cfgmod-server.c 24 KB

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  1. // SPDX-License-Identifier: LGPL-2.1-or-later
  2. /*
  3. *
  4. * BlueZ - Bluetooth protocol stack for Linux
  5. *
  6. * Copyright (C) 2018-2020 Intel Corporation. All rights reserved.
  7. *
  8. *
  9. */
  10. #ifdef HAVE_CONFIG_H
  11. #include <config.h>
  12. #endif
  13. #include <sys/time.h>
  14. #include <ell/ell.h>
  15. #include "mesh/mesh-defs.h"
  16. #include "mesh/node.h"
  17. #include "mesh/net.h"
  18. #include "mesh/appkey.h"
  19. #include "mesh/model.h"
  20. #include "mesh/mesh-config.h"
  21. #include "mesh/cfgmod.h"
  22. #define CREDFLAG_MASK 0x1000
  23. #define CFG_GET_ID(vendor, pkt) ((vendor) ? \
  24. (SET_ID(l_get_le16((pkt)), l_get_le16((pkt) + 2))) : \
  25. (SET_ID(SIG_VENDOR, l_get_le16(pkt))))
  26. /* Supported composition pages, sorted high to low */
  27. /* Only page 0 is currently supported */
  28. static const uint8_t supported_pages[] = {
  29. 0
  30. };
  31. static uint8_t msg[MAX_MSG_LEN];
  32. static uint16_t set_pub_status(uint8_t status, uint16_t ele_addr, uint32_t id,
  33. uint16_t pub_addr, uint16_t idx, bool cred_flag,
  34. uint8_t ttl, uint8_t period, uint8_t rtx)
  35. {
  36. size_t n;
  37. n = mesh_model_opcode_set(OP_CONFIG_MODEL_PUB_STATUS, msg);
  38. msg[n++] = status;
  39. l_put_le16(ele_addr, msg + n);
  40. l_put_le16(pub_addr, msg + n + 2);
  41. idx |= cred_flag ? CREDFLAG_MASK : 0;
  42. l_put_le16(idx, msg + n + 4);
  43. n += 6;
  44. msg[n++] = ttl;
  45. msg[n++] = period;
  46. msg[n++] = rtx;
  47. if (!IS_VENDOR(id)) {
  48. l_put_le16(MODEL_ID(id), msg + n);
  49. n += 2;
  50. } else {
  51. l_put_le16(VENDOR_ID(id), msg + n);
  52. l_put_le16(MODEL_ID(id), msg + n + 2);
  53. n += 4;
  54. }
  55. return n;
  56. }
  57. static uint16_t config_pub_get(struct mesh_node *node, const uint8_t *pkt,
  58. bool vendor)
  59. {
  60. uint32_t id;
  61. uint16_t ele_addr;
  62. uint8_t rtx;
  63. struct mesh_model_pub *pub;
  64. int status;
  65. ele_addr = l_get_le16(pkt);
  66. id = CFG_GET_ID(vendor, pkt + 2);
  67. pub = mesh_model_pub_get(node, ele_addr, id, &status);
  68. if (pub && status == MESH_STATUS_SUCCESS) {
  69. rtx = pub->rtx.cnt + (((pub->rtx.interval / 50) - 1) << 3);
  70. return set_pub_status(status, ele_addr, id, pub->addr, pub->idx,
  71. pub->credential, pub->ttl, pub->period,
  72. rtx);
  73. } else
  74. return set_pub_status(status, ele_addr, id, 0, 0, 0, 0, 0, 0);
  75. }
  76. static uint16_t config_pub_set(struct mesh_node *node, const uint8_t *pkt,
  77. bool virt, bool vendor)
  78. {
  79. uint32_t id;
  80. uint16_t ele_addr, idx, pub_dst;
  81. const uint8_t *pub_addr;
  82. uint8_t ttl, period, rtx, cnt, interval;
  83. int status;
  84. bool cred_flag;
  85. ele_addr = l_get_le16(pkt);
  86. pub_addr = pkt + 2;
  87. pub_dst = l_get_le16(pub_addr);
  88. if (!virt && IS_VIRTUAL(pub_dst))
  89. return 0;
  90. pkt += (virt ? 14 : 0);
  91. idx = l_get_le16(pkt + 4);
  92. if (idx > CREDFLAG_MASK)
  93. return 0;
  94. cred_flag = !!(CREDFLAG_MASK & idx);
  95. idx &= APP_IDX_MASK;
  96. ttl = pkt[6];
  97. period = pkt[7];
  98. rtx = pkt[8];
  99. id = CFG_GET_ID(vendor, pkt + 9);
  100. cnt = rtx & 0x7;
  101. interval = ((rtx >> 3) + 1) * 50;
  102. status = mesh_model_pub_set(node, ele_addr, id, pub_addr, idx,
  103. cred_flag, ttl, period, cnt,
  104. interval, virt, &pub_dst);
  105. l_debug("pub_set: status %d, ea %4.4x, ota: %4.4x, id: %x, idx: %3.3x",
  106. status, ele_addr, pub_dst, id, idx);
  107. if (status != MESH_STATUS_SUCCESS)
