Merge tag 'arm64-fixes' of git://git.kernel.org/pub/scm/linux/kernel/git/arm64/linux
[linux-2.6-block.git] / kernel / module.c
CommitLineData
f71d20e9 1/*
1da177e4 2 Copyright (C) 2002 Richard Henderson
51f3d0f4 3 Copyright (C) 2001 Rusty Russell, 2002, 2010 Rusty Russell IBM.
1da177e4
LT
4
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software
17 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18*/
9984de1a 19#include <linux/export.h>
8a293be0 20#include <linux/extable.h>
1da177e4 21#include <linux/moduleloader.h>
af658dca 22#include <linux/trace_events.h>
1da177e4 23#include <linux/init.h>
ae84e324 24#include <linux/kallsyms.h>
34e1169d 25#include <linux/file.h>
3b5d5c6b 26#include <linux/fs.h>
6d760133 27#include <linux/sysfs.h>
9f158333 28#include <linux/kernel.h>
1da177e4
LT
29#include <linux/slab.h>
30#include <linux/vmalloc.h>
31#include <linux/elf.h>
3b5d5c6b 32#include <linux/proc_fs.h>
2e72d51b 33#include <linux/security.h>
1da177e4
LT
34#include <linux/seq_file.h>
35#include <linux/syscalls.h>
36#include <linux/fcntl.h>
37#include <linux/rcupdate.h>
c59ede7b 38#include <linux/capability.h>
1da177e4
LT
39#include <linux/cpu.h>
40#include <linux/moduleparam.h>
41#include <linux/errno.h>
42#include <linux/err.h>
43#include <linux/vermagic.h>
44#include <linux/notifier.h>
f6a57033 45#include <linux/sched.h>
1da177e4 46#include <linux/device.h>
c988d2b2 47#include <linux/string.h>
97d1f15b 48#include <linux/mutex.h>
d72b3751 49#include <linux/rculist.h>
7c0f6ba6 50#include <linux/uaccess.h>
1da177e4 51#include <asm/cacheflush.h>
563ec5cb 52#include <linux/set_memory.h>
eb8cdec4 53#include <asm/mmu_context.h>
b817f6fe 54#include <linux/license.h>
6d762394 55#include <asm/sections.h>
97e1c18e 56#include <linux/tracepoint.h>
90d595fe 57#include <linux/ftrace.h>
7e545d6e 58#include <linux/livepatch.h>
22a9d645 59#include <linux/async.h>
fbf59bc9 60#include <linux/percpu.h>
4f2294b6 61#include <linux/kmemleak.h>
bf5438fc 62#include <linux/jump_label.h>
84e1c6bb 63#include <linux/pfn.h>
403ed278 64#include <linux/bsearch.h>
9d5059c9 65#include <linux/dynamic_debug.h>
ca86cad7 66#include <linux/audit.h>
2f3238ae 67#include <uapi/linux/module.h>
106a4ee2 68#include "module-internal.h"
1da177e4 69
7ead8b83
LZ
70#define CREATE_TRACE_POINTS
71#include <trace/events/module.h>
72
1da177e4
LT
73#ifndef ARCH_SHF_SMALL
74#define ARCH_SHF_SMALL 0
75#endif
76
84e1c6bb 77/*
78 * Modules' sections will be aligned on page boundaries
79 * to ensure complete separation of code and data, but
0f5bf6d0 80 * only when CONFIG_STRICT_MODULE_RWX=y
84e1c6bb 81 */
0f5bf6d0 82#ifdef CONFIG_STRICT_MODULE_RWX
84e1c6bb 83# define debug_align(X) ALIGN(X, PAGE_SIZE)
84#else
85# define debug_align(X) (X)
86#endif
87
1da177e4
LT
88/* If this is set, the section belongs in the init part of the module */
89#define INIT_OFFSET_MASK (1UL << (BITS_PER_LONG-1))
90
75676500
RR
91/*
92 * Mutex protects:
93 * 1) List of modules (also safely readable with preempt_disable),
94 * 2) module_use links,
95 * 3) module_addr_min/module_addr_max.
e513cc1c 96 * (delete and add uses RCU list operations). */
c6b37801
TA
97DEFINE_MUTEX(module_mutex);
98EXPORT_SYMBOL_GPL(module_mutex);
1da177e4 99static LIST_HEAD(modules);
67fc4e0c 100
6c9692e2 101#ifdef CONFIG_MODULES_TREE_LOOKUP
106a4ee2 102
93c2e105
PZ
103/*
104 * Use a latched RB-tree for __module_address(); this allows us to use
105 * RCU-sched lookups of the address from any context.
106 *
6c9692e2
PZ
107 * This is conditional on PERF_EVENTS || TRACING because those can really hit
108 * __module_address() hard by doing a lot of stack unwinding; potentially from
109 * NMI context.
93c2e105
PZ
110 */
111
112static __always_inline unsigned long __mod_tree_val(struct latch_tree_node *n)
106a4ee2 113{
7523e4dc 114 struct module_layout *layout = container_of(n, struct module_layout, mtn.node);
106a4ee2 115
7523e4dc 116 return (unsigned long)layout->base;
93c2e105
PZ
117}
118
119static __always_inline unsigned long __mod_tree_size(struct latch_tree_node *n)
120{
7523e4dc 121 struct module_layout *layout = container_of(n, struct module_layout, mtn.node);
93c2e105 122
7523e4dc 123 return (unsigned long)layout->size;
93c2e105
PZ
124}
125
126static __always_inline bool
127mod_tree_less(struct latch_tree_node *a, struct latch_tree_node *b)
128{
129 return __mod_tree_val(a) < __mod_tree_val(b);
130}
131
132static __always_inline int
133mod_tree_comp(void *key, struct latch_tree_node *n)
134{
135 unsigned long val = (unsigned long)key;
136 unsigned long start, end;
137
138 start = __mod_tree_val(n);
139 if (val < start)
140 return -1;
141
142 end = start + __mod_tree_size(n);
143 if (val >= end)
144 return 1;
106a4ee2 145
106a4ee2
RR
146 return 0;
147}
148
93c2e105
PZ
149static const struct latch_tree_ops mod_tree_ops = {
150 .less = mod_tree_less,
151 .comp = mod_tree_comp,
152};
153
4f666546
PZ
154static struct mod_tree_root {
155 struct latch_tree_root root;
156 unsigned long addr_min;
157 unsigned long addr_max;
158} mod_tree __cacheline_aligned = {
159 .addr_min = -1UL,
106a4ee2 160};
106a4ee2 161
4f666546
PZ
162#define module_addr_min mod_tree.addr_min
163#define module_addr_max mod_tree.addr_max
164
165static noinline void __mod_tree_insert(struct mod_tree_node *node)
166{
167 latch_tree_insert(&node->node, &mod_tree.root, &mod_tree_ops);
168}
169
170static void __mod_tree_remove(struct mod_tree_node *node)
171{
172 latch_tree_erase(&node->node, &mod_tree.root, &mod_tree_ops);
173}
93c2e105
PZ
174
175/*
176 * These modifications: insert, remove_init and remove; are serialized by the
177 * module_mutex.
178 */
179static void mod_tree_insert(struct module *mod)
180{
7523e4dc
RR
181 mod->core_layout.mtn.mod = mod;
182 mod->init_layout.mtn.mod = mod;
93c2e105 183
7523e4dc
RR
184 __mod_tree_insert(&mod->core_layout.mtn);
185 if (mod->init_layout.size)
186 __mod_tree_insert(&mod->init_layout.mtn);
93c2e105
PZ
187}
188
189static void mod_tree_remove_init(struct module *mod)
190{
7523e4dc
RR
191 if (mod->init_layout.size)
192 __mod_tree_remove(&mod->init_layout.mtn);
93c2e105
PZ
193}
194
195static void mod_tree_remove(struct module *mod)
196{
7523e4dc 197 __mod_tree_remove(&mod->core_layout.mtn);
93c2e105
PZ
198 mod_tree_remove_init(mod);
199}
200
6c9692e2 201static struct module *mod_find(unsigned long addr)
93c2e105
PZ
202{
203 struct latch_tree_node *ltn;
204
4f666546 205 ltn = latch_tree_find((void *)addr, &mod_tree.root, &mod_tree_ops);
93c2e105
PZ
206 if (!ltn)
207 return NULL;
208
209 return container_of(ltn, struct mod_tree_node, node)->mod;
210}
211
6c9692e2
PZ
212#else /* MODULES_TREE_LOOKUP */
213
4f666546
PZ
214static unsigned long module_addr_min = -1UL, module_addr_max = 0;
215
6c9692e2
PZ
216static void mod_tree_insert(struct module *mod) { }
217static void mod_tree_remove_init(struct module *mod) { }
218static void mod_tree_remove(struct module *mod) { }
219
220static struct module *mod_find(unsigned long addr)
221{
222 struct module *mod;
223
224 list_for_each_entry_rcu(mod, &modules, list) {
225 if (within_module(addr, mod))
226 return mod;
227 }
228
229 return NULL;
230}
231
232#endif /* MODULES_TREE_LOOKUP */
233
4f666546
PZ
234/*
235 * Bounds of module text, for speeding up __module_address.
236 * Protected by module_mutex.
237 */
238static void __mod_update_bounds(void *base, unsigned int size)
239{
240 unsigned long min = (unsigned long)base;
241 unsigned long max = min + size;
242
243 if (min < module_addr_min)
244 module_addr_min = min;
245 if (max > module_addr_max)
246 module_addr_max = max;
247}
248
249static void mod_update_bounds(struct module *mod)
250{
7523e4dc
RR
251 __mod_update_bounds(mod->core_layout.base, mod->core_layout.size);
252 if (mod->init_layout.size)
253 __mod_update_bounds(mod->init_layout.base, mod->init_layout.size);
4f666546
PZ
254}
255
67fc4e0c
JW
256#ifdef CONFIG_KGDB_KDB
257struct list_head *kdb_modules = &modules; /* kdb needs the list of modules */
258#endif /* CONFIG_KGDB_KDB */
259
0be964be
PZ
260static void module_assert_mutex(void)
261{
262 lockdep_assert_held(&module_mutex);
263}
264
265static void module_assert_mutex_or_preempt(void)
266{
267#ifdef CONFIG_LOCKDEP
268 if (unlikely(!debug_locks))
269 return;
270
9502514f 271 WARN_ON_ONCE(!rcu_read_lock_sched_held() &&
0be964be
PZ
272 !lockdep_is_held(&module_mutex));
273#endif
274}
275
6727bb9c 276static bool sig_enforce = IS_ENABLED(CONFIG_MODULE_SIG_FORCE);
106a4ee2 277module_param(sig_enforce, bool_enable_only, 0644);
1da177e4 278
fda784e5
BM
279/*
280 * Export sig_enforce kernel cmdline parameter to allow other subsystems rely
281 * on that instead of directly to CONFIG_MODULE_SIG_FORCE config.
282 */
283bool is_module_sig_enforced(void)
284{
285 return sig_enforce;
286}
287EXPORT_SYMBOL(is_module_sig_enforced);
288
19e4529e
SR
289/* Block module loading/unloading? */
290int modules_disabled = 0;
02608bef 291core_param(nomodule, modules_disabled, bint, 0);
19e4529e 292
c9a3ba55
RR
293/* Waiting for a module to finish initializing? */
294static DECLARE_WAIT_QUEUE_HEAD(module_wq);
295
e041c683 296static BLOCKING_NOTIFIER_HEAD(module_notify_list);
1da177e4 297
6da0b565 298int register_module_notifier(struct notifier_block *nb)
1da177e4 299{
e041c683 300 return blocking_notifier_chain_register(&module_notify_list, nb);
1da177e4
LT
301}
302EXPORT_SYMBOL(register_module_notifier);
303
6da0b565 304int unregister_module_notifier(struct notifier_block *nb)
1da177e4 305{
e041c683 306 return blocking_notifier_chain_unregister(&module_notify_list, nb);
1da177e4
LT
307}
308EXPORT_SYMBOL(unregister_module_notifier);
309
71d9f507
MB
310/*
311 * We require a truly strong try_module_get(): 0 means success.
312 * Otherwise an error is returned due to ongoing or failed
313 * initialization etc.
314 */
1da177e4
LT
315static inline int strong_try_module_get(struct module *mod)
316{
0d21b0e3 317 BUG_ON(mod && mod->state == MODULE_STATE_UNFORMED);
1da177e4 318 if (mod && mod->state == MODULE_STATE_COMING)
c9a3ba55
RR
319 return -EBUSY;
320 if (try_module_get(mod))
1da177e4 321 return 0;
c9a3ba55
RR
322 else
323 return -ENOENT;
1da177e4
LT
324}
325
373d4d09
RR
326static inline void add_taint_module(struct module *mod, unsigned flag,
327 enum lockdep_ok lockdep_ok)
fa3ba2e8 328{
373d4d09 329 add_taint(flag, lockdep_ok);
7fd8329b 330 set_bit(flag, &mod->taints);
fa3ba2e8
FM
331}
332
02a3e59a
RD
333/*
334 * A thread that wants to hold a reference to a module only while it
335 * is running can call this to safely exit. nfsd and lockd use this.
1da177e4 336 */
bf262dce 337void __noreturn __module_put_and_exit(struct module *mod, long code)
1da177e4
LT
338{
339 module_put(mod);
340 do_exit(code);
341}
342EXPORT_SYMBOL(__module_put_and_exit);
22a8bdeb 343
1da177e4 344/* Find a module section: 0 means not found. */
49668688 345static unsigned int find_sec(const struct load_info *info, const char *name)
1da177e4
LT
346{
347 unsigned int i;
348
49668688
RR
349 for (i = 1; i < info->hdr->e_shnum; i++) {
350 Elf_Shdr *shdr = &info->sechdrs[i];
1da177e4 351 /* Alloc bit cleared means "ignore it." */
49668688
RR
352 if ((shdr->sh_flags & SHF_ALLOC)
353 && strcmp(info->secstrings + shdr->sh_name, name) == 0)
1da177e4 354 return i;
49668688 355 }
1da177e4
LT
356 return 0;
357}
358
5e458cc0 359/* Find a module section, or NULL. */
49668688 360static void *section_addr(const struct load_info *info, const char *name)
5e458cc0
RR
361{
362 /* Section 0 has sh_addr 0. */
49668688 363 return (void *)info->sechdrs[find_sec(info, name)].sh_addr;
5e458cc0
RR
364}
365
366/* Find a module section, or NULL. Fill in number of "objects" in section. */
49668688 367static void *section_objs(const struct load_info *info,
5e458cc0
RR
368 const char *name,
369 size_t object_size,
370 unsigned int *num)
371{
49668688 372 unsigned int sec = find_sec(info, name);
5e458cc0
RR
373
374 /* Section 0 has sh_addr 0 and sh_size 0. */
49668688
RR
375 *num = info->sechdrs[sec].sh_size / object_size;
376 return (void *)info->sechdrs[sec].sh_addr;
5e458cc0
RR
377}
378
1da177e4
LT
379/* Provided by the linker */
380extern const struct kernel_symbol __start___ksymtab[];
381extern const struct kernel_symbol __stop___ksymtab[];
382extern const struct kernel_symbol __start___ksymtab_gpl[];
383extern const struct kernel_symbol __stop___ksymtab_gpl[];
9f28bb7e
GKH
384extern const struct kernel_symbol __start___ksymtab_gpl_future[];
385extern const struct kernel_symbol __stop___ksymtab_gpl_future[];
71810db2
AB
386extern const s32 __start___kcrctab[];
387extern const s32 __start___kcrctab_gpl[];
388extern const s32 __start___kcrctab_gpl_future[];
f7f5b675
DV
389#ifdef CONFIG_UNUSED_SYMBOLS
390extern const struct kernel_symbol __start___ksymtab_unused[];
391extern const struct kernel_symbol __stop___ksymtab_unused[];
392extern const struct kernel_symbol __start___ksymtab_unused_gpl[];
393extern const struct kernel_symbol __stop___ksymtab_unused_gpl[];
71810db2
AB
394extern const s32 __start___kcrctab_unused[];
395extern const s32 __start___kcrctab_unused_gpl[];
f7f5b675 396#endif
1da177e4
LT
397
398#ifndef CONFIG_MODVERSIONS
399#define symversion(base, idx) NULL
400#else
f83ca9fe 401#define symversion(base, idx) ((base != NULL) ? ((base) + (idx)) : NULL)
1da177e4
LT
402#endif
403
dafd0940
RR
404static bool each_symbol_in_section(const struct symsearch *arr,
405 unsigned int arrsize,
406 struct module *owner,
407 bool (*fn)(const struct symsearch *syms,
408 struct module *owner,
de4d8d53 409 void *data),
dafd0940 410 void *data)
ad9546c9 411{
de4d8d53 412 unsigned int j;
ad9546c9 413
dafd0940 414 for (j = 0; j < arrsize; j++) {
de4d8d53
RR
415 if (fn(&arr[j], owner, data))
416 return true;
f71d20e9 417 }
dafd0940
RR
418
419 return false;
ad9546c9
RR
420}
421
dafd0940 422/* Returns true as soon as fn returns true, otherwise false. */
de4d8d53
RR
423bool each_symbol_section(bool (*fn)(const struct symsearch *arr,
424 struct module *owner,
425 void *data),
426 void *data)
ad9546c9
RR
427{
428 struct module *mod;
44032e63 429 static const struct symsearch arr[] = {
ad9546c9 430 { __start___ksymtab, __stop___ksymtab, __start___kcrctab,
dafd0940 431 NOT_GPL_ONLY, false },
ad9546c9 432 { __start___ksymtab_gpl, __stop___ksymtab_gpl,
dafd0940
RR
433 __start___kcrctab_gpl,
434 GPL_ONLY, false },
ad9546c9 435 { __start___ksymtab_gpl_future, __stop___ksymtab_gpl_future,
dafd0940
RR
436 __start___kcrctab_gpl_future,
437 WILL_BE_GPL_ONLY, false },
f7f5b675 438#ifdef CONFIG_UNUSED_SYMBOLS
ad9546c9 439 { __start___ksymtab_unused, __stop___ksymtab_unused,
dafd0940
RR
440 __start___kcrctab_unused,
441 NOT_GPL_ONLY, true },
ad9546c9 442 { __start___ksymtab_unused_gpl, __stop___ksymtab_unused_gpl,
dafd0940
RR
443 __start___kcrctab_unused_gpl,
444 GPL_ONLY, true },
f7f5b675 445#endif
ad9546c9 446 };
f71d20e9 447
0be964be
PZ
448 module_assert_mutex_or_preempt();
449
dafd0940
RR
450 if (each_symbol_in_section(arr, ARRAY_SIZE(arr), NULL, fn, data))
451 return true;
f71d20e9 452
d72b3751 453 list_for_each_entry_rcu(mod, &modules, list) {
ad9546c9
RR
454 struct symsearch arr[] = {
455 { mod->syms, mod->syms + mod->num_syms, mod->crcs,
dafd0940 456 NOT_GPL_ONLY, false },
ad9546c9 457 { mod->gpl_syms, mod->gpl_syms + mod->num_gpl_syms,
dafd0940
RR
458 mod->gpl_crcs,
459 GPL_ONLY, false },
ad9546c9
RR
460 { mod->gpl_future_syms,
461 mod->gpl_future_syms + mod->num_gpl_future_syms,
dafd0940
RR
462 mod->gpl_future_crcs,
463 WILL_BE_GPL_ONLY, false },
f7f5b675 464#ifdef CONFIG_UNUSED_SYMBOLS
ad9546c9
RR
465 { mod->unused_syms,
466 mod->unused_syms + mod->num_unused_syms,
dafd0940
RR
467 mod->unused_crcs,
468 NOT_GPL_ONLY, true },
ad9546c9
RR
469 { mod->unused_gpl_syms,
470 mod->unused_gpl_syms + mod->num_unused_gpl_syms,
dafd0940
RR
471 mod->unused_gpl_crcs,
472 GPL_ONLY, true },
f7f5b675 473#endif
ad9546c9
RR
474 };
475
0d21b0e3
RR
476 if (mod->state == MODULE_STATE_UNFORMED)
477 continue;
478
dafd0940
RR
479 if (each_symbol_in_section(arr, ARRAY_SIZE(arr), mod, fn, data))
480 return true;
481 }
482 return false;
483}
de4d8d53 484EXPORT_SYMBOL_GPL(each_symbol_section);
dafd0940
RR
485
486struct find_symbol_arg {
487 /* Input */
488 const char *name;
489 bool gplok;
490 bool warn;
491
492 /* Output */
493 struct module *owner;
71810db2 494 const s32 *crc;
414fd31b 495 const struct kernel_symbol *sym;
dafd0940
RR
496};
497
2d25bc55
JY
498static bool check_exported_symbol(const struct symsearch *syms,
499 struct module *owner,
500 unsigned int symnum, void *data)
dafd0940
RR
501{
502 struct find_symbol_arg *fsa = data;
503
dafd0940
RR
504 if (!fsa->gplok) {
505 if (syms->licence == GPL_ONLY)
506 return false;
507 if (syms->licence == WILL_BE_GPL_ONLY && fsa->warn) {
bddb12b3
AM
508 pr_warn("Symbol %s is being used by a non-GPL module, "
509 "which will not be allowed in the future\n",
510 fsa->name);
9f28bb7e 511 }
1da177e4 512 }
ad9546c9 513
f7f5b675 514#ifdef CONFIG_UNUSED_SYMBOLS
dafd0940 515 if (syms->unused && fsa->warn) {
bddb12b3
AM
516 pr_warn("Symbol %s is marked as UNUSED, however this module is "
517 "using it.\n", fsa->name);
518 pr_warn("This symbol will go away in the future.\n");
7b63c3ab
YG
519 pr_warn("Please evaluate if this is the right api to use and "
520 "if it really is, submit a report to the linux kernel "
521 "mailing list together with submitting your code for "
bddb12b3 522 "inclusion.\n");
dafd0940 523 }
f7f5b675 524#endif
dafd0940
RR
525
526 fsa->owner = owner;
527 fsa->crc = symversion(syms->crcs, symnum);
414fd31b 528 fsa->sym = &syms->start[symnum];
dafd0940
RR
529 return true;
530}
531
7290d580
AB
532static unsigned long kernel_symbol_value(const struct kernel_symbol *sym)
533{
534#ifdef CONFIG_HAVE_ARCH_PREL32_RELOCATIONS
535 return (unsigned long)offset_to_ptr(&sym->value_offset);
536#else
537 return sym->value;
538#endif
539}
540
541static const char *kernel_symbol_name(const struct kernel_symbol *sym)
542{
543#ifdef CONFIG_HAVE_ARCH_PREL32_RELOCATIONS
544 return offset_to_ptr(&sym->name_offset);
545#else
546 return sym->name;
547#endif
548}
549
403ed278
AIB
550static int cmp_name(const void *va, const void *vb)
551{
552 const char *a;
553 const struct kernel_symbol *b;
554 a = va; b = vb;
7290d580 555 return strcmp(a, kernel_symbol_name(b));
403ed278
AIB
556}
557
2d25bc55
JY
558static bool find_exported_symbol_in_section(const struct symsearch *syms,
559 struct module *owner,
560 void *data)
de4d8d53
RR
561{
562 struct find_symbol_arg *fsa = data;
403ed278
AIB
563 struct kernel_symbol *sym;
564
565 sym = bsearch(fsa->name, syms->start, syms->stop - syms->start,
566 sizeof(struct kernel_symbol), cmp_name);
567
2d25bc55
JY
568 if (sym != NULL && check_exported_symbol(syms, owner,
569 sym - syms->start, data))
403ed278 570 return true;
de4d8d53 571
de4d8d53
RR
572 return false;
573}
574
2d25bc55 575/* Find an exported symbol and return it, along with, (optional) crc and
75676500 576 * (optional) module which owns it. Needs preempt disabled or module_mutex. */
c6b37801
TA
577const struct kernel_symbol *find_symbol(const char *name,
578 struct module **owner,
71810db2 579 const s32 **crc,
c6b37801
TA
580 bool gplok,
581 bool warn)
dafd0940
RR
582{
583 struct find_symbol_arg fsa;
584
585 fsa.name = name;
586 fsa.gplok = gplok;
587 fsa.warn = warn;
588
2d25bc55 589 if (each_symbol_section(find_exported_symbol_in_section, &fsa)) {
dafd0940
RR
590 if (owner)
591 *owner = fsa.owner;
592 if (crc)
593 *crc = fsa.crc;
414fd31b 594 return fsa.sym;
dafd0940
RR
595 }
596
5e124169 597 pr_debug("Failed to find symbol %s\n", name);
414fd31b 598 return NULL;
1da177e4 599}
c6b37801 600EXPORT_SYMBOL_GPL(find_symbol);
1da177e4 601
fe0d34d2
RR
602/*
603 * Search for module by name: must hold module_mutex (or preempt disabled
604 * for read-only access).
