xref: /freebsd/usr.sbin/acpi/acpidump/acpi.c (revision 9a41df2a0e6408e9b329bbd8b9e37c2b44461a1b)
1 /*-
2  * Copyright (c) 1998 Doug Rabson
3  * Copyright (c) 2000 Mitsuru IWASAKI <iwasaki@FreeBSD.org>
4  * All rights reserved.
5  *
6  * Redistribution and use in source and binary forms, with or without
7  * modification, are permitted provided that the following conditions
8  * are met:
9  * 1. Redistributions of source code must retain the above copyright
10  *    notice, this list of conditions and the following disclaimer.
11  * 2. Redistributions in binary form must reproduce the above copyright
12  *    notice, this list of conditions and the following disclaimer in the
13  *    documentation and/or other materials provided with the distribution.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
16  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
17  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
18  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
19  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
20  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
21  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
22  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
23  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
24  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
25  * SUCH DAMAGE.
26  *
27  *	$FreeBSD$
28  */
29 
30 #include <sys/param.h>
31 #include <sys/endian.h>
32 #include <sys/stat.h>
33 #include <sys/wait.h>
34 #include <assert.h>
35 #include <err.h>
36 #include <fcntl.h>
37 #include <paths.h>
38 #include <stdio.h>
39 #include <stdint.h>
40 #include <stdlib.h>
41 #include <string.h>
42 #include <unistd.h>
43 
44 #include "acpidump.h"
45 
46 #define BEGIN_COMMENT	"/*\n"
47 #define END_COMMENT	" */\n"
48 
49 static void	acpi_print_string(char *s, size_t length);
50 static void	acpi_print_gas(ACPI_GENERIC_ADDRESS *gas);
51 static int	acpi_get_fadt_revision(ACPI_TABLE_FADT *fadt);
52 static void	acpi_handle_fadt(ACPI_TABLE_HEADER *fadt);
53 static void	acpi_print_cpu(u_char cpu_id);
54 static void	acpi_print_cpu_uid(uint32_t uid, char *uid_string);
55 static void	acpi_print_local_apic(uint32_t apic_id, uint32_t flags);
56 static void	acpi_print_io_apic(uint32_t apic_id, uint32_t int_base,
57 		    uint64_t apic_addr);
58 static void	acpi_print_mps_flags(uint16_t flags);
59 static void	acpi_print_intr(uint32_t intr, uint16_t mps_flags);
60 static void	acpi_print_local_nmi(u_int lint, uint16_t mps_flags);
61 static void	acpi_print_madt(ACPI_SUBTABLE_HEADER *mp);
62 static void	acpi_handle_madt(ACPI_TABLE_HEADER *sdp);
63 static void	acpi_handle_ecdt(ACPI_TABLE_HEADER *sdp);
64 static void	acpi_handle_hpet(ACPI_TABLE_HEADER *sdp);
65 static void	acpi_handle_mcfg(ACPI_TABLE_HEADER *sdp);
66 static void	acpi_handle_slit(ACPI_TABLE_HEADER *sdp);
67 static void	acpi_print_srat_cpu(uint32_t apic_id, uint32_t proximity_domain,
68 		    uint32_t flags);
69 static void	acpi_print_srat_memory(ACPI_SRAT_MEM_AFFINITY *mp);
70 static void	acpi_print_srat(ACPI_SUBTABLE_HEADER *srat);
71 static void	acpi_handle_srat(ACPI_TABLE_HEADER *sdp);
72 static void	acpi_handle_tcpa(ACPI_TABLE_HEADER *sdp);
73 static void	acpi_print_sdt(ACPI_TABLE_HEADER *sdp);
74 static void	acpi_print_fadt(ACPI_TABLE_HEADER *sdp);
75 static void	acpi_print_facs(ACPI_TABLE_FACS *facs);
76 static void	acpi_print_dsdt(ACPI_TABLE_HEADER *dsdp);
77 static ACPI_TABLE_HEADER *acpi_map_sdt(vm_offset_t pa);
78 static void	acpi_print_rsd_ptr(ACPI_TABLE_RSDP *rp);
79 static void	acpi_handle_rsdt(ACPI_TABLE_HEADER *rsdp);
80 static void	acpi_walk_subtables(ACPI_TABLE_HEADER *table, void *first,
81 		    void (*action)(ACPI_SUBTABLE_HEADER *));
82 
83 /* Size of an address. 32-bit for ACPI 1.0, 64-bit for ACPI 2.0 and up. */
84 static int addr_size;
85 
86 /* Strings used in the TCPA table */
87 static const char *tcpa_event_type_strings[] = {
88 	"PREBOOT Certificate",
89 	"POST Code",
90 	"Unused",
91 	"No Action",
92 	"Separator",
93 	"Action",
94 	"Event Tag",
95 	"S-CRTM Contents",
96 	"S-CRTM Version",
97 	"CPU Microcode",
98 	"Platform Config Flags",
99 	"Table of Devices",
100 	"Compact Hash",
101 	"IPL",
102 	"IPL Partition Data",
103 	"Non-Host Code",
104 	"Non-Host Config",
105 	"Non-Host Info"
106 };
107 
108 static const char *TCPA_pcclient_strings[] = {
109 	"<undefined>",
110 	"SMBIOS",
111 	"BIS Certificate",
112 	"POST BIOS ROM Strings",
113 	"ESCD",
114 	"CMOS",
115 	"NVRAM",
116 	"Option ROM Execute",
117 	"Option ROM Configurateion",
118 	"<undefined>",
119 	"Option ROM Microcode Update ",
120 	"S-CRTM Version String",
121 	"S-CRTM Contents",
122 	"POST Contents",
123 	"Table of Devices",
124 };
125 
126 static void
127 acpi_print_string(char *s, size_t length)
128 {
129 	int	c;
130 
131 	/* Trim trailing spaces and NULLs */
132 	while (length > 0 && (s[length - 1] == ' ' || s[length - 1] == '\0'))
133 		length--;
134 
135 	while (length--) {
136 		c = *s++;
137 		putchar(c);
138 	}
139 }
140 
141 static void
142 acpi_print_gas(ACPI_GENERIC_ADDRESS *gas)
143 {
144 	switch(gas->SpaceId) {
145 	case ACPI_GAS_MEMORY:
146 		printf("0x%08lx:%u[%u] (Memory)", (u_long)gas->Address,
147 		       gas->BitOffset, gas->BitWidth);
148 		break;
149 	case ACPI_GAS_IO:
150 		printf("0x%02lx:%u[%u] (IO)", (u_long)gas->Address,
151 		       gas->BitOffset, gas->BitWidth);
152 		break;
153 	case ACPI_GAS_PCI:
154 		printf("%x:%x+0x%x (PCI)", (uint16_t)(gas->Address >> 32),
155 		       (uint16_t)((gas->Address >> 16) & 0xffff),
156 		       (uint16_t)gas->Address);
157 		break;
158 	/* XXX How to handle these below? */
159 	case ACPI_GAS_EMBEDDED:
160 		printf("0x%x:%u[%u] (EC)", (uint16_t)gas->Address,
161 		       gas->BitOffset, gas->BitWidth);
162 		break;
163 	case ACPI_GAS_SMBUS:
164 		printf("0x%x:%u[%u] (SMBus)", (uint16_t)gas->Address,
165 		       gas->BitOffset, gas->BitWidth);
166 		break;
167 	case ACPI_GAS_CMOS:
168 	case ACPI_GAS_PCIBAR:
169 	case ACPI_GAS_DATATABLE:
170 	case ACPI_GAS_FIXED:
171 	default:
172 		printf("0x%08lx (?)", (u_long)gas->Address);
173 		break;
174 	}
175 }
176 
177 /* The FADT revision indicates whether we use the DSDT or X_DSDT addresses. */
178 static int
179 acpi_get_fadt_revision(ACPI_TABLE_FADT *fadt)
180 {
181 	int fadt_revision;
182 
183 	/* Set the FADT revision separately from the RSDP version. */
184 	if (addr_size == 8) {
185 		fadt_revision = 2;
186 
187 		/*
188 		 * A few systems (e.g., IBM T23) have an RSDP that claims
189 		 * revision 2 but the 64 bit addresses are invalid.  If
190 		 * revision 2 and the 32 bit address is non-zero but the
191 		 * 32 and 64 bit versions don't match, prefer the 32 bit
192 		 * version for all subsequent tables.
