ardupilot/libraries/AP_Baro/examples/BARO_generic/BARO_generic.cpp

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/*
generic Baro driver test
*/
#include <AP_HAL/AP_HAL.h>
#include <AP_Baro/AP_Baro.h>
#include <AP_BoardConfig/AP_BoardConfig.h>
const AP_HAL::HAL& hal = AP_HAL::get_HAL();
static AP_Baro barometer;
static uint32_t timer;
static uint8_t counter;
void setup()
{
hal.console->printf("Barometer library test\n");
AP_BoardConfig{}.init();
hal.scheduler->delay(1000);
barometer.init();
barometer.calibrate();
timer = AP_HAL::micros();
}
void loop()
{
// run accumulate() at 50Hz and update() at 10Hz
if((AP_HAL::micros() - timer) > 20*1000UL) {
timer = AP_HAL::micros();
barometer.accumulate();
if (counter++ < 5) {
return;
}
counter = 0;
barometer.update();
uint32_t read_time = AP_HAL::micros() - timer;
float alt = barometer.get_altitude();
if (!barometer.healthy()) {
hal.console->printf("not healthy\n");
return;
}
hal.console->printf("Pressure:");
hal.console->printf("%f", barometer.get_pressure());
hal.console->printf(" Temperature:");
hal.console->printf("%f", barometer.get_temperature());
hal.console->printf(" Altitude:");
hal.console->printf("%f", alt);
hal.console->printf(" climb=%.2f t=%u",
barometer.get_climb_rate(),
(unsigned)read_time);
hal.console->print("\n");
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} else {
hal.scheduler->delay(1);
}
}
AP_HAL_MAIN();