Merge tag 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/dledford/rdma
[linux-2.6-block.git] / arch / x86 / platform / efi / efi.c
CommitLineData
5b83683f
HY
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>
d2f7cbe7
BP
15 * Copyright (C) 2013 SuSE Labs
16 * Borislav Petkov <bp@suse.de> - runtime services VA mapping
5b83683f
HY
17 *
18 * Copied from efi_32.c to eliminate the duplicated code between EFI
19 * 32/64 support code. --ying 2007-10-26
20 *
21 * All EFI Runtime Services are not implemented yet as EFI only
22 * supports physical mode addressing on SoftSDV. This is to be fixed
23 * in a future version. --drummond 1999-07-20
24 *
25 * Implemented EFI runtime services and virtual mode calls. --davidm
26 *
27 * Goutham Rao: <goutham.rao@intel.com>
28 * Skip non-WB memory and ignore empty memory ranges.
29 */
30
e3cb3f5a
OJ
31#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
32
5b83683f
HY
33#include <linux/kernel.h>
34#include <linux/init.h>
35#include <linux/efi.h>
2223af38 36#include <linux/efi-bgrt.h>
69c60c88 37#include <linux/export.h>
5b83683f 38#include <linux/bootmem.h>
0d01ff25 39#include <linux/slab.h>
a9ce6bc1 40#include <linux/memblock.h>
5b83683f
HY
41#include <linux/spinlock.h>
42#include <linux/uaccess.h>
43#include <linux/time.h>
44#include <linux/io.h>
45#include <linux/reboot.h>
46#include <linux/bcd.h>
47
48#include <asm/setup.h>
49#include <asm/efi.h>
50#include <asm/time.h>
a2172e25
HY
51#include <asm/cacheflush.h>
52#include <asm/tlbflush.h>
7bd867df 53#include <asm/x86_init.h>
3195ef59 54#include <asm/rtc.h>
a5d90c92 55#include <asm/uv/uv.h>
5b83683f 56
f4fccac0 57#define EFI_DEBUG
5b83683f 58
5b83683f
HY
59struct efi_memory_map memmap;
60
ecaea42e 61static struct efi efi_phys __initdata;
5b83683f
HY
62static efi_system_table_t efi_systab __initdata;
63
9b7d2049 64static efi_config_table_type_t arch_tables[] __initdata = {
272686bf
LL
65#ifdef CONFIG_X86_UV
66 {UV_SYSTEM_TABLE_GUID, "UVsystab", &efi.uv_systab},
67#endif
722da9d2 68 {NULL_GUID, NULL, NULL},
272686bf
LL
69};
70
1fec0533 71u64 efi_setup; /* efi setup_data physical address */
926172d4 72
60920685 73static int add_efi_memmap __initdata;
200001eb
PJ
74static int __init setup_add_efi_memmap(char *arg)
75{
76 add_efi_memmap = 1;
77 return 0;
78}
79early_param("add_efi_memmap", setup_add_efi_memmap);
80
5b83683f
HY
81static efi_status_t __init phys_efi_set_virtual_address_map(
82 unsigned long memory_map_size,
83 unsigned long descriptor_size,
84 u32 descriptor_version,
85 efi_memory_desc_t *virtual_map)
86{
87 efi_status_t status;
23a0d4e8 88 unsigned long flags;
744937b0 89 pgd_t *save_pgd;
5b83683f 90
744937b0 91 save_pgd = efi_call_phys_prolog();
23a0d4e8
IM
92
93 /* Disable interrupts around EFI calls: */
94 local_irq_save(flags);
62fa6e69
MF
95 status = efi_call_phys(efi_phys.set_virtual_address_map,
96 memory_map_size, descriptor_size,
97 descriptor_version, virtual_map);
23a0d4e8
IM
98 local_irq_restore(flags);
99
744937b0 100 efi_call_phys_epilog(save_pgd);
23a0d4e8 101
5b83683f
HY
102 return status;
103}
104
3565184e 105void efi_get_time(struct timespec *now)
5b83683f
HY
106{
107 efi_status_t status;
108 efi_time_t eft;
109 efi_time_cap_t cap;
110
111 status = efi.get_time(&eft, &cap);
112 if (status != EFI_SUCCESS)
e3cb3f5a 113 pr_err("Oops: efitime: can't read time!\n");
5b83683f 114
3565184e
DV
115 now->tv_sec = mktime(eft.year, eft.month, eft.day, eft.hour,
116 eft.minute, eft.second);
117 now->tv_nsec = 0;
5b83683f
HY
118}
119
b05b9f5f
TL
120void __init efi_find_mirror(void)
121{
122 void *p;
123 u64 mirror_size = 0, total_size = 0;
124
125 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
126 efi_memory_desc_t *md = p;
127 unsigned long long start = md->phys_addr;
128 unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;
129
130 total_size += size;
131 if (md->attribute & EFI_MEMORY_MORE_RELIABLE) {
132 memblock_mark_mirror(start, size);
133 mirror_size += size;
134 }
135 }
136 if (mirror_size)
137 pr_info("Memory: %lldM/%lldM mirrored memory\n",
138 mirror_size>>20, total_size>>20);
139}
140
69c91893
PJ
141/*
142 * Tell the kernel about the EFI memory map. This might include
143 * more than the max 128 entries that can fit in the e820 legacy
144 * (zeropage) memory map.
