xref: /csrg-svn/sys/vax/mba/hp.c (revision 2883)
1*2883Swnj /*	hp.c	4.20	81/03/03	*/
221Sbill 
31939Swnj #include "hp.h"
41565Sbill #if NHP > 0
521Sbill /*
62624Swnj  * HP disk driver for RP0x+RM0x
72827Swnj  *
82827Swnj  * TODO:
92827Swnj  *	Check out handling of spun-down drives and write lock
10*2883Swnj  *	Check RM80 skip sector handling, esp when ECC's occur later
112827Swnj  *	Add reading of bad sector information and disk layout from sector 1
122827Swnj  *	Add bad sector forwarding code
132827Swnj  *	Check interaction with tape driver on same mba
142827Swnj  *	Check multiple drive handling
1521Sbill  */
1621Sbill 
1721Sbill #include "../h/param.h"
1821Sbill #include "../h/systm.h"
19305Sbill #include "../h/dk.h"
2021Sbill #include "../h/buf.h"
2121Sbill #include "../h/conf.h"
2221Sbill #include "../h/dir.h"
2321Sbill #include "../h/user.h"
2421Sbill #include "../h/map.h"
25420Sbill #include "../h/pte.h"
2621Sbill #include "../h/mba.h"
2721Sbill #include "../h/mtpr.h"
28420Sbill #include "../h/vm.h"
292362Swnj #include "../h/cmap.h"
3021Sbill 
312383Swnj #include "../h/hpreg.h"
3221Sbill 
332383Swnj /* THIS SHOULD BE READ OFF THE PACK, PER DRIVE */
342383Swnj struct	size {
3521Sbill 	daddr_t	nblocks;
3621Sbill 	int	cyloff;
372383Swnj } hp_sizes[8] = {
38886Sbill 	15884,	0,		/* A=cyl 0 thru 37 */
39886Sbill 	33440,	38,		/* B=cyl 38 thru 117 */
40886Sbill 	340670,	0,		/* C=cyl 0 thru 814 */
4121Sbill 	0,	0,
4221Sbill 	0,	0,
4321Sbill 	0,	0,
44886Sbill 	291346,	118,		/* G=cyl 118 thru 814 */
4521Sbill 	0,	0,
4621Sbill }, rm_sizes[8] = {
47886Sbill 	15884,	0,		/* A=cyl 0 thru 99 */
48886Sbill 	33440,	100,		/* B=cyl 100 thru 309 */
49886Sbill 	131680,	0,		/* C=cyl 0 thru 822 */
502362Swnj 	2720,	291,
5121Sbill 	0,	0,
5221Sbill 	0,	0,
53886Sbill 	82080,	310,		/* G=cyl 310 thru 822 */
5421Sbill 	0,	0,
55886Sbill }, rm5_sizes[8] = {
56886Sbill 	15884,	0,		/* A=cyl 0 thru 26 */
57886Sbill 	33440,	27,		/* B=cyl 27 thru 81 */
58886Sbill 	500992,	0,		/* C=cyl 0 thru 823 */
59886Sbill 	15884,	562,		/* D=cyl 562 thru 588 */
60886Sbill 	55936,	589,		/* E=cyl 589 thru 680 */
61886Sbill 	86944,	681,		/* F=cyl 681 thru 823 */
62886Sbill 	159296,	562,		/* G=cyl 562 thru 823 */
63886Sbill 	291346,	82,		/* H=cyl 82 thru 561 */
642383Swnj }, rm80_sizes[8] = {
652383Swnj 	15884,	0,		/* A=cyl 0 thru 36 */
662383Swnj 	33440,	37,		/* B=cyl 37 thru 114 */
672383Swnj 	242606,	0,		/* C=cyl 0 thru 558 */
682383Swnj 	0,	0,
692383Swnj 	0,	0,
702383Swnj 	0,	0,
712383Swnj 	82080,	115,		/* G=cyl 115 thru 304 */
722383Swnj 	110236,	305,		/* H=cyl 305 thru 558 */
7321Sbill };
