Docs: explain why unused `lttng_enabler::ctx` is kept around
[lttng-modules.git] / include / lttng / events.h
1 /* SPDX-License-Identifier: (GPL-2.0-only or LGPL-2.1-only)
2 *
3 * lttng/events.h
4 *
5 * Holds LTTng per-session event registry.
6 *
7 * Copyright (C) 2010-2012 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
8 */
9
10 #ifndef _LTTNG_EVENTS_H
11 #define _LTTNG_EVENTS_H
12
13 #include <linux/version.h>
14 #include <linux/list.h>
15 #include <linux/kprobes.h>
16 #include <linux/kref.h>
17 #include <linux/uuid.h>
18 #include <wrapper/uprobes.h>
19 #include <lttng/cpuhotplug.h>
20 #include <lttng/tracer.h>
21 #include <lttng/abi.h>
22 #include <lttng/abi-old.h>
23 #include <lttng/endian.h>
24
25 #define lttng_is_signed_type(type) (((type)(-1)) < 0)
26
27 struct lttng_channel;
28 struct lttng_session;
29 struct lttng_metadata_cache;
30 struct lib_ring_buffer_ctx;
31 struct perf_event;
32 struct perf_event_attr;
33 struct lib_ring_buffer_config;
34
35 /* Type description */
36
37 enum abstract_types {
38 atype_integer,
39 atype_string,
40 atype_enum_nestable,
41 atype_array_nestable,
42 atype_sequence_nestable,
43 atype_struct_nestable,
44 atype_variant_nestable,
45 NR_ABSTRACT_TYPES,
46 };
47
48 enum lttng_string_encodings {
49 lttng_encode_none = 0,
50 lttng_encode_UTF8 = 1,
51 lttng_encode_ASCII = 2,
52 NR_STRING_ENCODINGS,
53 };
54
55 enum channel_type {
56 PER_CPU_CHANNEL,
57 METADATA_CHANNEL,
58 };
59
60 struct lttng_enum_value {
61 unsigned long long value;
62 unsigned int signedness:1;
63 };
64
65 struct lttng_enum_entry {
66 struct lttng_enum_value start, end; /* start and end are inclusive */
67 const char *string;
68 struct {
69 unsigned int is_auto:1;
70 } options;
71 };
72
73 #define __type_integer(_type, _size, _alignment, _signedness, \
74 _byte_order, _base, _encoding) \
75 { \
76 .atype = atype_integer, \
77 .u.integer = \
78 { \
79 .size = (_size) ? : sizeof(_type) * CHAR_BIT, \
80 .alignment = (_alignment) ? : lttng_alignof(_type) * CHAR_BIT, \
81 .signedness = (_signedness) >= 0 ? (_signedness) : lttng_is_signed_type(_type), \
82 .reverse_byte_order = _byte_order != __BYTE_ORDER, \
83 .base = _base, \
84 .encoding = lttng_encode_##_encoding, \
85 }, \
86 } \
87
88 struct lttng_integer_type {
89 unsigned int size; /* in bits */
90 unsigned short alignment; /* in bits */
91 unsigned int signedness:1,
92 reverse_byte_order:1;
93 unsigned int base; /* 2, 8, 10, 16, for pretty print */
94 enum lttng_string_encodings encoding;
95 };
96
97 struct lttng_type {
98 enum abstract_types atype;
99 union {
100 struct lttng_integer_type integer;
101 struct {
102 enum lttng_string_encodings encoding;
103 } string;
104 struct {
105 const struct lttng_enum_desc *desc; /* Enumeration mapping */
106 const struct lttng_type *container_type;
107 } enum_nestable;
108 struct {
109 const struct lttng_type *elem_type;
110 unsigned int length; /* Num. elems. */
111 unsigned int alignment;
112 } array_nestable;
113 struct {
114 const char *length_name; /* Length field name. */
115 const struct lttng_type *elem_type;
116 unsigned int alignment; /* Alignment before elements. */
117 } sequence_nestable;
118 struct {
119 unsigned int nr_fields;
120 const struct lttng_event_field *fields; /* Array of fields. */
121 unsigned int alignment;
122 } struct_nestable;
123 struct {
124 const char *tag_name;
125 const struct lttng_event_field *choices; /* Array of fields. */
126 unsigned int nr_choices;
127 unsigned int alignment;
128 } variant_nestable;
129 } u;
130 };
131
132 struct lttng_enum_desc {
133 const char *name;
134 const struct lttng_enum_entry *entries;
135 unsigned int nr_entries;
136 };
137
138 /* Event field description */
139
140 struct lttng_event_field {
141 const char *name;
142 struct lttng_type type;
143 unsigned int nowrite:1, /* do not write into trace */
144 user:1, /* fetch from user-space */
145 nofilter:1; /* do not consider for filter */
146 };
147
148 union lttng_ctx_value {
149 int64_t s64;
150 const char *str;
151 double d;
152 };
153
154 /*
155 * We need to keep this perf counter field separately from struct
156 * lttng_ctx_field because cpu hotplug needs fixed-location addresses.
