e3d473bf42
* get rid of BSP layer * sector_cache: init in any case * new sd-spi driver: init * Delete stm32_adafruit_sd.c.old * Delete spi_sd_hal.c.old * Storage: faster api lock primitive * Threads: priority control * Flags: correct error code * Spi: dma mode * SD-card: use DMA for big blocks of SPI data * Fix wrong SD_TOKEN_START_DATA_MULTIPLE_BLOCK_WRITE value * do not memset cache if it is NULL * remove top-level timeouts * sd hal: disable debug * Furi HAL: DMA * Furi HAL RFID: use furi_hal_dma * Furi HAL DMA: tests * Furi HAL DMA: docs * rollback "Furi HAL RFID: use furi_hal_dma" * 4 channels taken from DMA manager for core HAL. * Furi HAL DMA: live fast, die young * RPC tests: increase message buffer * SPI HAL: use second DMA instance * sd hal: new CID getter * SPI hal: use non-DMA version if kernel is not running * IR hal: generalize DMA definition * storage: add CID data to sd info * RFID hal: generalize DMA definition * SUBGHZ hal: generalize DMA definition. Core hal moved to DMA2. * Storage: small optimizations, removal of extra mutex * Storage: redundant macro * SD hal: more timeouts * SPI hal: DMA init * Target: make furi_hal_spi_dma_init symbol private * Update F18 api symbols Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
140 lines
4.0 KiB
C
140 lines
4.0 KiB
C
#include "event_flag.h"
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#include "common_defines.h"
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#include "check.h"
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#include <event_groups.h>
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#define FURI_EVENT_FLAG_MAX_BITS_EVENT_GROUPS 24U
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#define FURI_EVENT_FLAG_INVALID_BITS (~((1UL << FURI_EVENT_FLAG_MAX_BITS_EVENT_GROUPS) - 1U))
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FuriEventFlag* furi_event_flag_alloc() {
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furi_assert(!FURI_IS_IRQ_MODE());
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EventGroupHandle_t handle = xEventGroupCreate();
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furi_check(handle);
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return ((FuriEventFlag*)handle);
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}
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void furi_event_flag_free(FuriEventFlag* instance) {
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furi_assert(!FURI_IS_IRQ_MODE());
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vEventGroupDelete((EventGroupHandle_t)instance);
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}
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uint32_t furi_event_flag_set(FuriEventFlag* instance, uint32_t flags) {
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furi_assert(instance);
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furi_assert((flags & FURI_EVENT_FLAG_INVALID_BITS) == 0U);
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EventGroupHandle_t hEventGroup = (EventGroupHandle_t)instance;
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uint32_t rflags;
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BaseType_t yield;
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if(FURI_IS_IRQ_MODE()) {
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yield = pdFALSE;
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if(xEventGroupSetBitsFromISR(hEventGroup, (EventBits_t)flags, &yield) == pdFAIL) {
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rflags = (uint32_t)FuriFlagErrorResource;
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} else {
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rflags = flags;
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portYIELD_FROM_ISR(yield);
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}
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} else {
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rflags = xEventGroupSetBits(hEventGroup, (EventBits_t)flags);
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}
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/* Return event flags after setting */
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return (rflags);
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}
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uint32_t furi_event_flag_clear(FuriEventFlag* instance, uint32_t flags) {
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furi_assert(instance);
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furi_assert((flags & FURI_EVENT_FLAG_INVALID_BITS) == 0U);
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EventGroupHandle_t hEventGroup = (EventGroupHandle_t)instance;
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uint32_t rflags;
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if(FURI_IS_IRQ_MODE()) {
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rflags = xEventGroupGetBitsFromISR(hEventGroup);
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if(xEventGroupClearBitsFromISR(hEventGroup, (EventBits_t)flags) == pdFAIL) {
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rflags = (uint32_t)FuriStatusErrorResource;
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} else {
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/* xEventGroupClearBitsFromISR only registers clear operation in the timer command queue. */
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/* Yield is required here otherwise clear operation might not execute in the right order. */
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/* See https://github.com/FreeRTOS/FreeRTOS-Kernel/issues/93 for more info. */
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portYIELD_FROM_ISR(pdTRUE);
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}
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} else {
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rflags = xEventGroupClearBits(hEventGroup, (EventBits_t)flags);
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}
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/* Return event flags before clearing */
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return (rflags);
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}
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uint32_t furi_event_flag_get(FuriEventFlag* instance) {
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furi_assert(instance);
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EventGroupHandle_t hEventGroup = (EventGroupHandle_t)instance;
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uint32_t rflags;
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if(FURI_IS_IRQ_MODE()) {
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rflags = xEventGroupGetBitsFromISR(hEventGroup);
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} else {
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rflags = xEventGroupGetBits(hEventGroup);
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}
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/* Return current event flags */
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return (rflags);
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}
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uint32_t furi_event_flag_wait(
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FuriEventFlag* instance,
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uint32_t flags,
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uint32_t options,
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uint32_t timeout) {
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furi_assert(!FURI_IS_IRQ_MODE());
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furi_assert(instance);
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furi_assert((flags & FURI_EVENT_FLAG_INVALID_BITS) == 0U);
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EventGroupHandle_t hEventGroup = (EventGroupHandle_t)instance;
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BaseType_t wait_all;
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BaseType_t exit_clr;
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uint32_t rflags;
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if(options & FuriFlagWaitAll) {
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wait_all = pdTRUE;
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} else {
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wait_all = pdFAIL;
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}
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if(options & FuriFlagNoClear) {
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exit_clr = pdFAIL;
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} else {
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exit_clr = pdTRUE;
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}
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rflags = xEventGroupWaitBits(
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hEventGroup, (EventBits_t)flags, exit_clr, wait_all, (TickType_t)timeout);
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if(options & FuriFlagWaitAll) {
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if((flags & rflags) != flags) {
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if(timeout > 0U) {
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rflags = (uint32_t)FuriStatusErrorTimeout;
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} else {
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rflags = (uint32_t)FuriStatusErrorResource;
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}
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}
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} else {
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if((flags & rflags) == 0U) {
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if(timeout > 0U) {
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rflags = (uint32_t)FuriStatusErrorTimeout;
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} else {
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rflags = (uint32_t)FuriStatusErrorResource;
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}
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}
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}
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/* Return event flags before clearing */
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return (rflags);
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}
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