fdt_machdep.c revision 1.93 1 /* $NetBSD: fdt_machdep.c,v 1.93 2022/09/28 05:54:24 skrll Exp $ */
2
3 /*-
4 * Copyright (c) 2015-2017 Jared McNeill <jmcneill (at) invisible.ca>
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 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
21 * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
22 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
23 * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
24 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26 * SUCH DAMAGE.
27 */
28
29 #include <sys/cdefs.h>
30 __KERNEL_RCSID(0, "$NetBSD: fdt_machdep.c,v 1.93 2022/09/28 05:54:24 skrll Exp $");
31
32 #include "opt_arm_debug.h"
33 #include "opt_bootconfig.h"
34 #include "opt_cpuoptions.h"
35 #include "opt_ddb.h"
36 #include "opt_efi.h"
37 #include "opt_machdep.h"
38 #include "opt_md.h"
39 #include "opt_multiprocessor.h"
40
41 #include "genfb.h"
42 #include "ukbd.h"
43 #include "wsdisplay.h"
44
45 #include <sys/param.h>
46 #include <sys/types.h>
47
48 #include <sys/atomic.h>
49 #include <sys/bootblock.h>
50 #include <sys/bus.h>
51 #include <sys/conf.h>
52 #include <sys/cpu.h>
53 #include <sys/device.h>
54 #include <sys/disk.h>
55 #include <sys/disklabel.h>
56 #include <sys/endian.h>
57 #include <sys/exec.h>
58 #include <sys/fcntl.h>
59 #include <sys/kauth.h>
60 #include <sys/kernel.h>
61 #include <sys/kmem.h>
62 #include <sys/ksyms.h>
63 #include <sys/md5.h>
64 #include <sys/msgbuf.h>
65 #include <sys/proc.h>
66 #include <sys/pserialize.h>
67 #include <sys/reboot.h>
68 #include <sys/rnd.h>
69 #include <sys/rndsource.h>
70 #include <sys/systm.h>
71 #include <sys/termios.h>
72 #include <sys/vnode.h>
73 #include <sys/uuid.h>
74
75 #include <net/if.h>
76 #include <net/if_dl.h>
77
78 #include <dev/cons.h>
79 #include <uvm/uvm_extern.h>
80
81 #include <machine/db_machdep.h>
82 #include <ddb/db_sym.h>
83 #include <ddb/db_extern.h>
84
85 #include <machine/bootconfig.h>
86 #include <arm/armreg.h>
87
88 #include <arm/cpufunc.h>
89
90 #include <evbarm/include/autoconf.h>
91 #include <evbarm/fdt/machdep.h>
92 #include <evbarm/fdt/platform.h>
93
94 #include <arm/fdt/arm_fdtvar.h>
95 #include <dev/fdt/fdt_private.h>
96 #include <dev/fdt/fdt_memory.h>
97
98 #ifdef EFI_RUNTIME
99 #include <arm/arm/efi_runtime.h>
100 #endif
101
102 #if NWSDISPLAY > 0 && NGENFB > 0
103 #include <arm/fdt/arm_simplefb.h>
104 #endif
105
106 #if NUKBD > 0
107 #include <dev/usb/ukbdvar.h>
108 #endif
109 #if NWSDISPLAY > 0
110 #include <dev/wscons/wsdisplayvar.h>
111 #endif
112
113 #ifdef MEMORY_DISK_DYNAMIC
114 #include <dev/md.h>
115 #endif
116
117 #ifndef FDT_MAX_BOOT_STRING
118 #define FDT_MAX_BOOT_STRING 1024
119 #endif
120
121 BootConfig bootconfig;
122 char bootargs[FDT_MAX_BOOT_STRING] = "";
123 char *boot_args = NULL;
124
125 /* filled in before cleaning bss. keep in .data */
126 u_long uboot_args[4] __attribute__((__section__(".data")));
