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efi_loader: add the number of image entries in efi_capsule_update_info
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f739fcd8 1/* SPDX-License-Identifier: GPL-2.0+ */
cb149c66
AG
2/*
3 * EFI application loader
4 *
5 * Copyright (c) 2016 Alexander Graf
cb149c66
AG
6 */
7
cd9e18de
HS
8#ifndef _EFI_LOADER_H
9#define _EFI_LOADER_H 1
10
bee91169 11#include <common.h>
e6f6f9e6 12#include <blk.h>
f05911a1 13#include <event.h>
f7ae49fc 14#include <log.h>
cb149c66
AG
15#include <part_efi.h>
16#include <efi_api.h>
d9f3307a 17#include <image.h>
4540dabd 18#include <pe.h>
6e3c6544
SG
19#include <linux/list.h>
20#include <linux/oid_registry.h>
bee91169 21
e6f6f9e6 22struct blk_desc;
86a3d43b 23struct jmp_buf_data;
e6f6f9e6 24
fdeb6f7d
SG
25static inline int guidcmp(const void *g1, const void *g2)
26{
27 return memcmp(g1, g2, sizeof(efi_guid_t));
28}
29
61e42d94
SG
30static inline void *guidcpy(void *dst, const void *src)
31{
32 return memcpy(dst, src, sizeof(efi_guid_t));
33}
34
9b5e6396 35#if CONFIG_IS_ENABLED(EFI_LOADER)
bee91169 36
6e3c6544
SG
37/**
38 * __efi_runtime_data - declares a non-const variable for EFI runtime section
39 *
40 * This macro indicates that a variable is non-const and should go into the
41 * EFI runtime section, and thus still be available when the OS is running.
42 *
43 * Only use on variables not declared const.
44 *
45 * Example:
46 *
47 * ::
48 *
49 * static __efi_runtime_data my_computed_table[256];
50 */
51#define __efi_runtime_data __section(".data.efi_runtime")
52
53/**
54 * __efi_runtime_rodata - declares a read-only variable for EFI runtime section
55 *
56 * This macro indicates that a variable is read-only (const) and should go into
57 * the EFI runtime section, and thus still be available when the OS is running.
58 *
59 * Only use on variables also declared const.
60 *
61 * Example:
62 *
63 * ::
64 *
65 * static const __efi_runtime_rodata my_const_table[] = { 1, 2, 3 };
66 */
67#define __efi_runtime_rodata __section(".rodata.efi_runtime")
68
69/**
70 * __efi_runtime - declares a function for EFI runtime section
71 *
72 * This macro indicates that a function should go into the EFI runtime section,
73 * and thus still be available when the OS is running.
74 *
75 * Example:
76 *
77 * ::
78 *
79 * static __efi_runtime compute_my_table(void);
80 */
81#define __efi_runtime __section(".text.efi_runtime")
82
83/*
84 * Call this with mmio_ptr as the _pointer_ to a pointer to an MMIO region
85 * to make it available at runtime
86 */
87efi_status_t efi_add_runtime_mmio(void *mmio_ptr, u64 len);
88
89/*
90 * Special case handler for error/abort that just tries to dtrt to get
91 * back to u-boot world
92 */
93void efi_restore_gd(void);
94/* Call this to set the current device name */
95void efi_set_bootdev(const char *dev, const char *devnr, const char *path,
96 void *buffer, size_t buffer_size);
97/* Called by networking code to memorize the dhcp ack package */
98void efi_net_set_dhcp_ack(void *pkt, int len);
99/* Print information about all loaded images */
100void efi_print_image_infos(void *pc);
101
102/* Hook at initialization */
103efi_status_t efi_launch_capsules(void);
104
105#else /* CONFIG_IS_ENABLED(EFI_LOADER) */
106
107/* Without CONFIG_EFI_LOADER we don't have a runtime section, stub it out */
108#define __efi_runtime_data
109#define __efi_runtime_rodata
110#define __efi_runtime
111static inline efi_status_t efi_add_runtime_mmio(void *mmio_ptr, u64 len)
112{
113 return EFI_SUCCESS;
114}
115
116/* No loader configured, stub out EFI_ENTRY */
117static inline void efi_restore_gd(void) { }
118static inline void efi_set_bootdev(const char *dev, const char *devnr,
119 const char *path, void *buffer,
120 size_t buffer_size) { }
121static inline void efi_net_set_dhcp_ack(void *pkt, int len) { }
122static inline void efi_print_image_infos(void *pc) { }
123static inline efi_status_t efi_launch_capsules(void)
124{
125 return EFI_SUCCESS;
126}
127
128#endif /* CONFIG_IS_ENABLED(EFI_LOADER) */
cb149c66 129
4182a129
HS
130/* Maximum number of configuration tables */
131#define EFI_MAX_CONFIGURATION_TABLES 16
132
4e6b5d65
HS
133/* GUID used by the root node */
134#define U_BOOT_GUID \
135 EFI_GUID(0xe61d73b9, 0xa384, 0x4acc, \
136 0xae, 0xab, 0x82, 0xe8, 0x28, 0xf3, 0x62, 0x8b)
272ec6b4
TW
137/* GUID used as root for blkmap devices */
138#define U_BOOT_BLKMAP_DEV_GUID \
139 EFI_GUID(0x4cad859d, 0xd644, 0x42ff, \
140 0x87, 0x0b, 0xc0, 0x2e, 0xac, 0x05, 0x58, 0x63)
23ad52ff
AT
141/* GUID used as host device on sandbox */
142#define U_BOOT_HOST_DEV_GUID \
143 EFI_GUID(0xbbe4e671, 0x5773, 0x4ea1, \
144 0x9a, 0xab, 0x3a, 0x7d, 0xbf, 0x40, 0xc4, 0x82)
19ecced7
HS
145/* GUID used as root for virtio devices */
146#define U_BOOT_VIRTIO_DEV_GUID \
147 EFI_GUID(0x63293792, 0xadf5, 0x9325, \
148 0xb9, 0x9f, 0x4e, 0x0e, 0x45, 0x5c, 0x1b, 0x1e)
4e6b5d65 149
87d79142
MK
150/* GUID for the auto generated boot menu entry */
151#define EFICONFIG_AUTO_GENERATED_ENTRY_GUID \
152 EFI_GUID(0x38c1acc1, 0x9fc0, 0x41f0, \
153 0xb9, 0x01, 0xfa, 0x74, 0xd6, 0xd6, 0xe4, 0xde)
154
7a597259 155/* Use internal device tree when starting UEFI application */
f64f2232 156#define EFI_FDT_USE_INTERNAL NULL
7a597259 157
a2a4bc3b
AT
158/* Root node */
159extern efi_handle_t efi_root;
160
15b1bf10
HS
161/* Set to EFI_SUCCESS when initialized */
162extern efi_status_t efi_obj_list_initialized;
163
