tcp.c 64 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. enum
  9. {
  10. QMAX = 64*1024-1,
  11. IP_TCPPROTO = 6,
  12. TCP4_IPLEN = 8,
  13. TCP4_PHDRSIZE = 12,
  14. TCP4_HDRSIZE = 20,
  15. TCP4_TCBPHDRSZ = 40,
  16. TCP4_PKT = TCP4_IPLEN+TCP4_PHDRSIZE,
  17. TCP6_IPLEN = 0,
  18. TCP6_PHDRSIZE = 40,
  19. TCP6_HDRSIZE = 20,
  20. TCP6_TCBPHDRSZ = 60,
  21. TCP6_PKT = TCP6_IPLEN+TCP6_PHDRSIZE,
  22. TcptimerOFF = 0,
  23. TcptimerON = 1,
  24. TcptimerDONE = 2,
  25. MAX_TIME = (1<<20), /* Forever */
  26. TCP_ACK = 50, /* Timed ack sequence in ms */
  27. MAXBACKMS = 30000, /* longest backoff time (ms) before hangup */
  28. URG = 0x20, /* Data marked urgent */
  29. ACK = 0x10, /* Acknowledge is valid */
  30. PSH = 0x08, /* Whole data pipe is pushed */
  31. RST = 0x04, /* Reset connection */
  32. SYN = 0x02, /* Pkt. is synchronise */
  33. FIN = 0x01, /* Start close down */
  34. EOLOPT = 0,
  35. NOOPOPT = 1,
  36. MSSOPT = 2,
  37. MSS_LENGTH = 4, /* Mean segment size */
  38. WSOPT = 3,
  39. WS_LENGTH = 3, /* Bits to scale window size by */
  40. MSL2 = 10,
  41. MSPTICK = 50, /* Milliseconds per timer tick */
  42. DEF_MSS = 1460, /* Default mean segment */
  43. DEF_MSS6 = 1280, /* Default mean segment (min) for v6 */
  44. DEF_RTT = 500, /* Default round trip */
  45. DEF_KAT = 30000, /* Default time ms) between keep alives */
  46. TCP_LISTEN = 0, /* Listen connection */
  47. TCP_CONNECT = 1, /* Outgoing connection */
  48. SYNACK_RXTIMER = 250, /* ms between SYNACK retransmits */
  49. TCPREXMTTHRESH = 3, /* dupack threshhold for rxt */
  50. FORCE = 1,
  51. CLONE = 2,
  52. RETRAN = 4,
  53. ACTIVE = 8,
  54. SYNACK = 16,
  55. LOGAGAIN = 3,
  56. LOGDGAIN = 2,
  57. Closed = 0, /* Connection states */
  58. Listen,
  59. Syn_sent,
  60. Syn_received,
  61. Established,
  62. Finwait1,
  63. Finwait2,
  64. Close_wait,
  65. Closing,
  66. Last_ack,
  67. Time_wait,
  68. Maxlimbo = 1000, /* maximum procs waiting for response to SYN ACK */
  69. NLHT = 256, /* hash table size, must be a power of 2 */
  70. LHTMASK = NLHT-1,
  71. HaveWS = 1<<8,
  72. };
  73. /* Must correspond to the enumeration above */
  74. char *tcpstates[] =
  75. {
  76. "Closed", "Listen", "Syn_sent", "Syn_received",
  77. "Established", "Finwait1", "Finwait2", "Close_wait",
  78. "Closing", "Last_ack", "Time_wait"
  79. };
  80. typedef struct Tcptimer Tcptimer;
  81. struct Tcptimer
  82. {
  83. Tcptimer *next;
  84. Tcptimer *prev;
  85. Tcptimer *readynext;
  86. int state;
  87. int start;
  88. int count;
  89. void (*func)(void*);
  90. void *arg;
  91. };
  92. /*
  93. * v4 and v6 pseudo headers used for
  94. * checksuming tcp
  95. */
  96. typedef struct Tcp4hdr Tcp4hdr;
  97. struct Tcp4hdr
  98. {
  99. uchar vihl; /* Version and header length */
  100. uchar tos; /* Type of service */
  101. uchar length[2]; /* packet length */
  102. uchar id[2]; /* Identification */
  103. uchar frag[2]; /* Fragment information */
  104. uchar Unused;
  105. uchar proto;
  106. uchar tcplen[2];
  107. uchar tcpsrc[4];
  108. uchar tcpdst[4];
  109. uchar tcpsport[2];
  110. uchar tcpdport[2];
  111. uchar tcpseq[4];
  112. uchar tcpack[4];
  113. uchar tcpflag[2];
  114. uchar tcpwin[2];
  115. uchar tcpcksum[2];
  116. uchar tcpurg[2];
  117. /* Options segment */
  118. uchar tcpopt[1];
  119. };
  120. typedef struct Tcp6hdr Tcp6hdr;
  121. struct Tcp6hdr
  122. {
  123. uchar vcf[4];
  124. uchar ploadlen[2];
  125. uchar proto;
  126. uchar ttl;
  127. uchar tcpsrc[IPaddrlen];
  128. uchar tcpdst[IPaddrlen];
  129. uchar tcpsport[2];
  130. uchar tcpdport[2];
  131. uchar tcpseq[4];
  132. uchar tcpack[4];
  133. uchar tcpflag[2];
  134. uchar tcpwin[2];
  135. uchar tcpcksum[2];
  136. uchar tcpurg[2];
  137. /* Options segment */
  138. uchar tcpopt[1];
  139. };
  140. /*
  141. * this represents the control info
  142. * for a single packet. It is derived from
  143. * a packet in ntohtcp{4,6}() and stuck into
  144. * a packet in htontcp{4,6}().
  145. */
  146. typedef struct Tcp Tcp;
  147. struct Tcp
  148. {
  149. ushort source;
  150. ushort dest;
  151. ulong seq;
  152. ulong ack;
  153. uchar flags;
  154. ushort ws; /* window scale option (if not zero) */
  155. ulong wnd;
  156. ushort urg;
  157. ushort mss; /* max segment size option (if not zero) */
  158. ushort len; /* size of data */
  159. };
  160. /*
  161. * this header is malloc'd to thread together fragments
  162. * waiting to be coalesced
  163. */
  164. typedef struct Reseq Reseq;
  165. struct Reseq
  166. {
  167. Reseq *next;
  168. Tcp seg;
  169. Block *bp;
  170. ushort length;
  171. };
  172. /*
  173. * the qlock in the Conv locks this structure
  174. */
  175. typedef struct Tcpctl Tcpctl;
  176. struct Tcpctl
  177. {
  178. uchar state; /* Connection state */
  179. uchar type; /* Listening or active connection */
  180. uchar code; /* Icmp code */
  181. struct {
  182. ulong una; /* Unacked data pointer */
  183. ulong nxt; /* Next sequence expected */
  184. ulong ptr; /* Data pointer */
  185. ulong wnd; /* Tcp send window */
  186. ulong urg; /* Urgent data pointer */
  187. ulong wl2;
  188. int scale; /* how much to right shift window in xmitted packets */
  189. /* to implement tahoe and reno TCP */
  190. ulong dupacks; /* number of duplicate acks rcvd */
  191. int recovery; /* loss recovery flag */
  192. ulong rxt; /* right window marker for recovery */
  193. } snd;
  194. struct {
  195. ulong nxt; /* Receive pointer to next uchar slot */
  196. ulong wnd; /* Receive window incoming */
  197. ulong urg; /* Urgent pointer */
  198. int blocked;
  199. int una; /* unacked data segs */
  200. int scale; /* how much to left shift window in rcved packets */
  201. } rcv;
  202. ulong iss; /* Initial sequence number */
  203. int sawwsopt; /* true if we saw a wsopt on the incoming SYN */
  204. ulong cwind; /* Congestion window */
  205. int scale; /* desired snd.scale */
  206. ushort ssthresh; /* Slow start threshold */
  207. int resent; /* Bytes just resent */
  208. int irs; /* Initial received squence */
  209. ushort mss; /* Mean segment size */
  210. int rerecv; /* Overlap of data rerecevived */
  211. ulong window; /* Recevive window */
  212. uchar backoff; /* Exponential backoff counter */
  213. int backedoff; /* ms we've backed off for rexmits */
  214. uchar flags; /* State flags */
  215. Reseq *reseq; /* Resequencing queue */
  216. Tcptimer timer; /* Activity timer */
  217. Tcptimer acktimer; /* Acknowledge timer */
  218. Tcptimer rtt_timer; /* Round trip timer */
  219. Tcptimer katimer; /* keep alive timer */
  220. ulong rttseq; /* Round trip sequence */
  221. int srtt; /* Shortened round trip */
  222. int mdev; /* Mean deviation of round trip */
  223. int kacounter; /* count down for keep alive */
  224. uint sndsyntime; /* time syn sent */
  225. ulong time; /* time Finwait2 or Syn_received was sent */
  226. int nochecksum; /* non-zero means don't send checksums */
  227. int flgcnt; /* number of flags in the sequence (FIN,SEQ) */
  228. union {
  229. Tcp4hdr tcp4hdr;
  230. Tcp6hdr tcp6hdr;
  231. } protohdr; /* prototype header */
  232. };
  233. /*
  234. * New calls are put in limbo rather than having a conversation structure
  235. * allocated. Thus, a SYN attack results in lots of limbo'd calls but not
  236. * any real Conv structures mucking things up. Calls in limbo rexmit their
  237. * SYN ACK every SYNACK_RXTIMER ms up to 4 times, i.e., they disappear after 1 second.
  238. *
  239. * In particular they aren't on a listener's queue so that they don't figure
  240. * in the input queue limit.
  241. *
  242. * If 1/2 of a T3 was attacking SYN packets, we'ld have a permanent queue
  243. * of 70000 limbo'd calls. Not great for a linear list but doable. Therefore
  244. * there is no hashing of this list.
  245. */
  246. typedef struct Limbo Limbo;
  247. struct Limbo
  248. {
  249. Limbo *next;
  250. uchar laddr[IPaddrlen];
  251. uchar raddr[IPaddrlen];
  252. ushort lport;
  253. ushort rport;
  254. ulong irs; /* initial received sequence */
  255. ulong iss; /* initial sent sequence */
  256. ushort mss; /* mss from the other end */
  257. ushort rcvscale; /* how much to scale rcvd windows */
  258. ushort sndscale; /* how much to scale sent windows */
  259. ulong lastsend; /* last time we sent a synack */
  260. uchar version; /* v4 or v6 */
  261. uchar rexmits; /* number of retransmissions */
  262. };
  263. int tcp_irtt = DEF_RTT; /* Initial guess at round trip time */
  264. ushort tcp_mss = DEF_MSS; /* Maximum segment size to be sent */
  265. enum {
  266. /* MIB stats */
  267. MaxConn,
  268. ActiveOpens,
  269. PassiveOpens,
  270. EstabResets,
  271. CurrEstab,
  272. InSegs,
  273. OutSegs,
  274. RetransSegs,
  275. RetransTimeouts,
  276. InErrs,
  277. OutRsts,
  278. /* non-MIB stats */
  279. CsumErrs,
  280. HlenErrs,
  281. LenErrs,
  282. OutOfOrder,
  283. Nstats
  284. };
  285. static char *statnames[] =
  286. {
  287. [MaxConn] "MaxConn",
  288. [ActiveOpens] "ActiveOpens",
  289. [PassiveOpens] "PassiveOpens",
  290. [EstabResets] "EstabResets",
  291. [CurrEstab] "CurrEstab",
  292. [InSegs] "InSegs",
  293. [OutSegs] "OutSegs",
  294. [RetransSegs] "RetransSegs",
  295. [RetransTimeouts] "RetransTimeouts",
  296. [InErrs] "InErrs",
  297. [OutRsts] "OutRsts",
  298. [CsumErrs] "CsumErrs",
  299. [HlenErrs] "HlenErrs",
  300. [LenErrs] "LenErrs",
  301. [OutOfOrder] "OutOfOrder",
  302. };
  303. typedef struct Tcppriv Tcppriv;
  304. struct Tcppriv
  305. {
  306. /* List of active timers */
  307. QLock tl;
  308. Tcptimer *timers;
  309. Rendez tcpr; /* used by tcpackproc */
  310. /* hash table for matching conversations */
  311. Ipht ht;
  312. /* calls in limbo waiting for an ACK to our SYN ACK */
  313. int nlimbo;
  314. Limbo *lht[NLHT];
  315. /* for keeping track of tcpackproc */
  316. QLock apl;
  317. int ackprocstarted;
  318. ulong stats[Nstats];
  319. };
  320. /*
  321. * Setting tcpporthogdefense to non-zero enables Dong Lin's
  322. * solution to hijacked systems staking out port's as a form
  323. * of DoS attack.
  324. *
  325. * To avoid stateless Conv hogs, we pick a sequence number at random. If
  326. * it that number gets acked by the other end, we shut down the connection.
  327. * Look for tcpporthogedefense in the code.
