1*7633Ssam /* ts.c 4.26 82/08/01 */ 21900Swnj 31941Swnj #include "ts.h" 41900Swnj #if NTS > 0 51900Swnj /* 61900Swnj * TS11 tape driver 73244Swnj * 83244Swnj * TODO: 95693Sroot * write dump code 101900Swnj */ 111900Swnj #include "../h/param.h" 121900Swnj #include "../h/systm.h" 131900Swnj #include "../h/buf.h" 143244Swnj #include "../h/dir.h" 151900Swnj #include "../h/conf.h" 163244Swnj #include "../h/user.h" 171900Swnj #include "../h/file.h" 183244Swnj #include "../h/map.h" 191900Swnj #include "../h/pte.h" 201947Swnj #include "../h/vm.h" 213244Swnj #include "../h/ubareg.h" 223244Swnj #include "../h/ubavar.h" 23*7633Ssam #include "../h/ioctl.h" 243244Swnj #include "../h/mtio.h" 253244Swnj #include "../h/cmap.h" 263244Swnj #include "../h/cpu.h" 271900Swnj 283244Swnj #include "../h/tsreg.h" 291900Swnj 303244Swnj /* 313244Swnj * There is a ctsbuf per tape controller. 323244Swnj * It is used as the token to pass to the internal routines 333244Swnj * to execute tape ioctls. 343244Swnj * In particular, when the tape is rewinding on close we release 353244Swnj * the user process but any further attempts to use the tape drive 363244Swnj * before the rewind completes will hang waiting for ctsbuf. 373244Swnj */ 383244Swnj struct buf ctsbuf[NTS]; 391900Swnj 403244Swnj /* 413244Swnj * Raw tape operations use rtsbuf. The driver 423244Swnj * notices when rtsbuf is being used and allows the user 433244Swnj * program to continue after errors and read records 443244Swnj * not of the standard length (BSIZE). 453244Swnj */ 463244Swnj struct buf rtsbuf[NTS]; 471900Swnj 483244Swnj /* 493244Swnj * Driver unibus interface routines and variables. 503244Swnj */ 513244Swnj int tsprobe(), tsslave(), tsattach(), tsdgo(), tsintr(); 523244Swnj struct uba_ctlr *tsminfo[NTS]; 533244Swnj struct uba_device *tsdinfo[NTS]; 545693Sroot struct buf tsutab[NTS]; 553244Swnj u_short tsstd[] = { 0772520, 0 }; 563244Swnj /*** PROBABLY DON'T NEED ALL THESE SINCE CONTROLLER == DRIVE ***/ 573244Swnj struct uba_driver zsdriver = 583327Swnj { tsprobe, tsslave, tsattach, tsdgo, tsstd, "ts", tsdinfo, "zs", tsminfo, 0 }; 591900Swnj 603244Swnj /* bits in minor device */ 613244Swnj #define TSUNIT(dev) (minor(dev)&03) 623244Swnj #define T_NOREWIND 04 631900Swnj 643244Swnj #define INF (daddr_t)1000000L 651900Swnj 663244Swnj /* 673244Swnj * Software state per tape transport. 683244Swnj * Also contains hardware state in message packets. 693244Swnj * 703244Swnj * 1. A tape drive is a unique-open device; we refuse opens when it is already. 713244Swnj * 2. We keep track of the current position on a block tape and seek 723244Swnj * before operations by forward/back spacing if necessary. 733244Swnj * 3. We remember if the last operation was a write on a tape, so if a tape 743244Swnj * is open read write and the last thing done is a write we can 753244Swnj * write a standard end of tape mark (two eofs). 763244Swnj * 4. We remember the status registers after the last command, using 773244Swnj * then internally and returning them to the SENSE ioctl. 783244Swnj */ 793244Swnj struct ts_softc { 803244Swnj char sc_openf; /* lock against multiple opens */ 813244Swnj char sc_lastiow; /* last op was a write */ 823327Swnj short sc_resid; /* copy of last bc */ 833244Swnj daddr_t sc_blkno; /* block number, for block device tape */ 843244Swnj daddr_t sc_nxrec; /* position of end of tape, if known */ 855693Sroot struct ts_cmd sc_cmd; /* the command packet */ 865693Sroot struct ts_sts sc_sts; /* status packet, for returned status */ 875693Sroot struct ts_char sc_char; /* characteristics packet */ 885693Sroot struct ts_softc *sc_ubaddr; /* Unibus address of ts_softc structure */ 895697Sroot u_short sc_uba; /* Unibus addr of cmd pkt for tsdb */ 905693Sroot short sc_mapped; /* is ts_sfotc mapped in Unibus space? */ 913244Swnj } ts_softc[NTS]; 921900Swnj 933244Swnj /* 943244Swnj * States for um->um_tab.b_active, the per controller state flag. 953244Swnj * This is used to sequence control in the driver. 