hw/arm: make bitbanded IO optional on ARMv7-M
[qemu/ar7.git] / hw / smbios / smbios.c
bloba27e54b2fa864cf9fb64c93e07041e166bf1b309
1 /*
2 * SMBIOS Support
4 * Copyright (C) 2009 Hewlett-Packard Development Company, L.P.
5 * Copyright (C) 2013 Red Hat, Inc.
7 * Authors:
8 * Alex Williamson <alex.williamson@hp.com>
9 * Markus Armbruster <armbru@redhat.com>
11 * This work is licensed under the terms of the GNU GPL, version 2. See
12 * the COPYING file in the top-level directory.
14 * Contributions after 2012-01-13 are licensed under the terms of the
15 * GNU GPL, version 2 or (at your option) any later version.
18 #include "qemu/osdep.h"
19 #include "qemu/units.h"
20 #include "qapi/error.h"
21 #include "qemu/config-file.h"
22 #include "qemu/error-report.h"
23 #include "qemu/option.h"
24 #include "sysemu/sysemu.h"
25 #include "qemu/uuid.h"
26 #include "sysemu/cpus.h"
27 #include "hw/smbios/smbios.h"
28 #include "hw/loader.h"
29 #include "exec/cpu-common.h"
30 #include "smbios_build.h"
31 #include "hw/smbios/ipmi.h"
33 /* legacy structures and constants for <= 2.0 machines */
34 struct smbios_header {
35 uint16_t length;
36 uint8_t type;
37 } QEMU_PACKED;
39 struct smbios_field {
40 struct smbios_header header;
41 uint8_t type;
42 uint16_t offset;
43 uint8_t data[];
44 } QEMU_PACKED;
46 struct smbios_table {
47 struct smbios_header header;
48 uint8_t data[];
49 } QEMU_PACKED;
51 #define SMBIOS_FIELD_ENTRY 0
52 #define SMBIOS_TABLE_ENTRY 1
54 static uint8_t *smbios_entries;
55 static size_t smbios_entries_len;
56 static bool smbios_legacy = true;
57 static bool smbios_uuid_encoded = true;
58 /* end: legacy structures & constants for <= 2.0 machines */
61 uint8_t *smbios_tables;
62 size_t smbios_tables_len;
63 unsigned smbios_table_max;
64 unsigned smbios_table_cnt;
65 static SmbiosEntryPointType smbios_ep_type = SMBIOS_ENTRY_POINT_21;
67 static SmbiosEntryPoint ep;
69 static int smbios_type4_count = 0;
70 static bool smbios_immutable;
71 static bool smbios_have_defaults;
72 static uint32_t smbios_cpuid_version, smbios_cpuid_features, smbios_smp_sockets;
74 static DECLARE_BITMAP(have_binfile_bitmap, SMBIOS_MAX_TYPE+1);
75 static DECLARE_BITMAP(have_fields_bitmap, SMBIOS_MAX_TYPE+1);
77 static struct {
78 const char *vendor, *version, *date;
79 bool have_major_minor, uefi;
80 uint8_t major, minor;
81 } type0;
83 static struct {
84 const char *manufacturer, *product, *version, *serial, *sku, *family;
85 /* uuid is in qemu_uuid */
86 } type1;
88 static struct {
89 const char *manufacturer, *product, *version, *serial, *asset, *location;
90 } type2;
92 static struct {
93 const char *manufacturer, *version, *serial, *asset, *sku;
94 } type3;
96 static struct {
97 const char *sock_pfx, *manufacturer, *version, *serial, *asset, *part;
98 } type4;
100 static struct {
101 size_t nvalues;
102 const char **values;
103 } type11;
105 static struct {
106 const char *loc_pfx, *bank, *manufacturer, *serial, *asset, *part;
107 uint16_t speed;
108 } type17;
110 static QemuOptsList qemu_smbios_opts = {
111 .name = "smbios",
112 .head = QTAILQ_HEAD_INITIALIZER(qemu_smbios_opts.head),
113 .desc = {
115 * no elements => accept any params
116 * validation will happen later
118 { /* end of list */ }
122 static const QemuOptDesc qemu_smbios_file_opts[] = {
124 .name = "file",
125 .type = QEMU_OPT_STRING,
126 .help = "binary file containing an SMBIOS element",
128 { /* end of list */ }
131 static const QemuOptDesc qemu_smbios_type0_opts[] = {
133 .name = "type",
134 .type = QEMU_OPT_NUMBER,
135 .help = "SMBIOS element type",
137 .name = "vendor",
138 .type = QEMU_OPT_STRING,
139 .help = "vendor name",
141 .name = "version",
142 .type = QEMU_OPT_STRING,
143 .help = "version number",
145 .name = "date",
146 .type = QEMU_OPT_STRING,
147 .help = "release date",
149 .name = "release",
150 .type = QEMU_OPT_STRING,
151 .help = "revision number",
153 .name = "uefi",
154 .type = QEMU_OPT_BOOL,
155 .help = "uefi support",
157 { /* end of list */ }
160 static const QemuOptDesc qemu_smbios_type1_opts[] = {
162 .name = "type",
163 .type = QEMU_OPT_NUMBER,
164 .help = "SMBIOS element type",
166 .name = "manufacturer",
167 .type = QEMU_OPT_STRING,
