nfs: move nfs_file_operations declaration to bottom of file.c (try #2)
[linux-2.6/linux-acpi-2.6/ibm-acpi-2.6.git] / drivers / firmware / efivars.c
blob8370f72d87ff5ed955789973845629f406f6734e
1 /*
2 * EFI Variables - efivars.c
4 * Copyright (C) 2001,2003,2004 Dell <Matt_Domsch@dell.com>
5 * Copyright (C) 2004 Intel Corporation <matthew.e.tolentino@intel.com>
7 * This code takes all variables accessible from EFI runtime and
8 * exports them via sysfs
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; either version 2 of the License, or
13 * (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
24 * Changelog:
26 * 17 May 2004 - Matt Domsch <Matt_Domsch@dell.com>
27 * remove check for efi_enabled in exit
28 * add MODULE_VERSION
30 * 26 Apr 2004 - Matt Domsch <Matt_Domsch@dell.com>
31 * minor bug fixes
33 * 21 Apr 2004 - Matt Tolentino <matthew.e.tolentino@intel.com)
34 * converted driver to export variable information via sysfs
35 * and moved to drivers/firmware directory
36 * bumped revision number to v0.07 to reflect conversion & move
38 * 10 Dec 2002 - Matt Domsch <Matt_Domsch@dell.com>
39 * fix locking per Peter Chubb's findings
41 * 25 Mar 2002 - Matt Domsch <Matt_Domsch@dell.com>
42 * move uuid_unparse() to include/asm-ia64/efi.h:efi_guid_unparse()
44 * 12 Feb 2002 - Matt Domsch <Matt_Domsch@dell.com>
45 * use list_for_each_safe when deleting vars.
46 * remove ifdef CONFIG_SMP around include <linux/smp.h>
47 * v0.04 release to linux-ia64@linuxia64.org
49 * 20 April 2001 - Matt Domsch <Matt_Domsch@dell.com>
50 * Moved vars from /proc/efi to /proc/efi/vars, and made
51 * efi.c own the /proc/efi directory.
52 * v0.03 release to linux-ia64@linuxia64.org
54 * 26 March 2001 - Matt Domsch <Matt_Domsch@dell.com>
55 * At the request of Stephane, moved ownership of /proc/efi
56 * to efi.c, and now efivars lives under /proc/efi/vars.
58 * 12 March 2001 - Matt Domsch <Matt_Domsch@dell.com>
59 * Feedback received from Stephane Eranian incorporated.
60 * efivar_write() checks copy_from_user() return value.
61 * efivar_read/write() returns proper errno.
62 * v0.02 release to linux-ia64@linuxia64.org
64 * 26 February 2001 - Matt Domsch <Matt_Domsch@dell.com>
65 * v0.01 release to linux-ia64@linuxia64.org
68 #include <linux/capability.h>
69 #include <linux/types.h>
70 #include <linux/errno.h>
71 #include <linux/init.h>
72 #include <linux/mm.h>
73 #include <linux/module.h>
74 #include <linux/string.h>
75 #include <linux/smp.h>
76 #include <linux/efi.h>
77 #include <linux/sysfs.h>
78 #include <linux/kobject.h>
79 #include <linux/device.h>
80 #include <linux/slab.h>
81 #include <linux/pstore.h>
83 #include <asm/uaccess.h>
85 #define EFIVARS_VERSION "0.08"
86 #define EFIVARS_DATE "2004-May-17"
88 MODULE_AUTHOR("Matt Domsch <Matt_Domsch@Dell.com>");
89 MODULE_DESCRIPTION("sysfs interface to EFI Variables");
90 MODULE_LICENSE("GPL");
91 MODULE_VERSION(EFIVARS_VERSION);
93 #define DUMP_NAME_LEN 52
96 * The maximum size of VariableName + Data = 1024
97 * Therefore, it's reasonable to save that much
98 * space in each part of the structure,
99 * and we use a page for reading/writing.