145 */
146
200001eb 147static void __init do_add_efi_memmap(void)
69c91893
PJ
148{
149 void *p;
150
151 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
152 efi_memory_desc_t *md = p;
153 unsigned long long start = md->phys_addr;
154 unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;
155 int e820_type;
156
e2a71476
CW
157 switch (md->type) {
158 case EFI_LOADER_CODE:
159 case EFI_LOADER_DATA:
160 case EFI_BOOT_SERVICES_CODE:
161 case EFI_BOOT_SERVICES_DATA:
162 case EFI_CONVENTIONAL_MEMORY:
163 if (md->attribute & EFI_MEMORY_WB)
164 e820_type = E820_RAM;
165 else
166 e820_type = E820_RESERVED;
167 break;
168 case EFI_ACPI_RECLAIM_MEMORY:
169 e820_type = E820_ACPI;
170 break;
171 case EFI_ACPI_MEMORY_NVS:
172 e820_type = E820_NVS;
173 break;
174 case EFI_UNUSABLE_MEMORY:
175 e820_type = E820_UNUSABLE;
176 break;
ad5fb870
DW
177 case EFI_PERSISTENT_MEMORY:
178 e820_type = E820_PMEM;
179 break;
e2a71476
CW
180 default:
181 /*
182 * EFI_RESERVED_TYPE EFI_RUNTIME_SERVICES_CODE
183 * EFI_RUNTIME_SERVICES_DATA EFI_MEMORY_MAPPED_IO
184 * EFI_MEMORY_MAPPED_IO_PORT_SPACE EFI_PAL_CODE
185 */
69c91893 186 e820_type = E820_RESERVED;
e2a71476
CW
187 break;
188 }
d0be6bde 189 e820_add_region(start, size, e820_type);
69c91893
PJ
190 }
191 sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
192}
193
1adbfa35 194int __init efi_memblock_x86_reserve_range(void)
ecacf09f 195{
15b9c359 196 struct efi_info *e = &boot_params.efi_info;
ecacf09f
HY
197 unsigned long pmap;
198
9f27bc54
DK
199 if (efi_enabled(EFI_PARAVIRT))
200 return 0;
201
05486fa7 202#ifdef CONFIG_X86_32
1adbfa35 203 /* Can't handle data above 4GB at this time */
15b9c359 204 if (e->efi_memmap_hi) {
1adbfa35
OJ
205 pr_err("Memory map is above 4GB, disabling EFI.\n");
206 return -EINVAL;
207 }
15b9c359 208 pmap = e->efi_memmap;
05486fa7 209#else
15b9c359 210 pmap = (e->efi_memmap | ((__u64)e->efi_memmap_hi << 32));
ecacf09f 211#endif
15b9c359
BP
212 memmap.phys_map = (void *)pmap;
213 memmap.nr_map = e->efi_memmap_size /
214 e->efi_memdesc_size;
215 memmap.desc_size = e->efi_memdesc_size;
216 memmap.desc_version = e->efi_memdesc_version;
217
24aa0788 218 memblock_reserve(pmap, memmap.nr_map * memmap.desc_size);
1adbfa35 219
258f6fd7
LL
220 efi.memmap = &memmap;
221
1adbfa35 222 return 0;
ecacf09f
HY
223}
224
5b83683f
HY
225static void __init print_efi_memmap(void)
226{
f4fccac0 227#ifdef EFI_DEBUG
5b83683f
HY
228 efi_memory_desc_t *md;
229 void *p;
230 int i;
231
232 for (p = memmap.map, i = 0;
233 p < memmap.map_end;
234 p += memmap.desc_size, i++) {
ace1d121
LE
235 char buf[64];
236
5b83683f 237 md = p;
ace1d121
LE
238 pr_info("mem%02u: %s range=[0x%016llx-0x%016llx) (%lluMB)\n",
239 i, efi_md_typeattr_format(buf, sizeof(buf), md),
240 md->phys_addr,
5b83683f
HY
241 md->phys_addr + (md->num_pages << EFI_PAGE_SHIFT),
242 (md->num_pages >> (20 - EFI_PAGE_SHIFT)));
243 }
5b83683f 244#endif /* EFI_DEBUG */
f4fccac0 245}
5b83683f 246
5189c2a7 247void __init efi_unmap_memmap(void)
78510792 248{
3e909599 249 clear_bit(EFI_MEMMAP, &efi.flags);
78510792 250 if (memmap.map) {
abc93f8e 251 early_memunmap(memmap.map, memmap.nr_map * memmap.desc_size);
78510792
JT
252 memmap.map = NULL;
253 }
254}
255
140bf275 256static int __init efi_systab_init(void *phys)
5b83683f 257{
83e68189 258 if (efi_enabled(EFI_64BIT)) {
1adbfa35 259 efi_system_table_64_t *systab64;
1fec0533 260 struct efi_setup_data *data = NULL;
1adbfa35
OJ
261 u64 tmp = 0;
262
1fec0533
DY
263 if (efi_setup) {
264 data = early_memremap(efi_setup, sizeof(*data));
265 if (!data)
266 return -ENOMEM;
267 }
abc93f8e 268 systab64 = early_memremap((unsigned long)phys,
1adbfa35
OJ
269 sizeof(*systab64));
270 if (systab64 == NULL) {
271 pr_err("Couldn't map the system table!\n");
1fec0533 272 if (data)
abc93f8e 273 early_memunmap(data, sizeof(*data));
