checkpoint for ``alpha tape''; tp is still a little broken.
[unix-history] / usr / src / sys / netiso / tp_emit.c
CommitLineData
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1/***********************************************************
2 Copyright IBM Corporation 1987
3
4 All Rights Reserved
5
6Permission to use, copy, modify, and distribute this software and its
7documentation for any purpose and without fee is hereby granted,
8provided that the above copyright notice appear in all copies and that
9both that copyright notice and this permission notice appear in
10supporting documentation, and that the name of IBM not be
11used in advertising or publicity pertaining to distribution of the
12software without specific, written prior permission.
13
14IBM DISCLAIMS ALL WARRANTIES WITH REGARD TO THIS SOFTWARE, INCLUDING
15ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS, IN NO EVENT SHALL
16IBM BE LIABLE FOR ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR
17ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
18WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION,
19ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS
20SOFTWARE.
21
22******************************************************************/
23
24/*
25 * ARGO Project, Computer Sciences Dept., University of Wisconsin - Madison
26 */
27/*
28 * ARGO TP
29 *
30 * $Header: tp_emit.c,v 5.5 88/11/18 17:27:20 nhall Exp $
31 * $Source: /usr/argo/sys/netiso/RCS/tp_emit.c,v $
44f52ea5 32 * @(#)tp_emit.c 7.3 (Berkeley) %G% *
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33 *
34 * This file contains tp_emit() and tp_error_emit(), which
35 * form TPDUs and hand them to ip.
36 * They take data in the form of mbuf chain, allocate mbufs as
37 * necessary for headers, and set the fields as appropriate from
38 * information found in the tpcb and net-level pcb.
39 *
40 * The worst thing about this code is adding the variable-length
41 * options on a machine that requires alignment for any memory access
42 * that isn't of size 1. See the macro ADDOPTION() below.
43 *
44 * We don't do any concatenation. (There's a kludge to test the
45 * basic mechanism of separation under the 'w' tpdebug option, that's all.)
46 */
47
48#ifndef lint
49static char *rcsid = "$Header: tp_emit.c,v 5.5 88/11/18 17:27:20 nhall Exp $";
50#endif lint
51
52
53#include "argoxtwentyfive.h"
54#include "param.h"
55#include "mbuf.h"
56#include "socket.h"
57#include "socketvar.h"
58#include "protosw.h"
59#include "errno.h"
60#include "types.h"
61#include "time.h"
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62#include "iso.h"
63#include "argo_debug.h"
64#include "tp_timer.h"
65#include "tp_param.h"
66#include "tp_stat.h"
67#include "tp_pcb.h"
68#include "tp_tpdu.h"
69#include "tp_trace.h"
70#include "tp_meas.h"
71#include "tp_seq.h"
72#include "iso_errno.h"
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73
74void iso_gen_csum();
75
76
77/* Here is a mighty kludge. The token ring misorders packets if you
78 * fire them at it too fast, and TP sans checksum is "too fast", so
79 * we have introduced a delay when checksumming isn't used.
80 */
81char tp_delay = 0x00; /* delay to keep token ring from blowing it */
82
83/*
84 * NAME: tp_emit()
85 *
86 * CALLED FROM: tp.trans and from tp_sbsend()
87 *
88 * FUNCTION and ARGUMENTS:
89 * Emits one tpdu of the type (dutype), of the format appropriate
90 * to the connection described by the pcb (tpcb), with sequence
91 * number (seq) (where appropriate), end-of-tsdu bit (eot) where
92 * appropriate, and with the data in the mbuf chain (data).
93 * For DR and ER tpdus, the argument (eot) is
94 * the reason for issuing the tpdu rather than an end-of-tsdu indicator.
95 *
96 * RETURNS:
97 * 0 OK
98 * ENOBUFS
99 * E* returned from net layer output rtn
100 *
101 * SIDE EFFECTS:
102 *
103 * NOTES:
104 *
105 * WE ASSUME that the tp header + all options will fit in ONE mbuf.
106 * If mbufs are 256 this will most likely be true, but if they are 128 it's
107 * possible that they won't.
108 * If you used every option on the CR + max. user data you'd overrun
109 * 112 but unless you used > 115 bytes for the security
110 * parameter, it would fit in a 256-byte mbuf (240 bytes for the header)
111 * We don't support the security parameter, so this isn't a problem.
112 * If security is added, we ought to remove this assumption.
113 *
114 * We do not implement the flow control confirmation "element of procedure".
115 * A) it should not affect interoperability,
116 * B) it should not be necessary - the protocol will eventually
117 * straighten things out w/o FCC, as long as we don't have severely
118 * mismatched keepalive and inactivity timers, and
119 * C) it appears not to be REQUIRED, and
120 * D) it's incredibly grotesque, and no doubt will lengthen a few
121 * critical paths.
