efi.c 28.2 KB
Newer Older
1
// SPDX-License-Identifier: GPL-2.0
H
Huang, Ying 已提交
2 3 4 5 6 7 8 9 10 11 12 13 14 15
/*
 * Common EFI (Extensible Firmware Interface) support functions
 * Based on Extensible Firmware Interface Specification version 1.0
 *
 * Copyright (C) 1999 VA Linux Systems
 * Copyright (C) 1999 Walt Drummond <drummond@valinux.com>
 * Copyright (C) 1999-2002 Hewlett-Packard Co.
 *	David Mosberger-Tang <davidm@hpl.hp.com>
 *	Stephane Eranian <eranian@hpl.hp.com>
 * Copyright (C) 2005-2008 Intel Co.
 *	Fenghua Yu <fenghua.yu@intel.com>
 *	Bibo Mao <bibo.mao@intel.com>
 *	Chandramouli Narayanan <mouli@linux.intel.com>
 *	Huang Ying <ying.huang@intel.com>
16 17
 * Copyright (C) 2013 SuSE Labs
 *	Borislav Petkov <bp@suse.de> - runtime services VA mapping
H
Huang, Ying 已提交
18 19 20 21 22 23 24 25 26 27 28 29 30 31
 *
 * Copied from efi_32.c to eliminate the duplicated code between EFI
 * 32/64 support code. --ying 2007-10-26
 *
 * All EFI Runtime Services are not implemented yet as EFI only
 * supports physical mode addressing on SoftSDV. This is to be fixed
 * in a future version.  --drummond 1999-07-20
 *
 * Implemented EFI runtime services and virtual mode calls.  --davidm
 *
 * Goutham Rao: <goutham.rao@intel.com>
 *	Skip non-WB memory and ignore empty memory ranges.
 */

32 33
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

H
Huang, Ying 已提交
34 35 36
#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/efi.h>
37
#include <linux/efi-bgrt.h>
38
#include <linux/export.h>
39
#include <linux/memblock.h>
M
Mike Rapoport 已提交
40
#include <linux/slab.h>
H
Huang, Ying 已提交
41 42 43 44 45 46 47 48 49
#include <linux/spinlock.h>
#include <linux/uaccess.h>
#include <linux/time.h>
#include <linux/io.h>
#include <linux/reboot.h>
#include <linux/bcd.h>

#include <asm/setup.h>
#include <asm/efi.h>
50
#include <asm/e820/api.h>
H
Huang, Ying 已提交
51
#include <asm/time.h>
L
Laura Abbott 已提交
52
#include <asm/set_memory.h>
53
#include <asm/tlbflush.h>
54
#include <asm/x86_init.h>
B
Borislav Petkov 已提交
55
#include <asm/uv/uv.h>
H
Huang, Ying 已提交
56

H
Harvey Harrison 已提交
57
static struct efi efi_phys __initdata;
H
Huang, Ying 已提交
58 59
static efi_system_table_t efi_systab __initdata;

J
Joe Perches 已提交
60
static efi_config_table_type_t arch_tables[] __initdata = {
61
#ifdef CONFIG_X86_UV
62
	{UV_SYSTEM_TABLE_GUID, "UVsystab", &uv_systab_phys},
63
#endif
64
	{NULL_GUID, NULL, NULL},
65 66
};

67 68 69 70 71 72 73 74 75
static const unsigned long * const efi_tables[] = {
	&efi.mps,
	&efi.acpi,
	&efi.acpi20,
	&efi.smbios,
	&efi.smbios3,
	&efi.boot_info,
	&efi.hcdp,
	&efi.uga,
76 77 78
#ifdef CONFIG_X86_UV
	&uv_systab_phys,
#endif
79 80 81 82 83 84
	&efi.fw_vendor,
	&efi.runtime,
	&efi.config_table,
	&efi.esrt,
	&efi.properties_table,
	&efi.mem_attr_table,
85 86 87
#ifdef CONFIG_EFI_RCI2_TABLE
	&rci2_table_phys,
#endif
88 89
};

90
u64 efi_setup;		/* efi setup_data physical address */
91

92
static int add_efi_memmap __initdata;
93 94 95 96 97 98 99
static int __init setup_add_efi_memmap(char *arg)
{
	add_efi_memmap = 1;
	return 0;
}
early_param("add_efi_memmap", setup_add_efi_memmap);

H
Huang, Ying 已提交
100 101 102 103 104 105 106
static efi_status_t __init phys_efi_set_virtual_address_map(
	unsigned long memory_map_size,
	unsigned long descriptor_size,
	u32 descriptor_version,
	efi_memory_desc_t *virtual_map)
{
	efi_status_t status;
107
	unsigned long flags;
108
	pgd_t *save_pgd;
H
Huang, Ying 已提交
109

110
	save_pgd = efi_call_phys_prolog();
111 112
	if (!save_pgd)
		return EFI_ABORTED;
113 114 115

	/* Disable interrupts around EFI calls: */
	local_irq_save(flags);
116 117 118
	status = efi_call_phys(efi_phys.set_virtual_address_map,
			       memory_map_size, descriptor_size,
			       descriptor_version, virtual_map);
119 120
	local_irq_restore(flags);