  108. return set_pub_status(status, ele_addr, id, 0, 0, 0, 0, 0, 0);
  109. if (IS_UNASSIGNED(pub_dst) && !virt) {
  110. ttl = period = idx = 0;
  111. /* Remove model publication from config file */
  112. if (!mesh_config_model_pub_del(node_config_get(node), ele_addr,
  113. vendor ? id : MODEL_ID(id),
  114. vendor))
  115. status = MESH_STATUS_STORAGE_FAIL;
  116. } else {
  117. struct mesh_config_pub db_pub = {
  118. .virt = virt,
  119. .addr = pub_dst,
  120. .idx = idx,
  121. .ttl = ttl,
  122. .credential = cred_flag,
  123. .period = period,
  124. .cnt = cnt,
  125. .interval = interval
  126. };
  127. if (virt)
  128. memcpy(db_pub.virt_addr, pub_addr, 16);
  129. /* Save model publication to config file */
  130. if (!mesh_config_model_pub_add(node_config_get(node), ele_addr,
  131. vendor ? id : MODEL_ID(id),
  132. vendor, &db_pub))
  133. status = MESH_STATUS_STORAGE_FAIL;
  134. }
  135. return set_pub_status(status, ele_addr, id, pub_dst, idx, cred_flag,
  136. ttl, period, rtx);
  137. }
  138. static uint16_t cfg_sub_get_msg(struct mesh_node *node, const uint8_t *pkt,
  139. uint16_t size)
  140. {
  141. uint16_t ele_addr, n, sub_len;
  142. uint32_t id;
  143. int opcode;
  144. bool vendor = (size == 6);
  145. ele_addr = l_get_le16(pkt);
  146. id = CFG_GET_ID(vendor, pkt + 2);
  147. opcode = vendor ? OP_CONFIG_VEND_MODEL_SUB_LIST :
  148. OP_CONFIG_MODEL_SUB_LIST;
  149. n = mesh_model_opcode_set(opcode, msg);
  150. memcpy(msg + n + 1, pkt, size);
  151. msg[n] = mesh_model_sub_get(node, ele_addr, id, msg + n + 1 + size,
  152. MAX_MSG_LEN - (n + 1 + size), &sub_len);
  153. if (msg[n] == MESH_STATUS_SUCCESS)
  154. n += sub_len;
  155. n += (size + 1);
  156. return n;
  157. }
  158. static bool save_cfg_sub(struct mesh_node *node, uint16_t ele_addr,
  159. uint32_t id, bool vendor, const uint8_t *label,
  160. bool virt, uint16_t grp, uint32_t opcode)
  161. {
  162. struct mesh_config *cfg = node_config_get(node);
  163. struct mesh_config_sub db_sub = {
  164. .virt = virt,
  165. .addr.grp = grp
  166. };
  167. id = (vendor) ? id : MODEL_ID(id);
  168. if (virt)
  169. memcpy(db_sub.addr.label, label, 16);
  170. if (opcode == OP_CONFIG_MODEL_SUB_VIRT_DELETE ||
  171. opcode == OP_CONFIG_MODEL_SUB_DELETE)
  172. return mesh_config_model_sub_del(cfg, ele_addr, id, vendor,
  173. &db_sub);
  174. if (opcode == OP_CONFIG_MODEL_SUB_VIRT_OVERWRITE ||
  175. opcode == OP_CONFIG_MODEL_SUB_OVERWRITE)
  176. if (!mesh_config_model_sub_del_all(cfg, ele_addr, id, vendor))
  177. return false;
  178. return mesh_config_model_sub_add(cfg, ele_addr, id, vendor, &db_sub);
  179. }
  180. static uint16_t cfg_sub_add_msg(struct mesh_node *node, const uint8_t *pkt,
  181. bool vendor, uint32_t opcode)
  182. {
  183. uint16_t addr, ele_addr, n;
  184. uint32_t id;
  185. addr = l_get_le16(pkt + 2);
  186. if (!IS_GROUP(addr))
  187. return 0;
  188. ele_addr = l_get_le16(pkt);
  189. id = CFG_GET_ID(vendor, pkt + 4);
  190. n = mesh_model_opcode_set(OP_CONFIG_MODEL_SUB_STATUS, msg);
  191. if (opcode == OP_CONFIG_MODEL_SUB_OVERWRITE)
  192. msg[n] = mesh_model_sub_ovrt(node, ele_addr, id, addr);
  193. else if (opcode == OP_CONFIG_MODEL_SUB_ADD)
  194. msg[n] = mesh_model_sub_add(node, ele_addr, id, addr);
  195. else
  196. msg[n] = mesh_model_sub_del(node, ele_addr, id, addr);
  197. if (msg[n] == MESH_STATUS_SUCCESS &&
  198. !save_cfg_sub(node, ele_addr, id, vendor, NULL, false,
  199. addr, opcode))
  200. msg[n] = MESH_STATUS_STORAGE_FAIL;
  201. if (vendor) {
  202. memcpy(msg + n + 1, pkt, 8);
  203. n += 9;
