xref: /illumos-gate/usr/src/cmd/smbios/smbios.c (revision 32ece1f9)
1 /*
2  * CDDL HEADER START
3  *
4  * The contents of this file are subject to the terms of the
5  * Common Development and Distribution License (the "License").
6  * You may not use this file except in compliance with the License.
7  *
8  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9  * or http://www.opensolaris.org/os/licensing.
10  * See the License for the specific language governing permissions
11  * and limitations under the License.
12  *
13  * When distributing Covered Code, include this CDDL HEADER in each
14  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15  * If applicable, add the following below this CDDL HEADER, with the
16  * fields enclosed by brackets "[]" replaced with your own identifying
17  * information: Portions Copyright [yyyy] [name of copyright owner]
18  *
19  * CDDL HEADER END
20  */
21 
22 /*
23  * Copyright 2015 OmniTI Computer Consulting, Inc.  All rights reserved.
24  * Copyright (c) 2017, Joyent, Inc.
25  * Copyright 2010 Sun Microsystems, Inc.  All rights reserved.
26  * Use is subject to license terms.
27  */
28 
29 #include <sys/sysmacros.h>
30 #include <sys/param.h>
31 
32 #include <smbios.h>
33 #include <alloca.h>
34 #include <limits.h>
35 #include <unistd.h>
36 #include <strings.h>
37 #include <stdlib.h>
38 #include <stdarg.h>
39 #include <stdio.h>
40 #include <fcntl.h>
41 #include <errno.h>
42 #include <ctype.h>
43 
44 #define	SMBIOS_SUCCESS	0
45 #define	SMBIOS_ERROR	1
46 #define	SMBIOS_USAGE	2
47 
48 static const char *g_pname;
49 static int g_hdr;
50 
51 static int opt_e;
52 static int opt_i = -1;
53 static int opt_O;
54 static int opt_s;
55 static int opt_t = -1;
56 static int opt_x;
57 
58 /*PRINTFLIKE2*/
59 static void
60 smbios_warn(smbios_hdl_t *shp, const char *format, ...)
61 {
62 	va_list ap;
63 
64 	va_start(ap, format);
65 	(void) vfprintf(stderr, format, ap);
66 	va_end(ap);
67 
68 	if (shp != NULL) {
69 		(void) fprintf(stderr, ": %s",
70 		    smbios_errmsg(smbios_errno(shp)));
71 	}
72 
73 	(void) fprintf(stderr, "\n");
74 }
75 
76 /*PRINTFLIKE2*/
77 static void
78 oprintf(FILE *fp, const char *format, ...)
79 {
80 	va_list ap;
81 
82 	va_start(ap, format);
83 	(void) vfprintf(fp, format, ap);
84 	va_end(ap);
85 }
86 
87 /*PRINTFLIKE3*/
88 static void
89 desc_printf(const char *d, FILE *fp, const char *format, ...)
90 {
91 	va_list ap;
92 
93 	va_start(ap, format);
94 	(void) vfprintf(fp, format, ap);
95 	va_end(ap);
96 
97 	if (d != NULL)
98 		(void) fprintf(fp, " (%s)\n", d);
99 	else
100 		(void) fprintf(fp, "\n");
101 }
102 
103 static void
104 flag_printf(FILE *fp, const char *s, uint_t flags, size_t bits,
105     const char *(*flag_name)(uint_t), const char *(*flag_desc)(uint_t))
106 {
107 	size_t i;
108 
109 	oprintf(fp, "  %s: 0x%x\n", s, flags);
110 
111 	for (i = 0; i < bits; i++) {
112 		uint_t f = 1 << i;
113 		const char *n;
114 
115 		if (!(flags & f))
116 			continue;
117 
118 		if ((n = flag_name(f)) != NULL)
119 			desc_printf(flag_desc(f), fp, "\t%s", n);
120 		else
121 			desc_printf(flag_desc(f), fp, "\t0x%x", f);
122 	}
123 }
124 
125 static void
126 flag64_printf(FILE *fp, const char *s, uint64_t flags, size_t bits,
127     const char *(*flag_name)(uint64_t), const char *(*flag_desc)(uint64_t))
128 {
129 	size_t i;
130 
131 	oprintf(fp, "  %s: 0x%llx\n", s, (u_longlong_t)flags);
132 
133 	for (i = 0; i < bits; i++) {
134 		u_longlong_t f = 1ULL << i;
135 		const char *n;
136 
137 		if (!(flags & f))
138 			continue;
139 
140 		if ((n = flag_name(f)) != NULL)
141 			desc_printf(flag_desc(f), fp, "\t%s", n);
142 		else
143 			desc_printf(flag_desc(f), fp, "\t0x%llx", f);
144 	}
145 }
146 
147 static void
148 id_printf(FILE *fp, const char *s, id_t id)
149 {
150 	switch (id) {
151 	case SMB_ID_NONE:
152 		oprintf(fp, "%sNone\n", s);
153 		break;
154 	case SMB_ID_NOTSUP:
155 		oprintf(fp, "%sNot Supported\n", s);
156 		break;
157 	default:
158 		oprintf(fp, "%s%u\n", s, (uint_t)id);
159 	}
160 }
161 
162 static int
163 check_oem(smbios_hdl_t *shp)
164 {
165 	int i;
166 	int cnt;
167 	int rv;
168 	id_t oem_id;
169 	smbios_struct_t s;
170 	const char **oem_str;
171 
172 	rv = smbios_lookup_type(shp, SMB_TYPE_OEMSTR, &s);
173 	if (rv != 0) {
174 		return (-1);
175 	}
176 
177 	oem_id = s.smbstr_id;
178 
179 	cnt = smbios_info_strtab(shp, oem_id, 0, NULL);
180 	if (cnt > 0) {
181 		oem_str =  alloca(sizeof (char *) * cnt);
182 		(void) smbios_info_strtab(shp, oem_id, cnt, oem_str);
183 
184 		for (i = 0; i < cnt; i++) {
185 			if (strncmp(oem_str[i], SMB_PRMS1,
186 			    strlen(SMB_PRMS1) + 1) == 0) {
187 				return (0);
188 			}
189 		}
190 	}
191 
192 	return (-1);
193 }
194 
195 static void
196 print_smbios_21(smbios_21_entry_t *ep, FILE *fp)
197 {
198 	int i;
199 
200 	oprintf(fp, "Entry Point Anchor Tag: %*.*s\n",
201 	    (int)sizeof (ep->smbe_eanchor), (int)sizeof (ep->smbe_eanchor),
202 	    ep->smbe_eanchor);
203 
204 	oprintf(fp, "Entry Point Checksum: 0x%x\n", ep->smbe_ecksum);
205 	oprintf(fp, "Entry Point Length: %u\n", ep->smbe_elen);
206 	oprintf(fp, "Entry Point Version: %u.%u\n",
207 	    ep->smbe_major, ep->smbe_minor);
208 	oprintf(fp, "Max Structure Size: %u\n", ep->smbe_maxssize);
209 	oprintf(fp, "Entry Point Revision: 0x%x\n", ep->smbe_revision);
210 
211 	oprintf(fp, "Entry Point Revision Data:");
212 	for (i = 0; i < sizeof (ep->smbe_format); i++)
213 		oprintf(fp, " 0x%02x", ep->smbe_format[i]);
214 	oprintf(fp, "\n");
215 