157 */
158 struct lttng_perf_counter_field {
159 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(4,10,0))
160 struct lttng_cpuhp_node cpuhp_prepare;
161 struct lttng_cpuhp_node cpuhp_online;
162 #else
163 struct notifier_block nb;
164 int hp_enable;
165 #endif
166 struct perf_event_attr *attr;
167 struct perf_event **e; /* per-cpu array */
168 };
169
170 struct lttng_probe_ctx {
171 struct lttng_event *event;
172 uint8_t interruptible;
173 };
174
175 struct lttng_ctx_field {
176 struct lttng_event_field event_field;
177 size_t (*get_size)(size_t offset);
178 size_t (*get_size_arg)(size_t offset, struct lttng_ctx_field *field,
179 struct lib_ring_buffer_ctx *ctx,
180 struct lttng_channel *chan);
181 void (*record)(struct lttng_ctx_field *field,
182 struct lib_ring_buffer_ctx *ctx,
183 struct lttng_channel *chan);
184 void (*get_value)(struct lttng_ctx_field *field,
185 struct lttng_probe_ctx *lttng_probe_ctx,
186 union lttng_ctx_value *value);
187 union {
188 struct lttng_perf_counter_field *perf_counter;
189 } u;
190 void (*destroy)(struct lttng_ctx_field *field);
191 /*
192 * Private data to keep state between get_size and record.
193 * User must perform its own synchronization to protect against
194 * concurrent and reentrant contexts.
195 */
196 void *priv;
197 };
198
199 struct lttng_ctx {
200 struct lttng_ctx_field *fields;
201 unsigned int nr_fields;
202 unsigned int allocated_fields;
203 size_t largest_align; /* in bytes */
204 };
205
206 struct lttng_event_desc {
207 const char *name; /* lttng-modules name */
208 const char *kname; /* Linux kernel name (tracepoints) */
209 void *probe_callback;
210 const struct lttng_event_ctx *ctx; /* context */
211 const struct lttng_event_field *fields; /* event payload */
212 unsigned int nr_fields;
213 struct module *owner;
214 };
215
216 struct lttng_probe_desc {
217 const char *provider;
218 const struct lttng_event_desc **event_desc;
219 unsigned int nr_events;
220 struct list_head head; /* chain registered probes */
221 struct list_head lazy_init_head;
222 int lazy; /* lazy registration */
223 };
224
225 struct lttng_krp; /* Kretprobe handling */
226
227 enum lttng_event_type {
228 LTTNG_TYPE_EVENT = 0,
229 LTTNG_TYPE_ENABLER = 1,
230 };
231
232 struct lttng_filter_bytecode_node {
233 struct list_head node;
234 struct lttng_enabler *enabler;
235 /*
236 * struct lttng_kernel_filter_bytecode has var. sized array, must be
237 * last field.
238 */
239 struct lttng_kernel_filter_bytecode bc;
240 };
241
242 /*
243 * Filter return value masks.
244 */
245 enum lttng_filter_ret {
246 LTTNG_FILTER_DISCARD = 0,
247 LTTNG_FILTER_RECORD_FLAG = (1ULL << 0),
248 /* Other bits are kept for future use. */
249 };
250
251 struct lttng_bytecode_runtime {
252 /* Associated bytecode */
253 struct lttng_filter_bytecode_node *bc;
254 uint64_t (*filter)(void *filter_data, struct lttng_probe_ctx *lttng_probe_ctx,
255 const char *filter_stack_data);
256 int link_failed;
257 struct list_head node; /* list of bytecode runtime in event */
258 struct lttng_event *event;
259 };
260
261 /*
262 * Objects in a linked-list of enablers, owned by an event.
263 */
264 struct lttng_enabler_ref {
265 struct list_head node; /* enabler ref list */
266 struct lttng_enabler *ref; /* backward ref */
267 };
268
269 struct lttng_uprobe_handler {
270 struct lttng_event *event;
271 loff_t offset;
272 struct uprobe_consumer up_consumer;
273 struct list_head node;
274 };
275
276 enum lttng_syscall_entryexit {
277 LTTNG_SYSCALL_ENTRY,
278 LTTNG_SYSCALL_EXIT,
279 };
280
281 enum lttng_syscall_abi {
282 LTTNG_SYSCALL_ABI_NATIVE,
283 LTTNG_SYSCALL_ABI_COMPAT,
284 };
285
286 /*
287 * lttng_event structure is referred to by the tracing fast path. It must be
288 * kept small.
