blob: c82ef0eba4f84aa1f0c7bd65efdb954c03cc52b8 [file] [log] [blame]
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001/* SPDX-License-Identifier: GPL-2.0 */
2#ifndef _LINUX_EFI_H
3#define _LINUX_EFI_H
4
5/*
6 * Extensible Firmware Interface
7 * Based on 'Extensible Firmware Interface Specification' version 0.9, April 30, 1999
8 *
9 * Copyright (C) 1999 VA Linux Systems
10 * Copyright (C) 1999 Walt Drummond <drummond@valinux.com>
11 * Copyright (C) 1999, 2002-2003 Hewlett-Packard Co.
12 * David Mosberger-Tang <davidm@hpl.hp.com>
13 * Stephane Eranian <eranian@hpl.hp.com>
14 */
15#include <linux/init.h>
16#include <linux/string.h>
17#include <linux/time.h>
18#include <linux/types.h>
19#include <linux/proc_fs.h>
20#include <linux/rtc.h>
21#include <linux/ioport.h>
22#include <linux/pfn.h>
23#include <linux/pstore.h>
24#include <linux/range.h>
25#include <linux/reboot.h>
26#include <linux/uuid.h>
27#include <linux/screen_info.h>
28
29#include <asm/page.h>
30
31#define EFI_SUCCESS 0
32#define EFI_LOAD_ERROR ( 1 | (1UL << (BITS_PER_LONG-1)))
33#define EFI_INVALID_PARAMETER ( 2 | (1UL << (BITS_PER_LONG-1)))
34#define EFI_UNSUPPORTED ( 3 | (1UL << (BITS_PER_LONG-1)))
35#define EFI_BAD_BUFFER_SIZE ( 4 | (1UL << (BITS_PER_LONG-1)))
36#define EFI_BUFFER_TOO_SMALL ( 5 | (1UL << (BITS_PER_LONG-1)))
37#define EFI_NOT_READY ( 6 | (1UL << (BITS_PER_LONG-1)))
38#define EFI_DEVICE_ERROR ( 7 | (1UL << (BITS_PER_LONG-1)))
39#define EFI_WRITE_PROTECTED ( 8 | (1UL << (BITS_PER_LONG-1)))
40#define EFI_OUT_OF_RESOURCES ( 9 | (1UL << (BITS_PER_LONG-1)))
41#define EFI_NOT_FOUND (14 | (1UL << (BITS_PER_LONG-1)))
42#define EFI_ABORTED (21 | (1UL << (BITS_PER_LONG-1)))
43#define EFI_SECURITY_VIOLATION (26 | (1UL << (BITS_PER_LONG-1)))
44
45typedef unsigned long efi_status_t;
46typedef u8 efi_bool_t;
47typedef u16 efi_char16_t; /* UNICODE character */
48typedef u64 efi_physical_addr_t;
49typedef void *efi_handle_t;
50
David Brazdil0f672f62019-12-10 10:32:29 +000051/*
52 * The UEFI spec and EDK2 reference implementation both define EFI_GUID as
53 * struct { u32 a; u16; b; u16 c; u8 d[8]; }; and so the implied alignment
54 * is 32 bits not 8 bits like our guid_t. In some cases (i.e., on 32-bit ARM),
55 * this means that firmware services invoked by the kernel may assume that
56 * efi_guid_t* arguments are 32-bit aligned, and use memory accessors that
57 * do not tolerate misalignment. So let's set the minimum alignment to 32 bits.
58 *
59 * Note that the UEFI spec as well as some comments in the EDK2 code base
60 * suggest that EFI_GUID should be 64-bit aligned, but this appears to be
61 * a mistake, given that no code seems to exist that actually enforces that
62 * or relies on it.
63 */
64typedef guid_t efi_guid_t __aligned(__alignof__(u32));
Andrew Scullb4b6d4a2019-01-02 15:54:55 +000065
Olivier Deprez0e641232021-09-23 10:07:05 +020066#define EFI_GUID(a, b, c, d...) (efi_guid_t){ { \
67 (a) & 0xff, ((a) >> 8) & 0xff, ((a) >> 16) & 0xff, ((a) >> 24) & 0xff, \
68 (b) & 0xff, ((b) >> 8) & 0xff, \
69 (c) & 0xff, ((c) >> 8) & 0xff, d } }
Andrew Scullb4b6d4a2019-01-02 15:54:55 +000070
71/*
72 * Generic EFI table header
73 */
74typedef struct {
75 u64 signature;
76 u32 revision;
77 u32 headersize;
78 u32 crc32;
79 u32 reserved;
80} efi_table_hdr_t;
81
82/*
83 * Memory map descriptor:
84 */
85
86/* Memory types: */
87#define EFI_RESERVED_TYPE 0
88#define EFI_LOADER_CODE 1
89#define EFI_LOADER_DATA 2
90#define EFI_BOOT_SERVICES_CODE 3
91#define EFI_BOOT_SERVICES_DATA 4
92#define EFI_RUNTIME_SERVICES_CODE 5
93#define EFI_RUNTIME_SERVICES_DATA 6
94#define EFI_CONVENTIONAL_MEMORY 7
95#define EFI_UNUSABLE_MEMORY 8
96#define EFI_ACPI_RECLAIM_MEMORY 9
97#define EFI_ACPI_MEMORY_NVS 10
98#define EFI_MEMORY_MAPPED_IO 11
99#define EFI_MEMORY_MAPPED_IO_PORT_SPACE 12
100#define EFI_PAL_CODE 13
101#define EFI_PERSISTENT_MEMORY 14
102#define EFI_MAX_MEMORY_TYPE 15
103
104/* Attribute values: */
105#define EFI_MEMORY_UC ((u64)0x0000000000000001ULL) /* uncached */
106#define EFI_MEMORY_WC ((u64)0x0000000000000002ULL) /* write-coalescing */
107#define EFI_MEMORY_WT ((u64)0x0000000000000004ULL) /* write-through */
108#define EFI_MEMORY_WB ((u64)0x0000000000000008ULL) /* write-back */
109#define EFI_MEMORY_UCE ((u64)0x0000000000000010ULL) /* uncached, exported */
110#define EFI_MEMORY_WP ((u64)0x0000000000001000ULL) /* write-protect */
111#define EFI_MEMORY_RP ((u64)0x0000000000002000ULL) /* read-protect */
112#define EFI_MEMORY_XP ((u64)0x0000000000004000ULL) /* execute-protect */
113#define EFI_MEMORY_NV ((u64)0x0000000000008000ULL) /* non-volatile */
114#define EFI_MEMORY_MORE_RELIABLE \
115 ((u64)0x0000000000010000ULL) /* higher reliability */
116#define EFI_MEMORY_RO ((u64)0x0000000000020000ULL) /* read-only */
117#define EFI_MEMORY_RUNTIME ((u64)0x8000000000000000ULL) /* range requires runtime mapping */
118#define EFI_MEMORY_DESCRIPTOR_VERSION 1
119
120#define EFI_PAGE_SHIFT 12
121#define EFI_PAGE_SIZE (1UL << EFI_PAGE_SHIFT)
122#define EFI_PAGES_MAX (U64_MAX >> EFI_PAGE_SHIFT)
123
124typedef struct {
125 u32 type;
126 u32 pad;
127 u64 phys_addr;
128 u64 virt_addr;
129 u64 num_pages;
130 u64 attribute;
131} efi_memory_desc_t;
132
133typedef struct {
134 efi_guid_t guid;
135 u32 headersize;
136 u32 flags;
137 u32 imagesize;
138} efi_capsule_header_t;
139
140struct efi_boot_memmap {
141 efi_memory_desc_t **map;
142 unsigned long *map_size;
143 unsigned long *desc_size;
144 u32 *desc_ver;
145 unsigned long *key_ptr;
146 unsigned long *buff_size;
147};
148
149/*
150 * EFI capsule flags
151 */
152#define EFI_CAPSULE_PERSIST_ACROSS_RESET 0x00010000
153#define EFI_CAPSULE_POPULATE_SYSTEM_TABLE 0x00020000
154#define EFI_CAPSULE_INITIATE_RESET 0x00040000
155
156struct capsule_info {
157 efi_capsule_header_t header;
158 efi_capsule_header_t *capsule;
159 int reset_type;
160 long index;
161 size_t count;
162 size_t total_size;
163 struct page **pages;
164 phys_addr_t *phys;
165 size_t page_bytes_remain;
166};
167
168int __efi_capsule_setup_info(struct capsule_info *cap_info);
169
170/*
171 * Allocation types for calls to boottime->allocate_pages.
