1 // SPDX-License-Identifier: GPL-2.0
3 * linux/fs/proc/array.c
5 * Copyright (C) 1992 by Linus Torvalds
6 * based on ideas by Darren Senn
9 * Michael. K. Johnson: stat,statm extensions.
10 * <johnsonm@stolaf.edu>
12 * Pauline Middelink : Made cmdline,envline only break at '\0's, to
13 * make sure SET_PROCTITLE works. Also removed
14 * bad '!' which forced address recalculation for
15 * EVERY character on the current page.
16 * <middelin@polyware.iaf.nl>
18 * Danny ter Haar : added cpuinfo
21 * Alessandro Rubini : profile extension.
22 * <rubini@ipvvis.unipv.it>
24 * Jeff Tranter : added BogoMips field to cpuinfo
25 * <Jeff_Tranter@Mitel.COM>
27 * Bruno Haible : remove 4K limit for the maps file
28 * <haible@ma2s2.mathematik.uni-karlsruhe.de>
30 * Yves Arrouye : remove removal of trailing spaces in get_array.
31 * <Yves.Arrouye@marin.fdn.fr>
33 * Jerome Forissier : added per-CPU time information to /proc/stat
34 * and /proc/<pid>/cpu extension
35 * <forissier@isia.cma.fr>
36 * - Incorporation and non-SMP safe operation
37 * of forissier patch in 2.1.78 by
38 * Hans Marcus <crowbar@concepts.nl>
40 * aeb@cwi.nl : /proc/partitions
43 * Alan Cox : security fixes.
44 * <alan@lxorguk.ukuu.org.uk>
46 * Al Viro : safe handling of mm_struct
48 * Gerhard Wichert : added BIGMEM support
49 * Siemens AG <Gerhard.Wichert@pdb.siemens.de>
51 * Al Viro & Jeff Garzik : moved most of the thing into base.c and
52 * : proc_misc.c. The rest may eventually go into
56 #include <linux/types.h>
57 #include <linux/errno.h>
58 #include <linux/time.h>
59 #include <linux/time_namespace.h>
60 #include <linux/kernel.h>
61 #include <linux/kernel_stat.h>
62 #include <linux/tty.h>
63 #include <linux/string.h>
64 #include <linux/mman.h>
65 #include <linux/sched/mm.h>
66 #include <linux/sched/numa_balancing.h>
67 #include <linux/sched/task_stack.h>
68 #include <linux/sched/task.h>
69 #include <linux/sched/cputime.h>
70 #include <linux/proc_fs.h>
71 #include <linux/ioport.h>
74 #include <linux/hugetlb.h>
75 #include <linux/pagemap.h>
76 #include <linux/swap.h>
77 #include <linux/smp.h>
78 #include <linux/signal.h>
79 #include <linux/highmem.h>
80 #include <linux/file.h>
81 #include <linux/fdtable.h>
82 #include <linux/times.h>
83 #include <linux/cpuset.h>
84 #include <linux/rcupdate.h>
85 #include <linux/delayacct.h>
86 #include <linux/seq_file.h>
87 #include <linux/pid_namespace.h>
88 #include <linux/prctl.h>
89 #include <linux/ptrace.h>
90 #include <linux/string_helpers.h>
91 #include <linux/user_namespace.h>
92 #include <linux/fs_struct.h>
93 #include <linux/kthread.h>
94 #include <linux/mmu_context.h>
96 #include <asm/processor.h>
99 void proc_task_name(struct seq_file
*m
, struct task_struct
*p
, bool escape
)
