|
|
1.1 ! root 1: /*- ! 2: * Copyright (c) 1991 The Regents of the University of California. ! 3: * All rights reserved. ! 4: * ! 5: * Redistribution and use in source and binary forms, with or without ! 6: * modification, are permitted provided that the following conditions ! 7: * are met: ! 8: * 1. Redistributions of source code must retain the above copyright ! 9: * notice, this list of conditions and the following disclaimer. ! 10: * 2. Redistributions in binary form must reproduce the above copyright ! 11: * notice, this list of conditions and the following disclaimer in the ! 12: * documentation and/or other materials provided with the distribution. ! 13: * 3. All advertising materials mentioning features or use of this software ! 14: * must display the following acknowledgement: ! 15: * This product includes software developed by the University of ! 16: * California, Berkeley and its contributors. ! 17: * 4. Neither the name of the University nor the names of its contributors ! 18: * may be used to endorse or promote products derived from this software ! 19: * without specific prior written permission. ! 20: * ! 21: * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND ! 22: * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE ! 23: * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ! 24: * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE ! 25: * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL ! 26: * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS ! 27: * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) ! 28: * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT ! 29: * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY ! 30: * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF ! 31: * SUCH DAMAGE. ! 32: * ! 33: * @(#)tp_input.c 7.19 (Berkeley) 6/27/91 ! 34: */ ! 35: ! 36: /*********************************************************** ! 37: Copyright IBM Corporation 1987 ! 38: ! 39: All Rights Reserved ! 40: ! 41: Permission to use, copy, modify, and distribute this software and its ! 42: documentation for any purpose and without fee is hereby granted, ! 43: provided that the above copyright notice appear in all copies and that ! 44: both that copyright notice and this permission notice appear in ! 45: supporting documentation, and that the name of IBM not be ! 46: used in advertising or publicity pertaining to distribution of the ! 47: software without specific, written prior permission. ! 48: ! 49: IBM DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING ! 50: ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL ! 51: IBM BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ! 52: ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, ! 53: WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ! 54: ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS ! 55: SOFTWARE. ! 56: ! 57: ******************************************************************/ ! 58: ! 59: /* ! 60: * ARGO Project, Computer Sciences Dept., University of Wisconsin - Madison ! 61: */ ! 62: /* ! 63: * ARGO TP ! 64: * ! 65: * $Header: tp_input.c,v 5.6 88/11/18 17:27:38 nhall Exp $ ! 66: * $Source: /usr/argo/sys/netiso/RCS/tp_input.c,v $ ! 67: * ! 68: * tp_input() gets an mbuf chain from ip. Actually, not directly ! 69: * from ip, because ip calls a net-level routine that strips off ! 70: * the net header and then calls tp_input(), passing the proper type ! 71: * of addresses for the address family in use (how it figures out ! 72: * which AF is not yet determined. ! 73: * ! 74: * Decomposing the tpdu is some of the most laughable code. The variable-length ! 75: * parameters and the problem of non-aligned memory references ! 76: * necessitates such abominations as the macros WHILE_OPTIONS (q.v. below) ! 77: * to loop through the header and decompose it. ! 78: * ! 79: * The routine tp_newsocket() is called when a CR comes in for a listening ! 80: * socket. tp_input calls sonewconn() and tp_newsocket() to set up the ! 81: * "child" socket. Most tpcb values are copied from the parent tpcb into ! 82: * the child. ! 83: * ! 84: * Also in here is tp_headersize() (grot) which tells the expected size ! 85: * of a tp header, to be used by other layers. It's in here because it ! 86: * uses the static structure tpdu_info. ! 87: */ ! 88: ! 89: #include "param.h" ! 90: #include "systm.h" ! 91: #include "mbuf.h" ! 92: #include "socket.h" ! 93: #include "socketvar.h" ! 94: #include "domain.h" ! 95: #include "protosw.h" ! 96: #include "errno.h" ! 97: #include "time.h" ! 98: #include "kernel.h" ! 99: #include "types.h" ! 100: #include "iso.h" ! 101: #include "iso_errno.h" ! 102: #include "iso_pcb.h" ! 103: #include "tp_param.h" ! 104: #include "tp_timer.h" ! 105: #include "tp_stat.h" ! 106: #include "tp_pcb.h" ! 107: #include "argo_debug.h" ! 108: #include "tp_trace.h" ! 109: #include "tp_tpdu.h" ! 110: ! 111: #include "../net/if.h" ! 112: #ifdef TRUE ! 113: #undef FALSE ! 114: #undef TRUE ! 115: #endif ! 116: #include "../netccitt/x25.h" ! 117: #include "../netccitt/pk.h" ! 118: #include "../netccitt/pk_var.h" ! 119: ! 120: int iso_check_csum(), tp_driver(), tp_headersize(), tp_error_emit(); ! 121: ! 122: /* ! 123: #ifdef lint ! 124: #undef ATTR ! 125: #define ATTR(X)ev_number ! 126: #endif lint ! 127: */ ! 128: ! 129: struct mbuf * ! 130: tp_inputprep(m) ! 131: register struct mbuf *m; ! 132: { ! 133: int hdrlen; ! 134: ! 135: IFDEBUG(D_TPINPUT) ! 136: printf("tp_inputprep: m 0x%x\n", m) ; ! 137: ENDDEBUG ! 138: ! 139: while( m->m_len < 1 ) { ! 140: if( (m = m_free(m)) == MNULL ) { ! 141: return (struct mbuf *)0; ! 142: } ! 143: } ! 144: if(((int)m->m_data) & 0x3) { ! 145: /* If we are not 4-byte aligned, we have to be ! 146: * above the beginning of the mbuf, and it is ok just ! 147: * to slide it back. ! 148: */ ! 149: caddr_t ocp = m->m_data; ! 150: ! 151: m->m_data = (caddr_t)(((int)m->m_data) & ~0x3); ! 152: ovbcopy(ocp, m->m_data, (unsigned)m->m_len); ! 153: } ! 154: CHANGE_MTYPE(m, TPMT_DATA); ! 155: ! 156: /* we KNOW that there is at least 1 byte in this mbuf ! 157: and that it is hdr->tpdu_li XXXXXXX! */ ! 158: ! 159: hdrlen = 1 + *mtod( m, u_char *); ! 160: ! 161: /* ! 162: * now pull up the whole tp header ! 163: */ ! 164: if ( m->m_len < hdrlen) { ! 165: if ((m = m_pullup(m, hdrlen)) == MNULL ) { ! 166: IncStat(ts_recv_drop); ! 167: return (struct mbuf *)0; ! 168: } ! 169: } ! 170: IFDEBUG(D_INPUT) ! 171: printf( ! 172: " at end: m 0x%x hdr->tpdu_li 0x%x m_len 0x%x\n",m, ! 173: hdrlen, m->m_len); ! 174: ENDDEBUG ! 175: return m; ! 176: } ! 177: ! 178: /* begin groan ! 179: * -- this array and the following macros allow you to step through the ! 