14febfb8dSArd Biesheuvel // SPDX-License-Identifier: GPL-2.0
2e4fbf476SArd Biesheuvel /*
3e4fbf476SArd Biesheuvel  * Copyright (C) 2016 Linaro Ltd;  <ard.biesheuvel@linaro.org>
4e4fbf476SArd Biesheuvel  */
5e4fbf476SArd Biesheuvel 
6e4fbf476SArd Biesheuvel #include <linux/efi.h>
7a6a14469SArd Biesheuvel #include <linux/log2.h>
8e4fbf476SArd Biesheuvel #include <asm/efi.h>
9e4fbf476SArd Biesheuvel 
10e4fbf476SArd Biesheuvel #include "efistub.h"
11e4fbf476SArd Biesheuvel 
12e4fbf476SArd Biesheuvel struct efi_rng_protocol {
13e4fbf476SArd Biesheuvel 	efi_status_t (*get_info)(struct efi_rng_protocol *,
14e4fbf476SArd Biesheuvel 				 unsigned long *, efi_guid_t *);
15e4fbf476SArd Biesheuvel 	efi_status_t (*get_rng)(struct efi_rng_protocol *,
16e4fbf476SArd Biesheuvel 				efi_guid_t *, unsigned long, u8 *out);
17e4fbf476SArd Biesheuvel };
18e4fbf476SArd Biesheuvel 
19e4fbf476SArd Biesheuvel efi_status_t efi_get_random_bytes(efi_system_table_t *sys_table_arg,
20e4fbf476SArd Biesheuvel 				  unsigned long size, u8 *out)
21e4fbf476SArd Biesheuvel {
22e4fbf476SArd Biesheuvel 	efi_guid_t rng_proto = EFI_RNG_PROTOCOL_GUID;
23e4fbf476SArd Biesheuvel 	efi_status_t status;
24e4fbf476SArd Biesheuvel 	struct efi_rng_protocol *rng;
25e4fbf476SArd Biesheuvel 
26e4fbf476SArd Biesheuvel 	status = efi_call_early(locate_protocol, &rng_proto, NULL,
27e4fbf476SArd Biesheuvel 				(void **)&rng);
28e4fbf476SArd Biesheuvel 	if (status != EFI_SUCCESS)
29e4fbf476SArd Biesheuvel 		return status;
30e4fbf476SArd Biesheuvel 
31e4fbf476SArd Biesheuvel 	return rng->get_rng(rng, NULL, size, out);
32e4fbf476SArd Biesheuvel }
332ddbfc81SArd Biesheuvel 
342ddbfc81SArd Biesheuvel /*
352ddbfc81SArd Biesheuvel  * Return the number of slots covered by this entry, i.e., the number of
362ddbfc81SArd Biesheuvel  * addresses it covers that are suitably aligned and supply enough room
372ddbfc81SArd Biesheuvel  * for the allocation.