104 * Test before PF_KTHREAD because all workqueue worker threads are
107 if (p
->flags
& PF_WQ_WORKER
)
108 wq_worker_comm(tcomm
, sizeof(tcomm
), p
);
109 else if (p
->flags
& PF_KTHREAD
)
110 get_kthread_comm(tcomm
, sizeof(tcomm
), p
);
112 get_task_comm(tcomm
, p
);
115 seq_escape_str(m
, tcomm
, ESCAPE_SPACE
| ESCAPE_SPECIAL
, "\n\\");
117 seq_printf(m
, "%.64s", tcomm
);
121 * The task state array is a strange "bitmap" of
122 * reasons to sleep. Thus "running" is zero, and
123 * you can test for combinations of others with
126 static const char * const task_state_array
[] = {
128 /* states in TASK_REPORT: */
129 "R (running)", /* 0x00 */
130 "S (sleeping)", /* 0x01 */
131 "D (disk sleep)", /* 0x02 */
132 "T (stopped)", /* 0x04 */
133 "t (tracing stop)", /* 0x08 */
134 "X (dead)", /* 0x10 */
135 "Z (zombie)", /* 0x20 */
136 "P (parked)", /* 0x40 */
138 /* states beyond TASK_REPORT: */
139 "I (idle)", /* 0x80 */
142 static inline const char *get_task_state(struct task_struct
*tsk
)
144 BUILD_BUG_ON(1 + ilog2(TASK_REPORT_MAX
) != ARRAY_SIZE(task_state_array
));
145 return task_state_array
[task_state_index(tsk
)];
148 static inline void task_state(struct seq_file
*m
, struct pid_namespace
*ns
,
149 struct pid
*pid
, struct task_struct
*p
)
151 struct user_namespace
*user_ns
= seq_user_ns(m
);
152 struct group_info
*group_info
;
154 struct task_struct
*tracer
;
155 const struct cred
*cred
;
156 pid_t ppid
, tpid
= 0, tgid
, ngid
;
157 unsigned int max_fds
= 0;
160 ppid
= pid_alive(p
) ?
161 task_tgid_nr_ns(rcu_dereference(p
->real_parent
), ns
) : 0;
163 tracer
= ptrace_parent(p
);
165 tpid
= task_pid_nr_ns(tracer
, ns
);
167 tgid
= task_tgid_nr_ns(p
, ns
);
168 ngid
= task_numa_group_id(p
);
169 cred
= get_task_cred(p
);
173 umask
= p
->fs
->umask
;
175 max_fds
= files_fdtable(p
->files
)->max_fds
;
180 seq_printf(m
, "Umask:\t%#04o\n", umask
);
181 seq_puts(m
, "State:\t");
182 seq_puts(m
, get_task_state(p
));
184 seq_put_decimal_ull(m
, "\nTgid:\t", tgid
);
185 seq_put_decimal_ull(m
, "\nNgid:\t", ngid
);
186 seq_put_decimal_ull(m
, "\nPid:\t", pid_nr_ns(pid
, ns
));
187 seq_put_decimal_ull(m
, "\nPPid:\t", ppid
);
188 seq_put_decimal_ull(m
, "\nTracerPid:\t", tpid
);
189 seq_put_decimal_ull(m
, "\nUid:\t", from_kuid_munged(user_ns
, cred
->uid
));
190 seq_put_decimal_ull(m
, "\t", from_kuid_munged(user_ns
, cred
->euid
));
191 seq_put_decimal_ull(m
, "\t", from_kuid_munged(user_ns
, cred
->suid
));
192 seq_put_decimal_ull(m
, "\t", from_kuid_munged(user_ns
, cred
->fsuid
));
193 seq_put_decimal_ull(m
, "\nGid:\t", from_kgid_munged(user_ns
, cred
->gid
));
194 seq_put_decimal_ull(m
, "\t", from_kgid_munged(user_ns
, cred
->egid
));
195 seq_put_decimal_ull(m
, "\t", from_kgid_munged(user_ns
, cred
->sgid
));
196 seq_put_decimal_ull(m