122 * HOWEVER, we're thinking about putting it in anyway, for
123 * completeness, just like we did with ack subsequencing.
124 */
125
126int
127tp_emit(dutype, tpcb, seq, eot, data)
128 int dutype;
129 struct tp_pcb *tpcb;
130 SeqNum seq;
131 u_int eot;
132 struct mbuf *data;
133{
134 register struct tpdu *hdr;
135 register struct mbuf *m;
136 int csum_offset=0;
137 int datalen = 0;
138 int error = 0;
139
140 /* NOTE:
141 * here we treat tpdu_li as if it DID include the li field, up until
142 * the end, at which time we subtract 1
143 * THis is because if we subtract 1 right away, we end up adding
144 * one every time we add an option.
145 */
146 IFDEBUG(D_EMIT)
147 printf(
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148 "tp_emit dutype 0x%x, tpcb 0x%x, eot 0x%x, seq 0x%x, data 0x%x",
149 dutype, tpcb, eot, seq, data);
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150 ENDDEBUG
151
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152 if (dutype == CR_TPDU || dutype == CC_TPDU) {
153 m = (struct mbuf *) malloc((u_long)256, M_MBUF, M_DONTWAIT);
154 if (m) {
155 m->m_type = TPMT_TPHDR;
156 mbstat.m_mtypes[TPMT_TPHDR]++;
157 m->m_next = MNULL;
158 m->m_data = m->m_dat;
159 m->m_flags = 0;
160 }
161 } else {
162 MGET(m, M_DONTWAIT, TPMT_TPHDR);
163 }
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164 if (m == NULL) {
165 if(data != (struct mbuf *)0)
166 m_freem(data);
167 error = ENOBUFS;
168 goto done;
169 }
170 m->m_len = sizeof(struct tpdu);
171 m->m_act = MNULL;
172
173 hdr = mtod(m, struct tpdu *);
a50e2bc0 174 bzero((caddr_t)hdr, sizeof(struct tpdu));
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175
176 {
177 int tp_headersize();
178
179 hdr->tpdu_type = dutype;
180 hdr->tpdu_li = tp_headersize(dutype, tpcb);
181 /*
182 * class 0 doesn't use this for DT
183 * it'll just get overwritten below
184 */
185 hdr->tpdu_dref = htons(tpcb->tp_fref);
186 if( tpcb->tp_use_checksum ||
187 (dutype == CR_TPDU_type && (tpcb->tp_class & TP_CLASS_4) )) {
188 csum_offset = hdr->tpdu_li + 2; /* DOESN'T include csum */
189 ADDOPTION(TPP_checksum, hdr, 2, eot /* dummy arg */);
190 IFDEBUG(D_CHKSUM)
191 printf(
192 "tp_emit: csum_offset 0x%x, hdr->tpdu_li 0x%x\n",
193 csum_offset, hdr->tpdu_li);
194 ENDDEBUG
195 }
196 /*
197 * VARIABLE PARTS...
198 */
199 switch( dutype ) {
200
201 case CR_TPDU_type:
202 hdr->tpdu_CRdref_0 = htons(0); /* must be zero */
203
204 case CC_TPDU_type:
205 {
206 u_char x;
207
208 hdr->tpdu_CCsref = htons(tpcb->tp_lref); /* same as CRsref */
209
210 if( tpcb->tp_class > TP_CLASS_1 ) {
211 LOCAL_CREDIT( tpcb );
212 tpcb->tp_sent_uwe = tpcb->tp_lcredit -1;
213 tpcb->tp_sent_rcvnxt = 1;
214 tpcb->tp_sent_lcdt = tpcb->tp_lcredit;
215 hdr->tpdu_cdt = tpcb->tp_lcredit;
216 } else {
217 hdr->tpdu_cdt = 0;
218 }
219 hdr->tpdu_CCclass = tp_mask_to_num(tpcb->tp_class);
220 hdr->tpdu_CCoptions =
221 (tpcb->tp_xtd_format? TPO_XTD_FMT:0) |
222 (tpcb->tp_use_efc? TPO_USE_EFC:0);
223
224 IFPERF(tpcb)
225 u_char perf_meas = tpcb->tp_perf_on;
226 ADDOPTION(TPP_perf_meas, hdr, sizeof(perf_meas), perf_meas);
227 ENDPERF
228
229 if( dutype == CR_TPDU_type ) {
230 IncStat(ts_CR_sent);
231
232 ASSERT( tpcb->tp_lsuffixlen > 0 );
