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873 lines
29 KiB
C++
873 lines
29 KiB
C++
#include "qwineventnotifier.h"
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#include <QMutexLocker>
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#include <QDebug>
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#include <QRegExp>
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#include "qextserialport.h"
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void QextSerialPort::platformSpecificInit()
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{
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Win_Handle=INVALID_HANDLE_VALUE;
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ZeroMemory(&overlap, sizeof(OVERLAPPED));
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overlap.hEvent = CreateEvent(NULL, true, false, NULL);
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winEventNotifier = 0;
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bytesToWriteLock = new QReadWriteLock;
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_bytesToWrite = 0;
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}
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/*!
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Standard destructor.
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*/
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void QextSerialPort::platformSpecificDestruct() {
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CloseHandle(overlap.hEvent);
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delete bytesToWriteLock;
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}
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QString QextSerialPort::fullPortNameWin(const QString & name)
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{
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QRegExp rx("^COM(\\d+)");
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QString fullName(name);
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if(fullName.contains(rx)) {
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int portnum = rx.cap(1).toInt();
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if(portnum > 9) // COM ports greater than 9 need \\.\ prepended
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fullName.prepend("\\\\.\\");
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}
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return fullName;
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}
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/*!
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Opens a serial port. Note that this function does not specify which device to open. If you need
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to open a device by name, see QextSerialPort::open(const char*). This function has no effect
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if the port associated with the class is already open. The port is also configured to the current
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settings, as stored in the Settings structure.
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*/
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bool QextSerialPort::open(OpenMode mode) {
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unsigned long confSize = sizeof(COMMCONFIG);
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Win_CommConfig.dwSize = confSize;
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DWORD dwFlagsAndAttributes = 0;
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if (queryMode() == QextSerialPort::EventDriven)
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dwFlagsAndAttributes += FILE_FLAG_OVERLAPPED;
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QMutexLocker lock(mutex);
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if (mode == QIODevice::NotOpen)
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return isOpen();
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if (!isOpen()) {
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/*open the port*/
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Win_Handle=CreateFileA(port.toLatin1(), GENERIC_READ|GENERIC_WRITE,
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0, NULL, OPEN_EXISTING, dwFlagsAndAttributes, NULL);
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if (Win_Handle!=INVALID_HANDLE_VALUE) {
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QIODevice::open(mode);
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/*configure port settings*/
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GetCommConfig(Win_Handle, &Win_CommConfig, &confSize);
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GetCommState(Win_Handle, &(Win_CommConfig.dcb));
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/*set up parameters*/
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Win_CommConfig.dcb.fBinary=TRUE;
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Win_CommConfig.dcb.fInX=FALSE;
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Win_CommConfig.dcb.fOutX=FALSE;
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Win_CommConfig.dcb.fAbortOnError=FALSE;
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Win_CommConfig.dcb.fNull=FALSE;
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setBaudRate(Settings.BaudRate);
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setDataBits(Settings.DataBits);
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setStopBits(Settings.StopBits);
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setParity(Settings.Parity);
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setFlowControl(Settings.FlowControl);
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setTimeout(Settings.Timeout_Millisec);
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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//init event driven approach
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if (queryMode() == QextSerialPort::EventDriven) {
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Win_CommTimeouts.ReadIntervalTimeout = MAXDWORD;
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Win_CommTimeouts.ReadTotalTimeoutMultiplier = 0;
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Win_CommTimeouts.ReadTotalTimeoutConstant = 0;
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Win_CommTimeouts.WriteTotalTimeoutMultiplier = 0;
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Win_CommTimeouts.WriteTotalTimeoutConstant = 0;
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SetCommTimeouts(Win_Handle, &Win_CommTimeouts);
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if (!SetCommMask( Win_Handle, EV_TXEMPTY | EV_RXCHAR | EV_DSR)) {
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qWarning() << "failed to set Comm Mask. Error code:", GetLastError();
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return false;
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}
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winEventNotifier = new QWinEventNotifier(overlap.hEvent, this);
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connect(winEventNotifier, SIGNAL(activated(HANDLE)), this, SLOT(onWinEvent(HANDLE)));
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WaitCommEvent(Win_Handle, &eventMask, &overlap);
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}
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}
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} else {
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return false;
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}
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return isOpen();
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}
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/*!
