1 /* $NetBSD: sbus.c,v 1.95 2016/07/07 06:55:38 msaitoh Exp $ */ 2 3 /* 4 * Copyright (c) 1999-2002 Eduardo Horvath 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. The name of the author may not be used to endorse or promote products 16 * derived from this software without specific prior written permission. 17 * 18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, 23 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 24 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 25 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 26 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 27 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 28 * SUCH DAMAGE. 29 */ 30 31 32 /* 33 * Sbus stuff. 34 */ 35 36 #include <sys/cdefs.h> 37 __KERNEL_RCSID(0, "$NetBSD: sbus.c,v 1.95 2016/07/07 06:55:38 msaitoh Exp $"); 38 39 #include "opt_ddb.h" 40 41 #include <sys/param.h> 42 #include <sys/extent.h> 43 #include <sys/malloc.h> 44 #include <sys/systm.h> 45 #include <sys/device.h> 46 #include <sys/reboot.h> 47 48 #include <sys/bus.h> 49 #include <machine/openfirm.h> 50 51 #include <sparc64/dev/iommureg.h> 52 #include <sparc64/dev/iommuvar.h> 53 #include <sparc64/dev/sbusreg.h> 54 #include <dev/sbus/sbusvar.h> 55 56 #include <uvm/uvm_extern.h> 57 58 #include <machine/autoconf.h> 59 #include <machine/cpu.h> 60 #include <machine/sparc64.h> 61 62 #ifdef DEBUG 63 #define SDB_DVMA 0x1 64 #define SDB_INTR 0x2 65 int sbus_debug = 0; 66 #define DPRINTF(l, s) do { if (sbus_debug & l) printf s; } while (0) 67 #else 68 #define DPRINTF(l, s) 69 #endif 70 71 void sbusreset(int); 72 73 static bus_dma_tag_t sbus_alloc_dmatag(struct sbus_softc *); 74 static int sbus_get_intr(struct sbus_softc *, int, struct openprom_intr **, 75 int *, int); 76 static int sbus_overtemp(void *); 77 static int _sbus_bus_map( 78 bus_space_tag_t, 79 bus_addr_t, /*offset*/ 80 bus_size_t, /*size*/ 81 int, /*flags*/ 82 vaddr_t, /* XXX unused -- compat w/sparc */ 83 bus_space_handle_t *); 84 static void *sbus_intr_establish( 85 bus_space_tag_t, 86 int, /*`device class' priority*/ 87 int, /*Sbus interrupt level*/ 88 int (*)(void *), /*handler*/ 89 void *, /*handler arg*/ 90 void (*)(void)); /*optional fast trap*/ 91 92 93 /* autoconfiguration driver */ 94 int sbus_match(device_t, cfdata_t, void *); 95 void sbus_attach(device_t, device_t, void *); 96 97 98 CFATTACH_DECL_NEW(sbus, sizeof(struct sbus_softc), 99 sbus_match, sbus_attach, NULL, NULL); 100 101 extern struct cfdriver sbus_cd; 102 103 /* 104 * DVMA routines 105 */ 106 static int sbus_dmamap_create(bus_dma_tag_t, bus_size_t, int, bus_size_t, 107 bus_size_t, int, bus_dmamap_t *); 108 109 /* 110 * Child devices receive the Sbus interrupt level in their attach 111 * arguments. We translate these to CPU IPLs using the following 112 * tables. Note: obio bus interrupt levels are identical to the 113 * processor IPL. 114 * 115 * The second set of tables is used when the Sbus interrupt level 116 * cannot be had from the PROM as an `interrupt' property. We then 117 * fall back on the `intr' property which contains the CPU IPL. 118 */ 119 120 /* 121 * This value is or'ed into the attach args' interrupt level cookie 122 * if the interrupt level comes from an `intr' property, i.e. it is 123 * not an Sbus interrupt level. 