Warn and return on fd overflow fdt
[lttng-modules.git] / src / lttng-statedump-impl.c
CommitLineData
b7cdc182 1/* SPDX-License-Identifier: (GPL-2.0-only or LGPL-2.1-only)
9f36eaed 2 *
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3 * lttng-statedump.c
4 *
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5 * Linux Trace Toolkit Next Generation Kernel State Dump
6 *
7 * Copyright 2005 Jean-Hugues Deschenes <jean-hugues.deschenes@polymtl.ca>
8 * Copyright 2006-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
9 *
10 * Changes:
11 * Eric Clement: Add listing of network IP interface
12 * 2006, 2007 Mathieu Desnoyers Fix kernel threads
13 * Various updates
c337ddc2
MD
14 */
15
16#include <linux/init.h>
17#include <linux/module.h>
18#include <linux/netlink.h>
19#include <linux/inet.h>
20#include <linux/ip.h>
21#include <linux/kthread.h>
22#include <linux/proc_fs.h>
23#include <linux/file.h>
24#include <linux/interrupt.h>
74019c61 25#include <linux/irq.h>
c337ddc2 26#include <linux/irqnr.h>
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27#include <linux/netdevice.h>
28#include <linux/inetdevice.h>
c337ddc2 29#include <linux/mm.h>
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30#include <linux/swap.h>
31#include <linux/wait.h>
32#include <linux/mutex.h>
f0dbdefb 33#include <linux/device.h>
c337ddc2 34
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35#include <linux/blkdev.h>
36
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37#include <lttng/events.h>
38#include <lttng/tracer.h>
0f7e7309 39#include <lttng/events-internal.h>
ffcc8734 40#include <wrapper/cpu.h>
241ae9a8 41#include <wrapper/irqdesc.h>
241ae9a8 42#include <wrapper/fdtable.h>
241ae9a8 43#include <wrapper/tracepoint.h>
82fbf9d3 44#include <wrapper/blkdev.h>
7259e6a5 45#include <wrapper/sched.h>
c337ddc2 46
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MD
47/* Define the tracepoints, but do not build the probes */
48#define CREATE_TRACE_POINTS
4f47ccf0 49#define TRACE_INCLUDE_PATH instrumentation/events
c337ddc2 50#define TRACE_INCLUDE_FILE lttng-statedump
3bc29f0a 51#define LTTNG_INSTRUMENTATION
4f47ccf0 52#include <instrumentation/events/lttng-statedump.h>
c337ddc2 53
0116245f 54LTTNG_DEFINE_TRACE(lttng_statedump_block_device,
8cdc1a81 55 TP_PROTO(struct lttng_kernel_session *session,
0116245f
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56 dev_t dev, const char *diskname),
57 TP_ARGS(session, dev, diskname));
58
59LTTNG_DEFINE_TRACE(lttng_statedump_end,
8cdc1a81 60 TP_PROTO(struct lttng_kernel_session *session),
0116245f
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61 TP_ARGS(session));
62
63LTTNG_DEFINE_TRACE(lttng_statedump_interrupt,
8cdc1a81 64 TP_PROTO(struct lttng_kernel_session *session,
0116245f
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65 unsigned int irq, const char *chip_name,
66 struct irqaction *action),
67 TP_ARGS(session, irq, chip_name, action));
68
69LTTNG_DEFINE_TRACE(lttng_statedump_file_descriptor,
8cdc1a81 70 TP_PROTO(struct lttng_kernel_session *session,
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71 struct files_struct *files,
72 int fd, const char *filename,
73 unsigned int flags, fmode_t fmode),
74 TP_ARGS(session, files, fd, filename, flags, fmode));
75
76LTTNG_DEFINE_TRACE(lttng_statedump_start,
8cdc1a81 77 TP_PROTO(struct lttng_kernel_session *session),
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78 TP_ARGS(session));
79
80LTTNG_DEFINE_TRACE(lttng_statedump_process_state,
8cdc1a81 81 TP_PROTO(struct lttng_kernel_session *session,