605 */
4f6de4d5 606static struct module *find_module_all(const char *name, size_t len,
0d21b0e3 607 bool even_unformed)
1da177e4
LT
608{
609 struct module *mod;
610
fe0d34d2 611 module_assert_mutex_or_preempt();
0be964be 612
93437353 613 list_for_each_entry_rcu(mod, &modules, list) {
0d21b0e3
RR
614 if (!even_unformed && mod->state == MODULE_STATE_UNFORMED)
615 continue;
4f6de4d5 616 if (strlen(mod->name) == len && !memcmp(mod->name, name, len))
1da177e4
LT
617 return mod;
618 }
619 return NULL;
620}
0d21b0e3
RR
621
622struct module *find_module(const char *name)
623{
fe0d34d2 624 module_assert_mutex();
4f6de4d5 625 return find_module_all(name, strlen(name), false);
0d21b0e3 626}
c6b37801 627EXPORT_SYMBOL_GPL(find_module);
1da177e4
LT
628
629#ifdef CONFIG_SMP
fbf59bc9 630
259354de 631static inline void __percpu *mod_percpu(struct module *mod)
fbf59bc9 632{
259354de
TH
633 return mod->percpu;
634}
fbf59bc9 635
9eb76d77 636static int percpu_modalloc(struct module *mod, struct load_info *info)
259354de 637{
9eb76d77
RR
638 Elf_Shdr *pcpusec = &info->sechdrs[info->index.pcpu];
639 unsigned long align = pcpusec->sh_addralign;
640
641 if (!pcpusec->sh_size)
642 return 0;
643
fbf59bc9 644 if (align > PAGE_SIZE) {
bddb12b3
AM
645 pr_warn("%s: per-cpu alignment %li > %li\n",
646 mod->name, align, PAGE_SIZE);
fbf59bc9
TH
647 align = PAGE_SIZE;
648 }
649
9eb76d77 650 mod->percpu = __alloc_reserved_percpu(pcpusec->sh_size, align);
259354de 651 if (!mod->percpu) {
bddb12b3
AM
652 pr_warn("%s: Could not allocate %lu bytes percpu data\n",
653 mod->name, (unsigned long)pcpusec->sh_size);
259354de
TH
654 return -ENOMEM;
655 }
9eb76d77 656 mod->percpu_size = pcpusec->sh_size;
259354de 657 return 0;
fbf59bc9
TH
658}
659
259354de 660static void percpu_modfree(struct module *mod)
fbf59bc9 661{
259354de 662 free_percpu(mod->percpu);
fbf59bc9
TH
663}
664
49668688 665static unsigned int find_pcpusec(struct load_info *info)
6b588c18 666{
49668688 667 return find_sec(info, ".data..percpu");
6b588c18
TH
668}
669
259354de
TH
670static void percpu_modcopy(struct module *mod,
671 const void *from, unsigned long size)
6b588c18
TH
672{
673 int cpu;
674
675 for_each_possible_cpu(cpu)
259354de 676 memcpy(per_cpu_ptr(mod->percpu, cpu), from, size);
6b588c18
TH
677}
678
383776fa 679bool __is_module_percpu_address(unsigned long addr, unsigned long *can_addr)
10fad5e4
TH
680{
681 struct module *mod;
682 unsigned int cpu;
683
684 preempt_disable();
685
686 list_for_each_entry_rcu(mod, &modules, list) {
0d21b0e3
RR
687 if (mod->state == MODULE_STATE_UNFORMED)
688 continue;
10fad5e4
TH
689 if (!mod->percpu_size)
690 continue;
691 for_each_possible_cpu(cpu) {
692 void *start = per_cpu_ptr(mod->percpu, cpu);
383776fa 693 void *va = (void *)addr;
10fad5e4 694
383776fa 695 if (va >= start && va < start + mod->percpu_size) {
8ce371f9 696 if (can_addr) {
383776fa 697 *can_addr = (unsigned long) (va - start);
8ce371f9
PZ
698 *can_addr += (unsigned long)
699 per_cpu_ptr(mod->percpu,
700 get_boot_cpu_id());
701 }
10fad5e4
TH
702 preempt_enable();
703 return true;
704 }
705 }
706 }
707
708 preempt_enable();
709 return false;
6b588c18
TH
710}
711
383776fa
TG
712/**
713 * is_module_percpu_address - test whether address is from module static percpu
714 * @addr: address to test
715 *
716 * Test whether @addr belongs to module static percpu area.
717 *
718 * RETURNS:
719 * %true if @addr is from module static percpu area
720 */
721bool is_module_percpu_address(unsigned long addr)
722{
723 return __is_module_percpu_address(addr, NULL);
724}
725
1da177e4 726#else /* ... !CONFIG_SMP */
6b588c18 727
259354de 728static inline void __percpu *mod_percpu(struct module *mod)
1da177e4
LT
729{
730 return NULL;
731}
9eb76d77 732static int percpu_modalloc(struct module *mod, struct load_info *info)
259354de 733{
9eb76d77
RR
734 /* UP modules shouldn't have this section: ENOMEM isn't quite right */
735 if (info->sechdrs[info->index.pcpu].sh_size != 0)
736 return -ENOMEM;
737 return 0;
259354de
TH
738}
739static inline void percpu_modfree(struct module *mod)
1da177e4 740{
1da177e4 741}
49668688 742static unsigned int find_pcpusec(struct load_info *info)
1da177e4
LT
743{
744 return 0;
745}
259354de
TH
746static inline void percpu_modcopy(struct module *mod,
747 const void *from, unsigned long size)
1da177e4
LT
748{
749 /* pcpusec should be 0, and size of that section should be 0. */
750 BUG_ON(size != 0);
751}
10fad5e4
TH
752bool is_module_percpu_address(unsigned long addr)
753{
754 return false;
755}
6b588c18 756
383776fa
TG
757bool __is_module_percpu_address(unsigned long addr, unsigned long *can_addr)
758{
759 return false;
760}
761
1da177e4
LT
762#endif /* CONFIG_SMP */
763
c988d2b2
MD
764#define MODINFO_ATTR(field) \
765static void setup_modinfo_##field(struct module *mod, const char *s) \
766{ \
767 mod->field = kstrdup(s, GFP_KERNEL); \
768} \
769static ssize_t show_modinfo_##field(struct module_attribute *mattr, \
4befb026 770 struct module_kobject *mk, char *buffer) \
c988d2b2 771{ \
cc56ded3 772 return scnprintf(buffer, PAGE_SIZE, "%s\n", mk->mod->field); \
c988d2b2
MD
773} \
774static int modinfo_##field##_exists(struct module *mod) \
775{ \
776 return mod->field != NULL; \
777} \
778static void free_modinfo_##field(struct module *mod) \
779{ \
22a8bdeb
DW
780 kfree(mod->field); \
781 mod->field = NULL; \
c988d2b2
MD
782} \
783static struct module_attribute modinfo_##field = { \
7b595756 784 .attr = { .name = __stringify(field), .mode = 0444 }, \
c988d2b2
MD
785 .show = show_modinfo_##field, \
786 .setup = setup_modinfo_##field, \
787 .test = modinfo_##field##_exists, \
788 .free = free_modinfo_##field, \
789};
790
791MODINFO_ATTR(version);
792MODINFO_ATTR(srcversion);
793
e14af7ee
AV
794static char last_unloaded_module[MODULE_NAME_LEN+1];
795
03e88ae1 796#ifdef CONFIG_MODULE_UNLOAD
eb0c5377
SR
797
798EXPORT_TRACEPOINT_SYMBOL(module_get);
799
e513cc1c
MH
800/* MODULE_REF_BASE is the base reference count by kmodule loader. */
801#define MODULE_REF_BASE 1
802
1da177e4 803/* Init the unload section of the module. */
9f85a4bb 804static int module_unload_init(struct module *mod)
1da177e4 805{
e513cc1c
MH
806 /*
807 * Initialize reference counter to MODULE_REF_BASE.
808 * refcnt == 0 means module is going.
809 */
810 atomic_set(&mod->refcnt, MODULE_REF_BASE);
9f85a4bb 811
2c02dfe7
LT
812 INIT_LIST_HEAD(&mod->source_list);
813 INIT_LIST_HEAD(&mod->target_list);
e1783a24 814
1da177e4 815 /* Hold reference count during initialization. */
e513cc1c 816 atomic_inc(&mod->refcnt);
9f85a4bb
RR
817
818 return 0;
1da177e4
LT
819}
820
1da177e4
LT
821/* Does a already use b? */
822static int already_uses(struct module *a, struct module *b)
823{
824 struct module_use *use;
825
2c02dfe7
LT
826 list_for_each_entry(use, &b->source_list, source_list) {
827 if (use->source == a) {
5e124169 828 pr_debug("%s uses %s!\n", a->name, b->name);
1da177e4
LT
829 return 1;
830 }
831 }
5e124169 832 pr_debug("%s does not use %s!\n", a->name, b->name);
1da177e4
LT
833 return 0;
834}
835
2c02dfe7
LT
836/*
837 * Module a uses b
838 * - we add 'a' as a "source", 'b' as a "target" of module use
839 * - the module_use is added to the list of 'b' sources (so
840 * 'b' can walk the list to see who sourced them), and of 'a'
841 * targets (so 'a' can see what modules it targets).
842 */
843static int add_module_usage(struct module *a, struct module *b)
844{
2c02dfe7
LT
845 struct module_use *use;
846
5e124169 847 pr_debug("Allocating new usage for %s.\n", a->name);
2c02dfe7 848 use = kmalloc(sizeof(*use), GFP_ATOMIC);
9ad04574 849 if (!use)
2c02dfe7 850 return -ENOMEM;
2c02dfe7
LT
851
852 use->source = a;
853 use->target = b;
854 list_add(&use->source_list, &b->source_list);
855 list_add(&use->target_list, &a->target_list);
2c02dfe7
LT
856 return 0;
857}
858
75676500 859/* Module a uses b: caller needs module_mutex() */
9bea7f23 860int ref_module(struct module *a, struct module *b)
1da177e4 861{
c8e21ced 862 int err;
270a6c4c 863
9bea7f23 864 if (b == NULL || already_uses(a, b))
218ce735 865 return 0;
218ce735 866
9bea7f23
RR
867 /* If module isn't available, we fail. */
868 err = strong_try_module_get(b);
c9a3ba55 869 if (err)
9bea7f23 870 return err;
1da177e4 871
2c02dfe7
LT
872 err = add_module_usage(a, b);
873 if (err) {
1da177e4 874 module_put(b);
9bea7f23 875 return err;
1da177e4 876 }
9bea7f23 877 return 0;
1da177e4 878}
9bea7f23 879EXPORT_SYMBOL_GPL(ref_module);
1da177e4
LT
880
881/* Clear the unload stuff of the module. */
882static void module_unload_free(struct module *mod)
883{
2c02dfe7 884 struct module_use *use, *tmp;
1da177e4 885
75676500 886 mutex_lock(&module_mutex);
2c02dfe7
LT
887 list_for_each_entry_safe(use, tmp, &mod->target_list, target_list) {
888 struct module *i = use->target;
5e124169 889 pr_debug("%s unusing %s\n", mod->name, i->name);
2c02dfe7
LT
890 module_put(i);
891 list_del(&use->source_list);
892 list_del(&use->target_list);
893 kfree(use);
1da177e4 894 }
75676500 895 mutex_unlock(&module_mutex);
1da177e4
LT
896}
897
898#ifdef CONFIG_MODULE_FORCE_UNLOAD
fb169793 899static inline int try_force_unload(unsigned int flags)
1da177e4
LT
900{
901 int ret = (flags & O_TRUNC);
902 if (ret)
373d4d09 903 add_taint(TAINT_FORCED_RMMOD, LOCKDEP_NOW_UNRELIABLE);
1da177e4
LT
904 return ret;
905}
906#else
fb169793 907static inline int try_force_unload(unsigned int flags)
1da177e4
LT
908{
909 return 0;
910}
911#endif /* CONFIG_MODULE_FORCE_UNLOAD */
912
e513cc1c
MH
913/* Try to release refcount of module, 0 means success. */
914static int try_release_module_ref(struct module *mod)
1da177e4 915{
e513cc1c 916 int ret;
1da177e4 917
e513cc1c
MH
918 /* Try to decrement refcnt which we set at loading */
919 ret = atomic_sub_return(MODULE_REF_BASE, &mod->refcnt);
920 BUG_ON(ret < 0);
921 if (ret)
922 /* Someone can put this right now, recover with checking */
923 ret = atomic_add_unless(&mod->refcnt, MODULE_REF_BASE, 0);
1da177e4 924
e513cc1c
MH
925 return ret;
926}
1da177e4 927
e513cc1c
MH
928static int try_stop_module(struct module *mod, int flags, int *forced)
929{
da39ba5e 930 /* If it's not unused, quit unless we're forcing. */
e513cc1c
MH
931 if (try_release_module_ref(mod) != 0) {
932 *forced = try_force_unload(flags);
933 if (!(*forced))
1da177e4
LT
934 return -EWOULDBLOCK;
935 }
936
937 /* Mark it as dying. */
e513cc1c 938 mod->state = MODULE_STATE_GOING;
1da177e4 939
e513cc1c 940 return 0;
1da177e4
LT
941}
942
d5db139a
RR
943/**
944 * module_refcount - return the refcount or -1 if unloading
945 *
946 * @mod: the module we're checking
947 *
948 * Returns:
949 * -1 if the module is in the process of unloading
950 * otherwise the number of references in the kernel to the module
951 */
952int module_refcount(struct module *mod)
1da177e4 953{
d5db139a 954 return atomic_read(&mod->refcnt) - MODULE_REF_BASE;
1da177e4
LT
955}
956EXPORT_SYMBOL(module_refcount);
957
958/* This exists whether we can unload or not */
959static void free_module(struct module *mod);
960
17da2bd9
HC
961SYSCALL_DEFINE2(delete_module, const char __user *, name_user,
962 unsigned int, flags)
1da177e4
LT
963{
964 struct module *mod;
dfff0a06 965 char name[MODULE_NAME_LEN];
1da177e4
LT
966 int ret, forced = 0;
967
3d43321b 968 if (!capable(CAP_SYS_MODULE) || modules_disabled)
dfff0a06
GKH
969 return -EPERM;
970
971 if (strncpy_from_user(name, name_user, MODULE_NAME_LEN-1) < 0)
972 return -EFAULT;
973 name[MODULE_NAME_LEN-1] = '\0';
974
f6276ac9
RGB
975 audit_log_kern_module(name);
976
3fc1f1e2
TH
977 if (mutex_lock_interruptible(&module_mutex) != 0)
978 return -EINTR;
1da177e4
LT
979
980 mod = find_module(name);
981 if (!mod) {
982 ret = -ENOENT;
983 goto out;
984 }
985
2c02dfe7 986 if (!list_empty(&mod->source_list)) {
1da177e4
LT
987 /* Other modules depend on us: get rid of them first. */
988 ret = -EWOULDBLOCK;
989 goto out;
990 }
991
992 /* Doing init or already dying? */
993 if (mod->state != MODULE_STATE_LIVE) {
3f2b9c9c 994 /* FIXME: if (force), slam module count damn the torpedoes */
5e124169 995 pr_debug("%s already dying\n", mod->name);
1da177e4
LT
996 ret = -EBUSY;
997 goto out;
998 }
999
1000 /* If it has an init func, it must have an exit func to unload */
af49d924 1001 if (mod->init && !mod->exit) {
fb169793 1002 forced = try_force_unload(flags);
1da177e4
LT
1003 if (!forced) {
1004 /* This module can't be removed */
1005 ret = -EBUSY;
1006 goto out;
1007 }
1008 }
1009
1da177e4
LT
1010 /* Stop the machine so refcounts can't move and disable module. */
1011 ret = try_stop_module(mod, flags, &forced);
1012 if (ret != 0)
1013 goto out;
1014
df4b565e 1015 mutex_unlock(&module_mutex);
25985edc 1016 /* Final destruction now no one is using it. */
df4b565e 1017 if (mod->exit != NULL)
1da177e4 1018 mod->exit();
df4b565e
PO
1019 blocking_notifier_call_chain(&module_notify_list,
1020 MODULE_STATE_GOING, mod);
7e545d6e 1021 klp_module_going(mod);
7dcd182b
JY
1022 ftrace_release_mod(mod);
1023
22a9d645 1024 async_synchronize_full();
75676500 1025
e14af7ee 1026 /* Store the name of the last unloaded module for diagnostic purposes */
efa5345e 1027 strlcpy(last_unloaded_module, mod->name, sizeof(last_unloaded_module));
1da177e4 1028
75676500
RR
1029 free_module(mod);
1030 return 0;
1031out:
6389a385 1032 mutex_unlock(&module_mutex);
1da177e4
LT
1033 return ret;
1034}
1035
d1e99d7a 1036static inline void print_unload_info(struct seq_file *m, struct module *mod)
1da177e4
LT
1037{
1038 struct module_use *use;
1039 int printed_something = 0;
1040
d5db139a 1041 seq_printf(m, " %i ", module_refcount(mod));
1da177e4 1042
6da0b565
IA
1043 /*
1044 * Always include a trailing , so userspace can differentiate
1045 * between this and the old multi-field proc format.
1046 */
2c02dfe7 1047 list_for_each_entry(use, &mod->source_list, source_list) {
1da177e4 1048 printed_something = 1;
2c02dfe7 1049 seq_printf(m, "%s,", use->source->name);
1da177e4
LT
1050 }
1051
1da177e4
LT
1052 if (mod->init != NULL && mod->exit == NULL) {
1053 printed_something = 1;
6da0b565 1054 seq_puts(m, "[permanent],");
1da177e4
LT
1055 }
1056
1057 if (!printed_something)
6da0b565 1058 seq_puts(m, "-");
1da177e4
LT
1059}
1060
1061void __symbol_put(const char *symbol)
1062{
1063 struct module *owner;
1da177e4 1064
24da1cbf 1065 preempt_disable();
414fd31b 1066 if (!find_symbol(symbol, &owner, NULL, true, false))
1da177e4
LT
1067 BUG();
1068 module_put(owner);
24da1cbf 1069 preempt_enable();
1da177e4
LT
1070}
1071EXPORT_SYMBOL(__symbol_put);
1072
7d1d16e4 1073/* Note this assumes addr is a function, which it currently always is. */
1da177e4
LT
1074void symbol_put_addr(void *addr)
1075{
5e376613 1076 struct module *modaddr;
7d1d16e4 1077 unsigned long a = (unsigned long)dereference_function_descriptor(addr);
1da177e4 1078
7d1d16e4 1079 if (core_kernel_text(a))
5e376613 1080 return;
1da177e4 1081
275d7d44
PZ
1082 /*
1083 * Even though we hold a reference on the module; we still need to
1084 * disable preemption in order to safely traverse the data structure.
