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f739fcd8 1/* SPDX-License-Identifier: GPL-2.0+ */
cb149c66
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2/*
3 * EFI application loader
4 *
5 * Copyright (c) 2016 Alexander Graf
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6 */
7
cd9e18de
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8#ifndef _EFI_LOADER_H
9#define _EFI_LOADER_H 1
10
bee91169 11#include <common.h>
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12#include <part_efi.h>
13#include <efi_api.h>
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14
15/* No need for efi loader support in SPL */
9b5e6396 16#if CONFIG_IS_ENABLED(EFI_LOADER)
bee91169 17
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18#include <linux/list.h>
19
4182a129
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20/* Maximum number of configuration tables */
21#define EFI_MAX_CONFIGURATION_TABLES 16
22
4e6b5d65
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23/* GUID used by the root node */
24#define U_BOOT_GUID \
25 EFI_GUID(0xe61d73b9, 0xa384, 0x4acc, \
26 0xae, 0xab, 0x82, 0xe8, 0x28, 0xf3, 0x62, 0x8b)
27
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28int __efi_entry_check(void);
29int __efi_exit_check(void);
ae0bd3a9 30const char *__efi_nesting(void);
af65db85
RC
31const char *__efi_nesting_inc(void);
32const char *__efi_nesting_dec(void);
c160d2f5 33
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34/*
35 * Enter the u-boot world from UEFI:
36 */
bee91169 37#define EFI_ENTRY(format, ...) do { \
c160d2f5 38 assert(__efi_entry_check()); \
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39 debug("%sEFI: Entry %s(" format ")\n", __efi_nesting_inc(), \
40 __func__, ##__VA_ARGS__); \
bee91169 41 } while(0)
bee91169 42
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43/*
44 * Exit the u-boot world back to UEFI:
45 */
804b1d73 46#define EFI_EXIT(ret) ({ \
c81883df 47 typeof(ret) _r = ret; \
af65db85 48 debug("%sEFI: Exit: %s: %u\n", __efi_nesting_dec(), \
c81883df 49 __func__, (u32)((uintptr_t) _r & ~EFI_ERROR_MASK)); \
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50 assert(__efi_exit_check()); \
51 _r; \
804b1d73 52 })
bee91169 53
a095aadf 54/*
ea630ce9 55 * Call non-void UEFI function from u-boot and retrieve return value:
a095aadf 56 */
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HS
57#define EFI_CALL(exp) ({ \
58 debug("%sEFI: Call: %s\n", __efi_nesting_inc(), #exp); \
59 assert(__efi_exit_check()); \
60 typeof(exp) _r = exp; \
61 assert(__efi_entry_check()); \
62 debug("%sEFI: %lu returned by %s\n", __efi_nesting_dec(), \
63 (unsigned long)((uintptr_t)_r & ~EFI_ERROR_MASK), #exp); \
64 _r; \
65})
66
67/*
68 * Call void UEFI function from u-boot:
69 */
70#define EFI_CALL_VOID(exp) do { \
af65db85 71 debug("%sEFI: Call: %s\n", __efi_nesting_inc(), #exp); \
c160d2f5 72 assert(__efi_exit_check()); \
a095aadf 73 exp; \
c160d2f5 74 assert(__efi_entry_check()); \
af65db85 75 debug("%sEFI: Return From: %s\n", __efi_nesting_dec(), #exp); \
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RC
76 } while(0)
77
ae0bd3a9 78/*
d5504144 79 * Write an indented message with EFI prefix
ae0bd3a9 80 */
d5504144
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81#define EFI_PRINT(format, ...) ({ \
82 debug("%sEFI: " format, __efi_nesting(), \
83 ##__VA_ARGS__); \
ae0bd3a9
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84 })
85
89aea436
AG
86#ifdef CONFIG_SYS_CACHELINE_SIZE
87#define EFI_CACHELINE_SIZE CONFIG_SYS_CACHELINE_SIZE
88#else
89/* Just use the greatest cache flush alignment requirement I'm aware of */
90#define EFI_CACHELINE_SIZE 128
91#endif
92
1fcb7ea2
