x86, efi: Cleanup config table walking
[deliverable/linux.git] / arch / x86 / platform / efi / efi.c
CommitLineData
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1/*
2 * Common EFI (Extensible Firmware Interface) support functions
3 * Based on Extensible Firmware Interface Specification version 1.0
4 *
5 * Copyright (C) 1999 VA Linux Systems
6 * Copyright (C) 1999 Walt Drummond <drummond@valinux.com>
7 * Copyright (C) 1999-2002 Hewlett-Packard Co.
8 * David Mosberger-Tang <davidm@hpl.hp.com>
9 * Stephane Eranian <eranian@hpl.hp.com>
10 * Copyright (C) 2005-2008 Intel Co.
11 * Fenghua Yu <fenghua.yu@intel.com>
12 * Bibo Mao <bibo.mao@intel.com>
13 * Chandramouli Narayanan <mouli@linux.intel.com>
14 * Huang Ying <ying.huang@intel.com>
15 *
16 * Copied from efi_32.c to eliminate the duplicated code between EFI
17 * 32/64 support code. --ying 2007-10-26
18 *
19 * All EFI Runtime Services are not implemented yet as EFI only
20 * supports physical mode addressing on SoftSDV. This is to be fixed
21 * in a future version. --drummond 1999-07-20
22 *
23 * Implemented EFI runtime services and virtual mode calls. --davidm
24 *
25 * Goutham Rao: <goutham.rao@intel.com>
26 * Skip non-WB memory and ignore empty memory ranges.
27 */
28
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29#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
30
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31#include <linux/kernel.h>
32#include <linux/init.h>
33#include <linux/efi.h>
69c60c88 34#include <linux/export.h>
5b83683f 35#include <linux/bootmem.h>
a9ce6bc1 36#include <linux/memblock.h>
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37#include <linux/spinlock.h>
38#include <linux/uaccess.h>
39#include <linux/time.h>
40#include <linux/io.h>
41#include <linux/reboot.h>
42#include <linux/bcd.h>
43
44#include <asm/setup.h>
45#include <asm/efi.h>
46#include <asm/time.h>
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47#include <asm/cacheflush.h>
48#include <asm/tlbflush.h>
7bd867df 49#include <asm/x86_init.h>
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50
51#define EFI_DEBUG 1
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52
53int efi_enabled;
54EXPORT_SYMBOL(efi_enabled);
55
d80603c9
JB
56struct efi __read_mostly efi = {
57 .mps = EFI_INVALID_TABLE_ADDR,
58 .acpi = EFI_INVALID_TABLE_ADDR,
59 .acpi20 = EFI_INVALID_TABLE_ADDR,
60 .smbios = EFI_INVALID_TABLE_ADDR,
61 .sal_systab = EFI_INVALID_TABLE_ADDR,
62 .boot_info = EFI_INVALID_TABLE_ADDR,
63 .hcdp = EFI_INVALID_TABLE_ADDR,
64 .uga = EFI_INVALID_TABLE_ADDR,
65 .uv_systab = EFI_INVALID_TABLE_ADDR,
66};
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67EXPORT_SYMBOL(efi);
68
69struct efi_memory_map memmap;
70
ecaea42e 71static struct efi efi_phys __initdata;
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72static efi_system_table_t efi_systab __initdata;
73
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74static int __init setup_noefi(char *arg)
75{
76 efi_enabled = 0;
77 return 0;
78}
79early_param("noefi", setup_noefi);
80
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81int add_efi_memmap;
82EXPORT_SYMBOL(add_efi_memmap);
83
84static int __init setup_add_efi_memmap(char *arg)
85{
86 add_efi_memmap = 1;
87 return 0;
88}
89early_param("add_efi_memmap", setup_add_efi_memmap);
90
91
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92static efi_status_t virt_efi_get_time(efi_time_t *tm, efi_time_cap_t *tc)
93{
ef68c8f8
JB
94 unsigned long flags;
95 efi_status_t status;
96
97 spin_lock_irqsave(&rtc_lock, flags);
98 status = efi_call_virt2(get_time, tm, tc);
99 spin_unlock_irqrestore(&rtc_lock, flags);
100 return status;
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101}
102
103static efi_status_t virt_efi_set_time(efi_time_t *tm)
104{
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JB
105 unsigned long flags;
106 efi_status_t status;
