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1.1 ! root 1: /* tm.c 4.40 81/07/09 */ ! 2: ! 3: #include "te.h" ! 4: #include "ts.h" ! 5: #if NTM > 0 ! 6: /* ! 7: * TM11/TE10 tape driver ! 8: * ! 9: * TODO: ! 10: * test driver with more than one slave ! 11: * test driver with more than one controller ! 12: * test reset code ! 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/systm.h" ! 18: #include "../h/buf.h" ! 19: #include "../h/dir.h" ! 20: #include "../h/conf.h" ! 21: #include "../h/user.h" ! 22: #include "../h/file.h" ! 23: #include "../h/map.h" ! 24: #include "../h/pte.h" ! 25: #include "../h/vm.h" ! 26: #include "../h/ubareg.h" ! 27: #include "../h/ubavar.h" ! 28: #include "../h/mtio.h" ! 29: #include "../h/ioctl.h" ! 30: #include "../h/cmap.h" ! 31: #include "../h/cpu.h" ! 32: ! 33: #include "../h/tmreg.h" ! 34: ! 35: /* ! 36: * There is a ctmbuf per tape controller. ! 37: * It is used as the token to pass to the internal routines ! 38: * to execute tape ioctls, and also acts as a lock on the slaves ! 39: * on the controller, since there is only one per controller. ! 40: * In particular, when the tape is rewinding on close we release ! 41: * the user process but any further attempts to use the tape drive ! 42: * before the rewind completes will hang waiting for ctmbuf. ! 43: */ ! 44: struct buf ctmbuf[NTM]; ! 45: ! 46: /* ! 47: * Raw tape operations use rtmbuf. The driver ! 48: * notices when rtmbuf is being used and allows the user ! 49: * program to continue after errors and read records ! 50: * not of the standard length (BSIZE). ! 51: */ ! 52: struct buf rtmbuf[NTM]; ! 53: ! 54: /* ! 55: * Driver unibus interface routines and variables. ! 56: */ ! 57: int tmprobe(), tmslave(), tmattach(), tmdgo(), tmintr(); ! 58: struct uba_ctlr *tmminfo[NTM]; ! 59: struct uba_device *tedinfo[NTE]; ! 60: struct buf teutab[NTE]; ! 61: short tetotm[NTE]; ! 62: u_short tmstd[] = { 0772520, 0 }; ! 63: struct uba_driver tmdriver = ! 64: { tmprobe, tmslave, tmattach, tmdgo, tmstd, "te", tedinfo, "tm", tmminfo, 0 }; ! 65: ! 66: /* bits in minor device */ ! 67: #define TEUNIT(dev) (minor(dev)&03) ! 68: #define TMUNIT(dev) (tetotm[TEUNIT(dev)]) ! 69: #define T_NOREWIND 04 ! 70: #define T_1600BPI 08 ! 71: ! 72: #define INF (daddr_t)1000000L ! 73: ! 74: /* ! 75: * Software state per tape transport. ! 76: * ! 77: * 1. A tape drive is a unique-open device; we refuse opens when it is already. ! 78: * 2. We keep track of the current position on a block tape and seek ! 79: * before operations by forward/back spacing if necessary. ! 80: * 3. We remember if the last operation was a write on a tape, so if a tape ! 81: * is open read write and the last thing done is a write we can ! 82: * write a standard end of tape mark (two eofs). ! 83: * 4. We remember the status registers after the last command, using ! 84: * then internally and returning them to the SENSE ioctl. ! 85: * 5. We remember the last density the tape was used at. If it is ! 86: * not a BOT when we start using it and we are writing, we don't ! 87: * let the density be changed. ! 88: */ ! 89: struct te_softc { ! 90: char sc_openf; /* lock against multiple opens */ ! 91: char sc_lastiow; /* last op was a write */ ! 92: daddr_t sc_blkno; /* block number, for block device tape */ ! 93: daddr_t sc_nxrec; /* position of end of tape, if known */ ! 94: u_short sc_erreg; /* copy of last erreg */ ! 95: u_short sc_dsreg; /* copy of last dsreg */ ! 96: short sc_resid; /* copy of last bc */ ! 97: #ifdef unneeded ! 