102 struct efi_variable {
103 efi_char16_t VariableName[1024/sizeof(efi_char16_t)];
104 efi_guid_t VendorGuid;
105 unsigned long DataSize;
106 __u8 Data[1024];
107 efi_status_t Status;
108 __u32 Attributes;
109 } __attribute__((packed));
112 struct efivar_entry {
113 struct efivars *efivars;
114 struct efi_variable var;
115 struct list_head list;
116 struct kobject kobj;
119 struct efivar_attribute {
120 struct attribute attr;
121 ssize_t (*show) (struct efivar_entry *entry, char *buf);
122 ssize_t (*store)(struct efivar_entry *entry, const char *buf, size_t count);
125 #define PSTORE_EFI_ATTRIBUTES \
126 (EFI_VARIABLE_NON_VOLATILE | \
127 EFI_VARIABLE_BOOTSERVICE_ACCESS | \
128 EFI_VARIABLE_RUNTIME_ACCESS)
130 #define EFIVAR_ATTR(_name, _mode, _show, _store) \
131 struct efivar_attribute efivar_attr_##_name = { \
132 .attr = {.name = __stringify(_name), .mode = _mode}, \
133 .show = _show, \
134 .store = _store, \
137 #define to_efivar_attr(_attr) container_of(_attr, struct efivar_attribute, attr)
138 #define to_efivar_entry(obj) container_of(obj, struct efivar_entry, kobj)
141 * Prototype for sysfs creation function
143 static int
144 efivar_create_sysfs_entry(struct efivars *efivars,
145 unsigned long variable_name_size,
146 efi_char16_t *variable_name,
147 efi_guid_t *vendor_guid);
149 /* Return the number of unicode characters in data */
150 static unsigned long
151 utf16_strnlen(efi_char16_t *s, size_t maxlength)
153 unsigned long length = 0;
155 while (*s++ != 0 && length < maxlength)
156 length++;
157 return length;
160 static inline unsigned long
161 utf16_strlen(efi_char16_t *s)
163 return utf16_strnlen(s, ~0UL);
167 * Return the number of bytes is the length of this string
168 * Note: this is NOT the same as the number of unicode characters
170 static inline unsigned long
171 utf16_strsize(efi_char16_t *data, unsigned long maxlength)
173 return utf16_strnlen(data, maxlength/sizeof(efi_char16_t)) * sizeof(efi_char16_t);
176 static inline int
177 utf16_strncmp(const efi_char16_t *a, const efi_char16_t *b, size_t len)
179 while (1) {
180 if (len == 0)
181 return 0;
182 if (*a < *b)
183 return -1;
184 if (*a > *b)
185 return 1;
186 if (*a == 0) /* implies *b == 0 */
187 return 0;
188 a++;
189 b++;
190 len--;
194 static efi_status_t
195 get_var_data_locked(struct efivars *efivars, struct efi_variable *var)
197 efi_status_t status;
199 var->DataSize = 1024;
200 status = efivars->ops->get_variable(var->VariableName,
201 &var->VendorGuid,
202 &var->Attributes,
203 &var->DataSize,
204 var->Data);
205 return status;
208 static efi_status_t
209 get_var_data(struct efivars *efivars, struct efi_variable *var)
211 efi_status_t status;
213 spin_lock(&efivars->lock);
214 status = get_var_data_locked(efivars, var);
215 spin_unlock(&efivars->lock);
217 if (status != EFI_SUCCESS) {
218 printk(KERN_WARNING "efivars: get_variable() failed 0x%lx!\n",
219 status);
221 return status;
224 static ssize_t
225 efivar_guid_read(struct efivar_entry *entry, char *buf)
227 struct efi_variable *var = &entry->var;
228 char *str = buf;
230 if (!entry || !buf)
231 return 0;
233 efi_guid_unparse(&var->VendorGuid, str);
234 str += strlen(str);
235 str += sprintf(str, "\n");
237 return str - buf;
240 static ssize_t
241 efivar_attr_read(struct efivar_entry *entry, char *buf)
243 struct efi_variable *var = &entry->var;
244 char *str = buf;
245 efi_status_t status;
247 if (!entry || !buf)
248 return -EINVAL;
250 status = get_var_data(entry->efivars, var);
251 if (status != EFI_SUCCESS)
252 return -EIO;
254 if (var->Attributes & 0x1)
255 str += sprintf(str, "EFI_VARIABLE_NON_VOLATILE\n");
256 if (var->Attributes & 0x2)
257 str += sprintf(str, "EFI_VARIABLE_BOOTSERVICE_ACCESS\n");
258 if (var->Attributes & 0x4)
259 str += sprintf(str, "EFI_VARIABLE_RUNTIME_ACCESS\n");
260 return str - buf;
263 static ssize_t
264 efivar_size_read(struct efivar_entry *entry, char *buf)
266 struct efi_variable *var = &entry->var;
267 char *str = buf;
268 efi_status_t status;
270 if (!entry || !buf)
271 return -EINVAL;
273 status = get_var_data(entry->efivars, var);
274 if (status != EFI_SUCCESS)
275 return -EIO;
277 str += sprintf(str, "0x%lx\n", var->DataSize);
278 return str - buf;
281 static ssize_t
282 efivar_data_read(struct efivar_entry *entry, char *buf)
284 struct efi_variable *var = &entry->var;
285 efi_status_t status;
287 if (!entry || !buf)
288 return -EINVAL;
290 status = get_var_data(entry->efivars, var);
291 if (status != EFI_SUCCESS)
292 return -EIO;
294 memcpy(buf, var->Data, var->DataSize);
295 return var->DataSize;
298 * We allow each variable to be edited via rewriting the
299 * entire efi variable structure.
