dhcpd.c 32 KB

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  1. #include <u.h>
  2. #include <libc.h>
  3. #include <ip.h>
  4. #include <bio.h>
  5. #include <ndb.h>
  6. #include "dat.h"
  7. //
  8. // ala rfc2131
  9. //
  10. typedef struct Req Req;
  11. struct Req
  12. {
  13. int fd; /* for reply */
  14. Bootp *bp;
  15. OUdphdr *up;
  16. uchar *e; /* end of received message */
  17. uchar *p; /* options pointer */
  18. uchar *max; /* max end of reply */
  19. /* expanded to v6 */
  20. uchar ciaddr[IPaddrlen];
  21. uchar giaddr[IPaddrlen];
  22. /* parsed options */
  23. int p9request; /* true if this is a bootp with plan9 options */
  24. int genrequest; /* true if this is a bootp with generic options */
  25. int dhcptype; /* dhcp message type */
  26. int leasetime; /* dhcp lease */
  27. uchar ip[IPaddrlen]; /* requested address */
  28. uchar server[IPaddrlen]; /* server address */
  29. char msg[ERRMAX]; /* error message */
  30. char vci[32]; /* vendor class id */
  31. char *id; /* client id */
  32. uchar requested[32]; /* requested params */
  33. uchar vendorclass[32];
  34. char cputype[32-3];
  35. Info gii; /* about target network */
  36. Info ii; /* about target system */
  37. int staticbinding;
  38. uchar buf[2*1024]; /* message buffer */
  39. };
  40. #define TFTP "/lib/tftpd"
  41. char *blog = "ipboot";
  42. char mysysname[64];
  43. Ipifc *ipifcs;
  44. int debug;
  45. int nobootp;
  46. long now;
  47. int slowstat, slowdyn;
  48. char net[256];
  49. int pptponly; // only answer request that came from the pptp server
  50. int mute, mutestat;
  51. int minlease = MinLease;
  52. ulong start;
  53. /* option magic */
  54. char plan9opt[4] = { 'p', '9', ' ', ' ' };
  55. char genericopt[4] = { 0x63, 0x82, 0x53, 0x63 };
  56. /* well known addresses */
  57. uchar zeros[Maxhwlen];
  58. /* option debug buffer */
  59. char optbuf[1024];
  60. char *op;
  61. char *oe = optbuf + sizeof(optbuf);
  62. char *optname[256] =
  63. {
  64. [OBend] "end",
  65. [OBpad] "pad",
  66. [OBmask] "mask",
  67. [OBtimeoff] "timeoff",
  68. [OBrouter] "router",
  69. [OBtimeserver] "time",
  70. [OBnameserver] "name",
  71. [OBdnserver] "dns",
  72. [OBlogserver] "log",
  73. [OBcookieserver] "cookie",
  74. [OBlprserver] "lpr",
  75. [OBimpressserver] "impress",
  76. [OBrlserver] "rl",
  77. [OBhostname] "host",
  78. [OBbflen] "bflen",
  79. [OBdumpfile] "dumpfile",
  80. [OBdomainname] "dom",
  81. [OBswapserver] "swap",
  82. [OBrootpath] "rootpath",
  83. [OBextpath] "extpath",
  84. [OBipforward] "ipforward",
  85. [OBnonlocal] "nonlocal",
  86. [OBpolicyfilter] "policyfilter",
  87. [OBmaxdatagram] "maxdatagram",
  88. [OBttl] "ttl",
  89. [OBpathtimeout] "pathtimeout",
  90. [OBpathplateau] "pathplateau",
  91. [OBmtu] "mtu",
  92. [OBsubnetslocal] "subnetslocal",
  93. [OBbaddr] "baddr",
  94. [OBdiscovermask] "discovermask",
  95. [OBsupplymask] "supplymask",
  96. [OBdiscoverrouter] "discoverrouter",
  97. [OBrsserver] "rsserver",
  98. [OBstaticroutes] "staticroutes",
  99. [OBtrailerencap] "trailerencap",
  100. [OBarptimeout] "arptimeout",
  101. [OBetherencap] "etherencap",
  102. [OBtcpttl] "tcpttl",
  103. [OBtcpka] "tcpka",
  104. [OBtcpkag] "tcpkag",
  105. [OBnisdomain] "nisdomain",
  106. [OBniserver] "niserver",
  107. [OBntpserver] "ntpserver",
  108. [OBvendorinfo] "vendorinfo",
  109. [OBnetbiosns] "NBns",
  110. [OBnetbiosdds] "NBdds",
  111. [OBnetbiostype] "NBtype",
  112. [OBnetbiosscope] "NBscope",
  113. [OBxfontserver] "xfont",
  114. [OBxdispmanager] "xdisp",
  115. [OBnisplusdomain] "NPdomain",
  116. [OBnisplusserver] "NP",
  117. [OBhomeagent] "homeagent",
  118. [OBsmtpserver] "smtp",
  119. [OBpop3server] "pop3",
  120. [OBnntpserver] "nntp",
  121. [OBwwwserver] "www",
  122. [OBfingerserver] "finger",
  123. [OBircserver] "ircserver",
  124. [OBstserver] "stserver",
  125. [OBstdaserver] "stdaserver",
  126. /* dhcp options */
  127. [ODipaddr] "ip",
  128. [ODlease] "leas",
  129. [ODoverload] "overload",
  130. [ODtype] "typ",
  131. [ODserverid] "sid",
  132. [ODparams] "params",
  133. [ODmessage] "message",
  134. [ODmaxmsg] "maxmsg",
  135. [ODrenewaltime] "renewaltime",
  136. [ODrebindingtime] "rebindingtime",
  137. [ODvendorclass] "vendorclass",
  138. [ODclientid] "cid",
  139. [ODtftpserver] "tftpserver",
  140. [ODbootfile] "bf",
  141. };
  142. void addropt(Req*, int, uchar*);
  143. void addrsopt(Req*, int, uchar**, int);
  144. void arpenter(uchar*, uchar*);
  145. void bootp(Req*);
  146. void byteopt(Req*, int, uchar);
  147. void dhcp(Req*);
  148. void fatal(int, char*, ...);
  149. void hexopt(Req*, int, char*);
  150. void longopt(Req*, int, long);
  151. void maskopt(Req*, int, uchar*);
  152. void miscoptions(Req*, uchar*);
  153. int openlisten(char *net);
  154. void parseoptions(Req*);
  155. void proto(Req*, int);
  156. void rcvdecline(Req*);
  157. void rcvdiscover(Req*);
  158. void rcvinform(Req*);
  159. void rcvrelease(Req*);
  160. void rcvrequest(Req*);
  161. char* readsysname(void);
  162. void remrequested(Req*, int);
  163. void sendack(Req*, uchar*, int, int);
  164. void sendnak(Req*, char*);
  165. void sendoffer(Req*, uchar*, int);
  166. void stringopt(Req*, int, char*);
  167. void termopt(Req*);
  168. int validip(uchar*);
  169. void vectoropt(Req*, int, uchar*, int);
  170. void warning(int, char*, ...);
  171. void logdhcp(Req*);
  172. void logdhcpout(Req *, char *);
  173. int readlast(int, uchar*, int);
  174. void
  175. timestamp(char *tag)
  176. {
  177. ulong t;
  178. t = nsec()/1000;
  179. syslog(0, blog, "%s %lud", tag, t - start);
  180. }
  181. void
  182. usage(void)
  183. {
  184. fprint(2, "usage: dhcp [-dmsnp] [-f directory] [-x netmtpt] [-M minlease] addr n [addr n ...]\n");
  185. exits("usage");
  186. }
  187. void
  188. main(int argc, char **argv)
  189. {
  190. int i, n, fd;
  191. char *p;
  192. uchar ip[IPaddrlen];
