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CommitLineData
1da177e4
LT
1/*
2 * linux/kernel/fork.c
3 *
4 * Copyright (C) 1991, 1992 Linus Torvalds
5 */
6
7/*
8 * 'fork.c' contains the help-routines for the 'fork' system call
9 * (see also entry.S and others).
10 * Fork is rather simple, once you get the hang of it, but the memory
11 * management can be a bitch. See 'mm/memory.c': 'copy_page_range()'
12 */
13
1da177e4
LT
14#include <linux/slab.h>
15#include <linux/init.h>
16#include <linux/unistd.h>
1da177e4
LT
17#include <linux/module.h>
18#include <linux/vmalloc.h>
19#include <linux/completion.h>
1da177e4
LT
20#include <linux/personality.h>
21#include <linux/mempolicy.h>
22#include <linux/sem.h>
23#include <linux/file.h>
9f3acc31 24#include <linux/fdtable.h>
da9cbc87 25#include <linux/iocontext.h>
1da177e4
LT
26#include <linux/key.h>
27#include <linux/binfmts.h>
28#include <linux/mman.h>
cddb8a5c 29#include <linux/mmu_notifier.h>
1da177e4 30#include <linux/fs.h>
ab516013 31#include <linux/nsproxy.h>
c59ede7b 32#include <linux/capability.h>
1da177e4 33#include <linux/cpu.h>
b4f48b63 34#include <linux/cgroup.h>
1da177e4 35#include <linux/security.h>
a1e78772 36#include <linux/hugetlb.h>
e2cfabdf 37#include <linux/seccomp.h>
1da177e4
LT
38#include <linux/swap.h>
39#include <linux/syscalls.h>
40#include <linux/jiffies.h>
41#include <linux/futex.h>
8141c7f3 42#include <linux/compat.h>
207205a2 43#include <linux/kthread.h>
7c3ab738 44#include <linux/task_io_accounting_ops.h>
ab2af1f5 45#include <linux/rcupdate.h>
1da177e4
LT
46#include <linux/ptrace.h>
47#include <linux/mount.h>
48#include <linux/audit.h>
78fb7466 49#include <linux/memcontrol.h>
f201ae23 50#include <linux/ftrace.h>
5e2bf014 51#include <linux/proc_fs.h>
1da177e4
LT
52#include <linux/profile.h>
53#include <linux/rmap.h>
f8af4da3 54#include <linux/ksm.h>
1da177e4 55#include <linux/acct.h>
8f0ab514 56#include <linux/tsacct_kern.h>
9f46080c 57#include <linux/cn_proc.h>
ba96a0c8 58#include <linux/freezer.h>
ca74e92b 59#include <linux/delayacct.h>
ad4ecbcb 60#include <linux/taskstats_kern.h>
0a425405 61#include <linux/random.h>
522ed776 62#include <linux/tty.h>
fd0928df 63#include <linux/blkdev.h>
5ad4e53b 64#include <linux/fs_struct.h>
7c9f8861 65#include <linux/magic.h>
cdd6c482 66#include <linux/perf_event.h>
42c4ab41 67#include <linux/posix-timers.h>
8e7cac79 68#include <linux/user-return-notifier.h>
3d5992d2 69#include <linux/oom.h>
ba76149f 70#include <linux/khugepaged.h>
d80e731e 71#include <linux/signalfd.h>
0326f5a9 72#include <linux/uprobes.h>
a27bb332 73#include <linux/aio.h>
1da177e4
LT
74
75#include <asm/pgtable.h>
76#include <asm/pgalloc.h>
77#include <asm/uaccess.h>
78#include <asm/mmu_context.h>
79#include <asm/cacheflush.h>
80#include <asm/tlbflush.h>
81
ad8d75ff
SR
82#include <trace/events/sched.h>
83
43d2b113
KH
84#define CREATE_TRACE_POINTS
85#include <trace/events/task.h>
86
1da177e4
LT
87/*
88 * Protected counters by write_lock_irq(&tasklist_lock)
89 */
90unsigned long total_forks; /* Handle normal Linux uptimes. */
fb0a685c 91int nr_threads; /* The idle threads do not count.. */
1da177e4
LT
92
93int max_threads; /* tunable limit on nr_threads */
94
95DEFINE_PER_CPU(unsigned long, process_counts) = 0;
96
c59923a1 97__cacheline_aligned DEFINE_RWLOCK(tasklist_lock); /* outer */
db1466b3
PM
98
99#ifdef CONFIG_PROVE_RCU
100int lockdep_tasklist_lock_is_held(void)
101{
102 return lockdep_is_held(&tasklist_lock);
103}
104EXPORT_SYMBOL_GPL(lockdep_tasklist_lock_is_held);
105#endif /* #ifdef CONFIG_PROVE_RCU */
1da177e4
LT
106
107int nr_processes(void)
108{
109 int cpu;
110 int total = 0;
111
1d510750 112 for_each_possible_cpu(cpu)
1da177e4
LT
113 total += per_cpu(process_counts, cpu);
114
115 return total;
116}
117
f19b9f74
AM
118void __weak arch_release_task_struct(struct task_struct *tsk)
119{
120}
121
f5e10287 122#ifndef CONFIG_ARCH_TASK_STRUCT_ALLOCATOR
e18b890b 123static struct kmem_cache *task_struct_cachep;
41101809
TG
124
125static inline struct task_struct *alloc_task_struct_node(int node)
126{
127 return kmem_cache_alloc_node(task_struct_cachep, GFP_KERNEL, node);
128}
129
41101809
TG
130static inline void free_task_struct(struct task_struct *tsk)
131{
41101809
TG
132 kmem_cache_free(task_struct_cachep, tsk);
133}
1da177e4
LT
134#endif
135
f19b9f74
AM
136void __weak arch_release_thread_info(struct thread_info *ti)
137{
138}
139
f5e10287 140#ifndef CONFIG_ARCH_THREAD_INFO_ALLOCATOR
41101809 141
0d15d74a
TG
142/*
143 * Allocate pages if THREAD_SIZE is >= PAGE_SIZE, otherwise use a
144 * kmemcache based allocator.
145 */
146# if THREAD_SIZE >= PAGE_SIZE
b6a84016
ED
147static struct thread_info *alloc_thread_info_node(struct task_struct *tsk,
148 int node)
b69c49b7 149{
2ad306b1 150 struct page *page = alloc_pages_node(node, THREADINFO_GFP_ACCOUNTED,
2889f608 151 THREAD_SIZE_ORDER);
b6a84016
ED
152
153 return page ? page_address(page) : NULL;
b69c49b7
FT
154}
155
156static inline void free_thread_info(struct thread_info *ti)
157{
2ad306b1 158 free_memcg_kmem_pages((unsigned long)ti, THREAD_SIZE_ORDER);
b69c49b7 159}
0d15d74a
TG
160# else
161static struct kmem_cache *thread_info_cache;
162
163static struct thread_info *alloc_thread_info_node(struct task_struct *tsk,
164 int node)
165{
166 return kmem_cache_alloc_node(thread_info_cache, THREADINFO_GFP, node);
167}
168
169static void free_thread_info(struct thread_info *ti)
170{
0d15d74a
TG
171 kmem_cache_free(thread_info_cache, ti);
172}
173
174void thread_info_cache_init(void)
175{
176 thread_info_cache = kmem_cache_create("thread_info", THREAD_SIZE,
177 THREAD_SIZE, 0, NULL);
178 BUG_ON(thread_info_cache == NULL);
179}
180# endif
b69c49b7
FT
181#endif
182
1da177e4 183/* SLAB cache for signal_struct structures (tsk->signal) */
e18b890b 184static struct kmem_cache *signal_cachep;
1da177e4
LT
185
186/* SLAB cache for sighand_struct structures (tsk->sighand) */
e18b890b 187struct kmem_cache *sighand_cachep;
1da177e4
LT
188
189/* SLAB cache for files_struct structures (tsk->files) */
e18b890b 190struct kmem_cache *files_cachep;
1da177e4
LT
191
192/* SLAB cache for fs_struct structures (tsk->fs) */
e18b890b 193struct kmem_cache *fs_cachep;
1da177e4
LT
194
195/* SLAB cache for vm_area_struct structures */
e18b890b 196struct kmem_cache *vm_area_cachep;
1da177e4
LT
197
198/* SLAB cache for mm_struct structures (tsk->mm) */
e18b890b 199static struct kmem_cache *mm_cachep;
1da177e4 200
c6a7f572
KM
201static void account_kernel_stack(struct thread_info *ti, int account)
202{
203 struct zone *zone = page_zone(virt_to_page(ti));
204
205 mod_zone_page_state(zone, NR_KERNEL_STACK, account);
206}
207
1da177e4
LT
208void free_task(struct task_struct *tsk)
209{
c6a7f572 210 account_kernel_stack(tsk->stack, -1);
f19b9f74 211 arch_release_thread_info(tsk->stack);
f7e4217b 212 free_thread_info(tsk->stack);
23f78d4a 213 rt_mutex_debug_task_free(tsk);
fb52607a 214 ftrace_graph_exit_task(tsk);
e2cfabdf 215 put_seccomp_filter(tsk);
f19b9f74 216 arch_release_task_struct(tsk);
1da177e4
LT
217 free_task_struct(tsk);
218}
219EXPORT_SYMBOL(free_task);
220
ea6d290c
ON
221static inline void free_signal_struct(struct signal_struct *sig)
222{
97101eb4 223 taskstats_tgid_free(sig);
1c5354de 224 sched_autogroup_exit(sig);
ea6d290c
ON
225 kmem_cache_free(signal_cachep, sig);
226}
227
228static inline void put_signal_struct(struct signal_struct *sig)
229{
1c5354de 230 if (atomic_dec_and_test(&sig->sigcnt))
ea6d290c
ON
231 free_signal_struct(sig);
232}
233
158d9ebd 234void __put_task_struct(struct task_struct *tsk)
1da177e4 235{
270f722d 236 WARN_ON(!tsk->exit_state);
1da177e4
LT
237 WARN_ON(atomic_read(&tsk->usage));
238 WARN_ON(tsk == current);
239
1a2a4d06 240 security_task_free(tsk);
e0e81739 241 exit_creds(tsk);
35df17c5 242 delayacct_tsk_free(tsk);
ea6d290c 243 put_signal_struct(tsk->signal);
1da177e4
LT
244
245 if (!profile_handoff_task(tsk))
246 free_task(tsk);
247}
77c100c8 248EXPORT_SYMBOL_GPL(__put_task_struct);
1da177e4 249
6c0a9fa6 250void __init __weak arch_task_cache_init(void) { }
61c4628b 251
1da177e4
LT
252void __init fork_init(unsigned long mempages)
253{
f5e10287 254#ifndef CONFIG_ARCH_TASK_STRUCT_ALLOCATOR
1da177e4
LT
255#ifndef ARCH_MIN_TASKALIGN
256#define ARCH_MIN_TASKALIGN L1_CACHE_BYTES
257#endif
258 /* create a slab on which task_structs can be allocated */
259 task_struct_cachep =
260 kmem_cache_create("task_struct", sizeof(struct task_struct),
2dff4405 261 ARCH_MIN_TASKALIGN, SLAB_PANIC | SLAB_NOTRACK, NULL);
1da177e4
LT
262#endif
263
61c4628b
SS
264 /* do the arch specific task caches init */
265 arch_task_cache_init();
266
1da177e4
LT
267 /*
268 * The default maximum number of threads is set to a safe
269 * value: the thread structures can take up at most half
270 * of memory.
