web.c 39 KB

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  1. #include "web.h"
  2. #include "mongoose.h"
  3. #include "thread.h"
  4. #include "list.h"
  5. #include "sys/time.h"
  6. #include "power.h"
  7. #include "paras.h"
  8. #include "sensor.h"
  9. #include "breaker.h"
  10. #include "cascade.h"
  11. #include "cfg.h"
  12. #include "lcd.h"
  13. #include <stdio.h>
  14. #include "datadef.h"
  15. #include "cascade.h"
  16. #include "snmp.h"
  17. #include "net.h"
  18. #include "cfg.h"
  19. #include "lcd.h"
  20. #include "wanning.h"
  21. #include "time.h"
  22. #include "cJSON.h"
  23. #include "json_handle.h"
  24. #include "mbedtls/md5.h"
  25. static char* g_product_t_ac_type_str[3] = {
  26. "L1",
  27. "L2",
  28. "L3",
  29. };
  30. #define TIMER_INTERVAL 1000
  31. #define ONCE_SEND_CNT 13
  32. #define FN_MAX 20
  33. typedef void (*http_fn_t)(void *arg);
  34. #define USE_MG716
  35. typedef struct mg_mgr mg_mgr_t;
  36. #ifdef USE_MG716
  37. typedef struct mg_tls_opts mg_tls_t;
  38. #endif
  39. typedef struct {
  40. http_fn_t f;
  41. char *uri;
  42. }mg_fn_t;
  43. typedef struct {
  44. pthread_t tid;
  45. mg_mgr_t mgr;
  46. #ifdef USE_MG716
  47. mg_tls_t tls;
  48. #else
  49. mg_opts_t opts;
  50. #endif
  51. int cnt;
  52. mg_fn_t fn[FN_MAX];
  53. handle_t list;
  54. char rootDir[MG_PATH_MAX];
  55. char *buf;
  56. int buflen;
  57. uint8_t cur_addr;
  58. }web_handle_t;
  59. typedef struct mg_connection mg_conn_t;
  60. #ifdef USE_MG716
  61. static void timer_fn(void *arg)
  62. {
  63. int r;
  64. web_handle_t *h=(web_handle_t*)arg;
  65. list_node_t *ln=NULL;
  66. mg_conn_t* c;
  67. r = list_take_node(h->list, &ln, 0);
  68. if(r==0) {
  69. node_t *n=&ln->data;
  70. for (c = h->mgr.conns; c != NULL; c = c->next) {
  71. //ws_send_pkt(h, c, n->tp, n->buf, n->dlen, 1);
  72. }
  73. list_back_node(h->list, ln);
  74. }
  75. }
  76. #else
  77. typedef struct mg_serve_http_opts mg_opts_t;
  78. #define MG_PATH_MAX 128
  79. static void set_timer(struct mg_connection *c, int ms)
  80. {
  81. mg_set_timer(c, mg_time()+ms/1000.0f);
  82. }
  83. #endif
  84. typedef struct {
  85. struct mg_connection *c;
  86. int ev;
  87. void *ev_data;
  88. }mg_stream_t;
  89. static web_handle_t webHandle={0};
  90. static void httpAddCallback(char *uri, http_fn_t f)
  91. {
  92. //mg_handle_t *h=&webHandle.mg;
  93. if(webHandle.cnt<FN_MAX-1) {
  94. webHandle.fn[webHandle.cnt].uri = uri;
  95. webHandle.fn[webHandle.cnt].f = f;
  96. webHandle.cnt++;
  97. }
  98. }
  99. static int http_reply(void *conn, int status, char *ack)
  100. {
  101. int r=0;
  102. mg_stream_t *s=(mg_stream_t*)conn;
  103. r = mg_http_reply2(s->c, status, "", ack);
  104. return r;
  105. }
  106. static int is_ws(mg_conn_t *c)
  107. {
  108. int r=0;
  109. #ifdef USE_MG716
  110. r = c->is_websocket?1:0;
  111. #else
  112. r = (c->flags & MG_F_IS_WEBSOCKET)?1:0;
  113. #endif
  114. return r;
  115. }
  116. static int ws_send(mg_conn_t *c, void *data, int len, int isbin)
  117. {
  118. if(!c || !data || len<=0) {
  119. return -1;
  120. }
  121. //LOGD("____ws_send, len: %d\n", len);
  122. #ifdef USE_MG716
  123. mg_ws_send(c, data, len, isbin?WEBSOCKET_OP_BINARY:WEBSOCKET_OP_TEXT);
  124. #else
  125. mg_send_websocket_frame(c, isbin?WEBSOCKET_OP_BINARY:WEBSOCKET_OP_TEXT, data, len);
  126. #endif
  127. return 0;
  128. }
  129. static void send_user_info(web_handle_t *h, mg_conn_t *c)
  130. {
  131. pkt_hdr_t *hdr=NULL;
  132. hdr = (pkt_hdr_t*)h->buf;
  133. wb_send_user_t *data1 = (wb_send_user_t *)(&hdr->data);
  134. memset(data1,0,sizeof(wb_send_user_t));
  135. paras_data_t* para=paras_get();
  136. user_data_t *data = &para->user;
  137. data1->count = data->user_count;
  138. for(int i = 0; i < data->user_count;i++)
  139. {
  140. data1->users[i].roul_id = data->config[i].role_id;
  141. strcpy(data1->users[i].user,data->config[i].user_name);
  142. strcpy(data1->users[i].date,data->config[i].date);
  143. strcpy(data1->users[i].time,data->config[i].time);
  144. }
  145. hdr->magic = PKT_MAGIC;
  146. hdr->addr = 0;
  147. hdr->type = NEW_PKT_TYPE_USER;
  148. hdr->nack = 0;
  149. hdr->subtype = 0;
  150. hdr->dlen = data1->count * sizeof(user_t) + sizeof(data1->count);
  151. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  152. ws_send(c, h->buf, xlen, 1);
  153. }
  154. static void send_add_user_func(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  155. {
  156. char date[32]={0};
  157. char time_s[32] = {0};
  158. unsigned char digest[16]={0};
  159. char output[33] = {0};
  160. mbedtls_md5_context ctx={0};
  161. uint8_t flag = USER_SUCCESS;
  162. web_user_add_t * user_add = (web_user_add_t *)&(ctrl->user_add);
  163. pkt_hdr_t *hdr=(pkt_hdr_t*)(h->buf);
  164. paras_data_t* para=paras_get();
  165. printf("hdr = %x\n",(uint32_t)hdr);
  166. time_t t=time(NULL);
  167. struct tm *tm=localtime(&t);
  168. hdr->magic = PKT_MAGIC;
  169. hdr->addr = 0;
  170. hdr->type = NEW_PKT_TYPE_USER;
  171. hdr->nack = 0;
  172. hdr->subtype = NEW_SUB_PKT_TYPE_USER_ADD;
  173. hdr->dlen = 1;
  174. sprintf(date,"%04d%/%02d/%02d",(tm->tm_year+1900), tm->tm_mon+1, tm->tm_mday);
  175. sprintf(time_s,"%02d%:%02d:%02d",tm->tm_hour, tm->tm_min, tm->tm_sec);
  176. for(int i = 0; i < para->user.user_count;i++)
  177. {
  178. if(strcmp(user_add->user,para->user.config[i].user_name) == 0)
  179. {
  180. flag = USER_EXIST; //user_add exist
  181. break;
  182. }
  183. }
  184. if(flag == 0)
  185. {
  186. if(para->user.user_count >= 10)
  187. {
  188. flag = USER_OVER_TEN;
  189. }else
  190. {
  191. para->user.user_count++;
