ktp_session.c 12 KB

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  1. #include <stdlib.h>
  2. #include <stdio.h>
  3. #include <string.h>
  4. #include <assert.h>
  5. #include <unistd.h>
  6. #include <errno.h>
  7. #include <sys/types.h>
  8. #include <sys/stat.h>
  9. #include <fcntl.h>
  10. #include <sys/socket.h>
  11. #include <sys/un.h>
  12. #include <syslog.h>
  13. #include <faux/str.h>
  14. #include <klish/ktp_session.h>
  15. typedef struct cb_s {
  16. void *fn;
  17. void *udata;
  18. } cb_t;
  19. struct ktp_session_s {
  20. ktp_session_state_e state;
  21. faux_async_t *async;
  22. faux_hdr_t *hdr; // Service var: engine will receive header and then msg
  23. bool_t done;
  24. faux_eloop_t *eloop; // External eloop object
  25. cb_t cb[KTP_SESSION_CB_MAX];
  26. faux_error_t *error; // Internal
  27. bool_t request_done;
  28. int cmd_retcode; // Internal
  29. bool_t cmd_retcode_available;
  30. ktp_status_e cmd_features;
  31. bool_t cmd_features_available;
  32. bool_t stop_on_answer; // Stop the loop when answer is received (for non-interactive mode)
  33. };
  34. static bool_t server_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  35. void *associated_data, void *user_data);
  36. static bool_t ktp_session_read_cb(faux_async_t *async,
  37. faux_buf_t *buf, size_t len, void *user_data);
  38. ktp_session_t *ktp_session_new(int sock, faux_eloop_t *eloop)
  39. {
  40. ktp_session_t *ktp = NULL;
  41. if (sock < 0)
  42. return NULL;
  43. if (!eloop)
  44. return NULL;
  45. ktp = faux_zmalloc(sizeof(*ktp));
  46. assert(ktp);
  47. if (!ktp)
  48. return NULL;
  49. // Init
  50. ktp->state = KTP_SESSION_STATE_IDLE;
  51. ktp->done = BOOL_FALSE;
  52. ktp->eloop = eloop;
  53. ktp->stop_on_answer = BOOL_TRUE; // Non-interactive by default
  54. ktp->error = NULL;
  55. ktp->cmd_retcode = -1;
  56. ktp->cmd_retcode_available = BOOL_FALSE;
  57. ktp->request_done = BOOL_FALSE;
  58. ktp->cmd_features = KTP_STATUS_NONE;
  59. ktp->cmd_features_available = BOOL_FALSE;
  60. // Async object
  61. ktp->async = faux_async_new(sock);
  62. assert(ktp->async);
  63. // Receive message header first
  64. faux_async_set_read_limits(ktp->async,
  65. sizeof(faux_hdr_t), sizeof(faux_hdr_t));
  66. faux_async_set_read_cb(ktp->async, ktp_session_read_cb, ktp);
  67. ktp->hdr = NULL;
  68. faux_async_set_stall_cb(ktp->async, ktp_stall_cb, ktp->eloop);
  69. // Event loop handlers
  70. faux_eloop_add_fd(ktp->eloop, ktp_session_fd(ktp), POLLIN,
  71. server_ev, ktp);
  72. // Callbacks
  73. // Callbacks ktp->cb are zeroed by faux_zmalloc()
  74. return ktp;
  75. }
  76. void ktp_session_free(ktp_session_t *ktp)
  77. {
  78. if (!ktp)
  79. return;
  80. // Remove socket from eloop but don't free eloop because it's external
  81. faux_eloop_del_fd(ktp->eloop, ktp_session_fd(ktp));
  82. faux_free(ktp->hdr);
  83. close(ktp_session_fd(ktp));