216 	oprintf(fp, "Intermediate Anchor Tag: %*.*s\n",
217 	    (int)sizeof (ep->smbe_ianchor), (int)sizeof (ep->smbe_ianchor),
218 	    ep->smbe_ianchor);
219 
220 	oprintf(fp, "Intermediate Checksum: 0x%x\n", ep->smbe_icksum);
221 	oprintf(fp, "Structure Table Length: %u\n", ep->smbe_stlen);
222 	oprintf(fp, "Structure Table Address: 0x%x\n", ep->smbe_staddr);
223 	oprintf(fp, "Structure Table Entries: %u\n", ep->smbe_stnum);
224 	oprintf(fp, "DMI BCD Revision: 0x%x\n", ep->smbe_bcdrev);
225 }
226 
227 static void
228 print_smbios_30(smbios_30_entry_t *ep, FILE *fp)
229 {
230 	oprintf(fp, "Entry Point Anchor Tag: %*.*s\n",
231 	    (int)sizeof (ep->smbe_eanchor), (int)sizeof (ep->smbe_eanchor),
232 	    ep->smbe_eanchor);
233 
234 	oprintf(fp, "Entry Point Checksum: 0x%x\n", ep->smbe_ecksum);
235 	oprintf(fp, "Entry Point Length: %u\n", ep->smbe_elen);
236 	oprintf(fp, "SMBIOS Version: %u.%u\n",
237 	    ep->smbe_major, ep->smbe_minor);
238 	oprintf(fp, "SMBIOS DocRev: 0x%x\n", ep->smbe_docrev);
239 	oprintf(fp, "Entry Point Revision: 0x%x\n", ep->smbe_revision);
240 
241 	oprintf(fp, "Structure Table Length: %u\n", ep->smbe_stlen);
242 	oprintf(fp, "Structure Table Address: 0x%" PRIx64 "\n",
243 	    ep->smbe_staddr);
244 }
245 
246 static void
247 print_smbios(smbios_hdl_t *shp, FILE *fp)
248 {
249 	smbios_entry_t ep;
250 
251 	switch (smbios_info_smbios(shp, &ep)) {
252 	case SMBIOS_ENTRY_POINT_21:
253 		print_smbios_21(&ep.ep21, fp);
254 		break;
255 	case SMBIOS_ENTRY_POINT_30:
256 		print_smbios_30(&ep.ep30, fp);
257 		break;
258 	}
259 }
260 
261 static void
262 print_common(const smbios_info_t *ip, FILE *fp)
263 {
264 	if (ip->smbi_manufacturer[0] != '\0')
265 		oprintf(fp, "  Manufacturer: %s\n", ip->smbi_manufacturer);
266 	if (ip->smbi_product[0] != '\0')
267 		oprintf(fp, "  Product: %s\n", ip->smbi_product);
268 	if (ip->smbi_version[0] != '\0')
269 		oprintf(fp, "  Version: %s\n", ip->smbi_version);
270 	if (ip->smbi_serial[0] != '\0')
271 		oprintf(fp, "  Serial Number: %s\n", ip->smbi_serial);
272 	if (ip->smbi_asset[0] != '\0')
273 		oprintf(fp, "  Asset Tag: %s\n", ip->smbi_asset);
274 	if (ip->smbi_location[0] != '\0')
275 		oprintf(fp, "  Location Tag: %s\n", ip->smbi_location);
276 	if (ip->smbi_part[0] != '\0')
277 		oprintf(fp, "  Part Number: %s\n", ip->smbi_part);
278 }
279 
280 static void
281 print_bios(smbios_hdl_t *shp, FILE *fp)
282 {
283 	smbios_bios_t b;
284 
285 	(void) smbios_info_bios(shp, &b);
286 
287 	oprintf(fp, "  Vendor: %s\n", b.smbb_vendor);
288 	oprintf(fp, "  Version String: %s\n", b.smbb_version);
289 	oprintf(fp, "  Release Date: %s\n", b.smbb_reldate);
290 	oprintf(fp, "  Address Segment: 0x%x\n", b.smbb_segment);
291 	oprintf(fp, "  ROM Size: %" PRIu64 " bytes\n", b.smbb_extromsize);
292 	oprintf(fp, "  Image Size: %u bytes\n", b.smbb_runsize);
293 
294 	flag64_printf(fp, "Characteristics",
295 	    b.smbb_cflags, sizeof (b.smbb_cflags) * NBBY,
296 	    smbios_bios_flag_name, smbios_bios_flag_desc);
297 
298 	if (b.smbb_nxcflags > SMB_BIOSXB_1) {
299 		flag_printf(fp, "Characteristics Extension Byte 1",
300 		    b.smbb_xcflags[SMB_BIOSXB_1],
301 		    sizeof (b.smbb_xcflags[SMB_BIOSXB_1]) * NBBY,
302 		    smbios_bios_xb1_name, smbios_bios_xb1_desc);
303 	}
304 
305 	if (b.smbb_nxcflags > SMB_BIOSXB_2) {
306 		flag_printf(fp, "Characteristics Extension Byte 2",
307 		    b.smbb_xcflags[SMB_BIOSXB_2],
308 		    sizeof (b.smbb_xcflags[SMB_BIOSXB_2]) * NBBY,
309 		    smbios_bios_xb2_name, smbios_bios_xb2_desc);
310 	}
311 
312 	if (b.smbb_nxcflags > SMB_BIOSXB_BIOS_MIN) {
313 		oprintf(fp, "  Version Number: %u.%u\n",
314 		    b.smbb_biosv.smbv_major, b.smbb_biosv.smbv_minor);
315 	}
316 
317 	if (b.smbb_nxcflags > SMB_BIOSXB_ECFW_MIN) {
318 		oprintf(fp, "  Embedded Ctlr Firmware Version Number: %u.%u\n",
319 		    b.smbb_ecfwv.smbv_major, b.smbb_ecfwv.smbv_minor);
320 	}
321 }
322 
323 static void
324 print_system(smbios_hdl_t *shp, FILE *fp)
325 {
326 	smbios_system_t s;
327 	uint_t i;
328 
329 	(void) smbios_info_system(shp, &s);
330 
331 	oprintf(fp, "  UUID: ");
332 	for (i = 0; i < s.smbs_uuidlen; i++) {
333 		oprintf(fp, "%02x", s.smbs_uuid[i]);
334 		if (i == 3 || i == 5 || i == 7 || i == 9)
335 			oprintf(fp, "-");
336 	}
337 	oprintf(fp, "\n");
338 
339 	desc_printf(smbios_system_wakeup_desc(s.smbs_wakeup),
340 	    fp, "  Wake-Up Event: 0x%x", s.smbs_wakeup);
341 
342 	oprintf(fp, "  SKU Number: %s\n", s.smbs_sku);
343 	oprintf(fp, "  Family: %s\n", s.smbs_family);
344 }
345 
346 static void
347 print_bboard(smbios_hdl_t *shp, id_t id, FILE *fp)
348 {
349 	smbios_bboard_t b;
350 	int chdl_cnt;
351 
352 	(void) smbios_info_bboard(shp, id, &b);
353 
354 	oprintf(fp, "  Chassis: %u\n", (uint_t)b.smbb_chassis);
355 
356 	flag_printf(fp, "Flags", b.smbb_flags, sizeof (b.smbb_flags) * NBBY,
357 	    smbios_bboard_flag_name, smbios_bboard_flag_desc);
358 
359 	desc_printf(smbios_bboard_type_desc(b.smbb_type),
360 	    fp, "  Board Type: 0x%x", b.smbb_type);
361 
362 	chdl_cnt = b.smbb_contn;
363 	if (chdl_cnt != 0) {
364 		id_t *chdl;
365 		uint16_t hdl;
366 		int i, n, cnt;
367 
368 		chdl = alloca(chdl_cnt * sizeof (id_t));
369 		cnt = smbios_info_contains(shp, id, chdl_cnt, chdl);
370 		if (cnt > SMB_CONT_MAX)
371 			return;
372 		n = MIN(chdl_cnt, cnt);
373 
374 		oprintf(fp, "\n");
375 		for (i = 0; i < n; i++) {
376 			hdl = (uint16_t)chdl[i];
377 			oprintf(fp, "  Contained Handle: %u\n", hdl);
378 		}
379 	}
380 }
381 
382 static void
383 print_chassis(smbios_hdl_t *shp, id_t id, FILE *fp)