193 		 */
194 		if (fadt->Facs != 0 &&
195 		    (fadt->XFacs & 0xffffffff) != fadt->Facs)
196 			fadt_revision = 1;
197 	} else
198 		fadt_revision = 1;
199 	return (fadt_revision);
200 }
201 
202 static void
203 acpi_handle_fadt(ACPI_TABLE_HEADER *sdp)
204 {
205 	ACPI_TABLE_HEADER *dsdp;
206 	ACPI_TABLE_FACS	*facs;
207 	ACPI_TABLE_FADT *fadt;
208 	int		fadt_revision;
209 
210 	fadt = (ACPI_TABLE_FADT *)sdp;
211 	acpi_print_fadt(sdp);
212 
213 	fadt_revision = acpi_get_fadt_revision(fadt);
214 	if (fadt_revision == 1)
215 		facs = (ACPI_TABLE_FACS *)acpi_map_sdt(fadt->Facs);
216 	else
217 		facs = (ACPI_TABLE_FACS *)acpi_map_sdt(fadt->XFacs);
218 	if (memcmp(facs->Signature, ACPI_SIG_FACS, 4) != 0 || facs->Length < 64)
219 		errx(1, "FACS is corrupt");
220 	acpi_print_facs(facs);
221 
222 	if (fadt_revision == 1)
223 		dsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(fadt->Dsdt);
224 	else
225 		dsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(fadt->XDsdt);
226 	if (acpi_checksum(dsdp, dsdp->Length))
227 		errx(1, "DSDT is corrupt");
228 	acpi_print_dsdt(dsdp);
229 }
230 
231 static void
232 acpi_walk_subtables(ACPI_TABLE_HEADER *table, void *first,
233     void (*action)(ACPI_SUBTABLE_HEADER *))
234 {
235 	ACPI_SUBTABLE_HEADER *subtable;
236 	char *end;
237 
238 	subtable = first;
239 	end = (char *)table + table->Length;
240 	while ((char *)subtable < end) {
241 		printf("\n");
242 		action(subtable);
243 		subtable = (ACPI_SUBTABLE_HEADER *)((char *)subtable +
244 		    subtable->Length);
245 	}
246 }
247 
248 static void
249 acpi_print_cpu(u_char cpu_id)
250 {
251 
252 	printf("\tACPI CPU=");
253 	if (cpu_id == 0xff)
254 		printf("ALL\n");
255 	else
256 		printf("%d\n", (u_int)cpu_id);
257 }
258 
259 static void
260 acpi_print_cpu_uid(uint32_t uid, char *uid_string)
261 {
262 
263 	printf("\tUID=%d", uid);
264 	if (uid_string != NULL)
265 		printf(" (%s)", uid_string);
266 	printf("\n");
267 }
268 
269 static void
270 acpi_print_local_apic(uint32_t apic_id, uint32_t flags)
271 {
272 
273 	printf("\tFlags={");
274 	if (flags & ACPI_MADT_ENABLED)
275 		printf("ENABLED");
276 	else
277 		printf("DISABLED");
278 	printf("}\n");
279 	printf("\tAPIC ID=%d\n", apic_id);
280 }
281 
282 static void
283 acpi_print_io_apic(uint32_t apic_id, uint32_t int_base, uint64_t apic_addr)
284 {
285 
286 	printf("\tAPIC ID=%d\n", apic_id);
287 	printf("\tINT BASE=%d\n", int_base);
288 	printf("\tADDR=0x%016jx\n", (uintmax_t)apic_addr);
289 }
290 
291 static void
292 acpi_print_mps_flags(uint16_t flags)
293 {
294 
295 	printf("\tFlags={Polarity=");
296 	switch (flags & ACPI_MADT_POLARITY_MASK) {
297 	case ACPI_MADT_POLARITY_CONFORMS:
298 		printf("conforming");
299 		break;
300 	case ACPI_MADT_POLARITY_ACTIVE_HIGH:
301 		printf("active-hi");
302 		break;
303 	case ACPI_MADT_POLARITY_ACTIVE_LOW:
304 		printf("active-lo");
305 		break;
306 	default:
307 		printf("0x%x", flags & ACPI_MADT_POLARITY_MASK);
308 		break;
309 	}
310 	printf(", Trigger=");
311 	switch (flags & ACPI_MADT_TRIGGER_MASK) {
312 	case ACPI_MADT_TRIGGER_CONFORMS:
313 		printf("conforming");
314 		break;
315 	case ACPI_MADT_TRIGGER_EDGE:
316 		printf("edge");
317 		break;
318 	case ACPI_MADT_TRIGGER_LEVEL:
319 		printf("level");
320 		break;
321 	default:
322 		printf("0x%x", (flags & ACPI_MADT_TRIGGER_MASK) >> 2);
323 	}
324 	printf("}\n");
325 }
326 
327 static void
328 acpi_print_intr(uint32_t intr, uint16_t mps_flags)
329 {
330 
331 	printf("\tINTR=%d\n", intr);
332 	acpi_print_mps_flags(mps_flags);
333 }
334 
335 static void
336 acpi_print_local_nmi(u_int lint, uint16_t mps_flags)
337 {
338 
339 	printf("\tLINT Pin=%d\n", lint);
340 	acpi_print_mps_flags(mps_flags);
341 }
342 
343 const char *apic_types[] = { "Local APIC", "IO APIC", "INT Override", "NMI",
344 			     "Local APIC NMI", "Local APIC Override",
345 			     "IO SAPIC", "Local SAPIC", "Platform Interrupt",
346 			     "Local X2APIC", "Local X2APIC NMI" };
347 const char *platform_int_types[] = { "0 (unknown)", "PMI", "INIT",
348 				     "Corrected Platform Error" };
349 
350 static void
351 acpi_print_madt(ACPI_SUBTABLE_HEADER *mp)
352 {
353 	ACPI_MADT_LOCAL_APIC *lapic;
354 	ACPI_MADT_IO_APIC *ioapic;
355 	ACPI_MADT_INTERRUPT_OVERRIDE *over;