382ddbfc81SArd Biesheuvel  */
392ddbfc81SArd Biesheuvel static unsigned long get_entry_num_slots(efi_memory_desc_t *md,
402ddbfc81SArd Biesheuvel 					 unsigned long size,
41a6a14469SArd Biesheuvel 					 unsigned long align_shift)
422ddbfc81SArd Biesheuvel {
43a6a14469SArd Biesheuvel 	unsigned long align = 1UL << align_shift;
44018edcfaSArd Biesheuvel 	u64 first_slot, last_slot, region_end;
452ddbfc81SArd Biesheuvel 
462ddbfc81SArd Biesheuvel 	if (md->type != EFI_CONVENTIONAL_MEMORY)
472ddbfc81SArd Biesheuvel 		return 0;
482ddbfc81SArd Biesheuvel 
4916993c0fSDan Williams 	if (efi_soft_reserve_enabled() &&
5016993c0fSDan Williams 	    (md->attribute & EFI_MEMORY_SP))
5116993c0fSDan Williams 		return 0;
5216993c0fSDan Williams 
53018edcfaSArd Biesheuvel 	region_end = min((u64)ULONG_MAX, md->phys_addr + md->num_pages*EFI_PAGE_SIZE - 1);
542ddbfc81SArd Biesheuvel 
55018edcfaSArd Biesheuvel 	first_slot = round_up(md->phys_addr, align);
56018edcfaSArd Biesheuvel 	last_slot = round_down(region_end - size + 1, align);
57018edcfaSArd Biesheuvel 
58018edcfaSArd Biesheuvel 	if (first_slot > last_slot)
592ddbfc81SArd Biesheuvel 		return 0;
602ddbfc81SArd Biesheuvel 
61018edcfaSArd Biesheuvel 	return ((unsigned long)(last_slot - first_slot) >> align_shift) + 1;
622ddbfc81SArd Biesheuvel }
632ddbfc81SArd Biesheuvel 
642ddbfc81SArd Biesheuvel /*
652ddbfc81SArd Biesheuvel  * The UEFI memory descriptors have a virtual address field that is only used
662ddbfc81SArd Biesheuvel  * when installing the virtual mapping using SetVirtualAddressMap(). Since it
672ddbfc81SArd Biesheuvel  * is unused here, we can reuse it to keep track of each descriptor's slot
682ddbfc81SArd Biesheuvel  * count.
692ddbfc81SArd Biesheuvel  */
702ddbfc81SArd Biesheuvel #define MD_NUM_SLOTS(md)	((md)->virt_addr)
712ddbfc81SArd Biesheuvel 
722ddbfc81SArd Biesheuvel efi_status_t efi_random_alloc(efi_system_table_t *sys_table_arg,
732ddbfc81SArd Biesheuvel 			      unsigned long size,
742ddbfc81SArd Biesheuvel 			      unsigned long align,
752ddbfc81SArd Biesheuvel 			      unsigned long *addr,
762ddbfc81SArd Biesheuvel 			      unsigned long random_seed)
772ddbfc81SArd Biesheuvel {
782ddbfc81SArd Biesheuvel 	unsigned long map_size, desc_size, total_slots = 0, target_slot;
79dadb57abSJeffrey Hugo 	unsigned long buff_size;
802ddbfc81SArd Biesheuvel 	efi_status_t status;
812ddbfc81SArd Biesheuvel 	efi_memory_desc_t *memory_map;
822ddbfc81SArd Biesheuvel 	int map_offset;
83dadb57abSJeffrey Hugo 	struct efi_boot_memmap map;
842ddbfc81SArd Biesheuvel 
85dadb57abSJeffrey Hugo 	map.map =	&memory_map;
86dadb57abSJeffrey Hugo 	map.map_size =	&map_size;
87dadb57abSJeffrey Hugo 	map.desc_size =	&desc_size;
88dadb57abSJeffrey Hugo 	map.desc_ver =	NULL;
89dadb57abSJeffrey Hugo 	map.key_ptr =	NULL;
90dadb57abSJeffrey Hugo 	map.buff_size =	&buff_size;
91dadb57abSJeffrey Hugo 
