autoconf.c revision 1.52
1/* $NetBSD: autoconf.c,v 1.52 1997/07/19 00:01:52 is Exp $ */ 2 3/* 4 * Copyright (c) 1994 Christian E. Hopps 5 * All rights reserved. 6 * 7 * Redistribution and use in source and binary forms, with or without 8 * modification, are permitted provided that the following conditions 9 * are met: 10 * 1. Redistributions of source code must retain the above copyright 11 * notice, this list of conditions and the following disclaimer. 12 * 2. Redistributions in binary form must reproduce the above copyright 13 * notice, this list of conditions and the following disclaimer in the 14 * documentation and/or other materials provided with the distribution. 15 * 3. All advertising materials mentioning features or use of this software 16 * must display the following acknowledgement: 17 * This product includes software developed by Christian E. Hopps. 18 * 4. The name of the author may not be used to endorse or promote products 19 * derived from this software without specific prior written permission 20 * 21 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 22 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 23 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 24 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 25 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 26 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 27 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 28 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 29 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 30 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 31 */ 32#include <sys/param.h> 33#include <sys/systm.h> 34#include <sys/reboot.h> 35#include <sys/conf.h> 36#include <sys/buf.h> 37#include <sys/device.h> 38#include <sys/disklabel.h> 39#include <sys/disk.h> 40#include <machine/cpu.h> 41#include <amiga/amiga/cfdev.h> 42#include <amiga/amiga/device.h> 43#include <amiga/amiga/custom.h> 44 45void findroot __P((struct device **, int *)); 46void mbattach __P((struct device *, struct device *, void *)); 47int mbprint __P((void *, const char *)); 48int mbmatch __P((struct device *, struct cfdata *, void *)); 49 50int cold; /* 1 if still booting */ 51#include <sys/kernel.h> 52 53struct devnametobdevmaj amiga_nam2blk[] = { 54 { "fd", 2 }, 55 { "sd", 4 }, 56 { "cd", 7 }, 57#ifdef notyet 58 { "md", XXX }, 59#endif 60 { NULL, 0 }, 61}; 62u_long boot_partition; 63 64/* 65 * called at boot time, configure all devices on system 66 */ 67void 68configure() 69{ 70 int s; 71 72 /* 73 * this is the real thing baby (i.e. not console init) 74 */ 75 amiga_realconfig = 1; 76#ifdef DRACO 77 if (is_draco()) { 78 *draco_intena &= ~DRIRQ_GLOBAL; 79 } else 80#endif 81 custom.intena = INTF_INTEN; 82 s = splhigh(); 83 84 if (config_rootfound("mainbus", "mainbus") == NULL) 85 panic("no mainbus found"); 86 87#ifdef DEBUG_KERNEL_START 88 printf("survived autoconf, going to enable interrupts\n"); 89#endif 90 91#ifdef DRACO 92 if (is_draco()) { 93 *draco_intena |= DRIRQ_GLOBAL; 94 /* softints always enabled */ 95 } else 96#endif 97 { 98 custom.intena = INTF_SETCLR | INTF_INTEN; 99 100 /* also enable hardware aided software interrupts */ 101 custom.intena = INTF_SETCLR | INTF_SOFTINT; 102 } 103 splx(s); 104#ifdef DEBUG_KERNEL_START 105 printf("survived interrupt enable\n"); 106#endif 107 cold = 0; 108} 109 110void 111cpu_rootconf() 112{ 113 struct device *booted_device; 114 int booted_partition; 