mirror of https://github.com/ArduPilot/ardupilot
199 lines
7.2 KiB
C++
199 lines
7.2 KiB
C++
/*
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OreoLED I2C driver
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#pragma once
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#include <AP_HAL/AP_HAL.h>
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#include "NotifyDevice.h"
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#define OREOLED_NUM_LEDS 4 // maximum number of individual LEDs connected to the oreo led cpu
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#define OREOLED_INSTANCE_ALL 0xff // instance number to indicate all LEDs (used for set_rgb and set_macro)
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#define OREOLED_BRIGHT 0xff // maximum brightness when flying (disconnected from usb)
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#define CUSTOM_HEADER_LENGTH 4 // number of bytes in the custom LED buffer that are used to identify the command
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class OreoLED_I2C : public NotifyDevice {
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public:
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// constuctor
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OreoLED_I2C(uint8_t bus, uint8_t theme);
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// init - initialised the device
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bool init(void) override;
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// update - updates device according to timed_updated. Should be
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// called at 50Hz
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void update() override;
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// handle a LED_CONTROL message, by default device ignore message
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void handle_led_control(mavlink_message_t *msg) override;
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private:
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enum oreoled_pattern {
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OREOLED_PATTERN_OFF = 0,
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OREOLED_PATTERN_SINE = 1,
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OREOLED_PATTERN_SOLID = 2,
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OREOLED_PATTERN_SIREN = 3,
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OREOLED_PATTERN_STROBE = 4,
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OREOLED_PATTERN_FADEIN = 5,
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OREOLED_PATTERN_FADEOUT = 6,
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OREOLED_PATTERN_PARAMUPDATE = 7,
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OREOLED_PATTERN_ENUM_COUNT
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};
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/* enum of available macros defined by hardware */
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enum oreoled_macro {
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OREOLED_PARAM_MACRO_RESET = 0,
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OREOLED_PARAM_MACRO_COLOUR_CYCLE = 1,
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OREOLED_PARAM_MACRO_BREATH = 2,
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OREOLED_PARAM_MACRO_STROBE = 3,
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OREOLED_PARAM_MACRO_FADEIN = 4,
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OREOLED_PARAM_MACRO_FADEOUT = 5,
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OREOLED_PARAM_MACRO_RED = 6,
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OREOLED_PARAM_MACRO_GREEN = 7,
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OREOLED_PARAM_MACRO_BLUE = 8,
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OREOLED_PARAM_MACRO_YELLOW = 9,
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OREOLED_PARAM_MACRO_WHITE = 10,
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OREOLED_PARAM_MACRO_AUTOMOBILE = 11,
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OREOLED_PARAM_MACRO_AVIATION = 12,
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OREOLED_PARAM_MACRO_ENUM_COUNT
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};
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/* enum passed to OREOLED_SET_MODE defined by hardware */
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enum oreoled_param {
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OREOLED_PARAM_BIAS_RED = 0,
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OREOLED_PARAM_BIAS_GREEN = 1,
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OREOLED_PARAM_BIAS_BLUE = 2,
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OREOLED_PARAM_AMPLITUDE_RED = 3,
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OREOLED_PARAM_AMPLITUDE_GREEN = 4,
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OREOLED_PARAM_AMPLITUDE_BLUE = 5,
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OREOLED_PARAM_PERIOD = 6,
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OREOLED_PARAM_REPEAT = 7,
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OREOLED_PARAM_PHASEOFFSET = 8,
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OREOLED_PARAM_MACRO = 9,
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OREOLED_PARAM_RESET = 10,
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OREOLED_PARAM_APP_CHECKSUM = 11,
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OREOLED_PARAM_ENUM_COUNT
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};
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// update_timer - called by scheduler and updates PX4 driver with commands
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void update_timer(void);
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// set_rgb - set color as a combination of red, green and blue values for one or all LEDs, pattern defaults to solid color
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void set_rgb(uint8_t instance, uint8_t red, uint8_t green, uint8_t blue);
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// set_rgb - set color as a combination of red, green and blue values for one or all LEDs, using the specified pattern
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void set_rgb(uint8_t instance, enum oreoled_pattern pattern, uint8_t red, uint8_t green, uint8_t blue);
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// set_rgb - set color as a combination of red, green and blue values for one or all LEDs, using the specified pattern and other parameters
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void set_rgb(uint8_t instance, oreoled_pattern pattern, uint8_t red, uint8_t green, uint8_t blue,