92dadb57abSJeffrey Hugo 	status = efi_get_memory_map(sys_table_arg, &map);
932ddbfc81SArd Biesheuvel 	if (status != EFI_SUCCESS)
942ddbfc81SArd Biesheuvel 		return status;
952ddbfc81SArd Biesheuvel 
962ddbfc81SArd Biesheuvel 	if (align < EFI_ALLOC_ALIGN)
972ddbfc81SArd Biesheuvel 		align = EFI_ALLOC_ALIGN;
982ddbfc81SArd Biesheuvel 
992ddbfc81SArd Biesheuvel 	/* count the suitable slots in each memory map entry */
1002ddbfc81SArd Biesheuvel 	for (map_offset = 0; map_offset < map_size; map_offset += desc_size) {
1012ddbfc81SArd Biesheuvel 		efi_memory_desc_t *md = (void *)memory_map + map_offset;
1022ddbfc81SArd Biesheuvel 		unsigned long slots;
1032ddbfc81SArd Biesheuvel 
104a6a14469SArd Biesheuvel 		slots = get_entry_num_slots(md, size, ilog2(align));
1052ddbfc81SArd Biesheuvel 		MD_NUM_SLOTS(md) = slots;
1062ddbfc81SArd Biesheuvel 		total_slots += slots;
1072ddbfc81SArd Biesheuvel 	}
1082ddbfc81SArd Biesheuvel 
1092ddbfc81SArd Biesheuvel 	/* find a random number between 0 and total_slots */
1102ddbfc81SArd Biesheuvel 	target_slot = (total_slots * (u16)random_seed) >> 16;
1112ddbfc81SArd Biesheuvel 
1122ddbfc81SArd Biesheuvel 	/*
1132ddbfc81SArd Biesheuvel 	 * target_slot is now a value in the range [0, total_slots), and so
1142ddbfc81SArd Biesheuvel 	 * it corresponds with exactly one of the suitable slots we recorded
1152ddbfc81SArd Biesheuvel 	 * when iterating over the memory map the first time around.
1162ddbfc81SArd Biesheuvel 	 *
1172ddbfc81SArd Biesheuvel 	 * So iterate over the memory map again, subtracting the number of
1182ddbfc81SArd Biesheuvel 	 * slots of each entry at each iteration, until we have found the entry
1192ddbfc81SArd Biesheuvel 	 * that covers our chosen slot. Use the residual value of target_slot
1202ddbfc81SArd Biesheuvel 	 * to calculate the randomly chosen address, and allocate it directly
1212ddbfc81SArd Biesheuvel 	 * using EFI_ALLOCATE_ADDRESS.
1222ddbfc81SArd Biesheuvel 	 */
1232ddbfc81SArd Biesheuvel 	for (map_offset = 0; map_offset < map_size; map_offset += desc_size) {
1242ddbfc81SArd Biesheuvel 		efi_memory_desc_t *md = (void *)memory_map + map_offset;
1252ddbfc81SArd Biesheuvel 		efi_physical_addr_t target;
1262ddbfc81SArd Biesheuvel 		unsigned long pages;
1272ddbfc81SArd Biesheuvel 
1282ddbfc81SArd Biesheuvel 		if (target_slot >= MD_NUM_SLOTS(md)) {
1292ddbfc81SArd Biesheuvel 			target_slot -= MD_NUM_SLOTS(md);
1302ddbfc81SArd Biesheuvel 			continue;
1312ddbfc81SArd Biesheuvel 		}
1322ddbfc81SArd Biesheuvel 
1332ddbfc81SArd Biesheuvel 		target = round_up(md->phys_addr, align) + target_slot * align;
1342ddbfc81SArd Biesheuvel 		pages = round_up(size, EFI_PAGE_SIZE) / EFI_PAGE_SIZE;
1352ddbfc81SArd Biesheuvel 
1362ddbfc81SArd Biesheuvel 		status = efi_call_early(allocate_pages, EFI_ALLOCATE_ADDRESS,
1372ddbfc81SArd Biesheuvel 					EFI_LOADER_DATA, pages, &target);
