Nfc: switch to HAL ticks. ApiHal: small cleanup and refactoring. (#609)
This commit is contained in:
parent
4c1ac2a13d
commit
1c58de24f5
@ -19,7 +19,6 @@ void nfc_cli_detect(Cli* cli, string_t args, void* context) {
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rfalNfcDevice* dev_list;
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rfalNfcDevice* dev_list;
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uint8_t dev_cnt = 0;
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uint8_t dev_cnt = 0;
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bool cmd_exit = false;
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bool cmd_exit = false;
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api_hal_nfc_init();
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api_hal_nfc_exit_sleep();
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api_hal_nfc_exit_sleep();
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printf("Detecting nfc...\r\nPress Ctrl+C to abort\r\n");
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printf("Detecting nfc...\r\nPress Ctrl+C to abort\r\n");
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while(!cmd_exit) {
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while(!cmd_exit) {
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@ -51,7 +50,6 @@ void nfc_cli_emulate(Cli* cli, string_t args, void* context) {
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return;
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return;
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}
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}
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api_hal_nfc_init();
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api_hal_nfc_exit_sleep();
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api_hal_nfc_exit_sleep();
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printf("Emulating NFC-A Type: T2T UID: CF72D440 SAK: 20 ATQA: 00/04\r\n");
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printf("Emulating NFC-A Type: T2T UID: CF72D440 SAK: 20 ATQA: 00/04\r\n");
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printf("Press Ctrl+C to abort\r\n");
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printf("Press Ctrl+C to abort\r\n");
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@ -15,9 +15,7 @@ NfcWorker* nfc_worker_alloc() {
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nfc_worker->callback = NULL;
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nfc_worker->callback = NULL;
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nfc_worker->context = NULL;
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nfc_worker->context = NULL;
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// Initialize rfal
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// Initialize rfal
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nfc_worker->error = api_hal_nfc_init();
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if(!api_hal_nfc_is_busy()) {
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if(nfc_worker->error == ERR_NONE) {
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api_hal_nfc_start_sleep();
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nfc_worker_change_state(nfc_worker, NfcWorkerStateReady);
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nfc_worker_change_state(nfc_worker, NfcWorkerStateReady);
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} else {
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} else {
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nfc_worker_change_state(nfc_worker, NfcWorkerStateBroken);
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nfc_worker_change_state(nfc_worker, NfcWorkerStateBroken);
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@ -35,10 +33,6 @@ NfcWorkerState nfc_worker_get_state(NfcWorker* nfc_worker) {
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return nfc_worker->state;
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return nfc_worker->state;
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}
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}
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ReturnCode nfc_worker_get_error(NfcWorker* nfc_worker) {
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return nfc_worker->error;
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}
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void nfc_worker_start(
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void nfc_worker_start(
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NfcWorker* nfc_worker,
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NfcWorker* nfc_worker,
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NfcWorkerState state,
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NfcWorkerState state,
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@ -28,8 +28,6 @@ NfcWorker* nfc_worker_alloc();
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NfcWorkerState nfc_worker_get_state(NfcWorker* nfc_worker);
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NfcWorkerState nfc_worker_get_state(NfcWorker* nfc_worker);
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ReturnCode nfc_worker_get_error(NfcWorker* nfc_worker);
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void nfc_worker_free(NfcWorker* nfc_worker);
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void nfc_worker_free(NfcWorker* nfc_worker);
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void nfc_worker_start(
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void nfc_worker_start(
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@ -26,7 +26,6 @@ struct NfcWorker {
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void* context;
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void* context;
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NfcWorkerState state;
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NfcWorkerState state;
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ReturnCode error;
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};
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};
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void nfc_worker_change_state(NfcWorker* nfc_worker, NfcWorkerState state);
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void nfc_worker_change_state(NfcWorker* nfc_worker, NfcWorkerState state);
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@ -14,7 +14,7 @@ extern "C" {
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/**
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/**
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* Init nfc