742383Swnj /* END OF STUFF WHICH SHOULD BE READ IN PER DISK */
7521Sbill 
762383Swnj #define	_hpSDIST	2
772383Swnj #define	_hpRDIST	3
782383Swnj 
792383Swnj int	hpSDIST = _hpSDIST;
802383Swnj int	hpRDIST = _hpRDIST;
812383Swnj 
822383Swnj short	hptypes[] =
832383Swnj 	{ MBDT_RM03, MBDT_RM05, MBDT_RP06, MBDT_RM80, 0 };
842383Swnj struct	mba_info *hpinfo[NHP];
852383Swnj int	hpdkinit(),hpustart(),hpstart(),hpdtint();
862383Swnj struct	mba_driver hpdriver =
872383Swnj 	{ hpdkinit, hpustart, hpstart, hpdtint, 0, hptypes, hpinfo };
882383Swnj 
892383Swnj struct hpst {
902383Swnj 	short	nsect;
912383Swnj 	short	ntrak;
922383Swnj 	short	nspc;
932383Swnj 	short	ncyl;
942383Swnj 	struct	size *sizes;
952383Swnj } hpst[] = {
962383Swnj 	32,	5,	32*5,	823,	rm_sizes,	/* RM03 */
972383Swnj 	32,	19,	32*19,	823,	rm5_sizes,	/* RM05 */
982383Swnj 	22,	19,	22*19,	815,	hp_sizes,	/* RP06 */
992383Swnj 	31,	14, 	31*14,	559,	rm80_sizes	/* RM80 */
1002383Swnj };
1012383Swnj 
1022624Swnj u_char	hp_offset[16] = {
1032624Swnj     HP_P400, HP_M400, HP_P400, HP_M400, HP_P800, HP_M800, HP_P800, HP_M800,
1042624Swnj     HP_P1200, HP_M1200, HP_P1200, HP_M1200, 0, 0, 0, 0,
10521Sbill };
10621Sbill 
1072624Swnj struct	buf	rhpbuf[NHP];
10821Sbill 
10921Sbill #define	b_cylin b_resid
11021Sbill 
11121Sbill #ifdef INTRLVE
11221Sbill daddr_t dkblock();
11321Sbill #endif
11421Sbill 
1152604Swnj int	hpseek;
1162604Swnj 
1172604Swnj hpdkinit(mi)
1182604Swnj 	struct mba_info *mi;
1192604Swnj {
1202604Swnj 	register struct hpst *st = &hpst[mi->mi_type];
1212604Swnj 
1222604Swnj 	if (mi->mi_dk >= 0)
1232757Swnj 		dk_mspw[mi->mi_dk] = 1.0 / 60 / (st->nsect * 256);
1242604Swnj }
1252604Swnj 
12621Sbill hpstrategy(bp)
1272383Swnj 	register struct buf *bp;
12821Sbill {
1292383Swnj 	register struct mba_info *mi;
1302383Swnj 	register struct hpst *st;
1312383Swnj 	register int unit;
13221Sbill 	long sz, bn;
1332383Swnj 	int xunit = minor(bp->b_dev) & 07;
13421Sbill 
13521Sbill 	sz = bp->b_bcount;
13621Sbill 	sz = (sz+511) >> 9;
13721Sbill 	unit = dkunit(bp);
1382383Swnj 	if (unit >= NHP)
1392383Swnj 		goto bad;
1402383Swnj 	mi = hpinfo[unit];
1412395Swnj 	if (mi == 0 || mi->mi_alive == 0)
1422383Swnj 		goto bad;
1432383Swnj 	st = &hpst[mi->mi_type];
1442383Swnj 	if (bp->b_blkno < 0 ||
1452383Swnj 	    (bn = dkblock(bp))+sz > st->sizes[xunit].nblocks)
1462383Swnj 		goto bad;
1472383Swnj 	bp->b_cylin = bn/st->nspc + st->sizes[xunit].cyloff;
148127Sbill 	(void) spl5();
1492383Swnj 	disksort(&mi->mi_tab, bp);
1502383Swnj 	if (mi->mi_tab.b_active == 0)
1512383Swnj 		mbustart(mi);
152127Sbill 	(void) spl0();
1532383Swnj 	return;
1542383Swnj 