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93/* Key identifying current memory map */
94extern efi_uintn_t efi_memory_map_key;
95
50149ea3 96extern struct efi_runtime_services efi_runtime_services;
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AG
97extern struct efi_system_table systab;
98
ebb4dd5b 99extern struct efi_simple_text_output_protocol efi_con_out;
3e603ec7 100extern struct efi_simple_text_input_protocol efi_con_in;
ebb4dd5b 101extern struct efi_console_control_protocol efi_console_control;
cc5b7081 102extern const struct efi_device_path_to_text_protocol efi_device_path_to_text;
e70f8dfa
LL
103/* implementation of the EFI_DEVICE_PATH_UTILITIES_PROTOCOL */
104extern const struct efi_device_path_utilities_protocol
105 efi_device_path_utilities;
0bc4b0da
HS
106/* Implementation of the EFI_UNICODE_COLLATION_PROTOCOL */
107extern const struct efi_unicode_collation_protocol
108 efi_unicode_collation_protocol;
c9bfb222
LL
109extern const struct efi_hii_database_protocol efi_hii_database;
110extern const struct efi_hii_string_protocol efi_hii_string;
c1311ad4 111
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RC
112uint16_t *efi_dp_str(struct efi_device_path *dp);
113
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114/* GUID of the U-Boot root node */
115extern const efi_guid_t efi_u_boot_guid;
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116/* GUID of the EFI_BLOCK_IO_PROTOCOL */
117extern const efi_guid_t efi_block_io_guid;
9975fe96 118extern const efi_guid_t efi_global_variable_guid;
c1311ad4 119extern const efi_guid_t efi_guid_console_control;
cb149c66 120extern const efi_guid_t efi_guid_device_path;
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121/* GUID of the EFI_DRIVER_BINDING_PROTOCOL */
122extern const efi_guid_t efi_guid_driver_binding_protocol;
a3a28f5f
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123/* event group ExitBootServices() invoked */
124extern const efi_guid_t efi_guid_event_group_exit_boot_services;
125/* event group SetVirtualAddressMap() invoked */
126extern const efi_guid_t efi_guid_event_group_virtual_address_change;
127/* event group memory map changed */
128extern const efi_guid_t efi_guid_event_group_memory_map_change;
129/* event group boot manager about to boot */
130extern const efi_guid_t efi_guid_event_group_ready_to_boot;
131/* event group ResetSystem() invoked (before ExitBootServices) */
132extern const efi_guid_t efi_guid_event_group_reset_system;
bc4f9133
HS
133/* GUID of the device tree table */
134extern const efi_guid_t efi_guid_fdt;
cb149c66 135extern const efi_guid_t efi_guid_loaded_image;
cc5b7081 136extern const efi_guid_t efi_guid_device_path_to_text_protocol;
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137extern const efi_guid_t efi_simple_file_system_protocol_guid;
138extern const efi_guid_t efi_file_info_guid;
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139/* GUID for file system information */
140extern const efi_guid_t efi_file_system_info_guid;
e70f8dfa 141extern const efi_guid_t efi_guid_device_path_utilities_protocol;
0bc4b0da
HS
142/* GUID of the Unicode collation protocol */
143extern const efi_guid_t efi_guid_unicode_collation_protocol;
c9bfb222
LL
144extern const efi_guid_t efi_guid_hii_database_protocol;
145extern const efi_guid_t efi_guid_hii_string_protocol;
cb149c66 146
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147extern unsigned int __efi_runtime_start, __efi_runtime_stop;
148extern unsigned int __efi_runtime_rel_start, __efi_runtime_rel_stop;
149
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150/*
151 * When a protocol is opened a open protocol info entry is created.
152 * These are maintained in a list.
