1*3145Swnj /* rk.c 4.27 81/03/09 */ 21899Swnj 31942Swnj #include "rk.h" 42648Swnj #if NHK > 0 53104Swnj int rkpip; /* DEBUG */ 63104Swnj int rknosval; /* DEBUG */ 71899Swnj /* 82618Swnj * RK11/RK07 disk driver 92622Swnj * 102622Swnj * This driver mimics up.c; see it for an explanation of common code. 112685Swnj * 122885Swnj * TODO: 132885Swnj * Add reading of bad sector information and disk layout from sector 1 142885Swnj * Add bad sector forwarding code 152903Swnj * Why do we lose an interrupt sometime when spinning drives down? 161899Swnj */ 171899Swnj #include "../h/param.h" 181899Swnj #include "../h/systm.h" 191899Swnj #include "../h/buf.h" 201899Swnj #include "../h/conf.h" 211899Swnj #include "../h/dir.h" 221899Swnj #include "../h/user.h" 231899Swnj #include "../h/pte.h" 241899Swnj #include "../h/map.h" 252618Swnj #include "../h/vm.h" 262981Swnj #include "../h/ubareg.h" 272981Swnj #include "../h/ubavar.h" 281899Swnj #include "../h/dk.h" 292618Swnj #include "../h/cpu.h" 302618Swnj #include "../h/cmap.h" 311899Swnj 322618Swnj #include "../h/rkreg.h" 331899Swnj 342618Swnj struct rk_softc { 352618Swnj int sc_softas; 362618Swnj int sc_ndrive; 372618Swnj int sc_wticks; 382618Swnj int sc_recal; 392648Swnj } rk_softc[NHK]; 401899Swnj 412618Swnj /* THIS SHOULD BE READ OFF THE PACK, PER DRIVE */ 422787Swnj struct size { 432618Swnj daddr_t nblocks; 442618Swnj int cyloff; 452618Swnj } rk7_sizes[] ={ 462618Swnj 15884, 0, /* A=cyl 0 thru 240 */ 472665Swnj 10032, 241, /* B=cyl 241 thru 392 */ 482665Swnj 53790, 0, /* C=cyl 0 thru 814 */ 492618Swnj 0, 0, 502618Swnj 0, 0, 512618Swnj 0, 0, 522618Swnj 27786, 393, /* G=cyl 393 thru 813 */ 532618Swnj 0, 0, 542618Swnj }; 552618Swnj /* END OF STUFF WHICH SHOULD BE READ IN PER DISK */ 561899Swnj 572618Swnj int rkprobe(), rkslave(), rkattach(), rkdgo(), rkintr(); 582981Swnj struct uba_ctlr *rkminfo[NHK]; 592981Swnj struct uba_device *rkdinfo[NRK]; 602981Swnj struct uba_device *rkip[NHK][4]; 611899Swnj 622618Swnj u_short rkstd[] = { 0777440, 0 }; 632618Swnj struct uba_driver hkdriver = 642622Swnj { rkprobe, rkslave, rkattach, rkdgo, rkstd, "rk", rkdinfo, "hk", rkminfo, 1 }; 652648Swnj struct buf rkutab[NRK]; 662648Swnj short rkcyl[NRK]; 671899Swnj 682618Swnj struct rkst { 692618Swnj short nsect; 702618Swnj short ntrak; 712618Swnj short nspc; 722618Swnj short ncyl; 732618Swnj struct size *sizes; 742618Swnj } rkst[] = { 752618Swnj NRKSECT, NRKTRK, NRKSECT*NRKTRK, NRK7CYL, rk7_sizes, 762618Swnj }; 771899Swnj 782618Swnj u_char rk_offset[16] = 792618Swnj { P400,M400,P400,M400,P800,M800,P800,M800,P1200,M1200,P1200,M1200,0,0,0,0 }; 801899Swnj 812648Swnj struct buf rrkbuf[NRK]; 822618Swnj 832618Swnj #define b_cylin b_resid 842618Swnj 852618Swnj #ifdef INTRLVE 