ipv6: Fix nexthdr for reinjection
[deliverable/linux.git] / fs / exec.c
CommitLineData
1da177e4
LT
1/*
2 * linux/fs/exec.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 */
6
7/*
8 * #!-checking implemented by tytso.
9 */
10/*
11 * Demand-loading implemented 01.12.91 - no need to read anything but
12 * the header into memory. The inode of the executable is put into
13 * "current->executable", and page faults do the actual loading. Clean.
14 *
15 * Once more I can proudly say that linux stood up to being changed: it
16 * was less than 2 hours work to get demand-loading completely implemented.
17 *
18 * Demand loading changed July 1993 by Eric Youngdale. Use mmap instead,
19 * current->executable is only used by the procfs. This allows a dispatch
20 * table to check for several different types of binary formats. We keep
21 * trying until we recognize the file or we run out of supported binary
22 * formats.
23 */
24
1da177e4
LT
25#include <linux/slab.h>
26#include <linux/file.h>
9f3acc31 27#include <linux/fdtable.h>
ba92a43d 28#include <linux/mm.h>
615d6e87 29#include <linux/vmacache.h>
1da177e4
LT
30#include <linux/stat.h>
31#include <linux/fcntl.h>
ba92a43d 32#include <linux/swap.h>
74aadce9 33#include <linux/string.h>
1da177e4 34#include <linux/init.h>
ca5b172b 35#include <linux/pagemap.h>
cdd6c482 36#include <linux/perf_event.h>
1da177e4
LT
37#include <linux/highmem.h>
38#include <linux/spinlock.h>
39#include <linux/key.h>
40#include <linux/personality.h>
41#include <linux/binfmts.h>
1da177e4 42#include <linux/utsname.h>
84d73786 43#include <linux/pid_namespace.h>
1da177e4
LT
44#include <linux/module.h>
45#include <linux/namei.h>
1da177e4
LT
46#include <linux/mount.h>
47#include <linux/security.h>
48#include <linux/syscalls.h>
8f0ab514 49#include <linux/tsacct_kern.h>
9f46080c 50#include <linux/cn_proc.h>
473ae30b 51#include <linux/audit.h>
6341c393 52#include <linux/tracehook.h>
5f4123be 53#include <linux/kmod.h>
6110e3ab 54#include <linux/fsnotify.h>
5ad4e53b 55#include <linux/fs_struct.h>
61be228a 56#include <linux/pipe_fs_i.h>
3d5992d2 57#include <linux/oom.h>
0e028465 58#include <linux/compat.h>
b44a7dfc 59#include <linux/vmalloc.h>
1da177e4
LT
60
61#include <asm/uaccess.h>
62#include <asm/mmu_context.h>
b6a2fea3 63#include <asm/tlb.h>
43d2b113
KH
64
65#include <trace/events/task.h>
a6f76f23 66#include "internal.h"
1da177e4 67
4ff16c25
DS
68#include <trace/events/sched.h>
69
d6e71144
AC
70int suid_dumpable = 0;
71
e4dc1b14 72static LIST_HEAD(formats);
1da177e4
LT
73static DEFINE_RWLOCK(binfmt_lock);
74
8fc3dc5a 75void __register_binfmt(struct linux_binfmt * fmt, int insert)
1da177e4 76{
8fc3dc5a 77 BUG_ON(!fmt);
92eaa565
ON
78 if (WARN_ON(!fmt->load_binary))
79 return;
1da177e4 80 write_lock(&binfmt_lock);
74641f58
IK
81 insert ? list_add(&fmt->lh, &formats) :
82 list_add_tail(&fmt->lh, &formats);
1da177e4 83 write_unlock(&binfmt_lock);
1da177e4
LT
84}
85
74641f58 86EXPORT_SYMBOL(__register_binfmt);
1da177e4 87
f6b450d4 88void unregister_binfmt(struct linux_binfmt * fmt)
1da177e4 89{
1da177e4 90 write_lock(&binfmt_lock);
e4dc1b14 91 list_del(&fmt->lh);
1da177e4 92 write_unlock(&binfmt_lock);
1da177e4
LT
93}
94
95EXPORT_SYMBOL(unregister_binfmt);
96
97static inline void put_binfmt(struct linux_binfmt * fmt)
98{
99 module_put(fmt->module);
100}
101
90f8572b
EB
102bool path_noexec(const struct path *path)
103{
104 return (path->mnt->mnt_flags & MNT_NOEXEC) ||
105 (path->mnt->mnt_sb->s_iflags & SB_I_NOEXEC);
106}
107
69369a70 108#ifdef CONFIG_USELIB
1da177e4
LT
109/*
110 * Note that a shared library must be both readable and executable due to
111 * security reasons.
112 *
113 * Also note that we take the address to load from from the file itself.
114 */
1e7bfb21 115SYSCALL_DEFINE1(uselib, const char __user *, library)
1da177e4 116{
72c2d531 117 struct linux_binfmt *fmt;
964bd183 118 struct file *file;
91a27b2a 119 struct filename *tmp = getname(library);
964bd183 120 int error = PTR_ERR(tmp);
47c805dc
AV
121 static const struct open_flags uselib_flags = {
122 .open_flag = O_LARGEFILE | O_RDONLY | __FMODE_EXEC,
62fb4a15 123 .acc_mode = MAY_READ | MAY_EXEC,
f9652e10
AV
124 .intent = LOOKUP_OPEN,
125 .lookup_flags = LOOKUP_FOLLOW,
47c805dc 126 };
964bd183 127
6e8341a1
AV
128 if (IS_ERR(tmp))
129 goto out;
130
f9652e10 131 file = do_filp_open(AT_FDCWD, tmp, &uselib_flags);
6e8341a1
AV
132 putname(tmp);
133 error = PTR_ERR(file);
134 if (IS_ERR(file))
1da177e4
LT
135 goto out;
136
137 error = -EINVAL;
496ad9aa 138 if (!S_ISREG(file_inode(file)->i_mode))
1da177e4
LT
139 goto exit;
140
30524472 141 error = -EACCES;
90f8572b 142 if (path_noexec(&file->f_path))
1da177e4
LT
143 goto exit;
144
2a12a9d7 145 fsnotify_open(file);
6110e3ab 146
1da177e4 147 error = -ENOEXEC;
1da177e4 148
72c2d531
AV
149 read_lock(&binfmt_lock);
150 list_for_each_entry(fmt, &formats, lh) {
151 if (!fmt->load_shlib)
152 continue;
153 if (!try_module_get(fmt->module))
154 continue;
1da177e4 155 read_unlock(&binfmt_lock);
72c2d531
AV
156 error = fmt->load_shlib(file);
157 read_lock(&binfmt_lock);
158 put_binfmt(fmt);
159 if (error != -ENOEXEC)
160 break;
1da177e4 161 }
72c2d531 162 read_unlock(&binfmt_lock);
6e8341a1 163exit:
1da177e4
LT
164 fput(file);
165out:
166 return error;
1da177e4 167}
69369a70 168#endif /* #ifdef CONFIG_USELIB */
1da177e4 169
b6a2fea3 170#ifdef CONFIG_MMU
ae6b585e
ON
171/*
172 * The nascent bprm->mm is not visible until exec_mmap() but it can
173 * use a lot of memory, account these pages in current->mm temporary
174 * for oom_badness()->get_mm_rss(). Once exec succeeds or fails, we
175 * change the counter back via acct_arg_size(0).
176 */
0e028465 177static void acct_arg_size(struct linux_binprm *bprm, unsigned long pages)
3c77f845
ON
178{
179 struct mm_struct *mm = current->mm;
180 long diff = (long)(pages - bprm->vma_pages);
181
182 if (!mm || !diff)
183 return;
184
185 bprm->vma_pages = pages;
3c77f845 186 add_mm_counter(mm, MM_ANONPAGES, diff);
3c77f845
ON
187}
188
0e028465 189static struct page *get_arg_page(struct linux_binprm *bprm, unsigned long pos,
b6a2fea3
OW
190 int write)
191{
192 struct page *page;
193 int ret;
194
195#ifdef CONFIG_STACK_GROWSUP
196 if (write) {
d05f3169 197 ret = expand_downwards(bprm->vma, pos);
b6a2fea3
OW
198 if (ret < 0)
199 return NULL;
200 }
201#endif
1e987790
DH
202 /*
203 * We are doing an exec(). 'current' is the process
204 * doing the exec and bprm->mm is the new process's mm.
205 */
206 ret = get_user_pages_remote(current, bprm->mm, pos, 1, write,
207 1, &page, NULL);
b6a2fea3
OW
208 if (ret <= 0)
209 return NULL;
210
211 if (write) {
b6a2fea3 212 unsigned long size = bprm->vma->vm_end - bprm->vma->vm_start;
a64e715f
LT
213 struct rlimit *rlim;
214
3c77f845
ON
215 acct_arg_size(bprm, size / PAGE_SIZE);
216
a64e715f
LT
217 /*
218 * We've historically supported up to 32 pages (ARG_MAX)
219 * of argument strings even with small stacks
220 */
221 if (size <= ARG_MAX)
222 return page;
b6a2fea3
OW
223
224 /*
225 * Limit to 1/4-th the stack size for the argv+env strings.
226 * This ensures that:
227 * - the remaining binfmt code will not run out of stack space,
228 * - the program will have a reasonable amount of stack left
229 * to work from.