fccd3d9c
HS
164/* Flag used by the selftest to avoid detaching devices in ExitBootServices() */
165extern bool efi_st_keep_devices;
166
11078bb2
HS
167/* EFI system partition */
168extern struct efi_system_partition {
8149b150 169 enum uclass_id uclass_id;
11078bb2
HS
170 int devnum;
171 u8 part;
172} efi_system_partition;
173
c160d2f5
RC
174int __efi_entry_check(void);
175int __efi_exit_check(void);
ae0bd3a9 176const char *__efi_nesting(void);
af65db85
RC
177const char *__efi_nesting_inc(void);
178const char *__efi_nesting_dec(void);
c160d2f5 179
a095aadf
RC
180/*
181 * Enter the u-boot world from UEFI:
182 */
bee91169 183#define EFI_ENTRY(format, ...) do { \
c160d2f5 184 assert(__efi_entry_check()); \
af65db85
RC
185 debug("%sEFI: Entry %s(" format ")\n", __efi_nesting_inc(), \
186 __func__, ##__VA_ARGS__); \
bee91169 187 } while(0)
bee91169 188
a095aadf
RC
189/*
190 * Exit the u-boot world back to UEFI:
191 */
804b1d73 192#define EFI_EXIT(ret) ({ \
c81883df 193 typeof(ret) _r = ret; \
af65db85 194 debug("%sEFI: Exit: %s: %u\n", __efi_nesting_dec(), \
c81883df 195 __func__, (u32)((uintptr_t) _r & ~EFI_ERROR_MASK)); \
c160d2f5
RC
196 assert(__efi_exit_check()); \
197 _r; \
804b1d73 198 })
bee91169 199
a095aadf 200/*
ea630ce9 201 * Call non-void UEFI function from u-boot and retrieve return value:
a095aadf 202 */
ea630ce9
HS
203#define EFI_CALL(exp) ({ \
204 debug("%sEFI: Call: %s\n", __efi_nesting_inc(), #exp); \
205 assert(__efi_exit_check()); \
206 typeof(exp) _r = exp; \
207 assert(__efi_entry_check()); \
208 debug("%sEFI: %lu returned by %s\n", __efi_nesting_dec(), \
209 (unsigned long)((uintptr_t)_r & ~EFI_ERROR_MASK), #exp); \
210 _r; \
211})
212
213/*
214 * Call void UEFI function from u-boot:
215 */
216#define EFI_CALL_VOID(exp) do { \
af65db85 217 debug("%sEFI: Call: %s\n", __efi_nesting_inc(), #exp); \
c160d2f5 218 assert(__efi_exit_check()); \
a095aadf 219 exp; \
c160d2f5 220 assert(__efi_entry_check()); \
af65db85 221 debug("%sEFI: Return From: %s\n", __efi_nesting_dec(), #exp); \
a095aadf
RC
222 } while(0)
223
ae0bd3a9 224/*
d5504144 225 * Write an indented message with EFI prefix
ae0bd3a9 226 */
d5504144
HS
227#define EFI_PRINT(format, ...) ({ \
228 debug("%sEFI: " format, __efi_nesting(), \
229 ##__VA_ARGS__); \
ae0bd3a9
HS
230 })
231
89aea436
AG
232#ifdef CONFIG_SYS_CACHELINE_SIZE
233#define EFI_CACHELINE_SIZE CONFIG_SYS_CACHELINE_SIZE
234#else
235/* Just use the greatest cache flush alignment requirement I'm aware of */
236#define EFI_CACHELINE_SIZE 128
237#endif
238
87d79142
MK
239/* max bootmenu title size for volume selection */
240#define BOOTMENU_DEVICE_NAME_MAX 16
241
1fcb7ea2
HS
242/* Key identifying current memory map */
243extern efi_uintn_t efi_memory_map_key;
244
50149ea3 245extern struct efi_runtime_services efi_runtime_services;
bee91169
AG
246extern struct efi_system_table systab;
247
ebb4dd5b 248extern struct efi_simple_text_output_protocol efi_con_out;
3e603ec7 249extern struct efi_simple_text_input_protocol efi_con_in;
ebb4dd5b 250extern struct efi_console_control_protocol efi_console_control;
cc5b7081 251extern const struct efi_device_path_to_text_protocol efi_device_path_to_text;
e70f8dfa
LL
252/* implementation of the EFI_DEVICE_PATH_UTILITIES_PROTOCOL */
253extern const struct efi_device_path_utilities_protocol
254 efi_device_path_utilities;
b1b782d3 255/* current version of the EFI_UNICODE_COLLATION_PROTOCOL */
0bc4b0da 256extern const struct efi_unicode_collation_protocol
95ab3816 257 efi_unicode_collation_protocol2;
cb728e51
AT
258extern const struct efi_hii_config_routing_protocol efi_hii_config_routing;
259extern const struct efi_hii_config_access_protocol efi_hii_config_access;
c9bfb222
LL
260extern const struct efi_hii_database_protocol efi_hii_database;
261extern const struct efi_hii_string_protocol efi_hii_string;
c1311ad4 262
adae4313
RC
263uint16_t *efi_dp_str(struct efi_device_path *dp);
264
87d79142
MK
265/* GUID for the auto generated boot menu entry */
266extern const efi_guid_t efi_guid_bootmenu_auto_generated;
267
4e6b5d65
HS
268/* GUID of the U-Boot root node */
269extern const efi_guid_t efi_u_boot_guid;
23ad52ff
AT
270#ifdef CONFIG_SANDBOX
271/* GUID of U-Boot host device on sandbox */
272extern const efi_guid_t efi_guid_host_dev;
273#endif
b3dd14b6
HS
274/* GUID of the EFI_BLOCK_IO_PROTOCOL */
275extern const efi_guid_t efi_block_io_guid;
9975fe96 276extern const efi_guid_t efi_global_variable_guid;
c1311ad4 277extern const efi_guid_t efi_guid_console_control;
cb149c66 278extern const efi_guid_t efi_guid_device_path;
90dcd9b2
HS
279/* GUID of the EFI system partition */
280extern const efi_guid_t efi_system_partition_guid;
f0959dbe
HS
281/* GUID of the EFI_DRIVER_BINDING_PROTOCOL */
282extern const efi_guid_t efi_guid_driver_binding_protocol;
a3a28f5f
HS
283/* event group ExitBootServices() invoked */
284extern const efi_guid_t efi_guid_event_group_exit_boot_services;
285/* event group SetVirtualAddressMap() invoked */
286extern const efi_guid_t efi_guid_event_group_virtual_address_change;
287/* event group memory map changed */
288extern const efi_guid_t efi_guid_event_group_memory_map_change;
289/* event group boot manager about to boot */
290extern const efi_guid_t efi_guid_event_group_ready_to_boot;
291/* event group ResetSystem() invoked (before ExitBootServices) */
292extern const efi_guid_t efi_guid_event_group_reset_system;
bc4f9133
HS
293/* GUID of the device tree table */
