net.c 48 KB

1234567891011121314151617181920212223242526272829303132333435363738394041424344454647484950515253545556575859606162636465666768697071727374757677787980818283848586878889909192939495969798991001011021031041051061071081091101111121131141151161171181191201211221231241251261271281291301311321331341351361371381391401411421431441451461471481491501511521531541551561571581591601611621631641651661671681691701711721731741751761771781791801811821831841851861871881891901911921931941951961971981992002012022032042052062072082092102112122132142152162172182192202212222232242252262272282292302312322332342352362372382392402412422432442452462472482492502512522532542552562572582592602612622632642652662672682692702712722732742752762772782792802812822832842852862872882892902912922932942952962972982993003013023033043053063073083093103113123133143153163173183193203213223233243253263273283293303313323333343353363373383393403413423433443453463473483493503513523533543553563573583593603613623633643653663673683693703713723733743753763773783793803813823833843853863873883893903913923933943953963973983994004014024034044054064074084094104114124134144154164174184194204214224234244254264274284294304314324334344354364374384394404414424434444454464474484494504514524534544554564574584594604614624634644654664674684694704714724734744754764774784794804814824834844854864874884894904914924934944954964974984995005015025035045055065075085095105115125135145155165175185195205215225235245255265275285295305315325335345355365375385395405415425435445455465475485495505515525535545555565575585595605615625635645655665675685695705715725735745755765775785795805815825835845855865875885895905915925935945955965975985996006016026036046056066076086096106116126136146156166176186196206216226236246256266276286296306316326336346356366376386396406416426436446456466476486496506516526536546556566576586596606616626636646656666676686696706716726736746756766776786796806816826836846856866876886896906916926936946956966976986997007017027037047057067077087097107117127137147157167177187197207217227237247257267277287297307317327337347357367377387397407417427437447457467477487497507517527537547557567577587597607617627637647657667677687697707717727737747757767777787797807817827837847857867877887897907917927937947957967977987998008018028038048058068078088098108118128138148158168178188198208218228238248258268278288298308318328338348358368378388398408418428438448458468478488498508518528538548558568578588598608618628638648658668678688698708718728738748758768778788798808818828838848858868878888898908918928938948958968978988999009019029039049059069079089099109119129139149159169179189199209219229239249259269279289299309319329339349359369379389399409419429439449459469479489499509519529539549559569579589599609619629639649659669679689699709719729739749759769779789799809819829839849859869879889899909919929939949959969979989991000100110021003100410051006100710081009101010111012101310141015101610171018101910201021102210231024102510261027102810291030103110321033103410351036103710381039104010411042104310441045104610471048104910501051105210531054105510561057105810591060106110621063106410651066106710681069107010711072107310741075107610771078107910801081108210831084108510861087108810891090109110921093109410951096109710981099110011011102110311041105110611071108110911101111111211131114111511161117111811191120112111221123112411251126112711281129113011311132113311341135113611371138113911401141
  1. // Copyright (c) 2023 Cesanta Software Limited
  2. // All rights reserved
  3. #include <syslog.h>
  4. #include "net.h"
  5. #include "appl.h"
  6. // Authenticated user.
  7. // A user can be authenticated by:
  8. // - a name:pass pair, passed in a header Authorization: Basic .....
  9. // - an access_token, passed in a header Cookie: access_token=....
  10. // When a user is shown a login screen, she enters a user:pass. If successful,
  11. // a server responds with a http-only access_token cookie set.
  12. struct user {
  13. const char *name, *pass, *access_token;
  14. };
  15. // Settings
  16. struct settings {
  17. bool log_enabled;
  18. int log_level;
  19. long brightness;
  20. char *device_name;
  21. };
  22. static struct settings s_settings = {true, 1, 57, NULL};
  23. static const char *s_json_header =
  24. "Content-Type: application/json\r\n"
  25. "Cache-Control: no-cache\r\n";
  26. static uint64_t s_boot_timestamp = 0; // Updated by SNTP
  27. // This is for newlib and TLS (mbedTLS)
  28. uint64_t mg_now(void) {
  29. return mg_millis() + s_boot_timestamp;
  30. }
  31. int ui_event_next(int no, struct ui_event *e) {
  32. if (no < 0 || no >= MAX_EVENTS_NO) return 0;
  33. srand((unsigned) no);
  34. e->type = (uint8_t) rand() % 4;
  35. e->prio = (uint8_t) rand() % 3;
  36. e->timestamp =
  37. (unsigned long) ((int64_t) mg_now() - 86400 * 1000 /* one day back */ +
  38. no * 300 * 1000 /* 5 mins between alerts */ +
  39. 1000 * (rand() % 300) /* randomize event time */) /
  40. 1000UL;
  41. mg_snprintf(e->text, MAX_EVENT_TEXT_SIZE, "event#%d", no);
  42. return no + 1;
  43. }
  44. // SNTP connection event handler. When we get a response from an SNTP server,
  45. // adjust s_boot_timestamp. We'll get a valid time from that point on
  46. static void sfn(struct mg_connection *c, int ev, void *ev_data) {
  47. uint64_t *expiration_time = (uint64_t *) c->data;
  48. if (ev == MG_EV_OPEN) {
  49. *expiration_time = mg_millis() + 3000; // Store expiration time in 3s
  50. } else if (ev == MG_EV_SNTP_TIME) {
  51. uint64_t t = *(uint64_t *) ev_data;
  52. s_boot_timestamp = t - mg_millis();
  53. c->is_closing = 1;
  54. } else if (ev == MG_EV_POLL) {
  55. if (mg_millis() > *expiration_time) c->is_closing = 1;
  56. }
  57. }
  58. static void timer_sntp_fn(void *param) { // SNTP timer function. Sync up time
  59. mg_sntp_connect(param, "udp://time.google.com:123", sfn, NULL);
  60. }
  61. // Parse HTTP requests, return authenticated user or NULL
  62. static struct user *authenticate(struct mg_http_message *hm) {
  63. // In production, make passwords strong and tokens randomly generated
  64. // In this example, user list is kept in RAM. In production, it can
  65. // be backed by file, database, or some other method.
  66. static struct user users[] = {
  67. {"admin", "admin", "admin_token"},
  68. {"user1", "user1", "user1_token"},
  69. {"user2", "user2", "user2_token"},
  70. {NULL, NULL, NULL},
  71. };
  72. char user[64], pass[64];
  73. struct user *u, *result = NULL;
