xref: /rk3399_rockchip-uboot/lib/efi_loader/efi_memory.c (revision 852efbf5bd3047b12c1926564d792a7a1cea9eac)
15d00995cSAlexander Graf /*
25d00995cSAlexander Graf  *  EFI application memory management
35d00995cSAlexander Graf  *
45d00995cSAlexander Graf  *  Copyright (c) 2016 Alexander Graf
55d00995cSAlexander Graf  *
65d00995cSAlexander Graf  *  SPDX-License-Identifier:     GPL-2.0+
75d00995cSAlexander Graf  */
85d00995cSAlexander Graf 
95d00995cSAlexander Graf #include <common.h>
105d00995cSAlexander Graf #include <efi_loader.h>
115d00995cSAlexander Graf #include <malloc.h>
125d00995cSAlexander Graf #include <asm/global_data.h>
135d00995cSAlexander Graf #include <libfdt_env.h>
1438ce65e1SAlexander Graf #include <linux/list_sort.h>
155d00995cSAlexander Graf #include <inttypes.h>
165d00995cSAlexander Graf #include <watchdog.h>
175d00995cSAlexander Graf 
185d00995cSAlexander Graf DECLARE_GLOBAL_DATA_PTR;
195d00995cSAlexander Graf 
205d00995cSAlexander Graf struct efi_mem_list {
215d00995cSAlexander Graf 	struct list_head link;
225d00995cSAlexander Graf 	struct efi_mem_desc desc;
235d00995cSAlexander Graf };
245d00995cSAlexander Graf 
2574c16accSAlexander Graf #define EFI_CARVE_NO_OVERLAP		-1
2674c16accSAlexander Graf #define EFI_CARVE_LOOP_AGAIN		-2
2774c16accSAlexander Graf #define EFI_CARVE_OVERLAPS_NONRAM	-3
2874c16accSAlexander Graf 
295d00995cSAlexander Graf /* This list contains all memory map items */
305d00995cSAlexander Graf LIST_HEAD(efi_mem);
315d00995cSAlexander Graf 
3251735ae0SAlexander Graf #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
3351735ae0SAlexander Graf void *efi_bounce_buffer;
3451735ae0SAlexander Graf #endif
3551735ae0SAlexander Graf 
365d00995cSAlexander Graf /*
3738ce65e1SAlexander Graf  * Sorts the memory list from highest address to lowest address
3838ce65e1SAlexander Graf  *
3938ce65e1SAlexander Graf  * When allocating memory we should always start from the highest
4038ce65e1SAlexander Graf  * address chunk, so sort the memory list such that the first list
4138ce65e1SAlexander Graf  * iterator gets the highest address and goes lower from there.
4238ce65e1SAlexander Graf  */
4338ce65e1SAlexander Graf static int efi_mem_cmp(void *priv, struct list_head *a, struct list_head *b)
4438ce65e1SAlexander Graf {
4538ce65e1SAlexander Graf 	struct efi_mem_list *mema = list_entry(a, struct efi_mem_list, link);
4638ce65e1SAlexander Graf 	struct efi_mem_list *memb = list_entry(b, struct efi_mem_list, link);
4738ce65e1SAlexander Graf 
4838ce65e1SAlexander Graf 	if (mema->desc.physical_start == memb->desc.physical_start)
4938ce65e1SAlexander Graf 		return 0;
5038ce65e1SAlexander Graf 	else if (mema->desc.physical_start < memb->desc.physical_start)
5138ce65e1SAlexander Graf 		return 1;
5238ce65e1SAlexander Graf 	else
5338ce65e1SAlexander Graf 		return -1;
5438ce65e1SAlexander Graf }
5538ce65e1SAlexander Graf 
5638ce65e1SAlexander Graf static void efi_mem_sort(void)
5738ce65e1SAlexander Graf {
5838ce65e1SAlexander Graf 	list_sort(NULL, &efi_mem, efi_mem_cmp);
5938ce65e1SAlexander Graf }
6038ce65e1SAlexander Graf 
6138ce65e1SAlexander Graf /*
625d00995cSAlexander Graf  * Unmaps all memory occupied by the carve_desc region from the
635d00995cSAlexander Graf  * list entry pointed to by map.