107
108 spin_lock_irqsave(&rtc_lock, flags);
109 status = efi_call_virt1(set_time, tm);
110 spin_unlock_irqrestore(&rtc_lock, flags);
111 return status;
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112}
113
114static efi_status_t virt_efi_get_wakeup_time(efi_bool_t *enabled,
115 efi_bool_t *pending,
116 efi_time_t *tm)
117{
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JB
118 unsigned long flags;
119 efi_status_t status;
120
121 spin_lock_irqsave(&rtc_lock, flags);
122 status = efi_call_virt3(get_wakeup_time,
123 enabled, pending, tm);
124 spin_unlock_irqrestore(&rtc_lock, flags);
125 return status;
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126}
127
128static efi_status_t virt_efi_set_wakeup_time(efi_bool_t enabled, efi_time_t *tm)
129{
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JB
130 unsigned long flags;
131 efi_status_t status;
132
133 spin_lock_irqsave(&rtc_lock, flags);
134 status = efi_call_virt2(set_wakeup_time,
135 enabled, tm);
136 spin_unlock_irqrestore(&rtc_lock, flags);
137 return status;
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138}
139
140static efi_status_t virt_efi_get_variable(efi_char16_t *name,
141 efi_guid_t *vendor,
142 u32 *attr,
143 unsigned long *data_size,
144 void *data)
145{
146 return efi_call_virt5(get_variable,
147 name, vendor, attr,
148 data_size, data);
149}
150
151static efi_status_t virt_efi_get_next_variable(unsigned long *name_size,
152 efi_char16_t *name,
153 efi_guid_t *vendor)
154{
155 return efi_call_virt3(get_next_variable,
156 name_size, name, vendor);
157}
158
159static efi_status_t virt_efi_set_variable(efi_char16_t *name,
160 efi_guid_t *vendor,
f7a2d73f 161 u32 attr,
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162 unsigned long data_size,
163 void *data)
164{
165 return efi_call_virt5(set_variable,
166 name, vendor, attr,
167 data_size, data);
168}
169
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170static efi_status_t virt_efi_query_variable_info(u32 attr,
171 u64 *storage_space,
172 u64 *remaining_space,
173 u64 *max_variable_size)
174{
175 if (efi.runtime_version < EFI_2_00_SYSTEM_TABLE_REVISION)
176 return EFI_UNSUPPORTED;
177
178 return efi_call_virt4(query_variable_info, attr, storage_space,
179 remaining_space, max_variable_size);
180}
181
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182static efi_status_t virt_efi_get_next_high_mono_count(u32 *count)
183{
184 return efi_call_virt1(get_next_high_mono_count, count);
185}
186
187static void virt_efi_reset_system(int reset_type,
188 efi_status_t status,
189 unsigned long data_size,
190 efi_char16_t *data)
191{
192 efi_call_virt4(reset_system, reset_type, status,
193 data_size, data);
194}
195
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196static efi_status_t virt_efi_update_capsule(efi_capsule_header_t **capsules,
197 unsigned long count,
198 unsigned long sg_list)
199{
200 if (efi.runtime_version < EFI_2_00_SYSTEM_TABLE_REVISION)
201 return EFI_UNSUPPORTED;
202
203 return efi_call_virt3(update_capsule, capsules, count, sg_list);
204}
205
206static efi_status_t virt_efi_query_capsule_caps(efi_capsule_header_t **capsules,
207 unsigned long count,
208 u64 *max_size,
209 int *reset_type)
210{
211 if (efi.runtime_version < EFI_2_00_SYSTEM_TABLE_REVISION)
212 return EFI_UNSUPPORTED;
213
214 return efi_call_virt4(query_capsule_caps, capsules, count, max_size,
215 reset_type);
216}
217
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218static efi_status_t __init phys_efi_set_virtual_address_map(
219 unsigned long memory_map_size,
220 unsigned long descriptor_size,
221 u32 descriptor_version,
222 efi_memory_desc_t *virtual_map)
223{
224 efi_status_t status;
225
226 efi_call_phys_prelog();
227 status = efi_call_phys4(efi_phys.set_virtual_address_map,
228 memory_map_size, descriptor_size,
229 descriptor_version, virtual_map);
230 efi_call_phys_epilog();