  328. */
  329. int tcpporthogdefense = 0;
  330. int addreseq(Tcpctl*, Tcppriv*, Tcp*, Block*, ushort);
  331. void getreseq(Tcpctl*, Tcp*, Block**, ushort*);
  332. void localclose(Conv*, char*);
  333. void procsyn(Conv*, Tcp*);
  334. void tcpiput(Proto*, Ipifc*, Block*);
  335. void tcpoutput(Conv*);
  336. int tcptrim(Tcpctl*, Tcp*, Block**, ushort*);
  337. void tcpstart(Conv*, int);
  338. void tcptimeout(void*);
  339. void tcpsndsyn(Conv*, Tcpctl*);
  340. void tcprcvwin(Conv*);
  341. void tcpacktimer(void*);
  342. void tcpkeepalive(void*);
  343. void tcpsetkacounter(Tcpctl*);
  344. void tcprxmit(Conv*);
  345. void tcpsettimer(Tcpctl*);
  346. void tcpsynackrtt(Conv*);
  347. void tcpsetscale(Conv*, Tcpctl*, ushort, ushort);
  348. static void limborexmit(Proto*);
  349. static void limbo(Conv*, uchar*, uchar*, Tcp*, int);
  350. void
  351. tcpsetstate(Conv *s, uchar newstate)
  352. {
  353. Tcpctl *tcb;
  354. uchar oldstate;
  355. Tcppriv *tpriv;
  356. tpriv = s->p->priv;
  357. tcb = (Tcpctl*)s->ptcl;
  358. oldstate = tcb->state;
  359. if(oldstate == newstate)
  360. return;
  361. if(oldstate == Established)
  362. tpriv->stats[CurrEstab]--;
  363. if(newstate == Established)
  364. tpriv->stats[CurrEstab]++;
  365. /**
  366. print( "%d/%d %s->%s CurrEstab=%d\n", s->lport, s->rport,
  367. tcpstates[oldstate], tcpstates[newstate], tpriv->tstats.tcpCurrEstab );
  368. **/
  369. switch(newstate) {
  370. case Closed:
  371. qclose(s->rq);
  372. qclose(s->wq);
  373. qclose(s->eq);
  374. break;
  375. case Close_wait: /* Remote closes */
  376. qhangup(s->rq, nil);
  377. break;
  378. }
  379. tcb->state = newstate;
  380. if(oldstate == Syn_sent && newstate != Closed)
  381. Fsconnected(s, nil);
  382. }
  383. static char*
  384. tcpconnect(Conv *c, char **argv, int argc)
  385. {
  386. char *e;
  387. e = Fsstdconnect(c, argv, argc);
  388. if(e != nil)
  389. return e;
  390. tcpstart(c, TCP_CONNECT);
  391. return nil;
  392. }
  393. static int
  394. tcpstate(Conv *c, char *state, int n)
  395. {
  396. Tcpctl *s;
  397. s = (Tcpctl*)(c->ptcl);
  398. return snprint(state, n,
  399. "%s srtt %d mdev %d cwin %lud swin %lud>>%d rwin %lud>>%d timer.start %d timer.count %d rerecv %d\n",
  400. tcpstates[s->state], s->srtt, s->mdev,
  401. s->cwind, s->snd.wnd, s->rcv.scale, s->rcv.wnd, s->snd.scale,
  402. s->timer.start, s->timer.count, s->rerecv);
  403. }
  404. static int
  405. tcpinuse(Conv *c)
  406. {
  407. Tcpctl *s;
  408. s = (Tcpctl*)(c->ptcl);
  409. return s->state != Closed;
  410. }
  411. static char*
  412. tcpannounce(Conv *c, char **argv, int argc)
  413. {
  414. char *e;
  415. e = Fsstdannounce(c, argv, argc);
  416. if(e != nil)
  417. return e;
  418. tcpstart(c, TCP_LISTEN);
  419. Fsconnected(c, nil);
  420. return nil;
  421. }
  422. /*
  423. * tcpclose is always called with the q locked
  424. */
  425. static void
  426. tcpclose(Conv *c)
  427. {
  428. Tcpctl *tcb;
  429. tcb = (Tcpctl*)c->ptcl;
  430. qhangup(c->rq, nil);
  431. qhangup(c->wq, nil);
  432. qhangup(c->eq, nil);
  433. qflush(c->rq);
  434. switch(tcb->state) {
  435. case Listen:
  436. /*
  437. * reset any incoming calls to this listener
  438. */
  439. Fsconnected(c, "Hangup");
  440. localclose(c, nil);
  441. break;
  442. case Closed:
  443. case Syn_sent:
  444. localclose(c, nil);
  445. break;
  446. case Syn_received:
  447. case Established:
  448. tcb->flgcnt++;
  449. tcb->snd.nxt++;
  450. tcpsetstate(c, Finwait1);
  451. tcpoutput(c);
  452. break;
  453. case Close_wait:
  454. tcb->flgcnt++;
  455. tcb->snd.nxt++;
  456. tcpsetstate(c, Last_ack);
  457. tcpoutput(c);
  458. break;
  459. }
  460. }
  461. void
  462. tcpkick(void *x)
  463. {
  464. Conv *s = x;
  465. Tcpctl *tcb;
  466. tcb = (Tcpctl*)s->ptcl;
  467. if(waserror()){
  468. qunlock(s);
  469. nexterror();
  470. }
  471. qlock(s);
  472. switch(tcb->state) {
  473. case Syn_sent:
  474. case Syn_received:
  475. case Established:
  476. case Close_wait:
  477. /*
  478. * Push data
  479. */
  480. tcprcvwin(s);
  481. tcpoutput(s);
  482. break;
  483. default:
  484. localclose(s, "Hangup");
  485. break;
  486. }
  487. qunlock(s);
  488. poperror();
  489. }
  490. void
  491. tcprcvwin(Conv *s) /* Call with tcb locked */
  492. {
  493. int w;
  494. Tcpctl *tcb;
  495. tcb = (Tcpctl*)s->ptcl;
  496. w = tcb->window - qlen(s->rq);
  497. if(w < 0)
  498. w = 0;
  499. tcb->rcv.wnd = w;
  500. if(w == 0)
  501. tcb->rcv.blocked = 1;
  502. }
  503. void
  504. tcpacktimer(void *v)
  505. {
  506. Tcpctl *tcb;
  507. Conv *s;
  508. s = v;
  509. tcb = (Tcpctl*)s->ptcl;
  510. if(waserror()){
  511. qunlock(s);
  512. nexterror();
  513. }
  514. qlock(s);
  515. if(tcb->state != Closed){
  516. tcb->flags |= FORCE;
  517. tcprcvwin(s);
  518. tcpoutput(s);
  519. }
  520. qunlock(s);
  521. poperror();
  522. }
  523. static void
  524. tcpcreate(Conv *c)
  525. {
  526. c->rq = qopen(QMAX, Qcoalesce, tcpacktimer, c);
  527. c->wq = qopen((3*QMAX)/2, Qkick, tcpkick, c);
  528. }
  529. static void
  530. timerstate(Tcppriv *priv, Tcptimer *t, int newstate)
  531. {
  532. if(newstate != TcptimerON){
  533. if(t->state == TcptimerON){
  534. // unchain
  535. if(priv->timers == t){
  536. priv->timers = t->next;
  537. if(t->prev != nil)
  538. panic("timerstate1");
  539. }
  540. if(t->next)
  541. t->next->prev = t->prev;
  542. if(t->prev)
  543. t->prev->next = t->next;
  544. t->next = t->prev = nil;
  545. }
  546. } else {
  547. if(t->state != TcptimerON){
  548. // chain
  549. if(t->prev != nil || t->next != nil)
  550. panic("timerstate2");
  551. t->prev = nil;
  552. t->next = priv->timers;
  553. if(t->next)
  554. t->next->prev = t;
  555. priv->timers = t;
  556. }
  557. }
  558. t->state = newstate;
  559. }
  560. void
  561. tcpackproc(void *a)
  562. {
  563. Tcptimer *t, *tp, *timeo;
  564. Proto *tcp;
  565. Tcppriv *priv;
  566. int loop;
  567. tcp = a;
  568. priv = tcp->priv;
  569. for(;;) {
  570. tsleep(&priv->tcpr, return0, 0, MSPTICK);
  571. qlock(&priv->tl);
  572. timeo = nil;
  573. loop = 0;
  574. for(t = priv->timers; t != nil; t = tp) {
  575. if(loop++ > 10000)
  576. panic("tcpackproc1");
  577. tp = t->next;
  578. if(t->state == TcptimerON) {
  579. t->count--;
  580. if(t->count == 0) {
  581. timerstate(priv, t, TcptimerDONE);
  582. t->readynext = timeo;
  583. timeo = t;
  584. }
  585. }
  586. }
  587. qunlock(&priv->tl);
  588. loop = 0;
  589. for(t = timeo; t != nil; t = t->readynext) {
  590. if(loop++ > 10000)
  591. panic("tcpackproc2");
  592. if(t->state == TcptimerDONE && t->func != nil && !waserror()){
  593. (*t->func)(t->arg);
  594. poperror();
  595. }
  596. }
  597. limborexmit(tcp);
  598. }
  599. }
  600. void
  601. tcpgo(Tcppriv *priv, Tcptimer *t)
  602. {
  603. if(t == nil || t->start == 0)
  604. return;
  605. qlock(&priv->tl);
  606. t->count = t->start;
  607. timerstate(priv, t, TcptimerON);
  608. qunlock(&priv->tl);
  609. }
  610. void
  611. tcphalt(Tcppriv *priv, Tcptimer *t)
  612. {
  613. if(t == nil)
  614. return;
  615. qlock(&priv->tl);
  616. timerstate(priv, t, TcptimerOFF);
  617. qunlock(&priv->tl);
  618. }
  619. int
  620. backoff(int n)
  621. {
  622. if(n < 5)
  623. return 1 << n;
  624. return 64;
  625. }
  626. void
  627. localclose(Conv *s, char *reason) /* called with tcb locked */
  628. {
  629. Tcpctl *tcb;
  630. Reseq *rp,*rp1;
  631. Tcppriv *tpriv;
  632. tpriv = s->p->priv;
  633. tcb = (Tcpctl*)s->ptcl;
  634. iphtrem(&tpriv->ht, s);
  635. tcphalt(tpriv, &tcb->timer);
  636. tcphalt(tpriv, &tcb->rtt_timer);
  637. tcphalt(tpriv, &tcb->acktimer);
  638. tcphalt(tpriv, &tcb->katimer);
  639. /* Flush reassembly queue; nothing more can arrive */
  640. for(rp = tcb->reseq; rp != nil; rp = rp1) {
  641. rp1 = rp->next;
  642. freeblist(rp->bp);
  643. free(rp);
  644. }
  645. tcb->reseq = nil;
  646. if(tcb->state == Syn_sent)
  647. Fsconnected(s, reason);
  648. if(s->state == Announced)
  649. wakeup(&s->listenr);
  650. qhangup(s->rq, reason);
  651. qhangup(s->wq, reason);
  652. tcpsetstate(s, Closed);
  653. }
  654. /* mtu (- TCP + IP hdr len) of 1st hop */
  655. int
  656. tcpmtu(Proto *tcp, uchar *addr, int version, int *scale)
  657. {
  658. Ipifc *ifc;
  659. int mtu;
  660. ifc = findipifc(tcp->f, addr, 0);
  661. switch(version){
  662. default:
  663. case V4:
  664. mtu = DEF_MSS;
  665. if(ifc != nil)
  666. mtu = ifc->maxtu - ifc->m->hsize - (TCP4_PKT + TCP4_HDRSIZE);
  667. break;
  668. case V6:
  669. mtu = DEF_MSS6;
  670. if(ifc != nil)
  671. mtu = ifc->maxtu - ifc->m->hsize - (TCP6_PKT + TCP6_HDRSIZE);
  672. break;
  673. }
  674. if(ifc != nil){
  675. if(ifc->mbps > 100)
  676. *scale = HaveWS | 3;
  677. else if(ifc->mbps > 10)
  678. *scale = HaveWS | 1;
  679. else
  680. *scale = HaveWS | 0;
  681. } else
  682. *scale = HaveWS | 0;
  683. return mtu;
  684. }
  685. void
  686. inittcpctl(Conv *s, int mode)
  687. {
  688. Tcpctl *tcb;
  689. Tcp4hdr* h4;
  690. Tcp6hdr* h6;
  691. int mss;
  692. tcb = (Tcpctl*)s->ptcl;
  693. memset(tcb, 0, sizeof(Tcpctl));
  694. tcb->ssthresh = 65535;
  695. tcb->srtt = tcp_irtt<<LOGAGAIN;
  696. tcb->mdev = 0;
  697. /* setup timers */
  698. tcb->timer.start = tcp_irtt / MSPTICK;
  699. tcb->timer.func = tcptimeout;
  700. tcb->timer.arg = s;
  701. tcb->rtt_timer.start = MAX_TIME;
  702. tcb->acktimer.start = TCP_ACK / MSPTICK;
  703. tcb->acktimer.func = tcpacktimer;
  704. tcb->acktimer.arg = s;