98: short sc_lastcmd; /* last command to handle direction changes */ ! 99: #endif ! 100: u_short sc_dens; /* prototype command with density info */ ! 101: daddr_t sc_timo; /* time until timeout expires */ ! 102: short sc_tact; /* timeout is active */ ! 103: } te_softc[NTM]; ! 104: #ifdef unneeded ! 105: int tmgapsdcnt; /* DEBUG */ ! 106: #endif ! 107: ! 108: /* ! 109: * States for um->um_tab.b_active, the per controller state flag. ! 110: * This is used to sequence control in the driver. ! 111: */ ! 112: #define SSEEK 1 /* seeking */ ! 113: #define SIO 2 /* doing seq i/o */ ! 114: #define SCOM 3 /* sending control command */ ! 115: #define SREW 4 /* sending a drive rewind */ ! 116: ! 117: #if NTS > 0 ! 118: /* ! 119: * Kludge to get around fact that we don't really ! 120: * check if a ts is there... if there are both tm's and ts's ! 121: * declared in the system, then this driver sets havetm to 1 ! 122: * if it finds a tm, and ts just pretends there isn't a ts. ! 123: */ ! 124: int havetm = 0; ! 125: #endif ! 126: /* ! 127: * Determine if there is a controller for ! 128: * a tm at address reg. Our goal is to make the ! 129: * device interrupt. ! 130: */ ! 131: tmprobe(reg) ! 132: caddr_t reg; ! 133: { ! 134: register int br, cvec; /* must be r11,r10; value-result */ ! 135: ! 136: #ifdef lint ! 137: br = 0; cvec = br; br = cvec; ! 138: #endif ! 139: ((struct device *)reg)->tmcs = TM_IE; ! 140: /* ! 141: * If this is a tm11, it ought to have interrupted ! 142: * by now, if it isn't (ie: it is a ts04) then we just ! 143: * hope that it didn't interrupt, so autoconf will ignore it. ! 144: * Just in case, we will reference one ! 145: * of the more distant registers, and hope for a machine ! 146: * check, or similar disaster if this is a ts. ! 147: * ! 148: * Note: on an 11/780, badaddr will just generate ! 149: * a uba error for a ts; but our caller will notice that ! 150: * so we won't check for it. ! 151: */ ! 152: if (badaddr((caddr_t)&((struct device *)reg)->tmrd, 2)) ! 153: return (0); ! 154: return (1); ! 155: } ! 156: ! 157: /* ! 158: * Due to a design flaw, we cannot ascertain if the tape ! 159: * exists or not unless it is on line - ie: unless a tape is ! 160: * mounted. This is too servere a restriction to bear, ! 161: * so all units are assumed to exist. ! 162: */ ! 163: /*ARGSUSED*/ ! 164: tmslave(ui, reg) ! 165: struct uba_device *ui; ! 166: caddr_t reg; ! 167: { ! 168: ! 169: return (1); ! 170: } ! 171: ! 172: /* ! 173: * Record attachment of the unit to the controller. ! 174: */ ! 175: /*ARGSUSED*/ ! 176: tmattach(ui) ! 177: struct uba_device *ui; ! 178: { ! 179: ! 180: #if NTS > 0 ! 181: havetm = 1; ! 182: #endif ! 183: /* ! 184: * Tetotm is used in TMUNIT to index the ctmbuf and rtmbuf ! 185: * arrays given a te unit number. ! 186: */ ! 187: tetotm[ui->ui_unit] = ui->ui_mi->um_ctlr; ! 188: } ! 189: ! 190: int tmtimer(); ! 191: /* ! 192: * Open the device. Tapes are unique open ! 193: * devices, so we refuse if it is already open. ! 194: * We also check that a tape is available, and ! 195: * don't block waiting here; if you want to wait ! 196: * for a tape you should timeout in user code. ! 197: */ ! 198: tmopen(dev, flag) ! 199: dev_t dev; ! 200: int flag; ! 201: { ! 202: register int teunit; ! 203: register struct uba_device *ui; ! 204: register struct te_softc *sc; ! 205: int olddens, dens; ! 206: ! 207: teunit = TEUNIT(dev); ! 208: if (teunit>=NTE || (sc = &te_softc[teunit])->sc_openf || ! 209: (ui = tedinfo[teunit]) == 0 || ui->ui_alive == 0) { ! 210: u.u_error = ENXIO; ! 