  192. strcpy(para->user.config[para->user.user_count-1].user_name,user_add->user);
  193. para->user.config[para->user.user_count-1].role_id = user_add->permition;
  194. strcpy(para->user.config[para->user.user_count-1].date,date);
  195. strcpy(para->user.config[para->user.user_count-1].time,time_s);
  196. mbedtls_md5_init(&ctx);
  197. mbedtls_md5_starts(&ctx);
  198. mbedtls_md5_update(&ctx, user_add->password, strlen(user_add->password));
  199. mbedtls_md5_finish(&ctx, digest);
  200. mbedtls_md5_free(&ctx);
  201. for (int k = 0; k < 16; k++) {
  202. sprintf(&output[k * 2], "%02x", digest[k]);
  203. }
  204. output[33] = '\0';
  205. strcpy(para->user.config[para->user.user_count-1].password_md5,output);
  206. paras_user_save();
  207. }
  208. }
  209. uint8_t *data = (uint8_t *)(&hdr->data);
  210. *data = flag;
  211. uint32_t xlen = sizeof(uint8_t) + sizeof(pkt_hdr_t);
  212. ws_send(c, h->buf, xlen, 1);
  213. //printf("send len = %d\n",xlen);
  214. }
  215. static void send_user_delete_func(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  216. {
  217. web_user_delete_t * user_delete = &ctrl->user_delete;
  218. pkt_hdr_t *hdr=NULL;
  219. hdr = (pkt_hdr_t*)h->buf;
  220. uint8_t flag = USER_DELETE_SUCCESS;
  221. paras_data_t* para=paras_get();
  222. user_data_t back_user = {0};
  223. int j = 0;
  224. for(int i = 0;i < para->user.user_count;i++)
  225. {
  226. if(strcmp(para->user.config[i].user_name,user_delete->user) == 0)
  227. {
  228. }else
  229. {
  230. back_user.config[j++] = para->user.config[i];
  231. }
  232. }
  233. back_user.user_count = j;
  234. //memset(&para->user,0,sizeof(para->user));
  235. para->user = back_user;
  236. paras_user_save();
  237. uint8_t *data = (uint8_t *)(&hdr->data);
  238. hdr->magic = PKT_MAGIC;
  239. hdr->addr = 0;
  240. hdr->type = NEW_PKT_TYPE_USER;
  241. hdr->nack = 0;
  242. hdr->subtype = NEW_SUB_PKT_TYPE_USER_DELETE;
  243. hdr->dlen = 1;
  244. *data = flag;
  245. uint32_t xlen = sizeof(uint8_t) + sizeof(pkt_hdr_t);
  246. ws_send(c, h->buf, xlen, 1);
  247. }
  248. static void send_user_update_func(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  249. {
  250. web_user_update_t *user_update = &ctrl->user_update;
  251. pkt_hdr_t *hdr=NULL;
  252. hdr = (pkt_hdr_t*)h->buf;
  253. uint8_t flag = USER_DELETE_SUCCESS;
  254. paras_data_t* para=paras_get();
  255. unsigned char digest[16]={0};
  256. char output[33] = {0};
  257. mbedtls_md5_context ctx={0};
  258. for(int i = 0; i < para->user.user_count;i++)
  259. {
  260. if(strcmp(user_update->user,para->user.config[i].user_name) == 0)
  261. {
  262. mbedtls_md5_init(&ctx);
  263. mbedtls_md5_starts(&ctx);
  264. mbedtls_md5_update(&ctx, user_update->old_password, strlen(user_update->old_password));
  265. mbedtls_md5_finish(&ctx, digest);
  266. mbedtls_md5_free(&ctx);
  267. for (int k = 0; k < 16; k++) {
  268. sprintf(&output[k * 2], "%02x", digest[k]);
  269. }
  270. output[33] = '\0';
  271. if(strcmp(output,para->user.config[i].password_md5) == 0)
  272. {
  273. mbedtls_md5_init(&ctx);
  274. mbedtls_md5_starts(&ctx);
  275. mbedtls_md5_update(&ctx, user_update->new_password, strlen(user_update->new_password));
  276. mbedtls_md5_finish(&ctx, digest);
  277. mbedtls_md5_free(&ctx);
  278. for (int k = 0; k < 16; k++) {
  279. sprintf(&output[k * 2], "%02x", digest[k]);
  280. }
  281. output[33] = '\0';
  282. strcpy(para->user.config[i].password_md5,output);
  283. paras_user_save();
  284. }else
  285. {
  286. flag = USER_UPDATE_PASSERR;
  287. }
  288. break;
  289. }
  290. }
  291. uint8_t *data = (uint8_t *)(&hdr->data);
  292. hdr->magic = PKT_MAGIC;
  293. hdr->addr = 0;
  294. hdr->type = NEW_PKT_TYPE_USER;
  295. hdr->nack = 0;
  296. hdr->subtype = NEW_SUB_PKT_TYPE_USER_UPDATE;
  297. hdr->dlen = 1;
  298. *data = flag;
  299. uint32_t xlen = sizeof(uint8_t) + sizeof(pkt_hdr_t);
  300. ws_send(c, h->buf, xlen, 1);
  301. }
  302. static void send_login_func(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  303. {
  304. pkt_hdr_t *hdr=NULL;
  305. hdr = (pkt_hdr_t*)h->buf;
  306. uint8_t flag = 0;
  307. uint8_t *data = (uint8_t *)(&hdr->data);
  308. paras_data_t* para=paras_get();
  309. unsigned char digest[16]={0};
  310. char output[33] = {0};
  311. mbedtls_md5_context ctx={0};
  312. for(int i = 0; i < para->user.user_count;i++)
  313. {
  314. if(strcmp(ctrl->login.user,para->user.config[i].user_name) == 0)
  315. {
  316. mbedtls_md5_init(&ctx);
  317. mbedtls_md5_starts(&ctx);
  318. mbedtls_md5_update(&ctx, (const unsigned char *)ctrl->login.password, strlen(ctrl->login.password));
  319. mbedtls_md5_finish(&ctx, digest);
  320. mbedtls_md5_free(&ctx);
  321. for (int k = 0; k < 16; k++) {
  322. sprintf(&output[k * 2], "%02x", digest[k]);
  323. }
  324. output[33] = '\0';
  325. if(strcmp(output,para->user.config[i].password_md5) == 0)
  326. {
  327. flag = 1;
  328. }else
  329. {
  330. flag = 2;
  331. }
  332. //printf("user=%s output: %s\n",ctrl->login.user,output);
  333. break;
  334. }
  335. }
  336. hdr->magic = PKT_MAGIC;
  337. hdr->addr = 0;
  338. hdr->type = MEW_PKT_TYPE_LOGIN;
  339. hdr->nack = 0;
  340. hdr->subtype = 0;
  341. hdr->dlen = 1;
  342. *data = flag;
  343. uint32_t xlen = sizeof(uint8_t) + sizeof(pkt_hdr_t);
  344. ws_send(c, h->buf, xlen, 1);
  345. }
  346. static void send_sys(web_handle_t *h, mg_conn_t *c)
  347. {
  348. time_t t=time(NULL);
  349. struct tm *tm=localtime(&t);
  350. paras_data_t* para=paras_get();
  351. pkt_hdr_t *hdr=NULL;
  352. hdr = (pkt_hdr_t*)h->buf;
  353. hdr->magic = PKT_MAGIC;
  354. hdr->addr = 0;
  355. hdr->type = NEW_PKT_TYPE_DEVICE_INFO;
