1 /* Support for generating ACPI tables and passing them to Guests 2 * 3 * Copyright (C) 2008-2010 Kevin O'Connor <kevin@koconnor.net> 4 * Copyright (C) 2006 Fabrice Bellard 5 * Copyright (C) 2013 Red Hat Inc 6 * 7 * Author: Michael S. Tsirkin <mst@redhat.com> 8 * 9 * This program is free software; you can redistribute it and/or modify 10 * it under the terms of the GNU General Public License as published by 11 * the Free Software Foundation; either version 2 of the License, or 12 * (at your option) any later version. 13 14 * This program is distributed in the hope that it will be useful, 15 * but WITHOUT ANY WARRANTY; without even the implied warranty of 16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 17 * GNU General Public License for more details. 18 19 * You should have received a copy of the GNU General Public License along 20 * with this program; if not, see <http://www.gnu.org/licenses/>. 21 */ 22 23 #include "acpi-build.h" 24 #include <stddef.h> 25 #include <glib.h> 26 #include "qemu-common.h" 27 #include "qemu/bitmap.h" 28 #include "qemu/range.h" 29 #include "hw/pci/pci.h" 30 #include "qom/cpu.h" 31 #include "hw/i386/pc.h" 32 #include "target-i386/cpu.h" 33 #include "hw/timer/hpet.h" 34 #include "hw/i386/acpi-defs.h" 35 #include "hw/acpi/acpi.h" 36 #include "hw/nvram/fw_cfg.h" 37 #include "bios-linker-loader.h" 38 #include "hw/loader.h" 39 40 /* Supported chipsets: */ 41 #include "hw/acpi/piix4.h" 42 #include "hw/i386/ich9.h" 43 #include "hw/pci/pci_bus.h" 44 #include "hw/pci-host/q35.h" 45 46 #include "hw/i386/q35-acpi-dsdt.hex" 47 #include "hw/i386/acpi-dsdt.hex" 48 49 #include "qapi/qmp/qint.h" 50 #include "qom/qom-qobject.h" 51 52 typedef struct AcpiCpuInfo { 53 DECLARE_BITMAP(found_cpus, MAX_CPUMASK_BITS + 1); 54 } AcpiCpuInfo; 55 56 typedef struct AcpiMcfgInfo { 57 uint64_t mcfg_base; 58 uint32_t mcfg_size; 59 } AcpiMcfgInfo; 60 61 typedef struct AcpiPmInfo { 62 bool s3_disabled; 63 bool s4_disabled; 64 uint8_t s4_val; 65 uint16_t sci_int; 66 uint8_t acpi_enable_cmd; 67 uint8_t acpi_disable_cmd; 68 uint32_t gpe0_blk; 69 uint32_t gpe0_blk_len; 70 uint32_t io_base; 71 } AcpiPmInfo; 72 73 typedef struct AcpiMiscInfo { 74 bool has_hpet; 75 DECLARE_BITMAP(slot_hotplug_enable, PCI_SLOT_MAX); 76 const unsigned char *dsdt_code; 77 unsigned dsdt_size; 78 uint16_t pvpanic_port; 79 } AcpiMiscInfo; 80 81 static void acpi_get_dsdt(AcpiMiscInfo *info) 82 { 83 Object *piix = piix4_pm_find(); 84 Object *lpc = ich9_lpc_find(); 85 assert(!!piix != !!lpc); 86 87 if (piix) { 88 info->dsdt_code = AcpiDsdtAmlCode; 89 info->dsdt_size = sizeof AcpiDsdtAmlCode; 90 } 91 if (lpc) { 92 info->dsdt_code = Q35AcpiDsdtAmlCode; 93 info->dsdt_size = sizeof Q35AcpiDsdtAmlCode; 94 } 95 } 96 97 static 98 int acpi_add_cpu_info(Object *o, void *opaque) 99 { 100 AcpiCpuInfo *cpu = opaque; 101 uint64_t apic_id; 102 103 if (object_dynamic_cast(o, TYPE_CPU)) { 104 apic_id = object_property_get_int(o, "apic-id", NULL); 105 assert(apic_id <= MAX_CPUMASK_BITS); 106 107 set_bit(apic_id, cpu->found_cpus); 108 } 109 110 object_child_foreach(o, acpi_add_cpu_info, opaque); 111 return 0; 112 } 113 114 static void acpi_get_cpu_info(AcpiCpuInfo *cpu) 115 { 116 Object *root = object_get_root(); 117 118 memset(cpu->found_cpus, 0, sizeof cpu->found_cpus); 119 object_child_foreach(root, acpi_add_cpu_info, cpu); 120 } 121 122 static void acpi_get_pm_info(AcpiPmInfo *pm) 123 { 124 Object *piix = piix4_pm_find(); 125 Object *lpc = ich9_lpc_find(); 126 Object *obj = NULL; 127 QObject *o; 128 129 if (piix) { 130 obj = piix; 131 } 132 if (lpc) { 133 obj = lpc; 134 } 135 assert(obj); 136 137 /* Fill in optional s3/s4 related properties */ 138 o = object_property_get_qobject(obj, ACPI_PM_PROP_S3_DISABLED, NULL); 139 if (o) { 140 pm->s3_disabled = qint_get_int(qobject_to_qint(o)); 141 } else { 142 pm->s3_disabled = false; 143 } 144 o = object_property_get_qobject(obj, ACPI_PM_PROP_S4_DISABLED, NULL); 145 if (o) { 146 pm->s4_disabled = qint_get_int(qobject_to_qint(o)); 147 } else { 148 pm->s4_disabled = false; 149 } 150 o = object_property_get_qobject(obj, ACPI_PM_PROP_S4_VAL, NULL); 151 if (o) { 152 pm->s4_val = qint_get_int(qobject_to_qint(o)); 153 } else { 154 pm->s4_val = false; 155 } 156 157 /* Fill in mandatory properties */ 158 pm->sci_int = object_property_get_int(obj, ACPI_PM_PROP_SCI_INT, NULL); 159 160 pm->acpi_enable_cmd = object_property_get_int(obj, 161 ACPI_PM_PROP_ACPI_ENABLE_CMD, 162 NULL); 163 pm->acpi_disable_cmd = object_property_get_int(obj, 164 ACPI_PM_PROP_ACPI_DISABLE_CMD, 165 NULL); 166 pm->io_base = object_property_get_int(obj, ACPI_PM_PROP_PM_IO_BASE, 167 NULL); 168 pm->gpe0_blk = object_property_get_int(obj, ACPI_PM_PROP_GPE0_BLK, 169 NULL); 170 pm->gpe0_blk_len = object_property_get_int(obj, ACPI_PM_PROP_GPE0_BLK_LEN, 