  204. } else {
  205. memcpy(msg + n + 1, pkt, 6);
  206. n += 7;
  207. }
  208. return n;
  209. }
  210. static uint16_t cfg_virt_sub_add_msg(struct mesh_node *node, const uint8_t *pkt,
  211. bool vendor, uint32_t opcode)
  212. {
  213. uint16_t addr, ele_addr, n;
  214. uint32_t id;
  215. const uint8_t *label;
  216. n = mesh_model_opcode_set(OP_CONFIG_MODEL_SUB_STATUS, msg);
  217. ele_addr = l_get_le16(pkt);
  218. label = pkt + 2;
  219. id = CFG_GET_ID(vendor, pkt + 18);
  220. if (opcode == OP_CONFIG_MODEL_SUB_VIRT_OVERWRITE)
  221. msg[n] = mesh_model_virt_sub_ovrt(node, ele_addr, id, label,
  222. &addr);
  223. else if (opcode == OP_CONFIG_MODEL_SUB_VIRT_ADD)
  224. msg[n] = mesh_model_virt_sub_add(node, ele_addr, id, label,
  225. &addr);
  226. else
  227. msg[n] = mesh_model_virt_sub_del(node, ele_addr, id, label,
  228. &addr);
  229. if (msg[n] == MESH_STATUS_SUCCESS &&
  230. !save_cfg_sub(node, ele_addr, id, vendor,
  231. label, true, addr, opcode))
  232. msg[n] = MESH_STATUS_STORAGE_FAIL;
  233. l_put_le16(ele_addr, msg + n + 1);
  234. l_put_le16(addr, msg + n + 3);
  235. if (vendor) {
  236. l_put_le16(VENDOR_ID(id), msg + n + 5);
  237. l_put_le16(MODEL_ID(id), msg + n + 7);
  238. n += 9;
  239. } else {
  240. l_put_le16(MODEL_ID(id), msg + n + 5);
  241. n += 7;
  242. }
  243. return n;
  244. }
  245. static uint16_t config_sub_del_all(struct mesh_node *node, const uint8_t *pkt,
  246. bool vendor)
  247. {
  248. uint16_t ele_addr, n, grp = UNASSIGNED_ADDRESS;
  249. uint32_t id;
  250. n = mesh_model_opcode_set(OP_CONFIG_MODEL_SUB_STATUS, msg);
  251. ele_addr = l_get_le16(pkt);
  252. id = CFG_GET_ID(vendor, pkt + 2);
  253. msg[n] = mesh_model_sub_del_all(node, ele_addr, id);
  254. if (msg[n] == MESH_STATUS_SUCCESS) {
  255. struct mesh_config *cfg = node_config_get(node);
  256. if (!mesh_config_model_sub_del_all(cfg, ele_addr,
  257. vendor ? id : MODEL_ID(id),
  258. vendor))
  259. msg[n] = MESH_STATUS_STORAGE_FAIL;
  260. }
  261. l_put_le16(ele_addr, msg + n + 1);
  262. l_put_le16(grp, msg + n + 3);
  263. if (vendor) {
  264. l_put_le16(VENDOR_ID(id), msg + n + 5);
  265. l_put_le16(MODEL_ID(id), msg + n + 7);
  266. n += 9;
  267. } else {
  268. l_put_le16(MODEL_ID(id), msg + n + 5);
  269. n += 7;
  270. }
  271. return n;
  272. }
  273. static uint16_t model_app_list(struct mesh_node *node,
  274. const uint8_t *pkt, uint16_t size)
  275. {
  276. uint16_t ele_addr, n, bnd_len;
  277. uint32_t id;
  278. int opcode;
  279. opcode = (size == 4) ? OP_MODEL_APP_LIST : OP_VEND_MODEL_APP_LIST;
  280. ele_addr = l_get_le16(pkt);
  281. n = mesh_model_opcode_set(opcode, msg);
  282. memcpy(msg + n + 1, pkt, size);
  283. id = CFG_GET_ID(size == 6, pkt + 2);
  284. msg[n] = mesh_model_get_bindings(node, ele_addr, id, msg + n + 1 + size,
  285. MAX_MSG_LEN - (n + 1 + size), &bnd_len);
  286. if (msg[n] == MESH_STATUS_SUCCESS)
  287. n += bnd_len;
  288. n += (size + 1);
  289. return n;
  290. }
  291. static uint16_t model_app_bind(struct mesh_node *node, const uint8_t *pkt,
  292. uint16_t size, bool unbind)
  293. {
  294. uint16_t ele_addr, idx, n;
  295. uint32_t id;
  296. idx = l_get_le16(pkt + 2);
  297. if (idx > APP_IDX_MAX)
  298. return 0;
  299. ele_addr = l_get_le16(pkt);
  300. id = CFG_GET_ID(size == 8, pkt + 4);
  301. n = mesh_model_opcode_set(OP_MODEL_APP_STATUS, msg);
  302. if (unbind)
  303. msg[n] = mesh_model_binding_del(node, ele_addr, id, idx);
  304. else
  305. msg[n] = mesh_model_binding_add(node, ele_addr, id, idx);
  306. memcpy(msg + n + 1, pkt, size);
  307. n += (size + 1);