1adbfa35
OJ
274 return -ENOMEM;
275 }
276
277 efi_systab.hdr = systab64->hdr;
1fec0533
DY
278 efi_systab.fw_vendor = data ? (unsigned long)data->fw_vendor :
279 systab64->fw_vendor;
280 tmp |= data ? data->fw_vendor : systab64->fw_vendor;
1adbfa35
OJ
281 efi_systab.fw_revision = systab64->fw_revision;
282 efi_systab.con_in_handle = systab64->con_in_handle;
283 tmp |= systab64->con_in_handle;
284 efi_systab.con_in = systab64->con_in;
285 tmp |= systab64->con_in;
286 efi_systab.con_out_handle = systab64->con_out_handle;
287 tmp |= systab64->con_out_handle;
288 efi_systab.con_out = systab64->con_out;
289 tmp |= systab64->con_out;
290 efi_systab.stderr_handle = systab64->stderr_handle;
291 tmp |= systab64->stderr_handle;
292 efi_systab.stderr = systab64->stderr;
293 tmp |= systab64->stderr;
1fec0533
DY
294 efi_systab.runtime = data ?
295 (void *)(unsigned long)data->runtime :
296 (void *)(unsigned long)systab64->runtime;
297 tmp |= data ? data->runtime : systab64->runtime;
1adbfa35
OJ
298 efi_systab.boottime = (void *)(unsigned long)systab64->boottime;
299 tmp |= systab64->boottime;
300 efi_systab.nr_tables = systab64->nr_tables;
1fec0533
DY
301 efi_systab.tables = data ? (unsigned long)data->tables :
302 systab64->tables;
303 tmp |= data ? data->tables : systab64->tables;
1adbfa35 304
abc93f8e 305 early_memunmap(systab64, sizeof(*systab64));
1fec0533 306 if (data)
abc93f8e 307 early_memunmap(data, sizeof(*data));
1adbfa35
OJ
308#ifdef CONFIG_X86_32
309 if (tmp >> 32) {
310 pr_err("EFI data located above 4GB, disabling EFI.\n");
311 return -EINVAL;
312 }
313#endif
314 } else {
315 efi_system_table_32_t *systab32;
316
abc93f8e 317 systab32 = early_memremap((unsigned long)phys,
1adbfa35
OJ
318 sizeof(*systab32));
319 if (systab32 == NULL) {
320 pr_err("Couldn't map the system table!\n");
321 return -ENOMEM;
322 }
323
324 efi_systab.hdr = systab32->hdr;
325 efi_systab.fw_vendor = systab32->fw_vendor;
326 efi_systab.fw_revision = systab32->fw_revision;
327 efi_systab.con_in_handle = systab32->con_in_handle;
328 efi_systab.con_in = systab32->con_in;
329 efi_systab.con_out_handle = systab32->con_out_handle;
330 efi_systab.con_out = systab32->con_out;
331 efi_systab.stderr_handle = systab32->stderr_handle;
332 efi_systab.stderr = systab32->stderr;
333 efi_systab.runtime = (void *)(unsigned long)systab32->runtime;
334 efi_systab.boottime = (void *)(unsigned long)systab32->boottime;
335 efi_systab.nr_tables = systab32->nr_tables;
336 efi_systab.tables = systab32->tables;
337
abc93f8e 338 early_memunmap(systab32, sizeof(*systab32));
140bf275 339 }
1adbfa35 340
5b83683f
HY
341 efi.systab = &efi_systab;
342
343 /*
344 * Verify the EFI Table
345 */
140bf275 346 if (efi.systab->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE) {
e3cb3f5a 347 pr_err("System table signature incorrect!\n");
140bf275
OJ
348 return -EINVAL;
349 }
5b83683f 350 if ((efi.systab->hdr.revision >> 16) == 0)
9b7d2049 351 pr_err("Warning: System table version %d.%02d, expected 1.00 or greater!\n",
5b83683f
HY
352 efi.systab->hdr.revision >> 16,
353 efi.systab->hdr.revision & 0xffff);
140bf275 354
0f8093a9
MF
355 set_bit(EFI_SYSTEM_TABLES, &efi.flags);
356
140bf275 357 return 0;
83e7ee66 358}
5b83683f 359
4f9dbcfc 360static int __init efi_runtime_init32(void)
83e7ee66 361{
4f9dbcfc
MF
362 efi_runtime_services_32_t *runtime;
363
abc93f8e 364 runtime = early_memremap((unsigned long)efi.systab->runtime,
4f9dbcfc
MF
365 sizeof(efi_runtime_services_32_t));
366 if (!runtime) {
367 pr_err("Could not map the runtime service table!\n");
368 return -ENOMEM;
369 }
5b83683f
HY
370
371 /*
0ce4605c
MK
372 * We will only need *early* access to the SetVirtualAddressMap
373 * EFI runtime service. All other runtime services will be called
374 * via the virtual mapping.