171 NULL); 172 } 173 174 static void acpi_get_hotplug_info(AcpiMiscInfo *misc) 175 { 176 int i; 177 PCIBus *bus = find_i440fx(); 178 179 if (!bus) { 180 /* Only PIIX supports ACPI hotplug */ 181 memset(misc->slot_hotplug_enable, 0, sizeof misc->slot_hotplug_enable); 182 return; 183 } 184 185 memset(misc->slot_hotplug_enable, 0xff, 186 DIV_ROUND_UP(PCI_SLOT_MAX, BITS_PER_BYTE)); 187 188 for (i = 0; i < ARRAY_SIZE(bus->devices); ++i) { 189 PCIDeviceClass *pc; 190 PCIDevice *pdev = bus->devices[i]; 191 192 if (!pdev) { 193 continue; 194 } 195 196 pc = PCI_DEVICE_GET_CLASS(pdev); 197 198 if (pc->no_hotplug) { 199 int slot = PCI_SLOT(i); 200 201 clear_bit(slot, misc->slot_hotplug_enable); 202 } 203 } 204 } 205 206 static void acpi_get_misc_info(AcpiMiscInfo *info) 207 { 208 info->has_hpet = hpet_find(); 209 info->pvpanic_port = pvpanic_port(); 210 } 211 212 static void acpi_get_pci_info(PcPciInfo *info) 213 { 214 Object *pci_host; 215 bool ambiguous; 216 217 pci_host = object_resolve_path_type("", TYPE_PCI_HOST_BRIDGE, &ambiguous); 218 g_assert(!ambiguous); 219 g_assert(pci_host); 220 221 info->w32.begin = object_property_get_int(pci_host, 222 PCI_HOST_PROP_PCI_HOLE_START, 223 NULL); 224 info->w32.end = object_property_get_int(pci_host, 225 PCI_HOST_PROP_PCI_HOLE_END, 226 NULL); 227 info->w64.begin = object_property_get_int(pci_host, 228 PCI_HOST_PROP_PCI_HOLE64_START, 229 NULL); 230 info->w64.end = object_property_get_int(pci_host, 231 PCI_HOST_PROP_PCI_HOLE64_END, 232 NULL); 233 } 234 235 #define ACPI_BUILD_APPNAME "Bochs" 236 #define ACPI_BUILD_APPNAME6 "BOCHS " 237 #define ACPI_BUILD_APPNAME4 "BXPC" 238 239 #define ACPI_BUILD_DPRINTF(level, fmt, ...) do {} while (0) 240 241 #define ACPI_BUILD_TABLE_FILE "etc/acpi/tables" 242 #define ACPI_BUILD_RSDP_FILE "etc/acpi/rsdp" 243 244 static void 245 build_header(GArray *linker, GArray *table_data, 246 AcpiTableHeader *h, uint32_t sig, int len, uint8_t rev) 247 { 248 h->signature = cpu_to_le32(sig); 249 h->length = cpu_to_le32(len); 250 h->revision = rev; 251 memcpy(h->oem_id, ACPI_BUILD_APPNAME6, 6); 252 memcpy(h->oem_table_id, ACPI_BUILD_APPNAME4, 4); 253 memcpy(h->oem_table_id + 4, (void *)&sig, 4); 254 h->oem_revision = cpu_to_le32(1); 255 memcpy(h->asl_compiler_id, ACPI_BUILD_APPNAME4, 4); 256 h->asl_compiler_revision = cpu_to_le32(1); 257 h->checksum = 0; 258 /* Checksum to be filled in by Guest linker */ 259 bios_linker_loader_add_checksum(linker, ACPI_BUILD_TABLE_FILE, 260 table_data->data, h, len, &h->checksum); 261 } 262 263 static inline GArray *build_alloc_array(void) 264 { 265 return g_array_new(false, true /* clear */, 1); 266 } 267 268 static inline void build_free_array(GArray *array) 269 { 270 g_array_free(array, true); 271 } 272 273 static inline void build_prepend_byte(GArray *array, uint8_t val) 274 { 275 g_array_prepend_val(array, val); 276 } 277 278 static inline void build_append_byte(GArray *array, uint8_t val) 279 { 280 g_array_append_val(array, val); 281 } 282 283 static inline void build_append_array(GArray *array, GArray *val) 284 { 285 g_array_append_vals(array, val->data, val->len); 286 } 287 288 static void build_append_nameseg(GArray *array, const char *format, ...) 289 { 290 GString *s = g_string_new(""); 291 va_list args; 292 293 va_start(args, format); 294 g_string_vprintf(s, format, args); 295 va_end(args); 296 297 assert(s->len == 4); 298 g_array_append_vals(array, s->str, s->len); 299 g_string_free(s, true); 300 } 301 302 /* 5.4 Definition Block Encoding */ 303 enum { 304 PACKAGE_LENGTH_1BYTE_SHIFT = 6, /* Up to 63 - use extra 2 bits. */ 305 PACKAGE_LENGTH_2BYTE_SHIFT = 4, 306 PACKAGE_LENGTH_3BYTE_SHIFT = 12, 307 PACKAGE_LENGTH_4BYTE_SHIFT = 20, 308 }; 309 310 static void build_prepend_package_length(GArray *package, unsigned min_bytes) 311 { 312 uint8_t byte; 313 unsigned length = package->len; 314 unsigned length_bytes; 315 316 if (length + 1 < (1 << PACKAGE_LENGTH_1BYTE_SHIFT)) { 317 length_bytes = 1; 318 } else if (length + 2 < (1 << PACKAGE_LENGTH_3BYTE_SHIFT)) { 319 length_bytes = 2; 320 } else if (length + 3 < (1 << PACKAGE_LENGTH_4BYTE_SHIFT)) { 321 length_bytes = 3; 322 } else { 323 length_bytes = 4; 324 } 325 326 /* Force length to at least min_bytes. 327 * This wastes memory but that's how bios did it. 328 */ 329 length_bytes = MAX(length_bytes, min_bytes); 330 331 /* PkgLength is the length of the inclusive length of the data. */ 332 length += length_bytes; 333 334 switch (length_bytes) { 335 case 1: 336 byte = length; 337 build_prepend_byte(package, byte); 338 return; 339 case 4: 340 byte = length >> PACKAGE_LENGTH_4BYTE_SHIFT; 341 build_prepend_byte(package, byte); 342 length &= (1 << PACKAGE_LENGTH_4BYTE_SHIFT) - 1; 343 /* fall through */ 344 case 3: 345 byte = length >> PACKAGE_LENGTH_3BYTE_SHIFT; 346 build_prepend_byte(package, byte); 347 length &= (1 << PACKAGE_LENGTH_3BYTE_SHIFT) - 1; 348 /* fall through */ 349 case 2: 350 byte = length >> PACKAGE_LENGTH_2BYTE_SHIFT; 351 build_prepend_byte(package, byte); 352 length &= (1 << PACKAGE_LENGTH_2BYTE_SHIFT) - 1; 353 /* fall through */ 354 } 355 /* 356 * Most significant two bits of byte zero indicate how many following bytes 357 * are in PkgLength encoding. 