172 */
173#define EFI_ALLOCATE_ANY_PAGES 0
174#define EFI_ALLOCATE_MAX_ADDRESS 1
175#define EFI_ALLOCATE_ADDRESS 2
176#define EFI_MAX_ALLOCATE_TYPE 3
177
178typedef int (*efi_freemem_callback_t) (u64 start, u64 end, void *arg);
179
180/*
181 * Types and defines for Time Services
182 */
183#define EFI_TIME_ADJUST_DAYLIGHT 0x1
184#define EFI_TIME_IN_DAYLIGHT 0x2
185#define EFI_UNSPECIFIED_TIMEZONE 0x07ff
186
187typedef struct {
188 u16 year;
189 u8 month;
190 u8 day;
191 u8 hour;
192 u8 minute;
193 u8 second;
194 u8 pad1;
195 u32 nanosecond;
196 s16 timezone;
197 u8 daylight;
198 u8 pad2;
199} efi_time_t;
200
201typedef struct {
202 u32 resolution;
203 u32 accuracy;
204 u8 sets_to_zero;
205} efi_time_cap_t;
206
207typedef struct {
208 efi_table_hdr_t hdr;
209 u32 raise_tpl;
210 u32 restore_tpl;
211 u32 allocate_pages;
212 u32 free_pages;
213 u32 get_memory_map;
214 u32 allocate_pool;
215 u32 free_pool;
216 u32 create_event;
217 u32 set_timer;
218 u32 wait_for_event;
219 u32 signal_event;
220 u32 close_event;
221 u32 check_event;
222 u32 install_protocol_interface;
223 u32 reinstall_protocol_interface;
224 u32 uninstall_protocol_interface;
225 u32 handle_protocol;
226 u32 __reserved;
227 u32 register_protocol_notify;
228 u32 locate_handle;
229 u32 locate_device_path;
230 u32 install_configuration_table;
231 u32 load_image;
232 u32 start_image;
233 u32 exit;
234 u32 unload_image;
235 u32 exit_boot_services;
236 u32 get_next_monotonic_count;
237 u32 stall;
238 u32 set_watchdog_timer;
239 u32 connect_controller;
240 u32 disconnect_controller;
241 u32 open_protocol;
242 u32 close_protocol;
243 u32 open_protocol_information;
244 u32 protocols_per_handle;
245 u32 locate_handle_buffer;
246 u32 locate_protocol;
247 u32 install_multiple_protocol_interfaces;
248 u32 uninstall_multiple_protocol_interfaces;
249 u32 calculate_crc32;
250 u32 copy_mem;
251 u32 set_mem;
252 u32 create_event_ex;
253} __packed efi_boot_services_32_t;
254
255typedef struct {
256 efi_table_hdr_t hdr;
257 u64 raise_tpl;
258 u64 restore_tpl;
259 u64 allocate_pages;
260 u64 free_pages;
261 u64 get_memory_map;
262 u64 allocate_pool;
263 u64 free_pool;
264 u64 create_event;
265 u64 set_timer;
266 u64 wait_for_event;
267 u64 signal_event;
268 u64 close_event;
269 u64 check_event;
270 u64 install_protocol_interface;
271 u64 reinstall_protocol_interface;
272 u64 uninstall_protocol_interface;
273 u64 handle_protocol;
274 u64 __reserved;
275 u64 register_protocol_notify;
276 u64 locate_handle;
277 u64 locate_device_path;
278 u64 install_configuration_table;
279 u64 load_image;
280 u64 start_image;
281 u64 exit;
282 u64 unload_image;
283 u64 exit_boot_services;
284 u64 get_next_monotonic_count;
285 u64 stall;
286 u64 set_watchdog_timer;
287 u64 connect_controller;
288 u64 disconnect_controller;
289 u64 open_protocol;
290 u64 close_protocol;
291 u64 open_protocol_information;
292 u64 protocols_per_handle;
293 u64 locate_handle_buffer;
294 u64 locate_protocol;
295 u64 install_multiple_protocol_interfaces;
296 u64 uninstall_multiple_protocol_interfaces;
297 u64 calculate_crc32;
298 u64 copy_mem;
299 u64 set_mem;
300 u64 create_event_ex;
301} __packed efi_boot_services_64_t;
302
303/*
304 * EFI Boot Services table
305 */
306typedef struct {
307 efi_table_hdr_t hdr;
308 void *raise_tpl;
309 void *restore_tpl;
310 efi_status_t (*allocate_pages)(int, int, unsigned long,
311 efi_physical_addr_t *);
312 efi_status_t (*free_pages)(efi_physical_addr_t, unsigned long);
313 efi_status_t (*get_memory_map)(unsigned long *, void *, unsigned long *,
314 unsigned long *, u32 *);
315 efi_status_t (*allocate_pool)(int, unsigned long, void **);
316 efi_status_t (*free_pool)(void *);
317 void *create_event;
318 void *set_timer;
319 void *wait_for_event;
320 void *signal_event;
321 void *close_event;
322 void *check_event;
323 void *install_protocol_interface;
324 void *reinstall_protocol_interface;
325 void *uninstall_protocol_interface;
326 efi_status_t (*handle_protocol)(efi_handle_t, efi_guid_t *, void **);
327 void *__reserved;
328 void *register_protocol_notify;
329 efi_status_t (*locate_handle)(int, efi_guid_t *, void *,
330 unsigned long *, efi_handle_t *);
331 void *locate_device_path;
332 efi_status_t (*install_configuration_table)(efi_guid_t *, void *);
333 void *load_image;
334 void *start_image;
335 void *exit;
336 void *unload_image;
337 efi_status_t (*exit_boot_services)(efi_handle_t, unsigned long);
338 void *get_next_monotonic_count;
339 void *stall;
340 void *set_watchdog_timer;
341 void *connect_controller;
342 void *disconnect_controller;
343 void *open_protocol;
344 void *close_protocol;
345 void *open_protocol_information;
346 void *protocols_per_handle;
347 void *locate_handle_buffer;
348 efi_status_t (*locate_protocol)(efi_guid_t *, void *, void **);
349 void *install_multiple_protocol_interfaces;
350 void *uninstall_multiple_protocol_interfaces;
351 void *calculate_crc32;
352 void *copy_mem;
353 void *set_mem;
354 void *create_event_ex;
355} efi_boot_services_t;
356
357typedef enum {
358 EfiPciIoWidthUint8,
359 EfiPciIoWidthUint16,
360 EfiPciIoWidthUint32,
361 EfiPciIoWidthUint64,
362 EfiPciIoWidthFifoUint8,
363 EfiPciIoWidthFifoUint16,
364 EfiPciIoWidthFifoUint32,
365 EfiPciIoWidthFifoUint64,
366 EfiPciIoWidthFillUint8,
367 EfiPciIoWidthFillUint16,
368 EfiPciIoWidthFillUint32,
369 EfiPciIoWidthFillUint64,
370 EfiPciIoWidthMaximum
371} EFI_PCI_IO_PROTOCOL_WIDTH;
372
373typedef enum {
374 EfiPciIoAttributeOperationGet,
375 EfiPciIoAttributeOperationSet,
376 EfiPciIoAttributeOperationEnable,
377 EfiPciIoAttributeOperationDisable,
378 EfiPciIoAttributeOperationSupported,
379 EfiPciIoAttributeOperationMaximum
380} EFI_PCI_IO_PROTOCOL_ATTRIBUTE_OPERATION;
381
382typedef struct {
383 u32 read;
384 u32 write;
385} efi_pci_io_protocol_access_32_t;
386
387typedef struct {
388 u64 read;
389 u64 write;
390} efi_pci_io_protocol_access_64_t;
391
392typedef struct {
393 void *read;
394 void *write;
395} efi_pci_io_protocol_access_t;
396
397typedef struct {
398 u32 poll_mem;
399 u32 poll_io;
400 efi_pci_io_protocol_access_32_t mem;
401 efi_pci_io_protocol_access_32_t io;
402 efi_pci_io_protocol_access_32_t pci;
403 u32 copy_mem;
404 u32 map;
405 u32 unmap;
406 u32 allocate_buffer;
407 u32 free_buffer;
408 u32 flush;
409 u32 get_location;
410 u32 attributes;
411 u32 get_bar_attributes;
412 u32 set_bar_attributes;
413 u64 romsize;
414 u32 romimage;
415} efi_pci_io_protocol_32_t;
416
417typedef struct {
418 u64 poll_mem;
419 u64 poll_io;
420 efi_pci_io_protocol_access_64_t mem;
421 efi_pci_io_protocol_access_64_t io;
422 efi_pci_io_protocol_access_64_t pci;
423 u64 copy_mem;
424 u64 map;
425 u64 unmap;
426 u64 allocate_buffer;
427 u64 free_buffer;
428 u64 flush;
429 u64 get_location;
430 u64 attributes;
431 u64 get_bar_attributes;
432 u64 set_bar_attributes;
433 u64 romsize;
434 u64 romimage;
435} efi_pci_io_protocol_64_t;
436
437typedef struct {
438 void *poll_mem;
439 void *poll_io;
