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grf_nubus.c revision 1.53
      1 /*	$NetBSD: grf_nubus.c,v 1.53 1999/05/30 21:43:19 briggs Exp $	*/
      2 
      3 /*
      4  * Copyright (c) 1995 Allen Briggs.  All rights reserved.
      5  *
      6  * Redistribution and use in source and binary forms, with or without
      7  * modification, are permitted provided that the following conditions
      8  * are met:
      9  * 1. Redistributions of source code must retain the above copyright
     10  *    notice, this list of conditions and the following disclaimer.
     11  * 2. Redistributions in binary form must reproduce the above copyright
     12  *    notice, this list of conditions and the following disclaimer in the
     13  *    documentation and/or other materials provided with the distribution.
     14  * 3. All advertising materials mentioning features or use of this software
     15  *    must display the following acknowledgement:
     16  *	This product includes software developed by Allen Briggs.
     17  * 4. The name of the author may not be used to endorse or promote products
     18  *    derived from this software without specific prior written permission.
     19  *
     20  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     21  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     22  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     23  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     24  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     25  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     26  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     27  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     28  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     29  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 /*
     32  * Device-specific routines for handling Nubus-based video cards.
     33  */
     34 
     35 #include "opt_grf.h"
     36 
     37 #include <sys/param.h>
     38 
     39 #include <sys/device.h>
     40 #include <sys/ioctl.h>
     41 #include <sys/file.h>
     42 #include <sys/malloc.h>
     43 #include <sys/mman.h>
     44 #include <sys/proc.h>
     45 #include <sys/systm.h>
     46 
     47 #include <machine/bus.h>
     48 #include <machine/cpu.h>
     49 #include <machine/grfioctl.h>
     50 #include <machine/viareg.h>
     51 
     52 #include <mac68k/nubus/nubus.h>
     53 #include <mac68k/dev/grfvar.h>
     54 
     55 static void	load_image_data __P((caddr_t data, struct image_data *image));
     56 
     57 static void	grfmv_intr_generic_write1 __P((void *vsc));
     58 static void	grfmv_intr_generic_write4 __P((void *vsc));
     59 static void	grfmv_intr_generic_or4 __P((void *vsc));
     60 
     61 static void	grfmv_intr_cb264 __P((void *vsc));
     62 static void	grfmv_intr_cb364 __P((void *vsc));
     63 static void	grfmv_intr_cmax __P((void *vsc));
     64 static void	grfmv_intr_cti __P((void *vsc));
     65 static void	grfmv_intr_radius __P((void *vsc));
     66 static void	grfmv_intr_radius24 __P((void *vsc));
     67 static void	grfmv_intr_supermacgfx __P((void *vsc));
     68 static void	grfmv_intr_lapis __P((void *vsc));
     69 static void	grfmv_intr_formac __P((void *vsc));
     70 static void	grfmv_intr_vimage __P((void *vsc));
     71 static void	grfmv_intr_gvimage __P((void *vsc));
     72 
     73 static int	grfmv_mode __P((struct grf_softc *gp, int cmd, void *arg));
     74 static int	grfmv_match __P((struct device *, struct cfdata *, void *));
     75 static void	grfmv_attach __P((struct device *, struct device *, void *));
