559 lines
20 KiB
C
559 lines
20 KiB
C
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// #################################################################################################
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// # << NEORV32: neorv32_uart.c - Universal Asynchronous Receiver/Transmitter (UART) HW Driver >> #
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// # ********************************************************************************************* #
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// # BSD 3-Clause License #
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// # #
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// # Copyright (c) 2023, Stephan Nolting. All rights reserved. #
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// # #
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// # Redistribution and use in source and binary forms, with or without modification, are #
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// # permitted provided that the following conditions are met: #
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// # #
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// # 1. Redistributions of source code must retain the above copyright notice, this list of #
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// # conditions and the following disclaimer. #
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// # #
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// # 2. Redistributions in binary form must reproduce the above copyright notice, this list of #
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// # conditions and the following disclaimer in the documentation and/or other materials #
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// # provided with the distribution. #
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// # #
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// # 3. Neither the name of the copyright holder nor the names of its contributors may be used to #
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// # endorse or promote products derived from this software without specific prior written #
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// # permission. #
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// # #
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// # THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS #
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// # OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF #
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// # MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE #
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// # COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, #
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// # EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE #
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// # GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED #
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// # AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING #
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// # NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED #
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// # OF THE POSSIBILITY OF SUCH DAMAGE. #
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// # ********************************************************************************************* #
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// # The NEORV32 Processor - https://github.com/stnolting/neorv32 (c) Stephan Nolting #
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// #################################################################################################
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/**********************************************************************//**
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* @file neorv32_uart.c
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* @brief Universal asynchronous receiver/transmitter (UART0/UART1) HW driver source file.
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*
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* @note These functions should only be used if the UART0/UART1 unit was synthesized.
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**************************************************************************/
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#include "neorv32.h"
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#include "neorv32_uart.h"
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#include <string.h>
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#include <stdarg.h>
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// Private functions
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static void __neorv32_uart_itoa(uint32_t x, char *res) __attribute__((unused)); // GCC: do not output a warning when this variable is unused
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static void __neorv32_uart_tohex(uint32_t x, char *res) __attribute__((unused)); // GCC: do not output a warning when this variable is unused
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static void __neorv32_uart_touppercase(uint32_t len, char *ptr) __attribute__((unused)); // GCC: do not output a warning when this variable is unused
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/**********************************************************************//**
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* Check if UART unit was synthesized.
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*
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* @param[in,out] Hardware handle to UART register struct, #neorv32_uart_t.
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* @return 0 if UART0/1 was not synthesized, 1 if UART0/1 is available.
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**************************************************************************/
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int neorv32_uart_available(neorv32_uart_t *UARTx) {
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if ( ((uint32_t)UARTx == NEORV32_UART0_BASE) && (NEORV32_SYSINFO->SOC & (1 << SYSINFO_SOC_IO_UART0)) ) {
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return 1;
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}
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else if ( ((uint32_t)UARTx == NEORV32_UART1_BASE) && (NEORV32_SYSINFO->SOC & (1 << SYSINFO_SOC_IO_UART1)) ) {
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return 1;
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}
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else {
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return 0;
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}
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}
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/**********************************************************************//**
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* Reset, configure and enable UART.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @param[in] baudrate Targeted BAUD rate (e.g. 19200).
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* @param[in] irq_mask Interrupt configuration mask (CTRL's irq_* bits).
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**************************************************************************/
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void neorv32_uart_setup(neorv32_uart_t *UARTx, uint32_t baudrate, uint32_t irq_mask) {
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uint32_t prsc_sel = 0;
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uint32_t baud_div = 0;
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// reset
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UARTx->CTRL = 0;
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// raw clock prescaler
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uint32_t clock = NEORV32_SYSINFO->CLK; // system clock in Hz
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#ifndef make_bootloader // use div instructions
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baud_div = clock / (2*baudrate);
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#else // division via repeated subtraction (minimal size, only for bootloader)
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while (clock >= 2*baudrate) {
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clock -= 2*baudrate;
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baud_div++;
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}
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#endif
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// find baud prescaler (10-bit wide))
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while (baud_div >= 0x3ffU) {
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if ((prsc_sel == 2) || (prsc_sel == 4))
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baud_div >>= 3;
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else
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baud_div >>= 1;
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prsc_sel++;
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}
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uint32_t tmp = 0;
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tmp |= (uint32_t)(1 & 1U) << UART_CTRL_EN;
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tmp |= (uint32_t)(prsc_sel & 3U) << UART_CTRL_PRSC0;
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tmp |= (uint32_t)((baud_div - 1) & 0x3ffU) << UART_CTRL_BAUD0;
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tmp |= (uint32_t)(irq_mask & (0x1fU << UART_CTRL_IRQ_RX_NEMPTY));
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#ifdef UART0_SIM_MODE
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#warning UART0_SIM_MODE (primary UART) enabled! Sending all UART0.TX data to text.io simulation output instead of real UART0 transmitter. Use this for simulations only!