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uint8_t amplitude_red, uint8_t amplitude_green, uint8_t amplitude_blue,
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uint16_t period, uint16_t phase_offset);
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// set_macro - set macro for one or all LEDs
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void set_macro(uint8_t instance, enum oreoled_macro macro);
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// send_sync - force a syncronisation of the all LED's
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void send_sync();
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// functions to set LEDs to specific patterns. These functions return true if no further updates should be made to LEDs this iteration
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bool slow_counter(void);
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bool mode_firmware_update(void);
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bool mode_init(void);
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bool mode_failsafe_radio(void);
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bool set_standard_colors(void);
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bool mode_failsafe_batt(void);
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bool mode_auto_flight(void);
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bool mode_pilot_flight(void);
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// Clear the desired state
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void clear_state(void);
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// oreo led modes (pattern, macro or rgb)
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enum oreoled_mode {
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OREOLED_MODE_NONE=0,
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OREOLED_MODE_MACRO,
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OREOLED_MODE_RGB,
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OREOLED_MODE_RGB_EXTENDED,
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};
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// Oreo LED modes
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enum Oreo_LED_Theme {
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OreoLED_Disabled = 0,
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OreoLED_Aircraft = 1,
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OreoLED_Automobile = 2,
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};
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// oreo_state structure holds possible state of an led
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struct oreo_state {
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enum oreoled_mode mode;
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enum oreoled_pattern pattern;
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enum oreoled_macro macro;
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uint8_t red;
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uint8_t green;
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uint8_t blue;
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uint8_t amplitude_red;
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uint8_t amplitude_green;
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uint8_t amplitude_blue;
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uint16_t period;
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int8_t repeat;
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uint16_t phase_offset;
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oreo_state();
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void clear_state();
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void set_macro(oreoled_macro new_macro);
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void set_rgb(enum oreoled_pattern new_pattern, uint8_t new_red, uint8_t new_green, uint8_t new_blue);
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void set_rgb(enum oreoled_pattern new_pattern, uint8_t new_red, uint8_t new_green,
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uint8_t new_blue, uint8_t new_amplitude_red, uint8_t new_amplitude_green, uint8_t new_amplitude_blue,
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uint16_t new_period, uint16_t new_phase_offset);
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bool operator==(const oreo_state &os);
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};
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typedef struct {
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uint8_t led_num;
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uint8_t num_bytes;
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uint8_t buff[32];
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} oreoled_cmd_t;
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// send a I2C command
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bool command_send(oreoled_cmd_t &cmd);
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void boot_leds(void);
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// private members
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uint8_t _bus;
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HAL_Semaphore_Recursive _sem;
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AP_HAL::OwnPtr<AP_HAL::I2CDevice> _dev;
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bool _send_required; // true when we need to send an update to at least one led
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oreo_state _state_desired[OREOLED_NUM_LEDS]; // desired state
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oreo_state _state_sent[OREOLED_NUM_LEDS]; // last state sent to led
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uint8_t _pattern_override; // holds last processed pattern override, 0 if we are not overriding a pattern
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uint8_t _oreo_theme; // theme (1=AirCraft, 2=Ground Vehicle)
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uint8_t _rear_color_r = 255; // the rear LED red value
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uint8_t _rear_color_g = 255; // the rear LED green value
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uint8_t _rear_color_b = 255; // the rear LED blue value
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uint8_t _slow_count;
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uint8_t _boot_count;
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uint32_t _last_boot_ms;
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uint32_t _last_sync_ms;
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};
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