blob: 987cc6dc5f61aaaec7fea74c8e87ecbd0c927a90 [file] [log] [blame]
Tom Rinif739fcd2018-05-07 17:02:21 -04001// SPDX-License-Identifier: GPL-2.0+
Alexander Graf5d009952016-03-04 01:10:04 +01002/*
3 * EFI application memory management
4 *
5 * Copyright (c) 2016 Alexander Graf
Alexander Graf5d009952016-03-04 01:10:04 +01006 */
7
Alexander Graf5d009952016-03-04 01:10:04 +01008#include <common.h>
9#include <efi_loader.h>
Simon Glassbdecaeb2018-03-08 21:53:27 +010010#include <malloc.h>
Alexander Graf282a06c2018-06-18 17:23:15 +020011#include <mapmem.h>
Alexander Graf5d009952016-03-04 01:10:04 +010012#include <watchdog.h>
Simon Glassbdecaeb2018-03-08 21:53:27 +010013#include <linux/list_sort.h>
Alexander Graf7a82c302018-09-17 13:54:33 +020014#include <linux/sizes.h>
Alexander Graf5d009952016-03-04 01:10:04 +010015
16DECLARE_GLOBAL_DATA_PTR;
17
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +010018/* Magic number identifying memory allocated from pool */
19#define EFI_ALLOC_POOL_MAGIC 0x1fe67ddf6491caa2
20
Heinrich Schuchardt1fcb7ea2018-07-02 12:53:55 +020021efi_uintn_t efi_memory_map_key;
22
Alexander Graf5d009952016-03-04 01:10:04 +010023struct efi_mem_list {
24 struct list_head link;
25 struct efi_mem_desc desc;
26};
27
Alexander Graf74c16ac2016-05-27 12:25:03 +020028#define EFI_CARVE_NO_OVERLAP -1
29#define EFI_CARVE_LOOP_AGAIN -2
30#define EFI_CARVE_OVERLAPS_NONRAM -3
31
Alexander Graf5d009952016-03-04 01:10:04 +010032/* This list contains all memory map items */
33LIST_HEAD(efi_mem);
34
Alexander Graf51735ae2016-05-11 18:25:48 +020035#ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
36void *efi_bounce_buffer;
37#endif
38
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +010039/**
40 * efi_pool_allocation - memory block allocated from pool
41 *
42 * @num_pages: number of pages allocated
43 * @checksum: checksum
44 *
Stefan Brüns42417bc2016-10-09 22:17:26 +020045 * U-Boot services each EFI AllocatePool request as a separate
46 * (multiple) page allocation. We have to track the number of pages
47 * to be able to free the correct amount later.
48 * EFI requires 8 byte alignment for pool allocations, so we can
49 * prepend each allocation with an 64 bit header tracking the
50 * allocation size, and hand out the remainder to the caller.
51 */
52struct efi_pool_allocation {
53 u64 num_pages;
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +010054 u64 checksum;
Rob Clark946160f2017-09-13 18:05:36 -040055 char data[] __aligned(ARCH_DMA_MINALIGN);
Stefan Brüns42417bc2016-10-09 22:17:26 +020056};
57
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +010058/**
59 * checksum() - calculate checksum for memory allocated from pool
60 *
61 * @alloc: allocation header
62 * Return: checksum, always non-zero
63 */
64static u64 checksum(struct efi_pool_allocation *alloc)
65{
66 u64 addr = (uintptr_t)alloc;
67 u64 ret = (addr >> 32) ^ (addr << 32) ^ alloc->num_pages ^
68 EFI_ALLOC_POOL_MAGIC;
69 if (!ret)
70 ++ret;
71 return ret;
72}
73
Stefan Brüns42417bc2016-10-09 22:17:26 +020074/*
Alexander Graf38ce65e2016-03-30 16:38:29 +020075 * Sorts the memory list from highest address to lowest address
76 *
77 * When allocating memory we should always start from the highest
78 * address chunk, so sort the memory list such that the first list
79 * iterator gets the highest address and goes lower from there.
