1 /* ts.c 4.13 81/05/05 */ 2 3 #include "ts.h" 4 #include "te.h" 5 #if NTS > 0 6 #if TSDEBUG 7 #define printd if(tsdebug)printf 8 int tsdebug; 9 #endif 10 /* 11 * TS11 tape driver 12 * 13 * TODO: 14 * test driver with more than one controller 15 * test reset code 16 * test dump code 17 * test rewinds without hanging in driver 18 * what happens if you offline tape during rewind? 19 * test using file system on tape 20 */ 21 #include "../h/param.h" 22 #include "../h/systm.h" 23 #include "../h/buf.h" 24 #include "../h/dir.h" 25 #include "../h/conf.h" 26 #include "../h/user.h" 27 #include "../h/file.h" 28 #include "../h/map.h" 29 #include "../h/pte.h" 30 #include "../h/vm.h" 31 #include "../h/ubareg.h" 32 #include "../h/ubavar.h" 33 #include "../h/mtio.h" 34 #include "../h/ioctl.h" 35 #include "../h/cmap.h" 36 #include "../h/cpu.h" 37 38 #include "../h/tsreg.h" 39 40 /* 41 * There is a ctsbuf per tape controller. 42 * It is used as the token to pass to the internal routines 43 * to execute tape ioctls. 44 * In particular, when the tape is rewinding on close we release 45 * the user process but any further attempts to use the tape drive 46 * before the rewind completes will hang waiting for ctsbuf. 47 */ 48 struct buf ctsbuf[NTS]; 49 50 /* 51 * Raw tape operations use rtsbuf. The driver 52 * notices when rtsbuf is being used and allows the user 53 * program to continue after errors and read records 54 * not of the standard length (BSIZE). 55 */ 56 struct buf rtsbuf[NTS]; 57 58 /* 59 * Driver unibus interface routines and variables. 60 */ 61 int tsprobe(), tsslave(), tsattach(), tsdgo(), tsintr(); 62 struct uba_ctlr *tsminfo[NTS]; 63 struct uba_device *tsdinfo[NTS]; 64 struct buf tsbuf[NTS]; 65 u_short tsstd[] = { 0772520, 0 }; 66 /*** PROBABLY DON'T NEED ALL THESE SINCE CONTROLLER == DRIVE ***/ 67 struct uba_driver zsdriver = 68 { tsprobe, tsslave, tsattach, tsdgo, tsstd, "ts", tsdinfo, "zs", tsminfo, 0 }; 69 70 /* bits in minor device */ 71 #define TSUNIT(dev) (minor(dev)&03) 72 #define T_NOREWIND 04 73 74 #define INF (daddr_t)1000000L 75 76 /* 77 * Software state per tape transport. 78 * Also contains hardware state in message packets. 79 * 80 * 1. A tape drive is a unique-open device; we refuse opens when it is already. 81 * 2. We keep track of the current position on a block tape and seek 82 * before operations by forward/back spacing if necessary. 83 * 3. We remember if the last operation was a write on a tape, so if a tape 84 * is open read write and the last thing done is a write we can 85 * write a standard end of tape mark (two eofs). 86 * 4. We remember the status registers after the last command, using 87 * then internally and returning them to the SENSE ioctl. 