  705. tcb->katimer.start = DEF_KAT / MSPTICK;
  706. tcb->katimer.func = tcpkeepalive;
  707. tcb->katimer.arg = s;
  708. mss = DEF_MSS;
  709. /* create a prototype(pseudo) header */
  710. if(mode != TCP_LISTEN){
  711. if(ipcmp(s->laddr, IPnoaddr) == 0)
  712. findlocalip(s->p->f, s->laddr, s->raddr);
  713. switch(s->ipversion){
  714. case V4:
  715. h4 = &tcb->protohdr.tcp4hdr;
  716. memset(h4, 0, sizeof(*h4));
  717. h4->proto = IP_TCPPROTO;
  718. hnputs(h4->tcpsport, s->lport);
  719. hnputs(h4->tcpdport, s->rport);
  720. v6tov4(h4->tcpsrc, s->laddr);
  721. v6tov4(h4->tcpdst, s->raddr);
  722. break;
  723. case V6:
  724. h6 = &tcb->protohdr.tcp6hdr;
  725. memset(h6, 0, sizeof(*h6));
  726. h6->proto = IP_TCPPROTO;
  727. hnputs(h6->tcpsport, s->lport);
  728. hnputs(h6->tcpdport, s->rport);
  729. ipmove(h6->tcpsrc, s->laddr);
  730. ipmove(h6->tcpdst, s->raddr);
  731. mss = DEF_MSS6;
  732. break;
  733. default:
  734. panic("inittcpctl: version %d", s->ipversion);
  735. }
  736. }
  737. tcb->mss = tcb->cwind = mss;
  738. /* default is no window scaling */
  739. tcb->window = QMAX;
  740. tcb->rcv.wnd = QMAX;
  741. tcb->rcv.scale = 0;
  742. tcb->snd.scale = 0;
  743. qsetlimit(s->rq, QMAX);
  744. }
  745. /*
  746. * called with s qlocked
  747. */
  748. void
  749. tcpstart(Conv *s, int mode)
  750. {
  751. Tcpctl *tcb;
  752. Tcppriv *tpriv;
  753. char kpname[KNAMELEN];
  754. tpriv = s->p->priv;
  755. if(tpriv->ackprocstarted == 0){
  756. qlock(&tpriv->apl);
  757. if(tpriv->ackprocstarted == 0){
  758. sprint(kpname, "#I%dtcpack", s->p->f->dev);
  759. kproc(kpname, tcpackproc, s->p);
  760. tpriv->ackprocstarted = 1;
  761. }
  762. qunlock(&tpriv->apl);
  763. }
  764. tcb = (Tcpctl*)s->ptcl;
  765. inittcpctl(s, mode);
  766. iphtadd(&tpriv->ht, s);
  767. switch(mode) {
  768. case TCP_LISTEN:
  769. tpriv->stats[PassiveOpens]++;
  770. tcb->flags |= CLONE;
  771. tcpsetstate(s, Listen);
  772. break;
  773. case TCP_CONNECT:
  774. tpriv->stats[ActiveOpens]++;
  775. tcb->flags |= ACTIVE;
  776. tcpsndsyn(s, tcb);
  777. tcpsetstate(s, Syn_sent);
  778. tcpoutput(s);
  779. break;
  780. }
  781. }
  782. static char*
  783. tcpflag(ushort flag)
  784. {
  785. static char buf[128];
  786. sprint(buf, "%d", flag>>10); /* Head len */
  787. if(flag & URG)
  788. strcat(buf, " URG");
  789. if(flag & ACK)
  790. strcat(buf, " ACK");
  791. if(flag & PSH)
  792. strcat(buf, " PSH");
  793. if(flag & RST)
  794. strcat(buf, " RST");
  795. if(flag & SYN)
  796. strcat(buf, " SYN");
  797. if(flag & FIN)
  798. strcat(buf, " FIN");
  799. return buf;
  800. }
  801. Block *
  802. htontcp6(Tcp *tcph, Block *data, Tcp6hdr *ph, Tcpctl *tcb)
  803. {
  804. int dlen;
  805. Tcp6hdr *h;
  806. ushort csum;
  807. ushort hdrlen, optpad = 0;
  808. uchar *opt;
  809. hdrlen = TCP6_HDRSIZE;
  810. if(tcph->flags & SYN){
  811. if(tcph->mss)
  812. hdrlen += MSS_LENGTH;
  813. if(tcph->ws)
  814. hdrlen += WS_LENGTH;
  815. optpad = hdrlen & 3;
  816. if(optpad)
  817. optpad = 4 - optpad;
  818. hdrlen += optpad;
  819. }
  820. if(data) {
  821. dlen = blocklen(data);
  822. data = padblock(data, hdrlen + TCP6_PKT);
  823. if(data == nil)
  824. return nil;
  825. }
  826. else {
  827. dlen = 0;
  828. data = allocb(hdrlen + TCP6_PKT + 64); /* the 64 pad is to meet mintu's */
  829. if(data == nil)
  830. return nil;
  831. data->wp += hdrlen + TCP6_PKT;
  832. }
  833. /* copy in pseudo ip header plus port numbers */
  834. h = (Tcp6hdr *)(data->rp);
  835. memmove(h, ph, TCP6_TCBPHDRSZ);
  836. /* compose pseudo tcp header, do cksum calculation */
  837. hnputl(h->vcf, hdrlen + dlen);
  838. h->ploadlen[0] = h->ploadlen[1] = h->proto = 0;
  839. h->ttl = ph->proto;
  840. /* copy in variable bits */
  841. hnputl(h->tcpseq, tcph->seq);
  842. hnputl(h->tcpack, tcph->ack);
  843. hnputs(h->tcpflag, (hdrlen<<10) | tcph->flags);
  844. hnputs(h->tcpwin, tcph->wnd>>(tcb != nil ? tcb->snd.scale : 0));
  845. hnputs(h->tcpurg, tcph->urg);
  846. if(tcph->flags & SYN){
  847. opt = h->tcpopt;
  848. if(tcph->mss != 0){
  849. *opt++ = MSSOPT;
  850. *opt++ = MSS_LENGTH;
  851. hnputs(opt, tcph->mss);
  852. opt += 2;
  853. }
  854. if(tcph->ws != 0){
  855. *opt++ = WSOPT;
  856. *opt++ = WS_LENGTH;
  857. *opt++ = tcph->ws;
  858. }
  859. while(optpad-- > 0)
  860. *opt++ = NOOPOPT;
  861. }
  862. if(tcb != nil && tcb->nochecksum){
  863. h->tcpcksum[0] = h->tcpcksum[1] = 0;
  864. } else {
  865. csum = ptclcsum(data, TCP6_IPLEN, hdrlen+dlen+TCP6_PHDRSIZE);
  866. hnputs(h->tcpcksum, csum);
  867. }
  868. /* move from pseudo header back to normal ip header */
  869. memset(h->vcf, 0, 4);
  870. h->vcf[0] = IP_VER6;
  871. hnputs(h->ploadlen, hdrlen+dlen);
  872. h->proto = ph->proto;
  873. return data;
  874. }
  875. Block *
  876. htontcp4(Tcp *tcph, Block *data, Tcp4hdr *ph, Tcpctl *tcb)
  877. {
  878. int dlen;
  879. Tcp4hdr *h;
  880. ushort csum;
  881. ushort hdrlen, optpad = 0;
  882. uchar *opt;
  883. hdrlen = TCP4_HDRSIZE;
  884. if(tcph->flags & SYN){
  885. if(tcph->mss)
  886. hdrlen += MSS_LENGTH;
  887. if(tcph->ws)
  888. hdrlen += WS_LENGTH;
  889. optpad = hdrlen & 3;
  890. if(optpad)
  891. optpad = 4 - optpad;
  892. hdrlen += optpad;
  893. }
  894. if(data) {
  895. dlen = blocklen(data);
  896. data = padblock(data, hdrlen + TCP4_PKT);
  897. if(data == nil)
  898. return nil;
  899. }
  900. else {
  901. dlen = 0;
  902. data = allocb(hdrlen + TCP4_PKT + 64); /* the 64 pad is to meet mintu's */
  903. if(data == nil)
  904. return nil;
  905. data->wp += hdrlen + TCP4_PKT;
  906. }
  907. /* copy in pseudo ip header plus port numbers */
  908. h = (Tcp4hdr *)(data->rp);
  909. memmove(h, ph, TCP4_TCBPHDRSZ);
  910. /* copy in variable bits */
  911. hnputs(h->tcplen, hdrlen + dlen);
  912. hnputl(h->tcpseq, tcph->seq);
  913. hnputl(h->tcpack, tcph->ack);
  914. hnputs(h->tcpflag, (hdrlen<<10) | tcph->flags);
  915. hnputs(h->tcpwin, tcph->wnd>>(tcb != nil ? tcb->snd.scale : 0));
  916. hnputs(h->tcpurg, tcph->urg);
  917. if(tcph->flags & SYN){
  918. opt = h->tcpopt;
  919. if(tcph->mss != 0){
  920. *opt++ = MSSOPT;
  921. *opt++ = MSS_LENGTH;
  922. hnputs(opt, tcph->mss);
  923. opt += 2;
  924. }
  925. if(tcph->ws != 0){
  926. *opt++ = WSOPT;
  927. *opt++ = WS_LENGTH;
  928. *opt++ = tcph->ws;
  929. }
  930. while(optpad-- > 0)
  931. *opt++ = NOOPOPT;
  932. }
  933. if(tcb != nil && tcb->nochecksum){
  934. h->tcpcksum[0] = h->tcpcksum[1] = 0;
  935. } else {
  936. csum = ptclcsum(data, TCP4_IPLEN, hdrlen+dlen+TCP4_PHDRSIZE);
  937. hnputs(h->tcpcksum, csum);
  938. }
  939. return data;
  940. }
  941. int
  942. ntohtcp6(Tcp *tcph, Block **bpp)
  943. {
  944. Tcp6hdr *h;
  945. uchar *optr;
  946. ushort hdrlen;
  947. ushort optlen;
  948. int n;
  949. *bpp = pullupblock(*bpp, TCP6_PKT+TCP6_HDRSIZE);
  950. if(*bpp == nil)
  951. return -1;
  952. h = (Tcp6hdr *)((*bpp)->rp);
  953. tcph->source = nhgets(h->tcpsport);
  954. tcph->dest = nhgets(h->tcpdport);
  955. tcph->seq = nhgetl(h->tcpseq);
  956. tcph->ack = nhgetl(h->tcpack);
  957. hdrlen = (h->tcpflag[0]>>2) & ~3;
  958. if(hdrlen < TCP6_HDRSIZE) {
  959. freeblist(*bpp);
  960. return -1;
  961. }
  962. tcph->flags = h->tcpflag[1];
  963. tcph->wnd = nhgets(h->tcpwin);
  964. tcph->urg = nhgets(h->tcpurg);
  965. tcph->mss = 0;
  966. tcph->ws = 0;
  967. tcph->len = nhgets(h->ploadlen) - hdrlen;
  968. *bpp = pullupblock(*bpp, hdrlen+TCP6_PKT);
  969. if(*bpp == nil)
  970. return -1;
  971. optr = h->tcpopt;
  972. n = hdrlen - TCP6_HDRSIZE;
  973. while(n > 0 && *optr != EOLOPT) {
  974. if(*optr == NOOPOPT) {
  975. n--;
  976. optr++;
  977. continue;
  978. }
  979. optlen = optr[1];
  980. if(optlen < 2 || optlen > n)
  981. break;
  982. switch(*optr) {
  983. case MSSOPT:
  984. if(optlen == MSS_LENGTH)
  985. tcph->mss = nhgets(optr+2);
  986. break;
  987. case WSOPT:
  988. if(optlen == WS_LENGTH && *(optr+2) <= 14)
  989. tcph->ws = HaveWS | *(optr+2);
  990. break;
  991. }
  992. n -= optlen;
  993. optr += optlen;
  994. }
  995. return hdrlen;
  996. }
  997. int
  998. ntohtcp4(Tcp *tcph, Block **bpp)
  999. {
  1000. Tcp4hdr *h;
  1001. uchar *optr;
  1002. ushort hdrlen;
  1003. ushort optlen;
  1004. int n;
  1005. *bpp = pullupblock(*bpp, TCP4_PKT+TCP4_HDRSIZE);
  1006. if(*bpp == nil)
  1007. return -1;
  1008. h = (Tcp4hdr *)((*bpp)->rp);
  1009. tcph->source = nhgets(h->tcpsport);
  1010. tcph->dest = nhgets(h->tcpdport);
  1011. tcph->seq = nhgetl(h->tcpseq);
  1012. tcph->ack = nhgetl(h->tcpack);
  1013. hdrlen = (h->tcpflag[0]>>2) & ~3;
  1014. if(hdrlen < TCP4_HDRSIZE) {
  1015. freeblist(*bpp);
  1016. return -1;
  1017. }
  1018. tcph->flags = h->tcpflag[1];
  1019. tcph->wnd = nhgets(h->tcpwin);
  1020. tcph->urg = nhgets(h->tcpurg);
  1021. tcph->mss = 0;
  1022. tcph->ws = 0;
  1023. tcph->len = nhgets(h->length) - (hdrlen + TCP4_PKT);
  1024. *bpp = pullupblock(*bpp, hdrlen+TCP4_PKT);
  1025. if(*bpp == nil)
  1026. return -1;
  1027. optr = h->tcpopt;
  1028. n = hdrlen - TCP4_HDRSIZE;
  1029. while(n > 0 && *optr != EOLOPT) {
  1030. if(*optr == NOOPOPT) {
  1031. n--;
  1032. optr++;
  1033. continue;
  1034. }
  1035. optlen = optr[1];
  1036. if(optlen < 2 || optlen > n)
  1037. break;
  1038. switch(*optr) {
  1039. case MSSOPT:
  1040. if(optlen == MSS_LENGTH)
  1041. tcph->mss = nhgets(optr+2);
  1042. break;
  1043. case WSOPT:
  1044. if(optlen == WS_LENGTH && *(optr+2) <= 14)
  1045. tcph->ws = HaveWS | *(optr+2);
  1046. break;
  1047. }
  1048. n -= optlen;