  193. Req r;
  194. setnetmtpt(net, sizeof(net), nil);
  195. fmtinstall('E', eipfmt);
  196. fmtinstall('I', eipfmt);
  197. fmtinstall('V', eipfmt);
  198. fmtinstall('M', eipfmt);
  199. ARGBEGIN {
  200. case 'm':
  201. mute = 1;
  202. break;
  203. case 'd':
  204. debug = 1;
  205. break;
  206. case 'f':
  207. p = ARGF();
  208. if(p == nil)
  209. usage();
  210. ndbfile = p;
  211. break;
  212. case 's':
  213. slowstat = 1;
  214. break;
  215. case 'S':
  216. slowdyn = 1;
  217. break;
  218. case 'n':
  219. nobootp = 1;
  220. break;
  221. case 'p':
  222. pptponly = 1;
  223. break;
  224. case 'r':
  225. mutestat = 1;
  226. break;
  227. case 'x':
  228. p = ARGF();
  229. if(p == nil)
  230. usage();
  231. setnetmtpt(net, sizeof(net), p);
  232. break;
  233. case 'M':
  234. p = ARGF();
  235. if(p == nil)
  236. usage();
  237. minlease = atoi(p);
  238. if(minlease <= 0)
  239. minlease = MinLease;
  240. break;
  241. } ARGEND;
  242. while(argc > 1){
  243. parseip(ip, argv[0]);
  244. if(!validip(ip))
  245. usage();
  246. n = atoi(argv[1]);
  247. if(n <= 0)
  248. usage();
  249. initbinding(ip, n);
  250. argc -= 2;
  251. argv += 2;
  252. }
  253. /* for debugging */
  254. for(i = 0; i < 256; i++)
  255. if(optname[i] == 0)
  256. optname[i] = smprint("%d", i);
  257. /* what is my name? */
  258. p = readsysname();
  259. strcpy(mysysname, p);
  260. /* put process in background */
  261. if(!debug) switch(rfork(RFNOTEG|RFPROC|RFFDG)) {
  262. case -1:
  263. fatal(1, "fork");
  264. case 0:
  265. break;
  266. default:
  267. exits(0);
  268. }
  269. chdir(TFTP);
  270. fd = openlisten(net);
  271. for(;;){
  272. memset(&r, 0, sizeof(r));
  273. r.fd = fd;
  274. n = readlast(r.fd, r.buf, sizeof(r.buf));
  275. if(n < OUdphdrsize)
  276. fatal(1, "error reading requests");
  277. start = nsec()/1000;
  278. op = optbuf;
  279. *op = 0;
  280. proto(&r, n);
  281. if(r.id != nil)
  282. free(r.id);
  283. }
  284. }
  285. void
  286. proto(Req *rp, int n)
  287. {
  288. uchar relip[IPaddrlen];
  289. char buf[64];
  290. now = time(0);
  291. rp->e = rp->buf + n;
  292. rp->bp = (Bootp*)rp->buf;
  293. rp->up = (OUdphdr*)rp->buf;
  294. rp->max = rp->buf + OUdphdrsize + MINSUPPORTED - IPUDPHDRSIZE;
  295. rp->p = rp->bp->optdata;
  296. v4tov6(rp->giaddr, rp->bp->giaddr);
  297. v4tov6(rp->ciaddr, rp->bp->ciaddr);
  298. if(pptponly && rp->bp->htype != 0)
  299. return;
  300. ipifcs = readipifc(net, ipifcs, -1);
  301. if(validip(rp->giaddr))
  302. ipmove(relip, rp->giaddr);
  303. else if(validip(rp->up->raddr))
  304. ipmove(relip, rp->up->raddr);
  305. else
  306. ipmove(relip, rp->up->laddr);
  307. if(rp->e < (uchar*)rp->bp->sname){
  308. warning(0, "packet too short");
  309. return;
  310. }
  311. if(rp->bp->op != Bootrequest){
  312. warning(0, "not bootrequest");
  313. return;
  314. }
  315. if(rp->e >= rp->bp->optdata){
  316. if(memcmp(rp->bp->optmagic, plan9opt, sizeof(rp->bp->optmagic)) == 0)
  317. rp->p9request = 1;
  318. if(memcmp(rp->bp->optmagic, genericopt, sizeof(rp->bp->optmagic)) == 0) {
  319. rp->genrequest = 1;
  320. parseoptions(rp);
  321. }
  322. }
  323. rp->p = rp->bp->optdata;
  324. /* If no id is specified, make one from the hardware address
  325. * of the target. We assume all zeros is not a hardware address
  326. * which could be a mistake.
  327. */
  328. if(rp->id == nil){
  329. if(rp->bp->hlen > Maxhwlen){
  330. warning(0, "hlen %d", rp->bp->hlen);
  331. return;
  332. }
  333. if(memcmp(zeros, rp->bp->chaddr, rp->bp->hlen) == 0){
  334. warning(0, "no chaddr");
  335. return;
  336. }
  337. sprint(buf, "hwa%2.2ux_", rp->bp->htype);
  338. rp->id = tohex(buf, rp->bp->chaddr, rp->bp->hlen);
  339. }
  340. /* info about gateway */
  341. if(lookupip(relip, &rp->gii, 1) < 0){
  342. warning(0, "lookupip failed");
  343. return;
  344. }
  345. /* info about target system */
  346. if(lookup(rp->bp, &rp->ii, &rp->gii) == 0)
  347. if(rp->ii.indb && rp->ii.dhcpgroup[0] == 0)
  348. rp->staticbinding = 1;
  349. if(rp->dhcptype)
  350. dhcp(rp);
  351. else
  352. bootp(rp);
  353. timestamp("done");
  354. }
  355. static void
  356. slowdelay(Req *rp)
  357. {
  358. if(slowstat && rp->staticbinding || slowdyn && !rp->staticbinding)
  359. sleep(2000);
  360. }
  361. void
  362. dhcp(Req *rp)
  363. {
  364. logdhcp(rp);
  365. switch(rp->dhcptype){
  366. case Discover:
  367. slowdelay(rp);
  368. rcvdiscover(rp);
  369. break;
  370. case Request:
  371. rcvrequest(rp);
  372. break;
  373. case Decline:
  374. rcvdecline(rp);
  375. break;
  376. case Release:
  377. rcvrelease(rp);
  378. break;
  379. case Inform:
  380. rcvinform(rp);
  381. break;
  382. }
  383. }
  384. void
  385. rcvdiscover(Req *rp)
  386. {
  387. Binding *b, *nb;
  388. if(rp->staticbinding){
  389. sendoffer(rp, rp->ii.ipaddr, (StaticLease > minlease ? StaticLease : minlease));
  390. return;
  391. }
  392. /*
  393. * first look for an outstanding offer
  394. */
  395. b = idtooffer(rp->id, &rp->gii);
  396. /*
  397. * rfc2131 says:
  398. * If an address is available, the new address
  399. * SHOULD be chosen as follows:
  400. *
  401. * o The client's current address as recorded in the client's current
  402. * binding, ELSE
  403. *
  404. * o The client's previous address as recorded in the client's (now
  405. * expired or released) binding, if that address is in the server's
  406. * pool of available addresses and not already allocated, ELSE
  407. *
  408. * o The address requested in the 'Requested IP Address' option, if that
  409. * address is valid and not already allocated, ELSE
  410. *
  411. * o A new address allocated from the server's pool of available
  412. * addresses; the address is selected based on the subnet from which
  413. * the message was received (if 'giaddr' is 0) or on the address of
  414. * the relay agent that forwarded the message ('giaddr' when not 0).