862618Swnj daddr_t dkblock(); 872618Swnj #endif 882618Swnj 892618Swnj int rkwstart, rkwatch(); 902618Swnj 912618Swnj rkprobe(reg) 922618Swnj caddr_t reg; 931899Swnj { 942618Swnj register int br, cvec; 951899Swnj 962618Swnj #ifdef lint 972618Swnj br = 0; cvec = br; br = cvec; 982618Swnj #endif 992618Swnj ((struct rkdevice *)reg)->rkcs1 = RK_CDT|RK_IE|RK_CRDY; 1002618Swnj DELAY(10); 1012618Swnj ((struct rkdevice *)reg)->rkcs1 = RK_CDT; 1022618Swnj return (1); 1032618Swnj } 1041899Swnj 1052618Swnj rkslave(ui, reg) 1062981Swnj struct uba_device *ui; 1072618Swnj caddr_t reg; 1082618Swnj { 1092618Swnj register struct rkdevice *rkaddr = (struct rkdevice *)reg; 1101899Swnj 1112894Swnj rkaddr->rkcs1 = RK_CDT|RK_CCLR; 1122618Swnj rkaddr->rkcs2 = ui->ui_slave; 1132957Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 1142622Swnj rkwait(rkaddr); 1152894Swnj DELAY(50); 1162894Swnj if (rkaddr->rkcs2&RK_NED || (rkaddr->rkds&RK_SVAL) == 0) { 1172618Swnj rkaddr->rkcs1 = RK_CDT|RK_CCLR; 1182618Swnj return (0); 1192618Swnj } 1202618Swnj return (1); 1212618Swnj } 1222618Swnj 1232618Swnj rkattach(ui) 1242981Swnj register struct uba_device *ui; 1252618Swnj { 1262618Swnj 1272618Swnj if (rkwstart == 0) { 1282758Swnj timeout(rkwatch, (caddr_t)0, hz); 1292618Swnj rkwstart++; 1302618Swnj } 1312618Swnj if (ui->ui_dk >= 0) 1322758Swnj dk_mspw[ui->ui_dk] = 1.0 / (60 * NRKSECT * 256); 1332618Swnj rkip[ui->ui_ctlr][ui->ui_slave] = ui; 1342618Swnj rk_softc[ui->ui_ctlr].sc_ndrive++; 1352618Swnj rkcyl[ui->ui_unit] = -1; 1362618Swnj } 1372618Swnj 1381899Swnj rkstrategy(bp) 1392618Swnj register struct buf *bp; 1401899Swnj { 1412981Swnj register struct uba_device *ui; 1422618Swnj register struct rkst *st; 1432618Swnj register int unit; 1442618Swnj register struct buf *dp; 1452618Swnj int xunit = minor(bp->b_dev) & 07; 1462618Swnj long bn, sz; 1471899Swnj 1482618Swnj sz = (bp->b_bcount+511) >> 9; 1492618Swnj unit = dkunit(bp); 1502648Swnj if (unit >= NRK) 1512618Swnj goto bad; 1522618Swnj ui = rkdinfo[unit]; 1532618Swnj if (ui == 0 || ui->ui_alive == 0) 1542618Swnj goto bad; 1552618Swnj st = &rkst[ui->ui_type]; 1562618Swnj if (bp->b_blkno < 0 || 1572618Swnj (bn = dkblock(bp))+sz > st->sizes[xunit].nblocks) 1582618Swnj goto bad; 1592618Swnj bp->b_cylin = bn/st->nspc + st->sizes[xunit].cyloff; 1602618Swnj (void) spl5(); 1612618Swnj dp = &rkutab[ui->ui_unit]; 1622618Swnj disksort(dp, bp); 1632618Swnj if (dp->b_active == 0) { 1642618Swnj (void) rkustart(ui); 1652618Swnj bp = &ui->ui_mi->um_tab; 1662618Swnj if (bp->b_actf && bp->b_active == 0) 1672618Swnj (void) rkstart(ui->ui_mi); 1681899Swnj } 1692618Swnj (void) spl0(); 1702618Swnj return; 1712618Swnj 1722618Swnj bad: 1732618Swnj bp->b_flags |= B_ERROR; 1742618Swnj