168 .help = "manufacturer name",
170 .name = "product",
171 .type = QEMU_OPT_STRING,
172 .help = "product name",
174 .name = "version",
175 .type = QEMU_OPT_STRING,
176 .help = "version number",
178 .name = "serial",
179 .type = QEMU_OPT_STRING,
180 .help = "serial number",
182 .name = "uuid",
183 .type = QEMU_OPT_STRING,
184 .help = "UUID",
186 .name = "sku",
187 .type = QEMU_OPT_STRING,
188 .help = "SKU number",
190 .name = "family",
191 .type = QEMU_OPT_STRING,
192 .help = "family name",
194 { /* end of list */ }
197 static const QemuOptDesc qemu_smbios_type2_opts[] = {
199 .name = "type",
200 .type = QEMU_OPT_NUMBER,
201 .help = "SMBIOS element type",
203 .name = "manufacturer",
204 .type = QEMU_OPT_STRING,
205 .help = "manufacturer name",
207 .name = "product",
208 .type = QEMU_OPT_STRING,
209 .help = "product name",
211 .name = "version",
212 .type = QEMU_OPT_STRING,
213 .help = "version number",
215 .name = "serial",
216 .type = QEMU_OPT_STRING,
217 .help = "serial number",
219 .name = "asset",
220 .type = QEMU_OPT_STRING,
221 .help = "asset tag number",
223 .name = "location",
224 .type = QEMU_OPT_STRING,
225 .help = "location in chassis",
227 { /* end of list */ }
230 static const QemuOptDesc qemu_smbios_type3_opts[] = {
232 .name = "type",
233 .type = QEMU_OPT_NUMBER,
234 .help = "SMBIOS element type",
236 .name = "manufacturer",
237 .type = QEMU_OPT_STRING,
238 .help = "manufacturer name",
240 .name = "version",
241 .type = QEMU_OPT_STRING,
242 .help = "version number",
244 .name = "serial",
245 .type = QEMU_OPT_STRING,
246 .help = "serial number",
248 .name = "asset",
249 .type = QEMU_OPT_STRING,
250 .help = "asset tag number",
252 .name = "sku",
253 .type = QEMU_OPT_STRING,
254 .help = "SKU number",
256 { /* end of list */ }
259 static const QemuOptDesc qemu_smbios_type4_opts[] = {
261 .name = "type",
262 .type = QEMU_OPT_NUMBER,
263 .help = "SMBIOS element type",
265 .name = "sock_pfx",
266 .type = QEMU_OPT_STRING,
267 .help = "socket designation string prefix",
269 .name = "manufacturer",
270 .type = QEMU_OPT_STRING,
271 .help = "manufacturer name",
273 .name = "version",
274 .type = QEMU_OPT_STRING,
275 .help = "version number",
277 .name = "serial",
278 .type = QEMU_OPT_STRING,
279 .help = "serial number",
281 .name = "asset",
282 .type = QEMU_OPT_STRING,
283 .help = "asset tag number",
285 .name = "part",
286 .type = QEMU_OPT_STRING,
287 .help = "part number",
289 { /* end of list */ }
292 static const QemuOptDesc qemu_smbios_type11_opts[] = {
294 .name = "value",
295 .type = QEMU_OPT_STRING,
296 .help = "OEM string data",
300 static const QemuOptDesc qemu_smbios_type17_opts[] = {
302 .name = "type",
303 .type = QEMU_OPT_NUMBER,
304 .help = "SMBIOS element type",
306 .name = "loc_pfx",
307 .type = QEMU_OPT_STRING,
308 .help = "device locator string prefix",
310 .name = "bank",
311 .type = QEMU_OPT_STRING,
312 .help = "bank locator string",
314 .name = "manufacturer",
315 .type = QEMU_OPT_STRING,
316 .help = "manufacturer name",
318 .name = "serial",
319 .type = QEMU_OPT_STRING,
320 .help = "serial number",
322 .name = "asset",
323 .type = QEMU_OPT_STRING,
324 .help = "asset tag number",
326 .name = "part",
327 .type = QEMU_OPT_STRING,
328 .help = "part number",
330 .name = "speed",
331 .type = QEMU_OPT_NUMBER,
332 .help = "maximum capable speed",
334 { /* end of list */ }
337 static void smbios_register_config(void)
339 qemu_add_opts(&qemu_smbios_opts);
342 opts_init(smbios_register_config);
344 static void smbios_validate_table(void)
346 uint32_t expect_t4_count = smbios_legacy ? smp_cpus : smbios_smp_sockets;
348 if (smbios_type4_count && smbios_type4_count != expect_t4_count) {
349 error_report("Expected %d SMBIOS Type 4 tables, got %d instead",
350 expect_t4_count, smbios_type4_count);
351 exit(1);
356 /* legacy setup functions for <= 2.0 machines */
357 static void smbios_add_field(int type, int offset, const void *data, size_t len)
359 struct smbios_field *field;
361 if (!smbios_entries) {
362 smbios_entries_len = sizeof(uint16_t);
363 smbios_entries = g_malloc0(smbios_entries_len);
365 smbios_entries = g_realloc(smbios_entries, smbios_entries_len +
366 sizeof(*field) + len);
