check_dhcp.c 34 KB

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  1. /******************************************************************************
  2. *
  3. * Nagios check_dhcp plugin
  4. *
  5. * License: GPL
  6. * Copyright (c) 2001-2004 Ethan Galstad (nagios@nagios.org)
  7. * Copyright (c) 2001-2006 Nagios Plugin Development Team
  8. *
  9. * Last Modified: $Date$
  10. *
  11. * Description:
  12. *
  13. * This file contains the check_dhcp plugin
  14. *
  15. * This plugin tests the availability of DHCP servers on a network.
  16. *
  17. *
  18. * License Information:
  19. *
  20. * This program is free software; you can redistribute it and/or modify
  21. * it under the terms of the GNU General Public License as published by
  22. * the Free Software Foundation; either version 2 of the License, or
  23. * (at your option) any later version.
  24. *
  25. * This program is distributed in the hope that it will be useful,
  26. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  27. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  28. * GNU General Public License for more details.
  29. *
  30. * You should have received a copy of the GNU General Public License
  31. * along with this program; if not, write to the Free Software
  32. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  33. *
  34. * $Id$
  35. *
  36. *****************************************************************************/
  37. const char *progname = "check_dhcp";
  38. const char *revision = "$Revision$";
  39. const char *copyright = "2001-2006";
  40. const char *email = "nagiosplug-devel@lists.sourceforge.net";
  41. #include "common.h"
  42. #include "netutils.h"
  43. #include "utils.h"
  44. #include <stdio.h>
  45. #include <stdlib.h>
  46. #include <string.h>
  47. #include <errno.h>
  48. #include <unistd.h>
  49. #include <sys/time.h>
  50. #include <sys/ioctl.h>
  51. #include <fcntl.h>
  52. #include <getopt.h>
  53. #include <sys/socket.h>
  54. #include <sys/types.h>
  55. #include <netdb.h>
  56. #include <netinet/in.h>
  57. #include <net/if.h>
  58. #include <arpa/inet.h>
  59. #if defined( __linux__ )
  60. #include <linux/if_ether.h>
  61. #include <features.h>
  62. #elif defined (__bsd__)
  63. #include <netinet/if_ether.h>
  64. #include <sys/sysctl.h>
  65. #include <net/if_dl.h>
  66. #elif defined(__sun__) || defined(__solaris__) || defined(__hpux__)
  67. #define INSAP 22
  68. #define OUTSAP 24
  69. #include <signal.h>
  70. #include <ctype.h>
  71. #include <sys/stropts.h>
  72. #include <sys/poll.h>
  73. #include <sys/dlpi.h>
  74. #define bcopy(source, destination, length) memcpy(destination, source, length)
  75. #define AREA_SZ 5000 /* buffer length in bytes */
  76. static u_long ctl_area[AREA_SZ];
  77. static u_long dat_area[AREA_SZ];
  78. static struct strbuf ctl = {AREA_SZ, 0, (char *)ctl_area};
  79. static struct strbuf dat = {AREA_SZ, 0, (char *)dat_area};
  80. #define GOT_CTRL 1
  81. #define GOT_DATA 2
  82. #define GOT_BOTH 3
  83. #define GOT_INTR 4
  84. #define GOT_ERR 128
  85. #define u_int8_t uint8_t
  86. #define u_int16_t uint16_t
  87. #define u_int32_t uint32_t
  88. static int get_msg(int);
  89. static int check_ctrl(int);
  90. static int put_ctrl(int, int, int);
  91. static int put_both(int, int, int, int);
  92. static int dl_open(const char *, int, int *);
  93. static int dl_bind(int, int, u_char *);
  94. long mac_addr_dlpi( const char *, int, u_char *);
  95. #endif
  96. /**** Common definitions ****/
  97. #define OK 0
  98. #define ERROR -1
  99. #define FALSE 0
  100. #define TRUE 1
  101. /**** DHCP definitions ****/
  102. #define MAX_DHCP_CHADDR_LENGTH 16
  103. #define MAX_DHCP_SNAME_LENGTH 64
  104. #define MAX_DHCP_FILE_LENGTH 128
  105. #define MAX_DHCP_OPTIONS_LENGTH 312
  106. typedef struct dhcp_packet_struct{
  107. u_int8_t op; /* packet type */
  108. u_int8_t htype; /* type of hardware address for this machine (Ethernet, etc) */
  109. u_int8_t hlen; /* length of hardware address (of this machine) */
  110. u_int8_t hops; /* hops */
  111. u_int32_t xid; /* random transaction id number - chosen by this machine */
  112. u_int16_t secs; /* seconds used in timing */
  113. u_int16_t flags; /* flags */
  114. struct in_addr ciaddr; /* IP address of this machine (if we already have one) */
  115. struct in_addr yiaddr; /* IP address of this machine (offered by the DHCP server) */
  116. struct in_addr siaddr; /* IP address of DHCP server */
  117. struct in_addr giaddr; /* IP address of DHCP relay */
  118. unsigned char chaddr [MAX_DHCP_CHADDR_LENGTH]; /* hardware address of this machine */
  119. char sname [MAX_DHCP_SNAME_LENGTH]; /* name of DHCP server */
  120. char file [MAX_DHCP_FILE_LENGTH]; /* boot file name (used for diskless booting?) */