963244Swnj */ 973244Swnj #define SSEEK 1 /* seeking */ 983244Swnj #define SIO 2 /* doing seq i/o */ 993244Swnj #define SCOM 3 /* sending control command */ 1003244Swnj #define SREW 4 /* sending a drive rewind */ 1011900Swnj 1023244Swnj /* 1033244Swnj * Determine if there is a controller for 1043244Swnj * a ts at address reg. Our goal is to make the 1053244Swnj * device interrupt. 1063244Swnj */ 1073985Sroot /*ARGSUSED*/ 1083244Swnj tsprobe(reg) 1093244Swnj caddr_t reg; 1103244Swnj { 1113244Swnj register int br, cvec; /* must be r11,r10; value-result */ 1121900Swnj 1133244Swnj #ifdef lint 1143244Swnj br = 0; cvec = br; br = cvec; 1154937Swnj tsintr(0); 1163244Swnj #endif 1175693Sroot ((struct tsdevice *)reg)->tssr = 0; 1185693Sroot DELAY(100); 1195693Sroot if ((((struct tsdevice *)reg)->tssr & TS_NBA) == 0) 1205693Sroot return(0); 1215693Sroot /* IT'S TOO HARD TO MAKE THIS THING INTERRUPT JUST TO FIND ITS VECTOR */ 1225693Sroot cvec = ((unsigned)reg) & 07 ? 0260 : 0224; 1233244Swnj br = 0x15; 1247407Skre return (sizeof (struct tsdevice)); 1253244Swnj } 1261900Swnj 1273244Swnj /* 1283244Swnj * TS11 only supports one drive per controller; 1293244Swnj * check for ui_slave == 0. 1303244Swnj * 1313244Swnj * DO WE REALLY NEED THIS ROUTINE??? 1323244Swnj */ 1333244Swnj /*ARGSUSED*/ 1343244Swnj tsslave(ui, reg) 1353244Swnj struct uba_device *ui; 1363244Swnj caddr_t reg; 1373244Swnj { 1381900Swnj 1393244Swnj if (ui->ui_slave) /* non-zero slave not allowed */ 1403244Swnj return(0); 1413244Swnj return (1); 1423244Swnj } 1431900Swnj 1443244Swnj /* 1453244Swnj * Record attachment of the unit to the controller. 1463244Swnj * 1473244Swnj * SHOULD THIS ROUTINE DO ANYTHING??? 1483244Swnj */ 1493244Swnj /*ARGSUSED*/ 1503244Swnj tsattach(ui) 1513244Swnj struct uba_device *ui; 1523244Swnj { 1531900Swnj 1543244Swnj } 1551900Swnj 1563244Swnj /* 1573244Swnj * Open the device. Tapes are unique open 1583244Swnj * devices, so we refuse if it is already open. 1593244Swnj * We also check that a tape is available, and 1603244Swnj * don't block waiting here; if you want to wait 1613244Swnj * for a tape you should timeout in user code. 1623244Swnj */ 1631900Swnj tsopen(dev, flag) 1643244Swnj dev_t dev; 1653244Swnj int flag; 1661900Swnj { 1673244Swnj register int tsunit; 1683244Swnj register struct uba_device *ui; 1693244Swnj register struct ts_softc *sc; 1701900Swnj 1713244Swnj tsunit = TSUNIT(dev); 1723244Swnj if (tsunit>=NTS || (sc = &ts_softc[tsunit])->sc_openf || 1733244Swnj (ui = tsdinfo[tsunit]) == 0 || ui->ui_alive == 0) { 1741900Swnj u.u_error = ENXIO; 1751900Swnj return; 1761900Swnj } 1773244Swnj if (tsinit(tsunit)) { 1781900Swnj u.u_error = ENXIO; 1791900Swnj return; 1801900Swnj } 1813244Swnj tscommand(dev, TS_SENSE, 1); 1823711Sroot if ((sc->sc_sts.s_xs0&TS_ONL) == 0) { 1833711Sroot uprintf("ts%d: not online\n", tsunit); 1843244Swnj u.u_error = EIO; 1853244Swnj return; 1861900Swnj } 1873718Sroot if ((flag&(FREAD|FWRITE)) == FWRITE && (sc->sc_sts.s_xs0&TS_WLK)) { 1883711Sroot uprintf("ts%d: no write ring\n", tsunit); 1893711Sroot u.u_error = EIO; 1903711Sroot return; 1913711Sroot } 1923244Swnj sc->sc_openf = 1; 1933244Swnj sc->sc_blkno = (daddr_t)0; 1943244Swnj sc->sc_nxrec = INF; 1953244Swnj sc->sc_lastiow = 0; 1961900Swnj } 1971900Swnj 1983244Swnj /* 1993244Swnj * Close tape device. 2003244Swnj * 2013244Swnj * If tape was open for writing or last operation was 2023244Swnj * a write, then write two EOF's and backspace over the last one. 2033244Swnj * Unless this is a non-rewinding special file, rewind the tape. 2043244Swnj * Make the tape available to others. 