unleashed-firmware/targets/f7/furi_hal/furi_hal_serial.h
Georgii Surkov 95737958ad
[FL-3669] Expansion module protocol (#3250)
* ApiSymbols: add furi_record_destroy
* FuriHal: cleanup serial API, add logging configuration in RTC
* FuriHal: hide private part in _i header. Toolbox: cleanup value index. SystemSettings: logging device and baudrate.
* FuriHal: RTC logging method documentation
* Synchronize API Symbols
* Furi: mark HEAP_PRINT_DEBUG as broken
* FuriHal: furi_hal_serial, add custom IRQ func
* Fix PR review issues
* Implement basic external module detection and echo
* Update api symbols for f18
* Minimally working implementation (can create directory via rpc)
* Make expansion protocol parser a header-only library
* Rename a function
* Improve thread syncronisation
* Implement multi-packet transmissions
* Improve test application
* Clean up expansion worker code
* Send heartbeat when host is ready
* Update API symbols
* Add draft documentation
* Expansion worker: proper timeout and error handling
* Expansion worker: correct TX, do not disable expansion callback
* Expansion protocol: pc side test script
* PC side expansion test: trying to change baudrate
* Working comms between 2 flippers
* Cleaner exit from expansion worker thread
* Better checks
* Add debug logs
* Remove unneeded delays
* Use USART as default expansion port
* Refactor furi_hal_serial_control, fix crash
* Improve furi_hal abstraction, wait for stable rx pin
* Remove rogue include
* Set proper exit reason on RPC error
* Remove rogue comment
* Remove RX stability check as potentially problematic
* Improve expansion_test application
* Remove rogue define
* Give up on TODO
* Implement expansion protocol checksum support
* Update ExpansionModules.md
* RPC: reverse input
* Assets: sync protobuf
* Fix typos
* FuriHal: UART add reception DMA (#3220)
* FuriHal: add DMA serial rx mode
* usb_uart_bridge: switch to working with DMA
* Sync api symbol versions
* FuriHal: update serial docs and api
* FuriHal: Selial added similar API for simple reception mode as with DMA
* FuriHal: Update API target H18
* API: ver API H7
* FuriHal: Serial error processing
* FuriHal: fix furi_hal_serial set baudrate
* Sync api symbols
* FuriHal: cleanup serial isr and various flag handling procedures
* FuriHal: cleanup and simplify serial API
* Debug: update UART Echo serial related flags
* FuriHal: update serial API symbols naming
* Make expansion_test compile
* Remove unneeded file
* Make PVS-studio happy
* Optimise stack usage
* Optimise heap usage, improve api signature
* Fix typo
* Clean up code
* Update expansion_protocol.h
* Fix unit tests
* Add doxygen comments to expansion.h
* Update/add doxygen comments
* Update ExpansionModules.md
* Github: new global code owner
* FuriHal: naming in serial control
* Expansion: check mutex acquire return result

Co-authored-by: Aleksandr Kutuzov <alleteam@gmail.com>
Co-authored-by: hedger <hedger@users.noreply.github.com>
Co-authored-by: SkorP <skorpionm@yandex.ru>
Co-authored-by: SG <who.just.the.doctor@gmail.com>
Co-authored-by: Skorpionm <85568270+Skorpionm@users.noreply.github.com>
2024-01-16 18:18:56 +09:00