180: * parameters of the variable part of a header ! 181: * note that if for any reason the values of the **_TPDU macros (in tp_events.h) ! 182: * should change, this array has to be rearranged ! 183: */ ! 184: ! 185: #define TP_LEN_CLASS_0_INDEX 2 ! 186: #define TP_MAX_DATA_INDEX 3 ! 187: ! 188: static u_char tpdu_info[][4] = ! 189: { ! 190: /* length max data len */ ! 191: /* reg fmt xtd fmt class 0 */ ! 192: /* UNUSED 0x0 */ 0x0 , 0x0, 0x0, 0x0, ! 193: /* XPD_TPDU_type 0x1 */ 0x5, 0x8, 0x0, TP_MAX_XPD_DATA, ! 194: /* XAK_TPDU_type 0x2 */ 0x5 , 0x8, 0x0, 0x0, ! 195: /* GR_TPDU_type 0x3 */ 0x0 , 0x0, 0x0, 0x0, ! 196: /* UNUSED 0x4 */ 0x0 , 0x0, 0x0, 0x0, ! 197: /* UNUSED 0x5 */ 0x0 , 0x0, 0x0, 0x0, ! 198: /* AK_TPDU_type 0x6 */ 0x5, 0xa, 0x0, 0x0, ! 199: /* ER_TPDU_type 0x7 */ 0x5, 0x5, 0x0, 0x0, ! 200: /* DR_TPDU_type 0x8 */ 0x7, 0x7, 0x7, TP_MAX_DR_DATA, ! 201: /* UNUSED 0x9 */ 0x0 , 0x0, 0x0, 0x0, ! 202: /* UNUSED 0xa */ 0x0 , 0x0, 0x0, 0x0, ! 203: /* UNUSED 0xb */ 0x0 , 0x0, 0x0, 0x0, ! 204: /* DC_TPDU_type 0xc */ 0x6, 0x6, 0x0, 0x0, ! 205: /* CC_TPDU_type 0xd */ 0x7, 0x7, 0x7, TP_MAX_CC_DATA, ! 206: /* CR_TPDU_type 0xe */ 0x7, 0x7, 0x7, TP_MAX_CR_DATA, ! 207: /* DT_TPDU_type 0xf */ 0x5, 0x8, 0x3, 0x0, ! 208: }; ! 209: ! 210: #define CHECK(Phrase, Erval, Stat, Whattodo, Loc)\ ! 211: if (Phrase) {error = (Erval); errlen = (int)(Loc); IncStat(Stat); tpibrk();\ ! 212: goto Whattodo; } ! 213: ! 214: tpibrk() {} ! 215: ! 216: /* ! 217: * WHENEVER YOU USE THE FOLLOWING MACRO, ! 218: * BE SURE THE TPDUTYPE IS A LEGIT VALUE FIRST! ! 219: */ ! 220: ! 221: #define WHILE_OPTIONS(P, hdr, format)\ ! 222: { register caddr_t P = tpdu_info[(hdr)->tpdu_type][(format)] + (caddr_t)hdr;\ ! 223: caddr_t PLIM = 1 + hdr->tpdu_li + (caddr_t)hdr;\ ! 224: for (;; P += 2 + ((struct tp_vbp *)P)->tpv_len) {\ ! 225: CHECK((P > PLIM), E_TP_LENGTH_INVAL, ts_inv_length,\ ! 226: respond, P - (caddr_t)hdr);\ ! 227: if (P == PLIM) break; ! 228: ! 229: #define END_WHILE_OPTIONS(P) } } ! 230: ! 231: /* end groan */ ! 232: ! 233: /* ! 234: * NAME: tp_newsocket() ! 235: * ! 236: * CALLED FROM: ! 237: * tp_input() on incoming CR, when a socket w/ the called suffix ! 238: * is awaiting a connection request ! 239: * ! 240: * FUNCTION and ARGUMENTS: ! 241: * Create a new socket structure, attach to it a new transport pcb, ! 242: * using a copy of the net level pcb for the parent socket. ! 243: * (so) is the parent socket. ! 244: * (fname) is the foreign address (all that's used is the nsap portion) ! 245: * ! 246: * RETURN VALUE: ! 247: * a new socket structure, being this end of the newly formed connection. ! 248: * ! 249: * SIDE EFFECTS: ! 250: * Sets a few things in the tpcb and net level pcb ! 251: * ! 252: * NOTES: ! 253: */ ! 254: static struct socket * ! 255: tp_newsocket(so, fname, cons_channel, class_to_use, netservice) ! 256: struct socket *so; ! 257: struct sockaddr *fname; ! 258: u_int cons_channel; ! 259: u_char class_to_use; ! 260: u_int netservice; ! 261: { ! 262: register struct tp_pcb *tpcb = sototpcb(so); /* old tpcb, needed below */ ! 263: register struct tp_pcb *newtpcb; ! 264: ! 265: /* ! 266: * sonewconn() gets a new socket structure, ! 267: * a new lower layer pcb and a new tpcb, ! 268: * but the pcbs are unnamed (not bound) ! 269: */ ! 270: IFTRACE(D_NEWSOCK) ! 271: tptraceTPCB(TPPTmisc, "newsock: listg_so, _tpcb, so_head", ! 272: so, tpcb, so->so_head, 0); ! 273: ENDTRACE ! 274: ! 275: if ((so = sonewconn(so, SS_ISCONFIRMING)) == (struct socket *)0) ! 276: return so; ! 277: IFTRACE(D_NEWSOCK) ! 278: tptraceTPCB(TPPTmisc, "newsock: after newconn so, so_head", ! 279: so, so->so_head, 0, 0); ! 280: ENDTRACE ! 281: ! 282: IFDEBUG(D_NEWSOCK) ! 283: printf("tp_newsocket(channel 0x%x) after sonewconn so 0x%x \n", ! 284: cons_channel, so); ! 285: dump_addr(fname); ! 286: { ! 287: struct socket *t, *head ; ! 288: ! 289: head = so->so_head; ! 290: t = so; ! 291: printf("so 0x%x so_head 0x%x so_q0 0x%x, q0len %d\n", ! 292: t, t->so_head, t->so_q0, t->so_q0len); ! 293: while( (t=t->so_q0) && t!= so && t!= head) ! 294: printf("so 0x%x so_head 0x%x so_q0 0x%x, q0len %d\n", ! 295: t, t->so_head, t->so_q0, t->so_q0len); ! 296: } ! 297: ENDDEBUG ! 298: ! 299: /* ! 300: * before we clobber the old tpcb ptr, get these items from the parent pcb ! 301: */ ! 302: newtpcb = sototpcb(so); ! 303: newtpcb->_tp_param = tpcb->_tp_param; ! 304: newtpcb->tp_flags = tpcb->tp_flags; ! 305: newtpcb->tp_lcredit = tpcb->tp_lcredit; ! 306: newtpcb->tp_l_tpdusize = tpcb->tp_l_tpdusize; ! 307: newtpcb->tp_lsuffixlen = tpcb->tp_lsuffixlen; ! 308: bcopy( tpcb->tp_lsuffix, newtpcb->tp_lsuffix, newtpcb->tp_lsuffixlen); ! 309: soreserve(so, (u_long)tpcb->tp_winsize, (u_long)tpcb->tp_winsize); ! 310: ! 311: if( /* old */ tpcb->tp_ucddata) { ! 312: /* ! 313: * These data are the connect- , confirm- or disconnect- data. ! 314: */ ! 315: struct mbuf *conndata; ! 316: ! 317: conndata = m_copy(tpcb->tp_ucddata, 0, (int)M_COPYALL); ! 318: IFDEBUG(D_CONN) ! 319: dump_mbuf(conndata, "conndata after mcopy"); ! 320: ENDDEBUG ! 321: newtpcb->tp_ucddata = conndata; ! 322: } ! 323: ! 324: tpcb = newtpcb; ! 325: tpcb->tp_state = TP_LISTENING; ! 326: tpcb->tp_class = class_to_use; ! 327: tpcb->tp_netservice = netservice; ! 328: ! 329: ! 330: ASSERT( fname != 0 ) ; /* just checking */ ! 331: if ( fname ) { ! 332: /* ! 333: * tp_route_to takes its address argument in the form of an mbuf. ! 334: */ ! 335: struct mbuf *m; ! 336: int err; ! 337: ! 338: MGET(m, M_DONTWAIT, MT_SONAME); /* mbuf type used is confusing */ ! 339: if (m) { ! 340: /* ! 341: * this seems a bit grotesque, but tp_route_to expects ! 342: * an mbuf * instead of simply a sockaddr; it calls the ll ! 343: * pcb_connect, which expects the name/addr in an mbuf as well. ! 344: * sigh. ! 345: */ ! 346: bcopy((caddr_t)fname, mtod(m, caddr_t), fname->sa_len); ! 347: m->m_len = fname->sa_len; ! 348: ! 349: /* grot : have to say the kernel can override params in ! 350: * the passive open case ! 351: */ ! 352: tpcb->tp_dont_change_params = 0; ! 353: err = tp_route_to( m, tpcb, cons_channel); ! 354: m_free(m); ! 355: ! 356: if (!err) ! 357: goto ok; ! 358: } ! 359: IFDEBUG(D_CONN) ! 360: printf("tp_route_to FAILED! detaching tpcb 0x%x, so 0x%x\n", ! 361: tpcb, so); ! 362: ENDDEBUG ! 363: (void) tp_detach(tpcb); ! 364: return 0; ! 365: } ! 366: ok: ! 367: IFDEBUG(D_TPINPUT) ! 368: printf("tp_newsocket returning so 0x%x, sototpcb(so) 0x%x\n", ! 369: so, sototpcb(so)); ! 370: ENDDEBUG ! 371: return so; ! 372: } ! 373: ! 374: #ifndef TPCONS ! 375: tpcons_output() ! 376: { ! 377: return(0); ! 378: } ! 379: #endif !CONS ! 380: ! 381: /* ! 