153 */
154struct efi_open_protocol_info_item {
155 /* Link to the list of open protocol info entries of a protocol */
156 struct list_head link;
157 struct efi_open_protocol_info_entry info;
158};
159
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160/*
161 * When the UEFI payload wants to open a protocol on an object to get its
162 * interface (usually a struct with callback functions), this struct maps the
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163 * protocol GUID to the respective protocol interface
164 */
bee91169 165struct efi_handler {
69fb6b1a
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166 /* Link to the list of protocols of a handle */
167 struct list_head link;
bee91169 168 const efi_guid_t *guid;
b5349f74 169 void *protocol_interface;
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170 /* Link to the list of open protocol info items */
171 struct list_head open_infos;
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AG
172};
173
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174/**
175 * struct efi_object - dereferenced EFI handle
176 *
177 * @link: pointers to put the handle into a linked list
178 * @protocols: linked list with the protocol interfaces installed on this
179 * handle
180 *
181 * UEFI offers a flexible and expandable object model. The objects in the UEFI
182 * API are devices, drivers, and loaded images. struct efi_object is our storage
183 * structure for these objects.
184 *
185 * When including this structure into a larger structure always put it first so
186 * that when deleting a handle the whole encompassing structure can be freed.
bee91169 187 *
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188 * A pointer to this structure is referred to as a handle. Typedef efi_handle_t
189 * has been created for such pointers.
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190 */
191struct efi_object {
192 /* Every UEFI object is part of a global object list */
193 struct list_head link;
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194 /* The list of protocols */
195 struct list_head protocols;
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AG
196};
197
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198/**
199 * struct efi_loaded_image_obj - handle of a loaded image
d39646a3
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200 *
201 * @header: EFI object header
202 * @reloc_base: base address for the relocated image
203 * @reloc_size: size of the relocated image
204 * @exit_jmp: long jump buffer for returning form started image
205 * @entry: entry address of the relocated image
c982874e
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206 */
207struct efi_loaded_image_obj {
d39646a3 208 struct efi_object header;
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209 void *reloc_base;
210 aligned_u64 reloc_size;
211 efi_status_t exit_status;
212 struct jmp_buf_data exit_jmp;
213 EFIAPI efi_status_t (*entry)(efi_handle_t image_handle,
214 struct efi_system_table *st);
215};
216
c6841592
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217/**
218 * struct efi_event
219 *
43bce442 220 * @link: Link to list of all events
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221 * @type: Type of event, see efi_create_event
222 * @notify_tpl: Task priority level of notifications
c6841592
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223 * @nofify_function: Function to call when the event is triggered
224 * @notify_context: Data to be passed to the notify function
b095f3c8 225 * @group: Event group
43bce442
HS
226 * @trigger_time: Period of the timer
227 * @trigger_next: Next time to trigger the timer
c6841592 228 * @trigger_type: Type of timer, see efi_set_timer
43bce442
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229 * @is_queued: The notification function is queued
230 * @is_signaled: The event occurred. The event is in the signaled state.
c6841592
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231 */
232struct efi_event {
43bce442 233 struct list_head link;
b521d29e 234 uint32_t type;
152cade3 235 efi_uintn_t notify_tpl;
c6841592
HS
236 void (EFIAPI *notify_function)(struct efi_event *event, void *context);
237 void *notify_context;
b095f3c8 238 const efi_guid_t *group;
c6841592
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239 u64 trigger_next;
240 u64 trigger_time;
b521d29e 241 enum efi_timer_delay trigger_type;
e190e897
HS
242 bool is_queued;
243 bool is_signaled;
c6841592
HS
244};
245
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AG
246/* This list contains all UEFI objects we know of */
247extern struct list_head efi_obj_list;
b095f3c8
HS
248/* List of all events */
249extern struct list_head efi_events;
bee91169 250
056b45bc
AT
251/* Initialize efi execution environment */
252efi_status_t efi_init_obj_list(void);
4e6b5d65
HS
253/* Called by bootefi to initialize root node */
254efi_status_t efi_root_node_register(void);
640adadf
HS
255/* Called by bootefi to initialize runtime */
