2 * core.c - Kernel Live Patching Core
4 * Copyright (C) 2014 Seth Jennings <sjenning@redhat.com>
5 * Copyright (C) 2014 SUSE
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License
9 * as published by the Free Software Foundation; either version 2
10 * of the License, or (at your option) any later version.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, see <http://www.gnu.org/licenses/>.
21 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
23 #include <linux/module.h>
24 #include <linux/kernel.h>
25 #include <linux/mutex.h>
26 #include <linux/slab.h>
27 #include <linux/list.h>
28 #include <linux/kallsyms.h>
29 #include <linux/livepatch.h>
30 #include <linux/elf.h>
31 #include <linux/moduleloader.h>
32 #include <linux/completion.h>
33 #include <asm/cacheflush.h>
36 #include "transition.h"
39 * klp_mutex is a coarse lock which serializes access to klp data. All
40 * accesses to klp-related variables and structures must have mutex protection,
41 * except within the following functions which carefully avoid the need for it:
43 * - klp_ftrace_handler()
44 * - klp_update_patch_state()
46 DEFINE_MUTEX(klp_mutex
);
48 static LIST_HEAD(klp_patches
);
50 static struct kobject
*klp_root_kobj
;
52 static bool klp_is_module(struct klp_object
*obj
)
57 /* sets obj->mod if object is not vmlinux and module is found */
58 static void klp_find_object_module(struct klp_object
*obj
)
62 if (!klp_is_module(obj
))
65 mutex_lock(&module_mutex
);
67 * We do not want to block removal of patched modules and therefore
68 * we do not take a reference here. The patches are removed by
69 * klp_module_going() instead.
71 mod
= find_module(obj
->name
);
73 * Do not mess work of klp_module_coming() and klp_module_going().
74 * Note that the patch might still be needed before klp_module_going()
75 * is called. Module functions can be called even in the GOING state
76 * until mod->exit() finishes. This is especially important for
77 * patches that modify semantic of the functions.
79 if (mod
&& mod
->klp_alive
)
82 mutex_unlock(&module_mutex
);
85 static bool klp_is_patch_registered(struct klp_patch
*patch
)
87 struct klp_patch
*mypatch
;
89 list_for_each_entry(mypatch
, &klp_patches
, list
)
96 static bool klp_initialized(void)
98 return !!klp_root_kobj
;
101 struct klp_find_arg
{
109 static int klp_find_callback(void *data
, const char *name
,
110 struct module
*mod
, unsigned long addr
)
112 struct klp_find_arg
*args
= data
;
114 if ((mod
&& !args
->objname
) || (!mod
&& args
->objname
))
117 if (strcmp(args
->name
, name
))
120 if (args
->objname
&& strcmp(args
->objname
, mod
->name
))
127 * Finish the search when the symbol is found for the desired position
128 * or the position is not defined for a non-unique symbol.
130 if ((args
->pos
&& (args
->count
== args
->pos
)) ||
131 (!args
->pos
&& (args
->count
> 1)))
137 static int klp_find_object_symbol(const char *objname
, const char *name
,
138 unsigned long sympos
, unsigned long *addr
)
140 struct klp_find_arg args
= {
148 mutex_lock(&module_mutex
);
150 module_kallsyms_on_each_symbol(klp_find_callback
, &args
);
152 kallsyms_on_each_symbol(klp_find_callback
, &args
);
153 mutex_unlock(&module_mutex
);
156 * Ensure an address was found. If sympos is 0, ensure symbol is unique;
157 * otherwise ensure the symbol position count matches sympos.
160 pr_err("symbol '%s' not found in symbol table\n", name
);
161 else if (args
.count
> 1 && sympos
== 0) {
162 pr_err("unresolvable ambiguity for symbol '%s' in object '%s'\n",
164 } else if (sympos
!= args
.count
&& sympos
> 0) {
165 pr_err("symbol position %lu for symbol '%s' in object '%s' not found\n",
166 sympos
, name
, objname
? objname
: "vmlinux");
176 static int klp_resolve_symbols(Elf_Shdr
*relasec
, struct module
*pmod
)
178 int i
, cnt
, vmlinux
, ret
;
179 char objname
[MODULE_NAME_LEN
];
180 char symname
[KSYM_NAME_LEN
];
181 char *strtab
= pmod
->core_kallsyms
.strtab
;
184 unsigned long sympos
, addr
;
187 * Since the field widths for objname and symname in the sscanf()
188 * call are hard-coded and correspond to MODULE_NAME_LEN and
189 * KSYM_NAME_LEN respectively, we must make sure that MODULE_NAME_LEN
190 * and KSYM_NAME_LEN have the values we expect them to have.