1085 */
1086 preempt_disable();
7d1d16e4 1087 modaddr = __module_text_address(a);
a6e6abd5 1088 BUG_ON(!modaddr);
5e376613 1089 module_put(modaddr);
275d7d44 1090 preempt_enable();
1da177e4
LT
1091}
1092EXPORT_SYMBOL_GPL(symbol_put_addr);
1093
1094static ssize_t show_refcnt(struct module_attribute *mattr,
4befb026 1095 struct module_kobject *mk, char *buffer)
1da177e4 1096{
d5db139a 1097 return sprintf(buffer, "%i\n", module_refcount(mk->mod));
1da177e4
LT
1098}
1099
cca3e707
KS
1100static struct module_attribute modinfo_refcnt =
1101 __ATTR(refcnt, 0444, show_refcnt, NULL);
1da177e4 1102
d53799be
SR
1103void __module_get(struct module *module)
1104{
1105 if (module) {
1106 preempt_disable();
2f35c41f 1107 atomic_inc(&module->refcnt);
d53799be
SR
1108 trace_module_get(module, _RET_IP_);
1109 preempt_enable();
1110 }
1111}
1112EXPORT_SYMBOL(__module_get);
1113
1114bool try_module_get(struct module *module)
1115{
1116 bool ret = true;
1117
1118 if (module) {
1119 preempt_disable();
e513cc1c
MH
1120 /* Note: here, we can fail to get a reference */
1121 if (likely(module_is_live(module) &&
1122 atomic_inc_not_zero(&module->refcnt) != 0))
d53799be 1123 trace_module_get(module, _RET_IP_);
e513cc1c 1124 else
d53799be
SR
1125 ret = false;
1126
1127 preempt_enable();
1128 }
1129 return ret;
1130}
1131EXPORT_SYMBOL(try_module_get);
1132
f6a57033
AV
1133void module_put(struct module *module)
1134{
e513cc1c
MH
1135 int ret;
1136
f6a57033 1137 if (module) {
e1783a24 1138 preempt_disable();
e513cc1c
MH
1139 ret = atomic_dec_if_positive(&module->refcnt);
1140 WARN_ON(ret < 0); /* Failed to put refcount */
ae832d1e 1141 trace_module_put(module, _RET_IP_);
e1783a24 1142 preempt_enable();
f6a57033
AV
1143 }
1144}
1145EXPORT_SYMBOL(module_put);
1146
1da177e4 1147#else /* !CONFIG_MODULE_UNLOAD */
d1e99d7a 1148static inline void print_unload_info(struct seq_file *m, struct module *mod)
1da177e4
LT
1149{
1150 /* We don't know the usage count, or what modules are using. */
6da0b565 1151 seq_puts(m, " - -");
1da177e4
LT
1152}
1153
1154static inline void module_unload_free(struct module *mod)
1155{
1156}
1157
9bea7f23 1158int ref_module(struct module *a, struct module *b)
1da177e4 1159{
9bea7f23 1160 return strong_try_module_get(b);
1da177e4 1161}
9bea7f23 1162EXPORT_SYMBOL_GPL(ref_module);
1da177e4 1163
9f85a4bb 1164static inline int module_unload_init(struct module *mod)
1da177e4 1165{
9f85a4bb 1166 return 0;
1da177e4
LT
1167}
1168#endif /* CONFIG_MODULE_UNLOAD */
1169
53999bf3
KW
1170static size_t module_flags_taint(struct module *mod, char *buf)
1171{
1172 size_t l = 0;
7fd8329b
PM
1173 int i;
1174
1175 for (i = 0; i < TAINT_FLAGS_COUNT; i++) {
1176 if (taint_flags[i].module && test_bit(i, &mod->taints))
5eb7c0d0 1177 buf[l++] = taint_flags[i].c_true;
7fd8329b 1178 }
53999bf3 1179
53999bf3
KW
1180 return l;
1181}
1182
1f71740a 1183static ssize_t show_initstate(struct module_attribute *mattr,
4befb026 1184 struct module_kobject *mk, char *buffer)
1f71740a
KS
1185{
1186 const char *state = "unknown";
1187
4befb026 1188 switch (mk->mod->state) {
1f71740a
KS
1189 case MODULE_STATE_LIVE:
1190 state = "live";
1191 break;
1192 case MODULE_STATE_COMING:
1193 state = "coming";
1194 break;
1195 case MODULE_STATE_GOING:
1196 state = "going";
1197 break;
0d21b0e3
RR
1198 default:
1199 BUG();
1f71740a
KS
1200 }
1201 return sprintf(buffer, "%s\n", state);
1202}
1203
cca3e707
KS
1204static struct module_attribute modinfo_initstate =
1205 __ATTR(initstate, 0444, show_initstate, NULL);
1f71740a 1206
88bfa324
KS
1207static ssize_t store_uevent(struct module_attribute *mattr,
1208 struct module_kobject *mk,
1209 const char *buffer, size_t count)
1210{
df44b479
PR
1211 int rc;
1212
1213 rc = kobject_synth_uevent(&mk->kobj, buffer, count);
1214 return rc ? rc : count;
88bfa324
KS
1215}
1216
cca3e707
KS
1217struct module_attribute module_uevent =
1218 __ATTR(uevent, 0200, NULL, store_uevent);
1219
1220static ssize_t show_coresize(struct module_attribute *mattr,
1221 struct module_kobject *mk, char *buffer)
1222{
7523e4dc 1223 return sprintf(buffer, "%u\n", mk->mod->core_layout.size);
cca3e707
KS
1224}
1225
1226static struct module_attribute modinfo_coresize =
1227 __ATTR(coresize, 0444, show_coresize, NULL);
1228
1229static ssize_t show_initsize(struct module_attribute *mattr,
1230 struct module_kobject *mk, char *buffer)
1231{
7523e4dc 1232 return sprintf(buffer, "%u\n", mk->mod->init_layout.size);
cca3e707
KS
1233}
1234
1235static struct module_attribute modinfo_initsize =
1236 __ATTR(initsize, 0444, show_initsize, NULL);
1237
1238static ssize_t show_taint(struct module_attribute *mattr,
1239 struct module_kobject *mk, char *buffer)
1240{
1241 size_t l;
1242
1243 l = module_flags_taint(mk->mod, buffer);
1244 buffer[l++] = '\n';
1245 return l;
1246}
1247
1248static struct module_attribute modinfo_taint =
1249 __ATTR(taint, 0444, show_taint, NULL);
88bfa324 1250
03e88ae1 1251static struct module_attribute *modinfo_attrs[] = {
cca3e707 1252 &module_uevent,
03e88ae1
GKH
1253 &modinfo_version,
1254 &modinfo_srcversion,
cca3e707
KS
1255 &modinfo_initstate,
1256 &modinfo_coresize,
1257 &modinfo_initsize,
1258 &modinfo_taint,
03e88ae1 1259#ifdef CONFIG_MODULE_UNLOAD
cca3e707 1260 &modinfo_refcnt,
03e88ae1
GKH
1261#endif
1262 NULL,
1263};
1264
1da177e4
LT
1265static const char vermagic[] = VERMAGIC_STRING;
1266
c6e665c8 1267static int try_to_force_load(struct module *mod, const char *reason)
826e4506
LT
1268{
1269#ifdef CONFIG_MODULE_FORCE_LOAD
25ddbb18 1270 if (!test_taint(TAINT_FORCED_MODULE))
bddb12b3 1271 pr_warn("%s: %s: kernel tainted.\n", mod->name, reason);
373d4d09 1272 add_taint_module(mod, TAINT_FORCED_MODULE, LOCKDEP_NOW_UNRELIABLE);
826e4506
LT
1273 return 0;
1274#else
1275 return -ENOEXEC;
1276#endif
1277}
1278
1da177e4 1279#ifdef CONFIG_MODVERSIONS
71810db2
AB
1280
1281static u32 resolve_rel_crc(const s32 *crc)
d4703aef 1282{
71810db2 1283 return *(u32 *)((void *)crc + *crc);
d4703aef
RR
1284}
1285
49019426 1286static int check_version(const struct load_info *info,
1da177e4 1287 const char *symname,
6da0b565 1288 struct module *mod,
71810db2 1289 const s32 *crc)
1da177e4 1290{
49019426
KC
1291 Elf_Shdr *sechdrs = info->sechdrs;
1292 unsigned int versindex = info->index.vers;
1da177e4
LT
1293 unsigned int i, num_versions;
1294 struct modversion_info *versions;
1295
1296 /* Exporting module didn't supply crcs? OK, we're already tainted. */
1297 if (!crc)
1298 return 1;
1299
a5dd6970
RR
1300 /* No versions at all? modprobe --force does this. */
1301 if (versindex == 0)
1302 return try_to_force_load(mod, symname) == 0;
1303
1da177e4
LT
1304 versions = (void *) sechdrs[versindex].sh_addr;
1305 num_versions = sechdrs[versindex].sh_size
1306 / sizeof(struct modversion_info);
1307
1308 for (i = 0; i < num_versions; i++) {
71810db2
AB
1309 u32 crcval;
1310
1da177e4
LT
1311 if (strcmp(versions[i].name, symname) != 0)
1312 continue;
1313
71810db2
AB
1314 if (IS_ENABLED(CONFIG_MODULE_REL_CRCS))
1315 crcval = resolve_rel_crc(crc);
1316 else
1317 crcval = *crc;
1318 if (versions[i].crc == crcval)
1da177e4 1319 return 1;
71810db2
AB
1320 pr_debug("Found checksum %X vs module %lX\n",
1321 crcval, versions[i].crc);
826e4506 1322 goto bad_version;
1da177e4 1323 }
826e4506 1324
faaae2a5 1325 /* Broken toolchain. Warn once, then let it go.. */
3e2e857f 1326 pr_warn_once("%s: no symbol version for %s\n", info->name, symname);
faaae2a5 1327 return 1;
826e4506
LT
1328
1329bad_version:
6da0b565 1330 pr_warn("%s: disagrees about version of symbol %s\n",
3e2e857f 1331 info->name, symname);
826e4506 1332 return 0;
1da177e4
LT
1333}
1334
49019426 1335static inline int check_modstruct_version(const struct load_info *info,
1da177e4
LT
1336 struct module *mod)
1337{
71810db2 1338 const s32 *crc;
1da177e4 1339
926a59b1
PZ
1340 /*
1341 * Since this should be found in kernel (which can't be removed), no
1342 * locking is necessary -- use preempt_disable() to placate lockdep.
1343 */
1344 preempt_disable();
996302c5 1345 if (!find_symbol("module_layout", NULL, &crc, true, false)) {
926a59b1 1346 preempt_enable();
1da177e4 1347 BUG();
926a59b1
PZ
1348 }
1349 preempt_enable();
996302c5 1350 return check_version(info, "module_layout", mod, crc);
1da177e4
LT
1351}
1352
91e37a79
RR
1353/* First part is kernel version, which we ignore if module has crcs. */
1354static inline int same_magic(const char *amagic, const char *bmagic,
1355 bool has_crcs)
1da177e4 1356{
91e37a79
RR
1357 if (has_crcs) {
1358 amagic += strcspn(amagic, " ");
1359 bmagic += strcspn(bmagic, " ");
1360 }
1da177e4
LT
1361 return strcmp(amagic, bmagic) == 0;
1362}
1363#else
49019426 1364static inline int check_version(const struct load_info *info,
1da177e4 1365 const char *symname,
6da0b565 1366 struct module *mod,
71810db2 1367 const s32 *crc)
1da177e4
LT
1368{
1369 return 1;
1370}
1371
49019426 1372static inline int check_modstruct_version(const struct load_info *info,
1da177e4
LT
1373 struct module *mod)
1374{
1375 return 1;
1376}
1377
91e37a79
RR
1378static inline int same_magic(const char *amagic, const char *bmagic,
1379 bool has_crcs)
1da177e4
LT
1380{
1381 return strcmp(amagic, bmagic) == 0;
1382}
1383#endif /* CONFIG_MODVERSIONS */
1384
75676500 1385/* Resolve a symbol for this module. I.e. if we find one, record usage. */
49668688
RR
1386static const struct kernel_symbol *resolve_symbol(struct module *mod,
1387 const struct load_info *info,
414fd31b 1388 const char *name,
9bea7f23 1389 char ownername[])
1da177e4
LT
1390{
1391 struct module *owner;
414fd31b 1392 const struct kernel_symbol *sym;
71810db2 1393 const s32 *crc;
9bea7f23 1394 int err;
1da177e4 1395
d64810f5
PZ
1396 /*
1397 * The module_mutex should not be a heavily contended lock;
1398 * if we get the occasional sleep here, we'll go an extra iteration
1399 * in the wait_event_interruptible(), which is harmless.
1400 */
1401 sched_annotate_sleep();
75676500 1402 mutex_lock(&module_mutex);
414fd31b 1403 sym = find_symbol(name, &owner, &crc,
25ddbb18 1404 !(mod->taints & (1 << TAINT_PROPRIETARY_MODULE)), true);
9bea7f23
RR
1405 if (!sym)
1406 goto unlock;
1407
49019426 1408 if (!check_version(info, name, mod, crc)) {
9bea7f23
RR
1409 sym = ERR_PTR(-EINVAL);
1410 goto getname;
1da177e4 1411 }
9bea7f23
RR
1412
1413 err = ref_module(mod, owner);
1414 if (err) {
1415 sym = ERR_PTR(err);
1416 goto getname;
1417 }
1418
1419getname:
1420 /* We must make copy under the lock if we failed to get ref. */
1421 strncpy(ownername, module_name(owner), MODULE_NAME_LEN);
1422unlock:
75676500 1423 mutex_unlock(&module_mutex);
218ce735 1424 return sym;
1da177e4
LT
1425}
1426
49668688
RR
1427static const struct kernel_symbol *
1428resolve_symbol_wait(struct module *mod,
1429 const struct load_info *info,
1430 const char *name)
9bea7f23
RR
1431{
1432 const struct kernel_symbol *ksym;
49668688 1433 char owner[MODULE_NAME_LEN];
9bea7f23
RR
1434
1435 if (wait_event_interruptible_timeout(module_wq,
49668688
RR
1436 !IS_ERR(ksym = resolve_symbol(mod, info, name, owner))
1437 || PTR_ERR(ksym) != -EBUSY,
9bea7f23 1438 30 * HZ) <= 0) {
bddb12b3
AM
1439 pr_warn("%s: gave up waiting for init of module %s.\n",
1440 mod->name, owner);
9bea7f23
RR
1441 }
1442 return ksym;
1443}
1444
1da177e4
LT
1445/*
1446 * /sys/module/foo/sections stuff
1447 * J. Corbet <corbet@lwn.net>
1448 */
8f6d0378 1449#ifdef CONFIG_SYSFS
10b465aa 1450
8f6d0378 1451#ifdef CONFIG_KALLSYMS
10b465aa
BH
1452static inline bool sect_empty(const Elf_Shdr *sect)
1453{
1454 return !(sect->sh_flags & SHF_ALLOC) || sect->sh_size == 0;
1455}
1456
6da0b565 1457struct module_sect_attr {
a58730c4
RR
1458 struct module_attribute mattr;
1459 char *name;
1460 unsigned long address;
1461};
1462
6da0b565 1463struct module_sect_attrs {
a58730c4
RR
1464 struct attribute_group grp;
1465 unsigned int nsections;
1466 struct module_sect_attr attrs[0];
1467};
1468
1da177e4 1469static ssize_t module_sect_show(struct module_attribute *mattr,
4befb026 1470 struct module_kobject *mk, char *buf)
1da177e4
LT
1471{
1472 struct module_sect_attr *sattr =
1473 container_of(mattr, struct module_sect_attr, mattr);
be71eda5
TR
1474 return sprintf(buf, "0x%px\n", kptr_restrict < 2 ?
1475 (void *)sattr->address : NULL);
1da177e4
LT
1476}
1477
04b1db9f
IN
1478static void free_sect_attrs(struct module_sect_attrs *sect_attrs)
1479{
a58730c4 1480 unsigned int section;
04b1db9f
IN
1481
1482 for (section = 0; section < sect_attrs->nsections; section++)
1483 kfree(sect_attrs->attrs[section].name);
1484 kfree(sect_attrs);
1485}
1486
8f6d0378 1487static void add_sect_attrs(struct module *mod, const struct load_info *info)
1da177e4
LT
1488{
1489 unsigned int nloaded = 0, i, size[2];
1490 struct module_sect_attrs *sect_attrs;
1491 struct module_sect_attr *sattr;
1492 struct attribute **gattr;
22a8bdeb 1493
1da177e4 1494 /* Count loaded sections and allocate structures */
8f6d0378
RR
1495 for (i = 0; i < info->hdr->e_shnum; i++)
1496 if (!sect_empty(&info->sechdrs[i]))
1da177e4
LT
1497 nloaded++;
1498 size[0] = ALIGN(sizeof(*sect_attrs)
1499 + nloaded * sizeof(sect_attrs->attrs[0]),
1500 sizeof(sect_attrs->grp.attrs[0]));
1501 size[1] = (nloaded + 1) * sizeof(sect_attrs->grp.attrs[0]);
04b1db9f
IN
1502 sect_attrs = kzalloc(size[0] + size[1], GFP_KERNEL);
1503 if (sect_attrs == NULL)
1da177e4
LT
1504 return;
1505
1506 /* Setup section attributes. */
1507 sect_attrs->grp.name = "sections";
1508 sect_attrs->grp.attrs = (void *)sect_attrs + size[0];
1509
04b1db9f 1510 sect_attrs->nsections = 0;
1da177e4
LT
1511 sattr = &sect_attrs->attrs[0];
1512 gattr = &sect_attrs->grp.attrs[0];
8f6d0378
RR
1513 for (i = 0; i < info->hdr->e_shnum; i++) {
1514 Elf_Shdr *sec = &info->sechdrs[i];
1515 if (sect_empty(sec))
35dead42 1516 continue;
8f6d0378
RR
1517 sattr->address = sec->sh_addr;
1518 sattr->name = kstrdup(info->secstrings + sec->sh_name,
04b1db9f
IN
1519 GFP_KERNEL);
1520 if (sattr->name == NULL)
1521 goto out;
1522 sect_attrs->nsections++;
361795b1 1523 sysfs_attr_init(&sattr->mattr.attr);
1da177e4
LT
1524 sattr->mattr.show = module_sect_show;
1525 sattr->mattr.store = NULL;
1526 sattr->mattr.attr.name = sattr->name;
277642dc 1527 sattr->mattr.attr.mode = S_IRUSR;
1da177e4
LT
1528 *(gattr++) = &(sattr++)->mattr.attr;
1529 }
1530 *gattr = NULL;
1531
1532 if (sysfs_create_group(&mod->mkobj.kobj, &sect_attrs->grp))
1533 goto out;
1534
1535 mod->sect_attrs = sect_attrs;
1536 return;
1537 out:
04b1db9f 1538 free_sect_attrs(sect_attrs);
1da177e4
LT
1539}
1540
1541static void remove_sect_attrs(struct module *mod)
1542{
1543 if (mod->sect_attrs) {
1544 sysfs_remove_group(&mod->mkobj.kobj,
1545 &mod->sect_attrs->grp);
1546 /* We are positive that no one is using any sect attrs
1547 * at this point. Deallocate immediately. */
04b1db9f 1548 free_sect_attrs(mod->sect_attrs);
1da177e4
LT
1549 mod->sect_attrs = NULL;
1550 }
1551}
1552
6d760133
RM
1553/*
1554 * /sys/module/foo/notes/.section.name gives contents of SHT_NOTE sections.
1555 */
1556
1557struct module_notes_attrs {
1558 struct kobject *dir;
1559 unsigned int notes;
1560 struct bin_attribute attrs[0];
1561};
1562
2c3c8bea 1563static ssize_t module_notes_read(struct file *filp, struct kobject *kobj,
6d760133
RM
1564 struct bin_attribute *bin_attr,
1565 char *buf, loff_t pos, size_t count)
1566{
1567 /*
1568 * The caller checked the pos and count against our size.
1569 */
1570 memcpy(buf, bin_attr->private + pos, count);
1571 return count;
1572}
1573
1574static void free_notes_attrs(struct module_notes_attrs *notes_attrs,
1575 unsigned int i)
1576{
1577 if (notes_attrs->dir) {
1578 while (i-- > 0)
1579 sysfs_remove_bin_file(notes_attrs->dir,
1580 &notes_attrs->attrs[i]);
e9432093 1581 kobject_put(notes_attrs->dir);
6d760133
RM
1582 }
1583 kfree(notes_attrs);
1584}
1585
8f6d0378 1586static void add_notes_attrs(struct module *mod, const struct load_info *info)
6d760133
RM
1587{
1588 unsigned int notes, loaded, i;
1589 struct module_notes_attrs *notes_attrs;
1590 struct bin_attribute *nattr;
1591
ea6bff36
IM
1592 /* failed to create section attributes, so can't create notes */
1593 if (!mod->sect_attrs)
1594 return;
1595
6d760133
RM
1596 /* Count notes sections and allocate structures. */
1597 notes = 0;
8f6d0378
RR
1598 for (i = 0; i < info->hdr->e_shnum; i++)
1599 if (!sect_empty(&info->sechdrs[i]) &&
1600 (info->sechdrs[i].sh_type == SHT_NOTE))
6d760133
RM
1601 ++notes;
1602
1603 if (notes == 0)
1604 return;
1605
acafe7e3 1606 notes_attrs = kzalloc(struct_size(notes_attrs, attrs, notes),
6d760133
RM
1607 GFP_KERNEL);
1608 if (notes_attrs == NULL)
1609 return;
1610
1611 notes_attrs->notes = notes;
1612 nattr = &notes_attrs->attrs[0];
8f6d0378
RR
1613 for (loaded = i = 0; i < info->hdr->e_shnum; ++i) {
1614 if (sect_empty(&info->sechdrs[i]))
6d760133 1615 continue;
8f6d0378 1616 if (info->sechdrs[i].sh_type == SHT_NOTE) {
361795b1 1617 sysfs_bin_attr_init(nattr);
6d760133
RM
1618 nattr->attr.name = mod->sect_attrs->attrs[loaded].name;
1619 nattr->attr.mode = S_IRUGO;
8f6d0378
RR
1620 nattr->size = info->sechdrs[i].sh_size;
1621 nattr->private = (void *) info->sechdrs[i].sh_addr;
6d760133
RM
1622 nattr->read = module_notes_read;
1623 ++nattr;
1624 }
1625 ++loaded;
1626 }
1627
4ff6abff 1628 notes_attrs->dir = kobject_create_and_add("notes", &mod->mkobj.kobj);
6d760133
RM
1629 if (!notes_attrs->dir)
1630 goto out;
1631
1632 for (i = 0; i < notes; ++i)
1633 if (sysfs_create_bin_file(notes_attrs->dir,
1634 &notes_attrs->attrs[i]))
1635 goto out;
1636
1637 mod->notes_attrs = notes_attrs;
1638 return;
1639
1640 out:
1641 free_notes_attrs(notes_attrs, i);
1642}
1643
1644static void remove_notes_attrs(struct module *mod)
1645{
1646 if (mod->notes_attrs)
1647 free_notes_attrs(mod->notes_attrs, mod->notes_attrs->notes);
1648}
1649
1da177e4 1650#else
04b1db9f 1651
8f6d0378
RR
1652static inline void add_sect_attrs(struct module *mod,
1653 const struct load_info *info)
1da177e4
LT
1654{
1655}
1656
1657static inline void remove_sect_attrs(struct module *mod)
1658{
1659}
6d760133 1660
8f6d0378
RR
1661static inline void add_notes_attrs(struct module *mod,
1662 const struct load_info *info)
6d760133
RM
1663{
1664}
1665
1666static inline void remove_notes_attrs(struct module *mod)
1667{
1668}
8f6d0378 1669#endif /* CONFIG_KALLSYMS */
1da177e4 1670
1ba5c08b 1671static void del_usage_links(struct module *mod)
80a3d1bb
RR
1672{
1673#ifdef CONFIG_MODULE_UNLOAD
1674 struct module_use *use;
80a3d1bb 1675
75676500 1676 mutex_lock(&module_mutex);
1ba5c08b
CL
1677 list_for_each_entry(use, &mod->target_list, target_list)
1678 sysfs_remove_link(use->target->holders_dir, mod->name);
75676500 1679 mutex_unlock(&module_mutex);
80a3d1bb
RR
1680#endif
1681}
1682
1ba5c08b 1683static int add_usage_links(struct module *mod)
80a3d1bb 1684{
1ba5c08b 1685 int ret = 0;
80a3d1bb
RR
1686#ifdef CONFIG_MODULE_UNLOAD
1687 struct module_use *use;
1688
75676500 1689 mutex_lock(&module_mutex);
1ba5c08b
CL
1690 list_for_each_entry(use, &mod->target_list, target_list) {
1691 ret = sysfs_create_link(use->target->holders_dir,
1692 &mod->mkobj.kobj, mod->name);
1693 if (ret)
1694 break;
1695 }
75676500 1696 mutex_unlock(&module_mutex);
1ba5c08b
CL
1697 if (ret)
1698 del_usage_links(mod);
80a3d1bb 1699#endif
1ba5c08b 1700 return ret;
80a3d1bb
RR
1701}
1702
6407ebb2 1703static int module_add_modinfo_attrs(struct module *mod)
c988d2b2
MD
1704{
1705 struct module_attribute *attr;
03e88ae1 1706 struct module_attribute *temp_attr;
c988d2b2
MD
1707 int error = 0;
1708 int i;
1709
03e88ae1
GKH
1710 mod->modinfo_attrs = kzalloc((sizeof(struct module_attribute) *
1711 (ARRAY_SIZE(modinfo_attrs) + 1)),
1712 GFP_KERNEL);
1713 if (!mod->modinfo_attrs)
1714 return -ENOMEM;
1715
1716 temp_attr = mod->modinfo_attrs;
c988d2b2 1717 for (i = 0; (attr = modinfo_attrs[i]) && !error; i++) {
c75b590d 1718 if (!attr->test || attr->test(mod)) {
03e88ae1 1719 memcpy(temp_attr, attr, sizeof(*temp_attr));
361795b1 1720 sysfs_attr_init(&temp_attr->attr);
6da0b565
IA
1721 error = sysfs_create_file(&mod->mkobj.kobj,
1722 &temp_attr->attr);
03e88ae1
GKH
1723 ++temp_attr;
1724 }
c988d2b2
MD
1725 }
1726 return error;
1727}
1728
6407ebb2 1729static void module_remove_modinfo_attrs(struct module *mod)
c988d2b2
MD
1730{
1731 struct module_attribute *attr;
1732 int i;
1733
03e88ae1
GKH
1734 for (i = 0; (attr = &mod->modinfo_attrs[i]); i++) {
1735 /* pick a field to test for end of list */
1736 if (!attr->attr.name)
1737 break;
6da0b565 1738 sysfs_remove_file(&mod->mkobj.kobj, &attr->attr);
03e88ae1
GKH
1739 if (attr->free)
1740 attr->free(mod);
c988d2b2 1741 }
03e88ae1 1742 kfree(mod->modinfo_attrs);
c988d2b2 1743}
1da177e4 1744
942e4431
LZ
1745static void mod_kobject_put(struct module *mod)
1746{
1747 DECLARE_COMPLETION_ONSTACK(c);
1748 mod->mkobj.kobj_completion = &c;
1749 kobject_put(&mod->mkobj.kobj);
1750 wait_for_completion(&c);
1751}
1752
6407ebb2 1753static int mod_sysfs_init(struct module *mod)
1da177e4
LT
1754{
1755 int err;
6494a93d 1756 struct kobject *kobj;
1da177e4 1757
823bccfc 1758 if (!module_sysfs_initialized) {
bddb12b3 1759 pr_err("%s: module sysfs not initialized\n", mod->name);
1cc5f714
ES
1760 err = -EINVAL;
1761 goto out;
1762 }
6494a93d
GKH
1763
1764 kobj = kset_find_obj(module_kset, mod->name);
1765 if (kobj) {
bddb12b3 1766 pr_err("%s: module is already loaded\n", mod->name);
6494a93d
GKH
1767 kobject_put(kobj);
1768 err = -EINVAL;
1769 goto out;
1770 }
1771
1da177e4 1772 mod->mkobj.mod = mod;
e17e0f51 1773
ac3c8141
GKH
1774 memset(&mod->mkobj.kobj, 0, sizeof(mod->mkobj.kobj));
1775 mod->mkobj.kobj.kset = module_kset;
1776 err = kobject_init_and_add(&mod->mkobj.kobj, &module_ktype, NULL,
1777 "%s", mod->name);
1778 if (err)
942e4431 1779 mod_kobject_put(mod);
270a6c4c 1780
97c146ef 1781 /* delay uevent until full sysfs population */
270a6c4c
KS
1782out:
1783 return err;
1784}
1785
6407ebb2 1786static int mod_sysfs_setup(struct module *mod,
8f6d0378 1787 const struct load_info *info,
270a6c4c
KS
1788 struct kernel_param *kparam,
1789 unsigned int num_params)
1790{
1791 int err;
1792
80a3d1bb
RR
1793 err = mod_sysfs_init(mod);
1794 if (err)
1795 goto out;
1796
4ff6abff 1797 mod->holders_dir = kobject_create_and_add("holders", &mod->mkobj.kobj);
240936e1
AM
1798 if (!mod->holders_dir) {
1799 err = -ENOMEM;
270a6c4c 1800 goto out_unreg;
240936e1 1801 }
270a6c4c 1802
1da177e4
LT
1803 err = module_param_sysfs_setup(mod, kparam, num_params);
1804 if (err)
270a6c4c 1805 goto out_unreg_holders;
1da177e4 1806
c988d2b2
MD
1807 err = module_add_modinfo_attrs(mod);
1808 if (err)
e17e0f51 1809 goto out_unreg_param;
c988d2b2 1810
1ba5c08b
CL
1811 err = add_usage_links(mod);
1812 if (err)
1813 goto out_unreg_modinfo_attrs;
1814
8f6d0378
RR
1815 add_sect_attrs(mod, info);
1816 add_notes_attrs(mod, info);
80a3d1bb 1817
e17e0f51 1818 kobject_uevent(&mod->mkobj.kobj, KOBJ_ADD);
1da177e4
LT
1819 return 0;
1820
1ba5c08b
CL
1821out_unreg_modinfo_attrs:
1822 module_remove_modinfo_attrs(mod);
e17e0f51
KS
1823out_unreg_param:
1824 module_param_sysfs_remove(mod);
270a6c4c 1825out_unreg_holders:
78a2d906 1826 kobject_put(mod->holders_dir);
270a6c4c 1827out_unreg:
942e4431 1828 mod_kobject_put(mod);
80a3d1bb 1829out:
1da177e4
LT
1830 return err;
1831}
34e4e2fe
DL
1832
1833static void mod_sysfs_fini(struct module *mod)
1834{
8f6d0378
RR
1835 remove_notes_attrs(mod);
1836 remove_sect_attrs(mod);
942e4431 1837 mod_kobject_put(mod);
34e4e2fe
DL
1838}
1839
cf2fde7b
RR
1840static void init_param_lock(struct module *mod)
1841{
1842 mutex_init(&mod->param_lock);
1843}
8f6d0378 1844#else /* !CONFIG_SYSFS */
34e4e2fe 1845
8f6d0378
RR
1846static int mod_sysfs_setup(struct module *mod,
1847 const struct load_info *info,
6407ebb2
RR
1848 struct kernel_param *kparam,
1849 unsigned int num_params)
1850{
1851 return 0;
1852}
1853
34e4e2fe
DL
1854static void mod_sysfs_fini(struct module *mod)
1855{
1856}
1857
36b0360d
RR
1858static void module_remove_modinfo_attrs(struct module *mod)
1859{
1860}
1861
80a3d1bb
RR
1862static void del_usage_links(struct module *mod)
1863{
1864}
1865
cf2fde7b
RR
1866static void init_param_lock(struct module *mod)
1867{
1868}
34e4e2fe 1869#endif /* CONFIG_SYSFS */
1da177e4 1870
36b0360d 1871static void mod_sysfs_teardown(struct module *mod)
1da177e4 1872{
80a3d1bb 1873 del_usage_links(mod);
c988d2b2 1874 module_remove_modinfo_attrs(mod);
1da177e4 1875 module_param_sysfs_remove(mod);
78a2d906
GKH
1876 kobject_put(mod->mkobj.drivers_dir);
1877 kobject_put(mod->holders_dir);
34e4e2fe 1878 mod_sysfs_fini(mod);
1da177e4
LT
1879}
1880
0f5bf6d0 1881#ifdef CONFIG_STRICT_MODULE_RWX
84e1c6bb 1882/*
1883 * LKM RO/NX protection: protect module's text/ro-data
1884 * from modification and any data from execution.