440 efi_pci_io_protocol_access_t mem;
441 efi_pci_io_protocol_access_t io;
442 efi_pci_io_protocol_access_t pci;
443 void *copy_mem;
444 void *map;
445 void *unmap;
446 void *allocate_buffer;
447 void *free_buffer;
448 void *flush;
449 void *get_location;
450 void *attributes;
451 void *get_bar_attributes;
452 void *set_bar_attributes;
453 uint64_t romsize;
454 void *romimage;
455} efi_pci_io_protocol_t;
456
457#define EFI_PCI_IO_ATTRIBUTE_ISA_MOTHERBOARD_IO 0x0001
458#define EFI_PCI_IO_ATTRIBUTE_ISA_IO 0x0002
459#define EFI_PCI_IO_ATTRIBUTE_VGA_PALETTE_IO 0x0004
460#define EFI_PCI_IO_ATTRIBUTE_VGA_MEMORY 0x0008
461#define EFI_PCI_IO_ATTRIBUTE_VGA_IO 0x0010
462#define EFI_PCI_IO_ATTRIBUTE_IDE_PRIMARY_IO 0x0020
463#define EFI_PCI_IO_ATTRIBUTE_IDE_SECONDARY_IO 0x0040
464#define EFI_PCI_IO_ATTRIBUTE_MEMORY_WRITE_COMBINE 0x0080
465#define EFI_PCI_IO_ATTRIBUTE_IO 0x0100
466#define EFI_PCI_IO_ATTRIBUTE_MEMORY 0x0200
467#define EFI_PCI_IO_ATTRIBUTE_BUS_MASTER 0x0400
468#define EFI_PCI_IO_ATTRIBUTE_MEMORY_CACHED 0x0800
469#define EFI_PCI_IO_ATTRIBUTE_MEMORY_DISABLE 0x1000
470#define EFI_PCI_IO_ATTRIBUTE_EMBEDDED_DEVICE 0x2000
471#define EFI_PCI_IO_ATTRIBUTE_EMBEDDED_ROM 0x4000
472#define EFI_PCI_IO_ATTRIBUTE_DUAL_ADDRESS_CYCLE 0x8000
473#define EFI_PCI_IO_ATTRIBUTE_ISA_IO_16 0x10000
474#define EFI_PCI_IO_ATTRIBUTE_VGA_PALETTE_IO_16 0x20000
475#define EFI_PCI_IO_ATTRIBUTE_VGA_IO_16 0x40000
476
477typedef struct {
478 u32 version;
479 u32 get;
480 u32 set;
481 u32 del;
482 u32 get_all;
483} apple_properties_protocol_32_t;
484
485typedef struct {
486 u64 version;
487 u64 get;
488 u64 set;
489 u64 del;
490 u64 get_all;
491} apple_properties_protocol_64_t;
492
493typedef struct {
494 u32 get_capability;
495 u32 get_event_log;
496 u32 hash_log_extend_event;
497 u32 submit_command;
498 u32 get_active_pcr_banks;
499 u32 set_active_pcr_banks;
500 u32 get_result_of_set_active_pcr_banks;
501} efi_tcg2_protocol_32_t;
502
503typedef struct {
504 u64 get_capability;
505 u64 get_event_log;
506 u64 hash_log_extend_event;
507 u64 submit_command;
508 u64 get_active_pcr_banks;
509 u64 set_active_pcr_banks;
510 u64 get_result_of_set_active_pcr_banks;
511} efi_tcg2_protocol_64_t;
512
513typedef u32 efi_tcg2_event_log_format;
514
515typedef struct {
516 void *get_capability;
517 efi_status_t (*get_event_log)(efi_handle_t, efi_tcg2_event_log_format,
518 efi_physical_addr_t *, efi_physical_addr_t *, efi_bool_t *);
519 void *hash_log_extend_event;
520 void *submit_command;
521 void *get_active_pcr_banks;
522 void *set_active_pcr_banks;
523 void *get_result_of_set_active_pcr_banks;
524} efi_tcg2_protocol_t;
525
526/*
527 * Types and defines for EFI ResetSystem
528 */
529#define EFI_RESET_COLD 0
530#define EFI_RESET_WARM 1
531#define EFI_RESET_SHUTDOWN 2
532
533/*
534 * EFI Runtime Services table
535 */
536#define EFI_RUNTIME_SERVICES_SIGNATURE ((u64)0x5652453544e5552ULL)
537#define EFI_RUNTIME_SERVICES_REVISION 0x00010000
538
539typedef struct {
540 efi_table_hdr_t hdr;
541 u32 get_time;
542 u32 set_time;
543 u32 get_wakeup_time;
544 u32 set_wakeup_time;
545 u32 set_virtual_address_map;
546 u32 convert_pointer;
547 u32 get_variable;
548 u32 get_next_variable;
549 u32 set_variable;
550 u32 get_next_high_mono_count;
551 u32 reset_system;
552 u32 update_capsule;
553 u32 query_capsule_caps;
554 u32 query_variable_info;
555} efi_runtime_services_32_t;
556
557typedef struct {
558 efi_table_hdr_t hdr;
559 u64 get_time;
560 u64 set_time;
561 u64 get_wakeup_time;
562 u64 set_wakeup_time;
563 u64 set_virtual_address_map;
564 u64 convert_pointer;
565 u64 get_variable;
566 u64 get_next_variable;
567 u64 set_variable;
568 u64 get_next_high_mono_count;
569 u64 reset_system;
570 u64 update_capsule;
571 u64 query_capsule_caps;
572 u64 query_variable_info;
573} efi_runtime_services_64_t;
574
575typedef efi_status_t efi_get_time_t (efi_time_t *tm, efi_time_cap_t *tc);
576typedef efi_status_t efi_set_time_t (efi_time_t *tm);
577typedef efi_status_t efi_get_wakeup_time_t (efi_bool_t *enabled, efi_bool_t *pending,
578 efi_time_t *tm);
579typedef efi_status_t efi_set_wakeup_time_t (efi_bool_t enabled, efi_time_t *tm);
580typedef efi_status_t efi_get_variable_t (efi_char16_t *name, efi_guid_t *vendor, u32 *attr,
581 unsigned long *data_size, void *data);
582typedef efi_status_t efi_get_next_variable_t (unsigned long *name_size, efi_char16_t *name,
583 efi_guid_t *vendor);
584typedef efi_status_t efi_set_variable_t (efi_char16_t *name, efi_guid_t *vendor,
585 u32 attr, unsigned long data_size,
586 void *data);
587typedef efi_status_t efi_get_next_high_mono_count_t (u32 *count);
588typedef void efi_reset_system_t (int reset_type, efi_status_t status,
589 unsigned long data_size, efi_char16_t *data);
590typedef efi_status_t efi_set_virtual_address_map_t (unsigned long memory_map_size,
591 unsigned long descriptor_size,
592 u32 descriptor_version,
593 efi_memory_desc_t *virtual_map);
594typedef efi_status_t efi_query_variable_info_t(u32 attr,
595 u64 *storage_space,
596 u64 *remaining_space,
597 u64 *max_variable_size);
598typedef efi_status_t efi_update_capsule_t(efi_capsule_header_t **capsules,
599 unsigned long count,
600 unsigned long sg_list);
601typedef efi_status_t efi_query_capsule_caps_t(efi_capsule_header_t **capsules,
602 unsigned long count,
603 u64 *max_size,
604 int *reset_type);
605typedef efi_status_t efi_query_variable_store_t(u32 attributes,
606 unsigned long size,
607 bool nonblocking);
608
609typedef struct {
610 efi_table_hdr_t hdr;
611 efi_get_time_t *get_time;
612 efi_set_time_t *set_time;
613 efi_get_wakeup_time_t *get_wakeup_time;
614 efi_set_wakeup_time_t *set_wakeup_time;
615 efi_set_virtual_address_map_t *set_virtual_address_map;
616 void *convert_pointer;
617 efi_get_variable_t *get_variable;
618 efi_get_next_variable_t *get_next_variable;
619 efi_set_variable_t *set_variable;
620 efi_get_next_high_mono_count_t *get_next_high_mono_count;
621 efi_reset_system_t *reset_system;
622 efi_update_capsule_t *update_capsule;
623 efi_query_capsule_caps_t *query_capsule_caps;
624 efi_query_variable_info_t *query_variable_info;
625} efi_runtime_services_t;
626
627void efi_native_runtime_setup(void);
628
629/*
630 * EFI Configuration Table and GUID definitions
631 *
632 * These are all defined in a single line to make them easier to
633 * grep for and to see them at a glance - while still having a
634 * similar structure to the definitions in the spec.
635 *
636 * Here's how they are structured:
637 *
638 * GUID: 12345678-1234-1234-1234-123456789012
639 * Spec:
640 * #define EFI_SOME_PROTOCOL_GUID \
641 * {0x12345678,0x1234,0x1234,\
642 * {0x12,0x34,0x12,0x34,0x56,0x78,0x90,0x12}}
643 * Here:
644 * #define SOME_PROTOCOL_GUID EFI_GUID(0x12345678, 0x1234, 0x1234, 0x12, 0x34, 0x12, 0x34, 0x56, 0x78, 0x90, 0x12)
645 * ^ tabs ^extra space
646 *
647 * Note that the 'extra space' separates the values at the same place
648 * where the UEFI SPEC breaks the line.
