ktpd_session.c 16 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 <poll.h>
  14. #include <sys/wait.h>
  15. #include <faux/str.h>
  16. #include <faux/async.h>
  17. #include <faux/msg.h>
  18. #include <faux/eloop.h>
  19. #include <klish/ksession.h>
  20. #include <klish/ksession_parse.h>
  21. #include <klish/ktp.h>
  22. #include <klish/ktp_session.h>
  23. typedef enum {
  24. KTPD_SESSION_STATE_DISCONNECTED = 'd',
  25. KTPD_SESSION_STATE_UNAUTHORIZED = 'a',
  26. KTPD_SESSION_STATE_IDLE = 'i',
  27. KTPD_SESSION_STATE_WAIT_FOR_PROCESS = 'p',
  28. } ktpd_session_state_e;
  29. struct ktpd_session_s {
  30. ksession_t *session;
  31. ktpd_session_state_e state;
  32. uid_t uid;
  33. gid_t gid;
  34. char *user;
  35. faux_async_t *async;
  36. faux_hdr_t *hdr; // Engine will receive header and then msg
  37. faux_eloop_t *eloop; // External link, dont's free()
  38. kexec_t *exec;
  39. bool_t exit;
  40. };
  41. // Static declarations
  42. static bool_t ktpd_session_read_cb(faux_async_t *async,
  43. faux_buf_t *buf, size_t len, void *user_data);
  44. static bool_t wait_for_actions_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  45. void *associated_data, void *user_data);
  46. bool_t client_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  47. void *associated_data, void *user_data);
  48. static bool_t ktpd_session_exec(ktpd_session_t *ktpd, const char *line,
  49. int *retcode, faux_error_t *error, bool_t dry_run);
  50. static bool_t action_stdout_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  51. void *associated_data, void *user_data);
  52. static bool_t action_stderr_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  53. void *associated_data, void *user_data);
  54. ktpd_session_t *ktpd_session_new(int sock, kscheme_t *scheme,
  55. const char *start_entry, faux_eloop_t *eloop)
  56. {
  57. ktpd_session_t *ktpd = NULL;
  58. if (sock < 0)
  59. return NULL;
  60. if (!eloop)
  61. return NULL;
  62. ktpd = faux_zmalloc(sizeof(*ktpd));
  63. assert(ktpd);
  64. if (!ktpd)
  65. return NULL;
  66. // Init
  67. ktpd->state = KTPD_SESSION_STATE_IDLE;
  68. ktpd->eloop = eloop;
  69. ktpd->session = ksession_new(scheme, start_entry);
  70. assert(ktpd->session);
  71. ktpd->exec = NULL;
  72. // Exit flag. It differs from ksession done flag because KTPD session
  73. // can't exit immediately. It must finish current command processing
  74. // before really stop the event loop. Note: User defined plugin
  75. // function must use ksession done flag. This exit flag is internal
  76. // feature of KTPD session.
  77. ktpd->exit = BOOL_FALSE;
  78. // Async object
  79. ktpd->async = faux_async_new(sock);
  80. assert(ktpd->async);
  81. // Receive message header first
  82. faux_async_set_read_limits(ktpd->async,
  83. sizeof(faux_hdr_t), sizeof(faux_hdr_t));
  84. faux_async_set_read_cb(ktpd->async, ktpd_session_read_cb, ktpd);
  85. ktpd->hdr = NULL;
  86. faux_async_set_stall_cb(ktpd->async, ktp_stall_cb, ktpd->eloop);
  87. // Eloop callbacks
  88. faux_eloop_add_fd(ktpd->eloop, ktpd_session_fd(ktpd), POLLIN,
  89. client_ev, ktpd);
  90. faux_eloop_add_signal(ktpd->eloop, SIGCHLD, wait_for_actions_ev, ktpd);
  91. return ktpd;
  92. }
  93. void ktpd_session_free(ktpd_session_t *ktpd)
  94. {
  95. if (!ktpd)