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* Init nfc
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*/
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*/
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ReturnCode api_hal_nfc_init();
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void api_hal_nfc_init();
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/**
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/**
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* Check if nfc worker is busy
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* Check if nfc worker is busy
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@ -1,5 +1,6 @@
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#include <api-hal-boot.h>
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#include <api-hal-boot.h>
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#include <stm32wbxx_ll_rtc.h>
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#include <stm32wbxx_ll_rtc.h>
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#include <furi.h>
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// Boot request enum
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// Boot request enum
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#define BOOT_REQUEST_TAINTED 0x00000000
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#define BOOT_REQUEST_TAINTED 0x00000000
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@ -10,6 +11,7 @@ void api_hal_boot_init() {
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#ifndef DEBUG
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#ifndef DEBUG
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LL_RTC_BAK_SetRegister(RTC, LL_RTC_BKP_DR0, BOOT_REQUEST_TAINTED);
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LL_RTC_BAK_SetRegister(RTC, LL_RTC_BKP_DR0, BOOT_REQUEST_TAINTED);
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#endif
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#endif
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FURI_LOG_I("FuriHalBoot", "Init OK");
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}
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}
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void api_hal_boot_set_mode(ApiHalBootMode mode) {
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void api_hal_boot_set_mode(ApiHalBootMode mode) {
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@ -4,6 +4,8 @@
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#include <stm32wbxx_ll_gpio.h>
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#include <stm32wbxx_ll_gpio.h>
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#include <stm32wbxx_ll_usart.h>
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#include <stm32wbxx_ll_usart.h>
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#include <furi.h>
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volatile bool api_hal_console_alive = false;
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volatile bool api_hal_console_alive = false;
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void api_hal_console_init() {
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void api_hal_console_init() {
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@ -34,6 +36,8 @@ void api_hal_console_init() {
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while(!LL_USART_IsActiveFlag_TEACK(USART1)) ;
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while(!LL_USART_IsActiveFlag_TEACK(USART1)) ;
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api_hal_console_alive = true;
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api_hal_console_alive = true;
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FURI_LOG_I("FuriHalConsole", "Init OK");
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}
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}
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void api_hal_console_tx(const uint8_t* buffer, size_t buffer_size) {
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void api_hal_console_tx(const uint8_t* buffer, size_t buffer_size) {
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@ -10,6 +10,7 @@ void api_hal_delay_init(void) {
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DWT->CTRL |= DWT_CTRL_CYCCNTENA_Msk;
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DWT->CTRL |= DWT_CTRL_CYCCNTENA_Msk;
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DWT->CYCCNT = 0U;
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DWT->CYCCNT = 0U;
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clk_per_microsecond = SystemCoreClock / 1000000.0f;
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clk_per_microsecond = SystemCoreClock / 1000000.0f;
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FURI_LOG_I("FuriHalDelay", "Init OK");
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}
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}
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void delay_us(float microseconds) {
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void delay_us(float microseconds) {
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@ -42,6 +42,7 @@ void api_hal_i2c_init() {
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LL_I2C_DisableOwnAddress2(POWER_I2C);
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LL_I2C_DisableOwnAddress2(POWER_I2C);
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LL_I2C_DisableGeneralCall(POWER_I2C);
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LL_I2C_DisableGeneralCall(POWER_I2C);
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LL_I2C_EnableClockStretching(POWER_I2C);
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LL_I2C_EnableClockStretching(POWER_I2C);
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FURI_LOG_I("FuriHalI2C", "Init OK");
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}
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}
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bool api_hal_i2c_tx(
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bool api_hal_i2c_tx(
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@ -14,6 +14,7 @@ volatile ApiHalInterruptISR api_hal_dma_channel_isr[API_HAL_INTERRUPT_DMA_COUNT]
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void api_hal_interrupt_init() {
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void api_hal_interrupt_init() {
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NVIC_SetPriority(DMA1_Channel1_IRQn, NVIC_EncodePriority(NVIC_GetPriorityGrouping(), 5, 0));
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NVIC_SetPriority(DMA1_Channel1_IRQn, NVIC_EncodePriority(NVIC_GetPriorityGrouping(), 5, 0));