  356. hdr->nack = 0;
  357. hdr->subtype = 0;
  358. web_device_info_t *data_info = (web_device_info_t *)(&hdr->data);
  359. memset(data_info,0,sizeof(web_device_info_t));
  360. sprintf(data_info->date,"%04d%/%02d/%02d",(tm->tm_year+1900), tm->tm_mon+1, tm->tm_mday);
  361. sprintf(data_info->time,"%02d%:%02d:%02d",tm->tm_hour, tm->tm_min, tm->tm_sec);
  362. data_info->zone = (rt_tz_get()/3600);
  363. strcpy(data_info->soft_version,VERSION);
  364. strcpy(data_info->hard_version,VERSION);
  365. data_info->chs = power_get_all()->chs;
  366. data_info->board_cnt = power_data_get_board_cnt();
  367. data_info->power_type = para->prod.type;
  368. hdr->dlen = sizeof(web_device_info_t);
  369. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  370. ws_send(c, h->buf, xlen, 1);
  371. }
  372. static void reboot_sys(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  373. {
  374. (void)h;
  375. (void)c;
  376. (void)ctrl;
  377. system("reboot");
  378. }
  379. static void send_sensor_info(web_handle_t *h, mg_conn_t *c)
  380. {
  381. pkt_hdr_t *hdr=NULL;
  382. hdr = (pkt_hdr_t*)h->buf;
  383. hdr->magic = PKT_MAGIC;
  384. hdr->addr = 0;
  385. hdr->type = NEW_PKT_TYPE_SENSOR;
  386. hdr->nack = 0;
  387. hdr->subtype = 0;
  388. web_sensor_info_t *sensor_info = (web_sensor_info_t *)(&hdr->data);
  389. sensor_all_t *sensor = sensor_get_data();
  390. memset(sensor_info,0,sizeof(web_sensor_info_t)*4);
  391. strcpy(sensor_info[0].name,sensor->data[0].info.name);
  392. sensor_info[0].status = sensor->data[0].info.status;
  393. sensor_info[0].value = sensor->data[0].val[0].value;
  394. sensor_info[0].v_max = sensor->data[0].val[0].thr.max;
  395. sensor_info[0].v_min = sensor->data[0].val[0].thr.min;
  396. sensor_info[0].v_max_wrn = sensor->data[0].val[0].s_alarm.max_up;
  397. sensor_info[0].v_min_wrn = sensor->data[0].val[0].s_alarm.min_down;
  398. strcpy(sensor_info[1].name,sensor->data[0].info.name);
  399. sensor_info[1].status = sensor->data[0].info.status;
  400. sensor_info[1].value = sensor->data[0].val[1].value;
  401. sensor_info[1].v_max = sensor->data[0].val[1].thr.max;
  402. sensor_info[1].v_min = sensor->data[0].val[1].thr.min;
  403. sensor_info[1].v_max_wrn = sensor->data[0].val[1].s_alarm.max_up;
  404. sensor_info[1].v_min_wrn = sensor->data[0].val[1].s_alarm.min_down;
  405. strcpy(sensor_info[2].name,sensor->data[1].info.name);
  406. sensor_info[2].status = sensor->data[1].info.status;
  407. sensor_info[2].value = sensor->data[1].val[0].value;
  408. sensor_info[2].v_max = sensor->data[1].val[0].thr.max;
  409. sensor_info[2].v_min = sensor->data[1].val[0].thr.min;
  410. sensor_info[2].v_max_wrn = sensor->data[1].val[0].s_alarm.max_up;
  411. sensor_info[2].v_min_wrn = sensor->data[1].val[0].s_alarm.min_down;
  412. strcpy(sensor_info[3].name,sensor->data[2].info.name);
  413. sensor_info[3].status = sensor->data[2].info.status;
  414. sensor_info[3].value = sensor->data[2].val[0].value;
  415. sensor_info[3].v_max = sensor->data[2].val[0].thr.max;
  416. sensor_info[3].v_min = sensor->data[2].val[0].thr.min;
  417. sensor_info[3].v_max_wrn = sensor->data[2].val[0].s_alarm.max_up;
  418. sensor_info[3].v_min_wrn = sensor->data[2].val[0].s_alarm.min_down;
  419. hdr->dlen = sizeof(web_sensor_info_t) * 4;
  420. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  421. ws_send(c, h->buf, xlen, 1);
  422. }
  423. static void send_power_info(web_handle_t *h, mg_conn_t *c)
  424. {
  425. pkt_hdr_t *hdr=NULL;
  426. hdr = (pkt_hdr_t*)h->buf;
  427. hdr->magic = PKT_MAGIC;
  428. hdr->addr = 0;
  429. hdr->type = NEW_PKT_TYPE_ELE_INFO;
  430. hdr->nack = 0;
  431. hdr->subtype = NEW_SUB_PKT_TYPE_ELE_DATA_INFO;
  432. info_new_t *power_info = (info_new_t *)(&hdr->data);
  433. power_handle_new_t *p_handle = power_get_all();
  434. lock_on(p_handle->lck);
  435. int chn = p_handle->chs;
  436. //max translate 32
  437. for(int i = 0; i < chn;i++)
  438. {
  439. power_info[i] = p_handle->pch[i].info;
  440. }
  441. lock_off(p_handle->lck);
  442. hdr->dlen = sizeof(info_new_t) * chn;
  443. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  444. ws_send(c, h->buf, xlen, 1);
  445. }
  446. static void send_power_all(web_handle_t *h, mg_conn_t *c)
  447. {
  448. pkt_hdr_t *hdr=NULL;
  449. hdr = (pkt_hdr_t*)h->buf;
  450. hdr->magic = PKT_MAGIC;
  451. hdr->addr = 0;
  452. hdr->type = NEW_PKT_TYPE_ELE_INFO;
  453. hdr->nack = 0;
  454. hdr->subtype = NEW_SUB_PKT_TYPE_ELE_DATA_ALL;
  455. power_t *power_all = (power_t *)(&hdr->data);
  456. power_handle_new_t *p_handle = power_get_all();
  457. lock_on(p_handle->lck);
  458. power_all[0] = p_handle->total.all;
  459. for(int i =0;i < 3;i++)
  460. {
  461. power_all[i+1] = p_handle->total.all_l[i];
  462. }
  463. lock_off(p_handle->lck);
  464. hdr->dlen = sizeof(power_t) * 4;
  465. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  466. ws_send(c, h->buf, xlen, 1);
  467. }
  468. static void send_power_thr(web_handle_t *h, mg_conn_t *c)
  469. {
  470. pkt_hdr_t *hdr=NULL;
  471. hdr = (pkt_hdr_t*)h->buf;
  472. hdr->magic = PKT_MAGIC;
  473. hdr->addr = 0;
  474. hdr->type = NEW_PKT_TYPE_ELE_INFO;
  475. hdr->nack = 0;
  476. hdr->subtype = NEW_SUB_PKT_TYPE_ELE_DATA_THR;
  477. power_handle_new_t *p_handle = power_get_all();
  478. thr_t *_data = (thr_t *)(&hdr->data);
  479. int chn = p_handle->chs;
  480. for(int i =0; i < chn;i++)
  481. {
  482. _data[i] = p_handle->pch[i].thr;
  483. }
  484. hdr->dlen = sizeof(thr_t) * chn;
  485. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  486. ws_send(c, h->buf, xlen, 1);
  487. }