211: return; ! 212: } ! 213: olddens = sc->sc_dens; ! 214: dens = TM_IE | TM_GO | (ui->ui_slave << 8); ! 215: if ((minor(dev) & T_1600BPI) == 0) ! 216: dens |= TM_D800; ! 217: sc->sc_dens = dens; ! 218: get: ! 219: tmcommand(dev, TM_SENSE, 1); ! 220: if (sc->sc_erreg&TMER_SDWN) { ! 221: sleep((caddr_t)&lbolt, PZERO+1); ! 222: goto get; ! 223: } ! 224: sc->sc_dens = olddens; ! 225: if ((sc->sc_erreg&(TMER_SELR|TMER_TUR)) != (TMER_SELR|TMER_TUR)) { ! 226: uprintf("te%d: not online\n", teunit); ! 227: u.u_error = EIO; ! 228: return; ! 229: } ! 230: if ((flag&FWRITE) && (sc->sc_erreg&TMER_WRL)) { ! 231: uprintf("te%d: no write ring\n", teunit); ! 232: u.u_error = EIO; ! 233: return; ! 234: } ! 235: if ((sc->sc_erreg&TMER_BOT) == 0 && (flag&FWRITE) && ! 236: dens != sc->sc_dens) { ! 237: uprintf("te%d: can't change density in mid-tape\n", teunit); ! 238: u.u_error = EIO; ! 239: return; ! 240: } ! 241: sc->sc_openf = 1; ! 242: sc->sc_blkno = (daddr_t)0; ! 243: sc->sc_nxrec = INF; ! 244: sc->sc_lastiow = 0; ! 245: sc->sc_dens = dens; ! 246: (void) spl6(); ! 247: if (sc->sc_tact == 0) { ! 248: sc->sc_timo = INF; ! 249: sc->sc_tact = 1; ! 250: timeout(tmtimer, (caddr_t)dev, 5*hz); ! 251: } ! 252: (void) spl0(); ! 253: } ! 254: ! 255: /* ! 256: * Close tape device. ! 257: * ! 258: * If tape was open for writing or last operation was ! 259: * a write, then write two EOF's and backspace over the last one. ! 260: * Unless this is a non-rewinding special file, rewind the tape. ! 261: * Make the tape available to others. ! 262: */ ! 263: tmclose(dev, flag) ! 264: register dev_t dev; ! 265: register flag; ! 266: { ! 267: register struct te_softc *sc = &te_softc[TEUNIT(dev)]; ! 268: ! 269: if (flag == FWRITE || (flag&FWRITE) && sc->sc_lastiow) { ! 270: tmcommand(dev, TM_WEOF, 1); ! 271: tmcommand(dev, TM_WEOF, 1); ! 272: tmcommand(dev, TM_SREV, 1); ! 273: } ! 274: if ((minor(dev)&T_NOREWIND) == 0) ! 275: /* ! 276: * 0 count means don't hang waiting for rewind complete ! 277: * rather ctmbuf stays busy until the operation completes ! 278: * preventing further opens from completing by ! 279: * preventing a TM_SENSE from completing. ! 280: */ ! 281: tmcommand(dev, TM_REW, 0); ! 282: sc->sc_openf = 0; ! 283: } ! 284: ! 285: /* ! 286: * Execute a command on the tape drive ! 287: * a specified number of times. ! 288: */ ! 289: tmcommand(dev, com, count) ! 290: dev_t dev; ! 291: int com, count; ! 292: { ! 293: register struct buf *bp; ! 294: ! 295: bp = &ctmbuf[TMUNIT(dev)]; ! 296: (void) spl5(); ! 297: while (bp->b_flags&B_BUSY) { ! 298: /* ! 299: * This special check is because B_BUSY never ! 300: * gets cleared in the non-waiting rewind case. ! 301: */ ! 302: if (bp->b_repcnt == 0 && (bp->b_flags&B_DONE)) ! 303: break; ! 304: bp->b_flags |= B_WANTED; ! 305: sleep((caddr_t)bp, PRIBIO); ! 306: } ! 307: bp->b_flags = B_BUSY|B_READ; ! 308: (void) spl0(); ! 309: bp->b_dev = dev; ! 310: bp->b_repcnt = -count; ! 311: bp->b_command = com; ! 312: bp->b_blkno = 0; ! 313: tmstrategy(bp); ! 314: /* ! 315: * In case of rewind from close, don't wait. ! 316: * This is the only case where count can be 0. ! 317: */ ! 318: if (count == 0) ! 319: return; ! 320: iowait(bp); ! 321: if (bp->b_flags&B_WANTED) ! 322: wakeup((caddr_t)bp); ! 323: bp->b_flags &= B_ERROR; ! 324: } ! 325: ! 326: /* ! 327: * Queue a tape operation. ! 328: */ ! 329: tmstrategy(bp) ! 330: register struct buf *bp; ! 331: { ! 332: int teunit = TEUNIT(bp->b_dev); ! 333: register struct uba_ctlr *um; ! 334: register struct buf *dp; ! 