mirror of
https://github.com/DarkFlippers/unleashed-firmware
synced 2024-11-27 15:00:46 +00:00
01434265f6
* Disable USART in sleep * Restore UART state on suspend/resume * FuriHal: Enable stop mode and add insomnia to I2C and SPI * Remove IDLE interrupt * FuriHal: add FPU isr and disable all FPU interrupt, add core2 stop mode configuration on deep sleep * FuriHal: tie stop mode debug with debug rtc flag * FuriHal: adjust flash latency on clock switch, tie mcu debug with RTC debug flag * FuriHal: move resource init to early stage * Add EXTI pending check, enable debug traps with compile-time flag * Wrap sleep debug functions in conditional compilation * Remove erroneous changed * Do not use CSS, remove it from everywhere * Enable/disable USB on VBUS connect (prototype) * FuriHal: add LPMS and DEEPSLEEP magic, workaround state inconsistency between cores * FuriHal: honor c1 LMPS * USB mode switch fix * Applications: add flags and insomnia bypass system * Correct spelling * FuriHal: cleanup insomnia usage, reset sleep flags on wakeup, add shutdown api * FuriHal: extra check on reinit request * FuriHal: rename gpio_display_rst pin to gpio_display_rst_n * FuriHal: add debug HAL * FuriHal: add some magic to core2 reload procedure, fix issue with crash on ble keyboard exit * FuriHal: cleanup ble glue, add BLE_GLUE_DEBUG flag * FuriHal: ble reinit API, move os timer to LPTIM1 for deep sleep capability, shutdown that works * FuriHal: take insomnia while shutdown * Remove USB switch on/off on VBUS change * Better tick skew handling * Improve tick consistency under load * Add USB_HP dummy IRQ handler * Move interrupt check closer to sleep * Clean up includes * Re-enable Insomnia globally * FuriHal: enable CSS * FuriHal: remove questionable core2 clock shenanigans * FuriHal: use core1 RCC registers in idle timer config * FuriHal: return back CSS handlers, add lptim isr dispatching Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com> Co-authored-by: nminaylov <nm29719@gmail.com>
168 lines
4.5 KiB
C
168 lines
4.5 KiB
C
#include "furi_hal_spi.h"
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#include "furi_hal_resources.h"
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#include <furi_hal_power.h>
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#include <stdbool.h>
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#include <string.h>
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#include <furi.h>
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#include <stm32wbxx_ll_spi.h>
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#include <stm32wbxx_ll_utils.h>
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#include <stm32wbxx_ll_cortex.h>
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#define TAG "FuriHalSpi"
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void furi_hal_spi_init_early() {
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furi_hal_spi_bus_init(&furi_hal_spi_bus_d);
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furi_hal_spi_bus_handle_init(&furi_hal_spi_bus_handle_display);
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}
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void furi_hal_spi_deinit_early() {
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furi_hal_spi_bus_handle_deinit(&furi_hal_spi_bus_handle_display);
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furi_hal_spi_bus_deinit(&furi_hal_spi_bus_d);
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}
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void furi_hal_spi_init() {
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furi_hal_spi_bus_init(&furi_hal_spi_bus_r);
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furi_hal_spi_bus_handle_init(&furi_hal_spi_bus_handle_subghz);
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furi_hal_spi_bus_handle_init(&furi_hal_spi_bus_handle_nfc);
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furi_hal_spi_bus_handle_init(&furi_hal_spi_bus_handle_sd_fast);
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furi_hal_spi_bus_handle_init(&furi_hal_spi_bus_handle_sd_slow);
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FURI_LOG_I(TAG, "Init OK");
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}
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void furi_hal_spi_bus_init(FuriHalSpiBus* bus) {
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furi_assert(bus);
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bus->callback(bus, FuriHalSpiBusEventInit);
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}
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void furi_hal_spi_bus_deinit(FuriHalSpiBus* bus) {
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furi_assert(bus);
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bus->callback(bus, FuriHalSpiBusEventDeinit);
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}
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void furi_hal_spi_bus_handle_init(FuriHalSpiBusHandle* handle) {
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furi_assert(handle);
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handle->callback(handle, FuriHalSpiBusHandleEventInit);
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}
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void furi_hal_spi_bus_handle_deinit(FuriHalSpiBusHandle* handle) {
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furi_assert(handle);
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handle->callback(handle, FuriHalSpiBusHandleEventDeinit);
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}
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void furi_hal_spi_acquire(FuriHalSpiBusHandle* handle) {
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furi_assert(handle);
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furi_hal_power_insomnia_enter();
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handle->bus->callback(handle->bus, FuriHalSpiBusEventLock);
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handle->bus->callback(handle->bus, FuriHalSpiBusEventActivate);
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furi_assert(handle->bus->current_handle == NULL);
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handle->bus->current_handle = handle;
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handle->callback(handle, FuriHalSpiBusHandleEventActivate);
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}
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void furi_hal_spi_release(FuriHalSpiBusHandle* handle) {