356 	ACPI_MADT_NMI_SOURCE *nmi;
357 	ACPI_MADT_LOCAL_APIC_NMI *lapic_nmi;
358 	ACPI_MADT_LOCAL_APIC_OVERRIDE *lapic_over;
359 	ACPI_MADT_IO_SAPIC *iosapic;
360 	ACPI_MADT_LOCAL_SAPIC *lsapic;
361 	ACPI_MADT_INTERRUPT_SOURCE *isrc;
362 	ACPI_MADT_LOCAL_X2APIC *x2apic;
363 	ACPI_MADT_LOCAL_X2APIC_NMI *x2apic_nmi;
364 
365 	if (mp->Type < sizeof(apic_types) / sizeof(apic_types[0]))
366 		printf("\tType=%s\n", apic_types[mp->Type]);
367 	else
368 		printf("\tType=%d (unknown)\n", mp->Type);
369 	switch (mp->Type) {
370 	case ACPI_MADT_TYPE_LOCAL_APIC:
371 		lapic = (ACPI_MADT_LOCAL_APIC *)mp;
372 		acpi_print_cpu(lapic->ProcessorId);
373 		acpi_print_local_apic(lapic->Id, lapic->LapicFlags);
374 		break;
375 	case ACPI_MADT_TYPE_IO_APIC:
376 		ioapic = (ACPI_MADT_IO_APIC *)mp;
377 		acpi_print_io_apic(ioapic->Id, ioapic->GlobalIrqBase,
378 		    ioapic->Address);
379 		break;
380 	case ACPI_MADT_TYPE_INTERRUPT_OVERRIDE:
381 		over = (ACPI_MADT_INTERRUPT_OVERRIDE *)mp;
382 		printf("\tBUS=%d\n", (u_int)over->Bus);
383 		printf("\tIRQ=%d\n", (u_int)over->SourceIrq);
384 		acpi_print_intr(over->GlobalIrq, over->IntiFlags);
385 		break;
386 	case ACPI_MADT_TYPE_NMI_SOURCE:
387 		nmi = (ACPI_MADT_NMI_SOURCE *)mp;
388 		acpi_print_intr(nmi->GlobalIrq, nmi->IntiFlags);
389 		break;
390 	case ACPI_MADT_TYPE_LOCAL_APIC_NMI:
391 		lapic_nmi = (ACPI_MADT_LOCAL_APIC_NMI *)mp;
392 		acpi_print_cpu(lapic_nmi->ProcessorId);
393 		acpi_print_local_nmi(lapic_nmi->Lint, lapic_nmi->IntiFlags);
394 		break;
395 	case ACPI_MADT_TYPE_LOCAL_APIC_OVERRIDE:
396 		lapic_over = (ACPI_MADT_LOCAL_APIC_OVERRIDE *)mp;
397 		printf("\tLocal APIC ADDR=0x%016jx\n",
398 		    (uintmax_t)lapic_over->Address);
399 		break;
400 	case ACPI_MADT_TYPE_IO_SAPIC:
401 		iosapic = (ACPI_MADT_IO_SAPIC *)mp;
402 		acpi_print_io_apic(iosapic->Id, iosapic->GlobalIrqBase,
403 		    iosapic->Address);
404 		break;
405 	case ACPI_MADT_TYPE_LOCAL_SAPIC:
406 		lsapic = (ACPI_MADT_LOCAL_SAPIC *)mp;
407 		acpi_print_cpu(lsapic->ProcessorId);
408 		acpi_print_local_apic(lsapic->Id, lsapic->LapicFlags);
409 		printf("\tAPIC EID=%d\n", (u_int)lsapic->Eid);
410 		if (mp->Length > __offsetof(ACPI_MADT_LOCAL_SAPIC, Uid))
411 			acpi_print_cpu_uid(lsapic->Uid, lsapic->UidString);
412 		break;
413 	case ACPI_MADT_TYPE_INTERRUPT_SOURCE:
414 		isrc = (ACPI_MADT_INTERRUPT_SOURCE *)mp;
415 		if (isrc->Type < sizeof(platform_int_types) /
416 		    sizeof(platform_int_types[0]))
417 			printf("\tType=%s\n", platform_int_types[isrc->Type]);
418 		else
419 			printf("\tType=%d (unknown)\n", isrc->Type);
420 		printf("\tAPIC ID=%d\n", (u_int)isrc->Id);
421 		printf("\tAPIC EID=%d\n", (u_int)isrc->Eid);
422 		printf("\tSAPIC Vector=%d\n", (u_int)isrc->IoSapicVector);
423 		acpi_print_intr(isrc->GlobalIrq, isrc->IntiFlags);
424 		break;
425 	case ACPI_MADT_TYPE_LOCAL_X2APIC:
426 		x2apic = (ACPI_MADT_LOCAL_X2APIC *)mp;
427 		acpi_print_cpu_uid(x2apic->Uid, NULL);
428 		acpi_print_local_apic(x2apic->LocalApicId, x2apic->LapicFlags);
429 		break;
430 	case ACPI_MADT_TYPE_LOCAL_X2APIC_NMI:
431 		x2apic_nmi = (ACPI_MADT_LOCAL_X2APIC_NMI *)mp;
432 		acpi_print_cpu_uid(x2apic_nmi->Uid, NULL);
433 		acpi_print_local_nmi(x2apic_nmi->Lint, x2apic_nmi->IntiFlags);
434 		break;
435 	}
436 }
437 
438 static void
439 acpi_handle_madt(ACPI_TABLE_HEADER *sdp)
440 {
441 	ACPI_TABLE_MADT *madt;
442 
443 	printf(BEGIN_COMMENT);
444 	acpi_print_sdt(sdp);
445 	madt = (ACPI_TABLE_MADT *)sdp;
446 	printf("\tLocal APIC ADDR=0x%08x\n", madt->Address);
447 	printf("\tFlags={");
448 	if (madt->Flags & ACPI_MADT_PCAT_COMPAT)
449 		printf("PC-AT");
450 	printf("}\n");
451 	acpi_walk_subtables(sdp, (madt + 1), acpi_print_madt);
452 	printf(END_COMMENT);
453 }
454 
455 static void
456 acpi_handle_hpet(ACPI_TABLE_HEADER *sdp)
457 {
458 	ACPI_TABLE_HPET *hpet;
459 
460 	printf(BEGIN_COMMENT);
461 	acpi_print_sdt(sdp);
462 	hpet = (ACPI_TABLE_HPET *)sdp;
463 	printf("\tHPET Number=%d\n", hpet->Sequence);
464 	printf("\tADDR=");
465 	acpi_print_gas(&hpet->Address);
466 	printf("\tHW Rev=0x%x\n", hpet->Id & ACPI_HPET_ID_HARDWARE_REV_ID);
467 	printf("\tComparators=%d\n", (hpet->Id & ACPI_HPET_ID_COMPARATORS) >>
468 	    8);
469 	printf("\tCounter Size=%d\n", hpet->Id & ACPI_HPET_ID_COUNT_SIZE_CAP ?
