check_nwstat.c 31 KB

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  1. /******************************************************************************
  2. This program is free software; you can redistribute it and/or modify
  3. it under the terms of the GNU General Public License as published by
  4. the Free Software Foundation; either version 2 of the License, or
  5. (at your option) any later version.
  6. This program is distributed in the hope that it will be useful,
  7. but WITHOUT ANY WARRANTY; without even the implied warranty of
  8. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  9. GNU General Public License for more details.
  10. You should have received a copy of the GNU General Public License
  11. along with this program; if not, write to the Free Software
  12. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  13. $Id$
  14. ******************************************************************************/
  15. const char *progname = "check_nwstat";
  16. const char *revision = "$Revision$";
  17. const char *copyright = "2000-2004";
  18. const char *email = "nagiosplug-devel@lists.sourceforge.net";
  19. #include "common.h"
  20. #include "netutils.h"
  21. #include "utils.h"
  22. enum checkvar {
  23. NONE,
  24. LOAD1, /* check 1 minute CPU load */
  25. LOAD5, /* check 5 minute CPU load */
  26. LOAD15, /* check 15 minute CPU load */
  27. CONNS, /* check number of connections */
  28. VPF, /* check % free space on volume */
  29. VKF, /* check KB free space on volume */
  30. LTCH, /* check long-term cache hit percentage */
  31. CBUFF, /* check total cache buffers */
  32. CDBUFF, /* check dirty cache buffers */
  33. LRUM, /* check LRU sitting time in minutes */
  34. DSDB, /* check to see if DS Database is open */
  35. LOGINS, /* check to see if logins are enabled */
  36. PUPRB, /* check % of used packet receive buffers */
  37. UPRB, /* check used packet receive buffers */
  38. SAPENTRIES, /* check SAP entries */
  39. OFILES, /* check number of open files */
  40. VKP, /* check KB purgeable space on volume */
  41. VPP, /* check % purgeable space on volume */
  42. VKNP, /* check KB not yet purgeable space on volume */
  43. VPNP, /* check % not yet purgeable space on volume */
  44. ABENDS, /* check abended thread count */
  45. CSPROCS, /* check number of current service processes */
  46. TSYNC, /* check timesync status 0=no 1=yes in sync to the network */
  47. LRUS, /* check LRU sitting time in seconds */
  48. DCB, /* check dirty cache buffers as a percentage of the total */
  49. TCB, /* check total cache buffers as a percentage of the original */
  50. DSVER, /* check NDS version */
  51. UPTIME, /* check server uptime */
  52. NLM /* check NLM loaded */
  53. };
  54. enum {
  55. PORT = 9999
  56. };
  57. char *server_address=NULL;
  58. char *volume_name=NULL;
  59. char *nlm_name=NULL;
  60. int server_port=PORT;
  61. unsigned long warning_value=0L;
  62. unsigned long critical_value=0L;
  63. int check_warning_value=FALSE;
  64. int check_critical_value=FALSE;
  65. int check_netware_version=FALSE;
  66. enum checkvar vars_to_check = NONE;
  67. int sap_number=-1;
  68. int process_arguments(int, char **);
  69. void print_help(void);
  70. void print_usage(void);
  71. int
  72. main(int argc, char **argv) {
  73. int result = STATE_UNKNOWN;
  74. int sd;
  75. char *send_buffer=NULL;
  76. char recv_buffer[MAX_INPUT_BUFFER];
  77. char *output_message=NULL;
  78. char *temp_buffer=NULL;
  79. char *netware_version=NULL;
  80. int time_sync_status=0;
  81. unsigned long total_cache_buffers=0;
  82. unsigned long dirty_cache_buffers=0;
  83. unsigned long open_files=0;
  84. unsigned long abended_threads=0;
  85. unsigned long max_service_processes=0;
  86. unsigned long current_service_processes=0;
  87. unsigned long free_disk_space=0L;
  88. unsigned long total_disk_space=0L;
  89. unsigned long purgeable_disk_space=0L;
  90. unsigned long non_purgeable_disk_space=0L;
  91. unsigned long percent_free_space=0;
  92. unsigned long percent_purgeable_space=0;
  93. unsigned long percent_non_purgeable_space=0;
  94. unsigned long current_connections=0L;
  95. unsigned long utilization=0L;
