sbp.c revision 1.5 1 /* $NetBSD: sbp.c,v 1.5 2006/02/25 02:28:58 wiz 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: /repoman/r/ncvs/src/sys/dev/firewire/sbp.c,v 1.81 2005/01/06 01:42:41 imp Exp $
36 *
37 */
38
39 #if defined(__FreeBSD__)
40 #include <sys/param.h>
41 #include <sys/systm.h>
42 #include <sys/conf.h>
43 #include <sys/module.h>
44 #include <sys/bus.h>
45 #include <sys/kernel.h>
46 #include <sys/sysctl.h>
47 #include <machine/bus.h>
48 #include <sys/malloc.h>
49 #if defined(__FreeBSD__) && __FreeBSD_version >= 501102
50 #include <sys/lock.h>
51 #include <sys/mutex.h>
52 #endif
53
54 #if defined(__DragonFly__) || __FreeBSD_version < 500106
55 #include <sys/devicestat.h> /* for struct devstat */
56 #endif
57
58 #ifdef __DragonFly__
59 #include <bus/cam/cam.h>
60 #include <bus/cam/cam_ccb.h>
61 #include <bus/cam/cam_sim.h>
62 #include <bus/cam/cam_xpt_sim.h>
63 #include <bus/cam/cam_debug.h>
64 #include <bus/cam/cam_periph.h>
65 #include <bus/cam/scsi/scsi_all.h>
66
67 #include <bus/firewire/fw_port.h>
68 #include <bus/firewire/firewire.h>
69 #include <bus/firewire/firewirereg.h>
70 #include <bus/firewire/fwdma.h>
71 #include <bus/firewire/iec13213.h>
72 #include "sbp.h"
73 #else
74 #include <cam/cam.h>
75 #include <cam/cam_ccb.h>
76 #include <cam/cam_sim.h>
77 #include <cam/cam_xpt_sim.h>
78 #include <cam/cam_debug.h>
79 #include <cam/cam_periph.h>
80 #include <cam/scsi/scsi_all.h>
81
82 #include <dev/firewire/fw_port.h>
83 #include <dev/firewire/firewire.h>
84 #include <dev/firewire/firewirereg.h>
85 #include <dev/firewire/fwdma.h>
86 #include <dev/firewire/iec13213.h>
87 #include <dev/firewire/sbp.h>
88 #endif
89 #elif defined(__NetBSD__)
90 #include <sys/param.h>
91 #include <sys/device.h>
92 #include <sys/errno.h>
93 #include <sys/buf.h>
94 #include <sys/kernel.h>
95 #include <sys/kthread.h>
96 #include <sys/malloc.h>
97 #include <sys/proc.h>
98 #include <sys/sysctl.h>
99
100 #include <machine/bus.h>
101
102 #include <dev/scsipi/scsi_spc.h>
103 #include <dev/scsipi/scsi_all.h>
104 #include <dev/scsipi/scsipi_all.h>
105 #include <dev/scsipi/scsiconf.h>
106 #include <dev/scsipi/scsipiconf.h>
107
108 #include <dev/ieee1394/fw_port.h>
109 #include <dev/ieee1394/firewire.h>
110 #include <dev/ieee1394/firewirereg.h>
111 #include <dev/ieee1394/fwdma.h>
112 #include <dev/ieee1394/iec13213.h>
113 #include <dev/ieee1394/sbp.h>
114
115 #include "locators.h"
116 #endif
117
118 #define ccb_sdev_ptr spriv_ptr0
119 #define ccb_sbp_ptr spriv_ptr1
120
121 #define SBP_NUM_TARGETS 8 /* MAX 64 */
122 /*
123 * Scan_bus doesn't work for more than 8 LUNs
124 * because of CAM_SCSI2_MAXLUN in cam_xpt.c
125 */
126 #define SBP_NUM_LUNS 64
127 #define SBP_DMA_SIZE PAGE_SIZE
128 #define SBP_LOGIN_SIZE sizeof(struct sbp_login_res)
129 #define SBP_QUEUE_LEN ((SBP_DMA_SIZE - SBP_LOGIN_SIZE) / sizeof(struct sbp_ocb))
130 #define SBP_NUM_OCB (SBP_QUEUE_LEN * SBP_NUM_TARGETS)
131
132 /*
133 * STATUS FIFO addressing
134 * bit
135 * -----------------------
136 * 0- 1( 2): 0 (alignment)
137 * 2- 9( 8): lun
138 * 10-31(14): unit
139 * 32-47(16): SBP_BIND_HI
140 * 48-64(16): bus_id, node_id
141 */
142 #define SBP_BIND_HI 0x1
143 #define SBP_DEV2ADDR(u, l) \
144 (((u_int64_t)SBP_BIND_HI << 32) \
145 | (((u) & 0x3fff) << 10) \
146 | (((l) & 0xff) << 2))
147 #define SBP_ADDR2UNIT(a) (((a) >> 10) & 0x3fff)
148 #define SBP_ADDR2LUN(a) (((a) >> 2) & 0xff)
149 #define SBP_INITIATOR 7
150
151 static const char *orb_fun_name[] = {
152 ORB_FUN_NAMES
153 };
154
155 static int debug = 0;
156 static int auto_login = 1;
157 static int max_speed = -1;
158 static int sbp_cold = 1;
159 static int ex_login = 1;
160 static int login_delay = 1000; /* msec */
161 static int scan_delay = 500; /* msec */
162 static int use_doorbell = 0;
163 static int sbp_tags = 0;
164
165 #if defined(__FreeBSD__)
166 SYSCTL_DECL(_hw_firewire);
167 SYSCTL_NODE(_hw_firewire, OID_AUTO, sbp, CTLFLAG_RD, 0, "SBP-II Subsystem");
168 SYSCTL_INT(_debug, OID_AUTO, sbp_debug, CTLFLAG_RW, &debug, 0,
169 "SBP debug flag");
170 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, auto_login, CTLFLAG_RW, &auto_login, 0,
171 "SBP perform login automatically");
172 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, max_speed, CTLFLAG_RW, &max_speed, 0,
173 "SBP transfer max speed");
174 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, exclusive_login, CTLFLAG_RW,
175 &ex_login, 0, "SBP enable exclusive login");
176 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, login_delay, CTLFLAG_RW,
177 &login_delay, 0, "SBP login delay in msec");
178 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, scan_delay, CTLFLAG_RW,
179 &scan_delay, 0, "SBP scan delay in msec");
180 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, use_doorbell, CTLFLAG_RW,
181 &use_doorbell, 0, "SBP use doorbell request");
182 SYSCTL_INT(_hw_firewire_sbp, OID_AUTO, tags, CTLFLAG_RW, &sbp_tags, 0,
183 "SBP tagged queuing support");
184
185 TUNABLE_INT("hw.firewire.sbp.auto_login", &auto_login);
186 TUNABLE_INT("hw.firewire.sbp.max_speed", &max_speed);
187 TUNABLE_INT("hw.firewire.sbp.exclusive_login", &ex_login);
188 TUNABLE_INT("hw.firewire.sbp.login_delay", &login_delay);
189 TUNABLE_INT("hw.firewire.sbp.scan_delay", &scan_delay);
190 TUNABLE_INT("hw.firewire.sbp.use_doorbell", &use_doorbell);
191 TUNABLE_INT("hw.firewire.sbp.tags", &sbp_tags);
192 #elif defined(__NetBSD__)
193 static int sysctl_sbp_verify(SYSCTLFN_PROTO, int lower, int upper);
194 static int sysctl_sbp_verify_max_speed(SYSCTLFN_PROTO);
195 static int sysctl_sbp_verify_tags(SYSCTLFN_PROTO);
196
197 /*
198 * Setup sysctl(3) MIB, hw.sbp.*
199 *
200 * TBD condition CTLFLAG_PERMANENT on being an LKM or not
201 */
202 SYSCTL_SETUP(sysctl_sbp, "sysctl sbp(4) subtree setup")
203 {
204 int rc, sbp_node_num;
205 const struct sysctlnode *node;
206
207 if ((rc = sysctl_createv(clog, 0, NULL, NULL,
208 CTLFLAG_PERMANENT, CTLTYPE_NODE, "hw", NULL,
209 NULL, 0, NULL, 0, CTL_HW, CTL_EOL)) != 0) {
210 goto err;
211 }
212
213 if ((rc = sysctl_createv(clog, 0, NULL, &node,
214 CTLFLAG_PERMANENT, CTLTYPE_NODE, "sbp",
215 SYSCTL_DESCR("sbp controls"), NULL, 0, NULL,
216 0, CTL_HW, CTL_CREATE, CTL_EOL)) != 0) {
217 goto err;
218 }
219 sbp_node_num = node->sysctl_num;
220
221 /* sbp auto login flag */
222 if ((rc = sysctl_createv(clog, 0, NULL, &node,
223 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
224 "auto_login", SYSCTL_DESCR("SBP perform login automatically"),
225 NULL, 0, &auto_login,
226 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
227 goto err;
228 }
229
230 /* sbp max speed */
231 if ((rc = sysctl_createv(clog, 0, NULL, &node,
232 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
233 "max_speed", SYSCTL_DESCR("SBP transfer max speed"),
234 sysctl_sbp_verify_max_speed, 0, &max_speed,
235 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
236 goto err;
237 }
238
239 /* sbp exclusive login flag */
240 if ((rc = sysctl_createv(clog, 0, NULL, &node,
241 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
242 "exclusive_login", SYSCTL_DESCR("SBP enable exclusive login"),
243 NULL, 0, &ex_login,
244 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
245 goto err;
246 }
247
248 /* sbp login delay */
249 if ((rc = sysctl_createv(clog, 0, NULL, &node,
250 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
251 "login_delay", SYSCTL_DESCR("SBP login delay in msec"),
252 NULL, 0, &login_delay,
253 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
254 goto err;
255 }
256
257 /* sbp scan delay */
258 if ((rc = sysctl_createv(clog, 0, NULL, &node,
259 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
260 "scan_delay", SYSCTL_DESCR("SBP scan delay in msec"),
261 NULL, 0, &scan_delay,
262 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
263 goto err;
264 }
265
266 /* sbp use doorbell flag */
267 if ((rc = sysctl_createv(clog, 0, NULL, &node,
268 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
269 "use_doorbell", SYSCTL_DESCR("SBP use doorbell request"),
270 NULL, 0, &use_doorbell,
271 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
272 goto err;
273 }
274
275 /* sbp force tagged queuing */
276 if ((rc = sysctl_createv(clog, 0, NULL, &node,
277 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
278 "tags", SYSCTL_DESCR("SBP tagged queuing support"),
279 sysctl_sbp_verify_tags, 0, &sbp_tags,
280 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
281 goto err;
282 }
283
284 /* sbp driver debug flag */
285 if ((rc = sysctl_createv(clog, 0, NULL, &node,
286 CTLFLAG_PERMANENT | CTLFLAG_READWRITE, CTLTYPE_INT,
287 "sbp_debug", SYSCTL_DESCR("SBP debug flag"),
288 NULL, 0, &debug,
289 0, CTL_HW, sbp_node_num, CTL_CREATE, CTL_EOL)) != 0) {
290 goto err;
291 }
292
293 return;
294
295 err:
296 printf("%s: sysctl_createv failed (rc = %d)\n", __func__, rc);
297 }
298
299 static int
300 sysctl_sbp_verify(SYSCTLFN_ARGS, int lower, int upper)
301 {
302 int error, t;
303 struct sysctlnode node;
304
305 node = *rnode;
306 t = *(int*)rnode->sysctl_data;
307 node.sysctl_data = &t;
308 error = sysctl_lookup(SYSCTLFN_CALL(&node));
309 if (error || newp == NULL)
310 return (error);
311
312 if (t < lower || t > upper)
313 return (EINVAL);
314
315 *(int*)rnode->sysctl_data = t;
316
317 return (0);
318 }
319
320 static int
321 sysctl_sbp_verify_max_speed(SYSCTLFN_ARGS)
322 {
323 return (sysctl_sbp_verify(SYSCTLFN_CALL(rnode), 0, FWSPD_S400));
324 }
325
326 static int
327 sysctl_sbp_verify_tags(SYSCTLFN_ARGS)
328 {
329 return (sysctl_sbp_verify(SYSCTLFN_CALL(rnode), -1, 1));
330 }
331 #endif
332
333 #define NEED_RESPONSE 0
334
335 #define SBP_SEG_MAX rounddown(0xffff, PAGE_SIZE)
336 #ifdef __sparc64__ /* iommu */
337 #define SBP_IND_MAX howmany(MAXPHYS, SBP_SEG_MAX)
338 #else
339 #define SBP_IND_MAX howmany(MAXPHYS, PAGE_SIZE)
340 #endif
341 struct sbp_ocb {
342 STAILQ_ENTRY(sbp_ocb) ocb;
343 sbp_scsi_xfer *sxfer;
344 bus_addr_t bus_addr;
345 uint32_t orb[8];
346 #define IND_PTR_OFFSET (8*sizeof(uint32_t))
347 struct ind_ptr ind_ptr[SBP_IND_MAX];
348 struct sbp_dev *sdev;
349 int flags; /* XXX should be removed */
350 bus_dmamap_t dmamap;
351 };
352
353 #define OCB_ACT_MGM 0
354 #define OCB_ACT_CMD 1
355 #define OCB_MATCH(o,s) ((o)->bus_addr == ntohl((s)->orb_lo))
356
357 struct sbp_dev{
358 #define SBP_DEV_RESET 0 /* accept login */
359 #define SBP_DEV_LOGIN 1 /* to login */
360 #if 0
361 #define SBP_DEV_RECONN 2 /* to reconnect */
362 #endif
363 #define SBP_DEV_TOATTACH 3 /* to attach */
364 #define SBP_DEV_PROBE 4 /* scan lun */
365 #define SBP_DEV_ATTACHED 5 /* in operation */
366 #define SBP_DEV_DEAD 6 /* unavailable unit */
367 #define SBP_DEV_RETRY 7 /* unavailable unit */
368 uint8_t status:4,
369 timeout:4;
370 uint8_t type;
371 uint16_t lun_id;
372 uint16_t freeze;
373 #define ORB_LINK_DEAD (1 << 0)
374 #define VALID_LUN (1 << 1)
375 #define ORB_POINTER_ACTIVE (1 << 2)
376 #define ORB_POINTER_NEED (1 << 3)
377 #define ORB_DOORBELL_ACTIVE (1 << 4)
378 #define ORB_DOORBELL_NEED (1 << 5)
379 #define ORB_SHORTAGE (1 << 6)
380 uint16_t flags;
381 #if defined(__FreeBSD__)
382 struct cam_path *path;
383 #elif defined(__NetBSD__)
384 struct scsipi_periph *periph;
385 #endif
386 struct sbp_target *target;
387 struct fwdma_alloc dma;
388 struct sbp_login_res *login;
389 struct callout login_callout;
390 struct sbp_ocb *ocb;
391 STAILQ_HEAD(, sbp_ocb) ocbs;
392 STAILQ_HEAD(, sbp_ocb) free_ocbs;
393 struct sbp_ocb *last_ocb;
394 char vendor[32];
395 char product[32];
396 char revision[10];
397 };
398
399 struct sbp_target {
400 int target_id;
401 int num_lun;
402 struct sbp_dev **luns;
403 struct sbp_softc *sbp;
404 struct fw_device *fwdev;
405 uint32_t mgm_hi, mgm_lo;
406 struct sbp_ocb *mgm_ocb_cur;
407 STAILQ_HEAD(, sbp_ocb) mgm_ocb_queue;
408 struct callout mgm_ocb_timeout;
409 struct callout scan_callout;