335: ! 336: /* ! 337: * Put transfer at end of unit queue ! 338: */ ! 339: dp = &teutab[teunit]; ! 340: bp->av_forw = NULL; ! 341: (void) spl5(); ! 342: um = tedinfo[teunit]->ui_mi; ! 343: if (dp->b_actf == NULL) { ! 344: dp->b_actf = bp; ! 345: /* ! 346: * Transport not already active... ! 347: * put at end of controller queue. ! 348: */ ! 349: dp->b_forw = NULL; ! 350: if (um->um_tab.b_actf == NULL) ! 351: um->um_tab.b_actf = dp; ! 352: else ! 353: um->um_tab.b_actl->b_forw = dp; ! 354: um->um_tab.b_actl = dp; ! 355: } else ! 356: dp->b_actl->av_forw = bp; ! 357: dp->b_actl = bp; ! 358: /* ! 359: * If the controller is not busy, get ! 360: * it going. ! 361: */ ! 362: if (um->um_tab.b_active == 0) ! 363: tmstart(um); ! 364: (void) spl0(); ! 365: } ! 366: ! 367: /* ! 368: * Start activity on a tm controller. ! 369: */ ! 370: tmstart(um) ! 371: register struct uba_ctlr *um; ! 372: { ! 373: register struct buf *bp, *dp; ! 374: register struct device *addr = (struct device *)um->um_addr; ! 375: register struct te_softc *sc; ! 376: register struct uba_device *ui; ! 377: int teunit, cmd; ! 378: daddr_t blkno; ! 379: ! 380: /* ! 381: * Look for an idle transport on the controller. ! 382: */ ! 383: loop: ! 384: if ((dp = um->um_tab.b_actf) == NULL) ! 385: return; ! 386: if ((bp = dp->b_actf) == NULL) { ! 387: um->um_tab.b_actf = dp->b_forw; ! 388: goto loop; ! 389: } ! 390: teunit = TEUNIT(bp->b_dev); ! 391: ui = tedinfo[teunit]; ! 392: /* ! 393: * Record pre-transfer status (e.g. for TM_SENSE) ! 394: */ ! 395: sc = &te_softc[teunit]; ! 396: addr = (struct device *)um->um_addr; ! 397: addr->tmcs = (ui->ui_slave << 8); ! 398: sc->sc_dsreg = addr->tmcs; ! 399: sc->sc_erreg = addr->tmer; ! 400: sc->sc_resid = addr->tmbc; ! 401: /* ! 402: * Default is that last command was NOT a write command; ! 403: * if we do a write command we will notice this in tmintr(). ! 404: */ ! 405: sc->sc_lastiow = 0; ! 406: if (sc->sc_openf < 0 || (addr->tmcs&TM_CUR) == 0) { ! 407: /* ! 408: * Have had a hard error on a non-raw tape ! 409: * or the tape unit is now unavailable ! 410: * (e.g. taken off line). ! 411: */ ! 412: bp->b_flags |= B_ERROR; ! 413: goto next; ! 414: } ! 415: if (bp == &ctmbuf[TMUNIT(bp->b_dev)]) { ! 416: /* ! 417: * Execute control operation with the specified count. ! 418: */ ! 419: if (bp->b_command == TM_SENSE) ! 420: goto next; ! 421: /* ! 422: * Set next state; give 5 minutes to complete ! 423: * rewind, or 10 seconds per iteration (minimum 60 ! 424: * seconds and max 5 minutes) to complete other ops. ! 425: */ ! 426: if (bp->b_command == TM_REW) { ! 427: um->um_tab.b_active = SREW; ! 428: sc->sc_timo = 5 * 60; ! 429: } else { ! 430: um->um_tab.b_active = SCOM; ! 431: sc->sc_timo = imin(imax(10*(int)bp->b_repcnt,60),5*60); ! 432: } ! 433: if (bp->b_command == TM_SFORW || bp->b_command == TM_SREV) ! 434: addr->tmbc = bp->b_repcnt; ! 435: goto dobpcmd; ! 436: } ! 437: /* ! 438: * The following checks handle boundary cases for operation ! 439: * on non-raw tapes. On raw tapes the initialization of ! 440: * sc->sc_nxrec by tmphys causes them to be skipped normally ! 441: * (except in the case of retries). ! 442: */ ! 443: if (dbtofsb(bp->b_blkno) > sc->sc_nxrec) { ! 444: /* ! 445: * Can't read past known end-of-file. ! 446: */ ! 447: bp->b_flags |= B_ERROR; ! 448: bp->b_error = ENXIO; ! 449: goto next; ! 450: } ! 451: if (dbtofsb(bp->b_blkno) == sc->sc_nxrec && ! 452: bp->b_flags&B_READ) { ! 453: /* ! 454: * Reading at end of file returns 0 bytes. ! 455: */ ! 