384 {
385 	smbios_chassis_t c;
386 	int elem_cnt;
387 
388 	(void) smbios_info_chassis(shp, id, &c);
389 
390 	oprintf(fp, "  OEM Data: 0x%x\n", c.smbc_oemdata);
391 	oprintf(fp, "  SKU number: %s\n",
392 	    c.smbc_sku[0] == '\0' ? "<unknown>" : c.smbc_sku);
393 	oprintf(fp, "  Lock Present: %s\n", c.smbc_lock ? "Y" : "N");
394 
395 	desc_printf(smbios_chassis_type_desc(c.smbc_type),
396 	    fp, "  Chassis Type: 0x%x", c.smbc_type);
397 
398 	desc_printf(smbios_chassis_state_desc(c.smbc_bustate),
399 	    fp, "  Boot-Up State: 0x%x", c.smbc_bustate);
400 
401 	desc_printf(smbios_chassis_state_desc(c.smbc_psstate),
402 	    fp, "  Power Supply State: 0x%x", c.smbc_psstate);
403 
404 	desc_printf(smbios_chassis_state_desc(c.smbc_thstate),
405 	    fp, "  Thermal State: 0x%x", c.smbc_thstate);
406 
407 	oprintf(fp, "  Chassis Height: %uu\n", c.smbc_uheight);
408 	oprintf(fp, "  Power Cords: %u\n", c.smbc_cords);
409 
410 	elem_cnt = c.smbc_elems;
411 	oprintf(fp, "  Element Records: %u\n", elem_cnt);
412 
413 	if (elem_cnt > 0) {
414 		id_t *elems;
415 		uint8_t type;
416 		int i, n, cnt;
417 
418 		elems = alloca(c.smbc_elems * sizeof (id_t));
419 		cnt = smbios_info_contains(shp, id, elem_cnt, elems);
420 		if (cnt > SMB_CONT_MAX)
421 			return;
422 		n = MIN(elem_cnt, cnt);
423 
424 		oprintf(fp, "\n");
425 		for (i = 0; i < n; i++) {
426 			type = (uint8_t)elems[i];
427 			if (type & 0x80) {
428 				/* SMBIOS structrure Type */
429 				desc_printf(smbios_type_name(type & 0x7f), fp,
430 				    "  Contained SMBIOS structure Type: %u",
431 				    type & 0x80);
432 			} else {
433 				/* SMBIOS Base Board Type */
434 				desc_printf(smbios_bboard_type_desc(type), fp,
435 				    "  Contained SMBIOS Base Board Type: 0x%x",
436 				    type);
437 			}
438 		}
439 	}
440 }
441 
442 static void
443 print_processor(smbios_hdl_t *shp, id_t id, FILE *fp)
444 {
445 	smbios_processor_t p;
446 	uint_t status;
447 
448 	(void) smbios_info_processor(shp, id, &p);
449 	status = SMB_PRSTATUS_STATUS(p.smbp_status);
450 
451 	desc_printf(smbios_processor_family_desc(p.smbp_family),
452 	    fp, "  Family: %u", p.smbp_family);
453 
454 	if (p.smbp_family2 != 0)
455 		desc_printf(smbios_processor_family_desc(p.smbp_family2),
456 		    fp, "  Family Ext: %u", p.smbp_family2);
457 
458 	oprintf(fp, "  CPUID: 0x%llx\n", (u_longlong_t)p.smbp_cpuid);
459 
460 	desc_printf(smbios_processor_type_desc(p.smbp_type),
461 	    fp, "  Type: %u", p.smbp_type);
462 
463 	desc_printf(smbios_processor_upgrade_desc(p.smbp_upgrade),
464 	    fp, "  Socket Upgrade: %u", p.smbp_upgrade);
465 
466 	oprintf(fp, "  Socket Status: %s\n",
467 	    SMB_PRSTATUS_PRESENT(p.smbp_status) ?
468 	    "Populated" : "Not Populated");
469 
470 	desc_printf(smbios_processor_status_desc(status),
471 	    fp, "  Processor Status: %u", status);
472 
473 	if (SMB_PRV_LEGACY(p.smbp_voltage)) {
474 		oprintf(fp, "  Supported Voltages:");
475 		switch (p.smbp_voltage) {
476 		case SMB_PRV_5V:
477 			oprintf(fp, " 5.0V");
478 			break;
479 		case SMB_PRV_33V:
480 			oprintf(fp, " 3.3V");
481 			break;
482 		case SMB_PRV_29V:
483 			oprintf(fp, " 2.9V");
484 			break;
485 		}
486 		oprintf(fp, "\n");
487 	} else {
488 		oprintf(fp, "  Supported Voltages: %.1fV\n",
489 		    (float)SMB_PRV_VOLTAGE(p.smbp_voltage) / 10);
490 	}
491 
492 	if (p.smbp_corecount != 0) {
493 		if (p.smbp_corecount != 0xff || p.smbp_corecount2 == 0)
494 			oprintf(fp, "  Core Count: %u\n", p.smbp_corecount);
495 		else
496 			oprintf(fp, "  Core Count: %u\n", p.smbp_corecount2);
497 	} else {
498 		oprintf(fp, "  Core Count: Unknown\n");
499 	}
500 
501 	if (p.smbp_coresenabled != 0) {
502 		if (p.smbp_coresenabled != 0xff || p.smbp_coresenabled2 == 0) {
503 			oprintf(fp, "  Cores Enabled: %u\n",
504 			    p.smbp_coresenabled);
505 		} else {
506 			oprintf(fp, "  Cores Enabled: %u\n",
507 			    p.smbp_coresenabled2);
508 		}
509 	} else {
510 		oprintf(fp, "  Cores Enabled: Unknown\n");
511 	}
512 
513 	if (p.smbp_threadcount != 0) {
514 		if (p.smbp_threadcount != 0xff || p.smbp_threadcount2 == 0) {
515 			oprintf(fp, "  Thread Count: %u\n",
516 			    p.smbp_threadcount);
517 		} else {
518 			oprintf(fp, "  Thread Count: %u\n",
519 			    p.smbp_threadcount2);
520 		}
521 	} else {
522 		oprintf(fp, "  Thread Count: Unknown\n");
523 	}
524 
525 	if (p.smbp_cflags) {
526 		flag_printf(fp, "Processor Characteristics",
527 		    p.smbp_cflags, sizeof (p.smbp_cflags) * NBBY,
528 		    smbios_processor_core_flag_name,
529 		    smbios_processor_core_flag_desc);
530 	}
531 
532 	if (p.smbp_clkspeed != 0)
533 		oprintf(fp, "  External Clock Speed: %uMHz\n", p.smbp_clkspeed);
534 	else
535 		oprintf(fp, "  External Clock Speed: Unknown\n");
536 
537 	if (p.smbp_maxspeed != 0)
538 		oprintf(fp, "  Maximum Speed: %uMHz\n", p.smbp_maxspeed);
539 	else
540 		oprintf(fp, "  Maximum Speed: Unknown\n");
541 
542 	if (p.smbp_curspeed != 0)
543 		oprintf(fp, "  Current Speed: %uMHz\n", p.smbp_curspeed);
544 	else
545 		oprintf(fp, "  Current Speed: Unknown\n");
546 
547 	id_printf(fp, "  L1 Cache Handle: ", p.smbp_l1cache);
548 	id_printf(fp, "  L2 Cache Handle: ", p.smbp_l2cache);
549 	id_printf(fp, "  L3 Cache Handle: ", p.smbp_l3cache);
550 }
551 
552 static void
553 print_cache(smbios_hdl_t *shp, id_t id, FILE *fp)
554 {
555 	smbios_cache_t c;
556 
557 	(void) smbios_info_cache(shp, id, &c);
558 
559 	oprintf(fp, "  Level: %u\n", c.smba_level);
560 	oprintf(fp, "  Maximum Installed Size: %" PRIu64 " bytes\n",