     76 
     77 struct cfattach macvid_ca = {
     78 	sizeof(struct grfbus_softc), grfmv_match, grfmv_attach
     79 };
     80 
     81 static void
     82 load_image_data(data, image)
     83 	caddr_t	data;
     84 	struct	image_data *image;
     85 {
     86 	bcopy(data     , &image->size,       4);
     87 	bcopy(data +  4, &image->offset,     4);
     88 	bcopy(data +  8, &image->rowbytes,   2);
     89 	bcopy(data + 10, &image->top,        2);
     90 	bcopy(data + 12, &image->left,       2);
     91 	bcopy(data + 14, &image->bottom,     2);
     92 	bcopy(data + 16, &image->right,      2);
     93 	bcopy(data + 18, &image->version,    2);
     94 	bcopy(data + 20, &image->packType,   2);
     95 	bcopy(data + 22, &image->packSize,   4);
     96 	bcopy(data + 26, &image->hRes,       4);
     97 	bcopy(data + 30, &image->vRes,       4);
     98 	bcopy(data + 34, &image->pixelType,  2);
     99 	bcopy(data + 36, &image->pixelSize,  2);
    100 	bcopy(data + 38, &image->cmpCount,   2);
    101 	bcopy(data + 40, &image->cmpSize,    2);
    102 	bcopy(data + 42, &image->planeBytes, 4);
    103 }
    104 
    105 
    106 static int
    107 grfmv_match(parent, cf, aux)
    108 	struct device *parent;
    109 	struct cfdata *cf;
    110 	void *aux;
    111 {
    112 	struct nubus_attach_args *na = (struct nubus_attach_args *)aux;
    113 
    114 	if (na->category != NUBUS_CATEGORY_DISPLAY)
    115 		return 0;
    116 
    117 	if (na->type != NUBUS_TYPE_VIDEO)
    118 		return 0;
    119 
    120 	if (na->drsw != NUBUS_DRSW_APPLE)
    121 		return 0;
    122 
    123 	/*
    124 	 * If we've gotten this far, then we're dealing with a real-live
    125 	 * Apple QuickDraw-compatible display card resource.  Now, how to
    126 	 * determine that this is an active resource???  Dunno.  But we'll
    127 	 * proceed like it is.
    128 	 */
    129 
    130 	return 1;
    131 }
    132 
    133 static void
    134 grfmv_attach(parent, self, aux)
    135 	struct device *parent, *self;
    136 	void *aux;
    137 {
    138 	struct grfbus_softc *sc = (struct grfbus_softc *)self;
    139 	struct nubus_attach_args *na = (struct nubus_attach_args *)aux;
    140 	struct image_data image_store, image;
    141 	struct grfmode *gm;
    142 	char cardname[CARD_NAME_LEN];
    143 	nubus_dirent dirent;
    144 	nubus_dir dir, mode_dir;
    145 	int mode;
    146 
    147 	bcopy(na->fmt, &sc->sc_slot, sizeof(nubus_slot));
    148 
    149 	sc->sc_tag = na->na_tag;
    150 	sc->card_id = na->drhw;
    151 	sc->sc_basepa = (bus_addr_t)NUBUS_SLOT2PA(na->slot);
    152 	sc->sc_fbofs = 0;
    153 
    154 	if (bus_space_map(sc->sc_tag, sc->sc_basepa, NBMEMSIZE,
    155 	    0, &sc->sc_handle)) {
    156 		printf(": grfmv_attach: failed to map slot %d\n", na->slot);
    157 		return;
    158 	}
    159 
    160 	nubus_get_main_dir(&sc->sc_slot, &dir);
    161 
    162 	if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle,
    163 	    &sc->sc_slot, &dir, na->rsrcid, &dirent) <= 0) {
    164 bad:
    165 		bus_space_unmap(sc->sc_tag, sc->sc_handle, NBMEMSIZE);
    166 		return;
    167 	}
    168 
    169 	nubus_get_dir_from_rsrc(&sc->sc_slot, &dirent, &sc->board_dir);
    170 
    171 	if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle,
    172 	    &sc->sc_slot, &sc->board_dir, NUBUS_RSRC_TYPE, &dirent) <= 0)
    173 		if ((na->rsrcid != 128) ||
    174 		    (nubus_find_rsrc(sc->sc_tag, sc->sc_handle,
    175 		    &sc->sc_slot, &dir, 129, &dirent) <= 0))
    176 			goto bad;
    177 