294extern const efi_guid_t efi_guid_fdt;
cb149c66 295extern const efi_guid_t efi_guid_loaded_image;
bc8fc328 296extern const efi_guid_t efi_guid_loaded_image_device_path;
cc5b7081 297extern const efi_guid_t efi_guid_device_path_to_text_protocol;
2a92080d
RC
298extern const efi_guid_t efi_simple_file_system_protocol_guid;
299extern const efi_guid_t efi_file_info_guid;
9e6835e6
HS
300/* GUID for file system information */
301extern const efi_guid_t efi_file_system_info_guid;
e70f8dfa 302extern const efi_guid_t efi_guid_device_path_utilities_protocol;
b1b782d3
HS
303/* GUID of the deprecated Unicode collation protocol */
304extern const efi_guid_t efi_guid_unicode_collation_protocol;
b6f11098
HS
305/* GUIDs of the Load File and Load File2 protocol */
306extern const efi_guid_t efi_guid_load_file_protocol;
307extern const efi_guid_t efi_guid_load_file2_protocol;
0bc4b0da 308/* GUID of the Unicode collation protocol */
95ab3816 309extern const efi_guid_t efi_guid_unicode_collation_protocol2;
cb728e51
AT
310extern const efi_guid_t efi_guid_hii_config_routing_protocol;
311extern const efi_guid_t efi_guid_hii_config_access_protocol;
c9bfb222
LL
312extern const efi_guid_t efi_guid_hii_database_protocol;
313extern const efi_guid_t efi_guid_hii_string_protocol;
593e17d6
AT
314/* GUIDs for authentication */
315extern const efi_guid_t efi_guid_image_security_database;
316extern const efi_guid_t efi_guid_sha256;
317extern const efi_guid_t efi_guid_cert_x509;
318extern const efi_guid_t efi_guid_cert_x509_sha256;
b436cc6a
IA
319extern const efi_guid_t efi_guid_cert_x509_sha384;
320extern const efi_guid_t efi_guid_cert_x509_sha512;
767f6eeb 321extern const efi_guid_t efi_guid_cert_type_pkcs7;
cb149c66 322
33c37d97
SG
323/* GUID of RNG protocol */
324extern const efi_guid_t efi_guid_rng_protocol;
2bc27ca8
AT
325/* GUID of capsule update result */
326extern const efi_guid_t efi_guid_capsule_report;
8d99026f
AT
327/* GUID of firmware management protocol */
328extern const efi_guid_t efi_guid_firmware_management_protocol;
64a8aae1
JM
329/* GUID for the ESRT */
330extern const efi_guid_t efi_esrt_guid;
3d49ee85
MK
331/* GUID of the SMBIOS table */
332extern const efi_guid_t smbios_guid;
87d79142
MK
333/*GUID of console */
334extern const efi_guid_t efi_guid_text_input_protocol;
8dbd0a0f 335extern const efi_guid_t efi_guid_text_output_protocol;
33c37d97 336
2bdc6f57
MB
337extern char __efi_runtime_start[], __efi_runtime_stop[];
338extern char __efi_runtime_rel_start[], __efi_runtime_rel_stop[];
50149ea3 339
1f1075c6
HS
340/**
341 * struct efi_open_protocol_info_item - open protocol info item
342 *
fe1599da
HS
343 * When a protocol is opened a open protocol info entry is created.
344 * These are maintained in a list.
1f1075c6
HS
345 *
346 * @link: link to the list of open protocol info entries of a protocol
347 * @info: information about the opening of a protocol
fe1599da
HS
348 */
349struct efi_open_protocol_info_item {
fe1599da
HS
350 struct list_head link;
351 struct efi_open_protocol_info_entry info;
352};
353
1f1075c6
HS
354/**
355 * struct efi_handler - single protocol interface of a handle
356 *
bee91169
AG
357 * When the UEFI payload wants to open a protocol on an object to get its
358 * interface (usually a struct with callback functions), this struct maps the
fe1599da 359 * protocol GUID to the respective protocol interface
1f1075c6
HS
360 *
361 * @link: link to the list of protocols of a handle
362 * @guid: GUID of the protocol
363 * @protocol_interface: protocol interface
c6f077a2 364 * @open_infos: link to the list of open protocol info items
fe1599da 365 */
bee91169 366struct efi_handler {
69fb6b1a 367 struct list_head link;
66028930 368 const efi_guid_t guid;
b5349f74 369 void *protocol_interface;
fe1599da 370 struct list_head open_infos;
bee91169
AG
371};
372
cd73aba6
HS
373/**
374 * enum efi_object_type - type of EFI object
375 *
376 * In UnloadImage we must be able to identify if the handle relates to a
377 * started image.
378 */
379enum efi_object_type {
c6f077a2 380 /** @EFI_OBJECT_TYPE_UNDEFINED: undefined image type */
cd73aba6 381 EFI_OBJECT_TYPE_UNDEFINED = 0,
c6f077a2 382 /** @EFI_OBJECT_TYPE_U_BOOT_FIRMWARE: U-Boot firmware */
84a918e8 383 EFI_OBJECT_TYPE_U_BOOT_FIRMWARE,
c6f077a2 384 /** @EFI_OBJECT_TYPE_LOADED_IMAGE: loaded image (not started) */
cd73aba6 385 EFI_OBJECT_TYPE_LOADED_IMAGE,
c6f077a2 386 /** @EFI_OBJECT_TYPE_STARTED_IMAGE: started image */
cd73aba6
HS
387 EFI_OBJECT_TYPE_STARTED_IMAGE,
388};
389
fae0118e
HS
390/**
391 * struct efi_object - dereferenced EFI handle
392 *
393 * @link: pointers to put the handle into a linked list
394 * @protocols: linked list with the protocol interfaces installed on this
395 * handle
c6f077a2 396 * @type: image type if the handle relates to an image
ee576662 397 * @dev: pointer to the DM device which is associated with this EFI handle
fae0118e
HS
398 *
399 * UEFI offers a flexible and expandable object model. The objects in the UEFI
400 * API are devices, drivers, and loaded images. struct efi_object is our storage
401 * structure for these objects.
402 *
403 * When including this structure into a larger structure always put it first so
404 * that when deleting a handle the whole encompassing structure can be freed.
bee91169 405 *
fae0118e
HS
406 * A pointer to this structure is referred to as a handle. Typedef efi_handle_t
407 * has been created for such pointers.
