icmp.c 9.3 KB

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  1. #include "u.h"
  2. #include "../port/lib.h"
  3. #include "mem.h"
  4. #include "dat.h"
  5. #include "fns.h"
  6. #include "../port/error.h"
  7. #include "ip.h"
  8. typedef struct Icmp {
  9. uchar vihl; /* Version and header length */
  10. uchar tos; /* Type of service */
  11. uchar length[2]; /* packet length */
  12. uchar id[2]; /* Identification */
  13. uchar frag[2]; /* Fragment information */
  14. uchar ttl; /* Time to live */
  15. uchar proto; /* Protocol */
  16. uchar ipcksum[2]; /* Header checksum */
  17. uchar src[4]; /* Ip source */
  18. uchar dst[4]; /* Ip destination */
  19. uchar type;
  20. uchar code;
  21. uchar cksum[2];
  22. uchar icmpid[2];
  23. uchar seq[2];
  24. uchar data[1];
  25. } Icmp;
  26. enum { /* Packet Types */
  27. EchoReply = 0,
  28. Unreachable = 3,
  29. SrcQuench = 4,
  30. Redirect = 5,
  31. EchoRequest = 8,
  32. TimeExceed = 11,
  33. InParmProblem = 12,
  34. Timestamp = 13,
  35. TimestampReply = 14,
  36. InfoRequest = 15,
  37. InfoReply = 16,
  38. AddrMaskRequest = 17,
  39. AddrMaskReply = 18,
  40. Maxtype = 18,
  41. };
  42. enum
  43. {
  44. MinAdvise = 24, /* minimum needed for us to advise another protocol */
  45. };
  46. char *icmpnames[Maxtype+1] =
  47. {
  48. [EchoReply] "EchoReply",
  49. [Unreachable] "Unreachable",
  50. [SrcQuench] "SrcQuench",
  51. [Redirect] "Redirect",
  52. [EchoRequest] "EchoRequest",
  53. [TimeExceed] "TimeExceed",
  54. [InParmProblem] "InParmProblem",
  55. [Timestamp] "Timestamp",
  56. [TimestampReply] "TimestampReply",
  57. [InfoRequest] "InfoRequest",
  58. [InfoReply] "InfoReply",
  59. [AddrMaskRequest] "AddrMaskRequest",
  60. [AddrMaskReply ] "AddrMaskReply ",
  61. };
  62. enum {
  63. IP_ICMPPROTO = 1,
  64. ICMP_IPSIZE = 20,
  65. ICMP_HDRSIZE = 8,
  66. };
  67. enum
  68. {
  69. InMsgs,
  70. InErrors,
  71. OutMsgs,
  72. CsumErrs,
  73. LenErrs,
  74. HlenErrs,
  75. Nstats,
  76. };
  77. static char *statnames[Nstats] =
  78. {
  79. [InMsgs] "InMsgs",
  80. [InErrors] "InErrors",
  81. [OutMsgs] "OutMsgs",
  82. [CsumErrs] "CsumErrs",
  83. [LenErrs] "LenErrs",
  84. [HlenErrs] "HlenErrs",
  85. };
  86. typedef struct Icmppriv Icmppriv;
  87. struct Icmppriv
  88. {
  89. ulong stats[Nstats];
  90. /* message counts */
  91. ulong in[Maxtype+1];
  92. ulong out[Maxtype+1];
  93. };
  94. static void icmpkick(void *x, Block*);
  95. static void
  96. icmpcreate(Conv *c)
  97. {
  98. c->rq = qopen(64*1024, Qmsg, 0, c);
  99. c->wq = qbypass(icmpkick, c);
  100. }
  101. extern char*
  102. icmpconnect(Conv *c, char **argv, int argc)
  103. {
  104. char *e;
  105. e = Fsstdconnect(c, argv, argc);
  106. if(e != nil)
  107. return e;
  108. Fsconnected(c, e);
  109. return nil;
  110. }
  111. extern int
  112. icmpstate(Conv *c, char *state, int n)
  113. {
  114. USED(c);
  115. return snprint(state, n, "%s qin %d qout %d\n",
  116. "Datagram",
