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mba.c revision 1.10
      1  1.10  christos /*	$NetBSD: mba.c,v 1.10 1996/10/13 03:35:00 christos Exp $ */
      2   1.1     ragge /*
      3   1.3     ragge  * Copyright (c) 1994, 1996 Ludd, University of Lule}, Sweden.
      4   1.1     ragge  * All rights reserved.
      5   1.1     ragge  *
      6   1.1     ragge  * Redistribution and use in source and binary forms, with or without
      7   1.1     ragge  * modification, are permitted provided that the following conditions
      8   1.1     ragge  * are met:
      9   1.1     ragge  * 1. Redistributions of source code must retain the above copyright
     10   1.1     ragge  *    notice, this list of conditions and the following disclaimer.
     11   1.1     ragge  * 2. Redistributions in binary form must reproduce the above copyright
     12   1.1     ragge  *    notice, this list of conditions and the following disclaimer in the
     13   1.1     ragge  *    documentation and/or other materials provided with the distribution.
     14   1.1     ragge  * 3. All advertising materials mentioning features or use of this software
     15   1.1     ragge  *    must display the following acknowledgement:
     16   1.3     ragge  *      This product includes software developed at Ludd, University of
     17   1.3     ragge  *      Lule}, Sweden and its contributors.
     18   1.1     ragge  * 4. The name of the author may not be used to endorse or promote products
     19   1.1     ragge  *    derived from this software without specific prior written permission
     20   1.1     ragge  *
     21   1.1     ragge  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     22   1.1     ragge  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     23   1.1     ragge  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     24   1.1     ragge  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     25   1.1     ragge  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     26   1.1     ragge  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     27   1.1     ragge  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     28   1.1     ragge  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     29   1.1     ragge  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     30   1.1     ragge  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     31   1.1     ragge  */
     32   1.1     ragge 
     33   1.3     ragge /*
     34   1.3     ragge  * Simple massbus drive routine.
     35   1.3     ragge  * TODO:
     36   1.3     ragge  *  Autoconfig new devices 'on the fly'.
     37   1.3     ragge  *  More intelligent way to handle different interrupts.
     38   1.3     ragge  */
     39   1.3     ragge 
     40   1.3     ragge #include <sys/param.h>
     41   1.6     ragge #include <sys/systm.h>
     42   1.3     ragge #include <sys/device.h>
     43   1.3     ragge #include <sys/queue.h>
     44   1.3     ragge #include <sys/buf.h>
     45   1.3     ragge #include <sys/proc.h>
     46   1.3     ragge 
     47   1.3     ragge #include <vm/vm.h>
     48   1.3     ragge #include <vm/vm_kern.h>
     49   1.3     ragge 
     50   1.3     ragge #include <machine/trap.h>
     51   1.3     ragge #include <machine/scb.h>
     52   1.3     ragge #include <machine/nexus.h>
     53   1.3     ragge #include <machine/pte.h>
     54   1.3     ragge #include <machine/pcb.h>
     55   1.4     ragge #include <machine/sid.h>
     56   1.1     ragge 
     57   1.3     ragge #include <vax/mba/mbareg.h>
     58   1.3     ragge #include <vax/mba/mbavar.h>
     59   1.1     ragge 
     60   1.3     ragge struct	mbaunit mbaunit[] = {
     61   1.6     ragge 	{MBADT_RP04,	"rp04", MB_RP},
     62   1.6     ragge 	{MBADT_RP05,	"rp05", MB_RP},
     63   1.6     ragge 	{MBADT_RP06,	"rp06", MB_RP},
     64   1.6     ragge 	{MBADT_RP07,	"rp07", MB_RP},
     65   1.6     ragge 	{MBADT_RM02,	"rm02", MB_RP},
     66   1.6     ragge 	{MBADT_RM03,	"rm03", MB_RP},
     67   1.6     ragge 	{MBADT_RM05,	"rm05", MB_RP},
     68   1.6     ragge 	{MBADT_RM80,	"rm80", MB_RP},
     69   1.6     ragge 	{0,		0,	0}
     70   1.3     ragge };
     71   1.3     ragge 
     72   1.3     ragge int	mbamatch __P((struct device *, void *, void *));
     73   1.3     ragge void	mbaattach __P((struct device *, struct device *, void *));
     74   1.3     ragge void	mbaintr __P((int));
     75   1.8       cgd int	mbaprint __P((void *, const char *));
     76   1.3     ragge void	mbaqueue __P((struct mba_device *));
     77   1.3     ragge void	mbastart __P((struct mba_softc *));
     78   1.3     ragge void	mbamapregs __P((struct mba_softc *));
     79   1.3     ragge 
     80   1.5     ragge struct	cfdriver mba_cd = {
     81   1.5     ragge 	NULL, "mba", DV_DULL
     82   1.5     ragge };
     83   1.5     ragge 
     84   1.7     ragge struct	cfattach mba_cmi_ca = {
     85   1.7     ragge 	sizeof(struct mba_softc), mbamatch, mbaattach
     86   1.7     ragge };
     87   1.7     ragge 
     88   1.7     ragge struct	cfattach mba_sbi_ca = {
     89   1.5     ragge 	sizeof(struct mba_softc), mbamatch, mbaattach
     90   1.3     ragge };
     91   1.1     ragge 
     92   1.3     ragge /*
     93   1.3     ragge  * Look if this is a massbuss adapter.