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82 struct task_struct *p,
83 int type, int mode, int submode, int status,
84 struct files_struct *files),
85 TP_ARGS(session, p, type, mode, submode, status, files));
86
87LTTNG_DEFINE_TRACE(lttng_statedump_process_pid_ns,
8cdc1a81 88 TP_PROTO(struct lttng_kernel_session *session,
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89 struct task_struct *p,
90 struct pid_namespace *pid_ns),
91 TP_ARGS(session, p, pid_ns));
92
5f4c791e 93#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(4,6,0))
0116245f 94LTTNG_DEFINE_TRACE(lttng_statedump_process_cgroup_ns,
8cdc1a81 95 TP_PROTO(struct lttng_kernel_session *session,
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96 struct task_struct *p,
97 struct cgroup_namespace *cgroup_ns),
98 TP_ARGS(session, p, cgroup_ns));
1965e6b4 99#endif
0116245f
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100
101LTTNG_DEFINE_TRACE(lttng_statedump_process_ipc_ns,
8cdc1a81 102 TP_PROTO(struct lttng_kernel_session *session,
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103 struct task_struct *p,
104 struct ipc_namespace *ipc_ns),
105 TP_ARGS(session, p, ipc_ns));
106
1965e6b4 107#ifndef LTTNG_MNT_NS_MISSING_HEADER
0116245f 108LTTNG_DEFINE_TRACE(lttng_statedump_process_mnt_ns,
8cdc1a81 109 TP_PROTO(struct lttng_kernel_session *session,
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110 struct task_struct *p,
111 struct mnt_namespace *mnt_ns),
112 TP_ARGS(session, p, mnt_ns));
1965e6b4 113#endif
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114
115LTTNG_DEFINE_TRACE(lttng_statedump_process_net_ns,
8cdc1a81 116 TP_PROTO(struct lttng_kernel_session *session,
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117 struct task_struct *p,
118 struct net *net_ns),
119 TP_ARGS(session, p, net_ns));
120
121LTTNG_DEFINE_TRACE(lttng_statedump_process_user_ns,
8cdc1a81 122 TP_PROTO(struct lttng_kernel_session *session,
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123 struct task_struct *p,
124 struct user_namespace *user_ns),
125 TP_ARGS(session, p, user_ns));
126
127LTTNG_DEFINE_TRACE(lttng_statedump_process_uts_ns,
8cdc1a81 128 TP_PROTO(struct lttng_kernel_session *session,
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129 struct task_struct *p,
130 struct uts_namespace *uts_ns),
131 TP_ARGS(session, p, uts_ns));
132
133LTTNG_DEFINE_TRACE(lttng_statedump_process_time_ns,
8cdc1a81 134 TP_PROTO(struct lttng_kernel_session *session,
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135 struct task_struct *p,
136 struct time_namespace *time_ns),
137 TP_ARGS(session, p, time_ns));
138
139LTTNG_DEFINE_TRACE(lttng_statedump_network_interface,
8cdc1a81 140 TP_PROTO(struct lttng_kernel_session *session,
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141 struct net_device *dev, struct in_ifaddr *ifa),
142 TP_ARGS(session, dev, ifa));
143
d0b55e4c 144#ifdef LTTNG_HAVE_STATEDUMP_CPU_TOPOLOGY
0116245f 145LTTNG_DEFINE_TRACE(lttng_statedump_cpu_topology,
8cdc1a81 146 TP_PROTO(struct lttng_kernel_session *session, struct cpuinfo_x86 *c),
0116245f 147 TP_ARGS(session, c));
502e4132 148#endif
20591cf7 149
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150struct lttng_fd_ctx {
151 char *page;
8cdc1a81 152 struct lttng_kernel_session *session;
d561ecfb 153 struct files_struct *files;
361c023a
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154};
155
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156/*
157 * Protected by the trace lock.