289 */
290 struct lttng_event {
291 enum lttng_event_type evtype; /* First field. */
292 unsigned int id;
293 struct lttng_channel *chan;
294 int enabled;
295 const struct lttng_event_desc *desc;
296 void *filter;
297 struct lttng_ctx *ctx;
298 enum lttng_kernel_instrumentation instrumentation;
299 union {
300 struct {
301 struct kprobe kp;
302 char *symbol_name;
303 } kprobe;
304 struct {
305 struct lttng_krp *lttng_krp;
306 char *symbol_name;
307 } kretprobe;
308 struct {
309 struct inode *inode;
310 struct list_head head;
311 } uprobe;
312 struct {
313 char *syscall_name;
314 enum lttng_syscall_entryexit entryexit;
315 enum lttng_syscall_abi abi;
316 } syscall;
317 } u;
318 struct list_head list; /* Event list in session */
319 unsigned int metadata_dumped:1;
320
321 /* Backward references: list of lttng_enabler_ref (ref to enablers) */
322 struct list_head enablers_ref_head;
323 struct hlist_node hlist; /* session ht of events */
324 int registered; /* has reg'd tracepoint probe */
325 /* list of struct lttng_bytecode_runtime, sorted by seqnum */
326 struct list_head bytecode_runtime_head;
327 int has_enablers_without_bytecode;
328 };
329
330 enum lttng_enabler_format_type {
331 LTTNG_ENABLER_FORMAT_STAR_GLOB,
332 LTTNG_ENABLER_FORMAT_NAME,
333 };
334
335 /*
336 * Enabler field, within whatever object is enabling an event. Target of
337 * backward reference.
338 */
339 struct lttng_enabler {
340 enum lttng_event_type evtype; /* First field. */
341
342 enum lttng_enabler_format_type format_type;
343
344 struct list_head node; /* per-session list of enablers */
345 /* head list of struct lttng_ust_filter_bytecode_node */
346 struct list_head filter_bytecode_head;
347
348 struct lttng_kernel_event event_param;
349 struct lttng_channel *chan;
350 /*
351 * Unused, but kept around to make it explicit that the tracer can do
352 * it.
353 */
354 struct lttng_ctx *ctx;
355 unsigned int enabled:1;
356 };
357
358 struct lttng_channel_ops {
359 struct channel *(*channel_create)(const char *name,
360 struct lttng_channel *lttng_chan,
361 void *buf_addr,
362 size_t subbuf_size, size_t num_subbuf,
363 unsigned int switch_timer_interval,
364 unsigned int read_timer_interval);
365 void (*channel_destroy)(struct channel *chan);
366 struct lib_ring_buffer *(*buffer_read_open)(struct channel *chan);
367 int (*buffer_has_read_closed_stream)(struct channel *chan);
368 void (*buffer_read_close)(struct lib_ring_buffer *buf);
369 int (*event_reserve)(struct lib_ring_buffer_ctx *ctx,
370 uint32_t event_id);
371 void (*event_commit)(struct lib_ring_buffer_ctx *ctx);
372 void (*event_write)(struct lib_ring_buffer_ctx *ctx, const void *src,
373 size_t len);
374 void (*event_write_from_user)(struct lib_ring_buffer_ctx *ctx,
375 const void *src, size_t len);
376 void (*event_memset)(struct lib_ring_buffer_ctx *ctx,
377 int c, size_t len);
378 void (*event_strcpy)(struct lib_ring_buffer_ctx *ctx, const char *src,
379 size_t len);
380 void (*event_strcpy_from_user)(struct lib_ring_buffer_ctx *ctx,
381 const char __user *src, size_t len);
382 /*
383 * packet_avail_size returns the available size in the current
384 * packet. Note that the size returned is only a hint, since it
385 * may change due to concurrent writes.
386 */
387 size_t (*packet_avail_size)(struct channel *chan);
388 wait_queue_head_t *(*get_writer_buf_wait_queue)(struct channel *chan, int cpu);
389 wait_queue_head_t *(*get_hp_wait_queue)(struct channel *chan);
390 int (*is_finalized)(struct channel *chan);
391 int (*is_disabled)(struct channel *chan);
392 int (*timestamp_begin) (const struct lib_ring_buffer_config *config,
393 struct lib_ring_buffer *bufb,
394 uint64_t *timestamp_begin);
395 int (*timestamp_end) (const struct lib_ring_buffer_config *config,
396 struct lib_ring_buffer *bufb,
397 uint64_t *timestamp_end);
398 int (*events_discarded) (const struct lib_ring_buffer_config *config,
399 struct lib_ring_buffer *bufb,
400 uint64_t *events_discarded);
401 int (*content_size) (const struct lib_ring_buffer_config *config,
402 struct lib_ring_buffer *bufb,
403 uint64_t *content_size);
404 int (*packet_size) (const struct lib_ring_buffer_config *config,