  415. */
  416. if(b == nil){
  417. b = idtobinding(rp->id, &rp->gii, 1);
  418. if(b && b->boundto && strcmp(b->boundto, rp->id) != 0)
  419. if(validip(rp->ip) && samenet(rp->ip, &rp->gii)){
  420. nb = iptobinding(rp->ip, 0);
  421. if(nb && nb->lease < now)
  422. b = nb;
  423. }
  424. }
  425. if(b == nil){
  426. warning(0, "!Discover(%s via %I): no binding %I",
  427. rp->id, rp->gii.ipaddr, rp->ip);
  428. return;
  429. }
  430. mkoffer(b, rp->id, rp->leasetime);
  431. sendoffer(rp, b->ip, b->offer);
  432. }
  433. void
  434. rcvrequest(Req *rp)
  435. {
  436. Binding *b;
  437. if(validip(rp->server)){
  438. /* this is a reply to an offer - SELECTING */
  439. /* check for hard assignment */
  440. if(rp->staticbinding){
  441. if(forme(rp->server))
  442. sendack(rp, rp->ii.ipaddr, (StaticLease > minlease ? StaticLease : minlease), 1);
  443. else
  444. warning(0, "!Request(%s via %I): for server %I not me",
  445. rp->id, rp->gii.ipaddr, rp->server);
  446. return;
  447. }
  448. b = idtooffer(rp->id, &rp->gii);
  449. /* if we don't have an offer, nak */
  450. if(b == nil){
  451. warning(0, "!Request(%s via %I): no offer",
  452. rp->id, rp->gii.ipaddr);
  453. if(forme(rp->server))
  454. sendnak(rp, "no offer for you");
  455. return;
  456. }
  457. /* if not for me, retract offer */
  458. if(!forme(rp->server)){
  459. b->expoffer = 0;
  460. warning(0, "!Request(%s via %I): for server %I not me",
  461. rp->id, rp->gii.ipaddr, rp->server);
  462. return;
  463. }
  464. /*
  465. * if the client is confused about what we offered, nak.
  466. * client really shouldn't be specifying this when selecting
  467. */
  468. if(validip(rp->ip) && ipcmp(rp->ip, b->ip) != 0){
  469. warning(0, "!Request(%s via %I): requests %I, not %I",
  470. rp->id, rp->gii.ipaddr, rp->ip, b->ip);
  471. sendnak(rp, "bad ip address option");
  472. return;
  473. }
  474. if(commitbinding(b) < 0){
  475. warning(0, "!Request(%s via %I): can't commit %I",
  476. rp->id, rp->gii.ipaddr, b->ip);
  477. sendnak(rp, "can't commit binding");
  478. return;
  479. }
  480. sendack(rp, b->ip, b->offer, 1);
  481. } else if(validip(rp->ip)){
  482. /*
  483. * checking address/net - INIT-REBOOT
  484. *
  485. * This is a rebooting client that remembers its old
  486. * address.
  487. */
  488. /* check for hard assignment */
  489. if(rp->staticbinding){
  490. if(memcmp(rp->ip, rp->ii.ipaddr, IPaddrlen) != 0){
  491. warning(0, "!Request(%s via %I): %I not valid for %E",
  492. rp->id, rp->gii.ipaddr, rp->ip, rp->bp->chaddr);
  493. sendnak(rp, "not valid");
  494. }
  495. sendack(rp, rp->ii.ipaddr, (StaticLease > minlease ? StaticLease : minlease), 1);
  496. return;
  497. }
  498. /* make sure the network makes sense */
  499. if(!samenet(rp->ip, &rp->gii)){
  500. warning(0, "!Request(%s via %I): bad forward of %I",
  501. rp->id, rp->gii.ipaddr, rp->ip);
  502. sendnak(rp, "wrong network");
  503. return;
  504. }
  505. b = iptobinding(rp->ip, 0);
  506. if(b == nil){
  507. warning(0, "!Request(%s via %I): no binding for %I for",
  508. rp->id, rp->gii.ipaddr, rp->ip);
  509. return;
  510. }
  511. if(memcmp(rp->ip, b->ip, IPaddrlen) != 0 || now > b->lease){
  512. warning(0, "!Request(%s via %I): %I not valid",
  513. rp->id, rp->gii.ipaddr, rp->ip);
  514. sendnak(rp, "not valid");
  515. return;
  516. }
  517. b->offer = b->lease - now;
  518. sendack(rp, b->ip, b->offer, 1);
  519. } else if(validip(rp->ciaddr)){
  520. /*
  521. * checking address - RENEWING or REBINDING
  522. *
  523. * these states are indistinguishable in our action. The only
  524. * difference is how close to lease expiration the client is.
  525. * If it is really close, it broadcasts the request hoping that
  526. * some server will answer.