, "\t", from_kgid_munged(user_ns
, cred
->fsgid
));
197 seq_put_decimal_ull(m
, "\nFDSize:\t", max_fds
);
199 seq_puts(m
, "\nGroups:\t");
200 group_info
= cred
->group_info
;
201 for (g
= 0; g
< group_info
->ngroups
; g
++)
202 seq_put_decimal_ull(m
, g
? " " : "",
203 from_kgid_munged(user_ns
, group_info
->gid
[g
]));
205 /* Trailing space shouldn't have been added in the first place. */
209 seq_puts(m
, "\nNStgid:");
210 for (g
= ns
->level
; g
<= pid
->level
; g
++)
211 seq_put_decimal_ull(m
, "\t", task_tgid_nr_ns(p
, pid
->numbers
[g
].ns
));
212 seq_puts(m
, "\nNSpid:");
213 for (g
= ns
->level
; g
<= pid
->level
; g
++)
214 seq_put_decimal_ull(m
, "\t", task_pid_nr_ns(p
, pid
->numbers
[g
].ns
));
215 seq_puts(m
, "\nNSpgid:");
216 for (g
= ns
->level
; g
<= pid
->level
; g
++)
217 seq_put_decimal_ull(m
, "\t", task_pgrp_nr_ns(p
, pid
->numbers
[g
].ns
));
218 seq_puts(m
, "\nNSsid:");
219 for (g
= ns
->level
; g
<= pid
->level
; g
++)
220 seq_put_decimal_ull(m
, "\t", task_session_nr_ns(p
, pid
->numbers
[g
].ns
));
224 seq_printf(m
, "Kthread:\t%c\n", p
->flags
& PF_KTHREAD
? '1' : '0');
227 void render_sigset_t(struct seq_file
*m
, const char *header
,
239 if (sigismember(set
, i
+1)) x
|= 1;
240 if (sigismember(set
, i
+2)) x
|= 2;
241 if (sigismember(set
, i
+3)) x
|= 4;
242 if (sigismember(set
, i
+4)) x
|= 8;
243 seq_putc(m
, hex_asc
[x
]);
249 static void collect_sigign_sigcatch(struct task_struct
*p
, sigset_t
*sigign
,
252 struct k_sigaction
*k
;
255 k
= p
->sighand
->action
;
256 for (i
= 1; i
<= _NSIG
; ++i
, ++k
) {
257 if (k
->sa
.sa_handler
== SIG_IGN
)
258 sigaddset(sigign
, i
);
259 else if (k
->sa
.sa_handler
!= SIG_DFL
)
260 sigaddset(sigcatch
, i
);
264 static inline void task_sig(struct seq_file
*m
, struct task_struct
*p
)
267 sigset_t pending
, shpending
, blocked
, ignored
, caught
;
269 unsigned int qsize
= 0;
270 unsigned long qlim
= 0;
272 sigemptyset(&pending
);
273 sigemptyset(&shpending
);
274 sigemptyset(&blocked
);
275 sigemptyset(&ignored
);
276 sigemptyset(&caught
);
278 if (lock_task_sighand(p
, &flags
)) {
279 pending
= p
->pending
.signal
;
280 shpending
= p
->signal
->shared_pending
.signal
;
281 blocked
= p
->blocked
;
282 collect_sigign_sigcatch(p
, &ignored
, &caught
);
283 num_threads
= get_nr_threads(p
);
284 rcu_read_lock(); /* FIXME: is this correct? */
285 qsize
= get_rlimit_value(task_ucounts(p
), UCOUNT_RLIMIT_SIGPENDING
);
287 qlim
= task_rlimit(p
, RLIMIT_SIGPENDING
);
288 unlock_task_sighand(p
, &flags
);
291 seq_put_decimal_ull(m
, "Threads:\t", num_threads
);
292 seq_put_decimal_ull(m
, "\nSigQ:\t", qsize
);
293 seq_put_decimal_ull(m
, "/", qlim
);
295 /* render them all */
296 render_sigset_t(m
, "\nSigPnd:\t", &pending
);
297 render_sigset_t(m