158 */
159static struct delayed_work cpu_work[NR_CPUS];
160static DECLARE_WAIT_QUEUE_HEAD(statedump_wq);
161static atomic_t kernel_threads_to_run;
162
163enum lttng_thread_type {
164 LTTNG_USER_THREAD = 0,
165 LTTNG_KERNEL_THREAD = 1,
166};
167
168enum lttng_execution_mode {
169 LTTNG_USER_MODE = 0,
170 LTTNG_SYSCALL = 1,
171 LTTNG_TRAP = 2,
172 LTTNG_IRQ = 3,
173 LTTNG_SOFTIRQ = 4,
174 LTTNG_MODE_UNKNOWN = 5,
175};
176
177enum lttng_execution_submode {
178 LTTNG_NONE = 0,
179 LTTNG_UNKNOWN = 1,
180};
181
182enum lttng_process_status {
183 LTTNG_UNNAMED = 0,
184 LTTNG_WAIT_FORK = 1,
185 LTTNG_WAIT_CPU = 2,
186 LTTNG_EXIT = 3,
187 LTTNG_ZOMBIE = 4,
188 LTTNG_WAIT = 5,
189 LTTNG_RUN = 6,
190 LTTNG_DEAD = 7,
191};
192
fef7fe6a 193
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MH
194#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(6,0,0) || \
195 LTTNG_RHEL_KERNEL_RANGE(5,14,0,163,0,0, 5,15,0,0,0,0))
cc92a211
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196
197#define LTTNG_PART_STRUCT_TYPE struct block_device
198
199static
200int lttng_get_part_name(struct gendisk *disk, struct block_device *part, char *name_buf)
201{
202 int ret;
203
204 ret = snprintf(name_buf, BDEVNAME_SIZE, "%pg", part);
205 if (ret < 0 || ret >= BDEVNAME_SIZE)
206 return -ENOSYS;
207
208 return 0;
209}
210
211static
212dev_t lttng_get_part_devt(struct block_device *part)
213{
214 return part->bd_dev;
215}
216
217#elif (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(5,11,0))
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218
219#define LTTNG_PART_STRUCT_TYPE struct block_device
220
221static
222int lttng_get_part_name(struct gendisk *disk, struct block_device *part, char *name_buf)
223{
224 const char *p;
225
226 p = bdevname(part, name_buf);
227 if (!p)
228 return -ENOSYS;
229
230 return 0;
231}
232
233static
234dev_t lttng_get_part_devt(struct block_device *part)
235{
236 return part->bd_dev;
237}
238
239#else
240
241#define LTTNG_PART_STRUCT_TYPE struct hd_struct
242
243static
244int lttng_get_part_name(struct gendisk *disk, struct hd_struct *part, char *name_buf)
245{
246 const char *p;
247 struct block_device bdev;
248
249 /*
250 * Create a partial 'struct blockdevice' to use
251 * 'bdevname()' which is a simple wrapper over
252 * 'disk_name()' but has the honor to be EXPORT_SYMBOL.
253 */
254 bdev.bd_disk = disk;
255 bdev.bd_part = part;
256
257 p = bdevname(&bdev, name_buf);
258 if (!p)
259 return -ENOSYS;
260
261 return 0;
262}
263
264static
265dev_t lttng_get_part_devt(struct hd_struct *part)
266{
267 return part_devt(part);
268}
269#endif
270
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271#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(5,12,0))
272static
273int lttng_statedump_each_block_device(struct lttng_kernel_session *session, struct gendisk *disk)
274{
275 struct block_device *part;
276 unsigned long idx;
277 int ret = 0;
278
279 /* Include partition 0 */
280 idx = 0;
281
282 rcu_read_lock();
283 xa_for_each(&disk->part_tbl, idx, part) {
284 char name_buf[BDEVNAME_SIZE];
285
286 /* Exclude non-partitions bdev and empty partitions. */
287 if (bdev_is_partition(part) && !bdev_nr_sectors(part))
288 continue;
289
290 if (lttng_get_part_name(disk, part, name_buf) == -ENOSYS) {
291 ret = -ENOSYS;
292 goto end;
293 }
294 trace_lttng_statedump_block_device(session, lttng_get_part_devt(part),
295 name_buf);
296 }
297end:
298 rcu_read_unlock();
299 return ret;
300}
301#else
302static
303int lttng_statedump_each_block_device(struct lttng_kernel_session *session, struct gendisk *disk)
304{
305 struct disk_part_iter piter;
306 LTTNG_PART_STRUCT_TYPE *part;
307
308 disk_part_iter_init(&piter, disk, DISK_PITER_INCL_PART0);
