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04a0f563 1/* SPDX-License-Identifier: GPL-2.0 */
867a6ac8
SG
2/*
3 * Extensible Firmware Interface
4 * Based on 'Extensible Firmware Interface Specification' version 0.9,
5 * April 30, 1999
6 *
7 * Copyright (C) 1999 VA Linux Systems
8 * Copyright (C) 1999 Walt Drummond <drummond@valinux.com>
9 * Copyright (C) 1999, 2002-2003 Hewlett-Packard Co.
10 * David Mosberger-Tang <davidm@hpl.hp.com>
11 * Stephane Eranian <eranian@hpl.hp.com>
12 *
13 * From include/linux/efi.h in kernel 4.1 with some additions/subtractions
14 */
15
16#ifndef _EFI_H
17#define _EFI_H
18
a0b49bc3 19#include <linux/linkage.h>
867a6ac8
SG
20#include <linux/string.h>
21#include <linux/types.h>
22
85fc2ad4
HS
23/* Type INTN in UEFI specification */
24#define efi_intn_t ssize_t
25/* Type UINTN in UEFI specification*/
26#define efi_uintn_t size_t
27
01866446
AG
28/*
29 * EFI on x86_64 uses the Microsoft ABI which is not the default for GCC.
30 *
31 * There are two scenarios for EFI on x86_64: building a 64-bit EFI stub
32 * codes (CONFIG_EFI_STUB_64BIT) and building a 64-bit U-Boot (CONFIG_X86_64).
33 * Either needs to be properly built with the '-m64' compiler flag, and hence
34 * it is enough to only check the compiler provided define __x86_64__ here.
35 */
36#ifdef __x86_64__
96a8d409 37#define EFIAPI __attribute__((ms_abi))
beb077a2
AG
38#define efi_va_list __builtin_ms_va_list
39#define efi_va_start __builtin_ms_va_start
05c4c9e2 40#define efi_va_copy __builtin_ms_va_copy
beb077a2
AG
41#define efi_va_arg __builtin_va_arg
42#define efi_va_end __builtin_ms_va_end
96a8d409 43#else
a0b49bc3 44#define EFIAPI asmlinkage
beb077a2
AG
45#define efi_va_list va_list
46#define efi_va_start va_start
05c4c9e2 47#define efi_va_copy va_copy
beb077a2
AG
48#define efi_va_arg va_arg
49#define efi_va_end va_end
01866446 50#endif /* __x86_64__ */
96a8d409 51
1fdeacd3
BM
52#define EFI32_LOADER_SIGNATURE "EL32"
53#define EFI64_LOADER_SIGNATURE "EL64"
54
92b931b8
HS
55/**
56 * struct efi_device_path - device path protocol
57 *
58 * @type: device path type
59 * @sub_type: device path sub-type
60 * @length: length of the device path node including the header
61 */
62struct efi_device_path {
63 u8 type;
64 u8 sub_type;
65 u16 length;
66} __packed;
867a6ac8 67
1dd705cf
MK
68/*
69 * The EFI spec defines the EFI_GUID as
70 * "128-bit buffer containing a unique identifier value. Unless otherwise specified,
71 * aligned on a 64-bit boundary".
72 * Page 163 of the UEFI specification v2.10 and
73 * EDK2 reference implementation both define EFI_GUID as
74 * struct { u32 a; u16; b; u16 c; u8 d[8]; }; which is 4-byte
75 * aligned.