410 STAILQ_HEAD(, fw_xfer) xferlist;
411 int n_xfer;
412 };
413
414 struct sbp_softc {
415 struct firewire_dev_comm fd;
416 #if defined(__FreeBSD__)
417 struct cam_sim *sim;
418 struct cam_path *path;
419 #elif defined(__NetBSD__)
420 struct scsipi_adapter sc_adapter;
421 struct scsipi_channel sc_channel;
422 struct device *sc_bus;
423 struct proc *proc;
424 #endif
425 struct sbp_target target;
426 struct fw_bind fwb;
427 fw_bus_dma_tag_t dmat;
428 struct timeval last_busreset;
429 #define SIMQ_FREEZED 1
430 int flags;
431 };
432
433 #if defined(__NetBSD__)
434 int sbpmatch (struct device *, struct cfdata *, void *);
435 void sbpattach (struct device *parent, struct device *self, void *aux);
436 int sbpdetach (struct device *self, int flags);
437 #endif
438 static void sbp_post_explore (void *);
439 static void sbp_recv (struct fw_xfer *);
440 static void sbp_mgm_callback (struct fw_xfer *);
441 #if 0
442 static void sbp_cmd_callback (struct fw_xfer *);
443 #endif
444 static void sbp_orb_pointer (struct sbp_dev *, struct sbp_ocb *);
445 static void sbp_doorbell(struct sbp_dev *);
446 static void sbp_execute_ocb (void *, bus_dma_segment_t *, int, int);
447 static void sbp_free_ocb (struct sbp_dev *, struct sbp_ocb *);
448 static void sbp_abort_ocb (struct sbp_ocb *, int);
449 static void sbp_abort_all_ocbs (struct sbp_dev *, int);
450 static struct fw_xfer * sbp_write_cmd (struct sbp_dev *, int, int);
451 static struct sbp_ocb * sbp_get_ocb (struct sbp_dev *);
452 static struct sbp_ocb * sbp_enqueue_ocb (struct sbp_dev *, struct sbp_ocb *);
453 static struct sbp_ocb * sbp_dequeue_ocb (struct sbp_dev *, struct sbp_status *);
454 static void sbp_free_sdev(struct sbp_dev *);
455 static void sbp_free_target (struct sbp_target *);
456 static void sbp_mgm_timeout (void *arg);
457 static void sbp_timeout (void *arg);
458 static void sbp_mgm_orb (struct sbp_dev *, int, struct sbp_ocb *);
459 #if defined(__FreeBSD__)
460
461 MALLOC_DEFINE(M_SBP, "sbp", "SBP-II/FireWire");
462 #elif defined(__NetBSD__)
463 static void sbp_scsipi_request(
464 struct scsipi_channel *, scsipi_adapter_req_t, void *);
465 static void sbp_minphys(struct buf *);
466
467 MALLOC_DEFINE(M_SBP, "sbp", "SBP-II/IEEE1394");
468 #endif
469
470 #if defined(__FreeBSD__)
471 /* cam related functions */
472 static void sbp_action(struct cam_sim *, sbp_scsi_xfer *sxfer);
473 static void sbp_poll(struct cam_sim *);
474 static void sbp_cam_scan_lun(struct cam_periph *, sbp_scsi_xfer *);
475 static void sbp_cam_scan_target(void *);
476 static void sbp_cam_detach_sdev(struct sbp_dev *);
477 static void sbp_cam_detach_target (struct sbp_target *);
478 #define SBP_DETACH_SDEV(sd) sbp_cam_detach_sdev((sd))
479 #define SBP_DETACH_TARGET(st) sbp_cam_detach_target((st))
480 #elif defined(__NetBSD__)
481 /* scsipi related functions */
482 static void fw_kthread_create0(void *);
483 static void sbp_scsipi_scan_target(void *);
484 static void sbp_scsipi_detach_sdev(struct sbp_dev *);
485 static void sbp_scsipi_detach_target (struct sbp_target *);
486 #define SBP_DETACH_SDEV(sd) sbp_scsipi_detach_sdev((sd))
487 #define SBP_DETACH_TARGET(st) sbp_scsipi_detach_target((st))
488 #endif
489
490 static const char *orb_status0[] = {
491 /* 0 */ "No additional information to report",
492 /* 1 */ "Request type not supported",
493 /* 2 */ "Speed not supported",
494 /* 3 */ "Page size not supported",
495 /* 4 */ "Access denied",
496 /* 5 */ "Logical unit not supported",
497 /* 6 */ "Maximum payload too small",
498 /* 7 */ "Reserved for future standardization",
499 /* 8 */ "Resources unavailable",
500 /* 9 */ "Function rejected",
501 /* A */ "Login ID not recognized",
502 /* B */ "Dummy ORB completed",
503 /* C */ "Request aborted",
504 /* FF */ "Unspecified error"
505 #define MAX_ORB_STATUS0 0xd
506 };
507
508 static const char *orb_status1_object[] = {
509 /* 0 */ "Operation request block (ORB)",
510 /* 1 */ "Data buffer",
511 /* 2 */ "Page table",
512 /* 3 */ "Unable to specify"
513 };
514
515 static const char *orb_status1_serial_bus_error[] = {
516 /* 0 */ "Missing acknowledge",
517 /* 1 */ "Reserved; not to be used",
518 /* 2 */ "Time-out error",
519 /* 3 */ "Reserved; not to be used",
520 /* 4 */ "Busy retry limit exceeded(X)",
521 /* 5 */ "Busy retry limit exceeded(A)",
522 /* 6 */ "Busy retry limit exceeded(B)",
523 /* 7 */ "Reserved for future standardization",
524 /* 8 */ "Reserved for future standardization",
525 /* 9 */ "Reserved for future standardization",
526 /* A */ "Reserved for future standardization",
527 /* B */ "Tardy retry limit exceeded",
528 /* C */ "Conflict error",
529 /* D */ "Data error",
530 /* E */ "Type error",
531 /* F */ "Address error"
532 };
533
534 #if defined(__FreeBSD__)
535 #if 0
536 static void
537 sbp_identify(driver_t *driver, device_t parent)
538 {
539 device_t child;
540 SBP_DEBUG(0)
541 printf("sbp_identify\n");
542 END_DEBUG
543
544 child = BUS_ADD_CHILD(parent, 0, "sbp", device_get_unit(parent));
545 }
546 #endif
547
548 /*
549 * sbp_probe()
550 */
551 static int
552 sbp_probe(device_t dev)
553 {
554 device_t pa;
555
556 SBP_DEBUG(0)
557 printf("sbp_probe\n");
558 END_DEBUG
559
560 pa = device_get_parent(dev);
561 if(device_get_unit(dev) != device_get_unit(pa)){
562 return(ENXIO);
563 }
564
565 device_set_desc(dev, "SBP-2/SCSI over FireWire");
566
567 #if 0
568 if (bootverbose)
569 debug = bootverbose;
570 #endif
571
572 return (0);
573 }
574 #elif defined(__NetBSD__)
575 int
576 sbpmatch(struct device *parent, struct cfdata *cf, void *aux)
577 {
578 struct fw_attach_args *fwa = aux;
579
580 if (strcmp(fwa->name, "sbp") == 0)
581 return (1);
582 return (0);
583 }
584 #endif
585
586 static void
587 sbp_show_sdev_info(struct sbp_dev *sdev, int new)
588 {
589 struct fw_device *fwdev;
590
591 printf("%s:%d:%d ",
592 device_get_nameunit(sdev->target->sbp->fd.dev),
593 sdev->target->target_id,
594 sdev->lun_id
595 );
596 if (new == 2) {
597 return;
598 }
599 fwdev = sdev->target->fwdev;
600 printf("ordered:%d type:%d EUI:%08x%08x node:%d "
601 "speed:%d maxrec:%d",
602 (sdev->type & 0x40) >> 6,
603 (sdev->type & 0x1f),
604 fwdev->eui.hi,
605 fwdev->eui.lo,
606 fwdev->dst,
607 fwdev->speed,
608 fwdev->maxrec
609 );
610 if (new)
611 printf(" new!\n");
612 else
613 printf("\n");
614 sbp_show_sdev_info(sdev, 2);
615 printf("'%s' '%s' '%s'\n", sdev->vendor, sdev->product, sdev->revision);
616 }
617
618 static void
619 sbp_alloc_lun(struct sbp_target *target)
620 {
621 struct crom_context cc;
622 struct csrreg *reg;
623 struct sbp_dev *sdev, **newluns;
624 struct sbp_softc *sbp;
625 int maxlun, lun, i;
626
627 sbp = target->sbp;
628 crom_init_context(&cc, target->fwdev->csrrom);
629 /* XXX shoud parse appropriate unit directories only */
630 maxlun = -1;
631 while (cc.depth >= 0) {
632 reg = crom_search_key(&cc, CROM_LUN);
633 if (reg == NULL)
634 break;
635 lun = reg->val & 0xffff;
636 SBP_DEBUG(0)
637 printf("target %d lun %d found\n", target->target_id, lun);
638 END_DEBUG
639 if (maxlun < lun)
640 maxlun = lun;
641 crom_next(&cc);
642 }
643 if (maxlun < 0)
644 printf("%s:%d no LUN found\n",
645 device_get_nameunit(target->sbp->fd.dev),
646 target->target_id);
647
648 maxlun ++;
649 if (maxlun >= SBP_NUM_LUNS)
650 maxlun = SBP_NUM_LUNS;
651
652 /* Invalidiate stale devices */
653 for (lun = 0; lun < target->num_lun; lun ++) {
654 sdev = target->luns[lun];
655 if (sdev == NULL)
656 continue;
657 sdev->flags &= ~VALID_LUN;
658 if (lun >= maxlun) {
659 /* lost device */
660 SBP_DETACH_SDEV(sdev);
661 sbp_free_sdev(sdev);
662 }
663 }
664
665 /* Reallocate */
666 if (maxlun != target->num_lun) {
667 newluns = (struct sbp_dev **) realloc(target->luns,
668 sizeof(struct sbp_dev *) * maxlun,
669 M_SBP, M_NOWAIT | M_ZERO);
670
671 if (newluns == NULL) {
672 printf("%s: realloc failed\n", __func__);
673 newluns = target->luns;
674 maxlun = target->num_lun;
675 }
676
677 /*
678 * We must zero the extended region for the case
679 * realloc() doesn't allocate new buffer.
680 */
681 if (maxlun > target->num_lun)
682 bzero(&newluns[target->num_lun],
683 sizeof(struct sbp_dev *) *
684 (maxlun - target->num_lun));
685
686 target->luns = newluns;
687 target->num_lun = maxlun;
688 }
689
690 crom_init_context(&cc, target->fwdev->csrrom);
691 while (cc.depth >= 0) {
692 int new = 0;
693
694 reg = crom_search_key(&cc, CROM_LUN);
695 if (reg == NULL)
696 break;
697 lun = reg->val & 0xffff;
698 if (lun >= SBP_NUM_LUNS) {
699 printf("too large lun %d\n", lun);
700 goto next;
701 }
702
703 sdev = target->luns[lun];
704 if (sdev == NULL) {
705 sdev = malloc(sizeof(struct sbp_dev),
706 M_SBP, M_NOWAIT | M_ZERO);
707 if (sdev == NULL) {
708 printf("%s: malloc failed\n", __func__);
709 goto next;
710 }
711 target->luns[lun] = sdev;
712 sdev->lun_id = lun;
713 sdev->target = target;
714 STAILQ_INIT(&sdev->ocbs);
715 CALLOUT_INIT(&sdev->login_callout);
716 sdev->status = SBP_DEV_RESET;
717 new = 1;
718 SBP_DEVICE_PREATTACH();
719 }
720 sdev->flags |= VALID_LUN;
721 sdev->type = (reg->val & 0xff0000) >> 16;
722
723 if (new == 0)
724 goto next;
725
726 fwdma_malloc(sbp->fd.fc,
727 /* alignment */ sizeof(uint32_t),
728 SBP_DMA_SIZE, &sdev->dma, BUS_DMA_NOWAIT);
729 if (sdev->dma.v_addr == NULL) {
730 printf("%s: dma space allocation failed\n",
731 __func__);
732 free(sdev, M_SBP);
733 target->luns[lun] = NULL;
734 goto next;
735 }
736 sdev->login = (struct sbp_login_res *) sdev->dma.v_addr;
737 sdev->ocb = (struct sbp_ocb *)
738 ((char *)sdev->dma.v_addr + SBP_LOGIN_SIZE);
739 bzero((char *)sdev->ocb,
740 sizeof (struct sbp_ocb) * SBP_QUEUE_LEN);
741
742 STAILQ_INIT(&sdev->free_ocbs);
743 for (i = 0; i < SBP_QUEUE_LEN; i++) {
744 struct sbp_ocb *ocb;
745 ocb = &sdev->ocb[i];
746 ocb->bus_addr = sdev->dma.bus_addr
747 + SBP_LOGIN_SIZE
748 + sizeof(struct sbp_ocb) * i
749 + offsetof(struct sbp_ocb, orb[0]);
750 if (fw_bus_dmamap_create(sbp->dmat, 0, &ocb->dmamap)) {
751 printf("sbp_attach: cannot create dmamap\n");
752 /* XXX */
753 goto next;
754 }
755 sbp_free_ocb(sdev, ocb);
756 }
757 next:
758 crom_next(&cc);
759 }
760
761 for (lun = 0; lun < target->num_lun; lun ++) {
762 sdev = target->luns[lun];
763 if (sdev != NULL && (sdev->flags & VALID_LUN) == 0) {
764 SBP_DETACH_SDEV(sdev);
765 sbp_free_sdev(sdev);
766 target->luns[lun] = NULL;
767 }
768 }
769 }
770
771 static struct sbp_target *
772 sbp_alloc_target(struct sbp_softc *sbp, struct fw_device *fwdev)
773 {
774 struct sbp_target *target;
775 struct crom_context cc;
776 struct csrreg *reg;
777
778 SBP_DEBUG(1)
779 printf("sbp_alloc_target\n");
780 END_DEBUG
781 /* new target */
782 target = &sbp->target;
783 target->sbp = sbp;
784 target->fwdev = fwdev;
785 target->target_id = 0;
786 /* XXX we may want to reload mgm port after each bus reset */
787 /* XXX there might be multiple management agents */
788 crom_init_context(&cc, target->fwdev->csrrom);
789 reg = crom_search_key(&cc, CROM_MGM);
790 if (reg == NULL || reg->val == 0) {
791 printf("NULL management address\n");
792 target->fwdev = NULL;
793 return NULL;
794 }
795 target->mgm_hi = 0xffff;
796 target->mgm_lo = 0xf0000000 | (reg->val << 2);
797 target->mgm_ocb_cur = NULL;
798 SBP_DEBUG(1)
799 printf("target: mgm_port: %x\n", target->mgm_lo);
800 END_DEBUG
801 STAILQ_INIT(&target->xferlist);
802 target->n_xfer = 0;
803 STAILQ_INIT(&target->mgm_ocb_queue);
804 CALLOUT_INIT(&target->mgm_ocb_timeout);
805 CALLOUT_INIT(&target->scan_callout);
806
807 target->luns = NULL;
808 target->num_lun = 0;
809 return target;
810 }
811
812 static void
813 sbp_probe_lun(struct sbp_dev *sdev)
814 {
815 struct fw_device *fwdev;
816 struct crom_context c, *cc = &c;
817 struct csrreg *reg;
818
819 bzero(sdev->vendor, sizeof(sdev->vendor));
820 bzero(sdev->product, sizeof(sdev->product));
821
822 fwdev = sdev->target->fwdev;
823 crom_init_context(cc, fwdev->csrrom);