85c898db
RR
1885 *
1886 * General layout of module is:
444d13ff
JY
1887 * [text] [read-only-data] [ro-after-init] [writable data]
1888 * text_size -----^ ^ ^ ^
1889 * ro_size ------------------------| | |
1890 * ro_after_init_size -----------------------------| |
1891 * size -----------------------------------------------------------|
85c898db
RR
1892 *
1893 * These values are always page-aligned (as is base)
84e1c6bb 1894 */
85c898db
RR
1895static void frob_text(const struct module_layout *layout,
1896 int (*set_memory)(unsigned long start, int num_pages))
84e1c6bb 1897{
85c898db
RR
1898 BUG_ON((unsigned long)layout->base & (PAGE_SIZE-1));
1899 BUG_ON((unsigned long)layout->text_size & (PAGE_SIZE-1));
1900 set_memory((unsigned long)layout->base,
1901 layout->text_size >> PAGE_SHIFT);
84e1c6bb 1902}
84e1c6bb 1903
85c898db
RR
1904static void frob_rodata(const struct module_layout *layout,
1905 int (*set_memory)(unsigned long start, int num_pages))
84e1c6bb 1906{
85c898db
RR
1907 BUG_ON((unsigned long)layout->base & (PAGE_SIZE-1));
1908 BUG_ON((unsigned long)layout->text_size & (PAGE_SIZE-1));
1909 BUG_ON((unsigned long)layout->ro_size & (PAGE_SIZE-1));
1910 set_memory((unsigned long)layout->base + layout->text_size,
1911 (layout->ro_size - layout->text_size) >> PAGE_SHIFT);
84e1c6bb 1912}
1913
444d13ff
JY
1914static void frob_ro_after_init(const struct module_layout *layout,
1915 int (*set_memory)(unsigned long start, int num_pages))
1916{
1917 BUG_ON((unsigned long)layout->base & (PAGE_SIZE-1));
1918 BUG_ON((unsigned long)layout->ro_size & (PAGE_SIZE-1));
1919 BUG_ON((unsigned long)layout->ro_after_init_size & (PAGE_SIZE-1));
1920 set_memory((unsigned long)layout->base + layout->ro_size,
1921 (layout->ro_after_init_size - layout->ro_size) >> PAGE_SHIFT);
1922}
1923
85c898db
RR
1924static void frob_writable_data(const struct module_layout *layout,
1925 int (*set_memory)(unsigned long start, int num_pages))
84e1c6bb 1926{
85c898db 1927 BUG_ON((unsigned long)layout->base & (PAGE_SIZE-1));
444d13ff 1928 BUG_ON((unsigned long)layout->ro_after_init_size & (PAGE_SIZE-1));
85c898db 1929 BUG_ON((unsigned long)layout->size & (PAGE_SIZE-1));
444d13ff
JY
1930 set_memory((unsigned long)layout->base + layout->ro_after_init_size,
1931 (layout->size - layout->ro_after_init_size) >> PAGE_SHIFT);
84e1c6bb 1932}
84e1c6bb 1933
85c898db
RR
1934/* livepatching wants to disable read-only so it can frob module. */
1935void module_disable_ro(const struct module *mod)
20ef10c1 1936{
39290b38
AT
1937 if (!rodata_enabled)
1938 return;
1939
85c898db
RR
1940 frob_text(&mod->core_layout, set_memory_rw);
1941 frob_rodata(&mod->core_layout, set_memory_rw);
444d13ff 1942 frob_ro_after_init(&mod->core_layout, set_memory_rw);
85c898db
RR
1943 frob_text(&mod->init_layout, set_memory_rw);
1944 frob_rodata(&mod->init_layout, set_memory_rw);
20ef10c1 1945}
84e1c6bb 1946
444d13ff 1947void module_enable_ro(const struct module *mod, bool after_init)
01526ed0 1948{
39290b38
AT
1949 if (!rodata_enabled)
1950 return;
1951
85c898db
RR
1952 frob_text(&mod->core_layout, set_memory_ro);
1953 frob_rodata(&mod->core_layout, set_memory_ro);
1954 frob_text(&mod->init_layout, set_memory_ro);
1955 frob_rodata(&mod->init_layout, set_memory_ro);
444d13ff
JY
1956
1957 if (after_init)
1958 frob_ro_after_init(&mod->core_layout, set_memory_ro);
84e1c6bb 1959}
1960
85c898db 1961static void module_enable_nx(const struct module *mod)
01526ed0 1962{
85c898db 1963 frob_rodata(&mod->core_layout, set_memory_nx);
444d13ff 1964 frob_ro_after_init(&mod->core_layout, set_memory_nx);
85c898db
RR
1965 frob_writable_data(&mod->core_layout, set_memory_nx);
1966 frob_rodata(&mod->init_layout, set_memory_nx);
1967 frob_writable_data(&mod->init_layout, set_memory_nx);
01526ed0
JG
1968}
1969
85c898db 1970static void module_disable_nx(const struct module *mod)
01526ed0 1971{
85c898db 1972 frob_rodata(&mod->core_layout, set_memory_x);
444d13ff 1973 frob_ro_after_init(&mod->core_layout, set_memory_x);
85c898db
RR
1974 frob_writable_data(&mod->core_layout, set_memory_x);
1975 frob_rodata(&mod->init_layout, set_memory_x);
1976 frob_writable_data(&mod->init_layout, set_memory_x);
84e1c6bb 1977}
1978
1979/* Iterate through all modules and set each module's text as RW */
5d05c708 1980void set_all_modules_text_rw(void)
84e1c6bb 1981{
1982 struct module *mod;
1983
39290b38
AT
1984 if (!rodata_enabled)
1985 return;
1986
84e1c6bb 1987 mutex_lock(&module_mutex);
1988 list_for_each_entry_rcu(mod, &modules, list) {
0d21b0e3
RR
1989 if (mod->state == MODULE_STATE_UNFORMED)
1990 continue;
85c898db
RR
1991
1992 frob_text(&mod->core_layout, set_memory_rw);
1993 frob_text(&mod->init_layout, set_memory_rw);
84e1c6bb 1994 }
1995 mutex_unlock(&module_mutex);
1996}
1997
1998/* Iterate through all modules and set each module's text as RO */
5d05c708 1999void set_all_modules_text_ro(void)
84e1c6bb 2000{
2001 struct module *mod;
2002
39290b38
AT
2003 if (!rodata_enabled)
2004 return;
2005
84e1c6bb 2006 mutex_lock(&module_mutex);
2007 list_for_each_entry_rcu(mod, &modules, list) {
905dd707
AT
2008 /*
2009 * Ignore going modules since it's possible that ro
2010 * protection has already been disabled, otherwise we'll
2011 * run into protection faults at module deallocation.
2012 */
2013 if (mod->state == MODULE_STATE_UNFORMED ||
2014 mod->state == MODULE_STATE_GOING)
0d21b0e3 2015 continue;
85c898db
RR
2016
2017 frob_text(&mod->core_layout, set_memory_ro);
2018 frob_text(&mod->init_layout, set_memory_ro);
84e1c6bb 2019 }
2020 mutex_unlock(&module_mutex);
2021}
85c898db
RR
2022
2023static void disable_ro_nx(const struct module_layout *layout)
2024{
39290b38
AT
2025 if (rodata_enabled) {
2026 frob_text(layout, set_memory_rw);
2027 frob_rodata(layout, set_memory_rw);
2028 frob_ro_after_init(layout, set_memory_rw);
2029 }
85c898db 2030 frob_rodata(layout, set_memory_x);
444d13ff 2031 frob_ro_after_init(layout, set_memory_x);
85c898db
RR
2032 frob_writable_data(layout, set_memory_x);
2033}
2034
84e1c6bb 2035#else
85c898db
RR
2036static void disable_ro_nx(const struct module_layout *layout) { }
2037static void module_enable_nx(const struct module *mod) { }
2038static void module_disable_nx(const struct module *mod) { }
84e1c6bb 2039#endif
2040
1ce15ef4
JY
2041#ifdef CONFIG_LIVEPATCH
2042/*
2043 * Persist Elf information about a module. Copy the Elf header,
2044 * section header table, section string table, and symtab section
2045 * index from info to mod->klp_info.
2046 */
2047static int copy_module_elf(struct module *mod, struct load_info *info)
2048{
2049 unsigned int size, symndx;
2050 int ret;
2051
2052 size = sizeof(*mod->klp_info);
2053 mod->klp_info = kmalloc(size, GFP_KERNEL);
2054 if (mod->klp_info == NULL)
2055 return -ENOMEM;
2056
2057 /* Elf header */
2058 size = sizeof(mod->klp_info->hdr);
2059 memcpy(&mod->klp_info->hdr, info->hdr, size);
2060
2061 /* Elf section header table */
2062 size = sizeof(*info->sechdrs) * info->hdr->e_shnum;
9be936f4 2063 mod->klp_info->sechdrs = kmemdup(info->sechdrs, size, GFP_KERNEL);
1ce15ef4
JY
2064 if (mod->klp_info->sechdrs == NULL) {
2065 ret = -ENOMEM;
2066 goto free_info;
2067 }
1ce15ef4
JY
2068
2069 /* Elf section name string table */
2070 size = info->sechdrs[info->hdr->e_shstrndx].sh_size;
9be936f4 2071 mod->klp_info->secstrings = kmemdup(info->secstrings, size, GFP_KERNEL);
1ce15ef4
JY
2072 if (mod->klp_info->secstrings == NULL) {
2073 ret = -ENOMEM;
2074 goto free_sechdrs;
2075 }
1ce15ef4
JY
2076
2077 /* Elf symbol section index */
2078 symndx = info->index.sym;
2079 mod->klp_info->symndx = symndx;
2080
2081 /*
2082 * For livepatch modules, core_kallsyms.symtab is a complete
2083 * copy of the original symbol table. Adjust sh_addr to point
2084 * to core_kallsyms.symtab since the copy of the symtab in module
2085 * init memory is freed at the end of do_init_module().
2086 */
2087 mod->klp_info->sechdrs[symndx].sh_addr = \
2088 (unsigned long) mod->core_kallsyms.symtab;
2089
2090 return 0;
2091
2092free_sechdrs:
2093 kfree(mod->klp_info->sechdrs);
2094free_info:
2095 kfree(mod->klp_info);
2096 return ret;
2097}
2098
2099static void free_module_elf(struct module *mod)
2100{
2101 kfree(mod->klp_info->sechdrs);
2102 kfree(mod->klp_info->secstrings);
2103 kfree(mod->klp_info);
2104}
2105#else /* !CONFIG_LIVEPATCH */
2106static int copy_module_elf(struct module *mod, struct load_info *info)
2107{
2108 return 0;
2109}
2110
2111static void free_module_elf(struct module *mod)
2112{
2113}
2114#endif /* CONFIG_LIVEPATCH */
2115
be1f221c 2116void __weak module_memfree(void *module_region)
74e08fcf
JB
2117{
2118 vfree(module_region);
2119}
2120
2121void __weak module_arch_cleanup(struct module *mod)
2122{
2123}
2124
d453cded
RR
2125void __weak module_arch_freeing_init(struct module *mod)
2126{
2127}
2128
75676500 2129/* Free a module, remove from lists, etc. */
1da177e4
LT
2130static void free_module(struct module *mod)
2131{
7ead8b83
LZ
2132 trace_module_free(mod);
2133
36b0360d 2134 mod_sysfs_teardown(mod);
1da177e4 2135
944a1fa0
RR
2136 /* We leave it in list to prevent duplicate loads, but make sure
2137 * that noone uses it while it's being deconstructed. */
d3051b48 2138 mutex_lock(&module_mutex);
944a1fa0 2139 mod->state = MODULE_STATE_UNFORMED;
d3051b48 2140 mutex_unlock(&module_mutex);
944a1fa0 2141
b82bab4b
JB
2142 /* Remove dynamic debug info */
2143 ddebug_remove_module(mod->name);
2144
1da177e4
LT
2145 /* Arch-specific cleanup. */
2146 module_arch_cleanup(mod);
2147
2148 /* Module unload stuff */
2149 module_unload_free(mod);
2150
e180a6b7
RR
2151 /* Free any allocated parameters. */
2152 destroy_params(mod->kp, mod->num_kp);
2153
1ce15ef4
JY
2154 if (is_livepatch_module(mod))
2155 free_module_elf(mod);
2156
944a1fa0
RR
2157 /* Now we can delete it from the lists */
2158 mutex_lock(&module_mutex);
461e34ae
MH
2159 /* Unlink carefully: kallsyms could be walking list. */
2160 list_del_rcu(&mod->list);
93c2e105 2161 mod_tree_remove(mod);
0286b5ea 2162 /* Remove this module from bug list, this uses list_del_rcu */
461e34ae 2163 module_bug_cleanup(mod);
0be964be 2164 /* Wait for RCU-sched synchronizing before releasing mod->list and buglist. */
cb2f5536 2165 synchronize_rcu();
944a1fa0
RR
2166 mutex_unlock(&module_mutex);
2167
85c898db
RR
2168 /* This may be empty, but that's OK */
2169 disable_ro_nx(&mod->init_layout);
d453cded 2170 module_arch_freeing_init(mod);
7523e4dc 2171 module_memfree(mod->init_layout.base);
1da177e4 2172 kfree(mod->args);
259354de 2173 percpu_modfree(mod);
9f85a4bb 2174
35a9393c 2175 /* Free lock-classes; relies on the preceding sync_rcu(). */
7523e4dc 2176 lockdep_free_key_range(mod->core_layout.base, mod->core_layout.size);
fbb9ce95 2177
1da177e4 2178 /* Finally, free the core (containing the module structure) */
85c898db 2179 disable_ro_nx(&mod->core_layout);
7523e4dc 2180 module_memfree(mod->core_layout.base);
1da177e4
LT
2181}
2182
2183void *__symbol_get(const char *symbol)
2184{
2185 struct module *owner;
414fd31b 2186 const struct kernel_symbol *sym;
1da177e4 2187
24da1cbf 2188 preempt_disable();
414fd31b
TA
2189 sym = find_symbol(symbol, &owner, NULL, true, true);
2190 if (sym && strong_try_module_get(owner))
2191 sym = NULL;
24da1cbf 2192 preempt_enable();
1da177e4 2193
7290d580 2194 return sym ? (void *)kernel_symbol_value(sym) : NULL;
1da177e4
LT
2195}
2196EXPORT_SYMBOL_GPL(__symbol_get);
2197
eea8b54d
AN
2198/*
2199 * Ensure that an exported symbol [global namespace] does not already exist
02a3e59a 2200 * in the kernel or in some other module's exported symbol table.
be593f4c
RR
2201 *
2202 * You must hold the module_mutex.