  527. */
  528. /* check for hard assignment */
  529. if(rp->staticbinding){
  530. if(ipcmp(rp->ciaddr, rp->ii.ipaddr) != 0){
  531. warning(0, "!Request(%s via %I): %I not valid",
  532. rp->id, rp->gii.ipaddr, rp->ciaddr);
  533. sendnak(rp, "not valid");
  534. }
  535. sendack(rp, rp->ii.ipaddr, (StaticLease > minlease ? StaticLease : minlease), 1);
  536. return;
  537. }
  538. /* make sure the network makes sense */
  539. if(!samenet(rp->ciaddr, &rp->gii)){
  540. warning(0, "!Request(%s via %I): bad forward of %I",
  541. rp->id, rp->gii.ipaddr, rp->ip);
  542. sendnak(rp, "wrong network");
  543. return;
  544. }
  545. b = iptobinding(rp->ciaddr, 0);
  546. if(b == nil){
  547. warning(0, "!Request(%s via %I): no binding for %I",
  548. rp->id, rp->gii.ipaddr, rp->ciaddr);
  549. return;
  550. }
  551. if(ipcmp(rp->ciaddr, b->ip) != 0){
  552. warning(0, "!Request(%I via %s): %I not valid",
  553. rp->id, rp->gii.ipaddr, rp->ciaddr);
  554. sendnak(rp, "invalid ip address");
  555. return;
  556. }
  557. mkoffer(b, rp->id, rp->leasetime);
  558. if(commitbinding(b) < 0){
  559. warning(0, "!Request(%s via %I): can't commit %I",
  560. rp->id, rp->gii.ipaddr, b->ip);
  561. sendnak(rp, "can't commit binding");
  562. return;
  563. }
  564. sendack(rp, b->ip, b->offer, 1);
  565. }
  566. }
  567. void
  568. rcvdecline(Req *rp)
  569. {
  570. Binding *b;
  571. char buf[64];
  572. if(rp->staticbinding)
  573. return;
  574. b = idtooffer(rp->id, &rp->gii);
  575. if(b == nil){
  576. warning(0, "!Decline(%s via %I): no binding",
  577. rp->id, rp->gii.ipaddr);
  578. return;
  579. }
  580. /* mark ip address as in use */
  581. snprint(buf, sizeof(buf), "declined by %s", rp->id);
  582. mkoffer(b, buf, 0x7fffffff);
  583. commitbinding(b);
  584. }
  585. void
  586. rcvrelease(Req *rp)
  587. {
  588. Binding *b;
  589. if(rp->staticbinding)
  590. return;
  591. b = idtobinding(rp->id, &rp->gii, 0);
  592. if(b == nil){
  593. warning(0, "!Release(%s via %I): no binding",
  594. rp->id, rp->gii.ipaddr);
  595. return;
  596. }
  597. if(strcmp(rp->id, b->boundto) != 0){
  598. warning(0, "!Release(%s via %I): invalid release of %I",
  599. rp->id, rp->gii.ipaddr, rp->ip);
  600. return;
  601. }
  602. warning(0, "Release(%s via %I): releasing %I", b->boundto, rp->gii.ipaddr, b->ip);
  603. if(releasebinding(b, rp->id) < 0)
  604. warning(0, "release: couldn't release");
  605. }
  606. void
  607. rcvinform(Req *rp)
  608. {
  609. Binding *b;
  610. if(rp->staticbinding){
  611. sendack(rp, rp->ii.ipaddr, 0, 0);
  612. return;
  613. }
  614. b = iptobinding(rp->ciaddr, 0);
  615. if(b == nil){
  616. warning(0, "!Inform(%s via %I): no binding for %I",
  617. rp->id, rp->gii.ipaddr, rp->ip);
  618. return;
  619. }
  620. sendack(rp, b->ip, 0, 0);
  621. }
  622. int
  623. setsiaddr(uchar *siaddr, uchar *saddr, uchar *laddr)
  624. {
  625. if(ipcmp(saddr, IPnoaddr) != 0){
  626. v6tov4(siaddr, saddr);
  627. return 0;
  628. } else {
  629. v6tov4(siaddr, laddr);
  630. return 1;
  631. }
  632. }
  633. int
  634. ismuted(Req *rp)
  635. {
  636. return mute || (mutestat && rp->staticbinding);
  637. }
  638. void
  639. sendoffer(Req *rp, uchar *ip, int offer)
  640. {
  641. int n;
  642. ushort flags;
  643. Bootp *bp;
  644. OUdphdr *up;
  645. bp = rp->bp;
  646. up = rp->up;
  647. /*
  648. * set destination
  649. */
  650. flags = nhgets(bp->flags);
  651. if(validip(rp->giaddr)){
  652. ipmove(up->raddr, rp->giaddr);
  653. hnputs(up->rport, 67);
  654. } else if(flags & Fbroadcast){
  655. ipmove(up->raddr, IPv4bcast);
  656. hnputs(up->rport, 68);
  657. } else {
  658. ipmove(up->raddr, ip);
  659. if(bp->htype == 1)
  660. arpenter(up->raddr, bp->chaddr);
  661. hnputs(up->rport, 68);
  662. }
  663. /*
  664. * fill in standard bootp part
  665. */
  666. bp->op = Bootreply;
  667. bp->hops = 0;
  668. hnputs(bp->secs, 0);
  669. memset(bp->ciaddr, 0, sizeof(bp->ciaddr));
  670. v6tov4(bp->giaddr, rp->giaddr);
  671. v6tov4(bp->yiaddr, ip);
  672. setsiaddr(bp->siaddr, rp->ii.tftp, up->laddr);
  673. strncpy(bp->sname, mysysname, sizeof(bp->sname));
  674. strncpy(bp->file, rp->ii.bootf, sizeof(bp->file));
  675. /*
  676. * set options
  677. */
  678. byteopt(rp, ODtype, Offer);
  679. longopt(rp, ODlease, offer);
  680. addropt(rp, ODserverid, up->laddr);
  681. miscoptions(rp, ip);
  682. termopt(rp);
  683. logdhcpout(rp, "Offer");
  684. /*
  685. * send
  686. */
  687. n = rp->p - rp->buf;
  688. if(!ismuted(rp) && write(rp->fd, rp->buf, n) != n)
  689. warning(0, "offer: write failed: %r");
  690. }
  691. void
  692. sendack(Req *rp, uchar *ip, int offer, int sendlease)
  693. {
  694. int n;
  695. ushort flags;
  696. Bootp *bp;
  697. OUdphdr *up;
  698. bp = rp->bp;
  699. up = rp->up;
  700. /*
  701. * set destination
  702. */
  703. flags = nhgets(bp->flags);
  704. if(validip(rp->giaddr)){
  705. ipmove(up->raddr, rp->giaddr);
  706. hnputs(up->rport, 67);
  707. } else if(flags & Fbroadcast){
  708. ipmove(up->raddr, IPv4bcast);
  709. hnputs(up->rport, 68);
  710. } else {
  711. ipmove(up->raddr, ip);
  712. if(bp->htype == 1)
  713. arpenter(up->raddr, bp->chaddr);
  714. hnputs(up->rport, 68);
  715. }
  716. /*
  717. * fill in standard bootp part
  718. */
  719. bp->op = Bootreply;
  720. bp->hops = 0;