88 */ 89 struct ts_softc { 90 char sc_openf; /* lock against multiple opens */ 91 char sc_lastiow; /* last op was a write */ 92 short sc_resid; /* copy of last bc */ 93 daddr_t sc_blkno; /* block number, for block device tape */ 94 daddr_t sc_nxrec; /* position of end of tape, if known */ 95 struct ts_cmd sc_cmd; /* the command packet - ADDR MUST BE 0 MOD 4 */ 96 struct ts_sts sc_sts; /* status packet, for returned status */ 97 struct ts_char sc_char; /* characteristics packet */ 98 u_short sc_uba; /* Unibus addr of cmd pkt for tsdb */ 99 } ts_softc[NTS]; 100 101 struct ts_softc *ts_ubaddr; /* Unibus address of ts_softc */ 102 103 /* 104 * States for um->um_tab.b_active, the per controller state flag. 105 * This is used to sequence control in the driver. 106 */ 107 #define SSEEK 1 /* seeking */ 108 #define SIO 2 /* doing seq i/o */ 109 #define SCOM 3 /* sending control command */ 110 #define SREW 4 /* sending a drive rewind */ 111 112 #if NTM > 0 113 /* kludge... see tm.c */ 114 extern havetm; 115 #endif 116 /* 117 * Determine if there is a controller for 118 * a ts at address reg. Our goal is to make the 119 * device interrupt. 120 */ 121 tsprobe(reg) 122 caddr_t reg; 123 { 124 register int br, cvec; /* must be r11,r10; value-result */ 125 126 #ifdef lint 127 br = 0; cvec = br; br = cvec; 128 #endif 129 /****************/ 130 /* */ 131 /* K L U D G E */ 132 /* */ 133 /****************/ 134 135 #if NTM > 0 136 if (havetm) 137 return (0); 138 #endif 139 /* IT'S TOO HARD TO MAKE THIS THING INTERRUPT 140 JUST TO FIND ITS VECTOR */ 141 cvec = 0224; 142 br = 0x15; 143 } 144 145 /* 146 * TS11 only supports one drive per controller; 147 * check for ui_slave == 0. 148 * 149 * DO WE REALLY NEED THIS ROUTINE??? 150 */ 151 /*ARGSUSED*/ 152 tsslave(ui, reg) 153 struct uba_device *ui; 154 caddr_t reg; 155 { 156 157 if (ui->ui_slave) /* non-zero slave not allowed */ 158 return(0); 159 return (1); 160 } 161 162 /* 163 * Record attachment of the unit to the controller. 164 * 165 * SHOULD THIS ROUTINE DO ANYTHING??? 166 */ 167 /*ARGSUSED*/ 168 tsattach(ui) 169 struct uba_device *ui; 170 { 171 172 } 173 174 /* 175 * Open the device. Tapes are unique open 176 * devices, so we refuse if it is already open. 177 * We also check that a tape is available, and 178 * don't block waiting here; if you want to wait 179 * for a tape you should timeout in user code. 180 */ 181 tsopen(dev, flag) 182 dev_t dev; 183 int flag; 184 { 185 register int tsunit; 186 register struct uba_device *ui; 187 register struct ts_softc *sc; 188 189 tsunit = TSUNIT(dev); 190 if (tsunit>=NTS || (sc = &ts_softc[tsunit])->sc_openf || 191 (ui = tsdinfo[tsunit]) == 0 || ui->ui_alive == 0) { 192 u.u_error = ENXIO; 193 return; 194 } 195 if (tsinit(tsunit)) { 196 u.u_error = ENXIO; 197 #ifdef TSDEBUG 198 printd("init failed\n"); 199 #endif 200 return; 201 } 202 #ifdef TSDEBUG 203 printd("init ok\n"); 204 #endif 205 tscommand(dev, TS_SENSE, 1); 206 #ifdef TSDEBUG 207 printd("sense xs0 %o\n", sc->sc_sts.s_xs0); 208 #endif 209 if ((sc->sc_sts.s_xs0&TS_ONL) == 0 || ((flag&(FREAD|FWRITE)) == 210 FWRITE && (sc->sc_sts.s_xs0&TS_WLK))) { 211 /* 212 * Not online or write locked. 213 */ 214 u.u_error = EIO; 215 return; 216 } 217 sc->sc_openf = 1; 218 sc->sc_blkno = (daddr_t)0; 219 sc->sc_nxrec = INF; 220 sc->sc_lastiow = 0; 221 } 222 223 /* 224 * Close tape device. 