isp.c revision 1.21 1 /* $NetBSD: isp.c,v 1.21 1998/03/24 23:37:53 mjacob Exp $ */
2
3 /*
4 * Machine Independent (well, as best as possible)
5 * code for the Qlogic ISP SCSI adapters.
6 *
7 * Specific probe attach and support routines for Qlogic ISP SCSI adapters.
8 *
9 * Copyright (c) 1997 by Matthew Jacob
10 * NASA AMES Research Center.
11 * All rights reserved.
12 *
13 * Redistribution and use in source and binary forms, with or without
14 * modification, are permitted provided that the following conditions
15 * are met:
16 * 1. Redistributions of source code must retain the above copyright
17 * notice immediately at the beginning of the file, without modification,
18 * this list of conditions, and the following disclaimer.
19 * 2. Redistributions in binary form must reproduce the above copyright
20 * notice, this list of conditions and the following disclaimer in the
21 * documentation and/or other materials provided with the distribution.
22 * 3. The name of the author may not be used to endorse or promote products
23 * derived from this software without specific prior written permission.
24 *
25 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
26 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
27 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
28 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
29 * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
30 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
31 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
32 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
33 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
34 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
35 * SUCH DAMAGE.
36 */
37
38 /*
39 * Inspiration and ideas about this driver are from Erik Moe's Linux driver
40 * (qlogicisp.c) and Dave Miller's SBus version of same (qlogicisp.c)
41 */
42
43 #include <sys/types.h>
44 #include <sys/param.h>
45 #include <sys/systm.h>
46 #include <sys/kernel.h>
47 #include <sys/errno.h>
48 #include <sys/ioctl.h>
49 #include <sys/device.h>
50 #include <sys/malloc.h>
51 #include <sys/buf.h>
52 #include <sys/proc.h>
53 #include <sys/user.h>
54
55
56 #include <dev/scsipi/scsi_all.h>
57 #include <dev/scsipi/scsipi_all.h>
58 #include <dev/scsipi/scsiconf.h>
59
60 #include <dev/scsipi/scsi_message.h>
61 #include <dev/scsipi/scsipi_debug.h>
62
63 #include <vm/vm.h>
64 #include <vm/vm_param.h>
65 #include <vm/pmap.h>
66
67 #include <dev/ic/ispreg.h>
68 #include <dev/ic/ispvar.h>
69 #include <dev/ic/ispmbox.h>
70
71 #define MBOX_DELAY_COUNT 1000000 / 100
72
73 static void ispminphys __P((struct buf *));
74 static int32_t ispscsicmd __P((struct scsipi_xfer *xs));
75 static void isp_mboxcmd __P((struct ispsoftc *, mbreg_t *));
76
77 static struct scsipi_adapter isp_switch = {
78 ispscsicmd, ispminphys, 0, 0
79 };
80
81 static struct scsipi_device isp_dev = { NULL, NULL, NULL, NULL };
82
83 #define IDPRINTF(lev, x) if (isp->isp_dblev >= lev) printf x
84
85 static int isp_poll __P((struct ispsoftc *, struct scsipi_xfer *, int));
86 static int isp_parse_status
87 __P((struct ispsoftc *, ispstatusreq_t *, struct scsipi_xfer *));
88 static void isp_lostcmd
89 __P((struct ispsoftc *, struct scsipi_xfer *, ispreq_t *));
90 static void isp_fibre_init __P((struct ispsoftc *));
91 static void isp_fw_state __P((struct ispsoftc *));
92 static void isp_dumpregs __P((struct ispsoftc *, const char *));
93 static void isp_setdparm __P((struct ispsoftc *));
94 static void isp_prtstst __P((ispstatusreq_t *));
95
96 #define WATCHI (30 * hz)
97 static void isp_watch __P((void *));
98 /*
99 * Reset Hardware.
100 */
101 void
102 isp_reset(isp)
103 struct ispsoftc *isp;
104 {
105 mbreg_t mbs;
106 int loops, i, cf_flags, dodnld = 1;
107 char *revname;
108
109 revname = "(unknown)";
110
111 isp->isp_state = ISP_NILSTATE;
112 cf_flags = isp->isp_dev.dv_cfdata->cf_flags;
113
114 /*
115 * Basic types have been set in the MD code.
116 * See if we can't figure out more here.
117 */
118 if (isp->isp_type & ISP_HA_FC) {
119 isp->isp_dblev = 3;
120 revname = "2100";
121 } else {
122 #ifdef SCSIDEBUG
123 isp->isp_dblev = 2;
124 #else
125 isp->isp_dblev = 1;
126 #endif
127 i = ISP_READ(isp, BIU_CONF0) & BIU_CONF0_HW_MASK;
128 switch (i) {
129 default:
130 printf("%s: unknown ISP type %x\n", isp->isp_name, i);
131 isp->isp_type = ISP_HA_SCSI_1020;
132 break;
133 case 1:
134 case 2:
135 revname = "1020";
136 isp->isp_type = ISP_HA_SCSI_1020;
137 break;
138 case 3:
139 revname = "1040A";
140 isp->isp_type = ISP_HA_SCSI_1040A;
141 break;
142 case 5:
143 revname = "1040B";
144 isp->isp_type = ISP_HA_SCSI_1040B;
145 break;
146 }
147 }
148
149 /*
150 * Do MD specific pre initialization
151 */
152 ISP_RESET0(isp);
153 isp_setdparm(isp);
154
155 /*
156 * Hit the chip over the head with hammer,
157 * and give the ISP a chance to recover.
158 */
159
160 if (isp->isp_type & ISP_HA_SCSI) {
161 ISP_WRITE(isp, BIU_ICR, BIU_ICR_SOFT_RESET);
162 /*
163 * A slight delay...
164 */
165 delay(100);
166
167 /*
168 * Clear data && control DMA engines.
169 */
170 ISP_WRITE(isp, CDMA_CONTROL,
171 DMA_CNTRL_CLEAR_CHAN | DMA_CNTRL_RESET_INT);
172 ISP_WRITE(isp, DDMA_CONTROL,
173 DMA_CNTRL_CLEAR_CHAN | DMA_CNTRL_RESET_INT);
174 } else {
175 ISP_WRITE(isp, BIU2100_CSR, BIU2100_SOFT_RESET);
176 /*
177 * A slight delay...
178 */
179 delay(100);
180 ISP_WRITE(isp, CDMA2100_CONTROL,
181 DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
182 ISP_WRITE(isp, TDMA2100_CONTROL,
183 DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
184 ISP_WRITE(isp, RDMA2100_CONTROL,
185 DMA_CNTRL2100_CLEAR_CHAN | DMA_CNTRL2100_RESET_INT);
186 }
187
188 /*
189 * Wait for ISP to be ready to go...
190 */
191 loops = MBOX_DELAY_COUNT;
192 for (;;) {
193 if (isp->isp_type & ISP_HA_SCSI) {
194 if (!(ISP_READ(isp, BIU_ICR) & BIU_ICR_SOFT_RESET))
195 break;
196 } else {
197 if (!(ISP_READ(isp, BIU2100_CSR) & BIU2100_SOFT_RESET))
198 break;
199 }
200 delay(100);
201 if (--loops < 0) {
202 isp_dumpregs(isp, "chip reset timed out");
203 return;
204 }
205 }
206 /*
207 * More initialization
208 */
209 if (isp->isp_type & ISP_HA_SCSI) {
210 ISP_WRITE(isp, BIU_CONF1, 0);
211 } else {
212 ISP_WRITE(isp, BIU2100_CSR, 0);
213 ISP_WRITE(isp, RISC_MTR2100, 0x1212); /* FM */
214 }
215
216 ISP_WRITE(isp, HCCR, HCCR_CMD_RESET);
217 delay(100);
218
219 if (isp->isp_type & ISP_HA_SCSI) {
220 ISP_SETBITS(isp, BIU_CONF1, isp->isp_mdvec->dv_conf1);
221 if (isp->isp_mdvec->dv_conf1 & BIU_BURST_ENABLE) {
222 ISP_SETBITS(isp, CDMA_CONF, DMA_ENABLE_BURST);
223 ISP_SETBITS(isp, DDMA_CONF, DMA_ENABLE_BURST);
224 }
225 }
226 ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE); /* release paused processor */
227
228 /*
229 * Do MD specific post initialization
230 */
231 ISP_RESET1(isp);
232
233 /*
234 * Enable interrupts
235 */
236 ENABLE_INTS(isp);
237
238 /*
239 * Do some sanity checking.
240 */
241 mbs.param[0] = MBOX_NO_OP;
242 isp_mboxcmd(isp, &mbs);
243 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
244 isp_dumpregs(isp, "NOP test failed");
245 return;
246 }
247
248 if (isp->isp_type & ISP_HA_SCSI) {
249 mbs.param[0] = MBOX_MAILBOX_REG_TEST;
250 mbs.param[1] = 0xdead;
251 mbs.param[2] = 0xbeef;
252 mbs.param[3] = 0xffff;
253 mbs.param[4] = 0x1111;
254 mbs.param[5] = 0xa5a5;
255 isp_mboxcmd(isp, &mbs);
256 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
257 isp_dumpregs(isp,
258 "Mailbox Register test didn't complete");
259 return;
260 }
261 if (mbs.param[1] != 0xdead || mbs.param[2] != 0xbeef ||
262 mbs.param[3] != 0xffff || mbs.param[4] != 0x1111 ||
263 mbs.param[5] != 0xa5a5) {
264 isp_dumpregs(isp, "Register Test Failed");
265 return;
266 }
267
268 }
269
270 /*
271 * Download new Firmware, unless requested not to do so.
272 * This is made slightly trickier in some cases where the
273 * firmware of the ROM revision is newer than the revision
274 * compiled into the driver. So, where we used to compare
275 * versions of our f/w and the ROM f/w, now we just see
276 * whether we have f/w at all and whether a config flag
277 * has disabled our download.