, "ShdPnd:\t", &shpending
);
298 render_sigset_t(m
, "SigBlk:\t", &blocked
);
299 render_sigset_t(m
, "SigIgn:\t", &ignored
);
300 render_sigset_t(m
, "SigCgt:\t", &caught
);
303 static void render_cap_t(struct seq_file
*m
, const char *header
,
307 seq_put_hex_ll(m
, NULL
, a
->val
, 16);
311 static inline void task_cap(struct seq_file
*m
, struct task_struct
*p
)
313 const struct cred
*cred
;
314 kernel_cap_t cap_inheritable
, cap_permitted
, cap_effective
,
315 cap_bset
, cap_ambient
;
318 cred
= __task_cred(p
);
319 cap_inheritable
= cred
->cap_inheritable
;
320 cap_permitted
= cred
->cap_permitted
;
321 cap_effective
= cred
->cap_effective
;
322 cap_bset
= cred
->cap_bset
;
323 cap_ambient
= cred
->cap_ambient
;
326 render_cap_t(m
, "CapInh:\t", &cap_inheritable
);
327 render_cap_t(m
, "CapPrm:\t", &cap_permitted
);
328 render_cap_t(m
, "CapEff:\t", &cap_effective
);
329 render_cap_t(m
, "CapBnd:\t", &cap_bset
);
330 render_cap_t(m
, "CapAmb:\t", &cap_ambient
);
333 static inline void task_seccomp(struct seq_file
*m
, struct task_struct
*p
)
335 seq_put_decimal_ull(m
, "NoNewPrivs:\t", task_no_new_privs(p
));
336 #ifdef CONFIG_SECCOMP
337 seq_put_decimal_ull(m
, "\nSeccomp:\t", p
->seccomp
.mode
);
338 #ifdef CONFIG_SECCOMP_FILTER
339 seq_put_decimal_ull(m
, "\nSeccomp_filters:\t",
340 atomic_read(&p
->seccomp
.filter_count
));
343 seq_puts(m
, "\nSpeculation_Store_Bypass:\t");
344 switch (arch_prctl_spec_ctrl_get(p
, PR_SPEC_STORE_BYPASS
)) {
346 seq_puts(m
, "unknown");
348 case PR_SPEC_NOT_AFFECTED
:
349 seq_puts(m
, "not vulnerable");
351 case PR_SPEC_PRCTL
| PR_SPEC_FORCE_DISABLE
:
352 seq_puts(m
, "thread force mitigated");
354 case PR_SPEC_PRCTL
| PR_SPEC_DISABLE
:
355 seq_puts(m
, "thread mitigated");
357 case PR_SPEC_PRCTL
| PR_SPEC_ENABLE
:
358 seq_puts(m
, "thread vulnerable");
360 case PR_SPEC_DISABLE
:
361 seq_puts(m
, "globally mitigated");
364 seq_puts(m
, "vulnerable");
368 seq_puts(m
, "\nSpeculationIndirectBranch:\t");
369 switch (arch_prctl_spec_ctrl_get(p
, PR_SPEC_INDIRECT_BRANCH
)) {
371 seq_puts(m
, "unsupported");
373 case PR_SPEC_NOT_AFFECTED
:
374 seq_puts(m
, "not affected");
376 case PR_SPEC_PRCTL
| PR_SPEC_FORCE_DISABLE
:
377 seq_puts(m
, "conditional force disabled");
379 case PR_SPEC_PRCTL
| PR_SPEC_DISABLE
:
380 seq_puts(m
, "conditional disabled");
382 case PR_SPEC_PRCTL
| PR_SPEC_ENABLE
:
383 seq_puts(m
, "conditional enabled");
386 seq_puts(m
, "always enabled");
388 case PR_SPEC_DISABLE
:
389 seq_puts(m
, "always disabled");
392 seq_puts(m
, "unknown");
398 static inline void task_context_switch_counts(struct seq_file
*m
,
399 struct task_struct
*p
)
401 seq_put_decimal_ull(m
, "voluntary_ctxt_switches:\t", p
->nvcsw
);
402 seq_put_decimal_ull(m