301 static ssize_t
302 efivar_store_raw(struct efivar_entry *entry, const char *buf, size_t count)
304 struct efi_variable *new_var, *var = &entry->var;
305 struct efivars *efivars = entry->efivars;
306 efi_status_t status = EFI_NOT_FOUND;
308 if (count != sizeof(struct efi_variable))
309 return -EINVAL;
311 new_var = (struct efi_variable *)buf;
313 * If only updating the variable data, then the name
314 * and guid should remain the same
316 if (memcmp(new_var->VariableName, var->VariableName, sizeof(var->VariableName)) ||
317 efi_guidcmp(new_var->VendorGuid, var->VendorGuid)) {
318 printk(KERN_ERR "efivars: Cannot edit the wrong variable!\n");
319 return -EINVAL;
322 if ((new_var->DataSize <= 0) || (new_var->Attributes == 0)){
323 printk(KERN_ERR "efivars: DataSize & Attributes must be valid!\n");
324 return -EINVAL;
327 spin_lock(&efivars->lock);
328 status = efivars->ops->set_variable(new_var->VariableName,
329 &new_var->VendorGuid,
330 new_var->Attributes,
331 new_var->DataSize,
332 new_var->Data);
334 spin_unlock(&efivars->lock);
336 if (status != EFI_SUCCESS) {
337 printk(KERN_WARNING "efivars: set_variable() failed: status=%lx\n",
338 status);
339 return -EIO;
342 memcpy(&entry->var, new_var, count);
343 return count;
346 static ssize_t
347 efivar_show_raw(struct efivar_entry *entry, char *buf)
349 struct efi_variable *var = &entry->var;
350 efi_status_t status;
352 if (!entry || !buf)
353 return 0;
355 status = get_var_data(entry->efivars, var);
356 if (status != EFI_SUCCESS)
357 return -EIO;
359 memcpy(buf, var, sizeof(*var));
360 return sizeof(*var);
364 * Generic read/write functions that call the specific functions of
365 * the attributes...
