2022-03-23 14:16:14 +08:00
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/*
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2022-03-25 23:06:43 +08:00
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* Copyright (c) 2006-2022, RT-Thread Development Team
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2022-03-23 14:16:14 +08:00
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2021-10-11 kyle first implementation.
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*/
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#include "drv_soft_spi.h"
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#include <board.h>
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#include <rtthread.h>
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#if defined(RT_USING_SPI) && defined(RT_USING_SPI_BITOPS) && defined(RT_USING_PIN)
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#include <rtdevice.h>
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#include "spi-bit-ops.h"
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#define DBG_TAG "drv.SPI"
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#ifdef RT_SPI_DEBUG
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#define DBG_LVL DBG_LOG
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#else
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#define DBG_LVL DBG_WARNING
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#endif
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#include <rtdbg.h>
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#ifndef ITEM_NUM
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#define ITEM_NUM(items) sizeof(items) / sizeof(items[0])
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#endif
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struct gd32_spi_bit_data
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{
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struct
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{
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rcu_periph_enum clk;
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rt_uint32_t port;
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rt_uint32_t pin;
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} sclk, mosi, miso;
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};
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rt_inline FlagStatus GPIO_OUTPUT_BIT_GET(uint32_t gpio_periph, uint32_t pin)
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{
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if((uint32_t)RESET !=(GPIO_OCTL(gpio_periph)&(pin))){
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return SET;
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}else{
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return RESET;
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}
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}
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rt_inline void GPIO_BIT_RESET(uint32_t gpio_periph, uint32_t pin)
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{
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GPIO_BC(gpio_periph) = (uint32_t)pin;
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}
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rt_inline void GPIO_BIT_SET(uint32_t gpio_periph, uint32_t pin)
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{
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GPIO_BOP(gpio_periph) = (uint32_t)pin;
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}
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rt_inline FlagStatus GPIO_INPUT_BIT_GET(uint32_t gpio_periph,uint32_t pin)
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{
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if((uint32_t)RESET != (GPIO_ISTAT(gpio_periph)&(pin))){
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return SET;
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}else{
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return RESET;
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}
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}
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rt_inline void GPIO_INIT(uint32_t gpio_periph, uint32_t mode, uint32_t speed, uint32_t pin)
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{
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uint16_t i;
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uint32_t temp_mode = 0U;
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uint32_t reg = 0U;
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/* GPIO mode configuration */
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temp_mode = (uint32_t)(mode & ((uint32_t)0x0FU));
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/* GPIO speed configuration */
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if(((uint32_t)0x00U) != ((uint32_t)mode & ((uint32_t)0x10U))){
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/* output mode max speed:10MHz,2MHz,50MHz */
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temp_mode |= (uint32_t)speed;
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}
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/* configure the eight low port pins with GPIO_CTL0 */
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for(i = 0U;i < 8U;i++){
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if((1U << i) & pin){
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reg = GPIO_CTL0(gpio_periph);
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/* clear the specified pin mode bits */
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reg &= ~GPIO_MODE_MASK(i);
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/* set the specified pin mode bits */
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reg |= GPIO_MODE_SET(i, temp_mode);
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/* set IPD or IPU */
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if(GPIO_MODE_IPD == mode){
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/* reset the corresponding OCTL bit */
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GPIO_BC(gpio_periph) = (uint32_t)((1U << i) & pin);
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}else{
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/* set the corresponding OCTL bit */
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if(GPIO_MODE_IPU == mode){
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GPIO_BOP(gpio_periph) = (uint32_t)((1U << i) & pin);
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}
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}
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/* set GPIO_CTL0 register */
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GPIO_CTL0(gpio_periph) = reg;
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}
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}
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/* configure the eight high port pins with GPIO_CTL1 */
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for(i = 8U;i < 16U;i++){
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if((1U << i) & pin){
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reg = GPIO_CTL1(gpio_periph);
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/* clear the specified pin mode bits */
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reg &= ~GPIO_MODE_MASK(i - 8U);
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/* set the specified pin mode bits */
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reg |= GPIO_MODE_SET(i - 8U, temp_mode);
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/* set IPD or IPU */
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if(GPIO_MODE_IPD == mode){
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/* reset the corresponding OCTL bit */
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GPIO_BC(gpio_periph) = (uint32_t)((1U << i) & pin);
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}else{
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/* set the corresponding OCTL bit */
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if(GPIO_MODE_IPU == mode){
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GPIO_BOP(gpio_periph) = (uint32_t)((1U << i) & pin);
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}
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}
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/* set GPIO_CTL1 register */
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GPIO_CTL1(gpio_periph) = reg;
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}
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}
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}
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#define GPIO_SET_OUTPUT(port, pin) GPIO_INIT(port, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, pin)
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#define GPIO_SET_INPUT(port, pin) GPIO_INIT(port, GPIO_MODE_IN_FLOATING, GPIO_OSPEED_50MHZ, pin)
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static void gpio_tog_sclk(void *data)
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{
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struct gd32_spi_bit_data *bd = data;
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if (GPIO_OUTPUT_BIT_GET(bd->sclk.port, bd->sclk.pin) == SET)
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{
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GPIO_BIT_RESET(bd->sclk.port, bd->sclk.pin);
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}
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else
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{
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GPIO_BIT_SET(bd->sclk.port, bd->sclk.pin);