649 */
650#define NULL_GUID EFI_GUID(0x00000000, 0x0000, 0x0000, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00)
651#define MPS_TABLE_GUID EFI_GUID(0xeb9d2d2f, 0x2d88, 0x11d3, 0x9a, 0x16, 0x00, 0x90, 0x27, 0x3f, 0xc1, 0x4d)
652#define ACPI_TABLE_GUID EFI_GUID(0xeb9d2d30, 0x2d88, 0x11d3, 0x9a, 0x16, 0x00, 0x90, 0x27, 0x3f, 0xc1, 0x4d)
653#define ACPI_20_TABLE_GUID EFI_GUID(0x8868e871, 0xe4f1, 0x11d3, 0xbc, 0x22, 0x00, 0x80, 0xc7, 0x3c, 0x88, 0x81)
654#define SMBIOS_TABLE_GUID EFI_GUID(0xeb9d2d31, 0x2d88, 0x11d3, 0x9a, 0x16, 0x00, 0x90, 0x27, 0x3f, 0xc1, 0x4d)
655#define SMBIOS3_TABLE_GUID EFI_GUID(0xf2fd1544, 0x9794, 0x4a2c, 0x99, 0x2e, 0xe5, 0xbb, 0xcf, 0x20, 0xe3, 0x94)
656#define SAL_SYSTEM_TABLE_GUID EFI_GUID(0xeb9d2d32, 0x2d88, 0x11d3, 0x9a, 0x16, 0x00, 0x90, 0x27, 0x3f, 0xc1, 0x4d)
657#define HCDP_TABLE_GUID EFI_GUID(0xf951938d, 0x620b, 0x42ef, 0x82, 0x79, 0xa8, 0x4b, 0x79, 0x61, 0x78, 0x98)
658#define UGA_IO_PROTOCOL_GUID EFI_GUID(0x61a4d49e, 0x6f68, 0x4f1b, 0xb9, 0x22, 0xa8, 0x6e, 0xed, 0x0b, 0x07, 0xa2)
659#define EFI_GLOBAL_VARIABLE_GUID EFI_GUID(0x8be4df61, 0x93ca, 0x11d2, 0xaa, 0x0d, 0x00, 0xe0, 0x98, 0x03, 0x2b, 0x8c)
660#define UV_SYSTEM_TABLE_GUID EFI_GUID(0x3b13a7d4, 0x633e, 0x11dd, 0x93, 0xec, 0xda, 0x25, 0x56, 0xd8, 0x95, 0x93)
661#define LINUX_EFI_CRASH_GUID EFI_GUID(0xcfc8fc79, 0xbe2e, 0x4ddc, 0x97, 0xf0, 0x9f, 0x98, 0xbf, 0xe2, 0x98, 0xa0)
662#define LOADED_IMAGE_PROTOCOL_GUID EFI_GUID(0x5b1b31a1, 0x9562, 0x11d2, 0x8e, 0x3f, 0x00, 0xa0, 0xc9, 0x69, 0x72, 0x3b)
663#define EFI_GRAPHICS_OUTPUT_PROTOCOL_GUID EFI_GUID(0x9042a9de, 0x23dc, 0x4a38, 0x96, 0xfb, 0x7a, 0xde, 0xd0, 0x80, 0x51, 0x6a)
664#define EFI_UGA_PROTOCOL_GUID EFI_GUID(0x982c298b, 0xf4fa, 0x41cb, 0xb8, 0x38, 0x77, 0xaa, 0x68, 0x8f, 0xb8, 0x39)
665#define EFI_PCI_IO_PROTOCOL_GUID EFI_GUID(0x4cf5b200, 0x68b8, 0x4ca5, 0x9e, 0xec, 0xb2, 0x3e, 0x3f, 0x50, 0x02, 0x9a)
666#define EFI_FILE_INFO_ID EFI_GUID(0x09576e92, 0x6d3f, 0x11d2, 0x8e, 0x39, 0x00, 0xa0, 0xc9, 0x69, 0x72, 0x3b)
667#define EFI_SYSTEM_RESOURCE_TABLE_GUID EFI_GUID(0xb122a263, 0x3661, 0x4f68, 0x99, 0x29, 0x78, 0xf8, 0xb0, 0xd6, 0x21, 0x80)
668#define EFI_FILE_SYSTEM_GUID EFI_GUID(0x964e5b22, 0x6459, 0x11d2, 0x8e, 0x39, 0x00, 0xa0, 0xc9, 0x69, 0x72, 0x3b)
669#define DEVICE_TREE_GUID EFI_GUID(0xb1b621d5, 0xf19c, 0x41a5, 0x83, 0x0b, 0xd9, 0x15, 0x2c, 0x69, 0xaa, 0xe0)
670#define EFI_PROPERTIES_TABLE_GUID EFI_GUID(0x880aaca3, 0x4adc, 0x4a04, 0x90, 0x79, 0xb7, 0x47, 0x34, 0x08, 0x25, 0xe5)
671#define EFI_RNG_PROTOCOL_GUID EFI_GUID(0x3152bca5, 0xeade, 0x433d, 0x86, 0x2e, 0xc0, 0x1c, 0xdc, 0x29, 0x1f, 0x44)
672#define EFI_RNG_ALGORITHM_RAW EFI_GUID(0xe43176d7, 0xb6e8, 0x4827, 0xb7, 0x84, 0x7f, 0xfd, 0xc4, 0xb6, 0x85, 0x61)
673#define EFI_MEMORY_ATTRIBUTES_TABLE_GUID EFI_GUID(0xdcfa911d, 0x26eb, 0x469f, 0xa2, 0x20, 0x38, 0xb7, 0xdc, 0x46, 0x12, 0x20)
674#define EFI_CONSOLE_OUT_DEVICE_GUID EFI_GUID(0xd3b36f2c, 0xd551, 0x11d4, 0x9a, 0x46, 0x00, 0x90, 0x27, 0x3f, 0xc1, 0x4d)
675#define APPLE_PROPERTIES_PROTOCOL_GUID EFI_GUID(0x91bd12fe, 0xf6c3, 0x44fb, 0xa5, 0xb7, 0x51, 0x22, 0xab, 0x30, 0x3a, 0xe0)
676#define EFI_TCG2_PROTOCOL_GUID EFI_GUID(0x607f766c, 0x7455, 0x42be, 0x93, 0x0b, 0xe4, 0xd7, 0x6d, 0xb2, 0x72, 0x0f)
677
678#define EFI_IMAGE_SECURITY_DATABASE_GUID EFI_GUID(0xd719b2cb, 0x3d3a, 0x4596, 0xa3, 0xbc, 0xda, 0xd0, 0x0e, 0x67, 0x65, 0x6f)
679#define EFI_SHIM_LOCK_GUID EFI_GUID(0x605dab50, 0xe046, 0x4300, 0xab, 0xb6, 0x3d, 0xd8, 0x10, 0xdd, 0x8b, 0x23)
680
David Brazdil0f672f62019-12-10 10:32:29 +0000681#define EFI_CERT_SHA256_GUID EFI_GUID(0xc1c41626, 0x504c, 0x4092, 0xac, 0xa9, 0x41, 0xf9, 0x36, 0x93, 0x43, 0x28)
682#define EFI_CERT_X509_GUID EFI_GUID(0xa5c059a1, 0x94e4, 0x4aa7, 0x87, 0xb5, 0xab, 0x15, 0x5c, 0x2b, 0xf0, 0x72)
683#define EFI_CERT_X509_SHA256_GUID EFI_GUID(0x3bd2a492, 0x96c0, 0x4079, 0xb4, 0x20, 0xfc, 0xf9, 0x8e, 0xf1, 0x03, 0xed)
684
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000685/*
686 * This GUID is used to pass to the kernel proper the struct screen_info
687 * structure that was populated by the stub based on the GOP protocol instance
688 * associated with ConOut
689 */
690#define LINUX_EFI_ARM_SCREEN_INFO_TABLE_GUID EFI_GUID(0xe03fc20a, 0x85dc, 0x406e, 0xb9, 0x0e, 0x4a, 0xb5, 0x02, 0x37, 0x1d, 0x95)
691#define LINUX_EFI_LOADER_ENTRY_GUID EFI_GUID(0x4a67b082, 0x0a4c, 0x41cf, 0xb6, 0xc7, 0x44, 0x0b, 0x29, 0xbb, 0x8c, 0x4f)
692#define LINUX_EFI_RANDOM_SEED_TABLE_GUID EFI_GUID(0x1ce1e5bc, 0x7ceb, 0x42f2, 0x81, 0xe5, 0x8a, 0xad, 0xf1, 0x80, 0xf5, 0x7b)
693#define LINUX_EFI_TPM_EVENT_LOG_GUID EFI_GUID(0xb7799cb0, 0xeca2, 0x4943, 0x96, 0x67, 0x1f, 0xae, 0x07, 0xb7, 0x47, 0xfa)
David Brazdil0f672f62019-12-10 10:32:29 +0000694#define LINUX_EFI_TPM_FINAL_LOG_GUID EFI_GUID(0x1e2ed096, 0x30e2, 0x4254, 0xbd, 0x89, 0x86, 0x3b, 0xbe, 0xf8, 0x23, 0x25)
695#define LINUX_EFI_MEMRESERVE_TABLE_GUID EFI_GUID(0x888eb0c6, 0x8ede, 0x4ff5, 0xa8, 0xf0, 0x9a, 0xee, 0x5c, 0xb9, 0x77, 0xc2)
696
697/* OEM GUIDs */
698#define DELLEMC_EFI_RCI2_TABLE_GUID EFI_GUID(0x2d9f28a2, 0xa886, 0x456a, 0x97, 0xa8, 0xf1, 0x1e, 0xf2, 0x4f, 0xf4, 0x55)
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000699
700typedef struct {
701 efi_guid_t guid;
702 u64 table;
703} efi_config_table_64_t;
704
705typedef struct {
706 efi_guid_t guid;
707 u32 table;
708} efi_config_table_32_t;
709
710typedef struct {
711 efi_guid_t guid;
712 unsigned long table;
713} efi_config_table_t;
714
715typedef struct {
716 efi_guid_t guid;
717 const char *name;
718 unsigned long *ptr;
719} efi_config_table_type_t;
720
721#define EFI_SYSTEM_TABLE_SIGNATURE ((u64)0x5453595320494249ULL)
722
723#define EFI_2_30_SYSTEM_TABLE_REVISION ((2 << 16) | (30))
724#define EFI_2_20_SYSTEM_TABLE_REVISION ((2 << 16) | (20))
725#define EFI_2_10_SYSTEM_TABLE_REVISION ((2 << 16) | (10))
726#define EFI_2_00_SYSTEM_TABLE_REVISION ((2 << 16) | (00))
727#define EFI_1_10_SYSTEM_TABLE_REVISION ((1 << 16) | (10))
728#define EFI_1_02_SYSTEM_TABLE_REVISION ((1 << 16) | (02))
729
730typedef struct {
731 efi_table_hdr_t hdr;
732 u64 fw_vendor; /* physical addr of CHAR16 vendor string */
733 u32 fw_revision;
734 u32 __pad1;
735 u64 con_in_handle;
736 u64 con_in;
737 u64 con_out_handle;
738 u64 con_out;
739 u64 stderr_handle;
740 u64 stderr;
741 u64 runtime;
742 u64 boottime;
743 u32 nr_tables;
744 u32 __pad2;
745 u64 tables;
746} efi_system_table_64_t;
747
748typedef struct {
749 efi_table_hdr_t hdr;
750 u32 fw_vendor; /* physical addr of CHAR16 vendor string */
751 u32 fw_revision;
752 u32 con_in_handle;
753 u32 con_in;
754 u32 con_out_handle;
755 u32 con_out;
756 u32 stderr_handle;
757 u32 stderr;
758 u32 runtime;
759 u32 boottime;
760 u32 nr_tables;
761 u32 tables;
762} efi_system_table_32_t;
763
764typedef struct {
765 efi_table_hdr_t hdr;
766 unsigned long fw_vendor; /* physical addr of CHAR16 vendor string */
767 u32 fw_revision;
768 unsigned long con_in_handle;
769 unsigned long con_in;
770 unsigned long con_out_handle;
771 unsigned long con_out;
772 unsigned long stderr_handle;
773 unsigned long stderr;
774 efi_runtime_services_t *runtime;
775 efi_boot_services_t *boottime;
776 unsigned long nr_tables;
777 unsigned long tables;
778} efi_system_table_t;
779
780/*
781 * Architecture independent structure for describing a memory map for the
782 * benefit of efi_memmap_init_early(), saving us the need to pass four
783 * parameters.
