wd.c revision 1.23 1 /*
2 * Copyright (c) 1990 The Regents of the University of California.
3 * All rights reserved.
4 *
5 * This code is derived from software contributed to Berkeley by
6 * William Jolitz.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. All advertising materials mentioning features or use of this software
17 * must display the following acknowledgement:
18 * This product includes software developed by the University of
19 * California, Berkeley and its contributors.
20 * 4. Neither the name of the University nor the names of its contributors
21 * may be used to endorse or promote products derived from this software
22 * without specific prior written permission.
23 *
24 * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
25 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
26 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
27 * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
28 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
29 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
30 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
31 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
32 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
33 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
34 * SUCH DAMAGE.
35 *
36 * from: @(#)wd.c 7.2 (Berkeley) 5/9/91
37 * $Id: wd.c,v 1.23 1993/07/07 05:50:35 deraadt Exp $
38 */
39
40 /* Note: This code heavily modified by tih (at) barsoom.nhh.no; use at own risk! */
41 /* The following defines represent only a very small part of the mods, most */
42 /* of them are not marked in any way. -tih */
43
44 #define TIHMODS /* wdopen() workaround, some splx() calls */
45 #define QUIETWORKS /* define this when wdopen() can actually set DKFL_QUIET */
46 #define INSTRUMENT /* Add instrumentation stuff by Brad Parker */
47 #define TIPCAT /* theo says: whatever it is, it looks important! */
48
49 /* TODO: peel out buffer at low ipl, speed improvement */
50 /* TODO: find and fix the timing bugs apparent on some controllers */
51
52 #include "wd.h"
53 #if NWDC > 0
54
55 #include "param.h"
56 #include "dkbad.h"
57 #include "systm.h"
58 #include "conf.h"
59 #include "file.h"
60 #include "stat.h"
61 #include "ioctl.h"
62 #include "disklabel.h"
63 #include "buf.h"
64 #include "uio.h"
65 #include "malloc.h"
66 #include "machine/cpu.h"
67 #ifdef INSTRUMENT
68 #include "sys/dkstat.h"
69 #endif
70 #include "i386/isa/isa.h"
71 #include "i386/isa/isa_device.h"
72 #include "i386/isa/icu.h"
73 #include "i386/isa/wdreg.h"
74 #include "syslog.h"
75 #include "vm/vm.h"
76
77 #ifndef WDCNDELAY
78 #define WDCNDELAY 200000 /* delay = 25us; so 2.5s for a controller state change */
79 #endif
80 #define WDCDELAY 25
81
82 /* if you enable this, it will report any delays more than 25us * N long */
83 /*#define WDCNDELAY_DEBUG 6 */
84
85 #define WDIORETRIES 5 /* number of retries before giving up */
86
87 #define wdnoreloc(dev) (minor(dev) & 0x80) /* ignore partition table */
88 #define wddospart(dev) (minor(dev) & 0x40) /* use dos partitions */
89 #define wdunit(dev) ((minor(dev) & 0x38) >> 3)
90 #define wdpart(dev) (minor(dev) & 0x7)
91 #define makewddev(maj, unit, part) (makedev(maj,((unit<<3)+part)))
92 #define WDRAW 3 /* 'd' partition isn't a partition! */
93
94 #define b_cylin b_resid /* cylinder number for doing IO to */
95 /* shares an entry in the buf struct */
96
97 /*
98 * Drive states. Used to initialize drive.
99 */
100
101 #define CLOSED 0 /* disk is closed. */
102 #define WANTOPEN 1 /* open requested, not started */
103 #define RECAL 2 /* doing restore */
104 #define OPEN 3 /* done with open */
105
106 /*
107 * The structure of a disk drive.
108 */
109 struct disk {
110 long dk_bc; /* byte count left */
111 long dk_bct; /* total byte count left */
112 short dk_skip; /* blocks already transferred */
113 short dk_skipm; /* blocks already transferred for multi */
114 char dk_ctrlr; /* physical controller number */
115 char dk_unit; /* physical unit number */
116 char dk_lunit; /* logical unit number */
117 char dk_state; /* control state */
118 u_char dk_status; /* copy of status reg. */
119 u_char dk_error; /* copy of error reg. */
120 short dk_port; /* i/o port base */
121
122 u_long dk_copenpart; /* character units open on this drive */
123 u_long dk_bopenpart; /* block units open on this drive */
124 u_long dk_openpart; /* all units open on this drive */
125 short dk_wlabel; /* label writable? */
126 short dk_flags; /* drive characteistics found */
127 #define DKFL_DOSPART 0x00001 /* has DOS partition table */
128 #define DKFL_QUIET 0x00002 /* report errors back, but don't complain */
129 #define DKFL_SINGLE 0x00004 /* sector at a time mode */
130 #define DKFL_ERROR 0x00008 /* processing a disk error */
131 #define DKFL_BSDLABEL 0x00010 /* has a BSD disk label */
132 #define DKFL_BADSECT 0x00020 /* has a bad144 badsector table */
133 #define DKFL_WRITEPROT 0x00040 /* manual unit write protect */
134 struct wdparams dk_params; /* ESDI/IDE drive/controller parameters */
135 struct disklabel dk_dd; /* device configuration data */
136 struct cpu_disklabel dk_cpd;
137 long dk_badsect[127]; /* 126 plus trailing -1 marker */
138 };
139
140 struct board {
141 short dkc_port;
142 };
143
144 void bad144intern(struct disk *);
145 void wddisksort();
146
147 struct board wdcontroller[NWDC];
148 struct disk *wddrives[NWD]; /* table of units */
149 struct buf wdtab[NWDC]; /* various per-controller info */
150 struct buf wdutab[NWD]; /* head of queue per drive */
151 struct buf rwdbuf[NWD]; /* buffers for raw IO */
152 long wdxfer[NWD]; /* count of transfers */
153
154 int wdprobe(), wdattach();
155
156 struct isa_driver wdcdriver = {
157 wdprobe, wdattach, "wdc",
158 };
159
160 void wdustart(struct disk *);
161 void wdstart(int);
162 int wdcommand(struct disk *, int);
163 int wdcontrol(struct buf *);
164 int wdsetctlr(dev_t, struct disk *);
165 int wdgetctlr(int, struct disk *);
166
167 /*
168 * Probe for controller.
169 */
170 int
171 wdprobe(struct isa_device *dvp)
172 {
173 struct disk *du;
174 int wdc;
175
176 if (dvp->id_unit >= NWDC)
177 return(0);
178
179 du = (struct disk *) malloc (sizeof(struct disk), M_TEMP, M_NOWAIT);
180 bzero(du, sizeof(struct disk));
181
182 du->dk_ctrlr = dvp->id_unit;
183 du->dk_unit = 0;
184 du->dk_lunit = 0;
185 wdcontroller[dvp->id_unit].dkc_port = dvp->id_iobase;
186
187 wdc = du->dk_port = dvp->id_iobase;
188
189 /* check if we have registers that work */
190 outb(wdc+wd_error, 0x5a); /* error register not writable */
191 outb(wdc+wd_cyl_lo, 0xa5); /* but all of cyllo are implemented */
192 if(inb(wdc+wd_error) == 0x5a || inb(wdc+wd_cyl_lo) != 0xa5)
193 goto nodevice;
194
195 wdreset(dvp->id_unit, wdc, 0);
196
197 /* execute a controller only command */
198 if (wdcommand(du, WDCC_DIAGNOSE) < 0)
199 goto nodevice;
200
201 bzero(&wdtab[du->dk_ctrlr], sizeof(struct buf));
202
203 free(du, M_TEMP);
204 return (8);
205
206 nodevice:
207 free(du, M_TEMP);
208 return (0);
209 }
210
211 /*
212 * Called for the controller too
213 * Attach each drive if possible.
