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uba_sbi.c revision 1.12
      1 /*	$NetBSD: uba_sbi.c,v 1.12 2001/05/13 15:24:18 ragge Exp $	   */
      2 /*
      3  * Copyright (c) 1996 Jonathan Stone.
      4  * Copyright (c) 1994, 1996 Ludd, University of Lule}, Sweden.
      5  * Copyright (c) 1982, 1986 The Regents of the University of California.
      6  * All rights reserved.
      7  *
      8  * Redistribution and use in source and binary forms, with or without
      9  * modification, are permitted provided that the following conditions
     10  * are met:
     11  * 1. Redistributions of source code must retain the above copyright
     12  *    notice, this list of conditions and the following disclaimer.
     13  * 2. Redistributions in binary form must reproduce the above copyright
     14  *    notice, this list of conditions and the following disclaimer in the
     15  *    documentation and/or other materials provided with the distribution.
     16  * 3. All advertising materials mentioning features or use of this software
     17  *    must display the following acknowledgement:
     18  *	This product includes software developed by the University of
     19  *	California, Berkeley and its contributors.
     20  * 4. Neither the name of the University nor the names of its contributors
     21  *    may be used to endorse or promote products derived from this software
     22  *    without specific prior written permission.
     23  *
     24  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     25  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     26  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     27  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     28  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     29  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     30  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     31  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     32  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     33  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     34  * SUCH DAMAGE.
     35  *
     36  *	@(#)uba.c	7.10 (Berkeley) 12/16/90
     37  *	@(#)autoconf.c	7.20 (Berkeley) 5/9/91
     38  */
     39 
     40 #include <sys/param.h>
     41 #include <sys/device.h>
     42 #include <sys/systm.h>
     43 #include <sys/kernel.h>
     44 
     45 #define _VAX_BUS_DMA_PRIVATE
     46 #include <machine/bus.h>
     47 #include <machine/mtpr.h>
     48 #include <machine/nexus.h>
     49 #include <machine/cpu.h>
     50 #include <machine/sgmap.h>
     51 #include <machine/scb.h>
     52 
     53 #include <dev/qbus/ubavar.h>
     54 
     55 #include <vax/uba/uba_common.h>
     56 
     57 #include "locators.h"
     58 #include "ioconf.h"
     59 
     60 /* Some SBI-specific defines */
     61 #define UBASIZE		(UBAPAGES * VAX_NBPG)
     62 #define UMEMA8600(i)   	(0x20100000+(i)*0x40000)
     63 #define	UMEMB8600(i)	(0x22100000+(i)*0x40000)
     64 
     65 /*
     66  * Some status registers.
     67  */
     68 #define UBACNFGR_UBIC  0x00010000      /* unibus init complete */
     69 #define UBACNFGR_BITS \
     70 "\40\40PARFLT\37WSQFLT\36URDFLT\35ISQFLT\34MXTFLT\33XMTFLT\30ADPDN\27ADPUP\23UBINIT\22UBPDN\21UBIC"
     71 
     72 #define UBACR_IFS      0x00000040      /* interrupt field switch */
     73 #define UBACR_BRIE     0x00000020      /* BR interrupt enable */
     74 #define UBACR_USEFIE   0x00000010      /* UNIBUS to SBI error field IE */
     75 #define UBACR_SUEFIE   0x00000008      /* SBI to UNIBUS error field IE */
     76 #define UBACR_ADINIT   0x00000001      /* adapter init */
     77 
     78 #define UBADPR_BNE     0x80000000      /* buffer not empty - purge */
     79 
     80 #define UBABRRVR_DIV    0x0000ffff      /* device interrupt vector field */
     81 
     82 #define UBASR_BITS \
     83 "\20\13RDTO\12RDS\11CRD\10CXTER\7CXTMO\6DPPE\5IVMR\4MRPF\3LEB\2UBSTO\1UBSSYNTO"
     84 
     85 char    ubasr_bits[] = UBASR_BITS;
     86 
     87 /*
     88  * The DW780 are directly connected to the SBI on 11/780 and 8600.
     89  */
     90 static	int	dw780_match(struct device *, struct cfdata *, void *);
     91 static	void	dw780_attach(struct device *, struct device *, void *);
     92 static	void	dw780_init(struct uba_softc*);
     93 static	void    dw780_beforescan(struct uba_softc *);
     94 static	void    dw780_afterscan(struct uba_softc *);
     95 static	int     dw780_errchk(struct uba_softc *);
     96 static	void    uba_dw780int(void *);
     97 static  void	ubaerror(struct uba_softc *, int *, int *);
     98 #ifdef notyet
     99 static	void	dw780_purge(struct uba_softc *, int);
    100 #endif
    101 
    102 struct	cfattach uba_sbi_ca = {
    103 	sizeof(struct uba_vsoftc), dw780_match, dw780_attach
    104 };
    105 
    106 extern	struct vax_bus_space vax_mem_bus_space;
    107 
    108 volatile int svec;
    109 
    110 int
    111 dw780_match(struct device *parent, struct cfdata *cf, void *aux)
    112 {
    113 	struct sbi_attach_args *sa = (struct sbi_attach_args *)aux;
    114 
    115 	if (cf->cf_loc[SBICF_TR] != sa->sa_nexnum &&
    116 	    cf->cf_loc[SBICF_TR] != SBICF_TR_DEFAULT)
    117 		return 0;
    118 	/*
    119 	 * The uba type is actually only telling where the uba
    120 	 * space is in nexus space.