121
	efi_call_phys_epilog(save_pgd);
122

H
Huang, Ying 已提交
123 124 125
	return status;
}

126 127
void __init efi_find_mirror(void)
{
128
	efi_memory_desc_t *md;
129 130
	u64 mirror_size = 0, total_size = 0;

131 132 133
	if (!efi_enabled(EFI_MEMMAP))
		return;

134
	for_each_efi_memory_desc(md) {
135 136 137 138 139 140 141 142 143 144 145 146 147 148
		unsigned long long start = md->phys_addr;
		unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;

		total_size += size;
		if (md->attribute & EFI_MEMORY_MORE_RELIABLE) {
			memblock_mark_mirror(start, size);
			mirror_size += size;
		}
	}
	if (mirror_size)
		pr_info("Memory: %lldM/%lldM mirrored memory\n",
			mirror_size>>20, total_size>>20);
}

149 150
/*
 * Tell the kernel about the EFI memory map.  This might include
151 152 153
 * more than the max 128 entries that can fit in the passed in e820
 * legacy (zeropage) memory map, but the kernel's e820 table can hold
 * E820_MAX_ENTRIES.
154 155
 */

156
static void __init do_add_efi_memmap(void)
157
{
158
	efi_memory_desc_t *md;
159

160 161 162
	if (!efi_enabled(EFI_MEMMAP))
		return;

163
	for_each_efi_memory_desc(md) {
164 165 166 167
		unsigned long long start = md->phys_addr;
		unsigned long long size = md->num_pages << EFI_PAGE_SHIFT;
		int e820_type;

168 169 170 171 172 173
		switch (md->type) {
		case EFI_LOADER_CODE:
		case EFI_LOADER_DATA:
		case EFI_BOOT_SERVICES_CODE:
		case EFI_BOOT_SERVICES_DATA:
		case EFI_CONVENTIONAL_MEMORY:
174 175 176 177
			if (efi_soft_reserve_enabled()
			    && (md->attribute & EFI_MEMORY_SP))
				e820_type = E820_TYPE_SOFT_RESERVED;
			else if (md->attribute & EFI_MEMORY_WB)
178
				e820_type = E820_TYPE_RAM;
179
			else
180
				e820_type = E820_TYPE_RESERVED;
181 182
			break;
		case EFI_ACPI_RECLAIM_MEMORY:
183
			e820_type = E820_TYPE_ACPI;
184 185
			break;
		case EFI_ACPI_MEMORY_NVS:
186
			e820_type = E820_TYPE_NVS;
187 188
			break;
		case EFI_UNUSABLE_MEMORY:
189
			e820_type = E820_TYPE_UNUSABLE;
190
			break;
191
		case EFI_PERSISTENT_MEMORY:
192
			e820_type = E820_TYPE_PMEM;
193
			break;
194 195 196 197 198 199
		default:
			/*
			 * EFI_RESERVED_TYPE EFI_RUNTIME_SERVICES_CODE
			 * EFI_RUNTIME_SERVICES_DATA EFI_MEMORY_MAPPED_IO
			 * EFI_MEMORY_MAPPED_IO_PORT_SPACE EFI_PAL_CODE
			 */
200
			e820_type = E820_TYPE_RESERVED;
201 202
			break;
		}
203

204
		e820__range_add(start, size, e820_type);
205
	}
206
	e820__update_table(e820_table);
207 208
}

209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232
/*
 * Given add_efi_memmap defaults to 0 and there there is no alternative
 * e820 mechanism for soft-reserved memory, import the full EFI memory
 * map if soft reservations are present and enabled. Otherwise, the
 * mechanism to disable the kernel's consideration of EFI_MEMORY_SP is
 * the efi=nosoftreserve option.
 */
static bool do_efi_soft_reserve(void)
{
	efi_memory_desc_t *md;

	if (!efi_enabled(EFI_MEMMAP))
		return false;

	if (!efi_soft_reserve_enabled())
		return false;

	for_each_efi_memory_desc(md)
		if (md->type == EFI_CONVENTIONAL_MEMORY &&
		    (md->attribute & EFI_MEMORY_SP))
			return true;
	return false;
}

233
int __init efi_memblock_x86_reserve_range(void)
234
{
235
	struct efi_info *e = &boot_params.efi_info;
236
	struct efi_memory_map_data data;
237
	phys_addr_t pmap;
238
	int rv;
239

D
Daniel Kiper 已提交
240 241 242
	if (efi_enabled(EFI_PARAVIRT))
		return 0;

243
#ifdef CONFIG_X86_32
244
	/* Can't handle data above 4GB at this time */
245
	if (e->efi_memmap_hi) {
246 247 248
		pr_err("Memory map is above 4GB, disabling EFI.\n");
		return -EINVAL;
	}
249
	pmap =  e->efi_memmap;
250
#else
251
	pmap = (e->efi_memmap |	((__u64)e->efi_memmap_hi << 32));
252
#endif
253 254 255 256 257 258 259 260 261
	data.phys_map		= pmap;
	data.size 		= e->efi_memmap_size;
	data.desc_size		= e->efi_memdesc_size;
	data.desc_version	= e->efi_memdesc_version;

	rv = efi_memmap_init_early(&data);
	if (rv)
		return rv;