214 */
215 int
216 wdattach(struct isa_device *dvp)
217 {
218 int unit, lunit;
219 struct disk *du;
220
221 if (dvp->id_masunit == -1)
222 return(0);
223 if (dvp->id_masunit >= NWDC)
224 return(0);
225
226 lunit = dvp->id_unit;
227 if (lunit == -1) {
228 printf("wdc%d: cannot support unit ?\n", dvp->id_masunit);
229 return 0;
230 }
231 if (lunit >= NWD)
232 return(0);
233 unit = dvp->id_physid;
234
235 du = wddrives[lunit] = (struct disk *)
236 malloc(sizeof(struct disk), M_TEMP, M_NOWAIT);
237 bzero(du, sizeof(struct disk));
238 bzero(&wdutab[lunit], sizeof(struct buf));
239 bzero(&rwdbuf[lunit], sizeof(struct buf));
240 wdxfer[lunit] = 0;
241
242 du->dk_ctrlr = dvp->id_masunit;
243 du->dk_unit = unit;
244 du->dk_lunit = lunit;
245 du->dk_port = wdcontroller[dvp->id_masunit].dkc_port;
246
247 if(wdgetctlr(unit, du) == 0) {
248 int i, blank;
249
250 printf("wd%d at wdc%d targ %d: ",
251 dvp->id_unit, dvp->id_masunit, dvp->id_physid);
252 if(du->dk_params.wdp_heads==0)
253 printf("(unknown size) <");
254 else
255 printf("%dMB %d cyl, %d head, %d sec <",
256 du->dk_dd.d_ncylinders * du->dk_dd.d_secpercyl / 2048,
257 du->dk_dd.d_ncylinders, du->dk_dd.d_ntracks,
258 du->dk_dd.d_nsectors);
259 for (i=blank=0; i<sizeof(du->dk_params.wdp_model); i++) {
260 char c = du->dk_params.wdp_model[i];
261 if (blank && c == ' ')
262 continue;
263 if (blank && c != ' ') {
264 printf(" %c", c);
265 blank = 0;
266 continue;
267 }
268 if (c == ' ')
269 blank = 1;
270 else
271 printf("%c", c);
272 }
273 printf(">\n");
274 } else {
275 /*printf("wd%d at wdc%d slave %d -- error\n",
276 lunit, dvp->id_masunit, unit);*/
277 wddrives[lunit] = 0;
278 free(du, M_TEMP);
279 return 0;
280 }
281 return 1;
282 }
283
284 /* Read/write routine for a buffer. Finds the proper unit, range checks
285 * arguments, and schedules the transfer. Does not wait for the transfer
286 * to complete. Multi-page transfers are supported. All I/O requests must
287 * be a multiple of a sector in length.
288 */
289 int
290 wdstrategy(register struct buf *bp)
291 {
292 register struct buf *dp;
293 struct disk *du; /* Disk unit to do the IO. */
294 int lunit = wdunit(bp->b_dev);
295 int s;
296
297 /* valid unit, controller, and request? */
298 if (lunit >= NWD || bp->b_blkno < 0 ||
299 howmany(bp->b_bcount, DEV_BSIZE) >= (1<<NBBY) ||
300 (du = wddrives[lunit]) == 0) {
301 bp->b_error = EINVAL;
302 bp->b_flags |= B_ERROR;
303 goto done;
304 }
305
306 /* "soft" write protect check */
307 if ((du->dk_flags & DKFL_WRITEPROT) && (bp->b_flags & B_READ) == 0) {
308 bp->b_error = EROFS;
309 bp->b_flags |= B_ERROR;
310 goto done;
311 }
312
313 /* have partitions and want to use them? */
314 if ((du->dk_flags & DKFL_BSDLABEL) != 0 && wdpart(bp->b_dev) != WDRAW) {
315 /*
316 * do bounds checking, adjust transfer. if error, process.
317 * if end of partition, just return
318 */
319 if (bounds_check_with_label(bp, &du->dk_dd, du->dk_wlabel) <= 0)
320 goto done;
321 /* otherwise, process transfer request */
322 }
323
324 /* queue transfer on drive, activate drive and controller if idle */
325 dp = &wdutab[lunit];
326 s = splbio();
327 wddisksort(dp, bp);
328 if (dp->b_active == 0)
329 wdustart(du); /* start drive */
330 if (wdtab[du->dk_ctrlr].b_active == 0)
331 wdstart(du->dk_ctrlr); /* start controller */
332 splx(s);
333 return 0;
334
335 done:
336 /* toss transfer, we're done early */
337 biodone(bp);
338 return 0;
339 }
340
341 /*
342 * Routine to queue a command to the controller. The unit's
343 * request is linked into the active list for the controller.
344 * If the controller is idle, the transfer is started.
345 */
346 static void
347 wdustart(register struct disk *du)
348 {
349 register struct buf *bp, *dp = &wdutab[du->dk_lunit];
350 int ctrlr = du->dk_ctrlr;
351
352 /* unit already active? */
353 if (dp->b_active)
354 return;
355
356 /* anything to start? */
357 bp = dp->b_actf;
358 if (bp == NULL)
359 return;
360
361 /* link onto controller queue */
362 dp->b_forw = NULL;
363 if (wdtab[ctrlr].b_actf == NULL)
364 wdtab[ctrlr].b_actf = dp;
365 else
366 wdtab[ctrlr].b_actl->b_forw = dp;
367 wdtab[ctrlr].b_actl = dp;
368
369 /* mark the drive unit as busy */
370 dp->b_active = 1;
371 }
372
373 /*
374 * Controller startup routine. This does the calculation, and starts
375 * a single-sector read or write operation. Called to start a transfer,
376 * or from the interrupt routine to continue a multi-sector transfer.
377 * RESTRICTIONS:
378 * 1. The transfer length must be an exact multiple of the sector size.
379 */
380 static void
381 wdstart(int ctrlr)
382 {
383 register struct disk *du; /* disk unit for IO */
384 register struct buf *bp;
385 struct disklabel *lp;
386 struct buf *dp;
387 long blknum, cylin, head, sector;
388 long secpertrk, secpercyl, addr, timeout;
389 int lunit, wdc;
390 int xfrblknum;
391 unsigned char status;
392
393 loop:
394 /* is there a drive for the controller to do a transfer with? */
395 dp = wdtab[ctrlr].b_actf;
396 if (dp == NULL)
397 return;
398
399 /* is there a transfer to this drive ? if so, link it on
400 the controller's queue */
401 bp = dp->b_actf;
402 if (bp == NULL) {
403 wdtab[ctrlr].b_actf = dp->b_forw;
404 goto loop;
405 }
406
407 /* obtain controller and drive information */
408 lunit = wdunit(bp->b_dev);
409 du = wddrives[lunit];
410
411 /* if not really a transfer, do control operations specially */
412 if (du->dk_state < OPEN) {
413 (void) wdcontrol(bp);
414 return;
415 }
416
417 /* calculate transfer details */
418 blknum = bp->b_blkno + du->dk_skip;
419 #ifdef WDDEBUG
420 if (du->dk_skip == 0)
421 printf("\nwdstart %d: %s %d@%d; map ", lunit,
422 (bp->b_flags & B_READ) ? "read" : "write",
423 bp->b_bcount, blknum);
424 else
425 printf(" %d)%x", du->dk_skip, inb(du->dk_port+wd_altsts));
426 #endif
427 addr = (int) bp->b_un.b_addr;