358 */ 359 byte = ((length_bytes - 1) << PACKAGE_LENGTH_1BYTE_SHIFT) | length; 360 build_prepend_byte(package, byte); 361 } 362 363 static void build_package(GArray *package, uint8_t op, unsigned min_bytes) 364 { 365 build_prepend_package_length(package, min_bytes); 366 build_prepend_byte(package, op); 367 } 368 369 static void build_append_value(GArray *table, uint32_t value, int size) 370 { 371 uint8_t prefix; 372 int i; 373 374 switch (size) { 375 case 1: 376 prefix = 0x0A; /* BytePrefix */ 377 break; 378 case 2: 379 prefix = 0x0B; /* WordPrefix */ 380 break; 381 case 4: 382 prefix = 0x0C; /* DWordPrefix */ 383 break; 384 default: 385 assert(0); 386 return; 387 } 388 build_append_byte(table, prefix); 389 for (i = 0; i < size; ++i) { 390 build_append_byte(table, value & 0xFF); 391 value = value >> 8; 392 } 393 } 394 395 static void build_append_notify_target(GArray *method, GArray *target_name, 396 uint32_t value, int size) 397 { 398 GArray *notify = build_alloc_array(); 399 uint8_t op = 0xA0; /* IfOp */ 400 401 build_append_byte(notify, 0x93); /* LEqualOp */ 402 build_append_byte(notify, 0x68); /* Arg0Op */ 403 build_append_value(notify, value, size); 404 build_append_byte(notify, 0x86); /* NotifyOp */ 405 build_append_array(notify, target_name); 406 build_append_byte(notify, 0x69); /* Arg1Op */ 407 408 /* Pack it up */ 409 build_package(notify, op, 1); 410 411 build_append_array(method, notify); 412 413 build_free_array(notify); 414 } 415 416 #define ACPI_PORT_SMI_CMD 0x00b2 /* TODO: this is APM_CNT_IOPORT */ 417 418 static inline void *acpi_data_push(GArray *table_data, unsigned size) 419 { 420 unsigned off = table_data->len; 421 g_array_set_size(table_data, off + size); 422 return table_data->data + off; 423 } 424 425 static unsigned acpi_data_len(GArray *table) 426 { 427 return table->len * g_array_get_element_size(table); 428 } 429 430 static void acpi_align_size(GArray *blob, unsigned align) 431 { 432 /* Align size to multiple of given size. This reduces the chance 433 * we need to change size in the future (breaking cross version migration). 434 */ 435 g_array_set_size(blob, (ROUND_UP(acpi_data_len(blob), align) + 436 g_array_get_element_size(blob) - 1) / 437 g_array_get_element_size(blob)); 438 } 439 440 /* Get pointer within table in a safe manner */ 441 #define ACPI_BUILD_PTR(table, size, off, type) \ 442 ((type *)(acpi_data_get_ptr(table, size, off, sizeof(type)))) 443 444 static inline void *acpi_data_get_ptr(uint8_t *table_data, unsigned table_size, 445 unsigned off, unsigned size) 446 { 447 assert(off + size > off); 448 assert(off + size <= table_size); 449 return table_data + off; 450 } 451 452 static inline void acpi_add_table(GArray *table_offsets, GArray *table_data) 453 { 454 uint32_t offset = cpu_to_le32(table_data->len); 455 g_array_append_val(table_offsets, offset); 456 } 457 458 /* FACS */ 459 static void 460 build_facs(GArray *table_data, GArray *linker, PcGuestInfo *guest_info) 461 { 462 AcpiFacsDescriptorRev1 *facs = acpi_data_push(table_data, sizeof *facs); 463 facs->signature = cpu_to_le32(ACPI_FACS_SIGNATURE); 464 facs->length = cpu_to_le32(sizeof(*facs)); 465 } 466 467 /* Load chipset information in FADT */ 468 static void fadt_setup(AcpiFadtDescriptorRev1 *fadt, AcpiPmInfo *pm) 469 { 470 fadt->model = 1; 471 fadt->reserved1 = 0; 472 fadt->sci_int = cpu_to_le16(pm->sci_int); 473 fadt->smi_cmd = cpu_to_le32(ACPI_PORT_SMI_CMD); 474 fadt->acpi_enable = pm->acpi_enable_cmd; 475 fadt->acpi_disable = pm->acpi_disable_cmd; 476 /* EVT, CNT, TMR offset matches hw/acpi/core.c */ 477 fadt->pm1a_evt_blk = cpu_to_le32(pm->io_base); 478 fadt->pm1a_cnt_blk = cpu_to_le32(pm->io_base + 0x04); 479 fadt->pm_tmr_blk = cpu_to_le32(pm->io_base + 0x08); 480 fadt->gpe0_blk = cpu_to_le32(pm->gpe0_blk); 481 /* EVT, CNT, TMR length matches hw/acpi/core.c */ 482 fadt->pm1_evt_len = 4; 483 fadt->pm1_cnt_len = 2; 484 fadt->pm_tmr_len = 4; 485 fadt->gpe0_blk_len = pm->gpe0_blk_len; 486 fadt->plvl2_lat = cpu_to_le16(0xfff); /* C2 state not supported */ 487 fadt->plvl3_lat = cpu_to_le16(0xfff); /* C3 state not supported */ 488 fadt->flags = cpu_to_le32((1 << ACPI_FADT_F_WBINVD) | 489 (1 << ACPI_FADT_F_PROC_C1) | 490 (1 << ACPI_FADT_F_SLP_BUTTON) | 491 (1 << ACPI_FADT_F_RTC_S4)); 492 fadt->flags |= cpu_to_le32(1 << ACPI_FADT_F_USE_PLATFORM_CLOCK); 