367 field = (struct smbios_field *)(smbios_entries + smbios_entries_len);
368 field->header.type = SMBIOS_FIELD_ENTRY;
369 field->header.length = cpu_to_le16(sizeof(*field) + len);
371 field->type = type;
372 field->offset = cpu_to_le16(offset);
373 memcpy(field->data, data, len);
375 smbios_entries_len += sizeof(*field) + len;
376 (*(uint16_t *)smbios_entries) =
377 cpu_to_le16(le16_to_cpu(*(uint16_t *)smbios_entries) + 1);
380 static void smbios_maybe_add_str(int type, int offset, const char *data)
382 if (data) {
383 smbios_add_field(type, offset, data, strlen(data) + 1);
387 static void smbios_build_type_0_fields(void)
389 smbios_maybe_add_str(0, offsetof(struct smbios_type_0, vendor_str),
390 type0.vendor);
391 smbios_maybe_add_str(0, offsetof(struct smbios_type_0, bios_version_str),
392 type0.version);
393 smbios_maybe_add_str(0, offsetof(struct smbios_type_0,
394 bios_release_date_str),
395 type0.date);
396 if (type0.have_major_minor) {
397 smbios_add_field(0, offsetof(struct smbios_type_0,
398 system_bios_major_release),
399 &type0.major, 1);
400 smbios_add_field(0, offsetof(struct smbios_type_0,
401 system_bios_minor_release),
402 &type0.minor, 1);
406 static void smbios_build_type_1_fields(void)
408 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, manufacturer_str),
409 type1.manufacturer);
410 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, product_name_str),
411 type1.product);
412 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, version_str),
413 type1.version);
414 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, serial_number_str),
415 type1.serial);
416 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, sku_number_str),
417 type1.sku);
418 smbios_maybe_add_str(1, offsetof(struct smbios_type_1, family_str),
419 type1.family);
420 if (qemu_uuid_set) {
421 /* We don't encode the UUID in the "wire format" here because this
422 * function is for legacy mode and needs to keep the guest ABI, and
423 * because we don't know what's the SMBIOS version advertised by the
424 * BIOS.
426 smbios_add_field(1, offsetof(struct smbios_type_1, uuid),
427 &qemu_uuid, 16);
431 uint8_t *smbios_get_table_legacy(size_t *length)
433 if (!smbios_legacy) {
434 *length = 0;
435 return NULL;
438 if (!smbios_immutable) {
439 smbios_build_type_0_fields();
440 smbios_build_type_1_fields();
441 smbios_validate_table();
442 smbios_immutable = true;
444 *length = smbios_entries_len;
445 return smbios_entries;
447 /* end: legacy setup functions for <= 2.0 machines */
450 bool smbios_skip_table(uint8_t type, bool required_table)
452 if (test_bit(type, have_binfile_bitmap)) {
453 return true; /* user provided their own binary blob(s) */
455 if (test_bit(type, have_fields_bitmap)) {
456 return false; /* user provided fields via command line */
458 if (smbios_have_defaults && required_table) {
459 return false; /* we're building tables, and this one's required */
461 return true;
464 static void smbios_build_type_0_table(void)
466 SMBIOS_BUILD_TABLE_PRE(0, 0x000, false); /* optional, leave up to BIOS */
468 SMBIOS_TABLE_SET_STR(0, vendor_str, type0.vendor);
469 SMBIOS_TABLE_SET_STR(0, bios_version_str, type0.version);
471 t->bios_starting_address_segment = cpu_to_le16(0xE800); /* from SeaBIOS */
473 SMBIOS_TABLE_SET_STR(0, bios_release_date_str, type0.date);
475 t->bios_rom_size = 0; /* hardcoded in SeaBIOS with FIXME comment */
477 t->bios_characteristics = cpu_to_le64(0x08); /* Not supported */
478 t->bios_characteristics_extension_bytes[0] = 0;
479 t->bios_characteristics_extension_bytes[1] = 0x14; /* TCD/SVVP | VM */
480 if (type0.uefi) {
481 t->bios_characteristics_extension_bytes[1] |= 0x08; /* |= UEFI */
484 if (type0.have_major_minor) {
485 t->system_bios_major_release = type0.major;
486 t->system_bios_minor_release = type0.minor;
487 } else {
488 t->system_bios_major_release = 0;
489 t->system_bios_minor_release = 0;
492 /* hardcoded in SeaBIOS */
493 t->embedded_controller_major_release = 0xFF;
494 t->embedded_controller_minor_release = 0xFF;
496 SMBIOS_BUILD_TABLE_POST;
499 /* Encode UUID from the big endian encoding described on RFC4122 to the wire
500 * format specified by SMBIOS version 2.6.