  308. return n;
  309. }
  310. static uint16_t cfg_relay_msg(struct mesh_node *node, const uint8_t *pkt,
  311. int opcode)
  312. {
  313. uint8_t count;
  314. uint16_t interval;
  315. uint16_t n;
  316. if (opcode == OP_CONFIG_RELAY_SET) {
  317. count = (pkt[1] & 0x7) + 1;
  318. interval = ((pkt[1] >> 3) + 1) * 10;
  319. node_relay_mode_set(node, !!pkt[0], count, interval);
  320. }
  321. n = mesh_model_opcode_set(OP_CONFIG_RELAY_STATUS, msg);
  322. msg[n++] = node_relay_mode_get(node, &count, &interval);
  323. msg[n++] = (count - 1) + ((interval/10 - 1) << 3);
  324. return n;
  325. }
  326. static uint16_t cfg_key_refresh_phase(struct mesh_node *node,
  327. const uint8_t *pkt, int opcode)
  328. {
  329. struct mesh_net *net = node_get_net(node);
  330. uint16_t n, idx = l_get_le16(pkt);
  331. uint8_t phase;
  332. int status;
  333. n = mesh_model_opcode_set(OP_CONFIG_KEY_REFRESH_PHASE_STATUS, msg);
  334. status = mesh_net_key_refresh_phase_get(net, idx, &phase);
  335. if (status == MESH_STATUS_SUCCESS &&
  336. opcode == OP_CONFIG_KEY_REFRESH_PHASE_SET) {
  337. if (pkt[2] == KEY_REFRESH_TRANS_TWO) {
  338. if (phase == KEY_REFRESH_PHASE_TWO)
  339. goto done;
  340. else if (phase != KEY_REFRESH_PHASE_ONE)
  341. return 0;
  342. }
  343. status = mesh_net_key_refresh_phase_set(net, idx, pkt[2]);
  344. l_debug("Set KR Phase: net=%3.3x transition=%d", idx, pkt[2]);
  345. if (status == MESH_STATUS_SUCCESS)
  346. mesh_net_key_refresh_phase_get(net, idx, &phase);
  347. }
  348. done:
  349. msg[n] = status;
  350. l_put_le16(idx, &msg[n + 1]);
  351. msg[n + 3] = (status != MESH_STATUS_SUCCESS) ?
  352. KEY_REFRESH_PHASE_NONE : phase;
  353. return n + 4;
  354. }
  355. static uint8_t uint32_to_log(uint32_t value)
  356. {
  357. uint32_t val = 1;
  358. uint8_t ret = 1;
  359. if (!value)
  360. return 0;
  361. else if (value > 0x10000)
  362. return 0xff;
  363. while (val < value) {
  364. val <<= 1;
  365. ret++;
  366. }
  367. return ret;
  368. }
  369. static uint16_t hb_subscription_get(struct mesh_node *node, int status)
  370. {
  371. struct mesh_net *net = node_get_net(node);
  372. struct mesh_net_heartbeat_sub *sub = mesh_net_get_heartbeat_sub(net);
  373. struct timeval time_now;
  374. uint16_t n;
  375. gettimeofday(&time_now, NULL);
  376. time_now.tv_sec -= sub->start;
  377. if (time_now.tv_sec >= (long) sub->period)
  378. time_now.tv_sec = 0;
  379. else
  380. time_now.tv_sec = sub->period - time_now.tv_sec;
  381. l_debug("Sub Period (Log %2.2x) %d sec", uint32_to_log(time_now.tv_sec),
  382. (int) time_now.tv_sec);
  383. n = mesh_model_opcode_set(OP_CONFIG_HEARTBEAT_SUB_STATUS, msg);
  384. msg[n++] = status;
  385. l_put_le16(sub->src, msg + n);
  386. n += 2;
  387. l_put_le16(sub->dst, msg + n);
  388. n += 2;
  389. msg[n++] = uint32_to_log(time_now.tv_sec);
  390. msg[n++] = uint32_to_log(sub->count);
  391. msg[n++] = sub->count ? sub->min_hops : 0;
  392. msg[n++] = sub->max_hops;
  393. return n;
  394. }
  395. static uint16_t hb_subscription_set(struct mesh_node *node, const uint8_t *pkt)
  396. {
  397. uint16_t src, dst;
  398. uint8_t period_log;
  399. struct mesh_net *net;
  400. int status;
  401. src = l_get_le16(pkt);
  402. dst = l_get_le16(pkt + 2);
  403. /* SRC must be Unicast, DST can be any legal address except Virtual */
  404. if ((!IS_UNASSIGNED(src) && !IS_UNICAST(src)) || IS_VIRTUAL(dst))
  405. return 0;
  406. period_log = pkt[4];
  407. if (period_log > 0x11)
  408. return 0;
  409. net = node_get_net(node);
  410. status = mesh_net_set_heartbeat_sub(net, src, dst, period_log);
