blob: c297d78f50fd4eaf18b5b298b6ea31e81b385f65 [file] [log] [blame]
Tom Gundersena9499fa2013-02-08 15:37:06 +00001/*
2 * efi.c - EFI subsystem
3 *
4 * Copyright (C) 2001,2003,2004 Dell <Matt_Domsch@dell.com>
5 * Copyright (C) 2004 Intel Corporation <matthew.e.tolentino@intel.com>
6 * Copyright (C) 2013 Tom Gundersen <teg@jklm.no>
7 *
8 * This code registers /sys/firmware/efi{,/efivars} when EFI is supported,
9 * allowing the efivarfs to be mounted or the efivars module to be loaded.
10 * The existance of /sys/firmware/efi may also be used by userspace to
11 * determine that the system supports EFI.
12 *
13 * This file is released under the GPLv2.
14 */
15
Leif Lindholm272686b2013-09-05 11:34:54 +010016#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
17
Tom Gundersena9499fa2013-02-08 15:37:06 +000018#include <linux/kobject.h>
19#include <linux/module.h>
20#include <linux/init.h>
21#include <linux/device.h>
22#include <linux/efi.h>
Mark Salter0302f712013-12-30 12:12:12 -050023#include <linux/of.h>
24#include <linux/of_fdt.h>
Leif Lindholm272686b2013-09-05 11:34:54 +010025#include <linux/io.h>
Lee, Chun-Yi28d54022014-07-09 18:39:29 +080026#include <linux/platform_device.h>
Leif Lindholm272686b2013-09-05 11:34:54 +010027
28struct efi __read_mostly efi = {
Ard Biesheuvelbf924862015-09-09 10:08:15 +020029 .mps = EFI_INVALID_TABLE_ADDR,
30 .acpi = EFI_INVALID_TABLE_ADDR,
31 .acpi20 = EFI_INVALID_TABLE_ADDR,
32 .smbios = EFI_INVALID_TABLE_ADDR,
33 .smbios3 = EFI_INVALID_TABLE_ADDR,
34 .sal_systab = EFI_INVALID_TABLE_ADDR,
35 .boot_info = EFI_INVALID_TABLE_ADDR,
36 .hcdp = EFI_INVALID_TABLE_ADDR,
37 .uga = EFI_INVALID_TABLE_ADDR,
38 .uv_systab = EFI_INVALID_TABLE_ADDR,
39 .fw_vendor = EFI_INVALID_TABLE_ADDR,
40 .runtime = EFI_INVALID_TABLE_ADDR,
41 .config_table = EFI_INVALID_TABLE_ADDR,
42 .esrt = EFI_INVALID_TABLE_ADDR,
43 .properties_table = EFI_INVALID_TABLE_ADDR,
Leif Lindholm272686b2013-09-05 11:34:54 +010044};
45EXPORT_SYMBOL(efi);
Tom Gundersena9499fa2013-02-08 15:37:06 +000046
Dave Youngb2e0a542014-08-14 17:15:26 +080047static bool disable_runtime;
48static int __init setup_noefi(char *arg)
49{
50 disable_runtime = true;
51 return 0;
52}
53early_param("noefi", setup_noefi);
54
55bool efi_runtime_disabled(void)
56{
57 return disable_runtime;
58}
59
Dave Young5ae36832014-08-14 17:15:28 +080060static int __init parse_efi_cmdline(char *str)
61{
Ricardo Neri9115c752015-07-15 19:36:03 -070062 if (!str) {
63 pr_warn("need at least one option\n");
64 return -EINVAL;
65 }
66
Leif Lindholm12dd00e2015-08-26 14:24:56 +010067 if (parse_option_str(str, "debug"))
68 set_bit(EFI_DBG, &efi.flags);
69
Dave Young5ae36832014-08-14 17:15:28 +080070 if (parse_option_str(str, "noruntime"))
71 disable_runtime = true;
72
73 return 0;
74}
75early_param("efi", parse_efi_cmdline);
76
Peter Jones0bb54902015-04-28 18:44:31 -040077struct kobject *efi_kobj;
Tom Gundersena9499fa2013-02-08 15:37:06 +000078
79/*
80 * Let's not leave out systab information that snuck into
81 * the efivars driver
82 */
83static ssize_t systab_show(struct kobject *kobj,
84 struct kobj_attribute *attr, char *buf)
85{
86 char *str = buf;
87
88 if (!kobj || !buf)
89 return -EINVAL;
90
91 if (efi.mps != EFI_INVALID_TABLE_ADDR)
92 str += sprintf(str, "MPS=0x%lx\n", efi.mps);
93 if (efi.acpi20 != EFI_INVALID_TABLE_ADDR)
94 str += sprintf(str, "ACPI20=0x%lx\n", efi.acpi20);
95 if (efi.acpi != EFI_INVALID_TABLE_ADDR)
96 str += sprintf(str, "ACPI=0x%lx\n", efi.acpi);
Jean Delvareb119fe02015-04-30 15:23:05 +020097 /*
98 * If both SMBIOS and SMBIOS3 entry points are implemented, the
99 * SMBIOS3 entry point shall be preferred, so we list it first to
100 * let applications stop parsing after the first match.