231 return status;
232}
233
234static efi_status_t __init phys_efi_get_time(efi_time_t *tm,
235 efi_time_cap_t *tc)
236{
ef68c8f8 237 unsigned long flags;
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238 efi_status_t status;
239
ef68c8f8 240 spin_lock_irqsave(&rtc_lock, flags);
5b83683f 241 efi_call_phys_prelog();
e9a9eca5
MM
242 status = efi_call_phys2(efi_phys.get_time, virt_to_phys(tm),
243 virt_to_phys(tc));
5b83683f 244 efi_call_phys_epilog();
ef68c8f8 245 spin_unlock_irqrestore(&rtc_lock, flags);
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246 return status;
247}
248
249int efi_set_rtc_mmss(unsigned long nowtime)
250{
251 int real_seconds, real_minutes;
252 efi_status_t status;
253 efi_time_t eft;
254 efi_time_cap_t cap;
255
256 status = efi.get_time(&eft, &cap);
257 if (status != EFI_SUCCESS) {
e3cb3f5a 258 pr_err("Oops: efitime: can't read time!\n");
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259 return -1;
260 }
261
262 real_seconds = nowtime % 60;
263 real_minutes = nowtime / 60;
264 if (((abs(real_minutes - eft.minute) + 15)/30) & 1)
265 real_minutes += 30;
266 real_minutes %= 60;
267 eft.minute = real_minutes;
268 eft.second = real_seconds;
269
270 status = efi.set_time(&eft);
271 if (status != EFI_SUCCESS) {
e3cb3f5a 272 pr_err("Oops: efitime: can't write time!\n");
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273 return -1;
274 }
275 return 0;
276}
277
278unsigned long efi_get_time(void)
279{
280 efi_status_t status;
281 efi_time_t eft;
282 efi_time_cap_t cap;
283
284 status = efi.get_time(&eft, &cap);
285 if (status != EFI_SUCCESS)
e3cb3f5a 286 pr_err("Oops: efitime: can't read time!\n");
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287
288 return mktime(eft.year, eft.month, eft.day, eft.hour,
289 eft.minute, eft.second);
290}
291
69c91893
PJ
292/*
293 * Tell the kernel about the EFI memory map. This might include
294 * more than the max 128 entries that can fit in the e820 legacy
295 * (zeropage) memory map.
296 */
297
200001eb 298static void __init do_add_efi_memmap(void)
69c91893
PJ
299{
300 void *p;
301
302 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
303 efi_memory_desc_t *md = p;
304 unsigned long long start = md->phys_addr;
305 unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;
306 int e820_type;
307
e2a71476
CW
308 switch (md->type) {
309 case EFI_LOADER_CODE:
310 case EFI_LOADER_DATA:
311 case EFI_BOOT_SERVICES_CODE:
312 case EFI_BOOT_SERVICES_DATA:
313 case EFI_CONVENTIONAL_MEMORY:
314 if (md->attribute & EFI_MEMORY_WB)
315 e820_type = E820_RAM;
316 else
317 e820_type = E820_RESERVED;
318 break;
319 case EFI_ACPI_RECLAIM_MEMORY:
320 e820_type = E820_ACPI;
321 break;
322 case EFI_ACPI_MEMORY_NVS:
323 e820_type = E820_NVS;
324 break;
325 case EFI_UNUSABLE_MEMORY:
326 e820_type = E820_UNUSABLE;
327 break;
328 default:
329 /*
330 * EFI_RESERVED_TYPE EFI_RUNTIME_SERVICES_CODE
331 * EFI_RUNTIME_SERVICES_DATA EFI_MEMORY_MAPPED_IO
332 * EFI_MEMORY_MAPPED_IO_PORT_SPACE EFI_PAL_CODE
333 */
69c91893 334 e820_type = E820_RESERVED;
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CW
335 break;
336 }
d0be6bde 337 e820_add_region(start, size, e820_type);
69c91893
PJ
338 }
339 sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
340}
341
a9ce6bc1 342void __init efi_memblock_x86_reserve_range(void)
ecacf09f
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343{
344 unsigned long pmap;
345
05486fa7 346#ifdef CONFIG_X86_32
ecacf09f 347 pmap = boot_params.efi_info.efi_memmap;
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348#else
349 pmap = (boot_params.efi_info.efi_memmap |
350 ((__u64)boot_params.efi_info.efi_memmap_hi<<32));
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351#endif
352 memmap.phys_map = (void *)pmap;
353 memmap.nr_map = boot_params.efi_info.efi_memmap_size /
354 boot_params.efi_info.efi_memdesc_size;