502 static void smbios_encode_uuid(struct smbios_uuid *uuid, QemuUUID *in)
504 memcpy(uuid, in, 16);
505 if (smbios_uuid_encoded) {
506 uuid->time_low = bswap32(uuid->time_low);
507 uuid->time_mid = bswap16(uuid->time_mid);
508 uuid->time_hi_and_version = bswap16(uuid->time_hi_and_version);
512 static void smbios_build_type_1_table(void)
514 SMBIOS_BUILD_TABLE_PRE(1, 0x100, true); /* required */
516 SMBIOS_TABLE_SET_STR(1, manufacturer_str, type1.manufacturer);
517 SMBIOS_TABLE_SET_STR(1, product_name_str, type1.product);
518 SMBIOS_TABLE_SET_STR(1, version_str, type1.version);
519 SMBIOS_TABLE_SET_STR(1, serial_number_str, type1.serial);
520 if (qemu_uuid_set) {
521 smbios_encode_uuid(&t->uuid, &qemu_uuid);
522 } else {
523 memset(&t->uuid, 0, 16);
525 t->wake_up_type = 0x06; /* power switch */
526 SMBIOS_TABLE_SET_STR(1, sku_number_str, type1.sku);
527 SMBIOS_TABLE_SET_STR(1, family_str, type1.family);
529 SMBIOS_BUILD_TABLE_POST;
532 static void smbios_build_type_2_table(void)
534 SMBIOS_BUILD_TABLE_PRE(2, 0x200, false); /* optional */
536 SMBIOS_TABLE_SET_STR(2, manufacturer_str, type2.manufacturer);
537 SMBIOS_TABLE_SET_STR(2, product_str, type2.product);
538 SMBIOS_TABLE_SET_STR(2, version_str, type2.version);
539 SMBIOS_TABLE_SET_STR(2, serial_number_str, type2.serial);
540 SMBIOS_TABLE_SET_STR(2, asset_tag_number_str, type2.asset);
541 t->feature_flags = 0x01; /* Motherboard */
542 SMBIOS_TABLE_SET_STR(2, location_str, type2.location);
543 t->chassis_handle = cpu_to_le16(0x300); /* Type 3 (System enclosure) */
544 t->board_type = 0x0A; /* Motherboard */
545 t->contained_element_count = 0;
547 SMBIOS_BUILD_TABLE_POST;
550 static void smbios_build_type_3_table(void)
552 SMBIOS_BUILD_TABLE_PRE(3, 0x300, true); /* required */
554 SMBIOS_TABLE_SET_STR(3, manufacturer_str, type3.manufacturer);
555 t->type = 0x01; /* Other */
556 SMBIOS_TABLE_SET_STR(3, version_str, type3.version);
557 SMBIOS_TABLE_SET_STR(3, serial_number_str, type3.serial);
558 SMBIOS_TABLE_SET_STR(3, asset_tag_number_str, type3.asset);
559 t->boot_up_state = 0x03; /* Safe */
560 t->power_supply_state = 0x03; /* Safe */
561 t->thermal_state = 0x03; /* Safe */
562 t->security_status = 0x02; /* Unknown */
563 t->oem_defined = cpu_to_le32(0);
564 t->height = 0;
565 t->number_of_power_cords = 0;
566 t->contained_element_count = 0;
567 SMBIOS_TABLE_SET_STR(3, sku_number_str, type3.sku);
569 SMBIOS_BUILD_TABLE_POST;
572 static void smbios_build_type_4_table(unsigned instance)
574 char sock_str[128];
576 SMBIOS_BUILD_TABLE_PRE(4, 0x400 + instance, true); /* required */
578 snprintf(sock_str, sizeof(sock_str), "%s%2x", type4.sock_pfx, instance);
579 SMBIOS_TABLE_SET_STR(4, socket_designation_str, sock_str);
580 t->processor_type = 0x03; /* CPU */
581 t->processor_family = 0x01; /* Other */
582 SMBIOS_TABLE_SET_STR(4, processor_manufacturer_str, type4.manufacturer);
583 t->processor_id[0] = cpu_to_le32(smbios_cpuid_version);
584 t->processor_id[1] = cpu_to_le32(smbios_cpuid_features);
585 SMBIOS_TABLE_SET_STR(4, processor_version_str, type4.version);
586 t->voltage = 0;
587 t->external_clock = cpu_to_le16(0); /* Unknown */
588 /* SVVP requires max_speed and current_speed to not be unknown. */
589 t->max_speed = cpu_to_le16(2000); /* 2000 MHz */
590 t->current_speed = cpu_to_le16(2000); /* 2000 MHz */
591 t->status = 0x41; /* Socket populated, CPU enabled */
592 t->processor_upgrade = 0x01; /* Other */
593 t->l1_cache_handle = cpu_to_le16(0xFFFF); /* N/A */
594 t->l2_cache_handle = cpu_to_le16(0xFFFF); /* N/A */
595 t->l3_cache_handle = cpu_to_le16(0xFFFF); /* N/A */
596 SMBIOS_TABLE_SET_STR(4, serial_number_str, type4.serial);
597 SMBIOS_TABLE_SET_STR(4, asset_tag_number_str, type4.asset);
598 SMBIOS_TABLE_SET_STR(4, part_number_str, type4.part);
599 t->core_count = t->core_enabled = smp_cores;
600 t->thread_count = smp_threads;
601 t->processor_characteristics = cpu_to_le16(0x02); /* Unknown */
602 t->processor_family2 = cpu_to_le16(0x01); /* Other */
604 SMBIOS_BUILD_TABLE_POST;