493 } 494 495 496 /* FADT */ 497 static void 498 build_fadt(GArray *table_data, GArray *linker, AcpiPmInfo *pm, 499 unsigned facs, unsigned dsdt) 500 { 501 AcpiFadtDescriptorRev1 *fadt = acpi_data_push(table_data, sizeof(*fadt)); 502 503 fadt->firmware_ctrl = cpu_to_le32(facs); 504 /* FACS address to be filled by Guest linker */ 505 bios_linker_loader_add_pointer(linker, ACPI_BUILD_TABLE_FILE, 506 ACPI_BUILD_TABLE_FILE, 507 table_data, &fadt->firmware_ctrl, 508 sizeof fadt->firmware_ctrl); 509 510 fadt->dsdt = cpu_to_le32(dsdt); 511 /* DSDT address to be filled by Guest linker */ 512 bios_linker_loader_add_pointer(linker, ACPI_BUILD_TABLE_FILE, 513 ACPI_BUILD_TABLE_FILE, 514 table_data, &fadt->dsdt, 515 sizeof fadt->dsdt); 516 517 fadt_setup(fadt, pm); 518 519 build_header(linker, table_data, 520 (void *)fadt, ACPI_FACP_SIGNATURE, sizeof(*fadt), 1); 521 } 522 523 static void 524 build_madt(GArray *table_data, GArray *linker, AcpiCpuInfo *cpu, 525 PcGuestInfo *guest_info) 526 { 527 int madt_start = table_data->len; 528 529 AcpiMultipleApicTable *madt; 530 AcpiMadtIoApic *io_apic; 531 AcpiMadtIntsrcovr *intsrcovr; 532 AcpiMadtLocalNmi *local_nmi; 533 int i; 534 535 madt = acpi_data_push(table_data, sizeof *madt); 536 madt->local_apic_address = cpu_to_le32(APIC_DEFAULT_ADDRESS); 537 madt->flags = cpu_to_le32(1); 538 539 for (i = 0; i < guest_info->apic_id_limit; i++) { 540 AcpiMadtProcessorApic *apic = acpi_data_push(table_data, sizeof *apic); 541 apic->type = ACPI_APIC_PROCESSOR; 542 apic->length = sizeof(*apic); 543 apic->processor_id = i; 544 apic->local_apic_id = i; 545 if (test_bit(i, cpu->found_cpus)) { 546 apic->flags = cpu_to_le32(1); 547 } else { 548 apic->flags = cpu_to_le32(0); 549 } 550 } 551 io_apic = acpi_data_push(table_data, sizeof *io_apic); 552 io_apic->type = ACPI_APIC_IO; 553 io_apic->length = sizeof(*io_apic); 554 #define ACPI_BUILD_IOAPIC_ID 0x0 555 io_apic->io_apic_id = ACPI_BUILD_IOAPIC_ID; 556 io_apic->address = cpu_to_le32(IO_APIC_DEFAULT_ADDRESS); 557 io_apic->interrupt = cpu_to_le32(0); 558 559 if (guest_info->apic_xrupt_override) { 560 intsrcovr = acpi_data_push(table_data, sizeof *intsrcovr); 561 intsrcovr->type = ACPI_APIC_XRUPT_OVERRIDE; 562 intsrcovr->length = sizeof(*intsrcovr); 563 intsrcovr->source = 0; 564 intsrcovr->gsi = cpu_to_le32(2); 565 intsrcovr->flags = cpu_to_le16(0); /* conforms to bus specifications */ 566 } 567 for (i = 1; i < 16; i++) { 568 #define ACPI_BUILD_PCI_IRQS ((1<<5) | (1<<9) | (1<<10) | (1<<11)) 569 if (!(ACPI_BUILD_PCI_IRQS & (1 << i))) { 570 /* No need for a INT source override structure. */ 571 continue; 572 } 573 intsrcovr = acpi_data_push(table_data, sizeof *intsrcovr); 574 intsrcovr->type = ACPI_APIC_XRUPT_OVERRIDE; 575 intsrcovr->length = sizeof(*intsrcovr); 576 intsrcovr->source = i; 577 intsrcovr->gsi = cpu_to_le32(i); 578 intsrcovr->flags = cpu_to_le16(0xd); /* active high, level triggered */ 579 } 580 581 local_nmi = acpi_data_push(table_data, sizeof *local_nmi); 582 local_nmi->type = ACPI_APIC_LOCAL_NMI; 583 local_nmi->length = sizeof(*local_nmi); 584 local_nmi->processor_id = 0xff; /* all processors */ 585 local_nmi->flags = cpu_to_le16(0); 586 local_nmi->lint = 1; /* ACPI_LINT1 */ 587 588 build_header(linker, table_data, 589 (void *)(table_data->data + madt_start), ACPI_APIC_SIGNATURE, 590 table_data->len - madt_start, 1); 591 } 592 593 /* Encode a hex value */ 594 static inline char acpi_get_hex(uint32_t val) 595 { 596 val &= 0x0f; 597 return (val <= 9) ? ('0' + val) : ('A' + val - 10); 598 } 599 600 #include "hw/i386/ssdt-proc.hex" 601 602 /* 0x5B 0x83 ProcessorOp PkgLength NameString ProcID */ 603 #define ACPI_PROC_OFFSET_CPUHEX (*ssdt_proc_name - *ssdt_proc_start + 2) 604 #define ACPI_PROC_OFFSET_CPUID1 (*ssdt_proc_name - *ssdt_proc_start + 4) 605 #define ACPI_PROC_OFFSET_CPUID2 (*ssdt_proc_id - *ssdt_proc_start) 606 #define ACPI_PROC_SIZEOF (*ssdt_proc_end - *ssdt_proc_start) 607 #define ACPI_PROC_AML (ssdp_proc_aml + *ssdt_proc_start) 608 609 /* 0x5B 0x82 DeviceOp PkgLength NameString */ 610 #define ACPI_PCIHP_OFFSET_HEX (*ssdt_pcihp_name - *ssdt_pcihp_start + 1) 611 #define ACPI_PCIHP_OFFSET_ID (*ssdt_pcihp_id - *ssdt_pcihp_start) 612 #define ACPI_PCIHP_OFFSET_ADR (*ssdt_pcihp_adr - *ssdt_pcihp_start) 613 #define ACPI_PCIHP_OFFSET_EJ0 (*ssdt_pcihp_ej0 - *ssdt_pcihp_start) 614 #define ACPI_PCIHP_SIZEOF (*ssdt_pcihp_end - *ssdt_pcihp_start) 615 #define ACPI_PCIHP_AML (ssdp_pcihp_aml + *ssdt_pcihp_start) 616 617 #define ACPI_SSDT_SIGNATURE 0x54445353 /* SSDT */ 618 #define ACPI_SSDT_HEADER_LENGTH 36 619 620 #include "hw/i386/ssdt-misc.hex" 621 #include "hw/i386/ssdt-pcihp.hex" 622 623 static void 624 build_append_notify(GArray *device, const char *name, 625 const char *format, int skip, int count) 