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if (((uint32_t)UARTx) == NEORV32_UART0_BASE) {
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tmp |= 1U << UART_CTRL_SIM_MODE;
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}
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#endif
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#ifdef UART1_SIM_MODE
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#warning UART1_SIM_MODE (secondary UART) enabled! Sending all UART1.TX data to text.io simulation output instead of real UART1 transmitter. Use this for simulations only!
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if (((uint32_t)UARTx) == NEORV32_UART1_BASE) {
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tmp |= 1U << UART_CTRL_SIM_MODE;
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}
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#endif
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UARTx->CTRL = tmp;
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}
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/**********************************************************************//**
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* Get UART RX FIFO depth.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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*
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* @return FIFO depth (number of entries)
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**************************************************************************/
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int neorv32_uart_get_rx_fifo_depth(neorv32_uart_t *UARTx) {
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uint32_t tmp = (UARTx->DATA >> UART_DATA_RX_FIFO_SIZE_LSB) & 0x0f;
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return (int)(1 << tmp);
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}
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/**********************************************************************//**
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* Get UART TX FIFO depth.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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*
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* @return FIFO depth (number of entries)
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**************************************************************************/
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int neorv32_uart_get_tx_fifo_depth(neorv32_uart_t *UARTx) {
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uint32_t tmp = (UARTx->DATA >> UART_DATA_TX_FIFO_SIZE_LSB) & 0x0f;
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return (int)(1 << tmp);
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}
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/**********************************************************************//**
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* Enable UART.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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**************************************************************************/
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void neorv32_uart_enable(neorv32_uart_t *UARTx) {
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UARTx->CTRL |= ((uint32_t)(1 << UART_CTRL_EN));
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}
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/**********************************************************************//**
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* Disable UART.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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**************************************************************************/
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void neorv32_uart_disable(neorv32_uart_t *UARTx) {
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UARTx->CTRL &= ~((uint32_t)(1 << UART_CTRL_EN));
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}
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/**********************************************************************//**
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* Enable RTS/CTS hardware flow-control.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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**************************************************************************/
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void neorv32_uart_rtscts_enable(neorv32_uart_t *UARTx) {
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UARTx->CTRL |= ((uint32_t)(1 << UART_CTRL_HWFC_EN));
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}
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/**********************************************************************//**
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* Disable RTS/CTS hardware flow-control.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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**************************************************************************/
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void neorv32_uart_rtscts_disable(neorv32_uart_t *UARTx) {
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UARTx->CTRL &= ~((uint32_t)(1 << UART_CTRL_HWFC_EN));
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}
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/**********************************************************************//**
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* Send single char via UART.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @param[in] c Char to be send.
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**************************************************************************/
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void neorv32_uart_putc(neorv32_uart_t *UARTx, char c) {
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// wait for previous transfer to finish
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while ((UARTx->CTRL & (1<<UART_CTRL_TX_FULL))); // wait for free space in TX FIFO
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UARTx->DATA = (uint32_t)c << UART_DATA_RTX_LSB;
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}
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/**********************************************************************//**
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* Check if UART TX is busy (transmitter busy or data left in TX buffer).
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @return 0 if idle, 1 if busy
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**************************************************************************/
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int neorv32_uart_tx_busy(neorv32_uart_t *UARTx) {
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if (UARTx->CTRL & (1 << UART_CTRL_TX_BUSY)) { // TX engine busy
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return 1;
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}
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else {
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return 0;
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}
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}
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/**********************************************************************//**
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* Get char from UART.
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*
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* @note This function is blocking.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @return Received char.
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**************************************************************************/
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char neorv32_uart_getc(neorv32_uart_t *UARTx) {
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while (1) {
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if (UARTx->CTRL & (1<<UART_CTRL_RX_NEMPTY)) { // data available?
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return (char)(UARTx->DATA >> UART_DATA_RTX_LSB);
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}
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}
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}
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/**********************************************************************//**
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* Check if UART has received a char.
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*
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* @note This function is non-blocking.
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* @note Use neorv32_uart_char_received_get(void) to get the char.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @return 1 when a char has been received, 0 otherwise.
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**************************************************************************/
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int neorv32_uart_char_received(neorv32_uart_t *UARTx) {
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if (UARTx->CTRL & (1<<UART_CTRL_RX_NEMPTY)) {
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return 1;
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}
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else {
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return 0;
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}
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}
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/**********************************************************************//**
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* Get a received char from UART.
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*
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* @note This function is non-blocking.
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* @note Should only be used in combination with neorv32_uart_char_received(void).
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @return Received char.