  84. faux_async_free(ktp->async);
  85. faux_free(ktp);
  86. }
  87. faux_eloop_t *ktp_session_eloop(const ktp_session_t *ktp)
  88. {
  89. assert(ktp);
  90. if (!ktp)
  91. return NULL;
  92. return ktp->eloop;
  93. }
  94. bool_t ktp_session_done(const ktp_session_t *ktp)
  95. {
  96. assert(ktp);
  97. if (!ktp)
  98. return BOOL_TRUE; // Done flag
  99. return ktp->done;
  100. }
  101. bool_t ktp_session_set_done(ktp_session_t *ktp, bool_t done)
  102. {
  103. assert(ktp);
  104. if (!ktp)
  105. return BOOL_FALSE;
  106. ktp->done = done;
  107. return BOOL_TRUE;
  108. }
  109. bool_t ktp_session_stop_on_answer(const ktp_session_t *ktp)
  110. {
  111. assert(ktp);
  112. if (!ktp)
  113. return BOOL_TRUE; // Default
  114. return ktp->stop_on_answer;
  115. }
  116. bool_t ktp_session_set_stop_on_answer(ktp_session_t *ktp, bool_t stop_on_answer)
  117. {
  118. assert(ktp);
  119. if (!ktp)
  120. return BOOL_FALSE;
  121. ktp->stop_on_answer = stop_on_answer;
  122. return BOOL_TRUE;
  123. }
  124. ktp_session_state_e ktp_session_state(const ktp_session_t *ktp)
  125. {
  126. assert(ktp);
  127. if (!ktp)
  128. return KTP_SESSION_STATE_ERROR;
  129. return ktp->state;
  130. }
  131. ktp_status_e ktp_session_cmd_features(const ktp_session_t *ktp)
  132. {
  133. assert(ktp);
  134. if (!ktp)
  135. return KTP_STATUS_NONE;
  136. return ktp->cmd_features;
  137. }
  138. faux_error_t *ktp_session_error(const ktp_session_t *ktp)
  139. {
  140. assert(ktp);
  141. if (!ktp)
  142. return BOOL_FALSE;
  143. return ktp->error;
  144. }
  145. bool_t ktp_session_set_cb(ktp_session_t *ktp, ktp_session_cb_e cb_id,
  146. void *fn, void *udata)
  147. {
  148. assert(ktp);
  149. if (!ktp)
  150. return BOOL_FALSE;
  151. if (cb_id >= KTP_SESSION_CB_MAX)
  152. return BOOL_FALSE;
  153. ktp->cb[cb_id].fn = fn;
  154. ktp->cb[cb_id].udata = udata;
  155. return BOOL_TRUE;
  156. }
  157. bool_t ktp_session_connected(ktp_session_t *ktp)
  158. {
  159. assert(ktp);
  160. if (!ktp)
  161. return BOOL_FALSE;
  162. if (KTP_SESSION_STATE_DISCONNECTED == ktp->state)
  163. return BOOL_FALSE;
  164. return BOOL_TRUE;
  165. }
  166. int ktp_session_fd(const ktp_session_t *ktp)
  167. {
  168. assert(ktp);
  169. if (!ktp)
  170. return BOOL_FALSE;
  171. return faux_async_fd(ktp->async);
  172. }
  173. static bool_t server_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  174. void *associated_data, void *user_data)
  175. {
  176. faux_eloop_info_fd_t *info = (faux_eloop_info_fd_t *)associated_data;
  177. ktp_session_t *ktp = (ktp_session_t *)user_data;
  178. assert(ktp);
  179. // Write data
  180. if (info->revents & POLLOUT) {
  181. faux_eloop_exclude_fd_event(eloop, info->fd, POLLOUT);
  182. if (faux_async_out(ktp->async) < 0) {
  183. // Someting went wrong
  184. faux_eloop_del_fd(eloop, info->fd);
  185. syslog(LOG_ERR, "Problem with async output");