428 if (du->dk_skip == 0) {
429 du->dk_bc = bp->b_bcount;
430 }
431 if (du->dk_skipm == 0) {
432 struct buf *oldbp, *nextbp;
433 oldbp = bp;
434 nextbp = bp->av_forw;
435 du->dk_bct = du->dk_bc;
436 oldbp->b_flags |= B_XXX;
437 while( nextbp
438 && (oldbp->b_flags & DKFL_SINGLE) == 0
439 && oldbp->b_dev == nextbp->b_dev
440 && nextbp->b_blkno == (oldbp->b_blkno + (oldbp->b_bcount/DEV_BSIZE))
441 && (oldbp->b_flags & B_READ) == (nextbp->b_flags & B_READ)) {
442 if( (du->dk_bct+nextbp->b_bcount)/DEV_BSIZE >= 240) {
443 break;
444 }
445 du->dk_bct += nextbp->b_bcount;
446 oldbp->b_flags |= B_XXX;
447 oldbp = nextbp;
448 nextbp = nextbp->av_forw;
449 }
450 }
451
452 lp = &du->dk_dd;
453 secpertrk = lp->d_nsectors;
454 secpercyl = lp->d_secpercyl;
455 if ((du->dk_flags & DKFL_BSDLABEL) != 0 && wdpart(bp->b_dev) != WDRAW)
456 blknum += lp->d_partitions[wdpart(bp->b_dev)].p_offset;
457 cylin = blknum / secpercyl;
458 head = (blknum % secpercyl) / secpertrk;
459 sector = blknum % secpertrk;
460
461 /* Check for bad sectors if we have them, and not formatting */
462 /* Only do this in single-sector mode, or when starting a */
463 /* multiple-sector transfer. */
464 #ifdef B_FORMAT
465 if ((du->dk_flags & DKFL_BADSECT) && !(bp->b_flags & B_FORMAT) &&
466 ((du->dk_skipm == 0) || (du->dk_flags & DKFL_SINGLE))) {
467 #else
468 if ((du->dk_flags & DKFL_BADSECT) &&
469 ((du->dk_skipm == 0) || (du->dk_flags & DKFL_SINGLE))) {
470 #endif
471
472 long blkchk, blkend, blknew;
473 int i;
474
475 blkend = blknum + howmany(du->dk_bct, DEV_BSIZE) - 1;
476 for (i = 0; (blkchk = du->dk_badsect[i]) != -1; i++) {
477 if (blkchk > blkend) {
478 break; /* transfer is completely OK; done */
479 } else if (blkchk == blknum) {
480 blknew = lp->d_secperunit - lp->d_nsectors - i - 1;
481 cylin = blknew / secpercyl;
482 head = (blknew % secpercyl) / secpertrk;
483 sector = blknew % secpertrk;
484 du->dk_flags |= DKFL_SINGLE;
485 /* found and replaced first blk of transfer; done */
486 break;
487 } else if (blkchk > blknum) {
488 du->dk_flags |= DKFL_SINGLE;
489 break; /* bad block inside transfer; done */
490 }
491 }
492 }
493 if( du->dk_flags & DKFL_SINGLE) {
494 du->dk_bct = du->dk_bc;
495 du->dk_skipm = du->dk_skip;
496 }
497
498 #ifdef WDDEBUG
499 pg("c%d h%d s%d ", cylin, head, sector);
500 #endif
501
502 sector += 1; /* sectors begin with 1, not 0 */
503
504 wdtab[ctrlr].b_active = 1; /* mark controller active */
505 wdc = du->dk_port;
506
507 #ifdef INSTRUMENT
508 /* instrumentation */
509 if (du->dk_unit >= 0 && du->dk_skip == 0) {
510 dk_busy |= 1 << du->dk_lunit;
511 dk_wds[du->dk_lunit] += bp->b_bcount >> 6;
512 }
513 if (du->dk_unit >= 0 && du->dk_skipm == 0) {
514 ++dk_seek[du->dk_lunit];
515 ++dk_xfer[du->dk_lunit];
516 }
517 #endif
518
519 retry:
520 /* if starting a multisector transfer, or doing single transfers */
521 if (du->dk_skipm == 0 || (du->dk_flags & DKFL_SINGLE)) {
522 if (wdtab[ctrlr].b_errcnt && (bp->b_flags & B_READ) == 0) {
523 du->dk_bc += DEV_BSIZE;
524 du->dk_bct += DEV_BSIZE;
525 }
526
527 /* controller idle? */
528 for (timeout=0; inb(wdc+wd_status) & WDCS_BUSY; ) {
529 DELAY(WDCDELAY);
530 if (++timeout < WDCNDELAY)
531 continue;
532 wdreset(ctrlr, wdc, 1);
533 break;
534 }
535 #ifdef WDCNDELAY_DEBUG
536 if(timeout>WDCNDELAY_DEBUG)
537 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
538 #endif
539
540 /* stuff the task file */
541 outb(wdc+wd_precomp, lp->d_precompcyl / 4);
542 #ifdef B_FORMAT
543 if (bp->b_flags & B_FORMAT) {
544 outb(wdc+wd_sector, lp->d_gap3);
545 outb(wdc+wd_seccnt, lp->d_nsectors);
546 } else {
547 if (du->dk_flags & DKFL_SINGLE)
548 outb(wdc+wd_seccnt, 1);
549 else
550 outb(wdc+wd_seccnt, howmany(du->dk_bct, DEV_BSIZE));
551 outb(wdc+wd_sector, sector);
552 }
553 #else
554 if (du->dk_flags & DKFL_SINGLE)
555 outb(wdc+wd_seccnt, 1);
556 else
557 outb(wdc+wd_seccnt, howmany(du->dk_bct, DEV_BSIZE));
558 outb(wdc+wd_sector, sector);
559 #endif
560 outb(wdc+wd_cyl_lo, cylin);
561 outb(wdc+wd_cyl_hi, cylin >> 8);
562
563 /* set up the SDH register (select drive) */
564 outb(wdc+wd_sdh, WDSD_IBM | (du->dk_unit<<4) | (head & 0xf));
565
566 /* wait for drive to become ready */
567 for (timeout=0; (inb(wdc+wd_status) & WDCS_READY) == 0; ) {
568 DELAY(WDCDELAY);
569 if (++timeout < WDCNDELAY)
570 continue;
571 wdreset(ctrlr, wdc, 1);
572 goto retry;
573 }
574 #ifdef WDCNDELAY_DEBUG
575 if(timeout>WDCNDELAY_DEBUG)
576 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
577 #endif
578
579 /* initiate command! */
580 #ifdef B_FORMAT
581 if (bp->b_flags & B_FORMAT)
582 outb(wdc+wd_command, WDCC_FORMAT);
583 else
584 outb(wdc+wd_command,
585 (bp->b_flags & B_READ)? WDCC_READ : WDCC_WRITE);
586 #else
587 outb(wdc+wd_command, (bp->b_flags & B_READ)? WDCC_READ : WDCC_WRITE);
588 #endif
589 #ifdef WDDEBUG
590 printf("sector %d cylin %d head %d addr %x sts %x\n",
591 sector, cylin, head, addr, inb(wdc+wd_altsts));
592 #endif
593 }
594
595 /* if this is a read operation, just go away until it's done. */
596 if (bp->b_flags & B_READ)
597 return;
598
599 /* ready to send data? */
600 for (timeout=0; (inb(wdc+wd_altsts) & WDCS_DRQ) == 0; ) {
601 DELAY(WDCDELAY);
602 if (++timeout < WDCNDELAY)
603 continue;
604 wdreset(ctrlr, wdc, 1);
605 goto retry;
606 }
607 #ifdef WDCNDELAY_DEBUG
608 if(timeout>WDCNDELAY_DEBUG)
609 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
610 #endif
611
612 /* then send it! */
613 outagain:
614 outsw (wdc+wd_data, addr+du->dk_skip * DEV_BSIZE,
615 DEV_BSIZE/sizeof(short));
616 du->dk_bc -= DEV_BSIZE;
617 du->dk_bct -= DEV_BSIZE;
618 }
619
620 /* Interrupt routine for the controller. Acknowledge the interrupt, check for
621 * errors on the current operation, mark it done if necessary, and start
622 * the next request. Also check for a partially done transfer, and
623 * continue with the next chunk if so.