278 */
279 if (isp->isp_mdvec->dv_fwlen == 0 || (cf_flags & 0x80) != 0) {
280 dodnld = 0;
281 }
282
283 if (dodnld) {
284 for (i = 0; i < isp->isp_mdvec->dv_fwlen; i++) {
285 mbs.param[0] = MBOX_WRITE_RAM_WORD;
286 mbs.param[1] = isp->isp_mdvec->dv_codeorg + i;
287 mbs.param[2] = isp->isp_mdvec->dv_ispfw[i];
288 isp_mboxcmd(isp, &mbs);
289 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
290 isp_dumpregs(isp, "f/w download failed");
291
292 return;
293 }
294 }
295
296 if (isp->isp_mdvec->dv_fwlen) {
297 /*
298 * Verify that it downloaded correctly.
299 */
300 mbs.param[0] = MBOX_VERIFY_CHECKSUM;
301 mbs.param[1] = isp->isp_mdvec->dv_codeorg;
302 isp_mboxcmd(isp, &mbs);
303 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
304 isp_dumpregs(isp, "ram checksum failure");
305 return;
306 }
307 }
308 } else {
309 IDPRINTF(3, ("%s: skipping f/w download\n", isp->isp_name));
310 }
311
312 /*
313 * Now start it rolling.
314 *
315 * If we didn't actually download f/w,
316 * we still need to (re)start it.
317 */
318
319 mbs.param[0] = MBOX_EXEC_FIRMWARE;
320 mbs.param[1] = isp->isp_mdvec->dv_codeorg;
321 isp_mboxcmd(isp, &mbs);
322
323 if (isp->isp_type & ISP_HA_SCSI) {
324 /*
325 * Set CLOCK RATE
326 */
327 if (((sdparam *)isp->isp_param)->isp_clock) {
328 mbs.param[0] = MBOX_SET_CLOCK_RATE;
329 mbs.param[1] = ((sdparam *)isp->isp_param)->isp_clock;
330 isp_mboxcmd(isp, &mbs);
331 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
332 isp_dumpregs(isp, "failed to set CLOCKRATE");
333 return;
334 }
335 }
336 }
337 mbs.param[0] = MBOX_ABOUT_FIRMWARE;
338 isp_mboxcmd(isp, &mbs);
339 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
340 isp_dumpregs(isp, "ABOUT FIRMWARE command failed");
341 return;
342 }
343 printf("%s: Board Revision %s, %s F/W Revision %d.%d\n",
344 isp->isp_name, revname, dodnld? "loaded" : "ROM",
345 mbs.param[1], mbs.param[2]);
346 isp_fw_state(isp);
347 isp->isp_state = ISP_RESETSTATE;
348 }
349
350 /*
351 * Initialize Hardware to known state
352 */
353 void
354 isp_init(isp)
355 struct ispsoftc *isp;
356 {
357 sdparam *sdp;
358 mbreg_t mbs;
359 int s, i, l;
360
361 if (isp->isp_type & ISP_HA_FC) {
362 isp_fibre_init(isp);
363 return;
364 }
365
366 sdp = isp->isp_param;
367
368 /*
369 * Try and figure out if we're connected to a differential bus.
370 * You have to pause the RISC processor to read SXP registers.
371 */
372 s = splbio();
373 ISP_WRITE(isp, HCCR, HCCR_CMD_PAUSE);
374 if (ISP_READ(isp, SXP_PINS_DIFF) & SXP_PINS_DIFF_SENSE) {
375 sdp->isp_diffmode = 1;
376 printf("%s: Differential Mode\n", isp->isp_name);
377 } else {
378 /*
379 * Force pullups on.
380 */
381 sdp->isp_req_ack_active_neg = 1;
382 sdp->isp_data_line_active_neg = 1;
383 sdp->isp_diffmode = 0;
384 }
385 ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE); /* release paused processor */
386
387 mbs.param[0] = MBOX_GET_INIT_SCSI_ID;
388 isp_mboxcmd(isp, &mbs);
389 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
390 (void) splx(s);
391 isp_dumpregs(isp, "failed to get initiator id");
392 return;
393 }
394 if (mbs.param[1] != sdp->isp_initiator_id) {
395 printf("%s: setting Initiator ID to %d\n", isp->isp_name,
396 sdp->isp_initiator_id);
397 mbs.param[0] = MBOX_SET_INIT_SCSI_ID;
398 mbs.param[1] = sdp->isp_initiator_id;
399 isp_mboxcmd(isp, &mbs);
400 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
401 (void) splx(s);
402 isp_dumpregs(isp, "failed to set initiator id");
403 return;
404 }
405 } else {
406 IDPRINTF(3, ("%s: leaving Initiator ID at %d\n", isp->isp_name,
407 sdp->isp_initiator_id));
408 }
409
410 mbs.param[0] = MBOX_SET_RETRY_COUNT;
411 mbs.param[1] = sdp->isp_retry_count;
412 mbs.param[2] = sdp->isp_retry_delay;
413 isp_mboxcmd(isp, &mbs);
414 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
415 (void) splx(s);
416 isp_dumpregs(isp, "failed to set retry count and delay");
417 return;
418 }
419
420 mbs.param[0] = MBOX_SET_ASYNC_DATA_SETUP_TIME;
421 mbs.param[1] = sdp->isp_async_data_setup;
422 isp_mboxcmd(isp, &mbs);
423 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
424 (void) splx(s);
425 isp_dumpregs(isp, "failed to set async data setup time");
426 return;
427 }
428
429 mbs.param[0] = MBOX_SET_ACTIVE_NEG_STATE;
430 mbs.param[1] = (sdp->isp_req_ack_active_neg << 4) |
431 (sdp->isp_data_line_active_neg << 5);
432 isp_mboxcmd(isp, &mbs);
433 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
434 (void) splx(s);
435 isp_dumpregs(isp, "failed to set active neg state");
436 return;
437 }
438
439 mbs.param[0] = MBOX_SET_TAG_AGE_LIMIT;
440 mbs.param[1] = sdp->isp_tag_aging;
441 isp_mboxcmd(isp, &mbs);
442 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
443 (void) splx(s);
444 isp_dumpregs(isp, "failed to set tag age limit");
445 return;
446 }
447
448 mbs.param[0] = MBOX_SET_SELECT_TIMEOUT;
449 mbs.param[1] = sdp->isp_selection_timeout;
450 isp_mboxcmd(isp, &mbs);
451 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
452 (void) splx(s);
453 isp_dumpregs(isp, "failed to set selection timeout");
454 return;
455 }
456
457 IDPRINTF(2, ("%s: devparm, W=wide, S=sync, T=Tag\n", isp->isp_name));
458 for (i = 0; i < MAX_TARGETS; i++) {
459 char bz[9];
460 u_int16_t cj = (sdp->isp_devparam[i].sync_offset << 8) |
461 (sdp->isp_devparam[i].sync_period);
462
463 if (sdp->isp_devparam[i].dev_flags & DPARM_SYNC) {
464 u_int16_t x;
465 if (cj == ISP_20M_SYNCPARMS) {
466 x = 20;
467 } else if (cj == ISP_10M_SYNCPARMS) {
468 x = 10;
469 } else if (cj == ISP_08M_SYNCPARMS) {
470 x = 8;
471 } else if (cj == ISP_05M_SYNCPARMS) {
472 x = 5;
473 } else if (cj == ISP_04M_SYNCPARMS) {
474 x = 4;
475 } else {
476 x = 0;
477 }
478 sprintf(bz, "%02dMHz:", x);
479 } else {
480 sprintf(bz, "Async:");
481 }
482 if (sdp->isp_devparam[i].dev_flags & DPARM_WIDE)
483 bz[6] = 'W';
484 else
485 bz[6] = ' ';
486 if (sdp->isp_devparam[i].dev_flags & DPARM_TQING)
487 bz[7] = 'T';
488 else
489 bz[7] = ' ';
490 bz[8] = 0;
491 IDPRINTF(2, (" id%x:%s", i, bz));
492 if (((i+1) & 0x3) == 0)
493 IDPRINTF(2, ("\n"));
494 if (sdp->isp_devparam[i].dev_enable == 0)
495 continue;
496
497 /*
498 * It is not safe to run the 1020 in ultra mode.
499 */
500 if (isp->isp_type == ISP_HA_SCSI_1020 &&
501 cj == ISP_20M_SYNCPARMS) {
502 printf("%s: an ISP1020 set to Ultra Speed- derating.\n",
503 isp->isp_name);
504 sdp->isp_devparam[i].sync_offset =
505 ISP_10M_SYNCPARMS >> 8;
506 sdp->isp_devparam[i].sync_period =
507 ISP_10M_SYNCPARMS & 0xff;
508 }
509 mbs.param[0] = MBOX_SET_TARGET_PARAMS;
510 mbs.param[1] = i << 8;
511 mbs.param[2] = sdp->isp_devparam[i].dev_flags << 8;
512 mbs.param[3] =
513 (sdp->isp_devparam[i].sync_offset << 8) |
514 (sdp->isp_devparam[i].sync_period);
515
516 IDPRINTF(3, ("%s: target %d flags %x offset %x period %x\n",
517 isp->isp_name, i, sdp->isp_devparam[i].dev_flags,
518 sdp->isp_devparam[i].sync_offset,
519 sdp->isp_devparam[i].sync_period));
520 isp_mboxcmd(isp, &mbs);
521 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
522 printf("%s: failed to set parameters for target %d\n",
523 isp->isp_name, i);
524 printf("%s: flags %x offset %x period %x\n",
525 isp->isp_name, sdp->isp_devparam[i].dev_flags,
526 sdp->isp_devparam[i].sync_offset,
527 sdp->isp_devparam[i].sync_period);
528 mbs.param[0] = MBOX_SET_TARGET_PARAMS;
529 mbs.param[1] = i << 8;
530 mbs.param[2] = DPARM_DEFAULT << 8;
531 mbs.param[3] = ISP_10M_SYNCPARMS;
532 isp_mboxcmd(isp, &mbs);
533 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
534 (void) splx(s);
535 printf("%s: failed even to set defaults\n",
536 isp->isp_name);
537 return;
538 }
539 }
540 for (l = 0; l < MAX_LUNS; l++) {
541 mbs.param[0] = MBOX_SET_DEV_QUEUE_PARAMS;
542 mbs.param[1] = (i << 8) | l;
543 mbs.param[2] = sdp->isp_max_queue_depth;
544 mbs.param[3] = sdp->isp_devparam[i].exc_throttle;
545 isp_mboxcmd(isp, &mbs);
546 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
547 (void) splx(s);
548 isp_dumpregs(isp, "failed to set device queue "
549 "parameters");
550 return;
551 }
552 }
553 }
554
555 /*
556 * Set up DMA for the request and result mailboxes.