  488. static void set_power_ctrl(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  489. {
  490. (void)h;
  491. (void)c;
  492. power_handle_new_t *p_handle = power_get_all();
  493. uint8_t channle = ctrl->cnt_ctrl.chn;
  494. if(channle > p_handle->chs || ctrl == NULL)
  495. return;
  496. uint8_t saddr = p_handle->pch[channle].info.addr;
  497. uint8_t b_addr = p_handle->pch[channle].info.sch;
  498. p_handle->set_status(saddr,b_addr,ctrl->cnt_ctrl.status);
  499. }
  500. static void set_power_all_ctrl(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  501. {
  502. power_handle_new_t *p_handle = power_get_all();
  503. p_handle->set_all_status(ctrl->all_ctrl.status);
  504. }
  505. static void set_power_consum_clear(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  506. {
  507. (void)h;
  508. (void)c;
  509. power_handle_new_t *p_handle = power_get_all();
  510. uint8_t channle = ctrl->clear.chn;
  511. if(channle > p_handle->chs || ctrl == NULL)
  512. return;
  513. uint8_t saddr = p_handle->pch[channle].info.addr;
  514. uint8_t b_addr = p_handle->pch[channle].info.sch;
  515. p_handle->set_consumer_clear(saddr,b_addr);
  516. }
  517. static void set_power_delay(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  518. {
  519. (void)h;
  520. (void)c;
  521. power_handle_new_t *p_handle = power_get_all();
  522. uint8_t channle = ctrl->delay.chn;
  523. if(channle > p_handle->chs || ctrl == NULL)
  524. return;
  525. uint8_t saddr = p_handle->pch[channle].info.addr;
  526. uint8_t b_addr = p_handle->pch[channle].info.sch;
  527. uint8_t open = ctrl->delay.open;
  528. uint8_t close = ctrl->delay.close;
  529. p_handle->set_delay(saddr,b_addr,open,close);
  530. }
  531. static void set_power_thr(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  532. {
  533. (void)h;
  534. (void)c;
  535. power_handle_new_t *p_handle = power_get_all();
  536. uint8_t channle = ctrl->thr.chn;
  537. thr_t *thr = &ctrl->thr.thr;
  538. if(channle > p_handle->chs || ctrl == NULL)
  539. return;
  540. uint8_t saddr = p_handle->pch[channle].info.addr;
  541. uint8_t b_addr = p_handle->pch[channle].info.sch;
  542. p_handle->set_thr(saddr,b_addr,thr);
  543. }
  544. static void set_power_batch_thr(web_handle_t *h, mg_conn_t *c,wed_set_t *ctrl)
  545. {
  546. (void)h;
  547. (void)c;
  548. power_handle_new_t *p_handle = power_get_all();
  549. thr_t *thr = &ctrl->thr.thr;
  550. if(ctrl == NULL)
  551. return;
  552. for(int i=0; i < 32;i++)
  553. {
  554. if(p_handle->board[i].flag)
  555. {
  556. p_handle->set_batch_thr(i,thr);
  557. }
  558. }
  559. }
  560. static void send_power_data(web_handle_t *h, mg_conn_t *c,uint8_t id)
  561. {
  562. pkt_hdr_t *hdr=NULL;
  563. hdr = (pkt_hdr_t*)h->buf;
  564. hdr->magic = PKT_MAGIC;
  565. hdr->addr = 0;
  566. hdr->type = NEW_PKT_TYPE_ELE_INFO;
  567. hdr->nack = 0;
  568. hdr->subtype = id;
  569. power_t *power_data = (power_t *)(&hdr->data);
  570. power_handle_new_t *p_handle = power_get_all();
  571. if(id>=3)
  572. return;
  573. int chn = p_handle->chs;
  574. for(int i =0; i < chn;i++)
  575. {
  576. power_data[i] = p_handle->pch[i].power[id];
  577. }
  578. hdr->dlen = sizeof(power_t) * chn;
  579. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  580. ws_send(c, h->buf, xlen, 1);
  581. }
  582. static void set_sensor_thr(web_handle_t *h,mg_conn_t *c,uint8_t type,wed_set_t *ctrl)
  583. {
  584. (void)h;
  585. (void)c;
  586. sensor_data_t *data_temp = NULL;
  587. sensor_th_t *sensor_temp = NULL;
  588. int32_t vmax = ctrl->sensor.v_max *100;
  589. int32_t vmin = ctrl->sensor.v_min *100;
  590. switch(type)
  591. {
  592. case NEW_SUB_PKT_TYPE_HUMI:
  593. {
  594. data_temp = &sensor_get_data()->data[0];
  595. sensor_temp = &paras_get()->sensor.sens[0];
  596. data_temp->val[0].thr.en.th_sen_max_en = vmax ? 1 : 0;
  597. data_temp->val[0].thr.en.th_sen_min_en = vmin ? 1 : 0;
  598. sensor_temp->th_max_1 = vmax;
  599. sensor_temp->th_min_1 = vmin;
  600. data_temp->val[0].thr.max = ctrl->sensor.v_max;
  601. data_temp->val[0].thr.min = ctrl->sensor.v_min;
  602. }
  603. break;
  604. case NEW_SUB_PKT_TYPE_TEMP:
  605. {
  606. data_temp = &sensor_get_data()->data[0];
  607. sensor_temp = &paras_get()->sensor.sens[0];
  608. data_temp->val[1].thr.en.th_sen_max_en = vmax ? 1 : 0;
  609. data_temp->val[1].thr.en.th_sen_min_en = vmin ? 1 : 0;
  610. sensor_temp->th_max_2 = vmax;
  611. sensor_temp->th_min_2 = vmin;
  612. data_temp->val[1].thr.max = ctrl->sensor.v_max;
  613. data_temp->val[1].thr.min = ctrl->sensor.v_min;
  614. }
  615. break;
  616. case NEW_SUB_PKT_TYPE_SMOKE:
  617. {
  618. data_temp = &sensor_get_data()->data[1];
  619. sensor_temp = &paras_get()->sensor.sens[1];
  620. data_temp->val[0].thr.en.th_sen_max_en = vmax ? 1 : 0;
  621. data_temp->val[0].thr.en.th_sen_min_en = vmin ? 1 : 0;
  622. sensor_temp->th_max_1 = vmax;
  623. sensor_temp->th_min_1 = vmin;
  624. data_temp->val[0].thr.max = ctrl->sensor.v_max;
  625. data_temp->val[0].thr.min = ctrl->sensor.v_min;
  626. }
  627. break;
  628. case NEW_SUB_PKT_TYPE_CO2:
  629. {
  630. data_temp = &sensor_get_data()->data[2];
  631. sensor_temp = &paras_get()->sensor.sens[2];
  632. data_temp->val[0].thr.en.th_sen_max_en = vmax ? 1 : 0;
  633. data_temp->val[0].thr.en.th_sen_min_en = vmin ? 1 : 0;
  634. sensor_temp->th_max_1 = vmax;
  635. sensor_temp->th_min_1 = vmin;
  636. data_temp->val[0].thr.max = ctrl->sensor.v_max;
  637. data_temp->val[0].thr.min = ctrl->sensor.v_min;
  638. }
  639. break;
  640. default:
  641. return;
  642. }
  643. paras_save();
  644. }
  645. static void send_net_config(web_handle_t *h, mg_conn_t *c)
  646. {
  647. pkt_hdr_t *hdr=NULL;