1552383Swnj bad:
1562383Swnj 	bp->b_flags |= B_ERROR;
1572383Swnj 	iodone(bp);
1582383Swnj 	return;
15921Sbill }
16021Sbill 
1612383Swnj hpustart(mi)
1622383Swnj 	register struct mba_info *mi;
16321Sbill {
1642624Swnj 	register struct hpdevice *hpaddr = (struct hpdevice *)mi->mi_drv;
1652383Swnj 	register struct buf *bp = mi->mi_tab.b_actf;
1662383Swnj 	register struct hpst *st;
16721Sbill 	daddr_t bn;
1682383Swnj 	int sn, dist, flags;
16921Sbill 
1702624Swnj 	if ((hpaddr->hpcs1&HP_DVA) == 0)
1712383Swnj 		return (MBU_BUSY);
1722624Swnj 	if ((hpaddr->hpds & HP_VV) == 0) {
1732624Swnj 		hpaddr->hpcs1 = HP_DCLR|HP_GO;
1742624Swnj 		hpaddr->hpcs1 = HP_PRESET|HP_GO;
1752624Swnj 		hpaddr->hpof = HP_FMT22;
17621Sbill 	}
1772604Swnj 	if (mi->mi_tab.b_active || mi->mi_hd->mh_ndrive == 1)
1782383Swnj 		return (MBU_DODATA);
1792624Swnj 	if ((hpaddr->hpds & (HP_DPR|HP_MOL)) != (HP_DPR|HP_MOL))
1802383Swnj 		return (MBU_DODATA);
1812395Swnj 	st = &hpst[mi->mi_type];
1822395Swnj 	bn = dkblock(bp);
1832395Swnj 	sn = bn%st->nspc;
1842395Swnj 	sn = (sn+st->nsect-hpSDIST)%st->nsect;
1852383Swnj 	if (bp->b_cylin == (hpaddr->hpdc & 0xffff)) {
1862604Swnj 		if (hpseek)
1872383Swnj 			return (MBU_DODATA);
1882383Swnj 		dist = ((hpaddr->hpla & 0xffff)>>6) - st->nsect + 1;
1892383Swnj 		if (dist < 0)
1902383Swnj 			dist += st->nsect;
1912383Swnj 		if (dist > st->nsect - hpRDIST)
1922383Swnj 			return (MBU_DODATA);
1932614Swnj 	} else
1942614Swnj 		hpaddr->hpdc = bp->b_cylin;
1952604Swnj 	if (hpseek)
1962624Swnj 		hpaddr->hpcs1 = HP_SEEK|HP_GO;
197305Sbill 	else {
198305Sbill 		hpaddr->hpda = sn;
1992624Swnj 		hpaddr->hpcs1 = HP_SEARCH|HP_GO;
200305Sbill 	}
2012383Swnj 	return (MBU_STARTED);
20221Sbill }
20321Sbill 
2042383Swnj hpstart(mi)
2052383Swnj 	register struct mba_info *mi;
20621Sbill {
2072624Swnj 	register struct hpdevice *hpaddr = (struct hpdevice *)mi->mi_drv;
2082383Swnj 	register struct buf *bp = mi->mi_tab.b_actf;
2092383Swnj 	register struct hpst *st = &hpst[mi->mi_type];
21021Sbill 	daddr_t bn;
2112383Swnj 	int sn, tn;
21221Sbill 
21321Sbill 	bn = dkblock(bp);
2142383Swnj 	sn = bn%st->nspc;
2152383Swnj 	tn = sn/st->nsect;
2162395Swnj 	sn %= st->nsect;
2172383Swnj 	if (mi->mi_tab.b_errcnt >= 16 && (bp->b_flags&B_READ) != 0) {
2182624Swnj 		hpaddr->hpof = hp_offset[mi->mi_tab.b_errcnt & 017] | HP_FMT22;
2192624Swnj 		hpaddr->hpcs1 = HP_OFFSET|HP_GO;
2202624Swnj 		while (hpaddr->hpds & HP_PIP)
22121Sbill 			;
2222383Swnj 		mbclrattn(mi);
22321Sbill 	}
2242383Swnj 	hpaddr->hpdc = bp->b_cylin;
22521Sbill 	hpaddr->hpda = (tn << 8) + sn;
22621Sbill }
22721Sbill 