  117. c->rq ? qlen(c->rq) : 0,
  118. c->wq ? qlen(c->wq) : 0
  119. );
  120. }
  121. extern char*
  122. icmpannounce(Conv *c, char **argv, int argc)
  123. {
  124. char *e;
  125. e = Fsstdannounce(c, argv, argc);
  126. if(e != nil)
  127. return e;
  128. Fsconnected(c, nil);
  129. return nil;
  130. }
  131. extern void
  132. icmpclose(Conv *c)
  133. {
  134. qclose(c->rq);
  135. qclose(c->wq);
  136. ipmove(c->laddr, IPnoaddr);
  137. ipmove(c->raddr, IPnoaddr);
  138. c->lport = 0;
  139. }
  140. static void
  141. icmpkick(void *x, Block *bp)
  142. {
  143. Conv *c = x;
  144. Icmp *p;
  145. Icmppriv *ipriv;
  146. if(bp == nil)
  147. return;
  148. if(blocklen(bp) < ICMP_IPSIZE + ICMP_HDRSIZE){
  149. freeblist(bp);
  150. return;
  151. }
  152. p = (Icmp *)(bp->rp);
  153. p->vihl = IP_VER4;
  154. ipriv = c->p->priv;
  155. if(p->type <= Maxtype)
  156. ipriv->out[p->type]++;
  157. v6tov4(p->dst, c->raddr);
  158. v6tov4(p->src, c->laddr);
  159. p->proto = IP_ICMPPROTO;
  160. hnputs(p->icmpid, c->lport);
  161. memset(p->cksum, 0, sizeof(p->cksum));
  162. hnputs(p->cksum, ptclcsum(bp, ICMP_IPSIZE, blocklen(bp) - ICMP_IPSIZE));
  163. ipriv->stats[OutMsgs]++;
  164. ipoput4(c->p->f, bp, 0, c->ttl, c->tos, nil);
  165. }
  166. extern void
  167. icmpttlexceeded(Fs *f, uchar *ia, Block *bp)
  168. {
  169. Block *nbp;
  170. Icmp *p, *np;
  171. p = (Icmp *)bp->rp;
  172. netlog(f, Logicmp, "sending icmpttlexceeded -> %V\n", p->src);
  173. nbp = allocb(ICMP_IPSIZE + ICMP_HDRSIZE + ICMP_IPSIZE + 8);
  174. nbp->wp += ICMP_IPSIZE + ICMP_HDRSIZE + ICMP_IPSIZE + 8;
  175. np = (Icmp *)nbp->rp;
  176. np->vihl = IP_VER4;
  177. memmove(np->dst, p->src, sizeof(np->dst));
  178. v6tov4(np->src, ia);
  179. memmove(np->data, bp->rp, ICMP_IPSIZE + 8);
  180. np->type = TimeExceed;
  181. np->code = 0;
  182. np->proto = IP_ICMPPROTO;
  183. hnputs(np->icmpid, 0);
  184. hnputs(np->seq, 0);
  185. memset(np->cksum, 0, sizeof(np->cksum));
  186. hnputs(np->cksum, ptclcsum(nbp, ICMP_IPSIZE, blocklen(nbp) - ICMP_IPSIZE));
  187. ipoput4(f, nbp, 0, MAXTTL, DFLTTOS, nil);
  188. }
  189. static void
  190. icmpunreachable(Fs *f, Block *bp, int code, int seq)
  191. {
  192. Block *nbp;
  193. Icmp *p, *np;
  194. int i;
  195. uchar addr[IPaddrlen];
  196. p = (Icmp *)bp->rp;
  197. /* only do this for unicast sources and destinations */
  198. v4tov6(addr, p->dst);
  199. i = ipforme(f, addr);
  200. if((i&Runi) == 0)
  201. return;
  202. v4tov6(addr, p->src);
  203. i = ipforme(f, addr);
  204. if(i != 0 && (i&Runi) == 0)
  205. return;
  206. netlog(f, Logicmp, "sending icmpnoconv -> %V\n", p->src);
  207. nbp = allocb(ICMP_IPSIZE + ICMP_HDRSIZE + ICMP_IPSIZE + 8);
  208. nbp->wp += ICMP_IPSIZE + ICMP_HDRSIZE + ICMP_IPSIZE + 8;
  209. np = (Icmp *)nbp->rp;
  210. np->vihl = IP_VER4;
  211. memmove(np->dst, p->src, sizeof(np->dst));
  212. memmove(np->src, p->dst, sizeof(np->src));
  213. memmove(np->data, bp->rp, ICMP_IPSIZE + 8);