5b83683f 375 */
4f9dbcfc
MF
376 efi_phys.set_virtual_address_map =
377 (efi_set_virtual_address_map_t *)
378 (unsigned long)runtime->set_virtual_address_map;
abc93f8e 379 early_memunmap(runtime, sizeof(efi_runtime_services_32_t));
4f9dbcfc
MF
380
381 return 0;
382}
383
384static int __init efi_runtime_init64(void)
385{
386 efi_runtime_services_64_t *runtime;
387
abc93f8e 388 runtime = early_memremap((unsigned long)efi.systab->runtime,
4f9dbcfc 389 sizeof(efi_runtime_services_64_t));
140bf275 390 if (!runtime) {
e3cb3f5a 391 pr_err("Could not map the runtime service table!\n");
140bf275
OJ
392 return -ENOMEM;
393 }
4f9dbcfc 394
140bf275 395 /*
0ce4605c
MK
396 * We will only need *early* access to the SetVirtualAddressMap
397 * EFI runtime service. All other runtime services will be called
398 * via the virtual mapping.
140bf275 399 */
140bf275 400 efi_phys.set_virtual_address_map =
4f9dbcfc
MF
401 (efi_set_virtual_address_map_t *)
402 (unsigned long)runtime->set_virtual_address_map;
abc93f8e 403 early_memunmap(runtime, sizeof(efi_runtime_services_64_t));
4f9dbcfc
MF
404
405 return 0;
406}
407
408static int __init efi_runtime_init(void)
409{
410 int rv;
411
412 /*
413 * Check out the runtime services table. We need to map
414 * the runtime services table so that we can grab the physical
415 * address of several of the EFI runtime functions, needed to
416 * set the firmware into virtual mode.
9f27bc54
DK
417 *
418 * When EFI_PARAVIRT is in force then we could not map runtime
419 * service memory region because we do not have direct access to it.
420 * However, runtime services are available through proxy functions
421 * (e.g. in case of Xen dom0 EFI implementation they call special
422 * hypercall which executes relevant EFI functions) and that is why
423 * they are always enabled.
4f9dbcfc 424 */
4f9dbcfc 425
9f27bc54
DK
426 if (!efi_enabled(EFI_PARAVIRT)) {
427 if (efi_enabled(EFI_64BIT))
428 rv = efi_runtime_init64();
429 else
430 rv = efi_runtime_init32();
431
432 if (rv)
433 return rv;
434 }
140bf275 435
0f8093a9
MF
436 set_bit(EFI_RUNTIME_SERVICES, &efi.flags);
437
140bf275 438 return 0;
83e7ee66 439}
5b83683f 440
140bf275 441static int __init efi_memmap_init(void)
83e7ee66 442{
9f27bc54
DK
443 if (efi_enabled(EFI_PARAVIRT))
444 return 0;
445
5b83683f 446 /* Map the EFI memory map */
abc93f8e 447 memmap.map = early_memremap((unsigned long)memmap.phys_map,
beacfaac 448 memmap.nr_map * memmap.desc_size);
140bf275 449 if (memmap.map == NULL) {
e3cb3f5a 450 pr_err("Could not map the memory map!\n");
140bf275
OJ
451 return -ENOMEM;
452 }
5b83683f 453 memmap.map_end = memmap.map + (memmap.nr_map * memmap.desc_size);
175e438f 454
200001eb
PJ
455 if (add_efi_memmap)
456 do_add_efi_memmap();
140bf275 457
0f8093a9
MF
458 set_bit(EFI_MEMMAP, &efi.flags);
459
140bf275 460 return 0;
83e7ee66
OJ
461}
462
463void __init efi_init(void)
464{
465 efi_char16_t *c16;
466 char vendor[100] = "unknown";
467 int i = 0;
468 void *tmp;
469
470#ifdef CONFIG_X86_32
1adbfa35
OJ
471 if (boot_params.efi_info.efi_systab_hi ||
472 boot_params.efi_info.efi_memmap_hi) {
473 pr_info("Table located above 4GB, disabling EFI.\n");
1adbfa35
OJ
474 return;
475 }
83e7ee66
OJ