557 */
558 if (ISP_MBOXDMASETUP(isp)) {
559 (void) splx(s);
560 printf("%s: can't setup dma mailboxes\n", isp->isp_name);
561 return;
562 }
563
564 mbs.param[0] = MBOX_INIT_RES_QUEUE;
565 mbs.param[1] = RESULT_QUEUE_LEN(isp);
566 mbs.param[2] = (u_int16_t) (isp->isp_result_dma >> 16);
567 mbs.param[3] = (u_int16_t) (isp->isp_result_dma & 0xffff);
568 mbs.param[4] = 0;
569 mbs.param[5] = 0;
570 isp_mboxcmd(isp, &mbs);
571 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
572 (void) splx(s);
573 isp_dumpregs(isp, "set of response queue failed");
574 return;
575 }
576 isp->isp_residx = 0;
577
578 mbs.param[0] = MBOX_INIT_REQ_QUEUE;
579 mbs.param[1] = RQUEST_QUEUE_LEN(isp);
580 mbs.param[2] = (u_int16_t) (isp->isp_rquest_dma >> 16);
581 mbs.param[3] = (u_int16_t) (isp->isp_rquest_dma & 0xffff);
582 mbs.param[4] = 0;
583 mbs.param[5] = 0;
584 isp_mboxcmd(isp, &mbs);
585 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
586 (void) splx(s);
587 isp_dumpregs(isp, "set of request queue failed");
588 return;
589 }
590 isp->isp_reqidx = 0;
591
592 /*
593 * Unfortunately, this is the only way right now for
594 * forcing a sync renegotiation. If we boot off of
595 * an Alpha, it's put the chip in SYNC mode, but we
596 * haven't necessarily set up the parameters the
597 * same, so we'll have to yank the reset line to
598 * get everyone to renegotiate.
599 */
600
601 mbs.param[0] = MBOX_BUS_RESET;
602 mbs.param[1] = 2;
603 isp_mboxcmd(isp, &mbs);
604 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
605 (void) splx(s);
606 isp_dumpregs(isp, "SCSI bus reset failed");
607 }
608 /*
609 * This is really important to have set after a bus reset.
610 */
611 isp->isp_sendmarker = 1;
612 (void) splx(s);
613 isp->isp_state = ISP_INITSTATE;
614 }
615
616 static void
617 isp_fibre_init(isp)
618 struct ispsoftc *isp;
619 {
620 fcparam *fcp;
621 isp_icb_t *icbp;
622 mbreg_t mbs;
623 int s, count;
624
625 fcp = isp->isp_param;
626
627 fcp->isp_retry_count = 0;
628 fcp->isp_retry_delay = 1;
629
630 s = splbio();
631 mbs.param[0] = MBOX_SET_RETRY_COUNT;
632 mbs.param[1] = fcp->isp_retry_count;
633 mbs.param[2] = fcp->isp_retry_delay;
634 isp_mboxcmd(isp, &mbs);
635 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
636 (void) splx(s);
637 isp_dumpregs(isp, "failed to set retry count and delay");
638 return;
639 }
640
641 if (ISP_MBOXDMASETUP(isp)) {
642 (void) splx(s);
643 printf("%s: can't setup DMA for mailboxes\n", isp->isp_name);
644 return;
645 }
646
647 icbp = (isp_icb_t *) fcp->isp_scratch;
648 bzero(icbp, sizeof (*icbp));
649 #if 0
650 icbp->icb_maxfrmlen = ICB_DFLT_FRMLEN;
651 MAKE_NODE_NAME(isp, icbp);
652 icbp->icb_rqstqlen = RQUEST_QUEUE_LEN(isp);
653 icbp->icb_rsltqlen = RESULT_QUEUE_LEN(isp);
654 icbp->icb_rqstaddr[0] = (u_int16_t) (isp->isp_rquest_dma & 0xffff);
655 icbp->icb_rqstaddr[1] = (u_int16_t) (isp->isp_rquest_dma >> 16);
656 icbp->icb_respaddr[0] = (u_int16_t) (isp->isp_result_dma & 0xffff);
657 icbp->icb_respaddr[1] = (u_int16_t) (isp->isp_result_dma >> 16);
658 #endif
659 icbp->icb_version = 1;
660 icbp->icb_maxfrmlen = ICB_DFLT_FRMLEN;
661 icbp->icb_maxalloc = 256;
662 icbp->icb_execthrottle = 16;
663 icbp->icb_retry_delay = 5;
664 icbp->icb_retry_count = 0;
665 MAKE_NODE_NAME(isp, icbp);
666 icbp->icb_rqstqlen = RQUEST_QUEUE_LEN(isp);
667 icbp->icb_rsltqlen = RESULT_QUEUE_LEN(isp);
668 icbp->icb_rqstaddr[0] = (u_int16_t) (isp->isp_rquest_dma & 0xffff);
669 icbp->icb_rqstaddr[1] = (u_int16_t) (isp->isp_rquest_dma >> 16);
670 icbp->icb_respaddr[0] = (u_int16_t) (isp->isp_result_dma & 0xffff);
671 icbp->icb_respaddr[1] = (u_int16_t) (isp->isp_result_dma >> 16);
672
673 mbs.param[0] = MBOX_INIT_FIRMWARE;
674 mbs.param[1] = 0;
675 mbs.param[2] = (u_int16_t) (fcp->isp_scdma >> 16);
676 mbs.param[3] = (u_int16_t) (fcp->isp_scdma & 0xffff);
677 mbs.param[4] = 0;
678 mbs.param[5] = 0;
679 mbs.param[6] = 0;
680 mbs.param[7] = 0;
681 isp_mboxcmd(isp, &mbs);
682 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
683 (void) splx(s);
684 isp_dumpregs(isp, "INIT FIRMWARE failed");
685 return;
686 }
687 isp->isp_reqidx = 0;
688 isp->isp_residx = 0;
689
690 /*
691 * Wait up to 3 seconds for FW to go to READY state.
692 *
693 * This is all very much not right. The problem here
694 * is that the cable may not be plugged in, or there
695 * may be many many members of the loop that haven't
696 * been logged into.
697 *
698 * This model of doing things doesn't support dynamic
699 * attachment, so we just plain lose (for now).
700 */
701 for (count = 0; count < 3000; count++) {
702 isp_fw_state(isp);
703 if (fcp->isp_fwstate == FW_READY)
704 break;
705 delay(1000); /* wait one millisecond */
706 }
707
708 isp->isp_sendmarker = 1;
709
710 (void) splx(s);
711 isp->isp_state = ISP_INITSTATE;
712 }
713
714 /*
715 * Complete attachment of Hardware, include subdevices.
716 */
717 void
718 isp_attach(isp)
719 struct ispsoftc *isp;
720 {
721 /*
722 * Start the watchdog timer.
723 */
724 timeout(isp_watch, isp, WATCHI);
725
726 /*
727 * And complete initialization
728 */
729 isp->isp_state = ISP_RUNSTATE;
730 isp->isp_link.scsipi_scsi.channel = SCSI_CHANNEL_ONLY_ONE;
731 isp->isp_link.adapter_softc = isp;
732 isp->isp_link.device = &isp_dev;
733 isp->isp_link.adapter = &isp_switch;
734
735 if (isp->isp_type & ISP_HA_FC) {
736 fcparam *fcp = isp->isp_param;
737 mbreg_t mbs;
738 int s;
739
740 isp->isp_link.scsipi_scsi.max_target = MAX_FC_TARG-1;
741 isp->isp_link.openings = RQUEST_QUEUE_LEN(isp)/(MAX_FC_TARG-1);
742 s = splbio();
743 mbs.param[0] = MBOX_GET_LOOP_ID;
744 isp_mboxcmd(isp, &mbs);
745 (void) splx(s);
746 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
747 isp_dumpregs(isp, "GET LOOP ID failed");
748 return;
749 }
750 fcp->isp_loopid = mbs.param[1];
751 if (fcp->isp_loopid) {
752 printf("%s: Loop ID 0x%x\n", isp->isp_name,
753 fcp->isp_loopid);
754 }
755 isp->isp_link.scsipi_scsi.adapter_target = 0xff;
756 } else {
757 isp->isp_link.openings = RQUEST_QUEUE_LEN(isp)/(MAX_TARGETS-1);
758 isp->isp_link.scsipi_scsi.max_target = MAX_TARGETS-1;
759 isp->isp_link.scsipi_scsi.adapter_target =
760 ((sdparam *)isp->isp_param)->isp_initiator_id;
761 }
762 if (isp->isp_link.openings < 2)
763 isp->isp_link.openings = 2;
764 isp->isp_link.type = BUS_SCSI;
765 config_found((void *)isp, &isp->isp_link, scsiprint);
766 }
767
768
769 /*
770 * Free any associated resources prior to decommissioning.
771 */
772 void
773 isp_uninit(isp)
774 struct ispsoftc *isp;
775 {
776 untimeout(isp_watch, isp);
777 }
778
779 /*
780 * minphys our xfers
781 *
782 * Unfortunately, the buffer pointer describes the target device- not the
783 * adapter device, so we can't use the pointer to find out what kind of
784 * adapter we are and adjust accordingly.
785 */
786
787 static void
788 ispminphys(bp)
789 struct buf *bp;
790 {
791 /*
792 * XX: Only the 1020 has a 24 bit limit.
