communication.c 27 KB

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  1. #include "onechip_include_header.h"
  2. char DeviceNum[60] = "mini7 2312230001 v1.1, ";
  3. uint8_t pc_send_wait = 0; //数据发送等待,0可以立即发送;>0正在发送请等待
  4. uint8_t pc_send_cmd = 0; //当前发送cmd
  5. static unsigned char seq =0;
  6. extern uint8_t wifi_tx_buf[WIFI_TX_BUF_SIZE];
  7. extern uint16_t wifi_tx_len;
  8. unsigned int check_to_pc_busy(void){
  9. /*判断是否可以发送,缓冲区为空或者索引为0*/
  10. CmdMessage *pMessage = (CmdMessage *)wifi_tx_buf;
  11. if(pMessage->seq == 0 || pMessage->len == 0){
  12. return 1;
  13. }
  14. return 0;
  15. }
  16. /********************************************************************
  17. * uint16_t data_send_to_pc(enum pc_cmd_type cmd, char *data, uint16_t len)
  18. *
  19. *描述:发生数据到PC
  20. *参数:Devicenum 0-发至主机,1发至从机
  21. *返回:无
  22. *其他:无
  23. *--------------------------------------------------------------------
  24. *记录:
  25. ********************************************************************/
  26. CmdMessage msg;
  27. int data_send_to_pc(pc_cmd_type cmd, char *data, unsigned short len)
  28. {
  29. uint16_t check;
  30. int ret = -1;
  31. msg.head = 0x55aa;
  32. msg.seq = CDM_FRAME_TYPE_REQ;
  33. msg.cmd = cmd;
  34. msg.tail = 0x5a;
  35. msg.len = len;
  36. msg.data = data;
  37. if((len+8) > WIFI_TX_BUF_SIZE){
  38. Van_Device_Printf(VAN_LOG_COMM,"send_to_pc :%x len:%d error ", cmd, len);
  39. return ret;
  40. }
  41. if(sysinf.pc_channel_recv == PC_CONNECT_TYPE_NULL && cmd != PC_CMD_SETIP){
  42. /*无链接情况,只考虑*/
  43. return ret;
  44. }
  45. if((sysinf.pc_channel_recv == PC_CONNECT_TYPE_WIFI && PC_CMD_DATASCOPE == cmd)|| /*网口不上报数据*/
  46. (sysinf.pc_channel_recv == PC_CONNECT_TYPE_UART && PC_CMD_SETIP == cmd)) /*串口不广播UDP*/{
  47. return ret;
  48. }
  49. switch(cmd)
  50. {
  51. case PC_CMD_QRCODE:
  52. case PC_CMD_DATA_UPLOAD:
  53. case PC_CMD_REPORT_RESULT:
  54. seq++;
  55. if(0xff == seq){
  56. seq =1;
  57. }
  58. msg.seq = seq;
  59. break;
  60. default: //应答
  61. break;
  62. }
  63. check = checkSum((const unsigned char *)&msg.seq, 4);
  64. check += checkSum((const unsigned char *)data, len);
  65. msg.checksum = check & 0xFF;
  66. msg.tail = (check >> 8);
  67. if(check_to_pc_busy()){
  68. memcpy(&wifi_tx_buf[0], (uint8_t*)&msg, MSG_CMDFRAME_LEN);
  69. memcpy(&wifi_tx_buf[MSG_CMDFRAME_LEN], data, len);
  70. memcpy(&wifi_tx_buf[MSG_CMDFRAME_LEN+len], (uint8_t*)&check, 2);
  71. wifi_tx_len = MSG_CMDFRAME_LEN+len+2;
  72. }else{
  73. return ret;
  74. }
  75. if((sysinf.pc_channel_recv == PC_CONNECT_TYPE_WIFI || cmd == PC_CMD_SETIP ) && PC_CMD_SETWIFI != cmd)
  76. {
  77. return WIFI_ReSend();
  78. }
  79. else
  80. {
  81. Van_Debug_UART_Send_DMA((unsigned char *)wifi_tx_buf, wifi_tx_len); //将收到的信息发送出
  82. memset(wifi_tx_buf, 0, sizeof(wifi_tx_buf));
  83. }
  84. return 0;
  85. }
  86. int data_send_to_pc_withindex(pc_cmd_type cmd, char *data, unsigned short len, unsigned char index)
  87. {
  88. uint16_t check;
  89. int ret = -1;
  90. msg.head = 0x55aa;
  91. msg.seq = index;
  92. msg.cmd = cmd;
  93. msg.tail = 0x5a;
  94. msg.len = len;
  95. msg.data = data;
  96. check = checkSum((const unsigned char *)&msg.seq, 4);
  97. check += checkSum((const unsigned char *)data, len);
  98. msg.checksum = check & 0xFF;
  99. msg.tail = (check >> 8);
  100. if(check_to_pc_busy()){
  101. memcpy(&wifi_tx_buf[0], (uint8_t*)&msg, MSG_CMDFRAME_LEN);
  102. memcpy(&wifi_tx_buf[MSG_CMDFRAME_LEN], data, len);