124 */ 125 #define SBUS_INTR_COMPAT 0x80000000 126 127 128 /* 129 * Print the location of some sbus-attached device (called just 130 * before attaching that device). If `sbus' is not NULL, the 131 * device was found but not configured; print the sbus as well. 132 * Return UNCONF (config_find ignores this if the device was configured). 133 */ 134 int 135 sbus_print(void *args, const char *busname) 136 { 137 struct sbus_attach_args *sa = args; 138 int i; 139 140 if (busname) 141 aprint_normal("%s at %s", sa->sa_name, busname); 142 aprint_normal(" slot %ld offset 0x%lx", (long)sa->sa_slot, 143 (u_long)sa->sa_offset); 144 for (i = 0; i < sa->sa_nintr; i++) { 145 struct openprom_intr *sbi = &sa->sa_intr[i]; 146 147 aprint_normal(" vector %lx ipl %ld", 148 (u_long)sbi->oi_vec, 149 (long)INTLEV(sbi->oi_pri)); 150 } 151 return (UNCONF); 152 } 153 154 int 155 sbus_match(device_t parent, cfdata_t cf, void *aux) 156 { 157 struct mainbus_attach_args *ma = aux; 158 159 return (strcmp(cf->cf_name, ma->ma_name) == 0); 160 } 161 162 /* 163 * Attach an Sbus. 164 */ 165 void 166 sbus_attach(device_t parent, device_t self, void *aux) 167 { 168 struct sbus_softc *sc = device_private(self); 169 struct mainbus_attach_args *ma = aux; 170 struct intrhand *ih; 171 int ipl; 172 char *name; 173 int node = ma->ma_node; 174 int node0, error; 175 bus_space_tag_t sbt; 176 struct sbus_attach_args sa; 177 178 sc->sc_dev = self; 179 sc->sc_bustag = ma->ma_bustag; 180 sc->sc_dmatag = ma->ma_dmatag; 181 sc->sc_ign = ma->ma_interrupts[0] & INTMAP_IGN; 182 183 /* XXXX Use sysio PROM mappings for interrupt vector regs. */ 184 sparc_promaddr_to_handle(sc->sc_bustag, ma->ma_address[0], &sc->sc_bh); 185 sc->sc_sysio = (struct sysioreg *)bus_space_vaddr(sc->sc_bustag, 186 sc->sc_bh); 187 188 #ifdef _LP64 189 /* 190 * 32-bit kernels use virtual addresses for bus space operations 191 * so we may as well use the prom VA. 192 * 193 * 64-bit kernels use physical addresses for bus space operations 194 * so mapping this in again will reduce TLB thrashing. 195 */ 196 if (bus_space_map(sc->sc_bustag, ma->ma_reg[0].ur_paddr, 197 ma->ma_reg[0].ur_len, 0, &sc->sc_bh) != 0) { 198 aprint_error_dev(self, "cannot map registers\n"); 199 return; 200 } 201 #endif 202 203 /* 204 * Record clock frequency for synchronous SCSI. 205 * IS THIS THE CORRECT DEFAULT?? 