127 const uint8_t *fdt_addr_r __attribute__((__section__(".data")));
128
129 static uint64_t initrd_start, initrd_end;
130 static uint64_t rndseed_start, rndseed_end; /* our on-disk seed */
131 static uint64_t efirng_start, efirng_end; /* firmware's EFI RNG output */
132
133 #include <libfdt.h>
134 #include <dev/fdt/fdtvar.h>
135 #define FDT_BUF_SIZE (512*1024)
136 static uint8_t fdt_data[FDT_BUF_SIZE];
137
138 extern char KERNEL_BASE_phys[];
139 #define KERNEL_BASE_PHYS ((paddr_t)KERNEL_BASE_phys)
140
141 static void fdt_update_stdout_path(void);
142 static void fdt_device_register(device_t, void *);
143 static void fdt_device_register_post_config(device_t, void *);
144 static void fdt_cpu_rootconf(void);
145 static void fdt_reset(void);
146 static void fdt_powerdown(void);
147
148 #if BYTE_ORDER == BIG_ENDIAN
149 static void fdt_update_fb_format(void);
150 #endif
151
152 static void
153 earlyconsputc(dev_t dev, int c)
154 {
155 uartputc(c);
156 }
157
158 static int
159 earlyconsgetc(dev_t dev)
160 {
161 return -1;
162 }
163
164 static struct consdev earlycons = {
165 .cn_putc = earlyconsputc,
166 .cn_getc = earlyconsgetc,
167 .cn_pollc = nullcnpollc,
168 };
169
170 #ifdef VERBOSE_INIT_ARM
171 #define VPRINTF(...) printf(__VA_ARGS__)
172 #else
173 #define VPRINTF(...) __nothing
174 #endif
175
176 static void
177 fdt_add_dram_blocks(const struct fdt_memory *m, void *arg)
178 {
179 BootConfig *bc = arg;
180
181 VPRINTF(" %" PRIx64 " - %" PRIx64 "\n", m->start, m->end - 1);
182 bc->dram[bc->dramblocks].address = m->start;
183 bc->dram[bc->dramblocks].pages =
184 (m->end - m->start) / PAGE_SIZE;
185 bc->dramblocks++;
186 }
187
188 #define MAX_PHYSMEM 64
189 static int nfdt_physmem = 0;
190 static struct boot_physmem fdt_physmem[MAX_PHYSMEM];
191
192 static void
193 fdt_add_boot_physmem(const struct fdt_memory *m, void *arg)
194 {
195 const paddr_t saddr = round_page(m->start);
196 const paddr_t eaddr = trunc_page(m->end);
197
198 VPRINTF(" %" PRIx64 " - %" PRIx64, m->start, m->end - 1);
199 if (saddr >= eaddr) {
200 VPRINTF(" skipped\n");
201 return;
202 }
203 VPRINTF("\n");
204
205 struct boot_physmem *bp = &fdt_physmem[nfdt_physmem++];
206
207 KASSERT(nfdt_physmem <= MAX_PHYSMEM);
208
209 bp->bp_start = atop(saddr);
210 bp->bp_pages = atop(eaddr) - bp->bp_start;
211 bp->bp_freelist = VM_FREELIST_DEFAULT;
212
213 #ifdef PMAP_NEED_ALLOC_POOLPAGE
214 const uint64_t memory_size = *(uint64_t *)arg;
215 if (atop(memory_size) > bp->bp_pages) {
216 arm_poolpage_vmfreelist = VM_FREELIST_DIRECTMAP;
217 bp->bp_freelist = VM_FREELIST_DIRECTMAP;
218 }
219 #endif
220 }
221
222
223 static void
224 fdt_print_memory(const struct fdt_memory *m, void *arg)
225 {
226
227 VPRINTF("FDT /memory @ 0x%" PRIx64 " size 0x%" PRIx64 "\n",
228 m->start, m->end - m->start);
229 }
230
231
232 /*
233 * Define usable memory regions.