470 	    1 : 0);
471 	printf("\tLegacy IRQ routing capable={");
472 	if (hpet->Id & ACPI_HPET_ID_LEGACY_CAPABLE)
473 		printf("TRUE}\n");
474 	else
475 		printf("FALSE}\n");
476 	printf("\tPCI Vendor ID=0x%04x\n", hpet->Id >> 16);
477 	printf("\tMinimal Tick=%d\n", hpet->MinimumTick);
478 	printf(END_COMMENT);
479 }
480 
481 static void
482 acpi_handle_ecdt(ACPI_TABLE_HEADER *sdp)
483 {
484 	ACPI_TABLE_ECDT *ecdt;
485 
486 	printf(BEGIN_COMMENT);
487 	acpi_print_sdt(sdp);
488 	ecdt = (ACPI_TABLE_ECDT *)sdp;
489 	printf("\tEC_CONTROL=");
490 	acpi_print_gas(&ecdt->Control);
491 	printf("\n\tEC_DATA=");
492 	acpi_print_gas(&ecdt->Data);
493 	printf("\n\tUID=%#x, ", ecdt->Uid);
494 	printf("GPE_BIT=%#x\n", ecdt->Gpe);
495 	printf("\tEC_ID=%s\n", ecdt->Id);
496 	printf(END_COMMENT);
497 }
498 
499 static void
500 acpi_handle_mcfg(ACPI_TABLE_HEADER *sdp)
501 {
502 	ACPI_TABLE_MCFG *mcfg;
503 	ACPI_MCFG_ALLOCATION *alloc;
504 	u_int i, entries;
505 
506 	printf(BEGIN_COMMENT);
507 	acpi_print_sdt(sdp);
508 	mcfg = (ACPI_TABLE_MCFG *)sdp;
509 	entries = (sdp->Length - sizeof(ACPI_TABLE_MCFG)) /
510 	    sizeof(ACPI_MCFG_ALLOCATION);
511 	alloc = (ACPI_MCFG_ALLOCATION *)(mcfg + 1);
512 	for (i = 0; i < entries; i++, alloc++) {
513 		printf("\n");
514 		printf("\tBase Address=0x%016jx\n", alloc->Address);
515 		printf("\tSegment Group=0x%04x\n", alloc->PciSegment);
516 		printf("\tStart Bus=%d\n", alloc->StartBusNumber);
517 		printf("\tEnd Bus=%d\n", alloc->EndBusNumber);
518 	}
519 	printf(END_COMMENT);
520 }
521 
522 static void
523 acpi_handle_slit(ACPI_TABLE_HEADER *sdp)
524 {
525 	ACPI_TABLE_SLIT *slit;
526 	UINT64 i, j;
527 
528 	printf(BEGIN_COMMENT);
529 	acpi_print_sdt(sdp);
530 	slit = (ACPI_TABLE_SLIT *)sdp;
531 	printf("\tLocality Count=%jd\n", slit->LocalityCount);
532 	printf("\n\t      ");
533 	for (i = 0; i < slit->LocalityCount; i++)
534 		printf(" %3jd", i);
535 	printf("\n\t     +");
536 	for (i = 0; i < slit->LocalityCount; i++)
537 		printf("----");
538 	printf("\n");
539 	for (i = 0; i < slit->LocalityCount; i++) {
540 		printf("\t %3jd |", i);
541 		for (j = 0; j < slit->LocalityCount; j++)
542 			printf(" %3d",
543 			    slit->Entry[i * slit->LocalityCount + j]);
544 		printf("\n");
545 	}
546 	printf(END_COMMENT);
547 }
548 
549 static void
550 acpi_print_srat_cpu(uint32_t apic_id, uint32_t proximity_domain,
551     uint32_t flags)
552 {
553 
554 	printf("\tFlags={");
555 	if (flags & ACPI_SRAT_CPU_ENABLED)
556 		printf("ENABLED");
557 	else
558 		printf("DISABLED");
559 	printf("}\n");
560 	printf("\tAPIC ID=%d\n", apic_id);
561 	printf("\tProximity Domain=%d\n", proximity_domain);
562 }
563 
564 static char *
565 acpi_tcpa_evname(struct TCPAevent *event)
566 {
567 	struct TCPApc_event *pc_event;
568 	char *eventname = NULL;
569 
570 	pc_event = (struct TCPApc_event *)(event + 1);
571 
572 	switch(event->event_type) {
573 	case PREBOOT:
574 	case POST_CODE:
575 	case UNUSED:
576 	case NO_ACTION:
577 	case SEPARATOR:
578 	case SCRTM_CONTENTS:
579 	case SCRTM_VERSION:
580 	case CPU_MICROCODE:
581 	case PLATFORM_CONFIG_FLAGS:
582 	case TABLE_OF_DEVICES:
583 	case COMPACT_HASH:
584 	case IPL:
585 	case IPL_PARTITION_DATA:
586 	case NONHOST_CODE:
587 	case NONHOST_CONFIG:
588 	case NONHOST_INFO:
589 		asprintf(&eventname, "%s",
590 		    tcpa_event_type_strings[event->event_type]);
591 		break;
592 
593 	case ACTION:
594 		eventname = calloc(event->event_size + 1, sizeof(char));
595 		memcpy(eventname, pc_event, event->event_size);
596 		break;
597 
598 	case EVENT_TAG:
599 		switch (pc_event->event_id) {
600 		case SMBIOS:
601 		case BIS_CERT:
602 		case CMOS:
603 		case NVRAM:
604 		case OPTION_ROM_EXEC:
605 		case OPTION_ROM_CONFIG:
606 		case S_CRTM_VERSION:
607 		case POST_BIOS_ROM:
608 		case ESCD:
609 		case OPTION_ROM_MICROCODE:
610 		case S_CRTM_CONTENTS:
611 		case POST_CONTENTS:
612 			asprintf(&eventname, "%s",
613 			    TCPA_pcclient_strings[pc_event->event_id]);
614 			break;
615 
616 		default:
617 			asprintf(&eventname, "<unknown tag 0x%02x>",
618 			    pc_event->event_id);
619 			break;
620 		}
621 		break;
622 
623 	default:
624 		asprintf(&eventname, "<unknown 0x%02x>", event->event_type);
625 		break;
626 	}
627 
628 	return eventname;
629 }
630 
631 static void
632 acpi_print_tcpa(struct TCPAevent *event)
633 {
634 	int i;
635 	char *eventname;
636 
637 	eventname = acpi_tcpa_evname(event);
638 
639 	printf("\t%d", event->pcr_index);
640 	printf(" 0x");
641 	for (i = 0; i < 20; i++)
642 		printf("%02x", event->pcr_value[i]);
643 	printf(" [%s]\n", eventname ? eventname : "<unknown>");
644 
645 	free(eventname);
646 }
647 
648 static void
649 acpi_handle_tcpa(ACPI_TABLE_HEADER *sdp)
650 {
651 	struct TCPAbody *tcpa;
652 	struct TCPAevent *event;
653 	uintmax_t len, paddr;
654 	unsigned char *vaddr = NULL;
655 	unsigned char *vend = NULL;
656 
657 	printf(BEGIN_COMMENT);
658 	acpi_print_sdt(sdp);
659 	tcpa = (struct TCPAbody *) sdp;
660 
661 	switch (tcpa->platform_class) {
662 	case ACPI_TCPA_BIOS_CLIENT:
663 		len = tcpa->client.log_max_len;
664 		paddr = tcpa->client.log_start_addr;
665 		break;
666 
667 	case ACPI_TCPA_BIOS_SERVER:
668 		len = tcpa->server.log_max_len;
669 		paddr = tcpa->server.log_start_addr;
670 		break;
671 
672 	default:
673 		printf("XXX");
674 		printf(END_COMMENT);
675 		return;
676 	}
677 	printf("\tClass %u Base Address 0x%jx Length %ju\n\n",
678 	    tcpa->platform_class, paddr, len);
679 
680 	if (len == 0) {
681 		printf("\tEmpty TCPA table\n");
682 		printf(END_COMMENT);
683 		return;
684 	}
685 	if(sdp->Revision == 1){
686 		printf("\tOLD TCPA spec log found. Dumping not supported.\n");
687 		printf(END_COMMENT);
688 		return;
689 	}
690 
691 	vaddr = (unsigned char *)acpi_map_physical(paddr, len);
692 	vend = vaddr + len;
693 
694 	while (vaddr != NULL) {
695 		if ((vaddr + sizeof(struct TCPAevent) >= vend)||
696 		    (vaddr + sizeof(struct TCPAevent) < vaddr))
697 			break;
698 		event = (struct TCPAevent *)(void *)vaddr;
699 		if (vaddr + event->event_size >= vend)
700 			break;
701 		if (vaddr + event->event_size < vaddr)
702 			break;
703 		if (event->event_type == 0 && event->event_size == 0)
704 			break;
705 #if 0
706 		{
707 		unsigned int i, j, k;
708 
709 		printf("\n\tsize %d\n\t\t%p ", event->event_size, vaddr);
710 		for (j = 0, i = 0; i <
711 		    sizeof(struct TCPAevent) + event->event_size; i++) {
712 			printf("%02x ", vaddr[i]);
713 			if ((i+1) % 8 == 0) {
714 				for (k = 0; k < 8; k++)
715 					printf("%c", isprint(vaddr[j+k]) ?