824 /* get vendor string */
825 crom_search_key(cc, CSRKEY_VENDOR);
826 crom_next(cc);
827 crom_parse_text(cc, sdev->vendor, sizeof(sdev->vendor));
828 /* skip to the unit directory for SBP-2 */
829 while ((reg = crom_search_key(cc, CSRKEY_VER)) != NULL) {
830 if (reg->val == CSRVAL_T10SBP2)
831 break;
832 crom_next(cc);
833 }
834 /* get firmware revision */
835 reg = crom_search_key(cc, CSRKEY_FIRM_VER);
836 if (reg != NULL)
837 snprintf(sdev->revision, sizeof(sdev->revision),
838 "%06x", reg->val);
839 /* get product string */
840 crom_search_key(cc, CSRKEY_MODEL);
841 crom_next(cc);
842 crom_parse_text(cc, sdev->product, sizeof(sdev->product));
843 }
844
845 static void
846 sbp_login_callout(void *arg)
847 {
848 struct sbp_dev *sdev = (struct sbp_dev *)arg;
849 sbp_mgm_orb(sdev, ORB_FUN_LGI, NULL);
850 }
851
852 static void
853 sbp_login(struct sbp_dev *sdev)
854 {
855 struct timeval delta;
856 struct timeval t;
857 int ticks = 0;
858
859 microtime(&delta);
860 timevalsub(&delta, &sdev->target->sbp->last_busreset);
861 t.tv_sec = login_delay / 1000;
862 t.tv_usec = (login_delay % 1000) * 1000;
863 timevalsub(&t, &delta);
864 if (t.tv_sec >= 0 && t.tv_usec > 0)
865 ticks = (t.tv_sec * 1000 + t.tv_usec / 1000) * hz / 1000;
866 SBP_DEBUG(0)
867 printf("%s: sec = %ld usec = %ld ticks = %d\n", __func__,
868 t.tv_sec, t.tv_usec, ticks);
869 END_DEBUG
870 callout_reset(&sdev->login_callout, ticks,
871 sbp_login_callout, (void *)(sdev));
872 }
873
874 static void
875 sbp_probe_target(void *arg)
876 {
877 struct sbp_target *target = (struct sbp_target *)arg;
878 struct sbp_softc *sbp;
879 struct sbp_dev *sdev;
880 struct firewire_comm *fc;
881 int i;
882
883 SBP_DEBUG(1)
884 printf("sbp_probe_target %d\n", target->target_id);
885 END_DEBUG
886
887 sbp = target->sbp;
888 fc = target->sbp->fd.fc;
889 sbp_alloc_lun(target);
890
891 /* XXX untimeout mgm_ocb and dequeue */
892 for (i=0; i < target->num_lun; i++) {
893 sdev = target->luns[i];
894 if (sdev == NULL)
895 continue;
896 if (sdev->status != SBP_DEV_DEAD) {
897 if (SBP_DEVICE(sdev) != NULL) {
898 SBP_DEVICE_FREEZE(sdev, 1);
899 sdev->freeze ++;
900 }
901 sbp_probe_lun(sdev);
902 SBP_DEBUG(0)
903 sbp_show_sdev_info(sdev,
904 (sdev->status == SBP_DEV_RESET));
905 END_DEBUG
906
907 sbp_abort_all_ocbs(sdev, XS_SCSI_BUS_RESET);
908 switch (sdev->status) {
909 case SBP_DEV_RESET:
910 /* new or revived target */
911 if (auto_login)
912 sbp_login(sdev);
913 break;
914 case SBP_DEV_TOATTACH:
915 case SBP_DEV_PROBE:
916 case SBP_DEV_ATTACHED:
917 case SBP_DEV_RETRY:
918 default:
919 sbp_mgm_orb(sdev, ORB_FUN_RCN, NULL);
920 break;
921 }
922 } else {
923 switch (sdev->status) {
924 case SBP_DEV_ATTACHED:
925 SBP_DEBUG(0)
926 /* the device has gone */
927 sbp_show_sdev_info(sdev, 2);
928 printf("lost target\n");
929 END_DEBUG
930 if (SBP_DEVICE(sdev) != NULL) {
931 SBP_DEVICE_FREEZE(sdev, 1);
932 sdev->freeze ++;
933 }
934 sdev->status = SBP_DEV_RETRY;
935 sbp_abort_all_ocbs(sdev, XS_SCSI_BUS_RESET);
936 break;
937 case SBP_DEV_PROBE:
938 case SBP_DEV_TOATTACH:
939 sdev->status = SBP_DEV_RESET;
940 break;
941 case SBP_DEV_RETRY:
942 case SBP_DEV_RESET:
943 case SBP_DEV_DEAD:
944 break;
945 }
946 }
947 }
948 }
949
950 #define SBP_FWDEV_ALIVE(fwdev) (((fwdev)->status == FWDEVATTACHED) \
951 && crom_has_specver((fwdev)->csrrom, CSRVAL_ANSIT10, CSRVAL_T10SBP2))
952
953 static void
954 sbp_post_busreset(void *arg)
955 {
956 struct sbp_softc *sbp = (struct sbp_softc *)arg;
957 struct sbp_target *target = &sbp->target;
958 struct fw_device *fwdev = target->fwdev;
959 int alive;
960
961 alive = SBP_FWDEV_ALIVE(fwdev);
962 SBP_DEBUG(0)
963 printf("sbp_post_busreset\n");
964 if (!alive)
965 printf("not alive\n");
966 END_DEBUG
967 if (!alive)
968 return;
969
970 SBP_BUS_FREEZE(sbp);
971
972 microtime(&sbp->last_busreset);
973 }
974
975 static void
976 sbp_post_explore(void *arg)
977 {
978 struct sbp_softc *sbp = (struct sbp_softc *)arg;
979 struct sbp_target *target = &sbp->target;
980 struct fw_device *fwdev = target->fwdev;
981 int alive;
982
983 alive = SBP_FWDEV_ALIVE(fwdev);
984 SBP_DEBUG(0)
985 printf("sbp_post_explore (sbp_cold=%d)\n", sbp_cold);
986 if (!alive)
987 printf("not alive\n");
988 END_DEBUG
989 if (!alive)
990 return;
991
992 if (sbp_cold > 0)
993 sbp_cold --;
994
995 #if 0
996 /*
997 * XXX don't let CAM the bus rest.
998 * CAM tries to do something with freezed (DEV_RETRY) devices.
999 */
1000 xpt_async(AC_BUS_RESET, sbp->path, /*arg*/ NULL);
1001 #endif
1002
1003 SBP_DEBUG(0)
1004 printf("sbp_post_explore: EUI:%08x%08x ", fwdev->eui.hi, fwdev->eui.lo);
1005 END_DEBUG
1006 sbp_probe_target((void *)target);
1007 if (target->num_lun == 0)
1008 sbp_free_target(target);
1009
1010 SBP_BUS_THAW(sbp);
1011 }
1012
1013 #if NEED_RESPONSE
1014 static void
1015 sbp_loginres_callback(struct fw_xfer *xfer){
1016 int s;
1017 struct sbp_dev *sdev;
1018 sdev = (struct sbp_dev *)xfer->sc;
1019 SBP_DEBUG(1)
1020 sbp_show_sdev_info(sdev, 2);
1021 printf("sbp_loginres_callback\n");
1022 END_DEBUG
1023 /* recycle */
1024 s = splfw();
1025 STAILQ_INSERT_TAIL(&sdev->target->sbp->fwb.xferlist, xfer, link);
1026 splx(s);
1027 return;
1028 }
1029 #endif
1030
1031 static inline void
1032 sbp_xfer_free(struct fw_xfer *xfer)
1033 {
1034 struct sbp_dev *sdev;
1035 int s;
1036
1037 sdev = (struct sbp_dev *)xfer->sc;
1038 fw_xfer_unload(xfer);
1039 s = splfw();
1040 STAILQ_INSERT_TAIL(&sdev->target->xferlist, xfer, link);
1041 splx(s);
1042 }
1043
1044 static void
1045 sbp_reset_start_callback(struct fw_xfer *xfer)
1046 {
1047 struct sbp_dev *tsdev, *sdev = (struct sbp_dev *)xfer->sc;
1048 struct sbp_target *target = sdev->target;
1049 int i;
1050
1051 if (xfer->resp != 0) {
1052 sbp_show_sdev_info(sdev, 2);
1053 printf("sbp_reset_start failed: resp=%d\n", xfer->resp);
1054 }
1055
1056 for (i = 0; i < target->num_lun; i++) {
1057 tsdev = target->luns[i];
1058 if (tsdev != NULL && tsdev->status == SBP_DEV_LOGIN)
1059 sbp_login(tsdev);
1060 }
1061 }
1062
1063 static void
1064 sbp_reset_start(struct sbp_dev *sdev)
1065 {
1066 struct fw_xfer *xfer;
1067 struct fw_pkt *fp;
1068
1069 SBP_DEBUG(0)
1070 sbp_show_sdev_info(sdev, 2);
1071 printf("sbp_reset_start\n");
1072 END_DEBUG
1073
1074 xfer = sbp_write_cmd(sdev, FWTCODE_WREQQ, 0);
1075 xfer->hand = sbp_reset_start_callback;
1076 fp = &xfer->send.hdr;
1077 fp->mode.wreqq.dest_hi = 0xffff;
1078 fp->mode.wreqq.dest_lo = 0xf0000000 | RESET_START;
1079 fp->mode.wreqq.data = htonl(0xf);
1080 fw_asyreq(xfer->fc, -1, xfer);
1081 }
1082
1083 static void
1084 sbp_mgm_callback(struct fw_xfer *xfer)
1085 {
1086 struct sbp_dev *sdev;
1087 int resp;
1088
1089 sdev = (struct sbp_dev *)xfer->sc;
1090
1091 SBP_DEBUG(1)
1092 sbp_show_sdev_info(sdev, 2);
1093 printf("sbp_mgm_callback\n");
1094 END_DEBUG
1095 resp = xfer->resp;
1096 sbp_xfer_free(xfer);
1097 #if 0
1098 if (resp != 0) {
1099 sbp_show_sdev_info(sdev, 2);
1100 printf("management ORB failed(%d) ... RESET_START\n", resp);
1101 sbp_reset_start(sdev);
1102 }
1103 #endif
1104 return;
1105 }
1106
1107 #if defined(__FreeBSD__)
1108 static struct sbp_dev *
1109 sbp_next_dev(struct sbp_target *target, int lun)
1110 {
1111 struct sbp_dev **sdevp;
1112 int i;
1113
1114 for (i = lun, sdevp = &target->luns[lun]; i < target->num_lun;
1115 i++, sdevp++)
1116 if (*sdevp != NULL && (*sdevp)->status == SBP_DEV_PROBE)
1117 return(*sdevp);
1118 return(NULL);
1119 }
1120
1121 #define SCAN_PRI 1
1122 static void
1123 sbp_cam_scan_lun(struct cam_periph *periph, sbp_scsi_xfer *sxfer)
1124 {
1125 struct sbp_target *target;
1126 struct sbp_dev *sdev;
1127
1128 sdev = (struct sbp_dev *) sxfer->ccb_h.ccb_sdev_ptr;
1129 target = sdev->target;
1130 SBP_DEBUG(0)
1131 sbp_show_sdev_info(sdev, 2);
1132 printf("sbp_cam_scan_lun\n");
1133 END_DEBUG
1134 if ((SCSI_XFER_ERROR(sxfer) & CAM_STATUS_MASK) == XS_REQ_CMP) {
1135 sdev->status = SBP_DEV_ATTACHED;
1136 } else {
1137 sbp_show_sdev_info(sdev, 2);
1138 printf("scan failed\n");
1139 }
1140 sdev = sbp_next_dev(target, sdev->lun_id + 1);
1141 if (sdev == NULL) {
1142 free(sxfer, M_SBP);
1143 return;
1144 }
1145 /* reuse sxfer */
1146 xpt_setup_ccb(&sxfer->ccb_h, sdev->path, SCAN_PRI);
1147 sxfer->ccb_h.ccb_sdev_ptr = sdev;
1148 xpt_action(sxfer);
1149 xpt_release_devq(sdev->path, sdev->freeze, TRUE);
1150 sdev->freeze = 1;
1151 }
1152
1153 static void
1154 sbp_cam_scan_target(void *arg)
1155 {
1156 struct sbp_target *target = (struct sbp_target *)arg;
1157 struct sbp_dev *sdev;
1158 sbp_scsi_xfer *sxfer;
1159
1160 sdev = sbp_next_dev(target, 0);
1161 if (sdev == NULL) {
1162 printf("sbp_cam_scan_target: nothing to do for target%d\n",
1163 target->target_id);
1164 return;
1165 }
1166 SBP_DEBUG(0)
1167 sbp_show_sdev_info(sdev, 2);
1168 printf("sbp_cam_scan_target\n");
1169 END_DEBUG
1170 sxfer = malloc(sizeof(sbp_scsi_xfer), M_SBP, M_NOWAIT | M_ZERO);
1171 if (sxfer == NULL) {
1172 printf("sbp_cam_scan_target: malloc failed\n");
1173 return;
1174 }
1175 xpt_setup_ccb(&sxfer->ccb_h, sdev->path, SCAN_PRI);
1176 sxfer->ccb_h.func_code = XPT_SCAN_LUN;
1177 sxfer->ccb_h.cbfcnp = sbp_cam_scan_lun;
1178 sxfer->ccb_h.flags |= CAM_DEV_QFREEZE;
1179 sxfer->crcn.flags = CAM_FLAG_NONE;
1180 sxfer->ccb_h.ccb_sdev_ptr = sdev;
1181
1182 /* The scan is in progress now. */
1183 xpt_action(sxfer);
1184 xpt_release_devq(sdev->path, sdev->freeze, TRUE);
1185 sdev->freeze = 1;
1186 }
1187
1188 static inline void
1189 sbp_scan_dev(struct sbp_dev *sdev)
1190 {
1191 sdev->status = SBP_DEV_PROBE;
1192 callout_reset(&sdev->target->scan_callout, scan_delay * hz / 1000,
1193 sbp_cam_scan_target, (void *)sdev->target);
1194 }
1195 #else
1196 static void
1197 fw_kthread_create0(void *arg)
1198 {
1199 struct sbp_softc *sbp = (struct sbp_softc *)arg;
1200
1201 /* create thread */
1202 if (kthread_create1(sbp_scsipi_scan_target,
1203 &sbp->target, &sbp->proc, "sbp%d_attach", sbp->fd.dev->dv_unit)) {
1204
1205 device_printf(sbp->fd.dev, "unable to create thread");
1206 panic("fw_kthread_create");
1207 }
1208 }
1209
1210 static void
1211 sbp_scsipi_scan_target(void *arg)
1212 {
1213 struct sbp_target *target = (struct sbp_target *)arg;
1214 struct sbp_softc *sbp = target->sbp;
1215 struct sbp_dev *sdev;
1216 struct scsipi_channel *chan = &sbp->sc_channel;
1217 struct scsibus_softc *sc_bus = (struct scsibus_softc *)sbp->sc_bus;
1218 int lun, yet;
1219
1220 do {
1221 tsleep(target, PWAIT|PCATCH, "-", 0);
1222 yet = 0;
1223
1224 for (lun = 0; lun < target->num_lun; lun ++) {
1225 sdev = target->luns[lun];
1226 if (sdev == NULL)
1227 continue;
1228 if (sdev->status != SBP_DEV_PROBE) {
1229 yet ++;
1230 continue;
1231 }
1232
1233 if (sdev->periph == NULL) {
1234 if (chan->chan_nluns < target->num_lun)
1235 chan->chan_nluns = target->num_lun;
1236
1237 scsi_probe_bus(sc_bus,
1238 target->target_id, sdev->lun_id);
1239 sdev->periph = scsipi_lookup_periph(
1240 chan, target->target_id, lun);
1241 }
1242 sdev->status = SBP_DEV_ATTACHED;
1243 }
1244 } while (yet > 0);
1245
1246 sbp->proc = NULL;
1247 kthread_exit(0);
1248 }
1249
1250 static inline void
1251 sbp_scan_dev(struct sbp_dev *sdev)
1252 {
1253 sdev->status = SBP_DEV_PROBE;
1254 wakeup(sdev->target);
1255 }
1256 #endif
1257
1258
1259 static void
1260 sbp_do_attach(struct fw_xfer *xfer)
1261 {
1262 struct sbp_dev *sdev;
1263 struct sbp_target *target;
1264 struct sbp_softc *sbp;
1265
1266 sdev = (struct sbp_dev *)xfer->sc;
1267 target = sdev->target;
1268 sbp = target->sbp;
1269
1270 SBP_DEBUG(0)
1271 sbp_show_sdev_info(sdev, 2);
1272 printf("sbp_do_attach\n");
1273 END_DEBUG
1274 sbp_xfer_free(xfer);
1275
1276 #if defined(__FreeBSD__)
1277 if (sdev->path == NULL)
1278 xpt_create_path(&sdev->path, xpt_periph,
1279 cam_sim_path(target->sbp->sim),
1280 target->target_id, sdev->lun_id);
1281
1282 /*
1283 * Let CAM scan the bus if we are in the boot process.
