firewire.c revision 1.19 1 /* $NetBSD: firewire.c,v 1.19 2007/12/15 00:39:28 perry Exp $ */
2 /*-
3 * Copyright (c) 2003 Hidetoshi Shimokawa
4 * Copyright (c) 1998-2002 Katsushi Kobayashi and Hidetoshi Shimokawa
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. All advertising materials mentioning features or use of this software
16 * must display the acknowledgement as bellow:
17 *
18 * This product includes software developed by K. Kobayashi and H. Shimokawa
19 *
20 * 4. The name of the author may not be used to endorse or promote products
21 * derived from this software without specific prior written permission.
22 *
23 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
24 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
25 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
26 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
27 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
28 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
29 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
30 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
31 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
32 * ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
33 * POSSIBILITY OF SUCH DAMAGE.
34 *
35 * $FreeBSD: src/sys/dev/firewire/firewire.c,v 1.101 2007/10/20 23:23:14 julian Exp $
36 *
37 */
38
39 #include <sys/cdefs.h>
40 __KERNEL_RCSID(0, "$NetBSD: firewire.c,v 1.19 2007/12/15 00:39:28 perry Exp $");
41
42 #if defined(__FreeBSD__)
43 #include <sys/param.h>
44 #include <sys/systm.h>
45 #include <sys/types.h>
46
47 #include <sys/kernel.h>
48 #include <sys/module.h>
49 #include <sys/malloc.h>
50 #include <sys/conf.h>
51 #include <sys/sysctl.h>
52 #include <sys/kthread.h>
53
54 #include <sys/kdb.h>
55
56 #if defined(__DragonFly__) || __FreeBSD_version < 500000
57 #include <machine/clock.h> /* for DELAY() */
58 #endif
59
60 #include <sys/bus.h> /* used by smbus and newbus */
61 #include <sys/bus.h>
62
63 #ifdef __DragonFly__
64 #include "fw_port.h"
65 #include "firewire.h"
66 #include "firewirereg.h"
67 #include "fwmem.h"
68 #include "iec13213.h"
69 #include "iec68113.h"
70 #else
71 #include <dev/firewire/fw_port.h>
72 #include <dev/firewire/firewire.h>
73 #include <dev/firewire/firewirereg.h>
74 #include <dev/firewire/fwmem.h>
75 #include <dev/firewire/iec13213.h>
76 #include <dev/firewire/iec68113.h>
77 #endif
78 #elif defined(__NetBSD__)
79 #include <sys/param.h>
80 #include <sys/device.h>
81 #include <sys/errno.h>
82 #include <sys/conf.h>
83 #include <sys/kernel.h>
84 #include <sys/kthread.h>
85 #include <sys/malloc.h>
86 #include <sys/queue.h>
87 #include <sys/sysctl.h>
88 #include <sys/systm.h>
89
90 #include <sys/bus.h>
91
92 #include <dev/ieee1394/fw_port.h>
93 #include <dev/ieee1394/firewire.h>
94 #include <dev/ieee1394/firewirereg.h>
95 #include <dev/ieee1394/fwmem.h>
96 #include <dev/ieee1394/iec13213.h>
97 #include <dev/ieee1394/iec68113.h>
98
99 #include "locators.h"
100 #endif
101
102 struct crom_src_buf {
103 struct crom_src src;
104 struct crom_chunk root;
105 struct crom_chunk vendor;
106 struct crom_chunk hw;
107 };
108
109 int firewire_debug=0, try_bmr=1, hold_count=3;
110 #if defined(__FreeBSD__)
111 SYSCTL_INT(_debug, OID_AUTO, firewire_debug, CTLFLAG_RW, &firewire_debug, 0,
112 "FireWire driver debug flag");
113 SYSCTL_NODE(_hw, OID_AUTO, firewire, CTLFLAG_RD, 0, "FireWire Subsystem");
114 SYSCTL_INT(_hw_firewire, OID_AUTO, try_bmr, CTLFLAG_RW, &try_bmr, 0,
115 "Try to be a bus manager");
116 SYSCTL_INT(_hw_firewire, OID_AUTO, hold_count, CTLFLAG_RW, &hold_count, 0,
117 "Number of count of bus resets for removing lost device information");
118
119 MALLOC_DEFINE(M_FW, "firewire", "FireWire");
120 MALLOC_DEFINE(M_FWXFER, "fw_xfer", "XFER/FireWire");
121 #elif defined(__NetBSD__)
122 /*
123 * Setup sysctl(3) MIB, hw.ieee1394if.*
124 *
125 * TBD condition CTLFLAG_PERMANENT on being an LKM or not
126 */
127 SYSCTL_SETUP(sysctl_ieee1394if, "sysctl ieee1394if(4) subtree setup")
128 {
129 int rc, ieee1394if_node_num;
130 const struct sysctlnode *node;
131
132 if ((rc = sysctl_createv(clog, 0, NULL, NULL,
133 CTLFLAG_PERMANENT, CTLTYPE_NODE, "hw", NULL,
134 NULL, 0, NULL, 0, CTL_HW, CTL_EOL)) != 0) {
135 goto err;
136 }
137
138 if ((rc = sysctl_createv(clog, 0, NULL, &node,
139 CTLFLAG_PERMANENT, CTLTYPE_NODE, "ieee1394if",
140 SYSCTL_DESCR("ieee1394if controls"),
141 NULL, 0, NULL, 0, CTL_HW, CTL_CREATE, CTL_EOL)) != 0) {
142 goto err;
143 }
144 ieee1394if_node_num = node->sysctl_num;
145
146 /* ieee1394if try bus manager flag */
147 if ((rc = sysctl_createv(clog, 0, NULL, &node,
148 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
149 "try_bmr", SYSCTL_DESCR("Try to be a bus manager"),
150 NULL, 0, &try_bmr,
151 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
152 goto err;
153 }
154
155 /* ieee1394if hold count */
156 if ((rc = sysctl_createv(clog, 0, NULL, &node,
157 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
158 "hold_count", SYSCTL_DESCR("Number of count of "
159 "bus resets for removing lost device information"),
160 NULL, 0, &hold_count,
161 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
162 goto err;
163 }
164
165 /* ieee1394if driver debug flag */
166 if ((rc = sysctl_createv(clog, 0, NULL, &node,
167 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
168 "ieee1394_debug", SYSCTL_DESCR("ieee1394if driver debug flag"),
169 NULL, 0, &firewire_debug,
170 0, CTL_HW, ieee1394if_node_num, CTL_CREATE, CTL_EOL)) != 0) {
171 goto err;
172 }
173
174 return;
175
176 err:
177 printf("%s: sysctl_createv failed (rc = %d)\n", __func__, rc);
178 }
179
180 MALLOC_DEFINE(M_FW, "ieee1394", "IEEE1394");
181 MALLOC_DEFINE(M_FWXFER, "fw_xfer", "XFER/IEEE1394");
182 #endif
183
184 #define FW_MAXASYRTY 4
185
186 #if defined(__FreeBSD__)
187 devclass_t firewire_devclass;
188
189 static void firewire_identify (driver_t *, device_t);
190 static int firewire_probe (device_t);
191 static int firewire_attach (device_t);
192 static int firewire_detach (device_t);
193 static int firewire_resume (device_t);
194 #if 0
195 static int firewire_shutdown (device_t);
196 #endif
197 static device_t firewire_add_child (device_t, int, const char *, int);
198 #elif defined(__NetBSD__)
199 int firewirematch (struct device *, struct cfdata *, void *);
200 void firewireattach (struct device *, struct device *, void *);
201 int firewiredetach (struct device *, int);
202 int firewire_print (void *, const char *);
203 int firewire_resume(struct firewire_comm *);
204 #endif
205 static void firewire_xfer_timeout(void *, int);
206 static void fw_try_bmr (void *);
207 static void fw_try_bmr_callback (struct fw_xfer *);
208 static void fw_asystart (struct fw_xfer *);
209 static int fw_get_tlabel (struct firewire_comm *, struct fw_xfer *);
210 static void fw_bus_probe (struct firewire_comm *);
211 static void fw_attach_dev (struct firewire_comm *);
212 static void fw_bus_probe_thread(void *);
213 #ifdef FW_VMACCESS
214 static void fw_vmaccess (struct fw_xfer *);
215 #endif
216 static int fw_bmr (struct firewire_comm *);
217 static void fw_dump_hdr(struct fw_pkt *, const char *);
218
219 #if defined(__FreeBSD__)
220 static device_method_t firewire_methods[] = {
221 /* Device interface */
222 DEVMETHOD(device_identify, firewire_identify),
223 DEVMETHOD(device_probe, firewire_probe),
224 DEVMETHOD(device_attach, firewire_attach),
225 DEVMETHOD(device_detach, firewire_detach),
226 DEVMETHOD(device_suspend, bus_generic_suspend),
227 DEVMETHOD(device_resume, firewire_resume),
228 DEVMETHOD(device_shutdown, bus_generic_shutdown),
229
230 /* Bus interface */
231 DEVMETHOD(bus_add_child, firewire_add_child),
232 DEVMETHOD(bus_print_child, bus_generic_print_child),
233
234 { 0, 0 }
235 };
236 #elif defined(__NetBSD__)
237 CFATTACH_DECL(ieee1394if, sizeof (struct firewire_softc),
238 firewirematch, firewireattach, firewiredetach, NULL);
239 #endif
240 const char *fw_linkspeed[] = {
241 "S100", "S200", "S400", "S800",
242 "S1600", "S3200", "undef", "undef"
243 };
244
245 static const char *tcode_str[] = {
246 "WREQQ", "WREQB", "WRES", "undef",
247 "RREQQ", "RREQB", "RRESQ", "RRESB",
248 "CYCS", "LREQ", "STREAM", "LRES",
249 "undef", "undef", "PHY", "undef"
250 };
251
252 /* IEEE-1394a Table C-2 Gap count as a function of hops*/
253 #define MAX_GAPHOP 15
254 u_int gap_cnt[] = { 5, 5, 7, 8, 10, 13, 16, 18,
255 21, 24, 26, 29, 32, 35, 37, 40};
256
257 #if defined(__FreeBSD__)
258 static driver_t firewire_driver = {
259 "firewire",
260 firewire_methods,
261 sizeof(struct firewire_softc),
262 };
263 #endif
264
265 /*
266 * Lookup fwdev by node id.
267 */
268 struct fw_device *
269 fw_noderesolve_nodeid(struct firewire_comm *fc, int dst)
270 {
271 struct fw_device *fwdev;
272 int s;
273
274 s = splfw();
275 FW_GLOCK(fc);
276 STAILQ_FOREACH(fwdev, &fc->devices, link)
277 if (fwdev->dst == dst && fwdev->status != FWDEVINVAL)
278 break;
279 FW_GUNLOCK(fc);
280 splx(s);
281
282 return fwdev;
283 }
284
285 /*
286 * Lookup fwdev by EUI64.
287 */
288 struct fw_device *
289 fw_noderesolve_eui64(struct firewire_comm *fc, struct fw_eui64 *eui)
290 {
291 struct fw_device *fwdev;
292 int s;
293
294 s = splfw();
295 STAILQ_FOREACH(fwdev, &fc->devices, link)
296 if (FW_EUI64_EQUAL(fwdev->eui, *eui))
297 break;
298 splx(s);
299
300 if(fwdev == NULL) return NULL;
301 if(fwdev->status == FWDEVINVAL) return NULL;
302 return fwdev;
303 }
304
305 /*
306 * Async. request procedure for userland application.