645d00995cSAlexander Graf  *
65*852efbf5SStefan Brüns  * Returns EFI_CARVE_NO_OVERLAP if the regions don't overlap.
66*852efbf5SStefan Brüns  * Returns EFI_CARVE_OVERLAPS_NONRAM if the carve and map overlap,
67*852efbf5SStefan Brüns  *    and the map contains anything but free ram.
68*852efbf5SStefan Brüns  *    (only when overlap_only_ram is true)
69*852efbf5SStefan Brüns  * Returns EFI_CARVE_LOOP_AGAIN if the mapping list should be traversed
70*852efbf5SStefan Brüns  *    again, as it has been altered
71*852efbf5SStefan Brüns  * Returns the number of overlapping pages. The pages are removed from
72*852efbf5SStefan Brüns  *     the mapping list.
73*852efbf5SStefan Brüns  *
74*852efbf5SStefan Brüns  * In case of EFI_CARVE_OVERLAPS_NONRAM it is the callers responsibility
75*852efbf5SStefan Brüns  * to readd the already carved out pages to the mapping.
765d00995cSAlexander Graf  */
775d00995cSAlexander Graf static int efi_mem_carve_out(struct efi_mem_list *map,
785d00995cSAlexander Graf 			     struct efi_mem_desc *carve_desc,
795d00995cSAlexander Graf 			     bool overlap_only_ram)
805d00995cSAlexander Graf {
815d00995cSAlexander Graf 	struct efi_mem_list *newmap;
825d00995cSAlexander Graf 	struct efi_mem_desc *map_desc = &map->desc;
835d00995cSAlexander Graf 	uint64_t map_start = map_desc->physical_start;
845d00995cSAlexander Graf 	uint64_t map_end = map_start + (map_desc->num_pages << EFI_PAGE_SHIFT);
855d00995cSAlexander Graf 	uint64_t carve_start = carve_desc->physical_start;
865d00995cSAlexander Graf 	uint64_t carve_end = carve_start +
875d00995cSAlexander Graf 			     (carve_desc->num_pages << EFI_PAGE_SHIFT);
885d00995cSAlexander Graf 
895d00995cSAlexander Graf 	/* check whether we're overlapping */
905d00995cSAlexander Graf 	if ((carve_end <= map_start) || (carve_start >= map_end))
9174c16accSAlexander Graf 		return EFI_CARVE_NO_OVERLAP;
925d00995cSAlexander Graf 
935d00995cSAlexander Graf 	/* We're overlapping with non-RAM, warn the caller if desired */
945d00995cSAlexander Graf 	if (overlap_only_ram && (map_desc->type != EFI_CONVENTIONAL_MEMORY))
9574c16accSAlexander Graf 		return EFI_CARVE_OVERLAPS_NONRAM;
965d00995cSAlexander Graf 
975d00995cSAlexander Graf 	/* Sanitize carve_start and carve_end to lie within our bounds */
985d00995cSAlexander Graf 	carve_start = max(carve_start, map_start);
995d00995cSAlexander Graf 	carve_end = min(carve_end, map_end);
1005d00995cSAlexander Graf 
1015d00995cSAlexander Graf 	/* Carving at the beginning of our map? Just move it! */
1025d00995cSAlexander Graf 	if (carve_start == map_start) {
1035d00995cSAlexander Graf 		if (map_end == carve_end) {
1045d00995cSAlexander Graf 			/* Full overlap, just remove map */
1055d00995cSAlexander Graf 			list_del(&map->link);
1065d00995cSAlexander Graf 		}
1075d00995cSAlexander Graf 
1085d00995cSAlexander Graf 		map_desc->physical_start = carve_end;
1095d00995cSAlexander Graf 		map_desc->num_pages = (map_end - carve_end) >> EFI_PAGE_SHIFT;
11074c16accSAlexander Graf 		return (carve_end - carve_start) >> EFI_PAGE_SHIFT;
1115d00995cSAlexander Graf 	}
1125d00995cSAlexander Graf 
1135d00995cSAlexander Graf 	/*
1145d00995cSAlexander Graf 	 * Overlapping maps, just split the list map at carve_start,
1155d00995cSAlexander Graf 	 * it will get moved or removed in the next iteration.
