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# pragma once
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# include <AP_HAL/AP_HAL.h>
# include <AP_Param/AP_Param.h>
# include <AP_GPS/AP_GPS.h>
# include <AP_Compass/AP_Compass.h>
# include <AP_Baro/AP_Baro.h>
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# include "SRV_Channel/SRV_Channel.h"
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# include <AP_Notify/AP_Notify.h>
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# include <AP_Logger/AP_Logger.h>
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# include <AP_BattMonitor/AP_BattMonitor.h>
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# include <AP_Airspeed/AP_Airspeed.h>
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# include <AP_RangeFinder/AP_RangeFinder.h>
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# include <AP_EFI/AP_EFI.h>
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# include <AP_MSP/AP_MSP.h>
# include <AP_MSP/msp.h>
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# include "../AP_Bootloader/app_comms.h"
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# include <AP_CheckFirmware/AP_CheckFirmware.h>
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# include "hwing_esc.h"
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# include <AP_CANManager/AP_CANManager.h>
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# include <AP_Scripting/AP_Scripting.h>
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# include <AP_HAL/CANIface.h>
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# include <AP_Stats/AP_Stats.h>
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# if HAL_GCS_ENABLED
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# include "GCS_MAVLink.h"
# endif
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# if defined(HAL_PERIPH_NEOPIXEL_COUNT_WITHOUT_NOTIFY) || defined(HAL_PERIPH_ENABLE_NCP5623_LED_WITHOUT_NOTIFY) || defined(HAL_PERIPH_ENABLE_NCP5623_BGR_LED_WITHOUT_NOTIFY) || defined(HAL_PERIPH_ENABLE_TOSHIBA_LED_WITHOUT_NOTIFY)
# define AP_PERIPH_HAVE_LED_WITHOUT_NOTIFY
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# endif
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# ifdef HAL_PERIPH_ENABLE_NOTIFY
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# if !defined(HAL_PERIPH_ENABLE_RC_OUT) && !defined(HAL_PERIPH_NOTIFY_WITHOUT_RCOUT)
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# error "HAL_PERIPH_ENABLE_NOTIFY requires HAL_PERIPH_ENABLE_RC_OUT"
# endif
# ifdef HAL_PERIPH_ENABLE_BUZZER_WITHOUT_NOTIFY
# error "You cannot enable HAL_PERIPH_ENABLE_NOTIFY and HAL_PERIPH_ENABLE_BUZZER_WITHOUT_NOTIFY at the same time. Notify already includes it"
# endif
# ifdef AP_PERIPH_HAVE_LED_WITHOUT_NOTIFY
# error "You cannot enable HAL_PERIPH_ENABLE_NOTIFY and any HAL_PERIPH_ENABLE_<device>_LED_WITHOUT_NOTIFY at the same time. Notify already includes them all"
# endif
# ifdef HAL_PERIPH_NEOPIXEL_CHAN_WITHOUT_NOTIFY
# error "You cannot use HAL_PERIPH_ENABLE_NOTIFY and HAL_PERIPH_NEOPIXEL_CHAN_WITHOUT_NOTIFY at the same time. Notify already includes it. Set param OUTx_FUNCTION=120"
# endif
# endif
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# include "Parameters.h"
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# if CONFIG_HAL_BOARD == HAL_BOARD_SITL
void stm32_watchdog_init ( ) ;
void stm32_watchdog_pat ( ) ;
# endif
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/*
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app descriptor for firmware checking
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*/