80 */
81static int efi_mem_cmp(void *priv, struct list_head *a, struct list_head *b)
82{
83 struct efi_mem_list *mema = list_entry(a, struct efi_mem_list, link);
84 struct efi_mem_list *memb = list_entry(b, struct efi_mem_list, link);
85
86 if (mema->desc.physical_start == memb->desc.physical_start)
87 return 0;
88 else if (mema->desc.physical_start < memb->desc.physical_start)
89 return 1;
90 else
91 return -1;
92}
93
Alexander Graf7b056672018-09-16 17:05:29 +020094static uint64_t desc_get_end(struct efi_mem_desc *desc)
95{
96 return desc->physical_start + (desc->num_pages << EFI_PAGE_SHIFT);
97}
98
Alexander Graf38ce65e2016-03-30 16:38:29 +020099static void efi_mem_sort(void)
100{
Alexander Graf7b056672018-09-16 17:05:29 +0200101 struct list_head *lhandle;
102 struct efi_mem_list *prevmem = NULL;
103 bool merge_again = true;
104
Alexander Graf38ce65e2016-03-30 16:38:29 +0200105 list_sort(NULL, &efi_mem, efi_mem_cmp);
Alexander Graf7b056672018-09-16 17:05:29 +0200106
107 /* Now merge entries that can be merged */
108 while (merge_again) {
109 merge_again = false;
110 list_for_each(lhandle, &efi_mem) {
111 struct efi_mem_list *lmem;
112 struct efi_mem_desc *prev = &prevmem->desc;
113 struct efi_mem_desc *cur;
114 uint64_t pages;
115
116 lmem = list_entry(lhandle, struct efi_mem_list, link);
117 if (!prevmem) {
118 prevmem = lmem;
119 continue;
120 }
121
122 cur = &lmem->desc;
123
124 if ((desc_get_end(cur) == prev->physical_start) &&
125 (prev->type == cur->type) &&
126 (prev->attribute == cur->attribute)) {
127 /* There is an existing map before, reuse it */
128 pages = cur->num_pages;
129 prev->num_pages += pages;
130 prev->physical_start -= pages << EFI_PAGE_SHIFT;
131 prev->virtual_start -= pages << EFI_PAGE_SHIFT;
132 list_del(&lmem->link);
133 free(lmem);
134
135 merge_again = true;
136 break;
137 }
138
139 prevmem = lmem;
140 }
141 }
Alexander Graf38ce65e2016-03-30 16:38:29 +0200142}
143
Heinrich Schuchardt32826142018-05-27 16:45:09 +0200144/** efi_mem_carve_out - unmap memory region
Alexander Graf5d009952016-03-04 01:10:04 +0100145 *
Heinrich Schuchardt32826142018-05-27 16:45:09 +0200146 * @map: memory map
147 * @carve_desc: memory region to unmap
148 * @overlap_only_ram: the carved out region may only overlap RAM
149 * Return Value: the number of overlapping pages which have been
150 * removed from the map,
151 * EFI_CARVE_NO_OVERLAP, if the regions don't overlap,
152 * EFI_CARVE_OVERLAPS_NONRAM, if the carve and map overlap,
153 * and the map contains anything but free ram
154 * (only when overlap_only_ram is true),
155 * EFI_CARVE_LOOP_AGAIN, if the mapping list should be
156 * traversed again, as it has been altered.
157 *
158 * Unmaps all memory occupied by the carve_desc region from the list entry
159 * pointed to by map.
Stefan Brüns852efbf2016-10-01 23:32:23 +0200160 *
161 * In case of EFI_CARVE_OVERLAPS_NONRAM it is the callers responsibility
Heinrich Schuchardt32826142018-05-27 16:45:09 +0200162 * to re-add the already carved out pages to the mapping.
Alexander Graf5d009952016-03-04 01:10:04 +0100163 */
Heinrich Schuchardt32826142018-05-27 16:45:09 +0200164static s64 efi_mem_carve_out(struct efi_mem_list *map,
Alexander Graf5d009952016-03-04 01:10:04 +0100165 struct efi_mem_desc *carve_desc,
166 bool overlap_only_ram)
167{
168 struct efi_mem_list *newmap;
169 struct efi_mem_desc *map_desc = &map->desc;
170 uint64_t map_start = map_desc->physical_start;
171 uint64_t map_end = map_start + (map_desc->num_pages << EFI_PAGE_SHIFT);
172 uint64_t carve_start = carve_desc->physical_start;
173 uint64_t carve_end = carve_start +
174 (carve_desc->num_pages << EFI_PAGE_SHIFT);
175
176 /* check whether we're overlapping */
177 if ((carve_end <= map_start) || (carve_start >= map_end))
Alexander Graf74c16ac2016-05-27 12:25:03 +0200178 return EFI_CARVE_NO_OVERLAP;
Alexander Graf5d009952016-03-04 01:10:04 +0100179
180 /* We're overlapping with non-RAM, warn the caller if desired */
181 if (overlap_only_ram && (map_desc->type != EFI_CONVENTIONAL_MEMORY))
Alexander Graf74c16ac2016-05-27 12:25:03 +0200182 return EFI_CARVE_OVERLAPS_NONRAM;
Alexander Graf5d009952016-03-04 01:10:04 +0100183
184 /* Sanitize carve_start and carve_end to lie within our bounds */
185 carve_start = max(carve_start, map_start);
186 carve_end = min(carve_end, map_end);
187
188 /* Carving at the beginning of our map? Just move it! */
189 if (carve_start == map_start) {
190 if (map_end == carve_end) {
191 /* Full overlap, just remove map */
192 list_del(&map->link);
Stefan Brüns511d0b92016-10-01 23:32:29 +0200193 free(map);
194 } else {
195 map->desc.physical_start = carve_end;
Heinrich Schuchardt9631fa02019-04-11 20:08:54 +0200196 map->desc.virtual_start = carve_end;
Stefan Brüns511d0b92016-10-01 23:32:29 +0200197 map->desc.num_pages = (map_end - carve_end)
198 >> EFI_PAGE_SHIFT;
Alexander Graf5d009952016-03-04 01:10:04 +0100199 }
200
Alexander Graf74c16ac2016-05-27 12:25:03 +0200201 return (carve_end - carve_start) >> EFI_PAGE_SHIFT;
Alexander Graf5d009952016-03-04 01:10:04 +0100202 }
203
204 /*
205 * Overlapping maps, just split the list map at carve_start,
206 * it will get moved or removed in the next iteration.