355 memmap.desc_version = boot_params.efi_info.efi_memdesc_version;
356 memmap.desc_size = boot_params.efi_info.efi_memdesc_size;
24aa0788 357 memblock_reserve(pmap, memmap.nr_map * memmap.desc_size);
ecacf09f
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358}
359
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360#if EFI_DEBUG
361static void __init print_efi_memmap(void)
362{
363 efi_memory_desc_t *md;
364 void *p;
365 int i;
366
367 for (p = memmap.map, i = 0;
368 p < memmap.map_end;
369 p += memmap.desc_size, i++) {
370 md = p;
e3cb3f5a 371 pr_info("mem%02u: type=%u, attr=0x%llx, "
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372 "range=[0x%016llx-0x%016llx) (%lluMB)\n",
373 i, md->type, md->attribute, md->phys_addr,
374 md->phys_addr + (md->num_pages << EFI_PAGE_SHIFT),
375 (md->num_pages >> (20 - EFI_PAGE_SHIFT)));
376 }
377}
378#endif /* EFI_DEBUG */
379
916f676f
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380void __init efi_reserve_boot_services(void)
381{
382 void *p;
383
384 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
385 efi_memory_desc_t *md = p;
7d68dc3f
ML
386 u64 start = md->phys_addr;
387 u64 size = md->num_pages << EFI_PAGE_SHIFT;
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388
389 if (md->type != EFI_BOOT_SERVICES_CODE &&
390 md->type != EFI_BOOT_SERVICES_DATA)
391 continue;
7d68dc3f
ML
392 /* Only reserve where possible:
393 * - Not within any already allocated areas
394 * - Not over any memory area (really needed, if above?)
395 * - Not within any part of the kernel
396 * - Not the bios reserved area
397 */
398 if ((start+size >= virt_to_phys(_text)
399 && start <= virt_to_phys(_end)) ||
400 !e820_all_mapped(start, start+size, E820_RAM) ||
bf61549a 401 memblock_is_region_reserved(start, size)) {
7d68dc3f
ML
402 /* Could not reserve, skip it */
403 md->num_pages = 0;
e3cb3f5a 404 memblock_dbg("Could not reserve boot range "
7d68dc3f
ML
405 "[0x%010llx-0x%010llx]\n",
406 start, start+size-1);
407 } else
24aa0788 408 memblock_reserve(start, size);
916f676f
MG
409 }
410}
411
412static void __init efi_free_boot_services(void)
413{
414 void *p;
415
416 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
417 efi_memory_desc_t *md = p;
418 unsigned long long start = md->phys_addr;
419 unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;
420
421 if (md->type != EFI_BOOT_SERVICES_CODE &&
422 md->type != EFI_BOOT_SERVICES_DATA)
423 continue;
424
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ML
425 /* Could not reserve boot area */
426 if (!size)
427 continue;
428
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429 free_bootmem_late(start, size);
430 }
431}
432
83e7ee66 433static void __init efi_systab_init(void *phys)
5b83683f 434{
beacfaac
HY
435 efi.systab = early_ioremap((unsigned long)efi_phys.systab,
436 sizeof(efi_system_table_t));
5b83683f 437 if (efi.systab == NULL)
e3cb3f5a 438 pr_err("Couldn't map the system table!\n");
5b83683f 439 memcpy(&efi_systab, efi.systab, sizeof(efi_system_table_t));
beacfaac 440 early_iounmap(efi.systab, sizeof(efi_system_table_t));
5b83683f
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441 efi.systab = &efi_systab;
442
443 /*
444 * Verify the EFI Table
445 */
446 if (efi.systab->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE)
e3cb3f5a 447 pr_err("System table signature incorrect!\n");
5b83683f 448 if ((efi.systab->hdr.revision >> 16) == 0)
e3cb3f5a 449 pr_err("Warning: System table version "
5b83683f
HY
450 "%d.%02d, expected 1.00 or greater!\n",
451 efi.systab->hdr.revision >> 16,
452 efi.systab->hdr.revision & 0xffff);
83e7ee66 453}
5b83683f 454
83e7ee66
OJ
455static void __init efi_config_init(u64 tables, int nr_tables)
456{
457 efi_config_table_t *config_tables;
a6a46f41 458 int i, sz = sizeof(efi_config_table_t);
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459
460 /*
461 * Let's see what config tables the firmware passed to us.