192 * Because the value of MODULE_NAME_LEN can differ among architectures,
193 * we use the smallest/strictest upper bound possible (56, based on
194 * the current definition of MODULE_NAME_LEN) to prevent overflows.
196 BUILD_BUG_ON(MODULE_NAME_LEN
< 56 || KSYM_NAME_LEN
!= 128);
198 relas
= (Elf_Rela
*) relasec
->sh_addr
;
199 /* For each rela in this klp relocation section */
200 for (i
= 0; i
< relasec
->sh_size
/ sizeof(Elf_Rela
); i
++) {
201 sym
= pmod
->core_kallsyms
.symtab
+ ELF_R_SYM(relas
[i
].r_info
);
202 if (sym
->st_shndx
!= SHN_LIVEPATCH
) {
203 pr_err("symbol %s is not marked as a livepatch symbol\n",
204 strtab
+ sym
->st_name
);
208 /* Format: .klp.sym.objname.symname,sympos */
209 cnt
= sscanf(strtab
+ sym
->st_name
,
210 ".klp.sym.%55[^.].%127[^,],%lu",
211 objname
, symname
, &sympos
);
213 pr_err("symbol %s has an incorrectly formatted name\n",
214 strtab
+ sym
->st_name
);
218 /* klp_find_object_symbol() treats a NULL objname as vmlinux */
219 vmlinux
= !strcmp(objname
, "vmlinux");
220 ret
= klp_find_object_symbol(vmlinux
? NULL
: objname
,
221 symname
, sympos
, &addr
);
225 sym
->st_value
= addr
;
231 static int klp_write_object_relocations(struct module
*pmod
,
232 struct klp_object
*obj
)
235 const char *objname
, *secname
;
236 char sec_objname
[MODULE_NAME_LEN
];
239 if (WARN_ON(!klp_is_object_loaded(obj
)))
242 objname
= klp_is_module(obj
) ? obj
->name
: "vmlinux";
244 /* For each klp relocation section */
245 for (i
= 1; i
< pmod
->klp_info
->hdr
.e_shnum
; i
++) {
246 sec
= pmod
->klp_info
->sechdrs
+ i
;
247 secname
= pmod
->klp_info
->secstrings
+ sec
->sh_name
;
248 if (!(sec
->sh_flags
& SHF_RELA_LIVEPATCH
))
252 * Format: .klp.rela.sec_objname.section_name
253 * See comment in klp_resolve_symbols() for an explanation
254 * of the selected field width value.
256 cnt
= sscanf(secname
, ".klp.rela.%55[^.]", sec_objname
);
258 pr_err("section %s has an incorrectly formatted name\n",
264 if (strcmp(objname
, sec_objname
))
267 ret
= klp_resolve_symbols(sec
, pmod
);
271 ret
= apply_relocate_add(pmod
->klp_info
->sechdrs
,
272 pmod
->core_kallsyms
.strtab
,
273 pmod
->klp_info
->symndx
, i
, pmod
);
281 static int __klp_disable_patch(struct klp_patch
*patch
)
283 struct klp_object
*obj
;
285 if (WARN_ON(!patch
->enabled
))
288 if (klp_transition_patch
)
291 /* enforce stacking: only the last enabled patch can be disabled */
292 if (!list_is_last(&patch
->list
, &klp_patches
) &&
293 list_next_entry(patch
, list
)->enabled
)
296 klp_init_transition(patch
, KLP_UNPATCHED
);
298 klp_for_each_object(patch
, obj
)
300 klp_pre_unpatch_callback(obj
);
303 * Enforce the order of the func->transition writes in
304 * klp_init_transition() and the TIF_PATCH_PENDING writes in
305 * klp_start_transition(). In the rare case where klp_ftrace_handler()
306 * is called shortly after klp_update_patch_state() switches the task,
307 * this ensures the handler sees that func->transition is set.
311 klp_start_transition();
312 klp_try_complete_transition();
313 patch
->enabled
= false;
319 * klp_disable_patch() - disables a registered patch
320 * @patch: The registered, enabled patch to be disabled
322 * Unregisters the patched functions from ftrace.