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Closes a serial port. This function has no effect if the serial port associated with the class
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is not currently open.
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*/
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void QextSerialPort::close()
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{
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QMutexLocker lock(mutex);
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if (isOpen()) {
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flush();
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QIODevice::close(); // mark ourselves as closed
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CancelIo(Win_Handle);
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if (winEventNotifier) {
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winEventNotifier->setEnabled(false);
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winEventNotifier->deleteLater();
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winEventNotifier = 0;
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}
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if (CloseHandle(Win_Handle))
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Win_Handle = INVALID_HANDLE_VALUE;
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_bytesToWrite = 0;
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if(!pendingWrites.isEmpty()) {
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foreach(OVERLAPPED* o, pendingWrites) {
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CloseHandle(o->hEvent);
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delete o;
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}
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pendingWrites.clear();
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}
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}
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}
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/*!
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Flushes all pending I/O to the serial port. This function has no effect if the serial port
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associated with the class is not currently open.
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*/
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void QextSerialPort::flush() {
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QMutexLocker lock(mutex);
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if (isOpen()) {
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FlushFileBuffers(Win_Handle);
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}
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}
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/*!
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This function will return the number of bytes waiting in the receive queue of the serial port.
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It is included primarily to provide a complete QIODevice interface, and will not record errors
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in the lastErr member (because it is const). This function is also not thread-safe - in
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multithreading situations, use QextSerialPort::bytesAvailable() instead.
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*/
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qint64 QextSerialPort::size() const {
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int availBytes;
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COMSTAT Win_ComStat;
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DWORD Win_ErrorMask=0;
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ClearCommError(Win_Handle, &Win_ErrorMask, &Win_ComStat);
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availBytes = Win_ComStat.cbInQue;
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return (qint64)availBytes;
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}
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/*!
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Returns the number of bytes waiting in the port's receive queue. This function will return 0 if
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the port is not currently open, or -1 on error.
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*/
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qint64 QextSerialPort::bytesAvailable() const {
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QMutexLocker lock(mutex);
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if (isOpen()) {
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DWORD Errors;
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COMSTAT Status;
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if (ClearCommError(Win_Handle, &Errors, &Status)) {
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return Status.cbInQue + QIODevice::bytesAvailable();
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}
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return (qint64)-1;
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}
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return 0;
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}
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/*!
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Translates a system-specific error code to a QextSerialPort error code. Used internally.
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*/
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void QextSerialPort::translateError(ulong error) {
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if (error&CE_BREAK) {
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lastErr=E_BREAK_CONDITION;
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}
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else if (error&CE_FRAME) {
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lastErr=E_FRAMING_ERROR;
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}
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else if (error&CE_IOE) {
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lastErr=E_IO_ERROR;
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}
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else if (error&CE_MODE) {
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lastErr=E_INVALID_FD;
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}
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else if (error&CE_OVERRUN) {
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lastErr=E_BUFFER_OVERRUN;
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}
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else if (error&CE_RXPARITY) {
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lastErr=E_RECEIVE_PARITY_ERROR;
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}
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else if (error&CE_RXOVER) {
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lastErr=E_RECEIVE_OVERFLOW;
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}
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else if (error&CE_TXFULL) {
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lastErr=E_TRANSMIT_OVERFLOW;
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}
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}
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/*!
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Reads a block of data from the serial port. This function will read at most maxlen bytes from
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the serial port and place them in the buffer pointed to by data. Return value is the number of
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bytes actually read, or -1 on error.
