acpi.c revision 1.48 1 /* $NetBSD: acpi.c,v 1.48 2020/12/12 16:08:39 jmcneill Exp $ */
2
3 /*-
4 * Copyright (c) 1998 Doug Rabson
5 * Copyright (c) 2000 Mitsuru IWASAKI <iwasaki (at) FreeBSD.org>
6 * All rights reserved.
7 *
8 * Redistribution and use in source and binary forms, with or without
9 * modification, are permitted provided that the following conditions
10 * are met:
11 * 1. Redistributions of source code must retain the above copyright
12 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 * SUCH DAMAGE.
28 *
29 * $FreeBSD: head/usr.sbin/acpi/acpidump/acpi.c 321299 2017-07-20 17:36:17Z emaste $
30 */
31
32 #include <sys/cdefs.h>
33 __RCSID("$NetBSD: acpi.c,v 1.48 2020/12/12 16:08:39 jmcneill Exp $");
34
35 #include <sys/param.h>
36 #include <sys/endian.h>
37 #include <sys/stat.h>
38 #include <sys/wait.h>
39 #include <assert.h>
40 #include <err.h>
41 #include <fcntl.h>
42 #include <paths.h>
43 #include <stdbool.h>
44 #include <stdio.h>
45 #include <stdint.h>
46 #include <stdlib.h>
47 #include <string.h>
48 #include <unistd.h>
49 #include <stddef.h>
50 #include <uuid.h>
51
52 #include "acpidump.h"
53
54 #define BEGIN_COMMENT "/*\n"
55 #define END_COMMENT " */\n"
56
57 /* Commonly used helper functions */
58 static void acpi_print_string(char *s, size_t length);
59 static void acpi_print_tabs(unsigned int n);
60 static void acpi_dump_bytes(uint8_t *p, uint32_t len, unsigned int ntabs);
61 static void acpi_dump_table(ACPI_TABLE_HEADER *sdp);
62 static void acpi_print_gas(ACPI_GENERIC_ADDRESS *gas);
63 static void acpi_print_pci(uint16_t vendorid, uint16_t deviceid,
64 uint8_t seg, uint8_t bus, uint8_t device, uint8_t func);
65 static void acpi_print_pci_sbdf(uint8_t seg, uint8_t bus, uint8_t device,
66 uint8_t func);
67 #ifdef notyet
68 static void acpi_print_hest_generic_status(ACPI_HEST_GENERIC_STATUS *);
69 static void acpi_print_hest_generic_data(ACPI_HEST_GENERIC_DATA *);
70 #endif
71 static void acpi_print_whea(ACPI_WHEA_HEADER *whea,
72 void (*print_action)(ACPI_WHEA_HEADER *),
73 void (*print_ins)(ACPI_WHEA_HEADER *),
74 void (*print_flags)(ACPI_WHEA_HEADER *));
75 static uint64_t acpi_select_address(uint32_t, uint64_t);
76
77 /* Handlers for each table */
78 static void acpi_handle_fadt(ACPI_TABLE_HEADER *fadt);
79 static void acpi_print_cpu(u_char cpu_id);
80 static void acpi_print_cpu_uid(uint32_t uid, char *uid_string);
81 static void acpi_print_local_apic(uint32_t apic_id, uint32_t flags);
82 static void acpi_print_io_apic(uint32_t apic_id, uint32_t int_base,
83 uint64_t apic_addr);
84 static void acpi_print_mps_flags(uint16_t flags);
85 static void acpi_print_intr(uint32_t intr, uint16_t mps_flags);
86 static void acpi_print_local_nmi(u_int lint, uint16_t mps_flags);
87 static void acpi_print_madt(ACPI_SUBTABLE_HEADER *mp);
88 static void acpi_handle_bert(ACPI_TABLE_HEADER *sdp);
89 static void acpi_handle_bgrt(ACPI_TABLE_HEADER *sdp);
90 static void acpi_handle_boot(ACPI_TABLE_HEADER *sdp);
91 static void acpi_handle_cpep(ACPI_TABLE_HEADER *sdp);
92 static void acpi_handle_csrt(ACPI_TABLE_HEADER *sdp);
93 static void acpi_handle_dbgp(ACPI_TABLE_HEADER *sdp);
94 static void acpi_handle_dbg2(ACPI_TABLE_HEADER *sdp);
95 static void acpi_handle_einj(ACPI_TABLE_HEADER *sdp);
96 static void acpi_handle_erst(ACPI_TABLE_HEADER *sdp);
97 static void acpi_handle_gtdt(ACPI_TABLE_HEADER *sdp);
98 static void acpi_handle_hest(ACPI_TABLE_HEADER *sdp);
99 static void acpi_handle_iort(ACPI_TABLE_HEADER *sdp);
100 static void acpi_handle_lpit(ACPI_TABLE_HEADER *sdp);
101 static void acpi_handle_madt(ACPI_TABLE_HEADER *sdp);
102 static void acpi_handle_msct(ACPI_TABLE_HEADER *sdp);
103 static void acpi_handle_ecdt(ACPI_TABLE_HEADER *sdp);
104 static void acpi_handle_hpet(ACPI_TABLE_HEADER *sdp);
105 static void acpi_handle_mcfg(ACPI_TABLE_HEADER *sdp);
106 static void acpi_handle_pcct(ACPI_TABLE_HEADER *sdp);
107 static void acpi_handle_pptt(ACPI_TABLE_HEADER *sdp);
108 static void acpi_handle_sbst(ACPI_TABLE_HEADER *sdp);
109 static void acpi_handle_slit(ACPI_TABLE_HEADER *sdp);
110 static void acpi_handle_spcr(ACPI_TABLE_HEADER *sdp);
111 static void acpi_handle_spmi(ACPI_TABLE_HEADER *sdp);
112 static void acpi_print_srat_cpu(uint8_t type, uint32_t apic_id,
113 uint32_t proximity_domain,
114 uint32_t flags, uint32_t clockdomain, uint8_t sapic_eid);
115 static void acpi_print_srat_memory(ACPI_SRAT_MEM_AFFINITY *mp);
116 static void acpi_print_srat(ACPI_SUBTABLE_HEADER *srat);
117 static void acpi_handle_srat(ACPI_TABLE_HEADER *sdp);
118 static void acpi_handle_tcpa(ACPI_TABLE_HEADER *sdp);
119 static void acpi_handle_tpm2(ACPI_TABLE_HEADER *sdp);
120 static void acpi_print_nfit(ACPI_NFIT_HEADER *nfit);
121 static void acpi_handle_nfit(ACPI_TABLE_HEADER *sdp);
122 static void acpi_handle_uefi(ACPI_TABLE_HEADER *sdp);
123 static void acpi_handle_waet(ACPI_TABLE_HEADER *sdp);
124 static void acpi_handle_wdat(ACPI_TABLE_HEADER *sdp);
125 static void acpi_handle_wddt(ACPI_TABLE_HEADER *sdp);
126 static void acpi_handle_wdrt(ACPI_TABLE_HEADER *sdp);
127 static void acpi_print_sdt(ACPI_TABLE_HEADER *sdp);
128 static void acpi_print_fadt(ACPI_TABLE_HEADER *sdp);
129 static void acpi_print_facs(ACPI_TABLE_FACS *facs);
130 static void acpi_print_dsdt(ACPI_TABLE_HEADER *dsdp);
131 static ACPI_TABLE_HEADER *acpi_map_sdt(vm_offset_t pa);
132 static void acpi_print_rsd_ptr(ACPI_TABLE_RSDP *rp);
133 static void acpi_handle_rsdt(ACPI_TABLE_HEADER *rsdp);
134 static void acpi_walk_subtables(ACPI_TABLE_HEADER *table, void *first,
135 void (*action)(ACPI_SUBTABLE_HEADER *));
136 static void acpi_walk_nfit(ACPI_TABLE_HEADER *table, void *first,
137 void (*action)(ACPI_NFIT_HEADER *));
138
139 /* Size of an address. 32-bit for ACPI 1.0, 64-bit for ACPI 2.0 and up. */
140 static int addr_size;
141
142 /* Strings used in the TCPA table */
143 static const char *tcpa_event_type_strings[] = {
144 "PREBOOT Certificate",
145 "POST Code",
146 "Unused",
147 "No Action",
148 "Separator",
149 "Action",
150 "Event Tag",
151 "S-CRTM Contents",
152 "S-CRTM Version",
153 "CPU Microcode",
154 "Platform Config Flags",
155 "Table of Devices",
156 "Compact Hash",
157 "IPL",
158 "IPL Partition Data",
159 "Non-Host Code",
160 "Non-Host Config",
161 "Non-Host Info"
162 };
163
164 static const char *TCPA_pcclient_strings[] = {
165 "<undefined>",
166 "SMBIOS",
167 "BIS Certificate",
168 "POST BIOS ROM Strings",
169 "ESCD",
170 "CMOS",
171 "NVRAM",
172 "Option ROM Execute",
173 "Option ROM Configurateion",
174 "<undefined>",
175 "Option ROM Microcode Update ",
176 "S-CRTM Version String",
177 "S-CRTM Contents",
178 "POST Contents",
179 "Table of Devices",
180 };
181
182 #define PRINTFLAG_END() printflag_end()
183
184 static char pf_sep = '{';
185
186 static void
187 printflag_end(void)
188 {
189
190 if (pf_sep == ',') {
191 printf("}");
192 } else if (pf_sep == '{') {
193 printf("{}");
194 }
195 pf_sep = '{';
196 printf("\n");
197 }
198
199 static void
200 printflag(uint64_t var, uint64_t mask, const char *name)
201 {
202
203 if (var & mask) {
204 printf("%c%s", pf_sep, name);
205 pf_sep = ',';
206 }
207 }
208
209 static void
210 acpi_print_string(char *s, size_t length)
211 {
212 int c;
213
214 /* Trim trailing spaces and NULLs */
215 while (length > 0 && (s[length - 1] == ' ' || s[length - 1] == '\0'))
216 length--;
217
218 while (length--) {
219 c = *s++;
220 if (c == '\0')
221 return;
222 putchar(c);
223 }
224 }
225
226 static void
227 acpi_print_gas(ACPI_GENERIC_ADDRESS *gas)
228 {
229 switch (gas->SpaceId) {
230 case ACPI_ADR_SPACE_SYSTEM_MEMORY:
231 if (gas->BitWidth <= 32)
232 printf("0x%08x:%u[%u] (Memory)",
233 (u_int)gas->Address, gas->BitOffset,
234 gas->BitWidth);
235 else
236 printf("0x%016jx:%u[%u] (Memory)",
237 (uintmax_t)gas->Address, gas->BitOffset,
238 gas->BitWidth);
239 break;
240 case ACPI_ADR_SPACE_SYSTEM_IO:
241 printf("0x%02x:%u[%u] (IO)", (u_int)gas->Address,
242 gas->BitOffset, gas->BitWidth);
243 break;
244 case ACPI_ADR_SPACE_PCI_CONFIG:
245 printf("%x:%x+0x%x (PCI)", (uint16_t)(gas->Address >> 32),
246 (uint16_t)((gas->Address >> 16) & 0xffff),
247 (uint16_t)gas->Address);
248 break;
249 /* XXX How to handle these below? */
250 case ACPI_ADR_SPACE_EC:
251 printf("0x%x:%u[%u] (EC)", (uint16_t)gas->Address,
252 gas->BitOffset, gas->BitWidth);
253 break;
254 case ACPI_ADR_SPACE_SMBUS:
255 printf("0x%x:%u[%u] (SMBus)", (uint16_t)gas->Address,
256 gas->BitOffset, gas->BitWidth);
257 break;
258 case ACPI_ADR_SPACE_CMOS:
259 case ACPI_ADR_SPACE_PCI_BAR_TARGET:
260 case ACPI_ADR_SPACE_IPMI:
261 case ACPI_ADR_SPACE_GPIO:
262 case ACPI_ADR_SPACE_GSBUS:
263 case ACPI_ADR_SPACE_PLATFORM_COMM:
264 case ACPI_ADR_SPACE_FIXED_HARDWARE:
265 default:
266 printf("0x%016jx (SpaceID=%hhu)", (uintmax_t)gas->Address,
267 gas->SpaceId);
268 break;
269 }
270 }
271
272 static void
273 acpi_print_pci(uint16_t vendorid, uint16_t deviceid,
274 uint8_t seg, uint8_t bus, uint8_t device, uint8_t func)
275 {
276 if (vendorid == 0xffff && deviceid == 0xffff) {
277 printf("\tPCI Device=NONE\n");
278 return;
279 }
280
281 printf("\tPCI device={\n");
282 printf("\t\tVendor=0x%x\n", vendorid);
283 printf("\t\tDevice=0x%x\n", deviceid);
284 printf("\n");
285 printf("\t\tSegment Group=%d\n", seg);
286 printf("\t\tBus=%d\n", bus);
287 printf("\t\tDevice=%d\n", device);
288 printf("\t\tFunction=%d\n", func);
289 printf("\t}\n");
290 }
291
292 static void
293 acpi_print_pci_sbdf(uint8_t seg, uint8_t bus, uint8_t device, uint8_t func)
294 {
295 if (bus == 0xff && device == 0xff && func == 0xff) {
296 printf("\tPCI Device=NONE\n");
297 return;
298 }
299
300 printf("\tPCI device={\n");
301 printf("\t\tSegment Group=%d\n", seg);
302 printf("\t\tBus=%d\n", bus);
303 printf("\t\tDevice=%d\n", device);
304 printf("\t\tFunction=%d\n", func);
305 printf("\t}\n");
306 }
307
308 #ifdef notyet
309 static void
310 acpi_print_hest_errorseverity(uint32_t error)
311 {
312 printf("\tError Severity={ ");
313 switch (error) {
314 case 0:
315 printf("Recoverable");
316 break;
317 case 1:
318 printf("Fatal");
319 break;
320 case 2:
321 printf("Corrected");
322 break;
323 case 3:
324 printf("None");
325 break;
326 default:
327 printf("%d (reserved)", error);
328 break;
329 }
330 printf("}\n");
331 }
332 #endif
333
334 static void
335 acpi_print_hest_errorbank(ACPI_HEST_IA_ERROR_BANK *bank)
336 {
337 printf("\n");
338 printf("\tBank Number=%d\n", bank->BankNumber);
339 printf("\tClear Status On Init={%s}\n",
340 bank->ClearStatusOnInit ? "NO" : "YES");
341 printf("\tStatus Data Format={ ");
342 switch (bank->StatusFormat) {
343 case 0:
344 printf("IA32 MCA");
345 break;
346 case 1:
347 printf("EMT64 MCA");
348 break;
349 case 2:
350 printf("AMD64 MCA");
351 break;
352 }
353 printf(" }\n");
354
355 if (bank->ControlRegister)
356 printf("\tControl Register=0x%x\n", bank->ControlRegister);
357 printf("\tControl Init Data=0x%"PRIx64"\n", bank->ControlData);
358 printf("\tStatus MSR=0x%x\n", bank->StatusRegister);
359 printf("\tAddress MSR=0x%x\n", bank->AddressRegister);
360 printf("\tMisc MSR=0x%x\n", bank->MiscRegister);
361 }
362
363 static void
364 acpi_print_hest_header(ACPI_HEST_HEADER *hest)
365 {
366 printf("\tType={");
367 switch (hest->Type) {
368 case ACPI_HEST_TYPE_IA32_CHECK:
369 printf("IA32 Machine Check Exception");
370 break;
371 case ACPI_HEST_TYPE_IA32_CORRECTED_CHECK:
372 printf("IA32 Corrected Machine Check");
373 break;
374 case ACPI_HEST_TYPE_IA32_NMI:
375 printf("IA32 Non-Maskable Interrupt");
376 break;
377 case ACPI_HEST_TYPE_NOT_USED3:
378 case ACPI_HEST_TYPE_NOT_USED4:
379 case ACPI_HEST_TYPE_NOT_USED5:
380 printf("unused type: %d", hest->Type);
381 break;
382 case ACPI_HEST_TYPE_AER_ROOT_PORT:
383 printf("PCI Express Root Port AER");
384 break;
385 case ACPI_HEST_TYPE_AER_ENDPOINT:
386 printf("PCI Express Endpoint AER");
387 break;
388 case ACPI_HEST_TYPE_AER_BRIDGE:
389 printf("PCI Express/PCI-X Bridge AER");
390 break;
391 case ACPI_HEST_TYPE_GENERIC_ERROR:
392 printf("Generic Hardware Error Source");
393 break;
394 case ACPI_HEST_TYPE_GENERIC_ERROR_V2:
395 printf("Generic Hardware Error Source version 2");
396 break;
397 case ACPI_HEST_TYPE_RESERVED:
398 default:
399 printf("Reserved (%d)", hest->Type);
400 break;
401 }
402 printf("}\n");
403 printf("\tSourceId=%d\n", hest->SourceId);
404 }
405
406 static void
407 acpi_print_hest_aer_common(ACPI_HEST_AER_COMMON *data)
408 {
409
410 #define PRINTFLAG(var, flag) printflag((var), ACPI_HEST_## flag, #flag)
411
412 printf("\tFlags=");
413 PRINTFLAG(data->Flags, FIRMWARE_FIRST);
414 PRINTFLAG(data->Flags, GLOBAL);
415 PRINTFLAG(data->Flags, GHES_ASSIST);
416 PRINTFLAG_END();
417
418 #undef PRINTFLAG
419
420 printf("\tEnabled={ %s ", data->Flags ? "YES" : "NO");
421 if (data->Flags & ACPI_HEST_FIRMWARE_FIRST)
422 printf("(ignored) ");
423 printf("}\n");
424 printf("\tNumber of Record to pre-allocate=%d\n",
425 data->RecordsToPreallocate);
426 printf("\tMax. Sections per Record=%d\n", data->MaxSectionsPerRecord);
427 if (!(data->Flags & ACPI_HEST_GLOBAL))
428 acpi_print_pci_sbdf(0, data->Bus, data->Device, data->Function);
429 printf("\tDevice Control=0x%x\n", data->DeviceControl);
430 printf("\tUncorrectable Error Mask Register=0x%x\n",
431 data->UncorrectableMask);
432 printf("\tUncorrectable Error Severity Register=0x%x\n",
433 data->UncorrectableSeverity);
434 printf("\tCorrectable Error Mask Register=0x%x\n",
435 data->CorrectableMask);
436 printf("\tAdvanced Capabilities Register=0x%x\n",
437 data->AdvancedCapabilities);
438 }
439
440 static void
441 acpi_print_hest_notify(ACPI_HEST_NOTIFY *notify)
442 {
443 printf("\tHW Error Notification={\n");
444 printf("\t\tType={");
445 switch (notify->Type) {
446 case ACPI_HEST_NOTIFY_POLLED:
447 printf("POLLED");
448 break;
449 case ACPI_HEST_NOTIFY_EXTERNAL:
450 printf("EXTERN");
451 break;
452 case ACPI_HEST_NOTIFY_LOCAL:
453 printf("LOCAL");
454 break;
455 case ACPI_HEST_NOTIFY_SCI:
456 printf("SCI");
457 break;
458 case ACPI_HEST_NOTIFY_NMI:
459 printf("NMI");
460 break;
461 case ACPI_HEST_NOTIFY_CMCI:
462 printf("CMCI");
463 break;
464 case ACPI_HEST_NOTIFY_MCE:
465 printf("MCE");
466 break;
467 case ACPI_HEST_NOTIFY_GPIO:
468 printf("GPIO-Signal");
469 break;
470 case ACPI_HEST_NOTIFY_SEA:
471 printf("ARMv8 SEA");
472 break;
473 case ACPI_HEST_NOTIFY_SEI:
474 printf("ARMv8 SEI");
475 break;
476 case ACPI_HEST_NOTIFY_GSIV:
477 printf("External Interrupt - GSIV");
478 break;
479 case ACPI_HEST_NOTIFY_RESERVED:
480 printf("RESERVED");
481 break;
482 default:
483 printf("%d (reserved)", notify->Type);
484 break;
485 }
486 printf("}\n");
487
488 printf("\t\tLength=%d\n", notify->Length);
489
490 #define PRINTFLAG(var, flag) printflag((var), ACPI_HEST_## flag, #flag)
491
492 printf("\t\tConfig Write Enable=");
493 PRINTFLAG(notify->ConfigWriteEnable, TYPE);
494 PRINTFLAG(notify->ConfigWriteEnable, POLL_INTERVAL);
495 PRINTFLAG(notify->ConfigWriteEnable, POLL_THRESHOLD_VALUE);
496 PRINTFLAG(notify->ConfigWriteEnable, POLL_THRESHOLD_WINDOW);
497 PRINTFLAG(notify->ConfigWriteEnable, ERR_THRESHOLD_VALUE);
498 PRINTFLAG(notify->ConfigWriteEnable, ERR_THRESHOLD_WINDOW);
499 PRINTFLAG_END();
500
501 #undef PRINTFLAG
502
503 printf("\t\tPoll Interval=%d msec\n", notify->PollInterval);
504 printf("\t\tInterrupt Vector=%d\n", notify->Vector);
505 printf("\t\tSwitch To Polling Threshold Value=%d\n",
506 notify->PollingThresholdValue);
507 printf("\t\tSwitch To Polling Threshold Window=%d msec\n",
508 notify->PollingThresholdWindow);
509 printf("\t\tError Threshold Value=%d\n",
510 notify->ErrorThresholdValue);
511 printf("\t\tError Threshold Window=%d msec\n",
512 notify->ErrorThresholdWindow);
513 printf("\t}\n");
514 }
515
516 #ifdef notyet
517 static void
518 acpi_print_hest_generic_status(ACPI_HEST_GENERIC_STATUS *data)
519 {
520 uint32_t i, pos, entries;
521 ACPI_HEST_GENERIC_DATA *gen;
522
523 entries = data->BlockStatus & ACPI_HEST_ERROR_ENTRY_COUNT;
524
525 printf("\tGeneric Error Status={\n");
526 printf("\t\tBlock Status={ ");
527 if (data->BlockStatus & ACPI_HEST_UNCORRECTABLE)
528 printf("UNCORRECTABLE");
529 if (data->BlockStatus & ACPI_HEST_CORRECTABLE)
530 printf("CORRECTABLE");
531 if (data->BlockStatus & ACPI_HEST_MULTIPLE_UNCORRECTABLE)
532 printf("MULTIPLE UNCORRECTABLE");
533 if (data->BlockStatus & ACPI_HEST_MULTIPLE_CORRECTABLE)
534 printf("MULTIPLE CORRECTABLE");
535 printf(" }\n");
536 printf("\t\tEntry Count=%d\n", entries);
537 printf("\t\tRaw Data Offset=%d\n", data->RawDataOffset);
538 printf("\t\tRaw Data Length=%d\n", data->RawDataLength);
539 printf("\t\tData Length=%d\n", data->DataLength);
540 printf("\t");
541 acpi_print_hest_errorseverity(data->ErrorSeverity);
542 printf("\t}\n");
543
544 pos = sizeof(ACPI_HEST_GENERIC_STATUS);
545 for (i = 0; i < entries; i++) {
546 gen = (ACPI_HEST_GENERIC_DATA *)((char *)data + pos);
547 acpi_print_hest_generic_data(gen);
548 pos += sizeof(ACPI_HEST_GENERIC_DATA);
549 }
550 }
551 #endif
552
553 #ifdef notyet
554 static void
555 acpi_print_hest_generic_data(ACPI_HEST_GENERIC_DATA *data)
556 {
557 printf("\tGeneric Error Data={\n");
558 printf("\t\tSectionType=");
559 acpi_print_string((char *)data->SectionType, sizeof(data->SectionType));
560 printf("\n\t");
561 acpi_print_hest_errorseverity(data->ErrorSeverity);
562 printf("\t\tRevision=0x%x\n", data->Revision);
563 printf("\t\tValidation Bits=0x%x\n", data->ValidationBits);
564 printf("\t\tFlags=0x%x\n", data->Flags);
565 printf("\t\tData Length=%d\n", data->ErrorDataLength);
566 printf("\t\tField Replication Unit Id=");
567 acpi_print_string((char *)data->FruId, sizeof(data->FruId));
568 printf("\n");
569 printf("\t\tField Replication Unit=");
570 acpi_print_string((char *)data->FruText, sizeof(data->FruText));
571 printf("\n");
572 printf("\t}\n");
573 }
574 #endif
575
576 static void
577 acpi_print_whea(ACPI_WHEA_HEADER *whea,
578 void (*print_action)(ACPI_WHEA_HEADER *),
579 void (*print_ins)(ACPI_WHEA_HEADER *),
580 void (*print_flags)(ACPI_WHEA_HEADER *))
581 {
582 printf("\n");
583
584 print_action(whea);
