Merge to Fedora kernel-2.6.18-1.2224_FC5 patched with stable patch-2.6.18.1-vs2.0...
[linux-2.6.git] / drivers / isdn / hisax / isdnl3.c
1 /* $Id: isdnl3.c,v 2.22.2.3 2004/01/13 14:31:25 keil Exp $
2  *
3  * Author       Karsten Keil
4  *              based on the teles driver from Jan den Ouden
5  * Copyright    by Karsten Keil      <keil@isdn4linux.de>
6  * 
7  * This software may be used and distributed according to the terms
8  * of the GNU General Public License, incorporated herein by reference.
9  *
10  * For changes and modifications please read
11  * Documentation/isdn/HiSax.cert
12  *
13  * Thanks to    Jan den Ouden
14  *              Fritz Elfert
15  *
16  */
17
18 #include <linux/init.h>
19 #include "hisax.h"
20 #include "isdnl3.h"
21
22 const char *l3_revision = "$Revision: 2.22.2.3 $";
23
24 static struct Fsm l3fsm;
25
26 enum {
27         ST_L3_LC_REL,
28         ST_L3_LC_ESTAB_WAIT,
29         ST_L3_LC_REL_DELAY, 
30         ST_L3_LC_REL_WAIT,
31         ST_L3_LC_ESTAB,
32 };
33
34 #define L3_STATE_COUNT (ST_L3_LC_ESTAB+1)
35
36 static char *strL3State[] =
37 {
38         "ST_L3_LC_REL",
39         "ST_L3_LC_ESTAB_WAIT",
40         "ST_L3_LC_REL_DELAY",
41         "ST_L3_LC_REL_WAIT",
42         "ST_L3_LC_ESTAB",
43 };
44
45 enum {
46         EV_ESTABLISH_REQ,
47         EV_ESTABLISH_IND,
48         EV_ESTABLISH_CNF,
49         EV_RELEASE_REQ,
50         EV_RELEASE_CNF,
51         EV_RELEASE_IND,
52         EV_TIMEOUT,
53 };
54
55 #define L3_EVENT_COUNT (EV_TIMEOUT+1)
56
57 static char *strL3Event[] =
58 {
59         "EV_ESTABLISH_REQ",
60         "EV_ESTABLISH_IND",
61         "EV_ESTABLISH_CNF",
62         "EV_RELEASE_REQ",
63         "EV_RELEASE_CNF",
64         "EV_RELEASE_IND",
65         "EV_TIMEOUT",
66 };
67
68 static void
69 l3m_debug(struct FsmInst *fi, char *fmt, ...)
70 {
71         va_list args;
72         struct PStack *st = fi->userdata;
73
74         va_start(args, fmt);
75         VHiSax_putstatus(st->l1.hardware, st->l3.debug_id, fmt, args);
76         va_end(args);
77 }
78
79 u_char *
80 findie(u_char * p, int size, u_char ie, int wanted_set)
81 {
82         int l, codeset, maincodeset;
83         u_char *pend = p + size;
84
85         /* skip protocol discriminator, callref and message type */
86         p++;
87         l = (*p++) & 0xf;
88         p += l;
89         p++;
90         codeset = 0;
91         maincodeset = 0;
92         /* while there are bytes left... */
93         while (p < pend) {
94                 if ((*p & 0xf0) == 0x90) {
95                         codeset = *p & 0x07;
96                         if (!(*p & 0x08))
97                                 maincodeset = codeset;
98                 }
99                 if (*p & 0x80)
100                         p++;
101                 else {
102                         if (codeset == wanted_set) {
103                                 if (*p == ie)
104                                   { /* improved length check (Werner Cornelius) */
105                                     if ((pend - p) < 2) 
106                                       return(NULL); 
107                                     if (*(p+1) > (pend - (p+2))) 
108                                       return(NULL); 
109                                     return (p);
110                                   }           
111                                   
112                                 if (*p > ie)
113                                         return (NULL);
114                         }
115                         p++;
116                         l = *p++;
117                         p += l;
118                         codeset = maincodeset;
119                 }
120         }
121         return (NULL);
122 }
123
124 int
125 getcallref(u_char * p)
126 {
127         int l, cr = 0;
128
129         p++;                    /* prot discr */
130         if (*p & 0xfe)          /* wrong callref BRI only 1 octet*/
131                 return(-2);
132         l = 0xf & *p++;         /* callref length */