382: * NAME: tp_input() ! 383: * ! 384: * CALLED FROM: ! 385: * net layer input routine ! 386: * ! 387: * FUNCTION and ARGUMENTS: ! 388: * Process an incoming TPDU (m), finding the associated tpcb if there ! 389: * is one. Create the appropriate type of event and call the driver. ! 390: * (faddr) and (laddr) are the foreign and local addresses. ! 391: * ! 392: * When tp_input() is called we KNOW that the ENTIRE TP HEADER ! 393: * has been m_pullup-ed. ! 394: * ! 395: * RETURN VALUE: Nada ! 396: * ! 397: * SIDE EFFECTS: ! 398: * When using COSNS it may affect the state of the net-level pcb ! 399: * ! 400: * NOTE: ! 401: * The initial value of acktime is 2 so that we will never ! 402: * have a 0 value for tp_peer_acktime. It gets used in the ! 403: * computation of the retransmission timer value, and so it ! 404: * mustn't be zero. ! 405: * 2 seems like a reasonable minimum. ! 406: */ ! 407: ProtoHook ! 408: tp_input(m, faddr, laddr, cons_channel, dgout_routine, ce_bit) ! 409: register struct mbuf *m; ! 410: struct sockaddr *faddr, *laddr; /* NSAP addresses */ ! 411: u_int cons_channel; ! 412: int (*dgout_routine)(); ! 413: int ce_bit; ! 414: ! 415: { ! 416: register struct tp_pcb *tpcb = (struct tp_pcb *)0; ! 417: register struct tpdu *hdr; ! 418: struct socket *so; ! 419: struct tp_event e; ! 420: int error = 0; ! 421: unsigned dutype; ! 422: u_short dref, sref = 0, acktime = 2, subseq = 0; /*VAX*/ ! 423: u_char preferred_class = 0, class_to_use = 0; ! 424: u_char opt, dusize = TP_DFL_TPDUSIZE, addlopt = 0, version; ! 425: #ifdef TP_PERF_MEAS ! 426: u_char perf_meas; ! 427: #endif TP_PERF_MEAS ! 428: u_char fsufxlen = 0, lsufxlen = 0, intercepted = 0; ! 429: caddr_t fsufxloc = 0, lsufxloc = 0; ! 430: int tpdu_len = 0; ! 431: u_int takes_data = FALSE; ! 432: u_int fcc_present = FALSE; ! 433: int errlen = 0; ! 434: struct tp_conn_param tpp; ! 435: int tpcons_output(); ! 436: ! 437: again: ! 438: hdr = mtod(m, struct tpdu *); ! 439: #ifdef TP_PERF_MEAS ! 440: GET_CUR_TIME( &e.e_time ); perf_meas = 0; ! 441: #endif TP_PERF_MEAS ! 442: ! 443: IFDEBUG(D_TPINPUT) ! 444: printf("tp_input(0x%x, ... 0x%x)\n", m, cons_channel); ! 445: ENDDEBUG ! 446: ! 447: ! 448: /* ! 449: * get the actual tpdu length - necessary for monitoring ! 450: * and for checksumming ! 451: * ! 452: * Also, maybe measure the mbuf chain lengths and sizes. ! 453: */ ! 454: ! 455: { register struct mbuf *n=m; ! 456: # ifdef ARGO_DEBUG ! 457: int chain_length = 0; ! 458: # endif ARGO_DEBUG ! 459: ! 460: for(;;) { ! 461: tpdu_len += n->m_len; ! 462: IFDEBUG(D_MBUF_MEAS) ! 463: if( n->m_flags & M_EXT) { ! 464: IncStat(ts_mb_cluster); ! 465: } else { ! 466: IncStat(ts_mb_small); ! 467: } ! 468: chain_length ++; ! 469: ENDDEBUG ! 470: if (n->m_next == MNULL ) { ! 471: break; ! 472: } ! 473: n = n->m_next; ! 474: } ! 475: IFDEBUG(D_MBUF_MEAS) ! 476: if(chain_length > 16) ! 477: chain_length = 0; /* zero used for anything > 16 */ ! 478: tp_stat.ts_mb_len_distr[chain_length] ++; ! 479: ENDDEBUG ! 480: } ! 481: IFTRACE(D_TPINPUT) ! 482: tptraceTPCB(TPPTtpduin, hdr->tpdu_type, hdr, hdr->tpdu_li+1, tpdu_len, ! 483: 0); ! 484: ENDTRACE ! 485: ! 486: dref = ntohs((short)hdr->tpdu_dref); ! 487: sref = ntohs((short)hdr->tpdu_sref); ! 488: dutype = (int)hdr->tpdu_type; ! 489: ! 490: IFDEBUG(D_TPINPUT) ! 491: printf("input: dutype 0x%x cons_channel 0x%x dref 0x%x\n", dutype, ! 492: cons_channel, dref); ! 493: printf("input: dref 0x%x sref 0x%x\n", dref, sref); ! 494: ENDDEBUG ! 495: IFTRACE(D_TPINPUT) ! 496: tptrace(TPPTmisc, "channel dutype dref ", ! 497: cons_channel, dutype, dref, 0); ! 498: ENDTRACE ! 499: ! 500: ! 501: #ifdef ARGO_DEBUG ! 502: if( (dutype < TP_MIN_TPDUTYPE) || (dutype > TP_MAX_TPDUTYPE)) { ! 503: printf("BAD dutype! 0x%x, channel 0x%x dref 0x%x\n", ! 504: dutype, cons_channel, dref); ! 505: dump_buf (m, sizeof( struct mbuf )); ! 506: ! 507: IncStat(ts_inv_dutype); ! 508: goto discard; ! 509: } ! 510: #endif ARGO_DEBUG ! 511: ! 512: CHECK( (dutype < TP_MIN_TPDUTYPE || dutype > TP_MAX_TPDUTYPE), ! 513: E_TP_INV_TPDU, ts_inv_dutype, respond, ! 514: 2 ); ! 515: /* unfortunately we can't take the address of the tpdu_type field, ! 516: * since it's a bit field - so we just use the constant offset 2 ! 517: */ ! 518: ! 519: /* Now this isn't very neat but since you locate a pcb one way ! 520: * at the beginning of connection establishment, and by ! 521: * the dref for each tpdu after that, we have to treat CRs differently ! 522: */ ! 523: if ( dutype == CR_TPDU_type ) { ! 524: u_char alt_classes = 0; ! 525: ! 526: preferred_class = 1 << hdr->tpdu_CRclass; ! 527: opt = hdr->tpdu_CRoptions; ! 528: ! 529: WHILE_OPTIONS(P, hdr, 1 ) /* { */ ! 530: ! 531: switch( vbptr(P)->tpv_code ) { ! 532: ! 533: case TPP_tpdu_size: ! 534: vb_getval(P, u_char, dusize); ! 535: IFDEBUG(D_TPINPUT) ! 536: printf("CR dusize 0x%x\n", dusize); ! 537: ENDDEBUG ! 538: /* COS tests: NBS IA (Dec. 1987) Sec. 4.5.2.1 */ ! 539: if (dusize < TP_MIN_TPDUSIZE || dusize > TP_MAX_TPDUSIZE) ! 540: dusize = TP_DFL_TPDUSIZE; ! 541: break; ! 542: case TPP_addl_opt: ! 543: vb_getval(P, u_char, addlopt); ! 544: break; ! 545: case TPP_calling_sufx: ! 546: /* could use vb_getval, but we want to save the loc & len ! 547: * for later use ! 548: */ ! 549: fsufxloc = (caddr_t) &vbptr(P)->tpv_val; ! 550: fsufxlen = vbptr(P)->tpv_len; ! 551: IFDEBUG(D_TPINPUT) ! 552: printf("CR fsufx:"); ! 553: { register int j; ! 554: for(j=0; j<fsufxlen; j++ ) { ! 555: printf(" 0x%x. ", *((caddr_t)(fsufxloc+j)) ); ! 556: } ! 557: printf("\n"); ! 558: } ! 559: ENDDEBUG ! 560: break; ! 561: case TPP_called_sufx: ! 562: /* could use vb_getval, but we want to save the loc & len ! 563: * for later use ! 564: */ ! 565: lsufxloc = (caddr_t) &vbptr(P)->tpv_val; ! 566: lsufxlen = vbptr(P)->tpv_len; ! 567: IFDEBUG(D_TPINPUT) ! 568: printf("CR lsufx:"); ! 569: { register int j; ! 570: for(j=0; j<lsufxlen; j++ ) { ! 571: printf(" 0x%x. ", *((u_char *)(lsufxloc+j)) ); ! 572: } ! 573: printf("\n"); ! 574: } ! 575: ENDDEBUG ! 576: break; ! 577: ! 578: #ifdef TP_PERF_MEAS ! 579: case TPP_perf_meas: ! 580: vb_getval(P, u_char, perf_meas); ! 581: break; ! 582: #endif TP_PERF_MEAS ! 583: ! 584: case TPP_vers: ! 585: /* not in class 0; 1 octet; in CR_TPDU only */ ! 586: /* COS tests says if version wrong, use default version!?XXX */ ! 587: CHECK( (vbval(P, u_char) != TP_VERSION ), ! 588: E_TP_INV_PVAL, ts_inv_pval, setversion, ! 589: (1 + (caddr_t)&vbptr(P)->tpv_val - (caddr_t)hdr) ); ! 590: setversion: ! 591: version = vbval(P, u_char); ! 592: break; ! 593: case TPP_acktime: ! 594: vb_getval(P, u_short, acktime); ! 595: acktime = ntohs(acktime); ! 596: acktime = acktime/500; /* convert to slowtimo ticks */ ! 