1165d00995cSAlexander Graf 	 *
1175d00995cSAlexander Graf 	 * [ map_desc |__carve_start__| newmap ]
1185d00995cSAlexander Graf 	 */
1195d00995cSAlexander Graf 
1205d00995cSAlexander Graf 	/* Create a new map from [ carve_start ... map_end ] */
1215d00995cSAlexander Graf 	newmap = calloc(1, sizeof(*newmap));
1225d00995cSAlexander Graf 	newmap->desc = map->desc;
1235d00995cSAlexander Graf 	newmap->desc.physical_start = carve_start;
1245d00995cSAlexander Graf 	newmap->desc.num_pages = (map_end - carve_start) >> EFI_PAGE_SHIFT;
1255d00995cSAlexander Graf         list_add_tail(&newmap->link, &efi_mem);
1265d00995cSAlexander Graf 
1275d00995cSAlexander Graf 	/* Shrink the map to [ map_start ... carve_start ] */
1285d00995cSAlexander Graf 	map_desc->num_pages = (carve_start - map_start) >> EFI_PAGE_SHIFT;
1295d00995cSAlexander Graf 
13074c16accSAlexander Graf 	return EFI_CARVE_LOOP_AGAIN;
1315d00995cSAlexander Graf }
1325d00995cSAlexander Graf 
1335d00995cSAlexander Graf uint64_t efi_add_memory_map(uint64_t start, uint64_t pages, int memory_type,
1345d00995cSAlexander Graf 			    bool overlap_only_ram)
1355d00995cSAlexander Graf {
1365d00995cSAlexander Graf 	struct list_head *lhandle;
1375d00995cSAlexander Graf 	struct efi_mem_list *newlist;
13874c16accSAlexander Graf 	bool carve_again;
13974c16accSAlexander Graf 	uint64_t carved_pages = 0;
1405d00995cSAlexander Graf 
141c933ed94SAndreas Färber 	debug("%s: 0x%" PRIx64 " 0x%" PRIx64 " %d %s\n", __func__,
142c933ed94SAndreas Färber 	      start, pages, memory_type, overlap_only_ram ? "yes" : "no");
143c933ed94SAndreas Färber 
1445d00995cSAlexander Graf 	if (!pages)
1455d00995cSAlexander Graf 		return start;
1465d00995cSAlexander Graf 
1475d00995cSAlexander Graf 	newlist = calloc(1, sizeof(*newlist));
1485d00995cSAlexander Graf 	newlist->desc.type = memory_type;
1495d00995cSAlexander Graf 	newlist->desc.physical_start = start;
1505d00995cSAlexander Graf 	newlist->desc.virtual_start = start;
1515d00995cSAlexander Graf 	newlist->desc.num_pages = pages;
1525d00995cSAlexander Graf 
1535d00995cSAlexander Graf 	switch (memory_type) {
1545d00995cSAlexander Graf 	case EFI_RUNTIME_SERVICES_CODE:
1555d00995cSAlexander Graf 	case EFI_RUNTIME_SERVICES_DATA:
1565d00995cSAlexander Graf 		newlist->desc.attribute = (1 << EFI_MEMORY_WB_SHIFT) |
1575d00995cSAlexander Graf 					  (1ULL << EFI_MEMORY_RUNTIME_SHIFT);
1585d00995cSAlexander Graf 		break;
1595d00995cSAlexander Graf 	case EFI_MMAP_IO:
1605d00995cSAlexander Graf 		newlist->desc.attribute = 1ULL << EFI_MEMORY_RUNTIME_SHIFT;
1615d00995cSAlexander Graf 		break;
1625d00995cSAlexander Graf 	default:
1635d00995cSAlexander Graf 		newlist->desc.attribute = 1 << EFI_MEMORY_WB_SHIFT;
1645d00995cSAlexander Graf 		break;
1655d00995cSAlexander Graf 	}
1665d00995cSAlexander Graf 
1675d00995cSAlexander Graf 	/* Add our new map */
1685d00995cSAlexander Graf 	do {
16974c16accSAlexander Graf 		carve_again = false;
1705d00995cSAlexander Graf 		list_for_each(lhandle, &efi_mem) {
1715d00995cSAlexander Graf 			struct efi_mem_list *lmem;
1725d00995cSAlexander Graf 			int r;
1735d00995cSAlexander Graf 
1745d00995cSAlexander Graf 			lmem = list_entry(lhandle, struct efi_mem_list, link);
1755d00995cSAlexander Graf 			r = efi_mem_carve_out(lmem, &newlist->desc,
1765d00995cSAlexander Graf 					      overlap_only_ram);
17774c16accSAlexander Graf 			switch (r) {
17874c16accSAlexander Graf 			case EFI_CARVE_OVERLAPS_NONRAM:
17974c16accSAlexander Graf 				/*
18074c16accSAlexander Graf 				 * The user requested to only have RAM overlaps,
18174c16accSAlexander Graf 				 * but we hit a non-RAM region. Error out.