  214. np->type = Unreachable;
  215. np->code = code;
  216. np->proto = IP_ICMPPROTO;
  217. hnputs(np->icmpid, 0);
  218. hnputs(np->seq, seq);
  219. memset(np->cksum, 0, sizeof(np->cksum));
  220. hnputs(np->cksum, ptclcsum(nbp, ICMP_IPSIZE, blocklen(nbp) - ICMP_IPSIZE));
  221. ipoput4(f, nbp, 0, MAXTTL, DFLTTOS, nil);
  222. }
  223. extern void
  224. icmpnoconv(Fs *f, Block *bp)
  225. {
  226. icmpunreachable(f, bp, 3, 0);
  227. }
  228. extern void
  229. icmpcantfrag(Fs *f, Block *bp, int mtu)
  230. {
  231. icmpunreachable(f, bp, 4, mtu);
  232. }
  233. static void
  234. goticmpkt(Proto *icmp, Block *bp)
  235. {
  236. Conv **c, *s;
  237. Icmp *p;
  238. uchar dst[IPaddrlen];
  239. ushort recid;
  240. p = (Icmp *) bp->rp;
  241. v4tov6(dst, p->src);
  242. recid = nhgets(p->icmpid);
  243. for(c = icmp->conv; *c; c++) {
  244. s = *c;
  245. if(s->lport == recid)
  246. if(ipcmp(s->raddr, dst) == 0){
  247. bp = concatblock(bp);
  248. if(bp != nil)
  249. qpass(s->rq, bp);
  250. return;
  251. }
  252. }
  253. freeblist(bp);
  254. }
  255. static Block *
  256. mkechoreply(Block *bp)
  257. {
  258. Icmp *q;
  259. uchar ip[4];
  260. q = (Icmp *)bp->rp;
  261. q->vihl = IP_VER4;
  262. memmove(ip, q->src, sizeof(q->dst));
  263. memmove(q->src, q->dst, sizeof(q->src));
  264. memmove(q->dst, ip, sizeof(q->dst));
  265. q->type = EchoReply;
  266. memset(q->cksum, 0, sizeof(q->cksum));
  267. hnputs(q->cksum, ptclcsum(bp, ICMP_IPSIZE, blocklen(bp) - ICMP_IPSIZE));
  268. return bp;
  269. }
  270. static char *unreachcode[] =
  271. {
  272. [0] "net unreachable",
  273. [1] "host unreachable",
  274. [2] "protocol unreachable",
  275. [3] "port unreachable",
  276. [4] "fragmentation needed and DF set",
  277. [5] "source route failed",
  278. };
  279. static void
  280. icmpiput(Proto *icmp, Ipifc*, Block *bp)
  281. {
  282. int n, iplen;
  283. Icmp *p;
  284. Block *r;
  285. Proto *pr;
  286. char *msg;
  287. char m2[128];
  288. Icmppriv *ipriv;
  289. ipriv = icmp->priv;
  290. ipriv->stats[InMsgs]++;
  291. p = (Icmp *)bp->rp;
  292. netlog(icmp->f, Logicmp, "icmpiput %s (%d) %d\n",
  293. (p->type < nelem(icmpnames)? icmpnames[p->type]: ""),
  294. p->type, p->code);
  295. n = blocklen(bp);
  296. if(n < ICMP_IPSIZE+ICMP_HDRSIZE){
  297. ipriv->stats[InErrors]++;
  298. ipriv->stats[HlenErrs]++;
  299. netlog(icmp->f, Logicmp, "icmp hlen %d\n", n);
  300. goto raise;
  301. }
  302. iplen = nhgets(p->length);
  303. if(iplen > n){
  304. ipriv->stats[LenErrs]++;
  305. ipriv->stats[InErrors]++;
  306. netlog(icmp->f, Logicmp, "icmp length %d\n", iplen);
  307. goto raise;
  308. }
  309. if(ptclcsum(bp, ICMP_IPSIZE, iplen - ICMP_IPSIZE)){
  310. ipriv->stats[InErrors]++;
  311. ipriv->stats[CsumErrs]++;
  312. netlog(icmp->f, Logicmp, "icmp checksum error\n");
  313. goto raise;
  314. }
  315. if(p->type <= Maxtype)
  316. ipriv->in[p->type]++;
  317. switch(p->type) {
  318. case EchoRequest:
  319. if (iplen < n)
