1 1.79 thorpej /* $NetBSD: grf_nubus.c,v 1.79 2023/12/20 00:40:43 thorpej Exp $ */ 2 1.1 briggs 3 1.1 briggs /* 4 1.1 briggs * Copyright (c) 1995 Allen Briggs. All rights reserved. 5 1.1 briggs * 6 1.1 briggs * Redistribution and use in source and binary forms, with or without 7 1.1 briggs * modification, are permitted provided that the following conditions 8 1.1 briggs * are met: 9 1.1 briggs * 1. Redistributions of source code must retain the above copyright 10 1.1 briggs * notice, this list of conditions and the following disclaimer. 11 1.1 briggs * 2. Redistributions in binary form must reproduce the above copyright 12 1.1 briggs * notice, this list of conditions and the following disclaimer in the 13 1.1 briggs * documentation and/or other materials provided with the distribution. 14 1.58 briggs * 3. The name of the author may not be used to endorse or promote products 15 1.1 briggs * derived from this software without specific prior written permission. 16 1.1 briggs * 17 1.1 briggs * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 18 1.1 briggs * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 19 1.1 briggs * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 20 1.1 briggs * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 21 1.1 briggs * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 22 1.1 briggs * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23 1.1 briggs * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24 1.1 briggs * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 1.1 briggs * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 26 1.1 briggs * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 1.1 briggs */ 28 1.1 briggs /* 29 1.1 briggs * Device-specific routines for handling Nubus-based video cards. 30 1.1 briggs */ 31 1.67 lukem 32 1.67 lukem #include <sys/cdefs.h> 33 1.79 thorpej __KERNEL_RCSID(0, "$NetBSD: grf_nubus.c,v 1.79 2023/12/20 00:40:43 thorpej Exp $"); 34 1.1 briggs 35 1.1 briggs #include <sys/param.h> 36 1.1 briggs 37 1.1 briggs #include <sys/device.h> 38 1.1 briggs #include <sys/ioctl.h> 39 1.1 briggs #include <sys/file.h> 40 1.1 briggs #include <sys/mman.h> 41 1.1 briggs #include <sys/proc.h> 42 1.8 briggs #include <sys/systm.h> 43 1.1 briggs 44 1.16 scottr #include <machine/bus.h> 45 1.8 briggs #include <machine/cpu.h> 46 1.1 briggs #include <machine/grfioctl.h> 47 1.8 briggs #include <machine/viareg.h> 48 1.1 briggs 49 1.43 scottr #include <mac68k/nubus/nubus.h> 50 1.31 scottr #include <mac68k/dev/grfvar.h> 51 1.1 briggs 52 1.72 christos static void load_image_data(void *, struct image_data *); 53 1.1 briggs 54 1.68 chs static void grfmv_intr_generic_write1(void *); 55 1.68 chs static void grfmv_intr_generic_write4(void *); 56 1.68 chs static void grfmv_intr_generic_or4(void *); 57 1.68 chs 58 1.68 chs static void grfmv_intr_cb264(void *); 59 1.68 chs static void grfmv_intr_cb364(void *); 60 1.68 chs static void grfmv_intr_cmax(void *); 61 1.68 chs static void grfmv_intr_cti(void *); 62 1.68 chs static void grfmv_intr_radius(void *); 63 1.68 chs static void grfmv_intr_radius24(void *); 64 1.68 chs static void grfmv_intr_supermacgfx(void *); 65 1.68 chs static void grfmv_intr_lapis(void *); 66 1.68 chs static void grfmv_intr_formac(void *); 67 1.68 chs static void grfmv_intr_vimage(void *); 68 1.68 chs static void grfmv_intr_gvimage(void *); 69 1.68 chs static void grfmv_intr_radius_gsc(void *); 70 1.68 chs static void grfmv_intr_radius_gx(void *); 71 1.71 hauke static void grfmv_intr_relax_200(void *); 72 1.71 hauke static void grfmv_intr_mvc(void *); 73 1.71 hauke static void grfmv_intr_viltro_340(void *); 74 1.68 chs 75 1.68 chs static int grfmv_mode(struct grf_softc *, int, void *); 76 1.76 chs static int grfmv_match(device_t, cfdata_t, void *); 77 1.76 chs static void grfmv_attach(device_t, device_t, void *); 78 1.11 scottr 79 1.76 chs CFATTACH_DECL_NEW(macvid, sizeof(struct grfbus_softc), 80 1.66 thorpej grfmv_match, grfmv_attach, NULL, NULL); 81 1.8 briggs 82 1.1 