fix bool type errors
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1/* tm.c 4.26 81/03/09 */
2
3#include "te.h"
4#if NTM > 0
5/*
6 * TM11/TE10 tape driver
7 *
8 * TODO:
9 * test driver with more than one slave
10 * test driver with more than one controller
11 * test reset code
12 * test rewinds without hanging in driver
13 * what happens if you offline tape during rewind?
14 * test using file system on tape
15 */
16#include "../h/param.h"
17#include "../h/buf.h"
18#include "../h/dir.h"
19#include "../h/conf.h"
20#include "../h/user.h"
21#include "../h/file.h"
22#include "../h/map.h"
23#include "../h/pte.h"
24#include "../h/vm.h"
25#include "../h/ubareg.h"
26#include "../h/ubavar.h"
27#include "../h/mtio.h"
28#include "../h/ioctl.h"
29#include "../h/cmap.h"
30#include "../h/cpu.h"
31
32#include "../h/tmreg.h"
33
34/*
35 * There is a ctmbuf per tape controller.
36 * It is used as the token to pass to the internal routines
37 * to execute tape ioctls, and also acts as a lock on the slaves
38 * on the controller, since there is only one per controller.
39 * In particular, when the tape is rewinding on close we release
40 * the user process but any further attempts to use the tape drive
41 * before the rewind completes will hang waiting for ctmbuf.
42 */
43struct buf ctmbuf[NTM];
44
45/*
46 * Raw tape operations use rtmbuf. The driver
47 * notices when rtmbuf is being used and allows the user
48 * program to continue after errors and read records
49 * not of the standard length (BSIZE).
50 */
51struct buf rtmbuf[NTM];
52
53/*
54 * Driver unibus interface routines and variables.
55 */
56int tmprobe(), tmslave(), tmattach(), tmdgo(), tmintr();
57struct uba_ctlr *tmminfo[NTM];
58struct uba_device *tedinfo[NTE];
59struct buf teutab[NTE];
60short tetotm[NTE];
61u_short tmstd[] = { 0772520, 0 };
62struct uba_driver tmdriver =
63 { tmprobe, tmslave, tmattach, tmdgo, tmstd, "te", tedinfo, "tm", tmminfo, 0 };
64
65/* bits in minor device */
66#define TEUNIT(dev) (minor(dev)&03)
67#define TMUNIT(dev) (tetotm[TEUNIT(dev)])
68#define T_NOREWIND 04
69#define T_1600BPI 08
70
71#define INF (daddr_t)1000000L
72
73/*
74 * Software state per tape transport.
75 *
76 * 1. A tape drive is a unique-open device; we refuse opens when it is already.
77 * 2. We keep track of the current position on a block tape and seek
78 * before operations by forward/back spacing if necessary.
79 * 3. We remember if the last operation was a write on a tape, so if a tape
80 * is open read write and the last thing done is a write we can
81 * write a standard end of tape mark (two eofs).
82 * 4. We remember the status registers after the last command, using
83 * then internally and returning them to the SENSE ioctl.
84 * 5. We remember the last density the tape was used at. If it is
85 * not a BOT when we start using it and we are writing, we don't
86 * let the density be changed.
87 */
88struct te_softc {
89 char sc_openf; /* lock against multiple opens */
90 char sc_lastiow; /* last op was a write */
91 daddr_t sc_blkno; /* block number, for block device tape */
92 daddr_t sc_nxrec; /* position of end of tape, if known */
93 u_short sc_erreg; /* copy of last erreg */
94 u_short sc_dsreg; /* copy of last dsreg */
95 short sc_resid; /* copy of last bc */
96#ifdef unneeded
97 short sc_lastcmd; /* last command to handle direction changes */
98#endif
99 u_short sc_dens; /* prototype command with density info */
100} te_softc[NTM];
101#ifdef unneeded
102int tmgapsdcnt; /* DEBUG */
103#endif
104
105/*
106 * States for um->um_tab.b_active, the per controller state flag.
107 * This is used to sequence control in the driver.
108 */
109#define SSEEK 1 /* seeking */
110#define SIO 2 /* doing seq i/o */
111#define SCOM 3 /* sending control command */
112#define SREW 4 /* sending a drive rewind */
113
114/*
115 * Determine if there is a controller for
116 * a tm at address reg. Our goal is to make the
117 * device interrupt.