2282672Swnj hpdtint(mi, mbasr)
2292383Swnj 	register struct mba_info *mi;
2302672Swnj 	int mbasr;
23121Sbill {
2322624Swnj 	register struct hpdevice *hpaddr = (struct hpdevice *)mi->mi_drv;
2332383Swnj 	register struct buf *bp = mi->mi_tab.b_actf;
2342826Swnj 	int retry = 0;
23521Sbill 
2362826Swnj 	if (hpaddr->hpds&HP_ERR || mbasr&MBAEBITS) {
2372826Swnj 		int dready = 0;
2382826Swnj 
2392826Swnj 		while ((hpaddr->hpds & HP_DRY) == 0) {
2402826Swnj 			if (++dready > 32)
2412826Swnj 				break;
2422826Swnj 		}
2432826Swnj 		if ((hpaddr->hpds&HP_DREADY) != HP_DREADY) {
2442826Swnj 			printf("hp%d not ready\n", dkunit(bp));
2452826Swnj 			bp->b_flags |= B_ERROR;
2462826Swnj 		} else if (hpaddr->hper1&HP_WLE) {
2472826Swnj 			printf("hp%d is write locked\n", dkunit(bp));
2482826Swnj 			bp->b_flags |= B_ERROR;
2492826Swnj 		} else if (++mi->mi_tab.b_errcnt > 27 ||
2502826Swnj 		    mbasr & MBASR_HARD ||
2512826Swnj 		    hpaddr->hper1 & HPER1_HARD ||
2522826Swnj 		    hpaddr->hper2 & HPER2_HARD) {
2532826Swnj 			harderr(bp);
2542826Swnj 			printf("hp%d mbasr=%b er1=%b er2=%b\n",
2552826Swnj 			    dkunit(bp), mbasr, mbasr_bits,
2562826Swnj 			    hpaddr->hper1, HPER1_BITS,
2572826Swnj 			    hpaddr->hper2, HPER2_BITS);
2582826Swnj 			bp->b_flags |= B_ERROR;
259*2883Swnj #ifdef notdef
260*2883Swnj 		} else if (hpaddr->hper2&HP_SSE) {
261*2883Swnj 			hpecc(mi, 1);
262*2883Swnj 			return (MBD_RESTARTED);
263*2883Swnj #endif
2642826Swnj 		} else if ((hpaddr->hper1&(HP_DCK|HP_ECH)) == HP_DCK) {
265*2883Swnj 			if (hpecc(mi, 0))
2662383Swnj 				return (MBD_RESTARTED);
2672826Swnj 			/* else done */
2682826Swnj 		} else
2692826Swnj 			retry = 1;
2702826Swnj 		hpaddr->hpcs1 = HP_DCLR|HP_GO;
2712826Swnj 		if ((mi->mi_tab.b_errcnt&07) == 4) {
2722826Swnj 			hpaddr->hpcs1 = HP_RECAL|HP_GO;
2732826Swnj 			/* SHOULD SET AN INTERRUPT AND RETURN */
2742826Swnj 			/* AND HANDLE ALA rk.c OR up.c */
2752826Swnj 			while (hpaddr->hpds & HP_PIP)
2762826Swnj 				;
2772826Swnj 			mbclrattn(mi);
27821Sbill 		}
2792826Swnj 		if (retry)
2802826Swnj 			return (MBD_RETRY);
2812826Swnj 	}
2822383Swnj 	bp->b_resid = -(mi->mi_mba->mba_bcr) & 0xffff;
2832826Swnj 	if (mi->mi_tab.b_errcnt > 16) {
2842624Swnj 		hpaddr->hpcs1 = HP_RTC|HP_GO;
2852624Swnj 		while (hpaddr->hpds & HP_PIP)
2862383Swnj 			;
2872383Swnj 		mbclrattn(mi);
28821Sbill 	}
2892624Swnj 	hpaddr->hpcs1 = HP_RELEASE|HP_GO;
2902383Swnj 	return (MBD_DONE);
29121Sbill }
29221Sbill 
29321Sbill hpread(dev)
2942624Swnj 	dev_t dev;
29521Sbill {
2962624Swnj 	register int unit = minor(dev) >> 3;
29721Sbill 
2982624Swnj 	if (unit >= NHP)
2992624Swnj 		u.u_error = ENXIO;