1284 * XXX xpt_scan_bus cannot detect LUN larger than 0
1285 * if LUN 0 doesn't exists.
1286 */
1287 if (sbp_cold > 0) {
1288 sdev->status = SBP_DEV_ATTACHED;
1289 return;
1290 }
1291 #endif
1292
1293 sbp_scan_dev(sdev);
1294 return;
1295 }
1296
1297 static void
1298 sbp_agent_reset_callback(struct fw_xfer *xfer)
1299 {
1300 struct sbp_dev *sdev;
1301
1302 sdev = (struct sbp_dev *)xfer->sc;
1303 SBP_DEBUG(1)
1304 sbp_show_sdev_info(sdev, 2);
1305 printf("%s\n", __func__);
1306 END_DEBUG
1307 if (xfer->resp != 0) {
1308 sbp_show_sdev_info(sdev, 2);
1309 printf("%s: resp=%d\n", __func__, xfer->resp);
1310 }
1311
1312 sbp_xfer_free(xfer);
1313 if (SBP_DEVICE(sdev)) {
1314 SBP_DEVICE_THAW(sdev, sdev->freeze);
1315 sdev->freeze = 0;
1316 }
1317 }
1318
1319 static void
1320 sbp_agent_reset(struct sbp_dev *sdev)
1321 {
1322 struct fw_xfer *xfer;
1323 struct fw_pkt *fp;
1324
1325 SBP_DEBUG(0)
1326 sbp_show_sdev_info(sdev, 2);
1327 printf("sbp_agent_reset\n");
1328 END_DEBUG
1329 xfer = sbp_write_cmd(sdev, FWTCODE_WREQQ, 0x04);
1330 if (xfer == NULL)
1331 return;
1332 if (sdev->status == SBP_DEV_ATTACHED || sdev->status == SBP_DEV_PROBE)
1333 xfer->hand = sbp_agent_reset_callback;
1334 else
1335 xfer->hand = sbp_do_attach;
1336 fp = &xfer->send.hdr;
1337 fp->mode.wreqq.data = htonl(0xf);
1338 fw_asyreq(xfer->fc, -1, xfer);
1339 sbp_abort_all_ocbs(sdev, XS_BDR_SENT);
1340 }
1341
1342 static void
1343 sbp_busy_timeout_callback(struct fw_xfer *xfer)
1344 {
1345 struct sbp_dev *sdev;
1346
1347 sdev = (struct sbp_dev *)xfer->sc;
1348 SBP_DEBUG(1)
1349 sbp_show_sdev_info(sdev, 2);
1350 printf("sbp_busy_timeout_callback\n");
1351 END_DEBUG
1352 sbp_xfer_free(xfer);
1353 sbp_agent_reset(sdev);
1354 }
1355
1356 static void
1357 sbp_busy_timeout(struct sbp_dev *sdev)
1358 {
1359 struct fw_pkt *fp;
1360 struct fw_xfer *xfer;
1361 SBP_DEBUG(0)
1362 sbp_show_sdev_info(sdev, 2);
1363 printf("sbp_busy_timeout\n");
1364 END_DEBUG
1365 xfer = sbp_write_cmd(sdev, FWTCODE_WREQQ, 0);
1366
1367 xfer->hand = sbp_busy_timeout_callback;
1368 fp = &xfer->send.hdr;
1369 fp->mode.wreqq.dest_hi = 0xffff;
1370 fp->mode.wreqq.dest_lo = 0xf0000000 | BUSY_TIMEOUT;
1371 fp->mode.wreqq.data = htonl((1 << (13+12)) | 0xf);
1372 fw_asyreq(xfer->fc, -1, xfer);
1373 }
1374
1375 static void
1376 sbp_orb_pointer_callback(struct fw_xfer *xfer)
1377 {
1378 struct sbp_dev *sdev;
1379 sdev = (struct sbp_dev *)xfer->sc;
1380
1381 SBP_DEBUG(1)
1382 sbp_show_sdev_info(sdev, 2);
1383 printf("%s\n", __func__);
1384 END_DEBUG
1385 if (xfer->resp != 0) {
1386 /* XXX */
1387 printf("%s: xfer->resp = %d\n", __func__, xfer->resp);
1388 }
1389 sbp_xfer_free(xfer);
1390 sdev->flags &= ~ORB_POINTER_ACTIVE;
1391
1392 if ((sdev->flags & ORB_POINTER_NEED) != 0) {
1393 struct sbp_ocb *ocb;
1394
1395 sdev->flags &= ~ORB_POINTER_NEED;
1396 ocb = STAILQ_FIRST(&sdev->ocbs);
1397 if (ocb != NULL)
1398 sbp_orb_pointer(sdev, ocb);
1399 }
1400 return;
1401 }
1402
1403 static void
1404 sbp_orb_pointer(struct sbp_dev *sdev, struct sbp_ocb *ocb)
1405 {
1406 struct fw_xfer *xfer;
1407 struct fw_pkt *fp;
1408 SBP_DEBUG(1)
1409 sbp_show_sdev_info(sdev, 2);
1410 printf("%s: 0x%08x\n", __func__, (uint32_t)ocb->bus_addr);
1411 END_DEBUG
1412
1413 if ((sdev->flags & ORB_POINTER_ACTIVE) != 0) {
1414 SBP_DEBUG(0)
1415 printf("%s: orb pointer active\n", __func__);
1416 END_DEBUG
1417 sdev->flags |= ORB_POINTER_NEED;
1418 return;
1419 }
1420
1421 sdev->flags |= ORB_POINTER_ACTIVE;
1422 xfer = sbp_write_cmd(sdev, FWTCODE_WREQB, 0x08);
1423 if (xfer == NULL)
1424 return;
1425 xfer->hand = sbp_orb_pointer_callback;
1426
1427 fp = &xfer->send.hdr;
1428 fp->mode.wreqb.len = 8;
1429 fp->mode.wreqb.extcode = 0;
1430 xfer->send.payload[0] =
1431 htonl(((sdev->target->sbp->fd.fc->nodeid | FWLOCALBUS )<< 16));
1432 xfer->send.payload[1] = htonl((uint32_t)ocb->bus_addr);
1433
1434 if(fw_asyreq(xfer->fc, -1, xfer) != 0){
1435 sbp_xfer_free(xfer);
1436 SCSI_XFER_ERROR(ocb->sxfer) = XS_REQ_INVALID;
1437 SCSI_TRANSFER_DONE(ocb->sxfer);
1438 }
1439 }
1440
1441 static void
1442 sbp_doorbell_callback(struct fw_xfer *xfer)
1443 {
1444 struct sbp_dev *sdev;
1445 sdev = (struct sbp_dev *)xfer->sc;
1446
1447 SBP_DEBUG(1)
1448 sbp_show_sdev_info(sdev, 2);
1449 printf("sbp_doorbell_callback\n");
1450 END_DEBUG
1451 if (xfer->resp != 0) {
1452 /* XXX */
1453 printf("%s: xfer->resp = %d\n", __func__, xfer->resp);
1454 }
1455 sbp_xfer_free(xfer);
1456 sdev->flags &= ~ORB_DOORBELL_ACTIVE;
1457 if ((sdev->flags & ORB_DOORBELL_NEED) != 0) {
1458 sdev->flags &= ~ORB_DOORBELL_NEED;
1459 sbp_doorbell(sdev);
1460 }
1461 return;
1462 }
1463
1464 static void
1465 sbp_doorbell(struct sbp_dev *sdev)
1466 {
1467 struct fw_xfer *xfer;
1468 struct fw_pkt *fp;
1469 SBP_DEBUG(1)
1470 sbp_show_sdev_info(sdev, 2);
1471 printf("sbp_doorbell\n");
1472 END_DEBUG
1473
1474 if ((sdev->flags & ORB_DOORBELL_ACTIVE) != 0) {
1475 sdev->flags |= ORB_DOORBELL_NEED;
1476 return;
1477 }
1478 sdev->flags |= ORB_DOORBELL_ACTIVE;
1479 xfer = sbp_write_cmd(sdev, FWTCODE_WREQQ, 0x10);
1480 if (xfer == NULL)
1481 return;
1482 xfer->hand = sbp_doorbell_callback;
1483 fp = &xfer->send.hdr;
1484 fp->mode.wreqq.data = htonl(0xf);
1485 fw_asyreq(xfer->fc, -1, xfer);
1486 }
1487
1488 static struct fw_xfer *
1489 sbp_write_cmd(struct sbp_dev *sdev, int tcode, int offset)
1490 {
1491 struct fw_xfer *xfer;
1492 struct fw_pkt *fp;
1493 struct sbp_target *target;
1494 int s, new = 0;
1495
1496 target = sdev->target;
1497 s = splfw();
1498 xfer = STAILQ_FIRST(&target->xferlist);
1499 if (xfer == NULL) {
1500 if (target->n_xfer > 5 /* XXX */) {
1501 printf("sbp: no more xfer for this target\n");
1502 splx(s);
1503 return(NULL);
1504 }
1505 xfer = fw_xfer_alloc_buf(M_SBP, 8, 0);
1506 if(xfer == NULL){
1507 printf("sbp: fw_xfer_alloc_buf failed\n");
1508 splx(s);
1509 return NULL;
1510 }
1511 target->n_xfer ++;
1512 if (debug)
1513 printf("sbp: alloc %d xfer\n", target->n_xfer);
1514 new = 1;
1515 } else {
1516 STAILQ_REMOVE_HEAD(&target->xferlist, link);
1517 }
1518 splx(s);
1519
1520 microtime(&xfer->tv);
1521
1522 if (new) {
1523 xfer->recv.pay_len = 0;
1524 xfer->send.spd = min(sdev->target->fwdev->speed, max_speed);
1525 xfer->fc = sdev->target->sbp->fd.fc;
1526 }
1527
1528 if (tcode == FWTCODE_WREQB)
1529 xfer->send.pay_len = 8;
1530 else
1531 xfer->send.pay_len = 0;
1532
1533 xfer->sc = (caddr_t)sdev;
1534 fp = &xfer->send.hdr;
1535 fp->mode.wreqq.dest_hi = sdev->login->cmd_hi;
1536 fp->mode.wreqq.dest_lo = sdev->login->cmd_lo + offset;
1537 fp->mode.wreqq.tlrt = 0;
1538 fp->mode.wreqq.tcode = tcode;
1539 fp->mode.wreqq.pri = 0;
1540 fp->mode.wreqq.dst = FWLOCALBUS | sdev->target->fwdev->dst;
1541
1542 return xfer;
1543
1544 }
1545
1546 static void
1547 sbp_mgm_orb(struct sbp_dev *sdev, int func, struct sbp_ocb *aocb)
1548 {
1549 struct fw_xfer *xfer;
1550 struct fw_pkt *fp;
1551 struct sbp_ocb *ocb;
1552 struct sbp_target *target;
1553 int s, nid, dv_unit;
1554
1555 target = sdev->target;
1556 nid = target->sbp->fd.fc->nodeid | FWLOCALBUS;
1557 dv_unit = device_get_unit(target->sbp->fd.dev);
1558
1559 s = splfw();
1560 if (func == ORB_FUN_RUNQUEUE) {
1561 ocb = STAILQ_FIRST(&target->mgm_ocb_queue);
1562 if (target->mgm_ocb_cur != NULL || ocb == NULL) {
1563 splx(s);
1564 return;
1565 }
1566 STAILQ_REMOVE_HEAD(&target->mgm_ocb_queue, ocb);
1567 goto start;
1568 }
1569 if ((ocb = sbp_get_ocb(sdev)) == NULL) {
1570 splx(s);
1571 /* XXX */
1572 return;
1573 }
1574 ocb->flags = OCB_ACT_MGM;
1575 ocb->sdev = sdev;
1576
1577 bzero((void *)ocb->orb, sizeof(ocb->orb));
1578 ocb->orb[6] = htonl((nid << 16) | SBP_BIND_HI);
1579 ocb->orb[7] = htonl(SBP_DEV2ADDR(dv_unit, sdev->lun_id));
1580
1581 SBP_DEBUG(0)
1582 sbp_show_sdev_info(sdev, 2);
1583 printf("%s\n", orb_fun_name[(func>>16)&0xf]);
1584 END_DEBUG
1585 switch (func) {
1586 case ORB_FUN_LGI:
1587 ocb->orb[0] = ocb->orb[1] = 0; /* password */
1588 ocb->orb[2] = htonl(nid << 16);
1589 ocb->orb[3] = htonl(sdev->dma.bus_addr);
1590 ocb->orb[4] = htonl(ORB_NOTIFY | sdev->lun_id);
1591 if (ex_login)
1592 ocb->orb[4] |= htonl(ORB_EXV);
1593 ocb->orb[5] = htonl(SBP_LOGIN_SIZE);
1594 break;
1595 case ORB_FUN_ATA:
1596 ocb->orb[0] = htonl((0 << 16) | 0);
1597 ocb->orb[1] = htonl(aocb->bus_addr & 0xffffffff);
1598 /* fall through */
1599 case ORB_FUN_RCN:
1600 case ORB_FUN_LGO:
1601 case ORB_FUN_LUR:
1602 case ORB_FUN_RST:
1603 case ORB_FUN_ATS:
1604 ocb->orb[4] = htonl(ORB_NOTIFY | func | sdev->login->id);
1605 break;
1606 }
1607
1608 if (target->mgm_ocb_cur != NULL) {
1609 /* there is a standing ORB */
1610 STAILQ_INSERT_TAIL(&sdev->target->mgm_ocb_queue, ocb, ocb);
1611 splx(s);
1612 return;
1613 }
1614 start:
1615 target->mgm_ocb_cur = ocb;
1616 splx(s);
1617
1618 callout_reset(&target->mgm_ocb_timeout, 5*hz,
1619 sbp_mgm_timeout, (caddr_t)ocb);
1620 xfer = sbp_write_cmd(sdev, FWTCODE_WREQB, 0);
1621 if(xfer == NULL){
1622 return;
1623 }
1624 xfer->hand = sbp_mgm_callback;
1625
1626 fp = &xfer->send.hdr;
1627 fp->mode.wreqb.dest_hi = sdev->target->mgm_hi;
1628 fp->mode.wreqb.dest_lo = sdev->target->mgm_lo;
1629 fp->mode.wreqb.len = 8;
1630 fp->mode.wreqb.extcode = 0;
1631 xfer->send.payload[0] = htonl(nid << 16);
1632 xfer->send.payload[1] = htonl(ocb->bus_addr & 0xffffffff);
1633 SBP_DEBUG(0)
1634 sbp_show_sdev_info(sdev, 2);
1635 printf("mgm orb: %08x\n", (uint32_t)ocb->bus_addr);
1636 END_DEBUG
1637
1638 /* cache writeback & invalidate(required ORB_FUN_LGI func) */
1639 /* when abort_ocb, should sync POST ope ? */
1640 fwdma_sync(&sdev->dma, BUS_DMASYNC_PREREAD | BUS_DMASYNC_PREWRITE);
1641 fw_asyreq(xfer->fc, -1, xfer);
1642 }
1643
1644 static void
1645 sbp_print_scsi_cmd(struct sbp_ocb *ocb)
1646 {
1647 #if defined(__FreeBSD__)
1648 struct ccb_scsiio *csio;
1649
1650 csio = &ocb->sxfer->csio;
1651 #endif
1652 printf("%s:%d:%d XPT_SCSI_IO: "
1653 "cmd: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x"
1654 ", flags: 0x%02x, "
1655 "%db cmd/%db data/%db sense\n",
1656 device_get_nameunit(ocb->sdev->target->sbp->fd.dev),
1657 SCSI_XFER_TARGET(ocb->sxfer), SCSI_XFER_LUN(ocb->sxfer),
1658 SCSI_XFER_10BCMD_DUMP(ocb->sxfer),
1659 SCSI_XFER_DIR(ocb->sxfer),
1660 SCSI_XFER_CMDLEN(ocb->sxfer), SCSI_XFER_DATALEN(ocb->sxfer),
1661 SCSI_XFER_SENSELEN(ocb->sxfer));
1662 }
1663
1664 static void
1665 sbp_scsi_status(struct sbp_status *sbp_status, struct sbp_ocb *ocb)
1666 {
1667 struct sbp_cmd_status *sbp_cmd_status;
1668 scsi3_sense_data_t sense =
1669 (scsi3_sense_data_t)SCSI_SENSE_DATA(ocb->sxfer);
1670
1671 sbp_cmd_status = (struct sbp_cmd_status *)sbp_status->data;
1672
1673 SBP_DEBUG(0)
1674 sbp_print_scsi_cmd(ocb);
1675 /* XXX need decode status */
1676 sbp_show_sdev_info(ocb->sdev, 2);
1677 printf("SCSI status %x sfmt %x valid %x key %x code %x qlfr %x len %d\n",
1678 sbp_cmd_status->status,
1679 sbp_cmd_status->sfmt,
1680 sbp_cmd_status->valid,
1681 sbp_cmd_status->s_key,
1682 sbp_cmd_status->s_code,
1683 sbp_cmd_status->s_qlfr,