207 *
208 * [ map_desc |__carve_start__| newmap ]
209 */
210
211 /* Create a new map from [ carve_start ... map_end ] */
212 newmap = calloc(1, sizeof(*newmap));
213 newmap->desc = map->desc;
214 newmap->desc.physical_start = carve_start;
Heinrich Schuchardt9631fa02019-04-11 20:08:54 +0200215 newmap->desc.virtual_start = carve_start;
Alexander Graf5d009952016-03-04 01:10:04 +0100216 newmap->desc.num_pages = (map_end - carve_start) >> EFI_PAGE_SHIFT;
Stefan Brünsb6a95172016-10-01 23:32:28 +0200217 /* Insert before current entry (descending address order) */
218 list_add_tail(&newmap->link, &map->link);
Alexander Graf5d009952016-03-04 01:10:04 +0100219
220 /* Shrink the map to [ map_start ... carve_start ] */
221 map_desc->num_pages = (carve_start - map_start) >> EFI_PAGE_SHIFT;
222
Alexander Graf74c16ac2016-05-27 12:25:03 +0200223 return EFI_CARVE_LOOP_AGAIN;
Alexander Graf5d009952016-03-04 01:10:04 +0100224}
225
226uint64_t efi_add_memory_map(uint64_t start, uint64_t pages, int memory_type,
227 bool overlap_only_ram)
228{
229 struct list_head *lhandle;
230 struct efi_mem_list *newlist;
Alexander Graf74c16ac2016-05-27 12:25:03 +0200231 bool carve_again;
232 uint64_t carved_pages = 0;
Alexander Graf5d009952016-03-04 01:10:04 +0100233
Heinrich Schuchardte301e022019-04-04 21:50:02 +0200234 EFI_PRINT("%s: 0x%llx 0x%llx %d %s\n", __func__,
235 start, pages, memory_type, overlap_only_ram ? "yes" : "no");
Andreas Färberc933ed92016-07-17 06:57:11 +0200236
Heinrich Schuchardt1fcb7ea2018-07-02 12:53:55 +0200237 if (memory_type >= EFI_MAX_MEMORY_TYPE)
238 return EFI_INVALID_PARAMETER;
239
Alexander Graf5d009952016-03-04 01:10:04 +0100240 if (!pages)
241 return start;
242
Heinrich Schuchardt1fcb7ea2018-07-02 12:53:55 +0200243 ++efi_memory_map_key;
Alexander Graf5d009952016-03-04 01:10:04 +0100244 newlist = calloc(1, sizeof(*newlist));
245 newlist->desc.type = memory_type;
246 newlist->desc.physical_start = start;
247 newlist->desc.virtual_start = start;
248 newlist->desc.num_pages = pages;
249
250 switch (memory_type) {
251 case EFI_RUNTIME_SERVICES_CODE:
252 case EFI_RUNTIME_SERVICES_DATA:
Eugeniu Rosca9b891832018-07-14 22:53:30 +0200253 newlist->desc.attribute = EFI_MEMORY_WB | EFI_MEMORY_RUNTIME;
Alexander Graf5d009952016-03-04 01:10:04 +0100254 break;
255 case EFI_MMAP_IO:
Eugeniu Rosca9b891832018-07-14 22:53:30 +0200256 newlist->desc.attribute = EFI_MEMORY_RUNTIME;
Alexander Graf5d009952016-03-04 01:10:04 +0100257 break;
258 default:
Eugeniu Rosca9b891832018-07-14 22:53:30 +0200259 newlist->desc.attribute = EFI_MEMORY_WB;
Alexander Graf5d009952016-03-04 01:10:04 +0100260 break;
261 }
262
263 /* Add our new map */
264 do {
Alexander Graf74c16ac2016-05-27 12:25:03 +0200265 carve_again = false;
Alexander Graf5d009952016-03-04 01:10:04 +0100266 list_for_each(lhandle, &efi_mem) {
267 struct efi_mem_list *lmem;
Heinrich Schuchardt32826142018-05-27 16:45:09 +0200268 s64 r;
Alexander Graf5d009952016-03-04 01:10:04 +0100269
270 lmem = list_entry(lhandle, struct efi_mem_list, link);
271 r = efi_mem_carve_out(lmem, &newlist->desc,
272 overlap_only_ram);
Alexander Graf74c16ac2016-05-27 12:25:03 +0200273 switch (r) {
274 case EFI_CARVE_OVERLAPS_NONRAM:
275 /*
276 * The user requested to only have RAM overlaps,
277 * but we hit a non-RAM region. Error out.