  96. unsigned long cache_hits=0;
  97. unsigned long cache_buffers=0L;
  98. unsigned long lru_time=0L;
  99. unsigned long max_packet_receive_buffers=0;
  100. unsigned long used_packet_receive_buffers=0;
  101. unsigned long percent_used_packet_receive_buffers=0L;
  102. unsigned long sap_entries=0;
  103. char uptime[MAX_INPUT_BUFFER];
  104. setlocale (LC_ALL, "");
  105. bindtextdomain (PACKAGE, LOCALEDIR);
  106. textdomain (PACKAGE);
  107. if (process_arguments(argc,argv) == ERROR)
  108. usage4 (_("Could not parse arguments"));
  109. /* initialize alarm signal handling */
  110. signal(SIGALRM,socket_timeout_alarm_handler);
  111. /* set socket timeout */
  112. alarm(socket_timeout);
  113. /* open connection */
  114. my_tcp_connect (server_address, server_port, &sd);
  115. /* get OS version string */
  116. if (check_netware_version==TRUE) {
  117. send_buffer = strdup ("S19\r\n");
  118. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  119. if (result!=STATE_OK)
  120. return result;
  121. if (!strcmp(recv_buffer,"-1\n"))
  122. netware_version = strdup("");
  123. else {
  124. recv_buffer[strlen(recv_buffer)-1]=0;
  125. asprintf (&netware_version,_("NetWare %s: "),recv_buffer);
  126. }
  127. } else
  128. netware_version = strdup("");
  129. /* check CPU load */
  130. if (vars_to_check==LOAD1 || vars_to_check==LOAD5 || vars_to_check==LOAD15) {
  131. switch(vars_to_check) {
  132. case LOAD1:
  133. temp_buffer = strdup ("1");
  134. break;
  135. case LOAD5:
  136. temp_buffer = strdup ("5");
  137. break;
  138. default:
  139. temp_buffer = strdup ("15");
  140. break;
  141. }
  142. asprintf (&send_buffer,"UTIL%s\r\n",temp_buffer);
  143. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  144. if (result!=STATE_OK)
  145. return result;
  146. utilization=strtoul(recv_buffer,NULL,10);
  147. send_buffer = strdup ("UPTIME\r\n");
  148. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  149. if (result!=STATE_OK)
  150. return result;
  151. recv_buffer[strlen(recv_buffer)-1]=0;
  152. sprintf(uptime,_("Up %s,"),recv_buffer);
  153. if (check_critical_value==TRUE && utilization >= critical_value)
  154. result=STATE_CRITICAL;
  155. else if (check_warning_value==TRUE && utilization >= warning_value)
  156. result=STATE_WARNING;
  157. asprintf (&output_message,
  158. _("Load %s - %s %s-min load average = %lu%%"),
  159. state_text(result),
  160. uptime,
  161. temp_buffer,
  162. utilization);
  163. /* check number of user connections */
  164. } else if (vars_to_check==CONNS) {
  165. send_buffer = strdup ("CONNECT\r\n");
  166. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  167. if (result!=STATE_OK)
  168. return result;
  169. current_connections=strtoul(recv_buffer,NULL,10);
  170. if (check_critical_value==TRUE && current_connections >= critical_value)
  171. result=STATE_CRITICAL;
  172. else if (check_warning_value==TRUE && current_connections >= warning_value)
  173. result=STATE_WARNING;
  174. asprintf (&output_message,
  175. _("Conns %s - %lu current connections"),
  176. state_text(result),
  177. current_connections);
  178. /* check % long term cache hits */
  179. } else if (vars_to_check==LTCH) {
  180. send_buffer = strdup ("S1\r\n");
  181. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  182. if (result!=STATE_OK)
  183. return result;
  184. cache_hits=atoi(recv_buffer);
  185. if (check_critical_value==TRUE && cache_hits <= critical_value)
  186. result=STATE_CRITICAL;
  187. else if (check_warning_value==TRUE && cache_hits <= warning_value)
  188. result=STATE_WARNING;
  189. asprintf (&output_message,
  190. _("%s: Long term cache hits = %lu%%"),
  191. state_text(result),
  192. cache_hits);
  193. /* check cache buffers */
  194. } else if (vars_to_check==CBUFF) {
  195. send_buffer = strdup ("S2\r\n");
  196. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  197. if (result!=STATE_OK)
  198. return result;
  199. cache_buffers=strtoul(recv_buffer,NULL,10);
  200. if (check_critical_value==TRUE && cache_buffers <= critical_value)
  201. result=STATE_CRITICAL;
  202. else if (check_warning_value==TRUE && cache_buffers <= warning_value)
  203. result=STATE_WARNING;