1684 sbp_status->len
1685 );
1686 END_DEBUG
1687
1688 switch (sbp_cmd_status->status) {
1689 case SCSI_STATUS_CHECK_COND:
1690 case SCSI_STATUS_BUSY:
1691 case SCSI_STATUS_CMD_TERMINATED:
1692 if(sbp_cmd_status->sfmt == SBP_SFMT_CURR){
1693 sense->response_code = SSD_CURRENT_ERROR;
1694 }else{
1695 sense->response_code = SSD_DEFERRED_ERROR;
1696 }
1697 if(sbp_cmd_status->valid)
1698 sense->response_code |= SSD_RESPONSE_CODE_VALID;
1699 sense->flags = sbp_cmd_status->s_key;
1700 if(sbp_cmd_status->mark)
1701 sense->flags |= SSD_FILEMARK;
1702 if(sbp_cmd_status->eom)
1703 sense->flags |= SSD_EOM;
1704 if(sbp_cmd_status->ill_len)
1705 sense->flags |= SSD_ILI;
1706
1707 bcopy(&sbp_cmd_status->info, &sense->information[0], 4);
1708
1709 if (sbp_status->len <= 1)
1710 /* XXX not scsi status. shouldn't be happened */
1711 sense->asl = 0;
1712 else if (sbp_status->len <= 4)
1713 /* add_sense_code(_qual), info, cmd_spec_info */
1714 sense->asl = 6;
1715 else
1716 /* fru, sense_key_spec */
1717 sense->asl = 10;
1718
1719 bcopy(&sbp_cmd_status->cdb, &sense->csi[0], 4);
1720
1721 sense->asc = sbp_cmd_status->s_code;
1722 sense->ascq = sbp_cmd_status->s_qlfr;
1723 sense->fruc = sbp_cmd_status->fru;
1724
1725 bcopy(&sbp_cmd_status->s_keydep[0], &sense->sks[0], 3);
1726 SCSI_XFER_ERROR(ocb->sxfer) = XS_SENSE;
1727 SCSI_XFER_STATUS(ocb->sxfer) = sbp_cmd_status->status;
1728 /*
1729 {
1730 uint8_t j, *tmp;
1731 tmp = sense;
1732 for( j = 0 ; j < 32 ; j+=8){
1733 printf("sense %02x%02x %02x%02x %02x%02x %02x%02x\n",
1734 tmp[j], tmp[j+1], tmp[j+2], tmp[j+3],
1735 tmp[j+4], tmp[j+5], tmp[j+6], tmp[j+7]);
1736 }
1737
1738 }
1739 */
1740 break;
1741 default:
1742 sbp_show_sdev_info(ocb->sdev, 2);
1743 printf("sbp_scsi_status: unknown scsi status 0x%x\n",
1744 sbp_cmd_status->status);
1745 }
1746 }
1747
1748 static void
1749 sbp_fix_inq_data(struct sbp_ocb *ocb)
1750 {
1751 sbp_scsi_xfer *sxfer = ocb->sxfer;
1752 struct sbp_dev *sdev;
1753 scsi3_inquiry_data_t inq =
1754 (scsi3_inquiry_data_t)SCSI_INQUIRY_DATA(sxfer);
1755 sdev = ocb->sdev;
1756
1757 if (SCSI_XFER_EVPD(sxfer))
1758 return;
1759 SBP_DEBUG(1)
1760 sbp_show_sdev_info(sdev, 2);
1761 printf("sbp_fix_inq_data\n");
1762 END_DEBUG
1763 switch (inq->device & SID_TYPE) {
1764 case T_DIRECT:
1765 #if 0
1766 /*
1767 * XXX Convert Direct Access device to RBC.
1768 * I've never seen FireWire DA devices which support READ_6.
1769 */
1770 if ((inq->device & SID_TYPE) == T_DIRECT)
1771 inq->device |= T_RBC; /* T_DIRECT == 0 */
1772 #endif
1773 /* fall through */
1774 case T_RBC:
1775 /*
1776 * Override vendor/product/revision information.
1777 * Some devices sometimes return strange strings.
1778 */
1779 #if 1
1780 bcopy(sdev->vendor, inq->vendor, sizeof(inq->vendor));
1781 bcopy(sdev->product, inq->product, sizeof(inq->product));
1782 bcopy(sdev->revision+2, inq->revision, sizeof(inq->revision));
1783 #endif
1784 break;
1785 }
1786 /*
1787 * Force to enable/disable tagged queuing.
1788 * XXX CAM also checks SCP_QUEUE_DQUE flag in the control mode page.
1789 */
1790 if (sbp_tags > 0)
1791 inq->flags[1] |= SID_CmdQue;
1792 else if (sbp_tags < 0)
1793 inq->flags[1] &= ~SID_CmdQue;
1794
1795 }
1796
1797 static void
1798 sbp_recv1(struct fw_xfer *xfer)
1799 {
1800 struct fw_pkt *rfp;
1801 #if NEED_RESPONSE
1802 struct fw_pkt *sfp;
1803 #endif
1804 struct sbp_softc *sbp;
1805 struct sbp_dev *sdev;
1806 struct sbp_ocb *ocb;
1807 struct sbp_login_res *login_res = NULL;
1808 struct sbp_status *sbp_status;
1809 struct sbp_target *target;
1810 int orb_fun, status_valid0, status_valid, l, reset_agent = 0;
1811 uint32_t addr;
1812 /*
1813 uint32_t *ld;
1814 ld = xfer->recv.buf;
1815 printf("sbp %x %d %d %08x %08x %08x %08x\n",
1816 xfer->resp, xfer->recv.len, xfer->recv.off, ntohl(ld[0]), ntohl(ld[1]), ntohl(ld[2]), ntohl(ld[3]));
1817 printf("sbp %08x %08x %08x %08x\n", ntohl(ld[4]), ntohl(ld[5]), ntohl(ld[6]), ntohl(ld[7]));
1818 printf("sbp %08x %08x %08x %08x\n", ntohl(ld[8]), ntohl(ld[9]), ntohl(ld[10]), ntohl(ld[11]));
1819 */
1820 sbp = (struct sbp_softc *)xfer->sc;
1821 if (xfer->resp != 0){
1822 printf("sbp_recv: xfer->resp = %d\n", xfer->resp);
1823 goto done0;
1824 }
1825 if (xfer->recv.payload == NULL){
1826 printf("sbp_recv: xfer->recv.payload == NULL\n");
1827 goto done0;
1828 }
1829 rfp = &xfer->recv.hdr;
1830 if(rfp->mode.wreqb.tcode != FWTCODE_WREQB){
1831 printf("sbp_recv: tcode = %d\n", rfp->mode.wreqb.tcode);
1832 goto done0;
1833 }
1834 sbp_status = (struct sbp_status *)xfer->recv.payload;
1835 addr = rfp->mode.wreqb.dest_lo;
1836 SBP_DEBUG(2)
1837 printf("received address 0x%x\n", addr);
1838 END_DEBUG
1839 target = &sbp->target;
1840 l = SBP_ADDR2LUN(addr);
1841 if (l >= target->num_lun || target->luns[l] == NULL) {
1842 device_printf(sbp->fd.dev,
1843 "sbp_recv1: invalid lun %d (target=%d)\n",
1844 l, target->target_id);
1845 goto done0;
1846 }
1847 sdev = target->luns[l];
1848
1849 fwdma_sync(&sdev->dma, BUS_DMASYNC_POSTREAD | BUS_DMASYNC_POSTWRITE);
1850
1851 ocb = NULL;
1852 switch (sbp_status->src) {
1853 case SRC_NEXT_EXISTS:
1854 case SRC_NO_NEXT:
1855 /* check mgm_ocb_cur first */
1856 ocb = target->mgm_ocb_cur;
1857 if (ocb != NULL) {
1858 if (OCB_MATCH(ocb, sbp_status)) {
1859 callout_stop(&target->mgm_ocb_timeout);
1860 target->mgm_ocb_cur = NULL;
1861 break;
1862 }
1863 }
1864 ocb = sbp_dequeue_ocb(sdev, sbp_status);
1865 if (ocb == NULL) {
1866 sbp_show_sdev_info(sdev, 2);
1867 #if defined(__DragonFly__) || \
1868 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
1869 printf("No ocb(%lx) on the queue\n",
1870 #else
1871 printf("No ocb(%x) on the queue\n",
1872 #endif
1873 ntohl(sbp_status->orb_lo));
1874 }
1875 break;
1876 case SRC_UNSOL:
1877 /* unsolicit */
1878 sbp_show_sdev_info(sdev, 2);
1879 printf("unsolicit status received\n");
1880 break;
1881 default:
1882 sbp_show_sdev_info(sdev, 2);
1883 printf("unknown sbp_status->src\n");
1884 }
1885
1886 status_valid0 = (sbp_status->src < 2
1887 && sbp_status->resp == SBP_REQ_CMP
1888 && sbp_status->dead == 0);
1889 status_valid = (status_valid0 && sbp_status->status == 0);
1890
1891 if (!status_valid0 || debug > 2){
1892 int status;
1893 SBP_DEBUG(0)
1894 sbp_show_sdev_info(sdev, 2);
1895 printf("ORB status src:%x resp:%x dead:%x"
1896 #if defined(__DragonFly__) || \
1897 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
1898 " len:%x stat:%x orb:%x%08lx\n",
1899 #else
1900 " len:%x stat:%x orb:%x%08x\n",
1901 #endif
1902 sbp_status->src, sbp_status->resp, sbp_status->dead,
1903 sbp_status->len, sbp_status->status,
1904 ntohs(sbp_status->orb_hi), ntohl(sbp_status->orb_lo));
1905 END_DEBUG
1906 sbp_show_sdev_info(sdev, 2);
1907 status = sbp_status->status;
1908 switch(sbp_status->resp) {
1909 case SBP_REQ_CMP:
1910 if (status > MAX_ORB_STATUS0)
1911 printf("%s\n", orb_status0[MAX_ORB_STATUS0]);
1912 else
1913 printf("%s\n", orb_status0[status]);
1914 break;
1915 case SBP_TRANS_FAIL:
1916 printf("Obj: %s, Error: %s\n",
1917 orb_status1_object[(status>>6) & 3],
1918 orb_status1_serial_bus_error[status & 0xf]);
1919 break;
1920 case SBP_ILLE_REQ:
1921 printf("Illegal request\n");
1922 break;
1923 case SBP_VEND_DEP:
1924 printf("Vendor dependent\n");
1925 break;
1926 default:
1927 printf("unknown respose code %d\n", sbp_status->resp);
1928 }
1929 }
1930
1931 /* we have to reset the fetch agent if it's dead */
1932 if (sbp_status->dead) {
1933 if (SBP_DEVICE(sdev) != NULL) {
1934 SBP_DEVICE_FREEZE(sdev, 1);
1935 sdev->freeze ++;
1936 }
1937 reset_agent = 1;
1938 }
1939
1940 if (ocb == NULL)
1941 goto done;
1942
1943 switch(ntohl(ocb->orb[4]) & ORB_FMT_MSK){
1944 case ORB_FMT_NOP:
1945 break;
1946 case ORB_FMT_VED:
1947 break;
1948 case ORB_FMT_STD:
1949 switch(ocb->flags) {
1950 case OCB_ACT_MGM:
1951 orb_fun = ntohl(ocb->orb[4]) & ORB_FUN_MSK;
1952 reset_agent = 0;
1953 switch(orb_fun) {
1954 case ORB_FUN_LGI:
1955 login_res = sdev->login;
1956 login_res->len = ntohs(login_res->len);
1957 login_res->id = ntohs(login_res->id);
1958 login_res->cmd_hi = ntohs(login_res->cmd_hi);
1959 login_res->cmd_lo = ntohl(login_res->cmd_lo);
1960 if (status_valid) {
1961 SBP_DEBUG(0)
1962 sbp_show_sdev_info(sdev, 2);
1963 printf("login: len %d, ID %d, cmd %08x%08x, recon_hold %d\n", login_res->len, login_res->id, login_res->cmd_hi, login_res->cmd_lo, ntohs(login_res->recon_hold));
1964 END_DEBUG
1965 sbp_busy_timeout(sdev);
1966 } else {
1967 /* forgot logout? */
1968 sbp_show_sdev_info(sdev, 2);
1969 printf("login failed\n");
1970 sdev->status = SBP_DEV_RESET;
1971 }
1972 break;
1973 case ORB_FUN_RCN:
1974 login_res = sdev->login;
1975 if (status_valid) {
1976 SBP_DEBUG(0)
1977 sbp_show_sdev_info(sdev, 2);
1978 printf("reconnect: len %d, ID %d, cmd %08x%08x\n", login_res->len, login_res->id, login_res->cmd_hi, login_res->cmd_lo);
1979 END_DEBUG
1980 #if 1
1981 #if defined(__FreeBSD__)
1982 if (sdev->status == SBP_DEV_ATTACHED)
1983 sbp_scan_dev(sdev);
1984 else
1985 #endif
1986 sbp_agent_reset(sdev);
1987 #else
1988 sdev->status = SBP_DEV_ATTACHED;
1989 sbp_mgm_orb(sdev, ORB_FUN_ATS, NULL);
1990 #endif
1991 } else {
1992 /* reconnection hold time exceed? */
1993 SBP_DEBUG(0)
1994 sbp_show_sdev_info(sdev, 2);
1995 printf("reconnect failed\n");
1996 END_DEBUG
1997 sbp_login(sdev);
1998 }
1999 break;
2000 case ORB_FUN_LGO:
2001 sdev->status = SBP_DEV_RESET;
2002 break;
2003 case ORB_FUN_RST:
2004 sbp_busy_timeout(sdev);
2005 break;
2006 case ORB_FUN_LUR:
2007 case ORB_FUN_ATA:
2008 case ORB_FUN_ATS:
2009 sbp_agent_reset(sdev);
2010 break;
2011 default:
2012 sbp_show_sdev_info(sdev, 2);
2013 printf("unknown function %d\n", orb_fun);
2014 break;
2015 }
2016 sbp_mgm_orb(sdev, ORB_FUN_RUNQUEUE, NULL);
2017 break;
2018 case OCB_ACT_CMD:
2019 sdev->timeout = 0;
2020 if(ocb->sxfer != NULL){
2021 sbp_scsi_xfer *sxfer = ocb->sxfer;
2022 /*
2023 uint32_t *ld = SCSI_XFER_DATA(ocb->sxfer);
2024 if(ld != NULL &&
2025 SCSI_XFER_DATALEN(ocb->sxfer) != 0)
2026 printf("ptr %08x %08x %08x %08x\n", ld[0], ld[1], ld[2], ld[3]);
2027 else
2028 printf("ptr NULL\n");
2029 printf("len %d\n", sbp_status->len);
2030 */
2031 if(sbp_status->len > 1){
2032 sbp_scsi_status(sbp_status, ocb);
2033 }else{
2034 if(sbp_status->resp != SBP_REQ_CMP){
2035 SCSI_XFER_ERROR(sxfer) =
2036 XS_REQ_CMP_ERR;
2037 }else{
2038 SCSI_XFER_ERROR(sxfer) =
2039 XS_REQ_CMP;
2040 SCSI_XFER_REQUEST_COMPLETE(
2041 sxfer);
2042 }
2043 }
2044 /* fix up inq data */
2045 if (SCSI_XFER_OPECODE(sxfer) == INQUIRY)
2046 sbp_fix_inq_data(ocb);
2047 SCSI_TRANSFER_DONE(sxfer);
2048 }
2049 break;
2050 default:
2051 break;
2052 }
2053 }
2054
2055 if (!use_doorbell)
2056 sbp_free_ocb(sdev, ocb);
2057 done:
2058 if (reset_agent)
2059 sbp_agent_reset(sdev);
2060
2061 done0:
2062 xfer->recv.pay_len = SBP_RECV_LEN;
2063 /* The received packet is usually small enough to be stored within
2064 * the buffer. In that case, the controller return ack_complete and
2065 * no respose is necessary.
