314 lines
11 KiB
C
314 lines
11 KiB
C
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// #################################################################################################
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// # << NEORV32 - SPI Bus Explorer Demo Program >> #
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// # ********************************************************************************************* #
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// # BSD 3-Clause License #
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// # #
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// # Copyright (c) 2024, 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 demo_spi/main.c
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* @author Stephan Nolting
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* @brief SPI bus explorer (execute SPI transactions by hand).
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**************************************************************************/
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#include <neorv32.h>
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#include <string.h>
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/**********************************************************************//**
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* @name User configuration
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**************************************************************************/
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/**@{*/
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/** UART BAUD rate */
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#define BAUD_RATE 19200
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/**@}*/
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// Global variables
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uint32_t spi_configured;
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// Prototypes
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void spi_cs(uint32_t type);
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void spi_trans(void);
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void spi_setup(void);
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uint32_t hexstr_to_uint(char *buffer, uint8_t length);
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void aux_print_hex_byte(uint8_t byte);
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/**********************************************************************//**
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* This program provides an interactive console to communicate with SPI devices.
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*
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* @note This program requires the UART and the SPI to be synthesized.
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*
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* @return Irrelevant.
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**************************************************************************/
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int main() {
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char buffer[8];
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int length = 0;
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// capture all exceptions and give debug info via UART
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// this is not required, but keeps us safe
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neorv32_rte_setup();
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// setup UART at default baud rate, no interrupts
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neorv32_uart0_setup(BAUD_RATE, 0);
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// check if UART0 unit is implemented at all
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if (neorv32_uart0_available() == 0) {
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return 1;
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}
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// intro
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neorv32_uart0_printf("\n<<< SPI Bus Explorer >>>\n\n");
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// check if SPI unit is implemented at all
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if (neorv32_spi_available() == 0) {
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neorv32_uart0_printf("ERROR! No SPI unit implemented.");
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return 1;
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}
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// info
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neorv32_uart0_printf("This program allows to create SPI transfers by hand.\n"
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"Type 'help' to see the help menu.\n\n");
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// disable and reset SPI module
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neorv32_spi_disable();
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spi_configured = 0; // SPI not configured yet
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// Main menu
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for (;;) {
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neorv32_uart0_printf("SPI_EXPLORER:> ");
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length = neorv32_uart0_scan(buffer, 15, 1);
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neorv32_uart0_printf("\n");
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if (!length) // nothing to be done
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continue;
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// decode input and execute command
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if (!strcmp(buffer, "help")) {
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neorv32_uart0_printf("Available commands:\n"
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" help - show this text\n"
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" setup - configure SPI module\n"
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" en - enable single chip-select line (set low)\n"
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" dis - disable all chip-select lines (set high)\n"
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" trans - SPI data transmission (write & read to/from SPI)\n"
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"\n"
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"Configure the SPI module using 'setup'. Enable a certain module using 'cs-en',\n"
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"then transfer data using 'trans' and disable the module again using 'cs-dis'.\n"
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"\n");
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}
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else if (!strcmp(buffer, "setup")) {
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spi_setup();
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}
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else if (!strcmp(buffer, "en")) {
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spi_cs(1);
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}
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else if (!strcmp(buffer, "dis")) {
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spi_cs(0);
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}
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else if (!strcmp(buffer, "trans")) {
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spi_trans();
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}
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else {
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neorv32_uart0_printf("Invalid command. Type 'help' to see all commands.\n");
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}
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}
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return 0;
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}
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/**********************************************************************//**
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* Enable or disable chip-select line
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*
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* @param[in] type 0=disable, 1=enable
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**************************************************************************/
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void spi_cs(uint32_t type) {
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char terminal_buffer[2];
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uint8_t channel;
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if (spi_configured == 0) {
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neorv32_uart0_printf("SPI module not configured yet! Use 'setup' to configure SPI module.\n");
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return;
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}
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if (type) {
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neorv32_uart0_printf("Chip-select line to ENABLE (set low) [0..7]: ");
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while (1) {
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neorv32_uart0_scan(terminal_buffer, 2, 1); // 1 hex char plus '\0'
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channel = (uint8_t)hexstr_to_uint(terminal_buffer, strlen(terminal_buffer));