405 struct lib_ring_buffer *bufb,
406 uint64_t *packet_size);
407 int (*stream_id) (const struct lib_ring_buffer_config *config,
408 struct lib_ring_buffer *bufb,
409 uint64_t *stream_id);
410 int (*current_timestamp) (const struct lib_ring_buffer_config *config,
411 struct lib_ring_buffer *bufb,
412 uint64_t *ts);
413 int (*sequence_number) (const struct lib_ring_buffer_config *config,
414 struct lib_ring_buffer *bufb,
415 uint64_t *seq);
416 int (*instance_id) (const struct lib_ring_buffer_config *config,
417 struct lib_ring_buffer *bufb,
418 uint64_t *id);
419 };
420
421 struct lttng_transport {
422 char *name;
423 struct module *owner;
424 struct list_head node;
425 struct lttng_channel_ops ops;
426 };
427
428 struct lttng_syscall_filter;
429
430 #define LTTNG_EVENT_HT_BITS 12
431 #define LTTNG_EVENT_HT_SIZE (1U << LTTNG_EVENT_HT_BITS)
432
433 struct lttng_event_ht {
434 struct hlist_head table[LTTNG_EVENT_HT_SIZE];
435 };
436
437 struct lttng_channel {
438 unsigned int id;
439 struct channel *chan; /* Channel buffers */
440 int enabled;
441 struct lttng_ctx *ctx;
442 /* Event ID management */
443 struct lttng_session *session;
444 struct file *file; /* File associated to channel */
445 unsigned int free_event_id; /* Next event ID to allocate */
446 struct list_head list; /* Channel list */
447 struct lttng_channel_ops *ops;
448 struct lttng_transport *transport;
449 struct lttng_event **sc_table; /* for syscall tracing */
450 struct lttng_event **compat_sc_table;
451 struct lttng_event **sc_exit_table; /* for syscall exit tracing */
452 struct lttng_event **compat_sc_exit_table;
453 struct lttng_event *sc_unknown; /* for unknown syscalls */
454 struct lttng_event *sc_compat_unknown;
455 struct lttng_event *sc_exit_unknown;
456 struct lttng_event *compat_sc_exit_unknown;
457 struct lttng_syscall_filter *sc_filter;
458 int header_type; /* 0: unset, 1: compact, 2: large */
459 enum channel_type channel_type;
460 int syscall_all;
461 unsigned int metadata_dumped:1,
462 sys_enter_registered:1,
463 sys_exit_registered:1,
464 tstate:1; /* Transient enable state */
465 };
466
467 struct lttng_metadata_stream {
468 void *priv; /* Ring buffer private data */
469 struct lttng_metadata_cache *metadata_cache;
470 unsigned int metadata_in; /* Bytes read from the cache */
471 unsigned int metadata_out; /* Bytes consumed from stream */
472 int finalized; /* Has channel been finalized */
473 wait_queue_head_t read_wait; /* Reader buffer-level wait queue */
474 struct list_head list; /* Stream list */
475 struct lttng_transport *transport;
476 uint64_t version; /* Current version of the metadata cache */
477 bool coherent; /* Stream in a coherent state */
478 };
479
480 #define LTTNG_DYNAMIC_LEN_STACK_SIZE 128
481
482 struct lttng_dynamic_len_stack {
483 size_t stack[LTTNG_DYNAMIC_LEN_STACK_SIZE];
484 size_t offset;
485 };
486
487 DECLARE_PER_CPU(struct lttng_dynamic_len_stack, lttng_dynamic_len_stack);
488
489 /*
490 * struct lttng_id_tracker declared in header due to deferencing of *v
491 * in RCU_INITIALIZER(v).
492 */
493 #define LTTNG_ID_HASH_BITS 6
494 #define LTTNG_ID_TABLE_SIZE (1 << LTTNG_ID_HASH_BITS)
495
496 enum tracker_type {
497 TRACKER_PID,
498 TRACKER_VPID,
499 TRACKER_UID,
500 TRACKER_VUID,
501 TRACKER_GID,
502 TRACKER_VGID,
503
504 TRACKER_UNKNOWN,
505 };
506
507 struct lttng_id_tracker_rcu {
508 struct hlist_head id_hash[LTTNG_ID_TABLE_SIZE];
509 };
510
511 struct lttng_id_tracker {
512 struct lttng_session *session;
513 enum tracker_type tracker_type;
514 struct lttng_id_tracker_rcu *p; /* RCU dereferenced. */
515 };
516
517 struct lttng_id_hash_node {
518 struct hlist_node hlist;
519 int id;
520 };
521
522 struct lttng_session {
523 int active; /* Is trace session active ? */
524 int been_active; /* Has trace session been active ? */
525 struct file *file; /* File associated to session */
526 struct list_head chan; /* Channel list head */
527 struct list_head events; /* Event list head */
528 struct list_head list; /* Session list */
529 unsigned int free_chan_id; /* Next chan ID to allocate */
530 uuid_le uuid; /* Trace session unique ID */