    178 	mode = NUBUS_RSRC_FIRSTMODE;
    179 	if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle,
    180 	    &sc->sc_slot, &sc->board_dir, mode, &dirent) <= 0) {
    181 		printf(": probe failed to get board rsrc.\n");
    182 		goto bad;
    183 	}
    184 
    185 	nubus_get_dir_from_rsrc(&sc->sc_slot, &dirent, &mode_dir);
    186 
    187 	if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle,
    188 	    &sc->sc_slot, &mode_dir, VID_PARAMS, &dirent) <= 0) {
    189 		printf(": probe failed to get mode dir.\n");
    190 		goto bad;
    191 	}
    192 
    193 	if (nubus_get_ind_data(sc->sc_tag, sc->sc_handle, &sc->sc_slot,
    194 	    &dirent, (caddr_t)&image_store, sizeof(struct image_data)) <= 0) {
    195 		printf(": probe failed to get indirect mode data.\n");
    196 		goto bad;
    197 	}
    198 
    199 	/* Need to load display info (and driver?), etc... (?) */
    200 
    201 	load_image_data((caddr_t)&image_store, &image);
    202 
    203 	gm = &sc->curr_mode;
    204 	gm->mode_id = mode;
    205 	gm->ptype = image.pixelType;
    206 	gm->psize = image.pixelSize;
    207 	gm->width = image.right - image.left;
    208 	gm->height = image.bottom - image.top;
    209 	gm->rowbytes = image.rowbytes;
    210 	gm->hres = image.hRes;
    211 	gm->vres = image.vRes;
    212 	gm->fbsize = gm->height * gm->rowbytes;
    213 	gm->fbbase = (caddr_t)sc->sc_handle;	/* XXX evil hack */
    214 	gm->fboff = image.offset;
    215 
    216 	strncpy(cardname, nubus_get_card_name(sc->sc_tag, sc->sc_handle,
    217 	    &sc->sc_slot), CARD_NAME_LEN);
    218 	cardname[CARD_NAME_LEN-1] = '\0';
    219 	printf(": %s\n", cardname);
    220 
    221 	if (sc->card_id == NUBUS_DRHW_TFB) {
    222 		/*
    223 		 * This is the Toby card, but apparently some manufacturers
    224 		 * (like Cornerstone) didn't bother to get/use their own
    225 		 * value here, even though the cards are different, so we
    226 		 * so we try to differentiate here.
    227 		 */
    228 		if (strncmp(cardname, "Samsung 768", 11) == 0)
    229 			sc->card_id = NUBUS_DRHW_SAM768;
    230 		else if (strncmp(cardname, "Toby frame", 10) != 0)
    231 			printf("%s: This display card pretends to be a TFB!\n",
    232 			    sc->sc_dev.dv_xname);
    233 	}
    234 
    235 	switch (sc->card_id) {
    236 	case NUBUS_DRHW_TFB:
    237 	case NUBUS_DRHW_M2HRVC:
    238 	case NUBUS_DRHW_PVC:
    239 		sc->cli_offset = 0xa0000;
    240 		sc->cli_value = 0;
    241 		add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc);
    242 		break;
    243 	case NUBUS_DRHW_WVC:
    244 		sc->cli_offset = 0xa00000;
    245 		sc->cli_value = 0;
    246 		add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc);
    247 		break;
    248 	case NUBUS_DRHW_COLORMAX:
    249 		add_nubus_intr(na->slot, grfmv_intr_cmax, sc);
    250 		break;
    251 	case NUBUS_DRHW_SE30:
    252 		/* Do nothing--SE/30 interrupts are disabled */
    253 		break;
    254 	case NUBUS_DRHW_MDC:
    255 		sc->cli_offset = 0x200148;
    256 		sc->cli_value = 1;
    257 		add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc);
    258 
    259 		/* Enable interrupts; to disable, write 0x7 to this location */
    260 		bus_space_write_4(sc->sc_tag, sc->sc_handle, 0x20013C, 5);
    261 		break;
    262 	case NUBUS_DRHW_CB264:
    263 		add_nubus_intr(na->slot, grfmv_intr_cb264, sc);
    264 		break;
    265 	case NUBUS_DRHW_CB364:
    266 		add_nubus_intr(na->slot, grfmv_intr_cb364, sc);
    267 		break;
    268 	case NUBUS_DRHW_RPC8:
    269 		sc->cli_offset = 0xfdff8f;
    270 		sc->cli_value = 0xff;