367 static ssize_t efivar_attr_show(struct kobject *kobj, struct attribute *attr,
368 char *buf)
370 struct efivar_entry *var = to_efivar_entry(kobj);
371 struct efivar_attribute *efivar_attr = to_efivar_attr(attr);
372 ssize_t ret = -EIO;
374 if (!capable(CAP_SYS_ADMIN))
375 return -EACCES;
377 if (efivar_attr->show) {
378 ret = efivar_attr->show(var, buf);
380 return ret;
383 static ssize_t efivar_attr_store(struct kobject *kobj, struct attribute *attr,
384 const char *buf, size_t count)
386 struct efivar_entry *var = to_efivar_entry(kobj);
387 struct efivar_attribute *efivar_attr = to_efivar_attr(attr);
388 ssize_t ret = -EIO;
390 if (!capable(CAP_SYS_ADMIN))
391 return -EACCES;
393 if (efivar_attr->store)
394 ret = efivar_attr->store(var, buf, count);
396 return ret;
399 static const struct sysfs_ops efivar_attr_ops = {
400 .show = efivar_attr_show,
401 .store = efivar_attr_store,
404 static void efivar_release(struct kobject *kobj)
406 struct efivar_entry *var = container_of(kobj, struct efivar_entry, kobj);
407 kfree(var);
410 static EFIVAR_ATTR(guid, 0400, efivar_guid_read, NULL);
411 static EFIVAR_ATTR(attributes, 0400, efivar_attr_read, NULL);
412 static EFIVAR_ATTR(size, 0400, efivar_size_read, NULL);
413 static EFIVAR_ATTR(data, 0400, efivar_data_read, NULL);
414 static EFIVAR_ATTR(raw_var, 0600, efivar_show_raw, efivar_store_raw);
416 static struct attribute *def_attrs[] = {
417 &efivar_attr_guid.attr,
418 &efivar_attr_size.attr,
419 &efivar_attr_attributes.attr,
420 &efivar_attr_data.attr,
421 &efivar_attr_raw_var.attr,
422 NULL,
425 static struct kobj_type efivar_ktype = {
426 .release = efivar_release,
427 .sysfs_ops = &efivar_attr_ops,
428 .default_attrs = def_attrs,
431 static struct pstore_info efi_pstore_info;
433 static inline void
434 efivar_unregister(struct efivar_entry *var)
436 kobject_put(&var->kobj);
439 #ifdef CONFIG_PSTORE
441 static int efi_pstore_open(struct pstore_info *psi)
443 struct efivars *efivars = psi->data;
445 spin_lock(&efivars->lock);
446 efivars->walk_entry = list_first_entry(&efivars->list,
447 struct efivar_entry, list);
448 return 0;
451 static int efi_pstore_close(struct pstore_info *psi)
453 struct efivars *efivars = psi->data;
455 spin_unlock(&efivars->lock);
456 return 0;
459 static ssize_t efi_pstore_read(u64 *id, enum pstore_type_id *type,
460 struct timespec *timespec, struct pstore_info *psi)
462 efi_guid_t vendor = LINUX_EFI_CRASH_GUID;
463 struct efivars *efivars = psi->data;
464 char name[DUMP_NAME_LEN];
465 int i;
466 unsigned int part, size;
467 unsigned long time;
469 while (&efivars->walk_entry->list != &efivars->list) {
470 if (!efi_guidcmp(efivars->walk_entry->var.VendorGuid,
471 vendor)) {
472 for (i = 0; i < DUMP_NAME_LEN; i++) {
473 name[i] = efivars->walk_entry->var.VariableName[i];
475 if (sscanf(name, "dump-type%u-%u-%lu", type, &part, &time) == 3) {
476 *id = part;
477 timespec->tv_sec = time;
478 timespec->tv_nsec = 0;
479 get_var_data_locked(efivars, &efivars->walk_entry->var);
480 size = efivars->walk_entry->var.DataSize;
481 memcpy(psi->buf, efivars->walk_entry->var.Data, size);
482 efivars->walk_entry = list_entry(efivars->walk_entry->list.next,
483 struct efivar_entry, list);
484 return size;
487 efivars->walk_entry = list_entry(efivars->walk_entry->list.next,
488 struct efivar_entry, list);
490 return 0;
493 static int efi_pstore_write(enum pstore_type_id type, u64 *id,
494 unsigned int part, size_t size, struct pstore_info *psi)
496 char name[DUMP_NAME_LEN];
497 char stub_name[DUMP_NAME_LEN];
498 efi_char16_t efi_name[DUMP_NAME_LEN];
499 efi_guid_t vendor = LINUX_EFI_CRASH_GUID;
500 struct efivars *efivars = psi->data;
501 struct efivar_entry *entry, *found = NULL;
502 int i, ret = 0;
504 sprintf(stub_name, "dump-type%u-%u-", type, part);
505 sprintf(name, "%s%lu", stub_name, get_seconds());
507 spin_lock(&efivars->lock);
509 for (i = 0; i < DUMP_NAME_LEN; i++)
510 efi_name[i] = stub_name[i];
513 * Clean up any entries with the same name
516 list_for_each_entry(entry, &efivars->list, list) {
517 get_var_data_locked(efivars, &entry->var);
