提交 ec311ee5 编写于 作者: S Sherman

[add] 添加 DAC、ADC、SPI 驱动

上级 ddc5a84d
......@@ -95,6 +95,52 @@ menu "Hardware Drivers Config"
endchoice
endif
menuconfig BSP_USING_SPI
bool "Enable SPI BUS"
default n
select RT_USING_SPI
if BSP_USING_SPI
config BSP_SPI_USING_DTC_DMA
bool "Enable SPI DTC transfers data without using the CPU."
default n
config BSP_USING_SPI0
bool "Enable SPI0 BUS"
default n
config BSP_USING_SPI1
bool "Enable SPI1 BUS"
default n
endif
menuconfig BSP_USING_ADC
bool "Enable ADC"
default n
select RT_USING_ADC
if BSP_USING_ADC
config BSP_USING_ADC0
bool "Enable ADC0"
default n
config BSP_USING_ADC1
bool "Enable ADC1"
default n
endif
menuconfig BSP_USING_DAC
bool "Enable DAC"
default n
select RT_USING_DAC
if BSP_USING_DAC
config BSP_USING_DAC0
bool "Enable DAC0"
default n
config BSP_USING_DAC1
bool "Enable DAC1"
default n
endif
endmenu
menu "Board extended module Drivers"
......
......@@ -29,6 +29,15 @@ if GetDepend(['RT_USING_I2C', 'RT_USING_I2C_BITOPS']):
if GetDepend('BSP_USING_I2C0') or GetDepend('BSP_USING_I2C1'):
src += ['drv_soft_i2c.c']
if GetDepend(['RT_USING_SPI']):
src += ['drv_spi.c']
if GetDepend(['RT_USING_ADC']):
src += ['drv_adc.c']
if GetDepend(['RT_USING_DAC']):
src += ['drv_dac.c']
path = [cwd]
path += [cwd + '/config']
......
......@@ -21,6 +21,14 @@ extern "C" {
#ifdef SOC_SERIES_R7FA6M4AF
#include "ra6m4/uart_config.h"
#ifdef RT_USING_ADC
#include "ra6m4/adc_config.h"
#endif
#ifdef RT_USING_DAC
#include "ra6m4/dac_config.h"
#endif
#endif/* SOC_SERIES_R7FA6M4AF */
#ifdef __cplusplus
......
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-19 Mr.Tiger first version
*/
#ifndef __ADC_CONFIG_H__
#define __ADC_CONFIG_H__
#include <rtthread.h>
#include <rtdevice.h>
#include "hal_data.h"
#ifdef __cplusplus
extern "C" {
#endif
#if defined(BSP_USING_ADC0) || defined(BSP_USING_ADC1)
struct ra_adc_map
{
char name;
const adc_cfg_t *g_cfg;
const adc_instance_ctrl_t *g_ctrl;
const adc_channel_cfg_t *g_channel_cfg;
};
struct ra_dev
{
rt_adc_device_t ra_adc_device_t;
struct ra_adc_map *ra_adc_dev;
};
#endif
#endif
#ifdef __cplusplus
}
#endif
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-19 Mr.Tiger first version
*/
#ifndef __DAC_CONFIG_H__
#define __DAC_CONFIG_H__
#include <rtthread.h>
#include <rtdevice.h>
#include "hal_data.h"
#ifdef __cplusplus
extern "C" {
#endif
#if defined(BSP_USING_DAC0) && defined(BSP_USING_DAC1)
struct ra_dac_map
{
char name;
const struct st_dac_cfg *g_cfg;
const struct st_dac_instance_ctrl *g_ctrl;
};
struct ra_dac_dev
{
rt_dac_device_t ra_dac_device_t;
struct ra_dac_map *ra_dac_map_dev;
};
#endif
#endif
#ifdef __cplusplus
}
#endif
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-19 Mr.Tiger first version
*/
#include "drv_config.h"
#ifdef RT_USING_ADC
// #define DRV_DEBUG
#define DBG_TAG "drv.adc"
#ifdef DRV_DEBUG
#define DBG_LVL DBG_LOG
#else
#define DBG_LVL DBG_INFO
#endif /* DRV_DEBUG */
#include <rtdbg.h>
struct ra_adc_map ra_adc[] =
{
#if defined(BSP_USING_ADC0)
{'0', &g_adc0_cfg, &g_adc0_ctrl, &g_adc0_channel_cfg},
#endif
#if defined(BSP_USING_ADC1)
{'1', &g_adc1_cfg, &g_adc1_ctrl, &g_adc1_channel_cfg},
#endif
};
#if defined(BSP_USING_ADC0)