76 */
0d6ab32e
RC
77typedef struct {
78 u8 b[16];
1dd705cf 79} efi_guid_t __attribute__((aligned(4)));
0d6ab32e 80
01866446 81#define EFI_BITS_PER_LONG (sizeof(long) * 8)
3e6cc35f 82
3c8ffb68
HS
83/* Bit mask for EFI status code with error */
84#define EFI_ERROR_MASK (1UL << (EFI_BITS_PER_LONG - 1))
85/* Status codes returned by EFI protocols */
86#define EFI_SUCCESS 0
87#define EFI_LOAD_ERROR (EFI_ERROR_MASK | 1)
88#define EFI_INVALID_PARAMETER (EFI_ERROR_MASK | 2)
89#define EFI_UNSUPPORTED (EFI_ERROR_MASK | 3)
90#define EFI_BAD_BUFFER_SIZE (EFI_ERROR_MASK | 4)
91#define EFI_BUFFER_TOO_SMALL (EFI_ERROR_MASK | 5)
92#define EFI_NOT_READY (EFI_ERROR_MASK | 6)
93#define EFI_DEVICE_ERROR (EFI_ERROR_MASK | 7)
94#define EFI_WRITE_PROTECTED (EFI_ERROR_MASK | 8)
95#define EFI_OUT_OF_RESOURCES (EFI_ERROR_MASK | 9)
96#define EFI_VOLUME_CORRUPTED (EFI_ERROR_MASK | 10)
97#define EFI_VOLUME_FULL (EFI_ERROR_MASK | 11)
98#define EFI_NO_MEDIA (EFI_ERROR_MASK | 12)
99#define EFI_MEDIA_CHANGED (EFI_ERROR_MASK | 13)
100#define EFI_NOT_FOUND (EFI_ERROR_MASK | 14)
101#define EFI_ACCESS_DENIED (EFI_ERROR_MASK | 15)
102#define EFI_NO_RESPONSE (EFI_ERROR_MASK | 16)
103#define EFI_NO_MAPPING (EFI_ERROR_MASK | 17)
104#define EFI_TIMEOUT (EFI_ERROR_MASK | 18)
105#define EFI_NOT_STARTED (EFI_ERROR_MASK | 19)
106#define EFI_ALREADY_STARTED (EFI_ERROR_MASK | 20)
107#define EFI_ABORTED (EFI_ERROR_MASK | 21)
108#define EFI_ICMP_ERROR (EFI_ERROR_MASK | 22)
109#define EFI_TFTP_ERROR (EFI_ERROR_MASK | 23)
110#define EFI_PROTOCOL_ERROR (EFI_ERROR_MASK | 24)
111#define EFI_INCOMPATIBLE_VERSION (EFI_ERROR_MASK | 25)
112#define EFI_SECURITY_VIOLATION (EFI_ERROR_MASK | 26)
113#define EFI_CRC_ERROR (EFI_ERROR_MASK | 27)
114#define EFI_END_OF_MEDIA (EFI_ERROR_MASK | 28)
115#define EFI_END_OF_FILE (EFI_ERROR_MASK | 31)
116#define EFI_INVALID_LANGUAGE (EFI_ERROR_MASK | 32)
117#define EFI_COMPROMISED_DATA (EFI_ERROR_MASK | 33)
118#define EFI_IP_ADDRESS_CONFLICT (EFI_ERROR_MASK | 34)
119#define EFI_HTTP_ERROR (EFI_ERROR_MASK | 35)
867a6ac8 120
7b31efc5
HS
121#define EFI_WARN_UNKNOWN_GLYPH 1
122#define EFI_WARN_DELETE_FAILURE 2
123#define EFI_WARN_WRITE_FAILURE 3
124#define EFI_WARN_BUFFER_TOO_SMALL 4
125#define EFI_WARN_STALE_DATA 5
126#define EFI_WARN_FILE_SYSTEM 6
127#define EFI_WARN_RESET_REQUIRED 7
2a92080d 128
867a6ac8
SG
129typedef unsigned long efi_status_t;
130typedef u64 efi_physical_addr_t;
131typedef u64 efi_virtual_addr_t;
faea1041 132typedef struct efi_object *efi_handle_t;
867a6ac8
SG
133
134#define EFI_GUID(a, b, c, d0, d1, d2, d3, d4, d5, d6, d7) \
867a6ac8
SG
135 {{ (a) & 0xff, ((a) >> 8) & 0xff, ((a) >> 16) & 0xff, \
136 ((a) >> 24) & 0xff, \
137 (b) & 0xff, ((b) >> 8) & 0xff, \
138 (c) & 0xff, ((c) >> 8) & 0xff, \
44ab2d32 139 (d0), (d1), (d2), (d3), (d4), (d5), (d6), (d7) } }
867a6ac8
SG
140
141/* Generic EFI table header */
142struct efi_table_hdr {
143 u64 signature;
144 u32 revision;
145 u32 headersize;
146 u32 crc32;
147 u32 reserved;
148};
149
3ced5745
HS
150/* Allocation types for calls to boottime->allocate_pages*/
151/**
152 * enum efi_allocate_type - address restriction for memory allocation
153 */
154enum efi_allocate_type {
155 /**
156 * @EFI_ALLOCATE_ANY_PAGES:
157 * Allocate any block of sufficient size. Ignore memory address.
