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93 lines
3.7 KiB
93 lines
3.7 KiB
//////////////////////////////////////////////////////////////////////////
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/// COPYRIGHT NOTICE
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/// Copyright (c) 2023 CCSENS
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/// All rights reserved.
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///
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/// @file main.c
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/// @brief main app
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///
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///(本文件实现的功能的详述)
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///
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/// @version 1.1 CCsens technology
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/// @author CC
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/// @date 20150102
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///
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///
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/// 修订说明:最初版本
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/// Modified by:
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/// Modified date:
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/// Version:
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/// Descriptions:
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//////////////////////////////////////////////////////////////////////////
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/*****************************************************************************
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update by cc @201700110
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针对多串口 和 单一串口 有区别 每个串口是独立的还是分开的有讲究 程序是复杂的还是软件应用简单是
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个需要平衡的事情.
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clib/clib.c:
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公用的函数 和硬件无关
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放置串行模式(串口等其他通讯总线类的输出)输出的函数,
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一些覆盖模式输出的(lcd等固屏输出的)的也可使用
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void Lc_print(void (*L0pf_send_uc)(char ww), char *dat,...)
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-----------------------------------------------------------------------------------------
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uartcom/Uprotocol2app
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协议到应用
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为了适应不同的通讯协议需要不同的uart口来对应 和应用相关
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typedef struct _ts_lcm_pro_; 应用协议包的定义? LCM的协议------------
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L3_UARTcom0_exp_protocol 解析应用协议
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-----------------------------------------------------------------------------------------
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uartcom/urec2protocol: 接收到的数据放入到指向特定协议的缓存中,和协议的格式有关 一般分为 标头式或者标尾式
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公用的串口通讯定义
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struct _s_uart_rec_ 的公共协议包(关键的结构体)的声明------struct _s_uart_rec_
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void L1_uart_2buf(struct _s_uart_rec_ *p)串行数据保存到指向特定协议的缓冲中
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--------------------------------------------------------------------------------------------
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msp/uartx.c 底层代码 和cpu相关 缓存发送也放在里面
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L0_uart3_Init
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uart3_IRQHandler
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L0_Usend_uc------UserDef
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-----------------------------------------------------------------------------------------
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********************************************************************************/
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#ifndef _uart3_H
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#define _uart3_H
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#include "bsp_config.h"
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//#include "tpc_modbus.h"
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#include "msp_uartN.h"
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//#define S4SM0 BITN7
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#define D_UART3_ES_INT(x) (x) ? (BITN_1(IE2,ES3)) : (BITN_0(IE2,ES3))
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//#define D_uart3_ES_INT_CLOSE() BITN_0(IE2,ES3)
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//#define D_uart3_ES_INT_OPEN() BITN_1(IE2,ES3)
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#define L0_uart3_IntRI() (S3CON & S3RI)//BITN_G(SCON,U0RI)
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#define L0_uart3_IntTI() (S3CON & S3TI)//BITN_G(SCON,U0TI)
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#define L0_uart3_IntRIClear(); BITN_0(S3CON,S3RI)
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#define L0_uart3_IntTIClear(); BITN_0(S3CON,S3TI)
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#define L0_uart3_set(x) S3BUF = (x);
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#define L0_uart3_get() (S3BUF)
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//<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<
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void L0_uart3_buf_init(void);
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void L0_uart3_sendArray(U8 * buf, U16 len);
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#define L0_uart3_uc(X) L0_uartN_uc(D_UART3,X)
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#define L0_uart3_us(X) L0_uartN_us(D_UART3,X)
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#define L0_uart3_ul(X) L0_uartN_ul(D_UART3,X)
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#define L0_uart3_0d0a() L0_uartN_0d0a(D_UART3)
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#define L0_uart3_uchex(X) L0_uartN_uchex(D_UART3,X)
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#define L0_uart3_ushex(X) L0_uartN_ushex(D_UART3,X)
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#define L0_uart3_ulhex(X) L0_uartN_ulhex(D_UART3,X)
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#define L0_uart3_sendstr(buf) L0_uartN_sendstr(D_UART3,buf)
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#define L1_uart3_sendArray(buf,len) L0_uartN_sendArray(D_UART3,(buf),(len))
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#define L1_uart3_sendArrayhex(buf,len) L0_uartN_uchexArray(D_UART3,(buf),(len))
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extern void L2_uart3_overtime_callback(void);
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#endif //#ifndef _uart3_H
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