     94   1.3     ragge  */
     95   1.3     ragge int
     96   1.3     ragge mbamatch(parent, match, aux)
     97   1.3     ragge 	struct	device *parent;
     98   1.3     ragge 	void	*match, *aux;
     99   1.3     ragge {
    100   1.3     ragge 	struct	sbi_attach_args *sa = (struct sbi_attach_args *)aux;
    101   1.3     ragge 	struct	cfdata *cf = match;
    102   1.1     ragge 
    103   1.3     ragge 	if ((cf->cf_loc[0] != sa->nexnum) && (cf->cf_loc[0] > -1 ))
    104   1.3     ragge 		return 0;
    105   1.1     ragge 
    106   1.3     ragge 	if (sa->type == NEX_MBA)
    107   1.3     ragge 		return 1;
    108   1.1     ragge 
    109   1.3     ragge 	return 0;
    110   1.3     ragge }
    111   1.1     ragge 
    112   1.3     ragge /*
    113   1.3     ragge  * Attach the found massbuss adapter. Setup its interrupt vectors,
    114   1.3     ragge  * reset it and go searching for drives on it.
    115   1.3     ragge  */
    116   1.3     ragge void
    117   1.3     ragge mbaattach(parent, self, aux)
    118   1.3     ragge 	struct	device *parent, *self;
    119   1.3     ragge 	void	*aux;
    120   1.3     ragge {
    121   1.3     ragge 	struct	mba_softc *sc = (void *)self;
    122   1.3     ragge 	struct	sbi_attach_args *sa = (struct sbi_attach_args *)aux;
    123   1.3     ragge 	volatile struct	mba_regs *mbar = (struct mba_regs *)sa->nexaddr;
    124   1.3     ragge 	struct	mba_attach_args ma;
    125   1.3     ragge 	extern  struct  ivec_dsp idsptch;
    126   1.3     ragge 	int	i, j;
    127   1.3     ragge 
    128  1.10  christos 	printf("\n");
    129   1.3     ragge 	/*
    130   1.3     ragge 	 * Set up interrupt vectors for this MBA.
    131   1.3     ragge 	 */
    132   1.3     ragge 	bcopy(&idsptch, &sc->sc_dsp, sizeof(struct ivec_dsp));
    133   1.3     ragge 	scb->scb_nexvec[0][sa->nexnum] = scb->scb_nexvec[1][sa->nexnum] =
    134   1.3     ragge 	    scb->scb_nexvec[2][sa->nexnum] = scb->scb_nexvec[3][sa->nexnum] =
    135   1.3     ragge 	    &sc->sc_dsp;
    136   1.3     ragge 	sc->sc_dsp.pushlarg = sc->sc_dev.dv_unit;
    137   1.3     ragge 	sc->sc_dsp.hoppaddr = mbaintr;
    138   1.3     ragge 
    139   1.4     ragge 	sc->sc_physnr = sa->nexnum - 8; /* MBA's have TR between 8 - 11... */
    140   1.4     ragge #ifdef VAX750
    141   1.7     ragge 	if (vax_cputype == VAX_750)
    142   1.4     ragge 		sc->sc_physnr += 4;	/* ...but not on 11/750 */
    143   1.4     ragge #endif
    144   1.3     ragge 	sc->sc_first = 0;
    145   1.3     ragge 	sc->sc_last = (void *)&sc->sc_first;
    146   1.3     ragge 	sc->sc_mbareg = (struct mba_regs *)mbar;
    147   1.3     ragge 	mbar->mba_cr = MBACR_INIT;	/* Reset adapter */
    148   1.3     ragge 	mbar->mba_cr = MBACR_IE;	/* Enable interrupts */
    149   1.3     ragge 
    150   1.3     ragge 	for (i = 0; i < MAXMBADEV; i++) {
    151   1.3     ragge 		sc->sc_state = SC_AUTOCONF;
    152   1.3     ragge 		if ((mbar->mba_md[i].md_ds & MBADS_DPR) == 0)
    153   1.3     ragge 			continue;
    154   1.3     ragge 		/* We have a drive, ok. */
    155   1.3     ragge 		ma.unit = i;
    156   1.3     ragge 		ma.type = mbar->mba_md[i].md_dt & 0777;
    157   1.3     ragge 		j = 0;
    158   1.3     ragge 		while (mbaunit[j++].nr)