2066 *
2067 * XXX fwohci.c and firewire.c should inform event_code such as
2068 * ack_complete or ack_pending to upper driver.
2069 */
2070 #if NEED_RESPONSE
2071 xfer->send.off = 0;
2072 sfp = (struct fw_pkt *)xfer->send.buf;
2073 sfp->mode.wres.dst = rfp->mode.wreqb.src;
2074 xfer->dst = sfp->mode.wres.dst;
2075 xfer->spd = min(sdev->target->fwdev->speed, max_speed);
2076 xfer->hand = sbp_loginres_callback;
2077
2078 sfp->mode.wres.tlrt = rfp->mode.wreqb.tlrt;
2079 sfp->mode.wres.tcode = FWTCODE_WRES;
2080 sfp->mode.wres.rtcode = 0;
2081 sfp->mode.wres.pri = 0;
2082
2083 fw_asyreq(xfer->fc, -1, xfer);
2084 #else
2085 /* recycle */
2086 STAILQ_INSERT_TAIL(&sbp->fwb.xferlist, xfer, link);
2087 #endif
2088
2089 return;
2090
2091 }
2092
2093 static void
2094 sbp_recv(struct fw_xfer *xfer)
2095 {
2096 int s;
2097
2098 s = splfwsbp();
2099 sbp_recv1(xfer);
2100 splx(s);
2101 }
2102 /*
2103 * sbp_attach()
2104 */
2105 FW_ATTACH(sbp)
2106 {
2107 FW_ATTACH_START(sbp, sbp, fwa);
2108 int dv_unit, error, s;
2109 SBP_ATTACH_START;
2110
2111 SBP_DEBUG(0)
2112 printf("sbp_attach (cold=%d)\n", cold);
2113 END_DEBUG
2114
2115 if (cold)
2116 sbp_cold ++;
2117 sbp->fd.fc = fwa->fc;
2118
2119 if (max_speed < 0)
2120 max_speed = sbp->fd.fc->speed;
2121
2122 error = fw_bus_dma_tag_create(/*parent*/sbp->fd.fc->dmat,
2123 /* XXX shoud be 4 for sane backend? */
2124 /*alignment*/1,
2125 /*boundary*/0,
2126 /*lowaddr*/BUS_SPACE_MAXADDR_32BIT,
2127 /*highaddr*/BUS_SPACE_MAXADDR,
2128 /*filter*/NULL, /*filterarg*/NULL,
2129 /*maxsize*/0x100000, /*nsegments*/SBP_IND_MAX,
2130 /*maxsegsz*/SBP_SEG_MAX,
2131 /*flags*/BUS_DMA_ALLOCNOW,
2132 #if defined(__FreeBSD__) && __FreeBSD_version >= 501102
2133 /*lockfunc*/busdma_lock_mutex,
2134 /*lockarg*/&Giant,
2135 #endif
2136 &sbp->dmat);
2137 if (error != 0) {
2138 printf("sbp_attach: Could not allocate DMA tag "
2139 "- error %d\n", error);
2140 FW_ATTACH_RETURN(ENOMEM);
2141 }
2142
2143 #if defined(__FreeBSD__)
2144 devq = cam_simq_alloc(/*maxopenings*/SBP_NUM_OCB);
2145 if (devq == NULL)
2146 return (ENXIO);
2147 #endif
2148
2149 sbp->target.fwdev = NULL;
2150 sbp->target.luns = NULL;
2151
2152 if (sbp_alloc_target(sbp, fwa->fwdev) == NULL)
2153 FW_ATTACH_RETURN(ENXIO);
2154
2155 SBP_SCSIBUS_ATTACH;
2156
2157 /* We reserve 16 bit space (4 bytes X 64 unit X 256 luns) */
2158 dv_unit = device_get_unit(sbp->fd.dev);
2159 sbp->fwb.start = SBP_DEV2ADDR(dv_unit, 0);
2160 sbp->fwb.end = SBP_DEV2ADDR(dv_unit, -1);
2161 /* pre-allocate xfer */
2162 STAILQ_INIT(&sbp->fwb.xferlist);
2163 fw_xferlist_add(&sbp->fwb.xferlist, M_SBP,
2164 /*send*/ 0, /*recv*/ SBP_RECV_LEN, SBP_NUM_OCB/2,
2165 sbp->fd.fc, (void *)sbp, sbp_recv);
2166 fw_bindadd(sbp->fd.fc, &sbp->fwb);
2167
2168 sbp->fd.post_busreset = sbp_post_busreset;
2169 sbp->fd.post_explore = sbp_post_explore;
2170
2171 if (sbp->fd.fc->status != -1) {
2172 s = splfw();
2173 sbp_post_busreset((void *)sbp);
2174 sbp_post_explore((void *)sbp);
2175 splx(s);
2176 }
2177
2178 FW_ATTACH_RETURN(0);
2179 #if defined(__FreeBSD__)
2180 fail:
2181 cam_sim_free(sbp->sim, /*free_devq*/TRUE);
2182 return (ENXIO);
2183 #endif
2184 }
2185
2186 static int
2187 sbp_logout_all(struct sbp_softc *sbp)
2188 {
2189 struct sbp_target *target;
2190 struct sbp_dev *sdev;
2191 int i;
2192
2193 SBP_DEBUG(0)
2194 printf("sbp_logout_all\n");
2195 END_DEBUG
2196 target = &sbp->target;
2197 if (target->luns != NULL)
2198 for (i = 0; i < target->num_lun; i++) {
2199 sdev = target->luns[i];
2200 if (sdev == NULL)
2201 continue;
2202 callout_stop(&sdev->login_callout);
2203 if (sdev->status >= SBP_DEV_TOATTACH &&
2204 sdev->status <= SBP_DEV_ATTACHED)
2205 sbp_mgm_orb(sdev, ORB_FUN_LGO, NULL);
2206 }
2207
2208 return 0;
2209 }
2210
2211 #if defined(__FreeBSD__)
2212 static int
2213 sbp_shutdown(device_t dev)
2214 {
2215 struct sbp_softc *sbp = ((struct sbp_softc *)device_get_softc(dev));
2216
2217 sbp_logout_all(sbp);
2218 return (0);
2219 }
2220 #endif
2221
2222 static void
2223 sbp_free_sdev(struct sbp_dev *sdev)
2224 {
2225 int i;
2226
2227 if (sdev == NULL)
2228 return;
2229 for (i = 0; i < SBP_QUEUE_LEN; i++)
2230 fw_bus_dmamap_destroy(sdev->target->sbp->dmat,
2231 sdev->ocb[i].dmamap);
2232 fwdma_free(sdev->target->sbp->fd.fc, &sdev->dma);
2233 free(sdev, M_SBP);
2234 }
2235
2236 static void
2237 sbp_free_target(struct sbp_target *target)
2238 {
2239 struct sbp_softc *sbp;
2240 struct fw_xfer *xfer, *next;
2241 int i;
2242
2243 if (target->luns == NULL)
2244 return;
2245 callout_stop(&target->mgm_ocb_timeout);
2246 sbp = target->sbp;
2247 for (i = 0; i < target->num_lun; i++)
2248 sbp_free_sdev(target->luns[i]);
2249
2250 for (xfer = STAILQ_FIRST(&target->xferlist);
2251 xfer != NULL; xfer = next) {
2252 next = STAILQ_NEXT(xfer, link);
2253 fw_xfer_free_buf(xfer);
2254 }
2255 STAILQ_INIT(&target->xferlist);
2256 free(target->luns, M_SBP);
2257 target->num_lun = 0;;
2258 target->luns = NULL;
2259 target->fwdev = NULL;
2260 }
2261
2262 FW_DETACH(sbp)
2263 {
2264 FW_DETACH_START(sbp, sbp);
2265 struct firewire_comm *fc = sbp->fd.fc;
2266 int i;
2267
2268 SBP_DEBUG(0)
2269 printf("sbp_detach\n");
2270 END_DEBUG
2271
2272 SBP_DETACH_TARGET(&sbp->target);
2273 #if defined(__FreeBSD__)
2274 xpt_async(AC_LOST_DEVICE, sbp->path, NULL);
2275 xpt_free_path(sbp->path);
2276 xpt_bus_deregister(cam_sim_path(sbp->sim));
2277 cam_sim_free(sbp->sim, /*free_devq*/ TRUE),
2278 #endif
2279
2280 sbp_logout_all(sbp);
2281
2282 /* XXX wait for logout completion */
2283 tsleep(&i, FWPRI, "sbpdtc", hz/2);
2284
2285 sbp_free_target(&sbp->target);
2286
2287 fw_bindremove(fc, &sbp->fwb);
2288 fw_xferlist_remove(&sbp->fwb.xferlist);
2289
2290 fw_bus_dma_tag_destroy(sbp->dmat);
2291
2292 return (0);
2293 }
2294
2295 #if defined(__FreeBSD__)
2296 static void
2297 sbp_cam_detach_sdev(struct sbp_dev *sdev)
2298 {
2299 if (sdev == NULL)
2300 return;
2301 if (sdev->status == SBP_DEV_DEAD)
2302 return;
2303 if (sdev->status == SBP_DEV_RESET)
2304 return;
2305 if (sdev->path) {
2306 xpt_release_devq(sdev->path,
2307 sdev->freeze, TRUE);
2308 sdev->freeze = 0;
2309 xpt_async(AC_LOST_DEVICE, sdev->path, NULL);
2310 xpt_free_path(sdev->path);
2311 sdev->path = NULL;
2312 }
2313 sbp_abort_all_ocbs(sdev, XS_DEV_NOT_THERE);
2314 }
2315
2316 static void
2317 sbp_cam_detach_target(struct sbp_target *target)
2318 {
2319 int i;
2320
2321 if (target->luns != NULL) {
2322 SBP_DEBUG(0)
2323 printf("sbp_detach_target %d\n", target->target_id);
2324 END_DEBUG
2325 callout_stop(&target->scan_callout);
2326 for (i = 0; i < target->num_lun; i++)
2327 sbp_cam_detach_sdev(target->luns[i]);
2328 }
2329 }
2330 #elif defined(__NetBSD__)
2331 static void
2332 sbp_scsipi_detach_sdev(struct sbp_dev *sdev)
2333 {
2334 struct sbp_target *target = sdev->target;
2335 struct sbp_softc *sbp = target->sbp;
2336 if (sdev == NULL)
2337 return;
2338 if (sdev->status == SBP_DEV_DEAD)
2339 return;
2340 if (sdev->status == SBP_DEV_RESET)
2341 return;
2342 if (sdev->periph) {
2343 scsipi_periph_thaw(sdev->periph, sdev->freeze);
2344 scsipi_channel_thaw(&sbp->sc_channel, 0); /* XXXX */
2345 sdev->freeze = 0;
2346 if (scsipi_target_detach(&sbp->sc_channel,
2347 target->target_id, sdev->lun_id, DETACH_FORCE) != 0) {
2348 sbp_show_sdev_info(sdev, 2);
2349 printf("detach failed\n");
2350 }
2351 sdev->periph = NULL;
2352 }
2353 sbp_abort_all_ocbs(sdev, XS_DEV_NOT_THERE);
2354 }
2355
2356 static void
2357 sbp_scsipi_detach_target(struct sbp_target *target)
2358 {
2359 struct sbp_softc *sbp = target->sbp;
2360 int i;
2361
2362 if (target->luns != NULL) {
2363 SBP_DEBUG(0)
2364 printf("sbp_detach_target %d\n", target->target_id);
2365 END_DEBUG
2366 callout_stop(&target->scan_callout);
2367 for (i = 0; i < target->num_lun; i++)
2368 sbp_scsipi_detach_sdev(target->luns[i]);
2369 if (config_detach(sbp->sc_bus, DETACH_FORCE) != 0)
2370 device_printf(sbp->fd.dev, "%d detach failed\n",
2371 target->target_id);
2372 sbp->sc_bus = NULL;
2373 }
2374 }
2375 #endif
2376
2377 static void
2378 sbp_target_reset(struct sbp_dev *sdev, int method)
2379 {
2380 int i;
2381 struct sbp_target *target = sdev->target;
2382 struct sbp_dev *tsdev;
2383
2384 for (i = 0; i < target->num_lun; i++) {
2385 tsdev = target->luns[i];
2386 if (tsdev == NULL)
2387 continue;
2388 if (tsdev->status == SBP_DEV_DEAD)
2389 continue;
2390 if (tsdev->status == SBP_DEV_RESET)
2391 continue;
2392 SBP_DEVICE_FREEZE(tsdev, 1);
2393 tsdev->freeze ++;
2394 sbp_abort_all_ocbs(tsdev, XS_CMD_TIMEOUT);
2395 if (method == 2)
2396 tsdev->status = SBP_DEV_LOGIN;
2397 }
2398 switch(method) {
2399 case 1:
2400 printf("target reset\n");
2401 sbp_mgm_orb(sdev, ORB_FUN_RST, NULL);
2402 break;
2403 case 2:
2404 printf("reset start\n");
2405 sbp_reset_start(sdev);
2406 break;
2407 }
2408
2409 }
2410
2411 static void
2412 sbp_mgm_timeout(void *arg)
2413 {
2414 struct sbp_ocb *ocb = (struct sbp_ocb *)arg;
2415 struct sbp_dev *sdev = ocb->sdev;
2416 struct sbp_target *target = sdev->target;
2417
2418 sbp_show_sdev_info(sdev, 2);
2419 printf("request timeout(mgm orb:0x%08x) ... ",
2420 (uint32_t)ocb->bus_addr);
2421 target->mgm_ocb_cur = NULL;
2422 sbp_free_ocb(sdev, ocb);
2423 #if 0
2424 /* XXX */
2425 printf("run next request\n");
2426 sbp_mgm_orb(sdev, ORB_FUN_RUNQUEUE, NULL);
2427 #endif
2428 #if 1
2429 printf("reset start\n");
2430 sbp_reset_start(sdev);
2431 #endif
2432 }
2433
2434 static void
2435 sbp_timeout(void *arg)
2436 {
2437 struct sbp_ocb *ocb = (struct sbp_ocb *)arg;
2438 struct sbp_dev *sdev = ocb->sdev;
2439
2440 sbp_show_sdev_info(sdev, 2);
2441 printf("request timeout(cmd orb:0x%08x) ... ",
2442 (uint32_t)ocb->bus_addr);
2443
2444 sdev->timeout ++;
2445 switch(sdev->timeout) {
2446 case 1:
2447 printf("agent reset\n");
2448 SBP_DEVICE_FREEZE(sdev, 1);
2449 sdev->freeze ++;
2450 sbp_abort_all_ocbs(sdev, XS_CMD_TIMEOUT);
2451 sbp_agent_reset(sdev);
2452 break;
2453 case 2:
2454 case 3:
2455 sbp_target_reset(sdev, sdev->timeout - 1);
2456 break;
2457 #if 0
2458 default:
2459 /* XXX give up */
2460 SBP_DETACH_TARGET(target);
2461 if (target->luns != NULL)
2462 free(target->luns, M_SBP);
2463 target->num_lun = 0;;
2464 target->luns = NULL;
2465 target->fwdev = NULL;
2466 #endif
2467 }
2468 }
2469
