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340 lines
9.2 KiB
340 lines
9.2 KiB
// qserialport.sip generated by MetaSIP
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//
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// This file is part of the QtSerialPort Python extension module.
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//
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// Copyright (c) 2022 Riverbank Computing Limited <info@riverbankcomputing.com>
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//
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// This file is part of PyQt5.
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//
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// This file may be used under the terms of the GNU General Public License
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// version 3.0 as published by the Free Software Foundation and appearing in
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// the file LICENSE included in the packaging of this file. Please review the
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// following information to ensure the GNU General Public License version 3.0
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// requirements will be met: http://www.gnu.org/copyleft/gpl.html.
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//
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// If you do not wish to use this file under the terms of the GPL version 3.0
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// then you may purchase a commercial license. For more information contact
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// info@riverbankcomputing.com.
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//
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// This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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// WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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%If (Qt_5_1_0 -)
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class QSerialPort : QIODevice
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{
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%TypeHeaderCode
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#include <qserialport.h>
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%End
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%ConvertToSubClassCode
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static struct class_graph {
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const char *name;
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sipTypeDef **type;
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int yes, no;
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} graph[] = {
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{sipName_QSerialPort, &sipType_QSerialPort, -1, -1},
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};
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int i = 0;
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sipType = NULL;
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do
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{
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struct class_graph *cg = &graph[i];
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if (cg->name != NULL && sipCpp->inherits(cg->name))
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{
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sipType = *cg->type;
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i = cg->yes;
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}
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else
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i = cg->no;
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}
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while (i >= 0);
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%End
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public:
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enum Direction
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{
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Input,
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Output,
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AllDirections,
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};
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typedef QFlags<QSerialPort::Direction> Directions;
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enum BaudRate
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{
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Baud1200,
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Baud2400,
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Baud4800,
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Baud9600,
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Baud19200,
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Baud38400,
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Baud57600,
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Baud115200,
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UnknownBaud,
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};
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enum DataBits
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{
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Data5,
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Data6,
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Data7,
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Data8,
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UnknownDataBits,
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};
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enum Parity
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{
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NoParity,
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EvenParity,
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OddParity,
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SpaceParity,
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MarkParity,
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UnknownParity,
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};
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enum StopBits
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{
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OneStop,
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OneAndHalfStop,
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TwoStop,
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UnknownStopBits,
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};
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enum FlowControl
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{
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NoFlowControl,
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HardwareControl,
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SoftwareControl,
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UnknownFlowControl,
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};
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enum PinoutSignal
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{
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NoSignal,
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TransmittedDataSignal,
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ReceivedDataSignal,
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DataTerminalReadySignal,
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DataCarrierDetectSignal,
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DataSetReadySignal,
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RingIndicatorSignal,
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RequestToSendSignal,
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ClearToSendSignal,
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SecondaryTransmittedDataSignal,
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SecondaryReceivedDataSignal,
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};
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typedef QFlags<QSerialPort::PinoutSignal> PinoutSignals;
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enum DataErrorPolicy
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{
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SkipPolicy,
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PassZeroPolicy,
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IgnorePolicy,
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StopReceivingPolicy,
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UnknownPolicy,
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};
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enum SerialPortError
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{
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NoError,
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DeviceNotFoundError,
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PermissionError,
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OpenError,
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ParityError,
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FramingError,
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BreakConditionError,
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WriteError,
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ReadError,
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ResourceError,
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UnsupportedOperationError,
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%If (Qt_5_2_0 -)
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TimeoutError,
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%End
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%If (Qt_5_2_0 -)
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NotOpenError,
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%End
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UnknownError,
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};
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explicit QSerialPort(QObject *parent /TransferThis/ = 0);
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QSerialPort(const QString &name, QObject *parent /TransferThis/ = 0);
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QSerialPort(const QSerialPortInfo &info, QObject *parent /TransferThis/ = 0);
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virtual ~QSerialPort();
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void setPortName(const QString &name);
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QString portName() const;
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void setPort(const QSerialPortInfo &info);
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virtual bool open(QIODevice::OpenMode mode);
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virtual void close() /ReleaseGIL/;
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void setSettingsRestoredOnClose(bool restore);
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bool settingsRestoredOnClose() const;
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bool setBaudRate(qint32 baudRate, QSerialPort::Directions dir = QSerialPort::AllDirections);
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qint32 baudRate(QSerialPort::Directions dir = QSerialPort::AllDirections) const;
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bool setDataBits(QSerialPort::DataBits dataBits);
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QSerialPort::DataBits dataBits() const;
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bool setParity(QSerialPort::Parity parity);