2053244Swnj */ 2061900Swnj tsclose(dev, flag) 2073244Swnj register dev_t dev; 2083244Swnj register flag; 2091900Swnj { 2103244Swnj register struct ts_softc *sc = &ts_softc[TSUNIT(dev)]; 2111900Swnj 2123244Swnj if (flag == FWRITE || (flag&FWRITE) && sc->sc_lastiow) { 2133244Swnj tscommand(dev, TS_WEOF, 1); 2143244Swnj tscommand(dev, TS_WEOF, 1); 2153244Swnj tscommand(dev, TS_SREV, 1); 2161900Swnj } 2173244Swnj if ((minor(dev)&T_NOREWIND) == 0) 2183244Swnj /* 2193244Swnj * 0 count means don't hang waiting for rewind complete 2203244Swnj * rather ctsbuf stays busy until the operation completes 2213244Swnj * preventing further opens from completing by 2223244Swnj * preventing a TS_SENSE from completing. 2233244Swnj */ 2243244Swnj tscommand(dev, TS_REW, 0); 2253244Swnj sc->sc_openf = 0; 2261900Swnj } 2271900Swnj 2283244Swnj /* 2293244Swnj * Initialize the TS11. Set up Unibus mapping for command 2303244Swnj * packets and set device characteristics. 2313244Swnj */ 2323244Swnj tsinit(unit) 2333244Swnj register int unit; 2341900Swnj { 2353244Swnj register struct ts_softc *sc = &ts_softc[unit]; 2363244Swnj register struct uba_ctlr *um = tsminfo[unit]; 2375693Sroot register struct tsdevice *addr = (struct tsdevice *)um->um_addr; 2383244Swnj register int i; 2393244Swnj 2403244Swnj /* 2413244Swnj * Map the command and message packets into Unibus 2423244Swnj * address space. We do all the command and message 2433244Swnj * packets at once to minimize the amount of Unibus 2443244Swnj * mapping necessary. 2453244Swnj */ 2465693Sroot if (sc->sc_mapped == 0) { 2475693Sroot ctsbuf[unit].b_un.b_addr = (caddr_t)sc; 2485693Sroot ctsbuf[unit].b_bcount = sizeof(*sc); 2493244Swnj i = ubasetup(um->um_ubanum, &ctsbuf[unit], 0); 2503244Swnj i &= 0777777; 2515693Sroot sc->sc_ubaddr = (struct ts_softc *)i; 2525693Sroot sc->sc_mapped++; 2533244Swnj } 2543244Swnj /* 2553244Swnj * Now initialize the TS11 controller. 2563244Swnj * Set the characteristics. 2573244Swnj */ 2583668Swnj if (addr->tssr & (TS_NBA|TS_OFL)) { 2593244Swnj addr->tssr = 0; /* subsystem initialize */ 2603244Swnj tswait(addr); 2615693Sroot i = (int)&sc->sc_ubaddr->sc_cmd; /* Unibus addr of cmd */ 2623244Swnj sc->sc_uba = (u_short)(i + ((i>>16)&3)); 2635693Sroot sc->sc_char.char_addr = (int)&sc->sc_ubaddr->sc_sts; 2643244Swnj sc->sc_char.char_size = sizeof(struct ts_sts); 2653244Swnj sc->sc_char.char_mode = TS_ESS; 2663244Swnj sc->sc_cmd.c_cmd = TS_ACK | TS_SETCHR; 2675693Sroot i = (int)&sc->sc_ubaddr->sc_char; 2683327Swnj sc->sc_cmd.c_loba = i; 2693327Swnj sc->sc_cmd.c_hiba = (i>>16)&3; 2703244Swnj sc->sc_cmd.c_size = sizeof(struct ts_char); 2713244Swnj addr->tsdb = sc->sc_uba; 2723244Swnj tswait(addr); 2733327Swnj if (addr->tssr & TS_NBA) 2743327Swnj return(1); 2753244Swnj } 2763244Swnj return(0); 2773244Swnj } 2783244Swnj 2793244Swnj /* 2803244Swnj * Execute a command on the tape drive 2813244Swnj * a specified number of times. 2823244Swnj */ 2833244Swnj tscommand(dev, com, count) 2843244Swnj dev_t dev; 2853244Swnj int com, count; 2863244Swnj { 2871900Swnj register struct buf *bp; 2885438Sroot register int s; 2891900Swnj 2903244Swnj bp = &ctsbuf[TSUNIT(dev)]; 2915438Sroot s = spl5(); 2923244Swnj while (bp->b_flags&B_BUSY) { 2933244Swnj /* 2943244Swnj * This special check is because B_BUSY never 2953244Swnj * gets cleared in the non-waiting rewind case. 2963244Swnj */ 2973244Swnj if (bp->b_repcnt == 0 && (bp->b_flags&B_DONE)) 2983244Swnj break; 2991900Swnj bp->b_flags |= B_WANTED; 3001900Swnj sleep((caddr_t)bp, PRIBIO); 3011900Swnj } 3023244Swnj bp->b_flags = B_BUSY|B_READ; 3035438Sroot splx(s); 3043244Swnj bp->b_dev = dev; 3053244Swnj bp->b_repcnt = count; 3063244Swnj bp->b_command = com; 3071900Swnj bp->b_blkno = 0; 3081900Swnj tsstrategy(bp); 3093244Swnj /* 3103244Swnj * In case of rewind from close, don't wait. 3113244Swnj * This is the only case where count can be 0. 