iodone(bp); 1752618Swnj return; 1761899Swnj } 1771899Swnj 1782618Swnj rkustart(ui) 1792981Swnj register struct uba_device *ui; 1802618Swnj { 1812618Swnj register struct buf *bp, *dp; 1822981Swnj register struct uba_ctlr *um; 1832618Swnj register struct rkdevice *rkaddr; 1842618Swnj int didie = 0; 1851899Swnj 1862618Swnj if (ui == 0) 1872618Swnj return (0); 1882618Swnj dk_busy &= ~(1<<ui->ui_dk); 1892618Swnj dp = &rkutab[ui->ui_unit]; 1902618Swnj um = ui->ui_mi; 1912894Swnj rkaddr = (struct rkdevice *)um->um_addr; 1922618Swnj if (um->um_tab.b_active) { 1932618Swnj rk_softc[um->um_ctlr].sc_softas |= 1<<ui->ui_slave; 1942618Swnj return (0); 1952618Swnj } 1962618Swnj rkaddr->rkcs1 = RK_CDT|RK_CERR; 1972618Swnj rkaddr->rkcs2 = ui->ui_slave; 1982957Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 1992618Swnj rkwait(rkaddr); 2002903Swnj if ((bp = dp->b_actf) == NULL) { 2012903Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 2022903Swnj rkwait(rkaddr); 2032903Swnj return (0); 2042903Swnj } 2052618Swnj if ((rkaddr->rkds & RK_VV) == 0) { 2062618Swnj /* SHOULD WARN SYSTEM THAT THIS HAPPENED */ 2072894Swnj rkaddr->rkcs1 = RK_CDT|RK_PACK|RK_GO; 2082618Swnj rkwait(rkaddr); 2092618Swnj } 2102903Swnj if (dp->b_active) 2112903Swnj goto done; 2122903Swnj dp->b_active = 1; 2132894Swnj if ((rkaddr->rkds & RK_DREADY) != RK_DREADY) 2142894Swnj goto done; 2152618Swnj if (rk_softc[um->um_ctlr].sc_ndrive == 1) 2162618Swnj goto done; 2172618Swnj if (bp->b_cylin == rkcyl[ui->ui_unit]) 2182618Swnj goto done; 2192618Swnj rkaddr->rkcyl = bp->b_cylin; 2202618Swnj rkcyl[ui->ui_unit] = bp->b_cylin; 2212618Swnj rkaddr->rkcs1 = RK_CDT|RK_IE|RK_SEEK|RK_GO; 2222618Swnj didie = 1; 2232618Swnj if (ui->ui_dk >= 0) { 2242618Swnj dk_busy |= 1<<ui->ui_dk; 2252618Swnj dk_seek[ui->ui_dk]++; 2262618Swnj } 2272618Swnj goto out; 2282618Swnj done: 2292618Swnj if (dp->b_active != 2) { 2302618Swnj dp->b_forw = NULL; 2312618Swnj if (um->um_tab.b_actf == NULL) 2322618Swnj um->um_tab.b_actf = dp; 2332618Swnj else 2342618Swnj um->um_tab.b_actl->b_forw = dp; 2352618Swnj um->um_tab.b_actl = dp; 2362618Swnj dp->b_active = 2; 2372618Swnj } 2382618Swnj out: 2392618Swnj return (didie); 2402618Swnj } 2412618Swnj 2422618Swnj rkstart(um) 2432981Swnj register struct uba_ctlr *um; 2441899Swnj { 2452618Swnj register struct buf *bp, *dp; 2462981Swnj register struct uba_device *ui; 2472618Swnj register struct rkdevice *rkaddr; 2482618Swnj struct rkst *st; 2491899Swnj daddr_t bn; 2502618Swnj int sn, tn, cmd; 2511899Swnj 2522618Swnj loop: 2532618Swnj if ((dp = um->um_tab.b_actf) == NULL) 2542618Swnj return (0); 2552618Swnj if ((bp = dp->b_actf) == NULL) { 2562618Swnj um->um_tab.b_actf = dp->b_forw; 2572618Swnj goto loop; 2581899Swnj } 2592618Swnj um->um_tab.b_active++; 2602618Swnj ui = rkdinfo[dkunit(bp)]; 2612618Swnj bn = dkblock(bp); 2622618Swnj st = &rkst[ui->ui_type]; 2632618Swnj sn = bn%st->nspc; 2642618Swnj tn = sn/st->nsect; 2652618Swnj sn %= st->nsect; 2662618Swnj rkaddr = (struct rkdevice *)ui->ui_addr; 2672957Swnj retry: 2682618Swnj rkaddr->rkcs1 = RK_CDT|RK_CERR; 2692618Swnj rkaddr->rkcs2 = ui->ui_slave; 2702957Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 2712618Swnj rkwait(rkaddr); 2722957Swnj if ((rkaddr->rkds&RK_SVAL) == 0) { 2732957Swnj rknosval++; 2742957Swnj goto nosval; 2752894Swnj } 2762957Swnj if (rkaddr->rkds&RK_PIP) { 2772957Swnj rkpip++; 2782957Swnj goto retry; 2792957Swnj } 2802894Swnj if ((rkaddr->rkds&RK_DREADY) != RK_DREADY) { 2812927Swnj printf("rk%d: not ready", dkunit(bp)); 2822894Swnj if ((rkaddr->rkds&RK_DREADY) != RK_DREADY) { 2832894Swnj printf("\n"); 2842894Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 2852894Swnj rkwait(rkaddr); 2862894Swnj rkaddr->rkcs1 = RK_CDT|RK_CERR; 2872894Swnj rkwait(rkaddr); 2882894Swnj um->um_tab.b_active = 0; 2892894Swnj um->um_tab.b_errcnt = 0; 2902894Swnj dp->b_actf = bp->av_forw; 2912894Swnj dp->b_active = 0; 2922894Swnj bp->b_flags |= B_ERROR; 2932894Swnj iodone(bp); 2942894Swnj goto loop; 2952894Swnj } 2962894Swnj printf(" (came back!)\n"); 2972894Swnj } 2982957Swnj nosval: 2992618Swnj rkaddr->rkcyl = bp->b_cylin; 3002618Swnj rkcyl[ui->ui_unit] = bp->b_cylin; 3012618Swnj rkaddr->rkda = (tn << 8) + sn; 3022618Swnj rkaddr->rkwc = -bp->b_bcount / sizeof (short); 3032618Swnj if (bp->b_flags & B_READ) 3042618Swnj cmd = RK_CDT|RK_IE|RK_READ|RK_GO; 3052618Swnj else 3062618Swnj cmd = RK_CDT|RK_IE|RK_WRITE|RK_GO; 3072618Swnj um->um_cmd = cmd; 3083104Swnj (void) ubago(ui); 3092618Swnj return (1); 3101899Swnj } 3111899Swnj 3122618Swnj rkdgo(um) 3132981Swnj register struct uba_ctlr *um; 3141899Swnj { 3152618Swnj register struct rkdevice *rkaddr = (struct rkdevice *)um->um_addr; 3161899Swnj 3172618Swnj rkaddr->rkba = um->um_ubinfo; 3182618Swnj rkaddr->rkcs1 = um->um_cmd|((um->um_ubinfo>>8)&0x300); 3192618Swnj } 3202618Swnj 3212710Swnj rkintr(rk11) 3222618Swnj int rk11; 3232618Swnj { 3242981Swnj register struct uba_ctlr *um = rkminfo[rk11]; 3252981Swnj register struct uba_device *ui; 3262618Swnj register struct rkdevice *rkaddr = (struct rkdevice *)um->um_addr; 3272618Swnj register struct buf *bp, *dp; 3282618Swnj int unit; 3292618Swnj struct rk_softc *sc = &rk_softc[um->um_ctlr]; 3302618Swnj int as = (rkaddr->rkatt >> 8) | sc->sc_softas; 3312618Swnj int needie = 1; 3322618Swnj 3332618Swnj sc->sc_wticks = 0; 3342618Swnj sc->sc_softas = 0; 3352618Swnj if (um->um_tab.b_active) { 3362957Swnj ubadone(um); 3372618Swnj dp = um->um_tab.b_actf; 