234 */
235 static void
236 fdt_build_bootconfig(uint64_t mem_start, uint64_t mem_end)
237 {
238 BootConfig *bc = &bootconfig;
239
240 uint64_t addr, size;
241 int index;
242
243 fdt_memory_remove_reserved(mem_start, mem_end);
244
245 const uint64_t initrd_size =
246 round_page(initrd_end) - trunc_page(initrd_start);
247 if (initrd_size > 0)
248 fdt_memory_remove_range(trunc_page(initrd_start), initrd_size);
249
250 const uint64_t rndseed_size =
251 round_page(rndseed_end) - trunc_page(rndseed_start);
252 if (rndseed_size > 0)
253 fdt_memory_remove_range(trunc_page(rndseed_start),
254 rndseed_size);
255
256 const uint64_t efirng_size =
257 round_page(efirng_end) - trunc_page(efirng_start);
258 if (efirng_size > 0)
259 fdt_memory_remove_range(trunc_page(efirng_start), efirng_size);
260
261 const int framebuffer = OF_finddevice("/chosen/framebuffer");
262 if (framebuffer >= 0) {
263 for (index = 0;
264 fdtbus_get_reg64(framebuffer, index, &addr, &size) == 0;
265 index++) {
266 fdt_memory_remove_range(addr, size);
267 }
268 }
269
270 VPRINTF("Usable memory:\n");
271 bc->dramblocks = 0;
272 fdt_memory_foreach(fdt_add_dram_blocks, bc);
273 }
274
275 static void
276 fdt_probe_range(const char *startname, const char *endname,
277 uint64_t *pstart, uint64_t *pend)
278 {
279 int chosen, len;
280 const void *start_data, *end_data;
281
282 *pstart = *pend = 0;
283
284 chosen = OF_finddevice("/chosen");
285 if (chosen < 0)
286 return;
287
288 start_data = fdtbus_get_prop(chosen, startname, &len);
289 end_data = fdtbus_get_prop(chosen, endname, NULL);
290 if (start_data == NULL || end_data == NULL)
291 return;
292
293 switch (len) {
294 case 4:
295 *pstart = be32dec(start_data);
296 *pend = be32dec(end_data);
297 break;
298 case 8:
299 *pstart = be64dec(start_data);
300 *pend = be64dec(end_data);
301 break;
302 default:
303 printf("Unsupported len %d for /chosen `%s'\n",
304 len, startname);
305 return;
306 }
307 }
308
309 static void *
310 fdt_map_range(uint64_t start, uint64_t end, uint64_t *psize,
311 const char *purpose)
312 {
313 const paddr_t startpa = trunc_page(start);
314 const paddr_t endpa = round_page(end);
315 paddr_t pa;
316 vaddr_t va;
317 void *ptr;
318
319 *psize = end - start;
320 if (*psize == 0)
321 return NULL;
322
323 const vaddr_t voff = start & PAGE_MASK;
324
325 va = uvm_km_alloc(kernel_map, *psize, 0, UVM_KMF_VAONLY|UVM_KMF_NOWAIT);
326 if (va == 0) {
327 printf("Failed to allocate VA for %s\n", purpose);
328 return NULL;
329 }
330 ptr = (void *)(va + voff);
331
332 for (pa = startpa; pa < endpa; pa += PAGE_SIZE, va += PAGE_SIZE)
333 pmap_kenter_pa(va, pa, VM_PROT_READ|VM_PROT_WRITE, 0);
334 pmap_update(pmap_kernel());
335
336 return ptr;
337 }
338
339 static void
340 fdt_unmap_range(void *ptr, uint64_t size)
341 {
342 const char *start = ptr, *end = start + size;
343 const vaddr_t startva = trunc_page((vaddr_t)(uintptr_t)start);
344 const vaddr_t endva = round_page((vaddr_t)(uintptr_t)end);
345
346 pmap_kremove(startva, endva - startva);
347 pmap_update(pmap_kernel());
348 }
349
350 static void