206 */ 207 sc->sc_clockfreq = prom_getpropint(node, "clock-frequency", 208 25*1000*1000); 209 printf(": clock = %s MHz\n", clockfreq(sc->sc_clockfreq)); 210 211 sbt = bus_space_tag_alloc(sc->sc_bustag, sc); 212 sbt->type = SBUS_BUS_SPACE; 213 sbt->sparc_bus_map = _sbus_bus_map; 214 sbt->sparc_intr_establish = sbus_intr_establish; 215 216 sc->sc_dmatag = sbus_alloc_dmatag(sc); 217 218 /* 219 * Get the SBus burst transfer size if burst transfers are supported 220 */ 221 sc->sc_burst = prom_getpropint(node, "burst-sizes", 0); 222 223 /* 224 * Collect address translations from the OBP. 225 */ 226 error = prom_getprop(node, "ranges", sizeof(struct openprom_range), 227 &sbt->nranges, &sbt->ranges); 228 if (error) 229 panic("%s: error getting ranges property", device_xname(self)); 230 231 /* initialize the IOMMU */ 232 233 /* punch in our copies */ 234 sc->sc_is.is_bustag = sc->sc_bustag; 235 bus_space_subregion(sc->sc_bustag, sc->sc_bh, 236 (vaddr_t)&((struct sysioreg *)NULL)->sys_iommu, 237 sizeof (struct iommureg), &sc->sc_is.is_iommu); 238 239 /* initialize our strbuf_ctl */ 240 sc->sc_is.is_sb[0] = &sc->sc_sb; 241 sc->sc_sb.sb_is = &sc->sc_is; 242 bus_space_subregion(sc->sc_bustag, sc->sc_bh, 243 (vaddr_t)&((struct sysioreg *)NULL)->sys_strbuf, 244 sizeof (struct iommu_strbuf), &sc->sc_sb.sb_sb); 245 /* Point sb_flush to our flush buffer. */ 246 sc->sc_sb.sb_flush = &sc->sc_flush; 247 248 /* give us a nice name.. */ 249 name = (char *)malloc(32, M_DEVBUF, M_NOWAIT); 250 if (name == 0) 251 panic("couldn't malloc iommu name"); 252 snprintf(name, 32, "%s dvma", device_xname(self)); 253 254 iommu_init(name, &sc->sc_is, 0, -1); 255 256 /* Enable the over temp intr */ 257 ih = intrhand_alloc(); 258 ih->ih_map = &sc->sc_sysio->therm_int_map; 259 ih->ih_clr = NULL; /* &sc->sc_sysio->therm_clr_int; */ 260 ih->ih_fun = sbus_overtemp; 261 ipl = 1; 262 ih->ih_pil = ipl; 263 ih->ih_number = INTVEC(*(ih->ih_map)); 264 ih->ih_pending = 0; 265 intr_establish(ipl, true, ih); 266 *(ih->ih_map) |= INTMAP_V|(CPU_UPAID << INTMAP_TID_SHIFT); 267 268 /* 269 * Note: the stupid SBUS IOMMU ignores the high bits of an address, so a 270 * NULL DMA pointer will be translated by the first page of the IOTSB. 271 * To avoid bugs we'll alloc and ignore the first entry in the IOTSB. 272 */ 273 { 274 u_long dummy; 275 276 if (extent_alloc_subregion(sc->sc_is.is_dvmamap, 277 sc->sc_is.is_dvmabase, sc->sc_is.is_dvmabase + PAGE_SIZE, 278 PAGE_SIZE, PAGE_SIZE, 0, EX_NOWAIT|EX_BOUNDZERO, 279 (u_long *)&dummy) != 0) 280 panic("sbus iommu: can't toss first dvma page"); 281 } 282 283 /* 284 * Loop through ROM children, fixing any relative addresses 285 * and then configuring each device. 286 * `specials' is an array of device names that are treated 287 * specially: 288 */ 289 node0 = OF_child(node); 290 for (node = node0; node; node = OF_peer(node)) { 291 char *name1 = prom_getpropstring(node, "name"); 292 293 if (sbus_setup_attach_args(sc, sbt, sc->sc_dmatag, 294 node, &sa) != 0) { 295 printf("sbus_attach: %s: incomplete\n", name1); 296 continue; 297 } 298 (void) config_found(self, &sa, sbus_print); 299 sbus_destroy_attach_args(&sa); 300 } 301 } 302 303 int 304 sbus_setup_attach_args(struct