133         if (!l)                 /* dummy CallRef */
134                 return(-1);
135         cr = *p++;
136         return (cr);
137 }
138
139 static int OrigCallRef = 0;
140
141 int
142 newcallref(void)
143 {
144         if (OrigCallRef == 127)
145                 OrigCallRef = 1;
146         else
147                 OrigCallRef++;
148         return (OrigCallRef);
149 }
150
151 void
152 newl3state(struct l3_process *pc, int state)
153 {
154         if (pc->debug & L3_DEB_STATE)
155                 l3_debug(pc->st, "newstate cr %d %d --> %d", 
156                          pc->callref & 0x7F,
157                          pc->state, state);
158         pc->state = state;
159 }
160
161 static void
162 L3ExpireTimer(struct L3Timer *t)
163 {
164         t->pc->st->lli.l4l3(t->pc->st, t->event, t->pc);
165 }
166
167 void
168 L3InitTimer(struct l3_process *pc, struct L3Timer *t)
169 {
170         t->pc = pc;
171         t->tl.function = (void *) L3ExpireTimer;
172         t->tl.data = (long) t;
173         init_timer(&t->tl);
174 }
175
176 void
177 L3DelTimer(struct L3Timer *t)
178 {
179         del_timer(&t->tl);
180 }
181
182 int
183 L3AddTimer(struct L3Timer *t,
184            int millisec, int event)
185 {
186         if (timer_pending(&t->tl)) {
187                 printk(KERN_WARNING "L3AddTimer: timer already active!\n");
188                 return -1;
189         }
190         init_timer(&t->tl);
191         t->event = event;
192         t->tl.expires = jiffies + (millisec * HZ) / 1000;
193         add_timer(&t->tl);
194         return 0;
195 }
196
197 void
198 StopAllL3Timer(struct l3_process *pc)
199 {
200         L3DelTimer(&pc->timer);
201 }
202
203 struct sk_buff *
204 l3_alloc_skb(int len)
205 {
206         struct sk_buff *skb;
207
208         if (!(skb = alloc_skb(len + MAX_HEADER_LEN, GFP_ATOMIC))) {
209                 printk(KERN_WARNING "HiSax: No skb for D-channel\n");
210                 return (NULL);
211         }
212         skb_reserve(skb, MAX_HEADER_LEN);
213         return (skb);
214 }
215
216 static void
217 no_l3_proto(struct PStack *st, int pr, void *arg)
218 {
219         struct sk_buff *skb = arg;
220
221         HiSax_putstatus(st->l1.hardware, "L3", "no D protocol");
222         if (skb) {
223                 dev_kfree_skb(skb);
224         }
225 }
226
227 static int
228 no_l3_proto_spec(struct PStack *st, isdn_ctrl *ic)
229 {
230         printk(KERN_WARNING "HiSax: no specific protocol handler for proto %lu\n",ic->arg & 0xFF);
231         return(-1);
232 }
233
234 #ifdef  CONFIG_HISAX_EURO
235 extern void setstack_dss1(struct PStack *st);
236 #endif
237
238 #ifdef  CONFIG_HISAX_NI1
239 extern void setstack_ni1(struct PStack *st);
240 #endif
241
242 #ifdef  CONFIG_HISAX_1TR6
243 extern void setstack_1tr6(struct PStack *st);
244 #endif
245
246 struct l3_process
247 *getl3proc(struct PStack *st, int cr)
248 {
249         struct l3_process *p = st->l3.proc;
250
251         while (p)
252                 if (p->callref == cr)
253                         return (p);
254                 else
255                         p = p->next;
256         return (NULL);
257 }
258
259 struct l3_process
260 *new_l3_process(struct PStack *st, int cr)
261 {
262         struct l3_process *p, *np;
263
264         if (!(p = kmalloc(sizeof(struct l3_process), GFP_ATOMIC))) {
265                 printk(KERN_ERR "HiSax can't get memory for cr %d\n", cr);
266                 return (NULL);
267         }
268         if (!st->l3.proc)
269                 st->l3.proc = p;
270         else {
271                 np = st->l3.proc;
272                 while (np->next)
273                         np = np->next;
274                 np->next = p;
275         }
276         p->next = NULL;
277         p->debug = st->l3.debug;
278         p->callref = cr;
279         p->state = 0;
280         p->chan = NULL;
281         p->st = st;
282         p->N303 = st->l3.N303;
283         L3InitTimer(p, &p->timer);
284         return (p);
285 };
286
287 void
288 release_l3_process(struct l3_process *p)