2470 static void
2471 sbp_action1(struct sbp_softc *sbp, sbp_scsi_xfer *sxfer)
2472 {
2473
2474 struct sbp_target *target = NULL;
2475 struct sbp_dev *sdev = NULL;
2476
2477 /* target:lun -> sdev mapping */
2478 if (sbp != NULL) {
2479 target = &sbp->target;
2480 if (target->fwdev != NULL
2481 && NOT_LUN_WILDCARD(SCSI_XFER_LUN(sxfer))
2482 && SCSI_XFER_LUN(sxfer) < target->num_lun) {
2483 sdev = target->luns[SCSI_XFER_LUN(sxfer)];
2484 if (sdev != NULL && sdev->status != SBP_DEV_ATTACHED &&
2485 sdev->status != SBP_DEV_PROBE)
2486 sdev = NULL;
2487 }
2488 }
2489
2490 SBP_DEBUG(1)
2491 if (sdev == NULL)
2492 printf("invalid target %d lun %d\n",
2493 SCSI_XFER_TARGET(sxfer), SCSI_XFER_LUN(sxfer));
2494 END_DEBUG
2495
2496 switch (SCSI_XFER_FUNCCODE(sxfer)) {
2497 case XPT_SCSI_IO:
2498 #if defined(__FreeBSD__)
2499 case XPT_RESET_DEV:
2500 case XPT_GET_TRAN_SETTINGS:
2501 case XPT_SET_TRAN_SETTINGS:
2502 case XPT_CALC_GEOMETRY:
2503 #endif
2504 if (sdev == NULL) {
2505 SBP_DEBUG(1)
2506 printf("%s:%d:%d:func_code 0x%04x: "
2507 "Invalid target (target needed)\n",
2508 device_get_nameunit(sbp->fd.dev),
2509 SCSI_XFER_TARGET(sxfer), SCSI_XFER_LUN(sxfer),
2510 SCSI_XFER_FUNCCODE(sxfer));
2511 END_DEBUG
2512
2513 SCSI_XFER_ERROR(sxfer) = XS_DEV_NOT_THERE;
2514 SCSI_TRANSFER_DONE(sxfer);
2515 return;
2516 }
2517 break;
2518 #if defined(__FreeBSD__)
2519 case XPT_PATH_INQ:
2520 case XPT_NOOP:
2521 /* The opcodes sometimes aimed at a target (sc is valid),
2522 * sometimes aimed at the SIM (sc is invalid and target is
2523 * CAM_TARGET_WILDCARD)
2524 */
2525 if (sbp == NULL &&
2526 sxfer->ccb_h.target_id != CAM_TARGET_WILDCARD) {
2527 SBP_DEBUG(0)
2528 printf("%s:%d:%d func_code 0x%04x: "
2529 "Invalid target (no wildcard)\n",
2530 device_get_nameunit(sbp->fd.dev),
2531 sxfer->ccb_h.target_id, sxfer->ccb_h.target_lun,
2532 sxfer->ccb_h.func_code);
2533 END_DEBUG
2534 SCSI_XFER_ERROR(sxfer) = XS_DEV_NOT_THERE;
2535 SCSI_TRANSFER_DONE(sxfer);
2536 return;
2537 }
2538 break;
2539 #endif
2540 default:
2541 /* XXX Hm, we should check the input parameters */
2542 break;
2543 }
2544
2545 switch (SCSI_XFER_FUNCCODE(sxfer)) {
2546 case XPT_SCSI_IO:
2547 {
2548 struct sbp_ocb *ocb;
2549 int speed;
2550 void *cdb;
2551
2552 SBP_DEBUG(2)
2553 printf("%s:%d:%d XPT_SCSI_IO: "
2554 "cmd: %02x %02x %02x %02x %02x %02x %02x %02x %02x %02x"
2555 ", flags: 0x%02x, "
2556 "%db cmd/%db data/%db sense\n",
2557 device_get_nameunit(sbp->fd.dev),
2558 SCSI_XFER_TARGET(sxfer), SCSI_XFER_LUN(sxfer),
2559 SCSI_XFER_10BCMD_DUMP(sxfer),
2560 SCSI_XFER_DIR(sxfer),
2561 SCSI_XFER_CMDLEN(sxfer), SCSI_XFER_DATALEN(sxfer),
2562 SCSI_XFER_SENSELEN(sxfer));
2563 END_DEBUG
2564 if(sdev == NULL){
2565 SCSI_XFER_ERROR(sxfer) = XS_DEV_NOT_THERE;
2566 SCSI_TRANSFER_DONE(sxfer);
2567 return;
2568 }
2569 #if 0
2570 /* if we are in probe stage, pass only probe commands */
2571 if (sdev->status == SBP_DEV_PROBE) {
2572 char *name;
2573 name = xpt_path_periph(sxfer->ccb_h.path)->periph_name;
2574 printf("probe stage, periph name: %s\n", name);
2575 if (strcmp(name, "probe") != 0) {
2576 SCSI_XFER_ERROR(sxfer) = XS_REQUEUE_REQ;
2577 SCSI_TRANSFER_DONE(sxfer);
2578 return;
2579 }
2580 }
2581 #endif
2582 if ((ocb = sbp_get_ocb(sdev)) == NULL) {
2583 SCSI_XFER_ERROR(sxfer) = XS_REQUEUE_REQ;
2584 if (sdev->freeze == 0) {
2585 SBP_DEVICE_FREEZE(sdev, 1);
2586 sdev->freeze ++;
2587 }
2588 SCSI_TRANSFER_DONE(sxfer);
2589 return;
2590 }
2591
2592 ocb->flags = OCB_ACT_CMD;
2593 ocb->sdev = sdev;
2594 ocb->sxfer = sxfer;
2595 #if defined(__FreeBSD__)
2596 sxfer->ccb_h.ccb_sdev_ptr = sdev;
2597 #endif
2598 ocb->orb[0] = htonl(1 << 31);
2599 ocb->orb[1] = 0;
2600 ocb->orb[2] = htonl(((sbp->fd.fc->nodeid | FWLOCALBUS )<< 16) );
2601 ocb->orb[3] = htonl(ocb->bus_addr + IND_PTR_OFFSET);
2602 speed = min(target->fwdev->speed, max_speed);
2603 ocb->orb[4] = htonl(ORB_NOTIFY | ORB_CMD_SPD(speed)
2604 | ORB_CMD_MAXP(speed + 7));
2605 if(SCSI_XFER_DIR(sxfer) == SCSI_XFER_DATA_IN){
2606 ocb->orb[4] |= htonl(ORB_CMD_IN);
2607 }
2608
2609 if (CAM_XFER_FLAGS(sxfer) & CAM_SCATTER_VALID)
2610 printf("sbp: CAM_SCATTER_VALID\n");
2611 if (CAM_XFER_FLAGS(sxfer) & CAM_DATA_PHYS)
2612 printf("sbp: CAM_DATA_PHYS\n");
2613
2614 cdb = SCSI_XFER_CMD(sxfer);
2615 bcopy(cdb, (void *)&ocb->orb[5], SCSI_XFER_CMDLEN(sxfer));
2616 /*
2617 printf("ORB %08x %08x %08x %08x\n", ntohl(ocb->orb[0]), ntohl(ocb->orb[1]), ntohl(ocb->orb[2]), ntohl(ocb->orb[3]));
2618 printf("ORB %08x %08x %08x %08x\n", ntohl(ocb->orb[4]), ntohl(ocb->orb[5]), ntohl(ocb->orb[6]), ntohl(ocb->orb[7]));
2619 */
2620 if (SCSI_XFER_DATALEN(sxfer) > 0) {
2621 int s, error;
2622
2623 s = splsoftvm();
2624 error = fw_bus_dmamap_load(/*dma tag*/sbp->dmat,
2625 /*dma map*/ocb->dmamap,
2626 SCSI_XFER_DATA(sxfer),
2627 SCSI_XFER_DATALEN(sxfer),
2628 sbp_execute_ocb,
2629 ocb,
2630 /*flags*/0);
2631 splx(s);
2632 if (error)
2633 printf("sbp: bus_dmamap_load error %d\n", error);
2634 } else
2635 sbp_execute_ocb(ocb, NULL, 0, 0);
2636 break;
2637 }
2638 #if defined(__FreeBSD__)
2639 case XPT_CALC_GEOMETRY:
2640 {
2641 struct ccb_calc_geometry *ccg;
2642 #if defined(__DragonFly__) || __FreeBSD_version < 501100
2643 uint32_t size_mb;
2644 uint32_t secs_per_cylinder;
2645 int extended = 1;
2646 #endif
2647
2648 ccg = &sxfer->ccg;
2649 if (ccg->block_size == 0) {
2650 printf("sbp_action1: block_size is 0.\n");
2651 SCSI_XFER_ERROR(sxfer) = XS_REQ_INVALID;
2652 SCSI_TRANSFER_DONE(sxfer);
2653 break;
2654 }
2655 SBP_DEBUG(1)
2656 printf("%s:%d:%d:%d:XPT_CALC_GEOMETRY: "
2657 #if defined(__DragonFly__) || __FreeBSD_version < 500000
2658 "Volume size = %d\n",
2659 #else
2660 "Volume size = %jd\n",
2661 #endif
2662 device_get_nameunit(sbp->fd.dev),
2663 cam_sim_path(sbp->sim),
2664 sxfer->ccb_h.target_id, sxfer->ccb_h.target_lun,
2665 #if defined(__FreeBSD__) && __FreeBSD_version >= 500000
2666 (uintmax_t)
2667 #endif
2668 ccg->volume_size);
2669 END_DEBUG
2670
2671 #if defined(__DragonFly__) || __FreeBSD_version < 501100
2672 size_mb = ccg->volume_size
2673 / ((1024L * 1024L) / ccg->block_size);
2674
2675 if (size_mb > 1024 && extended) {
2676 ccg->heads = 255;
2677 ccg->secs_per_track = 63;
2678 } else {
2679 ccg->heads = 64;
2680 ccg->secs_per_track = 32;
2681 }
2682 secs_per_cylinder = ccg->heads * ccg->secs_per_track;
2683 ccg->cylinders = ccg->volume_size / secs_per_cylinder;
2684 SCSI_XFER_ERROR(sxfer) = XS_REQ_CMP;
2685 #else
2686 cam_calc_geometry(ccg, /*extended*/1);
2687 #endif
2688 SCSI_TRANSFER_DONE(sxfer);
2689 break;
2690 }
2691 case XPT_RESET_BUS: /* Reset the specified SCSI bus */
2692 {
2693
2694 SBP_DEBUG(1)
2695 printf("%s:%d:XPT_RESET_BUS: \n",
2696 device_get_nameunit(sbp->fd.dev), cam_sim_path(sbp->sim));
2697 END_DEBUG
2698
2699 SCSI_XFER_ERROR(sxfer) = XS_REQ_INVALID;
2700 SCSI_TRANSFER_DONE(sxfer);
2701 break;
2702 }
2703 case XPT_PATH_INQ: /* Path routing inquiry */
2704 {
2705 struct ccb_pathinq *cpi = &sxfer->cpi;
2706 struct cam_sim *sim = sbp->sim;
2707
2708 SBP_DEBUG(1)
2709 printf("%s:%d:%d XPT_PATH_INQ:.\n",
2710 device_get_nameunit(sbp->fd.dev),
2711 sxfer->ccb_h.target_id, sxfer->ccb_h.target_lun);
2712 END_DEBUG
2713 cpi->version_num = 1; /* XXX??? */
2714 cpi->hba_inquiry = PI_TAG_ABLE;
2715 cpi->target_sprt = 0;
2716 cpi->hba_misc = PIM_NOBUSRESET | PIM_NO_6_BYTE;
2717 cpi->hba_eng_cnt = 0;
2718 cpi->max_target = SBP_NUM_TARGETS - 1;
2719 cpi->max_lun = SBP_NUM_LUNS - 1;
2720 cpi->initiator_id = SBP_INITIATOR;
2721 cpi->bus_id = sim->bus_id;
2722 cpi->base_transfer_speed = 400 * 1000 / 8;
2723 strncpy(cpi->sim_vid, "FreeBSD", SIM_IDLEN);
2724 strncpy(cpi->hba_vid, "SBP", HBA_IDLEN);
2725 strncpy(cpi->dev_name, sim->sim_name, DEV_IDLEN);
2726 cpi->unit_number = sim->unit_number;
2727
2728 SCSI_XFER_ERROR(cpi) = XS_REQ_CMP;
2729 SCSI_TRANSFER_DONE(sxfer);
2730 break;
2731 }
2732 case XPT_GET_TRAN_SETTINGS:
2733 {
2734 struct ccb_trans_settings *cts = &sxfer->cts;
2735 SBP_DEBUG(1)
2736 printf("%s:%d:%d XPT_GET_TRAN_SETTINGS:.\n",
2737 device_get_nameunit(sbp->fd.dev),
2738 sxfer->ccb_h.target_id, sxfer->ccb_h.target_lun);
2739 END_DEBUG
2740 /* Enable disconnect and tagged queuing */
2741 cts->valid = CCB_TRANS_DISC_VALID | CCB_TRANS_TQ_VALID;
2742 cts->flags = CCB_TRANS_DISC_ENB | CCB_TRANS_TAG_ENB;
2743
2744 SCSI_XFER_ERROR(cts) = XS_REQ_CMP;
2745 SCSI_TRANSFER_DONE(sxfer);
2746 break;
2747 }
2748 case XPT_ABORT:
2749 SCSI_XFER_ERROR(sxfer) = XS_UA_ABORT;
2750 SCSI_TRANSFER_DONE(sxfer);
2751 break;
2752 case XPT_SET_TRAN_SETTINGS:
2753 /* XXX */
2754 default:
2755 SCSI_XFER_ERROR(sxfer) = XS_REQ_INVALID;
2756 SCSI_TRANSFER_DONE(sxfer);
2757 break;
2758 #endif
2759 }
2760 return;
2761 }
2762
2763 #if defined(__FreeBSD__)
2764 static void
2765 sbp_action(struct cam_sim *sim, sbp_scsi_xfer *sxfer)
2766 {
2767 int s;
2768
2769 s = splfw();
2770 sbp_action1(sim->softc, sxfer);
2771 splx(s);
2772 }
2773 #endif
2774
2775 static void
2776 sbp_execute_ocb(void *arg, bus_dma_segment_t *segments, int seg, int error)
2777 {
2778 int i;
2779 struct sbp_ocb *ocb;
2780 struct sbp_ocb *prev;
2781 bus_dma_segment_t *s;
2782
2783 if (error)
2784 printf("sbp_execute_ocb: error=%d\n", error);
2785
2786 ocb = (struct sbp_ocb *)arg;
2787
2788 SBP_DEBUG(2)
2789 printf("sbp_execute_ocb: seg %d", seg);
2790 for (i = 0; i < seg; i++)
2791 #if defined(__DragonFly__) || \
2792 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2793 printf(", %x:%d", segments[i].ds_addr, segments[i].ds_len);
2794 #else
2795 printf(", %jx:%jd", (uintmax_t)segments[i].ds_addr,
2796 (uintmax_t)segments[i].ds_len);
2797 #endif
2798 printf("\n");
2799 END_DEBUG
2800
2801 if (seg == 1) {
2802 /* direct pointer */
2803 s = &segments[0];
2804 if (s->ds_len > SBP_SEG_MAX)
2805 panic("ds_len > SBP_SEG_MAX, fix busdma code");
2806 ocb->orb[3] = htonl(s->ds_addr);
2807 ocb->orb[4] |= htonl(s->ds_len);
2808 } else if(seg > 1) {
2809 /* page table */
2810 for (i = 0; i < seg; i++) {
2811 s = &segments[i];
2812 SBP_DEBUG(0)
2813 /* XXX LSI Logic "< 16 byte" bug might be hit */
2814 if (s->ds_len < 16)
2815 printf("sbp_execute_ocb: warning, "
2816 #if defined(__DragonFly__) || \
2817 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2818 "segment length(%d) is less than 16."