  121. char options[MAX_DHCP_OPTIONS_LENGTH]; /* options */
  122. }dhcp_packet;
  123. typedef struct dhcp_offer_struct{
  124. struct in_addr server_address; /* address of DHCP server that sent this offer */
  125. struct in_addr offered_address; /* the IP address that was offered to us */
  126. u_int32_t lease_time; /* lease time in seconds */
  127. u_int32_t renewal_time; /* renewal time in seconds */
  128. u_int32_t rebinding_time; /* rebinding time in seconds */
  129. struct dhcp_offer_struct *next;
  130. }dhcp_offer;
  131. typedef struct requested_server_struct{
  132. struct in_addr server_address;
  133. int answered;
  134. struct requested_server_struct *next;
  135. }requested_server;
  136. #define BOOTREQUEST 1
  137. #define BOOTREPLY 2
  138. #define DHCPDISCOVER 1
  139. #define DHCPOFFER 2
  140. #define DHCPREQUEST 3
  141. #define DHCPDECLINE 4
  142. #define DHCPACK 5
  143. #define DHCPNACK 6
  144. #define DHCPRELEASE 7
  145. #define DHCP_OPTION_MESSAGE_TYPE 53
  146. #define DHCP_OPTION_HOST_NAME 12
  147. #define DHCP_OPTION_BROADCAST_ADDRESS 28
  148. #define DHCP_OPTION_REQUESTED_ADDRESS 50
  149. #define DHCP_OPTION_LEASE_TIME 51
  150. #define DHCP_OPTION_RENEWAL_TIME 58
  151. #define DHCP_OPTION_REBINDING_TIME 59
  152. #define DHCP_INFINITE_TIME 0xFFFFFFFF
  153. #define DHCP_BROADCAST_FLAG 32768
  154. #define DHCP_SERVER_PORT 67
  155. #define DHCP_CLIENT_PORT 68
  156. #define ETHERNET_HARDWARE_ADDRESS 1 /* used in htype field of dhcp packet */
  157. #define ETHERNET_HARDWARE_ADDRESS_LENGTH 6 /* length of Ethernet hardware addresses */
  158. unsigned char client_hardware_address[MAX_DHCP_CHADDR_LENGTH]="";
  159. char network_interface_name[IFNAMSIZ]="eth0";
  160. u_int32_t packet_xid=0;
  161. u_int32_t dhcp_lease_time=0;
  162. u_int32_t dhcp_renewal_time=0;
  163. u_int32_t dhcp_rebinding_time=0;
  164. int dhcpoffer_timeout=2;
  165. dhcp_offer *dhcp_offer_list=NULL;
  166. requested_server *requested_server_list=NULL;
  167. int valid_responses=0; /* number of valid DHCPOFFERs we received */
  168. int requested_servers=0;
  169. int requested_responses=0;
  170. int request_specific_address=FALSE;
  171. int received_requested_address=FALSE;
  172. int verbose=0;
  173. struct in_addr requested_address;
  174. int process_arguments(int, char **);
  175. int call_getopt(int, char **);
  176. int validate_arguments(void);
  177. void print_usage(void);
  178. void print_help(void);
  179. int get_hardware_address(int,char *);
  180. int send_dhcp_discover(int);
  181. int get_dhcp_offer(int);
  182. int get_results(void);
  183. int add_dhcp_offer(struct in_addr,dhcp_packet *);
  184. int free_dhcp_offer_list(void);
  185. int free_requested_server_list(void);
  186. int create_dhcp_socket(void);
  187. int close_dhcp_socket(int);
  188. int send_dhcp_packet(void *,int,int,struct sockaddr_in *);
  189. int receive_dhcp_packet(void *,int,int,int,struct sockaddr_in *);
  190. int main(int argc, char **argv){
  191. int dhcp_socket;
  192. int result = STATE_UNKNOWN;
  193. setlocale (LC_ALL, "");
  194. bindtextdomain (PACKAGE, LOCALEDIR);
  195. textdomain (PACKAGE);
  196. if(process_arguments(argc,argv)!=OK){
  197. usage4 (_("Could not parse arguments"));
  198. }
  199. /* create socket for DHCP communications */
  200. dhcp_socket=create_dhcp_socket();
  201. /* get hardware address of client machine */
  202. get_hardware_address(dhcp_socket,network_interface_name);
  203. /* send DHCPDISCOVER packet */
  204. send_dhcp_discover(dhcp_socket);
  205. /* wait for a DHCPOFFER packet */
  206. get_dhcp_offer(dhcp_socket);
  207. /* close socket we created */
  208. close_dhcp_socket(dhcp_socket);
  209. /* determine state/plugin output to return */
  210. result=get_results();
  211. /* free allocated memory */
  212. free_dhcp_offer_list();
  213. free_requested_server_list();
  214. return result;
  215. }
  216. /* determines hardware address on client machine */
  217. int get_hardware_address(int sock,char *interface_name){
  218. int i;
  219. #if defined(__linux__)
  220. struct ifreq ifr;
  221. strncpy((char *)&ifr.ifr_name,interface_name,sizeof(ifr.ifr_name));
  222. /* try and grab hardware address of requested interface */
  223. if(ioctl(sock,SIOCGIFHWADDR,&ifr)<0){
  224. printf(_("Error: Could not get hardware address of interface '%s'\n"),interface_name);
  225. exit(STATE_UNKNOWN);
  226. }
  227. memcpy(&client_hardware_address[0],&ifr.ifr_hwaddr.sa_data,6);
  228. #elif defined(__bsd__)
  229. /* King 2004 see ACKNOWLEDGEMENTS */
  230. int mib[6], len;
  231. char *buf;
  232. unsigned char *ptr;
  233. struct if_msghdr *ifm;
  234. struct sockaddr_dl *sdl;
  235. mib[0] = CTL_NET;
  236. mib[1] = AF_ROUTE;
  237. mib[2] = 0;
  238. mib[3] = AF_LINK;