  648. hdr = (pkt_hdr_t*)h->buf;
  649. hdr->magic = PKT_MAGIC;
  650. hdr->addr = 0;
  651. hdr->type = NEW_PKT_TYPE_NETWORK;
  652. hdr->nack = 0;
  653. hdr->subtype = 0;
  654. network_data_t *net = (network_data_t *)(&hdr->data);
  655. memset(net,0,sizeof(network_data_t));
  656. paras_data_t* para=paras_get();
  657. //*net = para->netwk;
  658. net_get_ip(net);
  659. hdr->dlen = sizeof(network_data_t);
  660. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  661. ws_send(c, h->buf, xlen, 1);
  662. }
  663. static void send_rs485_config(web_handle_t *h, mg_conn_t *c)
  664. {
  665. pkt_hdr_t *hdr=NULL;
  666. hdr = (pkt_hdr_t*)h->buf;
  667. hdr->magic = PKT_MAGIC;
  668. hdr->addr = 0;
  669. hdr->type = NEW_PKT_TYPE_RS485;
  670. hdr->nack = 0;
  671. hdr->subtype = 0;
  672. modbus_data_t *md = (modbus_data_t *)(&hdr->data);
  673. memset(md,0,sizeof(modbus_data_t));
  674. paras_data_t* para=paras_get();
  675. *md = para->cas;
  676. hdr->dlen = sizeof(modbus_data_t);
  677. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  678. ws_send(c, h->buf, xlen, 1);
  679. }
  680. static void send_snmp_config(web_handle_t *h, mg_conn_t *c)
  681. {
  682. pkt_hdr_t *hdr=NULL;
  683. hdr = (pkt_hdr_t*)h->buf;
  684. hdr->magic = PKT_MAGIC;
  685. hdr->addr = 0;
  686. hdr->type = NEW_PKT_TYPE_SNMP;
  687. hdr->nack = 0;
  688. hdr->subtype = 0;
  689. snmp_data_t *snmp = (snmp_data_t *)(&hdr->data);
  690. memset(snmp,0,sizeof(snmp_data_t));
  691. paras_data_t* para=paras_get();
  692. *snmp = para->snmp;
  693. hdr->dlen = sizeof(snmp_data_t);
  694. uint32_t xlen = hdr->dlen + sizeof(pkt_hdr_t);
  695. ws_send(c, h->buf, xlen, 1);
  696. }
  697. static void web_set_network(web_handle_t *h,mg_conn_t *c,wed_set_t *ctrl)
  698. {
  699. (void)h;
  700. (void)c;
  701. web_net_t *net = &ctrl->net;
  702. if(net->mode == 0 || net->mode == 1)
  703. {
  704. if(net->mode == 0)
  705. {
  706. if(sys_ip_check(net->dns1) && sys_ip_check(net->dns2));
  707. {
  708. net_ipaddr_set(net);
  709. }
  710. }else
  711. {
  712. if(sys_ip_check(net->dns1)
  713. && sys_ip_check(net->dns2)
  714. && sys_ip_check(net->gateway)
  715. && sys_ip_check(net->ipaddr)
  716. && sys_ip_check(net->mask))
  717. {
  718. net_ipaddr_set(net);
  719. }
  720. }
  721. }
  722. }
  723. static void web_set_rs485(web_handle_t *h,mg_conn_t *c,wed_set_t *ctrl)
  724. {
  725. (void)h;
  726. (void)c;
  727. web_rs485_t *rs485 = &ctrl->rs485;
  728. #if SUPPORT_CASCADE_QMODBUS
  729. cascade_reset_new(rs485->mode,rs485->addr,rs485->baud);
  730. #endif
  731. }
  732. static void web_snmp_set(web_handle_t *h,mg_conn_t *c,wed_set_t *ctrl)
  733. {
  734. (void)h;
  735. (void)c;
  736. web_snmp_t *snmp= &ctrl->snmp;
  737. paras_data_t* para=paras_get();
  738. snmp_data_t *p_snmp = &para->snmp;
  739. int len1 = strlen(snmp->publics);
  740. int len2 = strlen(snmp->privates);
  741. if(snmp->trapmode == 1)
  742. {
  743. if(sys_ip_check(snmp->nms_ip))
  744. {
  745. if(len1>0 && len2 > 0)
  746. {
  747. *p_snmp = *snmp;
  748. paras_save();
  749. snmp_strap_set();
  750. }
  751. }
  752. }else
  753. {
  754. if(len1>0 && len2 > 0)
  755. {
  756. strcpy(p_snmp->publics,snmp->publics);
  757. strcpy(p_snmp->privates,snmp->privates);
  758. p_snmp->trapmode = snmp->trapmode;
  759. paras_save();
  760. snmp_strap_set();
  761. }
  762. }
  763. }
  764. static void web_set_ntp(web_handle_t *h,mg_conn_t *c,wed_set_t *ctrl)
  765. {
  766. (void)h;
  767. (void)c;
  768. web_device_t *device= &ctrl->device;
  769. paras_data_t* para=paras_get();
  770. para->sys.tzone = device->zone;
  771. rt_tz_set(device->zone * 3600);
  772. int lenth = strlen(device->date_time);
  773. for(int i = 0; i < lenth;i++)
  774. {
  775. if(device->date_time[i] <'0' || device->date_time[i] > '9')
  776. {
  777. device->date_time[i]=' ';
  778. }
  779. }
  780. system(device->date_time);
  781. paras_save();
  782. }
  783. static void send_his_alarm(web_handle_t *h, mg_conn_t *c)
  784. {
  785. pkt_hdr_t *hdr=NULL;
  786. hdr = (pkt_hdr_t*)h->buf;
  787. hdr->magic = PKT_MAGIC;
  788. hdr->addr = 0;
  789. hdr->type = NEW_PKT_TYPE_WANNING;
  790. hdr->nack = 0;
  791. hdr->subtype = 0;
  792. uint16_t *count = (uint16_t *)(&hdr->data[0]);
  793. *count = wanning_get_count();
  794. waning_info_t *wanning = (waning_info_t *)(&hdr->data[2]);
  795. wanning_get(wanning, count);
  796. hdr->dlen = (*count)*sizeof(waning_info_t)+2;
  797. uint32_t xlen = (*count)*sizeof(waning_info_t)+sizeof(pkt_hdr_t) + 2;
  798. ws_send(c, h->buf, xlen, 1);
  799. }
  800. static int ws_handle_new(web_handle_t *h, pkt_hdr_t *hdr, mg_conn_t *c)
  801. {
  802. int r=0;
  803. if (!is_ws(c)) {
  804. return -1;
  805. }
  806. if(hdr->magic!=PKT_MAGIC) {
  807. LOGE("___ magic: 0x%x is wrong!, correct is: 0x%x\n", hdr->magic, PKT_MAGIC);
  808. return -1;
  809. }
  810. wed_set_t *ctrl = (wed_set_t*)(hdr->data);
  811. switch(hdr->type) {
  812. case NEW_PKT_TYPE_DEVICE_INFO:
  813. {
  814. if(hdr->dlen == 0)
  815. send_sys(h,c);
  816. else
  817. {
  818. reboot_sys(h,c,ctrl);
  819. }
  820. }
  821. break;
  822. case NEW_PKT_TYPE_ELE_INFO:
  823. {
  824. switch (hdr->subtype)
  825. {
  826. case NEW_SUB_PKT_TYPE_ELE_DATA_ALL:
  827. {
  828. send_power_all(h,c);
  829. }
  830. break;
  831. case NEW_SUB_PKT_TYPE_ELE_DATA_INFO:
  832. {
  833. send_power_info(h,c);
  834. }
  835. break;
  836. case NEW_SUB_PKT_TYPE_ELE_DATA_L1:
  837. {
  838. send_power_data(h,c,NEW_SUB_PKT_TYPE_ELE_DATA_L1);
  839. }
  840. break;
  841. case NEW_SUB_PKT_TYPE_ELE_DATA_L2:
  842. {
  843. send_power_data(h,c,NEW_SUB_PKT_TYPE_ELE_DATA_L2);