531 struct lttng_metadata_cache *metadata_cache;
532 struct lttng_id_tracker pid_tracker;
533 struct lttng_id_tracker vpid_tracker;
534 struct lttng_id_tracker uid_tracker;
535 struct lttng_id_tracker vuid_tracker;
536 struct lttng_id_tracker gid_tracker;
537 struct lttng_id_tracker vgid_tracker;
538 unsigned int metadata_dumped:1,
539 tstate:1; /* Transient enable state */
540 /* List of enablers */
541 struct list_head enablers_head;
542 /* Hash table of events */
543 struct lttng_event_ht events_ht;
544 char name[LTTNG_KERNEL_SESSION_NAME_LEN];
545 char creation_time[LTTNG_KERNEL_SESSION_CREATION_TIME_ISO8601_LEN];
546 };
547
548 struct lttng_metadata_cache {
549 char *data; /* Metadata cache */
550 unsigned int cache_alloc; /* Metadata allocated size (bytes) */
551 unsigned int metadata_written; /* Number of bytes written in metadata cache */
552 atomic_t producing; /* Metadata being produced (incomplete) */
553 struct kref refcount; /* Metadata cache usage */
554 struct list_head metadata_stream; /* Metadata stream list */
555 uuid_le uuid; /* Trace session unique ID (copy) */
556 struct mutex lock; /* Produce/consume lock */
557 uint64_t version; /* Current version of the metadata */
558 };
559
560 void lttng_lock_sessions(void);
561 void lttng_unlock_sessions(void);
562
563 struct list_head *lttng_get_probe_list_head(void);
564
565 struct lttng_enabler *lttng_enabler_create(enum lttng_enabler_format_type format_type,
566 struct lttng_kernel_event *event_param,
567 struct lttng_channel *chan);
568
569 int lttng_enabler_enable(struct lttng_enabler *enabler);
570 int lttng_enabler_disable(struct lttng_enabler *enabler);
571 int lttng_fix_pending_events(void);
572 int lttng_session_active(void);
573
574 struct lttng_session *lttng_session_create(void);
575 int lttng_session_enable(struct lttng_session *session);
576 int lttng_session_disable(struct lttng_session *session);
577 void lttng_session_destroy(struct lttng_session *session);
578 int lttng_session_metadata_regenerate(struct lttng_session *session);
579 int lttng_session_statedump(struct lttng_session *session);
580 void metadata_cache_destroy(struct kref *kref);
581
582 struct lttng_channel *lttng_channel_create(struct lttng_session *session,
583 const char *transport_name,
584 void *buf_addr,
585 size_t subbuf_size, size_t num_subbuf,
586 unsigned int switch_timer_interval,
587 unsigned int read_timer_interval,
588 enum channel_type channel_type);
589 struct lttng_channel *lttng_global_channel_create(struct lttng_session *session,
590 int overwrite, void *buf_addr,
591 size_t subbuf_size, size_t num_subbuf,
592 unsigned int switch_timer_interval,
593 unsigned int read_timer_interval);
594
595 void lttng_metadata_channel_destroy(struct lttng_channel *chan);
596 struct lttng_event *lttng_event_create(struct lttng_channel *chan,
597 struct lttng_kernel_event *event_param,
598 void *filter,
599 const struct lttng_event_desc *event_desc,
600 enum lttng_kernel_instrumentation itype);
601 struct lttng_event *_lttng_event_create(struct lttng_channel *chan,
602 struct lttng_kernel_event *event_param,
603 void *filter,
604 const struct lttng_event_desc *event_desc,
605 enum lttng_kernel_instrumentation itype);
606 struct lttng_event *lttng_event_compat_old_create(struct lttng_channel *chan,
607 struct lttng_kernel_old_event *old_event_param,
608 void *filter,
609 const struct lttng_event_desc *internal_desc);
610
611 int lttng_channel_enable(struct lttng_channel *channel);
612 int lttng_channel_disable(struct lttng_channel *channel);
613 int lttng_event_enable(struct lttng_event *event);
614 int lttng_event_disable(struct lttng_event *event);
615
616 void lttng_transport_register(struct lttng_transport *transport);
617 void lttng_transport_unregister(struct lttng_transport *transport);
618
619 void synchronize_trace(void);
620 int lttng_abi_init(void);
621 int lttng_abi_compat_old_init(void);
622 void lttng_abi_exit(void);
623 void lttng_abi_compat_old_exit(void);
624
625 int lttng_probe_register(struct lttng_probe_desc *desc);
626 void lttng_probe_unregister(struct lttng_probe_desc *desc);