476 efi_phys.systab = (efi_system_table_t *)boot_params.efi_info.efi_systab;
477#else
478 efi_phys.systab = (efi_system_table_t *)
1adbfa35
OJ
479 (boot_params.efi_info.efi_systab |
480 ((__u64)boot_params.efi_info.efi_systab_hi<<32));
83e7ee66
OJ
481#endif
482
83e68189 483 if (efi_systab_init(efi_phys.systab))
140bf275 484 return;
83e68189 485
a0998eb1
DY
486 efi.config_table = (unsigned long)efi.systab->tables;
487 efi.fw_vendor = (unsigned long)efi.systab->fw_vendor;
488 efi.runtime = (unsigned long)efi.systab->runtime;
489
83e7ee66
OJ
490 /*
491 * Show what we know for posterity
492 */
abc93f8e 493 c16 = tmp = early_memremap(efi.systab->fw_vendor, 2);
83e7ee66
OJ
494 if (c16) {
495 for (i = 0; i < sizeof(vendor) - 1 && *c16; ++i)
496 vendor[i] = *c16++;
497 vendor[i] = '\0';
498 } else
e3cb3f5a 499 pr_err("Could not map the firmware vendor!\n");
abc93f8e 500 early_memunmap(tmp, 2);
83e7ee66 501
e3cb3f5a
OJ
502 pr_info("EFI v%u.%.02u by %s\n",
503 efi.systab->hdr.revision >> 16,
504 efi.systab->hdr.revision & 0xffff, vendor);
83e7ee66 505
1fec0533
DY
506 if (efi_reuse_config(efi.systab->tables, efi.systab->nr_tables))
507 return;
508
272686bf 509 if (efi_config_init(arch_tables))
140bf275 510 return;
83e68189 511
1adbfa35
OJ
512 /*
513 * Note: We currently don't support runtime services on an EFI
514 * that doesn't match the kernel 32/64-bit mode.
515 */
516
7d453eee 517 if (!efi_runtime_supported())
1adbfa35 518 pr_info("No EFI runtime due to 32/64-bit mismatch with kernel\n");
83e68189 519 else {
b2e0a54a 520 if (efi_runtime_disabled() || efi_runtime_init())
83e68189 521 return;
140bf275 522 }
83e68189 523 if (efi_memmap_init())
140bf275 524 return;
83e68189 525
fed6cefe
BP
526 if (efi_enabled(EFI_DBG))
527 print_efi_memmap();
0bb54905
PJ
528
529 efi_esrt_init();
5b83683f
HY
530}
531
2223af38
JT
532void __init efi_late_init(void)
533{
534 efi_bgrt_init();
535}
536
9cd2b07c
MG
537void __init efi_set_executable(efi_memory_desc_t *md, bool executable)
538{
539 u64 addr, npages;
540
541 addr = md->virt_addr;
542 npages = md->num_pages;
543
544 memrange_efi_to_native(&addr, &npages);
545
546 if (executable)
547 set_memory_x(addr, npages);
548 else
549 set_memory_nx(addr, npages);
550}
551
c55d016f 552void __init runtime_code_page_mkexec(void)
a2172e25
HY
553{
554 efi_memory_desc_t *md;
a2172e25
HY
555 void *p;
556
a2172e25
HY
557 /* Make EFI runtime service code area executable */
558 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
559 md = p;
1c083eb2
HY
560
561 if (md->type != EFI_RUNTIME_SERVICES_CODE)
562 continue;
563
9cd2b07c 564 efi_set_executable(md, true);
a2172e25 565 }
a2172e25 566}
a2172e25 567
4e78eb05 568void __init efi_memory_uc(u64 addr, unsigned long size)
3e8fa263
MF
569{
570 unsigned long page_shift = 1UL << EFI_PAGE_SHIFT;
571 u64 npages;
572
573 npages = round_up(size, page_shift) / page_shift;
574 memrange_efi_to_native(&addr, &npages);
575 set_memory_uc(addr, npages);
576}
577
d2f7cbe7
BP
578void __init old_map_region(efi_memory_desc_t *md)
579{
580 u64 start_pfn, end_pfn, end;
581 unsigned long size;
582 void *va;
583
584 start_pfn = PFN_DOWN(md->phys_addr);
585 size = md->num_pages << PAGE_SHIFT;
586 end = md->phys_addr + size;
587 end_pfn = PFN_UP(end);