118 */
119tmprobe(reg)
120 caddr_t reg;
121{
122 register int br, cvec; /* must be r11,r10; value-result */
123
124#ifdef lint
125 br = 0; cvec = br; br = cvec;
126#endif
127 ((struct device *)reg)->tmcs = TM_IE;
128 /*
129 * If this is a tm11, it ought to have interrupted
130 * by now, if it isn't (ie: it is a ts04) then we just
131 * hope that it didn't interrupt, so autoconf will ignore it.
132 * Just in case, we will reference one
133 * of the more distant registers, and hope for a machine
134 * check, or similar disaster if this is a ts.
135 *
136 * Note: on an 11/780, badaddr will just generate
137 * a uba error for a ts; but our caller will notice that
138 * so we won't check for it.
139 */
140 if (badaddr((caddr_t)&((struct device *)reg)->tmrd, 2))
141 return (0);
142 return (1);
143}
144
145/*
146 * Due to a design flaw, we cannot ascertain if the tape
147 * exists or not unless it is on line - ie: unless a tape is
148 * mounted. This is too servere a restriction to bear,
149 * so all units are assumed to exist.
150 */
151/*ARGSUSED*/
152tmslave(ui, reg)
153 struct uba_device *ui;
154 caddr_t reg;
155{
156
157 return (1);
158}
159
160/*
161 * Record attachment of the unit to the controller.
162 */
163/*ARGSUSED*/
164tmattach(ui)
165 struct uba_device *ui;
166{
167
168 /*
169 * Tetotm is used in TMUNIT to index the ctmbuf and rtmbuf
170 * arrays given a te unit number.
171 */
172 tetotm[ui->ui_unit] = ui->ui_mi->um_ctlr;
173}
174
175/*
176 * Open the device. Tapes are unique open
177 * devices, so we refuse if it is already open.
178 * We also check that a tape is available, and
179 * don't block waiting here; if you want to wait
180 * for a tape you should timeout in user code.
181 */
182tmopen(dev, flag)
183 dev_t dev;
184 int flag;
185{
186 register int teunit;
187 register struct uba_device *ui;
188 register struct te_softc *sc;
189 int dens;
190
191 teunit = TEUNIT(dev);
192 if (teunit>=NTE || (sc = &te_softc[teunit])->sc_openf ||
193 (ui = tedinfo[teunit]) == 0 || ui->ui_alive == 0) {
194 u.u_error = ENXIO;
195 return;
196 }
197 tmcommand(dev, TM_SENSE, 1);
198 dens = TM_IE | TM_GO | (ui->ui_slave << 8);
199 if ((minor(dev) & T_1600BPI) == 0)
200 dens |= TM_D800;
201 if ((sc->sc_erreg&(TMER_SELR|TMER_TUR)) != (TMER_SELR|TMER_TUR) ||
202 (sc->sc_erreg&TMER_BOT) == 0 && (flag&FWRITE) &&
203 dens != sc->sc_dens ||
204 (flag&(FREAD|FWRITE)) == FWRITE && sc->sc_erreg&TMER_WRL) {
205 /*
206 * Not online or density switch in mid-tape or write locked.
207 */
208 u.u_error = EIO;
209 return;
210 }
211 sc->sc_openf = 1;
212 sc->sc_blkno = (daddr_t)0;
213 sc->sc_nxrec = INF;
214 sc->sc_lastiow = 0;
215 sc->sc_dens = dens;
216}
217
218/*
219 * Close tape device.
220 *
221 * If tape was open for writing or last operation was
222 * a write, then write two EOF's and backspace over the last one.
223 * Unless this is a non-rewinding special file, rewind the tape.
224 * Make the tape available to others.
225 */
226tmclose(dev, flag)
227 register dev_t dev;
228 register flag;
229{
230 register struct te_softc *sc = &te_softc[TEUNIT(dev)];
231
232 if (flag == FWRITE || (flag&FWRITE) && sc->sc_lastiow) {
233 tmcommand(dev, TM_WEOF, 1);
234 tmcommand(dev, TM_WEOF, 1);
235 tmcommand(dev, TM_SREV, 1);
236 }
237 if ((minor(dev)&T_NOREWIND) == 0)
238 /*
239 * 0 count means don't hang waiting for rewind complete
240 * rather ctmbuf stays busy until the operation completes
241 * preventing further opens from completing by
242 * preventing a TM_SENSE from completing.