627 const struct lttng_event_desc *lttng_event_get(const char *name);
628 void lttng_event_put(const struct lttng_event_desc *desc);
629 int lttng_probes_init(void);
630 void lttng_probes_exit(void);
631
632 int lttng_metadata_output_channel(struct lttng_metadata_stream *stream,
633 struct channel *chan, bool *coherent);
634
635 int lttng_id_tracker_get_node_id(const struct lttng_id_hash_node *node);
636 int lttng_id_tracker_empty_set(struct lttng_id_tracker *lf);
637 void lttng_id_tracker_destroy(struct lttng_id_tracker *lf, bool rcu);
638 bool lttng_id_tracker_lookup(struct lttng_id_tracker_rcu *p, int id);
639 int lttng_id_tracker_add(struct lttng_id_tracker *lf, int id);
640 int lttng_id_tracker_del(struct lttng_id_tracker *lf, int id);
641
642 int lttng_session_track_id(struct lttng_session *session,
643 enum tracker_type tracker_type, int id);
644 int lttng_session_untrack_id(struct lttng_session *session,
645 enum tracker_type tracker_type, int id);
646
647 int lttng_session_list_tracker_ids(struct lttng_session *session,
648 enum tracker_type tracker_type);
649
650 void lttng_clock_ref(void);
651 void lttng_clock_unref(void);
652
653 #if defined(CONFIG_HAVE_SYSCALL_TRACEPOINTS)
654 int lttng_syscalls_register(struct lttng_channel *chan, void *filter);
655 int lttng_syscalls_unregister(struct lttng_channel *chan);
656 int lttng_syscalls_destroy(struct lttng_channel *chan);
657 int lttng_syscall_filter_enable(struct lttng_channel *chan,
658 struct lttng_event *event);
659 int lttng_syscall_filter_disable(struct lttng_channel *chan,
660 struct lttng_event *event);
661 long lttng_channel_syscall_mask(struct lttng_channel *channel,
662 struct lttng_kernel_syscall_mask __user *usyscall_mask);
663 #else
664 static inline int lttng_syscalls_register(struct lttng_channel *chan, void *filter)
665 {
666 return -ENOSYS;
667 }
668
669 static inline int lttng_syscalls_unregister(struct lttng_channel *chan)
670 {
671 return 0;
672 }
673
674 static inline int lttng_syscalls_destroy(struct lttng_channel *chan)
675 {
676 return 0;
677 }
678
679 static inline int lttng_syscall_filter_enable(struct lttng_channel *chan,
680 struct lttng_event *event);
681 {
682 return -ENOSYS;
683 }
684
685 static inline int lttng_syscall_filter_disable(struct lttng_channel *chan,
686 struct lttng_event *event);
687 {
688 return -ENOSYS;
689 }
690
691 static inline long lttng_channel_syscall_mask(struct lttng_channel *channel,
692 struct lttng_kernel_syscall_mask __user *usyscall_mask)
693 {
694 return -ENOSYS;
695 }
696 #endif
697
698 void lttng_filter_sync_state(struct lttng_bytecode_runtime *runtime);
699 int lttng_enabler_attach_bytecode(struct lttng_enabler *enabler,
700 struct lttng_kernel_filter_bytecode __user *bytecode);
701 void lttng_enabler_event_link_bytecode(struct lttng_event *event,
702 struct lttng_enabler *enabler);
703
704 int lttng_probes_init(void);
705
706 extern struct lttng_ctx *lttng_static_ctx;
707
708 int lttng_context_init(void);
709 void lttng_context_exit(void);
710 struct lttng_ctx_field *lttng_append_context(struct lttng_ctx **ctx);
711 ssize_t lttng_append_context_index(struct lttng_ctx **ctx_p);
712 struct lttng_ctx_field *lttng_get_context_field_from_index(struct lttng_ctx *ctx,
713 size_t index);
714 void lttng_context_update(struct lttng_ctx *ctx);
715 int lttng_find_context(struct lttng_ctx *ctx, const char *name);
716 int lttng_get_context_index(struct lttng_ctx *ctx, const char *name);
717 void lttng_remove_context_field(struct lttng_ctx **ctx,
718 struct lttng_ctx_field *field);
719 void lttng_remove_context_field_index(struct lttng_ctx **ctx_p, size_t index);
720 void lttng_destroy_context(struct lttng_ctx *ctx);
721 int lttng_add_pid_to_ctx(struct lttng_ctx **ctx);
722 int lttng_add_cpu_id_to_ctx(struct lttng_ctx **ctx);
723 int lttng_add_procname_to_ctx(struct lttng_ctx **ctx);
724 int lttng_add_prio_to_ctx(struct lttng_ctx **ctx);
725 int lttng_add_nice_to_ctx(struct lttng_ctx **ctx);
726 int lttng_add_vpid_to_ctx(struct lttng_ctx **ctx);
727 int lttng_add_tid_to_ctx(struct lttng_ctx **ctx);
728 int lttng_add_vtid_to_ctx(struct lttng_ctx **ctx);