519 if (efi_guidcmp(entry->var.VendorGuid, vendor))
520 continue;
521 if (utf16_strncmp(entry->var.VariableName, efi_name,
522 utf16_strlen(efi_name)))
523 continue;
524 /* Needs to be a prefix */
525 if (entry->var.VariableName[utf16_strlen(efi_name)] == 0)
526 continue;
528 /* found */
529 found = entry;
530 efivars->ops->set_variable(entry->var.VariableName,
531 &entry->var.VendorGuid,
532 PSTORE_EFI_ATTRIBUTES,
533 0, NULL);
536 if (found)
537 list_del(&found->list);
539 for (i = 0; i < DUMP_NAME_LEN; i++)
540 efi_name[i] = name[i];
542 efivars->ops->set_variable(efi_name, &vendor, PSTORE_EFI_ATTRIBUTES,
543 size, psi->buf);
545 spin_unlock(&efivars->lock);
547 if (found)
548 efivar_unregister(found);
550 if (size)
551 ret = efivar_create_sysfs_entry(efivars,
552 utf16_strsize(efi_name,
553 DUMP_NAME_LEN * 2),
554 efi_name, &vendor);
556 *id = part;
557 return ret;
560 static int efi_pstore_erase(enum pstore_type_id type, u64 id,
561 struct pstore_info *psi)
563 efi_pstore_write(type, &id, (unsigned int)id, 0, psi);
565 return 0;
567 #else
568 static int efi_pstore_open(struct pstore_info *psi)
570 return 0;
573 static int efi_pstore_close(struct pstore_info *psi)
575 return 0;
578 static ssize_t efi_pstore_read(u64 *id, enum pstore_type_id *type,
579 struct timespec *time, struct pstore_info *psi)
581 return -1;
584 static int efi_pstore_write(enum pstore_type_id type, u64 *id,
585 unsigned int part, size_t size, struct pstore_info *psi)
587 return 0;
590 static int efi_pstore_erase(enum pstore_type_id type, u64 id,
591 struct pstore_info *psi)
593 return 0;
595 #endif
597 static struct pstore_info efi_pstore_info = {
598 .owner = THIS_MODULE,
599 .name = "efi",
600 .open = efi_pstore_open,
601 .close = efi_pstore_close,
602 .read = efi_pstore_read,
603 .write = efi_pstore_write,
604 .erase = efi_pstore_erase,
607 static ssize_t efivar_create(struct file *filp, struct kobject *kobj,
608 struct bin_attribute *bin_attr,
609 char *buf, loff_t pos, size_t count)
611 struct efi_variable *new_var = (struct efi_variable *)buf;
612 struct efivars *efivars = bin_attr->private;
613 struct efivar_entry *search_efivar, *n;
614 unsigned long strsize1, strsize2;
615 efi_status_t status = EFI_NOT_FOUND;
616 int found = 0;
618 if (!capable(CAP_SYS_ADMIN))
619 return -EACCES;
621 spin_lock(&efivars->lock);
624 * Does this variable already exist?
626 list_for_each_entry_safe(search_efivar, n, &efivars->list, list) {
627 strsize1 = utf16_strsize(search_efivar->var.VariableName, 1024);
628 strsize2 = utf16_strsize(new_var->VariableName, 1024);
629 if (strsize1 == strsize2 &&
630 !memcmp(&(search_efivar->var.VariableName),
631 new_var->VariableName, strsize1) &&
632 !efi_guidcmp(search_efivar->var.VendorGuid,
633 new_var->VendorGuid)) {
634 found = 1;
635 break;
638 if (found) {
639 spin_unlock(&efivars->lock);
640 return -EINVAL;
643 /* now *really* create the variable via EFI */
644 status = efivars->ops->set_variable(new_var->VariableName,
645 &new_var->VendorGuid,
646 new_var->Attributes,
647 new_var->DataSize,
648 new_var->Data);
650 if (status != EFI_SUCCESS) {
651 printk(KERN_WARNING "efivars: set_variable() failed: status=%lx\n",
652 status);
653 spin_unlock(&efivars->lock);
654 return -EIO;
656 spin_unlock(&efivars->lock);
658 /* Create the entry in sysfs. Locking is not required here */
659 status = efivar_create_sysfs_entry(efivars,
660 utf16_strsize(new_var->VariableName,
661 1024),
662 new_var->VariableName,
663 &new_var->VendorGuid);
664 if (status) {
665 printk(KERN_WARNING "efivars: variable created, but sysfs entry wasn't.\n");
667 return count;
670 static ssize_t efivar_delete(struct file *filp, struct kobject *kobj,
671 struct bin_attribute *bin_attr,
672 char *buf, loff_t pos, size_t count)
674 struct efi_variable *del_var = (struct efi_variable *)buf;
675 struct efivars *efivars = bin_attr->private;
676 struct efivar_entry *search_efivar, *n;
677 unsigned long strsize1, strsize2;
678 efi_status_t status = EFI_NOT_FOUND;
679 int found = 0;
681 if (!capable(CAP_SYS_ADMIN))
682 return -EACCES;
684 spin_lock(&efivars->lock);
687 * Does this variable already exist?