561 	    c.smba_maxsize2);
562 
563 	if (c.smba_size2 != 0) {
564 		oprintf(fp, "  Installed Size: %" PRIu64 " bytes\n",
565 		    c.smba_size2);
566 	} else {
567 		oprintf(fp, "  Installed Size: Not Installed\n");
568 	}
569 
570 	if (c.smba_speed != 0)
571 		oprintf(fp, "  Speed: %uns\n", c.smba_speed);
572 	else
573 		oprintf(fp, "  Speed: Unknown\n");
574 
575 	flag_printf(fp, "Supported SRAM Types",
576 	    c.smba_stype, sizeof (c.smba_stype) * NBBY,
577 	    smbios_cache_ctype_name, smbios_cache_ctype_desc);
578 
579 	desc_printf(smbios_cache_ctype_desc(c.smba_ctype),
580 	    fp, "  Current SRAM Type: 0x%x", c.smba_ctype);
581 
582 	desc_printf(smbios_cache_ecc_desc(c.smba_etype),
583 	    fp, "  Error Correction Type: %u", c.smba_etype);
584 
585 	desc_printf(smbios_cache_logical_desc(c.smba_ltype),
586 	    fp, "  Logical Cache Type: %u", c.smba_ltype);
587 
588 	desc_printf(smbios_cache_assoc_desc(c.smba_assoc),
589 	    fp, "  Associativity: %u", c.smba_assoc);
590 
591 	desc_printf(smbios_cache_mode_desc(c.smba_mode),
592 	    fp, "  Mode: %u", c.smba_mode);
593 
594 	desc_printf(smbios_cache_loc_desc(c.smba_location),
595 	    fp, "  Location: %u", c.smba_location);
596 
597 	flag_printf(fp, "Flags", c.smba_flags, sizeof (c.smba_flags) * NBBY,
598 	    smbios_cache_flag_name, smbios_cache_flag_desc);
599 }
600 
601 static void
602 print_port(smbios_hdl_t *shp, id_t id, FILE *fp)
603 {
604 	smbios_port_t p;
605 
606 	(void) smbios_info_port(shp, id, &p);
607 
608 	oprintf(fp, "  Internal Reference Designator: %s\n", p.smbo_iref);
609 	oprintf(fp, "  External Reference Designator: %s\n", p.smbo_eref);
610 
611 	desc_printf(smbios_port_conn_desc(p.smbo_itype),
612 	    fp, "  Internal Connector Type: %u", p.smbo_itype);
613 
614 	desc_printf(smbios_port_conn_desc(p.smbo_etype),
615 	    fp, "  External Connector Type: %u", p.smbo_etype);
616 
617 	desc_printf(smbios_port_type_desc(p.smbo_ptype),
618 	    fp, "  Port Type: %u", p.smbo_ptype);
619 }
620 
621 static void
622 print_slot(smbios_hdl_t *shp, id_t id, FILE *fp)
623 {
624 	smbios_slot_t s;
625 	smbios_version_t v;
626 
627 	(void) smbios_info_slot(shp, id, &s);
628 	smbios_info_smbios_version(shp, &v);
629 
630 	oprintf(fp, "  Reference Designator: %s\n", s.smbl_name);
631 	oprintf(fp, "  Slot ID: 0x%x\n", s.smbl_id);
632 
633 	desc_printf(smbios_slot_type_desc(s.smbl_type),
634 	    fp, "  Type: 0x%x", s.smbl_type);
635 
636 	desc_printf(smbios_slot_width_desc(s.smbl_width),
637 	    fp, "  Width: 0x%x", s.smbl_width);
638 
639 	desc_printf(smbios_slot_usage_desc(s.smbl_usage),
640 	    fp, "  Usage: 0x%x", s.smbl_usage);
641 
642 	desc_printf(smbios_slot_length_desc(s.smbl_length),
643 	    fp, "  Length: 0x%x", s.smbl_length);
644 
645 	flag_printf(fp, "Slot Characteristics 1",
646 	    s.smbl_ch1, sizeof (s.smbl_ch1) * NBBY,
647 	    smbios_slot_ch1_name, smbios_slot_ch1_desc);
648 
649 	flag_printf(fp, "Slot Characteristics 2",
650 	    s.smbl_ch2, sizeof (s.smbl_ch2) * NBBY,
651 	    smbios_slot_ch2_name, smbios_slot_ch2_desc);
652 
653 	if (check_oem(shp) != 0 && (v.smbv_major < 2 || v.smbv_minor < 6))
654 		return;
655 
656 	oprintf(fp, "  Segment Group: %u\n", s.smbl_sg);
657 	oprintf(fp, "  Bus Number: %u\n", s.smbl_bus);
658 	oprintf(fp, "  Device/Function Number: %u\n", s.smbl_df);
659 }
660 
661 static void
662 print_obdevs_ext(smbios_hdl_t *shp, id_t id, FILE *fp)
663 {
664 	boolean_t enabled;
665 	smbios_obdev_ext_t oe;
666 	const char *type;
667 
668 	(void) smbios_info_obdevs_ext(shp, id, &oe);
669 
670 	/*
671 	 * Bit 7 is always whether or not the device is enabled while bits 0:6
672 	 * are the actual device type.
673 	 */
674 	enabled = oe.smboe_dtype >> 7;
675 	type = smbios_onboard_type_desc(oe.smboe_dtype & 0x7f);
676 
677 	oprintf(fp, "  Reference Designator: %s\n", oe.smboe_name);
678 	oprintf(fp, "  Device Enabled: %s\n", enabled == B_TRUE ? "true" :
679 	    "false");
680 	oprintf(fp, "  Device Type: %s\n", type);
681 	oprintf(fp, "  Device Type Instance: %u\n", oe.smboe_dti);
682 	oprintf(fp, "  Segment Group Number: %u\n", oe.smboe_sg);
683 	oprintf(fp, "  Bus Number: %u\n", oe.smboe_bus);
684 	oprintf(fp, "  Device/Function Number: %u\n", oe.smboe_df);
685 }
686 
687 static void
688 print_obdevs(smbios_hdl_t *shp, id_t id, FILE *fp)
689 {
690 	smbios_obdev_t *argv;
691 	int i, argc;
692 
693 	if ((argc = smbios_info_obdevs(shp, id, 0, NULL)) > 0) {
694 		argv = alloca(sizeof (smbios_obdev_t) * argc);
695 		(void) smbios_info_obdevs(shp, id, argc, argv);
696 		for (i = 0; i < argc; i++)
697 			oprintf(fp, "  %s\n", argv[i].smbd_name);
698 	}
699 }
700 
701 static void
702 print_strtab(smbios_hdl_t *shp, id_t id, FILE *fp)
703 {
704 	const char **argv;
705 	int i, argc;
706 
707 	if ((argc = smbios_info_strtab(shp, id, 0, NULL)) > 0) {
708 		argv = alloca(sizeof (char *) * argc);
709 		(void) smbios_info_strtab(shp, id, argc, argv);
710 		for (i = 0; i < argc; i++)
711 			oprintf(fp, "  %s\n", argv[i]);
712 	}
713 }
714 
715 static void
716 print_lang(smbios_hdl_t *shp, id_t id, FILE *fp)
717 {
718 	smbios_lang_t l;
719 
720 	(void) smbios_info_lang(shp, &l);
721 
722 	oprintf(fp, "  Current Language: %s\n", l.smbla_cur);
723 	oprintf(fp, "  Language String Format: %u\n", l.smbla_fmt);
724 	oprintf(fp, "  Number of Installed Languages: %u\n", l.smbla_num);
725 	oprintf(fp, "  Installed Languages:\n");
726 
727 	print_strtab(shp, id, fp);
728 }
729 
730 /*ARGSUSED*/
731 static void
732 print_evlog(smbios_hdl_t *shp, id_t id, FILE *fp)