3382618Swnj bp = dp->b_actf; 3392618Swnj ui = rkdinfo[dkunit(bp)]; 3402618Swnj dk_busy &= ~(1 << ui->ui_dk); 3412618Swnj if (rkaddr->rkcs1 & RK_CERR) { 3422618Swnj int recal; 3432618Swnj u_short ds = rkaddr->rkds; 3442618Swnj u_short cs2 = rkaddr->rkcs2; 3452618Swnj u_short er = rkaddr->rker; 3462685Swnj if (ds & RK_WLE) { 3472927Swnj printf("rk%d: write locked\n", dkunit(bp)); 3482685Swnj bp->b_flags |= B_ERROR; 3492685Swnj } else if (++um->um_tab.b_errcnt > 28 || 3502676Swnj ds&RKDS_HARD || er&RKER_HARD || cs2&RKCS2_HARD) { 3512927Swnj harderr(bp, "rk"); 3522927Swnj printf("cs2=%b ds=%b er=%b\n", 3532894Swnj cs2, RKCS2_BITS, ds, 3542676Swnj RKDS_BITS, er, RKER_BITS); 355*3145Swnj bp->b_flags |= B_ERROR; 356*3145Swnj sc->sc_recal = 0; 3572676Swnj } else 3582618Swnj um->um_tab.b_active = 0; 3592618Swnj if (cs2&RK_MDS) { 3602618Swnj rkaddr->rkcs2 = RK_SCLR; 3612618Swnj goto retry; 3621899Swnj } 3632618Swnj recal = 0; 3642618Swnj if (ds&RK_DROT || er&(RK_OPI|RK_SKI|RK_UNS) || 3652618Swnj (um->um_tab.b_errcnt&07) == 4) 3662618Swnj recal = 1; 3672618Swnj if ((er & (RK_DCK|RK_ECH)) == RK_DCK) 3682618Swnj if (rkecc(ui)) 3692618Swnj return; 3702618Swnj rkaddr->rkcs1 = RK_CDT|RK_CCLR; 3712618Swnj rkaddr->rkcs2 = ui->ui_slave; 3722618Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 3732618Swnj rkwait(rkaddr); 3742618Swnj if (recal && um->um_tab.b_active == 0) { 3752618Swnj rkaddr->rkcs1 = RK_CDT|RK_IE|RK_RECAL|RK_GO; 3762618Swnj rkcyl[ui->ui_unit] = -1; 3772957Swnj sc->sc_recal = 0; 3782957Swnj goto nextrecal; 3792618Swnj } 3801899Swnj } 3812618Swnj retry: 3822957Swnj switch (sc->sc_recal) { 3832957Swnj 3842957Swnj case 1: 3852957Swnj rkaddr->rkcyl = bp->b_cylin; 3862957Swnj rkcyl[ui->ui_unit] = bp->b_cylin; 3872957Swnj rkaddr->rkcs1 = RK_CDT|RK_IE|RK_SEEK|RK_GO; 3882957Swnj goto nextrecal; 3892957Swnj 3902957Swnj case 2: 3912957Swnj if (um->um_tab.b_errcnt < 16 || 3922957Swnj (bp->b_flags&B_READ) != 0) 3932957Swnj break; 3942957Swnj rkaddr->rkatt = rk_offset[um->um_tab.b_errcnt & 017]; 3952957Swnj rkaddr->rkcs1 = RK_CDT|RK_IE|RK_OFFSET|RK_GO; 3962957Swnj /* fall into ... */ 3972957Swnj nextrecal: 3982957Swnj sc->sc_recal++; 3992957Swnj rkwait(rkaddr); 4002957Swnj um->um_tab.b_active = 1; 4012957Swnj return; 4022957Swnj 4032957Swnj case 3: 4042618Swnj sc->sc_recal = 0; 4052618Swnj um->um_tab.b_active = 0; 4062957Swnj break; 4071899Swnj } 4082618Swnj if (um->um_tab.b_active) { 4092618Swnj um->um_tab.b_active = 0; 4102618Swnj um->um_tab.b_errcnt = 0; 4112618Swnj um->um_tab.b_actf = dp->b_forw; 4122618Swnj dp->b_active = 0; 4132618Swnj dp->b_errcnt = 0; 4142618Swnj dp->b_actf = bp->av_forw; 4152618Swnj bp->b_resid = -rkaddr->rkwc * sizeof(short); 4162618Swnj iodone(bp); 4172618Swnj