585 print_ins(whea);
586 if (print_flags)
587 print_flags(whea);
588 printf("\tRegisterRegion=");
589 acpi_print_gas(&whea->RegisterRegion);
590 printf("\n");
591 printf("\tMASK=0x%08"PRIx64"\n", whea->Mask);
592 }
593
594 static void
595 acpi_print_hest_ia32_check(ACPI_HEST_IA_MACHINE_CHECK *data)
596 {
597 uint32_t i, pos;
598 ACPI_HEST_IA_ERROR_BANK *bank;
599
600 acpi_print_hest_header(&data->Header);
601 printf("\tFlags={ ");
602 if (data->Flags & ACPI_HEST_FIRMWARE_FIRST)
603 printf("FIRMWARE_FIRST");
604 printf(" }\n");
605 printf("\tEnabled={ %s }\n", data->Enabled ? "YES" : "NO");
606 printf("\tNumber of Record to pre-allocate=%d\n",
607 data->RecordsToPreallocate);
608 printf("\tMax Sections per Record=%d\n",
609 data->MaxSectionsPerRecord);
610 printf("\tGlobal Capability Init Data=0x%"PRIx64"\n",
611 data->GlobalCapabilityData);
612 printf("\tGlobal Control Init Data=0x%"PRIx64"\n",
613 data->GlobalControlData);
614 printf("\tNumber of Hardware Error Reporting Banks=%d\n",
615 data->NumHardwareBanks);
616
617 pos = sizeof(ACPI_HEST_IA_MACHINE_CHECK);
618 for (i = 0; i < data->NumHardwareBanks; i++) {
619 bank = (ACPI_HEST_IA_ERROR_BANK *)((char *)data + pos);
620 acpi_print_hest_errorbank(bank);
621 pos += sizeof(ACPI_HEST_IA_ERROR_BANK);
622 }
623 }
624
625 static void
626 acpi_print_hest_ia32_correctedcheck(ACPI_HEST_IA_CORRECTED *data)
627 {
628 uint32_t i, pos;
629 ACPI_HEST_IA_ERROR_BANK *bank;
630
631 acpi_print_hest_header(&data->Header);
632 printf("\tFlags={ ");
633 if (data->Flags & ACPI_HEST_FIRMWARE_FIRST)
634 printf("FIRMWARE_FIRST");
635 printf(" }\n");
636 printf("\tEnabled={ %s }\n", data->Enabled ? "YES" : "NO");
637 printf("\tNumber of Record to pre-allocate=%d\n",
638 data->RecordsToPreallocate);
639 printf("\tMax Sections per Record=%d\n",
640 data->MaxSectionsPerRecord);
641 acpi_print_hest_notify(&data->Notify);
642
643 printf("\tNumber of Hardware Error Reporting Banks=%d\n",
644 data->NumHardwareBanks);
645
646 pos = sizeof(ACPI_HEST_IA_MACHINE_CHECK);
647 for (i = 0; i < data->NumHardwareBanks; i++) {
648 bank = (ACPI_HEST_IA_ERROR_BANK *)((char *)data + pos);
649 acpi_print_hest_errorbank(bank);
650 pos += sizeof(ACPI_HEST_IA_ERROR_BANK);
651 }
652 }
653
654 static void
655 acpi_print_hest_ia32_nmi(ACPI_HEST_IA_NMI *data)
656 {
657 acpi_print_hest_header(&data->Header);
658 printf("\tNumber of Record to pre-allocate=%d\n",
659 data->RecordsToPreallocate);
660 printf("\tMax Sections per Record=%d\n",
661 data->MaxSectionsPerRecord);
662 printf("\tMax Raw Data Length=%d\n",
663 data->MaxRawDataLength);
664 }
665
666 static void
667 acpi_print_hest_aer_root(ACPI_HEST_AER_ROOT *data)
668 {
669 acpi_print_hest_header(&data->Header);
670 acpi_print_hest_aer_common(&data->Aer);
671 printf("Root Error Command Register=0x%x\n", data->RootErrorCommand);
672 }
673
674 static void
675 acpi_print_hest_aer_endpoint(ACPI_HEST_AER *data)
676 {
677 acpi_print_hest_header(&data->Header);
678 acpi_print_hest_aer_common(&data->Aer);
679 }
680
681 static void
682 acpi_print_hest_aer_bridge(ACPI_HEST_AER_BRIDGE *data)
683 {
684 acpi_print_hest_header(&data->Header);
685 acpi_print_hest_aer_common(&data->Aer);
686
687 printf("\tSecondary Uncorrectable Error Mask Register=0x%x\n",
688 data->UncorrectableMask2);
689 printf("\tSecondary Uncorrectable Error Severity Register=0x%x\n",
690 data->UncorrectableSeverity2);
691 printf("\tSecondory Advanced Capabilities Register=0x%x\n",
692 data->AdvancedCapabilities2);
693 }
694
695 static void
696 acpi_print_hest_generic(ACPI_HEST_GENERIC *data)
697 {
698 acpi_print_hest_header(&data->Header);
699 if (data->RelatedSourceId != 0xffff)
700 printf("\tReleated SourceId=%d\n", data->RelatedSourceId);
701 printf("\tEnabled={%s}\n", data->Enabled ? "YES" : "NO");
702 printf("\tNumber of Records to pre-allocate=%u\n",
703 data->RecordsToPreallocate);
704 printf("\tMax Sections per Record=%u\n", data->MaxSectionsPerRecord);
705 printf("\tMax Raw Data Length=%u\n", data->MaxRawDataLength);
706 printf("\tError Status Address=");
707 acpi_print_gas(&data->ErrorStatusAddress);
708 printf("\n");
709 acpi_print_hest_notify(&data->Notify);
710 printf("\tError Block Length=%u\n", data->ErrorBlockLength);
711 }
712
713 static void
714 acpi_print_hest_generic_v2(ACPI_HEST_GENERIC_V2 *data)
715 {
716
717 /* The first 64 bytes are the same as ACPI_HEST_GENERIC */
718 acpi_print_hest_generic((ACPI_HEST_GENERIC *)data);
719
720 printf("\tError Status Address");
721 acpi_print_gas(&data->ReadAckRegister);
722 printf("\n\tRead Ack Preserve=0x%016jx\n",
723 (uintmax_t)data->ReadAckPreserve);
724 printf("\tRead Ack Write=0x%016jx\n",
725 (uintmax_t)data->ReadAckWrite);
726 }
727
728 static void
729 acpi_handle_hest(ACPI_TABLE_HEADER *sdp)
730 {
731 ACPI_TABLE_HEST *hest;
732 ACPI_HEST_HEADER *subhest;
733 uint32_t i, pos;
734
735 printf(BEGIN_COMMENT);
736 acpi_print_sdt(sdp);
737 hest = (ACPI_TABLE_HEST *)sdp;
738
739 printf("\tError Source Count=%d\n", hest->ErrorSourceCount);
740 pos = sizeof(ACPI_TABLE_HEST);
741 for (i = 0; i < hest->ErrorSourceCount; i++) {
742 subhest = (ACPI_HEST_HEADER *)((char *)hest + pos);
743 printf("\n");
744
745 switch (subhest->Type) {
746 case ACPI_HEST_TYPE_IA32_CHECK:
747 acpi_print_hest_ia32_check(
748 (ACPI_HEST_IA_MACHINE_CHECK *)subhest);
749 pos += sizeof(ACPI_HEST_IA_MACHINE_CHECK);
750 break;
751
752 case ACPI_HEST_TYPE_IA32_CORRECTED_CHECK:
753 acpi_print_hest_ia32_correctedcheck(
754 (ACPI_HEST_IA_CORRECTED *)subhest);
755 pos += sizeof(ACPI_HEST_IA_CORRECTED);
756 break;
757
758 case ACPI_HEST_TYPE_IA32_NMI:
759 acpi_print_hest_ia32_nmi(
760 (ACPI_HEST_IA_NMI *)subhest);
761 pos += sizeof(ACPI_HEST_IA_NMI);
762 break;
763
764 case ACPI_HEST_TYPE_NOT_USED3:
765 case ACPI_HEST_TYPE_NOT_USED4:
766 case ACPI_HEST_TYPE_NOT_USED5:
767 pos += sizeof(ACPI_HEST_HEADER);
768 break;
769
770 case ACPI_HEST_TYPE_AER_ROOT_PORT:
771 acpi_print_hest_aer_root((ACPI_HEST_AER_ROOT *)subhest);
772 pos += sizeof(ACPI_HEST_AER_ROOT);
773 break;
774
775 case ACPI_HEST_TYPE_AER_ENDPOINT:
776 acpi_print_hest_aer_endpoint((ACPI_HEST_AER *)subhest);
777 pos += sizeof(ACPI_HEST_AER);
778 break;
779
780 case ACPI_HEST_TYPE_AER_BRIDGE:
781 acpi_print_hest_aer_bridge((ACPI_HEST_AER_BRIDGE *)subhest);
782 pos += sizeof(ACPI_HEST_AER_BRIDGE);
783 break;
784
785 case ACPI_HEST_TYPE_GENERIC_ERROR:
786 acpi_print_hest_generic((ACPI_HEST_GENERIC *)subhest);
787 pos += sizeof(ACPI_HEST_GENERIC);
788 break;
789
790 case ACPI_HEST_TYPE_GENERIC_ERROR_V2:
791 acpi_print_hest_generic_v2(
792 (ACPI_HEST_GENERIC_V2 *)subhest);
793 pos += sizeof(ACPI_HEST_GENERIC_V2);
794 break;
795
796 case ACPI_HEST_TYPE_RESERVED:
797 default:
798 pos += sizeof(ACPI_HEST_HEADER);
799 break;
800 }
801 }
802
803 printf(END_COMMENT);
804 }
805
806 static uint64_t
807 acpi_select_address(uint32_t addr32, uint64_t addr64)
808 {
809
810 if (addr64 == 0)
811 return addr32;
812
813 if ((addr32 != 0) && ((addr64 & 0xfffffff) != addr32)) {
814 /*
815 * A few systems (e.g., IBM T23) have an RSDP that claims
816 * revision 2 but the 64 bit addresses are invalid. If
817 * revision 2 and the 32 bit address is non-zero but the
818 * 32 and 64 bit versions don't match, prefer the 32 bit
819 * version for all subsequent tables.
820 */
821 return addr32;
822 }
823
824 return addr64;
825 }
826
827 static void
828 acpi_handle_fadt(ACPI_TABLE_HEADER *sdp)
829 {
830 ACPI_TABLE_HEADER *dsdp;
831 ACPI_TABLE_FACS *facs;
832 ACPI_TABLE_FADT *fadt;
833
834 fadt = (ACPI_TABLE_FADT *)sdp;
835 acpi_print_fadt(sdp);
836
837 if (acpi_select_address(fadt->Facs, fadt->XFacs) == 0) {
838 if ((fadt->Flags & ACPI_FADT_HW_REDUCED) == 0)
839 errx(EXIT_FAILURE, "Missing FACS and HW_REDUCED_ACPI flag not set in FADT");
840 } else if ((fadt->Flags & ACPI_FADT_HW_REDUCED) == 0) {
841 facs = (ACPI_TABLE_FACS *)acpi_map_sdt(
842 acpi_select_address(fadt->Facs, fadt->XFacs));
843 if (memcmp(facs->Signature, ACPI_SIG_FACS, 4) != 0 || facs->Length < 64)
844 errx(EXIT_FAILURE, "FACS is corrupt");
845 acpi_print_facs(facs);
846 }
847
848 dsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(
849 acpi_select_address(fadt->Dsdt, fadt->XDsdt));
850 if (memcmp(dsdp->Signature, ACPI_SIG_DSDT, 4) != 0)
851 errx(EXIT_FAILURE, "DSDT signature mismatch");
852 if (acpi_checksum(dsdp, dsdp->Length))
853 errx(EXIT_FAILURE, "DSDT is corrupt");
854 acpi_print_dsdt(dsdp);
855 }
856
857 static void
858 acpi_walk_subtables(ACPI_TABLE_HEADER *table, void *first,
859 void (*action)(ACPI_SUBTABLE_HEADER *))
860 {
861 ACPI_SUBTABLE_HEADER *subtable;
862 char *end;
863
864 subtable = first;
865 end = (char *)table + table->Length;
866 while ((char *)subtable < end) {
867 printf("\n");
868 if (subtable->Length < sizeof(ACPI_SUBTABLE_HEADER)) {
869 warnx("invalid subtable length %u", subtable->Length);
870 return;
871 }
872 action(subtable);
873 subtable = (ACPI_SUBTABLE_HEADER *)((char *)subtable +
874 subtable->Length);
875 }
876 }
877
878 static void
879 acpi_walk_nfit(ACPI_TABLE_HEADER *table, void *first,
880 void (*action)(ACPI_NFIT_HEADER *))
881 {
882 ACPI_NFIT_HEADER *subtable;
883 char *end;
884
885 subtable = first;
886 end = (char *)table + table->Length;
887 while ((char *)subtable < end) {
888 printf("\n");
889 if (subtable->Length < sizeof(ACPI_NFIT_HEADER)) {
890 warnx("invalid subtable length %u", subtable->Length);
891 return;
892 }
893 action(subtable);
894 subtable = (ACPI_NFIT_HEADER *)((char *)subtable +
895 subtable->Length);
896 }
897 }
898
899 static void
900 acpi_print_cpu(u_char cpu_id)
901 {
902
903 printf("\tACPI CPU=");
904 if (cpu_id == 0xff)
905 printf("ALL\n");
906 else
907 printf("%d\n", (u_int)cpu_id);
908 }
909
910 static void
911 acpi_print_cpu_uid(uint32_t uid, char *uid_string)
912 {
913
914 printf("\tUID=%d", uid);
915 if (uid_string != NULL)
916 printf(" (%s)", uid_string);
917 printf("\n");
918 }
919
920 static void
921 acpi_print_local_apic(uint32_t apic_id, uint32_t flags)
922 {
923
924 printf("\tFlags={");
925 if (flags & ACPI_MADT_ENABLED)
926 printf("ENABLED");
927 else
928 printf("DISABLED");
929 printf("}\n");
930 printf("\tAPIC ID=%d\n", apic_id);
931 }
932
933 static void
934 acpi_print_io_apic(uint32_t apic_id, uint32_t int_base, uint64_t apic_addr)
935 {
936
937 printf("\tAPIC ID=%d\n", apic_id);
938 printf("\tINT BASE=%d\n", int_base);
939 printf("\tADDR=0x%016jx\n", (uintmax_t)apic_addr);
940 }
941
942 static void
943 acpi_print_mps_flags(uint16_t flags)
944 {
945
946 printf("\tFlags={Polarity=");
947 switch (flags & ACPI_MADT_POLARITY_MASK) {
948 case ACPI_MADT_POLARITY_CONFORMS:
949 printf("conforming");
950 break;
951 case ACPI_MADT_POLARITY_ACTIVE_HIGH:
952 printf("active-hi");
953 break;
954 case ACPI_MADT_POLARITY_ACTIVE_LOW:
955 printf("active-lo");
956 break;
957 default:
958 printf("0x%x", flags & ACPI_MADT_POLARITY_MASK);
959 break;
960 }
961 printf(", Trigger=");
962 switch (flags & ACPI_MADT_TRIGGER_MASK) {
963 case ACPI_MADT_TRIGGER_CONFORMS:
964 printf("conforming");
965 break;
966 case ACPI_MADT_TRIGGER_EDGE:
967 printf("edge");
968 break;
969 case ACPI_MADT_TRIGGER_LEVEL:
970 printf("level");
971 break;
972 default:
973 printf("0x%x", (flags & ACPI_MADT_TRIGGER_MASK) >> 2);
974 }
975 printf("}\n");
976 }
977
978 static void
979 acpi_print_gicc_flags(uint32_t flags)
980 {
981
982 printf("\tFlags={Performance intr=");
983 if (flags & ACPI_MADT_PERFORMANCE_IRQ_MODE)
984 printf("edge");
985 else
986 printf("level");
987 printf(", VGIC intr=");
988 if (flags & ACPI_MADT_VGIC_IRQ_MODE)
989 printf("edge");
990 else
991 printf("level");
992 printf("}\n");
993 }
994
995 static void
996 acpi_print_intr(uint32_t intr, uint16_t mps_flags)
997 {
998
999 printf("\tINTR=%d\n", intr);
1000 acpi_print_mps_flags(mps_flags);
1001 }
1002
1003 static void
1004 acpi_print_local_nmi(u_int lint, uint16_t mps_flags)
1005 {
1006
1007 printf("\tLINT Pin=%d\n", lint);
1008 acpi_print_mps_flags(mps_flags);
1009 }
1010
1011 static const char *apic_types[] = {
1012 [ACPI_MADT_TYPE_LOCAL_APIC] = "Local APIC",
1013 [ACPI_MADT_TYPE_IO_APIC] = "IO APIC",
1014 [ACPI_MADT_TYPE_INTERRUPT_OVERRIDE] = "INT Override",
1015 [ACPI_MADT_TYPE_NMI_SOURCE] = "NMI",
1016 [ACPI_MADT_TYPE_LOCAL_APIC_NMI] = "Local APIC NMI",
1017 [ACPI_MADT_TYPE_LOCAL_APIC_OVERRIDE] = "Local APIC Override",
1018 [ACPI_MADT_TYPE_IO_SAPIC] = "IO SAPIC",
1019 [ACPI_MADT_TYPE_LOCAL_SAPIC] = "Local SAPIC",
1020 [ACPI_MADT_TYPE_INTERRUPT_SOURCE] = "Platform Interrupt",
1021 [ACPI_MADT_TYPE_LOCAL_X2APIC] = "Local X2APIC",
1022 [ACPI_MADT_TYPE_LOCAL_X2APIC_NMI] = "Local X2APIC NMI",
1023 [ACPI_MADT_TYPE_GENERIC_INTERRUPT] = "GIC CPU Interface Structure",
1024 [ACPI_MADT_TYPE_GENERIC_DISTRIBUTOR] = "GIC Distributor Structure",
1025 [ACPI_MADT_TYPE_GENERIC_MSI_FRAME] = "GICv2m MSI Frame",
1026 [ACPI_MADT_TYPE_GENERIC_REDISTRIBUTOR] = "GIC Redistributor Structure",
1027 [ACPI_MADT_TYPE_GENERIC_TRANSLATOR] = "GIC ITS Structure"
1028 };
1029
1030 static const char *platform_int_types[] = { "0 (unknown)", "PMI", "INIT",
1031 "Corrected Platform Error" };
1032
1033 static void
1034 acpi_print_gicm_flags(ACPI_MADT_GENERIC_MSI_FRAME *gicm)
1035 {
1036 uint32_t flags = gicm->Flags;
1037
1038 printf("\tFLAGS={");
1039 if (flags & ACPI_MADT_OVERRIDE_SPI_VALUES)
1040 printf("SPI Count/Base Select");
1041 printf("}\n");
1042 }
1043
1044 static void
1045 acpi_print_madt(ACPI_SUBTABLE_HEADER *mp)
1046 {
1047 ACPI_MADT_LOCAL_APIC *lapic;
1048 ACPI_MADT_IO_APIC *ioapic;
1049 ACPI_MADT_INTERRUPT_OVERRIDE *over;
1050 ACPI_MADT_NMI_SOURCE *nmi;
1051 ACPI_MADT_LOCAL_APIC_NMI *lapic_nmi;
1052 ACPI_MADT_LOCAL_APIC_OVERRIDE *lapic_over;
1053 ACPI_MADT_IO_SAPIC *iosapic;
1054 ACPI_MADT_LOCAL_SAPIC *lsapic;
1055 ACPI_MADT_INTERRUPT_SOURCE *isrc;
1056 ACPI_MADT_LOCAL_X2APIC *x2apic;
1057 ACPI_MADT_LOCAL_X2APIC_NMI *x2apic_nmi;
1058 ACPI_MADT_GENERIC_INTERRUPT *gicc;
1059 ACPI_MADT_GENERIC_DISTRIBUTOR *gicd;
1060 ACPI_MADT_GENERIC_MSI_FRAME *gicm;
1061 ACPI_MADT_GENERIC_REDISTRIBUTOR *gicr;
1062 ACPI_MADT_GENERIC_TRANSLATOR *gict;
1063
1064 if (mp->Type < __arraycount(apic_types))
1065 printf("\tType=%s\n", apic_types[mp->Type]);
1066 else
1067 printf("\tType=%d (unknown)\n", mp->Type);
1068 switch (mp->Type) {
1069 case ACPI_MADT_TYPE_LOCAL_APIC:
1070 lapic = (ACPI_MADT_LOCAL_APIC *)mp;
1071 acpi_print_cpu(lapic->ProcessorId);
1072 acpi_print_local_apic(lapic->Id, lapic->LapicFlags);
1073 break;
1074 case ACPI_MADT_TYPE_IO_APIC:
1075 ioapic = (ACPI_MADT_IO_APIC *)mp;
1076 acpi_print_io_apic(ioapic->Id, ioapic->GlobalIrqBase,
1077 ioapic->Address);
1078 break;
1079 case ACPI_MADT_TYPE_INTERRUPT_OVERRIDE:
1080 over = (ACPI_MADT_INTERRUPT_OVERRIDE *)mp;
1081 printf("\tBUS=%d\n", (u_int)over->Bus);
1082 printf("\tIRQ=%d\n", (u_int)over->SourceIrq);
1083 acpi_print_intr(over->GlobalIrq, over->IntiFlags);
1084 break;
1085 case ACPI_MADT_TYPE_NMI_SOURCE:
1086 nmi = (ACPI_MADT_NMI_SOURCE *)mp;
1087 acpi_print_intr(nmi->GlobalIrq, nmi->IntiFlags);
1088 break;
1089 case ACPI_MADT_TYPE_LOCAL_APIC_NMI:
1090 lapic_nmi = (ACPI_MADT_LOCAL_APIC_NMI *)mp;
1091 acpi_print_cpu(lapic_nmi->ProcessorId);
1092 acpi_print_local_nmi(lapic_nmi->Lint, lapic_nmi->IntiFlags);
1093 break;
1094 case ACPI_MADT_TYPE_LOCAL_APIC_OVERRIDE:
1095 lapic_over = (ACPI_MADT_LOCAL_APIC_OVERRIDE *)mp;
1096 printf("\tLocal APIC ADDR=0x%016jx\n",
1097 (uintmax_t)lapic_over->Address);
1098 break;
1099 case ACPI_MADT_TYPE_IO_SAPIC:
1100 iosapic = (ACPI_MADT_IO_SAPIC *)mp;
1101 acpi_print_io_apic(iosapic->Id, iosapic->GlobalIrqBase,
1102 iosapic->Address);
1103 break;
1104 case ACPI_MADT_TYPE_LOCAL_SAPIC:
1105 lsapic = (ACPI_MADT_LOCAL_SAPIC *)mp;
1106 acpi_print_cpu(lsapic->ProcessorId);
1107 acpi_print_local_apic(lsapic->Id, lsapic->LapicFlags);
1108 printf("\tAPIC EID=%d\n", (u_int)lsapic->Eid);
1109 if (mp->Length > offsetof(ACPI_MADT_LOCAL_SAPIC, Uid))
1110 acpi_print_cpu_uid(lsapic->Uid, lsapic->UidString);
1111 break;
1112 case ACPI_MADT_TYPE_INTERRUPT_SOURCE:
1113 isrc = (ACPI_MADT_INTERRUPT_SOURCE *)mp;
1114 if (isrc->Type < __arraycount(platform_int_types))
1115 printf("\tType=%s\n", platform_int_types[isrc->Type]);
1116 else
1117 printf("\tType=%d (unknown)\n", isrc->Type);
1118 printf("\tAPIC ID=%d\n", (u_int)isrc->Id);
1119 printf("\tAPIC EID=%d\n", (u_int)isrc->Eid);
1120 printf("\tSAPIC Vector=%d\n", (u_int)isrc->IoSapicVector);
1121 acpi_print_intr(isrc->GlobalIrq, isrc->IntiFlags);
1122 break;
1123 case ACPI_MADT_TYPE_LOCAL_X2APIC:
1124 x2apic = (ACPI_MADT_LOCAL_X2APIC *)mp;
1125 acpi_print_cpu_uid(x2apic->Uid, NULL);
1126 acpi_print_local_apic(x2apic->LocalApicId, x2apic->LapicFlags);
1127 break;
1128 case ACPI_MADT_TYPE_LOCAL_X2APIC_NMI:
1129 x2apic_nmi = (ACPI_MADT_LOCAL_X2APIC_NMI *)mp;
1130 acpi_print_cpu_uid(x2apic_nmi->Uid, NULL);
1131 acpi_print_local_nmi(x2apic_nmi->Lint, x2apic_nmi->IntiFlags);
1132 break;
1133 case ACPI_MADT_TYPE_GENERIC_INTERRUPT:
1134 gicc = (ACPI_MADT_GENERIC_INTERRUPT *)mp;
1135 acpi_print_cpu_uid(gicc->Uid, NULL);
1136 printf("\tCPU INTERFACE=%x\n", gicc->CpuInterfaceNumber);
1137 acpi_print_gicc_flags(gicc->Flags);
1138 printf("\tParking Protocol Version=%x\n", gicc->ParkingVersion);
1139 printf("\tPERF INTR=%d\n", gicc->PerformanceInterrupt);
1140 printf("\tParked ADDR=%016jx\n",
1141 (uintmax_t)gicc->ParkedAddress);
1142 printf("\tBase ADDR=%016jx\n", (uintmax_t)gicc->BaseAddress);
1143 printf("\tGICV=%016jx\n", (uintmax_t)gicc->GicvBaseAddress);
1144 printf("\tGICH=%016jx\n", (uintmax_t)gicc->GichBaseAddress);
1145 printf("\tVGIC INTR=%d\n", gicc->VgicInterrupt);
1146 printf("\tGICR ADDR=%016jx\n",
1147 (uintmax_t)gicc->GicrBaseAddress);
1148 printf("\tMPIDR=%jx\n", (uintmax_t)gicc->ArmMpidr);
1149 printf("\tEfficency Class=%d\n", (u_int)gicc->EfficiencyClass);
1150 break;
1151 case ACPI_MADT_TYPE_GENERIC_DISTRIBUTOR:
1152 gicd = (ACPI_MADT_GENERIC_DISTRIBUTOR *)mp;
1153 printf("\tGIC ID=%d\n", (u_int)gicd->GicId);
1154 printf("\tBase ADDR=%016jx\n", (uintmax_t)gicd->BaseAddress);
1155 printf("\tVector Base=%d\n", gicd->GlobalIrqBase);