  74. mg_http_creds(hm, user, sizeof(user), pass, sizeof(pass));
  75. MG_VERBOSE(("user [%s] pass [%s]", user, pass));
  76. if (user[0] != '\0' && pass[0] != '\0') {
  77. // Both user and password is set, search by user/password
  78. for (u = users; result == NULL && u->name != NULL; u++)
  79. if (strcmp(user, u->name) == 0 && strcmp(pass, u->pass) == 0) result = u;
  80. } else if (user[0] == '\0') {
  81. // Only password is set, search by token
  82. for (u = users; result == NULL && u->name != NULL; u++)
  83. if (strcmp(pass, u->access_token) == 0) result = u;
  84. }
  85. return result;
  86. }
  87. static void handle_login(struct mg_connection *c, struct user *u) {
  88. char cookie[256];
  89. mg_snprintf(cookie, sizeof(cookie),
  90. "Set-Cookie: access_token=%s; Path=/; "
  91. "%sHttpOnly; SameSite=Lax; Max-Age=%d\r\n",
  92. u->access_token, c->is_tls ? "Secure; " : "", 3600 * 24);
  93. mg_http_reply(c, 200, cookie, "{%m:%m}", MG_ESC("user"), MG_ESC(u->name));
  94. }
  95. static void handle_logout(struct mg_connection *c) {
  96. char cookie[256];
  97. mg_snprintf(cookie, sizeof(cookie),
  98. "Set-Cookie: access_token=; Path=/; "
  99. "Expires=Thu, 01 Jan 1970 00:00:00 UTC; "
  100. "%sHttpOnly; Max-Age=0; \r\n",
  101. c->is_tls ? "Secure; " : "");
  102. mg_http_reply(c, 200, cookie, "true\n");
  103. }
  104. static void handle_debug(struct mg_connection *c, struct mg_http_message *hm) {
  105. int level = mg_json_get_long(hm->body, "$.level", MG_LL_DEBUG);
  106. mg_log_set(level);
  107. mg_http_reply(c, 200, "", "Debug level set to %d\n", level);
  108. }
  109. static size_t print_int_arr(void (*out)(char, void *), void *ptr, va_list *ap) {
  110. size_t i, len = 0, num = va_arg(*ap, size_t); // Number of items in the array
  111. int *arr = va_arg(*ap, int *); // Array ptr
  112. for (i = 0; i < num; i++) {
  113. len += mg_xprintf(out, ptr, "%s%d", i == 0 ? "" : ",", arr[i]);
  114. }
  115. return len;
  116. }
  117. static void handle_stats_get(struct mg_connection *c) {
  118. int points[] = {21, 22, 22, 19, 18, 20, 23, 23, 22, 22, 22, 23, 22};
  119. mg_http_reply(c, 200, s_json_header, "{%m:%d,%m:%d,%m:[%M]}\n",
  120. MG_ESC("temperature"), 21, //
  121. MG_ESC("humidity"), 67, //
  122. MG_ESC("points"), print_int_arr,
  123. sizeof(points) / sizeof(points[0]), points);
  124. }
  125. static size_t print_events(void (*out)(char, void *), void *ptr, va_list *ap) {
  126. size_t len = 0;
  127. struct ui_event ev;
  128. int pageno = va_arg(*ap, int);
  129. int no = (pageno - 1) * EVENTS_PER_PAGE;
  130. int end = no + EVENTS_PER_PAGE;
  131. while ((no = ui_event_next(no, &ev)) != 0 && no <= end) {
  132. len += mg_xprintf(out, ptr, "%s{%m:%lu,%m:%d,%m:%d,%m:%m}\n", //
  133. len == 0 ? "" : ",", //
  134. MG_ESC("time"), ev.timestamp, //
  135. MG_ESC("type"), ev.type, //
  136. MG_ESC("prio"), ev.prio, //
  137. MG_ESC("text"), MG_ESC(ev.text));
  138. }
  139. return len;
  140. }
  141. static void handle_events_get(struct mg_connection *c,
  142. struct mg_http_message *hm) {
  143. int pageno = mg_json_get_long(hm->body, "$.page", 1);
  144. mg_http_reply(c, 200, s_json_header, "{%m:[%M], %m:%d}\n", MG_ESC("arr"),
  145. print_events, pageno, MG_ESC("totalCount"), MAX_EVENTS_NO);
  146. }
  147. static void handle_settings_set(struct mg_connection *c, struct mg_str body) {
  148. struct Settings_t* set = &APPL.Set.s;
  149. struct chanmqtt_t *mqtt = &APPL.chanmqtt[4];
  150. int cmd;
  151. int param;
  152. bool ok = true;
  153. int rc;
  154. long val;
  155. int i;
  156. char buf[128];
  157. char* p;
  158. val = mg_json_get_long(body, "$.cmd", -1);
  159. if(val != -1){
  160. cmd = val;
  161. syslog(LOG_INFO,"%s, cmd:%d", __func__, cmd);
  162. switch (cmd)
  163. {
  164. case SETTINGS_CMD_SET_CHG_CELLV:
  165. val = mg_json_get_long(body, "$.param", 0);
  166. if( val == 0 ){
  167. ok = false;
  168. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHG_CELLV, mg_json_get_long Fail", __func__);
  169. }else{
  170. set->ChgCellV = val/1000.0;
  171. if( appl_cfg_save() != 0){
  172. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHG_CELLV, appl_cfg_save Fail", __func__);
  173. appl_cfg_set_err();
  174. ok = false;
  175. }else{
  176. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHG_CELLV, set->ChgCellV is set to %.3f", __func__, set->ChgCellV);
  177. }
  178. }
  179. break;
  180. case SETTINGS_CMD_SET_DHG_CELLV:
  181. val = mg_json_get_long(body, "$.param", 0);
  182. if( val == 0 ){
  183. ok = false;
  184. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHG_CELLV, mg_json_get_long Fail", __func__);
  185. }else{
  186. set->DhgCellV = val/1000.0;
  187. if(appl_cfg_save() != 0){
  188. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHG_CELLV, appl_cfg_save Fail", __func__);
  189. appl_cfg_set_err();
  190. ok = false;
  191. }else{
  192. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHG_CELLV, set->DhgCellV is set to %.3f", __func__, set->DhgCellV);
  193. }
  194. }
  195. break;
  196. case SETTINGS_CMD_SET_PCURV:
  197. for(i = 0; i < 96; i++){
  198. sprintf(buf,"$.%d", i+1);
  199. val = mg_json_get_long(body, buf, -999999);
  200. if( val == -999999 ){
  201. ok = false;
  202. break;
  203. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_PCURV, mg_json_get_long Fail", __func__);
  204. }else{
  205. set->pcurv[i] = val;
  206. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_PCURV, new point set, idx:%d,val:%d", __func__, i+1, val);
  207. }
  208. }
  209. if( ok ){
  210. if(appl_cfg_save() != 0){
  211. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_PCURV, appl_cfg_save Fail", __func__);
  212. appl_cfg_set_err();
  213. ok = false;
  214. }else{
  215. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_PCURV, Ok", __func__);
  216. }
  217. }
  218. break;
  219. case SETTINGS_CMD_SET_CHGGATELIM:
  220. val = mg_json_get_long(body, "$.param", -999999);
  221. if( val == -999999 ){
  222. ok = false;
  223. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGGATELIM, mg_json_get_long Fail", __func__);
  224. }else{
  225. set->ChgGateLim = val;
  226. if(appl_cfg_save() != 0){
  227. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGGATELIM, appl_cfg_save Fail", __func__);
  228. appl_cfg_set_err();
  229. ok = false;
  230. }else{
  231. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGGATELIM, set->ChgGateLim is set to %d", __func__, set->ChgGateLim);
  232. }
  233. }
  234. break;
  235. case SETTINGS_CMD_SET_CHGTRANSLIM:
  236. val = mg_json_get_long(body, "$.param", -999999);
  237. if( val == -999999 ){
  238. ok = false;
  239. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGTRANSLIM, mg_json_get_long Fail", __func__);
  240. }else{
  241. set->ChgTransLim = val;
  242. if(appl_cfg_save() != 0){
  243. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGTRANSLIM, appl_cfg_save Fail", __func__);
  244. appl_cfg_set_err();
  245. ok = false;
  246. }else{
  247. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CHGTRANSLIM, set->ChgTransLim is set to %d", __func__, set->ChgTransLim);
  248. }
  249. }
  250. break;
  251. case SETTINGS_CMD_SET_DHGGATELIM:
  252. val = mg_json_get_long(body, "$.param", -999999);
  253. if( val == -999999 ){
  254. ok = false;
  255. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGGATELIM, mg_json_get_long Fail", __func__);
  256. }else{
  257. set->DhgGateLim = val;
  258. if(appl_cfg_save() != 0){
  259. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGGATELIM, appl_cfg_save Fail", __func__);
  260. appl_cfg_set_err();
  261. ok = false;
  262. }else{
  263. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGGATELIM, set->DhgGateLim is set to %d", __func__, set->DhgGateLim);
  264. }
  265. }
  266. break;
  267. case SETTINGS_CMD_SET_DHGTRANSLIM:
  268. val = mg_json_get_long(body, "$.param", -999999);
  269. if( val == -999999 ){
  270. ok = false;
  271. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGTRANSLIM, mg_json_get_long Fail", __func__);
  272. }else{
  273. set->DhgTransLim = val;
  274. if(appl_cfg_save() != 0){
  275. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGTRANSLIM, appl_cfg_save Fail", __func__);
  276. appl_cfg_set_err();
  277. ok = false;
  278. }else{
  279. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DHGTRANSLIM, set->DhgTransLim is set to %d", __func__, set->DhgTransLim);
  280. }
  281. }
  282. break;
  283. case SETTINGS_CMD_SET_SN:
  284. p = mg_json_get_str(body, "$.param");
  285. if( p != NULL){
  286. strcpy(set->szSN, p);
  287. free(p);
  288. if(appl_cfg_save() != 0){
  289. appl_cfg_set_err();
  290. ok = false;
  291. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_SN, appl_cfg_save Fail", __func__);
  292. }else{
  293. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_SN, appl_cfg_save Ok : %s", __func__, set->szSN);
  294. }
  295. }else{
  296. ok = false;
  297. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_SN, mg_json_get_str Fail", __func__);
  298. }
  299. break;
  300. case SETTINGS_CMD_SET_CLOUD_USERNAME:
  301. p = mg_json_get_str(body, "$.param");
  302. if( p != NULL){
  303. strcpy(set->szCloudUserName, p);
  304. free(p);
  305. if(appl_cfg_save() != 0){
  306. appl_cfg_set_err();
  307. ok = false;
  308. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_USERNAME, appl_cfg_save Fail", __func__);
  309. }else{
  310. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_USERNAME, appl_cfg_save Ok : %s", __func__, set->szCloudUserName);
  311. }
  312. }else{
  313. ok = false;
  314. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_USERNAME, mg_json_get_str Fail", __func__);
  315. }
  316. break;
  317. case SETTINGS_CMD_SET_CLOUD_PASSWD:
  318. p = mg_json_get_str(body, "$.param");
  319. if( p != NULL){
  320. strcpy(set->szCloudPasswd, p);
  321. free(p);
  322. if(appl_cfg_save() != 0){
  323. appl_cfg_set_err();
  324. ok = false;
  325. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_PASSWD, appl_cfg_save Fail", __func__);
  326. }else{
  327. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_PASSWD, appl_cfg_save Ok : %s", __func__, set->szCloudPasswd);
  328. }
  329. }else{
  330. ok = false;
  331. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_PASSWD, mg_json_get_str Fail", __func__);
  332. }
  333. break;
  334. case SETTINGS_CMD_SET_CLOUD_URL:
  335. p = mg_json_get_str(body, "$.param");
  336. if( p != NULL){
  337. strcpy(set->szCloudUrl, p);
  338. free(p);
  339. if(appl_cfg_save() != 0){
  340. appl_cfg_set_err();
  341. ok = false;
  342. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_URL, appl_cfg_save Fail", __func__);
  343. }else{
  344. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_URL, appl_cfg_save Ok : %s", __func__, set->szCloudUrl);
  345. }
  346. }else{
  347. ok = false;
  348. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_URL, mg_json_get_str Fail", __func__);
  349. }
  350. break;
  351. case SETTINGS_CMD_SET_CLOUD_CLIENTID:
  352. p = mg_json_get_str(body, "$.param");
  353. if( p != NULL){
  354. strcpy(set->szClientId, p);
  355. free(p);
  356. if(appl_cfg_save() != 0){
  357. appl_cfg_set_err();
  358. ok = false;
  359. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_CLIENTID, appl_cfg_save Fail", __func__);
  360. }else{
  361. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_CLIENTID, appl_cfg_save Ok : %s", __func__, set->szClientId);
  362. }
  363. }else{
  364. ok = false;
  365. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CLOUD_CLIENTID, mg_json_get_str Fail", __func__);
  366. }
  367. break;
  368. case SETTINGS_CMD_REGISTER:
  369. mqtt->Cmd = CMD_MQTT_REGISTER;
  370. break;
  371. case SETTINGS_CMD_SET_DATAKEEPDAY:
  372. val = mg_json_get_long(body, "$.param", -1);
  373. if( val == -1 ){
  374. ok = false;
  375. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DATAKEEPDAY, mg_json_get_long Fail", __func__);
  376. }else{
  377. set->DataKeepDay = val;
  378. if(appl_cfg_save() != 0){
  379. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DATAKEEPDAY, appl_cfg_save Fail", __func__);
  380. appl_cfg_set_err();
  381. ok = false;
  382. }else{
  383. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_DATAKEEPDAY, set->DataKeepDay is set to %d", __func__, set->DataKeepDay);
  384. }
  385. }
  386. break;
  387. case SETTINGS_CMD_SET_UPLOADHIHGSPEED:
  388. val = mg_json_get_long(body, "$.param", -1);
  389. if( val == -1 ){
  390. ok = false;
  391. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADHIHGSPEED, mg_json_get_long Fail", __func__);
  392. }else{
  393. set->UploadHighSpeed = val;
  394. if(appl_cfg_save() != 0){
  395. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADHIHGSPEED, appl_cfg_save Fail", __func__);
  396. appl_cfg_set_err();
  397. ok = false;
  398. }else{
  399. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADHIHGSPEED, set->UploadHighSpeed is set to %d", __func__, set->UploadHighSpeed);
  400. }
  401. }
  402. break;
  403. case SETTINGS_CMD_SET_UPLOADMEDIUMSPEED:
  404. val = mg_json_get_long(body, "$.param", -1);
  405. if( val == -1 ){
  406. ok = false;
  407. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADMEDIUMSPEED, mg_json_get_long Fail", __func__);
  408. }else{
  409. set->UploadMediumSpeed = val;
  410. if(appl_cfg_save() != 0){
  411. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADMEDIUMSPEED, appl_cfg_save Fail", __func__);
  412. appl_cfg_set_err();
  413. ok = false;
  414. }else{
  415. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADMEDIUMSPEED, set->UploadMediumSpeed is set to %d", __func__, set->UploadMediumSpeed);
  416. }
  417. }
  418. break;
  419. case SETTINGS_CMD_SET_UPLOADSLOWSPEED:
  420. val = mg_json_get_long(body, "$.param", -1);
  421. if( val == -1 ){
  422. ok = false;
  423. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADSLOWSPEED, mg_json_get_long Fail", __func__);
  424. }else{
  425. set->UploadSlowSpeed = val;
  426. if(appl_cfg_save() != 0){
  427. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADSLOWSPEED, appl_cfg_save Fail", __func__);
  428. appl_cfg_set_err();
  429. ok = false;
  430. }else{
  431. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_UPLOADSLOWSPEED, set->UploadSlowSpeed is set to %d", __func__, set->UploadSlowSpeed);
  432. }
  433. }
  434. break;
  435. case SETTINGS_CMD_SET_GATE_COUPLE_NBR:
  436. val = mg_json_get_long(body, "$.param", -1);
  437. if( val == -1 ){
  438. ok = false;
  439. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_GATE_COUPLE_NBR, mg_json_get_long Fail", __func__);
  440. }else{
  441. set->GateCoupleNbr = val;
  442. if(appl_cfg_save() != 0){
  443. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_GATE_COUPLE_NBR, appl_cfg_save Fail", __func__);
  444. appl_cfg_set_err();
  445. ok = false;
  446. }else{
  447. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_GATE_COUPLE_NBR, set->GateCoupleNbr is set to %d", __func__, set->GateCoupleNbr);
  448. }
  449. }
  450. break;
  451. case SETTINGS_CMD_SET_TRANS_COUPLE_NBR:
  452. val = mg_json_get_long(body, "$.param", -1);
  453. if( val == -1 ){
  454. ok = false;
  455. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_COUPLE_NBR, mg_json_get_long Fail", __func__);
  456. }else{
  457. set->TransCoupleNbr = val;
  458. if(appl_cfg_save() != 0){
  459. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_COUPLE_NBR, appl_cfg_save Fail", __func__);
  460. appl_cfg_set_err();
  461. ok = false;
  462. }else{
  463. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_COUPLE_NBR, set->TransCoupleNbr is set to %d", __func__, set->TransCoupleNbr);
  464. }
  465. }
  466. break;
  467. case SETTINGS_CMD_SET_CTNMETER_NBR:
  468. val = mg_json_get_long(body, "$.param", -1);
  469. if( val == -1 ){
  470. ok = false;
  471. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_NBR, mg_json_get_long Fail", __func__);
  472. }else{
  473. set->CtnMeterNbr = val;
  474. if(appl_cfg_save() != 0){
  475. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_NBR, appl_cfg_save Fail", __func__);
  476. appl_cfg_set_err();
  477. ok = false;
  478. }else{
  479. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_NBR, set->TransCoupleNbr is set to %d", __func__, set->TransCoupleNbr);
  480. }
  481. }
  482. break;
  483. case SETTINGS_CMD_SET_TRANS_ID:
  484. val = mg_json_get_long(body, "$.param", -1);
  485. if( val == -1 ){
  486. ok = false;
  487. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_ID, mg_json_get_long Fail", __func__);
  488. }else{
  489. set->TransId = val;
  490. if(appl_cfg_save() != 0){
  491. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_ID, appl_cfg_save Fail", __func__);
  492. appl_cfg_set_err();
  493. ok = false;
  494. }else{
  495. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_TRANS_ID, set->TransCoupleNbr is set to %d", __func__, set->TransCoupleNbr);
  496. }
  497. }
  498. break;
  499. case SETTINGS_CMD_SET_CTNMETER_ID:
  500. val = mg_json_get_long(body, "$.param", -1);
  501. if( val == -1 ){
  502. ok = false;
  503. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_ID, mg_json_get_long Fail", __func__);
  504. }else{
  505. set->CtnMeterId = val;
  506. if(appl_cfg_save() != 0){
  507. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_ID, appl_cfg_save Fail", __func__);
  508. appl_cfg_set_err();
  509. ok = false;
  510. }else{
  511. syslog(LOG_INFO, "%s, SETTINGS_CMD_SET_CTNMETER_ID, set->TransCoupleNbr is set to %d", __func__, set->CtnMeterId);
  512. }
  513. }
  514. break;
  515. case SETTINGS_CMD_TEST:
  516. syslog(LOG_INFO,"%s, Get Test Cmd", __func__);
  517. rc = appl_snap_rmdir("./snap/test");
  518. syslog(LOG_INFO,"%s, rc:%d", __func__, rc);
  519. break;
  520. default:
  521. break;
  522. }
  523. }else{
  524. ok = false;
  525. syslog(LOG_INFO,"%s, Get Cmd Fail", __func__);
  526. }
  527. mg_http_reply(c, 200, s_json_header,
  528. "{%m:%s,%m:%m}", //
  529. MG_ESC("status"), ok ? "true" : "false", //
  530. MG_ESC("message"), MG_ESC(ok ? "Success" : "Failed"));
  531. }
  532. static void handle_pcs_set(struct mg_connection *c, struct mg_str body) {
  533. long cmd;
  534. long param;
  535. bool ok = true;
  536. struct chan485_t* ch = &APPL.chan485[1];
  537. cmd = mg_json_get_long(body, "$.cmd", -1);
  538. param = mg_json_get_long(body, "$.param", -1);
  539. if( cmd == -1 || param == -1){
  540. ok = false;
  541. }else{
  542. switch (cmd){
  543. case PCS_CMD_START:
  544. ch->Cmd = CMD_485_PCS_START;
  545. break;
  546. case PCS_CMD_STOP:
  547. ch->Cmd = CMD_485_PCS_STOP;
  548. break;
  549. case PCS_CMD_SET_APS:
  550. ch->Cmd = CMD_485_PCS_SET_APS;
  551. ch->CmdParam = param;
  552. break;
  553. default:
  554. syslog(LOG_INFO,"%s, unknown cmd : %d", __func__, cmd);
  555. break;
  556. }
  557. }
  558. if(ok){
  559. mg_http_reply(c, 200, s_json_header, "true\n");
  560. }else{
  561. mg_http_reply(c, 200, s_json_header, "false\n");
  562. }
  563. }
  564. static void handle_ac_set(struct mg_connection *c, struct mg_str body) {
  565. long cmd;
  566. long param;
  567. bool ok = true;
  568. struct chan485_t* ch = &APPL.chan485[3];
  569. struct Envicool5kW_t* ac = &APPL.Envicool5kW;
  570. struct Settings_t* set = &APPL.Set.s;
  571. cmd = mg_json_get_long(body, "$.cmd", -1);
  572. param = mg_json_get_long(body, "$.param", -1);
  573. syslog(LOG_INFO,"%s, Get Cmd:%d, Param:%d", __func__, cmd, param);
  574. if( cmd == -1 || param == -1){
  575. ok = false;
  576. }else{
  577. switch (cmd){