588
589 if (pfn_range_is_mapped(start_pfn, end_pfn)) {
590 va = __va(md->phys_addr);
591
592 if (!(md->attribute & EFI_MEMORY_WB))
593 efi_memory_uc((u64)(unsigned long)va, size);
594 } else
595 va = efi_ioremap(md->phys_addr, size,
596 md->type, md->attribute);
597
598 md->virt_addr = (u64) (unsigned long) va;
599 if (!va)
600 pr_err("ioremap of 0x%llX failed!\n",
601 (unsigned long long)md->phys_addr);
602}
603
481f75c0
DY
604/* Merge contiguous regions of the same type and attribute */
605static void __init efi_merge_regions(void)
5b83683f 606{
481f75c0 607 void *p;
202f9d0a 608 efi_memory_desc_t *md, *prev_md = NULL;
202f9d0a 609
202f9d0a
MG
610 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
611 u64 prev_size;
612 md = p;
613
614 if (!prev_md) {
615 prev_md = md;
616 continue;
617 }
618
619 if (prev_md->type != md->type ||
620 prev_md->attribute != md->attribute) {
621 prev_md = md;
622 continue;
623 }
624
625 prev_size = prev_md->num_pages << EFI_PAGE_SHIFT;
626
627 if (md->phys_addr == (prev_md->phys_addr + prev_size)) {
628 prev_md->num_pages += md->num_pages;
629 md->type = EFI_RESERVED_TYPE;
630 md->attribute = 0;
631 continue;
632 }
633 prev_md = md;
481f75c0
DY
634 }
635}
636
637static void __init get_systab_virt_addr(efi_memory_desc_t *md)
638{
639 unsigned long size;
640 u64 end, systab;
d2f7cbe7 641
481f75c0
DY
642 size = md->num_pages << EFI_PAGE_SHIFT;
643 end = md->phys_addr + size;
644 systab = (u64)(unsigned long)efi_phys.systab;
645 if (md->phys_addr <= systab && systab < end) {
646 systab += md->virt_addr - md->phys_addr;
647 efi.systab = (efi_system_table_t *)(unsigned long)systab;
202f9d0a 648 }
481f75c0
DY
649}
650
fabb37c7 651static void __init save_runtime_map(void)
926172d4 652{
fabb37c7 653#ifdef CONFIG_KEXEC
926172d4
DY
654 efi_memory_desc_t *md;
655 void *tmp, *p, *q = NULL;
656 int count = 0;
657
a3530e8f
DY
658 if (efi_enabled(EFI_OLD_MEMMAP))
659 return;
660
926172d4
DY
661 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
662 md = p;
663
664 if (!(md->attribute & EFI_MEMORY_RUNTIME) ||
665 (md->type == EFI_BOOT_SERVICES_CODE) ||
666 (md->type == EFI_BOOT_SERVICES_DATA))
667 continue;
668 tmp = krealloc(q, (count + 1) * memmap.desc_size, GFP_KERNEL);
669 if (!tmp)
670 goto out;
671 q = tmp;
672
673 memcpy(q + count * memmap.desc_size, md, memmap.desc_size);
674 count++;
675 }
676
518548ab 677 efi_runtime_map_setup(q, count, memmap.desc_size);
fabb37c7 678 return;
926172d4 679
926172d4
DY
680out:
681 kfree(q);
fabb37c7
BP
682 pr_err("Error saving runtime map, efi runtime on kexec non-functional!!\n");
683#endif
1fec0533
DY
684}
685
b7b898ae
BP
686static void *realloc_pages(void *old_memmap, int old_shift)
687{
688 void *ret;
689
690 ret = (void *)__get_free_pages(GFP_KERNEL, old_shift + 1);
691 if (!ret)
692 goto out;
693
694 /*
695 * A first-time allocation doesn't have anything to copy.
696 */
697 if (!old_memmap)
698 return ret;
699
700 memcpy(ret, old_memmap, PAGE_SIZE << old_shift);
701
702out:
703 free_pages((unsigned long)old_memmap, old_shift);
704 return ret;
705}
706
481f75c0 707/*
b7b898ae
BP
708 * Map the efi memory ranges of the runtime services and update new_mmap with
709 * virtual addresses.