624 */
625 void
626 wdintr(struct intrframe wdif)
627 {
628 register struct disk *du;
629 register struct buf *bp, *dp;
630 int status, wdc, ctrlr;
631
632 ctrlr = wdif.if_vec;
633
634 if (!wdtab[ctrlr].b_active) {
635 printf("wdc%d: extra interrupt\n", ctrlr);
636 return;
637 }
638
639 dp = wdtab[ctrlr].b_actf;
640 bp = dp->b_actf;
641 du = wddrives[wdunit(bp->b_dev)];
642 wdc = du->dk_port;
643
644 #ifdef WDDEBUG
645 printf("I%d ", ctrlr);
646 #endif
647
648 while ((status = inb(wdc+wd_status)) & WDCS_BUSY)
649 ;
650
651 /* is it not a transfer, but a control operation? */
652 if (du->dk_state < OPEN) {
653 if (wdcontrol(bp))
654 wdstart(ctrlr);
655 return;
656 }
657
658 /* have we an error? */
659 if (status & (WDCS_ERR | WDCS_ECCCOR)) {
660 du->dk_status = status;
661 du->dk_error = inb(wdc + wd_error);
662 #ifdef WDDEBUG
663 printf("status %x error %x\n", status, du->dk_error);
664 #endif
665 if((du->dk_flags & DKFL_SINGLE) == 0) {
666 du->dk_flags |= DKFL_ERROR;
667 goto outt;
668 }
669 #ifdef B_FORMAT
670 if (bp->b_flags & B_FORMAT) {
671 bp->b_flags |= B_ERROR;
672 goto done;
673 }
674 #endif
675
676 /* error or error correction? */
677 if (status & WDCS_ERR) {
678 if (++wdtab[ctrlr].b_errcnt < WDIORETRIES) {
679 wdtab[ctrlr].b_active = 0;
680 } else {
681 if((du->dk_flags & DKFL_QUIET) == 0) {
682 diskerr(bp, "wd", "hard error",
683 LOG_PRINTF, du->dk_skip,
684 &du->dk_dd);
685 #ifdef WDDEBUG
686 printf( "status %b error %b\n",
687 status, WDCS_BITS,
688 inb(wdc+wd_error), WDERR_BITS);
689 #endif
690 }
691 bp->b_flags |= B_ERROR; /* flag the error */
692 }
693 } else if((du->dk_flags & DKFL_QUIET) == 0) {
694 diskerr(bp, "wd", "soft ecc", 0,
695 du->dk_skip, &du->dk_dd);
696 }
697 }
698 outt:
699
700 /*
701 * If this was a successful read operation, fetch the data.
702 */
703 if (((bp->b_flags & (B_READ | B_ERROR)) == B_READ) && wdtab[ctrlr].b_active) {
704 int chk, dummy;
705
706 chk = min(DEV_BSIZE / sizeof(short), du->dk_bc / sizeof(short));
707
708 /* ready to receive data? */
709 while ((inb(wdc+wd_status) & WDCS_DRQ) == 0)
710 ;
711
712 /* suck in data */
713 insw (wdc+wd_data,
714 (int)bp->b_un.b_addr + du->dk_skip * DEV_BSIZE, chk);
715 du->dk_bc -= chk * sizeof(short);
716 du->dk_bct -= chk * sizeof(short);
717
718 /* for obselete fractional sector reads */
719 while (chk++ < (DEV_BSIZE / sizeof(short)))
720 insw(wdc+wd_data, &dummy, 1);
721 }
722
723 wdxfer[du->dk_lunit]++;
724 if (wdtab[ctrlr].b_active) {
725 #ifdef INSTRUMENT
726 if (du->dk_unit >= 0)
727 dk_busy &=~ (1 << du->dk_unit);
728 #endif
729 if ((bp->b_flags & B_ERROR) == 0) {
730 du->dk_skip++; /* Add to succ. sect */
731 du->dk_skipm++; /* Add to succ. sect for multitransfer */
732 if (wdtab[ctrlr].b_errcnt && (du->dk_flags & DKFL_QUIET) == 0)
733 diskerr(bp, "wd", "soft error", 0,
734 du->dk_skip, &du->dk_dd);
735 wdtab[ctrlr].b_errcnt = 0;
736
737 /* see if more to transfer */
738 if (du->dk_bc > 0 && (du->dk_flags & DKFL_ERROR) == 0) {
739 if( (du->dk_flags & DKFL_SINGLE)
740 || (du->dk_flags & B_READ) == 0) {
741 wdstart(ctrlr);
742 return; /* next chunk is started */
743 }
744 } else if ((du->dk_flags & (DKFL_SINGLE|DKFL_ERROR)) == DKFL_ERROR) {
745 du->dk_skip = 0;
746 du->dk_skipm = 0;
747 du->dk_flags &= ~DKFL_ERROR;
748 du->dk_flags |= DKFL_SINGLE;
749 wdstart(ctrlr);
750 return; /* redo xfer sector by sector */
751 }
752 }
753
754 done:
755 /* done with this transfer, with or without error */
756 du->dk_flags &= ~DKFL_SINGLE;
757 wdtab[ctrlr].b_errcnt = 0;
758 du->dk_skip = 0;
759 if( du->dk_bct == 0) {
760 wdtab[ctrlr].b_actf = dp->b_forw;
761 du->dk_skipm = 0;
762 dp->b_active = 0;
763 }
764 dp->b_actf = bp->av_forw;
765 dp->b_errcnt = 0;
766 bp->b_resid = 0;
767 bp->b_flags &= ~B_XXX;
768 biodone(bp);
769 }
770
771 /* anything more on drive queue? */
772 if (dp->b_actf && du->dk_bct == 0)
773 wdustart(du);
774
775 /* anything more for controller to do? */
776 if (wdtab[ctrlr].b_actf)
777 wdstart(ctrlr);
778
779 if (!wdtab[ctrlr].b_actf)
780 wdtab[ctrlr].b_active = 0;
781 }
782
783 /*
784 * Initialize a drive.
785 */
786 int
787 wdopen(dev_t dev, int flags, int fmt, struct proc *p)
788 {
789 register unsigned int lunit;
790 register struct disk *du;
791 int part = wdpart(dev), mask = 1 << part;
792 struct partition *pp;
793 int error = 0;
794 char *msg;
795
796 lunit = wdunit(dev);
797 if (lunit >= NWD)
798 return (ENXIO);
799
800 du = wddrives[lunit];
801
802 if (du == 0)
803 return (ENXIO);
804
805 #ifdef QUIETWORKS
806 if (part == WDRAW)
807 du->dk_flags |= DKFL_QUIET;
808 else
809 du->dk_flags &= ~DKFL_QUIET;
810 #else
811 du->dk_flags &= ~DKFL_QUIET;
812 #endif
813
814 if ((du->dk_flags & DKFL_BSDLABEL) == 0) {
815 du->dk_flags |= DKFL_WRITEPROT;
816 wdutab[lunit].b_actf = NULL;
817
818 /*
819 * Use the default sizes until we've read the label,
820 * or longer if there isn't one there.
821 */
822 bzero(&du->dk_dd, sizeof(du->dk_dd));
823 #undef d_type /* fix goddamn segments.h! XXX */
824 du->dk_dd.d_type = DTYPE_ST506;
825 du->dk_dd.d_ncylinders = 1024;
826 du->dk_dd.d_secsize = DEV_BSIZE;
827 du->dk_dd.d_ntracks = 8;
828 du->dk_dd.d_nsectors = 17;
829 du->dk_dd.d_secpercyl = 17*8;
830 du->dk_dd.d_secperunit = 17*8*1024;
831 du->dk_state = WANTOPEN;
832
833 /* read label using "raw" partition */
834 #if defined(TIHMODS) && defined(garbage)
835 /* wdsetctlr(dev, du); */ /* Maybe do this TIH */
836 msg = readdisklabel(makewddev(major(dev), wdunit(dev), WDRAW),
837 wdstrategy, &du->dk_dd, &du->dk_cpd);
838 wdsetctlr(dev, du);
839 msg = readdisklabel(makewddev(major(dev), wdunit(dev), WDRAW),
840 wdstrategy, &du->dk_dd, &du->dk_cpd);
841 if (msg) {
842 #ifdef QUIETWORKS
843 if((du->dk_flags & DKFL_QUIET) == 0) {
844 log(LOG_WARNING, "wd%d: cannot find label (%s)\n",
845 lunit, msg);
846 error = EINVAL; /* XXX needs translation */
847 }
848 #else
849 log(LOG_WARNING, "wd%d: cannot find label (%s)\n", lunit, msg);
850 if(part != WDRAW) {
851 error = EINVAL; /* XXX needs translation */
852 }
853 #endif
854 goto done;
855 } else {
856 wdsetctlr(dev, du);
857 du->dk_flags |= DKFL_BSDLABEL;
858 du->dk_flags &= ~DKFL_WRITEPROT;
859 if (du->dk_dd.d_flags & D_BADSECT)
860 du->dk_flags |= DKFL_BADSECT;
861 }
862 #else
863 if (msg = readdisklabel(makewddev(major(dev), wdunit(dev), WDRAW),
864 wdstrategy, &du->dk_dd, &du->dk_cpd) ) {
865 if((du->dk_flags & DKFL_QUIET) == 0) {
866 log(LOG_WARNING, "wd%d: cannot find label (%s)\n",
867 lunit, msg);
868 error = EINVAL; /* XXX needs translation */
869 }
870 goto done;
871 } else {
872 wdsetctlr(dev, du);
873 du->dk_flags |= DKFL_BSDLABEL;
874 du->dk_flags &= ~DKFL_WRITEPROT;
875 if (du->dk_dd.d_flags & D_BADSECT)
876 du->dk_flags |= DKFL_BADSECT;
877 }
878 #endif
879
880 done:
881 if (error) {
882 return(error);
883 }
884 }
885
886 if (du->dk_flags & DKFL_BADSECT)
887 bad144intern(du);
888
889 /*
890 * Warn if a partion is opened
891 * that overlaps another partition which is open
892 * unless one is the "raw" partition (whole disk).