158 */
159 EFI_ALLOCATE_ANY_PAGES,
160 /**
161 * @EFI_ALLOCATE_MAX_ADDRESS:
162 * Allocate a memory block with an uppermost address less or equal
163 * to the indicated address.
164 */
165 EFI_ALLOCATE_MAX_ADDRESS,
166 /**
167 * @EFI_ALLOCATE_ADDRESS:
168 * Allocate a memory block starting at the indicatged adress.
169 */
170 EFI_ALLOCATE_ADDRESS,
171 /**
172 * @EFI_MAX_ALLOCATE_TYPE:
173 * Value use for range checking.
174 */
175 EFI_MAX_ALLOCATE_TYPE,
176};
177
867a6ac8 178/* Enumeration of memory types introduced in UEFI */
c91737b7 179enum efi_memory_type {
867a6ac8
SG
180 EFI_RESERVED_MEMORY_TYPE,
181 /*
182 * The code portions of a loaded application.
183 * (Note that UEFI OS loaders are UEFI applications.)
184 */
185 EFI_LOADER_CODE,
186 /*
187 * The data portions of a loaded application and
188 * the default data allocation type used by an application
189 * to allocate pool memory.
190 */
191 EFI_LOADER_DATA,
192 /* The code portions of a loaded Boot Services Driver */
193 EFI_BOOT_SERVICES_CODE,
194 /*
29f1a367 195 * The data portions of a loaded Boot Services Driver and
867a6ac8
SG
196 * the default data allocation type used by a Boot Services
197 * Driver to allocate pool memory.
198 */
199 EFI_BOOT_SERVICES_DATA,
200 /* The code portions of a loaded Runtime Services Driver */
201 EFI_RUNTIME_SERVICES_CODE,
202 /*
203 * The data portions of a loaded Runtime Services Driver and
204 * the default data allocation type used by a Runtime Services
205 * Driver to allocate pool memory.
206 */
207 EFI_RUNTIME_SERVICES_DATA,
208 /* Free (unallocated) memory */
209 EFI_CONVENTIONAL_MEMORY,
210 /* Memory in which errors have been detected */
211 EFI_UNUSABLE_MEMORY,
212 /* Memory that holds the ACPI tables */
213 EFI_ACPI_RECLAIM_MEMORY,
214 /* Address space reserved for use by the firmware */
215 EFI_ACPI_MEMORY_NVS,
216 /*
217 * Used by system firmware to request that a memory-mapped IO region
218 * be mapped by the OS to a virtual address so it can be accessed by
219 * EFI runtime services.
220 */
221 EFI_MMAP_IO,
222 /*
223 * System memory-mapped IO region that is used to translate
224 * memory cycles to IO cycles by the processor.
225 */
226 EFI_MMAP_IO_PORT,
227 /*
228 * Address space reserved by the firmware for code that is
229 * part of the processor.
230 */
231 EFI_PAL_CODE,
f12bcc91 232 /*
9933eb47 233 * Byte addressable non-volatile memory.
f12bcc91
HS
234 */
235 EFI_PERSISTENT_MEMORY_TYPE,
9933eb47
HS
236 /*
237 * Unaccepted memory must be accepted by boot target before usage.