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\warning before calling this function ensure that serial port associated with this class
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is currently open (use isOpen() function to check if port is open).
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*/
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qint64 QextSerialPort::readData(char *data, qint64 maxSize)
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{
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DWORD retVal;
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QMutexLocker lock(mutex);
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retVal = 0;
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if (queryMode() == QextSerialPort::EventDriven) {
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OVERLAPPED overlapRead;
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ZeroMemory(&overlapRead, sizeof(OVERLAPPED));
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if (!ReadFile(Win_Handle, (void*)data, (DWORD)maxSize, & retVal, & overlapRead)) {
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if (GetLastError() == ERROR_IO_PENDING)
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GetOverlappedResult(Win_Handle, & overlapRead, & retVal, true);
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else {
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lastErr = E_READ_FAILED;
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retVal = (DWORD)-1;
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}
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}
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} else if (!ReadFile(Win_Handle, (void*)data, (DWORD)maxSize, & retVal, NULL)) {
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lastErr = E_READ_FAILED;
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retVal = (DWORD)-1;
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}
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return (qint64)retVal;
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}
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/*!
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Writes a block of data to the serial port. This function will write len bytes
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from the buffer pointed to by data to the serial port. Return value is the number
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of bytes actually written, or -1 on error.
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\warning before calling this function ensure that serial port associated with this class
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is currently open (use isOpen() function to check if port is open).
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*/
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qint64 QextSerialPort::writeData(const char *data, qint64 maxSize)
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{
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QMutexLocker lock( mutex );
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DWORD retVal = 0;
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if (queryMode() == QextSerialPort::EventDriven) {
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OVERLAPPED* newOverlapWrite = new OVERLAPPED;
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ZeroMemory(newOverlapWrite, sizeof(OVERLAPPED));
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newOverlapWrite->hEvent = CreateEvent(NULL, true, false, NULL);
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if (WriteFile(Win_Handle, (void*)data, (DWORD)maxSize, & retVal, newOverlapWrite)) {
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CloseHandle(newOverlapWrite->hEvent);
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delete newOverlapWrite;
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}
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else if (GetLastError() == ERROR_IO_PENDING) {
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// writing asynchronously...not an error
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QWriteLocker writelocker(bytesToWriteLock);
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_bytesToWrite += maxSize;
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pendingWrites.append(newOverlapWrite);
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}
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else {
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qDebug() << "serialport write error:" << GetLastError();
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lastErr = E_WRITE_FAILED;
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retVal = (DWORD)-1;
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if(!CancelIo(newOverlapWrite->hEvent))
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qDebug() << "serialport: couldn't cancel IO";
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if(!CloseHandle(newOverlapWrite->hEvent))
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qDebug() << "serialport: couldn't close OVERLAPPED handle";
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delete newOverlapWrite;
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}
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} else if (!WriteFile(Win_Handle, (void*)data, (DWORD)maxSize, & retVal, NULL)) {
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lastErr = E_WRITE_FAILED;
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retVal = (DWORD)-1;
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}
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return (qint64)retVal;
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}
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/*!
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This function is included to implement the full QIODevice interface, and currently has no
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purpose within this class. This function is meaningless on an unbuffered device and currently
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only prints a warning message to that effect.
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*/
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void QextSerialPort::ungetChar(char c) {
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/*meaningless on unbuffered sequential device - return error and print a warning*/
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TTY_WARNING("QextSerialPort: ungetChar() called on an unbuffered sequential device - operation is meaningless");
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}
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/*!