893 */
894 if ((du->dk_openpart & mask) == 0 /*&& part != RAWPART*/ && part != WDRAW) {
895 int start, end;
896
897 pp = &du->dk_dd.d_partitions[part];
898 start = pp->p_offset;
899 end = pp->p_offset + pp->p_size;
900 for (pp = du->dk_dd.d_partitions;
901 pp < &du->dk_dd.d_partitions[du->dk_dd.d_npartitions]; pp++) {
902 if (pp->p_offset + pp->p_size <= start || pp->p_offset >= end)
903 continue;
904 /*if (pp - du->dk_dd.d_partitions == RAWPART)
905 continue; */
906 if (pp - du->dk_dd.d_partitions == WDRAW)
907 continue;
908 if (du->dk_openpart & (1 << (pp - du->dk_dd.d_partitions)))
909 log(LOG_WARNING,
910 "wd%d%c: overlaps open partition (%c)\n",
911 lunit, part + 'a',
912 pp - du->dk_dd.d_partitions + 'a');
913 }
914 }
915
916 if (part >= du->dk_dd.d_npartitions && part != WDRAW) {
917 return (ENXIO);
918 }
919
920 /* insure only one open at a time */
921 du->dk_openpart |= mask;
922 switch (fmt) {
923 case S_IFCHR:
924 du->dk_copenpart |= mask;
925 break;
926 case S_IFBLK:
927 du->dk_bopenpart |= mask;
928 break;
929 }
930 return (0);
931 }
932
933 /*
934 * Implement operations other than read/write.
935 * Called from wdstart or wdintr during opens and formats.
936 * Uses finite-state-machine to track progress of operation in progress.
937 * Returns 0 if operation still in progress, 1 if completed.
938 */
939 static int
940 wdcontrol(register struct buf *bp)
941 {
942 register struct disk *du;
943 register unit, lunit;
944 unsigned char stat;
945 int s, ctrlr, timeout;
946 int wdc;
947
948 du = wddrives[wdunit(bp->b_dev)];
949 ctrlr = du->dk_ctrlr;
950 unit = du->dk_unit;
951 lunit = du->dk_lunit;
952 wdc = du->dk_port;
953
954 switch (du->dk_state) {
955 tryagainrecal:
956 case WANTOPEN: /* set SDH, step rate, do restore */
957 #ifdef WDDEBUG
958 printf("wd%d: recal ", lunit);
959 #endif
960 s = splbio(); /* not called from intr level ... */
961 wdgetctlr(unit, du);
962 #ifdef TIPCAT
963
964 for (timeout=0; (inb(wdc+wd_status) & WDCS_READY) == 0; ) {
965 DELAY(WDCDELAY);
966 if (++timeout < WDCNDELAY)
967 continue;
968 wdreset(ctrlr, wdc, 1);
969 goto tryagainrecal;
970 }
971 #ifdef WDCNDELAY_DEBUG
972 if(timeout>WDCNDELAY_DEBUG)
973 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
974 #endif
975 #endif
976 outb(wdc+wd_sdh, WDSD_IBM | (unit << 4));
977 wdtab[ctrlr].b_active = 1;
978 outb(wdc+wd_command, WDCC_RESTORE | WD_STEP);
979 #ifdef TIPCAT
980 for (timeout=0; (inb(wdc+wd_status) & WDCS_READY) == 0; ) {
981 DELAY(WDCDELAY);
982 if (++timeout < WDCNDELAY)
983 continue;
984 wdreset(ctrlr, wdc, 1);
985 goto tryagainrecal;
986 }
987 #ifdef WDCNDELAY_DEBUG
988 if(timeout>WDCNDELAY_DEBUG)
989 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
990 #endif
991 #endif
992 du->dk_state = RECAL;
993 splx(s);
994 return(0);
995 case RECAL:
996 if ((stat = inb(wdc+wd_status)) & WDCS_ERR) {
997 if ((du->dk_flags & DKFL_QUIET) == 0) {
998 printf("wd%d: recal", du->dk_lunit);
999 printf(": status %b error %b\n",
1000 stat, WDCS_BITS, inb(wdc+wd_error),
1001 WDERR_BITS);
1002 }
1003 if (++wdtab[ctrlr].b_errcnt < WDIORETRIES)
1004 goto tryagainrecal;
1005 bp->b_error = ENXIO; /* XXX needs translation */
1006 goto badopen;
1007 }
1008
1009 /* some controllers require this ... */
1010 wdsetctlr(bp->b_dev, du);
1011
1012 wdtab[ctrlr].b_errcnt = 0;
1013 du->dk_state = OPEN;
1014 /*
1015 * The rest of the initialization can be done
1016 * by normal means.
1017 */
1018 return(1);
1019 default:
1020 panic("wdcontrol");
1021 }
1022 /* NOTREACHED */
1023
1024 badopen:
1025 if ((du->dk_flags & DKFL_QUIET) == 0)
1026 printf(": status %b error %b\n",
1027 stat, WDCS_BITS, inb(wdc + wd_error), WDERR_BITS);
1028 bp->b_flags |= B_ERROR;
1029 return(1);
1030 }
1031
1032 /*
1033 * send a command and wait uninterruptibly until controller is finished.
1034 * return -1 if controller busy for too long, otherwise
1035 * return status. intended for brief controller commands at critical points.
1036 * assumes interrupts are blocked.
1037 */
1038 static int
1039 wdcommand(struct disk *du, int cmd)
1040 {
1041 int timeout, stat, wdc;
1042
1043 /*DELAY(2000);*/
1044 wdc = du->dk_port;
1045
1046 /* controller ready for command? */
1047 for (timeout=0; (stat=inb(wdc+wd_status)) & WDCS_BUSY; ) {
1048 DELAY(WDCDELAY);
1049 if(++timeout > WDCNDELAY)
1050 return -1;
1051 }
1052 #ifdef WDCNDELAY_DEBUG
1053 if(timeout>WDCNDELAY_DEBUG)
1054 printf("wdc%d: timeout took %dus\n", du->dk_ctrlr, WDCDELAY * timeout);
1055 #endif
1056
1057 /* send command, await results */
1058 outb(wdc+wd_command, cmd);
1059 for (timeout=0; (stat=inb(wdc+wd_status)) & WDCS_BUSY; ) {
1060 DELAY(WDCDELAY);
1061 if(++timeout > WDCNDELAY)
1062 return -1;
1063 }
1064 #ifdef WDCNDELAY_DEBUG
1065 if(timeout>WDCNDELAY_DEBUG)
1066 printf("wdc%d: timeout took %dus\n", du->dk_ctrlr, WDCDELAY * timeout);
1067 #endif
1068 if (cmd != WDCC_READP)
1069 return (stat);
1070
1071 /* is controller ready to return data? */
1072 for (timeout=0; ((stat=inb(wdc+wd_status)) & (WDCS_ERR|WDCS_DRQ)) == 0; ) {
1073 DELAY(WDCDELAY);
1074 if(++timeout > WDCNDELAY)
1075 return -1;
1076 }
1077 #ifdef WDCNDELAY_DEBUG
1078 if(timeout>WDCNDELAY_DEBUG)
1079 printf("wdc%d: timeout took %dus\n", du->dk_ctrlr, WDCDELAY * timeout);
1080 #endif
1081 return (stat);
1082 }
1083
1084 /*
1085 * issue IDC to drive to tell it just what geometry it is to be.