3123244Swnj */ 3133244Swnj if (count == 0) 3143244Swnj return; 3151900Swnj iowait(bp); 3163244Swnj if (bp->b_flags&B_WANTED) 3171900Swnj wakeup((caddr_t)bp); 3183244Swnj bp->b_flags &= B_ERROR; 3191900Swnj } 3201900Swnj 3213244Swnj /* 3223244Swnj * Queue a tape operation. 3233244Swnj */ 3241900Swnj tsstrategy(bp) 3253244Swnj register struct buf *bp; 3261900Swnj { 3273244Swnj int tsunit = TSUNIT(bp->b_dev); 3283244Swnj register struct uba_ctlr *um; 3293327Swnj register struct buf *dp; 3305438Sroot register int s; 3311900Swnj 3323244Swnj /* 3333244Swnj * Put transfer at end of controller queue 3343244Swnj */ 3351900Swnj bp->av_forw = NULL; 3363244Swnj um = tsdinfo[tsunit]->ui_mi; 3375438Sroot s = spl5(); 3385693Sroot dp = &tsutab[tsunit]; 3393327Swnj if (dp->b_actf == NULL) 3403327Swnj dp->b_actf = bp; 3411900Swnj else 3423327Swnj dp->b_actl->av_forw = bp; 3433327Swnj dp->b_actl = bp; 3443327Swnj um->um_tab.b_actf = um->um_tab.b_actl = dp; 3453244Swnj /* 3463244Swnj * If the controller is not busy, get 3473244Swnj * it going. 3483244Swnj */ 3493244Swnj if (um->um_tab.b_active == 0) 3503244Swnj tsstart(um); 3515438Sroot splx(s); 3521900Swnj } 3531900Swnj 3543244Swnj /* 3553244Swnj * Start activity on a ts controller. 3563244Swnj */ 3573244Swnj tsstart(um) 3583244Swnj register struct uba_ctlr *um; 3591900Swnj { 3601900Swnj register struct buf *bp; 3615693Sroot register struct tsdevice *addr = (struct tsdevice *)um->um_addr; 3623244Swnj register struct ts_softc *sc; 3633244Swnj register struct ts_cmd *tc; 3643244Swnj register struct uba_device *ui; 3653244Swnj int tsunit, cmd; 3661900Swnj daddr_t blkno; 3671900Swnj 3683244Swnj /* 3693244Swnj * Start the controller if there is something for it to do. 3703244Swnj */ 3713244Swnj loop: 3723327Swnj if ((bp = um->um_tab.b_actf->b_actf) == NULL) 3731900Swnj return; 3743244Swnj tsunit = TSUNIT(bp->b_dev); 3753244Swnj ui = tsdinfo[tsunit]; 3763244Swnj sc = &ts_softc[tsunit]; 3773244Swnj tc = &sc->sc_cmd; 3783244Swnj /* 3793244Swnj * Default is that last command was NOT a write command; 3803244Swnj * if we do a write command we will notice this in tsintr(). 3813244Swnj */ 3823656Swnj sc->sc_lastiow = 0; 3833244Swnj if (sc->sc_openf < 0 || (addr->tssr&TS_OFL)) { 3843244Swnj /* 3853244Swnj * Have had a hard error on a non-raw tape 3863244Swnj * or the tape unit is now unavailable 3873244Swnj * (e.g. taken off line). 3883244Swnj */ 3893244Swnj bp->b_flags |= B_ERROR; 3903244Swnj goto next; 3913244Swnj } 3923244Swnj if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) { 3933244Swnj /* 3943244Swnj * Execute control operation with the specified count. 3953244Swnj */ 3963244Swnj um->um_tab.b_active = 3973244Swnj bp->b_command == TS_REW ? SREW : SCOM; 3983244Swnj tc->c_repcnt = bp->b_repcnt; 3993244Swnj goto dobpcmd; 4003244Swnj } 4013244Swnj /* 4023244Swnj * The following checks handle boundary cases for operation 4033244Swnj * on non-raw tapes. On raw tapes the initialization of 4043244Swnj * sc->sc_nxrec by tsphys causes them to be skipped normally 4053244Swnj * (except in the case of retries). 4063244Swnj */ 4077383Ssam if (bdbtofsb(bp->b_blkno) > sc->sc_nxrec) { 4083244Swnj /* 4093244Swnj * Can't read past known end-of-file. 4103244Swnj */ 4113244Swnj bp->b_flags |= B_ERROR; 4123244Swnj bp->b_error = ENXIO; 4133244Swnj goto next; 4143244Swnj } 4157383Ssam if (bdbtofsb(bp->b_blkno) == sc->sc_nxrec && 4163244Swnj bp->b_flags&B_READ) { 4173244Swnj /* 4183244Swnj * Reading at end of file returns 0 bytes. 