  1049. optr += optlen;
  1050. }
  1051. return hdrlen;
  1052. }
  1053. /*
  1054. * For outgiing calls, generate an initial sequence
  1055. * number and put a SYN on the send queue
  1056. */
  1057. void
  1058. tcpsndsyn(Conv *s, Tcpctl *tcb)
  1059. {
  1060. tcb->iss = (nrand(1<<16)<<16)|nrand(1<<16);
  1061. tcb->rttseq = tcb->iss;
  1062. tcb->snd.wl2 = tcb->iss;
  1063. tcb->snd.una = tcb->iss;
  1064. tcb->snd.ptr = tcb->rttseq;
  1065. tcb->snd.nxt = tcb->rttseq;
  1066. tcb->flgcnt++;
  1067. tcb->flags |= FORCE;
  1068. tcb->sndsyntime = NOW;
  1069. /* set desired mss and scale */
  1070. tcb->mss = tcpmtu(s->p, s->laddr, s->ipversion, &tcb->scale);
  1071. }
  1072. void
  1073. sndrst(Proto *tcp, uchar *source, uchar *dest, ushort length, Tcp *seg, uchar version, char *reason)
  1074. {
  1075. Block *hbp;
  1076. uchar rflags;
  1077. Tcppriv *tpriv;
  1078. Tcp4hdr ph4;
  1079. Tcp6hdr ph6;
  1080. netlog(tcp->f, Logtcp, "sndrst: %s", reason);
  1081. tpriv = tcp->priv;
  1082. if(seg->flags & RST)
  1083. return;
  1084. /* make pseudo header */
  1085. switch(version) {
  1086. case V4:
  1087. memset(&ph4, 0, sizeof(ph4));
  1088. ph4.vihl = IP_VER4;
  1089. v6tov4(ph4.tcpsrc, dest);
  1090. v6tov4(ph4.tcpdst, source);
  1091. ph4.proto = IP_TCPPROTO;
  1092. hnputs(ph4.tcplen, TCP4_HDRSIZE);
  1093. hnputs(ph4.tcpsport, seg->dest);
  1094. hnputs(ph4.tcpdport, seg->source);
  1095. break;
  1096. case V6:
  1097. memset(&ph6, 0, sizeof(ph6));
  1098. ph6.vcf[0] = IP_VER6;
  1099. ipmove(ph6.tcpsrc, dest);
  1100. ipmove(ph6.tcpdst, source);
  1101. ph6.proto = IP_TCPPROTO;
  1102. hnputs(ph6.ploadlen, TCP6_HDRSIZE);
  1103. hnputs(ph6.tcpsport, seg->dest);
  1104. hnputs(ph6.tcpdport, seg->source);
  1105. break;
  1106. default:
  1107. panic("sndrst: version %d", version);
  1108. }
  1109. tpriv->stats[OutRsts]++;
  1110. rflags = RST;
  1111. /* convince the other end that this reset is in band */
  1112. if(seg->flags & ACK) {
  1113. seg->seq = seg->ack;
  1114. seg->ack = 0;
  1115. }
  1116. else {
  1117. rflags |= ACK;
  1118. seg->ack = seg->seq;
  1119. seg->seq = 0;
  1120. if(seg->flags & SYN)
  1121. seg->ack++;
  1122. seg->ack += length;
  1123. if(seg->flags & FIN)
  1124. seg->ack++;
  1125. }
  1126. seg->flags = rflags;
  1127. seg->wnd = 0;
  1128. seg->urg = 0;
  1129. seg->mss = 0;
  1130. seg->ws = 0;
  1131. switch(version) {
  1132. case V4:
  1133. hbp = htontcp4(seg, nil, &ph4, nil);
  1134. if(hbp == nil)
  1135. return;
  1136. ipoput4(tcp->f, hbp, 0, MAXTTL, DFLTTOS);
  1137. break;
  1138. case V6:
  1139. hbp = htontcp6(seg, nil, &ph6, nil);
  1140. if(hbp == nil)
  1141. return;
  1142. ipoput6(tcp->f, hbp, 0, MAXTTL, DFLTTOS);
  1143. break;
  1144. default:
  1145. panic("sndrst2: version %d", version);
  1146. }
  1147. }
  1148. /*
  1149. * send a reset to the remote side and close the conversation
  1150. * called with s qlocked
  1151. */
  1152. char*
  1153. tcphangup(Conv *s)
  1154. {
  1155. Tcp seg;
  1156. Tcpctl *tcb;
  1157. Block *hbp;
  1158. tcb = (Tcpctl*)s->ptcl;
  1159. if(waserror())
  1160. return commonerror();
  1161. if(s->raddr != 0) {
  1162. if(!waserror()){
  1163. seg.flags = RST | ACK;
  1164. seg.ack = tcb->rcv.nxt;
  1165. tcb->rcv.una = 0;
  1166. seg.seq = tcb->snd.ptr;
  1167. seg.wnd = 0;
  1168. seg.urg = 0;
  1169. seg.mss = 0;
  1170. seg.ws = 0;
  1171. switch(s->ipversion) {
  1172. case V4:
  1173. tcb->protohdr.tcp4hdr.vihl = IP_VER4;
  1174. hbp = htontcp4(&seg, nil, &tcb->protohdr.tcp4hdr, tcb);
  1175. ipoput4(s->p->f, hbp, 0, s->ttl, s->tos);
  1176. break;
  1177. case V6:
  1178. tcb->protohdr.tcp6hdr.vcf[0] = IP_VER6;
  1179. hbp = htontcp6(&seg, nil, &tcb->protohdr.tcp6hdr, tcb);
  1180. ipoput6(s->p->f, hbp, 0, s->ttl, s->tos);
  1181. break;
  1182. default:
  1183. panic("tcphangup: version %d", s->ipversion);
  1184. }
  1185. poperror();
  1186. }
  1187. }
  1188. localclose(s, nil);
  1189. poperror();
  1190. return nil;
  1191. }
  1192. /*
  1193. * (re)send a SYN ACK
  1194. */
  1195. int
  1196. sndsynack(Proto *tcp, Limbo *lp)
  1197. {
  1198. Block *hbp;
  1199. Tcp4hdr ph4;
  1200. Tcp6hdr ph6;
  1201. Tcp seg;
  1202. int scale;
  1203. /* make pseudo header */
  1204. switch(lp->version) {
  1205. case V4:
  1206. memset(&ph4, 0, sizeof(ph4));
  1207. ph4.vihl = IP_VER4;
  1208. v6tov4(ph4.tcpsrc, lp->laddr);
  1209. v6tov4(ph4.tcpdst, lp->raddr);
  1210. ph4.proto = IP_TCPPROTO;
  1211. hnputs(ph4.tcplen, TCP4_HDRSIZE);
  1212. hnputs(ph4.tcpsport, lp->lport);
  1213. hnputs(ph4.tcpdport, lp->rport);
  1214. break;
  1215. case V6:
  1216. memset(&ph6, 0, sizeof(ph6));
  1217. ph6.vcf[0] = IP_VER6;
  1218. ipmove(ph6.tcpsrc, lp->laddr);
  1219. ipmove(ph6.tcpdst, lp->raddr);
  1220. ph6.proto = IP_TCPPROTO;
  1221. hnputs(ph6.ploadlen, TCP6_HDRSIZE);
  1222. hnputs(ph6.tcpsport, lp->lport);
  1223. hnputs(ph6.tcpdport, lp->rport);
  1224. break;
  1225. default:
  1226. panic("sndrst: version %d", lp->version);
  1227. }
  1228. seg.seq = lp->iss;
  1229. seg.ack = lp->irs+1;
  1230. seg.flags = SYN|ACK;
  1231. seg.urg = 0;
  1232. seg.mss = tcpmtu(tcp, lp->laddr, lp->version, &scale);
  1233. seg.wnd = QMAX;
  1234. /* if the other side set scale, we should too */
  1235. if(lp->rcvscale){
  1236. seg.ws = scale;
  1237. lp->sndscale = scale;
  1238. } else {
  1239. seg.ws = 0;
  1240. lp->sndscale = 0;
  1241. }
  1242. switch(lp->version) {
  1243. case V4:
  1244. hbp = htontcp4(&seg, nil, &ph4, nil);
  1245. if(hbp == nil)
  1246. return -1;
  1247. ipoput4(tcp->f, hbp, 0, MAXTTL, DFLTTOS);
  1248. break;
  1249. case V6:
  1250. hbp = htontcp6(&seg, nil, &ph6, nil);
  1251. if(hbp == nil)
  1252. return -1;
  1253. ipoput6(tcp->f, hbp, 0, MAXTTL, DFLTTOS);
  1254. break;
  1255. default:
  1256. panic("sndsnack: version %d", lp->version);
  1257. }
  1258. lp->lastsend = NOW;
  1259. return 0;
  1260. }
  1261. #define hashipa(a, p) ( ( (a)[IPaddrlen-2] + (a)[IPaddrlen-1] + p )&LHTMASK )
  1262. /*
  1263. * put a call into limbo and respond with a SYN ACK
  1264. *
  1265. * called with proto locked
  1266. */
  1267. static void
  1268. limbo(Conv *s, uchar *source, uchar *dest, Tcp *seg, int version)
  1269. {
  1270. Limbo *lp, **l;
  1271. Tcppriv *tpriv;
  1272. int h;
  1273. tpriv = s->p->priv;
  1274. h = hashipa(source, seg->source);
  1275. for(l = &tpriv->lht[h]; *l != nil; l = &lp->next){
  1276. lp = *l;
  1277. if(lp->lport != seg->dest || lp->rport != seg->source || lp->version != version)
  1278. continue;
  1279. if(ipcmp(lp->raddr, source) != 0)
  1280. continue;
  1281. if(ipcmp(lp->laddr, dest) != 0)
  1282. continue;
  1283. /* each new SYN restarts the retransmits */
  1284. lp->irs = seg->seq;
  1285. break;
  1286. }
  1287. lp = *l;
  1288. if(lp == nil){
  1289. if(tpriv->nlimbo >= Maxlimbo && tpriv->lht[h]){
  1290. lp = tpriv->lht[h];
  1291. tpriv->lht[h] = lp->next;
  1292. lp->next = nil;
  1293. } else {
  1294. lp = malloc(sizeof(*lp));
  1295. if(lp == nil)
  1296. return;
  1297. tpriv->nlimbo++;
  1298. }
  1299. *l = lp;
  1300. lp->version = version;
  1301. ipmove(lp->laddr, dest);
  1302. ipmove(lp->raddr, source);
  1303. lp->lport = seg->dest;
  1304. lp->rport = seg->source;
  1305. lp->mss = seg->mss;
  1306. lp->rcvscale = seg->ws;
  1307. lp->irs = seg->seq;
  1308. lp->iss = (nrand(1<<16)<<16)|nrand(1<<16);
  1309. }
  1310. if(sndsynack(s->p, lp) < 0){
  1311. *l = lp->next;
  1312. tpriv->nlimbo--;
  1313. free(lp);
  1314. }
  1315. }
  1316. /*
  1317. * resend SYN ACK's once every SYNACK_RXTIMER ms.
  1318. */
  1319. static void
  1320. limborexmit(Proto *tcp)
  1321. {
  1322. Tcppriv *tpriv;
  1323. Limbo **l, *lp;
  1324. int h;
  1325. int seen;
  1326. ulong now;
  1327. tpriv = tcp->priv;
  1328. if(!canqlock(tcp))
  1329. return;
  1330. seen = 0;
  1331. now = NOW;
  1332. for(h = 0; h < NLHT && seen < tpriv->nlimbo; h++){
  1333. for(l = &tpriv->lht[h]; *l != nil && seen < tpriv->nlimbo; ){
  1334. lp = *l;
  1335. seen++;
  1336. if(now - lp->lastsend < (lp->rexmits+1)*SYNACK_RXTIMER)
  1337. continue;
  1338. /* time it out after 1 second */
  1339. if(++(lp->rexmits) > 5){
  1340. tpriv->nlimbo--;
  1341. *l = lp->next;
  1342. free(lp);
  1343. continue;
  1344. }
  1345. /* if we're being attacked, don't bother resending SYN ACK's */
  1346. if(tpriv->nlimbo > 100)
  1347. continue;
  1348. if(sndsynack(tcp, lp) < 0){
  1349. tpriv->nlimbo--;
  1350. *l = lp->next;
  1351. free(lp);
  1352. continue;
  1353. }
  1354. l = &lp->next;
  1355. }
  1356. }
  1357. qunlock(tcp);
  1358. }
  1359. /*
  1360. * lookup call in limbo. if found, throw it out.
  1361. *
  1362. * called with proto locked
  1363. */
  1364. static void
  1365. limborst(Conv *s, Tcp *segp, uchar *src, uchar *dst, uchar version)
  1366. {
  1367. Limbo *lp, **l;
  1368. int h;
  1369. Tcppriv *tpriv;
  1370. tpriv = s->p->priv;
  1371. /* find a call in limbo */
  1372. h = hashipa(src, segp->source);
  1373. for(l = &tpriv->lht[h]; *l != nil; l = &lp->next){
  1374. lp = *l;
  1375. if(lp->lport != segp->dest || lp->rport != segp->source || lp->version != version)
  1376. continue;
  1377. if(ipcmp(lp->laddr, dst) != 0)
  1378. continue;
  1379. if(ipcmp(lp->raddr, src) != 0)
  1380. continue;
  1381. /* RST can only follow the SYN */
  1382. if(segp->seq == lp->irs+1){
  1383. tpriv->nlimbo--;
  1384. *l = lp->next;
  1385. free(lp);
  1386. }
  1387. break;
  1388. }
  1389. }
  1390. /*
  1391. * come here when we finally get an ACK to our SYN-ACK.