  844. }
  845. break;
  846. case NEW_SUB_PKT_TYPE_ELE_DATA_L3:
  847. {
  848. send_power_data(h,c,NEW_SUB_PKT_TYPE_ELE_DATA_L3);
  849. }
  850. break;
  851. case NEW_SUB_PKT_TYPE_ELE_DATA_THR:
  852. {
  853. if(hdr->dlen == 0)
  854. send_power_thr(h,c);
  855. else
  856. {
  857. set_power_thr(h,c,ctrl);
  858. }
  859. }
  860. break;
  861. case NEW_SUB_PKT_TYPE_ELE_DELAY:
  862. {
  863. if(hdr->dlen > 0) {
  864. set_power_delay(h,c,ctrl);
  865. }
  866. }
  867. break;
  868. case NEW_SUB_PKT_TYPE_ELE_CTRL:
  869. {
  870. if(hdr->dlen > 0) {
  871. set_power_ctrl(h,c,ctrl);
  872. }
  873. }
  874. break;
  875. case NEW_SUB_PKT_TYPE_ELE_ALL_CTRL:
  876. {
  877. if(hdr->dlen > 0) {
  878. set_power_all_ctrl(h,c,ctrl);
  879. }
  880. }
  881. break;
  882. case NEW_SUB_PKT_TYPE_ELE_CLEAR_CONSUMER:
  883. {
  884. if(hdr->dlen > 0) {
  885. set_power_consum_clear(h,c,ctrl);
  886. }
  887. }
  888. break;
  889. case NEW_SUB_PKT_TYPE_ELE_BATCH:
  890. {
  891. if(hdr->dlen > 0)
  892. {
  893. set_power_batch_thr(h,c,ctrl);
  894. }
  895. }
  896. break;
  897. default:
  898. break;
  899. }
  900. }
  901. break;
  902. case NEW_PKT_TYPE_SENSOR:
  903. {
  904. if(hdr->dlen == 0)
  905. {
  906. send_sensor_info(h,c);
  907. }else
  908. {
  909. set_sensor_thr(h,c,hdr->subtype,ctrl);
  910. }
  911. }
  912. break;
  913. case NEW_PKT_TYPE_NETWORK:
  914. {
  915. if(hdr->dlen == 0)
  916. {
  917. send_net_config(h,c);
  918. }else
  919. {
  920. web_set_network(h,c,ctrl);
  921. }
  922. }
  923. break;
  924. case NEW_PKT_TYPE_RS485:
  925. {
  926. if(hdr->dlen == 0)
  927. {
  928. send_rs485_config(h,c);
  929. }else
  930. {
  931. web_set_rs485(h,c,ctrl);
  932. }
  933. }
  934. break;
  935. case NEW_PKT_TYPE_SNMP:
  936. {
  937. if(hdr->dlen == 0)
  938. {
  939. send_snmp_config(h,c);
  940. }else
  941. {
  942. web_snmp_set(h,c,ctrl);
  943. }
  944. }
  945. break;
  946. case NEW_PKT_TYPE_NTP:
  947. {
  948. web_set_ntp(h,c,ctrl);
  949. }
  950. break;
  951. case NEW_PKT_TYPE_WANNING:
  952. {
  953. if(hdr->dlen == 0)
  954. {
  955. send_his_alarm(h,c);
  956. }else
  957. {
  958. switch(hdr->subtype)
  959. {
  960. case NEW_SUB_PKT_TYPE_WANNING_CLEAN:
  961. wanning_clean();
  962. break;
  963. case NEW_SUB_PKT_TYPE_WANNING_SOUND_LIGHT_CLEAN:
  964. {
  965. led_reset();
  966. beep_reset();
  967. }
  968. break;
  969. }
  970. }
  971. }
  972. break;
  973. case MEW_PKT_TYPE_LOGIN:
  974. {
  975. send_login_func(h,c,ctrl);
  976. }
  977. break;
  978. case NEW_PKT_TYPE_USER:
  979. {
  980. if(hdr->dlen == 0)
  981. {
  982. send_user_info(h,c);
  983. }else
  984. {
  985. switch(hdr->subtype)
  986. {
  987. case NEW_SUB_PKT_TYPE_USER_ADD:
  988. {
  989. send_add_user_func(h,c,ctrl);
  990. }
  991. break;
  992. case NEW_SUB_PKT_TYPE_USER_UPDATE:
  993. {
  994. send_user_update_func(h,c,ctrl);
  995. }
  996. break;
  997. case NEW_SUB_PKT_TYPE_USER_DELETE:
  998. {
  999. send_user_delete_func(h,c,ctrl);
  1000. }
  1001. break;
  1002. default:
  1003. break;
  1004. }
  1005. }
  1006. }
  1007. break;
  1008. default:
  1009. break;
  1010. }
  1011. return 0;
  1012. }
  1013. static void http_fn(mg_conn_t *c, int ev, void *ev_data)
  1014. {
  1015. int r,flag=0;
  1016. web_handle_t *h=&webHandle;
  1017. mg_stream_t s={c,ev,ev_data};
  1018. // LOGD("connect --------%lx\n",c);
  1019. #ifdef USE_MG716
  1020. if (ev == MG_EV_HTTP_MSG) {
  1021. struct mg_http_message *hm = (struct mg_http_message *) ev_data;
  1022. for(int i=0; i<h->cnt; i++) {
  1023. if (h->fn[i].f && h->fn[i].uri && mg_match(hm->uri, mg_str(h->fn[i].uri), NULL)) {
  1024. h->fn[i].f(&s); flag = 1; break;
  1025. }
  1026. }
  1027. if(flag == 0)
  1028. {
  1029. if (mg_match(hm->uri, mg_str("/ws"), NULL)) {
  1030. mg_ws_upgrade(c, hm, NULL);
  1031. } else if (mg_match(hm->uri, mg_str("/rest"), NULL)) {
  1032. // Serve REST response
  1033. mg_http_reply(c, 200, "", "{\"result\": %d}\n", 123);
  1034. } else {
  1035. struct mg_http_serve_opts opts = {.root_dir = h->rootDir};
  1036. mg_http_serve_dir(c, hm, &opts);
  1037. }
  1038. }
  1039. }
  1040. else if(ev == MG_EV_ACCEPT) {
  1041. if (c->fn_data) {
  1042. mg_tls_init(c, &h->tls);
  1043. }
  1044. // paras_data_t *p=paras_get();
  1045. // ws_send_pkt(h, c, 0, PKT_TYPE_PARAS, p, sizeof(paras_data_t), 1);
  1046. }
  1047. else if(ev == MG_EV_WS_MSG) {
  1048. struct mg_ws_message *wm = (struct mg_ws_message *) ev_data;
  1049. pkt_hdr_t *hdr=(pkt_hdr_t*)wm->data.buf;
  1050. ws_handle_new(h, hdr, c);
  1051. }else if(ev == MG_EV_CLOSE)
  1052. {
  1053. //mg_close_conn(c);
  1054. }
  1055. #else
  1056. if (ev == MG_EV_HTTP_REQUEST) {
  1057. mg_serve_http(c, (struct http_message *)ev_data, h->opts);
  1058. }
  1059. else if(ev == MG_EV_WEBSOCKET_HANDSHAKE_DONE) {
  1060. paras_data_t *p=paras_get();
  1061. ws_send_pkt(h, c, 0, PKT_TYPE_PARAS, p, sizeof(paras_data_t), 1);
  1062. set_timer(c, TIMER_INTERVAL);
  1063. }
  1064. else if(ev == MG_EV_WEBSOCKET_FRAME) {
  1065. struct websocket_message *wm = (struct websocket_message *) ev_data;
  1066. pkt_hdr_t *hdr=(pkt_hdr_t*)wm->data;
  1067. ws_handle(h, hdr, c);
  1068. }
  1069. else if(ev==MG_EV_TIMER) {
  1070. }
  1071. #endif
  1072. }
  1073. static char ack_str[2048] = {0};
  1074. static void overChannelStatusMonitoring(void* conn)
  1075. {
  1076. cJSON *cjson=NULL;
  1077. channel_power_request req = {0};
  1078. memset(ack_str,0,sizeof(ack_str));
  1079. mg_stream_t *s=(mg_stream_t*)conn;
  1080. struct mg_http_message *hm=s->ev_data;
  1081. char *rx_body_buf=(char*)hm->body.buf;