793 */
794 if (bp->b_bcount >= (1 << 24)) {
795 bp->b_bcount = (1 << 24);
796 }
797 minphys(bp);
798 }
799
800 /*
801 * start an xfer
802 */
803 static int32_t
804 ispscsicmd(xs)
805 struct scsipi_xfer *xs;
806 {
807 struct ispsoftc *isp;
808 u_int8_t iptr, optr;
809 union {
810 ispreq_t *_reqp;
811 ispreqt2_t *_t2reqp;
812 } _u;
813 #define reqp _u._reqp
814 #define t2reqp _u._t2reqp
815 #define UZSIZE max(sizeof (ispreq_t), sizeof (ispreqt2_t))
816 int s, i;
817
818 isp = xs->sc_link->adapter_softc;
819
820 if (isp->isp_type & ISP_HA_FC) {
821 if (xs->cmdlen > 12) {
822 printf("%s: unsupported cdb length for fibre (%d)\n",
823 isp->isp_name, xs->cmdlen);
824 xs->error = XS_DRIVER_STUFFUP;
825 return (COMPLETE);
826 }
827 }
828 optr = ISP_READ(isp, OUTMAILBOX4);
829 iptr = isp->isp_reqidx;
830
831 reqp = (ispreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, iptr);
832 iptr = (iptr + 1) & (RQUEST_QUEUE_LEN(isp) - 1);
833 if (iptr == optr) {
834 printf("%s: Request Queue Overflow\n", isp->isp_name);
835 xs->error = XS_DRIVER_STUFFUP;
836 return (TRY_AGAIN_LATER);
837 }
838
839 s = splbio();
840 if (isp->isp_type & ISP_HA_FC)
841 DISABLE_INTS(isp);
842
843 if (isp->isp_sendmarker) {
844 ispmarkreq_t *marker = (ispmarkreq_t *) reqp;
845
846 bzero((void *) marker, sizeof (*marker));
847 marker->req_header.rqs_entry_count = 1;
848 marker->req_header.rqs_entry_type = RQSTYPE_MARKER;
849 marker->req_modifier = SYNC_ALL;
850
851 isp->isp_sendmarker = 0;
852
853 if (((iptr + 1) & (RQUEST_QUEUE_LEN(isp) - 1)) == optr) {
854 ISP_WRITE(isp, INMAILBOX4, iptr);
855 isp->isp_reqidx = iptr;
856
857 if (isp->isp_type & ISP_HA_FC)
858 ENABLE_INTS(isp);
859 (void) splx(s);
860 printf("%s: Request Queue Overflow+\n", isp->isp_name);
861 xs->error = XS_DRIVER_STUFFUP;
862 return (TRY_AGAIN_LATER);
863 }
864 reqp = (ispreq_t *) ISP_QUEUE_ENTRY(isp->isp_rquest, iptr);
865 iptr = (iptr + 1) & (RQUEST_QUEUE_LEN(isp) - 1);
866 }
867
868 bzero((void *) reqp, UZSIZE);
869 reqp->req_header.rqs_entry_count = 1;
870 if (isp->isp_type & ISP_HA_FC) {
871 reqp->req_header.rqs_entry_type = RQSTYPE_T2RQS;
872 } else {
873 reqp->req_header.rqs_entry_type = RQSTYPE_REQUEST;
874 }
875 reqp->req_header.rqs_flags = 0;
876 reqp->req_header.rqs_seqno = isp->isp_seqno++;
877
878 for (i = 0; i < RQUEST_QUEUE_LEN(isp); i++) {
879 if (isp->isp_xflist[i] == NULL)
880 break;
881 }
882 if (i == RQUEST_QUEUE_LEN(isp)) {
883 panic("%s: ran out of xflist pointers\n", isp->isp_name);
884 /* NOTREACHED */
885 } else {
886 /*
887 * Never have a handle that is zero, so
888 * set req_handle off by one.
889 */
890 isp->isp_xflist[i] = xs;
891 reqp->req_handle = i+1;
892 }
893
894 if (isp->isp_type & ISP_HA_FC) {
895 /*
896 * See comment in isp_intr
897 */
898 xs->resid = 0;
899 /*
900 * Fibre Channel always requires some kind of tag.
901 */
902 if (xs->flags & SCSI_POLL) {
903 t2reqp->req_flags = REQFLAG_STAG;
904 } else {
905 t2reqp->req_flags = REQFLAG_OTAG;
906 }
907 } else {
908 if (xs->flags & SCSI_POLL) {
909 reqp->req_flags = 0;
910 } else {
911 reqp->req_flags = REQFLAG_OTAG;
912 }
913 }
914 reqp->req_lun_trn = xs->sc_link->scsipi_scsi.lun;
915 reqp->req_target = xs->sc_link->scsipi_scsi.target;
916 if (isp->isp_type & ISP_HA_SCSI) {
917 reqp->req_cdblen = xs->cmdlen;
918 }
919 bcopy((void *)xs->cmd, reqp->req_cdb, xs->cmdlen);
920
921 IDPRINTF(6, ("%s(%d.%d): START%d cmd 0x%x datalen %d\n", isp->isp_name,
922 xs->sc_link->scsipi_scsi.target, xs->sc_link->scsipi_scsi.lun,
923 reqp->req_header.rqs_seqno, *(u_char *) xs->cmd, xs->datalen));
924
925 reqp->req_time = xs->timeout / 1000;
926 if (reqp->req_time == 0 && xs->timeout)
927 reqp->req_time = 1;
928 if (ISP_DMASETUP(isp, xs, reqp, &iptr, optr)) {
929 if (isp->isp_type & ISP_HA_FC)
930 ENABLE_INTS(isp);
931 (void) splx(s);
932 xs->error = XS_DRIVER_STUFFUP;
933 return (COMPLETE);
934 }
935 xs->error = 0;
936 ISP_WRITE(isp, INMAILBOX4, iptr);
937 isp->isp_reqidx = iptr;
938 if (isp->isp_type & ISP_HA_FC)
939 ENABLE_INTS(isp);
940 (void) splx(s);
941 if ((xs->flags & SCSI_POLL) == 0) {
942 return (SUCCESSFULLY_QUEUED);
943 }
944
945 /*
946 * If we can't use interrupts, poll on completion.
947 */
948 if (isp_poll(isp, xs, xs->timeout)) {
949 #if 0
950 /* XXX try to abort it, or whatever */
951 if (isp_poll(isp, xs, xs->timeout) {
952 /* XXX really nuke it */
953 }
954 #endif
955 /*
956 * If no other error occurred but we didn't finish,
957 * something bad happened.
958 */
959 if ((xs->flags & ITSDONE) == 0 && xs->error == XS_NOERROR) {
960 isp_lostcmd(isp, xs, reqp);
961 xs->error = XS_DRIVER_STUFFUP;
962 }
963 }
964 return (COMPLETE);
965 #undef reqp
966 #undef t2reqp
967 }
968
969 /*
970 * Interrupt Service Routine(s)
971 */
972
973 int
974 isp_poll(isp, xs, mswait)
975 struct ispsoftc *isp;
976 struct scsipi_xfer *xs;
977 int mswait;
978 {
979
980 while (mswait) {
981 /* Try the interrupt handling routine */
982 (void)isp_intr((void *)isp);
983
984 /* See if the xs is now done */
985 if (xs->flags & ITSDONE)
986 return (0);
987 delay(1000); /* wait one millisecond */
988 mswait--;
989 }
990 return (1);
991 }
992
993 int
994 isp_intr(arg)
995 void *arg;
996 {
997 struct scsipi_xfer *xs;
998 struct ispsoftc *isp = arg;
999 u_int16_t iptr, optr, isr;
1000
1001 isr = ISP_READ(isp, BIU_ISR);
1002 if (isp->isp_type & ISP_HA_FC) {
1003 if (isr == 0 || (isr & BIU2100_ISR_RISC_INT) == 0) {
1004 if (isr) {
1005 IDPRINTF(4, ("%s: isp_intr isr=%x\n",
1006 isp->isp_name, isr));
1007 }
1008 return (0);
1009 }
1010 } else {
1011 if (isr == 0 || (isr & BIU_ISR_RISC_INT) == 0) {
1012 if (isr) {
1013 IDPRINTF(4, ("%s: isp_intr isr=%x\n",
1014 isp->isp_name, isr));
1015 }
1016 return (0);
1017 }
1018 }
1019
1020 optr = isp->isp_residx;
1021 if (ISP_READ(isp, BIU_SEMA) & 1) {
1022 u_int16_t mbox0 = ISP_READ(isp, OUTMAILBOX0);
1023 switch (mbox0) {
1024 case ASYNC_BUS_RESET:
1025 case ASYNC_TIMEOUT_RESET:
1026 printf("%s: bus or timeout reset\n", isp->isp_name);
1027 isp->isp_sendmarker = 1;
1028 break;
1029 case ASYNC_LIP_OCCURRED:
1030 printf("%s: LIP occurred\n", isp->isp_name);
1031 break;
1032 case ASYNC_LOOP_UP:
1033 printf("%s: Loop UP\n", isp->isp_name);
1034 break;
1035 case ASYNC_LOOP_DOWN:
1036 printf("%s: Loop DOWN\n", isp->isp_name);
1037 break;