eea8b54d 2203 */
2d25bc55 2204static int verify_exported_symbols(struct module *mod)
eea8b54d 2205{
b211104d 2206 unsigned int i;
eea8b54d 2207 struct module *owner;
b211104d
RR
2208 const struct kernel_symbol *s;
2209 struct {
2210 const struct kernel_symbol *sym;
2211 unsigned int num;
2212 } arr[] = {
2213 { mod->syms, mod->num_syms },
2214 { mod->gpl_syms, mod->num_gpl_syms },
2215 { mod->gpl_future_syms, mod->num_gpl_future_syms },
f7f5b675 2216#ifdef CONFIG_UNUSED_SYMBOLS
b211104d
RR
2217 { mod->unused_syms, mod->num_unused_syms },
2218 { mod->unused_gpl_syms, mod->num_unused_gpl_syms },
f7f5b675 2219#endif
b211104d 2220 };
eea8b54d 2221
b211104d
RR
2222 for (i = 0; i < ARRAY_SIZE(arr); i++) {
2223 for (s = arr[i].sym; s < arr[i].sym + arr[i].num; s++) {
7290d580
AB
2224 if (find_symbol(kernel_symbol_name(s), &owner, NULL,
2225 true, false)) {
bddb12b3 2226 pr_err("%s: exports duplicate symbol %s"
b211104d 2227 " (owned by %s)\n",
7290d580
AB
2228 mod->name, kernel_symbol_name(s),
2229 module_name(owner));
b211104d
RR
2230 return -ENOEXEC;
2231 }
eea8b54d 2232 }
b211104d
RR
2233 }
2234 return 0;
eea8b54d
AN
2235}
2236
9a4b9708 2237/* Change all symbols so that st_value encodes the pointer directly. */
49668688
RR
2238static int simplify_symbols(struct module *mod, const struct load_info *info)
2239{
2240 Elf_Shdr *symsec = &info->sechdrs[info->index.sym];
2241 Elf_Sym *sym = (void *)symsec->sh_addr;
1da177e4 2242 unsigned long secbase;
49668688 2243 unsigned int i;
1da177e4 2244 int ret = 0;
414fd31b 2245 const struct kernel_symbol *ksym;
1da177e4 2246
49668688
RR
2247 for (i = 1; i < symsec->sh_size / sizeof(Elf_Sym); i++) {
2248 const char *name = info->strtab + sym[i].st_name;
2249
1da177e4
LT
2250 switch (sym[i].st_shndx) {
2251 case SHN_COMMON:
80375980
JM
2252 /* Ignore common symbols */
2253 if (!strncmp(name, "__gnu_lto", 9))
2254 break;
2255
1da177e4
LT
2256 /* We compiled with -fno-common. These are not
2257 supposed to happen. */
5e124169 2258 pr_debug("Common symbol: %s\n", name);
6da0b565 2259 pr_warn("%s: please compile with -fno-common\n",
1da177e4
LT
2260 mod->name);
2261 ret = -ENOEXEC;
2262 break;
2263
2264 case SHN_ABS:
2265 /* Don't need to do anything */
5e124169 2266 pr_debug("Absolute symbol: 0x%08lx\n",
1da177e4
LT
2267 (long)sym[i].st_value);
2268 break;
2269
1ce15ef4
JY
2270 case SHN_LIVEPATCH:
2271 /* Livepatch symbols are resolved by livepatch */
2272 break;
2273
1da177e4 2274 case SHN_UNDEF:
49668688 2275 ksym = resolve_symbol_wait(mod, info, name);
1da177e4 2276 /* Ok if resolved. */
9bea7f23 2277 if (ksym && !IS_ERR(ksym)) {
7290d580 2278 sym[i].st_value = kernel_symbol_value(ksym);
1da177e4 2279 break;
414fd31b
TA
2280 }
2281
1da177e4 2282 /* Ok if weak. */
9bea7f23 2283 if (!ksym && ELF_ST_BIND(sym[i].st_info) == STB_WEAK)
1da177e4
LT
2284 break;
2285
9bea7f23 2286 ret = PTR_ERR(ksym) ?: -ENOENT;
62267e0e
JD
2287 pr_warn("%s: Unknown symbol %s (err %d)\n",
2288 mod->name, name, ret);
1da177e4
LT
2289 break;
2290
2291 default:
2292 /* Divert to percpu allocation if a percpu var. */
49668688 2293 if (sym[i].st_shndx == info->index.pcpu)
259354de 2294 secbase = (unsigned long)mod_percpu(mod);
1da177e4 2295 else
49668688 2296 secbase = info->sechdrs[sym[i].st_shndx].sh_addr;
1da177e4
LT
2297 sym[i].st_value += secbase;
2298 break;
2299 }
2300 }
2301
2302 return ret;
2303}
2304
49668688 2305static int apply_relocations(struct module *mod, const struct load_info *info)
22e268eb
RR
2306{
2307 unsigned int i;
2308 int err = 0;
2309
2310 /* Now do relocations. */
49668688
RR
2311 for (i = 1; i < info->hdr->e_shnum; i++) {
2312 unsigned int infosec = info->sechdrs[i].sh_info;
22e268eb
RR
2313
2314 /* Not a valid relocation section? */
49668688 2315 if (infosec >= info->hdr->e_shnum)
22e268eb
RR
2316 continue;
2317
2318 /* Don't bother with non-allocated sections */
49668688 2319 if (!(info->sechdrs[infosec].sh_flags & SHF_ALLOC))
22e268eb
RR
2320 continue;
2321
1ce15ef4
JY
2322 /* Livepatch relocation sections are applied by livepatch */
2323 if (info->sechdrs[i].sh_flags & SHF_RELA_LIVEPATCH)
2324 continue;
2325
49668688
RR
2326 if (info->sechdrs[i].sh_type == SHT_REL)
2327 err = apply_relocate(info->sechdrs, info->strtab,
2328 info->index.sym, i, mod);
2329 else if (info->sechdrs[i].sh_type == SHT_RELA)
2330 err = apply_relocate_add(info->sechdrs, info->strtab,
2331 info->index.sym, i, mod);
22e268eb
RR
2332 if (err < 0)
2333 break;
2334 }
2335 return err;
2336}
2337
088af9a6
HD
2338/* Additional bytes needed by arch in front of individual sections */
2339unsigned int __weak arch_mod_section_prepend(struct module *mod,
2340 unsigned int section)
2341{
2342 /* default implementation just returns zero */
2343 return 0;
2344}
2345
1da177e4 2346/* Update size with this section: return offset. */
088af9a6
HD
2347static long get_offset(struct module *mod, unsigned int *size,
2348 Elf_Shdr *sechdr, unsigned int section)
1da177e4
LT
2349{
2350 long ret;
2351
088af9a6 2352 *size += arch_mod_section_prepend(mod, section);
1da177e4
LT
2353 ret = ALIGN(*size, sechdr->sh_addralign ?: 1);
2354 *size = ret + sechdr->sh_size;
2355 return ret;
2356}
2357
2358/* Lay out the SHF_ALLOC sections in a way not dissimilar to how ld
2359 might -- code, read-only data, read-write data, small data. Tally
2360 sizes, and place the offsets into sh_entsize fields: high bit means it
2361 belongs in init. */
49668688 2362static void layout_sections(struct module *mod, struct load_info *info)
1da177e4
LT
2363{
2364 static unsigned long const masks[][2] = {
2365 /* NOTE: all executable code must be the first section
2366 * in this array; otherwise modify the text_size
2367 * finder in the two loops below */
2368 { SHF_EXECINSTR | SHF_ALLOC, ARCH_SHF_SMALL },
2369 { SHF_ALLOC, SHF_WRITE | ARCH_SHF_SMALL },
444d13ff 2370 { SHF_RO_AFTER_INIT | SHF_ALLOC, ARCH_SHF_SMALL },
1da177e4
LT
2371 { SHF_WRITE | SHF_ALLOC, ARCH_SHF_SMALL },
2372 { ARCH_SHF_SMALL | SHF_ALLOC, 0 }
2373 };
2374 unsigned int m, i;
2375
49668688
RR
2376 for (i = 0; i < info->hdr->e_shnum; i++)
2377 info->sechdrs[i].sh_entsize = ~0UL;
1da177e4 2378
5e124169 2379 pr_debug("Core section allocation order:\n");
1da177e4 2380 for (m = 0; m < ARRAY_SIZE(masks); ++m) {
49668688
RR
2381 for (i = 0; i < info->hdr->e_shnum; ++i) {
2382 Elf_Shdr *s = &info->sechdrs[i];
2383 const char *sname = info->secstrings + s->sh_name;
1da177e4
LT
2384
2385 if ((s->sh_flags & masks[m][0]) != masks[m][0]
2386 || (s->sh_flags & masks[m][1])
2387 || s->sh_entsize != ~0UL
49668688 2388 || strstarts(sname, ".init"))
1da177e4 2389 continue;
7523e4dc 2390 s->sh_entsize = get_offset(mod, &mod->core_layout.size, s, i);
5e124169 2391 pr_debug("\t%s\n", sname);
1da177e4 2392 }
84e1c6bb 2393 switch (m) {
2394 case 0: /* executable */
7523e4dc
RR
2395 mod->core_layout.size = debug_align(mod->core_layout.size);
2396 mod->core_layout.text_size = mod->core_layout.size;
84e1c6bb 2397 break;
2398 case 1: /* RO: text and ro-data */
7523e4dc
RR
2399 mod->core_layout.size = debug_align(mod->core_layout.size);
2400 mod->core_layout.ro_size = mod->core_layout.size;
84e1c6bb 2401 break;
444d13ff
JY
2402 case 2: /* RO after init */
2403 mod->core_layout.size = debug_align(mod->core_layout.size);
2404 mod->core_layout.ro_after_init_size = mod->core_layout.size;
2405 break;
2406 case 4: /* whole core */
7523e4dc 2407 mod->core_layout.size = debug_align(mod->core_layout.size);
84e1c6bb 2408 break;
2409 }
1da177e4
LT
2410 }
2411
5e124169 2412 pr_debug("Init section allocation order:\n");
1da177e4 2413 for (m = 0; m < ARRAY_SIZE(masks); ++m) {
49668688
RR
2414 for (i = 0; i < info->hdr->e_shnum; ++i) {
2415 Elf_Shdr *s = &info->sechdrs[i];
2416 const char *sname = info->secstrings + s->sh_name;
1da177e4
LT
2417
2418 if ((s->sh_flags & masks[m][0]) != masks[m][0]
2419 || (s->sh_flags & masks[m][1])
2420 || s->sh_entsize != ~0UL
49668688 2421 || !strstarts(sname, ".init"))
1da177e4 2422 continue;
7523e4dc 2423 s->sh_entsize = (get_offset(mod, &mod->init_layout.size, s, i)
1da177e4 2424 | INIT_OFFSET_MASK);
5e124169 2425 pr_debug("\t%s\n", sname);
1da177e4 2426 }
84e1c6bb 2427 switch (m) {
2428 case 0: /* executable */
7523e4dc
RR
2429 mod->init_layout.size = debug_align(mod->init_layout.size);
2430 mod->init_layout.text_size = mod->init_layout.size;
84e1c6bb 2431 break;
2432 case 1: /* RO: text and ro-data */
7523e4dc
RR
2433 mod->init_layout.size = debug_align(mod->init_layout.size);
2434 mod->init_layout.ro_size = mod->init_layout.size;
84e1c6bb 2435 break;
444d13ff
JY
2436 case 2:
2437 /*
2438 * RO after init doesn't apply to init_layout (only
2439 * core_layout), so it just takes the value of ro_size.
2440 */
2441 mod->init_layout.ro_after_init_size = mod->init_layout.ro_size;
2442 break;
2443 case 4: /* whole init */
7523e4dc 2444 mod->init_layout.size = debug_align(mod->init_layout.size);
84e1c6bb 2445 break;
2446 }
1da177e4
LT
2447 }
2448}
2449
1da177e4
LT
2450static void set_license(struct module *mod, const char *license)
2451{
2452 if (!license)
2453 license = "unspecified";
2454
fa3ba2e8 2455 if (!license_is_gpl_compatible(license)) {
25ddbb18 2456 if (!test_taint(TAINT_PROPRIETARY_MODULE))
bddb12b3
AM
2457 pr_warn("%s: module license '%s' taints kernel.\n",
2458 mod->name, license);
373d4d09
RR
2459 add_taint_module(mod, TAINT_PROPRIETARY_MODULE,
2460 LOCKDEP_NOW_UNRELIABLE);
1da177e4
LT
2461 }
2462}
2463
2464/* Parse tag=value strings from .modinfo section */
2465static char *next_string(char *string, unsigned long *secsize)
2466{
2467 /* Skip non-zero chars */
2468 while (string[0]) {
2469 string++;
2470 if ((*secsize)-- <= 1)
2471 return NULL;
2472 }
2473
2474 /* Skip any zero padding. */
2475 while (!string[0]) {
2476 string++;
2477 if ((*secsize)-- <= 1)
2478 return NULL;
2479 }
2480 return string;
2481}
2482
49668688 2483static char *get_modinfo(struct load_info *info, const char *tag)
1da177e4
LT
2484{
2485 char *p;
2486 unsigned int taglen = strlen(tag);
49668688
RR
2487 Elf_Shdr *infosec = &info->sechdrs[info->index.info];
2488 unsigned long size = infosec->sh_size;
1da177e4 2489
5fdc7db6
JY
2490 /*
2491 * get_modinfo() calls made before rewrite_section_headers()
2492 * must use sh_offset, as sh_addr isn't set!
2493 */
2494 for (p = (char *)info->hdr + infosec->sh_offset; p; p = next_string(p, &size)) {
1da177e4
LT
2495 if (strncmp(p, tag, taglen) == 0 && p[taglen] == '=')
2496 return p + taglen + 1;
2497 }
2498 return NULL;
2499}
2500
49668688 2501static void setup_modinfo(struct module *mod, struct load_info *info)
c988d2b2
MD
2502{
2503 struct module_attribute *attr;
2504 int i;
2505
2506 for (i = 0; (attr = modinfo_attrs[i]); i++) {
2507 if (attr->setup)
49668688 2508 attr->setup(mod, get_modinfo(info, attr->attr.name));
c988d2b2
MD
2509 }
2510}
c988d2b2 2511
a263f776
RR
2512static void free_modinfo(struct module *mod)
2513{
2514 struct module_attribute *attr;
2515 int i;
2516
2517 for (i = 0; (attr = modinfo_attrs[i]); i++) {
2518 if (attr->free)
2519 attr->free(mod);
2520 }
2521}
2522
1da177e4 2523#ifdef CONFIG_KALLSYMS
15bba37d 2524
2d25bc55
JY
2525/* Lookup exported symbol in given range of kernel_symbols */
2526static const struct kernel_symbol *lookup_exported_symbol(const char *name,
2527 const struct kernel_symbol *start,
2528 const struct kernel_symbol *stop)
15bba37d 2529{
9d63487f
AIB
2530 return bsearch(name, start, stop - start,
2531 sizeof(struct kernel_symbol), cmp_name);
15bba37d
WC
2532}
2533
ca4787b7
TA
2534static int is_exported(const char *name, unsigned long value,
2535 const struct module *mod)
1da177e4 2536{
ca4787b7
TA
2537 const struct kernel_symbol *ks;
2538 if (!mod)
2d25bc55 2539 ks = lookup_exported_symbol(name, __start___ksymtab, __stop___ksymtab);
3fd6805f 2540 else
2d25bc55
JY
2541 ks = lookup_exported_symbol(name, mod->syms, mod->syms + mod->num_syms);
2542
7290d580 2543 return ks != NULL && kernel_symbol_value(ks) == value;
1da177e4
LT
2544}
2545
2546/* As per nm */
eded41c1 2547static char elf_type(const Elf_Sym *sym, const struct load_info *info)
1da177e4 2548{
eded41c1
RR
2549 const Elf_Shdr *sechdrs = info->sechdrs;
2550
1da177e4
LT
2551 if (ELF_ST_BIND(sym->st_info) == STB_WEAK) {
2552 if (ELF_ST_TYPE(sym->st_info) == STT_OBJECT)
2553 return 'v';
2554 else
2555 return 'w';
2556 }
2557 if (sym->st_shndx == SHN_UNDEF)
2558 return 'U';
e0224418 2559 if (sym->st_shndx == SHN_ABS || sym->st_shndx == info->index.pcpu)
1da177e4
LT
2560 return 'a';
2561 if (sym->st_shndx >= SHN_LORESERVE)
2562 return '?';
2563 if (sechdrs[sym->st_shndx].sh_flags & SHF_EXECINSTR)
2564 return 't';
2565 if (sechdrs[sym->st_shndx].sh_flags & SHF_ALLOC
2566 && sechdrs[sym->st_shndx].sh_type != SHT_NOBITS) {
2567 if (!(sechdrs[sym->st_shndx].sh_flags & SHF_WRITE))
2568 return 'r';
2569 else if (sechdrs[sym->st_shndx].sh_flags & ARCH_SHF_SMALL)
2570 return 'g';
2571 else
2572 return 'd';
2573 }
2574 if (sechdrs[sym->st_shndx].sh_type == SHT_NOBITS) {
2575 if (sechdrs[sym->st_shndx].sh_flags & ARCH_SHF_SMALL)
2576 return 's';
2577 else
2578 return 'b';
2579 }
eded41c1
RR
2580 if (strstarts(info->secstrings + sechdrs[sym->st_shndx].sh_name,
2581 ".debug")) {
1da177e4 2582 return 'n';
eded41c1 2583 }
1da177e4
LT
2584 return '?';
2585}
2586
4a496226 2587static bool is_core_symbol(const Elf_Sym *src, const Elf_Shdr *sechdrs,
e0224418 2588 unsigned int shnum, unsigned int pcpundx)
4a496226
JB
2589{
2590 const Elf_Shdr *sec;
2591
2592 if (src->st_shndx == SHN_UNDEF
2593 || src->st_shndx >= shnum
2594 || !src->st_name)
2595 return false;
2596
e0224418
MB
2597#ifdef CONFIG_KALLSYMS_ALL
2598 if (src->st_shndx == pcpundx)
2599 return true;
2600#endif
2601
4a496226
JB
2602 sec = sechdrs + src->st_shndx;
2603 if (!(sec->sh_flags & SHF_ALLOC)
2604#ifndef CONFIG_KALLSYMS_ALL
2605 || !(sec->sh_flags & SHF_EXECINSTR)
2606#endif
2607 || (sec->sh_entsize & INIT_OFFSET_MASK))
2608 return false;
2609
2610 return true;
2611}
2612
48fd1188
KC
2613/*
2614 * We only allocate and copy the strings needed by the parts of symtab
2615 * we keep. This is simple, but has the effect of making multiple
2616 * copies of duplicates. We could be more sophisticated, see
2617 * linux-kernel thread starting with
2618 * <73defb5e4bca04a6431392cc341112b1@localhost>.
2619 */
49668688 2620static void layout_symtab(struct module *mod, struct load_info *info)
4a496226 2621{
49668688
RR
2622 Elf_Shdr *symsect = info->sechdrs + info->index.sym;
2623 Elf_Shdr *strsect = info->sechdrs + info->index.str;
4a496226 2624 const Elf_Sym *src;
54523ec7 2625 unsigned int i, nsrc, ndst, strtab_size = 0;
4a496226
JB
2626
2627 /* Put symbol section at end of init part of module. */
2628 symsect->sh_flags |= SHF_ALLOC;
7523e4dc 2629 symsect->sh_entsize = get_offset(mod, &mod->init_layout.size, symsect,
49668688 2630 info->index.sym) | INIT_OFFSET_MASK;
5e124169 2631 pr_debug("\t%s\n", info->secstrings + symsect->sh_name);
4a496226 2632
49668688 2633 src = (void *)info->hdr + symsect->sh_offset;
4a496226 2634 nsrc = symsect->sh_size / sizeof(*src);
70b1e916 2635
48fd1188 2636 /* Compute total space required for the core symbols' strtab. */
59ef28b1 2637 for (ndst = i = 0; i < nsrc; i++) {
1ce15ef4 2638 if (i == 0 || is_livepatch_module(mod) ||
e0224418
MB
2639 is_core_symbol(src+i, info->sechdrs, info->hdr->e_shnum,
2640 info->index.pcpu)) {
59ef28b1 2641 strtab_size += strlen(&info->strtab[src[i].st_name])+1;
48fd1188 2642 ndst++;
554bdfe5 2643 }
59ef28b1 2644 }
4a496226
JB
2645
2646 /* Append room for core symbols at end of core part. */
7523e4dc
RR
2647 info->symoffs = ALIGN(mod->core_layout.size, symsect->sh_addralign ?: 1);
2648 info->stroffs = mod->core_layout.size = info->symoffs + ndst * sizeof(Elf_Sym);
2649 mod->core_layout.size += strtab_size;
2650 mod->core_layout.size = debug_align(mod->core_layout.size);
4a496226 2651
554bdfe5
JB
2652 /* Put string table section at end of init part of module. */
2653 strsect->sh_flags |= SHF_ALLOC;
7523e4dc 2654 strsect->sh_entsize = get_offset(mod, &mod->init_layout.size, strsect,
49668688 2655 info->index.str) | INIT_OFFSET_MASK;
5e124169 2656 pr_debug("\t%s\n", info->secstrings + strsect->sh_name);
8244062e
RR
2657
2658 /* We'll tack temporary mod_kallsyms on the end. */
2659 mod->init_layout.size = ALIGN(mod->init_layout.size,
2660 __alignof__(struct mod_kallsyms));
2661 info->mod_kallsyms_init_off = mod->init_layout.size;
2662 mod->init_layout.size += sizeof(struct mod_kallsyms);
2663 mod->init_layout.size = debug_align(mod->init_layout.size);
4a496226
JB
2664}
2665
8244062e
RR
2666/*
2667 * We use the full symtab and strtab which layout_symtab arranged to
2668 * be appended to the init section. Later we switch to the cut-down
2669 * core-only ones.
2670 */
811d66a0 2671static void add_kallsyms(struct module *mod, const struct load_info *info)
1da177e4 2672{
4a496226
JB
2673 unsigned int i, ndst;
2674 const Elf_Sym *src;
2675 Elf_Sym *dst;
554bdfe5 2676 char *s;
eded41c1 2677 Elf_Shdr *symsec = &info->sechdrs[info->index.sym];
1da177e4 2678
8244062e
RR
2679 /* Set up to point into init section. */
2680 mod->kallsyms = mod->init_layout.base + info->mod_kallsyms_init_off;
2681
2682 mod->kallsyms->symtab = (void *)symsec->sh_addr;
2683 mod->kallsyms->num_symtab = symsec->sh_size / sizeof(Elf_Sym);
511ca6ae 2684 /* Make sure we get permanent strtab: don't use info->strtab. */
8244062e 2685 mod->kallsyms->strtab = (void *)info->sechdrs[info->index.str].sh_addr;
1da177e4
LT
2686
2687 /* Set types up while we still have access to sections. */
8244062e 2688 for (i = 0; i < mod->kallsyms->num_symtab; i++)
5439c985 2689 mod->kallsyms->symtab[i].st_size
8244062e
RR
2690 = elf_type(&mod->kallsyms->symtab[i], info);
2691
2692 /* Now populate the cut down core kallsyms for after init. */
2693 mod->core_kallsyms.symtab = dst = mod->core_layout.base + info->symoffs;
2694 mod->core_kallsyms.strtab = s = mod->core_layout.base + info->stroffs;
2695 src = mod->kallsyms->symtab;
2696 for (ndst = i = 0; i < mod->kallsyms->num_symtab; i++) {
1ce15ef4 2697 if (i == 0 || is_livepatch_module(mod) ||
e0224418
MB
2698 is_core_symbol(src+i, info->sechdrs, info->hdr->e_shnum,
2699 info->index.pcpu)) {
59ef28b1 2700 dst[ndst] = src[i];
8244062e
RR
2701 dst[ndst++].st_name = s - mod->core_kallsyms.strtab;
2702 s += strlcpy(s, &mod->kallsyms->strtab[src[i].st_name],
59ef28b1
RR
2703 KSYM_NAME_LEN) + 1;
2704 }
4a496226 2705 }
8244062e 2706 mod->core_kallsyms.num_symtab = ndst;
1da177e4
LT
2707}
2708#else
49668688 2709static inline void layout_symtab(struct module *mod, struct load_info *info)
4a496226
JB
2710{
2711}
3ae91c21 2712
abbce906 2713static void add_kallsyms(struct module *mod, const struct load_info *info)
1da177e4
LT
2714{
2715}
2716#endif /* CONFIG_KALLSYMS */
2717
52796312 2718static void dynamic_debug_setup(struct module *mod, struct _ddebug *debug, unsigned int num)
346e15be 2719{
811d66a0
RR
2720 if (!debug)
2721 return;
e9d376f0 2722#ifdef CONFIG_DYNAMIC_DEBUG
52796312 2723 if (ddebug_add_module(debug, num, mod->name))
bddb12b3
AM
2724 pr_err("dynamic debug error adding module: %s\n",
2725 debug->modname);
e9d376f0 2726#endif
5e458cc0 2727}
346e15be 2728
52796312 2729static void dynamic_debug_remove(struct module *mod, struct _ddebug *debug)
ff49d74a
YS
2730{
2731 if (debug)
52796312 2732 ddebug_remove_module(mod->name);
ff49d74a
YS
2733}
2734
74e08fcf
JB
2735void * __weak module_alloc(unsigned long size)
2736{
82fab442 2737 return vmalloc_exec(size);
74e08fcf
JB
2738}
2739
4f2294b6 2740#ifdef CONFIG_DEBUG_KMEMLEAK
49668688
RR
2741static void kmemleak_load_module(const struct module *mod,
2742 const struct load_info *info)
4f2294b6
CM
2743{
2744 unsigned int i;
2745
2746 /* only scan the sections containing data */
c017b4be 2747 kmemleak_scan_area(mod, sizeof(struct module), GFP_KERNEL);
4f2294b6 2748
49668688 2749 for (i = 1; i < info->hdr->e_shnum; i++) {
06c9494c
SR
2750 /* Scan all writable sections that's not executable */
2751 if (!(info->sechdrs[i].sh_flags & SHF_ALLOC) ||
2752 !(info->sechdrs[i].sh_flags & SHF_WRITE) ||
2753 (info->sechdrs[i].sh_flags & SHF_EXECINSTR))
4f2294b6
CM
2754 continue;
2755
49668688
RR
2756 kmemleak_scan_area((void *)info->sechdrs[i].sh_addr,
2757 info->sechdrs[i].sh_size, GFP_KERNEL);
4f2294b6
CM
2758 }
2759}
2760#else
49668688
RR
2761static inline void kmemleak_load_module(const struct module *mod,
2762 const struct load_info *info)
4f2294b6
CM
2763{
2764}
2765#endif
2766
106a4ee2 2767#ifdef CONFIG_MODULE_SIG
bca014ca 2768static int module_sig_check(struct load_info *info, int flags)
106a4ee2
RR
2769{
2770 int err = -ENOKEY;
34e1169d
KC
2771 const unsigned long markerlen = sizeof(MODULE_SIG_STRING) - 1;
2772 const void *mod = info->hdr;
caabe240 2773
bca014ca
BH
2774 /*
2775 * Require flags == 0, as a module with version information
2776 * removed is no longer the module that was signed
2777 */
2778 if (flags == 0 &&
2779 info->len > markerlen &&
34e1169d 2780 memcmp(mod + info->len - markerlen, MODULE_SIG_STRING, markerlen) == 0) {
caabe240 2781 /* We truncate the module to discard the signature */
34e1169d 2782 info->len -= markerlen;
f314dfea 2783 err = mod_verify_sig(mod, info);
106a4ee2
RR
2784 }
2785
2786 if (!err) {
2787 info->sig_ok = true;
2788 return 0;
2789 }
2790
2791 /* Not having a signature is only an error if we're strict. */
2c8fd268 2792 if (err == -ENOKEY && !is_module_sig_enforced())
106a4ee2
RR
2793 err = 0;
2794
2795 return err;
2796}
2797#else /* !CONFIG_MODULE_SIG */
bca014ca 2798static int module_sig_check(struct load_info *info, int flags)
106a4ee2
RR
2799{
2800 return 0;
2801}
2802#endif /* !CONFIG_MODULE_SIG */
2803
34e1169d
KC
2804/* Sanity checks against invalid binaries, wrong arch, weird elf version. */
2805static int elf_header_check(struct load_info *info)
40dd2560 2806{
34e1169d
KC
2807 if (info->len < sizeof(*(info->hdr)))
2808 return -ENOEXEC;
2809
2810 if (memcmp(info->hdr->e_ident, ELFMAG, SELFMAG) != 0
2811 || info->hdr->e_type != ET_REL
2812 || !elf_check_arch(info->hdr)
2813 || info->hdr->e_shentsize != sizeof(Elf_Shdr))
2814 return -ENOEXEC;
2815
2816 if (info->hdr->e_shoff >= info->len
2817 || (info->hdr->e_shnum * sizeof(Elf_Shdr) >
2818 info->len - info->hdr->e_shoff))
2819 return -ENOEXEC;
40dd2560 2820
34e1169d
KC
2821 return 0;
2822}
2823
3afe9f84
LT
2824#define COPY_CHUNK_SIZE (16*PAGE_SIZE)
2825
2826static int copy_chunked_from_user(void *dst, const void __user *usrc, unsigned long len)
2827{
2828 do {
2829 unsigned long n = min(len, COPY_CHUNK_SIZE);
2830
2831 if (copy_from_user(dst, usrc, n) != 0)
2832 return -EFAULT;
2833 cond_resched();
2834 dst += n;
2835 usrc += n;
2836 len -= n;
2837 } while (len);
2838 return 0;
2839}
2840
1ce15ef4 2841#ifdef CONFIG_LIVEPATCH
2992ef29 2842static int check_modinfo_livepatch(struct module *mod, struct load_info *info)
1ce15ef4 2843{
2992ef29
JP
2844 if (get_modinfo(info, "livepatch")) {
2845 mod->klp = true;
2846 add_taint_module(mod, TAINT_LIVEPATCH, LOCKDEP_STILL_OK);
7598d167
JL
2847 pr_notice_once("%s: tainting kernel with TAINT_LIVEPATCH\n",
2848 mod->name);
2992ef29 2849 }
1ce15ef4
JY
2850
2851 return 0;
2852}
2853#else /* !CONFIG_LIVEPATCH */
2992ef29 2854static int check_modinfo_livepatch(struct module *mod, struct load_info *info)
1ce15ef4
JY
2855{
2856 if (get_modinfo(info, "livepatch")) {
2857 pr_err("%s: module is marked as livepatch module, but livepatch support is disabled",
2858 mod->name);
2859 return -ENOEXEC;
2860 }
2861
2862 return 0;
2863}
2864#endif /* CONFIG_LIVEPATCH */
2865
caf7501a
AK
2866static void check_modinfo_retpoline(struct module *mod, struct load_info *info)
2867{
2868 if (retpoline_module_ok(get_modinfo(info, "retpoline")))
2869 return;
2870
2871 pr_warn("%s: loading module not compiled with retpoline compiler.\n",
2872 mod->name);
2873}
2874
34e1169d
KC
2875/* Sets info->hdr and info->len. */
2876static int copy_module_from_user(const void __user *umod, unsigned long len,
2877 struct load_info *info)
40dd2560
RR
2878{
2879 int err;
40dd2560 2880
34e1169d
KC
2881 info->len = len;
2882 if (info->len < sizeof(*(info->hdr)))
40dd2560
RR
2883 return -ENOEXEC;
2884
c77b8cdf 2885 err = security_kernel_load_data(LOADING_MODULE);
2e72d51b
KC
2886 if (err)
2887 return err;
2888
40dd2560 2889 /* Suck in entire file: we'll want most of it. */
cc9e605d 2890 info->hdr = __vmalloc(info->len,
19809c2d 2891 GFP_KERNEL | __GFP_NOWARN, PAGE_KERNEL);
34e1169d 2892 if (!info->hdr)
40dd2560
RR
2893 return -ENOMEM;
2894
3afe9f84 2895 if (copy_chunked_from_user(info->hdr, umod, info->len) != 0) {
34e1169d
KC
2896 vfree(info->hdr);
2897 return -EFAULT;
40dd2560
RR
2898 }
2899
34e1169d
KC
2900 return 0;
2901}
2902
d913188c
RR
2903static void free_copy(struct load_info *info)
2904{
d913188c
RR
2905 vfree(info->hdr);
2906}
2907
2f3238ae 2908static int rewrite_section_headers(struct load_info *info, int flags)
8b5f61a7
RR
2909{
2910 unsigned int i;
2911
2912 /* This should always be true, but let's be sure. */
2913 info->sechdrs[0].sh_addr = 0;
2914
2915 for (i = 1; i < info->hdr->e_shnum; i++) {
2916 Elf_Shdr *shdr = &info->sechdrs[i];
2917 if (shdr->sh_type != SHT_NOBITS
2918 && info->len < shdr->sh_offset + shdr->sh_size) {
bddb12b3 2919 pr_err("Module len %lu truncated\n", info->len);
8b5f61a7
RR
2920 return -ENOEXEC;
2921 }
2922
2923 /* Mark all sections sh_addr with their address in the
2924 temporary image. */
2925 shdr->sh_addr = (size_t)info->hdr + shdr->sh_offset;
2926
2927#ifndef CONFIG_MODULE_UNLOAD
2928 /* Don't load .exit sections */
2929 if (strstarts(info->secstrings+shdr->sh_name, ".exit"))
2930 shdr->sh_flags &= ~(unsigned long)SHF_ALLOC;
2931#endif
8b5f61a7 2932 }
d6df72a0
RR
2933
2934 /* Track but don't keep modinfo and version sections. */
3e2e857f 2935 info->sechdrs[info->index.vers].sh_flags &= ~(unsigned long)SHF_ALLOC;
d6df72a0 2936 info->sechdrs[info->index.info].sh_flags &= ~(unsigned long)SHF_ALLOC;
3e2e857f 2937
8b5f61a7
RR
2938 return 0;
2939}
2940
3264d3f9
LT
2941/*
2942 * Set up our basic convenience variables (pointers to section headers,
2943 * search for module section index etc), and do some basic section
2944 * verification.