225 * 226 * If tape was open for writing or last operation was 227 * a write, then write two EOF's and backspace over the last one. 228 * Unless this is a non-rewinding special file, rewind the tape. 229 * Make the tape available to others. 230 */ 231 tsclose(dev, flag) 232 register dev_t dev; 233 register flag; 234 { 235 register struct ts_softc *sc = &ts_softc[TSUNIT(dev)]; 236 237 if (flag == FWRITE || (flag&FWRITE) && sc->sc_lastiow) { 238 tscommand(dev, TS_WEOF, 1); 239 tscommand(dev, TS_WEOF, 1); 240 tscommand(dev, TS_SREV, 1); 241 } 242 if ((minor(dev)&T_NOREWIND) == 0) 243 /* 244 * 0 count means don't hang waiting for rewind complete 245 * rather ctsbuf stays busy until the operation completes 246 * preventing further opens from completing by 247 * preventing a TS_SENSE from completing. 248 */ 249 tscommand(dev, TS_REW, 0); 250 sc->sc_openf = 0; 251 } 252 253 /* 254 * Initialize the TS11. Set up Unibus mapping for command 255 * packets and set device characteristics. 256 */ 257 tsinit(unit) 258 register int unit; 259 { 260 register struct ts_softc *sc = &ts_softc[unit]; 261 register struct uba_ctlr *um = tsminfo[unit]; 262 register struct device *addr = (struct device *)um->um_addr; 263 register int i; 264 265 /* 266 * Map the command and message packets into Unibus 267 * address space. We do all the command and message 268 * packets at once to minimize the amount of Unibus 269 * mapping necessary. 270 */ 271 if (ts_ubaddr == 0) { 272 ctsbuf[unit].b_un.b_addr = (caddr_t)ts_softc; 273 ctsbuf[unit].b_bcount = sizeof(ts_softc); 274 i = ubasetup(um->um_ubanum, &ctsbuf[unit], 0); 275 i &= 0777777; 276 ts_ubaddr = (struct ts_softc *)i; 277 /* MAKE SURE WE DON'T GET UNIBUS ADDRESS ZERO */ 278 if (ts_ubaddr == 0) 279 printf("ts%d: zero ubaddr\n", unit); 280 } 281 /* 282 * Now initialize the TS11 controller. 283 * Set the characteristics. 284 */ 285 if (addr->tssr & TS_NBA) { 286 addr->tssr = 0; /* subsystem initialize */ 287 tswait(addr); 288 i = (int)&ts_ubaddr[unit].sc_cmd; /* Unibus addr of cmd */ 289 if (i&3) { 290 printf("addr mod 4 != 0\n"); 291 return(1); 292 } 293 sc->sc_uba = (u_short)(i + ((i>>16)&3)); 294 sc->sc_char.char_addr = (int)&ts_ubaddr[unit].sc_sts; 295 sc->sc_char.char_size = sizeof(struct ts_sts); 296 sc->sc_char.char_mode = TS_ESS; 297 sc->sc_cmd.c_cmd = TS_ACK | TS_SETCHR; 298 i = (int)&ts_ubaddr[unit].sc_char; 299 sc->sc_cmd.c_loba = i; 300 sc->sc_cmd.c_hiba = (i>>16)&3; 301 sc->sc_cmd.c_size = sizeof(struct ts_char); 302 addr->tsdb = sc->sc_uba; 303 tswait(addr); 304 /* 305 printd("%o %o %o %o %o %o %o %o\n", addr->tssr, sc->sc_sts.s_sts, sc->sc_sts.s_len, sc->sc_sts.s_rbpcr, sc->sc_sts.s_xs0, sc->sc_sts.s_xs1,sc->sc_sts.s_xs1,sc->sc_sts.s_xs2,sc->sc_sts.s_xs3); 306 */ 307 if (addr->tssr & TS_NBA) 308 return(1); 309 } 310 return(0); 311 } 312 313 /* 314 * Execute a command on the tape drive 315 * a specified number of times. 