xref: /csrg-svn/sys/vax/uba/rk.c (revision 2885)
1*2885Swnj /*	rk.c	4.18	03/03/81	*/
21899Swnj 
31942Swnj #include "rk.h"
42648Swnj #if NHK > 0
51899Swnj /*
62618Swnj  * RK11/RK07 disk driver
72622Swnj  *
82622Swnj  * This driver mimics up.c; see it for an explanation of common code.
92685Swnj  *
10*2885Swnj  * TODO:
11*2885Swnj  *	Correct to handle spun-down drives
12*2885Swnj  *	Check write lock handling
13*2885Swnj  *	Add reading of bad sector information and disk layout from sector 1
14*2885Swnj  *	Add bad sector forwarding code
15*2885Swnj  *	Fix drive recognition
161899Swnj  */
172618Swnj #define	DELAY(i)		{ register int j; j = i; while (--j > 0); }
181899Swnj #include "../h/param.h"
191899Swnj #include "../h/systm.h"
201899Swnj #include "../h/buf.h"
211899Swnj #include "../h/conf.h"
221899Swnj #include "../h/dir.h"
231899Swnj #include "../h/user.h"
241899Swnj #include "../h/pte.h"
251899Swnj #include "../h/map.h"
262618Swnj #include "../h/vm.h"
271899Swnj #include "../h/uba.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();
582648Swnj struct	uba_minfo *rkminfo[NHK];
592648Swnj struct	uba_dinfo *rkdinfo[NRK];
602648Swnj struct	uba_dinfo *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)
1062618Swnj 	struct uba_dinfo *ui;
1072618Swnj 	caddr_t reg;
1082618Swnj {
1092618Swnj 	register struct rkdevice *rkaddr = (struct rkdevice *)reg;
1101899Swnj 
1112618Swnj 	rkaddr->rkcs1 = RK_CDT;
1122618Swnj 	rkaddr->rkcs2 = ui->ui_slave;
1132622Swnj 	rkwait(rkaddr);
1142622Swnj /* SHOULD TRY THIS BY PULLING A PLUG */
1152622Swnj /* A DELAY OR SOMETHING MAY BE NEEDED */
1162618Swnj 	if (rkaddr->rkcs2&RK_NED) {
1172618Swnj 		rkaddr->rkcs1 = RK_CDT|RK_CCLR;
1182618Swnj 		return (0);
1192618Swnj 	}
1202618Swnj 	return (1);
1212618Swnj }
1222618Swnj 
1232618Swnj rkattach(ui)
1242618Swnj 	register struct uba_dinfo *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 {
1412618Swnj 	register struct uba_dinfo *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)
1792618Swnj 	register struct uba_dinfo *ui;
1802618Swnj {
1812618Swnj 	register struct buf *bp, *dp;
1822618Swnj 	register struct uba_minfo *um;
1832618Swnj 	register struct rkdevice *rkaddr;
1842618Swnj 	register struct rkst *st;
1852618Swnj 	daddr_t bn;
1862618Swnj 	int sn, csn;
1872618Swnj 	int didie = 0;
1881899Swnj 
1892618Swnj 	if (ui == 0)
1902618Swnj 		return (0);
1912618Swnj 	dk_busy &= ~(1<<ui->ui_dk);
1922618Swnj 	dp = &rkutab[ui->ui_unit];
1932618Swnj 	if ((bp = dp->b_actf) == NULL)
1942618Swnj 		goto out;
1952618Swnj 	um = ui->ui_mi;
1962618Swnj 	if (um->um_tab.b_active) {
1972618Swnj 		rk_softc[um->um_ctlr].sc_softas |= 1<<ui->ui_slave;