115 116 findroot(&booted_device, &booted_partition); 117#ifdef DEBUG_KERNEL_START 118 printf("survived findroot()\n"); 119#endif 120 setroot(booted_device, booted_partition, amiga_nam2blk); 121#ifdef DEBUG_KERNEL_START 122 printf("survived setroot()\n"); 123#endif 124} 125 126/*ARGSUSED*/ 127int 128simple_devprint(auxp, pnp) 129 void *auxp; 130 const char *pnp; 131{ 132 return(QUIET); 133} 134 135int 136matchname(fp, sp) 137 char *fp, *sp; 138{ 139 int len; 140 141 len = strlen(fp); 142 if (strlen(sp) != len) 143 return(0); 144 if (bcmp(fp, sp, len) == 0) 145 return(1); 146 return(0); 147} 148 149/* 150 * use config_search to find appropriate device, then call that device 151 * directly with NULL device variable storage. A device can then 152 * always tell the difference betwean the real and console init 153 * by checking for NULL. 154 */ 155int 156amiga_config_found(pcfp, pdp, auxp, pfn) 157 struct cfdata *pcfp; 158 struct device *pdp; 159 void *auxp; 160 cfprint_t pfn; 161{ 162 struct device temp; 163 struct cfdata *cf; 164 165 if (amiga_realconfig) 166 return(config_found(pdp, auxp, pfn) != NULL); 167 168 if (pdp == NULL) 169 pdp = &temp; 170 171 pdp->dv_cfdata = pcfp; 172 if ((cf = config_search((cfmatch_t)NULL, pdp, auxp)) != NULL) { 173 cf->cf_attach->ca_attach(pdp, NULL, auxp); 174 pdp->dv_cfdata = NULL; 175 return(1); 176 } 177 pdp->dv_cfdata = NULL; 178 return(0); 179} 180 181/* 182 * this function needs to get enough configured to do a console 183 * basically this means start attaching the grfxx's that support 184 * the console. Kinda hacky but it works. 185 */ 186void 187config_console() 188{ 189 struct cfdata *cf; 190 191 /* 192 * we need mainbus' cfdata. 193 */ 194 cf = config_rootsearch(NULL, "mainbus", "mainbus"); 195 if (cf == NULL) { 196 panic("no mainbus"); 197 } 198 /* 199 * delay clock calibration. 200 */ 201 amiga_config_found(cf, NULL, "clock", NULL); 202 203 /* 204 * internal grf. 205 */ 206#ifdef DRACO 207 if (!(is_draco())) 208#endif 209 amiga_config_found(cf, NULL, "grfcc", NULL); 210 /* 211 * zbus knows when its not for real and will 212 * only configure the appropriate hardware 213 */ 214 amiga_config_found(cf, NULL, "zbus", NULL); 215} 216 217/* 218 * mainbus driver 219 */ 220struct cfattach mainbus_ca = { 221 sizeof(struct device), mbmatch, mbattach 222}; 223 224struct cfdriver mainbus_cd = { 225 NULL, "mainbus", DV_DULL, NULL, 0 226}; 227 228int 229mbmatch(pdp, cfp, auxp) 230 struct device *pdp; 231 struct cfdata *cfp; 232 void *auxp; 233{ 234 235 if (cfp->cf_unit > 0) 236 return(0); 237 /* 238 * We are always here 239 */ 240 return(1); 241} 242 243/* 244 * "find" all the things that should be there. 245 */ 246void 247mbattach(pdp, dp, auxp) 248 struct device *pdp, *dp; 249 void *auxp; 250{ 251 printf("\n"); 252 config_found(dp, "clock", simple_devprint); 253 if (is_a3000() || is_a4000()) { 254 config_found(dp, "a34kbbc", simple_devprint); 255 } else if (!is_draco() && !is_a1200()) { 256 config_found(dp, "a2kbbc", simple_devprint); 257 } 258#ifdef DRACO 259 if (is_draco()) { 260 config_found(dp, "drbbc", simple_devprint); 261 config_found(dp, "kbd", simple_devprint); 262 config_found(dp, "drsc", simple_devprint); 263 config_found(dp, "drcom", simple_devprint); 264 config_found(dp, "drcom", simple_devprint); 265 /* 266 * XXX -- missing here: 267 * SuperIO chip parallel, floppy 268 * or maybe just make that into a pseudo 269 * ISA bus. 270 */ 