  1392. * lookup call in limbo. if found, create a new conversation
  1393. *
  1394. * called with proto locked
  1395. */
  1396. static Conv*
  1397. tcpincoming(Conv *s, Tcp *segp, uchar *src, uchar *dst, uchar version)
  1398. {
  1399. Conv *new;
  1400. Tcpctl *tcb;
  1401. Tcppriv *tpriv;
  1402. Tcp4hdr *h4;
  1403. Tcp6hdr *h6;
  1404. Limbo *lp, **l;
  1405. int h;
  1406. /* unless it's just an ack, it can't be someone coming out of limbo */
  1407. if((segp->flags & SYN) || (segp->flags & ACK) == 0)
  1408. return nil;
  1409. tpriv = s->p->priv;
  1410. /* find a call in limbo */
  1411. h = hashipa(src, segp->source);
  1412. for(l = &tpriv->lht[h]; (lp = *l) != nil; l = &lp->next){
  1413. netlog(s->p->f, Logtcp, "tcpincoming s %I,%ux/%I,%ux d %I,%ux/%I,%ux v %d/%d",
  1414. src, segp->source, lp->raddr, lp->rport,
  1415. dst, segp->dest, lp->laddr, lp->lport,
  1416. version, lp->version
  1417. );
  1418. if(lp->lport != segp->dest || lp->rport != segp->source || lp->version != version)
  1419. continue;
  1420. if(ipcmp(lp->laddr, dst) != 0)
  1421. continue;
  1422. if(ipcmp(lp->raddr, src) != 0)
  1423. continue;
  1424. /* we're assuming no data with the initial SYN */
  1425. if(segp->seq != lp->irs+1 || segp->ack != lp->iss+1){
  1426. netlog(s->p->f, Logtcp, "tcpincoming s %lux/%lux a %lux %lux",
  1427. segp->seq, lp->irs+1, segp->ack, lp->iss+1);
  1428. lp = nil;
  1429. } else {
  1430. tpriv->nlimbo--;
  1431. *l = lp->next;
  1432. }
  1433. break;
  1434. }
  1435. if(lp == nil)
  1436. return nil;
  1437. new = Fsnewcall(s, src, segp->source, dst, segp->dest, version);
  1438. if(new == nil)
  1439. return nil;
  1440. memmove(new->ptcl, s->ptcl, sizeof(Tcpctl));
  1441. tcb = (Tcpctl*)new->ptcl;
  1442. tcb->flags &= ~CLONE;
  1443. tcb->timer.arg = new;
  1444. tcb->timer.state = TcptimerOFF;
  1445. tcb->acktimer.arg = new;
  1446. tcb->acktimer.state = TcptimerOFF;
  1447. tcb->katimer.arg = new;
  1448. tcb->katimer.state = TcptimerOFF;
  1449. tcb->rtt_timer.arg = new;
  1450. tcb->rtt_timer.state = TcptimerOFF;
  1451. tcb->irs = lp->irs;
  1452. tcb->rcv.nxt = tcb->irs+1;
  1453. tcb->rcv.urg = tcb->rcv.nxt;
  1454. tcb->iss = lp->iss;
  1455. tcb->rttseq = tcb->iss;
  1456. tcb->snd.wl2 = tcb->iss;
  1457. tcb->snd.una = tcb->iss+1;
  1458. tcb->snd.ptr = tcb->iss+1;
  1459. tcb->snd.nxt = tcb->iss+1;
  1460. tcb->flgcnt = 0;
  1461. tcb->flags |= SYNACK;
  1462. /* our sending max segment size cannot be bigger than what he asked for */
  1463. if(lp->mss != 0 && lp->mss < tcb->mss)
  1464. tcb->mss = lp->mss;
  1465. /* window scaling */
  1466. tcpsetscale(new, tcb, lp->rcvscale, lp->sndscale);
  1467. /* the congestion window always starts out as a single segment */
  1468. tcb->snd.wnd = segp->wnd;
  1469. tcb->cwind = tcb->mss;
  1470. /* set initial round trip time */
  1471. tcb->sndsyntime = lp->lastsend+lp->rexmits*SYNACK_RXTIMER;
  1472. tcpsynackrtt(new);
  1473. free(lp);
  1474. /* set up proto header */
  1475. switch(version){
  1476. case V4:
  1477. h4 = &tcb->protohdr.tcp4hdr;
  1478. memset(h4, 0, sizeof(*h4));
  1479. h4->proto = IP_TCPPROTO;
  1480. hnputs(h4->tcpsport, new->lport);
  1481. hnputs(h4->tcpdport, new->rport);
  1482. v6tov4(h4->tcpsrc, dst);
  1483. v6tov4(h4->tcpdst, src);
  1484. break;
  1485. case V6:
  1486. h6 = &tcb->protohdr.tcp6hdr;
  1487. memset(h6, 0, sizeof(*h6));
  1488. h6->proto = IP_TCPPROTO;
  1489. hnputs(h6->tcpsport, new->lport);
  1490. hnputs(h6->tcpdport, new->rport);
  1491. ipmove(h6->tcpsrc, dst);
  1492. ipmove(h6->tcpdst, src);
  1493. break;
  1494. default:
  1495. panic("tcpincoming: version %d", new->ipversion);
  1496. }
  1497. tcpsetstate(new, Established);
  1498. iphtadd(&tpriv->ht, new);
  1499. return new;
  1500. }
  1501. int
  1502. seq_within(ulong x, ulong low, ulong high)
  1503. {
  1504. if(low <= high){
  1505. if(low <= x && x <= high)
  1506. return 1;
  1507. }
  1508. else {
  1509. if(x >= low || x <= high)
  1510. return 1;
  1511. }
  1512. return 0;
  1513. }
  1514. int
  1515. seq_lt(ulong x, ulong y)
  1516. {
  1517. return (int)(x-y) < 0;
  1518. }
  1519. int
  1520. seq_le(ulong x, ulong y)
  1521. {
  1522. return (int)(x-y) <= 0;
  1523. }
  1524. int
  1525. seq_gt(ulong x, ulong y)
  1526. {
  1527. return (int)(x-y) > 0;
  1528. }
  1529. int
  1530. seq_ge(ulong x, ulong y)
  1531. {
  1532. return (int)(x-y) >= 0;
  1533. }
  1534. /*
  1535. * use the time between the first SYN and it's ack as the
  1536. * initial round trip time
  1537. */
  1538. void
  1539. tcpsynackrtt(Conv *s)
  1540. {
  1541. Tcpctl *tcb;
  1542. int delta;
  1543. Tcppriv *tpriv;
  1544. tcb = (Tcpctl*)s->ptcl;
  1545. tpriv = s->p->priv;
  1546. delta = NOW - tcb->sndsyntime;
  1547. tcb->srtt = delta<<LOGAGAIN;
  1548. tcb->mdev = delta<<LOGDGAIN;
  1549. /* halt round trip timer */
  1550. tcphalt(tpriv, &tcb->rtt_timer);
  1551. }
  1552. void
  1553. update(Conv *s, Tcp *seg)
  1554. {
  1555. int rtt, delta;
  1556. Tcpctl *tcb;
  1557. ulong acked;
  1558. ulong expand;
  1559. Tcppriv *tpriv;
  1560. tpriv = s->p->priv;
  1561. tcb = (Tcpctl*)s->ptcl;
  1562. /* if everything has been acked, force output(?) */
  1563. if(seq_gt(seg->ack, tcb->snd.nxt)) {
  1564. tcb->flags |= FORCE;
  1565. return;
  1566. }
  1567. /* added by Dong Lin for fast retransmission */
  1568. if(seg->ack == tcb->snd.una
  1569. && tcb->snd.una != tcb->snd.nxt
  1570. && seg->len == 0
  1571. && seg->wnd == tcb->snd.wnd) {
  1572. /* this is a pure ack w/o window update */
  1573. netlog(s->p->f, Logtcprxmt, "dupack %lud ack %lud sndwnd %d advwin %d\n",
  1574. tcb->snd.dupacks, seg->ack, tcb->snd.wnd, seg->wnd);
  1575. if(++tcb->snd.dupacks == TCPREXMTTHRESH) {
  1576. /*
  1577. * tahoe tcp rxt the packet, half sshthresh,
  1578. * and set cwnd to one packet
  1579. */
  1580. tcb->snd.recovery = 1;
  1581. tcb->snd.rxt = tcb->snd.nxt;
  1582. netlog(s->p->f, Logtcprxmt, "fast rxt %lud, nxt %lud\n", tcb->snd.una, tcb->snd.nxt);
  1583. tcprxmit(s);
  1584. } else {
  1585. /* do reno tcp here. */
  1586. }
  1587. }
  1588. /*
  1589. * update window
  1590. */
  1591. if( seq_gt(seg->ack, tcb->snd.wl2)
  1592. || (tcb->snd.wl2 == seg->ack && seg->wnd > tcb->snd.wnd)){
  1593. tcb->snd.wnd = seg->wnd;
  1594. tcb->snd.wl2 = seg->ack;
  1595. }
  1596. if(!seq_gt(seg->ack, tcb->snd.una)){
  1597. /*
  1598. * don't let us hangup if sending into a closed window and
  1599. * we're still getting acks
  1600. */
  1601. if((tcb->flags&RETRAN) && tcb->snd.wnd == 0){
  1602. tcb->backedoff = MAXBACKMS/4;
  1603. }
  1604. return;
  1605. }
  1606. /*
  1607. * any positive ack turns off fast rxt,
  1608. * (should we do new-reno on partial acks?)
  1609. */
  1610. if(!tcb->snd.recovery || seq_ge(seg->ack, tcb->snd.rxt)) {
  1611. tcb->snd.dupacks = 0;
  1612. tcb->snd.recovery = 0;
  1613. } else
  1614. netlog(s->p->f, Logtcp, "rxt next %lud, cwin %ud\n", seg->ack, tcb->cwind);
  1615. /* Compute the new send window size */
  1616. acked = seg->ack - tcb->snd.una;
  1617. /* avoid slow start and timers for SYN acks */
  1618. if((tcb->flags & SYNACK) == 0) {
  1619. tcb->flags |= SYNACK;
  1620. acked--;
  1621. tcb->flgcnt--;
  1622. goto done;
  1623. }
  1624. /* slow start as long as we're not recovering from lost packets */
  1625. if(tcb->cwind < tcb->snd.wnd && !tcb->snd.recovery) {
  1626. if(tcb->cwind < tcb->ssthresh) {
  1627. expand = tcb->mss;
  1628. if(acked < expand)
  1629. expand = acked;
  1630. }
  1631. else
  1632. expand = ((int)tcb->mss * tcb->mss) / tcb->cwind;
  1633. if(tcb->cwind + expand < tcb->cwind)
  1634. expand = tcb->snd.wnd - tcb->cwind;
  1635. if(tcb->cwind + expand > tcb->snd.wnd)
  1636. expand = tcb->snd.wnd - tcb->cwind;
  1637. if(expand != 0)
  1638. tcb->cwind += expand;
  1639. }
  1640. /* Adjust the timers according to the round trip time */
  1641. if(tcb->rtt_timer.state == TcptimerON && seq_ge(seg->ack, tcb->rttseq)) {
  1642. tcphalt(tpriv, &tcb->rtt_timer);
  1643. if((tcb->flags&RETRAN) == 0) {
  1644. tcb->backoff = 0;
  1645. tcb->backedoff = 0;
  1646. rtt = tcb->rtt_timer.start - tcb->rtt_timer.count;
  1647. if(rtt == 0)
  1648. rtt = 1; /* otherwise all close systems will rexmit in 0 time */
  1649. rtt *= MSPTICK;
  1650. if(tcb->srtt == 0) {
  1651. tcb->srtt = rtt << LOGAGAIN;
  1652. tcb->mdev = rtt << LOGDGAIN;
  1653. } else {
  1654. delta = rtt - (tcb->srtt>>LOGAGAIN);
  1655. tcb->srtt += delta;
  1656. if(tcb->srtt <= 0)
  1657. tcb->srtt = 1;
  1658. delta = abs(delta) - (tcb->mdev>>LOGDGAIN);
  1659. tcb->mdev += delta;
  1660. if(tcb->mdev <= 0)
  1661. tcb->mdev = 1;
  1662. }
  1663. tcpsettimer(tcb);
  1664. }
  1665. }
  1666. done:
  1667. if(qdiscard(s->wq, acked) < acked)
  1668. tcb->flgcnt--;
  1669. tcb->snd.una = seg->ack;
  1670. if(seq_gt(seg->ack, tcb->snd.urg))
  1671. tcb->snd.urg = seg->ack;
  1672. if(tcb->snd.una != tcb->snd.nxt)
  1673. tcpgo(tpriv, &tcb->timer);
  1674. else
  1675. tcphalt(tpriv, &tcb->timer);
  1676. if(seq_lt(tcb->snd.ptr, tcb->snd.una))
  1677. tcb->snd.ptr = tcb->snd.una;
  1678. tcb->flags &= ~RETRAN;
  1679. tcb->backoff = 0;
  1680. tcb->backedoff = 0;
  1681. }
  1682. void
  1683. tcpiput(Proto *tcp, Ipifc*, Block *bp)
  1684. {
  1685. Tcp seg;
  1686. Tcp4hdr *h4;
  1687. Tcp6hdr *h6;
  1688. int hdrlen;
  1689. Tcpctl *tcb;
  1690. ushort length;
  1691. uchar source[IPaddrlen], dest[IPaddrlen];
  1692. Conv *s;
  1693. Fs *f;
  1694. Tcppriv *tpriv;
  1695. uchar version;
  1696. f = tcp->f;
  1697. tpriv = tcp->priv;
  1698. tpriv->stats[InSegs]++;
  1699. h4 = (Tcp4hdr*)(bp->rp);
  1700. h6 = (Tcp6hdr*)(bp->rp);
  1701. if((h4->vihl&0xF0)==IP_VER4) {
  1702. version = V4;
  1703. length = nhgets(h4->length);
  1704. v4tov6(dest, h4->tcpdst);
  1705. v4tov6(source, h4->tcpsrc);
  1706. h4->Unused = 0;
  1707. hnputs(h4->tcplen, length-TCP4_PKT);
  1708. if(!(bp->flag & Btcpck) && (h4->tcpcksum[0] || h4->tcpcksum[1]) &&
  1709. ptclcsum(bp, TCP4_IPLEN, length-TCP4_IPLEN)) {
  1710. tpriv->stats[CsumErrs]++;
  1711. tpriv->stats[InErrs]++;
  1712. netlog(f, Logtcp, "bad tcp proto cksum\n");
  1713. freeblist(bp);
  1714. return;
  1715. }
  1716. hdrlen = ntohtcp4(&seg, &bp);
  1717. if(hdrlen < 0){
  1718. tpriv->stats[HlenErrs]++;
  1719. tpriv->stats[InErrs]++;
  1720. netlog(f, Logtcp, "bad tcp hdr len\n");
  1721. return;
  1722. }
  1723. /* trim the packet to the size claimed by the datagram */
  1724. length -= hdrlen+TCP4_PKT;
  1725. bp = trimblock(bp, hdrlen+TCP4_PKT, length);
  1726. if(bp == nil){
  1727. tpriv->stats[LenErrs]++;
  1728. tpriv->stats[InErrs]++;
  1729. netlog(f, Logtcp, "tcp len < 0 after trim\n");
  1730. return;
  1731. }
  1732. }
  1733. else {
  1734. int ttl = h6->ttl;
  1735. int proto = h6->proto;
  1736. version = V6;
  1737. length = nhgets(h6->ploadlen);
  1738. ipmove(dest, h6->tcpdst);
  1739. ipmove(source, h6->tcpsrc);
  1740. h6->ploadlen[0] = h6->ploadlen[1] = h6->proto = 0;
  1741. h6->ttl = proto;
  1742. hnputl(h6->vcf, length);
  1743. if((h6->tcpcksum[0] || h6->tcpcksum[1]) &&
  1744. ptclcsum(bp, TCP6_IPLEN, length+TCP6_PHDRSIZE)) {
  1745. tpriv->stats[CsumErrs]++;
  1746. tpriv->stats[InErrs]++;
  1747. netlog(f, Logtcp, "bad tcp proto cksum\n");
  1748. freeblist(bp);
  1749. return;
  1750. }
  1751. h6->ttl = ttl;
  1752. h6->proto = proto;
  1753. hnputs(h6->ploadlen, length);
  1754. hdrlen = ntohtcp6(&seg, &bp);
  1755. if(hdrlen < 0){
  1756. tpriv->stats[HlenErrs]++;
  1757. tpriv->stats[InErrs]++;
  1758. netlog(f, Logtcp, "bad tcp hdr len\n");
  1759. return;
  1760. }
  1761. /* trim the packet to the size claimed by the datagram */
  1762. length -= hdrlen;
  1763. bp = trimblock(bp, hdrlen+TCP6_PKT, length);
  1764. if(bp == nil){
  1765. tpriv->stats[LenErrs]++;
  1766. tpriv->stats[InErrs]++;
  1767. netlog(f, Logtcp, "tcp len < 0 after trim\n");
  1768. return;
  1769. }
  1770. }
  1771. /* lock protocol while searching for a conversation */
  1772. qlock(tcp);
  1773. /* Look for a matching conversation */
  1774. s = iphtlook(&tpriv->ht, source, seg.source, dest, seg.dest);
  1775. if(s == nil){
  1776. netlog(f, Logtcp, "iphtlook failed");
  1777. reset:
  1778. qunlock(tcp);
  1779. sndrst(tcp, source, dest, length, &seg, version, "no conversation");
  1780. freeblist(bp);
  1781. return;
  1782. }
  1783. /* if it's a listener, look for the right flags and get a new conv */
  1784. tcb = (Tcpctl*)s->ptcl;
  1785. if(tcb->state == Listen){
  1786. if(seg.flags & RST){
  1787. limborst(s, &seg, source, dest, version);
  1788. qunlock(tcp);
  1789. freeblist(bp);
  1790. return;
  1791. }
  1792. /* if this is a new SYN, put the call into limbo */
  1793. if((seg.flags & SYN) && (seg.flags & ACK) == 0){
  1794. limbo(s, source, dest, &seg, version);
  1795. qunlock(tcp);
  1796. freeblist(bp);
  1797. return;
  1798. }
  1799. /*
  1800. * if there's a matching call in limbo, tcpincoming will
  1801. * return it in state Syn_received
  1802. */
  1803. s = tcpincoming(s, &seg, source, dest, version);
  1804. if(s == nil)
  1805. goto reset;
  1806. }
  1807. /* The rest of the input state machine is run with the control block
  1808. * locked and implements the state machine directly out of the RFC.