605 smbios_type4_count++;
608 static void smbios_build_type_11_table(void)
610 char count_str[128];
611 size_t i;
613 if (type11.nvalues == 0) {
614 return;
617 SMBIOS_BUILD_TABLE_PRE(11, 0xe00, true); /* required */
619 snprintf(count_str, sizeof(count_str), "%zu", type11.nvalues);
620 t->count = type11.nvalues;
622 for (i = 0; i < type11.nvalues; i++) {
623 SMBIOS_TABLE_SET_STR_LIST(11, type11.values[i]);
626 SMBIOS_BUILD_TABLE_POST;
629 #define MAX_T16_STD_SZ 0x80000000 /* 2T in Kilobytes */
631 static void smbios_build_type_16_table(unsigned dimm_cnt)
633 uint64_t size_kb;
635 SMBIOS_BUILD_TABLE_PRE(16, 0x1000, true); /* required */
637 t->location = 0x01; /* Other */
638 t->use = 0x03; /* System memory */
639 t->error_correction = 0x06; /* Multi-bit ECC (for Microsoft, per SeaBIOS) */
640 size_kb = QEMU_ALIGN_UP(ram_size, KiB) / KiB;
641 if (size_kb < MAX_T16_STD_SZ) {
642 t->maximum_capacity = cpu_to_le32(size_kb);
643 t->extended_maximum_capacity = cpu_to_le64(0);
644 } else {
645 t->maximum_capacity = cpu_to_le32(MAX_T16_STD_SZ);
646 t->extended_maximum_capacity = cpu_to_le64(ram_size);
648 t->memory_error_information_handle = cpu_to_le16(0xFFFE); /* Not provided */
649 t->number_of_memory_devices = cpu_to_le16(dimm_cnt);
651 SMBIOS_BUILD_TABLE_POST;
654 #define MAX_T17_STD_SZ 0x7FFF /* (32G - 1M), in Megabytes */
655 #define MAX_T17_EXT_SZ 0x80000000 /* 2P, in Megabytes */
657 static void smbios_build_type_17_table(unsigned instance, uint64_t size)
659 char loc_str[128];
660 uint64_t size_mb;
662 SMBIOS_BUILD_TABLE_PRE(17, 0x1100 + instance, true); /* required */
664 t->physical_memory_array_handle = cpu_to_le16(0x1000); /* Type 16 above */
665 t->memory_error_information_handle = cpu_to_le16(0xFFFE); /* Not provided */
666 t->total_width = cpu_to_le16(0xFFFF); /* Unknown */
667 t->data_width = cpu_to_le16(0xFFFF); /* Unknown */
668 size_mb = QEMU_ALIGN_UP(size, MiB) / MiB;
669 if (size_mb < MAX_T17_STD_SZ) {
670 t->size = cpu_to_le16(size_mb);
671 t->extended_size = cpu_to_le32(0);
672 } else {
673 assert(size_mb < MAX_T17_EXT_SZ);
674 t->size = cpu_to_le16(MAX_T17_STD_SZ);
675 t->extended_size = cpu_to_le32(size_mb);
677 t->form_factor = 0x09; /* DIMM */
678 t->device_set = 0; /* Not in a set */
679 snprintf(loc_str, sizeof(loc_str), "%s %d", type17.loc_pfx, instance);
680 SMBIOS_TABLE_SET_STR(17, device_locator_str, loc_str);
681 SMBIOS_TABLE_SET_STR(17, bank_locator_str, type17.bank);
682 t->memory_type = 0x07; /* RAM */
683 t->type_detail = cpu_to_le16(0x02); /* Other */
684 t->speed = cpu_to_le16(type17.speed);
685 SMBIOS_TABLE_SET_STR(17, manufacturer_str, type17.manufacturer);
686 SMBIOS_TABLE_SET_STR(17, serial_number_str, type17.serial);
687 SMBIOS_TABLE_SET_STR(17, asset_tag_number_str, type17.asset);
688 SMBIOS_TABLE_SET_STR(17, part_number_str, type17.part);
689 t->attributes = 0; /* Unknown */
690 t->configured_clock_speed = t->speed; /* reuse value for max speed */
691 t->minimum_voltage = cpu_to_le16(0); /* Unknown */
692 t->maximum_voltage = cpu_to_le16(0); /* Unknown */
693 t->configured_voltage = cpu_to_le16(0); /* Unknown */
695 SMBIOS_BUILD_TABLE_POST;
698 static void smbios_build_type_19_table(unsigned instance,
699 uint64_t start, uint64_t size)
701 uint64_t end, start_kb, end_kb;
703 SMBIOS_BUILD_TABLE_PRE(19, 0x1300 + instance, true); /* required */
705 end = start + size - 1;
706 assert(end > start);
707 start_kb = start / KiB;
708 end_kb = end / KiB;
709 if (start_kb < UINT32_MAX && end_kb < UINT32_MAX) {
710 t->starting_address = cpu_to_le32(start_kb);
711 t->ending_address = cpu_to_le32(end_kb);
712 t->extended_starting_address =
713 t->extended_ending_address = cpu_to_le64(0);
714 } else {
715 t->starting_address = t->ending_address = cpu_to_le32(UINT32_MAX);
716 t->extended_starting_address = cpu_to_le64(start);
717 t->extended_ending_address = cpu_to_le64(end);
719 t->memory_array_handle = cpu_to_le16(0x1000); /* Type 16 above */
720 t->partition_width = 1; /* One device per row */
722 SMBIOS_BUILD_TABLE_POST;