309
310 while ((part = disk_part_iter_next(&piter))) {
311 char name_buf[BDEVNAME_SIZE];
312
313 if (lttng_get_part_name(disk, part, name_buf) == -ENOSYS) {
314 disk_part_iter_exit(&piter);
315 return -ENOSYS;
316 }
317 trace_lttng_statedump_block_device(session, lttng_get_part_devt(part),
318 name_buf);
319 }
320 disk_part_iter_exit(&piter);
321
322 return 0;
323}
324#endif
325
f0dbdefb 326static
8cdc1a81 327int lttng_enumerate_block_devices(struct lttng_kernel_session *session)
f0dbdefb
HD
328{
329 struct class *ptr_block_class;
330 struct device_type *ptr_disk_type;
331 struct class_dev_iter iter;
332 struct device *dev;
7633c773 333 int ret = 0;
f0dbdefb
HD
334
335 ptr_block_class = wrapper_get_block_class();
7633c773
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336 if (!ptr_block_class) {
337 ret = -ENOSYS;
338 goto end;
339 }
f0dbdefb
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340 ptr_disk_type = wrapper_get_disk_type();
341 if (!ptr_disk_type) {
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342 ret = -ENOSYS;
343 goto end;
f0dbdefb
HD
344 }
345 class_dev_iter_init(&iter, ptr_block_class, NULL, ptr_disk_type);
346 while ((dev = class_dev_iter_next(&iter))) {
f0dbdefb 347 struct gendisk *disk = dev_to_disk(dev);
f0dbdefb 348
5a91f3df
MD
349 /*
350 * Don't show empty devices or things that have been
351 * suppressed
352 */
353 if (get_capacity(disk) == 0 ||
fe72ab45 354 (disk->flags & LTTNG_GENHD_FL_HIDDEN))
5a91f3df
MD
355 continue;
356
481fd2a2 357 ret = lttng_statedump_each_block_device(session, disk);
f0dbdefb
HD
358 }
359 class_dev_iter_exit(&iter);
7633c773
MJ
360end:
361 return ret;
f0dbdefb
HD
362}
363
c337ddc2 364#ifdef CONFIG_INET
f0dbdefb 365
c337ddc2 366static
8cdc1a81 367void lttng_enumerate_device(struct lttng_kernel_session *session,
c337ddc2
MD
368 struct net_device *dev)
369{
370 struct in_device *in_dev;
371 struct in_ifaddr *ifa;
372
373 if (dev->flags & IFF_UP) {
374 in_dev = in_dev_get(dev);
375 if (in_dev) {
376 for (ifa = in_dev->ifa_list; ifa != NULL;
377 ifa = ifa->ifa_next) {
378 trace_lttng_statedump_network_interface(
379 session, dev, ifa);
380 }
381 in_dev_put(in_dev);
382 }
383 } else {
384 trace_lttng_statedump_network_interface(
385 session, dev, NULL);
386 }
387}
388
217bc2e4
KS
389#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(6,9,0))
390static
391int lttng_enumerate_network_ip_interface(struct lttng_kernel_session *session)
392{
393 struct net_device *dev;
394
395 rtnl_lock();
396 for_each_netdev(&init_net, dev)
397 lttng_enumerate_device(session, dev);
398 rtnl_unlock();
399
400 return 0;
401}
402#else
c337ddc2 403static
8cdc1a81 404int lttng_enumerate_network_ip_interface(struct lttng_kernel_session *session)
c337ddc2
MD
405{
406 struct net_device *dev;
407
408 read_lock(&dev_base_lock);
409 for_each_netdev(&init_net, dev)
410 lttng_enumerate_device(session, dev);
411 read_unlock(&dev_base_lock);
412
413 return 0;
414}
217bc2e4 415#endif /* (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(6,9,0)) */
c337ddc2
MD
416#else /* CONFIG_INET */
417static inline
8cdc1a81 418int lttng_enumerate_network_ip_interface(struct lttng_kernel_session *session)
c337ddc2
MD
419{
420 return 0;
421}
422#endif /* CONFIG_INET */
423
361c023a
MD
424static
425int lttng_dump_one_fd(const void *p, struct file *file, unsigned int fd)
426{
427 const struct lttng_fd_ctx *ctx = p;
428 const char *s = d_path(&file->f_path, ctx->page, PAGE_SIZE);
29021503 429 unsigned int flags = file->f_flags;
d561ecfb 430 struct fdtable *fdt;
361c023a 431
29021503
MD
432 /*
433 * We don't expose kernel internal flags, only userspace-visible
434 * flags.