1038 case ASYNC_LOOP_RESET:
1039 printf("%s: Loop RESET\n", isp->isp_name);
1040 break;
1041 default:
1042 printf("%s: async %x\n", isp->isp_name, mbox0);
1043 break;
1044 }
1045 ISP_WRITE(isp, BIU_SEMA, 0);
1046 }
1047
1048 ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
1049 iptr = ISP_READ(isp, OUTMAILBOX5);
1050 if (optr == iptr) {
1051 IDPRINTF(4, ("why intr? isr %x iptr %x optr %x\n",
1052 isr, optr, iptr));
1053 }
1054 ENABLE_INTS(isp);
1055
1056 while (optr != iptr) {
1057 ispstatusreq_t *sp;
1058 int buddaboom = 0;
1059
1060 sp = (ispstatusreq_t *) ISP_QUEUE_ENTRY(isp->isp_result, optr);
1061
1062 optr = (optr + 1) & (RESULT_QUEUE_LEN(isp)-1);
1063 if (sp->req_header.rqs_entry_type != RQSTYPE_RESPONSE) {
1064 printf("%s: not RESPONSE in RESPONSE Queue (0x%x)\n",
1065 isp->isp_name, sp->req_header.rqs_entry_type);
1066 if (sp->req_header.rqs_entry_type != RQSTYPE_REQUEST) {
1067 ISP_WRITE(isp, INMAILBOX5, optr);
1068 continue;
1069 }
1070 buddaboom = 1;
1071 }
1072
1073 if (sp->req_header.rqs_flags & 0xf) {
1074 if (sp->req_header.rqs_flags & RQSFLAG_CONTINUATION) {
1075 ISP_WRITE(isp, INMAILBOX5, optr);
1076 continue;
1077 }
1078 printf("%s: rqs_flags=%x\n", isp->isp_name,
1079 sp->req_header.rqs_flags & 0xf);
1080 }
1081 if (sp->req_handle > RQUEST_QUEUE_LEN(isp) ||
1082 sp->req_handle < 1) {
1083 printf("%s: bad request handle %d\n", isp->isp_name,
1084 sp->req_handle);
1085 ISP_WRITE(isp, INMAILBOX5, optr);
1086 continue;
1087 }
1088 xs = (struct scsipi_xfer *) isp->isp_xflist[sp->req_handle - 1];
1089 if (xs == NULL) {
1090 printf("%s: NULL xs in xflist\n", isp->isp_name);
1091 ISP_WRITE(isp, INMAILBOX5, optr);
1092 continue;
1093 }
1094 isp->isp_xflist[sp->req_handle - 1] = NULL;
1095 if (sp->req_status_flags & RQSTF_BUS_RESET) {
1096 isp->isp_sendmarker = 1;
1097 }
1098 if (buddaboom) {
1099 xs->error = XS_DRIVER_STUFFUP;
1100 }
1101 xs->status = sp->req_scsi_status & 0xff;
1102 if (isp->isp_type & ISP_HA_SCSI) {
1103 if (sp->req_state_flags & RQSF_GOT_SENSE) {
1104 bcopy(sp->req_sense_data, &xs->sense.scsi_sense,
1105 sizeof (xs->sense.scsi_sense));
1106 xs->error = XS_SENSE;
1107 }
1108 } else {
1109 if (xs->status == SCSI_CHECK) {
1110 xs->error = XS_SENSE;
1111 bcopy(sp->req_sense_data, &xs->sense.scsi_sense,
1112 sizeof (xs->sense.scsi_sense));
1113 sp->req_state_flags |= RQSF_GOT_SENSE;
1114 }
1115 }
1116 if (xs->error == 0 && xs->status == SCSI_BUSY) {
1117 xs->error = XS_BUSY;
1118 }
1119
1120 if (sp->req_header.rqs_entry_type == RQSTYPE_RESPONSE) {
1121 if (xs->error == 0 && sp->req_completion_status)
1122 xs->error = isp_parse_status(isp, sp, xs);
1123 } else {
1124 printf("%s: unknown return %x\n", isp->isp_name,
1125 sp->req_header.rqs_entry_type);
1126 if (xs->error == 0)
1127 xs->error = XS_DRIVER_STUFFUP;
1128 }
1129 if (isp->isp_type & ISP_HA_SCSI) {
1130 xs->resid = sp->req_resid;
1131 } else if (sp->req_scsi_status & RQCS_RU) {
1132 xs->resid = sp->req_resid;
1133 IDPRINTF(4, ("%s: cnt %d rsd %d\n", isp->isp_name,
1134 xs->datalen, sp->req_resid));
1135 }
1136 xs->flags |= ITSDONE;
1137 if (xs->datalen) {
1138 ISP_DMAFREE(isp, xs, sp->req_handle - 1);
1139 }
1140 if (isp->isp_dblev >= 5) {
1141 printf("%s(%d.%d): FINISH%d cmd 0x%x resid %d STS %x",
1142 isp->isp_name, xs->sc_link->scsipi_scsi.target,
1143 xs->sc_link->scsipi_scsi.lun, sp->req_header.rqs_seqno,
1144 *(u_char *) xs->cmd, xs->resid, xs->status);
1145 if (sp->req_state_flags & RQSF_GOT_SENSE) {
1146 printf(" Skey: %x", xs->sense.scsi_sense.flags);
1147 if (xs->error != XS_SENSE) {
1148 printf(" BUT NOT SET");
1149 }
1150 }
1151 printf(" xs->error %d\n", xs->error);
1152 }
1153 ISP_WRITE(isp, INMAILBOX5, optr);
1154 scsipi_done(xs);
1155 }
1156 isp->isp_residx = optr;
1157 return (1);
1158 }
1159
1160 /*
1161 * Support routines.
1162 */
1163
1164 static int
1165 isp_parse_status(isp, sp, xs)
1166 struct ispsoftc *isp;
1167 ispstatusreq_t *sp;
1168 struct scsipi_xfer *xs;
1169 {
1170 switch (sp->req_completion_status) {
1171 case RQCS_COMPLETE:
1172 return (XS_NOERROR);
1173 break;
1174
1175 case RQCS_INCOMPLETE:
1176 if ((sp->req_state_flags & RQSF_GOT_TARGET) == 0) {
1177 return (XS_SELTIMEOUT);
1178 }
1179 printf("%s: incomplete, state %x\n",
1180 isp->isp_name, sp->req_state_flags);
1181 break;
1182
1183 case RQCS_TRANSPORT_ERROR:
1184 printf("%s: transport error\n", isp->isp_name);
1185 isp_prtstst(sp);
1186 break;
1187
1188 case RQCS_DATA_OVERRUN:
1189 if (isp->isp_type & ISP_HA_FC) {
1190 xs->resid = sp->req_resid;
1191 break;
1192 }
1193 return (XS_NOERROR);
1194
1195 case RQCS_DATA_UNDERRUN:
1196 if (isp->isp_type & ISP_HA_FC) {
1197 xs->resid = sp->req_resid;
1198 break;
1199 }
1200 return (XS_NOERROR);
1201
1202 case RQCS_TIMEOUT:
1203 return (XS_TIMEOUT);
1204
1205 case RQCS_RESET_OCCURRED:
1206 printf("%s: reset occurred\n", isp->isp_name);
1207 isp->isp_sendmarker = 1;
1208 break;
1209
1210 case RQCS_ABORTED:
1211 printf("%s: command aborted\n", isp->isp_name);
1212 isp->isp_sendmarker = 1;
1213 break;
1214
1215 case RQCS_PORT_UNAVAILABLE:
1216 /*
1217 * No such port on the loop. Moral equivalent of SELTIMEO
1218 */
1219 return (XS_SELTIMEOUT);
1220
1221 case RQCS_PORT_LOGGED_OUT:
1222 printf("%s: port logout for target %d\n",
1223 isp->isp_name, xs->sc_link->scsipi_scsi.target);
1224 break;
1225
1226 case RQCS_PORT_CHANGED:
1227 printf("%s: port changed for target %d\n",
1228 isp->isp_name, xs->sc_link->scsipi_scsi.target);
1229 break;
1230
1231 case RQCS_PORT_BUSY:
1232 printf("%s: port busy for target %d\n",
1233 isp->isp_name, xs->sc_link->scsipi_scsi.target);
1234 return (XS_BUSY);
1235
1236 default:
1237 printf("%s: comp status %x\n", isp->isp_name,
1238 sp->req_completion_status);
1239 break;
1240 }
1241 return (XS_DRIVER_STUFFUP);
1242 }
1243
1244 #define HINIB(x) ((x) >> 0x4)
1245 #define LONIB(x) ((x) & 0xf)
1246 #define MAKNIB(a, b) (((a) << 4) | (b))
1247 static u_int8_t mbpcnt[] = {
1248 MAKNIB(1, 1), /* 0x00: MBOX_NO_OP */
1249 MAKNIB(5, 5), /* 0x01: MBOX_LOAD_RAM */
1250 MAKNIB(2, 0), /* 0x02: MBOX_EXEC_FIRMWARE */
1251 MAKNIB(5, 5), /* 0x03: MBOX_DUMP_RAM */
1252 MAKNIB(3, 3), /* 0x04: MBOX_WRITE_RAM_WORD */
1253 MAKNIB(2, 3), /* 0x05: MBOX_READ_RAM_WORD */
1254 MAKNIB(6, 6), /* 0x06: MBOX_MAILBOX_REG_TEST */
