#include #include "string.h" #include "stdbool.h" #include "stdlib.h" #include "sys_log.h" #include "sys_ver.h" #include "sys_common.h" #include "mod_atcmd.h" #include "mod_sys.h" #include "hal_can.h" #include "hal_spi.h" #include "hal_key.h" #include "hal_adc.h" #include "hal_ble.h" #include "hal_flash.h" #include "mod_spi.h" #define RX_CMD_MAX_LEN 32 uint8_t g_s_at_buf[RX_CMD_MAX_LEN]; static void Sys_Soft_Reset(void) { SCB->AIRCR = 0X05FA0000 | (u32)0x04; } void MOD_AtCmdDataProcess(void *data, uint16_t length) { const char *tmp_buf = NULL; memset(g_s_at_buf, 0, RX_CMD_MAX_LEN); memcpy(g_s_at_buf, data, length); tmp_buf = (char *)g_s_at_buf; if (!strncmp(tmp_buf, "AT+CANTX", strlen("AT+CANTX"))) { uint32_t can_id = 0x6F1; uint8_t send_buf[8] = {0x60, 0x03, 0x22, 0xF1, 0x8B, 0xFF, 0xFF, 0xFF}; DLOG_I("send data to can"); HAL_CanTxData(0, can_id, send_buf, 8); } else if (!strncmp(tmp_buf, "AT+ISOTX", strlen("AT+ISOTX"))) { uint32_t can_id = 0x6F1; uint8_t send_buf[] = {0x72,0x42,0x76,0x65,0x45,0x6d,0x47,0x6e,0x46,0x75,0x79,0x75,0x72,0x6e}; DLOG_I("iso15765 tx"); MOD_CanTransferData(send_buf, sizeof(send_buf)); } else if (!strncmp(tmp_buf, "AT+REBOOT", strlen("AT+REBOOT"))) { Sys_Soft_Reset(); } else if (!strncmp(tmp_buf, "AT+SPITX", strlen("AT+SPITX"))) { uint8_t send_buf[32]; int i; for (i = 0; i < 32; i++) { send_buf[i] = 0xF1 + i; } DLOG_I("spi send data"); HAL_SpiTxData(send_buf, 32); } else if (!strncmp(tmp_buf, "AT+MCUVER", strlen("AT+MCUVER"))) { int ver = get_ver(); DLOG_I("soft_ver:0x%x", ver); } else if (!strncmp(tmp_buf, "AT+GETBLEVER", strlen("AT+GETBLEVER"))) { MOD_SpiDataSend(BLE_CMD_TEST, NULL, 0); } else if (!strncmp(tmp_buf, "AT+KEYSTA", strlen("AT+KEYSTA"))) { uint8_t status = HAL_KeyGetStatus(); DLOG_I("key status:%d", status); } else if (!strncmp(tmp_buf, "AT+ADCVAL", strlen("AT+ADCVAL"))) { int value = HAL_AdcGetVal(); int mv = value * (3.3 / 4096) * 1000; int battery_mv = mv * 6; // 电池电压需要乘以6 DLOG_I("adv_val:%d,battery_mv:%dmv", value, battery_mv); } else if (!strncmp(tmp_buf, "AT+SPITRANS", strlen("AT+SPITRANS"))) { uint8_t buffer[] = {0x52, 0x12, 0x00, 0x00, 0x00, 0x06, 0xF1, 0x01, 0x11}; MOD_SpiDataSend(BLE_CMD_TRANSFER, buffer, 9); } else if (!strncmp(tmp_buf, "AT+BLEON", strlen("AT+BLEON"))) { HAL_SpiGpioInit(); HAL_BleGpioEn(true); } else if (!strncmp(tmp_buf, "AT+BLEOFF", strlen("AT+BLEOFF"))) { HAL_BleGpioEn(false); HAL_SpiClockPinReset(); } else if (!strncmp(tmp_buf, "AT+BLEREBOOT", strlen("AT+BLEREBOOT"))) { DLOG_I("reboot ble"); HAL_BleReboot(); } else if (!strncmp(tmp_buf, "AT+CHECKSECTOR=", strlen("AT+CHECKSECTOR="))) { uint8_t erase_index = atoi(&tmp_buf[strlen("AT+CHECKSECTOR=")]); DLOG_I("erase_index:%d", erase_index); if (1 == erase_index) { MOD_SysCheckSector(FLASH_MAIN_PARA_ADDR); } else if (2 == erase_index) { MOD_SysCheckSector(FLASH_BACKUP_PARA_ADDR); } } else