modify XiUOS DIR : (1.add plc_demo in APP_Framework/control_app; 2.add industrial_network、industrial_fieldbus and industrial_wlan; 3.add XiZi_AIoT and modify XiZi as XiZi_IIoT.)
This commit is contained in:
@@ -0,0 +1,14 @@
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menuconfig BSP_USING_UART1
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bool "Enable UART1"
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default y
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if BSP_USING_UART1
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config SERIAL_BUS_NAME_1
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string "serial bus name"
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default "uart1"
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config SERIAL_DRV_NAME_1
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string "serial bus driver name"
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default "uart1_drv"
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config SERIAL_1_DEVICE_NAME_0
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string "serial bus device name"
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default "uart1_dev1"
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endif
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@@ -0,0 +1,4 @@
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SRC_FILES := connect_uart.c
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include $(KERNEL_ROOT)/compiler.mk
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@@ -0,0 +1,393 @@
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/*
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* Copyright (c) 2020 AIIT XUOS Lab
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* XiUOS is licensed under Mulan PSL v2.
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* You can use this software according to the terms and conditions of the Mulan PSL v2.
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* You may obtain a copy of Mulan PSL v2 at:
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* http://license.coscl.org.cn/MulanPSL2
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* THIS SOFTWARE IS PROVIDED ON AN "AS IS" BASIS, WITHOUT WARRANTIES OF ANY KIND,
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* EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO NON-INFRINGEMENT,
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* MERCHANTABILITY OR FIT FOR A PARTICULAR PURPOSE.
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* See the Mulan PSL v2 for more details.
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*/
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/**
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* @file connect_usart.c
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* @brief support ch32v307 vct6 uart function and register to bus framework
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* @version 1.0
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* @author AIIT XUOS Lab
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* @date 2022-08-01
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*/
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#include <xizi.h>
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#include "ch32v30x.h"
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#include "xsconfig.h"
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#include "connect_uart.h"
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#include "ch32v30x_usart.h"
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/* uart driver */
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static void SerialCfgParamCheck(struct SerialCfgParam* serial_cfg_default, struct SerialCfgParam* serial_cfg_new)
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{
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struct SerialDataCfg *data_cfg_default = &serial_cfg_default->data_cfg;
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struct SerialDataCfg *data_cfg_new = &serial_cfg_new->data_cfg;
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if ((data_cfg_default->serial_baud_rate != data_cfg_new->serial_baud_rate) && (data_cfg_new->serial_baud_rate)) {
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data_cfg_default->serial_baud_rate = data_cfg_new->serial_baud_rate;
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}
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if ((data_cfg_default->serial_bit_order != data_cfg_new->serial_bit_order) && (data_cfg_new->serial_bit_order)) {
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data_cfg_default->serial_bit_order = data_cfg_new->serial_bit_order;
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}
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if ((data_cfg_default->serial_buffer_size != data_cfg_new->serial_buffer_size) && (data_cfg_new->serial_buffer_size)) {
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data_cfg_default->serial_buffer_size = data_cfg_new->serial_buffer_size;
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}
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if ((data_cfg_default->serial_data_bits != data_cfg_new->serial_data_bits) && (data_cfg_new->serial_data_bits)) {
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data_cfg_default->serial_data_bits = data_cfg_new->serial_data_bits;
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}
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if ((data_cfg_default->serial_invert_mode != data_cfg_new->serial_invert_mode) && (data_cfg_new->serial_invert_mode)) {
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data_cfg_default->serial_invert_mode = data_cfg_new->serial_invert_mode;
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}
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if ((data_cfg_default->serial_parity_mode != data_cfg_new->serial_parity_mode) && (data_cfg_new->serial_parity_mode)) {
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data_cfg_default->serial_parity_mode = data_cfg_new->serial_parity_mode;
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}
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if ((data_cfg_default->serial_stop_bits != data_cfg_new->serial_stop_bits) && (data_cfg_new->serial_stop_bits)) {
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data_cfg_default->serial_stop_bits = data_cfg_new->serial_stop_bits;
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}
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if ((data_cfg_default->serial_timeout != data_cfg_new->serial_timeout) && (data_cfg_new->serial_timeout)) {
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data_cfg_default->serial_timeout = data_cfg_new->serial_timeout;
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}
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}
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static void UartIsr(struct SerialDriver *serial_drv, struct SerialHardwareDevice *serial_dev)
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{
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struct SerialCfgParam *serial_cfg = (struct SerialCfgParam *)serial_drv->private_data;
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if (RESET != USART_GetITStatus((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_IT_RXNE))
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{
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SerialSetIsr(serial_dev, SERIAL_EVENT_RX_IND);
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USART_ClearITPendingBit((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_IT_RXNE);
