1 // SPDX-License-Identifier: GPL-2.0
2
3 #ifndef _LINUX_KERNEL_TRACE_H
4 #define _LINUX_KERNEL_TRACE_H
5
6 #include <linux/fs.h>
7 #include <linux/atomic.h>
8 #include <linux/sched.h>
9 #include <linux/clocksource.h>
10 #include <linux/ring_buffer.h>
11 #include <linux/mmiotrace.h>
12 #include <linux/tracepoint.h>
13 #include <linux/ftrace.h>
14 #include <linux/trace.h>
15 #include <linux/hw_breakpoint.h>
16 #include <linux/trace_seq.h>
17 #include <linux/trace_events.h>
18 #include <linux/compiler.h>
19 #include <linux/glob.h>
20 #include <linux/irq_work.h>
21 #include <linux/workqueue.h>
22 #include <linux/ctype.h>
23
24 #ifdef CONFIG_FTRACE_SYSCALLS
25 #include <asm/unistd.h> /* For NR_SYSCALLS */
26 #include <asm/syscall.h> /* some archs define it here */
27 #endif
28
29 enum trace_type {
30 __TRACE_FIRST_TYPE = 0,
31
32 TRACE_FN,
33 TRACE_CTX,
34 TRACE_WAKE,
35 TRACE_STACK,
36 TRACE_PRINT,
37 TRACE_BPRINT,
38 TRACE_MMIO_RW,
39 TRACE_MMIO_MAP,
40 TRACE_BRANCH,
41 TRACE_GRAPH_RET,
42 TRACE_GRAPH_ENT,
43 TRACE_USER_STACK,
44 TRACE_BLK,
45 TRACE_BPUTS,
46 TRACE_HWLAT,
47 TRACE_RAW_DATA,
48
49 __TRACE_LAST_TYPE,
50 };
51
52
53 #undef __field
54 #define __field(type, item) type item;
55
56 #undef __field_fn
57 #define __field_fn(type, item) type item;
58
59 #undef __field_struct
60 #define __field_struct(type, item) __field(type, item)
61
62 #undef __field_desc
63 #define __field_desc(type, container, item)
64
65 #undef __field_packed
66 #define __field_packed(type, container, item)
67
68 #undef __array
69 #define __array(type, item, size) type item[size];
70
71 #undef __array_desc
72 #define __array_desc(type, container, item, size)
73
74 #undef __dynamic_array
75 #define __dynamic_array(type, item) type item[];
76
77 #undef F_STRUCT
78 #define F_STRUCT(args...) args
79
80 #undef FTRACE_ENTRY
81 #define FTRACE_ENTRY(name, struct_name, id, tstruct, print) \
82 struct struct_name { \
83 struct trace_entry ent; \
84 tstruct \
85 }
86
87 #undef FTRACE_ENTRY_DUP
88 #define FTRACE_ENTRY_DUP(name, name_struct, id, tstruct, printk)
89
90 #undef FTRACE_ENTRY_REG
91 #define FTRACE_ENTRY_REG(name, struct_name, id, tstruct, print, regfn) \
92 FTRACE_ENTRY(name, struct_name, id, PARAMS(tstruct), PARAMS(print))
93
94 #undef FTRACE_ENTRY_PACKED
95 #define FTRACE_ENTRY_PACKED(name, struct_name, id, tstruct, print) \
96 FTRACE_ENTRY(name, struct_name, id, PARAMS(tstruct), PARAMS(print)) __packed
97
98 #include "trace_entries.h"
99
100 /* Use this for memory failure errors */
101 #define MEM_FAIL(condition, fmt, ...) ({ \
102 static bool __section(".data.once") __warned; \
103 int __ret_warn_once = !!(condition); \
104 \
105 if (unlikely(__ret_warn_once && !__warned)) { \
106 __warned = true; \
107 pr_err("ERROR: " fmt, ##__VA_ARGS__); \
108 } \
109 unlikely(__ret_warn_once); \
110 })
111
112 /*
113 * syscalls are special, and need special handling, this is why
114 * they are not included in trace_entries.h
115 */
116 struct syscall_trace_enter {
117 struct trace_entry ent;
118 int nr;
119 unsigned long args[];
120 };
121
122 struct syscall_trace_exit {
123 struct trace_entry ent;
124 int nr;
125 long ret;
126 };
127
128 struct kprobe_trace_entry_head {
129 struct trace_entry ent;
130 unsigned long ip;
131 };
132
133 struct kretprobe_trace_entry_head {
134 struct trace_entry ent;
135 unsigned long func;
136 unsigned long ret_ip;
137 };
138
139 /*
140 * trace_flag_type is an enumeration that holds different
141 * states when a trace occurs. These are:
142 * IRQS_OFF - interrupts were disabled
143 * IRQS_NOSUPPORT - arch does not support irqs_disabled_flags
144 * NEED_RESCHED - reschedule is requested
145 * HARDIRQ - inside an interrupt handler
146 * SOFTIRQ - inside a softirq handler
147 */
148 enum trace_flag_type {
149 TRACE_FLAG_IRQS_OFF = 0x01,
150 TRACE_FLAG_IRQS_NOSUPPORT = 0x02,
151 TRACE_FLAG_NEED_RESCHED = 0x04,
152 TRACE_FLAG_HARDIRQ = 0x08,
153 TRACE_FLAG_SOFTIRQ = 0x10,
154 TRACE_FLAG_PREEMPT_RESCHED = 0x20,
155 TRACE_FLAG_NMI = 0x40,
156 };
157
158 #define TRACE_BUF_SIZE 1024
159
160 struct trace_array;
161
162 /*
163 * The CPU trace array - it consists of thousands of trace entries
164 * plus some other descriptor data: (for example which task started
165 * the trace, etc.)
166 */
167 struct trace_array_cpu {
168 atomic_t disabled;
169 void *buffer_page; /* ring buffer spare */
170
171 unsigned long entries;
172 unsigned long saved_latency;
173 unsigned long critical_start;
174 unsigned long critical_end;
175 unsigned long critical_sequence;
176 unsigned long nice;
177 unsigned long policy;
178 unsigned long rt_priority;
179 unsigned long skipped_entries;
180 u64 preempt_timestamp;
181 pid_t pid;
182 kuid_t uid;
183 char comm[TASK_COMM_LEN];
184
185 #ifdef CONFIG_FUNCTION_TRACER
186 int ftrace_ignore_pid;
187 #endif
188 bool ignore_pid;
189 };
190
191 struct tracer;
192 struct trace_option_dentry;
193
194 struct array_buffer {
195 struct trace_array *tr;
196 struct trace_buffer *buffer;
197 struct trace_array_cpu __percpu *data;
198 u64 time_start;
199 int cpu;
200 };
201
202 #define TRACE_FLAGS_MAX_SIZE 32
203
204 struct trace_options {
205 struct tracer *tracer;
206 struct trace_option_dentry *topts;
207 };
208
209 struct trace_pid_list {
210 int pid_max;
211 unsigned long *pids;
212 };
213
214 enum {
215 TRACE_PIDS = BIT(0),
216 TRACE_NO_PIDS = BIT(1),
217 };
218
pid_type_enabled(int type,struct trace_pid_list * pid_list,struct trace_pid_list * no_pid_list)219 static inline bool pid_type_enabled(int type, struct trace_pid_list *pid_list,
220 struct trace_pid_list *no_pid_list)
221 {
222 /* Return true if the pid list in type has pids */
223 return ((type & TRACE_PIDS) && pid_list) ||
224 ((type & TRACE_NO_PIDS) && no_pid_list);
225 }
226
still_need_pid_events(int type,struct trace_pid_list * pid_list,struct trace_pid_list * no_pid_list)227 static inline bool still_need_pid_events(int type, struct trace_pid_list *pid_list,
228 struct trace_pid_list *no_pid_list)
229 {
230 /*
231 * Turning off what is in @type, return true if the "other"
232 * pid list, still has pids in it.
233 */
234 return (!(type & TRACE_PIDS) && pid_list) ||
235 (!(type & TRACE_NO_PIDS) && no_pid_list);
236 }
237
238 typedef bool (*cond_update_fn_t)(struct trace_array *tr, void *cond_data);
239
240 /**
241 * struct cond_snapshot - conditional snapshot data and callback
242 *
243 * The cond_snapshot structure encapsulates a callback function and
244 * data associated with the snapshot for a given tracing instance.
245 *
246 * When a snapshot is taken conditionally, by invoking
247 * tracing_snapshot_cond(tr, cond_data), the cond_data passed in is
248 * passed in turn to the cond_snapshot.update() function. That data
249 * can be compared by the update() implementation with the cond_data
250 * contained within the struct cond_snapshot instance associated with
251 * the trace_array. Because the tr->max_lock is held throughout the
252 * update() call, the update() function can directly retrieve the
253 * cond_snapshot and cond_data associated with the per-instance
254 * snapshot associated with the trace_array.
255 *
256 * The cond_snapshot.update() implementation can save data to be
257 * associated with the snapshot if it decides to, and returns 'true'
258 * in that case, or it returns 'false' if the conditional snapshot
259 * shouldn't be taken.
260 *
261 * The cond_snapshot instance is created and associated with the
262 * user-defined cond_data by tracing_cond_snapshot_enable().
263 * Likewise, the cond_snapshot instance is destroyed and is no longer
264 * associated with the trace instance by
265 * tracing_cond_snapshot_disable().
266 *
267 * The method below is required.