1086 */
1087 static int
1088 wdsetctlr(dev_t dev, struct disk *du)
1089 {
1090 int stat, x, wdc;
1091
1092 /*
1093 printf("wd(%d,%d) C%dH%dS%d\n", du->dk_ctrlr, du->dk_unit,
1094 du->dk_dd.d_ncylinders, du->dk_dd.d_ntracks, du->dk_dd.d_nsectors);
1095 */
1096
1097 wdc = du->dk_port;
1098
1099 /*DELAY(2000);*/
1100
1101 x = splbio();
1102 outb(wdc+wd_cyl_lo, du->dk_dd.d_ncylinders); /* TIH: was ...ders+1 */
1103 outb(wdc+wd_cyl_hi, (du->dk_dd.d_ncylinders)>>8); /* TIH: was ...ders+1 */
1104 outb(wdc+wd_sdh, WDSD_IBM | (du->dk_unit << 4) + du->dk_dd.d_ntracks-1);
1105 outb(wdc+wd_seccnt, du->dk_dd.d_nsectors);
1106 stat = wdcommand(du, WDCC_IDC);
1107
1108 #ifndef TIHMODS
1109 if (stat < 0)
1110 return(stat);
1111 #endif
1112 if (stat & WDCS_ERR)
1113 printf("wdsetctlr: status %b error %b\n",
1114 stat, WDCS_BITS, inb(wdc+wd_error), WDERR_BITS);
1115 splx(x);
1116 return(stat);
1117 }
1118
1119 /*
1120 * issue READP to drive to ask it what it is.
1121 */
1122 static int
1123 wdgetctlr(int u, struct disk *du)
1124 {
1125 int stat, x, i, wdc;
1126 char tb[DEV_BSIZE];
1127 struct wdparams *wp;
1128 int timeout;
1129
1130 x = splbio(); /* not called from intr level ... */
1131 wdc = du->dk_port;
1132 #ifdef TIPCAT
1133 for (timeout=0; (inb(wdc+wd_status) & WDCS_READY) == 0; ) {
1134 DELAY(WDCDELAY);
1135 if(++timeout > WDCNDELAY) {
1136 splx(x);
1137 return -1;
1138 }
1139 }
1140 #ifdef WDCNDELAY_DEBUG
1141 if(timeout>WDCNDELAY_DEBUG)
1142 printf("wdc%d: timeout took %dus\n", du->dk_ctrlr, WDCDELAY * timeout);
1143 #endif
1144 #endif
1145 outb(wdc+wd_sdh, WDSD_IBM | (u << 4));
1146 stat = wdcommand(du, WDCC_READP);
1147 #ifdef TIPCAT
1148 for (timeout=0; (inb(wdc+wd_status) & WDCS_READY) == 0; ) {
1149 DELAY(WDCDELAY);
1150 if(++timeout > WDCNDELAY) {
1151 splx(x);
1152 return -1;
1153 }
1154 }
1155 #ifdef WDCNDELAY_DEBUG
1156 if(timeout>WDCNDELAY_DEBUG)
1157 printf("wdc%d: timeout took %dus\n", du->dk_ctrlr, WDCDELAY * timeout);
1158 #endif
1159 #endif
1160
1161 #ifndef TIHMODS
1162 if (stat < 0)
1163 return(stat);
1164 #else
1165 if (stat < 0) {
1166 splx(x);
1167 return(stat);
1168 }
1169 #endif
1170
1171 if( (stat & WDCS_ERR) == 0) {
1172 /* obtain parameters */
1173 wp = &du->dk_params;
1174 insw(wdc+wd_data, tb, sizeof(tb)/sizeof(short));
1175 bcopy(tb, wp, sizeof(struct wdparams));
1176
1177 /* shuffle string byte order */
1178 for (i=0; i < sizeof(wp->wdp_model); i+=2) {
1179 u_short *p;
1180 p = (u_short *) (wp->wdp_model + i);
1181 *p = ntohs(*p);
1182 }
1183
1184 strncpy(du->dk_dd.d_typename, "ESDI/IDE", sizeof du->dk_dd.d_typename);
1185 du->dk_dd.d_type = DTYPE_ESDI;
1186 bcopy(wp->wdp_model+20, du->dk_dd.d_packname, 14-1);
1187
1188 /* update disklabel given drive information */
1189 du->dk_dd.d_ncylinders = wp->wdp_fixedcyl + wp->wdp_removcyl /*+- 1*/;
1190 du->dk_dd.d_ntracks = wp->wdp_heads;
1191 du->dk_dd.d_nsectors = wp->wdp_sectors;
1192 du->dk_dd.d_secpercyl = du->dk_dd.d_ntracks * du->dk_dd.d_nsectors;
1193 du->dk_dd.d_partitions[1].p_size = du->dk_dd.d_secpercyl *
1194 wp->wdp_sectors;
1195 du->dk_dd.d_partitions[1].p_offset = 0;
1196 } else {
1197 /*
1198 * If WDCC_READP fails then we might have an old drive
1199 * so we try a seek to 0; if that passes then the
1200 * drive is there but it's OLD AND KRUSTY.