324 * Return: 0 on success, otherwise error
326 int klp_disable_patch(struct klp_patch
*patch
)
330 mutex_lock(&klp_mutex
);
332 if (!klp_is_patch_registered(patch
)) {
337 if (!patch
->enabled
) {
342 ret
= __klp_disable_patch(patch
);
345 mutex_unlock(&klp_mutex
);
348 EXPORT_SYMBOL_GPL(klp_disable_patch
);
350 static int __klp_enable_patch(struct klp_patch
*patch
)
352 struct klp_object
*obj
;
355 if (klp_transition_patch
)
358 if (WARN_ON(patch
->enabled
))
361 /* enforce stacking: only the first disabled patch can be enabled */
362 if (patch
->list
.prev
!= &klp_patches
&&
363 !list_prev_entry(patch
, list
)->enabled
)
367 * A reference is taken on the patch module to prevent it from being
370 if (!try_module_get(patch
->mod
))
373 pr_notice("enabling patch '%s'\n", patch
->mod
->name
);
375 klp_init_transition(patch
, KLP_PATCHED
);
378 * Enforce the order of the func->transition writes in
379 * klp_init_transition() and the ops->func_stack writes in
380 * klp_patch_object(), so that klp_ftrace_handler() will see the
381 * func->transition updates before the handler is registered and the
382 * new funcs become visible to the handler.
386 klp_for_each_object(patch
, obj
) {
387 if (!klp_is_object_loaded(obj
))
390 ret
= klp_pre_patch_callback(obj
);
392 pr_warn("pre-patch callback failed for object '%s'\n",
393 klp_is_module(obj
) ? obj
->name
: "vmlinux");
397 ret
= klp_patch_object(obj
);
399 pr_warn("failed to patch object '%s'\n",
400 klp_is_module(obj
) ? obj
->name
: "vmlinux");
405 klp_start_transition();
406 klp_try_complete_transition();
407 patch
->enabled
= true;
411 pr_warn("failed to enable patch '%s'\n", patch
->mod
->name
);
413 klp_cancel_transition();
418 * klp_enable_patch() - enables a registered patch
419 * @patch: The registered, disabled patch to be enabled
421 * Performs the needed symbol lookups and code relocations,
422 * then registers the patched functions with ftrace.
424 * Return: 0 on success, otherwise error
426 int klp_enable_patch(struct klp_patch
*patch
)
430 mutex_lock(&klp_mutex
);
432 if (!klp_is_patch_registered(patch
)) {
437 ret
= __klp_enable_patch(patch
);
440 mutex_unlock(&klp_mutex
);
443 EXPORT_SYMBOL_GPL(klp_enable_patch
);
448 * /sys/kernel/livepatch
449 * /sys/kernel/livepatch/<patch>
450 * /sys/kernel/livepatch/<patch>/enabled
451 * /sys/kernel/livepatch/<patch>/transition
452 * /sys/kernel/livepatch/<patch>/signal
453 * /sys/kernel/livepatch/<patch>/force
454 * /sys/kernel/livepatch/<patch>/<object>
455 * /sys/kernel/livepatch/<patch>/<object>/<function,sympos>
458 static ssize_t
enabled_store(struct kobject
*kobj
, struct kobj_attribute
*attr
,
459 const char *buf
, size_t count
)
461 struct klp_patch
*patch
;
465 ret
= kstrtobool(buf
, &enabled
);
469 patch
= container_of(kobj
, struct klp_patch
, kobj
);
471 mutex_lock(&klp_mutex
);
473 if (!klp_is_patch_registered(patch
)) {
475 * Module with the patch could either disappear meanwhile or is
476 * not properly initialized yet.