307 */
308 int
309 fw_asyreq(struct firewire_comm *fc, int sub, struct fw_xfer *xfer)
310 {
311 int err = 0;
312 struct fw_xferq *xferq;
313 int len;
314 struct fw_pkt *fp;
315 int tcode;
316 const struct tcode_info *info;
317
318 if(xfer == NULL) return EINVAL;
319 if(xfer->hand == NULL){
320 printf("hand == NULL\n");
321 return EINVAL;
322 }
323 fp = &xfer->send.hdr;
324
325 tcode = fp->mode.common.tcode & 0xf;
326 info = &fc->tcode[tcode];
327 if (info->flag == 0) {
328 printf("invalid tcode=%x\n", tcode);
329 return EINVAL;
330 }
331
332 /* XXX allow bus explore packets only after bus rest */
333 if ((fc->status < FWBUSEXPLORE) &&
334 ((tcode != FWTCODE_RREQQ) || (fp->mode.rreqq.dest_hi != 0xffff) ||
335 (fp->mode.rreqq.dest_lo < 0xf0000000) ||
336 (fp->mode.rreqq.dest_lo >= 0xf0001000))) {
337 xfer->resp = EAGAIN;
338 xfer->flag = FWXF_BUSY;
339 return (EAGAIN);
340 }
341
342 if (info->flag & FWTI_REQ)
343 xferq = fc->atq;
344 else
345 xferq = fc->ats;
346 len = info->hdr_len;
347 if (xfer->send.pay_len > MAXREC(fc->maxrec)) {
348 printf("send.pay_len > maxrec\n");
349 return EINVAL;
350 }
351 if (info->flag & FWTI_BLOCK_STR)
352 len = fp->mode.stream.len;
353 else if (info->flag & FWTI_BLOCK_ASY)
354 len = fp->mode.rresb.len;
355 else
356 len = 0;
357 if (len != xfer->send.pay_len){
358 printf("len(%d) != send.pay_len(%d) %s(%x)\n",
359 len, xfer->send.pay_len, tcode_str[tcode], tcode);
360 return EINVAL;
361 }
362
363 if(xferq->start == NULL){
364 printf("xferq->start == NULL\n");
365 return EINVAL;
366 }
367 if(!(xferq->queued < xferq->maxq)){
368 fw_printf(fc->bdev, "Discard a packet (queued=%d)\n",
369 xferq->queued);
370 return EAGAIN;
371 }
372
373 xfer->tl = -1;
374 if (info->flag & FWTI_TLABEL) {
375 if (fw_get_tlabel(fc, xfer) < 0)
376 return EAGAIN;
377 }
378
379 xfer->resp = 0;
380 xfer->fc = fc;
381 xfer->q = xferq;
382
383 fw_asystart(xfer);
384 return err;
385 }
386 /*
387 * Wakeup blocked process.
388 */
389 void
390 fw_xferwake(struct fw_xfer *xfer)
391 {
392 fw_mtx_t lock = &xfer->fc->wait_lock;
393
394 fw_mtx_lock(lock);
395 xfer->flag |= FWXF_WAKE;
396 fw_mtx_unlock(lock);
397
398 wakeup(xfer);
399 return;
400 }
401
402 int
403 fw_xferwait(struct fw_xfer *xfer)
404 {
405 fw_mtx_t lock = &xfer->fc->wait_lock;
406 int err = 0;
407
408 fw_mtx_lock(lock);
409 if ((xfer->flag & FWXF_WAKE) == 0)
410 err = fw_msleep((void *)xfer, lock, PWAIT|PCATCH, "fw_xferwait", 0);
411 fw_mtx_unlock(lock);
412
413 return (err);
414 }
415
416 /*
417 * Async. request with given xfer structure.
418 */
419 static void
420 fw_asystart(struct fw_xfer *xfer)
421 {
422 struct firewire_comm *fc = xfer->fc;
423 int s;
424 s = splfw();
425 /* Protect from interrupt/timeout */
426 FW_GLOCK(fc);
427 xfer->flag = FWXF_INQ;
428 STAILQ_INSERT_TAIL(&xfer->q->q, xfer, link);
429 #if 0
430 xfer->q->queued ++;
431 #endif
432 FW_GUNLOCK(fc);
433 splx(s);
434 /* XXX just queue for mbuf */
435 if (xfer->mbuf == NULL)
436 xfer->q->start(fc);
437 return;
438 }
439
440 #if defined(__FreeBSD__)
441 static void
442 firewire_identify(driver_t *driver, device_t parent)
443 {
444 BUS_ADD_CHILD(parent, 0, "firewire", -1);
445 }
446
447 static int
448 firewire_probe(device_t dev)
449 {
450 device_set_desc(dev, "IEEE1394(FireWire) bus");
451 return (0);
452 }
453 #elif defined(__NetBSD__)
454 int
455 firewirematch(struct device *parent, struct cfdata *cf,
456 void *aux)
457 {
458 struct fwbus_attach_args *faa = (struct fwbus_attach_args *)aux;
459
460 if (strcmp(faa->name, "ieee1394if") == 0)
461 return (1);
462 return (0);
463 }
464 #endif
465
466 static void
467 firewire_xfer_timeout(void *arg, int pending)
468 {
469 struct firewire_comm *fc = (struct firewire_comm *)arg;
470 struct fw_xfer *xfer, *txfer;
471 struct timeval tv;
472 struct timeval split_timeout;
473 STAILQ_HEAD(, fw_xfer) xfer_timeout;
474 int i, s;
475
476 split_timeout.tv_sec = 0;
477 split_timeout.tv_usec = 200 * 1000; /* 200 msec */
478
479 microtime(&tv);
480 fw_timevalsub(&tv, &split_timeout);
481 STAILQ_INIT(&xfer_timeout);
482
483 s = splfw();
484 fw_mtx_lock(&fc->tlabel_lock);
485 for (i = 0; i < 0x40; i ++) {
486 while ((xfer = STAILQ_FIRST(&fc->tlabels[i])) != NULL) {
487 if ((xfer->flag & FWXF_SENT) == 0)
488 /* not sent yet */
489 break;
490 if (fw_timevalcmp(&xfer->tv, &tv, >))
491 /* the rests are newer than this */
492 break;
493 fw_printf(fc->bdev,
494 "split transaction timeout: "
495 "tl=0x%x flag=0x%02x\n", i, xfer->flag);
496 fw_dump_hdr(&xfer->send.hdr, "send");
497 xfer->resp = ETIMEDOUT;
498 STAILQ_REMOVE_HEAD(&fc->tlabels[i], tlabel);
499 STAILQ_INSERT_TAIL(&xfer_timeout, xfer, tlabel);
500 }
501 }
502 fw_mtx_unlock(&fc->tlabel_lock);
503 splx(s);
504 fc->timeout(fc);
505
506 STAILQ_FOREACH_SAFE(xfer, &xfer_timeout, tlabel, txfer)
507 xfer->hand(xfer);
508 }
509
510 #define WATCHDOG_HZ 10
511 static void
512 firewire_watchdog(void *arg)
513 {
514 struct firewire_comm *fc;
515 static int watchdog_clock = 0;
516
517 fc = (struct firewire_comm *)arg;
518
519 /*
520 * At boot stage, the device interrupt is disabled and
521 * We encounter a timeout easily. To avoid this,
522 * ignore clock interrupt for a while.
523 */
524 if (watchdog_clock > WATCHDOG_HZ * 15)
525 fw_taskqueue_enqueue(fc->taskqueue, &fc->task_timeout);
526 else
527 watchdog_clock ++;
528
529 fw_callout_reset(&fc->timeout_callout, hz / WATCHDOG_HZ,
530 (void *)firewire_watchdog, (void *)fc);
531 }
532
533 /*
534 * The attach routine.
535 */
536 FW_ATTACH(firewire)
537 {
538 FW_ATTACH_START(firewire, sc, fwa);
539 FIREWIRE_ATTACH_START;
540
541 sc->fc = fc;
542 fc->status = FWBUSNOTREADY;
543
544 if( fc->nisodma > FWMAXNDMA) fc->nisodma = FWMAXNDMA;
545
546 FWDEV_MAKEDEV(sc);
547
548 fw_mtx_init(&fc->wait_lock, "fwwait", NULL, MTX_DEF);
549 fw_mtx_init(&fc->tlabel_lock, "fwtlabel", NULL, MTX_DEF);
550 fw_callout_init(&fc->timeout_callout);
551 fw_callout_init(&fc->bmr_callout);
552 fw_callout_init(&fc->busprobe_callout);
553 FW_TASK_INIT(&fc->task_timeout, 0, firewire_xfer_timeout, (void *)fc);
554
555 fw_callout_reset(&sc->fc->timeout_callout, hz,
556 (void *)firewire_watchdog, (void *)sc->fc);
557
558 /* create thread */
559 fw_kthread_create(fw_bus_probe_thread, (void *)fc, &fc->probe_thread,
560 "fw%d_probe", fw_get_unit(fc->bdev));
561 fw_config_pending_incr();
562
563 FIREWIRE_GENERIC_ATTACH;
564
565 /* bus_reset */
566 fw_busreset(fc, FWBUSNOTREADY);
567 fc->ibr(fc);
568
569 #ifdef __NetBSD__
570 if (!pmf_device_register(self, NULL, NULL))
571 aprint_error_dev(self, "couldn't establish power handler\n");
572 #endif
573
574 FW_ATTACH_RETURN(0);
575 }
576
577 #if defined(__FreeBSD__)
578 /*
579 * Attach it as child.
580 */
581 static device_t
582 firewire_add_child(device_t dev, int order, const char *name, int unit)
583 {
584 device_t child;
585 struct firewire_softc *sc;
586 struct fw_attach_args fwa;
587
588 sc = (struct firewire_softc *)device_get_softc(dev);
589 child = device_add_child(dev, name, unit);
590 if (child) {
591 fwa.name = name;
592 fwa.fc = sc->fc;
593 fwa.fwdev = NULL;
594 device_set_ivars(child, &fwa);
595 device_probe_and_attach(child);
596 }
597
598 return child;
599 }
600
601 static int
602 firewire_resume(device_t dev)
603 {
604 struct firewire_softc *sc;
605
606 sc = (struct firewire_softc *)device_get_softc(dev);
607 sc->fc->status = FWBUSNOTREADY;
608
609 bus_generic_resume(dev);
610
611 return(0);
612 }
613 #endif
614
615 /*
616 * Dettach it.