  411. return hb_subscription_get(node, status);
  412. }
  413. static uint16_t hb_publication_get(struct mesh_node *node, int status)
  414. {
  415. struct mesh_net *net = node_get_net(node);
  416. struct mesh_net_heartbeat_pub *pub = mesh_net_get_heartbeat_pub(net);
  417. uint16_t n;
  418. n = mesh_model_opcode_set(OP_CONFIG_HEARTBEAT_PUB_STATUS, msg);
  419. msg[n++] = status;
  420. l_put_le16(pub->dst, msg + n);
  421. n += 2;
  422. msg[n++] = uint32_to_log(pub->count);
  423. msg[n++] = uint32_to_log(pub->period);
  424. msg[n++] = pub->ttl;
  425. l_put_le16(pub->features, msg + n);
  426. n += 2;
  427. l_put_le16(pub->net_idx, msg + n);
  428. n += 2;
  429. return n;
  430. }
  431. static uint16_t hb_publication_set(struct mesh_node *node, const uint8_t *pkt)
  432. {
  433. uint16_t dst, features, net_idx;
  434. uint8_t period_log, count_log, ttl;
  435. struct mesh_net *net;
  436. int status;
  437. dst = l_get_le16(pkt);
  438. count_log = pkt[2];
  439. period_log = pkt[3];
  440. ttl = pkt[4];
  441. if (count_log > 0x11 && count_log != 0xff)
  442. return 0;
  443. if (period_log > 0x11 || ttl > TTL_MASK || IS_VIRTUAL(dst))
  444. return 0;
  445. features = l_get_le16(pkt + 5) & 0xf;
  446. net_idx = l_get_le16(pkt + 7);
  447. net = node_get_net(node);
  448. status = mesh_net_set_heartbeat_pub(net, dst, features, net_idx, ttl,
  449. count_log, period_log);
  450. return hb_publication_get(node, status);
  451. }
  452. static void node_reset(void *user_data)
  453. {
  454. struct mesh_node *node = user_data;
  455. l_debug("Node Reset");
  456. node_remove(node);
  457. }
  458. static uint16_t cfg_appkey_msg(struct mesh_node *node, const uint8_t *pkt,
  459. int opcode)
  460. {
  461. uint16_t n_idx, a_idx, n;
  462. struct mesh_net *net = node_get_net(node);
  463. n_idx = l_get_le16(pkt) & 0xfff;
  464. a_idx = l_get_le16(pkt + 1) >> 4;
  465. n = mesh_model_opcode_set(OP_APPKEY_STATUS, msg);
  466. if (opcode == OP_APPKEY_ADD)
  467. msg[n] = appkey_key_add(net, n_idx, a_idx, pkt + 3);
  468. else if (opcode == OP_APPKEY_UPDATE)
  469. msg[n] = appkey_key_update(net, n_idx, a_idx, pkt + 3);
  470. else
  471. msg[n] = appkey_key_delete(net, n_idx, a_idx);
  472. l_debug("AppKey Command %s: Net_Idx %3.3x, App_Idx %3.3x",
  473. (msg[n] == MESH_STATUS_SUCCESS) ? "success" : "fail",
  474. n_idx, a_idx);
  475. memcpy(msg + n + 1, &pkt[0], 3);
  476. return n + 4;
  477. }
  478. static uint16_t cfg_netkey_msg(struct mesh_node *node, const uint8_t *pkt,
  479. int opcode)
  480. {
  481. uint16_t n_idx, n;
  482. struct mesh_net *net = node_get_net(node);
  483. n_idx = l_get_le16(pkt);
  484. if (n_idx > NET_IDX_MAX)
  485. return 0;
  486. n = mesh_model_opcode_set(OP_NETKEY_STATUS, msg);
  487. if (opcode == OP_NETKEY_ADD)
  488. msg[n] = mesh_net_add_key(net, n_idx, pkt + 2);
  489. else if (opcode == OP_NETKEY_UPDATE)
  490. msg[n] = mesh_net_update_key(net, n_idx, pkt + 2);
  491. else
  492. msg[n] = mesh_net_del_key(net, n_idx);
  493. l_debug("NetKey Command %s: Net_Idx %3.3x",
  494. (msg[n] == MESH_STATUS_SUCCESS) ? "success" : "fail",
  495. n_idx);
  496. memcpy(msg + n + 1, &pkt[0], 2);
  497. return n + 3;
  498. }
  499. static uint16_t cfg_get_appkeys_msg(struct mesh_node *node, const uint8_t *pkt)
  500. {
  501. uint16_t n_idx, sz, n;
  502. n_idx = l_get_le16(pkt);
  503. n = mesh_model_opcode_set(OP_APPKEY_LIST, msg);
  504. l_put_le16(n_idx, msg + n + 1);
  505. msg[n] = appkey_list(node_get_net(node), n_idx, msg + n + 3,
  506. MAX_MSG_LEN - (n + 3), &sz);