    159   1.3     ragge 			if (mbaunit[j].nr == ma.type)
    160   1.3     ragge 				break;
    161   1.3     ragge 		ma.devtyp = mbaunit[j].devtyp;
    162   1.3     ragge 		ma.name = mbaunit[j].name;
    163   1.3     ragge 		config_found(&sc->sc_dev, (void *)&ma, mbaprint);
    164   1.1     ragge 	}
    165   1.1     ragge }
    166   1.1     ragge 
    167   1.1     ragge /*
    168   1.3     ragge  * We got an interrupt. Check type of interrupt and call the specific
    169   1.3     ragge  * device interrupt handling routine.
    170   1.1     ragge  */
    171   1.3     ragge void
    172   1.3     ragge mbaintr(mba)
    173   1.3     ragge 	int	mba;
    174   1.3     ragge {
    175   1.5     ragge 	struct	mba_softc *sc = mba_cd.cd_devs[mba];
    176   1.3     ragge 	volatile struct	mba_regs *mr = sc->sc_mbareg;
    177   1.3     ragge 	struct	mba_device *md;
    178   1.3     ragge 	struct	buf *bp;
    179   1.6     ragge 	int	itype, attn, anr;
    180   1.3     ragge 
    181   1.3     ragge 	itype = mr->mba_sr;
    182   1.3     ragge 	mr->mba_sr = itype;	/* Write back to clear bits */
    183   1.3     ragge 
    184   1.3     ragge 	attn = mr->mba_md[0].md_as & 0xff;
    185   1.3     ragge 	mr->mba_md[0].md_as = attn;
    186   1.3     ragge 
    187   1.3     ragge 	if (sc->sc_state == SC_AUTOCONF)
    188   1.3     ragge 		return;	/* During autoconfig */
    189   1.3     ragge 
    190   1.3     ragge 	md = sc->sc_first;
    191   1.3     ragge 	bp = md->md_q.b_actf;
    192   1.3     ragge 	/*
    193   1.3     ragge 	 * A data-transfer interrupt. Current operation is finished,
    194   1.3     ragge 	 * call that device's finish routine to see what to do next.
    195   1.3     ragge 	 */
    196   1.3     ragge 	if (sc->sc_state == SC_ACTIVE) {
    197   1.3     ragge 
    198   1.3     ragge 		sc->sc_state = SC_IDLE;
    199   1.3     ragge 		switch ((*md->md_finish)(md, itype, &attn)) {
    200   1.3     ragge 
    201   1.3     ragge 		case XFER_FINISH:
    202   1.3     ragge 			/*
    203   1.3     ragge 			 * Transfer is finished. Take buffer of drive
    204   1.3     ragge 			 * queue, and take drive of adapter queue.
    205   1.3     ragge 			 * If more to transfer, start the adapter again
    206   1.3     ragge 			 * by calling mbastart().
    207   1.3     ragge 			 */
    208   1.3     ragge 			md->md_q.b_actf = bp->b_actf;
    209   1.3     ragge 			sc->sc_first = md->md_back;
    210   1.3     ragge 			md->md_back = 0;
    211   1.3     ragge 			if (sc->sc_first == 0)
    212   1.3     ragge 				sc->sc_last = (void *)&sc->sc_first;
    213   1.3     ragge 
    214   1.3     ragge 			if (md->md_q.b_actf) {
    215   1.3     ragge 				sc->sc_last->md_back = md;
    216   1.3     ragge 				sc->sc_last = md;
    217   1.3     ragge 			}
    218   1.3     ragge 
    219   1.3     ragge 			bp->b_resid = 0;
    220   1.3     ragge 			biodone(bp);
    221   1.3     ragge 			if (sc->sc_first)
    222   1.3     ragge 				mbastart(sc);
    223   1.3     ragge 			break;
    224   1.3     ragge 
    225   1.3     ragge 		case XFER_RESTART:
    226   1.3     ragge 			/*
    227   1.3     ragge 			 * Something went wrong with the transfer. Try again.