617 */
618 FW_DETACH(firewire)
619 {
620 FW_DETACH_START(firewire, sc);
621 struct firewire_comm *fc;
622 struct fw_device *fwdev, *fwdev_next;
623
624 fc = sc->fc;
625 fw_mtx_lock(&fc->wait_lock);
626 fc->status = FWBUSDETACH;
627 wakeup(fc);
628 if (fw_msleep(fc->probe_thread,
629 &fc->wait_lock, PWAIT, "fwthr", hz * 60))
630 printf("firewire probe thread didn't die\n");
631 fw_mtx_unlock(&fc->wait_lock);
632
633 FWDEV_DESTROYDEV(sc);
634 FIREWIRE_GENERIC_DETACH;
635
636 fw_callout_stop(&fc->timeout_callout);
637 fw_callout_stop(&fc->bmr_callout);
638 fw_callout_stop(&fc->busprobe_callout);
639
640 /* XXX xfree_free and untimeout on all xfers */
641 for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL;
642 fwdev = fwdev_next) {
643 fwdev_next = STAILQ_NEXT(fwdev, link);
644 free(fwdev, M_FW);
645 }
646 free(fc->topology_map, M_FW);
647 free(fc->speed_map, M_FW);
648 free(fc->crom_src_buf, M_FW);
649
650 fw_mtx_destroy(&fc->wait_lock);
651 fw_mtx_destroy(&fc->tlabel_lock);
652 return(0);
653 }
654 #if defined(__FreeBSD__)
655 #if 0
656 static int
657 firewire_shutdown( device_t dev )
658 {
659 return 0;
660 }
661 #endif
662 #elif defined(__NetBSD__)
663 int
664 firewire_print(void *aux, const char *pnp)
665 {
666 struct fw_attach_args *fwa = (struct fw_attach_args *)aux;
667
668 if (pnp)
669 aprint_normal("%s at %s", fwa->name, pnp);
670
671 return UNCONF;
672 }
673
674 int
675 firewire_resume(struct firewire_comm *fc)
676 {
677
678 fc->status = FWBUSNOTREADY;
679 return 0;
680 }
681 #endif
682
683 static void
684 fw_xferq_drain(struct fw_xferq *xferq)
685 {
686 struct fw_xfer *xfer;
687
688 while ((xfer = STAILQ_FIRST(&xferq->q)) != NULL) {
689 STAILQ_REMOVE_HEAD(&xferq->q, link);
690 #if 0
691 xferq->queued --;
692 #endif
693 xfer->resp = EAGAIN;
694 xfer->flag = FWXF_SENTERR;
695 fw_xfer_done(xfer);
696 }
697 }
698
699 void
700 fw_drain_txq(struct firewire_comm *fc)
701 {
702 struct fw_xfer *xfer, *txfer;
703 STAILQ_HEAD(, fw_xfer) xfer_drain;
704 int i;
705
706 STAILQ_INIT(&xfer_drain);
707
708 FW_GLOCK(fc);
709 fw_xferq_drain(fc->atq);
710 fw_xferq_drain(fc->ats);
711 for(i = 0; i < fc->nisodma; i++)
712 fw_xferq_drain(fc->it[i]);
713 FW_GUNLOCK(fc);
714
715 fw_mtx_lock(&fc->tlabel_lock);
716 for (i = 0; i < 0x40; i ++)
717 while ((xfer = STAILQ_FIRST(&fc->tlabels[i])) != NULL) {
718 if (firewire_debug)
719 printf("tl=%d flag=%d\n", i, xfer->flag);
720 xfer->resp = EAGAIN;
721 STAILQ_REMOVE_HEAD(&fc->tlabels[i], tlabel);
722 STAILQ_INSERT_TAIL(&xfer_drain, xfer, tlabel);
723 }
724 fw_mtx_unlock(&fc->tlabel_lock);
725
726 STAILQ_FOREACH_SAFE(xfer, &xfer_drain, tlabel, txfer)
727 xfer->hand(xfer);
728 }
729
730 static void
731 fw_reset_csr(struct firewire_comm *fc)
732 {
733 int i;
734
735 CSRARC(fc, STATE_CLEAR)
736 = 1 << 23 | 0 << 17 | 1 << 16 | 1 << 15 | 1 << 14 ;
737 CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
738 CSRARC(fc, NODE_IDS) = 0x3f;
739
740 CSRARC(fc, TOPO_MAP + 8) = 0;
741 fc->irm = -1;
742
743 fc->max_node = -1;
744
745 for(i = 2; i < 0x100/4 - 2 ; i++){
746 CSRARC(fc, SPED_MAP + i * 4) = 0;
747 }
748 CSRARC(fc, STATE_CLEAR) = 1 << 23 | 0 << 17 | 1 << 16 | 1 << 15 | 1 << 14 ;
749 CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
750 CSRARC(fc, RESET_START) = 0;
751 CSRARC(fc, SPLIT_TIMEOUT_HI) = 0;
752 CSRARC(fc, SPLIT_TIMEOUT_LO) = 800 << 19;
753 CSRARC(fc, CYCLE_TIME) = 0x0;
754 CSRARC(fc, BUS_TIME) = 0x0;
755 CSRARC(fc, BUS_MGR_ID) = 0x3f;
756 CSRARC(fc, BANDWIDTH_AV) = 4915;
757 CSRARC(fc, CHANNELS_AV_HI) = 0xffffffff;
758 CSRARC(fc, CHANNELS_AV_LO) = 0xffffffff;
759 CSRARC(fc, IP_CHANNELS) = (1 << 31);
760
761 CSRARC(fc, CONF_ROM) = 0x04 << 24;
762 CSRARC(fc, CONF_ROM + 4) = 0x31333934; /* means strings 1394 */
763 CSRARC(fc, CONF_ROM + 8) = 1 << 31 | 1 << 30 | 1 << 29 |
764 1 << 28 | 0xff << 16 | 0x09 << 8;
765 CSRARC(fc, CONF_ROM + 0xc) = 0;
766
767 /* DV depend CSRs see blue book */
768 CSRARC(fc, oPCR) &= ~DV_BROADCAST_ON;
769 CSRARC(fc, iPCR) &= ~DV_BROADCAST_ON;
770
771 CSRARC(fc, STATE_CLEAR) &= ~(1 << 23 | 1 << 15 | 1 << 14 );
772 CSRARC(fc, STATE_SET) = CSRARC(fc, STATE_CLEAR);
773 }
774
775 static void
776 fw_init_crom(struct firewire_comm *fc)
777 {
778 struct crom_src *src;
779
780 fc->crom_src_buf = (struct crom_src_buf *)
781 malloc(sizeof(struct crom_src_buf), M_FW, M_WAITOK | M_ZERO);
782 if (fc->crom_src_buf == NULL)
783 return;
784
785 src = &fc->crom_src_buf->src;
786 bzero(src, sizeof(struct crom_src));
787
788 /* BUS info sample */
789 src->hdr.info_len = 4;
790
791 src->businfo.bus_name = CSR_BUS_NAME_IEEE1394;
792
793 src->businfo.irmc = 1;
794 src->businfo.cmc = 1;
795 src->businfo.isc = 1;
796 src->businfo.bmc = 1;
797 src->businfo.pmc = 0;
798 src->businfo.cyc_clk_acc = 100;
799 src->businfo.max_rec = fc->maxrec;
800 src->businfo.max_rom = MAXROM_4;
801 src->businfo.generation = 1;
802 src->businfo.link_spd = fc->speed;
803
804 src->businfo.eui64.hi = fc->eui.hi;
805 src->businfo.eui64.lo = fc->eui.lo;
806
807 STAILQ_INIT(&src->chunk_list);
808
809 fc->crom_src = src;
810 fc->crom_root = &fc->crom_src_buf->root;
811 }
812
813 static void
814 fw_reset_crom(struct firewire_comm *fc)
815 {
816 struct crom_src_buf *buf;
817 struct crom_src *src;
818 struct crom_chunk *root;
819
820 if (fc->crom_src_buf == NULL)
821 fw_init_crom(fc);
822
823 buf = fc->crom_src_buf;
824 src = fc->crom_src;
825 root = fc->crom_root;
826
827 STAILQ_INIT(&src->chunk_list);
828
829 bzero(root, sizeof(struct crom_chunk));
830 crom_add_chunk(src, NULL, root, 0);
831 crom_add_entry(root, CSRKEY_NCAP, 0x0083c0); /* XXX */
832 /* private company_id */
833 crom_add_entry(root, CSRKEY_VENDOR, CSRVAL_VENDOR_PRIVATE);
834 crom_add_simple_text(src, root, &buf->vendor, PROJECT_STR);
835 crom_add_entry(root, CSRKEY_HW, OS_VER);
836 crom_add_simple_text(src, root, &buf->hw, hostname);
837 }
838
839 /*
840 * Called after bus reset.
841 */
842 void
843 fw_busreset(struct firewire_comm *fc, uint32_t new_status)
844 {
845 struct firewire_dev_comm *fdc;
846 struct crom_src *src;
847 void *newrom;
848
849 switch(fc->status){
850 case FWBUSMGRELECT:
851 fw_callout_stop(&fc->bmr_callout);
852 break;
853 default:
854 break;
855 }
856 fc->status = new_status;
857 fw_reset_csr(fc);
858 fw_reset_crom(fc);
859
860 FIREWIRE_CHILDREN_FOREACH_FUNC(post_busreset, fdc);
861
862 newrom = malloc(CROMSIZE, M_FW, M_NOWAIT | M_ZERO);
863 src = &fc->crom_src_buf->src;
864 crom_load(src, (uint32_t *)newrom, CROMSIZE);
865 if (bcmp(newrom, fc->config_rom, CROMSIZE) != 0) {
866 /* bump generation and reload */
867 src->businfo.generation ++;
868 /* generation must be between 0x2 and 0xF */
869 if (src->businfo.generation < 2)
870 src->businfo.generation ++;
871 crom_load(src, (uint32_t *)newrom, CROMSIZE);
872 bcopy(newrom, (void *)fc->config_rom, CROMSIZE);
873 }
874 free(newrom, M_FW);
875 }
876
877 /* Call once after reboot */
878 void fw_init(struct firewire_comm *fc)
879 {
880 int i;
881 #ifdef FW_VMACCESS
882 struct fw_xfer *xfer;
883 struct fw_bind *fwb;
884 #endif
885
886 fc->arq->queued = 0;
887 fc->ars->queued = 0;
888 fc->atq->queued = 0;
889 fc->ats->queued = 0;
890
891 fc->arq->buf = NULL;
892 fc->ars->buf = NULL;
893 fc->atq->buf = NULL;
894 fc->ats->buf = NULL;
895
896 fc->arq->flag = 0;
897 fc->ars->flag = 0;
898 fc->atq->flag = 0;
899 fc->ats->flag = 0;
900
901 STAILQ_INIT(&fc->atq->q);
902 STAILQ_INIT(&fc->ats->q);
903
904 for( i = 0 ; i < fc->nisodma ; i ++ ){
905 fc->it[i]->queued = 0;
906 fc->ir[i]->queued = 0;
907
908 fc->it[i]->start = NULL;
909 fc->ir[i]->start = NULL;
910
911 fc->it[i]->buf = NULL;
912 fc->ir[i]->buf = NULL;
913
914 fc->it[i]->flag = FWXFERQ_STREAM;
915 fc->ir[i]->flag = FWXFERQ_STREAM;
916
917 STAILQ_INIT(&fc->it[i]->q);
918 STAILQ_INIT(&fc->ir[i]->q);
919 }
920
921 fc->arq->maxq = FWMAXQUEUE;
922 fc->ars->maxq = FWMAXQUEUE;
923 fc->atq->maxq = FWMAXQUEUE;
924 fc->ats->maxq = FWMAXQUEUE;
925
926 for( i = 0 ; i < fc->nisodma ; i++){
927 fc->ir[i]->maxq = FWMAXQUEUE;
928 fc->it[i]->maxq = FWMAXQUEUE;
929 }
930 /* Initialize csr registers */
931 fc->topology_map = (struct fw_topology_map *)malloc(
932 sizeof(struct fw_topology_map),
933 M_FW, M_NOWAIT | M_ZERO);
934 fc->speed_map = (struct fw_speed_map *)malloc(
935 sizeof(struct fw_speed_map),
936 M_FW, M_NOWAIT | M_ZERO);
937 CSRARC(fc, TOPO_MAP) = 0x3f1 << 16;
938 CSRARC(fc, TOPO_MAP + 4) = 1;
939 CSRARC(fc, SPED_MAP) = 0x3f1 << 16;
940 CSRARC(fc, SPED_MAP + 4) = 1;
941
942 STAILQ_INIT(&fc->devices);
943
944 /* Initialize Async handlers */
945 STAILQ_INIT(&fc->binds);
946 for( i = 0 ; i < 0x40 ; i++){
947 STAILQ_INIT(&fc->tlabels[i]);
948 }
949
950 /* DV depend CSRs see blue book */
951 #if 0
952 CSRARC(fc, oMPR) = 0x3fff0001; /* # output channel = 1 */
953 CSRARC(fc, oPCR) = 0x8000007a;
954 for(i = 4 ; i < 0x7c/4 ; i+=4){
955 CSRARC(fc, i + oPCR) = 0x8000007a;
956 }
957
958 CSRARC(fc, iMPR) = 0x00ff0001; /* # input channel = 1 */
959 CSRARC(fc, iPCR) = 0x803f0000;
960 for(i = 4 ; i < 0x7c/4 ; i+=4){
961 CSRARC(fc, i + iPCR) = 0x0;
962 }
963 #endif
964
965 fc->crom_src_buf = NULL;
966
967 #ifdef FW_VMACCESS
968 xfer = fw_xfer_alloc();
969 if(xfer == NULL) return;
970
971 fwb = (struct fw_bind *)malloc(sizeof (struct fw_bind), M_FW, M_NOWAIT);
972 if(fwb == NULL){
973 fw_xfer_free(xfer);
974 return;
975 }
976 xfer->hand = fw_vmaccess;
977 xfer->fc = fc;
978 xfer->sc = NULL;
979
980 fwb->start_hi = 0x2;
981 fwb->start_lo = 0;
982 fwb->addrlen = 0xffffffff;
983 fwb->xfer = xfer;
984 fw_bindadd(fc, fwb);
985 #endif
986 }
987
988 #define BIND_CMP(addr, fwb) (((addr) < (fwb)->start)?-1:\
989 ((fwb)->end < (addr))?1:0)
990
991 /*
992 * To lookup bound process from IEEE1394 address.