626 { 627 int i; 628 GArray *method = build_alloc_array(); 629 uint8_t op = 0x14; /* MethodOp */ 630 631 build_append_nameseg(method, name); 632 build_append_byte(method, 0x02); /* MethodFlags: ArgCount */ 633 for (i = skip; i < count; i++) { 634 GArray *target = build_alloc_array(); 635 build_append_nameseg(target, format, i); 636 assert(i < 256); /* Fits in 1 byte */ 637 build_append_notify_target(method, target, i, 1); 638 build_free_array(target); 639 } 640 build_package(method, op, 2); 641 642 build_append_array(device, method); 643 build_free_array(method); 644 } 645 646 static void patch_pcihp(int slot, uint8_t *ssdt_ptr, uint32_t eject) 647 { 648 ssdt_ptr[ACPI_PCIHP_OFFSET_HEX] = acpi_get_hex(slot >> 4); 649 ssdt_ptr[ACPI_PCIHP_OFFSET_HEX + 1] = acpi_get_hex(slot); 650 ssdt_ptr[ACPI_PCIHP_OFFSET_ID] = slot; 651 ssdt_ptr[ACPI_PCIHP_OFFSET_ADR + 2] = slot; 652 653 /* Runtime patching of ACPI_EJ0: to disable hotplug for a slot, 654 * replace the method name: _EJ0 by ACPI_EJ0_. 655 */ 656 /* Sanity check */ 657 assert(!memcmp(ssdt_ptr + ACPI_PCIHP_OFFSET_EJ0, "_EJ0", 4)); 658 659 if (!eject) { 660 memcpy(ssdt_ptr + ACPI_PCIHP_OFFSET_EJ0, "EJ0_", 4); 661 } 662 } 663 664 static void patch_pci_windows(PcPciInfo *pci, uint8_t *start, unsigned size) 665 { 666 *ACPI_BUILD_PTR(start, size, acpi_pci32_start[0], uint32_t) = 667 cpu_to_le32(pci->w32.begin); 668 669 *ACPI_BUILD_PTR(start, size, acpi_pci32_end[0], uint32_t) = 670 cpu_to_le32(pci->w32.end - 1); 671 672 if (pci->w64.end || pci->w64.begin) { 673 *ACPI_BUILD_PTR(start, size, acpi_pci64_valid[0], uint8_t) = 1; 674 *ACPI_BUILD_PTR(start, size, acpi_pci64_start[0], uint64_t) = 675 cpu_to_le64(pci->w64.begin); 676 *ACPI_BUILD_PTR(start, size, acpi_pci64_end[0], uint64_t) = 677 cpu_to_le64(pci->w64.end - 1); 678 *ACPI_BUILD_PTR(start, size, acpi_pci64_length[0], uint64_t) = 679 cpu_to_le64(pci->w64.end - pci->w64.begin); 680 } else { 681 *ACPI_BUILD_PTR(start, size, acpi_pci64_valid[0], uint8_t) = 0; 682 } 683 } 684 685 static void 686 build_ssdt(GArray *table_data, GArray *linker, 687 AcpiCpuInfo *cpu, AcpiPmInfo *pm, AcpiMiscInfo *misc, 688 PcPciInfo *pci, PcGuestInfo *guest_info) 689 { 690 int acpi_cpus = MIN(0xff, guest_info->apic_id_limit); 691 int ssdt_start = table_data->len; 692 uint8_t *ssdt_ptr; 693 int i; 694 695 /* Copy header and patch values in the S3_ / S4_ / S5_ packages */ 696 ssdt_ptr = acpi_data_push(table_data, sizeof(ssdp_misc_aml)); 697 memcpy(ssdt_ptr, ssdp_misc_aml, sizeof(ssdp_misc_aml)); 698 if (pm->s3_disabled) { 699 ssdt_ptr[acpi_s3_name[0]] = 'X'; 700 } 701 if (pm->s4_disabled) { 702 ssdt_ptr[acpi_s4_name[0]] = 'X'; 703 } else { 704 ssdt_ptr[acpi_s4_pkg[0] + 1] = ssdt_ptr[acpi_s4_pkg[0] + 3] = 705 pm->s4_val; 706 } 707 708 patch_pci_windows(pci, ssdt_ptr, sizeof(ssdp_misc_aml)); 709 710 *(uint16_t *)(ssdt_ptr + *ssdt_isa_pest) = 711 cpu_to_le16(misc->pvpanic_port); 712 713 { 714 GArray *sb_scope = build_alloc_array(); 715 uint8_t op = 0x10; /* ScopeOp */ 716 717 build_append_nameseg(sb_scope, "_SB_"); 718 719 /* build Processor object for each processor */ 720 for (i = 0; i < acpi_cpus; i++) { 721 uint8_t *proc = acpi_data_push(sb_scope, ACPI_PROC_SIZEOF); 722 memcpy(proc, ACPI_PROC_AML, ACPI_PROC_SIZEOF); 723 proc[ACPI_PROC_OFFSET_CPUHEX] = acpi_get_hex(i >> 4); 724 proc[ACPI_PROC_OFFSET_CPUHEX+1] = acpi_get_hex(i); 725 proc[ACPI_PROC_OFFSET_CPUID1] = i; 726 proc[ACPI_PROC_OFFSET_CPUID2] = i; 727 } 728 729 /* build this code: 730 * Method(NTFY, 2) {If (LEqual(Arg0, 0x00)) {Notify(CP00, Arg1)} ...} 731 */ 732 /* Arg0 = Processor ID = APIC ID */ 733 build_append_notify(sb_scope, "NTFY", "CP%0.02X", 0, acpi_cpus); 734 735 /* build "Name(CPON, Package() { One, One, ..., Zero, Zero, ... })" */ 736 build_append_byte(sb_scope, 0x08); /* NameOp */ 737 build_append_nameseg(sb_scope, "CPON"); 738 739 { 740 GArray *package = build_alloc_array(); 741 uint8_t op = 0x12; /* PackageOp */ 742 743 build_append_byte(package, acpi_cpus); /* NumElements */ 744 for (i = 0; i < acpi_cpus; i++) { 745 uint8_t b = test_bit(i, cpu->found_cpus) ? 