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NVIC_EnableIRQ(DMA1_Channel1_IRQn);
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NVIC_EnableIRQ(DMA1_Channel1_IRQn);
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FURI_LOG_I("FuriHalInterrupt", "Init OK");
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}
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}
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void api_hal_interrupt_set_timer_isr(TIM_TypeDef* timer, ApiHalInterruptISR isr) {
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void api_hal_interrupt_set_timer_isr(TIM_TypeDef* timer, ApiHalInterruptISR isr) {
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@ -21,6 +21,7 @@ void api_hal_light_init() {
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lp5562_enable();
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lp5562_enable();
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lp5562_configure();
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lp5562_configure();
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FURI_LOG_I("FuriHalLight", "Init OK");
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}
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}
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void api_hal_light_set(Light light, uint8_t value) {
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void api_hal_light_set(Light light, uint8_t value) {
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@ -3,20 +3,18 @@
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static const uint32_t clocks_in_ms = 64 * 1000;
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static const uint32_t clocks_in_ms = 64 * 1000;
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ReturnCode api_hal_nfc_init() {
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void api_hal_nfc_init() {
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// Check if Nfc worker was started
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ReturnCode ret = rfalNfcInitialize();
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rfalNfcState state = rfalNfcGetState();
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if(ret == ERR_NONE) {
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if(state == RFAL_NFC_STATE_NOTINIT) {
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api_hal_nfc_start_sleep();
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return rfalNfcInitialize();
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FURI_LOG_I("FuriHalNfc", "Init OK");
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} else if(state == RFAL_NFC_STATE_IDLE) {
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return ERR_NONE;
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} else {
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} else {
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return ERR_BUSY;
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FURI_LOG_W("FuriHalNfc", "Initialization failed, RFAL returned: %d", ret);
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}
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}
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}
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}
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bool api_hal_nfc_is_busy() {
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bool api_hal_nfc_is_busy() {
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return rfalNfcGetState() > RFAL_NFC_STATE_IDLE;
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return rfalNfcGetState() != RFAL_NFC_STATE_IDLE;
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}
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}
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void api_hal_nfc_field_on() {
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void api_hal_nfc_field_on() {
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@ -3,8 +3,7 @@
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#include <api-hal-power.h>
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#include <api-hal-power.h>
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#include <stm32wbxx_ll_cortex.h>
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#include <stm32wbxx_ll_cortex.h>
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#include <FreeRTOS.h>
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#include <furi.h>
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#include <cmsis_os.h>
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#define API_HAL_OS_CLK_FREQUENCY 32768
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#define API_HAL_OS_CLK_FREQUENCY 32768
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#define API_HAL_OS_TICK_PER_SECOND 1024
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#define API_HAL_OS_TICK_PER_SECOND 1024
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@ -42,6 +41,8 @@ void api_hal_os_init() {
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osTimerId_t second_timer = osTimerNew(api_hal_os_timer_callback, osTimerPeriodic, NULL, NULL);
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osTimerId_t second_timer = osTimerNew(api_hal_os_timer_callback, osTimerPeriodic, NULL, NULL);
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osTimerStart(second_timer, 1024);
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osTimerStart(second_timer, 1024);
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#endif
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#endif
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FURI_LOG_I("FuriHalOs", "Init OK");
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}
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}
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void LPTIM2_IRQHandler(void) {
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void LPTIM2_IRQHandler(void) {
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@ -13,6 +13,8 @@
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#include <bq27220.h>
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#include <bq27220.h>
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#include <bq25896.h>
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#include <bq25896.h>
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#include <furi.h>
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typedef struct {
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typedef struct {
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volatile uint32_t insomnia;
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volatile uint32_t insomnia;