435 */
436 flags &= ~FMODE_NONOTIFY;
d561ecfb 437 fdt = files_fdtable(ctx->files);
116e2b72 438
d561ecfb 439 /*
116e2b72
MJ
440 * The fdt should only grow and iterate_fd() holds file_lock, which
441 * should ensure the fdt does not change while the lock is taken but be
442 * cautious and check anyway.
d561ecfb 443 */
116e2b72
MJ
444 if (WARN_ON_ONCE(fd >= fdt->max_fds))
445 return 0;
446
447 if (lttng_close_on_exec(fd, ctx->files))
29021503 448 flags |= O_CLOEXEC;
116e2b72
MJ
449
450 /*
451 * If d_path() failed to get a full path for the file, use the dentry
452 * name instead to at least get a filename.
453 */
361c023a
MD
454 if (IS_ERR(s)) {
455 struct dentry *dentry = file->f_path.dentry;
456
457 /* Make sure we give at least some info */
458 spin_lock(&dentry->d_lock);
e7a0ca72
MD
459 trace_lttng_statedump_file_descriptor(ctx->session,
460 ctx->files, fd, dentry->d_name.name, flags,
461 file->f_mode);
361c023a
MD
462 spin_unlock(&dentry->d_lock);
463 goto end;
464 }
e7a0ca72
MD
465 trace_lttng_statedump_file_descriptor(ctx->session,
466 ctx->files, fd, s, flags, file->f_mode);
361c023a
MD
467end:
468 return 0;
469}
c337ddc2 470
e7a0ca72 471/* Called with task lock held. */
c337ddc2 472static
8cdc1a81 473void lttng_enumerate_files(struct lttng_kernel_session *session,
e7a0ca72
MD
474 struct files_struct *files,
475 char *tmp)
c337ddc2 476{
e7a0ca72 477 struct lttng_fd_ctx ctx = { .page = tmp, .session = session, .files = files, };
c337ddc2 478
1cbe11ed 479 iterate_fd(files, 0, lttng_dump_one_fd, &ctx);
c337ddc2
MD
480}
481
d0b55e4c 482#ifdef LTTNG_HAVE_STATEDUMP_CPU_TOPOLOGY
502e4132 483static
8cdc1a81 484int lttng_enumerate_cpu_topology(struct lttng_kernel_session *session)
502e4132
JD
485{
486 int cpu;
487 const cpumask_t *cpumask = cpu_possible_mask;
488
489 for (cpu = cpumask_first(cpumask); cpu < nr_cpu_ids;
490 cpu = cpumask_next(cpu, cpumask)) {
491 trace_lttng_statedump_cpu_topology(session, &cpu_data(cpu));
492 }
493
494 return 0;
495}
496#else
497static
8cdc1a81 498int lttng_enumerate_cpu_topology(struct lttng_kernel_session *session)
502e4132
JD
499{
500 return 0;
501}
502#endif
503
0658bdda
MD
504#if 0
505/*
506 * FIXME: we cannot take a mmap_sem while in a RCU read-side critical section
507 * (scheduling in atomic). Normally, the tasklist lock protects this kind of
508 * iteration, but it is not exported to modules.