101 */
Ard Biesheuvele1ccbbc2014-10-14 16:34:47 +0200102 if (efi.smbios3 != EFI_INVALID_TABLE_ADDR)
103 str += sprintf(str, "SMBIOS3=0x%lx\n", efi.smbios3);
Jean Delvareb119fe02015-04-30 15:23:05 +0200104 if (efi.smbios != EFI_INVALID_TABLE_ADDR)
105 str += sprintf(str, "SMBIOS=0x%lx\n", efi.smbios);
Tom Gundersena9499fa2013-02-08 15:37:06 +0000106 if (efi.hcdp != EFI_INVALID_TABLE_ADDR)
107 str += sprintf(str, "HCDP=0x%lx\n", efi.hcdp);
108 if (efi.boot_info != EFI_INVALID_TABLE_ADDR)
109 str += sprintf(str, "BOOTINFO=0x%lx\n", efi.boot_info);
110 if (efi.uga != EFI_INVALID_TABLE_ADDR)
111 str += sprintf(str, "UGA=0x%lx\n", efi.uga);
112
113 return str - buf;
114}
115
116static struct kobj_attribute efi_attr_systab =
117 __ATTR(systab, 0400, systab_show, NULL);
118
Dave Younga0998eb2013-12-20 18:02:17 +0800119#define EFI_FIELD(var) efi.var
120
121#define EFI_ATTR_SHOW(name) \
122static ssize_t name##_show(struct kobject *kobj, \
123 struct kobj_attribute *attr, char *buf) \
124{ \
125 return sprintf(buf, "0x%lx\n", EFI_FIELD(name)); \
126}
127
128EFI_ATTR_SHOW(fw_vendor);
129EFI_ATTR_SHOW(runtime);
130EFI_ATTR_SHOW(config_table);
131
Steve McIntyre2859dff2015-01-09 15:29:53 +0000132static ssize_t fw_platform_size_show(struct kobject *kobj,
133 struct kobj_attribute *attr, char *buf)
134{
135 return sprintf(buf, "%d\n", efi_enabled(EFI_64BIT) ? 64 : 32);
136}
137
Dave Younga0998eb2013-12-20 18:02:17 +0800138static struct kobj_attribute efi_attr_fw_vendor = __ATTR_RO(fw_vendor);
139static struct kobj_attribute efi_attr_runtime = __ATTR_RO(runtime);
140static struct kobj_attribute efi_attr_config_table = __ATTR_RO(config_table);
Steve McIntyre2859dff2015-01-09 15:29:53 +0000141static struct kobj_attribute efi_attr_fw_platform_size =
142 __ATTR_RO(fw_platform_size);
Dave Younga0998eb2013-12-20 18:02:17 +0800143
Tom Gundersena9499fa2013-02-08 15:37:06 +0000144static struct attribute *efi_subsys_attrs[] = {
145 &efi_attr_systab.attr,
Dave Younga0998eb2013-12-20 18:02:17 +0800146 &efi_attr_fw_vendor.attr,
147 &efi_attr_runtime.attr,
148 &efi_attr_config_table.attr,
Steve McIntyre2859dff2015-01-09 15:29:53 +0000149 &efi_attr_fw_platform_size.attr,
Dave Younga0998eb2013-12-20 18:02:17 +0800150 NULL,
Tom Gundersena9499fa2013-02-08 15:37:06 +0000151};
152
Dave Younga0998eb2013-12-20 18:02:17 +0800153static umode_t efi_attr_is_visible(struct kobject *kobj,
154 struct attribute *attr, int n)
155{
Daniel Kiper9f27bc52014-06-30 19:52:58 +0200156 if (attr == &efi_attr_fw_vendor.attr) {
157 if (efi_enabled(EFI_PARAVIRT) ||
158 efi.fw_vendor == EFI_INVALID_TABLE_ADDR)
159 return 0;
160 } else if (attr == &efi_attr_runtime.attr) {
161 if (efi.runtime == EFI_INVALID_TABLE_ADDR)
162 return 0;
163 } else if (attr == &efi_attr_config_table.attr) {
164 if (efi.config_table == EFI_INVALID_TABLE_ADDR)
165 return 0;
166 }
Dave Younga0998eb2013-12-20 18:02:17 +0800167