1255 MAKNIB(2, 3), /* 0x07: MBOX_VERIFY_CHECKSUM */
1256 MAKNIB(1, 3), /* 0x08: MBOX_ABOUT_FIRMWARE */
1257 MAKNIB(0, 0), /* 0x09: */
1258 MAKNIB(0, 0), /* 0x0a: */
1259 MAKNIB(0, 0), /* 0x0b: */
1260 MAKNIB(0, 0), /* 0x0c: */
1261 MAKNIB(0, 0), /* 0x0d: */
1262 MAKNIB(1, 2), /* 0x0e: MBOX_CHECK_FIRMWARE */
1263 MAKNIB(0, 0), /* 0x0f: */
1264 MAKNIB(5, 5), /* 0x10: MBOX_INIT_REQ_QUEUE */
1265 MAKNIB(6, 6), /* 0x11: MBOX_INIT_RES_QUEUE */
1266 MAKNIB(4, 4), /* 0x12: MBOX_EXECUTE_IOCB */
1267 MAKNIB(2, 2), /* 0x13: MBOX_WAKE_UP */
1268 MAKNIB(1, 6), /* 0x14: MBOX_STOP_FIRMWARE */
1269 MAKNIB(4, 4), /* 0x15: MBOX_ABORT */
1270 MAKNIB(2, 2), /* 0x16: MBOX_ABORT_DEVICE */
1271 MAKNIB(3, 3), /* 0x17: MBOX_ABORT_TARGET */
1272 MAKNIB(2, 2), /* 0x18: MBOX_BUS_RESET */
1273 MAKNIB(2, 3), /* 0x19: MBOX_STOP_QUEUE */
1274 MAKNIB(2, 3), /* 0x1a: MBOX_START_QUEUE */
1275 MAKNIB(2, 3), /* 0x1b: MBOX_SINGLE_STEP_QUEUE */
1276 MAKNIB(2, 3), /* 0x1c: MBOX_ABORT_QUEUE */
1277 MAKNIB(2, 4), /* 0x1d: MBOX_GET_DEV_QUEUE_STATUS */
1278 MAKNIB(0, 0), /* 0x1e: */
1279 MAKNIB(1, 3), /* 0x1f: MBOX_GET_FIRMWARE_STATUS */
1280 MAKNIB(1, 2), /* 0x20: MBOX_GET_INIT_SCSI_ID */
1281 MAKNIB(1, 2), /* 0x21: MBOX_GET_SELECT_TIMEOUT */
1282 MAKNIB(1, 3), /* 0x22: MBOX_GET_RETRY_COUNT */
1283 MAKNIB(1, 2), /* 0x23: MBOX_GET_TAG_AGE_LIMIT */
1284 MAKNIB(1, 2), /* 0x24: MBOX_GET_CLOCK_RATE */
1285 MAKNIB(1, 2), /* 0x25: MBOX_GET_ACT_NEG_STATE */
1286 MAKNIB(1, 2), /* 0x26: MBOX_GET_ASYNC_DATA_SETUP_TIME */
1287 MAKNIB(1, 3), /* 0x27: MBOX_GET_PCI_PARAMS */
1288 MAKNIB(2, 4), /* 0x28: MBOX_GET_TARGET_PARAMS */
1289 MAKNIB(2, 4), /* 0x29: MBOX_GET_DEV_QUEUE_PARAMS */
1290 MAKNIB(0, 0), /* 0x2a: */
1291 MAKNIB(0, 0), /* 0x2b: */
1292 MAKNIB(0, 0), /* 0x2c: */
1293 MAKNIB(0, 0), /* 0x2d: */
1294 MAKNIB(0, 0), /* 0x2e: */
1295 MAKNIB(0, 0), /* 0x2f: */
1296 MAKNIB(2, 2), /* 0x30: MBOX_SET_INIT_SCSI_ID */
1297 MAKNIB(2, 2), /* 0x31: MBOX_SET_SELECT_TIMEOUT */
1298 MAKNIB(3, 3), /* 0x32: MBOX_SET_RETRY_COUNT */
1299 MAKNIB(2, 2), /* 0x33: MBOX_SET_TAG_AGE_LIMIT */
1300 MAKNIB(2, 2), /* 0x34: MBOX_SET_CLOCK_RATE */
1301 MAKNIB(2, 2), /* 0x35: MBOX_SET_ACTIVE_NEG_STATE */
1302 MAKNIB(2, 2), /* 0x36: MBOX_SET_ASYNC_DATA_SETUP_TIME */
1303 MAKNIB(3, 3), /* 0x37: MBOX_SET_PCI_CONTROL_PARAMS */
1304 MAKNIB(4, 4), /* 0x38: MBOX_SET_TARGET_PARAMS */
1305 MAKNIB(4, 4), /* 0x39: MBOX_SET_DEV_QUEUE_PARAMS */
1306 MAKNIB(0, 0), /* 0x3a: */
1307 MAKNIB(0, 0), /* 0x3b: */
1308 MAKNIB(0, 0), /* 0x3c: */
1309 MAKNIB(0, 0), /* 0x3d: */
1310 MAKNIB(0, 0), /* 0x3e: */
1311 MAKNIB(0, 0), /* 0x3f: */
1312 MAKNIB(1, 2), /* 0x40: MBOX_RETURN_BIOS_BLOCK_ADDR */
1313 MAKNIB(6, 1), /* 0x41: MBOX_WRITE_FOUR_RAM_WORDS */
1314 MAKNIB(2, 3), /* 0x42: MBOX_EXEC_BIOS_IOCB */
1315 MAKNIB(0, 0), /* 0x43: */
1316 MAKNIB(0, 0), /* 0x44: */
1317 MAKNIB(0, 0), /* 0x45: */
1318 MAKNIB(0, 0), /* 0x46: */
1319 MAKNIB(0, 0), /* 0x47: */
1320 MAKNIB(0, 0), /* 0x48: */
1321 MAKNIB(0, 0), /* 0x49: */
1322 MAKNIB(0, 0), /* 0x4a: */
1323 MAKNIB(0, 0), /* 0x4b: */
1324 MAKNIB(0, 0), /* 0x4c: */
1325 MAKNIB(0, 0), /* 0x4d: */
1326 MAKNIB(0, 0), /* 0x4e: */
1327 MAKNIB(0, 0), /* 0x4f: */
1328 MAKNIB(0, 0), /* 0x50: */
1329 MAKNIB(0, 0), /* 0x51: */
1330 MAKNIB(0, 0), /* 0x52: */
1331 MAKNIB(0, 0), /* 0x53: */
1332 MAKNIB(8, 0), /* 0x54: MBOX_EXEC_COMMAND_IOCB_A64 */
1333 MAKNIB(0, 0), /* 0x55: */
1334 MAKNIB(0, 0), /* 0x56: */
1335 MAKNIB(0, 0), /* 0x57: */
1336 MAKNIB(0, 0), /* 0x58: */
1337 MAKNIB(0, 0), /* 0x59: */
1338 MAKNIB(0, 0), /* 0x5a: */
1339 MAKNIB(0, 0), /* 0x5b: */
1340 MAKNIB(0, 0), /* 0x5c: */
1341 MAKNIB(0, 0), /* 0x5d: */
1342 MAKNIB(0, 0), /* 0x5e: */
1343 MAKNIB(0, 0), /* 0x5f: */
1344 MAKNIB(8, 6), /* 0x60: MBOX_INIT_FIRMWARE */
1345 MAKNIB(0, 0), /* 0x60: MBOX_GET_INIT_CONTROL_BLOCK (FORMAT?) */
1346 MAKNIB(2, 1), /* 0x62: MBOX_INIT_LIP */
1347 MAKNIB(8, 1), /* 0x63: MBOX_GET_FC_AL_POSITION_MAP */
1348 MAKNIB(8, 1), /* 0x64: MBOX_GET_PORT_DB */
1349 MAKNIB(3, 1), /* 0x65: MBOX_CLEAR_ACA */
1350 MAKNIB(3, 1), /* 0x66: MBOX_TARGET_RESET */
1351 MAKNIB(3, 1), /* 0x67: MBOX_CLEAR_TASK_SET */
1352 MAKNIB(3, 1), /* 0x69: MBOX_ABORT_TASK_SET */
1353 MAKNIB(1, 2) /* 0x69: MBOX_GET_FW_STATE */
1354 };
1355 #define NMBCOM (sizeof (mbpcnt) / sizeof (mbpcnt[0]))
1356
1357 static void
1358 isp_mboxcmd(isp, mbp)
1359 struct ispsoftc *isp;
1360 mbreg_t *mbp;
1361 {
1362 int outparam, inparam;
1363 int loops;
1364 u_int8_t opcode;
1365
1366 if (mbp->param[0] == ISP2100_SET_PCI_PARAM) {
1367 opcode = mbp->param[0] = MBOX_SET_PCI_PARAMETERS;
1368 inparam = 4;
1369 outparam = 4;
1370 goto command_known;
1371 } else if (mbp->param[0] > NMBCOM) {
1372 printf("%s: bad command %x\n", isp->isp_name, mbp->param[0]);
1373 return;
1374 }
1375
1376 opcode = mbp->param[0];
1377 inparam = HINIB(mbpcnt[mbp->param[0]]);
1378 outparam = LONIB(mbpcnt[mbp->param[0]]);
1379
1380 if (inparam == 0 && outparam == 0) {
1381 printf("%s: no parameters for %x\n", isp->isp_name,
1382 mbp->param[0]);
1383 return;
1384 }
1385
1386
1387 command_known:
1388 /*
1389 * Make sure we can send some words..
1390 */
1391
1392 loops = MBOX_DELAY_COUNT;
1393 while ((ISP_READ(isp, HCCR) & HCCR_HOST_INT) != 0) {
1394 delay(100);
1395 if (--loops < 0) {
1396 printf("%s: isp_mboxcmd timeout #1\n", isp->isp_name);
1397 return;
1398 }
1399 }
1400
1401 /*
1402 * Write input parameters
1403 */
1404 switch (inparam) {
1405 case 8: ISP_WRITE(isp, INMAILBOX7, mbp->param[7]); mbp->param[7] = 0;
1406 case 7: ISP_WRITE(isp, INMAILBOX6, mbp->param[6]); mbp->param[6] = 0;
1407 case 6: ISP_WRITE(isp, INMAILBOX5, mbp->param[5]); mbp->param[5] = 0;
1408 case 5: ISP_WRITE(isp, INMAILBOX4, mbp->param[4]); mbp->param[4] = 0;
1409 case 4: ISP_WRITE(isp, INMAILBOX3, mbp->param[3]); mbp->param[3] = 0;
1410 case 3: ISP_WRITE(isp, INMAILBOX2, mbp->param[2]); mbp->param[2] = 0;
1411 case 2: ISP_WRITE(isp, INMAILBOX1, mbp->param[1]); mbp->param[1] = 0;
1412 case 1: ISP_WRITE(isp, INMAILBOX0, mbp->param[0]); mbp->param[0] = 0;
1413 }
1414
1415 /*
1416 * Clear semaphore on mailbox registers
1417 */
1418 ISP_WRITE(isp, BIU_SEMA, 0);
1419
1420 /*
1421 * Clear RISC int condition.
1422 */
1423 ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
1424
1425 /*
1426 * Set Host Interrupt condition so that RISC will pick up mailbox regs.