597: if((short)acktime <=0 ) ! 598: acktime = 2; /* don't allow a bad peer to screw us up */ ! 599: IFDEBUG(D_TPINPUT) ! 600: printf("CR acktime 0x%x\n", acktime); ! 601: ENDDEBUG ! 602: break; ! 603: ! 604: case TPP_alt_class: ! 605: { ! 606: u_char *aclass = 0; ! 607: register int i; ! 608: static u_char bad_alt_classes[5] = ! 609: { ~0, ~3, ~5, ~0xf, ~0x1f}; ! 610: ! 611: aclass = ! 612: (u_char *) &(((struct tp_vbp *)P)->tpv_val); ! 613: for (i = ((struct tp_vbp *)P)->tpv_len; i>0; i--) { ! 614: alt_classes |= (1<<((*aclass++)>>4)); ! 615: } ! 616: CHECK( (bad_alt_classes[hdr->tpdu_CRclass] & alt_classes), ! 617: E_TP_INV_PVAL, ts_inv_aclass, respond, ! 618: ((caddr_t)aclass) - (caddr_t)hdr); ! 619: IFDEBUG(D_TPINPUT) ! 620: printf("alt_classes 0x%x\n", alt_classes); ! 621: ENDDEBUG ! 622: } ! 623: break; ! 624: ! 625: case TPP_security: ! 626: case TPP_residER: ! 627: case TPP_priority: ! 628: case TPP_transdelay: ! 629: case TPP_throughput: ! 630: case TPP_addl_info: ! 631: case TPP_subseq: ! 632: default: ! 633: IFDEBUG(D_TPINPUT) ! 634: printf("param ignored CR_TPDU code= 0x%x\n", ! 635: vbptr(P)->tpv_code); ! 636: ENDDEBUG ! 637: IncStat(ts_param_ignored); ! 638: break; ! 639: ! 640: case TPP_checksum: ! 641: IFDEBUG(D_TPINPUT) ! 642: printf("CR before cksum\n"); ! 643: ENDDEBUG ! 644: ! 645: CHECK( iso_check_csum(m, tpdu_len), ! 646: E_TP_INV_PVAL, ts_bad_csum, discard, 0) ! 647: ! 648: IFDEBUG(D_TPINPUT) ! 649: printf("CR before cksum\n"); ! 650: ENDDEBUG ! 651: break; ! 652: } ! 653: ! 654: /* } */ END_WHILE_OPTIONS(P) ! 655: ! 656: if (lsufxlen == 0) { ! 657: /* can't look for a tpcb w/o any called sufx */ ! 658: error = E_TP_LENGTH_INVAL; ! 659: IncStat(ts_inv_sufx); ! 660: goto respond; ! 661: } else { ! 662: register struct tp_pcb *t; ! 663: ! 664: for (t = tp_intercepts; t ; t = t->tp_nextlisten) { ! 665: if (laddr->sa_family != t->tp_nlproto->nlp_afamily) ! 666: continue; ! 667: if ((*t->tp_nlproto->nlp_cmpnetaddr)( ! 668: t->tp_npcb, laddr, TP_LOCAL)) { ! 669: intercepted = 1; ! 670: goto check_duplicate_cr; ! 671: } ! 672: } ! 673: for (t = tp_listeners; t ; t = t->tp_nextlisten) ! 674: if (lsufxlen == t->tp_lsuffixlen && ! 675: bcmp(lsufxloc, t->tp_lsuffix, lsufxlen) == 0 && ! 676: laddr->sa_family == t->tp_nlproto->nlp_afamily) ! 677: break; ! 678: CHECK(t == 0, E_TP_NO_SESSION, ts_inv_sufx, respond, ! 679: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 680: /* _tpduf is the fixed part; add 2 to get the dref bits of ! 681: * the fixed part (can't take the address of a bit field) ! 682: */ ! 683: IFDEBUG(D_TPINPUT) ! 684: printf("checking if dup CR\n"); ! 685: ENDDEBUG ! 686: check_duplicate_cr: ! 687: tpcb = t; ! 688: for (t = tpcb->tp_next; t != tpcb; t = t->tp_next) { ! 689: if (sref != t->tp_fref) ! 690: continue; ! 691: if ((*tpcb->tp_nlproto->nlp_cmpnetaddr)( ! 692: t->tp_npcb, faddr, TP_FOREIGN)) { ! 693: IFDEBUG(D_TPINPUT) ! 694: printf("duplicate CR discarded\n"); ! 695: ENDDEBUG ! 696: goto discard; ! 697: } ! 698: } ! 699: IFTRACE(D_TPINPUT) ! 700: tptrace(TPPTmisc, "tp_input: tpcb *lsufxloc tpstate", ! 701: tpcb, *lsufxloc, tpcb->tp_state, 0); ! 702: ENDTRACE ! 703: } ! 704: ! 705: /* ! 706: * WE HAVE A TPCB ! 707: * already know that the classes in the CR match at least ! 708: * one class implemented, but we don't know yet if they ! 709: * include any classes permitted by this server. ! 710: */ ! 711: ! 712: IFDEBUG(D_TPINPUT) ! 713: printf("HAVE A TPCB 1: 0x%x\n", tpcb); ! 714: ENDDEBUG ! 715: IFDEBUG(D_CONN) ! 716: printf( ! 717: "CR: bef CHKS: flags 0x%x class_to_use 0x%x alt 0x%x opt 0x%x tp_class 0x%x\n", ! 718: tpcb->tp_flags, class_to_use, alt_classes, opt, tpcb->tp_class); ! 719: ENDDEBUG ! 720: /* tpcb->tp_class doesn't include any classes not implemented */ ! 721: class_to_use = (preferred_class & tpcb->tp_class); ! 722: if( (class_to_use = preferred_class & tpcb->tp_class) == 0 ) ! 723: class_to_use = alt_classes & tpcb->tp_class; ! 724: ! 725: class_to_use = 1 << tp_mask_to_num(class_to_use); ! 726: ! 727: { ! 728: tpp = tpcb->_tp_param; ! 729: tpp.p_class = class_to_use; ! 730: tpp.p_tpdusize = dusize; ! 731: tpp.p_xtd_format = (opt & TPO_XTD_FMT) == TPO_XTD_FMT; ! 732: tpp.p_xpd_service = (addlopt & TPAO_USE_TXPD) == TPAO_USE_TXPD; ! 733: tpp.p_use_checksum = (tpp.p_class == TP_CLASS_0)?0: ! 734: (addlopt & TPAO_NO_CSUM) == 0; ! 735: tpp.p_version = version; ! 736: #ifdef notdef ! 737: tpp.p_use_efc = (opt & TPO_USE_EFC) == TPO_USE_EFC; ! 738: tpp.p_use_nxpd = (addlopt & TPAO_USE_NXPD) == TPAO_USE_NXPD; ! 739: tpp.p_use_rcc = (addlopt & TPAO_USE_RCC) == TPAO_USE_RCC; ! 740: #endif notdef ! 741: ! 742: CHECK( ! 743: tp_consistency(tpcb, 0 /* not force or strict */, &tpp) != 0, ! 744: E_TP_NEGOT_FAILED, ts_negotfailed, respond, ! 745: (1 + 2 + (caddr_t)&hdr->_tpdufr.CRCC - (caddr_t)hdr) ! 746: /* ^ more or less the location of class */ ! 747: ) ! 748: } ! 749: IFTRACE(D_CONN) ! 750: tptrace(TPPTmisc, ! 751: "after 1 consist class_to_use class, out, tpconsout", ! 752: class_to_use, ! 753: tpcb->tp_class, dgout_routine, tpcons_output ! 754: ); ! 755: ENDTRACE ! 756: CHECK( ! 757: ((class_to_use == TP_CLASS_0)&&(dgout_routine != tpcons_output)), ! 758: E_TP_NEGOT_FAILED, ts_negotfailed, respond, ! 759: (1 + 2 + (caddr_t)&hdr->_tpdufr.CRCC - (caddr_t)hdr) ! 760: /* ^ more or less the location of class */ ! 761: ) ! 762: IFDEBUG(D_CONN) ! 763: printf("CR: after CRCCCHECKS: tpcb 0x%x, flags 0x%x\n", ! 764: tpcb, tpcb->tp_flags); ! 765: ENDDEBUG ! 766: takes_data = TRUE; ! 767: e.ATTR(CR_TPDU).e_cdt = hdr->tpdu_CRcdt; ! 768: e.ev_number = CR_TPDU; ! 769: ! 770: so = tpcb->tp_sock; ! 771: if (so->so_options & SO_ACCEPTCONN) { ! 772: struct tp_pcb *parent_tpcb = tpcb; ! 773: /* ! 774: * Create a socket, tpcb, ll pcb, etc. ! 775: * for this newborn connection, and fill in all the values. ! 776: */ ! 777: IFDEBUG(D_CONN) ! 778: printf("abt to call tp_newsocket(0x%x, 0x%x, 0x%x, 0x%x)\n", ! 779: so, laddr, faddr, cons_channel); ! 780: ENDDEBUG ! 781: if( (so = ! 782: tp_newsocket(so, faddr, cons_channel, ! 783: class_to_use, ! 784: ((tpcb->tp_netservice == IN_CLNS) ? IN_CLNS : ! 785: (dgout_routine == tpcons_output)?ISO_CONS:ISO_CLNS)) ! 786: ) == (struct socket *)0 ) { ! 787: /* note - even if netservice is IN_CLNS, as far as ! 788: * the tp entity is concerned, the only differences ! 789: * are CO vs CL ! 790: */ ! 791: IFDEBUG(D_CONN) ! 792: printf("tp_newsocket returns 0\n"); ! 793: ENDDEBUG ! 794: goto discard; ! 795: } ! 796: tpcb = sototpcb(so); ! 797: insque(tpcb, parent_tpcb); ! 798: ! 799: /* ! 800: * Stash the addresses in the net level pcb ! 