289 {
290         struct l3_process *np, *pp = NULL;
291
292         if (!p)
293                 return;
294         np = p->st->l3.proc;
295         while (np) {
296                 if (np == p) {
297                         StopAllL3Timer(p);
298                         if (pp)
299                                 pp->next = np->next;
300                         else if (!(p->st->l3.proc = np->next) &&
301                                 !test_bit(FLG_PTP, &p->st->l2.flag)) {
302                                 if (p->debug)
303                                         l3_debug(p->st, "release_l3_process: last process");
304                                 if (skb_queue_empty(&p->st->l3.squeue)) {
305                                         if (p->debug)
306                                                 l3_debug(p->st, "release_l3_process: release link");
307                                         if (p->st->protocol != ISDN_PTYPE_NI1)
308                                                 FsmEvent(&p->st->l3.l3m, EV_RELEASE_REQ, NULL);
309                                         else
310                                                 FsmEvent(&p->st->l3.l3m, EV_RELEASE_IND, NULL);
311                                 } else {
312                                         if (p->debug)
313                                                 l3_debug(p->st, "release_l3_process: not release link");
314                                 }
315                         } 
316                         kfree(p);
317                         return;
318                 }
319                 pp = np;
320                 np = np->next;
321         }
322         printk(KERN_ERR "HiSax internal L3 error CR(%d) not in list\n", p->callref);
323         l3_debug(p->st, "HiSax internal L3 error CR(%d) not in list", p->callref);
324 };
325
326 static void
327 l3ml3p(struct PStack *st, int pr)
328 {
329         struct l3_process *p = st->l3.proc;
330         struct l3_process *np;
331
332         while (p) {
333                 /* p might be kfreed under us, so we need to save where we want to go on */
334                 np = p->next;
335                 st->l3.l3ml3(st, pr, p);
336                 p = np;
337         }
338 }
339
340 void
341 setstack_l3dc(struct PStack *st, struct Channel *chanp)
342 {
343         char tmp[64];
344
345         st->l3.proc   = NULL;
346         st->l3.global = NULL;
347         skb_queue_head_init(&st->l3.squeue);
348         st->l3.l3m.fsm = &l3fsm;
349         st->l3.l3m.state = ST_L3_LC_REL;
350         st->l3.l3m.debug = 1;
351         st->l3.l3m.userdata = st;
352         st->l3.l3m.userint = 0;
353         st->l3.l3m.printdebug = l3m_debug;
354         FsmInitTimer(&st->l3.l3m, &st->l3.l3m_timer);
355         strcpy(st->l3.debug_id, "L3DC ");
356         st->lli.l4l3_proto = no_l3_proto_spec;
357
358 #ifdef  CONFIG_HISAX_EURO
359         if (st->protocol == ISDN_PTYPE_EURO) {
360                 setstack_dss1(st);
361         } else
362 #endif
363 #ifdef  CONFIG_HISAX_NI1
364         if (st->protocol == ISDN_PTYPE_NI1) {
365                 setstack_ni1(st);
366         } else
367 #endif
368 #ifdef  CONFIG_HISAX_1TR6
369         if (st->protocol == ISDN_PTYPE_1TR6) {
370                 setstack_1tr6(st);
371         } else
372 #endif
373         if (st->protocol == ISDN_PTYPE_LEASED) {
374                 st->lli.l4l3 = no_l3_proto;
375                 st->l2.l2l3 = no_l3_proto;
376                 st->l3.l3ml3 = no_l3_proto;
377                 printk(KERN_INFO "HiSax: Leased line mode\n");
378         } else {
379                 st->lli.l4l3 = no_l3_proto;
380                 st->l2.l2l3 = no_l3_proto;
381                 st->l3.l3ml3 = no_l3_proto;
382                 sprintf(tmp, "protocol %s not supported",
383                         (st->protocol == ISDN_PTYPE_1TR6) ? "1tr6" :
384                         (st->protocol == ISDN_PTYPE_EURO) ? "euro" :
385                         (st->protocol == ISDN_PTYPE_NI1) ? "ni1" :