, "\nnonvoluntary_ctxt_switches:\t", p
->nivcsw
);
406 static void task_cpus_allowed(struct seq_file
*m
, struct task_struct
*task
)
408 seq_printf(m
, "Cpus_allowed:\t%*pb\n",
409 cpumask_pr_args(&task
->cpus_mask
));
410 seq_printf(m
, "Cpus_allowed_list:\t%*pbl\n",
411 cpumask_pr_args(&task
->cpus_mask
));
414 static inline void task_core_dumping(struct seq_file
*m
, struct task_struct
*task
)
416 seq_put_decimal_ull(m
, "CoreDumping:\t", !!task
->signal
->core_state
);
420 static inline void task_thp_status(struct seq_file
*m
, struct mm_struct
*mm
)
422 bool thp_enabled
= IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE
);
425 thp_enabled
= !test_bit(MMF_DISABLE_THP
, &mm
->flags
);
426 seq_printf(m
, "THP_enabled:\t%d\n", thp_enabled
);
429 static inline void task_untag_mask(struct seq_file
*m
, struct mm_struct
*mm
)
431 seq_printf(m
, "untag_mask:\t%#lx\n", mm_untag_mask(mm
));
434 __weak
void arch_proc_pid_thread_features(struct seq_file
*m
,
435 struct task_struct
*task
)
439 int proc_pid_status(struct seq_file
*m
, struct pid_namespace
*ns
,
440 struct pid
*pid
, struct task_struct
*task
)
442 struct mm_struct
*mm
= get_task_mm(task
);
444 seq_puts(m
, "Name:\t");
445 proc_task_name(m
, task
, true);
448 task_state(m
, ns
, pid
, task
);
452 task_core_dumping(m
, task
);
453 task_thp_status(m
, mm
);
454 task_untag_mask(m
, mm
);
459 task_seccomp(m
, task
);
460 task_cpus_allowed(m
, task
);
461 cpuset_task_status_allowed(m
, task
);
462 task_context_switch_counts(m
, task
);
463 arch_proc_pid_thread_features(m
, task
);
467 static int do_task_stat(struct seq_file
*m
, struct pid_namespace
*ns
,
468 struct pid
*pid
, struct task_struct
*task
, int whole
)
470 unsigned long vsize
, eip
, esp
, wchan
= 0;
472 int tty_pgrp
= -1, tty_nr
= 0;
473 sigset_t sigign
, sigcatch
;
475 pid_t ppid
= 0, pgid
= -1, sid
= -1;
478 struct mm_struct
*mm
;
479 unsigned long long start_time
;
480 unsigned long cmin_flt
, cmaj_flt
, min_flt
, maj_flt
;
481 u64 cutime
, cstime
, cgtime
, utime
, stime
, gtime
;
482 unsigned long rsslim
= 0;
484 int exit_code
= task
->exit_code
;
485 struct signal_struct
*sig
= task
->signal
;
486 unsigned int seq
= 1;
488 state
= *get_task_state(task
);
489 vsize
= eip
= esp
= 0;
490 permitted
= ptrace_may_access(task
, PTRACE_MODE_READ_FSCREDS
| PTRACE_MODE_NOAUDIT
);
491 mm
= get_task_mm(task
);
493 vsize
= task_vsize(mm
);
495 * esp and eip are intentionally zeroed out. There is no
496 * non-racy way to read them without freezing the task.
497 * Programs that need reliable values can use ptrace(2).
499 * The only exception is if the task is core dumping because
500 * a program is not able to use ptrace(2) in that case. It is
501 * safe because the task has stopped executing permanently.