3002624Swnj 	else
3012624Swnj 		physio(hpstrategy, &rhpbuf[unit], dev, B_READ, minphys);
30221Sbill }
30321Sbill 
30421Sbill hpwrite(dev)
3052624Swnj 	dev_t dev;
30621Sbill {
3072624Swnj 	register int unit = minor(dev) >> 3;
30821Sbill 
3092624Swnj 	if (unit >= NHP)
3102624Swnj 		u.u_error = ENXIO;
3112624Swnj 	else
3122624Swnj 		physio(hpstrategy, &rhpbuf[unit], dev, B_WRITE, minphys);
31321Sbill }
31421Sbill 
315*2883Swnj hpecc(mi, rm80sse)
3162383Swnj 	register struct mba_info *mi;
317*2883Swnj 	int rm80sse;
31821Sbill {
3192383Swnj 	register struct mba_regs *mbp = mi->mi_mba;
3202624Swnj 	register struct hpdevice *rp = (struct hpdevice *)mi->mi_drv;
3212383Swnj 	register struct buf *bp = mi->mi_tab.b_actf;
3222383Swnj 	register struct hpst *st;
323420Sbill 	register int i;
324420Sbill 	caddr_t addr;
325420Sbill 	int reg, bit, byte, npf, mask, o;
3262383Swnj 	int bn, cn, tn, sn;
327420Sbill 	struct pte mpte;
328914Sbill 	int bcr;
32921Sbill 
330914Sbill 	bcr = mbp->mba_bcr & 0xffff;
331914Sbill 	if (bcr)
332914Sbill 		bcr |= 0xffff0000;		/* sxt */
333719Sbill 	npf = btop(bcr + bp->b_bcount) - 1;
3341413Sbill 	reg = npf;
335*2883Swnj #ifdef notdef
336*2883Swnj 	if (rm80sse) {
337*2883Swnj 		rp->hpof |= HP_SSEI;
338*2883Swnj 		reg--;		/* compensate in advance for reg-- below */
339*2883Swnj 		goto sse;
340*2883Swnj 	}
341*2883Swnj #endif
342420Sbill 	o = (int)bp->b_un.b_addr & PGOFSET;
3432826Swnj 	printf("SOFT ECC hp%d%c bn%d\n", dkunit(bp),
3442826Swnj 	    'a'+(minor(bp->b_dev)&07), bp->b_blkno + npf);
34521Sbill 	mask = rp->hpec2&0xffff;
346420Sbill 	i = (rp->hpec1&0xffff) - 1;		/* -1 makes 0 origin */
347719Sbill 	bit = i&07;
348420Sbill 	i = (i&~07)>>3;
349420Sbill 	byte = i + o;
350420Sbill 	while (i < 512 && (int)ptob(npf)+i < bp->b_bcount && bit > -11) {
351420Sbill 		mpte = mbp->mba_map[reg+btop(byte)];
352420Sbill 		addr = ptob(mpte.pg_pfnum) + (byte & PGOFSET);
353420Sbill 		putmemc(addr, getmemc(addr)^(mask<<bit));
354420Sbill 		byte++;
355420Sbill 		i++;
356420Sbill 		bit -= 8;
35721Sbill 	}
358719Sbill 	if (bcr == 0)
359420Sbill 		return (0);
3602624Swnj #ifdef notdef
361*2883Swnj sse:
362*2883Swnj 	if (rpof&HP_SSEI)
363*2883Swnj 		rp->hpda = rp->hpda + 1;
3642624Swnj 	rp->hper1 = 0;
3652624Swnj 	rp->hpcs1 = HP_RCOM|HP_GO;
3662624Swnj #else
367*2883Swnj sse:
3682624Swnj 	rp->hpcs1 = HP_DCLR|HP_GO;
369420Sbill 	bn = dkblock(bp);
3702383Swnj 	st = &hpst[mi->mi_type];
371420Sbill 	cn = bp->b_cylin;
3722383Swnj 	sn = bn%(st->nspc) + npf + 1;
3732383Swnj 	tn = sn/st->nsect;
3742383Swnj 	sn %= st->nsect;
3752383Swnj 	cn += tn/st->ntrak;