268 *
269 * @update: When a conditional snapshot is invoked, the update()
270 * callback function is invoked with the tr->max_lock held. The
271 * update() implementation signals whether or not to actually
272 * take the snapshot, by returning 'true' if so, 'false' if no
273 * snapshot should be taken. Because the max_lock is held for
274 * the duration of update(), the implementation is safe to
275 * directly retrieved and save any implementation data it needs
276 * to in association with the snapshot.
277 */
278 struct cond_snapshot {
279 void *cond_data;
280 cond_update_fn_t update;
281 };
282
283 /*
284 * The trace array - an array of per-CPU trace arrays. This is the
285 * highest level data structure that individual tracers deal with.
286 * They have on/off state as well:
287 */
288 struct trace_array {
289 struct list_head list;
290 char *name;
291 struct array_buffer array_buffer;
292 #ifdef CONFIG_TRACER_MAX_TRACE
293 /*
294 * The max_buffer is used to snapshot the trace when a maximum
295 * latency is reached, or when the user initiates a snapshot.
296 * Some tracers will use this to store a maximum trace while
297 * it continues examining live traces.
298 *
299 * The buffers for the max_buffer are set up the same as the array_buffer
300 * When a snapshot is taken, the buffer of the max_buffer is swapped
301 * with the buffer of the array_buffer and the buffers are reset for
302 * the array_buffer so the tracing can continue.
303 */
304 struct array_buffer max_buffer;
305 bool allocated_snapshot;
306 #endif
307 #if defined(CONFIG_TRACER_MAX_TRACE) || defined(CONFIG_HWLAT_TRACER)
308 unsigned long max_latency;
309 #ifdef CONFIG_FSNOTIFY
310 struct dentry *d_max_latency;
311 struct work_struct fsnotify_work;
312 struct irq_work fsnotify_irqwork;
313 #endif
314 #endif
315 struct trace_pid_list __rcu *filtered_pids;
316 struct trace_pid_list __rcu *filtered_no_pids;
317 /*
318 * max_lock is used to protect the swapping of buffers
319 * when taking a max snapshot. The buffers themselves are
320 * protected by per_cpu spinlocks. But the action of the swap
321 * needs its own lock.
322 *
323 * This is defined as a arch_spinlock_t in order to help
324 * with performance when lockdep debugging is enabled.
325 *
326 * It is also used in other places outside the update_max_tr
327 * so it needs to be defined outside of the
328 * CONFIG_TRACER_MAX_TRACE.
329 */
330 arch_spinlock_t max_lock;
331 int buffer_disabled;
332 #ifdef CONFIG_FTRACE_SYSCALLS
333 int sys_refcount_enter;
334 int sys_refcount_exit;
335 struct trace_event_file __rcu *enter_syscall_files[NR_syscalls];
336 struct trace_event_file __rcu *exit_syscall_files[NR_syscalls];
337 #endif
338 int stop_count;
339 int clock_id;
340 int nr_topts;
341 bool clear_trace;
342 int buffer_percent;
343 unsigned int n_err_log_entries;
344 struct tracer *current_trace;
345 unsigned int trace_flags;
346 unsigned char trace_flags_index[TRACE_FLAGS_MAX_SIZE];
347 unsigned int flags;
348 raw_spinlock_t start_lock;
349 struct list_head err_log;
350 struct dentry *dir;
351 struct dentry *options;
352 struct dentry *percpu_dir;
353 struct dentry *event_dir;
354 struct trace_options *topts;
355 struct list_head systems;
356 struct list_head events;
357 struct trace_event_file *trace_marker_file;
358 cpumask_var_t tracing_cpumask; /* only trace on set CPUs */
359 int ref;
360 int trace_ref;
361 #ifdef CONFIG_FUNCTION_TRACER
362 struct ftrace_ops *ops;
363 struct trace_pid_list __rcu *function_pids;
364 struct trace_pid_list __rcu *function_no_pids;
365 #ifdef CONFIG_DYNAMIC_FTRACE
366 /* All of these are protected by the ftrace_lock */
367 struct list_head func_probes;
368 struct list_head mod_trace;
369 struct list_head mod_notrace;
370 #endif
371 /* function tracing enabled */
372 int function_enabled;
373 #endif
374 int time_stamp_abs_ref;
375 struct list_head hist_vars;
376 #ifdef CONFIG_TRACER_SNAPSHOT
377 struct cond_snapshot *cond_snapshot;
378 #endif
379 };
380
381 enum {
382 TRACE_ARRAY_FL_GLOBAL = (1 << 0)
383 };
384
385 extern struct list_head ftrace_trace_arrays;
386
387 extern struct mutex trace_types_lock;
388
389 extern int trace_array_get(struct trace_array *tr);
390 extern int tracing_check_open_get_tr(struct trace_array *tr);
391 extern struct trace_array *trace_array_find(const char *instance);
392 extern struct trace_array *trace_array_find_get(const char *instance);
393
394 extern int tracing_set_time_stamp_abs(struct trace_array *tr, bool abs);
395 extern int tracing_set_clock(struct trace_array *tr, const char *clockstr);
396
397 extern bool trace_clock_in_ns(struct trace_array *tr);
398
399 /*
400 * The global tracer (top) should be the first trace array added,
401 * but we check the flag anyway.
402 */
top_trace_array(void)403 static inline struct trace_array *top_trace_array(void)
404 {
405 struct trace_array *tr;
406
407 if (list_empty(&ftrace_trace_arrays))
408 return NULL;
409
410 tr = list_entry(ftrace_trace_arrays.prev,
411 typeof(*tr), list);
412 WARN_ON(!(tr->flags & TRACE_ARRAY_FL_GLOBAL));
413 return tr;
414 }
415
416 #define FTRACE_CMP_TYPE(var, type) \
417 __builtin_types_compatible_p(typeof(var), type *)
418
419 #undef IF_ASSIGN
420 #define IF_ASSIGN(var, entry, etype, id) \
421 if (FTRACE_CMP_TYPE(var, etype)) { \
422 var = (typeof(var))(entry); \
423 WARN_ON(id != 0 && (entry)->type != id); \
424 break; \
425 }
426
427 /* Will cause compile errors if type is not found. */
428 extern void __ftrace_bad_type(void);
429
430 /*
431 * The trace_assign_type is a verifier that the entry type is
432 * the same as the type being assigned. To add new types simply
433 * add a line with the following format:
434 *
435 * IF_ASSIGN(var, ent, type, id);
436 *
437 * Where "type" is the trace type that includes the trace_entry
438 * as the "ent" item. And "id" is the trace identifier that is
439 * used in the trace_type enum.
440 *
441 * If the type can have more than one id, then use zero.
442 */
443 #define trace_assign_type(var, ent) \
444 do { \
445 IF_ASSIGN(var, ent, struct ftrace_entry, TRACE_FN); \
446 IF_ASSIGN(var, ent, struct ctx_switch_entry, 0); \
447 IF_ASSIGN(var, ent, struct stack_entry, TRACE_STACK); \
448 IF_ASSIGN(var, ent, struct userstack_entry, TRACE_USER_STACK);\
449 IF_ASSIGN(var, ent, struct print_entry, TRACE_PRINT); \
450 IF_ASSIGN(var, ent, struct bprint_entry, TRACE_BPRINT); \
451 IF_ASSIGN(var, ent, struct bputs_entry, TRACE_BPUTS); \
452 IF_ASSIGN(var, ent, struct hwlat_entry, TRACE_HWLAT); \
453 IF_ASSIGN(var, ent, struct raw_data_entry, TRACE_RAW_DATA);\
454 IF_ASSIGN(var, ent, struct trace_mmiotrace_rw, \
455 TRACE_MMIO_RW); \
456 IF_ASSIGN(var, ent, struct trace_mmiotrace_map, \
457 TRACE_MMIO_MAP); \
458 IF_ASSIGN(var, ent, struct trace_branch, TRACE_BRANCH); \
459 IF_ASSIGN(var, ent, struct ftrace_graph_ent_entry, \
460 TRACE_GRAPH_ENT); \
461 IF_ASSIGN(var, ent, struct ftrace_graph_ret_entry, \
462 TRACE_GRAPH_RET); \
463 __ftrace_bad_type(); \
464 } while (0)
465
466 /*
467 * An option specific to a tracer. This is a boolean value.
468 * The bit is the bit index that sets its value on the
469 * flags value in struct tracer_flags.
470 */
471 struct tracer_opt {
472 const char *name; /* Will appear on the trace_options file */
473 u32 bit; /* Mask assigned in val field in tracer_flags */
474 };
475
476 /*
477 * The set of specific options for a tracer. Your tracer
478 * have to set the initial value of the flags val.