262
	if (add_efi_memmap || do_efi_soft_reserve())
263
		do_add_efi_memmap();
264

265 266 267 268
	WARN(efi.memmap.desc_version != 1,
	     "Unexpected EFI_MEMORY_DESCRIPTOR version %ld",
	     efi.memmap.desc_version);

269
	memblock_reserve(pmap, efi.memmap.nr_map * efi.memmap.desc_size);
270

271
	return 0;
272 273
}

274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337
#define OVERFLOW_ADDR_SHIFT	(64 - EFI_PAGE_SHIFT)
#define OVERFLOW_ADDR_MASK	(U64_MAX << OVERFLOW_ADDR_SHIFT)
#define U64_HIGH_BIT		(~(U64_MAX >> 1))

static bool __init efi_memmap_entry_valid(const efi_memory_desc_t *md, int i)
{
	u64 end = (md->num_pages << EFI_PAGE_SHIFT) + md->phys_addr - 1;
	u64 end_hi = 0;
	char buf[64];

	if (md->num_pages == 0) {
		end = 0;
	} else if (md->num_pages > EFI_PAGES_MAX ||
		   EFI_PAGES_MAX - md->num_pages <
		   (md->phys_addr >> EFI_PAGE_SHIFT)) {
		end_hi = (md->num_pages & OVERFLOW_ADDR_MASK)
			>> OVERFLOW_ADDR_SHIFT;

		if ((md->phys_addr & U64_HIGH_BIT) && !(end & U64_HIGH_BIT))
			end_hi += 1;
	} else {
		return true;
	}

	pr_warn_once(FW_BUG "Invalid EFI memory map entries:\n");

	if (end_hi) {
		pr_warn("mem%02u: %s range=[0x%016llx-0x%llx%016llx] (invalid)\n",
			i, efi_md_typeattr_format(buf, sizeof(buf), md),
			md->phys_addr, end_hi, end);
	} else {
		pr_warn("mem%02u: %s range=[0x%016llx-0x%016llx] (invalid)\n",
			i, efi_md_typeattr_format(buf, sizeof(buf), md),
			md->phys_addr, end);
	}
	return false;
}

static void __init efi_clean_memmap(void)
{
	efi_memory_desc_t *out = efi.memmap.map;
	const efi_memory_desc_t *in = out;
	const efi_memory_desc_t *end = efi.memmap.map_end;
	int i, n_removal;

	for (i = n_removal = 0; in < end; i++) {
		if (efi_memmap_entry_valid(in, i)) {
			if (out != in)
				memcpy(out, in, efi.memmap.desc_size);
			out = (void *)out + efi.memmap.desc_size;
		} else {
			n_removal++;
		}
		in = (void *)in + efi.memmap.desc_size;
	}

	if (n_removal > 0) {
		u64 size = efi.memmap.nr_map - n_removal;

		pr_warn("Removing %d invalid memory map entries.\n", n_removal);
		efi_memmap_install(efi.memmap.phys_map, size);
	}
}

338
void __init efi_print_memmap(void)
H
Huang, Ying 已提交
339 340
{
	efi_memory_desc_t *md;
341
	int i = 0;
H
Huang, Ying 已提交
342

343
	for_each_efi_memory_desc(md) {
344 345
		char buf[64];

346
		pr_info("mem%02u: %s range=[0x%016llx-0x%016llx] (%lluMB)\n",
347
			i++, efi_md_typeattr_format(buf, sizeof(buf), md),
348
			md->phys_addr,
349
			md->phys_addr + (md->num_pages << EFI_PAGE_SHIFT) - 1,
H
Huang, Ying 已提交
350 351
			(md->num_pages >> (20 - EFI_PAGE_SHIFT)));
	}
B
Borislav Petkov 已提交
352
}
H
Huang, Ying 已提交
353

354
static int __init efi_systab_init(void *phys)
H
Huang, Ying 已提交
355
{
356
	if (efi_enabled(EFI_64BIT)) {
357
		efi_system_table_64_t *systab64;
358
		struct efi_setup_data *data = NULL;
359 360
		u64 tmp = 0;

361 362 363 364 365
		if (efi_setup) {
			data = early_memremap(efi_setup, sizeof(*data));
			if (!data)
				return -ENOMEM;
		}
366
		systab64 = early_memremap((unsigned long)phys,
367 368 369
					 sizeof(*systab64));
		if (systab64 == NULL) {
			pr_err("Couldn't map the system table!\n");
370
			if (data)
371
				early_memunmap(data, sizeof(*data));
372 373 374 375
			return -ENOMEM;
		}

		efi_systab.hdr = systab64->hdr;
376 377 378
		efi_systab.fw_vendor = data ? (unsigned long)data->fw_vendor :
					      systab64->fw_vendor;
		tmp |= data ? data->fw_vendor : systab64->fw_vendor;
379 380 381 382 383 384 385 386 387 388 389 390 391
		efi_systab.fw_revision = systab64->fw_revision;
		efi_systab.con_in_handle = systab64->con_in_handle;
		tmp |= systab64->con_in_handle;
		efi_systab.con_in = systab64->con_in;
		tmp |= systab64->con_in;
		efi_systab.con_out_handle = systab64->con_out_handle;
		tmp |= systab64->con_out_handle;
		efi_systab.con_out = systab64->con_out;
		tmp |= systab64->con_out;
		efi_systab.stderr_handle = systab64->stderr_handle;
		tmp |= systab64->stderr_handle;
		efi_systab.stderr = systab64->stderr;
		tmp |= systab64->stderr;
392 393 394 395
		efi_systab.runtime = data ?
				     (void *)(unsigned long)data->runtime :
				     (void *)(unsigned long)systab64->runtime;
		tmp |= data ? data->runtime : systab64->runtime;
396 397 398
		efi_systab.boottime = (void *)(unsigned long)systab64->boottime;
		tmp |= systab64->boottime;
		efi_systab.nr_tables = systab64->nr_tables;
399 400 401
		efi_systab.tables = data ? (unsigned long)data->tables :
					   systab64->tables;
		tmp |= data ? data->tables : systab64->tables;
402