801: * kind of like a pcbconnect() but don't need ! 802: * or want all those checks. ! 803: */ ! 804: (tpcb->tp_nlproto->nlp_putnetaddr)(so->so_pcb, faddr, TP_FOREIGN); ! 805: (tpcb->tp_nlproto->nlp_putnetaddr)(so->so_pcb, laddr, TP_LOCAL); ! 806: ! 807: /* stash the f suffix in the new tpcb */ ! 808: bcopy(fsufxloc, tpcb->tp_fsuffix, fsufxlen); ! 809: /* l suffix is already there, unless this is an intercept case */ ! 810: if (intercepted) ! 811: bcopy(lsufxloc, tpcb->tp_lsuffix, lsufxlen); ! 812: (tpcb->tp_nlproto->nlp_putsufx) ! 813: (so->so_pcb, fsufxloc, fsufxlen, TP_FOREIGN); ! 814: (tpcb->tp_nlproto->nlp_putsufx) ! 815: (so->so_pcb, lsufxloc, lsufxlen, TP_LOCAL); ! 816: #ifdef TP_PERF_MEAS ! 817: if( tpcb->tp_perf_on = perf_meas ) { /* assignment */ ! 818: /* ok, let's create an mbuf for stashing the ! 819: * statistics if one doesn't already exist ! 820: */ ! 821: (void) tp_setup_perf(tpcb); ! 822: } ! 823: #endif TP_PERF_MEAS ! 824: tpcb->tp_fref = sref; ! 825: ! 826: /* We've already checked for consistency with the options ! 827: * set in tpp, but we couldn't set them earlier because ! 828: * we didn't want to change options in the LISTENING tpcb. ! 829: * Now we set the options in the new socket's tpcb. ! 830: */ ! 831: (void) tp_consistency( tpcb, TP_FORCE, &tpp); ! 832: ! 833: if(!tpcb->tp_use_checksum) ! 834: IncStat(ts_csum_off); ! 835: if(tpcb->tp_xpd_service) ! 836: IncStat(ts_use_txpd); ! 837: if(tpcb->tp_xtd_format) ! 838: IncStat(ts_xtd_fmt); ! 839: ! 840: /* ! 841: * Get the maximum transmission unit from the lower layer(s) ! 842: * so we can negotiate a reasonable max TPDU size. ! 843: */ ! 844: (tpcb->tp_nlproto->nlp_mtu)(so, so->so_pcb, ! 845: &tpcb->tp_l_tpdusize, &tpcb->tp_tpdusize, 0); ! 846: tpcb->tp_peer_acktime = acktime; ! 847: ! 848: /* ! 849: * The following kludge is used to test retransmissions and ! 850: * timeout during connection establishment. ! 851: */ ! 852: IFDEBUG(D_ZDREF) ! 853: IncStat(ts_zdebug); ! 854: /*tpcb->tp_fref = 0;*/ ! 855: ENDDEBUG ! 856: } ! 857: IncStat(ts_CR_rcvd); ! 858: if (!tpcb->tp_cebit_off) { ! 859: tpcb->tp_win_recv = tp_start_win << 8; ! 860: tpcb->tp_cong_sample.cs_size = 0; ! 861: LOCAL_CREDIT(tpcb); ! 862: CONG_INIT_SAMPLE(tpcb); ! 863: CONG_UPDATE_SAMPLE(tpcb, ce_bit); ! 864: } ! 865: tpcb->tp_ackrcvd = 0; ! 866: } else if ( dutype == ER_TPDU_type ) { ! 867: /* ! 868: * ER TPDUs have to be recognized separately ! 869: * because they don't necessarily have a tpcb ! 870: * with them and we don't want err out looking for such ! 871: * a beast. ! 872: * We could put a bunch of little kludges in the ! 873: * next section of code so it would avoid references to tpcb ! 874: * if dutype == ER_TPDU_type but we don't want code for ERs to ! 875: * mess up code for data transfer. ! 876: */ ! 877: IncStat(ts_ER_rcvd); ! 878: e.ev_number = ER_TPDU; ! 879: e.ATTR(ER_TPDU).e_reason = (u_char)hdr->tpdu_ERreason; ! 880: CHECK (((int)dref <= 0 || dref >= N_TPREF || ! 881: (tpcb = tp_ref[dref].tpr_pcb ) == (struct tp_pcb *) 0 || ! 882: tpcb->tp_refp->tpr_state == REF_FREE || ! 883: tpcb->tp_refp->tpr_state == REF_FROZEN), ! 884: E_TP_MISM_REFS, ts_inv_dref, discard, 0) ! 885: ! 886: } else { ! 887: /* tpdu type is CC, XPD, XAK, GR, AK, DR, DC, or DT */ ! 888: ! 889: /* In the next 4 checks, ! 890: * _tpduf is the fixed part; add 2 to get the dref bits of ! 891: * the fixed part (can't take the address of a bit field) ! 892: */ ! 893: #ifdef old_history ! 894: if(cons_channel) { ! 895: #ifdef NARGOXTWENTYFIVE ! 896: extern struct tp_pcb *cons_chan_to_tpcb(); ! 897: ! 898: tpcb = cons_chan_to_tpcb( cons_channel ); ! 899: /* Problem: We may have a legit ! 900: * error situation yet we may or may not have ! 901: * a correspondence between the tpcb and the vc, ! 902: * e.g., TP4cr--> <no dice, respond w/ DR on vc> ! 903: * <--- DR ! 904: * Now it's up to TP to look at the tpdu and do one of: ! 905: * confirm(dgm)(cr), confirm(circuit)(cr), reject(cr), or ! 906: * nothing, if the circuit is already open (any other tpdu). ! 907: * Sigh. ! 908: */ ! 909: ! 910: /* I don't know about this error value */ ! 911: CHECK( (tpcb == (struct tp_pcb *)0) , ! 912: E_TP_NO_CR_ON_NC, ts_inv_dref, respond, ! 913: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 914: #else ! 915: printf("tp_input(): X25 NOT CONFIGURED!!\n"); ! 916: #endif ! 917: } else ! 918: /* we've now made the error reporting thing check for ! 919: multiple channels and not close out if more than ! 920: one in use */ ! 921: #endif old_history ! 922: { ! 923: ! 924: CHECK( ((int)dref <= 0 || dref >= N_TPREF) , ! 925: E_TP_MISM_REFS,ts_inv_dref, nonx_dref, ! 926: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 927: CHECK( ((tpcb = tp_ref[dref].tpr_pcb ) == (struct tp_pcb *) 0 ), ! 928: E_TP_MISM_REFS,ts_inv_dref, nonx_dref, ! 929: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 930: CHECK( (tpcb->tp_refp->tpr_state == REF_FREE), ! 931: E_TP_MISM_REFS,ts_inv_dref, nonx_dref, ! 932: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 933: } ! 934: ! 935: IFDEBUG(D_TPINPUT) ! 936: printf("HAVE A TPCB 2: 0x%x\n", tpcb); ! 937: ENDDEBUG ! 938: ! 939: /* causes a DR to be sent for CC; ER for all else */ ! 940: CHECK( (tpcb->tp_refp->tpr_state == REF_FROZEN), ! 941: (dutype == CC_TPDU_type?E_TP_NO_SESSION:E_TP_MISM_REFS), ! 942: ts_inv_dref, respond, ! 943: (1 + 2 + (caddr_t)&hdr->_tpduf - (caddr_t)hdr)) ! 944: ! 945: IFDEBUG(D_TPINPUT) ! 946: printf("state of dref %d ok, tpcb 0x%x\n", dref,tpcb); ! 947: ENDDEBUG ! 948: /* ! 949: * At this point the state of the dref could be ! 950: * FROZEN: tpr_pcb == NULL, has ( reference only) timers ! 951: * for example, DC may arrive after the close() has detached ! 952: * the tpcb (e.g., if user turned off SO_LISTEN option) ! 953: * OPENING : a tpcb exists but no timers yet ! 954: * OPEN : tpcb exists & timers are outstanding ! 955: */ ! 956: ! 957: if (!tpcb->tp_cebit_off) ! 958: CONG_UPDATE_SAMPLE(tpcb, ce_bit); ! 959: ! 960: dusize = tpcb->tp_tpdusize; ! 961: ! 962: dutype = hdr->tpdu_type << 8; /* for the switch below */ ! 963: ! 964: WHILE_OPTIONS(P, hdr, tpcb->tp_xtd_format) /* { */ ! 965: ! 966: #define caseof(x,y) case (((x)<<8)+(y)) ! 967: switch( dutype | vbptr(P)->tpv_code ) { ! 968: ! 969: caseof( CC_TPDU_type, TPP_addl_opt ): ! 970: /* not in class 0; 1 octet */ ! 971: vb_getval(P, u_char, addlopt); ! 972: break; ! 973: caseof( CC_TPDU_type, TPP_tpdu_size ): ! 974: { ! 975: u_char odusize = dusize; ! 976: vb_getval(P, u_char, dusize); ! 977: CHECK( (dusize < TP_MIN_TPDUSIZE || ! 978: dusize > TP_MAX_TPDUSIZE || dusize > odusize), ! 979: E_TP_INV_PVAL, ts_inv_pval, respond, ! 980: (1 + (caddr_t)&vbptr(P)->tpv_val - (caddr_t)hdr) ) ! 