509 */
c337ddc2 510static
8cdc1a81 511void lttng_enumerate_task_vm_maps(struct lttng_kernel_session *session,
c337ddc2
MD
512 struct task_struct *p)
513{
514 struct mm_struct *mm;
515 struct vm_area_struct *map;
516 unsigned long ino;
517
518 /* get_task_mm does a task_lock... */
519 mm = get_task_mm(p);
520 if (!mm)
521 return;
522
523 map = mm->mmap;
524 if (map) {
525 down_read(&mm->mmap_sem);
526 while (map) {
527 if (map->vm_file)
2a059b14 528 ino = map->vm_file->f_path.dentry->d_inode->i_ino;
c337ddc2
MD
529 else
530 ino = 0;
531 trace_lttng_statedump_vm_map(session, p, map, ino);
532 map = map->vm_next;
533 }
534 up_read(&mm->mmap_sem);
535 }
536 mmput(mm);
537}
538
539static
8cdc1a81 540int lttng_enumerate_vm_maps(struct lttng_kernel_session *session)
c337ddc2
MD
541{
542 struct task_struct *p;
543
544 rcu_read_lock();
545 for_each_process(p)
546 lttng_enumerate_task_vm_maps(session, p);
547 rcu_read_unlock();
548 return 0;
549}
0658bdda 550#endif
c337ddc2 551
c337ddc2 552static
8cdc1a81 553int lttng_list_interrupts(struct lttng_kernel_session *session)
c337ddc2
MD
554{
555 unsigned int irq;
556 unsigned long flags = 0;
557 struct irq_desc *desc;
558
559#define irq_to_desc wrapper_irq_to_desc
560 /* needs irq_desc */
561 for_each_irq_desc(irq, desc) {
562 struct irqaction *action;
563 const char *irq_chip_name =
564 irq_desc_get_chip(desc)->name ? : "unnamed_irq_chip";
565
566 local_irq_save(flags);
fc94c945 567 raw_spin_lock(&desc->lock);
c337ddc2
MD
568 for (action = desc->action; action; action = action->next) {
569 trace_lttng_statedump_interrupt(session,
570 irq, irq_chip_name, action);
571 }
fc94c945 572 raw_spin_unlock(&desc->lock);
c337ddc2
MD
573 local_irq_restore(flags);
574 }
cfcee1c7 575 return 0;
c337ddc2
MD
576#undef irq_to_desc
577}
c337ddc2 578
4ba1f53c 579/*
1965e6b4
MJ
580 * Statedump the task's namespaces using the proc filesystem inode number as
581 * the unique identifier. The user and pid ns are nested and will be dumped
582 * recursively.
583 *
4ba1f53c
MD
584 * Called with task lock held.
585 */
73e8ba37 586static
8cdc1a81 587void lttng_statedump_process_ns(struct lttng_kernel_session *session,
73e8ba37
JD
588 struct task_struct *p,
589 enum lttng_thread_type type,
590 enum lttng_execution_mode mode,
591 enum lttng_execution_submode submode,
592 enum lttng_process_status status)
593{
1965e6b4 594 struct nsproxy *proxy;
73e8ba37 595 struct pid_namespace *pid_ns;
1965e6b4 596 struct user_namespace *user_ns;
73e8ba37 597
1965e6b4
MJ
598 /*
599 * The pid and user namespaces are special, they are nested and
600 * accessed with specific functions instead of the nsproxy struct
601 * like the other namespaces.
602 */
887bcdac
MJ
603 pid_ns = task_active_pid_ns(p);
604 do {
1965e6b4 605 trace_lttng_statedump_process_pid_ns(session, p, pid_ns);
adcc8b5e 606 pid_ns = pid_ns ? pid_ns->parent : NULL;
887bcdac 607 } while (pid_ns);
1965e6b4
MJ
608
609
610 user_ns = task_cred_xxx(p, user_ns);
611 do {
612 trace_lttng_statedump_process_user_ns(session, p, user_ns);
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613 /*
614 * trace_lttng_statedump_process_user_ns() internally
615 * checks whether user_ns is NULL. While this does not
616 * appear to be a possible return value for
617 * task_cred_xxx(), err on the safe side and check
618 * for NULL here as well to be consistent with the
619 * paranoid behavior of
620 * trace_lttng_statedump_process_user_ns().