233 ASSERT( tpcb->tp_fsuffixlen > 0 );
234
235 ADDOPTION(TPP_calling_sufx, hdr,
a50e2bc0 236 tpcb->tp_lsuffixlen, tpcb->tp_lsuffix[0]);
f04c49fa 237 ADDOPTION(TPP_called_sufx, hdr,
a50e2bc0 238 tpcb->tp_fsuffixlen, tpcb->tp_fsuffix[0]);
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239 } else {
240 IncStat(ts_CC_sent);
241 }
242
243 ADDOPTION(TPP_tpdu_size, hdr,
244 sizeof(tpcb->tp_tpdusize), tpcb->tp_tpdusize);
245
246 if (tpcb->tp_class != TP_CLASS_0) {
247 short millisec = 500*(tpcb->tp_sendack_ticks);
248
249 millisec = htons(millisec);
250 ADDOPTION(TPP_acktime, hdr, sizeof(short), millisec);
251
252 x = (tpcb->tp_use_nxpd? TPAO_USE_NXPD: 0)
253 | (tpcb->tp_use_rcc? TPAO_USE_RCC : 0)
254 | (tpcb->tp_use_checksum?0: TPAO_NO_CSUM)
255 | (tpcb->tp_xpd_service? TPAO_USE_TXPD: 0);
256 ADDOPTION(TPP_addl_opt, hdr, 1, x);
257
258 }
259
260 if( (dutype == CR_TPDU_type) && (tpcb->tp_class != TP_CLASS_0)){
261
262 ASSERT( 1 == sizeof(tpcb->tp_vers) );
263 ADDOPTION(TPP_vers, hdr, 1, tpcb->tp_vers);
264
265 /* for each alt protocol class x,
266 * x = x<<4;
267 * option = concat(option, x);
268 * Well, for now we only have TP0 for an
269 * alternative so... this is easy.
270 *
271 * HOWEVER... There should be NO alt protocol
272 * class over CLNS. Need to see if the route suggests
273 * CONS, and iff so add alt class.
274 */
275 x = 0;
276 ADDOPTION(TPP_alt_class, hdr, 1, x);
277 }
278
279 if( hdr->tpdu_li > MLEN)
280 panic("tp_emit CR/CC");
281 }
282 break;
283
284 case DR_TPDU_type:
285 if( hdr->tpdu_DRdref == 0 ) {
286 /* don't issue the DR */
287 goto done;
288 }
289 hdr->tpdu_cdt = 0;
290 hdr->tpdu_DRsref = htons(tpcb->tp_lref);
291 hdr->tpdu_DRreason = (u_char)eot; /* WHICH BYTE OF THIS??? */
292
293 /* forget the add'l information variable part */
294 IncStat(ts_DR_sent);
295 break;
296
297 case DC_TPDU_type: /* not used in class 0 */
298 ASSERT( tpcb->tp_class != TP_CLASS_0);
299 hdr->tpdu_DCsref = htons(tpcb->tp_lref);
300 hdr->tpdu_cdt = 0;
301 data = (struct mbuf *)0;
302 IncStat(ts_DC_sent);
303 break;
304
305 case XAK_TPDU_type: /* xak not used in class 0 */
306 ASSERT( tpcb->tp_class != TP_CLASS_0); /* fall through */
307 hdr->tpdu_cdt = 0;
308
309 IFTRACE(D_XPD)
310 tptraceTPCB(TPPTXack, seq, 0, 0, 0, 0);
311 ENDTRACE
312 data = (struct mbuf *)0;
313 if (tpcb->tp_xtd_format) {
314#ifdef BYTE_ORDER
315 hdr->tpdu_XAKseqX = htonl(seq);
316#else
317 hdr->tpdu_XAKseqX = seq;
318#endif BYTE_ORDER
319 } else {
320 hdr->tpdu_XAKseq = seq;
321 }
322 IncStat(ts_XAK_sent);
323 IncPStat(tpcb, tps_XAK_sent);
324 break;
325
326 case XPD_TPDU_type: /* xpd not used in class 0 */
327 ASSERT( tpcb->tp_class != TP_CLASS_0); /* fall through */
328 hdr->tpdu_cdt = 0;
329 if (tpcb->tp_xtd_format) {
330#ifdef BYTE_ORDER
331 union seq_type seqeotX;
332
333 seqeotX.s_seq = seq;
334 seqeotX.s_eot = 1;
335 hdr->tpdu_seqeotX = htonl(seqeotX.s_seqeot);
336#else
337 hdr->tpdu_XPDseqX = seq;
338 hdr->tpdu_XPDeotX = 1; /* always 1 for XPD tpdu */
339#endif BYTE_ORDER
340 } else {
341 hdr->tpdu_XPDseq = seq;
342 hdr->tpdu_XPDeot = 1; /* always 1 for XPD tpdu */
343 }
344 IncStat(ts_XPD_sent);
345 IncPStat(tpcb, tps_XPD_sent);
346
347 /* kludge to test the input size checking */