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furi_assert(handle);
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furi_assert(handle->bus->current_handle == handle);
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// Handle event and unset handle
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handle->callback(handle, FuriHalSpiBusHandleEventDeactivate);
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handle->bus->current_handle = NULL;
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// Bus events
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handle->bus->callback(handle->bus, FuriHalSpiBusEventDeactivate);
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handle->bus->callback(handle->bus, FuriHalSpiBusEventUnlock);
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furi_hal_power_insomnia_exit();
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}
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static void furi_hal_spi_bus_end_txrx(FuriHalSpiBusHandle* handle, uint32_t timeout) {
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while(LL_SPI_GetTxFIFOLevel(handle->bus->spi) != LL_SPI_TX_FIFO_EMPTY)
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;
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while(LL_SPI_IsActiveFlag_BSY(handle->bus->spi))
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;
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while(LL_SPI_GetRxFIFOLevel(handle->bus->spi) != LL_SPI_RX_FIFO_EMPTY) {
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LL_SPI_ReceiveData8(handle->bus->spi);
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}
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}
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bool furi_hal_spi_bus_rx(
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FuriHalSpiBusHandle* handle,
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uint8_t* buffer,
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size_t size,
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uint32_t timeout) {
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furi_assert(handle);
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furi_assert(handle->bus->current_handle == handle);
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furi_assert(buffer);
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furi_assert(size > 0);
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return furi_hal_spi_bus_trx(handle, buffer, buffer, size, timeout);
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}
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bool furi_hal_spi_bus_tx(
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FuriHalSpiBusHandle* handle,
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uint8_t* buffer,
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size_t size,
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uint32_t timeout) {
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furi_assert(handle);
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furi_assert(handle->bus->current_handle == handle);
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furi_assert(buffer);
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furi_assert(size > 0);
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bool ret = true;
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while(size > 0) {
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if(LL_SPI_IsActiveFlag_TXE(handle->bus->spi)) {
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LL_SPI_TransmitData8(handle->bus->spi, *buffer);
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buffer++;
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size--;
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}
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}
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furi_hal_spi_bus_end_txrx(handle, timeout);
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LL_SPI_ClearFlag_OVR(handle->bus->spi);
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return ret;
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}
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bool furi_hal_spi_bus_trx(
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FuriHalSpiBusHandle* handle,
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uint8_t* tx_buffer,
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uint8_t* rx_buffer,
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size_t size,
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uint32_t timeout) {
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furi_assert(handle);
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furi_assert(handle->bus->current_handle == handle);
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furi_assert(tx_buffer);
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furi_assert(rx_buffer);
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furi_assert(size > 0);
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bool ret = true;
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size_t tx_size = size;
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bool tx_allowed = true;
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while(size > 0) {
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if(tx_size > 0 && LL_SPI_IsActiveFlag_TXE(handle->bus->spi) && tx_allowed) {
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LL_SPI_TransmitData8(handle->bus->spi, *tx_buffer);
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tx_buffer++;
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tx_size--;
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tx_allowed = false;
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}
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if(LL_SPI_IsActiveFlag_RXNE(handle->bus->spi)) {
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*rx_buffer = LL_SPI_ReceiveData8(handle->bus->spi);
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rx_buffer++;
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size--;
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tx_allowed = true;
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}
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}
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furi_hal_spi_bus_end_txrx(handle, timeout);
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return ret;
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}
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