  578. // 同飞5kW LCI-50C-01SZ-1227 开关机命令
  579. // 开关机命令 0x300 0 0x05/0x06/0x10 B0:开机命令 B1:关机命令 B2:复位
  580. case AC_CMD_ONOFF:
  581. ch->Cmd = CMD_485_AC_SET_ONOFF;
  582. ch->CmdParam = param;
  583. break;
  584. // EMS or Non-EMS Control
  585. case AC_CMD_SET_CTLMOD:
  586. appl_ac_set_ctlmod(param);
  587. break;
  588. // // 同飞5kW LCI-50C-01SZ-1227 制冷方式
  589. // // 1 制冷 2加热 3自循环 4自动
  590. // case AC_CMD_MODESET:
  591. // ch->Cmd = CMD_485_AC_SET_MODESET;
  592. // ch->CmdParam = param;
  593. // break;
  594. // 英维克5kW立式 请求设定模式
  595. // 0:停机模式;1;制冷:2:加热;3:自循环;
  596. case AC_CMD_MODESET:
  597. ac->SetMode = param;
  598. break;
  599. // // 同飞5kW LCI-50C-01SZ-1227 恒温方式预设温度
  600. // case AC_CMD_SET_TEMP:
  601. // ch->Cmd = CMD_485_AC_SET_TEMP;
  602. // ch->CmdParam = param;
  603. // break;
  604. // 英维克5kW立式 设定温度
  605. case AC_CMD_SET_TEMP:
  606. ac->SetTemp = param;
  607. break;
  608. // // 同飞5kW LCI-50C-01SZ-1227 水温目标控制温度
  609. // // 0 出水水温控制 1 回水水温控制
  610. // case AC_CMD_CTLTEMPSEL:
  611. // ch->Cmd = CMD_485_AC_SET_CTLTEMPSEL;
  612. // ch->CmdParam = param;
  613. // break;
  614. case AC_CMD_SET_COOLTEMP:
  615. set->CoolTemp = param;
  616. break;
  617. case AC_CMD_SET_COOLGAP:
  618. set->CoolGap = param;
  619. break;
  620. case AC_CMD_SET_HEATTEMP:
  621. set->HeatTemp = param;
  622. break;
  623. case AC_CMD_SET_HEATGAP:
  624. set->HeatGap = param;
  625. break;
  626. case AC_CMD_SET_HEATTEMPSET:
  627. set->HeatTempSet = param;
  628. break;
  629. case AC_CMD_SET_COOLTEMPSET:
  630. set->CoolTempSet = param;
  631. break;
  632. default:
  633. syslog(LOG_INFO,"%s, unknown cmd : %d", __func__, cmd);
  634. break;
  635. }
  636. }
  637. if(ok){
  638. mg_http_reply(c, 200, s_json_header, "true\n");
  639. }else{
  640. mg_http_reply(c, 200, s_json_header, "false\n");
  641. }
  642. }
  643. static void handle_env_set(struct mg_connection *c, struct mg_str body) {
  644. long cmd;
  645. long param;
  646. bool ok = true;
  647. struct chan485_t* ch = &APPL.chan485[4];
  648. struct Envicool5kW_t* ac = &APPL.Envicool5kW;
  649. struct Settings_t* set = &APPL.Set.s;
  650. cmd = mg_json_get_long(body, "$.cmd", -1);
  651. param = mg_json_get_long(body, "$.param", -1);
  652. syslog(LOG_INFO,"%s, Get Cmd:%d, Param:%d", __func__, cmd, param);
  653. if( cmd == -1 || param == -1){
  654. ok = false;
  655. }else{
  656. switch (cmd){
  657. case ENV_CMD_SET_DH_HUMISTART:
  658. ch->Cmd = CMD_485_DH_SET_HUMISTART;
  659. ch->CmdParam = param;
  660. break;
  661. case ENV_CMD_SET_DH_HUMISTOP:
  662. ch->Cmd = CMD_485_DH_SET_HUMISTOP;
  663. ch->CmdParam = param;
  664. break;
  665. default:
  666. syslog(LOG_INFO,"%s, unknown cmd : %d", __func__, cmd);
  667. break;
  668. }
  669. }
  670. if(ok){
  671. mg_http_reply(c, 200, s_json_header, "true\n");
  672. }else{
  673. mg_http_reply(c, 200, s_json_header, "false\n");
  674. }
  675. }
  676. static void handle_env_set_ledmod(struct mg_connection *c, struct mg_str body) {
  677. struct Dido_t* dido = &APPL.Dido;
  678. int mod = mg_json_get_long(body, "$.mode", 0);
  679. //appl_dido_set_led(mod);
  680. dido->Cmd = CMD_DIDO_SET_LEDMOD;
  681. dido->CmdParam = mod;
  682. mg_http_reply(c, 200, s_json_header, "true\n");
  683. }
  684. static void handle_settings_get(struct mg_connection *c) {
  685. struct Settings_t* set = &APPL.Set.s;
  686. char buf[8192] = {0};
  687. char tmpbuf[64] = {0};
  688. int i;
  689. for( i = 0; i < 95; i++){
  690. sprintf(tmpbuf, "\"%d\":%d,", i+1, set->pcurv[i]);
  691. strcat(buf,tmpbuf);
  692. }
  693. i = 95;
  694. sprintf(tmpbuf, "\"%d\":%d", i+1, set->pcurv[i]);
  695. strcat(buf,tmpbuf);
  696. mg_http_reply(c, 200, s_json_header, "{\
  697. %m:%m,%m:%m,%m:%m,%m:%m,%m:%m,\
  698. %m:%d,%m:%d,%m:%d,%m:%d,%m:%d,\
  699. %m:%f,%m:%f,\
  700. %m:%d,%m:%d,%m:%d,%m:%d,\
  701. %m:%d,%m:%d,%m:%d,%m:%d,\
  702. %s}\n",
  703. /*1*/MG_ESC("序列号"),MG_ESC(set->szSN),MG_ESC("Cloud用户名"),MG_ESC(set->szCloudUserName),MG_ESC("Cloud密码"),MG_ESC(set->szCloudPasswd),MG_ESC("Cloud Url"),MG_ESC(set->szCloudUrl),MG_ESC("Cloud ID"),MG_ESC(set->szClientId),
  704. /*2*/MG_ESC("关口并柜数量"), set->GateCoupleNbr, MG_ESC("变压器并柜数量"), set->TransCoupleNbr, MG_ESC("变压器ID"),(set->TransId),MG_ESC("储能柜表ID"),(set->CtnMeterId),MG_ESC("储能柜表数量"),(set->CtnMeterNbr),
  705. /*3*/MG_ESC("充电截止电芯电压"), set->ChgCellV,MG_ESC("放电截止电芯电压"), set->DhgCellV,
  706. /*4*/MG_ESC("充电关口限制"), set->ChgGateLim,MG_ESC("充电变压器限制"),set->ChgTransLim,MG_ESC("放电关口限制"), set->DhgGateLim,MG_ESC("放电变压器限制"),set->DhgTransLim,
  707. /*5*/MG_ESC("数据保留天数"),set->DataKeepDay,MG_ESC("上传高速"),set->UploadHighSpeed,MG_ESC("上传中速"),set->UploadMediumSpeed,MG_ESC("上传低速"),set->UploadSlowSpeed,
  708. buf);
  709. }
  710. static void handle_ctl_get(struct mg_connection *c) {
  711. struct Ctl_t* ctl = &APPL.Ctl;
  712. struct Settings_t* set = &APPL.Set.s;
  713. struct Snap_t* snap = &APPL.Snap;
  714. struct Enjoy100kW_t* pcs = &APPL.Enjoy100kW;
  715. struct GaoteBms_t* bms = &APPL.GaoteBms;
  716. struct Envicool5kW_t* ac = &APPL.Envicool5kW;
  717. struct Dtsd1352_t* gm = &APPL.GateMeter;
  718. struct Dtsd1352_t* tm = &APPL.TransMeter;
  719. char buf[128];
  720. if(ctl->bChgAble==1 && ctl->bDhgAble==1){
  721. strcpy(buf,"可充可放");
  722. }else if(ctl->bChgAble==0 && ctl->bDhgAble==1){
  723. strcpy(buf,"不可充可放");
  724. }else if(ctl->bChgAble==1 && ctl->bDhgAble==0){
  725. strcpy(buf,"可充不可放");
  726. }else if(ctl->bChgAble==0 && ctl->bDhgAble==0){
  727. strcpy(buf,"不可充不可放");
  728. }
  729. mg_http_reply(c, 200, s_json_header, "{\
  730. %m:%m,%m:%m,%m:%m,%m:%m,%m:%m,\
  731. %m:%d,%m:%d,%m:%d,%m:%d,\
  732. %m:%m,%m:%f,%m:%f,%m:%f,%m:%f,\
  733. %m:%f,%m:%f,%m:%f,\
  734. %m:%f,%m:%f,%m:%f,%m:%f,%m:%f,%m:%f,\
  735. %m:%m,%m:%d,%m:%d,%m:%f,%m:%f,\
  736. %m:%m,%m:%m,%m:%m,\
  737. %m:%m,%m:%m,\
  738. %m:%m,%m:%m}\n",
  739. /*1*/MG_ESC("序列号"),MG_ESC(set->szSN),MG_ESC("系统时间"), MG_ESC(appl_get_datetime_long()),MG_ESC("储能状态"),MG_ESC(ctl->szState),MG_ESC("储能工作模式"),MG_ESC(ctl->szWorkMode), MG_ESC("故障信息"),MG_ESC(ctl->szErr),
  740. /*2*/MG_ESC("储能功率"),ctl->Ap,MG_ESC("关口功率"), (int)gm->com_active_p, MG_ESC("变压器功率"), (int)tm->com_active_p,MG_ESC("储能表功率"), (int)APPL.CtnMeter[set->CtnMeterId].com_active_p,
  741. /*3*/MG_ESC("PCS状态"),MG_ESC(pcs->szWorkState), MG_ESC("PCS功率"),pcs->Ap,MG_ESC("AB电压"),pcs->Uab,MG_ESC("BC电压"),pcs->Ubc,MG_ESC("CA电压"),pcs->Uca,
  742. /*4*/MG_ESC("BMS SOC"), bms->Soc, MG_ESC("BMS总电压"),bms->BatV,MG_ESC("BMS总电流"),bms->BatI,