716 					    vaddr[j+k] : '.');
717 				printf("\n\t\t%p ", &vaddr[i + 1]);
718 				j = i + 1;
719 			}
720 		}
721 		printf("\n"); }
722 #endif
723 		acpi_print_tcpa(event);
724 
725 		vaddr += sizeof(struct TCPAevent) + event->event_size;
726 	}
727 
728 	printf(END_COMMENT);
729 }
730 
731 static void
732 acpi_print_srat_memory(ACPI_SRAT_MEM_AFFINITY *mp)
733 {
734 
735 	printf("\tFlags={");
736 	if (mp->Flags & ACPI_SRAT_MEM_ENABLED)
737 		printf("ENABLED");
738 	else
739 		printf("DISABLED");
740 	if (mp->Flags & ACPI_SRAT_MEM_HOT_PLUGGABLE)
741 		printf(",HOT_PLUGGABLE");
742 	if (mp->Flags & ACPI_SRAT_MEM_NON_VOLATILE)
743 		printf(",NON_VOLATILE");
744 	printf("}\n");
745 	printf("\tBase Address=0x%016jx\n", (uintmax_t)mp->BaseAddress);
746 	printf("\tLength=0x%016jx\n", (uintmax_t)mp->Length);
747 	printf("\tProximity Domain=%d\n", mp->ProximityDomain);
748 }
749 
750 const char *srat_types[] = { "CPU", "Memory", "X2APIC" };
751 
752 static void
753 acpi_print_srat(ACPI_SUBTABLE_HEADER *srat)
754 {
755 	ACPI_SRAT_CPU_AFFINITY *cpu;
756 	ACPI_SRAT_X2APIC_CPU_AFFINITY *x2apic;
757 
758 	if (srat->Type < sizeof(srat_types) / sizeof(srat_types[0]))
759 		printf("\tType=%s\n", srat_types[srat->Type]);
760 	else
761 		printf("\tType=%d (unknown)\n", srat->Type);
762 	switch (srat->Type) {
763 	case ACPI_SRAT_TYPE_CPU_AFFINITY:
764 		cpu = (ACPI_SRAT_CPU_AFFINITY *)srat;
765 		acpi_print_srat_cpu(cpu->ApicId,
766 		    cpu->ProximityDomainHi[2] << 24 |
767 		    cpu->ProximityDomainHi[1] << 16 |
768 		    cpu->ProximityDomainHi[0] << 0 |
769 		    cpu->ProximityDomainLo, cpu->Flags);
770 		break;
771 	case ACPI_SRAT_TYPE_MEMORY_AFFINITY:
772 		acpi_print_srat_memory((ACPI_SRAT_MEM_AFFINITY *)srat);
773 		break;
774 	case ACPI_SRAT_TYPE_X2APIC_CPU_AFFINITY:
775 		x2apic = (ACPI_SRAT_X2APIC_CPU_AFFINITY *)srat;
776 		acpi_print_srat_cpu(x2apic->ApicId, x2apic->ProximityDomain,
777 		    x2apic->Flags);
778 		break;
779 	}
780 }
781 
782 static void
783 acpi_handle_srat(ACPI_TABLE_HEADER *sdp)
784 {
785 	ACPI_TABLE_SRAT *srat;
786 
787 	printf(BEGIN_COMMENT);
788 	acpi_print_sdt(sdp);
789 	srat = (ACPI_TABLE_SRAT *)sdp;
790 	printf("\tTable Revision=%d\n", srat->TableRevision);
791 	acpi_walk_subtables(sdp, (srat + 1), acpi_print_srat);
792 	printf(END_COMMENT);
793 }
794 
795 static void
796 acpi_print_sdt(ACPI_TABLE_HEADER *sdp)
797 {
798 	printf("  ");
799 	acpi_print_string(sdp->Signature, ACPI_NAME_SIZE);
800 	printf(": Length=%d, Revision=%d, Checksum=%d,\n",
801 	       sdp->Length, sdp->Revision, sdp->Checksum);
802 	printf("\tOEMID=");
803 	acpi_print_string(sdp->OemId, ACPI_OEM_ID_SIZE);
804 	printf(", OEM Table ID=");
805 	acpi_print_string(sdp->OemTableId, ACPI_OEM_TABLE_ID_SIZE);
806 	printf(", OEM Revision=0x%x,\n", sdp->OemRevision);
807 	printf("\tCreator ID=");
808 	acpi_print_string(sdp->AslCompilerId, ACPI_NAME_SIZE);
809 	printf(", Creator Revision=0x%x\n", sdp->AslCompilerRevision);
810 }
811 
812 static void
813 acpi_print_rsdt(ACPI_TABLE_HEADER *rsdp)
814 {
815 	ACPI_TABLE_RSDT *rsdt;
816 	ACPI_TABLE_XSDT *xsdt;
817 	int	i, entries;
818 	u_long	addr;
819 
820 	rsdt = (ACPI_TABLE_RSDT *)rsdp;
821 	xsdt = (ACPI_TABLE_XSDT *)rsdp;
822 	printf(BEGIN_COMMENT);
823 	acpi_print_sdt(rsdp);
824 	entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
825 	printf("\tEntries={ ");
826 	for (i = 0; i < entries; i++) {
827 		if (i > 0)
828 			printf(", ");
829 		switch (addr_size) {
830 		case 4:
831 			addr = le32toh(rsdt->TableOffsetEntry[i]);
832 			break;
833 		case 8:
834 			addr = le64toh(xsdt->TableOffsetEntry[i]);
835 			break;
836 		default:
837 			addr = 0;
838 		}
839 		assert(addr != 0);
840 		printf("0x%08lx", addr);
841 	}
842 	printf(" }\n");
843 	printf(END_COMMENT);
844 }
845 
846 static const char *acpi_pm_profiles[] = {
847 	"Unspecified", "Desktop", "Mobile", "Workstation",
848 	"Enterprise Server", "SOHO Server", "Appliance PC"
849 };
850 
851 static void
852 acpi_print_fadt(ACPI_TABLE_HEADER *sdp)
853 {
854 	ACPI_TABLE_FADT *fadt;
855 	const char *pm;
856 	char	    sep;
857 
858 	fadt = (ACPI_TABLE_FADT *)sdp;
859 	printf(BEGIN_COMMENT);
860 	acpi_print_sdt(sdp);
861 	printf(" \tFACS=0x%x, DSDT=0x%x\n", fadt->Facs,
862 	       fadt->Dsdt);
863 	printf("\tINT_MODEL=%s\n", fadt->Model ? "APIC" : "PIC");
864 	if (fadt->PreferredProfile >= sizeof(acpi_pm_profiles) / sizeof(char *))
865 		pm = "Reserved";
866 	else
867 		pm = acpi_pm_profiles[fadt->PreferredProfile];
868 	printf("\tPreferred_PM_Profile=%s (%d)\n", pm, fadt->PreferredProfile);
869 	printf("\tSCI_INT=%d\n", fadt->SciInterrupt);
870 	printf("\tSMI_CMD=0x%x, ", fadt->SmiCommand);
871 	printf("ACPI_ENABLE=0x%x, ", fadt->AcpiEnable);
872 	printf("ACPI_DISABLE=0x%x, ", fadt->AcpiDisable);
873 	printf("S4BIOS_REQ=0x%x\n", fadt->S4BiosRequest);