278 */
Alexander Graf5d009952016-03-04 01:10:04 +0100279 return 0;
Alexander Graf74c16ac2016-05-27 12:25:03 +0200280 case EFI_CARVE_NO_OVERLAP:
281 /* Just ignore this list entry */
282 break;
283 case EFI_CARVE_LOOP_AGAIN:
284 /*
285 * We split an entry, but need to loop through
286 * the list again to actually carve it.
287 */
288 carve_again = true;
289 break;
290 default:
291 /* We carved a number of pages */
292 carved_pages += r;
293 carve_again = true;
294 break;
295 }
296
297 if (carve_again) {
298 /* The list changed, we need to start over */
Alexander Graf5d009952016-03-04 01:10:04 +0100299 break;
300 }
301 }
Alexander Graf74c16ac2016-05-27 12:25:03 +0200302 } while (carve_again);
303
304 if (overlap_only_ram && (carved_pages != pages)) {
305 /*
306 * The payload wanted to have RAM overlaps, but we overlapped
307 * with an unallocated region. Error out.
308 */
309 return 0;
310 }
Alexander Graf5d009952016-03-04 01:10:04 +0100311
312 /* Add our new map */
313 list_add_tail(&newlist->link, &efi_mem);
314
Alexander Graf38ce65e2016-03-30 16:38:29 +0200315 /* And make sure memory is listed in descending order */
316 efi_mem_sort();
317
Alexander Graf5d009952016-03-04 01:10:04 +0100318 return start;
319}
320
321static uint64_t efi_find_free_memory(uint64_t len, uint64_t max_addr)
322{
323 struct list_head *lhandle;
324
Alexander Grafc2e1ad72018-11-05 00:30:46 +0100325 /*
326 * Prealign input max address, so we simplify our matching
327 * logic below and can just reuse it as return pointer.
328 */
329 max_addr &= ~EFI_PAGE_MASK;
330
Alexander Graf5d009952016-03-04 01:10:04 +0100331 list_for_each(lhandle, &efi_mem) {
332 struct efi_mem_list *lmem = list_entry(lhandle,
333 struct efi_mem_list, link);
334 struct efi_mem_desc *desc = &lmem->desc;
335 uint64_t desc_len = desc->num_pages << EFI_PAGE_SHIFT;
336 uint64_t desc_end = desc->physical_start + desc_len;
337 uint64_t curmax = min(max_addr, desc_end);
338 uint64_t ret = curmax - len;
339
340 /* We only take memory from free RAM */
341 if (desc->type != EFI_CONVENTIONAL_MEMORY)
342 continue;
343
344 /* Out of bounds for max_addr */
345 if ((ret + len) > max_addr)
346 continue;
347
348 /* Out of bounds for upper map limit */
349 if ((ret + len) > desc_end)
350 continue;
351
352 /* Out of bounds for lower map limit */
353 if (ret < desc->physical_start)
354 continue;
355
356 /* Return the highest address in this map within bounds */
357 return ret;
358 }
359
360 return 0;
361}
362
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100363/*
364 * Allocate memory pages.
