mm.c 19 KB

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  1. /* mm.c - generic EFI memory management */
  2. /*
  3. * GRUB -- GRand Unified Bootloader
  4. * Copyright (C) 2006,2007,2008,2009 Free Software Foundation, Inc.
  5. *
  6. * GRUB is free software: you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation, either version 3 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * GRUB is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with GRUB. If not, see <http://www.gnu.org/licenses/>.
  18. */
  19. #include <grub/misc.h>
  20. #include <grub/mm.h>
  21. #include <grub/efi/api.h>
  22. #include <grub/efi/efi.h>
  23. #include <grub/cpu/efi/memory.h>
  24. #if defined (__i386__) || defined (__x86_64__)
  25. #include <grub/pci.h>
  26. #endif
  27. #define NEXT_MEMORY_DESCRIPTOR(desc, size) \
  28. ((grub_efi_memory_descriptor_t *) ((char *) (desc) + (size)))
  29. #define BYTES_TO_PAGES(bytes) (((bytes) + 0xfff) >> 12)
  30. #define BYTES_TO_PAGES_DOWN(bytes) ((bytes) >> 12)
  31. #define PAGES_TO_BYTES(pages) ((pages) << 12)
  32. /* The size of a memory map obtained from the firmware. This must be
  33. a multiplier of 4KB. */
  34. #define MEMORY_MAP_SIZE 0x3000
  35. /* The default heap size for GRUB itself in bytes. */
  36. #define DEFAULT_HEAP_SIZE 0x2000000
  37. static void *finish_mmap_buf = 0;
  38. static grub_efi_uintn_t finish_mmap_size = 0;
  39. static grub_efi_uintn_t finish_key = 0;
  40. static grub_efi_uintn_t finish_desc_size;
  41. static grub_efi_uint32_t finish_desc_version;
  42. int grub_efi_is_finished = 0;
  43. /*
  44. * We need to roll back EFI allocations on exit. Remember allocations that
  45. * we'll free on exit.
  46. */
  47. struct efi_allocation;
  48. struct efi_allocation {
  49. grub_efi_physical_address_t address;
  50. grub_efi_uint64_t pages;
  51. struct efi_allocation *next;
  52. };
  53. static struct efi_allocation *efi_allocated_memory;
  54. static void
  55. grub_efi_store_alloc (grub_efi_physical_address_t address,
  56. grub_efi_uintn_t pages)
  57. {
  58. grub_efi_boot_services_t *b;
  59. struct efi_allocation *alloc;
  60. grub_efi_status_t status;
  61. b = grub_efi_system_table->boot_services;
  62. status = b->allocate_pool (GRUB_EFI_LOADER_DATA,
  63. sizeof(*alloc), (void**)&alloc);
  64. if (status == GRUB_EFI_SUCCESS)
  65. {
  66. alloc->next = efi_allocated_memory;
  67. alloc->address = address;
  68. alloc->pages = pages;
  69. efi_allocated_memory = alloc;
  70. }
  71. else
  72. grub_printf ("Could not malloc memory to remember EFI allocation. "
  73. "Exiting GRUB won't free all memory.\n");
  74. }
  75. static void
  76. grub_efi_drop_alloc (grub_efi_physical_address_t address,
  77. grub_efi_uintn_t pages)
  78. {
  79. struct efi_allocation *ea, *eap;
  80. grub_efi_boot_services_t *b;
  81. b = grub_efi_system_table->boot_services;
  82. for (eap = NULL, ea = efi_allocated_memory; ea; eap = ea, ea = ea->next)
  83. {
  84. if (ea->address != address || ea->pages != pages)
  85. continue;
  86. /* Remove the current entry from the list. */
  87. if (eap)
  88. eap->next = ea->next;
  89. else