874 	printf("\tPSTATE_CNT=0x%x\n", fadt->PstateControl);
875 	printf("\tPM1a_EVT_BLK=0x%x-0x%x\n",
876 	       fadt->Pm1aEventBlock,
877 	       fadt->Pm1aEventBlock + fadt->Pm1EventLength - 1);
878 	if (fadt->Pm1bEventBlock != 0)
879 		printf("\tPM1b_EVT_BLK=0x%x-0x%x\n",
880 		       fadt->Pm1bEventBlock,
881 		       fadt->Pm1bEventBlock + fadt->Pm1EventLength - 1);
882 	printf("\tPM1a_CNT_BLK=0x%x-0x%x\n",
883 	       fadt->Pm1aControlBlock,
884 	       fadt->Pm1aControlBlock + fadt->Pm1ControlLength - 1);
885 	if (fadt->Pm1bControlBlock != 0)
886 		printf("\tPM1b_CNT_BLK=0x%x-0x%x\n",
887 		       fadt->Pm1bControlBlock,
888 		       fadt->Pm1bControlBlock + fadt->Pm1ControlLength - 1);
889 	if (fadt->Pm2ControlBlock != 0)
890 		printf("\tPM2_CNT_BLK=0x%x-0x%x\n",
891 		       fadt->Pm2ControlBlock,
892 		       fadt->Pm2ControlBlock + fadt->Pm2ControlLength - 1);
893 	printf("\tPM_TMR_BLK=0x%x-0x%x\n",
894 	       fadt->PmTimerBlock,
895 	       fadt->PmTimerBlock + fadt->PmTimerLength - 1);
896 	if (fadt->Gpe0Block != 0)
897 		printf("\tGPE0_BLK=0x%x-0x%x\n",
898 		       fadt->Gpe0Block,
899 		       fadt->Gpe0Block + fadt->Gpe0BlockLength - 1);
900 	if (fadt->Gpe1Block != 0)
901 		printf("\tGPE1_BLK=0x%x-0x%x, GPE1_BASE=%d\n",
902 		       fadt->Gpe1Block,
903 		       fadt->Gpe1Block + fadt->Gpe1BlockLength - 1,
904 		       fadt->Gpe1Base);
905 	if (fadt->CstControl != 0)
906 		printf("\tCST_CNT=0x%x\n", fadt->CstControl);
907 	printf("\tP_LVL2_LAT=%d us, P_LVL3_LAT=%d us\n",
908 	       fadt->C2Latency, fadt->C3Latency);
909 	printf("\tFLUSH_SIZE=%d, FLUSH_STRIDE=%d\n",
910 	       fadt->FlushSize, fadt->FlushStride);
911 	printf("\tDUTY_OFFSET=%d, DUTY_WIDTH=%d\n",
912 	       fadt->DutyOffset, fadt->DutyWidth);
913 	printf("\tDAY_ALRM=%d, MON_ALRM=%d, CENTURY=%d\n",
914 	       fadt->DayAlarm, fadt->MonthAlarm, fadt->Century);
915 
916 #define PRINTFLAG(var, flag) do {			\
917 	if ((var) & ACPI_FADT_## flag) {		\
918 		printf("%c%s", sep, #flag); sep = ',';	\
919 	}						\
920 } while (0)
921 
922 	printf("\tIAPC_BOOT_ARCH=");
923 	sep = '{';
924 	PRINTFLAG(fadt->BootFlags, LEGACY_DEVICES);
925 	PRINTFLAG(fadt->BootFlags, 8042);
926 	PRINTFLAG(fadt->BootFlags, NO_VGA);
927 	PRINTFLAG(fadt->BootFlags, NO_MSI);
928 	PRINTFLAG(fadt->BootFlags, NO_ASPM);
929 	if (fadt->BootFlags != 0)
930 		printf("}");
931 	printf("\n");
932 
933 	printf("\tFlags=");
934 	sep = '{';
935 	PRINTFLAG(fadt->Flags, WBINVD);
936 	PRINTFLAG(fadt->Flags, WBINVD_FLUSH);
937 	PRINTFLAG(fadt->Flags, C1_SUPPORTED);
938 	PRINTFLAG(fadt->Flags, C2_MP_SUPPORTED);
939 	PRINTFLAG(fadt->Flags, POWER_BUTTON);
940 	PRINTFLAG(fadt->Flags, SLEEP_BUTTON);
941 	PRINTFLAG(fadt->Flags, FIXED_RTC);
942 	PRINTFLAG(fadt->Flags, S4_RTC_WAKE);
943 	PRINTFLAG(fadt->Flags, 32BIT_TIMER);
944 	PRINTFLAG(fadt->Flags, DOCKING_SUPPORTED);
945 	PRINTFLAG(fadt->Flags, RESET_REGISTER);
946 	PRINTFLAG(fadt->Flags, SEALED_CASE);
947 	PRINTFLAG(fadt->Flags, HEADLESS);
948 	PRINTFLAG(fadt->Flags, SLEEP_TYPE);
949 	PRINTFLAG(fadt->Flags, PCI_EXPRESS_WAKE);
950 	PRINTFLAG(fadt->Flags, PLATFORM_CLOCK);
951 	PRINTFLAG(fadt->Flags, S4_RTC_VALID);
952 	PRINTFLAG(fadt->Flags, REMOTE_POWER_ON);
953 	PRINTFLAG(fadt->Flags, APIC_CLUSTER);
954 	PRINTFLAG(fadt->Flags, APIC_PHYSICAL);
955 	if (fadt->Flags != 0)
956 		printf("}\n");
957 
958 #undef PRINTFLAG
959 
960 	if (fadt->Flags & ACPI_FADT_RESET_REGISTER) {
961 		printf("\tRESET_REG=");
962 		acpi_print_gas(&fadt->ResetRegister);
963 		printf(", RESET_VALUE=%#x\n", fadt->ResetValue);
964 	}
965 	if (acpi_get_fadt_revision(fadt) > 1) {
966 		printf("\tX_FACS=0x%08lx, ", (u_long)fadt->XFacs);
967 		printf("X_DSDT=0x%08lx\n", (u_long)fadt->XDsdt);
968 		printf("\tX_PM1a_EVT_BLK=");
969 		acpi_print_gas(&fadt->XPm1aEventBlock);
970 		if (fadt->XPm1bEventBlock.Address != 0) {
971 			printf("\n\tX_PM1b_EVT_BLK=");
972 			acpi_print_gas(&fadt->XPm1bEventBlock);
973 		}
974 		printf("\n\tX_PM1a_CNT_BLK=");
975 		acpi_print_gas(&fadt->XPm1aControlBlock);
976 		if (fadt->XPm1bControlBlock.Address != 0) {
977 			printf("\n\tX_PM1b_CNT_BLK=");
978 			acpi_print_gas(&fadt->XPm1bControlBlock);
979 		}
980 		if (fadt->XPm2ControlBlock.Address != 0) {
981 			printf("\n\tX_PM2_CNT_BLK=");
982 			acpi_print_gas(&fadt->XPm2ControlBlock);
983 		}
984 		printf("\n\tX_PM_TMR_BLK=");
985 		acpi_print_gas(&fadt->XPmTimerBlock);
986 		if (fadt->XGpe0Block.Address != 0) {
987 			printf("\n\tX_GPE0_BLK=");
988 			acpi_print_gas(&fadt->XGpe0Block);
989 		}
990 		if (fadt->XGpe1Block.Address != 0) {
991 			printf("\n\tX_GPE1_BLK=");
992 			acpi_print_gas(&fadt->XGpe1Block);
993 		}
994 		printf("\n");
995 	}
996 
997 	printf(END_COMMENT);
998 }
999 
1000 static void
1001 acpi_print_facs(ACPI_TABLE_FACS *facs)
1002 {
1003 	printf(BEGIN_COMMENT);
1004 	printf("  FACS:\tLength=%u, ", facs->Length);