1427 */
1428 ISP_WRITE(isp, HCCR, HCCR_CMD_SET_HOST_INT);
1429
1430 /*
1431 * Wait until RISC int is set, except 2100
1432 */
1433 if ((isp->isp_type & ISP_HA_FC) == 0) {
1434 loops = MBOX_DELAY_COUNT;
1435 while ((ISP_READ(isp, BIU_ISR) & BIU_ISR_RISC_INT) == 0) {
1436 delay(100);
1437 if (--loops < 0) {
1438 printf("%s: isp_mboxcmd timeout #2\n",
1439 isp->isp_name);
1440 return;
1441 }
1442 }
1443 }
1444
1445 /*
1446 * Check to make sure that the semaphore has been set.
1447 */
1448 loops = MBOX_DELAY_COUNT;
1449 while ((ISP_READ(isp, BIU_SEMA) & 1) == 0) {
1450 delay(100);
1451 if (--loops < 0) {
1452 printf("%s: isp_mboxcmd timeout #3\n", isp->isp_name);
1453 return;
1454 }
1455 }
1456
1457 /*
1458 * Make sure that the MBOX_BUSY has gone away
1459 */
1460 loops = MBOX_DELAY_COUNT;
1461 while (ISP_READ(isp, OUTMAILBOX0) == MBOX_BUSY) {
1462 delay(100);
1463 if (--loops < 0) {
1464 printf("%s: isp_mboxcmd timeout #4\n", isp->isp_name);
1465 return;
1466 }
1467 }
1468
1469
1470 /*
1471 * Pick up output parameters.
1472 */
1473 switch (outparam) {
1474 case 8: mbp->param[7] = ISP_READ(isp, OUTMAILBOX7);
1475 case 7: mbp->param[6] = ISP_READ(isp, OUTMAILBOX6);
1476 case 6: mbp->param[5] = ISP_READ(isp, OUTMAILBOX5);
1477 case 5: mbp->param[4] = ISP_READ(isp, OUTMAILBOX4);
1478 case 4: mbp->param[3] = ISP_READ(isp, OUTMAILBOX3);
1479 case 3: mbp->param[2] = ISP_READ(isp, OUTMAILBOX2);
1480 case 2: mbp->param[1] = ISP_READ(isp, OUTMAILBOX1);
1481 case 1: mbp->param[0] = ISP_READ(isp, OUTMAILBOX0);
1482 }
1483
1484 /*
1485 * Clear RISC int.
1486 */
1487 ISP_WRITE(isp, HCCR, HCCR_CMD_CLEAR_RISC_INT);
1488
1489 /*
1490 * Release semaphore on mailbox registers
1491 */
1492 ISP_WRITE(isp, BIU_SEMA, 0);
1493
1494 /*
1495 * Just to be chatty here...
1496 */
1497 switch(mbp->param[0]) {
1498 case MBOX_COMMAND_COMPLETE:
1499 break;
1500 case MBOX_INVALID_COMMAND:
1501 /*
1502 * GET_CLOCK_RATE can fail a lot
1503 * So can a couple of other commands.
1504 */
1505 if (isp->isp_dblev > 2 && opcode != MBOX_GET_CLOCK_RATE) {
1506 printf("%s: mbox cmd %x failed with INVALID_COMMAND\n",
1507 isp->isp_name, opcode);
1508 }
1509 break;
1510 case MBOX_HOST_INTERFACE_ERROR:
1511 printf("%s: mbox cmd %x failed with HOST_INTERFACE_ERROR\n",
1512 isp->isp_name, opcode);
1513 break;
1514 case MBOX_TEST_FAILED:
1515 printf("%s: mbox cmd %x failed with TEST_FAILED\n",
1516 isp->isp_name, opcode);
1517 break;
1518 case MBOX_COMMAND_ERROR:
1519 printf("%s: mbox cmd %x failed with COMMAND_ERROR\n",
1520 isp->isp_name, opcode);
1521 break;
1522 case MBOX_COMMAND_PARAM_ERROR:
1523 printf("%s: mbox cmd %x failed with COMMAND_PARAM_ERROR\n",
1524 isp->isp_name, opcode);
1525 break;
1526
1527 case ASYNC_LIP_OCCURRED:
1528 break;
1529
1530 default:
1531 /*
1532 * The expected return of EXEC_FIRMWARE is zero.
1533 */
1534 if ((opcode == MBOX_EXEC_FIRMWARE && mbp->param[0] != 0) ||
1535 (opcode != MBOX_EXEC_FIRMWARE)) {
1536 printf("%s: mbox cmd %x failed with error %x\n",
1537 isp->isp_name, opcode, mbp->param[0]);
1538 }
1539 break;
1540 }
1541 }
1542
1543 static void
1544 isp_lostcmd(struct ispsoftc *isp, struct scsipi_xfer *xs, ispreq_t *req)
1545 {
1546 mbreg_t mbs;
1547
1548 mbs.param[0] = MBOX_GET_FIRMWARE_STATUS;
1549 isp_mboxcmd(isp, &mbs);
1550 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1551 isp_dumpregs(isp, "couldn't GET FIRMWARE STATUS");
1552 return;
1553 }
1554 if (mbs.param[1]) {
1555 printf("%s: %d commands on completion queue\n",
1556 isp->isp_name, mbs.param[1]);
1557 }
1558 if (xs == NULL || xs->sc_link == NULL)
1559 return;
1560
1561 mbs.param[0] = MBOX_GET_DEV_QUEUE_STATUS;
1562 mbs.param[1] =
1563 xs->sc_link->scsipi_scsi.target << 8 | xs->sc_link->scsipi_scsi.lun;
1564 isp_mboxcmd(isp, &mbs);
1565 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1566 isp_dumpregs(isp, "couldn't GET DEVICE QUEUE STATUS");
1567 return;
1568 }
1569 printf("%s: lost command for target %d lun %d, %d active of %d, "
1570 "Queue State: %x\n", isp->isp_name, xs->sc_link->scsipi_scsi.target,
1571 xs->sc_link->scsipi_scsi.lun, mbs.param[2], mbs.param[3], mbs.param[1]);
1572
1573 isp_dumpregs(isp, "lost command");
1574 /*
1575 * XXX: Need to try and do something to recover.
1576 */
1577 #if 0
1578 mbs.param[0] = MBOX_STOP_QUEUE;
1579 mbs.param[1] =
1580 xs->sc_link->scsipi_scsi.target << 8 | xs->sc_link->scsipi_scsi.lun;
1581 isp_mboxcmd(isp, &mbs);
1582 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1583 isp_dumpregs(isp, "couldn't stop device queue");
1584 return;
1585 }
1586 printf("%s: tgt %d lun %d, state %x\n", isp->isp_name,
1587 xs->sc_link->scsipi_scsi.target, xs->sc_link->scsipi_scsi.lun,
1588 mbs.param[2] & 0xff);
1589
1590 /*
1591 * If Queue Aborted, need to do a SendMarker
1592 */
1593 if (mbs.param[1] & 0x1)
1594 isp->isp_sendmarker = 1;
1595 if (req == NULL)
1596 return;
1597
1598 isp->isp_sendmarker = 1;
1599
1600 mbs.param[0] = MBOX_ABORT;
1601 mbs.param[1] =
1602 (xs->sc_link->scsipi_scsi.target << 8) | xs->sc_link->scsipi_scsi.lun;
1603 mbs.param[2] = (req->req_handle - 1) >> 16;
1604 mbs.param[3] = (req->req_handle - 1) & 0xffff;
1605 isp_mboxcmd(isp, &mbs);
1606 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1607 printf("%s: couldn't abort command\n", isp->isp_name );
1608 mbs.param[0] = MBOX_ABORT_DEVICE;
1609 mbs.param[1] = (xs->sc_link->scsipi_scsi.target << 8) |
1610 xs->sc_link->scsipi_scsi.lun;
1611 isp_mboxcmd(isp, &mbs);
1612 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1613 printf("%s: couldn't abort device\n", isp->isp_name );
1614 } else {
1615 if (isp_poll(isp, xs, xs->timeout)) {
1616 isp_lostcmd(isp, xs, NULL);
1617 }
1618 }
1619 } else {
1620 if (isp_poll(isp, xs, xs->timeout)) {
1621 isp_lostcmd(isp, xs, NULL);
1622 }
1623 }
1624 mbs.param[0] = MBOX_START_QUEUE;
1625 mbs.param[1] =
1626 xs->sc_link->scsipi_scsi.target << 8 | xs->sc_link->scsipi_scsi.lun;
1627 isp_mboxcmd(isp, &mbs);
1628 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1629 isp_dumpregs(isp, "couldn't start device queue");
1630 }
1631 #endif
1632 }
1633
1634 static void
1635 isp_dumpregs(struct ispsoftc *isp, const char *msg)
1636 {
1637 printf("%s: %s\n", isp->isp_name, msg);
1638 if (isp->isp_type & ISP_HA_SCSI)
1639 printf("\tbiu_conf1=%x", ISP_READ(isp, BIU_CONF1));
1640 else
1641 printf("\tbiu_csr=%x", ISP_READ(isp, BIU2100_CSR));
1642 printf(" biu_icr=%x biu_isr=%x biu_sema=%x ", ISP_READ(isp, BIU_ICR),
1643 ISP_READ(isp, BIU_ISR), ISP_READ(isp, BIU_SEMA));
1644 printf("risc_hccr=%x\n", ISP_READ(isp, HCCR));
1645
1646 if (isp->isp_type & ISP_HA_SCSI) {
1647 ISP_WRITE(isp, HCCR, HCCR_CMD_PAUSE);
1648 printf("\tcdma_conf=%x cdma_sts=%x cdma_fifostat=%x\n",
1649 ISP_READ(isp, CDMA_CONF), ISP_READ(isp, CDMA_STATUS),
1650 ISP_READ(isp, CDMA_FIFO_STS));
1651 printf("\tddma_conf=%x ddma_sts=%x ddma_fifostat=%x\n",
1652 ISP_READ(isp, DDMA_CONF), ISP_READ(isp, DDMA_STATUS),
1653 ISP_READ(isp, DDMA_FIFO_STS));
1654 printf("\tsxp_int=%x sxp_gross=%x sxp(scsi_ctrl)=%x\n",
1655 ISP_READ(isp, SXP_INTERRUPT),
1656 ISP_READ(isp, SXP_GROSS_ERR),
1657 ISP_READ(isp, SXP_PINS_CONTROL));
1658 ISP_WRITE(isp, HCCR, HCCR_CMD_RELEASE);
1659 }
1660 ISP_DUMPREGS(isp);
1661 }
1662
1663 static void
1664 isp_fw_state(struct ispsoftc *isp)
1665 {
1666 mbreg_t mbs;
1667 if (isp->isp_type & ISP_HA_FC) {
1668 int once = 0;
1669 fcparam *fcp = isp->isp_param;
1670 again:
1671 mbs.param[0] = MBOX_GET_FW_STATE;
1672 isp_mboxcmd(isp, &mbs);
1673 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1674 if (mbs.param[0] == ASYNC_LIP_OCCURRED) {
1675 if (!once++) {
1676 goto again;
1677 }
1678 }
1679 isp_dumpregs(isp, "GET FIRMWARE STATE failed");
1680 return;
1681 }
1682 fcp->isp_fwstate = mbs.param[1];
1683 }
1684 }
1685
1686 static void
1687 isp_setdparm(struct ispsoftc *isp)
1688 {
1689 int i;
1690 mbreg_t mbs;
1691 sdparam *sdp;
1692
1693 isp->isp_fwrev = 0;
1694 if (isp->isp_type & ISP_HA_FC) {
1695 /*
1696 * ROM in 2100 doesn't appear to support ABOUT_FIRMWARE
1697 */
1698 return;
1699 }
1700
1701 mbs.param[0] = MBOX_ABOUT_FIRMWARE;
1702 isp_mboxcmd(isp, &mbs);
1703 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1704 IDPRINTF(3, ("1st ABOUT FIRMWARE command failed"));
1705 } else {
1706 isp->isp_fwrev =
1707 (((u_int16_t) mbs.param[1]) << 10) + mbs.param[2];
1708 }
1709
1710
1711 sdp = (sdparam *) isp->isp_param;
1712 /*
1713 * Try and get old clock rate out before we hit the
1714 * chip over the head- but if and only if we don't
1715 * know our desired clock rate.