  103. memcpy(&wifi_tx_buf[MSG_CMDFRAME_LEN+len], (uint8_t*)&check, 2);
  104. wifi_tx_len = MSG_CMDFRAME_LEN+len+2;
  105. }else{
  106. return ret;
  107. }
  108. if((sysinf.pc_channel_recv == PC_CONNECT_TYPE_WIFI || cmd == PC_CMD_SETIP ) && PC_CMD_SETWIFI != cmd)
  109. {
  110. return WIFI_ReSend();
  111. }
  112. else
  113. {
  114. Van_Debug_UART_Send_DMA((unsigned char *)wifi_tx_buf, wifi_tx_len); //将收到的信息发送出
  115. memset(wifi_tx_buf, 0, sizeof(wifi_tx_buf));
  116. }
  117. return 0;
  118. }
  119. void PackDeviceNum(void){
  120. int len = 0;
  121. memset((uint8_t *)&DeviceNum, 0 ,sizeof(DeviceNum));
  122. uint32_t uid[3];
  123. uid[0] = HAL_GetUIDw0(); // 读取低32位[reference:16]
  124. uid[1] = HAL_GetUIDw1(); // 读取中间32位[reference:17]
  125. uid[2] = HAL_GetUIDw2(); // 读取高32位[reference:18]
  126. #ifdef ONECHIP_MINI_ONE
  127. my_sprintf(&DeviceNum[len],sizeof(DeviceNum), "Mini7-one,V%d.%d.%d.%d",SOFT_VERSION_1,SOFT_VERSION_2,SOFT_VERSION_3,SOFT_VERSION_4);
  128. #else
  129. #ifdef ONECHIP_MINI_PLUS
  130. my_sprintf(&DeviceNum[len],sizeof(DeviceNum), "Mini7-plus,V%d.%d.%d.%d",SOFT_VERSION_1,SOFT_VERSION_2,SOFT_VERSION_3,SOFT_VERSION_4);
  131. #else
  132. my_sprintf(&DeviceNum[len],sizeof(DeviceNum), "Mini7,V%d.%d.%d.%d",SOFT_VERSION_1,SOFT_VERSION_2,SOFT_VERSION_3,SOFT_VERSION_4);
  133. #endif //ONECHIP_MINI_PLUS
  134. #endif //ONECHIP_MINI_ONE
  135. strcat(DeviceNum, ",");
  136. len = strlen(DeviceNum);
  137. hex_to_ascii((const void *)uid, &DeviceNum[len], 12); //uid
  138. strcat(DeviceNum, ",");
  139. strcat(DeviceNum, (const char *)sysinf.SN);
  140. strcat(DeviceNum, " ");
  141. Van_Device_Printf(VAN_LOG_INFO,"DeviceNum:%s\n", DeviceNum);
  142. }
  143. /********************************************************************
  144. * uint16_t send_Devinf_pc(void)
  145. *
  146. *描述:发送设备信息到主机,便于主机下法TCP信息
  147. *参数:无
  148. *返回:无
  149. *其他:无
  150. *--------------------------------------------------------------------
  151. *记录:
  152. ********************************************************************/
  153. void send_Devinf_pc(void)
  154. {
  155. uint16_t len = 0;
  156. len = strlen(DeviceNum);
  157. data_send_to_pc(PC_CMD_SETIP,DeviceNum,len);
  158. }
  159. /********************************************************************
  160. * int handshake_action(unsigned char cmd, unsigned char *parg)
  161. *
  162. *描述:握手命令处理
  163. *参数:无
  164. *返回:无
  165. *其他:无
  166. *--------------------------------------------------------------------
  167. *记录:
  168. ********************************************************************/
  169. int handshake_action(unsigned char cmd, unsigned char *parg)
  170. {
  171. sysinf.system_OnlineFlag = true;
  172. unsigned int verAddr = FLASH_APP1_ADDR + FLASH_APP_VERSION_OFFSET;
  173. PackDeviceNum();
  174. if(*(uint32_t *)(verAddr) == 0xffffffff){
  175. /*首次上电,跟新版本号*/
  176. unsigned int len = strlen(DeviceNum);
  177. Flash_WriteBuffer(verAddr, (uint8_t *)DeviceNum, len);
  178. }
  179. return 0;
  180. }
  181. void char_replace(unsigned char *str, int size, unsigned char ch, unsigned char replace)
  182. {
  183. for(int i = 0; i < size; i++)
  184. {
  185. if(str[i] == ch)
  186. str[i] = replace;
  187. }
  188. }
  189. /********************************************************************
  190. * int wifi_action(unsigned char cmd, unsigned char *parg)
  191. *
  192. *描述:设置wifi命令处理
  193. *参数:无
  194. *返回:无
  195. *其他:无