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}
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}
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static uint32 SerialInit(struct SerialDriver *serial_drv, struct BusConfigureInfo *configure_info)
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{
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NULL_PARAM_CHECK(serial_drv);
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struct SerialCfgParam* serial_cfg = (struct SerialCfgParam*)serial_drv->private_data;
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// struct UsartHwCfg *serial_hw_cfg = (struct UsartHwCfg *)serial_cfg->hw_cfg.private_data;
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if (configure_info->private_data) {
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struct SerialCfgParam *serial_cfg_new = (struct SerialCfgParam *)configure_info->private_data;
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SerialCfgParamCheck(serial_cfg, serial_cfg_new);
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}
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struct SerialHardwareDevice *serial_dev = (struct SerialHardwareDevice *)serial_drv->driver.owner_bus->owner_haldev;
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struct SerialDevParam *dev_param = (struct SerialDevParam *)serial_dev->haldev.private_data;
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// config serial receive sem timeout
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dev_param->serial_timeout = serial_cfg->data_cfg.serial_timeout;
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// init usart type def
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GPIO_InitTypeDef GPIO_InitStructure;
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_USART1 | RCC_APB2Periph_GPIOA, ENABLE);
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GPIO_InitStructure.GPIO_Pin = GPIO_Pin_9;
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GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz;
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GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AF_PP;
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GPIO_Init(GPIOA, &GPIO_InitStructure);
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USART_InitTypeDef USART_InitStructure;
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USART_InitStructure.USART_BaudRate = serial_cfg->data_cfg.serial_baud_rate;
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switch (serial_cfg->data_cfg.serial_data_bits)
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{
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case DATA_BITS_8:
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USART_InitStructure.USART_WordLength = USART_WordLength_8b;
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break;
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case DATA_BITS_9:
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USART_InitStructure.USART_WordLength = USART_WordLength_9b;
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break;
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default:
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USART_InitStructure.USART_WordLength = USART_WordLength_8b;
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break;
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}
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switch (serial_cfg->data_cfg.serial_stop_bits)
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{
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case STOP_BITS_1:
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USART_InitStructure.USART_StopBits = USART_StopBits_1;
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break;
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case STOP_BITS_2:
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USART_InitStructure.USART_StopBits = USART_StopBits_2;
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break;
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default:
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USART_InitStructure.USART_StopBits = USART_StopBits_1;
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break;
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}
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switch (serial_cfg->data_cfg.serial_parity_mode)
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{
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case PARITY_NONE:
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USART_InitStructure.USART_Parity = USART_Parity_No;
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break;
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case PARITY_ODD:
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USART_InitStructure.USART_Parity = USART_Parity_Odd;
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break;
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case PARITY_EVEN:
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USART_InitStructure.USART_Parity = USART_Parity_Even;
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break;
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default:
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USART_InitStructure.USART_Parity = USART_Parity_No;
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break;
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}
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USART_InitStructure.USART_Mode = USART_Mode_Rx | USART_Mode_Tx;
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USART_InitStructure.USART_HardwareFlowControl = USART_HardwareFlowControl_None;
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USART_Init(USART1, &USART_InitStructure);
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USART_Cmd(USART1, ENABLE);
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// usart_hardware_flow_rts_config(serial_cfg->hw_cfg.serial_register_base, USART_RTS_DISABLE);
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// usart_hardware_flow_cts_config(serial_cfg->hw_cfg.serial_register_base, USART_CTS_DISABLE);
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return EOK;
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}
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static uint32 SerialConfigure(struct SerialDriver *serial_drv, int serial_operation_cmd)
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{
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NULL_PARAM_CHECK(serial_drv);
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struct SerialCfgParam *serial_cfg = (struct SerialCfgParam *)serial_drv->private_data;
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switch (serial_operation_cmd)
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{
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case OPER_CLR_INT:
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NVIC_DisableIRQ(serial_cfg->hw_cfg.serial_irq_interrupt);
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USART_ITConfig((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_IT_RXNE, DISABLE);
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break;
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case OPER_SET_INT:
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NVIC_EnableIRQ(serial_cfg->hw_cfg.serial_irq_interrupt);
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/* enable USART0 receive interrupt */
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USART_ITConfig((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_IT_RXNE, ENABLE);