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Sets the flow control used by the port. Possible values of flow are:
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\verbatim
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FLOW_OFF No flow control
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FLOW_HARDWARE Hardware (RTS/CTS) flow control
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FLOW_XONXOFF Software (XON/XOFF) flow control
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\endverbatim
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*/
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void QextSerialPort::setFlowControl(FlowType flow) {
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QMutexLocker lock(mutex);
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if (Settings.FlowControl!=flow) {
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Settings.FlowControl=flow;
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}
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if (isOpen()) {
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switch(flow) {
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/*no flow control*/
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case FLOW_OFF:
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Win_CommConfig.dcb.fOutxCtsFlow=FALSE;
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Win_CommConfig.dcb.fRtsControl=RTS_CONTROL_DISABLE;
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Win_CommConfig.dcb.fInX=FALSE;
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Win_CommConfig.dcb.fOutX=FALSE;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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break;
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/*software (XON/XOFF) flow control*/
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case FLOW_XONXOFF:
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Win_CommConfig.dcb.fOutxCtsFlow=FALSE;
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Win_CommConfig.dcb.fRtsControl=RTS_CONTROL_DISABLE;
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Win_CommConfig.dcb.fInX=TRUE;
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Win_CommConfig.dcb.fOutX=TRUE;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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break;
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case FLOW_HARDWARE:
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Win_CommConfig.dcb.fOutxCtsFlow=TRUE;
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Win_CommConfig.dcb.fRtsControl=RTS_CONTROL_HANDSHAKE;
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Win_CommConfig.dcb.fInX=FALSE;
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Win_CommConfig.dcb.fOutX=FALSE;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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break;
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}
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}
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}
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/*!
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Sets the parity associated with the serial port. The possible values of parity are:
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\verbatim
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PAR_SPACE Space Parity
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PAR_MARK Mark Parity
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PAR_NONE No Parity
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PAR_EVEN Even Parity
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PAR_ODD Odd Parity
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\endverbatim
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*/
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void QextSerialPort::setParity(ParityType parity) {
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QMutexLocker lock(mutex);
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if (Settings.Parity!=parity) {
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Settings.Parity=parity;
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}
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if (isOpen()) {
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Win_CommConfig.dcb.Parity=(unsigned char)parity;
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switch (parity) {
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/*space parity*/
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case PAR_SPACE:
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if (Settings.DataBits==DATA_8) {
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TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: Space parity with 8 data bits is not supported by POSIX systems.");
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}
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Win_CommConfig.dcb.fParity=TRUE;
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break;
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/*mark parity - WINDOWS ONLY*/
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case PAR_MARK:
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TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: Mark parity is not supported by POSIX systems");
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Win_CommConfig.dcb.fParity=TRUE;
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break;
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/*no parity*/
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case PAR_NONE:
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Win_CommConfig.dcb.fParity=FALSE;
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break;
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/*even parity*/
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case PAR_EVEN:
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Win_CommConfig.dcb.fParity=TRUE;
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break;
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/*odd parity*/
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case PAR_ODD:
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Win_CommConfig.dcb.fParity=TRUE;
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break;
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}
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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}
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}
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/*!
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Sets the number of data bits used by the serial port. Possible values of dataBits are:
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\verbatim
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DATA_5 5 data bits
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DATA_6 6 data bits
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DATA_7 7 data bits
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DATA_8 8 data bits
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\endverbatim
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\note
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This function is subject to the following restrictions:
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\par
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5 data bits cannot be used with 2 stop bits.
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\par
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1.5 stop bits can only be used with 5 data bits.
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\par
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8 data bits cannot be used with space parity on POSIX systems.