if (!strncmp(tmp_buf, "AT+FERASE=", strlen("AT+FERASE="))) { uint8_t erase_index = atoi(&tmp_buf[strlen("AT+FERASE=")]); DLOG_I("erase_index:%d", erase_index); if (1 == erase_index) { HAL_FlashSectorErase(FLASH_MAIN_PARA_ADDR); } else if (2 == erase_index) { HAL_FlashSectorErase(FLASH_BACKUP_PARA_ADDR); } } else if (!strncmp(tmp_buf, "AT+FWRITE=", strlen("AT+FWRITE="))) { uint8_t write_buf[64]; int i; uint8_t write_ret; uint8_t write_index = atoi(&tmp_buf[strlen("AT+FWRITE=")]); DLOG_I("write_index:%d", write_index); for (i = 0; i < 64; i++) { write_buf[i] = i; } if (1 == write_index) { write_ret = HAL_FlashWriteBytes(FLASH_MAIN_PARA_ADDR, write_buf, 64); } else if (2 == write_index) { write_ret = HAL_FlashWriteBytes(FLASH_BACKUP_PARA_ADDR, write_buf, 64); } DLOG_I("write flash ret:%d", write_ret); } else if (!strncmp(tmp_buf, "AT+FREAD=", strlen("AT+FREAD="))) { uint8_t read_buf[64]; uint8_t read_index; DLOG_I("read_index:%d", read_index); memset(read_buf, 0, 64); read_index = atoi(&tmp_buf[strlen("AT+FREAD=")]); if (1 == read_index) { HAL_FlashReadBytes(FLASH_MAIN_PARA_ADDR, read_buf, 64); DLOG_I("read_tmp_buf:%s", SYS_Hex2str(read_buf, 64)); } else if (2 == read_index) { HAL_FlashReadBytes(FLASH_BACKUP_PARA_ADDR, read_buf, 64); DLOG_I("read_tmp_buf:%s", SYS_Hex2str(read_buf, 64)); } } else if (!strncmp(tmp_buf, "AT+SHOWPARA", strlen("AT+SHOWPARA"))) { DLOG_I("show para"); MOD_SysShowPara(); } else if (!strncmp(tmp_buf, "AT+MAC=", strlen("AT+MAC="))) { uint8_t ble_mac[6]; memset(ble_mac, 0, 6); if('?' == tmp_buf[strlen("AT+MAC=")]) { memcpy(ble_mac, (uint8_t* )MOD_SysGetPara(PARA_BLE_MAC), 6); DLOG_I("ble_mac:%X%X%X%X%X%X", ble_mac[0],ble_mac[1],ble_mac[2],ble_mac[3],ble_mac[4],ble_mac[5]); } else { if(length - 7 != 12) { DLOG_I("input mac len:%d error", length - strlen("AT+MAC=")); } MOD_SysSetPara(PARA_BLE_MAC, 6, SYS_Str2hex((uint8_t*)&tmp_buf[7], 12)); } } else if (!strncmp(tmp_buf, "AT+NAME=", strlen("AT+NAME="))) { uint8_t ble_name[8] = {0}; uint8_t name_len = 0; uint8_t* p_name = NULL; if('?' == tmp_buf[strlen("AT+NAME=")]) { p_name = (uint8_t* )MOD_SysGetPara(PARA_BLE_NAME); DLOG_I("ble_name:%s,len:%d", p_name, strlen(p_name)); } else { name_len = length - strlen("AT+NAME="); memcpy(ble_name, (uint8_t* )&tmp_buf[strlen("AT+NAME=")], name_len); ble_name[name_len] = '\0'; DLOG_I("set ble_name:%s", ble_name); MOD_SysSetPara(PARA_BLE_NAME, name_len, ble_name); } } else if (!strncmp(tmp_buf, "AT+INTERVAL=", strlen("AT+INTERVAL="))) { uint32_t ble_interval = 0; if('?' == tmp_buf[strlen("AT+INTERVAL=")]) { DLOG_I("ble_adv_interval:%dms", *(uint32_t* )MOD_SysGetPara(PARA_BLE_ADV_INTERVAL)); } else { ble_interval = atoi(&tmp_buf[strlen("AT+INTERVAL=")]); DLOG_I("set ble_interval:%d", ble_interval); MOD_SysSetPara(PARA_BLE_ADV_INTERVAL, 4, &ble_interval); } } }