast<QSaveFile*>(file.get())->commit()) { // NOLINT
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if (!reinterpret_cast<QSaveFile*>(file.get())->commit()) {
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qmlWarning(view) << "Write of " << state.path << " failed: Atomic commit failed.";
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}
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}
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@ -159,10 +159,7 @@ void GreetdConnection::onSocketError(QLocalSocket::LocalSocketError error) {
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void GreetdConnection::onSocketReady() {
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qint32 length = 0;
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this->socket.read(
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reinterpret_cast<char*>(&length), // NOLINT
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sizeof(qint32)
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);
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this->socket.read(reinterpret_cast<char*>(&length), sizeof(qint32));
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auto text = this->socket.read(length);
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auto json = QJsonDocument::fromJson(text).object();
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@ -248,10 +245,7 @@ void GreetdConnection::sendRequest(const QJsonObject& json) {
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<< QJsonDocument(debugJson).toJson(QJsonDocument::Compact);
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}
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this->socket.write(
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reinterpret_cast<char*>(&length), // NOLINT
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sizeof(qint32)
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);
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this->socket.write(reinterpret_cast<char*>(&length), sizeof(qint32));
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this->socket.write(text);
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this->socket.flush();
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@ -15,7 +15,7 @@ QImage DBusNotificationImage::createImage() const {
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auto format = this->hasAlpha ? QImage::Format_RGBA8888 : QImage::Format_RGB888;
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return QImage(
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reinterpret_cast<const uchar*>(this->data.data()), // NOLINT
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reinterpret_cast<const uchar*>(this->data.data()),
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this->width,
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this->height,
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format
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@ -79,20 +79,14 @@ void PamConversation::onMessage() {
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auto type = PamIpcEvent::Exit;
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auto ok = this->pipes.readBytes(
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reinterpret_cast<char*>(&type), // NOLINT
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sizeof(PamIpcEvent)
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);
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auto ok = this->pipes.readBytes(reinterpret_cast<char*>(&type), sizeof(PamIpcEvent));
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if (!ok) goto fail;
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if (type == PamIpcEvent::Exit) {
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auto code = PamIpcExitCode::OtherError;
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ok = this->pipes.readBytes(
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reinterpret_cast<char*>(&code), // NOLINT
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sizeof(PamIpcExitCode)
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);
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ok = this->pipes.readBytes(reinterpret_cast<char*>(&code), sizeof(PamIpcExitCode));
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if (!ok) goto fail;
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@ -112,10 +106,7 @@ void PamConversation::onMessage() {
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} else if (type == PamIpcEvent::Request) {
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PamIpcRequestFlags flags {};
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ok = this->pipes.readBytes(
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reinterpret_cast<char*>(&flags), // NOLINT
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sizeof(PamIpcRequestFlags)
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);
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ok = this->pipes.readBytes(reinterpret_cast<char*>(&flags), sizeof(PamIpcRequestFlags));
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if (!ok) goto fail;
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@ -45,7 +45,7 @@ std::string PamIpcPipes::readString(bool* ok) const {
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if (ok != nullptr) *ok = false;
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uint32_t length = 0;
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if (!this->readBytes(reinterpret_cast<char*>(&length), sizeof(length))) { // NOLINT
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if (!this->readBytes(reinterpret_cast<char*>(&length), sizeof(length))) {
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return "";
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}
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@ -61,7 +61,7 @@ std::string PamIpcPipes::readString(bool* ok) const {
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bool PamIpcPipes::writeString(const std::string& string) const {
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uint32_t length = string.length();
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if (!this->writeBytes(reinterpret_cast<char*>(&length), sizeof(length))) { // NOLINT
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if (!this->writeBytes(reinterpret_cast<char*>(&length), sizeof(length))) {
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return false;
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}
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@ -126,17 +126,11 @@ PamIpcExitCode PamSubprocess::exec(const char* configDir, const char* config, co
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void PamSubprocess::sendCode(PamIpcExitCode code) {
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{
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auto eventType = PamIpcEvent::Exit;
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auto ok = this->pipes.writeBytes(
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reinterpret_cast<char*>(&eventType), // NOLINT
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sizeof(PamIpcEvent)
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);
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auto ok = this->pipes.writeBytes(reinterpret_cast<char*>(&eventType), sizeof(PamIpcEvent));
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if (!ok) goto fail;
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ok = this->pipes.writeBytes(
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reinterpret_cast<char*>(&code), // NOLINT
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sizeof(PamIpcExitCode)
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);
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ok = this->pipes.writeBytes(reinterpret_cast<char*>(&code), sizeof(PamIpcExitCode));