462 */
a6a46f41
OJ
463 config_tables = early_ioremap(efi.systab->tables,
464 efi.systab->nr_tables * sz);
5b83683f 465 if (config_tables == NULL)
e3cb3f5a 466 pr_err("Could not map Configuration table!\n");
5b83683f 467
e3cb3f5a 468 pr_info("");
5b83683f 469 for (i = 0; i < efi.systab->nr_tables; i++) {
a6a46f41
OJ
470 efi_guid_t guid = config_tables[i].guid;
471 unsigned long table = config_tables[i].table;
472
473 if (!efi_guidcmp(guid, MPS_TABLE_GUID)) {
474 efi.mps = table;
475 pr_cont(" MPS=0x%lx ", table);
476 } else if (!efi_guidcmp(guid, ACPI_20_TABLE_GUID)) {
477 efi.acpi20 = table;
478 pr_cont(" ACPI 2.0=0x%lx ", table);
479 } else if (!efi_guidcmp(guid, ACPI_TABLE_GUID)) {
480 efi.acpi = table;
481 pr_cont(" ACPI=0x%lx ", table);
482 } else if (!efi_guidcmp(guid, SMBIOS_TABLE_GUID)) {
483 efi.smbios = table;
484 pr_cont(" SMBIOS=0x%lx ", table);
03b48632 485#ifdef CONFIG_X86_UV
a6a46f41
OJ
486 } else if (!efi_guidcmp(guid, UV_SYSTEM_TABLE_GUID)) {
487 efi.uv_systab = table;
488 pr_cont(" UVsystab=0x%lx ", table);
03b48632 489#endif
a6a46f41
OJ
490 } else if (!efi_guidcmp(guid, HCDP_TABLE_GUID)) {
491 efi.hcdp = table;
492 pr_cont(" HCDP=0x%lx ", table);
493 } else if (!efi_guidcmp(guid, UGA_IO_PROTOCOL_GUID)) {
494 efi.uga = table;
495 pr_cont(" UGA=0x%lx ", table);
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496 }
497 }
e3cb3f5a 498 pr_cont("\n");
a6a46f41 499 early_iounmap(config_tables, efi.systab->nr_tables * sz);
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OJ
500}
501
502static void __init efi_runtime_init(void)
503{
504 efi_runtime_services_t *runtime;
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505
506 /*
507 * Check out the runtime services table. We need to map
508 * the runtime services table so that we can grab the physical
509 * address of several of the EFI runtime functions, needed to
510 * set the firmware into virtual mode.
511 */
beacfaac
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512 runtime = early_ioremap((unsigned long)efi.systab->runtime,
513 sizeof(efi_runtime_services_t));
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514 if (runtime != NULL) {
515 /*
516 * We will only need *early* access to the following
517 * two EFI runtime services before set_virtual_address_map
518 * is invoked.
519 */
520 efi_phys.get_time = (efi_get_time_t *)runtime->get_time;
521 efi_phys.set_virtual_address_map =
522 (efi_set_virtual_address_map_t *)
523 runtime->set_virtual_address_map;
524 /*
525 * Make efi_get_time can be called before entering
526 * virtual mode.