1201 */
1202 stat = wdcommand(du, WDCC_RESTORE | WD_STEP);
1203 if(stat & WDCS_ERR) {
1204 splx(x);
1205 return(inb(wdc+wd_error));
1206 }
1207
1208 strncpy(du->dk_dd.d_typename, "ST506", sizeof du->dk_dd.d_typename);
1209 strncpy(du->dk_params.wdp_model, "Unknown Type",
1210 sizeof du->dk_params.wdp_model);
1211 du->dk_dd.d_type = DTYPE_ST506;
1212 }
1213
1214 #if 0
1215 printf("gc %x cyl %d trk %d sec %d type %d sz %d model %s\n", wp->wdp_config,
1216 wp->wdp_fixedcyl+wp->wdp_removcyl, wp->wdp_heads, wp->wdp_sectors,
1217 wp->wdp_cntype, wp->wdp_cnsbsz, wp->wdp_model);
1218 #endif
1219
1220 /* better ... */
1221 du->dk_dd.d_subtype |= DSTYPE_GEOMETRY;
1222
1223 /* XXX sometimes possibly needed */
1224 (void) inb(wdc+wd_status);
1225 #ifdef TIHMODS
1226 splx(x);
1227 #endif
1228 return (0);
1229 }
1230
1231
1232 /* ARGSUSED */
1233 int
1234 wdclose(dev_t dev, int flags, int fmt)
1235 {
1236 register struct disk *du;
1237 int part = wdpart(dev), mask = 1 << part;
1238
1239 du = wddrives[wdunit(dev)];
1240
1241 /* insure only one open at a time */
1242 du->dk_openpart &= ~mask;
1243 switch (fmt) {
1244 case S_IFCHR:
1245 du->dk_copenpart &= ~mask;
1246 break;
1247 case S_IFBLK:
1248 du->dk_bopenpart &= ~mask;
1249 break;
1250 }
1251 return(0);
1252 }
1253
1254 int
1255 wdioctl(dev_t dev, int cmd, caddr_t addr, int flag)
1256 {
1257 int lunit = wdunit(dev);
1258 register struct disk *du;
1259 int error = 0;
1260 struct uio auio;
1261 struct iovec aiov;
1262
1263 du = wddrives[lunit];
1264
1265 switch (cmd) {
1266 case DIOCSBAD:
1267 if ((flag & FWRITE) == 0)
1268 error = EBADF;
1269 else {
1270 du->dk_cpd.bad = *(struct dkbad *)addr;
1271 bad144intern(du);
1272 }
1273 break;
1274
1275 case DIOCGDINFO:
1276 *(struct disklabel *)addr = du->dk_dd;
1277 break;
1278
1279 case DIOCGPART:
1280 ((struct partinfo *)addr)->disklab = &du->dk_dd;
1281 ((struct partinfo *)addr)->part =
1282 &du->dk_dd.d_partitions[wdpart(dev)];
1283 break;
1284
1285 case DIOCSDINFO:
1286 if ((flag & FWRITE) == 0)
1287 error = EBADF;
1288 else {
1289 error = setdisklabel(&du->dk_dd, (struct disklabel *)addr,
1290 /*(du->dk_flags&DKFL_BSDLABEL) ? du->dk_openpart : */0,
1291 &du->dk_cpd);
1292 }
1293 if (error == 0) {
1294 du->dk_flags |= DKFL_BSDLABEL;
1295 wdsetctlr(dev, du);
1296 }
1297 break;
1298
1299 case DIOCWLABEL:
1300 du->dk_flags &= ~DKFL_WRITEPROT;
1301 if ((flag & FWRITE) == 0)
1302 error = EBADF;
1303 else
1304 du->dk_wlabel = *(int *)addr;
1305 break;
1306
1307 case DIOCWDINFO:
1308 du->dk_flags &= ~DKFL_WRITEPROT;
1309 if ((flag & FWRITE) == 0)
1310 error = EBADF;
1311 else if ((error = setdisklabel(&du->dk_dd, (struct disklabel *)addr,
1312 /*(du->dk_flags & DKFL_BSDLABEL) ? du->dk_openpart :*/ 0,
1313 &du->dk_cpd)) == 0) {
1314 int wlab;
1315
1316 du->dk_flags |= DKFL_BSDLABEL;
1317 wdsetctlr(dev, du);
1318
1319 /* simulate opening partition 0 so write succeeds */
1320 du->dk_openpart |= (1 << 0); /* XXX */
1321 wlab = du->dk_wlabel;
1322 du->dk_wlabel = 1;
1323 error = writedisklabel(dev, wdstrategy, &du->dk_dd, &du->dk_cpd);
1324 du->dk_openpart = du->dk_copenpart | du->dk_bopenpart;
1325 du->dk_wlabel = wlab;
1326 }
1327 break;
1328
1329 #ifdef notyet
1330 case DIOCGDINFOP:
1331 *(struct disklabel **)addr = &(du->dk_dd);
1332 break;
1333
1334 case DIOCWFORMAT:
1335 if ((flag & FWRITE) == 0)
1336 error = EBADF;
1337 else {
1338 register struct format_op *fop;
1339
1340 fop = (struct format_op *)addr;
1341 aiov.iov_base = fop->df_buf;
1342 aiov.iov_len = fop->df_count;
1343 auio.uio_iov = &aiov;
1344 auio.uio_iovcnt = 1;
1345 auio.uio_resid = fop->df_count;
1346 auio.uio_segflg = 0;
1347 auio.uio_offset = fop->df_startblk * du->dk_dd.d_secsize;
1348 error = physio(wdformat, &rwdbuf[lunit], dev, B_WRITE,
1349 minphys, &auio);
1350 fop->df_count -= auio.uio_resid;
1351 fop->df_reg[0] = du->dk_status;
1352 fop->df_reg[1] = du->dk_error;
1353 }
1354 break;
1355 #endif
1356
1357 default:
1358 error = ENOTTY;
1359 break;
1360 }
1361 return (error);
1362 }
1363
1364 #ifdef B_FORMAT
1365 int
1366 wdformat(struct buf *bp)
1367 {
1368 bp->b_flags |= B_FORMAT;
1369 return (wdstrategy(bp));
1370 }
1371 #endif
1372
1373 int
1374 wdsize(dev_t dev)
1375 {
1376 int lunit = wdunit(dev), part = wdpart(dev);
1377 struct disk *du;
1378
1379 if (lunit >= NWD)
1380 return(-1);
1381
1382 if ((du = wddrives[lunit]) == 0)
1383 return (-1);
1384
1385 if (du->dk_state < OPEN || (du->dk_flags & DKFL_BSDLABEL) == 0) {
1386 int val;
1387 val = wdopen(makewddev(major(dev), lunit, WDRAW), FREAD, S_IFBLK, 0);
1388 if (val != 0)
1389 return (-1);
1390 }
1391
1392 if ((du->dk_flags & (DKFL_WRITEPROT|DKFL_BSDLABEL)) != DKFL_BSDLABEL)
1393 return (-1);
1394 else
1395 return((int)du->dk_dd.d_partitions[part].p_size);
1396 }
1397
1398 extern char *vmmap; /* poor name! */
1399
1400 /* dump core after a system crash */
1401 int
1402 wddump(dev_t dev)
1403 {
1404 register struct disk *du; /* disk unit to do the IO */
1405 long num; /* number of sectors to write */
1406 int ctrlr, lunit, part, wdc;
1407 long blkoff, blknum;
1408 long cylin, head, sector, stat;
1409 long secpertrk, secpercyl, nblocks, i;
1410 char *addr;
1411 extern int Maxmem;
1412 static wddoingadump = 0;
1413 extern caddr_t CADDR1;
1414
1415 addr = (char *) 0; /* starting address */
1416
1417 #if DO_NOT_KNOW_HOW
1418 /* toss any characters present prior to dump, ie. non-blocking getc */
1419 while (cngetc())
1420 ;
1421 #endif
1422
1423 /* size of memory to dump */
1424 num = Maxmem;
1425 lunit = wdunit(dev); /* eventually support floppies? */
1426 part = wdpart(dev); /* file system */
1427 /* check for acceptable drive number */
1428 if (lunit >= NWD)
1429 return(ENXIO);
1430
1431 du = wddrives[lunit];
1432 if (du == 0)
1433 return(ENXIO);
1434 /* was it ever initialized ? */
1435 if (du->dk_state < OPEN)
1436 return (ENXIO);
1437 if (du->dk_flags & DKFL_WRITEPROT)
1438 return(ENXIO);
1439 wdc = du->dk_port;
1440 ctrlr = du->dk_ctrlr;
1441
1442 /* Convert to disk sectors */
1443 num = (u_long) num * NBPG / du->dk_dd.d_secsize;
1444
1445 /* check if controller active */
1446 /*if (wdtab[ctrlr].b_active)
1447 return(EFAULT); */
1448 if (wddoingadump)
1449 return(EFAULT);
1450
1451 secpertrk = du->dk_dd.d_nsectors;
1452 secpercyl = du->dk_dd.d_secpercyl;
1453 nblocks = du->dk_dd.d_partitions[part].p_size;
1454 blkoff = du->dk_dd.d_partitions[part].p_offset;
1455
1456 /*pg("xunit %x, nblocks %d, dumplo %d num %d\n", part,nblocks,dumplo,num);*/
1457 /* check transfer bounds against partition size */
1458 if ((dumplo < 0) || ((dumplo + num) > nblocks))
1459 return(EINVAL);