  743. /*5*/MG_ESC("最高电芯电压"),bms->MaxCellV,MG_ESC("平均电芯电压"),bms->AvgCellV,MG_ESC("最低电芯电压"),bms->MinCellV,MG_ESC("最高电芯温度"),bms->MaxCellT,MG_ESC("平均电芯温度"),bms->AvgCellT,MG_ESC("最低电芯温度"),bms->MinCellT,
  744. /*6*/MG_ESC("空调模式"),MG_ESC(ac->szWorkMode),MG_ESC("出水温度"),ac->OutWaterTemp,MG_ESC("回水温度"),ac->InWaterTemp,MG_ESC("出水压力"),ac->OutWaterPre,MG_ESC("回水压力"),ac->InWaterPre,
  745. /*7*/MG_ESC("关口表通信状态"),MG_ESC(gm->szCommState),MG_ESC("变压器表通信状态"),MG_ESC(tm->szCommState),MG_ESC("储能表通信状态"),MG_ESC(APPL.CtnMeter[set->CtnMeterId].szCommState),
  746. /*8*/MG_ESC("数据记录状态"), MG_ESC(snap->szState),MG_ESC("参数配置状态"), MG_ESC(set->szState),
  747. /*9*/MG_ESC("软件版本"),MG_ESC(VERSION),MG_ESC("可充放状态"),MG_ESC(buf));
  748. }
  749. static void handle_ctl_set(struct mg_connection *c, struct mg_str body) {
  750. struct Ctl_t* ctl = &APPL.Ctl;
  751. int cmd, param;
  752. cmd = mg_json_get_long(body, "$.cmd", 0);
  753. param = mg_json_get_long(body, "$.param", 0);
  754. syslog(LOG_INFO, "%s, Cmd:%d, Param:%d", __func__, cmd, param);
  755. ctl->Cmd = cmd;
  756. ctl->CmdPara = param;
  757. mg_http_reply(c, 200, s_json_header, "true\n");
  758. }
  759. static void handle_comm_get(struct mg_connection *c) {
  760. struct chan485_t* c1 = &APPL.chan485[1];
  761. struct chan485_t* c2 = &APPL.chan485[2];
  762. struct chan485_t* c3 = &APPL.chan485[3];
  763. struct chan485_t* c4 = &APPL.chan485[4];
  764. struct chancan_t* c5 = &APPL.chancan[1];
  765. struct chancan_t* c6 = &APPL.chancan[2];
  766. struct chanmqtt_t *c7 = &APPL.chanmqtt[4];
  767. mg_http_reply(c, 200, s_json_header, "{\
  768. %m:{%m:%m,%m:%m,%m:%d,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  769. %m:{%m:%m,%m:%m,%m:%d,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  770. %m:{%m:%m,%m:%m,%m:%d,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  771. %m:{%m:%m,%m:%m,%m:%d,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  772. %m:{%m:%m,%m:%m,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  773. %m:{%m:%m,%m:%m,%m:%m,%m:%m,%m:%lld,%m:%lld,%m:%lld,%m:%lld},\
  774. %m:{%m:%m,%m:%lld,%m:%lld,%m:%d,%m:%d,%m:%lld}}\n",
  775. MG_ESC("1#485"),MG_ESC("状态"), MG_ESC(c1->szstate),MG_ESC("故障码"),MG_ESC(c1->szerr),MG_ESC("波特率"),c1->baud,MG_ESC("设备名"), MG_ESC(c1->szdev),
  776. MG_ESC("备注"), MG_ESC(c1->szinfo), MG_ESC("循环次数"),c1->loopcnt, MG_ESC("循环时间"),c1->looptime, MG_ESC("请求次数"),c1->reqcnt, MG_ESC("失败次数"),c1->failcnt,
  777. MG_ESC("2#485"),MG_ESC("状态"), MG_ESC(c2->szstate),MG_ESC("故障码"),MG_ESC(c2->szerr),MG_ESC("波特率"),c2->baud,MG_ESC("设备名"),MG_ESC(c2->szdev),
  778. MG_ESC("备注"),MG_ESC(c2->szinfo),MG_ESC("循环次数"),c2->loopcnt,MG_ESC("循环时间"),c2->looptime,MG_ESC("请求次数"),c2->reqcnt,MG_ESC("失败次数"),c2->failcnt,
  779. MG_ESC("3#485"),MG_ESC("状态"), MG_ESC(c3->szstate),MG_ESC("故障码"),MG_ESC(c3->szerr),MG_ESC("波特率"),c3->baud,MG_ESC("设备名"),MG_ESC(c3->szdev),
  780. MG_ESC("备注"),MG_ESC(c3->szinfo),MG_ESC("循环次数"),c3->loopcnt,MG_ESC("循环时间"),c3->looptime,MG_ESC("请求次数"),c3->reqcnt,MG_ESC("失败次数"),c3->failcnt,
  781. MG_ESC("4#485"),MG_ESC("状态"), MG_ESC(c4->szstate),MG_ESC("故障码"),MG_ESC(c4->szerr),MG_ESC("波特率"),c4->baud,MG_ESC("设备名"),MG_ESC(c4->szdev),
  782. MG_ESC("备注"),MG_ESC(c4->szinfo),MG_ESC("循环次数"),c4->loopcnt,MG_ESC("循环时间"),c4->looptime,MG_ESC("请求次数"),c3->reqcnt,MG_ESC("失败次数"),c4->failcnt,
  783. MG_ESC("1#CAN"),MG_ESC("状态"), MG_ESC(c5->szState),MG_ESC("故障码"),MG_ESC(c5->szErr),MG_ESC("设备名"),MG_ESC(c5->szdev),
  784. MG_ESC("备注"),MG_ESC(c5->szinfo),MG_ESC("循环次数"),c5->Loopcnt,MG_ESC("循环时间"),c5->LoopTime,MG_ESC("发送帧数"),c5->WrCnt,MG_ESC("接收帧数"),c5->RdCnt,
  785. MG_ESC("2#CAN"),MG_ESC("状态"), MG_ESC(c6->szState),MG_ESC("故障码"),MG_ESC(c6->szErr),MG_ESC("设备名"),MG_ESC(c6->szdev),
  786. MG_ESC("备注"),MG_ESC(c6->szinfo),MG_ESC("循环次数"),c6->Loopcnt,MG_ESC("循环时间"),c6->LoopTime,MG_ESC("发送帧数"),c6->WrCnt,MG_ESC("接收帧数"),c6->RdCnt,
  787. MG_ESC("2#MQTT"),MG_ESC("状态"), MG_ESC(c7->szState),MG_ESC("接收计数"), c7->TotalRecvCnt,MG_ESC("发送计数"), c7->TotalSendCnt,MG_ESC("平均接收间隔"),c7->AvgRecvIntv,MG_ESC("最大接收间隔"), c7->MaxRecvIntv,MG_ESC("重连次数"), c7->TotalReconnCnt);
  788. }
  789. static void handle_comm_set(struct mg_connection *c, struct mg_str body) {
  790. struct chan485_t* ch = NULL;
  791. int idx = mg_json_get_long(body, "$.index", 0);
  792. int cmd = mg_json_get_long(body, "$.cmd", 0);
  793. printf("%s idx:%d cmd:%d\n", __func__, idx, cmd);
  794. if( idx >= 1 && idx <= 4 ){
  795. ch = &APPL.chan485[idx];
  796. ch->Cmd = cmd;
  797. mg_http_reply(c, 200, s_json_header, "true\n");
  798. }else{
  799. mg_http_reply(c, 403, s_json_header, "false\n");
  800. }
  801. }
  802. static void handle_pcs_get(struct mg_connection *c) {
  803. struct Enjoy100kW_t* p = &APPL.Enjoy100kW;
  804. mg_http_reply(c, 200, s_json_header, "{\
  805. %m:%m,%m:%m,%m:%lld,\
  806. %m:%f,%m:%f,%m:%f,\
  807. %m:%f,%m:%f,%m:%f,\
  808. %m:%f,%m:%f,%m:%f,%m:%f,\
  809. %m:%f,%m:%f,%m:%f,\
  810. %m:%m,%m:%m,%m:%f,%m:%f,\
  811. %m:%m,%m:%m,%m:%m,%m:%m,\
  812. %m:%m,%m:%m,%m:%m,%m:%m}\n",
  813. /*1*/MG_ESC("通信状态"), MG_ESC(p->szCommState), MG_ESC("数据更新时间"),MG_ESC(p->szLastUpdate),MG_ESC("通信失败次数"),p->CommFailTotalCnt,
  814. /*2*/MG_ESC("AB线电压"),(p->Uab), MG_ESC("BC线电压"),(p->Ubc), MG_ESC("CA线电压"),(p->Uca),
  815. /*3*/MG_ESC("A相电流"),(p->Ia), MG_ESC("B相电流"),(p->Ib), MG_ESC("C相电流"),(p->Ic),
  816. /*4*/MG_ESC("有功功率"),(p->Ap), MG_ESC("无功功率"),(p->Rap), MG_ESC("电池电压"),(p->BatV), MG_ESC("电池电流"),(p->BatC),
  817. /*5*/MG_ESC("IGBT温度"),(p->Tigbt), MG_ESC("环境温度"),(p->Tenv), MG_ESC("电感温度"),(p->Tind),
  818. /*6*/MG_ESC("工作状态"),MG_ESC(p->szWorkState), MG_ESC("故障状态"), MG_ESC(p->szErrState), MG_ESC("有功功率设定值"), p->Aps, MG_ESC("总母线电压"),p->TotalBusVolt,
  819. /*7*/MG_ESC("硬件故障字1"),MG_ESC(p->szHwFault1),MG_ESC("硬件故障字2"),MG_ESC(p->szHwFault2),MG_ESC("电网故障字"),MG_ESC(p->szGridFault),MG_ESC("母线故障字"),MG_ESC(p->szBusFault),
  820. /*8*/MG_ESC("交流电容故障字"),MG_ESC(p->szAcCapFault),MG_ESC("系统故障字"),MG_ESC(p->szSysFault),MG_ESC("开关故障字"),MG_ESC(p->szOnOffFault),MG_ESC("其他故障字"),MG_ESC(p->szOtherFault));
  821. }
  822. static void handle_bms_get(struct mg_connection *c) {
  823. struct GaoteBms_t* bms = &APPL.GaoteBms;
  824. mg_http_reply(c, 200, s_json_header, "{\
  825. %m:%m,%m:%f,%m:%f,%m:%f,%m:%f,%m:%m,\
  826. %m:%f,%m:%f,\
  827. %m:%f,%m:%f,%m:%f,\
  828. %m:%f,%m:%f,%m:%f,\
  829. %m:%f,%m:%f,\
  830. %m:%m,\
  831. %m:%d,%m:%d,%m:%d,%m:%d,\
  832. %m:%f,%m:%f,\
  833. %m:%m,%m:%lld,%m:%m}\n",
  834. /*1*/MG_ESC("通信状态"), MG_ESC(bms->szCommState), MG_ESC("总电压"),bms->BatV,MG_ESC("总电流"),bms->BatI, MG_ESC("SOC"),bms->Soc, MG_ESC("SOH"),bms->Soh,MG_ESC("电池状态"),MG_ESC(bms->szBatState),