784 */
785struct efi_memory_map_data {
786 phys_addr_t phys_map;
787 unsigned long size;
788 unsigned long desc_version;
789 unsigned long desc_size;
790};
791
792struct efi_memory_map {
793 phys_addr_t phys_map;
794 void *map;
795 void *map_end;
796 int nr_map;
797 unsigned long desc_version;
798 unsigned long desc_size;
799 bool late;
800};
801
802struct efi_mem_range {
803 struct range range;
804 u64 attribute;
805};
806
807struct efi_fdt_params {
808 u64 system_table;
809 u64 mmap;
810 u32 mmap_size;
811 u32 desc_size;
812 u32 desc_ver;
813};
814
815typedef struct {
816 u32 revision;
817 u32 parent_handle;
818 u32 system_table;
819 u32 device_handle;
820 u32 file_path;
821 u32 reserved;
822 u32 load_options_size;
823 u32 load_options;
824 u32 image_base;
825 __aligned_u64 image_size;
826 unsigned int image_code_type;
827 unsigned int image_data_type;
828 unsigned long unload;
829} efi_loaded_image_32_t;
830
831typedef struct {
832 u32 revision;
833 u64 parent_handle;
834 u64 system_table;
835 u64 device_handle;
836 u64 file_path;
837 u64 reserved;
838 u32 load_options_size;
839 u64 load_options;
840 u64 image_base;
841 __aligned_u64 image_size;
842 unsigned int image_code_type;
843 unsigned int image_data_type;
844 unsigned long unload;
845} efi_loaded_image_64_t;
846
847typedef struct {
848 u32 revision;
849 void *parent_handle;
850 efi_system_table_t *system_table;
851 void *device_handle;
852 void *file_path;
853 void *reserved;
854 u32 load_options_size;
855 void *load_options;
856 void *image_base;
857 __aligned_u64 image_size;
858 unsigned int image_code_type;
859 unsigned int image_data_type;
860 unsigned long unload;
861} efi_loaded_image_t;
862
863
864typedef struct {
865 u64 size;
866 u64 file_size;
867 u64 phys_size;
868 efi_time_t create_time;
869 efi_time_t last_access_time;
870 efi_time_t modification_time;
871 __aligned_u64 attribute;
872 efi_char16_t filename[1];
873} efi_file_info_t;
874
875typedef struct {
876 u64 revision;
877 u32 open;
878 u32 close;
879 u32 delete;
880 u32 read;
881 u32 write;
882 u32 get_position;
883 u32 set_position;
884 u32 get_info;
885 u32 set_info;
886 u32 flush;
887} efi_file_handle_32_t;
888
889typedef struct {
890 u64 revision;
891 u64 open;
892 u64 close;
893 u64 delete;
894 u64 read;
895 u64 write;
896 u64 get_position;
897 u64 set_position;
898 u64 get_info;
899 u64 set_info;
900 u64 flush;
901} efi_file_handle_64_t;
902
903typedef struct _efi_file_handle {
904 u64 revision;
905 efi_status_t (*open)(struct _efi_file_handle *,
906 struct _efi_file_handle **,
907 efi_char16_t *, u64, u64);
908 efi_status_t (*close)(struct _efi_file_handle *);
909 void *delete;
910 efi_status_t (*read)(struct _efi_file_handle *, unsigned long *,
911 void *);
912 void *write;
913 void *get_position;
914 void *set_position;
915 efi_status_t (*get_info)(struct _efi_file_handle *, efi_guid_t *,
916 unsigned long *, void *);
917 void *set_info;
918 void *flush;
919} efi_file_handle_t;
920
921typedef struct {
922 u64 revision;
923 u32 open_volume;
924} efi_file_io_interface_32_t;
925
926typedef struct {
927 u64 revision;
928 u64 open_volume;
929} efi_file_io_interface_64_t;
930
931typedef struct _efi_file_io_interface {
932 u64 revision;
933 int (*open_volume)(struct _efi_file_io_interface *,
934 efi_file_handle_t **);
935} efi_file_io_interface_t;
936
937#define EFI_FILE_MODE_READ 0x0000000000000001
938#define EFI_FILE_MODE_WRITE 0x0000000000000002
939#define EFI_FILE_MODE_CREATE 0x8000000000000000
940
941typedef struct {
942 u32 version;
943 u32 length;
944 u64 memory_protection_attribute;
945} efi_properties_table_t;
946
947#define EFI_PROPERTIES_TABLE_VERSION 0x00010000
948#define EFI_PROPERTIES_RUNTIME_MEMORY_PROTECTION_NON_EXECUTABLE_PE_DATA 0x1
949
950#define EFI_INVALID_TABLE_ADDR (~0UL)
951
952typedef struct {
953 u32 version;
954 u32 num_entries;
955 u32 desc_size;
956 u32 reserved;
957 efi_memory_desc_t entry[0];
958} efi_memory_attributes_table_t;
959
David Brazdil0f672f62019-12-10 10:32:29 +0000960typedef struct {
961 efi_guid_t signature_owner;
962 u8 signature_data[];
963} efi_signature_data_t;
964
965typedef struct {
966 efi_guid_t signature_type;
967 u32 signature_list_size;
968 u32 signature_header_size;
969 u32 signature_size;
970 u8 signature_header[];
971 /* efi_signature_data_t signatures[][] */
972} efi_signature_list_t;
973
974typedef u8 efi_sha256_hash_t[32];
975
976typedef struct {
977 efi_sha256_hash_t to_be_signed_hash;
978 efi_time_t time_of_revocation;
979} efi_cert_x509_sha256_t;
980
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000981/*
982 * All runtime access to EFI goes through this structure:
983 */
984extern struct efi {
985 efi_system_table_t *systab; /* EFI system table */
986 unsigned int runtime_version; /* Runtime services version */
987 unsigned long mps; /* MPS table */
988 unsigned long acpi; /* ACPI table (IA64 ext 0.71) */
989 unsigned long acpi20; /* ACPI table (ACPI 2.0) */
990 unsigned long smbios; /* SMBIOS table (32 bit entry point) */
991 unsigned long smbios3; /* SMBIOS table (64 bit entry point) */
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000992 unsigned long boot_info; /* boot info table */
993 unsigned long hcdp; /* HCDP table */
994 unsigned long uga; /* UGA table */
Andrew Scullb4b6d4a2019-01-02 15:54:55 +0000995 unsigned long fw_vendor; /* fw_vendor */
996 unsigned long runtime; /* runtime table */
997 unsigned long config_table; /* config tables */
998 unsigned long esrt; /* ESRT table */
999 unsigned long properties_table; /* properties table */
1000 unsigned long mem_attr_table; /* memory attributes table */
1001 unsigned long rng_seed; /* UEFI firmware random seed */
1002 unsigned long tpm_log; /* TPM2 Event Log table */
David Brazdil0f672f62019-12-10 10:32:29 +00001003 unsigned long tpm_final_log; /* TPM2 Final Events Log table */
1004 unsigned long mem_reserve; /* Linux EFI memreserve table */
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001005 efi_get_time_t *get_time;
1006 efi_set_time_t *set_time;
1007 efi_get_wakeup_time_t *get_wakeup_time;
1008 efi_set_wakeup_time_t *set_wakeup_time;
1009 efi_get_variable_t *get_variable;
1010 efi_get_next_variable_t *get_next_variable;
1011 efi_set_variable_t *set_variable;
1012 efi_set_variable_t *set_variable_nonblocking;
1013 efi_query_variable_info_t *query_variable_info;
1014 efi_query_variable_info_t *query_variable_info_nonblocking;
1015 efi_update_capsule_t *update_capsule;
1016 efi_query_capsule_caps_t *query_capsule_caps;
1017 efi_get_next_high_mono_count_t *get_next_high_mono_count;
1018 efi_reset_system_t *reset_system;
1019 efi_set_virtual_address_map_t *set_virtual_address_map;
1020 struct efi_memory_map memmap;
1021 unsigned long flags;
1022} efi;
1023
1024extern struct mm_struct efi_mm;
1025
1026static inline int
1027efi_guidcmp (efi_guid_t left, efi_guid_t right)
1028{
1029 return memcmp(&left, &right, sizeof (efi_guid_t));
1030}
1031
1032static inline char *
1033efi_guid_to_str(efi_guid_t *guid, char *out)
1034{
1035 sprintf(out, "%pUl", guid->b);
1036 return out;
1037}
1038
1039extern void efi_init (void);
1040extern void *efi_get_pal_addr (void);
1041extern void efi_map_pal_code (void);
1042extern void efi_memmap_walk (efi_freemem_callback_t callback, void *arg);
1043extern void efi_gettimeofday (struct timespec64 *ts);
Olivier Deprez0e641232021-09-23 10:07:05 +02001044#ifdef CONFIG_EFI
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001045extern void efi_enter_virtual_mode (void); /* switch EFI to virtual mode, if possible */
Olivier Deprez0e641232021-09-23 10:07:05 +02001046#else
1047static inline void efi_enter_virtual_mode (void) {}
1048#endif
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001049#ifdef CONFIG_X86
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001050extern efi_status_t efi_query_variable_store(u32 attributes,
1051 unsigned long size,
1052 bool nonblocking);
1053extern void efi_find_mirror(void);
1054#else
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001055
1056static inline efi_status_t efi_query_variable_store(u32 attributes,
1057 unsigned long size,
1058 bool nonblocking)
1059{
1060 return EFI_SUCCESS;
1061}
1062#endif
1063extern void __iomem *efi_lookup_mapped_addr(u64 phys_addr);
1064
1065extern phys_addr_t __init efi_memmap_alloc(unsigned int num_entries);
1066extern int __init efi_memmap_init_early(struct efi_memory_map_data *data);
1067extern int __init efi_memmap_init_late(phys_addr_t addr, unsigned long size);
1068extern void __init efi_memmap_unmap(void);
1069extern int __init efi_memmap_install(phys_addr_t addr, unsigned int nr_map);
1070extern int __init efi_memmap_split_count(efi_memory_desc_t *md,
1071 struct range *range);
1072extern void __init efi_memmap_insert(struct efi_memory_map *old_memmap,
1073 void *buf, struct efi_mem_range *mem);
1074
1075extern int efi_config_init(efi_config_table_type_t *arch_tables);
1076#ifdef CONFIG_EFI_ESRT
1077extern void __init efi_esrt_init(void);
1078#else
1079static inline void efi_esrt_init(void) { }
1080#endif
1081extern int efi_config_parse_tables(void *config_tables, int count, int sz,
1082 efi_config_table_type_t *arch_tables);
1083extern u64 efi_get_iobase (void);
1084extern int efi_mem_type(unsigned long phys_addr);
1085extern u64 efi_mem_attributes (unsigned long phys_addr);
1086extern u64 efi_mem_attribute (unsigned long phys_addr, unsigned long size);
1087extern int __init efi_uart_console_only (void);
1088extern u64 efi_mem_desc_end(efi_memory_desc_t *md);
1089extern int efi_mem_desc_lookup(u64 phys_addr, efi_memory_desc_t *out_md);
1090extern void efi_mem_reserve(phys_addr_t addr, u64 size);
David Brazdil0f672f62019-12-10 10:32:29 +00001091extern int efi_mem_reserve_persistent(phys_addr_t addr, u64 size);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001092extern void efi_initialize_iomem_resources(struct resource *code_resource,
1093 struct resource *data_resource, struct resource *bss_resource);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001094extern int efi_get_fdt_params(struct efi_fdt_params *params);
1095extern struct kobject *efi_kobj;
1096
1097extern int efi_reboot_quirk_mode;
1098extern bool efi_poweroff_required(void);
1099
1100#ifdef CONFIG_EFI_FAKE_MEMMAP
1101extern void __init efi_fake_memmap(void);
1102#else
1103static inline void efi_fake_memmap(void) { }
1104#endif
1105
1106/*
1107 * efi_memattr_perm_setter - arch specific callback function passed into
1108 * efi_memattr_apply_permissions() that updates the
1109 * mapping permissions described by the second
1110 * argument in the page tables referred to by the
1111 * first argument.