0x01 : 0x00; 746 build_append_byte(package, b); 747 } 748 749 build_package(package, op, 2); 750 build_append_array(sb_scope, package); 751 build_free_array(package); 752 } 753 754 { 755 GArray *pci0 = build_alloc_array(); 756 uint8_t op = 0x10; /* ScopeOp */; 757 758 build_append_nameseg(pci0, "PCI0"); 759 760 /* build Device object for each slot */ 761 for (i = 1; i < PCI_SLOT_MAX; i++) { 762 bool eject = test_bit(i, misc->slot_hotplug_enable); 763 void *pcihp = acpi_data_push(pci0, ACPI_PCIHP_SIZEOF); 764 765 memcpy(pcihp, ACPI_PCIHP_AML, ACPI_PCIHP_SIZEOF); 766 patch_pcihp(i, pcihp, eject); 767 } 768 769 build_append_notify(pci0, "PCNT", "S%0.02X_", 1, PCI_SLOT_MAX); 770 build_package(pci0, op, 3); 771 build_append_array(sb_scope, pci0); 772 build_free_array(pci0); 773 } 774 775 build_package(sb_scope, op, 3); 776 build_append_array(table_data, sb_scope); 777 build_free_array(sb_scope); 778 } 779 780 build_header(linker, table_data, 781 (void *)(table_data->data + ssdt_start), 782 ACPI_SSDT_SIGNATURE, table_data->len - ssdt_start, 1); 783 } 784 785 static void 786 build_hpet(GArray *table_data, GArray *linker) 787 { 788 Acpi20Hpet *hpet; 789 790 hpet = acpi_data_push(table_data, sizeof(*hpet)); 791 /* Note timer_block_id value must be kept in sync with value advertised by 792 * emulated hpet 793 */ 794 hpet->timer_block_id = cpu_to_le32(0x8086a201); 795 hpet->addr.address = cpu_to_le64(HPET_BASE); 796 build_header(linker, table_data, 797 (void *)hpet, ACPI_HPET_SIGNATURE, sizeof(*hpet), 1); 798 } 799 800 static void 801 acpi_build_srat_memory(AcpiSratMemoryAffinity *numamem, 802 uint64_t base, uint64_t len, int node, int enabled) 803 { 804 numamem->type = ACPI_SRAT_MEMORY; 805 numamem->length = sizeof(*numamem); 806 memset(numamem->proximity, 0, 4); 807 numamem->proximity[0] = node; 808 numamem->flags = cpu_to_le32(!!enabled); 809 numamem->base_addr = cpu_to_le64(base); 810 numamem->range_length = cpu_to_le64(len); 811 } 812 813 static void 814 build_srat(GArray *table_data, GArray *linker, 815 AcpiCpuInfo *cpu, PcGuestInfo *guest_info) 816 { 817 AcpiSystemResourceAffinityTable *srat; 818 AcpiSratProcessorAffinity *core; 819 AcpiSratMemoryAffinity *numamem; 820 821 int i; 822 uint64_t curnode; 823 int srat_start, numa_start, slots; 824 uint64_t mem_len, mem_base, next_base; 825 826 srat_start = table_data->len; 827 828 srat = acpi_data_push(table_data, sizeof *srat); 829 srat->reserved1 = cpu_to_le32(1); 830 core = (void *)(srat + 1); 831 832 for (i = 0; i < guest_info->apic_id_limit; ++i) { 833 core = acpi_data_push(table_data, sizeof *core); 834 core->type = ACPI_SRAT_PROCESSOR; 835 core->length = sizeof(*core); 836 core->local_apic_id = i; 837 curnode = guest_info->node_cpu[i]; 838 core->proximity_lo = curnode; 839 memset(core->proximity_hi, 0, 3); 840 core->local_sapic_eid = 0; 841 if (test_bit(i, cpu->found_cpus)) { 842 core->flags = cpu_to_le32(1); 843 } else { 844 core->flags = cpu_to_le32(0); 845 } 846 } 847 848 849 /* the memory map is a bit tricky, it contains at least one hole 850 * from 640k-1M and possibly another one from 3.5G-4G. 851 */ 852 next_base = 0; 853 numa_start = table_data->len; 854 855 numamem = acpi_data_push(table_data, sizeof *numamem); 856 acpi_build_srat_memory(numamem, 0, 640*1024, 0, 1); 857 next_base = 1024 * 1024; 858 for (i = 1; i < guest_info->numa_nodes + 1; ++i) { 859 mem_base = next_base; 860 mem_len = guest_info->node_mem[i - 1]; 861 if (i == 1) { 862 mem_len -= 1024 * 1024; 863 } 864 next_base = mem_base + mem_len; 865 866 /* Cut out the ACPI_PCI hole */ 867 if (mem_base <= guest_info->ram_size && 868 next_base > guest_info->ram_size) { 869 mem_len -= next_base - guest_info->ram_size; 870 if (mem_len > 0) { 871 numamem = acpi_data_push(table_data, sizeof *numamem); 872 acpi_build_srat_memory(numamem, mem_base, mem_len, i-1, 1); 873 } 874 mem_base = 1ULL << 32; 875 mem_len = next_base - guest_info->ram_size; 876 next_base += (1ULL << 32) - guest_info->ram_size; 877 } 878 numamem = acpi_data_push(table_data, sizeof *numamem); 879 acpi_build_srat_memory(numamem, mem_base, mem_len, i - 1, 1); 880 } 881 slots = (table_data->len - numa_start) / sizeof *numamem; 882 for (; slots < guest_info->numa_nodes + 2; slots++) { 883 numamem = acpi_data_push(table_data, sizeof *numamem); 884 acpi_build_srat_memory(numamem, 0, 0, 0, 0); 885 } 886 887 build_header(linker, table_data, 888 (void *)(table_data->data + srat_start), 889 ACPI_SRAT_SIGNATURE, 890 table_data->len - srat_start, 1); 891 } 892 893 static void 894 build_mcfg_q35(GArray *table_data, GArray *linker, AcpiMcfgInfo *info) 895 { 896 AcpiTableMcfg *mcfg; 897 uint32_t sig; 898 int len = sizeof(*mcfg) + 1 * sizeof(mcfg->allocation[0]); 899 900 mcfg = acpi_data_push(table_data, len); 901 mcfg->allocation[0].address = cpu_to_le64(info->mcfg_base); 902 /* Only a single allocation so no need to play with segments */ 903 mcfg->allocation[0].pci_segment = cpu_to_le16(0); 904 mcfg->allocation[0].start_bus_number = 0; 905 mcfg->allocation[0].end_bus_number = PCIE_MMCFG_BUS(info->mcfg_size - 1); 906 907 /* MCFG is used for ECAM which can be enabled or disabled by guest. 908 * To avoid table size changes (which create migration issues), 909 * always create the table even if there are no allocations, 910 * but set the signature to a reserved value in this case. 911 * ACPI spec requires OSPMs to ignore such tables. 