993 */
994 struct fw_bind *
995 fw_bindlookup(struct firewire_comm *fc, uint16_t dest_hi, uint32_t dest_lo)
996 {
997 u_int64_t addr;
998 struct fw_bind *tfw, *r = NULL;
999
1000 addr = ((u_int64_t)dest_hi << 32) | dest_lo;
1001 FW_GLOCK(fc);
1002 STAILQ_FOREACH(tfw, &fc->binds, fclist)
1003 if (BIND_CMP(addr, tfw) == 0) {
1004 r = tfw;
1005 break;
1006 }
1007 FW_GUNLOCK(fc);
1008 return(r);
1009 }
1010
1011 /*
1012 * To bind IEEE1394 address block to process.
1013 */
1014 int
1015 fw_bindadd(struct firewire_comm *fc, struct fw_bind *fwb)
1016 {
1017 struct fw_bind *tfw, *prev = NULL;
1018 int r = 0;
1019
1020 if (fwb->start > fwb->end) {
1021 printf("%s: invalid range\n", __func__);
1022 return EINVAL;
1023 }
1024
1025 FW_GLOCK(fc);
1026 STAILQ_FOREACH(tfw, &fc->binds, fclist) {
1027 if (fwb->end < tfw->start)
1028 break;
1029 prev = tfw;
1030 }
1031 if (prev == NULL)
1032 STAILQ_INSERT_HEAD(&fc->binds, fwb, fclist);
1033 else if (prev->end < fwb->start)
1034 STAILQ_INSERT_AFTER(&fc->binds, prev, fwb, fclist);
1035 else {
1036 printf("%s: bind failed\n", __func__);
1037 r = EBUSY;
1038 }
1039 FW_GUNLOCK(fc);
1040 return (r);
1041 }
1042
1043 /*
1044 * To free IEEE1394 address block.
1045 */
1046 int
1047 fw_bindremove(struct firewire_comm *fc, struct fw_bind *fwb)
1048 {
1049 #if 0
1050 struct fw_xfer *xfer, *next;
1051 #endif
1052 struct fw_bind *tfw;
1053 int s;
1054
1055 s = splfw();
1056 FW_GLOCK(fc);
1057 STAILQ_FOREACH(tfw, &fc->binds, fclist)
1058 if (tfw == fwb) {
1059 STAILQ_REMOVE(&fc->binds, fwb, fw_bind, fclist);
1060 goto found;
1061 }
1062
1063 printf("%s: no such binding\n", __func__);
1064 FW_GUNLOCK(fc);
1065 splx(s);
1066 return (1);
1067 found:
1068 #if 0
1069 /* shall we do this? */
1070 for (xfer = STAILQ_FIRST(&fwb->xferlist); xfer != NULL; xfer = next) {
1071 next = STAILQ_NEXT(xfer, link);
1072 fw_xfer_free(xfer);
1073 }
1074 STAILQ_INIT(&fwb->xferlist);
1075 #endif
1076 FW_GUNLOCK(fc);
1077
1078 splx(s);
1079 return 0;
1080 }
1081
1082 int
1083 fw_xferlist_add(struct fw_xferlist *q, struct malloc_type *type,
1084 int slen, int rlen, int n,
1085 struct firewire_comm *fc, void *sc, void (*hand)(struct fw_xfer *))
1086 {
1087 int i, s;
1088 struct fw_xfer *xfer;
1089
1090 for (i = 0; i < n; i++) {
1091 xfer = fw_xfer_alloc_buf(type, slen, rlen);
1092 if (xfer == NULL)
1093 return (n);
1094 xfer->fc = fc;
1095 xfer->sc = sc;
1096 xfer->hand = hand;
1097 s = splfw();
1098 STAILQ_INSERT_TAIL(q, xfer, link);
1099 splx(s);
1100 }
1101 return (n);
1102 }
1103
1104 void
1105 fw_xferlist_remove(struct fw_xferlist *q)
1106 {
1107 struct fw_xfer *xfer, *next;
1108
1109 for (xfer = STAILQ_FIRST(q); xfer != NULL; xfer = next) {
1110 next = STAILQ_NEXT(xfer, link);
1111 fw_xfer_free_buf(xfer);
1112 }
1113 STAILQ_INIT(q);
1114 }
1115
1116 /*
1117 * dump packet header
1118 */
1119 static void
1120 fw_dump_hdr(struct fw_pkt *fp, const char *prefix)
1121 {
1122 printf("%s: dst=0x%02x tl=0x%02x rt=%d tcode=0x%x pri=0x%x "
1123 "src=0x%03x\n", prefix,
1124 fp->mode.hdr.dst & 0x3f,
1125 fp->mode.hdr.tlrt >> 2, fp->mode.hdr.tlrt & 3,
1126 fp->mode.hdr.tcode, fp->mode.hdr.pri,
1127 fp->mode.hdr.src);
1128 }
1129
1130 /*
1131 * To free transaction label.
1132 */
1133 static void
1134 fw_tl_free(struct firewire_comm *fc, struct fw_xfer *xfer)
1135 {
1136 struct fw_xfer *txfer;
1137 int s;
1138
1139 if (xfer->tl < 0)
1140 return;
1141
1142 s = splfw();
1143 fw_mtx_lock(&fc->tlabel_lock);
1144 #if 1 /* make sure the label is allocated */
1145 STAILQ_FOREACH(txfer, &fc->tlabels[xfer->tl], tlabel)
1146 if(txfer == xfer)
1147 break;
1148 if (txfer == NULL) {
1149 printf("%s: the xfer is not in the queue "
1150 "(tlabel=%d, flag=0x%x)\n",
1151 __func__, xfer->tl, xfer->flag);
1152 fw_dump_hdr(&xfer->send.hdr, "send");
1153 fw_dump_hdr(&xfer->recv.hdr, "recv");
1154 kdb_backtrace();
1155 fw_mtx_unlock(&fc->tlabel_lock);
1156 splx(s);
1157 return;
1158 }
1159 #endif
1160
1161 STAILQ_REMOVE(&fc->tlabels[xfer->tl], xfer, fw_xfer, tlabel);
1162 fw_mtx_unlock(&fc->tlabel_lock);
1163 splx(s);
1164 return;
1165 }
1166
1167 /*
1168 * To obtain XFER structure by transaction label.
1169 */
1170 static struct fw_xfer *
1171 fw_tl2xfer(struct firewire_comm *fc, int node, int tlabel, int tcode)
1172 {
1173 struct fw_xfer *xfer;
1174 int s = splfw();
1175 int req;
1176
1177 fw_mtx_lock(&fc->tlabel_lock);
1178 STAILQ_FOREACH(xfer, &fc->tlabels[tlabel], tlabel)
1179 if(xfer->send.hdr.mode.hdr.dst == node) {
1180 fw_mtx_unlock(&fc->tlabel_lock);
1181 splx(s);
1182 FW_KASSERT(xfer->tl == tlabel,
1183 ("xfer->tl 0x%x != 0x%x", xfer->tl, tlabel));
1184 /* extra sanity check */
1185 req = xfer->send.hdr.mode.hdr.tcode;
1186 if (xfer->fc->tcode[req].valid_res != tcode) {
1187 printf("%s: invalid response tcode "
1188 "(0x%x for 0x%x)\n", __func__,
1189 tcode, req);
1190 return(NULL);
1191 }
1192
1193 if (firewire_debug > 2)
1194 printf("fw_tl2xfer: found tl=%d\n", tlabel);
1195 return(xfer);
1196 }
1197 fw_mtx_unlock(&fc->tlabel_lock);
1198 if (firewire_debug > 1)
1199 printf("fw_tl2xfer: not found tl=%d\n", tlabel);
1200 splx(s);
1201 return(NULL);
1202 }
1203
1204 /*
1205 * To allocate IEEE1394 XFER structure.
1206 */
1207 struct fw_xfer *
1208 fw_xfer_alloc(struct malloc_type *type)
1209 {
1210 struct fw_xfer *xfer;
1211
1212 xfer = malloc(sizeof(struct fw_xfer), type, M_NOWAIT | M_ZERO);
1213 if (xfer == NULL)
1214 return xfer;
1215
1216 xfer->malloc = type;
1217
1218 return xfer;
1219 }
1220
1221 struct fw_xfer *
1222 fw_xfer_alloc_buf(struct malloc_type *type, int send_len, int recv_len)
1223 {
1224 struct fw_xfer *xfer;
1225
1226 xfer = fw_xfer_alloc(type);
1227 if (xfer == NULL)
1228 return(NULL);
1229 xfer->send.pay_len = send_len;
1230 xfer->recv.pay_len = recv_len;
1231 if (send_len > 0) {
1232 xfer->send.payload = malloc(send_len, type, M_NOWAIT | M_ZERO);
1233 if (xfer->send.payload == NULL) {
1234 fw_xfer_free(xfer);
1235 return(NULL);
1236 }
1237 }
1238 if (recv_len > 0) {
1239 xfer->recv.payload = malloc(recv_len, type, M_NOWAIT);
1240 if (xfer->recv.payload == NULL) {
1241 if (xfer->send.payload != NULL)
1242 free(xfer->send.payload, type);
1243 fw_xfer_free(xfer);
1244 return(NULL);
1245 }
1246 }
1247 return(xfer);
1248 }
1249
1250 /*
1251 * IEEE1394 XFER post process.
