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board.h
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board.h
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/*
* Copyright (C) EdgeTX
*
* Based on code named
* opentx - https://github.com/opentx/opentx
* th9x - http://code.google.com/p/th9x
* er9x - http://code.google.com/p/er9x
* gruvin9x - http://code.google.com/p/gruvin9x
*
* License GPLv2: http://www.gnu.org/licenses/gpl-2.0.html
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*/
#ifndef _BOARD_H_
#define _BOARD_H_
#include "definitions.h"
#include "opentx_constants.h"
#include "board_common.h"
#include "hal.h"
#include "hal/serial_port.h"
#include "hal/watchdog_driver.h"
#define FLASHSIZE 0x200000
#define BOOTLOADER_SIZE 0x20000
#define FIRMWARE_ADDRESS 0x08000000
#define MB *1024*1024
#define LUA_MEM_EXTRA_MAX (2 MB) // max allowed memory usage for Lua bitmaps (in bytes)
#define LUA_MEM_MAX (6 MB) // max allowed memory usage for complete Lua (in bytes), 0 means unlimited
extern uint16_t sessionTimer;
#define SLAVE_MODE() (g_model.trainerData.mode == TRAINER_MODE_SLAVE)
// Board driver
void boardInit();
void boardOff();
// CPU Unique ID
#define LEN_CPU_UID (3*8+2)
void getCPUUniqueID(char * s);
// Flash Write driver
#define FLASH_PAGESIZE 256
void unlockFlash();
void lockFlash();
void flashWrite(uint32_t * address, const uint32_t * buffer);
uint32_t isFirmwareStart(const uint8_t * buffer);
uint32_t isBootloaderStart(const uint8_t * buffer);
// SDRAM driver
void SDRAM_Init();
// Pulses driver
#if !defined(SIMU)
#define INTERNAL_MODULE_ON() GPIO_SetBits(INTMODULE_PWR_GPIO, INTMODULE_PWR_GPIO_PIN)
#define INTERNAL_MODULE_OFF() GPIO_ResetBits(INTMODULE_PWR_GPIO, INTMODULE_PWR_GPIO_PIN)
#define EXTERNAL_MODULE_ON() GPIO_SetBits(EXTMODULE_PWR_GPIO, EXTMODULE_PWR_GPIO_PIN)
#define EXTERNAL_MODULE_OFF() GPIO_ResetBits(EXTMODULE_PWR_GPIO, EXTMODULE_PWR_GPIO_PIN)
#define EXTERNAL_MODULE_PWR_OFF EXTERNAL_MODULE_OFF
#define BLUETOOTH_MODULE_ON() GPIO_ResetBits(BT_EN_GPIO, BT_EN_GPIO_PIN)
#define BLUETOOTH_MODULE_OFF() GPIO_SetBits(BT_EN_GPIO, BT_EN_GPIO_PIN)
#define IS_INTERNAL_MODULE_ON() (false)
#define IS_EXTERNAL_MODULE_ON() (GPIO_ReadInputDataBit(EXTMODULE_PWR_GPIO, EXTMODULE_PWR_GPIO_PIN) == Bit_SET)
#else
#define INTERNAL_MODULE_OFF()
#define INTERNAL_MODULE_ON()
#define EXTERNAL_MODULE_ON()
#define EXTERNAL_MODULE_OFF()
#define BLUETOOTH_MODULE_ON()
#define BLUETOOTH_MODULE_OFF()
#define IS_INTERNAL_MODULE_ON() (false)
#define IS_EXTERNAL_MODULE_ON() (false)
#endif // defined(SIMU)
#if !defined(NUM_FUNCTIONS_SWITCHES)
#define NUM_FUNCTIONS_SWITCHES 0
#endif
#define NUM_TRIMS 8
#define DEFAULT_STICK_DEADZONE 2
#define BATTERY_WARN 37 // 3.7V
#define BATTERY_MIN 35 // 3.4V
#define BATTERY_MAX 43 // 4.3V
#define BATTERY_DIVIDER 962
#if defined(__cplusplus) && !defined(SIMU)
extern "C" {
#endif
// Power driver
#define SOFT_PWR_CTRL
#define POWER_ON_DELAY 10 // 1s
void pwrInit();
void extModuleInit();
uint32_t pwrCheck();
uint32_t lowPowerCheck();
void pwrOn();
void pwrSoftReboot();
void pwrOff();
void pwrResetHandler();
bool pwrPressed();
bool pwrOffPressed();
#if defined(PWR_EXTRA_SWITCH_GPIO)
bool pwrForcePressed();
#else
#define pwrForcePressed() false
#endif
uint32_t pwrPressedDuration();;
const etx_serial_port_t* auxSerialGetPort(int port_nr);
#define AUX_SERIAL_POWER_ON()
#define AUX_SERIAL_POWER_OFF()
// LED driver
void ledInit();
void ledOff();
void ledRed();
void ledBlue();
void ledGreen();
// LCD driver
void lcdSetInitalFrameBuffer(void* fbAddress);
void lcdInit();
void lcdCopy(void * dest, void * src);
void lcdOff();
void lcdOn();
#define lcdRefreshWait(...)