456: bp->b_resid = bp->b_bcount; ! 457: clrbuf(bp); ! 458: goto next; ! 459: } ! 460: if ((bp->b_flags&B_READ) == 0) ! 461: /* ! 462: * Writing sets EOF ! 463: */ ! 464: sc->sc_nxrec = dbtofsb(bp->b_blkno) + 1; ! 465: /* ! 466: * If the data transfer command is in the correct place, ! 467: * set up all the registers except the csr, and give ! 468: * control over to the UNIBUS adapter routines, to ! 469: * wait for resources to start the i/o. ! 470: */ ! 471: if ((blkno = sc->sc_blkno) == dbtofsb(bp->b_blkno)) { ! 472: addr->tmbc = -bp->b_bcount; ! 473: if ((bp->b_flags&B_READ) == 0) { ! 474: if (um->um_tab.b_errcnt) ! 475: cmd = TM_WIRG; ! 476: else ! 477: cmd = TM_WCOM; ! 478: } else ! 479: cmd = TM_RCOM; ! 480: um->um_tab.b_active = SIO; ! 481: um->um_cmd = sc->sc_dens|cmd; ! 482: #ifdef notdef ! 483: if (tmreverseop(sc->sc_lastcmd)) ! 484: while (addr->tmer & TMER_SDWN) ! 485: tmgapsdcnt++; ! 486: sc->sc_lastcmd = TM_RCOM; /* will serve */ ! 487: #endif ! 488: sc->sc_timo = 60; /* premature, but should serve */ ! 489: (void) ubago(ui); ! 490: return; ! 491: } ! 492: /* ! 493: * Tape positioned incorrectly; ! 494: * set to seek forwards or backwards to the correct spot. ! 495: * This happens for raw tapes only on error retries. ! 496: */ ! 497: um->um_tab.b_active = SSEEK; ! 498: if (blkno < dbtofsb(bp->b_blkno)) { ! 499: bp->b_command = TM_SFORW; ! 500: addr->tmbc = blkno - dbtofsb(bp->b_blkno); ! 501: } else { ! 502: bp->b_command = TM_SREV; ! 503: addr->tmbc = dbtofsb(bp->b_blkno) - blkno; ! 504: } ! 505: sc->sc_timo = imin(imax(10 * -addr->tmbc, 60), 5 * 60); ! 506: dobpcmd: ! 507: #ifdef notdef ! 508: /* ! 509: * It is strictly necessary to wait for the tape ! 510: * to stop before changing directions, but the TC11 ! 511: * handles this for us. ! 512: */ ! 513: if (tmreverseop(sc->sc_lastcmd) != tmreverseop(bp->b_command)) ! 514: while (addr->tmer & TM_SDWN) ! 515: tmgapsdcnt++; ! 516: sc->sc_lastcmd = bp->b_command; ! 517: #endif ! 518: /* ! 519: * Do the command in bp. ! 520: */ ! 521: addr->tmcs = (sc->sc_dens | bp->b_command); ! 522: return; ! 523: ! 524: next: ! 525: /* ! 526: * Done with this operation due to error or ! 527: * the fact that it doesn't do anything. ! 528: * Release UBA resources (if any), dequeue ! 529: * the transfer and continue processing this slave. ! 530: */ ! 531: if (um->um_ubinfo) ! 532: ubadone(um); ! 533: um->um_tab.b_errcnt = 0; ! 534: dp->b_actf = bp->av_forw; ! 535: iodone(bp); ! 536: goto loop; ! 537: } ! 538: ! 539: /* ! 540: * The UNIBUS resources we needed have been ! 541: * allocated to us; start the device. ! 542: */ ! 543: tmdgo(um) ! 544: register struct uba_ctlr *um; ! 545: { ! 546: register struct device *addr = (struct device *)um->um_addr; ! 547: ! 548: addr->tmba = um->um_ubinfo; ! 549: addr->tmcs = um->um_cmd | ((um->um_ubinfo >> 12) & 0x30); ! 550: } ! 551: ! 552: /* ! 553: * Tm interrupt routine. ! 554: */ ! 555: /*ARGSUSED*/ ! 556: tmintr(tm11) ! 557: int tm11; ! 558: { ! 559: struct buf *dp; ! 560: register struct buf *bp; ! 561: register struct uba_ctlr *um = tmminfo[tm11]; ! 562: register struct device *addr; ! 563: register struct te_softc *sc; ! 564: int teunit; ! 565: register state; ! 566: ! 567: if ((dp = um->um_tab.b_actf) == NULL) ! 568: return; ! 569: bp = dp->b_actf; ! 570: teunit = TEUNIT(bp->b_dev); ! 571: addr = (struct device *)tedinfo[teunit]->ui_addr; ! 572: sc = &te_softc[teunit]; ! 573: /* ! 574: * If last command was a rewind, and tape is still ! 575: * rewinding, wait for the rewind complete interrupt. ! 