  204. asprintf (&output_message,
  205. _("%s: Total cache buffers = %lu"),
  206. state_text(result),
  207. cache_buffers);
  208. /* check dirty cache buffers */
  209. } else if (vars_to_check==CDBUFF) {
  210. send_buffer = strdup ("S3\r\n");
  211. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  212. if (result!=STATE_OK)
  213. return result;
  214. cache_buffers=strtoul(recv_buffer,NULL,10);
  215. if (check_critical_value==TRUE && cache_buffers >= critical_value)
  216. result=STATE_CRITICAL;
  217. else if (check_warning_value==TRUE && cache_buffers >= warning_value)
  218. result=STATE_WARNING;
  219. asprintf (&output_message,
  220. _("%s: Dirty cache buffers = %lu"),
  221. state_text(result),
  222. cache_buffers);
  223. /* check LRU sitting time in minutes */
  224. } else if (vars_to_check==LRUM) {
  225. send_buffer = strdup ("S5\r\n");
  226. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  227. if (result!=STATE_OK)
  228. return result;
  229. lru_time=strtoul(recv_buffer,NULL,10);
  230. if (check_critical_value==TRUE && lru_time <= critical_value)
  231. result=STATE_CRITICAL;
  232. else if (check_warning_value==TRUE && lru_time <= warning_value)
  233. result=STATE_WARNING;
  234. asprintf (&output_message,
  235. _("%s: LRU sitting time = %lu minutes"),
  236. state_text(result),
  237. lru_time);
  238. /* check KB free space on volume */
  239. } else if (vars_to_check==VKF) {
  240. asprintf (&send_buffer,"VKF%s\r\n",volume_name);
  241. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  242. if (result!=STATE_OK)
  243. return result;
  244. if (!strcmp(recv_buffer,"-1\n")) {
  245. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  246. result=STATE_CRITICAL;
  247. } else {
  248. free_disk_space=strtoul(recv_buffer,NULL,10);
  249. if (check_critical_value==TRUE && free_disk_space <= critical_value)
  250. result=STATE_CRITICAL;
  251. else if (check_warning_value==TRUE && free_disk_space <= warning_value)
  252. result=STATE_WARNING;
  253. asprintf (&output_message,
  254. _("%s%lu KB free on volume %s"),
  255. (result==STATE_OK)?"":_("Only "),
  256. free_disk_space,
  257. volume_name);
  258. }
  259. /* check % free space on volume */
  260. } else if (vars_to_check==VPF) {
  261. asprintf (&send_buffer,"VKF%s\r\n",volume_name);
  262. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  263. if (result!=STATE_OK)
  264. return result;
  265. if (!strcmp(recv_buffer,"-1\n")) {
  266. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  267. result=STATE_CRITICAL;
  268. } else {
  269. free_disk_space=strtoul(recv_buffer,NULL,10);
  270. asprintf (&send_buffer,"VKS%s\r\n",volume_name);
  271. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  272. if (result!=STATE_OK)
  273. return result;
  274. total_disk_space=strtoul(recv_buffer,NULL,10);
  275. percent_free_space=(int)(((double)free_disk_space/(double)total_disk_space)*100.0);
  276. if (check_critical_value==TRUE && percent_free_space <= critical_value)
  277. result=STATE_CRITICAL;
  278. else if (check_warning_value==TRUE && percent_free_space <= warning_value)
  279. result=STATE_WARNING;
  280. free_disk_space/=1024;
  281. asprintf (&output_message,_("%lu MB (%lu%%) free on volume %s"),free_disk_space,percent_free_space,volume_name);
  282. }
  283. /* check to see if DS Database is open or closed */
  284. } else if (vars_to_check==DSDB) {
  285. send_buffer = strdup ("S11\r\n");
  286. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  287. if (result!=STATE_OK)
  288. return result;
  289. if (atoi(recv_buffer)==1)
  290. result=STATE_OK;
  291. else
  292. result=STATE_WARNING;
  293. send_buffer = strdup ("S13\r\n");
  294. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  295. temp_buffer=strtok(recv_buffer,"\r\n");
  296. asprintf (&output_message,_("Directory Services Database is %s (DS version %s)"),(result==STATE_OK)?"open":"closed",temp_buffer);
  297. /* check to see if logins are enabled */
  298. } else if (vars_to_check==LOGINS) {
  299. send_buffer = strdup ("S12\r\n");
  300. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  301. if (result!=STATE_OK)
  302. return result;
  303. if (atoi(recv_buffer)==1)