527 */
528 efi.get_time = phys_efi_get_time;
529 } else
e3cb3f5a 530 pr_err("Could not map the runtime service table!\n");
beacfaac 531 early_iounmap(runtime, sizeof(efi_runtime_services_t));
83e7ee66 532}
5b83683f 533
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OJ
534static void __init efi_memmap_init(void)
535{
5b83683f 536 /* Map the EFI memory map */
beacfaac
HY
537 memmap.map = early_ioremap((unsigned long)memmap.phys_map,
538 memmap.nr_map * memmap.desc_size);
5b83683f 539 if (memmap.map == NULL)
e3cb3f5a 540 pr_err("Could not map the memory map!\n");
5b83683f 541 memmap.map_end = memmap.map + (memmap.nr_map * memmap.desc_size);
175e438f 542
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PJ
543 if (add_efi_memmap)
544 do_add_efi_memmap();
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545}
546
547void __init efi_init(void)
548{
549 efi_char16_t *c16;
550 char vendor[100] = "unknown";
551 int i = 0;
552 void *tmp;
553
554#ifdef CONFIG_X86_32
555 efi_phys.systab = (efi_system_table_t *)boot_params.efi_info.efi_systab;
556#else
557 efi_phys.systab = (efi_system_table_t *)
558 (boot_params.efi_info.efi_systab |
559 ((__u64)boot_params.efi_info.efi_systab_hi<<32));
560#endif
561
562 efi_systab_init(efi_phys.systab);
563
564 /*
565 * Show what we know for posterity
566 */
567 c16 = tmp = early_ioremap(efi.systab->fw_vendor, 2);
568 if (c16) {
569 for (i = 0; i < sizeof(vendor) - 1 && *c16; ++i)
570 vendor[i] = *c16++;
571 vendor[i] = '\0';
572 } else
e3cb3f5a 573 pr_err("Could not map the firmware vendor!\n");
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OJ
574 early_iounmap(tmp, 2);
575
e3cb3f5a
OJ
576 pr_info("EFI v%u.%.02u by %s\n",
577 efi.systab->hdr.revision >> 16,
578 efi.systab->hdr.revision & 0xffff, vendor);
83e7ee66
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579
580 efi_config_init(efi.systab->tables, efi.systab->nr_tables);
581
582 efi_runtime_init();
583
584 efi_memmap_init();
5b83683f 585
772be899 586#ifdef CONFIG_X86_32
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587 x86_platform.get_wallclock = efi_get_time;
588 x86_platform.set_wallclock = efi_set_rtc_mmss;
772be899 589#endif
7bd867df 590
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591#if EFI_DEBUG
592 print_efi_memmap();
593#endif
594}
595
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596void __init efi_set_executable(efi_memory_desc_t *md, bool executable)
597{
598 u64 addr, npages;
599
600 addr = md->virt_addr;
601 npages = md->num_pages;
602
603 memrange_efi_to_native(&addr, &npages);
604
605 if (executable)
606 set_memory_x(addr, npages);
607 else
608 set_memory_nx(addr, npages);
609}
610
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611static void __init runtime_code_page_mkexec(void)
612{
613 efi_memory_desc_t *md;
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614 void *p;
615
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616 /* Make EFI runtime service code area executable */
617 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
618 md = p;
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619
620 if (md->type != EFI_RUNTIME_SERVICES_CODE)
621 continue;
622
9cd2b07c 623 efi_set_executable(md, true);
a2172e25 624 }
a2172e25 625}
a2172e25 626
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627/*
628 * This function will switch the EFI runtime services to virtual mode.
629 * Essentially, look through the EFI memmap and map every region that
630 * has the runtime attribute bit set in its memory descriptor and update
631 * that memory descriptor with the virtual address obtained from ioremap().
632 * This enables the runtime services to be called without having to
633 * thunk back into physical mode for every invocation.
634 */
635void __init efi_enter_virtual_mode(void)
636{
202f9d0a 637 efi_memory_desc_t *md, *prev_md = NULL;
5b83683f 638 efi_status_t status;
1c083eb2 639 unsigned long size;
dd39ecf5 640 u64 end, systab, addr, npages, end_pfn;
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641 void *p, *va, *new_memmap = NULL;
642 int count = 0;
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643
644 efi.systab = NULL;
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645
646 /* Merge contiguous regions of the same type and attribute */
647 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
648 u64 prev_size;
649 md = p;
650
651 if (!prev_md) {
652 prev_md = md;
653 continue;
654 }
655
656 if (prev_md->type != md->type ||
657 prev_md->attribute != md->attribute) {
658 prev_md = md;
659 continue;
660 }
661
662 prev_size = prev_md->num_pages << EFI_PAGE_SHIFT;
663
664 if (md->phys_addr == (prev_md->phys_addr + prev_size)) {
665 prev_md->num_pages += md->num_pages;
666 md->type = EFI_RESERVED_TYPE;
667 md->attribute = 0;
668 continue;
669 }
670 prev_md = md;
671 }
672
