mirror of
https://github.com/DarkFlippers/unleashed-firmware.git
synced 2024-12-25 06:13:14 +03:00
[FL-1009, FL-1118] Better initialization sequence and V8 hardware support (#406)
* Interrupt manager: add memory barriers. * ISRs: remove TIM17 dead code. * API HAL Delay: rename initialization routine and move to API-HAL * Main: move FURI initialization to the start. * API HAL GPIO: drop CC1101 shenanigans, COMP inversion for new boards. * IButton: migrate Cyfral and Metakom to RFID comp routine, make it compatible with new boards. * RFID: Better keyboard handling and shutdown routines
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2fe44e1b11
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5d08b35b54
@ -137,17 +137,12 @@ void KeyReader::stop_comaparator(void) {
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}
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void KeyReader::comparator_trigger_callback(void* hcomp, void* comp_ctx) {
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COMP_HandleTypeDef* _hcomp = static_cast<COMP_HandleTypeDef*>(hcomp);
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KeyReader* _this = static_cast<KeyReader*>(comp_ctx);
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if(hcomp == &hcomp1) {
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_this->cyfral_decoder.process_front(
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(HAL_COMP_GetOutputLevel(_hcomp) == COMP_OUTPUT_LEVEL_HIGH),
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DWT->CYCCNT - last_dwt_value);
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_this->cyfral_decoder.process_front(get_rfid_in_level(), DWT->CYCCNT - last_dwt_value);
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_this->metakom_decoder.process_front(
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(HAL_COMP_GetOutputLevel(_hcomp) == COMP_OUTPUT_LEVEL_HIGH),
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DWT->CYCCNT - last_dwt_value);
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_this->metakom_decoder.process_front(get_rfid_in_level(), DWT->CYCCNT - last_dwt_value);
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last_dwt_value = DWT->CYCCNT;
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}
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@ -51,10 +51,12 @@ static void render_callback(Canvas* canvas, void* ctx) {
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static void input_callback(InputEvent* input_event, void* ctx) {
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osMessageQueueId_t event_queue = ctx;
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if(input_event->type != InputTypeShort) return;
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AppEvent event;
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event.type = EventTypeKey;
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event.value.input = *input_event;
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osMessageQueuePut(event_queue, &event, 0, 0);
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osMessageQueuePut(event_queue, &event, 1, osWaitForever);
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}
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extern TIM_HandleTypeDef TIM_C;
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@ -244,7 +246,7 @@ static void extract_data(uint8_t* buf, uint8_t* customer, uint32_t* em_data) {
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}
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int32_t lf_rfid_workaround(void* p) {
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osMessageQueueId_t event_queue = osMessageQueueNew(2, sizeof(AppEvent), NULL);
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osMessageQueueId_t event_queue = osMessageQueueNew(8, sizeof(AppEvent), NULL);
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// create pin
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GpioPin pull_pin = {.pin = RFID_PULL_Pin, .port = RFID_PULL_GPIO_Port};
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@ -337,41 +339,27 @@ int32_t lf_rfid_workaround(void* p) {
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if(event_status == osOK) {
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if(event.type == EventTypeKey) {
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// press events
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyBack) {
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hal_pwmn_stop(&TIM_C, TIM_CHANNEL_1); // TODO: move to furiac_onexit
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api_interrupt_remove(
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comparator_trigger_callback, InterruptTypeComparatorTrigger);
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gpio_init(pull_pin_record, GpioModeInput);
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gpio_init((GpioPin*)&ibutton_gpio, GpioModeInput);
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// TODO remove all view_ports create by app
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view_port_enabled_set(view_port, false);
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return 255;
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if(event.value.input.key == InputKeyBack) {
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break;
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}
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyUp) {
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if(event.value.input.key == InputKeyUp) {
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state->dirty_freq = true;
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state->freq_khz += 10;
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}
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyDown) {
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if(event.value.input.key == InputKeyDown) {
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state->dirty_freq = true;
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state->freq_khz -= 10;
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}
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyLeft) {
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if(event.value.input.key == InputKeyLeft) {
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}
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyRight) {
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if(event.value.input.key == InputKeyRight) {
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}
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if(event.value.input.type == InputTypePress &&
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event.value.input.key == InputKeyOk) {
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if(event.value.input.key == InputKeyOk) {
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state->dirty = true;
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state->on = !state->on;
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}
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@ -412,5 +400,22 @@ int32_t lf_rfid_workaround(void* p) {
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}
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}
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hal_pwmn_stop(&TIM_C, TIM_CHANNEL_1); // TODO: move to furiac_onexit
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api_interrupt_remove(comparator_trigger_callback, InterruptTypeComparatorTrigger);
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gpio_init(pull_pin_record, GpioModeInput);
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gpio_init((GpioPin*)&ibutton_gpio, GpioModeInput);
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// TODO remove all view_ports create by app
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view_port_enabled_set(view_port, false);
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gui_remove_view_port(gui, view_port);
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view_port_free(view_port);
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HAL_COMP_Stop(&hcomp1);