  239. mib[4] = NET_RT_IFLIST;
  240. if((mib[5] = if_nametoindex(interface_name)) == 0){
  241. printf(_("Error: if_nametoindex error - %s.\n"), strerror(errno));
  242. exit(STATE_UNKNOWN);
  243. }
  244. if(sysctl(mib, 6, NULL, &len, NULL, 0) < 0){
  245. printf(_("Error: Couldn't get hardware address from %s. sysctl 1 error - %s.\n"), interface_name, strerror(errno));
  246. exit(STATE_UNKNOWN);
  247. }
  248. if((buf = malloc(len)) == NULL){
  249. printf(_("Error: Couldn't get hardware address from interface %s. malloc error - %s.\n"), interface_name, strerror(errno));
  250. exit(4);
  251. }
  252. if(sysctl(mib, 6, buf, &len, NULL, 0) < 0){
  253. printf(_("Error: Couldn't get hardware address from %s. sysctl 2 error - %s.\n"), interface_name, strerror(errno));
  254. exit(STATE_UNKNOWN);
  255. }
  256. ifm = (struct if_msghdr *)buf;
  257. sdl = (struct sockaddr_dl *)(ifm + 1);
  258. ptr = (unsigned char *)LLADDR(sdl);
  259. memcpy(&client_hardware_address[0], ptr, 6) ;
  260. /* King 2004 */
  261. #elif defined(__sun__) || defined(__solaris__)
  262. /* Kompf 2000-2003 see ACKNOWLEDGEMENTS */
  263. long stat;
  264. char dev[20] = "/dev/";
  265. char *p;
  266. int unit;
  267. for(p = interface_name; *p && isalpha(*p); p++)
  268. /* no-op */ ;
  269. if( p != '\0' ){
  270. unit = atoi(p) ;
  271. *p = '\0' ;
  272. strncat(dev, interface_name, 6) ;
  273. }
  274. else{
  275. printf(_("Error: can't find unit number in interface_name (%s) - expecting TypeNumber eg lnc0.\n"), interface_name);
  276. exit(STATE_UNKNOWN);
  277. }
  278. stat = mac_addr_dlpi(dev, unit, client_hardware_address);
  279. if(stat != 0){
  280. printf(_("Error: can't read MAC address from DLPI streams interface for device %s unit %d.\n"), dev, unit);
  281. exit(STATE_UNKNOWN);
  282. }
  283. #elif defined(__hpux__)
  284. long stat;
  285. char dev[20] = "/dev/dlpi" ;
  286. int unit = 0;
  287. stat = mac_addr_dlpi(dev, unit, client_hardware_address);
  288. if(stat != 0){
  289. printf(_("Error: can't read MAC address from DLPI streams interface for device %s unit %d.\n"), dev, unit);
  290. exit(STATE_UNKNOWN);
  291. }
  292. /* Kompf 2000-2003 */
  293. #else
  294. printf(_("Error: can't get MAC address for this architecture.\n"));
  295. exit(STATE_UNKNOWN);
  296. #endif
  297. if(verbose){
  298. printf(_("Hardware address: "));
  299. for (i=0; i<6; ++i)
  300. printf("%2.2x", client_hardware_address[i]);
  301. printf( "\n");
  302. }
  303. return OK;
  304. }
  305. /* sends a DHCPDISCOVER broadcast message in an attempt to find DHCP servers */
  306. int send_dhcp_discover(int sock){
  307. dhcp_packet discover_packet;
  308. struct sockaddr_in sockaddr_broadcast;
  309. /* clear the packet data structure */
  310. bzero(&discover_packet,sizeof(discover_packet));
  311. /* boot request flag (backward compatible with BOOTP servers) */
  312. discover_packet.op=BOOTREQUEST;
  313. /* hardware address type */
  314. discover_packet.htype=ETHERNET_HARDWARE_ADDRESS;
  315. /* length of our hardware address */
  316. discover_packet.hlen=ETHERNET_HARDWARE_ADDRESS_LENGTH;
  317. discover_packet.hops=0;
  318. /* transaction id is supposed to be random */
  319. srand(time(NULL));
  320. packet_xid=random();
  321. discover_packet.xid=htonl(packet_xid);
  322. /**** WHAT THE HECK IS UP WITH THIS?!? IF I DON'T MAKE THIS CALL, ONLY ONE SERVER RESPONSE IS PROCESSED!!!! ****/
  323. /* downright bizzarre... */
  324. ntohl(discover_packet.xid);
  325. /*discover_packet.secs=htons(65535);*/
  326. discover_packet.secs=0xFF;
  327. /* tell server it should broadcast its response */
  328. discover_packet.flags=htons(DHCP_BROADCAST_FLAG);
  329. /* our hardware address */
  330. memcpy(discover_packet.chaddr,client_hardware_address,ETHERNET_HARDWARE_ADDRESS_LENGTH);
  331. /* first four bytes of options field is magic cookie (as per RFC 2132) */
  332. discover_packet.options[0]='\x63';
  333. discover_packet.options[1]='\x82';
  334. discover_packet.options[2]='\x53';
  335. discover_packet.options[3]='\x63';
  336. /* DHCP message type is embedded in options field */
  337. discover_packet.options[4]=DHCP_OPTION_MESSAGE_TYPE; /* DHCP message type option identifier */
  338. discover_packet.options[5]='\x01'; /* DHCP message option length in bytes */
  339. discover_packet.options[6]=DHCPDISCOVER;
  340. /* the IP address we're requesting */
  341. if(request_specific_address==TRUE){
  342. discover_packet.options[7]=DHCP_OPTION_REQUESTED_ADDRESS;
  343. discover_packet.options[8]='\x04';
  344. memcpy(&discover_packet.options[9],&requested_address,sizeof(requested_address));
  345. }
  346. /* send the DHCPDISCOVER packet to broadcast address */
  347. sockaddr_broadcast.sin_family=AF_INET;
  348. sockaddr_broadcast.sin_port=htons(DHCP_SERVER_PORT);