316 */ 317 tscommand(dev, com, count) 318 dev_t dev; 319 int com, count; 320 { 321 register struct buf *bp; 322 323 bp = &ctsbuf[TSUNIT(dev)]; 324 (void) spl5(); 325 while (bp->b_flags&B_BUSY) { 326 /* 327 * This special check is because B_BUSY never 328 * gets cleared in the non-waiting rewind case. 329 */ 330 if (bp->b_repcnt == 0 && (bp->b_flags&B_DONE)) 331 break; 332 bp->b_flags |= B_WANTED; 333 sleep((caddr_t)bp, PRIBIO); 334 } 335 bp->b_flags = B_BUSY|B_READ; 336 (void) spl0(); 337 #ifdef TSDEBUG 338 printd("command %o dev %x count %d\n", com, dev, count); 339 #endif 340 bp->b_dev = dev; 341 bp->b_repcnt = count; 342 bp->b_command = com; 343 bp->b_blkno = 0; 344 tsstrategy(bp); 345 /* 346 * In case of rewind from close, don't wait. 347 * This is the only case where count can be 0. 348 */ 349 if (count == 0) 350 return; 351 iowait(bp); 352 if (bp->b_flags&B_WANTED) 353 wakeup((caddr_t)bp); 354 bp->b_flags &= B_ERROR; 355 } 356 357 /* 358 * Queue a tape operation. 359 */ 360 tsstrategy(bp) 361 register struct buf *bp; 362 { 363 int tsunit = TSUNIT(bp->b_dev); 364 register struct uba_ctlr *um; 365 register struct buf *dp; 366 367 /* 368 * Put transfer at end of controller queue 369 */ 370 bp->av_forw = NULL; 371 um = tsdinfo[tsunit]->ui_mi; 372 dp = &tsbuf[tsunit]; 373 (void) spl5(); 374 if (dp->b_actf == NULL) 375 dp->b_actf = bp; 376 else 377 dp->b_actl->av_forw = bp; 378 dp->b_actl = bp; 379 um->um_tab.b_actf = um->um_tab.b_actl = dp; 380 /* 381 * If the controller is not busy, get 382 * it going. 383 */ 384 if (um->um_tab.b_active == 0) 385 tsstart(um); 386 (void) spl0(); 387 } 388 389 /* 390 * Start activity on a ts controller. 391 */ 392 tsstart(um) 393 register struct uba_ctlr *um; 394 { 395 register struct buf *bp; 396 register struct device *addr = (struct device *)um->um_addr; 397 register struct ts_softc *sc; 398 register struct ts_cmd *tc; 399 register struct uba_device *ui; 400 int tsunit, cmd; 401 daddr_t blkno; 402 403 /* 404 * Start the controller if there is something for it to do. 405 */ 406 loop: 407 if ((bp = um->um_tab.b_actf->b_actf) == NULL) 408 return; 409 tsunit = TSUNIT(bp->b_dev); 410 ui = tsdinfo[tsunit]; 411 sc = &ts_softc[tsunit]; 412 tc = &sc->sc_cmd; 413 /* 414 * Default is that last command was NOT a write command; 415 * if we do a write command we will notice this in tsintr(). 416 */ 417 sc->sc_lastiow = 0; 418 if (sc->sc_openf < 0 || (addr->tssr&TS_OFL)) { 419 /* 420 * Have had a hard error on a non-raw tape 421 * or the tape unit is now unavailable 422 * (e.g. taken off line). 423 */ 424 bp->b_flags |= B_ERROR; 425 goto next; 426 } 427 if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) { 428 /* 429 * Execute control operation with the specified count. 430 */ 431 um->um_tab.b_active = 432 bp->b_command == TS_REW ? SREW : SCOM; 433 tc->c_repcnt = bp->b_repcnt; 434 #ifdef TSDEBUG 435 printd("strat: do cmd\n"); 436 #endif 437 goto dobpcmd; 438 } 439 /* 440 * The following checks handle boundary cases for operation 441 * on non-raw tapes. On raw tapes the initialization of 442 * sc->sc_nxrec by tsphys causes them to be skipped normally 443 * (except in the case of retries). 