271 */
272 max_threads = mempages / (8 * THREAD_SIZE / PAGE_SIZE);
273
274 /*
275 * we need to allow at least 20 threads to boot a system
276 */
fb0a685c 277 if (max_threads < 20)
1da177e4
LT
278 max_threads = 20;
279
280 init_task.signal->rlim[RLIMIT_NPROC].rlim_cur = max_threads/2;
281 init_task.signal->rlim[RLIMIT_NPROC].rlim_max = max_threads/2;
282 init_task.signal->rlim[RLIMIT_SIGPENDING] =
283 init_task.signal->rlim[RLIMIT_NPROC];
284}
285
61c4628b
SS
286int __attribute__((weak)) arch_dup_task_struct(struct task_struct *dst,
287 struct task_struct *src)
288{
289 *dst = *src;
290 return 0;
291}
292
1da177e4
LT
293static struct task_struct *dup_task_struct(struct task_struct *orig)
294{
295 struct task_struct *tsk;
296 struct thread_info *ti;
7c9f8861 297 unsigned long *stackend;
207205a2 298 int node = tsk_fork_get_node(orig);
3e26c149 299 int err;
1da177e4 300
504f52b5 301 tsk = alloc_task_struct_node(node);
1da177e4
LT
302 if (!tsk)
303 return NULL;
304
b6a84016 305 ti = alloc_thread_info_node(tsk, node);
f19b9f74
AM
306 if (!ti)
307 goto free_tsk;
1da177e4 308
fb0a685c 309 err = arch_dup_task_struct(tsk, orig);
164c33c6 310 if (err)
f19b9f74 311 goto free_ti;
164c33c6 312
87bec58a
AM
313 tsk->stack = ti;
314
315 setup_thread_stack(tsk, orig);
8e7cac79 316 clear_user_return_notifier(tsk);
f26f9aff 317 clear_tsk_need_resched(tsk);
7c9f8861
ES
318 stackend = end_of_stack(tsk);
319 *stackend = STACK_END_MAGIC; /* for overflow detection */
1da177e4 320
0a425405
AV
321#ifdef CONFIG_CC_STACKPROTECTOR
322 tsk->stack_canary = get_random_int();
323#endif
324
fb0a685c
DRO
325 /*
326 * One for us, one for whoever does the "release_task()" (usually
327 * parent)
328 */
329 atomic_set(&tsk->usage, 2);
6c5c9341 330#ifdef CONFIG_BLK_DEV_IO_TRACE
2056a782 331 tsk->btrace_seq = 0;
6c5c9341 332#endif
a0aa7f68 333 tsk->splice_pipe = NULL;
5640f768 334 tsk->task_frag.page = NULL;
c6a7f572
KM
335
336 account_kernel_stack(ti, 1);
337
1da177e4 338 return tsk;
61c4628b 339
f19b9f74 340free_ti:
61c4628b 341 free_thread_info(ti);
f19b9f74 342free_tsk:
61c4628b
SS
343 free_task_struct(tsk);
344 return NULL;
1da177e4
LT
345}
346
347#ifdef CONFIG_MMU
a39bc516 348static int dup_mmap(struct mm_struct *mm, struct mm_struct *oldmm)
1da177e4 349{
297c5eee 350 struct vm_area_struct *mpnt, *tmp, *prev, **pprev;
1da177e4
LT
351 struct rb_node **rb_link, *rb_parent;
352 int retval;
353 unsigned long charge;
1da177e4 354
32cdba1e 355 uprobe_start_dup_mmap();
1da177e4 356 down_write(&oldmm->mmap_sem);
ec8c0446 357 flush_cache_dup_mm(oldmm);
f8ac4ec9 358 uprobe_dup_mmap(oldmm, mm);
ad339451
IM
359 /*
360 * Not linked in yet - no deadlock potential:
361 */
362 down_write_nested(&mm->mmap_sem, SINGLE_DEPTH_NESTING);
7ee78232 363
1da177e4
LT
364 mm->locked_vm = 0;
365 mm->mmap = NULL;
366 mm->mmap_cache = NULL;
1da177e4 367 mm->map_count = 0;
94894244 368 cpumask_clear(mm_cpumask(mm));
1da177e4
LT
369 mm->mm_rb = RB_ROOT;
370 rb_link = &mm->mm_rb.rb_node;
371 rb_parent = NULL;
372 pprev = &mm->mmap;
f8af4da3 373 retval = ksm_fork(mm, oldmm);
ba76149f
AA
374 if (retval)
375 goto out;
376 retval = khugepaged_fork(mm, oldmm);
f8af4da3
HD
377 if (retval)
378 goto out;
1da177e4 379
297c5eee 380 prev = NULL;
fd3e42fc 381 for (mpnt = oldmm->mmap; mpnt; mpnt = mpnt->vm_next) {
1da177e4
LT
382 struct file *file;
383
384 if (mpnt->vm_flags & VM_DONTCOPY) {
ab50b8ed 385 vm_stat_account(mm, mpnt->vm_flags, mpnt->vm_file,
44de9d0c 386 -vma_pages(mpnt));
1da177e4
LT
387 continue;
388 }
389 charge = 0;
390 if (mpnt->vm_flags & VM_ACCOUNT) {
b2412b7f
HS
391 unsigned long len = vma_pages(mpnt);
392
191c5424 393 if (security_vm_enough_memory_mm(oldmm, len)) /* sic */
1da177e4
LT
394 goto fail_nomem;
395 charge = len;
396 }
e94b1766 397 tmp = kmem_cache_alloc(vm_area_cachep, GFP_KERNEL);
1da177e4
LT
398 if (!tmp)
399 goto fail_nomem;
400 *tmp = *mpnt;
5beb4930 401 INIT_LIST_HEAD(&tmp->anon_vma_chain);
ef0855d3
ON
402 retval = vma_dup_policy(mpnt, tmp);
403 if (retval)
1da177e4 404 goto fail_nomem_policy;
a247c3a9 405 tmp->vm_mm = mm;
5beb4930
RR
406 if (anon_vma_fork(tmp, mpnt))
407 goto fail_nomem_anon_vma_fork;
1da177e4 408 tmp->vm_flags &= ~VM_LOCKED;
297c5eee 409 tmp->vm_next = tmp->vm_prev = NULL;
1da177e4
LT
410 file = tmp->vm_file;
411 if (file) {
496ad9aa 412 struct inode *inode = file_inode(file);
b88ed205
HD
413 struct address_space *mapping = file->f_mapping;
414
1da177e4
LT
415 get_file(file);
416 if (tmp->vm_flags & VM_DENYWRITE)
417 atomic_dec(&inode->i_writecount);
3d48ae45 418 mutex_lock(&mapping->i_mmap_mutex);
b88ed205
HD
419 if (tmp->vm_flags & VM_SHARED)
420 mapping->i_mmap_writable++;
b88ed205
HD
421 flush_dcache_mmap_lock(mapping);
422 /* insert tmp into the share list, just after mpnt */
9826a516
ML
423 if (unlikely(tmp->vm_flags & VM_NONLINEAR))
424 vma_nonlinear_insert(tmp,
425 &mapping->i_mmap_nonlinear);
426 else
427 vma_interval_tree_insert_after(tmp, mpnt,
428 &mapping->i_mmap);
b88ed205 429 flush_dcache_mmap_unlock(mapping);
3d48ae45 430 mutex_unlock(&mapping->i_mmap_mutex);
1da177e4
LT
431 }
432
a1e78772
MG
433 /*
434 * Clear hugetlb-related page reserves for children. This only
435 * affects MAP_PRIVATE mappings. Faults generated by the child
436 * are not guaranteed to succeed, even if read-only
437 */
438 if (is_vm_hugetlb_page(tmp))
439 reset_vma_resv_huge_pages(tmp);
440
1da177e4 441 /*
7ee78232 442 * Link in the new vma and copy the page table entries.