sbus_softc *sc, bus_space_tag_t bustag, 305 bus_dma_tag_t dmatag, int node, struct sbus_attach_args *sa) 306 { 307 /*struct openprom_addr sbusreg;*/ 308 /*int base;*/ 309 int error; 310 int n; 311 312 memset(sa, 0, sizeof(struct sbus_attach_args)); 313 n = 0; 314 error = prom_getprop(node, "name", 1, &n, &sa->sa_name); 315 if (error != 0) 316 return (error); 317 KASSERT(sa->sa_name[n-1] == '\0'); 318 319 sa->sa_bustag = bustag; 320 sa->sa_dmatag = dmatag; 321 sa->sa_node = node; 322 sa->sa_frequency = sc->sc_clockfreq; 323 324 error = prom_getprop(node, "reg", sizeof(struct openprom_addr), 325 &sa->sa_nreg, &sa->sa_reg); 326 if (error != 0) { 327 char buf[32]; 328 if (error != ENOENT || 329 !node_has_property(node, "device_type") || 330 strcmp(prom_getpropstringA(node, "device_type", buf, sizeof buf), 331 "hierarchical") != 0) 332 return (error); 333 } 334 for (n = 0; n < sa->sa_nreg; n++) { 335 /* Convert to relative addressing, if necessary */ 336 uint32_t base = sa->sa_reg[n].oa_base; 337 if (SBUS_ABS(base)) { 338 sa->sa_reg[n].oa_space = SBUS_ABS_TO_SLOT(base); 339 sa->sa_reg[n].oa_base = SBUS_ABS_TO_OFFSET(base); 340 } 341 } 342 343 if ((error = sbus_get_intr(sc, node, &sa->sa_intr, &sa->sa_nintr, 344 sa->sa_slot)) != 0) 345 return (error); 346 347 error = prom_getprop(node, "address", sizeof(uint32_t), 348 &sa->sa_npromvaddrs, &sa->sa_promvaddrs); 349 if (error != 0 && error != ENOENT) 350 return (error); 351 352 return (0); 353 } 354 355 void 356 sbus_destroy_attach_args(struct sbus_attach_args *sa) 357 { 358 if (sa->sa_name != NULL) 359 free(sa->sa_name, M_DEVBUF); 360 361 if (sa->sa_nreg != 0) 362 free(sa->sa_reg, M_DEVBUF); 363 364 if (sa->sa_intr) 365 free(sa->sa_intr, M_DEVBUF); 366 367 if (sa->sa_promvaddrs) 368 free((void *)sa->sa_promvaddrs, M_DEVBUF); 369 370 memset(sa, 0, sizeof(struct sbus_attach_args)); /*DEBUG*/ 371 } 372 373 374 int 375 _sbus_bus_map(bus_space_tag_t t, bus_addr_t addr, bus_size_t size, int flags, 376 vaddr_t v, bus_space_handle_t *hp) 377 { 378 int error; 379 380 if (t->ranges != NULL) { 381 if ((error = bus_space_translate_address_generic( 382 t->ranges, t->nranges, &addr)) != 0) 383 return (error); 384 } 385 386 return (bus_space_map(t->parent, addr, size, flags, hp)); 387 } 388 389 390 bus_addr_t 391 sbus_bus_addr(bus_space_tag_t t, u_int btype, u_int offset) 392 { 393 int slot = btype; 394 struct openprom_range *rp; 395 int i; 396 397 for (i = 0; i < t->nranges; i++) { 398 rp = &t->ranges[i]; 399 if (rp->or_child_space != slot) 400 continue; 401 402 return BUS_ADDR(rp->or_parent_space, 403 rp->or_parent_base + offset); 404 } 405 406 return (0); 407 } 408 409 410 /* 411 * Handle an overtemp situation. 412 * 413 * SPARCs have temperature sensors which generate interrupts 414 * if the machine's temperature exceeds a certain threshold. 415 * This handles the interrupt and powers off the machine. 416 * The same needs to be done to PCI controller drivers. 