403
		early_memunmap(systab64, sizeof(*systab64));
404
		if (data)
405
			early_memunmap(data, sizeof(*data));
406 407 408 409 410 411 412 413 414
#ifdef CONFIG_X86_32
		if (tmp >> 32) {
			pr_err("EFI data located above 4GB, disabling EFI.\n");
			return -EINVAL;
		}
#endif
	} else {
		efi_system_table_32_t *systab32;

415
		systab32 = early_memremap((unsigned long)phys,
416 417 418 419 420 421 422 423 424 425 426 427 428 429 430 431 432 433 434 435
					 sizeof(*systab32));
		if (systab32 == NULL) {
			pr_err("Couldn't map the system table!\n");
			return -ENOMEM;
		}

		efi_systab.hdr = systab32->hdr;
		efi_systab.fw_vendor = systab32->fw_vendor;
		efi_systab.fw_revision = systab32->fw_revision;
		efi_systab.con_in_handle = systab32->con_in_handle;
		efi_systab.con_in = systab32->con_in;
		efi_systab.con_out_handle = systab32->con_out_handle;
		efi_systab.con_out = systab32->con_out;
		efi_systab.stderr_handle = systab32->stderr_handle;
		efi_systab.stderr = systab32->stderr;
		efi_systab.runtime = (void *)(unsigned long)systab32->runtime;
		efi_systab.boottime = (void *)(unsigned long)systab32->boottime;
		efi_systab.nr_tables = systab32->nr_tables;
		efi_systab.tables = systab32->tables;

436
		early_memunmap(systab32, sizeof(*systab32));
437
	}
438

H
Huang, Ying 已提交
439 440 441 442 443
	efi.systab = &efi_systab;

	/*
	 * Verify the EFI Table
	 */
444
	if (efi.systab->hdr.signature != EFI_SYSTEM_TABLE_SIGNATURE) {
445
		pr_err("System table signature incorrect!\n");
446 447
		return -EINVAL;
	}
H
Huang, Ying 已提交
448
	if ((efi.systab->hdr.revision >> 16) == 0)
J
Joe Perches 已提交
449
		pr_err("Warning: System table version %d.%02d, expected 1.00 or greater!\n",
H
Huang, Ying 已提交
450 451
		       efi.systab->hdr.revision >> 16,
		       efi.systab->hdr.revision & 0xffff);
452 453

	return 0;
454
}
H
Huang, Ying 已提交
455

456
static int __init efi_runtime_init32(void)
457
{
458 459
	efi_runtime_services_32_t *runtime;

460
	runtime = early_memremap((unsigned long)efi.systab->runtime,
461 462 463 464 465
			sizeof(efi_runtime_services_32_t));
	if (!runtime) {
		pr_err("Could not map the runtime service table!\n");
		return -ENOMEM;
	}
H
Huang, Ying 已提交
466 467

	/*
468 469 470
	 * We will only need *early* access to the SetVirtualAddressMap
	 * EFI runtime service. All other runtime services will be called
	 * via the virtual mapping.
H
Huang, Ying 已提交
471
	 */
472 473 474
	efi_phys.set_virtual_address_map =
			(efi_set_virtual_address_map_t *)
			(unsigned long)runtime->set_virtual_address_map;
475
	early_memunmap(runtime, sizeof(efi_runtime_services_32_t));
476 477 478 479 480 481 482 483

	return 0;
}

static int __init efi_runtime_init64(void)
{
	efi_runtime_services_64_t *runtime;

484
	runtime = early_memremap((unsigned long)efi.systab->runtime,
485
			sizeof(efi_runtime_services_64_t));
486
	if (!runtime) {
487
		pr_err("Could not map the runtime service table!\n");
488 489
		return -ENOMEM;
	}
490

491
	/*
492 493 494
	 * We will only need *early* access to the SetVirtualAddressMap
	 * EFI runtime service. All other runtime services will be called
	 * via the virtual mapping.
495 496
	 */
	efi_phys.set_virtual_address_map =
497 498
			(efi_set_virtual_address_map_t *)
			(unsigned long)runtime->set_virtual_address_map;
499
	early_memunmap(runtime, sizeof(efi_runtime_services_64_t));
500 501 502 503 504 505 506 507 508 509 510 511 512

	return 0;
}

static int __init efi_runtime_init(void)
{
	int rv;