1da177e4 443 */
1da177e4
LT
444 *pprev = tmp;
445 pprev = &tmp->vm_next;
297c5eee
LT
446 tmp->vm_prev = prev;
447 prev = tmp;
1da177e4
LT
448
449 __vma_link_rb(mm, tmp, rb_link, rb_parent);
450 rb_link = &tmp->vm_rb.rb_right;
451 rb_parent = &tmp->vm_rb;
452
453 mm->map_count++;
0b0db14c 454 retval = copy_page_range(mm, oldmm, mpnt);
1da177e4
LT
455
456 if (tmp->vm_ops && tmp->vm_ops->open)
457 tmp->vm_ops->open(tmp);
458
459 if (retval)
460 goto out;
461 }
d6dd61c8
JF
462 /* a new mm has just been created */
463 arch_dup_mmap(oldmm, mm);
1da177e4 464 retval = 0;
1da177e4 465out:
7ee78232 466 up_write(&mm->mmap_sem);
fd3e42fc 467 flush_tlb_mm(oldmm);
1da177e4 468 up_write(&oldmm->mmap_sem);
32cdba1e 469 uprobe_end_dup_mmap();
1da177e4 470 return retval;
5beb4930 471fail_nomem_anon_vma_fork:
ef0855d3 472 mpol_put(vma_policy(tmp));
1da177e4
LT
473fail_nomem_policy:
474 kmem_cache_free(vm_area_cachep, tmp);
475fail_nomem:
476 retval = -ENOMEM;
477 vm_unacct_memory(charge);
478 goto out;
479}
480
fb0a685c 481static inline int mm_alloc_pgd(struct mm_struct *mm)
1da177e4
LT
482{
483 mm->pgd = pgd_alloc(mm);
484 if (unlikely(!mm->pgd))
485 return -ENOMEM;
486 return 0;
487}
488
fb0a685c 489static inline void mm_free_pgd(struct mm_struct *mm)
1da177e4 490{
5e541973 491 pgd_free(mm, mm->pgd);
1da177e4
LT
492}
493#else
494#define dup_mmap(mm, oldmm) (0)
495#define mm_alloc_pgd(mm) (0)
496#define mm_free_pgd(mm)
497#endif /* CONFIG_MMU */
498
23ff4440 499__cacheline_aligned_in_smp DEFINE_SPINLOCK(mmlist_lock);
1da177e4 500
e94b1766 501#define allocate_mm() (kmem_cache_alloc(mm_cachep, GFP_KERNEL))
1da177e4
LT
502#define free_mm(mm) (kmem_cache_free(mm_cachep, (mm)))
503
4cb0e11b
HK
504static unsigned long default_dump_filter = MMF_DUMP_FILTER_DEFAULT;
505
506static int __init coredump_filter_setup(char *s)
507{
508 default_dump_filter =
509 (simple_strtoul(s, NULL, 0) << MMF_DUMP_FILTER_SHIFT) &
510 MMF_DUMP_FILTER_MASK;
511 return 1;
512}
513
514__setup("coredump_filter=", coredump_filter_setup);
515
1da177e4
LT
516#include <linux/init_task.h>
517
858f0993
AD
518static void mm_init_aio(struct mm_struct *mm)
519{
520#ifdef CONFIG_AIO
521 spin_lock_init(&mm->ioctx_lock);
db446a08 522 mm->ioctx_table = NULL;
858f0993
AD
523#endif
524}
525
fb0a685c 526static struct mm_struct *mm_init(struct mm_struct *mm, struct task_struct *p)
1da177e4
LT
527{
528 atomic_set(&mm->mm_users, 1);
529 atomic_set(&mm->mm_count, 1);
530 init_rwsem(&mm->mmap_sem);
531 INIT_LIST_HEAD(&mm->mmlist);
f8af4da3
HD
532 mm->flags = (current->mm) ?
533 (current->mm->flags & MMF_INIT_MASK) : default_dump_filter;
999d9fc1 534 mm->core_state = NULL;
1da177e4 535 mm->nr_ptes = 0;
d559db08 536 memset(&mm->rss_stat, 0, sizeof(mm->rss_stat));
1da177e4 537 spin_lock_init(&mm->page_table_lock);
858f0993 538 mm_init_aio(mm);
cf475ad2 539 mm_init_owner(mm, p);
1da177e4
LT
540
541 if (likely(!mm_alloc_pgd(mm))) {
542 mm->def_flags = 0;
cddb8a5c 543 mmu_notifier_mm_init(mm);
1da177e4
LT
544 return mm;
545 }
78fb7466 546
1da177e4
LT
547 free_mm(mm);
548 return NULL;
549}
550
c3f0327f
KK
551static void check_mm(struct mm_struct *mm)
552{
553 int i;
554
555 for (i = 0; i < NR_MM_COUNTERS; i++) {
556 long x = atomic_long_read(&mm->rss_stat.count[i]);
557
558 if (unlikely(x))
559 printk(KERN_ALERT "BUG: Bad rss-counter state "
560 "mm:%p idx:%d val:%ld\n", mm, i, x);
561 }
562
563#ifdef CONFIG_TRANSPARENT_HUGEPAGE
564 VM_BUG_ON(mm->pmd_huge_pte);
565#endif
566}
567
1da177e4
LT
568/*
569 * Allocate and initialize an mm_struct.
570 */
fb0a685c 571struct mm_struct *mm_alloc(void)
1da177e4 572{
fb0a685c 573 struct mm_struct *mm;
1da177e4
LT
574
575 mm = allocate_mm();
de03c72c
KM
576 if (!mm)
577 return NULL;
578
579 memset(mm, 0, sizeof(*mm));
6345d24d
LT
580 mm_init_cpumask(mm);
581 return mm_init(mm, current);
1da177e4
LT
582}
583
584/*
585 * Called when the last reference to the mm
586 * is dropped: either by a lazy thread or by
587 * mmput. Free the page directory and the mm.
588 */
7ad5b3a5 589void __mmdrop(struct mm_struct *mm)
1da177e4
LT
590{
591 BUG_ON(mm == &init_mm);
592 mm_free_pgd(mm);
593 destroy_context(mm);
cddb8a5c 594 mmu_notifier_mm_destroy(mm);
c3f0327f 595 check_mm(mm);
1da177e4
LT
596 free_mm(mm);
597}
6d4e4c4f 598EXPORT_SYMBOL_GPL(__mmdrop);
1da177e4
LT
599
600/*
601 * Decrement the use count and release all resources for an mm.
602 */
603void mmput(struct mm_struct *mm)
604{
0ae26f1b
AM
605 might_sleep();
606
1da177e4 607 if (atomic_dec_and_test(&mm->mm_users)) {
d4b3b638 608 uprobe_clear_state(mm);
1da177e4 609 exit_aio(mm);
1c2fb7a4 610 ksm_exit(mm);
ba76149f 611 khugepaged_exit(mm); /* must run before exit_mmap */
1da177e4 612 exit_mmap(mm);
925d1c40 613 set_mm_exe_file(mm, NULL);
1da177e4
LT
614 if (!list_empty(&mm->mmlist)) {
615 spin_lock(&mmlist_lock);
616 list_del(&mm->mmlist);
617 spin_unlock(&mmlist_lock);
618 }
801460d0
HS
619 if (mm->binfmt)
620 module_put(mm->binfmt->module);
1da177e4
LT
621 mmdrop(mm);
622 }
623}
624EXPORT_SYMBOL_GPL(mmput);
625
38646013
JS
626void set_mm_exe_file(struct mm_struct *mm, struct file *new_exe_file)
627{
628 if (new_exe_file)
629 get_file(new_exe_file);
630 if (mm->exe_file)
631 fput(mm->exe_file);
632 mm->exe_file = new_exe_file;
38646013
JS
633}
634
635struct file *get_mm_exe_file(struct mm_struct *mm)
636{
637 struct file *exe_file;
638
2dd8ad81 639 /* We need mmap_sem to protect against races with removal of exe_file */
38646013
JS
640 down_read(&mm->mmap_sem);
641 exe_file = mm->exe_file;
642 if (exe_file)
643 get_file(exe_file);
644 up_read(&mm->mmap_sem);
645 return exe_file;
646}
647
648static void dup_mm_exe_file(struct mm_struct *oldmm, struct mm_struct *newmm)
649{
650 /* It's safe to write the exe_file pointer without exe_file_lock because
651 * this is called during fork when the task is not yet in /proc */
652 newmm->exe_file = get_mm_exe_file(oldmm);
653}
654
1da177e4
LT
655/**
656 * get_task_mm - acquire a reference to the task's mm
657 *
246bb0b1 658 * Returns %NULL if the task has no mm. Checks PF_KTHREAD (meaning
1da177e4
LT
659 * this kernel workthread has transiently adopted a user mm with use_mm,
660 * to do its AIO) is not set and if so returns a reference to it, after
661 * bumping up the use count. User must release the mm via mmput()
662 * after use. Typically used by /proc and ptrace.
663 */
664struct mm_struct *get_task_mm(struct task_struct *task)
665{
666 struct mm_struct *mm;
667
668 task_lock(task);
669 mm = task->mm;
670 if (mm) {
246bb0b1 671 if (task->flags & PF_KTHREAD)
1da177e4
LT
672 mm = NULL;
673 else
674 atomic_inc(&mm->mm_users);
675 }
676 task_unlock(task);
677 return mm;
678}
679EXPORT_SYMBOL_GPL(get_task_mm);
680
8cdb878d
CY
681struct mm_struct *mm_access(struct task_struct *task, unsigned int mode)
682{
683 struct mm_struct *mm;
684 int err;
685
686 err = mutex_lock_killable(&task->signal->cred_guard_mutex);
687 if (err)
688 return ERR_PTR(err);
689
690 mm = get_task_mm(task);
691 if (mm && mm != current->mm &&
692 !ptrace_may_access(task, mode)) {
693 mmput(mm);
694 mm = ERR_PTR(-EACCES);
695 }
696 mutex_unlock(&task->signal->cred_guard_mutex);
697
698 return mm;
699}
700
57b59c4a 701static void complete_vfork_done(struct task_struct *tsk)
c415c3b4 702{
d68b46fe 703 struct completion *vfork;
c415c3b4 704
d68b46fe
ON
705 task_lock(tsk);
706 vfork = tsk->vfork_done;
707 if (likely(vfork)) {
708 tsk->vfork_done = NULL;
709 complete(vfork);
710 }
711 task_unlock(tsk);
712}
713
714static int wait_for_vfork_done(struct task_struct *child,
715 struct completion *vfork)
716{
717 int killed;
718
719 freezer_do_not_count();
720 killed = wait_for_completion_killable(vfork);
721 freezer_count();
722
723 if (killed) {
724 task_lock(child);
725 child->vfork_done = NULL;
726 task_unlock(child);
727 }
728
729 put_task_struct(child);
730 return killed;
c415c3b4
ON
731}
732
1da177e4
LT
733/* Please note the differences between mmput and mm_release.
734 * mmput is called whenever we stop holding onto a mm_struct,
735 * error success whatever.
736 *
737 * mm_release is called after a mm_struct has been removed
738 * from the current process.
739 *
740 * This difference is important for error handling, when we
741 * only half set up a mm_struct for a new process and need to restore
742 * the old one. Because we mmput the new mm_struct before
743 * restoring the old one. . .
744 * Eric Biederman 10 January 1998
745 */
746void mm_release(struct task_struct *tsk, struct mm_struct *mm)
747{
8141c7f3
LT
748 /* Get rid of any futexes when releasing the mm */
749#ifdef CONFIG_FUTEX
fc6b177d 750 if (unlikely(tsk->robust_list)) {
8141c7f3 751 exit_robust_list(tsk);
fc6b177d
PZ
752 tsk->robust_list = NULL;
753 }
8141c7f3 754#ifdef CONFIG_COMPAT
fc6b177d 755 if (unlikely(tsk->compat_robust_list)) {
8141c7f3 756 compat_exit_robust_list(tsk);
fc6b177d
PZ
757 tsk->compat_robust_list = NULL;
758 }
8141c7f3 759#endif
322a2c10
TG
760 if (unlikely(!list_empty(&tsk->pi_state_list)))
761 exit_pi_state_list(tsk);
8141c7f3
LT
762#endif
763
0326f5a9
SD
764 uprobe_free_utask(tsk);
765
1da177e4
LT
766 /* Get rid of any cached register state */
767 deactivate_mm(tsk, mm);
768
fec1d011
RM
769 /*
770 * If we're exiting normally, clear a user-space tid field if
771 * requested. We leave this alone when dying by signal, to leave
772 * the value intact in a core dump, and to save the unnecessary
d68b46fe
ON
773 * trouble, say, a killed vfork parent shouldn't touch this mm.