1112 */
1113typedef int (*efi_memattr_perm_setter)(struct mm_struct *, efi_memory_desc_t *);
1114
1115extern int efi_memattr_init(void);
1116extern int efi_memattr_apply_permissions(struct mm_struct *mm,
1117 efi_memattr_perm_setter fn);
1118
1119/*
1120 * efi_early_memdesc_ptr - get the n-th EFI memmap descriptor
1121 * @map: the start of efi memmap
1122 * @desc_size: the size of space for each EFI memmap descriptor
1123 * @n: the index of efi memmap descriptor
1124 *
1125 * EFI boot service provides the GetMemoryMap() function to get a copy of the
1126 * current memory map which is an array of memory descriptors, each of
1127 * which describes a contiguous block of memory. It also gets the size of the
1128 * map, and the size of each descriptor, etc.
1129 *
1130 * Note that per section 6.2 of UEFI Spec 2.6 Errata A, the returned size of
1131 * each descriptor might not be equal to sizeof(efi_memory_memdesc_t),
1132 * since efi_memory_memdesc_t may be extended in the future. Thus the OS
1133 * MUST use the returned size of the descriptor to find the start of each
1134 * efi_memory_memdesc_t in the memory map array. This should only be used
1135 * during bootup since for_each_efi_memory_desc_xxx() is available after the
1136 * kernel initializes the EFI subsystem to set up struct efi_memory_map.
1137 */
1138#define efi_early_memdesc_ptr(map, desc_size, n) \
1139 (efi_memory_desc_t *)((void *)(map) + ((n) * (desc_size)))
1140
1141/* Iterate through an efi_memory_map */
1142#define for_each_efi_memory_desc_in_map(m, md) \
1143 for ((md) = (m)->map; \
1144 (md) && ((void *)(md) + (m)->desc_size) <= (m)->map_end; \
1145 (md) = (void *)(md) + (m)->desc_size)
1146
1147/**
1148 * for_each_efi_memory_desc - iterate over descriptors in efi.memmap
1149 * @md: the efi_memory_desc_t * iterator
1150 *
1151 * Once the loop finishes @md must not be accessed.
1152 */
1153#define for_each_efi_memory_desc(md) \
1154 for_each_efi_memory_desc_in_map(&efi.memmap, md)
1155
1156/*
1157 * Format an EFI memory descriptor's type and attributes to a user-provided
1158 * character buffer, as per snprintf(), and return the buffer.
1159 */
1160char * __init efi_md_typeattr_format(char *buf, size_t size,
1161 const efi_memory_desc_t *md);
1162
David Brazdil0f672f62019-12-10 10:32:29 +00001163
1164typedef void (*efi_element_handler_t)(const char *source,
1165 const void *element_data,
1166 size_t element_size);
1167extern int __init parse_efi_signature_list(
1168 const char *source,
1169 const void *data, size_t size,
1170 efi_element_handler_t (*get_handler_for_guid)(const efi_guid_t *));
1171
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001172/**
1173 * efi_range_is_wc - check the WC bit on an address range
1174 * @start: starting kvirt address
1175 * @len: length of range
1176 *
1177 * Consult the EFI memory map and make sure it's ok to set this range WC.
1178 * Returns true or false.
1179 */
1180static inline int efi_range_is_wc(unsigned long start, unsigned long len)
1181{
1182 unsigned long i;
1183
1184 for (i = 0; i < len; i += (1UL << EFI_PAGE_SHIFT)) {
1185 unsigned long paddr = __pa(start + i);
1186 if (!(efi_mem_attributes(paddr) & EFI_MEMORY_WC))
1187 return 0;
1188 }
1189 /* The range checked out */
1190 return 1;
1191}
1192
1193#ifdef CONFIG_EFI_PCDP
1194extern int __init efi_setup_pcdp_console(char *);
1195#endif
1196
1197/*
1198 * We play games with efi_enabled so that the compiler will, if
1199 * possible, remove EFI-related code altogether.
1200 */
1201#define EFI_BOOT 0 /* Were we booted from EFI? */
1202#define EFI_CONFIG_TABLES 2 /* Can we use EFI config tables? */
1203#define EFI_RUNTIME_SERVICES 3 /* Can we use runtime services? */
1204#define EFI_MEMMAP 4 /* Can we use EFI memory map? */
1205#define EFI_64BIT 5 /* Is the firmware 64-bit? */
1206#define EFI_PARAVIRT 6 /* Access is via a paravirt interface */
1207#define EFI_ARCH_1 7 /* First arch-specific bit */
1208#define EFI_DBG 8 /* Print additional debug info at runtime */
1209#define EFI_NX_PE_DATA 9 /* Can runtime data regions be mapped non-executable? */
1210#define EFI_MEM_ATTR 10 /* Did firmware publish an EFI_MEMORY_ATTRIBUTES table? */
1211
1212#ifdef CONFIG_EFI
1213/*
1214 * Test whether the above EFI_* bits are enabled.
1215 */
1216static inline bool efi_enabled(int feature)
1217{
1218 return test_bit(feature, &efi.flags) != 0;
1219}
1220extern void efi_reboot(enum reboot_mode reboot_mode, const char *__unused);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001221#else
1222static inline bool efi_enabled(int feature)
1223{
1224 return false;
1225}
1226static inline void
1227efi_reboot(enum reboot_mode reboot_mode, const char *__unused) {}
1228
1229static inline bool
1230efi_capsule_pending(int *reset_type)
1231{
1232 return false;
1233}
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001234#endif
1235
1236extern int efi_status_to_err(efi_status_t status);
1237
1238/*
1239 * Variable Attributes
1240 */
1241#define EFI_VARIABLE_NON_VOLATILE 0x0000000000000001
1242#define EFI_VARIABLE_BOOTSERVICE_ACCESS 0x0000000000000002
1243#define EFI_VARIABLE_RUNTIME_ACCESS 0x0000000000000004
1244#define EFI_VARIABLE_HARDWARE_ERROR_RECORD 0x0000000000000008
1245#define EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS 0x0000000000000010
1246#define EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS 0x0000000000000020
1247#define EFI_VARIABLE_APPEND_WRITE 0x0000000000000040
1248
1249#define EFI_VARIABLE_MASK (EFI_VARIABLE_NON_VOLATILE | \
1250 EFI_VARIABLE_BOOTSERVICE_ACCESS | \
1251 EFI_VARIABLE_RUNTIME_ACCESS | \
1252 EFI_VARIABLE_HARDWARE_ERROR_RECORD | \
1253 EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS | \
1254 EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS | \
1255 EFI_VARIABLE_APPEND_WRITE)
1256/*
1257 * Length of a GUID string (strlen("aaaaaaaa-bbbb-cccc-dddd-eeeeeeeeeeee"))
1258 * not including trailing NUL
1259 */
1260#define EFI_VARIABLE_GUID_LEN UUID_STRING_LEN
1261
1262/*
1263 * The type of search to perform when calling boottime->locate_handle
1264 */
1265#define EFI_LOCATE_ALL_HANDLES 0
1266#define EFI_LOCATE_BY_REGISTER_NOTIFY 1
1267#define EFI_LOCATE_BY_PROTOCOL 2
1268
1269/*
1270 * EFI Device Path information
1271 */
1272#define EFI_DEV_HW 0x01
1273#define EFI_DEV_PCI 1
1274#define EFI_DEV_PCCARD 2
1275#define EFI_DEV_MEM_MAPPED 3
1276#define EFI_DEV_VENDOR 4
1277#define EFI_DEV_CONTROLLER 5
1278#define EFI_DEV_ACPI 0x02
1279#define EFI_DEV_BASIC_ACPI 1
1280#define EFI_DEV_EXPANDED_ACPI 2
1281#define EFI_DEV_MSG 0x03
1282#define EFI_DEV_MSG_ATAPI 1
1283#define EFI_DEV_MSG_SCSI 2
1284#define EFI_DEV_MSG_FC 3
1285#define EFI_DEV_MSG_1394 4
1286#define EFI_DEV_MSG_USB 5
1287#define EFI_DEV_MSG_USB_CLASS 15
1288#define EFI_DEV_MSG_I20 6
1289#define EFI_DEV_MSG_MAC 11
1290#define EFI_DEV_MSG_IPV4 12
1291#define EFI_DEV_MSG_IPV6 13
1292#define EFI_DEV_MSG_INFINIBAND 9
1293#define EFI_DEV_MSG_UART 14
1294#define EFI_DEV_MSG_VENDOR 10
1295#define EFI_DEV_MEDIA 0x04
1296#define EFI_DEV_MEDIA_HARD_DRIVE 1
1297#define EFI_DEV_MEDIA_CDROM 2
1298#define EFI_DEV_MEDIA_VENDOR 3
1299#define EFI_DEV_MEDIA_FILE 4
1300#define EFI_DEV_MEDIA_PROTOCOL 5
1301#define EFI_DEV_BIOS_BOOT 0x05
1302#define EFI_DEV_END_PATH 0x7F
1303#define EFI_DEV_END_PATH2 0xFF
1304#define EFI_DEV_END_INSTANCE 0x01
1305#define EFI_DEV_END_ENTIRE 0xFF
1306
1307struct efi_generic_dev_path {
1308 u8 type;
1309 u8 sub_type;
1310 u16 length;
1311} __attribute ((packed));
1312
1313struct efi_dev_path {
1314 u8 type; /* can be replaced with unnamed */
1315 u8 sub_type; /* struct efi_generic_dev_path; */
1316 u16 length; /* once we've moved to -std=c11 */
1317 union {
1318 struct {
1319 u32 hid;
1320 u32 uid;
1321 } acpi;
1322 struct {
1323 u8 fn;
1324 u8 dev;
1325 } pci;
1326 };
1327} __attribute ((packed));
1328
1329#if IS_ENABLED(CONFIG_EFI_DEV_PATH_PARSER)
1330struct device *efi_get_device_by_path(struct efi_dev_path **node, size_t *len);
1331#endif
1332
1333static inline void memrange_efi_to_native(u64 *addr, u64 *npages)
1334{
1335 *npages = PFN_UP(*addr + (*npages<<EFI_PAGE_SHIFT)) - PFN_DOWN(*addr);
1336 *addr &= PAGE_MASK;
1337}
1338
1339/*
1340 * EFI Variable support.