  90. efi_allocated_memory = ea->next;
  91. /* Then free the memory backing it. */
  92. b->free_pool (ea);
  93. /* And leave, we're done. */
  94. break;
  95. }
  96. }
  97. /* Allocate pages. Return the pointer to the first of allocated pages. */
  98. void *
  99. grub_efi_allocate_pages_real (grub_efi_physical_address_t address,
  100. grub_efi_uintn_t pages,
  101. grub_efi_allocate_type_t alloctype,
  102. grub_efi_memory_type_t memtype)
  103. {
  104. grub_efi_status_t status;
  105. grub_efi_boot_services_t *b;
  106. /* Limit the memory access to less than 4GB for 32-bit platforms. */
  107. if (address > GRUB_EFI_MAX_USABLE_ADDRESS)
  108. {
  109. char inv_addr[17], max_addr[17]; /* log16(2^64) = 16, plus NUL. */
  110. grub_snprintf (inv_addr, sizeof (inv_addr) - 1, "%" PRIxGRUB_UINT64_T,
  111. address);
  112. grub_snprintf (max_addr, sizeof (max_addr) - 1, "%" PRIxGRUB_UINT64_T,
  113. (grub_efi_uint64_t) GRUB_EFI_MAX_USABLE_ADDRESS);
  114. grub_error (GRUB_ERR_BAD_ARGUMENT,
  115. N_("invalid memory address (0x%s > 0x%s)"), inv_addr, max_addr);
  116. return NULL;
  117. }
  118. b = grub_efi_system_table->boot_services;
  119. status = b->allocate_pages (alloctype, memtype, pages, &address);
  120. if (status != GRUB_EFI_SUCCESS)
  121. {
  122. grub_error (GRUB_ERR_OUT_OF_MEMORY, N_("out of memory"));
  123. return NULL;
  124. }
  125. if (address == 0)
  126. {
  127. /* Uggh, the address 0 was allocated... This is too annoying,
  128. so reallocate another one. */
  129. address = GRUB_EFI_MAX_USABLE_ADDRESS;
  130. status = b->allocate_pages (alloctype, memtype, pages, &address);
  131. grub_efi_free_pages (0, pages);
  132. if (status != GRUB_EFI_SUCCESS)
  133. {
  134. grub_error (GRUB_ERR_OUT_OF_MEMORY, N_("out of memory"));
  135. return NULL;
  136. }
  137. }
  138. grub_efi_store_alloc (address, pages);
  139. return (void *) ((grub_addr_t) address);
  140. }
  141. void *
  142. grub_efi_allocate_any_pages (grub_efi_uintn_t pages)
  143. {
  144. return grub_efi_allocate_pages_real (GRUB_EFI_MAX_USABLE_ADDRESS,
  145. pages, GRUB_EFI_ALLOCATE_MAX_ADDRESS,
  146. GRUB_EFI_LOADER_DATA);
  147. }
  148. void *
  149. grub_efi_allocate_fixed (grub_efi_physical_address_t address,
  150. grub_efi_uintn_t pages)
  151. {
  152. return grub_efi_allocate_pages_real (address, pages,
  153. GRUB_EFI_ALLOCATE_ADDRESS,
  154. GRUB_EFI_LOADER_DATA);
  155. }
  156. /* Free pages starting from ADDRESS. */
  157. void
  158. grub_efi_free_pages (grub_efi_physical_address_t address,
  159. grub_efi_uintn_t pages)
  160. {
  161. grub_efi_boot_services_t *b;
  162. b = grub_efi_system_table->boot_services;
  163. b->free_pages (address, pages);
  164. grub_efi_drop_alloc (address, pages);
  165. }
  166. #if defined (__i386__) || defined (__x86_64__)
  167. /* Helper for stop_broadcom. */
  168. static int
  169. find_card (grub_pci_device_t dev, grub_pci_id_t pciid,
  170. void *data __attribute__ ((unused)))
  171. {
  172. grub_pci_address_t addr;
  173. grub_uint8_t cap;
  174. grub_uint16_t pm_state;
  175. if ((pciid & 0xffff) != GRUB_PCI_VENDOR_BROADCOM)
  176. return 0;