// Backlight driver
#define BACKLIGHT_LEVEL_MAX 100
#define BACKLIGHT_FORCED_ON BACKLIGHT_LEVEL_MAX + 1
#define BACKLIGHT_LEVEL_MIN 1
extern bool boardBacklightOn;
void backlightLowInit( void );
void backlightInit();
void backlightEnable(uint8_t dutyCycle);
void backlightFullOn();
bool isBacklightEnabled();
#define BACKLIGHT_ENABLE() \
{ \
boardBacklightOn = true; \
backlightEnable(BACKLIGHT_LEVEL_MAX - currentBacklightBright); \
}
#define BACKLIGHT_DISABLE() \
{ \
boardBacklightOn = false; \
backlightEnable(((g_eeGeneral.blOffBright == BACKLIGHT_LEVEL_MIN) && \
(g_eeGeneral.backlightMode != e_backlight_mode_off)) \
? 0 \
: g_eeGeneral.blOffBright); \
}
#if defined(__cplusplus) && !defined(SIMU)
}
#endif
// Audio driver
void audioInit();
void audioConsumeCurrentBuffer();
void audioSpiWriteBuffer(const uint8_t * buffer, uint32_t size);
void audioSpiSetSpeed(uint8_t speed);
uint8_t audioHardReset();
uint8_t audioSoftReset();
void audioSendRiffHeader();
void audioOn();
void audioOff();
bool isAudioReady();
bool audioChipReset();
#define SPI_SPEED_2 0
#define SPI_SPEED_4 1
#define SPI_SPEED_8 2
#define SPI_SPEED_16 3
#define SPI_SPEED_32 4
#define SPI_SPEED_64 5
#define SPI_SPEED_128 6
#define SPI_SPEED_256 7
#define audioDisableIrq() // interrupts must stay enabled on Horus
#define audioEnableIrq() // interrupts must stay enabled on Horus
#if defined(PCBNV14)
#define setSampleRate(freq)
#else
void setSampleRate(uint32_t frequency);
#endif
void setScaledVolume(uint8_t volume);
void setVolume(uint8_t volume);
int32_t getVolume();
#define VOLUME_LEVEL_MAX 23
#define VOLUME_LEVEL_DEF 12
// Telemetry driver
#define INTMODULE_FIFO_SIZE 512
#define TELEMETRY_FIFO_SIZE 512
// Haptic driver
void hapticInit();
void hapticDone();
void hapticOff();
void hapticOn(uint32_t pwmPercent);
// Second serial port driver
//#define AUX_SERIAL
#define DEBUG_BAUDRATE 115200
#define LUA_DEFAULT_BAUDRATE 115200
// Touch panel driver
bool touchPanelEventOccured();
struct TouchState touchPanelRead();
struct TouchState getInternalTouchState();
#endif // _BOARD_H_