1252 */
1253 void
1254 fw_xfer_done(struct fw_xfer *xfer)
1255 {
1256 if (xfer->hand == NULL) {
1257 printf("hand == NULL\n");
1258 return;
1259 }
1260
1261 if (xfer->fc == NULL)
1262 panic("fw_xfer_done: why xfer->fc is NULL?");
1263
1264 fw_tl_free(xfer->fc, xfer);
1265 xfer->hand(xfer);
1266 }
1267
1268 void
1269 fw_xfer_unload(struct fw_xfer* xfer)
1270 {
1271 int s;
1272
1273 if(xfer == NULL ) return;
1274 if(xfer->flag & FWXF_INQ){
1275 printf("fw_xfer_free FWXF_INQ\n");
1276 s = splfw();
1277 FW_GLOCK(xfer->fc);
1278 STAILQ_REMOVE(&xfer->q->q, xfer, fw_xfer, link);
1279 #if 0
1280 xfer->q->queued --;
1281 #endif
1282 FW_GUNLOCK(xfer->fc);
1283 splx(s);
1284 }
1285 if (xfer->fc != NULL) {
1286 #if 1
1287 if(xfer->flag == FWXF_START)
1288 /*
1289 * This could happen if:
1290 * 1. We call fwohci_arcv() before fwohci_txd().
1291 * 2. firewire_watch() is called.
1292 */
1293 printf("fw_xfer_free FWXF_START\n");
1294 #endif
1295 }
1296 xfer->flag = FWXF_INIT;
1297 xfer->resp = 0;
1298 }
1299 /*
1300 * To free IEEE1394 XFER structure.
1301 */
1302 void
1303 fw_xfer_free_buf( struct fw_xfer* xfer)
1304 {
1305 if (xfer == NULL) {
1306 printf("%s: xfer == NULL\n", __func__);
1307 return;
1308 }
1309 fw_xfer_unload(xfer);
1310 if(xfer->send.payload != NULL){
1311 free(xfer->send.payload, xfer->malloc);
1312 }
1313 if(xfer->recv.payload != NULL){
1314 free(xfer->recv.payload, xfer->malloc);
1315 }
1316 free(xfer, xfer->malloc);
1317 }
1318
1319 void
1320 fw_xfer_free( struct fw_xfer* xfer)
1321 {
1322 if (xfer == NULL) {
1323 printf("%s: xfer == NULL\n", __func__);
1324 return;
1325 }
1326 fw_xfer_unload(xfer);
1327 free(xfer, xfer->malloc);
1328 }
1329
1330 void
1331 fw_asy_callback_free(struct fw_xfer *xfer)
1332 {
1333 #if 0
1334 printf("asyreq done flag=%d resp=%d\n",
1335 xfer->flag, xfer->resp);
1336 #endif
1337 fw_xfer_free(xfer);
1338 }
1339
1340 /*
1341 * To configure PHY.
1342 */
1343 static void
1344 fw_phy_config(struct firewire_comm *fc, int root_node, int gap_count)
1345 {
1346 struct fw_xfer *xfer;
1347 struct fw_pkt *fp;
1348
1349 fc->status = FWBUSPHYCONF;
1350
1351 xfer = fw_xfer_alloc(M_FWXFER);
1352 if (xfer == NULL)
1353 return;
1354 xfer->fc = fc;
1355 xfer->hand = fw_asy_callback_free;
1356
1357 fp = &xfer->send.hdr;
1358 fp->mode.ld[1] = 0;
1359 if (root_node >= 0)
1360 fp->mode.ld[1] |= (root_node & 0x3f) << 24 | 1 << 23;
1361 if (gap_count >= 0)
1362 fp->mode.ld[1] |= 1 << 22 | (gap_count & 0x3f) << 16;
1363 fp->mode.ld[2] = ~fp->mode.ld[1];
1364 /* XXX Dangerous, how to pass PHY packet to device driver */
1365 fp->mode.common.tcode |= FWTCODE_PHY;
1366
1367 if (firewire_debug)
1368 printf("send phy_config root_node=%d gap_count=%d\n",
1369 root_node, gap_count);
1370 fw_asyreq(fc, -1, xfer);
1371 }
1372
1373 #if 0
1374 /*
1375 * Dump self ID.
1376 */
1377 static void
1378 fw_print_sid(uint32_t sid)
1379 {
1380 union fw_self_id *s;
1381 s = (union fw_self_id *) &sid;
1382 printf("node:%d link:%d gap:%d spd:%d del:%d con:%d pwr:%d"
1383 " p0:%d p1:%d p2:%d i:%d m:%d\n",
1384 s->p0.phy_id, s->p0.link_active, s->p0.gap_count,
1385 s->p0.phy_speed, s->p0.phy_delay, s->p0.contender,
1386 s->p0.power_class, s->p0.port0, s->p0.port1,
1387 s->p0.port2, s->p0.initiated_reset, s->p0.more_packets);
1388 }
1389 #endif
1390
1391 /*
1392 * To receive self ID.
1393 */
1394 void fw_sidrcv(struct firewire_comm* fc, uint32_t *sid, u_int len)
1395 {
1396 uint32_t *p;
1397 union fw_self_id *self_id;
1398 u_int i, j, node, c_port = 0, i_branch = 0;
1399
1400 fc->sid_cnt = len /(sizeof(uint32_t) * 2);
1401 fc->max_node = fc->nodeid & 0x3f;
1402 CSRARC(fc, NODE_IDS) = ((uint32_t)fc->nodeid) << 16;
1403 fc->status = FWBUSCYMELECT;
1404 fc->topology_map->crc_len = 2;
1405 fc->topology_map->generation ++;
1406 fc->topology_map->self_id_count = 0;
1407 fc->topology_map->node_count = 0;
1408 fc->speed_map->generation ++;
1409 fc->speed_map->crc_len = 1 + (64*64 + 3) / 4;
1410 self_id = &fc->topology_map->self_id[0];
1411 for(i = 0; i < fc->sid_cnt; i ++){
1412 if (sid[1] != ~sid[0]) {
1413 printf("fw_sidrcv: invalid self-id packet\n");
1414 sid += 2;
1415 continue;
1416 }
1417 *self_id = *((union fw_self_id *)sid);
1418 fc->topology_map->crc_len++;
1419 if(self_id->p0.sequel == 0){
1420 fc->topology_map->node_count ++;
1421 c_port = 0;
1422 #if 0
1423 fw_print_sid(sid[0]);
1424 #endif
1425 node = self_id->p0.phy_id;
1426 if(fc->max_node < node){
1427 fc->max_node = self_id->p0.phy_id;
1428 }
1429 /* XXX I'm not sure this is the right speed_map */
1430 fc->speed_map->speed[node][node]
1431 = self_id->p0.phy_speed;
1432 for (j = 0; j < node; j ++) {
1433 fc->speed_map->speed[j][node]
1434 = fc->speed_map->speed[node][j]
1435 = min(fc->speed_map->speed[j][j],
1436 self_id->p0.phy_speed);
1437 }
1438 if ((fc->irm == -1 || self_id->p0.phy_id > fc->irm) &&
1439 (self_id->p0.link_active && self_id->p0.contender)) {
1440 fc->irm = self_id->p0.phy_id;
1441 }
1442 if(self_id->p0.port0 >= 0x2){
1443 c_port++;
1444 }
1445 if(self_id->p0.port1 >= 0x2){
1446 c_port++;
1447 }
1448 if(self_id->p0.port2 >= 0x2){
1449 c_port++;
1450 }
1451 }
1452 if(c_port > 2){
1453 i_branch += (c_port - 2);
1454 }
1455 sid += 2;
1456 self_id++;
1457 fc->topology_map->self_id_count ++;
1458 }
1459 fw_printf(fc->bdev, "%d nodes", fc->max_node + 1);
1460 /* CRC */
1461 fc->topology_map->crc = fw_crc16(
1462 (uint32_t *)&fc->topology_map->generation,
1463 fc->topology_map->crc_len * 4);
1464 fc->speed_map->crc = fw_crc16(
1465 (uint32_t *)&fc->speed_map->generation,
1466 fc->speed_map->crc_len * 4);
1467 /* byteswap and copy to CSR */
1468 p = (uint32_t *)fc->topology_map;
1469 for (i = 0; i <= fc->topology_map->crc_len; i++)
1470 CSRARC(fc, TOPO_MAP + i * 4) = htonl(*p++);
1471 p = (uint32_t *)fc->speed_map;
1472 CSRARC(fc, SPED_MAP) = htonl(*p++);
1473 CSRARC(fc, SPED_MAP + 4) = htonl(*p++);
1474 /* don't byte-swap uint8_t array */
1475 bcopy(p, &CSRARC(fc, SPED_MAP + 8), (fc->speed_map->crc_len - 1)*4);
1476
1477 fc->max_hop = fc->max_node - i_branch;
1478 printf(", maxhop <= %d", fc->max_hop);
1479
1480 if(fc->irm == -1 ){
1481 printf(", Not found IRM capable node");
1482 }else{
1483 printf(", cable IRM = %d", fc->irm);
1484 if (fc->irm == fc->nodeid)
1485 printf(" (me)");
1486 }
1487 printf("\n");
1488
1489 if (try_bmr && (fc->irm != -1) && (CSRARC(fc, BUS_MGR_ID) == 0x3f)) {
1490 if (fc->irm == fc->nodeid) {
1491 fc->status = FWBUSMGRDONE;
1492 CSRARC(fc, BUS_MGR_ID) = fc->set_bmr(fc, fc->irm);
1493 fw_bmr(fc);
1494 } else {
1495 fc->status = FWBUSMGRELECT;
1496 fw_callout_reset(&fc->bmr_callout, hz/8,
1497 (void *)fw_try_bmr, (void *)fc);
1498 }
1499 } else
1500 fc->status = FWBUSMGRDONE;
1501
1502 fw_callout_reset(&fc->busprobe_callout, hz/4,
1503 (void *)fw_bus_probe, (void *)fc);
1504 }
1505
1506 /*
1507 * To probe devices on the IEEE1394 bus.