256efi_status_t efi_initialize_system_table(void);
91be9a77 257/* Called by bootefi to make console interface available */
6f566c23 258efi_status_t efi_console_register(void);
2a22d05d 259/* Called by bootefi to make all disk storage accessible as EFI objects */
df9cf561 260efi_status_t efi_disk_register(void);
64e4db0f
HS
261/* Create handles and protocols for the partitions of a block device */
262int efi_disk_create_partitions(efi_handle_t parent, struct blk_desc *desc,
263 const char *if_typename, int diskid,
264 const char *pdevname);
be8d3241 265/* Called by bootefi to make GOP (graphical) interface available */
80ea9b09 266efi_status_t efi_gop_register(void);
0efe1bcf 267/* Called by bootefi to make the network interface available */
075d425d 268efi_status_t efi_net_register(void);
b3d60900 269/* Called by bootefi to make the watchdog available */
d7b181d5 270efi_status_t efi_watchdog_register(void);
e663b350 271/* Called by bootefi to make SMBIOS tables available */
86df34d4
BM
272/**
273 * efi_acpi_register() - write out ACPI tables
274 *
275 * Called by bootefi to make ACPI tables available
276 *
277 * @return 0 if OK, -ENOMEM if no memory is available for the tables
278 */
279efi_status_t efi_acpi_register(void);
0864c565
SG
280/**
281 * efi_smbios_register() - write out SMBIOS tables
282 *
283 * Called by bootefi to make SMBIOS tables available
284 *
285 * @return 0 if OK, -ENOMEM if no memory is available for the tables
286 */
7657152b 287efi_status_t efi_smbios_register(void);
0efe1bcf 288
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RC
289struct efi_simple_file_system_protocol *
290efi_fs_from_path(struct efi_device_path *fp);
291
0efe1bcf
AG
292/* Called by networking code to memorize the dhcp ack package */
293void efi_net_set_dhcp_ack(void *pkt, int len);
b3d60900
HS
294/* Called by efi_set_watchdog_timer to reset the timer */
295efi_status_t efi_set_watchdog(unsigned long timeout);
0efe1bcf 296
bee91169
AG
297/* Called from places to check whether a timer expired */
298void efi_timer_check(void);
299/* PE loader implementation */
c982874e
HS
300void *efi_load_pe(struct efi_loaded_image_obj *handle, void *efi,
301 struct efi_loaded_image *loaded_image_info);
bee91169
AG
302/* Called once to store the pristine gd pointer */
303void efi_save_gd(void);
c160d2f5
RC
304/* Special case handler for error/abort that just tries to dtrt to get
305 * back to u-boot world */
bee91169 306void efi_restore_gd(void);
50149ea3
AG
307/* Call this to relocate the runtime section to an address space */
308void efi_runtime_relocate(ulong offset, struct efi_mem_desc *map);
0f4060eb 309/* Call this to set the current device name */
c07ad7c0 310void efi_set_bootdev(const char *dev, const char *devnr, const char *path);
44549d62 311/* Add a new object to the object list. */
fae0118e 312void efi_add_handle(efi_handle_t obj);
2edab5e2 313/* Create handle */
2074f700 314efi_status_t efi_create_handle(efi_handle_t *handle);
678e03a0 315/* Delete handle */
fae0118e 316void efi_delete_handle(efi_handle_t obj);
1b68153a 317/* Call this to validate a handle and find the EFI object for it */
2074f700 318struct efi_object *efi_search_obj(const efi_handle_t handle);
3f79a2b5 319/* Find a protocol on a handle */
2074f700 320efi_status_t efi_search_protocol(const efi_handle_t handle,
3f79a2b5
HS
321 const efi_guid_t *protocol_guid,
322 struct efi_handler **handler);
323/* Install new protocol on a handle */
2074f700
HS
324efi_status_t efi_add_protocol(const efi_handle_t handle,
325 const efi_guid_t *protocol,
3f79a2b5
HS
326 void *protocol_interface);
327/* Delete protocol from a handle */
2074f700
HS
328efi_status_t efi_remove_protocol(const efi_handle_t handle,
329 const efi_guid_t *protocol,
3f79a2b5
HS
330 void *protocol_interface);
331/* Delete all protocols from a handle */
2074f700 332efi_status_t efi_remove_all_protocols(const efi_handle_t handle);
49deb455 333/* Call this to create an event */
152cade3 334efi_status_t efi_create_event(uint32_t type, efi_uintn_t notify_tpl,
49deb455
HS
335 void (EFIAPI *notify_function) (
336 struct efi_event *event,
337 void *context),
b095f3c8
HS
338 void *notify_context, efi_guid_t *group,
339 struct efi_event **event);
bfc72462 340/* Call this to set a timer */
b521d29e 341efi_status_t efi_set_timer(struct efi_event *event, enum efi_timer_delay type,
bfc72462 342 uint64_t trigger_time);
91be9a77 343/* Call this to signal an event */
9bc9664d 344void efi_signal_event(struct efi_event *event, bool check_tpl);
50149ea3 345
2a92080d
RC
346/* open file system: */
347struct efi_simple_file_system_protocol *efi_simple_file_system(
348 struct blk_desc *desc, int part, struct efi_device_path *dp);
349
350/* open file from device-path: */
351struct efi_file_handle *efi_file_from_path(struct efi_device_path *fp);
352
c3772ca1
HS
353/**
354 * efi_size_in_pages() - convert size in bytes to size in pages
355 *
356 * This macro returns the number of EFI memory pages required to hold 'size'
357 * bytes.