444 */ 445 if (dbtofsb(bp->b_blkno) > sc->sc_nxrec) { 446 /* 447 * Can't read past known end-of-file. 448 */ 449 bp->b_flags |= B_ERROR; 450 bp->b_error = ENXIO; 451 goto next; 452 } 453 if (dbtofsb(bp->b_blkno) == sc->sc_nxrec && 454 bp->b_flags&B_READ) { 455 /* 456 * Reading at end of file returns 0 bytes. 457 */ 458 bp->b_resid = bp->b_bcount; 459 clrbuf(bp); 460 goto next; 461 } 462 if ((bp->b_flags&B_READ) == 0) 463 /* 464 * Writing sets EOF 465 */ 466 sc->sc_nxrec = dbtofsb(bp->b_blkno) + 1; 467 /* 468 * If the data transfer command is in the correct place, 469 * set up all the registers except the csr, and give 470 * control over to the UNIBUS adapter routines, to 471 * wait for resources to start the i/o. 472 */ 473 if ((blkno = sc->sc_blkno) == dbtofsb(bp->b_blkno)) { 474 tc->c_size = bp->b_bcount; 475 if ((bp->b_flags&B_READ) == 0) 476 cmd = TS_WCOM; 477 else 478 cmd = TS_RCOM; 479 if (um->um_tab.b_errcnt) 480 cmd |= TS_RETRY; 481 um->um_tab.b_active = SIO; 482 tc->c_cmd = TS_ACK | TS_CVC | TS_IE | cmd; 483 #ifdef TSDEBUG 484 printd("r/w %o size %d\n", tc->c_cmd, tc->c_size); 485 #endif 486 (void) ubago(ui); 487 return; 488 } 489 /* 490 * Tape positioned incorrectly; 491 * set to seek forwards or backwards to the correct spot. 492 * This happens for raw tapes only on error retries. 493 */ 494 um->um_tab.b_active = SSEEK; 495 #ifdef TSDEBUG 496 printd("seek blkno %d b_blkno %d\n", blkno, bp->b_blkno); 497 #endif 498 if (blkno < dbtofsb(bp->b_blkno)) { 499 bp->b_command = TS_SFORW; 500 tc->c_repcnt = dbtofsb(bp->b_blkno) - blkno; 501 } else { 502 bp->b_command = TS_SREV; 503 tc->c_repcnt = blkno - dbtofsb(bp->b_blkno); 504 } 505 dobpcmd: 506 /* 507 * Do the command in bp. 508 */ 509 tc->c_cmd = TS_ACK | TS_CVC | TS_IE | bp->b_command; 510 addr->tsdb = sc->sc_uba; 511 return; 512 513 next: 514 /* 515 * Done with this operation due to error or 516 * the fact that it doesn't do anything. 517 * Release UBA resources (if any), dequeue 518 * the transfer and continue processing this slave. 519 */ 520 if (um->um_ubinfo) 521 ubadone(um); 522 um->um_tab.b_errcnt = 0; 523 um->um_tab.b_actf->b_actf = bp->av_forw; 524 iodone(bp); 525 goto loop; 526 } 527 528 /* 529 * The UNIBUS resources we needed have been 530 * allocated to us; start the device. 531 */ 532 tsdgo(um) 533 register struct uba_ctlr *um; 534 { 535 register struct device *addr = (struct device *)um->um_addr; 536 register struct ts_softc *sc = &ts_softc[um->um_ctlr]; 537 register int i; 538 539 i = um->um_ubinfo & 0777777; 540 #ifdef TSDEBUG 541 printd("dgo addr %o\n", i); 542 #endif 543 sc->sc_cmd.c_loba = i; 544 sc->sc_cmd.c_hiba = (i>>16)&3; 545 addr->tsdb = sc->sc_uba; 546 } 547 548 /* 549 * Ts interrupt routine. 550 */ 551 /*ARGSUSED*/ 552 tsintr(ts11) 553 int ts11; 554 { 555 register struct buf *bp; 556 register struct uba_ctlr *um = tsminfo[ts11]; 557 register struct device *addr; 558 register struct ts_softc *sc; 559 int tsunit; 560 register state; 561 562 #ifdef TSDEBUG 563 printd("intr\n"); 564 #endif 565 if ((bp = um->um_tab.b_actf->b_actf) == NULL) 566 return; 567 tsunit = TSUNIT(bp->b_dev); 568 addr = (struct device *)tsdinfo[tsunit]->ui_addr; 569 /* 570 * If last command was a rewind, and tape is still 571 * rewinding, wait for the rewind complete interrupt. 