351 fdt_probe_initrd(uint64_t *pstart, uint64_t *pend)
352 {
353 *pstart = *pend = 0;
354
355 #ifdef MEMORY_DISK_DYNAMIC
356 fdt_probe_range("linux,initrd-start", "linux,initrd-end", pstart, pend);
357 #endif
358 }
359
360 static void
361 fdt_setup_initrd(void)
362 {
363 #ifdef MEMORY_DISK_DYNAMIC
364 void *md_start;
365 uint64_t initrd_size;
366
367 md_start = fdt_map_range(initrd_start, initrd_end, &initrd_size,
368 "initrd");
369 if (md_start == NULL)
370 return;
371 md_root_setconf(md_start, initrd_size);
372 #endif
373 }
374
375 static void
376 fdt_probe_rndseed(uint64_t *pstart, uint64_t *pend)
377 {
378
379 fdt_probe_range("netbsd,rndseed-start", "netbsd,rndseed-end",
380 pstart, pend);
381 }
382
383 static void
384 fdt_setup_rndseed(void)
385 {
386 uint64_t rndseed_size;
387 void *rndseed;
388
389 rndseed = fdt_map_range(rndseed_start, rndseed_end, &rndseed_size,
390 "rndseed");
391 if (rndseed == NULL)
392 return;
393 rnd_seed(rndseed, rndseed_size);
394 fdt_unmap_range(rndseed, rndseed_size);
395 }
396
397 static void
398 fdt_probe_efirng(uint64_t *pstart, uint64_t *pend)
399 {
400
401 fdt_probe_range("netbsd,efirng-start", "netbsd,efirng-end",
402 pstart, pend);
403 }
404
405 static struct krndsource efirng_source;
406
407 static void
408 fdt_setup_efirng(void)
409 {
410 uint64_t efirng_size;
411 void *efirng;
412
413 efirng = fdt_map_range(efirng_start, efirng_end, &efirng_size,
414 "efirng");
415 if (efirng == NULL)
416 return;
417
418 rnd_attach_source(&efirng_source, "efirng", RND_TYPE_RNG,
419 RND_FLAG_DEFAULT);
420
421 /*
422 * We don't really have specific information about the physical
423 * process underlying the data provided by the firmware via the
424 * EFI RNG API, so the entropy estimate here is heuristic.
425 * What efiboot provides us is up to 4096 bytes of data from
426 * the EFI RNG API, although in principle it may return short.
427 *
428 * The UEFI Specification (2.8 Errata A, February 2020[1]) says
429 *
430 * When a Deterministic Random Bit Generator (DRBG) is
431 * used on the output of a (raw) entropy source, its
432 * security level must be at least 256 bits.
433 *
434 * It's not entirely clear whether `it' refers to the DRBG or
435 * the entropy source; if it refers to the DRBG, it's not
436 * entirely clear how ANSI X9.31 3DES, one of the options for
437 * DRBG in the UEFI spec, can provide a `256-bit security
438 * level' because it has only 232 bits of inputs (three 56-bit
439 * keys and one 64-bit block). That said, even if it provides
440 * only 232 bits of entropy, that's enough to prevent all
441 * attacks and we probably get a few more bits from sampling
442 * the clock anyway.
443 *
444 * In the event we get raw samples, e.g. the bits sampled by a
445 * ring oscillator, we hope that the samples have at least half
446 * a bit of entropy per bit of data -- and efiboot tries to
447 * draw 4096 bytes to provide plenty of slop. Hence we divide
448 * the total number of bits by two and clamp at 256. There are
449 * ways this could go wrong, but on most machines it should
450 * behave reasonably.
