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https://github.com/portapack-mayhem/mayhem-firmware.git
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ChibiOS 2.6.8, until I can figure out where to get it from git.
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Executable
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/*
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ChibiOS/RT - Copyright (C) 2006,2007,2008,2009,2010,
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2011,2012,2013 Giovanni Di Sirio.
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This file is part of ChibiOS/RT.
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ChibiOS/RT is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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ChibiOS/RT is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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---
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A special exception to the GPL can be applied should you wish to distribute
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a combined work that includes ChibiOS/RT, without being obliged to provide
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the source code for any proprietary components. See the file exception.txt
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for full details of how and when the exception can be applied.
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*/
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/**
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* @file uart.c
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* @brief UART Driver code.
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*
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* @addtogroup UART
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* @{
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*/
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#include "ch.h"
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#include "hal.h"
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#if HAL_USE_UART || defined(__DOXYGEN__)
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/*===========================================================================*/
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/* Driver local definitions. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver exported variables. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver local variables and types. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver local functions. */
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/*===========================================================================*/
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/*===========================================================================*/
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/* Driver exported functions. */
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/*===========================================================================*/
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/**
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* @brief UART Driver initialization.
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* @note This function is implicitly invoked by @p halInit(), there is
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* no need to explicitly initialize the driver.
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*
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* @init
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*/
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void uartInit(void) {
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uart_lld_init();
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}
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/**
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* @brief Initializes the standard part of a @p UARTDriver structure.
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*
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* @param[out] uartp pointer to the @p UARTDriver object
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*
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* @init
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*/
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void uartObjectInit(UARTDriver *uartp) {
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uartp->state = UART_STOP;
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uartp->txstate = UART_TX_IDLE;
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uartp->rxstate = UART_RX_IDLE;
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uartp->config = NULL;
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/* Optional, user-defined initializer.*/
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#if defined(UART_DRIVER_EXT_INIT_HOOK)
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UART_DRIVER_EXT_INIT_HOOK(uartp);
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#endif
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}
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/**
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* @brief Configures and activates the UART peripheral.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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* @param[in] config pointer to the @p UARTConfig object
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*
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* @api
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*/
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void uartStart(UARTDriver *uartp, const UARTConfig *config) {
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chDbgCheck((uartp != NULL) && (config != NULL), "uartStart");
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chSysLock();
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chDbgAssert((uartp->state == UART_STOP) || (uartp->state == UART_READY),
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"uartStart(), #1", "invalid state");
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uartp->config = config;
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uart_lld_start(uartp);
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uartp->state = UART_READY;
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chSysUnlock();
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}
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/**
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* @brief Deactivates the UART peripheral.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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*
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* @api
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*/
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void uartStop(UARTDriver *uartp) {
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chDbgCheck(uartp != NULL, "uartStop");
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chSysLock();
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chDbgAssert((uartp->state == UART_STOP) || (uartp->state == UART_READY),
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"uartStop(), #1", "invalid state");
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uart_lld_stop(uartp);
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uartp->state = UART_STOP;
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uartp->txstate = UART_TX_IDLE;
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uartp->rxstate = UART_RX_IDLE;
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chSysUnlock();
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}
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/**
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* @brief Starts a transmission on the UART peripheral.
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* @note The buffers are organized as uint8_t arrays for data sizes below
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* or equal to 8 bits else it is organized as uint16_t arrays.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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* @param[in] n number of data frames to send
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* @param[in] txbuf the pointer to the transmit buffer
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*
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* @api
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*/
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void uartStartSend(UARTDriver *uartp, size_t n, const void *txbuf) {
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chDbgCheck((uartp != NULL) && (n > 0) && (txbuf != NULL),
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"uartStartSend");
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chSysLock();
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chDbgAssert(uartp->state == UART_READY,
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"uartStartSend(), #1", "is active");
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chDbgAssert(uartp->txstate != UART_TX_ACTIVE,
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"uartStartSend(), #2", "tx active");
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uart_lld_start_send(uartp, n, txbuf);
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uartp->txstate = UART_TX_ACTIVE;
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chSysUnlock();
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}
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/**
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* @brief Starts a transmission on the UART peripheral.
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* @note The buffers are organized as uint8_t arrays for data sizes below
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* or equal to 8 bits else it is organized as uint16_t arrays.
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* @note This function has to be invoked from a lock zone.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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* @param[in] n number of data frames to send
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* @param[in] txbuf the pointer to the transmit buffer
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*
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* @iclass
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*/
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void uartStartSendI(UARTDriver *uartp, size_t n, const void *txbuf) {
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chDbgCheckClassI();
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chDbgCheck((uartp != NULL) && (n > 0) && (txbuf != NULL),
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"uartStartSendI");
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chDbgAssert(uartp->state == UART_READY,
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"uartStartSendI(), #1", "is active");
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chDbgAssert(uartp->txstate != UART_TX_ACTIVE,
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"uartStartSendI(), #2", "tx active");
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uart_lld_start_send(uartp, n, txbuf);
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uartp->txstate = UART_TX_ACTIVE;
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}
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/**
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* @brief Stops any ongoing transmission.
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* @note Stopping a transmission also suppresses the transmission callbacks.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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*
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* @return The number of data frames not transmitted by the
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* stopped transmit operation.