bee91169
AG
408 */
409struct efi_object {
410 /* Every UEFI object is part of a global object list */
411 struct list_head link;
69fb6b1a
HS
412 /* The list of protocols */
413 struct list_head protocols;
cd73aba6 414 enum efi_object_type type;
ee576662 415 struct udevice *dev;
bee91169
AG
416};
417
4540dabd
AT
418enum efi_image_auth_status {
419 EFI_IMAGE_AUTH_FAILED = 0,
420 EFI_IMAGE_AUTH_PASSED,
421};
422
c982874e
HS
423/**
424 * struct efi_loaded_image_obj - handle of a loaded image
d39646a3
HS
425 *
426 * @header: EFI object header
556d8dc9
HS
427 * @exit_status: exit status passed to Exit()
428 * @exit_data_size: exit data size passed to Exit()
429 * @exit_data: exit data passed to Exit()
0ce3fb55 430 * @exit_jmp: long jump buffer for returning from started image
d39646a3 431 * @entry: entry address of the relocated image
0ce3fb55
HS
432 * @image_type: indicates if the image is an applicition or a driver
433 * @auth_status: indicates if the image is authenticated
c982874e
HS
434 */
435struct efi_loaded_image_obj {
d39646a3 436 struct efi_object header;
f8212f09 437 efi_status_t *exit_status;
556d8dc9
HS
438 efi_uintn_t *exit_data_size;
439 u16 **exit_data;
f8212f09 440 struct jmp_buf_data *exit_jmp;
c982874e
HS
441 EFIAPI efi_status_t (*entry)(efi_handle_t image_handle,
442 struct efi_system_table *st);
126a43f1 443 u16 image_type;
4540dabd 444 enum efi_image_auth_status auth_status;
c982874e
HS
445};
446
c6841592
HS
447/**
448 * struct efi_event
449 *
43bce442 450 * @link: Link to list of all events
7a69e97b 451 * @queue_link: Link to the list of queued events
c6841592
HS
452 * @type: Type of event, see efi_create_event
453 * @notify_tpl: Task priority level of notifications
c6f077a2 454 * @notify_function: Function to call when the event is triggered
c6841592 455 * @notify_context: Data to be passed to the notify function
b095f3c8 456 * @group: Event group
43bce442
HS
457 * @trigger_time: Period of the timer
458 * @trigger_next: Next time to trigger the timer
c6841592 459 * @trigger_type: Type of timer, see efi_set_timer
43bce442 460 * @is_signaled: The event occurred. The event is in the signaled state.
c6841592
HS
461 */
462struct efi_event {
43bce442 463 struct list_head link;
7a69e97b 464 struct list_head queue_link;
b521d29e 465 uint32_t type;
152cade3 466 efi_uintn_t notify_tpl;
c6841592
HS
467 void (EFIAPI *notify_function)(struct efi_event *event, void *context);
468 void *notify_context;
b095f3c8 469 const efi_guid_t *group;
c6841592
HS
470 u64 trigger_next;
471 u64 trigger_time;
b521d29e 472 enum efi_timer_delay trigger_type;
e190e897 473 bool is_signaled;
c6841592
HS
474};
475
bee91169
AG
476/* This list contains all UEFI objects we know of */
477extern struct list_head efi_obj_list;
b095f3c8
HS
478/* List of all events */
479extern struct list_head efi_events;
bee91169 480
f09cea36
HS
481/**
482 * struct efi_protocol_notification - handle for notified protocol
483 *
484 * When a protocol interface is installed for which an event was registered with
485 * the RegisterProtocolNotify() service this structure is used to hold the
486 * handle on which the protocol interface was installed.
487 *
488 * @link: link to list of all handles notified for this event
489 * @handle: handle on which the notified protocol interface was installed
490 */
491struct efi_protocol_notification {
492 struct list_head link;
493 efi_handle_t handle;
494};
495
ab15d414 496/**
c6f077a2
HS
497 * struct efi_register_notify_event - event registered by
498 * RegisterProtocolNotify()
ab15d414
HS
499 *
500 * The address of this structure serves as registration value.
501 *
f09cea36
HS
502 * @link: link to list of all registered events
503 * @event: registered event. The same event may registered for multiple
504 * GUIDs.
505 * @protocol: protocol for which the event is registered
506 * @handles: linked list of all handles on which the notified protocol was
507 * installed
ab15d414
HS
508 */
509struct efi_register_notify_event {
510 struct list_head link;
511 struct efi_event *event;
512 efi_guid_t protocol;
f09cea36 513 struct list_head handles;
ab15d414
HS
514};
515
a57ad20d
AT
516/* called at pre-initialization */
517int efi_init_early(void);
056b45bc
AT
518/* Initialize efi execution environment */
519efi_status_t efi_init_obj_list(void);
68edbed4
HS
520/* Set up console modes */
521void efi_setup_console_size(void);
f64f2232
HS
522/* Install device tree */
523efi_status_t efi_install_fdt(void *fdt);
f9ceb6ac
HS
524/* Run loaded UEFI image */
525efi_status_t efi_run_image(void *source_buffer, efi_uintn_t source_size);
88192098
HS
526/* Initialize variable services */
527efi_status_t efi_init_variables(void);
29018abb
HS
528/* Notify ExitBootServices() is called */
529void efi_variables_boot_exit_notify(void);
fdff03e5 530efi_status_t efi_tcg2_notify_exit_boot_services_failed(void);
8fc4e0b4 531/* Measure efi application invocation */
ce3dbc5d 532efi_status_t efi_tcg2_measure_efi_app_invocation(struct efi_loaded_image_obj *handle);
8fc4e0b4
MK
533/* Measure efi application exit */
534efi_status_t efi_tcg2_measure_efi_app_exit(void);
aa2d3945
EC
535/* Measure DTB */
536efi_status_t efi_tcg2_measure_dtb(void *dtb);
4e6b5d65
HS
537/* Called by bootefi to initialize root node */
538efi_status_t efi_root_node_register(void);
640adadf
HS
539/* Called by bootefi to initialize runtime */
540efi_status_t efi_initialize_system_table(void);
7f95104d
HS
541/* efi_runtime_detach() - detach unimplemented runtime functions */
542void efi_runtime_detach(void);
a44d2a23
HS
543/* efi_convert_pointer() - convert pointer to virtual address */
544efi_status_t EFIAPI efi_convert_pointer(efi_uintn_t debug_disposition,
545 void **address);
94686f60
HS
546/* Carve out DT reserved memory ranges */
547void efi_carve_out_dt_rsv(void *fdt);
a2f1482f
IA
548/* Purge unused kaslr-seed */
549void efi_try_purge_kaslr_seed(void *fdt);
91be9a77 550/* Called by bootefi to make console interface available */
6f566c23 551efi_status_t efi_console_register(void);
d5391bf0
HS
552/* Called by efi_init_obj_list() to proble all block devices */
553efi_status_t efi_disks_register(void);
b59c13d4
HS
554/* Called by efi_init_obj_list() to install EFI_RNG_PROTOCOL */
555efi_status_t efi_rng_register(void);
c1c02105
IA
556/* Called by efi_init_obj_list() to install EFI_TCG2_PROTOCOL */
557efi_status_t efi_tcg2_register(void);
1ccf8716
S
558/* Called by efi_init_obj_list() to install RISCV_EFI_BOOT_PROTOCOL */
559efi_status_t efi_riscv_register(void);
54bec17f
MK
560/* Called by efi_init_obj_list() to do initial measurement */
561efi_status_t efi_tcg2_do_initial_measurement(void);
163a0d7e
MK
562/* measure the pe-coff image, extend PCR and add Event Log */
563efi_status_t tcg2_measure_pe_image(void *efi, u64 efi_size,
564 struct efi_loaded_image_obj *handle,
565 struct efi_loaded_image *loaded_image_info);
64e4db0f
HS
566/* Create handles and protocols for the partitions of a block device */
567int efi_disk_create_partitions(efi_handle_t parent, struct blk_desc *desc,
8149b150 568 const char *uclass_idname, int diskid,
64e4db0f 569 const char *pdevname);