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*/
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void QextSerialPort::setDataBits(DataBitsType dataBits) {
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QMutexLocker lock(mutex);
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if (Settings.DataBits!=dataBits) {
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if ((Settings.StopBits==STOP_2 && dataBits==DATA_5) ||
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(Settings.StopBits==STOP_1_5 && dataBits!=DATA_5)) {
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}
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else {
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Settings.DataBits=dataBits;
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}
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}
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if (isOpen()) {
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switch(dataBits) {
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/*5 data bits*/
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case DATA_5:
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if (Settings.StopBits==STOP_2) {
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TTY_WARNING("QextSerialPort: 5 Data bits cannot be used with 2 stop bits.");
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}
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else {
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Win_CommConfig.dcb.ByteSize=5;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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}
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break;
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/*6 data bits*/
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case DATA_6:
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if (Settings.StopBits==STOP_1_5) {
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TTY_WARNING("QextSerialPort: 6 Data bits cannot be used with 1.5 stop bits.");
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}
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else {
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Win_CommConfig.dcb.ByteSize=6;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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}
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break;
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/*7 data bits*/
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case DATA_7:
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if (Settings.StopBits==STOP_1_5) {
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TTY_WARNING("QextSerialPort: 7 Data bits cannot be used with 1.5 stop bits.");
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}
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else {
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Win_CommConfig.dcb.ByteSize=7;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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}
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break;
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/*8 data bits*/
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case DATA_8:
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if (Settings.StopBits==STOP_1_5) {
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TTY_WARNING("QextSerialPort: 8 Data bits cannot be used with 1.5 stop bits.");
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}
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else {
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Win_CommConfig.dcb.ByteSize=8;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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}
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break;
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}
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}
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}
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/*!
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Sets the number of stop bits used by the serial port. Possible values of stopBits are:
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\verbatim
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STOP_1 1 stop bit
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STOP_1_5 1.5 stop bits
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STOP_2 2 stop bits
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\endverbatim
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\note
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This function is subject to the following restrictions:
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\par
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2 stop bits cannot be used with 5 data bits.
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\par
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1.5 stop bits cannot be used with 6 or more data bits.
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\par
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POSIX does not support 1.5 stop bits.
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*/
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void QextSerialPort::setStopBits(StopBitsType stopBits) {
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QMutexLocker lock(mutex);
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if (Settings.StopBits!=stopBits) {
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if ((Settings.DataBits==DATA_5 && stopBits==STOP_2) ||
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(stopBits==STOP_1_5 && Settings.DataBits!=DATA_5)) {
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}
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else {
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Settings.StopBits=stopBits;
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}
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}
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if (isOpen()) {
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switch (stopBits) {
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/*one stop bit*/
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case STOP_1:
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Win_CommConfig.dcb.StopBits=ONESTOPBIT;
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SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
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break;
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/*1.5 stop bits*/
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case STOP_1_5:
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TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: 1.5 stop bit operation is not supported by POSIX.");
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if (Settings.DataBits!=DATA_5) {
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TTY_WARNING("QextSerialPort: 1.5 stop bits can only be used with 5 data bits");
|
|
}
|
|
else {
|
|
Win_CommConfig.dcb.StopBits=ONE5STOPBITS;
|
|
SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
|
|
}
|
|
break;
|
|
|
|
/*two stop bits*/
|
|
case STOP_2:
|
|
if (Settings.DataBits==DATA_5) {
|
|
TTY_WARNING("QextSerialPort: 2 stop bits cannot be used with 5 data bits");
|
|
}
|
|
else {
|
|
Win_CommConfig.dcb.StopBits=TWOSTOPBITS;
|
|
SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
/*!
|
|
Sets the baud rate of the serial port. Note that not all rates are applicable on
|
|
all platforms. The following table shows translations of the various baud rate
|
|
constants on Windows(including NT/2000) and POSIX platforms. Speeds marked with an *
|
|
are speeds that are usable on both Windows and POSIX.