  1809. * Out-of-band data is ignored - it was always a bad idea.
  1810. */
  1811. tcb = (Tcpctl*)s->ptcl;
  1812. if(waserror()){
  1813. qunlock(s);
  1814. nexterror();
  1815. }
  1816. qlock(s);
  1817. qunlock(tcp);
  1818. /* fix up window */
  1819. seg.wnd <<= tcb->rcv.scale;
  1820. if(tcb->kacounter > 0)
  1821. tcb->kacounter = MAXBACKMS / (tcb->katimer.start*MSPTICK);
  1822. if(tcb->kacounter < 3)
  1823. tcb->kacounter = 3;
  1824. switch(tcb->state) {
  1825. case Closed:
  1826. sndrst(tcp, source, dest, length, &seg, version, "sending to Closed");
  1827. goto raise;
  1828. case Syn_sent:
  1829. if(seg.flags & ACK) {
  1830. if(!seq_within(seg.ack, tcb->iss+1, tcb->snd.nxt)) {
  1831. sndrst(tcp, source, dest, length, &seg, version,
  1832. "bad seq in Syn_sent");
  1833. goto raise;
  1834. }
  1835. }
  1836. if(seg.flags & RST) {
  1837. if(seg.flags & ACK)
  1838. localclose(s, Econrefused);
  1839. goto raise;
  1840. }
  1841. if(seg.flags & SYN) {
  1842. procsyn(s, &seg);
  1843. if(seg.flags & ACK){
  1844. update(s, &seg);
  1845. tcpsynackrtt(s);
  1846. tcpsetstate(s, Established);
  1847. tcpsetscale(s, tcb, seg.ws, tcb->scale);
  1848. }
  1849. else {
  1850. tcb->time = NOW;
  1851. tcpsetstate(s, Syn_received); /* DLP - shouldn't this be a reset? */
  1852. }
  1853. if(length != 0 || (seg.flags & FIN))
  1854. break;
  1855. freeblist(bp);
  1856. goto output;
  1857. }
  1858. else
  1859. freeblist(bp);
  1860. qunlock(s);
  1861. poperror();
  1862. return;
  1863. case Syn_received:
  1864. /* doesn't matter if it's the correct ack, we're just trying to set timing */
  1865. if(seg.flags & ACK)
  1866. tcpsynackrtt(s);
  1867. break;
  1868. }
  1869. /*
  1870. * One DOS attack is to open connections to us and then forget about them,
  1871. * thereby tying up a conv at no long term cost to the attacker.
  1872. * This is an attempt to defeat these stateless DOS attacks. See
  1873. * corresponding code in tcpsendka().
  1874. */
  1875. if(tcb->state != Syn_received && (seg.flags & RST) == 0){
  1876. if(tcpporthogdefense
  1877. && seq_within(seg.ack, tcb->snd.una-(1<<31), tcb->snd.una-(1<<29))){
  1878. print("stateless hog %I.%d->%I.%d f %ux %lux - %lux - %lux\n",
  1879. source, seg.source, dest, seg.dest, seg.flags,
  1880. tcb->snd.una-(1<<31), seg.ack, tcb->snd.una-(1<<29));
  1881. localclose(s, "stateless hog");
  1882. }
  1883. }
  1884. /* Cut the data to fit the receive window */
  1885. if(tcptrim(tcb, &seg, &bp, &length) == -1) {
  1886. netlog(f, Logtcp, "tcp len < 0, %lux\n", seg.seq);
  1887. update(s, &seg);
  1888. if(qlen(s->wq)+tcb->flgcnt == 0 && tcb->state == Closing) {
  1889. tcphalt(tpriv, &tcb->rtt_timer);
  1890. tcphalt(tpriv, &tcb->acktimer);
  1891. tcphalt(tpriv, &tcb->katimer);
  1892. tcpsetstate(s, Time_wait);
  1893. tcb->timer.start = MSL2*(1000 / MSPTICK);
  1894. tcpgo(tpriv, &tcb->timer);
  1895. }
  1896. if(!(seg.flags & RST)) {
  1897. tcb->flags |= FORCE;
  1898. goto output;
  1899. }
  1900. qunlock(s);
  1901. poperror();
  1902. return;
  1903. }
  1904. /* Cannot accept so answer with a rst */
  1905. if(length && tcb->state == Closed) {
  1906. sndrst(tcp, source, dest, length, &seg, version, "sending to Closed");
  1907. goto raise;
  1908. }
  1909. /* The segment is beyond the current receive pointer so
  1910. * queue the data in the resequence queue
  1911. */
  1912. if(seg.seq != tcb->rcv.nxt)
  1913. if(length != 0 || (seg.flags & (SYN|FIN))) {
  1914. update(s, &seg);
  1915. if(addreseq(tcb, tpriv, &seg, bp, length) < 0)
  1916. print("reseq %I.%d -> %I.%d\n", s->raddr, s->rport, s->laddr, s->lport);
  1917. tcb->flags |= FORCE;
  1918. goto output;
  1919. }
  1920. /*
  1921. * keep looping till we've processed this packet plus any
  1922. * adjacent packets in the resequence queue
  1923. */
  1924. for(;;) {
  1925. if(seg.flags & RST) {
  1926. if(tcb->state == Established)
  1927. tpriv->stats[EstabResets]++;
  1928. localclose(s, Econrefused);
  1929. goto raise;
  1930. }
  1931. if((seg.flags&ACK) == 0)
  1932. goto raise;
  1933. switch(tcb->state) {
  1934. case Syn_received:
  1935. if(!seq_within(seg.ack, tcb->snd.una+1, tcb->snd.nxt)){
  1936. sndrst(tcp, source, dest, length, &seg, version,
  1937. "bad seq in Syn_received");
  1938. goto raise;
  1939. }
  1940. update(s, &seg);
  1941. tcpsetstate(s, Established);
  1942. case Established:
  1943. case Close_wait:
  1944. update(s, &seg);
  1945. break;
  1946. case Finwait1:
  1947. update(s, &seg);
  1948. if(qlen(s->wq)+tcb->flgcnt == 0){
  1949. tcphalt(tpriv, &tcb->rtt_timer);
  1950. tcphalt(tpriv, &tcb->acktimer);
  1951. tcpsetkacounter(tcb);
  1952. tcb->time = NOW;
  1953. tcpsetstate(s, Finwait2);
  1954. tcb->katimer.start = MSL2 * (1000 / MSPTICK);
  1955. tcpgo(tpriv, &tcb->katimer);
  1956. }
  1957. break;
  1958. case Finwait2:
  1959. update(s, &seg);
  1960. break;
  1961. case Closing:
  1962. update(s, &seg);
  1963. if(qlen(s->wq)+tcb->flgcnt == 0) {
  1964. tcphalt(tpriv, &tcb->rtt_timer);
  1965. tcphalt(tpriv, &tcb->acktimer);
  1966. tcphalt(tpriv, &tcb->katimer);
  1967. tcpsetstate(s, Time_wait);
  1968. tcb->timer.start = MSL2*(1000 / MSPTICK);
  1969. tcpgo(tpriv, &tcb->timer);
  1970. }
  1971. break;
  1972. case Last_ack:
  1973. update(s, &seg);
  1974. if(qlen(s->wq)+tcb->flgcnt == 0) {
  1975. localclose(s, nil);
  1976. goto raise;
  1977. }
  1978. case Time_wait:
  1979. tcb->flags |= FORCE;
  1980. if(tcb->timer.state != TcptimerON)
  1981. tcpgo(tpriv, &tcb->timer);
  1982. }
  1983. if((seg.flags&URG) && seg.urg) {
  1984. if(seq_gt(seg.urg + seg.seq, tcb->rcv.urg)) {
  1985. tcb->rcv.urg = seg.urg + seg.seq;
  1986. pullblock(&bp, seg.urg);
  1987. }
  1988. }
  1989. else
  1990. if(seq_gt(tcb->rcv.nxt, tcb->rcv.urg))
  1991. tcb->rcv.urg = tcb->rcv.nxt;
  1992. if(length == 0) {
  1993. if(bp != nil)
  1994. freeblist(bp);
  1995. }
  1996. else {
  1997. switch(tcb->state){
  1998. default:
  1999. /* Ignore segment text */
  2000. if(bp != nil)
  2001. freeblist(bp);
  2002. break;
  2003. case Syn_received:
  2004. case Established:
  2005. case Finwait1:
  2006. /* If we still have some data place on
  2007. * receive queue
  2008. */
  2009. if(bp) {
  2010. bp = packblock(bp);
  2011. if(bp == nil)
  2012. panic("tcp packblock");
  2013. qpassnolim(s->rq, bp);
  2014. bp = nil;
  2015. /*
  2016. * Force an ack every 2 data messages. This is
  2017. * a hack for rob to make his home system run
  2018. * faster.
  2019. *
  2020. * this also keeps the standard TCP congestion
  2021. * control working since it needs an ack every
  2022. * 2 max segs worth. This is not quite that,
  2023. * but under a real stream is equivalent since
  2024. * every packet has a max seg in it.
  2025. */
  2026. if(++(tcb->rcv.una) >= 2)
  2027. tcb->flags |= FORCE;
  2028. }
  2029. tcb->rcv.nxt += length;
  2030. /*
  2031. * update our rcv window
  2032. */
  2033. tcprcvwin(s);
  2034. /*
  2035. * turn on the acktimer if there's something
  2036. * to ack
  2037. */
  2038. if(tcb->acktimer.state != TcptimerON)
  2039. tcpgo(tpriv, &tcb->acktimer);
  2040. break;
  2041. case Finwait2:
  2042. /* no process to read the data, send a reset */
  2043. if(bp != nil)
  2044. freeblist(bp);
  2045. sndrst(tcp, source, dest, length, &seg, version,
  2046. "send to Finwait2");
  2047. qunlock(s);
  2048. poperror();
  2049. return;
  2050. }
  2051. }
  2052. if(seg.flags & FIN) {
  2053. tcb->flags |= FORCE;
  2054. switch(tcb->state) {
  2055. case Syn_received:
  2056. case Established:
  2057. tcb->rcv.nxt++;
  2058. tcpsetstate(s, Close_wait);
  2059. break;
  2060. case Finwait1:
  2061. tcb->rcv.nxt++;
  2062. if(qlen(s->wq)+tcb->flgcnt == 0) {
  2063. tcphalt(tpriv, &tcb->rtt_timer);
  2064. tcphalt(tpriv, &tcb->acktimer);
  2065. tcphalt(tpriv, &tcb->katimer);
  2066. tcpsetstate(s, Time_wait);
  2067. tcb->timer.start = MSL2*(1000/MSPTICK);
  2068. tcpgo(tpriv, &tcb->timer);
  2069. }
  2070. else
  2071. tcpsetstate(s, Closing);
  2072. break;
  2073. case Finwait2:
  2074. tcb->rcv.nxt++;
  2075. tcphalt(tpriv, &tcb->rtt_timer);
  2076. tcphalt(tpriv, &tcb->acktimer);
  2077. tcphalt(tpriv, &tcb->katimer);
  2078. tcpsetstate(s, Time_wait);
  2079. tcb->timer.start = MSL2 * (1000/MSPTICK);
  2080. tcpgo(tpriv, &tcb->timer);
  2081. break;
  2082. case Close_wait:
  2083. case Closing:
  2084. case Last_ack:
  2085. break;
  2086. case Time_wait:
  2087. tcpgo(tpriv, &tcb->timer);
  2088. break;
  2089. }
  2090. }
  2091. /*
  2092. * get next adjacent segment from the resequence queue.