	/*
	 * Check out the runtime services table. We need to map
	 * the runtime services table so that we can grab the physical
	 * address of several of the EFI runtime functions, needed to
	 * set the firmware into virtual mode.
D
Daniel Kiper 已提交
513 514 515 516 517 518 519
	 *
	 * When EFI_PARAVIRT is in force then we could not map runtime
	 * service memory region because we do not have direct access to it.
	 * However, runtime services are available through proxy functions
	 * (e.g. in case of Xen dom0 EFI implementation they call special
	 * hypercall which executes relevant EFI functions) and that is why
	 * they are always enabled.
520 521
	 */

D
Daniel Kiper 已提交
522 523 524 525 526 527 528 529 530
	if (!efi_enabled(EFI_PARAVIRT)) {
		if (efi_enabled(EFI_64BIT))
			rv = efi_runtime_init64();
		else
			rv = efi_runtime_init32();

		if (rv)
			return rv;
	}
531

532 533
	set_bit(EFI_RUNTIME_SERVICES, &efi.flags);

534
	return 0;
535
}
H
Huang, Ying 已提交
536

537 538 539 540 541 542 543 544
void __init efi_init(void)
{
	efi_char16_t *c16;
	char vendor[100] = "unknown";
	int i = 0;
	void *tmp;

#ifdef CONFIG_X86_32
545 546 547 548 549
	if (boot_params.efi_info.efi_systab_hi ||
	    boot_params.efi_info.efi_memmap_hi) {
		pr_info("Table located above 4GB, disabling EFI.\n");
		return;
	}
550 551 552
	efi_phys.systab = (efi_system_table_t *)boot_params.efi_info.efi_systab;
#else
	efi_phys.systab = (efi_system_table_t *)
553 554
			  (boot_params.efi_info.efi_systab |
			  ((__u64)boot_params.efi_info.efi_systab_hi<<32));
555 556
#endif

557
	if (efi_systab_init(efi_phys.systab))
558
		return;
559

560 561 562 563
	efi.config_table = (unsigned long)efi.systab->tables;
	efi.fw_vendor	 = (unsigned long)efi.systab->fw_vendor;
	efi.runtime	 = (unsigned long)efi.systab->runtime;

564 565 566
	/*
	 * Show what we know for posterity
	 */
567
	c16 = tmp = early_memremap(efi.systab->fw_vendor, 2);
568 569 570 571 572
	if (c16) {
		for (i = 0; i < sizeof(vendor) - 1 && *c16; ++i)
			vendor[i] = *c16++;
		vendor[i] = '\0';
	} else
573
		pr_err("Could not map the firmware vendor!\n");
574
	early_memunmap(tmp, 2);
575

576 577 578
	pr_info("EFI v%u.%.02u by %s\n",
		efi.systab->hdr.revision >> 16,
		efi.systab->hdr.revision & 0xffff, vendor);
579

580 581 582
	if (efi_reuse_config(efi.systab->tables, efi.systab->nr_tables))
		return;

583
	if (efi_config_init(arch_tables))
584
		return;
585

586 587 588 589 590
	/*
	 * Note: We currently don't support runtime services on an EFI
	 * that doesn't match the kernel 32/64-bit mode.
	 */

M
Matt Fleming 已提交
591
	if (!efi_runtime_supported())
592
		pr_info("No EFI runtime due to 32/64-bit mismatch with kernel\n");
593
	else {
594 595
		if (efi_runtime_disabled() || efi_runtime_init()) {
			efi_memmap_unmap();
596
			return;
597
		}
598
	}
599

600 601
	efi_clean_memmap();

602
	if (efi_enabled(EFI_DBG))
603
		efi_print_memmap();
H
Huang, Ying 已提交
604 605
}

606 607 608 609 610 611 612 613 614 615 616 617 618 619 620
void __init efi_set_executable(efi_memory_desc_t *md, bool executable)
{
	u64 addr, npages;

	addr = md->virt_addr;
	npages = md->num_pages;

	memrange_efi_to_native(&addr, &npages);

	if (executable)
		set_memory_x(addr, npages);
	else
		set_memory_nx(addr, npages);
}

B
Borislav Petkov 已提交
621
void __init runtime_code_page_mkexec(void)
622 623 624 625
{
	efi_memory_desc_t *md;

	/* Make EFI runtime service code area executable */
626
	for_each_efi_memory_desc(md) {
H
Huang, Ying 已提交
627 628 629
		if (md->type != EFI_RUNTIME_SERVICES_CODE)
			continue;

630
		efi_set_executable(md, true);
631 632 633
	}
}

634
void __init efi_memory_uc(u64 addr, unsigned long size)
635 636 637 638 639 640 641 642 643
{
	unsigned long page_shift = 1UL << EFI_PAGE_SHIFT;
	u64 npages;

	npages = round_up(size, page_shift) / page_shift;
	memrange_efi_to_native(&addr, &npages);
	set_memory_uc(addr, npages);
}

644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669
void __init old_map_region(efi_memory_desc_t *md)
{
	u64 start_pfn, end_pfn, end;
	unsigned long size;
	void *va;

	start_pfn = PFN_DOWN(md->phys_addr);
	size	  = md->num_pages << PAGE_SHIFT;
	end	  = md->phys_addr + size;
	end_pfn   = PFN_UP(end);

	if (pfn_range_is_mapped(start_pfn, end_pfn)) {
		va = __va(md->phys_addr);

		if (!(md->attribute & EFI_MEMORY_WB))
			efi_memory_uc((u64)(unsigned long)va, size);
	} else
		va = efi_ioremap(md->phys_addr, size,
				 md->type, md->attribute);

	md->virt_addr = (u64) (unsigned long) va;
	if (!va)
		pr_err("ioremap of 0x%llX failed!\n",
		       (unsigned long long)md->phys_addr);
}