417 */ 418 int 419 sbus_overtemp(void *arg) 420 { 421 /* Should try a clean shutdown first */ 422 printf("DANGER: OVER TEMPERATURE detected\nShutting down...\n"); 423 delay(20); 424 cpu_reboot(RB_POWERDOWN|RB_HALT, NULL); 425 } 426 427 /* 428 * Get interrupt attributes for an Sbus device. 429 */ 430 int 431 sbus_get_intr(struct sbus_softc *sc, int node, struct openprom_intr **ipp, 432 int *np, int slot) 433 { 434 int *ipl; 435 int n, i; 436 char buf[32]; 437 438 /* 439 * The `interrupts' property contains the Sbus interrupt level. 440 */ 441 ipl = NULL; 442 if (prom_getprop(node, "interrupts", sizeof(int), np, &ipl) == 0) { 443 struct openprom_intr *ip; 444 int pri; 445 446 /* Default to interrupt level 2 -- otherwise unused */ 447 pri = INTLEVENCODE(2); 448 449 /* Change format to an `struct sbus_intr' array */ 450 ip = malloc(*np * sizeof(struct openprom_intr), M_DEVBUF, 451 M_NOWAIT); 452 if (ip == NULL) 453 return (ENOMEM); 454 455 /* 456 * Now things get ugly. We need to take this value which is 457 * the interrupt vector number and encode the IPL into it 458 * somehow. Luckily, the interrupt vector has lots of free 459 * space and we can easily stuff the IPL in there for a while. 460 */ 461 prom_getpropstringA(node, "device_type", buf, sizeof buf); 462 if (buf[0] == '\0') 463 prom_getpropstringA(node, "name", buf, sizeof buf); 464 465 for (i = 0; intrmap[i].in_class; i++) 466 if (strcmp(intrmap[i].in_class, buf) == 0) { 467 pri = INTLEVENCODE(intrmap[i].in_lev); 468 break; 469 } 470 471 /* 472 * Sbus card devices need the slot number encoded into 473 * the vector as this is generally not done. 474 */ 475 if ((ipl[0] & INTMAP_OBIO) == 0) 476 pri |= slot << 3; 477 478 for (n = 0; n < *np; n++) { 479 /* 480 * We encode vector and priority into sbi_pri so we 481 * can pass them as a unit. This will go away if 482 * sbus_establish ever takes an sbus_intr instead 483 * of an integer level. 484 * Stuff the real vector in sbi_vec. 485 */ 486 487 ip[n].oi_pri = pri|ipl[n]; 488 ip[n].oi_vec = ipl[n]; 489 } 490 free(ipl, M_DEVBUF); 491 *ipp = ip; 492 } 493 494 return (0); 495 } 496 497 498 /* 499 * Install an interrupt handler for an Sbus device. 500 */ 501 void * 502 sbus_intr_establish(bus_space_tag_t t, int pri, int level, 503 int (*handler)(void *), void *arg, void (*fastvec)(void)) 504 { 505 struct sbus_softc *sc = t->cookie; 506 struct intrhand *ih; 507 int ipl; 508 long vec = pri; 509 510 ih = intrhand_alloc(); 511 512 if ((vec & SBUS_INTR_COMPAT) != 0) 513 ipl = vec & ~SBUS_INTR_COMPAT; 514 else { 515 /* Decode and remove IPL */ 516 ipl = INTLEV(vec); 517 vec = INTVEC(vec); 518 DPRINTF(SDB_INTR, 519 ("\nsbus: intr[%ld]%lx: %lx\nHunting for IRQ...