689 list_for_each_entry_safe(search_efivar, n, &efivars->list, list) {
690 strsize1 = utf16_strsize(search_efivar->var.VariableName, 1024);
691 strsize2 = utf16_strsize(del_var->VariableName, 1024);
692 if (strsize1 == strsize2 &&
693 !memcmp(&(search_efivar->var.VariableName),
694 del_var->VariableName, strsize1) &&
695 !efi_guidcmp(search_efivar->var.VendorGuid,
696 del_var->VendorGuid)) {
697 found = 1;
698 break;
701 if (!found) {
702 spin_unlock(&efivars->lock);
703 return -EINVAL;
705 /* force the Attributes/DataSize to 0 to ensure deletion */
706 del_var->Attributes = 0;
707 del_var->DataSize = 0;
709 status = efivars->ops->set_variable(del_var->VariableName,
710 &del_var->VendorGuid,
711 del_var->Attributes,
712 del_var->DataSize,
713 del_var->Data);
715 if (status != EFI_SUCCESS) {
716 printk(KERN_WARNING "efivars: set_variable() failed: status=%lx\n",
717 status);
718 spin_unlock(&efivars->lock);
719 return -EIO;
721 list_del(&search_efivar->list);
722 /* We need to release this lock before unregistering. */
723 spin_unlock(&efivars->lock);
724 efivar_unregister(search_efivar);
726 /* It's dead Jim.... */
727 return count;
731 * Let's not leave out systab information that snuck into
732 * the efivars driver
734 static ssize_t systab_show(struct kobject *kobj,
735 struct kobj_attribute *attr, char *buf)
737 char *str = buf;
739 if (!kobj || !buf)
740 return -EINVAL;
742 if (efi.mps != EFI_INVALID_TABLE_ADDR)
743 str += sprintf(str, "MPS=0x%lx\n", efi.mps);
744 if (efi.acpi20 != EFI_INVALID_TABLE_ADDR)
745 str += sprintf(str, "ACPI20=0x%lx\n", efi.acpi20);
746 if (efi.acpi != EFI_INVALID_TABLE_ADDR)
747 str += sprintf(str, "ACPI=0x%lx\n", efi.acpi);
748 if (efi.smbios != EFI_INVALID_TABLE_ADDR)
749 str += sprintf(str, "SMBIOS=0x%lx\n", efi.smbios);
750 if (efi.hcdp != EFI_INVALID_TABLE_ADDR)
751 str += sprintf(str, "HCDP=0x%lx\n", efi.hcdp);
752 if (efi.boot_info != EFI_INVALID_TABLE_ADDR)
753 str += sprintf(str, "BOOTINFO=0x%lx\n", efi.boot_info);
754 if (efi.uga != EFI_INVALID_TABLE_ADDR)
755 str += sprintf(str, "UGA=0x%lx\n", efi.uga);
757 return str - buf;
760 static struct kobj_attribute efi_attr_systab =
761 __ATTR(systab, 0400, systab_show, NULL);
763 static struct attribute *efi_subsys_attrs[] = {
764 &efi_attr_systab.attr,
765 NULL, /* maybe more in the future? */
768 static struct attribute_group efi_subsys_attr_group = {
769 .attrs = efi_subsys_attrs,
772 static struct kobject *efi_kobj;
775 * efivar_create_sysfs_entry()
776 * Requires:
777 * variable_name_size = number of bytes required to hold
778 * variable_name (not counting the NULL
779 * character at the end.
780 * efivars->lock is not held on entry or exit.