18274c16accSAlexander Graf 				 */
1835d00995cSAlexander Graf 				return 0;
18474c16accSAlexander Graf 			case EFI_CARVE_NO_OVERLAP:
18574c16accSAlexander Graf 				/* Just ignore this list entry */
18674c16accSAlexander Graf 				break;
18774c16accSAlexander Graf 			case EFI_CARVE_LOOP_AGAIN:
18874c16accSAlexander Graf 				/*
18974c16accSAlexander Graf 				 * We split an entry, but need to loop through
19074c16accSAlexander Graf 				 * the list again to actually carve it.
19174c16accSAlexander Graf 				 */
19274c16accSAlexander Graf 				carve_again = true;
19374c16accSAlexander Graf 				break;
19474c16accSAlexander Graf 			default:
19574c16accSAlexander Graf 				/* We carved a number of pages */
19674c16accSAlexander Graf 				carved_pages += r;
19774c16accSAlexander Graf 				carve_again = true;
19874c16accSAlexander Graf 				break;
19974c16accSAlexander Graf 			}
20074c16accSAlexander Graf 
20174c16accSAlexander Graf 			if (carve_again) {
20274c16accSAlexander Graf 				/* The list changed, we need to start over */
2035d00995cSAlexander Graf 				break;
2045d00995cSAlexander Graf 			}
2055d00995cSAlexander Graf 		}
20674c16accSAlexander Graf 	} while (carve_again);
20774c16accSAlexander Graf 
20874c16accSAlexander Graf 	if (overlap_only_ram && (carved_pages != pages)) {
20974c16accSAlexander Graf 		/*
21074c16accSAlexander Graf 		 * The payload wanted to have RAM overlaps, but we overlapped
21174c16accSAlexander Graf 		 * with an unallocated region. Error out.
21274c16accSAlexander Graf 		 */
21374c16accSAlexander Graf 		return 0;
21474c16accSAlexander Graf 	}
2155d00995cSAlexander Graf 
2165d00995cSAlexander Graf 	/* Add our new map */
2175d00995cSAlexander Graf         list_add_tail(&newlist->link, &efi_mem);
2185d00995cSAlexander Graf 
21938ce65e1SAlexander Graf 	/* And make sure memory is listed in descending order */
22038ce65e1SAlexander Graf 	efi_mem_sort();
22138ce65e1SAlexander Graf 
2225d00995cSAlexander Graf 	return start;
2235d00995cSAlexander Graf }
2245d00995cSAlexander Graf 
2255d00995cSAlexander Graf static uint64_t efi_find_free_memory(uint64_t len, uint64_t max_addr)
2265d00995cSAlexander Graf {
2275d00995cSAlexander Graf 	struct list_head *lhandle;
2285d00995cSAlexander Graf 
2295d00995cSAlexander Graf 	list_for_each(lhandle, &efi_mem) {
2305d00995cSAlexander Graf 		struct efi_mem_list *lmem = list_entry(lhandle,
2315d00995cSAlexander Graf 			struct efi_mem_list, link);
2325d00995cSAlexander Graf 		struct efi_mem_desc *desc = &lmem->desc;
2335d00995cSAlexander Graf 		uint64_t desc_len = desc->num_pages << EFI_PAGE_SHIFT;
2345d00995cSAlexander Graf 		uint64_t desc_end = desc->physical_start + desc_len;
2355d00995cSAlexander Graf 		uint64_t curmax = min(max_addr, desc_end);
2365d00995cSAlexander Graf 		uint64_t ret = curmax - len;
2375d00995cSAlexander Graf 
2385d00995cSAlexander Graf 		/* We only take memory from free RAM */
2395d00995cSAlexander Graf 		if (desc->type != EFI_CONVENTIONAL_MEMORY)
2405d00995cSAlexander Graf 			continue;