271 } else 272#endif 273 { 274 config_found(dp, "ser", simple_devprint); 275 config_found(dp, "par", simple_devprint); 276 config_found(dp, "kbd", simple_devprint); 277 config_found(dp, "ms", simple_devprint); 278 config_found(dp, "ms", simple_devprint); 279 config_found(dp, "grfcc", simple_devprint); 280 config_found(dp, "fdc", simple_devprint); 281 } 282 if (is_a4000() || is_a1200()) 283 config_found(dp, "idesc", simple_devprint); 284 if (is_a4000()) /* Try to configure A4000T SCSI */ 285 config_found(dp, "afsc", simple_devprint); 286 config_found(dp, "zbus", simple_devprint); 287 if (is_a3000()) 288 config_found(dp, "ahsc", simple_devprint); 289} 290 291int 292mbprint(auxp, pnp) 293 void *auxp; 294 const char *pnp; 295{ 296 if (pnp) 297 printf("%s at %s", (char *)auxp, pnp); 298 return(UNCONF); 299} 300 301/* 302 * The system will assign the "booted device" indicator (and thus 303 * rootdev if rootspec is wildcarded) to the first partition 'a' 304 * in preference of boot. However, it does walk unit backwards 305 * to remain compatible with the old Amiga method of picking the 306 * last root found. 307 */ 308#include <sys/fcntl.h> /* XXXX and all that uses it */ 309#include <sys/proc.h> /* XXXX and all that uses it */ 310 311#include "fd.h" 312#include "sd.h" 313#include "cd.h" 314 315#if NFD > 0 316extern struct cfdriver fd_cd; 317#endif 318#if NSD > 0 319extern struct cfdriver sd_cd; 320#endif 321#if NCD > 0 322extern struct cfdriver cd_cd; 323#endif 324 325struct cfdriver *genericconf[] = { 326#if NFD > 0 327 &fd_cd, 328#endif 329#if NSD > 0 330 &sd_cd, 331#endif 332#if NCD > 0 333 &cd_cd, 334#endif 335 NULL, 336}; 337 338void 339findroot(devpp, partp) 340 struct device **devpp; 341 int *partp; 342{ 343 struct disk *dkp; 344 struct partition *pp; 345 struct device **devs; 346 int i, maj, unit; 347 348 /* 349 * Default to "not found". 350 */ 351 *devpp = NULL; 352 353 /* always partition 'a' */ 354 *partp = 0; 355 356#if NSD > 0 357 /* 358 * If we have the boot partition offset (boot_partition), try 359 * to locate the device corresponding to that partition. 360 */ 361 if (boot_partition != 0) { 362 struct bdevsw *bdp; 363 364 for (unit = 0; unit < sd_cd.cd_ndevs; ++unit) { 365 if (sd_cd.cd_devs[unit] == NULL) 366 continue; 367 368 /* 369 * Find the disk corresponding to the current 370 * device. 371 */ 372 devs = (struct device **)sd_cd.cd_devs; 373 if ((dkp = disk_find(devs[unit]->dv_xname)) == NULL) 374 continue; 375 376 if (dkp->dk_driver == NULL || 377 dkp->dk_driver->d_strategy == NULL) 378 continue; 379 for (bdp = bdevsw; bdp < (bdevsw + nblkdev); bdp++) 380 if (bdp->d_strategy == 381 dkp->dk_driver->d_strategy) 382 break; 383 if (bdp->d_open(MAKEDISKDEV(4, unit, 0), 384 FREAD | FNONBLOCK, 0, curproc)) 385 continue; 386 bdp->d_close(MAKEDISKDEV(4, unit, 0), 387 FREAD | FNONBLOCK, 0, curproc); 388 /* 389 * XXX - assumes booting only from 'a' partition 390 */ 391 pp = &dkp->dk_label->d_partitions[0]; 392 if (pp->p_size == 0 || pp->p_fstype != FS_BSDFFS) 393 continue; 394 if (pp->p_offset == boot_partition) { 395 if (*devpp == NULL) { 396 *devpp = devs[unit]; 397 *partp = 0; /* XXX */ 398 } else 399 printf("Ambiguous boot device\n"); 400 } 401 } 402 } 403 if (*devpp != NULL) 404 return; /* we found the boot device */ 405#endif 406 407 for (i = 0; genericconf[i] != NULL; i++) { 408 for (unit = genericconf[i]->cd_ndevs - 1; unit >= 0; unit--) { 409 if (genericconf[i]->cd_devs[unit] == NULL) 410 continue; 411 412 /* 413 * Find the disk structure corresponding to the 414 * current device. 