451 *
452 * [1] https://uefi.org/sites/default/files/resources/UEFI_Spec_2_8_A_Feb14.pdf
453 */
454 rnd_add_data(&efirng_source, efirng, efirng_size,
455 MIN(256, efirng_size*NBBY/2));
456
457 explicit_memset(efirng, 0, efirng_size);
458 fdt_unmap_range(efirng, efirng_size);
459 }
460
461 #ifdef EFI_RUNTIME
462 static void
463 fdt_map_efi_runtime(const char *prop, enum arm_efirt_mem_type type)
464 {
465 int len;
466
467 const int chosen_off = fdt_path_offset(fdt_data, "/chosen");
468 if (chosen_off < 0)
469 return;
470
471 const uint64_t *map = fdt_getprop(fdt_data, chosen_off, prop, &len);
472 if (map == NULL)
473 return;
474
475 while (len >= 24) {
476 const paddr_t pa = be64toh(map[0]);
477 const vaddr_t va = be64toh(map[1]);
478 const size_t sz = be64toh(map[2]);
479 VPRINTF("%s: %s %#" PRIxPADDR "-%#" PRIxVADDR " (%#" PRIxVADDR
480 "-%#" PRIxVSIZE ")\n", __func__, prop, pa, pa + sz - 1,
481 va, va + sz - 1);
482 arm_efirt_md_map_range(va, pa, sz, type);
483 map += 3;
484 len -= 24;
485 }
486 }
487 #endif
488
489 vaddr_t
490 initarm(void *arg)
491 {
492 const struct arm_platform *plat;
493 uint64_t memory_start, memory_end;
494
495 /* set temporally to work printf()/panic() even before consinit() */
496 cn_tab = &earlycons;
497
498 /* Load FDT */
499 int error = fdt_check_header(fdt_addr_r);
500 if (error != 0)
501 panic("fdt_check_header failed: %s", fdt_strerror(error));
502
503 /* If the DTB is too big, try to pack it in place first. */
504 if (fdt_totalsize(fdt_addr_r) > sizeof(fdt_data))
505 (void)fdt_pack(__UNCONST(fdt_addr_r));
506
507 error = fdt_open_into(fdt_addr_r, fdt_data, sizeof(fdt_data));
508 if (error != 0)
509 panic("fdt_move failed: %s", fdt_strerror(error));
510
511 fdtbus_init(fdt_data);
512
513 /* Lookup platform specific backend */
514 plat = arm_fdt_platform();
515 if (plat == NULL)
516 panic("Kernel does not support this device");
517
518 /* Early console may be available, announce ourselves. */
519 VPRINTF("FDT<%p>\n", fdt_addr_r);
520
521 const int chosen = OF_finddevice("/chosen");
522 if (chosen >= 0)
523 OF_getprop(chosen, "bootargs", bootargs, sizeof(bootargs));
524 boot_args = bootargs;
525
526 /* Heads up ... Setup the CPU / MMU / TLB functions. */
527 VPRINTF("cpufunc\n");
528 if (set_cpufuncs())
529 panic("cpu not recognized!");
530
531 /*
532 * Memory is still identity/flat mapped this point so using ttbr for
533 * l1pt VA is fine
534 */
535
536 VPRINTF("devmap %p\n", plat->ap_devmap());
537 extern char ARM_BOOTSTRAP_LxPT[];
538 pmap_devmap_bootstrap((vaddr_t)ARM_BOOTSTRAP_LxPT, plat->ap_devmap());
539
540 VPRINTF("bootstrap\n");
541 plat->ap_bootstrap();
542
543 /*
544 * If stdout-path is specified on the command line, override the
545 * value in /chosen/stdout-path before initializing console.
546 */
547 VPRINTF("stdout\n");
548 fdt_update_stdout_path();
549
550 #if BYTE_ORDER == BIG_ENDIAN
551 /*
552 * Most boards are configured to little-endian mode initially, and
553 * switched to big-endian mode after kernel is loaded. In this case,
554 * framebuffer seems byte-swapped to CPU. Override FDT to let
555 * drivers know.
556 */
557 VPRINTF("fb_format\n");
558 fdt_update_fb_format();
559 #endif
560
561 /*
562 * Done making changes to the FDT.