  177. addr = grub_pci_make_address (dev, GRUB_PCI_REG_CLASS);
  178. if (grub_pci_read (addr) >> 24 != GRUB_PCI_CLASS_NETWORK)
  179. return 0;
  180. cap = grub_pci_find_capability (dev, GRUB_PCI_CAP_POWER_MANAGEMENT);
  181. if (!cap)
  182. return 0;
  183. addr = grub_pci_make_address (dev, cap + 4);
  184. pm_state = grub_pci_read_word (addr);
  185. pm_state = pm_state | 0x03;
  186. grub_pci_write_word (addr, pm_state);
  187. grub_pci_read_word (addr);
  188. return 0;
  189. }
  190. static void
  191. stop_broadcom (void)
  192. {
  193. grub_pci_iterate (find_card, NULL);
  194. }
  195. #endif
  196. grub_err_t
  197. grub_efi_finish_boot_services (grub_efi_uintn_t *outbuf_size, void *outbuf,
  198. grub_efi_uintn_t *map_key,
  199. grub_efi_uintn_t *efi_desc_size,
  200. grub_efi_uint32_t *efi_desc_version)
  201. {
  202. grub_efi_boot_services_t *b;
  203. grub_efi_status_t status;
  204. #if defined (__i386__) || defined (__x86_64__)
  205. const grub_uint16_t apple[] = { 'A', 'p', 'p', 'l', 'e' };
  206. int is_apple;
  207. is_apple = (grub_memcmp (grub_efi_system_table->firmware_vendor,
  208. apple, sizeof (apple)) == 0);
  209. #endif
  210. while (1)
  211. {
  212. if (grub_efi_get_memory_map (&finish_mmap_size, finish_mmap_buf, &finish_key,
  213. &finish_desc_size, &finish_desc_version) < 0)
  214. return grub_error (GRUB_ERR_IO, "couldn't retrieve memory map");
  215. if (outbuf && *outbuf_size < finish_mmap_size)
  216. return grub_error (GRUB_ERR_IO, "memory map buffer is too small");
  217. finish_mmap_buf = grub_malloc (finish_mmap_size);
  218. if (!finish_mmap_buf)
  219. return grub_errno;
  220. if (grub_efi_get_memory_map (&finish_mmap_size, finish_mmap_buf, &finish_key,
  221. &finish_desc_size, &finish_desc_version) <= 0)
  222. {
  223. grub_free (finish_mmap_buf);
  224. finish_mmap_buf = NULL;
  225. return grub_error (GRUB_ERR_IO, "couldn't retrieve memory map");
  226. }
  227. b = grub_efi_system_table->boot_services;
  228. status = b->exit_boot_services (grub_efi_image_handle, finish_key);
  229. if (status == GRUB_EFI_SUCCESS)
  230. break;
  231. if (status != GRUB_EFI_INVALID_PARAMETER)
  232. {
  233. grub_free (finish_mmap_buf);
  234. finish_mmap_buf = NULL;
  235. return grub_error (GRUB_ERR_IO, "couldn't terminate EFI services");
  236. }
  237. grub_free (finish_mmap_buf);
  238. finish_mmap_buf = NULL;
  239. grub_printf ("Trying to terminate EFI services again\n");
  240. }
  241. grub_efi_is_finished = 1;
  242. if (outbuf_size)
  243. *outbuf_size = finish_mmap_size;
  244. if (outbuf)
  245. grub_memcpy (outbuf, finish_mmap_buf, finish_mmap_size);
  246. if (map_key)
  247. *map_key = finish_key;
  248. if (efi_desc_size)
  249. *efi_desc_size = finish_desc_size;
  250. if (efi_desc_version)
  251. *efi_desc_version = finish_desc_version;
  252. #if defined (__i386__) || defined (__x86_64__)
  253. if (is_apple)
  254. stop_broadcom ();
  255. #endif
  256. return GRUB_ERR_NONE;
  257. }
  258. /*
  259. * To obtain the UEFI memory map, we must pass a buffer of sufficient size
  260. * to hold the entire map. This function returns a sane start value for
  261. * buffer size.