  721. hnputs(bp->secs, 0);
  722. v6tov4(bp->giaddr, rp->giaddr);
  723. v6tov4(bp->yiaddr, ip);
  724. setsiaddr(bp->siaddr, rp->ii.tftp, up->laddr);
  725. strncpy(bp->sname, mysysname, sizeof(bp->sname));
  726. strncpy(bp->file, rp->ii.bootf, sizeof(bp->file));
  727. /*
  728. * set options
  729. */
  730. byteopt(rp, ODtype, Ack);
  731. if(sendlease){
  732. longopt(rp, ODlease, offer);
  733. }
  734. addropt(rp, ODserverid, up->laddr);
  735. miscoptions(rp, ip);
  736. termopt(rp);
  737. logdhcpout(rp, "Ack");
  738. /*
  739. * send
  740. */
  741. n = rp->p - rp->buf;
  742. if(!ismuted(rp) && write(rp->fd, rp->buf, n) != n)
  743. warning(0, "ack: write failed: %r");
  744. }
  745. void
  746. sendnak(Req *rp, char *msg)
  747. {
  748. int n;
  749. Bootp *bp;
  750. OUdphdr *up;
  751. bp = rp->bp;
  752. up = rp->up;
  753. /*
  754. * set destination (always broadcast)
  755. */
  756. if(validip(rp->giaddr)){
  757. ipmove(up->raddr, rp->giaddr);
  758. hnputs(up->rport, 67);
  759. } else {
  760. ipmove(up->raddr, IPv4bcast);
  761. hnputs(up->rport, 68);
  762. }
  763. /*
  764. * fill in standard bootp part
  765. */
  766. bp->op = Bootreply;
  767. bp->hops = 0;
  768. hnputs(bp->secs, 0);
  769. v6tov4(bp->giaddr, rp->giaddr);
  770. memset(bp->ciaddr, 0, sizeof(bp->ciaddr));
  771. memset(bp->yiaddr, 0, sizeof(bp->yiaddr));
  772. memset(bp->siaddr, 0, sizeof(bp->siaddr));
  773. /*
  774. * set options
  775. */
  776. byteopt(rp, ODtype, Nak);
  777. addropt(rp, ODserverid, up->laddr);
  778. if(msg)
  779. stringopt(rp, ODmessage, msg);
  780. if(strncmp(rp->id, "id", 2) == 0)
  781. hexopt(rp, ODclientid, rp->id+2);
  782. termopt(rp);
  783. logdhcpout(rp, "Nak");
  784. /*
  785. * send nak
  786. */
  787. n = rp->p - rp->buf;
  788. if(!ismuted(rp) && write(rp->fd, rp->buf, n) != n)
  789. warning(0, "nak: write failed: %r");
  790. }
  791. void
  792. bootp(Req *rp)
  793. {
  794. int n;
  795. Bootp *bp;
  796. OUdphdr *up;
  797. ushort flags;
  798. Iplifc *lifc;
  799. Info *iip;
  800. warning(0, "bootp %s %I->%I from %s via %I, file %s",
  801. rp->genrequest ? "generic" : (rp->p9request ? "p9" : ""),
  802. rp->up->raddr, rp->up->laddr,
  803. rp->id, rp->gii.ipaddr,
  804. rp->bp->file);
  805. if(nobootp)
  806. return;
  807. bp = rp->bp;
  808. up = rp->up;
  809. iip = &rp->ii;
  810. if(rp->staticbinding == 0){
  811. warning(0, "bootp from unknown %s via %I", rp->id, rp->gii.ipaddr);
  812. return;
  813. }
  814. /* ignore if not for us */
  815. if(*bp->sname){
  816. if(strcmp(bp->sname, mysysname) != 0){
  817. bp->sname[20] = 0;
  818. warning(0, "bootp for server %s", bp->sname);
  819. return;
  820. }
  821. } else
  822. slowdelay(rp);
  823. /* ignore if we don't know what file to load */
  824. if(*bp->file == 0){
  825. if(rp->genrequest && *iip->bootf2) /* if not plan 9 and we have an alternate file... */
  826. strncpy(bp->file, iip->bootf2, sizeof(bp->file));
  827. else if(*iip->bootf)
  828. strncpy(bp->file, iip->bootf, sizeof(bp->file));
  829. else if(*bp->sname) /* if we were asked, respond no matter what */
  830. bp->file[0] = '\0';
  831. else {
  832. warning(0, "no bootfile for %I", iip->ipaddr);
  833. return;
  834. }
  835. }
  836. /* ignore if the file is unreadable */
  837. if((!rp->genrequest) && bp->file[0] && access(bp->file, 4) < 0){
  838. warning(0, "inaccessible bootfile1 %s", bp->file);
  839. return;
  840. }
  841. bp->op = Bootreply;
  842. v6tov4(bp->yiaddr, iip->ipaddr);
  843. if(rp->p9request){
  844. warning(0, "p9bootp: %I", iip->ipaddr);
  845. memmove(bp->optmagic, plan9opt, 4);
  846. if(iip->gwip == 0)
  847. v4tov6(iip->gwip, bp->giaddr);
  848. rp->p += sprint((char*)rp->p, "%V %I %I %I", iip->ipmask+IPv4off, iip->fsip,
  849. iip->auip, iip->gwip);
  850. sprint(optbuf, "%s", (char*)(bp->optmagic));
  851. } else if(rp->genrequest){
  852. warning(0, "genericbootp: %I", iip->ipaddr);
  853. memmove(bp->optmagic, genericopt, 4);
  854. miscoptions(rp, iip->ipaddr);
  855. termopt(rp);
  856. } else if(iip->vendor[0] != 0) {
  857. warning(0, "bootp vendor field: %s", iip->vendor);
  858. memset(rp->p, 0, 128-4);
  859. rp->p += sprint((char*)bp->optmagic, "%s", iip->vendor);
  860. } else {
  861. memset(rp->p, 0, 128-4);
  862. rp->p += 128-4;
  863. }
  864. /*
  865. * set destination
  866. */
  867. flags = nhgets(bp->flags);
  868. if(validip(rp->giaddr)){
  869. ipmove(up->raddr, rp->giaddr);
  870. hnputs(up->rport, 67);
  871. } else if(flags & Fbroadcast){
  872. ipmove(up->raddr, IPv4bcast);
  873. hnputs(up->rport, 68);
  874. } else {
  875. v4tov6(up->raddr, bp->yiaddr);
  876. if(bp->htype == 1)
  877. arpenter(up->raddr, bp->chaddr);
  878. hnputs(up->rport, 68);
  879. }
  880. /*
  881. * select best local address if destination is directly connected
  882. */
  883. lifc = findlifc(up->raddr);
  884. if(lifc)
  885. ipmove(up->laddr, lifc->ip);
  886. /*
  887. * our identity
  888. */
  889. strncpy(bp->sname, mysysname, sizeof(bp->sname));
  890. /*
  891. * set tftp server
  892. */
  893. setsiaddr(bp->siaddr, iip->tftp, up->laddr);
  894. if(rp->genrequest && *iip->bootf2)
  895. setsiaddr(bp->siaddr, iip->tftp2, up->laddr);
  896. /*
  897. * RFC 1048 says that we must pad vendor field with
  898. * zeros until we have a 64 byte field.