    271 		add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc);
    272 		break;
    273 	case NUBUS_DRHW_RPC8XJ:
    274 		sc->cli_value = 0x66;
    275 		add_nubus_intr(na->slot, grfmv_intr_radius, sc);
    276 		break;
    277 	case NUBUS_DRHW_RPC24X:
    278 		sc->cli_value = 0x64;
    279 		add_nubus_intr(na->slot, grfmv_intr_radius, sc);
    280 		break;
    281 	case NUBUS_DRHW_RPC24XP:
    282 		add_nubus_intr(na->slot, grfmv_intr_radius24, sc);
    283 		break;
    284 	case NUBUS_DRHW_FIILX:
    285 	case NUBUS_DRHW_FIISXDSP:
    286 	case NUBUS_DRHW_FUTURASX:
    287 		sc->cli_offset = 0xf05000;
    288 		sc->cli_value = 0x80;
    289 		add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc);
    290 		break;
    291 	case NUBUS_DRHW_SAM768:
    292 		add_nubus_intr(na->slot, grfmv_intr_cti, sc);
    293 		break;
    294 	case NUBUS_DRHW_SUPRGFX:
    295 		add_nubus_intr(na->slot, grfmv_intr_supermacgfx, sc);
    296 		break;
    297 	case NUBUS_DRHW_SPECTRM8:
    298 		sc->cli_offset = 0x0de178;
    299 		sc->cli_value = 0x80;
    300 		add_nubus_intr(na->slot, grfmv_intr_generic_or4, sc);
    301 		break;
    302 	case NUBUS_DRHW_LAPIS:
    303 		add_nubus_intr(na->slot, grfmv_intr_lapis, sc);
    304 		break;
    305 	case NUBUS_DRHW_FORMAC:
    306 		add_nubus_intr(na->slot, grfmv_intr_formac, sc);
    307 		break;
    308 	case NUBUS_DRHW_ROPS24LXI:
    309 	case NUBUS_DRHW_ROPS24XLTV:
    310 		sc->cli_offset = 0xfb0010;
    311 		sc->cli_value = 0x00;
    312 		add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc);
    313 		break;
    314 	case NUBUS_DRHW_VIMAGE:
    315 		add_nubus_intr(na->slot, grfmv_intr_vimage, sc);
    316 		break;
    317 	case NUBUS_DRHW_GVIMAGE:
    318 		add_nubus_intr(na->slot, grfmv_intr_gvimage, sc);
    319 		break;
    320 	case NUBUS_DRHW_MC2124NB:
    321 		sc->cli_offset = 0xfd1000;
    322 		sc->cli_value = 0x00;
    323 		add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc);
    324 		break;
    325 	case NUBUS_DRHW_MICRON:
    326 		/* What do we know about this one? */
    327 	default:
    328 		printf("%s: Unknown video card ID 0x%x --",
    329 		    sc->sc_dev.dv_xname, sc->card_id);
    330 		printf(" Not installing interrupt routine.\n");
    331 		break;
    332 	}
    333 
    334 	/* Perform common video attachment. */
    335 	grf_establish(sc, &sc->sc_slot, grfmv_mode);
    336 }
    337 
    338 static int
    339 grfmv_mode(gp, cmd, arg)
    340 	struct grf_softc *gp;
    341 	int cmd;
    342 	void *arg;
    343 {
    344 	switch (cmd) {
    345 	case GM_GRFON:
    346 	case GM_GRFOFF:
    347 		return 0;
    348 	case GM_CURRMODE:
    349 		break;
    350 	case GM_NEWMODE:
    351 		break;
    352 	case GM_LISTMODES:
    353 		break;
    354 	}
    355 	return EINVAL;
    356 }
    357 
    358 /* Interrupt handlers... */
    359 /*
    360  * Generic routine to clear interrupts for cards where it simply takes
    361  * a MOV.B to clear the interrupt.  The offset and value of this byte
    362  * varies between cards.
    363  */
    364 /*ARGSUSED*/
    365 static void
    366 grfmv_intr_generic_write1(vsc)
    367 	void	*vsc;
    368 {
    369 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    370 
    371 	bus_space_write_1(sc->sc_tag, sc->sc_handle,
    372 	    sc->cli_offset, (u_int8_t)sc->cli_value);
    373 }
    374 
    375 /*
    376  * Generic routine to clear interrupts for cards where it simply takes
    377  * a MOV.L to clear the interrupt.  The offset and value of this byte
    378  * varies between cards.