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volatile uint32_t deep_insomnia;
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volatile uint32_t deep_insomnia;
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@ -70,6 +72,7 @@ void api_hal_power_init() {
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LL_PWR_SMPS_SetMode(LL_PWR_SMPS_STEP_DOWN);
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LL_PWR_SMPS_SetMode(LL_PWR_SMPS_STEP_DOWN);
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bq27220_init(&cedv);
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bq27220_init(&cedv);
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bq25896_init();
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bq25896_init();
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FURI_LOG_I("FuriHalPower", "Init OK");
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}
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}
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uint16_t api_hal_power_insomnia_level() {
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uint16_t api_hal_power_insomnia_level() {
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@ -22,6 +22,7 @@ void api_hal_spi_init() {
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GpioSpeedVeryHigh
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GpioSpeedVeryHigh
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);
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);
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}
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}
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FURI_LOG_I("FuriHalSpi", "Init OK");
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}
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}
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void api_hal_spi_bus_lock(const ApiHalSpiBus* bus) {
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void api_hal_spi_bus_lock(const ApiHalSpiBus* bus) {
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@ -114,6 +114,7 @@ void api_hal_subghz_init() {
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cc1101_shutdown(device);
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cc1101_shutdown(device);
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api_hal_spi_device_return(device);
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api_hal_spi_device_return(device);
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FURI_LOG_I("FuriHalSubGhz", "Init OK");
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}
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}
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void api_hal_subghz_sleep() {
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void api_hal_subghz_sleep() {
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@ -29,6 +29,7 @@ void api_hal_vcp_init() {
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api_hal_vcp->tx_semaphore = osSemaphoreNew(1, 1, NULL);
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api_hal_vcp->tx_semaphore = osSemaphoreNew(1, 1, NULL);
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api_hal_vcp->alive = false;
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api_hal_vcp->alive = false;
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api_hal_vcp->underrun = false;
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api_hal_vcp->underrun = false;
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FURI_LOG_I("FuriHalVcp", "Init OK");
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}
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}
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void _api_hal_vcp_init() {
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void _api_hal_vcp_init() {
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@ -165,6 +165,7 @@ void api_hal_version_init() {
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break;
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break;
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default: furi_check(0);
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default: furi_check(0);
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}
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}
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FURI_LOG_I("FuriHalVersion", "Init OK");
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}
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}
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bool api_hal_version_do_i_belong_here() {
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bool api_hal_version_do_i_belong_here() {
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@ -4,6 +4,8 @@
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void api_hal_vibro_init() {
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void api_hal_vibro_init() {
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hal_gpio_init(&vibro_gpio, GpioModeOutputPushPull, GpioPullNo, GpioSpeedLow);
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hal_gpio_init(&vibro_gpio, GpioModeOutputPushPull, GpioPullNo, GpioSpeedLow);
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hal_gpio_write(&vibro_gpio, false);
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hal_gpio_write(&vibro_gpio, false);
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FURI_LOG_I("FuriHalVibro", "Init OK");
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}
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}
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void api_hal_vibro_on(bool value) {
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void api_hal_vibro_on(bool value) {
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@ -16,11 +16,8 @@
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void api_hal_init() {
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void api_hal_init() {
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api_hal_clock_init();
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api_hal_clock_init();
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api_hal_console_init();
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api_hal_console_init();
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FURI_LOG_I("FURI_HAL", "CLOCK and CONSOLE OK");
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api_hal_interrupt_init();
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api_hal_interrupt_init();
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FURI_LOG_I("FURI_HAL", "INTERRUPT OK");
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api_hal_delay_init();