if (dp->b_actf) 4182618Swnj if (rkustart(ui)) 4192618Swnj needie = 0; 4201899Swnj } 4212618Swnj as &= ~(1<<ui->ui_slave); 4221899Swnj } 4232618Swnj for (unit = 0; as; as >>= 1, unit++) 4242981Swnj if (as & 1) { 4252981Swnj ui = rkip[rk11][unit]; 4262981Swnj if (ui) { 4272981Swnj if (rkustart(rkip[rk11][unit])) 4282981Swnj needie = 0; 4292981Swnj } else { 4302981Swnj rkaddr->rkcs1 = RK_CERR|RK_CDT; 4312981Swnj rkaddr->rkcs2 = unit; 4322981Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 4332981Swnj rkwait(rkaddr); 4342981Swnj } 4352981Swnj } 4362618Swnj if (um->um_tab.b_actf && um->um_tab.b_active == 0) 4372618Swnj if (rkstart(um)) 4382618Swnj needie = 0; 4392618Swnj if (needie) 4402618Swnj rkaddr->rkcs1 = RK_CDT|RK_IE; 4411899Swnj } 4421899Swnj 4432618Swnj rkwait(addr) 4442618Swnj register struct rkdevice *addr; 4452618Swnj { 4461899Swnj 4472618Swnj while ((addr->rkcs1 & RK_CRDY) == 0) 4482618Swnj ; 4492618Swnj } 4502618Swnj 4512618Swnj rkread(dev) 4522618Swnj dev_t dev; 4531899Swnj { 4542618Swnj register int unit = minor(dev) >> 3; 4552618Swnj 4562648Swnj if (unit >= NRK) 4572618Swnj u.u_error = ENXIO; 4582618Swnj else 4592618Swnj physio(rkstrategy, &rrkbuf[unit], dev, B_READ, minphys); 4601899Swnj } 4611899Swnj 4622618Swnj rkwrite(dev) 4632618Swnj dev_t dev; 4641899Swnj { 4652618Swnj register int unit = minor(dev) >> 3; 4661899Swnj 4672648Swnj if (unit >= NRK) 4682618Swnj u.u_error = ENXIO; 4692618Swnj else 4702618Swnj physio(rkstrategy, &rrkbuf[unit], dev, B_WRITE, minphys); 4711899Swnj } 4721899Swnj 4732618Swnj rkecc(ui) 4742981Swnj register struct uba_device *ui; 4751899Swnj { 4762618Swnj register struct rkdevice *rk = (struct rkdevice *)ui->ui_addr; 4772618Swnj register struct buf *bp = rkutab[ui->ui_unit].b_actf; 4782981Swnj register struct uba_ctlr *um = ui->ui_mi; 4792618Swnj register struct rkst *st; 4802618Swnj struct uba_regs *ubp = ui->ui_hd->uh_uba; 4812618Swnj register int i; 4822618Swnj caddr_t addr; 4832618Swnj int reg, bit, byte, npf, mask, o, cmd, ubaddr; 4842618Swnj int bn, cn, tn, sn; 4851899Swnj 4862618Swnj npf = btop((rk->rkwc * sizeof(short)) + bp->b_bcount) - 1; 4872618Swnj reg = btop(um->um_ubinfo&0x3ffff) + npf; 4882618Swnj o = (int)bp->b_un.b_addr & PGOFSET; 4892940Swnj printf("rk%d%c: soft ecc sn%d\n", dkunit(bp), 4902885Swnj 'a'+(minor(bp->b_dev)&07), bp->b_blkno + npf); 4912618Swnj mask = rk->rkec2; 4922724Swnj ubapurge(um); 4932618Swnj i = rk->rkec1 - 1; /* -1 makes 0 origin */ 4942618Swnj bit = i&07; 4952618Swnj i = (i&~07)>>3; 4962618Swnj byte = i + o; 4972618Swnj while (i < 512 && (int)ptob(npf)+i < bp->b_bcount && bit > -11) { 4982618Swnj addr = ptob(ubp->uba_map[reg+btop(byte)].pg_pfnum)+ 4992618Swnj (byte & PGOFSET); 5002618Swnj