  507. return n + 3 + sz;
  508. }
  509. static uint16_t cfg_poll_timeout_msg(struct mesh_node *node, const uint8_t *pkt)
  510. {
  511. uint16_t n, addr = l_get_le16(pkt);
  512. uint32_t poll_to;
  513. if (!IS_UNICAST(addr))
  514. return 0;
  515. n = mesh_model_opcode_set(OP_CONFIG_POLL_TIMEOUT_STATUS, msg);
  516. l_put_le16(addr, msg + n);
  517. n += 2;
  518. poll_to = mesh_net_friend_timeout(node_get_net(node), addr);
  519. msg[n++] = poll_to;
  520. msg[n++] = poll_to >> 8;
  521. msg[n++] = poll_to >> 16;
  522. return n;
  523. }
  524. static uint16_t cfg_net_tx_msg(struct mesh_node *node, const uint8_t *pkt,
  525. int opcode)
  526. {
  527. uint8_t cnt;
  528. uint16_t interval, n;
  529. struct mesh_net *net = node_get_net(node);
  530. cnt = (pkt[0] & 0x7) + 1;
  531. interval = ((pkt[0] >> 3) + 1) * 10;
  532. if (opcode == OP_CONFIG_NETWORK_TRANSMIT_SET &&
  533. mesh_config_write_net_transmit(node_config_get(node),
  534. cnt, interval))
  535. mesh_net_transmit_params_set(net, cnt, interval);
  536. n = mesh_model_opcode_set(OP_CONFIG_NETWORK_TRANSMIT_STATUS, msg);
  537. mesh_net_transmit_params_get(net, &cnt, &interval);
  538. msg[n++] = (cnt - 1) + ((interval/10 - 1) << 3);
  539. return n;
  540. }
  541. static uint16_t get_composition(struct mesh_node *node, uint8_t page,
  542. uint8_t *buf)
  543. {
  544. const uint8_t *comp;
  545. uint16_t len = 0;
  546. size_t i;
  547. for (i = 0; i < sizeof(supported_pages); i++) {
  548. if (page < supported_pages[i])
  549. continue;
  550. page = supported_pages[i];
  551. comp = node_get_comp(node, page, &len);
  552. if (!page || len)
  553. break;
  554. }
  555. if (!len)
  556. return 0;
  557. *buf++ = page;
  558. memcpy(buf, comp, len);
  559. return len + 1;
  560. }
  561. static bool cfg_srv_pkt(uint16_t src, uint16_t dst, uint16_t app_idx,
  562. uint16_t net_idx, const uint8_t *data,
  563. uint16_t size, const void *user_data)
  564. {
  565. struct mesh_node *node = (struct mesh_node *) user_data;
  566. struct mesh_net *net;
  567. const uint8_t *pkt = data;
  568. uint32_t opcode;
  569. uint16_t n_idx;
  570. uint8_t state;
  571. bool virt = false;
  572. uint16_t n;
  573. if (app_idx != APP_IDX_DEV_LOCAL)
  574. return false;
  575. if (mesh_model_opcode_get(pkt, size, &opcode, &n)) {
  576. size -= n;
  577. pkt += n;
  578. } else
  579. return false;
  580. net = node_get_net(node);
  581. l_debug("CONFIG-SRV-opcode 0x%x size %u idx %3.3x", opcode, size,
  582. net_idx);
  583. n = 0;
  584. switch (opcode) {
  585. default:
  586. return false;
  587. case OP_DEV_COMP_GET:
  588. if (size != 1)
  589. return true;
  590. n = mesh_model_opcode_set(OP_DEV_COMP_STATUS, msg);
  591. n += get_composition(node, pkt[0], msg + n);
  592. break;
  593. case OP_CONFIG_DEFAULT_TTL_SET:
  594. if (size != 1 || pkt[0] > TTL_MASK || pkt[0] == 1)
  595. return true;
  596. node_default_ttl_set(node, pkt[0]);
  597. /* Fall Through */
  598. case OP_CONFIG_DEFAULT_TTL_GET:
  599. if (opcode == OP_CONFIG_DEFAULT_TTL_GET && size != 0)
  600. return true;
  601. l_debug("Get/Set Default TTL");
  602. n = mesh_model_opcode_set(OP_CONFIG_DEFAULT_TTL_STATUS, msg);
  603. msg[n++] = node_default_ttl_get(node);
  604. break;
  605. case OP_CONFIG_MODEL_PUB_VIRT_SET:
  606. if (size != 25 && size != 27)
  607. return true;
  608. virt = true;
  609. /* Fall Through */
  610. case OP_CONFIG_MODEL_PUB_SET:
  611. if (!virt && (size != 11 && size != 13))
  612. return true;
  613. n = config_pub_set(node, pkt, virt, size == 13 || size == 27);
  614. break;