struct rt_adc_device adc0_device;
struct ra_dev _ra_adc0_device = {.ra_adc_device_t = &adc0_device, .ra_adc_dev = &ra_adc[0]};
#endif
#if defined(BSP_USING_ADC1)
struct rt_adc_device adc1_device;
struct ra_dev _ra_adc1_device = {.ra_adc_device_t = &adc1_device, .ra_adc_dev = &ra_adc[1]};
#endif
static rt_err_t ra_adc_enabled(struct rt_adc_device *device, rt_uint32_t channel, rt_bool_t enabled)
{
RT_ASSERT(device != RT_NULL);
struct ra_adc_map *adc = (struct ra_adc_map *)device->parent.user_data;
/**< start adc*/
if (enabled)
{
if (FSP_SUCCESS != R_ADC_ScanStart((adc_ctrl_t *)adc->g_ctrl))
{
LOG_E("start adc%c failed.", adc->name);
return -RT_ERROR;
}
}
else
{
/**< stop adc*/
if (FSP_SUCCESS != R_ADC_ScanStop((adc_ctrl_t *)adc->g_ctrl))
{
LOG_E("stop adc%c failed.", adc->name);
return -RT_ERROR;
}
}
return RT_EOK;
}
rt_err_t ra_adc_close(struct rt_adc_device *device)
{
RT_ASSERT(device != RT_NULL);
struct ra_adc_map *adc = (struct ra_adc_map *)(struct ra_adc_map *)device->parent.user_data;
if (FSP_SUCCESS != R_ADC_Close((adc_ctrl_t *)adc->g_ctrl))
{
LOG_E("close adc%c failed.", adc->name);
return -RT_ERROR;
}
return RT_EOK;
}
static rt_err_t ra_get_adc_value(struct rt_adc_device *device, rt_uint32_t channel, rt_uint32_t *value)
{
RT_ASSERT(device != RT_NULL);
struct ra_adc_map *adc = (struct ra_adc_map *)device->parent.user_data;
if (RT_EOK != R_ADC_Read32((adc_ctrl_t *)adc->g_ctrl, channel, value))
{
LOG_E("get adc value failed.\n");
return -RT_ERROR;
}
return RT_EOK;
}
static const struct rt_adc_ops ra_adc_ops =
{
.enabled = ra_adc_enabled,
.convert = ra_get_adc_value,
};
static int ra_adc_init(void)
{
#if defined(BSP_USING_ADC0)
R_ADC_Open((adc_ctrl_t *)_ra_adc0_device.ra_adc_dev->g_ctrl,
(adc_cfg_t const * const)_ra_adc0_device.ra_adc_dev->g_cfg);
R_ADC_ScanCfg((adc_ctrl_t *)_ra_adc0_device.ra_adc_dev->g_ctrl,
(adc_cfg_t const * const)_ra_adc0_device.ra_adc_dev->g_channel_cfg);
if (RT_EOK != rt_hw_adc_register(_ra_adc0_device.ra_adc_device_t, "adc0", &ra_adc_ops, (void *)_ra_adc0_device.ra_adc_dev))
{
LOG_E("adc0 register failed");
return -RT_ERROR;
}
#endif
#if defined(BSP_USING_ADC1)
R_ADC_Open((adc_ctrl_t *)_ra_adc1_device.ra_adc_dev->g_ctrl,
(adc_cfg_t const * const)_ra_adc1_device.ra_adc_dev->g_cfg);
R_ADC_ScanCfg((adc_ctrl_t *)_ra_adc1_device.ra_adc_dev->g_ctrl,
(adc_cfg_t const * const)_ra_adc1_device.ra_adc_dev->g_channel_cfg);
if (RT_EOK != rt_hw_adc_register(_ra_adc1_device.ra_adc_device_t, "adc1", &ra_adc_ops, (void *)_ra_adc1_device.ra_adc_dev))
{
LOG_E("adc1 register failed");
return -RT_ERROR;
}
#endif
return RT_EOK;
}
INIT_BOARD_EXPORT(ra_adc_init);
#endif
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-19 Mr.Tiger first version
*/
#include <rtthread.h>
#include "drv_config.h"
#ifdef RT_USING_DAC
//#define DRV_DEBUG
#define DBG_TAG "drv.dac"
#ifdef DRV_DEBUG
#define DBG_LVL DBG_LOG
#else
#define DBG_LVL DBG_INFO
#endif /* DRV_DEBUG */
#include <rtdbg.h>
struct ra_dac_map ra_dac[] =
{
#ifdef BSP_USING_DAC0
{'0', &g_dac0_cfg, &g_dac0_ctrl},
#endif
#ifdef BSP_USING_DAC1
{'1', &g_dac1_cfg, &g_dac1_ctrl},
#endif
};
#ifdef BSP_USING_DAC0
struct rt_dac_device dac0_device;