  899. */
  900. n = rp->p - rp->bp->optdata;
  901. if(n < 64-4) {
  902. memset(rp->p, 0, (64-4)-n);
  903. rp->p += (64-4)-n;
  904. }
  905. /*
  906. * send
  907. */
  908. n = rp->p - rp->buf;
  909. if(!ismuted(rp) && write(rp->fd, rp->buf, n) != n)
  910. warning(0, "bootp: write failed: %r");
  911. warning(0, "bootp via %I: file %s xid(%ux)flag(%ux)ci(%V)gi(%V)yi(%V)si(%V) %s",
  912. up->raddr, bp->file, nhgetl(bp->xid), nhgets(bp->flags),
  913. bp->ciaddr, bp->giaddr, bp->yiaddr, bp->siaddr,
  914. optbuf);
  915. }
  916. void
  917. parseoptions(Req *rp)
  918. {
  919. int n, c, code;
  920. uchar *o, *p;
  921. p = rp->p;
  922. while(p < rp->e){
  923. code = *p++;
  924. if(code == 255)
  925. break;
  926. if(code == 0)
  927. continue;
  928. /* ignore anything that's too long */
  929. n = *p++;
  930. o = p;
  931. p += n;
  932. if(p > rp->e)
  933. return;
  934. switch(code){
  935. case ODipaddr: /* requested ip address */
  936. if(n == IPv4addrlen)
  937. v4tov6(rp->ip, o);
  938. break;
  939. case ODlease: /* requested lease time */
  940. rp->leasetime = nhgetl(o);
  941. if(rp->leasetime > MaxLease || rp->leasetime < 0)
  942. rp->leasetime = MaxLease;
  943. break;
  944. case ODtype:
  945. c = *o;
  946. if(c < 10 && c > 0)
  947. rp->dhcptype = c;
  948. break;
  949. case ODserverid:
  950. if(n == IPv4addrlen)
  951. v4tov6(rp->server, o);
  952. break;
  953. case ODmessage:
  954. if(n > sizeof rp->msg-1)
  955. n = sizeof rp->msg-1;
  956. memmove(rp->msg, o, n);
  957. rp->msg[n] = 0;
  958. break;
  959. case ODmaxmsg:
  960. c = nhgets(o);
  961. c -= 28;
  962. c += OUdphdrsize;
  963. if(c > 0)
  964. rp->max = rp->buf + c;
  965. break;
  966. case ODclientid:
  967. if(n <= 1)
  968. break;
  969. rp->id = toid( o, n);
  970. break;
  971. case ODparams:
  972. if(n > sizeof(rp->requested))
  973. n = sizeof(rp->requested);
  974. memmove(rp->requested, o, n);
  975. break;
  976. case ODvendorclass:
  977. if(n >= sizeof(rp->vendorclass))
  978. n = sizeof(rp->vendorclass)-1;
  979. memmove(rp->vendorclass, o, n);
  980. rp->vendorclass[n] = 0;
  981. if(strncmp((char*)rp->vendorclass, "p9-", 3) == 0)
  982. strcpy(rp->cputype, (char*)rp->vendorclass+3);
  983. break;
  984. case OBend:
  985. return;
  986. }
  987. }
  988. }
  989. void
  990. remrequested(Req *rp, int opt)
  991. {
  992. uchar *p;
  993. p = memchr(rp->requested, opt, sizeof(rp->requested));
  994. if(p != nil)
  995. *p = OBpad;
  996. }
  997. void
  998. miscoptions(Req *rp, uchar *ip)
  999. {
  1000. char *p;
  1001. int i, j;
  1002. uchar *addrs[2];
  1003. uchar x[2*IPaddrlen];
  1004. uchar vopts[64];
  1005. uchar *op, *omax;
  1006. char *attr[100], **a;
  1007. int na;
  1008. Ndbtuple *t;
  1009. addrs[0] = x;
  1010. addrs[1] = x+IPaddrlen;
  1011. /* always supply these */
  1012. maskopt(rp, OBmask, rp->gii.ipmask);
  1013. if(validip(rp->gii.gwip)){
  1014. remrequested(rp, OBrouter);
  1015. addropt(rp, OBrouter, rp->gii.gwip);
  1016. } else if(validip(rp->giaddr)){
  1017. remrequested(rp, OBrouter);
  1018. addropt(rp, OBrouter, rp->giaddr);
  1019. }
  1020. // OBhostname for the HP4000M switches
  1021. // (this causes NT to log infinite errors - tough shit )
  1022. if(*rp->ii.domain){
  1023. remrequested(rp, OBhostname);
  1024. stringopt(rp, OBhostname, rp->ii.domain);
  1025. }
  1026. if(*rp->ii.rootpath)
  1027. stringopt(rp, OBrootpath, rp->ii.rootpath);
  1028. /* figure out what we need to lookup */
  1029. na = 0;
  1030. a = attr;
  1031. if(*rp->ii.domain == 0)
  1032. a[na++] = "dom";
  1033. for(i = 0; i < sizeof(rp->requested); i++)
  1034. switch(rp->requested[i]){
  1035. case OBrouter:
  1036. a[na++] = "@ipgw";
  1037. break;
  1038. case OBdnserver:
  1039. a[na++] = "@dns";
  1040. break;
  1041. case OBnetbiosns:
  1042. a[na++] = "@wins";
  1043. break;
  1044. case OBsmtpserver:
  1045. a[na++] = "@smtp";
  1046. break;
  1047. case OBpop3server:
  1048. a[na++] = "@pop3";
  1049. break;
  1050. case OBwwwserver:
  1051. a[na++] = "@www";
  1052. break;
  1053. case OBntpserver:
  1054. a[na++] = "@ntp";
  1055. break;
  1056. case OBtimeserver:
  1057. a[na++] = "@time";
  1058. break;
  1059. }
  1060. if(strncmp((char*)rp->vendorclass, "plan9_", 6) == 0
  1061. || strncmp((char*)rp->vendorclass, "p9-", 3) == 0){
  1062. a[na++] = "@fs";
  1063. a[na++] = "@auth";
  1064. }
  1065. t = lookupinfo(ip, a, na);
  1066. /* lookup anything we might be missing */
  1067. if(*rp->ii.domain == 0)
  1068. lookupname(rp->ii.domain, t);
  1069. /* add any requested ones that we know about */
  1070. for(i = 0; i < sizeof(rp->requested); i++)
  1071. switch(rp->requested[i]){
  1072. case OBrouter:
  1073. j = lookupserver("ipgw", addrs, t);
  1074. addrsopt(rp, OBrouter, addrs, j);
  1075. break;
  1076. case OBdnserver:
  1077. j = lookupserver("dns", addrs, t);
  1078. addrsopt(rp, OBdnserver, addrs, j);