234 lines
6.4 KiB
C

/**
* @file furi_hal_serial.h
*
* Serial HAL API
*/
#pragma once
#include <stddef.h>
#include <stdint.h>
#include "furi_hal_serial_types.h"
#ifdef __cplusplus
extern "C" {
#endif
/** Initialize Serial
*
* Configures GPIO, configures and enables transceiver.
*
* @param handle Serial handle
* @param baud baud rate
*/
void furi_hal_serial_init(FuriHalSerialHandle* handle, uint32_t baud);
/** De-initialize Serial
*
* Configures GPIO to analog, clears callback and callback context, disables
* hardware
*
* @param handle Serial handle
*/
void furi_hal_serial_deinit(FuriHalSerialHandle* handle);
/** Suspend operation
*
* Suspend hardware, settings and callbacks are preserved
*
* @param handle Serial handle
*/
void furi_hal_serial_suspend(FuriHalSerialHandle* handle);
/** Resume operation
*
* Resumes hardware from suspended state
*
* @param handle Serial handle
*/
void furi_hal_serial_resume(FuriHalSerialHandle* handle);
/**
* @brief Determine whether a certain baud rate is supported
*
* @param handle Serial handle
* @param baud baud rate to be checked
* @returns true if baud rate is supported, false otherwise.
*/
bool furi_hal_serial_is_baud_rate_supported(FuriHalSerialHandle* handle, uint32_t baud);
/** Changes baud rate
*
* @param handle Serial handle
* @param baud baud rate
*/
void furi_hal_serial_set_br(FuriHalSerialHandle* handle, uint32_t baud);
/** Transmits data in semi-blocking mode
*
* Fills transmission pipe with data, returns as soon as all bytes from buffer
* are in the pipe.
*
* Real transmission will be completed later. Use
* `furi_hal_serial_tx_wait_complete` to wait for completion if you need it.
*
* @param handle Serial handle
* @param buffer data
* @param buffer_size data size (in bytes)
*/
void furi_hal_serial_tx(FuriHalSerialHandle* handle, const uint8_t* buffer, size_t buffer_size);
/** Wait until transmission is completed
*
* Ensures that all data has been sent.
*
* @param handle Serial handle
*/
void furi_hal_serial_tx_wait_complete(FuriHalSerialHandle* handle);
/** Serial RX events */
typedef enum {
FuriHalSerialRxEventData = (1 << 0), /**< Data: new data available */
FuriHalSerialRxEventIdle = (1 << 1), /**< Idle: bus idle detected */
FuriHalSerialRxEventFrameError = (1 << 2), /**< Framing Error: incorrect frame detected */
FuriHalSerialRxEventNoiseError = (1 << 3), /**< Noise Error: noise on the line detected */
FuriHalSerialRxEventOverrunError = (1 << 4), /**< Overrun Error: no space for received data */
} FuriHalSerialRxEvent;
/** Receive callback
*
* @warning Callback will be called in interrupt context, ensure thread
* safety on your side.
* @param handle Serial handle
* @param event FuriHalSerialRxEvent
* @param context Callback context provided earlier
*/
typedef void (*FuriHalSerialAsyncRxCallback)(
FuriHalSerialHandle* handle,
FuriHalSerialRxEvent event,
void* context);
/** Start and sets Serial Receive callback
*
* @warning Callback will be called in interrupt context, ensure thread
* safety on your side
*
* @param handle Serial handle
* @param callback callback pointer
* @param context callback context
* @param[in] report_errors report RX error
*/
void furi_hal_serial_async_rx_start(
FuriHalSerialHandle* handle,
FuriHalSerialAsyncRxCallback callback,
void* context,
bool report_errors);
/** Stop Serial Receive
*
* @param handle Serial handle
*/
void furi_hal_serial_async_rx_stop(FuriHalSerialHandle* handle);
/** Get data Serial receive
*
* @warning This function must be called only from the callback
* FuriHalSerialAsyncRxCallback
*
* @param handle Serial handle
*
* @return data
*/
uint8_t furi_hal_serial_async_rx(FuriHalSerialHandle* handle);
/* DMA based Serial API */
#define FURI_HAL_SERIAL_DMA_BUFFER_SIZE (256u)
/** Receive DMA callback
*
* @warning DMA Callback will be called in interrupt context, ensure thread
* safety on your side.
*
* @param handle Serial handle
* @param event FuriHalSerialDmaRxEvent
* @param data_len Received data
* @param context Callback context provided earlier
*/
typedef void (*FuriHalSerialDmaRxCallback)(
FuriHalSerialHandle* handle,
FuriHalSerialRxEvent event,
size_t data_len,
void* context);
/**
* @brief Enable an input/output directon
*
* Takes over the respective pin by reconfiguring it to
* the appropriate alternative function.
*
* @param handle Serial handle
* @param direction Direction to enable
*/
void furi_hal_serial_enable_direction(
FuriHalSerialHandle* handle,
FuriHalSerialDirection direction);
/**
* @brief Disable an input/output directon
*
* Releases the respective pin by reconfiguring it to
* initial state, making possible its use for other purposes.
*
* @param handle Serial handle
* @param direction Direction to disable
*/
void furi_hal_serial_disable_direction(
FuriHalSerialHandle* handle,
FuriHalSerialDirection direction);
/**
* @brief Get the GPIO pin associated with a serial
*
* @param handle Serial handle
* @param direction Direction to query
* @returns pointer to the respective pin instance
*/
const GpioPin*
furi_hal_serial_get_gpio_pin(FuriHalSerialHandle* handle, FuriHalSerialDirection direction);
/** Start and sets Serial event callback receive DMA
*
* @param handle Serial handle
* @param callback callback pointer
* @param context callback context
* @param[in] report_errors report RX error
*/
void furi_hal_serial_dma_rx_start(
FuriHalSerialHandle* handle,
FuriHalSerialDmaRxCallback callback,
void* context,
bool report_errors);
/** Stop Serial receive DMA
*
* @param handle Serial handle
*/
void furi_hal_serial_dma_rx_stop(FuriHalSerialHandle* handle);
/** Get data Serial receive DMA
*
* @warning This function must be called only from the callback
* FuriHalSerialDmaRxCallback
*
* @param handle Serial handle
* @param data pointer to data buffer
* @param len get data size (in bytes)
*
* @return size actual data receive (in bytes)
*/
size_t furi_hal_serial_dma_rx(FuriHalSerialHandle* handle, uint8_t* data, size_t len);
#ifdef __cplusplus
}
#endif