2945 *
81a0abd9
JY
2946 * Set info->mod to the temporary copy of the module in info->hdr. The final one
2947 * will be allocated in move_module().
3264d3f9 2948 */
81a0abd9 2949static int setup_load_info(struct load_info *info, int flags)
3264d3f9
LT
2950{
2951 unsigned int i;
3264d3f9
LT
2952
2953 /* Set up the convenience variables */
2954 info->sechdrs = (void *)info->hdr + info->hdr->e_shoff;
8b5f61a7
RR
2955 info->secstrings = (void *)info->hdr
2956 + info->sechdrs[info->hdr->e_shstrndx].sh_offset;
3264d3f9 2957
5fdc7db6
JY
2958 /* Try to find a name early so we can log errors with a module name */
2959 info->index.info = find_sec(info, ".modinfo");
2960 if (!info->index.info)
2961 info->name = "(missing .modinfo section)";
2962 else
2963 info->name = get_modinfo(info, "name");
3264d3f9 2964
8b5f61a7
RR
2965 /* Find internal symbols and strings. */
2966 for (i = 1; i < info->hdr->e_shnum; i++) {
3264d3f9
LT
2967 if (info->sechdrs[i].sh_type == SHT_SYMTAB) {
2968 info->index.sym = i;
2969 info->index.str = info->sechdrs[i].sh_link;
8b5f61a7
RR
2970 info->strtab = (char *)info->hdr
2971 + info->sechdrs[info->index.str].sh_offset;
2972 break;
3264d3f9 2973 }
3264d3f9
LT
2974 }
2975
5fdc7db6
JY
2976 if (info->index.sym == 0) {
2977 pr_warn("%s: module has no symbols (stripped?)\n", info->name);
2978 return -ENOEXEC;
2979 }
2980
49668688 2981 info->index.mod = find_sec(info, ".gnu.linkonce.this_module");
3264d3f9 2982 if (!info->index.mod) {
3e2e857f
KC
2983 pr_warn("%s: No module found in object\n",
2984 info->name ?: "(missing .modinfo name field)");
81a0abd9 2985 return -ENOEXEC;
3264d3f9
LT
2986 }
2987 /* This is temporary: point mod into copy of data. */
5fdc7db6 2988 info->mod = (void *)info->hdr + info->sechdrs[info->index.mod].sh_offset;
3264d3f9 2989
3e2e857f 2990 /*
5fdc7db6 2991 * If we didn't load the .modinfo 'name' field earlier, fall back to
3e2e857f
KC
2992 * on-disk struct mod 'name' field.
2993 */
2994 if (!info->name)
81a0abd9 2995 info->name = info->mod->name;
3e2e857f 2996
5fdc7db6
JY
2997 if (flags & MODULE_INIT_IGNORE_MODVERSIONS)
2998 info->index.vers = 0; /* Pretend no __versions section! */
2999 else
3000 info->index.vers = find_sec(info, "__versions");
3264d3f9 3001
49668688 3002 info->index.pcpu = find_pcpusec(info);
3264d3f9 3003
81a0abd9 3004 return 0;
3264d3f9
LT
3005}
3006
2f3238ae 3007static int check_modinfo(struct module *mod, struct load_info *info, int flags)
40dd2560 3008{
49668688 3009 const char *modmagic = get_modinfo(info, "vermagic");
40dd2560
RR
3010 int err;
3011
2f3238ae
RR
3012 if (flags & MODULE_INIT_IGNORE_VERMAGIC)
3013 modmagic = NULL;
3014
40dd2560
RR
3015 /* This is allowed: modprobe --force will invalidate it. */
3016 if (!modmagic) {
3017 err = try_to_force_load(mod, "bad vermagic");
3018 if (err)
3019 return err;
49668688 3020 } else if (!same_magic(modmagic, vermagic, info->index.vers)) {
bddb12b3 3021 pr_err("%s: version magic '%s' should be '%s'\n",
3e2e857f 3022 info->name, modmagic, vermagic);
40dd2560
RR
3023 return -ENOEXEC;
3024 }
3025
3205c36c
LP
3026 if (!get_modinfo(info, "intree")) {
3027 if (!test_taint(TAINT_OOT_MODULE))
3028 pr_warn("%s: loading out-of-tree module taints kernel.\n",
3029 mod->name);
373d4d09 3030 add_taint_module(mod, TAINT_OOT_MODULE, LOCKDEP_STILL_OK);
3205c36c 3031 }
2449b8ba 3032
caf7501a
AK
3033 check_modinfo_retpoline(mod, info);
3034
49668688 3035 if (get_modinfo(info, "staging")) {
373d4d09 3036 add_taint_module(mod, TAINT_CRAP, LOCKDEP_STILL_OK);
bddb12b3
AM
3037 pr_warn("%s: module is from the staging directory, the quality "
3038 "is unknown, you have been warned.\n", mod->name);
40dd2560 3039 }
22e268eb 3040
2992ef29 3041 err = check_modinfo_livepatch(mod, info);
1ce15ef4
JY
3042 if (err)
3043 return err;
3044
22e268eb 3045 /* Set up license info based on the info section */
49668688 3046 set_license(mod, get_modinfo(info, "license"));
22e268eb 3047
40dd2560
RR
3048 return 0;
3049}
3050
eb3057df 3051static int find_module_sections(struct module *mod, struct load_info *info)
f91a13bb 3052{
49668688 3053 mod->kp = section_objs(info, "__param",
f91a13bb 3054 sizeof(*mod->kp), &mod->num_kp);
49668688 3055 mod->syms = section_objs(info, "__ksymtab",
f91a13bb 3056 sizeof(*mod->syms), &mod->num_syms);
49668688
RR
3057 mod->crcs = section_addr(info, "__kcrctab");
3058 mod->gpl_syms = section_objs(info, "__ksymtab_gpl",
f91a13bb
LT
3059 sizeof(*mod->gpl_syms),
3060 &mod->num_gpl_syms);
49668688
RR
3061 mod->gpl_crcs = section_addr(info, "__kcrctab_gpl");
3062 mod->gpl_future_syms = section_objs(info,
f91a13bb
LT
3063 "__ksymtab_gpl_future",
3064 sizeof(*mod->gpl_future_syms),
3065 &mod->num_gpl_future_syms);
49668688 3066 mod->gpl_future_crcs = section_addr(info, "__kcrctab_gpl_future");
f91a13bb
LT
3067
3068#ifdef CONFIG_UNUSED_SYMBOLS
49668688 3069 mod->unused_syms = section_objs(info, "__ksymtab_unused",
f91a13bb
LT
3070 sizeof(*mod->unused_syms),
3071 &mod->num_unused_syms);
49668688
RR
3072 mod->unused_crcs = section_addr(info, "__kcrctab_unused");
3073 mod->unused_gpl_syms = section_objs(info, "__ksymtab_unused_gpl",
f91a13bb
LT
3074 sizeof(*mod->unused_gpl_syms),
3075 &mod->num_unused_gpl_syms);
49668688 3076 mod->unused_gpl_crcs = section_addr(info, "__kcrctab_unused_gpl");
f91a13bb
LT
3077#endif
3078#ifdef CONFIG_CONSTRUCTORS
49668688 3079 mod->ctors = section_objs(info, ".ctors",
f91a13bb 3080 sizeof(*mod->ctors), &mod->num_ctors);
eb3057df
FH
3081 if (!mod->ctors)
3082 mod->ctors = section_objs(info, ".init_array",
3083 sizeof(*mod->ctors), &mod->num_ctors);
3084 else if (find_sec(info, ".init_array")) {
3085 /*
3086 * This shouldn't happen with same compiler and binutils
3087 * building all parts of the module.
3088 */
6da0b565 3089 pr_warn("%s: has both .ctors and .init_array.\n",
eb3057df
FH
3090 mod->name);
3091 return -EINVAL;
3092 }
f91a13bb
LT
3093#endif
3094
3095#ifdef CONFIG_TRACEPOINTS
65498646
MD
3096 mod->tracepoints_ptrs = section_objs(info, "__tracepoints_ptrs",
3097 sizeof(*mod->tracepoints_ptrs),
3098 &mod->num_tracepoints);
f91a13bb 3099#endif
a38d1107
MM
3100#ifdef CONFIG_BPF_EVENTS
3101 mod->bpf_raw_events = section_objs(info, "__bpf_raw_tp_map",
3102 sizeof(*mod->bpf_raw_events),
3103 &mod->num_bpf_raw_events);
3104#endif
bf5438fc
JB
3105#ifdef HAVE_JUMP_LABEL
3106 mod->jump_entries = section_objs(info, "__jump_table",
3107 sizeof(*mod->jump_entries),
3108 &mod->num_jump_entries);
3109#endif
f91a13bb 3110#ifdef CONFIG_EVENT_TRACING
49668688 3111 mod->trace_events = section_objs(info, "_ftrace_events",
f91a13bb
LT
3112 sizeof(*mod->trace_events),
3113 &mod->num_trace_events);
99be647c
JL
3114 mod->trace_evals = section_objs(info, "_ftrace_eval_map",
3115 sizeof(*mod->trace_evals),
3116 &mod->num_trace_evals);
f91a13bb 3117#endif
13b9b6e7
SR
3118#ifdef CONFIG_TRACING
3119 mod->trace_bprintk_fmt_start = section_objs(info, "__trace_printk_fmt",
3120 sizeof(*mod->trace_bprintk_fmt_start),
3121 &mod->num_trace_bprintk_fmt);
13b9b6e7 3122#endif
f91a13bb
LT
3123#ifdef CONFIG_FTRACE_MCOUNT_RECORD
3124 /* sechdrs[0].sh_size is always zero */
49668688 3125 mod->ftrace_callsites = section_objs(info, "__mcount_loc",
f91a13bb
LT
3126 sizeof(*mod->ftrace_callsites),
3127 &mod->num_ftrace_callsites);
3128#endif
540adea3
MH
3129#ifdef CONFIG_FUNCTION_ERROR_INJECTION
3130 mod->ei_funcs = section_objs(info, "_error_injection_whitelist",
3131 sizeof(*mod->ei_funcs),
3132 &mod->num_ei_funcs);
92ace999 3133#endif
811d66a0
RR
3134 mod->extable = section_objs(info, "__ex_table",
3135 sizeof(*mod->extable), &mod->num_exentries);
3136
49668688 3137 if (section_addr(info, "__obsparm"))
bddb12b3 3138 pr_warn("%s: Ignoring obsolete parameters\n", mod->name);
811d66a0
RR
3139
3140 info->debug = section_objs(info, "__verbose",
3141 sizeof(*info->debug), &info->num_debug);
eb3057df
FH
3142
3143 return 0;
f91a13bb
LT
3144}
3145
49668688 3146static int move_module(struct module *mod, struct load_info *info)
65b8a9b4
LT
3147{
3148 int i;
3149 void *ptr;
3150
3151 /* Do the allocs. */
7523e4dc 3152 ptr = module_alloc(mod->core_layout.size);
65b8a9b4
LT
3153 /*
3154 * The pointer to this block is stored in the module structure
3155 * which is inside the block. Just mark it as not being a
3156 * leak.
3157 */
3158 kmemleak_not_leak(ptr);
3159 if (!ptr)
d913188c 3160 return -ENOMEM;
65b8a9b4 3161
7523e4dc
RR
3162 memset(ptr, 0, mod->core_layout.size);
3163 mod->core_layout.base = ptr;
65b8a9b4 3164
7523e4dc
RR
3165 if (mod->init_layout.size) {
3166 ptr = module_alloc(mod->init_layout.size);
82fab442
RR
3167 /*
3168 * The pointer to this block is stored in the module structure
3169 * which is inside the block. This block doesn't need to be
3170 * scanned as it contains data and code that will be freed
3171 * after the module is initialized.
3172 */
3173 kmemleak_ignore(ptr);
3174 if (!ptr) {
7523e4dc 3175 module_memfree(mod->core_layout.base);
82fab442
RR
3176 return -ENOMEM;
3177 }
7523e4dc
RR
3178 memset(ptr, 0, mod->init_layout.size);
3179 mod->init_layout.base = ptr;
82fab442 3180 } else
7523e4dc 3181 mod->init_layout.base = NULL;
65b8a9b4
LT
3182
3183 /* Transfer each section which specifies SHF_ALLOC */
5e124169 3184 pr_debug("final section addresses:\n");
49668688 3185 for (i = 0; i < info->hdr->e_shnum; i++) {
65b8a9b4 3186 void *dest;
49668688 3187 Elf_Shdr *shdr = &info->sechdrs[i];
65b8a9b4 3188
49668688 3189 if (!(shdr->sh_flags & SHF_ALLOC))
65b8a9b4
LT
3190 continue;
3191
49668688 3192 if (shdr->sh_entsize & INIT_OFFSET_MASK)
7523e4dc 3193 dest = mod->init_layout.base
49668688 3194 + (shdr->sh_entsize & ~INIT_OFFSET_MASK);
65b8a9b4 3195 else
7523e4dc 3196 dest = mod->core_layout.base + shdr->sh_entsize;
65b8a9b4 3197
49668688
RR
3198 if (shdr->sh_type != SHT_NOBITS)
3199 memcpy(dest, (void *)shdr->sh_addr, shdr->sh_size);
65b8a9b4 3200 /* Update sh_addr to point to copy in image. */
49668688 3201 shdr->sh_addr = (unsigned long)dest;
5e124169
JC
3202 pr_debug("\t0x%lx %s\n",
3203 (long)shdr->sh_addr, info->secstrings + shdr->sh_name);
65b8a9b4 3204 }
d913188c
RR
3205
3206 return 0;
65b8a9b4
LT
3207}
3208
49668688 3209static int check_module_license_and_versions(struct module *mod)
22e268eb 3210{
3205c36c
LP
3211 int prev_taint = test_taint(TAINT_PROPRIETARY_MODULE);
3212
22e268eb
RR
3213 /*
3214 * ndiswrapper is under GPL by itself, but loads proprietary modules.
3215 * Don't use add_taint_module(), as it would prevent ndiswrapper from
3216 * using GPL-only symbols it needs.
3217 */
3218 if (strcmp(mod->name, "ndiswrapper") == 0)
373d4d09 3219 add_taint(TAINT_PROPRIETARY_MODULE, LOCKDEP_NOW_UNRELIABLE);
22e268eb
RR
3220
3221 /* driverloader was caught wrongly pretending to be under GPL */
3222 if (strcmp(mod->name, "driverloader") == 0)
373d4d09
RR
3223 add_taint_module(mod, TAINT_PROPRIETARY_MODULE,
3224 LOCKDEP_NOW_UNRELIABLE);
22e268eb 3225
c99af375
MG
3226 /* lve claims to be GPL but upstream won't provide source */
3227 if (strcmp(mod->name, "lve") == 0)
373d4d09
RR
3228 add_taint_module(mod, TAINT_PROPRIETARY_MODULE,
3229 LOCKDEP_NOW_UNRELIABLE);
c99af375 3230
3205c36c
LP
3231 if (!prev_taint && test_taint(TAINT_PROPRIETARY_MODULE))
3232 pr_warn("%s: module license taints kernel.\n", mod->name);
3233
22e268eb
RR
3234#ifdef CONFIG_MODVERSIONS
3235 if ((mod->num_syms && !mod->crcs)
3236 || (mod->num_gpl_syms && !mod->gpl_crcs)
3237 || (mod->num_gpl_future_syms && !mod->gpl_future_crcs)
3238#ifdef CONFIG_UNUSED_SYMBOLS
3239 || (mod->num_unused_syms && !mod->unused_crcs)
3240 || (mod->num_unused_gpl_syms && !mod->unused_gpl_crcs)
3241#endif
3242 ) {
3243 return try_to_force_load(mod,
3244 "no versions for exported symbols");
3245 }
3246#endif
3247 return 0;
3248}
3249
3250static void flush_module_icache(const struct module *mod)
3251{
3252 mm_segment_t old_fs;
3253
3254 /* flush the icache in correct context */
3255 old_fs = get_fs();
3256 set_fs(KERNEL_DS);
3257
3258 /*
3259 * Flush the instruction cache, since we've played with text.
3260 * Do it before processing of module parameters, so the module
3261 * can provide parameter accessor functions of its own.
3262 */
7523e4dc
RR
3263 if (mod->init_layout.base)
3264 flush_icache_range((unsigned long)mod->init_layout.base,
3265 (unsigned long)mod->init_layout.base
3266 + mod->init_layout.size);
3267 flush_icache_range((unsigned long)mod->core_layout.base,
3268 (unsigned long)mod->core_layout.base + mod->core_layout.size);
22e268eb
RR
3269
3270 set_fs(old_fs);
3271}
3272
74e08fcf
JB
3273int __weak module_frob_arch_sections(Elf_Ehdr *hdr,
3274 Elf_Shdr *sechdrs,
3275 char *secstrings,
3276 struct module *mod)
3277{
3278 return 0;
3279}
3280
be7de5f9
PB
3281/* module_blacklist is a comma-separated list of module names */
3282static char *module_blacklist;
96b5b194 3283static bool blacklisted(const char *module_name)
be7de5f9
PB
3284{
3285 const char *p;
3286 size_t len;
3287
3288 if (!module_blacklist)
3289 return false;
3290
3291 for (p = module_blacklist; *p; p += len) {
3292 len = strcspn(p, ",");
3293 if (strlen(module_name) == len && !memcmp(module_name, p, len))
3294 return true;
3295 if (p[len] == ',')
3296 len++;
3297 }
3298 return false;
3299}
3300core_param(module_blacklist, module_blacklist, charp, 0400);
3301
2f3238ae 3302static struct module *layout_and_allocate(struct load_info *info, int flags)
1da177e4 3303{
1da177e4 3304 struct module *mod;
444d13ff 3305 unsigned int ndx;
d913188c 3306 int err;
3ae91c21 3307
81a0abd9 3308 err = check_modinfo(info->mod, info, flags);
40dd2560
RR
3309 if (err)
3310 return ERR_PTR(err);
1da177e4 3311
1da177e4 3312 /* Allow arches to frob section contents and sizes. */
49668688 3313 err = module_frob_arch_sections(info->hdr, info->sechdrs,
81a0abd9 3314 info->secstrings, info->mod);
1da177e4 3315 if (err < 0)
8d8022e8 3316 return ERR_PTR(err);
1da177e4 3317
8d8022e8
RR
3318 /* We will do a special allocation for per-cpu sections later. */
3319 info->sechdrs[info->index.pcpu].sh_flags &= ~(unsigned long)SHF_ALLOC;
1da177e4 3320
444d13ff
JY
3321 /*
3322 * Mark ro_after_init section with SHF_RO_AFTER_INIT so that
3323 * layout_sections() can put it in the right place.