482 if (patch
->enabled
== enabled
) {
483 /* already in requested state */
488 if (patch
== klp_transition_patch
) {
489 klp_reverse_transition();
490 } else if (enabled
) {
491 ret
= __klp_enable_patch(patch
);
495 ret
= __klp_disable_patch(patch
);
500 mutex_unlock(&klp_mutex
);
505 mutex_unlock(&klp_mutex
);
509 static ssize_t
enabled_show(struct kobject
*kobj
,
510 struct kobj_attribute
*attr
, char *buf
)
512 struct klp_patch
*patch
;
514 patch
= container_of(kobj
, struct klp_patch
, kobj
);
515 return snprintf(buf
, PAGE_SIZE
-1, "%d\n", patch
->enabled
);
518 static ssize_t
transition_show(struct kobject
*kobj
,
519 struct kobj_attribute
*attr
, char *buf
)
521 struct klp_patch
*patch
;
523 patch
= container_of(kobj
, struct klp_patch
, kobj
);
524 return snprintf(buf
, PAGE_SIZE
-1, "%d\n",
525 patch
== klp_transition_patch
);
528 static ssize_t
signal_store(struct kobject
*kobj
, struct kobj_attribute
*attr
,
529 const char *buf
, size_t count
)
531 struct klp_patch
*patch
;
535 ret
= kstrtobool(buf
, &val
);
542 mutex_lock(&klp_mutex
);
544 patch
= container_of(kobj
, struct klp_patch
, kobj
);
545 if (patch
!= klp_transition_patch
) {
546 mutex_unlock(&klp_mutex
);
552 mutex_unlock(&klp_mutex
);
557 static ssize_t
force_store(struct kobject
*kobj
, struct kobj_attribute
*attr
,
558 const char *buf
, size_t count
)
560 struct klp_patch
*patch
;
564 ret
= kstrtobool(buf
, &val
);
571 mutex_lock(&klp_mutex
);
573 patch
= container_of(kobj
, struct klp_patch
, kobj
);
574 if (patch
!= klp_transition_patch
) {
575 mutex_unlock(&klp_mutex
);
579 klp_force_transition();
581 mutex_unlock(&klp_mutex
);
586 static struct kobj_attribute enabled_kobj_attr
= __ATTR_RW(enabled
);
587 static struct kobj_attribute transition_kobj_attr
= __ATTR_RO(transition
);
588 static struct kobj_attribute signal_kobj_attr
= __ATTR_WO(signal
);
589 static struct kobj_attribute force_kobj_attr
= __ATTR_WO(force
);
590 static struct attribute
*klp_patch_attrs
[] = {
591 &enabled_kobj_attr
.attr
,
592 &transition_kobj_attr
.attr
,
593 &signal_kobj_attr
.attr
,
594 &force_kobj_attr
.attr
,
598 static void klp_kobj_release_patch(struct kobject
*kobj
)
600 struct klp_patch
*patch
;
602 patch
= container_of(kobj
, struct klp_patch
, kobj
);
603 complete(&patch
->finish
);
606 static struct kobj_type klp_ktype_patch
= {
607 .release
= klp_kobj_release_patch
,
608 .sysfs_ops
= &kobj_sysfs_ops
,
609 .default_attrs
= klp_patch_attrs
,
612 static void klp_kobj_release_object(struct kobject
*kobj
)
616 static struct kobj_type klp_ktype_object
= {
617 .release
= klp_kobj_release_object
,
618 .sysfs_ops
= &kobj_sysfs_ops
,
621 static void klp_kobj_release_func(struct kobject
*kobj
)
625 static struct kobj_type klp_ktype_func
= {
626 .release
= klp_kobj_release_func
,
627 .sysfs_ops
= &kobj_sysfs_ops
,
631 * Free all functions' kobjects in the array up to some limit. When limit is
632 * NULL, all kobjects are freed.
634 static void klp_free_funcs_limited(struct klp_object
*obj
,
635 struct klp_func
*limit
)
637 struct klp_func
*func
;
639 for (func
= obj
->funcs
; func
->old_name
&& func
!= limit
; func
++)
640 kobject_put(&func
->kobj
);
643 /* Clean up when a patched object is unloaded */
644 static void klp_free_object_loaded(struct klp_object
*obj
)
646 struct klp_func
*func
;
650 klp_for_each_func(obj
, func
)
655 * Free all objects' kobjects in the array up to some limit. When limit is
656 * NULL, all kobjects are freed.
658 static void klp_free_objects_limited(struct klp_patch
*patch
,
659 struct klp_object
*limit
)
661 struct klp_object
*obj
;
663 for (obj
= patch
->objs
; obj
->funcs
&& obj
!= limit
; obj
++) {
664 klp_free_funcs_limited(obj
, NULL
);
665 kobject_put(&obj
->kobj
);
669 static void klp_free_patch(struct klp_patch
*patch
)
671 klp_free_objects_limited(patch
, NULL
);
672 if (!list_empty(&patch
->list
))
673 list_del(&patch
->list
);
676 static int klp_init_func(struct klp_object
*obj
, struct klp_func
*func
)
678 if (!func
->old_name
|| !func
->new_func
)
681 INIT_LIST_HEAD(&func
->stack_node
);
682 func
->patched
= false;
683 func
->transition
= false;
685 /* The format for the sysfs directory is <function,sympos> where sympos
686 * is the nth occurrence of this symbol in kallsyms for the patched
687 * object. If the user selects 0 for old_sympos, then 1 will be used
688 * since a unique symbol will be the first occurrence.