  186. return BOOL_FALSE; // Stop event loop
  187. }
  188. }
  189. // Read data
  190. if (info->revents & POLLIN) {
  191. if (faux_async_in(ktp->async) < 0) {
  192. // Someting went wrong
  193. faux_eloop_del_fd(eloop, info->fd);
  194. syslog(LOG_ERR, "Problem with async input");
  195. return BOOL_FALSE; // Stop event loop
  196. }
  197. }
  198. // EOF
  199. if (info->revents & POLLHUP) {
  200. faux_eloop_del_fd(eloop, info->fd);
  201. syslog(LOG_DEBUG, "Close connection %d", info->fd);
  202. return BOOL_FALSE; // Stop event loop
  203. }
  204. type = type; // Happy compiler
  205. if (ktp->request_done && ktp->stop_on_answer)
  206. return BOOL_FALSE; // Stop event loop on receiving answer
  207. if (ktp->done)
  208. return BOOL_FALSE; // Stop event loop on done flag (exit)
  209. return BOOL_TRUE;
  210. }
  211. static bool_t ktp_session_process_stdout(ktp_session_t *ktp, const faux_msg_t *msg)
  212. {
  213. char *line = NULL;
  214. unsigned int len = 0;
  215. assert(ktp);
  216. assert(msg);
  217. if (!ktp->cb[KTP_SESSION_CB_STDOUT].fn)
  218. return BOOL_TRUE; // Just ignore stdout. It's not a bug
  219. if (!faux_msg_get_param_by_type(msg, KTP_PARAM_LINE, (void **)&line, &len))
  220. return BOOL_TRUE; // It's strange but not a bug
  221. return ((ktp_session_stdout_cb_fn)ktp->cb[KTP_SESSION_CB_STDOUT].fn)(
  222. ktp, line, len, ktp->cb[KTP_SESSION_CB_STDOUT].udata);
  223. }
  224. static bool_t ktp_session_process_stderr(ktp_session_t *ktp, const faux_msg_t *msg)
  225. {
  226. char *line = NULL;
  227. unsigned int len = 0;
  228. assert(ktp);
  229. assert(msg);
  230. if (!ktp->cb[KTP_SESSION_CB_STDERR].fn)
  231. return BOOL_TRUE; // Just ignore message. It's not a bug
  232. if (!faux_msg_get_param_by_type(msg, KTP_PARAM_LINE,
  233. (void **)&line, &len))
  234. return BOOL_TRUE; // It's strange but not a bug
  235. return ((ktp_session_stdout_cb_fn)ktp->cb[KTP_SESSION_CB_STDERR].fn)(
  236. ktp, line, len, ktp->cb[KTP_SESSION_CB_STDERR].udata);
  237. }
  238. static bool_t ktp_session_process_cmd_ack(ktp_session_t *ktp, const faux_msg_t *msg)
  239. {
  240. uint8_t *retcode8bit = NULL;
  241. ktp_status_e status = KTP_STATUS_NONE;
  242. char *error_str = NULL;
  243. assert(ktp);
  244. assert(msg);
  245. status = faux_msg_get_status(msg);
  246. // cmd_ack with flag 'incompleted'
  247. if (KTP_STATUS_IS_INCOMPLETED(status)) {
  248. // Only first 'incompleted' cmd ack sets cmd features
  249. if (!ktp->cmd_features_available) {
  250. ktp->cmd_features_available = BOOL_TRUE;
  251. ktp->cmd_features = status & KTP_STATUS_INTERACTIVE;
  252. }
  253. // Execute external callback
  254. if (ktp->cb[KTP_SESSION_CB_CMD_ACK_INCOMPLETED].fn)
  255. ((ktp_session_event_cb_fn)
  256. ktp->cb[KTP_SESSION_CB_CMD_ACK_INCOMPLETED].fn)(
  257. ktp, msg,
  258. ktp->cb[KTP_SESSION_CB_CMD_ACK_INCOMPLETED].udata);
  259. printf("INCOMPLETED\n");
  260. return BOOL_TRUE;