  262. */
  263. grub_efi_uintn_t
  264. grub_efi_find_mmap_size (void)
  265. {
  266. grub_efi_uintn_t mmap_size = 0;
  267. grub_efi_uintn_t desc_size;
  268. if (grub_efi_get_memory_map (&mmap_size, NULL, NULL, &desc_size, 0) < 0)
  269. {
  270. grub_error (GRUB_ERR_IO, "cannot get EFI memory map size");
  271. return 0;
  272. }
  273. /*
  274. * Add an extra page, since UEFI can alter the memory map itself on
  275. * callbacks or explicit calls, including console output.
  276. */
  277. return ALIGN_UP (mmap_size + GRUB_EFI_PAGE_SIZE, GRUB_EFI_PAGE_SIZE);
  278. }
  279. /* Get the memory map as defined in the EFI spec. Return 1 if successful,
  280. return 0 if partial, or return -1 if an error occurs. */
  281. int
  282. grub_efi_get_memory_map (grub_efi_uintn_t *memory_map_size,
  283. grub_efi_memory_descriptor_t *memory_map,
  284. grub_efi_uintn_t *map_key,
  285. grub_efi_uintn_t *descriptor_size,
  286. grub_efi_uint32_t *descriptor_version)
  287. {
  288. grub_efi_status_t status;
  289. grub_efi_boot_services_t *b;
  290. grub_efi_uintn_t key;
  291. grub_efi_uint32_t version;
  292. grub_efi_uintn_t size;
  293. if (grub_efi_is_finished)
  294. {
  295. int ret = 1;
  296. if (memory_map != NULL)
  297. {
  298. if (*memory_map_size < finish_mmap_size)
  299. {
  300. grub_memcpy (memory_map, finish_mmap_buf, *memory_map_size);
  301. ret = 0;
  302. }
  303. else
  304. grub_memcpy (memory_map, finish_mmap_buf, finish_mmap_size);
  305. }
  306. else
  307. {
  308. /*
  309. * Incomplete, no buffer to copy into, same as
  310. * GRUB_EFI_BUFFER_TOO_SMALL below.
  311. */
  312. ret = 0;
  313. }
  314. *memory_map_size = finish_mmap_size;
  315. if (map_key)
  316. *map_key = finish_key;
  317. if (descriptor_size)
  318. *descriptor_size = finish_desc_size;
  319. if (descriptor_version)
  320. *descriptor_version = finish_desc_version;
  321. return ret;
  322. }
  323. /* Allow some parameters to be missing. */
  324. if (! map_key)
  325. map_key = &key;
  326. if (! descriptor_version)
  327. descriptor_version = &version;
  328. if (! descriptor_size)
  329. descriptor_size = &size;
  330. b = grub_efi_system_table->boot_services;
  331. status = b->get_memory_map (memory_map_size, memory_map, map_key,
  332. descriptor_size, descriptor_version);
  333. if (*descriptor_size == 0)
  334. *descriptor_size = sizeof (grub_efi_memory_descriptor_t);
  335. if (status == GRUB_EFI_SUCCESS)
  336. return 1;
  337. else if (status == GRUB_EFI_BUFFER_TOO_SMALL)
  338. return 0;
  339. else
  340. return -1;
  341. }
  342. /* Sort the memory map in place. */
  343. static void
  344. sort_memory_map (grub_efi_memory_descriptor_t *memory_map,
  345. grub_efi_uintn_t desc_size,
  346. grub_efi_memory_descriptor_t *memory_map_end)
  347. {
  348. grub_efi_memory_descriptor_t *d1;
  349. grub_efi_memory_descriptor_t *d2;
  350. for (d1 = memory_map;
  351. d1 < memory_map_end;
  352. d1 = NEXT_MEMORY_DESCRIPTOR (d1, desc_size))
  353. {