1156 printf("\tGIC VERSION=%d\n", (u_int)gicd->Version);
1157 break;
1158 case ACPI_MADT_TYPE_GENERIC_MSI_FRAME:
1159 gicm = (ACPI_MADT_GENERIC_MSI_FRAME*)mp;
1160 printf("\tBase ADDR=%016jx\n", (uintmax_t)gicm->BaseAddress);
1161 acpi_print_gicm_flags(gicm);
1162 printf("\tSPI Count=%u\n", gicm->SpiCount);
1163 printf("\tSPI Base=%u\n", gicm->SpiBase);
1164 break;
1165 case ACPI_MADT_TYPE_GENERIC_REDISTRIBUTOR:
1166 gicr = (ACPI_MADT_GENERIC_REDISTRIBUTOR *)mp;
1167 printf("\tBase ADDR=%016jx\n", (uintmax_t)gicr->BaseAddress);
1168 printf("\tLength=%08x\n", gicr->Length);
1169 break;
1170 case ACPI_MADT_TYPE_GENERIC_TRANSLATOR:
1171 gict = (ACPI_MADT_GENERIC_TRANSLATOR *)mp;
1172 printf("\tGIC ITS ID=%d\n", gict->TranslationId);
1173 printf("\tBase ADDR=%016jx\n", (uintmax_t)gict->BaseAddress);
1174 break;
1175 }
1176 }
1177
1178 #ifdef notyet
1179 static void
1180 acpi_print_bert_region(ACPI_BERT_REGION *region)
1181 {
1182 uint32_t i, pos, entries;
1183 ACPI_HEST_GENERIC_DATA *data;
1184
1185 printf("\n");
1186 printf("\tBlockStatus={ ");
1187
1188 if (region->BlockStatus & ACPI_BERT_UNCORRECTABLE)
1189 printf("Uncorrectable");
1190 if (region->BlockStatus & ACPI_BERT_CORRECTABLE)
1191 printf("Correctable");
1192 if (region->BlockStatus & ACPI_BERT_MULTIPLE_UNCORRECTABLE)
1193 printf("Multiple Uncorrectable");
1194 if (region->BlockStatus & ACPI_BERT_MULTIPLE_CORRECTABLE)
1195 printf("Multiple Correctable");
1196 entries = region->BlockStatus & ACPI_BERT_ERROR_ENTRY_COUNT;
1197 printf(", Error Entry Count=%d", entries);
1198 printf("}\n");
1199
1200 printf("\tRaw Data Offset=0x%x\n", region->RawDataOffset);
1201 printf("\tRaw Data Length=0x%x\n", region->RawDataLength);
1202 printf("\tData Length=0x%x\n", region->DataLength);
1203
1204 acpi_print_hest_errorseverity(region->ErrorSeverity);
1205
1206 pos = sizeof(ACPI_BERT_REGION);
1207 for (i = 0; i < entries; i++) {
1208 data = (ACPI_HEST_GENERIC_DATA *)((char *)region + pos);
1209 acpi_print_hest_generic_data(data);
1210 pos += sizeof(ACPI_HEST_GENERIC_DATA);
1211 }
1212 }
1213 #endif
1214
1215 static void
1216 acpi_handle_bert(ACPI_TABLE_HEADER *sdp)
1217 {
1218 ACPI_TABLE_BERT *bert;
1219
1220 printf(BEGIN_COMMENT);
1221 acpi_print_sdt(sdp);
1222 bert = (ACPI_TABLE_BERT *)sdp;
1223
1224 printf("\tLength of Boot Error Region=%d bytes\n", bert->RegionLength);
1225 printf("\tPhysical Address of Region=0x%"PRIx64"\n", bert->Address);
1226
1227 printf(END_COMMENT);
1228 }
1229
1230 static void
1231 acpi_handle_bgrt(ACPI_TABLE_HEADER *sdp)
1232 {
1233 ACPI_TABLE_BGRT *bgrt;
1234 unsigned int degree;
1235
1236 printf(BEGIN_COMMENT);
1237 acpi_print_sdt(sdp);
1238 bgrt = (ACPI_TABLE_BGRT *)sdp;
1239
1240 printf("\tVersion=%hu\n", bgrt->Version);
1241 degree = ((unsigned int)(bgrt->Status & ACPI_BGRT_ORIENTATION_OFFSET)
1242 >> 1) * 90;
1243 printf("\tDegree=%u\n", degree);
1244 printf("\tDisplayed=%u\n", bgrt->Status & ACPI_BGRT_DISPLAYED);
1245 printf("\tImage Type=");
1246 switch (bgrt->ImageType) {
1247 case 0:
1248 printf("Bitmap\n");
1249 break;
1250 default:
1251 printf("reserved (0x%hhx)\n", bgrt->ImageType);
1252 break;
1253 }
1254 printf("\tImage Address=0x%"PRIx64"\n", bgrt->ImageAddress);
1255 printf("\tImage Offset X=0x%08x\n", bgrt->ImageOffsetX);
1256 printf("\tImage Offset Y=0x%08x\n", bgrt->ImageOffsetY);
1257
1258 printf(END_COMMENT);
1259 }
1260
1261 static void
1262 acpi_handle_boot(ACPI_TABLE_HEADER *sdp)
1263 {
1264 ACPI_TABLE_BOOT *boot;
1265
1266 printf(BEGIN_COMMENT);
1267 acpi_print_sdt(sdp);
1268 boot = (ACPI_TABLE_BOOT *)sdp;
1269 printf("\tCMOS Index=0x%02x\n", boot->CmosIndex);
1270 printf(END_COMMENT);
1271 }
1272
1273 static void
1274 acpi_handle_cpep(ACPI_TABLE_HEADER *sdp)
1275 {
1276 ACPI_TABLE_CPEP *cpep;
1277 ACPI_CPEP_POLLING *poll;
1278 uint32_t cpep_pos;
1279
1280 printf(BEGIN_COMMENT);
1281 acpi_print_sdt(sdp);
1282 cpep = (ACPI_TABLE_CPEP *)sdp;
1283
1284 cpep_pos = sizeof(ACPI_TABLE_CPEP);
1285 while (cpep_pos < sdp->Length) {
1286 poll = (ACPI_CPEP_POLLING *)((char *)cpep + cpep_pos);
1287 acpi_print_cpu(poll->Id);
1288 printf("\tACPI CPU EId=%d\n", poll->Eid);
1289 printf("\tPoll Interval=%d msec\n", poll->Interval);
1290 cpep_pos += sizeof(ACPI_CPEP_POLLING);
1291 }
1292 printf(END_COMMENT);
1293 }
1294
1295 static void
1296 acpi_print_csrt_resource_group(ACPI_CSRT_GROUP *grp)
1297 {
1298 ACPI_CSRT_DESCRIPTOR *desc;
1299
1300 printf("\tLength=%u\n", grp->Length);
1301 printf("\tVendorId=");
1302 acpi_print_string((char *)&grp->VendorId, 4);
1303 printf("\n");
1304 if (grp->SubvendorId != 0) {
1305 printf("\tSubvendorId=");
1306 acpi_print_string((char *)&grp->SubvendorId, 4);
1307 printf("\n");
1308 }
1309 printf("\tDeviceId=0x%08x\n", grp->DeviceId);
1310 if (grp->SubdeviceId != 0)
1311 printf("\tSubdeviceId=0x%08x\n", grp->SubdeviceId);
1312 printf("\tRevision=%hu\n", grp->Revision);
1313 printf("\tSharedInfoLength=%u\n", grp->SharedInfoLength);
1314
1315 /* Next is Shared Info */
1316 if (grp->SharedInfoLength != 0) {
1317 printf("\tShared Info ");
1318 acpi_dump_bytes((uint8_t *)(grp + 1),
1319 grp->SharedInfoLength, 1);
1320 }
1321
1322 /* And then, Resource Descriptors */
1323 desc = (ACPI_CSRT_DESCRIPTOR *)
1324 ((vaddr_t)(grp + 1) + grp->SharedInfoLength);
1325 while (desc < (ACPI_CSRT_DESCRIPTOR *)((vaddr_t)grp + grp->Length)) {
1326 bool unknownsubytpe = false;
1327 printf("\n\tLength=%u\n", desc->Length);
1328 printf("\tResource Type=");
1329 switch (desc->Type) {
1330 case ACPI_CSRT_TYPE_INTERRUPT:
1331 printf("Interrupt");
1332 switch (desc->Subtype) {
1333 case ACPI_CSRT_XRUPT_LINE:
1334 printf("(Interrupt line)\n");
1335 break;
1336 case ACPI_CSRT_XRUPT_CONTROLLER:
1337 printf("(Interrupt controller)\n");
1338 break;
1339 default:
1340 unknownsubytpe = true;
1341 break;
1342 }
1343 break;
1344 case ACPI_CSRT_TYPE_TIMER:
1345 printf("Timer");
1346 switch (desc->Subtype) {
1347 case ACPI_CSRT_TIMER:
1348 printf("\n");
1349 break;
1350 default:
1351 unknownsubytpe = true;
1352 break;
1353 }
1354 break;
1355 case ACPI_CSRT_TYPE_DMA:
1356 printf("DMA");
1357 switch (desc->Subtype) {
1358 case ACPI_CSRT_DMA_CHANNEL:
1359 printf("(DMA channel)\n");
1360 break;
1361 case ACPI_CSRT_DMA_CONTROLLER:
1362 printf("(DMA controller)\n");
1363 break;
1364 default:
1365 unknownsubytpe = true;
1366 break;
1367 }
1368 break;
1369 case 0x0004: /* XXX Platform Security */
1370 printf("Platform Security");
1371 switch (desc->Subtype) {
1372 case 0x0001:
1373 printf("\n");
1374 /* Platform Security */
1375 break;
1376 default:
1377 unknownsubytpe = true;
1378 break;
1379 }
1380 break;
1381 default:
1382 printf("Unknown (%hx)\n", desc->Type);
1383 break;
1384 }
1385 if (unknownsubytpe)
1386 printf("(unknown subtype(%hx))\n", desc->Subtype);
1387
1388 printf("\tUID=0x%08x\n", desc->Uid);
1389 printf("\tVendor defined info ");
1390 acpi_dump_bytes((uint8_t *)(desc + 1),
1391 desc->Length - sizeof(ACPI_CSRT_DESCRIPTOR), 1);
1392
1393 /* Next */
1394 desc = (ACPI_CSRT_DESCRIPTOR *)((vaddr_t)desc + desc->Length);
1395 }
1396 }
1397
1398 static void
1399 acpi_handle_csrt(ACPI_TABLE_HEADER *sdp)
1400 {
1401 ACPI_CSRT_GROUP *grp;
1402 uint totallen = sdp->Length;
1403
1404 printf(BEGIN_COMMENT);
1405 acpi_print_sdt(sdp);
1406 grp = (ACPI_CSRT_GROUP *)(sdp + 1);
1407
1408 while (grp < (ACPI_CSRT_GROUP *)((vaddr_t)sdp + totallen)) {
1409 printf("\n");
1410 acpi_print_csrt_resource_group(grp);
1411
1412 /* Next */
1413 grp = (ACPI_CSRT_GROUP *)((vaddr_t)grp + grp->Length);
1414 }
1415
1416 printf(END_COMMENT);
1417 }
1418
1419 static void
1420 acpi_handle_dbgp(ACPI_TABLE_HEADER *sdp)
1421 {
1422 ACPI_TABLE_DBGP *dbgp;
1423
1424 printf(BEGIN_COMMENT);
1425 acpi_print_sdt(sdp);
1426 dbgp = (ACPI_TABLE_DBGP *)sdp;
1427 printf("\tType={");
1428 switch (dbgp->Type) {
1429 case 0:
1430 printf("full 16550");
1431 break;
1432 case 1:
1433 printf("subset of 16550");
1434 break;
1435 }
1436 printf("}\n");
1437 printf("\tDebugPort=");
1438 acpi_print_gas(&dbgp->DebugPort);
1439 printf("\n");
1440 printf(END_COMMENT);
1441 }
1442
1443 /* This function is used by DBG2 and SPCR. */
1444 static void
1445 acpi_print_dbg2_serial_subtype(uint16_t subtype)
1446 {
1447
1448 switch (subtype) {
1449 case ACPI_DBG2_16550_COMPATIBLE:
1450 printf("Fully 16550 compatible\n");
1451 break;
1452 case ACPI_DBG2_16550_SUBSET:
1453 printf("16550 subset with DBGP Rev. 1\n");
1454 break;
1455 case ACPI_DBG2_ARM_PL011:
1456 printf("ARM PL011\n");
1457 break;
1458 case ACPI_DBG2_ARM_SBSA_32BIT:
1459 printf("ARM SBSA 32bit only\n");
1460 break;
1461 case ACPI_DBG2_ARM_SBSA_GENERIC:
1462 printf("ARM SBSA Generic\n");
1463 break;
1464 case ACPI_DBG2_ARM_DCC:
1465 printf("ARM DCC\n");
1466 break;
1467 case ACPI_DBG2_BCM2835:
1468 printf("BCM2835\n");
1469 break;
1470 default:
1471 printf("reserved (%04hx)\n", subtype);
1472 break;
1473 }
1474 }
1475
1476 static void
1477 acpi_print_dbg2_device(ACPI_DBG2_DEVICE *dev)
1478 {
1479
1480 printf("\t\tRevision=%u\n", dev->Revision);
1481 printf("\t\tLength=%u\n", dev->Length);
1482 printf("\t\tRegisterCount=%u\n", dev->RegisterCount);
1483
1484 printf("\t\tNamepath=");
1485 acpi_print_string((char *)((vaddr_t)dev + dev->NamepathOffset),
1486 dev->NamepathLength);
1487 printf("\n");
1488
1489 if (dev->OemDataLength) {
1490 printf("\t\tOemDataLength=%u\n", dev->OemDataLength);
1491 printf("\t\tOemDataOffset=%u\n", dev->OemDataOffset);
1492 /* XXX need dump */
1493 }
1494
1495 printf("\t\tPortType=");
1496 switch (dev->PortType) {
1497 case ACPI_DBG2_SERIAL_PORT:
1498 printf("Serial\n" "\t\tPortSubtype=");
1499 acpi_print_dbg2_serial_subtype(dev->PortSubtype);
1500 break;
1501 case ACPI_DBG2_1394_PORT:
1502 printf("IEEE1394\n" "\t\tPortSubtype=");
1503 if (dev->PortSubtype == ACPI_DBG2_1394_STANDARD)
1504 printf("Standard\n");
1505 else
1506 printf("reserved (%04hx)\n", dev->PortSubtype);
1507 break;
1508 case ACPI_DBG2_USB_PORT:
1509 printf("USB\n" "\t\tPortSubtype=");
1510 switch (dev->PortSubtype) {
1511 case ACPI_DBG2_USB_XHCI:
1512 printf("XHCIn");
1513 break;
1514 case ACPI_DBG2_USB_EHCI:
1515 printf("EHCI\n");
1516 break;
1517 default:
1518 printf("reserved (%04hx)\n", dev->PortSubtype);
1519 break;
1520 }
1521 break;
1522 case ACPI_DBG2_NET_PORT:
1523 printf("Net\n" "\t\tPciVendorID=%04x\n", dev->PortSubtype);
1524 break;
1525 default:
1526 printf("reserved (%04hx)\n", dev->PortType);
1527 printf("\t\tPortSubtype=reserved (%04hx)\n", dev->PortSubtype);
1528 break;
1529 }
1530
1531 printf("\t\tBaseAddressOffset=0x%04x\n", dev->BaseAddressOffset);
1532 printf("\t\tAddressSizeOffset=0x%04x\n", dev->AddressSizeOffset);
1533 }
1534
1535 static void
1536 acpi_handle_dbg2(ACPI_TABLE_HEADER *sdp)
1537 {
1538 ACPI_TABLE_DBG2 *dbg2;
1539 ACPI_DBG2_DEVICE *device;
1540 unsigned int i;
1541
1542 printf(BEGIN_COMMENT);
1543 acpi_print_sdt(sdp);
1544 dbg2 = (ACPI_TABLE_DBG2 *)sdp;
1545
1546 printf("\tCount=%u\n", dbg2->InfoCount);
1547 device = (ACPI_DBG2_DEVICE *)((vaddr_t)sdp + dbg2->InfoOffset);
1548 for (i = 0; i < dbg2->InfoCount; i++) {
1549 printf("\tDevice %u={\n", i);
1550 acpi_print_dbg2_device(device);
1551 printf("\t}\n");
1552 device++;
1553 }
1554
1555 printf(END_COMMENT);
1556 }
1557
1558 static void
1559 acpi_print_einj_action(ACPI_WHEA_HEADER *whea)
1560 {
1561 printf("\tACTION={");
1562 switch (whea->Action) {
1563 case ACPI_EINJ_BEGIN_OPERATION:
1564 printf("Begin Operation");
1565 break;
1566 case ACPI_EINJ_GET_TRIGGER_TABLE:
1567 printf("Get Trigger Table");
1568 break;
1569 case ACPI_EINJ_SET_ERROR_TYPE:
1570 printf("Set Error Type");
1571 break;
1572 case ACPI_EINJ_GET_ERROR_TYPE:
1573 printf("Get Error Type");
1574 break;
1575 case ACPI_EINJ_END_OPERATION:
1576 printf("End Operation");
1577 break;
1578 case ACPI_EINJ_EXECUTE_OPERATION:
1579 printf("Execute Operation");
1580 break;
1581 case ACPI_EINJ_CHECK_BUSY_STATUS:
1582 printf("Check Busy Status");
1583 break;
1584 case ACPI_EINJ_GET_COMMAND_STATUS:
1585 printf("Get Command Status");
1586 break;
1587 case ACPI_EINJ_SET_ERROR_TYPE_WITH_ADDRESS:
1588 printf("Set Error Type With Address");
1589 break;
1590 case ACPI_EINJ_GET_EXECUTE_TIMINGS:
1591 printf("Get Execute Operation Timings");
1592 break;
1593 case ACPI_EINJ_ACTION_RESERVED:
1594 printf("Preserved");
1595 break;
1596 case ACPI_EINJ_TRIGGER_ERROR:
1597 printf("Trigger Error");
1598 break;
1599 default:
1600 printf("%d", whea->Action);
1601 break;
1602 }
1603 printf("}\n");
1604 }
1605
1606 static void
1607 acpi_print_einj_instruction(ACPI_WHEA_HEADER *whea)
1608 {
1609 uint32_t ins = whea->Instruction;
1610
1611 printf("\tINSTRUCTION={");
1612 switch (ins) {
1613 case ACPI_EINJ_READ_REGISTER:
1614 printf("Read Register");
1615 break;
1616 case ACPI_EINJ_READ_REGISTER_VALUE:
1617 printf("Read Register Value");
1618 break;
1619 case ACPI_EINJ_WRITE_REGISTER:
1620 printf("Write Register");
1621 break;
1622 case ACPI_EINJ_WRITE_REGISTER_VALUE:
1623 printf("Write Register Value");
1624 break;
1625 case ACPI_EINJ_NOOP:
1626 printf("Noop");
1627 break;
1628 case ACPI_EINJ_INSTRUCTION_RESERVED:
1629 printf("Reserved");
1630 break;
1631 default:
1632 printf("%d", ins);
1633 break;
1634 }
1635 printf("}\n");
1636 }
1637
1638 static void
1639 acpi_print_einj_flags(ACPI_WHEA_HEADER *whea)
1640 {
1641 uint32_t flags = whea->Flags;
1642
1643 printf("\tFLAGS={");
1644 if (flags & ACPI_EINJ_PRESERVE)
1645 printf("PRESERVED");
1646 printf("}\n");
1647 }
1648
1649 static void
1650 acpi_handle_einj(ACPI_TABLE_HEADER *sdp)
1651 {
1652 ACPI_TABLE_EINJ *einj;
1653 ACPI_EINJ_ENTRY *einj_entry;
1654 uint32_t einj_pos;
1655 u_int i;
1656
1657 printf(BEGIN_COMMENT);
1658 acpi_print_sdt(sdp);
1659 einj = (ACPI_TABLE_EINJ *)sdp;
1660
1661 printf("\tHeader Length=%d\n", einj->HeaderLength);
1662 printf("\tFlags=0x%x\n", einj->Flags);
1663 printf("\tEntries=%d\n", einj->Entries);
1664
1665 einj_pos = sizeof(ACPI_TABLE_EINJ);
1666 for (i = 0; i < einj->Entries; i++) {
1667 einj_entry = (ACPI_EINJ_ENTRY *)((char *)einj + einj_pos);
1668 acpi_print_whea(&einj_entry->WheaHeader,
1669 acpi_print_einj_action, acpi_print_einj_instruction,
1670 acpi_print_einj_flags);
1671 einj_pos += sizeof(ACPI_EINJ_ENTRY);
1672 }
1673 printf(END_COMMENT);
1674 }
1675
1676 static void
1677 acpi_print_erst_action(ACPI_WHEA_HEADER *whea)
1678 {
1679 printf("\tACTION={");
1680 switch (whea->Action) {
1681 case ACPI_ERST_BEGIN_WRITE:
1682 printf("Begin Write");
1683 break;
1684 case ACPI_ERST_BEGIN_READ:
1685 printf("Begin Read");
1686 break;
1687 case ACPI_ERST_BEGIN_CLEAR:
1688 printf("Begin Clear");
1689 break;
1690 case ACPI_ERST_END:
1691 printf("End");
1692 break;
1693 case ACPI_ERST_SET_RECORD_OFFSET:
1694 printf("Set Record Offset");
1695 break;
1696 case ACPI_ERST_EXECUTE_OPERATION:
1697 printf("Execute Operation");
1698 break;
1699 case ACPI_ERST_CHECK_BUSY_STATUS:
1700 printf("Check Busy Status");
1701 break;
1702 case ACPI_ERST_GET_COMMAND_STATUS:
1703 printf("Get Command Status");
1704 break;
1705 case ACPI_ERST_GET_RECORD_ID:
1706 printf("Get Record ID");
1707 break;
1708 case ACPI_ERST_SET_RECORD_ID:
1709 printf("Set Record ID");
1710 break;
1711 case ACPI_ERST_GET_RECORD_COUNT:
1712 printf("Get Record Count");
1713 break;
1714 case ACPI_ERST_BEGIN_DUMMY_WRIITE:
1715 printf("Begin Dummy Write");
1716 break;
1717 case ACPI_ERST_NOT_USED:
1718 printf("Unused");
1719 break;
1720 case ACPI_ERST_GET_ERROR_RANGE:
1721 printf("Get Error Range");
1722 break;
1723 case ACPI_ERST_GET_ERROR_LENGTH:
1724 printf("Get Error Length");
1725 break;
1726 case ACPI_ERST_GET_ERROR_ATTRIBUTES:
1727 printf("Get Error Attributes");
1728 break;
1729 case ACPI_ERST_EXECUTE_TIMINGS:
1730 printf("Execute Operation Timings");
1731 break;
1732 case ACPI_ERST_ACTION_RESERVED:
1733 printf("Reserved");
1734 break;
1735 default:
1736 printf("%d", whea->Action);
1737 break;
1738 }
1739 printf("}\n");
1740 }
1741
1742 static void
1743 acpi_print_erst_instruction(ACPI_WHEA_HEADER *whea)
1744 {
1745 printf("\tINSTRUCTION={");
1746 switch (whea->Instruction) {
1747 case ACPI_ERST_READ_REGISTER:
1748 printf("Read Register");
1749 break;
1750 case ACPI_ERST_READ_REGISTER_VALUE:
1751 printf("Read Register Value");
1752 break;
1753 case ACPI_ERST_WRITE_REGISTER:
1754 printf("Write Register");
1755 break;
1756 case ACPI_ERST_WRITE_REGISTER_VALUE:
1757 printf("Write Register Value");
1758 break;
1759 case ACPI_ERST_NOOP:
1760 printf("Noop");
1761 break;
1762 case ACPI_ERST_LOAD_VAR1:
1763 printf("Load Var1");
1764 break;
1765 case ACPI_ERST_LOAD_VAR2:
1766 printf("Load Var2");
1767 break;
1768 case ACPI_ERST_STORE_VAR1:
1769 printf("Store Var1");
1770 break;
1771 case ACPI_ERST_ADD:
1772 printf("Add");
1773 break;
1774 case ACPI_ERST_SUBTRACT:
1775 printf("Subtract");
1776 break;
1777 case ACPI_ERST_ADD_VALUE:
1778 printf("Add Value");
1779 break;
1780 case ACPI_ERST_SUBTRACT_VALUE:
1781 printf("Subtract Value");
1782 break;
1783 case ACPI_ERST_STALL:
1784 printf("Stall");
1785 break;
1786 case ACPI_ERST_STALL_WHILE_TRUE:
1787 printf("Stall While True");
1788 break;
1789 case ACPI_ERST_SKIP_NEXT_IF_TRUE:
1790 printf("Skip Next If True");
1791 break;
1792 case ACPI_ERST_GOTO:
1793 printf("Goto");
1794 break;
1795 case ACPI_ERST_SET_SRC_ADDRESS_BASE:
1796 printf("Set Src Address Base");
1797 break;
1798 case ACPI_ERST_SET_DST_ADDRESS_BASE:
1799 printf("Set Dst Address Base");
1800 break;
1801 case ACPI_ERST_MOVE_DATA:
1802 printf("Move Data");
1803 break;
1804 case ACPI_ERST_INSTRUCTION_RESERVED:
1805 printf("Reserved");
1806 break;
1807 default:
1808 printf("%d (reserved)", whea->Instruction);
1809 break;
1810 }
1811 printf("}\n");
1812 }
1813
1814 static void
1815 acpi_print_erst_flags(ACPI_WHEA_HEADER *whea)
1816 {
1817 uint32_t flags = whea->Flags;
1818
1819 printf("\tFLAGS={");
1820 if (flags & ACPI_ERST_PRESERVE)
1821 printf("PRESERVED");
1822 printf("}\n");
1823 }
1824
1825 static void
1826 acpi_handle_erst(ACPI_TABLE_HEADER *sdp)
1827 {
1828 ACPI_TABLE_ERST *erst;
1829 ACPI_ERST_ENTRY *erst_entry;
1830 uint32_t erst_pos;
1831 u_int i;
1832
1833 printf(BEGIN_COMMENT);