  304. result=STATE_OK;
  305. else
  306. result=STATE_WARNING;
  307. asprintf (&output_message,_("Logins are %s"),(result==STATE_OK)?_("enabled"):_("disabled"));
  308. /* check packet receive buffers */
  309. } else if (vars_to_check==UPRB || vars_to_check==PUPRB) {
  310. asprintf (&send_buffer,"S15\r\n");
  311. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  312. if (result!=STATE_OK)
  313. return result;
  314. used_packet_receive_buffers=atoi(recv_buffer);
  315. asprintf (&send_buffer,"S16\r\n");
  316. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  317. if (result!=STATE_OK)
  318. return result;
  319. max_packet_receive_buffers=atoi(recv_buffer);
  320. percent_used_packet_receive_buffers=(unsigned long)(((double)used_packet_receive_buffers/(double)max_packet_receive_buffers)*100.0);
  321. if (vars_to_check==UPRB) {
  322. if (check_critical_value==TRUE && used_packet_receive_buffers >= critical_value)
  323. result=STATE_CRITICAL;
  324. else if (check_warning_value==TRUE && used_packet_receive_buffers >= warning_value)
  325. result=STATE_WARNING;
  326. } else {
  327. if (check_critical_value==TRUE && percent_used_packet_receive_buffers >= critical_value)
  328. result=STATE_CRITICAL;
  329. else if (check_warning_value==TRUE && percent_used_packet_receive_buffers >= warning_value)
  330. result=STATE_WARNING;
  331. }
  332. asprintf (&output_message,_("%lu of %lu (%lu%%) packet receive buffers used"),used_packet_receive_buffers,max_packet_receive_buffers,percent_used_packet_receive_buffers);
  333. /* check SAP table entries */
  334. } else if (vars_to_check==SAPENTRIES) {
  335. if (sap_number==-1)
  336. asprintf (&send_buffer,"S9\r\n");
  337. else
  338. asprintf (&send_buffer,"S9.%d\r\n",sap_number);
  339. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  340. if (result!=STATE_OK)
  341. return result;
  342. sap_entries=atoi(recv_buffer);
  343. if (check_critical_value==TRUE && sap_entries >= critical_value)
  344. result=STATE_CRITICAL;
  345. else if (check_warning_value==TRUE && sap_entries >= warning_value)
  346. result=STATE_WARNING;
  347. if (sap_number==-1)
  348. asprintf (&output_message,_("%lu entries in SAP table"),sap_entries);
  349. else
  350. asprintf (&output_message,_("%lu entries in SAP table for SAP type %d"),sap_entries,sap_number);
  351. /* check KB purgeable space on volume */
  352. } else if (vars_to_check==VKP) {
  353. asprintf (&send_buffer,"VKP%s\r\n",volume_name);
  354. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  355. if (result!=STATE_OK)
  356. return result;
  357. if (!strcmp(recv_buffer,"-1\n")) {
  358. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  359. result=STATE_CRITICAL;
  360. } else {
  361. purgeable_disk_space=strtoul(recv_buffer,NULL,10);
  362. if (check_critical_value==TRUE && purgeable_disk_space >= critical_value)
  363. result=STATE_CRITICAL;
  364. else if (check_warning_value==TRUE && purgeable_disk_space >= warning_value)
  365. result=STATE_WARNING;
  366. asprintf (&output_message,_("%s%lu KB purgeable on volume %s"),(result==STATE_OK)?"":_("Only "),purgeable_disk_space,volume_name);
  367. }
  368. /* check % purgeable space on volume */
  369. } else if (vars_to_check==VPP) {
  370. asprintf (&send_buffer,"VKP%s\r\n",volume_name);
  371. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  372. if (result!=STATE_OK)
  373. return result;
  374. if (!strcmp(recv_buffer,"-1\n")) {
  375. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  376. result=STATE_CRITICAL;
  377. } else {
  378. purgeable_disk_space=strtoul(recv_buffer,NULL,10);
  379. asprintf (&send_buffer,"VKS%s\r\n",volume_name);
  380. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  381. if (result!=STATE_OK)
  382. return result;
  383. total_disk_space=strtoul(recv_buffer,NULL,10);
  384. percent_purgeable_space=(int)(((double)purgeable_disk_space/(double)total_disk_space)*100.0);
  385. if (check_critical_value==TRUE && percent_purgeable_space >= critical_value)
  386. result=STATE_CRITICAL;
  387. else if (check_warning_value==TRUE && percent_purgeable_space >= warning_value)
  388. result=STATE_WARNING;
  389. purgeable_disk_space/=1024;