  349. sockaddr_broadcast.sin_addr.s_addr=INADDR_BROADCAST;
  350. bzero(&sockaddr_broadcast.sin_zero,sizeof(sockaddr_broadcast.sin_zero));
  351. if(verbose){
  352. printf(_("DHCPDISCOVER to %s port %d\n"),inet_ntoa(sockaddr_broadcast.sin_addr),ntohs(sockaddr_broadcast.sin_port));
  353. printf("DHCPDISCOVER XID: %lu (0x%X)\n",ntohl(discover_packet.xid),ntohl(discover_packet.xid));
  354. printf("DHCDISCOVER ciaddr: %s\n",inet_ntoa(discover_packet.ciaddr));
  355. printf("DHCDISCOVER yiaddr: %s\n",inet_ntoa(discover_packet.yiaddr));
  356. printf("DHCDISCOVER siaddr: %s\n",inet_ntoa(discover_packet.siaddr));
  357. printf("DHCDISCOVER giaddr: %s\n",inet_ntoa(discover_packet.giaddr));
  358. }
  359. /* send the DHCPDISCOVER packet out */
  360. send_dhcp_packet(&discover_packet,sizeof(discover_packet),sock,&sockaddr_broadcast);
  361. if(verbose)
  362. printf("\n\n");
  363. return OK;
  364. }
  365. /* waits for a DHCPOFFER message from one or more DHCP servers */
  366. int get_dhcp_offer(int sock){
  367. dhcp_packet offer_packet;
  368. struct sockaddr_in source;
  369. struct sockaddr_in via;
  370. int result=OK;
  371. int timeout=1;
  372. int responses=0;
  373. int x;
  374. time_t start_time;
  375. time_t current_time;
  376. time(&start_time);
  377. /* receive as many responses as we can */
  378. for(responses=0,valid_responses=0;;){
  379. time(&current_time);
  380. if((current_time-start_time)>=dhcpoffer_timeout)
  381. break;
  382. if(verbose)
  383. printf("\n\n");
  384. bzero(&source,sizeof(source));
  385. bzero(&via,sizeof(via));
  386. bzero(&offer_packet,sizeof(offer_packet));
  387. result=OK;
  388. result=receive_dhcp_packet(&offer_packet,sizeof(offer_packet),sock,dhcpoffer_timeout,&source);
  389. if(result!=OK){
  390. if(verbose)
  391. printf(_("Result=ERROR\n"));
  392. continue;
  393. }
  394. else{
  395. if(verbose)
  396. printf(_("Result=OK\n"));
  397. responses++;
  398. }
  399. /* The "source" is either a server or a relay. */
  400. /* Save a copy of "source" into "via" even if it's via itself */
  401. memcpy(&via,&source,sizeof(source)) ;
  402. /* If siaddr is non-zero, set "source" to siaddr */
  403. if(offer_packet.siaddr.s_addr != 0L){
  404. source.sin_addr.s_addr = offer_packet.siaddr.s_addr ;
  405. }
  406. if(verbose){
  407. printf(_("DHCPOFFER from IP address %s"),inet_ntoa(source.sin_addr));
  408. printf(_(" via %s\n"),inet_ntoa(via.sin_addr));
  409. printf("DHCPOFFER XID: %lu (0x%X)\n",ntohl(offer_packet.xid),ntohl(offer_packet.xid));
  410. }
  411. /* check packet xid to see if its the same as the one we used in the discover packet */
  412. if(ntohl(offer_packet.xid)!=packet_xid){
  413. if(verbose)
  414. printf(_("DHCPOFFER XID (%lu) did not match DHCPDISCOVER XID (%lu) - ignoring packet\n"),ntohl(offer_packet.xid),packet_xid);
  415. continue;
  416. }
  417. /* check hardware address */
  418. result=OK;
  419. if(verbose)
  420. printf("DHCPOFFER chaddr: ");
  421. for(x=0;x<ETHERNET_HARDWARE_ADDRESS_LENGTH;x++){
  422. if(verbose)
  423. printf("%02X",(unsigned char)offer_packet.chaddr[x]);
  424. if(offer_packet.chaddr[x]!=client_hardware_address[x])
  425. result=ERROR;
  426. }
  427. if(verbose)
  428. printf("\n");
  429. if(result==ERROR){
  430. if(verbose)
  431. printf(_("DHCPOFFER hardware address did not match our own - ignoring packet\n"));
  432. continue;
  433. }
  434. if(verbose){
  435. printf("DHCPOFFER ciaddr: %s\n",inet_ntoa(offer_packet.ciaddr));
  436. printf("DHCPOFFER yiaddr: %s\n",inet_ntoa(offer_packet.yiaddr));
  437. printf("DHCPOFFER siaddr: %s\n",inet_ntoa(offer_packet.siaddr));
  438. printf("DHCPOFFER giaddr: %s\n",inet_ntoa(offer_packet.giaddr));
  439. }
  440. add_dhcp_offer(source.sin_addr,&offer_packet);
  441. valid_responses++;
  442. }
  443. if(verbose){
  444. printf(_("Total responses seen on the wire: %d\n"),responses);
  445. printf(_("Valid responses for this machine: %d\n"),valid_responses);
  446. }
  447. return OK;
  448. }
  449. /* sends a DHCP packet */
  450. int send_dhcp_packet(void *buffer, int buffer_size, int sock, struct sockaddr_in *dest){
  451. struct sockaddr_in myname;
  452. int result;
  453. result=sendto(sock,(char *)buffer,buffer_size,0,(struct sockaddr *)dest,sizeof(*dest));
  454. if(verbose)
  455. printf(_("send_dhcp_packet result: %d\n"),result);
  456. if(result<0)
  457. return ERROR;
  458. return OK;
  459. }
  460. /* receives a DHCP packet */
  461. int receive_dhcp_packet(void *buffer, int buffer_size, int sock, int timeout, struct sockaddr_in *address){
  462. struct timeval tv;
  463. fd_set readfds;
  464. int recv_result;
  465. socklen_t address_size;
  466. struct sockaddr_in source_address;
  467. /* wait for data to arrive (up time timeout) */