481f75c0 710 */
b7b898ae 711static void * __init efi_map_regions(int *count, int *pg_shift)
481f75c0 712{
b7b898ae
BP
713 void *p, *new_memmap = NULL;
714 unsigned long left = 0;
481f75c0 715 efi_memory_desc_t *md;
202f9d0a 716
5b83683f
HY
717 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
718 md = p;
70087011
JB
719 if (!(md->attribute & EFI_MEMORY_RUNTIME)) {
720#ifdef CONFIG_X86_64
721 if (md->type != EFI_BOOT_SERVICES_CODE &&
722 md->type != EFI_BOOT_SERVICES_DATA)
723#endif
724 continue;
725 }
1c083eb2 726
d2f7cbe7 727 efi_map_region(md);
481f75c0
DY
728 get_systab_virt_addr(md);
729
b7b898ae
BP
730 if (left < memmap.desc_size) {
731 new_memmap = realloc_pages(new_memmap, *pg_shift);
732 if (!new_memmap)
733 return NULL;
734
735 left += PAGE_SIZE << *pg_shift;
736 (*pg_shift)++;
737 }
738
481f75c0
DY
739 memcpy(new_memmap + (*count * memmap.desc_size), md,
740 memmap.desc_size);
b7b898ae
BP
741
742 left -= memmap.desc_size;
481f75c0
DY
743 (*count)++;
744 }
d2f7cbe7 745
481f75c0 746 return new_memmap;
481f75c0
DY
747}
748
fabb37c7
BP
749static void __init kexec_enter_virtual_mode(void)
750{
751#ifdef CONFIG_KEXEC
752 efi_memory_desc_t *md;
753 void *p;
754
755 efi.systab = NULL;
756
757 /*
758 * We don't do virtual mode, since we don't do runtime services, on
759 * non-native EFI
760 */
761 if (!efi_is_native()) {
762 efi_unmap_memmap();
a5a750a9 763 clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
fabb37c7
BP
764 return;
765 }
766
767 /*
768 * Map efi regions which were passed via setup_data. The virt_addr is a
769 * fixed addr which was used in first kernel of a kexec boot.
770 */
771 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
772 md = p;
773 efi_map_region_fixed(md); /* FIXME: add error handling */
774 get_systab_virt_addr(md);
775 }
776
777 save_runtime_map();
778
779 BUG_ON(!efi.systab);
780
781 efi_sync_low_kernel_mappings();
782
783 /*
784 * Now that EFI is in virtual mode, update the function
785 * pointers in the runtime service table to the new virtual addresses.
786 *
787 * Call EFI services through wrapper functions.
788 */
789 efi.runtime_version = efi_systab.hdr.revision;
994448f1 790
022ee6c5 791 efi_native_runtime_setup();
994448f1 792
fabb37c7 793 efi.set_virtual_address_map = NULL;
fabb37c7
BP
794
795 if (efi_enabled(EFI_OLD_MEMMAP) && (__supported_pte_mask & _PAGE_NX))
796 runtime_code_page_mkexec();
797
798 /* clean DUMMY object */
eeb9db09 799 efi_delete_dummy_variable();
fabb37c7
BP
800#endif
801}
802
481f75c0
DY
803/*
804 * This function will switch the EFI runtime services to virtual mode.
805 * Essentially, we look through the EFI memmap and map every region that
806 * has the runtime attribute bit set in its memory descriptor into the
807 * ->trampoline_pgd page table using a top-down VA allocation scheme.
808 *
809 * The old method which used to update that memory descriptor with the
810 * virtual address obtained from ioremap() is still supported when the
811 * kernel is booted with efi=old_map on its command line. Same old
812 * method enabled the runtime services to be called without having to
813 * thunk back into physical mode for every invocation.
814 *
815 * The new method does a pagetable switch in a preemption-safe manner
816 * so that we're in a different address space when calling a runtime
817 * function. For function arguments passing we do copy the PGDs of the
818 * kernel page table into ->trampoline_pgd prior to each call.
1fec0533
DY
819 *
820 * Specially for kexec boot, efi runtime maps in previous kernel should
821 * be passed in via setup_data. In that case runtime ranges will be mapped
fabb37c7
BP
822 * to the same virtual addresses as the first kernel, see
823 * kexec_enter_virtual_mode().
481f75c0 824 */
fabb37c7 825static void __init __efi_enter_virtual_mode(void)
481f75c0 826{
fabb37c7 827 int count = 0, pg_shift = 0;
481f75c0 828 void *new_memmap = NULL;
b7b898ae 829 efi_status_t status;
1c083eb2 830
481f75c0 831 efi.systab = NULL;
d2f7cbe7 832
fabb37c7
BP
833 efi_merge_regions();
834 new_memmap = efi_map_regions(&count, &pg_shift);
835 if (!new_memmap) {
836 pr_err("Error reallocating memory, EFI runtime non-functional!\n");
a5a750a9 837 clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
fabb37c7 838 return;
b7b898ae 839 }
926172d4 840
fabb37c7
BP
841 save_runtime_map();
842
5b83683f
HY
843 BUG_ON(!efi.systab);
844
a5a750a9
DY
845 if (efi_setup_page_tables(__pa(new_memmap), 1 << pg_shift)) {
846 clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
fabb37c7 847 return;
a5a750a9 848 }
b7b898ae 849
d2f7cbe7 850 efi_sync_low_kernel_mappings();
11cc8512 851 efi_dump_pagetable();
d2f7cbe7 852
994448f1
MF
853 if (efi_is_native()) {
854 status = phys_efi_set_virtual_address_map(
855 memmap.desc_size * count,
856 memmap.desc_size,
857 memmap.desc_version,
858 (efi_memory_desc_t *)__pa(new_memmap));
859 } else {
860 status = efi_thunk_set_virtual_address_map(
861 efi_phys.set_virtual_address_map,
862 memmap.desc_size * count,
863 memmap.desc_size,
864 memmap.desc_version,
865 (efi_memory_desc_t *)__pa(new_memmap));
866 }
1fec0533 867
fabb37c7
BP
868 if (status != EFI_SUCCESS) {
869 pr_alert("Unable to switch EFI into virtual mode (status=%lx)!\n",
870 status);
871 panic("EFI call to SetVirtualAddressMap() failed!");
5b83683f
HY
872 }
873
874 /*
875 * Now that EFI is in virtual mode, update the function
876 * pointers in the runtime service table to the new virtual addresses.