3324 * Note: ro_after_init sections also have SHF_{WRITE,ALLOC} set.
3325 */
3326 ndx = find_sec(info, ".data..ro_after_init");
e872267b
AB
3327 if (ndx)
3328 info->sechdrs[ndx].sh_flags |= SHF_RO_AFTER_INIT;
3329 /*
3330 * Mark the __jump_table section as ro_after_init as well: these data
3331 * structures are never modified, with the exception of entries that
3332 * refer to code in the __init section, which are annotated as such
3333 * at module load time.
3334 */
3335 ndx = find_sec(info, "__jump_table");
444d13ff
JY
3336 if (ndx)
3337 info->sechdrs[ndx].sh_flags |= SHF_RO_AFTER_INIT;
3338
1da177e4
LT
3339 /* Determine total sizes, and put offsets in sh_entsize. For now
3340 this is done generically; there doesn't appear to be any
3341 special cases for the architectures. */
81a0abd9
JY
3342 layout_sections(info->mod, info);
3343 layout_symtab(info->mod, info);
1da177e4 3344
65b8a9b4 3345 /* Allocate and move to the final place */
81a0abd9 3346 err = move_module(info->mod, info);
d913188c 3347 if (err)
8d8022e8 3348 return ERR_PTR(err);
d913188c
RR
3349
3350 /* Module has been copied to its final place now: return it. */
3351 mod = (void *)info->sechdrs[info->index.mod].sh_addr;
49668688 3352 kmemleak_load_module(mod, info);
d913188c 3353 return mod;
d913188c
RR
3354}
3355
3356/* mod is no longer valid after this! */
3357static void module_deallocate(struct module *mod, struct load_info *info)
3358{
d913188c 3359 percpu_modfree(mod);
d453cded 3360 module_arch_freeing_init(mod);
7523e4dc
RR
3361 module_memfree(mod->init_layout.base);
3362 module_memfree(mod->core_layout.base);
d913188c
RR
3363}
3364
74e08fcf
JB
3365int __weak module_finalize(const Elf_Ehdr *hdr,
3366 const Elf_Shdr *sechdrs,
3367 struct module *me)
3368{
3369 return 0;
3370}
3371
811d66a0
RR
3372static int post_relocation(struct module *mod, const struct load_info *info)
3373{
51f3d0f4 3374 /* Sort exception table now relocations are done. */
811d66a0
RR
3375 sort_extable(mod->extable, mod->extable + mod->num_exentries);
3376
3377 /* Copy relocated percpu area over. */
3378 percpu_modcopy(mod, (void *)info->sechdrs[info->index.pcpu].sh_addr,
3379 info->sechdrs[info->index.pcpu].sh_size);
3380
51f3d0f4 3381 /* Setup kallsyms-specific fields. */
811d66a0
RR
3382 add_kallsyms(mod, info);
3383
3384 /* Arch-specific module finalizing. */
3385 return module_finalize(info->hdr, info->sechdrs, mod);
3386}
3387
9bb9c3be
RR
3388/* Is this module of this name done loading? No locks held. */
3389static bool finished_loading(const char *name)
3390{
3391 struct module *mod;
3392 bool ret;
3393
9cc019b8
PZ
3394 /*
3395 * The module_mutex should not be a heavily contended lock;
3396 * if we get the occasional sleep here, we'll go an extra iteration
3397 * in the wait_event_interruptible(), which is harmless.
3398 */
3399 sched_annotate_sleep();
9bb9c3be 3400 mutex_lock(&module_mutex);
4f6de4d5 3401 mod = find_module_all(name, strlen(name), true);
0d21b0e3
RR
3402 ret = !mod || mod->state == MODULE_STATE_LIVE
3403 || mod->state == MODULE_STATE_GOING;
9bb9c3be
RR
3404 mutex_unlock(&module_mutex);
3405
3406 return ret;
3407}
3408
34e1169d
KC
3409/* Call module constructors. */
3410static void do_mod_ctors(struct module *mod)
3411{
3412#ifdef CONFIG_CONSTRUCTORS
3413 unsigned long i;
3414
3415 for (i = 0; i < mod->num_ctors; i++)
3416 mod->ctors[i]();
3417#endif
3418}
3419
c7496379
RR
3420/* For freeing module_init on success, in case kallsyms traversing */
3421struct mod_initfree {
3422 struct rcu_head rcu;
3423 void *module_init;
3424};
3425
3426static void do_free_init(struct rcu_head *head)
3427{
3428 struct mod_initfree *m = container_of(head, struct mod_initfree, rcu);
3429 module_memfree(m->module_init);
3430 kfree(m);
3431}
3432
be02a186
JK
3433/*
3434 * This is where the real work happens.
3435 *
3436 * Keep it uninlined to provide a reliable breakpoint target, e.g. for the gdb
3437 * helper command 'lx-symbols'.
3438 */
3439static noinline int do_init_module(struct module *mod)
34e1169d
KC
3440{
3441 int ret = 0;
c7496379
RR
3442 struct mod_initfree *freeinit;
3443
3444 freeinit = kmalloc(sizeof(*freeinit), GFP_KERNEL);
3445 if (!freeinit) {
3446 ret = -ENOMEM;
3447 goto fail;
3448 }
7523e4dc 3449 freeinit->module_init = mod->init_layout.base;
34e1169d 3450
774a1221
TH
3451 /*
3452 * We want to find out whether @mod uses async during init. Clear
3453 * PF_USED_ASYNC. async_schedule*() will set it.
3454 */
3455 current->flags &= ~PF_USED_ASYNC;
3456
34e1169d
KC
3457 do_mod_ctors(mod);
3458 /* Start the module */
3459 if (mod->init != NULL)
3460 ret = do_one_initcall(mod->init);
3461 if (ret < 0) {
c7496379 3462 goto fail_free_freeinit;
34e1169d
KC
3463 }
3464 if (ret > 0) {
bddb12b3
AM
3465 pr_warn("%s: '%s'->init suspiciously returned %d, it should "
3466 "follow 0/-E convention\n"
3467 "%s: loading module anyway...\n",
3468 __func__, mod->name, ret, __func__);
34e1169d
KC
3469 dump_stack();
3470 }
3471
3472 /* Now it's a first class citizen! */
3473 mod->state = MODULE_STATE_LIVE;
3474 blocking_notifier_call_chain(&module_notify_list,
3475 MODULE_STATE_LIVE, mod);
3476
774a1221
TH
3477 /*
3478 * We need to finish all async code before the module init sequence
3479 * is done. This has potential to deadlock. For example, a newly
3480 * detected block device can trigger request_module() of the
3481 * default iosched from async probing task. Once userland helper
3482 * reaches here, async_synchronize_full() will wait on the async
3483 * task waiting on request_module() and deadlock.
3484 *
3485 * This deadlock is avoided by perfomring async_synchronize_full()
3486 * iff module init queued any async jobs. This isn't a full
3487 * solution as it will deadlock the same if module loading from
3488 * async jobs nests more than once; however, due to the various
3489 * constraints, this hack seems to be the best option for now.
3490 * Please refer to the following thread for details.
3491 *
3492 * http://thread.gmane.org/gmane.linux.kernel/1420814
3493 */
f2411da7 3494 if (!mod->async_probe_requested && (current->flags & PF_USED_ASYNC))
774a1221 3495 async_synchronize_full();
34e1169d 3496
aba4b5c2 3497 ftrace_free_mem(mod, mod->init_layout.base, mod->init_layout.base +
3e234289 3498 mod->init_layout.size);
34e1169d
KC
3499 mutex_lock(&module_mutex);
3500 /* Drop initial reference. */
3501 module_put(mod);
3502 trim_init_extable(mod);
3503#ifdef CONFIG_KALLSYMS
8244062e
RR
3504 /* Switch to core kallsyms now init is done: kallsyms may be walking! */
3505 rcu_assign_pointer(mod->kallsyms, &mod->core_kallsyms);
34e1169d 3506#endif
444d13ff 3507 module_enable_ro(mod, true);
93c2e105 3508 mod_tree_remove_init(mod);
85c898db 3509 disable_ro_nx(&mod->init_layout);
d453cded 3510 module_arch_freeing_init(mod);
7523e4dc
RR
3511 mod->init_layout.base = NULL;
3512 mod->init_layout.size = 0;
3513 mod->init_layout.ro_size = 0;
444d13ff 3514 mod->init_layout.ro_after_init_size = 0;
7523e4dc 3515 mod->init_layout.text_size = 0;
c7496379
RR
3516 /*
3517 * We want to free module_init, but be aware that kallsyms may be
0be964be 3518 * walking this with preempt disabled. In all the failure paths, we
cb2f5536 3519 * call synchronize_rcu(), but we don't want to slow down the success
0be964be 3520 * path, so use actual RCU here.
ae646f0b
JH
3521 * Note that module_alloc() on most architectures creates W+X page
3522 * mappings which won't be cleaned up until do_free_init() runs. Any
3523 * code such as mark_rodata_ro() which depends on those mappings to
3524 * be cleaned up needs to sync with the queued work - ie
cb2f5536 3525 * rcu_barrier()
c7496379 3526 */
cb2f5536 3527 call_rcu(&freeinit->rcu, do_free_init);
34e1169d
KC
3528 mutex_unlock(&module_mutex);
3529 wake_up_all(&module_wq);
3530
3531 return 0;
c7496379
RR
3532
3533fail_free_freeinit:
3534 kfree(freeinit);
3535fail:
3536 /* Try to protect us from buggy refcounters. */
3537 mod->state = MODULE_STATE_GOING;
cb2f5536 3538 synchronize_rcu();
c7496379
RR
3539 module_put(mod);
3540 blocking_notifier_call_chain(&module_notify_list,
3541 MODULE_STATE_GOING, mod);
7e545d6e 3542 klp_module_going(mod);
7dcd182b 3543 ftrace_release_mod(mod);
c7496379
RR
3544 free_module(mod);
3545 wake_up_all(&module_wq);
3546 return ret;
34e1169d
KC
3547}
3548
3549static int may_init_module(void)
3550{
3551 if (!capable(CAP_SYS_MODULE) || modules_disabled)
3552 return -EPERM;
3553
3554 return 0;
3555}
3556
a3535c7e
RR
3557/*
3558 * We try to place it in the list now to make sure it's unique before
3559 * we dedicate too many resources. In particular, temporary percpu
3560 * memory exhaustion.
3561 */
3562static int add_unformed_module(struct module *mod)
3563{
3564 int err;
3565 struct module *old;
3566
3567 mod->state = MODULE_STATE_UNFORMED;
3568
3569again:
3570 mutex_lock(&module_mutex);
4f6de4d5
MK
3571 old = find_module_all(mod->name, strlen(mod->name), true);
3572 if (old != NULL) {
a3535c7e
RR
3573 if (old->state == MODULE_STATE_COMING
3574 || old->state == MODULE_STATE_UNFORMED) {
3575 /* Wait in case it fails to load. */
3576 mutex_unlock(&module_mutex);
9cc019b8
PZ
3577 err = wait_event_interruptible(module_wq,
3578 finished_loading(mod->name));
a3535c7e
RR
3579 if (err)
3580 goto out_unlocked;
3581 goto again;
3582 }
3583 err = -EEXIST;
3584 goto out;
3585 }
4f666546 3586 mod_update_bounds(mod);
a3535c7e 3587 list_add_rcu(&mod->list, &modules);
93c2e105 3588 mod_tree_insert(mod);
a3535c7e
RR
3589 err = 0;
3590
3591out:
3592 mutex_unlock(&module_mutex);
3593out_unlocked:
3594 return err;
3595}
3596
3597static int complete_formation(struct module *mod, struct load_info *info)
3598{
3599 int err;
3600
3601 mutex_lock(&module_mutex);
3602
3603 /* Find duplicate symbols (must be called under lock). */
2d25bc55 3604 err = verify_exported_symbols(mod);
a3535c7e
RR
3605 if (err < 0)
3606 goto out;
3607
3608 /* This relies on module_mutex for list integrity. */
3609 module_bug_finalize(info->hdr, info->sechdrs, mod);
3610
444d13ff 3611 module_enable_ro(mod, false);
85c898db 3612 module_enable_nx(mod);
4982223e 3613
a3535c7e
RR
3614 /* Mark state as coming so strong_try_module_get() ignores us,
3615 * but kallsyms etc. can see us. */
3616 mod->state = MODULE_STATE_COMING;
4982223e
RR
3617 mutex_unlock(&module_mutex);
3618
4982223e 3619 return 0;
a3535c7e
RR
3620
3621out:
3622 mutex_unlock(&module_mutex);
3623 return err;
3624}
3625
4c973d16
JY
3626static int prepare_coming_module(struct module *mod)
3627{
7e545d6e
JY
3628 int err;
3629
4c973d16 3630 ftrace_module_enable(mod);
7e545d6e
JY
3631 err = klp_module_coming(mod);
3632 if (err)
3633 return err;
3634
4c973d16
JY
3635 blocking_notifier_call_chain(&module_notify_list,
3636 MODULE_STATE_COMING, mod);
3637 return 0;
3638}
3639
ecc86170
LR
3640static int unknown_module_param_cb(char *param, char *val, const char *modname,
3641 void *arg)
54041d8a 3642{
f2411da7
LR
3643 struct module *mod = arg;
3644 int ret;
3645
3646 if (strcmp(param, "async_probe") == 0) {
3647 mod->async_probe_requested = true;
3648 return 0;
3649 }
3650
6da0b565 3651 /* Check for magic 'dyndbg' arg */
f2411da7 3652 ret = ddebug_dyndbg_module_param_cb(param, val, modname);
bddb12b3
AM
3653 if (ret != 0)
3654 pr_warn("%s: unknown parameter '%s' ignored\n", modname, param);
54041d8a
RR
3655 return 0;
3656}
3657
d913188c
RR
3658/* Allocate and load the module: note that size of section 0 is always
3659 zero, and we rely on this for optional sections. */
2f3238ae
RR
3660static int load_module(struct load_info *info, const char __user *uargs,
3661 int flags)
d913188c 3662{
a3535c7e 3663 struct module *mod;
5fdc7db6 3664 long err = 0;
51e158c1 3665 char *after_dashes;
d913188c 3666
5fdc7db6
JY
3667 err = elf_header_check(info);
3668 if (err)
3669 goto free_copy;
3670
3671 err = setup_load_info(info, flags);
3672 if (err)
3673 goto free_copy;
3674
3675 if (blacklisted(info->name)) {
3676 err = -EPERM;
3677 goto free_copy;
3678 }
3679
bca014ca 3680 err = module_sig_check(info, flags);
34e1169d
KC
3681 if (err)
3682 goto free_copy;
d913188c 3683
5fdc7db6 3684 err = rewrite_section_headers(info, flags);
d913188c 3685 if (err)
34e1169d 3686 goto free_copy;
d913188c 3687
5fdc7db6
JY
3688 /* Check module struct version now, before we try to use module. */
3689 if (!check_modstruct_version(info, info->mod)) {
3690 err = -ENOEXEC;
3691 goto free_copy;
3692 }
3693
d913188c 3694 /* Figure out module layout, and allocate all the memory. */
2f3238ae 3695 mod = layout_and_allocate(info, flags);
65b8a9b4
LT
3696 if (IS_ERR(mod)) {
3697 err = PTR_ERR(mod);
d913188c 3698 goto free_copy;
1da177e4 3699 }
1da177e4 3700
ca86cad7
RGB
3701 audit_log_kern_module(mod->name);
3702
a3535c7e
RR
3703 /* Reserve our place in the list. */
3704 err = add_unformed_module(mod);
3705 if (err)
1fb9341a 3706 goto free_module;
1fb9341a 3707
106a4ee2 3708#ifdef CONFIG_MODULE_SIG
34e1169d 3709 mod->sig_ok = info->sig_ok;
64748a2c 3710 if (!mod->sig_ok) {
bddb12b3 3711 pr_notice_once("%s: module verification failed: signature "
ab92ebbb 3712 "and/or required key missing - tainting "
bddb12b3 3713 "kernel\n", mod->name);
66cc69e3 3714 add_taint_module(mod, TAINT_UNSIGNED_MODULE, LOCKDEP_STILL_OK);
64748a2c 3715 }
106a4ee2
RR
3716#endif
3717
8d8022e8 3718 /* To avoid stressing percpu allocator, do this once we're unique. */
9eb76d77 3719 err = percpu_modalloc(mod, info);
8d8022e8
RR
3720 if (err)
3721 goto unlink_mod;
3722
49668688 3723 /* Now module is in final location, initialize linked lists, etc. */
9f85a4bb
RR
3724 err = module_unload_init(mod);
3725 if (err)
1fb9341a 3726 goto unlink_mod;
1da177e4 3727
cf2fde7b 3728 init_param_lock(mod);
b51d23e4 3729
22e268eb
RR
3730 /* Now we've got everything in the final locations, we can
3731 * find optional sections. */
eb3057df
FH
3732 err = find_module_sections(mod, info);
3733 if (err)
3734 goto free_unload;
9b37ccfc 3735
49668688 3736 err = check_module_license_and_versions(mod);
22e268eb
RR
3737 if (err)
3738 goto free_unload;
9841d61d 3739
c988d2b2 3740 /* Set up MODINFO_ATTR fields */
34e1169d 3741 setup_modinfo(mod, info);
c988d2b2 3742
1da177e4 3743 /* Fix up syms, so that st_value is a pointer to location. */
34e1169d 3744 err = simplify_symbols(mod, info);
1da177e4 3745 if (err < 0)
d913188c 3746 goto free_modinfo;
1da177e4 3747
34e1169d 3748 err = apply_relocations(mod, info);
22e268eb 3749 if (err < 0)
d913188c 3750 goto free_modinfo;
1da177e4 3751
34e1169d 3752 err = post_relocation(mod, info);
1da177e4 3753 if (err < 0)
d913188c 3754 goto free_modinfo;
1da177e4 3755
22e268eb 3756 flush_module_icache(mod);
378bac82 3757
6526c534
RR
3758 /* Now copy in args */
3759 mod->args = strndup_user(uargs, ~0UL >> 1);
3760 if (IS_ERR(mod->args)) {
3761 err = PTR_ERR(mod->args);
3762 goto free_arch_cleanup;
3763 }
8d3b33f6 3764
52796312 3765 dynamic_debug_setup(mod, info->debug, info->num_debug);
ff49d74a 3766
a949ae56
SRRH
3767 /* Ftrace init must be called in the MODULE_STATE_UNFORMED state */
3768 ftrace_module_init(mod);
3769
a3535c7e
RR
3770 /* Finally it's fully formed, ready to start executing. */
3771 err = complete_formation(mod, info);
3772 if (err)
1fb9341a 3773 goto ddebug_cleanup;
be593f4c 3774
4c973d16
JY
3775 err = prepare_coming_module(mod);
3776 if (err)
3777 goto bug_cleanup;
3778
51f3d0f4 3779 /* Module is ready to execute: parsing args may do that. */
51e158c1 3780 after_dashes = parse_args(mod->name, mod->args, mod->kp, mod->num_kp,
4355efbd 3781 -32768, 32767, mod,
ecc86170 3782 unknown_module_param_cb);
51e158c1
RR
3783 if (IS_ERR(after_dashes)) {
3784 err = PTR_ERR(after_dashes);
4c973d16 3785 goto coming_cleanup;
51e158c1
RR
3786 } else if (after_dashes) {
3787 pr_warn("%s: parameters '%s' after `--' ignored\n",
3788 mod->name, after_dashes);
3789 }
1da177e4 3790
ca86cad7 3791 /* Link in to sysfs. */
34e1169d 3792 err = mod_sysfs_setup(mod, info, mod->kp, mod->num_kp);
1da177e4 3793 if (err < 0)
4c973d16 3794 goto coming_cleanup;
80a3d1bb 3795
1ce15ef4
JY
3796 if (is_livepatch_module(mod)) {
3797 err = copy_module_elf(mod, info);
3798 if (err < 0)
3799 goto sysfs_cleanup;
3800 }
3801
48fd1188 3802 /* Get rid of temporary copy. */
34e1169d 3803 free_copy(info);
1da177e4
LT
3804
3805 /* Done! */
51f3d0f4 3806 trace_module_load(mod);
34e1169d
KC
3807
3808 return do_init_module(mod);
1da177e4 3809
1ce15ef4
JY
3810 sysfs_cleanup:
3811 mod_sysfs_teardown(mod);
4c973d16 3812 coming_cleanup:
885a78d4 3813 mod->state = MODULE_STATE_GOING;
a5544880 3814 destroy_params(mod->kp, mod->num_kp);
4c973d16
JY
3815 blocking_notifier_call_chain(&module_notify_list,
3816 MODULE_STATE_GOING, mod);
7e545d6e 3817 klp_module_going(mod);
1fb9341a
RR
3818 bug_cleanup:
3819 /* module_bug_cleanup needs module_mutex protection */
75676500 3820 mutex_lock(&module_mutex);
5336377d 3821 module_bug_cleanup(mod);
ee61abb3 3822 mutex_unlock(&module_mutex);
ff7e0055
AL
3823
3824 /* we can't deallocate the module until we clear memory protection */
85c898db
RR
3825 module_disable_ro(mod);
3826 module_disable_nx(mod);
ff7e0055 3827
a3535c7e 3828 ddebug_cleanup:
1323eac7 3829 ftrace_release_mod(mod);
52796312 3830 dynamic_debug_remove(mod, info->debug);
cb2f5536 3831 synchronize_rcu();
6526c534
RR
3832 kfree(mod->args);
3833 free_arch_cleanup:
1da177e4 3834 module_arch_cleanup(mod);
d913188c 3835 free_modinfo:
a263f776 3836 free_modinfo(mod);
22e268eb 3837 free_unload:
1da177e4 3838 module_unload_free(mod);
1fb9341a
RR
3839 unlink_mod:
3840 mutex_lock(&module_mutex);
3841 /* Unlink carefully: kallsyms could be walking list. */
3842 list_del_rcu(&mod->list);
758556bd 3843 mod_tree_remove(mod);
1fb9341a 3844 wake_up_all(&module_wq);
0be964be 3845 /* Wait for RCU-sched synchronizing before releasing mod->list. */
cb2f5536 3846 synchronize_rcu();
1fb9341a 3847 mutex_unlock(&module_mutex);
d913188c 3848 free_module:
35a9393c 3849 /* Free lock-classes; relies on the preceding sync_rcu() */
7523e4dc 3850 lockdep_free_key_range(mod->core_layout.base, mod->core_layout.size);
35a9393c 3851
34e1169d 3852 module_deallocate(mod, info);
d913188c 3853 free_copy:
34e1169d
KC
3854 free_copy(info);
3855 return err;
b99b87f7
PO
3856}
3857
17da2bd9
HC
3858SYSCALL_DEFINE3(init_module, void __user *, umod,
3859 unsigned long, len, const char __user *, uargs)
1da177e4 3860{
34e1169d
KC
3861 int err;
3862 struct load_info info = { };
1da177e4 3863
34e1169d
KC
3864 err = may_init_module();
3865 if (err)
3866 return err;
1da177e4 3867
34e1169d
KC
3868 pr_debug("init_module: umod=%p, len=%lu, uargs=%p\n",
3869 umod, len, uargs);
1da177e4 3870
34e1169d
KC
3871 err = copy_module_from_user(umod, len, &info);
3872 if (err)
3873 return err;
1da177e4 3874
2f3238ae 3875 return load_module(&info, uargs, 0);
34e1169d 3876}
94462ad3 3877
2f3238ae 3878SYSCALL_DEFINE3(finit_module, int, fd, const char __user *, uargs, int, flags)
34e1169d 3879{
34e1169d 3880 struct load_info info = { };
a1db7420
MZ
3881 loff_t size;
3882 void *hdr;
3883 int err;
94462ad3 3884
34e1169d
KC
3885 err = may_init_module();
3886 if (err)
3887 return err;
1da177e4 3888
2f3238ae 3889 pr_debug("finit_module: fd=%d, uargs=%p, flags=%i\n", fd, uargs, flags);
6c5db22d 3890
2f3238ae
RR
3891 if (flags & ~(MODULE_INIT_IGNORE_MODVERSIONS
3892 |MODULE_INIT_IGNORE_VERMAGIC))
3893 return -EINVAL;
d6de2c80 3894
a1db7420
MZ
3895 err = kernel_read_file_from_fd(fd, &hdr, &size, INT_MAX,
3896 READING_MODULE);
34e1169d
KC
3897 if (err)
3898 return err;
a1db7420
MZ
3899 info.hdr = hdr;
3900 info.len = size;
1da177e4 3901
2f3238ae 3902 return load_module(&info, uargs, flags);
1da177e4
LT
3903}
3904
3905static inline int within(unsigned long addr, void *start, unsigned long size)
3906{
3907 return ((void *)addr >= start && (void *)addr < start + size);
3908}
3909
3910#ifdef CONFIG_KALLSYMS
3911/*
3912 * This ignores the intensely annoying "mapping symbols" found
3913 * in ARM ELF files: $a, $t and $d.