781 * Returns 1 on failure, 0 on success
783 static int
784 efivar_create_sysfs_entry(struct efivars *efivars,
785 unsigned long variable_name_size,
786 efi_char16_t *variable_name,
787 efi_guid_t *vendor_guid)
789 int i, short_name_size = variable_name_size / sizeof(efi_char16_t) + 38;
790 char *short_name;
791 struct efivar_entry *new_efivar;
793 short_name = kzalloc(short_name_size + 1, GFP_KERNEL);
794 new_efivar = kzalloc(sizeof(struct efivar_entry), GFP_KERNEL);
796 if (!short_name || !new_efivar) {
797 kfree(short_name);
798 kfree(new_efivar);
799 return 1;
802 new_efivar->efivars = efivars;
803 memcpy(new_efivar->var.VariableName, variable_name,
804 variable_name_size);
805 memcpy(&(new_efivar->var.VendorGuid), vendor_guid, sizeof(efi_guid_t));
807 /* Convert Unicode to normal chars (assume top bits are 0),
808 ala UTF-8 */
809 for (i=0; i < (int)(variable_name_size / sizeof(efi_char16_t)); i++) {
810 short_name[i] = variable_name[i] & 0xFF;
812 /* This is ugly, but necessary to separate one vendor's
813 private variables from another's. */
815 *(short_name + strlen(short_name)) = '-';
816 efi_guid_unparse(vendor_guid, short_name + strlen(short_name));
818 new_efivar->kobj.kset = efivars->kset;
819 i = kobject_init_and_add(&new_efivar->kobj, &efivar_ktype, NULL,
820 "%s", short_name);
821 if (i) {
822 kfree(short_name);
823 kfree(new_efivar);
824 return 1;
827 kobject_uevent(&new_efivar->kobj, KOBJ_ADD);
828 kfree(short_name);
829 short_name = NULL;
831 spin_lock(&efivars->lock);
832 list_add(&new_efivar->list, &efivars->list);
833 spin_unlock(&efivars->lock);
835 return 0;
838 static int
839 create_efivars_bin_attributes(struct efivars *efivars)
841 struct bin_attribute *attr;
842 int error;
844 /* new_var */
845 attr = kzalloc(sizeof(*attr), GFP_KERNEL);
846 if (!attr)
847 return -ENOMEM;
849 attr->attr.name = "new_var";
850 attr->attr.mode = 0200;
851 attr->write = efivar_create;
852 attr->private = efivars;
853 efivars->new_var = attr;
855 /* del_var */
856 attr = kzalloc(sizeof(*attr), GFP_KERNEL);
857 if (!attr) {
858 error = -ENOMEM;
859 goto out_free;
861 attr->attr.name = "del_var";
862 attr->attr.mode = 0200;
863 attr->write = efivar_delete;
864 attr->private = efivars;
865 efivars->del_var = attr;
867 sysfs_bin_attr_init(efivars->new_var);
868 sysfs_bin_attr_init(efivars->del_var);
870 /* Register */
871 error = sysfs_create_bin_file(&efivars->kset->kobj,
872 efivars->new_var);
873 if (error) {
874 printk(KERN_ERR "efivars: unable to create new_var sysfs file"
875 " due to error %d\n", error);
876 goto out_free;
878 error = sysfs_create_bin_file(&efivars->kset->kobj,
879 efivars->del_var);
880 if (error) {
881 printk(KERN_ERR "efivars: unable to create del_var sysfs file"
882 " due to error %d\n", error);
883 sysfs_remove_bin_file(&efivars->kset->kobj,
884 efivars->new_var);
885 goto out_free;
888 return 0;
889 out_free:
890 kfree(efivars->del_var);
891 efivars->del_var = NULL;
892 kfree(efivars->new_var);
893 efivars->new_var = NULL;
894 return error;
897 void unregister_efivars(struct efivars *efivars)
899 struct efivar_entry *entry, *n;
901 list_for_each_entry_safe(entry, n, &efivars->list, list) {
902 spin_lock(&efivars->lock);
903 list_del(&entry->list);
904 spin_unlock(&efivars->lock);
905 efivar_unregister(entry);
907 if (efivars->new_var)
908 sysfs_remove_bin_file(&efivars->kset->kobj, efivars->new_var);
909 if (efivars->del_var)
910 sysfs_remove_bin_file(&efivars->kset->kobj, efivars->del_var);
911 kfree(efivars->new_var);
912 kfree(efivars->del_var);
913 kset_unregister(efivars->kset);
915 EXPORT_SYMBOL_GPL(unregister_efivars);
917 int register_efivars(struct efivars *efivars,
918 const struct efivar_operations *ops,
919 struct kobject *parent_kobj)
921 efi_status_t status = EFI_NOT_FOUND;
922 efi_guid_t vendor_guid;
923 efi_char16_t *variable_name;
924 unsigned long variable_name_size = 1024;
925 int error = 0;
927 variable_name = kzalloc(variable_name_size, GFP_KERNEL);
928 if (!variable_name) {
929 printk(KERN_ERR "efivars: Memory allocation failed.\n");
930 return -ENOMEM;
933 spin_lock_init(&efivars->lock);
934 INIT_LIST_HEAD(&efivars->list);
935 efivars->ops = ops;
937 efivars->kset = kset_create_and_add("vars", NULL, parent_kobj);
938 if (!efivars->kset) {
939 printk(KERN_ERR "efivars: Subsystem registration failed.\n");
940 error = -ENOMEM;
941 goto out;
945 * Per EFI spec, the maximum storage allocated for both
946 * the variable name and variable data is 1024 bytes.
