2017-04-12 08:17:19 -03:00
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#pragma once
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#include "AP_Baro_Backend.h"
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#if CONFIG_HAL_BOARD == HAL_BOARD_SITL
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#include <SITL/SITL.h>
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#include <AP_Math/vectorN.h>
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class AP_Baro_SITL : public AP_Baro_Backend {
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public:
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AP_Baro_SITL(AP_Baro &);
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void update() override;
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2017-07-12 02:03:33 -03:00
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protected:
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2020-06-30 04:03:24 -03:00
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void update_healthy_flag(uint8_t instance) override { _frontend.sensors[instance].healthy = healthy(instance); };
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2017-07-12 02:03:33 -03:00
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2017-04-12 08:17:19 -03:00
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private:
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2017-07-24 05:57:05 -03:00
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uint8_t _instance;
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2017-07-24 08:00:36 -03:00
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SITL::SITL *_sitl;
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2017-04-12 08:17:19 -03:00
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// barometer delay buffer variables
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struct readings_baro {
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uint32_t time;
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float data;
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};
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2017-07-24 08:00:36 -03:00
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uint8_t _store_index;
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uint32_t _last_store_time;
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static const uint8_t _buffer_length = 50;
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VectorN<readings_baro, _buffer_length> _buffer;
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2017-04-12 08:17:19 -03:00
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2017-04-12 19:49:08 -03:00
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// adjust for simulated board temperature
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void temperature_adjustment(float &p, float &T);
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2020-11-24 22:44:22 -04:00
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// adjust for wind effects
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float wind_pressure_correction(void);
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2020-06-30 04:03:24 -03:00
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// is the barometer usable for flight
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bool healthy(uint8_t instance);
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2017-06-21 11:58:39 -03:00
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void _timer();
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bool _has_sample;
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uint32_t _last_sample_time;
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float _recent_temp;
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float _recent_press;
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2020-08-21 16:15:40 -03:00
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float _last_altitude;
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2017-06-21 11:58:39 -03:00
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2017-04-12 08:17:19 -03:00
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};
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2017-07-24 05:57:21 -03:00
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#endif // CONFIG_HAL_BOARD
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