be8d3241 570/* Called by bootefi to make GOP (graphical) interface available */
80ea9b09 571efi_status_t efi_gop_register(void);
0efe1bcf 572/* Called by bootefi to make the network interface available */
075d425d 573efi_status_t efi_net_register(void);
b3d60900 574/* Called by bootefi to make the watchdog available */
d7b181d5 575efi_status_t efi_watchdog_register(void);
ec80b473 576efi_status_t efi_initrd_register(void);
70089c13 577efi_status_t efi_initrd_deregister(void);
e663b350 578/* Called by bootefi to make SMBIOS tables available */
86df34d4
BM
579/**
580 * efi_acpi_register() - write out ACPI tables
581 *
582 * Called by bootefi to make ACPI tables available
583 *
185f812c 584 * Return: 0 if OK, -ENOMEM if no memory is available for the tables
86df34d4
BM
585 */
586efi_status_t efi_acpi_register(void);
0864c565
SG
587/**
588 * efi_smbios_register() - write out SMBIOS tables
589 *
590 * Called by bootefi to make SMBIOS tables available
591 *
185f812c 592 * Return: 0 if OK, -ENOMEM if no memory is available for the tables
0864c565 593 */
7657152b 594efi_status_t efi_smbios_register(void);
0efe1bcf 595
2a92080d
RC
596struct efi_simple_file_system_protocol *
597efi_fs_from_path(struct efi_device_path *fp);
598
b3d60900
HS
599/* Called by efi_set_watchdog_timer to reset the timer */
600efi_status_t efi_set_watchdog(unsigned long timeout);
0efe1bcf 601
bee91169
AG
602/* Called from places to check whether a timer expired */
603void efi_timer_check(void);
5dad05a0
HS
604/* Check if a buffer contains a PE-COFF image */
605efi_status_t efi_check_pe(void *buffer, size_t size, void **nt_header);
bee91169 606/* PE loader implementation */
4540dabd
AT
607efi_status_t efi_load_pe(struct efi_loaded_image_obj *handle,
608 void *efi, size_t efi_size,
8f7e2b29 609 struct efi_loaded_image *loaded_image_info);
bee91169
AG
610/* Called once to store the pristine gd pointer */
611void efi_save_gd(void);
50149ea3
AG
612/* Call this to relocate the runtime section to an address space */
613void efi_runtime_relocate(ulong offset, struct efi_mem_desc *map);
bfef72e4
RMS
614/* Call this to get image parameters */
615void efi_get_image_parameters(void **img_addr, size_t *img_size);
44549d62 616/* Add a new object to the object list. */
fae0118e 617void efi_add_handle(efi_handle_t obj);
2edab5e2 618/* Create handle */
2074f700 619efi_status_t efi_create_handle(efi_handle_t *handle);
678e03a0 620/* Delete handle */
fae0118e 621void efi_delete_handle(efi_handle_t obj);
1b68153a 622/* Call this to validate a handle and find the EFI object for it */
2074f700 623struct efi_object *efi_search_obj(const efi_handle_t handle);
d8465ffc
AT
624/* Locate device_path handle */
625efi_status_t EFIAPI efi_locate_device_path(const efi_guid_t *protocol,
626 struct efi_device_path **device_path,
627 efi_handle_t *device);
d7e0b010
AT
628/* Load image */
629efi_status_t EFIAPI efi_load_image(bool boot_policy,
630 efi_handle_t parent_image,
631 struct efi_device_path *file_path,
632 void *source_buffer,
633 efi_uintn_t source_size,
634 efi_handle_t *image_handle);
f69d63fa
HS
635/* Start image */
636efi_status_t EFIAPI efi_start_image(efi_handle_t image_handle,
637 efi_uintn_t *exit_data_size,
638 u16 **exit_data);
d7e0b010
AT
639/* Unload image */
640efi_status_t EFIAPI efi_unload_image(efi_handle_t image_handle);
3f79a2b5 641/* Find a protocol on a handle */
2074f700 642efi_status_t efi_search_protocol(const efi_handle_t handle,
3f79a2b5
HS
643 const efi_guid_t *protocol_guid,
644 struct efi_handler **handler);
645/* Install new protocol on a handle */
2074f700
HS
646efi_status_t efi_add_protocol(const efi_handle_t handle,
647 const efi_guid_t *protocol,
3f79a2b5 648 void *protocol_interface);
f9ad240e
HS
649/* Open protocol */
650efi_status_t efi_protocol_open(struct efi_handler *handler,
651 void **protocol_interface, void *agent_handle,
652 void *controller_handle, uint32_t attributes);
653
3f79a2b5 654/* Delete protocol from a handle */
2074f700
HS
655efi_status_t efi_remove_protocol(const efi_handle_t handle,
656 const efi_guid_t *protocol,
3f79a2b5 657 void *protocol_interface);
7657ae12 658/* Install multiple protocol interfaces */
05c4c9e2
IA
659efi_status_t EFIAPI
660efi_install_multiple_protocol_interfaces(efi_handle_t *handle, ...);
661efi_status_t EFIAPI
662efi_uninstall_multiple_protocol_interfaces(efi_handle_t handle, ...);
b51ec639
AT
663/* Get handles that support a given protocol */
664efi_status_t EFIAPI efi_locate_handle_buffer(
665 enum efi_locate_search_type search_type,
666 const efi_guid_t *protocol, void *search_key,
667 efi_uintn_t *no_handles, efi_handle_t **buffer);
ef185764
HS
668/* Close a previously opened protocol interface */
669efi_status_t efi_close_protocol(efi_handle_t handle, const efi_guid_t *protocol,
670 efi_handle_t agent_handle,
671 efi_handle_t controller_handle);
b51ec639
AT
672/* Open a protocol interface */
673efi_status_t EFIAPI efi_handle_protocol(efi_handle_t handle,
674 const efi_guid_t *protocol,
675 void **protocol_interface);
49deb455 676/* Call this to create an event */
152cade3 677efi_status_t efi_create_event(uint32_t type, efi_uintn_t notify_tpl,
49deb455
HS
678 void (EFIAPI *notify_function) (
679 struct efi_event *event,
680 void *context),
b095f3c8
HS
681 void *notify_context, efi_guid_t *group,
682 struct efi_event **event);
bfc72462 683/* Call this to set a timer */
b521d29e 684efi_status_t efi_set_timer(struct efi_event *event, enum efi_timer_delay type,
bfc72462 685 uint64_t trigger_time);
91be9a77 686/* Call this to signal an event */
7eaa900e 687void efi_signal_event(struct efi_event *event);
50149ea3 688
05f391e2
AT
689/* return true if the device is removable */
690bool efi_disk_is_removable(efi_handle_t handle);
691
2a92080d
RC
692/* open file system: */
693struct efi_simple_file_system_protocol *efi_simple_file_system(
694 struct blk_desc *desc, int part, struct efi_device_path *dp);
695
696/* open file from device-path: */
697struct efi_file_handle *efi_file_from_path(struct efi_device_path *fp);
698
64a8aae1
JM
699/* Registers a callback function for a notification event. */
700efi_status_t EFIAPI efi_register_protocol_notify(const efi_guid_t *protocol,
701 struct efi_event *event,
702 void **registration);
37c3ca5c
IA
703efi_status_t efi_file_size(struct efi_file_handle *fh, efi_uintn_t *size);
704
705/* get a device path from a Boot#### option */
706struct efi_device_path *efi_get_dp_from_boot(const efi_guid_t guid);
707
b436cc6a
IA
708/* get len, string (used in u-boot crypto from a guid */
709const char *guid_to_sha_str(const efi_guid_t *guid);
710int algo_to_len(const char *algo);
711
ee576662 712int efi_link_dev(efi_handle_t handle, struct udevice *dev);
16b27b67 713int efi_unlink_dev(efi_handle_t handle);
3ac026ae 714bool efi_varname_is_load_option(u16 *var_name16, int *index);
ce327084
MK
715efi_status_t efi_next_variable_name(efi_uintn_t *size, u16 **buf,
716 efi_guid_t *guid);
ee576662 717
c3772ca1
HS
718/**
719 * efi_size_in_pages() - convert size in bytes to size in pages
720 *
721 * This macro returns the number of EFI memory pages required to hold 'size'
722 * bytes.