Daniel Kiper9f27bc52014-06-30 19:52:58 +0200168 return attr->mode;
Dave Younga0998eb2013-12-20 18:02:17 +0800169}
170
Tom Gundersena9499fa2013-02-08 15:37:06 +0000171static struct attribute_group efi_subsys_attr_group = {
172 .attrs = efi_subsys_attrs,
Dave Younga0998eb2013-12-20 18:02:17 +0800173 .is_visible = efi_attr_is_visible,
Tom Gundersena9499fa2013-02-08 15:37:06 +0000174};
175
176static struct efivars generic_efivars;
177static struct efivar_operations generic_ops;
178
179static int generic_ops_register(void)
180{
181 generic_ops.get_variable = efi.get_variable;
182 generic_ops.set_variable = efi.set_variable;
183 generic_ops.get_next_variable = efi.get_next_variable;
Matt Fleminga614e192013-04-30 11:30:24 +0100184 generic_ops.query_variable_store = efi_query_variable_store;
Tom Gundersena9499fa2013-02-08 15:37:06 +0000185
186 return efivars_register(&generic_efivars, &generic_ops, efi_kobj);
187}
188
189static void generic_ops_unregister(void)
190{
191 efivars_unregister(&generic_efivars);
192}
193
194/*
195 * We register the efi subsystem with the firmware subsystem and the
196 * efivars subsystem with the efi subsystem, if the system was booted with
197 * EFI.
198 */
199static int __init efisubsys_init(void)
200{
201 int error;
202
203 if (!efi_enabled(EFI_BOOT))
204 return 0;
205
206 /* We register the efi directory at /sys/firmware/efi */
207 efi_kobj = kobject_create_and_add("efi", firmware_kobj);
208 if (!efi_kobj) {
209 pr_err("efi: Firmware registration failed.\n");
210 return -ENOMEM;
211 }
212
213 error = generic_ops_register();
214 if (error)
215 goto err_put;
216
217 error = sysfs_create_group(efi_kobj, &efi_subsys_attr_group);
218 if (error) {
219 pr_err("efi: Sysfs attribute export failed with error %d.\n",
220 error);
221 goto err_unregister;
222 }
223
Dave Young926172d2013-12-20 18:02:18 +0800224 error = efi_runtime_map_init(efi_kobj);
225 if (error)
226 goto err_remove_group;
227
Tom Gundersena9499fa2013-02-08 15:37:06 +0000228 /* and the standard mountpoint for efivarfs */
Eric W. Biedermanf9bb4882015-05-13 17:35:41 -0500229 error = sysfs_create_mount_point(efi_kobj, "efivars");
230 if (error) {
Tom Gundersena9499fa2013-02-08 15:37:06 +0000231 pr_err("efivars: Subsystem registration failed.\n");
Tom Gundersena9499fa2013-02-08 15:37:06 +0000232 goto err_remove_group;
233 }
234
235 return 0;
236
237err_remove_group:
238 sysfs_remove_group(efi_kobj, &efi_subsys_attr_group);
239err_unregister:
240 generic_ops_unregister();
241err_put:
242 kobject_put(efi_kobj);
243 return error;
244}
245
246subsys_initcall(efisubsys_init);
Leif Lindholm272686b2013-09-05 11:34:54 +0100247
Peter Jones0bb54902015-04-28 18:44:31 -0400248/*
249 * Find the efi memory descriptor for a given physical address. Given a
250 * physicall address, determine if it exists within an EFI Memory Map entry,
251 * and if so, populate the supplied memory descriptor with the appropriate
252 * data.
