提交 09d3599f 编写于 作者: T tanek liang

[bsp] clean code

上级 bb628314
......@@ -34,17 +34,6 @@
#include <gd32f4xx.h>
void gd_eval_led_init (void)
{
/* enable the led clock */
rcu_periph_clock_enable(RCU_GPIOD);
/* configure led GPIO port */
gpio_mode_set(GPIOD, GPIO_MODE_OUTPUT, GPIO_PUPD_NONE,GPIO_PIN_4);
gpio_output_options_set(GPIOD, GPIO_OTYPE_PP, GPIO_OSPEED_50MHZ,GPIO_PIN_4);
GPIO_BC(GPIOD) = GPIO_PIN_4;
}
void rt_init_thread_entry(void* parameter)
{
/* initialization RT-Thread Components */
......@@ -52,8 +41,6 @@ void rt_init_thread_entry(void* parameter)
rt_components_init();
#endif
gd_eval_led_init();
#ifdef RT_USING_GUIENGINE
{
rt_device_t device;
......@@ -80,14 +67,6 @@ void rt_init_thread_entry(void* parameter)
#endif /* RT_USING_DFS_ELMFAT */
#endif /* DFS */
while(1)
{
GPIO_TG(GPIOD) = GPIO_PIN_4;
rt_thread_delay(RT_TICK_PER_SECOND);
}
}
int rt_application_init()
{
......
......@@ -39,7 +39,7 @@
static rt_err_t configure(struct rt_spi_device* device, struct rt_spi_configuration* configuration);
static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* message);
static struct rt_spi_ops stm32_spi_ops =
static struct rt_spi_ops gd32_spi_ops =
{
configure,
xfer
......@@ -49,7 +49,7 @@ static rt_err_t configure(struct rt_spi_device* device,
struct rt_spi_configuration* configuration)
{
struct rt_spi_bus * spi_bus = (struct rt_spi_bus *)device->bus;
struct stm32f4_spi *f4_spi = (struct stm32f4_spi *)spi_bus->parent.user_data;
struct gd32f4_spi *f4_spi = (struct gd32f4_spi *)spi_bus->parent.user_data;
spi_parameter_struct spi_init_struct;
......@@ -172,10 +172,10 @@ static rt_err_t configure(struct rt_spi_device* device,
static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* message)
{
struct rt_spi_bus * stm32_spi_bus = (struct rt_spi_bus *)device->bus;
struct stm32f4_spi *f4_spi = (struct stm32f4_spi *)stm32_spi_bus->parent.user_data;
struct rt_spi_bus * gd32_spi_bus = (struct rt_spi_bus *)device->bus;
struct gd32f4_spi *f4_spi = (struct gd32f4_spi *)gd32_spi_bus->parent.user_data;
struct rt_spi_configuration * config = &device->config;
struct stm32_spi_cs * stm32_spi_cs = device->parent.user_data;
struct gd32_spi_cs * gd32_spi_cs = device->parent.user_data;
uint32_t spi_periph = f4_spi->spi_periph;
RT_ASSERT(device != NULL);
......@@ -184,7 +184,7 @@ static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* mes
/* take CS */
if(message->cs_take)
{
gpio_bit_reset(stm32_spi_cs->GPIOx, stm32_spi_cs->GPIO_Pin);
gpio_bit_reset(gd32_spi_cs->GPIOx, gd32_spi_cs->GPIO_Pin);
DEBUG_PRINTF("spi take cs\n");
}
......@@ -206,7 +206,7 @@ static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* mes
data = *send_ptr++;
}
// Todo: replace register read/write by stm32f4 lib
// Todo: replace register read/write by gd32f4 lib
//Wait until the transmit buffer is empty
while(RESET == spi_i2s_flag_get(spi_periph, SPI_FLAG_TBE));
// Send the byte
......@@ -260,7 +260,7 @@ static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* mes
/* release CS */
if(message->cs_release)
{
gpio_bit_set(stm32_spi_cs->GPIOx, stm32_spi_cs->GPIO_Pin);
gpio_bit_set(gd32_spi_cs->GPIOx, gd32_spi_cs->GPIO_Pin);
DEBUG_PRINTF("spi release cs\n");
}
......@@ -270,7 +270,7 @@ static rt_uint32_t xfer(struct rt_spi_device* device, struct rt_spi_message* mes
static struct rt_spi_bus spi_bus[];
static const struct stm32f4_spi spis[] = {
static const struct gd32f4_spi spis[] = {
#ifdef RT_USING_SPI0
{SPI0, RCU_SPI0, &spi_bus[0]},
#endif
......@@ -298,15 +298,15 @@ static const struct stm32f4_spi spis[] = {
static struct rt_spi_bus spi_bus[ARR_LEN(spis)];
/** \brief init and register stm32 spi bus.
/** \brief init and register gd32 spi bus.
*
* \param SPI: STM32 SPI, e.g: SPI1,SPI2,SPI3.
* \param SPI: gd32 SPI, e.g: SPI1,SPI2,SPI3.