386                         "unknown");
387                 printk(KERN_WARNING "HiSax: %s\n", tmp);
388                 st->protocol = -1;
389         }
390 }
391
392 static void
393 isdnl3_trans(struct PStack *st, int pr, void *arg) {
394         st->l3.l3l2(st, pr, arg);
395 }
396
397 void
398 releasestack_isdnl3(struct PStack *st)
399 {
400         while (st->l3.proc)
401                 release_l3_process(st->l3.proc);
402         if (st->l3.global) {
403                 StopAllL3Timer(st->l3.global);
404                 kfree(st->l3.global);
405                 st->l3.global = NULL;
406         }
407         FsmDelTimer(&st->l3.l3m_timer, 54);
408         skb_queue_purge(&st->l3.squeue);
409 }
410
411 void
412 setstack_l3bc(struct PStack *st, struct Channel *chanp)
413 {
414
415         st->l3.proc   = NULL;
416         st->l3.global = NULL;
417         skb_queue_head_init(&st->l3.squeue);
418         st->l3.l3m.fsm = &l3fsm;
419         st->l3.l3m.state = ST_L3_LC_REL;
420         st->l3.l3m.debug = 1;
421         st->l3.l3m.userdata = st;
422         st->l3.l3m.userint = 0;
423         st->l3.l3m.printdebug = l3m_debug;
424         strcpy(st->l3.debug_id, "L3BC ");
425         st->lli.l4l3 = isdnl3_trans;
426 }
427
428 #define DREL_TIMER_VALUE 40000
429
430 static void
431 lc_activate(struct FsmInst *fi, int event, void *arg)
432 {
433         struct PStack *st = fi->userdata;
434
435         FsmChangeState(fi, ST_L3_LC_ESTAB_WAIT);
436         st->l3.l3l2(st, DL_ESTABLISH | REQUEST, NULL);
437 }
438
439 static void
440 lc_connect(struct FsmInst *fi, int event, void *arg)
441 {
442         struct PStack *st = fi->userdata;
443         struct sk_buff *skb = arg;
444         int dequeued = 0;
445
446         FsmChangeState(fi, ST_L3_LC_ESTAB);
447         while ((skb = skb_dequeue(&st->l3.squeue))) {
448                 st->l3.l3l2(st, DL_DATA | REQUEST, skb);
449                 dequeued++;
450         }
451         if ((!st->l3.proc) &&  dequeued) {
452                 if (st->l3.debug)
453                         l3_debug(st, "lc_connect: release link");
454                 FsmEvent(&st->l3.l3m, EV_RELEASE_REQ, NULL);
455         } else
456                 l3ml3p(st, DL_ESTABLISH | INDICATION);
457 }
458
459 static void
460 lc_connected(struct FsmInst *fi, int event, void *arg)
461 {
462         struct PStack *st = fi->userdata;
463         struct sk_buff *skb = arg;
464         int dequeued = 0;
465
466         FsmDelTimer(&st->l3.l3m_timer, 51);
467         FsmChangeState(fi, ST_L3_LC_ESTAB);
468         while ((skb = skb_dequeue(&st->l3.squeue))) {
469                 st->l3.l3l2(st, DL_DATA | REQUEST, skb);
470                 dequeued++;
471         }
472         if ((!st->l3.proc) &&  dequeued) {
473                 if (st->l3.debug)
474                         l3_debug(st, "lc_connected: release link");
475                 FsmEvent(&st->l3.l3m, EV_RELEASE_REQ, NULL);
476         } else
477                 l3ml3p(st, DL_ESTABLISH | CONFIRM);
478 }
479
480 static void
481 lc_start_delay(struct FsmInst *fi, int event, void *arg)
482 {
483        struct PStack *st = fi->userdata;
484
485        FsmChangeState(fi, ST_L3_LC_REL_DELAY);
486        FsmAddTimer(&st->l3.l3m_timer, DREL_TIMER_VALUE, EV_TIMEOUT, NULL, 50);
487 }
488
489 static void
490 lc_start_delay_check(struct FsmInst *fi, int event, void *arg)
491 /* 20/09/00 - GE timer not user for NI-1 as layer 2 should stay up */
492 {
493        struct PStack *st = fi->userdata;
494
495        FsmChangeState(fi, ST_L3_LC_REL_DELAY);
496        /* 19/09/00 - GE timer not user for NI-1 */
497        if (st->protocol != ISDN_PTYPE_NI1) 
498                 FsmAddTimer(&st->l3.l3m_timer, DREL_TIMER_VALUE, EV_TIMEOUT, NULL, 50);
499 }
500
501 static void
502 lc_release_req(struct FsmInst *fi, int event, void *arg)
503 {
504         struct PStack *st = fi->userdata;
505
506         if (test_bit(FLG_L2BLOCK, &st->l2.flag)) {
507                 if (st->l3.debug)
508                         l3_debug(st, "lc_release_req: l2 blocked");