725 static void smbios_build_type_32_table(void)
727 SMBIOS_BUILD_TABLE_PRE(32, 0x2000, true); /* required */
729 memset(t->reserved, 0, 6);
730 t->boot_status = 0; /* No errors detected */
732 SMBIOS_BUILD_TABLE_POST;
735 static void smbios_build_type_127_table(void)
737 SMBIOS_BUILD_TABLE_PRE(127, 0x7F00, true); /* required */
738 SMBIOS_BUILD_TABLE_POST;
741 void smbios_set_cpuid(uint32_t version, uint32_t features)
743 smbios_cpuid_version = version;
744 smbios_cpuid_features = features;
747 #define SMBIOS_SET_DEFAULT(field, value) \
748 if (!field) { \
749 field = value; \
752 void smbios_set_defaults(const char *manufacturer, const char *product,
753 const char *version, bool legacy_mode,
754 bool uuid_encoded, SmbiosEntryPointType ep_type)
756 smbios_have_defaults = true;
757 smbios_legacy = legacy_mode;
758 smbios_uuid_encoded = uuid_encoded;
759 smbios_ep_type = ep_type;
761 /* drop unwanted version of command-line file blob(s) */
762 if (smbios_legacy) {
763 g_free(smbios_tables);
764 /* in legacy mode, also complain if fields were given for types > 1 */
765 if (find_next_bit(have_fields_bitmap,
766 SMBIOS_MAX_TYPE+1, 2) < SMBIOS_MAX_TYPE+1) {
767 error_report("can't process fields for smbios "
768 "types > 1 on machine versions < 2.1!");
769 exit(1);
771 } else {
772 g_free(smbios_entries);
775 SMBIOS_SET_DEFAULT(type1.manufacturer, manufacturer);
776 SMBIOS_SET_DEFAULT(type1.product, product);
777 SMBIOS_SET_DEFAULT(type1.version, version);
778 SMBIOS_SET_DEFAULT(type2.manufacturer, manufacturer);
779 SMBIOS_SET_DEFAULT(type2.product, product);
780 SMBIOS_SET_DEFAULT(type2.version, version);
781 SMBIOS_SET_DEFAULT(type3.manufacturer, manufacturer);
782 SMBIOS_SET_DEFAULT(type3.version, version);
783 SMBIOS_SET_DEFAULT(type4.sock_pfx, "CPU");
784 SMBIOS_SET_DEFAULT(type4.manufacturer, manufacturer);
785 SMBIOS_SET_DEFAULT(type4.version, version);
786 SMBIOS_SET_DEFAULT(type17.loc_pfx, "DIMM");
787 SMBIOS_SET_DEFAULT(type17.manufacturer, manufacturer);
790 static void smbios_entry_point_setup(void)
792 switch (smbios_ep_type) {
793 case SMBIOS_ENTRY_POINT_21:
794 memcpy(ep.ep21.anchor_string, "_SM_", 4);
795 memcpy(ep.ep21.intermediate_anchor_string, "_DMI_", 5);
796 ep.ep21.length = sizeof(struct smbios_21_entry_point);
797 ep.ep21.entry_point_revision = 0; /* formatted_area reserved */
798 memset(ep.ep21.formatted_area, 0, 5);
800 /* compliant with smbios spec v2.8 */
801 ep.ep21.smbios_major_version = 2;
802 ep.ep21.smbios_minor_version = 8;
803 ep.ep21.smbios_bcd_revision = 0x28;
805 /* set during table construction, but BIOS may override: */
806 ep.ep21.structure_table_length = cpu_to_le16(smbios_tables_len);
807 ep.ep21.max_structure_size = cpu_to_le16(smbios_table_max);
808 ep.ep21.number_of_structures = cpu_to_le16(smbios_table_cnt);
810 /* BIOS must recalculate */
811 ep.ep21.checksum = 0;
812 ep.ep21.intermediate_checksum = 0;
813 ep.ep21.structure_table_address = cpu_to_le32(0);
815 break;
816 case SMBIOS_ENTRY_POINT_30:
817 memcpy(ep.ep30.anchor_string, "_SM3_", 5);
818 ep.ep30.length = sizeof(struct smbios_30_entry_point);
819 ep.ep30.entry_point_revision = 1;
820 ep.ep30.reserved = 0;
822 /* compliant with smbios spec 3.0 */
823 ep.ep30.smbios_major_version = 3;
824 ep.ep30.smbios_minor_version = 0;
825 ep.ep30.smbios_doc_rev = 0;
827 /* set during table construct, but BIOS might override */
828 ep.ep30.structure_table_max_size = cpu_to_le32(smbios_tables_len);
830 /* BIOS must recalculate */
831 ep.ep30.checksum = 0;
832 ep.ep30.structure_table_address = cpu_to_le64(0);
834 break;
835 default:
836 abort();
837 break;
841 void smbios_get_tables(const struct smbios_phys_mem_area *mem_array,
842 const unsigned int mem_array_size,
843 uint8_t **tables, size_t *tables_len,
844 uint8_t **anchor, size_t *anchor_len)
846 unsigned i, dimm_cnt;
848 if (smbios_legacy) {
849 *tables = *anchor = NULL;
850 *tables_len = *anchor_len = 0;
851 return;
854 if (!smbios_immutable) {
855 smbios_build_type_0_table();