1834 acpi_print_sdt(sdp);
1835 erst = (ACPI_TABLE_ERST *)sdp;
1836
1837 printf("\tHeader Length=%d\n", erst->HeaderLength);
1838 printf("\tEntries=%d\n", erst->Entries);
1839
1840 erst_pos = sizeof(ACPI_TABLE_ERST);
1841 for (i = 0; i < erst->Entries; i++) {
1842 erst_entry = (ACPI_ERST_ENTRY *)((char *)erst + erst_pos);
1843 acpi_print_whea(&erst_entry->WheaHeader,
1844 acpi_print_erst_action, acpi_print_erst_instruction,
1845 acpi_print_erst_flags);
1846 erst_pos += sizeof(ACPI_ERST_ENTRY);
1847 }
1848 printf(END_COMMENT);
1849 }
1850
1851 static void
1852 acpi_print_gtd_timer(const char *name, uint32_t interrupt, uint32_t flags)
1853 {
1854
1855 printf("\t%s Timer GSIV=%d\n", name, interrupt);
1856 printf("\t%s Flags={Mode=", name);
1857 if (flags & ACPI_GTDT_INTERRUPT_MODE)
1858 printf("edge");
1859 else
1860 printf("level");
1861 printf(", Polarity=");
1862 if (flags & ACPI_GTDT_INTERRUPT_POLARITY)
1863 printf("active-lo");
1864 else
1865 printf("active-hi");
1866 if (flags & ACPI_GTDT_ALWAYS_ON)
1867 printf(", always-on");
1868 printf("}\n");
1869 }
1870
1871 static void
1872 acpi_print_gtd_block_timer_flags(const char *name, uint32_t interrupt,
1873 uint32_t flags)
1874 {
1875
1876 printf("\t\t%s Timer GSIV=%d\n", name, interrupt);
1877 printf("\t\t%s Timer Flags={Mode=", name);
1878 if (flags & ACPI_GTDT_GT_IRQ_MODE)
1879 printf("Secure");
1880 else
1881 printf("Non-Secure");
1882 printf(", Polarity=");
1883 if (flags & ACPI_GTDT_GT_IRQ_POLARITY)
1884 printf("active-lo");
1885 else
1886 printf("active-hi");
1887 printf("}\n");
1888 }
1889
1890 static void
1891 acpi_print_gtblock(ACPI_GTDT_TIMER_BLOCK *gtblock)
1892 {
1893 ACPI_GTDT_TIMER_ENTRY *entry;
1894 unsigned int i;
1895
1896 printf("\tType=GT Block\n");
1897 printf("\tLength=%d\n", gtblock->Header.Length);
1898 /* XXX might not 8byte aligned */
1899 printf("\tBlockAddress=%016jx\n",
1900 (uintmax_t)gtblock->BlockAddress);
1901
1902 printf("\tGT Block Timer Count=%d\n", gtblock->TimerCount);
1903 entry = (ACPI_GTDT_TIMER_ENTRY *)((vaddr_t)gtblock
1904 + gtblock->TimerOffset);
1905 for (i = 0; i < gtblock->TimerCount; i++) {
1906 printf("\n");
1907 if (entry >= (ACPI_GTDT_TIMER_ENTRY *)((vaddr_t)gtblock
1908 + gtblock->Header.Length)) {
1909 printf("\\ttWrong Timer entry\n");
1910 break;
1911 }
1912 printf("\t\tFrame Number=%d\n", entry->FrameNumber);
1913 /* XXX might not 8byte aligned */
1914 printf("\t\tBaseAddress=%016jx\n",
1915 (uintmax_t)entry->BaseAddress);
1916 /* XXX might not 8byte aligned */
1917 printf("\t\tEl0BaseAddress=%016jx\n",
1918 (uintmax_t)entry->El0BaseAddress);
1919
1920 acpi_print_gtd_block_timer_flags("Physical",
1921 entry->TimerInterrupt, entry->TimerFlags);
1922 acpi_print_gtd_block_timer_flags("Virtual",
1923 entry->VirtualTimerInterrupt, entry->VirtualTimerFlags);
1924
1925 printf("\t\tCommon Flags={Mode=");
1926 if (entry->CommonFlags & ACPI_GTDT_GT_IS_SECURE_TIMER)
1927 printf("Secure");
1928 else
1929 printf("Non-Secure");
1930 if (entry->CommonFlags & ACPI_GTDT_GT_ALWAYS_ON)
1931 printf(", always-on");
1932 printf("}\n");
1933
1934 entry++;
1935 }
1936 }
1937
1938 static void
1939 acpi_print_sbsa_watchdog(ACPI_GTDT_WATCHDOG *wdog)
1940 {
1941
1942 printf("\tType=Watchdog GT\n");
1943 printf("\tLength=%d\n", wdog->Header.Length);
1944 /* XXX might not 8byte aligned */
1945 printf("\tRefreshFrameAddress=%016jx\n",
1946 (uintmax_t)wdog->RefreshFrameAddress);
1947 /* XXX might not 8byte aligned */
1948 printf("\tControlFrameAddress=%016jx\n",
1949 (uintmax_t)wdog->ControlFrameAddress);
1950 printf("\tGSIV=%d\n", wdog->TimerInterrupt);
1951
1952 printf("\tFlags={Mode=");
1953 if (wdog->TimerFlags & ACPI_GTDT_WATCHDOG_IRQ_MODE)
1954 printf("edge");
1955 else
1956 printf("level");
1957 printf(", Polarity=");
1958 if (wdog->TimerFlags & ACPI_GTDT_WATCHDOG_IRQ_POLARITY)
1959 printf("active-lo");
1960 else
1961 printf("active-hi");
1962 if (wdog->TimerFlags & ACPI_GTDT_WATCHDOG_SECURE)
1963 printf(", Secure");
1964 else
1965 printf(", Non-Secure");
1966 printf("}\n");
1967 }
1968
1969 static void
1970 acpi_handle_gtdt(ACPI_TABLE_HEADER *sdp)
1971 {
1972 ACPI_TABLE_GTDT *gtdt;
1973 ACPI_GTDT_HEADER *hdr;
1974 u_int i;
1975
1976 printf(BEGIN_COMMENT);
1977 acpi_print_sdt(sdp);
1978 gtdt = (ACPI_TABLE_GTDT *)sdp;
1979
1980 printf("\tCounterBlockAddresss=%016jx\n",
1981 (uintmax_t)gtdt->CounterBlockAddresss); /* XXX not 8byte aligned */
1982 printf("\tCounterReadBlockAddress=%016jx\n",
1983 (uintmax_t)gtdt->CounterReadBlockAddress);
1984
1985 #define PRINTTIMER(gtdt, name) acpi_print_gtd_timer( \
1986 #name, (gtdt)-> name## Interrupt, \
1987 (gtdt)-> name ## Flags)
1988
1989 PRINTTIMER(gtdt, SecureEl1);
1990 PRINTTIMER(gtdt, NonSecureEl1);
1991 PRINTTIMER(gtdt, VirtualTimer);
1992 PRINTTIMER(gtdt, NonSecureEl2);
1993
1994 #undef PRINTTIMER
1995
1996 printf("\tPlatform Timer Count=%d\n", gtdt->PlatformTimerCount);
1997
1998 hdr = (ACPI_GTDT_HEADER *)((vaddr_t)sdp + gtdt->PlatformTimerOffset);
1999 for (i = 0; i < gtdt->PlatformTimerCount; i++) {
2000 printf("\n");
2001 if (hdr >= (ACPI_GTDT_HEADER *)((vaddr_t)sdp + sdp->Length)) {
2002 printf("\tWrong GTDT header"
2003 "(type = %hhu, length = %hu)\n",
2004 hdr->Type, hdr->Length);
2005 break;
2006 }
2007
2008 switch (hdr->Type) {
2009 case ACPI_GTDT_TYPE_TIMER_BLOCK:
2010 acpi_print_gtblock((ACPI_GTDT_TIMER_BLOCK *)hdr);
2011 break;
2012 case ACPI_GTDT_TYPE_WATCHDOG:
2013 acpi_print_sbsa_watchdog((ACPI_GTDT_WATCHDOG *)hdr);
2014 break;
2015 default:
2016 printf("\tUnknown Platform Timer Type"
2017 "(type = %hhu, length = %hu)\n",
2018 hdr->Type, hdr->Length);
2019 break;
2020 }
2021 /* Next */
2022 hdr = (ACPI_GTDT_HEADER *)((vaddr_t)hdr + hdr->Length);
2023 }
2024 printf(END_COMMENT);
2025 }
2026
2027 static void
2028 acpi_handle_madt(ACPI_TABLE_HEADER *sdp)
2029 {
2030 ACPI_TABLE_MADT *madt;
2031
2032 printf(BEGIN_COMMENT);
2033 acpi_print_sdt(sdp);
2034 madt = (ACPI_TABLE_MADT *)sdp;
2035 printf("\tLocal APIC ADDR=0x%08x\n", madt->Address);
2036 printf("\tFlags={");
2037 if (madt->Flags & ACPI_MADT_PCAT_COMPAT)
2038 printf("PC-AT");
2039 printf("}\n");
2040 acpi_walk_subtables(sdp, (madt + 1), acpi_print_madt);
2041 printf(END_COMMENT);
2042 }
2043
2044 static void
2045 acpi_handle_hpet(ACPI_TABLE_HEADER *sdp)
2046 {
2047 ACPI_TABLE_HPET *hpet;
2048
2049 printf(BEGIN_COMMENT);
2050 acpi_print_sdt(sdp);
2051 hpet = (ACPI_TABLE_HPET *)sdp;
2052 printf("\tHPET Number=%d\n", hpet->Sequence);
2053 printf("\tADDR=");
2054 acpi_print_gas(&hpet->Address);
2055 printf("\n\tHW Rev=0x%x\n", hpet->Id & ACPI_HPET_ID_HARDWARE_REV_ID);
2056 printf("\tComparators=%d\n", (hpet->Id & ACPI_HPET_ID_COMPARATORS) >>
2057 8);
2058 printf("\tCounter Size=%d\n", hpet->Id & ACPI_HPET_ID_COUNT_SIZE_CAP ?
2059 1 : 0);
2060 printf("\tLegacy IRQ routing capable={");
2061 if (hpet->Id & ACPI_HPET_ID_LEGACY_CAPABLE)
2062 printf("TRUE}\n");
2063 else
2064 printf("FALSE}\n");
2065 printf("\tPCI Vendor ID=0x%04x\n", hpet->Id >> 16);
2066 printf("\tMinimal Tick=%d\n", hpet->MinimumTick);
2067 printf("\tFlags=0x%02x\n", hpet->Flags);
2068 printf(END_COMMENT);
2069 }
2070
2071 /*
2072 * IORT
2073 * I/O Remapping Table
2074 */
2075
2076 static void acpi_print_iort_its_group(ACPI_IORT_NODE *);
2077 static void acpi_print_iort_named_component(ACPI_IORT_NODE *);
2078 static void acpi_print_iort_root_complex(ACPI_IORT_NODE *);
2079 static void acpi_print_iort_smmuv1v2(ACPI_IORT_NODE *);
2080 static void acpi_print_iort_smmuv3(ACPI_IORT_NODE *);
2081
2082 struct iort_node_list {
2083 uint8_t Type;
2084 const char *gname;
2085 void (*func)(ACPI_IORT_NODE *);
2086 } iort_node_list [] = {
2087 #define NDMAC(name) ACPI_IORT_NODE_## name
2088 #define PRFN(name) acpi_print_iort_## name
2089 { NDMAC(ITS_GROUP), "ITS group", PRFN(its_group)},
2090 { NDMAC(NAMED_COMPONENT), "Named component", PRFN(named_component)},
2091 { NDMAC(PCI_ROOT_COMPLEX), "Root complex", PRFN(root_complex)},
2092 { NDMAC(SMMU), "SMMUv1 or v2", PRFN(smmuv1v2)},
2093 { NDMAC(SMMU_V3), "SMMUv3", PRFN(smmuv3)},
2094 { 255, NULL, NULL},
2095 #undef NDMAC
2096 #undef PRFN
2097 };
2098
2099 static void
2100 acpi_print_iort_memory_access(ACPI_IORT_MEMORY_ACCESS *memacc)
2101 {
2102
2103 printf("\tMemory Access={\n");
2104 printf("\t\tCacheCoherency=");
2105 switch (memacc->CacheCoherency) {
2106 case ACPI_IORT_NODE_COHERENT:
2107 printf("Fully coherent\n");
2108 break;
2109 case ACPI_IORT_NODE_NOT_COHERENT:
2110 printf("Not coherent\n");
2111 break;
2112 default:
2113 printf("resrved (%u)\n", memacc->CacheCoherency);
2114 break;
2115 }
2116 printf("\t\tAllocation Hints=");
2117 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_HT_## flag, #flag)
2118 PRINTFLAG(memacc->Hints, TRANSIENT);
2119 PRINTFLAG(memacc->Hints, WRITE);
2120 PRINTFLAG(memacc->Hints, READ);
2121 PRINTFLAG(memacc->Hints, OVERRIDE);
2122 PRINTFLAG_END();
2123 #undef PRINTFLAG
2124 printf("\t\tMemory Access Flags=");
2125 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_MF_## flag, #flag)
2126 PRINTFLAG(memacc->MemoryFlags, COHERENCY);
2127 PRINTFLAG(memacc->MemoryFlags, ATTRIBUTES);
2128 PRINTFLAG_END();
2129 #undef PRINTFLAG
2130 printf("\t}\n");
2131 }
2132
2133 static void
2134 acpi_print_iort_its_group(ACPI_IORT_NODE *node)
2135 {
2136 ACPI_IORT_ITS_GROUP *itsg = (ACPI_IORT_ITS_GROUP *)node->NodeData;
2137 uint32_t *idp;
2138 unsigned int i;
2139
2140 idp = itsg->Identifiers;
2141 for (i = 0; i < itsg->ItsCount; i++)
2142 printf("\tGIC ITS ID=%d\n", idp[i]);
2143 }
2144
2145 static void
2146 acpi_print_iort_named_component(ACPI_IORT_NODE *node)
2147 {
2148 ACPI_IORT_NAMED_COMPONENT *ncomp
2149 = (ACPI_IORT_NAMED_COMPONENT *)node->NodeData;
2150
2151 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_NC_## flag, #flag)
2152 printf("\tNode Flags={PASID_BITS=%u",
2153 (ncomp->NodeFlags & ACPI_IORT_NC_PASID_BITS) >> 1);
2154 pf_sep = ',';
2155 PRINTFLAG(ncomp->NodeFlags, STALL_SUPPORTED);
2156 PRINTFLAG_END();
2157 #undef PRINTFLAG
2158 acpi_print_iort_memory_access(
2159 (ACPI_IORT_MEMORY_ACCESS *)&ncomp->MemoryProperties);
2160 printf("\tMemory address size=%hhu\n", ncomp->MemoryAddressLimit);
2161 printf("\tDevice object Name=%s\n", ncomp->DeviceName);
2162 }
2163
2164 static void
2165 acpi_print_iort_root_complex(ACPI_IORT_NODE *node)
2166 {
2167 ACPI_IORT_ROOT_COMPLEX *rcmp
2168 = (ACPI_IORT_ROOT_COMPLEX *)node->NodeData;
2169
2170 acpi_print_iort_memory_access(
2171 (ACPI_IORT_MEMORY_ACCESS *)&rcmp->MemoryProperties);
2172 printf("\tATS Attribute=%s\n",
2173 (rcmp->AtsAttribute & ACPI_IORT_ATS_SUPPORTED)
2174 ? "supported" : "not supported");
2175 printf("\tPCI Segment=%u\n", rcmp->PciSegmentNumber);
2176 printf("\tMemory address size limit=%hhu\n", rcmp->MemoryAddressLimit);
2177 }
2178
2179 static void
2180 acpi_print_iort_smmuv1v2_intflags(uint32_t flags)
2181 {
2182
2183 printf("{Mode=");
2184 if (flags & 0x01)
2185 printf("edge");
2186 else
2187 printf("level");
2188 printf("}\n");
2189 }
2190
2191 static void
2192 acpi_print_iort_smmuv1v2(ACPI_IORT_NODE *node)
2193 {
2194 ACPI_IORT_SMMU *smmu = (ACPI_IORT_SMMU *)node->NodeData;
2195 ACPI_IORT_SMMU_GSI *gsi;
2196 uint64_t *iarray;
2197 unsigned int i;
2198
2199 printf("\tBase Address=%016jx\n", (uintmax_t)smmu->BaseAddress);
2200 printf("\tSpan=%016jx\n", (uintmax_t)smmu->Span);
2201 printf("\tModel=");
2202 switch (smmu->Model) {
2203 case ACPI_IORT_SMMU_V1:
2204 printf("Generic SMMUv1\n");
2205 break;
2206 case ACPI_IORT_SMMU_V2:
2207 printf("Generic SMMUv2\n");
2208 break;
2209 case ACPI_IORT_SMMU_CORELINK_MMU400:
2210 printf("Arm Corelink MMU-400\n");
2211 break;
2212 case ACPI_IORT_SMMU_CORELINK_MMU500:
2213 printf("Arm Corelink MMU-500\n");
2214 break;
2215 case ACPI_IORT_SMMU_CORELINK_MMU401:
2216 printf("Arm Corelink MMU-401\n");
2217 break;
2218 case ACPI_IORT_SMMU_CAVIUM_THUNDERX:
2219 printf("Cavium ThunderX SMMUv2\n");
2220 break;
2221 default:
2222 printf("reserved (%u)\n", smmu->Model);
2223 break;
2224 }
2225 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_SMMU_## flag, #flag)
2226 printf("\tFlags=");
2227 PRINTFLAG(smmu->Flags, DVM_SUPPORTED);
2228 PRINTFLAG(smmu->Flags, COHERENT_WALK);
2229 PRINTFLAG_END();
2230 #undef PRINTFLAG
2231
2232 gsi = (ACPI_IORT_SMMU_GSI *)((vaddr_t)node
2233 + smmu->GlobalInterruptOffset);
2234 printf("\tNSgIrpt=%u\n", gsi->NSgIrpt);
2235 printf("\tNSgIrptFlags=");
2236 acpi_print_iort_smmuv1v2_intflags(gsi->NSgIrptFlags);
2237 printf("\tNSgCfgIrpt=%u\n", gsi->NSgCfgIrpt);
2238 printf("\tNSgCfgIrptFlags=");
2239 acpi_print_iort_smmuv1v2_intflags(gsi->NSgCfgIrptFlags);
2240
2241 if (smmu->ContextInterruptCount != 0) {
2242 iarray = (uint64_t *)((vaddr_t)node
2243 + smmu->ContextInterruptOffset);
2244 printf("\tContext Interrupts={\n");
2245 for (i = 0; i < smmu->ContextInterruptCount; i++) {
2246 printf("\t\tGSIV=%u\n",
2247 (uint32_t)(iarray[i] & 0xffffffff));
2248 printf("\t\tFlags=%u\n", (uint32_t)(iarray[i] >> 32));
2249 }
2250 }
2251 if (smmu->PmuInterruptCount != 0) {
2252 iarray = (uint64_t *)((vaddr_t)node
2253 + smmu->PmuInterruptOffset);
2254 printf("\tPmu Interrupts={\n");
2255 for (i = 0; i < smmu->PmuInterruptCount; i++) {
2256 printf("\t\tGSIV=%u\n",
2257 (uint32_t)(iarray[i] & 0xffffffff));
2258 printf("\t\tFlags=%u\n", (uint32_t)(iarray[i] >> 32));
2259 }
2260 }
2261 }
2262
2263 static void
2264 acpi_print_iort_smmuv3(ACPI_IORT_NODE *node)
2265 {
2266 ACPI_IORT_SMMU_V3 *smmu = (ACPI_IORT_SMMU_V3 *)node->NodeData;
2267 uint8_t httuo;
2268
2269 printf("\tBase Address=%016jx\n", (uintmax_t)smmu->BaseAddress);
2270 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_SMMU_V3_## flag, \
2271 #flag)
2272 httuo = __SHIFTOUT(smmu->Flags, ACPI_IORT_SMMU_V3_HTTU_OVERRIDE);
2273 printf("\tFlags={HTTU Override=%hhx", httuo);
2274 pf_sep = ',';
2275 PRINTFLAG(smmu->Flags, HTTU_OVERRIDE);
2276 PRINTFLAG(smmu->Flags, COHACC_OVERRIDE);
2277 PRINTFLAG(smmu->Flags, PXM_VALID);
2278 PRINTFLAG_END();
2279 #undef PRINTFLAG
2280 printf("\tVATOS Address=%016jx\n", (uintmax_t)smmu->VatosAddress);
2281 printf("\tModel=");
2282 switch (smmu->Model) {
2283 case ACPI_IORT_SMMU_V3_GENERIC:
2284 printf("Generic SMMUv3\n");
2285 break;
2286 case ACPI_IORT_SMMU_V3_HISILICON_HI161X:
2287 printf("HiSilicon Hi161x SMMU-v3\n");
2288 break;
2289 case ACPI_IORT_SMMU_V3_CAVIUM_CN99XX:
2290 printf("Cavium CN99xx SMMU-v3\n");
2291 break;
2292 default:
2293 printf("reserved (%u)\n", smmu->Model);
2294 break;
2295 }
2296
2297 printf("\tEvent GSIV=%u\n", smmu->EventGsiv);
2298 printf("\tPRI GSIV=%u\n", smmu->PriGsiv);
2299 printf("\tGERR GSIV=%u\n", smmu->GerrGsiv);
2300 printf("\tSync GSIV=%u\n", smmu->SyncGsiv);
2301 printf("\tProximity domain=%u\n", smmu->Pxm);
2302
2303 /* XXX should we print the refered contents? */
2304 printf("\tDevice ID mapping index=%u\n", smmu->IdMappingIndex);
2305 }
2306
2307 static void
2308 acpi_print_iort_node(ACPI_IORT_NODE *node)
2309 {
2310 ACPI_IORT_ID_MAPPING *mapping;
2311 uint32_t offset;
2312 int datasize;
2313 bool dodump = false;
2314 struct iort_node_list *list;
2315 unsigned int i;
2316
2317 printf("\tLength=%hu\n", node->Length);
2318 printf("\tRevision=%hhu\n", node->Revision);
2319 printf("\tType=");
2320
2321 datasize = node->MappingOffset - offsetof(ACPI_IORT_NODE, NodeData);
2322 if (datasize != 0)
2323 dodump = true;
2324
2325 for (list = iort_node_list; list->gname != NULL; list++) {
2326 if (node->Type == list->Type) {
2327 printf("%s\n", list->gname);
2328 if (dodump)
2329 (*list->func)(node);
2330 break;
2331 }
2332 }
2333 if (list->gname == NULL)
2334 printf("reserved (0x%hhx)\n", node->Type);
2335
2336 printf("\tMappingCount=%u\n", node->MappingCount);
2337 if (node->MappingCount == 0)
2338 return;
2339
2340 offset = node->MappingOffset;
2341 printf("\tMapping offset=%u\n", offset);
2342 for (i = 0; i < node->MappingCount; i++) {
2343 mapping = (ACPI_IORT_ID_MAPPING *)((vaddr_t)node + offset);
2344 printf("\tMapping={\n");
2345 printf("\t\tInput base=%u\n", mapping->InputBase);
2346 printf("\t\tCount=%u\n", mapping->IdCount);
2347 printf("\t\tOutput base=%u\n", mapping->OutputBase);
2348 printf("\t\tOutput reference offset=%u\n",
2349 mapping->OutputReference);
2350 #define PRINTFLAG(var, flag) printflag((var), ACPI_IORT_ID_## flag, #flag)
2351 printf("\t\tFlags=");
2352 PRINTFLAG(mapping->Flags, SINGLE_MAPPING);
2353 PRINTFLAG_END();
2354 #undef PRINTFLAG
2355 printf("\t}\n");
2356 offset += sizeof(ACPI_IORT_ID_MAPPING);
2357 }
2358 }
2359
2360 static void
2361 acpi_handle_iort(ACPI_TABLE_HEADER *sdp)
2362 {
2363 ACPI_TABLE_IORT *iort;
2364 ACPI_IORT_NODE *node;
2365 unsigned int i;
2366
2367 printf(BEGIN_COMMENT);
2368 acpi_print_sdt(sdp);
2369 iort = (ACPI_TABLE_IORT *)sdp;
2370 printf("\tIORT Nodes=%u\n", iort->NodeCount);
2371 printf("\tNode offset=%u\n", iort->NodeOffset);
2372
2373 node = (ACPI_IORT_NODE *)((vaddr_t)iort + iort->NodeOffset);
2374 for (i = 0; i < iort->NodeCount; i++) {
2375 printf("\n");
2376 acpi_print_iort_node(node);
2377
2378 /* Next */
2379 node = (ACPI_IORT_NODE *)((vaddr_t)node + node->Length);
2380 }
2381
2382 printf(END_COMMENT);
2383 }
2384
2385 static void
2386 acpi_print_native_lpit(ACPI_LPIT_NATIVE *nl)
2387 {
2388 printf("\tEntryTrigger=");
2389 acpi_print_gas(&nl->EntryTrigger);
2390 printf("\n\tResidency=%u\n", nl->Residency);
2391 printf("\tLatency=%u\n", nl->Latency);
2392 if (nl->Header.Flags & ACPI_LPIT_NO_COUNTER)
2393 printf("\tResidencyCounter=Not Present");
2394 else {
2395 printf("\tResidencyCounter=");
2396 acpi_print_gas(&nl->ResidencyCounter);
2397 printf("\n");
2398 }
2399 if (nl->CounterFrequency)
2400 printf("\tCounterFrequency=%ju\n", nl->CounterFrequency);
2401 else
2402 printf("\tCounterFrequency=TSC\n");
2403 }
2404
2405 static void
2406 acpi_print_lpit(ACPI_LPIT_HEADER *lpit)
2407 {
2408 if (lpit->Type == ACPI_LPIT_TYPE_NATIVE_CSTATE)
2409 printf("\tType=ACPI_LPIT_TYPE_NATIVE_CSTATE\n");
2410 else
2411 warnx("unknown LPIT type %u", lpit->Type);
2412
2413 printf("\tLength=%u\n", lpit->Length);
2414 printf("\tUniqueId=0x%04x\n", lpit->UniqueId);