230 */
a64e715f 231 rlim = current->signal->rlim;
d554ed89 232 if (size > ACCESS_ONCE(rlim[RLIMIT_STACK].rlim_cur) / 4) {
b6a2fea3
OW
233 put_page(page);
234 return NULL;
235 }
236 }
237
238 return page;
239}
240
241static void put_arg_page(struct page *page)
242{
243 put_page(page);
244}
245
246static void free_arg_page(struct linux_binprm *bprm, int i)
247{
248}
249
250static void free_arg_pages(struct linux_binprm *bprm)
251{
252}
253
254static void flush_arg_page(struct linux_binprm *bprm, unsigned long pos,
255 struct page *page)
256{
257 flush_cache_page(bprm->vma, pos, page_to_pfn(page));
258}
259
260static int __bprm_mm_init(struct linux_binprm *bprm)
261{
eaccbfa5 262 int err;
b6a2fea3
OW
263 struct vm_area_struct *vma = NULL;
264 struct mm_struct *mm = bprm->mm;
265
266 bprm->vma = vma = kmem_cache_zalloc(vm_area_cachep, GFP_KERNEL);
267 if (!vma)
eaccbfa5 268 return -ENOMEM;
b6a2fea3
OW
269
270 down_write(&mm->mmap_sem);
271 vma->vm_mm = mm;
272
273 /*
274 * Place the stack at the largest stack address the architecture
275 * supports. Later, we'll move this to an appropriate place. We don't
276 * use STACK_TOP because that can depend on attributes which aren't
277 * configured yet.
278 */
aacb3d17 279 BUILD_BUG_ON(VM_STACK_FLAGS & VM_STACK_INCOMPLETE_SETUP);
b6a2fea3
OW
280 vma->vm_end = STACK_TOP_MAX;
281 vma->vm_start = vma->vm_end - PAGE_SIZE;
d9104d1c 282 vma->vm_flags = VM_SOFTDIRTY | VM_STACK_FLAGS | VM_STACK_INCOMPLETE_SETUP;
3ed75eb8 283 vma->vm_page_prot = vm_get_page_prot(vma->vm_flags);
5beb4930 284 INIT_LIST_HEAD(&vma->anon_vma_chain);
462e635e 285
b6a2fea3 286 err = insert_vm_struct(mm, vma);
eaccbfa5 287 if (err)
b6a2fea3 288 goto err;
b6a2fea3
OW
289
290 mm->stack_vm = mm->total_vm = 1;
fe3d197f 291 arch_bprm_mm_init(mm, vma);
b6a2fea3 292 up_write(&mm->mmap_sem);
b6a2fea3 293 bprm->p = vma->vm_end - sizeof(void *);
b6a2fea3 294 return 0;
b6a2fea3 295err:
eaccbfa5
LFC
296 up_write(&mm->mmap_sem);
297 bprm->vma = NULL;
298 kmem_cache_free(vm_area_cachep, vma);
b6a2fea3
OW
299 return err;
300}
301
302static bool valid_arg_len(struct linux_binprm *bprm, long len)
303{
304 return len <= MAX_ARG_STRLEN;
305}
306
307#else
308
0e028465 309static inline void acct_arg_size(struct linux_binprm *bprm, unsigned long pages)
3c77f845
ON
310{
311}
312
0e028465 313static struct page *get_arg_page(struct linux_binprm *bprm, unsigned long pos,
b6a2fea3
OW
314 int write)
315{
316 struct page *page;
317
318 page = bprm->page[pos / PAGE_SIZE];
319 if (!page && write) {
320 page = alloc_page(GFP_HIGHUSER|__GFP_ZERO);
321 if (!page)
322 return NULL;
323 bprm->page[pos / PAGE_SIZE] = page;
324 }
325
326 return page;
327}
328
329static void put_arg_page(struct page *page)
330{
331}
332
333static void free_arg_page(struct linux_binprm *bprm, int i)
334{
335 if (bprm->page[i]) {
336 __free_page(bprm->page[i]);
337 bprm->page[i] = NULL;
338 }
339}
340
341static void free_arg_pages(struct linux_binprm *bprm)
342{
343 int i;
344
345 for (i = 0; i < MAX_ARG_PAGES; i++)
346 free_arg_page(bprm, i);
347}
348
349static void flush_arg_page(struct linux_binprm *bprm, unsigned long pos,
350 struct page *page)
351{
352}
353
354static int __bprm_mm_init(struct linux_binprm *bprm)
355{
356 bprm->p = PAGE_SIZE * MAX_ARG_PAGES - sizeof(void *);
357 return 0;
358}
359
360static bool valid_arg_len(struct linux_binprm *bprm, long len)
361{
362 return len <= bprm->p;
363}
364
365#endif /* CONFIG_MMU */
366
367/*
368 * Create a new mm_struct and populate it with a temporary stack
369 * vm_area_struct. We don't have enough context at this point to set the stack
370 * flags, permissions, and offset, so we use temporary values. We'll update
371 * them later in setup_arg_pages().
372 */
9cc64cea 373static int bprm_mm_init(struct linux_binprm *bprm)
b6a2fea3
OW
374{
375 int err;
376 struct mm_struct *mm = NULL;
377
378 bprm->mm = mm = mm_alloc();
379 err = -ENOMEM;
380 if (!mm)
381 goto err;
382
b6a2fea3
OW
383 err = __bprm_mm_init(bprm);
384 if (err)
385 goto err;
386
387 return 0;
388
389err:
390 if (mm) {
391 bprm->mm = NULL;
392 mmdrop(mm);
393 }
394
395 return err;
396}
397
ba2d0162 398struct user_arg_ptr {
0e028465
ON
399#ifdef CONFIG_COMPAT
400 bool is_compat;
401#endif
402 union {
403 const char __user *const __user *native;
404#ifdef CONFIG_COMPAT
38b983b3 405 const compat_uptr_t __user *compat;
0e028465
ON
406#endif
407 } ptr;
ba2d0162
ON
408};
409
410static const char __user *get_user_arg_ptr(struct user_arg_ptr argv, int nr)
1d1dbf81 411{
0e028465
ON
412 const char __user *native;
413
414#ifdef CONFIG_COMPAT
415 if (unlikely(argv.is_compat)) {
416 compat_uptr_t compat;
417
418 if (get_user(compat, argv.ptr.compat + nr))
419 return ERR_PTR(-EFAULT);
1d1dbf81 420
0e028465
ON
421 return compat_ptr(compat);
422 }
423#endif
424
425 if (get_user(native, argv.ptr.native + nr))
1d1dbf81
ON
426 return ERR_PTR(-EFAULT);
427
0e028465 428 return native;
1d1dbf81
ON
429}
430
1da177e4
LT
431/*
432 * count() counts the number of strings in array ARGV.
433 */
ba2d0162 434static int count(struct user_arg_ptr argv, int max)
1da177e4
LT
435{
436 int i = 0;
437
0e028465 438 if (argv.ptr.native != NULL) {
1da177e4 439 for (;;) {
1d1dbf81 440 const char __user *p = get_user_arg_ptr(argv, i);
1da177e4 441
1da177e4
LT
442 if (!p)
443 break;
1d1dbf81
ON
444
445 if (IS_ERR(p))
446 return -EFAULT;
447
6d92d4f6 448 if (i >= max)
1da177e4 449 return -E2BIG;
6d92d4f6 450 ++i;
9aea5a65
RM
451
452 if (fatal_signal_pending(current))
453 return -ERESTARTNOHAND;
1da177e4
LT
454 cond_resched();
455 }
456 }
457 return i;
458}
459
460/*
b6a2fea3
OW
461 * 'copy_strings()' copies argument/environment strings from the old
462 * processes's memory to the new process's stack. The call to get_user_pages()
463 * ensures the destination page is created and not swapped out.
1da177e4 464 */
ba2d0162 465static int copy_strings(int argc, struct user_arg_ptr argv,
75c96f85 466 struct linux_binprm *bprm)
1da177e4
LT
467{
468 struct page *kmapped_page = NULL;
469 char *kaddr = NULL;
b6a2fea3 470 unsigned long kpos = 0;
1da177e4
LT
471 int ret;
472
473 while (argc-- > 0) {
d7627467 474 const char __user *str;
1da177e4
LT
475 int len;
476 unsigned long pos;
477
1d1dbf81
ON
478 ret = -EFAULT;
479 str = get_user_arg_ptr(argv, argc);
480 if (IS_ERR(str))
1da177e4 481 goto out;
1da177e4 482
1d1dbf81
ON
483 len = strnlen_user(str, MAX_ARG_STRLEN);
484 if (!len)
485 goto out;
486
487 ret = -E2BIG;
488 if (!valid_arg_len(bprm, len))
1da177e4 489 goto out;
1da177e4 490
b6a2fea3 491 /* We're going to work our way backwords. */
1da177e4 492 pos = bprm->p;
b6a2fea3
OW
493 str += len;
494 bprm->p -= len;
1da177e4
LT
495
496 while (len > 0) {
1da177e4 497 int offset, bytes_to_copy;
1da177e4 498
9aea5a65
RM
499 if (fatal_signal_pending(current)) {
500 ret = -ERESTARTNOHAND;
501 goto out;
502 }
7993bc1f
RM
503 cond_resched();
504
1da177e4 505 offset = pos % PAGE_SIZE;
b6a2fea3
OW
506 if (offset == 0)
507 offset = PAGE_SIZE;
508
509 bytes_to_copy = offset;
510 if (bytes_to_copy > len)
511 bytes_to_copy = len;
512
513 offset -= bytes_to_copy;
514 pos -= bytes_to_copy;
515 str -= bytes_to_copy;
516 len -= bytes_to_copy;
517
518 if (!kmapped_page || kpos != (pos & PAGE_MASK)) {
519 struct page *page;
520
521 page = get_arg_page(bprm, pos, 1);
1da177e4 522 if (!page) {
b6a2fea3 523 ret = -E2BIG;
1da177e4
LT
524 goto out;
525 }
1da177e4 526
b6a2fea3
OW
527 if (kmapped_page) {
528 flush_kernel_dcache_page(kmapped_page);
1da177e4 529 kunmap(kmapped_page);
b6a2fea3
OW
530 put_arg_page(kmapped_page);
531 }
1da177e4
LT
532 kmapped_page = page;
533 kaddr = kmap(kmapped_page);
b6a2fea3
OW
534 kpos = pos & PAGE_MASK;
535 flush_arg_page(bprm, kpos, kmapped_page);
1da177e4 536 }
b6a2fea3 537 if (copy_from_user(kaddr+offset, str, bytes_to_copy)) {
1da177e4
LT
538 ret = -EFAULT;
539 goto out;
540 }
1da177e4
LT
541 }
542 }
543 ret = 0;
544out:
b6a2fea3
OW
545 if (kmapped_page) {
546 flush_kernel_dcache_page(kmapped_page);
1da177e4 547 kunmap(kmapped_page);
b6a2fea3
OW
548 put_arg_page(kmapped_page);
549 }
1da177e4
LT
550 return ret;
551}
552
553/*
554 * Like copy_strings, but get argv and its values from kernel memory.