  615. case OP_CONFIG_MODEL_PUB_GET:
  616. if (size != 4 && size != 6)
  617. return true;
  618. n = config_pub_get(node, pkt, size == 6);
  619. break;
  620. case OP_CONFIG_VEND_MODEL_SUB_GET:
  621. if (size != 6)
  622. return true;
  623. /* Fall Through */
  624. case OP_CONFIG_MODEL_SUB_GET:
  625. if (size != 4 && opcode == OP_CONFIG_MODEL_SUB_GET)
  626. return true;
  627. n = cfg_sub_get_msg(node, pkt, size);
  628. break;
  629. case OP_CONFIG_MODEL_SUB_VIRT_OVERWRITE:
  630. case OP_CONFIG_MODEL_SUB_VIRT_DELETE:
  631. case OP_CONFIG_MODEL_SUB_VIRT_ADD:
  632. if (size != 20 && size != 22)
  633. return true;
  634. n = cfg_virt_sub_add_msg(node, pkt, size == 22, opcode);
  635. break;
  636. case OP_CONFIG_MODEL_SUB_OVERWRITE:
  637. case OP_CONFIG_MODEL_SUB_DELETE:
  638. case OP_CONFIG_MODEL_SUB_ADD:
  639. if (size != 6 && size != 8)
  640. return true;
  641. n = cfg_sub_add_msg(node, pkt, size == 8, opcode);
  642. break;
  643. case OP_CONFIG_MODEL_SUB_DELETE_ALL:
  644. if (size != 4 && size != 6)
  645. return true;
  646. n = config_sub_del_all(node, pkt, size == 6);
  647. break;
  648. case OP_CONFIG_RELAY_SET:
  649. if (size != 2 || pkt[0] > 0x01)
  650. return true;
  651. /* Fall Through */
  652. case OP_CONFIG_RELAY_GET:
  653. if (opcode == OP_CONFIG_RELAY_GET && size != 0)
  654. return true;
  655. n = cfg_relay_msg(node, pkt, opcode);
  656. break;
  657. case OP_CONFIG_NETWORK_TRANSMIT_SET:
  658. if (size != 1)
  659. return true;
  660. /* Fall Through */
  661. case OP_CONFIG_NETWORK_TRANSMIT_GET:
  662. if (opcode == OP_CONFIG_NETWORK_TRANSMIT_GET && size != 0)
  663. return true;
  664. n = cfg_net_tx_msg(node, pkt, opcode);
  665. break;
  666. case OP_CONFIG_PROXY_SET:
  667. if (size != 1 || pkt[0] > 0x01)
  668. return true;
  669. node_proxy_mode_set(node, !!pkt[0]);
  670. /* Fall Through */
  671. case OP_CONFIG_PROXY_GET:
  672. if (opcode == OP_CONFIG_PROXY_GET && size != 0)
  673. return true;
  674. n = mesh_model_opcode_set(OP_CONFIG_PROXY_STATUS, msg);
  675. msg[n++] = node_proxy_mode_get(node);
  676. l_debug("Get/Set Config Proxy (%d)", msg[n-1]);
  677. break;
  678. case OP_NODE_IDENTITY_SET:
  679. if (size != 3)
  680. return true;
  681. /* Currently setting node identity not supported */
  682. /* Fall Through */
  683. case OP_NODE_IDENTITY_GET:
  684. if (opcode == OP_NODE_IDENTITY_GET && size != 2)
  685. return true;
  686. n_idx = l_get_le16(pkt);
  687. if (n_idx > NET_IDX_MAX)
  688. return true;
  689. n = mesh_model_opcode_set(OP_NODE_IDENTITY_STATUS, msg);
  690. msg[n++] = mesh_net_get_identity_mode(net, n_idx, &state);
  691. l_put_le16(n_idx, msg + n);
  692. n += 2;
  693. msg[n++] = state;
  694. l_debug("Get/Set Config Identity (%d)", state);
  695. break;
  696. case OP_CONFIG_BEACON_SET:
  697. if (size != 1 || pkt[0] > 0x01)
  698. return true;
  699. node_beacon_mode_set(node, !!pkt[0]);
  700. /* Fall Through */
  701. case OP_CONFIG_BEACON_GET:
  702. if (opcode == OP_CONFIG_BEACON_GET && size != 0)
  703. return true;
  704. n = mesh_model_opcode_set(OP_CONFIG_BEACON_STATUS, msg);
  705. msg[n++] = node_beacon_mode_get(node);
  706. l_debug("Get/Set Config Beacon (%d)", msg[n-1]);
  707. break;
  708. case OP_CONFIG_FRIEND_SET:
  709. if (size != 1 || pkt[0] > 0x01)
  710. return true;
  711. node_friend_mode_set(node, !!pkt[0]);
  712. /* Fall Through */
  713. case OP_CONFIG_FRIEND_GET:
  714. if (opcode == OP_CONFIG_FRIEND_GET && size != 0)
  715. return true;
  716. n = mesh_model_opcode_set(OP_CONFIG_FRIEND_STATUS, msg);
  717. msg[n++] = node_friend_mode_get(node);