  390. asprintf (&output_message,_("%lu MB (%lu%%) purgeable on volume %s"),purgeable_disk_space,percent_purgeable_space,volume_name);
  391. }
  392. /* check KB not yet purgeable space on volume */
  393. } else if (vars_to_check==VKNP) {
  394. asprintf (&send_buffer,"VKNP%s\r\n",volume_name);
  395. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  396. if (result!=STATE_OK)
  397. return result;
  398. if (!strcmp(recv_buffer,"-1\n")) {
  399. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  400. result=STATE_CRITICAL;
  401. } else {
  402. non_purgeable_disk_space=strtoul(recv_buffer,NULL,10);
  403. if (check_critical_value==TRUE && non_purgeable_disk_space >= critical_value)
  404. result=STATE_CRITICAL;
  405. else if (check_warning_value==TRUE && non_purgeable_disk_space >= warning_value)
  406. result=STATE_WARNING;
  407. asprintf (&output_message,_("%s%lu KB not yet purgeable on volume %s"),(result==STATE_OK)?"":_("Only "),non_purgeable_disk_space,volume_name);
  408. }
  409. /* check % not yet purgeable space on volume */
  410. } else if (vars_to_check==VPNP) {
  411. asprintf (&send_buffer,"VKNP%s\r\n",volume_name);
  412. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  413. if (result!=STATE_OK)
  414. return result;
  415. if (!strcmp(recv_buffer,"-1\n")) {
  416. asprintf (&output_message,_("CRITICAL - Volume '%s' does not exist!"),volume_name);
  417. result=STATE_CRITICAL;
  418. } else {
  419. non_purgeable_disk_space=strtoul(recv_buffer,NULL,10);
  420. asprintf (&send_buffer,"VKS%s\r\n",volume_name);
  421. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  422. if (result!=STATE_OK)
  423. return result;
  424. total_disk_space=strtoul(recv_buffer,NULL,10);
  425. percent_non_purgeable_space=(int)(((double)non_purgeable_disk_space/(double)total_disk_space)*100.0);
  426. if (check_critical_value==TRUE && percent_non_purgeable_space >= critical_value)
  427. result=STATE_CRITICAL;
  428. else if (check_warning_value==TRUE && percent_non_purgeable_space >= warning_value)
  429. result=STATE_WARNING;
  430. purgeable_disk_space/=1024;
  431. asprintf (&output_message,_("%lu MB (%lu%%) not yet purgeable on volume %s"),non_purgeable_disk_space,percent_non_purgeable_space,volume_name);
  432. }
  433. /* check # of open files */
  434. } else if (vars_to_check==OFILES) {
  435. asprintf (&send_buffer,"S18\r\n");
  436. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  437. if (result!=STATE_OK)
  438. return result;
  439. open_files=atoi(recv_buffer);
  440. if (check_critical_value==TRUE && open_files >= critical_value)
  441. result=STATE_CRITICAL;
  442. else if (check_warning_value==TRUE && open_files >= warning_value)
  443. result=STATE_WARNING;
  444. asprintf (&output_message,_("%lu open files"),open_files);
  445. /* check # of abended threads (Netware 5.x only) */
  446. } else if (vars_to_check==ABENDS) {
  447. asprintf (&send_buffer,"S17\r\n");
  448. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  449. if (result!=STATE_OK)
  450. return result;
  451. abended_threads=atoi(recv_buffer);
  452. if (check_critical_value==TRUE && abended_threads >= critical_value)
  453. result=STATE_CRITICAL;
  454. else if (check_warning_value==TRUE && abended_threads >= warning_value)
  455. result=STATE_WARNING;
  456. asprintf (&output_message,_("%lu abended threads"),abended_threads);
  457. /* check # of current service processes (Netware 5.x only) */
  458. } else if (vars_to_check==CSPROCS) {
  459. asprintf (&send_buffer,"S20\r\n");
  460. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  461. if (result!=STATE_OK)
  462. return result;
  463. max_service_processes=atoi(recv_buffer);
  464. asprintf (&send_buffer,"S21\r\n");
  465. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  466. if (result!=STATE_OK)
  467. return result;
  468. current_service_processes=atoi(recv_buffer);
  469. if (check_critical_value==TRUE && current_service_processes >= critical_value)
  470. result=STATE_CRITICAL;
  471. else if (check_warning_value==TRUE && current_service_processes >= warning_value)
  472. result=STATE_WARNING;
  473. asprintf (&output_message,
  474. _("%lu current service processes (%lu max)"),