856 smbios_build_type_1_table();
857 smbios_build_type_2_table();
858 smbios_build_type_3_table();
860 smbios_smp_sockets = DIV_ROUND_UP(smp_cpus, smp_cores * smp_threads);
861 assert(smbios_smp_sockets >= 1);
863 for (i = 0; i < smbios_smp_sockets; i++) {
864 smbios_build_type_4_table(i);
867 smbios_build_type_11_table();
869 #define MAX_DIMM_SZ (16 * GiB)
870 #define GET_DIMM_SZ ((i < dimm_cnt - 1) ? MAX_DIMM_SZ \
871 : ((ram_size - 1) % MAX_DIMM_SZ) + 1)
873 dimm_cnt = QEMU_ALIGN_UP(ram_size, MAX_DIMM_SZ) / MAX_DIMM_SZ;
875 smbios_build_type_16_table(dimm_cnt);
877 for (i = 0; i < dimm_cnt; i++) {
878 smbios_build_type_17_table(i, GET_DIMM_SZ);
881 for (i = 0; i < mem_array_size; i++) {
882 smbios_build_type_19_table(i, mem_array[i].address,
883 mem_array[i].length);
886 smbios_build_type_32_table();
887 smbios_build_type_38_table();
888 smbios_build_type_127_table();
890 smbios_validate_table();
891 smbios_entry_point_setup();
892 smbios_immutable = true;
895 /* return tables blob and entry point (anchor), and their sizes */
896 *tables = smbios_tables;
897 *tables_len = smbios_tables_len;
898 *anchor = (uint8_t *)&ep;
900 /* calculate length based on anchor string */
901 if (!strncmp((char *)&ep, "_SM_", 4)) {
902 *anchor_len = sizeof(struct smbios_21_entry_point);
903 } else if (!strncmp((char *)&ep, "_SM3_", 5)) {
904 *anchor_len = sizeof(struct smbios_30_entry_point);
905 } else {
906 abort();
910 static void save_opt(const char **dest, QemuOpts *opts, const char *name)
912 const char *val = qemu_opt_get(opts, name);
914 if (val) {
915 *dest = val;
920 struct opt_list {
921 const char *name;
922 size_t *ndest;
923 const char ***dest;
926 static int save_opt_one(void *opaque,
927 const char *name, const char *value,
928 Error **errp)
930 struct opt_list *opt = opaque;
932 if (!g_str_equal(name, opt->name)) {
933 return 0;
936 *opt->dest = g_renew(const char *, *opt->dest, (*opt->ndest) + 1);
937 (*opt->dest)[*opt->ndest] = value;
938 (*opt->ndest)++;
939 return 0;
942 static void save_opt_list(size_t *ndest, const char ***dest,
943 QemuOpts *opts, const char *name)
945 struct opt_list opt = {
946 name, ndest, dest,
948 qemu_opt_foreach(opts, save_opt_one, &opt, NULL);
951 void smbios_entry_add(QemuOpts *opts, Error **errp)
953 const char *val;
955 assert(!smbios_immutable);
957 val = qemu_opt_get(opts, "file");
958 if (val) {
959 struct smbios_structure_header *header;
960 int size;
961 struct smbios_table *table; /* legacy mode only */
963 qemu_opts_validate(opts, qemu_smbios_file_opts, &error_fatal);
965 size = get_image_size(val);
966 if (size == -1 || size < sizeof(struct smbios_structure_header)) {
967 error_report("Cannot read SMBIOS file %s", val);
968 exit(1);
972 * NOTE: standard double '\0' terminator expected, per smbios spec.
973 * (except in legacy mode, where the second '\0' is implicit and
974 * will be inserted by the BIOS).
976 smbios_tables = g_realloc(smbios_tables, smbios_tables_len + size);
977 header = (struct smbios_structure_header *)(smbios_tables +
978 smbios_tables_len);
980 if (load_image(val, (uint8_t *)header) != size) {
981 error_report("Failed to load SMBIOS file %s", val);
982 exit(1);
985 if (test_bit(header->type, have_fields_bitmap)) {
986 error_report("can't load type %d struct, fields already specified!",
987 header->type);
988 exit(1);
990 set_bit(header->type, have_binfile_bitmap);
992 if (header->type == 4) {
993 smbios_type4_count++;
996 smbios_tables_len += size;
997 if (size > smbios_table_max) {
998 smbios_table_max = size;
1000 smbios_table_cnt++;
1002 /* add a copy of the newly loaded blob to legacy smbios_entries */
1003 /* NOTE: This code runs before smbios_set_defaults(), so we don't
1004 * yet know which mode (legacy vs. aggregate-table) will be
1005 * required. We therefore add the binary blob to both legacy
1006 * (smbios_entries) and aggregate (smbios_tables) tables, and
1007 * delete the one we don't need from smbios_set_defaults(),
1008 * once we know which machine version has been requested.