1982618Swnj 		return (0);
1992618Swnj 	}
2002618Swnj 	rkaddr = (struct rkdevice *)um->um_addr;
2012618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_CERR;
2022618Swnj 	rkaddr->rkcs2 = ui->ui_slave;
2032618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_SELECT|RK_GO;
2042618Swnj 	rkwait(rkaddr);
2052618Swnj 	if (dp->b_active)
2062618Swnj 		goto done;
2072618Swnj 	dp->b_active = 1;
2082618Swnj 	if ((rkaddr->rkds & RK_VV) == 0) {
2092618Swnj 		/* SHOULD WARN SYSTEM THAT THIS HAPPENED */
2102618Swnj 		rkaddr->rkcs1 = RK_CDT|RK_IE|RK_PACK|RK_GO;
2112618Swnj 		rkwait(rkaddr);
2122618Swnj 		didie = 1;
2132618Swnj 	}
2142618Swnj 	if (rk_softc[um->um_ctlr].sc_ndrive == 1)
2152618Swnj 		goto done;
2162618Swnj 	if (bp->b_cylin == rkcyl[ui->ui_unit])
2172618Swnj 		goto done;
2182618Swnj 	rkaddr->rkcyl = bp->b_cylin;
2192618Swnj 	rkcyl[ui->ui_unit] = bp->b_cylin;
2202618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_IE|RK_SEEK|RK_GO;
2212618Swnj 	didie = 1;
2222618Swnj 	if (ui->ui_dk >= 0) {
2232618Swnj 		dk_busy |= 1<<ui->ui_dk;
2242618Swnj 		dk_seek[ui->ui_dk]++;
2252618Swnj 	}
2262618Swnj 	goto out;
2272618Swnj done:
2282618Swnj 	if (dp->b_active != 2) {
2292618Swnj 		dp->b_forw = NULL;
2302618Swnj 		if (um->um_tab.b_actf == NULL)
2312618Swnj 			um->um_tab.b_actf = dp;
2322618Swnj 		else
2332618Swnj 			um->um_tab.b_actl->b_forw = dp;
2342618Swnj 		um->um_tab.b_actl = dp;
2352618Swnj 		dp->b_active = 2;
2362618Swnj 	}
2372618Swnj out:
2382618Swnj 	return (didie);
2392618Swnj }
2402618Swnj 
2412618Swnj rkstart(um)
2422618Swnj 	register struct uba_minfo *um;
2431899Swnj {
2442618Swnj 	register struct buf *bp, *dp;
2452618Swnj 	register struct uba_dinfo *ui;
2462618Swnj 	register struct rkdevice *rkaddr;
2472618Swnj 	struct rkst *st;
2481899Swnj 	daddr_t bn;
2492618Swnj 	int sn, tn, cmd;
2501899Swnj 
2512618Swnj loop:
2522618Swnj 	if ((dp = um->um_tab.b_actf) == NULL)
2532618Swnj 		return (0);
2542618Swnj 	if ((bp = dp->b_actf) == NULL) {
2552618Swnj 		um->um_tab.b_actf = dp->b_forw;
2562618Swnj 		goto loop;
2571899Swnj 	}
2582618Swnj 	um->um_tab.b_active++;
2592618Swnj 	ui = rkdinfo[dkunit(bp)];
2602618Swnj 	bn = dkblock(bp);
2612618Swnj 	st = &rkst[ui->ui_type];
2622618Swnj 	sn = bn%st->nspc;
2632618Swnj 	tn = sn/st->nsect;
2642618Swnj 	sn %= st->nsect;
2652618Swnj 	rkaddr = (struct rkdevice *)ui->ui_addr;
2662618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_CERR;
2672618Swnj 	rkaddr->rkcs2 = ui->ui_slave;
2682618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_SELECT|RK_GO;
2692618Swnj 	rkwait(rkaddr);
2702618Swnj 	if (um->um_tab.b_errcnt >= 16 && (bp->b_flags&B_READ) != 0) {