912 */ 913 if (info->mcfg_base == PCIE_BASE_ADDR_UNMAPPED) { 914 sig = ACPI_RSRV_SIGNATURE; 915 } else { 916 sig = ACPI_MCFG_SIGNATURE; 917 } 918 build_header(linker, table_data, (void *)mcfg, sig, len, 1); 919 } 920 921 static void 922 build_dsdt(GArray *table_data, GArray *linker, AcpiMiscInfo *misc) 923 { 924 void *dsdt; 925 assert(misc->dsdt_code && misc->dsdt_size); 926 dsdt = acpi_data_push(table_data, misc->dsdt_size); 927 memcpy(dsdt, misc->dsdt_code, misc->dsdt_size); 928 } 929 930 /* Build final rsdt table */ 931 static void 932 build_rsdt(GArray *table_data, GArray *linker, GArray *table_offsets) 933 { 934 AcpiRsdtDescriptorRev1 *rsdt; 935 size_t rsdt_len; 936 int i; 937 938 rsdt_len = sizeof(*rsdt) + sizeof(uint32_t) * table_offsets->len; 939 rsdt = acpi_data_push(table_data, rsdt_len); 940 memcpy(rsdt->table_offset_entry, table_offsets->data, 941 sizeof(uint32_t) * table_offsets->len); 942 for (i = 0; i < table_offsets->len; ++i) { 943 /* rsdt->table_offset_entry to be filled by Guest linker */ 944 bios_linker_loader_add_pointer(linker, 945 ACPI_BUILD_TABLE_FILE, 946 ACPI_BUILD_TABLE_FILE, 947 table_data, &rsdt->table_offset_entry[i], 948 sizeof(uint32_t)); 949 } 950 build_header(linker, table_data, 951 (void *)rsdt, ACPI_RSDT_SIGNATURE, rsdt_len, 1); 952 } 953 954 static GArray * 955 build_rsdp(GArray *rsdp_table, GArray *linker, unsigned rsdt) 956 { 957 AcpiRsdpDescriptor *rsdp = acpi_data_push(rsdp_table, sizeof *rsdp); 958 959 bios_linker_loader_alloc(linker, ACPI_BUILD_RSDP_FILE, 1, 960 true /* fseg memory */); 961 962 rsdp->signature = cpu_to_le64(ACPI_RSDP_SIGNATURE); 963 memcpy(rsdp->oem_id, ACPI_BUILD_APPNAME6, 6); 964 rsdp->rsdt_physical_address = cpu_to_le32(rsdt); 965 /* Address to be filled by Guest linker */ 966 bios_linker_loader_add_pointer(linker, ACPI_BUILD_RSDP_FILE, 967 ACPI_BUILD_TABLE_FILE, 968 rsdp_table, &rsdp->rsdt_physical_address, 969 sizeof rsdp->rsdt_physical_address); 970 rsdp->checksum = 0; 971 /* Checksum to be filled by Guest linker */ 972 bios_linker_loader_add_checksum(linker, ACPI_BUILD_RSDP_FILE, 973 rsdp, rsdp, sizeof *rsdp, &rsdp->checksum); 974 975 return rsdp_table; 976 } 977 978 typedef 979 struct AcpiBuildTables { 980 GArray *table_data; 981 GArray *rsdp; 982 GArray *linker; 983 } AcpiBuildTables; 984 985 static inline void acpi_build_tables_init(AcpiBuildTables *tables) 986 { 987 tables->rsdp = g_array_new(false, true /* clear */, 1); 988 tables->table_data = g_array_new(false, true /* clear */, 1); 989 tables->linker = bios_linker_loader_init(); 990 } 991 992 static inline void acpi_build_tables_cleanup(AcpiBuildTables *tables, bool mfre) 993 { 994 void *linker_data = bios_linker_loader_cleanup(tables->linker); 995 if (mfre) { 996 g_free(linker_data); 997 } 998 g_array_free(tables->rsdp, mfre); 999 g_array_free(tables->table_data, mfre); 1000 } 1001 1002 typedef 1003 struct AcpiBuildState { 1004 /* Copy of table in RAM (for patching). */ 1005 uint8_t *table_ram; 1006 uint32_t table_size; 1007 /* Is table patched? */ 1008 uint8_t patched; 1009 PcGuestInfo *guest_info; 1010 } AcpiBuildState; 1011 1012 static bool acpi_get_mcfg(AcpiMcfgInfo *mcfg) 1013 { 1014 Object *pci_host; 1015 QObject *o; 1016 bool ambiguous; 1017 1018 pci_host = object_resolve_path_type("", TYPE_PCI_HOST_BRIDGE, &ambiguous); 1019 g_assert(!ambiguous); 1020 g_assert(pci_host); 1021 1022 o = object_property_get_qobject(pci_host, PCIE_HOST_MCFG_BASE, NULL); 1023 if (!o) { 1024 return false; 1025 } 1026 mcfg->mcfg_base = qint_get_int(qobject_to_qint(o)); 1027 1028 o = object_property_get_qobject(pci_host, PCIE_HOST_MCFG_SIZE, NULL); 1029 assert(o); 1030 mcfg->mcfg_size = qint_get_int(qobject_to_qint(o)); 1031 return true; 1032 } 1033 1034 static 1035 void acpi_build(PcGuestInfo *guest_info, AcpiBuildTables *tables) 1036 { 1037 GArray *table_offsets; 1038 unsigned facs, dsdt, rsdt; 1039 AcpiCpuInfo cpu; 1040 AcpiPmInfo pm; 1041 AcpiMiscInfo misc; 1042 AcpiMcfgInfo mcfg; 1043 PcPciInfo pci; 1044 uint8_t *u; 1045 1046 acpi_get_cpu_info(&cpu); 1047 acpi_get_pm_info(&pm); 1048 acpi_get_dsdt(&misc); 1049 acpi_get_hotplug_info(&misc); 1050 acpi_get_misc_info(&misc); 1051 acpi_get_pci_info(&pci); 1052 1053 table_offsets = g_array_new(false, true /* clear */, 1054 sizeof(uint32_t)); 1055 ACPI_BUILD_DPRINTF(3, "init ACPI tables\n"); 1056 1057 bios_linker_loader_alloc(tables->linker, ACPI_BUILD_TABLE_FILE, 1058 64 /* Ensure FACS is aligned */, 1059 false /* high memory */); 1060 1061 /* 1062 * FACS is pointed to by FADT. 1063 * We place it first since it's the only table that has alignment 1064 * requirements. 