563 */
564 fdt_pack(fdt_data);
565
566 VPRINTF("consinit ");
567 consinit();
568 VPRINTF("ok\n");
569
570 VPRINTF("uboot: args %#lx, %#lx, %#lx, %#lx\n",
571 uboot_args[0], uboot_args[1], uboot_args[2], uboot_args[3]);
572
573 cpu_reset_address = fdt_reset;
574 cpu_powerdown_address = fdt_powerdown;
575 evbarm_device_register = fdt_device_register;
576 evbarm_device_register_post_config = fdt_device_register_post_config;
577 evbarm_cpu_rootconf = fdt_cpu_rootconf;
578
579 /* Talk to the user */
580 printf("NetBSD/evbarm (fdt) booting ...\n");
581
582 #ifdef BOOT_ARGS
583 char mi_bootargs[] = BOOT_ARGS;
584 parse_mi_bootargs(mi_bootargs);
585 #endif
586
587 fdt_memory_get(&memory_start, &memory_end);
588
589 fdt_memory_foreach(fdt_print_memory, NULL);
590
591 #if !defined(_LP64)
592 /* Cannot map memory above 4GB (remove last page as well) */
593 const uint64_t memory_limit = 0x100000000ULL - PAGE_SIZE;
594 if (memory_end > memory_limit) {
595 fdt_memory_remove_range(memory_limit , memory_end);
596 memory_end = memory_limit;
597 }
598 #endif
599 uint64_t memory_size = memory_end - memory_start;
600
601 VPRINTF("%s: memory start %" PRIx64 " end %" PRIx64 " (len %"
602 PRIx64 ")\n", __func__, memory_start, memory_end, memory_size);
603
604 /* Parse ramdisk info */
605 fdt_probe_initrd(&initrd_start, &initrd_end);
606
607 /* Parse our on-disk rndseed and the firmware's RNG from EFI */
608 fdt_probe_rndseed(&rndseed_start, &rndseed_end);
609 fdt_probe_efirng(&efirng_start, &efirng_end);
610
611 /*
612 * Populate bootconfig structure for the benefit of dodumpsys
613 */
614 VPRINTF("%s: fdt_build_bootconfig\n", __func__);
615 fdt_build_bootconfig(memory_start, memory_end);
616
617 /* Perform PT build and VM init */
618 cpu_kernel_vm_init(memory_start, memory_size);
619
620 VPRINTF("bootargs: %s\n", bootargs);
621
622 parse_mi_bootargs(boot_args);
623
624 VPRINTF("Memory regions:\n");
625
626 /* Populate fdt_physmem / nfdt_physmem for initarm_common */
627 fdt_memory_foreach(fdt_add_boot_physmem, &memory_size);
628
629 vaddr_t sp = initarm_common(KERNEL_VM_BASE, KERNEL_VM_SIZE, fdt_physmem,
630 nfdt_physmem);
631
632 /*
633 * initarm_common flushes cache if required before AP start
634 */
635 error = 0;
636 if ((boothowto & RB_MD1) == 0) {
637 VPRINTF("mpstart\n");
638 if (plat->ap_mpstart)
639 error = plat->ap_mpstart();
640 }
641
642 if (error)
643 return sp;
644
645 /*
646 * Now we have APs started the pages used for stacks and L1PT can
647 * be given to uvm
648 */
649 extern char const __start__init_memory[];
650 extern char const __stop__init_memory[] __weak;
651
652 if (__start__init_memory != __stop__init_memory) {
653 const paddr_t spa = KERN_VTOPHYS((vaddr_t)__start__init_memory);
654 const paddr_t epa = KERN_VTOPHYS((vaddr_t)__stop__init_memory);
655 const paddr_t spg = atop(spa);
656 const paddr_t epg = atop(epa);
657
658 VPRINTF(" start %08lx end %08lx... "
659 "loading in freelist %d\n", spa, epa, VM_FREELIST_DEFAULT);
660
661 uvm_page_physload(spg, epg, spg, epg, VM_FREELIST_DEFAULT);
662
663 }
664
665 return sp;
666 }
667
668 static void
669 fdt_update_stdout_path(void)
670 {
671 char *stdout_path, *ep;
672 int stdout_path_len;
673 char buf[256];
674
675 const int chosen_off = fdt_path_offset(fdt_data, "/chosen");
676 if (chosen_off == -1)
677 return;
678
679 if (get_bootconf_option(boot_args, "stdout-path",
680 BOOTOPT_TYPE_STRING, &stdout_path) == 0)
681 return;
682
683 ep = strchr(stdout_path, ' ');
684 stdout_path_len = ep ? (ep - stdout_path) : strlen(stdout_path);
685 if (stdout_path_len >= sizeof(buf))
686 return;
687
688 strncpy(buf, stdout_path, stdout_path_len);
689 buf[stdout_path_len] = '\0';
690 fdt_setprop(fdt_data, chosen_off, "stdout-path",
691 buf, stdout_path_len + 1);
692 }
693
694 void
695 consinit(void)
696 {
697 static bool initialized = false;