1010 if (!smbios_entries) {
1011 smbios_entries_len = sizeof(uint16_t);
1012 smbios_entries = g_malloc0(smbios_entries_len);
1014 smbios_entries = g_realloc(smbios_entries, smbios_entries_len +
1015 size + sizeof(*table));
1016 table = (struct smbios_table *)(smbios_entries + smbios_entries_len);
1017 table->header.type = SMBIOS_TABLE_ENTRY;
1018 table->header.length = cpu_to_le16(sizeof(*table) + size);
1019 memcpy(table->data, header, size);
1020 smbios_entries_len += sizeof(*table) + size;
1021 (*(uint16_t *)smbios_entries) =
1022 cpu_to_le16(le16_to_cpu(*(uint16_t *)smbios_entries) + 1);
1023 /* end: add a copy of the newly loaded blob to legacy smbios_entries */
1025 return;
1028 val = qemu_opt_get(opts, "type");
1029 if (val) {
1030 unsigned long type = strtoul(val, NULL, 0);
1032 if (type > SMBIOS_MAX_TYPE) {
1033 error_report("out of range!");
1034 exit(1);
1037 if (test_bit(type, have_binfile_bitmap)) {
1038 error_report("can't add fields, binary file already loaded!");
1039 exit(1);
1041 set_bit(type, have_fields_bitmap);
1043 switch (type) {
1044 case 0:
1045 qemu_opts_validate(opts, qemu_smbios_type0_opts, &error_fatal);
1046 save_opt(&type0.vendor, opts, "vendor");
1047 save_opt(&type0.version, opts, "version");
1048 save_opt(&type0.date, opts, "date");
1049 type0.uefi = qemu_opt_get_bool(opts, "uefi", false);
1051 val = qemu_opt_get(opts, "release");
1052 if (val) {
1053 if (sscanf(val, "%hhu.%hhu", &type0.major, &type0.minor) != 2) {
1054 error_report("Invalid release");
1055 exit(1);
1057 type0.have_major_minor = true;
1059 return;
1060 case 1:
1061 qemu_opts_validate(opts, qemu_smbios_type1_opts, &error_fatal);
1062 save_opt(&type1.manufacturer, opts, "manufacturer");
1063 save_opt(&type1.product, opts, "product");
1064 save_opt(&type1.version, opts, "version");
1065 save_opt(&type1.serial, opts, "serial");
1066 save_opt(&type1.sku, opts, "sku");
1067 save_opt(&type1.family, opts, "family");
1069 val = qemu_opt_get(opts, "uuid");
1070 if (val) {
1071 if (qemu_uuid_parse(val, &qemu_uuid) != 0) {
1072 error_report("Invalid UUID");
1073 exit(1);
1075 qemu_uuid_set = true;
1077 return;
1078 case 2:
1079 qemu_opts_validate(opts, qemu_smbios_type2_opts, &error_fatal);
1080 save_opt(&type2.manufacturer, opts, "manufacturer");
1081 save_opt(&type2.product, opts, "product");
1082 save_opt(&type2.version, opts, "version");
1083 save_opt(&type2.serial, opts, "serial");
1084 save_opt(&type2.asset, opts, "asset");
1085 save_opt(&type2.location, opts, "location");
1086 return;
1087 case 3:
1088 qemu_opts_validate(opts, qemu_smbios_type3_opts, &error_fatal);
1089 save_opt(&type3.manufacturer, opts, "manufacturer");
1090 save_opt(&type3.version, opts, "version");
1091 save_opt(&type3.serial, opts, "serial");
1092 save_opt(&type3.asset, opts, "asset");
1093 save_opt(&type3.sku, opts, "sku");
1094 return;
1095 case 4:
1096 qemu_opts_validate(opts, qemu_smbios_type4_opts, &error_fatal);
1097 save_opt(&type4.sock_pfx, opts, "sock_pfx");
1098 save_opt(&type4.manufacturer, opts, "manufacturer");
1099 save_opt(&type4.version, opts, "version");
1100 save_opt(&type4.serial, opts, "serial");
1101 save_opt(&type4.asset, opts, "asset");
1102 save_opt(&type4.part, opts, "part");
1103 return;
1104 case 11:
1105 qemu_opts_validate(opts, qemu_smbios_type11_opts, &error_fatal);
1106 save_opt_list(&type11.nvalues, &type11.values, opts, "value");
1107 return;
1108 case 17:
1109 qemu_opts_validate(opts, qemu_smbios_type17_opts, &error_fatal);
1110 save_opt(&type17.loc_pfx, opts, "loc_pfx");
1111 save_opt(&type17.bank, opts, "bank");
1112 save_opt(&type17.manufacturer, opts, "manufacturer");
1113 save_opt(&type17.serial, opts, "serial");
1114 save_opt(&type17.asset, opts, "asset");
1115 save_opt(&type17.part, opts, "part");
1116 type17.speed = qemu_opt_get_number(opts, "speed", 0);
1117 return;
1118 default:
1119 error_report("Don't know how to build fields for SMBIOS type %ld",
1120 type);
1121 exit(1);
1125 error_report("Must specify type= or file=");
1126 exit(1);