  2093. * dump/trim any overlapping segments
  2094. */
  2095. for(;;) {
  2096. if(tcb->reseq == nil)
  2097. goto output;
  2098. if(seq_ge(tcb->rcv.nxt, tcb->reseq->seg.seq) == 0)
  2099. goto output;
  2100. getreseq(tcb, &seg, &bp, &length);
  2101. if(tcptrim(tcb, &seg, &bp, &length) == 0)
  2102. break;
  2103. }
  2104. }
  2105. output:
  2106. tcpoutput(s);
  2107. qunlock(s);
  2108. poperror();
  2109. return;
  2110. raise:
  2111. qunlock(s);
  2112. poperror();
  2113. freeblist(bp);
  2114. tcpkick(s);
  2115. }
  2116. /*
  2117. * always enters and exits with the s locked. We drop
  2118. * the lock to ipoput the packet so some care has to be
  2119. * taken by callers.
  2120. */
  2121. void
  2122. tcpoutput(Conv *s)
  2123. {
  2124. Tcp seg;
  2125. int msgs;
  2126. Tcpctl *tcb;
  2127. Block *hbp, *bp;
  2128. int sndcnt, n;
  2129. ulong ssize, dsize, usable, sent;
  2130. Fs *f;
  2131. Tcppriv *tpriv;
  2132. uchar version;
  2133. f = s->p->f;
  2134. tpriv = s->p->priv;
  2135. version = s->ipversion;
  2136. for(msgs = 0; msgs < 100; msgs++) {
  2137. tcb = (Tcpctl*)s->ptcl;
  2138. switch(tcb->state) {
  2139. case Listen:
  2140. case Closed:
  2141. case Finwait2:
  2142. return;
  2143. }
  2144. /* force an ack when a window has opened up */
  2145. if(tcb->rcv.blocked && tcb->rcv.wnd > 0){
  2146. tcb->rcv.blocked = 0;
  2147. tcb->flags |= FORCE;
  2148. }
  2149. sndcnt = qlen(s->wq)+tcb->flgcnt;
  2150. sent = tcb->snd.ptr - tcb->snd.una;
  2151. /* Don't send anything else until our SYN has been acked */
  2152. if(tcb->snd.ptr != tcb->iss && (tcb->flags & SYNACK) == 0)
  2153. break;
  2154. /* Compute usable segment based on offered window and limit
  2155. * window probes to one
  2156. */
  2157. if(tcb->snd.wnd == 0){
  2158. if(sent != 0) {
  2159. if((tcb->flags&FORCE) == 0)
  2160. break;
  2161. // tcb->snd.ptr = tcb->snd.una;
  2162. }
  2163. usable = 1;
  2164. }
  2165. else {
  2166. usable = tcb->cwind;
  2167. if(tcb->snd.wnd < usable)
  2168. usable = tcb->snd.wnd;
  2169. usable -= sent;
  2170. }
  2171. ssize = sndcnt-sent;
  2172. if(ssize && usable < 2)
  2173. netlog(s->p->f, Logtcp, "throttled snd.wnd %lud cwind %lud\n",
  2174. tcb->snd.wnd, tcb->cwind);
  2175. if(usable < ssize)
  2176. ssize = usable;
  2177. if(tcb->mss < ssize)
  2178. ssize = tcb->mss;
  2179. dsize = ssize;
  2180. seg.urg = 0;
  2181. if(ssize == 0)
  2182. if((tcb->flags&FORCE) == 0)
  2183. break;
  2184. tcb->flags &= ~FORCE;
  2185. tcprcvwin(s);
  2186. /* By default we will generate an ack */
  2187. tcphalt(tpriv, &tcb->acktimer);
  2188. tcb->rcv.una = 0;
  2189. seg.source = s->lport;
  2190. seg.dest = s->rport;
  2191. seg.flags = ACK;
  2192. seg.mss = 0;
  2193. seg.ws = 0;
  2194. switch(tcb->state){
  2195. case Syn_sent:
  2196. seg.flags = 0;
  2197. if(tcb->snd.ptr == tcb->iss){
  2198. seg.flags |= SYN;
  2199. dsize--;
  2200. seg.mss = tcb->mss;
  2201. seg.ws = tcb->scale;
  2202. }
  2203. break;
  2204. case Syn_received:
  2205. /*
  2206. * don't send any data with a SYN/ACK packet
  2207. * because Linux rejects the packet in its
  2208. * attempt to solve the SYN attack problem
  2209. */
  2210. if(tcb->snd.ptr == tcb->iss){
  2211. seg.flags |= SYN;
  2212. dsize = 0;
  2213. ssize = 1;
  2214. seg.mss = tcb->mss;
  2215. seg.ws = tcb->scale;
  2216. }
  2217. break;
  2218. }
  2219. seg.seq = tcb->snd.ptr;
  2220. seg.ack = tcb->rcv.nxt;
  2221. seg.wnd = tcb->rcv.wnd;
  2222. /* Pull out data to send */
  2223. bp = nil;
  2224. if(dsize != 0) {
  2225. bp = qcopy(s->wq, dsize, sent);
  2226. if(BLEN(bp) != dsize) {
  2227. seg.flags |= FIN;
  2228. dsize--;
  2229. }
  2230. }
  2231. if(sent+dsize == sndcnt)
  2232. seg.flags |= PSH;
  2233. /* keep track of balance of resent data */
  2234. if(seq_lt(tcb->snd.ptr, tcb->snd.nxt)) {
  2235. n = tcb->snd.nxt - tcb->snd.ptr;
  2236. if(ssize < n)
  2237. n = ssize;
  2238. tcb->resent += n;
  2239. netlog(f, Logtcp, "rexmit: %I.%d -> %I.%d ptr %lux nxt %lux\n",
  2240. s->raddr, s->rport, s->laddr, s->lport, tcb->snd.ptr, tcb->snd.nxt);
  2241. tpriv->stats[RetransSegs]++;
  2242. }
  2243. tcb->snd.ptr += ssize;
  2244. /* Pull up the send pointer so we can accept acks
  2245. * for this window
  2246. */
  2247. if(seq_gt(tcb->snd.ptr,tcb->snd.nxt))
  2248. tcb->snd.nxt = tcb->snd.ptr;
  2249. /* Build header, link data and compute cksum */
  2250. switch(version){
  2251. case V4:
  2252. tcb->protohdr.tcp4hdr.vihl = IP_VER4;
  2253. hbp = htontcp4(&seg, bp, &tcb->protohdr.tcp4hdr, tcb);
  2254. if(hbp == nil) {
  2255. freeblist(bp);
  2256. return;
  2257. }
  2258. break;
  2259. case V6:
  2260. tcb->protohdr.tcp6hdr.vcf[0] = IP_VER6;
  2261. hbp = htontcp6(&seg, bp, &tcb->protohdr.tcp6hdr, tcb);
  2262. if(hbp == nil) {
  2263. freeblist(bp);
  2264. return;
  2265. }
  2266. break;
  2267. default:
  2268. hbp = nil; /* to suppress a warning */
  2269. panic("tcpoutput: version %d", version);
  2270. }
  2271. /* Start the transmission timers if there is new data and we
  2272. * expect acknowledges
  2273. */
  2274. if(ssize != 0){
  2275. if(tcb->timer.state != TcptimerON)
  2276. tcpgo(tpriv, &tcb->timer);
  2277. /* If round trip timer isn't running, start it.
  2278. * measure the longest packet only in case the
  2279. * transmission time dominates RTT
  2280. */
  2281. if(tcb->rtt_timer.state != TcptimerON)
  2282. if(ssize == tcb->mss) {
  2283. tcpgo(tpriv, &tcb->rtt_timer);
  2284. tcb->rttseq = tcb->snd.ptr;
  2285. }
  2286. }
  2287. tpriv->stats[OutSegs]++;
  2288. if(tcb->kacounter > 0)
  2289. tcpgo(tpriv, &tcb->katimer);
  2290. switch(version){
  2291. case V4:
  2292. if(ipoput4(f, hbp, 0, s->ttl, s->tos) < 0){
  2293. /* a negative return means no route */
  2294. localclose(s, "no route");
  2295. }
  2296. break;
  2297. case V6:
  2298. if(ipoput6(f, hbp, 0, s->ttl, s->tos) < 0){
  2299. /* a negative return means no route */
  2300. localclose(s, "no route");
  2301. }
  2302. break;
  2303. default:
  2304. panic("tcpoutput2: version %d", version);
  2305. }
  2306. if((msgs%4) == 1){
  2307. qunlock(s);
  2308. sched();
  2309. qlock(s);
  2310. }
  2311. }
  2312. }
  2313. /*
  2314. * the BSD convention (hack?) for keep alives. resend last uchar acked.
  2315. */
  2316. void
  2317. tcpsendka(Conv *s)
  2318. {
  2319. Tcp seg;
  2320. Tcpctl *tcb;
  2321. Block *hbp,*dbp;
  2322. tcb = (Tcpctl*)s->ptcl;
  2323. dbp = nil;
  2324. seg.urg = 0;
  2325. seg.source = s->lport;
  2326. seg.dest = s->rport;
  2327. seg.flags = ACK|PSH;
  2328. seg.mss = 0;
  2329. seg.ws = 0;
  2330. if(tcpporthogdefense)
  2331. seg.seq = tcb->snd.una-(1<<30)-nrand(1<<20);
  2332. else
  2333. seg.seq = tcb->snd.una-1;
  2334. seg.ack = tcb->rcv.nxt;
  2335. tcb->rcv.una = 0;
  2336. seg.wnd = tcb->rcv.wnd;
  2337. if(tcb->state == Finwait2){
  2338. seg.flags |= FIN;
  2339. } else {
  2340. dbp = allocb(1);
  2341. dbp->wp++;
  2342. }
  2343. if(isv4(s->raddr)) {
  2344. /* Build header, link data and compute cksum */
  2345. tcb->protohdr.tcp4hdr.vihl = IP_VER4;
  2346. hbp = htontcp4(&seg, dbp, &tcb->protohdr.tcp4hdr, tcb);
  2347. if(hbp == nil) {
  2348. freeblist(dbp);
  2349. return;
  2350. }
  2351. ipoput4(s->p->f, hbp, 0, s->ttl, s->tos);
  2352. }
  2353. else {
  2354. /* Build header, link data and compute cksum */
  2355. tcb->protohdr.tcp6hdr.vcf[0] = IP_VER6;
  2356. hbp = htontcp6(&seg, dbp, &tcb->protohdr.tcp6hdr, tcb);
  2357. if(hbp == nil) {
  2358. freeblist(dbp);
  2359. return;
  2360. }
  2361. ipoput6(s->p->f, hbp, 0, s->ttl, s->tos);
  2362. }
  2363. }
  2364. /*
  2365. * if we've timed out, close the connection
  2366. * otherwise, send a keepalive and restart the timer
  2367. */
  2368. void
  2369. tcpsetkacounter(Tcpctl *tcb)
  2370. {
  2371. tcb->kacounter = MAXBACKMS / (tcb->katimer.start*MSPTICK);;
  2372. if(tcb->kacounter < 3)
  2373. tcb->kacounter = 3;
  2374. }
  2375. void
  2376. tcpkeepalive(void *v)
  2377. {
  2378. Tcpctl *tcb;
  2379. Conv *s;
  2380. s = v;
  2381. tcb = (Tcpctl*)s->ptcl;
  2382. if(waserror()){
  2383. qunlock(s);
  2384. nexterror();
  2385. }
  2386. qlock(s);
  2387. if(tcb->state != Closed){
  2388. if(--(tcb->kacounter) <= 0) {
  2389. localclose(s, Etimedout);
  2390. } else {
  2391. tcpsendka(s);
  2392. tcpgo(s->p->priv, &tcb->katimer);
  2393. }
  2394. }
  2395. qunlock(s);
  2396. poperror();
  2397. }
  2398. /*
  2399. * start keepalive timer
  2400. */
  2401. char*
  2402. tcpstartka(Conv *s, char **f, int n)
  2403. {
  2404. Tcpctl *tcb;
  2405. int x;
  2406. tcb = (Tcpctl*)s->ptcl;
  2407. if(n > 1){
  2408. x = atoi(f[1]);
  2409. if(x >= MSPTICK)
  2410. tcb->katimer.start = x/MSPTICK;
  2411. }
  2412. tcpsetkacounter(tcb);
  2413. tcpgo(s->p->priv, &tcb->katimer);
  2414. return nil;
  2415. }
  2416. /*
  2417. * turn checksums on/off
  2418. */
  2419. char*
  2420. tcpsetchecksum(Conv *s, char **f, int)
  2421. {
  2422. Tcpctl *tcb;
  2423. tcb = (Tcpctl*)s->ptcl;
  2424. tcb->nochecksum = !atoi(f[1]);
  2425. return nil;
  2426. }
  2427. void
  2428. tcprxmit(Conv *s)
  2429. {
  2430. Tcpctl *tcb;
  2431. tcb = (Tcpctl*)s->ptcl;
  2432. tcb->flags |= RETRAN|FORCE;
  2433. tcb->snd.ptr = tcb->snd.una;
  2434. /*
  2435. * We should be halving the slow start threshhold (down to one
  2436. * mss) but leaving it at mss seems to work well enough
  2437. */
  2438. tcb->ssthresh = tcb->mss;
  2439. /*
  2440. * pull window down to a single packet
  2441. */
  2442. tcb->cwind = tcb->mss;
  2443. tcpoutput(s);
  2444. }
  2445. void
  2446. tcptimeout(void *arg)
  2447. {
  2448. Conv *s;
  2449. Tcpctl *tcb;
  2450. int maxback;
  2451. Tcppriv *tpriv;
  2452. s = (Conv*)arg;
  2453. tpriv = s->p->priv;
  2454. tcb = (Tcpctl*)s->ptcl;
  2455. if(waserror()){
  2456. qunlock(s);
  2457. nexterror();
  2458. }
  2459. qlock(s);