  835. /*2*/MG_ESC("绝缘电阻R+"), bms->PosRes, MG_ESC("绝缘电阻R-"), bms->NegRes,
  836. /*3*/MG_ESC("最高电芯电压"),bms->MaxCellV, MG_ESC("平均电芯电压"),bms->AvgCellV, MG_ESC("最低电芯电压"),bms->MinCellV,
  837. /*4*/MG_ESC("最高电芯温度"),bms->MaxCellT, MG_ESC("平均电芯温度"),bms->AvgCellT, MG_ESC("最低电芯温度"),bms->MinCellT,
  838. /*5*/MG_ESC("压差"),bms->CellVDiff, MG_ESC("温差"),bms->CellTDiff,
  839. /*6*/MG_ESC("高压状态"),MG_ESC(bms->szHvState),
  840. /*7*/MG_ESC("最高温度位置"),bms->MaxCellTIdx,MG_ESC("最低温度位置"),bms->MinCellTIdx,MG_ESC("最高电压位置"),bms->MaxCellVIdx,MG_ESC("最低电压位置"),bms->MinCellVIdx,
  841. /*8*/MG_ESC("最大可充电流"),bms->MaxChgCurr,MG_ESC("最大可放电流"),bms->MaxDhgCurr,
  842. /*9*/MG_ESC("数据更新时间"),MG_ESC(bms->szLastUpdate),MG_ESC("通信失败次数"),bms->CommFailTotalCnt,MG_ESC("故障信息"), MG_ESC(bms->szErrMsg));
  843. }
  844. static void handle_ac_get(struct mg_connection *c) {
  845. struct Envicool5kW_t* ac = &APPL.Envicool5kW;
  846. struct Settings_t* set = &APPL.Set.s;
  847. mg_http_reply(c, 200, s_json_header, "{\
  848. %m:%m,%m:%m,%m:%m,\
  849. %m:%d,%m:%d,%m:%d,\
  850. %m:%f,%m:%f,\
  851. %m:%d,%m:%d,\
  852. %m:%m,%m:%m,%m:%m,\
  853. %m:%m,%m:%m,%m:%m,\
  854. %m:%d,%m:%d,\
  855. %m:%d,%m:%d,%m:%d,%m:%d,\
  856. %m:%m,%m:%d,%m:%d,%m:%d,\
  857. %m:%m,%m:%m,%m:%m}\n",
  858. /*1*/MG_ESC("通信状态"), MG_ESC(ac->szCommState),MG_ESC("数据更新时间"), MG_ESC(ac->szLastUpdate1), MG_ESC("工作模式"),MG_ESC(ac->szWorkMode),
  859. /*2*/MG_ESC("出水温度"),ac->OutWaterTemp, MG_ESC("回水温度"),ac->InWaterTemp, MG_ESC("环境温度"),ac->EnvTemp,
  860. /*3*/MG_ESC("回水压力"),ac->InWaterPre, MG_ESC("出水压力"),ac->OutWaterPre,
  861. /*4*/MG_ESC("故障码"),ac->ErrCode,MG_ESC("故障等级"),ac->ErrLevel,
  862. /*5*/MG_ESC("压缩机状态"),MG_ESC(ac->szCompState),MG_ESC("电加热状态"),MG_ESC(ac->szElecHeatState),MG_ESC("水泵状态"),MG_ESC(ac->szPumpState),
  863. /*6*/MG_ESC("风机1运行状态"),MG_ESC(ac->szFan1State),MG_ESC("风机2运行状态"),MG_ESC(ac->szFan2State),MG_ESC("风机3运行状态"),MG_ESC(ac->szFan3State),
  864. /*7*/MG_ESC("压缩机转数"),ac->CompRpm, MG_ESC("水泵转数"),ac->PumpRpm,
  865. /*8*/MG_ESC("加热温度"),set->HeatTemp, MG_ESC("加热回差"),set->HeatGap,MG_ESC("制冷温度"),set->CoolTemp, MG_ESC("制冷回差"),set->CoolGap,
  866. /*9*/MG_ESC("控制模式"),MG_ESC(ac->szCtlMode),MG_ESC("温度设定"),ac->SetTemp,MG_ESC("加热温度设定"),set->HeatTempSet,MG_ESC("制冷温度设定"),set->CoolTempSet,
  867. /*10*/MG_ESC("故障信息1"),MG_ESC(ac->szErrMsg1),MG_ESC("故障信息2"),MG_ESC(ac->szErrMsg2),MG_ESC("故障信息3"),MG_ESC(ac->szErrMsg3));
  868. }
  869. static void handle_fe_get(struct mg_connection *c) {
  870. struct FireAlarm_t* f1 = &APPL.Fa[1];
  871. struct FireAlarm_t* f2 = &APPL.Fa[2];
  872. struct FireAlarm_t* f3 = &APPL.Fa[3];
  873. struct FireAlarm_t* f4 = &APPL.Fa[4];
  874. struct FireAlarm_t* f5 = &APPL.Fa[5];
  875. mg_http_reply(c, 200, s_json_header, "{\
  876. %m:{%m:%m,%m:%d,%m:%d,%m:%d,%m:%d,%m:%m,%m:%m,%m:%m},\
  877. %m:{%m:%m,%m:%d,%m:%d,%m:%d,%m:%d,%m:%m,%m:%m,%m:%m},\
  878. %m:{%m:%m,%m:%d,%m:%d,%m:%d,%m:%d,%m:%m,%m:%m,%m:%m},\
  879. %m:{%m:%m,%m:%d,%m:%d,%m:%d,%m:%d,%m:%m,%m:%m,%m:%m},\
  880. %m:{%m:%m,%m:%d,%m:%d,%m:%d,%m:%d,%m:%m,%m:%m,%m:%m}}\n",
  881. MG_ESC("1#PACK"),MG_ESC("通信状态"), MG_ESC(f1->szCommState),MG_ESC("1#温度"),f1->T1,MG_ESC("2#温度"),f1->T2,MG_ESC("CO"), f1->Co,MG_ESC("VOC"), f1->Voc,
  882. MG_ESC("故障码"), MG_ESC(f1->szErrCode), MG_ESC("烟雾标志"), MG_ESC(f1->szSmokeFlag),MG_ESC("火情级别"), MG_ESC(f1->szLevel),
  883. MG_ESC("2#PACK"),MG_ESC("通信状态"), MG_ESC(f2->szCommState),MG_ESC("1#温度"),f2->T1,MG_ESC("2#温度"),f2->T2,MG_ESC("CO"), f2->Co,MG_ESC("VOC"), f2->Voc,
  884. MG_ESC("故障码"), MG_ESC(f2->szErrCode), MG_ESC("烟雾标志"), MG_ESC(f2->szSmokeFlag),MG_ESC("火情级别"), MG_ESC(f2->szLevel),
  885. MG_ESC("3#PACK"),MG_ESC("通信状态"), MG_ESC(f3->szCommState),MG_ESC("1#温度"),f3->T1,MG_ESC("2#温度"),f3->T2,MG_ESC("CO"), f3->Co,MG_ESC("VOC"), f3->Voc,
  886. MG_ESC("故障码"), MG_ESC(f3->szErrCode), MG_ESC("烟雾标志"), MG_ESC(f3->szSmokeFlag),MG_ESC("火情级别"), MG_ESC(f3->szLevel),
  887. MG_ESC("4#PACK"),MG_ESC("通信状态"), MG_ESC(f4->szCommState),MG_ESC("1#温度"),f4->T1,MG_ESC("2#温度"),f4->T2,MG_ESC("CO"), f4->Co,MG_ESC("VOC"), f4->Voc,
  888. MG_ESC("故障码"), MG_ESC(f4->szErrCode), MG_ESC("烟雾标志"), MG_ESC(f4->szSmokeFlag),MG_ESC("火情级别"), MG_ESC(f4->szLevel),
  889. MG_ESC("5#PACK"),MG_ESC("通信状态"), MG_ESC(f5->szCommState),MG_ESC("1#温度"),f5->T1,MG_ESC("2#温度"),f5->T2,MG_ESC("CO"), f5->Co,MG_ESC("VOC"), f5->Voc,
  890. MG_ESC("故障码"), MG_ESC(f5->szErrCode), MG_ESC("烟雾标志"), MG_ESC(f5->szSmokeFlag),MG_ESC("火情级别"), MG_ESC(f5->szLevel));
  891. }
  892. static void handle_env_get(struct mg_connection *c) {
  893. struct Adl200_t* adl = &APPL.Adl200;
  894. struct Dido_t* dido = &APPL.Dido;
  895. struct Dehumi_t* dh = &APPL.Dehumi;
  896. struct Co_t* co = &APPL.Co;
  897. mg_http_reply(c, 200, s_json_header, "{\
  898. %m:{%m:%m,%m:%f,%m:%f,%m:%f,%m:%f,%m:%f,%m:%m},\
  899. %m:{%m:%m,%m:%m,%m:%m,%m:%m,%m:%m,%m:%m,%m:%m,%m:%m,%m:%m},\
  900. %m:{%m:%m,%m:%m,%m:%f,%m:%f,%m:%f,%m:%f,%m:%f,%m:%m,%m:%m,%m:%m,%m:%d,%m:%d},\
  901. %m:{%m:%m,%m:%m,%m:%d,%m:%m}}\n",
  902. /*1*/MG_ESC("辅助电表"),MG_ESC("通信状态"),MG_ESC(adl->szCommState),MG_ESC("正向有功总电能"), adl->PosAe,MG_ESC("反向有功总电能"),adl->NegAe, MG_ESC("有功功率"),adl->Ap,MG_ESC("无功功率"),adl->Rap,MG_ESC("功率因数"),adl->Pf,MG_ESC("数据更新时间"),MG_ESC(adl->szLastUpdate),
  903. /*2*/MG_ESC("DIDO"),MG_ESC("状态"),MG_ESC(dido->szState),MG_ESC("数据更新时间"),MG_ESC(dido->szLastUpdate), MG_ESC("1#水浸"),MG_ESC(dido->szWaterDec1),MG_ESC("2#水浸"),MG_ESC(dido->szWaterDec2),MG_ESC("前门"),MG_ESC(dido->szFrontDoor),MG_ESC("后门"),MG_ESC(dido->szBackDoor),MG_ESC("急停"),MG_ESC(dido->szEmgStop),MG_ESC("状态灯"),MG_ESC(dido->szLedMode),MG_ESC("消防喷发反馈"),MG_ESC(dido->szFeEruptFb),
  904. /*3*/MG_ESC("除湿机"),MG_ESC("通信状态"),MG_ESC(dh->szCommState),MG_ESC("数据更新时间"),MG_ESC(dh->szLastUpdate),MG_ESC("温度"),dh->Temp,MG_ESC("湿度"),dh->Humi,MG_ESC("湿度启动值"),dh->HumiStart,MG_ESC("湿度停止值"),dh->HumiStop,MG_ESC("加热启动值"),dh->HeatStart,MG_ESC("加热状态"),MG_ESC(dh->szHeatState),MG_ESC("工作状态"),MG_ESC(dh->szWorkState),MG_ESC("手自切换"),MG_ESC(dh->szManOrAuto),MG_ESC("手动加湿"),dh->ManHumi,MG_ESC("手动加热"),dh->ManHeat,
  905. /*4*/MG_ESC("一氧化碳"),MG_ESC("通信状态"),MG_ESC(co->szCommState),MG_ESC("数据更新时间"),MG_ESC(co->szLastUpdate),MG_ESC("浓度"),co->Density,MG_ESC("标志"),MG_ESC(co->szFlag));
  906. }
  907. static void handle_firmware_upload(struct mg_connection *c,
  908. struct mg_http_message *hm) {
  909. char name[64], offset[20], total[20];
  910. struct mg_str data = hm->body;
  911. long ofs = -1, tot = -1;
  912. name[0] = offset[0] = '\0';
  913. mg_http_get_var(&hm->query, "name", name, sizeof(name));
  914. mg_http_get_var(&hm->query, "offset", offset, sizeof(offset));