479 */
480 struct tracer_flags {
481 u32 val;
482 struct tracer_opt *opts;
483 struct tracer *trace;
484 };
485
486 /* Makes more easy to define a tracer opt */
487 #define TRACER_OPT(s, b) .name = #s, .bit = b
488
489
490 struct trace_option_dentry {
491 struct tracer_opt *opt;
492 struct tracer_flags *flags;
493 struct trace_array *tr;
494 struct dentry *entry;
495 };
496
497 /**
498 * struct tracer - a specific tracer and its callbacks to interact with tracefs
499 * @name: the name chosen to select it on the available_tracers file
500 * @init: called when one switches to this tracer (echo name > current_tracer)
501 * @reset: called when one switches to another tracer
502 * @start: called when tracing is unpaused (echo 1 > tracing_on)
503 * @stop: called when tracing is paused (echo 0 > tracing_on)
504 * @update_thresh: called when tracing_thresh is updated
505 * @open: called when the trace file is opened
506 * @pipe_open: called when the trace_pipe file is opened
507 * @close: called when the trace file is released
508 * @pipe_close: called when the trace_pipe file is released
509 * @read: override the default read callback on trace_pipe
510 * @splice_read: override the default splice_read callback on trace_pipe
511 * @selftest: selftest to run on boot (see trace_selftest.c)
512 * @print_headers: override the first lines that describe your columns
513 * @print_line: callback that prints a trace
514 * @set_flag: signals one of your private flags changed (trace_options file)
515 * @flags: your private flags
516 */
517 struct tracer {
518 const char *name;
519 int (*init)(struct trace_array *tr);
520 void (*reset)(struct trace_array *tr);
521 void (*start)(struct trace_array *tr);
522 void (*stop)(struct trace_array *tr);
523 int (*update_thresh)(struct trace_array *tr);
524 void (*open)(struct trace_iterator *iter);
525 void (*pipe_open)(struct trace_iterator *iter);
526 void (*close)(struct trace_iterator *iter);
527 void (*pipe_close)(struct trace_iterator *iter);
528 ssize_t (*read)(struct trace_iterator *iter,
529 struct file *filp, char __user *ubuf,
530 size_t cnt, loff_t *ppos);
531 ssize_t (*splice_read)(struct trace_iterator *iter,
532 struct file *filp,
533 loff_t *ppos,
534 struct pipe_inode_info *pipe,
535 size_t len,
536 unsigned int flags);
537 #ifdef CONFIG_FTRACE_STARTUP_TEST
538 int (*selftest)(struct tracer *trace,
539 struct trace_array *tr);
540 #endif
541 void (*print_header)(struct seq_file *m);
542 enum print_line_t (*print_line)(struct trace_iterator *iter);
543 /* If you handled the flag setting, return 0 */
544 int (*set_flag)(struct trace_array *tr,
545 u32 old_flags, u32 bit, int set);
546 /* Return 0 if OK with change, else return non-zero */
547 int (*flag_changed)(struct trace_array *tr,
548 u32 mask, int set);
549 struct tracer *next;
550 struct tracer_flags *flags;
551 int enabled;
552 bool print_max;
553 bool allow_instances;
554 #ifdef CONFIG_TRACER_MAX_TRACE
555 bool use_max_tr;
556 #endif
557 /* True if tracer cannot be enabled in kernel param */
558 bool noboot;
559 };
560
561
562 /* Only current can touch trace_recursion */
563
564 /*
565 * For function tracing recursion:
566 * The order of these bits are important.
567 *
568 * When function tracing occurs, the following steps are made:
569 * If arch does not support a ftrace feature:
570 * call internal function (uses INTERNAL bits) which calls...
571 * If callback is registered to the "global" list, the list
572 * function is called and recursion checks the GLOBAL bits.
573 * then this function calls...
574 * The function callback, which can use the FTRACE bits to
575 * check for recursion.
576 *
577 * Now if the arch does not support a feature, and it calls
578 * the global list function which calls the ftrace callback
579 * all three of these steps will do a recursion protection.
580 * There's no reason to do one if the previous caller already
581 * did. The recursion that we are protecting against will
582 * go through the same steps again.
583 *
584 * To prevent the multiple recursion checks, if a recursion
585 * bit is set that is higher than the MAX bit of the current
586 * check, then we know that the check was made by the previous
587 * caller, and we can skip the current check.
588 */
589 enum {
590 /* Function recursion bits */
591 TRACE_FTRACE_BIT,
592 TRACE_FTRACE_NMI_BIT,
593 TRACE_FTRACE_IRQ_BIT,
594 TRACE_FTRACE_SIRQ_BIT,
595
596 /* INTERNAL_BITs must be greater than FTRACE_BITs */
597 TRACE_INTERNAL_BIT,
598 TRACE_INTERNAL_NMI_BIT,
599 TRACE_INTERNAL_IRQ_BIT,
600 TRACE_INTERNAL_SIRQ_BIT,
601
602 TRACE_BRANCH_BIT,
603 /*
604 * Abuse of the trace_recursion.
605 * As we need a way to maintain state if we are tracing the function
606 * graph in irq because we want to trace a particular function that
607 * was called in irq context but we have irq tracing off. Since this
608 * can only be modified by current, we can reuse trace_recursion.
609 */
610 TRACE_IRQ_BIT,
611
612 /* Set if the function is in the set_graph_function file */
613 TRACE_GRAPH_BIT,
614
615 /*
616 * In the very unlikely case that an interrupt came in
617 * at a start of graph tracing, and we want to trace
618 * the function in that interrupt, the depth can be greater
619 * than zero, because of the preempted start of a previous
620 * trace. In an even more unlikely case, depth could be 2
621 * if a softirq interrupted the start of graph tracing,
622 * followed by an interrupt preempting a start of graph
623 * tracing in the softirq, and depth can even be 3
624 * if an NMI came in at the start of an interrupt function
625 * that preempted a softirq start of a function that
626 * preempted normal context!!!! Luckily, it can't be
627 * greater than 3, so the next two bits are a mask
628 * of what the depth is when we set TRACE_GRAPH_BIT
629 */
630
631 TRACE_GRAPH_DEPTH_START_BIT,
632 TRACE_GRAPH_DEPTH_END_BIT,
633
634 /*
635 * To implement set_graph_notrace, if this bit is set, we ignore
636 * function graph tracing of called functions, until the return
637 * function is called to clear it.
638 */
639 TRACE_GRAPH_NOTRACE_BIT,
640
641 /*
642 * When transitioning between context, the preempt_count() may
643 * not be correct. Allow for a single recursion to cover this case.
644 */
645 TRACE_TRANSITION_BIT,
646 };
647
648 #define trace_recursion_set(bit) do { (current)->trace_recursion |= (1<<(bit)); } while (0)
649 #define trace_recursion_clear(bit) do { (current)->trace_recursion &= ~(1<<(bit)); } while (0)
650 #define trace_recursion_test(bit) ((current)->trace_recursion & (1<<(bit)))
651
652 #define trace_recursion_depth() \
653 (((current)->trace_recursion >> TRACE_GRAPH_DEPTH_START_BIT) & 3)
654 #define trace_recursion_set_depth(depth) \
655 do { \
656 current->trace_recursion &= \
657 ~(3 << TRACE_GRAPH_DEPTH_START_BIT); \
658 current->trace_recursion |= \
659 ((depth) & 3) << TRACE_GRAPH_DEPTH_START_BIT; \
660 } while (0)
661
662 #define TRACE_CONTEXT_BITS 4
663
664 #define TRACE_FTRACE_START TRACE_FTRACE_BIT
665 #define TRACE_FTRACE_MAX ((1 << (TRACE_FTRACE_START + TRACE_CONTEXT_BITS)) - 1)
666
667 #define TRACE_LIST_START TRACE_INTERNAL_BIT
668 #define TRACE_LIST_MAX ((1 << (TRACE_LIST_START + TRACE_CONTEXT_BITS)) - 1)
669
670 #define TRACE_CONTEXT_MASK TRACE_LIST_MAX
671
trace_get_context_bit(void)672 static __always_inline int trace_get_context_bit(void)
673 {
674 int bit;
675
676 if (in_interrupt()) {
677 if (in_nmi())
678 bit = 0;
679
680 else if (in_irq())
681 bit = 1;
682 else
683 bit = 2;
684 } else
685 bit = 3;
686
687 return bit;
688 }
689
trace_test_and_set_recursion(int start,int max)690 static __always_inline int trace_test_and_set_recursion(int start, int max)
691 {
692 unsigned int val = current->trace_recursion;
693 int bit;
694
695 /* A previous recursion check was made */
696 if ((val & TRACE_CONTEXT_MASK) > max)
697 return 0;
698
699 bit = trace_get_context_bit() + start;
700 if (unlikely(val & (1 << bit))) {
701 /*
702 * It could be that preempt_count has not been updated during
703 * a switch between contexts. Allow for a single recursion.