243 */
244 tmcommand(dev, TM_REW, 0);
245 sc->sc_openf = 0;
246}
247
248/*
249 * Execute a command on the tape drive
250 * a specified number of times.
251 */
252tmcommand(dev, com, count)
253 dev_t dev;
254 int com, count;
255{
256 register struct buf *bp;
257
258 bp = &ctmbuf[TMUNIT(dev)];
259 (void) spl5();
260 while (bp->b_flags&B_BUSY) {
261 /*
262 * This special check is because B_BUSY never
263 * gets cleared in the non-waiting rewind case.
264 */
265 if (bp->b_command == TM_REW && bp->b_repcnt == 0 &&
266 (bp->b_flags&B_DONE))
267 break;
268 bp->b_flags |= B_WANTED;
269 sleep((caddr_t)bp, PRIBIO);
270 }
271 bp->b_flags = B_BUSY|B_READ;
272 (void) spl0();
273 bp->b_dev = dev;
274 bp->b_repcnt = -count;
275 bp->b_command = com;
276 bp->b_blkno = 0;
277 tmstrategy(bp);
278 /*
279 * In case of rewind from close, don't wait.
280 * This is the only case where count can be 0.
281 */
282 if (count == 0)
283 return;
284 iowait(bp);
285 if (bp->b_flags&B_WANTED)
286 wakeup((caddr_t)bp);
287 bp->b_flags &= B_ERROR;
288}
289
290/*
291 * Queue a tape operation.
292 */
293tmstrategy(bp)
294 register struct buf *bp;
295{
296 int teunit = TEUNIT(bp->b_dev);
297 register struct uba_ctlr *um;
298 register struct buf *dp;
299
300 /*
301 * Put transfer at end of unit queue
302 */
303 dp = &teutab[teunit];
304 bp->av_forw = NULL;
305 (void) spl5();
306 if (dp->b_actf == NULL) {
307 dp->b_actf = bp;
308 /*
309 * Transport not already active...
310 * put at end of controller queue.
311 */
312 dp->b_forw = NULL;
313 um = tedinfo[teunit]->ui_mi;
314 if (um->um_tab.b_actf == NULL)
315 um->um_tab.b_actf = dp;
316 else
317 um->um_tab.b_actl->b_forw = dp;
318 um->um_tab.b_actl = dp;
319 } else
320 dp->b_actl->av_forw = bp;
321 dp->b_actl = bp;
322 /*
323 * If the controller is not busy, get
324 * it going.
325 */
326 if (um->um_tab.b_active == 0)
327 tmstart(um);
328 (void) spl0();
329}
330
331/*
332 * Start activity on a tm controller.
333 */
334tmstart(um)
335 register struct uba_ctlr *um;
336{
337 register struct buf *bp, *dp;
338 register struct device *addr = (struct device *)um->um_addr;
339 register struct te_softc *sc;
340 register struct uba_device *ui;
341 int teunit, cmd;
342 daddr_t blkno;
343
344 /*
345 * Look for an idle transport on the controller.
346 */
347loop:
348 if ((dp = um->um_tab.b_actf) == NULL)
349 return;
350 if ((bp = dp->b_actf) == NULL) {
351 um->um_tab.b_actf = dp->b_forw;
352 goto loop;
353 }
354 teunit = TEUNIT(bp->b_dev);
355 ui = tedinfo[teunit];
356 /*
357 * Record pre-transfer status (e.g. for TM_SENSE)
358 */
359 sc = &te_softc[teunit];
360 addr = (struct device *)um->um_addr;
361 addr->tmcs = (ui->ui_slave << 8);
362 sc->sc_dsreg = addr->tmcs;
363 sc->sc_erreg = addr->tmer;
364 sc->sc_resid = addr->tmbc;
365 /*
366 * Default is that last command was NOT a write command;
367 * if we do a write command we will notice this in tmintr().
368 */
369 sc->sc_lastiow = 1;
370 if (sc->sc_openf < 0 || (addr->tmcs&TM_CUR) == 0) {
371 /*
372 * Have had a hard error on a non-raw tape
373 * or the tape unit is now unavailable
374 * (e.g. taken off line).
375 */
376 bp->b_flags |= B_ERROR;
377 goto next;
378 }
379 if (bp == &ctmbuf[TMUNIT(bp->b_dev)]) {
380 /*
381 * Execute control operation with the specified count.