4193244Swnj */ 4203244Swnj bp->b_resid = bp->b_bcount; 4213244Swnj clrbuf(bp); 4223244Swnj goto next; 4233244Swnj } 4243244Swnj if ((bp->b_flags&B_READ) == 0) 4253244Swnj /* 4263244Swnj * Writing sets EOF 4273244Swnj */ 4287383Ssam sc->sc_nxrec = bdbtofsb(bp->b_blkno) + 1; 4293244Swnj /* 4303244Swnj * If the data transfer command is in the correct place, 4313244Swnj * set up all the registers except the csr, and give 4323244Swnj * control over to the UNIBUS adapter routines, to 4333244Swnj * wait for resources to start the i/o. 4343244Swnj */ 4357383Ssam if ((blkno = sc->sc_blkno) == bdbtofsb(bp->b_blkno)) { 4363244Swnj tc->c_size = bp->b_bcount; 4373244Swnj if ((bp->b_flags&B_READ) == 0) 4383244Swnj cmd = TS_WCOM; 4391900Swnj else 4403244Swnj cmd = TS_RCOM; 4413244Swnj if (um->um_tab.b_errcnt) 4423244Swnj cmd |= TS_RETRY; 4433244Swnj um->um_tab.b_active = SIO; 4443327Swnj tc->c_cmd = TS_ACK | TS_CVC | TS_IE | cmd; 4453244Swnj (void) ubago(ui); 4463244Swnj return; 4473244Swnj } 4483244Swnj /* 4493244Swnj * Tape positioned incorrectly; 4503244Swnj * set to seek forwards or backwards to the correct spot. 4513244Swnj * This happens for raw tapes only on error retries. 4523244Swnj */ 4533244Swnj um->um_tab.b_active = SSEEK; 4547383Ssam if (blkno < bdbtofsb(bp->b_blkno)) { 4553244Swnj bp->b_command = TS_SFORW; 4567383Ssam tc->c_repcnt = bdbtofsb(bp->b_blkno) - blkno; 4571900Swnj } else { 4583244Swnj bp->b_command = TS_SREV; 4597383Ssam tc->c_repcnt = blkno - bdbtofsb(bp->b_blkno); 4601900Swnj } 4613244Swnj dobpcmd: 4623244Swnj /* 4633244Swnj * Do the command in bp. 4643244Swnj */ 4653327Swnj tc->c_cmd = TS_ACK | TS_CVC | TS_IE | bp->b_command; 4663244Swnj addr->tsdb = sc->sc_uba; 4671900Swnj return; 4681900Swnj 4693244Swnj next: 4703244Swnj /* 4713244Swnj * Done with this operation due to error or 4723244Swnj * the fact that it doesn't do anything. 4733244Swnj * Release UBA resources (if any), dequeue 4743244Swnj * the transfer and continue processing this slave. 4753244Swnj */ 4763244Swnj if (um->um_ubinfo) 4773244Swnj ubadone(um); 4783244Swnj um->um_tab.b_errcnt = 0; 4793327Swnj um->um_tab.b_actf->b_actf = bp->av_forw; 4801900Swnj iodone(bp); 4811900Swnj goto loop; 4821900Swnj } 4831900Swnj 4843244Swnj /* 4853244Swnj * The UNIBUS resources we needed have been 4863244Swnj * allocated to us; start the device. 4873244Swnj */ 4883244Swnj tsdgo(um) 4893244Swnj register struct uba_ctlr *um; 4901900Swnj { 4915693Sroot register struct tsdevice *addr = (struct tsdevice *)um->um_addr; 4923244Swnj register struct ts_softc *sc = &ts_softc[um->um_ctlr]; 4933327Swnj register int i; 4943244Swnj 4953327Swnj i = um->um_ubinfo & 0777777; 4963327Swnj sc->sc_cmd.c_loba = i; 4973327Swnj sc->sc_cmd.c_hiba = (i>>16)&3; 4983244Swnj addr->tsdb = sc->sc_uba; 4993244Swnj } 5003244Swnj 5013244Swnj /* 5023244Swnj * Ts interrupt routine. 5033244Swnj */ 5043244Swnj /*ARGSUSED*/ 5053244Swnj tsintr(ts11) 5063244Swnj int ts11; 5073244Swnj { 5081900Swnj register struct buf *bp; 5093244Swnj register struct uba_ctlr *um = tsminfo[ts11]; 5105693Sroot register struct tsdevice *addr; 5113244Swnj register struct ts_softc *sc; 5123244Swnj int tsunit; 5133244Swnj register state; 5141900Swnj 5153327Swnj if ((bp = um->um_tab.b_actf->b_actf) == NULL) 5161900Swnj return; 5173244Swnj tsunit = TSUNIT(bp->b_dev); 5185693Sroot addr = (struct tsdevice *)tsdinfo[tsunit]->ui_addr; 5193244Swnj /* 5203244Swnj * If last command was a rewind, and tape is still 5213244Swnj * rewinding, wait for the rewind complete interrupt. 5223244Swnj * 5233244Swnj * SHOULD NEVER GET AN INTERRUPT IN THIS STATE. 5243244Swnj */ 5253244Swnj if (um->um_tab.b_active == SREW) { 5263244Swnj um->um_tab.b_active = SCOM; 5273244Swnj if ((addr->tssr&TS_SSR) == 0) 5283244Swnj return; 5293244Swnj } 5303244Swnj /* 5313244Swnj * An operation completed... record status 5323244Swnj */ 5333244Swnj sc = &ts_softc[tsunit]; 5343244Swnj if ((bp->b_flags & B_READ) == 0) 5353244Swnj sc->sc_lastiow = 1; 5363244Swnj state = um->um_tab.b_active; 5373244Swnj um->um_tab.b_active = 0; 5383244Swnj /* 5393244Swnj * Check for errors. 