  196. *--------------------------------------------------------------------
  197. *记录:
  198. ********************************************************************/
  199. int wifi_action(unsigned char cmd, unsigned char *parg)
  200. {
  201. strcpy(sysinf.wifiname, (const char *)parg);
  202. strcpy(sysinf.password, (const char *)(parg + WIFI_AP_NAME_MAX_LEN));
  203. // wifi用户名和密码设置
  204. WIFI_set_ssid();
  205. return 1;
  206. }
  207. int setState_action(unsigned char cmd, unsigned char *parg)
  208. {
  209. unsigned char block = *parg++;
  210. unsigned char nextState = *parg;
  211. if(SYS_STATE_WORKEND == nextState){
  212. if(block==0){
  213. sysinf.psmMaster.state = SW_move_card;
  214. }else{
  215. /*下发命令,改变从模块状态*/
  216. sysinf.psmSlave.state = SW_move_card;
  217. }
  218. }
  219. return 1;
  220. }
  221. /********************************************************************
  222. * int wifi_action(unsigned char cmd, unsigned char *parg)
  223. *
  224. *描述:设置wifi命令处理
  225. *参数:无
  226. *返回:无
  227. *其他:无
  228. *--------------------------------------------------------------------
  229. *记录:
  230. ********************************************************************/
  231. int SN_action(unsigned char cmd, unsigned char *parg)
  232. {
  233. parg[15] = 0;
  234. strcpy((char *)sysinf.SN, (const char *)parg);
  235. // PackDeviceNum();
  236. return cfg_save_cfg_param();
  237. }
  238. /********************************************************************
  239. * int seq_selftest_action(unsigned char cmd, unsigned char *parg)
  240. *
  241. *描述:设备自检处理
  242. *参数:无
  243. *返回:无
  244. *其他:无
  245. *--------------------------------------------------------------------
  246. *记录:
  247. ********************************************************************/
  248. int seq_selftest_action(unsigned char cmd, unsigned char *parg)
  249. {
  250. return 0;
  251. }
  252. /********************************************************************
  253. * int confirm_result_action(unsigned char cmd, unsigned char *parg)
  254. *
  255. *描述:设备收到pc的结果响应
  256. *参数:无
  257. *返回:无
  258. *其他:无
  259. *--------------------------------------------------------------------
  260. *记录:
  261. ********************************************************************/
  262. int confirm_result_action(unsigned char cmd, unsigned char *parg)
  263. {
  264. // if(0 == memcmp(parg,sysinf.psmMaster.card_param_info.pid, 10 )){
  265. // sysinf.psmMaster.state = SW_move_card;
  266. // }else if (0 == memcmp(parg,sysinf.psmSlave.card_param_info.pid, 10 ))
  267. // {
  268. // sysinf.psmSlave.state = SW_move_card;
  269. // }
  270. return 0;
  271. }
  272. /********************************************************************
  273. * int default_pc_response(struct CmdMessage *pMsg, unsigned char result)
  274. *
  275. *描述:默认回应PC
  276. *参数:无
  277. *返回:成功->0 失败->-1
  278. *其他:无
  279. *--------------------------------------------------------------------
  280. *记录:
  281. ********************************************************************/
  282. int default_pc_response(CmdMessage *pMsg, unsigned char result)
  283. {
  284. return data_send_to_pc((pc_cmd_type)pMsg->cmd, (char *)&result, 1);
  285. }
  286. /********************************************************************
  287. * int handshake_response(struct CmdMessage *pMsg, unsigned char result)
  288. *
  289. *描述:握手回应
  290. *参数:无
  291. *返回:无
  292. *其他:无