774 * Userland only wants this done for a sys_exit.
fec1d011 775 */
9c8a8228
ED
776 if (tsk->clear_child_tid) {
777 if (!(tsk->flags & PF_SIGNALED) &&
778 atomic_read(&mm->mm_users) > 1) {
779 /*
780 * We don't check the error code - if userspace has
781 * not set up a proper pointer then tough luck.
782 */
783 put_user(0, tsk->clear_child_tid);
784 sys_futex(tsk->clear_child_tid, FUTEX_WAKE,
785 1, NULL, NULL, 0);
786 }
1da177e4 787 tsk->clear_child_tid = NULL;
1da177e4 788 }
f7505d64
KK
789
790 /*
791 * All done, finally we can wake up parent and return this mm to him.
792 * Also kthread_stop() uses this completion for synchronization.
793 */
794 if (tsk->vfork_done)
795 complete_vfork_done(tsk);
1da177e4
LT
796}
797
a0a7ec30
JD
798/*
799 * Allocate a new mm structure and copy contents from the
800 * mm structure of the passed in task structure.
801 */
402b0862 802struct mm_struct *dup_mm(struct task_struct *tsk)
a0a7ec30
JD
803{
804 struct mm_struct *mm, *oldmm = current->mm;
805 int err;
806
807 if (!oldmm)
808 return NULL;
809
810 mm = allocate_mm();
811 if (!mm)
812 goto fail_nomem;
813
814 memcpy(mm, oldmm, sizeof(*mm));
6345d24d 815 mm_init_cpumask(mm);
a0a7ec30 816
e7a00c45
AA
817#ifdef CONFIG_TRANSPARENT_HUGEPAGE
818 mm->pmd_huge_pte = NULL;
5bca2303
MG
819#endif
820#ifdef CONFIG_NUMA_BALANCING
821 mm->first_nid = NUMA_PTE_SCAN_INIT;
e7a00c45 822#endif
78fb7466 823 if (!mm_init(mm, tsk))
a0a7ec30
JD
824 goto fail_nomem;
825
826 if (init_new_context(tsk, mm))
827 goto fail_nocontext;
828
925d1c40
MH
829 dup_mm_exe_file(oldmm, mm);
830
a0a7ec30
JD
831 err = dup_mmap(mm, oldmm);
832 if (err)
833 goto free_pt;
834
835 mm->hiwater_rss = get_mm_rss(mm);
836 mm->hiwater_vm = mm->total_vm;
837
801460d0
HS
838 if (mm->binfmt && !try_module_get(mm->binfmt->module))
839 goto free_pt;
840
a0a7ec30
JD
841 return mm;
842
843free_pt:
801460d0
HS
844 /* don't put binfmt in mmput, we haven't got module yet */
845 mm->binfmt = NULL;
a0a7ec30
JD
846 mmput(mm);
847
848fail_nomem:
849 return NULL;
850
851fail_nocontext:
852 /*
853 * If init_new_context() failed, we cannot use mmput() to free the mm
854 * because it calls destroy_context()
855 */
856 mm_free_pgd(mm);
857 free_mm(mm);
858 return NULL;
859}
860
fb0a685c 861static int copy_mm(unsigned long clone_flags, struct task_struct *tsk)
1da177e4 862{
fb0a685c 863 struct mm_struct *mm, *oldmm;
1da177e4
LT
864 int retval;
865
866 tsk->min_flt = tsk->maj_flt = 0;
867 tsk->nvcsw = tsk->nivcsw = 0;
17406b82
MSB
868#ifdef CONFIG_DETECT_HUNG_TASK
869 tsk->last_switch_count = tsk->nvcsw + tsk->nivcsw;
870#endif
1da177e4
LT
871
872 tsk->mm = NULL;
873 tsk->active_mm = NULL;
874
875 /*
876 * Are we cloning a kernel thread?
877 *
878 * We need to steal a active VM for that..
879 */
880 oldmm = current->mm;
881 if (!oldmm)
882 return 0;
883
884 if (clone_flags & CLONE_VM) {
885 atomic_inc(&oldmm->mm_users);
886 mm = oldmm;
1da177e4
LT
887 goto good_mm;
888 }
889
890 retval = -ENOMEM;
a0a7ec30 891 mm = dup_mm(tsk);
1da177e4
LT
892 if (!mm)
893 goto fail_nomem;
894
1da177e4
LT
895good_mm:
896 tsk->mm = mm;
897 tsk->active_mm = mm;
898 return 0;
899
1da177e4
LT
900fail_nomem:
901 return retval;
1da177e4
LT
902}
903
a39bc516 904static int copy_fs(unsigned long clone_flags, struct task_struct *tsk)
1da177e4 905{
498052bb 906 struct fs_struct *fs = current->fs;
1da177e4 907 if (clone_flags & CLONE_FS) {
498052bb 908 /* tsk->fs is already what we want */
2a4419b5 909 spin_lock(&fs->lock);
498052bb 910 if (fs->in_exec) {
2a4419b5 911 spin_unlock(&fs->lock);
498052bb
AV
912 return -EAGAIN;
913 }
914 fs->users++;
2a4419b5 915 spin_unlock(&fs->lock);
1da177e4
LT
916 return 0;
917 }
498052bb 918 tsk->fs = copy_fs_struct(fs);
1da177e4
LT
919 if (!tsk->fs)
920 return -ENOMEM;
921 return 0;
922}
923
fb0a685c 924static int copy_files(unsigned long clone_flags, struct task_struct *tsk)
a016f338
JD
925{
926 struct files_struct *oldf, *newf;
927 int error = 0;
928
929 /*
930 * A background process may not have any files ...
931 */
932 oldf = current->files;
933 if (!oldf)
934 goto out;
935
936 if (clone_flags & CLONE_FILES) {
937 atomic_inc(&oldf->count);
938 goto out;
939 }
940
a016f338
JD
941 newf = dup_fd(oldf, &error);
942 if (!newf)
943 goto out;
944
945 tsk->files = newf;
946 error = 0;
947out:
948 return error;
949}
950
fadad878 951static int copy_io(unsigned long clone_flags, struct task_struct *tsk)
fd0928df
JA
952{
953#ifdef CONFIG_BLOCK
954 struct io_context *ioc = current->io_context;
6e736be7 955 struct io_context *new_ioc;
fd0928df
JA
956
957 if (!ioc)
958 return 0;
fadad878
JA
959 /*
960 * Share io context with parent, if CLONE_IO is set
961 */
962 if (clone_flags & CLONE_IO) {
3d48749d
TH
963 ioc_task_link(ioc);
964 tsk->io_context = ioc;
fadad878 965 } else if (ioprio_valid(ioc->ioprio)) {
6e736be7
TH
966 new_ioc = get_task_io_context(tsk, GFP_KERNEL, NUMA_NO_NODE);
967 if (unlikely(!new_ioc))
fd0928df
JA
968 return -ENOMEM;
969
6e736be7 970 new_ioc->ioprio = ioc->ioprio;
11a3122f 971 put_io_context(new_ioc);
fd0928df
JA
972 }
973#endif
974 return 0;
975}
976
a39bc516 977static int copy_sighand(unsigned long clone_flags, struct task_struct *tsk)
1da177e4
LT
978{
979 struct sighand_struct *sig;
980
60348802 981 if (clone_flags & CLONE_SIGHAND) {
1da177e4
LT
982 atomic_inc(&current->sighand->count);
983 return 0;
984 }
985 sig = kmem_cache_alloc(sighand_cachep, GFP_KERNEL);
e56d0903 986 rcu_assign_pointer(tsk->sighand, sig);
1da177e4
LT
987 if (!sig)
988 return -ENOMEM;
1da177e4
LT
989 atomic_set(&sig->count, 1);
990 memcpy(sig->action, current->sighand->action, sizeof(sig->action));
991 return 0;
992}
993
a7e5328a 994void __cleanup_sighand(struct sighand_struct *sighand)
c81addc9 995{
d80e731e
ON
996 if (atomic_dec_and_test(&sighand->count)) {
997 signalfd_cleanup(sighand);
c81addc9 998 kmem_cache_free(sighand_cachep, sighand);
d80e731e 999 }
c81addc9
ON
1000}
1001
f06febc9
FM
1002
1003/*
1004 * Initialize POSIX timer handling for a thread group.