415 */ 416 devs = (struct device **)genericconf[i]->cd_devs; 417 if ((dkp = disk_find(devs[unit]->dv_xname)) == NULL) 418 continue; 419 420 if (dkp->dk_driver == NULL || 421 dkp->dk_driver->d_strategy == NULL) 422 continue; 423 424 for (maj = 0; maj < nblkdev; maj++) 425 if (bdevsw[maj].d_strategy == 426 dkp->dk_driver->d_strategy) 427 break; 428#ifdef DIAGNOSTIC 429 if (maj >= nblkdev) 430 panic("findroot: impossible"); 431#endif 432 433 /* Open disk; forces read of disklabel. */ 434 if ((*bdevsw[maj].d_open)(MAKEDISKDEV(maj, 435 unit, 0), FREAD|FNONBLOCK, 0, &proc0)) 436 continue; 437 (void)(*bdevsw[maj].d_close)(MAKEDISKDEV(maj, 438 unit, 0), FREAD|FNONBLOCK, 0, &proc0); 439 440 pp = &dkp->dk_label->d_partitions[0]; 441 if (pp->p_size != 0 && pp->p_fstype == FS_BSDFFS) { 442 *devpp = devs[unit]; 443 *partp = 0; 444 return; 445 } 446 } 447 } 448} 449 450/* 451 * Try to determine, of this machine is an A3000, which has a builtin 452 * realtime clock and scsi controller, so that this hardware is only 453 * included as "configured" if this IS an A3000 454 */ 455 456int a3000_flag = 1; /* patchable */ 457#ifdef A4000 458int a4000_flag = 1; /* patchable - default to A4000 */ 459#else 460int a4000_flag = 0; /* patchable */ 461#endif 462 463int 464is_a3000() 465{ 466 /* this is a dirty kludge.. but how do you do this RIGHT ? :-) */ 467 extern long boot_fphystart; 468 short sc; 469 470 if ((machineid >> 16) == 3000) 471 return (1); /* It's an A3000 */ 472 if (machineid >> 16) 473 return (0); /* It's not an A3000 */ 474 /* Machine type is unknown, so try to guess it */ 475 /* where is fastram on the A4000 ?? */ 476 /* if fastram is below 0x07000000, assume it's not an A3000 */ 477 if (boot_fphystart < 0x07000000) 478 return(0); 479 /* 480 * OK, fastram starts at or above 0x07000000, check specific 481 * machines 482 */ 483 for (sc = 0; sc < ncfdev; sc++) { 484 switch (cfdev[sc].rom.manid) { 485 case 2026: /* Progressive Peripherals, Inc */ 486 switch (cfdev[sc].rom.prodid) { 487 case 0: /* PPI Mercury - A3000 */ 488 case 1: /* PP&S A3000 '040 */ 489 return(1); 490 case 150: /* PPI Zeus - it's an A2000 */ 491 case 105: /* PP&S A2000 '040 */ 492 case 187: /* PP&S A500 '040 */ 493 return(0); 494 } 495 break; 496 497 case 2112: /* IVS */ 498 switch (cfdev[sc].rom.prodid) { 499 case 242: 500 return(0); /* A2000 accelerator? */ 501 } 502 break; 503 } 504 } 505 return (a3000_flag); /* XXX let flag tell now */ 506} 507 508int 509is_a4000() 510{ 511 if ((machineid >> 16) == 4000) 512 return (1); /* It's an A4000 */ 513 if ((machineid >> 16) == 1200) 514 return (0); /* It's an A1200, so not A4000 */ 515#ifdef DRACO 516 if (is_draco()) 517 return (0); 518#endif 519 /* Do I need this any more? */ 520 if ((custom.deniseid & 0xff) == 0xf8) 521 return (1); 522#ifdef DEBUG 523 if (a4000_flag) 524 printf("Denise ID = %04x\n", (unsigned short)custom.deniseid); 525#endif 526 if (machineid >> 16) 527 return (0); /* It's not an A4000 */ 528 return (a4000_flag); /* Machine type not set */ 529} 530 531int 532is_a1200() 533{ 534 if ((machineid >> 16) == 1200) 535 return (1); /* It's an A1200 */ 536 return (0); /* Machine type not set */ 537} 538 539#ifdef DRACO 540int 541is_draco() 542{ 543 if ((machineid >> 24) == 0x7D) 544 return ((machineid >> 16) & 0xFF); 545 return (0); 546} 547#endif 548