  354. grub_efi_memory_descriptor_t *max_desc = d1;
  355. for (d2 = NEXT_MEMORY_DESCRIPTOR (d1, desc_size);
  356. d2 < memory_map_end;
  357. d2 = NEXT_MEMORY_DESCRIPTOR (d2, desc_size))
  358. {
  359. if (max_desc->num_pages < d2->num_pages)
  360. max_desc = d2;
  361. }
  362. if (max_desc != d1)
  363. {
  364. grub_efi_memory_descriptor_t tmp;
  365. tmp = *d1;
  366. *d1 = *max_desc;
  367. *max_desc = tmp;
  368. }
  369. }
  370. }
  371. /* Filter the descriptors. GRUB needs only available memory. */
  372. static grub_efi_memory_descriptor_t *
  373. filter_memory_map (grub_efi_memory_descriptor_t *memory_map,
  374. grub_efi_memory_descriptor_t *filtered_memory_map,
  375. grub_efi_uintn_t desc_size,
  376. grub_efi_memory_descriptor_t *memory_map_end)
  377. {
  378. grub_efi_memory_descriptor_t *desc;
  379. grub_efi_memory_descriptor_t *filtered_desc;
  380. for (desc = memory_map, filtered_desc = filtered_memory_map;
  381. desc < memory_map_end;
  382. desc = NEXT_MEMORY_DESCRIPTOR (desc, desc_size))
  383. {
  384. if (desc->type == GRUB_EFI_CONVENTIONAL_MEMORY
  385. #if 1
  386. && desc->physical_start <= GRUB_EFI_MAX_USABLE_ADDRESS
  387. #endif
  388. && desc->physical_start + PAGES_TO_BYTES (desc->num_pages) > 0x100000
  389. && desc->num_pages != 0)
  390. {
  391. grub_memcpy (filtered_desc, desc, desc_size);
  392. /* Avoid less than 1MB, because some loaders seem to be confused. */
  393. if (desc->physical_start < 0x100000)
  394. {
  395. desc->num_pages -= BYTES_TO_PAGES (0x100000
  396. - desc->physical_start);
  397. desc->physical_start = 0x100000;
  398. }
  399. #if 1
  400. if (BYTES_TO_PAGES (filtered_desc->physical_start)
  401. + filtered_desc->num_pages
  402. > BYTES_TO_PAGES_DOWN (GRUB_EFI_MAX_USABLE_ADDRESS))
  403. filtered_desc->num_pages
  404. = (BYTES_TO_PAGES_DOWN (GRUB_EFI_MAX_USABLE_ADDRESS)
  405. - BYTES_TO_PAGES (filtered_desc->physical_start));
  406. #endif
  407. if (filtered_desc->num_pages == 0)
  408. continue;
  409. filtered_desc = NEXT_MEMORY_DESCRIPTOR (filtered_desc, desc_size);
  410. }
  411. }
  412. return filtered_desc;
  413. }
  414. /* Add memory regions. */
  415. static grub_err_t
  416. add_memory_regions (grub_efi_memory_descriptor_t *memory_map,
  417. grub_efi_uintn_t desc_size,
  418. grub_efi_memory_descriptor_t *memory_map_end,
  419. grub_efi_uint64_t required_pages,
  420. unsigned int flags)
  421. {
  422. grub_efi_memory_descriptor_t *desc;
  423. for (desc = memory_map;
  424. desc < memory_map_end;
  425. desc = NEXT_MEMORY_DESCRIPTOR (desc, desc_size))
  426. {
  427. grub_efi_uint64_t pages;
  428. grub_efi_physical_address_t start;
  429. void *addr;
  430. start = desc->physical_start;
  431. pages = desc->num_pages;
  432. if (pages < required_pages && (flags & GRUB_MM_ADD_REGION_CONSECUTIVE))
  433. continue;
  434. if (pages > required_pages)
  435. {
  436. start += PAGES_TO_BYTES (pages - required_pages);
  437. pages = required_pages;
  438. }