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673 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
674 md = p;
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675 if (!(md->attribute & EFI_MEMORY_RUNTIME) &&
676 md->type != EFI_BOOT_SERVICES_CODE &&
677 md->type != EFI_BOOT_SERVICES_DATA)
5b83683f 678 continue;
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679
680 size = md->num_pages << EFI_PAGE_SHIFT;
681 end = md->phys_addr + size;
682
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683 end_pfn = PFN_UP(end);
684 if (end_pfn <= max_low_pfn_mapped
685 || (end_pfn > (1UL << (32 - PAGE_SHIFT))
686 && end_pfn <= max_pfn_mapped))
1c083eb2 687 va = __va(md->phys_addr);
5b83683f 688 else
6a7bbd57 689 va = efi_ioremap(md->phys_addr, size, md->type);
1c083eb2 690
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691 md->virt_addr = (u64) (unsigned long) va;
692
693 if (!va) {
e3cb3f5a 694 pr_err("ioremap of 0x%llX failed!\n",
5b83683f 695 (unsigned long long)md->phys_addr);
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696 continue;
697 }
698
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699 if (!(md->attribute & EFI_MEMORY_WB)) {
700 addr = md->virt_addr;
701 npages = md->num_pages;
702 memrange_efi_to_native(&addr, &npages);
703 set_memory_uc(addr, npages);
704 }
e85f2051 705
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706 systab = (u64) (unsigned long) efi_phys.systab;
707 if (md->phys_addr <= systab && systab < end) {
708 systab += md->virt_addr - md->phys_addr;
709 efi.systab = (efi_system_table_t *) (unsigned long) systab;
710 }
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711 new_memmap = krealloc(new_memmap,
712 (count + 1) * memmap.desc_size,
713 GFP_KERNEL);
714 memcpy(new_memmap + (count * memmap.desc_size), md,
715 memmap.desc_size);
716 count++;
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717 }
718
719 BUG_ON(!efi.systab);
720
721 status = phys_efi_set_virtual_address_map(
7cb00b72 722 memmap.desc_size * count,
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723 memmap.desc_size,
724 memmap.desc_version,
7cb00b72 725 (efi_memory_desc_t *)__pa(new_memmap));
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726
727 if (status != EFI_SUCCESS) {
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728 pr_alert("Unable to switch EFI into virtual mode "
729 "(status=%lx)!\n", status);
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730 panic("EFI call to SetVirtualAddressMap() failed!");
731 }
732
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733 /*
734 * Thankfully, it does seem that no runtime services other than
735 * SetVirtualAddressMap() will touch boot services code, so we can
736 * get rid of it all at this point
737 */
738 efi_free_boot_services();
739
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740 /*
741 * Now that EFI is in virtual mode, update the function
742 * pointers in the runtime service table to the new virtual addresses.
743 *
744 * Call EFI services through wrapper functions.
745 */
746 efi.get_time = virt_efi_get_time;
747 efi.set_time = virt_efi_set_time;
748 efi.get_wakeup_time = virt_efi_get_wakeup_time;
749 efi.set_wakeup_time = virt_efi_set_wakeup_time;
750 efi.get_variable = virt_efi_get_variable;
751 efi.get_next_variable = virt_efi_get_next_variable;
752 efi.set_variable = virt_efi_set_variable;
753 efi.get_next_high_mono_count = virt_efi_get_next_high_mono_count;
754 efi.reset_system = virt_efi_reset_system;
2b5e8ef3 755 efi.set_virtual_address_map = NULL;
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756 efi.query_variable_info = virt_efi_query_variable_info;
757 efi.update_capsule = virt_efi_update_capsule;
758 efi.query_capsule_caps = virt_efi_query_capsule_caps;
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759 if (__supported_pte_mask & _PAGE_NX)
760 runtime_code_page_mkexec();
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761 early_iounmap(memmap.map, memmap.nr_map * memmap.desc_size);
762 memmap.map = NULL;
7cb00b72 763 kfree(new_memmap);
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764}
765
766/*
767 * Convenience functions to obtain memory types and attributes
768 */
769u32 efi_mem_type(unsigned long phys_addr)
770{
771 efi_memory_desc_t *md;
772 void *p;
773
774 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
775 md = p;
776 if ((md->phys_addr <= phys_addr) &&
777 (phys_addr < (md->phys_addr +
778 (md->num_pages << EFI_PAGE_SHIFT))))
779 return md->type;
780 }
781 return 0;
782}
783
784u64 efi_mem_attributes(unsigned long phys_addr)
785{
786 efi_memory_desc_t *md;
787 void *p;
788
789 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
790 md = p;
791 if ((md->phys_addr <= phys_addr) &&
792 (phys_addr < (md->phys_addr +
793 (md->num_pages << EFI_PAGE_SHIFT))))
794 return md->attribute;
795 }
796 return 0;
797}
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