  915. mg_http_get_var(&hm->query, "total", total, sizeof(total));
  916. MG_INFO(("File %s, offset %s, len %lu", name, offset, data.len));
  917. if ((ofs = mg_json_get_long(mg_str(offset), "$", -1)) < 0 ||
  918. (tot = mg_json_get_long(mg_str(total), "$", -1)) < 0) {
  919. mg_http_reply(c, 500, "", "offset and total not set\n");
  920. } else if (ofs == 0 && mg_ota_begin((size_t) tot) == false) {
  921. mg_http_reply(c, 500, "", "mg_ota_begin(%ld) failed\n", tot);
  922. } else if (data.len > 0 && mg_ota_write(data.ptr, data.len) == false) {
  923. mg_http_reply(c, 500, "", "mg_ota_write(%lu) @%ld failed\n", data.len, ofs);
  924. mg_ota_end();
  925. } else if (data.len == 0 && mg_ota_end() == false) {
  926. mg_http_reply(c, 500, "", "mg_ota_end() failed\n", tot);
  927. } else {
  928. mg_http_reply(c, 200, s_json_header, "true\n");
  929. if (data.len == 0) {
  930. // Successful mg_ota_end() called, schedule device reboot
  931. mg_timer_add(c->mgr, 500, 0, (void (*)(void *)) mg_device_reset, NULL);
  932. }
  933. }
  934. }
  935. static void handle_firmware_commit(struct mg_connection *c) {
  936. mg_http_reply(c, 200, s_json_header, "%s\n",
  937. mg_ota_commit() ? "true" : "false");
  938. }
  939. static void handle_firmware_rollback(struct mg_connection *c) {
  940. mg_http_reply(c, 200, s_json_header, "%s\n",
  941. mg_ota_rollback() ? "true" : "false");
  942. }
  943. static size_t print_status(void (*out)(char, void *), void *ptr, va_list *ap) {
  944. int fw = va_arg(*ap, int);
  945. return mg_xprintf(out, ptr, "{%m:%d,%m:%c%lx%c,%m:%u,%m:%u}\n",
  946. MG_ESC("status"), mg_ota_status(fw), MG_ESC("crc32"), '"',
  947. mg_ota_crc32(fw), '"', MG_ESC("size"), mg_ota_size(fw),
  948. MG_ESC("timestamp"), mg_ota_timestamp(fw));
  949. }
  950. static void handle_firmware_status(struct mg_connection *c) {
  951. mg_http_reply(c, 200, s_json_header, "[%M,%M]\n", print_status,
  952. MG_FIRMWARE_CURRENT, print_status, MG_FIRMWARE_PREVIOUS);
  953. }
  954. static void handle_device_reset(struct mg_connection *c) {
  955. mg_http_reply(c, 200, s_json_header, "true\n");
  956. mg_timer_add(c->mgr, 500, 0, (void (*)(void *)) mg_device_reset, NULL);
  957. }
  958. static void handle_device_eraselast(struct mg_connection *c) {
  959. size_t ss = mg_flash_sector_size(), size = mg_flash_size();
  960. char *base = (char *) mg_flash_start(), *last = base + size - ss;
  961. if (mg_flash_bank() == 2) last -= size / 2;
  962. mg_flash_erase(last);
  963. mg_http_reply(c, 200, s_json_header, "true\n");
  964. }
  965. // HTTP request handler function
  966. static void fn(struct mg_connection *c, int ev, void *ev_data) {
  967. if (ev == MG_EV_ACCEPT) {
  968. if (c->fn_data != NULL) { // TLS listener!
  969. struct mg_tls_opts opts = {0};
  970. opts.cert = mg_unpacked("/certs/server_cert.pem");
  971. opts.key = mg_unpacked("/certs/server_key.pem");
  972. mg_tls_init(c, &opts);
  973. }
  974. } else if (ev == MG_EV_HTTP_MSG) {
  975. struct mg_http_message *hm = (struct mg_http_message *) ev_data;
  976. struct user *u = authenticate(hm);
  977. if ( 0 ) { // mg_http_match_uri(hm, "/api/#") && u == NULL
  978. mg_http_reply(c, 403, "", "Not Authorised\n");
  979. } else if (mg_http_match_uri(hm, "/api/login")) {
  980. handle_login(c, u);
  981. } else if (mg_http_match_uri(hm, "/api/logout")) {
  982. handle_logout(c);
  983. } else if (mg_http_match_uri(hm, "/api/debug")) {
  984. handle_debug(c, hm);
  985. } else if (mg_http_match_uri(hm, "/api/ctl/get")) {
  986. handle_ctl_get(c);
  987. } else if (mg_http_match_uri(hm, "/api/ctl/set")) {
  988. handle_ctl_set(c, hm->body);
  989. }else if (mg_http_match_uri(hm, "/api/settings/get")) {
  990. handle_settings_get(c);
  991. } else if (mg_http_match_uri(hm, "/api/settings/set")) {
  992. handle_settings_set(c, hm->body);
  993. }else if (mg_http_match_uri(hm, "/api/stats/get")) {
  994. handle_stats_get(c);
  995. } else if (mg_http_match_uri(hm, "/api/events/get")) {
  996. handle_events_get(c, hm);
  997. } else if (mg_http_match_uri(hm, "/api/comm/get")) {
  998. handle_comm_get(c);
  999. } else if (mg_http_match_uri(hm, "/api/comm/set")) {
  1000. handle_comm_set(c, hm->body);
  1001. } else if (mg_http_match_uri(hm, "/api/pcs/get")) {
  1002. handle_pcs_get(c);
  1003. } else if (mg_http_match_uri(hm, "/api/pcs/set")) {
  1004. handle_pcs_set(c, hm->body);
  1005. }else if (mg_http_match_uri(hm, "/api/bms/get")) {
  1006. handle_bms_get(c);
  1007. }else if (mg_http_match_uri(hm, "/api/ac/get")) {
  1008. handle_ac_get(c);
  1009. }else if (mg_http_match_uri(hm, "/api/ac/set")) {
  1010. handle_ac_set(c, hm->body);
  1011. }else if (mg_http_match_uri(hm, "/api/env/get")) {
  1012. handle_env_get(c);
  1013. }else if (mg_http_match_uri(hm, "/api/env/set")) {
  1014. handle_env_set(c, hm->body);
  1015. }else if (mg_http_match_uri(hm, "/api/fe/get")) {
  1016. handle_fe_get(c);
  1017. }else if (mg_http_match_uri(hm, "/api/env/set_ledmod")) {
  1018. handle_env_set_ledmod(c, hm->body);
  1019. } else if (mg_http_match_uri(hm, "/api/firmware/upload")) {
  1020. handle_firmware_upload(c, hm);
  1021. } else if (mg_http_match_uri(hm, "/api/firmware/commit")) {
  1022. handle_firmware_commit(c);
  1023. } else if (mg_http_match_uri(hm, "/api/firmware/rollback")) {
  1024. handle_firmware_rollback(c);
  1025. } else if (mg_http_match_uri(hm, "/api/firmware/status")) {
  1026. handle_firmware_status(c);
  1027. } else if (mg_http_match_uri(hm, "/api/device/reset")) {
  1028. handle_device_reset(c);
  1029. } else if (mg_http_match_uri(hm, "/api/device/eraselast")) {
  1030. handle_device_eraselast(c);
  1031. } else {
  1032. struct mg_http_serve_opts opts;
  1033. memset(&opts, 0, sizeof(opts));
  1034. #if MG_ARCH == MG_ARCH_UNIX || MG_ARCH == MG_ARCH_WIN32
  1035. opts.root_dir = "web_root"; // On workstations, use filesystem
  1036. #else
  1037. opts.root_dir = "/web_root"; // On embedded, use packed files
  1038. opts.fs = &mg_fs_packed;
  1039. #endif
  1040. mg_http_serve_dir(c, ev_data, &opts);
  1041. }
  1042. MG_DEBUG(("%lu %.*s %.*s -> %.*s", c->id, (int) hm->method.len,
  1043. hm->method.ptr, (int) hm->uri.len, hm->uri.ptr, (int) 3,
  1044. &c->send.buf[9]));
  1045. }
  1046. }
  1047. void web_init(struct mg_mgr *mgr) {
  1048. s_settings.device_name = strdup("My Device");
  1049. mg_http_listen(mgr, HTTP_URL, fn, NULL);
  1050. mg_http_listen(mgr, HTTPS_URL, fn, (void *) 1);
  1051. mg_timer_add(mgr, 3600 * 1000, MG_TIMER_RUN_NOW | MG_TIMER_REPEAT,
  1052. timer_sntp_fn, mgr);
  1053. }