    379  */
    380 /*ARGSUSED*/
    381 static void
    382 grfmv_intr_generic_write4(vsc)
    383 	void	*vsc;
    384 {
    385 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    386 
    387 	bus_space_write_4(sc->sc_tag, sc->sc_handle,
    388 	    sc->cli_offset, sc->cli_value);
    389 }
    390 
    391 /*
    392  * Generic routine to clear interrupts for cards where it simply takes
    393  * an OR.L to clear the interrupt.  The offset and value of this byte
    394  * varies between cards.
    395  */
    396 /*ARGSUSED*/
    397 static void
    398 grfmv_intr_generic_or4(vsc)
    399 	void	*vsc;
    400 {
    401 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    402 	unsigned long	scratch;
    403 
    404 	scratch = bus_space_read_4(sc->sc_tag, sc->sc_handle, sc->cli_offset);
    405 	scratch |= 0x80;
    406 	bus_space_write_4(sc->sc_tag, sc->sc_handle, sc->cli_offset, scratch);
    407 }
    408 
    409 /*
    410  * Routine to clear interrupts for the Radius PrecisionColor 8xj card.
    411  */
    412 /*ARGSUSED*/
    413 static void
    414 grfmv_intr_radius(vsc)
    415 	void	*vsc;
    416 {
    417 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    418 	u_int8_t c;
    419 
    420 	c = sc->cli_value;
    421 
    422 	c |= 0x80;
    423 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c);
    424 	c &= 0x7f;
    425 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c);
    426 }
    427 
    428 /*
    429  * Routine to clear interrupts for the Radius PrecisionColor 24Xp card.
    430  * Is this what the 8xj routine is doing, too?
    431  */
    432 /*ARGSUSED*/
    433 static void
    434 grfmv_intr_radius24(vsc)
    435 	void	*vsc;
    436 {
    437 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    438 	u_int8_t c;
    439 
    440 	c = 0x80 | bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xfffd8);
    441 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c);
    442 	c &= 0x7f;
    443 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c);
    444 }
    445 
    446 /*
    447  * Routine to clear interrupts on Samsung 768x1006 video controller.
    448  * This controller was manufactured by Cornerstone Technology, Inc.,
    449  * now known as Cornerstone Imaging.
    450  *
    451  * To clear this interrupt, we apparently have to set, then clear,
    452  * bit 2 at byte offset 0x80000 from the card's base.
    453  *	Information for this provided by Brad Salai <bsalai (at) servtech.com>
    454  */
    455 /*ARGSUSED*/
    456 static void
    457 grfmv_intr_cti(vsc)
    458 	void	*vsc;
    459 {
    460 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    461 	u_int8_t c;
    462 
    463 	c = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0x80000);
    464 	c |= 0x02;
    465 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x80000, c);
    466 	c &= 0xfd;
    467 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x80000, c);
    468 }
    469 
    470 /*ARGSUSED*/
    471 static void
    472 grfmv_intr_cb264(vsc)
    473 	void	*vsc;
    474 {
    475 	struct grfbus_softc *sc;
    476 	volatile char *slotbase;
    477 
    478 	sc = (struct grfbus_softc *)vsc;
    479 	slotbase = (volatile char *)sc->sc_handle;	/* XXX evil hack */
    480 	asm volatile("	movl	%0,a0
    481 			movl	a0@(0xff6028),d0