690 return kobject_init_and_add(&func
->kobj
, &klp_ktype_func
,
691 &obj
->kobj
, "%s,%lu", func
->old_name
,
692 func
->old_sympos
? func
->old_sympos
: 1);
695 /* Arches may override this to finish any remaining arch-specific tasks */
696 void __weak
arch_klp_init_object_loaded(struct klp_patch
*patch
,
697 struct klp_object
*obj
)
701 /* parts of the initialization that is done only when the object is loaded */
702 static int klp_init_object_loaded(struct klp_patch
*patch
,
703 struct klp_object
*obj
)
705 struct klp_func
*func
;
708 module_disable_ro(patch
->mod
);
709 ret
= klp_write_object_relocations(patch
->mod
, obj
);
711 module_enable_ro(patch
->mod
, true);
715 arch_klp_init_object_loaded(patch
, obj
);
716 module_enable_ro(patch
->mod
, true);
718 klp_for_each_func(obj
, func
) {
719 ret
= klp_find_object_symbol(obj
->name
, func
->old_name
,
725 ret
= kallsyms_lookup_size_offset(func
->old_addr
,
726 &func
->old_size
, NULL
);
728 pr_err("kallsyms size lookup failed for '%s'\n",
733 ret
= kallsyms_lookup_size_offset((unsigned long)func
->new_func
,
734 &func
->new_size
, NULL
);
736 pr_err("kallsyms size lookup failed for '%s' replacement\n",
745 static int klp_init_object(struct klp_patch
*patch
, struct klp_object
*obj
)
747 struct klp_func
*func
;
754 obj
->patched
= false;
757 klp_find_object_module(obj
);
759 name
= klp_is_module(obj
) ? obj
->name
: "vmlinux";
760 ret
= kobject_init_and_add(&obj
->kobj
, &klp_ktype_object
,
761 &patch
->kobj
, "%s", name
);
765 klp_for_each_func(obj
, func
) {
766 ret
= klp_init_func(obj
, func
);
771 if (klp_is_object_loaded(obj
)) {
772 ret
= klp_init_object_loaded(patch
, obj
);
780 klp_free_funcs_limited(obj
, func
);
781 kobject_put(&obj
->kobj
);
785 static int klp_init_patch(struct klp_patch
*patch
)
787 struct klp_object
*obj
;
793 mutex_lock(&klp_mutex
);
795 patch
->enabled
= false;
796 init_completion(&patch
->finish
);
798 ret
= kobject_init_and_add(&patch
->kobj
, &klp_ktype_patch
,
799 klp_root_kobj
, "%s", patch
->mod
->name
);
801 mutex_unlock(&klp_mutex
);
805 klp_for_each_object(patch
, obj
) {
806 ret
= klp_init_object(patch
, obj
);
811 list_add_tail(&patch
->list
, &klp_patches
);
813 mutex_unlock(&klp_mutex
);
818 klp_free_objects_limited(patch
, obj
);
820 mutex_unlock(&klp_mutex
);
822 kobject_put(&patch
->kobj
);
823 wait_for_completion(&patch
->finish
);
829 * klp_unregister_patch() - unregisters a patch
830 * @patch: Disabled patch to be unregistered
832 * Frees the data structures and removes the sysfs interface.
834 * Return: 0 on success, otherwise error
836 int klp_unregister_patch(struct klp_patch
*patch
)
840 mutex_lock(&klp_mutex
);
842 if (!klp_is_patch_registered(patch
)) {
847 if (patch
->enabled
) {
852 klp_free_patch(patch
);
854 mutex_unlock(&klp_mutex
);
856 kobject_put(&patch
->kobj
);
857 wait_for_completion(&patch
->finish
);
861 mutex_unlock(&klp_mutex
);
864 EXPORT_SYMBOL_GPL(klp_unregister_patch
);
867 * klp_register_patch() - registers a patch
868 * @patch: Patch to be registered
870 * Initializes the data structure associated with the patch and
871 * creates the sysfs interface.
873 * There is no need to take the reference on the patch module here. It is done
874 * later when the patch is enabled.