  96. return;
  97. kexec_free(ktpd->exec);
  98. ksession_free(ktpd->session);
  99. faux_free(ktpd->hdr);
  100. close(ktpd_session_fd(ktpd));
  101. faux_async_free(ktpd->async);
  102. faux_free(ktpd);
  103. }
  104. static bool_t ktpd_session_process_cmd(ktpd_session_t *ktpd, faux_msg_t *msg)
  105. {
  106. char *line = NULL;
  107. int retcode = -1;
  108. ktp_cmd_e cmd = KTP_CMD_ACK;
  109. faux_error_t *error = NULL;
  110. bool_t rc = BOOL_FALSE;
  111. bool_t dry_run = BOOL_FALSE;
  112. uint32_t status = KTP_STATUS_NONE;
  113. bool_t ret = BOOL_TRUE;
  114. assert(ktpd);
  115. assert(msg);
  116. // Get line from message
  117. if (!(line = faux_msg_get_str_param_by_type(msg, KTP_PARAM_LINE))) {
  118. ktp_send_error(ktpd->async, cmd, "The line is not specified");
  119. return BOOL_FALSE;
  120. }
  121. // Get dry-run flag from message
  122. if (KTP_STATUS_IS_DRY_RUN(faux_msg_get_status(msg)))
  123. dry_run = BOOL_TRUE;
  124. error = faux_error_new();
  125. ktpd->exec = NULL;
  126. rc = ktpd_session_exec(ktpd, line, &retcode, error, dry_run);
  127. faux_str_free(line);
  128. // Command is scheduled. Eloop will wait for ACTION completion.
  129. // So inform client about it and about command features like
  130. // interactive/non-interactive.
  131. if (ktpd->exec) {
  132. faux_msg_t *ack = NULL;
  133. ktp_status_e status = KTP_STATUS_INCOMPLETED;
  134. ack = ktp_msg_preform(cmd, status);
  135. faux_msg_send_async(ack, ktpd->async);
  136. faux_msg_free(ack);
  137. faux_error_free(error);
  138. return BOOL_TRUE; // Continue and wait for ACTION
  139. }
  140. // Here we don't need to wait for the action. We have retcode already.
  141. if (ksession_done(ktpd->session)) {
  142. ktpd->exit = BOOL_TRUE;
  143. status |= KTP_STATUS_EXIT;
  144. }
  145. if (rc) {
  146. uint8_t retcode8bit = 0;
  147. faux_msg_t *ack = ktp_msg_preform(cmd, status);
  148. retcode8bit = (uint8_t)(retcode & 0xff);
  149. faux_msg_add_param(ack, KTP_PARAM_RETCODE, &retcode8bit, 1);
  150. faux_msg_send_async(ack, ktpd->async);
  151. faux_msg_free(ack);
  152. } else {
  153. char *err = faux_error_cstr(error);
  154. ktp_send_error(ktpd->async, cmd, err);
  155. faux_str_free(err);
  156. ret = BOOL_FALSE;
  157. }
  158. faux_error_free(error);
  159. return ret;
  160. }
  161. static bool_t ktpd_session_exec(ktpd_session_t *ktpd, const char *line,
  162. int *retcode, faux_error_t *error, bool_t dry_run)
  163. {
  164. kexec_t *exec = NULL;
  165. assert(ktpd);
  166. if (!ktpd)
  167. return BOOL_FALSE;
  168. // Parsing
  169. exec = ksession_parse_for_exec(ktpd->session, line, error);
  170. if (!exec)
  171. return BOOL_FALSE;
  172. // Set dry-run flag
  173. kexec_set_dry_run(exec, dry_run);
  174. // Session status can be changed while parsing
  175. // NOTE: kexec_t is atomic now
  176. // if (ksession_done(ktpd->session)) {
  177. // kexec_free(exec);
  178. // return BOOL_FALSE; // Because action is not completed
  179. // }
  180. // Execute kexec and then wait for completion using global Eloop
  181. if (!kexec_exec(exec)) {
  182. kexec_free(exec);
  183. return BOOL_FALSE; // Something went wrong
  184. }
  185. // If kexec contains only non-exec (for example dry-run) ACTIONs then
  186. // we don't need event loop and can return here.