    121 	 */
    122 	if ((sa->sa_type & ~3) != NEX_UBA0)
    123 		return 0;
    124 
    125 	return 1;
    126 }
    127 
    128 void
    129 dw780_attach(struct device *parent, struct device *self, void *aux)
    130 {
    131 	struct uba_vsoftc *sc = (void *)self;
    132 	struct sbi_attach_args *sa = aux;
    133 	int ubaddr = sa->sa_type & 3;
    134 	int i;
    135 
    136 	printf(": DW780\n");
    137 	/*
    138 	 * Fill in bus specific data.
    139 	 */
    140 	sc->uv_sc.uh_ubainit = dw780_init;
    141 #ifdef notyet
    142 	sc->uv_sc.uh_ubapurge = dw780_purge;
    143 #endif
    144 	sc->uv_sc.uh_beforescan = dw780_beforescan;
    145 	sc->uv_sc.uh_afterscan = dw780_afterscan;
    146 	sc->uv_sc.uh_errchk = dw780_errchk;
    147 	sc->uv_sc.uh_iot = &vax_mem_bus_space;
    148 	sc->uv_sc.uh_dmat = &sc->uv_dmat;
    149 	sc->uv_uba = (void *)sa->sa_ioh;
    150 	sc->uh_ibase = VAX_NBPG + ubaddr * VAX_NBPG;
    151 	sc->uv_sc.uh_type = UBA_UBA;
    152 
    153 	/*
    154 	 * Set up dispatch vectors for DW780.
    155 	 */
    156 	for (i = 0x14; i < 0x18; i++)
    157 		scb_vecalloc(vecnum(0, i, sa->sa_nexnum), uba_dw780int,
    158 		    sc, SCB_ISTACK, &sc->uv_sc.uh_intrcnt);
    159 	evcnt_attach_dynamic(&sc->uv_sc.uh_intrcnt, EVCNT_TYPE_INTR, NULL,
    160 		sc->uv_sc.uh_dev.dv_xname, "intr");
    161 
    162 	/*
    163 	 * Fill in variables used by the sgmap system.
    164 	 */
    165 	sc->uv_size = UBASIZE;		/* Size in bytes of Unibus space */
    166 
    167 	uba_dma_init(sc);
    168 	uba_attach(&sc->uv_sc, (parent->dv_unit ? UMEMB8600(ubaddr) :
    169 	    UMEMA8600(ubaddr)) + (UBAPAGES * VAX_NBPG));
    170 }
    171 
    172 void
    173 dw780_beforescan(sc)
    174 	struct uba_softc *sc;
    175 {
    176 	struct uba_vsoftc *vc = (void *)sc;
    177 	volatile int *hej = &vc->uv_uba->uba_sr;
    178 
    179 	*hej = *hej;
    180 	vc->uv_uba->uba_cr = UBACR_IFS|UBACR_BRIE;
    181 }
    182 
    183 void
    184 dw780_afterscan(sc)
    185 	struct uba_softc *sc;
    186 {
    187 	struct uba_vsoftc *vc = (void *)sc;
    188 
    189 	vc->uv_uba->uba_cr = UBACR_IFS | UBACR_BRIE |
    190 	    UBACR_USEFIE | UBACR_SUEFIE |
    191 	    (vc->uv_uba->uba_cr & 0x7c000000);
    192 }
    193 
    194 
    195 int
    196 dw780_errchk(sc)
    197 	struct uba_softc *sc;
    198 {
    199 	struct uba_vsoftc *vc = (void *)sc;
    200 	volatile int *hej = &vc->uv_uba->uba_sr;
    201 
    202 	if (*hej) {
    203 		*hej = *hej;
    204 		return 1;
    205 	}
    206 	return 0;
    207 }
    208 
    209 void
    210 uba_dw780int(arg)
    211 	void	*arg;
    212 {
    213 	struct	uba_vsoftc *vc = arg;
    214 	struct	uba_regs *ur = vc->uv_uba;
    215 	struct	ivec_dsp *scb_vec;
    216 	int	br, vec;
    217 
    218 	br = mfpr(PR_IPL);
    219 	vec = ur->uba_brrvr[br - 0x14];
    220 	if (vec <= 0) {
    221 		ubaerror(&vc->uv_sc, &br, (int *)&vec);
    222 		if (svec == 0)
    223 			return;
    224 	}
    225 	if (cold)
    226 		scb_fake(vec + vc->uh_ibase, br);
    227 	else {
    228 		scb_vec = (struct ivec_dsp *)((int)scb + 512 + 4 * vec);
    229 		(*scb_vec->hoppaddr)(scb_vec->pushlarg);
    230 	}
    231 }
    232 
    233 void
    234 dw780_init(sc)
    235 	struct uba_softc *sc;
    236 {
    237 	struct uba_vsoftc *vc = (void *)sc;
    238 
    239 	vc->uv_uba->uba_cr = UBACR_ADINIT;
    240 	vc->uv_uba->uba_cr = UBACR_IFS|UBACR_BRIE|UBACR_USEFIE|UBACR_SUEFIE;
    241 	while ((vc->uv_uba->uba_cnfgr & UBACNFGR_UBIC) == 0)
    242 		;
    243 }
    244 
    245 #ifdef notyet
    246 void
    247 dw780_purge(sc, bdp)
    248 	struct uba_softc *sc;
    249 	int bdp;
    250 {
    251 	struct uba_vsoftc *vc = (void *)sc;
    252 
    253 	vc->uv_uba->uba_dpr[bdp] |= UBADPR_BNE;
    254 }
    255 #endif
    256 
    257 int	ubawedgecnt = 10;
    258 int	ubacrazy = 500;
    259 int	zvcnt_max = 5000;	/* in 8 sec */
    260 int	ubaerrcnt;
    261 /*
    262  * This routine is called by the locore code to process a UBA
    263  * error on an 11/780 or 8600.	The arguments are passed
    264  * on the stack, and value-result (through some trickery).