2712618Swnj 		rkaddr->rkatt = rk_offset[um->um_tab.b_errcnt & 017];
2722618Swnj 		rkaddr->rkcs1 = RK_CDT|RK_OFFSET|RK_GO;
2732618Swnj 		rkwait(rkaddr);
2741899Swnj 	}
2752618Swnj 	rkaddr->rkcyl = bp->b_cylin;
2762618Swnj 	rkcyl[ui->ui_unit] = bp->b_cylin;
2772618Swnj 	rkaddr->rkda = (tn << 8) + sn;
2782618Swnj 	rkaddr->rkwc = -bp->b_bcount / sizeof (short);
2792618Swnj 	if (bp->b_flags & B_READ)
2802618Swnj 		cmd = RK_CDT|RK_IE|RK_READ|RK_GO;
2812618Swnj 	else
2822618Swnj 		cmd = RK_CDT|RK_IE|RK_WRITE|RK_GO;
2832618Swnj 	um->um_cmd = cmd;
2842618Swnj 	ubago(ui);
2852618Swnj 	return (1);
2861899Swnj }
2871899Swnj 
2882618Swnj rkdgo(um)
2892618Swnj 	register struct uba_minfo *um;
2901899Swnj {
2912618Swnj 	register struct rkdevice *rkaddr = (struct rkdevice *)um->um_addr;
2921899Swnj 
2932618Swnj 	rkaddr->rkba = um->um_ubinfo;
2942618Swnj 	rkaddr->rkcs1 = um->um_cmd|((um->um_ubinfo>>8)&0x300);
2952618Swnj }
2962618Swnj 
2972710Swnj rkintr(rk11)
2982618Swnj 	int rk11;
2992618Swnj {
3002618Swnj 	register struct uba_minfo *um = rkminfo[rk11];
3012618Swnj 	register struct uba_dinfo *ui;
3022618Swnj 	register struct rkdevice *rkaddr = (struct rkdevice *)um->um_addr;
3032618Swnj 	register struct buf *bp, *dp;
3042618Swnj 	int unit;
3052618Swnj 	struct rk_softc *sc = &rk_softc[um->um_ctlr];
3062618Swnj 	int as = (rkaddr->rkatt >> 8) | sc->sc_softas;
3072618Swnj 	int needie = 1;
3082618Swnj 
3092618Swnj 	sc->sc_wticks = 0;
3102618Swnj 	sc->sc_softas = 0;
3112618Swnj 	if (um->um_tab.b_active) {
3122618Swnj 		dp = um->um_tab.b_actf;
3132618Swnj 		bp = dp->b_actf;
3142618Swnj 		ui = rkdinfo[dkunit(bp)];
3152618Swnj 		dk_busy &= ~(1 << ui->ui_dk);
3162618Swnj 		if (rkaddr->rkcs1 & RK_CERR) {
3172618Swnj 			int recal;
3182685Swnj #ifdef notdef
3192685Swnj 			int del = 0;
3202685Swnj #endif
3212618Swnj 			u_short ds = rkaddr->rkds;
3222618Swnj 			u_short cs2 = rkaddr->rkcs2;
3232618Swnj 			u_short er = rkaddr->rker;
3242618Swnj 			if (sc->sc_recal)
3252618Swnj 				printf("recal CERR\n");
3262685Swnj #ifdef notdef
3272685Swnj /* THIS ATTEMPTED TO FIND OUT IF THE DRIVE IS SPUN */
3282685Swnj /* DOWN BUT IT DOESN'T SEEM TO WORK... THE DRIVE SEEMS TO */
3292685Swnj /* TELL PAINFULLY LITTLE WHEN IT IS SPUN DOWN (I.E. NOTHING CHANGES) */
3302685Swnj /* THE DRIVE JUST KEEPS SAYING IT WANTS ATTENTION AND BLOWING ALL COMMANDS */
3312685Swnj 			if (ds & RK_CDA) {
3322685Swnj 				rkaddr->rkcs1 = RK_CDT|RK_CERR;
3332685Swnj 				rkaddr->rkcs2 = ui->ui_slave;
3342685Swnj 				rkaddr->rkcs1 = RK_CDT|RK_SELECT|RK_GO;
3352685Swnj 				rkwait(rkaddr);
3362685Swnj 				while ((rkaddr->rkds & RK_SVAL) == 0)