  187. if (kexec_retcode(exec, retcode)) {
  188. kexec_free(exec);
  189. return BOOL_TRUE;
  190. }
  191. // Save kexec pointer to use later
  192. ktpd->state = KTPD_SESSION_STATE_WAIT_FOR_PROCESS;
  193. ktpd->exec = exec;
  194. faux_eloop_add_fd(ktpd->eloop, kexec_stdout(exec), POLLIN,
  195. action_stdout_ev, ktpd);
  196. faux_eloop_add_fd(ktpd->eloop, kexec_stderr(exec), POLLIN,
  197. action_stderr_ev, ktpd);
  198. return BOOL_TRUE;
  199. }
  200. static bool_t wait_for_actions_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  201. void *associated_data, void *user_data)
  202. {
  203. int wstatus = 0;
  204. pid_t child_pid = -1;
  205. ktpd_session_t *ktpd = (ktpd_session_t *)user_data;
  206. int retcode = -1;
  207. uint8_t retcode8bit = 0;
  208. faux_msg_t *ack = NULL;
  209. ktp_cmd_e cmd = KTP_CMD_ACK;
  210. uint32_t status = KTP_STATUS_NONE;
  211. if (!ktpd)
  212. return BOOL_FALSE;
  213. // Wait for any child process. Doesn't block.
  214. while ((child_pid = waitpid(-1, &wstatus, WNOHANG)) > 0) {
  215. if (ktpd->exec)
  216. kexec_continue_command_execution(ktpd->exec, child_pid,
  217. wstatus);
  218. }
  219. if (!ktpd->exec)
  220. return BOOL_TRUE;
  221. // Check if kexec is done now
  222. if (!kexec_retcode(ktpd->exec, &retcode))
  223. return BOOL_TRUE; // Continue
  224. faux_eloop_del_fd(eloop, kexec_stdout(ktpd->exec));
  225. faux_eloop_del_fd(eloop, kexec_stderr(ktpd->exec));
  226. kexec_free(ktpd->exec);
  227. ktpd->exec = NULL;
  228. ktpd->state = KTPD_SESSION_STATE_IDLE;
  229. // All kexec_t actions are done so can break the loop if needed.
  230. if (ksession_done(ktpd->session)) {
  231. ktpd->exit = BOOL_TRUE;
  232. status |= KTP_STATUS_EXIT; // Notify client about exiting
  233. }
  234. // Send ACK message
  235. ack = ktp_msg_preform(cmd, status);
  236. retcode8bit = (uint8_t)(retcode & 0xff);
  237. faux_msg_add_param(ack, KTP_PARAM_RETCODE, &retcode8bit, 1);
  238. faux_msg_send_async(ack, ktpd->async);
  239. faux_msg_free(ack);
  240. type = type; // Happy compiler
  241. associated_data = associated_data; // Happy compiler
  242. if (ktpd->exit)
  243. return BOOL_FALSE;
  244. return BOOL_TRUE;
  245. }
  246. static bool_t ktpd_session_process_completion(ktpd_session_t *ktpd, faux_msg_t *msg)
  247. {
  248. char *line = NULL;
  249. faux_msg_t *ack = NULL;
  250. kpargv_t *pargv = NULL;
  251. ktp_cmd_e cmd = KTP_COMPLETION_ACK;
  252. uint32_t status = KTP_STATUS_NONE;
  253. const char *prefix = NULL;
  254. assert(ktpd);
  255. assert(msg);
  256. // Get line from message
  257. if (!(line = faux_msg_get_str_param_by_type(msg, KTP_PARAM_LINE))) {
  258. ktp_send_error(ktpd->async, cmd, NULL);
  259. return BOOL_FALSE;
  260. }
  261. // Parsing
  262. pargv = ksession_parse_for_completion(ktpd->session, line);
  263. faux_str_free(line);
  264. if (!pargv) {
  265. ktp_send_error(ktpd->async, cmd, NULL);
  266. return BOOL_FALSE;
  267. }
  268. kpargv_debug(pargv);
  269. if (ksession_done(ktpd->session)) {
  270. ktpd->exit = BOOL_TRUE;
  271. status |= KTP_STATUS_EXIT; // Notify client about exiting
  272. }
  273. // Send ACK message
  274. ack = ktp_msg_preform(cmd, status);
  275. prefix = kpargv_last_arg(pargv);
  276. if (!faux_str_is_empty(prefix))
  277. faux_msg_add_param(ack, KTP_PARAM_PREFIX, prefix, strlen(prefix));