  475. current_service_processes,
  476. max_service_processes);
  477. /* check # Timesync Status */
  478. } else if (vars_to_check==TSYNC) {
  479. asprintf (&send_buffer,"S22\r\n");
  480. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  481. if (result!=STATE_OK)
  482. return result;
  483. time_sync_status=atoi(recv_buffer);
  484. if (time_sync_status==0) {
  485. result=STATE_CRITICAL;
  486. asprintf (&output_message,_("CRITICAL - Time not in sync with network!"));
  487. }
  488. else {
  489. asprintf (&output_message,_("OK - Time in sync with network!"));
  490. }
  491. /* check LRU sitting time in secondss */
  492. } else if (vars_to_check==LRUS) {
  493. send_buffer = strdup ("S4\r\n");
  494. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  495. if (result!=STATE_OK)
  496. return result;
  497. lru_time=strtoul(recv_buffer,NULL,10);
  498. if (check_critical_value==TRUE && lru_time <= critical_value)
  499. result=STATE_CRITICAL;
  500. else if (check_warning_value==TRUE && lru_time <= warning_value)
  501. result=STATE_WARNING;
  502. asprintf (&output_message,_("LRU sitting time = %lu seconds"),lru_time);
  503. /* check % dirty cacheobuffers as a percentage of the total*/
  504. } else if (vars_to_check==DCB) {
  505. send_buffer = strdup ("S6\r\n");
  506. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  507. if (result!=STATE_OK)
  508. return result;
  509. dirty_cache_buffers=atoi(recv_buffer);
  510. if (check_critical_value==TRUE && dirty_cache_buffers <= critical_value)
  511. result=STATE_CRITICAL;
  512. else if (check_warning_value==TRUE && dirty_cache_buffers <= warning_value)
  513. result=STATE_WARNING;
  514. asprintf (&output_message,_("Dirty cache buffers = %lu%% of the total"),dirty_cache_buffers);
  515. /* check % total cache buffers as a percentage of the original*/
  516. } else if (vars_to_check==TCB) {
  517. send_buffer = strdup ("S7\r\n");
  518. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  519. if (result!=STATE_OK)
  520. return result;
  521. total_cache_buffers=atoi(recv_buffer);
  522. if (check_critical_value==TRUE && total_cache_buffers <= critical_value)
  523. result=STATE_CRITICAL;
  524. else if (check_warning_value==TRUE && total_cache_buffers <= warning_value)
  525. result=STATE_WARNING;
  526. asprintf (&output_message,_("Total cache buffers = %lu%% of the original"),total_cache_buffers);
  527. } else if (vars_to_check==DSVER) {
  528. asprintf (&send_buffer,"S13\r\n");
  529. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  530. if (result!=STATE_OK)
  531. return result;
  532. recv_buffer[strlen(recv_buffer)-1]=0;
  533. asprintf (&output_message,_("NDS Version %s"),recv_buffer);
  534. } else if (vars_to_check==UPTIME) {
  535. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  536. if (result!=STATE_OK)
  537. return result;
  538. recv_buffer[strlen(recv_buffer)-1]=0;
  539. asprintf (&output_message,_("Up %s"),recv_buffer);
  540. } else if (vars_to_check==NLM) {
  541. asprintf (&send_buffer,"S24:%s\r\n",nlm_name);
  542. result=send_tcp_request(sd,send_buffer,recv_buffer,sizeof(recv_buffer));
  543. if (result!=STATE_OK)
  544. return result;
  545. recv_buffer[strlen(recv_buffer)-1]=0;
  546. if (strcmp(recv_buffer,"-1")) {
  547. asprintf (&output_message,_("Module %s version %s is loaded"),nlm_name,recv_buffer);
  548. } else {
  549. result=STATE_CRITICAL;
  550. asprintf (&output_message,_("Module %s is not loaded"),nlm_name);
  551. }
  552. } else {
  553. output_message = strdup (_("Nothing to check!\n"));
  554. result=STATE_UNKNOWN;
  555. }
  556. close (sd);
  557. /* reset timeout */
  558. alarm(0);
  559. printf("%s%s\n",netware_version,output_message);
  560. return result;
  561. }
  562. /* process command-line arguments */
  563. int process_arguments(int argc, char **argv) {
  564. int c;
  565. int option = 0;
  566. static struct option longopts[] =
  567. {
  568. {"port", required_argument,0,'p'},
  569. {"timeout", required_argument,0,'t'},
  570. {"critical", required_argument,0,'c'},
  571. {"warning", required_argument,0,'w'},
  572. {"variable", required_argument,0,'v'},
  573. {"hostname", required_argument,0,'H'},
