Files
2026-06-06 16:49:48 +08:00

203 lines
5.6 KiB
C

/*!
* \file spi_slave.c
*
* \brief Target spi slave device implementation
*
* \copyright Revised BSD License, see section \ref LICENSE.
*
* \code
*
* _ __ _ ________ _
* | |/ /(_)___ / ____/ /_ (_)___
* | // / __ \/ / / __ \/ / __ \
* / |/ / / / / /___/ / / / / /_/ /
* /_/|_/_/_/ /_/\____/_/ /_/_/ .___/
* /_/
* (C) 2022-2025 XinChip
*
* \endcode
*
* \author ( XinChip ) Alex-J
*
* \author ( XinChip )
*/
/*-----------------------------------------------------------------------------------
INCLUDE HEADE FILES
------------------------------------------------------------------------------------*/
#include "spi_slave.h"
#include "xc6xxx_hal_spi.h"
#include "xc6xxx_hal_spi_dmac.h"
/*------------------------------------------------------------------------------------
Macros
-------------------------------------------------------------------------------------*/
#define SL_BUFFER_LEN 64U
#define SL_NODMA_BUFFER_LEN 16U
/*------------------------------------------------------------------------------------
Global Variables
-------------------------------------------------------------------------------------*/
volatile uint8_t s_rd_buff[SL_BUFFER_LEN] = {0};
volatile uint8_t s_wr_buff[SL_BUFFER_LEN] = {0};
/*------------------------------------------------------------------------------------
Functions
-------------------------------------------------------------------------------------*/
/**
* @brief spi_dma_slave_demo
* @details
* @param void
* @retval void
*/
void spi_dma_slave_demo(void) {
DEBUG("__SPI_DMA_SLAVE_DEMO__\n");
GPIO_InitTypeDef gpio_cfg = {0};
gpio_cfg.Mux = GPIO_Mux0;
gpio_cfg.Dir = GPIO_DIR_OUTPUT;
gpio_cfg.FunSel = SSI1_CLK;
gpio_cfg.Int = NOT_INT;
gpio_cfg.Pull = GPIO_PULLDOWN;
gpio_cfg.Pin = GPIO_5;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_SSN;
gpio_cfg.Pin = GPIO_15; // GPIO_15;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_TX;
gpio_cfg.Pin = GPIO_16;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_RX;
gpio_cfg.Pin = GPIO_17;
GPIO_Init(&gpio_cfg);
SPI_TypeDef *spi_idx = XC_SPI1; // XC_SPI0;//XC_SPI1;
SPI_InitCfg_t spi_cfg = {0};
spi_cfg.Mode = SPI_MODE_SLAVE;
spi_cfg.DataSize = SSI_CTRL0_DFS_LEN_8BIT;
spi_cfg.Direction = SSI_CTRL0_TMOD_WR;
spi_cfg.BaudRatePrescaler =
SPI_BAUDRATEPRESCALER_2; // SPI_BAUDRATEPRESCALER_2;
spi_cfg.CLKPolarity = SSI_CTRL0_SCPOL_LOW;
spi_cfg.CLKPhase = SSI_CTRL0_SCPHA_TRAIL;
spi_cfg.FirstBit = SPI_FirstBit_MSB;
xc_spi_init(spi_idx, &spi_cfg);
NVIC_EnableIRQ(DMA_IRQn);
DEBUG("Write buffer: \n");