  439. addr = grub_efi_allocate_pages_real (start, pages,
  440. GRUB_EFI_ALLOCATE_ADDRESS,
  441. GRUB_EFI_LOADER_CODE);
  442. if (! addr)
  443. return grub_error (GRUB_ERR_OUT_OF_MEMORY,
  444. "Memory starting at %p (%u pages) marked as free, but EFI would not allocate",
  445. (void *) ((grub_addr_t) start), (unsigned) pages);
  446. grub_mm_init_region (addr, PAGES_TO_BYTES (pages));
  447. required_pages -= pages;
  448. if (required_pages == 0)
  449. break;
  450. }
  451. if (required_pages > 0)
  452. return grub_error (GRUB_ERR_OUT_OF_MEMORY,
  453. "could not allocate all requested memory: %" PRIuGRUB_UINT64_T " pages still required after iterating EFI memory map",
  454. required_pages);
  455. return GRUB_ERR_NONE;
  456. }
  457. void
  458. grub_efi_memory_fini (void)
  459. {
  460. /*
  461. * Free all stale allocations. grub_efi_free_pages() will remove
  462. * the found entry from the list and it will always find the first
  463. * list entry (efi_allocated_memory is the list start). Hence we
  464. * remove all entries from the list until none is left altogether.
  465. */
  466. while (efi_allocated_memory)
  467. grub_efi_free_pages (efi_allocated_memory->address,
  468. efi_allocated_memory->pages);
  469. }
  470. #if 0
  471. /* Print the memory map. */
  472. static void
  473. print_memory_map (grub_efi_memory_descriptor_t *memory_map,
  474. grub_efi_uintn_t desc_size,
  475. grub_efi_memory_descriptor_t *memory_map_end)
  476. {
  477. grub_efi_memory_descriptor_t *desc;
  478. int i;
  479. for (desc = memory_map, i = 0;
  480. desc < memory_map_end;
  481. desc = NEXT_MEMORY_DESCRIPTOR (desc, desc_size), i++)
  482. {
  483. grub_printf ("MD: t=%x, p=%llx, v=%llx, n=%llx, a=%llx\n",
  484. desc->type, desc->physical_start, desc->virtual_start,
  485. desc->num_pages, desc->attribute);
  486. }
  487. }
  488. #endif
  489. static grub_err_t
  490. grub_efi_mm_add_regions (grub_size_t required_bytes, unsigned int flags)
  491. {
  492. grub_efi_memory_descriptor_t *memory_map;
  493. grub_efi_memory_descriptor_t *memory_map_end;
  494. grub_efi_memory_descriptor_t *filtered_memory_map;
  495. grub_efi_memory_descriptor_t *filtered_memory_map_end;
  496. grub_efi_uintn_t map_size;
  497. grub_efi_uintn_t desc_size;
  498. grub_err_t err;
  499. int mm_status;
  500. /* Prepare a memory region to store two memory maps. */
  501. memory_map = grub_efi_allocate_any_pages (2 * BYTES_TO_PAGES (MEMORY_MAP_SIZE));
  502. if (! memory_map)
  503. return grub_error (GRUB_ERR_OUT_OF_MEMORY, "cannot allocate memory for memory map");
  504. /* Obtain descriptors for available memory. */
  505. map_size = MEMORY_MAP_SIZE;
  506. mm_status = grub_efi_get_memory_map (&map_size, memory_map, 0, &desc_size, 0);
  507. if (mm_status == 0)
  508. {
  509. grub_efi_free_pages
  510. ((grub_efi_physical_address_t) ((grub_addr_t) memory_map),
  511. 2 * BYTES_TO_PAGES (MEMORY_MAP_SIZE));
  512. /* Freeing/allocating operations may increase memory map size. */