  468. tv.tv_sec=timeout;
  469. tv.tv_usec=0;
  470. FD_ZERO(&readfds);
  471. FD_SET(sock,&readfds);
  472. select(sock+1,&readfds,NULL,NULL,&tv);
  473. /* make sure some data has arrived */
  474. if(!FD_ISSET(sock,&readfds)){
  475. if(verbose)
  476. printf(_("No (more) data received\n"));
  477. return ERROR;
  478. }
  479. else{
  480. /* why do we need to peek first? i don't know, its a hack. without it, the source address of the first packet received was
  481. not being interpreted correctly. sigh... */
  482. bzero(&source_address,sizeof(source_address));
  483. address_size=sizeof(source_address);
  484. recv_result=recvfrom(sock,(char *)buffer,buffer_size,MSG_PEEK,(struct sockaddr *)&source_address,&address_size);
  485. if(verbose)
  486. printf("recv_result_1: %d\n",recv_result);
  487. recv_result=recvfrom(sock,(char *)buffer,buffer_size,0,(struct sockaddr *)&source_address,&address_size);
  488. if(verbose)
  489. printf("recv_result_2: %d\n",recv_result);
  490. if(recv_result==-1){
  491. if(verbose){
  492. printf(_("recvfrom() failed, "));
  493. printf("errno: (%d) -> %s\n",errno,strerror(errno));
  494. }
  495. return ERROR;
  496. }
  497. else{
  498. if(verbose){
  499. printf(_("receive_dhcp_packet() result: %d\n"),recv_result);
  500. printf(_("receive_dhcp_packet() source: %s\n"),inet_ntoa(source_address.sin_addr));
  501. }
  502. memcpy(address,&source_address,sizeof(source_address));
  503. return OK;
  504. }
  505. }
  506. return OK;
  507. }
  508. /* creates a socket for DHCP communication */
  509. int create_dhcp_socket(void){
  510. struct sockaddr_in myname;
  511. struct ifreq interface;
  512. int sock;
  513. int flag=1;
  514. /* Set up the address we're going to bind to. */
  515. bzero(&myname,sizeof(myname));
  516. myname.sin_family=AF_INET;
  517. myname.sin_port=htons(DHCP_CLIENT_PORT);
  518. myname.sin_addr.s_addr=INADDR_ANY; /* listen on any address */
  519. bzero(&myname.sin_zero,sizeof(myname.sin_zero));
  520. /* create a socket for DHCP communications */
  521. sock=socket(AF_INET,SOCK_DGRAM,IPPROTO_UDP);
  522. if(sock<0){
  523. printf(_("Error: Could not create socket!\n"));
  524. exit(STATE_UNKNOWN);
  525. }
  526. if(verbose)
  527. printf("DHCP socket: %d\n",sock);
  528. /* set the reuse address flag so we don't get errors when restarting */
  529. flag=1;
  530. if(setsockopt(sock,SOL_SOCKET,SO_REUSEADDR,(char *)&flag,sizeof(flag))<0){
  531. printf(_("Error: Could not set reuse address option on DHCP socket!\n"));
  532. exit(STATE_UNKNOWN);
  533. }
  534. /* set the broadcast option - we need this to listen to DHCP broadcast messages */
  535. if(setsockopt(sock,SOL_SOCKET,SO_BROADCAST,(char *)&flag,sizeof flag)<0){
  536. printf(_("Error: Could not set broadcast option on DHCP socket!\n"));
  537. exit(STATE_UNKNOWN);
  538. }
  539. /* bind socket to interface */
  540. #if defined(__linux__)
  541. strncpy(interface.ifr_ifrn.ifrn_name,network_interface_name,IFNAMSIZ);
  542. if(setsockopt(sock,SOL_SOCKET,SO_BINDTODEVICE,(char *)&interface,sizeof(interface))<0){
  543. printf(_("Error: Could not bind socket to interface %s. Check your privileges...\n"),network_interface_name);
  544. exit(STATE_UNKNOWN);
  545. }
  546. #else
  547. strncpy(interface.ifr_name,network_interface_name,IFNAMSIZ);
  548. #endif
  549. /* bind the socket */
  550. if(bind(sock,(struct sockaddr *)&myname,sizeof(myname))<0){
  551. printf(_("Error: Could not bind to DHCP socket (port %d)! Check your privileges...\n"),DHCP_CLIENT_PORT);
  552. exit(STATE_UNKNOWN);
  553. }
  554. return sock;
  555. }
  556. /* closes DHCP socket */
  557. int close_dhcp_socket(int sock){
  558. close(sock);
  559. return OK;
  560. }
  561. /* adds a requested server address to list in memory */
  562. int add_requested_server(struct in_addr server_address){
  563. requested_server *new_server;
  564. new_server=(requested_server *)malloc(sizeof(requested_server));
  565. if(new_server==NULL)
  566. return ERROR;
  567. new_server->server_address=server_address;
  568. new_server->answered=FALSE;
  569. new_server->next=requested_server_list;
  570. requested_server_list=new_server;
  571. requested_servers++;
  572. if(verbose)
  573. printf(_("Requested server address: %s\n"),inet_ntoa(new_server->server_address));
  574. return OK;
  575. }
  576. /* adds a DHCP OFFER to list in memory */
  577. int add_dhcp_offer(struct in_addr source,dhcp_packet *offer_packet){
  578. dhcp_offer *new_offer;
  579. int x;
  580. int y;
  581. unsigned option_type;
  582. unsigned option_length;
  583. if(offer_packet==NULL)
  584. return ERROR;
  585. /* process all DHCP options present in the packet */
  586. for(x=4;x<MAX_DHCP_OPTIONS_LENGTH;){
  587. /* end of options (0 is really just a pad, but bail out anyway) */