503 if (permitted
&& (task
->flags
& (PF_EXITING
|PF_DUMPCORE
))) {
504 if (try_get_task_stack(task
)) {
505 eip
= KSTK_EIP(task
);
506 esp
= KSTK_ESP(task
);
507 put_task_stack(task
);
512 sigemptyset(&sigign
);
513 sigemptyset(&sigcatch
);
515 if (lock_task_sighand(task
, &flags
)) {
517 struct pid
*pgrp
= tty_get_pgrp(sig
->tty
);
518 tty_pgrp
= pid_nr_ns(pgrp
, ns
);
520 tty_nr
= new_encode_dev(tty_devnum(sig
->tty
));
523 num_threads
= get_nr_threads(task
);
524 collect_sigign_sigcatch(task
, &sigign
, &sigcatch
);
526 rsslim
= READ_ONCE(sig
->rlim
[RLIMIT_RSS
].rlim_cur
);
529 if (sig
->flags
& (SIGNAL_GROUP_EXIT
| SIGNAL_STOP_STOPPED
))
530 exit_code
= sig
->group_exit_code
;
533 sid
= task_session_nr_ns(task
, ns
);
534 ppid
= task_tgid_nr_ns(task
->real_parent
, ns
);
535 pgid
= task_pgrp_nr_ns(task
, ns
);
537 unlock_task_sighand(task
, &flags
);
540 if (permitted
&& (!whole
|| num_threads
< 2))
541 wchan
= !task_is_running(task
);
544 seq
++; /* 2 on the 1st/lockless path, otherwise odd */
545 flags
= read_seqbegin_or_lock_irqsave(&sig
->stats_lock
, &seq
);
547 cmin_flt
= sig
->cmin_flt
;
548 cmaj_flt
= sig
->cmaj_flt
;
549 cutime
= sig
->cutime
;
550 cstime
= sig
->cstime
;
551 cgtime
= sig
->cgtime
;
554 struct task_struct
*t
;
556 min_flt
= sig
->min_flt
;
557 maj_flt
= sig
->maj_flt
;
561 __for_each_thread(sig
, t
) {
562 min_flt
+= t
->min_flt
;
563 maj_flt
+= t
->maj_flt
;
564 gtime
+= task_gtime(t
);
568 } while (need_seqretry(&sig
->stats_lock
, seq
));
569 done_seqretry_irqrestore(&sig
->stats_lock
, seq
, flags
);
572 thread_group_cputime_adjusted(task
, &utime
, &stime
);
574 task_cputime_adjusted(task
, &utime
, &stime
);
575 min_flt
= task
->min_flt
;
576 maj_flt
= task
->maj_flt
;
577 gtime
= task_gtime(task
);
580 /* scale priority and nice values from timeslices to -20..20 */
581 /* to make it look like a "normal" Unix priority/nice value */
582 priority
= task_prio(task
);
583 nice
= task_nice(task
);
585 /* apply timens offset for boottime and convert nsec -> ticks */
587 nsec_to_clock_t(timens_add_boottime_ns(task
->start_boottime
));
589 seq_put_decimal_ull(m
, "", pid_nr_ns(pid
, ns
));
591 proc_task_name(m
, task
, false);
594 seq_put_decimal_ll(m
, " ", ppid
);
595 seq_put_decimal_ll(m
, " ", pgid
);
596 seq_put_decimal_ll(m
, " ", sid
);
597 seq_put_decimal_ll(m
, " ", tty_nr
);
598 seq_put_decimal_ll(m
, " ", tty_pgrp
);
599 seq_put_decimal_ull(m
, " ", task
->flags
);
600 seq_put_decimal_ull(m
, " ", min_flt
);
601 seq_put_decimal_ull(m
, " ", cmin_flt
);
602 seq_put_decimal_ull(m
, " ", maj_flt
);
603 seq_put_decimal_ull(m
, " ", cmaj_flt
);
604 seq_put_decimal_ull(m
, " ", nsec_to_clock_t(utime
));
605 seq_put_decimal_ull(m
, " ", nsec_to_clock_t(stime
));
606 seq_put_decimal_ll(m
, " ", nsec_to_clock_t(cutime
));
607 seq_put_decimal_ll(m
, " ", nsec_to_clock_t(cstime
));
608 seq_put_decimal_ll(m