981: IFDEBUG(D_TPINPUT) ! 982: printf("CC dusize 0x%x\n", dusize); ! 983: ENDDEBUG ! 984: } ! 985: break; ! 986: caseof( CC_TPDU_type, TPP_calling_sufx): ! 987: IFDEBUG(D_TPINPUT) ! 988: printf("CC calling (local) sufxlen 0x%x\n", lsufxlen); ! 989: ENDDEBUG ! 990: lsufxloc = (caddr_t) &vbptr(P)->tpv_val; ! 991: lsufxlen = vbptr(P)->tpv_len; ! 992: break; ! 993: caseof( CC_TPDU_type, TPP_acktime ): ! 994: /* class 4 only, 2 octets */ ! 995: vb_getval(P, u_short, acktime); ! 996: acktime = ntohs(acktime); ! 997: acktime = acktime/500; /* convert to slowtimo ticks */ ! 998: if( (short)acktime <=0 ) ! 999: acktime = 2; ! 1000: break; ! 1001: caseof( CC_TPDU_type, TPP_called_sufx): ! 1002: fsufxloc = (caddr_t) &vbptr(P)->tpv_val; ! 1003: fsufxlen = vbptr(P)->tpv_len; ! 1004: IFDEBUG(D_TPINPUT) ! 1005: printf("CC called (foreign) sufx len %d\n", fsufxlen); ! 1006: ENDDEBUG ! 1007: break; ! 1008: ! 1009: caseof( CC_TPDU_type, TPP_checksum): ! 1010: caseof( DR_TPDU_type, TPP_checksum): ! 1011: caseof( DT_TPDU_type, TPP_checksum): ! 1012: caseof( XPD_TPDU_type, TPP_checksum): ! 1013: if( tpcb->tp_use_checksum ) { ! 1014: CHECK( iso_check_csum(m, tpdu_len), ! 1015: E_TP_INV_PVAL, ts_bad_csum, discard, 0) ! 1016: } ! 1017: break; ! 1018: ! 1019: /* this is different from the above because in the context ! 1020: * of concat/ sep tpdu_len might not be the same as hdr len ! 1021: */ ! 1022: caseof( AK_TPDU_type, TPP_checksum): ! 1023: caseof( XAK_TPDU_type, TPP_checksum): ! 1024: caseof( DC_TPDU_type, TPP_checksum): ! 1025: if( tpcb->tp_use_checksum ) { ! 1026: CHECK( iso_check_csum(m, (int)hdr->tpdu_li + 1), ! 1027: E_TP_INV_PVAL, ts_bad_csum, discard, 0) ! 1028: } ! 1029: break; ! 1030: #ifdef notdef ! 1031: caseof( DR_TPDU_type, TPP_addl_info ): ! 1032: /* ignore - its length and meaning are ! 1033: * user defined and there's no way ! 1034: * to pass this info to the user anyway ! 1035: */ ! 1036: break; ! 1037: #endif notdef ! 1038: ! 1039: caseof( AK_TPDU_type, TPP_subseq ): ! 1040: /* used after reduction of window */ ! 1041: vb_getval(P, u_short, subseq); ! 1042: subseq = ntohs(subseq); ! 1043: IFDEBUG(D_ACKRECV) ! 1044: printf("AK Subsequence # 0x%x\n", subseq); ! 1045: ENDDEBUG ! 1046: break; ! 1047: ! 1048: caseof( AK_TPDU_type, TPP_flow_cntl_conf ): ! 1049: { ! 1050: u_int ylwe; ! 1051: u_short ysubseq, ycredit; ! 1052: ! 1053: fcc_present = TRUE; ! 1054: vb_getval(P, u_int, ylwe); ! 1055: vb_getval(P, u_short, ysubseq); ! 1056: vb_getval(P, u_short, ycredit); ! 1057: ylwe = ntohl(ylwe); ! 1058: ysubseq = ntohs(ysubseq); ! 1059: ycredit = ntohs(ycredit); ! 1060: IFDEBUG(D_ACKRECV) ! 1061: printf("AK FCC lwe 0x%x, subseq 0x%x, cdt 0x%x\n", ! 1062: ylwe, ysubseq, ycredit); ! 1063: ENDDEBUG ! 1064: } ! 1065: break; ! 1066: ! 1067: default: ! 1068: IFDEBUG(D_TPINPUT) ! 1069: printf("param ignored dutype 0x%x, code 0x%x\n", ! 1070: dutype, vbptr(P)->tpv_code); ! 1071: ENDDEBUG ! 1072: IFTRACE(D_TPINPUT) ! 1073: tptrace(TPPTmisc, "param ignored dutype code ", ! 1074: dutype, vbptr(P)->tpv_code ,0,0); ! 1075: ENDTRACE ! 1076: IncStat(ts_param_ignored); ! 1077: break; ! 1078: #undef caseof ! 1079: } ! 1080: /* } */ END_WHILE_OPTIONS(P) ! 1081: ! 1082: /* NOTE: the variable dutype has been shifted left! */ ! 1083: ! 1084: switch( hdr->tpdu_type ) { ! 1085: case CC_TPDU_type: ! 1086: /* If CC comes back with an unacceptable class ! 1087: * respond with a DR or ER ! 1088: */ ! 1089: ! 1090: opt = hdr->tpdu_CCoptions; /* 1 byte */ ! 1091: ! 1092: { ! 1093: tpp = tpcb->_tp_param; ! 1094: tpp.p_class = (1<<hdr->tpdu_CCclass); ! 1095: tpp.p_tpdusize = dusize; ! 1096: tpp.p_dont_change_params = 0; ! 1097: tpp.p_xtd_format = (opt & TPO_XTD_FMT) == TPO_XTD_FMT; ! 1098: tpp.p_xpd_service = (addlopt & TPAO_USE_TXPD) == TPAO_USE_TXPD; ! 1099: tpp.p_use_checksum = (addlopt & TPAO_NO_CSUM) == 0; ! 1100: #ifdef notdef ! 1101: tpp.p_use_efc = (opt & TPO_USE_EFC) == TPO_USE_EFC; ! 1102: tpp.p_use_nxpd = (addlopt & TPAO_USE_NXPD) == TPAO_USE_NXPD; ! 1103: tpp.p_use_rcc = (addlopt & TPAO_USE_RCC) == TPAO_USE_RCC; ! 1104: #endif notdef ! 1105: ! 1106: CHECK( ! 1107: tp_consistency(tpcb, TP_FORCE, &tpp) != 0, ! 1108: E_TP_NEGOT_FAILED, ts_negotfailed, respond, ! 1109: (1 + 2 + (caddr_t)&hdr->_tpdufr.CRCC - (caddr_t)hdr) ! 1110: /* ^ more or less the location of class */ ! 1111: ) ! 1112: IFTRACE(D_CONN) ! 1113: tptrace(TPPTmisc, ! 1114: "after 1 consist class, out, tpconsout", ! 1115: tpcb->tp_class, dgout_routine, tpcons_output, 0 ! 1116: ); ! 1117: ENDTRACE ! 1118: CHECK( ! 1119: ((class_to_use == TP_CLASS_0)&& ! 1120: (dgout_routine != tpcons_output)), ! 1121: E_TP_NEGOT_FAILED, ts_negotfailed, respond, ! 1122: (1 + 2 + (caddr_t)&hdr->_tpdufr.CRCC - (caddr_t)hdr) ! 1123: /* ^ more or less the location of class */ ! 1124: ) ! 1125: #ifdef TPCONS ! 1126: if (tpcb->tp_netservice == ISO_CONS && ! 1127: class_to_use == TP_CLASS_0) { ! 1128: struct isopcb *isop = (struct isopcb *)tpcb->tp_npcb; ! 1129: struct pklcd *lcp = (struct pklcd *)isop->isop_chan; ! 1130: lcp->lcd_flags &= ~X25_DG_CIRCUIT; ! 1131: } ! 1132: #endif ! 1133: } ! 1134: if( ! tpcb->tp_use_checksum) ! 1135: IncStat(ts_csum_off); ! 1136: if(tpcb->tp_xpd_service) ! 1137: IncStat(ts_use_txpd); ! 1138: if(tpcb->tp_xtd_format) ! 1139: IncStat(ts_xtd_fmt); ! 1140: ! 1141: IFTRACE(D_CONN) ! 1142: tptrace(TPPTmisc, "after CC class flags dusize CCclass", ! 1143: tpcb->tp_class, tpcb->tp_flags, tpcb->tp_tpdusize, ! 1144: hdr->tpdu_CCclass); ! 1145: ENDTRACE ! 1146: ! 1147: /* ! 1148: * Get the maximum transmission unit from the lower layer(s) ! 1149: * so we can decide how large a TPDU size to negotiate. ! 1150: * It would be nice if the arguments to this ! 1151: * were more reasonable. ! 1152: */ ! 1153: (tpcb->tp_nlproto->nlp_mtu)(tpcb->tp_sock, tpcb->tp_sock->so_pcb, ! 1154: &tpcb->tp_l_tpdusize, &tpcb->tp_tpdusize, 0); ! 1155: ! 1156: ! 1157: /* if called or calling suffices appeared on the CC, ! 1158: * they'd better jive with what's in the pcb ! 1159: */ ! 1160: if( fsufxlen ) { ! 1161: CHECK( ((tpcb->tp_fsuffixlen != fsufxlen) || ! 1162: bcmp(fsufxloc, tpcb->tp_fsuffix, fsufxlen)), ! 1163: E_TP_INV_PVAL,ts_inv_sufx, respond, ! 1164: (1+fsufxloc - (caddr_t)hdr)) ! 1165: } ! 1166: if( lsufxlen ) { ! 1167: CHECK( ((tpcb->tp_lsuffixlen != lsufxlen) || ! 1168: bcmp(lsufxloc, tpcb->tp_lsuffix, lsufxlen)), ! 1169: E_TP_INV_PVAL,ts_inv_sufx, respond, ! 1170: (1+lsufxloc - (caddr_t)hdr)) ! 1171: } ! 1172: ! 1173: e.ATTR(CC_TPDU).e_sref = sref; ! 1174: e.ATTR(CC_TPDU).e_cdt = hdr->tpdu_CCcdt; ! 1175: takes_data = TRUE; ! 1176: e.ev_number = CC_TPDU; ! 1177: IncStat(ts_CC_rcvd); ! 1178: break; ! 