555 */
ba2d0162 556int copy_strings_kernel(int argc, const char *const *__argv,
d7627467 557 struct linux_binprm *bprm)
1da177e4
LT
558{
559 int r;
560 mm_segment_t oldfs = get_fs();
ba2d0162 561 struct user_arg_ptr argv = {
0e028465 562 .ptr.native = (const char __user *const __user *)__argv,
ba2d0162
ON
563 };
564
1da177e4 565 set_fs(KERNEL_DS);
ba2d0162 566 r = copy_strings(argc, argv, bprm);
1da177e4 567 set_fs(oldfs);
ba2d0162 568
1da177e4
LT
569 return r;
570}
1da177e4
LT
571EXPORT_SYMBOL(copy_strings_kernel);
572
573#ifdef CONFIG_MMU
b6a2fea3 574
1da177e4 575/*
b6a2fea3
OW
576 * During bprm_mm_init(), we create a temporary stack at STACK_TOP_MAX. Once
577 * the binfmt code determines where the new stack should reside, we shift it to
578 * its final location. The process proceeds as follows:
1da177e4 579 *
b6a2fea3
OW
580 * 1) Use shift to calculate the new vma endpoints.
581 * 2) Extend vma to cover both the old and new ranges. This ensures the
582 * arguments passed to subsequent functions are consistent.
583 * 3) Move vma's page tables to the new range.
584 * 4) Free up any cleared pgd range.
585 * 5) Shrink the vma to cover only the new range.
1da177e4 586 */
b6a2fea3 587static int shift_arg_pages(struct vm_area_struct *vma, unsigned long shift)
1da177e4
LT
588{
589 struct mm_struct *mm = vma->vm_mm;
b6a2fea3
OW
590 unsigned long old_start = vma->vm_start;
591 unsigned long old_end = vma->vm_end;
592 unsigned long length = old_end - old_start;
593 unsigned long new_start = old_start - shift;
594 unsigned long new_end = old_end - shift;
d16dfc55 595 struct mmu_gather tlb;
1da177e4 596
b6a2fea3 597 BUG_ON(new_start > new_end);
1da177e4 598
b6a2fea3
OW
599 /*
600 * ensure there are no vmas between where we want to go
601 * and where we are
602 */
603 if (vma != find_vma(mm, new_start))
604 return -EFAULT;
605
606 /*
607 * cover the whole range: [new_start, old_end)
608 */
5beb4930
RR
609 if (vma_adjust(vma, new_start, old_end, vma->vm_pgoff, NULL))
610 return -ENOMEM;
b6a2fea3
OW
611
612 /*
613 * move the page tables downwards, on failure we rely on
614 * process cleanup to remove whatever mess we made.
615 */
616 if (length != move_page_tables(vma, old_start,
38a76013 617 vma, new_start, length, false))
b6a2fea3
OW
618 return -ENOMEM;
619
620 lru_add_drain();
2b047252 621 tlb_gather_mmu(&tlb, mm, old_start, old_end);
b6a2fea3
OW
622 if (new_end > old_start) {
623 /*
624 * when the old and new regions overlap clear from new_end.
625 */
d16dfc55 626 free_pgd_range(&tlb, new_end, old_end, new_end,
6ee8630e 627 vma->vm_next ? vma->vm_next->vm_start : USER_PGTABLES_CEILING);
b6a2fea3
OW
628 } else {
629 /*
630 * otherwise, clean from old_start; this is done to not touch
631 * the address space in [new_end, old_start) some architectures
632 * have constraints on va-space that make this illegal (IA64) -
633 * for the others its just a little faster.
634 */
d16dfc55 635 free_pgd_range(&tlb, old_start, old_end, new_end,
6ee8630e 636 vma->vm_next ? vma->vm_next->vm_start : USER_PGTABLES_CEILING);
1da177e4 637 }
2b047252 638 tlb_finish_mmu(&tlb, old_start, old_end);
b6a2fea3
OW
639
640 /*
5beb4930 641 * Shrink the vma to just the new range. Always succeeds.
b6a2fea3
OW
642 */
643 vma_adjust(vma, new_start, new_end, vma->vm_pgoff, NULL);
644
645 return 0;
1da177e4
LT
646}
647
b6a2fea3
OW
648/*
649 * Finalizes the stack vm_area_struct. The flags and permissions are updated,
650 * the stack is optionally relocated, and some extra space is added.
651 */
1da177e4
LT
652int setup_arg_pages(struct linux_binprm *bprm,
653 unsigned long stack_top,
654 int executable_stack)
655{
b6a2fea3
OW
656 unsigned long ret;
657 unsigned long stack_shift;
1da177e4 658 struct mm_struct *mm = current->mm;
b6a2fea3
OW
659 struct vm_area_struct *vma = bprm->vma;
660 struct vm_area_struct *prev = NULL;
661 unsigned long vm_flags;
662 unsigned long stack_base;
803bf5ec
MN
663 unsigned long stack_size;
664 unsigned long stack_expand;
665 unsigned long rlim_stack;
1da177e4
LT
666
667#ifdef CONFIG_STACK_GROWSUP
d71f290b 668 /* Limit stack size */
d554ed89 669 stack_base = rlimit_max(RLIMIT_STACK);
d71f290b
JH
670 if (stack_base > STACK_SIZE_MAX)
671 stack_base = STACK_SIZE_MAX;
1da177e4 672
d045c77c
HD
673 /* Add space for stack randomization. */
674 stack_base += (STACK_RND_MASK << PAGE_SHIFT);
675
b6a2fea3
OW
676 /* Make sure we didn't let the argument array grow too large. */
677 if (vma->vm_end - vma->vm_start > stack_base)
678 return -ENOMEM;
1da177e4 679
b6a2fea3 680 stack_base = PAGE_ALIGN(stack_top - stack_base);
1da177e4 681
b6a2fea3
OW
682 stack_shift = vma->vm_start - stack_base;
683 mm->arg_start = bprm->p - stack_shift;
684 bprm->p = vma->vm_end - stack_shift;
1da177e4 685#else
b6a2fea3
OW
686 stack_top = arch_align_stack(stack_top);
687 stack_top = PAGE_ALIGN(stack_top);
1b528181
RM
688
689 if (unlikely(stack_top < mmap_min_addr) ||
690 unlikely(vma->vm_end - vma->vm_start >= stack_top - mmap_min_addr))
691 return -ENOMEM;
692
b6a2fea3
OW
693 stack_shift = vma->vm_end - stack_top;
694
695 bprm->p -= stack_shift;
1da177e4 696 mm->arg_start = bprm->p;
1da177e4
LT
697#endif
698
1da177e4 699 if (bprm->loader)
b6a2fea3
OW
700 bprm->loader -= stack_shift;
701 bprm->exec -= stack_shift;
1da177e4 702
1da177e4 703 down_write(&mm->mmap_sem);
96a8e13e 704 vm_flags = VM_STACK_FLAGS;
b6a2fea3
OW
705
706 /*
707 * Adjust stack execute permissions; explicitly enable for
708 * EXSTACK_ENABLE_X, disable for EXSTACK_DISABLE_X and leave alone
709 * (arch default) otherwise.
710 */
711 if (unlikely(executable_stack == EXSTACK_ENABLE_X))
712 vm_flags |= VM_EXEC;
713 else if (executable_stack == EXSTACK_DISABLE_X)
714 vm_flags &= ~VM_EXEC;
715 vm_flags |= mm->def_flags;
a8bef8ff 716 vm_flags |= VM_STACK_INCOMPLETE_SETUP;
b6a2fea3
OW
717
718 ret = mprotect_fixup(vma, &prev, vma->vm_start, vma->vm_end,
719 vm_flags);
720 if (ret)
721 goto out_unlock;
722 BUG_ON(prev != vma);
723
724 /* Move stack pages down in memory. */
725 if (stack_shift) {
726 ret = shift_arg_pages(vma, stack_shift);
fc63cf23
AB
727 if (ret)
728 goto out_unlock;
1da177e4
LT
729 }
730
a8bef8ff
MG
731 /* mprotect_fixup is overkill to remove the temporary stack flags */
732 vma->vm_flags &= ~VM_STACK_INCOMPLETE_SETUP;
733
5ef097dd 734 stack_expand = 131072UL; /* randomly 32*4k (or 2*64k) pages */
803bf5ec
MN
735 stack_size = vma->vm_end - vma->vm_start;
736 /*
737 * Align this down to a page boundary as expand_stack
738 * will align it up.