365 *
366 * @type type of allocation to be performed
367 * @memory_type usage type of the allocated memory
368 * @pages number of pages to be allocated
369 * @memory allocated memory
370 * @return status code
371 */
Alexander Graf5d009952016-03-04 01:10:04 +0100372efi_status_t efi_allocate_pages(int type, int memory_type,
Heinrich Schuchardtf5a2a932017-11-06 21:17:48 +0100373 efi_uintn_t pages, uint64_t *memory)
Alexander Graf5d009952016-03-04 01:10:04 +0100374{
375 u64 len = pages << EFI_PAGE_SHIFT;
376 efi_status_t r = EFI_SUCCESS;
377 uint64_t addr;
378
Heinrich Schuchardtf12bcc92019-04-23 00:30:53 +0200379 /* Check import parameters */
380 if (memory_type >= EFI_PERSISTENT_MEMORY_TYPE &&
381 memory_type <= 0x6FFFFFFF)
382 return EFI_INVALID_PARAMETER;
Heinrich Schuchardt4d5e0712018-07-02 12:53:53 +0200383 if (!memory)
384 return EFI_INVALID_PARAMETER;
385
Alexander Graf5d009952016-03-04 01:10:04 +0100386 switch (type) {
Heinrich Schuchardt7c92fd62018-01-30 21:08:00 +0100387 case EFI_ALLOCATE_ANY_PAGES:
Alexander Graf5d009952016-03-04 01:10:04 +0100388 /* Any page */
Stephen Warren14deb5e2018-08-30 15:43:45 -0600389 addr = efi_find_free_memory(len, -1ULL);
Alexander Graf5d009952016-03-04 01:10:04 +0100390 if (!addr) {
391 r = EFI_NOT_FOUND;
392 break;
393 }
394 break;
Heinrich Schuchardt7c92fd62018-01-30 21:08:00 +0100395 case EFI_ALLOCATE_MAX_ADDRESS:
Alexander Graf5d009952016-03-04 01:10:04 +0100396 /* Max address */
397 addr = efi_find_free_memory(len, *memory);
398 if (!addr) {
399 r = EFI_NOT_FOUND;
400 break;
401 }
402 break;
Heinrich Schuchardt7c92fd62018-01-30 21:08:00 +0100403 case EFI_ALLOCATE_ADDRESS:
Alexander Graf5d009952016-03-04 01:10:04 +0100404 /* Exact address, reserve it. The addr is already in *memory. */
405 addr = *memory;
406 break;
407 default:
408 /* UEFI doesn't specify other allocation types */
409 r = EFI_INVALID_PARAMETER;
410 break;
411 }
412
413 if (r == EFI_SUCCESS) {
414 uint64_t ret;
415
416 /* Reserve that map in our memory maps */
417 ret = efi_add_memory_map(addr, pages, memory_type, true);
418 if (ret == addr) {
Heinrich Schuchardt49759742018-11-18 17:58:46 +0100419 *memory = addr;
Alexander Graf5d009952016-03-04 01:10:04 +0100420 } else {
421 /* Map would overlap, bail out */
422 r = EFI_OUT_OF_RESOURCES;
423 }
424 }
425
426 return r;
427}
428
429void *efi_alloc(uint64_t len, int memory_type)
430{
431 uint64_t ret = 0;
Heinrich Schuchardtc3772ca2018-11-18 17:58:49 +0100432 uint64_t pages = efi_size_in_pages(len);
Alexander Graf5d009952016-03-04 01:10:04 +0100433 efi_status_t r;
434
Heinrich Schuchardte09159c2018-05-26 10:32:27 +0200435 r = efi_allocate_pages(EFI_ALLOCATE_ANY_PAGES, memory_type, pages,
436 &ret);
Alexander Graf5d009952016-03-04 01:10:04 +0100437 if (r == EFI_SUCCESS)
438 return (void*)(uintptr_t)ret;
439
440 return NULL;
441}
442
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100443/**
444 * efi_free_pages() - free memory pages
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100445 *
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100446 * @memory: start of the memory area to be freed
447 * @pages: number of pages to be freed
448 * Return: status code
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100449 */
Heinrich Schuchardtf5a2a932017-11-06 21:17:48 +0100450efi_status_t efi_free_pages(uint64_t memory, efi_uintn_t pages)
Alexander Graf5d009952016-03-04 01:10:04 +0100451{
Stefan Brünsb61d8572016-10-01 23:32:27 +0200452 uint64_t r = 0;
453
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100454 /* Sanity check */
455 if (!memory || (memory & EFI_PAGE_MASK)) {
456 printf("%s: illegal free 0x%llx, 0x%zx\n", __func__,
457 memory, pages);
458 return EFI_INVALID_PARAMETER;