, " ", priority
);
609 seq_put_decimal_ll(m
, " ", nice
);
610 seq_put_decimal_ll(m
, " ", num_threads
);
611 seq_put_decimal_ull(m
, " ", 0);
612 seq_put_decimal_ull(m
, " ", start_time
);
613 seq_put_decimal_ull(m
, " ", vsize
);
614 seq_put_decimal_ull(m
, " ", mm
? get_mm_rss(mm
) : 0);
615 seq_put_decimal_ull(m
, " ", rsslim
);
616 seq_put_decimal_ull(m
, " ", mm
? (permitted
? mm
->start_code
: 1) : 0);
617 seq_put_decimal_ull(m
, " ", mm
? (permitted
? mm
->end_code
: 1) : 0);
618 seq_put_decimal_ull(m
, " ", (permitted
&& mm
) ? mm
->start_stack
: 0);
619 seq_put_decimal_ull(m
, " ", esp
);
620 seq_put_decimal_ull(m
, " ", eip
);
621 /* The signal information here is obsolete.
622 * It must be decimal for Linux 2.0 compatibility.
623 * Use /proc/#/status for real-time signals.
625 seq_put_decimal_ull(m
, " ", task
->pending
.signal
.sig
[0] & 0x7fffffffUL
);
626 seq_put_decimal_ull(m
, " ", task
->blocked
.sig
[0] & 0x7fffffffUL
);
627 seq_put_decimal_ull(m
, " ", sigign
.sig
[0] & 0x7fffffffUL
);
628 seq_put_decimal_ull(m
, " ", sigcatch
.sig
[0] & 0x7fffffffUL
);
631 * We used to output the absolute kernel address, but that's an
632 * information leak - so instead we show a 0/1 flag here, to signal
633 * to user-space whether there's a wchan field in /proc/PID/wchan.
635 * This works with older implementations of procps as well.
637 seq_put_decimal_ull(m
, " ", wchan
);
639 seq_put_decimal_ull(m
, " ", 0);
640 seq_put_decimal_ull(m
, " ", 0);
641 seq_put_decimal_ll(m
, " ", task
->exit_signal
);
642 seq_put_decimal_ll(m
, " ", task_cpu(task
));
643 seq_put_decimal_ull(m
, " ", task
->rt_priority
);
644 seq_put_decimal_ull(m
, " ", task
->policy
);
645 seq_put_decimal_ull(m
, " ", delayacct_blkio_ticks(task
));
646 seq_put_decimal_ull(m
, " ", nsec_to_clock_t(gtime
));
647 seq_put_decimal_ll(m
, " ", nsec_to_clock_t(cgtime
));
649 if (mm
&& permitted
) {
650 seq_put_decimal_ull(m
, " ", mm
->start_data
);
651 seq_put_decimal_ull(m
, " ", mm
->end_data
);
652 seq_put_decimal_ull(m
, " ", mm
->start_brk
);
653 seq_put_decimal_ull(m
, " ", mm
->arg_start
);
654 seq_put_decimal_ull(m
, " ", mm
->arg_end
);
655 seq_put_decimal_ull(m
, " ", mm
->env_start
);
656 seq_put_decimal_ull(m
, " ", mm
->env_end
);
658 seq_puts(m
, " 0 0 0 0 0 0 0");
661 seq_put_decimal_ll(m
, " ", exit_code
);
671 int proc_tid_stat(struct seq_file
*m
, struct pid_namespace
*ns
,
672 struct pid
*pid
, struct task_struct
*task
)
674 return do_task_stat(m
, ns
, pid
, task
, 0);
677 int proc_tgid_stat(struct seq_file
*m
, struct pid_namespace
*ns
,
678 struct pid
*pid
, struct task_struct
*task
)
680 return do_task_stat(m
, ns
, pid
, task
, 1);
683 int proc_pid_statm(struct seq_file
*m
, struct pid_namespace
*ns
,
684 struct pid
*pid
, struct task_struct
*task
)
686 struct mm_struct
*mm
= get_task_mm(task
);
690 unsigned long resident
= 0;
691 unsigned long shared