253 */
254int __init efi_mem_desc_lookup(u64 phys_addr, efi_memory_desc_t *out_md)
255{
256 struct efi_memory_map *map = efi.memmap;
257 void *p, *e;
258
259 if (!efi_enabled(EFI_MEMMAP)) {
260 pr_err_once("EFI_MEMMAP is not enabled.\n");
261 return -EINVAL;
262 }
263
264 if (!map) {
265 pr_err_once("efi.memmap is not set.\n");
266 return -EINVAL;
267 }
268 if (!out_md) {
269 pr_err_once("out_md is null.\n");
270 return -EINVAL;
271 }
272 if (WARN_ON_ONCE(!map->phys_map))
273 return -EINVAL;
274 if (WARN_ON_ONCE(map->nr_map == 0) || WARN_ON_ONCE(map->desc_size == 0))
275 return -EINVAL;
276
277 e = map->phys_map + map->nr_map * map->desc_size;
278 for (p = map->phys_map; p < e; p += map->desc_size) {
279 efi_memory_desc_t *md;
280 u64 size;
281 u64 end;
282
283 /*
284 * If a driver calls this after efi_free_boot_services,
285 * ->map will be NULL, and the target may also not be mapped.
286 * So just always get our own virtual map on the CPU.
287 *
288 */
289 md = early_memremap((phys_addr_t)p, sizeof (*md));
290 if (!md) {
291 pr_err_once("early_memremap(%p, %zu) failed.\n",
292 p, sizeof (*md));
293 return -ENOMEM;
294 }
295
296 if (!(md->attribute & EFI_MEMORY_RUNTIME) &&
297 md->type != EFI_BOOT_SERVICES_DATA &&
298 md->type != EFI_RUNTIME_SERVICES_DATA) {
299 early_memunmap(md, sizeof (*md));
300 continue;
301 }
302
303 size = md->num_pages << EFI_PAGE_SHIFT;
304 end = md->phys_addr + size;
305 if (phys_addr >= md->phys_addr && phys_addr < end) {
306 memcpy(out_md, md, sizeof(*out_md));
307 early_memunmap(md, sizeof (*md));
308 return 0;
309 }
310
311 early_memunmap(md, sizeof (*md));
312 }
313 pr_err_once("requested map not found.\n");
314 return -ENOENT;
315}
316
317/*
318 * Calculate the highest address of an efi memory descriptor.
319 */
320u64 __init efi_mem_desc_end(efi_memory_desc_t *md)
321{
322 u64 size = md->num_pages << EFI_PAGE_SHIFT;
323 u64 end = md->phys_addr + size;
324 return end;
325}
Leif Lindholm272686b2013-09-05 11:34:54 +0100326
Leif Lindholm258f6fd2013-09-05 11:34:55 +0100327/*
328 * We can't ioremap data in EFI boot services RAM, because we've already mapped
329 * it as RAM. So, look it up in the existing EFI memory map instead. Only
330 * callable after efi_enter_virtual_mode and before efi_free_boot_services.