putmemc(addr, getmemc(addr)^(mask<<bit)); 5012618Swnj byte++; 5022618Swnj i++; 5032618Swnj bit -= 8; 5042618Swnj } 5052618Swnj um->um_tab.b_active++; /* Either complete or continuing... */ 5062618Swnj if (rk->rkwc == 0) 5072618Swnj return (0); 5082622Swnj #ifdef notdef 5092622Swnj rk->rkcs1 |= RK_GO; 5102622Swnj #else 5112618Swnj rk->rkcs1 = RK_CDT|RK_CCLR; 5122618Swnj rk->rkcs2 = ui->ui_slave; 5132618Swnj rk->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 5142618Swnj rkwait(rk); 5152618Swnj bn = dkblock(bp); 5162618Swnj st = &rkst[ui->ui_type]; 5172618Swnj cn = bp->b_cylin; 5182618Swnj sn = bn%st->nspc + npf + 1; 5192618Swnj tn = sn/st->nsect; 5202618Swnj sn %= st->nsect; 5212618Swnj cn += tn/st->ntrak; 5222618Swnj tn %= st->ntrak; 5232618Swnj rk->rkcyl = cn; 5242618Swnj rk->rkda = (tn << 8) | sn; 5252618Swnj ubaddr = (int)ptob(reg+1) + o; 5262618Swnj rk->rkba = ubaddr; 5272618Swnj cmd = (ubaddr >> 8) & 0x300; 5282618Swnj cmd |= RK_CDT|RK_IE|RK_GO|RK_READ; 5292618Swnj rk->rkcs1 = cmd; 5302622Swnj #endif 5312618Swnj return (1); 5321899Swnj } 5331899Swnj 5342618Swnj rkreset(uban) 5352927Swnj int uban; 5361899Swnj { 5372981Swnj register struct uba_ctlr *um; 5382981Swnj register struct uba_device *ui; 5392618Swnj register rk11, unit; 5401899Swnj 5412648Swnj for (rk11 = 0; rk11 < NHK; rk11++) { 5422618Swnj if ((um = rkminfo[rk11]) == 0 || um->um_ubanum != uban || 5432618Swnj um->um_alive == 0) 5442618Swnj continue; 5452927Swnj printf(" hk%d", rk11); 5462618Swnj um->um_tab.b_active = 0; 5472618Swnj um->um_tab.b_actf = um->um_tab.b_actl = 0; 5482618Swnj rk_softc[um->um_ctlr].sc_recal = 0; 5492618Swnj if (um->um_ubinfo) { 5502618Swnj printf("<%d>", (um->um_ubinfo>>28)&0xf); 5512618Swnj ubadone(um); 5522618Swnj } 5532648Swnj for (unit = 0; unit < NHK; unit++) { 5542618Swnj if ((ui = rkdinfo[unit]) == 0) 5552618Swnj continue; 5562618Swnj if (ui->ui_alive == 0) 5572618Swnj continue; 5582618Swnj rkutab[unit].b_active = 0; 5592618Swnj (void) rkustart(ui); 5602618Swnj } 5612618Swnj (void) rkstart(um); 5622618Swnj } 5631899Swnj } 5642380Swnj 5652618Swnj rkwatch() 5662380Swnj { 5672981Swnj register struct uba_ctlr *um; 5682618Swnj register rk11, unit; 5692618Swnj register struct rk_softc *sc; 5702380Swnj 5712758Swnj timeout(rkwatch, (caddr_t)0, hz); 5722648Swnj for (rk11 = 0; rk11 < NHK; rk11++) { 5732618Swnj um = rkminfo[rk11]; 5742618Swnj if (um == 0 || um->um_alive == 0) 5752618Swnj continue; 5762618Swnj sc = &rk_softc[rk11]; 5772618Swnj if (um->um_tab.b_active == 0) { 5782648Swnj for (unit = 0; unit < NRK; unit++) 5792622Swnj if (rkutab[unit].b_active && 5802622Swnj rkdinfo[unit]->ui_mi == um) 5812618Swnj goto active; 5822618Swnj sc->sc_wticks = 0; 5832618Swnj continue; 5842618Swnj } 