= 0;
692 unsigned long text
= 0;
693 unsigned long data
= 0;
695 size
= task_statm(mm
, &shared
, &text
, &data
, &resident
);
699 * For quick read, open code by putting numbers directly
701 * seq_printf(m, "%lu %lu %lu %lu 0 %lu 0\n",
702 * size, resident, shared, text, data);
704 seq_put_decimal_ull(m
, "", size
);
705 seq_put_decimal_ull(m
, " ", resident
);
706 seq_put_decimal_ull(m
, " ", shared
);
707 seq_put_decimal_ull(m
, " ", text
);
708 seq_put_decimal_ull(m
, " ", 0);
709 seq_put_decimal_ull(m
, " ", data
);
710 seq_put_decimal_ull(m
, " ", 0);
713 seq_write(m
, "0 0 0 0 0 0 0\n", 14);
718 #ifdef CONFIG_PROC_CHILDREN
720 get_children_pid(struct inode
*inode
, struct pid
*pid_prev
, loff_t pos
)
722 struct task_struct
*start
, *task
;
723 struct pid
*pid
= NULL
;
725 read_lock(&tasklist_lock
);
727 start
= pid_task(proc_pid(inode
), PIDTYPE_PID
);
732 * Lets try to continue searching first, this gives
733 * us significant speedup on children-rich processes.
736 task
= pid_task(pid_prev
, PIDTYPE_PID
);
737 if (task
&& task
->real_parent
== start
&&
738 !(list_empty(&task
->sibling
))) {
739 if (list_is_last(&task
->sibling
, &start
->children
))
741 task
= list_first_entry(&task
->sibling
,
742 struct task_struct
, sibling
);
743 pid
= get_pid(task_pid(task
));
751 * We might miss some children here if children
752 * are exited while we were not holding the lock,
753 * but it was never promised to be accurate that
756 * "Just suppose that the parent sleeps, but N children
757 * exit after we printed their tids. Now the slow paths
758 * skips N extra children, we miss N tasks." (c)
760 * So one need to stop or freeze the leader and all
761 * its children to get a precise result.
763 list_for_each_entry(task
, &start
->children
, sibling
) {
765 pid
= get_pid(task_pid(task
));
771 read_unlock(&tasklist_lock
);
775 static int children_seq_show(struct seq_file
*seq
, void *v
)
777 struct inode
*inode
= file_inode(seq
->file
);
779 seq_printf(seq
, "%d ", pid_nr_ns(v
, proc_pid_ns(inode
->i_sb
)));
783 static void *children_seq_start(struct seq_file
*seq
, loff_t
*pos
)
785 return get_children_pid(file_inode(seq
->file
), NULL
, *pos
);
788 static void *children_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
792 pid
= get_children_pid(file_inode(seq
->file
), v
, *pos
+ 1);
799 static void children_seq_stop(struct seq_file
*seq
, void *v
)
804 static const struct seq_operations children_seq_ops
= {
805 .start
= children_seq_start
,
806 .next
= children_seq_next
,
807 .stop
= children_seq_stop
,
808 .show
= children_seq_show
,
811 static int children_seq_open(struct inode
*inode
, struct file
*file
)
813 return seq_open(file
, &children_seq_ops
);
816 const struct file_operations proc_tid_children_operations
= {
817 .open
= children_seq_open
,
820 .release
= seq_release
,
822 #endif /* CONFIG_PROC_CHILDREN */