|
|
\verbatim
|
|
|
|
RATE Windows Speed POSIX Speed
|
|
----------- ------------- -----------
|
|
BAUD50 110 50
|
|
BAUD75 110 75
|
|
*BAUD110 110 110
|
|
BAUD134 110 134.5
|
|
BAUD150 110 150
|
|
BAUD200 110 200
|
|
*BAUD300 300 300
|
|
*BAUD600 600 600
|
|
*BAUD1200 1200 1200
|
|
BAUD1800 1200 1800
|
|
*BAUD2400 2400 2400
|
|
*BAUD4800 4800 4800
|
|
*BAUD9600 9600 9600
|
|
BAUD14400 14400 9600
|
|
*BAUD19200 19200 19200
|
|
*BAUD38400 38400 38400
|
|
BAUD56000 56000 38400
|
|
*BAUD57600 57600 57600
|
|
BAUD76800 57600 76800
|
|
*BAUD115200 115200 115200
|
|
BAUD128000 128000 115200
|
|
BAUD256000 256000 115200
|
|
\endverbatim
|
|
*/
|
|
void QextSerialPort::setBaudRate(BaudRateType baudRate) {
|
|
QMutexLocker lock(mutex);
|
|
if (Settings.BaudRate!=baudRate) {
|
|
switch (baudRate) {
|
|
case BAUD50:
|
|
case BAUD75:
|
|
case BAUD134:
|
|
case BAUD150:
|
|
case BAUD200:
|
|
Settings.BaudRate=BAUD110;
|
|
break;
|
|
|
|
case BAUD1800:
|
|
Settings.BaudRate=BAUD1200;
|
|
break;
|
|
|
|
case BAUD76800:
|
|
Settings.BaudRate=BAUD57600;
|
|
break;
|
|
|
|
default:
|
|
Settings.BaudRate=baudRate;
|
|
break;
|
|
}
|
|
}
|
|
if (isOpen()) {
|
|
switch (baudRate) {
|
|
|
|
/*50 baud*/
|
|
case BAUD50:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 50 baud operation. Switching to 110 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*75 baud*/
|
|
case BAUD75:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 75 baud operation. Switching to 110 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*110 baud*/
|
|
case BAUD110:
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*134.5 baud*/
|
|
case BAUD134:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 134.5 baud operation. Switching to 110 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*150 baud*/
|
|
case BAUD150:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 150 baud operation. Switching to 110 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*200 baud*/
|
|
case BAUD200:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 200 baud operation. Switching to 110 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_110;
|
|
break;
|
|
|
|
/*300 baud*/
|
|
case BAUD300:
|
|
Win_CommConfig.dcb.BaudRate=CBR_300;
|
|
break;
|
|
|
|
/*600 baud*/
|
|
case BAUD600:
|
|
Win_CommConfig.dcb.BaudRate=CBR_600;
|
|
break;
|
|
|
|
/*1200 baud*/
|
|
case BAUD1200:
|
|
Win_CommConfig.dcb.BaudRate=CBR_1200;
|
|
break;
|
|
|
|
/*1800 baud*/
|
|
case BAUD1800:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 1800 baud operation. Switching to 1200 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_1200;
|
|
break;
|
|
|
|
/*2400 baud*/
|
|
case BAUD2400:
|
|
Win_CommConfig.dcb.BaudRate=CBR_2400;
|
|
break;
|
|
|
|
/*4800 baud*/
|
|
case BAUD4800:
|
|
Win_CommConfig.dcb.BaudRate=CBR_4800;
|
|
break;
|
|
|
|
/*9600 baud*/
|
|
case BAUD9600:
|
|
Win_CommConfig.dcb.BaudRate=CBR_9600;
|
|
break;
|
|
|
|
/*14400 baud*/
|
|
case BAUD14400:
|
|
TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: POSIX does not support 14400 baud operation.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_14400;
|
|
break;
|
|
|
|
/*19200 baud*/
|
|
case BAUD19200:
|
|
Win_CommConfig.dcb.BaudRate=CBR_19200;
|
|
break;
|
|
|
|
/*38400 baud*/
|
|
case BAUD38400:
|
|
Win_CommConfig.dcb.BaudRate=CBR_38400;
|
|
break;
|
|
|
|
/*56000 baud*/
|
|
case BAUD56000:
|
|
TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: POSIX does not support 56000 baud operation.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_56000;
|
|
break;
|
|
|
|
/*57600 baud*/
|
|
case BAUD57600:
|
|
Win_CommConfig.dcb.BaudRate=CBR_57600;
|
|
break;
|
|
|
|
/*76800 baud*/
|
|
case BAUD76800:
|
|
TTY_WARNING("QextSerialPort: Windows does not support 76800 baud operation. Switching to 57600 baud.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_57600;
|
|
break;
|
|
|
|
/*115200 baud*/
|
|
case BAUD115200:
|
|
Win_CommConfig.dcb.BaudRate=CBR_115200;
|
|
break;
|
|
|
|
/*128000 baud*/
|
|
case BAUD128000:
|
|
TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: POSIX does not support 128000 baud operation.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_128000;
|
|
break;
|
|
|
|
/*256000 baud*/
|
|
case BAUD256000:
|
|
TTY_PORTABILITY_WARNING("QextSerialPort Portability Warning: POSIX does not support 256000 baud operation.");
|
|
Win_CommConfig.dcb.BaudRate=CBR_256000;
|
|
break;
|
|
}
|
|
SetCommConfig(Win_Handle, &Win_CommConfig, sizeof(COMMCONFIG));
|
|
}
|
|
}
|
|
|
|
/*!