331 */
332void __iomem *efi_lookup_mapped_addr(u64 phys_addr)
333{
334 struct efi_memory_map *map;
335 void *p;
336 map = efi.memmap;
337 if (!map)
338 return NULL;
339 if (WARN_ON(!map->map))
340 return NULL;
341 for (p = map->map; p < map->map_end; p += map->desc_size) {
342 efi_memory_desc_t *md = p;
343 u64 size = md->num_pages << EFI_PAGE_SHIFT;
344 u64 end = md->phys_addr + size;
345 if (!(md->attribute & EFI_MEMORY_RUNTIME) &&
346 md->type != EFI_BOOT_SERVICES_CODE &&
347 md->type != EFI_BOOT_SERVICES_DATA)
348 continue;
349 if (!md->virt_addr)
350 continue;
351 if (phys_addr >= md->phys_addr && phys_addr < end) {
352 phys_addr += md->virt_addr - md->phys_addr;
353 return (__force void __iomem *)(unsigned long)phys_addr;
354 }
355 }
356 return NULL;
357}
358
Leif Lindholm272686b2013-09-05 11:34:54 +0100359static __initdata efi_config_table_type_t common_tables[] = {
360 {ACPI_20_TABLE_GUID, "ACPI 2.0", &efi.acpi20},
361 {ACPI_TABLE_GUID, "ACPI", &efi.acpi},
362 {HCDP_TABLE_GUID, "HCDP", &efi.hcdp},
363 {MPS_TABLE_GUID, "MPS", &efi.mps},
364 {SAL_SYSTEM_TABLE_GUID, "SALsystab", &efi.sal_systab},
365 {SMBIOS_TABLE_GUID, "SMBIOS", &efi.smbios},
Ard Biesheuvele1ccbbc2014-10-14 16:34:47 +0200366 {SMBIOS3_TABLE_GUID, "SMBIOS 3.0", &efi.smbios3},
Leif Lindholm272686b2013-09-05 11:34:54 +0100367 {UGA_IO_PROTOCOL_GUID, "UGA", &efi.uga},
Peter Jones0bb54902015-04-28 18:44:31 -0400368 {EFI_SYSTEM_RESOURCE_TABLE_GUID, "ESRT", &efi.esrt},
Ard Biesheuvelbf924862015-09-09 10:08:15 +0200369 {EFI_PROPERTIES_TABLE_GUID, "PROP", &efi.properties_table},
Daeseok Youn69e60842014-02-13 17:16:36 +0900370 {NULL_GUID, NULL, NULL},
Leif Lindholm272686b2013-09-05 11:34:54 +0100371};
372
373static __init int match_config_table(efi_guid_t *guid,
374 unsigned long table,
375 efi_config_table_type_t *table_types)
376{
Leif Lindholm272686b2013-09-05 11:34:54 +0100377 int i;
378
379 if (table_types) {
Leif Lindholm272686b2013-09-05 11:34:54 +0100380 for (i = 0; efi_guidcmp(table_types[i].guid, NULL_GUID); i++) {
Leif Lindholm272686b2013-09-05 11:34:54 +0100381 if (!efi_guidcmp(*guid, table_types[i].guid)) {
382 *(table_types[i].ptr) = table;
383 pr_cont(" %s=0x%lx ",
384 table_types[i].name, table);
385 return 1;
386 }
387 }
388 }
389
390 return 0;
391}
392
Ard Biesheuvel7bb68412014-10-18 15:04:15 +0200393int __init efi_config_parse_tables(void *config_tables, int count, int sz,
394 efi_config_table_type_t *arch_tables)
395{
396 void *tablep;
397 int i;
398
399 tablep = config_tables;
400 pr_info("");
401 for (i = 0; i < count; i++) {
402 efi_guid_t guid;
403 unsigned long table;
404
405 if (efi_enabled(EFI_64BIT)) {
406 u64 table64;
407 guid = ((efi_config_table_64_t *)tablep)->guid;
408 table64 = ((efi_config_table_64_t *)tablep)->table;
409 table = table64;
410#ifndef CONFIG_64BIT
411 if (table64 >> 32) {
412 pr_cont("\n");