576: */ ! 577: if (um->um_tab.b_active == SREW) { ! 578: um->um_tab.b_active = SCOM; ! 579: if (addr->tmer&TMER_RWS) { ! 580: sc->sc_timo = 5*60; /* 5 minutes */ ! 581: return; ! 582: } ! 583: } ! 584: /* ! 585: * An operation completed... record status ! 586: */ ! 587: sc->sc_timo = INF; ! 588: sc->sc_dsreg = addr->tmcs; ! 589: sc->sc_erreg = addr->tmer; ! 590: sc->sc_resid = addr->tmbc; ! 591: if ((bp->b_flags & B_READ) == 0) ! 592: sc->sc_lastiow = 1; ! 593: state = um->um_tab.b_active; ! 594: um->um_tab.b_active = 0; ! 595: /* ! 596: * Check for errors. ! 597: */ ! 598: if (addr->tmcs&TM_ERR) { ! 599: while (addr->tmer & TMER_SDWN) ! 600: ; /* await settle down */ ! 601: /* ! 602: * If we hit the end of the tape file, update our position. ! 603: */ ! 604: if (addr->tmer&TMER_EOF) { ! 605: tmseteof(bp); /* set blkno and nxrec */ ! 606: state = SCOM; /* force completion */ ! 607: /* ! 608: * Stuff bc so it will be unstuffed correctly ! 609: * later to get resid. ! 610: */ ! 611: addr->tmbc = -bp->b_bcount; ! 612: goto opdone; ! 613: } ! 614: /* ! 615: * If we were reading raw tape and the only error was that the ! 616: * record was too long, then we don't consider this an error. ! 617: */ ! 618: if (bp == &rtmbuf[TMUNIT(bp->b_dev)] && (bp->b_flags&B_READ) && ! 619: (addr->tmer&(TMER_HARD|TMER_SOFT)) == TMER_RLE) ! 620: goto ignoreerr; ! 621: /* ! 622: * If error is not hard, and this was an i/o operation ! 623: * retry up to 8 times. ! 624: */ ! 625: if ((addr->tmer&TMER_HARD)==0 && state==SIO) { ! 626: if (++um->um_tab.b_errcnt < 7) { ! 627: sc->sc_blkno++; ! 628: ubadone(um); ! 629: goto opcont; ! 630: } ! 631: } else ! 632: /* ! 633: * Hard or non-i/o errors on non-raw tape ! 634: * cause it to close. ! 635: */ ! 636: if (sc->sc_openf>0 && bp != &rtmbuf[TMUNIT(bp->b_dev)]) ! 637: sc->sc_openf = -1; ! 638: /* ! 639: * Couldn't recover error ! 640: */ ! 641: printf("te%d: hard error bn%d er=%b\n", minor(bp->b_dev)&03, ! 642: bp->b_blkno, sc->sc_erreg, TMER_BITS); ! 643: bp->b_flags |= B_ERROR; ! 644: goto opdone; ! 645: } ! 646: /* ! 647: * Advance tape control FSM. ! 648: */ ! 649: ignoreerr: ! 650: switch (state) { ! 651: ! 652: case SIO: ! 653: /* ! 654: * Read/write increments tape block number ! 655: */ ! 656: sc->sc_blkno++; ! 657: goto opdone; ! 658: ! 659: case SCOM: ! 660: /* ! 661: * For forward/backward space record update current position. ! 662: */ ! 663: if (bp == &ctmbuf[TMUNIT(bp->b_dev)]) ! 664: switch (bp->b_command) { ! 665: ! 666: case TM_SFORW: ! 667: sc->sc_blkno -= bp->b_repcnt; ! 668: break; ! 669: ! 670: case TM_SREV: ! 671: sc->sc_blkno += bp->b_repcnt; ! 672: break; ! 673: } ! 674: goto opdone; ! 675: ! 676: case SSEEK: ! 677: sc->sc_blkno = dbtofsb(bp->b_blkno); ! 678: goto opcont; ! 679: ! 680: default: ! 681: panic("tmintr"); ! 682: } ! 683: opdone: ! 684: /* ! 685: * Reset error count and remove ! 686: * from device queue. ! 687: */ ! 688: um->um_tab.b_errcnt = 0; ! 689: dp->b_actf = bp->av_forw; ! 690: bp->b_resid = -addr->tmbc; ! 691: ubadone(um); ! 692: iodone(bp); ! 693: /* ! 694: * Circulate slave to end of controller ! 695: * queue to give other slaves a chance. ! 696: */ ! 697: um->um_tab.b_actf = dp->b_forw; ! 698: if (dp->b_actf) { ! 699: dp->b_forw = NULL; ! 700: if (um->um_tab.b_actf == NULL) ! 701: um->um_tab.b_actf = dp; ! 702: else ! 703: um->um_tab.b_actl->b_forw = dp; ! 704: um->um_tab.b_actl = dp; ! 705: } ! 706: if (um->um_tab.b_actf == 0) ! 707: return; ! 708: opcont: ! 709: tmstart(um); ! 710: } ! 711: ! 