1508 */
1509 static void
1510 fw_bus_probe(struct firewire_comm *fc)
1511 {
1512 int s;
1513 struct fw_device *fwdev;
1514
1515 s = splfw();
1516 fc->status = FWBUSEXPLORE;
1517
1518 /* Invalidate all devices, just after bus reset. */
1519 STAILQ_FOREACH(fwdev, &fc->devices, link)
1520 if (fwdev->status != FWDEVINVAL) {
1521 fwdev->status = FWDEVINVAL;
1522 fwdev->rcnt = 0;
1523 }
1524 splx(s);
1525
1526 wakeup((void *)fc);
1527 }
1528
1529 static int
1530 fw_explore_read_quads(struct fw_device *fwdev, int offset,
1531 uint32_t *quad, int n)
1532 {
1533 struct fw_xfer *xfer;
1534 uint32_t tmp;
1535 int i, error;
1536
1537
1538 for (i = 0; i < n; i ++, offset += sizeof(uint32_t)) {
1539 xfer = fwmem_read_quad(fwdev, NULL, -1,
1540 0xffff, 0xf0000000 | offset, (void *)&tmp,
1541 fw_xferwake);
1542 if (xfer == NULL)
1543 return (-1);
1544 fw_xferwait(xfer);
1545
1546 if (xfer->resp == 0)
1547 quad[i] = ntohl(tmp);
1548
1549 error = xfer->resp;
1550 fw_xfer_free(xfer);
1551 if (error)
1552 return (error);
1553 }
1554 return (0);
1555 }
1556
1557
1558 static int
1559 fw_explore_csrblock(struct fw_device *fwdev, int offset, int recur)
1560 {
1561 int err, i, off;
1562 struct csrdirectory *dir;
1563 struct csrreg *reg;
1564
1565
1566 dir = (struct csrdirectory *)&fwdev->csrrom[offset/sizeof(uint32_t)];
1567 err = fw_explore_read_quads(fwdev, CSRROMOFF + offset,
1568 (uint32_t *)dir, 1);
1569 if (err)
1570 return (-1);
1571
1572 offset += sizeof(uint32_t);
1573 reg = (struct csrreg *)&fwdev->csrrom[offset/sizeof(uint32_t)];
1574 err = fw_explore_read_quads(fwdev, CSRROMOFF + offset,
1575 (uint32_t *)reg, dir->crc_len);
1576 if (err)
1577 return (-1);
1578
1579 /* XXX check CRC */
1580
1581 off = CSRROMOFF + offset + sizeof(uint32_t) * (dir->crc_len - 1);
1582 if (fwdev->rommax < off)
1583 fwdev->rommax = off;
1584
1585 if (recur == 0)
1586 return (0);
1587
1588 for (i = 0; i < dir->crc_len; i ++, offset += sizeof(uint32_t)) {
1589 if ((reg[i].key & CSRTYPE_MASK) == CSRTYPE_D)
1590 recur = 1;
1591 else if ((reg[i].key & CSRTYPE_MASK) == CSRTYPE_L)
1592 recur = 0;
1593 else
1594 continue;
1595
1596 off = offset + reg[i].val * sizeof(uint32_t);
1597 if (off > CROMSIZE) {
1598 printf("%s: invalid offset %d\n", __func__, off);
1599 return(-1);
1600 }
1601 err = fw_explore_csrblock(fwdev, off, recur);
1602 if (err)
1603 return (-1);
1604 }
1605 return (0);
1606 }
1607
1608 static int
1609 fw_explore_node(struct fw_device *dfwdev)
1610 {
1611 struct firewire_comm *fc;
1612 struct fw_device *fwdev, *pfwdev, *tfwdev;
1613 uint32_t *csr;
1614 struct csrhdr *hdr;
1615 struct bus_info *binfo;
1616 int err, node, spd;
1617
1618 fc = dfwdev->fc;
1619 csr = dfwdev->csrrom;
1620 node = dfwdev->dst;
1621
1622 /* First quad */
1623 err = fw_explore_read_quads(dfwdev, CSRROMOFF, &csr[0], 1);
1624 if (err)
1625 return (-1);
1626 hdr = (struct csrhdr *)&csr[0];
1627 if (hdr->info_len != 4) {
1628 if (firewire_debug)
1629 printf("node%d: wrong bus info len(%d)\n",
1630 node, hdr->info_len);
1631 return (-1);
1632 }
1633
1634 /* bus info */
1635 err = fw_explore_read_quads(dfwdev, CSRROMOFF + 0x04, &csr[1], 4);
1636 if (err)
1637 return (-1);
1638 binfo = (struct bus_info *)&csr[1];
1639 if (binfo->bus_name != CSR_BUS_NAME_IEEE1394) {
1640 if (firewire_debug)
1641 printf("node%d: invalid bus name 0x%08x\n",
1642 node, binfo->bus_name);
1643 return (-1);
1644 }
1645 spd = fc->speed_map->speed[fc->nodeid][node];
1646 STAILQ_FOREACH(fwdev, &fc->devices, link)
1647 if (FW_EUI64_EQUAL(fwdev->eui, binfo->eui64))
1648 break;
1649 if (fwdev == NULL) {
1650 /* new device */
1651 fwdev = malloc(sizeof(struct fw_device), M_FW,
1652 M_NOWAIT | M_ZERO);
1653 if (fwdev == NULL) {
1654 if (firewire_debug)
1655 printf("node%d: no memory\n", node);
1656 return (-1);
1657 }
1658 fwdev->fc = fc;
1659 fwdev->eui = binfo->eui64;
1660 fwdev->status = FWDEVNEW;
1661 /* insert into sorted fwdev list */
1662 pfwdev = NULL;
1663 STAILQ_FOREACH(tfwdev, &fc->devices, link) {
1664 if (tfwdev->eui.hi > fwdev->eui.hi ||
1665 (tfwdev->eui.hi == fwdev->eui.hi &&
1666 tfwdev->eui.lo > fwdev->eui.lo))
1667 break;
1668 pfwdev = tfwdev;
1669 }
1670 if (pfwdev == NULL)
1671 STAILQ_INSERT_HEAD(&fc->devices, fwdev, link);
1672 else
1673 STAILQ_INSERT_AFTER(&fc->devices, pfwdev, fwdev, link);
1674
1675 fw_printf(fc->bdev, "New %s device ID:%08x%08x\n",
1676 fw_linkspeed[spd],
1677 fwdev->eui.hi, fwdev->eui.lo);
1678
1679 } else
1680 fwdev->status = FWDEVINIT;
1681 fwdev->dst = node;
1682 fwdev->speed = spd;
1683
1684 /* unchanged ? */
1685 if (bcmp(&csr[0], &fwdev->csrrom[0], sizeof(uint32_t) * 5) == 0) {
1686 if (firewire_debug)
1687 printf("node%d: crom unchanged\n", node);
1688 return (0);
1689 }
1690
1691 bzero(&fwdev->csrrom[0], CROMSIZE);
1692
1693 /* copy first quad and bus info block */
1694 bcopy(&csr[0], &fwdev->csrrom[0], sizeof(uint32_t) * 5);
1695 fwdev->rommax = CSRROMOFF + sizeof(uint32_t) * 4;
1696
1697 err = fw_explore_csrblock(fwdev, 0x14, 1); /* root directory */
1698
1699 if (err) {
1700 fwdev->status = FWDEVINVAL;
1701 fwdev->csrrom[0] = 0;
1702 }
1703 return (err);
1704
1705 }
1706
1707 /*
1708 * Find the self_id packet for a node, ignoring sequels.
1709 */
1710 static union fw_self_id *
1711 fw_find_self_id(struct firewire_comm *fc, int node)
1712 {
1713 uint32_t i;
1714 union fw_self_id *s;
1715
1716 for (i = 0; i < fc->topology_map->self_id_count; i++) {
1717 s = &fc->topology_map->self_id[i];
1718 if (s->p0.sequel)
1719 continue;
1720 if (s->p0.phy_id == node)
1721 return s;
1722 }
1723 return 0;
1724 }
1725
1726 static void
1727 fw_explore(struct firewire_comm *fc)
1728 {
1729 int node, err, s, i, todo, todo2, trys;
1730 char nodes[63];
1731 struct fw_device *dfwdev;
1732 union fw_self_id *fwsid;
1733
1734 todo = 0;
1735 dfwdev = malloc(sizeof(*dfwdev), M_TEMP, M_NOWAIT);
1736 if (dfwdev == NULL)
1737 return;
1738 /* setup dummy fwdev */
1739 dfwdev->fc = fc;
1740 dfwdev->speed = 0;
1741 dfwdev->maxrec = 8; /* 512 */
1742 dfwdev->status = FWDEVINIT;
1743
1744 for (node = 0; node <= fc->max_node; node ++) {
1745 /* We don't probe myself and linkdown nodes */
1746 if (node == fc->nodeid)
1747 continue;
1748 fwsid = fw_find_self_id(fc, node);
1749 if (!fwsid || !fwsid->p0.link_active) {
1750 if (firewire_debug)
1751 printf("node%d: link down\n", node);
1752 continue;
1753 }
1754 nodes[todo++] = node;
1755 }
1756
1757 s = splfw();
1758 for (trys = 0; todo > 0 && trys < 3; trys ++) {
1759 todo2 = 0;
1760 for (i = 0; i < todo; i ++) {
1761 dfwdev->dst = nodes[i];
1762 err = fw_explore_node(dfwdev);
1763 if (err)
1764 nodes[todo2++] = nodes[i];
1765 if (firewire_debug)
1766 printf("%s: node %d, err = %d\n",
1767 __func__, node, err);
1768 }
1769 todo = todo2;
1770 }
1771 splx(s);
1772 free(dfwdev, M_TEMP);
1773 }
1774
1775 static void
1776 fw_bus_probe_thread(void *arg)
1777 {
1778 struct firewire_comm *fc;
1779
1780 fc = (struct firewire_comm *)arg;
1781
1782 fw_config_pending_decr();
1783
1784 fw_mtx_lock(&fc->wait_lock);
1785 while (fc->status != FWBUSDETACH) {
1786 if (fc->status == FWBUSEXPLORE) {
1787 fw_mtx_unlock(&fc->wait_lock);
1788 fw_explore(fc);
1789 fc->status = FWBUSEXPDONE;
1790 if (firewire_debug)
1791 printf("bus_explore done\n");
1792 fw_attach_dev(fc);
1793 fw_mtx_lock(&fc->wait_lock);
1794 }
1795 fw_msleep((void *)fc, &fc->wait_lock, PWAIT|PCATCH, "-", 0);
1796 }
1797 fw_mtx_unlock(&fc->wait_lock);
1798 fw_kthread_exit(0);
1799 }
1800
1801
1802 /*
1803 * To attach sub-devices layer onto IEEE1394 bus.
1804 */
1805 static void
1806 fw_attach_dev(struct firewire_comm *fc)
1807 {
1808 struct fw_device *fwdev, *next;
1809 struct firewire_dev_comm *fdc;
1810 struct fw_attach_args fwa;
1811
1812 fwa.name = "sbp";
1813 fwa.fc = fc;
1814
1815 for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL; fwdev = next) {
1816 next = STAILQ_NEXT(fwdev, link);
1817 switch (fwdev->status) {
1818 case FWDEVNEW:
1819 FIREWIRE_SBP_ATTACH;
1820
1821 case FWDEVINIT:
1822 case FWDEVATTACHED:
1823 fwdev->status = FWDEVATTACHED;
1824 break;
1825
1826 case FWDEVINVAL:
1827 fwdev->rcnt ++;
1828 break;
1829
1830 default:
1831 /* XXX */
1832 break;
1833 }
1834 }
1835
1836 FIREWIRE_CHILDREN_FOREACH_FUNC(post_explore, fdc);
1837
1838 for (fwdev = STAILQ_FIRST(&fc->devices); fwdev != NULL; fwdev = next) {
1839 next = STAILQ_NEXT(fwdev, link);
1840 if (fwdev->rcnt > 0 && fwdev->rcnt > hold_count) {
1841 /*
1842 * Remove devices which have not been seen
1843 * for a while.
1844 */
1845 FIREWIRE_SBP_DETACH;
1846 STAILQ_REMOVE(&fc->devices, fwdev, fw_device, link);
1847 free(fwdev, M_FW);
1848 }
1849 }
1850
1851 return;
1852 }
1853
1854 /*
1855 * To allocate unique transaction label.