572 * 573 * SHOULD NEVER GET AN INTERRUPT IN THIS STATE. 574 */ 575 if (um->um_tab.b_active == SREW) { 576 um->um_tab.b_active = SCOM; 577 if ((addr->tssr&TS_SSR) == 0) 578 return; 579 } 580 /* 581 * An operation completed... record status 582 */ 583 #ifdef TSDEBUG 584 printd(" ok1\n"); 585 #endif 586 sc = &ts_softc[tsunit]; 587 if ((bp->b_flags & B_READ) == 0) 588 sc->sc_lastiow = 1; 589 state = um->um_tab.b_active; 590 um->um_tab.b_active = 0; 591 /* 592 * Check for errors. 593 */ 594 if (addr->tssr&TS_SC) { 595 switch (addr->tssr & TS_TC) { 596 case TS_UNREC: /* unrecoverable */ 597 case TS_FATAL: /* fatal error */ 598 case TS_ATTN: /* attention (shouldn't happen) */ 599 case TS_RECNM: /* recoverable, no motion */ 600 break; 601 602 case TS_SUCC: /* success termination */ 603 printf("ts%d: success\n", TSUNIT(minor(bp->b_dev))); 604 goto ignoreerr; 605 606 case TS_ALERT: /* tape status alert */ 607 /* 608 * If we hit the end of the tape file, 609 * update our position. 610 */ 611 if (sc->sc_sts.s_xs0 & (TS_TMK|TS_EOT)) { 612 tsseteof(bp); /* set blkno and nxrec */ 613 state = SCOM; /* force completion */ 614 /* 615 * Stuff bc so it will be unstuffed correctly 616 * later to get resid. 617 */ 618 sc->sc_sts.s_rbpcr = bp->b_bcount; 619 goto opdone; 620 } 621 /* 622 * If we were reading raw tape and the record was too long 623 * or too short, then we don't consider this an error. 624 */ 625 if (bp == &rtsbuf[TSUNIT(bp->b_dev)] && (bp->b_flags&B_READ) && 626 sc->sc_sts.s_xs0&(TS_RLS|TS_RLL)) 627 goto ignoreerr; 628 case TS_RECOV: /* recoverable, tape moved */ 629 /* 630 * If this was an i/o operation retry up to 8 times. 631 */ 632 if (state==SIO) { 633 if (++um->um_tab.b_errcnt < 7) { 634 ubadone(um); 635 goto opcont; 636 } else 637 sc->sc_blkno++; 638 } else { 639 /* 640 * Non-i/o errors on non-raw tape 641 * cause it to close. 642 */ 643 if (sc->sc_openf>0 && bp != &rtsbuf[TSUNIT(bp->b_dev)]) 644 sc->sc_openf = -1; 645 } 646 break; 647 648 case TS_REJECT: /* function reject */ 649 if (state == SIO && sc->sc_sts.s_xs0 & TS_WLE) 650 printf("ts%d: write locked\n", TSUNIT(bp->b_dev)); 651 if ((sc->sc_sts.s_xs0 & TS_ONL) == 0) 652 printf("ts%d: offline\n", TSUNIT(bp->b_dev)); 653 break; 654 } 655 /* 656 * Couldn't recover error 657 */ 658 printf("ts%d: hard error bn%d xs0=%b", TSUNIT(bp->b_dev), 659 bp->b_blkno, sc->sc_sts.s_xs0, TSXS0_BITS); 660 if (sc->sc_sts.s_xs1) 661 printf(" xs1=%b", sc->sc_sts.s_xs1, TSXS1_BITS); 662 if (sc->sc_sts.s_xs2) 663 printf(" xs2=%b", sc->sc_sts.s_xs2, TSXS2_BITS); 664 if (sc->sc_sts.s_xs3) 665 printf(" xs3=%b", sc->sc_sts.s_xs3, TSXS3_BITS); 666 printf("\n"); 667 bp->b_flags |= B_ERROR; 668 goto opdone; 669 } 670 /* 671 * Advance tape control FSM. 672 */ 673 ignoreerr: 674 switch (state) { 675 676 case SIO: 677 /* 678 * Read/write increments tape block number 679 */ 680 sc->sc_blkno++; 681 goto opdone; 682 683 case SCOM: 684 /* 685 * For forward/backward space record update current position. 