  1082. char *rx_Head_buf = (char*)hm->head.buf;
  1083. power_handle_new_t *p_handle = power_get_all();
  1084. wed_set_t ctrl = {0};
  1085. cjson = json_to_chn_pwr_status_monitor(rx_body_buf,&req);
  1086. if(cjson == NULL)
  1087. return;
  1088. if(strcmp(req.type,"chnInfo")==0)
  1089. {
  1090. if(req.pro_ch_id > 0)
  1091. {
  1092. uint8_t channle = req.pro_ch_id - 1;
  1093. if(channle > p_handle->chs)
  1094. return;
  1095. power_ch_new_t *pch = &p_handle->pch[channle];
  1096. int ph = 0;
  1097. if(p_handle->product->type == PDU_AC_I3O1_H || p_handle->product->type == PDU_AC_I3O1)
  1098. {
  1099. ph=pch->info.pse.ph-1;
  1100. uint8_t wanning = 0;
  1101. uint32_t ph_all_wanning = *(uint32_t*) (&pch->info.alarm);
  1102. wanning = (ph_all_wanning >> (ph*8)) & 0XFF; //get phse wanning
  1103. wanning_type_t wan = *(wanning_type_t *)(&wanning);
  1104. sprintf(ack_str,CHANNEL_SINGLE_RES_TYPE,pch->info.name,req.pro_ch_id,pch->power[ph].voltage,
  1105. pch->power[ph].current,pch->power[ph].power,
  1106. pch->power[ph].app_power,pch->power[ph].freq,
  1107. pch->power[ph].factor,pch->power[ph].consump,
  1108. pch->thr.v_upper,pch->thr.v_lower,
  1109. pch->thr.c_upper,pch->thr.p_upper,
  1110. pch->thr.w_upper,
  1111. pch->info.open_delay,pch->info.close_delay,pch->info.status,
  1112. wan.v_upper,wan.v_lower,wan.c_upper,wan.p_upper,wan.w_upper,
  1113. g_product_t_ac_type_str[ph]);
  1114. }else
  1115. {
  1116. sprintf(ack_str,CHANNEL_SINGLE_RES_TYPE,pch->info.name,req.pro_ch_id,pch->power[0].voltage,
  1117. pch->power[0].current,pch->power[0].power,
  1118. pch->power[0].app_power,pch->power[0].freq,
  1119. pch->power[0].factor,pch->power[0].consump,
  1120. pch->thr.v_upper,pch->thr.v_lower,
  1121. pch->thr.c_upper,pch->thr.p_upper,
  1122. pch->thr.w_upper,
  1123. pch->info.open_delay,pch->info.close_delay,
  1124. pch->info.status,
  1125. pch->info.alarm.l1_v_upper,
  1126. pch->info.alarm.l1_v_lower,pch->info.alarm.l1_c_upper,
  1127. pch->info.alarm.l1_p_upper,pch->info.alarm.l1_w_upper,
  1128. "");
  1129. }
  1130. }
  1131. }else if(strcmp(req.type,"chnWanInfo")==0)
  1132. {
  1133. //CHANEL_WANNING_INFO_TYPE
  1134. if(req.pro_ch_id > 0)
  1135. {
  1136. uint8_t channle = req.pro_ch_id - 1;
  1137. if(channle > p_handle->chs)
  1138. return;
  1139. power_ch_new_t *pch = &p_handle->pch[channle];
  1140. int ph = 0;
  1141. if(p_handle->product->type == PDU_AC_I3O1_H || p_handle->product->type == PDU_AC_I3O1)
  1142. {
  1143. uint8_t wanning = 0;
  1144. uint32_t ph_all_wanning = *(uint32_t*) (&pch->info.alarm);
  1145. ph=pch->info.pse.ph-1;
  1146. wanning = (ph_all_wanning >> (ph*8)) & 0XFF; //get phse wanning
  1147. wanning_type_t wan = *(wanning_type_t *)(&wanning);
  1148. sprintf(ack_str,CHANEL_WANNING_INFO_TYPE,pch->info.name,req.pro_ch_id,
  1149. wan.v_upper,wan.v_lower,wan.c_upper,wan.p_upper,wan.w_upper,g_product_t_ac_type_str[ph]);
  1150. }else
  1151. {
  1152. sprintf(ack_str,CHANEL_WANNING_INFO_TYPE,pch->info.name,req.pro_ch_id,pch->info.alarm.l1_v_upper,
  1153. pch->info.alarm.l1_v_lower,pch->info.alarm.l1_c_upper,
  1154. pch->info.alarm.l1_p_upper,pch->info.alarm.l1_w_upper,"");
  1155. }
  1156. }
  1157. }
  1158. else if(strcmp(req.type,"open")==0 || strcmp(req.type,"close")==0)
  1159. {
  1160. ctrl.cnt_ctrl.status = strcmp(req.type,"open")==0 ? 1 : 0;
  1161. ctrl.cnt_ctrl.chn = req.pro_ch_id - 1;
  1162. set_power_ctrl(NULL,NULL,&ctrl);
  1163. sprintf(ack_str,SUCESS_RSP);
  1164. }else if(strcmp(req.type,"setInterval")==0)
  1165. {
  1166. ctrl.delay.open = req.open;
  1167. ctrl.delay.close = req.close;
  1168. ctrl.delay.chn = req.pro_ch_id -1;
  1169. set_power_delay(NULL,NULL,&ctrl);
  1170. sprintf(ack_str,SUCESS_RSP);
  1171. }else if(strcmp(req.type,"setThreshold")==0)
  1172. {
  1173. ctrl.thr.chn = req.pro_ch_id - 1;
  1174. power_ch_new_t *pch = &p_handle->pch[ctrl.thr.chn];
  1175. ctrl.thr.thr = pch->thr;
  1176. ctrl.thr.thr.v_upper = req.v_max;
  1177. ctrl.thr.thr.v_lower = req.v_min;
  1178. ctrl.thr.thr.c_upper = req.i_max;
  1179. ctrl.thr.thr.p_upper = req.p_max;
  1180. ctrl.thr.thr.w_upper = req.w_max;
  1181. set_power_thr(NULL,NULL,&ctrl);
  1182. sprintf(ack_str,SUCESS_RSP);
  1183. }else if(strcmp(req.type,"clearConsumer")==0)
  1184. {
  1185. ctrl.clear.chn = req.pro_ch_id - 1;
  1186. set_power_consum_clear(NULL,NULL,&ctrl);
  1187. sprintf(ack_str,SUCESS_RSP);
  1188. }
  1189. cJSON_Delete(cjson);
  1190. http_reply(conn, 200, ack_str);
  1191. }
  1192. static void overallStatusMonitoring(void* conn)
  1193. {
  1194. cJSON *cjson=NULL;
  1195. all_power_request req = {0};
  1196. memset(ack_str,0,sizeof(ack_str));
  1197. mg_stream_t *s=(mg_stream_t*)conn;
  1198. struct mg_http_message *hm=s->ev_data;
  1199. char *rx_body_buf=(char*)hm->body.buf;
  1200. char *rx_Head_buf = (char*)hm->head.buf;
  1201. wed_set_t ctrl = {0};
  1202. power_handle_new_t *p_handle = power_get_all();
  1203. cjson = json_to_all_pwr_status_monitor(rx_body_buf,&req);
  1204. if(cjson == NULL)
  1205. return;
  1206. if(strcmp(req.type,"allInfo")==0)
  1207. {
  1208. if(req.ph_id== 0)
  1209. {
  1210. sprintf(ack_str,ALL_INFO_RES_TYPE,req.ph_id,p_handle->total.all.voltage,
  1211. p_handle->total.all.current,
  1212. p_handle->total.all.power,
  1213. p_handle->total.all.app_power,
  1214. p_handle->total.all.factor,
  1215. p_handle->total.all.consump,
  1216. "ALL");
  1217. }else
  1218. {
  1219. sprintf(ack_str,ALL_INFO_RES_TYPE,req.ph_id,p_handle->total.all_l[req.ph_id-1].voltage,
  1220. p_handle->total.all_l[req.ph_id-1].current,
  1221. p_handle->total.all_l[req.ph_id-1].power,
  1222. p_handle->total.all_l[req.ph_id-1].app_power,