621 */
93e5bcec 622 user_ns = user_ns ? user_ns->parent : NULL;
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623 } while (user_ns);
624
1965e6b4 625 proxy = p->nsproxy;
7724cf27 626
1965e6b4 627 if (proxy) {
5f4c791e 628#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(4,6,0))
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629 trace_lttng_statedump_process_cgroup_ns(session, p, proxy->cgroup_ns);
630#endif
631 trace_lttng_statedump_process_ipc_ns(session, p, proxy->ipc_ns);
632#ifndef LTTNG_MNT_NS_MISSING_HEADER
633 trace_lttng_statedump_process_mnt_ns(session, p, proxy->mnt_ns);
634#endif
635 trace_lttng_statedump_process_net_ns(session, p, proxy->net_ns);
636 trace_lttng_statedump_process_uts_ns(session, p, proxy->uts_ns);
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637#if (LTTNG_LINUX_VERSION_CODE >= LTTNG_KERNEL_VERSION(5,6,0) || \
638 LTTNG_RHEL_KERNEL_RANGE(4,18,0,305,0,0, 4,19,0,0,0,0))
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639 trace_lttng_statedump_process_time_ns(session, p, proxy->time_ns);
640#endif
1965e6b4 641 }
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642}
643
c337ddc2 644static
8cdc1a81 645int lttng_enumerate_process_states(struct lttng_kernel_session *session)
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646{
647 struct task_struct *g, *p;
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648 char *tmp;
649
650 tmp = (char *) __get_free_page(GFP_KERNEL);
651 if (!tmp)
652 return -ENOMEM;
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653
654 rcu_read_lock();
655 for_each_process(g) {
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656 struct files_struct *prev_files = NULL;
657
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658 p = g;
659 do {
660 enum lttng_execution_mode mode =
661 LTTNG_MODE_UNKNOWN;
662 enum lttng_execution_submode submode =
663 LTTNG_UNKNOWN;
664 enum lttng_process_status status;
665 enum lttng_thread_type type;
e7a0ca72 666 struct files_struct *files;
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667
668 task_lock(p);
669 if (p->exit_state == EXIT_ZOMBIE)
670 status = LTTNG_ZOMBIE;
671 else if (p->exit_state == EXIT_DEAD)
672 status = LTTNG_DEAD;
7259e6a5 673 else if (lttng_task_is_running(p)) {
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674 /* Is this a forked child that has not run yet? */
675 if (list_empty(&p->rt.run_list))
676 status = LTTNG_WAIT_FORK;
677 else
678 /*
679 * All tasks are considered as wait_cpu;
680 * the viewer will sort out if the task
681 * was really running at this time.
682 */
683 status = LTTNG_WAIT_CPU;
7259e6a5 684 } else if (lttng_get_task_state(p) &
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685 (TASK_INTERRUPTIBLE | TASK_UNINTERRUPTIBLE)) {
686 /* Task is waiting for something to complete */
687 status = LTTNG_WAIT;
688 } else
689 status = LTTNG_UNNAMED;
690 submode = LTTNG_NONE;
691
692 /*
693 * Verification of t->mm is to filter out kernel
694 * threads; Viewer will further filter out if a
695 * user-space thread was in syscall mode or not.
696 */
697 if (p->mm)
698 type = LTTNG_USER_THREAD;
699 else
700 type = LTTNG_KERNEL_THREAD;
e7a0ca72 701 files = p->files;
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702
703 trace_lttng_statedump_process_state(session,
e7a0ca72 704 p, type, mode, submode, status, files);
73e8ba37 705 lttng_statedump_process_ns(session,
c337ddc2 706 p, type, mode, submode, status);
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707 /*
708 * As an optimisation for the common case, do not
709 * repeat information for the same files_struct in
710 * two consecutive threads. This is the common case
711 * for threads sharing the same fd table. RCU guarantees
712 * that the same files_struct pointer is not re-used
713 * throughout processes/threads iteration.