1005 	printf("HwSig=0x%08x, ", facs->HardwareSignature);
1006 	printf("Firm_Wake_Vec=0x%08x\n", facs->FirmwareWakingVector);
1007 
1008 	printf("\tGlobal_Lock=");
1009 	if (facs->GlobalLock != 0) {
1010 		if (facs->GlobalLock & ACPI_GLOCK_PENDING)
1011 			printf("PENDING,");
1012 		if (facs->GlobalLock & ACPI_GLOCK_OWNED)
1013 			printf("OWNED");
1014 	}
1015 	printf("\n");
1016 
1017 	printf("\tFlags=");
1018 	if (facs->Flags & ACPI_FACS_S4_BIOS_PRESENT)
1019 		printf("S4BIOS");
1020 	printf("\n");
1021 
1022 	if (facs->XFirmwareWakingVector != 0) {
1023 		printf("\tX_Firm_Wake_Vec=%08lx\n",
1024 		       (u_long)facs->XFirmwareWakingVector);
1025 	}
1026 	printf("\tVersion=%u\n", facs->Version);
1027 
1028 	printf(END_COMMENT);
1029 }
1030 
1031 static void
1032 acpi_print_dsdt(ACPI_TABLE_HEADER *dsdp)
1033 {
1034 	printf(BEGIN_COMMENT);
1035 	acpi_print_sdt(dsdp);
1036 	printf(END_COMMENT);
1037 }
1038 
1039 int
1040 acpi_checksum(void *p, size_t length)
1041 {
1042 	uint8_t *bp;
1043 	uint8_t sum;
1044 
1045 	bp = p;
1046 	sum = 0;
1047 	while (length--)
1048 		sum += *bp++;
1049 
1050 	return (sum);
1051 }
1052 
1053 static ACPI_TABLE_HEADER *
1054 acpi_map_sdt(vm_offset_t pa)
1055 {
1056 	ACPI_TABLE_HEADER *sp;
1057 
1058 	sp = acpi_map_physical(pa, sizeof(ACPI_TABLE_HEADER));
1059 	sp = acpi_map_physical(pa, sp->Length);
1060 	return (sp);
1061 }
1062 
1063 static void
1064 acpi_print_rsd_ptr(ACPI_TABLE_RSDP *rp)
1065 {
1066 	printf(BEGIN_COMMENT);
1067 	printf("  RSD PTR: OEM=");
1068 	acpi_print_string(rp->OemId, ACPI_OEM_ID_SIZE);
1069 	printf(", ACPI_Rev=%s (%d)\n", rp->Revision < 2 ? "1.0x" : "2.0x",
1070 	       rp->Revision);
1071 	if (rp->Revision < 2) {
1072 		printf("\tRSDT=0x%08x, cksum=%u\n", rp->RsdtPhysicalAddress,
1073 		    rp->Checksum);
1074 	} else {
1075 		printf("\tXSDT=0x%08lx, length=%u, cksum=%u\n",
1076 		    (u_long)rp->XsdtPhysicalAddress, rp->Length,
1077 		    rp->ExtendedChecksum);
1078 	}
1079 	printf(END_COMMENT);
1080 }
1081 
1082 static void
1083 acpi_handle_rsdt(ACPI_TABLE_HEADER *rsdp)
1084 {
1085 	ACPI_TABLE_HEADER *sdp;
1086 	ACPI_TABLE_RSDT *rsdt;
1087 	ACPI_TABLE_XSDT *xsdt;
1088 	vm_offset_t addr;
1089 	int entries, i;
1090 
1091 	acpi_print_rsdt(rsdp);
1092 	rsdt = (ACPI_TABLE_RSDT *)rsdp;
1093 	xsdt = (ACPI_TABLE_XSDT *)rsdp;
1094 	entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
1095 	for (i = 0; i < entries; i++) {
1096 		switch (addr_size) {
1097 		case 4:
1098 			addr = le32toh(rsdt->TableOffsetEntry[i]);
1099 			break;
1100 		case 8:
1101 			addr = le64toh(xsdt->TableOffsetEntry[i]);
1102 			break;
1103 		default:
1104 			assert((addr = 0));
1105 		}
1106 
1107 		sdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(addr);
1108 		if (acpi_checksum(sdp, sdp->Length)) {
1109 			warnx("RSDT entry %d (sig %.4s) is corrupt", i,
1110 			    sdp->Signature);
1111 			continue;
1112 		}
1113 		if (!memcmp(sdp->Signature, ACPI_SIG_FADT, 4))
1114 			acpi_handle_fadt(sdp);
1115 		else if (!memcmp(sdp->Signature, ACPI_SIG_MADT, 4))
1116 			acpi_handle_madt(sdp);
1117 		else if (!memcmp(sdp->Signature, ACPI_SIG_HPET, 4))
1118 			acpi_handle_hpet(sdp);
1119 		else if (!memcmp(sdp->Signature, ACPI_SIG_ECDT, 4))
1120 			acpi_handle_ecdt(sdp);
1121 		else if (!memcmp(sdp->Signature, ACPI_SIG_MCFG, 4))
1122 			acpi_handle_mcfg(sdp);
1123 		else if (!memcmp(sdp->Signature, ACPI_SIG_SLIT, 4))
1124 			acpi_handle_slit(sdp);
1125 		else if (!memcmp(sdp->Signature, ACPI_SIG_SRAT, 4))
1126 			acpi_handle_srat(sdp);
1127 		else if (!memcmp(sdp->Signature, ACPI_SIG_TCPA, 4))
1128 			acpi_handle_tcpa(sdp);
1129 		else {
1130 			printf(BEGIN_COMMENT);
1131 			acpi_print_sdt(sdp);
1132 			printf(END_COMMENT);
1133 		}
1134 	}
1135 }
1136 
1137 ACPI_TABLE_HEADER *
1138 sdt_load_devmem(void)
1139 {
1140 	ACPI_TABLE_RSDP *rp;
1141 	ACPI_TABLE_HEADER *rsdp;
1142 
1143 	rp = acpi_find_rsd_ptr();
1144 	if (!rp)
1145 		errx(1, "Can't find ACPI information");
1146 
1147 	if (tflag)
1148 		acpi_print_rsd_ptr(rp);
1149 	if (rp->Revision < 2) {
1150 		rsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(rp->RsdtPhysicalAddress);
1151 		if (memcmp(rsdp->Signature, "RSDT", 4) != 0 ||
1152 		    acpi_checksum(rsdp, rsdp->Length) != 0)
1153 			errx(1, "RSDT is corrupted");
1154 		addr_size = sizeof(uint32_t);
1155 	} else {
1156 		rsdp = (ACPI_TABLE_HEADER *)acpi_map_sdt(rp->XsdtPhysicalAddress);
1157 		if (memcmp(rsdp->Signature, "XSDT", 4) != 0 ||
1158 		    acpi_checksum(rsdp, rsdp->Length) != 0)
1159 			errx(1, "XSDT is corrupted");
1160 		addr_size = sizeof(uint64_t);
1161 	}
1162 	return (rsdp);
1163 }
1164 
1165 /* Write the DSDT to a file, concatenating any SSDTs (if present). */
1166 static int
1167 write_dsdt(int fd, ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdt)
1168 {
1169 	ACPI_TABLE_HEADER sdt;
1170 	ACPI_TABLE_HEADER *ssdt;