733 {
734 	smbios_evlog_t ev;
735 	uint32_t i;
736 
737 	(void) smbios_info_eventlog(shp, &ev);
738 
739 	oprintf(fp, "  Log Area Size: %lu bytes\n", (ulong_t)ev.smbev_size);
740 	oprintf(fp, "  Header Offset: %lu\n", (ulong_t)ev.smbev_hdr);
741 	oprintf(fp, "  Data Offset: %lu\n", (ulong_t)ev.smbev_data);
742 
743 	desc_printf(smbios_evlog_method_desc(ev.smbev_method),
744 	    fp, "  Data Access Method: %u", ev.smbev_method);
745 
746 	flag_printf(fp, "Log Flags",
747 	    ev.smbev_flags, sizeof (ev.smbev_flags) * NBBY,
748 	    smbios_evlog_flag_name, smbios_evlog_flag_desc);
749 
750 	desc_printf(smbios_evlog_format_desc(ev.smbev_format),
751 	    fp, "  Log Header Format: %u", ev.smbev_format);
752 
753 	oprintf(fp, "  Update Token: 0x%x\n", ev.smbev_token);
754 	oprintf(fp, "  Data Access Address: ");
755 
756 	switch (ev.smbev_method) {
757 	case SMB_EVM_1x1i_1x1d:
758 	case SMB_EVM_2x1i_1x1d:
759 	case SMB_EVM_1x2i_1x1d:
760 		oprintf(fp, "Index Address 0x%x, Data Address 0x%x\n",
761 		    ev.smbev_addr.eva_io.evi_iaddr,
762 		    ev.smbev_addr.eva_io.evi_daddr);
763 		break;
764 	case SMB_EVM_GPNV:
765 		oprintf(fp, "0x%x\n", ev.smbev_addr.eva_gpnv);
766 		break;
767 	default:
768 		oprintf(fp, "0x%x\n", ev.smbev_addr.eva_addr);
769 	}
770 
771 	oprintf(fp, "  Type Descriptors:\n");
772 
773 	for (i = 0; i < ev.smbev_typec; i++) {
774 		oprintf(fp, "  %u: Log Type 0x%x, Data Type 0x%x\n", i,
775 		    ev.smbev_typev[i].smbevt_ltype,
776 		    ev.smbev_typev[i].smbevt_dtype);
777 	}
778 }
779 
780 static void
781 print_bytes(const uint8_t *data, size_t size, FILE *fp)
782 {
783 	size_t row, rows = P2ROUNDUP(size, 16) / 16;
784 	size_t col, cols;
785 
786 	char buf[17];
787 	uint8_t x;
788 
789 	oprintf(fp, "\n  offset:   0 1 2 3  4 5 6 7  8 9 a b  c d e f  "
790 	    "0123456789abcdef\n");
791 
792 	for (row = 0; row < rows; row++) {
793 		oprintf(fp, "  %#6lx: ", (ulong_t)row * 16);
794 		cols = MIN(size - row * 16, 16);
795 
796 		for (col = 0; col < cols; col++) {
797 			if (col % 4 == 0)
798 				oprintf(fp, " ");
799 			x = *data++;
800 			oprintf(fp, "%02x", x);
801 			buf[col] = x <= ' ' || x > '~' ? '.' : x;
802 		}
803 
804 		for (; col < 16; col++) {
805 			if (col % 4 == 0)
806 				oprintf(fp, " ");
807 			oprintf(fp, "  ");
808 			buf[col] = ' ';
809 		}
810 
811 		buf[col] = '\0';
812 		oprintf(fp, "  %s\n", buf);
813 	}
814 
815 	oprintf(fp, "\n");
816 }
817 
818 static void
819 print_memarray(smbios_hdl_t *shp, id_t id, FILE *fp)
820 {
821 	smbios_memarray_t ma;
822 
823 	(void) smbios_info_memarray(shp, id, &ma);
824 
825 	desc_printf(smbios_memarray_loc_desc(ma.smbma_location),
826 	    fp, "  Location: %u", ma.smbma_location);
827 
828 	desc_printf(smbios_memarray_use_desc(ma.smbma_use),
829 	    fp, "  Use: %u", ma.smbma_use);
830 
831 	desc_printf(smbios_memarray_ecc_desc(ma.smbma_ecc),
832 	    fp, "  ECC: %u", ma.smbma_ecc);
833 
834 	oprintf(fp, "  Number of Slots/Sockets: %u\n", ma.smbma_ndevs);
835 	id_printf(fp, "  Memory Error Data: ", ma.smbma_err);
836 	oprintf(fp, "  Max Capacity: %llu bytes\n",
837 	    (u_longlong_t)ma.smbma_size);
838 }
839 
840 static void
841 print_memdevice(smbios_hdl_t *shp, id_t id, FILE *fp)
842 {
843 	smbios_memdevice_t md;
844 
845 	(void) smbios_info_memdevice(shp, id, &md);
846 
847 	id_printf(fp, "  Physical Memory Array: ", md.smbmd_array);
848 	id_printf(fp, "  Memory Error Data: ", md.smbmd_error);
849 
850 	if (md.smbmd_twidth != -1u)
851 		oprintf(fp, "  Total Width: %u bits\n", md.smbmd_twidth);
852 	else
853 		oprintf(fp, "  Total Width: Unknown\n");
854 
855 	if (md.smbmd_dwidth != -1u)
856 		oprintf(fp, "  Data Width: %u bits\n", md.smbmd_dwidth);
857 	else
858 		oprintf(fp, "  Data Width: Unknown\n");
859 
860 	switch (md.smbmd_size) {
861 	case -1ull:
862 		oprintf(fp, "  Size: Unknown\n");
863 		break;
864 	case 0:
865 		oprintf(fp, "  Size: Not Populated\n");
866 		break;
867 	default:
868 		oprintf(fp, "  Size: %llu bytes\n",
869 		    (u_longlong_t)md.smbmd_size);
870 	}
871 
872 	desc_printf(smbios_memdevice_form_desc(md.smbmd_form),
873 	    fp, "  Form Factor: %u", md.smbmd_form);
874 
875 	if (md.smbmd_set == 0)
876 		oprintf(fp, "  Set: None\n");
877 	else if (md.smbmd_set == (uint8_t)-1u)
878 		oprintf(fp, "  Set: Unknown\n");
879 	else
880 		oprintf(fp, "  Set: %u\n", md.smbmd_set);
881 
882 	if (md.smbmd_rank != 0) {
883 		desc_printf(smbios_memdevice_rank_desc(md.smbmd_rank),
884 		    fp, "  Rank: %u", md.smbmd_rank);
885 	} else {
886 		oprintf(fp, "  Rank: Unknown\n");
887 	}
888 
889 	desc_printf(smbios_memdevice_type_desc(md.smbmd_type),
890 	    fp, "  Memory Type: %u", md.smbmd_type);
891 
892 	flag_printf(fp, "Flags", md.smbmd_flags, sizeof (md.smbmd_flags) * NBBY,
893 	    smbios_memdevice_flag_name, smbios_memdevice_flag_desc);
894 
895 	if (md.smbmd_speed != 0)
896 		oprintf(fp, "  Speed: %u MT/s\n", md.smbmd_speed);
897 	else
898 		oprintf(fp, "  Speed: Unknown\n");
899 
900 	if (md.smbmd_clkspeed != 0)
901 		oprintf(fp, "  Configured Speed: %u MT/s\n", md.smbmd_clkspeed);
902 	else
903 		oprintf(fp, "  Configured Speed: Unknown\n");
904 
905 	oprintf(fp, "  Device Locator: %s\n", md.smbmd_dloc);
906 	oprintf(fp, "  Bank Locator: %s\n", md.smbmd_bloc);
907 
908 	if (md.smbmd_minvolt != 0) {
909 		oprintf(fp, "  Minimum Voltage: %.2fV\n",
910 		    md.smbmd_minvolt / 1000.0);
911 	} else {
912 		oprintf(fp, "  Minimum Voltage: Unknown\n");
913 	}
914 
915 	if (md.smbmd_maxvolt != 0) {