876 * Return: 0 on success, otherwise error
878 int klp_register_patch(struct klp_patch
*patch
)
880 if (!patch
|| !patch
->mod
)
883 if (!is_livepatch_module(patch
->mod
)) {
884 pr_err("module %s is not marked as a livepatch module\n",
889 if (!klp_initialized())
892 if (!klp_have_reliable_stack()) {
893 pr_err("This architecture doesn't have support for the livepatch consistency model.\n");
897 return klp_init_patch(patch
);
899 EXPORT_SYMBOL_GPL(klp_register_patch
);
902 * Remove parts of patches that touch a given kernel module. The list of
903 * patches processed might be limited. When limit is NULL, all patches
906 static void klp_cleanup_module_patches_limited(struct module
*mod
,
907 struct klp_patch
*limit
)
909 struct klp_patch
*patch
;
910 struct klp_object
*obj
;
912 list_for_each_entry(patch
, &klp_patches
, list
) {
916 klp_for_each_object(patch
, obj
) {
917 if (!klp_is_module(obj
) || strcmp(obj
->name
, mod
->name
))
921 * Only unpatch the module if the patch is enabled or
924 if (patch
->enabled
|| patch
== klp_transition_patch
) {
926 if (patch
!= klp_transition_patch
)
927 klp_pre_unpatch_callback(obj
);
929 pr_notice("reverting patch '%s' on unloading module '%s'\n",
930 patch
->mod
->name
, obj
->mod
->name
);
931 klp_unpatch_object(obj
);
933 klp_post_unpatch_callback(obj
);
936 klp_free_object_loaded(obj
);
942 int klp_module_coming(struct module
*mod
)
945 struct klp_patch
*patch
;
946 struct klp_object
*obj
;
948 if (WARN_ON(mod
->state
!= MODULE_STATE_COMING
))
951 mutex_lock(&klp_mutex
);
953 * Each module has to know that klp_module_coming()
954 * has been called. We never know what module will
955 * get patched by a new patch.
957 mod
->klp_alive
= true;
959 list_for_each_entry(patch
, &klp_patches
, list
) {
960 klp_for_each_object(patch
, obj
) {
961 if (!klp_is_module(obj
) || strcmp(obj
->name
, mod
->name
))
966 ret
= klp_init_object_loaded(patch
, obj
);
968 pr_warn("failed to initialize patch '%s' for module '%s' (%d)\n",
969 patch
->mod
->name
, obj
->mod
->name
, ret
);
974 * Only patch the module if the patch is enabled or is
977 if (!patch
->enabled
&& patch
!= klp_transition_patch
)
980 pr_notice("applying patch '%s' to loading module '%s'\n",
981 patch
->mod
->name
, obj
->mod
->name
);
983 ret
= klp_pre_patch_callback(obj
);
985 pr_warn("pre-patch callback failed for object '%s'\n",
990 ret
= klp_patch_object(obj
);
992 pr_warn("failed to apply patch '%s' to module '%s' (%d)\n",
993 patch
->mod
->name
, obj
->mod
->name
, ret
);
995 klp_post_unpatch_callback(obj
);
999 if (patch
!= klp_transition_patch
)
1000 klp_post_patch_callback(obj
);
1006 mutex_unlock(&klp_mutex
);
1012 * If a patch is unsuccessfully applied, return
1013 * error to the module loader.
1015 pr_warn("patch '%s' failed for module '%s', refusing to load module '%s'\n",
1016 patch
->mod
->name
, obj
->mod
->name
, obj
->mod
->name
);
1017 mod
->klp_alive
= false;
1018 klp_cleanup_module_patches_limited(mod
, patch
);
1019 mutex_unlock(&klp_mutex
);
1024 void klp_module_going(struct module
*mod
)
1026 if (WARN_ON(mod
->state
!= MODULE_STATE_GOING
&&
1027 mod
->state
!= MODULE_STATE_COMING
))
1030 mutex_lock(&klp_mutex
);
1032 * Each module has to know that klp_module_going()
1033 * has been called. We never know what module will
1034 * get patched by a new patch.
1036 mod
->klp_alive
= false;
1038 klp_cleanup_module_patches_limited(mod
, NULL
);
1040 mutex_unlock(&klp_mutex
);
1043 static int __init
klp_init(void)
1047 ret
= klp_check_compiler_support();
1049 pr_info("Your compiler is too old; turning off.\n");
1053 klp_root_kobj
= kobject_create_and_add("livepatch", kernel_kobj
);
1060 module_init(klp_init
);