3372685Swnj 					if (++del > 512)
3382685Swnj 						break;
3392685Swnj 			}
3402685Swnj 			if (del > 512) {
3412685Swnj 				printf("rk%d is down\n", dkunit(bp));
3422685Swnj 				bp->b_flags |= B_ERROR;
3432685Swnj 			} else
3442685Swnj #endif
3452685Swnj 			if (ds & RK_WLE) {
3462618Swnj 				printf("rk%d is write locked\n", dkunit(bp));
3472685Swnj 				bp->b_flags |= B_ERROR;
3482685Swnj 			} else if (++um->um_tab.b_errcnt > 28 ||
3492676Swnj 			    ds&RKDS_HARD || er&RKER_HARD || cs2&RKCS2_HARD) {
3502618Swnj 				bp->b_flags |= B_ERROR;
3512676Swnj 				harderr(bp);
3522787Swnj 				printf("rk%d cs2=%b ds=%b er=%b\n",
3532676Swnj 				    dkunit(bp), cs2, RKCS2_BITS, ds,
3542676Swnj 				    RKDS_BITS, er, RKER_BITS);
3552676Swnj 			} else
3562618Swnj 				um->um_tab.b_active = 0;
3572618Swnj 			if (cs2&RK_MDS) {
3582618Swnj 				rkaddr->rkcs2 = RK_SCLR;
3592618Swnj 				goto retry;
3601899Swnj 			}
3612618Swnj 			recal = 0;
3622618Swnj 			if (ds&RK_DROT || er&(RK_OPI|RK_SKI|RK_UNS) ||
3632618Swnj 			    (um->um_tab.b_errcnt&07) == 4)
3642618Swnj 				recal = 1;
3652618Swnj 			if ((er & (RK_DCK|RK_ECH)) == RK_DCK)
3662618Swnj 				if (rkecc(ui))
3672618Swnj 					return;
3682618Swnj 			rkaddr->rkcs1 = RK_CDT|RK_CCLR;
3692618Swnj 			rkaddr->rkcs2 = ui->ui_slave;
3702618Swnj 			rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO;
3712618Swnj 			rkwait(rkaddr);
3722618Swnj 			if (recal && um->um_tab.b_active == 0) {
3732618Swnj 				rkaddr->rkcs1 = RK_CDT|RK_IE|RK_RECAL|RK_GO;
3742618Swnj 				rkcyl[ui->ui_unit] = -1;
3752618Swnj 				rkwait(rkaddr);
3762618Swnj 				um->um_tab.b_active = 1;
3772618Swnj 				sc->sc_recal = 1;
3782618Swnj 				return;
3792618Swnj 			}
3801899Swnj 		}
3812618Swnj retry:
3822618Swnj 		if (sc->sc_recal) {
3832618Swnj 			sc->sc_recal = 0;
3842618Swnj 			um->um_tab.b_active = 0;
3851899Swnj 		}
3862618Swnj 		ubadone(um);
3872618Swnj 		if (um->um_tab.b_active) {
3882618Swnj 			um->um_tab.b_active = 0;
3892618Swnj 			um->um_tab.b_errcnt = 0;
3902618Swnj 			um->um_tab.b_actf = dp->b_forw;
3912618Swnj 			dp->b_active = 0;
3922618Swnj 			dp->b_errcnt = 0;
3932618Swnj 			dp->b_actf = bp->av_forw;
3942618Swnj 			bp->b_resid = -rkaddr->rkwc * sizeof(short);
3952618Swnj 			iodone(bp);
3962618Swnj 			if (dp->b_actf)
3972618Swnj 				if (rkustart(ui))
3982618Swnj 					needie = 0;
3991899Swnj 		}
4002618Swnj 		as &= ~(1<<ui->ui_slave);
4011899Swnj 	}
4022618Swnj 	for (unit = 0; as; as >>= 1, unit++)
4032618Swnj 		if (as & 1)
4042618Swnj 			if (rkustart(rkip[rk11][unit]))
4052618Swnj 				needie = 0;
4062618Swnj 	if (um->um_tab.b_actf && um->um_tab.b_active == 0)
4072618Swnj 		if (rkstart(um))