5852618Swnj active: 5862618Swnj sc->sc_wticks++; 5872618Swnj if (sc->sc_wticks >= 20) { 5882618Swnj sc->sc_wticks = 0; 5892927Swnj printf("hk%d: lost interrupt\n", rk11); 5902648Swnj ubareset(um->um_ubanum); 5912618Swnj } 5922618Swnj } 5932380Swnj } 5942618Swnj 5952618Swnj #define DBSIZE 20 5962618Swnj 5972618Swnj rkdump(dev) 5982618Swnj dev_t dev; 5992618Swnj { 6002618Swnj struct rkdevice *rkaddr; 6012618Swnj char *start; 6022618Swnj int num, blk, unit; 6032618Swnj struct size *sizes; 6042618Swnj register struct uba_regs *uba; 6052981Swnj register struct uba_device *ui; 6062618Swnj register short *rp; 6072618Swnj struct rkst *st; 6082618Swnj 6092618Swnj unit = minor(dev) >> 3; 6102885Swnj if (unit >= NRK) 6112885Swnj return (ENXIO); 6122618Swnj #define phys(cast, addr) ((cast)((int)addr & 0x7fffffff)) 6132981Swnj ui = phys(struct uba_device *, rkdinfo[unit]); 6142885Swnj if (ui->ui_alive == 0) 6152885Swnj return (ENXIO); 6162618Swnj uba = phys(struct uba_hd *, ui->ui_hd)->uh_physuba; 6172618Swnj #if VAX780 6182618Swnj if (cpu == VAX_780) 6192618Swnj ubainit(uba); 6201899Swnj #endif 6212618Swnj rkaddr = (struct rkdevice *)ui->ui_physaddr; 6222618Swnj num = maxfree; 6232618Swnj start = 0; 6242618Swnj rkaddr->rkcs1 = RK_CDT|RK_CERR; 6252618Swnj rkaddr->rkcs2 = unit; 6262618Swnj rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO; 6272618Swnj rkwait(rkaddr); 6282618Swnj if ((rkaddr->rkds & RK_VV) == 0) { 6292618Swnj rkaddr->rkcs1 = RK_CDT|RK_IE|RK_PACK|RK_GO; 6302618Swnj rkwait(rkaddr); 6312618Swnj } 6322618Swnj st = &rkst[ui->ui_type]; 6332618Swnj sizes = phys(struct size *, st->sizes); 6342885Swnj if (dumplo < 0 || dumplo + num >= sizes[minor(dev)&07].nblocks) 6352885Swnj return (EINVAL); 6362618Swnj while (num > 0) { 6372618Swnj register struct pte *io; 6382618Swnj register int i; 6392618Swnj int cn, sn, tn; 6402618Swnj daddr_t bn; 6412618Swnj 6422618Swnj blk = num > DBSIZE ? DBSIZE : num; 6432618Swnj io = uba->uba_map; 6442618Swnj for (i = 0; i < blk; i++) 6452981Swnj *(int *)io++ = (btop(start)+i) | (1<<21) | UBAMR_MRV; 6462618Swnj *(int *)io = 0; 6472618Swnj bn = dumplo + btop(start); 6482618Swnj cn = bn/st->nspc + sizes[minor(dev)&07].cyloff; 6492618Swnj sn = bn%st->nspc; 6502618Swnj tn = sn/st->nsect; 6512618Swnj sn = sn%st->nsect; 6522618Swnj rkaddr->rkcyl = cn; 6532618Swnj rp = (short *) &rkaddr->rkda; 6542618Swnj *rp = (tn << 8) + sn; 6552618Swnj *--rp = 0; 6562618Swnj *--rp = -blk*NBPG / sizeof (short); 6572618Swnj *--rp = RK_CDT|RK_GO|RK_WRITE; 6582618Swnj rkwait(rkaddr); 6592885Swnj if (rkaddr->rkcs1 & RK_CERR) 6602885Swnj return (EIO); 6612618Swnj start += blk*NBPG; 6622618Swnj num -= blk; 6632618Swnj } 6642618Swnj return (0); 6652618Swnj } 6662618Swnj #endif 667