739 */
740 rlim_stack = rlimit(RLIMIT_STACK) & PAGE_MASK;
b6a2fea3 741#ifdef CONFIG_STACK_GROWSUP
803bf5ec
MN
742 if (stack_size + stack_expand > rlim_stack)
743 stack_base = vma->vm_start + rlim_stack;
744 else
745 stack_base = vma->vm_end + stack_expand;
b6a2fea3 746#else
803bf5ec
MN
747 if (stack_size + stack_expand > rlim_stack)
748 stack_base = vma->vm_end - rlim_stack;
749 else
750 stack_base = vma->vm_start - stack_expand;
b6a2fea3 751#endif
3af9e859 752 current->mm->start_stack = bprm->p;
b6a2fea3
OW
753 ret = expand_stack(vma, stack_base);
754 if (ret)
755 ret = -EFAULT;
756
757out_unlock:
1da177e4 758 up_write(&mm->mmap_sem);
fc63cf23 759 return ret;
1da177e4 760}
1da177e4
LT
761EXPORT_SYMBOL(setup_arg_pages);
762
1da177e4
LT
763#endif /* CONFIG_MMU */
764
51f39a1f 765static struct file *do_open_execat(int fd, struct filename *name, int flags)
1da177e4 766{
1da177e4 767 struct file *file;
e56b6a5d 768 int err;
51f39a1f 769 struct open_flags open_exec_flags = {
47c805dc 770 .open_flag = O_LARGEFILE | O_RDONLY | __FMODE_EXEC,
62fb4a15 771 .acc_mode = MAY_EXEC,
f9652e10
AV
772 .intent = LOOKUP_OPEN,
773 .lookup_flags = LOOKUP_FOLLOW,
47c805dc 774 };
1da177e4 775
51f39a1f
DD
776 if ((flags & ~(AT_SYMLINK_NOFOLLOW | AT_EMPTY_PATH)) != 0)
777 return ERR_PTR(-EINVAL);
778 if (flags & AT_SYMLINK_NOFOLLOW)
779 open_exec_flags.lookup_flags &= ~LOOKUP_FOLLOW;
780 if (flags & AT_EMPTY_PATH)
781 open_exec_flags.lookup_flags |= LOOKUP_EMPTY;
782
783 file = do_filp_open(fd, name, &open_exec_flags);
6e8341a1 784 if (IS_ERR(file))
e56b6a5d
CH
785 goto out;
786
787 err = -EACCES;
496ad9aa 788 if (!S_ISREG(file_inode(file)->i_mode))
6e8341a1 789 goto exit;
e56b6a5d 790
90f8572b 791 if (path_noexec(&file->f_path))
6e8341a1 792 goto exit;
e56b6a5d
CH
793
794 err = deny_write_access(file);
6e8341a1
AV
795 if (err)
796 goto exit;
1da177e4 797
51f39a1f
DD
798 if (name->name[0] != '\0')
799 fsnotify_open(file);
800
6e8341a1 801out:
e56b6a5d
CH
802 return file;
803
6e8341a1
AV
804exit:
805 fput(file);
e56b6a5d
CH
806 return ERR_PTR(err);
807}
c4ad8f98
LT
808
809struct file *open_exec(const char *name)
810{
51689104
PM
811 struct filename *filename = getname_kernel(name);
812 struct file *f = ERR_CAST(filename);
813
814 if (!IS_ERR(filename)) {
815 f = do_open_execat(AT_FDCWD, filename, 0);
816 putname(filename);
817 }
818 return f;
c4ad8f98 819}
1da177e4
LT
820EXPORT_SYMBOL(open_exec);
821
6777d773
MZ
822int kernel_read(struct file *file, loff_t offset,
823 char *addr, unsigned long count)
1da177e4
LT
824{
825 mm_segment_t old_fs;
826 loff_t pos = offset;
827 int result;
828
829 old_fs = get_fs();
830 set_fs(get_ds());
831 /* The cast to a user pointer is valid due to the set_fs() */
832 result = vfs_read(file, (void __user *)addr, count, &pos);
833 set_fs(old_fs);
834 return result;
835}
836
837EXPORT_SYMBOL(kernel_read);
838
b44a7dfc 839int kernel_read_file(struct file *file, void **buf, loff_t *size,
bc8ca5b9 840 loff_t max_size, enum kernel_read_file_id id)
b44a7dfc
MZ
841{
842 loff_t i_size, pos;
843 ssize_t bytes = 0;
844 int ret;
845
846 if (!S_ISREG(file_inode(file)->i_mode) || max_size < 0)
847 return -EINVAL;
848
39eeb4fb
MZ
849 ret = security_kernel_read_file(file, id);
850 if (ret)
851 return ret;
852
39d637af
DK
853 ret = deny_write_access(file);
854 if (ret)
855 return ret;
856
b44a7dfc 857 i_size = i_size_read(file_inode(file));
39d637af
DK
858 if (max_size > 0 && i_size > max_size) {
859 ret = -EFBIG;
860 goto out;
861 }
862 if (i_size <= 0) {
863 ret = -EINVAL;
864 goto out;
865 }
b44a7dfc
MZ
866
867 *buf = vmalloc(i_size);
39d637af
DK
868 if (!*buf) {
869 ret = -ENOMEM;
870 goto out;
871 }
b44a7dfc
MZ
872
873 pos = 0;
874 while (pos < i_size) {
875 bytes = kernel_read(file, pos, (char *)(*buf) + pos,
876 i_size - pos);
877 if (bytes < 0) {
878 ret = bytes;
879 goto out;
880 }
881
882 if (bytes == 0)
883 break;
884 pos += bytes;
885 }
886
887 if (pos != i_size) {
888 ret = -EIO;
39d637af 889 goto out_free;
b44a7dfc
MZ
890 }
891
bc8ca5b9 892 ret = security_kernel_post_read_file(file, *buf, i_size, id);
b44a7dfc
MZ
893 if (!ret)
894 *size = pos;
895
39d637af 896out_free:
b44a7dfc
MZ
897 if (ret < 0) {
898 vfree(*buf);
899 *buf = NULL;
900 }
39d637af
DK
901
902out:
903 allow_write_access(file);
b44a7dfc
MZ
904 return ret;
905}
906EXPORT_SYMBOL_GPL(kernel_read_file);
907
09596b94
MZ
908int kernel_read_file_from_path(char *path, void **buf, loff_t *size,
909 loff_t max_size, enum kernel_read_file_id id)
910{
911 struct file *file;
912 int ret;
913
914 if (!path || !*path)
915 return -EINVAL;
916
917 file = filp_open(path, O_RDONLY, 0);
918 if (IS_ERR(file))
919 return PTR_ERR(file);
920
921 ret = kernel_read_file(file, buf, size, max_size, id);
922 fput(file);
923 return ret;
924}
925EXPORT_SYMBOL_GPL(kernel_read_file_from_path);
926
b844f0ec
MZ
927int kernel_read_file_from_fd(int fd, void **buf, loff_t *size, loff_t max_size,
928 enum kernel_read_file_id id)
929{
930 struct fd f = fdget(fd);
931 int ret = -EBADF;
932
933 if (!f.file)
934 goto out;
935
936 ret = kernel_read_file(f.file, buf, size, max_size, id);
937out:
938 fdput(f);
939 return ret;
940}
941EXPORT_SYMBOL_GPL(kernel_read_file_from_fd);
942
3dc20cb2
AV
943ssize_t read_code(struct file *file, unsigned long addr, loff_t pos, size_t len)
944{
ec695579 945 ssize_t res = vfs_read(file, (void __user *)addr, len, &pos);
3dc20cb2
AV
946 if (res > 0)
947 flush_icache_range(addr, addr + len);
948 return res;
949}
950EXPORT_SYMBOL(read_code);
951
1da177e4
LT
952static int exec_mmap(struct mm_struct *mm)
953{
954 struct task_struct *tsk;
615d6e87 955 struct mm_struct *old_mm, *active_mm;
1da177e4
LT
956
957 /* Notify parent that we're no longer interested in the old VM */
958 tsk = current;
959 old_mm = current->mm;
960 mm_release(tsk, old_mm);
961
962 if (old_mm) {
4fe7efdb 963 sync_mm_rss(old_mm);
1da177e4
LT
964 /*
965 * Make sure that if there is a core dump in progress
966 * for the old mm, we get out and die instead of going
967 * through with the exec. We must hold mmap_sem around
999d9fc1 968 * checking core_state and changing tsk->mm.
1da177e4
LT
969 */
970 down_read(&old_mm->mmap_sem);
999d9fc1 971 if (unlikely(old_mm->core_state)) {
1da177e4
LT
972 up_read(&old_mm->mmap_sem);
973 return -EINTR;
974 }
975 }
976 task_lock(tsk);
977 active_mm = tsk->active_mm;
978 tsk->mm = mm;
979 tsk->active_mm = mm;
980 activate_mm(active_mm, mm);
615d6e87
DB
981 tsk->mm->vmacache_seqnum = 0;
982 vmacache_flush(tsk);
1da177e4 983 task_unlock(tsk);
1da177e4
LT
984 if (old_mm) {
985 up_read(&old_mm->mmap_sem);
7dddb12c 986 BUG_ON(active_mm != old_mm);
701085b2 987 setmax_mm_hiwater_rss(&tsk->signal->maxrss, old_mm);
31a78f23 988 mm_update_next_owner(old_mm);
1da177e4
LT
989 mmput(old_mm);
990 return 0;
991 }
992 mmdrop(active_mm);
993 return 0;
994}
995
996/*
997 * This function makes sure the current process has its own signal table,
998 * so that flush_signal_handlers can later reset the handlers without
999 * disturbing other processes. (Other processes might share the signal
1000 * table via the CLONE_SIGHAND option to clone().)