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api_hal_delay_init();
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FURI_LOG_I("FURI_HAL", "DELAY OK");
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MX_GPIO_Init();
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MX_GPIO_Init();
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FURI_LOG_I("HAL", "GPIO OK");
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FURI_LOG_I("HAL", "GPIO OK");
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@ -28,9 +25,7 @@ void api_hal_init() {
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MX_RTC_Init();
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MX_RTC_Init();
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FURI_LOG_I("HAL", "RTC OK");
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FURI_LOG_I("HAL", "RTC OK");
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api_hal_boot_init();
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api_hal_boot_init();
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FURI_LOG_I("FURI_HAL", "BOOT OK");
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api_hal_version_init();
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api_hal_version_init();
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FURI_LOG_I("FURI_HAL", "VERSION OK");
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MX_ADC1_Init();
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MX_ADC1_Init();
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FURI_LOG_I("HAL", "ADC1 OK");
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FURI_LOG_I("HAL", "ADC1 OK");
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@ -40,7 +35,6 @@ void api_hal_init() {
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MX_SPI2_Init();
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MX_SPI2_Init();
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FURI_LOG_I("HAL", "SPI2 OK");
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FURI_LOG_I("HAL", "SPI2 OK");
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api_hal_spi_init();
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api_hal_spi_init();
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FURI_LOG_I("FURI_HAL", "SPI OK");
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MX_TIM1_Init();
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MX_TIM1_Init();
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FURI_LOG_I("HAL", "TIM1 OK");
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FURI_LOG_I("HAL", "TIM1 OK");
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@ -65,24 +59,18 @@ void api_hal_init() {
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// VCP + USB
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// VCP + USB
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api_hal_vcp_init();
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api_hal_vcp_init();
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FURI_LOG_I("FURI_HAL", "VCP OK");
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MX_USB_Device_Init();
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MX_USB_Device_Init();
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FURI_LOG_I("HAL", "USB OK");
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FURI_LOG_I("HAL", "USB OK");
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api_hal_i2c_init();
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api_hal_i2c_init();
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FURI_LOG_I("FURI_HAL", "I2C OK");
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// High Level
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// High Level
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api_hal_power_init();
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api_hal_power_init();
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FURI_LOG_I("FURI_HAL", "POWER OK");
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api_hal_light_init();
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api_hal_light_init();
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FURI_LOG_I("FURI_HAL", "LIGHT OK");
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api_hal_vibro_init();
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api_hal_vibro_init();
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FURI_LOG_I("FURI_HAL", "VIBRO OK");
|
|
||||||
api_hal_subghz_init();
|
api_hal_subghz_init();
|
||||||
FURI_LOG_I("FURI_HAL", "SUBGHZ OK");
|
api_hal_nfc_init();
|
||||||
|
|
||||||
// FreeRTOS glue
|
// FreeRTOS glue
|
||||||
api_hal_os_init();
|
api_hal_os_init();
|
||||||
FURI_LOG_I("FURI_HAL", "OS OK");
|
|
||||||
}
|
}
|
||||||
|
@ -67,7 +67,7 @@ static uint32_t timerStopwatchTick;
|
|||||||
/*******************************************************************************/
|
/*******************************************************************************/
|
||||||
uint32_t timerCalculateTimer( uint16_t time )
|
uint32_t timerCalculateTimer( uint16_t time )
|
||||||
{
|
{
|
||||||
return (osKernelGetTickCount() + time);
|
return (HAL_GetTick() + time);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
@ -77,7 +77,7 @@ bool timerIsExpired( uint32_t timer )
|
|||||||
uint32_t uDiff;
|
uint32_t uDiff;
|
||||||
int32_t sDiff;
|
int32_t sDiff;
|
||||||
|
|
||||||
uDiff = (timer - osKernelGetTickCount()); /* Calculate the diff between the timers */
|
uDiff = (timer - HAL_GetTick()); /* Calculate the diff between the timers */
|
||||||
sDiff = uDiff; /* Convert the diff to a signed var */
|
sDiff = uDiff; /* Convert the diff to a signed var */
|
||||||
|
|
||||||
/* Check if the given timer has expired already */
|
/* Check if the given timer has expired already */
|
||||||
@ -104,13 +104,13 @@ void timerDelay( uint16_t tOut )
|
|||||||
/*******************************************************************************/
|
/*******************************************************************************/
|
||||||
void timerStopwatchStart( void )
|
void timerStopwatchStart( void )
|
||||||
{
|
{
|
||||||
timerStopwatchTick = osKernelGetTickCount();
|
timerStopwatchTick = HAL_GetTick();
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
/*******************************************************************************/
|
/*******************************************************************************/
|
||||||
uint32_t timerStopwatchMeasure( void )
|
uint32_t timerStopwatchMeasure( void )
|
||||||
{
|
{
|
||||||
return (uint32_t)(osKernelGetTickCount() - timerStopwatchTick);
|
return (uint32_t)(HAL_GetTick() - timerStopwatchTick);
|
||||||
}
|
}
|
||||||
|
|
||||||
|
Loading…
Reference in New Issue
Block a user