2013-01-04 07:25:36 -04:00
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/// -*- tab-width: 4; Mode: C++; c-basic-offset: 4; indent-tabs-mode: nil -*-
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#include <AP_HAL.h>
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#if CONFIG_HAL_BOARD == HAL_BOARD_PX4
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#include "RCOutput.h"
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include <drivers/drv_pwm_output.h>
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extern const AP_HAL::HAL& hal;
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using namespace PX4;
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void PX4RCOutput::init(void* unused)
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{
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2013-01-25 04:16:28 -04:00
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_perf_rcout = perf_alloc(PC_ELAPSED, "APM_rcout");
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2013-01-04 07:25:36 -04:00
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_pwm_fd = open(PWM_OUTPUT_DEVICE_PATH, O_RDWR);
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if (_pwm_fd == -1) {
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hal.scheduler->panic("Unable to open " PWM_OUTPUT_DEVICE_PATH);
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}
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2013-01-27 00:05:28 -04:00
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if (ioctl(_pwm_fd, PWM_SERVO_ARM, 0) != 0) {
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2013-01-26 21:52:03 -04:00
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hal.console->printf("RCOutput: Unable to setup IO arming\n");
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}
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2013-01-04 07:25:36 -04:00
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}
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void PX4RCOutput::set_freq(uint32_t chmask, uint16_t freq_hz)
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{
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2013-01-22 16:29:59 -04:00
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if (freq_hz == _freq_hz) {
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// avoid the ioctl() if possible
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return;
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}
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2013-01-05 07:45:17 -04:00
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// we can't set this per channel yet
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if (ioctl(_pwm_fd, PWM_SERVO_SET_UPDATE_RATE, (unsigned long)freq_hz) == 0) {
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_freq_hz = freq_hz;
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}
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2013-01-04 07:25:36 -04:00
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}
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uint16_t PX4RCOutput::get_freq(uint8_t ch)
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{
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2013-01-05 07:45:17 -04:00
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return _freq_hz;
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2013-01-04 07:25:36 -04:00
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}
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void PX4RCOutput::enable_ch(uint8_t ch)
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{
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// channels are always enabled ...
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}
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void PX4RCOutput::enable_mask(uint32_t chmask)
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{
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// channels are always enabled ...
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}
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void PX4RCOutput::disable_ch(uint8_t ch)
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{
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// channels are always enabled ...
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}
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void PX4RCOutput::disable_mask(uint32_t chmask)
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{
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// channels are always enabled ...
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}
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void PX4RCOutput::write(uint8_t ch, uint16_t period_us)
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{
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2013-01-22 16:29:59 -04:00
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if (ch >= PX4_NUM_OUTPUT_CHANNELS) {
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return;
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}
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2013-02-23 19:04:17 -04:00
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if (ch >= _max_channel) {
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_max_channel = ch + 1;
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2013-01-25 04:16:28 -04:00
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}
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2013-01-22 16:29:59 -04:00
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if (period_us != _period[ch]) {
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_period[ch] = period_us;
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2013-01-25 04:16:28 -04:00
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_need_update = true;
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2013-01-22 16:29:59 -04:00
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}
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2013-01-04 07:25:36 -04:00
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}
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void PX4RCOutput::write(uint8_t ch, uint16_t* period_us, uint8_t len)
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{
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for (uint8_t i=0; i<len; i++) {
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write(i, period_us[i]);
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}
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}
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uint16_t PX4RCOutput::read(uint8_t ch)
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{
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2013-01-22 16:29:59 -04:00
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if (ch >= PX4_NUM_OUTPUT_CHANNELS) {
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return 0;
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2013-01-04 07:25:36 -04:00
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}
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2013-01-22 16:29:59 -04:00
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return _period[ch];
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2013-01-04 07:25:36 -04:00
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}
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void PX4RCOutput::read(uint16_t* period_us, uint8_t len)
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{
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for (uint8_t i=0; i<len; i++) {
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period_us[i] = read(i);
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}
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}
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2013-01-25 04:16:28 -04:00
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void PX4RCOutput::_timer_tick(void)
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{
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uint32_t now = hal.scheduler->micros();
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// always send at least at 20Hz, otherwise the IO board may think
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// we are dead
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if (now - _last_output > 50000) {
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_need_update = true;
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}
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if (_need_update && _pwm_fd != -1) {
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_need_update = false;
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perf_begin(_perf_rcout);
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::write(_pwm_fd, _period, _max_channel*sizeof(_period[0]));
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perf_end(_perf_rcout);
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_last_output = now;
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}
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}
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2013-01-04 07:25:36 -04:00
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#endif // CONFIG_HAL_BOARD
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