704 */
705 bit = TRACE_TRANSITION_BIT;
706 if (trace_recursion_test(bit))
707 return -1;
708 trace_recursion_set(bit);
709 barrier();
710 return bit + 1;
711 }
712
713 /* Normal check passed, clear the transition to allow it again */
714 trace_recursion_clear(TRACE_TRANSITION_BIT);
715
716 val |= 1 << bit;
717 current->trace_recursion = val;
718 barrier();
719
720 return bit + 1;
721 }
722
trace_clear_recursion(int bit)723 static __always_inline void trace_clear_recursion(int bit)
724 {
725 unsigned int val = current->trace_recursion;
726
727 if (!bit)
728 return;
729
730 bit--;
731 bit = 1 << bit;
732 val &= ~bit;
733
734 barrier();
735 current->trace_recursion = val;
736 }
737
738 static inline struct ring_buffer_iter *
trace_buffer_iter(struct trace_iterator * iter,int cpu)739 trace_buffer_iter(struct trace_iterator *iter, int cpu)
740 {
741 return iter->buffer_iter ? iter->buffer_iter[cpu] : NULL;
742 }
743
744 int tracer_init(struct tracer *t, struct trace_array *tr);
745 int tracing_is_enabled(void);
746 void tracing_reset_online_cpus(struct array_buffer *buf);
747 void tracing_reset_current(int cpu);
748 void tracing_reset_all_online_cpus(void);
749 int tracing_open_generic(struct inode *inode, struct file *filp);
750 int tracing_open_generic_tr(struct inode *inode, struct file *filp);
751 bool tracing_is_disabled(void);
752 bool tracer_tracing_is_on(struct trace_array *tr);
753 void tracer_tracing_on(struct trace_array *tr);
754 void tracer_tracing_off(struct trace_array *tr);
755 struct dentry *trace_create_file(const char *name,
756 umode_t mode,
757 struct dentry *parent,
758 void *data,
759 const struct file_operations *fops);
760
761 int tracing_init_dentry(void);
762
763 struct ring_buffer_event;
764
765 struct ring_buffer_event *
766 trace_buffer_lock_reserve(struct trace_buffer *buffer,
767 int type,
768 unsigned long len,
769 unsigned long flags,
770 int pc);
771
772 struct trace_entry *tracing_get_trace_entry(struct trace_array *tr,
773 struct trace_array_cpu *data);
774
775 struct trace_entry *trace_find_next_entry(struct trace_iterator *iter,
776 int *ent_cpu, u64 *ent_ts);
777
778 void trace_buffer_unlock_commit_nostack(struct trace_buffer *buffer,
779 struct ring_buffer_event *event);
780
781 int trace_empty(struct trace_iterator *iter);
782
783 void *trace_find_next_entry_inc(struct trace_iterator *iter);
784
785 void trace_init_global_iter(struct trace_iterator *iter);
786
787 void tracing_iter_reset(struct trace_iterator *iter, int cpu);
788
789 unsigned long trace_total_entries_cpu(struct trace_array *tr, int cpu);
790 unsigned long trace_total_entries(struct trace_array *tr);
791
792 void trace_function(struct trace_array *tr,
793 unsigned long ip,
794 unsigned long parent_ip,
795 unsigned long flags, int pc);
796 void trace_graph_function(struct trace_array *tr,
797 unsigned long ip,
798 unsigned long parent_ip,
799 unsigned long flags, int pc);
800 void trace_latency_header(struct seq_file *m);
801 void trace_default_header(struct seq_file *m);
802 void print_trace_header(struct seq_file *m, struct trace_iterator *iter);
803 int trace_empty(struct trace_iterator *iter);
804
805 void trace_graph_return(struct ftrace_graph_ret *trace);
806 int trace_graph_entry(struct ftrace_graph_ent *trace);
807 void set_graph_array(struct trace_array *tr);
808
809 void tracing_start_cmdline_record(void);
810 void tracing_stop_cmdline_record(void);
811 void tracing_start_tgid_record(void);
812 void tracing_stop_tgid_record(void);
813
814 int register_tracer(struct tracer *type);
815 int is_tracing_stopped(void);
816
817 loff_t tracing_lseek(struct file *file, loff_t offset, int whence);
818
819 extern cpumask_var_t __read_mostly tracing_buffer_mask;
820
821 #define for_each_tracing_cpu(cpu) \
822 for_each_cpu(cpu, tracing_buffer_mask)
823
824 extern unsigned long nsecs_to_usecs(unsigned long nsecs);
825
826 extern unsigned long tracing_thresh;
827
828 /* PID filtering */
829
830 extern int pid_max;
831
832 bool trace_find_filtered_pid(struct trace_pid_list *filtered_pids,
833 pid_t search_pid);
834 bool trace_ignore_this_task(struct trace_pid_list *filtered_pids,
835 struct trace_pid_list *filtered_no_pids,
836 struct task_struct *task);
837 void trace_filter_add_remove_task(struct trace_pid_list *pid_list,
838 struct task_struct *self,
839 struct task_struct *task);
840 void *trace_pid_next(struct trace_pid_list *pid_list, void *v, loff_t *pos);
841 void *trace_pid_start(struct trace_pid_list *pid_list, loff_t *pos);
842 int trace_pid_show(struct seq_file *m, void *v);
843 void trace_free_pid_list(struct trace_pid_list *pid_list);
844 int trace_pid_write(struct trace_pid_list *filtered_pids,
845 struct trace_pid_list **new_pid_list,
846 const char __user *ubuf, size_t cnt);
847
848 #ifdef CONFIG_TRACER_MAX_TRACE
849 void update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu,
850 void *cond_data);
851 void update_max_tr_single(struct trace_array *tr,
852 struct task_struct *tsk, int cpu);
853 #endif /* CONFIG_TRACER_MAX_TRACE */
854
855 #if (defined(CONFIG_TRACER_MAX_TRACE) || defined(CONFIG_HWLAT_TRACER)) && \
856 defined(CONFIG_FSNOTIFY)
857
858 void latency_fsnotify(struct trace_array *tr);
859
860 #else
861
latency_fsnotify(struct trace_array * tr)862 static inline void latency_fsnotify(struct trace_array *tr) { }
863
864 #endif
865
866 #ifdef CONFIG_STACKTRACE
867 void __trace_stack(struct trace_array *tr, unsigned long flags, int skip,
868 int pc);
869 #else
__trace_stack(struct trace_array * tr,unsigned long flags,int skip,int pc)870 static inline void __trace_stack(struct trace_array *tr, unsigned long flags,
871 int skip, int pc)
872 {
873 }
874 #endif /* CONFIG_STACKTRACE */
875
876 extern u64 ftrace_now(int cpu);
877
878 extern void trace_find_cmdline(int pid, char comm[]);
879 extern int trace_find_tgid(int pid);
880 extern void trace_event_follow_fork(struct trace_array *tr, bool enable);
881
882 #ifdef CONFIG_DYNAMIC_FTRACE
883 extern unsigned long ftrace_update_tot_cnt;
884 extern unsigned long ftrace_number_of_pages;
885 extern unsigned long ftrace_number_of_groups;
886 void ftrace_init_trace_array(struct trace_array *tr);
887 #else
ftrace_init_trace_array(struct trace_array * tr)888 static inline void ftrace_init_trace_array(struct trace_array *tr) { }
889 #endif
890 #define DYN_FTRACE_TEST_NAME trace_selftest_dynamic_test_func
891 extern int DYN_FTRACE_TEST_NAME(void);
892 #define DYN_FTRACE_TEST_NAME2 trace_selftest_dynamic_test_func2
893 extern int DYN_FTRACE_TEST_NAME2(void);
894
895 extern bool ring_buffer_expanded;
896 extern bool tracing_selftest_disabled;
897
898 #ifdef CONFIG_FTRACE_STARTUP_TEST
899 extern int trace_selftest_startup_function(struct tracer *trace,
900 struct trace_array *tr);
901 extern int trace_selftest_startup_function_graph(struct tracer *trace,
902 struct trace_array *tr);
903 extern int trace_selftest_startup_irqsoff(struct tracer *trace,
904 struct trace_array *tr);
905 extern int trace_selftest_startup_preemptoff(struct tracer *trace,
906 struct trace_array *tr);
907 extern int trace_selftest_startup_preemptirqsoff(struct tracer *trace,
908 struct trace_array *tr);
909 extern int trace_selftest_startup_wakeup(struct tracer *trace,
910 struct trace_array *tr);
911 extern int trace_selftest_startup_nop(struct tracer *trace,
912 struct trace_array *tr);
913 extern int trace_selftest_startup_branch(struct tracer *trace,
914 struct trace_array *tr);
915 /*
916 * Tracer data references selftest functions that only occur
917 * on boot up. These can be __init functions. Thus, when selftests
918 * are enabled, then the tracers need to reference __init functions.
919 */
920 #define __tracer_data __refdata
921 #else
922 /* Tracers are seldom changed. Optimize when selftests are disabled. */
923 #define __tracer_data __read_mostly
924 #endif /* CONFIG_FTRACE_STARTUP_TEST */
925
926 extern void *head_page(struct trace_array_cpu *data);
927 extern unsigned long long ns2usecs(u64 nsec);
928 extern int
929 trace_vbprintk(unsigned long ip, const char *fmt, va_list args);
930 extern int
931 trace_vprintk(unsigned long ip, const char *fmt, va_list args);
932 extern int
933 trace_array_vprintk(struct trace_array *tr,
934 unsigned long ip, const char *fmt, va_list args);
935 int trace_array_printk_buf(struct trace_buffer *buffer,
936 unsigned long ip, const char *fmt, ...);
937 void trace_printk_seq(struct trace_seq *s);
938 enum print_line_t print_trace_line(struct trace_iterator *iter);
939
940 extern char trace_find_mark(unsigned long long duration);
941
942 struct ftrace_hash;
943
944 struct ftrace_mod_load {
945 struct list_head list;
946 char *func;
947 char *module;
948 int enable;
949 };
950
951 enum {
952 FTRACE_HASH_FL_MOD = (1 << 0),
953 };
954
955 struct ftrace_hash {
956 unsigned long size_bits;
957 struct hlist_head *buckets;
958 unsigned long count;
959 unsigned long flags;
960 struct rcu_head rcu;
961 };
962
963 struct ftrace_func_entry *
964 ftrace_lookup_ip(struct ftrace_hash *hash, unsigned long ip);
965
ftrace_hash_empty(struct ftrace_hash * hash)966 static __always_inline bool ftrace_hash_empty(struct ftrace_hash *hash)
967 {
968 return !hash || !(hash->count || (hash->flags & FTRACE_HASH_FL_MOD));
969 }
970
971 /* Standard output formatting function used for function return traces */
972 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
973
974 /* Flag options */
975 #define TRACE_GRAPH_PRINT_OVERRUN 0x1
976 #define TRACE_GRAPH_PRINT_CPU 0x2
977 #define TRACE_GRAPH_PRINT_OVERHEAD 0x4
978 #define TRACE_GRAPH_PRINT_PROC 0x8
979 #define TRACE_GRAPH_PRINT_DURATION 0x10
980 #define TRACE_GRAPH_PRINT_ABS_TIME 0x20
981 #define TRACE_GRAPH_PRINT_REL_TIME 0x40
982 #define TRACE_GRAPH_PRINT_IRQS 0x80
983 #define TRACE_GRAPH_PRINT_TAIL 0x100
984 #define TRACE_GRAPH_SLEEP_TIME 0x200
985 #define TRACE_GRAPH_GRAPH_TIME 0x400
986 #define TRACE_GRAPH_PRINT_FILL_SHIFT 28
987 #define TRACE_GRAPH_PRINT_FILL_MASK (0x3 << TRACE_GRAPH_PRINT_FILL_SHIFT)
988
989 extern void ftrace_graph_sleep_time_control(bool enable);
990
991 #ifdef CONFIG_FUNCTION_PROFILER
992 extern void ftrace_graph_graph_time_control(bool enable);
993 #else
ftrace_graph_graph_time_control(bool enable)994 static inline void ftrace_graph_graph_time_control(bool enable) { }
995 #endif
996
997 extern enum print_line_t
998 print_graph_function_flags(struct trace_iterator *iter, u32 flags);
999 extern void print_graph_headers_flags(struct seq_file *s, u32 flags);
1000 extern void
1001 trace_print_graph_duration(unsigned long long duration, struct trace_seq *s);
1002 extern void graph_trace_open(struct trace_iterator *iter);
1003 extern void graph_trace_close(struct trace_iterator *iter);
1004 extern int __trace_graph_entry(struct trace_array *tr,
1005 struct ftrace_graph_ent *trace,
1006 unsigned long flags, int pc);
1007 extern void __trace_graph_return(struct trace_array *tr,
1008 struct ftrace_graph_ret *trace,
1009 unsigned long flags, int pc);
1010
1011 #ifdef CONFIG_DYNAMIC_FTRACE
1012 extern struct ftrace_hash __rcu *ftrace_graph_hash;
1013 extern struct ftrace_hash __rcu *ftrace_graph_notrace_hash;
1014
ftrace_graph_addr(struct ftrace_graph_ent * trace)1015 static inline int ftrace_graph_addr(struct ftrace_graph_ent *trace)
1016 {
1017 unsigned long addr = trace->func;
1018 int ret = 0;
1019 struct ftrace_hash *hash;
1020
1021 preempt_disable_notrace();
1022
1023 /*
1024 * Have to open code "rcu_dereference_sched()" because the
1025 * function graph tracer can be called when RCU is not
1026 * "watching".