413 pr_err("Table located above 4GB, disabling EFI.\n");
414 return -EINVAL;
415 }
416#endif
417 } else {
418 guid = ((efi_config_table_32_t *)tablep)->guid;
419 table = ((efi_config_table_32_t *)tablep)->table;
420 }
421
422 if (!match_config_table(&guid, table, common_tables))
423 match_config_table(&guid, table, arch_tables);
424
425 tablep += sz;
426 }
427 pr_cont("\n");
428 set_bit(EFI_CONFIG_TABLES, &efi.flags);
429 return 0;
430}
431
Leif Lindholm272686b2013-09-05 11:34:54 +0100432int __init efi_config_init(efi_config_table_type_t *arch_tables)
433{
Ard Biesheuvel7bb68412014-10-18 15:04:15 +0200434 void *config_tables;
435 int sz, ret;
Leif Lindholm272686b2013-09-05 11:34:54 +0100436
437 if (efi_enabled(EFI_64BIT))
438 sz = sizeof(efi_config_table_64_t);
439 else
440 sz = sizeof(efi_config_table_32_t);
441
442 /*
443 * Let's see what config tables the firmware passed to us.
444 */
445 config_tables = early_memremap(efi.systab->tables,
446 efi.systab->nr_tables * sz);
447 if (config_tables == NULL) {
448 pr_err("Could not map Configuration table!\n");
449 return -ENOMEM;
450 }
451
Ard Biesheuvel7bb68412014-10-18 15:04:15 +0200452 ret = efi_config_parse_tables(config_tables, efi.systab->nr_tables, sz,
453 arch_tables);
Leif Lindholm272686b2013-09-05 11:34:54 +0100454
Daniel Kiperabc93f82014-06-30 19:52:56 +0200455 early_memunmap(config_tables, efi.systab->nr_tables * sz);
Ard Biesheuvel7bb68412014-10-18 15:04:15 +0200456 return ret;
Leif Lindholm272686b2013-09-05 11:34:54 +0100457}
Mark Salter0302f712013-12-30 12:12:12 -0500458
Lee, Chun-Yi28d54022014-07-09 18:39:29 +0800459#ifdef CONFIG_EFI_VARS_MODULE
460static int __init efi_load_efivars(void)
461{
462 struct platform_device *pdev;
463
464 if (!efi_enabled(EFI_RUNTIME_SERVICES))
465 return 0;
466
467 pdev = platform_device_register_simple("efivars", 0, NULL, 0);
468 return IS_ERR(pdev) ? PTR_ERR(pdev) : 0;
469}
470device_initcall(efi_load_efivars);
471#endif
472
Mark Salter0302f712013-12-30 12:12:12 -0500473#ifdef CONFIG_EFI_PARAMS_FROM_FDT
474
475#define UEFI_PARAM(name, prop, field) \
476 { \
477 { name }, \
478 { prop }, \
479 offsetof(struct efi_fdt_params, field), \
480 FIELD_SIZEOF(struct efi_fdt_params, field) \
481 }
482
483static __initdata struct {
484 const char name[32];
485 const char propname[32];
486 int offset;
487 int size;
488} dt_params[] = {
489 UEFI_PARAM("System Table", "linux,uefi-system-table", system_table),
490 UEFI_PARAM("MemMap Address", "linux,uefi-mmap-start", mmap),
491 UEFI_PARAM("MemMap Size", "linux,uefi-mmap-size", mmap_size),
492 UEFI_PARAM("MemMap Desc. Size", "linux,uefi-mmap-desc-size", desc_size),
493 UEFI_PARAM("MemMap Desc. Version", "linux,uefi-mmap-desc-ver", desc_ver)
494};
495
496struct param_info {
Catalin Marinas29e24352014-07-08 16:54:18 +0100497 int found;
Mark Salter0302f712013-12-30 12:12:12 -0500498 void *params;