  320. bp = trimblock(bp, 0, iplen);
  321. r = mkechoreply(concatblock(bp));
  322. ipriv->out[EchoReply]++;
  323. ipoput4(icmp->f, r, 0, MAXTTL, DFLTTOS, nil);
  324. break;
  325. case Unreachable:
  326. if(p->code > 5)
  327. msg = unreachcode[1];
  328. else
  329. msg = unreachcode[p->code];
  330. bp->rp += ICMP_IPSIZE+ICMP_HDRSIZE;
  331. if(blocklen(bp) < MinAdvise){
  332. ipriv->stats[LenErrs]++;
  333. goto raise;
  334. }
  335. p = (Icmp *)bp->rp;
  336. pr = Fsrcvpcolx(icmp->f, p->proto);
  337. if(pr != nil && pr->advise != nil) {
  338. (*pr->advise)(pr, bp, msg);
  339. return;
  340. }
  341. bp->rp -= ICMP_IPSIZE+ICMP_HDRSIZE;
  342. goticmpkt(icmp, bp);
  343. break;
  344. case TimeExceed:
  345. if(p->code == 0){
  346. snprint(m2, sizeof m2, "ttl exceeded at %V", p->src);
  347. bp->rp += ICMP_IPSIZE+ICMP_HDRSIZE;
  348. if(blocklen(bp) < MinAdvise){
  349. ipriv->stats[LenErrs]++;
  350. goto raise;
  351. }
  352. p = (Icmp *)bp->rp;
  353. pr = Fsrcvpcolx(icmp->f, p->proto);
  354. if(pr != nil && pr->advise != nil) {
  355. (*pr->advise)(pr, bp, m2);
  356. return;
  357. }
  358. bp->rp -= ICMP_IPSIZE+ICMP_HDRSIZE;
  359. }
  360. goticmpkt(icmp, bp);
  361. break;
  362. default:
  363. goticmpkt(icmp, bp);
  364. break;
  365. }
  366. return;
  367. raise:
  368. freeblist(bp);
  369. }
  370. void
  371. icmpadvise(Proto *icmp, Block *bp, char *msg)
  372. {
  373. Conv **c, *s;
  374. Icmp *p;
  375. uchar dst[IPaddrlen];
  376. ushort recid;
  377. p = (Icmp *) bp->rp;
  378. v4tov6(dst, p->dst);
  379. recid = nhgets(p->icmpid);
  380. for(c = icmp->conv; *c; c++) {
  381. s = *c;
  382. if(s->lport == recid)
  383. if(ipcmp(s->raddr, dst) == 0){
  384. qhangup(s->rq, msg);
  385. qhangup(s->wq, msg);
  386. break;
  387. }
  388. }
  389. freeblist(bp);
  390. }
  391. int
  392. icmpstats(Proto *icmp, char *buf, int len)
  393. {
  394. Icmppriv *priv;
  395. char *p, *e;
  396. int i;
  397. priv = icmp->priv;
  398. p = buf;
  399. e = p+len;
  400. for(i = 0; i < Nstats; i++)
  401. p = seprint(p, e, "%s: %lud\n", statnames[i], priv->stats[i]);
  402. for(i = 0; i <= Maxtype; i++){
  403. if(icmpnames[i])
  404. p = seprint(p, e, "%s: %lud %lud\n", icmpnames[i], priv->in[i], priv->out[i]);
  405. else
  406. p = seprint(p, e, "%d: %lud %lud\n", i, priv->in[i], priv->out[i]);
  407. }
  408. return p - buf;
  409. }
  410. void
  411. icmpinit(Fs *fs)
  412. {
  413. Proto *icmp;
  414. icmp = smalloc(sizeof(Proto));
  415. icmp->priv = smalloc(sizeof(Icmppriv));
  416. icmp->name = "icmp";
  417. icmp->connect = icmpconnect;
  418. icmp->announce = icmpannounce;
  419. icmp->state = icmpstate;
  420. icmp->create = icmpcreate;
  421. icmp->close = icmpclose;
  422. icmp->rcv = icmpiput;
  423. icmp->stats = icmpstats;
  424. icmp->ctl = nil;
  425. icmp->advise = icmpadvise;
  426. icmp->gc = nil;
  427. icmp->ipproto = IP_ICMPPROTO;
  428. icmp->nc = 128;
  429. icmp->ptclsize = 0;
  430. Fsproto(fs, icmp);
  431. }