358 *
359 * @size: size in bytes
360 * Return: size in pages
361 */
362#define efi_size_in_pages(size) ((size + EFI_PAGE_MASK) >> EFI_PAGE_SHIFT)
5d00995c
AG
363/* Generic EFI memory allocator, call this to get memory */
364void *efi_alloc(uint64_t len, int memory_type);
365/* More specific EFI memory allocator, called by EFI payloads */
f5a2a938 366efi_status_t efi_allocate_pages(int type, int memory_type, efi_uintn_t pages,
5d00995c 367 uint64_t *memory);
b61d857b 368/* EFI memory free function. */
f5a2a938 369efi_status_t efi_free_pages(uint64_t memory, efi_uintn_t pages);
ead1274b 370/* EFI memory allocator for small allocations */
f5a2a938 371efi_status_t efi_allocate_pool(int pool_type, efi_uintn_t size,
ead1274b 372 void **buffer);
42417bc8
SB
373/* EFI pool memory free function. */
374efi_status_t efi_free_pool(void *buffer);
5d00995c 375/* Returns the EFI memory map */
f5a2a938 376efi_status_t efi_get_memory_map(efi_uintn_t *memory_map_size,
5d00995c 377 struct efi_mem_desc *memory_map,
f5a2a938
HS
378 efi_uintn_t *map_key,
379 efi_uintn_t *descriptor_size,
5d00995c
AG
380 uint32_t *descriptor_version);
381/* Adds a range into the EFI memory map */
382uint64_t efi_add_memory_map(uint64_t start, uint64_t pages, int memory_type,
383 bool overlap_only_ram);
05ef48a2 384/* Called by board init to initialize the EFI drivers */
038782a2 385efi_status_t efi_driver_init(void);
5d00995c
AG
386/* Called by board init to initialize the EFI memory map */
387int efi_memory_init(void);
488bf12d
AG
388/* Adds new or overrides configuration table entry to the system table */
389efi_status_t efi_install_configuration_table(const efi_guid_t *guid, void *table);
56d92888 390/* Sets up a loaded image */
c982874e
HS
391efi_status_t efi_setup_loaded_image(struct efi_device_path *device_path,
392 struct efi_device_path *file_path,
393 struct efi_loaded_image_obj **handle_ptr,
394 struct efi_loaded_image **info_ptr);
9975fe96
RC
395efi_status_t efi_load_image_from_path(struct efi_device_path *file_path,
396 void **buffer);
c9a63f44
HS
397/* Print information about all loaded images */
398void efi_print_image_infos(void *pc);
5d00995c 399
51735ae0
AG
400#ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
401extern void *efi_bounce_buffer;
402#define EFI_LOADER_BOUNCE_BUFFER_SIZE (64 * 1024 * 1024)
403#endif
404
b66c60dd
RC
405
406struct efi_device_path *efi_dp_next(const struct efi_device_path *dp);
ff401d3f
HS
407int efi_dp_match(const struct efi_device_path *a,
408 const struct efi_device_path *b);
b66c60dd
RC
409struct efi_object *efi_dp_find_obj(struct efi_device_path *dp,
410 struct efi_device_path **rem);
f6dd3f35
HS
411/* get size of the first device path instance excluding end node */
