2011-09-08 22:29:39 -03:00
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// -*- tab-width: 4; Mode: C++; c-basic-offset: 4; indent-tabs-mode: nil -*-
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2012-11-18 17:09:44 -04:00
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// filter altitude from the barometer with a low pass filter
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static LowPassFilterInt32 altitude_filter;
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2011-09-08 22:29:39 -03:00
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static void init_barometer(void)
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{
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2012-12-03 20:13:33 -04:00
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gcs_send_text_P(SEVERITY_LOW, PSTR("Calibrating barometer"));
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2012-12-04 18:22:21 -04:00
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barometer.calibrate();
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2012-11-18 17:09:44 -04:00
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// filter at 100ms sampling, with 0.7Hz cutoff frequency
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altitude_filter.set_cutoff_frequency(0.1, 0.7);
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2012-06-19 23:26:58 -03:00
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gcs_send_text_P(SEVERITY_LOW, PSTR("barometer calibration complete"));
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2011-09-08 22:29:39 -03:00
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}
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2012-06-19 23:26:58 -03:00
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// read the barometer and return the updated altitude in centimeters
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// above the calibration altitude
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static int32_t read_barometer(void)
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{
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2012-08-16 21:50:15 -03:00
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barometer.read();
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2012-08-07 22:14:01 -03:00
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return altitude_filter.apply(barometer.get_altitude() * 100.0);
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2011-09-08 22:29:39 -03:00
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}
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2013-10-30 19:23:21 -03:00
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static void init_sonar(void)
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{
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#if CONFIG_HAL_BOARD == HAL_BOARD_APM1
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2013-11-29 15:56:16 -04:00
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sonar.Init(&apm1_adc);
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2013-10-30 19:23:21 -03:00
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#else
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sonar.Init(NULL);
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#endif
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}
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// read the sonars
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static void read_sonars(void)
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{
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if (!sonar.enabled()) {
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// this makes it possible to disable sonar at runtime
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return;
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}
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if (g.log_bitmask & MASK_LOG_SONAR)
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Log_Write_Sonar();
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}
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2013-08-28 09:37:07 -03:00
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/*
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ask airspeed sensor for a new value
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*/
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2011-09-08 22:29:39 -03:00
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static void read_airspeed(void)
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{
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2013-06-04 00:34:58 -03:00
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if (airspeed.enabled()) {
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airspeed.read();
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calc_airspeed_errors();
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}
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2011-09-08 22:29:39 -03:00
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}
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static void zero_airspeed(void)
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{
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2012-12-04 18:22:21 -04:00
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airspeed.calibrate();
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2012-08-15 06:49:09 -03:00
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gcs_send_text_P(SEVERITY_LOW,PSTR("zero airspeed calibrated"));
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2011-09-08 22:29:39 -03:00
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}
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2013-09-29 09:54:39 -03:00
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// read_battery - reads battery voltage and current and invokes failsafe
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// should be called at 10hz
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2011-09-08 22:29:39 -03:00
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static void read_battery(void)
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{
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2013-09-29 09:54:39 -03:00
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battery.read();
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2012-08-16 21:50:15 -03:00
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2013-09-30 11:15:35 -03:00
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if (!usb_connected && battery.exhausted(g.fs_batt_voltage, g.fs_batt_mah)) {
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2013-05-22 07:33:57 -03:00
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low_battery_event();
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}
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2011-09-08 22:29:39 -03:00
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}
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2012-08-22 00:33:12 -03:00
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2012-08-22 00:58:25 -03:00
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// read the receiver RSSI as an 8 bit number for MAVLink
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2012-08-22 00:33:12 -03:00
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// RC_CHANNELS_SCALED message
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2012-08-22 00:58:25 -03:00
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void read_receiver_rssi(void)
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2012-08-22 00:33:12 -03:00
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{
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2012-12-04 18:22:21 -04:00
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rssi_analog_source->set_pin(g.rssi_pin);
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2013-05-13 02:14:56 -03:00
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float ret = rssi_analog_source->voltage_average() * 50;
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2012-12-18 22:36:00 -04:00
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receiver_rssi = constrain_int16(ret, 0, 255);
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2012-08-22 00:33:12 -03:00
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}
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2012-09-19 03:22:53 -03:00
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/*
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return current_loc.alt adjusted for ALT_OFFSET
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This is useful during long flights to account for barometer changes
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from the GCS, or to adjust the flying height of a long mission
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*/
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static int32_t adjusted_altitude_cm(void)
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{
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return current_loc.alt - (g.alt_offset*100);
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}
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2013-10-30 19:23:21 -03:00
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