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* @retval 0 There was no transmit operation in progress.
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*
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* @api
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*/
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size_t uartStopSend(UARTDriver *uartp) {
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size_t n;
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chDbgCheck(uartp != NULL, "uartStopSend");
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chSysLock();
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chDbgAssert(uartp->state == UART_READY, "uartStopSend(), #1", "not active");
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if (uartp->txstate == UART_TX_ACTIVE) {
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n = uart_lld_stop_send(uartp);
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uartp->txstate = UART_TX_IDLE;
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}
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else
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n = 0;
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chSysUnlock();
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return n;
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}
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/**
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* @brief Stops any ongoing transmission.
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* @note Stopping a transmission also suppresses the transmission callbacks.
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* @note This function has to be invoked from a lock zone.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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*
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* @return The number of data frames not transmitted by the
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* stopped transmit operation.
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* @retval 0 There was no transmit operation in progress.
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*
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* @iclass
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*/
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size_t uartStopSendI(UARTDriver *uartp) {
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chDbgCheckClassI();
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chDbgCheck(uartp != NULL, "uartStopSendI");
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chDbgAssert(uartp->state == UART_READY, "uartStopSendI(), #1", "not active");
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if (uartp->txstate == UART_TX_ACTIVE) {
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size_t n = uart_lld_stop_send(uartp);
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uartp->txstate = UART_TX_IDLE;
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return n;
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}
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return 0;
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}
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/**
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* @brief Starts a receive operation on the UART peripheral.
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* @note The buffers are organized as uint8_t arrays for data sizes below
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* or equal to 8 bits else it is organized as uint16_t arrays.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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* @param[in] n number of data frames to send
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* @param[in] rxbuf the pointer to the receive buffer
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*
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* @api
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*/
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void uartStartReceive(UARTDriver *uartp, size_t n, void *rxbuf) {
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chDbgCheck((uartp != NULL) && (n > 0) && (rxbuf != NULL),
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"uartStartReceive");
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chSysLock();
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chDbgAssert(uartp->state == UART_READY,
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"uartStartReceive(), #1", "is active");
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chDbgAssert(uartp->rxstate != UART_RX_ACTIVE,
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"uartStartReceive(), #2", "rx active");
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uart_lld_start_receive(uartp, n, rxbuf);
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uartp->rxstate = UART_RX_ACTIVE;
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chSysUnlock();
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}
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/**
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* @brief Starts a receive operation on the UART peripheral.
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* @note The buffers are organized as uint8_t arrays for data sizes below
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* or equal to 8 bits else it is organized as uint16_t arrays.
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* @note This function has to be invoked from a lock zone.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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* @param[in] n number of data frames to send
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* @param[out] rxbuf the pointer to the receive buffer
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*
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* @iclass
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*/
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void uartStartReceiveI(UARTDriver *uartp, size_t n, void *rxbuf) {
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chDbgCheckClassI();
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chDbgCheck((uartp != NULL) && (n > 0) && (rxbuf != NULL),
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"uartStartReceiveI");
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chDbgAssert(uartp->state == UART_READY,
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"uartStartReceiveI(), #1", "is active");
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chDbgAssert(uartp->rxstate != UART_RX_ACTIVE,
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"uartStartReceiveI(), #2", "rx active");
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uart_lld_start_receive(uartp, n, rxbuf);
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uartp->rxstate = UART_RX_ACTIVE;
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}
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/**
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* @brief Stops any ongoing receive operation.
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* @note Stopping a receive operation also suppresses the receive callbacks.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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*
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* @return The number of data frames not received by the
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* stopped receive operation.
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* @retval 0 There was no receive operation in progress.
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*
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* @api
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*/
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size_t uartStopReceive(UARTDriver *uartp) {
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size_t n;
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chDbgCheck(uartp != NULL, "uartStopReceive");
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chSysLock();
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chDbgAssert(uartp->state == UART_READY,
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"uartStopReceive(), #1", "not active");
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if (uartp->rxstate == UART_RX_ACTIVE) {
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n = uart_lld_stop_receive(uartp);
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uartp->rxstate = UART_RX_IDLE;
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}
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else
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n = 0;
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chSysUnlock();
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return n;
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}
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/**
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* @brief Stops any ongoing receive operation.
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* @note Stopping a receive operation also suppresses the receive callbacks.
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* @note This function has to be invoked from a lock zone.
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*
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* @param[in] uartp pointer to the @p UARTDriver object
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*
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* @return The number of data frames not received by the
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* stopped receive operation.
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* @retval 0 There was no receive operation in progress.
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*
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* @iclass
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*/
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size_t uartStopReceiveI(UARTDriver *uartp) {
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chDbgCheckClassI();
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chDbgCheck(uartp != NULL, "uartStopReceiveI");
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chDbgAssert(uartp->state == UART_READY,
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"uartStopReceiveI(), #1", "not active");
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if (uartp->rxstate == UART_RX_ACTIVE) {
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size_t n = uart_lld_stop_receive(uartp);
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uartp->rxstate = UART_RX_IDLE;
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return n;
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}
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return 0;
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}
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#endif /* HAL_USE_UART */
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/** @} */
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