1341 *
1342 * Different firmware drivers can expose their EFI-like variables using
1343 * the following.
1344 */
1345
1346struct efivar_operations {
1347 efi_get_variable_t *get_variable;
1348 efi_get_next_variable_t *get_next_variable;
1349 efi_set_variable_t *set_variable;
1350 efi_set_variable_t *set_variable_nonblocking;
1351 efi_query_variable_store_t *query_variable_store;
1352};
1353
1354struct efivars {
1355 struct kset *kset;
1356 struct kobject *kobject;
1357 const struct efivar_operations *ops;
1358};
1359
1360/*
1361 * The maximum size of VariableName + Data = 1024
1362 * Therefore, it's reasonable to save that much
1363 * space in each part of the structure,
1364 * and we use a page for reading/writing.
1365 */
1366
1367#define EFI_VAR_NAME_LEN 1024
1368
1369struct efi_variable {
1370 efi_char16_t VariableName[EFI_VAR_NAME_LEN/sizeof(efi_char16_t)];
1371 efi_guid_t VendorGuid;
1372 unsigned long DataSize;
1373 __u8 Data[1024];
1374 efi_status_t Status;
1375 __u32 Attributes;
1376} __attribute__((packed));
1377
1378struct efivar_entry {
1379 struct efi_variable var;
1380 struct list_head list;
1381 struct kobject kobj;
1382 bool scanning;
1383 bool deleting;
1384};
1385
1386typedef struct {
1387 u32 reset;
1388 u32 output_string;
1389 u32 test_string;
1390} efi_simple_text_output_protocol_32_t;
1391
1392typedef struct {
1393 u64 reset;
1394 u64 output_string;
1395 u64 test_string;
1396} efi_simple_text_output_protocol_64_t;
1397
1398struct efi_simple_text_output_protocol {
1399 void *reset;
1400 efi_status_t (*output_string)(void *, void *);
1401 void *test_string;
1402};
1403
1404#define PIXEL_RGB_RESERVED_8BIT_PER_COLOR 0
1405#define PIXEL_BGR_RESERVED_8BIT_PER_COLOR 1
1406#define PIXEL_BIT_MASK 2
1407#define PIXEL_BLT_ONLY 3
1408#define PIXEL_FORMAT_MAX 4
1409
1410struct efi_pixel_bitmask {
1411 u32 red_mask;
1412 u32 green_mask;
1413 u32 blue_mask;
1414 u32 reserved_mask;
1415};
1416
1417struct efi_graphics_output_mode_info {
1418 u32 version;
1419 u32 horizontal_resolution;
1420 u32 vertical_resolution;
1421 int pixel_format;
1422 struct efi_pixel_bitmask pixel_information;
1423 u32 pixels_per_scan_line;
1424} __packed;
1425
1426struct efi_graphics_output_protocol_mode_32 {
1427 u32 max_mode;
1428 u32 mode;
1429 u32 info;
1430 u32 size_of_info;
1431 u64 frame_buffer_base;
1432 u32 frame_buffer_size;
1433} __packed;
1434
1435struct efi_graphics_output_protocol_mode_64 {
1436 u32 max_mode;
1437 u32 mode;
1438 u64 info;
1439 u64 size_of_info;
1440 u64 frame_buffer_base;
1441 u64 frame_buffer_size;
1442} __packed;
1443
1444struct efi_graphics_output_protocol_mode {
1445 u32 max_mode;
1446 u32 mode;
1447 unsigned long info;
1448 unsigned long size_of_info;
1449 u64 frame_buffer_base;
1450 unsigned long frame_buffer_size;
1451} __packed;
1452
1453struct efi_graphics_output_protocol_32 {
1454 u32 query_mode;
1455 u32 set_mode;
1456 u32 blt;
1457 u32 mode;
1458};
1459
1460struct efi_graphics_output_protocol_64 {
1461 u64 query_mode;
1462 u64 set_mode;
1463 u64 blt;
1464 u64 mode;
1465};
1466
1467struct efi_graphics_output_protocol {
1468 unsigned long query_mode;
1469 unsigned long set_mode;
1470 unsigned long blt;
1471 struct efi_graphics_output_protocol_mode *mode;
1472};
1473
1474typedef efi_status_t (*efi_graphics_output_protocol_query_mode)(
1475 struct efi_graphics_output_protocol *, u32, unsigned long *,
1476 struct efi_graphics_output_mode_info **);
1477
1478extern struct list_head efivar_sysfs_list;
1479
1480static inline void
1481efivar_unregister(struct efivar_entry *var)
1482{
1483 kobject_put(&var->kobj);
1484}
1485
1486int efivars_register(struct efivars *efivars,
1487 const struct efivar_operations *ops,
1488 struct kobject *kobject);
1489int efivars_unregister(struct efivars *efivars);
1490struct kobject *efivars_kobject(void);
1491
1492int efivar_init(int (*func)(efi_char16_t *, efi_guid_t, unsigned long, void *),
1493 void *data, bool duplicates, struct list_head *head);
1494
1495int efivar_entry_add(struct efivar_entry *entry, struct list_head *head);
1496int efivar_entry_remove(struct efivar_entry *entry);
1497
1498int __efivar_entry_delete(struct efivar_entry *entry);
1499int efivar_entry_delete(struct efivar_entry *entry);
1500
1501int efivar_entry_size(struct efivar_entry *entry, unsigned long *size);
1502int __efivar_entry_get(struct efivar_entry *entry, u32 *attributes,
1503 unsigned long *size, void *data);
1504int efivar_entry_get(struct efivar_entry *entry, u32 *attributes,
1505 unsigned long *size, void *data);
1506int efivar_entry_set(struct efivar_entry *entry, u32 attributes,
1507 unsigned long size, void *data, struct list_head *head);
1508int efivar_entry_set_get_size(struct efivar_entry *entry, u32 attributes,
1509 unsigned long *size, void *data, bool *set);
1510int efivar_entry_set_safe(efi_char16_t *name, efi_guid_t vendor, u32 attributes,
1511 bool block, unsigned long size, void *data);
1512
1513int efivar_entry_iter_begin(void);
1514void efivar_entry_iter_end(void);
1515
1516int __efivar_entry_iter(int (*func)(struct efivar_entry *, void *),
1517 struct list_head *head, void *data,
1518 struct efivar_entry **prev);
1519int efivar_entry_iter(int (*func)(struct efivar_entry *, void *),
1520 struct list_head *head, void *data);
1521
1522struct efivar_entry *efivar_entry_find(efi_char16_t *name, efi_guid_t guid,
1523 struct list_head *head, bool remove);
1524
1525bool efivar_validate(efi_guid_t vendor, efi_char16_t *var_name, u8 *data,
1526 unsigned long data_size);
1527bool efivar_variable_is_removable(efi_guid_t vendor, const char *name,
1528 size_t len);
1529
1530extern struct work_struct efivar_work;
1531void efivar_run_worker(void);
1532
1533#if defined(CONFIG_EFI_VARS) || defined(CONFIG_EFI_VARS_MODULE)
1534int efivars_sysfs_init(void);
1535
1536#define EFIVARS_DATA_SIZE_MAX 1024
1537
1538#endif /* CONFIG_EFI_VARS */
1539extern bool efi_capsule_pending(int *reset_type);
1540
1541extern int efi_capsule_supported(efi_guid_t guid, u32 flags,
1542 size_t size, int *reset);
1543
1544extern int efi_capsule_update(efi_capsule_header_t *capsule,
1545 phys_addr_t *pages);
1546
1547#ifdef CONFIG_EFI_RUNTIME_MAP
1548int efi_runtime_map_init(struct kobject *);
1549int efi_get_runtime_map_size(void);
1550int efi_get_runtime_map_desc_size(void);
1551int efi_runtime_map_copy(void *buf, size_t bufsz);
1552#else
1553static inline int efi_runtime_map_init(struct kobject *kobj)
1554{
1555 return 0;
1556}
1557
1558static inline int efi_get_runtime_map_size(void)
1559{
1560 return 0;
1561}
1562
1563static inline int efi_get_runtime_map_desc_size(void)
1564{
1565 return 0;
1566}
1567
1568static inline int efi_runtime_map_copy(void *buf, size_t bufsz)
1569{
1570 return 0;
1571}
1572
1573#endif
1574
1575/* prototypes shared between arch specific and generic stub code */
1576
1577void efi_printk(efi_system_table_t *sys_table_arg, char *str);
1578
1579void efi_free(efi_system_table_t *sys_table_arg, unsigned long size,
1580 unsigned long addr);
1581
1582char *efi_convert_cmdline(efi_system_table_t *sys_table_arg,
1583 efi_loaded_image_t *image, int *cmd_line_len);
1584
1585efi_status_t efi_get_memory_map(efi_system_table_t *sys_table_arg,
1586 struct efi_boot_memmap *map);
1587
David Brazdil0f672f62019-12-10 10:32:29 +00001588efi_status_t efi_low_alloc_above(efi_system_table_t *sys_table_arg,
1589 unsigned long size, unsigned long align,
1590 unsigned long *addr, unsigned long min);
1591
1592static inline
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001593efi_status_t efi_low_alloc(efi_system_table_t *sys_table_arg,
1594 unsigned long size, unsigned long align,
David Brazdil0f672f62019-12-10 10:32:29 +00001595 unsigned long *addr)
1596{
1597 /*
1598 * Don't allocate at 0x0. It will confuse code that
1599 * checks pointers against NULL. Skip the first 8
1600 * bytes so we start at a nice even number.