struct ra_dac_dev _ra_dac0_device = {.ra_dac_device_t = &dac0_device, .ra_dac_map_dev = &ra_dac[0]};
#endif
#ifdef BSP_USING_DAC1
struct rt_dac_device dac1_device;
struct ra_dac_dev _ra_dac1_device = {.ra_dac_device_t = &dac1_device, .ra_dac_map_dev = &ra_dac[1]};
#endif
rt_err_t ra_dac_disabled(struct rt_dac_device *device, rt_uint32_t channel)
{
RT_ASSERT(device != RT_NULL);
struct ra_dac_map *dac = (struct ra_dac_map *)device->parent.user_data;
if (FSP_SUCCESS != R_DAC_Stop((dac_ctrl_t *)dac->g_ctrl))
{
LOG_E("dac%c stop failed.", dac->name);
return -RT_ERROR;
}
return RT_EOK;
}
rt_err_t ra_dac_enabled(struct rt_dac_device *device, rt_uint32_t channel)
{
RT_ASSERT(device != RT_NULL);
struct ra_dac_map *dac = (struct ra_dac_map *)device->parent.user_data;
if (FSP_SUCCESS != R_DAC_Start((dac_ctrl_t *)dac->g_ctrl))
{
LOG_E("dac%c start failed.", dac->name);
return -RT_ERROR;
}
return RT_EOK;
}
rt_err_t ra_dac_write(struct rt_dac_device *device, rt_uint32_t channel, rt_uint32_t *value)
{
RT_ASSERT(device != RT_NULL);
struct ra_dac_map *dac = (struct ra_dac_map *)device->parent.user_data;
if (FSP_SUCCESS != R_DAC_Write((dac_ctrl_t *)dac->g_ctrl, *value))
{
LOG_E("dac%c set value failed.", dac->name);
return -RT_ERROR;
}
return RT_EOK;
}
struct rt_dac_ops ra_dac_ops =
{
.disabled = ra_dac_disabled,
.enabled = ra_dac_enabled,
.convert = ra_dac_write,
};
static int ra_dac_init(void)
{
#ifdef BSP_USING_DAC0
_ra_dac0_device.ra_dac_device_t->ops = &ra_dac_ops;
R_DAC_Open((dac_ctrl_t *)_ra_dac0_device.ra_dac_map_dev->g_ctrl, (dac_cfg_t const *)_ra_dac0_device.ra_dac_map_dev->g_cfg);
if (FSP_SUCCESS != rt_hw_dac_register(_ra_dac0_device.ra_dac_device_t, "dac0", &ra_dac_ops, (void *)_ra_dac0_device.ra_dac_map_dev))
{
LOG_E("dac0 register failed");
return -RT_ERROR;
}
#endif
#ifdef BSP_USING_DAC1
_ra_dac1_device.ra_dac_device_t->ops = &ra_dac_ops;
R_DAC_Open((dac_ctrl_t *)_ra_dac1_device.ra_dac_map_dev->g_ctrl, (dac_cfg_t const *) _ra_dac1_device.ra_dac_map_dev->g_cfg);
if (FSP_SUCCESS != rt_hw_dac_register(_ra_dac1_device.ra_dac_device_t, "dac1", &ra_dac_ops, (void *)_ra_dac1_device.ra_dac_map_dev))
{
LOG_E("dac1 register failed");
return -RT_ERROR;
}
#endif
return RT_EOK;
}
INIT_DEVICE_EXPORT(ra_dac_init);
#endif
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-23 Mr.Tiger first version
*/
/**< Note : Turn on any DMA mode and all SPIs will turn on DMA */
#include "drv_spi.h"
#ifdef RT_USING_SPI
//#define DRV_DEBUG
#define DBG_TAG "drv.spi"
#ifdef DRV_DEBUG
#define DBG_LVL DBG_LOG
#else
#define DBG_LVL DBG_INFO
#endif /* DRV_DEBUG */
#include <rtdbg.h>
static struct ra_spi_handle spi_handle[] =
{
#ifdef BSP_USING_SPI0
{.bus_name = "spi0", .spi_ctrl_t = &g_spi0_ctrl, .spi_cfg_t = &g_spi0_cfg,},
#endif
#ifdef BSP_USING_SPI1
{.bus_name = "spi1", .spi_ctrl_t = &g_spi1_ctrl, .spi_cfg_t = &g_spi1_cfg,},
#endif
};
static struct ra_spi spi_config[sizeof(spi_handle) / sizeof(spi_handle[0])] = {0};
void g_spi0_callback(spi_callback_args_t *p_args)
{
rt_interrupt_enter();
if (SPI_EVENT_TRANSFER_COMPLETE == p_args->event)
{
LOG_D("SPI0 cb");
}
rt_interrupt_leave();
}
void g_spi1_callback(spi_callback_args_t *p_args)
{
rt_interrupt_enter();