348 IFDEBUG(D_SIZE_CHECK)
a50e2bc0 349 /*if(data->m_len <= 16 && data->m_off < (MLEN-18) ) {
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350 printf("Sending too much data on XPD: 18 bytes\n");
351 data->m_len = 18;
a50e2bc0 352 }*/
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353 ENDDEBUG
354 break;
355
356 case DT_TPDU_type:
357 hdr->tpdu_cdt = 0;
358 IFTRACE(D_DATA)
359 tptraceTPCB(TPPTmisc, "emit DT: eot seq tpdu_li", eot, seq,
360 hdr->tpdu_li, 0);
361 ENDTRACE
362 if (tpcb->tp_xtd_format) {
363#ifdef BYTE_ORDER
364 union seq_type seqeotX;
365
366 seqeotX.s_seq = seq;
367 seqeotX.s_eot = eot;
368 hdr->tpdu_seqeotX = htonl(seqeotX.s_seqeot);
369#else
370 hdr->tpdu_DTseqX = seq;
371 hdr->tpdu_DTeotX = eot;
372#endif BYTE_ORDER
373 } else if (tpcb->tp_class == TP_CLASS_0) {
374 IFDEBUG(D_EMIT)
375 printf("DT tpdu: class 0 m 0x%x hdr 0x%x\n", m, hdr);
376 dump_buf( hdr, hdr->tpdu_li + 1 );
377 ENDDEBUG
378 ((struct tp0du *)hdr)->tp0du_eot = eot;
379 ((struct tp0du *)hdr)->tp0du_mbz = 0;
380 IFDEBUG(D_EMIT)
381 printf("DT 2 tpdu: class 0 m 0x%x hdr 0x%x\n", m, hdr);
382 dump_buf( hdr, hdr->tpdu_li + 1 );
383 ENDDEBUG
384 } else {
385 hdr->tpdu_DTseq = seq;
386 hdr->tpdu_DTeot = eot;
387 }
388 if(eot) {
389 IncStat(ts_EOT_sent);
390 }
391 IncStat(ts_DT_sent);
392 IncPStat(tpcb, tps_DT_sent);
393 break;
394
395 case AK_TPDU_type:/* ak not used in class 0 */
396 ASSERT( tpcb->tp_class != TP_CLASS_0);
397 data = (struct mbuf *)0;
398 { SeqNum olduwe = tpcb->tp_sent_uwe;
399
400 tpcb->tp_sent_uwe =
401 SEQ(tpcb,tpcb->tp_rcvnxt + tpcb->tp_lcredit -1);
402 LOCAL_CREDIT( tpcb );
403 tpcb->tp_sent_lcdt = tpcb->tp_lcredit;
404
405 IFDEBUG(D_RENEG)
406 /* occasionally fake a reneging so
407 you can test subsequencing */
408 if( olduwe & 0x1 ) {
409 tpcb->tp_reneged = 1;
410 IncStat(ts_ldebug);
411 }
412 ENDDEBUG
413 /* Are we about to reneg on credit?
414 * When might we do so?
415 * a) when using optimistic credit (which we no longer do).
416 * b) when drain() gets implemented (not in the plans).
417 * c) when D_RENEG is on.
a50e2bc0 418 * d) when DEC BIT response is implemented.
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419 * (not- when we do this, we'll need to implement flow control
420 * confirmation)
421 */
422 if( SEQ_LT(tpcb, tpcb->tp_sent_uwe, olduwe) ) {
423 tpcb->tp_reneged = 1;
424 IncStat(ts_lcdt_reduced);
425 IFTRACE(D_CREDIT)
426 tptraceTPCB(TPPTmisc,
427 "RENEG: olduwe newuwe lcredit rcvnxt",
428 olduwe,
429 tpcb->tp_sent_uwe, tpcb->tp_lcredit,
430 tpcb->tp_rcvnxt);
431 ENDTRACE
432 }
433
434 IFPERF(tpcb)
435 /* new lwe is less than old uwe means we're
436 * acking before we received a whole window full
437 */
438 if( SEQ_LT( tpcb, tpcb->tp_rcvnxt, olduwe) ) {
439 /* tmp1 = number of pkts fewer than the full window */
440 register int tmp1 =
441 (int) SEQ_SUB( tpcb, olduwe, tpcb->tp_rcvnxt);
442
443 if(tmp1 > TP_PM_MAX)
444 tmp1 = TP_PM_MAX;
445 IncPStat( tpcb, tps_ack_early[tmp1] );
446
447 /* tmp1 = amt of new cdt we're advertising */
448 tmp1 = SEQ_SUB( tpcb, seq, tpcb->tp_sent_rcvnxt);
449 if(tmp1 > TP_PM_MAX )
450 tmp1 = TP_PM_MAX;
451
452 IncPStat( tpcb,
453 tps_cdt_acked [ tmp1 ]
454 [ ((tpcb->tp_lcredit > TP_PM_MAX)?