723 *
724 * @size: size in bytes
725 * Return: size in pages
726 */
0a7e5165 727#define efi_size_in_pages(size) (((size) + EFI_PAGE_MASK) >> EFI_PAGE_SHIFT)
f606fab8
HS
728/* Allocate boot service data pool memory */
729void *efi_alloc(size_t len);
ebdea88d
IA
730/* Allocate pages on the specified alignment */
731void *efi_alloc_aligned_pages(u64 len, int memory_type, size_t align);
5d00995c 732/* More specific EFI memory allocator, called by EFI payloads */
49d225e7
HS
733efi_status_t efi_allocate_pages(enum efi_allocate_type type,
734 enum efi_memory_type memory_type,
735 efi_uintn_t pages, uint64_t *memory);
b61d857b 736/* EFI memory free function. */
f5a2a938 737efi_status_t efi_free_pages(uint64_t memory, efi_uintn_t pages);
ead1274b 738/* EFI memory allocator for small allocations */
49d225e7
HS
739efi_status_t efi_allocate_pool(enum efi_memory_type pool_type,
740 efi_uintn_t size, void **buffer);
42417bc8
SB
741/* EFI pool memory free function. */
742efi_status_t efi_free_pool(void *buffer);
eff44401
HS
743/* Allocate and retrieve EFI memory map */
744efi_status_t efi_get_memory_map_alloc(efi_uintn_t *map_size,
745 struct efi_mem_desc **memory_map);
5d00995c 746/* Returns the EFI memory map */
f5a2a938 747efi_status_t efi_get_memory_map(efi_uintn_t *memory_map_size,
5d00995c 748 struct efi_mem_desc *memory_map,
f5a2a938
HS
749 efi_uintn_t *map_key,
750 efi_uintn_t *descriptor_size,
5d00995c
AG
751 uint32_t *descriptor_version);
752/* Adds a range into the EFI memory map */
714497e3 753efi_status_t efi_add_memory_map(u64 start, u64 size, int memory_type);
b5b9eff2
PA
754/* Adds a conventional range into the EFI memory map */
755efi_status_t efi_add_conventional_memory_map(u64 ram_start, u64 ram_end,
756 u64 ram_top);
757
05ef48a2 758/* Called by board init to initialize the EFI drivers */
038782a2 759efi_status_t efi_driver_init(void);
f05911a1
HS
760/* Called when a block device is added */
761int efi_disk_probe(void *ctx, struct event *event);
762/* Called when a block device is removed */
763int efi_disk_remove(void *ctx, struct event *event);
5d00995c
AG
764/* Called by board init to initialize the EFI memory map */
765int efi_memory_init(void);
488bf12d
AG
766/* Adds new or overrides configuration table entry to the system table */
767efi_status_t efi_install_configuration_table(const efi_guid_t *guid, void *table);
56d92888 768/* Sets up a loaded image */
c982874e
HS
769efi_status_t efi_setup_loaded_image(struct efi_device_path *device_path,
770 struct efi_device_path *file_path,
771 struct efi_loaded_image_obj **handle_ptr,
772 struct efi_loaded_image **info_ptr);
5d00995c 773
51735ae0
AG
774#ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
775extern void *efi_bounce_buffer;
776#define EFI_LOADER_BOUNCE_BUFFER_SIZE (64 * 1024 * 1024)
777#endif
778
83994886
HS
779/* shorten device path */
780struct efi_device_path *efi_dp_shorten(struct efi_device_path *dp);
b66c60dd 781struct efi_device_path *efi_dp_next(const struct efi_device_path *dp);
ff401d3f
HS
782int efi_dp_match(const struct efi_device_path *a,
783 const struct efi_device_path *b);
c409593d 784efi_handle_t efi_dp_find_obj(struct efi_device_path *dp,
e46ef1db 785 const efi_guid_t *guid,
c409593d 786 struct efi_device_path **rem);
f6dd3f35
HS
787/* get size of the first device path instance excluding end node */
788efi_uintn_t efi_dp_instance_size(const struct efi_device_path *dp);
789/* size of multi-instance device path excluding end node */
790efi_uintn_t efi_dp_size(const struct efi_device_path *dp);
b66c60dd
RC
791struct efi_device_path *efi_dp_dup(const struct efi_device_path *dp);
792struct efi_device_path *efi_dp_append(const struct efi_device_path *dp1,
793 const struct efi_device_path *dp2);
794struct efi_device_path *efi_dp_append_node(const struct efi_device_path *dp,
795 const struct efi_device_path *node);
211314c1
HS
796/* Create a device path node of given type, sub-type, length */
797struct efi_device_path *efi_dp_create_device_node(const u8 type,
798 const u8 sub_type,
799 const u16 length);
3acef5da
HS
800/* Append device path instance */
801struct efi_device_path *efi_dp_append_instance(
802 const struct efi_device_path *dp,
803 const struct efi_device_path *dpi);
804/* Get next device path instance */
805struct efi_device_path *efi_dp_get_next_instance(struct efi_device_path **dp,
806 efi_uintn_t *size);
807/* Check if a device path contains muliple instances */
808bool efi_dp_is_multi_instance(const struct efi_device_path *dp);
b66c60dd 809
b66c60dd 810struct efi_device_path *efi_dp_from_part(struct blk_desc *desc, int part);
98d48bdf
HS
811/* Create a device node for a block device partition. */
812struct efi_device_path *efi_dp_part_node(struct blk_desc *desc, int part);
b66c60dd
RC
813struct efi_device_path *efi_dp_from_file(struct blk_desc *desc, int part,
814 const char *path);
815struct efi_device_path *efi_dp_from_eth(void);
bf19273e
RC
816struct efi_device_path *efi_dp_from_mem(uint32_t mem_type,
817 uint64_t start_address,
818 uint64_t end_address);
65436f91
HS
819/* Determine the last device path node that is not the end node. */
820const struct efi_device_path *efi_dp_last_node(
821 const struct efi_device_path *dp);
04298686
HS
822efi_status_t efi_dp_split_file_path(struct efi_device_path *full_path,
823 struct efi_device_path **device_path,
824 struct efi_device_path **file_path);
3c95b323 825struct efi_device_path *efi_dp_from_uart(void);
f1589ffb
AT
826efi_status_t efi_dp_from_name(const char *dev, const char *devnr,
827 const char *path,
828 struct efi_device_path **device,
829 struct efi_device_path **file);
5cad4a30
HS
830ssize_t efi_dp_check_length(const struct efi_device_path *dp,
831 const size_t maxlen);
b66c60dd
RC
832
833#define EFI_DP_TYPE(_dp, _type, _subtype) \
834 (((_dp)->type == DEVICE_PATH_TYPE_##_type) && \
835 ((_dp)->sub_type == DEVICE_PATH_SUB_TYPE_##_subtype))
836
9897350c
MK
837/* template END node: */
838extern const struct efi_device_path END;
839
e771b4b3
AT
840/* Indicate supported runtime services */
841efi_status_t efi_init_runtime_supported(void);
842
a39f39cd
HS
843/* Update CRC32 in table header */
844void __efi_runtime efi_update_table_header_crc32(struct efi_table_hdr *table);
845
80a4800e
AG
846/* Boards may provide the functions below to implement RTS functionality */
847
3c63db9c 848void __efi_runtime EFIAPI efi_reset_system(
80a4800e
AG
849 enum efi_reset_type reset_type,
850 efi_status_t reset_status,
851 unsigned long data_size, void *reset_data);
22c793e6
HS
852
853/* Architecture specific initialization of the EFI subsystem */
854efi_status_t efi_reset_system_init(void);
80a4800e 855
3c63db9c 856efi_status_t __efi_runtime EFIAPI efi_get_time(
80a4800e
AG
857 struct efi_time *time,
858 struct efi_time_cap *capabilities);
80a4800e 859
656f1710
HS
860efi_status_t __efi_runtime EFIAPI efi_set_time(struct efi_time *time);
861
623b3a57
HS
862#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
863/*
864 * Entry point for the tests of the EFI API.