459 }
460
Heinrich Schuchardt49759742018-11-18 17:58:46 +0100461 r = efi_add_memory_map(memory, pages, EFI_CONVENTIONAL_MEMORY, false);
Stefan Brünsb61d8572016-10-01 23:32:27 +0200462 /* Merging of adjacent free regions is missing */
463
Heinrich Schuchardt49759742018-11-18 17:58:46 +0100464 if (r == memory)
Stefan Brünsb61d8572016-10-01 23:32:27 +0200465 return EFI_SUCCESS;
466
467 return EFI_NOT_FOUND;
Alexander Graf5d009952016-03-04 01:10:04 +0100468}
469
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100470/**
471 * efi_allocate_pool - allocate memory from pool
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100472 *
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100473 * @pool_type: type of the pool from which memory is to be allocated
474 * @size: number of bytes to be allocated
475 * @buffer: allocated memory
476 * Return: status code
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100477 */
478efi_status_t efi_allocate_pool(int pool_type, efi_uintn_t size, void **buffer)
Stefan Brünsead12742016-10-09 22:17:18 +0200479{
480 efi_status_t r;
Heinrich Schuchardt306b1672019-03-18 20:01:59 +0100481 u64 addr;
Alexander Graf282a06c2018-06-18 17:23:15 +0200482 struct efi_pool_allocation *alloc;
Heinrich Schuchardtc3772ca2018-11-18 17:58:49 +0100483 u64 num_pages = efi_size_in_pages(size +
484 sizeof(struct efi_pool_allocation));
Stefan Brüns42417bc2016-10-09 22:17:26 +0200485
Heinrich Schuchardt4d5e0712018-07-02 12:53:53 +0200486 if (!buffer)
487 return EFI_INVALID_PARAMETER;
488
Stefan Brüns42417bc2016-10-09 22:17:26 +0200489 if (size == 0) {
490 *buffer = NULL;
491 return EFI_SUCCESS;
492 }
Stefan Brünsead12742016-10-09 22:17:18 +0200493
Heinrich Schuchardte09159c2018-05-26 10:32:27 +0200494 r = efi_allocate_pages(EFI_ALLOCATE_ANY_PAGES, pool_type, num_pages,
Heinrich Schuchardt306b1672019-03-18 20:01:59 +0100495 &addr);
Stefan Brüns42417bc2016-10-09 22:17:26 +0200496 if (r == EFI_SUCCESS) {
Heinrich Schuchardt306b1672019-03-18 20:01:59 +0100497 alloc = (struct efi_pool_allocation *)(uintptr_t)addr;
Stefan Brüns42417bc2016-10-09 22:17:26 +0200498 alloc->num_pages = num_pages;
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100499 alloc->checksum = checksum(alloc);
Stefan Brüns42417bc2016-10-09 22:17:26 +0200500 *buffer = alloc->data;
501 }
502
503 return r;
504}
505
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100506/**
507 * efi_free_pool() - free memory from pool
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100508 *
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100509 * @buffer: start of memory to be freed
510 * Return: status code
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100511 */
Stefan Brüns42417bc2016-10-09 22:17:26 +0200512efi_status_t efi_free_pool(void *buffer)
513{
514 efi_status_t r;
515 struct efi_pool_allocation *alloc;
516
xypron.glpk@gmx.de71275a32017-07-14 19:12:39 +0200517 if (buffer == NULL)
518 return EFI_INVALID_PARAMETER;
519
Stefan Brüns42417bc2016-10-09 22:17:26 +0200520 alloc = container_of(buffer, struct efi_pool_allocation, data);
Heinrich Schuchardt2c3ec282019-03-26 05:31:41 +0100521
522 /* Check that this memory was allocated by efi_allocate_pool() */
523 if (((uintptr_t)alloc & EFI_PAGE_MASK) ||
524 alloc->checksum != checksum(alloc)) {
525 printf("%s: illegal free 0x%p\n", __func__, buffer);
526 return EFI_INVALID_PARAMETER;
527 }
528 /* Avoid double free */
529 alloc->checksum = 0;
Stefan Brüns42417bc2016-10-09 22:17:26 +0200530
531 r = efi_free_pages((uintptr_t)alloc, alloc->num_pages);
Stefan Brünsead12742016-10-09 22:17:18 +0200532
533 return r;
534}
535
Heinrich Schuchardt474a6f52017-12-04 20:52:41 +0100536/*
537 * Get map describing memory usage.