382 */
383 if (bp->b_command == TM_SENSE)
384 goto next;
385 um->um_tab.b_active =
386 bp->b_command == TM_REW ? SREW : SCOM;
387 if (bp->b_command == TM_SFORW || bp->b_command == TM_SREV)
388 addr->tmbc = bp->b_repcnt;
389 goto dobpcmd;
390 }
391 /*
392 * The following checks handle boundary cases for operation
393 * on non-raw tapes. On raw tapes the initialization of
394 * sc->sc_nxrec by tmphys causes them to be skipped normally
395 * (except in the case of retries).
396 */
397 if (dbtofsb(bp->b_blkno) > sc->sc_nxrec) {
398 /*
399 * Can't read past known end-of-file.
400 */
401 bp->b_flags |= B_ERROR;
402 bp->b_error = ENXIO;
403 goto next;
404 }
405 if (dbtofsb(bp->b_blkno) == sc->sc_nxrec &&
406 bp->b_flags&B_READ) {
407 /*
408 * Reading at end of file returns 0 bytes.
409 */
410 bp->b_resid = bp->b_bcount;
411 clrbuf(bp);
412 goto next;
413 }
414 if ((bp->b_flags&B_READ) == 0)
415 /*
416 * Writing sets EOF
417 */
418 sc->sc_nxrec = dbtofsb(bp->b_blkno) + 1;
419 /*
420 * If the data transfer command is in the correct place,
421 * set up all the registers except the csr, and give
422 * control over to the UNIBUS adapter routines, to
423 * wait for resources to start the i/o.
424 */
425 if ((blkno = sc->sc_blkno) == dbtofsb(bp->b_blkno)) {
426 addr->tmbc = -bp->b_bcount;
427 if ((bp->b_flags&B_READ) == 0) {
428 if (um->um_tab.b_errcnt)
429 cmd = TM_WIRG;
430 else
431 cmd = TM_WCOM;
432 } else
433 cmd = TM_RCOM;
434 um->um_tab.b_active = SIO;
435 um->um_cmd = sc->sc_dens|cmd;
436#ifdef notdef
437 if (tmreverseop(sc->sc_lastcmd))
438 while (addr->tmer & TMER_SDWN)
439 tmgapsdcnt++;
440 sc->sc_lastcmd = TM_RCOM; /* will serve */
441#endif
442 (void) ubago(ui);
443 return;
444 }
445 /*
446 * Tape positioned incorrectly;
447 * set to seek forwards or backwards to the correct spot.
448 * This happens for raw tapes only on error retries.
449 */
450 um->um_tab.b_active = SSEEK;
451 if (blkno < dbtofsb(bp->b_blkno)) {
452 bp->b_command = TM_SFORW;
453 addr->tmbc = blkno - dbtofsb(bp->b_blkno);
454 } else {
455 bp->b_command = TM_SREV;
456 addr->tmbc = dbtofsb(bp->b_blkno) - blkno;
457 }
458dobpcmd:
459#ifdef notdef
460 /*
461 * It is strictly necessary to wait for the tape
462 * to stop before changing directions, but the TC11
463 * handles this for us.
464 */
465 if (tmreverseop(sc->sc_lastcmd) != tmreverseop(bp->b_command))
466 while (addr->tmer & TM_SDWN)
467 tmgapsdcnt++;
468 sc->sc_lastcmd = bp->b_command;
469#endif
470 /*
471 * Do the command in bp.
472 */
473 addr->tmcs = (sc->sc_dens | bp->b_command);
474 return;
475
476next:
477 /*
478 * Done with this operation due to error or
479 * the fact that it doesn't do anything.
480 * Release UBA resources (if any), dequeue
481 * the transfer and continue processing this slave.
482 */
483 if (um->um_ubinfo)
484 ubadone(um);
485 um->um_tab.b_errcnt = 0;
486 dp->b_actf = bp->av_forw;
487 iodone(bp);
488 goto loop;
489}
490
491/*
492 * The UNIBUS resources we needed have been
493 * allocated to us; start the device.
494 */
495tmdgo(um)
496 register struct uba_ctlr *um;
497{
498 register struct device *addr = (struct device *)um->um_addr;
499
500 addr->tmba = um->um_ubinfo;
501 addr->tmcs = um->um_cmd | ((um->um_ubinfo >> 12) & 0x30);
502}
503
504/*
505 * Tm interrupt routine.