455 TP_PM_MAX:tpcb->tp_lcredit) ] );
456
457 }
458 ENDPERF
459 }
460 IFTRACE(D_ACKSEND)
461 tptraceTPCB(TPPTack, seq, tpcb->tp_lcredit, tpcb->tp_sent_uwe,
462 tpcb->tp_r_subseq, 0);
463 ENDTRACE
464 if (tpcb->tp_xtd_format) {
465#ifdef BYTE_ORDER
466 hdr->tpdu_cdt = 0;
467 hdr->tpdu_AKseqX = htonl(seq);
468 hdr->tpdu_AKcdtX = htons(tpcb->tp_lcredit);
469#else
470 hdr->tpdu_cdt = 0;
471 hdr->tpdu_AKseqX = seq;
472 hdr->tpdu_AKcdtX = tpcb->tp_lcredit;
473#endif BYTE_ORDER
474 } else {
475 hdr->tpdu_AKseq = seq;
476 hdr->tpdu_AKcdt = tpcb->tp_lcredit;
477 }
478 if ((tpcb->tp_class == TP_CLASS_4) && tpcb->tp_reneged ) {
479 /*
480 * Ack subsequence parameter req'd if WE reneged on
481 * credit offered. (ISO 8073, 12.2.3.8.2, p. 74)
482 */
483 IFDEBUG(D_RENEG)
484 printf("Adding subseq 0x%x\n", tpcb->tp_s_subseq);
485 ENDDEBUG
486 tpcb->tp_s_subseq++;
487 /*
488 * add tmp subseq and do a htons on it.
489 */
490 ADDOPTION(TPP_subseq, hdr,
491 sizeof(tpcb->tp_s_subseq), tpcb->tp_s_subseq);
492 } else
493 tpcb->tp_s_subseq = 0;
494
495 if ( tpcb->tp_sendfcc || eot ) /* overloaded to mean SEND FCC */ {
496 /*
497 * Rules for sending FCC ("should" send when) :
498 * %a) received an ack from peer with NO NEWS whatsoever,
499 * and it did not contain an FCC
500 * b) received an ack from peer that opens its closed window.
501 * c) received an ack from peer after it reneged on its
502 * offered credit, AND this ack raises UWE but LWE is same
503 * and below UWE at time of reneging (reduction)
504 * Now, ISO 8073 12.2.3.8.3 says
505 * that a retransmitted AK shall not contain the FCC
506 * parameter. Now, how the hell you tell the difference
507 * between a retransmitted ack and an ack that's sent in
508 * response to a received ack, I don't know, because without
509 * any local activity, and w/o any received DTs, they
510 * will contain exactly the same credit/seq# information.
511 * Anyway, given that the "retransmission of acks"
512 * procedure (ISO 8073 12.2.3.8.3) is optional, and we
513 * don't do it (although the peer can't tell that), we
514 * ignore this last rule.
515 *
516 * We send FCC for reasons a) and b) only.
517 * To add reason c) would require a ridiculous amount of state.
518 *
519 */
520 u_short bogus[4]; /* lwe(32), subseq(16), cdt(16) */
521 SeqNum lwe;
522 u_short subseq, fcredit;
523
524 tpcb->tp_sendfcc = 0;
525
526 lwe = (SeqNum) htonl(tpcb->tp_snduna);
527 subseq = htons(tpcb->tp_r_subseq);
528 fcredit = htons(tpcb->tp_fcredit);
529
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530 bcopy((caddr_t) &lwe, (caddr_t)&bogus[0], sizeof(SeqNum));
531 bcopy((caddr_t) &subseq, (caddr_t)&bogus[2], sizeof(u_short));
532 bcopy((caddr_t) &fcredit, (caddr_t)&bogus[3], sizeof(u_short));
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533
534 IFTRACE(D_ACKSEND)
535 tptraceTPCB(TPPTmisc,
536 "emit w/FCC: snduna r_subseq fcredit",
537 tpcb->tp_snduna, tpcb->tp_r_subseq,
538 tpcb->tp_fcredit, 0);
539 ENDTRACE
540
541 IFDEBUG(D_ACKSEND)
542 printf("Calling ADDOPTION 0x%x, 0x%x, 0x%x,0x%x\n",
543 TPP_flow_cntl_conf,
544 hdr, sizeof(bogus), bogus[0]);
545 ENDDEBUG
546 ADDOPTION(TPP_flow_cntl_conf, hdr, sizeof(bogus), bogus[0]);
547 IFDEBUG(D_ACKSEND)
548 printf("after ADDOPTION hdr 0x%x hdr->tpdu_li 0x%x\n",
549 hdr, hdr->tpdu_li);
550 printf(
551 "after ADDOPTION csum_offset 0x%x, hdr->tpdu_li 0x%x\n",
552 csum_offset, hdr->tpdu_li);
553 ENDDEBUG
554