949 do {
950 variable_name_size = 1024;
952 status = ops->get_next_variable(&variable_name_size,
953 variable_name,
954 &vendor_guid);
955 switch (status) {
956 case EFI_SUCCESS:
957 efivar_create_sysfs_entry(efivars,
958 variable_name_size,
959 variable_name,
960 &vendor_guid);
961 break;
962 case EFI_NOT_FOUND:
963 break;
964 default:
965 printk(KERN_WARNING "efivars: get_next_variable: status=%lx\n",
966 status);
967 status = EFI_NOT_FOUND;
968 break;
970 } while (status != EFI_NOT_FOUND);
972 error = create_efivars_bin_attributes(efivars);
973 if (error)
974 unregister_efivars(efivars);
976 efivars->efi_pstore_info = efi_pstore_info;
978 efivars->efi_pstore_info.buf = kmalloc(4096, GFP_KERNEL);
979 if (efivars->efi_pstore_info.buf) {
980 efivars->efi_pstore_info.bufsize = 1024;
981 efivars->efi_pstore_info.data = efivars;
982 spin_lock_init(&efivars->efi_pstore_info.buf_lock);
983 pstore_register(&efivars->efi_pstore_info);
986 out:
987 kfree(variable_name);
989 return error;
991 EXPORT_SYMBOL_GPL(register_efivars);
993 static struct efivars __efivars;
994 static struct efivar_operations ops;
997 * For now we register the efi subsystem with the firmware subsystem
998 * and the vars subsystem with the efi subsystem. In the future, it
999 * might make sense to split off the efi subsystem into its own
1000 * driver, but for now only efivars will register with it, so just
1001 * include it here.
1004 static int __init
1005 efivars_init(void)
1007 int error = 0;
1009 printk(KERN_INFO "EFI Variables Facility v%s %s\n", EFIVARS_VERSION,
1010 EFIVARS_DATE);
1012 if (!efi_enabled)
1013 return 0;
1015 /* For now we'll register the efi directory at /sys/firmware/efi */
1016 efi_kobj = kobject_create_and_add("efi", firmware_kobj);
1017 if (!efi_kobj) {
1018 printk(KERN_ERR "efivars: Firmware registration failed.\n");
1019 return -ENOMEM;
1022 ops.get_variable = efi.get_variable;
1023 ops.set_variable = efi.set_variable;
1024 ops.get_next_variable = efi.get_next_variable;
1025 error = register_efivars(&__efivars, &ops, efi_kobj);
1026 if (error)
1027 goto err_put;
1029 /* Don't forget the systab entry */
1030 error = sysfs_create_group(efi_kobj, &efi_subsys_attr_group);
1031 if (error) {
1032 printk(KERN_ERR
1033 "efivars: Sysfs attribute export failed with error %d.\n",
1034 error);
1035 goto err_unregister;
1038 return 0;
1040 err_unregister:
1041 unregister_efivars(&__efivars);
1042 err_put:
1043 kobject_put(efi_kobj);
1044 return error;
1047 static void __exit
1048 efivars_exit(void)
1050 if (efi_enabled) {
1051 unregister_efivars(&__efivars);
1052 kobject_put(efi_kobj);
1056 module_init(efivars_init);
1057 module_exit(efivars_exit);