  293. *--------------------------------------------------------------------
  294. *记录:
  295. ********************************************************************/
  296. int handshake_response(CmdMessage *pMsg, unsigned char result)
  297. {
  298. unsigned short len = 0;
  299. len = strlen(DeviceNum);
  300. return data_send_to_pc_withindex((pc_cmd_type)pMsg->cmd, (char*)DeviceNum, len,pMsg->seq);
  301. }
  302. int AskState_response(CmdMessage *pMsg, unsigned char result)
  303. {
  304. stateinfDef st;
  305. st.amplifState =sysinf.amplifState;
  306. st.lysisState =sysinf.lysisState;
  307. memcpy(st.SN, &sysinf.SN, 7);
  308. data_send_to_pc(PC_CMD_ASKSTATE, (char *)&st, sizeof(stateinfDef));
  309. return 0;
  310. }
  311. int set_response(CmdMessage *pMsg, unsigned char result)
  312. {
  313. // char wifi_result = 1;
  314. // data_send_to_pc(PC_CMD_SETWIFI, &wifi_result, 1);
  315. return 0;
  316. }
  317. int setState_response(CmdMessage *pMsg, unsigned char result)
  318. {
  319. // char result = 1;
  320. data_send_to_pc(PC_CMD_SETSTATE, (char *)&result, 1);
  321. return 0;
  322. }
  323. int ans_response(CmdMessage *pMsg, unsigned char result)
  324. {
  325. /*清空需要上位机应答的消息*/
  326. switch(pMsg->cmd){
  327. case PC_CMD_REPORT_REEOR:
  328. sysinf.updateError = 0;
  329. break;
  330. case PC_CMD_UPDATESTATE:
  331. sysinf.updateSt = 0;
  332. break;
  333. case PC_CMD_QRCODE:
  334. sysinf.updateQR = false;
  335. break;
  336. case PC_CMD_DATA_UPLOAD:{
  337. unsigned char *data = (unsigned char *)pMsg->data;
  338. unsigned int recdex = 0xfffffff;
  339. // unsigned char result = *data;
  340. // unsigned char part = *(data+1);
  341. if( pMsg->len == 6){
  342. recdex = *(data+5);
  343. recdex = recdex<<8;
  344. recdex += *(data+4);
  345. recdex = recdex<<8;
  346. recdex += *(data+3);
  347. recdex = recdex<<8;
  348. recdex += *(data+2);
  349. }else{
  350. if(seq == pMsg->seq){
  351. recdex = 0;
  352. }
  353. }
  354. updateData_next(recdex,data);
  355. }
  356. break;
  357. case PC_CMD_REPORT_RESULT:{
  358. // unsigned char result = *data;
  359. // unsigned char part = *(data+1);
  360. clean_reult_next((unsigned char *)pMsg->data);
  361. // if(result){
  362. // /*消息成功,进行跟新*/
  363. // clean_reult_next(part);
  364. // }
  365. }
  366. break;
  367. }
  368. return 0;
  369. }
  370. int confirm_qrcode_action(unsigned char cmd, unsigned char *parg)
  371. {
  372. //先判断主模块,优先给主模块,扫描上报上报也是相同处理
  373. svanner_receive_Rec_Start(sysinf.scannerUart);
  374. if(*parg == 1)
  375. {
  376. if((sysinf.psmMaster.state == SW_Scan_Qrcode || sysinf.psmMaster.state == SW_Chip_Id )) //主机空闲,给自己
  377. {
  378. sysinf.psmMaster.controlword = Scan_Qrcode_cmd;
  379. Van_Device_Printf(VAN_LOG_INFO,"Master rec start\n\r:");
  380. return 0;
  381. }else {
  382. #ifdef ONECHIP_MINI_PLUSE
  383. if((sysinf.psmSlave.state == SW_Scan_Qrcode || sysinf.psmSlave.state == SW_Chip_Id )){
  384. sysinf.psmSlave.controlword = Scan_Qrcode_cmd;
  385. Van_Device_Printf(VAN_LOG_INFO,"Slave rec start\n\r:");
  386. return 0;
  387. }
  388. #endif
  389. }
  390. Van_Device_Printf(VAN_LOG_INFO, "master:%d slave:%d Not in startState\n\r:",sysinf.psmMaster.state,sysinf.psmSlave.state );
  391. return -1;
  392. }
  393. Van_Device_Printf(VAN_LOG_INFO, "rec no macth\n\r:");
  394. return -1;
  395. }
  396. int confirm_error_action(unsigned char cmd, unsigned char *parg)
  397. {
  398. return 0;
  399. }