5403244Swnj */ 5413244Swnj if (addr->tssr&TS_SC) { 5423244Swnj switch (addr->tssr & TS_TC) { 5433244Swnj case TS_UNREC: /* unrecoverable */ 5443244Swnj case TS_FATAL: /* fatal error */ 5453244Swnj case TS_ATTN: /* attention (shouldn't happen) */ 5463244Swnj case TS_RECNM: /* recoverable, no motion */ 5473244Swnj break; 5481900Swnj 5493244Swnj case TS_SUCC: /* success termination */ 5503244Swnj printf("ts%d: success\n", TSUNIT(minor(bp->b_dev))); 5513244Swnj goto ignoreerr; 5521900Swnj 5533244Swnj case TS_ALERT: /* tape status alert */ 5543244Swnj /* 5553244Swnj * If we hit the end of the tape file, 5563244Swnj * update our position. 5573244Swnj */ 5583244Swnj if (sc->sc_sts.s_xs0 & (TS_TMK|TS_EOT)) { 5593244Swnj tsseteof(bp); /* set blkno and nxrec */ 5603244Swnj state = SCOM; /* force completion */ 5613244Swnj /* 5623244Swnj * Stuff bc so it will be unstuffed correctly 5633244Swnj * later to get resid. 5643244Swnj */ 5653244Swnj sc->sc_sts.s_rbpcr = bp->b_bcount; 5663244Swnj goto opdone; 5673244Swnj } 5683244Swnj /* 5693244Swnj * If we were reading raw tape and the record was too long 5703244Swnj * or too short, then we don't consider this an error. 5713244Swnj */ 5723244Swnj if (bp == &rtsbuf[TSUNIT(bp->b_dev)] && (bp->b_flags&B_READ) && 5733244Swnj sc->sc_sts.s_xs0&(TS_RLS|TS_RLL)) 5743244Swnj goto ignoreerr; 5753244Swnj case TS_RECOV: /* recoverable, tape moved */ 5763244Swnj /* 5773244Swnj * If this was an i/o operation retry up to 8 times. 5783244Swnj */ 5793244Swnj if (state==SIO) { 5803244Swnj if (++um->um_tab.b_errcnt < 7) { 5813244Swnj ubadone(um); 5823244Swnj goto opcont; 5833244Swnj } else 5843244Swnj sc->sc_blkno++; 5853244Swnj } else { 5863244Swnj /* 5873244Swnj * Non-i/o errors on non-raw tape 5883244Swnj * cause it to close. 5893244Swnj */ 5903244Swnj if (sc->sc_openf>0 && bp != &rtsbuf[TSUNIT(bp->b_dev)]) 5913244Swnj sc->sc_openf = -1; 5923244Swnj } 5931900Swnj break; 5943244Swnj 5953244Swnj case TS_REJECT: /* function reject */ 5963244Swnj if (state == SIO && sc->sc_sts.s_xs0 & TS_WLE) 5973244Swnj printf("ts%d: write locked\n", TSUNIT(bp->b_dev)); 5983244Swnj if ((sc->sc_sts.s_xs0 & TS_ONL) == 0) 5993244Swnj printf("ts%d: offline\n", TSUNIT(bp->b_dev)); 6001900Swnj break; 6011900Swnj } 6023244Swnj /* 6033244Swnj * Couldn't recover error 6043244Swnj */ 6053647Swnj printf("ts%d: hard error bn%d xs0=%b", TSUNIT(bp->b_dev), 6063244Swnj bp->b_blkno, sc->sc_sts.s_xs0, TSXS0_BITS); 6073647Swnj if (sc->sc_sts.s_xs1) 6083647Swnj printf(" xs1=%b", sc->sc_sts.s_xs1, TSXS1_BITS); 6093647Swnj if (sc->sc_sts.s_xs2) 6103647Swnj printf(" xs2=%b", sc->sc_sts.s_xs2, TSXS2_BITS); 6113647Swnj if (sc->sc_sts.s_xs3) 6123647Swnj printf(" xs3=%b", sc->sc_sts.s_xs3, TSXS3_BITS); 6133647Swnj printf("\n"); 6143244Swnj bp->b_flags |= B_ERROR; 6153244Swnj goto opdone; 6163244Swnj } 6173244Swnj /* 6183244Swnj * Advance tape control FSM. 6193244Swnj */ 6203244Swnj ignoreerr: 6213244Swnj switch (state) { 6221900Swnj 6233244Swnj case SIO: 6243244Swnj /* 6253244Swnj * Read/write increments tape block number 6263244Swnj */ 6273244Swnj sc->sc_blkno++; 6283244Swnj goto opdone; 6291900Swnj 6301900Swnj case SCOM: 6313244Swnj /* 6323244Swnj * For forward/backward space record update current position. 6333244Swnj */ 6343244Swnj if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) 6353244Swnj switch (bp->b_command) { 6361900Swnj 6373244Swnj case TS_SFORW: 6383244Swnj sc->sc_blkno += bp->b_repcnt; 6393244Swnj break; 6401900Swnj 6413244Swnj case TS_SREV: 6423244Swnj sc->sc_blkno -= bp->b_repcnt; 6433244Swnj break; 6443244Swnj } 6453244Swnj goto opdone; 6463244Swnj 6473244Swnj case SSEEK: 6487383Ssam sc->sc_blkno = bdbtofsb(bp->b_blkno); 6493244Swnj goto opcont; 6503244Swnj 6511900Swnj default: 6523244Swnj panic("tsintr"); 6531900Swnj } 6543244Swnj opdone: 6553244Swnj /* 6563244Swnj * Reset error count and remove 6573244Swnj * from device queue. 