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break;
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}
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return EOK;
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}
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static uint32 SerialDrvConfigure(void *drv, struct BusConfigureInfo *configure_info)
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{
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NULL_PARAM_CHECK(drv);
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NULL_PARAM_CHECK(configure_info);
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x_err_t ret = EOK;
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int serial_operation_cmd;
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struct SerialDriver *serial_drv = (struct SerialDriver *)drv;
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switch (configure_info->configure_cmd)
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{
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case OPE_INT:
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ret = SerialInit(serial_drv, configure_info);
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break;
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case OPE_CFG:
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serial_operation_cmd = *(int *)configure_info->private_data;
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ret = SerialConfigure(serial_drv, serial_operation_cmd);
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break;
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default:
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break;
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}
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return ret;
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}
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static int SerialPutChar(struct SerialHardwareDevice *serial_dev, char c)
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{
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struct SerialCfgParam* serial_cfg = (struct SerialCfgParam*)serial_dev->private_data;
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while (USART_GetFlagStatus((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_FLAG_TXE) == RESET);
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USART_SendData((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, (uint8_t) c);
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return 0;
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}
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static int SerialGetChar(struct SerialHardwareDevice *serial_dev)
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{
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int ch = -1;
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struct SerialCfgParam *serial_cfg = (struct SerialCfgParam *)serial_dev->private_data;
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if (RESET != USART_GetFlagStatus((USART_TypeDef *)serial_cfg->hw_cfg.serial_register_base, USART_FLAG_RXNE))
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{
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ch = USART_ReceiveData((USART_TypeDef*)serial_cfg->hw_cfg.serial_register_base) & 0xff;
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}
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return ch;
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}
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static const struct SerialDataCfg data_cfg_init =
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{
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.serial_baud_rate = BAUD_RATE_115200,
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.serial_data_bits = DATA_BITS_8,
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.serial_stop_bits = STOP_BITS_1,
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.serial_parity_mode = PARITY_NONE,
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.serial_bit_order = BIT_ORDER_LSB,
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.serial_invert_mode = NRZ_NORMAL,
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.serial_buffer_size = SERIAL_RB_BUFSZ,
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.serial_timeout = WAITING_FOREVER,
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};
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/*manage the serial device operations*/
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static const struct SerialDrvDone drv_done =
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{
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.init = SerialInit,
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.configure = SerialConfigure,
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};
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/*manage the serial device hal operations*/
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static struct SerialHwDevDone hwdev_done =
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{
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.put_char = SerialPutChar,
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.get_char = SerialGetChar,
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};
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static int BoardSerialBusInit(struct SerialBus *serial_bus, struct SerialDriver *serial_driver, const char *bus_name, const char *drv_name)
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{
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x_err_t ret = EOK;
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/*Init the serial bus */
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ret = SerialBusInit(serial_bus, bus_name);
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if (EOK != ret) {
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KPrintf("InitHwUart SerialBusInit error %d\n", ret);
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return ERROR;
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}
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/*Init the serial driver*/
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ret = SerialDriverInit(serial_driver, drv_name);
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if (EOK != ret) {
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KPrintf("InitHwUart SerialDriverInit error %d\n", ret);
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return ERROR;
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}
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/*Attach the serial driver to the serial bus*/
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ret = SerialDriverAttachToBus(drv_name, bus_name);
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if (EOK != ret) {
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KPrintf("InitHwUart SerialDriverAttachToBus error %d\n", ret);
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return ERROR;
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}
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return ret;
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}
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/*Attach the serial device to the serial bus*/
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static int BoardSerialDevBend(struct SerialHardwareDevice *serial_device, void *serial_param, const char *bus_name, const char *dev_name)
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{