506 */
507/*ARGSUSED*/
508tmintr(tm11)
509 int tm11;
510{
511 struct buf *dp;
512 register struct buf *bp;
513 register struct uba_ctlr *um = tmminfo[tm11];
514 register struct device *addr;
515 register struct te_softc *sc;
516 int teunit;
517 register state;
518
519 if ((dp = um->um_tab.b_actf) == NULL)
520 return;
521 bp = dp->b_actf;
522 teunit = TEUNIT(bp->b_dev);
523 addr = (struct device *)tedinfo[teunit]->ui_addr;
524 /*
525 * If last command was a rewind, and tape is still
526 * rewinding, wait for the rewind complete interrupt.
527 */
528 if (um->um_tab.b_active == SREW) {
529 um->um_tab.b_active = SCOM;
530 if (addr->tmer&TMER_RWS)
531 return;
532 }
533 /*
534 * An operation completed... record status
535 */
536 sc = &te_softc[teunit];
537 sc->sc_dsreg = addr->tmcs;
538 sc->sc_erreg = addr->tmer;
539 sc->sc_resid = addr->tmbc;
540 if ((bp->b_flags & B_READ) == 0)
541 sc->sc_lastiow = 1;
542 state = um->um_tab.b_active;
543 um->um_tab.b_active = 0;
544 /*
545 * Check for errors.
546 */
547 if (addr->tmcs&TM_ERR) {
548 while (addr->tmer & TMER_SDWN)
549 ; /* await settle down */
550 /*
551 * If we hit the end of the tape file, update our position.
552 */
553 if (addr->tmer&TMER_EOF) {
554 tmseteof(bp); /* set blkno and nxrec */
555 state = SCOM; /* force completion */
556 /*
557 * Stuff bc so it will be unstuffed correctly
558 * later to get resid.
559 */
560 addr->tmbc = -bp->b_bcount;
561 goto opdone;
562 }
563 /*
564 * If we were reading raw tape and the only error was that the
565 * record was too long, then we don't consider this an error.
566 */
567 if (bp == &rtmbuf[TMUNIT(bp->b_dev)] && (bp->b_flags&B_READ) &&
568 (addr->tmer&(TMER_HARD|TMER_SOFT)) == TMER_RLE)
569 goto ignoreerr;
570 /*
571 * If error is not hard, and this was an i/o operation
572 * retry up to 8 times.
573 */
574 if ((addr->tmer&TMER_HARD)==0 && state==SIO) {
575 if (++um->um_tab.b_errcnt < 7) {
576 sc->sc_blkno++;
577 ubadone(um);
578 goto opcont;
579 }
580 } else
581 /*
582 * Hard or non-i/o errors on non-raw tape
583 * cause it to close.
584 */
585 if (sc->sc_openf>0 && bp != &rtmbuf[TMUNIT(bp->b_dev)])
586 sc->sc_openf = -1;
587 /*
588 * Couldn't recover error
589 */
590 printf("te%d: hard error bn%d er=%b\n", minor(bp->b_dev)&03,
591 bp->b_blkno, sc->sc_erreg, TMER_BITS);
592 bp->b_flags |= B_ERROR;
593 goto opdone;
594 }
595 /*
596 * Advance tape control FSM.
597 */
598ignoreerr:
599 switch (state) {
600
601 case SIO:
602 /*
603 * Read/write increments tape block number
604 */
605 sc->sc_blkno++;
606 goto opdone;
607
608 case SCOM:
609 /*
610 * For forward/backward space record update current position.
611 */
612 if (bp == &ctmbuf[TMUNIT(bp->b_dev)])
613 switch (bp->b_command) {
614
615 case TM_SFORW:
616 sc->sc_blkno -= bp->b_repcnt;
617 break;
618
619 case TM_SREV:
620 sc->sc_blkno += bp->b_repcnt;
621 break;
622 }
623 goto opdone;
624
625 case SSEEK:
626 sc->sc_blkno = dbtofsb(bp->b_blkno);
627 goto opcont;
628
629 default:
630 panic("tmintr");
631 }
632opdone:
633 /*
634 * Reset error count and remove
635 * from device queue.
636 */
637 um->um_tab.b_errcnt = 0;
638 dp->b_actf = bp->av_forw;
639 bp->b_resid = -addr->tmbc;
640 ubadone(um);
641 iodone(bp);
642 /*
643 * Circulate slave to end of controller
644 * queue to give other slaves a chance.