729 int lttng_add_ppid_to_ctx(struct lttng_ctx **ctx);
730 int lttng_add_vppid_to_ctx(struct lttng_ctx **ctx);
731 int lttng_add_hostname_to_ctx(struct lttng_ctx **ctx);
732 int lttng_add_interruptible_to_ctx(struct lttng_ctx **ctx);
733 int lttng_add_need_reschedule_to_ctx(struct lttng_ctx **ctx);
734 #if defined(CONFIG_PREEMPT_RT_FULL) || defined(CONFIG_PREEMPT)
735 int lttng_add_preemptible_to_ctx(struct lttng_ctx **ctx);
736 #else
737 static inline
738 int lttng_add_preemptible_to_ctx(struct lttng_ctx **ctx)
739 {
740 return -ENOSYS;
741 }
742 #endif
743 #ifdef CONFIG_PREEMPT_RT_FULL
744 int lttng_add_migratable_to_ctx(struct lttng_ctx **ctx);
745 #else
746 static inline
747 int lttng_add_migratable_to_ctx(struct lttng_ctx **ctx)
748 {
749 return -ENOSYS;
750 }
751 #endif
752
753 int lttng_add_callstack_to_ctx(struct lttng_ctx **ctx, int type);
754
755 #if defined(CONFIG_CGROUPS) && \
756 ((LINUX_VERSION_CODE >= KERNEL_VERSION(4,6,0)) || \
757 LTTNG_UBUNTU_KERNEL_RANGE(4,4,0,0, 4,5,0,0))
758 int lttng_add_cgroup_ns_to_ctx(struct lttng_ctx **ctx);
759 #else
760 static inline
761 int lttng_add_cgroup_ns_to_ctx(struct lttng_ctx **ctx)
762 {
763 return -ENOSYS;
764 }
765 #endif
766
767 #if defined(CONFIG_IPC_NS) && \
768 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
769 int lttng_add_ipc_ns_to_ctx(struct lttng_ctx **ctx);
770 #else
771 static inline
772 int lttng_add_ipc_ns_to_ctx(struct lttng_ctx **ctx)
773 {
774 return -ENOSYS;
775 }
776 #endif
777
778 #if !defined(LTTNG_MNT_NS_MISSING_HEADER) && \
779 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
780 int lttng_add_mnt_ns_to_ctx(struct lttng_ctx **ctx);
781 #else
782 static inline
783 int lttng_add_mnt_ns_to_ctx(struct lttng_ctx **ctx)
784 {
785 return -ENOSYS;
786 }
787 #endif
788
789 #if defined(CONFIG_NET_NS) && \
790 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
791 int lttng_add_net_ns_to_ctx(struct lttng_ctx **ctx);
792 #else
793 static inline
794 int lttng_add_net_ns_to_ctx(struct lttng_ctx **ctx)
795 {
796 return -ENOSYS;
797 }
798 #endif
799
800 #if defined(CONFIG_PID_NS) && \
801 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
802 int lttng_add_pid_ns_to_ctx(struct lttng_ctx **ctx);
803 #else
804 static inline
805 int lttng_add_pid_ns_to_ctx(struct lttng_ctx **ctx)
806 {
807 return -ENOSYS;
808 }
809 #endif
810
811 #if defined(CONFIG_USER_NS) && \
812 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
813 int lttng_add_user_ns_to_ctx(struct lttng_ctx **ctx);
814 #else
815 static inline
816 int lttng_add_user_ns_to_ctx(struct lttng_ctx **ctx)
817 {
818 return -ENOSYS;
819 }
820 #endif
821
822 #if defined(CONFIG_UTS_NS) && \
823 (LINUX_VERSION_CODE >= KERNEL_VERSION(3,8,0))
824 int lttng_add_uts_ns_to_ctx(struct lttng_ctx **ctx);
825 #else
826 static inline
827 int lttng_add_uts_ns_to_ctx(struct lttng_ctx **ctx)
828 {
829 return -ENOSYS;
830 }
831 #endif
832
833 #if defined(CONFIG_TIME_NS) && \
834 (LINUX_VERSION_CODE >= KERNEL_VERSION(5,6,0))
835 int lttng_add_time_ns_to_ctx(struct lttng_ctx **ctx);
836 #else
837 static inline
838 int lttng_add_time_ns_to_ctx(struct lttng_ctx **ctx)
839 {
840 return -ENOSYS;
841 }
842 #endif
843
844 int lttng_add_uid_to_ctx(struct lttng_ctx **ctx);
845 int lttng_add_euid_to_ctx(struct lttng_ctx **ctx);
846 int lttng_add_suid_to_ctx(struct lttng_ctx **ctx);
847 int lttng_add_gid_to_ctx(struct lttng_ctx **ctx);
848 int lttng_add_egid_to_ctx(struct lttng_ctx **ctx);
849 int lttng_add_sgid_to_ctx(struct lttng_ctx **ctx);
850 int lttng_add_vuid_to_ctx(struct lttng_ctx **ctx);
851 int lttng_add_veuid_to_ctx(struct lttng_ctx **ctx);
852 int lttng_add_vsuid_to_ctx(struct lttng_ctx **ctx);
853 int lttng_add_vgid_to_ctx(struct lttng_ctx **ctx);
854 int lttng_add_vegid_to_ctx(struct lttng_ctx **ctx);
855 int lttng_add_vsgid_to_ctx(struct lttng_ctx **ctx);
856
857 #if defined(CONFIG_PERF_EVENTS)
858 int lttng_add_perf_counter_to_ctx(uint32_t type,
859 uint64_t config,
860 const char *name,
861 struct lttng_ctx **ctx);
862 int lttng_cpuhp_perf_counter_online(unsigned int cpu,
863 struct lttng_cpuhp_node *node);
864 int lttng_cpuhp_perf_counter_dead(unsigned int cpu,