686 */ 687 if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) 688 switch (bp->b_command) { 689 690 case TS_SFORW: 691 sc->sc_blkno += bp->b_repcnt; 692 break; 693 694 case TS_SREV: 695 sc->sc_blkno -= bp->b_repcnt; 696 break; 697 } 698 goto opdone; 699 700 case SSEEK: 701 sc->sc_blkno = dbtofsb(bp->b_blkno); 702 goto opcont; 703 704 default: 705 panic("tsintr"); 706 } 707 opdone: 708 /* 709 * Reset error count and remove 710 * from device queue. 711 */ 712 um->um_tab.b_errcnt = 0; 713 um->um_tab.b_actf->b_actf = bp->av_forw; 714 bp->b_resid = sc->sc_sts.s_rbpcr; 715 ubadone(um); 716 #ifdef TSDEBUG 717 printd(" iodone\n"); 718 #endif 719 iodone(bp); 720 if (um->um_tab.b_actf->b_actf == 0) 721 return; 722 opcont: 723 tsstart(um); 724 } 725 726 tsseteof(bp) 727 register struct buf *bp; 728 { 729 register int tsunit = TSUNIT(bp->b_dev); 730 register struct ts_softc *sc = &ts_softc[tsunit]; 731 732 if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) { 733 if (sc->sc_blkno > dbtofsb(bp->b_blkno)) { 734 /* reversing */ 735 sc->sc_nxrec = dbtofsb(bp->b_blkno) - sc->sc_sts.s_rbpcr; 736 sc->sc_blkno = sc->sc_nxrec; 737 } else { 738 /* spacing forward */ 739 sc->sc_blkno = dbtofsb(bp->b_blkno) + sc->sc_sts.s_rbpcr; 740 sc->sc_nxrec = sc->sc_blkno - 1; 741 } 742 return; 743 } 744 /* eof on read */ 745 sc->sc_nxrec = dbtofsb(bp->b_blkno); 746 } 747 748 tsread(dev) 749 dev_t dev; 750 { 751 752 tsphys(dev); 753 if (u.u_error) 754 return; 755 physio(tsstrategy, &rtsbuf[TSUNIT(dev)], dev, B_READ, minphys); 756 } 757 758 tswrite(dev) 759 dev_t dev; 760 { 761 762 tsphys(dev); 763 if (u.u_error) 764 return; 765 physio(tsstrategy, &rtsbuf[TSUNIT(dev)], dev, B_WRITE, minphys); 766 } 767 768 /* 769 * Check that a raw device exists. 770 * If it does, set up sc_blkno and sc_nxrec 771 * so that the tape will appear positioned correctly. 772 */ 773 tsphys(dev) 774 dev_t dev; 775 { 776 register int tsunit = TSUNIT(dev); 777 register daddr_t a; 778 register struct ts_softc *sc; 779 register struct uba_device *ui; 780 781 if (tsunit >= NTS || (ui=tsdinfo[tsunit]) == 0 || ui->ui_alive == 0) { 782 u.u_error = ENXIO; 783 return; 784 } 785 sc = &ts_softc[tsunit]; 786 a = dbtofsb(u.u_offset >> 9); 787 sc->sc_blkno = a; 788 sc->sc_nxrec = a + 1; 789 } 790 791 tsreset(uban) 792 int uban; 793 { 794 register struct uba_ctlr *um; 795 register ts11; 796 register struct buf *dp; 797 798 for (ts11 = 0; ts11 < NTS; ts11++) { 799 if ((um = tsminfo[ts11]) == 0 || um->um_alive == 0 || 800 um->um_ubanum != uban) 801 continue; 802 printf(" ts%d", ts11); 803 um->um_tab.b_active = 0; 804 um->um_tab.b_actf = um->um_tab.b_actl = 0; 805 ts_softc[ts11].sc_openf = -1; 806 if (um->um_ubinfo) { 807 printf("<%d>", (um->um_ubinfo>>28)&0xf); 808 ubadone(um); 809 } 810 tsinit(ts11); 811 tsstart(um); 812 } 813 } 814 815 /*ARGSUSED*/ 816 tsioctl(dev, cmd, addr, flag) 817 caddr_t addr; 818 dev_t dev; 819 { 820 int tsunit = TSUNIT(dev); 821 register struct ts_softc *sc = &ts_softc[tsunit]; 822 register struct buf *bp = &ctsbuf[TSUNIT(dev)]; 823 register callcount; 824 int fcount; 825 struct mtop mtop; 826 struct mtget mtget; 827 /* we depend of the values and order of the MT codes here */ 828 static tsops[] = 829 {TS_WEOF,TS_SFORWF,TS_SREVF,TS_SFORW,TS_SREV,TS_REW,TS_OFFL,TS_SENSE}; 830 831 switch (cmd) { 832 case MTIOCTOP: /* tape operation */ 833 if (copyin((caddr_t)addr, (caddr_t)&mtop, sizeof(mtop))) { 834 u.u_error = EFAULT; 835 return; 836 } 837 switch(mtop.mt_op) { 838 case MTWEOF: 839 callcount = mtop.mt_count; 840 fcount = 1; 841 break; 842 case MTFSF: case MTBSF: 843 case MTFSR: case MTBSR: 844 callcount = 1; 845 fcount = mtop.mt_count; 846 break; 847 case MTREW: case MTOFFL: case MTNOP: 848 callcount = 1; 849 fcount = 1; 850 break; 851 default: 852 u.u_error = ENXIO; 853 return; 854 } 855 if (callcount <= 0 || fcount <= 0) { 856 u.u_error = ENXIO; 857 return; 858 } 859 while (--callcount >= 0) { 860 tscommand(dev, tsops[mtop.mt_op], fcount); 861 if ((mtop.mt_op == MTFSR || mtop.mt_op == MTBSR) && 862 bp->b_resid) { 863 u.u_error = EIO; 864 break; 865 } 866 if ((bp->b_flags&B_ERROR) || sc->sc_sts.s_xs0&TS_BOT) 867 break; 868 } 869 geterror(bp); 870 return; 871 case MTIOCGET: 872 mtget.mt_dsreg = 0; 873 mtget.mt_erreg = sc->sc_sts.s_xs0; 874 mtget.mt_resid = sc->sc_resid; 875 mtget.mt_type = MT_ISTS; 876 if (copyout((caddr_t)&mtget, addr, sizeof(mtget))) 877 u.u_error = EFAULT; 878 return; 879 default: 880 u.u_error = ENXIO; 881 } 882 } 883 884 #define DBSIZE 20 885 886 tsdump() 887 { 888 register struct uba_device *ui; 889 register struct uba_regs *up; 890 register struct device *addr; 891 int blk, num; 892 int start; 893 894 start = 0; 895 num = maxfree; 896 #define phys(a,b) ((b)((int)(a)&0x7fffffff)) 897 if (tsdinfo[0] == 0) 898 return (ENXIO); 899 ui = phys(tsdinfo[0], struct uba_device *); 900 up = phys(ui->ui_hd, struct uba_hd *)->uh_physuba; 901 ubainit(up); 902 DELAY(1000000); 903 addr = (struct device *)ui->ui_physaddr; 904 addr->tssr = 0; 905 tswait(addr); 906 while (num > 0) { 907 blk = num > DBSIZE ? DBSIZE : num; 908 tsdwrite(start, blk, addr, up); 909 start += blk; 910 num -= blk; 911 } 912 tseof(addr); 913 tseof(addr); 914 tswait(addr); 915 if (addr->tssr&TS_SC) 916 return (EIO); 917 addr->tssr = 0; 918 tswait(addr); 919 return (0); 920 } 921 922 tsdwrite(dbuf, num, addr, up) 923 register dbuf, num; 924 register struct device *addr; 925 struct uba_regs *up; 926 { 927 register struct pte *io; 928 register int npf; 929 930 tswait(addr); 931 io = up->uba_map; 932 npf = num+1; 933 while (--npf != 0) 934 *(int *)io++ = (dbuf++ | (1<<UBAMR_DPSHIFT) | UBAMR_MRV); 935 *(int *)io = 0; 936 #ifdef notyet 937 addr->tsbc = -(num*NBPG); 938 addr->tsba = 0; 939 addr->tscs = TS_WCOM | TM_GO; 940 #endif 941 } 942 943 tswait(addr) 944 register struct device *addr; 945 { 946 register s; 947 948 do 949 s = addr->tssr; 950 while ((s & TS_SSR) == 0); 951 } 952 953 tseof(addr) 954 struct device *addr; 955 { 956 957 tswait(addr); 958 #ifdef notyet 959 addr->tscs = TS_WEOF | TM_GO; 960 #endif 961 } 962 #endif 963