499};
500
501static int __init fdt_find_uefi_params(unsigned long node, const char *uname,
502 int depth, void *data)
503{
504 struct param_info *info = data;
Catalin Marinas6fb8cc82014-06-02 11:31:06 +0100505 const void *prop;
506 void *dest;
Mark Salter0302f712013-12-30 12:12:12 -0500507 u64 val;
Catalin Marinas6fb8cc82014-06-02 11:31:06 +0100508 int i, len;
Mark Salter0302f712013-12-30 12:12:12 -0500509
Leif Lindholm11629302015-01-20 16:34:38 +0000510 if (depth != 1 || strcmp(uname, "chosen") != 0)
Mark Salter0302f712013-12-30 12:12:12 -0500511 return 0;
512
Mark Salter0302f712013-12-30 12:12:12 -0500513 for (i = 0; i < ARRAY_SIZE(dt_params); i++) {
514 prop = of_get_flat_dt_prop(node, dt_params[i].propname, &len);
Catalin Marinas29e24352014-07-08 16:54:18 +0100515 if (!prop)
Mark Salter0302f712013-12-30 12:12:12 -0500516 return 0;
Mark Salter0302f712013-12-30 12:12:12 -0500517 dest = info->params + dt_params[i].offset;
Catalin Marinas29e24352014-07-08 16:54:18 +0100518 info->found++;
Mark Salter0302f712013-12-30 12:12:12 -0500519
520 val = of_read_number(prop, len / sizeof(u32));
521
522 if (dt_params[i].size == sizeof(u32))
523 *(u32 *)dest = val;
524 else
525 *(u64 *)dest = val;
526
Leif Lindholm7968c0e2015-08-26 14:24:58 +0100527 if (efi_enabled(EFI_DBG))
Mark Salter0302f712013-12-30 12:12:12 -0500528 pr_info(" %s: 0x%0*llx\n", dt_params[i].name,
529 dt_params[i].size * 2, val);
530 }
531 return 1;
532}
533
Leif Lindholm7968c0e2015-08-26 14:24:58 +0100534int __init efi_get_fdt_params(struct efi_fdt_params *params)
Mark Salter0302f712013-12-30 12:12:12 -0500535{
536 struct param_info info;
Catalin Marinas29e24352014-07-08 16:54:18 +0100537 int ret;
538
539 pr_info("Getting EFI parameters from FDT:\n");
Mark Salter0302f712013-12-30 12:12:12 -0500540
Catalin Marinas29e24352014-07-08 16:54:18 +0100541 info.found = 0;
Mark Salter0302f712013-12-30 12:12:12 -0500542 info.params = params;
543
Catalin Marinas29e24352014-07-08 16:54:18 +0100544 ret = of_scan_flat_dt(fdt_find_uefi_params, &info);
545 if (!info.found)
546 pr_info("UEFI not found.\n");
547 else if (!ret)
548 pr_err("Can't find '%s' in device tree!\n",
549 dt_params[info.found].name);
550
551 return ret;
Mark Salter0302f712013-12-30 12:12:12 -0500552}
553#endif /* CONFIG_EFI_PARAMS_FROM_FDT */
Laszlo Ersek98d2a6c2014-09-03 13:32:20 +0200554
555static __initdata char memory_type_name[][20] = {
556 "Reserved",
557 "Loader Code",
558 "Loader Data",
559 "Boot Code",
560 "Boot Data",
561 "Runtime Code",
562 "Runtime Data",
563 "Conventional Memory",
564 "Unusable Memory",
565 "ACPI Reclaim Memory",
566 "ACPI Memory NVS",
567 "Memory Mapped I/O",
568 "MMIO Port Space",
569 "PAL Code"
570};
571
572char * __init efi_md_typeattr_format(char *buf, size_t size,
573 const efi_memory_desc_t *md)
574{
575 char *pos;
576 int type_len;
577 u64 attr;
578
579 pos = buf;