2415 #define PRINTFLAG(var, flag) printflag((var), ACPI_LPIT_## flag, #flag)
2416 printf("\tFlags=");
2417 PRINTFLAG(lpit->Flags, STATE_DISABLED);
2418 PRINTFLAG_END();
2419 #undef PRINTFLAG
2420
2421 if (lpit->Type == ACPI_LPIT_TYPE_NATIVE_CSTATE)
2422 return acpi_print_native_lpit((ACPI_LPIT_NATIVE *)lpit);
2423 }
2424
2425 static void
2426 acpi_walk_lpit(ACPI_TABLE_HEADER *table, void *first,
2427 void (*action)(ACPI_LPIT_HEADER *))
2428 {
2429 ACPI_LPIT_HEADER *subtable;
2430 char *end;
2431
2432 subtable = first;
2433 end = (char *)table + table->Length;
2434 while ((char *)subtable < end) {
2435 printf("\n");
2436 if (subtable->Length < sizeof(ACPI_LPIT_HEADER)) {
2437 warnx("invalid subtable length %u", subtable->Length);
2438 return;
2439 }
2440 action(subtable);
2441 subtable = (ACPI_LPIT_HEADER *)((char *)subtable +
2442 subtable->Length);
2443 }
2444 }
2445
2446 static void
2447 acpi_handle_lpit(ACPI_TABLE_HEADER *sdp)
2448 {
2449 ACPI_TABLE_LPIT *lpit;
2450
2451 printf(BEGIN_COMMENT);
2452 acpi_print_sdt(sdp);
2453 lpit = (ACPI_TABLE_LPIT *)sdp;
2454 acpi_walk_lpit(sdp, (lpit + 1), acpi_print_lpit);
2455
2456 printf(END_COMMENT);
2457 }
2458
2459 static void
2460 acpi_handle_msct(ACPI_TABLE_HEADER *sdp)
2461 {
2462 ACPI_TABLE_MSCT *msct;
2463 ACPI_MSCT_PROXIMITY *msctentry;
2464 uint32_t pos;
2465
2466 printf(BEGIN_COMMENT);
2467 acpi_print_sdt(sdp);
2468 msct = (ACPI_TABLE_MSCT *)sdp;
2469
2470 printf("\tProximity Offset=0x%x\n", msct->ProximityOffset);
2471 printf("\tMax Proximity Domains=%d\n", msct->MaxProximityDomains);
2472 printf("\tMax Clock Domains=%d\n", msct->MaxClockDomains);
2473 printf("\tMax Physical Address=0x%"PRIx64"\n", msct->MaxAddress);
2474
2475 pos = msct->ProximityOffset;
2476 while (pos < msct->Header.Length) {
2477 msctentry = (ACPI_MSCT_PROXIMITY *)((char *)msct + pos);
2478 pos += msctentry->Length;
2479
2480 printf("\n");
2481 printf("\tRevision=%d\n", msctentry->Revision);
2482 printf("\tLength=%d\n", msctentry->Length);
2483 printf("\tRange Start=%d\n", msctentry->RangeStart);
2484 printf("\tRange End=%d\n", msctentry->RangeEnd);
2485 printf("\tProcessor Capacity=%d\n",
2486 msctentry->ProcessorCapacity);
2487 printf("\tMemory Capacity=0x%"PRIx64" byte\n",
2488 msctentry->MemoryCapacity);
2489 }
2490
2491 printf(END_COMMENT);
2492 }
2493
2494 static void
2495 acpi_handle_ecdt(ACPI_TABLE_HEADER *sdp)
2496 {
2497 ACPI_TABLE_ECDT *ecdt;
2498
2499 printf(BEGIN_COMMENT);
2500 acpi_print_sdt(sdp);
2501 ecdt = (ACPI_TABLE_ECDT *)sdp;
2502 printf("\tEC_CONTROL=");
2503 acpi_print_gas(&ecdt->Control);
2504 printf("\n\tEC_DATA=");
2505 acpi_print_gas(&ecdt->Data);
2506 printf("\n\tUID=%#x, ", ecdt->Uid);
2507 printf("GPE_BIT=%#x\n", ecdt->Gpe);
2508 printf("\tEC_ID=%s\n", ecdt->Id);
2509 printf(END_COMMENT);
2510 }
2511
2512 static void
2513 acpi_handle_mcfg(ACPI_TABLE_HEADER *sdp)
2514 {
2515 ACPI_TABLE_MCFG *mcfg;
2516 ACPI_MCFG_ALLOCATION *alloc;
2517 u_int i, entries;
2518
2519 printf(BEGIN_COMMENT);
2520 acpi_print_sdt(sdp);
2521 mcfg = (ACPI_TABLE_MCFG *)sdp;
2522 entries = (sdp->Length - sizeof(ACPI_TABLE_MCFG)) /
2523 sizeof(ACPI_MCFG_ALLOCATION);
2524 alloc = (ACPI_MCFG_ALLOCATION *)(mcfg + 1);
2525 for (i = 0; i < entries; i++, alloc++) {
2526 printf("\n");
2527 printf("\tBase Address=0x%016jx\n", (uintmax_t)alloc->Address);
2528 printf("\tSegment Group=0x%04x\n", alloc->PciSegment);
2529 printf("\tStart Bus=%d\n", alloc->StartBusNumber);
2530 printf("\tEnd Bus=%d\n", alloc->EndBusNumber);
2531 }
2532 printf(END_COMMENT);
2533 }
2534
2535 static void
2536 acpi_print_pcct_subspace(ACPI_PCCT_SUBSPACE *subspace)
2537 {
2538 printf("\tType=Generic Subspace\n");
2539 printf("\tBase Address=0x%016jx\n", subspace->BaseAddress);
2540 printf("\tLength=%jd\n", subspace->Length);
2541 printf("\tDoorbell Address=");
2542 acpi_print_gas(&subspace->DoorbellRegister);
2543 printf("\n");
2544 printf("\tDoorbell Preserve=0x%016jx\n", subspace->PreserveMask);
2545 printf("\tDoorbell Write=0x%016jx\n", subspace->WriteMask);
2546 printf("\tLatency=%u us\n", subspace->Latency);
2547 printf("\tMax Access Rate=%u\n", subspace->MaxAccessRate);
2548 printf("\tMin Turnaround Time=%u us\n", subspace->MinTurnaroundTime);
2549 }
2550
2551 static void
2552 acpi_print_pcct_hw_reduced(ACPI_PCCT_HW_REDUCED *subspace)
2553 {
2554 printf("\tType=HW-reduced Subspace\n");
2555 printf("\tPlatform Interrupt=%u", subspace->PlatformInterrupt);
2556 if (subspace->Flags & ACPI_PCCT_INTERRUPT_POLARITY) {
2557 printf(", Edge triggered");
2558 } else {
2559 printf(", Level triggered");
2560 }
2561 if (subspace->Flags & ACPI_PCCT_INTERRUPT_MODE) {
2562 printf(", Active low");
2563 } else {
2564 printf(", Active high");
2565 }
2566 printf("\n");
2567 printf("\tBase Address=0x%016jx\n", subspace->BaseAddress);
2568 printf("\tLength=%jd\n", subspace->Length);
2569 printf("\tDoorbell Register=");
2570 acpi_print_gas(&subspace->DoorbellRegister);
2571 printf("\n");
2572 printf("\tDoorbell Preserve=0x%016jx\n", subspace->PreserveMask);
2573 printf("\tDoorbell Write=0x%016jx\n", subspace->WriteMask);
2574 printf("\tLatency=%u us\n", subspace->Latency);
2575 printf("\tMax Access Rate=%u\n", subspace->MaxAccessRate);
2576 printf("\tMin Turnaround Time=%u us\n", subspace->MinTurnaroundTime);
2577 }
2578
2579 static void
2580 acpi_print_pcct_hw_reduced_type2(ACPI_PCCT_HW_REDUCED_TYPE2 *subspace)
2581 {
2582 printf("\tType=HW-reduced Subspace Type 2\n");
2583 printf("\tPlatform Interrupt=%u", subspace->PlatformInterrupt);
2584 if (subspace->Flags & ACPI_PCCT_INTERRUPT_POLARITY) {
2585 printf(", Edge triggered");
2586 } else {
2587 printf(", Level triggered");
2588 }
2589 if (subspace->Flags & ACPI_PCCT_INTERRUPT_MODE) {
2590 printf(", Active low");
2591 } else {
2592 printf(", Active high");
2593 }
2594 printf("\n");
2595 printf("\tBase Address=0x%016jx\n", subspace->BaseAddress);
2596 printf("\tLength=%jd\n", subspace->Length);
2597 printf("\tDoorbell Register=");
2598 acpi_print_gas(&subspace->DoorbellRegister);
2599 printf("\n");
2600 printf("\tDoorbell Preserve=0x%016jx\n", subspace->PreserveMask);
2601 printf("\tDoorbell Write=0x%016jx\n", subspace->WriteMask);
2602 printf("\tLatency=%u us\n", subspace->Latency);
2603 printf("\tMax Access Rate=%u\n", subspace->MaxAccessRate);
2604 printf("\tMin Turnaround Time=%u us\n", subspace->MinTurnaroundTime);
2605 printf("\tPlatform Interrupt Ack Register=");
2606 acpi_print_gas(&subspace->PlatformAckRegister);
2607 printf("\n");
2608 printf("\tPlatform Interrupt Ack Preserve=0x%016jx\n", subspace->AckPreserveMask);
2609 printf("\tPlatform Interrupt Ack Write=0x%016jx\n", subspace->AckWriteMask);
2610 }
2611
2612 static void
2613 acpi_print_pcct_ext_pcc_master(ACPI_PCCT_EXT_PCC_MASTER *subspace)
2614 {
2615 printf("\tType=Extended PCC Master Subspace\n");
2616 printf("\tPlatform Interrupt=%u", subspace->PlatformInterrupt);
2617 if (subspace->Flags & ACPI_PCCT_INTERRUPT_POLARITY) {
2618 printf(", Edge triggered");
2619 } else {
2620 printf(", Level triggered");
2621 }
2622 if (subspace->Flags & ACPI_PCCT_INTERRUPT_MODE) {
2623 printf(", Active low");
2624 } else {
2625 printf(", Active high");
2626 }
2627 printf("\n");
2628 printf("\tBase Address=0x%016jx\n", subspace->BaseAddress);
2629 printf("\tLength=%d\n", subspace->Length);
2630 printf("\tDoorbell Register=");
2631 acpi_print_gas(&subspace->DoorbellRegister);
2632 printf("\n");
2633 printf("\tDoorbell Preserve=0x%016jx\n", subspace->PreserveMask);
2634 printf("\tDoorbell Write=0x%016jx\n", subspace->WriteMask);
2635 printf("\tLatency=%u us\n", subspace->Latency);
2636 printf("\tMax Access Rate=%u\n", subspace->MaxAccessRate);
2637 printf("\tMin Turnaround Time=%u us\n", subspace->MinTurnaroundTime);
2638 printf("\tPlatform Interrupt Ack Register=");
2639 acpi_print_gas(&subspace->PlatformAckRegister);
2640 printf("\n");
2641 printf("\tPlatform Interrupt Ack Preserve=0x%016jx\n", subspace->AckPreserveMask);
2642 printf("\tPlatform Interrupt Ack Set=0x%016jx\n", subspace->AckSetMask);
2643 printf("\tCommand Complete Register=");
2644 acpi_print_gas(&subspace->CmdCompleteRegister);
2645 printf("\n");
2646 printf("\tCommand Complete Mask=0x%016jx\n", subspace->CmdCompleteMask);
2647 printf("\tCommand Update Register=");
2648 acpi_print_gas(&subspace->CmdUpdateRegister);
2649 printf("\n");
2650 printf("\tCommand Update Preserve Mask=0x%016jx\n", subspace->CmdUpdatePreserveMask);
2651 printf("\tCommand Update Set MAsk=0x%016jx\n", subspace->CmdUpdateSetMask);
2652 printf("\tError Status Register=");
2653 acpi_print_gas(&subspace->ErrorStatusRegister);
2654 printf("\n");
2655 printf("\tError Status Mask=0x%016jx\n", subspace->ErrorStatusMask);
2656 }
2657
2658 static void
2659 acpi_print_pcct_ext_pcc_slave(ACPI_PCCT_EXT_PCC_SLAVE *subspace)
2660 {
2661 printf("\tType=Extended PCC Slave Subspace\n");
2662 printf("\tPlatform Interrupt=%u", subspace->PlatformInterrupt);
2663 if (subspace->Flags & ACPI_PCCT_INTERRUPT_POLARITY) {
2664 printf(", Edge triggered");
2665 } else {
2666 printf(", Level triggered");
2667 }
2668 if (subspace->Flags & ACPI_PCCT_INTERRUPT_MODE) {
2669 printf(", Active low");
2670 } else {
2671 printf(", Active high");
2672 }
2673 printf("\n");
2674 printf("\tBase Address=0x%016jx\n", subspace->BaseAddress);
2675 printf("\tLength=%d\n", subspace->Length);
2676 printf("\tDoorbell Register=");
2677 acpi_print_gas(&subspace->DoorbellRegister);
2678 printf("\n");
2679 printf("\tDoorbell Preserve=0x%016jx\n", subspace->PreserveMask);
2680 printf("\tDoorbell Write=0x%016jx\n", subspace->WriteMask);
2681 printf("\tLatency=%u us\n", subspace->Latency);
2682 printf("\tMax Access Rate=%u\n", subspace->MaxAccessRate);
2683 printf("\tMin Turnaround Time=%u us\n", subspace->MinTurnaroundTime);
2684 printf("\tPlatform Interrupt Ack Register=");
2685 acpi_print_gas(&subspace->PlatformAckRegister);
2686 printf("\n");
2687 printf("\tPlatform Interrupt Ack Preserve=0x%016jx\n", subspace->AckPreserveMask);
2688 printf("\tPlatform Interrupt Ack Set=0x%016jx\n", subspace->AckSetMask);
2689 printf("\tCommand Complete Register=");
2690 acpi_print_gas(&subspace->CmdCompleteRegister);
2691 printf("\n");
2692 printf("\tCommand Complete Mask=0x%016jx\n", subspace->CmdCompleteMask);
2693 printf("\tCommand Update Register=");
2694 acpi_print_gas(&subspace->CmdUpdateRegister);
2695 printf("\n");
2696 printf("\tCommand Update Preserve Mask=0x%016jx\n", subspace->CmdUpdatePreserveMask);
2697 printf("\tCommand Update Set MAsk=0x%016jx\n", subspace->CmdUpdateSetMask);
2698 printf("\tError Status Register=");
2699 acpi_print_gas(&subspace->ErrorStatusRegister);
2700 printf("\n");
2701 printf("\tError Status Mask=0x%016jx\n", subspace->ErrorStatusMask);
2702 }
2703
2704 static void
2705 acpi_print_pcct(ACPI_SUBTABLE_HEADER *hdr)
2706 {
2707 switch (hdr->Type) {
2708 case ACPI_PCCT_TYPE_GENERIC_SUBSPACE:
2709 acpi_print_pcct_subspace((ACPI_PCCT_SUBSPACE *)hdr);
2710 break;
2711 case ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE:
2712 acpi_print_pcct_hw_reduced((ACPI_PCCT_HW_REDUCED *)hdr);
2713 break;
2714 case ACPI_PCCT_TYPE_HW_REDUCED_SUBSPACE_TYPE2:
2715 acpi_print_pcct_hw_reduced_type2((ACPI_PCCT_HW_REDUCED_TYPE2 *)hdr);
2716 break;
2717 case ACPI_PCCT_TYPE_EXT_PCC_MASTER_SUBSPACE:
2718 acpi_print_pcct_ext_pcc_master((ACPI_PCCT_EXT_PCC_MASTER *)hdr);
2719 break;
2720 case ACPI_PCCT_TYPE_EXT_PCC_SLAVE_SUBSPACE:
2721 acpi_print_pcct_ext_pcc_slave((ACPI_PCCT_EXT_PCC_SLAVE *)hdr);
2722 break;
2723 default:
2724 printf("\tUnknown structure"
2725 "(type = %hhu, length = %hhu)\n",
2726 hdr->Type, hdr->Length);
2727 break;
2728 }
2729 }
2730
2731 static void
2732 acpi_handle_pcct(ACPI_TABLE_HEADER *sdp)
2733 {
2734 ACPI_TABLE_PCCT *pcct;
2735
2736 printf(BEGIN_COMMENT);
2737 acpi_print_sdt(sdp);
2738
2739 pcct = (ACPI_TABLE_PCCT *)sdp;
2740 #define PRINTFLAG(var, flag) printflag((var), ACPI_PCCT_## flag, #flag)
2741 printf("\tFlags=");
2742 PRINTFLAG(pcct->Flags, DOORBELL);
2743 PRINTFLAG_END();
2744 #undef PRINTFLAG
2745
2746 acpi_walk_subtables(sdp, (pcct + 1), acpi_print_pcct);
2747
2748 printf(END_COMMENT);
2749 }
2750
2751 static void
2752 acpi_print_pptt_processor(ACPI_PPTT_PROCESSOR *processor)
2753 {
2754 uint32_t *private;
2755 unsigned int i;
2756
2757 printf("\tType=processor\n");
2758 printf("\tLength=%d\n", processor->Header.Length);
2759 #define PRINTFLAG(var, flag) printflag((var), ACPI_PPTT_## flag, #flag)
2760
2761 printf("\tFlags=");
2762 PRINTFLAG(processor->Flags, PHYSICAL_PACKAGE);
2763 PRINTFLAG(processor->Flags, ACPI_PROCESSOR_ID_VALID);
2764 PRINTFLAG_END();
2765
2766 #undef PRINTFLAG
2767 printf("\tParent=%08x\n", processor->Parent);
2768 printf("\tACPI Processor ID=0x%08x\n", processor->AcpiProcessorId);
2769 printf("\tprivate resources=%d\n", processor->NumberOfPrivResources);
2770
2771 private = (uint32_t *)(processor + 1);
2772 for (i = 0; i < processor->NumberOfPrivResources; i++)
2773 printf("\tprivate resources%d=%08x\n", i, private[i]);
2774 }
2775
2776 static void
2777 acpi_print_pptt_cache(ACPI_PPTT_CACHE *cache)
2778 {
2779
2780 printf("\tType=cache\n");
2781 printf("\tLength=%d\n", cache->Header.Length);
2782
2783 #define PRINTFLAG(var, flag) printflag((var), ACPI_PPTT_## flag, #flag)
2784 printf("\tFlags=");
2785 PRINTFLAG(cache->Flags, SIZE_PROPERTY_VALID);
2786 PRINTFLAG(cache->Flags, NUMBER_OF_SETS_VALID);
2787 PRINTFLAG(cache->Flags, ASSOCIATIVITY_VALID);
2788 PRINTFLAG(cache->Flags, ALLOCATION_TYPE_VALID);
2789 PRINTFLAG(cache->Flags, CACHE_TYPE_VALID);
2790 PRINTFLAG(cache->Flags, WRITE_POLICY_VALID);
2791 PRINTFLAG(cache->Flags, LINE_SIZE_VALID);
2792 PRINTFLAG_END();
2793 #undef PRINTFLAG
2794
2795 printf("\tNextLevel=0x%08x\n", cache->NextLevelOfCache);
2796 if (cache->Flags & ACPI_PPTT_SIZE_PROPERTY_VALID)
2797 printf("\tSize=%d\n", cache->Size);
2798 if (cache->Flags & ACPI_PPTT_NUMBER_OF_SETS_VALID)
2799 printf("\tSets=%d\n", cache->NumberOfSets);
2800 if (cache->Flags & ACPI_PPTT_ASSOCIATIVITY_VALID)
2801 printf("\tAssociativity=%d\n", cache->Associativity);
2802 if (cache->Flags & ACPI_PPTT_ALLOCATION_TYPE_VALID) {
2803 printf("\tAllocation type=");
2804 switch (cache->Attributes & ACPI_PPTT_MASK_ALLOCATION_TYPE) {
2805 case ACPI_PPTT_CACHE_READ_ALLOCATE:
2806 printf("Read allocate\n");
2807 break;
2808 case ACPI_PPTT_CACHE_WRITE_ALLOCATE:
2809 printf("Write allocate\n");
2810 break;
2811 case ACPI_PPTT_CACHE_RW_ALLOCATE:
2812 case ACPI_PPTT_CACHE_RW_ALLOCATE_ALT:
2813 printf("Read and Write allocate\n");
2814 break;
2815 }
2816 }
2817 if (cache->Flags & ACPI_PPTT_CACHE_TYPE_VALID) {
2818 printf("\tCache type=");
2819 switch (cache->Attributes & ACPI_PPTT_MASK_CACHE_TYPE) {
2820 case ACPI_PPTT_CACHE_TYPE_DATA:
2821 printf("Data\n");
2822 break;
2823 case ACPI_PPTT_CACHE_TYPE_INSTR:
2824 printf("Instruction\n");
2825 break;
2826 case ACPI_PPTT_CACHE_TYPE_UNIFIED:
2827 case ACPI_PPTT_CACHE_TYPE_UNIFIED_ALT:
2828 printf("Unified\n");
2829 break;
2830 }
2831 }
2832 if (cache->Flags & ACPI_PPTT_WRITE_POLICY_VALID)
2833 printf("\tWrite Policy=Write %s \n",
2834 (cache->Attributes & ACPI_PPTT_MASK_WRITE_POLICY) ?
2835 "through" : "back");
2836
2837 if (cache->Flags & ACPI_PPTT_LINE_SIZE_VALID)
2838 printf("\tLine size=%d\n", cache->LineSize);
2839 }
2840
2841 static void
2842 acpi_print_pptt_id(ACPI_PPTT_ID *id)
2843 {
2844
2845 printf("\tType=id\n");
2846 printf("\tLength=%d\n", id->Header.Length);
2847
2848 printf("\tVENDOR_ID=");
2849 acpi_print_string((char *)&id->VendorId, 4);
2850 printf("\n");
2851
2852 printf("\tLEVEL_1_ID=%016" PRIx64 "\n", id->Level1Id);
2853 printf("\tLEVEL_2_ID=%016" PRIx64 "\n", id->Level2Id);
2854 printf("\tMajor=%hu", id->MajorRev);
2855 printf("\tMinor=%hu", id->MinorRev);
2856 printf("\tSpin=%hu", id->SpinRev);
2857 }
2858
2859 static void
2860 acpi_print_pptt(ACPI_SUBTABLE_HEADER *hdr)
2861 {
2862 switch (hdr->Type) {
2863 case ACPI_PPTT_TYPE_PROCESSOR:
2864 acpi_print_pptt_processor((ACPI_PPTT_PROCESSOR *)hdr);
2865 break;
2866 case ACPI_PPTT_TYPE_CACHE:
2867 acpi_print_pptt_cache((ACPI_PPTT_CACHE *)hdr);
2868 break;
2869 case ACPI_PPTT_TYPE_ID:
2870 acpi_print_pptt_id((ACPI_PPTT_ID *)hdr);
2871 break;
2872 default:
2873 printf("\tUnknown structure"
2874 "(type = %hhu, length = %hhu)\n",
2875 hdr->Type, hdr->Length);
2876 break;
2877 }
2878 }
2879
2880 static void
2881 acpi_handle_pptt(ACPI_TABLE_HEADER *sdp)
2882 {
2883 ACPI_TABLE_PPTT *pptt;
2884
2885 printf(BEGIN_COMMENT);
2886 acpi_print_sdt(sdp);
2887
2888 pptt = (ACPI_TABLE_PPTT *)sdp;
2889 acpi_walk_subtables(sdp, (pptt + 1), acpi_print_pptt);
2890
2891 printf(END_COMMENT);
2892 }
2893
2894 static void
2895 acpi_handle_sbst(ACPI_TABLE_HEADER *sdp)
2896 {
2897 ACPI_TABLE_SBST *sbst;
2898
2899 printf(BEGIN_COMMENT);
2900 acpi_print_sdt(sdp);
2901 sbst = (ACPI_TABLE_SBST *)sdp;
2902
2903 printf("\tWarning Level=%d mWh\n", sbst->WarningLevel);
2904 printf("\tLow Level=%d mWh\n", sbst->LowLevel);
2905 printf("\tCritical Level=%d mWh\n", sbst->CriticalLevel);
2906
2907 printf(END_COMMENT);
2908 }
2909
2910 static void
2911 acpi_handle_slit(ACPI_TABLE_HEADER *sdp)
2912 {
2913 ACPI_TABLE_SLIT *slit;
2914 u_int idx;
2915 uint64_t cnt;
2916
2917 printf(BEGIN_COMMENT);
2918 acpi_print_sdt(sdp);
2919 slit = (ACPI_TABLE_SLIT *)sdp;
2920
2921 cnt = slit->LocalityCount * slit->LocalityCount;
2922 printf("\tLocalityCount=%ju\n", (uintmax_t)slit->LocalityCount);
2923 printf("\tEntry=\n\t");
2924 for (idx = 0; idx < cnt; idx++) {
2925 printf("%u ", slit->Entry[idx]);
2926 if ((idx % slit->LocalityCount) == (slit->LocalityCount - 1)) {
2927 printf("\n");
2928 if (idx < cnt - 1)
2929 printf("\t");
2930 }
2931 }
2932
2933 printf(END_COMMENT);
2934 }
2935
2936 static void
2937 acpi_handle_spcr(ACPI_TABLE_HEADER *sdp)
2938 {
2939 ACPI_TABLE_SPCR *spcr;
2940
2941 printf(BEGIN_COMMENT);
2942 acpi_print_sdt(sdp);
2943 spcr = (ACPI_TABLE_SPCR *)sdp;
2944
2945 printf("\n\tInterface Type=");
2946 switch (sdp->Revision) {
2947 case 1:
2948 printf("full 16550%s\n",
2949 (spcr->InterfaceType == 1) ?