865 struct lttng_cpuhp_node *node);
866 #else
867 static inline
868 int lttng_add_perf_counter_to_ctx(uint32_t type,
869 uint64_t config,
870 const char *name,
871 struct lttng_ctx **ctx)
872 {
873 return -ENOSYS;
874 }
875 static inline
876 int lttng_cpuhp_perf_counter_online(unsigned int cpu,
877 struct lttng_cpuhp_node *node)
878 {
879 return 0;
880 }
881 static inline
882 int lttng_cpuhp_perf_counter_dead(unsigned int cpu,
883 struct lttng_cpuhp_node *node)
884 {
885 return 0;
886 }
887 #endif
888
889 int lttng_logger_init(void);
890 void lttng_logger_exit(void);
891
892 extern int lttng_statedump_start(struct lttng_session *session);
893
894 #ifdef CONFIG_KPROBES
895 int lttng_kprobes_register(const char *name,
896 const char *symbol_name,
897 uint64_t offset,
898 uint64_t addr,
899 struct lttng_event *event);
900 void lttng_kprobes_unregister(struct lttng_event *event);
901 void lttng_kprobes_destroy_private(struct lttng_event *event);
902 #else
903 static inline
904 int lttng_kprobes_register(const char *name,
905 const char *symbol_name,
906 uint64_t offset,
907 uint64_t addr,
908 struct lttng_event *event)
909 {
910 return -ENOSYS;
911 }
912
913 static inline
914 void lttng_kprobes_unregister(struct lttng_event *event)
915 {
916 }
917
918 static inline
919 void lttng_kprobes_destroy_private(struct lttng_event *event)
920 {
921 }
922 #endif
923
924 int lttng_event_add_callsite(struct lttng_event *event,
925 struct lttng_kernel_event_callsite *callsite);
926
927 #ifdef CONFIG_UPROBES
928 int lttng_uprobes_register(const char *name,
929 int fd, struct lttng_event *event);
930 int lttng_uprobes_add_callsite(struct lttng_event *event,
931 struct lttng_kernel_event_callsite *callsite);
932 void lttng_uprobes_unregister(struct lttng_event *event);
933 void lttng_uprobes_destroy_private(struct lttng_event *event);
934 #else
935 static inline
936 int lttng_uprobes_register(const char *name,
937 int fd, struct lttng_event *event)
938 {
939 return -ENOSYS;
940 }
941
942 static inline
943 int lttng_uprobes_add_callsite(struct lttng_event *event,
944 struct lttng_kernel_event_callsite *callsite)
945 {
946 return -ENOSYS;
947 }
948
949 static inline
950 void lttng_uprobes_unregister(struct lttng_event *event)
951 {
952 }
953
954 static inline
955 void lttng_uprobes_destroy_private(struct lttng_event *event)
956 {
957 }
958 #endif
959
960 #ifdef CONFIG_KRETPROBES
961 int lttng_kretprobes_register(const char *name,
962 const char *symbol_name,
963 uint64_t offset,
964 uint64_t addr,
965 struct lttng_event *event_entry,
966 struct lttng_event *event_exit);
967 void lttng_kretprobes_unregister(struct lttng_event *event);
968 void lttng_kretprobes_destroy_private(struct lttng_event *event);
969 int lttng_kretprobes_event_enable_state(struct lttng_event *event,
970 int enable);
971 #else
972 static inline
973 int lttng_kretprobes_register(const char *name,
974 const char *symbol_name,
975 uint64_t offset,
976 uint64_t addr,
977 struct lttng_event *event_entry,
978 struct lttng_event *event_exit)
979 {
980 return -ENOSYS;
981 }
982
983 static inline
984 void lttng_kretprobes_unregister(struct lttng_event *event)
985 {
986 }
987
988 static inline
989 void lttng_kretprobes_destroy_private(struct lttng_event *event)
990 {
991 }
992
993 static inline
994 int lttng_kretprobes_event_enable_state(struct lttng_event *event,
995 int enable)
996 {
997 return -ENOSYS;
998 }
999 #endif
1000
1001 int lttng_calibrate(struct lttng_kernel_calibrate *calibrate);
1002
1003 extern const struct file_operations lttng_tracepoint_list_fops;
1004 extern const struct file_operations lttng_syscall_list_fops;
1005
1006 #define TRACEPOINT_HAS_DATA_ARG
1007
1008 static inline bool lttng_is_bytewise_integer(const struct lttng_type *type)
1009 {
1010 if (type->atype != atype_integer)
1011 return false;
1012 switch (type->u.integer.size) {
1013 case 8: /* Fall-through. */
1014 case 16: /* Fall-through. */
1015 case 32: /* Fall-through. */
1016 case 64:
1017 break;
1018 default:
1019 return false;
1020 }
1021 return true;
1022 }
1023
1024 #endif /* _LTTNG_EVENTS_H */
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