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vStreamBufferDelete(comp_ctx.stream_buffer);
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osMessageQueueDelete(event_queue);
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return 0;
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}
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@ -36,11 +36,9 @@ void api_interrupt_add(InterruptCallback callback, InterruptType type, void* con
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item->callback = callback;
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item->type = type;
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item->context = context;
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asm volatile("dmb" : : : "memory");
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item->ready = true;
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// TODO remove on app exit
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//flapp_on_exit(api_interrupt_remove, callback);
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osMutexRelease(interrupt_mutex);
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}
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}
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@ -77,6 +75,7 @@ void api_interrupt_enable(InterruptCallback callback, InterruptType type) {
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// if the iterator is equal to our element
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if(it->current->data.callback == callback) {
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it->current->data.ready = true;
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asm volatile("dmb" : : : "memory");
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}
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}
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}
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@ -96,6 +95,7 @@ void api_interrupt_disable(InterruptCallback callback, InterruptType type) {
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// if the iterator is equal to our element
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if(it->current->data.callback == callback) {
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it->current->data.ready = false;
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asm volatile("dmb" : : : "memory");
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}
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}
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}
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@ -5,6 +5,9 @@
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extern "C" {
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#endif
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/** Init DWT */
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void api_hal_delay_init(void);
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/**
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* Delay in milliseconds
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* @warning Cannot be used from ISR
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@ -14,9 +17,6 @@ void delay(float milliseconds);
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/** Delay in microseconds */
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void delay_us(float microseconds);
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/** Init DWT */
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void delay_us_init_DWT(void);
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#ifdef __cplusplus
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}
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#endif
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@ -23,11 +23,13 @@
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void SystemClock_Config(void);
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void MX_FREERTOS_Init(void);
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int main(void)
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{
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int main(void) {
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// Initialize FURI layer
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furi_init();
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// Initialize ST HAL hardware
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HAL_Init();
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SystemClock_Config();
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MX_GPIO_Init();
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MX_ADC1_Init();
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MX_RTC_Init();
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@ -46,11 +48,12 @@ int main(void)
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MX_AES2_Init();
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MX_CRC_Init();
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delay_us_init_DWT();
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// Flipper API HAL
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api_hal_init();
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// 3rd party
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MX_FATFS_Init();
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furi_init();
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// CMSIS initialization
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osKernelInitialize();
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// Init flipper
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@ -5,7 +5,7 @@
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static uint32_t clk_per_microsecond;
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void delay_us_init_DWT(void) {
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void api_hal_delay_init(void) {
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CoreDebug->DEMCR |= CoreDebug_DEMCR_TRCENA_Msk;
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DWT->CTRL |= DWT_CTRL_CYCCNTENA_Msk;
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DWT->CYCCNT = 0U;
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@ -1,4 +1,5 @@
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#include <api-hal-gpio.h>
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#include <api-hal-version.h>
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// init GPIO
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void hal_gpio_init(
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@ -17,17 +18,12 @@ void hal_gpio_init(
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HAL_GPIO_Init(gpio->port, &GPIO_InitStruct);
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}
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void enable_cc1101_irq() {
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HAL_NVIC_SetPriority(EXTI4_IRQn, 5, 0);
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HAL_NVIC_EnableIRQ(EXTI4_IRQn);
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}
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extern COMP_HandleTypeDef hcomp1;
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bool get_rfid_in_level() {
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#ifdef INVERT_RFID_IN
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_LOW);
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#else
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_HIGH);
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#endif
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#ifdef INVERT_RFID_IN
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_LOW);
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#else
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_HIGH);
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#endif
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}
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@ -68,8 +68,6 @@ static inline bool hal_gpio_read(const GpioPin* gpio) {
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}