555 }
556 tpcb->tp_reneged = 0;
557 tpcb->tp_sent_rcvnxt = seq;
558 tp_ctimeout(tpcb->tp_refp, TM_sendack,
559 (int)tpcb->tp_keepalive_ticks);
560 IncStat(ts_AK_sent);
561 IncPStat(tpcb, tps_AK_sent);
562 IFDEBUG(D_ACKSEND)
563 printf(
564 "2 after rADDOPTION csum_offset 0x%x, hdr->tpdu_li 0x%x\n",
565 csum_offset, hdr->tpdu_li);
566 ENDDEBUG
567 break;
568
569 case ER_TPDU_type:
570 hdr->tpdu_ERreason = eot;
571 hdr->tpdu_cdt = 0;
572 /* no user data */
573 data = (struct mbuf *)0;
574 IncStat(ts_ER_sent);
575 break;
576 }
577
578 }
579 ASSERT( ((int)hdr->tpdu_li > 0) && ((int)hdr->tpdu_li < MLEN) );
580
581 m->m_next = data;
582
a50e2bc0 583 ASSERT( hdr->tpdu_li < MLEN ); /* leave this in */
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584 ASSERT( hdr->tpdu_li != 0 ); /* leave this in */
585
586 m->m_len = hdr->tpdu_li ;
587 hdr->tpdu_li --; /* doesn't include the li field */
588
589 datalen = m_datalen( m ); /* total len */
590
591 ASSERT( datalen <= tpcb->tp_l_tpdusize ); /* may become a problem
592 when CLNP is used; leave in here for the time being */
593 IFDEBUG(D_ACKSEND)
594 printf(
595 "4 after rADDOPTION csum_offset 0x%x, hdr->tpdu_li 0x%x\n",
596 csum_offset, hdr->tpdu_li);
597 ENDDEBUG
598 if( datalen > tpcb->tp_l_tpdusize ) {
599 printf("data len 0x%x tpcb->tp_l_tpdusize 0x%x\n",
600 datalen, tpcb->tp_l_tpdusize);
601 }
602 IFDEBUG(D_EMIT)
603 printf(
604 "tp_emit before gen_csum m_len 0x%x, csum_offset 0x%x, datalen 0x%x\n",
605 m->m_len, csum_offset, datalen);
606 ENDDEBUG
607 if( tpcb->tp_use_checksum ||
608 (dutype == CR_TPDU_type && (tpcb->tp_class & TP_CLASS_4)) ) {
609 iso_gen_csum(m, csum_offset, datalen);
610 }
611
612 IFDEBUG(D_EMIT)
613 printf("tp_emit before tpxxx_output tpcb 0x%x, dutype 0x%x, datalen 0x%x\n",
614 tpcb, dutype, datalen);
a50e2bc0 615 dump_buf(mtod(m, caddr_t), datalen);
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616 ENDDEBUG
617
618 IFPERF(tpcb)
619 if( dutype == DT_TPDU_type ) {
620 PStat(tpcb, Nb_to_ll) += (datalen - m->m_len);
a50e2bc0 621 tpmeas( tpcb->tp_lref, TPtime_to_ll, (struct timeval *)0,
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622 seq, PStat(tpcb, Nb_to_ll), (datalen - m->m_len));
623 }
624 ENDPERF
625
626 IFTRACE(D_EMIT)
627 tptraceTPCB(TPPTtpduout, dutype, hdr, hdr->tpdu_li+1, datalen, 0);
628 ENDTRACE
629 IFDEBUG(D_EMIT)
630 printf("OUTPUT: tpcb 0x%x, isop 0x%x, so 0x%x\n",
631 tpcb, tpcb->tp_npcb, tpcb->tp_sock);
632 ENDDEBUG
633
634 { extern char tp_delay;
635
636 if( tp_delay )
637 if( tpcb->tp_use_checksum == 0 ) {
638 register u_int i = tp_delay;
639 for (; i!= 0; i--)
640 (void) iso_check_csum(m, datalen);
641 }
642 }
643 ASSERT( m->m_len > 0 );
644 error = (tpcb->tp_nlproto->nlp_output)(tpcb->tp_npcb, m, datalen,
645 !tpcb->tp_use_checksum);
646 IFDEBUG(D_EMIT)
647 printf("OUTPUT: returned 0x%x\n", error);
648 ENDDEBUG
649 IFTRACE(D_EMIT)
650 tptraceTPCB(TPPTmisc,
651 "tp_emit nlproto->output netservice returns datalen",
652 tpcb->tp_nlproto->nlp_output, tpcb->tp_netservice, error, datalen);
653 ENDTRACE
654done:
655 if( error == E_CO_QFULL ) {
a50e2bc0 656 tp_quench(tpcb, PRC_QUENCH);
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657 return 0;
658 }
659 return error;
660}
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661/*
662 * NAME: tp_error_emit()
663 * CALLED FROM: tp_input() when a DR or ER is to be issued in
664 * response to an input error.