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**************************************************************************/
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char neorv32_uart_char_received_get(neorv32_uart_t *UARTx) {
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return (char)(UARTx->DATA >> UART_DATA_RTX_LSB);
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}
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/**********************************************************************//**
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* Print string (zero-terminated) via UART. Print full line break "\r\n" for every '\n'.
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*
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* @note This function is blocking.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @param[in] s Pointer to string.
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**************************************************************************/
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void neorv32_uart_puts(neorv32_uart_t *UARTx, const char *s) {
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char c = 0;
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while ((c = *s++)) {
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if (c == '\n') {
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neorv32_uart_putc(UARTx, '\r');
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}
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neorv32_uart_putc(UARTx, c);
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}
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}
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/**********************************************************************//**
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* Custom version of 'vprintf' printing to UART.
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*
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* @note This function is blocking.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @param[in] format Pointer to format string.
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* @param[in] args A value identifying a variable arguments list.
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*
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* <TABLE>
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* <TR><TD>%s</TD><TD>String (array of chars, zero-terminated)</TD></TR>
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* <TR><TD>%c</TD><TD>Single char</TD></TR>
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* <TR><TD>%d/%i</TD><TD>32-bit signed number, printed as decimal</TD></TR>
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* <TR><TD>%u</TD><TD>32-bit unsigned number, printed as decimal</TD></TR>
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* <TR><TD>%x</TD><TD>32-bit number, printed as 8-char hexadecimal - lower-case</TD></TR>
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* <TR><TD>%X</TD><TD>32-bit number, printed as 8-char hexadecimal - upper-case</TD></TR>
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* <TR><TD>%p</TD><TD>32-bit pointer, printed as 8-char hexadecimal - lower-case</TD></TR>
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* </TABLE>
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**************************************************************************/
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void neorv32_uart_vprintf(neorv32_uart_t *UARTx, const char *format, va_list args) {
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char c, string_buf[12];
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int32_t n;
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while ((c = *format++)) {
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if (c == '%') {
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c = *format++;
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switch (c) {
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case 's': // string
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neorv32_uart_puts(UARTx, va_arg(args, char*));
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break;
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case 'c': // char
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neorv32_uart_putc(UARTx, (char)va_arg(args, int));
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break;
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case 'i': // 32-bit signed
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case 'd':
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n = (int32_t)va_arg(args, int32_t);
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if (n < 0) {
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n = -n;
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neorv32_uart_putc(UARTx, '-');
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}
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__neorv32_uart_itoa((uint32_t)n, string_buf);
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neorv32_uart_puts(UARTx, string_buf);
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break;
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case 'u': // 32-bit unsigned
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__neorv32_uart_itoa(va_arg(args, uint32_t), string_buf);
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neorv32_uart_puts(UARTx, string_buf);
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break;
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case 'x': // 32-bit hexadecimal
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case 'p':
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case 'X':
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__neorv32_uart_tohex(va_arg(args, uint32_t), string_buf);
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if (c == 'X') {
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__neorv32_uart_touppercase(11, string_buf);
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}
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neorv32_uart_puts(UARTx, string_buf);
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break;
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case '%': // escaped percent sign
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neorv32_uart_putc(UARTx, '%');
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break;
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default: // unsupported format
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neorv32_uart_putc(UARTx, '%');
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neorv32_uart_putc(UARTx, c);
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break;
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}
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}
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else {
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if (c == '\n') {
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neorv32_uart_putc(UARTx, '\r');
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}
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neorv32_uart_putc(UARTx, c);
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}
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}
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}
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/**********************************************************************//**
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* Custom version of 'printf' printing to UART.
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*
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* @note This function is blocking.
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*
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* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
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* @param[in] format Pointer to format string. See neorv32_uart_vprintf.
|
||
|
**************************************************************************/
|
||
|
void neorv32_uart_printf(neorv32_uart_t *UARTx, const char *format, ...) {
|
||
|
|
||
|
va_list args;
|
||
|
va_start(args, format);
|
||
|
neorv32_uart_vprintf(UARTx, format, args);
|
||
|
va_end(args);
|
||
|
}
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* Simplified custom version of 'scanf' reading from UART.
|
||
|
*
|
||
|
* @note This function is blocking.
|
||
|
*
|
||
|
* @param[in,out] UARTx Hardware handle to UART register struct, #neorv32_uart_t.
|
||
|
* @param[in,out] buffer Pointer to array of chars to store string.
|
||
|
* @param[in] max_size Maximum number of chars to sample.
|
||
|
* @param[in] echo Echo UART input when 1.
|
||
|
* @return Number of chars read.