briggs static void 83 1.72 christos load_image_data(void * data, struct image_data *image) 84 1.68 chs { 85 1.73 he char *d = (char*)data; 86 1.73 he 87 1.73 he memcpy(&image->size, d , 4); 88 1.73 he memcpy(&image->offset, d + 4, 4); 89 1.73 he memcpy(&image->rowbytes, d + 8, 2); 90 1.73 he memcpy(&image->top, d + 10, 2); 91 1.73 he memcpy(&image->left, d + 12, 2); 92 1.73 he memcpy(&image->bottom, d + 14, 2); 93 1.73 he memcpy(&image->right, d + 16, 2); 94 1.73 he memcpy(&image->version, d + 18, 2); 95 1.73 he memcpy(&image->packType, d + 20, 2); 96 1.73 he memcpy(&image->packSize, d + 22, 4); 97 1.73 he memcpy(&image->hRes, d + 26, 4); 98 1.73 he memcpy(&image->vRes, d + 30, 4); 99 1.73 he memcpy(&image->pixelType, d + 34, 2); 100 1.73 he memcpy(&image->pixelSize, d + 36, 2); 101 1.73 he memcpy(&image->cmpCount, d + 38, 2); 102 1.73 he memcpy(&image->cmpSize, d + 40, 2); 103 1.73 he memcpy(&image->planeBytes, d + 42, 4); 104 1.1 briggs } 105 1.1 briggs 106 1.1 briggs 107 1.7 briggs static int 108 1.76 chs grfmv_match(device_t parent, cfdata_t cf, void *aux) 109 1.1 briggs { 110 1.21 scottr struct nubus_attach_args *na = (struct nubus_attach_args *)aux; 111 1.1 briggs 112 1.15 scottr if (na->category != NUBUS_CATEGORY_DISPLAY) 113 1.1 briggs return 0; 114 1.1 briggs 115 1.15 scottr if (na->type != NUBUS_TYPE_VIDEO) 116 1.1 briggs return 0; 117 1.1 briggs 118 1.15 scottr if (na->drsw != NUBUS_DRSW_APPLE) 119 1.1 briggs return 0; 120 1.1 briggs 121 1.1 briggs /* 122 1.1 briggs * If we've gotten this far, then we're dealing with a real-live 123 1.1 briggs * Apple QuickDraw-compatible display card resource. Now, how to 124 1.1 briggs * determine that this is an active resource??? Dunno. But we'll 125 1.1 briggs * proceed like it is. 126 1.1 briggs */ 127 1.1 briggs 128 1.1 briggs return 1; 129 1.1 briggs } 130 1.1 briggs 131 1.8 briggs static void 132 1.76 chs grfmv_attach(device_t parent, device_t self, void *aux) 133 1.1 briggs { 134 1.76 chs struct grfbus_softc *sc = device_private(self); 135 1.21 scottr struct nubus_attach_args *na = (struct nubus_attach_args *)aux; 136 1.1 briggs struct image_data image_store, image; 137 1.15 scottr struct grfmode *gm; 138 1.15 scottr char cardname[CARD_NAME_LEN]; 139 1.15 scottr nubus_dirent dirent; 140 1.15 scottr nubus_dir dir, mode_dir; 141 1.15 scottr int mode; 142 1.15 scottr 143 1.68 chs memcpy(&sc->sc_slot, na->fmt, sizeof(nubus_slot)); 144 1.46 scottr 145 1.78 rjs sc->sc_dev = self; 146 1.25 scottr sc->sc_tag = na->na_tag; 147 1.15 scottr sc->card_id = na->drhw; 148 1.49 scottr sc->sc_basepa = (bus_addr_t)NUBUS_SLOT2PA(na->slot); 149 1.49 scottr sc->sc_fbofs = 0; 150 1.15 scottr 151 1.49 scottr if (bus_space_map(sc->sc_tag, sc->sc_basepa, NBMEMSIZE, 152 1.46 scottr 0, &sc->sc_handle)) { 153 1.25 scottr printf(": grfmv_attach: failed to map slot %d\n", na->slot); 154 1.25 scottr return; 155 1.25 scottr } 156 1.25 scottr 157 1.15 scottr nubus_get_main_dir(&sc->sc_slot, &dir); 158 1.1 briggs 159 1.25 scottr if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle, 160 1.25 scottr &sc->sc_slot, &dir, na->rsrcid, &dirent) <= 0) { 161 1.25 scottr bad: 162 1.25 scottr bus_space_unmap(sc->sc_tag, sc->sc_handle, NBMEMSIZE); 163 1.15 scottr return; 164 1.25 scottr } 165 1.15 scottr 166 1.15 scottr nubus_get_dir_from_rsrc(&sc->sc_slot, &dirent, &sc->board_dir); 167 1.15 scottr 168 1.25 scottr if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle, 169 1.25 scottr &sc->sc_slot, &sc->board_dir, NUBUS_RSRC_TYPE, &dirent) <= 0) 170 1.15 scottr if ((na->rsrcid != 128) || 171 1.25 scottr (nubus_find_rsrc(sc->sc_tag, sc->sc_handle, 172 1.25 scottr &sc->sc_slot, &dir, 129, &dirent) <= 0)) 173 1.25 scottr goto bad; 174 1.8 briggs 175 1.1 briggs mode = NUBUS_RSRC_FIRSTMODE; 176 1.25 scottr if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle, 177 1.25 scottr &sc->sc_slot, &sc->board_dir, mode, &dirent) <= 0) { 178 1.25 scottr printf(": probe failed to get board rsrc.