1027 * Protected with schedule_on_each_cpu(ftrace_sync)
1028 */
1029 hash = rcu_dereference_protected(ftrace_graph_hash, !preemptible());
1030
1031 if (ftrace_hash_empty(hash)) {
1032 ret = 1;
1033 goto out;
1034 }
1035
1036 if (ftrace_lookup_ip(hash, addr)) {
1037
1038 /*
1039 * This needs to be cleared on the return functions
1040 * when the depth is zero.
1041 */
1042 trace_recursion_set(TRACE_GRAPH_BIT);
1043 trace_recursion_set_depth(trace->depth);
1044
1045 /*
1046 * If no irqs are to be traced, but a set_graph_function
1047 * is set, and called by an interrupt handler, we still
1048 * want to trace it.
1049 */
1050 if (in_irq())
1051 trace_recursion_set(TRACE_IRQ_BIT);
1052 else
1053 trace_recursion_clear(TRACE_IRQ_BIT);
1054 ret = 1;
1055 }
1056
1057 out:
1058 preempt_enable_notrace();
1059 return ret;
1060 }
1061
ftrace_graph_addr_finish(struct ftrace_graph_ret * trace)1062 static inline void ftrace_graph_addr_finish(struct ftrace_graph_ret *trace)
1063 {
1064 if (trace_recursion_test(TRACE_GRAPH_BIT) &&
1065 trace->depth == trace_recursion_depth())
1066 trace_recursion_clear(TRACE_GRAPH_BIT);
1067 }
1068
ftrace_graph_notrace_addr(unsigned long addr)1069 static inline int ftrace_graph_notrace_addr(unsigned long addr)
1070 {
1071 int ret = 0;
1072 struct ftrace_hash *notrace_hash;
1073
1074 preempt_disable_notrace();
1075
1076 /*
1077 * Have to open code "rcu_dereference_sched()" because the
1078 * function graph tracer can be called when RCU is not
1079 * "watching".
1080 * Protected with schedule_on_each_cpu(ftrace_sync)
1081 */
1082 notrace_hash = rcu_dereference_protected(ftrace_graph_notrace_hash,
1083 !preemptible());
1084
1085 if (ftrace_lookup_ip(notrace_hash, addr))
1086 ret = 1;
1087
1088 preempt_enable_notrace();
1089 return ret;
1090 }
1091 #else
ftrace_graph_addr(struct ftrace_graph_ent * trace)1092 static inline int ftrace_graph_addr(struct ftrace_graph_ent *trace)
1093 {
1094 return 1;
1095 }
1096
ftrace_graph_notrace_addr(unsigned long addr)1097 static inline int ftrace_graph_notrace_addr(unsigned long addr)
1098 {
1099 return 0;
1100 }
ftrace_graph_addr_finish(struct ftrace_graph_ret * trace)1101 static inline void ftrace_graph_addr_finish(struct ftrace_graph_ret *trace)
1102 { }
1103 #endif /* CONFIG_DYNAMIC_FTRACE */
1104
1105 extern unsigned int fgraph_max_depth;
1106
ftrace_graph_ignore_func(struct ftrace_graph_ent * trace)1107 static inline bool ftrace_graph_ignore_func(struct ftrace_graph_ent *trace)
1108 {
1109 /* trace it when it is-nested-in or is a function enabled. */
1110 return !(trace_recursion_test(TRACE_GRAPH_BIT) ||
1111 ftrace_graph_addr(trace)) ||
1112 (trace->depth < 0) ||
1113 (fgraph_max_depth && trace->depth >= fgraph_max_depth);
1114 }
1115
1116 #else /* CONFIG_FUNCTION_GRAPH_TRACER */
1117 static inline enum print_line_t
print_graph_function_flags(struct trace_iterator * iter,u32 flags)1118 print_graph_function_flags(struct trace_iterator *iter, u32 flags)
1119 {
1120 return TRACE_TYPE_UNHANDLED;
1121 }
1122 #endif /* CONFIG_FUNCTION_GRAPH_TRACER */
1123
1124 extern struct list_head ftrace_pids;
1125
1126 #ifdef CONFIG_FUNCTION_TRACER
1127
1128 #define FTRACE_PID_IGNORE -1
1129 #define FTRACE_PID_TRACE -2
1130
1131 struct ftrace_func_command {
1132 struct list_head list;
1133 char *name;
1134 int (*func)(struct trace_array *tr,
1135 struct ftrace_hash *hash,
1136 char *func, char *cmd,
1137 char *params, int enable);
1138 };
1139 extern bool ftrace_filter_param __initdata;
ftrace_trace_task(struct trace_array * tr)1140 static inline int ftrace_trace_task(struct trace_array *tr)
1141 {
1142 return this_cpu_read(tr->array_buffer.data->ftrace_ignore_pid) !=
1143 FTRACE_PID_IGNORE;
1144 }
1145 extern int ftrace_is_dead(void);
1146 int ftrace_create_function_files(struct trace_array *tr,
1147 struct dentry *parent);
1148 void ftrace_destroy_function_files(struct trace_array *tr);
1149 int ftrace_allocate_ftrace_ops(struct trace_array *tr);
1150 void ftrace_free_ftrace_ops(struct trace_array *tr);
1151 void ftrace_init_global_array_ops(struct trace_array *tr);
1152 void ftrace_init_array_ops(struct trace_array *tr, ftrace_func_t func);
1153 void ftrace_reset_array_ops(struct trace_array *tr);
1154 void ftrace_init_tracefs(struct trace_array *tr, struct dentry *d_tracer);
1155 void ftrace_init_tracefs_toplevel(struct trace_array *tr,
1156 struct dentry *d_tracer);
1157 void ftrace_clear_pids(struct trace_array *tr);
1158 int init_function_trace(void);
1159 void ftrace_pid_follow_fork(struct trace_array *tr, bool enable);
1160 #else
ftrace_trace_task(struct trace_array * tr)1161 static inline int ftrace_trace_task(struct trace_array *tr)
1162 {
1163 return 1;
1164 }
ftrace_is_dead(void)1165 static inline int ftrace_is_dead(void) { return 0; }
1166 static inline int
ftrace_create_function_files(struct trace_array * tr,struct dentry * parent)1167 ftrace_create_function_files(struct trace_array *tr,
1168 struct dentry *parent)
1169 {
1170 return 0;
1171 }
ftrace_allocate_ftrace_ops(struct trace_array * tr)1172 static inline int ftrace_allocate_ftrace_ops(struct trace_array *tr)
1173 {
1174 return 0;
1175 }
ftrace_free_ftrace_ops(struct trace_array * tr)1176 static inline void ftrace_free_ftrace_ops(struct trace_array *tr) { }
ftrace_destroy_function_files(struct trace_array * tr)1177 static inline void ftrace_destroy_function_files(struct trace_array *tr) { }
1178 static inline __init void
ftrace_init_global_array_ops(struct trace_array * tr)1179 ftrace_init_global_array_ops(struct trace_array *tr) { }
ftrace_reset_array_ops(struct trace_array * tr)1180 static inline void ftrace_reset_array_ops(struct trace_array *tr) { }
ftrace_init_tracefs(struct trace_array * tr,struct dentry * d)1181 static inline void ftrace_init_tracefs(struct trace_array *tr, struct dentry *d) { }
ftrace_init_tracefs_toplevel(struct trace_array * tr,struct dentry * d)1182 static inline void ftrace_init_tracefs_toplevel(struct trace_array *tr, struct dentry *d) { }
ftrace_clear_pids(struct trace_array * tr)1183 static inline void ftrace_clear_pids(struct trace_array *tr) { }
init_function_trace(void)1184 static inline int init_function_trace(void) { return 0; }
ftrace_pid_follow_fork(struct trace_array * tr,bool enable)1185 static inline void ftrace_pid_follow_fork(struct trace_array *tr, bool enable) { }
1186 /* ftace_func_t type is not defined, use macro instead of static inline */
1187 #define ftrace_init_array_ops(tr, func) do { } while (0)
1188 #endif /* CONFIG_FUNCTION_TRACER */
1189
1190 #if defined(CONFIG_FUNCTION_TRACER) && defined(CONFIG_DYNAMIC_FTRACE)
1191
1192 struct ftrace_probe_ops {
1193 void (*func)(unsigned long ip,
1194 unsigned long parent_ip,
1195 struct trace_array *tr,
