2012-06-13 16:00:20 -03:00
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/// @file AP_Camera.h
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/// @brief Photo or video camera manager, with EEPROM-backed storage of constants.
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2016-02-17 21:25:17 -04:00
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#pragma once
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2012-06-13 16:00:20 -03:00
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2015-08-11 03:28:42 -03:00
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#include <AP_Param/AP_Param.h>
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2019-06-27 04:23:37 -03:00
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#include <GCS_MAVLink/GCS.h>
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2012-06-13 16:00:20 -03:00
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2012-12-06 04:46:09 -04:00
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#define AP_CAMERA_TRIGGER_TYPE_SERVO 0
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#define AP_CAMERA_TRIGGER_TYPE_RELAY 1
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#define AP_CAMERA_TRIGGER_DEFAULT_TRIGGER_TYPE AP_CAMERA_TRIGGER_TYPE_SERVO // default is to use servo to trigger camera
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#define AP_CAMERA_TRIGGER_DEFAULT_DURATION 10 // default duration servo or relay is held open in 10ths of a second (i.e. 10 = 1 second)
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#define AP_CAMERA_SERVO_ON_PWM 1300 // default PWM value to move servo to when shutter is activated
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#define AP_CAMERA_SERVO_OFF_PWM 1100 // default PWM value to move servo to when shutter is deactivated
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2015-06-07 14:11:30 -03:00
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#define AP_CAMERA_FEEDBACK_DEFAULT_FEEDBACK_PIN -1 // default is to not use camera feedback pin
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2012-06-13 16:00:20 -03:00
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/// @class Camera
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/// @brief Object managing a Photo or video camera
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2012-08-17 03:09:29 -03:00
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class AP_Camera {
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2012-06-13 16:00:20 -03:00
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public:
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AP_Camera(uint32_t _log_camera_bit, const struct Location &_loc)
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2018-06-19 05:19:53 -03:00
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: log_camera_bit(_log_camera_bit)
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2017-12-12 21:06:11 -04:00
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, current_loc(_loc)
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{
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AP_Param::setup_object_defaults(this, var_info);
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_singleton = this;
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}
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2012-06-13 16:00:20 -03:00
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2017-08-29 15:48:37 -03:00
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/* Do not allow copies */
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AP_Camera(const AP_Camera &other) = delete;
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AP_Camera &operator=(const AP_Camera&) = delete;
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2018-04-14 01:03:29 -03:00
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// get singleton instance
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2018-10-03 21:26:34 -03:00
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static AP_Camera *get_singleton()
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{
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return _singleton;
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}
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2012-08-17 03:09:29 -03:00
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// MAVLink methods
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2019-04-30 07:22:48 -03:00
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void control_msg(const mavlink_message_t &msg);
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void send_feedback(mavlink_channel_t chan);
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2012-06-13 16:00:20 -03:00
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2015-09-06 17:41:47 -03:00
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// Command processing
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void configure(float shooting_mode, float shutter_speed, float aperture, float ISO, float exposure_type, float cmd_id, float engine_cutoff_time);
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// handle camera control
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void control(float session, float zoom_pos, float zoom_step, float focus_lock, float shooting_cmd, float cmd_id);
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2015-04-18 10:30:03 -03:00
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2013-10-11 07:29:01 -03:00
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// set camera trigger distance in a mission
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2018-10-03 21:26:34 -03:00
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void set_trigger_distance(uint32_t distance_m)
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{
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_trigg_dist.set(distance_m);
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}
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2013-10-11 07:29:01 -03:00
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2017-07-25 23:45:20 -03:00
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void take_picture();
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2013-06-24 09:39:50 -03:00
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2017-07-25 23:45:20 -03:00
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// Update - to be called periodically @at least 10Hz
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void update();
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// update camera trigger - 50Hz
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void update_trigger();
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2016-01-19 01:25:53 -04:00
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2012-08-17 03:09:29 -03:00
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static const struct AP_Param::GroupInfo var_info[];
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2012-06-13 16:00:20 -03:00
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2017-10-24 07:42:17 -03:00
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// set if vehicle is in AUTO mode
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void set_is_auto_mode(bool enable)
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{
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_is_in_auto_mode = enable;
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}
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enum camera_types {
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CAMERA_TYPE_STD,
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CAMERA_TYPE_BMMCC
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};
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2012-06-13 16:00:20 -03:00
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private:
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static AP_Camera *_singleton;
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2013-12-05 21:27:58 -04:00
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AP_Int8 _trigger_type; // 0:Servo,1:Relay
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2012-12-06 04:46:09 -04:00
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AP_Int8 _trigger_duration; // duration in 10ths of a second that the camera shutter is held open
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2015-09-05 00:44:07 -03:00
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AP_Int8 _relay_on; // relay value to trigger camera
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2012-12-06 04:46:09 -04:00
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AP_Int16 _servo_on_pwm; // PWM value to move servo to when shutter is activated
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AP_Int16 _servo_off_pwm; // PWM value to move servo to when shutter is deactivated
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uint8_t _trigger_counter; // count of number of cycles shutter has been held open
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uint8_t _trigger_counter_cam_function; // count of number of cycles alternative camera function has been held open
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AP_Int8 _auto_mode_only; // if 1: trigger by distance only if in AUTO mode.
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AP_Int8 _type; // Set the type of camera in use, will open additional parameters if set
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bool _is_in_auto_mode; // true if in AUTO mode
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2012-06-13 16:00:20 -03:00
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2012-08-17 03:09:29 -03:00
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void servo_pic(); // Servo operated camera
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void relay_pic(); // basic relay activation
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void feedback_pin_timer();
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void feedback_pin_isr(uint8_t, bool, uint32_t);
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2016-04-14 20:24:41 -03:00
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void setup_feedback_callback(void);
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2014-08-26 18:08:54 -03:00
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AP_Float _trigg_dist; // distance between trigger points (meters)
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2015-12-18 03:16:11 -04:00
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AP_Int16 _min_interval; // Minimum time between shots required by camera
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AP_Int16 _max_roll; // Maximum acceptable roll angle when trigging camera
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uint32_t _last_photo_time; // last time a photo was taken
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struct Location _last_location;
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uint16_t _image_index; // number of pictures taken since boot
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2012-06-13 16:00:20 -03:00
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2016-01-20 17:33:17 -04:00
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// pin number for accurate camera feedback messages
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AP_Int8 _feedback_pin;
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AP_Int8 _feedback_polarity;
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2018-05-14 22:03:49 -03:00
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uint32_t _camera_trigger_count;
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uint32_t _camera_trigger_logged;
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uint32_t _feedback_timestamp_us;
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bool _timer_installed;
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bool _isr_installed;
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uint8_t _last_pin_state;
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void log_picture();
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uint32_t log_camera_bit;
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const struct Location ¤t_loc;
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2017-07-26 01:32:40 -03:00
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// entry point to trip local shutter (e.g. by relay or servo)
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void trigger_pic();
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2017-07-25 23:45:20 -03:00
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// de-activate the trigger after some delay, but without using a delay() function
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// should be called at 50hz from main program
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void trigger_pic_cleanup();
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// return true if we are using a feedback pin
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bool using_feedback_pin(void) const
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{
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return _feedback_pin > 0;
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}
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2012-06-13 16:00:20 -03:00
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};
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2018-04-14 01:03:29 -03:00
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namespace AP {
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AP_Camera *camera();
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};
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