2950 "(must also accept writing FCR register)" : "");
2951 break;
2952 case 2:
2953 acpi_print_dbg2_serial_subtype(spcr->InterfaceType);
2954 break;
2955 default:
2956 printf("unknown Revision\n");
2957 break;
2958 }
2959
2960 printf("\tSerial Port=");
2961 acpi_print_gas(&spcr->SerialPort);
2962 printf("\n\tInterrupt Type={");
2963 if (spcr->InterruptType & 0x1) {
2964 printf("\n\t\tdual-8259 IRQ=");
2965 switch (spcr->PcInterrupt) {
2966 case 2 ... 7:
2967 case 9 ... 12:
2968 case 14 ... 15:
2969 printf("%d", spcr->PcInterrupt);
2970 break;
2971 default:
2972 printf("%d (invalid entry)", spcr->PcInterrupt);
2973 break;
2974 }
2975 }
2976 if (spcr->InterruptType & 0x2) {
2977 printf("\n\t\tIO APIC={ GSI=%d }", spcr->Interrupt);
2978 }
2979 if (spcr->InterruptType & 0x4) {
2980 printf("\n\t\tIO SAPIC={ GSI=%d }", spcr->Interrupt);
2981 }
2982 if (spcr->InterruptType & 0x8) {
2983 printf("\n\t\tARMH GIC={ GSI=%d }", spcr->Interrupt);
2984 }
2985 printf("\n\t}\n");
2986
2987 printf("\tBaud Rate=");
2988 switch (spcr->BaudRate) {
2989 case 3:
2990 printf("9600");
2991 break;
2992 case 4:
2993 printf("19200");
2994 break;
2995 case 6:
2996 printf("57600");
2997 break;
2998 case 7:
2999 printf("115200");
3000 break;
3001 default:
3002 printf("unknown speed index %d", spcr->BaudRate);
3003 break;
3004 }
3005 printf("\n\tParity={");
3006 switch (spcr->Parity) {
3007 case 0:
3008 printf("OFF");
3009 break;
3010 default:
3011 printf("ON");
3012 break;
3013 }
3014 printf("}\n");
3015
3016 printf("\tStop Bits={");
3017 switch (spcr->StopBits) {
3018 case 1:
3019 printf("ON");
3020 break;
3021 default:
3022 printf("OFF");
3023 break;
3024 }
3025 printf("}\n");
3026
3027 printf("\tFlow Control={");
3028 if (spcr->FlowControl & 0x1)
3029 printf("DCD, ");
3030 if (spcr->FlowControl & 0x2)
3031 printf("RTS/CTS hardware, ");
3032 if (spcr->FlowControl & 0x4)
3033 printf("XON/XOFF software");
3034 printf("}\n");
3035
3036 printf("\tTerminal=");
3037 switch (spcr->TerminalType) {
3038 case 0:
3039 printf("VT100");
3040 break;
3041 case 1:
3042 printf("VT100+");
3043 break;
3044 case 2:
3045 printf("VT-UTF8");
3046 break;
3047 case 3:
3048 printf("ANSI");
3049 break;
3050 default:
3051 printf("unknown type %d", spcr->TerminalType);
3052 break;
3053 }
3054 printf("\n");
3055
3056 acpi_print_pci(spcr->PciVendorId, spcr->PciDeviceId,
3057 spcr->PciSegment, spcr->PciBus, spcr->PciDevice, spcr->PciFunction);
3058
3059 printf("\tPCI Flags={");
3060 if (spcr->PciFlags & ACPI_SPCR_DO_NOT_DISABLE)
3061 printf("DONOT_DISABLE");
3062 printf("}\n");
3063
3064 printf(END_COMMENT);
3065 }
3066
3067 static void
3068 acpi_handle_spmi(ACPI_TABLE_HEADER *sdp)
3069 {
3070 ACPI_TABLE_SPMI *spmi;
3071
3072 printf(BEGIN_COMMENT);
3073 acpi_print_sdt(sdp);
3074 spmi = (ACPI_TABLE_SPMI *)sdp;
3075
3076 printf("\tInterface Type=");
3077 switch (spmi->InterfaceType) {
3078 case ACPI_SPMI_KEYBOARD:
3079 printf("Keyboard Controller Stype (KCS)");
3080 break;
3081 case ACPI_SPMI_SMI:
3082 printf("Server Management Interface Chip (SMIC)");
3083 break;
3084 case ACPI_SPMI_BLOCK_TRANSFER:
3085 printf("Block Transfer (BT)");
3086 break;
3087 case ACPI_SPMI_SMBUS:
3088 printf("SMBus System Interface (SSIF)");
3089 break;
3090 default:
3091 printf("Reserved(%d)", spmi->InterfaceType);
3092 break;
3093 }
3094 printf("\n\tSpecRevision=%d.%d", spmi->SpecRevision >> 8,
3095 spmi->SpecRevision & 0xff);
3096
3097 printf("\n\tInterrupt Type={");
3098 if (spmi->InterruptType & 0x1) {
3099 printf("\n\t\tSCI triggered GPE=%d", spmi->GpeNumber);
3100 }
3101 if (spmi->InterruptType & 0x2) {
3102 printf("\n\t\tIO APIC/SAPIC={ GSI=%d }", spmi->Interrupt);
3103 }
3104 printf("\n\t}\n");
3105
3106 printf("\tBase Address=");
3107 acpi_print_gas(&spmi->IpmiRegister);
3108 printf("\n");
3109
3110 if ((spmi->PciDeviceFlag & 0x01) != 0)
3111 acpi_print_pci_sbdf(spmi->PciSegment, spmi->PciBus,
3112 spmi->PciDevice, spmi->PciFunction);
3113
3114 printf(END_COMMENT);
3115 }
3116
3117 static void
3118 acpi_print_srat_cpu(uint8_t type, uint32_t apic_id, uint32_t proximity_domain,
3119 uint32_t flags, uint32_t clockdomain, uint8_t sapic_eid)
3120 {
3121
3122 printf("\tFlags={");
3123 if (flags & ACPI_SRAT_CPU_ENABLED)
3124 printf("ENABLED");
3125 else
3126 printf("DISABLED");
3127 printf("}\n");
3128 printf("\t%s ID=%d\n",
3129 (type == ACPI_SRAT_TYPE_GIC_ITS_AFFINITY) ? "ITS" : "APIC",
3130 apic_id);
3131 if (type == ACPI_SRAT_TYPE_CPU_AFFINITY)
3132 printf("\tSAPIC EID=%d\n", sapic_eid);
3133 printf("\tProximity Domain=%d\n", proximity_domain);
3134 if (type != ACPI_SRAT_TYPE_GIC_ITS_AFFINITY)
3135 printf("\tClock Domain=%d\n", clockdomain);
3136 }
3137
3138 static void
3139 acpi_print_srat_memory(ACPI_SRAT_MEM_AFFINITY *mp)
3140 {
3141
3142 printf("\tFlags={");
3143 if (mp->Flags & ACPI_SRAT_MEM_ENABLED)
3144 printf("ENABLED");
3145 else
3146 printf("DISABLED");
3147 if (mp->Flags & ACPI_SRAT_MEM_HOT_PLUGGABLE)
3148 printf(",HOT_PLUGGABLE");
3149 if (mp->Flags & ACPI_SRAT_MEM_NON_VOLATILE)
3150 printf(",NON_VOLATILE");
3151 printf("}\n");
3152 printf("\tBase Address=0x%016jx\n", (uintmax_t)mp->BaseAddress);
3153 printf("\tLength=0x%016jx\n", (uintmax_t)mp->Length);
3154 printf("\tProximity Domain=%d\n", mp->ProximityDomain);
3155 }
3156
3157 static const char *srat_types[] = {
3158 [ACPI_SRAT_TYPE_CPU_AFFINITY] = "CPU",
3159 [ACPI_SRAT_TYPE_MEMORY_AFFINITY] = "Memory",
3160 [ACPI_SRAT_TYPE_X2APIC_CPU_AFFINITY] = "X2APIC",
3161 [ACPI_SRAT_TYPE_GICC_AFFINITY] = "GICC",
3162 [ACPI_SRAT_TYPE_GIC_ITS_AFFINITY] = "GIC ITS",
3163 };
3164
3165 static void
3166 acpi_print_srat(ACPI_SUBTABLE_HEADER *srat)
3167 {
3168 ACPI_SRAT_CPU_AFFINITY *cpu;
3169 ACPI_SRAT_X2APIC_CPU_AFFINITY *x2apic;
3170 ACPI_SRAT_GICC_AFFINITY *gicc;
3171 ACPI_SRAT_GIC_ITS_AFFINITY *gici;
3172
3173 if (srat->Type < __arraycount(srat_types))
3174 printf("\tType=%s\n", srat_types[srat->Type]);
3175 else
3176 printf("\tType=%d (unknown)\n", srat->Type);
3177 switch (srat->Type) {
3178 case ACPI_SRAT_TYPE_CPU_AFFINITY:
3179 cpu = (ACPI_SRAT_CPU_AFFINITY *)srat;
3180 acpi_print_srat_cpu(srat->Type, cpu->ApicId,
3181 cpu->ProximityDomainHi[2] << 24 |
3182 cpu->ProximityDomainHi[1] << 16 |
3183 cpu->ProximityDomainHi[0] << 0 |
3184 cpu->ProximityDomainLo,
3185 cpu->Flags, cpu->ClockDomain, cpu->LocalSapicEid);
3186 break;
3187 case ACPI_SRAT_TYPE_MEMORY_AFFINITY:
3188 acpi_print_srat_memory((ACPI_SRAT_MEM_AFFINITY *)srat);
3189 break;
3190 case ACPI_SRAT_TYPE_X2APIC_CPU_AFFINITY:
3191 x2apic = (ACPI_SRAT_X2APIC_CPU_AFFINITY *)srat;
3192 acpi_print_srat_cpu(srat->Type, x2apic->ApicId,
3193 x2apic->ProximityDomain,
3194 x2apic->Flags, x2apic->ClockDomain, 0 /* dummy */);
3195 break;
3196 case ACPI_SRAT_TYPE_GICC_AFFINITY:
3197 gicc = (ACPI_SRAT_GICC_AFFINITY *)srat;
3198 acpi_print_srat_cpu(srat->Type, gicc->AcpiProcessorUid,
3199 gicc->ProximityDomain,
3200 gicc->Flags, gicc->ClockDomain, 0 /* dummy */);
3201 break;
3202 case ACPI_SRAT_TYPE_GIC_ITS_AFFINITY:
3203 gici = (ACPI_SRAT_GIC_ITS_AFFINITY *)srat;
3204 acpi_print_srat_cpu(srat->Type, gici->ItsId,
3205 gici->ProximityDomain,
3206 0 /* dummy */, 0 /* dummy */, 0 /* dummy */);
3207 break;
3208 }
3209 }
3210
3211 static void
3212 acpi_handle_srat(ACPI_TABLE_HEADER *sdp)
3213 {
3214 ACPI_TABLE_SRAT *srat;
3215
3216 printf(BEGIN_COMMENT);
3217 acpi_print_sdt(sdp);
3218 srat = (ACPI_TABLE_SRAT *)sdp;
3219 printf("\tTable Revision=%d\n", srat->TableRevision);
3220 acpi_walk_subtables(sdp, (srat + 1), acpi_print_srat);
3221 printf(END_COMMENT);
3222 }
3223
3224 static const char *nfit_types[] = {
3225 [ACPI_NFIT_TYPE_SYSTEM_ADDRESS] = "System Address",
3226 [ACPI_NFIT_TYPE_MEMORY_MAP] = "Memory Map",
3227 [ACPI_NFIT_TYPE_INTERLEAVE] = "Interleave",
3228 [ACPI_NFIT_TYPE_SMBIOS] = "SMBIOS",
3229 [ACPI_NFIT_TYPE_CONTROL_REGION] = "Control Region",
3230 [ACPI_NFIT_TYPE_DATA_REGION] = "Data Region",
3231 [ACPI_NFIT_TYPE_FLUSH_ADDRESS] = "Flush Address"
3232 };
3233
3234
3235 static void
3236 acpi_print_nfit(ACPI_NFIT_HEADER *nfit)
3237 {
3238 char *uuidstr;
3239 uint32_t status;
3240
3241 ACPI_NFIT_SYSTEM_ADDRESS *sysaddr;
3242 ACPI_NFIT_MEMORY_MAP *mmap;
3243 ACPI_NFIT_INTERLEAVE *ileave;
3244 ACPI_NFIT_SMBIOS *smbios __unused;
3245 ACPI_NFIT_CONTROL_REGION *ctlreg;
3246 ACPI_NFIT_DATA_REGION *datareg;
3247 ACPI_NFIT_FLUSH_ADDRESS *fladdr;
3248
3249 if (nfit->Type < __arraycount(nfit_types))
3250 printf("\tType=%s\n", nfit_types[nfit->Type]);
3251 else
3252 printf("\tType=%u (unknown)\n", nfit->Type);
3253 switch (nfit->Type) {
3254 case ACPI_NFIT_TYPE_SYSTEM_ADDRESS:
3255 sysaddr = (ACPI_NFIT_SYSTEM_ADDRESS *)nfit;
3256 printf("\tRangeIndex=%u\n", (u_int)sysaddr->RangeIndex);
3257 printf("\tProximityDomain=%u\n",
3258 (u_int)sysaddr->ProximityDomain);
3259 uuid_to_string((uuid_t *)(sysaddr->RangeGuid),
3260 &uuidstr, &status);
3261 if (status != uuid_s_ok)
3262 errx(1, "uuid_to_string: status=%u", status);
3263 printf("\tRangeGuid=%s\n", uuidstr);
3264 free(uuidstr);
3265 printf("\tAddress=0x%016jx\n", (uintmax_t)sysaddr->Address);
3266 printf("\tLength=0x%016jx\n", (uintmax_t)sysaddr->Length);
3267 printf("\tMemoryMapping=0x%016jx\n",
3268 (uintmax_t)sysaddr->MemoryMapping);
3269
3270 #define PRINTFLAG(var, flag) printflag((var), ACPI_NFIT_## flag, #flag)
3271
3272 printf("\tFlags=");
3273 PRINTFLAG(sysaddr->Flags, ADD_ONLINE_ONLY);
3274 PRINTFLAG(sysaddr->Flags, PROXIMITY_VALID);
3275 PRINTFLAG_END();
3276
3277 #undef PRINTFLAG
3278
3279 break;
3280 case ACPI_NFIT_TYPE_MEMORY_MAP:
3281 mmap = (ACPI_NFIT_MEMORY_MAP *)nfit;
3282 printf("\tDeviceHandle=%u\n", (u_int)mmap->DeviceHandle);
3283 printf("\tPhysicalId=%u\n", (u_int)mmap->PhysicalId);
3284 printf("\tRegionId=%u\n", (u_int)mmap->RegionId);
3285 printf("\tRangeIndex=%u\n", (u_int)mmap->RangeIndex);
3286 printf("\tRegionIndex=%u\n", (u_int)mmap->RegionIndex);
3287 printf("\tRegionSize=0x%016jx\n", (uintmax_t)mmap->RegionSize);
3288 printf("\tRegionOffset=0x%016jx\n",
3289 (uintmax_t)mmap->RegionOffset);
3290 printf("\tAddress=0x%016jx\n", (uintmax_t)mmap->Address);
3291 printf("\tInterleaveIndex=%u\n", (u_int)mmap->InterleaveIndex);
3292 printf("\tInterleaveWays=%u\n", (u_int)mmap->InterleaveWays);
3293
3294 #define PRINTFLAG(var, flag) printflag((var), ACPI_NFIT_MEM_## flag, #flag)
3295
3296 printf("\tFlags=");
3297 PRINTFLAG(mmap->Flags, SAVE_FAILED);
3298 PRINTFLAG(mmap->Flags, RESTORE_FAILED);
3299 PRINTFLAG(mmap->Flags, FLUSH_FAILED);
3300 PRINTFLAG(mmap->Flags, NOT_ARMED);
3301 PRINTFLAG(mmap->Flags, HEALTH_OBSERVED);
3302 PRINTFLAG(mmap->Flags, HEALTH_ENABLED);
3303 PRINTFLAG(mmap->Flags, MAP_FAILED);
3304 PRINTFLAG_END();
3305
3306 #undef PRINTFLAG
3307
3308 break;
3309 case ACPI_NFIT_TYPE_INTERLEAVE:
3310 ileave = (ACPI_NFIT_INTERLEAVE *)nfit;
3311 printf("\tInterleaveIndex=%u\n",
3312 (u_int)ileave->InterleaveIndex);
3313 printf("\tLineCount=%u\n", (u_int)ileave->LineCount);
3314 printf("\tLineSize=%u\n", (u_int)ileave->LineSize);
3315 /* XXX ileave->LineOffset[i] output is not supported */
3316 break;
3317 case ACPI_NFIT_TYPE_SMBIOS:
3318 smbios = (ACPI_NFIT_SMBIOS *)nfit;
3319 /* XXX smbios->Data[x] output is not supported */
3320 break;
3321 case ACPI_NFIT_TYPE_CONTROL_REGION:
3322 ctlreg = (ACPI_NFIT_CONTROL_REGION *)nfit;
3323 printf("\tRegionIndex=%u\n", (u_int)ctlreg->RegionIndex);
3324 printf("\tVendorId=0x%04x\n", (u_int)ctlreg->VendorId);
3325 printf("\tDeviceId=0x%04x\n", (u_int)ctlreg->DeviceId);
3326 printf("\tRevisionId=%u\n", (u_int)ctlreg->RevisionId);
3327 printf("\tSubsystemVendorId=0x%04x\n",
3328 (u_int)ctlreg->SubsystemVendorId);
3329 printf("\tSubsystemDeviceId=0x%04x\n",
3330 (u_int)ctlreg->SubsystemDeviceId);
3331 printf("\tSubsystemRevisionId=%u\n",
3332 (u_int)ctlreg->SubsystemRevisionId);
3333 printf("\tValidFields=%02x\n", (u_int)ctlreg->ValidFields);
3334 printf("\tManufacturingLocation=%u\n",
3335 (u_int)ctlreg->ManufacturingLocation);
3336 printf("\tManufacturingDate=%u\n",
3337 (u_int)ctlreg->ManufacturingDate);
3338 printf("\tSerialNumber=%u\n",
3339 (u_int)ctlreg->SerialNumber);
3340 printf("\tCode=0x%04x\n", (u_int)ctlreg->Code);
3341 printf("\tWindows=%u\n", (u_int)ctlreg->Windows);
3342 printf("\tWindowSize=0x%016jx\n",
3343 (uintmax_t)ctlreg->WindowSize);
3344 printf("\tCommandOffset=0x%016jx\n",
3345 (uintmax_t)ctlreg->CommandOffset);
3346 printf("\tCommandSize=0x%016jx\n",
3347 (uintmax_t)ctlreg->CommandSize);
3348 printf("\tStatusOffset=0x%016jx\n",
3349 (uintmax_t)ctlreg->StatusOffset);
3350 printf("\tStatusSize=0x%016jx\n",
3351 (uintmax_t)ctlreg->StatusSize);
3352
3353 #define PRINTFLAG(var, flag) printflag((var), ACPI_NFIT_## flag, #flag)
3354
3355 printf("\tFlags=");
3356 PRINTFLAG(ctlreg->Flags, CONTROL_BUFFERED);
3357 PRINTFLAG_END();
3358
3359 #undef PRINTFLAG
3360
3361 break;
3362 case ACPI_NFIT_TYPE_DATA_REGION:
3363 datareg = (ACPI_NFIT_DATA_REGION *)nfit;
3364 printf("\tRegionIndex=%u\n", (u_int)datareg->RegionIndex);
3365 printf("\tWindows=%u\n", (u_int)datareg->Windows);
3366 printf("\tOffset=0x%016jx\n", (uintmax_t)datareg->Offset);
3367 printf("\tSize=0x%016jx\n", (uintmax_t)datareg->Size);
3368 printf("\tCapacity=0x%016jx\n", (uintmax_t)datareg->Capacity);
3369 printf("\tStartAddress=0x%016jx\n",
3370 (uintmax_t)datareg->StartAddress);
3371 break;
3372 case ACPI_NFIT_TYPE_FLUSH_ADDRESS:
3373 fladdr = (ACPI_NFIT_FLUSH_ADDRESS *)nfit;
3374 printf("\tDeviceHandle=%u\n", (u_int)fladdr->DeviceHandle);
3375 printf("\tHintCount=%u\n", (u_int)fladdr->HintCount);
3376 /* XXX fladdr->HintAddress[i] output is not supported */
3377 break;
3378 }
3379 }
3380
3381 static void
3382 acpi_handle_nfit(ACPI_TABLE_HEADER *sdp)
3383 {
3384 ACPI_TABLE_NFIT *nfit;
3385
3386 printf(BEGIN_COMMENT);
3387 acpi_print_sdt(sdp);
3388 nfit = (ACPI_TABLE_NFIT *)sdp;
3389 acpi_walk_nfit(sdp, (nfit + 1), acpi_print_nfit);
3390 printf(END_COMMENT);
3391 }
3392
3393 static char *
3394 acpi_tcpa_evname(struct TCPAevent *event)
3395 {
3396 struct TCPApc_event *pc_event;
3397 char *eventname = NULL;
3398
3399 pc_event = (struct TCPApc_event *)(event + 1);
3400
3401 switch (event->event_type) {
3402 case PREBOOT:
3403 case POST_CODE:
3404 case UNUSED:
3405 case NO_ACTION:
3406 case SEPARATOR:
3407 case SCRTM_CONTENTS:
3408 case SCRTM_VERSION:
3409 case CPU_MICROCODE:
3410 case PLATFORM_CONFIG_FLAGS:
3411 case TABLE_OF_DEVICES:
3412 case COMPACT_HASH:
3413 case IPL:
3414 case IPL_PARTITION_DATA:
3415 case NONHOST_CODE:
3416 case NONHOST_CONFIG:
3417 case NONHOST_INFO:
3418 asprintf(&eventname, "%s",
3419 tcpa_event_type_strings[event->event_type]);
3420 break;
3421
3422 case ACTION:
3423 eventname = calloc(event->event_size + 1, sizeof(char));
3424 memcpy(eventname, pc_event, event->event_size);
3425 break;
3426
3427 case EVENT_TAG:
3428 switch (pc_event->event_id) {
3429 case SMBIOS:
3430 case BIS_CERT:
3431 case CMOS:
3432 case NVRAM:
3433 case OPTION_ROM_EXEC:
3434 case OPTION_ROM_CONFIG:
3435 case S_CRTM_VERSION:
3436 case POST_BIOS_ROM:
3437 case ESCD:
3438 case OPTION_ROM_MICROCODE:
3439 case S_CRTM_CONTENTS:
3440 case POST_CONTENTS:
3441 asprintf(&eventname, "%s",
3442 TCPA_pcclient_strings[pc_event->event_id]);
3443 break;
3444
3445 default:
3446 asprintf(&eventname, "<unknown tag 0x%02x>",
3447 pc_event->event_id);
3448 break;
3449 }
3450 break;
3451
3452 default:
3453 asprintf(&eventname, "<unknown 0x%02x>", event->event_type);
3454 break;
3455 }
3456
3457 return eventname;
3458 }
3459
3460 static void
3461 acpi_print_tcpa(struct TCPAevent *event)
3462 {
3463 int i;
3464 char *eventname;
3465
3466 eventname = acpi_tcpa_evname(event);
3467
3468 printf("\t%d", event->pcr_index);
3469 printf(" 0x");
3470 for (i = 0; i < 20; i++)
3471 printf("%02x", event->pcr_value[i]);
3472 printf(" [%s]\n", eventname ? eventname : "<unknown>");
3473
3474 free(eventname);
3475 }
3476
3477 static void
3478 acpi_handle_tcpa(ACPI_TABLE_HEADER *sdp)
3479 {
3480 struct TCPAbody *tcpa;
3481 struct TCPAevent *event;
3482 uintmax_t len, paddr;
3483 unsigned char *vaddr = NULL;
3484 unsigned char *vend = NULL;
3485
3486 printf(BEGIN_COMMENT);
3487 acpi_print_sdt(sdp);
3488 tcpa = (struct TCPAbody *) sdp;
3489
3490 switch (tcpa->platform_class) {
3491 case ACPI_TCPA_BIOS_CLIENT:
3492 len = tcpa->client.log_max_len;
3493 paddr = tcpa->client.log_start_addr;
3494 break;
3495
3496 case ACPI_TCPA_BIOS_SERVER:
3497 len = tcpa->server.log_max_len;
3498 paddr = tcpa->server.log_start_addr;
3499 break;
3500
3501 default:
3502 printf("XXX");
3503 printf(END_COMMENT);
3504 return;
3505 }
3506 printf("\tClass %u Base Address 0x%jx Length %ju\n\n",
3507 tcpa->platform_class, paddr, len);
3508
3509 if (len == 0) {
3510 printf("\tEmpty TCPA table\n");
3511 printf(END_COMMENT);
3512 return;
3513 }
3514 if (sdp->Revision == 1) {
3515 printf("\tOLD TCPA spec log found. Dumping not supported.\n");
3516 printf(END_COMMENT);
3517 return;
3518 }
3519
3520 vaddr = (unsigned char *)acpi_map_physical(paddr, len);
3521 vend = vaddr + len;
3522
3523 while (vaddr != NULL) {
3524 if ((vaddr + sizeof(struct TCPAevent) >= vend)||
3525 (vaddr + sizeof(struct TCPAevent) < vaddr))
3526 break;
3527 event = (struct TCPAevent *)(void *)vaddr;
3528 if (vaddr + event->event_size >= vend)
3529 break;
3530 if (vaddr + event->event_size < vaddr)
3531 break;
3532 if (event->event_type == 0 && event->event_size == 0)
3533 break;
3534 #if 0
3535 {
3536 unsigned int i, j, k;
3537
3538 printf("\n\tsize %d\n\t\t%p ", event->event_size, vaddr);
3539 for (j = 0, i = 0; i <
3540 sizeof(struct TCPAevent) + event->event_size; i++) {
3541 printf("%02x ", vaddr[i]);
3542 if ((i+1) % 8 == 0) {
3543 for (k = 0; k < 8; k++)
3544 printf("%c", isprint(vaddr[j+k]) ?