  278. faux_msg_send_async(ack, ktpd->async);
  279. faux_msg_free(ack);
  280. kpargv_free(pargv);
  281. return BOOL_TRUE;
  282. }
  283. static bool_t ktpd_session_process_help(ktpd_session_t *ktpd, faux_msg_t *msg)
  284. {
  285. char *line = NULL;
  286. faux_msg_t *ack = NULL;
  287. // kpargv_t *pargv = NULL;
  288. ktp_cmd_e cmd = KTP_HELP_ACK;
  289. assert(ktpd);
  290. assert(msg);
  291. // Get line from message
  292. if (!(line = faux_msg_get_str_param_by_type(msg, KTP_PARAM_LINE))) {
  293. ktp_send_error(ktpd->async, cmd, NULL);
  294. return BOOL_FALSE;
  295. }
  296. /* // Parsing
  297. pargv = ksession_parse_line(ktpd->session, line, KPURPOSE_HELP);
  298. faux_str_free(line);
  299. kpargv_free(pargv);
  300. */
  301. // Send ACK message
  302. ack = ktp_msg_preform(cmd, KTP_STATUS_NONE);
  303. faux_msg_send_async(ack, ktpd->async);
  304. faux_msg_free(ack);
  305. return BOOL_TRUE;
  306. }
  307. static bool_t ktpd_session_dispatch(ktpd_session_t *ktpd, faux_msg_t *msg)
  308. {
  309. uint16_t cmd = 0;
  310. assert(ktpd);
  311. if (!ktpd)
  312. return BOOL_FALSE;
  313. assert(msg);
  314. if (!msg)
  315. return BOOL_FALSE;
  316. cmd = faux_msg_get_cmd(msg);
  317. switch (cmd) {
  318. case KTP_CMD:
  319. ktpd_session_process_cmd(ktpd, msg);
  320. break;
  321. case KTP_COMPLETION:
  322. ktpd_session_process_completion(ktpd, msg);
  323. break;
  324. case KTP_HELP:
  325. ktpd_session_process_help(ktpd, msg);
  326. break;
  327. default:
  328. syslog(LOG_WARNING, "Unsupported command: 0x%04u\n", cmd);
  329. break;
  330. }
  331. return BOOL_TRUE;
  332. }
  333. /** @brief Low-level function to receive KTP message.
  334. *
  335. * Firstly function gets the header of message. Then it checks and parses
  336. * header and find out the length of whole message. Then it receives the rest
  337. * of message.
  338. */
  339. static bool_t ktpd_session_read_cb(faux_async_t *async,
  340. faux_buf_t *buf, size_t len, void *user_data)
  341. {
  342. ktpd_session_t *ktpd = (ktpd_session_t *)user_data;
  343. faux_msg_t *completed_msg = NULL;
  344. char *data = NULL;
  345. assert(async);
  346. assert(buf);
  347. assert(ktpd);
  348. // Linearize buffer
  349. data = malloc(len);
  350. faux_buf_read(buf, data, len);
  351. // Receive header
  352. if (!ktpd->hdr) {
  353. size_t whole_len = 0;
  354. size_t msg_wo_hdr = 0;
  355. ktpd->hdr = (faux_hdr_t *)data;
  356. // Check for broken header
  357. if (!ktp_check_header(ktpd->hdr)) {
  358. faux_free(ktpd->hdr);
  359. ktpd->hdr = NULL;
  360. return BOOL_FALSE;
  361. }
  362. whole_len = faux_hdr_len(ktpd->hdr);
  363. // msg_wo_hdr >= 0 because ktp_check_header() validates whole_len
  364. msg_wo_hdr = whole_len - sizeof(faux_hdr_t);
  365. // Plan to receive message body
  366. if (msg_wo_hdr > 0) {
  367. faux_async_set_read_limits(async,
  368. msg_wo_hdr, msg_wo_hdr);
  369. return BOOL_TRUE;
  370. }
  371. // Here message is completed (msg body has zero length)
  372. completed_msg = faux_msg_deserialize_parts(ktpd->hdr, NULL, 0);
  373. // Receive message body
  374. } else {
  375. completed_msg = faux_msg_deserialize_parts(ktpd->hdr, data, len);
  376. faux_free(data);
  377. }
  378. // Plan to receive msg header
  379. faux_async_set_read_limits(ktpd->async,
  380. sizeof(faux_hdr_t), sizeof(faux_hdr_t));