1382ddbfc81SArd Biesheuvel 		if (status == EFI_SUCCESS)
1392ddbfc81SArd Biesheuvel 			*addr = target;
1402ddbfc81SArd Biesheuvel 		break;
1412ddbfc81SArd Biesheuvel 	}
1422ddbfc81SArd Biesheuvel 
1432ddbfc81SArd Biesheuvel 	efi_call_early(free_pool, memory_map);
1442ddbfc81SArd Biesheuvel 
1452ddbfc81SArd Biesheuvel 	return status;
1462ddbfc81SArd Biesheuvel }
147568bc4e8SArd Biesheuvel 
148568bc4e8SArd Biesheuvel efi_status_t efi_random_get_seed(efi_system_table_t *sys_table_arg)
149568bc4e8SArd Biesheuvel {
150568bc4e8SArd Biesheuvel 	efi_guid_t rng_proto = EFI_RNG_PROTOCOL_GUID;
151568bc4e8SArd Biesheuvel 	efi_guid_t rng_algo_raw = EFI_RNG_ALGORITHM_RAW;
152568bc4e8SArd Biesheuvel 	efi_guid_t rng_table_guid = LINUX_EFI_RANDOM_SEED_TABLE_GUID;
153568bc4e8SArd Biesheuvel 	struct efi_rng_protocol *rng;
154568bc4e8SArd Biesheuvel 	struct linux_efi_random_seed *seed;
155568bc4e8SArd Biesheuvel 	efi_status_t status;
156568bc4e8SArd Biesheuvel 
157568bc4e8SArd Biesheuvel 	status = efi_call_early(locate_protocol, &rng_proto, NULL,
158568bc4e8SArd Biesheuvel 				(void **)&rng);
159568bc4e8SArd Biesheuvel 	if (status != EFI_SUCCESS)
160568bc4e8SArd Biesheuvel 		return status;
161568bc4e8SArd Biesheuvel 
162568bc4e8SArd Biesheuvel 	status = efi_call_early(allocate_pool, EFI_RUNTIME_SERVICES_DATA,
163c2ceb5fdSArd Biesheuvel 				sizeof(*seed) + EFI_RANDOM_SEED_SIZE,
164568bc4e8SArd Biesheuvel 				(void **)&seed);
165568bc4e8SArd Biesheuvel 	if (status != EFI_SUCCESS)
166568bc4e8SArd Biesheuvel 		return status;
167568bc4e8SArd Biesheuvel 
168c2ceb5fdSArd Biesheuvel 	status = rng->get_rng(rng, &rng_algo_raw, EFI_RANDOM_SEED_SIZE,
169568bc4e8SArd Biesheuvel 			      seed->bits);
170568bc4e8SArd Biesheuvel 	if (status == EFI_UNSUPPORTED)
171568bc4e8SArd Biesheuvel 		/*
172568bc4e8SArd Biesheuvel 		 * Use whatever algorithm we have available if the raw algorithm
173568bc4e8SArd Biesheuvel 		 * is not implemented.
174568bc4e8SArd Biesheuvel 		 */
175c2ceb5fdSArd Biesheuvel 		status = rng->get_rng(rng, NULL, EFI_RANDOM_SEED_SIZE,
176568bc4e8SArd Biesheuvel 				      seed->bits);
177568bc4e8SArd Biesheuvel 
178568bc4e8SArd Biesheuvel 	if (status != EFI_SUCCESS)
179568bc4e8SArd Biesheuvel 		goto err_freepool;
180568bc4e8SArd Biesheuvel 
181c2ceb5fdSArd Biesheuvel 	seed->size = EFI_RANDOM_SEED_SIZE;
182568bc4e8SArd Biesheuvel 	status = efi_call_early(install_configuration_table, &rng_table_guid,
183568bc4e8SArd Biesheuvel 				seed);
184568bc4e8SArd Biesheuvel 	if (status != EFI_SUCCESS)
185568bc4e8SArd Biesheuvel 		goto err_freepool;
186568bc4e8SArd Biesheuvel 
187568bc4e8SArd Biesheuvel 	return EFI_SUCCESS;
188568bc4e8SArd Biesheuvel 
189568bc4e8SArd Biesheuvel err_freepool:
190568bc4e8SArd Biesheuvel 	efi_call_early(free_pool, seed);
191568bc4e8SArd Biesheuvel 	return status;
192568bc4e8SArd Biesheuvel }
193