877 *
878 * Call EFI services through wrapper functions.
879 */
712ba9e9 880 efi.runtime_version = efi_systab.hdr.revision;
4f9dbcfc
MF
881
882 if (efi_is_native())
022ee6c5 883 efi_native_runtime_setup();
4f9dbcfc
MF
884 else
885 efi_thunk_runtime_setup();
886
2b5e8ef3 887 efi.set_virtual_address_map = NULL;
d2f7cbe7 888
c55d016f 889 efi_runtime_mkexec();
1adbfa35 890
b7b898ae
BP
891 /*
892 * We mapped the descriptor array into the EFI pagetable above but we're
893 * not unmapping it here. Here's why:
894 *
895 * We're copying select PGDs from the kernel page table to the EFI page
896 * table and when we do so and make changes to those PGDs like unmapping
897 * stuff from them, those changes appear in the kernel page table and we
898 * go boom.
899 *
900 * From setup_real_mode():
901 *
902 * ...
903 * trampoline_pgd[0] = init_level4_pgt[pgd_index(__PAGE_OFFSET)].pgd;
904 *
905 * In this particular case, our allocation is in PGD 0 of the EFI page
906 * table but we've copied that PGD from PGD[272] of the EFI page table:
907 *
908 * pgd_index(__PAGE_OFFSET = 0xffff880000000000) = 272
909 *
910 * where the direct memory mapping in kernel space is.
911 *
912 * new_memmap's VA comes from that direct mapping and thus clearing it,
913 * it would get cleared in the kernel page table too.
914 *
915 * efi_cleanup_page_tables(__pa(new_memmap), 1 << pg_shift);
916 */
fabb37c7 917 free_pages((unsigned long)new_memmap, pg_shift);
f8b84043
MG
918
919 /* clean DUMMY object */
eeb9db09 920 efi_delete_dummy_variable();
5b83683f
HY
921}
922
fabb37c7
BP
923void __init efi_enter_virtual_mode(void)
924{
9f27bc54
DK
925 if (efi_enabled(EFI_PARAVIRT))
926 return;
927
fabb37c7
BP
928 if (efi_setup)
929 kexec_enter_virtual_mode();
930 else
931 __efi_enter_virtual_mode();
932}
933
5b83683f
HY
934/*
935 * Convenience functions to obtain memory types and attributes
936 */
937u32 efi_mem_type(unsigned long phys_addr)
938{
939 efi_memory_desc_t *md;
940 void *p;
941
83e68189
MF
942 if (!efi_enabled(EFI_MEMMAP))
943 return 0;
944
5b83683f
HY
945 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
946 md = p;
947 if ((md->phys_addr <= phys_addr) &&
948 (phys_addr < (md->phys_addr +
949 (md->num_pages << EFI_PAGE_SHIFT))))
950 return md->type;
951 }
952 return 0;
953}
954
955u64 efi_mem_attributes(unsigned long phys_addr)
956{
957 efi_memory_desc_t *md;
958 void *p;
959
67a9b9c5
DK
960 if (!efi_enabled(EFI_MEMMAP))
961 return 0;
962
5b83683f
HY
963 for (p = memmap.map; p < memmap.map_end; p += memmap.desc_size) {
964 md = p;
965 if ((md->phys_addr <= phys_addr) &&
966 (phys_addr < (md->phys_addr +
967 (md->num_pages << EFI_PAGE_SHIFT))))
968 return md->attribute;
969 }
970 return 0;
971}
a6e4d5a0 972
5ae3683c 973static int __init arch_parse_efi_cmdline(char *str)
d2f7cbe7 974{
9115c758
RN
975 if (!str) {
976 pr_warn("need at least one option\n");
977 return -EINVAL;
978 }
979
6ccc72b8
DY
980 if (parse_option_str(str, "old_map"))
981 set_bit(EFI_OLD_MEMMAP, &efi.flags);
fed6cefe
BP
982 if (parse_option_str(str, "debug"))
983 set_bit(EFI_DBG, &efi.flags);
d2f7cbe7
BP
984
985 return 0;
986}
5ae3683c 987early_param("efi", arch_parse_efi_cmdline);