916 		oprintf(fp, "  Maximum Voltage: %.2fV\n",
917 		    md.smbmd_maxvolt / 1000.0);
918 	} else {
919 		oprintf(fp, "  Maximum Voltage: Unknown\n");
920 	}
921 
922 	if (md.smbmd_confvolt != 0) {
923 		oprintf(fp, "  Configured Voltage: %.2fV\n",
924 		    md.smbmd_confvolt / 1000.0);
925 	} else {
926 		oprintf(fp, "  Configured Voltage: Unknown\n");
927 	}
928 }
929 
930 static void
931 print_memarrmap(smbios_hdl_t *shp, id_t id, FILE *fp)
932 {
933 	smbios_memarrmap_t ma;
934 
935 	(void) smbios_info_memarrmap(shp, id, &ma);
936 
937 	id_printf(fp, "  Physical Memory Array: ", ma.smbmam_array);
938 	oprintf(fp, "  Devices per Row: %u\n", ma.smbmam_width);
939 
940 	oprintf(fp, "  Physical Address: 0x%llx\n  Size: %llu bytes\n",
941 	    (u_longlong_t)ma.smbmam_addr, (u_longlong_t)ma.smbmam_size);
942 }
943 
944 static void
945 print_memdevmap(smbios_hdl_t *shp, id_t id, FILE *fp)
946 {
947 	smbios_memdevmap_t md;
948 
949 	(void) smbios_info_memdevmap(shp, id, &md);
950 
951 	id_printf(fp, "  Memory Device: ", md.smbmdm_device);
952 	id_printf(fp, "  Memory Array Mapped Address: ", md.smbmdm_arrmap);
953 
954 	oprintf(fp, "  Physical Address: 0x%llx\n  Size: %llu bytes\n",
955 	    (u_longlong_t)md.smbmdm_addr, (u_longlong_t)md.smbmdm_size);
956 
957 	oprintf(fp, "  Partition Row Position: %u\n", md.smbmdm_rpos);
958 	oprintf(fp, "  Interleave Position: %u\n", md.smbmdm_ipos);
959 	oprintf(fp, "  Interleave Data Depth: %u\n", md.smbmdm_idepth);
960 }
961 
962 static void
963 print_hwsec(smbios_hdl_t *shp, FILE *fp)
964 {
965 	smbios_hwsec_t h;
966 
967 	(void) smbios_info_hwsec(shp, &h);
968 
969 	desc_printf(smbios_hwsec_desc(h.smbh_pwr_ps),
970 	    fp, "  Power-On Password Status: %u", h.smbh_pwr_ps);
971 	desc_printf(smbios_hwsec_desc(h.smbh_kbd_ps),
972 	    fp, "  Keyboard Password Status: %u", h.smbh_kbd_ps);
973 	desc_printf(smbios_hwsec_desc(h.smbh_adm_ps),
974 	    fp, "  Administrator Password Status: %u", h.smbh_adm_ps);
975 	desc_printf(smbios_hwsec_desc(h.smbh_pan_ps),
976 	    fp, "  Front Panel Reset Status: %u", h.smbh_pan_ps);
977 }
978 
979 static void
980 print_boot(smbios_hdl_t *shp, FILE *fp)
981 {
982 	smbios_boot_t b;
983 
984 	(void) smbios_info_boot(shp, &b);
985 
986 	desc_printf(smbios_boot_desc(b.smbt_status),
987 	    fp, "  Boot Status Code: 0x%x", b.smbt_status);
988 
989 	if (b.smbt_size != 0) {
990 		oprintf(fp, "  Boot Data (%lu bytes):\n", (ulong_t)b.smbt_size);
991 		print_bytes(b.smbt_data, b.smbt_size, fp);
992 	}
993 }
994 
995 static void
996 print_ipmi(smbios_hdl_t *shp, FILE *fp)
997 {
998 	smbios_ipmi_t i;
999 
1000 	(void) smbios_info_ipmi(shp, &i);
1001 
1002 	desc_printf(smbios_ipmi_type_desc(i.smbip_type),
1003 	    fp, "  Type: %u", i.smbip_type);
1004 
1005 	oprintf(fp, "  BMC IPMI Version: %u.%u\n",
1006 	    i.smbip_vers.smbv_major, i.smbip_vers.smbv_minor);
1007 
1008 	oprintf(fp, "  i2c Bus Slave Address: 0x%x\n", i.smbip_i2c);
1009 	oprintf(fp, "  NV Storage Device Bus ID: 0x%x\n", i.smbip_bus);
1010 	oprintf(fp, "  BMC Base Address: 0x%llx\n", (u_longlong_t)i.smbip_addr);
1011 	oprintf(fp, "  Interrupt Number: %u\n", i.smbip_intr);
1012 	oprintf(fp, "  Register Spacing: %u\n", i.smbip_regspacing);
1013 
1014 	flag_printf(fp, "Flags", i.smbip_flags, sizeof (i.smbip_flags) * NBBY,
1015 	    smbios_ipmi_flag_name, smbios_ipmi_flag_desc);
1016 }
1017 
1018 static void
1019 print_powersup(smbios_hdl_t *shp, id_t id, FILE *fp)
1020 {
1021 	smbios_powersup_t p;
1022 
1023 	if (smbios_info_powersup(shp, id, &p) != 0) {
1024 		smbios_warn(shp, "failed to read power supply information");
1025 		return;
1026 	}
1027 
1028 	oprintf(fp, "  Power Supply Group: %u\n", p.smbps_group);
1029 	if (p.smbps_maxout != 0x8000) {
1030 		oprintf(fp, "  Maximum Output: %llu mW\n", p.smbps_maxout);
1031 	} else {
1032 		oprintf(fp, "  Maximum Output: unknown\n");
1033 	}
1034 
1035 	flag_printf(fp, "Characteristics", p.smbps_flags,
1036 	    sizeof (p.smbps_flags) * NBBY, smbios_powersup_flag_name,
1037 	    smbios_powersup_flag_desc);
1038 
1039 	desc_printf(smbios_powersup_input_desc(p.smbps_ivrs),
1040 	    fp, "  Input Voltage Range Switching: %u", p.smbps_ivrs);
1041 	desc_printf(smbios_powersup_status_desc(p.smbps_status),
1042 	    fp, "  Status: %u", p.smbps_status);
1043 	desc_printf(smbios_powersup_type_desc(p.smbps_pstype),
1044 	    fp, "  Type: %u", p.smbps_pstype);
1045 
1046 	if (p.smbps_vprobe != 0xffff) {
1047 		oprintf(fp, "  Voltage Probe Handle: %lu\n", p.smbps_vprobe);
1048 	}
1049 
1050 	if (p.smbps_cooldev != 0xffff) {
1051 		oprintf(fp, "  Cooling Device Handle: %lu\n", p.smbps_cooldev);
1052 	}
1053 
1054 	if (p.smbps_iprobe != 0xffff) {
1055 		oprintf(fp, "  Current Probe Handle: %lu\n", p.smbps_iprobe);
1056 	}
1057 }
1058 
1059 static void
1060 print_extprocessor(smbios_hdl_t *shp, id_t id, FILE *fp)
1061 {
1062 	int i;
1063 	smbios_processor_ext_t ep;
1064 
1065 	if (check_oem(shp) != 0)
1066 		return;
1067 
1068 	(void) smbios_info_extprocessor(shp, id, &ep);
1069 
1070 	oprintf(fp, "  Processor: %u\n", ep.smbpe_processor);
1071 	oprintf(fp, "  FRU: %u\n", ep.smbpe_fru);
1072 	oprintf(fp, "  Initial APIC ID count: %u\n\n", ep.smbpe_n);
1073 
1074 	for (i = 0; i < ep.smbpe_n; i++) {
1075 		oprintf(fp, "  Logical Strand %u: Initial APIC ID: %u\n", i,
1076 		    ep.smbpe_apicid[i]);
1077 	}
1078 }
1079 
1080 static void
1081 print_extport(smbios_hdl_t *shp, id_t id, FILE *fp)
1082 {
1083 	smbios_port_ext_t epo;
1084 
1085 	if (check_oem(shp) != 0)
1086 		return;
1087 