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extern const app_descriptor_t app_descriptor ;
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extern " C " {
void can_printf ( const char * fmt , . . . ) FMT_PRINTF ( 1 , 2 ) ;
}
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class AP_Periph_FW {
public :
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AP_Periph_FW ( ) ;
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CLASS_NO_COPY ( AP_Periph_FW ) ;
static AP_Periph_FW * get_singleton ( )
{
if ( _singleton = = nullptr ) {
AP_HAL : : panic ( " AP_Periph_FW used before allocation. " ) ;
}
return _singleton ;
}
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void init ( ) ;
void update ( ) ;
Parameters g ;
void can_start ( ) ;
void can_update ( ) ;
void can_mag_update ( ) ;
void can_gps_update ( ) ;
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void send_moving_baseline_msg ( ) ;
void send_relposheading_msg ( ) ;
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void can_baro_update ( ) ;
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void can_airspeed_update ( ) ;
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void can_rangefinder_update ( ) ;
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void can_battery_update ( ) ;
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void load_parameters ( ) ;
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void prepare_reboot ( ) ;
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bool canfdout ( ) const { return ( g . can_fdmode = = 1 ) ; }
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# ifdef HAL_PERIPH_ENABLE_EFI
void can_efi_update ( ) ;
# endif
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# ifdef HAL_PERIPH_LISTEN_FOR_SERIAL_UART_REBOOT_CMD_PORT
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void check_for_serial_reboot_cmd ( const int8_t serial_index ) ;
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# endif
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# if CONFIG_HAL_BOARD == HAL_BOARD_CHIBIOS
static ChibiOS : : CANIface * can_iface_periph [ HAL_NUM_CAN_IFACES ] ;
# elif CONFIG_HAL_BOARD == HAL_BOARD_SITL
static HALSITL : : CANIface * can_iface_periph [ HAL_NUM_CAN_IFACES ] ;
# endif
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AP_SerialManager serial_manager ;
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# if AP_STATS_ENABLED
AP_Stats node_stats ;
# endif
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# ifdef HAL_PERIPH_ENABLE_GPS
AP_GPS gps ;
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# if HAL_NUM_CAN_IFACES >= 2
int8_t gps_mb_can_port = - 1 ;
# endif
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# endif
# ifdef HAL_PERIPH_ENABLE_MAG
Compass compass ;
# endif
# ifdef HAL_PERIPH_ENABLE_BARO
AP_Baro baro ;
# endif
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# ifdef HAL_PERIPH_ENABLE_BATTERY
struct AP_Periph_Battery {
void handle_battery_failsafe ( const char * type_str , const int8_t action ) { }
AP_BattMonitor lib { 0 , FUNCTOR_BIND_MEMBER ( & AP_Periph_FW : : AP_Periph_Battery : : handle_battery_failsafe , void , const char * , const int8_t ) , nullptr } ;
uint32_t last_read_ms ;
uint32_t last_can_send_ms ;
} battery ;
# endif
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# if HAL_NUM_CAN_IFACES >= 2
// This allows you to change the protocol and it continues to use the one at boot.
// Without this, changing away from UAVCAN causes loss of comms and you can't
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// change the rest of your params or verify it succeeded.