1196 struct ftrace_probe_ops *ops,
1197 void *data);
1198 int (*init)(struct ftrace_probe_ops *ops,
1199 struct trace_array *tr,
1200 unsigned long ip, void *init_data,
1201 void **data);
1202 void (*free)(struct ftrace_probe_ops *ops,
1203 struct trace_array *tr,
1204 unsigned long ip, void *data);
1205 int (*print)(struct seq_file *m,
1206 unsigned long ip,
1207 struct ftrace_probe_ops *ops,
1208 void *data);
1209 };
1210
1211 struct ftrace_func_mapper;
1212 typedef int (*ftrace_mapper_func)(void *data);
1213
1214 struct ftrace_func_mapper *allocate_ftrace_func_mapper(void);
1215 void **ftrace_func_mapper_find_ip(struct ftrace_func_mapper *mapper,
1216 unsigned long ip);
1217 int ftrace_func_mapper_add_ip(struct ftrace_func_mapper *mapper,
1218 unsigned long ip, void *data);
1219 void *ftrace_func_mapper_remove_ip(struct ftrace_func_mapper *mapper,
1220 unsigned long ip);
1221 void free_ftrace_func_mapper(struct ftrace_func_mapper *mapper,
1222 ftrace_mapper_func free_func);
1223
1224 extern int
1225 register_ftrace_function_probe(char *glob, struct trace_array *tr,
1226 struct ftrace_probe_ops *ops, void *data);
1227 extern int
1228 unregister_ftrace_function_probe_func(char *glob, struct trace_array *tr,
1229 struct ftrace_probe_ops *ops);
1230 extern void clear_ftrace_function_probes(struct trace_array *tr);
1231
1232 int register_ftrace_command(struct ftrace_func_command *cmd);
1233 int unregister_ftrace_command(struct ftrace_func_command *cmd);
1234
1235 void ftrace_create_filter_files(struct ftrace_ops *ops,
1236 struct dentry *parent);
1237 void ftrace_destroy_filter_files(struct ftrace_ops *ops);
1238
1239 extern int ftrace_set_filter(struct ftrace_ops *ops, unsigned char *buf,
1240 int len, int reset);
1241 extern int ftrace_set_notrace(struct ftrace_ops *ops, unsigned char *buf,
1242 int len, int reset);
1243 #else
1244 struct ftrace_func_command;
1245
register_ftrace_command(struct ftrace_func_command * cmd)1246 static inline __init int register_ftrace_command(struct ftrace_func_command *cmd)
1247 {
1248 return -EINVAL;
1249 }
unregister_ftrace_command(char * cmd_name)1250 static inline __init int unregister_ftrace_command(char *cmd_name)
1251 {
1252 return -EINVAL;
1253 }
clear_ftrace_function_probes(struct trace_array * tr)1254 static inline void clear_ftrace_function_probes(struct trace_array *tr)
1255 {
1256 }
1257
1258 /*
1259 * The ops parameter passed in is usually undefined.
1260 * This must be a macro.
1261 */
1262 #define ftrace_create_filter_files(ops, parent) do { } while (0)
1263 #define ftrace_destroy_filter_files(ops) do { } while (0)
1264 #endif /* CONFIG_FUNCTION_TRACER && CONFIG_DYNAMIC_FTRACE */
1265
1266 bool ftrace_event_is_function(struct trace_event_call *call);
1267
1268 /*
1269 * struct trace_parser - servers for reading the user input separated by spaces
1270 * @cont: set if the input is not complete - no final space char was found
1271 * @buffer: holds the parsed user input
1272 * @idx: user input length
1273 * @size: buffer size
1274 */
1275 struct trace_parser {
1276 bool cont;
1277 char *buffer;
1278 unsigned idx;
1279 unsigned size;
1280 };
1281
trace_parser_loaded(struct trace_parser * parser)1282 static inline bool trace_parser_loaded(struct trace_parser *parser)
1283 {
1284 return (parser->idx != 0);
1285 }
1286
trace_parser_cont(struct trace_parser * parser)1287 static inline bool trace_parser_cont(struct trace_parser *parser)
1288 {
1289 return parser->cont;
1290 }
1291
trace_parser_clear(struct trace_parser * parser)1292 static inline void trace_parser_clear(struct trace_parser *parser)
1293 {
1294 parser->cont = false;
1295 parser->idx = 0;
1296 }
1297
1298 extern int trace_parser_get_init(struct trace_parser *parser, int size);
1299 extern void trace_parser_put(struct trace_parser *parser);
1300 extern int trace_get_user(struct trace_parser *parser, const char __user *ubuf,
1301 size_t cnt, loff_t *ppos);
1302
1303 /*
1304 * Only create function graph options if function graph is configured.
1305 */
1306 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
1307 # define FGRAPH_FLAGS \
1308 C(DISPLAY_GRAPH, "display-graph"),
1309 #else
1310 # define FGRAPH_FLAGS
1311 #endif
1312
1313 #ifdef CONFIG_BRANCH_TRACER
1314 # define BRANCH_FLAGS \
1315 C(BRANCH, "branch"),
1316 #else
1317 # define BRANCH_FLAGS
1318 #endif
1319
1320 #ifdef CONFIG_FUNCTION_TRACER
1321 # define FUNCTION_FLAGS \
1322 C(FUNCTION, "function-trace"), \
1323 C(FUNC_FORK, "function-fork"),
1324 # define FUNCTION_DEFAULT_FLAGS TRACE_ITER_FUNCTION
1325 #else
1326 # define FUNCTION_FLAGS
1327 # define FUNCTION_DEFAULT_FLAGS 0UL
1328 # define TRACE_ITER_FUNC_FORK 0UL
1329 #endif
1330
1331 #ifdef CONFIG_STACKTRACE
1332 # define STACK_FLAGS \
1333 C(STACKTRACE, "stacktrace"),
1334 #else
1335 # define STACK_FLAGS
1336 #endif
1337
1338 /*
1339 * trace_iterator_flags is an enumeration that defines bit
1340 * positions into trace_flags that controls the output.
1341 *
1342 * NOTE: These bits must match the trace_options array in
1343 * trace.c (this macro guarantees it).
1344 */
1345 #define TRACE_FLAGS \
1346 C(PRINT_PARENT, "print-parent"), \
1347 C(SYM_OFFSET, "sym-offset"), \
1348 C(SYM_ADDR, "sym-addr"), \
1349 C(VERBOSE, "verbose"), \
1350 C(RAW, "raw"), \
1351 C(HEX, "hex"), \
1352 C(BIN, "bin"), \
1353 C(BLOCK, "block"), \
1354 C(PRINTK, "trace_printk"), \
1355 C(ANNOTATE, "annotate"), \
1356 C(USERSTACKTRACE, "userstacktrace"), \
1357 C(SYM_USEROBJ, "sym-userobj"), \
1358 C(PRINTK_MSGONLY, "printk-msg-only"), \
1359 C(CONTEXT_INFO, "context-info"), /* Print pid/cpu/time */ \
1360 C(LATENCY_FMT, "latency-format"), \
1361 C(RECORD_CMD, "record-cmd"), \
1362 C(RECORD_TGID, "record-tgid"), \
1363 C(OVERWRITE, "overwrite"), \
1364 C(STOP_ON_FREE, "disable_on_free"), \
1365 C(IRQ_INFO, "irq-info"), \
1366 C(MARKERS, "markers"), \
1367 C(EVENT_FORK, "event-fork"), \
1368 C(PAUSE_ON_TRACE, "pause-on-trace"), \
1369 FUNCTION_FLAGS \
1370 FGRAPH_FLAGS \
1371 STACK_FLAGS \
1372 BRANCH_FLAGS
1373
1374 /*
1375 * By defining C, we can make TRACE_FLAGS a list of bit names
1376 * that will define the bits for the flag masks.
1377 */
1378 #undef C
1379 #define C(a, b) TRACE_ITER_##a##_BIT
1380
1381 enum trace_iterator_bits {
1382 TRACE_FLAGS
1383 /* Make sure we don't go more than we have bits for */
1384 TRACE_ITER_LAST_BIT
1385 };
1386
1387 /*
1388 * By redefining C, we can make TRACE_FLAGS a list of masks that
1389 * use the bits as defined above.
1390 */
1391 #undef C
1392 #define C(a, b) TRACE_ITER_##a = (1 << TRACE_ITER_##a##_BIT)
1393
1394 enum trace_iterator_flags { TRACE_FLAGS };
1395
1396 /*
1397 * TRACE_ITER_SYM_MASK masks the options in trace_flags that
1398 * control the output of kernel symbols.