  588. if((int)offer_packet->options[x]==-1 || (int)offer_packet->options[x]==0)
  589. break;
  590. /* get option type */
  591. option_type=offer_packet->options[x++];
  592. /* get option length */
  593. option_length=offer_packet->options[x++];
  594. if(verbose)
  595. printf("Option: %d (0x%02X)\n",option_type,option_length);
  596. /* get option data */
  597. if(option_type==DHCP_OPTION_LEASE_TIME){
  598. memcpy(&dhcp_lease_time, &offer_packet->options[x],sizeof(dhcp_lease_time));
  599. dhcp_lease_time = ntohl(dhcp_lease_time);
  600. }
  601. if(option_type==DHCP_OPTION_RENEWAL_TIME){
  602. memcpy(&dhcp_renewal_time, &offer_packet->options[x],sizeof(dhcp_renewal_time));
  603. dhcp_renewal_time = ntohl(dhcp_renewal_time);
  604. }
  605. if(option_type==DHCP_OPTION_REBINDING_TIME){
  606. memcpy(&dhcp_rebinding_time, &offer_packet->options[x],sizeof(dhcp_rebinding_time));
  607. dhcp_rebinding_time = ntohl(dhcp_rebinding_time);
  608. }
  609. /* skip option data we're ignoring */
  610. else
  611. for(y=0;y<option_length;y++,x++);
  612. }
  613. if(verbose){
  614. if(dhcp_lease_time==DHCP_INFINITE_TIME)
  615. printf(_("Lease Time: Infinite\n"));
  616. else
  617. printf(_("Lease Time: %lu seconds\n"),(unsigned long)dhcp_lease_time);
  618. if(dhcp_renewal_time==DHCP_INFINITE_TIME)
  619. printf(_("Renewal Time: Infinite\n"));
  620. else
  621. printf(_("Renewal Time: %lu seconds\n"),(unsigned long)dhcp_renewal_time);
  622. if(dhcp_rebinding_time==DHCP_INFINITE_TIME)
  623. printf(_("Rebinding Time: Infinite\n"));
  624. printf(_("Rebinding Time: %lu seconds\n"),(unsigned long)dhcp_rebinding_time);
  625. }
  626. new_offer=(dhcp_offer *)malloc(sizeof(dhcp_offer));
  627. if(new_offer==NULL)
  628. return ERROR;
  629. new_offer->server_address=source;
  630. new_offer->offered_address=offer_packet->yiaddr;
  631. new_offer->lease_time=dhcp_lease_time;
  632. new_offer->renewal_time=dhcp_renewal_time;
  633. new_offer->rebinding_time=dhcp_rebinding_time;
  634. if(verbose){
  635. printf(_("Added offer from server @ %s"),inet_ntoa(new_offer->server_address));
  636. printf(_(" of IP address %s\n"),inet_ntoa(new_offer->offered_address));
  637. }
  638. /* add new offer to head of list */
  639. new_offer->next=dhcp_offer_list;
  640. dhcp_offer_list=new_offer;
  641. return OK;
  642. }
  643. /* frees memory allocated to DHCP OFFER list */
  644. int free_dhcp_offer_list(void){
  645. dhcp_offer *this_offer;
  646. dhcp_offer *next_offer;
  647. for(this_offer=dhcp_offer_list;this_offer!=NULL;this_offer=next_offer){
  648. next_offer=this_offer->next;
  649. free(this_offer);
  650. }
  651. return OK;
  652. }
  653. /* frees memory allocated to requested server list */
  654. int free_requested_server_list(void){
  655. requested_server *this_server;
  656. requested_server *next_server;
  657. for(this_server=requested_server_list;this_server!=NULL;this_server=next_server){
  658. next_server=this_server->next;
  659. free(this_server);
  660. }
  661. return OK;
  662. }
  663. /* gets state and plugin output to return */
  664. int get_results(void){
  665. dhcp_offer *temp_offer;
  666. requested_server *temp_server;
  667. int result;
  668. u_int32_t max_lease_time=0;
  669. received_requested_address=FALSE;
  670. /* checks responses from requested servers */
  671. requested_responses=0;
  672. if(requested_servers>0){
  673. for(temp_server=requested_server_list;temp_server!=NULL;temp_server=temp_server->next){
  674. for(temp_offer=dhcp_offer_list;temp_offer!=NULL;temp_offer=temp_offer->next){
  675. /* get max lease time we were offered */
  676. if(temp_offer->lease_time>max_lease_time || temp_offer->lease_time==DHCP_INFINITE_TIME)
  677. max_lease_time=temp_offer->lease_time;
  678. /* see if we got the address we requested */
  679. if(!memcmp(&requested_address,&temp_offer->offered_address,sizeof(requested_address)))
  680. received_requested_address=TRUE;
  681. /* see if the servers we wanted a response from talked to us or not */
  682. if(!memcmp(&temp_offer->server_address,&temp_server->server_address,sizeof(temp_server->server_address))){
  683. if(verbose){
  684. printf(_("DHCP Server Match: Offerer=%s"),inet_ntoa(temp_offer->server_address));
  685. printf(_(" Requested=%s"),inet_ntoa(temp_server->server_address));
  686. if(temp_server->answered)
  687. printf(_(" (duplicate)"));
  688. printf(_("\n"));
  689. }
  690. if(temp_server->answered == FALSE){
  691. requested_responses++;
  692. temp_server->answered=TRUE;
  693. }
  694. }
  695. }
  696. }
  697. }
  698. /* else check and see if we got our requested address from any server */
  699. else{
  700. for(temp_offer=dhcp_offer_list;temp_offer!=NULL;temp_offer=temp_offer->next){
  701. /* get max lease time we were offered */