3914 */
3915static inline int is_arm_mapping_symbol(const char *str)
3916{
2e3a10a1
RK
3917 if (str[0] == '.' && str[1] == 'L')
3918 return true;
6c34f1f5 3919 return str[0] == '$' && strchr("axtd", str[1])
1da177e4
LT
3920 && (str[2] == '\0' || str[2] == '.');
3921}
3922
2d25bc55 3923static const char *kallsyms_symbol_name(struct mod_kallsyms *kallsyms, unsigned int symnum)
2e7bac53 3924{
8244062e 3925 return kallsyms->strtab + kallsyms->symtab[symnum].st_name;
2e7bac53
RR
3926}
3927
2d25bc55
JY
3928/*
3929 * Given a module and address, find the corresponding symbol and return its name
3930 * while providing its size and offset if needed.
3931 */
3932static const char *find_kallsyms_symbol(struct module *mod,
3933 unsigned long addr,
3934 unsigned long *size,
3935 unsigned long *offset)
1da177e4
LT
3936{
3937 unsigned int i, best = 0;
93d77e7f 3938 unsigned long nextval, bestval;
8244062e 3939 struct mod_kallsyms *kallsyms = rcu_dereference_sched(mod->kallsyms);
1da177e4
LT
3940
3941 /* At worse, next value is at end of module */
a06f6211 3942 if (within_module_init(addr, mod))
7523e4dc 3943 nextval = (unsigned long)mod->init_layout.base+mod->init_layout.text_size;
22a8bdeb 3944 else
7523e4dc 3945 nextval = (unsigned long)mod->core_layout.base+mod->core_layout.text_size;
1da177e4 3946
93d77e7f
VW
3947 bestval = kallsyms_symbol_value(&kallsyms->symtab[best]);
3948
25985edc 3949 /* Scan for closest preceding symbol, and next symbol. (ELF
22a8bdeb 3950 starts real symbols at 1). */
8244062e 3951 for (i = 1; i < kallsyms->num_symtab; i++) {
93d77e7f
VW
3952 const Elf_Sym *sym = &kallsyms->symtab[i];
3953 unsigned long thisval = kallsyms_symbol_value(sym);
3954
3955 if (sym->st_shndx == SHN_UNDEF)
1da177e4
LT
3956 continue;
3957
3958 /* We ignore unnamed symbols: they're uninformative
3959 * and inserted at a whim. */
2d25bc55
JY
3960 if (*kallsyms_symbol_name(kallsyms, i) == '\0'
3961 || is_arm_mapping_symbol(kallsyms_symbol_name(kallsyms, i)))
2e7bac53
RR
3962 continue;
3963
93d77e7f 3964 if (thisval <= addr && thisval > bestval) {
1da177e4 3965 best = i;
93d77e7f
VW
3966 bestval = thisval;
3967 }
3968 if (thisval > addr && thisval < nextval)
3969 nextval = thisval;
1da177e4
LT
3970 }
3971
3972 if (!best)
3973 return NULL;
3974
ffb45122 3975 if (size)
93d77e7f 3976 *size = nextval - bestval;
ffb45122 3977 if (offset)
93d77e7f 3978 *offset = addr - bestval;
2d25bc55
JY
3979
3980 return kallsyms_symbol_name(kallsyms, best);
1da177e4
LT
3981}
3982
b865ea64
SS
3983void * __weak dereference_module_function_descriptor(struct module *mod,
3984 void *ptr)
3985{
3986 return ptr;
3987}
3988
6dd06c9f
RR
3989/* For kallsyms to ask for address resolution. NULL means not found. Careful
3990 * not to lock to avoid deadlock on oopses, simply disable preemption. */
92dfc9dc 3991const char *module_address_lookup(unsigned long addr,
6dd06c9f
RR
3992 unsigned long *size,
3993 unsigned long *offset,
3994 char **modname,
3995 char *namebuf)
1da177e4 3996{
cb2a5205 3997 const char *ret = NULL;
b7df4d1b 3998 struct module *mod;
1da177e4 3999
cb2a5205 4000 preempt_disable();
b7df4d1b
PZ
4001 mod = __module_address(addr);
4002 if (mod) {
4003 if (modname)
4004 *modname = mod->name;
2d25bc55
JY
4005
4006 ret = find_kallsyms_symbol(mod, addr, size, offset);
1da177e4 4007 }
6dd06c9f
RR
4008 /* Make a copy in here where it's safe */
4009 if (ret) {
4010 strncpy(namebuf, ret, KSYM_NAME_LEN - 1);
4011 ret = namebuf;
4012 }
cb2a5205 4013 preempt_enable();
b7df4d1b 4014
92dfc9dc 4015 return ret;
1da177e4
LT
4016}
4017
9d65cb4a
AD
4018int lookup_module_symbol_name(unsigned long addr, char *symname)
4019{
4020 struct module *mod;
4021
cb2a5205 4022 preempt_disable();
d72b3751 4023 list_for_each_entry_rcu(mod, &modules, list) {
0d21b0e3
RR
4024 if (mod->state == MODULE_STATE_UNFORMED)
4025 continue;
9b20a352 4026 if (within_module(addr, mod)) {
9d65cb4a
AD
4027 const char *sym;
4028
2d25bc55 4029 sym = find_kallsyms_symbol(mod, addr, NULL, NULL);
9d65cb4a
AD
4030 if (!sym)
4031 goto out;
2d25bc55 4032
9281acea 4033 strlcpy(symname, sym, KSYM_NAME_LEN);
cb2a5205 4034 preempt_enable();
9d65cb4a
AD
4035 return 0;
4036 }
4037 }
4038out:
cb2a5205 4039 preempt_enable();
9d65cb4a
AD
4040 return -ERANGE;
4041}
4042
a5c43dae
AD
4043int lookup_module_symbol_attrs(unsigned long addr, unsigned long *size,
4044 unsigned long *offset, char *modname, char *name)
4045{
4046 struct module *mod;
4047
cb2a5205 4048 preempt_disable();
d72b3751 4049 list_for_each_entry_rcu(mod, &modules, list) {
0d21b0e3
RR
4050 if (mod->state == MODULE_STATE_UNFORMED)
4051 continue;
9b20a352 4052 if (within_module(addr, mod)) {
a5c43dae
AD
4053 const char *sym;
4054
2d25bc55 4055 sym = find_kallsyms_symbol(mod, addr, size, offset);
a5c43dae
AD
4056 if (!sym)
4057 goto out;
4058 if (modname)
9281acea 4059 strlcpy(modname, mod->name, MODULE_NAME_LEN);
a5c43dae 4060 if (name)
9281acea 4061 strlcpy(name, sym, KSYM_NAME_LEN);
cb2a5205 4062 preempt_enable();
a5c43dae
AD
4063 return 0;
4064 }
4065 }
4066out:
cb2a5205 4067 preempt_enable();
a5c43dae
AD
4068 return -ERANGE;
4069}
4070
ea07890a
AD
4071int module_get_kallsym(unsigned int symnum, unsigned long *value, char *type,
4072 char *name, char *module_name, int *exported)
1da177e4
LT
4073{
4074 struct module *mod;
4075
cb2a5205 4076 preempt_disable();
d72b3751 4077 list_for_each_entry_rcu(mod, &modules, list) {
8244062e
RR
4078 struct mod_kallsyms *kallsyms;
4079
0d21b0e3
RR
4080 if (mod->state == MODULE_STATE_UNFORMED)
4081 continue;
8244062e
RR
4082 kallsyms = rcu_dereference_sched(mod->kallsyms);
4083 if (symnum < kallsyms->num_symtab) {
93d77e7f
VW
4084 const Elf_Sym *sym = &kallsyms->symtab[symnum];
4085
4086 *value = kallsyms_symbol_value(sym);
4087 *type = sym->st_size;
2d25bc55 4088 strlcpy(name, kallsyms_symbol_name(kallsyms, symnum), KSYM_NAME_LEN);
9281acea 4089 strlcpy(module_name, mod->name, MODULE_NAME_LEN);
ca4787b7 4090 *exported = is_exported(name, *value, mod);
cb2a5205 4091 preempt_enable();
ea07890a 4092 return 0;
1da177e4 4093 }
8244062e 4094 symnum -= kallsyms->num_symtab;
1da177e4 4095 }
cb2a5205 4096 preempt_enable();
ea07890a 4097 return -ERANGE;
1da177e4
LT
4098}
4099
2d25bc55
JY
4100/* Given a module and name of symbol, find and return the symbol's value */
4101static unsigned long find_kallsyms_symbol_value(struct module *mod, const char *name)
1da177e4
LT
4102{
4103 unsigned int i;
8244062e 4104 struct mod_kallsyms *kallsyms = rcu_dereference_sched(mod->kallsyms);
1da177e4 4105
93d77e7f
VW
4106 for (i = 0; i < kallsyms->num_symtab; i++) {
4107 const Elf_Sym *sym = &kallsyms->symtab[i];
4108
2d25bc55 4109 if (strcmp(name, kallsyms_symbol_name(kallsyms, i)) == 0 &&
93d77e7f
VW
4110 sym->st_shndx != SHN_UNDEF)
4111 return kallsyms_symbol_value(sym);
4112 }
1da177e4
LT
4113 return 0;
4114}
4115
4116/* Look for this name: can be of form module:name. */
4117unsigned long module_kallsyms_lookup_name(const char *name)
4118{
4119 struct module *mod;
4120 char *colon;
4121 unsigned long ret = 0;
4122
4123 /* Don't lock: we're in enough trouble already. */
cb2a5205 4124 preempt_disable();
17586188 4125 if ((colon = strnchr(name, MODULE_NAME_LEN, ':')) != NULL) {
4f6de4d5 4126 if ((mod = find_module_all(name, colon - name, false)) != NULL)
2d25bc55 4127 ret = find_kallsyms_symbol_value(mod, colon+1);
1da177e4 4128 } else {
0d21b0e3
RR
4129 list_for_each_entry_rcu(mod, &modules, list) {
4130 if (mod->state == MODULE_STATE_UNFORMED)
4131 continue;
2d25bc55 4132 if ((ret = find_kallsyms_symbol_value(mod, name)) != 0)
1da177e4 4133 break;
0d21b0e3 4134 }
1da177e4 4135 }
cb2a5205 4136 preempt_enable();
1da177e4
LT
4137 return ret;
4138}
75a66614
AK
4139
4140int module_kallsyms_on_each_symbol(int (*fn)(void *, const char *,
4141 struct module *, unsigned long),
4142 void *data)
4143{
4144 struct module *mod;
4145 unsigned int i;
4146 int ret;
4147
0be964be
PZ
4148 module_assert_mutex();
4149
75a66614 4150 list_for_each_entry(mod, &modules, list) {
8244062e
RR
4151 /* We hold module_mutex: no need for rcu_dereference_sched */
4152 struct mod_kallsyms *kallsyms = mod->kallsyms;
4153
0d21b0e3
RR
4154 if (mod->state == MODULE_STATE_UNFORMED)
4155 continue;
8244062e 4156 for (i = 0; i < kallsyms->num_symtab; i++) {
93d77e7f 4157 const Elf_Sym *sym = &kallsyms->symtab[i];
9f2d1e68 4158
93d77e7f 4159 if (sym->st_shndx == SHN_UNDEF)
9f2d1e68
JY
4160 continue;
4161
2d25bc55 4162 ret = fn(data, kallsyms_symbol_name(kallsyms, i),
93d77e7f 4163 mod, kallsyms_symbol_value(sym));
75a66614
AK
4164 if (ret != 0)
4165 return ret;
4166 }
4167 }
4168 return 0;
4169}
1da177e4
LT
4170#endif /* CONFIG_KALLSYMS */
4171
7fd8329b
PM
4172/* Maximum number of characters written by module_flags() */
4173#define MODULE_FLAGS_BUF_SIZE (TAINT_FLAGS_COUNT + 4)
4174
4175/* Keep in sync with MODULE_FLAGS_BUF_SIZE !!! */
21aa9280 4176static char *module_flags(struct module *mod, char *buf)
fa3ba2e8
FM
4177{
4178 int bx = 0;
4179
0d21b0e3 4180 BUG_ON(mod->state == MODULE_STATE_UNFORMED);
21aa9280
AV
4181 if (mod->taints ||
4182 mod->state == MODULE_STATE_GOING ||
4183 mod->state == MODULE_STATE_COMING) {
fa3ba2e8 4184 buf[bx++] = '(';
cca3e707 4185 bx += module_flags_taint(mod, buf + bx);
21aa9280
AV
4186 /* Show a - for module-is-being-unloaded */
4187 if (mod->state == MODULE_STATE_GOING)
4188 buf[bx++] = '-';
4189 /* Show a + for module-is-being-loaded */
4190 if (mod->state == MODULE_STATE_COMING)
4191 buf[bx++] = '+';
fa3ba2e8
FM
4192 buf[bx++] = ')';
4193 }
4194 buf[bx] = '\0';
4195
4196 return buf;
4197}
4198
3b5d5c6b
AD
4199#ifdef CONFIG_PROC_FS
4200/* Called by the /proc file system to return a list of modules. */
4201static void *m_start(struct seq_file *m, loff_t *pos)
4202{
4203 mutex_lock(&module_mutex);
4204 return seq_list_start(&modules, *pos);
4205}
4206
4207static void *m_next(struct seq_file *m, void *p, loff_t *pos)
4208{
4209 return seq_list_next(p, &modules, pos);
4210}
4211
4212static void m_stop(struct seq_file *m, void *p)
4213{
4214 mutex_unlock(&module_mutex);
4215}
4216
1da177e4
LT
4217static int m_show(struct seq_file *m, void *p)
4218{
4219 struct module *mod = list_entry(p, struct module, list);
7fd8329b 4220 char buf[MODULE_FLAGS_BUF_SIZE];
668533dc 4221 void *value;
fa3ba2e8 4222
0d21b0e3
RR
4223 /* We always ignore unformed modules. */
4224 if (mod->state == MODULE_STATE_UNFORMED)
4225 return 0;
4226
2f0f2a33 4227 seq_printf(m, "%s %u",
7523e4dc 4228 mod->name, mod->init_layout.size + mod->core_layout.size);
1da177e4
LT
4229 print_unload_info(m, mod);
4230
4231 /* Informative for users. */
4232 seq_printf(m, " %s",
6da0b565
IA
4233 mod->state == MODULE_STATE_GOING ? "Unloading" :
4234 mod->state == MODULE_STATE_COMING ? "Loading" :
1da177e4
LT
4235 "Live");
4236 /* Used by oprofile and other similar tools. */
668533dc
LT
4237 value = m->private ? NULL : mod->core_layout.base;
4238 seq_printf(m, " 0x%px", value);
1da177e4 4239
fa3ba2e8
FM
4240 /* Taints info */
4241 if (mod->taints)
21aa9280 4242 seq_printf(m, " %s", module_flags(mod, buf));
fa3ba2e8 4243
6da0b565 4244 seq_puts(m, "\n");
1da177e4
LT
4245 return 0;
4246}
4247
4248/* Format: modulename size refcount deps address
4249
4250 Where refcount is a number or -, and deps is a comma-separated list
4251 of depends or -.
4252*/
3b5d5c6b 4253static const struct seq_operations modules_op = {
1da177e4
LT
4254 .start = m_start,
4255 .next = m_next,
4256 .stop = m_stop,
4257 .show = m_show
4258};
4259
516fb7f2
LT
4260/*
4261 * This also sets the "private" pointer to non-NULL if the
4262 * kernel pointers should be hidden (so you can just test
4263 * "m->private" to see if you should keep the values private).
4264 *
4265 * We use the same logic as for /proc/kallsyms.
4266 */
3b5d5c6b
AD
4267static int modules_open(struct inode *inode, struct file *file)
4268{
516fb7f2
LT
4269 int err = seq_open(file, &modules_op);
4270
4271 if (!err) {
4272 struct seq_file *m = file->private_data;
4273 m->private = kallsyms_show_value() ? NULL : (void *)8ul;
4274 }
4275
3f553b30 4276 return err;
3b5d5c6b
AD
4277}
4278
4279static const struct file_operations proc_modules_operations = {
4280 .open = modules_open,
4281 .read = seq_read,
4282 .llseek = seq_lseek,
4283 .release = seq_release,
4284};
4285
4286static int __init proc_modules_init(void)
4287{
4288 proc_create("modules", 0, NULL, &proc_modules_operations);
4289 return 0;
4290}
4291module_init(proc_modules_init);
4292#endif
4293
1da177e4
LT
4294/* Given an address, look for it in the module exception tables. */
4295const struct exception_table_entry *search_module_extables(unsigned long addr)
4296{
1da177e4
LT
4297 const struct exception_table_entry *e = NULL;
4298 struct module *mod;
4299
24da1cbf 4300 preempt_disable();
5ff22646
PZ
4301 mod = __module_address(addr);
4302 if (!mod)
4303 goto out;
22a8bdeb 4304
5ff22646
PZ
4305 if (!mod->num_exentries)
4306 goto out;
4307
4308 e = search_extable(mod->extable,
a94c33dd 4309 mod->num_exentries,
5ff22646
PZ
4310 addr);
4311out:
24da1cbf 4312 preempt_enable();
1da177e4 4313
5ff22646
PZ
4314 /*
4315 * Now, if we found one, we are running inside it now, hence
4316 * we cannot unload the module, hence no refcnt needed.
4317 */
1da177e4
LT
4318 return e;
4319}
4320
4d435f9d 4321/*
e610499e
RR
4322 * is_module_address - is this address inside a module?
4323 * @addr: the address to check.
4324 *
4325 * See is_module_text_address() if you simply want to see if the address
4326 * is code (not data).
4d435f9d 4327 */
e610499e 4328bool is_module_address(unsigned long addr)
4d435f9d 4329{
e610499e 4330 bool ret;
4d435f9d 4331
24da1cbf 4332 preempt_disable();
e610499e 4333 ret = __module_address(addr) != NULL;
24da1cbf 4334 preempt_enable();
4d435f9d 4335
e610499e 4336 return ret;
4d435f9d
IM
4337}
4338
e610499e
RR
4339/*
4340 * __module_address - get the module which contains an address.
4341 * @addr: the address.
4342 *
4343 * Must be called with preempt disabled or module mutex held so that
4344 * module doesn't get freed during this.
4345 */
714f83d5 4346struct module *__module_address(unsigned long addr)
1da177e4
LT
4347{
4348 struct module *mod;
4349
3a642e99
RR
4350 if (addr < module_addr_min || addr > module_addr_max)
4351 return NULL;
4352
0be964be
PZ
4353 module_assert_mutex_or_preempt();
4354
6c9692e2 4355 mod = mod_find(addr);
93c2e105
PZ
4356 if (mod) {
4357 BUG_ON(!within_module(addr, mod));
0d21b0e3 4358 if (mod->state == MODULE_STATE_UNFORMED)
93c2e105 4359 mod = NULL;
0d21b0e3 4360 }
93c2e105 4361 return mod;
1da177e4 4362}
c6b37801 4363EXPORT_SYMBOL_GPL(__module_address);
1da177e4 4364
e610499e
RR
4365/*
4366 * is_module_text_address - is this address inside module code?
4367 * @addr: the address to check.
4368 *
4369 * See is_module_address() if you simply want to see if the address is
4370 * anywhere in a module. See kernel_text_address() for testing if an
4371 * address corresponds to kernel or module code.
4372 */
4373bool is_module_text_address(unsigned long addr)
4374{
4375 bool ret;
4376
4377 preempt_disable();
4378 ret = __module_text_address(addr) != NULL;
4379 preempt_enable();
4380
4381 return ret;
4382}
4383
4384/*
4385 * __module_text_address - get the module whose code contains an address.
4386 * @addr: the address.
4387 *
4388 * Must be called with preempt disabled or module mutex held so that
4389 * module doesn't get freed during this.
4390 */
4391struct module *__module_text_address(unsigned long addr)
4392{
4393 struct module *mod = __module_address(addr);
4394 if (mod) {
4395 /* Make sure it's within the text section. */
7523e4dc
RR
4396 if (!within(addr, mod->init_layout.base, mod->init_layout.text_size)
4397 && !within(addr, mod->core_layout.base, mod->core_layout.text_size))
e610499e
RR
4398 mod = NULL;
4399 }
4400 return mod;
4401}
c6b37801 4402EXPORT_SYMBOL_GPL(__module_text_address);
e610499e 4403
1da177e4
LT
4404/* Don't grab lock, we're oopsing. */
4405void print_modules(void)
4406{
4407 struct module *mod;
7fd8329b 4408 char buf[MODULE_FLAGS_BUF_SIZE];
1da177e4 4409
b231125a 4410 printk(KERN_DEFAULT "Modules linked in:");
d72b3751
AK
4411 /* Most callers should already have preempt disabled, but make sure */
4412 preempt_disable();
0d21b0e3
RR
4413 list_for_each_entry_rcu(mod, &modules, list) {
4414 if (mod->state == MODULE_STATE_UNFORMED)
4415 continue;
27bba4d6 4416 pr_cont(" %s%s", mod->name, module_flags(mod, buf));
0d21b0e3 4417 }
d72b3751 4418 preempt_enable();
e14af7ee 4419 if (last_unloaded_module[0])
27bba4d6
JS
4420 pr_cont(" [last unloaded: %s]", last_unloaded_module);
4421 pr_cont("\n");
1da177e4
LT
4422}
4423
1da177e4 4424#ifdef CONFIG_MODVERSIONS
8c8ef42a
RR
4425/* Generate the signature for all relevant module structures here.
4426 * If these change, we don't want to try to parse the module. */
4427void module_layout(struct module *mod,
4428 struct modversion_info *ver,
4429 struct kernel_param *kp,
4430 struct kernel_symbol *ks,
65498646 4431 struct tracepoint * const *tp)
8c8ef42a
RR
4432{
4433}
4434EXPORT_SYMBOL(module_layout);
1da177e4 4435#endif