2415d00995cSAlexander Graf 
2425d00995cSAlexander Graf 		/* Out of bounds for max_addr */
2435d00995cSAlexander Graf 		if ((ret + len) > max_addr)
2445d00995cSAlexander Graf 			continue;
2455d00995cSAlexander Graf 
2465d00995cSAlexander Graf 		/* Out of bounds for upper map limit */
2475d00995cSAlexander Graf 		if ((ret + len) > desc_end)
2485d00995cSAlexander Graf 			continue;
2495d00995cSAlexander Graf 
2505d00995cSAlexander Graf 		/* Out of bounds for lower map limit */
2515d00995cSAlexander Graf 		if (ret < desc->physical_start)
2525d00995cSAlexander Graf 			continue;
2535d00995cSAlexander Graf 
2545d00995cSAlexander Graf 		/* Return the highest address in this map within bounds */
2555d00995cSAlexander Graf 		return ret;
2565d00995cSAlexander Graf 	}
2575d00995cSAlexander Graf 
2585d00995cSAlexander Graf 	return 0;
2595d00995cSAlexander Graf }
2605d00995cSAlexander Graf 
2615d00995cSAlexander Graf efi_status_t efi_allocate_pages(int type, int memory_type,
2625d00995cSAlexander Graf 				unsigned long pages, uint64_t *memory)
2635d00995cSAlexander Graf {
2645d00995cSAlexander Graf 	u64 len = pages << EFI_PAGE_SHIFT;
2655d00995cSAlexander Graf 	efi_status_t r = EFI_SUCCESS;
2665d00995cSAlexander Graf 	uint64_t addr;
2675d00995cSAlexander Graf 
2685d00995cSAlexander Graf 	switch (type) {
2695d00995cSAlexander Graf 	case 0:
2705d00995cSAlexander Graf 		/* Any page */
271dede284dSAndreas Färber 		addr = efi_find_free_memory(len, gd->start_addr_sp);
2725d00995cSAlexander Graf 		if (!addr) {
2735d00995cSAlexander Graf 			r = EFI_NOT_FOUND;
2745d00995cSAlexander Graf 			break;
2755d00995cSAlexander Graf 		}
2765d00995cSAlexander Graf 		break;
2775d00995cSAlexander Graf 	case 1:
2785d00995cSAlexander Graf 		/* Max address */
2795d00995cSAlexander Graf 		addr = efi_find_free_memory(len, *memory);
2805d00995cSAlexander Graf 		if (!addr) {
2815d00995cSAlexander Graf 			r = EFI_NOT_FOUND;
2825d00995cSAlexander Graf 			break;
2835d00995cSAlexander Graf 		}
2845d00995cSAlexander Graf 		break;
2855d00995cSAlexander Graf 	case 2:
2865d00995cSAlexander Graf 		/* Exact address, reserve it. The addr is already in *memory. */
2875d00995cSAlexander Graf 		addr = *memory;
2885d00995cSAlexander Graf 		break;
2895d00995cSAlexander Graf 	default:
2905d00995cSAlexander Graf 		/* UEFI doesn't specify other allocation types */
2915d00995cSAlexander Graf 		r = EFI_INVALID_PARAMETER;
2925d00995cSAlexander Graf 		break;
2935d00995cSAlexander Graf 	}
2945d00995cSAlexander Graf 
2955d00995cSAlexander Graf 	if (r == EFI_SUCCESS) {
2965d00995cSAlexander Graf 		uint64_t ret;
2975d00995cSAlexander Graf 
2985d00995cSAlexander Graf 		/* Reserve that map in our memory maps */
2995d00995cSAlexander Graf 		ret = efi_add_memory_map(addr, pages, memory_type, true);
3005d00995cSAlexander Graf 		if (ret == addr) {
3015d00995cSAlexander Graf 			*memory = addr;
3025d00995cSAlexander Graf 		} else {
3035d00995cSAlexander Graf 			/* Map would overlap, bail out */
3045d00995cSAlexander Graf 			r = EFI_OUT_OF_RESOURCES;