  574. {"osversion",no_argument, 0,'o'},
  575. {"version", no_argument, 0,'V'},
  576. {"help", no_argument, 0,'h'},
  577. {0,0,0,0}
  578. };
  579. /* no options were supplied */
  580. if (argc<2) return ERROR;
  581. /* backwards compatibility */
  582. if (! is_option(argv[1])) {
  583. server_address=argv[1];
  584. argv[1]=argv[0];
  585. argv=&argv[1];
  586. argc--;
  587. }
  588. for (c=1;c<argc;c++) {
  589. if (strcmp("-to",argv[c])==0)
  590. strcpy(argv[c],"-t");
  591. else if (strcmp("-wv",argv[c])==0)
  592. strcpy(argv[c],"-w");
  593. else if (strcmp("-cv",argv[c])==0)
  594. strcpy(argv[c],"-c");
  595. }
  596. while (1) {
  597. c = getopt_long(argc,argv,"+hoVH:t:c:w:p:v:",longopts,&option);
  598. if (c==-1||c==EOF||c==1)
  599. break;
  600. switch (c)
  601. {
  602. case '?': /* print short usage statement if args not parsable */
  603. printf ("%s: Unknown argument: %s\n\n", progname, optarg);
  604. print_usage();
  605. exit(STATE_UNKNOWN);
  606. case 'h': /* help */
  607. print_help();
  608. exit(STATE_OK);
  609. case 'V': /* version */
  610. print_revision(progname, revision);
  611. exit(STATE_OK);
  612. case 'H': /* hostname */
  613. server_address=optarg;
  614. break;
  615. case 'o': /* display nos version */
  616. check_netware_version=TRUE;
  617. break;
  618. case 'p': /* port */
  619. if (is_intnonneg(optarg))
  620. server_port=atoi(optarg);
  621. else
  622. die(STATE_UNKNOWN,_("Server port an integer (seconds)\nType '%s -h' for additional help\n"),progname);
  623. break;
  624. case 'v':
  625. if (strlen(optarg)<3)
  626. return ERROR;
  627. if (!strcmp(optarg,"LOAD1"))
  628. vars_to_check=LOAD1;
  629. else if (!strcmp(optarg,"LOAD5"))
  630. vars_to_check=LOAD5;
  631. else if (!strcmp(optarg,"LOAD15"))
  632. vars_to_check=LOAD15;
  633. else if (!strcmp(optarg,"CONNS"))
  634. vars_to_check=CONNS;
  635. else if (!strcmp(optarg,"LTCH"))
  636. vars_to_check=LTCH;
  637. else if (!strcmp(optarg,"DCB"))
  638. vars_to_check=DCB;
  639. else if (!strcmp(optarg,"TCB"))
  640. vars_to_check=TCB;
  641. else if (!strcmp(optarg,"CBUFF"))
  642. vars_to_check=CBUFF;
  643. else if (!strcmp(optarg,"CDBUFF"))
  644. vars_to_check=CDBUFF;
  645. else if (!strcmp(optarg,"LRUM"))
  646. vars_to_check=LRUM;
  647. else if (!strcmp(optarg,"LRUS"))
  648. vars_to_check=LRUS;
  649. else if (strncmp(optarg,"VPF",3)==0) {
  650. vars_to_check=VPF;
  651. volume_name = strdup (optarg+3);
  652. if (!strcmp(volume_name,""))
  653. volume_name = strdup ("SYS");
  654. }
  655. else if (strncmp(optarg,"VKF",3)==0) {
  656. vars_to_check=VKF;
  657. volume_name = strdup (optarg+3);
  658. if (!strcmp(volume_name,""))
  659. volume_name = strdup ("SYS");
  660. }
  661. else if (!strcmp(optarg,"DSDB"))
  662. vars_to_check=DSDB;
  663. else if (!strcmp(optarg,"LOGINS"))
  664. vars_to_check=LOGINS;
  665. else if (!strcmp(optarg,"UPRB"))
  666. vars_to_check=UPRB;
  667. else if (!strcmp(optarg,"PUPRB"))
  668. vars_to_check=PUPRB;
  669. else if (!strncmp(optarg,"SAPENTRIES",10)) {
  670. vars_to_check=SAPENTRIES;
  671. if (strlen(optarg)>10)
  672. sap_number=atoi(optarg+10);
  673. else
  674. sap_number=-1;
  675. }
  676. else if (!strcmp(optarg,"OFILES"))
  677. vars_to_check=OFILES;
  678. else if (strncmp(optarg,"VKP",3)==0) {
  679. vars_to_check=VKP;
  680. volume_name = strdup (optarg+3);
  681. if (!strcmp(volume_name,""))
  682. volume_name = strdup ("SYS");
  683. }
  684. else if (strncmp(optarg,"VPP",3)==0) {
  685. vars_to_check=VPP;
  686. volume_name = strdup (optarg+3);
  687. if (!strcmp(volume_name,""))
  688. volume_name = strdup ("SYS");
  689. }
  690. else if (strncmp(optarg,"VKNP",4)==0) {
  691. vars_to_check=VKNP;
  692. volume_name = strdup (optarg+4);
  693. if (!strcmp(volume_name,""))
  694. volume_name = strdup ("SYS");
  695. }
  696. else if (strncmp(optarg,"VPNP",4)==0) {
  697. vars_to_check=VPNP;
  698. volume_name = strdup (optarg+4);
  699. if (!strcmp(volume_name,""))
  700. volume_name = strdup("SYS");
  701. }
  702. else if (!strcmp(optarg,"ABENDS"))
  703. vars_to_check=ABENDS;
  704. else if (!strcmp(optarg,"CSPROCS"))
  705. vars_to_check=CSPROCS;