538 *
539 * @memory_map_size on entry the size, in bytes, of the memory map buffer,
540 * on exit the size of the copied memory map
541 * @memory_map buffer to which the memory map is written
542 * @map_key key for the memory map
543 * @descriptor_size size of an individual memory descriptor
544 * @descriptor_version version number of the memory descriptor structure
545 * @return status code
546 */
Heinrich Schuchardtf5a2a932017-11-06 21:17:48 +0100547efi_status_t efi_get_memory_map(efi_uintn_t *memory_map_size,
548 struct efi_mem_desc *memory_map,
549 efi_uintn_t *map_key,
550 efi_uintn_t *descriptor_size,
551 uint32_t *descriptor_version)
Alexander Graf5d009952016-03-04 01:10:04 +0100552{
Heinrich Schuchardtf5a2a932017-11-06 21:17:48 +0100553 efi_uintn_t map_size = 0;
Alexander Grafcee752f2016-04-11 23:51:02 +0200554 int map_entries = 0;
Alexander Graf5d009952016-03-04 01:10:04 +0100555 struct list_head *lhandle;
Heinrich Schuchardtfa995d0d2018-08-06 22:28:18 +0200556 efi_uintn_t provided_map_size;
Alexander Graf5d009952016-03-04 01:10:04 +0100557
Heinrich Schuchardt8e835552018-07-02 12:53:54 +0200558 if (!memory_map_size)
559 return EFI_INVALID_PARAMETER;
560
Heinrich Schuchardtfa995d0d2018-08-06 22:28:18 +0200561 provided_map_size = *memory_map_size;
562
Alexander Graf5d009952016-03-04 01:10:04 +0100563 list_for_each(lhandle, &efi_mem)
Alexander Grafcee752f2016-04-11 23:51:02 +0200564 map_entries++;
565
566 map_size = map_entries * sizeof(struct efi_mem_desc);
Alexander Graf5d009952016-03-04 01:10:04 +0100567
Rob Clarka1b24822017-07-26 14:34:05 -0400568 *memory_map_size = map_size;
569
xypron.glpk@gmx.de0ecba5d2017-07-21 19:04:33 +0200570 if (provided_map_size < map_size)
571 return EFI_BUFFER_TOO_SMALL;
572
Heinrich Schuchardt8e835552018-07-02 12:53:54 +0200573 if (!memory_map)
574 return EFI_INVALID_PARAMETER;
575
Alexander Graf5d009952016-03-04 01:10:04 +0100576 if (descriptor_size)
577 *descriptor_size = sizeof(struct efi_mem_desc);
578
Mian Yousaf Kaukab4c02c112016-09-05 23:59:22 +0200579 if (descriptor_version)
580 *descriptor_version = EFI_MEMORY_DESCRIPTOR_VERSION;
581
Alexander Graf5d009952016-03-04 01:10:04 +0100582 /* Copy list into array */
Heinrich Schuchardt8e835552018-07-02 12:53:54 +0200583 /* Return the list in ascending order */
584 memory_map = &memory_map[map_entries - 1];
585 list_for_each(lhandle, &efi_mem) {
586 struct efi_mem_list *lmem;
Alexander Graf5d009952016-03-04 01:10:04 +0100587
Heinrich Schuchardt8e835552018-07-02 12:53:54 +0200588 lmem = list_entry(lhandle, struct efi_mem_list, link);
589 *memory_map = lmem->desc;
590 memory_map--;
Alexander Graf5d009952016-03-04 01:10:04 +0100591 }
592
Heinrich Schuchardt8e835552018-07-02 12:53:54 +0200593 if (map_key)
Heinrich Schuchardt1fcb7ea2018-07-02 12:53:55 +0200594 *map_key = efi_memory_map_key;
xypron.glpk@gmx.dec6e3c3e2017-07-21 19:05:44 +0200595
Alexander Graf5d009952016-03-04 01:10:04 +0100596 return EFI_SUCCESS;
597}
598
York Sun42633742017-03-06 09:02:27 -0800599__weak void efi_add_known_memory(void)
Alexander Graf5d009952016-03-04 01:10:04 +0100600{
Alexander Graf7b78d642018-11-30 21:24:56 +0100601 u64 ram_top = board_get_usable_ram_top(0) & ~EFI_PAGE_MASK;
Alexander Graf5d009952016-03-04 01:10:04 +0100602 int i;
603
Heinrich Schuchardt23f5f4a2019-01-05 23:41:36 +0100604 /*
605 * ram_top is just outside mapped memory. So use an offset of one for
606 * mapping the sandbox address.
607 */
608 ram_top = (uintptr_t)map_sysmem(ram_top - 1, 0) + 1;
609
Alexander Graf7b78d642018-11-30 21:24:56 +0100610 /* Fix for 32bit targets with ram_top at 4G */
611 if (!ram_top)
612 ram_top = 0x100000000ULL;
613
Alexander Graf5d009952016-03-04 01:10:04 +0100614 /* Add RAM */
615 for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
Heinrich Schuchardt108bdff2018-11-12 18:55:24 +0100616 u64 ram_end, ram_start, pages;
Alexander Graf5d009952016-03-04 01:10:04 +0100617
Heinrich Schuchardt49759742018-11-18 17:58:46 +0100618 ram_start = (uintptr_t)map_sysmem(gd->bd->bi_dram[i].start, 0);
Heinrich Schuchardt108bdff2018-11-12 18:55:24 +0100619 ram_end = ram_start + gd->bd->bi_dram[i].size;
620
621 /* Remove partial pages */
622 ram_end &= ~EFI_PAGE_MASK;
623 ram_start = (ram_start + EFI_PAGE_MASK) & ~EFI_PAGE_MASK;
624
Alexander Graf7b78d642018-11-30 21:24:56 +0100625 if (ram_end <= ram_start) {
626 /* Invalid mapping, keep going. */
627 continue;
628 }
Heinrich Schuchardt108bdff2018-11-12 18:55:24 +0100629
Alexander Graf7b78d642018-11-30 21:24:56 +0100630 pages = (ram_end - ram_start) >> EFI_PAGE_SHIFT;
631
632 efi_add_memory_map(ram_start, pages,
633 EFI_CONVENTIONAL_MEMORY, false);
634
635 /*
636 * Boards may indicate to the U-Boot memory core that they
637 * can not support memory above ram_top. Let's honor this
638 * in the efi_loader subsystem too by declaring any memory
639 * above ram_top as "already occupied by firmware".