1856 */
1857 static int
1858 fw_get_tlabel(struct firewire_comm *fc, struct fw_xfer *xfer)
1859 {
1860 u_int dst, new_tlabel;
1861 struct fw_xfer *txfer;
1862 int s;
1863
1864 dst = xfer->send.hdr.mode.hdr.dst & 0x3f;
1865 s = splfw();
1866 fw_mtx_lock(&fc->tlabel_lock);
1867 new_tlabel = (fc->last_tlabel[dst] + 1) & 0x3f;
1868 STAILQ_FOREACH(txfer, &fc->tlabels[new_tlabel], tlabel)
1869 if ((txfer->send.hdr.mode.hdr.dst & 0x3f) == dst)
1870 break;
1871 if(txfer == NULL) {
1872 fc->last_tlabel[dst] = new_tlabel;
1873 STAILQ_INSERT_TAIL(&fc->tlabels[new_tlabel], xfer, tlabel);
1874 fw_mtx_unlock(&fc->tlabel_lock);
1875 splx(s);
1876 xfer->tl = new_tlabel;
1877 xfer->send.hdr.mode.hdr.tlrt = new_tlabel << 2;
1878 if (firewire_debug > 1)
1879 printf("fw_get_tlabel: dst=%d tl=%d\n", dst, new_tlabel);
1880 return (new_tlabel);
1881 }
1882 fw_mtx_unlock(&fc->tlabel_lock);
1883 splx(s);
1884
1885 if (firewire_debug > 1)
1886 printf("fw_get_tlabel: no free tlabel\n");
1887 return (-1);
1888 }
1889
1890 static void
1891 fw_rcv_copy(struct fw_rcv_buf *rb)
1892 {
1893 struct fw_pkt *pkt;
1894 u_char *p;
1895 const struct tcode_info *tinfo;
1896 u_int res, i, len, plen;
1897
1898 rb->xfer->recv.spd = rb->spd;
1899
1900 pkt = (struct fw_pkt *)rb->vec->iov_base;
1901 tinfo = &rb->fc->tcode[pkt->mode.hdr.tcode];
1902
1903 /* Copy header */
1904 p = (u_char *)&rb->xfer->recv.hdr;
1905 bcopy(rb->vec->iov_base, p, tinfo->hdr_len);
1906 rb->vec->iov_base = (u_char *)rb->vec->iov_base + tinfo->hdr_len;
1907 rb->vec->iov_len -= tinfo->hdr_len;
1908
1909 /* Copy payload */
1910 p = (u_char *)rb->xfer->recv.payload;
1911 res = rb->xfer->recv.pay_len;
1912
1913 /* special handling for RRESQ */
1914 if (pkt->mode.hdr.tcode == FWTCODE_RRESQ &&
1915 p != NULL && res >= sizeof(uint32_t)) {
1916 *(uint32_t *)p = pkt->mode.rresq.data;
1917 rb->xfer->recv.pay_len = sizeof(uint32_t);
1918 return;
1919 }
1920
1921 if ((tinfo->flag & FWTI_BLOCK_ASY) == 0)
1922 return;
1923
1924 plen = pkt->mode.rresb.len;
1925
1926 for (i = 0; i < rb->nvec; i++, rb->vec++) {
1927 len = MIN(rb->vec->iov_len, plen);
1928 if (res < len) {
1929 printf("rcv buffer(%d) is %d bytes short.\n",
1930 rb->xfer->recv.pay_len, len - res);
1931 len = res;
1932 }
1933 if (p) {
1934 bcopy(rb->vec->iov_base, p, len);
1935 p += len;
1936 }
1937 res -= len;
1938 plen -= len;
1939 if (res == 0 || plen == 0)
1940 break;
1941 }
1942 rb->xfer->recv.pay_len -= res;
1943
1944 }
1945
1946 /*
1947 * Generic packet receiving process.
1948 */
1949 void
1950 fw_rcv(struct fw_rcv_buf *rb)
1951 {
1952 struct fw_pkt *fp, *resfp;
1953 struct fw_bind *bind;
1954 int tcode;
1955 int i, len, oldstate;
1956 #if 0
1957 {
1958 uint32_t *qld;
1959 int i;
1960 qld = (uint32_t *)buf;
1961 printf("spd %d len:%d\n", spd, len);
1962 for( i = 0 ; i <= len && i < 32; i+= 4){
1963 printf("0x%08x ", ntohl(qld[i/4]));
1964 if((i % 16) == 15) printf("\n");
1965 }
1966 if((i % 16) != 15) printf("\n");
1967 }
1968 #endif
1969 fp = (struct fw_pkt *)rb->vec[0].iov_base;
1970 tcode = fp->mode.common.tcode;
1971 switch (tcode) {
1972 case FWTCODE_WRES:
1973 case FWTCODE_RRESQ:
1974 case FWTCODE_RRESB:
1975 case FWTCODE_LRES:
1976 rb->xfer = fw_tl2xfer(rb->fc, fp->mode.hdr.src,
1977 fp->mode.hdr.tlrt >> 2, fp->mode.hdr.tcode);
1978 if(rb->xfer == NULL) {
1979 printf("fw_rcv: unknown response "
1980 "%s(%x) src=0x%x tl=0x%x rt=%d data=0x%x\n",
1981 tcode_str[tcode], tcode,
1982 fp->mode.hdr.src,
1983 fp->mode.hdr.tlrt >> 2,
1984 fp->mode.hdr.tlrt & 3,
1985 fp->mode.rresq.data);
1986 #if 0
1987 printf("try ad-hoc work around!!\n");
1988 rb->xfer = fw_tl2xfer(rb->fc, fp->mode.hdr.src,
1989 (fp->mode.hdr.tlrt >> 2)^3);
1990 if (rb->xfer == NULL) {
1991 printf("no use...\n");
1992 return;
1993 }
1994 #else
1995 return;
1996 #endif
1997 }
1998 fw_rcv_copy(rb);
1999 if (rb->xfer->recv.hdr.mode.wres.rtcode != RESP_CMP)
2000 rb->xfer->resp = EIO;
2001 else
2002 rb->xfer->resp = 0;
2003 /* make sure the packet is drained in AT queue */
2004 oldstate = rb->xfer->flag;
2005 rb->xfer->flag = FWXF_RCVD;
2006 switch (oldstate) {
2007 case FWXF_SENT:
2008 fw_xfer_done(rb->xfer);
2009 break;
2010 case FWXF_START:
2011 #if 0
2012 if (firewire_debug)
2013 printf("not sent yet tl=%x\n", rb->xfer->tl);
2014 #endif
2015 break;
2016 default:
2017 printf("unexpected flag 0x%02x\n", rb->xfer->flag);
2018 }
2019 return;
2020 case FWTCODE_WREQQ:
2021 case FWTCODE_WREQB:
2022 case FWTCODE_RREQQ:
2023 case FWTCODE_RREQB:
2024 case FWTCODE_LREQ:
2025 bind = fw_bindlookup(rb->fc, fp->mode.rreqq.dest_hi,
2026 fp->mode.rreqq.dest_lo);
2027 if(bind == NULL){
2028 #if 1
2029 printf("Unknown service addr 0x%04x:0x%08x %s(%x)"
2030 #if defined(__DragonFly__) || \
2031 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2032 " src=0x%x data=%lx\n",
2033 #else
2034 " src=0x%x data=%x\n",
2035 #endif
2036 fp->mode.wreqq.dest_hi, fp->mode.wreqq.dest_lo,
2037 tcode_str[tcode], tcode,
2038 fp->mode.hdr.src, ntohl(fp->mode.wreqq.data));
2039 #endif
2040 if (rb->fc->status == FWBUSINIT) {
2041 printf("fw_rcv: cannot respond(bus reset)!\n");
2042 return;
2043 }
2044 rb->xfer = fw_xfer_alloc(M_FWXFER);
2045 if(rb->xfer == NULL){
2046 return;
2047 }
2048 rb->xfer->send.spd = rb->spd;
2049 rb->xfer->send.pay_len = 0;
2050 resfp = &rb->xfer->send.hdr;
2051 switch (tcode) {
2052 case FWTCODE_WREQQ:
2053 case FWTCODE_WREQB:
2054 resfp->mode.hdr.tcode = FWTCODE_WRES;
2055 break;
2056 case FWTCODE_RREQQ:
2057 resfp->mode.hdr.tcode = FWTCODE_RRESQ;
2058 break;
2059 case FWTCODE_RREQB:
2060 resfp->mode.hdr.tcode = FWTCODE_RRESB;
2061 break;
2062 case FWTCODE_LREQ:
2063 resfp->mode.hdr.tcode = FWTCODE_LRES;
2064 break;
2065 }
2066 resfp->mode.hdr.dst = fp->mode.hdr.src;
2067 resfp->mode.hdr.tlrt = fp->mode.hdr.tlrt;
2068 resfp->mode.hdr.pri = fp->mode.hdr.pri;
2069 resfp->mode.rresb.rtcode = RESP_ADDRESS_ERROR;
2070 resfp->mode.rresb.extcode = 0;
2071 resfp->mode.rresb.len = 0;
2072 /*
2073 rb->xfer->hand = fw_xferwake;
2074 */
2075 rb->xfer->hand = fw_xfer_free;
2076 if(fw_asyreq(rb->fc, -1, rb->xfer)){
2077 fw_xfer_free(rb->xfer);
2078 return;
2079 }
2080 return;
2081 }
2082 len = 0;
2083 for (i = 0; i < rb->nvec; i ++)
2084 len += rb->vec[i].iov_len;
2085 rb->xfer = STAILQ_FIRST(&bind->xferlist);
2086 if (rb->xfer == NULL) {
2087 #if 1
2088 printf("Discard a packet for this bind.\n");
2089 #endif
2090 return;
2091 }
2092 STAILQ_REMOVE_HEAD(&bind->xferlist, link);
2093 fw_rcv_copy(rb);
2094 rb->xfer->hand(rb->xfer);
2095 return;
2096 #if 0 /* shouldn't happen ?? or for GASP */
2097 case FWTCODE_STREAM:
2098 {
2099 struct fw_xferq *xferq;
2100
2101 xferq = rb->fc->ir[sub];
2102 #if 0
2103 printf("stream rcv dma %d len %d off %d spd %d\n",
2104 sub, len, off, spd);
2105 #endif
2106 if(xferq->queued >= xferq->maxq) {
2107 printf("receive queue is full\n");
2108 return;
2109 }
2110 /* XXX get xfer from xfer queue, we don't need copy for
2111 per packet mode */
2112 rb->xfer = fw_xfer_alloc_buf(M_FWXFER, 0, /* XXX */
2113 vec[0].iov_len);
2114 if (rb->xfer == NULL)
2115 return;
2116 fw_rcv_copy(rb)
2117 s = splfw();
2118 xferq->queued++;
2119 STAILQ_INSERT_TAIL(&xferq->q, rb->xfer, link);
2120 splx(s);
2121 sc = device_get_softc(rb->fc->bdev);
2122 #if defined(__DragonFly__) || \
2123 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2124 if (&xferq->rsel.si_pid != 0)
2125 #else
2126 if (SEL_WAITING(&xferq->rsel))
2127 #endif
2128 selwakeuppri(&xferq->rsel, FWPRI);
2129 if (xferq->flag & FWXFERQ_WAKEUP) {
2130 xferq->flag &= ~FWXFERQ_WAKEUP;
2131 wakeup((void *)xferq);
2132 }
2133 if (xferq->flag & FWXFERQ_HANDLER) {
2134 xferq->hand(xferq);
2135 }
2136 return;
2137 break;
2138 }
2139 #endif
2140 default:
2141 printf("fw_rcv: unknow tcode %d\n", tcode);
2142 break;
2143 }
2144 }
2145
2146 /*
2147 * Post process for Bus Manager election process.