1005 */
1006static void posix_cpu_timers_init_group(struct signal_struct *sig)
1007{
78d7d407
JS
1008 unsigned long cpu_limit;
1009
f06febc9
FM
1010 /* Thread group counters. */
1011 thread_group_cputime_init(sig);
1012
78d7d407
JS
1013 cpu_limit = ACCESS_ONCE(sig->rlim[RLIMIT_CPU].rlim_cur);
1014 if (cpu_limit != RLIM_INFINITY) {
1015 sig->cputime_expires.prof_exp = secs_to_cputime(cpu_limit);
6279a751
ON
1016 sig->cputimer.running = 1;
1017 }
1018
f06febc9
FM
1019 /* The timer lists. */
1020 INIT_LIST_HEAD(&sig->cpu_timers[0]);
1021 INIT_LIST_HEAD(&sig->cpu_timers[1]);
1022 INIT_LIST_HEAD(&sig->cpu_timers[2]);
1023}
1024
a39bc516 1025static int copy_signal(unsigned long clone_flags, struct task_struct *tsk)
1da177e4
LT
1026{
1027 struct signal_struct *sig;
1da177e4 1028
4ab6c083 1029 if (clone_flags & CLONE_THREAD)
490dea45 1030 return 0;
490dea45 1031
a56704ef 1032 sig = kmem_cache_zalloc(signal_cachep, GFP_KERNEL);
1da177e4
LT
1033 tsk->signal = sig;
1034 if (!sig)
1035 return -ENOMEM;
1036
b3ac022c 1037 sig->nr_threads = 1;
1da177e4 1038 atomic_set(&sig->live, 1);
b3ac022c 1039 atomic_set(&sig->sigcnt, 1);
1da177e4 1040 init_waitqueue_head(&sig->wait_chldexit);
db51aecc 1041 sig->curr_target = tsk;
1da177e4
LT
1042 init_sigpending(&sig->shared_pending);
1043 INIT_LIST_HEAD(&sig->posix_timers);
1044
c9cb2e3d 1045 hrtimer_init(&sig->real_timer, CLOCK_MONOTONIC, HRTIMER_MODE_REL);
1da177e4 1046 sig->real_timer.function = it_real_fn;
1da177e4 1047
1da177e4
LT
1048 task_lock(current->group_leader);
1049 memcpy(sig->rlim, current->signal->rlim, sizeof sig->rlim);
1050 task_unlock(current->group_leader);
1051
6279a751
ON
1052 posix_cpu_timers_init_group(sig);
1053
522ed776 1054 tty_audit_fork(sig);
5091faa4 1055 sched_autogroup_fork(sig);
522ed776 1056
4714d1d3 1057#ifdef CONFIG_CGROUPS
257058ae 1058 init_rwsem(&sig->group_rwsem);
4714d1d3
BB
1059#endif
1060
a63d83f4 1061 sig->oom_score_adj = current->signal->oom_score_adj;
dabb16f6 1062 sig->oom_score_adj_min = current->signal->oom_score_adj_min;
28b83c51 1063
ebec18a6
LP
1064 sig->has_child_subreaper = current->signal->has_child_subreaper ||
1065 current->signal->is_child_subreaper;
1066
9b1bf12d
KM
1067 mutex_init(&sig->cred_guard_mutex);
1068
1da177e4
LT
1069 return 0;
1070}
1071
a39bc516 1072static void copy_flags(unsigned long clone_flags, struct task_struct *p)
1da177e4
LT
1073{
1074 unsigned long new_flags = p->flags;
1075
21aa9af0 1076 new_flags &= ~(PF_SUPERPRIV | PF_WQ_WORKER);
1da177e4 1077 new_flags |= PF_FORKNOEXEC;
1da177e4
LT
1078 p->flags = new_flags;
1079}
1080
17da2bd9 1081SYSCALL_DEFINE1(set_tid_address, int __user *, tidptr)
1da177e4
LT
1082{
1083 current->clear_child_tid = tidptr;
1084
b488893a 1085 return task_pid_vnr(current);
1da177e4
LT
1086}
1087
a39bc516 1088static void rt_mutex_init_task(struct task_struct *p)
23f78d4a 1089{
1d615482 1090 raw_spin_lock_init(&p->pi_lock);
e29e175b 1091#ifdef CONFIG_RT_MUTEXES
732375c6 1092 plist_head_init(&p->pi_waiters);
23f78d4a 1093 p->pi_blocked_on = NULL;
23f78d4a
IM
1094#endif
1095}
1096
cf475ad2
BS
1097#ifdef CONFIG_MM_OWNER
1098void mm_init_owner(struct mm_struct *mm, struct task_struct *p)
1099{
1100 mm->owner = p;
1101}
1102#endif /* CONFIG_MM_OWNER */
1103
f06febc9
FM
1104/*
1105 * Initialize POSIX timer handling for a single task.
1106 */
1107static void posix_cpu_timers_init(struct task_struct *tsk)
1108{
64861634
MS
1109 tsk->cputime_expires.prof_exp = 0;
1110 tsk->cputime_expires.virt_exp = 0;
f06febc9
FM
1111 tsk->cputime_expires.sched_exp = 0;
1112 INIT_LIST_HEAD(&tsk->cpu_timers[0]);
1113 INIT_LIST_HEAD(&tsk->cpu_timers[1]);
1114 INIT_LIST_HEAD(&tsk->cpu_timers[2]);
1115}
1116
81907739
ON
1117static inline void
1118init_task_pid(struct task_struct *task, enum pid_type type, struct pid *pid)
1119{
1120 task->pids[type].pid = pid;
1121}
1122
1da177e4
LT
1123/*
1124 * This creates a new process as a copy of the old one,
1125 * but does not actually start it yet.
1126 *
1127 * It copies the registers, and all the appropriate
1128 * parts of the process environment (as per the clone
1129 * flags). The actual kick-off is left to the caller.
1130 */
36c8b586
IM
1131static struct task_struct *copy_process(unsigned long clone_flags,
1132 unsigned long stack_start,
36c8b586 1133 unsigned long stack_size,
36c8b586 1134 int __user *child_tidptr,
09a05394
RM
1135 struct pid *pid,
1136 int trace)
1da177e4
LT
1137{
1138 int retval;
a24efe62 1139 struct task_struct *p;
1da177e4
LT
1140
1141 if ((clone_flags & (CLONE_NEWNS|CLONE_FS)) == (CLONE_NEWNS|CLONE_FS))
1142 return ERR_PTR(-EINVAL);
1143
e66eded8
EB
1144 if ((clone_flags & (CLONE_NEWUSER|CLONE_FS)) == (CLONE_NEWUSER|CLONE_FS))
1145 return ERR_PTR(-EINVAL);
1146
1da177e4
LT
1147 /*
1148 * Thread groups must share signals as well, and detached threads
1149 * can only be started up within the thread group.
1150 */
1151 if ((clone_flags & CLONE_THREAD) && !(clone_flags & CLONE_SIGHAND))
1152 return ERR_PTR(-EINVAL);
1153
1154 /*
1155 * Shared signal handlers imply shared VM. By way of the above,
1156 * thread groups also imply shared VM. Blocking this case allows
1157 * for various simplifications in other code.
1158 */
1159 if ((clone_flags & CLONE_SIGHAND) && !(clone_flags & CLONE_VM))
1160 return ERR_PTR(-EINVAL);
1161
123be07b
SB
1162 /*
1163 * Siblings of global init remain as zombies on exit since they are
1164 * not reaped by their parent (swapper). To solve this and to avoid
1165 * multi-rooted process trees, prevent global and container-inits
1166 * from creating siblings.
1167 */
1168 if ((clone_flags & CLONE_PARENT) &&
1169 current->signal->flags & SIGNAL_UNKILLABLE)
1170 return ERR_PTR(-EINVAL);
1171
8382fcac 1172 /*
40a0d32d
ON
1173 * If the new process will be in a different pid or user namespace
1174 * do not allow it to share a thread group or signal handlers or
1175 * parent with the forking task.
8382fcac 1176 */
40a0d32d
ON
1177 if (clone_flags & (CLONE_SIGHAND | CLONE_PARENT)) {
1178 if ((clone_flags & (CLONE_NEWUSER | CLONE_NEWPID)) ||
1179 (task_active_pid_ns(current) !=
1180 current->nsproxy->pid_ns_for_children))
1181 return ERR_PTR(-EINVAL);
1182 }
8382fcac 1183
1da177e4
LT
1184 retval = security_task_create(clone_flags);
1185 if (retval)
1186 goto fork_out;
1187
1188 retval = -ENOMEM;
1189 p = dup_task_struct(current);
1190 if (!p)
1191 goto fork_out;
1192
f7e8b616 1193 ftrace_graph_init_task(p);
e2cfabdf 1194 get_seccomp_filter(p);
f7e8b616 1195
bea493a0
PZ
1196 rt_mutex_init_task(p);
1197
d12c1a37 1198#ifdef CONFIG_PROVE_LOCKING
de30a2b3
IM
1199 DEBUG_LOCKS_WARN_ON(!p->hardirqs_enabled);
1200 DEBUG_LOCKS_WARN_ON(!p->softirqs_enabled);
1201#endif
1da177e4 1202 retval = -EAGAIN;
3b11a1de 1203 if (atomic_read(&p->real_cred->user->processes) >=
78d7d407 1204 task_rlimit(p, RLIMIT_NPROC)) {
b57922b6
EP
1205 if (p->real_cred->user != INIT_USER &&
1206 !capable(CAP_SYS_RESOURCE) && !capable(CAP_SYS_ADMIN))
1da177e4
LT
1207 goto bad_fork_free;
1208 }
72fa5997 1209 current->flags &= ~PF_NPROC_EXCEEDED;
1da177e4 1210
f1752eec
DH
1211 retval = copy_creds(p, clone_flags);
1212 if (retval < 0)
1213 goto bad_fork_free;
1da177e4
LT
1214
1215 /*
1216 * If multiple threads are within copy_process(), then this check
1217 * triggers too late. This doesn't hurt, the check is only there
1218 * to stop root fork bombs.