3545 vaddr[j+k] : '.');
3546 printf("\n\t\t%p ", &vaddr[i + 1]);
3547 j = i + 1;
3548 }
3549 }
3550 printf("\n"); }
3551 #endif
3552 acpi_print_tcpa(event);
3553
3554 vaddr += sizeof(struct TCPAevent) + event->event_size;
3555 }
3556
3557 printf(END_COMMENT);
3558 }
3559
3560 static void
3561 acpi_handle_tpm2(ACPI_TABLE_HEADER *sdp)
3562 {
3563 ACPI_TABLE_TPM2 *tpm2;
3564 const char *class;
3565
3566 printf(BEGIN_COMMENT);
3567
3568 acpi_print_sdt(sdp);
3569 tpm2 = (ACPI_TABLE_TPM2 *)sdp;
3570
3571 if (tpm2->PlatformClass == 0) {
3572 class = "Client";
3573 } else if (tpm2->PlatformClass == 1) {
3574 class = "Server";
3575 } else {
3576 class = "Unknown";
3577 }
3578 printf("\tClass=%s (%u)\n", class, tpm2->PlatformClass);
3579 printf("\tControl Address=0x%"PRIx64"\n", tpm2->ControlAddress);
3580 printf("\tStart Method=%u\n", tpm2->StartMethod);
3581
3582 printf(END_COMMENT);
3583 }
3584
3585 static const char *
3586 devscope_type2str(int type)
3587 {
3588 static char typebuf[16];
3589
3590 switch (type) {
3591 case 1:
3592 return ("PCI Endpoint Device");
3593 case 2:
3594 return ("PCI Sub-Hierarchy");
3595 case 3:
3596 return ("IOAPIC");
3597 case 4:
3598 return ("HPET");
3599 case 5:
3600 return ("ACPI Name space");
3601 default:
3602 snprintf(typebuf, sizeof(typebuf), "%d", type);
3603 return (typebuf);
3604 }
3605 }
3606
3607 static int
3608 acpi_handle_dmar_devscope(void *addr, int remaining)
3609 {
3610 char sep;
3611 int pathlen;
3612 ACPI_DMAR_PCI_PATH *path, *pathend;
3613 ACPI_DMAR_DEVICE_SCOPE *devscope = addr;
3614
3615 if (remaining < (int)sizeof(ACPI_DMAR_DEVICE_SCOPE))
3616 return (-1);
3617
3618 if (remaining < devscope->Length)
3619 return (-1);
3620
3621 printf("\n");
3622 printf("\t\tType=%s\n", devscope_type2str(devscope->EntryType));
3623 printf("\t\tLength=%d\n", devscope->Length);
3624 printf("\t\tEnumerationId=%d\n", devscope->EnumerationId);
3625 printf("\t\tStartBusNumber=%d\n", devscope->Bus);
3626
3627 path = (ACPI_DMAR_PCI_PATH *)(devscope + 1);
3628 pathlen = devscope->Length - sizeof(ACPI_DMAR_DEVICE_SCOPE);
3629 pathend = path + pathlen / sizeof(ACPI_DMAR_PCI_PATH);
3630 if (path < pathend) {
3631 sep = '{';
3632 printf("\t\tPath=");
3633 do {
3634 printf("%c%d:%d", sep, path->Device, path->Function);
3635 sep=',';
3636 path++;
3637 } while (path < pathend);
3638 printf("}\n");
3639 }
3640
3641 return (devscope->Length);
3642 }
3643
3644 static void
3645 acpi_handle_dmar_drhd(ACPI_DMAR_HARDWARE_UNIT *drhd)
3646 {
3647 char *cp;
3648 int remaining, consumed;
3649
3650 printf("\n");
3651 printf("\tType=DRHD\n");
3652 printf("\tLength=%d\n", drhd->Header.Length);
3653
3654 #define PRINTFLAG(var, flag) printflag((var), ACPI_DMAR_## flag, #flag)
3655
3656 printf("\tFlags=");
3657 PRINTFLAG(drhd->Flags, INCLUDE_ALL);
3658 PRINTFLAG_END();
3659
3660 #undef PRINTFLAG
3661
3662 printf("\tSegment=%d\n", drhd->Segment);
3663 printf("\tAddress=0x%016jx\n", (uintmax_t)drhd->Address);
3664
3665 remaining = drhd->Header.Length - sizeof(ACPI_DMAR_HARDWARE_UNIT);
3666 if (remaining > 0)
3667 printf("\tDevice Scope:");
3668 while (remaining > 0) {
3669 cp = (char *)drhd + drhd->Header.Length - remaining;
3670 consumed = acpi_handle_dmar_devscope(cp, remaining);
3671 if (consumed <= 0)
3672 break;
3673 else
3674 remaining -= consumed;
3675 }
3676 }
3677
3678 static void
3679 acpi_handle_dmar_rmrr(ACPI_DMAR_RESERVED_MEMORY *rmrr)
3680 {
3681 char *cp;
3682 int remaining, consumed;
3683
3684 printf("\n");
3685 printf("\tType=RMRR\n");
3686 printf("\tLength=%d\n", rmrr->Header.Length);
3687 printf("\tSegment=%d\n", rmrr->Segment);
3688 printf("\tBaseAddress=0x%016jx\n", (uintmax_t)rmrr->BaseAddress);
3689 printf("\tLimitAddress=0x%016jx\n", (uintmax_t)rmrr->EndAddress);
3690
3691 remaining = rmrr->Header.Length - sizeof(ACPI_DMAR_RESERVED_MEMORY);
3692 if (remaining > 0)
3693 printf("\tDevice Scope:");
3694 while (remaining > 0) {
3695 cp = (char *)rmrr + rmrr->Header.Length - remaining;
3696 consumed = acpi_handle_dmar_devscope(cp, remaining);
3697 if (consumed <= 0)
3698 break;
3699 else
3700 remaining -= consumed;
3701 }
3702 }
3703
3704 static void
3705 acpi_handle_dmar_atsr(ACPI_DMAR_ATSR *atsr)
3706 {
3707 char *cp;
3708 int remaining, consumed;
3709
3710 printf("\n");
3711 printf("\tType=ATSR\n");
3712 printf("\tLength=%d\n", atsr->Header.Length);
3713
3714 #define PRINTFLAG(var, flag) printflag((var), ACPI_DMAR_## flag, #flag)
3715
3716 printf("\tFlags=");
3717 PRINTFLAG(atsr->Flags, ALL_PORTS);
3718 PRINTFLAG_END();
3719
3720 #undef PRINTFLAG
3721
3722 printf("\tSegment=%d\n", atsr->Segment);
3723
3724 remaining = atsr->Header.Length - sizeof(ACPI_DMAR_ATSR);
3725 if (remaining > 0)
3726 printf("\tDevice Scope:");
3727 while (remaining > 0) {
3728 cp = (char *)atsr + atsr->Header.Length - remaining;
3729 consumed = acpi_handle_dmar_devscope(cp, remaining);
3730 if (consumed <= 0)
3731 break;
3732 else
3733 remaining -= consumed;
3734 }
3735 }
3736
3737 static void
3738 acpi_handle_dmar_rhsa(ACPI_DMAR_RHSA *rhsa)
3739 {
3740
3741 printf("\n");
3742 printf("\tType=RHSA\n");
3743 printf("\tLength=%d\n", rhsa->Header.Length);
3744 printf("\tBaseAddress=0x%016jx\n", (uintmax_t)rhsa->BaseAddress);
3745 printf("\tProximityDomain=0x%08x\n", rhsa->ProximityDomain);
3746 }
3747
3748 static void
3749 acpi_handle_dmar_andd(ACPI_DMAR_ANDD *andd)
3750 {
3751
3752 printf("\n");
3753 printf("\tType=ANDD\n");
3754 printf("\tLength=%d\n", andd->Header.Length);
3755 printf("\tDeviceNumber=%d\n", andd->DeviceNumber);
3756 printf("\tDeviceName=0x%s\n", andd->DeviceName);
3757 }
3758
3759 static int
3760 acpi_handle_dmar_remapping_structure(void *addr, int remaining)
3761 {
3762 ACPI_DMAR_HEADER *hdr = addr;
3763
3764 if (remaining < (int)sizeof(ACPI_DMAR_HEADER))
3765 return (-1);
3766
3767 if (remaining < hdr->Length)
3768 return (-1);
3769
3770 switch (hdr->Type) {
3771 case ACPI_DMAR_TYPE_HARDWARE_UNIT:
3772 acpi_handle_dmar_drhd(addr);
3773 break;
3774 case ACPI_DMAR_TYPE_RESERVED_MEMORY:
3775 acpi_handle_dmar_rmrr(addr);
3776 break;
3777 case ACPI_DMAR_TYPE_ROOT_ATS:
3778 acpi_handle_dmar_atsr(addr);
3779 break;
3780 case ACPI_DMAR_TYPE_HARDWARE_AFFINITY:
3781 acpi_handle_dmar_rhsa(addr);
3782 break;
3783 case ACPI_DMAR_TYPE_NAMESPACE:
3784 acpi_handle_dmar_andd(addr);
3785 break;
3786 default:
3787 printf("\n");
3788 printf("\tType=%d\n", hdr->Type);
3789 printf("\tLength=%d\n", hdr->Length);
3790 break;
3791 }
3792 return (hdr->Length);
3793 }
3794
3795 #ifndef ACPI_DMAR_X2APIC_OPT_OUT
3796 #define ACPI_DMAR_X2APIC_OPT_OUT (0x2)
3797 #endif
3798
3799 static void
3800 acpi_handle_dmar(ACPI_TABLE_HEADER *sdp)
3801 {
3802 char *cp;
3803 int remaining, consumed;
3804 ACPI_TABLE_DMAR *dmar;
3805
3806 printf(BEGIN_COMMENT);
3807 acpi_print_sdt(sdp);
3808 dmar = (ACPI_TABLE_DMAR *)sdp;
3809 printf("\tHost Address Width=%d\n", dmar->Width + 1);
3810
3811 #define PRINTFLAG(var, flag) printflag((var), ACPI_DMAR_## flag, #flag)
3812
3813 printf("\tFlags=");
3814 PRINTFLAG(dmar->Flags, INTR_REMAP);
3815 PRINTFLAG(dmar->Flags, X2APIC_OPT_OUT);
3816 PRINTFLAG(dmar->Flags, X2APIC_MODE);
3817 PRINTFLAG_END();
3818
3819 #undef PRINTFLAG
3820
3821 remaining = sdp->Length - sizeof(ACPI_TABLE_DMAR);
3822 while (remaining > 0) {
3823 cp = (char *)sdp + sdp->Length - remaining;
3824 consumed = acpi_handle_dmar_remapping_structure(cp, remaining);
3825 if (consumed <= 0)
3826 break;
3827 else
3828 remaining -= consumed;
3829 }
3830
3831 printf(END_COMMENT);
3832 }
3833
3834 static void
3835 acpi_handle_uefi(ACPI_TABLE_HEADER *sdp)
3836 {
3837 ACPI_TABLE_UEFI *uefi;
3838 char *uuidstr;
3839 uint32_t status;
3840
3841 printf(BEGIN_COMMENT);
3842 acpi_print_sdt(sdp);
3843 uefi = (ACPI_TABLE_UEFI *)sdp;
3844
3845 uuid_to_string((uuid_t *)(uefi->Identifier),
3846 &uuidstr, &status);
3847 if (status != uuid_s_ok)
3848 errx(1, "uuid_to_string: status=%u", status);
3849 printf("\tUUID=%s\n", uuidstr);
3850 free(uuidstr);
3851
3852 printf("\tDataOffset=%04hx\n", uefi->DataOffset);
3853 /* XXX need write */
3854
3855 printf(END_COMMENT);
3856 }
3857
3858 static void
3859 acpi_handle_waet(ACPI_TABLE_HEADER *sdp)
3860 {
3861 ACPI_TABLE_WAET *waet;
3862
3863 printf(BEGIN_COMMENT);
3864 acpi_print_sdt(sdp);
3865 waet = (ACPI_TABLE_WAET *)sdp;
3866
3867 printf("\tRTC Timer={");
3868 if (waet->Flags & ACPI_WAET_RTC_NO_ACK)
3869 printf("No ACK required");
3870 else
3871 printf("default behaviour");
3872 printf("}\n");
3873 printf("\t ACPI PM Timer={");
3874 if (waet->Flags & ACPI_WAET_TIMER_ONE_READ)
3875 printf("One Read sufficient");
3876 else
3877 printf("default behaviour");
3878 printf("}\n");
3879
3880 printf(END_COMMENT);
3881 }
3882
3883 static void
3884 acpi_print_wdat_action(ACPI_WHEA_HEADER *whea)
3885 {
3886 printf("\tACTION={");
3887 switch (whea->Action) {
3888 case ACPI_WDAT_RESET:
3889 printf("RESET");
3890 break;
3891 case ACPI_WDAT_GET_CURRENT_COUNTDOWN:
3892 printf("GET_CURRENT_COUNTDOWN");
3893 break;
3894 case ACPI_WDAT_GET_COUNTDOWN:
3895 printf("GET_COUNTDOWN");
3896 break;
3897 case ACPI_WDAT_SET_COUNTDOWN:
3898 printf("SET_COUNTDOWN");
3899 break;
3900 case ACPI_WDAT_GET_RUNNING_STATE:
3901 printf("GET_RUNNING_STATE");
3902 break;
3903 case ACPI_WDAT_SET_RUNNING_STATE:
3904 printf("SET_RUNNING_STATE");
3905 break;
3906 case ACPI_WDAT_GET_STOPPED_STATE:
3907 printf("GET_STOPPED_STATE");
3908 break;
3909 case ACPI_WDAT_SET_STOPPED_STATE:
3910 printf("SET_STOPPED_STATE");
3911 break;
3912 case ACPI_WDAT_GET_REBOOT:
3913 printf("GET_REBOOT");
3914 break;
3915 case ACPI_WDAT_SET_REBOOT:
3916 printf("SET_REBOOT");
3917 break;
3918 case ACPI_WDAT_GET_SHUTDOWN:
3919 printf("GET_SHUTDOWN");
3920 break;
3921 case ACPI_WDAT_SET_SHUTDOWN:
3922 printf("SET_SHUTDOWN");
3923 break;
3924 case ACPI_WDAT_GET_STATUS:
3925 printf("GET_STATUS");
3926 break;
3927 case ACPI_WDAT_SET_STATUS:
3928 printf("SET_STATUS");
3929 break;
3930 case ACPI_WDAT_ACTION_RESERVED:
3931 printf("ACTION_RESERVED");
3932 break;
3933 default:
3934 printf("%d", whea->Action);
3935 break;
3936 }
3937 printf("}\n");
3938 }
3939
3940 static void
3941 acpi_print_wdat_instruction(ACPI_WHEA_HEADER *whea)
3942 {
3943 uint32_t ins;
3944
3945 ins = whea->Instruction & ~ACPI_WDAT_PRESERVE_REGISTER;
3946
3947 printf("\tINSTRUCTION={");
3948 switch (ins) {
3949 case ACPI_WDAT_READ_VALUE:
3950 printf("READ_VALUE");
3951 break;
3952 case ACPI_WDAT_READ_COUNTDOWN:
3953 printf("READ_COUNTDOWN");
3954 break;
3955 case ACPI_WDAT_WRITE_VALUE:
3956 printf("WRITE_VALUE");
3957 break;
3958 case ACPI_WDAT_WRITE_COUNTDOWN:
3959 printf("WRITE_COUNTDOWN");
3960 break;
3961 case ACPI_WDAT_INSTRUCTION_RESERVED:
3962 printf("INSTRUCTION_RESERVED");
3963 break;
3964 default:
3965 printf("%d", ins);
3966 break;
3967 }
3968
3969 if (whea->Instruction & ACPI_WDAT_PRESERVE_REGISTER)
3970 printf(", Preserve Register");
3971
3972 printf("}\n");
3973 }
3974
3975 static void
3976 acpi_handle_wdat(ACPI_TABLE_HEADER *sdp)
3977 {
3978 ACPI_TABLE_WDAT *wdat;
3979 ACPI_WHEA_HEADER *whea;
3980 ACPI_WDAT_ENTRY *wdat_pos;
3981 u_int i;
3982
3983 printf(BEGIN_COMMENT);
3984 acpi_print_sdt(sdp);
3985 wdat = (ACPI_TABLE_WDAT *)sdp;
3986
3987 printf("\tHeader Length=%d\n", wdat->HeaderLength);
3988
3989 acpi_print_pci_sbdf(wdat->PciSegment, wdat->PciBus, wdat->PciDevice,
3990 wdat->PciFunction);
3991 printf("\n\tTimer Counter Period=%d msec\n", wdat->TimerPeriod);
3992 printf("\tTimer Maximum Counter Value=%d\n", wdat->MaxCount);
3993 printf("\tTimer Minimum Counter Value=%d\n", wdat->MinCount);
3994
3995 printf("\tFlags={");
3996 if (wdat->Flags & ACPI_WDAT_ENABLED)
3997 printf("ENABLED");
3998 if (wdat->Flags & ACPI_WDAT_STOPPED)
3999 printf(", STOPPED");
4000 printf("}\n");
4001
4002 wdat_pos = (ACPI_WDAT_ENTRY *)((char *)wdat + sizeof(ACPI_TABLE_WDAT));
4003
4004 for (i = 0; i < wdat->Entries; i++) {
4005 whea = (ACPI_WHEA_HEADER *)wdat_pos;
4006 acpi_print_whea(whea,
4007 acpi_print_wdat_action, acpi_print_wdat_instruction,
4008 NULL);
4009 wdat_pos++;
4010 }
4011 printf(END_COMMENT);
4012 }
4013
4014 static void
4015 acpi_handle_wddt(ACPI_TABLE_HEADER *sdp)
4016 {
4017 ACPI_TABLE_WDDT *wddt;
4018
4019 printf(BEGIN_COMMENT);
4020 acpi_print_sdt(sdp);
4021 wddt = (ACPI_TABLE_WDDT *)sdp;
4022
4023 printf("\tSpecVersion=%04hx\n", wddt->SpecVersion);
4024 printf("\tTableVersion=%04hx\n", wddt->TableVersion);
4025 printf("\tPciVendorID=%04hx\n", wddt->PciVendorId);
4026 printf("\tAddress=");
4027 acpi_print_gas(&wddt->Address);
4028 printf("\n\tTimer Maximum Counter Value=%d\n", wddt->MaxCount);
4029 printf("\tTimer Minimum Counter Value=%d\n", wddt->MinCount);
4030 printf("\tTimer Counter Period=%d\n", wddt->Period);
4031
4032 #define PRINTFLAG(var, flag) printflag((var), ACPI_WDDT_## flag, #flag)
4033
4034 printf("\tStatus=");
4035 PRINTFLAG(wddt->Status, AVAILABLE);
4036 PRINTFLAG(wddt->Status, ACTIVE);
4037 PRINTFLAG(wddt->Status, TCO_OS_OWNED);
4038 PRINTFLAG(wddt->Status, USER_RESET);
4039 PRINTFLAG(wddt->Status, WDT_RESET);
4040 PRINTFLAG(wddt->Status, POWER_FAIL);
4041 PRINTFLAG(wddt->Status, UNKNOWN_RESET);
4042 PRINTFLAG_END();
4043
4044 printf("\tCapability=");
4045 PRINTFLAG(wddt->Capability, AUTO_RESET);
4046 PRINTFLAG(wddt->Capability, ALERT_SUPPORT);
4047 PRINTFLAG_END();
4048
4049 #undef PRINTFLAG
4050
4051 printf(END_COMMENT);
4052 }
4053
4054 static void
4055 acpi_handle_wdrt(ACPI_TABLE_HEADER *sdp)
4056 {
4057 ACPI_TABLE_WDRT *wdrt;
4058
4059 printf(BEGIN_COMMENT);
4060 acpi_print_sdt(sdp);
4061 wdrt = (ACPI_TABLE_WDRT *)sdp;
4062
4063 printf("\tControl Register=");
4064 acpi_print_gas(&wdrt->ControlRegister);
4065 printf("\n\tCount Register=");
4066 acpi_print_gas(&wdrt->CountRegister);
4067 printf("\n");
4068 acpi_print_pci(wdrt->PciVendorId, wdrt->PciDeviceId,
4069 wdrt->PciSegment, wdrt->PciBus, wdrt->PciDevice, wdrt->PciFunction);
4070
4071 /* Value must be >= 511 and < 65535 */
4072 printf("\tMaxCount=%d", wdrt->MaxCount);
4073 if (wdrt->MaxCount < 511)
4074 printf(" (Out of Range. Valid range: 511 <= maxcount < 65535)");
4075 printf("\n");
4076
4077 printf("\tUnit={");
4078 switch (wdrt->Units) {
4079 case 0:
4080 printf("1 seconds/count");
4081 break;
4082 case 1:
4083 printf("100 milliseconds/count");
4084 break;
4085 case 2:
4086 printf("10 milliseconds/count");
4087 break;
4088 default:
4089 printf("%d", wdrt->Units);
4090 break;
4091 }
4092 printf("}\n");
4093
4094 printf(END_COMMENT);
4095 }
4096
4097 static void
4098 acpi_print_sdt(ACPI_TABLE_HEADER *sdp)
4099 {
4100 printf(" ");
4101 acpi_print_string(sdp->Signature, ACPI_NAMESEG_SIZE);
4102 printf(": Length=%d, Revision=%d, Checksum=%d",
4103 sdp->Length, sdp->Revision, sdp->Checksum);
4104 if (acpi_checksum(sdp, sdp->Length))
4105 printf(" (Incorrect)");
4106 printf(",\n\tOEMID=");
4107 acpi_print_string(sdp->OemId, ACPI_OEM_ID_SIZE);
4108 printf(", OEM Table ID=");
4109 acpi_print_string(sdp->OemTableId, ACPI_OEM_TABLE_ID_SIZE);
4110 printf(", OEM Revision=0x%x,\n", sdp->OemRevision);
4111 printf("\tCreator ID=");
4112 acpi_print_string(sdp->AslCompilerId, ACPI_NAMESEG_SIZE);
4113 printf(", Creator Revision=0x%x\n", sdp->AslCompilerRevision);
4114 }
4115
4116 void
4117 acpi_print_tabs(unsigned int n)
4118 {
4119
4120 while (n-- > 0)
4121 printf("\t");
4122 }
4123
4124 static void
4125 acpi_dump_bytes(uint8_t *p, uint32_t len, unsigned int ntabs)
4126 {
4127 unsigned int i;
4128
4129 acpi_print_tabs(ntabs);
4130 printf("Data={");
4131 for (i = 0; i < len; i++) {
4132 if (cflag) {
4133 if (i % 64 == 0) {
4134 printf("\n");
4135 acpi_print_tabs(ntabs);
4136 printf(" ");
4137 }else if (i % 16 == 0)
4138 printf(" ");
4139 printf("%c", (p[i] >= ' ' && p[i] <= '~') ? p[i] : '.');
4140 } else {
4141 if (i % 16 == 0) {
4142 printf("\n");
4143 acpi_print_tabs(ntabs + 1);
4144 } else if (i % 8 == 0)
4145 printf(" ");
4146 printf(" %02x", p[i]);
4147 }
4148 }
4149 printf("\n");
4150 acpi_print_tabs(ntabs);
4151 printf("}\n");
4152 }
4153
4154 /* Dump data which has ACPI_TABLE_HEADER */
4155 static void
4156 acpi_dump_table(ACPI_TABLE_HEADER *sdp)
4157 {
4158
4159 acpi_dump_bytes((uint8_t *)sdp, sdp->Length, 1);
4160 }
4161
4162 static void
4163 acpi_print_rsdt(ACPI_TABLE_HEADER *rsdp)
4164 {
4165 ACPI_TABLE_RSDT *rsdt;
4166 ACPI_TABLE_XSDT *xsdt;
4167 int i, entries;
4168
4169 rsdt = (ACPI_TABLE_RSDT *)rsdp;
4170 xsdt = (ACPI_TABLE_XSDT *)rsdp;
4171 printf(BEGIN_COMMENT);
4172 acpi_print_sdt(rsdp);
4173 entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
4174 printf("\tEntries={ ");
4175 for (i = 0; i < entries; i++) {
4176 if (i > 0)
4177 printf(", ");
4178 if (addr_size == 4)
4179 printf("0x%08x", le32toh(rsdt->TableOffsetEntry[i]));
4180 else
4181 printf("0x%016jx",
4182 (uintmax_t)le64toh(xsdt->TableOffsetEntry[i]));
4183 }
4184 printf(" }\n");
4185 printf(END_COMMENT);
4186 }
4187
4188 static const char *acpi_pm_profiles[] = {
4189 "Unspecified", "Desktop", "Mobile", "Workstation",
4190 "Enterprise Server", "SOHO Server", "Appliance PC",
4191 "Performance Server", "Tablet"
4192 };
4193
4194 static void
4195 acpi_print_fadt(ACPI_TABLE_HEADER *sdp)
4196 {
4197 ACPI_TABLE_FADT *fadt;
4198 const char *pm;
4199
4200 fadt = (ACPI_TABLE_FADT *)sdp;
4201 printf(BEGIN_COMMENT);
4202 acpi_print_sdt(sdp);
4203 printf(" \tFACS=0x%x, DSDT=0x%x\n", fadt->Facs,
4204 fadt->Dsdt);
4205 /* XXX ACPI 2.0 eliminated this */
4206 printf("\tINT_MODEL=%s\n", fadt->Model ? "APIC" : "PIC");
4207 if (fadt->PreferredProfile >= sizeof(acpi_pm_profiles) / sizeof(char *))
4208 pm = "Reserved";
4209 else
4210 pm = acpi_pm_profiles[fadt->PreferredProfile];
4211 printf("\tPreferred_PM_Profile=%s (%d)\n", pm, fadt->PreferredProfile);
4212 printf("\tSCI_INT=%d\n", fadt->SciInterrupt);
4213 printf("\tSMI_CMD=0x%x, ", fadt->SmiCommand);
4214 printf("ACPI_ENABLE=0x%x, ", fadt->AcpiEnable);
4215 printf("ACPI_DISABLE=0x%x, ", fadt->AcpiDisable);
4216 printf("S4BIOS_REQ=0x%x\n", fadt->S4BiosRequest);
4217 printf("\tPSTATE_CNT=0x%x\n", fadt->PstateControl);
4218 printf("\tPM1a_EVT_BLK=0x%x-0x%x\n",