670 671
/* Merge contiguous regions of the same type and attribute */
static void __init efi_merge_regions(void)
H
Huang, Ying 已提交
672
{
673 674
	efi_memory_desc_t *md, *prev_md = NULL;

675
	for_each_efi_memory_desc(md) {
676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697
		u64 prev_size;

		if (!prev_md) {
			prev_md = md;
			continue;
		}

		if (prev_md->type != md->type ||
		    prev_md->attribute != md->attribute) {
			prev_md = md;
			continue;
		}

		prev_size = prev_md->num_pages << EFI_PAGE_SHIFT;

		if (md->phys_addr == (prev_md->phys_addr + prev_size)) {
			prev_md->num_pages += md->num_pages;
			md->type = EFI_RESERVED_TYPE;
			md->attribute = 0;
			continue;
		}
		prev_md = md;
698 699 700 701 702 703 704
	}
}

static void __init get_systab_virt_addr(efi_memory_desc_t *md)
{
	unsigned long size;
	u64 end, systab;
705

706 707 708 709 710 711
	size = md->num_pages << EFI_PAGE_SHIFT;
	end = md->phys_addr + size;
	systab = (u64)(unsigned long)efi_phys.systab;
	if (md->phys_addr <= systab && systab < end) {
		systab += md->virt_addr - md->phys_addr;
		efi.systab = (efi_system_table_t *)(unsigned long)systab;
712
	}
713 714
}

715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735
static void *realloc_pages(void *old_memmap, int old_shift)
{
	void *ret;

	ret = (void *)__get_free_pages(GFP_KERNEL, old_shift + 1);
	if (!ret)
		goto out;

	/*
	 * A first-time allocation doesn't have anything to copy.
	 */
	if (!old_memmap)
		return ret;

	memcpy(ret, old_memmap, PAGE_SIZE << old_shift);

out:
	free_pages((unsigned long)old_memmap, old_shift);
	return ret;
}

736 737 738 739 740 741 742 743 744 745
/*
 * Iterate the EFI memory map in reverse order because the regions
 * will be mapped top-down. The end result is the same as if we had
 * mapped things forward, but doesn't require us to change the
 * existing implementation of efi_map_region().
 */
static inline void *efi_map_next_entry_reverse(void *entry)
{
	/* Initial call */
	if (!entry)
746
		return efi.memmap.map_end - efi.memmap.desc_size;
747

748 749
	entry -= efi.memmap.desc_size;
	if (entry < efi.memmap.map)
750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790
		return NULL;

	return entry;
}

/*
 * efi_map_next_entry - Return the next EFI memory map descriptor
 * @entry: Previous EFI memory map descriptor
 *
 * This is a helper function to iterate over the EFI memory map, which
 * we do in different orders depending on the current configuration.
 *
 * To begin traversing the memory map @entry must be %NULL.
 *
 * Returns %NULL when we reach the end of the memory map.
 */
static void *efi_map_next_entry(void *entry)
{
	if (!efi_enabled(EFI_OLD_MEMMAP) && efi_enabled(EFI_64BIT)) {
		/*
		 * Starting in UEFI v2.5 the EFI_PROPERTIES_TABLE
		 * config table feature requires us to map all entries
		 * in the same order as they appear in the EFI memory
		 * map. That is to say, entry N must have a lower
		 * virtual address than entry N+1. This is because the
		 * firmware toolchain leaves relative references in
		 * the code/data sections, which are split and become
		 * separate EFI memory regions. Mapping things
		 * out-of-order leads to the firmware accessing
		 * unmapped addresses.
		 *
		 * Since we need to map things this way whether or not
		 * the kernel actually makes use of
		 * EFI_PROPERTIES_TABLE, let's just switch to this
		 * scheme by default for 64-bit.
		 */
		return efi_map_next_entry_reverse(entry);
	}

	/* Initial call */
	if (!entry)
791
		return efi.memmap.map;
792

793 794
	entry += efi.memmap.desc_size;
	if (entry >= efi.memmap.map_end)
795 796 797 798 799
		return NULL;

	return entry;
}

800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815
static bool should_map_region(efi_memory_desc_t *md)
{
	/*
	 * Runtime regions always require runtime mappings (obviously).
	 */
	if (md->attribute & EFI_MEMORY_RUNTIME)
		return true;

	/*
	 * 32-bit EFI doesn't suffer from the bug that requires us to
	 * reserve boot services regions, and mixed mode support
	 * doesn't exist for 32-bit kernels.
	 */
	if (IS_ENABLED(CONFIG_X86_32))
		return false;

816 817 818 819 820 821 822 823 824
	/*
	 * EFI specific purpose memory may be reserved by default
	 * depending on kernel config and boot options.
	 */
	if (md->type == EFI_CONVENTIONAL_MEMORY &&
	    efi_soft_reserve_enabled() &&
	    (md->attribute & EFI_MEMORY_SP))
		return false;