6583244Swnj */ 6593244Swnj um->um_tab.b_errcnt = 0; 6603327Swnj um->um_tab.b_actf->b_actf = bp->av_forw; 6613244Swnj bp->b_resid = sc->sc_sts.s_rbpcr; 6623244Swnj ubadone(um); 6633244Swnj iodone(bp); 6643327Swnj if (um->um_tab.b_actf->b_actf == 0) 6653244Swnj return; 6663244Swnj opcont: 6673244Swnj tsstart(um); 6683244Swnj } 6693244Swnj 6703244Swnj tsseteof(bp) 6713244Swnj register struct buf *bp; 6723244Swnj { 6733244Swnj register int tsunit = TSUNIT(bp->b_dev); 6743244Swnj register struct ts_softc *sc = &ts_softc[tsunit]; 6753244Swnj 6763244Swnj if (bp == &ctsbuf[TSUNIT(bp->b_dev)]) { 6777383Ssam if (sc->sc_blkno > bdbtofsb(bp->b_blkno)) { 6783244Swnj /* reversing */ 6797383Ssam sc->sc_nxrec = bdbtofsb(bp->b_blkno) - sc->sc_sts.s_rbpcr; 6803244Swnj sc->sc_blkno = sc->sc_nxrec; 6813244Swnj } else { 6823244Swnj /* spacing forward */ 6837383Ssam sc->sc_blkno = bdbtofsb(bp->b_blkno) + sc->sc_sts.s_rbpcr; 6843244Swnj sc->sc_nxrec = sc->sc_blkno - 1; 6851900Swnj } 6863244Swnj return; 6873244Swnj } 6883244Swnj /* eof on read */ 6897383Ssam sc->sc_nxrec = bdbtofsb(bp->b_blkno); 6901900Swnj } 6911900Swnj 6921900Swnj tsread(dev) 6933244Swnj dev_t dev; 6941900Swnj { 6953244Swnj 6961900Swnj tsphys(dev); 6973244Swnj if (u.u_error) 6983244Swnj return; 6993244Swnj physio(tsstrategy, &rtsbuf[TSUNIT(dev)], dev, B_READ, minphys); 7001900Swnj } 7011900Swnj 7021900Swnj tswrite(dev) 7033244Swnj dev_t dev; 7041900Swnj { 7053244Swnj 7061900Swnj tsphys(dev); 7073244Swnj if (u.u_error) 7083244Swnj return; 7093244Swnj physio(tsstrategy, &rtsbuf[TSUNIT(dev)], dev, B_WRITE, minphys); 7101900Swnj } 7111900Swnj 7123244Swnj /* 7133244Swnj * Check that a raw device exists. 7143244Swnj * If it does, set up sc_blkno and sc_nxrec 7153244Swnj * so that the tape will appear positioned correctly. 7163244Swnj */ 7171900Swnj tsphys(dev) 7183244Swnj dev_t dev; 7191900Swnj { 7203244Swnj register int tsunit = TSUNIT(dev); 7213244Swnj register daddr_t a; 7223244Swnj register struct ts_softc *sc; 7233244Swnj register struct uba_device *ui; 7241900Swnj 7253244Swnj if (tsunit >= NTS || (ui=tsdinfo[tsunit]) == 0 || ui->ui_alive == 0) { 7263244Swnj u.u_error = ENXIO; 7273244Swnj return; 7283244Swnj } 7293244Swnj sc = &ts_softc[tsunit]; 7307383Ssam a = bdbtofsb(u.u_offset >> 9); 7313244Swnj sc->sc_blkno = a; 7323244Swnj sc->sc_nxrec = a + 1; 7331900Swnj } 7341918Swnj 7353244Swnj tsreset(uban) 7363244Swnj int uban; 7371918Swnj { 7383244Swnj register struct uba_ctlr *um; 7395693Sroot register struct uba_device *ui; 7405693Sroot register struct buf *dp; 7413244Swnj register ts11; 7421918Swnj 7433244Swnj for (ts11 = 0; ts11 < NTS; ts11++) { 7443244Swnj if ((um = tsminfo[ts11]) == 0 || um->um_alive == 0 || 7453244Swnj um->um_ubanum != uban) 7463244Swnj continue; 7473244Swnj printf(" ts%d", ts11); 7483244Swnj um->um_tab.b_active = 0; 7493244Swnj um->um_tab.b_actf = um->um_tab.b_actl = 0; 7505693Sroot if (ts_softc[ts11].sc_openf > 0) 7515693Sroot ts_softc[ts11].sc_openf = -1; 7523244Swnj if (um->um_ubinfo) { 7533244Swnj printf("<%d>", (um->um_ubinfo>>28)&0xf); 7543244Swnj ubadone(um); 7553244Swnj } 7565693Sroot if ((ui = tsdinfo[ts11]) && ui->ui_mi == um && ui->ui_alive) { 7575693Sroot dp = &tsutab[ts11]; 7585693Sroot dp->b_active = 0; 7595693Sroot dp->b_forw = 0; 7605693Sroot if (um->um_tab.b_actf == NULL) 7615693Sroot um->um_tab.b_actf = dp; 7625693Sroot else 7635693Sroot um->um_tab.b_actl->b_forw = dp; 7645693Sroot um->um_tab.b_actl = dp; 7655693Sroot } 7663989Sroot (void) tsinit(ts11); 7673244Swnj tsstart(um); 7681918Swnj } 7691918Swnj } 7701918Swnj 7713244Swnj /*ARGSUSED*/ 772*7633Ssam tsioctl(dev, cmd, data, flag) 773*7633Ssam caddr_t data; 7743244Swnj dev_t dev; 7751918Swnj { 7763244Swnj int tsunit = TSUNIT(dev); 7773244Swnj register struct ts_softc *sc = &ts_softc[tsunit]; 7783244Swnj register struct buf *bp = &ctsbuf[TSUNIT(dev)]; 7793244Swnj register callcount; 7803244Swnj int fcount; 781*7633Ssam struct mtop *mtop; 782*7633Ssam struct mtget *mtget; 7833244Swnj /* we depend of the values and order of the MT codes here */ 7843244Swnj static tsops[] = 7853656Swnj {TS_WEOF,TS_SFORWF,TS_SREVF,TS_SFORW,TS_SREV,TS_REW,TS_OFFL,TS_SENSE}; 7861918Swnj 7873244Swnj switch (cmd) { 788*7633Ssam 7893244Swnj case MTIOCTOP: /* tape operation */ 790*7633Ssam mtop = (struct mtop *)data; 791*7633Ssam switch(mtop->mt_op) { 792*7633Ssam 7933244Swnj case MTWEOF: 794*7633Ssam callcount = mtop->mt_count; 7953244Swnj fcount = 1; 7963244Swnj break; 797*7633Ssam 7983244Swnj case MTFSF: case MTBSF: 7993244Swnj case MTFSR: case MTBSR: 8003244Swnj callcount = 1; 801*7633Ssam fcount = mtop->mt_count; 8023244Swnj break; 803*7633Ssam 8043244Swnj case MTREW: case MTOFFL: case MTNOP: 8053244Swnj callcount = 1; 8063244Swnj fcount = 1; 8073244Swnj break; 808*7633Ssam 8093244Swnj default: 8103244Swnj u.u_error = ENXIO; 8113244Swnj return; 8123244Swnj } 8133244Swnj if (callcount <= 0 || fcount <= 0) { 8143244Swnj u.u_error = ENXIO; 8153244Swnj return; 8163244Swnj } 8173244Swnj while (--callcount >= 0) { 818*7633Ssam tscommand(dev, tsops[mtop->mt_op], fcount); 819*7633Ssam if ((mtop->mt_op == MTFSR || mtop->mt_op == MTBSR) && 8203244Swnj bp->b_resid) { 8213244Swnj u.u_error = EIO; 8223244Swnj break; 8233244Swnj } 8243244Swnj if ((bp->b_flags&B_ERROR) || sc->sc_sts.s_xs0&TS_BOT) 8253244Swnj break; 8263244Swnj } 8273244Swnj geterror(bp); 8283244Swnj return; 829*7633Ssam 8303244Swnj case MTIOCGET: 831*7633Ssam mtget = (struct mtget *)data; 832*7633Ssam mtget->mt_dsreg = 0; 833*7633Ssam mtget->mt_erreg = sc->sc_sts.s_xs0; 834*7633Ssam mtget->mt_resid = sc->sc_resid; 835*7633Ssam mtget->mt_type = MT_ISTS; 8363244Swnj return; 837*7633Ssam 8383244Swnj default: 8393244Swnj u.u_error = ENXIO; 8403244Swnj } 8411918Swnj } 8421918Swnj 8433244Swnj #define DBSIZE 20 8443244Swnj 8453244Swnj tsdump() 8461918Swnj { 8473244Swnj register struct uba_device *ui; 8483244Swnj register struct uba_regs *up; 8495693Sroot register struct tsdevice *addr; 8503244Swnj int blk, num; 8513244Swnj int start; 8521918Swnj 8533244Swnj start = 0; 8543244Swnj num = maxfree; 8553244Swnj #define phys(a,b) ((b)((int)(a)&0x7fffffff)) 8563244Swnj if (tsdinfo[0] == 0) 8573244Swnj return (ENXIO); 8583244Swnj ui = phys(tsdinfo[0], struct uba_device *); 8593244Swnj up = phys(ui->ui_hd, struct uba_hd *)->uh_physuba; 8603327Swnj ubainit(up); 8613244Swnj DELAY(1000000); 8625693Sroot addr = (struct tsdevice *)ui->ui_physaddr; 8633244Swnj addr->tssr = 0; 8643244Swnj tswait(addr); 8653244Swnj while (num > 0) { 8663244Swnj blk = num > DBSIZE ? DBSIZE : num; 8673244Swnj tsdwrite(start, blk, addr, up); 8683244Swnj start += blk; 8693244Swnj num -= blk; 8703244Swnj } 8713244Swnj tseof(addr); 8723244Swnj tseof(addr); 8733244Swnj tswait(addr); 8743244Swnj if (addr->tssr&TS_SC) 8753244Swnj return (EIO); 8763244Swnj addr->tssr = 0; 8773244Swnj tswait(addr); 8783244Swnj return (0); 8791918Swnj } 8801918Swnj 8813244Swnj tsdwrite(dbuf, num, addr, up) 8823244Swnj register dbuf, num; 8835693Sroot register struct tsdevice *addr; 8843244Swnj struct uba_regs *up; 8851918Swnj { 8863244Swnj register struct pte *io; 8873244Swnj register int npf; 8881918Swnj 8893244Swnj tswait(addr); 8903244Swnj io = up->uba_map; 8913244Swnj npf = num+1; 8923244Swnj while (--npf != 0) 8933244Swnj *(int *)io++ = (dbuf++ | (1<<UBAMR_DPSHIFT) | UBAMR_MRV); 8943244Swnj *(int *)io = 0; 8953244Swnj #ifdef notyet 8963244Swnj addr->tsbc = -(num*NBPG); 8973244Swnj addr->tsba = 0; 8983244Swnj addr->tscs = TS_WCOM | TM_GO; 8993244Swnj #endif 9001918Swnj } 9011918Swnj 9023244Swnj tswait(addr) 9035693Sroot register struct tsdevice *addr; 9041918Swnj { 9053244Swnj register s; 9061918Swnj 9073244Swnj do 9083244Swnj s = addr->tssr; 9093244Swnj while ((s & TS_SSR) == 0); 9101918Swnj } 9111918Swnj 9123244Swnj tseof(addr) 9135693Sroot struct tsdevice *addr; 9141918Swnj { 9151918Swnj 9163244Swnj tswait(addr); 9173244Swnj #ifdef notyet 9183244Swnj addr->tscs = TS_WEOF | TM_GO; 9193244Swnj #endif 9201918Swnj } 9211900Swnj #endif 922