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if (channel > 7) {
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neorv32_uart0_printf("\nInvalid channel selection!\n");
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return;
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}
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else {
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neorv32_uart0_printf("\n");
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break;
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}
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}
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neorv32_spi_cs_en(channel);
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}
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else {
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neorv32_uart0_printf("Disabling chip select lines.\n");
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neorv32_spi_cs_dis();
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}
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}
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/**********************************************************************//**
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* SPI data transfer
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**************************************************************************/
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void spi_trans(void) {
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char terminal_buffer[4];
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if (spi_configured == 0) {
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neorv32_uart0_printf("SPI module not configured yet! Use 'setup' to configure SPI module.\n");
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return;
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}
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neorv32_uart0_printf("Enter TX data (2 hex chars): 0x");
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neorv32_uart0_scan(terminal_buffer, 2+1, 1);
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uint32_t tx_data = (uint32_t)hexstr_to_uint(terminal_buffer, strlen(terminal_buffer));
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uint32_t rx_data = neorv32_spi_trans(tx_data);
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neorv32_uart0_printf("\nTX data: 0x");
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aux_print_hex_byte(tx_data);
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neorv32_uart0_printf("\nRX data: 0x");
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aux_print_hex_byte(rx_data);
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neorv32_uart0_printf("\n");
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}
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/**********************************************************************//**
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* Configure SPI module
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**************************************************************************/
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void spi_setup(void) {
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const uint32_t PRSC_LUT[8] = {2, 4, 8, 64, 128, 1024, 2048, 4096};
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char terminal_buffer[9];
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uint8_t spi_prsc, clk_div, clk_phase, clk_pol;
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uint32_t tmp;
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// ---- SPI clock ----
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while (1) {
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neorv32_uart0_printf("Select SPI clock prescaler (0..7): ");
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neorv32_uart0_scan(terminal_buffer, 2, 1);
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tmp = (uint32_t)hexstr_to_uint(terminal_buffer, strlen(terminal_buffer));
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if (tmp > 8) {
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neorv32_uart0_printf("\nInvalid selection!\n");
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}
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else {
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spi_prsc = (uint8_t)tmp;
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break;
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}
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}
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neorv32_uart0_printf("\nEnter clock divider (0..15, as one hex char): ");
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neorv32_uart0_scan(terminal_buffer, 2, 1);
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clk_div = (uint8_t)hexstr_to_uint(terminal_buffer, strlen(terminal_buffer));
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uint32_t clock = NEORV32_SYSINFO->CLK / (2 * PRSC_LUT[spi_prsc] * (1 + clk_div));
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neorv32_uart0_printf("\n+ New SPI clock speed = %u Hz\n", clock);
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// ---- SPI clock mode ----
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while (1) {
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neorv32_uart0_printf("Select SPI clock mode (0..3): ");
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neorv32_uart0_scan(terminal_buffer, 2, 1);
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tmp = (uint32_t)hexstr_to_uint(terminal_buffer, strlen(terminal_buffer));
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if (tmp > 4) {
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neorv32_uart0_printf("\nInvalid selection!\n");
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}
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else {
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clk_pol = (uint8_t)((tmp >> 1) & 1);
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clk_phase = (uint8_t)(tmp & 1);
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break;
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}
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}
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neorv32_uart0_printf("\n+ New SPI clock mode = %u\n\n", tmp);
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neorv32_spi_setup(spi_prsc, clk_div, clk_phase, clk_pol, 0);
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spi_configured = 1; // SPI is configured now
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}
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/**********************************************************************//**
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* Helper function to convert N hex chars string into uint32_T
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*
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* @param[in,out] buffer Pointer to array of chars to convert into number.
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* @param[in,out] length Length of the conversion string.
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* @return Converted number.
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**************************************************************************/
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uint32_t hexstr_to_uint(char *buffer, uint8_t length) {
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uint32_t res = 0, d = 0;
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char c = 0;
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while (length--) {
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c = *buffer++;
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if ((c >= '0') && (c <= '9'))
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d = (uint32_t)(c - '0');
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else if ((c >= 'a') && (c <= 'f'))
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d = (uint32_t)((c - 'a') + 10);
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else if ((c >= 'A') && (c <= 'F'))
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d = (uint32_t)((c - 'A') + 10);
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else
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d = 0;
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res = res + (d << (length*4));
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}
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return res;
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}
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/**********************************************************************//**
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* Print HEX byte.
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*
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* @param[in] byte Byte to be printed as 2-cahr hex value.
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**************************************************************************/
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void aux_print_hex_byte(uint8_t byte) {
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static const char symbols[] = "0123456789abcdef";
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neorv32_uart0_putc(symbols[(byte >> 4) & 0x0f]);
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neorv32_uart0_putc(symbols[(byte >> 0) & 0x0f]);
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}
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