    228   1.3     ragge 			 */
    229   1.3     ragge 			mbastart(sc);
    230   1.3     ragge 			break;
    231   1.3     ragge 		}
    232   1.3     ragge 	}
    233   1.1     ragge 
    234   1.3     ragge 	while (attn) {
    235   1.3     ragge 		anr = ffs(attn) - 1;
    236   1.3     ragge 		attn &= ~(1 << anr);
    237   1.3     ragge 		if (sc->sc_md[anr]->md_attn == 0)
    238   1.3     ragge 			panic("Should check for new MBA device %d", anr);
    239   1.3     ragge 		(*sc->sc_md[anr]->md_attn)(sc->sc_md[anr]);
    240   1.3     ragge 	}
    241   1.3     ragge }
    242   1.3     ragge 
    243   1.3     ragge int
    244   1.3     ragge mbaprint(aux, mbaname)
    245   1.3     ragge 	void	*aux;
    246   1.8       cgd 	const char	*mbaname;
    247   1.3     ragge {
    248   1.3     ragge 	struct  mba_attach_args *ma = aux;
    249   1.3     ragge 
    250   1.3     ragge 	if (mbaname) {
    251   1.3     ragge 		if (ma->name)
    252  1.10  christos 			printf("%s", ma->name);
    253   1.3     ragge 		else
    254  1.10  christos 			printf("device type %o", ma->type);
    255  1.10  christos 		printf(" at %s", mbaname);
    256   1.3     ragge 	}
    257  1.10  christos 	printf(" drive %d", ma->unit);
    258   1.3     ragge 	return (ma->name ? UNCONF : UNSUPP);
    259   1.3     ragge }
    260   1.1     ragge 
    261   1.1     ragge /*
    262   1.3     ragge  * A device calls mbaqueue() when it wants to get on the adapter queue.
    263   1.3     ragge  * Called at splbio(). If the adapter is inactive, start it.
    264   1.1     ragge  */
    265   1.3     ragge void
    266   1.3     ragge mbaqueue(md)
    267   1.3     ragge 	struct	mba_device *md;
    268   1.3     ragge {
    269   1.3     ragge 	struct	mba_softc *sc = md->md_mba;
    270   1.3     ragge 	int	i = (int)sc->sc_first;
    271   1.3     ragge 
    272   1.3     ragge 	sc->sc_last->md_back = md;
    273   1.3     ragge 	sc->sc_last = md;
    274   1.3     ragge 
    275   1.3     ragge 	if (i == 0)
    276   1.3     ragge 		mbastart(sc);
    277   1.3     ragge }
    278   1.3     ragge 
    279   1.1     ragge /*
    280   1.3     ragge  * Start activity on (idling) adapter. Calls mbamapregs() to setup
    281   1.3     ragge  * for dma transfer, then the unit-specific start routine.
    282   1.1     ragge  */
    283   1.3     ragge void
    284   1.3     ragge mbastart(sc)
    285   1.3     ragge 	struct	mba_softc *sc;
    286   1.3     ragge {
    287   1.3     ragge 	struct	mba_device *md = sc->sc_first;
    288   1.3     ragge 	volatile struct	mba_regs *mr = sc->sc_mbareg;
    289   1.3     ragge 	struct	buf *bp = md->md_q.b_actf;
    290   1.3     ragge 
    291   1.7     ragge 	disk_reallymapin(md->md_q.b_actf, sc->sc_mbareg->mba_map, 0, PG_V);
    292   1.3     ragge 
    293   1.3     ragge 	sc->sc_state = SC_ACTIVE;
    294   1.3     ragge 	mr->mba_var = ((u_int)bp->b_un.b_addr & PGOFSET);
    295   1.3     ragge 	mr->mba_bc = (~bp->b_bcount) + 1;
    296   1.3     ragge 	(*md->md_start)(md);		/* machine-dependent start */
    297   1.3     ragge }
    298