\n"); 179 1.25 scottr goto bad; 180 1.8 briggs } 181 1.1 briggs 182 1.1 briggs nubus_get_dir_from_rsrc(&sc->sc_slot, &dirent, &mode_dir); 183 1.1 briggs 184 1.25 scottr if (nubus_find_rsrc(sc->sc_tag, sc->sc_handle, 185 1.25 scottr &sc->sc_slot, &mode_dir, VID_PARAMS, &dirent) <= 0) { 186 1.25 scottr printf(": probe failed to get mode dir.\n"); 187 1.25 scottr goto bad; 188 1.8 briggs } 189 1.1 briggs 190 1.25 scottr if (nubus_get_ind_data(sc->sc_tag, sc->sc_handle, &sc->sc_slot, 191 1.72 christos &dirent, (void *)&image_store, sizeof(struct image_data)) <= 0) { 192 1.25 scottr printf(": probe failed to get indirect mode data.\n"); 193 1.25 scottr goto bad; 194 1.8 briggs } 195 1.1 briggs 196 1.15 scottr /* Need to load display info (and driver?), etc... (?) */ 197 1.15 scottr 198 1.72 christos load_image_data((void *)&image_store, &image); 199 1.1 briggs 200 1.15 scottr gm = &sc->curr_mode; 201 1.11 scottr gm->mode_id = mode; 202 1.49 scottr gm->ptype = image.pixelType; 203 1.49 scottr gm->psize = image.pixelSize; 204 1.11 scottr gm->width = image.right - image.left; 205 1.11 scottr gm->height = image.bottom - image.top; 206 1.49 scottr gm->rowbytes = image.rowbytes; 207 1.11 scottr gm->hres = image.hRes; 208 1.11 scottr gm->vres = image.vRes; 209 1.49 scottr gm->fbsize = gm->height * gm->rowbytes; 210 1.72 christos gm->fbbase = (void *)(sc->sc_handle.base); /* XXX evil hack */ 211 1.49 scottr gm->fboff = image.offset; 212 1.1 briggs 213 1.25 scottr strncpy(cardname, nubus_get_card_name(sc->sc_tag, sc->sc_handle, 214 1.25 scottr &sc->sc_slot), CARD_NAME_LEN); 215 1.11 scottr cardname[CARD_NAME_LEN-1] = '\0'; 216 1.21 scottr printf(": %s\n", cardname); 217 1.1 briggs 218 1.18 briggs if (sc->card_id == NUBUS_DRHW_TFB) { 219 1.18 briggs /* 220 1.18 briggs * This is the Toby card, but apparently some manufacturers 221 1.18 briggs * (like Cornerstone) didn't bother to get/use their own 222 1.18 briggs * value here, even though the cards are different, so we 223 1.74 jmmv * try to differentiate here. 224 1.18 briggs */ 225 1.21 scottr if (strncmp(cardname, "Samsung 768", 11) == 0) 226 1.18 briggs sc->card_id = NUBUS_DRHW_SAM768; 227 1.21 scottr else if (strncmp(cardname, "Toby frame", 10) != 0) 228 1.25 scottr printf("%s: This display card pretends to be a TFB!\n", 229 1.76 chs device_xname(self)); 230 1.18 briggs } 231 1.18 briggs 232 1.18 briggs switch (sc->card_id) { 233 1.28 scottr case NUBUS_DRHW_TFB: 234 1.18 briggs case NUBUS_DRHW_M2HRVC: 235 1.27 scottr case NUBUS_DRHW_PVC: 236 1.18 briggs sc->cli_offset = 0xa0000; 237 1.22 briggs sc->cli_value = 0; 238 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc); 239 1.18 briggs break; 240 1.18 briggs case NUBUS_DRHW_WVC: 241 1.18 briggs sc->cli_offset = 0xa00000; 242 1.22 briggs sc->cli_value = 0; 243 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc); 244 1.28 scottr break; 245 1.32 scottr case NUBUS_DRHW_COLORMAX: 246 1.32 scottr add_nubus_intr(na->slot, grfmv_intr_cmax, sc); 247 1.32 scottr break; 248 1.28 scottr case NUBUS_DRHW_SE30: 249 1.28 scottr /* Do nothing--SE/30 interrupts are disabled */ 250 1.28 scottr break; 251 1.28 scottr case NUBUS_DRHW_MDC: 252 1.28 scottr sc->cli_offset = 0x200148; 253 1.28 scottr sc->cli_value = 1; 254 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc); 255 1.28 scottr 256 1.28 scottr /* Enable interrupts; to disable, write 0x7 to this location */ 257 1.28 scottr bus_space_write_4(sc->sc_tag, sc->sc_handle, 0x20013C, 5); 258 1.28 scottr break; 259 1.28 scottr case NUBUS_DRHW_CB264: 260 1.28 scottr add_nubus_intr(na->slot, grfmv_intr_cb264, sc); 261 1.28 scottr break; 262 1.28 scottr case NUBUS_DRHW_CB364: 263 1.28 scottr add_nubus_intr(na->slot, grfmv_intr_cb364, sc); 264 1.34 briggs break; 265 1.34 briggs case NUBUS_DRHW_RPC8: 266 1.34 briggs sc->cli_offset = 0xfdff8f; 267 1.34 briggs sc->cli_value = 0xff; 268 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc); 269 1.22 briggs break; 270 1.23 briggs case NUBUS_DRHW_RPC8XJ: 271 1.45 briggs sc->cli_value = 0x66; 272 1.45 briggs