  2460. switch(tcb->state){
  2461. default:
  2462. tcb->backoff++;
  2463. if(tcb->state == Syn_sent)
  2464. maxback = MAXBACKMS/2;
  2465. else
  2466. maxback = MAXBACKMS;
  2467. tcb->backedoff += tcb->timer.start * MSPTICK;
  2468. if(tcb->backedoff >= maxback) {
  2469. localclose(s, Etimedout);
  2470. break;
  2471. }
  2472. netlog(s->p->f, Logtcprxmt, "timeout rexmit 0x%lux %d/%d\n", tcb->snd.una, tcb->timer.start, NOW);
  2473. tcpsettimer(tcb);
  2474. tcprxmit(s);
  2475. tpriv->stats[RetransTimeouts]++;
  2476. tcb->snd.dupacks = 0;
  2477. break;
  2478. case Time_wait:
  2479. localclose(s, nil);
  2480. break;
  2481. case Closed:
  2482. break;
  2483. }
  2484. qunlock(s);
  2485. poperror();
  2486. }
  2487. int
  2488. inwindow(Tcpctl *tcb, int seq)
  2489. {
  2490. return seq_within(seq, tcb->rcv.nxt, tcb->rcv.nxt+tcb->rcv.wnd-1);
  2491. }
  2492. /*
  2493. * set up state for a received SYN (or SYN ACK) packet
  2494. */
  2495. void
  2496. procsyn(Conv *s, Tcp *seg)
  2497. {
  2498. Tcpctl *tcb;
  2499. tcb = (Tcpctl*)s->ptcl;
  2500. tcb->flags |= FORCE;
  2501. tcb->rcv.nxt = seg->seq + 1;
  2502. tcb->rcv.urg = tcb->rcv.nxt;
  2503. tcb->irs = seg->seq;
  2504. /* our sending max segment size cannot be bigger than what he asked for */
  2505. if(seg->mss != 0 && seg->mss < tcb->mss)
  2506. tcb->mss = seg->mss;
  2507. /* the congestion window always starts out as a single segment */
  2508. tcb->snd.wnd = seg->wnd;
  2509. tcb->cwind = tcb->mss;
  2510. }
  2511. int
  2512. addreseq(Tcpctl *tcb, Tcppriv *tpriv, Tcp *seg, Block *bp, ushort length)
  2513. {
  2514. Reseq *rp, *rp1;
  2515. int i;
  2516. static int once;
  2517. rp = malloc(sizeof(Reseq));
  2518. if(rp == nil){
  2519. freeblist(bp); /* bp always consumed by add_reseq */
  2520. return 0;
  2521. }
  2522. rp->seg = *seg;
  2523. rp->bp = bp;
  2524. rp->length = length;
  2525. /* Place on reassembly list sorting by starting seq number */
  2526. rp1 = tcb->reseq;
  2527. if(rp1 == nil || seq_lt(seg->seq, rp1->seg.seq)) {
  2528. rp->next = rp1;
  2529. tcb->reseq = rp;
  2530. if(rp->next != nil)
  2531. tpriv->stats[OutOfOrder]++;
  2532. return 0;
  2533. }
  2534. length = 0;
  2535. for(i = 0;; i++) {
  2536. length += rp1->length;
  2537. if(rp1->next == nil || seq_lt(seg->seq, rp1->next->seg.seq)) {
  2538. rp->next = rp1->next;
  2539. rp1->next = rp;
  2540. if(rp->next != nil)
  2541. tpriv->stats[OutOfOrder]++;
  2542. break;
  2543. }
  2544. rp1 = rp1->next;
  2545. }
  2546. if(length > QMAX && once++ == 0){
  2547. print("very long tcp resequence queue: %d\n", length);
  2548. for(rp1 = tcb->reseq, i = 0; i < 10 && rp1 != nil; rp1 = rp1->next, i++)
  2549. print("0x%lux 0x%lux 0x%ux\n", rp1->seg.seq, rp1->seg.ack,
  2550. rp1->seg.flags);
  2551. return -1;
  2552. }
  2553. return 0;
  2554. }
  2555. void
  2556. getreseq(Tcpctl *tcb, Tcp *seg, Block **bp, ushort *length)
  2557. {
  2558. Reseq *rp;
  2559. rp = tcb->reseq;
  2560. if(rp == nil)
  2561. return;
  2562. tcb->reseq = rp->next;
  2563. *seg = rp->seg;
  2564. *bp = rp->bp;
  2565. *length = rp->length;
  2566. free(rp);
  2567. }
  2568. int
  2569. tcptrim(Tcpctl *tcb, Tcp *seg, Block **bp, ushort *length)
  2570. {
  2571. ushort len;
  2572. uchar accept;
  2573. int dupcnt, excess;
  2574. accept = 0;
  2575. len = *length;
  2576. if(seg->flags & SYN)
  2577. len++;
  2578. if(seg->flags & FIN)
  2579. len++;
  2580. if(tcb->rcv.wnd == 0) {
  2581. if(len == 0 && seg->seq == tcb->rcv.nxt)
  2582. return 0;
  2583. }
  2584. else {
  2585. /* Some part of the segment should be in the window */
  2586. if(inwindow(tcb,seg->seq))
  2587. accept++;
  2588. else
  2589. if(len != 0) {
  2590. if(inwindow(tcb, seg->seq+len-1) ||
  2591. seq_within(tcb->rcv.nxt, seg->seq,seg->seq+len-1))
  2592. accept++;
  2593. }
  2594. }
  2595. if(!accept) {
  2596. freeblist(*bp);
  2597. return -1;
  2598. }
  2599. dupcnt = tcb->rcv.nxt - seg->seq;
  2600. if(dupcnt > 0){
  2601. tcb->rerecv += dupcnt;
  2602. if(seg->flags & SYN){
  2603. seg->flags &= ~SYN;
  2604. seg->seq++;
  2605. if(seg->urg > 1)
  2606. seg->urg--;
  2607. else
  2608. seg->flags &= ~URG;
  2609. dupcnt--;
  2610. }
  2611. if(dupcnt > 0){
  2612. pullblock(bp, (ushort)dupcnt);
  2613. seg->seq += dupcnt;
  2614. *length -= dupcnt;
  2615. if(seg->urg > dupcnt)
  2616. seg->urg -= dupcnt;
  2617. else {
  2618. seg->flags &= ~URG;
  2619. seg->urg = 0;
  2620. }
  2621. }
  2622. }
  2623. excess = seg->seq + *length - (tcb->rcv.nxt + tcb->rcv.wnd);
  2624. if(excess > 0) {
  2625. tcb->rerecv += excess;
  2626. *length -= excess;
  2627. *bp = trimblock(*bp, 0, *length);
  2628. if(*bp == nil)
  2629. panic("presotto is a boofhead");
  2630. seg->flags &= ~FIN;
  2631. }
  2632. return 0;
  2633. }
  2634. void
  2635. tcpadvise(Proto *tcp, Block *bp, char *msg)
  2636. {
  2637. Tcp4hdr *h4;
  2638. Tcp6hdr *h6;
  2639. Tcpctl *tcb;
  2640. uchar source[IPaddrlen];
  2641. uchar dest[IPaddrlen];
  2642. ushort psource, pdest;
  2643. Conv *s, **p;
  2644. h4 = (Tcp4hdr*)(bp->rp);
  2645. h6 = (Tcp6hdr*)(bp->rp);
  2646. if((h4->vihl&0xF0)==IP_VER4) {
  2647. v4tov6(dest, h4->tcpdst);
  2648. v4tov6(source, h4->tcpsrc);
  2649. psource = nhgets(h4->tcpsport);
  2650. pdest = nhgets(h4->tcpdport);
  2651. }
  2652. else {
  2653. ipmove(dest, h6->tcpdst);
  2654. ipmove(source, h6->tcpsrc);
  2655. psource = nhgets(h6->tcpsport);
  2656. pdest = nhgets(h6->tcpdport);
  2657. }
  2658. /* Look for a connection */
  2659. qlock(tcp);
  2660. for(p = tcp->conv; *p; p++) {
  2661. s = *p;
  2662. tcb = (Tcpctl*)s->ptcl;
  2663. if(s->rport == pdest)
  2664. if(s->lport == psource)
  2665. if(tcb->state != Closed)
  2666. if(ipcmp(s->raddr, dest) == 0)
  2667. if(ipcmp(s->laddr, source) == 0){
  2668. qlock(s);
  2669. qunlock(tcp);
  2670. switch(tcb->state){
  2671. case Syn_sent:
  2672. localclose(s, msg);
  2673. break;
  2674. }
  2675. qunlock(s);
  2676. freeblist(bp);
  2677. return;
  2678. }
  2679. }
  2680. qunlock(tcp);
  2681. freeblist(bp);
  2682. }
  2683. static char*
  2684. tcpporthogdefensectl(char *val)
  2685. {
  2686. if(strcmp(val, "on") == 0)
  2687. tcpporthogdefense = 1;
  2688. else if(strcmp(val, "off") == 0)
  2689. tcpporthogdefense = 0;
  2690. else
  2691. return "unknown value for tcpporthogdefense";
  2692. return nil;
  2693. }
  2694. /* called with c qlocked */
  2695. char*
  2696. tcpctl(Conv* c, char** f, int n)
  2697. {
  2698. if(n == 1 && strcmp(f[0], "hangup") == 0)
  2699. return tcphangup(c);
  2700. if(n >= 1 && strcmp(f[0], "keepalive") == 0)
  2701. return tcpstartka(c, f, n);
  2702. if(n >= 1 && strcmp(f[0], "checksum") == 0)
  2703. return tcpsetchecksum(c, f, n);
  2704. if(n >= 1 && strcmp(f[0], "tcpporthogdefense") == 0)
  2705. return tcpporthogdefensectl(f[1]);
  2706. return "unknown control request";
  2707. }
  2708. int
  2709. tcpstats(Proto *tcp, char *buf, int len)
  2710. {
  2711. Tcppriv *priv;
  2712. char *p, *e;
  2713. int i;
  2714. priv = tcp->priv;
  2715. p = buf;
  2716. e = p+len;
  2717. for(i = 0; i < Nstats; i++)
  2718. p = seprint(p, e, "%s: %lud\n", statnames[i], priv->stats[i]);
  2719. return p - buf;
  2720. }
  2721. /*
  2722. * garbage collect any stale conversations:
  2723. * - SYN received but no SYN-ACK after 5 seconds (could be the SYN attack)
  2724. * - Finwait2 after 5 minutes
  2725. *
  2726. * this is called whenever we run out of channels. Both checks are
  2727. * of questionable validity so we try to use them only when we're
  2728. * up against the wall.
  2729. */
  2730. int
  2731. tcpgc(Proto *tcp)
  2732. {
  2733. Conv *c, **pp, **ep;
  2734. int n;
  2735. Tcpctl *tcb;
  2736. n = 0;
  2737. ep = &tcp->conv[tcp->nc];
  2738. for(pp = tcp->conv; pp < ep; pp++) {
  2739. c = *pp;
  2740. if(c == nil)
  2741. break;
  2742. if(!canqlock(c))
  2743. continue;
  2744. tcb = (Tcpctl*)c->ptcl;
  2745. switch(tcb->state){
  2746. case Syn_received:
  2747. if(NOW - tcb->time > 5000){
  2748. localclose(c, "timed out");
  2749. n++;
  2750. }
  2751. break;
  2752. case Finwait2:
  2753. if(NOW - tcb->time > 5*60*1000){
  2754. localclose(c, "timed out");
  2755. n++;
  2756. }
  2757. break;
  2758. }
  2759. qunlock(c);
  2760. }
  2761. return n;
  2762. }
  2763. void
  2764. tcpsettimer(Tcpctl *tcb)
  2765. {
  2766. int x;
  2767. /* round trip depenency */
  2768. x = backoff(tcb->backoff) *
  2769. (tcb->mdev + (tcb->srtt>>LOGAGAIN) + MSPTICK) / MSPTICK;
  2770. /* bounded twixt 1/2 and 10 seconds */
  2771. if(x < 500/MSPTICK)
  2772. x = 500/MSPTICK;
  2773. else if(x > (10000/MSPTICK))
  2774. x = 10000/MSPTICK;
  2775. tcb->timer.start = x;
  2776. }
  2777. void
  2778. tcpinit(Fs *fs)
  2779. {
  2780. Proto *tcp;
  2781. Tcppriv *tpriv;
  2782. tcp = smalloc(sizeof(Proto));
  2783. tpriv = tcp->priv = smalloc(sizeof(Tcppriv));
  2784. tcp->name = "tcp";
  2785. tcp->connect = tcpconnect;
  2786. tcp->announce = tcpannounce;
  2787. tcp->ctl = tcpctl;
  2788. tcp->state = tcpstate;
  2789. tcp->create = tcpcreate;
  2790. tcp->close = tcpclose;
  2791. tcp->rcv = tcpiput;
  2792. tcp->advise = tcpadvise;
  2793. tcp->stats = tcpstats;
  2794. tcp->inuse = tcpinuse;
  2795. tcp->gc = tcpgc;
  2796. tcp->ipproto = IP_TCPPROTO;
  2797. tcp->nc = scalednconv();
  2798. tcp->ptclsize = sizeof(Tcpctl);
  2799. tpriv->stats[MaxConn] = tcp->nc;
  2800. Fsproto(fs, tcp);
  2801. }
  2802. void
  2803. tcpsetscale(Conv *s, Tcpctl *tcb, ushort rcvscale, ushort sndscale)
  2804. {
  2805. if(rcvscale){
  2806. tcb->rcv.scale = rcvscale & 0xff;
  2807. tcb->snd.scale = sndscale & 0xff;
  2808. tcb->window = QMAX<<tcb->snd.scale;
  2809. qsetlimit(s->rq, tcb->window);
  2810. } else {
  2811. tcb->rcv.scale = 0;
  2812. tcb->snd.scale = 0;
  2813. tcb->window = QMAX;
  2814. qsetlimit(s->rq, tcb->window);
  2815. }
  2816. }