  400. int confirm_data_action(unsigned char cmd, unsigned char *parg)
  401. {
  402. return 0;
  403. }
  404. /********************************************************************
  405. * int set_IP_action(uint8_t cmd, uint8_t *parg)
  406. *
  407. *描述:设置IP
  408. *参数:无
  409. *返回:无
  410. *其他:无
  411. *--------------------------------------------------------------------
  412. *记录:
  413. ********************************************************************/
  414. int set_IP_action(uint8_t cmd, uint8_t *parg)
  415. {
  416. if(sysinf.connectTcpFlag == 0){
  417. /*TCP 链接状态下,不跟新IP地址*/
  418. memset(sysinf.TCP_IP_Addr,0,sizeof(sysinf.TCP_IP_Addr));
  419. memset(sysinf.TCP_IP_PORT,0,sizeof(sysinf.TCP_IP_PORT));
  420. unsigned int data_len = strlen((const char *)parg);
  421. unsigned int i=0;
  422. if(parg[i]<'0' || parg[i]>'9'){
  423. return 0;
  424. }
  425. for(;i<data_len;i++){
  426. if(parg[i] != ':'){
  427. sysinf.TCP_IP_Addr[i] = parg[i];
  428. }else{
  429. break;
  430. }
  431. }
  432. i++;
  433. unsigned int j =0;
  434. if(parg[i]<'0' || parg[i]>'9'){
  435. return 0;
  436. }
  437. for(;i<data_len;i++){
  438. if(parg[i] != ':'){
  439. sysinf.TCP_IP_PORT[j++] = parg[i];
  440. }else{
  441. break;
  442. }
  443. }
  444. if(sysinf.TCP_IP_Addr[0]){
  445. sysinf.connectTcpFlag = 1;
  446. }
  447. WIFI_set_CloseConnect();
  448. }
  449. return 0;
  450. }
  451. int start_update_app_action(uint8_t cmd, uint8_t *parg)
  452. {
  453. iap_load_app(FLASH_BOOTLOAD_ADDR);
  454. return 0;
  455. }
  456. /********************************************************************
  457. * uint16_t send_Devinf_pc(void)
  458. *
  459. *描述:发送设备信息到主机,便于主机下法TCP信息
  460. *参数:无
  461. *返回:无
  462. *其他:无
  463. *--------------------------------------------------------------------
  464. *记录:
  465. ********************************************************************/
  466. void start_update_app_response(CmdMessage *pMsg, uint8_t result)
  467. {
  468. uint16_t len = 0;
  469. len = strlen(DeviceNum);
  470. data_send_to_pc(PC_CMD_STARTUPDATE,DeviceNum,len);
  471. }
  472. int updateInfo_action(uint8_t cmd, uint8_t *parg)
  473. {
  474. return 1;
  475. }
  476. int updateDate_action(uint8_t cmd, uint8_t *parg)
  477. {
  478. return 1;
  479. }
  480. int updateDate_response(CmdMessage *pMsg, unsigned char result)
  481. {
  482. unsigned char *data = (unsigned char *)pMsg->data;
  483. *(unsigned int *)(data+4) = *(unsigned int *)data;
  484. *(unsigned int *)(data+8) = result;
  485. return data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, 12);
  486. }
  487. int send_temp_parm(uint8_t cmd, uint8_t *parg)
  488. {
  489. /*设置温度*/
  490. sysinf.lysis.idletemp = *(float *)(parg+4);
  491. sysinf.lysis.pid.goal = *(float *)(parg+8);
  492. sysinf.lysis.worktime = *(float *)(parg+12);
  493. sysinf.lysis.worktime *= 10;
  494. sysinf.lysis.recGoalFlag = 1;
  495. return 1;
  496. }
  497. int setTemp_response(CmdMessage *pMsg, uint8_t result)
  498. {
  499. // char result = 1;
  500. data_send_to_pc(PC_CMD_SETRUNTEMP, (char *)&result, 1);
  501. return 0;
  502. }
  503. const struct PCActionPack mPCActionPack[] =
  504. {
  505. {
  506. .cmd = PC_CMD_HANDSHAKE,
  507. .action = handshake_action,
  508. .response = handshake_response,
  509. .datalen = 0,
  510. },
  511. {
  512. .cmd = PC_CMD_SETWIFI,
  513. .action = wifi_action,
  514. .response = set_response,
  515. .datalen = 0xff,
  516. },
  517. {
  518. .cmd = PC_CMD_SETSN,