4082618Swnj 			needie = 0;
4092618Swnj 	if (needie)
4102618Swnj 		rkaddr->rkcs1 = RK_CDT|RK_IE;
4111899Swnj }
4121899Swnj 
4132618Swnj rkwait(addr)
4142618Swnj 	register struct rkdevice *addr;
4152618Swnj {
4161899Swnj 
4172618Swnj 	while ((addr->rkcs1 & RK_CRDY) == 0)
4182618Swnj 		;
4192618Swnj }
4202618Swnj 
4212618Swnj rkread(dev)
4222618Swnj 	dev_t dev;
4231899Swnj {
4242618Swnj 	register int unit = minor(dev) >> 3;
4252618Swnj 
4262648Swnj 	if (unit >= NRK)
4272618Swnj 		u.u_error = ENXIO;
4282618Swnj 	else
4292618Swnj 		physio(rkstrategy, &rrkbuf[unit], dev, B_READ, minphys);
4301899Swnj }
4311899Swnj 
4322618Swnj rkwrite(dev)
4332618Swnj 	dev_t dev;
4341899Swnj {
4352618Swnj 	register int unit = minor(dev) >> 3;
4361899Swnj 
4372648Swnj 	if (unit >= NRK)
4382618Swnj 		u.u_error = ENXIO;
4392618Swnj 	else
4402618Swnj 		physio(rkstrategy, &rrkbuf[unit], dev, B_WRITE, minphys);
4411899Swnj }
4421899Swnj 
4432618Swnj rkecc(ui)
4442618Swnj 	register struct uba_dinfo *ui;
4451899Swnj {
4462618Swnj 	register struct rkdevice *rk = (struct rkdevice *)ui->ui_addr;
4472618Swnj 	register struct buf *bp = rkutab[ui->ui_unit].b_actf;
4482618Swnj 	register struct uba_minfo *um = ui->ui_mi;
4492618Swnj 	register struct rkst *st;
4502618Swnj 	struct uba_regs *ubp = ui->ui_hd->uh_uba;
4512618Swnj 	register int i;
4522618Swnj 	caddr_t addr;
4532618Swnj 	int reg, bit, byte, npf, mask, o, cmd, ubaddr;
4542618Swnj 	int bn, cn, tn, sn;
4551899Swnj 
4562618Swnj 	npf = btop((rk->rkwc * sizeof(short)) + bp->b_bcount) - 1;
4572618Swnj 	reg = btop(um->um_ubinfo&0x3ffff) + npf;
4582618Swnj 	o = (int)bp->b_un.b_addr & PGOFSET;
459*2885Swnj 	printf("SOFT ECC rk%d%c bn%d\n", dkunit(bp),
460*2885Swnj 	    'a'+(minor(bp->b_dev)&07), bp->b_blkno + npf);
4612618Swnj 	mask = rk->rkec2;
4622724Swnj 	ubapurge(um);
4632618Swnj 	i = rk->rkec1 - 1;		/* -1 makes 0 origin */
4642618Swnj 	bit = i&07;
4652618Swnj 	i = (i&~07)>>3;
4662618Swnj 	byte = i + o;
4672618Swnj 	while (i < 512 && (int)ptob(npf)+i < bp->b_bcount && bit > -11) {
4682618Swnj 		addr = ptob(ubp->uba_map[reg+btop(byte)].pg_pfnum)+
4692618Swnj 		    (byte & PGOFSET);
4702618Swnj 		putmemc(addr, getmemc(addr)^(mask<<bit));
4712618Swnj 		byte++;
4722618Swnj 		i++;
4732618Swnj 		bit -= 8;
4742618Swnj 	}
4752618Swnj 	um->um_tab.b_active++;	/* Either complete or continuing... */
4762618Swnj 	if (rk->rkwc == 0)
4772618Swnj 		return (0);
4782622Swnj #ifdef notdef
4792622Swnj 	rk->rkcs1 |= RK_GO;
4802622Swnj #else
4812618Swnj 	rk->rkcs1 = RK_CDT|RK_CCLR;
4822618Swnj 	rk->rkcs2 = ui->ui_slave;
4832618Swnj 	rk->rkcs1 = RK_CDT|RK_DCLR|RK_GO;
4842618Swnj 	rkwait(rk);