    265  * In particular, the uvec argument is used for further
    266  * uba processing so the result aspect of it is very important.
    267  * It must not be declared register.
    268  */
    269 /*ARGSUSED*/
    270 void
    271 ubaerror(uh, ipl, uvec)
    272 	register struct uba_softc *uh;
    273 	int *ipl, *uvec;
    274 {
    275 	struct uba_vsoftc *vc = (void *)uh;
    276 	struct	uba_regs *uba = vc->uv_uba;
    277 	register int sr, s;
    278 	char sbuf[256], sbuf2[256];
    279 
    280 	if (*uvec == 0) {
    281 		/*
    282 		 * Declare dt as unsigned so that negative values
    283 		 * are handled as >8 below, in case time was set back.
    284 		 */
    285 		u_long	dt = time.tv_sec - vc->uh_zvtime;
    286 
    287 		vc->uh_zvtotal++;
    288 		if (dt > 8) {
    289 			vc->uh_zvtime = time.tv_sec;
    290 			vc->uh_zvcnt = 0;
    291 		}
    292 		if (++vc->uh_zvcnt > zvcnt_max) {
    293 			printf("%s: too many zero vectors (%d in <%d sec)\n",
    294 				vc->uv_sc.uh_dev.dv_xname, vc->uh_zvcnt, (int)dt + 1);
    295 
    296 			bitmask_snprintf(uba->uba_cnfgr&(~0xff), UBACNFGR_BITS,
    297 					 sbuf, sizeof(sbuf));
    298 			printf("\tIPL 0x%x\n\tcnfgr: %s	 Adapter Code: 0x%x\n",
    299 				*ipl, sbuf, uba->uba_cnfgr&0xff);
    300 
    301 			bitmask_snprintf(uba->uba_sr, ubasr_bits, sbuf, sizeof(sbuf));
    302 			printf("\tsr: %s\n\tdcr: %x (MIC %sOK)\n",
    303 				sbuf, uba->uba_dcr,
    304 				(uba->uba_dcr&0x8000000)?"":"NOT ");
    305 
    306 			ubareset(&vc->uv_sc);
    307 		}
    308 		return;
    309 	}
    310 	if (uba->uba_cnfgr & NEX_CFGFLT) {
    311 		bitmask_snprintf(uba->uba_sr, ubasr_bits, sbuf, sizeof(sbuf));
    312 		bitmask_snprintf(uba->uba_cnfgr, NEXFLT_BITS, sbuf2, sizeof(sbuf2));
    313 		printf("%s: sbi fault sr=%s cnfgr=%s\n",
    314 		    vc->uv_sc.uh_dev.dv_xname, sbuf, sbuf2);
    315 		ubareset(&vc->uv_sc);
    316 		*uvec = 0;
    317 		return;
    318 	}
    319 	sr = uba->uba_sr;
    320 	s = spluba();
    321 	bitmask_snprintf(uba->uba_sr, ubasr_bits, sbuf, sizeof(sbuf));
    322 	printf("%s: uba error sr=%s fmer=%x fubar=%o\n", vc->uv_sc.uh_dev.dv_xname,
    323 	    sbuf, uba->uba_fmer, 4*uba->uba_fubar);
    324 	splx(s);
    325 	uba->uba_sr = sr;
    326 	*uvec &= UBABRRVR_DIV;
    327 	if (++ubaerrcnt % ubawedgecnt == 0) {
    328 		if (ubaerrcnt > ubacrazy)
    329 			panic("uba crazy");
    330 		printf("ERROR LIMIT ");
    331 		ubareset(&vc->uv_sc);
    332 		*uvec = 0;
    333 	}
    334 }
    335