xref: /openbmc/qemu/hw/i386/acpi-build.c (revision 14a650ec)
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