  1079. break;
  1080. case OBhostname:
  1081. if(*rp->ii.domain)
  1082. stringopt(rp, OBhostname, rp->ii.domain);
  1083. break;
  1084. case OBdomainname:
  1085. p = strchr(rp->ii.domain, '.');
  1086. if(p)
  1087. stringopt(rp, OBdomainname, p+1);
  1088. break;
  1089. case OBnetbiosns:
  1090. j = lookupserver("wins", addrs, t);
  1091. addrsopt(rp, OBnetbiosns, addrs, j);
  1092. break;
  1093. case OBnetbiostype:
  1094. /* p-node: peer to peer WINS queries */
  1095. byteopt(rp, OBnetbiostype, 0x2);
  1096. break;
  1097. case OBsmtpserver:
  1098. j = lookupserver("smtp", addrs, t);
  1099. addrsopt(rp, OBsmtpserver, addrs, j);
  1100. break;
  1101. case OBpop3server:
  1102. j = lookupserver("pop3", addrs, t);
  1103. addrsopt(rp, OBpop3server, addrs, j);
  1104. break;
  1105. case OBwwwserver:
  1106. j = lookupserver("www", addrs, t);
  1107. addrsopt(rp, OBwwwserver, addrs, j);
  1108. break;
  1109. case OBntpserver:
  1110. j = lookupserver("ntp", addrs, t);
  1111. addrsopt(rp, OBntpserver, addrs, j);
  1112. break;
  1113. case OBtimeserver:
  1114. j = lookupserver("time", addrs, t);
  1115. addrsopt(rp, OBtimeserver, addrs, j);
  1116. break;
  1117. case OBttl:
  1118. byteopt(rp, OBttl, 255);
  1119. break;
  1120. }
  1121. // add plan9 specific options
  1122. if(strncmp((char*)rp->vendorclass, "plan9_", 6) == 0
  1123. || strncmp((char*)rp->vendorclass, "p9-", 3) == 0){
  1124. // point to temporary area
  1125. op = rp->p;
  1126. omax = rp->max;
  1127. rp->p = vopts;
  1128. rp->max = vopts + sizeof(vopts) - 1;
  1129. j = lookupserver("fs", addrs, t);
  1130. addrsopt(rp, OP9fs, addrs, j);
  1131. j = lookupserver("auth", addrs, t);
  1132. addrsopt(rp, OP9auth, addrs, j);
  1133. // point back
  1134. j = rp->p - vopts;
  1135. rp->p = op;
  1136. rp->max = omax;
  1137. vectoropt(rp, OBvendorinfo, vopts, j);
  1138. }
  1139. ndbfree(t);
  1140. }
  1141. int
  1142. openlisten(char *net)
  1143. {
  1144. int fd, cfd;
  1145. char data[128];
  1146. char devdir[40];
  1147. sprint(data, "%s/udp!*!bootp", net);
  1148. cfd = announce(data, devdir);
  1149. if(cfd < 0)
  1150. fatal(1, "can't announce");
  1151. if(fprint(cfd, "headers") < 0)
  1152. fatal(1, "can't set header mode");
  1153. fprint(cfd, "oldheaders");
  1154. sprint(data, "%s/data", devdir);
  1155. fd = open(data, ORDWR);
  1156. if(fd < 0)
  1157. fatal(1, "open udp data");
  1158. return fd;
  1159. }
  1160. void
  1161. fatal(int syserr, char *fmt, ...)
  1162. {
  1163. char buf[ERRMAX];
  1164. va_list arg;
  1165. va_start(arg, fmt);
  1166. vseprint(buf, buf+sizeof(buf), fmt, arg);
  1167. va_end(arg);
  1168. if(syserr)
  1169. syslog(1, blog, "%s: %r", buf);
  1170. else
  1171. syslog(1, blog, "%s", buf);
  1172. exits(buf);
  1173. }
  1174. extern void
  1175. warning(int syserr, char *fmt, ...)
  1176. {
  1177. char buf[256];
  1178. va_list arg;
  1179. va_start(arg, fmt);
  1180. vseprint(buf, buf+sizeof(buf), fmt, arg);
  1181. va_end(arg);
  1182. if(syserr){
  1183. syslog(0, blog, "%s: %r", buf);
  1184. if(debug)
  1185. fprint(2, "%s: %r\n", buf);
  1186. } else {
  1187. syslog(0, blog, "%s", buf);
  1188. if(debug)
  1189. fprint(2, "%s\n", buf);
  1190. }
  1191. }
  1192. char*
  1193. readsysname(void)
  1194. {
  1195. static char name[128];
  1196. char *p;
  1197. int n, fd;
  1198. fd = open("/dev/sysname", OREAD);
  1199. if(fd >= 0){
  1200. n = read(fd, name, sizeof(name)-1);
  1201. close(fd);
  1202. if(n > 0){
  1203. name[n] = 0;
  1204. return name;
  1205. }
  1206. }
  1207. p = getenv("sysname");
  1208. if(p == nil || *p == 0)
  1209. return "unknown";
  1210. return p;
  1211. }
  1212. extern int
  1213. validip(uchar *ip)
  1214. {
  1215. if(ipcmp(ip, IPnoaddr) == 0)
  1216. return 0;
  1217. if(ipcmp(ip, v4prefix) == 0)
  1218. return 0;
  1219. return 1;
  1220. }
  1221. void
  1222. longopt(Req *rp, int t, long v)
  1223. {
  1224. if(rp->p + 6 > rp->max)
  1225. return;
  1226. *rp->p++ = t;
  1227. *rp->p++ = 4;
  1228. hnputl(rp->p, v);
  1229. rp->p += 4;
  1230. op = seprint(op, oe, "%s(%ld)", optname[t], v);
  1231. }
  1232. void
  1233. addropt(Req *rp, int t, uchar *ip)
  1234. {
  1235. if(rp->p + 6 > rp->max)
  1236. return;
  1237. *rp->p++ = t;
  1238. *rp->p++ = 4;
  1239. memmove(rp->p, ip+IPv4off, 4);
  1240. rp->p += 4;
  1241. op = seprint(op, oe, "%s(%I)", optname[t], ip);
  1242. }
  1243. void
  1244. maskopt(Req *rp, int t, uchar *ip)
  1245. {
  1246. if(rp->p + 6 > rp->max)
  1247. return;
  1248. *rp->p++ = t;
  1249. *rp->p++ = 4;
  1250. memmove(rp->p, ip+IPv4off, 4);
  1251. rp->p += 4;
  1252. op = seprint(op, oe, "%s(%M)", optname[t], ip);
  1253. }
  1254. void
  1255. addrsopt(Req *rp, int t, uchar **ip, int i)
  1256. {
  1257. if(i <= 0)
  1258. return;
  1259. if(rp->p + 2 + 4*i > rp->max)
  1260. return;
  1261. *rp->p++ = t;
  1262. *rp->p++ = 4*i;
  1263. op = seprint(op, oe, "%s(", optname[t]);