if (SPI_EVENT_TRANSFER_COMPLETE == p_args->event)
{
LOG_D("SPI1 cb");
}
rt_interrupt_leave();
}
static rt_err_t ra_write_message(struct rt_spi_device *device, const void *send_buf, const rt_size_t len)
{
RT_ASSERT(device != NULL);
RT_ASSERT(device->parent.user_data != NULL);
RT_ASSERT(send_buf != NULL);
RT_ASSERT(len > 0);
rt_err_t err = RT_EOK;
struct ra_spi *spi_dev = rt_container_of(device->bus, struct ra_spi, bus);
spi_dev->cs_pin = *(rt_uint32_t *)device->parent.user_data;
/**< Configure Select Line */
R_BSP_PinWrite(spi_dev->cs_pin, BSP_IO_LEVEL_HIGH);
/* Start a write transfer */
R_BSP_PinWrite(spi_dev->cs_pin, BSP_IO_LEVEL_LOW);
/**< send msessage */
err = R_SPI_Write((spi_ctrl_t *)spi_dev->ra_spi_handle_t->spi_ctrl_t, send_buf, len, spi_dev->rt_spi_cfg_t->data_width);
if (RT_EOK != err)
{
LOG_E("%s write failed.", spi_dev->ra_spi_handle_t->bus_name);
return -RT_ERROR;
}
return len;
}
static rt_err_t ra_read_message(struct rt_spi_device *device, void *recv_buf, const rt_size_t len)
{
RT_ASSERT(device != NULL);
RT_ASSERT(device->parent.user_data != NULL);
RT_ASSERT(recv_buf != NULL);
RT_ASSERT(len > 0);
rt_err_t err = RT_EOK;
struct ra_spi *spi_dev = rt_container_of(device->bus, struct ra_spi, bus);
spi_dev->cs_pin = *(rt_uint32_t *)device->parent.user_data;
/**< Configure Select Line */
R_BSP_PinWrite(spi_dev->cs_pin, BSP_IO_LEVEL_HIGH);
/* Start read transfer */
R_BSP_PinWrite(spi_dev->cs_pin, BSP_IO_LEVEL_LOW);
/**< receive message */
err = R_SPI_Read((spi_ctrl_t *)spi_dev->ra_spi_handle_t->spi_ctrl_t, recv_buf, len, spi_dev->rt_spi_cfg_t->data_width);
if (RT_EOK != err)
{
LOG_E("\n%s write failed.\n", spi_dev->ra_spi_handle_t->bus_name);
return -RT_ERROR;
}
return len;
}
static rt_err_t ra_write_read_message(struct rt_spi_device *device, struct rt_spi_message *message)
{
RT_ASSERT(device != NULL);
RT_ASSERT(message != NULL);
RT_ASSERT(message->length > 0);
rt_err_t err = RT_EOK;
struct ra_spi *spi_dev = rt_container_of(device->bus, struct ra_spi, bus);
/**< write and receive message */
err = R_SPI_WriteRead((spi_ctrl_t *)spi_dev->ra_spi_handle_t->spi_ctrl_t, message->send_buf, message->recv_buf, message->length, spi_dev->rt_spi_cfg_t->data_width);
if (RT_EOK != err)
{
LOG_E("%s write and read failed.", spi_dev->ra_spi_handle_t->bus_name);
return -RT_ERROR;
}
return message->length;
}
/**< init spi TODO : MSB does not support modification */
static rt_err_t ra_hw_spi_configure(struct rt_spi_device *device,
struct rt_spi_configuration *configuration)
{
RT_ASSERT(device != NULL);
RT_ASSERT(configuration != NULL);
rt_err_t err = RT_EOK;
struct ra_spi *spi_dev = rt_container_of(device->bus, struct ra_spi, bus);
spi_dev->cs_pin = (rt_uint32_t)device->parent.user_data;
/**< data_width : 1 -> 8 bits , 2 -> 16 bits, 4 -> 32 bits, default 32 bits*/
rt_uint8_t data_width = configuration->data_width / 8;
RT_ASSERT(data_width == 1 || data_width == 2 || data_width == 4);
configuration->data_width = configuration->data_width / 8;
spi_dev->rt_spi_cfg_t = configuration;
spi_extended_cfg_t *spi_cfg = (spi_extended_cfg_t *)spi_dev->ra_spi_handle_t->spi_cfg_t->p_extend;
/**< Configure Select Line */