580 if (md->type >= ARRAY_SIZE(memory_type_name))
581 type_len = snprintf(pos, size, "[type=%u", md->type);
582 else
583 type_len = snprintf(pos, size, "[%-*s",
584 (int)(sizeof(memory_type_name[0]) - 1),
585 memory_type_name[md->type]);
586 if (type_len >= size)
587 return buf;
588
589 pos += type_len;
590 size -= type_len;
591
592 attr = md->attribute;
593 if (attr & ~(EFI_MEMORY_UC | EFI_MEMORY_WC | EFI_MEMORY_WT |
Ard Biesheuvel87db73ae2015-08-07 09:36:54 +0100594 EFI_MEMORY_WB | EFI_MEMORY_UCE | EFI_MEMORY_RO |
595 EFI_MEMORY_WP | EFI_MEMORY_RP | EFI_MEMORY_XP |
Taku Izumi8be44322015-08-27 02:11:19 +0900596 EFI_MEMORY_RUNTIME | EFI_MEMORY_MORE_RELIABLE))
Laszlo Ersek98d2a6c2014-09-03 13:32:20 +0200597 snprintf(pos, size, "|attr=0x%016llx]",
598 (unsigned long long)attr);
599 else
Taku Izumi8be44322015-08-27 02:11:19 +0900600 snprintf(pos, size, "|%3s|%2s|%2s|%2s|%2s|%2s|%3s|%2s|%2s|%2s|%2s]",
Laszlo Ersek98d2a6c2014-09-03 13:32:20 +0200601 attr & EFI_MEMORY_RUNTIME ? "RUN" : "",
Taku Izumi8be44322015-08-27 02:11:19 +0900602 attr & EFI_MEMORY_MORE_RELIABLE ? "MR" : "",
Laszlo Ersek98d2a6c2014-09-03 13:32:20 +0200603 attr & EFI_MEMORY_XP ? "XP" : "",
604 attr & EFI_MEMORY_RP ? "RP" : "",
605 attr & EFI_MEMORY_WP ? "WP" : "",
Ard Biesheuvel87db73ae2015-08-07 09:36:54 +0100606 attr & EFI_MEMORY_RO ? "RO" : "",
Laszlo Ersek98d2a6c2014-09-03 13:32:20 +0200607 attr & EFI_MEMORY_UCE ? "UCE" : "",
608 attr & EFI_MEMORY_WB ? "WB" : "",
609 attr & EFI_MEMORY_WT ? "WT" : "",
610 attr & EFI_MEMORY_WC ? "WC" : "",
611 attr & EFI_MEMORY_UC ? "UC" : "");
612 return buf;
613}
Jonathan (Zhixiong) Zhang7bf79312015-08-07 09:36:57 +0100614
615/*
616 * efi_mem_attributes - lookup memmap attributes for physical address
617 * @phys_addr: the physical address to lookup
618 *
619 * Search in the EFI memory map for the region covering
620 * @phys_addr. Returns the EFI memory attributes if the region
621 * was found in the memory map, 0 otherwise.
622 *
623 * Despite being marked __weak, most architectures should *not*
624 * override this function. It is __weak solely for the benefit
625 * of ia64 which has a funky EFI memory map that doesn't work
626 * the same way as other architectures.
627 */
628u64 __weak efi_mem_attributes(unsigned long phys_addr)
629{
Matt Fleming0ce423b2015-10-03 23:26:07 +0100630 struct efi_memory_map *map;
Jonathan (Zhixiong) Zhang7bf79312015-08-07 09:36:57 +0100631 efi_memory_desc_t *md;
632 void *p;
633
634 if (!efi_enabled(EFI_MEMMAP))
635 return 0;
636
Matt Fleming0ce423b2015-10-03 23:26:07 +0100637 map = efi.memmap;
638 for (p = map->map; p < map->map_end; p += map->desc_size) {
Jonathan (Zhixiong) Zhang7bf79312015-08-07 09:36:57 +0100639 md = p;
640 if ((md->phys_addr <= phys_addr) &&
641 (phys_addr < (md->phys_addr +
642 (md->num_pages << EFI_PAGE_SHIFT))))
643 return md->attribute;
644 }
645 return 0;
646}