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x_err_t ret = EOK;
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ret = SerialDeviceRegister(serial_device, serial_param, dev_name);
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if (EOK != ret) {
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KPrintf("InitHwUart SerialDeviceInit device %s error %d\n", dev_name, ret);
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return ERROR;
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}
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ret = SerialDeviceAttachToBus(dev_name, bus_name);
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if (EOK != ret) {
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KPrintf("InitHwUart SerialDeviceAttachToBus device %s error %d\n", dev_name, ret);
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return ERROR;
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}
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return ret;
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}
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#ifdef BSP_USING_UART1
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struct SerialDriver serial_driver_1;
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struct SerialHardwareDevice serial_device_1;
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void USART1_IRQHandler(void) __attribute__((interrupt("WCH-Interrupt-fast")));
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void USART1_IRQHandler(void)
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{
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GET_INT_SP();
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x_base level;
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level= DisableLocalInterrupt();
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isrManager.done->incCounter();
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EnableLocalInterrupt(level);
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UartIsr(&serial_driver_1, &serial_device_1);
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level = DisableLocalInterrupt();
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isrManager.done->decCounter();
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EnableLocalInterrupt(level);
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FREE_INT_SP();
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}
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#endif
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int InitHwUart(void)
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{
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x_err_t ret = EOK;
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static struct SerialBus serial_bus;
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memset(&serial_bus, 0, sizeof(struct SerialBus));
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memset(&serial_driver_1, 0, sizeof(struct SerialDriver));
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memset(&serial_device_1, 0, sizeof(struct SerialHardwareDevice));
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static struct SerialCfgParam serial_cfg;
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memset(&serial_cfg, 0, sizeof(struct SerialCfgParam));
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static struct SerialDevParam serial_dev_param;
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memset(&serial_dev_param, 0, sizeof(struct SerialDevParam));
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serial_driver_1.drv_done = &drv_done;
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serial_driver_1.configure = &SerialDrvConfigure;
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serial_device_1.hwdev_done = &hwdev_done;
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serial_cfg.data_cfg = data_cfg_init;
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#ifdef BSP_USING_UART1
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serial_cfg.hw_cfg.serial_register_base = (uint32)USART1;
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serial_cfg.hw_cfg.serial_irq_interrupt = USART1_IRQn;
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#endif
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serial_driver_1.private_data = (void*)&serial_cfg;
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serial_dev_param.serial_work_mode = SIGN_OPER_INT_RX;
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serial_device_1.haldev.private_data = (void *)&serial_dev_param;
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ret = BoardSerialBusInit(&serial_bus, &serial_driver_1, SERIAL_BUS_NAME_1, SERIAL_DRV_NAME_1);
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if (EOK != ret) {
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KPrintf("InitHwUart uarths error ret %u\n", ret);
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return ERROR;
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}
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ret = BoardSerialDevBend(&serial_device_1, (void *)&serial_cfg, SERIAL_BUS_NAME_1, SERIAL_1_DEVICE_NAME_0);
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if (EOK != ret) {
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KPrintf("InitHwUart uarths error ret %u\n", ret);
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return ERROR;
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}
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GPIO_InitTypeDef gpio_init_struct;
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RCC_APB2PeriphClockCmd(RCC_APB2Periph_USART1 | RCC_APB2Periph_GPIOA, ENABLE);
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gpio_init_struct.GPIO_Pin = GPIO_Pin_9;
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gpio_init_struct.GPIO_Speed = GPIO_Speed_50MHz;
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gpio_init_struct.GPIO_Mode = GPIO_Mode_AF_PP;
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GPIO_Init(GPIOA, &gpio_init_struct);
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gpio_init_struct.GPIO_Pin = GPIO_Pin_10;
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gpio_init_struct.GPIO_Speed = GPIO_Speed_50MHz;
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gpio_init_struct.GPIO_Mode = GPIO_Mode_IN_FLOATING;
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GPIO_Init(GPIOA, &gpio_init_struct);
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USART_InitTypeDef usart_init_struct;
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usart_init_struct.USART_BaudRate = 115200;
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usart_init_struct.USART_HardwareFlowControl = USART_HardwareFlowControl_None;
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usart_init_struct.USART_Mode = USART_Mode_Tx|USART_Mode_Rx;
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usart_init_struct.USART_WordLength = USART_WordLength_8b;
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usart_init_struct.USART_StopBits = USART_StopBits_1;
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usart_init_struct.USART_Parity = USART_Parity_No;
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USART_Init((USART_TypeDef *)serial_cfg.hw_cfg.serial_register_base, &usart_init_struct);
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USART_Cmd((USART_TypeDef*)serial_cfg.hw_cfg.serial_register_base, ENABLE);
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return ret;
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}
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