1219 */
04ec93fe 1220 retval = -EAGAIN;
1da177e4
LT
1221 if (nr_threads >= max_threads)
1222 goto bad_fork_cleanup_count;
1223
a1261f54 1224 if (!try_module_get(task_thread_info(p)->exec_domain->module))
1da177e4
LT
1225 goto bad_fork_cleanup_count;
1226
1da177e4 1227 p->did_exec = 0;
ca74e92b 1228 delayacct_tsk_init(p); /* Must remain after dup_task_struct() */
1da177e4 1229 copy_flags(clone_flags, p);
1da177e4
LT
1230 INIT_LIST_HEAD(&p->children);
1231 INIT_LIST_HEAD(&p->sibling);
f41d911f 1232 rcu_copy_process(p);
1da177e4
LT
1233 p->vfork_done = NULL;
1234 spin_lock_init(&p->alloc_lock);
1da177e4 1235
1da177e4
LT
1236 init_sigpending(&p->pending);
1237
64861634
MS
1238 p->utime = p->stime = p->gtime = 0;
1239 p->utimescaled = p->stimescaled = 0;
9fbc42ea 1240#ifndef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE
d37f761d 1241 p->prev_cputime.utime = p->prev_cputime.stime = 0;
d99ca3b9 1242#endif
6a61671b
FW
1243#ifdef CONFIG_VIRT_CPU_ACCOUNTING_GEN
1244 seqlock_init(&p->vtime_seqlock);
1245 p->vtime_snap = 0;
1246 p->vtime_snap_whence = VTIME_SLEEPING;
1247#endif
1248
a3a2e76c
KH
1249#if defined(SPLIT_RSS_COUNTING)
1250 memset(&p->rss_stat, 0, sizeof(p->rss_stat));
1251#endif
172ba844 1252
6976675d
AV
1253 p->default_timer_slack_ns = current->timer_slack_ns;
1254
5995477a 1255 task_io_accounting_init(&p->ioac);
1da177e4
LT
1256 acct_clear_integrals(p);
1257
f06febc9 1258 posix_cpu_timers_init(p);
1da177e4 1259
1da177e4 1260 do_posix_clock_monotonic_gettime(&p->start_time);
924b42d5
TJ
1261 p->real_start_time = p->start_time;
1262 monotonic_to_bootbased(&p->real_start_time);
1da177e4 1263 p->io_context = NULL;
1da177e4 1264 p->audit_context = NULL;
4714d1d3 1265 if (clone_flags & CLONE_THREAD)
257058ae 1266 threadgroup_change_begin(current);
b4f48b63 1267 cgroup_fork(p);
1da177e4 1268#ifdef CONFIG_NUMA
846a16bf 1269 p->mempolicy = mpol_dup(p->mempolicy);
fb0a685c
DRO
1270 if (IS_ERR(p->mempolicy)) {
1271 retval = PTR_ERR(p->mempolicy);
1272 p->mempolicy = NULL;
1273 goto bad_fork_cleanup_cgroup;
1274 }
c61afb18 1275 mpol_fix_fork_child_flag(p);
1da177e4 1276#endif
778d3b0f
MH
1277#ifdef CONFIG_CPUSETS
1278 p->cpuset_mem_spread_rotor = NUMA_NO_NODE;
1279 p->cpuset_slab_spread_rotor = NUMA_NO_NODE;
cc9a6c87 1280 seqcount_init(&p->mems_allowed_seq);
778d3b0f 1281#endif
de30a2b3
IM
1282#ifdef CONFIG_TRACE_IRQFLAGS
1283 p->irq_events = 0;
1284 p->hardirqs_enabled = 0;
1285 p->hardirq_enable_ip = 0;
1286 p->hardirq_enable_event = 0;
1287 p->hardirq_disable_ip = _THIS_IP_;
1288 p->hardirq_disable_event = 0;
1289 p->softirqs_enabled = 1;
1290 p->softirq_enable_ip = _THIS_IP_;
1291 p->softirq_enable_event = 0;
1292 p->softirq_disable_ip = 0;
1293 p->softirq_disable_event = 0;
1294 p->hardirq_context = 0;
1295 p->softirq_context = 0;
1296#endif
fbb9ce95
IM
1297#ifdef CONFIG_LOCKDEP
1298 p->lockdep_depth = 0; /* no locks held yet */
1299 p->curr_chain_key = 0;
1300 p->lockdep_recursion = 0;
1301#endif
1da177e4 1302
408894ee
IM
1303#ifdef CONFIG_DEBUG_MUTEXES
1304 p->blocked_on = NULL; /* not blocked yet */
1305#endif
c255a458 1306#ifdef CONFIG_MEMCG
569b846d
KH
1307 p->memcg_batch.do_batch = 0;
1308 p->memcg_batch.memcg = NULL;
1309#endif
cafe5635
KO
1310#ifdef CONFIG_BCACHE
1311 p->sequential_io = 0;
1312 p->sequential_io_avg = 0;
1313#endif
0f481406 1314
3c90e6e9 1315 /* Perform scheduler related setup. Assign this task to a CPU. */
3e51e3ed 1316 sched_fork(p);
6ab423e0 1317
cdd6c482 1318 retval = perf_event_init_task(p);
6ab423e0
PZ
1319 if (retval)
1320 goto bad_fork_cleanup_policy;
fb0a685c
DRO
1321 retval = audit_alloc(p);
1322 if (retval)
f1752eec 1323 goto bad_fork_cleanup_policy;
1da177e4 1324 /* copy all the process information */
fb0a685c
DRO
1325 retval = copy_semundo(clone_flags, p);
1326 if (retval)
1da177e4 1327 goto bad_fork_cleanup_audit;
fb0a685c
DRO
1328 retval = copy_files(clone_flags, p);
1329 if (retval)
1da177e4 1330 goto bad_fork_cleanup_semundo;
fb0a685c
DRO
1331 retval = copy_fs(clone_flags, p);
1332 if (retval)
1da177e4 1333 goto bad_fork_cleanup_files;
fb0a685c
DRO
1334 retval = copy_sighand(clone_flags, p);
1335 if (retval)
1da177e4 1336 goto bad_fork_cleanup_fs;
fb0a685c
DRO
1337 retval = copy_signal(clone_flags, p);
1338 if (retval)
1da177e4 1339 goto bad_fork_cleanup_sighand;
fb0a685c
DRO
1340 retval = copy_mm(clone_flags, p);
1341 if (retval)
1da177e4 1342 goto bad_fork_cleanup_signal;
fb0a685c
DRO
1343 retval = copy_namespaces(clone_flags, p);
1344 if (retval)
d84f4f99 1345 goto bad_fork_cleanup_mm;
fb0a685c
DRO
1346 retval = copy_io(clone_flags, p);
1347 if (retval)
fd0928df 1348 goto bad_fork_cleanup_namespaces;
afa86fc4 1349 retval = copy_thread(clone_flags, stack_start, stack_size, p);
1da177e4 1350 if (retval)
fd0928df 1351 goto bad_fork_cleanup_io;
1da177e4 1352
425fb2b4
PE
1353 if (pid != &init_struct_pid) {
1354 retval = -ENOMEM;
c2b1df2e 1355 pid = alloc_pid(p->nsproxy->pid_ns_for_children);
425fb2b4 1356 if (!pid)
fd0928df 1357 goto bad_fork_cleanup_io;
425fb2b4
PE
1358 }
1359
1da177e4
LT
1360 p->set_child_tid = (clone_flags & CLONE_CHILD_SETTID) ? child_tidptr : NULL;
1361 /*
1362 * Clear TID on mm_release()?
1363 */
fb0a685c 1364 p->clear_child_tid = (clone_flags & CLONE_CHILD_CLEARTID) ? child_tidptr : NULL;
73c10101
JA
1365#ifdef CONFIG_BLOCK
1366 p->plug = NULL;
1367#endif
42b2dd0a 1368#ifdef CONFIG_FUTEX
8f17d3a5
IM
1369 p->robust_list = NULL;
1370#ifdef CONFIG_COMPAT
1371 p->compat_robust_list = NULL;
1372#endif
c87e2837
IM
1373 INIT_LIST_HEAD(&p->pi_state_list);
1374 p->pi_state_cache = NULL;
42b2dd0a 1375#endif
f9a3879a
GM
1376 /*
1377 * sigaltstack should be cleared when sharing the same VM
1378 */
1379 if ((clone_flags & (CLONE_VM|CLONE_VFORK)) == CLONE_VM)
1380 p->sas_ss_sp = p->sas_ss_size = 0;
1381
1da177e4 1382 /*
6580807d
ON
1383 * Syscall tracing and stepping should be turned off in the
1384 * child regardless of CLONE_PTRACE.
1da177e4 1385 */
6580807d 1386 user_disable_single_step(p);
1da177e4 1387 clear_tsk_thread_flag(p, TIF_SYSCALL_TRACE);
ed75e8d5
LV
1388#ifdef TIF_SYSCALL_EMU
1389 clear_tsk_thread_flag(p, TIF_SYSCALL_EMU);
1390#endif
9745512c 1391 clear_all_latency_tracing(p);
1da177e4 1392
1da177e4 1393 /* ok, now we should be set up.. */
18c830df
ON
1394 p->pid = pid_nr(pid);
1395 if (clone_flags & CLONE_THREAD) {
5f8aadd8 1396 p->exit_signal = -1;
18c830df
ON
1397 p->group_leader = current->group_leader;
1398 p->tgid = current->tgid;
1399 } else {
1400 if (clone_flags & CLONE_PARENT)
1401 p->exit_signal = current->group_leader->exit_signal;
1402 else
1403 p->exit_signal = (clone_flags & CSIGNAL);
1404 p->group_leader = p;
1405 p->tgid = p->pid;
1406 }
5f8aadd8 1407
1da177e4
LT
1408 p->pdeath_signal = 0;
1409 p->exit_state = 0;
1410
9d823e8f
WF
1411 p->nr_dirtied = 0;
1412 p->nr_dirtied_pause = 128 >> (PAGE_SHIFT - 10);
83712358 1413 p->dirty_paused_when = 0;
9d823e8f 1414
47e65328 1415 INIT_LIST_HEAD(&p->thread_group);
158e1645 1416 p->task_works = NULL;
1da177e4 1417
18c830df
ON
1418 /*
1419 * Make it visible to the rest of the system, but dont wake it up yet.
1420 * Need tasklist lock for parent etc handling!
1421 */
1da177e4
LT
1422 write_lock_irq(&tasklist_lock);
1423
1da177e4 1424 /* CLONE_PARENT re-uses the old parent */
2d5516cb 1425 if (clone_flags & (CLONE_PARENT|CLONE_THREAD)) {
1da177e4 1426 p->real_parent = current->real_parent;
2d5516cb
ON
1427 p->parent_exec_id = current->parent_exec_id;
1428 } else {
1da177e4 1429 p->real_parent = current;
2d5516cb
ON
1430 p->parent_exec_id = current->self_exec_id;
1431 }
1da177e4 1432
3f17da69 1433 spin_lock(&current->sighand->siglock);
4a2c7a78
ON
1434
1435 /*
1436 * Process group and session signals need to be delivered to just the
1437 * parent before the fork or both the parent and the child after the
1438 * fork. Restart if a signal comes in before we add the new process to
1439 * it's process group.
1440 * A fatal signal pending means that current will exit, so the new
1441 * thread can't slip out of an OOM kill (or normal SIGKILL).