645 */
646 um->um_tab.b_actf = dp->b_forw;
647 if (dp->b_actf) {
648 dp->b_forw = NULL;
649 if (um->um_tab.b_actf == NULL)
650 um->um_tab.b_actf = dp;
651 else
652 um->um_tab.b_actl->b_forw = dp;
653 um->um_tab.b_actl = dp;
654 }
655 if (um->um_tab.b_actf == 0)
656 return;
657opcont:
658 tmstart(um);
659}
660
661tmseteof(bp)
662 register struct buf *bp;
663{
664 register int teunit = TEUNIT(bp->b_dev);
665 register struct device *addr =
666 (struct device *)tedinfo[teunit]->ui_addr;
667 register struct te_softc *sc = &te_softc[teunit];
668
669 if (bp == &ctmbuf[TMUNIT(bp->b_dev)]) {
670 if (sc->sc_blkno > dbtofsb(bp->b_blkno)) {
671 /* reversing */
672 sc->sc_nxrec = dbtofsb(bp->b_blkno) - addr->tmbc;
673 sc->sc_blkno = sc->sc_nxrec;
674 } else {
675 /* spacing forward */
676 sc->sc_blkno = dbtofsb(bp->b_blkno) + addr->tmbc;
677 sc->sc_nxrec = sc->sc_blkno - 1;
678 }
679 return;
680 }
681 /* eof on read */
682 sc->sc_nxrec = dbtofsb(bp->b_blkno);
683}
684
685tmread(dev)
686 dev_t dev;
687{
688
689 tmphys(dev);
690 if (u.u_error)
691 return;
692 physio(tmstrategy, &rtmbuf[TMUNIT(dev)], dev, B_READ, minphys);
693}
694
695tmwrite(dev)
696 dev_t dev;
697{
698
699 tmphys(dev);
700 if (u.u_error)
701 return;
702 physio(tmstrategy, &rtmbuf[TMUNIT(dev)], dev, B_WRITE, minphys);
703}
704
705/*
706 * Check that a raw device exists.
707 * If it does, set up sc_blkno and sc_nxrec
708 * so that the tape will appear positioned correctly.
709 */
710tmphys(dev)
711 dev_t dev;
712{
713 register int teunit = TEUNIT(dev);
714 register daddr_t a;
715 register struct te_softc *sc;
716 register struct uba_device *ui;
717
718 if (teunit >= NTE || (ui=tedinfo[teunit]) == 0 || ui->ui_alive == 0) {
719 u.u_error = ENXIO;
720 return;
721 }
722 sc = &te_softc[teunit];
723 a = dbtofsb(u.u_offset >> 9);
724 sc->sc_blkno = a;
725 sc->sc_nxrec = a + 1;
726}
727
728tmreset(uban)
729 int uban;
730{
731 register struct uba_ctlr *um;
732 register tm11, teunit;
733 register struct uba_device *ui;
734 register struct buf *dp;
735
736 for (tm11 = 0; tm11 < NTM; tm11++) {
737 if ((um = tmminfo[tm11]) == 0 || um->um_alive == 0 ||
738 um->um_ubanum != uban)
739 continue;
740 printf(" tm%d", tm11);
741 um->um_tab.b_active = 0;
742 um->um_tab.b_actf = um->um_tab.b_actl = 0;
743 if (um->um_ubinfo) {
744 printf("<%d>", (um->um_ubinfo>>28)&0xf);
745 ubadone(um);
746 }
747 ((struct device *)(um->um_addr))->tmcs = TM_DCLR;
748 for (teunit = 0; teunit < NTE; teunit++) {
749 if ((ui = tedinfo[teunit]) == 0 || ui->ui_mi != um ||
750 ui->ui_alive == 0)
751 continue;
752 dp = &teutab[teunit];
753 dp->b_active = 0;
754 dp->b_forw = 0;
755 if (um->um_tab.b_actf == NULL)
756 um->um_tab.b_actf = dp;
757 else
758 um->um_tab.b_actl->b_forw = dp;
759 um->um_tab.b_actl = dp;
760 te_softc[teunit].sc_openf = -1;
761 }
762 tmstart(um);
763 }
764}
765
766/*ARGSUSED*/
767tmioctl(dev, cmd, addr, flag)
768 caddr_t addr;
769 dev_t dev;
770{
771 int teunit = TEUNIT(dev);
772 register struct te_softc *sc = &te_softc[teunit];
773 register struct buf *bp = &ctmbuf[TMUNIT(dev)];