|
||
|
**************************************************************************/
|
||
|
int neorv32_uart_scan(neorv32_uart_t *UARTx, char *buffer, int max_size, int echo) {
|
||
|
|
||
|
char c = 0;
|
||
|
int length = 0;
|
||
|
|
||
|
while (1) {
|
||
|
c = neorv32_uart_getc(UARTx);
|
||
|
if (c == '\b') { // BACKSPACE
|
||
|
if (length != 0) {
|
||
|
if (echo) {
|
||
|
neorv32_uart_puts(UARTx, "\b \b"); // delete last char in console
|
||
|
}
|
||
|
buffer--;
|
||
|
length--;
|
||
|
}
|
||
|
}
|
||
|
else if (c == '\r') // carriage return
|
||
|
break;
|
||
|
else if ((c >= ' ') && (c <= '~') && (length < (max_size-1))) {
|
||
|
if (echo) {
|
||
|
neorv32_uart_putc(UARTx, c); // echo
|
||
|
}
|
||
|
*buffer++ = c;
|
||
|
length++;
|
||
|
}
|
||
|
}
|
||
|
*buffer = '\0'; // terminate string
|
||
|
|
||
|
return length;
|
||
|
}
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* Private function for 'neorv32_printf' to convert into decimal.
|
||
|
*
|
||
|
* @param[in] x Unsigned input number.
|
||
|
* @param[in,out] res Pointer for storing the reuslting number string (11 chars).
|
||
|
**************************************************************************/
|
||
|
static void __neorv32_uart_itoa(uint32_t x, char *res) {
|
||
|
|
||
|
static const char numbers[] = "0123456789";
|
||
|
char buffer1[11];
|
||
|
uint16_t i, j;
|
||
|
|
||
|
buffer1[10] = '\0';
|
||
|
res[10] = '\0';
|
||
|
|
||
|
// convert
|
||
|
for (i=0; i<10; i++) {
|
||
|
buffer1[i] = numbers[x%10];
|
||
|
x /= 10;
|
||
|
}
|
||
|
|
||
|
// delete 'leading' zeros
|
||
|
for (i=9; i!=0; i--) {
|
||
|
if (buffer1[i] == '0')
|
||
|
buffer1[i] = '\0';
|
||
|
else
|
||
|
break;
|
||
|
}
|
||
|
|
||
|
// reverse
|
||
|
j = 0;
|
||
|
do {
|
||
|
if (buffer1[i] != '\0')
|
||
|
res[j++] = buffer1[i];
|
||
|
} while (i--);
|
||
|
|
||
|
res[j] = '\0'; // terminate result string
|
||
|
}
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* Private function for 'neorv32_printf' to convert into hexadecimal.
|
||
|
*
|
||
|
* @param[in] x Unsigned input number.
|
||
|
* @param[in,out] res Pointer for storing the resulting number string (9 chars).
|
||
|
**************************************************************************/
|
||
|
static void __neorv32_uart_tohex(uint32_t x, char *res) {
|
||
|
|
||
|
static const char symbols[] = "0123456789abcdef";
|
||
|
|
||
|
int i;
|
||
|
for (i=0; i<8; i++) { // nibble by nibble
|
||
|
uint32_t num_tmp = x >> (4*i);
|
||
|
res[7-i] = (char)symbols[num_tmp & 0x0f];
|
||
|
}
|
||
|
|
||
|
res[8] = '\0'; // terminate result string
|
||
|
}
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* Private function to cast a string to UPPERCASE.
|
||
|
*
|
||
|
* @param[in] len Total length of input string.
|
||
|
* @param[in,out] ptr Pointer for input/output string.
|
||
|
**************************************************************************/
|
||
|
static void __neorv32_uart_touppercase(uint32_t len, char *ptr) {
|
||
|
|
||
|
char tmp;
|
||
|
|
||
|
while (len > 0) {
|
||
|
tmp = *ptr;
|
||
|
if ((tmp >= 'a') && (tmp <= 'z')) {
|
||
|
*ptr = tmp - 32;
|
||
|
}
|
||
|
ptr++;
|
||
|
len--;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
|
||
|
// ================================================================================================
|
||
|
// ================================================================================================
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* STDIO: Send char via UART0
|
||
|
*
|
||
|
* @param[in] Char to be send.
|
||
|
* @return Char that has been sent.
|
||
|
**************************************************************************/
|
||
|
int putchar(int ch) {
|
||
|
|
||
|
neorv32_uart_putc(NEORV32_UART0, (char)ch);
|
||
|
return ch;
|
||
|
}
|
||
|
|
||
|
|
||
|
/**********************************************************************//**
|
||
|
* STDIO: Read char from UART0.
|
||
|
*
|
||
|
* @return Read char.
|
||
|
**************************************************************************/
|
||
|
int getchar(void) {
|
||
|
|
||
|
return (int)neorv32_uart_getc(NEORV32_UART0);
|
||
|
}
|