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if (!ok) goto fail;
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@ -175,17 +169,12 @@ int PamSubprocess::conversation(
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<< std::endl;
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auto eventType = PamIpcEvent::Request;
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auto ok = delegate->pipes.writeBytes(
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reinterpret_cast<char*>(&eventType), // NOLINT
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sizeof(PamIpcEvent)
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);
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auto ok = delegate->pipes.writeBytes(reinterpret_cast<char*>(&eventType), sizeof(PamIpcEvent));
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if (!ok) goto fail;
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ok = delegate->pipes.writeBytes(
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reinterpret_cast<const char*>(&req), // NOLINT
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sizeof(PamIpcRequestFlags)
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);
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ok =
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delegate->pipes.writeBytes(reinterpret_cast<const char*>(&req), sizeof(PamIpcRequestFlags));
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if (!ok) goto fail;
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if (!delegate->pipes.writeString(msgString)) goto fail;
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@ -42,9 +42,7 @@ template <typename T>
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class PwObject {
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public:
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explicit PwObject(T* object = nullptr): object(object) {}
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~PwObject() {
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pw_proxy_destroy(reinterpret_cast<pw_proxy*>(this->object)); // NOLINT
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}
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~PwObject() { pw_proxy_destroy(reinterpret_cast<pw_proxy*>(this->object)); }
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Q_DISABLE_COPY_MOVE(PwObject);
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@ -459,19 +459,19 @@ PwVolumeProps PwVolumeProps::parseSpaPod(const spa_pod* param) {
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const auto* channelsProp = spa_pod_find_prop(param, nullptr, SPA_PROP_channelMap);
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const auto* muteProp = spa_pod_find_prop(param, nullptr, SPA_PROP_mute);
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const auto* volumes = reinterpret_cast<const spa_pod_array*>(&volumesProp->value); // NOLINT
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const auto* channels = reinterpret_cast<const spa_pod_array*>(&channelsProp->value); // NOLINT
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const auto* volumes = reinterpret_cast<const spa_pod_array*>(&volumesProp->value);
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const auto* channels = reinterpret_cast<const spa_pod_array*>(&channelsProp->value);
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spa_pod* iter = nullptr;
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SPA_POD_ARRAY_FOREACH(volumes, iter) {
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// Cubing behavior found in MPD source, and appears to corrospond to everyone else's measurements correctly.
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auto linear = *reinterpret_cast<float*>(iter); // NOLINT
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auto linear = *reinterpret_cast<float*>(iter);
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auto visual = std::cbrt(linear);
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props.volumes.push_back(visual);
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}
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SPA_POD_ARRAY_FOREACH(channels, iter) {
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props.channels.push_back(*reinterpret_cast<PwAudioChannel::Enum*>(iter)); // NOLINT
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props.channels.push_back(*reinterpret_cast<PwAudioChannel::Enum*>(iter));
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}
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spa_pod_get_bool(&muteProp->value, &props.mute);
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@ -67,9 +67,7 @@ QDebug operator<<(QDebug debug, const PwBindableObject* object);
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template <typename T, StringLiteral INTERFACE, quint32 VERSION>
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class PwBindable: public PwBindableObject {
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public:
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T* proxy() {
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return reinterpret_cast<T*>(this->object); // NOLINT
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}
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T* proxy() { return reinterpret_cast<T*>(this->object); }
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protected:
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void bind() override {
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@ -23,23 +23,23 @@ QImage DBusSniIconPixmap::createImage() const {
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// fix byte order if on a little endian machine
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if (QSysInfo::ByteOrder == QSysInfo::LittleEndian) {
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auto* newbuf = new quint32[this->data.size()];
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const auto* oldbuf = reinterpret_cast<const quint32*>(this->data.constData()); // NOLINT
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const auto* oldbuf = reinterpret_cast<const quint32*>(this->data.constData());
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for (uint i = 0; i < this->data.size() / sizeof(quint32); ++i) {
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newbuf[i] = qFromBigEndian(oldbuf[i]); // NOLINT
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}
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return QImage(
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reinterpret_cast<const uchar*>(newbuf), // NOLINT
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reinterpret_cast<const uchar*>(newbuf),
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this->width,
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this->height,
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QImage::Format_ARGB32,
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[](void* ptr) { delete[] reinterpret_cast<quint32*>(ptr); }, // NOLINT
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[](void* ptr) { delete[] reinterpret_cast<quint32*>(ptr); },
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newbuf
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);
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} else {
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return QImage(
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reinterpret_cast<const uchar*>(this->data.constData()), // NOLINT
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reinterpret_cast<const uchar*>(this->data.constData()),
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this->width,
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this->height,
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QImage::Format_ARGB32
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