774 register callcount;
775 int fcount;
776 struct mtop mtop;
777 struct mtget mtget;
778 /* we depend of the values and order of the MT codes here */
779 static tmops[] =
780 {TM_WEOF,TM_SFORW,TM_SREV,TM_SFORW,TM_SREV,TM_REW,TM_OFFL,TM_SENSE};
781
782 switch (cmd) {
783 case MTIOCTOP: /* tape operation */
784 if (copyin((caddr_t)addr, (caddr_t)&mtop, sizeof(mtop))) {
785 u.u_error = EFAULT;
786 return;
787 }
788 switch(mtop.mt_op) {
789 case MTWEOF:
790 callcount = mtop.mt_count;
791 fcount = 1;
792 break;
793 case MTFSF: case MTBSF:
794 callcount = mtop.mt_count;
795 fcount = INF;
796 break;
797 case MTFSR: case MTBSR:
798 callcount = 1;
799 fcount = mtop.mt_count;
800 break;
801 case MTREW: case MTOFFL: case MTNOP:
802 callcount = 1;
803 fcount = 1;
804 break;
805 default:
806 u.u_error = ENXIO;
807 return;
808 }
809 if (callcount <= 0 || fcount <= 0) {
810 u.u_error = ENXIO;
811 return;
812 }
813 while (--callcount >= 0) {
814 tmcommand(dev, tmops[mtop.mt_op], fcount);
815 if ((mtop.mt_op == MTFSR || mtop.mt_op == MTBSR) &&
816 bp->b_resid) {
817 u.u_error = EIO;
818 break;
819 }
820 if ((bp->b_flags&B_ERROR) || sc->sc_erreg&TMER_BOT)
821 break;
822 }
823 geterror(bp);
824 return;
825 case MTIOCGET:
826 mtget.mt_dsreg = sc->sc_dsreg;
827 mtget.mt_erreg = sc->sc_erreg;
828 mtget.mt_resid = sc->sc_resid;
829 if (copyout((caddr_t)&mtget, addr, sizeof(mtget)))
830 u.u_error = EFAULT;
831 return;
832 default:
833 u.u_error = ENXIO;
834 }
835}
836
837#define DBSIZE 20
838
839tmdump()
840{
841 register struct uba_device *ui;
842 register struct uba_regs *up;
843 register struct device *addr;
844 int blk, num;
845 int start;
846
847 start = 0;
848 num = maxfree;
849#define phys(a,b) ((b)((int)(a)&0x7fffffff))
850 if (tedinfo[0] == 0)
851 return (ENXIO);
852 ui = phys(tedinfo[0], struct uba_device *);
853 up = phys(ui->ui_hd, struct uba_hd *)->uh_physuba;
854#if VAX780
855 if (cpu == VAX_780)
856 ubainit(up);
857#endif
858 DELAY(1000000);
859 addr = (struct device *)ui->ui_physaddr;
860 tmwait(addr);
861 addr->tmcs = TM_DCLR | TM_GO;
862 while (num > 0) {
863 blk = num > DBSIZE ? DBSIZE : num;
864 tmdwrite(start, blk, addr, up);
865 start += blk;
866 num -= blk;
867 }
868 tmeof(addr);
869 tmeof(addr);
870 tmwait(addr);
871 if (addr->tmcs&TM_ERR)
872 return (EIO);
873 addr->tmcs = TM_REW | TM_GO;
874 tmwait(addr);
875 return (0);
876}
877
878tmdwrite(dbuf, num, addr, up)
879 register dbuf, num;
880 register struct device *addr;
881 struct uba_regs *up;
882{
883 register struct pte *io;
884 register int npf;
885
886 tmwait(addr);
887 io = up->uba_map;
888 npf = num+1;
889 while (--npf != 0)
890 *(int *)io++ = (dbuf++ | (1<<UBAMR_DPSHIFT) | UBAMR_MRV);
891 *(int *)io = 0;
892 addr->tmbc = -(num*NBPG);
893 addr->tmba = 0;
894 addr->tmcs = TM_WCOM | TM_GO;
895}
896
897tmwait(addr)
898 register struct device *addr;
899{
900 register s;
901
902 do
903 s = addr->tmcs;
904 while ((s & TM_CUR) == 0);
905}
906
907tmeof(addr)
908 struct device *addr;
909{
910
911 tmwait(addr);
912 addr->tmcs = TM_WEOF | TM_GO;
913}
914#endif