412efi_uintn_t efi_dp_instance_size(const struct efi_device_path *dp);
413/* size of multi-instance device path excluding end node */
414efi_uintn_t efi_dp_size(const struct efi_device_path *dp);
b66c60dd
RC
415struct efi_device_path *efi_dp_dup(const struct efi_device_path *dp);
416struct efi_device_path *efi_dp_append(const struct efi_device_path *dp1,
417 const struct efi_device_path *dp2);
418struct efi_device_path *efi_dp_append_node(const struct efi_device_path *dp,
419 const struct efi_device_path *node);
211314c1
HS
420/* Create a device path node of given type, sub-type, length */
421struct efi_device_path *efi_dp_create_device_node(const u8 type,
422 const u8 sub_type,
423 const u16 length);
3acef5da
HS
424/* Append device path instance */
425struct efi_device_path *efi_dp_append_instance(
426 const struct efi_device_path *dp,
427 const struct efi_device_path *dpi);
428/* Get next device path instance */
429struct efi_device_path *efi_dp_get_next_instance(struct efi_device_path **dp,
430 efi_uintn_t *size);
431/* Check if a device path contains muliple instances */
432bool efi_dp_is_multi_instance(const struct efi_device_path *dp);
b66c60dd
RC
433
434struct efi_device_path *efi_dp_from_dev(struct udevice *dev);
435struct efi_device_path *efi_dp_from_part(struct blk_desc *desc, int part);
98d48bdf
HS
436/* Create a device node for a block device partition. */
437struct efi_device_path *efi_dp_part_node(struct blk_desc *desc, int part);
b66c60dd
RC
438struct efi_device_path *efi_dp_from_file(struct blk_desc *desc, int part,
439 const char *path);
440struct efi_device_path *efi_dp_from_eth(void);
bf19273e
RC
441struct efi_device_path *efi_dp_from_mem(uint32_t mem_type,
442 uint64_t start_address,
443 uint64_t end_address);
65436f91
HS
444/* Determine the last device path node that is not the end node. */
445const struct efi_device_path *efi_dp_last_node(
446 const struct efi_device_path *dp);
04298686
HS
447efi_status_t efi_dp_split_file_path(struct efi_device_path *full_path,
448 struct efi_device_path **device_path,
449 struct efi_device_path **file_path);
f1589ffb
AT
450efi_status_t efi_dp_from_name(const char *dev, const char *devnr,
451 const char *path,
452 struct efi_device_path **device,
453 struct efi_device_path **file);
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454
455#define EFI_DP_TYPE(_dp, _type, _subtype) \
456 (((_dp)->type == DEVICE_PATH_TYPE_##_type) && \
457 ((_dp)->sub_type == DEVICE_PATH_SUB_TYPE_##_subtype))
458
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459/**
460 * ascii2unicode() - convert ASCII string to UTF-16 string
461 *
462 * A zero terminated ASCII string is converted to a zero terminated UTF-16
463 * string. The output buffer must be preassigned.