1601 */
1602 return efi_low_alloc_above(sys_table_arg, size, align, addr, 0x8);
1603}
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001604
1605efi_status_t efi_high_alloc(efi_system_table_t *sys_table_arg,
1606 unsigned long size, unsigned long align,
1607 unsigned long *addr, unsigned long max);
1608
1609efi_status_t efi_relocate_kernel(efi_system_table_t *sys_table_arg,
1610 unsigned long *image_addr,
1611 unsigned long image_size,
1612 unsigned long alloc_size,
1613 unsigned long preferred_addr,
David Brazdil0f672f62019-12-10 10:32:29 +00001614 unsigned long alignment,
1615 unsigned long min_addr);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001616
1617efi_status_t handle_cmdline_files(efi_system_table_t *sys_table_arg,
1618 efi_loaded_image_t *image,
1619 char *cmd_line, char *option_string,
1620 unsigned long max_addr,
1621 unsigned long *load_addr,
1622 unsigned long *load_size);
1623
1624efi_status_t efi_parse_options(char const *cmdline);
1625
1626efi_status_t efi_setup_gop(efi_system_table_t *sys_table_arg,
1627 struct screen_info *si, efi_guid_t *proto,
1628 unsigned long size);
1629
David Brazdil0f672f62019-12-10 10:32:29 +00001630#ifdef CONFIG_EFI
1631extern bool efi_runtime_disabled(void);
1632#else
1633static inline bool efi_runtime_disabled(void) { return true; }
1634#endif
1635
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001636extern void efi_call_virt_check_flags(unsigned long flags, const char *call);
David Brazdil0f672f62019-12-10 10:32:29 +00001637extern unsigned long efi_call_virt_save_flags(void);
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001638
1639enum efi_secureboot_mode {
1640 efi_secureboot_mode_unset,
1641 efi_secureboot_mode_unknown,
1642 efi_secureboot_mode_disabled,
1643 efi_secureboot_mode_enabled,
1644};
1645enum efi_secureboot_mode efi_get_secureboot(efi_system_table_t *sys_table);
1646
1647#ifdef CONFIG_RESET_ATTACK_MITIGATION
1648void efi_enable_reset_attack_mitigation(efi_system_table_t *sys_table_arg);
1649#else
1650static inline void
1651efi_enable_reset_attack_mitigation(efi_system_table_t *sys_table_arg) { }
1652#endif
1653
1654void efi_retrieve_tpm2_eventlog(efi_system_table_t *sys_table);
1655
1656/*
1657 * Arch code can implement the following three template macros, avoiding
1658 * reptition for the void/non-void return cases of {__,}efi_call_virt():
1659 *
1660 * * arch_efi_call_virt_setup()
1661 *
1662 * Sets up the environment for the call (e.g. switching page tables,
1663 * allowing kernel-mode use of floating point, if required).
1664 *
1665 * * arch_efi_call_virt()
1666 *
1667 * Performs the call. The last expression in the macro must be the call
1668 * itself, allowing the logic to be shared by the void and non-void
1669 * cases.
1670 *
1671 * * arch_efi_call_virt_teardown()
1672 *
1673 * Restores the usual kernel environment once the call has returned.
1674 */
1675
1676#define efi_call_virt_pointer(p, f, args...) \
1677({ \
1678 efi_status_t __s; \
1679 unsigned long __flags; \
1680 \
1681 arch_efi_call_virt_setup(); \
1682 \
David Brazdil0f672f62019-12-10 10:32:29 +00001683 __flags = efi_call_virt_save_flags(); \
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001684 __s = arch_efi_call_virt(p, f, args); \
1685 efi_call_virt_check_flags(__flags, __stringify(f)); \
1686 \
1687 arch_efi_call_virt_teardown(); \
1688 \
1689 __s; \
1690})
1691
1692#define __efi_call_virt_pointer(p, f, args...) \
1693({ \
1694 unsigned long __flags; \
1695 \
1696 arch_efi_call_virt_setup(); \
1697 \
David Brazdil0f672f62019-12-10 10:32:29 +00001698 __flags = efi_call_virt_save_flags(); \
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001699 arch_efi_call_virt(p, f, args); \
1700 efi_call_virt_check_flags(__flags, __stringify(f)); \
1701 \
1702 arch_efi_call_virt_teardown(); \
1703})
1704
1705typedef efi_status_t (*efi_exit_boot_map_processing)(
1706 efi_system_table_t *sys_table_arg,
1707 struct efi_boot_memmap *map,
1708 void *priv);
1709
1710efi_status_t efi_exit_boot_services(efi_system_table_t *sys_table,
1711 void *handle,
1712 struct efi_boot_memmap *map,
1713 void *priv,
1714 efi_exit_boot_map_processing priv_func);
1715
1716#define EFI_RANDOM_SEED_SIZE 64U
1717
1718struct linux_efi_random_seed {
1719 u32 size;
1720 u8 bits[];
1721};
1722
1723struct linux_efi_tpm_eventlog {
1724 u32 size;
David Brazdil0f672f62019-12-10 10:32:29 +00001725 u32 final_events_preboot_size;
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001726 u8 version;
1727 u8 log[];
1728};
1729
1730extern int efi_tpm_eventlog_init(void);
1731
David Brazdil0f672f62019-12-10 10:32:29 +00001732struct efi_tcg2_final_events_table {
1733 u64 version;
1734 u64 nr_events;
1735 u8 events[];
1736};
1737extern int efi_tpm_final_log_size;
1738
1739extern unsigned long rci2_table_phys;
1740
1741/*
1742 * efi_runtime_service() function identifiers.
1743 * "NONE" is used by efi_recover_from_page_fault() to check if the page
1744 * fault happened while executing an efi runtime service.
1745 */
1746enum efi_rts_ids {
1747 EFI_NONE,
1748 EFI_GET_TIME,
1749 EFI_SET_TIME,
1750 EFI_GET_WAKEUP_TIME,
1751 EFI_SET_WAKEUP_TIME,
1752 EFI_GET_VARIABLE,
1753 EFI_GET_NEXT_VARIABLE,
1754 EFI_SET_VARIABLE,
1755 EFI_QUERY_VARIABLE_INFO,
1756 EFI_GET_NEXT_HIGH_MONO_COUNT,
1757 EFI_RESET_SYSTEM,
1758 EFI_UPDATE_CAPSULE,
1759 EFI_QUERY_CAPSULE_CAPS,
1760};
1761
1762/*
1763 * efi_runtime_work: Details of EFI Runtime Service work
1764 * @arg<1-5>: EFI Runtime Service function arguments
1765 * @status: Status of executing EFI Runtime Service
1766 * @efi_rts_id: EFI Runtime Service function identifier
1767 * @efi_rts_comp: Struct used for handling completions
1768 */
1769struct efi_runtime_work {
1770 void *arg1;
1771 void *arg2;
1772 void *arg3;
1773 void *arg4;
1774 void *arg5;
1775 efi_status_t status;
1776 struct work_struct work;
1777 enum efi_rts_ids efi_rts_id;
1778 struct completion efi_rts_comp;
1779};
1780
1781extern struct efi_runtime_work efi_rts_work;
1782
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001783/* Workqueue to queue EFI Runtime Services */
1784extern struct workqueue_struct *efi_rts_wq;
1785
David Brazdil0f672f62019-12-10 10:32:29 +00001786struct linux_efi_memreserve {
1787 int size; // allocated size of the array
1788 atomic_t count; // number of entries used
1789 phys_addr_t next; // pa of next struct instance
1790 struct {
1791 phys_addr_t base;
1792 phys_addr_t size;
1793 } entry[0];
1794};
1795
1796#define EFI_MEMRESERVE_SIZE(count) (sizeof(struct linux_efi_memreserve) + \
1797 (count) * sizeof(((struct linux_efi_memreserve *)0)->entry[0]))
1798
1799#define EFI_MEMRESERVE_COUNT(size) (((size) - sizeof(struct linux_efi_memreserve)) \
1800 / sizeof(((struct linux_efi_memreserve *)0)->entry[0]))
1801
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001802#endif /* _LINUX_EFI_H */