4852618Swnj 	bn = dkblock(bp);
4862618Swnj 	st = &rkst[ui->ui_type];
4872618Swnj 	cn = bp->b_cylin;
4882618Swnj 	sn = bn%st->nspc + npf + 1;
4892618Swnj 	tn = sn/st->nsect;
4902618Swnj 	sn %= st->nsect;
4912618Swnj 	cn += tn/st->ntrak;
4922618Swnj 	tn %= st->ntrak;
4932618Swnj 	rk->rkcyl = cn;
4942618Swnj 	rk->rkda = (tn << 8) | sn;
4952618Swnj 	ubaddr = (int)ptob(reg+1) + o;
4962618Swnj 	rk->rkba = ubaddr;
4972618Swnj 	cmd = (ubaddr >> 8) & 0x300;
4982618Swnj 	cmd |= RK_CDT|RK_IE|RK_GO|RK_READ;
4992618Swnj 	rk->rkcs1 = cmd;
5002622Swnj #endif
5012618Swnj 	return (1);
5021899Swnj }
5031899Swnj 
5042618Swnj rkreset(uban)
5051899Swnj {
5062618Swnj 	register struct uba_minfo *um;
5072618Swnj 	register struct uba_dinfo *ui;
5082618Swnj 	register rk11, unit;
5092618Swnj 	int any = 0;
5101899Swnj 
5112648Swnj 	for (rk11 = 0; rk11 < NHK; rk11++) {
5122618Swnj 		if ((um = rkminfo[rk11]) == 0 || um->um_ubanum != uban ||
5132618Swnj 		    um->um_alive == 0)
5142618Swnj 			continue;
5152618Swnj 		if (any == 0) {
5162618Swnj 			printf(" rk");
5172618Swnj 			any++;
5182618Swnj 		}
5192618Swnj 		um->um_tab.b_active = 0;
5202618Swnj 		um->um_tab.b_actf = um->um_tab.b_actl = 0;
5212618Swnj 		rk_softc[um->um_ctlr].sc_recal = 0;
5222618Swnj 		if (um->um_ubinfo) {
5232618Swnj 			printf("<%d>", (um->um_ubinfo>>28)&0xf);
5242618Swnj 			ubadone(um);
5252618Swnj 		}
5262648Swnj 		for (unit = 0; unit < NHK; unit++) {
5272618Swnj 			if ((ui = rkdinfo[unit]) == 0)
5282618Swnj 				continue;
5292618Swnj 			if (ui->ui_alive == 0)
5302618Swnj 				continue;
5312618Swnj 			rkutab[unit].b_active = 0;
5322618Swnj 			(void) rkustart(ui);
5332618Swnj 		}
5342618Swnj 		(void) rkstart(um);
5352618Swnj 	}
5361899Swnj }
5372380Swnj 
5382618Swnj rkwatch()
5392380Swnj {
5402618Swnj 	register struct uba_minfo *um;
5412618Swnj 	register rk11, unit;
5422618Swnj 	register struct rk_softc *sc;
5432380Swnj 
5442758Swnj 	timeout(rkwatch, (caddr_t)0, hz);
5452648Swnj 	for (rk11 = 0; rk11 < NHK; rk11++) {
5462618Swnj 		um = rkminfo[rk11];
5472618Swnj 		if (um == 0 || um->um_alive == 0)
5482618Swnj 			continue;
5492618Swnj 		sc = &rk_softc[rk11];
5502618Swnj 		if (um->um_tab.b_active == 0) {
5512648Swnj 			for (unit = 0; unit < NRK; unit++)
5522622Swnj 				if (rkutab[unit].b_active &&
5532622Swnj 				    rkdinfo[unit]->ui_mi == um)
5542618Swnj 					goto active;
5552618Swnj 			sc->sc_wticks = 0;
5562618Swnj 			continue;
5572618Swnj 		}
5582618Swnj active:
5592618Swnj 		sc->sc_wticks++;
5602618Swnj 		if (sc->sc_wticks >= 20) {
5612618Swnj 			sc->sc_wticks = 0;
5622648Swnj 			printf("LOST rkintr ");
5632648Swnj 			ubareset(um->um_ubanum);