464 *
465 * @unicode: preassigned output buffer for UTF-16 string
466 * @ascii: ASCII string to be converted
467 */
487d756f 468static inline void ascii2unicode(u16 *unicode, const char *ascii)
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469{
470 while (*ascii)
471 *(unicode++) = *(ascii++);
c412166d 472 *unicode = 0;
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473}
474
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475static inline int guidcmp(const efi_guid_t *g1, const efi_guid_t *g2)
476{
477 return memcmp(g1, g2, sizeof(efi_guid_t));
478}
479
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480/*
481 * Use these to indicate that your code / data should go into the EFI runtime
482 * section and thus still be available when the OS is running
483 */
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484#define __efi_runtime_data __attribute__ ((section (".data.efi_runtime")))
485#define __efi_runtime __attribute__ ((section (".text.efi_runtime")))
bee91169 486
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487/* Update CRC32 in table header */
488void __efi_runtime efi_update_table_header_crc32(struct efi_table_hdr *table);
489
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490/* Call this with mmio_ptr as the _pointer_ to a pointer to an MMIO region
491 * to make it available at runtime */
22c793e6 492efi_status_t efi_add_runtime_mmio(void *mmio_ptr, u64 len);
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493
494/* Boards may provide the functions below to implement RTS functionality */
495
3c63db9c 496void __efi_runtime EFIAPI efi_reset_system(
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497 enum efi_reset_type reset_type,
498 efi_status_t reset_status,
499 unsigned long data_size, void *reset_data);
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500
501/* Architecture specific initialization of the EFI subsystem */
502efi_status_t efi_reset_system_init(void);
80a4800e 503
3c63db9c 504efi_status_t __efi_runtime EFIAPI efi_get_time(
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505 struct efi_time *time,
506 struct efi_time_cap *capabilities);
80a4800e 507
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508#ifdef CONFIG_CMD_BOOTEFI_SELFTEST
509/*
510 * Entry point for the tests of the EFI API.
511 * It is called by 'bootefi selftest'
512 */
513efi_status_t EFIAPI efi_selftest(efi_handle_t image_handle,
514 struct efi_system_table *systab);
515#endif
516
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517efi_status_t EFIAPI efi_get_variable(u16 *variable_name,
518 const efi_guid_t *vendor, u32 *attributes,
519 efi_uintn_t *data_size, void *data);
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520efi_status_t EFIAPI efi_get_next_variable_name(efi_uintn_t *variable_name_size,
521 u16 *variable_name,
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522 const efi_guid_t *vendor);
523efi_status_t EFIAPI efi_set_variable(u16 *variable_name,
524 const efi_guid_t *vendor, u32 attributes,
452257a3 525 efi_uintn_t data_size, const void *data);
ad644e7c 526
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527/*
528 * See section 3.1.3 in the v2.7 UEFI spec for more details on
529 * the layout of EFI_LOAD_OPTION. In short it is:
530 *
531 * typedef struct _EFI_LOAD_OPTION {
532 * UINT32 Attributes;
533 * UINT16 FilePathListLength;
534 * // CHAR16 Description[]; <-- variable length, NULL terminated
535 * // EFI_DEVICE_PATH_PROTOCOL FilePathList[];
536 * <-- FilePathListLength bytes
537 * // UINT8 OptionalData[];
538 * } EFI_LOAD_OPTION;
539 */
540struct efi_load_option {
541 u32 attributes;
542 u16 file_path_length;
543 u16 *label;
544 struct efi_device_path *file_path;
545 u8 *optional_data;
546};
547
548void efi_deserialize_load_option(struct efi_load_option *lo, u8 *data);
549unsigned long efi_serialize_load_option(struct efi_load_option *lo, u8 **data);
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550void *efi_bootmgr_load(struct efi_device_path **device_path,
551 struct efi_device_path **file_path);
552
9b5e6396 553#else /* CONFIG_IS_ENABLED(EFI_LOADER) */
bee91169 554
50149ea3 555/* Without CONFIG_EFI_LOADER we don't have a runtime section, stub it out */
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556#define __efi_runtime_data
557#define __efi_runtime
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558static inline efi_status_t efi_add_runtime_mmio(void *mmio_ptr, u64 len)
559{
560 return EFI_SUCCESS;
561}
50149ea3 562
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563/* No loader configured, stub out EFI_ENTRY */
564static inline void efi_restore_gd(void) { }
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565static inline void efi_set_bootdev(const char *dev, const char *devnr,
566 const char *path) { }
0efe1bcf 567static inline void efi_net_set_dhcp_ack(void *pkt, int len) { }
c9a63f44 568static inline void efi_print_image_infos(void *pc) { }
bee91169 569
9b5e6396 570#endif /* CONFIG_IS_ENABLED(EFI_LOADER) */
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571
572#endif /* _EFI_LOADER_H */
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