|
|
Sets DTR line to the requested state (high by default). This function will have no effect if
|
|
the port associated with the class is not currently open.
|
|
*/
|
|
void QextSerialPort::setDtr(bool set) {
|
|
QMutexLocker lock(mutex);
|
|
if (isOpen()) {
|
|
if (set) {
|
|
EscapeCommFunction(Win_Handle, SETDTR);
|
|
}
|
|
else {
|
|
EscapeCommFunction(Win_Handle, CLRDTR);
|
|
}
|
|
}
|
|
}
|
|
|
|
/*!
|
|
Sets RTS line to the requested state (high by default). This function will have no effect if
|
|
the port associated with the class is not currently open.
|
|
*/
|
|
void QextSerialPort::setRts(bool set) {
|
|
QMutexLocker lock(mutex);
|
|
if (isOpen()) {
|
|
if (set) {
|
|
EscapeCommFunction(Win_Handle, SETRTS);
|
|
}
|
|
else {
|
|
EscapeCommFunction(Win_Handle, CLRRTS);
|
|
}
|
|
}
|
|
}
|
|
|
|
/*!
|
|
Returns the line status as stored by the port function. This function will retrieve the states
|
|
of the following lines: DCD, CTS, DSR, and RI. On POSIX systems, the following additional lines
|
|
can be monitored: DTR, RTS, Secondary TXD, and Secondary RXD. The value returned is an unsigned
|
|
long with specific bits indicating which lines are high. The following constants should be used
|
|
to examine the states of individual lines:
|
|
|
|
\verbatim
|
|
Mask Line
|
|
------ ----
|
|
LS_CTS CTS
|
|
LS_DSR DSR
|
|
LS_DCD DCD
|
|
LS_RI RI
|
|
\endverbatim
|
|
|
|
This function will return 0 if the port associated with the class is not currently open.
|
|
*/
|
|
ulong QextSerialPort::lineStatus(void) {
|
|
unsigned long Status=0, Temp=0;
|
|
QMutexLocker lock(mutex);
|
|
if (isOpen()) {
|
|
GetCommModemStatus(Win_Handle, &Temp);
|
|
if (Temp&MS_CTS_ON) {
|
|
Status|=LS_CTS;
|
|
}
|
|
if (Temp&MS_DSR_ON) {
|
|
Status|=LS_DSR;
|
|
}
|
|
if (Temp&MS_RING_ON) {
|
|
Status|=LS_RI;
|
|
}
|
|
if (Temp&MS_RLSD_ON) {
|
|
Status|=LS_DCD;
|
|
}
|
|
}
|
|
return Status;
|
|
}
|
|
|
|
bool QextSerialPort::waitForReadyRead(int msecs)
|
|
{
|
|
//@todo implement
|
|
return false;
|
|
}
|
|
|
|
qint64 QextSerialPort::bytesToWrite() const
|
|
{
|
|
QReadLocker rl(bytesToWriteLock);
|
|
return _bytesToWrite;
|
|
}
|
|
|
|
/*
|
|
Triggered when there's activity on our HANDLE.