  706. else if (!strcmp(optarg,"TSYNC"))
  707. vars_to_check=TSYNC;
  708. else if (!strcmp(optarg,"DSVER"))
  709. vars_to_check=DSVER;
  710. else if (!strcmp(optarg,"UPTIME"))
  711. vars_to_check=UPTIME;
  712. else if (strncmp(optarg,"NLM:",4)==0) {
  713. vars_to_check=NLM;
  714. nlm_name=strdup (optarg+4);
  715. }
  716. else
  717. return ERROR;
  718. break;
  719. case 'w': /* warning threshold */
  720. warning_value=strtoul(optarg,NULL,10);
  721. check_warning_value=TRUE;
  722. break;
  723. case 'c': /* critical threshold */
  724. critical_value=strtoul(optarg,NULL,10);
  725. check_critical_value=TRUE;
  726. break;
  727. case 't': /* timeout */
  728. socket_timeout=atoi(optarg);
  729. if (socket_timeout<=0)
  730. return ERROR;
  731. }
  732. }
  733. return OK;
  734. }
  735. void print_help(void)
  736. {
  737. char *myport;
  738. asprintf (&myport, "%d", PORT);
  739. print_revision (progname, revision);
  740. printf ("Copyright (c) 1999 Ethan Galstad <nagios@nagios.org>\n");
  741. printf (COPYRIGHT, copyright, email);
  742. printf (_("\
  743. This plugin attempts to contact the MRTGEXT NLM running on a\n\
  744. Novell server to gather the requested system information.\n\n"),
  745. progname);
  746. print_usage();
  747. printf (_(UT_HELP_VRSN));
  748. printf (_(UT_HOST_PORT), 'p', myport);
  749. printf (_("\
  750. -v, --variable=STRING\n\
  751. Variable to check. Valid variables include:\n\
  752. LOAD1 = 1 minute average CPU load\n\
  753. LOAD5 = 5 minute average CPU load\n\
  754. LOAD15 = 15 minute average CPU load\n\
  755. CSPROCS = number of current service processes (NW 5.x only)\n\
  756. ABENDS = number of abended threads (NW 5.x only)\n\
  757. UPTIME = server uptime\n"));
  758. printf (_("\
  759. LTCH = percent long term cache hits\n\
  760. CBUFF = current number of cache buffers\n\
  761. CDBUFF = current number of dirty cache buffers\n\
  762. DCB = dirty cache buffers as a percentage of the total\n\
  763. TCB = dirty cache buffers as a percentage of the original\n"));
  764. printf (_("\
  765. OFILES = number of open files\n\
  766. VPF<vol> = percent free space on volume <vol>\n\
  767. VKF<vol> = KB of free space on volume <vol>\n\
  768. VPP<vol> = percent purgeable space on volume <vol>\n\
  769. VKP<vol> = KB of purgeable space on volume <vol>\n\
  770. VPNP<vol> = percent not yet purgeable space on volume <vol>\n\
  771. VKNP<vol> = KB of not yet purgeable space on volume <vol>\n"));
  772. printf (_("\
  773. LRUM = LRU sitting time in minutes\n\
  774. LRUS = LRU sitting time in seconds\n\
  775. DSDB = check to see if DS Database is open\n\
  776. DSVER = NDS version\n\
  777. UPRB = used packet receive buffers\n\
  778. PUPRB = percent (of max) used packet receive buffers\n\
  779. SAPENTRIES = number of entries in the SAP table\n\
  780. SAPENTRIES<n> = number of entries in the SAP table for SAP type <n>\n"));
  781. printf (_("\
  782. TSYNC = timesync status \n\
  783. LOGINS = check to see if logins are enabled\n\
  784. CONNS = number of currently licensed connections\n\
  785. NLM:<nlm> = check if NLM is loaded and report version\n\
  786. (e.g. \"NLM:TSANDS.NLM\")\n"));
  787. printf (_("\
  788. -w, --warning=INTEGER\n\
  789. Threshold which will result in a warning status\n\
  790. -c, --critical=INTEGER\n\
  791. Threshold which will result in a critical status\n\
  792. -o, --osversion\n\
  793. Include server version string in results\n"));
  794. printf (_(UT_TIMEOUT), DEFAULT_SOCKET_TIMEOUT);
  795. printf (_("\n\
  796. Notes:\n\
  797. - This plugin requres that the MRTGEXT.NLM file from James Drews' MRTG\n\
  798. extension for NetWare be loaded on the Novell servers you wish to check.\n\
  799. (available from http://www.engr.wisc.edu/~drews/mrtg/)\n\
  800. - Values for critical thresholds should be lower than warning thresholds\n\
  801. when the following variables are checked: VPF, VKF, LTCH, CBUFF, DCB, \n\
  802. TCB, LRUS and LRUM.\n"));
  803. printf (_(UT_SUPPORT));
  804. }
  805. void print_usage(void)
  806. {
  807. printf ("\
  808. Usage: %s -H host [-p port] [-v variable] [-w warning] [-c critical]\n\
  809. [-t timeout].\n", progname);
  810. }