  513. map_size += desc_size * 32;
  514. memory_map = grub_efi_allocate_any_pages (2 * BYTES_TO_PAGES (map_size));
  515. if (! memory_map)
  516. return grub_error (GRUB_ERR_OUT_OF_MEMORY, "cannot allocate memory for new memory map");
  517. mm_status = grub_efi_get_memory_map (&map_size, memory_map, 0,
  518. &desc_size, 0);
  519. }
  520. if (mm_status < 0)
  521. return grub_error (GRUB_ERR_OUT_OF_MEMORY, "error fetching memory map from EFI");
  522. memory_map_end = NEXT_MEMORY_DESCRIPTOR (memory_map, map_size);
  523. filtered_memory_map = memory_map_end;
  524. filtered_memory_map_end = filter_memory_map (memory_map, filtered_memory_map,
  525. desc_size, memory_map_end);
  526. /* Sort the filtered descriptors, so that GRUB can allocate pages
  527. from smaller regions. */
  528. sort_memory_map (filtered_memory_map, desc_size, filtered_memory_map_end);
  529. /* Allocate memory regions for GRUB's memory management. */
  530. err = add_memory_regions (filtered_memory_map, desc_size,
  531. filtered_memory_map_end,
  532. BYTES_TO_PAGES (required_bytes),
  533. flags);
  534. if (err != GRUB_ERR_NONE)
  535. return err;
  536. #if 0
  537. /* For debug. */
  538. map_size = MEMORY_MAP_SIZE;
  539. if (grub_efi_get_memory_map (&map_size, memory_map, 0, &desc_size, 0) < 0)
  540. grub_fatal ("cannot get memory map");
  541. grub_printf ("printing memory map\n");
  542. print_memory_map (memory_map, desc_size,
  543. NEXT_MEMORY_DESCRIPTOR (memory_map, map_size));
  544. grub_fatal ("Debug. ");
  545. #endif
  546. /* Release the memory maps. */
  547. grub_efi_free_pages ((grub_addr_t) memory_map,
  548. 2 * BYTES_TO_PAGES (MEMORY_MAP_SIZE));
  549. return GRUB_ERR_NONE;
  550. }
  551. void
  552. grub_efi_mm_init (void)
  553. {
  554. if (grub_efi_mm_add_regions (DEFAULT_HEAP_SIZE, GRUB_MM_ADD_REGION_NONE) != GRUB_ERR_NONE)
  555. grub_fatal ("%s", grub_errmsg);
  556. grub_mm_add_region_fn = grub_efi_mm_add_regions;
  557. }
  558. #if defined (__aarch64__) || defined (__arm__) || defined (__riscv) || \
  559. defined (__loongarch__)
  560. grub_err_t
  561. grub_efi_get_ram_base(grub_addr_t *base_addr)
  562. {
  563. grub_efi_memory_descriptor_t *memory_map, *desc;
  564. grub_efi_uintn_t memory_map_size, desc_size;
  565. int ret;
  566. memory_map_size = grub_efi_find_mmap_size();
  567. memory_map = grub_malloc (memory_map_size);
  568. if (! memory_map)
  569. return GRUB_ERR_OUT_OF_MEMORY;
  570. ret = grub_efi_get_memory_map (&memory_map_size, memory_map, NULL,
  571. &desc_size, NULL);
  572. if (ret < 1)
  573. return GRUB_ERR_BUG;
  574. for (desc = memory_map, *base_addr = GRUB_EFI_MAX_USABLE_ADDRESS;
  575. (grub_addr_t) desc < ((grub_addr_t) memory_map + memory_map_size);
  576. desc = NEXT_MEMORY_DESCRIPTOR (desc, desc_size))
  577. if (desc->attribute & GRUB_EFI_MEMORY_WB)
  578. *base_addr = grub_min (*base_addr, desc->physical_start);
  579. grub_free(memory_map);
  580. return GRUB_ERR_NONE;
  581. }
  582. #endif