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}
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void enable_cc1101_irq();
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#ifdef __cplusplus
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}
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#endif
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@ -1,6 +1,7 @@
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#include <api-hal.h>
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void api_hal_init() {
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api_hal_delay_init();
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api_hal_os_init();
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api_hal_vcp_init();
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api_hal_spi_init();
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@ -23,11 +23,6 @@ void HAL_TIM_OC_DelayElapsedCallback(TIM_HandleTypeDef* htim) {
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/* Timer update event */
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void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef* htim) {
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api_interrupt_call(InterruptTypeTimerUpdate, htim);
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// handle HAL ticks
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if(htim->Instance == TIM17) {
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HAL_IncTick();
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}
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}
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/* External interrupt event */
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@ -23,11 +23,13 @@
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void SystemClock_Config(void);
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void MX_FREERTOS_Init(void);
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int main(void)
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{
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int main(void) {
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// Initialize FURI layer
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furi_init();
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// Initialize ST HAL hardware
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HAL_Init();
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SystemClock_Config();
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MX_GPIO_Init();
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MX_ADC1_Init();
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MX_RTC_Init();
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@ -46,11 +48,12 @@ int main(void)
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MX_AES2_Init();
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MX_CRC_Init();
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delay_us_init_DWT();
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// Flipper API HAL
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api_hal_init();
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// 3rd party
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MX_FATFS_Init();
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furi_init();
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// CMSIS initialization
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osKernelInitialize();
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// Init flipper
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@ -5,7 +5,7 @@
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static uint32_t clk_per_microsecond;
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void delay_us_init_DWT(void) {
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void api_hal_delay_init(void) {
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CoreDebug->DEMCR |= CoreDebug_DEMCR_TRCENA_Msk;
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DWT->CTRL |= DWT_CTRL_CYCCNTENA_Msk;
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DWT->CYCCNT = 0U;
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@ -1,7 +1,5 @@
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#include <api-hal-gpio.h>
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#include <api-hal-spi.h>
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#include <api-hal-resources.h>
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#include <api-hal-delay.h>
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#include <api-hal-version.h>
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// init GPIO
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void hal_gpio_init(
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@ -23,9 +21,16 @@ void hal_gpio_init(
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extern COMP_HandleTypeDef hcomp1;
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bool get_rfid_in_level() {
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#ifdef INVERT_RFID_IN
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_LOW);
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#else
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return (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_HIGH);
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#endif
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bool value = false;
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if (api_hal_version_get_hw_version() > 7) {
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value = (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_LOW);
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} else {
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value = (HAL_COMP_GetOutputLevel(&hcomp1) == COMP_OUTPUT_LEVEL_HIGH);
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}
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#ifdef INVERT_RFID_IN
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return !value;
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#else
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return value;
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#endif
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}
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@ -68,8 +68,6 @@ static inline bool hal_gpio_read(const GpioPin* gpio) {
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}
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}
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void enable_cc1101_irq();
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#ifdef __cplusplus
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}
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#endif
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@ -1,6 +1,7 @@
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#include <api-hal.h>
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void api_hal_init() {
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api_hal_delay_init();
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api_hal_os_init();
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api_hal_vcp_init();
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api_hal_spi_init();
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@ -23,11 +23,6 @@ void HAL_TIM_OC_DelayElapsedCallback(TIM_HandleTypeDef* htim) {
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/* Timer update event */
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void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef* htim) {
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api_interrupt_call(InterruptTypeTimerUpdate, htim);
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// handle HAL ticks
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if(htim->Instance == TIM17) {
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HAL_IncTick();
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}
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}
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/* External interrupt event */
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