1179: ! 1180: case DC_TPDU_type: ! 1181: if (sref != tpcb->tp_fref) ! 1182: printf("INPUT: inv sufx DCsref 0x%x, tp_fref 0x%x\n", ! 1183: sref, tpcb->tp_fref); ! 1184: ! 1185: CHECK( (sref != tpcb->tp_fref), ! 1186: E_TP_MISM_REFS, ts_inv_sufx, discard, ! 1187: (1 + (caddr_t)&hdr->tpdu_DCsref - (caddr_t)hdr)) ! 1188: ! 1189: e.ev_number = DC_TPDU; ! 1190: IncStat(ts_DC_rcvd); ! 1191: break; ! 1192: ! 1193: case DR_TPDU_type: ! 1194: IFTRACE(D_TPINPUT) ! 1195: tptrace(TPPTmisc, "DR recvd", hdr->tpdu_DRreason, 0, 0, 0); ! 1196: ENDTRACE ! 1197: if (sref != tpcb->tp_fref) { ! 1198: printf("INPUT: inv sufx DRsref 0x%x tp_fref 0x%x\n", ! 1199: sref, tpcb->tp_fref); ! 1200: } ! 1201: ! 1202: CHECK( (sref != 0 && sref != tpcb->tp_fref && ! 1203: tpcb->tp_state != TP_CRSENT), ! 1204: (TP_ERROR_SNDC | E_TP_MISM_REFS),ts_inv_sufx, respond, ! 1205: (1 + (caddr_t)&hdr->tpdu_DRsref - (caddr_t)hdr)) ! 1206: ! 1207: e.ATTR(DR_TPDU).e_reason = hdr->tpdu_DRreason; ! 1208: e.ATTR(DR_TPDU).e_sref = (u_short)sref; ! 1209: takes_data = TRUE; ! 1210: e.ev_number = DR_TPDU; ! 1211: IncStat(ts_DR_rcvd); ! 1212: break; ! 1213: ! 1214: case ER_TPDU_type: ! 1215: IFTRACE(D_TPINPUT) ! 1216: tptrace(TPPTmisc, "ER recvd", hdr->tpdu_ERreason,0,0,0); ! 1217: ENDTRACE ! 1218: e.ev_number = ER_TPDU; ! 1219: e.ATTR(ER_TPDU).e_reason = hdr->tpdu_ERreason; ! 1220: IncStat(ts_ER_rcvd); ! 1221: break; ! 1222: ! 1223: case AK_TPDU_type: ! 1224: ! 1225: e.ATTR(AK_TPDU).e_subseq = subseq; ! 1226: e.ATTR(AK_TPDU).e_fcc_present = fcc_present; ! 1227: ! 1228: if (tpcb->tp_xtd_format) { ! 1229: #ifdef BYTE_ORDER ! 1230: union seq_type seqeotX; ! 1231: ! 1232: seqeotX.s_seqeot = ntohl(hdr->tpdu_seqeotX); ! 1233: e.ATTR(AK_TPDU).e_seq = seqeotX.s_seq; ! 1234: e.ATTR(AK_TPDU).e_cdt = ntohs(hdr->tpdu_AKcdtX); ! 1235: #else ! 1236: e.ATTR(AK_TPDU).e_cdt = hdr->tpdu_AKcdtX; ! 1237: e.ATTR(AK_TPDU).e_seq = hdr->tpdu_AKseqX; ! 1238: #endif BYTE_ORDER ! 1239: } else { ! 1240: e.ATTR(AK_TPDU).e_cdt = hdr->tpdu_AKcdt; ! 1241: e.ATTR(AK_TPDU).e_seq = hdr->tpdu_AKseq; ! 1242: } ! 1243: IFTRACE(D_TPINPUT) ! 1244: tptrace(TPPTmisc, "AK recvd seq cdt subseq fcc_pres", ! 1245: e.ATTR(AK_TPDU).e_seq, e.ATTR(AK_TPDU).e_cdt, ! 1246: subseq, fcc_present); ! 1247: ENDTRACE ! 1248: ! 1249: e.ev_number = AK_TPDU; ! 1250: IncStat(ts_AK_rcvd); ! 1251: IncPStat(tpcb, tps_AK_rcvd); ! 1252: break; ! 1253: ! 1254: case XAK_TPDU_type: ! 1255: if (tpcb->tp_xtd_format) { ! 1256: #ifdef BYTE_ORDER ! 1257: union seq_type seqeotX; ! 1258: ! 1259: seqeotX.s_seqeot = ntohl(hdr->tpdu_seqeotX); ! 1260: e.ATTR(XAK_TPDU).e_seq = seqeotX.s_seq; ! 1261: #else ! 1262: e.ATTR(XAK_TPDU).e_seq = hdr->tpdu_XAKseqX; ! 1263: #endif BYTE_ORDER ! 1264: } else { ! 1265: e.ATTR(XAK_TPDU).e_seq = hdr->tpdu_XAKseq; ! 1266: } ! 1267: e.ev_number = XAK_TPDU; ! 1268: IncStat(ts_XAK_rcvd); ! 1269: IncPStat(tpcb, tps_XAK_rcvd); ! 1270: break; ! 1271: ! 1272: case XPD_TPDU_type: ! 1273: if (tpcb->tp_xtd_format) { ! 1274: #ifdef BYTE_ORDER ! 1275: union seq_type seqeotX; ! 1276: ! 1277: seqeotX.s_seqeot = ntohl(hdr->tpdu_seqeotX); ! 1278: e.ATTR(XPD_TPDU).e_seq = seqeotX.s_seq; ! 1279: #else ! 1280: e.ATTR(XPD_TPDU).e_seq = hdr->tpdu_XPDseqX; ! 1281: #endif BYTE_ORDER ! 1282: } else { ! 1283: e.ATTR(XPD_TPDU).e_seq = hdr->tpdu_XPDseq; ! 1284: } ! 1285: takes_data = TRUE; ! 1286: e.ev_number = XPD_TPDU; ! 1287: IncStat(ts_XPD_rcvd); ! 1288: IncPStat(tpcb, tps_XPD_rcvd); ! 1289: break; ! 1290: ! 1291: case DT_TPDU_type: ! 1292: { /* the y option will cause occasional packets to be dropped. ! 1293: * A little crude but it works. ! 1294: */ ! 1295: ! 1296: IFDEBUG(D_DROP) ! 1297: if(time.tv_usec & 0x4 && hdr->tpdu_DTseq & 0x1) { ! 1298: IncStat(ts_ydebug); ! 1299: goto discard; ! 1300: } ! 1301: ENDDEBUG ! 1302: } ! 1303: if (tpcb->tp_class == TP_CLASS_0) { ! 1304: e.ATTR(DT_TPDU).e_seq = 0; /* actually don't care */ ! 1305: e.ATTR(DT_TPDU).e_eot = (((struct tp0du *)hdr)->tp0du_eot); ! 1306: } else if (tpcb->tp_xtd_format) { ! 1307: #ifdef BYTE_ORDER ! 1308: union seq_type seqeotX; ! 1309: ! 1310: seqeotX.s_seqeot = ntohl(hdr->tpdu_seqeotX); ! 1311: e.ATTR(DT_TPDU).e_seq = seqeotX.s_seq; ! 1312: e.ATTR(DT_TPDU).e_eot = seqeotX.s_eot; ! 1313: #else ! 1314: e.ATTR(DT_TPDU).e_seq = hdr->tpdu_DTseqX; ! 1315: e.ATTR(DT_TPDU).e_eot = hdr->tpdu_DTeotX; ! 1316: #endif BYTE_ORDER ! 1317: } else { ! 1318: e.ATTR(DT_TPDU).e_seq = hdr->tpdu_DTseq; ! 1319: e.ATTR(DT_TPDU).e_eot = hdr->tpdu_DTeot; ! 1320: } ! 1321: if(e.ATTR(DT_TPDU).e_eot) ! 1322: IncStat(ts_eot_input); ! 1323: takes_data = TRUE; ! 1324: e.ev_number = DT_TPDU; ! 1325: IncStat(ts_DT_rcvd); ! 1326: IncPStat(tpcb, tps_DT_rcvd); ! 1327: break; ! 1328: ! 1329: case GR_TPDU_type: ! 1330: tp_indicate(T_DISCONNECT, tpcb, ECONNABORTED); ! 1331: /* drop through */ ! 1332: default: ! 1333: /* this should NEVER happen because there is a ! 1334: * check for dutype well above here ! 1335: */ ! 1336: error = E_TP_INV_TPDU; /* causes an ER */ ! 1337: IFDEBUG(D_TPINPUT) ! 1338: printf("INVALID dutype 0x%x\n", hdr->tpdu_type); ! 1339: ENDDEBUG ! 1340: IncStat(ts_inv_dutype); ! 1341: goto respond; ! 1342: } ! 1343: } ! 1344: /* peel off the tp header; ! 1345: * remember that the du_li doesn't count itself. ! 1346: * This may leave us w/ an empty mbuf at the front of a chain. ! 1347: * We can't just throw away the empty mbuf because hdr still points ! 1348: * into the mbuf's data area and we're still using hdr (the tpdu header) ! 1349: */ ! 1350: m->m_len -= ((int)hdr->tpdu_li + 1); ! 1351: m->m_data += ((int)hdr->tpdu_li + 1); ! 1352: ! 1353: if (takes_data) { ! 1354: int max = tpdu_info[ hdr->tpdu_type ] [TP_MAX_DATA_INDEX]; ! 1355: int datalen = tpdu_len - hdr->tpdu_li - 1, mbtype = MT_DATA; ! 1356: struct { ! 1357: struct tp_disc_reason dr; ! 1358: struct cmsghdr x_hdr; ! 1359: } x; ! 1360: #define c_hdr x.x_hdr ! 1361: register struct mbuf *n; ! 1362: ! 1363: CHECK( (max && datalen > max), E_TP_LENGTH_INVAL, ! 1364: ts_inv_length, respond, (max + hdr->tpdu_li + 1) ); ! 1365: switch( hdr->tpdu_type ) { ! 1366: ! 1367: case CR_TPDU_type: ! 1368: c_hdr.cmsg_type = TPOPT_CONN_DATA; ! 1369: goto make_control_msg; ! 1370: ! 1371: case CC_TPDU_type: ! 1372: c_hdr.cmsg_type = TPOPT_CFRM_DATA; ! 1373: goto make_control_msg; ! 1374: ! 1375: case DR_TPDU_type: ! 1376: x.dr.dr_hdr.cmsg_len = sizeof(x) - sizeof(c_hdr); ! 1377: x.dr.dr_hdr.cmsg_type = TPOPT_DISC_REASON; ! 1378: x.dr.dr_hdr.cmsg_level = SOL_TRANSPORT; ! 1379: x.dr.dr_reason = hdr->tpdu_DRreason; ! 1380: c_hdr.cmsg_type = TPOPT_DISC_DATA; ! 1381: make_control_msg: ! 1382: datalen += sizeof(c_hdr); ! 1383: c_hdr.cmsg_len = datalen; ! 1384: c_hdr.cmsg_level = SOL_TRANSPORT; ! 