  702. if(temp_offer->lease_time>max_lease_time || temp_offer->lease_time==DHCP_INFINITE_TIME)
  703. max_lease_time=temp_offer->lease_time;
  704. /* see if we got the address we requested */
  705. if(!memcmp(&requested_address,&temp_offer->offered_address,sizeof(requested_address)))
  706. received_requested_address=TRUE;
  707. }
  708. }
  709. result=STATE_OK;
  710. if(valid_responses==0)
  711. result=STATE_CRITICAL;
  712. else if(requested_servers>0 && requested_responses==0)
  713. result=STATE_CRITICAL;
  714. else if(requested_responses<requested_servers)
  715. result=STATE_WARNING;
  716. else if(request_specific_address==TRUE && received_requested_address==FALSE)
  717. result=STATE_WARNING;
  718. if(result==0) /* garrett honeycutt 2005 */
  719. printf("OK: ");
  720. else if(result==1)
  721. printf("WARNING: ");
  722. else if(result==2)
  723. printf("CRITICAL: ");
  724. else if(result==3)
  725. printf("UNKNOWN: ");
  726. /* we didn't receive any DHCPOFFERs */
  727. if(dhcp_offer_list==NULL){
  728. printf(_("No DHCPOFFERs were received.\n"));
  729. return result;
  730. }
  731. printf(_("Received %d DHCPOFFER(s)"),valid_responses);
  732. if(requested_servers>0)
  733. printf(_(", %s%d of %d requested servers responded"),((requested_responses<requested_servers) && requested_responses>0)?"only ":"",requested_responses,requested_servers);
  734. if(request_specific_address==TRUE)
  735. printf(_(", requested address (%s) was %soffered"),inet_ntoa(requested_address),(received_requested_address==TRUE)?"":_("not "));
  736. printf(_(", max lease time = "));
  737. if(max_lease_time==DHCP_INFINITE_TIME)
  738. printf(_("Infinity"));
  739. else
  740. printf("%lu sec",(unsigned long)max_lease_time);
  741. printf(".\n");
  742. return result;
  743. }
  744. /* process command-line arguments */
  745. int process_arguments(int argc, char **argv){
  746. int c;
  747. if(argc<1)
  748. return ERROR;
  749. c=0;
  750. while((c+=(call_getopt(argc-c,&argv[c])))<argc){
  751. /*
  752. if(is_option(argv[c]))
  753. continue;
  754. */
  755. }
  756. return validate_arguments();
  757. }
  758. int call_getopt(int argc, char **argv){
  759. int c=0;
  760. int i=0;
  761. struct in_addr ipaddress;
  762. int option_index = 0;
  763. static struct option long_options[] =
  764. {
  765. {"serverip", required_argument,0,'s'},
  766. {"requestedip", required_argument,0,'r'},
  767. {"timeout", required_argument,0,'t'},
  768. {"interface", required_argument,0,'i'},
  769. {"verbose", no_argument, 0,'v'},
  770. {"version", no_argument, 0,'V'},
  771. {"help", no_argument, 0,'h'},
  772. {0,0,0,0}
  773. };
  774. while(1){
  775. c=getopt_long(argc,argv,"+hVvt:s:r:t:i:",long_options,&option_index);
  776. i++;
  777. if(c==-1||c==EOF||c==1)
  778. break;
  779. switch(c){
  780. case 'w':
  781. case 'r':
  782. case 't':
  783. case 'i':
  784. i++;
  785. break;
  786. default:
  787. break;
  788. }
  789. switch(c){
  790. case 's': /* DHCP server address */
  791. if(inet_aton(optarg,&ipaddress))
  792. add_requested_server(ipaddress);
  793. /*
  794. else
  795. usage("Invalid server IP address\n");
  796. */
  797. break;
  798. case 'r': /* address we are requested from DHCP servers */
  799. if(inet_aton(optarg,&ipaddress)){
  800. requested_address=ipaddress;
  801. request_specific_address=TRUE;
  802. }
  803. /*
  804. else
  805. usage("Invalid requested IP address\n");
  806. */
  807. break;
  808. case 't': /* timeout */
  809. /*
  810. if(is_intnonneg(optarg))
  811. */
  812. if(atoi(optarg)>0)
  813. dhcpoffer_timeout=atoi(optarg);
  814. /*
  815. else
  816. usage("Time interval must be a nonnegative integer\n");
  817. */
  818. break;
  819. case 'i': /* interface name */
  820. strncpy(network_interface_name,optarg,sizeof(network_interface_name)-1);
  821. network_interface_name[sizeof(network_interface_name)-1]='\x0';
  822. break;
  823. case 'V': /* version */
  824. print_revision(progname,revision);
  825. exit(STATE_OK);
  826. case 'h': /* help */
  827. print_help();
  828. exit(STATE_OK);
  829. case 'v': /* verbose */
  830. verbose=1;
  831. break;
  832. case '?': /* help */
  833. usage2 (_("Unknown argument"), optarg);
  834. break;
  835. default:
  836. break;
  837. }
  838. }
  839. return i;
  840. }
  841. int validate_arguments(void){
  842. return OK;
  843. }
  844. #if defined(__sun__) || defined(__solaris__) || defined(__hpux__)
  845. /* Kompf 2000-2003 see ACKNOWLEDGEMENTS */
  846. /* get a message from a stream; return type of message */
  847. static int get_msg(int fd){
  848. int flags = 0;
  849. int res, ret;
  850. ctl_area[0] = 0;
  851. dat_area[0] = 0;
  852. ret = 0;
  853. res = getmsg(fd, &ctl, &dat, &flags);
  854. if(res < 0){