  519. .action = SN_action,
  520. .response = handshake_response,
  521. .datalen = 7,
  522. },
  523. {
  524. .cmd = PC_CMD_QRCODE,
  525. .action = confirm_qrcode_action,
  526. .response = ans_response,
  527. .datalen = 0xff,
  528. },
  529. {
  530. .cmd = PC_CMD_SNANDCARD,
  531. .action = confirm_error_action,
  532. .datalen = 1,
  533. },
  534. {
  535. .cmd = PC_CMD_REPORT_RESULT,
  536. .action = confirm_result_action,
  537. .response = ans_response,
  538. .datalen = 0xff,
  539. },
  540. {
  541. .cmd = PC_CMD_REPORT_REEOR,
  542. .action = confirm_error_action,
  543. .response = ans_response,
  544. .datalen = 0xff,
  545. },
  546. {
  547. .cmd = PC_CMD_DATA_UPLOAD,
  548. .action = confirm_data_action,
  549. .response = ans_response,
  550. .datalen = 0xff,
  551. },
  552. {
  553. .cmd = PC_CMD_SETIP,
  554. .action = set_IP_action,
  555. .response = NULL,
  556. .datalen = 0xff,
  557. },
  558. {
  559. .cmd = PC_CMD_UPDATESTATE,
  560. .action = confirm_data_action,
  561. .response = ans_response,
  562. .datalen = 0xff,
  563. },
  564. {
  565. .cmd = PC_CMD_ASKSTATE,
  566. .action = confirm_data_action,
  567. .response = AskState_response,
  568. .datalen = 0xff,
  569. },
  570. {
  571. .cmd = PC_CMD_SETSTATE,
  572. .action = setState_action,
  573. .response = setState_response,
  574. .datalen = 0xff,
  575. },
  576. {
  577. .cmd = PC_CMD_SETRUNTEMP,
  578. .action = send_temp_parm,
  579. .response = setTemp_response,
  580. .datalen = 0xff,
  581. },
  582. {
  583. .cmd = PC_CMD_STARTUPDATE,
  584. .action = start_update_app_action,
  585. .response = NULL,
  586. .datalen = 0xff,
  587. },
  588. // {
  589. // .cmd = PC_CMD_UPDATEINFO,
  590. // .action = updateInfo_action,
  591. // .response = set_response,
  592. // .datalen = 0xff,
  593. // },
  594. // {
  595. // .cmd = PC_CMD_UPDATEDATA,
  596. // .action = updateDate_action,
  597. // .response = updateDate_response,
  598. // .datalen = 0xff,
  599. // },
  600. };
  601. void pc_resend_del(uint8_t seq){
  602. // struct CmdMessage *pMessage = (struct CmdMessage *)wifi_tx_buf;
  603. // if(pMessage->seq == seq){
  604. // wifi_tx_len = 0;
  605. // memset(wifi_tx_buf, 0, sizeof(wifi_tx_buf));
  606. // }
  607. }
  608. /********************************************************************
  609. * void query_pc_cmd(struct CmdMessage *pMsg)
  610. *
  611. *描述:处理PC命令
  612. *参数:无
  613. *返回:无
  614. *其他:无
  615. *--------------------------------------------------------------------
  616. *记录:
  617. ********************************************************************/
  618. void query_pc_cmd(CmdMessage *pMsg)
  619. {
  620. for (unsigned char i = 0; i < sizeof(mPCActionPack)/sizeof(mPCActionPack[0]); i++)
  621. {
  622. if (mPCActionPack[i].cmd == pMsg->cmd && (mPCActionPack[i].datalen == pMsg->len || mPCActionPack[i].datalen == 0xff)) //防止接收到其他设备的数据帧
  623. {
  624. if(pc_send_cmd == mPCActionPack[i].cmd)
  625. pc_send_wait = 0;
  626. if(mPCActionPack[i].cmd != 1)
  627. {
  628. pc_resend_del(pMsg->seq);
  629. Van_Device_Printf(VAN_LOG_INFO,"\n<-- pc cmd %x %d \n", pMsg->cmd, pMsg->seq);
  630. }
  631. pMsg->data[pMsg->len] = 0;
  632. unsigned char ret = mPCActionPack[i].action(mPCActionPack[i].cmd, (unsigned char *)pMsg->data);
  633. if (mPCActionPack[i].response)
  634. {
  635. mPCActionPack[i].response(pMsg, ret);
  636. }
  637. break;
  638. }
  639. }
  640. }