1001 */
858119e1 1002static int de_thread(struct task_struct *tsk)
1da177e4
LT
1003{
1004 struct signal_struct *sig = tsk->signal;
b2c903b8 1005 struct sighand_struct *oldsighand = tsk->sighand;
1da177e4 1006 spinlock_t *lock = &oldsighand->siglock;
1da177e4 1007
aafe6c2a 1008 if (thread_group_empty(tsk))
1da177e4
LT
1009 goto no_thread_group;
1010
1011 /*
1012 * Kill all other threads in the thread group.
1da177e4 1013 */
1da177e4 1014 spin_lock_irq(lock);
ed5d2cac 1015 if (signal_group_exit(sig)) {
1da177e4
LT
1016 /*
1017 * Another group action in progress, just
1018 * return so that the signal is processed.
1019 */
1020 spin_unlock_irq(lock);
1da177e4
LT
1021 return -EAGAIN;
1022 }
d344193a 1023
ed5d2cac 1024 sig->group_exit_task = tsk;
d344193a
ON
1025 sig->notify_count = zap_other_threads(tsk);
1026 if (!thread_group_leader(tsk))
1027 sig->notify_count--;
1da177e4 1028
d344193a 1029 while (sig->notify_count) {
d5bbd43d 1030 __set_current_state(TASK_KILLABLE);
1da177e4
LT
1031 spin_unlock_irq(lock);
1032 schedule();
d5bbd43d
ON
1033 if (unlikely(__fatal_signal_pending(tsk)))
1034 goto killed;
1da177e4
LT
1035 spin_lock_irq(lock);
1036 }
1da177e4
LT
1037 spin_unlock_irq(lock);
1038
1039 /*
1040 * At this point all other threads have exited, all we have to
1041 * do is to wait for the thread group leader to become inactive,
1042 * and to assume its PID:
1043 */
aafe6c2a 1044 if (!thread_group_leader(tsk)) {
8187926b 1045 struct task_struct *leader = tsk->group_leader;
6db840fa 1046
6db840fa 1047 for (;;) {
e56fb287 1048 threadgroup_change_begin(tsk);
6db840fa 1049 write_lock_irq(&tasklist_lock);
dfcce791
KT
1050 /*
1051 * Do this under tasklist_lock to ensure that
1052 * exit_notify() can't miss ->group_exit_task
1053 */
1054 sig->notify_count = -1;
6db840fa
ON
1055 if (likely(leader->exit_state))
1056 break;
d5bbd43d 1057 __set_current_state(TASK_KILLABLE);
6db840fa 1058 write_unlock_irq(&tasklist_lock);
e56fb287 1059 threadgroup_change_end(tsk);
6db840fa 1060 schedule();
d5bbd43d
ON
1061 if (unlikely(__fatal_signal_pending(tsk)))
1062 goto killed;
6db840fa 1063 }
1da177e4 1064
f5e90281
RM
1065 /*
1066 * The only record we have of the real-time age of a
1067 * process, regardless of execs it's done, is start_time.
1068 * All the past CPU time is accumulated in signal_struct
1069 * from sister threads now dead. But in this non-leader
1070 * exec, nothing survives from the original leader thread,
1071 * whose birth marks the true age of this process now.
1072 * When we take on its identity by switching to its PID, we
1073 * also take its birthdate (always earlier than our own).
1074 */
aafe6c2a 1075 tsk->start_time = leader->start_time;
266b7a02 1076 tsk->real_start_time = leader->real_start_time;
f5e90281 1077
bac0abd6
PE
1078 BUG_ON(!same_thread_group(leader, tsk));
1079 BUG_ON(has_group_leader_pid(tsk));
1da177e4
LT
1080 /*
1081 * An exec() starts a new thread group with the
1082 * TGID of the previous thread group. Rehash the
1083 * two threads with a switched PID, and release
1084 * the former thread group leader:
1085 */
d73d6529
EB
1086
1087 /* Become a process group leader with the old leader's pid.
c18258c6
EB
1088 * The old leader becomes a thread of the this thread group.
1089 * Note: The old leader also uses this pid until release_task
d73d6529
EB
1090 * is called. Odd but simple and correct.
1091 */
aafe6c2a 1092 tsk->pid = leader->pid;
3f418548 1093 change_pid(tsk, PIDTYPE_PID, task_pid(leader));
aafe6c2a
EB
1094 transfer_pid(leader, tsk, PIDTYPE_PGID);
1095 transfer_pid(leader, tsk, PIDTYPE_SID);
9cd80bbb 1096
aafe6c2a 1097 list_replace_rcu(&leader->tasks, &tsk->tasks);
9cd80bbb 1098 list_replace_init(&leader->sibling, &tsk->sibling);
1da177e4 1099
aafe6c2a
EB
1100 tsk->group_leader = tsk;
1101 leader->group_leader = tsk;
de12a787 1102
aafe6c2a 1103 tsk->exit_signal = SIGCHLD;
087806b1 1104 leader->exit_signal = -1;
962b564c
ON
1105
1106 BUG_ON(leader->exit_state != EXIT_ZOMBIE);
1107 leader->exit_state = EXIT_DEAD;
eac1b5e5
ON
1108
1109 /*
1110 * We are going to release_task()->ptrace_unlink() silently,
1111 * the tracer can sleep in do_wait(). EXIT_DEAD guarantees
1112 * the tracer wont't block again waiting for this thread.
1113 */
1114 if (unlikely(leader->ptrace))
1115 __wake_up_parent(leader, leader->parent);
1da177e4 1116 write_unlock_irq(&tasklist_lock);
e56fb287 1117 threadgroup_change_end(tsk);
8187926b
ON
1118
1119 release_task(leader);
ed5d2cac 1120 }
1da177e4 1121
6db840fa
ON
1122 sig->group_exit_task = NULL;
1123 sig->notify_count = 0;
1da177e4
LT
1124
1125no_thread_group:
e6368253
ON
1126 /* we have changed execution domain */
1127 tsk->exit_signal = SIGCHLD;
1128
1da177e4 1129 exit_itimers(sig);
cbaffba1 1130 flush_itimer_signals();
329f7dba 1131
b2c903b8
ON
1132 if (atomic_read(&oldsighand->count) != 1) {
1133 struct sighand_struct *newsighand;
1da177e4 1134 /*
b2c903b8
ON
1135 * This ->sighand is shared with the CLONE_SIGHAND
1136 * but not CLONE_THREAD task, switch to the new one.
1da177e4 1137 */
b2c903b8
ON
1138 newsighand = kmem_cache_alloc(sighand_cachep, GFP_KERNEL);
1139 if (!newsighand)
1140 return -ENOMEM;
1141
1da177e4
LT
1142 atomic_set(&newsighand->count, 1);
1143 memcpy(newsighand->action, oldsighand->action,
1144 sizeof(newsighand->action));
1145
1146 write_lock_irq(&tasklist_lock);
1147 spin_lock(&oldsighand->siglock);
aafe6c2a 1148 rcu_assign_pointer(tsk->sighand, newsighand);
1da177e4
LT
1149 spin_unlock(&oldsighand->siglock);
1150 write_unlock_irq(&tasklist_lock);
1151
fba2afaa 1152 __cleanup_sighand(oldsighand);
1da177e4
LT
1153 }
1154
aafe6c2a 1155 BUG_ON(!thread_group_leader(tsk));
1da177e4 1156 return 0;
d5bbd43d
ON
1157
1158killed:
1159 /* protects against exit_notify() and __exit_signal() */
1160 read_lock(&tasklist_lock);
1161 sig->group_exit_task = NULL;
1162 sig->notify_count = 0;
1163 read_unlock(&tasklist_lock);
1164 return -EAGAIN;
1da177e4 1165}
0840a90d 1166
59714d65 1167char *get_task_comm(char *buf, struct task_struct *tsk)
1da177e4
LT
1168{
1169 /* buf must be at least sizeof(tsk->comm) in size */
1170 task_lock(tsk);
1171 strncpy(buf, tsk->comm, sizeof(tsk->comm));
1172 task_unlock(tsk);
59714d65 1173 return buf;
1da177e4 1174}
7d74f492 1175EXPORT_SYMBOL_GPL(get_task_comm);
1da177e4 1176
6a6d27de
AV
1177/*
1178 * These functions flushes out all traces of the currently running executable
1179 * so that a new one can be started
1180 */
1181
82b89778 1182void __set_task_comm(struct task_struct *tsk, const char *buf, bool exec)
1da177e4
LT
1183{
1184 task_lock(tsk);
43d2b113 1185 trace_task_rename(tsk, buf);
1da177e4
LT
1186 strlcpy(tsk->comm, buf, sizeof(tsk->comm));
1187 task_unlock(tsk);
82b89778 1188 perf_event_comm(tsk, exec);
1da177e4
LT
1189}
1190
1191int flush_old_exec(struct linux_binprm * bprm)
1192{
221af7f8 1193 int retval;
1da177e4
LT
1194
1195 /*
1196 * Make sure we have a private signal table and that
1197 * we are unassociated from the previous thread group.
1198 */
1199 retval = de_thread(current);
1200 if (retval)
1201 goto out;
1202
6e399cd1
DB
1203 /*
1204 * Must be called _before_ exec_mmap() as bprm->mm is
1205 * not visibile until then. This also enables the update
1206 * to be lockless.