  855. if(errno == EINTR){
  856. return(GOT_INTR);
  857. }
  858. else{
  859. printf("%s\n", "get_msg FAILED.");
  860. return(GOT_ERR);
  861. }
  862. }
  863. if(ctl.len > 0){
  864. ret |= GOT_CTRL;
  865. }
  866. if(dat.len > 0){
  867. ret |= GOT_DATA;
  868. }
  869. return(ret);
  870. }
  871. /* verify that dl_primitive in ctl_area = prim */
  872. static int check_ctrl(int prim){
  873. dl_error_ack_t *err_ack = (dl_error_ack_t *)ctl_area;
  874. if(err_ack->dl_primitive != prim){
  875. printf(_("Error: DLPI stream API failed to get MAC in check_ctrl: %s.\n"), strerror(errno));
  876. exit(STATE_UNKNOWN);
  877. }
  878. return 0;
  879. }
  880. /* put a control message on a stream */
  881. static int put_ctrl(int fd, int len, int pri){
  882. ctl.len = len;
  883. if(putmsg(fd, &ctl, 0, pri) < 0){
  884. printf(_("Error: DLPI stream API failed to get MAC in put_ctrl/putmsg(): %s.\n"), strerror(errno));
  885. exit(STATE_UNKNOWN);
  886. }
  887. return 0;
  888. }
  889. /* put a control + data message on a stream */
  890. static int put_both(int fd, int clen, int dlen, int pri){
  891. ctl.len = clen;
  892. dat.len = dlen;
  893. if(putmsg(fd, &ctl, &dat, pri) < 0){
  894. printf(_("Error: DLPI stream API failed to get MAC in put_both/putmsg().\n"), strerror(errno));
  895. exit(STATE_UNKNOWN);
  896. }
  897. return 0;
  898. }
  899. /* open file descriptor and attach */
  900. static int dl_open(const char *dev, int unit, int *fd){
  901. dl_attach_req_t *attach_req = (dl_attach_req_t *)ctl_area;
  902. if((*fd = open(dev, O_RDWR)) == -1){
  903. printf(_("Error: DLPI stream API failed to get MAC in dl_attach_req/open(%s..): %s.\n"), dev, strerror(errno));
  904. exit(STATE_UNKNOWN);
  905. }
  906. attach_req->dl_primitive = DL_ATTACH_REQ;
  907. attach_req->dl_ppa = unit;
  908. put_ctrl(*fd, sizeof(dl_attach_req_t), 0);
  909. get_msg(*fd);
  910. return check_ctrl(DL_OK_ACK);
  911. }
  912. /* send DL_BIND_REQ */
  913. static int dl_bind(int fd, int sap, u_char *addr){
  914. dl_bind_req_t *bind_req = (dl_bind_req_t *)ctl_area;
  915. dl_bind_ack_t *bind_ack = (dl_bind_ack_t *)ctl_area;
  916. bind_req->dl_primitive = DL_BIND_REQ;
  917. bind_req->dl_sap = sap;
  918. bind_req->dl_max_conind = 1;
  919. bind_req->dl_service_mode = DL_CLDLS;
  920. bind_req->dl_conn_mgmt = 0;
  921. bind_req->dl_xidtest_flg = 0;
  922. put_ctrl(fd, sizeof(dl_bind_req_t), 0);
  923. get_msg(fd);
  924. if (GOT_ERR == check_ctrl(DL_BIND_ACK)){
  925. printf(_("Error: DLPI stream API failed to get MAC in dl_bind/check_ctrl(): %s.\n"), strerror(errno));
  926. exit(STATE_UNKNOWN);
  927. }
  928. bcopy((u_char *)bind_ack + bind_ack->dl_addr_offset, addr,
  929. bind_ack->dl_addr_length);
  930. return 0;
  931. }
  932. /***********************************************************************
  933. * interface:
  934. * function mac_addr_dlpi - get the mac address of the interface with
  935. * type dev (eg lnc, hme) and unit (0, 1 ..)
  936. *
  937. * parameter: addr: an array of six bytes, has to be allocated by the caller
  938. *
  939. * return: 0 if OK, -1 if the address could not be determined
  940. *
  941. *
  942. ***********************************************************************/
  943. long mac_addr_dlpi( const char *dev, int unit, u_char *addr){
  944. int fd;
  945. u_char mac_addr[25];
  946. if(GOT_ERR != dl_open(dev, unit, &fd)){
  947. if(GOT_ERR != dl_bind(fd, INSAP, mac_addr)){
  948. bcopy( mac_addr, addr, 6);
  949. return 0;
  950. }
  951. }
  952. close(fd);
  953. return -1;
  954. }
  955. /* Kompf 2000-2003 */
  956. #endif
  957. /* print usage help */
  958. void print_help(void){
  959. print_revision(progname,revision);
  960. printf("Copyright (c) 2001-2004 Ethan Galstad (nagios@nagios.org)\n");
  961. printf (COPYRIGHT, copyright, email);
  962. printf("%s\n", _("This plugin tests the availability of DHCP servers on a network."));
  963. printf ("\n\n");
  964. print_usage();
  965. printf (_(UT_HELP_VRSN));
  966. printf (_(UT_VERBOSE));
  967. printf (" %s\n", "-s, --serverip=IPADDRESS");
  968. printf (" %s\n", _("IP address of DHCP server that we must hear from"));
  969. printf (" %s\n", "-r, --requestedip=IPADDRESS");
  970. printf (" %s\n", _("IP address that should be offered by at least one DHCP server"));
  971. printf (" %s\n", "-t, --timeout=INTEGER");
  972. printf (" %s\n", _("Seconds to wait for DHCPOFFER before timeout occurs"));
  973. printf (" %s\n", "-i, --interface=STRING");
  974. printf (" %s\n", _("Interface to to use for listening (i.e. eth0)"));
  975. return;
  976. }
  977. void
  978. print_usage(void){
  979. printf (_("Usage:"));
  980. printf ("%s [-s serverip] [-r requestedip] [-t timeout] [-i interface] [-v]\n",progname);
  981. return;
  982. }