1460
1461 /* mark controller active for if we panic during the dump */
1462 /* wdtab[ctrlr].b_active = 1; */
1463 wddoingadump = 1;
1464 i = 200000000;
1465 while ((inb(wdc+wd_status) & WDCS_BUSY) && (i-- > 0))
1466 ;
1467 outb(wdc+wd_sdh, WDSD_IBM | (du->dk_unit << 4));
1468 outb(wdc+wd_command, WDCC_RESTORE | WD_STEP);
1469 while (inb(wdc+wd_status) & WDCS_BUSY)
1470 ;
1471
1472 /* some compaq controllers require this ... */
1473 wdsetctlr(dev, du);
1474
1475 blknum = dumplo + blkoff;
1476 while (num > 0) {
1477 pmap_enter(kernel_pmap, CADDR1, trunc_page(addr), VM_PROT_READ, TRUE);
1478
1479 /* compute disk address */
1480 cylin = blknum / secpercyl;
1481 head = (blknum % secpercyl) / secpertrk;
1482 sector = blknum % secpertrk;
1483
1484 if (du->dk_flags & DKFL_BADSECT) {
1485 long newblk;
1486 int i;
1487
1488 for (i = 0; du->dk_badsect[i] != -1; i++) {
1489 if (blknum < du->dk_badsect[i]) {
1490 break; /* sorted list, passed our block by */
1491 } else if (blknum == du->dk_badsect[i]) {
1492 newblk = du->dk_dd.d_secperunit -
1493 du->dk_dd.d_nsectors - i - 1;
1494 cylin = newblk / secpercyl;
1495 head = (newblk % secpercyl) / secpertrk;
1496 sector = newblk % secpertrk;
1497 /* found and repl; done scanning bad144 table */
1498 break;
1499 }
1500 }
1501 }
1502 sector++; /* origin 1 */
1503
1504 /* select drive. */
1505 outb(wdc+wd_sdh, WDSD_IBM | (du->dk_unit<<4) | (head & 0xf));
1506 while ((inb(wdc+wd_status) & WDCS_READY) == 0)
1507 ;
1508
1509 /* transfer some blocks */
1510 outb(wdc+wd_sector, sector);
1511 outb(wdc+wd_seccnt,1);
1512 outb(wdc+wd_cyl_lo, cylin);
1513 outb(wdc+wd_cyl_hi, cylin >> 8);
1514 #ifdef notdef
1515 /* lets just talk about this first...*/
1516 pg ("sdh 0%o sector %d cyl %d addr 0x%x",
1517 inb(wdc+wd_sdh), inb(wdc+wd_sector),
1518 inb(wdc+wd_cyl_hi)*256+inb(wdc+wd_cyl_lo), addr);
1519 #endif
1520 outb(wdc+wd_command, WDCC_WRITE);
1521
1522 /* Ready to send data? */
1523 while ((inb(wdc+wd_status) & WDCS_DRQ) == 0)
1524 ;
1525 if (inb(wdc+wd_status) & WDCS_ERR)
1526 return(EIO);
1527
1528 outsw (wdc+wd_data, CADDR1+((int)addr&(NBPG-1)), 256);
1529
1530 if (inb(wdc+wd_status) & WDCS_ERR)
1531 return(EIO);
1532 /* Check data request (should be done). */
1533 if (inb(wdc+wd_status) & WDCS_DRQ)
1534 return(EIO);
1535
1536 /* wait for completion */
1537 for (i=200000000; inb(wdc+wd_status) & WDCS_BUSY ; i--) {
1538 if (i < 0)
1539 return (EIO);
1540 }
1541
1542 /* error check the xfer */
1543 if (inb(wdc+wd_status) & WDCS_ERR)
1544 return(EIO);
1545
1546 if ((unsigned)addr % (1024*1024) == 0)
1547 printf("%d ", num/2048);
1548
1549 /* update block count */
1550 num--;
1551 blknum++;
1552 (int) addr += 512;
1553
1554 #if DO_NOT_KNOW_HOW
1555 /* operator aborting dump? non-blocking getc() */
1556 if (cngetc())
1557 return(EINTR);
1558 #endif
1559 }
1560 return(0);
1561 }
1562 #endif
1563
1564 /*
1565 * Internalize the bad sector table.
1566 */
1567 void
1568 bad144intern(struct disk *du)
1569 {
1570 int i;
1571 if (du->dk_flags & DKFL_BADSECT) {
1572 for (i = 0; i < 127; i++) {
1573 du->dk_badsect[i] = -1;
1574 }
1575
1576 for (i = 0; i < 126; i++) {
1577 if (du->dk_cpd.bad.bt_bad[i].bt_cyl == 0xffff) {
1578 break;
1579 } else {
1580 du->dk_badsect[i] =
1581 du->dk_cpd.bad.bt_bad[i].bt_cyl *
1582 du->dk_dd.d_secpercyl +
1583 (du->dk_cpd.bad.bt_bad[i].bt_trksec >> 8) *
1584 du->dk_dd.d_nsectors +
1585 (du->dk_cpd.bad.bt_bad[i].bt_trksec & 0x00ff);
1586 }
1587 }
1588 }
1589 }
1590
1591 /* this routine was adopted from the kernel sources */
1592 /* more efficient because b_cylin is not really as useful at this level */
1593 /* so I eliminate the processing, I believe that sorting the sectors */
1594 /* is adequate */
1595 void
1596 wddisksort(struct buf *dp, struct buf *bp)
1597 {
1598 register struct buf *ap;
1599
1600 /*
1601 * If nothing on the activity queue, then
1602 * we become the only thing.
1603 */
1604 ap = dp->b_actf;
1605 if(ap == NULL) {
1606 dp->b_actf = bp;
1607 dp->b_actl = bp;
1608 bp->av_forw = NULL;
1609 return;
1610 }
1611 while( ap->b_flags & B_XXX) {
1612 if( ap->av_forw == 0 || (ap->av_forw->b_flags & B_XXX) == 0)
1613 break;
1614 ap = ap->av_forw;
1615 }
1616 /*
1617 * If we lie after the first (currently active)
1618 * request, then we must locate the second request list
1619 * and add ourselves to it.
1620 */
1621 if (bp->b_blkno < ap->b_blkno) {
1622 while (ap->av_forw) {
1623 /*
1624 * Check for an ``inversion'' in the
1625 * normally ascending cylinder numbers,
1626 * indicating the start of the second request list.
1627 */
1628 if (ap->av_forw->b_blkno < ap->b_blkno) {
1629 /*
1630 * Search the second request list
1631 * for the first request at a larger
1632 * cylinder number. We go before that;
1633 * if there is no such request, we go at end.
1634 */
1635 do {
1636 if (bp->b_blkno < ap->av_forw->b_blkno)
1637 goto insert;
1638 ap = ap->av_forw;
1639 } while (ap->av_forw);
1640 goto insert; /* after last */
1641 }
1642 ap = ap->av_forw;
1643 }
1644 /*
1645 * No inversions... we will go after the last, and
1646 * be the first request in the second request list.
1647 */
1648 goto insert;
1649 }
1650 /*
1651 * Request is at/after the current request...
1652 * sort in the first request list.
1653 */
1654 while (ap->av_forw) {
1655 /*
1656 * We want to go after the current request
1657 * if there is an inversion after it (i.e. it is
1658 * the end of the first request list), or if
1659 * the next request is a larger cylinder than our request.
1660 */
1661 if (ap->av_forw->b_blkno < ap->b_blkno ||
1662 bp->b_blkno < ap->av_forw->b_blkno )
1663 goto insert;
1664 ap = ap->av_forw;
1665 }
1666 /*
1667 * Neither a second list nor a larger
1668 * request... we go at the end of the first list,
1669 * which is the same as the end of the whole schebang.
1670 */
1671 insert:
1672 bp->av_forw = ap->av_forw;
1673 ap->av_forw = bp;
1674 if (ap == dp->b_actl)
1675 dp->b_actl = bp;
1676 }
1677
1678 wdreset(ctrlr, wdc, err)
1679 int ctrlr;
1680 {
1681 int stat, timeout;
1682
1683 if(err)
1684 printf("wdc%d: busy too long, resetting\n", ctrlr);
1685
1686 /* reset the device */
1687 outb(wdc+wd_ctlr, (WDCTL_RST|WDCTL_IDS));
1688 DELAY(1000);
1689 outb(wdc+wd_ctlr, WDCTL_4BIT);
1690
1691 for (timeout=0; (stat=inb(wdc+wd_status)) & WDCS_BUSY; ) {
1692 DELAY(WDCDELAY);
1693 if(++timeout > WDCNDELAY) {
1694 printf("wdc%d: failed to reset controller\n", ctrlr);
1695 break;
1696 }
1697 }
1698 #ifdef WDCNDELAY_DEBUG
1699 if(timeout>WDCNDELAY_DEBUG)
1700 printf("wdc%d: timeout took %dus\n", ctrlr, WDCDELAY * timeout);
1701 #endif
1702 }
1703