3055d00995cSAlexander Graf 		}
3065d00995cSAlexander Graf 	}
3075d00995cSAlexander Graf 
3085d00995cSAlexander Graf 	return r;
3095d00995cSAlexander Graf }
3105d00995cSAlexander Graf 
3115d00995cSAlexander Graf void *efi_alloc(uint64_t len, int memory_type)
3125d00995cSAlexander Graf {
3135d00995cSAlexander Graf 	uint64_t ret = 0;
3145d00995cSAlexander Graf 	uint64_t pages = (len + EFI_PAGE_MASK) >> EFI_PAGE_SHIFT;
3155d00995cSAlexander Graf 	efi_status_t r;
3165d00995cSAlexander Graf 
3175d00995cSAlexander Graf 	r = efi_allocate_pages(0, memory_type, pages, &ret);
3185d00995cSAlexander Graf 	if (r == EFI_SUCCESS)
3195d00995cSAlexander Graf 		return (void*)(uintptr_t)ret;
3205d00995cSAlexander Graf 
3215d00995cSAlexander Graf 	return NULL;
3225d00995cSAlexander Graf }
3235d00995cSAlexander Graf 
3245d00995cSAlexander Graf efi_status_t efi_free_pages(uint64_t memory, unsigned long pages)
3255d00995cSAlexander Graf {
3265d00995cSAlexander Graf 	/* We don't free, let's cross our fingers we have plenty RAM */
3275d00995cSAlexander Graf 	return EFI_SUCCESS;
3285d00995cSAlexander Graf }
3295d00995cSAlexander Graf 
3305d00995cSAlexander Graf efi_status_t efi_get_memory_map(unsigned long *memory_map_size,
3315d00995cSAlexander Graf 			       struct efi_mem_desc *memory_map,
3325d00995cSAlexander Graf 			       unsigned long *map_key,
3335d00995cSAlexander Graf 			       unsigned long *descriptor_size,
3345d00995cSAlexander Graf 			       uint32_t *descriptor_version)
3355d00995cSAlexander Graf {
3365d00995cSAlexander Graf 	ulong map_size = 0;
337cee752faSAlexander Graf 	int map_entries = 0;
3385d00995cSAlexander Graf 	struct list_head *lhandle;
3395d00995cSAlexander Graf 
3405d00995cSAlexander Graf 	list_for_each(lhandle, &efi_mem)
341cee752faSAlexander Graf 		map_entries++;
342cee752faSAlexander Graf 
343cee752faSAlexander Graf 	map_size = map_entries * sizeof(struct efi_mem_desc);
3445d00995cSAlexander Graf 
3455d00995cSAlexander Graf 	*memory_map_size = map_size;
3465d00995cSAlexander Graf 
3475d00995cSAlexander Graf 	if (descriptor_size)
3485d00995cSAlexander Graf 		*descriptor_size = sizeof(struct efi_mem_desc);
3495d00995cSAlexander Graf 
3504c02c11dSMian Yousaf Kaukab 	if (descriptor_version)
3514c02c11dSMian Yousaf Kaukab 		*descriptor_version = EFI_MEMORY_DESCRIPTOR_VERSION;
3524c02c11dSMian Yousaf Kaukab 
3535d00995cSAlexander Graf 	if (*memory_map_size < map_size)
3545d00995cSAlexander Graf 		return EFI_BUFFER_TOO_SMALL;
3555d00995cSAlexander Graf 
3565d00995cSAlexander Graf 	/* Copy list into array */
3575d00995cSAlexander Graf 	if (memory_map) {
358cee752faSAlexander Graf 		/* Return the list in ascending order */
359cee752faSAlexander Graf 		memory_map = &memory_map[map_entries - 1];
3605d00995cSAlexander Graf 		list_for_each(lhandle, &efi_mem) {
3615d00995cSAlexander Graf 			struct efi_mem_list *lmem;
3625d00995cSAlexander Graf 
3635d00995cSAlexander Graf 			lmem = list_entry(lhandle, struct efi_mem_list, link);