    482 			andl	#0x2,d0
    483 			beq	_mv_intr0
    484 			movql	#0x3,d0
    485 		_mv_intr0:
    486 			movl	a0@(0xff600c),d1
    487 			andl	#0x3,d1
    488 			cmpl	d1,d0
    489 			beq	_mv_intr_fin
    490 			movl	d0,a0@(0xff600c)
    491 			nop
    492 			tstb	d0
    493 			beq	_mv_intr1
    494 			movl	#0x0002,a0@(0xff6040)
    495 			movl	#0x0102,a0@(0xff6044)
    496 			movl	#0x0105,a0@(0xff6048)
    497 			movl	#0x000e,a0@(0xff604c)
    498 			movl	#0x001c,a0@(0xff6050)
    499 			movl	#0x00bc,a0@(0xff6054)
    500 			movl	#0x00c3,a0@(0xff6058)
    501 			movl	#0x0061,a0@(0xff605c)
    502 			movl	#0x0012,a0@(0xff6060)
    503 			bra	_mv_intr_fin
    504 		_mv_intr1:
    505 			movl	#0x0002,a0@(0xff6040)
    506 			movl	#0x0209,a0@(0xff6044)
    507 			movl	#0x020c,a0@(0xff6048)
    508 			movl	#0x000f,a0@(0xff604c)
    509 			movl	#0x0027,a0@(0xff6050)
    510 			movl	#0x00c7,a0@(0xff6054)
    511 			movl	#0x00d7,a0@(0xff6058)
    512 			movl	#0x006b,a0@(0xff605c)
    513 			movl	#0x0029,a0@(0xff6060)
    514 		_mv_intr_fin:
    515 			movl	#0x1,a0@(0xff6014)"
    516 		: : "g" (slotbase) : "a0","d0","d1");
    517 }
    518 
    519 /*
    520  * Support for the Colorboard 364 might be more complex than it needs to
    521  * be.  If we can find more information about this card, this might be
    522  * significantly simplified.  Contributions welcome...  :-)
    523  */
    524 /*ARGSUSED*/
    525 static void
    526 grfmv_intr_cb364(vsc)
    527 	void	*vsc;
    528 {
    529 	struct grfbus_softc *sc;
    530 	volatile char *slotbase;
    531 
    532 	sc = (struct grfbus_softc *)vsc;
    533 	slotbase = (volatile char *)sc->sc_handle;	/* XXX evil hack */
    534 	asm volatile("	movl	%0,a0
    535 			movl	a0@(0xfe6028),d0
    536 			andl	#0x2,d0
    537 			beq	_cb364_intr4
    538 			movql	#0x3,d0
    539 			movl	a0@(0xfe6018),d1
    540 			movl	#0x3,a0@(0xfe6018)
    541 			movw	a0@(0xfe7010),d2
    542 			movl	d1,a0@(0xfe6018)
    543 			movl	a0@(0xfe6020),d1
    544 			btst	#0x06,d2
    545 			beq	_cb364_intr0
    546 			btst	#0x00,d1
    547 			beq	_cb364_intr5
    548 			bsr	_cb364_intr1
    549 			bra	_cb364_intr_out
    550 		_cb364_intr0:
    551 			btst	#0x00,d1
    552 			bne	_cb364_intr5
    553 			bsr	_cb364_intr1
    554 			bra	_cb364_intr_out
    555 		_cb364_intr1:
    556 			movl	d0,a0@(0xfe600c)
    557 			nop
    558 			tstb	d0
    559 			beq	_cb364_intr3
    560 			movl	#0x0002,a0@(0xfe6040)
    561 			movl	#0x0105,a0@(0xfe6048)
    562 			movl	#0x000e,a0@(0xfe604c)
    563 			movl	#0x00c3,a0@(0xfe6058)
    564 			movl	#0x0061,a0@(0xfe605c)
    565 			btst	#0x06,d2
    566 			beq	_cb364_intr2
    567 			movl	#0x001c,a0@(0xfe6050)
    568 			movl	#0x00bc,a0@(0xfe6054)
    569 			movl	#0x0012,a0@(0xfe6060)
    570 			movl	#0x000e,a0@(0xfe6044)
    571 			movl	#0x00c3,a0@(0xfe6064)
    572 			movl	#0x0061,a0@(0xfe6020)
    573 			rts
    574 		_cb364_intr2:
    575 			movl	#0x0016,a0@(0xfe6050)
    576 			movl	#0x00b6,a0@(0xfe6054)
    577 			movl	#0x0011,a0@(0xfe6060)
    578 			movl	#0x0101,a0@(0xfe6044)
    579 			movl	#0x00bf,a0@(0xfe6064)
    580 			movl	#0x0001,a0@(0xfe6020)
    581 			rts
    582 		_cb364_intr3:
    583 			movl	#0x0002,a0@(0xfe6040)
    584 			movl	#0x0209,a0@(0xfe6044)
    585 			movl	#0x020c,a0@(0xfe6048)