1716 */
1717 if (isp->isp_mdvec->dv_clock == 0) {
1718 mbs.param[0] = MBOX_GET_CLOCK_RATE;
1719 isp_mboxcmd(isp, &mbs);
1720 if (mbs.param[0] == MBOX_COMMAND_COMPLETE) {
1721 sdp->isp_clock = mbs.param[1];
1722 printf("%s: using board clock 0x%x\n",
1723 isp->isp_name, sdp->isp_clock);
1724 }
1725 } else {
1726 sdp->isp_clock = isp->isp_mdvec->dv_clock;
1727 }
1728
1729 mbs.param[0] = MBOX_GET_ACT_NEG_STATE;
1730 isp_mboxcmd(isp, &mbs);
1731 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1732 IDPRINTF(2, ("could not GET ACT NEG STATE"));
1733 sdp->isp_req_ack_active_neg = 1;
1734 sdp->isp_data_line_active_neg = 1;
1735 } else {
1736 sdp->isp_req_ack_active_neg = (mbs.param[1] >> 4) & 0x1;
1737 sdp->isp_data_line_active_neg = (mbs.param[1] >> 5) & 0x1;
1738 }
1739 for (i = 0; i < MAX_TARGETS; i++) {
1740 mbs.param[0] = MBOX_GET_TARGET_PARAMS;
1741 mbs.param[1] = i << 8;
1742 isp_mboxcmd(isp, &mbs);
1743 if (mbs.param[0] != MBOX_COMMAND_COMPLETE) {
1744 IDPRINTF(2, ("cannot get params for target %d", i));
1745 sdp->isp_devparam[i].sync_period =
1746 ISP_10M_SYNCPARMS & 0xff;
1747 sdp->isp_devparam[i].sync_offset =
1748 ISP_10M_SYNCPARMS >> 8;
1749 sdp->isp_devparam[i].dev_flags = DPARM_DEFAULT;
1750 } else {
1751 #if 0
1752 printf("%s: target %d - flags 0x%x, sync %x\n",
1753 isp->isp_name, i, mbs.param[2], mbs.param[3]);
1754 #endif
1755 sdp->isp_devparam[i].dev_flags = mbs.param[2] >> 8;
1756 /*
1757 * The maximum period we can really see
1758 * here is 100 (decimal), or 400 ns.
1759 * For some unknown reason we sometimes
1760 * get back wildass numbers from the
1761 * boot device's paramaters.
1762 */
1763 if ((mbs.param[3] & 0xff) <= 0x64) {
1764 sdp->isp_devparam[i].sync_period =
1765 mbs.param[3] & 0xff;
1766 sdp->isp_devparam[i].sync_offset =
1767 mbs.param[3] >> 8;
1768 }
1769 }
1770 }
1771
1772 /*
1773 * Set Default Host Adapter Parameters
1774 * XXX: Should try and get them out of NVRAM
1775 */
1776 sdp->isp_adapter_enabled = 1;
1777 sdp->isp_cmd_dma_burst_enable = 1;
1778 sdp->isp_data_dma_burst_enabl = 1;
1779 sdp->isp_fifo_threshold = 2;
1780 sdp->isp_initiator_id = 7;
1781 sdp->isp_async_data_setup = 6;
1782 sdp->isp_selection_timeout = 250;
1783 sdp->isp_max_queue_depth = 256;
1784 sdp->isp_tag_aging = 8;
1785 sdp->isp_bus_reset_delay = 3;
1786 sdp->isp_retry_count = 0;
1787 sdp->isp_retry_delay = 1;
1788
1789 for (i = 0; i < MAX_TARGETS; i++) {
1790 sdp->isp_devparam[i].exc_throttle = 16;
1791 sdp->isp_devparam[i].dev_enable = 1;
1792 }
1793 }
1794
1795 static void
1796 isp_phoenix(struct ispsoftc *isp)
1797 {
1798 struct scsipi_xfer *tlist[MAXISPREQUEST], *xs;
1799 int i;
1800
1801 for (i = 0; i < RQUEST_QUEUE_LEN(isp); i++) {
1802 tlist[i] = (struct scsipi_xfer *) isp->isp_xflist[i];
1803 }
1804 isp_reset(isp);
1805 isp_init(isp);
1806 isp->isp_state = ISP_RUNSTATE;
1807
1808 for (i = 0; i < RQUEST_QUEUE_LEN(isp); i++) {
1809 xs = tlist[i];
1810 if (xs == NULL)
1811 continue;
1812 xs->resid = xs->datalen;
1813 xs->error = XS_DRIVER_STUFFUP;
1814 xs->flags |= ITSDONE;
1815 scsipi_done(xs);
1816 }
1817 }
1818
1819 static void
1820 isp_watch(void *arg)
1821 {
1822 int s, i;
1823 struct ispsoftc *isp = arg;
1824 struct scsipi_xfer *xs;
1825
1826 /*
1827 * Look for completely dead commands (but not polled ones)
1828 */
1829 s = splbio();
1830 for (i = 0; i < RQUEST_QUEUE_LEN(isp); i++) {
1831 if ((xs = (struct scsipi_xfer *) isp->isp_xflist[i]) == NULL) {
1832 continue;
1833 }
1834 if (xs->flags & SCSI_POLL)
1835 continue;
1836 if (xs->timeout == 0) {
1837 continue;
1838 }
1839 xs->timeout -= (WATCHI * 1000);
1840 if (xs->timeout > -(2 * WATCHI * 1000)) {
1841 continue;
1842 }
1843 printf("%s: commands really timed out!\n", isp->isp_name);
1844
1845 isp_phoenix(isp);
1846 break;
1847 }
1848 (void) splx(s);
1849 timeout(isp_watch, arg, WATCHI);
1850 }
1851
1852 static void
1853 isp_prtstst(ispstatusreq_t *sp)
1854 {
1855 printf("states->");
1856 if (sp->req_state_flags & RQSF_GOT_BUS)
1857 printf("GOT_BUS ");
1858 if (sp->req_state_flags & RQSF_GOT_TARGET)
1859 printf("GOT_TGT ");
1860 if (sp->req_state_flags & RQSF_SENT_CDB)
1861 printf("SENT_CDB ");
1862 if (sp->req_state_flags & RQSF_XFRD_DATA)
1863 printf("XFRD_DATA ");
1864 if (sp->req_state_flags & RQSF_GOT_STATUS)
1865 printf("GOT_STS ");
1866 if (sp->req_state_flags & RQSF_GOT_SENSE)
1867 printf("GOT_SNS ");
1868 if (sp->req_state_flags & RQSF_XFER_COMPLETE)
1869 printf("XFR_CMPLT ");
1870 printf("\n");
1871 printf("status->");
1872 if (sp->req_status_flags & RQSTF_DISCONNECT)
1873 printf("Disconnect ");
1874 if (sp->req_status_flags & RQSTF_SYNCHRONOUS)
1875 printf("Sync_xfr ");
1876 if (sp->req_status_flags & RQSTF_PARITY_ERROR)
1877 printf("Parity ");
1878 if (sp->req_status_flags & RQSTF_BUS_RESET)
1879 printf("Bus_Reset ");
1880 if (sp->req_status_flags & RQSTF_DEVICE_RESET)
1881 printf("Device_Reset ");
1882 if (sp->req_status_flags & RQSTF_ABORTED)
1883 printf("Aborted ");
1884 if (sp->req_status_flags & RQSTF_TIMEOUT)
1885 printf("Timeout ");
1886 if (sp->req_status_flags & RQSTF_NEGOTIATION)
1887 printf("Negotiation ");
1888 printf("\n");
1889 }
1890