5642618Swnj 		}
5652618Swnj 	}
5662380Swnj }
5672618Swnj 
5682618Swnj #define	DBSIZE	20
5692618Swnj 
5702618Swnj rkdump(dev)
5712618Swnj 	dev_t dev;
5722618Swnj {
5732618Swnj 	struct rkdevice *rkaddr;
5742618Swnj 	char *start;
5752618Swnj 	int num, blk, unit;
5762618Swnj 	struct size *sizes;
5772618Swnj 	register struct uba_regs *uba;
5782618Swnj 	register struct uba_dinfo *ui;
5792618Swnj 	register short *rp;
5802618Swnj 	struct rkst *st;
5812618Swnj 
5822618Swnj 	unit = minor(dev) >> 3;
583*2885Swnj 	if (unit >= NRK)
584*2885Swnj 		return (ENXIO);
5852618Swnj #define	phys(cast, addr) ((cast)((int)addr & 0x7fffffff))
5862618Swnj 	ui = phys(struct uba_dinfo *, rkdinfo[unit]);
587*2885Swnj 	if (ui->ui_alive == 0)
588*2885Swnj 		return (ENXIO);
5892618Swnj 	uba = phys(struct uba_hd *, ui->ui_hd)->uh_physuba;
5902618Swnj #if VAX780
5912618Swnj 	if (cpu == VAX_780)
5922618Swnj 		ubainit(uba);
5931899Swnj #endif
5942618Swnj 	rkaddr = (struct rkdevice *)ui->ui_physaddr;
5952618Swnj 	num = maxfree;
5962618Swnj 	start = 0;
5972618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_CERR;
5982618Swnj 	rkaddr->rkcs2 = unit;
5992618Swnj 	rkaddr->rkcs1 = RK_CDT|RK_DCLR|RK_GO;
6002618Swnj 	rkwait(rkaddr);
6012618Swnj 	if ((rkaddr->rkds & RK_VV) == 0) {
6022618Swnj 		rkaddr->rkcs1 = RK_CDT|RK_IE|RK_PACK|RK_GO;
6032618Swnj 		rkwait(rkaddr);
6042618Swnj 	}
6052618Swnj 	st = &rkst[ui->ui_type];
6062618Swnj 	sizes = phys(struct size *, st->sizes);
607*2885Swnj 	if (dumplo < 0 || dumplo + num >= sizes[minor(dev)&07].nblocks)
608*2885Swnj 		return (EINVAL);
6092618Swnj 	while (num > 0) {
6102618Swnj 		register struct pte *io;
6112618Swnj 		register int i;
6122618Swnj 		int cn, sn, tn;
6132618Swnj 		daddr_t bn;
6142618Swnj 
6152618Swnj 		blk = num > DBSIZE ? DBSIZE : num;
6162618Swnj 		io = uba->uba_map;
6172618Swnj 		for (i = 0; i < blk; i++)
6182618Swnj 			*(int *)io++ = (btop(start)+i) | (1<<21) | UBA_MRV;
6192618Swnj 		*(int *)io = 0;
6202618Swnj 		bn = dumplo + btop(start);
6212618Swnj 		cn = bn/st->nspc + sizes[minor(dev)&07].cyloff;
6222618Swnj 		sn = bn%st->nspc;
6232618Swnj 		tn = sn/st->nsect;
6242618Swnj 		sn = sn%st->nsect;
6252618Swnj 		rkaddr->rkcyl = cn;
6262618Swnj 		rp = (short *) &rkaddr->rkda;
6272618Swnj 		*rp = (tn << 8) + sn;
6282618Swnj 		*--rp = 0;
6292618Swnj 		*--rp = -blk*NBPG / sizeof (short);
6302618Swnj 		*--rp = RK_CDT|RK_GO|RK_WRITE;
6312618Swnj 		rkwait(rkaddr);
632*2885Swnj 		if (rkaddr->rkcs1 & RK_CERR)
633*2885Swnj 			return (EIO);
6342618Swnj 		start += blk*NBPG;
6352618Swnj 		num -= blk;
6362618Swnj 	}
6372618Swnj 	return (0);
6382618Swnj }
6392618Swnj #endif
640