665 * FUNCTION and ARGUMENTS:
666 * The error type is the first argument.
667 * The argument (sref) is the source reference on the bad incoming tpdu,
668 * and is used for a destination reference on the outgoing packet.
669 * (faddr) and (laddr) are the foreign and local addresses for this
670 * connection.
671 * (erdata) is a ptr to the errant incoming tpdu, and is copied into the
672 * outgoing ER, if an ER is to be issued.
673 * (erlen) is the number of octets of the errant tpdu that we should
674 * try to copy.
675 * (tpcb) is the pcb that describes the connection for which the bad tpdu
676 * arrived.
677 * RETURN VALUES:
678 * 0 OK
679 * ENOBUFS
680 * E* from net layer datagram output routine
681 * SIDE EFFECTS:
682 *
683 * NOTES:
684 */
685
686int
687tp_error_emit(error, sref, faddr, laddr, erdata, erlen, tpcb, cons_channel,
688 dgout_routine)
689 int error;
690 u_long sref;
691 struct sockaddr_iso *faddr, *laddr;
692 struct mbuf *erdata;
693 int erlen;
694 struct tp_pcb *tpcb;
695 int cons_channel;
696 int (*dgout_routine)();
697{
698 int dutype;
699 int datalen = 0;
700 register struct tpdu *hdr;
701 register struct mbuf *m;
702 int csum_offset;
703
704 IFTRACE(D_ERROR_EMIT)
705 tptrace(TPPTmisc, "tp_error_emit error sref tpcb erlen",
706 error, sref, tpcb, erlen);
707 ENDTRACE
708 IFDEBUG(D_ERROR_EMIT)
709 printf(
710 "tp_error_emit error 0x%x sref 0x%x tpcb 0x%x erlen 0x%x chan 0x%x\n",
711 error, sref, tpcb, erlen, cons_channel);
712 ENDDEBUG
713
714 MGET(m, M_DONTWAIT, TPMT_TPHDR);
715 if (m == NULL) {
716 return ENOBUFS;
717 }
718 m->m_len = sizeof(struct tpdu);
719 m->m_act = MNULL;
720
721 hdr = mtod(m, struct tpdu *);
722
723 IFDEBUG(D_ERROR_EMIT)
724 printf("[error 0x%x] [error&0xff 0x%x] [(char)error 0x%x]\n",
725 error, error&0xff, (char)error);
726 ENDDEBUG
727
728 error &= 0xff;
729
730 if( error & 0x40 ) {
731 error &= ~0x40;
732 dutype = ER_TPDU_type;
733 } else
734 dutype = DR_TPDU_type;
735
736 hdr->tpdu_type = dutype;
737 hdr->tpdu_cdt = 0;
738
739 switch( dutype ) {
740
741 case DR_TPDU_type:
742 IncStat(ts_DR_sent);
743 hdr->tpdu_li = 7;
744 hdr->tpdu_DRdref = htons(sref);
745 hdr->tpdu_DRsref = htons(0);
746 hdr->tpdu_DRreason = (char)error;
747 IFDEBUG(D_ERROR_EMIT)
748 printf("DR case:\n");
749 dump_buf( hdr, 7);
750 ENDDEBUG
751 /* forget the add'l information variable part */
752 break;
753
754 case ER_TPDU_type:
755 IncStat(ts_ER_sent);
756 hdr->tpdu_li = 5;
757 hdr->tpdu_ERreason = (char)error;
758 break;
759
760 default:
761 ASSERT(0);
762 printf("TP PANIC: bad dutype 0x%x\n", dutype);
763 }
764
765 if(tpcb)
766 if( tpcb->tp_use_checksum ) {
767 ADDOPTION(TPP_checksum, hdr, 2, csum_offset /* dummy argument */);
768 csum_offset = hdr->tpdu_li - 2;
769 }
770
a50e2bc0 771 ASSERT( hdr->tpdu_li < MLEN );
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772
773 if (dutype == ER_TPDU_type) {
774 /* copy the errant tpdu into another 'variable part' */
775 register caddr_t P;
776
777 IFTRACE(D_ERROR_EMIT)
778 tptrace(TPPTmisc, "error_emit ER len tpduli", erlen, hdr->tpdu_li,
779 0,0);
780 ENDTRACE
781 IFDEBUG(D_ERROR_EMIT)
782 printf("error_emit ER len 0x%x tpduli 0x%x\n", erlen, hdr->tpdu_li);
783 ENDDEBUG
784
785 /* copy at most as many octets for which you have room */
786 if (erlen + hdr->tpdu_li + 2 > TP_MAX_HEADER_LEN)
787 erlen = TP_MAX_HEADER_LEN - hdr->tpdu_li - 2;
788
789 /* add the "invalid tpdu" parameter : required in class 0 */
790 P = (caddr_t)hdr + (int)(hdr->tpdu_li);
791 vbptr(P)->tpv_code = TPP_invalid_tpdu; /* parameter code */