238 */
239 EFI_UNACCEPTED_MEMORY_TYPE,
867a6ac8
SG
240
241 EFI_MAX_MEMORY_TYPE,
867a6ac8
SG
242};
243
244/* Attribute values */
9b89183b
ER
245#define EFI_MEMORY_UC ((u64)0x0000000000000001ULL) /* uncached */
246#define EFI_MEMORY_WC ((u64)0x0000000000000002ULL) /* write-coalescing */
247#define EFI_MEMORY_WT ((u64)0x0000000000000004ULL) /* write-through */
248#define EFI_MEMORY_WB ((u64)0x0000000000000008ULL) /* write-back */
249#define EFI_MEMORY_UCE ((u64)0x0000000000000010ULL) /* uncached, exported */
250#define EFI_MEMORY_WP ((u64)0x0000000000001000ULL) /* write-protect */
251#define EFI_MEMORY_RP ((u64)0x0000000000002000ULL) /* read-protect */
252#define EFI_MEMORY_XP ((u64)0x0000000000004000ULL) /* execute-protect */
c3a40cce
ER
253#define EFI_MEMORY_NV ((u64)0x0000000000008000ULL) /* non-volatile */
254#define EFI_MEMORY_MORE_RELIABLE \
255 ((u64)0x0000000000010000ULL) /* higher reliability */
256#define EFI_MEMORY_RO ((u64)0x0000000000020000ULL) /* read-only */
255a4733 257#define EFI_MEMORY_SP ((u64)0x0000000000040000ULL) /* specific-purpose memory (SPM) */
9933eb47 258#define EFI_MEMORY_CPU_CRYPTO ((u64)0x0000000000080000ULL) /* cryptographically protectable */
9b89183b
ER
259#define EFI_MEMORY_RUNTIME ((u64)0x8000000000000000ULL) /* range requires runtime mapping */
260#define EFI_MEM_DESC_VERSION 1
867a6ac8
SG
261
262#define EFI_PAGE_SHIFT 12
60fd8844 263#define EFI_PAGE_SIZE (1ULL << EFI_PAGE_SHIFT)
2bb9b79d 264#define EFI_PAGE_MASK (EFI_PAGE_SIZE - 1)
867a6ac8
SG
265
266struct efi_mem_desc {
267 u32 type;
268 u32 reserved;
269 efi_physical_addr_t physical_start;
270 efi_virtual_addr_t virtual_start;
271 u64 num_pages;
272 u64 attribute;
273};
274
4c02c11d
MYK
275#define EFI_MEMORY_DESCRIPTOR_VERSION 1
276
867a6ac8
SG
277/* Types and defines for Time Services */
278#define EFI_TIME_ADJUST_DAYLIGHT 0x1
279#define EFI_TIME_IN_DAYLIGHT 0x2
280#define EFI_UNSPECIFIED_TIMEZONE 0x07ff
281
282struct efi_time {
283 u16 year;
284 u8 month;
285 u8 day;
286 u8 hour;
287 u8 minute;
288 u8 second;
289 u8 pad1;
290 u32 nanosecond;
291 s16 timezone;
292 u8 daylight;
293 u8 pad2;
294};
295
296struct efi_time_cap {
297 u32 resolution;
298 u32 accuracy;
299 u8 sets_to_zero;
300};
301
302enum efi_locate_search_type {
9f0770ff
HS
303 ALL_HANDLES,
304 BY_REGISTER_NOTIFY,
305 BY_PROTOCOL
867a6ac8
SG
306};
307
308struct efi_open_protocol_info_entry {
309 efi_handle_t agent_handle;
310 efi_handle_t controller_handle;
311 u32 attributes;
312 u32 open_count;
313};
314
315enum efi_entry_t {
316 EFIET_END, /* Signals this is the last (empty) entry */
317 EFIET_MEMORY_MAP,
d1fe9927 318 EFIET_GOP_MODE,
cbe503fb 319 EFIET_SYS_TABLE,
867a6ac8
SG
320
321 /* Number of entries */
322 EFIET_MEMORY_COUNT,
323};
324
325#define EFI_TABLE_VERSION 1
326
327/**
328 * struct efi_info_hdr - Header for the EFI info table
329 *
330 * @version: EFI_TABLE_VERSION
331 * @hdr_size: Size of this struct in bytes
332 * @total_size: Total size of this header plus following data
333 * @spare: Spare space for expansion
334 */
335struct efi_info_hdr {
336 u32 version;
337 u32 hdr_size;
338 u32 total_size;
339 u32 spare[5];
340};
341
342/**
343 * struct efi_entry_hdr - Header for a table entry
344 *
345 * @type: enum eft_entry_t
40e5b53e 346 * @size: size of entry bytes excluding header and padding
867a6ac8
SG
347 * @addr: address of this entry (0 if it follows the header )
348 * @link: size of entry including header and padding