  718. l_debug("Get/Set Friend (%d)", msg[n-1]);
  719. break;
  720. case OP_CONFIG_KEY_REFRESH_PHASE_SET:
  721. if (size != 3 || (pkt[2] != KEY_REFRESH_TRANS_THREE &&
  722. pkt[2] != KEY_REFRESH_TRANS_TWO))
  723. return true;
  724. /* Fall Through */
  725. case OP_CONFIG_KEY_REFRESH_PHASE_GET:
  726. if (size != 2 && opcode == OP_CONFIG_KEY_REFRESH_PHASE_GET)
  727. return true;
  728. n = cfg_key_refresh_phase(node, pkt, opcode);
  729. break;
  730. case OP_APPKEY_ADD:
  731. case OP_APPKEY_UPDATE:
  732. if (size != 19)
  733. return true;
  734. /* Fall Through */
  735. case OP_APPKEY_DELETE:
  736. if (opcode == OP_APPKEY_DELETE && size != 3)
  737. return true;
  738. n = cfg_appkey_msg(node, pkt, opcode);
  739. break;
  740. case OP_APPKEY_GET:
  741. if (size != 2)
  742. return true;
  743. n = cfg_get_appkeys_msg(node, pkt);
  744. break;
  745. case OP_NETKEY_ADD:
  746. case OP_NETKEY_UPDATE:
  747. if (size != 18)
  748. return true;
  749. /* Fall Through */
  750. case OP_NETKEY_DELETE:
  751. if (opcode == OP_NETKEY_DELETE && size != 2)
  752. return true;
  753. n = cfg_netkey_msg(node, pkt, opcode);
  754. break;
  755. case OP_NETKEY_GET:
  756. if (size != 0)
  757. return true;
  758. n = mesh_model_opcode_set(OP_NETKEY_LIST, msg);
  759. size = MAX_MSG_LEN - n;
  760. if (mesh_net_key_list_get(net, msg + n, &size))
  761. n += size;
  762. break;
  763. case OP_MODEL_APP_BIND:
  764. case OP_MODEL_APP_UNBIND:
  765. if (size != 6 && size != 8)
  766. return true;
  767. n = model_app_bind(node, pkt, size,
  768. opcode != OP_MODEL_APP_BIND);
  769. break;
  770. case OP_VEND_MODEL_APP_GET:
  771. if (size != 6)
  772. return true;
  773. n = model_app_list(node, pkt, size);
  774. break;
  775. case OP_MODEL_APP_GET:
  776. if (size != 4)
  777. return true;
  778. n = model_app_list(node, pkt, size);
  779. break;
  780. case OP_CONFIG_HEARTBEAT_PUB_SET:
  781. l_debug("Config Heartbeat Publication Set");
  782. if (size != 9)
  783. return true;
  784. n = hb_publication_set(node, pkt);
  785. break;
  786. case OP_CONFIG_HEARTBEAT_PUB_GET:
  787. if (size != 0)
  788. return true;
  789. n = hb_publication_get(node, MESH_STATUS_SUCCESS);
  790. break;
  791. case OP_CONFIG_HEARTBEAT_SUB_SET:
  792. if (size != 5)
  793. return true;
  794. l_debug("Set HB Sub Period Log %2.2x", pkt[4]);
  795. n = hb_subscription_set(node, pkt);
  796. break;
  797. case OP_CONFIG_HEARTBEAT_SUB_GET:
  798. if (size != 0)
  799. return true;
  800. n = hb_subscription_get(node, MESH_STATUS_SUCCESS);
  801. break;
  802. case OP_CONFIG_POLL_TIMEOUT_GET:
  803. if (size != 2)
  804. return true;
  805. n = cfg_poll_timeout_msg(node, pkt);
  806. break;
  807. case OP_NODE_RESET:
  808. if (size != 0)
  809. return true;
  810. n = mesh_model_opcode_set(OP_NODE_RESET_STATUS, msg);
  811. /* Delay node removal to give it a chance to send the status */
  812. l_idle_oneshot(node_reset, node, NULL);
  813. break;
  814. }
  815. if (n)
  816. mesh_model_send(node, dst, src, APP_IDX_DEV_LOCAL, net_idx,
  817. DEFAULT_TTL, false, n, msg);
  818. return true;
  819. }
  820. static void cfgmod_srv_unregister(void *user_data)
  821. {
  822. }
  823. static const struct mesh_model_ops ops = {
  824. .unregister = cfgmod_srv_unregister,
  825. .recv = cfg_srv_pkt,
  826. .bind = NULL,
  827. .sub = NULL,
  828. .pub = NULL
  829. };
  830. void cfgmod_server_init(struct mesh_node *node, uint8_t ele_idx)
  831. {
  832. l_debug("%2.2x", ele_idx);
  833. mesh_model_register(node, ele_idx, CONFIG_SRV_MODEL, &ops, node);
  834. }