792 vbptr(P)->tpv_len = erlen; /* parameter length */
793 m->m_len = hdr->tpdu_li + 2; /* 1 for code, 1 for length */
794
795 /* tp_input very likely handed us an mbuf chain w/ nothing in
796 * the first mbuf and the data following the empty mbuf
797 */
798 if(erdata->m_len == 0) {
799 erdata = m_free(erdata); /* returns the next mbuf on the chain */
800 }
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801 /*
802 * copy only up to the bad octet
803 * (or max that will fit in a header
804 */
805 m->m_next = m_copy(erdata, 0, erlen);
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806 hdr->tpdu_li += erlen + 2;
807 m_freem(erdata);
808 } else {
809 IFDEBUG(D_ERROR_EMIT)
810 printf("error_emit DR error tpduli 0x%x\n", error, hdr->tpdu_li);
811 dump_buf( (char *)hdr, hdr->tpdu_li );
812 ENDDEBUG
813 m->m_len = hdr->tpdu_li ;
814 m_freem(erdata);
815 }
816
817 hdr->tpdu_li --;
818 IFTRACE(D_ERROR_EMIT)
819 tptrace(TPPTtpduout, 2, hdr, hdr->tpdu_li+1, 0, 0);
820 ENDTRACE
821
822 datalen = m_datalen( m);
823
824 if(tpcb) {
825 if( tpcb->tp_use_checksum ) {
826 IFTRACE(D_ERROR_EMIT)
827 tptrace(TPPTmisc, "before gen csum datalen", datalen,0,0,0);
828 ENDTRACE
829 IFDEBUG(D_ERROR_EMIT)
830 printf("before gen csum datalen 0x%x, csum_offset 0x%x\n",
831 datalen, csum_offset);
832 ENDDEBUG
833
834 iso_gen_csum(m, csum_offset, datalen);
835 }
836
837 IFDEBUG(D_ERROR_EMIT)
838 printf("OUTPUT: tpcb 0x%x, isop 0x%x, so 0x%x\n",
839 tpcb, tpcb->tp_npcb, tpcb->tp_sock);
840 ENDDEBUG
841 /* Problem: if packet comes in on ISO but sock is listening
842 * in INET, this assertion will fail.
843 * Have to believe the argument, not the nlp_proto.
844 ASSERT( tpcb->tp_nlproto->nlp_dgoutput == dgout_routine );
845 */
846
847 IFDEBUG(D_ERROR_EMIT)
848 printf("tp_error_emit 1 sending DG: Laddr\n");
a50e2bc0 849 dump_addr((struct sockaddr *)laddr);
f04c49fa 850 printf("Faddr\n");
a50e2bc0 851 dump_addr((struct sockaddr *)faddr);
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852 ENDDEBUG
853 return (tpcb->tp_nlproto->nlp_dgoutput)(
854 &laddr->siso_addr,
855 &faddr->siso_addr,
856 m, datalen,
857 /* no route */ (caddr_t)0, !tpcb->tp_use_checksum);
858 } else {
859 if( cons_channel ) {
860#if NARGOXTWENTYFIVE > 0
a50e2bc0 861#include "cons.h"
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862 /* This is unfortunate...
863 cons_send_on_vc(cons_channel, m, datalen);
864 */
865 cons_netcmd( CONN_CLOSE, (struct isopcb *)0,
866 cons_channel, CONS_NOT_DGM);
867 IFDEBUG(D_ERROR_EMIT)
868 printf("OUTPUT: dutype 0x%x channel 0x%x\n",
869 dutype, cons_channel);
870 ENDDEBUG
871#else NARGOXTWENTYFIVE
872 printf("TP panic! cons channel 0x%x but not cons configured\n",
873 cons_channel);
874#endif NARGOXTWENTYFIVE > 0
875 } else {
a50e2bc0 876#ifndef notdef
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877 IFDEBUG(D_ERROR_EMIT)
878 printf("tp_error_emit sending DG: Laddr\n");
a50e2bc0 879 dump_addr((struct sockaddr *)laddr);
f04c49fa 880 printf("Faddr\n");
a50e2bc0 881 dump_addr((struct sockaddr *)faddr);
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882 ENDDEBUG
883 return (*dgout_routine)( &laddr->siso_addr, &faddr->siso_addr,
884 m, datalen, /* no route */
885 (caddr_t)0, /* nochecksum==false */0);
a50e2bc0 886#else notdef
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887 IFDEBUG(D_ERROR_EMIT)
888 printf("tp_error_emit DROPPING \n", m);
889 ENDDEBUG
890 IncStat(ts_send_drop);
891 m_freem(m);
892 return 0;
a50e2bc0 893#endif notdef
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894 }
895 }
896}