add_nubus_intr(na->slot, grfmv_intr_radius, sc); 273 1.45 briggs break; 274 1.45 briggs case NUBUS_DRHW_RPC24X: 275 1.60 briggs case NUBUS_DRHW_BOOGIE: 276 1.45 briggs sc->cli_value = 0x64; 277 1.25 scottr add_nubus_intr(na->slot, grfmv_intr_radius, sc); 278 1.23 briggs break; 279 1.40 briggs case NUBUS_DRHW_RPC24XP: 280 1.40 briggs add_nubus_intr(na->slot, grfmv_intr_radius24, sc); 281 1.40 briggs break; 282 1.55 briggs case NUBUS_DRHW_RADGSC: 283 1.55 briggs add_nubus_intr(na->slot, grfmv_intr_radius_gsc, sc); 284 1.55 briggs break; 285 1.61 briggs case NUBUS_DRHW_RDCGX: 286 1.61 briggs add_nubus_intr(na->slot, grfmv_intr_radius_gx, sc); 287 1.61 briggs break; 288 1.22 briggs case NUBUS_DRHW_FIILX: 289 1.22 briggs case NUBUS_DRHW_FIISXDSP: 290 1.35 briggs case NUBUS_DRHW_FUTURASX: 291 1.26 scottr sc->cli_offset = 0xf05000; 292 1.22 briggs sc->cli_value = 0x80; 293 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write1, sc); 294 1.18 briggs break; 295 1.18 briggs case NUBUS_DRHW_SAM768: 296 1.25 scottr add_nubus_intr(na->slot, grfmv_intr_cti, sc); 297 1.19 briggs break; 298 1.33 briggs case NUBUS_DRHW_SUPRGFX: 299 1.33 briggs add_nubus_intr(na->slot, grfmv_intr_supermacgfx, sc); 300 1.33 briggs break; 301 1.38 briggs case NUBUS_DRHW_SPECTRM8: 302 1.38 briggs sc->cli_offset = 0x0de178; 303 1.38 briggs sc->cli_value = 0x80; 304 1.38 briggs add_nubus_intr(na->slot, grfmv_intr_generic_or4, sc); 305 1.38 briggs break; 306 1.36 briggs case NUBUS_DRHW_LAPIS: 307 1.36 briggs add_nubus_intr(na->slot, grfmv_intr_lapis, sc); 308 1.36 briggs break; 309 1.71 hauke case NUBUS_DRHW_RELAX200: 310 1.71 hauke add_nubus_intr(na->slot, grfmv_intr_relax_200, sc); 311 1.71 hauke break; 312 1.71 hauke case NUBUS_DRHW_BAER: 313 1.40 briggs case NUBUS_DRHW_FORMAC: 314 1.40 briggs add_nubus_intr(na->slot, grfmv_intr_formac, sc); 315 1.42 briggs break; 316 1.42 briggs case NUBUS_DRHW_ROPS24LXI: 317 1.53 briggs case NUBUS_DRHW_ROPS24XLTV: 318 1.57 scottr case NUBUS_DRHW_ROPS24MXTV: 319 1.42 briggs sc->cli_offset = 0xfb0010; 320 1.42 briggs sc->cli_value = 0x00; 321 1.62 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc); 322 1.62 briggs break; 323 1.62 briggs case NUBUS_DRHW_ROPSPPGT: 324 1.62 briggs sc->cli_offset = 0xf50010; 325 1.62 briggs sc->cli_value = 0x02; 326 1.42 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc); 327 1.40 briggs break; 328 1.44 briggs case NUBUS_DRHW_VIMAGE: 329 1.44 briggs add_nubus_intr(na->slot, grfmv_intr_vimage, sc); 330 1.44 briggs break; 331 1.48 briggs case NUBUS_DRHW_GVIMAGE: 332 1.48 briggs add_nubus_intr(na->slot, grfmv_intr_gvimage, sc); 333 1.51 scottr break; 334 1.52 scottr case NUBUS_DRHW_MC2124NB: 335 1.51 scottr sc->cli_offset = 0xfd1000; 336 1.51 scottr sc->cli_value = 0x00; 337 1.51 scottr add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc); 338 1.48 briggs break; 339 1.18 briggs case NUBUS_DRHW_MICRON: 340 1.54 briggs sc->cli_offset = 0xa00014; 341 1.54 briggs sc->cli_value = 0; 342 1.54 briggs add_nubus_intr(na->slot, grfmv_intr_generic_write4, sc); 343 1.54 briggs break; 344 1.71 hauke case NUBUS_DRHW_MVC: 345 1.71 hauke add_nubus_intr(na->slot, grfmv_intr_mvc, sc); 346 1.71 hauke break; 347 1.71 hauke case NUBUS_DRHW_VILTRO340: 348 1.71 hauke add_nubus_intr(na->slot, grfmv_intr_viltro_340, sc); 349 1.71 hauke break; 350 1.18 briggs default: 351 1.21 scottr printf("%s: Unknown video card ID 0x%x --", 352 1.76 chs device_xname(self), sc->card_id); 353 1.21 scottr printf(" Not installing interrupt routine.\n"); 354 1.18 briggs break; 355 1.18 briggs } 356 1.1 briggs 357 1.11 scottr /* Perform common video attachment. */ 358 1.46 scottr grf_establish(sc, &sc->sc_slot, grfmv_mode); 359 1.1 briggs } 360 1.1 briggs 361 1.8 briggs static int 362 1.68 chs grfmv_mode(struct grf_softc *gp, int cmd, void *arg) 363 1.1 briggs { 364 1.1 briggs switch (cmd) { 365 1.4 briggs case GM_GRFON: 366 1.4 briggs case GM_GRFOFF: 367 1.4 briggs return 0; 368 1.1 briggs case GM_CURRMODE: 369 1.1 briggs break; 370 1.1 briggs case GM_NEWMODE: 371 1.1 briggs break; 372 1.1 briggs case GM_LISTMODES: 373 1.1 briggs break; 374 1.1 briggs } 375 1.1 briggs return EINVAL; 376 1.18 briggs } 377 1.18 briggs 378 1.18 briggs /* Interrupt handlers... */ 379 1.18 briggs /* 380 1.18 briggs * Generic routine to clear interrupts for cards where it simply takes 381 1.28 scottr * a MOV.B to clear the interrupt. The offset and value of this byte 382 1.28 scottr * varies between cards. 