865 * It is called by 'bootefi selftest'
866 */
867efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
868 struct efi_system_table *systab);
869#endif
870
0bda81bf
HS
871efi_status_t EFIAPI efi_get_variable(u16 *variable_name,
872 const efi_guid_t *vendor, u32 *attributes,
873 efi_uintn_t *data_size, void *data);
45c66f9c
HS
874efi_status_t EFIAPI efi_get_next_variable_name(efi_uintn_t *variable_name_size,
875 u16 *variable_name,
7a4e717b 876 efi_guid_t *vendor);
0bda81bf
HS
877efi_status_t EFIAPI efi_set_variable(u16 *variable_name,
878 const efi_guid_t *vendor, u32 attributes,
452257a3 879 efi_uintn_t data_size, const void *data);
ad644e7c 880
ce43528d
HS
881efi_status_t EFIAPI efi_query_variable_info(
882 u32 attributes, u64 *maximum_variable_storage_size,
883 u64 *remaining_variable_storage_size,
884 u64 *maximum_variable_size);
885
d47671c6 886void *efi_get_var(const u16 *name, const efi_guid_t *vendor, efi_uintn_t *size);
37c3ca5c 887
1a82b341
AT
888/*
889 * See section 3.1.3 in the v2.7 UEFI spec for more details on
890 * the layout of EFI_LOAD_OPTION. In short it is:
891 *
892 * typedef struct _EFI_LOAD_OPTION {
893 * UINT32 Attributes;
894 * UINT16 FilePathListLength;
895 * // CHAR16 Description[]; <-- variable length, NULL terminated
896 * // EFI_DEVICE_PATH_PROTOCOL FilePathList[];
897 * <-- FilePathListLength bytes
898 * // UINT8 OptionalData[];
899 * } EFI_LOAD_OPTION;
900 */
901struct efi_load_option {
902 u32 attributes;
903 u16 file_path_length;
904 u16 *label;
905 struct efi_device_path *file_path;
39a1ff8c 906 const u8 *optional_data;
1a82b341
AT
907};
908
76e8acce 909struct efi_device_path *efi_dp_from_lo(struct efi_load_option *lo,
0421735d 910 const efi_guid_t *guid);
76e8acce
IA
911struct efi_device_path *efi_dp_concat(const struct efi_device_path *dp1,
912 const struct efi_device_path *dp2);
ce3dbc5d 913struct efi_device_path *search_gpt_dp_node(struct efi_device_path *device_path);
0e69bcfb
HS
914efi_status_t efi_deserialize_load_option(struct efi_load_option *lo, u8 *data,
915 efi_uintn_t *size);
1a82b341 916unsigned long efi_serialize_load_option(struct efi_load_option *lo, u8 **data);
1064d049
HS
917efi_status_t efi_set_load_options(efi_handle_t handle,
918 efi_uintn_t load_options_size,
919 void *load_options);
0ad64007 920efi_status_t efi_bootmgr_load(efi_handle_t *handle, void **load_options);
9975fe96 921
593e17d6 922/**
c6f077a2 923 * struct efi_image_regions - A list of memory regions
593e17d6
AT
924 *
925 * @max: Maximum number of regions
926 * @num: Number of regions
927 * @reg: array of regions
928 */
929struct efi_image_regions {
930 int max;
931 int num;
932 struct image_region reg[];
933};
934
935/**
c6f077a2 936 * struct efi_sig_data - A decoded data of struct efi_signature_data
593e17d6
AT
937 *
938 * This structure represents an internal form of signature in
939 * signature database. A listed list may represent a signature list.
940 *
941 * @next: Pointer to next entry
c6f077a2 942 * @owner: Signature owner
593e17d6
AT
943 * @data: Pointer to signature data
944 * @size: Size of signature data
945 */
946struct efi_sig_data {
947 struct efi_sig_data *next;
948 efi_guid_t owner;
949 void *data;
950 size_t size;
951};
952
953/**
c6f077a2 954 * struct efi_signature_store - A decoded data of signature database
593e17d6
AT
955 *
956 * This structure represents an internal form of signature database.
