281 lines
6.9 KiB
C
281 lines
6.9 KiB
C
/********************************** (C) COPYRIGHT *******************************
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* File Name : iap.c
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* Author : WCH
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* Version : V1.0.0
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* Date : 2023/12/21
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* Description : IAP
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*******************************************************************************
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* Copyright (c) 2021 Nanjing Qinheng Microelectronics Co., Ltd.
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* Attention: This software (modified or not) and binary are used for
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* microcontroller manufactured by Nanjing Qinheng Microelectronics.
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*******************************************************************************/
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#include "iap.h"
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#include "string.h"
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#include "flash.h"
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#include "core_riscv.h"
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/******************************************************************************/
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#define FLASH_Base 0x08000000
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#define USBD_DATA_SIZE 64
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u32 Program_addr = FLASH_Base;
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u32 Verity_addr = FLASH_Base;
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u8 Verity_Star_flag = 0;
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u8 Fast_Program_Buf[128];
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u16 CodeLen = 0;
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u8 End_Flag = 0;
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u8 EP2_Rx_Buffer[USBD_DATA_SIZE];
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#define isp_cmd_t ((isp_cmd *)EP2_Rx_Buffer)
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/*********************************************************************
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* @fn USART1_CFG
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*
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* @brief GPIOD-USART1 init
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*
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* @return
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*/
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void USART1_CFG(u32 baudrate)
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{
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// configure GPIO pins for USART mode
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GPIOD->CFGLR = 0x48B44444; // Set GPIOD Mode, Speed
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GPIOD->BCR = (((uint32_t)0x01) << 6);
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// configure USART
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USART1->CTLR2 |= USART_StopBits_1;
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USART1->CTLR1 = USART_Parity_No | USART_Mode_Rx | USART_Mode_Tx; // Set USART mode, Parity
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USART1->CTLR3 |= USART_HardwareFlowControl_None;
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USART1->BRR = (8 << 4) | 11; // 115200; use 0x34 for 460800
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USART1->CTLR1 |= ((uint16_t)0x2000); // enable USART
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}
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/*********************************************************************
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* @fn RecData_Deal
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*
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* @brief UART-USB
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*
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* @return ERR_ERROR - ERROR
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* ERR_SCUESS - SCUESS
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* ERR_End - End
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*/
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u8 RecData_Deal(void)
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{
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u8 i, s, Lenth;
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Lenth = isp_cmd_t->Len;
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switch ( isp_cmd_t->Cmd) {
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case CMD_IAP_ERASE:
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FLASH_Unlock_Fast();
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FLASH_EraseAllPages();
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s = ERR_SCUESS;
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break;
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case CMD_IAP_PROM:
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for (i = 0; i < Lenth; i++) {
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Fast_Program_Buf[CodeLen + i] = isp_cmd_t->data[i];
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}
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CodeLen += Lenth;
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if (CodeLen >= 64) {
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CH32_IAP_Program(Program_addr, (u32*) Fast_Program_Buf);
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CodeLen -= 64;
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for (i = 0; i < CodeLen; i++) {
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Fast_Program_Buf[i] = Fast_Program_Buf[64 + i];
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}
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Program_addr += 0x40;
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}
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s = ERR_SCUESS;
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break;
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case CMD_IAP_VERIFY:
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if (Verity_Star_flag == 0) {
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Verity_Star_flag = 1;
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for (i = 0; i < (64 - CodeLen); i++) {
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Fast_Program_Buf[CodeLen + i] = 0xFF;
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}
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CH32_IAP_Program(Program_addr, (u32*) Fast_Program_Buf);
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CodeLen = 0;
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}
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s = ERR_SCUESS;
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for (i = 0; i < Lenth; i++) {
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if (isp_cmd_t->data[i] != *(u8*) (Verity_addr + i)) {
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s = ERR_ERROR;
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break;
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}
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}
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Verity_addr += Lenth;
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break;
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case CMD_IAP_END:
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Verity_Star_flag = 0;
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End_Flag = 1;
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Program_addr = FLASH_Base;
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Verity_addr = FLASH_Base;
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s = ERR_End;
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FLASH->CTLR |= ((uint32_t)0x00008000);
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FLASH->CTLR |= ((uint32_t)0x00000080);
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break;
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default:
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s = ERR_ERROR;
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break;
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}
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return s;
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}
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/*********************************************************************
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* @fn GPIO_Cfg_init
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*
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* @brief GPIOC init
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*
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* @return none
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*/
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void GPIO_Cfg_init(void)
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{
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}
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/*********************************************************************
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* @fn PC0_Check
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*
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* @brief Check PC0 state
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*
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* @return 1 - IAP
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* 0 - APP
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*/
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u8 btn2_pushed(void)
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{
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// configure GPIOC
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GPIOC->BCR = GPIO_Pin_4; // configure pull-down
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GPIOC->CFGLR &= ~(0x04 << (4 * 4)); // clear PC4 config
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GPIOC->CFGLR |= 0x08 << (4 * 4); // configure PC4 as pullup/down input
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// GPIOC->BSHR = ((uint32_t)0x01);
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// is button pushed (active high)?