383 1.18 briggs */ 384 1.18 briggs /*ARGSUSED*/ 385 1.18 briggs static void 386 1.68 chs grfmv_intr_generic_write1(void *vsc) 387 1.18 briggs { 388 1.26 scottr struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 389 1.26 scottr 390 1.26 scottr bus_space_write_1(sc->sc_tag, sc->sc_handle, 391 1.28 scottr sc->cli_offset, (u_int8_t)sc->cli_value); 392 1.28 scottr } 393 1.28 scottr 394 1.28 scottr /* 395 1.28 scottr * Generic routine to clear interrupts for cards where it simply takes 396 1.28 scottr * a MOV.L to clear the interrupt. The offset and value of this byte 397 1.28 scottr * varies between cards. 398 1.28 scottr */ 399 1.28 scottr /*ARGSUSED*/ 400 1.28 scottr static void 401 1.68 chs grfmv_intr_generic_write4(void *vsc) 402 1.28 scottr { 403 1.28 scottr struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 404 1.28 scottr 405 1.28 scottr bus_space_write_4(sc->sc_tag, sc->sc_handle, 406 1.26 scottr sc->cli_offset, sc->cli_value); 407 1.38 briggs } 408 1.38 briggs 409 1.38 briggs /* 410 1.38 briggs * Generic routine to clear interrupts for cards where it simply takes 411 1.38 briggs * an OR.L to clear the interrupt. The offset and value of this byte 412 1.38 briggs * varies between cards. 413 1.38 briggs */ 414 1.38 briggs /*ARGSUSED*/ 415 1.38 briggs static void 416 1.68 chs grfmv_intr_generic_or4(void *vsc) 417 1.38 briggs { 418 1.38 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 419 1.38 briggs unsigned long scratch; 420 1.38 briggs 421 1.38 briggs scratch = bus_space_read_4(sc->sc_tag, sc->sc_handle, sc->cli_offset); 422 1.38 briggs scratch |= 0x80; 423 1.38 briggs bus_space_write_4(sc->sc_tag, sc->sc_handle, sc->cli_offset, scratch); 424 1.23 briggs } 425 1.23 briggs 426 1.23 briggs /* 427 1.26 scottr * Routine to clear interrupts for the Radius PrecisionColor 8xj card. 428 1.23 briggs */ 429 1.23 briggs /*ARGSUSED*/ 430 1.23 briggs static void 431 1.68 chs grfmv_intr_radius(void *vsc) 432 1.23 briggs { 433 1.26 scottr struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 434 1.26 scottr u_int8_t c; 435 1.23 briggs 436 1.45 briggs c = sc->cli_value; 437 1.23 briggs 438 1.23 briggs c |= 0x80; 439 1.26 scottr bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c); 440 1.26 scottr c &= 0x7f; 441 1.26 scottr bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c); 442 1.18 briggs } 443 1.18 briggs 444 1.18 briggs /* 445 1.40 briggs * Routine to clear interrupts for the Radius PrecisionColor 24Xp card. 446 1.40 briggs * Is this what the 8xj routine is doing, too? 447 1.40 briggs */ 448 1.40 briggs /*ARGSUSED*/ 449 1.40 briggs static void 450 1.68 chs grfmv_intr_radius24(void *vsc) 451 1.40 briggs { 452 1.40 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 453 1.40 briggs u_int8_t c; 454 1.40 briggs 455 1.40 briggs c = 0x80 | bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xfffd8); 456 1.40 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c); 457 1.40 briggs c &= 0x7f; 458 1.40 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xd00403, c); 459 1.40 briggs } 460 1.40 briggs 461 1.40 briggs /* 462 1.18 briggs * Routine to clear interrupts on Samsung 768x1006 video controller. 463 1.18 briggs * This controller was manufactured by Cornerstone Technology, Inc., 464 1.18 briggs * now known as Cornerstone Imaging. 