349 * @spare1: Spare space for expansion
350 * @spare2: Spare space for expansion
351 */
352struct efi_entry_hdr {
353 u32 type;
354 u32 size;
355 u64 addr;
356 u32 link;
357 u32 spare1;
358 u64 spare2;
359};
360
361/**
362 * struct efi_entry_memmap - a memory map table passed to U-Boot
363 *
364 * @version: EFI's memory map table version
365 * @desc_size: EFI's size of each memory descriptor
366 * @spare: Spare space for expansion
367 * @desc: An array of descriptors, each @desc_size bytes apart
368 */
369struct efi_entry_memmap {
370 u32 version;
371 u32 desc_size;
372 u64 spare;
373 struct efi_mem_desc desc[];
374};
375
d1fe9927
BM
376/**
377 * struct efi_entry_gopmode - a GOP mode table passed to U-Boot
378 *
379 * @fb_base: EFI's framebuffer base address
380 * @fb_size: EFI's framebuffer size
381 * @info_size: GOP mode info structure size
382 * @info: Start address of the GOP mode info structure
383 */
384struct efi_entry_gopmode {
385 efi_physical_addr_t fb_base;
386 /*
387 * Not like the ones in 'struct efi_gop_mode' which are 'unsigned
388 * long', @fb_size and @info_size have to be 'u64' here. As the EFI
389 * stub codes may have different bit size from the U-Boot payload,
390 * using 'long' will cause mismatch between the producer (stub) and
391 * the consumer (payload).
392 */
393 u64 fb_size;
394 u64 info_size;
395 /*
396 * We cannot directly use 'struct efi_gop_mode_info info[]' here as
397 * it causes compiler to complain: array type has incomplete element
398 * type 'struct efi_gop_mode_info'.
399 */
400 struct /* efi_gop_mode_info */ {
401 u32 version;
402 u32 width;
403 u32 height;
404 u32 pixel_format;
405 u32 pixel_bitmask[4];
406 u32 pixels_per_scanline;
407 } info[];
408};
409
cbe503fb
BM
410/**
411 * struct efi_entry_systable - system table passed to U-Boot
412 *
413 * @sys_table: EFI system table address
414 */
415struct efi_entry_systable {
416 efi_physical_addr_t sys_table;
417};
418
867a6ac8 419static inline struct efi_mem_desc *efi_get_next_mem_desc(
ce1dc0cc 420 struct efi_mem_desc *desc, int desc_size)
867a6ac8 421{
ce1dc0cc 422 return (struct efi_mem_desc *)((ulong)desc + desc_size);
867a6ac8
SG
423}
424
efd35c7d
SG
425/**
426 * struct efi_priv - Information about the environment provided by EFI
427 *
428 * @parent_image: image passed into the EFI app or stub
429 * @sys_table: Pointer to system table
430 * @boot: Pointer to boot-services table
431 * @run: Pointer to runtime-services table
866e2ac5
SG
432 * @memmap_key: Key returned from get_memory_map()
433 * @memmap_desc: List of memory-map records
434 * @memmap_alloc: Amount of memory allocated for memory map list
435 * @memmap_size Size of memory-map list in bytes
436 * @memmap_desc_size: Size of an individual memory-map record, in bytes
437 * @memmap_version: Memory-map version
efd35c7d
SG
438 *
439 * @use_pool_for_malloc: true if all allocation should go through the EFI 'pool'
440 * methods allocate_pool() and free_pool(); false to use 'pages' methods
441 * allocate_pages() and free_pages()
442 * @ram_base: Base address of RAM (size CONFIG_EFI_RAM_SIZE)
443 * @image_data_type: Type of the loaded image (e.g. EFI_LOADER_CODE)
444 *
445 * @info: Header of the info list, holding info collected by the stub and passed
446 * to U-Boot
447 * @info_size: Size of the info list @info in bytes
448 * @next_hdr: Pointer to where to put the next header when adding to the list
449 */
867a6ac8
SG