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}
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}
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static void gpio_set_sclk(void *data, rt_int32_t state)
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{
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struct gd32_spi_bit_data *bd = data;
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if (state)
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{
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GPIO_BIT_SET(bd->sclk.port, bd->sclk.pin);
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}
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else
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{
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GPIO_BIT_RESET(bd->sclk.port, bd->sclk.pin);
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}
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}
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static void gpio_set_mosi(void *data, rt_int32_t state)
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{
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struct gd32_spi_bit_data *bd = data;
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if (state)
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{
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GPIO_BIT_SET(bd->mosi.port, bd->mosi.pin);
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}
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else
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{
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GPIO_BIT_RESET(bd->mosi.port, bd->mosi.pin);
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}
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}
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static void gpio_set_miso(void *data, rt_int32_t state)
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{
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struct gd32_spi_bit_data *bd = data;
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if (state)
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{
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GPIO_BIT_SET(bd->miso.port, bd->miso.pin);
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}
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else
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{
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GPIO_BIT_RESET(bd->miso.port, bd->miso.pin);
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}
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}
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static rt_int32_t gpio_get_sclk(void *data)
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{
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struct gd32_spi_bit_data *bd = data;
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return GPIO_INPUT_BIT_GET(bd->sclk.port, bd->sclk.pin);
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}
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static rt_int32_t gpio_get_mosi(void *data)
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{
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struct gd32_spi_bit_data *bd = data;
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return GPIO_INPUT_BIT_GET(bd->mosi.port, bd->mosi.pin);
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}
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static rt_int32_t gpio_get_miso(void *data)
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{
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struct gd32_spi_bit_data *bd = data;
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return GPIO_INPUT_BIT_GET(bd->miso.port, bd->miso.pin);
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}
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static void gpio_dir_mosi(void *data, rt_int32_t state)
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{
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struct gd32_spi_bit_data *bd = data;
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if (state)
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{
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GPIO_SET_INPUT(bd->mosi.port, bd->mosi.pin);
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}
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else
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{
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GPIO_SET_OUTPUT(bd->mosi.port, bd->mosi.pin);
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}
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}
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static void gpio_dir_miso(void *data, rt_int32_t state)
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{
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struct gd32_spi_bit_data *bd = data;
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if (state)
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{
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GPIO_SET_INPUT(bd->miso.port, bd->miso.pin);
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}
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else
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{
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GPIO_SET_OUTPUT(bd->miso.port, bd->miso.pin);
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}
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}
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static void gpio_udelay(rt_uint32_t us)
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{
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int i = ((rcu_clock_freq_get(CK_SYS) / 4000000) * us);
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while (i)
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{
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i--;
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}
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}
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static void soft_spi_gpio_init(const struct gd32_spi_bit_data *bd)
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{
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rcu_periph_clock_enable(bd->sclk.clk);
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rcu_periph_clock_enable(bd->mosi.clk);
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rcu_periph_clock_enable(bd->miso.clk);
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gpio_init(bd->sclk.port, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, bd->sclk.pin);
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gpio_init(bd->mosi.port, GPIO_MODE_OUT_PP, GPIO_OSPEED_50MHZ, bd->mosi.pin);
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gpio_init(bd->miso.port, GPIO_MODE_IN_FLOATING, GPIO_OSPEED_50MHZ, bd->miso.pin);
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GPIO_BIT_SET(bd->sclk.port, bd->sclk.pin);
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GPIO_BIT_SET(bd->mosi.port, bd->mosi.pin);
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GPIO_BIT_SET(bd->miso.port, bd->miso.pin);
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}
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int rt_soft_spi_init(void)
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{
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int result = 0;
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{
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static const struct gd32_spi_bit_data spi1_bdata =
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{
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.sclk = { RCU_GPIOB, GPIOB, GPIO_PIN_13},
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.mosi = { RCU_GPIOB, GPIOB, GPIO_PIN_15},
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.miso = { RCU_GPIOB, GPIOB, GPIO_PIN_14},
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};
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static struct rt_spi_bit_ops spi1_bops =
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{
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.data = (void *)&spi1_bdata,
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.tog_sclk = gpio_tog_sclk,
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.set_sclk = gpio_set_sclk,
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.set_mosi = gpio_set_mosi,
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.set_miso = gpio_set_miso,
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.get_sclk = gpio_get_sclk,
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.get_mosi = gpio_get_mosi,
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.get_miso = gpio_get_miso,
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.dir_mosi = gpio_dir_mosi,
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.dir_miso = gpio_dir_miso,
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.udelay = gpio_udelay,
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};
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struct rt_spi_bit_obj spi1_obj;
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soft_spi_gpio_init(&spi1_bdata);
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rt_spi_bit_add_bus(&spi1_obj, "spi3", &spi1_bops);
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}
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return result;
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}
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INIT_BOARD_EXPORT(rt_soft_spi_init);
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#endif
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