3762383Swnj 	tn %= st->ntrak;
377*2883Swnj #ifdef notdef
378*2883Swnj 	if (rp->hpof&SSEI)
379*2883Swnj 		sn++;
380*2883Swnj #endif
381420Sbill 	rp->hpdc = cn;
382420Sbill 	rp->hpda = (tn<<8) + sn;
383420Sbill 	mbp->mba_sr = -1;
384420Sbill 	mbp->mba_var = (int)ptob(reg+1) + o;
3852624Swnj 	rp->hpcs1 = HP_RCOM|HP_GO;
3862624Swnj #endif
387420Sbill 	return (1);
38821Sbill }
3892362Swnj 
3902362Swnj #define	DBSIZE	20
3912362Swnj 
3922362Swnj hpdump(dev)
3932362Swnj 	dev_t dev;
3942362Swnj {
3952383Swnj 	register struct mba_info *mi;
3962383Swnj 	register struct mba_regs *mba;
3972624Swnj 	struct hpdevice *hpaddr;
3982362Swnj 	char *start;
3992383Swnj 	int num, unit;
4002383Swnj 	register struct hpst *st;
4012362Swnj 
4022362Swnj 	num = maxfree;
4032362Swnj 	start = 0;
4042362Swnj 	unit = minor(dev) >> 3;
4052827Swnj 	if (unit >= NHP)
4062827Swnj 		return (ENXIO);
4072383Swnj #define	phys(a,b)	((b)((int)(a)&0x7fffffff))
4082383Swnj 	mi = phys(hpinfo[unit],struct mba_info *);
4092827Swnj 	if (mi == 0 || mi->mi_alive == 0)
4102827Swnj 		return (ENXIO);
4112383Swnj 	mba = phys(mi->mi_hd, struct mba_hd *)->mh_physmba;
4122383Swnj 	mba->mba_cr = MBAINIT;
4132624Swnj 	hpaddr = (struct hpdevice *)&mba->mba_drv[mi->mi_drive];
4142624Swnj 	if ((hpaddr->hpds & HP_VV) == 0) {
4152624Swnj 		hpaddr->hpcs1 = HP_DCLR|HP_GO;
4162624Swnj 		hpaddr->hpcs1 = HP_PRESET|HP_GO;
4172624Swnj 		hpaddr->hpof = HP_FMT22;
4182362Swnj 	}
4192383Swnj 	st = &hpst[mi->mi_type];
4202827Swnj 	if (dumplo < 0 || dumplo + num >= st->sizes[minor(dev)&07].nblocks)
4212827Swnj 		return (EINVAL);
4222362Swnj 	while (num > 0) {
4232383Swnj 		register struct pte *hpte = mba->mba_map;
4242362Swnj 		register int i;
4252383Swnj 		int blk, cn, sn, tn;
4262362Swnj 		daddr_t bn;
4272362Swnj 
4282362Swnj 		blk = num > DBSIZE ? DBSIZE : num;
4292362Swnj 		bn = dumplo + btop(start);
4302383Swnj 		cn = bn/st->nspc + st->sizes[minor(dev)&07].cyloff;
4312383Swnj 		sn = bn%st->nspc;
4322383Swnj 		tn = sn/st->nsect;
4332383Swnj 		sn = sn%st->nsect;
4342362Swnj 		hpaddr->hpdc = cn;
4352362Swnj 		hpaddr->hpda = (tn << 8) + sn;
4362362Swnj 		for (i = 0; i < blk; i++)
4372362Swnj 			*(int *)hpte++ = (btop(start)+i) | PG_V;
4382383Swnj 		mba->mba_sr = -1;
4392383Swnj 		mba->mba_bcr = -(blk*NBPG);
4402383Swnj 		mba->mba_var = 0;
4412624Swnj 		hpaddr->hpcs1 = HP_WCOM | HP_GO;
4422624Swnj 		while ((hpaddr->hpds & HP_DRY) == 0)
4432362Swnj 			;
4442827Swnj 		if (hpaddr->hpds&HP_ERR)
4452827Swnj 			return (EIO);
4462362Swnj 		start += blk*NBPG;
4472362Swnj 		num -= blk;
4482362Swnj 	}
4492362Swnj 	return (0);
4502362Swnj }
4511565Sbill #endif
452