  381. faux_free(ktpd->hdr);
  382. ktpd->hdr = NULL; // Ready to recv new header
  383. // Here message is completed
  384. ktpd_session_dispatch(ktpd, completed_msg);
  385. faux_msg_free(completed_msg);
  386. return BOOL_TRUE;
  387. }
  388. bool_t ktpd_session_connected(ktpd_session_t *ktpd)
  389. {
  390. assert(ktpd);
  391. if (!ktpd)
  392. return BOOL_FALSE;
  393. if (KTPD_SESSION_STATE_DISCONNECTED == ktpd->state)
  394. return BOOL_FALSE;
  395. return BOOL_TRUE;
  396. }
  397. int ktpd_session_fd(const ktpd_session_t *ktpd)
  398. {
  399. assert(ktpd);
  400. if (!ktpd)
  401. return BOOL_FALSE;
  402. return faux_async_fd(ktpd->async);
  403. }
  404. static bool_t action_stdout_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  405. void *associated_data, void *user_data)
  406. {
  407. faux_eloop_info_fd_t *info = (faux_eloop_info_fd_t *)associated_data;
  408. ktpd_session_t *ktpd = (ktpd_session_t *)user_data;
  409. ssize_t r = -1;
  410. faux_buf_t *faux_buf = NULL;
  411. char *buf = NULL;
  412. ssize_t len = 0;
  413. faux_msg_t *ack = NULL;
  414. // Some errors or fd is closed so remove it from polling
  415. if (!(info->revents & POLLIN)) {
  416. faux_eloop_del_fd(eloop, info->fd);
  417. return BOOL_TRUE;
  418. }
  419. if (!ktpd)
  420. return BOOL_TRUE;
  421. if (!ktpd->exec)
  422. return BOOL_TRUE;
  423. faux_buf = kexec_bufout(ktpd->exec);
  424. assert(faux_buf);
  425. do {
  426. void *linear_buf = NULL;
  427. ssize_t really_readed = 0;
  428. ssize_t linear_len =
  429. faux_buf_dwrite_lock_easy(faux_buf, &linear_buf);
  430. // Non-blocked read. The fd became non-blocked while
  431. // kexec_prepare().
  432. r = read(info->fd, linear_buf, linear_len);
  433. if (r > 0)
  434. really_readed = r;
  435. faux_buf_dwrite_unlock_easy(faux_buf, really_readed);
  436. } while (r > 0);
  437. len = faux_buf_len(faux_buf);
  438. if (0 == len)
  439. return BOOL_TRUE;
  440. buf = malloc(len);
  441. faux_buf_read(faux_buf, buf, len);
  442. // Create KTP_STDOUT message to send to client
  443. ack = ktp_msg_preform(KTP_STDOUT, KTP_STATUS_NONE);
  444. faux_msg_add_param(ack, KTP_PARAM_LINE, buf, len);
  445. faux_msg_send_async(ack, ktpd->async);
  446. faux_msg_free(ack);
  447. free(buf);
  448. // Happy compiler
  449. eloop = eloop;
  450. type = type;
  451. return BOOL_TRUE;
  452. }
  453. static bool_t action_stderr_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  454. void *associated_data, void *user_data)
  455. {
  456. faux_eloop_info_fd_t *info = (faux_eloop_info_fd_t *)associated_data;
  457. ktpd_session_t *ktpd = (ktpd_session_t *)user_data;
  458. ssize_t r = -1;
  459. faux_buf_t *faux_buf = NULL;
  460. char *buf = NULL;
  461. ssize_t len = 0;
  462. faux_msg_t *ack = NULL;
  463. // Some errors or fd is closed so remove it from polling
  464. if (!(info->revents & POLLIN)) {
  465. faux_eloop_del_fd(eloop, info->fd);
  466. return BOOL_TRUE;
  467. }
  468. if (!ktpd)
  469. return BOOL_TRUE;
  470. if (!ktpd->exec)
  471. return BOOL_TRUE;
  472. faux_buf = kexec_buferr(ktpd->exec);
  473. assert(faux_buf);
  474. do {
  475. void *linear_buf = NULL;
  476. ssize_t really_readed = 0;
  477. ssize_t linear_len =
  478. faux_buf_dwrite_lock_easy(faux_buf, &linear_buf);
  479. // Non-blocked read. The fd became non-blocked while
  480. // kexec_prepare().