4219 fadt->Pm1aEventBlock,
4220 fadt->Pm1aEventBlock + fadt->Pm1EventLength - 1);
4221 if (fadt->Pm1bEventBlock != 0)
4222 printf("\tPM1b_EVT_BLK=0x%x-0x%x\n",
4223 fadt->Pm1bEventBlock,
4224 fadt->Pm1bEventBlock + fadt->Pm1EventLength - 1);
4225 printf("\tPM1a_CNT_BLK=0x%x-0x%x\n",
4226 fadt->Pm1aControlBlock,
4227 fadt->Pm1aControlBlock + fadt->Pm1ControlLength - 1);
4228 if (fadt->Pm1bControlBlock != 0)
4229 printf("\tPM1b_CNT_BLK=0x%x-0x%x\n",
4230 fadt->Pm1bControlBlock,
4231 fadt->Pm1bControlBlock + fadt->Pm1ControlLength - 1);
4232 if (fadt->Pm2ControlBlock != 0)
4233 printf("\tPM2_CNT_BLK=0x%x-0x%x\n",
4234 fadt->Pm2ControlBlock,
4235 fadt->Pm2ControlBlock + fadt->Pm2ControlLength - 1);
4236 if (fadt->PmTimerBlock != 0)
4237 printf("\tPM_TMR_BLK=0x%x-0x%x\n",
4238 fadt->PmTimerBlock,
4239 fadt->PmTimerBlock + fadt->PmTimerLength - 1);
4240 if (fadt->Gpe0Block != 0)
4241 printf("\tGPE0_BLK=0x%x-0x%x\n",
4242 fadt->Gpe0Block,
4243 fadt->Gpe0Block + fadt->Gpe0BlockLength - 1);
4244 if (fadt->Gpe1Block != 0)
4245 printf("\tGPE1_BLK=0x%x-0x%x, GPE1_BASE=%d\n",
4246 fadt->Gpe1Block,
4247 fadt->Gpe1Block + fadt->Gpe1BlockLength - 1,
4248 fadt->Gpe1Base);
4249 if (fadt->CstControl != 0)
4250 printf("\tCST_CNT=0x%x\n", fadt->CstControl);
4251 printf("\tP_LVL2_LAT=%d us, P_LVL3_LAT=%d us\n",
4252 fadt->C2Latency, fadt->C3Latency);
4253 printf("\tFLUSH_SIZE=%d, FLUSH_STRIDE=%d\n",
4254 fadt->FlushSize, fadt->FlushStride);
4255 printf("\tDUTY_OFFSET=%d, DUTY_WIDTH=%d\n",
4256 fadt->DutyOffset, fadt->DutyWidth);
4257 printf("\tDAY_ALRM=%d, MON_ALRM=%d, CENTURY=%d\n",
4258 fadt->DayAlarm, fadt->MonthAlarm, fadt->Century);
4259
4260 #define PRINTFLAG(var, flag) printflag((var), ACPI_FADT_## flag, #flag)
4261
4262 printf("\tIAPC_BOOT_ARCH=");
4263 PRINTFLAG(fadt->BootFlags, LEGACY_DEVICES);
4264 PRINTFLAG(fadt->BootFlags, 8042);
4265 PRINTFLAG(fadt->BootFlags, NO_VGA);
4266 PRINTFLAG(fadt->BootFlags, NO_MSI);
4267 PRINTFLAG(fadt->BootFlags, NO_ASPM);
4268 PRINTFLAG(fadt->BootFlags, NO_CMOS_RTC);
4269 PRINTFLAG_END();
4270
4271 printf("\tFlags=");
4272 PRINTFLAG(fadt->Flags, WBINVD);
4273 PRINTFLAG(fadt->Flags, WBINVD_FLUSH);
4274 PRINTFLAG(fadt->Flags, C1_SUPPORTED);
4275 PRINTFLAG(fadt->Flags, C2_MP_SUPPORTED);
4276 PRINTFLAG(fadt->Flags, POWER_BUTTON);
4277 PRINTFLAG(fadt->Flags, SLEEP_BUTTON);
4278 PRINTFLAG(fadt->Flags, FIXED_RTC);
4279 PRINTFLAG(fadt->Flags, S4_RTC_WAKE);
4280 PRINTFLAG(fadt->Flags, 32BIT_TIMER);
4281 PRINTFLAG(fadt->Flags, DOCKING_SUPPORTED);
4282 PRINTFLAG(fadt->Flags, RESET_REGISTER);
4283 PRINTFLAG(fadt->Flags, SEALED_CASE);
4284 PRINTFLAG(fadt->Flags, HEADLESS);
4285 PRINTFLAG(fadt->Flags, SLEEP_TYPE);
4286 PRINTFLAG(fadt->Flags, PCI_EXPRESS_WAKE);
4287 PRINTFLAG(fadt->Flags, PLATFORM_CLOCK);
4288 PRINTFLAG(fadt->Flags, S4_RTC_VALID);
4289 PRINTFLAG(fadt->Flags, REMOTE_POWER_ON);
4290 PRINTFLAG(fadt->Flags, APIC_CLUSTER);
4291 PRINTFLAG(fadt->Flags, APIC_PHYSICAL);
4292 PRINTFLAG(fadt->Flags, HW_REDUCED);
4293 PRINTFLAG(fadt->Flags, LOW_POWER_S0);
4294 PRINTFLAG_END();
4295
4296 if (sdp->Length < ACPI_FADT_V2_SIZE)
4297 goto out;
4298
4299 if (fadt->Flags & ACPI_FADT_RESET_REGISTER) {
4300 printf("\tRESET_REG=");
4301 acpi_print_gas(&fadt->ResetRegister);
4302 printf(", RESET_VALUE=%#x\n", fadt->ResetValue);
4303 }
4304
4305 printf("\tArmBootFlags=");
4306 PRINTFLAG(fadt->ArmBootFlags, PSCI_COMPLIANT);
4307 PRINTFLAG(fadt->ArmBootFlags, PSCI_USE_HVC);
4308 PRINTFLAG_END();
4309
4310 #undef PRINTFLAG
4311
4312 printf("\tMinorRevision=%u\n", fadt->MinorRevision);
4313
4314 if (sdp->Length < ACPI_FADT_V3_SIZE)
4315 goto out;
4316
4317 printf("\tX_FACS=0x%016jx, ", (uintmax_t)fadt->XFacs);
4318 printf("X_DSDT=0x%016jx\n", (uintmax_t)fadt->XDsdt);
4319 printf("\tX_PM1a_EVT_BLK=");
4320 acpi_print_gas(&fadt->XPm1aEventBlock);
4321 if (fadt->XPm1bEventBlock.Address != 0) {
4322 printf("\n\tX_PM1b_EVT_BLK=");
4323 acpi_print_gas(&fadt->XPm1bEventBlock);
4324 }
4325 printf("\n\tX_PM1a_CNT_BLK=");
4326 acpi_print_gas(&fadt->XPm1aControlBlock);
4327 if (fadt->XPm1bControlBlock.Address != 0) {
4328 printf("\n\tX_PM1b_CNT_BLK=");
4329 acpi_print_gas(&fadt->XPm1bControlBlock);
4330 }
4331 if (fadt->XPm2ControlBlock.Address != 0) {
4332 printf("\n\tX_PM2_CNT_BLK=");
4333 acpi_print_gas(&fadt->XPm2ControlBlock);
4334 }
4335 if (fadt->XPmTimerBlock.Address != 0) {
4336 printf("\n\tX_PM_TMR_BLK=");
4337 acpi_print_gas(&fadt->XPmTimerBlock);
4338 }
4339 if (fadt->XGpe0Block.Address != 0) {
4340 printf("\n\tX_GPE0_BLK=");
4341 acpi_print_gas(&fadt->XGpe0Block);
4342 }
4343 if (fadt->XGpe1Block.Address != 0) {
4344 printf("\n\tX_GPE1_BLK=");
4345 acpi_print_gas(&fadt->XGpe1Block);
4346 }
4347 printf("\n");
4348
4349 if (sdp->Length < ACPI_FADT_V5_SIZE)
4350 goto out;
4351
4352 if (fadt->SleepControl.Address != 0) {
4353 printf("\tSleepControl=");
4354 acpi_print_gas(&fadt->SleepControl);
4355 printf("\n");
4356 }
4357 if (fadt->SleepStatus.Address != 0) {
4358 printf("\n\tSleepStatus=");
4359 acpi_print_gas(&fadt->SleepStatus);
4360 printf("\n");
4361 }
4362
4363 if (sdp->Length < ACPI_FADT_V6_SIZE)
4364 goto out;
4365
4366 printf("\tHypervisorId=0x%016"PRIx64"\n", fadt->HypervisorId);
4367
4368 out:
4369 printf(END_COMMENT);
4370 }
4371
4372 static void
4373 acpi_print_facs(ACPI_TABLE_FACS *facs)
4374 {
4375 printf(BEGIN_COMMENT);
4376 printf(" FACS:\tLength=%u, ", facs->Length);
4377 printf("HwSig=0x%08x, ", facs->HardwareSignature);
4378 printf("Firm_Wake_Vec=0x%08x\n", facs->FirmwareWakingVector);
4379
4380 #define PRINTFLAG(var, flag) printflag((var), ACPI_GLOCK_## flag, #flag)
4381
4382 printf("\tGlobal_Lock=");
4383 PRINTFLAG(facs->GlobalLock, PENDING);
4384 PRINTFLAG(facs->GlobalLock, OWNED);
4385 PRINTFLAG_END();
4386
4387 #undef PRINTFLAG
4388
4389 #define PRINTFLAG(var, flag) printflag((var), ACPI_FACS_## flag, #flag)
4390
4391 printf("\tFlags=");
4392 PRINTFLAG(facs->Flags, S4_BIOS_PRESENT);
4393 PRINTFLAG(facs->Flags, 64BIT_WAKE);
4394 PRINTFLAG_END();
4395
4396 #undef PRINTFLAG
4397
4398 if (facs->XFirmwareWakingVector != 0)
4399 printf("\tX_Firm_Wake_Vec=%016jx\n",
4400 (uintmax_t)facs->XFirmwareWakingVector);
4401 printf("\tVersion=%u\n", facs->Version);
4402
4403 printf("\tOspmFlags={");
4404 if (facs->OspmFlags & ACPI_FACS_64BIT_ENVIRONMENT)
4405 printf("64BIT_WAKE");
4406 printf("}\n");
4407
4408 printf(END_COMMENT);
4409 }
4410
4411 static void
4412 acpi_print_dsdt(ACPI_TABLE_HEADER *dsdp)
4413 {
4414 printf(BEGIN_COMMENT);
4415 acpi_print_sdt(dsdp);
4416 printf(END_COMMENT);
4417 }
4418
4419 int
4420 acpi_checksum(void *p, size_t length)
4421 {
4422 uint8_t *bp;
4423 uint8_t sum;
4424
4425 bp = p;
4426 sum = 0;
4427 while (length--)
4428 sum += *bp++;
4429
4430 return (sum);
4431 }
4432
4433 static ACPI_TABLE_HEADER *
4434 acpi_map_sdt(vm_offset_t pa)
4435 {
4436 ACPI_TABLE_HEADER *sp;
4437
4438 sp = acpi_map_physical(pa, sizeof(ACPI_TABLE_HEADER));
4439 sp = acpi_map_physical(pa, sp->Length);
4440 return (sp);
4441 }
4442
4443 static void
4444 acpi_print_rsd_ptr(ACPI_TABLE_RSDP *rp)
4445 {
4446 printf(BEGIN_COMMENT);
4447 printf(" RSD PTR: OEM=");
4448 acpi_print_string(rp->OemId, ACPI_OEM_ID_SIZE);
4449 printf(", ACPI_Rev=%s (%d)\n", rp->Revision < 2 ? "1.0x" : "2.0x",
4450 rp->Revision);
4451 if (rp->Revision < 2) {
4452 printf("\tRSDT=0x%08x, cksum=%u\n", rp->RsdtPhysicalAddress,
4453 rp->Checksum);
4454 } else {
4455 printf("\tXSDT=0x%016jx, length=%u, cksum=%u\n",
4456 (uintmax_t)rp->XsdtPhysicalAddress, rp->Length,
4457 rp->ExtendedChecksum);
4458 }
4459 printf(END_COMMENT);
4460 }
4461
4462 static void
4463 acpi_handle_rsdt(ACPI_TABLE_HEADER *rsdp)
4464 {
4465 ACPI_TABLE_HEADER *sdp;
4466 ACPI_TABLE_RSDT *rsdt;
4467 ACPI_TABLE_XSDT *xsdt;
4468 vm_offset_t addr = 0;
4469 int entries, i;
4470
4471 acpi_print_rsdt(rsdp);
4472 rsdt = (ACPI_TABLE_RSDT *)rsdp;
4473 xsdt = (ACPI_TABLE_XSDT *)rsdp;
4474 entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
4475 for (i = 0; i < entries; i++) {
4476 if (addr_size == 4)
4477 addr = le32toh(rsdt->TableOffsetEntry[i]);
4478 else
4479 addr = le64toh(xsdt->TableOffsetEntry[i]);
4480 if (addr == 0)
4481 continue;
4482 sdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(addr);
4483 if (acpi_checksum(sdp, sdp->Length)) {
4484 warnx("RSDT entry %d (sig %.4s) is corrupt", i,
4485 sdp->Signature);
4486 if (sflag)
4487 continue;
4488 }
4489 if (!memcmp(sdp->Signature, ACPI_SIG_FADT, 4))
4490 acpi_handle_fadt(sdp);
4491 else if (!memcmp(sdp->Signature, ACPI_SIG_BERT, 4))
4492 acpi_handle_bert(sdp);
4493 else if (!memcmp(sdp->Signature, ACPI_SIG_BGRT, 4))
4494 acpi_handle_bgrt(sdp);
4495 else if (!memcmp(sdp->Signature, ACPI_SIG_BOOT, 4))
4496 acpi_handle_boot(sdp);
4497 else if (!memcmp(sdp->Signature, ACPI_SIG_CPEP, 4))
4498 acpi_handle_cpep(sdp);
4499 else if (!memcmp(sdp->Signature, ACPI_SIG_CSRT, 4))
4500 acpi_handle_csrt(sdp);
4501 else if (!memcmp(sdp->Signature, ACPI_SIG_DBGP, 4))
4502 acpi_handle_dbgp(sdp);
4503 else if (!memcmp(sdp->Signature, ACPI_SIG_DBG2, 4))
4504 acpi_handle_dbg2(sdp);
4505 else if (!memcmp(sdp->Signature, ACPI_SIG_DMAR, 4))
4506 acpi_handle_dmar(sdp);
4507 else if (!memcmp(sdp->Signature, ACPI_SIG_EINJ, 4))
4508 acpi_handle_einj(sdp);
4509 else if (!memcmp(sdp->Signature, ACPI_SIG_ERST, 4))
4510 acpi_handle_erst(sdp);
4511 else if (!memcmp(sdp->Signature, ACPI_SIG_GTDT, 4))
4512 acpi_handle_gtdt(sdp);
4513 else if (!memcmp(sdp->Signature, ACPI_SIG_MADT, 4))
4514 acpi_handle_madt(sdp);
4515 else if (!memcmp(sdp->Signature, ACPI_SIG_MSCT, 4))
4516 acpi_handle_msct(sdp);
4517 else if (!memcmp(sdp->Signature, ACPI_SIG_HEST, 4))
4518 acpi_handle_hest(sdp);
4519 else if (!memcmp(sdp->Signature, ACPI_SIG_HPET, 4))
4520 acpi_handle_hpet(sdp);
4521 else if (!memcmp(sdp->Signature, ACPI_SIG_IORT, 4))
4522 acpi_handle_iort(sdp);
4523 else if (!memcmp(sdp->Signature, ACPI_SIG_ECDT, 4))
4524 acpi_handle_ecdt(sdp);
4525 else if (!memcmp(sdp->Signature, ACPI_SIG_LPIT, 4))
4526 acpi_handle_lpit(sdp);
4527 else if (!memcmp(sdp->Signature, ACPI_SIG_MCFG, 4))
4528 acpi_handle_mcfg(sdp);
4529 else if (!memcmp(sdp->Signature, ACPI_SIG_PCCT, 4))
4530 acpi_handle_pcct(sdp);
4531 else if (!memcmp(sdp->Signature, ACPI_SIG_PPTT, 4))
4532 acpi_handle_pptt(sdp);
4533 else if (!memcmp(sdp->Signature, ACPI_SIG_SBST, 4))
4534 acpi_handle_sbst(sdp);
4535 else if (!memcmp(sdp->Signature, ACPI_SIG_SLIT, 4))
4536 acpi_handle_slit(sdp);
4537 else if (!memcmp(sdp->Signature, ACPI_SIG_SPCR, 4))
4538 acpi_handle_spcr(sdp);
4539 else if (!memcmp(sdp->Signature, ACPI_SIG_SPMI, 4))
4540 acpi_handle_spmi(sdp);
4541 else if (!memcmp(sdp->Signature, ACPI_SIG_SRAT, 4))
4542 acpi_handle_srat(sdp);
4543 else if (!memcmp(sdp->Signature, ACPI_SIG_TCPA, 4))
4544 acpi_handle_tcpa(sdp);
4545 else if (!memcmp(sdp->Signature, ACPI_SIG_TPM2, 4))
4546 acpi_handle_tpm2(sdp);
4547 else if (!memcmp(sdp->Signature, ACPI_SIG_NFIT, 4))
4548 acpi_handle_nfit(sdp);
4549 else if (!memcmp(sdp->Signature, ACPI_SIG_UEFI, 4))
4550 acpi_handle_uefi(sdp);
4551 else if (!memcmp(sdp->Signature, ACPI_SIG_WAET, 4))
4552 acpi_handle_waet(sdp);
4553 else if (!memcmp(sdp->Signature, ACPI_SIG_WDAT, 4))
4554 acpi_handle_wdat(sdp);
4555 else if (!memcmp(sdp->Signature, ACPI_SIG_WDDT, 4))
4556 acpi_handle_wddt(sdp);
4557 else if (!memcmp(sdp->Signature, ACPI_SIG_WDRT, 4))
4558 acpi_handle_wdrt(sdp);
4559 else {
4560 printf(BEGIN_COMMENT);
4561 acpi_print_sdt(sdp);
4562 printf("\n");
4563 acpi_dump_table(sdp);
4564 printf(END_COMMENT);
4565 }
4566 }
4567 }
4568
4569 ACPI_TABLE_HEADER *
4570 sdt_load_devmem(void)
4571 {
4572 ACPI_TABLE_RSDP *rp;
4573 ACPI_TABLE_HEADER *rsdp;
4574
4575 rp = acpi_find_rsd_ptr();
4576 if (!rp)
4577 errx(EXIT_FAILURE, "Can't find ACPI information");
4578
4579 if (tflag)
4580 acpi_print_rsd_ptr(rp);
4581 if (rp->Revision < 2) {
4582 rsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(rp->RsdtPhysicalAddress);
4583 if (memcmp(rsdp->Signature, "RSDT", 4) != 0 ||
4584 acpi_checksum(rsdp, rsdp->Length) != 0)
4585 errx(EXIT_FAILURE, "RSDT is corrupted");
4586 addr_size = sizeof(uint32_t);
4587 } else {
4588 rsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(rp->XsdtPhysicalAddress);
4589 if (memcmp(rsdp->Signature, "XSDT", 4) != 0 ||
4590 acpi_checksum(rsdp, rsdp->Length) != 0)
4591 errx(EXIT_FAILURE, "XSDT is corrupted");
4592 addr_size = sizeof(uint64_t);
4593 }
4594 return (rsdp);
4595 }
4596
4597 /* Write the DSDT to a file, concatenating any SSDTs (if present). */
4598 static int
4599 write_dsdt(int fd, ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdt)
4600 {
4601 ACPI_TABLE_HEADER sdt;
4602 ACPI_TABLE_HEADER *ssdt;
4603 uint8_t sum;
4604
4605 /* Create a new checksum to account for the DSDT and any SSDTs. */
4606 sdt = *dsdt;
4607 if (rsdt != NULL) {
4608 sdt.Checksum = 0;
4609 sum = acpi_checksum(dsdt + 1, dsdt->Length -
4610 sizeof(ACPI_TABLE_HEADER));
4611 ssdt = sdt_from_rsdt(rsdt, ACPI_SIG_SSDT, NULL);
4612 while (ssdt != NULL) {
4613 sdt.Length += ssdt->Length - sizeof(ACPI_TABLE_HEADER);
4614 sum += acpi_checksum(ssdt + 1,
4615 ssdt->Length - sizeof(ACPI_TABLE_HEADER));
4616 ssdt = sdt_from_rsdt(rsdt, ACPI_SIG_SSDT, ssdt);
4617 }
4618 sum += acpi_checksum(&sdt, sizeof(ACPI_TABLE_HEADER));
4619 sdt.Checksum -= sum;
4620 }
4621
4622 /* Write out the DSDT header and body. */
4623 write(fd, &sdt, sizeof(ACPI_TABLE_HEADER));
4624 write(fd, dsdt + 1, dsdt->Length - sizeof(ACPI_TABLE_HEADER));
4625
4626 /* Write out any SSDTs (if present.) */
4627 if (rsdt != NULL) {
4628 ssdt = sdt_from_rsdt(rsdt, "SSDT", NULL);
4629 while (ssdt != NULL) {
4630 write(fd, ssdt + 1, ssdt->Length -
4631 sizeof(ACPI_TABLE_HEADER));
4632 ssdt = sdt_from_rsdt(rsdt, "SSDT", ssdt);
4633 }
4634 }
4635 return (0);
4636 }
4637
4638 void
4639 dsdt_save_file(char *outfile, ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdp)
4640 {
4641 int fd;
4642 mode_t mode;
4643
4644 assert(outfile != NULL);
4645 mode = S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH;
4646 fd = open(outfile, O_WRONLY | O_CREAT | O_TRUNC, mode);
4647 if (fd == -1) {
4648 perror("dsdt_save_file");
4649 return;
4650 }
4651 write_dsdt(fd, rsdt, dsdp);
4652 close(fd);
4653 }
4654
4655 void
4656 aml_disassemble(ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdp)
4657 {
4658 char buf[MAXPATHLEN], tmpstr[MAXPATHLEN], wrkdir[MAXPATHLEN];
4659 const char *iname = "/acpdump.din";
4660 const char *oname = "/acpdump.dsl";
4661 const char *tmpdir;
4662 FILE *fp;
4663 size_t len;
4664 int fd, status;
4665 pid_t pid;
4666
4667 if (rsdt == NULL)
4668 errx(EXIT_FAILURE, "aml_disassemble: invalid rsdt");
4669 if (dsdp == NULL)
4670 errx(EXIT_FAILURE, "aml_disassemble: invalid dsdp");
4671
4672 tmpdir = getenv("TMPDIR");
4673 if (tmpdir == NULL)
4674 tmpdir = _PATH_TMP;
4675 if (realpath(tmpdir, buf) == NULL) {
4676 perror("realpath tmp dir");
4677 return;
4678 }
4679 len = sizeof(wrkdir) - strlen(iname);
4680 if ((size_t)snprintf(wrkdir, len, "%s/acpidump.XXXXXX", buf) > len-1 ) {
4681 fprintf(stderr, "$TMPDIR too long\n");
4682 return;
4683 }
4684 if (mkdtemp(wrkdir) == NULL) {
4685 perror("mkdtemp tmp working dir");
4686 return;
4687 }
4688 len = (size_t)snprintf(tmpstr, sizeof(tmpstr), "%s%s", wrkdir, iname);
4689 assert(len <= sizeof(tmpstr) - 1);
4690 fd = open(tmpstr, O_CREAT | O_WRONLY, S_IRUSR | S_IWUSR);
4691 if (fd < 0) {
4692 perror("iasl tmp file");
4693 return;
4694 }
4695 write_dsdt(fd, rsdt, dsdp);
4696 close(fd);
4697
4698 /* Run iasl -d on the temp file */
4699 if ((pid = fork()) == 0) {
4700 close(STDOUT_FILENO);
4701 if (vflag == 0)
4702 close(STDERR_FILENO);
4703 execl("/usr/bin/iasl", "iasl", "-d", tmpstr, NULL);
4704 err(EXIT_FAILURE, "exec");
4705 }
4706 if (pid > 0)
4707 wait(&status);
4708 if (unlink(tmpstr) < 0) {
4709 perror("unlink");
4710 goto out;
4711 }
4712 if (pid < 0) {
4713 perror("fork");
4714 goto out;
4715 }
4716 if (status != 0) {
4717 fprintf(stderr, "iast exit status = %d\n", status);
4718 }
4719
4720 /* Dump iasl's output to stdout */
4721 len = (size_t)snprintf(tmpstr, sizeof(tmpstr), "%s%s", wrkdir, oname);
4722 assert(len <= sizeof(tmpstr) - 1);
4723 fp = fopen(tmpstr, "r");
4724 if (unlink(tmpstr) < 0) {
4725 perror("unlink");
4726 goto out;
4727 }
4728 if (fp == NULL) {
4729 perror("iasl tmp file (read)");
4730 goto out;
4731 }
4732 while ((len = fread(buf, 1, sizeof(buf), fp)) > 0)
4733 fwrite(buf, 1, len, stdout);
4734 fclose(fp);
4735
4736 out:
4737 if (rmdir(wrkdir) < 0)
4738 perror("rmdir");
4739 }
4740
4741 void
4742 sdt_print_all(ACPI_TABLE_HEADER *rsdp)
4743 {
4744 acpi_handle_rsdt(rsdp);
4745 }
4746
4747 /* Fetch a table matching the given signature via the RSDT. */
4748 ACPI_TABLE_HEADER *
4749 sdt_from_rsdt(ACPI_TABLE_HEADER *rsdp, const char *sig, ACPI_TABLE_HEADER *last)
4750 {
4751 ACPI_TABLE_HEADER *sdt;
4752 ACPI_TABLE_RSDT *rsdt;
4753 ACPI_TABLE_XSDT *xsdt;
4754 vm_offset_t addr = 0;
4755 int entries, i;
4756
4757 rsdt = (ACPI_TABLE_RSDT *)rsdp;
4758 xsdt = (ACPI_TABLE_XSDT *)rsdp;
4759 entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
4760 for (i = 0; i < entries; i++) {
4761 if (addr_size == 4)
4762 addr = le32toh(rsdt->TableOffsetEntry[i]);
4763 else
4764 addr = le64toh(xsdt->TableOffsetEntry[i]);
4765 if (addr == 0)
4766 continue;
4767 sdt = (ACPI_TABLE_HEADER *)acpi_map_sdt(addr);
4768 if (last != NULL) {
4769 if (sdt == last)
4770 last = NULL;
4771 continue;
4772 }
4773 if (memcmp(sdt->Signature, sig, strlen(sig)))
4774 continue;
4775 if (acpi_checksum(sdt, sdt->Length))
4776 errx(EXIT_FAILURE, "RSDT entry %d is corrupt", i);
4777 return (sdt);
4778 }
4779
4780 return (NULL);
4781 }
4782
4783 ACPI_TABLE_HEADER *
4784 dsdt_from_fadt(ACPI_TABLE_FADT *fadt)
4785 {
4786 ACPI_TABLE_HEADER *sdt;
4787
4788 /* Use the DSDT address if it is version 1, otherwise use XDSDT. */
4789 sdt = (ACPI_TABLE_HEADER *)acpi_map_sdt(
4790 acpi_select_address(fadt->Dsdt, fadt->XDsdt));
4791 if (acpi_checksum(sdt, sdt->Length))
4792 errx(EXIT_FAILURE, "DSDT is corrupt");
4793 return (sdt);
4794 }
4795