1207 */
925d1c40 1208 set_mm_exe_file(bprm->mm, bprm->file);
6e399cd1 1209
1da177e4
LT
1210 /*
1211 * Release all of the old mmap stuff
1212 */
3c77f845 1213 acct_arg_size(bprm, 0);
1da177e4
LT
1214 retval = exec_mmap(bprm->mm);
1215 if (retval)
fd8328be 1216 goto out;
1da177e4
LT
1217
1218 bprm->mm = NULL; /* We're using it now */
7ab02af4 1219
dac853ae 1220 set_fs(USER_DS);
b88fae64
ZY
1221 current->flags &= ~(PF_RANDOMIZE | PF_FORKNOEXEC | PF_KTHREAD |
1222 PF_NOFREEZE | PF_NO_SETAFFINITY);
7ab02af4
LT
1223 flush_thread();
1224 current->personality &= ~bprm->per_clear;
1225
221af7f8
LT
1226 return 0;
1227
1228out:
1229 return retval;
1230}
1231EXPORT_SYMBOL(flush_old_exec);
1232
1b5d783c
AV
1233void would_dump(struct linux_binprm *bprm, struct file *file)
1234{
496ad9aa 1235 if (inode_permission(file_inode(file), MAY_READ) < 0)
1b5d783c
AV
1236 bprm->interp_flags |= BINPRM_FLAGS_ENFORCE_NONDUMP;
1237}
1238EXPORT_SYMBOL(would_dump);
1239
221af7f8
LT
1240void setup_new_exec(struct linux_binprm * bprm)
1241{
221af7f8 1242 arch_pick_mmap_layout(current->mm);
1da177e4
LT
1243
1244 /* This is the point of no return */
1da177e4
LT
1245 current->sas_ss_sp = current->sas_ss_size = 0;
1246
8e96e3b7 1247 if (uid_eq(current_euid(), current_uid()) && gid_eq(current_egid(), current_gid()))
e579d2c2 1248 set_dumpable(current->mm, SUID_DUMP_USER);
d6e71144 1249 else
6c5d5238 1250 set_dumpable(current->mm, suid_dumpable);
d6e71144 1251
e041e328 1252 perf_event_exec();
82b89778 1253 __set_task_comm(current, kbasename(bprm->filename), true);
1da177e4 1254
0551fbd2
BH
1255 /* Set the new mm task size. We have to do that late because it may
1256 * depend on TIF_32BIT which is only updated in flush_thread() on
1257 * some architectures like powerpc
1258 */
1259 current->mm->task_size = TASK_SIZE;
1260
a6f76f23 1261 /* install the new credentials */
8e96e3b7
EB
1262 if (!uid_eq(bprm->cred->uid, current_euid()) ||
1263 !gid_eq(bprm->cred->gid, current_egid())) {
d2d56c5f 1264 current->pdeath_signal = 0;
1b5d783c
AV
1265 } else {
1266 would_dump(bprm, bprm->file);
1267 if (bprm->interp_flags & BINPRM_FLAGS_ENFORCE_NONDUMP)
1268 set_dumpable(current->mm, suid_dumpable);
1da177e4
LT
1269 }
1270
1271 /* An exec changes our domain. We are no longer part of the thread
1272 group */
1da177e4 1273 current->self_exec_id++;
1da177e4 1274 flush_signal_handlers(current, 0);
6a6d27de 1275 do_close_on_exec(current->files);
1da177e4 1276}
221af7f8 1277EXPORT_SYMBOL(setup_new_exec);
1da177e4 1278
a2a8474c
ON
1279/*
1280 * Prepare credentials and lock ->cred_guard_mutex.
1281 * install_exec_creds() commits the new creds and drops the lock.
1282 * Or, if exec fails before, free_bprm() should release ->cred and
1283 * and unlock.
1284 */
1285int prepare_bprm_creds(struct linux_binprm *bprm)
1286{
9b1bf12d 1287 if (mutex_lock_interruptible(&current->signal->cred_guard_mutex))
a2a8474c
ON
1288 return -ERESTARTNOINTR;
1289
1290 bprm->cred = prepare_exec_creds();
1291 if (likely(bprm->cred))
1292 return 0;
1293
9b1bf12d 1294 mutex_unlock(&current->signal->cred_guard_mutex);
a2a8474c
ON
1295 return -ENOMEM;
1296}
1297
c4ad8f98 1298static void free_bprm(struct linux_binprm *bprm)
a2a8474c
ON
1299{
1300 free_arg_pages(bprm);
1301 if (bprm->cred) {
9b1bf12d 1302 mutex_unlock(&current->signal->cred_guard_mutex);
a2a8474c
ON
1303 abort_creds(bprm->cred);
1304 }
63e46b95
ON
1305 if (bprm->file) {
1306 allow_write_access(bprm->file);
1307 fput(bprm->file);
1308 }
b66c5984
KC
1309 /* If a binfmt changed the interp, free it. */
1310 if (bprm->interp != bprm->filename)
1311 kfree(bprm->interp);
a2a8474c
ON
1312 kfree(bprm);
1313}
1314
b66c5984
KC
1315int bprm_change_interp(char *interp, struct linux_binprm *bprm)
1316{
1317 /* If a binfmt changed the interp, free it first. */
1318 if (bprm->interp != bprm->filename)
1319 kfree(bprm->interp);
1320 bprm->interp = kstrdup(interp, GFP_KERNEL);
1321 if (!bprm->interp)
1322 return -ENOMEM;
1323 return 0;
1324}
1325EXPORT_SYMBOL(bprm_change_interp);
1326
a6f76f23
DH
1327/*
1328 * install the new credentials for this executable
1329 */
1330void install_exec_creds(struct linux_binprm *bprm)
1331{
1332 security_bprm_committing_creds(bprm);
1333
1334 commit_creds(bprm->cred);
1335 bprm->cred = NULL;
2976b10f
SE
1336
1337 /*
1338 * Disable monitoring for regular users
1339 * when executing setuid binaries. Must
1340 * wait until new credentials are committed
1341 * by commit_creds() above
1342 */
1343 if (get_dumpable(current->mm) != SUID_DUMP_USER)
1344 perf_event_exit_task(current);
a2a8474c
ON
1345 /*
1346 * cred_guard_mutex must be held at least to this point to prevent
a6f76f23 1347 * ptrace_attach() from altering our determination of the task's
a2a8474c
ON
1348 * credentials; any time after this it may be unlocked.
1349 */
a6f76f23 1350 security_bprm_committed_creds(bprm);
9b1bf12d 1351 mutex_unlock(&current->signal->cred_guard_mutex);
a6f76f23
DH
1352}
1353EXPORT_SYMBOL(install_exec_creds);
1354
1355/*
1356 * determine how safe it is to execute the proposed program
9b1bf12d 1357 * - the caller must hold ->cred_guard_mutex to protect against
c2e1f2e3 1358 * PTRACE_ATTACH or seccomp thread-sync
a6f76f23 1359 */
9e00cdb0 1360static void check_unsafe_exec(struct linux_binprm *bprm)
a6f76f23 1361{
0bf2f3ae 1362 struct task_struct *p = current, *t;
f1191b50 1363 unsigned n_fs;
a6f76f23 1364
4b9d33e6
TH
1365 if (p->ptrace) {
1366 if (p->ptrace & PT_PTRACE_CAP)
1367 bprm->unsafe |= LSM_UNSAFE_PTRACE_CAP;
1368 else
1369 bprm->unsafe |= LSM_UNSAFE_PTRACE;
1370 }
a6f76f23 1371
259e5e6c
AL
1372 /*
1373 * This isn't strictly necessary, but it makes it harder for LSMs to
1374 * mess up.
1375 */
1d4457f9 1376 if (task_no_new_privs(current))
259e5e6c
AL
1377 bprm->unsafe |= LSM_UNSAFE_NO_NEW_PRIVS;
1378
83f62a2e 1379 t = p;
0bf2f3ae 1380 n_fs = 1;
2a4419b5 1381 spin_lock(&p->fs->lock);
437f7fdb 1382 rcu_read_lock();
83f62a2e 1383 while_each_thread(p, t) {
0bf2f3ae
DH
1384 if (t->fs == p->fs)
1385 n_fs++;
0bf2f3ae 1386 }
437f7fdb 1387 rcu_read_unlock();
0bf2f3ae 1388
9e00cdb0 1389 if (p->fs->users > n_fs)
a6f76f23 1390 bprm->unsafe |= LSM_UNSAFE_SHARE;
9e00cdb0
ON
1391 else
1392 p->fs->in_exec = 1;
2a4419b5 1393 spin_unlock(&p->fs->lock);
a6f76f23
DH
1394}
1395
8b01fc86
JH
1396static void bprm_fill_uid(struct linux_binprm *bprm)
1397{
1398 struct inode *inode;
1399 unsigned int mode;
1400 kuid_t uid;
1401 kgid_t gid;
1402
cb6fd68f
KC
1403 /*
1404 * Since this can be called multiple times (via prepare_binprm),
1405 * we must clear any previous work done when setting set[ug]id
1406 * bits from any earlier bprm->file uses (for example when run
1407 * first for a setuid script then again for its interpreter).