509                 /* restart release timer */
510                 FsmAddTimer(&st->l3.l3m_timer, DREL_TIMER_VALUE, EV_TIMEOUT, NULL, 51);
511         } else {
512                 FsmChangeState(fi, ST_L3_LC_REL_WAIT);
513                 st->l3.l3l2(st, DL_RELEASE | REQUEST, NULL);
514         }
515 }
516
517 static void
518 lc_release_ind(struct FsmInst *fi, int event, void *arg)
519 {
520         struct PStack *st = fi->userdata;
521
522         FsmDelTimer(&st->l3.l3m_timer, 52);
523         FsmChangeState(fi, ST_L3_LC_REL);
524         skb_queue_purge(&st->l3.squeue);
525         l3ml3p(st, DL_RELEASE | INDICATION);
526 }
527
528 static void
529 lc_release_cnf(struct FsmInst *fi, int event, void *arg)
530 {
531         struct PStack *st = fi->userdata;
532
533         FsmChangeState(fi, ST_L3_LC_REL);
534         skb_queue_purge(&st->l3.squeue);
535         l3ml3p(st, DL_RELEASE | CONFIRM);
536 }
537
538
539 /* *INDENT-OFF* */
540 static struct FsmNode L3FnList[] __initdata =
541 {
542         {ST_L3_LC_REL,          EV_ESTABLISH_REQ,       lc_activate},
543         {ST_L3_LC_REL,          EV_ESTABLISH_IND,       lc_connect},
544         {ST_L3_LC_REL,          EV_ESTABLISH_CNF,       lc_connect},
545         {ST_L3_LC_ESTAB_WAIT,   EV_ESTABLISH_CNF,       lc_connected},
546         {ST_L3_LC_ESTAB_WAIT,   EV_RELEASE_REQ,         lc_start_delay},
547         {ST_L3_LC_ESTAB_WAIT,   EV_RELEASE_IND,         lc_release_ind},
548         {ST_L3_LC_ESTAB,        EV_RELEASE_IND,         lc_release_ind},
549         {ST_L3_LC_ESTAB,        EV_RELEASE_REQ,         lc_start_delay_check},
550         {ST_L3_LC_REL_DELAY,    EV_RELEASE_IND,         lc_release_ind},
551         {ST_L3_LC_REL_DELAY,    EV_ESTABLISH_REQ,       lc_connected},
552         {ST_L3_LC_REL_DELAY,    EV_TIMEOUT,             lc_release_req},
553         {ST_L3_LC_REL_WAIT,     EV_RELEASE_CNF,         lc_release_cnf},
554         {ST_L3_LC_REL_WAIT,     EV_ESTABLISH_REQ,       lc_activate},
555 };
556 /* *INDENT-ON* */
557
558 #define L3_FN_COUNT (sizeof(L3FnList)/sizeof(struct FsmNode))
559
560 void
561 l3_msg(struct PStack *st, int pr, void *arg)
562 {
563         switch (pr) {
564                 case (DL_DATA | REQUEST):
565                         if (st->l3.l3m.state == ST_L3_LC_ESTAB) {
566                                 st->l3.l3l2(st, pr, arg);
567                         } else {
568                                 struct sk_buff *skb = arg;
569
570                                 skb_queue_tail(&st->l3.squeue, skb);
571                                 FsmEvent(&st->l3.l3m, EV_ESTABLISH_REQ, NULL); 
572                         }
573                         break;
574                 case (DL_ESTABLISH | REQUEST):
575                         FsmEvent(&st->l3.l3m, EV_ESTABLISH_REQ, NULL);
576                         break;
577                 case (DL_ESTABLISH | CONFIRM):
578                         FsmEvent(&st->l3.l3m, EV_ESTABLISH_CNF, NULL);
579                         break;
580                 case (DL_ESTABLISH | INDICATION):
581                         FsmEvent(&st->l3.l3m, EV_ESTABLISH_IND, NULL);
582                         break;
583                 case (DL_RELEASE | INDICATION):
584                         FsmEvent(&st->l3.l3m, EV_RELEASE_IND, NULL);
585                         break;
586                 case (DL_RELEASE | CONFIRM):
587                         FsmEvent(&st->l3.l3m, EV_RELEASE_CNF, NULL);
588                         break;
589                 case (DL_RELEASE | REQUEST):
590                         FsmEvent(&st->l3.l3m, EV_RELEASE_REQ, NULL);
591                         break;
592         }
593 }
594
595 int __init
596 Isdnl3New(void)
597 {
598         l3fsm.state_count = L3_STATE_COUNT;
599         l3fsm.event_count = L3_EVENT_COUNT;
600         l3fsm.strEvent = strL3Event;
601         l3fsm.strState = strL3State;
602         return FsmNew(&l3fsm, L3FnList, L3_FN_COUNT);
603 }
604
605 void
606 Isdnl3Free(void)
607 {
608         FsmFree(&l3fsm);
609 }