for (uint16_t i = 0; i < sizeof(s_wr_buff); i++) {
s_wr_buff[i] = i;
PRINT("%02x ", s_wr_buff[i]);
}
PRINT("\n");
SPI_DMA_ReadAndWriteData(spi_idx, (uint8_t *)s_wr_buff, sizeof(s_wr_buff),
(uint8_t *)s_rd_buff, sizeof(s_rd_buff));
DEBUG("__SPI_READ_END__\n");
for (uint16_t i = 0; i < sizeof(s_rd_buff); i++) {
PRINT("%02x ", s_rd_buff[i]);
}
PRINT("\n");
s_wr_buff[0] = 0xff;
SPI_DMA_ReadAndWriteData(spi_idx, (uint8_t *)s_wr_buff, sizeof(s_wr_buff),
(uint8_t *)s_rd_buff, sizeof(s_rd_buff));
DEBUG("__SPI_READ_END2__\n");
for (uint16_t i = 0; i < sizeof(s_rd_buff); i++) {
PRINT("%02x ", s_rd_buff[i]);
}
PRINT("\n");
}
/**
* @brief spi_slave_demo
* @details
* @param void
* @retval void
*/
void spi_slave_demo(void) {
DEBUG("__SPI_SLAVE_DEMO__\r");
SPI_InitCfg_t spi_cfg = {0};
GPIO_InitTypeDef gpio_cfg = {0};
gpio_cfg.Mux = GPIO_Mux0;
gpio_cfg.Dir = GPIO_DIR_OUTPUT;
gpio_cfg.FunSel = SSI1_CLK;
gpio_cfg.Int = NOT_INT;
gpio_cfg.Pull = GPIO_PULLDOWN;
gpio_cfg.Pin = GPIO_5;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_SSN;
gpio_cfg.Pin = GPIO_15;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_TX;
gpio_cfg.Pin = GPIO_16;
GPIO_Init(&gpio_cfg);
gpio_cfg.FunSel = SSI1_RX;
gpio_cfg.Pin = GPIO_17;
GPIO_Init(&gpio_cfg);
spi_cfg.Mode = SPI_MODE_SLAVE;
spi_cfg.DataSize = SSI_CTRL0_DFS_LEN_8BIT;
spi_cfg.Direction = SSI_CTRL0_TMOD_WR;
spi_cfg.BaudRatePrescaler = SSI_BAUD_DIV_8;
spi_cfg.CLKPolarity = SSI_CTRL0_SCPOL_LOW;
spi_cfg.CLKPhase = SSI_CTRL0_SCPHA_TRAIL;
spi_cfg.FirstBit = SPI_FirstBit_MSB;
SPI_TypeDef *spi_handle = XC_SPI1;
xc_spi_init(spi_handle, &spi_cfg);
uint8_t txbuff[SL_NODMA_BUFFER_LEN];
uint8_t rxbuff[SL_NODMA_BUFFER_LEN];
SPI_RXFTL_Set(XC_SPI1, 0x07);
SPI_IE_Enable(XC_SPI1, SSI_IE_RXFIE_ENABLE);
// while(1)
//{
DEBUG("Write buffer: \n");
for (int i = 0; i < sizeof(txbuff); i++) {
txbuff[i] = i + 1;
PRINT("%02x ", txbuff[i]);
}
PRINT("\n");
spi_write_and_read_data(spi_handle, (uint8_t *)txbuff, sizeof(txbuff),
(uint8_t *)rxbuff, sizeof(rxbuff));
DEBUG("Read buffer: \n");
for (int i = 0; i < sizeof(rxbuff); i++) {
PRINT("%02x ", rxbuff[i]);
}
PRINT("\n");
DEBUG("__SPI_END__\n");
DEBUG("Write buffer: \n");
memset((uint8_t *)txbuff, 0xbb, sizeof(txbuff));
for (int i = 0; i < sizeof(txbuff); i++) {
PRINT("%02x ", txbuff[i]);
}
PRINT("\n");
spi_write_and_read_data(spi_handle, (uint8_t *)txbuff, sizeof(txbuff),
(uint8_t *)rxbuff, sizeof(rxbuff));
DEBUG("Read buffer: \n");
for (int i = 0; i < sizeof(rxbuff); i++) {
PRINT("%02x ", rxbuff[i]);
}
PRINT("\n");
DEBUG("__SPI_END2__\n");
//}
}