b405a22cd1
* api-hal-gpio: rework gpio on ll * one_wire_slave: rework gpio initialization * interrupts: add attribute weak to hal exti interrupts handlers * api-hal-gpio: add exti interrupt handlers * input: rework with api-hal-gpio interrupts * one_wire_slave: rework with api-hal-gpio interrupts * api-hal-gpio: fix incorrect exti line config * api-hal-gpio: add doxygen documentation * api-hal-gpio: add enable / disable interrupts * api-hal-gpio: add get_rfid_level * core: remove api-gpio * applications: rework gpio with api-hal-gpio * lib: rework gpio with api-hal-gpio * rfal: disable exti interrupt when rfal is inactive * rfal: add interrupt gpio reinitialization * api-hal-gpio: hide setting speed and pull mode LL implementation * stm32wbxx_it: remove unused EXTI handlers * api-hal-gpio: guard set, enable, disable and remove interrupt * Drop F4 target * Accessor: update gpio api usage Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
78 lines
2.4 KiB
C
78 lines
2.4 KiB
C
#include "platform.h"
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#include <assert.h>
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#include <main.h>
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#include <furi.h>
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#include <api-hal-spi.h>
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static osThreadAttr_t platform_irq_thread_attr;
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static volatile osThreadId_t platform_irq_thread_id = NULL;
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static volatile PlatformIrqCallback platform_irq_callback = NULL;
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static ApiHalSpiDevice* platform_st25r3916 = NULL;
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static const GpioPin pin = {ST25R_INT_PORT, ST25R_INT_PIN};
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void nfc_isr(void* _ctx) {
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if(platform_irq_callback
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&& platformGpioIsHigh(ST25R_INT_PORT, ST25R_INT_PIN)) {
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osThreadFlagsSet(platform_irq_thread_id, 0x1);
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}
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}
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void platformIrqWorker() {
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while(1) {
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uint32_t flags = osThreadFlagsWait(0x1, osFlagsWaitAny, osWaitForever);
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if (flags & 0x1) {
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platform_irq_callback();
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}
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}
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}
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void platformEnableIrqCallback() {
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hal_gpio_init(&pin, GpioModeInterruptRise, GpioPullNo, GpioSpeedLow);
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hal_gpio_enable_int_callback(&pin);
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}
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void platformDisableIrqCallback() {
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hal_gpio_init(&pin, GpioModeOutputOpenDrain, GpioPullNo, GpioSpeedLow);
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hal_gpio_disable_int_callback(&pin);
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}
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void platformSetIrqCallback(PlatformIrqCallback callback) {
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platform_irq_callback = callback;
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platform_irq_thread_attr.name = "rfal_irq_worker";
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platform_irq_thread_attr.stack_size = 1024;
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platform_irq_thread_attr.priority = osPriorityISR;
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platform_irq_thread_id = osThreadNew(platformIrqWorker, NULL, &platform_irq_thread_attr);
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hal_gpio_add_int_callback(&pin, nfc_isr, NULL);
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// Disable interrupt callback as the pin is shared between 2 apps
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// It is enabled in rfalLowPowerModeStop()
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hal_gpio_disable_int_callback(&pin);
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}
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HAL_StatusTypeDef platformSpiTxRx(const uint8_t *txBuf, uint8_t *rxBuf, uint16_t len) {
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furi_assert(platform_st25r3916);
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bool ret = false;
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if (txBuf && rxBuf) {
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ret = api_hal_spi_bus_trx(platform_st25r3916->bus, (uint8_t*)txBuf, rxBuf, len, 1000);
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} else if (txBuf) {
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ret = api_hal_spi_bus_tx(platform_st25r3916->bus, (uint8_t*)txBuf, len, 1000);
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} else if (rxBuf) {
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ret = api_hal_spi_bus_rx(platform_st25r3916->bus, (uint8_t*)rxBuf, len, 1000);
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}
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if(!ret) {
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asm("bkpt 1");
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return HAL_ERROR;
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} else {
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return HAL_OK;
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}
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}
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void platformProtectST25RComm() {
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platform_st25r3916 = (ApiHalSpiDevice*)api_hal_spi_device_get(ApiHalSpiDeviceIdNfc);
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}
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void platformUnprotectST25RComm() {
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furi_assert(platform_st25r3916);
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api_hal_spi_device_return(platform_st25r3916);
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}
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