1399 */
1400 #define TRACE_ITER_SYM_MASK \
1401 (TRACE_ITER_PRINT_PARENT|TRACE_ITER_SYM_OFFSET|TRACE_ITER_SYM_ADDR)
1402
1403 extern struct tracer nop_trace;
1404
1405 #ifdef CONFIG_BRANCH_TRACER
1406 extern int enable_branch_tracing(struct trace_array *tr);
1407 extern void disable_branch_tracing(void);
trace_branch_enable(struct trace_array * tr)1408 static inline int trace_branch_enable(struct trace_array *tr)
1409 {
1410 if (tr->trace_flags & TRACE_ITER_BRANCH)
1411 return enable_branch_tracing(tr);
1412 return 0;
1413 }
trace_branch_disable(void)1414 static inline void trace_branch_disable(void)
1415 {
1416 /* due to races, always disable */
1417 disable_branch_tracing();
1418 }
1419 #else
trace_branch_enable(struct trace_array * tr)1420 static inline int trace_branch_enable(struct trace_array *tr)
1421 {
1422 return 0;
1423 }
trace_branch_disable(void)1424 static inline void trace_branch_disable(void)
1425 {
1426 }
1427 #endif /* CONFIG_BRANCH_TRACER */
1428
1429 /* set ring buffers to default size if not already done so */
1430 int tracing_update_buffers(void);
1431
1432 struct ftrace_event_field {
1433 struct list_head link;
1434 const char *name;
1435 const char *type;
1436 int filter_type;
1437 int offset;
1438 int size;
1439 int is_signed;
1440 };
1441
1442 struct prog_entry;
1443
1444 struct event_filter {
1445 struct prog_entry __rcu *prog;
1446 char *filter_string;
1447 };
1448
1449 struct event_subsystem {
1450 struct list_head list;
1451 const char *name;
1452 struct event_filter *filter;
1453 int ref_count;
1454 };
1455
1456 struct trace_subsystem_dir {
1457 struct list_head list;
1458 struct event_subsystem *subsystem;
1459 struct trace_array *tr;
1460 struct dentry *entry;
1461 int ref_count;
1462 int nr_events;
1463 };
1464
1465 extern int call_filter_check_discard(struct trace_event_call *call, void *rec,
1466 struct trace_buffer *buffer,
1467 struct ring_buffer_event *event);
1468
1469 void trace_buffer_unlock_commit_regs(struct trace_array *tr,
1470 struct trace_buffer *buffer,
1471 struct ring_buffer_event *event,
1472 unsigned long flags, int pc,
1473 struct pt_regs *regs);
1474
trace_buffer_unlock_commit(struct trace_array * tr,struct trace_buffer * buffer,struct ring_buffer_event * event,unsigned long flags,int pc)1475 static inline void trace_buffer_unlock_commit(struct trace_array *tr,
1476 struct trace_buffer *buffer,
1477 struct ring_buffer_event *event,
1478 unsigned long flags, int pc)
1479 {
1480 trace_buffer_unlock_commit_regs(tr, buffer, event, flags, pc, NULL);
1481 }
1482
1483 DECLARE_PER_CPU(struct ring_buffer_event *, trace_buffered_event);
1484 DECLARE_PER_CPU(int, trace_buffered_event_cnt);
1485 void trace_buffered_event_disable(void);
1486 void trace_buffered_event_enable(void);
1487
1488 static inline void
__trace_event_discard_commit(struct trace_buffer * buffer,struct ring_buffer_event * event)1489 __trace_event_discard_commit(struct trace_buffer *buffer,
1490 struct ring_buffer_event *event)
1491 {
1492 if (this_cpu_read(trace_buffered_event) == event) {
1493 /* Simply release the temp buffer */
1494 this_cpu_dec(trace_buffered_event_cnt);
1495 return;
1496 }
1497 ring_buffer_discard_commit(buffer, event);
1498 }
1499
1500 /*
1501 * Helper function for event_trigger_unlock_commit{_regs}().
1502 * If there are event triggers attached to this event that requires
1503 * filtering against its fields, then they will be called as the
1504 * entry already holds the field information of the current event.
1505 *
1506 * It also checks if the event should be discarded or not.
1507 * It is to be discarded if the event is soft disabled and the
1508 * event was only recorded to process triggers, or if the event
1509 * filter is active and this event did not match the filters.
1510 *
1511 * Returns true if the event is discarded, false otherwise.
1512 */
1513 static inline bool
__event_trigger_test_discard(struct trace_event_file * file,struct trace_buffer * buffer,struct ring_buffer_event * event,void * entry,enum event_trigger_type * tt)1514 __event_trigger_test_discard(struct trace_event_file *file,
1515 struct trace_buffer *buffer,
1516 struct ring_buffer_event *event,
1517 void *entry,
1518 enum event_trigger_type *tt)
1519 {
1520 unsigned long eflags = file->flags;
1521
1522 if (eflags & EVENT_FILE_FL_TRIGGER_COND)
1523 *tt = event_triggers_call(file, entry, event);
1524
1525 if (test_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags) ||
1526 (unlikely(file->flags & EVENT_FILE_FL_FILTERED) &&
1527 !filter_match_preds(file->filter, entry))) {
1528 __trace_event_discard_commit(buffer, event);
1529 return true;
1530 }
1531
1532 return false;
1533 }
1534
1535 /**
1536 * event_trigger_unlock_commit - handle triggers and finish event commit
1537 * @file: The file pointer assoctiated to the event
1538 * @buffer: The ring buffer that the event is being written to
1539 * @event: The event meta data in the ring buffer
1540 * @entry: The event itself
1541 * @irq_flags: The state of the interrupts at the start of the event
1542 * @pc: The state of the preempt count at the start of the event.
1543 *
1544 * This is a helper function to handle triggers that require data
1545 * from the event itself. It also tests the event against filters and
1546 * if the event is soft disabled and should be discarded.
1547 */
1548 static inline void
event_trigger_unlock_commit(struct trace_event_file * file,struct trace_buffer * buffer,struct ring_buffer_event * event,void * entry,unsigned long irq_flags,int pc)1549 event_trigger_unlock_commit(struct trace_event_file *file,
1550 struct trace_buffer *buffer,
1551 struct ring_buffer_event *event,
1552 void *entry, unsigned long irq_flags, int pc)
1553 {
1554 enum event_trigger_type tt = ETT_NONE;
1555
1556 if (!__event_trigger_test_discard(file, buffer, event, entry, &tt))
1557 trace_buffer_unlock_commit(file->tr, buffer, event, irq_flags, pc);
1558
1559 if (tt)
1560 event_triggers_post_call(file, tt);
1561 }
1562
1563 /**
1564 * event_trigger_unlock_commit_regs - handle triggers and finish event commit
1565 * @file: The file pointer assoctiated to the event
1566 * @buffer: The ring buffer that the event is being written to
1567 * @event: The event meta data in the ring buffer
1568 * @entry: The event itself
1569 * @irq_flags: The state of the interrupts at the start of the event
1570 * @pc: The state of the preempt count at the start of the event.
1571 *
1572 * This is a helper function to handle triggers that require data
1573 * from the event itself. It also tests the event against filters and
1574 * if the event is soft disabled and should be discarded.
1575 *
1576 * Same as event_trigger_unlock_commit() but calls
1577 * trace_buffer_unlock_commit_regs() instead of trace_buffer_unlock_commit().
1578 */
1579 static inline void
event_trigger_unlock_commit_regs(struct trace_event_file * file,struct trace_buffer * buffer,struct ring_buffer_event * event,void * entry,unsigned long irq_flags,int pc,struct pt_regs * regs)1580 event_trigger_unlock_commit_regs(struct trace_event_file *file,
1581 struct trace_buffer *buffer,
1582 struct ring_buffer_event *event,
1583 void *entry, unsigned long irq_flags, int pc,
1584 struct pt_regs *regs)
1585 {
1586 enum event_trigger_type tt = ETT_NONE;
1587
1588 if (!__event_trigger_test_discard(file, buffer, event, entry, &tt))
1589 trace_buffer_unlock_commit_regs(file->tr, buffer, event,
1590 irq_flags, pc, regs);
1591
1592 if (tt)
1593 event_triggers_post_call(file, tt);
1594 }
1595
1596 #define FILTER_PRED_INVALID ((unsigned short)-1)
1597 #define FILTER_PRED_IS_RIGHT (1 << 15)
1598 #define FILTER_PRED_FOLD (1 << 15)
1599
1600 /*
1601 * The max preds is the size of unsigned short with
1602 * two flags at the MSBs. One bit is used for both the IS_RIGHT
1603 * and FOLD flags. The other is reserved.
1604 *
1605 * 2^14 preds is way more than enough.