    586 			movl	#0x000f,a0@(0xfe604c)
    587 			movl	#0x0027,a0@(0xfe6050)
    588 			movl	#0x00c7,a0@(0xfe6054)
    589 			movl	#0x00d7,a0@(0xfe6058)
    590 			movl	#0x006b,a0@(0xfe605c)
    591 			movl	#0x0029,a0@(0xfe6060)
    592 			oril	#0x0040,a0@(0xfe6064)
    593 			movl	#0x0000,a0@(0xfe6020)
    594 			rts
    595 		_cb364_intr4:
    596 			movq	#0x00,d0
    597 		_cb364_intr5:
    598 			movl	a0@(0xfe600c),d1
    599 			andl	#0x3,d1
    600 			cmpl	d1,d0
    601 			beq	_cb364_intr_out
    602 			bsr	_cb364_intr1
    603 		_cb364_intr_out:
    604 			movl	#0x1,a0@(0xfe6014)
    605 		_cb364_intr_quit:
    606 		" : : "g" (slotbase) : "a0","d0","d1","d2");
    607 }
    608 
    609 /*
    610  * Interrupt clearing routine for SuperMac GFX card.
    611  */
    612 /*ARGSUSED*/
    613 static void
    614 grfmv_intr_supermacgfx(vsc)
    615 	void	*vsc;
    616 {
    617 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    618 	u_int8_t dummy;
    619 
    620 	dummy = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xE70D3);
    621 }
    622 
    623 /*
    624  * Routine to clear interrupts for the Sigma Designs ColorMax card.
    625  */
    626 /*ARGSUSED*/
    627 static void
    628 grfmv_intr_cmax(vsc)
    629 	void	*vsc;
    630 {
    631 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    632 	u_int32_t dummy;
    633 
    634 	dummy = bus_space_read_4(sc->sc_tag, sc->sc_handle, 0xf501c);
    635 	dummy = bus_space_read_4(sc->sc_tag, sc->sc_handle, 0xf5018);
    636 }
    637 
    638 /*
    639  * Routine to clear interrupts for the Lapis ProColorServer 8 PDS card
    640  * (for the SE/30).
    641  */
    642 /*ARGSUSED*/
    643 static void
    644 grfmv_intr_lapis(vsc)
    645 	void	*vsc;
    646 {
    647 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    648 
    649 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xff7000, 0x08);
    650 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xff7000, 0x0C);
    651 }
    652 
    653 /*
    654  * Routine to clear interrupts for the Formac Color Card II
    655  */
    656 /*ARGSUSED*/
    657 static void
    658 grfmv_intr_formac(vsc)
    659 	void	*vsc;
    660 {
    661 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    662 	u_int8_t dummy;
    663 
    664 	dummy = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xde80db);
    665 	dummy = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xde80d3);
    666 }
    667 
    668 /*
    669  * Routine to clear interrupts for the Vimage by Interware Co., Ltd.
    670  */
    671 /*ARGSUSED*/
    672 static void
    673 grfmv_intr_vimage(vsc)
    674 	void	*vsc;
    675 {
    676 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    677 
    678 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x800000, 0x67);
    679 	bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x800000, 0xE7);
    680 }
    681 
    682 /*
    683  * Routine to clear interrupts for the Grand Vimage by Interware Co., Ltd.
    684  */
    685 /*ARGSUSED*/
    686 static void
    687 grfmv_intr_gvimage(vsc)
    688 	void	*vsc;
    689 {
    690 	struct grfbus_softc *sc = (struct grfbus_softc *)vsc;
    691 	u_int8_t dummy;
    692 
    693 	dummy = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xf00000);
    694 }
    695