fb0a685c 1442 */
23ff4440 1443 recalc_sigpending();
4a2c7a78
ON
1444 if (signal_pending(current)) {
1445 spin_unlock(&current->sighand->siglock);
1446 write_unlock_irq(&tasklist_lock);
1447 retval = -ERESTARTNOINTR;
f7e8b616 1448 goto bad_fork_free_pid;
4a2c7a78
ON
1449 }
1450
73b9ebfe 1451 if (likely(p->pid)) {
4b9d33e6 1452 ptrace_init_task(p, (clone_flags & CLONE_PTRACE) || trace);
73b9ebfe 1453
81907739 1454 init_task_pid(p, PIDTYPE_PID, pid);
73b9ebfe 1455 if (thread_group_leader(p)) {
81907739
ON
1456 init_task_pid(p, PIDTYPE_PGID, task_pgrp(current));
1457 init_task_pid(p, PIDTYPE_SID, task_session(current));
1458
1c4042c2 1459 if (is_child_reaper(pid)) {
17cf22c3 1460 ns_of_pid(pid)->child_reaper = p;
1c4042c2
EB
1461 p->signal->flags |= SIGNAL_UNKILLABLE;
1462 }
73b9ebfe 1463
fea9d175 1464 p->signal->leader_pid = pid;
9c9f4ded 1465 p->signal->tty = tty_kref_get(current->signal->tty);
9cd80bbb 1466 list_add_tail(&p->sibling, &p->real_parent->children);
5e85d4ab 1467 list_add_tail_rcu(&p->tasks, &init_task.tasks);
81907739
ON
1468 attach_pid(p, PIDTYPE_PGID);
1469 attach_pid(p, PIDTYPE_SID);
909ea964 1470 __this_cpu_inc(process_counts);
80628ca0
ON
1471 } else {
1472 current->signal->nr_threads++;
1473 atomic_inc(&current->signal->live);
1474 atomic_inc(&current->signal->sigcnt);
80628ca0
ON
1475 list_add_tail_rcu(&p->thread_group,
1476 &p->group_leader->thread_group);
73b9ebfe 1477 }
81907739 1478 attach_pid(p, PIDTYPE_PID);
73b9ebfe 1479 nr_threads++;
1da177e4
LT
1480 }
1481
1da177e4 1482 total_forks++;
3f17da69 1483 spin_unlock(&current->sighand->siglock);
1da177e4 1484 write_unlock_irq(&tasklist_lock);
c13cf856 1485 proc_fork_connector(p);
817929ec 1486 cgroup_post_fork(p);
4714d1d3 1487 if (clone_flags & CLONE_THREAD)
257058ae 1488 threadgroup_change_end(current);
cdd6c482 1489 perf_event_fork(p);
43d2b113
KH
1490
1491 trace_task_newtask(p, clone_flags);
b68e0749 1492 uprobe_copy_process(p);
43d2b113 1493
1da177e4
LT
1494 return p;
1495
425fb2b4
PE
1496bad_fork_free_pid:
1497 if (pid != &init_struct_pid)
1498 free_pid(pid);
fd0928df 1499bad_fork_cleanup_io:
b69f2292
LR
1500 if (p->io_context)
1501 exit_io_context(p);
ab516013 1502bad_fork_cleanup_namespaces:
444f378b 1503 exit_task_namespaces(p);
1da177e4 1504bad_fork_cleanup_mm:
c9f01245 1505 if (p->mm)
1da177e4
LT
1506 mmput(p->mm);
1507bad_fork_cleanup_signal:
4ab6c083 1508 if (!(clone_flags & CLONE_THREAD))
1c5354de 1509 free_signal_struct(p->signal);
1da177e4 1510bad_fork_cleanup_sighand:
a7e5328a 1511 __cleanup_sighand(p->sighand);
1da177e4
LT
1512bad_fork_cleanup_fs:
1513 exit_fs(p); /* blocking */
1514bad_fork_cleanup_files:
1515 exit_files(p); /* blocking */
1516bad_fork_cleanup_semundo:
1517 exit_sem(p);
1518bad_fork_cleanup_audit:
1519 audit_free(p);
1da177e4 1520bad_fork_cleanup_policy:
cdd6c482 1521 perf_event_free_task(p);
1da177e4 1522#ifdef CONFIG_NUMA
f0be3d32 1523 mpol_put(p->mempolicy);
b4f48b63 1524bad_fork_cleanup_cgroup:
1da177e4 1525#endif
4714d1d3 1526 if (clone_flags & CLONE_THREAD)
257058ae 1527 threadgroup_change_end(current);
5edee61e 1528 cgroup_exit(p, 0);
35df17c5 1529 delayacct_tsk_free(p);
a1261f54 1530 module_put(task_thread_info(p)->exec_domain->module);
1da177e4 1531bad_fork_cleanup_count:
d84f4f99 1532 atomic_dec(&p->cred->user->processes);
e0e81739 1533 exit_creds(p);
1da177e4
LT
1534bad_fork_free:
1535 free_task(p);
fe7d37d1
ON
1536fork_out:
1537 return ERR_PTR(retval);
1da177e4
LT
1538}
1539
f106eee1
ON
1540static inline void init_idle_pids(struct pid_link *links)
1541{
1542 enum pid_type type;
1543
1544 for (type = PIDTYPE_PID; type < PIDTYPE_MAX; ++type) {
1545 INIT_HLIST_NODE(&links[type].node); /* not really needed */
1546 links[type].pid = &init_struct_pid;
1547 }
1548}
1549
0db0628d 1550struct task_struct *fork_idle(int cpu)
1da177e4 1551{
36c8b586 1552 struct task_struct *task;
62e791c1 1553 task = copy_process(CLONE_VM, 0, 0, NULL, &init_struct_pid, 0);
f106eee1
ON
1554 if (!IS_ERR(task)) {
1555 init_idle_pids(task->pids);
753ca4f3 1556 init_idle(task, cpu);
f106eee1 1557 }
73b9ebfe 1558
1da177e4
LT
1559 return task;
1560}
1561
1da177e4
LT
1562/*
1563 * Ok, this is the main fork-routine.
1564 *
1565 * It copies the process, and if successful kick-starts
1566 * it and waits for it to finish using the VM if required.
1567 */
1568long do_fork(unsigned long clone_flags,
1569 unsigned long stack_start,
1da177e4
LT
1570 unsigned long stack_size,
1571 int __user *parent_tidptr,
1572 int __user *child_tidptr)
1573{
1574 struct task_struct *p;
1575 int trace = 0;
92476d7f 1576 long nr;
1da177e4 1577
09a05394 1578 /*
4b9d33e6
TH
1579 * Determine whether and which event to report to ptracer. When
1580 * called from kernel_thread or CLONE_UNTRACED is explicitly
1581 * requested, no event is reported; otherwise, report if the event
1582 * for the type of forking is enabled.
09a05394 1583 */
e80d6661 1584 if (!(clone_flags & CLONE_UNTRACED)) {
4b9d33e6
TH
1585 if (clone_flags & CLONE_VFORK)
1586 trace = PTRACE_EVENT_VFORK;
1587 else if ((clone_flags & CSIGNAL) != SIGCHLD)
1588 trace = PTRACE_EVENT_CLONE;
1589 else
1590 trace = PTRACE_EVENT_FORK;
1591
1592 if (likely(!ptrace_event_enabled(current, trace)))
1593 trace = 0;
1594 }
1da177e4 1595
62e791c1 1596 p = copy_process(clone_flags, stack_start, stack_size,
09a05394 1597 child_tidptr, NULL, trace);
1da177e4
LT
1598 /*
1599 * Do this prior waking up the new thread - the thread pointer
1600 * might get invalid after that point, if the thread exits quickly.
1601 */
1602 if (!IS_ERR(p)) {
1603 struct completion vfork;
1604
0a16b607
MD
1605 trace_sched_process_fork(current, p);
1606
6c5f3e7b 1607 nr = task_pid_vnr(p);
30e49c26
PE
1608
1609 if (clone_flags & CLONE_PARENT_SETTID)
1610 put_user(nr, parent_tidptr);
a6f5e063 1611
1da177e4
LT
1612 if (clone_flags & CLONE_VFORK) {
1613 p->vfork_done = &vfork;
1614 init_completion(&vfork);
d68b46fe 1615 get_task_struct(p);
1da177e4
LT
1616 }
1617
3e51e3ed 1618 wake_up_new_task(p);
1da177e4 1619
4b9d33e6
TH
1620 /* forking complete and child started to run, tell ptracer */
1621 if (unlikely(trace))
1622 ptrace_event(trace, nr);
09a05394 1623
1da177e4 1624 if (clone_flags & CLONE_VFORK) {
d68b46fe
ON
1625 if (!wait_for_vfork_done(p, &vfork))
1626 ptrace_event(PTRACE_EVENT_VFORK_DONE, nr);
1da177e4
LT
1627 }
1628 } else {
92476d7f 1629 nr = PTR_ERR(p);
1da177e4 1630 }
92476d7f 1631 return nr;
1da177e4
LT
1632}
1633
2aa3a7f8
AV
1634/*
1635 * Create a kernel thread.
1636 */
1637pid_t kernel_thread(int (*fn)(void *), void *arg, unsigned long flags)
1638{
e80d6661 1639 return do_fork(flags|CLONE_VM|CLONE_UNTRACED, (unsigned long)fn,
2aa3a7f8
AV
1640 (unsigned long)arg, NULL, NULL);
1641}
2aa3a7f8 1642
d2125043
AV
1643#ifdef __ARCH_WANT_SYS_FORK
1644SYSCALL_DEFINE0(fork)
1645{
1646#ifdef CONFIG_MMU
e80d6661 1647 return do_fork(SIGCHLD, 0, 0, NULL, NULL);
d2125043
AV
1648#else
1649 /* can not support in nommu mode */
1650 return(-EINVAL);
1651#endif
1652}
1653#endif
1654
1655#ifdef __ARCH_WANT_SYS_VFORK
1656SYSCALL_DEFINE0(vfork)
1657{
e80d6661 1658 return do_fork(CLONE_VFORK | CLONE_VM | SIGCHLD, 0,
d2125043
AV
1659 0, NULL, NULL);
1660}
1661#endif
1662
1663#ifdef __ARCH_WANT_SYS_CLONE
1664#ifdef CONFIG_CLONE_BACKWARDS
1665SYSCALL_DEFINE5(clone, unsigned long, clone_flags, unsigned long, newsp,
1666 int __user *, parent_tidptr,
1667 int, tls_val,
1668 int __user *, child_tidptr)
1669#elif defined(CONFIG_CLONE_BACKWARDS2)
1670SYSCALL_DEFINE5(clone, unsigned long, newsp, unsigned long, clone_flags,
1671 int __user *, parent_tidptr,
1672 int __user *, child_tidptr,
1673 int, tls_val)
dfa9771a
MS
1674#elif defined(CONFIG_CLONE_BACKWARDS3)
1675SYSCALL_DEFINE6(clone, unsigned long, clone_flags, unsigned long, newsp,
1676 int, stack_size,
1677 int __user *, parent_tidptr,
1678 int __user *, child_tidptr,
1679 int, tls_val)
d2125043
AV
1680#else
1681SYSCALL_DEFINE5(clone, unsigned long, clone_flags, unsigned long, newsp,
1682 int __user *, parent_tidptr,
1683 int __user *, child_tidptr,
1684 int, tls_val)
1685#endif
1686{
2cf09666 1687 return do_fork(clone_flags, newsp, 0, parent_tidptr, child_tidptr);
d2125043
AV
1688}
1689#endif
1690
5fd63b30
RT
1691#ifndef ARCH_MIN_MMSTRUCT_ALIGN
1692#define ARCH_MIN_MMSTRUCT_ALIGN 0
1693#endif
1694
51cc5068 1695static void sighand_ctor(void *data)
aa1757f9
ON
1696{
1697 struct sighand_struct *sighand = data;
1698
a35afb83 1699 spin_lock_init(&sighand->siglock);
b8fceee1 1700 init_waitqueue_head(&sighand->signalfd_wqh);
aa1757f9
ON
1701}
1702
1da177e4
LT
1703void __init proc_caches_init(void)
1704{
1705 sighand_cachep = kmem_cache_create("sighand_cache",
1706 sizeof(struct sighand_struct), 0,
2dff4405
VN
1707 SLAB_HWCACHE_ALIGN|SLAB_PANIC|SLAB_DESTROY_BY_RCU|
1708 SLAB_NOTRACK, sighand_ctor);
1da177e4
LT
1709 signal_cachep = kmem_cache_create("signal_cache",
1710 sizeof(struct signal_struct), 0,
2dff4405 1711 SLAB_HWCACHE_ALIGN|SLAB_PANIC|SLAB_NOTRACK, NULL);
20c2df83 1712 files_cachep = kmem_cache_create("files_cache",
1da177e4 1713 sizeof(struct files_struct), 0,
2dff4405 1714 SLAB_HWCACHE_ALIGN|SLAB_PANIC|SLAB_NOTRACK, NULL);
20c2df83 1715 fs_cachep = kmem_cache_create("fs_cache",
1da177e4 1716 sizeof(struct fs_struct), 0,
2dff4405 1717 SLAB_HWCACHE_ALIGN|SLAB_PANIC|SLAB_NOTRACK, NULL);
6345d24d
LT
1718 /*
1719 * FIXME! The "sizeof(struct mm_struct)" currently includes the
1720 * whole struct cpumask for the OFFSTACK case. We could change
1721 * this to *only* allocate as much of it as required by the
1722 * maximum number of CPU's we can ever have. The cpumask_allocation
1723 * is at the end of the structure, exactly for that reason.