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return (GPIOC->INDR & GPIO_Pin_4); // ^ GPIO_Pin_4;
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}
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/*********************************************************************
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* @fn UART3_SendMultiyData
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*
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* @brief Deal device Endpoint 3 OUT.
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*
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* @param l: Data length.
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*
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* @return none
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*/
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void UART1_SendMultiyData(u8* pbuf, u8 num)
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{
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u8 i = 0;
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while(i<num)
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{
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while(USART_GetFlagStatus(USART1, USART_FLAG_TC) == RESET);
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USART_SendData(USART1, pbuf[i]);
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i++;
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}
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}
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/*********************************************************************
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* @fn UART1_SendMultiyData
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*
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* @brief USART3 send data
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*
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* @param pbuf - Packet to be sent
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* num - Number of data sent
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*
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* @return none
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*/
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void UART1_SendData(u8 data)
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{
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while(USART_GetFlagStatus(USART1, USART_FLAG_TC) == RESET);
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USART_SendData(USART1, data);
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}
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/*********************************************************************
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* @fn Uart1_Rx
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*
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* @brief Uart3 receive date
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*
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* @return none
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*/
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u8 Uart1_Rx(void)
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{
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while( USART_GetFlagStatus(USART1, USART_FLAG_RXNE) == RESET);
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return USART_ReceiveData( USART1);
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}
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/*********************************************************************
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* @fn UART_Rx_Deal
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*
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* @brief UART Rx data deal
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*
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* @return none
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*/
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void UART_Rx_Deal(void)
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{
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u8 i, s;
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u8 Data_add = 0;
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if (Uart1_Rx() == Uart_Sync_Head1)
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{
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if (Uart1_Rx() == Uart_Sync_Head2)
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{
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isp_cmd_t->Cmd = Uart1_Rx();
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Data_add += isp_cmd_t->Cmd;
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isp_cmd_t->Len = Uart1_Rx();
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Data_add += isp_cmd_t->Len;
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isp_cmd_t->Rev[0] = Uart1_Rx();
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Data_add += isp_cmd_t->Rev[0];
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isp_cmd_t->Rev[1] = Uart1_Rx();
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Data_add += isp_cmd_t->Rev[1];
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if ((isp_cmd_t->Cmd == CMD_IAP_PROM)
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|| (isp_cmd_t->Cmd == CMD_IAP_VERIFY))
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{
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for (i = 0; i < isp_cmd_t->Len; i++) {
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isp_cmd_t->data[i] = Uart1_Rx();
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Data_add += isp_cmd_t->data[i];
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}
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}
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if (Uart1_Rx() == Data_add)
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{
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s = RecData_Deal();
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if (s != ERR_End)
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{
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UART1_SendData(0x00);
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if (s == ERR_ERROR)
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{
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UART1_SendData(0x01);
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}
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else
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{
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UART1_SendData(0x00);
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}
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}
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}
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}
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}
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}
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