  261. }
  262. if (faux_msg_get_param_by_type(msg, KTP_PARAM_RETCODE,
  263. (void **)&retcode8bit, NULL))
  264. ktp->cmd_retcode = (int)(*retcode8bit);
  265. error_str = faux_msg_get_str_param_by_type(msg, KTP_PARAM_ERROR);
  266. if (error_str) {
  267. faux_error_add(ktp->error, error_str);
  268. faux_str_free(error_str);
  269. }
  270. printf("COMPLETED %d %s\n", ktp->cmd_retcode, error_str);
  271. ktp->cmd_retcode_available = BOOL_TRUE; // Answer from server was received
  272. ktp->request_done = BOOL_TRUE;
  273. ktp->state = KTP_SESSION_STATE_IDLE;
  274. // Execute external callback
  275. if (ktp->cb[KTP_SESSION_CB_CMD_ACK].fn)
  276. ((ktp_session_event_cb_fn)
  277. ktp->cb[KTP_SESSION_CB_CMD_ACK].fn)(
  278. ktp, msg,
  279. ktp->cb[KTP_SESSION_CB_CMD_ACK].udata);
  280. return BOOL_TRUE;
  281. }
  282. /*
  283. static bool_t ktp_session_process_exit(ktp_session_t *ktp, const faux_msg_t *msg)
  284. {
  285. assert(ktp);
  286. assert(msg);
  287. ktp_session_set_done(ktp, BOOL_TRUE);
  288. // Execute external callback
  289. if (ktp->cb[KTP_SESSION_CB_EXIT].fn)
  290. ((ktp_session_event_cb_fn)
  291. ktp->cb[KTP_SESSION_CB_EXIT].fn)(
  292. ktp, msg,
  293. ktp->cb[KTP_SESSION_CB_EXIT].udata);
  294. return BOOL_TRUE;
  295. }
  296. */
  297. static bool_t ktp_session_dispatch(ktp_session_t *ktp, faux_msg_t *msg)
  298. {
  299. uint16_t cmd = 0;
  300. bool_t rc = BOOL_TRUE;
  301. assert(ktp);
  302. if (!ktp)
  303. return BOOL_FALSE;
  304. assert(msg);
  305. if (!msg)
  306. return BOOL_FALSE;
  307. cmd = faux_msg_get_cmd(msg);
  308. switch (cmd) {
  309. case KTP_CMD_ACK:
  310. if (ktp->state != KTP_SESSION_STATE_WAIT_FOR_CMD) {
  311. syslog(LOG_WARNING, "Unexpected KTP_CMD_ACK was received\n");
  312. break;
  313. }
  314. rc = ktp_session_process_cmd_ack(ktp, msg);
  315. break;
  316. case KTP_STDOUT:
  317. if (ktp->state != KTP_SESSION_STATE_WAIT_FOR_CMD) {
  318. syslog(LOG_WARNING, "Unexpected KTP_STDOUT was received\n");
  319. break;
  320. }
  321. rc = ktp_session_process_stdout(ktp, msg);
  322. break;
  323. case KTP_STDERR:
  324. if (ktp->state != KTP_SESSION_STATE_WAIT_FOR_CMD) {
  325. syslog(LOG_WARNING, "Unexpected KTP_STDERR was received\n");
  326. break;
  327. }
  328. rc = ktp_session_process_stderr(ktp, msg);
  329. break;
  330. default:
  331. syslog(LOG_WARNING, "Unsupported command: 0x%04u\n", cmd); // Ignore
  332. break;
  333. }
  334. return rc;
  335. }
  336. static bool_t ktp_session_read_cb(faux_async_t *async,
  337. faux_buf_t *buf, size_t len, void *user_data)
  338. {
  339. ktp_session_t *ktp = (ktp_session_t *)user_data;
  340. faux_msg_t *completed_msg = NULL;
  341. char *data = NULL;
  342. assert(async);
  343. assert(buf);
  344. assert(ktp);
  345. // Linearize buffer
  346. data = malloc(len);
  347. faux_buf_read(buf, data, len);
  348. // Receive header
  349. if (!ktp->hdr) {