3645d00995cSAlexander Graf 			*memory_map = lmem->desc;
365cee752faSAlexander Graf 			memory_map--;
3665d00995cSAlexander Graf 		}
3675d00995cSAlexander Graf 	}
3685d00995cSAlexander Graf 
3695d00995cSAlexander Graf 	return EFI_SUCCESS;
3705d00995cSAlexander Graf }
3715d00995cSAlexander Graf 
3725d00995cSAlexander Graf int efi_memory_init(void)
3735d00995cSAlexander Graf {
374dede284dSAndreas Färber 	unsigned long runtime_start, runtime_end, runtime_pages;
375dede284dSAndreas Färber 	unsigned long uboot_start, uboot_pages;
376dede284dSAndreas Färber 	unsigned long uboot_stack_size = 16 * 1024 * 1024;
3775d00995cSAlexander Graf 	int i;
3785d00995cSAlexander Graf 
3795d00995cSAlexander Graf 	/* Add RAM */
3805d00995cSAlexander Graf 	for (i = 0; i < CONFIG_NR_DRAM_BANKS; i++) {
3815d00995cSAlexander Graf 		u64 ram_start = gd->bd->bi_dram[i].start;
3825d00995cSAlexander Graf 		u64 ram_size = gd->bd->bi_dram[i].size;
3835d00995cSAlexander Graf 		u64 start = (ram_start + EFI_PAGE_MASK) & ~EFI_PAGE_MASK;
3845d00995cSAlexander Graf 		u64 pages = (ram_size + EFI_PAGE_MASK) >> EFI_PAGE_SHIFT;
3855d00995cSAlexander Graf 
3865d00995cSAlexander Graf 		efi_add_memory_map(start, pages, EFI_CONVENTIONAL_MEMORY,
3875d00995cSAlexander Graf 				   false);
3885d00995cSAlexander Graf 	}
3895d00995cSAlexander Graf 
3905d00995cSAlexander Graf 	/* Add U-Boot */
3915d00995cSAlexander Graf 	uboot_start = (gd->start_addr_sp - uboot_stack_size) & ~EFI_PAGE_MASK;
3925d00995cSAlexander Graf 	uboot_pages = (gd->ram_top - uboot_start) >> EFI_PAGE_SHIFT;
3935d00995cSAlexander Graf 	efi_add_memory_map(uboot_start, uboot_pages, EFI_LOADER_DATA, false);
3945d00995cSAlexander Graf 
3955d00995cSAlexander Graf 	/* Add Runtime Services */
3965d00995cSAlexander Graf 	runtime_start = (ulong)&__efi_runtime_start & ~EFI_PAGE_MASK;
3975d00995cSAlexander Graf 	runtime_end = (ulong)&__efi_runtime_stop;
3985d00995cSAlexander Graf 	runtime_end = (runtime_end + EFI_PAGE_MASK) & ~EFI_PAGE_MASK;
3995d00995cSAlexander Graf 	runtime_pages = (runtime_end - runtime_start) >> EFI_PAGE_SHIFT;
4005d00995cSAlexander Graf 	efi_add_memory_map(runtime_start, runtime_pages,
4015d00995cSAlexander Graf 			   EFI_RUNTIME_SERVICES_CODE, false);
4025d00995cSAlexander Graf 
40351735ae0SAlexander Graf #ifdef CONFIG_EFI_LOADER_BOUNCE_BUFFER
40451735ae0SAlexander Graf 	/* Request a 32bit 64MB bounce buffer region */
40551735ae0SAlexander Graf 	uint64_t efi_bounce_buffer_addr = 0xffffffff;
40651735ae0SAlexander Graf 
40751735ae0SAlexander Graf 	if (efi_allocate_pages(1, EFI_LOADER_DATA,
40851735ae0SAlexander Graf 			       (64 * 1024 * 1024) >> EFI_PAGE_SHIFT,
40951735ae0SAlexander Graf 			       &efi_bounce_buffer_addr) != EFI_SUCCESS)
41051735ae0SAlexander Graf 		return -1;
41151735ae0SAlexander Graf 
41251735ae0SAlexander Graf 	efi_bounce_buffer = (void*)(uintptr_t)efi_bounce_buffer_addr;
41351735ae0SAlexander Graf #endif
41451735ae0SAlexander Graf 
4155d00995cSAlexander Graf 	return 0;
4165d00995cSAlexander Graf }
417