698 const struct arm_platform *plat = arm_fdt_platform();
699 const struct fdt_console *cons = fdtbus_get_console();
700 struct fdt_attach_args faa;
701 u_int uart_freq = 0;
702
703 if (initialized || cons == NULL)
704 return;
705
706 plat->ap_init_attach_args(&faa);
707 faa.faa_phandle = fdtbus_get_stdout_phandle();
708
709 if (plat->ap_uart_freq != NULL)
710 uart_freq = plat->ap_uart_freq();
711
712 cons->consinit(&faa, uart_freq);
713
714 initialized = true;
715 }
716
717 void
718 cpu_startup_hook(void)
719 {
720 #ifdef EFI_RUNTIME
721 fdt_map_efi_runtime("netbsd,uefi-runtime-code", ARM_EFIRT_MEM_CODE);
722 fdt_map_efi_runtime("netbsd,uefi-runtime-data", ARM_EFIRT_MEM_DATA);
723 fdt_map_efi_runtime("netbsd,uefi-runtime-mmio", ARM_EFIRT_MEM_MMIO);
724 #endif
725
726 fdtbus_intr_init();
727
728 fdt_setup_rndseed();
729 fdt_setup_efirng();
730 }
731
732 void
733 delay(u_int us)
734 {
735 const struct arm_platform *plat = arm_fdt_platform();
736
737 plat->ap_delay(us);
738 }
739
740 static void
741 fdt_detect_root_device(device_t dev)
742 {
743 struct mbr_sector mbr;
744 uint8_t buf[DEV_BSIZE];
745 uint8_t hash[16];
746 const uint8_t *rhash;
747 char rootarg[64];
748 struct vnode *vp;
749 MD5_CTX md5ctx;
750 int error, len;
751 size_t resid;
752 u_int part;
753
754 const int chosen = OF_finddevice("/chosen");
755 if (chosen < 0)
756 return;
757
758 if (of_hasprop(chosen, "netbsd,mbr") &&
759 of_hasprop(chosen, "netbsd,partition")) {
760
761 /*
762 * The bootloader has passed in a partition index and MD5 hash
763 * of the MBR sector. Read the MBR of this device, calculate the
764 * hash, and compare it with the value passed in.
765 */
766 rhash = fdtbus_get_prop(chosen, "netbsd,mbr", &len);
767 if (rhash == NULL || len != 16)
768 return;
769 of_getprop_uint32(chosen, "netbsd,partition", &part);
770 if (part >= MAXPARTITIONS)
771 return;
772
773 vp = opendisk(dev);
774 if (!vp)
775 return;
776 error = vn_rdwr(UIO_READ, vp, buf, sizeof(buf), 0, UIO_SYSSPACE,
777 IO_NODELOCKED, NOCRED, &resid, NULL);
778 VOP_CLOSE(vp, FREAD, NOCRED);
779 vput(vp);
780
781 if (error != 0)
782 return;
783
784 memcpy(&mbr, buf, sizeof(mbr));
785 MD5Init(&md5ctx);
786 MD5Update(&md5ctx, (void *)&mbr, sizeof(mbr));
787 MD5Final(hash, &md5ctx);
788
789 if (memcmp(rhash, hash, 16) != 0)
790 return;
791
792 snprintf(rootarg, sizeof(rootarg), " root=%s%c", device_xname(dev), part + 'a');
793 strcat(boot_args, rootarg);
794 }
795
796 if (of_hasprop(chosen, "netbsd,gpt-guid")) {
797 char guidbuf[UUID_STR_LEN];
798 const struct uuid *guid = fdtbus_get_prop(chosen, "netbsd,gpt-guid", &len);
799 if (guid == NULL || len != 16)
800 return;
801
802 uuid_snprintf(guidbuf, sizeof(guidbuf), guid);
803 snprintf(rootarg, sizeof(rootarg), " root=wedge:%s", guidbuf);
804 strcat(boot_args, rootarg);
805 }
806
807 if (of_hasprop(chosen, "netbsd,gpt-label")) {
808 const char *label = fdtbus_get_string(chosen, "netbsd,gpt-label");
809 if (label == NULL || *label == '\0')
810 return;
811
812 device_t dv = dkwedge_find_by_wname(label);
813 if (dv != NULL)
814 booted_device = dv;
815 }
816
817 if (of_hasprop(chosen, "netbsd,booted-mac-address")) {
818 const uint8_t *macaddr = fdtbus_get_prop(chosen, "netbsd,booted-mac-address", &len);
819 if (macaddr == NULL || len != 6)
820 return;
821 int s = pserialize_read_enter();
822 struct ifnet *ifp;
823 IFNET_READER_FOREACH(ifp) {
824 if (memcmp(macaddr, CLLADDR(ifp->if_sadl), len) == 0) {
825 device_t dv = device_find_by_xname(ifp->if_xname);
826 if (dv != NULL)
827 booted_device = dv;
828 break;
829 }
830 }
831 pserialize_read_exit(s);
832 }
833 }
834
835 static void
836 fdt_device_register(device_t self, void *aux)
837 {
838 const struct arm_platform *plat = arm_fdt_platform();
839
840 if (device_is_a(self, "armfdt")) {
841 fdt_setup_initrd();
842
843 #if NWSDISPLAY > 0 && NGENFB > 0
844 /*
845 * Setup framebuffer console, if present.