465 1.18 briggs * 466 1.18 briggs * To clear this interrupt, we apparently have to set, then clear, 467 1.18 briggs * bit 2 at byte offset 0x80000 from the card's base. 468 1.18 briggs * Information for this provided by Brad Salai <bsalai (at) servtech.com> 469 1.18 briggs */ 470 1.18 briggs /*ARGSUSED*/ 471 1.18 briggs static void 472 1.68 chs grfmv_intr_cti(void *vsc) 473 1.18 briggs { 474 1.26 scottr struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 475 1.26 scottr u_int8_t c; 476 1.18 briggs 477 1.26 scottr c = bus_space_read_1(sc->sc_tag, sc->sc_handle, 0x80000); 478 1.26 scottr c |= 0x02; 479 1.26 scottr bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x80000, c); 480 1.26 scottr c &= 0xfd; 481 1.26 scottr bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x80000, c); 482 1.18 briggs } 483 1.18 briggs 484 1.18 briggs /*ARGSUSED*/ 485 1.18 briggs static void 486 1.68 chs grfmv_intr_cb264(void *vsc) 487 1.18 briggs { 488 1.18 briggs struct grfbus_softc *sc; 489 1.21 scottr volatile char *slotbase; 490 1.18 briggs 491 1.21 scottr sc = (struct grfbus_softc *)vsc; 492 1.59 briggs slotbase = (volatile char *)(sc->sc_handle.base); /* XXX evil hack */ 493 1.70 perry __asm volatile( 494 1.64 thorpej " movl %0,%%a0 \n" 495 1.64 thorpej " movl %%a0@(0xff6028),%%d0 \n" 496 1.64 thorpej " andl #0x2,%%d0 \n" 497 1.64 thorpej " beq _mv_intr0 \n" 498 1.64 thorpej " movql #0x3,%%d0 \n" 499 1.64 thorpej "_mv_intr0: \n" 500 1.64 thorpej " movl %%a0@(0xff600c),%%d1 \n" 501 1.64 thorpej " andl #0x3,%%d1 \n" 502 1.64 thorpej " cmpl %%d1,%%d0 \n" 503 1.64 thorpej " beq _mv_intr_fin \n" 504 1.64 thorpej " movl %%d0,%%a0@(0xff600c) \n" 505 1.64 thorpej " nop \n" 506 1.64 thorpej " tstb %%d0 \n" 507 1.64 thorpej " beq _mv_intr1 \n" 508 1.64 thorpej " movl #0x0002,%%a0@(0xff6040) \n" 509 1.64 thorpej " movl #0x0102,%%a0@(0xff6044) \n" 510 1.64 thorpej " movl #0x0105,%%a0@(0xff6048) \n" 511 1.64 thorpej " movl #0x000e,%%a0@(0xff604c) \n" 512 1.64 thorpej " movl #0x001c,%%a0@(0xff6050) \n" 513 1.64 thorpej " movl #0x00bc,%%a0@(0xff6054) \n" 514 1.64 thorpej " movl #0x00c3,%%a0@(0xff6058) \n" 515 1.64 thorpej " movl #0x0061,%%a0@(0xff605c) \n" 516 1.64 thorpej " movl #0x0012,%%a0@(0xff6060) \n" 517 1.64 thorpej " bra _mv_intr_fin \n" 518 1.64 thorpej "_mv_intr1: \n" 519 1.64 thorpej " movl #0x0002,%%a0@(0xff6040) \n" 520 1.64 thorpej " movl #0x0209,%%a0@(0xff6044) \n" 521 1.64 thorpej " movl #0x020c,%%a0@(0xff6048) \n" 522 1.64 thorpej " movl #0x000f,%%a0@(0xff604c) \n" 523 1.64 thorpej " movl #0x0027,%%a0@(0xff6050) \n" 524 1.64 thorpej " movl #0x00c7,%%a0@(0xff6054) \n" 525 1.64 thorpej " movl #0x00d7,%%a0@(0xff6058) \n" 526 1.64 thorpej " movl #0x006b,%%a0@(0xff605c) \n" 527 1.64 thorpej " movl #0x0029,%%a0@(0xff6060) \n" 528 1.64 thorpej "_mv_intr_fin: \n" 529 1.64 thorpej " movl #0x1,%%a0@(0xff6014)" 530 1.18 briggs : : "g" (slotbase) : "a0","d0","d1"); 531 1.24 briggs } 532 1.24 briggs 533 1.24 briggs /* 534 1.24 briggs * Support for the Colorboard 364 might be more complex than it needs to 535 1.24 briggs * be. If we can find more information about this card, this might be 536 1.24 briggs * significantly simplified. Contributions welcome... :-) 537 1.24 briggs */ 538 1.24 briggs /*ARGSUSED*/ 539 1.24 briggs static void 540 1.68 chs grfmv_intr_cb364(void *vsc) 541 1.24 briggs { 542 1.24 briggs struct grfbus_softc *sc; 543 1.24 briggs volatile char *slotbase; 544 1.24 briggs 545 1.24 briggs sc = (struct grfbus_softc *)vsc; 546 1.59 briggs slotbase = (volatile char *)(sc->sc_handle.base); /* XXX evil hack */ 547 1.70 perry __asm volatile( 548 1.64 thorpej " movl %0,%%a0 \n" 549 1.64 thorpej " movl %%a0@(0xfe6028),%%d0 \n" 550 1.64 thorpej " andl #0x2,%%d0 \n" 551 1.64 thorpej " beq _cb364_intr4 \n" 552 1.64 thorpej " movql #0x3,%%d0 \n" 553 1.64 thorpej " movl %%a0@(0xfe6018),%%d1 \n" 554 1.64 thorpej " movl #0x3,%%a0@(0xfe6018) \n" 555 1.64 thorpej " movw %%a0@(0xfe7010),%%d2 \n" 556 1.64 thorpej " movl %%d1,%%a0@(0xfe6018) \n" 557 1.64 thorpej " movl %%a0@(0xfe6020),%%d1 \n" 558 1.64 thorpej " btst #0x06,%%d2 \n" 559 1.64 thorpej " beq _cb364_intr0 \n" 560 1.64 thorpej " btst #0x00,%%d1 \n" 561 1.64 thorpej " beq _cb364_intr5 \n" 562 1.64 thorpej " bsr _cb364_intr1 \n" 563 1.64 thorpej " bra _cb364_intr_out \n" 564 1.64 thorpej "_cb364_intr0: \n" 565 1.64 thorpej " btst #0x00,%%d1 \n" 566 1.64 thorpej " bne _cb364_intr5 \n" 567 1.64 thorpej " bsr _cb364_intr1 \n" 568 1.64 thorpej " bra _cb364_intr_out \n" 569 1.64 thorpej "_cb364_intr1: \n" 570 1.64 thorpej " movl %%d0,%%a0@(0xfe600c) \n" 571 1.64 thorpej " nop \n" 572 1.64 thorpej " tstb %%d0 \n" 573 1.64 thorpej " beq _cb364_intr3 \n" 574 1.64 thorpej " movl #0x0002,%%a0@(0xfe6040) \n" 575 1.64 thorpej " movl #0x0105,%%a0@(0xfe6048) \n" 576 1.64 thorpej " movl #0x000e,%%a0@(0xfe604c) \n" 577 1.64 thorpej " movl #0x00c3,%%a0@(0xfe6058) \n" 578 1.64 thorpej " movl #0x0061,%%a0@(0xfe605c) \n" 579 1.64 thorpej " btst #0x06,%%d2 \n" 580 1.64 thorpej " beq _cb364_intr2 \n" 581 1.64 thorpej " movl #0x001c,%%a0@(0xfe6050) \n" 582 1.64 thorpej " movl #0x00bc,%%a0@(0xfe6054) \n" 583 1.64 thorpej " movl #0x0012,%%a0@(0xfe6060) \n" 584 1.64 thorpej " movl #0x000e,%%a0@(0xfe6044) \n" 585 1.64 thorpej " movl #0x00c3,%%a0@(0xfe6064) \n" 586 1.64 thorpej " movl #0x0061,%%a0@(0xfe6020) \n" 587 1.64 thorpej " rts \n" 588 1.64 thorpej "_cb364_intr2: \n" 589 1.64 thorpej " movl #0x0016,%%a0@(0xfe6050) \n" 590 1.64 thorpej " movl #0x00b6,%%a0@(0xfe6054) \n" 591 1.64 thorpej " movl #0x0011,%%a0@(0xfe6060) \n" 592 1.64 thorpej " movl #0x0101,%%a0@(0xfe6044) \n" 593 1.64 thorpej " movl #0x00bf,%%a0@(0xfe6064) \n" 594 1.64 thorpej " movl #0x0001,%%a0@(0xfe6020) \n" 595 1.64 thorpej " rts \n" 596 1.64 thorpej "_cb364_intr3: \n" 597 1.64 thorpej " movl #0x0002,%%a0@(0xfe6040) \n" 598 1.64 thorpej " movl #0x0209,%%a0@(0xfe6044) \n" 599 1.64 thorpej " movl #0x020c,%%a0@(0xfe6048) \n" 600 1.64 thorpej " movl #0x000f,%%a0@(0xfe604c) \n" 601 1.64 thorpej " movl #0x0027,%%a0@(0xfe6050) \n" 602 1.64 thorpej " movl #0x00c7,%%a0@(0xfe6054) \n" 603 1.64 thorpej " movl #0x00d7,%%a0@(0xfe6058) \n" 604 1.64 thorpej " movl #0x006b,%%a0@(0xfe605c) \n" 605 1.64 thorpej " movl #0x0029,%%a0@(0xfe6060) \n" 606 1.64 thorpej " oril #0x0040,%%a0@(0xfe6064) \n" 607 1.64 thorpej " movl #0x0000,%%a0@(0xfe6020) \n" 608 1.64 thorpej " rts \n" 609 1.64 thorpej "_cb364_intr4: \n" 610 1.64 thorpej " movq #0x00,%%d0 \n" 611 1.64 thorpej "_cb364_intr5: \n" 612 1.64 thorpej " movl %%a0@(0xfe600c),%%d1 \n" 613 1.64 thorpej " andl #0x3,%%d1 \n" 614 1.64 thorpej " cmpl %%d1,%%d0 \n" 615 1.64 thorpej " beq _cb364_intr_out \n" 616 1.64 thorpej " bsr _cb364_intr1 \n" 617 1.64 thorpej "_cb364_intr_out: \n" 618 1.64 thorpej " movl #0x1,%%a0@(0xfe6014) \n" 619 1.64 thorpej "_cb364_intr_quit:" 620 1.64 thorpej : : "g" (slotbase) : "a0","d0","d1","d2"); 621 1.33 briggs } 622 1.33 briggs 623 1.33 briggs /* 624 1.33 briggs * Interrupt clearing routine for SuperMac GFX card. 625 1.33 briggs */ 626 1.33 briggs /*ARGSUSED*/ 627 1.33 briggs static void 628 1.68 chs grfmv_intr_supermacgfx(void *vsc) 629 1.33 briggs { 630 1.33 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 631 1.33 briggs 632 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xE70D3); 633 1.32 scottr } 634 1.32 scottr 635 1.32 scottr /* 636 1.32 scottr * Routine to clear interrupts for the Sigma Designs ColorMax card. 637 1.32 scottr */ 638 1.32 scottr /*ARGSUSED*/ 639 1.32 scottr static void 640 1.68 chs grfmv_intr_cmax(void *vsc) 641 1.32 scottr { 642 1.32 scottr struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 643 1.32 scottr 644 1.77 martin bus_space_read_4(sc->sc_tag, sc->sc_handle, 0xf501c); 645 1.77 martin bus_space_read_4(sc->sc_tag, sc->sc_handle, 0xf5018); 646 1.36 briggs } 647 1.36 briggs 648 1.36 briggs /* 649 1.37 scottr * Routine to clear interrupts for the Lapis ProColorServer 8 PDS card 650 1.37 scottr * (for the SE/30). 