1408 */
8b01fc86
JH
1409 bprm->cred->euid = current_euid();
1410 bprm->cred->egid = current_egid();
1411
1412 if (bprm->file->f_path.mnt->mnt_flags & MNT_NOSUID)
1413 return;
1414
1415 if (task_no_new_privs(current))
1416 return;
1417
1418 inode = file_inode(bprm->file);
1419 mode = READ_ONCE(inode->i_mode);
1420 if (!(mode & (S_ISUID|S_ISGID)))
1421 return;
1422
1423 /* Be careful if suid/sgid is set */
5955102c 1424 inode_lock(inode);
8b01fc86
JH
1425
1426 /* reload atomically mode/uid/gid now that lock held */
1427 mode = inode->i_mode;
1428 uid = inode->i_uid;
1429 gid = inode->i_gid;
5955102c 1430 inode_unlock(inode);
8b01fc86
JH
1431
1432 /* We ignore suid/sgid if there are no mappings for them in the ns */
1433 if (!kuid_has_mapping(bprm->cred->user_ns, uid) ||
1434 !kgid_has_mapping(bprm->cred->user_ns, gid))
1435 return;
1436
1437 if (mode & S_ISUID) {
1438 bprm->per_clear |= PER_CLEAR_ON_SETID;
1439 bprm->cred->euid = uid;
1440 }
1441
1442 if ((mode & (S_ISGID | S_IXGRP)) == (S_ISGID | S_IXGRP)) {
1443 bprm->per_clear |= PER_CLEAR_ON_SETID;
1444 bprm->cred->egid = gid;
1445 }
1446}
1447
9e00cdb0
ON
1448/*
1449 * Fill the binprm structure from the inode.
1da177e4 1450 * Check permissions, then read the first 128 (BINPRM_BUF_SIZE) bytes
a6f76f23
DH
1451 *
1452 * This may be called multiple times for binary chains (scripts for example).
1da177e4
LT
1453 */
1454int prepare_binprm(struct linux_binprm *bprm)
1455{
1da177e4
LT
1456 int retval;
1457
8b01fc86 1458 bprm_fill_uid(bprm);
1da177e4
LT
1459
1460 /* fill in binprm security blob */
a6f76f23 1461 retval = security_bprm_set_creds(bprm);
1da177e4
LT
1462 if (retval)
1463 return retval;
a6f76f23 1464 bprm->cred_prepared = 1;
1da177e4 1465
a6f76f23
DH
1466 memset(bprm->buf, 0, BINPRM_BUF_SIZE);
1467 return kernel_read(bprm->file, 0, bprm->buf, BINPRM_BUF_SIZE);
1da177e4
LT
1468}
1469
1470EXPORT_SYMBOL(prepare_binprm);
1471
4fc75ff4
NP
1472/*
1473 * Arguments are '\0' separated strings found at the location bprm->p
1474 * points to; chop off the first by relocating brpm->p to right after
1475 * the first '\0' encountered.
1476 */
b6a2fea3 1477int remove_arg_zero(struct linux_binprm *bprm)
1da177e4 1478{
b6a2fea3
OW
1479 int ret = 0;
1480 unsigned long offset;
1481 char *kaddr;
1482 struct page *page;
4fc75ff4 1483
b6a2fea3
OW
1484 if (!bprm->argc)
1485 return 0;
1da177e4 1486
b6a2fea3
OW
1487 do {
1488 offset = bprm->p & ~PAGE_MASK;
1489 page = get_arg_page(bprm, bprm->p, 0);
1490 if (!page) {
1491 ret = -EFAULT;
1492 goto out;
1493 }
e8e3c3d6 1494 kaddr = kmap_atomic(page);
4fc75ff4 1495
b6a2fea3
OW
1496 for (; offset < PAGE_SIZE && kaddr[offset];
1497 offset++, bprm->p++)
1498 ;
4fc75ff4 1499
e8e3c3d6 1500 kunmap_atomic(kaddr);
b6a2fea3 1501 put_arg_page(page);
4fc75ff4 1502
b6a2fea3
OW
1503 if (offset == PAGE_SIZE)
1504 free_arg_page(bprm, (bprm->p >> PAGE_SHIFT) - 1);
1505 } while (offset == PAGE_SIZE);
4fc75ff4 1506
b6a2fea3
OW
1507 bprm->p++;
1508 bprm->argc--;
1509 ret = 0;
4fc75ff4 1510
b6a2fea3
OW
1511out:
1512 return ret;
1da177e4 1513}
1da177e4
LT
1514EXPORT_SYMBOL(remove_arg_zero);
1515
cb7b6b1c 1516#define printable(c) (((c)=='\t') || ((c)=='\n') || (0x20<=(c) && (c)<=0x7e))
1da177e4
LT
1517/*
1518 * cycle the list of binary formats handler, until one recognizes the image
1519 */
3c456bfc 1520int search_binary_handler(struct linux_binprm *bprm)
1da177e4 1521{
cb7b6b1c 1522 bool need_retry = IS_ENABLED(CONFIG_MODULES);
1da177e4 1523 struct linux_binfmt *fmt;
cb7b6b1c 1524 int retval;
1da177e4 1525
d7402698 1526 /* This allows 4 levels of binfmt rewrites before failing hard. */
131b2f9f 1527 if (bprm->recursion_depth > 5)
d7402698
KC
1528 return -ELOOP;
1529
1da177e4
LT
1530 retval = security_bprm_check(bprm);
1531 if (retval)
1532 return retval;
1533
1da177e4 1534 retval = -ENOENT;
cb7b6b1c
ON
1535 retry:
1536 read_lock(&binfmt_lock);
1537 list_for_each_entry(fmt, &formats, lh) {
1538 if (!try_module_get(fmt->module))
1539 continue;
1540 read_unlock(&binfmt_lock);
1541 bprm->recursion_depth++;
1542 retval = fmt->load_binary(bprm);
19d860a1
AV
1543 read_lock(&binfmt_lock);
1544 put_binfmt(fmt);
cb7b6b1c 1545 bprm->recursion_depth--;
19d860a1
AV
1546 if (retval < 0 && !bprm->mm) {
1547 /* we got to flush_old_exec() and failed after it */
1548 read_unlock(&binfmt_lock);
1549 force_sigsegv(SIGSEGV, current);
1550 return retval;
1551 }
1552 if (retval != -ENOEXEC || !bprm->file) {
1553 read_unlock(&binfmt_lock);
cb7b6b1c 1554 return retval;
1da177e4 1555 }
1da177e4 1556 }
cb7b6b1c
ON
1557 read_unlock(&binfmt_lock);
1558
19d860a1 1559 if (need_retry) {
cb7b6b1c
ON
1560 if (printable(bprm->buf[0]) && printable(bprm->buf[1]) &&
1561 printable(bprm->buf[2]) && printable(bprm->buf[3]))
1562 return retval;
4e0621a0
ON
1563 if (request_module("binfmt-%04x", *(ushort *)(bprm->buf + 2)) < 0)
1564 return retval;
cb7b6b1c
ON
1565 need_retry = false;
1566 goto retry;
1567 }
1568
1da177e4
LT
1569 return retval;
1570}
1da177e4
LT
1571EXPORT_SYMBOL(search_binary_handler);
1572
5d1baf3b
ON
1573static int exec_binprm(struct linux_binprm *bprm)
1574{
1575 pid_t old_pid, old_vpid;
1576 int ret;
1577
1578 /* Need to fetch pid before load_binary changes it */
1579 old_pid = current->pid;
1580 rcu_read_lock();
1581 old_vpid = task_pid_nr_ns(current, task_active_pid_ns(current->parent));
1582 rcu_read_unlock();
1583
1584 ret = search_binary_handler(bprm);
1585 if (ret >= 0) {
3eaded86 1586 audit_bprm(bprm);
5d1baf3b
ON
1587 trace_sched_process_exec(current, old_pid, bprm);
1588 ptrace_event(PTRACE_EVENT_EXEC, old_vpid);
9beb266f 1589 proc_exec_connector(current);
5d1baf3b
ON
1590 }
1591
1592 return ret;
1593}
1594
1da177e4
LT
1595/*
1596 * sys_execve() executes a new program.
1597 */
51f39a1f
DD
1598static int do_execveat_common(int fd, struct filename *filename,
1599 struct user_arg_ptr argv,
1600 struct user_arg_ptr envp,
1601 int flags)
1da177e4 1602{
51f39a1f 1603 char *pathbuf = NULL;
1da177e4
LT
1604 struct linux_binprm *bprm;
1605 struct file *file;
3b125388 1606 struct files_struct *displaced;
1da177e4 1607 int retval;
72fa5997 1608
c4ad8f98
LT
1609 if (IS_ERR(filename))
1610 return PTR_ERR(filename);
1611
72fa5997
VK
1612 /*
1613 * We move the actual failure in case of RLIMIT_NPROC excess from
1614 * set*uid() to execve() because too many poorly written programs
1615 * don't check setuid() return code. Here we additionally recheck
1616 * whether NPROC limit is still exceeded.