2819 #else
2820 "segment length(%jd) is less than 16."
2821 #endif
2822 "(seg=%d/%d)\n", (uintmax_t)s->ds_len, i+1, seg);
2823 END_DEBUG
2824 if (s->ds_len > SBP_SEG_MAX)
2825 panic("ds_len > SBP_SEG_MAX, fix busdma code");
2826 ocb->ind_ptr[i].hi = htonl(s->ds_len << 16);
2827 ocb->ind_ptr[i].lo = htonl(s->ds_addr);
2828 }
2829 ocb->orb[4] |= htonl(ORB_CMD_PTBL | seg);
2830 }
2831
2832 if (seg > 0)
2833 fw_bus_dmamap_sync(ocb->sdev->target->sbp->dmat, ocb->dmamap,
2834 (ntohl(ocb->orb[4]) & ORB_CMD_IN) ?
2835 BUS_DMASYNC_PREREAD : BUS_DMASYNC_PREWRITE);
2836 prev = sbp_enqueue_ocb(ocb->sdev, ocb);
2837 fwdma_sync(&ocb->sdev->dma, BUS_DMASYNC_PREWRITE);
2838 if (use_doorbell) {
2839 if (prev == NULL) {
2840 if (ocb->sdev->last_ocb != NULL)
2841 sbp_doorbell(ocb->sdev);
2842 else
2843 sbp_orb_pointer(ocb->sdev, ocb);
2844 }
2845 } else {
2846 if (prev == NULL || (ocb->sdev->flags & ORB_LINK_DEAD) != 0) {
2847 ocb->sdev->flags &= ~ORB_LINK_DEAD;
2848 sbp_orb_pointer(ocb->sdev, ocb);
2849 }
2850 }
2851 }
2852
2853 #if defined(__FreeBSD__)
2854 static void
2855 sbp_poll(struct cam_sim *sim)
2856 {
2857 struct sbp_softc *sbp;
2858 struct firewire_comm *fc;
2859
2860 sbp = (struct sbp_softc *)sim->softc;
2861 fc = sbp->fd.fc;
2862
2863 fc->poll(fc, 0, -1);
2864
2865 return;
2866 }
2867
2868 #endif
2869 static struct sbp_ocb *
2870 sbp_dequeue_ocb(struct sbp_dev *sdev, struct sbp_status *sbp_status)
2871 {
2872 struct sbp_ocb *ocb;
2873 struct sbp_ocb *next;
2874 int s = splfw(), order = 0;
2875 int flags;
2876
2877 SBP_DEBUG(1)
2878 sbp_show_sdev_info(sdev, 2);
2879 #if defined(__DragonFly__) || \
2880 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2881 printf("%s: 0x%08lx src %d\n",
2882 #else
2883 printf("%s: 0x%08x src %d\n",
2884 #endif
2885 __func__, ntohl(sbp_status->orb_lo), sbp_status->src);
2886 END_DEBUG
2887 for (ocb = STAILQ_FIRST(&sdev->ocbs); ocb != NULL; ocb = next) {
2888 next = STAILQ_NEXT(ocb, ocb);
2889 flags = ocb->flags;
2890 if (OCB_MATCH(ocb, sbp_status)) {
2891 /* found */
2892 STAILQ_REMOVE(&sdev->ocbs, ocb, sbp_ocb, ocb);
2893 if (ocb->sxfer != NULL)
2894 #if defined(__DragonFly__) || defined(__NetBSD__)
2895 callout_stop(&SCSI_XFER_CALLOUT(ocb->sxfer));
2896 #else
2897 untimeout(sbp_timeout, (caddr_t)ocb,
2898 SCSI_XFER_CALLOUT(ocb->sxfer));
2899 #endif
2900 if (ntohl(ocb->orb[4]) & 0xffff) {
2901 fw_bus_dmamap_sync(sdev->target->sbp->dmat,
2902 ocb->dmamap,
2903 (ntohl(ocb->orb[4]) & ORB_CMD_IN) ?
2904 BUS_DMASYNC_POSTREAD :
2905 BUS_DMASYNC_POSTWRITE);
2906 fw_bus_dmamap_unload(sdev->target->sbp->dmat,
2907 ocb->dmamap);
2908 }
2909 if (!use_doorbell) {
2910 if (sbp_status->src == SRC_NO_NEXT) {
2911 if (next != NULL)
2912 sbp_orb_pointer(sdev, next);
2913 else if (order > 0) {
2914 /*
2915 * Unordered execution
2916 * We need to send pointer for
2917 * next ORB
2918 */
2919 sdev->flags |= ORB_LINK_DEAD;
2920 }
2921 }
2922 } else {
2923 /*
2924 * XXX this is not correct for unordered
2925 * execution.
2926 */
2927 if (sdev->last_ocb != NULL)
2928 sbp_free_ocb(sdev, sdev->last_ocb);
2929 sdev->last_ocb = ocb;
2930 if (next != NULL &&
2931 sbp_status->src == SRC_NO_NEXT)
2932 sbp_doorbell(sdev);
2933 }
2934 break;
2935 } else
2936 order ++;
2937 }
2938 splx(s);
2939 SBP_DEBUG(0)
2940 if (ocb && order > 0) {
2941 sbp_show_sdev_info(sdev, 2);
2942 printf("unordered execution order:%d\n", order);
2943 }
2944 END_DEBUG
2945 return (ocb);
2946 }
2947
2948 static struct sbp_ocb *
2949 sbp_enqueue_ocb(struct sbp_dev *sdev, struct sbp_ocb *ocb)
2950 {
2951 int s = splfw();
2952 struct sbp_ocb *prev, *prev2;
2953
2954 SBP_DEBUG(1)
2955 sbp_show_sdev_info(sdev, 2);
2956 #if defined(__DragonFly__) || \
2957 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2958 printf("%s: 0x%08x\n", __func__, ocb->bus_addr);
2959 #else
2960 printf("%s: 0x%08jx\n", __func__, (uintmax_t)ocb->bus_addr);
2961 #endif
2962 END_DEBUG
2963 prev2 = prev = STAILQ_LAST(&sdev->ocbs, sbp_ocb, ocb);
2964 STAILQ_INSERT_TAIL(&sdev->ocbs, ocb, ocb);
2965
2966 if (ocb->sxfer != NULL)
2967 #if defined(__DragonFly__) || defined(__NetBSD__)
2968 callout_reset(&SCSI_XFER_CALLOUT(ocb->sxfer),
2969 mstohz(SCSI_XFER_TIMEOUT(ocb->sxfer)), sbp_timeout, ocb);
2970 #else
2971 SCSI_XFER_CALLOUT(ocb->sxfer) = timeout(sbp_timeout,
2972 (caddr_t)ocb, mstohz(SCSI_XFER_TIMEOUT(ocb->sxfer)));
2973 #endif
2974
2975 if (use_doorbell && prev == NULL)
2976 prev2 = sdev->last_ocb;
2977
2978 if (prev2 != NULL) {
2979 SBP_DEBUG(2)
2980 #if defined(__DragonFly__) || \
2981 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
2982 printf("linking chain 0x%x -> 0x%x\n",
2983 prev2->bus_addr, ocb->bus_addr);
2984 #else
2985 printf("linking chain 0x%jx -> 0x%jx\n",
2986 (uintmax_t)prev2->bus_addr, (uintmax_t)ocb->bus_addr);
2987 #endif
2988 END_DEBUG
2989 prev2->orb[1] = htonl(ocb->bus_addr);
2990 prev2->orb[0] = 0;
2991 }
2992 splx(s);
2993
2994 return prev;
2995 }
2996
2997 static struct sbp_ocb *
2998 sbp_get_ocb(struct sbp_dev *sdev)
2999 {
3000 struct sbp_ocb *ocb;
3001 int s = splfw();
3002 ocb = STAILQ_FIRST(&sdev->free_ocbs);
3003 if (ocb == NULL) {
3004 sdev->flags |= ORB_SHORTAGE;
3005 printf("ocb shortage!!!\n");
3006 splx(s);
3007 return NULL;
3008 }
3009 STAILQ_REMOVE_HEAD(&sdev->free_ocbs, ocb);
3010 splx(s);
3011 ocb->sxfer = NULL;
3012 return (ocb);
3013 }
3014
3015 static void
3016 sbp_free_ocb(struct sbp_dev *sdev, struct sbp_ocb *ocb)
3017 {
3018 ocb->flags = 0;
3019 ocb->sxfer = NULL;
3020 STAILQ_INSERT_TAIL(&sdev->free_ocbs, ocb, ocb);
3021 if ((sdev->flags & ORB_SHORTAGE) != 0) {
3022 int count;
3023
3024 sdev->flags &= ~ORB_SHORTAGE;
3025 count = sdev->freeze;
3026 sdev->freeze = 0;
3027 SBP_DEVICE_THAW(sdev, count);
3028 }
3029 }
3030
3031 static void
3032 sbp_abort_ocb(struct sbp_ocb *ocb, int status)
3033 {
3034 struct sbp_dev *sdev;
3035
3036 sdev = ocb->sdev;
3037 SBP_DEBUG(0)
3038 sbp_show_sdev_info(sdev, 2);
3039 #if defined(__DragonFly__) || \
3040 (defined(__FreeBSD__) && __FreeBSD_version < 500000)
3041 printf("sbp_abort_ocb 0x%x\n", ocb->bus_addr);
3042 #else
3043 printf("sbp_abort_ocb 0x%jx\n", (uintmax_t)ocb->bus_addr);
3044 #endif
3045 END_DEBUG
3046 SBP_DEBUG(1)
3047 if (ocb->sxfer != NULL)
3048 sbp_print_scsi_cmd(ocb);
3049 END_DEBUG
3050 if (ntohl(ocb->orb[4]) & 0xffff) {
3051 fw_bus_dmamap_sync(sdev->target->sbp->dmat, ocb->dmamap,
3052 (ntohl(ocb->orb[4]) & ORB_CMD_IN) ?
3053 BUS_DMASYNC_POSTREAD : BUS_DMASYNC_POSTWRITE);
3054 fw_bus_dmamap_unload(sdev->target->sbp->dmat, ocb->dmamap);
3055 }
3056 if (ocb->sxfer != NULL) {
3057 #if defined(__DragonFly__ ) || defined(__NetBSD__)
3058 callout_stop(&SCSI_XFER_CALLOUT(ocb->sxfer));
3059 #else
3060 untimeout(sbp_timeout, (caddr_t)ocb,
3061 SCSI_XFER_CALLOUT(ocb->sxfer));
3062 #endif
3063 SCSI_XFER_ERROR(ocb->sxfer) = status;
3064 SCSI_TRANSFER_DONE(ocb->sxfer);
3065 }
3066 sbp_free_ocb(sdev, ocb);
3067 }
3068
3069 static void
3070 sbp_abort_all_ocbs(struct sbp_dev *sdev, int status)
3071 {
3072 int s;
3073 struct sbp_ocb *ocb, *next;
3074 STAILQ_HEAD(, sbp_ocb) temp;
3075
3076 s = splfw();
3077
3078 bcopy(&sdev->ocbs, &temp, sizeof(temp));
3079 STAILQ_INIT(&sdev->ocbs);
3080 for (ocb = STAILQ_FIRST(&temp); ocb != NULL; ocb = next) {
3081 next = STAILQ_NEXT(ocb, ocb);
3082 sbp_abort_ocb(ocb, status);
3083 }
3084 if (sdev->last_ocb != NULL) {
3085 sbp_free_ocb(sdev, sdev->last_ocb);
3086 sdev->last_ocb = NULL;
3087 }
3088
3089 splx(s);
3090 }
3091
3092 #if defined(__FreeBSD__)
3093 static devclass_t sbp_devclass;
3094
3095 static device_method_t sbp_methods[] = {
3096 /* device interface */
3097 DEVMETHOD(device_probe, sbp_probe),
3098 DEVMETHOD(device_attach, sbp_attach),
3099 DEVMETHOD(device_detach, sbp_detach),
3100 DEVMETHOD(device_shutdown, sbp_shutdown),
3101
3102 { 0, 0 }
3103 };
3104
3105 static driver_t sbp_driver = {
3106 "sbp",
3107 sbp_methods,
3108 sizeof(struct sbp_softc),
3109 };
3110 #ifdef __DragonFly__
3111 DECLARE_DUMMY_MODULE(sbp);
3112 #endif
3113 DRIVER_MODULE(sbp, firewire, sbp_driver, sbp_devclass, 0, 0);
3114 MODULE_VERSION(sbp, 1);
3115 MODULE_DEPEND(sbp, firewire, 1, 1, 1);
3116 MODULE_DEPEND(sbp, cam, 1, 1, 1);
3117 #elif defined(__NetBSD__)
3118 static void
3119 sbp_scsipi_request(
3120 struct scsipi_channel *channel, scsipi_adapter_req_t req, void *arg)
3121 {
3122 int i, s;
3123 struct sbp_softc *sbp =
3124 (struct sbp_softc *)channel->chan_adapter->adapt_dev;
3125 struct scsipi_xfer *xs = arg;
3126
3127 if (debug > 1)
3128 printf("Called sbpscsi_scsipi_request\n");
3129
3130 switch (req) {
3131 case ADAPTER_REQ_RUN_XFER:
3132 if (debug > 1) {
3133 printf("Got req_run_xfer\n");
3134 printf("xs control: 0x%08x, timeout: %d\n",
3135 xs->xs_control, xs->timeout);
3136 printf("opcode: 0x%02x\n", (int)xs->cmd->opcode);
3137 for (i = 0; i < 15; i++)
3138 printf("0x%02x ",(int)xs->cmd->bytes[i]);
3139 printf("\n");
3140 }
3141 if (xs->xs_control & XS_CTL_RESET) {
3142 if (debug > 1)
3143 printf("XS_CTL_RESET not support\n");
3144 break;
3145 }
3146 #define SBPSCSI_SBP2_MAX_CDB 12
3147 if (xs->cmdlen > SBPSCSI_SBP2_MAX_CDB) {
3148 if (debug > 0)
3149 printf(
3150 "sbp doesn't support cdb's larger than %d "
3151 "bytes\n", SBPSCSI_SBP2_MAX_CDB);
3152 SCSI_XFER_ERROR(xs) = XS_REQ_INVALID;
3153 SCSI_TRANSFER_DONE(xs);
3154 return;
3155 }
3156 s = splfw();
3157 sbp_action1(sbp, xs);
3158 splx(s);
3159
3160 break;
3161 case ADAPTER_REQ_GROW_RESOURCES:
3162 if (debug > 1)
3163 printf("Got req_grow_resources\n");
3164 break;
3165 case ADAPTER_REQ_SET_XFER_MODE:
3166 if (debug > 1)
3167 printf("Got set xfer mode\n");
3168 break;
3169 default:
3170 panic("Unknown request: %d\n", (int)req);
3171 }
3172 }
3173
3174 static void
3175 sbp_minphys(struct buf *bp)
3176 {
3177 minphys(bp);
3178 }
3179
3180 CFATTACH_DECL(sbp, sizeof (struct sbp_softc),
3181 sbpmatch, sbpattach, sbpdetach, NULL);
3182 #endif
3183