651 1.36 briggs */ 652 1.36 briggs /*ARGSUSED*/ 653 1.36 briggs static void 654 1.68 chs grfmv_intr_lapis(void *vsc) 655 1.36 briggs { 656 1.36 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 657 1.36 briggs 658 1.36 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xff7000, 0x08); 659 1.36 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xff7000, 0x0C); 660 1.40 briggs } 661 1.40 briggs 662 1.40 briggs /* 663 1.71 hauke * Routine to clear interrupts for the Formac ProNitron 80.IVb 664 1.71 hauke * and Color Card II 665 1.40 briggs */ 666 1.40 briggs /*ARGSUSED*/ 667 1.40 briggs static void 668 1.68 chs grfmv_intr_formac(void *vsc) 669 1.40 briggs { 670 1.40 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 671 1.40 briggs 672 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xde80db); 673 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xde80d3); 674 1.44 briggs } 675 1.44 briggs 676 1.44 briggs /* 677 1.44 briggs * Routine to clear interrupts for the Vimage by Interware Co., Ltd. 678 1.44 briggs */ 679 1.44 briggs /*ARGSUSED*/ 680 1.44 briggs static void 681 1.68 chs grfmv_intr_vimage(void *vsc) 682 1.44 briggs { 683 1.44 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 684 1.44 briggs 685 1.44 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x800000, 0x67); 686 1.44 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x800000, 0xE7); 687 1.48 briggs } 688 1.48 briggs 689 1.48 briggs /* 690 1.50 briggs * Routine to clear interrupts for the Grand Vimage by Interware Co., Ltd. 691 1.48 briggs */ 692 1.48 briggs /*ARGSUSED*/ 693 1.48 briggs static void 694 1.68 chs grfmv_intr_gvimage(void *vsc) 695 1.48 briggs { 696 1.48 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 697 1.48 briggs 698 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xf00000); 699 1.1 briggs } 700 1.55 briggs 701 1.55 briggs /* 702 1.55 briggs * Routine to clear interrupts for the Radius GS/C 703 1.55 briggs */ 704 1.55 briggs /*ARGSUSED*/ 705 1.55 briggs static void 706 1.68 chs grfmv_intr_radius_gsc(void *vsc) 707 1.55 briggs { 708 1.55 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 709 1.55 briggs 710 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0xfb802); 711 1.55 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0xfb802, 0xff); 712 1.55 briggs } 713 1.55 briggs 714 1.61 briggs /* 715 1.61 briggs * Routine to clear interrupts for the Radius GS/C 716 1.61 briggs */ 717 1.61 briggs /*ARGSUSED*/ 718 1.61 briggs static void 719 1.68 chs grfmv_intr_radius_gx(void *vsc) 720 1.61 briggs { 721 1.61 briggs struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 722 1.61 briggs 723 1.61 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x600000, 0x00); 724 1.61 briggs bus_space_write_1(sc->sc_tag, sc->sc_handle, 0x600000, 0x20); 725 1.61 briggs } 726 1.71 hauke 727 1.71 hauke /* 728 1.71 hauke * Routine to clear interrupts for the Relax 19" model 200. 729 1.71 hauke */ 730 1.71 hauke /*ARGSUSED*/ 731 1.71 hauke static void 732 1.71 hauke grfmv_intr_relax_200(void *vsc) 733 1.71 hauke { 734 1.71 hauke struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 735 1.71 hauke 736 1.71 hauke /* The board ROM driver code has a tst.l here. */ 737 1.77 martin bus_space_read_4(sc->sc_tag, sc->sc_handle, 0x000D0040); 738 1.71 hauke } 739 1.71 hauke 740 1.71 hauke /* 741 1.71 hauke * Routine to clear interrupts for the Apple Mac II Monochrome Video Card. 742 1.71 hauke */ 743 1.71 hauke /*ARGSUSED*/ 744 1.71 hauke static void 745 1.71 hauke grfmv_intr_mvc(void *vsc) 746 1.71 hauke { 747 1.71 hauke struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 748 1.71 hauke 749 1.71 hauke bus_space_write_4(sc->sc_tag, sc->sc_handle, 0x00040000, 0); 750 1.71 hauke bus_space_write_4(sc->sc_tag, sc->sc_handle, 0x00020000, 0); 751 1.71 hauke } 752 1.71 hauke 753 1.71 hauke /* 754 1.71 hauke * Routine to clear interrupts for the VillageTronic Mac Picasso 340. 755 1.71 hauke */ 756 1.71 hauke /*ARGSUSED*/ 757 1.71 hauke static void 758 1.71 hauke grfmv_intr_viltro_340(void *vsc) 759 1.71 hauke { 760 1.71 hauke struct grfbus_softc *sc = (struct grfbus_softc *)vsc; 761 1.71 hauke 762 1.71 hauke /* Yes, two read accesses to the same spot. */ 763 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0x0500); 764 1.77 martin bus_space_read_1(sc->sc_tag, sc->sc_handle, 0x0500); 765 1.71 hauke } 766