957 *
958 * @next: Pointer to next entry
959 * @sig_type: Signature type
960 * @sig_data_list: Pointer to signature list
961 */
962struct efi_signature_store {
963 struct efi_signature_store *next;
964 efi_guid_t sig_type;
965 struct efi_sig_data *sig_data_list;
966};
967
968struct x509_certificate;
969struct pkcs7_message;
970
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971/**
972 * struct eficonfig_media_boot_option - boot option for (removable) media device
973 *
974 * This structure is used to enumerate possible boot option
975 *
976 * @lo: Serialized load option data
977 * @size: Size of serialized load option data
978 * @exist: Flag to indicate the load option already exists
979 * in Non-volatile load option
980 */
981struct eficonfig_media_boot_option {
982 void *lo;
983 efi_uintn_t size;
984 bool exist;
985};
986
b3301406
AT
987bool efi_hash_regions(struct image_region *regs, int count,
988 void **hash, const char *hash_algo, int *len);
7926dfb5 989bool efi_signature_lookup_digest(struct efi_image_regions *regs,
4b634313
IA
990 struct efi_signature_store *db,
991 bool dbx);
1115edd8
AT
992bool efi_signature_verify(struct efi_image_regions *regs,
993 struct pkcs7_message *msg,
994 struct efi_signature_store *db,
995 struct efi_signature_store *dbx);
52956e53
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996static inline bool efi_signature_verify_one(struct efi_image_regions *regs,
997 struct pkcs7_message *msg,
998 struct efi_signature_store *db)
999{
1000 return efi_signature_verify(regs, msg, db, NULL);
1001}
11bafb25
AT
1002bool efi_signature_check_signers(struct pkcs7_message *msg,
1003 struct efi_signature_store *dbx);
593e17d6
AT
1004
1005efi_status_t efi_image_region_add(struct efi_image_regions *regs,
1006 const void *start, const void *end,
1007 int nocheck);
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AT
1008
1009void efi_sigstore_free(struct efi_signature_store *sigstore);
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SG
1010struct efi_signature_store *efi_build_signature_store(void *sig_list,
1011 efi_uintn_t size);
be6296d0 1012struct efi_signature_store *efi_sigstore_parse_sigdb(u16 *name);
767f6eeb
AT
1013
1014bool efi_secure_boot_enabled(void);
4540dabd 1015
04be98bd
SG
1016bool efi_capsule_auth_enabled(void);
1017
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1018void *efi_prepare_aligned_image(void *efi, u64 *efi_size);
1019
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AT
1020bool efi_image_parse(void *efi, size_t len, struct efi_image_regions **regp,
1021 WIN_CERTIFICATE **auth, size_t *auth_len);
593e17d6 1022
201b8068
SG
1023struct pkcs7_message *efi_parse_pkcs7_header(const void *buf,
1024 size_t buflen,
1025 u8 **tmpbuf);
1026
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HS
1027/* runtime implementation of memcpy() */
1028void efi_memcpy_runtime(void *dest, const void *src, size_t n);
1029
39434a9b 1030/* commonly used helper functions */
fe179d7f
IA
1031u16 *efi_create_indexed_name(u16 *buffer, size_t buffer_size, const char *name,
1032 unsigned int index);
39434a9b 1033efi_string_t efi_convert_string(const char *str);
077153e0 1034
f27c2014 1035extern const struct efi_firmware_management_protocol efi_fmp_fit;
bb7e71d3 1036extern const struct efi_firmware_management_protocol efi_fmp_raw;
f27c2014 1037
2bc27ca8
AT
1038/* Capsule update */
1039efi_status_t EFIAPI efi_update_capsule(
1040 struct efi_capsule_header **capsule_header_array,
1041 efi_uintn_t capsule_count,
1042 u64 scatter_gather_list);
1043efi_status_t EFIAPI efi_query_capsule_caps(
1044 struct efi_capsule_header **capsule_header_array,
1045 efi_uintn_t capsule_count,
1046 u64 *maximum_capsule_size,
1047 u32 *reset_type);
1048
04be98bd
SG
1049efi_status_t efi_capsule_authenticate(const void *capsule,
1050 efi_uintn_t capsule_size,
1051 void **image, efi_uintn_t *image_size);
1052
156ccbc3 1053#define EFI_CAPSULE_DIR u"\\EFI\\UpdateCapsule\\"
c74cd8bd 1054
741ef867
SG
1055/**
1056 * struct efi_fw_image - Information on firmware images updatable through
1057 * capsule update
1058 *
1059 * This structure gives information about the firmware images on the platform
1060 * which can be updated through the capsule update mechanism
1061 *
1062 * @image_type_id: Image GUID. Same value is to be used in the capsule
1063 * @fw_name: Name of the firmware image
1064 * @image_index: Image Index, same as value passed to SetImage FMP
1065 * function
1066 */
1067struct efi_fw_image {
1068 efi_guid_t image_type_id;
1069 u16 *fw_name;
1070 u8 image_index;
1071};
1072
1073/**
1074 * struct efi_capsule_update_info - Information needed for capsule updates
1075 *
1076 * This structure provides information needed for performing firmware
1077 * updates. The structure needs to be initialised per platform, for all
1078 * platforms which enable capsule updates
1079 *
1080 * @dfu_string: String used to populate dfu_alt_info
cccea188 1081 * @num_images: The number of images array entries
741ef867
SG
1082 * @images: Pointer to an array of updatable images
1083 */
1084struct efi_capsule_update_info {
1085 const char *dfu_string;
cccea188 1086 int num_images;
741ef867
SG
1087 struct efi_fw_image *images;
1088};
1089
1090extern struct efi_capsule_update_info update_info;
741ef867 1091
64a8aae1
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1092/**
1093 * Install the ESRT system table.
1094 *
185f812c 1095 * Return: status code
64a8aae1
JM
1096 */
1097efi_status_t efi_esrt_register(void);
1098
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1099/**
1100 * efi_ecpt_register() - Install the ECPT system table.
1101 *
1102 * Return: status code
1103 */
1104efi_status_t efi_ecpt_register(void);
1105
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1106/**
1107 * efi_esrt_populate() - Populates the ESRT entries from the FMP instances
1108 * present in the system.
1109 * If an ESRT already exists, the old ESRT is replaced in the system table.
1110 * The memory of the old ESRT is deallocated.
1111 *
1112 * Return:
1113 * - EFI_SUCCESS if the ESRT is correctly created
1114 * - error code otherwise.
1115 */
1116efi_status_t efi_esrt_populate(void);
6e0184b8 1117efi_status_t efi_load_capsule_drivers(void);
34287efd
RG
1118
1119efi_status_t platform_get_eventlog(struct udevice *dev, u64 *addr, u32 *sz);
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MK
1120
1121efi_status_t efi_locate_handle_buffer_int(enum efi_locate_search_type search_type,
1122 const efi_guid_t *protocol, void *search_key,
1123 efi_uintn_t *no_handles, efi_handle_t **buffer);
1124
1125efi_status_t efi_open_volume_int(struct efi_simple_file_system_protocol *this,
1126 struct efi_file_handle **root);
1127efi_status_t efi_file_open_int(struct efi_file_handle *this,
1128 struct efi_file_handle **new_handle,
1129 u16 *file_name, u64 open_mode,
1130 u64 attributes);
1131efi_status_t efi_file_close_int(struct efi_file_handle *file);
1132efi_status_t efi_file_read_int(struct efi_file_handle *this,
1133 efi_uintn_t *buffer_size, void *buffer);
1134efi_status_t efi_file_setpos_int(struct efi_file_handle *file, u64 pos);
1135
1136typedef efi_status_t (*efi_console_filter_func)(struct efi_input_key *key);
1137efi_status_t efi_console_get_u16_string
1138 (struct efi_simple_text_input_protocol *cin,
1139 u16 *buf, efi_uintn_t count, efi_console_filter_func filer_func,
1140 int row, int col);
1141
1142efi_status_t efi_disk_get_device_name(const efi_handle_t handle, char *buf, int size);
1143
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HS
1144/**
1145 * efi_add_known_memory() - add memory banks to EFI memory map
1146 *
1147 * This weak function may be overridden for specific architectures.
1148 */
1149void efi_add_known_memory(void);
1150
cd9e18de 1151#endif /* _EFI_LOADER_H */
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