\n", 520 (long)ipl, (long)vec, (u_long)intrlev[vec])); 521 if ((vec & INTMAP_OBIO) == 0) { 522 /* We're in an SBUS slot */ 523 /* Register the map and clear intr registers */ 524 525 int slot = INTSLOT(pri); 526 527 ih->ih_map = &(&sc->sc_sysio->sbus_slot0_int)[slot]; 528 ih->ih_clr = &sc->sc_sysio->sbus0_clr_int[vec]; 529 #ifdef DEBUG 530 if (sbus_debug & SDB_INTR) { 531 int64_t imap = *ih->ih_map; 532 533 printf("SBUS %lx IRQ as %llx in slot %d\n", 534 (long)vec, (long long)imap, slot); 535 printf("\tmap addr %p clr addr %p\n", 536 ih->ih_map, ih->ih_clr); 537 } 538 #endif 539 /* Enable the interrupt */ 540 vec |= INTMAP_V | sc->sc_ign | 541 (CPU_UPAID << INTMAP_TID_SHIFT); 542 *(ih->ih_map) = vec; 543 } else { 544 int64_t *intrptr = &sc->sc_sysio->scsi_int_map; 545 int64_t imap = 0; 546 int i; 547 548 /* Insert IGN */ 549 vec |= sc->sc_ign; 550 for (i = 0; &intrptr[i] <= 551 (int64_t *)&sc->sc_sysio->reserved_int_map && 552 INTVEC(imap = intrptr[i]) != INTVEC(vec); i++) 553 ; 554 if (INTVEC(imap) == INTVEC(vec)) { 555 DPRINTF(SDB_INTR, 556 ("OBIO %lx IRQ as %lx in slot %d\n", 557 vec, (long)imap, i)); 558 /* Register the map and clear intr registers */ 559 ih->ih_map = &intrptr[i]; 560 intrptr = (int64_t *)&sc->sc_sysio->scsi_clr_int; 561 ih->ih_clr = &intrptr[i]; 562 /* Enable the interrupt */ 563 imap |= INTMAP_V 564 |(CPU_UPAID << INTMAP_TID_SHIFT); 565 /* XXXX */ 566 *(ih->ih_map) = imap; 567 } else 568 panic("IRQ not found!"); 569 } 570 } 571 #ifdef DEBUG 572 if (sbus_debug & SDB_INTR) { long i; for (i = 0; i < 400000000; i++); } 573 #endif 574 575 ih->ih_fun = handler; 576 ih->ih_arg = arg; 577 ih->ih_number = vec; 578 ih->ih_ivec = 0; 579 ih->ih_pil = ipl; 580 ih->ih_pending = 0; 581 582 intr_establish(ipl, level != IPL_VM, ih); 583 return (ih); 584 } 585 586 static bus_dma_tag_t 587 sbus_alloc_dmatag(struct sbus_softc *sc) 588 { 589 bus_dma_tag_t sdt, psdt = sc->sc_dmatag; 590 591 sdt = (bus_dma_tag_t) 592 malloc(sizeof(struct sparc_bus_dma_tag), M_DEVBUF, M_NOWAIT); 593 if (sdt == NULL) 594 /* Panic? */ 595 return (psdt); 596 597 sdt->_cookie = sc; 598 sdt->_parent = psdt; 599 #define PCOPY(x) sdt->x = psdt->x 600 sdt->_dmamap_create = sbus_dmamap_create; 601 PCOPY(_dmamap_destroy); 602 sdt->_dmamap_load = iommu_dvmamap_load; 603 PCOPY(_dmamap_load_mbuf); 604 PCOPY(_dmamap_load_uio); 605 sdt->_dmamap_load_raw = iommu_dvmamap_load_raw; 606 sdt->_dmamap_unload = iommu_dvmamap_unload; 607 sdt->_dmamap_sync = iommu_dvmamap_sync; 608 sdt->_dmamem_alloc = iommu_dvmamem_alloc; 609 sdt->_dmamem_free = iommu_dvmamem_free; 610 sdt->_dmamem_map = iommu_dvmamem_map; 611 sdt->_dmamem_unmap = iommu_dvmamem_unmap; 612 PCOPY(_dmamem_mmap); 613 #undef PCOPY 614 sc->sc_dmatag = sdt; 615 return (sdt); 616 } 617 618 static int 619 sbus_dmamap_create(bus_dma_tag_t t, bus_size_t size, int nsegments, 620 bus_size_t maxsegsz, bus_size_t boundary, int flags, 621 bus_dmamap_t *dmamp) 622 { 623 struct sbus_softc *sc = t->_cookie; 624 int error; 625 626 error = bus_dmamap_create(t->_parent, size, nsegments, maxsegsz, 627 boundary, flags, dmamp); 628 if (error == 0) 629 (*dmamp)->_dm_cookie = &sc->sc_sb; 630 return error; 631 } 632