  641. /********************************************************************
  642. * int handshake_action(uint8_t cmd, uint8_t *parg)
  643. *
  644. *描述:握手命令处理
  645. *参数:无
  646. *返回:无
  647. *其他:无
  648. *--------------------------------------------------------------------
  649. *记录:
  650. ********************************************************************/
  651. int con_heat_action(uint8_t cmd, uint8_t *parg )
  652. {
  653. // CmdMessage *pMsg = (CmdMessageDef *)parg;
  654. CmdMessage *pMsg = (CmdMessage *)parg;;
  655. miniConfigPram *pram = (miniConfigPram *)pMsg->data;
  656. uint8_t * pdata = (uint8_t *)pMsg->data;
  657. switch(pMsg->cmd){
  658. case UINON_CMD_MOTORMOVE:{
  659. sysinf.timeinner = *(float *)(pMsg->data+4) * 100;
  660. sysinf.swingspeed = *(float *)(pMsg->data+8);
  661. sysinf.swingtime = *(float *)(pMsg->data+12) * 100;
  662. sysinf.swingtimeRight = *(float *)(pMsg->data+16) * 100;
  663. sysinf.swingtimePause = *(float *)(pMsg->data+20) * 100;
  664. if((1 == *(int *)(pMsg->data+pMsg->len - 4))){
  665. cfg_save_cfg_param();
  666. Motor_Init();
  667. }else{
  668. Motor_mix(sysinf.timeinner,sysinf.swingspeed,sysinf.swingtime,sysinf.swingtimeRight,sysinf.swingtimePause);
  669. }
  670. data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  671. }break;
  672. case UINON_CMD_MOTORTRETURN:{
  673. Motor_reset();
  674. data_send_to_pc( (pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  675. }break;
  676. case UINON_CMD_THEROM_GET:{
  677. char data[40];
  678. *(float *)(data+0) = 0;
  679. *(float *)(data+4) = sysinf.lysis_offset;
  680. *(float *)(data+8) = sysinf.lysis_overHeat;
  681. *(float *)(data+12) = sysinf.lysis_overHeatTime;
  682. *(float *)(data+16) = sysinf.lysis_Kp;
  683. *(float *)(data+20) = sysinf.lysis_Ki;
  684. *(float *)(data+24) = sysinf.lysis_Kd;
  685. *(float *)(data+28) = sysinf.lysis.pid.goal;
  686. *(float *)(data+32) = sysinf.lysis.idletemp;
  687. *(float *)(data+36) = sysinf.lysis.worktime/10;
  688. pMsg->data = data;
  689. pMsg->len = sizeof(data);
  690. data_send_to_pc( (pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  691. }break;
  692. case UINON_CMD_THEROM_OFFSET:{
  693. sysinf.lysis_Kp = *(float *)(pdata+4);
  694. sysinf.lysis_Ki = *(float *)(pdata+8);
  695. sysinf.lysis_Kd = *(float *)(pdata+12);
  696. sysinf.lysis_overHeat = *(float *)(pdata+16);
  697. sysinf.lysis_overHeatTime = *(float *)(pdata+20);
  698. sysinf.lysis_offset = *(float *)(pdata+24);
  699. data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  700. updatParm_lysis();
  701. cfg_save_cfg_param();
  702. }break;
  703. case UINON_CMD_AMPLIF_GET:{
  704. char data[44];
  705. *(float *)(data+0) = 0;
  706. *(float *)(data+4) = sysinf.amplif_Kp;
  707. *(float *)(data+8) = sysinf.amplif_Ki;
  708. *(float *)(data+12) = sysinf.amplif_Kd;
  709. *(float *)(data+16) = sysinf.PreHeatTime;
  710. *(float *)(data+20) = sysinf.holdTemp;
  711. *(float *)(data+24) = sysinf.readyTemp;
  712. *(float *)(data+28) = sysinf.PresetTempVal;
  713. *(float *)(data+32) = sysinf.PresetTempTime;
  714. *(float *)(data+36) = sysinf.adJTarget;
  715. *(float *)(data+40) = sysinf.SetTempVal;
  716. pMsg->data = data;
  717. pMsg->len = sizeof(data);
  718. data_send_to_pc( (pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  719. }break;
  720. case UINON_CMD_AMPLIF_SET:{
  721. sysinf.amplif_Kp = *(float *)(pdata+4);
  722. sysinf.amplif_Ki = *(float *)(pdata+8);
  723. sysinf.amplif_Kd = *(float *)(pdata+12);