R_BSP_PinWrite(spi_dev->cs_pin, BSP_IO_LEVEL_HIGH);
/**< config bitrate */
R_SPI_CalculateBitrate(spi_dev->rt_spi_cfg_t->max_hz, &spi_cfg->spck_div);
/**< init */
err = R_SPI_Open((spi_ctrl_t *)spi_dev->ra_spi_handle_t->spi_ctrl_t, (spi_cfg_t const * const)spi_dev->ra_spi_handle_t->spi_cfg_t);
/* handle error */
if (RT_EOK != err)
{
LOG_E("%s init failed.", spi_dev->ra_spi_handle_t->bus_name);
return -RT_ERROR;
}
return RT_EOK;
}
static rt_uint32_t ra_spixfer(struct rt_spi_device *device, struct rt_spi_message *message)
{
RT_ASSERT(device != NULL);
RT_ASSERT(message != NULL);
rt_err_t err = RT_EOK;
if (message->length <= 0)
{
LOG_E("buf length err.");
}
else
{
if (message->send_buf == RT_NULL && message->recv_buf != RT_NULL)
{
/**< receive message */
err = ra_read_message(device, (void *)message->recv_buf, (const rt_size_t)message->length);
}
else if (message->send_buf != RT_NULL && message->recv_buf == RT_NULL)
{
/**< send message */
err = ra_write_message(device, (const void *)message->send_buf, (const rt_size_t)message->length);
}
else if (message->send_buf != RT_NULL && message->recv_buf != RT_NULL)
{
/**< send and receive message */
err = ra_write_read_message(device, message);
}
}
return err;
}
static const struct rt_spi_ops ra_spi_ops =
{
.configure = ra_hw_spi_configure,
.xfer = ra_spixfer,
};
void rt_hw_spi_device_attach(struct rt_spi_device *device, const char *device_name, const char *bus_name, void *user_data)
{
RT_ASSERT(device != NULL);
RT_ASSERT(device_name != NULL);
RT_ASSERT(bus_name != NULL);
RT_ASSERT(user_data != NULL);
rt_err_t err = rt_spi_bus_attach_device(device, device_name, bus_name, user_data);
if (RT_EOK != err)
{
LOG_E("%s attach failed.", bus_name);
}
}
int ra_hw_spi_init(void)
{
for (rt_uint8_t spi_index = 0; spi_index < sizeof(spi_handle) / sizeof(spi_handle[0]); spi_index++)
{
spi_config[spi_index].ra_spi_handle_t = &spi_handle[spi_index];
/**< register spi bus */
rt_err_t err = rt_spi_bus_register(&spi_config[spi_index].bus, spi_handle[spi_index].bus_name, &ra_spi_ops);
if (RT_EOK != err)
{
LOG_E("%s bus register failed.", spi_config[spi_index].ra_spi_handle_t->bus_name);
}
}
return RT_EOK;
}
INIT_BOARD_EXPORT(ra_hw_spi_init);
#endif /* RT_USING_SPI */
/*
* Copyright (c) 2006-2021, RT-Thread Development Team
*
* SPDX-License-Identifier: Apache-2.0
*
* Change Logs:
* Date Author Notes
* 2021-08-23 Mr.Tiger first version
*/
#ifndef __DRV_SPI_H__
#define __DRV_SPI_H__
#include <rtthread.h>
#include <rtdevice.h>
#include "hal_data.h"
#include "board.h"
#include <rthw.h>
#include <drv_common.h>
#include <drv_config.h>
#ifdef __cplusplus
extern "C" {
#endif
#ifdef R_SPI_H
struct ra_spi_handle
{
const char *bus_name;
const spi_cfg_t *spi_cfg_t;
const spi_instance_ctrl_t *spi_ctrl_t;
};
struct ra_spi
{
rt_uint32_t cs_pin;
struct ra_spi_handle *ra_spi_handle_t;
struct rt_spi_configuration *rt_spi_cfg_t;
struct rt_spi_bus bus;
};
#endif
void rt_hw_spi_device_attach(struct rt_spi_device *device, const char *device_name, const char *bus_name, void *user_data);
#ifdef __cplusplus
}
#endif
/* stm32 spi dirver class */
#endif /*__DRV_SPI_H__ */
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