640 */
641 if (ram_top < ram_start) {
642 /* ram_top is before this region, reserve all */
Heinrich Schuchardt108bdff2018-11-12 18:55:24 +0100643 efi_add_memory_map(ram_start, pages,
Alexander Graf7b78d642018-11-30 21:24:56 +0100644 EFI_BOOT_SERVICES_DATA, true);
645 } else if ((ram_top >= ram_start) && (ram_top < ram_end)) {
646 /* ram_top is inside this region, reserve parts */
647 pages = (ram_end - ram_top) >> EFI_PAGE_SHIFT;
648
649 efi_add_memory_map(ram_top, pages,
650 EFI_BOOT_SERVICES_DATA, true);
Heinrich Schuchardt108bdff2018-11-12 18:55:24 +0100651 }
Alexander Graf5d009952016-03-04 01:10:04 +0100652 }
York Sun42633742017-03-06 09:02:27 -0800653}
654
Simon Glass69259b82018-06-18 17:23:12 +0200655/* Add memory regions for U-Boot's memory and for the runtime services code */
656static void add_u_boot_and_runtime(void)
York Sun42633742017-03-06 09:02:27 -0800657{
658 unsigned long runtime_start, runtime_end, runtime_pages;
Alexander Graf7a82c302018-09-17 13:54:33 +0200659 unsigned long runtime_mask = EFI_PAGE_MASK;
York Sun42633742017-03-06 09:02:27 -0800660 unsigned long uboot_start, uboot_pages;
661 unsigned long uboot_stack_size = 16 * 1024 * 1024;
662
Alexander Graf5d009952016-03-04 01:10:04 +0100663 /* Add U-Boot */
664 uboot_start = (gd->start_addr_sp - uboot_stack_size) & ~EFI_PAGE_MASK;
665 uboot_pages = (gd->ram_top - uboot_start) >> EFI_PAGE_SHIFT;
666 efi_add_memory_map(uboot_start, uboot_pages, EFI_LOADER_DATA, false);
667
Alexander Graf7a82c302018-09-17 13:54:33 +0200668#if defined(__aarch64__)
669 /*
670 * Runtime Services must be 64KiB aligned according to the
671 * "AArch64 Platforms" section in the UEFI spec (2.7+).
672 */
673
674 runtime_mask = SZ_64K - 1;
675#endif
676
677 /*
678 * Add Runtime Services. We mark surrounding boottime code as runtime as
679 * well to fulfill the runtime alignment constraints but avoid padding.
680 */
681 runtime_start = (ulong)&__efi_runtime_start & ~runtime_mask;
Alexander Graf5d009952016-03-04 01:10:04 +0100682 runtime_end = (ulong)&__efi_runtime_stop;
Alexander Graf7a82c302018-09-17 13:54:33 +0200683 runtime_end = (runtime_end + runtime_mask) & ~runtime_mask;
Alexander Graf5d009952016-03-04 01:10:04 +0100684 runtime_pages = (runtime_end - runtime_start) >> EFI_PAGE_SHIFT;
685 efi_add_memory_map(runtime_start, runtime_pages,
686 EFI_RUNTIME_SERVICES_CODE, false);
Simon Glass69259b82018-06-18 17:23:12 +0200687}
688
689int efi_memory_init(void)
690{
691 efi_add_known_memory();
692
693 if (!IS_ENABLED(CONFIG_SANDBOX))
694 add_u_boot_and_runtime();
Alexander Graf5d009952016-03-04 01:10:04 +0100695
Alexander Graf51735ae2016-05-11 18:25:48 +0200696#ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
697 /* Request a 32bit 64MB bounce buffer region */
698 uint64_t efi_bounce_buffer_addr = 0xffffffff;
699
Heinrich Schuchardte09159c2018-05-26 10:32:27 +0200700 if (efi_allocate_pages(EFI_ALLOCATE_MAX_ADDRESS, EFI_LOADER_DATA,
Alexander Graf51735ae2016-05-11 18:25:48 +0200701 (64 * 1024 * 1024) >> EFI_PAGE_SHIFT,
702 &efi_bounce_buffer_addr) != EFI_SUCCESS)
703 return -1;
704
705 efi_bounce_buffer = (void*)(uintptr_t)efi_bounce_buffer_addr;
706#endif
707
Alexander Graf5d009952016-03-04 01:10:04 +0100708 return 0;
709}