1065 */ 1066 facs = tables->table_data->len; 1067 build_facs(tables->table_data, tables->linker, guest_info); 1068 1069 /* DSDT is pointed to by FADT */ 1070 dsdt = tables->table_data->len; 1071 build_dsdt(tables->table_data, tables->linker, &misc); 1072 1073 /* ACPI tables pointed to by RSDT */ 1074 acpi_add_table(table_offsets, tables->table_data); 1075 build_fadt(tables->table_data, tables->linker, &pm, facs, dsdt); 1076 acpi_add_table(table_offsets, tables->table_data); 1077 1078 build_ssdt(tables->table_data, tables->linker, &cpu, &pm, &misc, &pci, 1079 guest_info); 1080 acpi_add_table(table_offsets, tables->table_data); 1081 1082 build_madt(tables->table_data, tables->linker, &cpu, guest_info); 1083 acpi_add_table(table_offsets, tables->table_data); 1084 if (misc.has_hpet) { 1085 build_hpet(tables->table_data, tables->linker); 1086 } 1087 if (guest_info->numa_nodes) { 1088 acpi_add_table(table_offsets, tables->table_data); 1089 build_srat(tables->table_data, tables->linker, &cpu, guest_info); 1090 } 1091 if (acpi_get_mcfg(&mcfg)) { 1092 acpi_add_table(table_offsets, tables->table_data); 1093 build_mcfg_q35(tables->table_data, tables->linker, &mcfg); 1094 } 1095 1096 /* Add tables supplied by user (if any) */ 1097 for (u = acpi_table_first(); u; u = acpi_table_next(u)) { 1098 unsigned len = acpi_table_len(u); 1099 1100 acpi_add_table(table_offsets, tables->table_data); 1101 g_array_append_vals(tables->table_data, u, len); 1102 } 1103 1104 /* RSDT is pointed to by RSDP */ 1105 rsdt = tables->table_data->len; 1106 build_rsdt(tables->table_data, tables->linker, table_offsets); 1107 1108 /* RSDP is in FSEG memory, so allocate it separately */ 1109 build_rsdp(tables->rsdp, tables->linker, rsdt); 1110 1111 /* We'll expose it all to Guest so align size to reduce 1112 * chance of size changes. 1113 * RSDP is small so it's easy to keep it immutable, no need to 1114 * bother with alignment. 1115 */ 1116 acpi_align_size(tables->table_data, 0x1000); 1117 1118 acpi_align_size(tables->linker, 0x1000); 1119 1120 /* Cleanup memory that's no longer used. */ 1121 g_array_free(table_offsets, true); 1122 } 1123 1124 static void acpi_build_update(void *build_opaque, uint32_t offset) 1125 { 1126 AcpiBuildState *build_state = build_opaque; 1127 AcpiBuildTables tables; 1128 1129 /* No state to update or already patched? Nothing to do. */ 1130 if (!build_state || build_state->patched) { 1131 return; 1132 } 1133 build_state->patched = 1; 1134 1135 acpi_build_tables_init(&tables); 1136 1137 acpi_build(build_state->guest_info, &tables); 1138 1139 assert(acpi_data_len(tables.table_data) == build_state->table_size); 1140 memcpy(build_state->table_ram, tables.table_data->data, 1141 build_state->table_size); 1142 1143 acpi_build_tables_cleanup(&tables, true); 1144 } 1145 1146 static void acpi_build_reset(void *build_opaque) 1147 { 1148 AcpiBuildState *build_state = build_opaque; 1149 build_state->patched = 0; 1150 } 1151 1152 static void *acpi_add_rom_blob(AcpiBuildState *build_state, GArray *blob, 1153 const char *name) 1154 { 1155 return rom_add_blob(name, blob->data, acpi_data_len(blob), -1, name, 1156 acpi_build_update, build_state); 1157 } 1158 1159 static const VMStateDescription vmstate_acpi_build = { 1160 .name = "acpi_build", 1161 .version_id = 1, 1162 .minimum_version_id = 1, 1163 .minimum_version_id_old = 1, 1164 .fields = (VMStateField[]) { 1165 VMSTATE_UINT8(patched, AcpiBuildState), 1166 VMSTATE_END_OF_LIST() 1167 }, 1168 }; 1169 1170 void acpi_setup(PcGuestInfo *guest_info) 1171 { 1172 AcpiBuildTables tables; 1173 AcpiBuildState *build_state; 1174 1175 if (!guest_info->fw_cfg) { 1176 ACPI_BUILD_DPRINTF(3, "No fw cfg. Bailing out.\n"); 1177 return; 1178 } 1179 1180 if (!guest_info->has_acpi_build) { 1181 ACPI_BUILD_DPRINTF(3, "ACPI build disabled. Bailing out.\n"); 1182 return; 1183 } 1184 1185 if (!acpi_enabled) { 1186 ACPI_BUILD_DPRINTF(3, "ACPI disabled. Bailing out.\n"); 1187 return; 1188 } 1189 1190 build_state = g_malloc0(sizeof *build_state); 1191 1192 build_state->guest_info = guest_info; 1193 1194 acpi_build_tables_init(&tables); 1195 acpi_build(build_state->guest_info, &tables); 1196 1197 /* Now expose it all to Guest */ 1198 build_state->table_ram = acpi_add_rom_blob(build_state, tables.table_data, 1199 ACPI_BUILD_TABLE_FILE); 1200 build_state->table_size = acpi_data_len(tables.table_data); 1201 1202 acpi_add_rom_blob(NULL, tables.linker, "etc/table-loader"); 1203 1204 /* 1205 * RSDP is small so it's easy to keep it immutable, no need to 1206 * bother with ROM blobs. 1207 */ 1208 fw_cfg_add_file(guest_info->fw_cfg, ACPI_BUILD_RSDP_FILE, 1209 tables.rsdp->data, acpi_data_len(tables.rsdp)); 1210 1211 qemu_register_reset(acpi_build_reset, build_state); 1212 acpi_build_reset(build_state); 1213 vmstate_register(NULL, 0, &vmstate_acpi_build, build_state); 1214 1215 /* Cleanup tables but don't free the memory: we track it 1216 * in build_state. 1217 */ 1218 acpi_build_tables_cleanup(&tables, false); 1219 } 1220