450struct efi_priv {
451 efi_handle_t parent_image;
867a6ac8
SG
452 struct efi_system_table *sys_table;
453 struct efi_boot_services *boot;
454 struct efi_runtime_services *run;
866e2ac5
SG
455 efi_uintn_t memmap_key;
456 struct efi_mem_desc *memmap_desc;
457 efi_uintn_t memmap_alloc;
458 efi_uintn_t memmap_size;
459 efi_uintn_t memmap_desc_size;
460 u32 memmap_version;
efd35c7d
SG
461
462 /* app: */
867a6ac8
SG
463 bool use_pool_for_malloc;
464 unsigned long ram_base;
465 unsigned int image_data_type;
efd35c7d
SG
466
467 /* stub: */
867a6ac8
SG
468 struct efi_info_hdr *info;
469 unsigned int info_size;
470 void *next_hdr;
471};
472
d8063dc3
SG
473/*
474 * EFI attributes of the udevice handled by efi_media driver
475 *
476 * @handle: handle of the controller on which this driver is installed
477 * @blkio: block io protocol proxied by this driver
613cd0c4 478 * @device_path: EFI path to the device
d8063dc3
SG
479 */
480struct efi_media_plat {
613cd0c4
SG
481 efi_handle_t handle;
482 struct efi_block_io *blkio;
483 struct efi_device_path *device_path;
d8063dc3
SG
484};
485
867a6ac8
SG
486/* Base address of the EFI image */
487extern char image_base[];
488
476476e7 489/* Start and end of U-Boot image (for payload) */
3dc51ab0 490extern char _binary_u_boot_bin_start[], _binary_u_boot_bin_end[];
476476e7 491
ad644e7c
RC
492/*
493 * Variable Attributes
494 */
495#define EFI_VARIABLE_NON_VOLATILE 0x0000000000000001
496#define EFI_VARIABLE_BOOTSERVICE_ACCESS 0x0000000000000002
497#define EFI_VARIABLE_RUNTIME_ACCESS 0x0000000000000004
498#define EFI_VARIABLE_HARDWARE_ERROR_RECORD 0x0000000000000008
499#define EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS 0x0000000000000010
500#define EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS 0x0000000000000020
501#define EFI_VARIABLE_APPEND_WRITE 0x0000000000000040
502
503#define EFI_VARIABLE_MASK (EFI_VARIABLE_NON_VOLATILE | \
504 EFI_VARIABLE_BOOTSERVICE_ACCESS | \
505 EFI_VARIABLE_RUNTIME_ACCESS | \
506 EFI_VARIABLE_HARDWARE_ERROR_RECORD | \
507 EFI_VARIABLE_AUTHENTICATED_WRITE_ACCESS | \
508 EFI_VARIABLE_TIME_BASED_AUTHENTICATED_WRITE_ACCESS | \
509 EFI_VARIABLE_APPEND_WRITE)
510
2a1cf03e
SG
511/**
512 * efi_get_priv() - Get access to the EFI-private information
513 *
514 * This struct it used by both the stub and the app to record things about the
515 * EFI environment. It is not available in U-Boot proper after the stub has
516 * jumped there. Use efi_info_get() to obtain info in that case.
517 *
518 * Return: pointer to private info
519 */
520struct efi_priv *efi_get_priv(void);
521
522/**
523 * efi_set_priv() - Set up a pointer to the EFI-private information
524 *
525 * This is called in the stub and app to record the location of this
526 * information.
527 *
528 * @priv: New location of private data
529 */
530void efi_set_priv(struct efi_priv *priv);
531
867a6ac8
SG
532/**
533 * efi_get_sys_table() - Get access to the main EFI system table
534 *
6b3873c5 535 * Returns: pointer to EFI system table
867a6ac8
SG
536 */
537struct efi_system_table *efi_get_sys_table(void);
538
f8445737
SG
539/**
540 * efi_get_boot() - Get access to the EFI boot services table
541 *
6b3873c5 542 * Returns: pointer to EFI boot services table
f8445737
SG
543 */
544struct efi_boot_services *efi_get_boot(void);
545
867a6ac8
SG
546/**
547 * efi_get_ram_base() - Find the base of RAM
548 *
549 * This is used when U-Boot is built as an EFI application.