714 */
715 if (files && files != prev_files) {
716 lttng_enumerate_files(session, files, tmp);
717 prev_files = files;
718 }
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719 task_unlock(p);
720 } while_each_thread(g, p);
721 }
722 rcu_read_unlock();
723
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724 free_page((unsigned long) tmp);
725
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726 return 0;
727}
728
729static
730void lttng_statedump_work_func(struct work_struct *work)
731{
732 if (atomic_dec_and_test(&kernel_threads_to_run))
733 /* If we are the last thread, wake up do_lttng_statedump */
734 wake_up(&statedump_wq);
735}
736
737static
8cdc1a81 738int do_lttng_statedump(struct lttng_kernel_session *session)
c337ddc2 739{
cfcee1c7 740 int cpu, ret;
c337ddc2 741
c337ddc2 742 trace_lttng_statedump_start(session);
cfcee1c7 743 ret = lttng_enumerate_process_states(session);
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744 if (ret)
745 return ret;
746 /*
747 * FIXME
748 * ret = lttng_enumerate_vm_maps(session);
749 * if (ret)
750 * return ret;
751 */
752 ret = lttng_list_interrupts(session);
753 if (ret)
754 return ret;
755 ret = lttng_enumerate_network_ip_interface(session);
756 if (ret)
757 return ret;
758 ret = lttng_enumerate_block_devices(session);
759 switch (ret) {
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760 case 0:
761 break;
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762 case -ENOSYS:
763 printk(KERN_WARNING "LTTng: block device enumeration is not supported by kernel\n");
764 break;
765 default:
766 return ret;
767 }
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768 ret = lttng_enumerate_cpu_topology(session);
769 if (ret)
770 return ret;
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771
772 /* TODO lttng_dump_idt_table(session); */
773 /* TODO lttng_dump_softirq_vec(session); */
774 /* TODO lttng_list_modules(session); */
775 /* TODO lttng_dump_swap_files(session); */
776
777 /*
778 * Fire off a work queue on each CPU. Their sole purpose in life
779 * is to guarantee that each CPU has been in a state where is was in
780 * syscall mode (i.e. not in a trap, an IRQ or a soft IRQ).
781 */
ffcc8734 782 lttng_cpus_read_lock();
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783 atomic_set(&kernel_threads_to_run, num_online_cpus());
784 for_each_online_cpu(cpu) {
785 INIT_DELAYED_WORK(&cpu_work[cpu], lttng_statedump_work_func);
786 schedule_delayed_work_on(cpu, &cpu_work[cpu], 0);
787 }
788 /* Wait for all threads to run */
7a7128e0 789 __wait_event(statedump_wq, (atomic_read(&kernel_threads_to_run) == 0));
ffcc8734 790 lttng_cpus_read_unlock();
c337ddc2 791 /* Our work is done */
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792 trace_lttng_statedump_end(session);
793 return 0;
794}
795
796/*
797 * Called with session mutex held.
798 */
8cdc1a81 799int lttng_statedump_start(struct lttng_kernel_session *session)
c337ddc2 800{
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801 return do_lttng_statedump(session);
802}
803EXPORT_SYMBOL_GPL(lttng_statedump_start);
804
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805static
806int __init lttng_statedump_init(void)
807{
d16aa9c9 808 return 0;
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809}
810
811module_init(lttng_statedump_init);
812
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813static
814void __exit lttng_statedump_exit(void)
815{
816}
817
818module_exit(lttng_statedump_exit);
819
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820MODULE_LICENSE("GPL and additional rights");
821MODULE_AUTHOR("Jean-Hugues Deschenes");
1c124020 822MODULE_DESCRIPTION("LTTng statedump provider");
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823MODULE_VERSION(__stringify(LTTNG_MODULES_MAJOR_VERSION) "."
824 __stringify(LTTNG_MODULES_MINOR_VERSION) "."
825 __stringify(LTTNG_MODULES_PATCHLEVEL_VERSION)
826 LTTNG_MODULES_EXTRAVERSION);
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