712: tmtimer(dev) ! 713: int dev; ! 714: { ! 715: register struct te_softc *sc = &te_softc[TEUNIT(dev)]; ! 716: ! 717: if (sc->sc_timo != INF && (sc->sc_timo -= 5) < 0) { ! 718: printf("te%d: lost interrupt\n"); ! 719: sc->sc_timo = INF; ! 720: (void) spl5(); ! 721: tmintr(TMUNIT(dev)); ! 722: (void) spl0(); ! 723: } ! 724: timeout(tmtimer, (caddr_t)dev, 5*hz); ! 725: } ! 726: ! 727: tmseteof(bp) ! 728: register struct buf *bp; ! 729: { ! 730: register int teunit = TEUNIT(bp->b_dev); ! 731: register struct device *addr = ! 732: (struct device *)tedinfo[teunit]->ui_addr; ! 733: register struct te_softc *sc = &te_softc[teunit]; ! 734: ! 735: if (bp == &ctmbuf[TMUNIT(bp->b_dev)]) { ! 736: if (sc->sc_blkno > dbtofsb(bp->b_blkno)) { ! 737: /* reversing */ ! 738: sc->sc_nxrec = dbtofsb(bp->b_blkno) - addr->tmbc; ! 739: sc->sc_blkno = sc->sc_nxrec; ! 740: } else { ! 741: /* spacing forward */ ! 742: sc->sc_blkno = dbtofsb(bp->b_blkno) + addr->tmbc; ! 743: sc->sc_nxrec = sc->sc_blkno - 1; ! 744: } ! 745: return; ! 746: } ! 747: /* eof on read */ ! 748: sc->sc_nxrec = dbtofsb(bp->b_blkno); ! 749: } ! 750: ! 751: tmread(dev) ! 752: dev_t dev; ! 753: { ! 754: ! 755: tmphys(dev); ! 756: if (u.u_error) ! 757: return; ! 758: physio(tmstrategy, &rtmbuf[TMUNIT(dev)], dev, B_READ, minphys); ! 759: } ! 760: ! 761: tmwrite(dev) ! 762: dev_t dev; ! 763: { ! 764: ! 765: tmphys(dev); ! 766: if (u.u_error) ! 767: return; ! 768: physio(tmstrategy, &rtmbuf[TMUNIT(dev)], dev, B_WRITE, minphys); ! 769: } ! 770: ! 771: /* ! 772: * Check that a raw device exists. ! 773: * If it does, set up sc_blkno and sc_nxrec ! 774: * so that the tape will appear positioned correctly. ! 775: */ ! 776: tmphys(dev) ! 777: dev_t dev; ! 778: { ! 779: register int teunit = TEUNIT(dev); ! 780: register daddr_t a; ! 781: register struct te_softc *sc; ! 782: register struct uba_device *ui; ! 783: ! 784: if (teunit >= NTE || (ui=tedinfo[teunit]) == 0 || ui->ui_alive == 0) { ! 785: u.u_error = ENXIO; ! 786: return; ! 787: } ! 788: sc = &te_softc[teunit]; ! 789: a = dbtofsb(u.u_offset >> 9); ! 790: sc->sc_blkno = a; ! 791: sc->sc_nxrec = a + 1; ! 792: } ! 793: ! 794: tmreset(uban) ! 795: int uban; ! 796: { ! 797: register struct uba_ctlr *um; ! 798: register tm11, teunit; ! 799: register struct uba_device *ui; ! 800: register struct buf *dp; ! 801: ! 802: for (tm11 = 0; tm11 < NTM; tm11++) { ! 803: if ((um = tmminfo[tm11]) == 0 || um->um_alive == 0 || ! 804: um->um_ubanum != uban) ! 805: continue; ! 806: printf(" tm%d", tm11); ! 807: um->um_tab.b_active = 0; ! 808: um->um_tab.b_actf = um->um_tab.b_actl = 0; ! 809: if (um->um_ubinfo) { ! 810: printf("<%d>", (um->um_ubinfo>>28)&0xf); ! 811: ubadone(um); ! 812: } ! 813: ((struct device *)(um->um_addr))->tmcs = TM_DCLR; ! 814: for (teunit = 0; teunit < NTE; teunit++) { ! 815: if ((ui = tedinfo[teunit]) == 0 || ui->ui_mi != um || ! 816: ui->ui_alive == 0) ! 817: continue; ! 818: dp = &teutab[teunit]; ! 819: dp->b_active = 0; ! 820: dp->b_forw = 0; ! 821: if (um->um_tab.b_actf == NULL) ! 822: um->um_tab.b_actf = dp; ! 823: else ! 824: um->um_tab.b_actl->b_forw = dp; ! 825: um->um_tab.b_actl = dp; ! 826: if (te_softc[teunit].sc_openf > 0) ! 827: te_softc[teunit].sc_openf = -1; ! 828: } ! 829: tmstart(um); ! 830: } ! 831: } ! 832: ! 833: /*ARGSUSED*/ ! 834: tmioctl(dev, cmd, addr, flag) ! 835: caddr_t addr; ! 836: dev_t dev; ! 837: { ! 838: int teunit = TEUNIT(dev); ! 839: register struct te_softc *sc = &te_softc[teunit]; ! 840: register struct buf *bp = &ctmbuf[TMUNIT(dev)]; ! 