1088 	(void) smbios_info_extport(shp, id, &epo);
1089 
1090 	oprintf(fp, "  Chassis Handle: %u\n", epo.smbporte_chassis);
1091 	oprintf(fp, "  Port Connector Handle: %u\n", epo.smbporte_port);
1092 	oprintf(fp, "  Device Type: %u\n", epo.smbporte_dtype);
1093 	oprintf(fp, "  Device Handle: %u\n", epo.smbporte_devhdl);
1094 	oprintf(fp, "  PHY: %u\n", epo.smbporte_phy);
1095 }
1096 
1097 static void
1098 print_pciexrc(smbios_hdl_t *shp, id_t id, FILE *fp)
1099 {
1100 	smbios_pciexrc_t pcie;
1101 
1102 	if (check_oem(shp) != 0)
1103 		return;
1104 
1105 	(void) smbios_info_pciexrc(shp, id, &pcie);
1106 
1107 	oprintf(fp, "  Component ID: %u\n", pcie.smbpcie_bb);
1108 	oprintf(fp, "  BDF: 0x%x\n", pcie.smbpcie_bdf);
1109 }
1110 
1111 static void
1112 print_extmemarray(smbios_hdl_t *shp, id_t id, FILE *fp)
1113 {
1114 	smbios_memarray_ext_t em;
1115 
1116 	if (check_oem(shp) != 0)
1117 		return;
1118 
1119 	(void) smbios_info_extmemarray(shp, id, &em);
1120 
1121 	oprintf(fp, "  Physical Memory Array Handle: %u\n", em.smbmae_ma);
1122 	oprintf(fp, "  Component Parent Handle: %u\n", em.smbmae_comp);
1123 	oprintf(fp, "  BDF: 0x%x\n", em.smbmae_bdf);
1124 }
1125 
1126 static void
1127 print_extmemdevice(smbios_hdl_t *shp, id_t id, FILE *fp)
1128 {
1129 	int i;
1130 	smbios_memdevice_ext_t emd;
1131 
1132 	if (check_oem(shp) != 0)
1133 		return;
1134 
1135 	(void) smbios_info_extmemdevice(shp, id, &emd);
1136 
1137 	oprintf(fp, "  Memory Device Handle: %u\n", emd.smbmdeve_md);
1138 	oprintf(fp, "  DRAM Channel: %u\n", emd.smbmdeve_drch);
1139 	oprintf(fp, "  Number of Chip Selects: %u\n", emd.smbmdeve_ncs);
1140 
1141 	for (i = 0; i < emd.smbmdeve_ncs; i++) {
1142 		oprintf(fp, "  Chip Select: %u\n", emd.smbmdeve_cs[i]);
1143 	}
1144 }
1145 
1146 static int
1147 print_struct(smbios_hdl_t *shp, const smbios_struct_t *sp, void *fp)
1148 {
1149 	smbios_info_t info;
1150 	int hex = opt_x;
1151 	const char *s;
1152 
1153 	if (opt_t != -1 && opt_t != sp->smbstr_type)
1154 		return (0); /* skip struct if type doesn't match -t */
1155 
1156 	if (!opt_O && (sp->smbstr_type == SMB_TYPE_MEMCTL ||
1157 	    sp->smbstr_type == SMB_TYPE_MEMMOD))
1158 		return (0); /* skip struct if type is obsolete */
1159 
1160 	if (g_hdr++ == 0 || !opt_s)
1161 		oprintf(fp, "%-5s %-4s %s\n", "ID", "SIZE", "TYPE");
1162 
1163 	oprintf(fp, "%-5u %-4lu",
1164 	    (uint_t)sp->smbstr_id, (ulong_t)sp->smbstr_size);
1165 
1166 	if ((s = smbios_type_name(sp->smbstr_type)) != NULL)
1167 		oprintf(fp, " %s (type %u)", s, sp->smbstr_type);
1168 	else if (sp->smbstr_type > SMB_TYPE_OEM_LO &&
1169 	    sp->smbstr_type < SMB_TYPE_OEM_HI)
1170 		oprintf(fp, " %s+%u (type %u)", "SMB_TYPE_OEM_LO",
1171 		    sp->smbstr_type - SMB_TYPE_OEM_LO, sp->smbstr_type);
1172 	else
1173 		oprintf(fp, " %u", sp->smbstr_type);
1174 
1175 	if ((s = smbios_type_desc(sp->smbstr_type)) != NULL)
1176 		oprintf(fp, " (%s)\n", s);
1177 	else
1178 		oprintf(fp, "\n");
1179 
1180 	if (opt_s)
1181 		return (0); /* only print header line if -s specified */
1182 
1183 	if (smbios_info_common(shp, sp->smbstr_id, &info) == 0) {
1184 		oprintf(fp, "\n");
1185 		print_common(&info, fp);
1186 	}
1187 
1188 	switch (sp->smbstr_type) {
1189 	case SMB_TYPE_BIOS:
1190 		oprintf(fp, "\n");
1191 		print_bios(shp, fp);
1192 		break;
1193 	case SMB_TYPE_SYSTEM:
1194 		oprintf(fp, "\n");
1195 		print_system(shp, fp);
1196 		break;
1197 	case SMB_TYPE_BASEBOARD:
1198 		oprintf(fp, "\n");
1199 		print_bboard(shp, sp->smbstr_id, fp);
1200 		break;
1201 	case SMB_TYPE_CHASSIS:
1202 		oprintf(fp, "\n");
1203 		print_chassis(shp, sp->smbstr_id, fp);
1204 		break;
1205 	case SMB_TYPE_PROCESSOR:
1206 		oprintf(fp, "\n");
1207 		print_processor(shp, sp->smbstr_id, fp);
1208 		break;
1209 	case SMB_TYPE_CACHE:
1210 		oprintf(fp, "\n");
1211 		print_cache(shp, sp->smbstr_id, fp);
1212 		break;
1213 	case SMB_TYPE_PORT:
1214 		oprintf(fp, "\n");
1215 		print_port(shp, sp->smbstr_id, fp);
1216 		break;
1217 	case SMB_TYPE_SLOT:
1218 		oprintf(fp, "\n");
1219 		print_slot(shp, sp->smbstr_id, fp);
1220 		break;
1221 	case SMB_TYPE_OBDEVS:
1222 		oprintf(fp, "\n");
1223 		print_obdevs(shp, sp->smbstr_id, fp);
1224 		break;
1225 	case SMB_TYPE_OEMSTR:
1226 	case SMB_TYPE_SYSCONFSTR:
1227 		oprintf(fp, "\n");
1228 		print_strtab(shp, sp->smbstr_id, fp);
1229 		break;
1230 	case SMB_TYPE_LANG:
1231 		oprintf(fp, "\n");
1232 		print_lang(shp, sp->smbstr_id, fp);
1233 		break;
1234 	case SMB_TYPE_EVENTLOG:
1235 		oprintf(fp, "\n");
1236 		print_evlog(shp, sp->smbstr_id, fp);
1237 		break;
1238 	case SMB_TYPE_MEMARRAY:
1239 		oprintf(fp, "\n");
1240 		print_memarray(shp, sp->smbstr_id, fp);
1241 		break;
1242 	case SMB_TYPE_MEMDEVICE:
1243 		oprintf(fp, "\n");
1244 		print_memdevice(shp, sp->smbstr_id, fp);
1245 		break;
1246 	case SMB_TYPE_MEMARRAYMAP:
1247 		oprintf(fp, "\n");
1248 		print_memarrmap(shp, sp->smbstr_id, fp);
1249 		break;
1250 	case SMB_TYPE_MEMDEVICEMAP:
1251 		oprintf(fp, "\n");
1252 		print_memdevmap(shp, sp->smbstr_id, fp);
1253 		break;
1254 	case SMB_TYPE_SECURITY:
1255 		oprintf(fp, "\n");
1256 		print_hwsec(shp, fp);
1257 		break;
1258 	case SMB_TYPE_BOOT:
1259 		oprintf(fp, "\n");
1260 		print_boot(shp, fp);
1261 		break;
1262 	case SMB_TYPE_IPMIDEV:
1263 		oprintf(fp, "\n");
1264 		print_ipmi(shp, fp);
1265 		break;
1266 	case SMB_TYPE_POWERSUP:
1267 		oprintf(fp, "\n");
1268 		print_powersup(shp, sp->smbstr_id, fp);
1269 		break;
1270 	case SMB_TYPE_OBDEVEXT:
1271 		oprintf(fp, "\n");
1272 		print_obdevs_ext(shp, sp->smbstr_id, fp);
