AP_HAL_PX4: UARTDriver: fix trailing whitespaces
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d60b4842b6
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@ -39,7 +39,7 @@ extern const AP_HAL::HAL& hal;
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this UART driver maps to a serial device in /dev
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*/
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void PX4UARTDriver::begin(uint32_t b, uint16_t rxS, uint16_t txS)
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void PX4UARTDriver::begin(uint32_t b, uint16_t rxS, uint16_t txS)
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{
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if (strcmp(_devpath, "/dev/null") == 0) {
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// leave uninitialised
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@ -123,7 +123,7 @@ void PX4UARTDriver::begin(uint32_t b, uint16_t rxS, uint16_t txS)
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if (strcmp(_devpath, "/dev/ttyACM0") == 0) {
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((PX4GPIO *)hal.gpio)->set_usb_connected();
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}
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::printf("initialised %s OK %u %u\n", _devpath,
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::printf("initialised %s OK %u %u\n", _devpath,
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(unsigned)_writebuf.get_size(), (unsigned)_readbuf.get_size());
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}
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_initialised = true;
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@ -153,7 +153,7 @@ void PX4UARTDriver::set_flow_control(enum flow_control fcontrol)
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_flow_control = fcontrol;
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}
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void PX4UARTDriver::begin(uint32_t b)
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void PX4UARTDriver::begin(uint32_t b)
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{
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begin(b, 0, 0);
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}
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@ -180,7 +180,7 @@ void PX4UARTDriver::try_initialise(void)
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}
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void PX4UARTDriver::end()
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void PX4UARTDriver::end()
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{
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_initialised = false;
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while (_in_timer) hal.scheduler->delay(1);
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@ -195,13 +195,13 @@ void PX4UARTDriver::end()
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void PX4UARTDriver::flush() {}
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bool PX4UARTDriver::is_initialized()
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{
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bool PX4UARTDriver::is_initialized()
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{
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try_initialise();
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return _initialised;
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return _initialised;
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}
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void PX4UARTDriver::set_blocking_writes(bool blocking)
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void PX4UARTDriver::set_blocking_writes(bool blocking)
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{
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_nonblocking_writes = !blocking;
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}
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@ -255,11 +255,11 @@ int16_t PX4UARTDriver::read()
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return byte;
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}
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/*
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/*
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write one byte to the buffer
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*/
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size_t PX4UARTDriver::write(uint8_t c)
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{
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size_t PX4UARTDriver::write(uint8_t c)
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{
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if (_uart_owner_pid != getpid()){
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return 0;
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}
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@ -322,7 +322,7 @@ int PX4UARTDriver::_write_fd(const uint8_t *buf, uint16_t n)
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// and no data has been removed from the buffer since flow control turned on
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// and more than .5 seconds elapsed after writing a total of > 5 characters
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//
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int nwrite = 0;
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if (ioctl(_fd, FIONWRITE, (unsigned long)&nwrite) == 0) {
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@ -336,7 +336,7 @@ int PX4UARTDriver::_write_fd(const uint8_t *buf, uint16_t n)
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if (_os_start_auto_space - nwrite + 1 >= _total_written &&
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(AP_HAL::micros64() - _first_write_time) > 500*1000UL) {
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// it doesn't look like hw flow control is working
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::printf("disabling flow control on %s _total_written=%u\n",
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::printf("disabling flow control on %s _total_written=%u\n",
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_devpath, (unsigned)_total_written);
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set_flow_control(FLOW_CONTROL_DISABLE);
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}
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@ -383,7 +383,8 @@ int PX4UARTDriver::_write_fd(const uint8_t *buf, uint16_t n)
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#else
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_last_write_time = AP_HAL::micros64();
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#endif
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// we haven't done a successful write for 2ms, which means the
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// we haven't done a successful write for 2ms, which means the
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// port is running at less than 500 bytes/sec. Start
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// discarding bytes, even if this is a blocking port. This
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// prevents the ttyACM0 port blocking startup if the endpoint
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@ -421,7 +422,7 @@ int PX4UARTDriver::_read_fd(uint8_t *buf, uint16_t n)
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/*
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push any pending bytes to/from the serial port. This is called at
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1kHz in the timer thread. Doing it this way reduces the system call
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overhead in the main task enormously.
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overhead in the main task enormously.
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*/
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void PX4UARTDriver::_timer_tick(void)
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{
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@ -480,5 +481,4 @@ void PX4UARTDriver::_timer_tick(void)
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_in_timer = false;
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}
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#endif // CONFIG_HAL_BOARD
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#endif
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