841: register callcount; ! 842: int fcount; ! 843: struct mtop mtop; ! 844: struct mtget mtget; ! 845: /* we depend of the values and order of the MT codes here */ ! 846: static tmops[] = ! 847: {TM_WEOF,TM_SFORW,TM_SREV,TM_SFORW,TM_SREV,TM_REW,TM_OFFL,TM_SENSE}; ! 848: ! 849: switch (cmd) { ! 850: case MTIOCTOP: /* tape operation */ ! 851: if (copyin((caddr_t)addr, (caddr_t)&mtop, sizeof(mtop))) { ! 852: u.u_error = EFAULT; ! 853: return; ! 854: } ! 855: switch(mtop.mt_op) { ! 856: case MTWEOF: ! 857: callcount = mtop.mt_count; ! 858: fcount = 1; ! 859: break; ! 860: case MTFSF: case MTBSF: ! 861: callcount = mtop.mt_count; ! 862: fcount = INF; ! 863: break; ! 864: case MTFSR: case MTBSR: ! 865: callcount = 1; ! 866: fcount = mtop.mt_count; ! 867: break; ! 868: case MTREW: case MTOFFL: case MTNOP: ! 869: callcount = 1; ! 870: fcount = 1; ! 871: break; ! 872: default: ! 873: u.u_error = ENXIO; ! 874: return; ! 875: } ! 876: if (callcount <= 0 || fcount <= 0) { ! 877: u.u_error = ENXIO; ! 878: return; ! 879: } ! 880: while (--callcount >= 0) { ! 881: tmcommand(dev, tmops[mtop.mt_op], fcount); ! 882: if ((mtop.mt_op == MTFSR || mtop.mt_op == MTBSR) && ! 883: bp->b_resid) { ! 884: u.u_error = EIO; ! 885: break; ! 886: } ! 887: if ((bp->b_flags&B_ERROR) || sc->sc_erreg&TMER_BOT) ! 888: break; ! 889: } ! 890: geterror(bp); ! 891: return; ! 892: case MTIOCGET: ! 893: mtget.mt_dsreg = sc->sc_dsreg; ! 894: mtget.mt_erreg = sc->sc_erreg; ! 895: mtget.mt_resid = sc->sc_resid; ! 896: mtget.mt_type = MT_ISTM; ! 897: if (copyout((caddr_t)&mtget, addr, sizeof(mtget))) ! 898: u.u_error = EFAULT; ! 899: return; ! 900: default: ! 901: u.u_error = ENXIO; ! 902: } ! 903: } ! 904: ! 905: #define DBSIZE 20 ! 906: ! 907: tmdump() ! 908: { ! 909: register struct uba_device *ui; ! 910: register struct uba_regs *up; ! 911: register struct device *addr; ! 912: int blk, num; ! 913: int start; ! 914: ! 915: start = 0; ! 916: num = maxfree; ! 917: #define phys(a,b) ((b)((int)(a)&0x7fffffff)) ! 918: if (tedinfo[0] == 0) ! 919: return (ENXIO); ! 920: ui = phys(tedinfo[0], struct uba_device *); ! 921: up = phys(ui->ui_hd, struct uba_hd *)->uh_physuba; ! 922: ubainit(up); ! 923: DELAY(1000000); ! 924: addr = (struct device *)ui->ui_physaddr; ! 925: tmwait(addr); ! 926: addr->tmcs = TM_DCLR | TM_GO; ! 927: while (num > 0) { ! 928: blk = num > DBSIZE ? DBSIZE : num; ! 929: tmdwrite(start, blk, addr, up); ! 930: start += blk; ! 931: num -= blk; ! 932: } ! 933: tmeof(addr); ! 934: tmeof(addr); ! 935: tmwait(addr); ! 936: if (addr->tmcs&TM_ERR) ! 937: return (EIO); ! 938: addr->tmcs = TM_REW | TM_GO; ! 939: tmwait(addr); ! 940: return (0); ! 941: } ! 942: ! 943: tmdwrite(dbuf, num, addr, up) ! 944: register dbuf, num; ! 945: register struct device *addr; ! 946: struct uba_regs *up; ! 947: { ! 948: register struct pte *io; ! 949: register int npf; ! 950: ! 951: tmwait(addr); ! 952: io = up->uba_map; ! 953: npf = num+1; ! 954: while (--npf != 0) ! 955: *(int *)io++ = (dbuf++ | (1<<UBAMR_DPSHIFT) | UBAMR_MRV); ! 956: *(int *)io = 0; ! 957: addr->tmbc = -(num*NBPG); ! 958: addr->tmba = 0; ! 959: addr->tmcs = TM_WCOM | TM_GO; ! 960: } ! 961: ! 962: tmwait(addr) ! 963: register struct device *addr; ! 964: { ! 965: register s; ! 966: ! 967: do ! 968: s = addr->tmcs; ! 969: while ((s & TM_CUR) == 0); ! 970: } ! 971: ! 972: tmeof(addr) ! 973: struct device *addr; ! 974: { ! 975: ! 976: tmwait(addr); ! 977: addr->tmcs = TM_WEOF | TM_GO; ! 978: } ! 979: #endif
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