  1264. while(i-- > 0){
  1265. v6tov4(rp->p, *ip);
  1266. rp->p += 4;
  1267. op = seprint(op, oe, "%I", *ip);
  1268. ip++;
  1269. if(i > 0)
  1270. op = seprint(op, oe, " ");
  1271. }
  1272. op = seprint(op, oe, ")");
  1273. }
  1274. void
  1275. byteopt(Req *rp, int t, uchar v)
  1276. {
  1277. if(rp->p + 3 > rp->max)
  1278. return;
  1279. *rp->p++ = t;
  1280. *rp->p++ = 1;
  1281. *rp->p++ = v;
  1282. op = seprint(op, oe, "%s(%d)", optname[t], v);
  1283. }
  1284. void
  1285. termopt(Req *rp)
  1286. {
  1287. if(rp->p + 1 > rp->max)
  1288. return;
  1289. *rp->p++ = OBend;
  1290. }
  1291. void
  1292. stringopt(Req *rp, int t, char *str)
  1293. {
  1294. int n;
  1295. n = strlen(str);
  1296. if(n > 255)
  1297. n = 255;
  1298. if(rp->p+n+2 > rp->max)
  1299. return;
  1300. *rp->p++ = t;
  1301. *rp->p++ = n;
  1302. memmove(rp->p, str, n);
  1303. rp->p += n;
  1304. op = seprint(op, oe, "%s(%s)", optname[t], str);
  1305. }
  1306. void
  1307. vectoropt(Req *rp, int t, uchar *v, int n)
  1308. {
  1309. int i;
  1310. if(n > 255)
  1311. n = 255;
  1312. if(rp->p+n+2 > rp->max)
  1313. return;
  1314. *rp->p++ = t;
  1315. *rp->p++ = n;
  1316. memmove(rp->p, v, n);
  1317. rp->p += n;
  1318. op = seprint(op, oe, "%s(", optname[t]);
  1319. if(n > 0)
  1320. op = seprint(op, oe, "%ud", 0);
  1321. for(i = 1; i < n; i++)
  1322. op = seprint(op, oe, " %ud", v[i]);
  1323. }
  1324. int
  1325. fromhex(int x)
  1326. {
  1327. if(x >= '0' && x <= '9')
  1328. return x - '0';
  1329. return x - 'a';
  1330. }
  1331. void
  1332. hexopt(Req *rp, int t, char *str)
  1333. {
  1334. int n;
  1335. n = strlen(str);
  1336. n /= 2;
  1337. if(n > 255)
  1338. n = 255;
  1339. if(rp->p+n+2 > rp->max)
  1340. return;
  1341. *rp->p++ = t;
  1342. *rp->p++ = n;
  1343. while(n-- > 0){
  1344. *rp->p++ = (fromhex(str[0])<<4)|fromhex(str[1]);
  1345. str += 2;
  1346. }
  1347. op = seprint(op, oe, "%s(%s)", optname[t], str);
  1348. }
  1349. void
  1350. arpenter(uchar *ip, uchar *ether)
  1351. {
  1352. int f;
  1353. char buf[256];
  1354. /* brazil */
  1355. sprint(buf, "%s/arp", net);
  1356. f = open(buf, OWRITE);
  1357. if(f < 0){
  1358. syslog(debug, blog, "open %s: %r", buf);
  1359. return;
  1360. }
  1361. fprint(f, "add ether %I %E", ip, ether);
  1362. close(f);
  1363. }
  1364. char *dhcpmsgname[] =
  1365. {
  1366. [Discover] "Discover",
  1367. [Offer] "Offer",
  1368. [Request] "Request",
  1369. [Decline] "Decline",
  1370. [Ack] "Ack",
  1371. [Nak] "Nak",
  1372. [Release] "Release",
  1373. [Inform] "Inform",
  1374. };
  1375. void
  1376. logdhcp(Req *rp)
  1377. {
  1378. char buf[4096];
  1379. char *p, *e;
  1380. int i;
  1381. p = buf;
  1382. e = buf + sizeof(buf);
  1383. if(rp->dhcptype > 0 && rp->dhcptype <= Inform)
  1384. p = seprint(p, e, "%s(", dhcpmsgname[rp->dhcptype]);
  1385. else
  1386. p = seprint(p, e, "%d(", rp->dhcptype);
  1387. p = seprint(p, e, "%I->%I) xid(%ux)flag(%ux)", rp->up->raddr, rp->up->laddr,
  1388. nhgetl(rp->bp->xid), nhgets(rp->bp->flags));
  1389. if(rp->bp->htype == 1)
  1390. p = seprint(p, e, "ea(%E)", rp->bp->chaddr);
  1391. if(validip(rp->ciaddr))
  1392. p = seprint(p, e, "ci(%I)", rp->ciaddr);
  1393. if(validip(rp->giaddr))
  1394. p = seprint(p, e, "gi(%I)", rp->giaddr);
  1395. if(validip(rp->ip))
  1396. p = seprint(p, e, "ip(%I)", rp->ip);
  1397. if(rp->id != nil)
  1398. p = seprint(p, e, "id(%s)", rp->id);
  1399. if(rp->leasetime)
  1400. p = seprint(p, e, "leas(%d)", rp->leasetime);
  1401. if(validip(rp->server))
  1402. p = seprint(p, e, "sid(%I)", rp->server);
  1403. p = seprint(p, e, "need(");
  1404. for(i = 0; i < sizeof(rp->requested); i++)
  1405. if(rp->requested[i] != 0)
  1406. p = seprint(p, e, "%s ", optname[rp->requested[i]]);
  1407. p = seprint(p, e, ")");
  1408. USED(p);
  1409. syslog(0, blog, "%s", buf);
  1410. }
  1411. void
  1412. logdhcpout(Req *rp, char *type)
  1413. {
  1414. syslog(0, blog, "%s(%I-%I)id(%s)ci(%V)gi(%V)yi(%V)si(%V) %s",
  1415. type, rp->up->laddr, rp->up->raddr, rp->id,
  1416. rp->bp->ciaddr, rp->bp->giaddr, rp->bp->yiaddr, rp->bp->siaddr, optbuf);
  1417. }
  1418. /*
  1419. * if we get behind, it's useless to try answering since the sender
  1420. * will probably have retransmitted with a differnt sequence number.
  1421. * So dump all the last message in the queue.
  1422. */
  1423. void ding(void*, char *msg)
  1424. {
  1425. if(strstr(msg, "alarm"))
  1426. noted(NCONT);
  1427. else
  1428. noted(NDFLT);
  1429. }
  1430. int
  1431. readlast(int fd, uchar *buf, int len)
  1432. {
  1433. int lastn, n;
  1434. notify(ding);
  1435. lastn = 0;
  1436. for(;;){
  1437. alarm(20);
  1438. n = read(fd, buf, len);
  1439. alarm(0);
  1440. if(n < 0){
  1441. if(lastn > 0)
  1442. return lastn;
  1443. break;
  1444. }
  1445. lastn = n;
  1446. }
  1447. return read(fd, buf, len);
  1448. }