1171 	uint8_t sum;
1172 
1173 	/* Create a new checksum to account for the DSDT and any SSDTs. */
1174 	sdt = *dsdt;
1175 	if (rsdt != NULL) {
1176 		sdt.Checksum = 0;
1177 		sum = acpi_checksum(dsdt + 1, dsdt->Length -
1178 		    sizeof(ACPI_TABLE_HEADER));
1179 		ssdt = sdt_from_rsdt(rsdt, ACPI_SIG_SSDT, NULL);
1180 		while (ssdt != NULL) {
1181 			sdt.Length += ssdt->Length - sizeof(ACPI_TABLE_HEADER);
1182 			sum += acpi_checksum(ssdt + 1,
1183 			    ssdt->Length - sizeof(ACPI_TABLE_HEADER));
1184 			ssdt = sdt_from_rsdt(rsdt, ACPI_SIG_SSDT, ssdt);
1185 		}
1186 		sum += acpi_checksum(&sdt, sizeof(ACPI_TABLE_HEADER));
1187 		sdt.Checksum -= sum;
1188 	}
1189 
1190 	/* Write out the DSDT header and body. */
1191 	write(fd, &sdt, sizeof(ACPI_TABLE_HEADER));
1192 	write(fd, dsdt + 1, dsdt->Length - sizeof(ACPI_TABLE_HEADER));
1193 
1194 	/* Write out any SSDTs (if present.) */
1195 	if (rsdt != NULL) {
1196 		ssdt = sdt_from_rsdt(rsdt, "SSDT", NULL);
1197 		while (ssdt != NULL) {
1198 			write(fd, ssdt + 1, ssdt->Length -
1199 			    sizeof(ACPI_TABLE_HEADER));
1200 			ssdt = sdt_from_rsdt(rsdt, "SSDT", ssdt);
1201 		}
1202 	}
1203 	return (0);
1204 }
1205 
1206 void
1207 dsdt_save_file(char *outfile, ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdp)
1208 {
1209 	int	fd;
1210 	mode_t	mode;
1211 
1212 	assert(outfile != NULL);
1213 	mode = S_IRUSR | S_IWUSR | S_IRGRP | S_IROTH;
1214 	fd = open(outfile, O_WRONLY | O_CREAT | O_TRUNC, mode);
1215 	if (fd == -1) {
1216 		perror("dsdt_save_file");
1217 		return;
1218 	}
1219 	write_dsdt(fd, rsdt, dsdp);
1220 	close(fd);
1221 }
1222 
1223 void
1224 aml_disassemble(ACPI_TABLE_HEADER *rsdt, ACPI_TABLE_HEADER *dsdp)
1225 {
1226 	char buf[PATH_MAX], tmpstr[PATH_MAX];
1227 	const char *tmpdir;
1228 	char *tmpext;
1229 	FILE *fp;
1230 	size_t len;
1231 	int fd;
1232 
1233 	tmpdir = getenv("TMPDIR");
1234 	if (tmpdir == NULL)
1235 		tmpdir = _PATH_TMP;
1236 	strncpy(tmpstr, tmpdir, sizeof(tmpstr));
1237 	if (realpath(tmpstr, buf) == NULL) {
1238 		perror("realpath tmp dir");
1239 		return;
1240 	}
1241 	strncpy(tmpstr, buf, sizeof(tmpstr));
1242 	strncat(tmpstr, "/acpidump.", sizeof(tmpstr) - strlen(buf));
1243 	len = strlen(tmpstr);
1244 	tmpext = tmpstr + len;
1245 	strncpy(tmpext, "XXXXXX", sizeof(tmpstr) - len);
1246 	fd = mkstemp(tmpstr);
1247 	if (fd < 0) {
1248 		perror("iasl tmp file");
1249 		return;
1250 	}
1251 	write_dsdt(fd, rsdt, dsdp);
1252 	close(fd);
1253 
1254 	/* Run iasl -d on the temp file */
1255 	if (fork() == 0) {
1256 		close(STDOUT_FILENO);
1257 		if (vflag == 0)
1258 			close(STDERR_FILENO);
1259 		execl("/usr/sbin/iasl", "iasl", "-d", tmpstr, NULL);
1260 		err(1, "exec");
1261 	}
1262 
1263 	wait(NULL);
1264 	unlink(tmpstr);
1265 
1266 	/* Dump iasl's output to stdout */
1267 	strncpy(tmpext, "dsl", sizeof(tmpstr) - len);
1268 	fp = fopen(tmpstr, "r");
1269 	unlink(tmpstr);
1270 	if (fp == NULL) {
1271 		perror("iasl tmp file (read)");
1272 		return;
1273 	}
1274 	while ((len = fread(buf, 1, sizeof(buf), fp)) > 0)
1275 		fwrite(buf, 1, len, stdout);
1276 	fclose(fp);
1277 }
1278 
1279 void
1280 sdt_print_all(ACPI_TABLE_HEADER *rsdp)
1281 {
1282 	acpi_handle_rsdt(rsdp);
1283 }
1284 
1285 /* Fetch a table matching the given signature via the RSDT. */
1286 ACPI_TABLE_HEADER *
1287 sdt_from_rsdt(ACPI_TABLE_HEADER *rsdp, const char *sig, ACPI_TABLE_HEADER *last)
1288 {
1289 	ACPI_TABLE_HEADER *sdt;
1290 	ACPI_TABLE_RSDT *rsdt;
1291 	ACPI_TABLE_XSDT *xsdt;
1292 	vm_offset_t addr;
1293 	int entries, i;
1294 
1295 	rsdt = (ACPI_TABLE_RSDT *)rsdp;
1296 	xsdt = (ACPI_TABLE_XSDT *)rsdp;
1297 	entries = (rsdp->Length - sizeof(ACPI_TABLE_HEADER)) / addr_size;
1298 	for (i = 0; i < entries; i++) {
1299 		switch (addr_size) {
1300 		case 4:
1301 			addr = le32toh(rsdt->TableOffsetEntry[i]);
1302 			break;
1303 		case 8:
1304 			addr = le64toh(xsdt->TableOffsetEntry[i]);
1305 			break;
1306 		default:
1307 			assert((addr = 0));
1308 		}
1309 		sdt = (ACPI_TABLE_HEADER *)acpi_map_sdt(addr);
1310 		if (last != NULL) {
1311 			if (sdt == last)
1312 				last = NULL;
1313 			continue;
1314 		}
1315 		if (memcmp(sdt->Signature, sig, strlen(sig)))
1316 			continue;
1317 		if (acpi_checksum(sdt, sdt->Length))
1318 			errx(1, "RSDT entry %d is corrupt", i);
1319 		return (sdt);
1320 	}
1321 
1322 	return (NULL);
1323 }
1324 
1325 ACPI_TABLE_HEADER *
1326 dsdt_from_fadt(ACPI_TABLE_FADT *fadt)
1327 {
1328 	ACPI_TABLE_HEADER	*sdt;
1329 
1330 	/* Use the DSDT address if it is version 1, otherwise use XDSDT. */
1331 	if (acpi_get_fadt_revision(fadt) == 1)
1332 		sdt = (ACPI_TABLE_HEADER *)acpi_map_sdt(fadt->Dsdt);
1333 	else
1334 		sdt = (ACPI_TABLE_HEADER *)acpi_map_sdt(fadt->XDsdt);
1335 	if (acpi_checksum(sdt, sdt->Length))
1336 		errx(1, "DSDT is corrupt\n");
1337 	return (sdt);
1338 }
1339