846 */
847 arm_simplefb_preattach();
848 #endif
849 }
850
851 #if NWSDISPLAY > 0 && NGENFB > 0
852 if (device_is_a(self, "genfb")) {
853 prop_dictionary_t dict = device_properties(self);
854 prop_dictionary_set_uint64(dict,
855 "simplefb-physaddr", arm_simplefb_physaddr());
856 }
857 #endif
858
859 if (plat && plat->ap_device_register)
860 plat->ap_device_register(self, aux);
861 }
862
863 static void
864 fdt_device_register_post_config(device_t self, void *aux)
865 {
866 #if NUKBD > 0 && NWSDISPLAY > 0
867 if (device_is_a(self, "wsdisplay")) {
868 struct wsdisplay_softc *sc = device_private(self);
869 if (wsdisplay_isconsole(sc))
870 ukbd_cnattach();
871 }
872 #endif
873 }
874
875 static void
876 fdt_cpu_rootconf(void)
877 {
878 device_t dev;
879 deviter_t di;
880 char *ptr;
881
882 if (booted_device != NULL)
883 return;
884
885 for (dev = deviter_first(&di, 0); dev; dev = deviter_next(&di)) {
886 if (device_class(dev) != DV_DISK)
887 continue;
888
889 if (get_bootconf_option(boot_args, "root", BOOTOPT_TYPE_STRING, &ptr) != 0)
890 break;
891
892 if (device_is_a(dev, "ld") || device_is_a(dev, "sd") || device_is_a(dev, "wd"))
893 fdt_detect_root_device(dev);
894 }
895 deviter_release(&di);
896 }
897
898 static void
899 fdt_reset(void)
900 {
901 const struct arm_platform *plat = arm_fdt_platform();
902
903 fdtbus_power_reset();
904
905 if (plat && plat->ap_reset)
906 plat->ap_reset();
907 }
908
909 static void
910 fdt_powerdown(void)
911 {
912 fdtbus_power_poweroff();
913 }
914
915 #if BYTE_ORDER == BIG_ENDIAN
916 static void
917 fdt_update_fb_format(void)
918 {
919 int off, len;
920 const char *format, *replace;
921
922 off = fdt_path_offset(fdt_data, "/chosen");
923 if (off < 0)
924 return;
925
926 for (;;) {
927 off = fdt_node_offset_by_compatible(fdt_data, off,
928 "simple-framebuffer");
929 if (off < 0)
930 return;
931
932 format = fdt_getprop(fdt_data, off, "format", &len);
933 if (format == NULL)
934 continue;
935
936 replace = NULL;
937 if (strcmp(format, "a8b8g8r8") == 0)
938 replace = "r8g8b8a8";
939 else if (strcmp(format, "x8r8g8b8") == 0)
940 replace = "b8g8r8x8";
941 if (replace != NULL)
942 fdt_setprop(fdt_data, off, "format", replace,
943 strlen(replace) + 1);
944 }
945 }
946 #endif
947