2148 */
2149 static void
2150 fw_try_bmr_callback(struct fw_xfer *xfer)
2151 {
2152 struct firewire_comm *fc;
2153 int bmr;
2154
2155 if (xfer == NULL)
2156 return;
2157 fc = xfer->fc;
2158 if (xfer->resp != 0)
2159 goto error;
2160 if (xfer->recv.payload == NULL)
2161 goto error;
2162 if (xfer->recv.hdr.mode.lres.rtcode != FWRCODE_COMPLETE)
2163 goto error;
2164
2165 bmr = ntohl(xfer->recv.payload[0]);
2166 if (bmr == 0x3f)
2167 bmr = fc->nodeid;
2168
2169 CSRARC(fc, BUS_MGR_ID) = fc->set_bmr(fc, bmr & 0x3f);
2170 fw_xfer_free_buf(xfer);
2171 fw_bmr(fc);
2172 return;
2173
2174 error:
2175 fw_printf(fc->bdev, "bus manager election failed\n");
2176 fw_xfer_free_buf(xfer);
2177 }
2178
2179
2180 /*
2181 * To candidate Bus Manager election process.
2182 */
2183 static void
2184 fw_try_bmr(void *arg)
2185 {
2186 struct fw_xfer *xfer;
2187 struct firewire_comm *fc = (struct firewire_comm *)arg;
2188 struct fw_pkt *fp;
2189 int err = 0;
2190
2191 xfer = fw_xfer_alloc_buf(M_FWXFER, 8, 4);
2192 if(xfer == NULL){
2193 return;
2194 }
2195 xfer->send.spd = 0;
2196 fc->status = FWBUSMGRELECT;
2197
2198 fp = &xfer->send.hdr;
2199 fp->mode.lreq.dest_hi = 0xffff;
2200 fp->mode.lreq.tlrt = 0;
2201 fp->mode.lreq.tcode = FWTCODE_LREQ;
2202 fp->mode.lreq.pri = 0;
2203 fp->mode.lreq.src = 0;
2204 fp->mode.lreq.len = 8;
2205 fp->mode.lreq.extcode = EXTCODE_CMP_SWAP;
2206 fp->mode.lreq.dst = FWLOCALBUS | fc->irm;
2207 fp->mode.lreq.dest_lo = 0xf0000000 | BUS_MGR_ID;
2208 xfer->send.payload[0] = htonl(0x3f);
2209 xfer->send.payload[1] = htonl(fc->nodeid);
2210 xfer->hand = fw_try_bmr_callback;
2211
2212 err = fw_asyreq(fc, -1, xfer);
2213 if(err){
2214 fw_xfer_free_buf(xfer);
2215 return;
2216 }
2217 return;
2218 }
2219
2220 #ifdef FW_VMACCESS
2221 /*
2222 * Software implementation for physical memory block access.
2223 * XXX:Too slow, usef for debug purpose only.
2224 */
2225 static void
2226 fw_vmaccess(struct fw_xfer *xfer){
2227 struct fw_pkt *rfp, *sfp = NULL;
2228 uint32_t *ld = (uint32_t *)xfer->recv.buf;
2229
2230 printf("vmaccess spd:%2x len:%03x data:%08x %08x %08x %08x\n",
2231 xfer->spd, xfer->recv.len, ntohl(ld[0]), ntohl(ld[1]), ntohl(ld[2]), ntohl(ld[3]));
2232 printf("vmaccess data:%08x %08x %08x %08x\n", ntohl(ld[4]), ntohl(ld[5]), ntohl(ld[6]), ntohl(ld[7]));
2233 if(xfer->resp != 0){
2234 fw_xfer_free( xfer);
2235 return;
2236 }
2237 if(xfer->recv.buf == NULL){
2238 fw_xfer_free( xfer);
2239 return;
2240 }
2241 rfp = (struct fw_pkt *)xfer->recv.buf;
2242 switch(rfp->mode.hdr.tcode){
2243 /* XXX need fix for 64bit arch */
2244 case FWTCODE_WREQB:
2245 xfer->send.buf = malloc(12, M_FW, M_NOWAIT);
2246 xfer->send.len = 12;
2247 sfp = (struct fw_pkt *)xfer->send.buf;
2248 bcopy(rfp->mode.wreqb.payload,
2249 (void *)ntohl(rfp->mode.wreqb.dest_lo), ntohs(rfp->mode.wreqb.len));
2250 sfp->mode.wres.tcode = FWTCODE_WRES;
2251 sfp->mode.wres.rtcode = 0;
2252 break;
2253 case FWTCODE_WREQQ:
2254 xfer->send.buf = malloc(12, M_FW, M_NOWAIT);
2255 xfer->send.len = 12;
2256 sfp->mode.wres.tcode = FWTCODE_WRES;
2257 *((uint32_t *)(ntohl(rfp->mode.wreqb.dest_lo))) = rfp->mode.wreqq.data;
2258 sfp->mode.wres.rtcode = 0;
2259 break;
2260 case FWTCODE_RREQB:
2261 xfer->send.buf = malloc(16 + rfp->mode.rreqb.len, M_FW, M_NOWAIT);
2262 xfer->send.len = 16 + ntohs(rfp->mode.rreqb.len);
2263 sfp = (struct fw_pkt *)xfer->send.buf;
2264 bcopy((void *)ntohl(rfp->mode.rreqb.dest_lo),
2265 sfp->mode.rresb.payload, (uint16_t)ntohs(rfp->mode.rreqb.len));
2266 sfp->mode.rresb.tcode = FWTCODE_RRESB;
2267 sfp->mode.rresb.len = rfp->mode.rreqb.len;
2268 sfp->mode.rresb.rtcode = 0;
2269 sfp->mode.rresb.extcode = 0;
2270 break;
2271 case FWTCODE_RREQQ:
2272 xfer->send.buf = malloc(16, M_FW, M_NOWAIT);
2273 xfer->send.len = 16;
2274 sfp = (struct fw_pkt *)xfer->send.buf;
2275 sfp->mode.rresq.data = *(uint32_t *)(ntohl(rfp->mode.rreqq.dest_lo));
2276 sfp->mode.wres.tcode = FWTCODE_RRESQ;
2277 sfp->mode.rresb.rtcode = 0;
2278 break;
2279 default:
2280 fw_xfer_free( xfer);
2281 return;
2282 }
2283 sfp->mode.hdr.dst = rfp->mode.hdr.src;
2284 xfer->dst = ntohs(rfp->mode.hdr.src);
2285 xfer->hand = fw_xfer_free;
2286
2287 sfp->mode.hdr.tlrt = rfp->mode.hdr.tlrt;
2288 sfp->mode.hdr.pri = 0;
2289
2290 fw_asyreq(xfer->fc, -1, xfer);
2291 /**/
2292 return;
2293 }
2294 #endif
2295
2296 /*
2297 * CRC16 check-sum for IEEE1394 register blocks.
2298 */
2299 uint16_t
2300 fw_crc16(uint32_t *ptr, uint32_t len){
2301 uint32_t i, sum, crc = 0;
2302 int shift;
2303 len = (len + 3) & ~3;
2304 for(i = 0 ; i < len ; i+= 4){
2305 for( shift = 28 ; shift >= 0 ; shift -= 4){
2306 sum = ((crc >> 12) ^ (ptr[i/4] >> shift)) & 0xf;
2307 crc = (crc << 4) ^ ( sum << 12 ) ^ ( sum << 5) ^ sum;
2308 }
2309 crc &= 0xffff;
2310 }
2311 return((uint16_t) crc);
2312 }
2313
2314 static int
2315 fw_bmr(struct firewire_comm *fc)
2316 {
2317 struct fw_device fwdev;
2318 union fw_self_id *self_id;
2319 int cmstr;
2320 uint32_t quad;
2321
2322 /* Check to see if the current root node is cycle master capable */
2323 self_id = fw_find_self_id(fc, fc->max_node);
2324 if (fc->max_node > 0) {
2325 /* XXX check cmc bit of businfo block rather than contender */
2326 if (self_id->p0.link_active && self_id->p0.contender)
2327 cmstr = fc->max_node;
2328 else {
2329 fw_printf(fc->bdev,
2330 "root node is not cycle master capable\n");
2331 /* XXX shall we be the cycle master? */
2332 cmstr = fc->nodeid;
2333 /* XXX need bus reset */
2334 }
2335 } else
2336 cmstr = -1;
2337
2338 fw_printf(fc->bdev, "bus manager %d ", CSRARC(fc, BUS_MGR_ID));
2339 if(CSRARC(fc, BUS_MGR_ID) != fc->nodeid) {
2340 /* We are not the bus manager */
2341 printf("\n");
2342 return(0);
2343 }
2344 printf("(me)\n");
2345
2346 /* Optimize gapcount */
2347 if(fc->max_hop <= MAX_GAPHOP )
2348 fw_phy_config(fc, cmstr, gap_cnt[fc->max_hop]);
2349 /* If we are the cycle master, nothing to do */
2350 if (cmstr == fc->nodeid || cmstr == -1)
2351 return 0;
2352 /* Bus probe has not finished, make dummy fwdev for cmstr */
2353 bzero(&fwdev, sizeof(fwdev));
2354 fwdev.fc = fc;
2355 fwdev.dst = cmstr;
2356 fwdev.speed = 0;
2357 fwdev.maxrec = 8; /* 512 */
2358 fwdev.status = FWDEVINIT;
2359 /* Set cmstr bit on the cycle master */
2360 quad = htonl(1 << 8);
2361 fwmem_write_quad(&fwdev, NULL, 0/*spd*/,
2362 0xffff, 0xf0000000 | STATE_SET, &quad, fw_asy_callback_free);
2363
2364 return 0;
2365 }
2366
2367 int
2368 fw_open_isodma(struct firewire_comm *fc, int tx)
2369 {
2370 struct fw_xferq **xferqa;
2371 struct fw_xferq *xferq;
2372 int i;
2373
2374 if (tx)
2375 xferqa = &fc->it[0];
2376 else
2377 xferqa = &fc->ir[0];
2378
2379 FW_GLOCK(fc);
2380 for (i = 0; i < fc->nisodma; i ++) {
2381 xferq = xferqa[i];
2382 if ((xferq->flag & FWXFERQ_OPEN) == 0) {
2383 xferq->flag |= FWXFERQ_OPEN;
2384 break;
2385 }
2386 }
2387 if (i == fc->nisodma) {
2388 printf("no free dma channel (tx=%d)\n", tx);
2389 i = -1;
2390 }
2391 FW_GUNLOCK(fc);
2392 return (i);
2393 }
2394
2395 #if defined(__FreeBSD__)
2396 static int
2397 fw_modevent(module_t mode, int type, void *data)
2398 {
2399 int err = 0;
2400 #if defined(__FreeBSD__) && __FreeBSD_version >= 500000
2401 static eventhandler_tag fwdev_ehtag = NULL;
2402 #endif
2403
2404 switch (type) {
2405 case MOD_LOAD:
2406 #if defined(__FreeBSD__) && __FreeBSD_version >= 500000
2407 fwdev_ehtag = EVENTHANDLER_REGISTER(dev_clone,
2408 fwdev_clone, 0, 1000);
2409 #endif
2410 break;
2411 case MOD_UNLOAD:
2412 #if defined(__FreeBSD__) && __FreeBSD_version >= 500000
2413 if (fwdev_ehtag != NULL)
2414 EVENTHANDLER_DEREGISTER(dev_clone, fwdev_ehtag);
2415 #endif
2416 break;
2417 case MOD_SHUTDOWN:
2418 break;
2419 default:
2420 return (EOPNOTSUPP);
2421 }
2422 return (err);
2423 }
2424
2425
2426 #ifdef __DragonFly__
2427 DECLARE_DUMMY_MODULE(firewire);
2428 #endif
2429 DRIVER_MODULE(firewire,fwohci,firewire_driver,firewire_devclass,fw_modevent,0);
2430 MODULE_VERSION(firewire, 1);
2431 #endif
2432