550 *
6b3873c5 551 * Returns: the base of RAM as known to U-Boot
867a6ac8
SG
552 */
553unsigned long efi_get_ram_base(void);
554
555/**
556 * efi_init() - Set up ready for use of EFI boot services
557 *
558 * @priv: Pointer to our private EFI structure to fill in
559 * @banner: Banner to display when starting
560 * @image: The image handle passed to efi_main()
561 * @sys_table: The EFI system table pointer passed to efi_main()
6b3873c5 562 * Return: 0 on succcess, EFI error code on failure
867a6ac8
SG
563 */
564int efi_init(struct efi_priv *priv, const char *banner, efi_handle_t image,
565 struct efi_system_table *sys_table);
566
567/**
568 * efi_malloc() - Allocate some memory from EFI
569 *
570 * @priv: Pointer to private EFI structure
571 * @size: Number of bytes to allocate
572 * @retp: Return EFI status result
6b3873c5 573 * Returns: pointer to memory allocated, or NULL on error
867a6ac8
SG
574 */
575void *efi_malloc(struct efi_priv *priv, int size, efi_status_t *retp);
576
577/**
578 * efi_free() - Free memory allocated from EFI
579 *
580 * @priv: Pointer to private EFI structure
581 * @ptr: Pointer to memory to free
582 */
583void efi_free(struct efi_priv *priv, void *ptr);
584
585/**
586 * efi_puts() - Write out a string to the EFI console
587 *
588 * @priv: Pointer to private EFI structure
589 * @str: String to write (note this is a ASCII, not unicode)
590 */
591void efi_puts(struct efi_priv *priv, const char *str);
592
593/**
594 * efi_putc() - Write out a character to the EFI console
595 *
596 * @priv: Pointer to private EFI structure
597 * @ch: Character to write (note this is not unicode)
598 */
599void efi_putc(struct efi_priv *priv, const char ch);
600
601/**
602 * efi_info_get() - get an entry from an EFI table
603 *
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604 * This function is called from U-Boot proper to read information set up by the
605 * EFI stub. It can only be used when running from the EFI stub, not when U-Boot
606 * is running as an app.
607 *
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608 * @type: Entry type to search for
609 * @datap: Returns pointer to entry data
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610 * @sizep: Returns entry size
611 * Return: 0 if OK, -ENODATA if there is no table, -ENOENT if there is no entry
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612 * of the requested type, -EPROTONOSUPPORT if the table has the wrong version
613 */
614int efi_info_get(enum efi_entry_t type, void **datap, int *sizep);
615
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616/**
617 * efi_store_memory_map() - Collect the memory-map info from EFI
618 *
619 * Collect the memory info and store it for later use, e.g. in calling
620 * exit_boot_services()
621 *
622 * @priv: Pointer to private EFI structure
6b3873c5 623 * Returns: 0 if OK, non-zero on error
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624 */
625int efi_store_memory_map(struct efi_priv *priv);
626
627/**
628 * efi_call_exit_boot_services() - Handle the exit-boot-service procedure
629 *
630 * Tell EFI we don't want their boot services anymore
631 *
632 * Return: 0 if OK, non-zero on error
633 */
634int efi_call_exit_boot_services(void);
635
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636/**
637 * efi_get_mmap() - Get the memory map from EFI
638 *
639 * This is used in the app. The caller must free *@descp when done
640 *
641 * @descp: Returns allocated pointer to EFI memory map table
642 * @sizep: Returns size of table in bytes
643 * @keyp: Returns memory-map key
644 * @desc_sizep: Returns size of each @desc_base record
645 * @versionp: Returns version number of memory map
6b3873c5 646 * Returns: 0 on success, -ve on error
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647 */
648int efi_get_mmap(struct efi_mem_desc **descp, int *sizep, uint *keyp,
649 int *desc_sizep, uint *versionp);
650
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651/**
652 * efi_show_tables() - Show a list of available tables
653 *
654 * Shows the address, GUID (and name where known) for each table
655 *
656 * @systab: System table containing the list of tables
657 */
658void efi_show_tables(struct efi_system_table *systab);
659
867a6ac8 660#endif /* _LINUX_EFI_H */