* \param spi_bus_name: spi bus name, e.g: "spi1"
* \return
*
*/
rt_err_t stm32_spi_bus_register(uint32_t spi_periph,
//struct stm32_spi_bus * stm32_spi,
rt_err_t gd32_spi_bus_register(uint32_t spi_periph,
//struct gd32_spi_bus * gd32_spi,
const char * spi_bus_name)
{
int i;
......@@ -319,38 +319,11 @@ rt_err_t stm32_spi_bus_register(uint32_t spi_periph,
{
rcu_periph_clock_enable(spis[i].spi_clk);
spis[i].spi_bus->parent.user_data = (void *)&spis[i];
rt_spi_bus_register(spis[i].spi_bus, spi_bus_name, &stm32_spi_ops);
rt_spi_bus_register(spis[i].spi_bus, spi_bus_name, &gd32_spi_ops);
return RT_EOK;
}
}
return RT_ERROR;
#ifdef SPI_USE_DMA
/* Configure the DMA handler for Transmission process */
p_spi_bus->hdma_tx.Init.Direction = DMA_MEMORY_TO_PERIPH;
p_spi_bus->hdma_tx.Init.PeriphInc = DMA_PINC_DISABLE;
//p_spi_bus->hdma_tx.Init.MemInc = DMA_MINC_ENABLE;
p_spi_bus->hdma_tx.Init.PeriphDataAlignment = DMA_PDATAALIGN_BYTE;
p_spi_bus->hdma_tx.Init.MemDataAlignment = DMA_MDATAALIGN_BYTE;
p_spi_bus->hdma_tx.Init.Mode = DMA_NORMAL;
p_spi_bus->hdma_tx.Init.Priority = DMA_PRIORITY_LOW;
p_spi_bus->hdma_tx.Init.FIFOMode = DMA_FIFOMODE_DISABLE;
p_spi_bus->hdma_tx.Init.FIFOThreshold = DMA_FIFO_THRESHOLD_FULL;
p_spi_bus->hdma_tx.Init.MemBurst = DMA_MBURST_INC4;
p_spi_bus->hdma_tx.Init.PeriphBurst = DMA_PBURST_INC4;
p_spi_bus->hdma_rx.Init.Direction = DMA_PERIPH_TO_MEMORY;
p_spi_bus->hdma_rx.Init.PeriphInc = DMA_PINC_DISABLE;
//p_spi_bus->hdma_rx.Init.MemInc = DMA_MINC_ENABLE;
p_spi_bus->hdma_rx.Init.PeriphDataAlignment = DMA_PDATAALIGN_BYTE;
p_spi_bus->hdma_rx.Init.MemDataAlignment = DMA_MDATAALIGN_BYTE;
p_spi_bus->hdma_rx.Init.Mode = DMA_NORMAL;
p_spi_bus->hdma_rx.Init.Priority = DMA_PRIORITY_HIGH;
p_spi_bus->hdma_rx.Init.FIFOMode = DMA_FIFOMODE_DISABLE;
p_spi_bus->hdma_rx.Init.FIFOThreshold = DMA_FIFO_THRESHOLD_FULL;
p_spi_bus->hdma_rx.Init.MemBurst = DMA_MBURST_INC4;
p_spi_bus->hdma_rx.Init.PeriphBurst = DMA_PBURST_INC4;
#endif
}
#endif
/*
* File : stm32f20x_40x_spi.h
* File : gd32f20x_40x_spi.h
* This file is part of RT-Thread RTOS
* COPYRIGHT (C) 2009 RT-Thread Develop Team
*
......@@ -12,15 +12,15 @@
* 20012-01-01 aozima first implementation.
*/
#ifndef STM32F20X_40X_SPI_H_INCLUDED
#define STM32F20X_40X_SPI_H_INCLUDED
#ifndef gd32F20X_40X_SPI_H_INCLUDED
#define gd32F20X_40X_SPI_H_INCLUDED
#include <rtthread.h>
#include <drivers/spi.h>
#include "gd32f4xx.h"
struct stm32f4_spi
struct gd32f4_spi
{
uint32_t spi_periph;
rcu_periph_enum spi_clk;
......@@ -28,15 +28,15 @@ struct stm32f4_spi
};
struct stm32_spi_cs
struct gd32_spi_cs
{
uint32_t GPIOx;
uint32_t GPIO_Pin;
};
/* public function */
rt_err_t stm32_spi_bus_register(uint32_t spi_periph,
//struct stm32_spi_bus * stm32_spi,
rt_err_t gd32_spi_bus_register(uint32_t spi_periph,
//struct gd32_spi_bus * gd32_spi,
const char * spi_bus_name);
#endif // STM32F20X_40X_SPI_H_INCLUDED
#endif // gd32F20X_40X_SPI_H_INCLUDED
/*
* File : stm32f20x_40x_spi.c
* File : gd32f20x_40x_spi.c
* This file is part of RT-Thread RTOS
* COPYRIGHT (C) 2009 RT-Thread Develop Team
*
......@@ -50,7 +50,7 @@ static int rt_hw_spi5_init(void)
gpio_mode_set(GPIOG, GPIO_MODE_AF, GPIO_PUPD_NONE, GPIO_PIN_10|GPIO_PIN_11| GPIO_PIN_12|GPIO_PIN_13| GPIO_PIN_14);
gpio_output_options_set(GPIOG, GPIO_OTYPE_PP, GPIO_OSPEED_200MHZ, GPIO_PIN_10|GPIO_PIN_11| GPIO_PIN_12|GPIO_PIN_13| GPIO_PIN_14);
result = stm32_spi_bus_register(SPI5, SPI_BUS_NAME);
result = gd32_spi_bus_register(SPI5, SPI_BUS_NAME);
if (result != RT_EOK)
{
return result;
......@@ -60,7 +60,7 @@ static int rt_hw_spi5_init(void)
/* attach cs */
{
static struct rt_spi_device spi_device;
static struct stm32_spi_cs spi_cs;
static struct gd32_spi_cs spi_cs;
rt_err_t result;
spi_cs.GPIOx = GPIOG;
......
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