1617 */
1618 if ((current->flags & PF_NPROC_EXCEEDED) &&
bd9d43f4 1619 atomic_read(&current_user()->processes) > rlimit(RLIMIT_NPROC)) {
72fa5997
VK
1620 retval = -EAGAIN;
1621 goto out_ret;
1622 }
1623
1624 /* We're below the limit (still or again), so we don't want to make
1625 * further execve() calls fail. */
1626 current->flags &= ~PF_NPROC_EXCEEDED;
1da177e4 1627
3b125388 1628 retval = unshare_files(&displaced);
fd8328be
AV
1629 if (retval)
1630 goto out_ret;
1631
1da177e4 1632 retval = -ENOMEM;
11b0b5ab 1633 bprm = kzalloc(sizeof(*bprm), GFP_KERNEL);
1da177e4 1634 if (!bprm)
fd8328be 1635 goto out_files;
1da177e4 1636
a2a8474c
ON
1637 retval = prepare_bprm_creds(bprm);
1638 if (retval)
a6f76f23 1639 goto out_free;
498052bb 1640
9e00cdb0 1641 check_unsafe_exec(bprm);
a2a8474c 1642 current->in_execve = 1;
a6f76f23 1643
51f39a1f 1644 file = do_open_execat(fd, filename, flags);
1da177e4
LT
1645 retval = PTR_ERR(file);
1646 if (IS_ERR(file))
498052bb 1647 goto out_unmark;
1da177e4
LT
1648
1649 sched_exec();
1650
1da177e4 1651 bprm->file = file;
51f39a1f
DD
1652 if (fd == AT_FDCWD || filename->name[0] == '/') {
1653 bprm->filename = filename->name;
1654 } else {
1655 if (filename->name[0] == '\0')
1656 pathbuf = kasprintf(GFP_TEMPORARY, "/dev/fd/%d", fd);
1657 else
1658 pathbuf = kasprintf(GFP_TEMPORARY, "/dev/fd/%d/%s",
1659 fd, filename->name);
1660 if (!pathbuf) {
1661 retval = -ENOMEM;
1662 goto out_unmark;
1663 }
1664 /*
1665 * Record that a name derived from an O_CLOEXEC fd will be
1666 * inaccessible after exec. Relies on having exclusive access to
1667 * current->files (due to unshare_files above).
1668 */
1669 if (close_on_exec(fd, rcu_dereference_raw(current->files->fdt)))
1670 bprm->interp_flags |= BINPRM_FLAGS_PATH_INACCESSIBLE;
1671 bprm->filename = pathbuf;
1672 }
1673 bprm->interp = bprm->filename;
1da177e4 1674
b6a2fea3
OW
1675 retval = bprm_mm_init(bprm);
1676 if (retval)
63e46b95 1677 goto out_unmark;
1da177e4 1678
b6a2fea3 1679 bprm->argc = count(argv, MAX_ARG_STRINGS);
1da177e4 1680 if ((retval = bprm->argc) < 0)
a6f76f23 1681 goto out;
1da177e4 1682
b6a2fea3 1683 bprm->envc = count(envp, MAX_ARG_STRINGS);
1da177e4 1684 if ((retval = bprm->envc) < 0)
1da177e4
LT
1685 goto out;
1686
1687 retval = prepare_binprm(bprm);
1688 if (retval < 0)
1689 goto out;
1690
1691 retval = copy_strings_kernel(1, &bprm->filename, bprm);
1692 if (retval < 0)
1693 goto out;
1694
1695 bprm->exec = bprm->p;
1696 retval = copy_strings(bprm->envc, envp, bprm);
1697 if (retval < 0)
1698 goto out;
1699
1700 retval = copy_strings(bprm->argc, argv, bprm);
1701 if (retval < 0)
1702 goto out;
1703
5d1baf3b 1704 retval = exec_binprm(bprm);
a6f76f23
DH
1705 if (retval < 0)
1706 goto out;
1da177e4 1707
a6f76f23 1708 /* execve succeeded */
498052bb 1709 current->fs->in_exec = 0;
f9ce1f1c 1710 current->in_execve = 0;
a6f76f23 1711 acct_update_integrals(current);
82727018 1712 task_numa_free(current);
a6f76f23 1713 free_bprm(bprm);
51f39a1f 1714 kfree(pathbuf);
c4ad8f98 1715 putname(filename);
a6f76f23
DH
1716 if (displaced)
1717 put_files_struct(displaced);
1718 return retval;
1da177e4 1719
a6f76f23 1720out:
3c77f845
ON
1721 if (bprm->mm) {
1722 acct_arg_size(bprm, 0);
1723 mmput(bprm->mm);
1724 }
1da177e4 1725
498052bb 1726out_unmark:
9e00cdb0 1727 current->fs->in_exec = 0;
f9ce1f1c 1728 current->in_execve = 0;
a6f76f23
DH
1729
1730out_free:
08a6fac1 1731 free_bprm(bprm);
51f39a1f 1732 kfree(pathbuf);
1da177e4 1733
fd8328be 1734out_files:
3b125388
AV
1735 if (displaced)
1736 reset_files_struct(displaced);
1da177e4 1737out_ret:
c4ad8f98 1738 putname(filename);
1da177e4
LT
1739 return retval;
1740}
1741
c4ad8f98 1742int do_execve(struct filename *filename,
ba2d0162 1743 const char __user *const __user *__argv,
da3d4c5f 1744 const char __user *const __user *__envp)
ba2d0162 1745{
0e028465
ON
1746 struct user_arg_ptr argv = { .ptr.native = __argv };
1747 struct user_arg_ptr envp = { .ptr.native = __envp };
51f39a1f
DD
1748 return do_execveat_common(AT_FDCWD, filename, argv, envp, 0);
1749}
1750
1751int do_execveat(int fd, struct filename *filename,
1752 const char __user *const __user *__argv,
1753 const char __user *const __user *__envp,
1754 int flags)
1755{
1756 struct user_arg_ptr argv = { .ptr.native = __argv };
1757 struct user_arg_ptr envp = { .ptr.native = __envp };
1758
1759 return do_execveat_common(fd, filename, argv, envp, flags);
0e028465
ON
1760}
1761
1762#ifdef CONFIG_COMPAT
c4ad8f98 1763static int compat_do_execve(struct filename *filename,
38b983b3 1764 const compat_uptr_t __user *__argv,
d03d26e5 1765 const compat_uptr_t __user *__envp)
0e028465
ON
1766{
1767 struct user_arg_ptr argv = {
1768 .is_compat = true,
1769 .ptr.compat = __argv,
1770 };
1771 struct user_arg_ptr envp = {
1772 .is_compat = true,
1773 .ptr.compat = __envp,
1774 };
51f39a1f
DD
1775 return do_execveat_common(AT_FDCWD, filename, argv, envp, 0);
1776}
1777
1778static int compat_do_execveat(int fd, struct filename *filename,
1779 const compat_uptr_t __user *__argv,
1780 const compat_uptr_t __user *__envp,
1781 int flags)
1782{
1783 struct user_arg_ptr argv = {
1784 .is_compat = true,
1785 .ptr.compat = __argv,
1786 };
1787 struct user_arg_ptr envp = {
1788 .is_compat = true,
1789 .ptr.compat = __envp,
1790 };
1791 return do_execveat_common(fd, filename, argv, envp, flags);
ba2d0162 1792}
0e028465 1793#endif
ba2d0162 1794
964ee7df 1795void set_binfmt(struct linux_binfmt *new)
1da177e4 1796{
801460d0
HS
1797 struct mm_struct *mm = current->mm;
1798
1799 if (mm->binfmt)
1800 module_put(mm->binfmt->module);
1da177e4 1801
801460d0 1802 mm->binfmt = new;
964ee7df
ON
1803 if (new)
1804 __module_get(new->module);
1da177e4 1805}
1da177e4
LT
1806EXPORT_SYMBOL(set_binfmt);
1807
6c5d5238 1808/*
7288e118 1809 * set_dumpable stores three-value SUID_DUMP_* into mm->flags.
6c5d5238
KH
1810 */
1811void set_dumpable(struct mm_struct *mm, int value)
1812{
abacd2fe
ON
1813 unsigned long old, new;
1814
7288e118
ON
1815 if (WARN_ON((unsigned)value > SUID_DUMP_ROOT))
1816 return;
1817
abacd2fe
ON
1818 do {
1819 old = ACCESS_ONCE(mm->flags);
7288e118 1820 new = (old & ~MMF_DUMPABLE_MASK) | value;
abacd2fe 1821 } while (cmpxchg(&mm->flags, old, new) != old);
6c5d5238 1822}
6c5d5238 1823
38b983b3
AV
1824SYSCALL_DEFINE3(execve,
1825 const char __user *, filename,
1826 const char __user *const __user *, argv,
1827 const char __user *const __user *, envp)
1828{
c4ad8f98 1829 return do_execve(getname(filename), argv, envp);
38b983b3 1830}
51f39a1f
DD
1831
1832SYSCALL_DEFINE5(execveat,
1833 int, fd, const char __user *, filename,
1834 const char __user *const __user *, argv,
1835 const char __user *const __user *, envp,
1836 int, flags)
1837{
1838 int lookup_flags = (flags & AT_EMPTY_PATH) ? LOOKUP_EMPTY : 0;
1839
1840 return do_execveat(fd,
1841 getname_flags(filename, lookup_flags, NULL),
1842 argv, envp, flags);
1843}
1844
38b983b3 1845#ifdef CONFIG_COMPAT
625b1d7e
HC
1846COMPAT_SYSCALL_DEFINE3(execve, const char __user *, filename,
1847 const compat_uptr_t __user *, argv,
1848 const compat_uptr_t __user *, envp)
38b983b3 1849{
c4ad8f98 1850 return compat_do_execve(getname(filename), argv, envp);
38b983b3 1851}
51f39a1f
DD
1852
1853COMPAT_SYSCALL_DEFINE5(execveat, int, fd,
1854 const char __user *, filename,
1855 const compat_uptr_t __user *, argv,
1856 const compat_uptr_t __user *, envp,
1857 int, flags)
1858{
1859 int lookup_flags = (flags & AT_EMPTY_PATH) ? LOOKUP_EMPTY : 0;
1860
1861 return compat_do_execveat(fd,
1862 getname_flags(filename, lookup_flags, NULL),
1863 argv, envp, flags);
1864}
38b983b3 1865#endif
This page took 0.937249 seconds and 5 git commands to generate.