|
|
*/
|
|
void QextSerialPort::onWinEvent(HANDLE h)
|
|
{
|
|
QMutexLocker lock(mutex);
|
|
if(h == overlap.hEvent) {
|
|
if (eventMask & EV_RXCHAR) {
|
|
if (sender() != this && bytesAvailable() > 0)
|
|
emit readyRead();
|
|
}
|
|
if (eventMask & EV_TXEMPTY) {
|
|
/*
|
|
A write completed. Run through the list of OVERLAPPED writes, and if
|
|
they completed successfully, take them off the list and delete them.
|
|
Otherwise, leave them on there so they can finish.
|
|
*/
|
|
qint64 totalBytesWritten = 0;
|
|
QList<OVERLAPPED*> overlapsToDelete;
|
|
foreach(OVERLAPPED* o, pendingWrites) {
|
|
DWORD numBytes = 0;
|
|
if (GetOverlappedResult(Win_Handle, o, & numBytes, false)) {
|
|
overlapsToDelete.append(o);
|
|
totalBytesWritten += numBytes;
|
|
} else if( GetLastError() != ERROR_IO_INCOMPLETE ) {
|
|
overlapsToDelete.append(o);
|
|
qWarning() << "CommEvent overlapped write error:" << GetLastError();
|
|
}
|
|
}
|
|
|
|
if (sender() != this && totalBytesWritten > 0) {
|
|
QWriteLocker writelocker(bytesToWriteLock);
|
|
emit bytesWritten(totalBytesWritten);
|
|
_bytesToWrite = 0;
|
|
}
|
|
|
|
foreach(OVERLAPPED* o, overlapsToDelete) {
|
|
OVERLAPPED *toDelete = pendingWrites.takeAt(pendingWrites.indexOf(o));
|
|
CloseHandle(toDelete->hEvent);
|
|
delete toDelete;
|
|
}
|
|
}
|
|
if (eventMask & EV_DSR) {
|
|
if (lineStatus() & LS_DSR)
|
|
emit dsrChanged(true);
|
|
else
|
|
emit dsrChanged(false);
|
|
}
|
|
}
|
|
WaitCommEvent(Win_Handle, &eventMask, &overlap);
|
|
}
|
|
|
|
/*!
|
|
Sets the read and write timeouts for the port to millisec milliseconds.
|
|
Setting 0 indicates that timeouts are not used for read nor write operations;
|
|
however read() and write() functions will still block. Set -1 to provide
|
|
non-blocking behavior (read() and write() will return immediately).
|
|
|
|
\note this function does nothing in event driven mode.
|
|
*/
|
|
void QextSerialPort::setTimeout(long millisec) {
|
|
QMutexLocker lock(mutex);
|
|
Settings.Timeout_Millisec = millisec;
|
|
|
|
if (millisec == -1) {
|
|
Win_CommTimeouts.ReadIntervalTimeout = MAXDWORD;
|
|
Win_CommTimeouts.ReadTotalTimeoutConstant = 0;
|
|
} else {
|
|
Win_CommTimeouts.ReadIntervalTimeout = millisec;
|
|
Win_CommTimeouts.ReadTotalTimeoutConstant = millisec;
|
|
}
|
|
Win_CommTimeouts.ReadTotalTimeoutMultiplier = 0;
|
|
Win_CommTimeouts.WriteTotalTimeoutMultiplier = millisec;
|
|
Win_CommTimeouts.WriteTotalTimeoutConstant = 0;
|
|
if (queryMode() != QextSerialPort::EventDriven)
|
|
SetCommTimeouts(Win_Handle, &Win_CommTimeouts);
|
|
}
|
|
|