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AP_CANManager : : Driver_Type can_protocol_cached [ HAL_NUM_CAN_IFACES ] ;
# endif
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# ifdef HAL_PERIPH_ENABLE_MSP
struct {
AP_MSP msp ;
MSP : : msp_port_t port ;
uint32_t last_gps_ms ;
uint32_t last_baro_ms ;
uint32_t last_mag_ms ;
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uint32_t last_airspeed_ms ;
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} msp ;
void msp_init ( AP_HAL : : UARTDriver * _uart ) ;
void msp_sensor_update ( void ) ;
void send_msp_packet ( uint16_t cmd , void * p , uint16_t size ) ;
void send_msp_GPS ( void ) ;
void send_msp_compass ( void ) ;
void send_msp_baro ( void ) ;
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void send_msp_airspeed ( void ) ;
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# endif
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# ifdef HAL_PERIPH_ENABLE_ADSB
void adsb_init ( ) ;
void adsb_update ( ) ;
void can_send_ADSB ( struct __mavlink_adsb_vehicle_t & msg ) ;
struct {
mavlink_message_t msg ;
mavlink_status_t status ;
} adsb ;
# endif
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# ifdef HAL_PERIPH_ENABLE_AIRSPEED
AP_Airspeed airspeed ;
# endif
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# ifdef HAL_PERIPH_ENABLE_RANGEFINDER
RangeFinder rangefinder ;
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uint32_t last_sample_ms ;
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# endif
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# ifdef HAL_PERIPH_ENABLE_PWM_HARDPOINT
void pwm_irq_handler ( uint8_t pin , bool pin_state , uint32_t timestamp ) ;
void pwm_hardpoint_init ( ) ;
void pwm_hardpoint_update ( ) ;
struct {
uint8_t last_state ;
uint32_t last_ts_us ;
uint32_t last_send_ms ;
uint16_t pwm_value ;
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uint16_t highest_pwm ;
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} pwm_hardpoint ;
# endif
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# ifdef HAL_PERIPH_ENABLE_HWESC
HWESC_Telem hwesc_telem ;
void hwesc_telem_update ( ) ;
# endif
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# ifdef HAL_PERIPH_ENABLE_EFI
AP_EFI efi ;
uint32_t efi_update_ms ;
# endif
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# ifdef HAL_PERIPH_ENABLE_RC_OUT
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# if HAL_WITH_ESC_TELEM
AP_ESC_Telem esc_telem ;
uint32_t last_esc_telem_update_ms ;
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void esc_telem_update ( ) ;
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# endif
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SRV_Channels servo_channels ;
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bool rcout_has_new_data_to_update ;
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void rcout_init ( ) ;
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void rcout_init_1Hz ( ) ;
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void rcout_esc ( int16_t * rc , uint8_t num_channels ) ;
void rcout_srv ( const uint8_t actuator_id , const float command_value ) ;
void rcout_update ( ) ;
void rcout_handle_safety_state ( uint8_t safety_state ) ;
# endif
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# if defined(HAL_PERIPH_ENABLE_NOTIFY) || defined(HAL_PERIPH_NEOPIXEL_COUNT_WITHOUT_NOTIFY)
void update_rainbow ( ) ;
# endif
# ifdef HAL_PERIPH_ENABLE_NOTIFY
// notification object for LEDs, buzzers etc
AP_Notify notify ;
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uint64_t vehicle_state = 1 ; // default to initialisation
float yaw_earth ;
uint32_t last_vehicle_state ;
// Handled under LUA script to control LEDs
float get_yaw_earth ( ) { return yaw_earth ; }
uint32_t get_vehicle_state ( ) { return vehicle_state ; }
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# elif defined(AP_SCRIPTING_ENABLED)
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// create dummy methods for the case when the user doesn't want to use the notify object
float get_yaw_earth ( ) { return 0.0 ; }
uint32_t get_vehicle_state ( ) { return 0.0 ; }
# endif
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# if AP_SCRIPTING_ENABLED
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AP_Scripting scripting ;
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# endif
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# if HAL_LOGGING_ENABLED
static const struct LogStructure log_structure [ ] ;
AP_Logger logger ;
# endif
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# if HAL_GCS_ENABLED
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GCS_Periph _gcs ;
# endif
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// setup the var_info table
AP_Param param_loader { var_info } ;
static const AP_Param : : Info var_info [ ] ;
uint32_t last_mag_update_ms ;
uint32_t last_gps_update_ms ;
uint32_t last_baro_update_ms ;
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uint32_t last_airspeed_update_ms ;
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bool saw_gps_lock_once ;
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static AP_Periph_FW * _singleton ;
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enum {
DEBUG_SHOW_STACK ,
DEBUG_AUTOREBOOT
} ;
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// show stack as DEBUG msgs
void show_stack_free ( ) ;
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static bool no_iface_finished_dna ;
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static constexpr auto can_printf = : : can_printf ;
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} ;
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namespace AP
{
AP_Periph_FW & periph ( ) ;
}
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extern AP_Periph_FW periph ;