1385: mbtype = MT_CONTROL; ! 1386: MGET(n, M_DONTWAIT, MT_DATA); ! 1387: if (n == 0) ! 1388: {m_freem(m); m = 0; datalen = 0; goto invoke; } ! 1389: if (hdr->tpdu_type == DR_TPDU_type) { ! 1390: datalen += sizeof(x) - sizeof(c_hdr); ! 1391: bcopy((caddr_t)&x, mtod(n, caddr_t), n->m_len = sizeof(x)); ! 1392: } else ! 1393: bcopy((caddr_t)&c_hdr, mtod(n, caddr_t), ! 1394: n->m_len = sizeof(c_hdr)); ! 1395: n->m_next = m; ! 1396: m = n; ! 1397: /* FALLTHROUGH */ ! 1398: ! 1399: case XPD_TPDU_type: ! 1400: if (mbtype != MT_CONTROL) ! 1401: mbtype = MT_OOBDATA; ! 1402: m->m_flags |= M_EOR; ! 1403: /* FALLTHROUGH */ ! 1404: ! 1405: case DT_TPDU_type: ! 1406: for (n = m; n; n = n->m_next) { ! 1407: MCHTYPE(n, mbtype); ! 1408: } ! 1409: invoke: ! 1410: e.ATTR(DT_TPDU).e_datalen = datalen; ! 1411: e.ATTR(DT_TPDU).e_data = m; ! 1412: break; ! 1413: ! 1414: default: ! 1415: printf( ! 1416: "ERROR in tp_input! hdr->tpdu_type 0x%x takes_data 0x%x m 0x%x\n", ! 1417: hdr->tpdu_type, takes_data, m); ! 1418: break; ! 1419: } ! 1420: /* prevent m_freem() after tp_driver() from throwing it all away */ ! 1421: m = MNULL; ! 1422: } ! 1423: ! 1424: IncStat(ts_tpdu_rcvd); ! 1425: ! 1426: IFDEBUG(D_TPINPUT) ! 1427: printf( "tp_input: before driver, state 0x%x event 0x%x m 0x%x", ! 1428: tpcb->tp_state, e.ev_number, m ); ! 1429: printf(" e.e_data 0x%x\n", e.ATTR(DT_TPDU).e_data); ! 1430: printf("takes_data 0x%x m_len 0x%x, tpdu_len 0x%x\n", ! 1431: takes_data, (m==MNULL)?0:m->m_len, tpdu_len); ! 1432: ENDDEBUG ! 1433: ! 1434: error = tp_driver(tpcb, &e); ! 1435: ! 1436: ASSERT(tpcb != (struct tp_pcb *)0); ! 1437: ASSERT(tpcb->tp_sock != (struct socket *)0); ! 1438: if( tpcb->tp_sock->so_error == 0 ) ! 1439: tpcb->tp_sock->so_error = error; ! 1440: ! 1441: /* Kludge to keep the state tables under control (adding ! 1442: * data on connect & disconnect & freeing the mbuf containing ! 1443: * the data would have exploded the tables and made a big mess ). ! 1444: */ ! 1445: switch(e.ev_number) { ! 1446: case CC_TPDU: ! 1447: case DR_TPDU: ! 1448: case CR_TPDU: ! 1449: m = e.ATTR(CC_TPDU).e_data; /* same field for all three dutypes */ ! 1450: IFDEBUG(D_TPINPUT) ! 1451: printf("after driver, restoring m to 0x%x, takes_data 0x%x\n", ! 1452: m, takes_data); ! 1453: ENDDEBUG ! 1454: break; ! 1455: default: ! 1456: break; ! 1457: } ! 1458: /* Concatenated sequences are terminated by any tpdu that ! 1459: * carries data: CR, CC, DT, XPD, DR. ! 1460: * All other tpdu types may be concatenated: AK, XAK, DC, ER. ! 1461: */ ! 1462: ! 1463: separate: ! 1464: if ( takes_data == 0 ) { ! 1465: ASSERT( m != MNULL ); ! 1466: /* ! 1467: * we already peeled off the prev. tp header so ! 1468: * we can just pull up some more and repeat ! 1469: */ ! 1470: ! 1471: if( m = tp_inputprep(m) ) { ! 1472: IFDEBUG(D_TPINPUT) ! 1473: hdr = mtod(m, struct tpdu *); ! 1474: printf("tp_input @ separate: hdr 0x%x size %d m 0x%x\n", ! 1475: hdr, (int) hdr->tpdu_li + 1, m); ! 1476: dump_mbuf(m, "tp_input after driver, at separate"); ! 1477: ENDDEBUG ! 1478: ! 1479: IncStat(ts_concat_rcvd); ! 1480: goto again; ! 1481: } ! 1482: } ! 1483: if ( m != MNULL ) { ! 1484: IFDEBUG(D_TPINPUT) ! 1485: printf("tp_input : m_freem(0x%x)\n", m); ! 1486: ENDDEBUG ! 1487: m_freem(m); ! 1488: IFDEBUG(D_TPINPUT) ! 1489: printf("tp_input : after m_freem 0x%x\n", m); ! 1490: ENDDEBUG ! 1491: } ! 1492: return (ProtoHook) tpcb; ! 1493: ! 1494: discard: ! 1495: /* class 4: drop the tpdu */ ! 1496: /* class 2,0: Should drop the net connection, if you can figure out ! 1497: * to which connection it applies ! 1498: */ ! 1499: IFDEBUG(D_TPINPUT) ! 1500: printf("tp_input DISCARD\n"); ! 1501: ENDDEBUG ! 1502: IFTRACE(D_TPINPUT) ! 1503: tptrace(TPPTmisc, "tp_input DISCARD m", m,0,0,0); ! 1504: ENDTRACE ! 1505: m_freem(m); ! 1506: IncStat(ts_recv_drop); ! 1507: return (ProtoHook)0; ! 1508: ! 1509: nonx_dref: ! 1510: switch (dutype) { ! 1511: default: ! 1512: goto discard; ! 1513: case CC_TPDU_type: ! 1514: /* error = E_TP_MISM_REFS; */ ! 1515: break; ! 1516: case DR_TPDU_type: ! 1517: error |= TP_ERROR_SNDC; ! 1518: } ! 1519: respond: ! 1520: IFDEBUG(D_TPINPUT) ! 1521: printf("RESPOND: error 0x%x, errlen 0x%x\n", error, errlen); ! 1522: ENDDEBUG ! 1523: IFTRACE(D_TPINPUT) ! 1524: tptrace(TPPTmisc, "tp_input RESPOND m error sref", m, error, sref, 0); ! 1525: ENDTRACE ! 1526: if (sref == 0) ! 1527: goto discard; ! 1528: (void) tp_error_emit(error, (u_long)sref, (struct sockaddr_iso *)faddr, ! 1529: (struct sockaddr_iso *)laddr, m, errlen, tpcb, ! 1530: (int)cons_channel, dgout_routine); ! 1531: IFDEBUG(D_ERROR_EMIT) ! 1532: printf("tp_input after error_emit\n"); ! 1533: ENDDEBUG ! 1534: ! 1535: #ifdef lint ! 1536: printf("",sref,opt); ! 1537: #endif lint ! 1538: IncStat(ts_recv_drop); ! 1539: return (ProtoHook)0; ! 1540: } ! 1541: ! 1542: ! 1543: /* ! 1544: * NAME: tp_headersize() ! 1545: * ! 1546: * CALLED FROM: ! 1547: * tp_emit() and tp_sbsend() ! 1548: * TP needs to know the header size so it can figure out how ! 1549: * much data to put in each tpdu. ! 1550: * ! 1551: * FUNCTION, ARGUMENTS, and RETURN VALUE: ! 1552: * For a given connection, represented by (tpcb), and ! 1553: * tpdu type (dutype), return the size of a tp header. ! 1554: * ! 1555: * RETURNS: the expected size of the heade in bytesr ! 1556: * ! 1557: * SIDE EFFECTS: ! 1558: * ! 1559: * NOTES: It would be nice if it got the network header size as well. ! 1560: */ ! 1561: int ! 1562: tp_headersize(dutype, tpcb) ! 1563: int dutype; ! 1564: struct tp_pcb *tpcb; ! 1565: { ! 1566: register int size = 0; ! 1567: ! 1568: IFTRACE(D_CONN) ! 1569: tptrace(TPPTmisc, "tp_headersize dutype class xtd_format", ! 1570: dutype, tpcb->tp_class, tpcb->tp_xtd_format, 0); ! 1571: ENDTRACE ! 1572: if( !( (tpcb->tp_class == TP_CLASS_0) || ! 1573: (tpcb->tp_class == TP_CLASS_4) || ! 1574: (dutype == DR_TPDU_type) || ! 1575: (dutype == CR_TPDU_type) )) { ! 1576: printf("tp_headersize:dutype 0x%x, class 0x%x", ! 1577: dutype, tpcb->tp_class); ! 1578: /* TODO: identify this and GET RID OF IT */ ! 1579: } ! 1580: ASSERT( (tpcb->tp_class == TP_CLASS_0) || ! 1581: (tpcb->tp_class == TP_CLASS_4) || ! 1582: (dutype == DR_TPDU_type) || ! 1583: (dutype == CR_TPDU_type) ); ! 1584: ! 1585: if( tpcb->tp_class == TP_CLASS_0 ) { ! 1586: size = tpdu_info[ dutype ] [TP_LEN_CLASS_0_INDEX]; ! 1587: } else { ! 1588: size = tpdu_info[ dutype ] [tpcb->tp_xtd_format]; ! 1589: } ! 1590: return size; ! 1591: /* caller must get network level header size separately */ ! 1592: }
This archive runs on limited infrastructure. Preserving old code on modern bandwidth. Automated agents are requested to crawl responsibly.