  350. size_t whole_len = 0;
  351. size_t msg_wo_hdr = 0;
  352. ktp->hdr = (faux_hdr_t *)data;
  353. // Check for broken header
  354. if (!ktp_check_header(ktp->hdr)) {
  355. faux_free(ktp->hdr);
  356. ktp->hdr = NULL;
  357. return BOOL_FALSE;
  358. }
  359. whole_len = faux_hdr_len(ktp->hdr);
  360. // msg_wo_hdr >= 0 because ktp_check_header() validates whole_len
  361. msg_wo_hdr = whole_len - sizeof(faux_hdr_t);
  362. // Plan to receive message body
  363. if (msg_wo_hdr > 0) {
  364. faux_async_set_read_limits(async,
  365. msg_wo_hdr, msg_wo_hdr);
  366. return BOOL_TRUE;
  367. }
  368. // Here message is completed (msg body has zero length)
  369. completed_msg = faux_msg_deserialize_parts(ktp->hdr, NULL, 0);
  370. // Receive message body
  371. } else {
  372. completed_msg = faux_msg_deserialize_parts(ktp->hdr, data, len);
  373. faux_free(data);
  374. }
  375. // Plan to receive msg header
  376. faux_async_set_read_limits(ktp->async,
  377. sizeof(faux_hdr_t), sizeof(faux_hdr_t));
  378. faux_free(ktp->hdr);
  379. ktp->hdr = NULL; // Ready to recv new header
  380. // Here message is completed
  381. #ifdef DEBUG
  382. // faux_msg_debug(completed_msg);
  383. #endif
  384. ktp_session_dispatch(ktp, completed_msg);
  385. faux_msg_free(completed_msg);
  386. return BOOL_TRUE;
  387. }
  388. static bool_t ktp_session_req(ktp_session_t *ktp, ktp_cmd_e cmd,
  389. const char *line, faux_error_t *error, bool_t dry_run)
  390. {
  391. faux_msg_t *req = NULL;
  392. ktp_status_e status = KTP_STATUS_NONE;
  393. assert(ktp);
  394. if (!ktp)
  395. return BOOL_FALSE;
  396. if (ktp->state != KTP_SESSION_STATE_IDLE) {
  397. faux_error_sprintf(error,
  398. "Can't create request. Session state is not suitable");
  399. return BOOL_FALSE;
  400. }
  401. // Set dry-run flag
  402. if (dry_run)
  403. status |= KTP_STATUS_DRY_RUN;
  404. req = ktp_msg_preform(cmd, status);
  405. faux_msg_add_param(req, KTP_PARAM_LINE, line, strlen(line));
  406. faux_msg_send_async(req, ktp->async);
  407. faux_msg_free(req);
  408. // Prepare for loop
  409. ktp->error = error;
  410. ktp->cmd_retcode = -1;
  411. ktp->cmd_retcode_available = BOOL_FALSE;
  412. ktp->request_done = BOOL_FALSE;
  413. ktp->cmd_features = KTP_STATUS_NONE;
  414. ktp->cmd_features_available = BOOL_FALSE;
  415. return BOOL_TRUE;
  416. }
  417. bool_t ktp_session_cmd(ktp_session_t *ktp, const char *line,
  418. faux_error_t *error, bool_t dry_run)
  419. {
  420. if (!ktp_session_req(ktp, KTP_CMD, line, error, dry_run))
  421. return BOOL_FALSE;
  422. ktp->state = KTP_SESSION_STATE_WAIT_FOR_CMD;
  423. return BOOL_TRUE;
  424. }
  425. bool_t ktp_session_retcode(ktp_session_t *ktp, int *retcode)
  426. {
  427. if (!ktp)
  428. return BOOL_FALSE;
  429. if (ktp->cmd_retcode_available && retcode)
  430. *retcode = ktp->cmd_retcode;
  431. return ktp->cmd_retcode_available; // Sign of server answer
  432. }