1273 		break;
1274 	case SUN_OEM_EXT_PROCESSOR:
1275 		oprintf(fp, "\n");
1276 		print_extprocessor(shp, sp->smbstr_id, fp);
1277 		break;
1278 	case SUN_OEM_EXT_PORT:
1279 		oprintf(fp, "\n");
1280 		print_extport(shp, sp->smbstr_id, fp);
1281 		break;
1282 	case SUN_OEM_PCIEXRC:
1283 		oprintf(fp, "\n");
1284 		print_pciexrc(shp, sp->smbstr_id, fp);
1285 		break;
1286 	case SUN_OEM_EXT_MEMARRAY:
1287 		oprintf(fp, "\n");
1288 		print_extmemarray(shp, sp->smbstr_id, fp);
1289 		break;
1290 	case SUN_OEM_EXT_MEMDEVICE:
1291 		oprintf(fp, "\n");
1292 		print_extmemdevice(shp, sp->smbstr_id, fp);
1293 		break;
1294 	default:
1295 		hex++;
1296 	}
1297 
1298 	if (hex)
1299 		print_bytes(sp->smbstr_data, sp->smbstr_size, fp);
1300 	else
1301 		oprintf(fp, "\n");
1302 
1303 	return (0);
1304 }
1305 
1306 static uint16_t
1307 getu16(const char *name, const char *s)
1308 {
1309 	u_longlong_t val;
1310 	char *p;
1311 
1312 	errno = 0;
1313 	val = strtoull(s, &p, 0);
1314 
1315 	if (errno != 0 || p == s || *p != '\0' || val > UINT16_MAX) {
1316 		(void) fprintf(stderr, "%s: invalid %s argument -- %s\n",
1317 		    g_pname, name, s);
1318 		exit(SMBIOS_USAGE);
1319 	}
1320 
1321 	return ((uint16_t)val);
1322 }
1323 
1324 static uint16_t
1325 getstype(const char *name, const char *s)
1326 {
1327 	const char *ts;
1328 	uint16_t t;
1329 
1330 	for (t = 0; t < SMB_TYPE_OEM_LO; t++) {
1331 		if ((ts = smbios_type_name(t)) != NULL && strcmp(s, ts) == 0)
1332 			return (t);
1333 	}
1334 
1335 	(void) fprintf(stderr, "%s: invalid %s argument -- %s\n",
1336 	    g_pname, name, s);
1337 
1338 	exit(SMBIOS_USAGE);
1339 	/*NOTREACHED*/
1340 }
1341 
1342 static int
1343 usage(FILE *fp)
1344 {
1345 	(void) fprintf(fp, "Usage: %s "
1346 	    "[-BeOsx] [-i id] [-t type] [-w file] [file]\n\n", g_pname);
1347 
1348 	(void) fprintf(fp,
1349 	    "\t-B disable header validation for broken BIOSes\n"
1350 	    "\t-e display SMBIOS entry point information\n"
1351 	    "\t-i display only the specified structure\n"
1352 	    "\t-O display obsolete structure types\n"
1353 	    "\t-s display only a summary of structure identifiers and types\n"
1354 	    "\t-t display only the specified structure type\n"
1355 	    "\t-w write the raw data to the specified file\n"
1356 	    "\t-x display raw data for structures\n");
1357 
1358 	return (SMBIOS_USAGE);
1359 }
1360 
1361 int
1362 main(int argc, char *argv[])
1363 {
1364 	const char *ifile = NULL;
1365 	const char *ofile = NULL;
1366 	int oflags = 0;
1367 
1368 	smbios_hdl_t *shp;
1369 	smbios_struct_t s;
1370 	int err, fd, c;
1371 	char *p;
1372 
1373 	if ((p = strrchr(argv[0], '/')) == NULL)
1374 		g_pname = argv[0];
1375 	else
1376 		g_pname = p + 1;
1377 
1378 	while (optind < argc) {
1379 		while ((c = getopt(argc, argv, "Bei:Ost:w:xZ")) != EOF) {
1380 			switch (c) {
1381 			case 'B':
1382 				oflags |= SMB_O_NOCKSUM | SMB_O_NOVERS;
1383 				break;
1384 			case 'e':
1385 				opt_e++;
1386 				break;
1387 			case 'i':
1388 				opt_i = getu16("struct ID", optarg);
1389 				break;
1390 			case 'O':
1391 				opt_O++;
1392 				break;
1393 			case 's':
1394 				opt_s++;
1395 				break;
1396 			case 't':
1397 				if (isdigit(optarg[0]))
1398 					opt_t = getu16("struct type", optarg);
1399 				else
1400 					opt_t = getstype("struct type", optarg);
1401 				break;
1402 			case 'w':
1403 				ofile = optarg;
1404 				break;
1405 			case 'x':
1406 				opt_x++;
1407 				break;
1408 			case 'Z':
1409 				oflags |= SMB_O_ZIDS; /* undocumented */
1410 				break;
1411 			default:
1412 				return (usage(stderr));
1413 			}
1414 		}
1415 
1416 		if (optind < argc) {
1417 			if (ifile != NULL) {
1418 				(void) fprintf(stderr, "%s: illegal "
1419 				    "argument -- %s\n", g_pname, argv[optind]);
1420 				return (SMBIOS_USAGE);
1421 			}
1422 			ifile = argv[optind++];
1423 		}
1424 	}
1425 
1426 	if ((shp = smbios_open(ifile, SMB_VERSION, oflags, &err)) == NULL) {
1427 		(void) fprintf(stderr, "%s: failed to load SMBIOS: %s\n",
1428 		    g_pname, smbios_errmsg(err));
1429 		return (SMBIOS_ERROR);
1430 	}
1431 
1432 	if (opt_i == -1 && opt_t == -1 && opt_e == 0 &&
1433 	    smbios_truncated(shp))
1434 		(void) fprintf(stderr, "%s: SMBIOS table is truncated\n",
1435 		    g_pname);
1436 
1437 	if (ofile != NULL) {
1438 		if ((fd = open(ofile, O_WRONLY|O_CREAT|O_TRUNC, 0666)) == -1) {
1439 			(void) fprintf(stderr, "%s: failed to open %s: %s\n",
1440 			    g_pname, ofile, strerror(errno));
1441 			err = SMBIOS_ERROR;
1442 		} else if (smbios_write(shp, fd) != 0) {
1443 			(void) fprintf(stderr, "%s: failed to write %s: %s\n",
1444 			    g_pname, ofile, smbios_errmsg(smbios_errno(shp)));
1445 			err = SMBIOS_ERROR;
1446 		}
1447 		smbios_close(shp);
1448 		return (err);
1449 	}
1450 
1451 	if (opt_e) {
1452 		print_smbios(shp, stdout);
1453 		smbios_close(shp);
1454 		return (SMBIOS_SUCCESS);
1455 	}
1456 
1457 	if (opt_O && (opt_i != -1 || opt_t != -1))
1458 		opt_O++; /* -i or -t imply displaying obsolete records */
1459 
1460 	if (opt_i != -1)
1461 		err = smbios_lookup_id(shp, opt_i, &s);
1462 	else
1463 		err = smbios_iter(shp, print_struct, stdout);
1464 
1465 	if (err != 0) {
1466 		(void) fprintf(stderr, "%s: failed to access SMBIOS: %s\n",
1467 		    g_pname, smbios_errmsg(smbios_errno(shp)));
1468 		smbios_close(shp);
1469 		return (SMBIOS_ERROR);
1470 	}
1471 
1472 	if (opt_i != -1)
1473 		(void) print_struct(shp, &s, stdout);
1474 
1475 	smbios_close(shp);
1476 	return (SMBIOS_SUCCESS);
1477 }
1478