  481. r = read(info->fd, linear_buf, linear_len);
  482. if (r > 0)
  483. really_readed = r;
  484. faux_buf_dwrite_unlock_easy(faux_buf, really_readed);
  485. } while (r > 0);
  486. len = faux_buf_len(faux_buf);
  487. if (0 == len)
  488. return BOOL_TRUE;
  489. buf = malloc(len);
  490. faux_buf_read(faux_buf, buf, len);
  491. // Create KTP_STDERR message to send to client
  492. ack = ktp_msg_preform(KTP_STDERR, KTP_STATUS_NONE);
  493. faux_msg_add_param(ack, KTP_PARAM_LINE, buf, len);
  494. faux_msg_send_async(ack, ktpd->async);
  495. faux_msg_free(ack);
  496. free(buf);
  497. // Happy compiler
  498. eloop = eloop;
  499. type = type;
  500. return BOOL_TRUE;
  501. }
  502. bool_t client_ev(faux_eloop_t *eloop, faux_eloop_type_e type,
  503. void *associated_data, void *user_data)
  504. {
  505. faux_eloop_info_fd_t *info = (faux_eloop_info_fd_t *)associated_data;
  506. ktpd_session_t *ktpd = (ktpd_session_t *)user_data;
  507. faux_async_t *async = ktpd->async;
  508. assert(async);
  509. // Write data
  510. if (info->revents & POLLOUT) {
  511. faux_eloop_exclude_fd_event(eloop, info->fd, POLLOUT);
  512. if (faux_async_out(async) < 0) {
  513. // Someting went wrong
  514. faux_eloop_del_fd(eloop, info->fd);
  515. syslog(LOG_ERR, "Problem with async output");
  516. return BOOL_FALSE; // Stop event loop
  517. }
  518. }
  519. // Read data
  520. if (info->revents & POLLIN) {
  521. if (faux_async_in(async) < 0) {
  522. // Someting went wrong
  523. faux_eloop_del_fd(eloop, info->fd);
  524. syslog(LOG_ERR, "Problem with async input");
  525. return BOOL_FALSE; // Stop event loop
  526. }
  527. }
  528. // EOF
  529. if (info->revents & POLLHUP) {
  530. faux_eloop_del_fd(eloop, info->fd);
  531. syslog(LOG_DEBUG, "Close connection %d", info->fd);
  532. return BOOL_FALSE; // Stop event loop
  533. }
  534. // POLLERR
  535. if (info->revents & POLLERR) {
  536. faux_eloop_del_fd(eloop, info->fd);
  537. syslog(LOG_DEBUG, "POLLERR received %d", info->fd);
  538. return BOOL_FALSE; // Stop event loop
  539. }
  540. // POLLNVAL
  541. if (info->revents & POLLNVAL) {
  542. faux_eloop_del_fd(eloop, info->fd);
  543. syslog(LOG_DEBUG, "POLLNVAL received %d", info->fd);
  544. return BOOL_FALSE; // Stop event loop
  545. }
  546. type = type; // Happy compiler
  547. // Session can be really finished here. Note KTPD session can't be
  548. // stopped immediately so it's only two places within code to really
  549. // break the loop. This one and within wait_for_action_ev().
  550. if (ktpd->exit)
  551. return BOOL_FALSE;
  552. return BOOL_TRUE;
  553. }
  554. #if 0
  555. static void ktpd_session_bad_socket(ktpd_session_t *ktpd)
  556. {
  557. assert(ktpd);
  558. if (!ktpd)
  559. return;
  560. ktpd->state = KTPD_SESSION_STATE_DISCONNECTED;
  561. }
  562. #endif