  724. sysinf.PreHeatTime = *(float *)(pdata+16);
  725. sysinf.holdTemp = *(float *)(pdata+20);
  726. sysinf.readyTemp = *(float *)(pdata+24);
  727. sysinf.PresetTempVal = *(float *)(pdata+28);
  728. sysinf.PresetTempTime = *(float *)(pdata+32);
  729. sysinf.adJTarget = *(float *)(pdata+36);
  730. sysinf.SetTempVal = *(float *)(pdata+40);
  731. data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  732. updatParm_heater_master();
  733. cfg_save_cfg_param();
  734. }break;
  735. case UINON_CMD_THEROM_GOAL:{
  736. float goal = *(float *)(pMsg->data+4) ;
  737. set_lysis(goal);
  738. data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  739. }break;
  740. // case UINON_CMD_THEROM_CHECK:{
  741. // pMsg->data[0] =Therm_Check();
  742. // data_send_to_pc((pc_cmd_type)pMsg->cmd, pMsg->data, pMsg->len);
  743. // }break;
  744. }
  745. return 0;
  746. }
  747. const struct PCActionPack mUnionActionPack[] =
  748. { {
  749. .cmd = UINON_CMD_MOTORMOVE,
  750. .action = con_heat_action,
  751. },
  752. {
  753. .cmd = UINON_CMD_MOTORTRETURN,
  754. .action = con_heat_action,
  755. },
  756. {
  757. .cmd = UINON_CMD_TEMP_ADJ,
  758. .action = con_heat_action,
  759. },
  760. {
  761. .cmd = UINON_CMD_TEMP_PID,
  762. .action = con_heat_action,
  763. },
  764. {
  765. .cmd = UINON_CMD_TEMP_ADJ_GET,
  766. .action = con_heat_action,
  767. },
  768. {
  769. .cmd = UINON_CMD_TEMP_PID_GET,
  770. .action = con_heat_action,
  771. },
  772. {
  773. .cmd = UINON_CMD_TEMP_START,
  774. .action = con_heat_action,
  775. },
  776. {
  777. .cmd = UINON_CMD_TEMP_STOP,
  778. .action = con_heat_action,
  779. },
  780. {
  781. .cmd = UINON_CMD_THEROM_GOAL,
  782. .action = con_heat_action,
  783. },
  784. {
  785. .cmd = UINON_CMD_THEROM_OFFSET,
  786. .action = con_heat_action,
  787. },
  788. {
  789. .cmd = UINON_CMD_THEROM_GET,
  790. .action = con_heat_action,
  791. },
  792. {
  793. .cmd = UINON_CMD_AMPLIF_SET,
  794. .action = con_heat_action,
  795. },
  796. {
  797. .cmd = UINON_CMD_AMPLIF_GET,
  798. .action = con_heat_action,
  799. },
  800. {
  801. .cmd = UINON_CMD_THEROM_PID,
  802. .action = con_heat_action,
  803. },
  804. {
  805. .cmd = UINON_CMD_THEROM_OVERHEAT,
  806. .action = con_heat_action,
  807. },
  808. {
  809. .cmd = UINON_CMD_THEROM_OVERCOOL,
  810. .action = con_heat_action,
  811. },
  812. {
  813. .cmd = UINON_CMD_TEMP_DEBUG,
  814. .response = handshake_response,
  815. },
  816. };
  817. void deal_mUnion_cmd(CmdMessage *pMsg)
  818. {
  819. for (uint8_t i = 0; i < sizeof(mUnionActionPack)/sizeof(mUnionActionPack[0]); i++)
  820. {
  821. if (mUnionActionPack[i].cmd == pMsg->cmd )
  822. {
  823. uint8_t ret = mUnionActionPack[i].action( pMsg->cmd,(uint8_t *)pMsg);
  824. if (mUnionActionPack[i].response)
  825. {
  826. mUnionActionPack[i].response(pMsg, ret);
  827. }
  828. break;
  829. }
  830. }
  831. }
  832. void update_work(void) {
  833. float temp;
  834. unsigned int st;
  835. char data[20];
  836. get_master_st(&temp,&st);
  837. *(unsigned int *)(data+0) = st;
  838. *(float *)(data+4) =temp;
  839. get_lysis_st(&temp,&st);
  840. *(unsigned int *)(data+8) = st;
  841. *(float *)(data+12) = temp;
  842. // data_send_to_pc(PC_CMD_UPDATETEMP, data,sizeof(data));
  843. Van_Device_Printf(VAN_LOG_TEMP,"st:%d %f %d %f\n\r",sysinf.psmMaster.state,sysinf.heaterMaster.pid.realtemp,sysinf.lysis.thermostat_st,sysinf.lysis.pid.realtemp);
  844. return ;
  845. }