  1223. p_handle->total.all_l[req.ph_id-1].factor,
  1224. p_handle->total.all_l[req.ph_id-1].consump,
  1225. g_product_t_ac_type_str[req.ph_id-1]);
  1226. }
  1227. }else if(strcmp(req.type,"open")==0 || strcmp(req.type,"close")==0)
  1228. {
  1229. int status = strcmp(req.type,"open")==0 ? 1 : 0;
  1230. p_handle->set_all_status(status);
  1231. sprintf(ack_str,SUCESS_RSP);
  1232. }else if(strcmp(req.type,"setBatchThreshold")==0)
  1233. {
  1234. *(uint16_t*)(&ctrl.thr.thr.en) = 0xFFFF;
  1235. ctrl.thr.thr.v_upper = req.v_max;
  1236. ctrl.thr.thr.v_lower = req.v_min;
  1237. ctrl.thr.thr.c_upper = req.i_max;
  1238. ctrl.thr.thr.p_upper = req.p_max;
  1239. ctrl.thr.thr.w_upper = req.w_max;
  1240. set_power_batch_thr(NULL,NULL,&ctrl);
  1241. sprintf(ack_str,SUCESS_RSP);
  1242. }
  1243. cJSON_Delete(cjson);
  1244. http_reply(conn, 200, ack_str);
  1245. }
  1246. static void sensorStatusMonitoring(void* conn)
  1247. {
  1248. cJSON *cjson=NULL;
  1249. sensor_request req = {0};
  1250. memset(ack_str,0,sizeof(ack_str));
  1251. mg_stream_t *s=(mg_stream_t*)conn;
  1252. struct mg_http_message *hm=s->ev_data;
  1253. char *rx_body_buf=(char*)hm->body.buf;
  1254. sensor_all_t *sensor = sensor_get_data();
  1255. wed_set_t ctrl = {0};
  1256. cjson = json_to_sensor_status_monitor(rx_body_buf,&req);
  1257. if(cjson == NULL)
  1258. return;
  1259. //SENSOR_INFO_RES_TYPE
  1260. if(strcmp(req.type,"sensorInfo")==0)
  1261. {
  1262. switch(req.sensor_id)
  1263. {
  1264. case NEW_SUB_PKT_TYPE_HUMI:
  1265. {
  1266. sprintf(ack_str,SENSOR_INFO_RES_TYPE,req.sensor_id,
  1267. "Humidity",sensor->data[0].val[0].value,
  1268. sensor->data[0].val[0].thr.max,sensor->data[0].val[0].thr.min,
  1269. sensor->data[0].val[0].s_alarm.max_up,sensor->data[0].val[0].s_alarm.min_down,
  1270. sensor->data[0].info.status);
  1271. }
  1272. break;
  1273. case NEW_SUB_PKT_TYPE_TEMP:
  1274. {
  1275. sprintf(ack_str,SENSOR_INFO_RES_TYPE,req.sensor_id,
  1276. "Temperature",sensor->data[0].val[1].value,
  1277. sensor->data[0].val[1].thr.max,sensor->data[0].val[1].thr.min,
  1278. sensor->data[0].val[1].s_alarm.max_up,sensor->data[0].val[1].s_alarm.min_down,
  1279. sensor->data[0].info.status);
  1280. }
  1281. break;
  1282. case NEW_SUB_PKT_TYPE_SMOKE:
  1283. {
  1284. sprintf(ack_str,SENSOR_INFO_RES_TYPE,req.sensor_id,
  1285. "Smoke",sensor->data[1].val[0].value,
  1286. sensor->data[1].val[0].thr.max,sensor->data[1].val[0].thr.min,
  1287. sensor->data[1].val[0].s_alarm.max_up,sensor->data[1].val[0].s_alarm.min_down,
  1288. sensor->data[1].info.status);
  1289. }
  1290. break;
  1291. case NEW_SUB_PKT_TYPE_CO2:
  1292. {
  1293. sprintf(ack_str,SENSOR_INFO_RES_TYPE,req.sensor_id,
  1294. "CO2",sensor->data[2].val[0].value,
  1295. sensor->data[2].val[0].thr.max,sensor->data[2].val[0].thr.min,
  1296. sensor->data[2].val[0].s_alarm.max_up,sensor->data[2].val[0].s_alarm.min_down,
  1297. sensor->data[2].info.status);
  1298. }
  1299. break;
  1300. default:
  1301. break;
  1302. }
  1303. }else if(strcmp(req.type,"sensorSet")==0)
  1304. {
  1305. switch(req.sensor_id)
  1306. {
  1307. case NEW_SUB_PKT_TYPE_HUMI:
  1308. case NEW_SUB_PKT_TYPE_TEMP:
  1309. case NEW_SUB_PKT_TYPE_SMOKE:
  1310. case NEW_SUB_PKT_TYPE_CO2:
  1311. {
  1312. ctrl.sensor.v_max = req.s_max;
  1313. ctrl.sensor.v_min = req.s_min;
  1314. set_sensor_thr(NULL,NULL,req.sensor_id,&ctrl);
  1315. sprintf(ack_str,SUCESS_RSP);
  1316. }
  1317. break;
  1318. }
  1319. }
  1320. cJSON_Delete(cjson);
  1321. http_reply(conn, 200, ack_str);
  1322. }
  1323. static int webSetCallback(void)
  1324. {
  1325. httpAddCallback("/pdu/channelStatusMonitoring", overChannelStatusMonitoring);
  1326. httpAddCallback("/pdu/overallStatusMonitoring", overallStatusMonitoring);
  1327. httpAddCallback("/pdu/sensorStatusMonitoring", sensorStatusMonitoring);
  1328. // httpAddCallback("/pdu/alarmProtect", alarmProtect);
  1329. // httpAddCallback("/pdu/alarmProtect", equipmentMintenance);
  1330. return 0;
  1331. }
  1332. static void web_thread(void *arg)
  1333. {
  1334. mg_conn_t *nc;
  1335. const char *http_addr="http://[::]:80";
  1336. const char *https_addr="https://[::]:443";
  1337. thread_handle_t *th=(thread_handle_t*)arg;
  1338. web_handle_t *h=(web_handle_t*)th->attr->arg;
  1339. strcpy(h->rootDir, "/nor/web");
  1340. #ifdef USE_MG716
  1341. mg_log_set(MG_LL_ERROR);
  1342. mg_mgr_init(&h->mgr);
  1343. //mg_timer_add(&h->mgr, TIMER_INTERVAL, MG_TIMER_REPEAT, timer_fn, h);
  1344. if (mg_http_listen(&h->mgr, http_addr, http_fn, NULL) == NULL) {
  1345. MG_ERROR(("cannot listen on %s\n", http_addr));
  1346. }
  1347. #else
  1348. mg_mgr_init(&h->mgr, NULL);
  1349. nc = mg_bind(&h->mgr, "80", http_fn);
  1350. strcpy(h->rootDir, "/nor/web");
  1351. mg_set_protocol_http_websocket(nc);
  1352. h->opts.document_root = h->rootDir;
  1353. h->opts.enable_directory_listing = "yes";
  1354. #endif
  1355. webSetCallback();
  1356. while(th->quit==0) {
  1357. mg_mgr_poll(&h->mgr, 50);
  1358. }
  1359. mg_mgr_free(&h->mgr);
  1360. }
  1361. int web_init(void)
  1362. {
  1363. list_cfg_t lc={0,0,10};
  1364. web_handle_t *h=&webHandle;
  1365. memset(h, 0, sizeof(web_handle_t));
  1366. h->list = list_init(&lc);
  1367. h->buflen = sizeof(pkt_hdr_t)+sizeof(power_ch_t)*ONCE_SEND_CNT+8;
  1368. h->buf = (char*)malloc(h->buflen);
  1369. thread_start(THREAD_ID_WEB, web_thread, h);
  1370. return 0;
  1371. }
  1372. int web_post(int type, void *data, int len)
  1373. {
  1374. struct mg_connection *c;
  1375. web_handle_t *h=&webHandle;
  1376. return list_append(h->list, type, data, len);
  1377. }