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QSerialPort::Parity parity() const;
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bool setStopBits(QSerialPort::StopBits stopBits);
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QSerialPort::StopBits stopBits() const;
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bool setFlowControl(QSerialPort::FlowControl flow);
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QSerialPort::FlowControl flowControl() const;
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bool setDataTerminalReady(bool set);
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bool isDataTerminalReady();
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bool setRequestToSend(bool set);
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bool isRequestToSend();
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QSerialPort::PinoutSignals pinoutSignals();
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bool flush() /ReleaseGIL/;
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bool clear(QSerialPort::Directions dir = QSerialPort::AllDirections);
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virtual bool atEnd() const;
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bool setDataErrorPolicy(QSerialPort::DataErrorPolicy policy = QSerialPort::IgnorePolicy);
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QSerialPort::DataErrorPolicy dataErrorPolicy() const;
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QSerialPort::SerialPortError error() const;
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void clearError();
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qint64 readBufferSize() const;
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void setReadBufferSize(qint64 size);
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virtual bool isSequential() const;
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virtual qint64 bytesAvailable() const;
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virtual qint64 bytesToWrite() const;
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virtual bool canReadLine() const;
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%If (- Qt_5_11_0)
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virtual bool waitForReadyRead(int msecs) /ReleaseGIL/;
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%End
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%If (Qt_5_11_0 -)
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virtual bool waitForReadyRead(int msecs = 30000) /ReleaseGIL/;
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%End
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%If (- Qt_5_11_0)
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virtual bool waitForBytesWritten(int msecs) /ReleaseGIL/;
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%End
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%If (Qt_5_11_0 -)
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virtual bool waitForBytesWritten(int msecs = 30000) /ReleaseGIL/;
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%End
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bool sendBreak(int duration = 0) /ReleaseGIL/;
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bool setBreakEnabled(bool enabled = true);
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signals:
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void baudRateChanged(qint32 baudRate, QSerialPort::Directions directions);
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void dataBitsChanged(QSerialPort::DataBits dataBits);
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void parityChanged(QSerialPort::Parity parity);
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void stopBitsChanged(QSerialPort::StopBits stopBits);
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void flowControlChanged(QSerialPort::FlowControl flow);
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void dataErrorPolicyChanged(QSerialPort::DataErrorPolicy policy);
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void dataTerminalReadyChanged(bool set);
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void requestToSendChanged(bool set);
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void error(QSerialPort::SerialPortError serialPortError);
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void settingsRestoredOnCloseChanged(bool restore);
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protected:
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virtual SIP_PYOBJECT readData(qint64 maxlen) /TypeHint="Py_v3:bytes;str",ReleaseGIL/ [qint64 (char *data, qint64 maxSize)];
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%MethodCode
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// Return the data read or None if there was an error.
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if (a0 < 0)
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{
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PyErr_SetString(PyExc_ValueError, "maximum length of data to be read cannot be negative");
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sipIsErr = 1;
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}
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else
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{
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char *s = new char[a0];
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qint64 len;
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Py_BEGIN_ALLOW_THREADS
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#if defined(SIP_PROTECTED_IS_PUBLIC)
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len = sipSelfWasArg ? sipCpp->QSerialPort::readData(s, a0) : sipCpp->readData(s, a0);
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#else
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len = sipCpp->sipProtectVirt_readData(sipSelfWasArg, s, a0);
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#endif
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Py_END_ALLOW_THREADS
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if (len < 0)
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{
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Py_INCREF(Py_None);
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sipRes = Py_None;
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}
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else
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{
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sipRes = SIPBytes_FromStringAndSize(s, len);
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if (!sipRes)
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sipIsErr = 1;
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}
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delete[] s;
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}
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%End
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virtual SIP_PYOBJECT readLineData(qint64 maxlen) /TypeHint="Py_v3:bytes;str",ReleaseGIL/ [qint64 (char *data, qint64 maxSize)];
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%MethodCode
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// Return the data read or None if there was an error.
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if (a0 < 0)
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{
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PyErr_SetString(PyExc_ValueError, "maximum length of data to be read cannot be negative");
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sipIsErr = 1;
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}
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else
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{
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char *s = new char[a0];
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qint64 len;
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Py_BEGIN_ALLOW_THREADS
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#if defined(SIP_PROTECTED_IS_PUBLIC)
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len = sipSelfWasArg ? sipCpp->QSerialPort::readLineData(s, a0) : sipCpp->readLineData(s, a0);
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#else
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len = sipCpp->sipProtectVirt_readLineData(sipSelfWasArg, s, a0);
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#endif
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Py_END_ALLOW_THREADS
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if (len < 0)
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{
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Py_INCREF(Py_None);
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sipRes = Py_None;
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}
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else
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{
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sipRes = SIPBytes_FromStringAndSize(s, len);
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if (!sipRes)
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sipIsErr = 1;
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}
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delete[] s;
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}
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%End
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virtual qint64 writeData(const char *data /Array/, qint64 maxSize /ArraySize/) /ReleaseGIL/;
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public:
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%If (Qt_5_2_0 -)
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%If (WS_WIN)
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void *handle() const;
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%End
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%End
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%If (Qt_5_2_0 -)
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%If (WS_X11 || WS_MACX)
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int handle() const;
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%End
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%End
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%If (Qt_5_5_0 -)
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bool isBreakEnabled() const;
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%End
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signals:
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%If (Qt_5_5_0 -)
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void breakEnabledChanged(bool set);
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%End
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%If (Qt_5_8_0 -)
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void errorOccurred(QSerialPort::SerialPortError error);
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%End
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};
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%End
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%If (Qt_5_1_0 -)
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QFlags<QSerialPort::Direction> operator|(QSerialPort::Direction f1, QFlags<QSerialPort::Direction> f2);
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%End
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%If (Qt_5_1_0 -)
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QFlags<QSerialPort::PinoutSignal> operator|(QSerialPort::PinoutSignal f1, QFlags<QSerialPort::PinoutSignal> f2);
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%End
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