825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848
	/*
	 * Map all of RAM so that we can access arguments in the 1:1
	 * mapping when making EFI runtime calls.
	 */
	if (IS_ENABLED(CONFIG_EFI_MIXED) && !efi_is_native()) {
		if (md->type == EFI_CONVENTIONAL_MEMORY ||
		    md->type == EFI_LOADER_DATA ||
		    md->type == EFI_LOADER_CODE)
			return true;
	}

	/*
	 * Map boot services regions as a workaround for buggy
	 * firmware that accesses them even when they shouldn't.
	 *
	 * See efi_{reserve,free}_boot_services().
	 */
	if (md->type == EFI_BOOT_SERVICES_CODE ||
	    md->type == EFI_BOOT_SERVICES_DATA)
		return true;

	return false;
}

849
/*
850 851
 * Map the efi memory ranges of the runtime services and update new_mmap with
 * virtual addresses.
852
 */
853
static void * __init efi_map_regions(int *count, int *pg_shift)
854
{
855 856
	void *p, *new_memmap = NULL;
	unsigned long left = 0;
857
	unsigned long desc_size;
858
	efi_memory_desc_t *md;
859

860 861
	desc_size = efi.memmap.desc_size;

862 863
	p = NULL;
	while ((p = efi_map_next_entry(p))) {
H
Huang, Ying 已提交
864
		md = p;
865 866 867

		if (!should_map_region(md))
			continue;
H
Huang, Ying 已提交
868

869
		efi_map_region(md);
870 871
		get_systab_virt_addr(md);

872
		if (left < desc_size) {
873 874 875 876 877 878 879 880
			new_memmap = realloc_pages(new_memmap, *pg_shift);
			if (!new_memmap)
				return NULL;

			left += PAGE_SIZE << *pg_shift;
			(*pg_shift)++;
		}

881
		memcpy(new_memmap + (*count * desc_size), md, desc_size);
882

883
		left -= desc_size;
884 885
		(*count)++;
	}
886

887 888 889
	return new_memmap;
}

890 891
static void __init kexec_enter_virtual_mode(void)
{
892
#ifdef CONFIG_KEXEC_CORE
893
	efi_memory_desc_t *md;
894
	unsigned int num_pages;
895 896 897 898 899

	efi.systab = NULL;

	/*
	 * We don't do virtual mode, since we don't do runtime services, on
900 901 902
	 * non-native EFI. With efi=old_map, we don't do runtime services in
	 * kexec kernel because in the initial boot something else might
	 * have been mapped at these virtual addresses.
903
	 */
904
	if (!efi_is_native() || efi_enabled(EFI_OLD_MEMMAP)) {
905
		efi_memmap_unmap();
906
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
907 908 909
		return;
	}

910 911 912 913 914 915
	if (efi_alloc_page_tables()) {
		pr_err("Failed to allocate EFI page tables\n");
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
		return;
	}

916 917 918 919
	/*
	* Map efi regions which were passed via setup_data. The virt_addr is a
	* fixed addr which was used in first kernel of a kexec boot.
	*/
920
	for_each_efi_memory_desc(md) {
921 922 923 924
		efi_map_region_fixed(md); /* FIXME: add error handling */
		get_systab_virt_addr(md);
	}

925 926 927 928 929 930 931 932 933 934 935 936 937
	/*
	 * Unregister the early EFI memmap from efi_init() and install
	 * the new EFI memory map.
	 */
	efi_memmap_unmap();

	if (efi_memmap_init_late(efi.memmap.phys_map,
				 efi.memmap.desc_size * efi.memmap.nr_map)) {
		pr_err("Failed to remap late EFI memory map\n");
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
		return;
	}

938 939
	BUG_ON(!efi.systab);

940
	num_pages = ALIGN(efi.memmap.nr_map * efi.memmap.desc_size, PAGE_SIZE);
941 942
	num_pages >>= PAGE_SHIFT;

943
	if (efi_setup_page_tables(efi.memmap.phys_map, num_pages)) {
944 945 946 947
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
		return;
	}

948 949 950 951 952 953 954 955 956
	efi_sync_low_kernel_mappings();

	/*
	 * Now that EFI is in virtual mode, update the function
	 * pointers in the runtime service table to the new virtual addresses.
	 *
	 * Call EFI services through wrapper functions.
	 */
	efi.runtime_version = efi_systab.hdr.revision;
957

958
	efi_native_runtime_setup();
959

960 961 962 963 964 965 966
	efi.set_virtual_address_map = NULL;

	if (efi_enabled(EFI_OLD_MEMMAP) && (__supported_pte_mask & _PAGE_NX))
		runtime_code_page_mkexec();
#endif
}

967 968 969 970
/*
 * This function will switch the EFI runtime services to virtual mode.
 * Essentially, we look through the EFI memmap and map every region that
 * has the runtime attribute bit set in its memory descriptor into the
971
 * efi_pgd page table.
972 973 974 975 976 977 978 979 980
 *
 * The old method which used to update that memory descriptor with the
 * virtual address obtained from ioremap() is still supported when the
 * kernel is booted with efi=old_map on its command line. Same old
 * method enabled the runtime services to be called without having to
 * thunk back into physical mode for every invocation.
 *
 * The new method does a pagetable switch in a preemption-safe manner
 * so that we're in a different address space when calling a runtime
981 982
 * function. For function arguments passing we do copy the PUDs of the
 * kernel page table into efi_pgd prior to each call.
983 984 985
 *
 * Specially for kexec boot, efi runtime maps in previous kernel should
 * be passed in via setup_data. In that case runtime ranges will be mapped
986 987
 * to the same virtual addresses as the first kernel, see
 * kexec_enter_virtual_mode().
988
 */
989
static void __init __efi_enter_virtual_mode(void)
990
{
991
	int count = 0, pg_shift = 0;
992
	void *new_memmap = NULL;
993
	efi_status_t status;
994
	unsigned long pa;
H
Huang, Ying 已提交
995