1724 */
1da177e4 1725 mm_cachep = kmem_cache_create("mm_struct",
5fd63b30 1726 sizeof(struct mm_struct), ARCH_MIN_MMSTRUCT_ALIGN,
2dff4405 1727 SLAB_HWCACHE_ALIGN|SLAB_PANIC|SLAB_NOTRACK, NULL);
33e5d769 1728 vm_area_cachep = KMEM_CACHE(vm_area_struct, SLAB_PANIC);
8feae131 1729 mmap_init();
66577193 1730 nsproxy_cache_init();
1da177e4 1731}
cf2e340f 1732
cf2e340f 1733/*
9bfb23fc 1734 * Check constraints on flags passed to the unshare system call.
cf2e340f 1735 */
9bfb23fc 1736static int check_unshare_flags(unsigned long unshare_flags)
cf2e340f 1737{
9bfb23fc
ON
1738 if (unshare_flags & ~(CLONE_THREAD|CLONE_FS|CLONE_NEWNS|CLONE_SIGHAND|
1739 CLONE_VM|CLONE_FILES|CLONE_SYSVSEM|
50804fe3 1740 CLONE_NEWUTS|CLONE_NEWIPC|CLONE_NEWNET|
b2e0d987 1741 CLONE_NEWUSER|CLONE_NEWPID))
9bfb23fc 1742 return -EINVAL;
cf2e340f 1743 /*
9bfb23fc
ON
1744 * Not implemented, but pretend it works if there is nothing to
1745 * unshare. Note that unsharing CLONE_THREAD or CLONE_SIGHAND
1746 * needs to unshare vm.
cf2e340f 1747 */
9bfb23fc
ON
1748 if (unshare_flags & (CLONE_THREAD | CLONE_SIGHAND | CLONE_VM)) {
1749 /* FIXME: get_task_mm() increments ->mm_users */
1750 if (atomic_read(&current->mm->mm_users) > 1)
1751 return -EINVAL;
1752 }
cf2e340f
JD
1753
1754 return 0;
1755}
1756
1757/*
99d1419d 1758 * Unshare the filesystem structure if it is being shared
cf2e340f
JD
1759 */
1760static int unshare_fs(unsigned long unshare_flags, struct fs_struct **new_fsp)
1761{
1762 struct fs_struct *fs = current->fs;
1763
498052bb
AV
1764 if (!(unshare_flags & CLONE_FS) || !fs)
1765 return 0;
1766
1767 /* don't need lock here; in the worst case we'll do useless copy */
1768 if (fs->users == 1)
1769 return 0;
1770
1771 *new_fsp = copy_fs_struct(fs);
1772 if (!*new_fsp)
1773 return -ENOMEM;
cf2e340f
JD
1774
1775 return 0;
1776}
1777
cf2e340f 1778/*
a016f338 1779 * Unshare file descriptor table if it is being shared
cf2e340f
JD
1780 */
1781static int unshare_fd(unsigned long unshare_flags, struct files_struct **new_fdp)
1782{
1783 struct files_struct *fd = current->files;
a016f338 1784 int error = 0;
cf2e340f
JD
1785
1786 if ((unshare_flags & CLONE_FILES) &&
a016f338
JD
1787 (fd && atomic_read(&fd->count) > 1)) {
1788 *new_fdp = dup_fd(fd, &error);
1789 if (!*new_fdp)
1790 return error;
1791 }
cf2e340f
JD
1792
1793 return 0;
1794}
1795
cf2e340f
JD
1796/*
1797 * unshare allows a process to 'unshare' part of the process
1798 * context which was originally shared using clone. copy_*
1799 * functions used by do_fork() cannot be used here directly
1800 * because they modify an inactive task_struct that is being
1801 * constructed. Here we are modifying the current, active,
1802 * task_struct.
1803 */
6559eed8 1804SYSCALL_DEFINE1(unshare, unsigned long, unshare_flags)
cf2e340f 1805{
cf2e340f 1806 struct fs_struct *fs, *new_fs = NULL;
cf2e340f 1807 struct files_struct *fd, *new_fd = NULL;
b2e0d987 1808 struct cred *new_cred = NULL;
cf7b708c 1809 struct nsproxy *new_nsproxy = NULL;
9edff4ab 1810 int do_sysvsem = 0;
9bfb23fc 1811 int err;
cf2e340f 1812
b2e0d987
EB
1813 /*
1814 * If unsharing a user namespace must also unshare the thread.
1815 */
1816 if (unshare_flags & CLONE_NEWUSER)
e66eded8 1817 unshare_flags |= CLONE_THREAD | CLONE_FS;
50804fe3
EB
1818 /*
1819 * If unsharing a thread from a thread group, must also unshare vm.
1820 */
1821 if (unshare_flags & CLONE_THREAD)
1822 unshare_flags |= CLONE_VM;
1823 /*
1824 * If unsharing vm, must also unshare signal handlers.
1825 */
1826 if (unshare_flags & CLONE_VM)
1827 unshare_flags |= CLONE_SIGHAND;
9bfb23fc
ON
1828 /*
1829 * If unsharing namespace, must also unshare filesystem information.
1830 */
1831 if (unshare_flags & CLONE_NEWNS)
1832 unshare_flags |= CLONE_FS;
50804fe3
EB
1833
1834 err = check_unshare_flags(unshare_flags);
1835 if (err)
1836 goto bad_unshare_out;
6013f67f
MS
1837 /*
1838 * CLONE_NEWIPC must also detach from the undolist: after switching
1839 * to a new ipc namespace, the semaphore arrays from the old
1840 * namespace are unreachable.
1841 */
1842 if (unshare_flags & (CLONE_NEWIPC|CLONE_SYSVSEM))
9edff4ab 1843 do_sysvsem = 1;
fb0a685c
DRO
1844 err = unshare_fs(unshare_flags, &new_fs);
1845 if (err)
9bfb23fc 1846 goto bad_unshare_out;
fb0a685c
DRO
1847 err = unshare_fd(unshare_flags, &new_fd);
1848 if (err)
9bfb23fc 1849 goto bad_unshare_cleanup_fs;
b2e0d987 1850 err = unshare_userns(unshare_flags, &new_cred);
fb0a685c 1851 if (err)
9edff4ab 1852 goto bad_unshare_cleanup_fd;
b2e0d987
EB
1853 err = unshare_nsproxy_namespaces(unshare_flags, &new_nsproxy,
1854 new_cred, new_fs);
1855 if (err)
1856 goto bad_unshare_cleanup_cred;
c0b2fc31 1857
b2e0d987 1858 if (new_fs || new_fd || do_sysvsem || new_cred || new_nsproxy) {
9edff4ab
MS
1859 if (do_sysvsem) {
1860 /*
1861 * CLONE_SYSVSEM is equivalent to sys_exit().
1862 */
1863 exit_sem(current);
1864 }
ab516013 1865
6f977e6b 1866 if (new_nsproxy)
cf7b708c 1867 switch_task_namespaces(current, new_nsproxy);
cf2e340f 1868
cf7b708c
PE
1869 task_lock(current);
1870
cf2e340f
JD
1871 if (new_fs) {
1872 fs = current->fs;
2a4419b5 1873 spin_lock(&fs->lock);
cf2e340f 1874 current->fs = new_fs;
498052bb
AV
1875 if (--fs->users)
1876 new_fs = NULL;
1877 else
1878 new_fs = fs;
2a4419b5 1879 spin_unlock(&fs->lock);
cf2e340f
JD
1880 }
1881
cf2e340f
JD
1882 if (new_fd) {
1883 fd = current->files;
1884 current->files = new_fd;
1885 new_fd = fd;
1886 }
1887
1888 task_unlock(current);
b2e0d987
EB
1889
1890 if (new_cred) {
1891 /* Install the new user namespace */
1892 commit_creds(new_cred);
1893 new_cred = NULL;
1894 }
cf2e340f
JD
1895 }
1896
b2e0d987
EB
1897bad_unshare_cleanup_cred:
1898 if (new_cred)
1899 put_cred(new_cred);
cf2e340f
JD
1900bad_unshare_cleanup_fd:
1901 if (new_fd)
1902 put_files_struct(new_fd);
1903
cf2e340f
JD
1904bad_unshare_cleanup_fs:
1905 if (new_fs)
498052bb 1906 free_fs_struct(new_fs);
cf2e340f 1907
cf2e340f
JD
1908bad_unshare_out:
1909 return err;
1910}
3b125388
AV
1911
1912/*
1913 * Helper to unshare the files of the current task.
1914 * We don't want to expose copy_files internals to
1915 * the exec layer of the kernel.
1916 */
1917
1918int unshare_files(struct files_struct **displaced)
1919{
1920 struct task_struct *task = current;
50704516 1921 struct files_struct *copy = NULL;
3b125388
AV
1922 int error;
1923
1924 error = unshare_fd(CLONE_FILES, &copy);
1925 if (error || !copy) {
1926 *displaced = NULL;
1927 return error;
1928 }
1929 *displaced = task->files;
1930 task_lock(task);
1931 task->files = copy;
1932 task_unlock(task);
1933 return 0;
1934}