996
	efi.systab = NULL;
997

998 999 1000 1001 1002 1003
	if (efi_alloc_page_tables()) {
		pr_err("Failed to allocate EFI page tables\n");
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
		return;
	}

1004 1005 1006 1007
	efi_merge_regions();
	new_memmap = efi_map_regions(&count, &pg_shift);
	if (!new_memmap) {
		pr_err("Error reallocating memory, EFI runtime non-functional!\n");
1008
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
1009
		return;
1010
	}
1011

1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026
	pa = __pa(new_memmap);

	/*
	 * Unregister the early EFI memmap from efi_init() and install
	 * the new EFI memory map that we are about to pass to the
	 * firmware via SetVirtualAddressMap().
	 */
	efi_memmap_unmap();

	if (efi_memmap_init_late(pa, efi.memmap.desc_size * count)) {
		pr_err("Failed to remap late EFI memory map\n");
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
		return;
	}

1027 1028 1029 1030 1031
	if (efi_enabled(EFI_DBG)) {
		pr_info("EFI runtime memory map:\n");
		efi_print_memmap();
	}

H
Huang, Ying 已提交
1032 1033
	BUG_ON(!efi.systab);

1034
	if (efi_setup_page_tables(pa, 1 << pg_shift)) {
1035
		clear_bit(EFI_RUNTIME_SERVICES, &efi.flags);
1036
		return;
1037
	}
1038

1039 1040
	efi_sync_low_kernel_mappings();

1041 1042
	if (efi_is_native()) {
		status = phys_efi_set_virtual_address_map(
1043 1044 1045
				efi.memmap.desc_size * count,
				efi.memmap.desc_size,
				efi.memmap.desc_version,
1046
				(efi_memory_desc_t *)pa);
1047 1048 1049
	} else {
		status = efi_thunk_set_virtual_address_map(
				efi_phys.set_virtual_address_map,
1050 1051 1052
				efi.memmap.desc_size * count,
				efi.memmap.desc_size,
				efi.memmap.desc_version,
1053
				(efi_memory_desc_t *)pa);
1054
	}
1055

1056 1057 1058 1059
	if (status != EFI_SUCCESS) {
		pr_alert("Unable to switch EFI into virtual mode (status=%lx)!\n",
			 status);
		panic("EFI call to SetVirtualAddressMap() failed!");
H
Huang, Ying 已提交
1060 1061
	}

1062 1063
	efi_free_boot_services();

H
Huang, Ying 已提交
1064 1065 1066 1067 1068 1069
	/*
	 * Now that EFI is in virtual mode, update the function
	 * pointers in the runtime service table to the new virtual addresses.
	 *
	 * Call EFI services through wrapper functions.
	 */
1070
	efi.runtime_version = efi_systab.hdr.revision;
1071 1072

	if (efi_is_native())
1073
		efi_native_runtime_setup();
1074 1075 1076
	else
		efi_thunk_runtime_setup();

1077
	efi.set_virtual_address_map = NULL;
1078

1079 1080 1081 1082 1083 1084
	/*
	 * Apply more restrictive page table mapping attributes now that
	 * SVAM() has been called and the firmware has performed all
	 * necessary relocation fixups for the new virtual addresses.
	 */
	efi_runtime_update_mappings();
1085

M
Matthew Garrett 已提交
1086
	/* clean DUMMY object */
1087
	efi_delete_dummy_variable();
H
Huang, Ying 已提交
1088 1089
}

1090 1091
void __init efi_enter_virtual_mode(void)
{
D
Daniel Kiper 已提交
1092 1093 1094
	if (efi_enabled(EFI_PARAVIRT))
		return;

1095 1096 1097 1098
	if (efi_setup)
		kexec_enter_virtual_mode();
	else
		__efi_enter_virtual_mode();
1099 1100

	efi_dump_pagetable();
1101 1102
}

D
Dave Young 已提交
1103
static int __init arch_parse_efi_cmdline(char *str)
1104
{
1105 1106 1107 1108 1109
	if (!str) {
		pr_warn("need at least one option\n");
		return -EINVAL;
	}

1110 1111
	if (parse_option_str(str, "old_map"))
		set_bit(EFI_OLD_MEMMAP, &efi.flags);
1112 1113 1114

	return 0;
}
D
Dave Young 已提交
1115
early_param("efi", arch_parse_efi_cmdline);
1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129

bool efi_is_table_address(unsigned long phys_addr)
{
	unsigned int i;

	if (phys_addr == EFI_INVALID_TABLE_ADDR)
		return false;

	for (i = 0; i < ARRAY_SIZE(efi_tables); i++)
		if (*(efi_tables[i]) == phys_addr)
			return true;

	return false;
}