1606 */
1607 #define MAX_FILTER_PRED 16384
1608
1609 struct filter_pred;
1610 struct regex;
1611
1612 typedef int (*filter_pred_fn_t) (struct filter_pred *pred, void *event);
1613
1614 typedef int (*regex_match_func)(char *str, struct regex *r, int len);
1615
1616 enum regex_type {
1617 MATCH_FULL = 0,
1618 MATCH_FRONT_ONLY,
1619 MATCH_MIDDLE_ONLY,
1620 MATCH_END_ONLY,
1621 MATCH_GLOB,
1622 MATCH_INDEX,
1623 };
1624
1625 struct regex {
1626 char pattern[MAX_FILTER_STR_VAL];
1627 int len;
1628 int field_len;
1629 regex_match_func match;
1630 };
1631
1632 struct filter_pred {
1633 filter_pred_fn_t fn;
1634 u64 val;
1635 struct regex regex;
1636 unsigned short *ops;
1637 struct ftrace_event_field *field;
1638 int offset;
1639 int not;
1640 int op;
1641 };
1642
is_string_field(struct ftrace_event_field * field)1643 static inline bool is_string_field(struct ftrace_event_field *field)
1644 {
1645 return field->filter_type == FILTER_DYN_STRING ||
1646 field->filter_type == FILTER_STATIC_STRING ||
1647 field->filter_type == FILTER_PTR_STRING ||
1648 field->filter_type == FILTER_COMM;
1649 }
1650
is_function_field(struct ftrace_event_field * field)1651 static inline bool is_function_field(struct ftrace_event_field *field)
1652 {
1653 return field->filter_type == FILTER_TRACE_FN;
1654 }
1655
1656 extern enum regex_type
1657 filter_parse_regex(char *buff, int len, char **search, int *not);
1658 extern void print_event_filter(struct trace_event_file *file,
1659 struct trace_seq *s);
1660 extern int apply_event_filter(struct trace_event_file *file,
1661 char *filter_string);
1662 extern int apply_subsystem_event_filter(struct trace_subsystem_dir *dir,
1663 char *filter_string);
1664 extern void print_subsystem_event_filter(struct event_subsystem *system,
1665 struct trace_seq *s);
1666 extern int filter_assign_type(const char *type);
1667 extern int create_event_filter(struct trace_array *tr,
1668 struct trace_event_call *call,
1669 char *filter_str, bool set_str,
1670 struct event_filter **filterp);
1671 extern void free_event_filter(struct event_filter *filter);
1672
1673 struct ftrace_event_field *
1674 trace_find_event_field(struct trace_event_call *call, char *name);
1675
1676 extern void trace_event_enable_cmd_record(bool enable);
1677 extern void trace_event_enable_tgid_record(bool enable);
1678
1679 extern int event_trace_init(void);
1680 extern int event_trace_add_tracer(struct dentry *parent, struct trace_array *tr);
1681 extern int event_trace_del_tracer(struct trace_array *tr);
1682 extern void __trace_early_add_events(struct trace_array *tr);
1683
1684 extern struct trace_event_file *__find_event_file(struct trace_array *tr,
1685 const char *system,
1686 const char *event);
1687 extern struct trace_event_file *find_event_file(struct trace_array *tr,
1688 const char *system,
1689 const char *event);
1690
event_file_data(struct file * filp)1691 static inline void *event_file_data(struct file *filp)
1692 {
1693 return READ_ONCE(file_inode(filp)->i_private);
1694 }
1695
1696 extern struct mutex event_mutex;
1697 extern struct list_head ftrace_events;
1698
1699 extern const struct file_operations event_trigger_fops;
1700 extern const struct file_operations event_hist_fops;
1701 extern const struct file_operations event_hist_debug_fops;
1702 extern const struct file_operations event_inject_fops;
1703
1704 #ifdef CONFIG_HIST_TRIGGERS
1705 extern int register_trigger_hist_cmd(void);
1706 extern int register_trigger_hist_enable_disable_cmds(void);
1707 #else
register_trigger_hist_cmd(void)1708 static inline int register_trigger_hist_cmd(void) { return 0; }
register_trigger_hist_enable_disable_cmds(void)1709 static inline int register_trigger_hist_enable_disable_cmds(void) { return 0; }
1710 #endif
1711
1712 extern int register_trigger_cmds(void);
1713 extern void clear_event_triggers(struct trace_array *tr);
1714
1715 struct event_trigger_data {
1716 unsigned long count;
1717 int ref;
1718 struct event_trigger_ops *ops;
1719 struct event_command *cmd_ops;
1720 struct event_filter __rcu *filter;
1721 char *filter_str;
1722 void *private_data;
1723 bool paused;
1724 bool paused_tmp;
1725 struct list_head list;
1726 char *name;
1727 struct list_head named_list;
1728 struct event_trigger_data *named_data;
1729 };
1730
1731 /* Avoid typos */
1732 #define ENABLE_EVENT_STR "enable_event"
1733 #define DISABLE_EVENT_STR "disable_event"
1734 #define ENABLE_HIST_STR "enable_hist"
1735 #define DISABLE_HIST_STR "disable_hist"
1736
1737 struct enable_trigger_data {
1738 struct trace_event_file *file;
1739 bool enable;
1740 bool hist;
1741 };
1742
1743 extern int event_enable_trigger_print(struct seq_file *m,
1744 struct event_trigger_ops *ops,
1745 struct event_trigger_data *data);
1746 extern void event_enable_trigger_free(struct event_trigger_ops *ops,
1747 struct event_trigger_data *data);
1748 extern int event_enable_trigger_func(struct event_command *cmd_ops,
1749 struct trace_event_file *file,
1750 char *glob, char *cmd, char *param);
1751 extern int event_enable_register_trigger(char *glob,
1752 struct event_trigger_ops *ops,
1753 struct event_trigger_data *data,
1754 struct trace_event_file *file);
1755 extern void event_enable_unregister_trigger(char *glob,
1756 struct event_trigger_ops *ops,
1757 struct event_trigger_data *test,
1758 struct trace_event_file *file);
1759 extern void trigger_data_free(struct event_trigger_data *data);
1760 extern int event_trigger_init(struct event_trigger_ops *ops,
1761 struct event_trigger_data *data);
1762 extern int trace_event_trigger_enable_disable(struct trace_event_file *file,
1763 int trigger_enable);
1764 extern void update_cond_flag(struct trace_event_file *file);
1765 extern int set_trigger_filter(char *filter_str,
1766 struct event_trigger_data *trigger_data,
1767 struct trace_event_file *file);
1768 extern struct event_trigger_data *find_named_trigger(const char *name);
1769 extern bool is_named_trigger(struct event_trigger_data *test);
1770 extern int save_named_trigger(const char *name,
1771 struct event_trigger_data *data);
1772 extern void del_named_trigger(struct event_trigger_data *data);
1773 extern void pause_named_trigger(struct event_trigger_data *data);
1774 extern void unpause_named_trigger(struct event_trigger_data *data);
1775 extern void set_named_trigger_data(struct event_trigger_data *data,
1776 struct event_trigger_data *named_data);
1777 extern struct event_trigger_data *
1778 get_named_trigger_data(struct event_trigger_data *data);
1779 extern int register_event_command(struct event_command *cmd);
1780 extern int unregister_event_command(struct event_command *cmd);
1781 extern int register_trigger_hist_enable_disable_cmds(void);
1782
1783 /**
1784 * struct event_trigger_ops - callbacks for trace event triggers
1785 *
1786 * The methods in this structure provide per-event trigger hooks for
1787 * various trigger operations.
1788 *
1789 * All the methods below, except for @init() and @free(), must be
1790 * implemented.
1791 *
1792 * @func: The trigger 'probe' function called when the triggering
1793 * event occurs. The data passed into this callback is the data
1794 * that was supplied to the event_command @reg() function that
1795 * registered the trigger (see struct event_command) along with
1796 * the trace record, rec.
1797 *
1798 * @init: An optional initialization function called for the trigger
1799 * when the trigger is registered (via the event_command reg()
1800 * function). This can be used to perform per-trigger
1801 * initialization such as incrementing a per-trigger reference
1802 * count, for instance. This is usually implemented by the
1803 * generic utility function @event_trigger_init() (see
1804 * trace_event_triggers.c).
1805 *
1806 * @free: An optional de-initialization function called for the
1807 * trigger when the trigger is unregistered (via the
1808 * event_command @reg() function). This can be used to perform
1809 * per-trigger de-initialization such as decrementing a
1810 * per-trigger reference count and freeing corresponding trigger
1811 * data, for instance. This is usually implemented by the
1812 * generic utility function @event_trigger_free() (see
1813 * trace_event_triggers.c).
1814 *
1815 * @print: The callback function invoked to have the trigger print
1816 * itself. This is usually implemented by a wrapper function
1817 * that calls the generic utility function @event_trigger_print()
1818 * (see trace_event_triggers.c).
1819 */
1820 struct event_trigger_ops {
1821 void (*func)(struct event_trigger_data *data,
1822 void *rec,
1823 struct ring_buffer_event *rbe);
1824 int (*init)(struct event_trigger_ops *ops,
1825 struct event_trigger_data *data);
1826 void (*free)(struct event_trigger_ops *ops,
1827 struct event_trigger_data *data);
1828 int (*print)(struct seq_file *m,
1829 struct event_trigger_ops *ops,
1830 struct event_trigger_data *data);
1831 };
1832
1833 /**
1834 * struct event_command - callbacks and data members for event commands
1835 *
1836 * Event commands are invoked by users by writing the command name
1837 * into the 'trigger' file associated with a trace event. The
1838 * parameters associated with a specific invocation of an event
1839 * command are used to create an event trigger instance, which is
1840 * added to the list of trigger instances associated with that trace
1841 * event. When the event is hit, the set of triggers associated with
1842 * that event is invoked.
1843 *
1844 * The data members in this structure provide per-event command data
1845 * for various event commands.
1846 *
1847 * All the data members below, except for @post_trigger, must be set
1848 * for each event command.
1849 *
1850 * @name: The unique name that identifies the event command. This is
1851 * the name used when setting triggers via trigger files.
1852 *
1853 * @trigger_type: A unique id that identifies the event command
1854 * 'type'. This value has two purposes, the first to ensure that
1855 * only one trigger of the same type can be set at a given time
1856 * for a particular event e.g. it doesn't make sense to have both
1857 * a traceon and traceoff trigger attached to a single event at
1858 * the same time, so traceon and traceoff have the same type
1859 * though they have different names. The @trigger_type value is
1860 * also used as a bit value for deferring the actual trigger
1861 * action until after the current event is finished. Some
1862 * commands need to do this if they themselves log to the trace
1863 * buffer (see the @post_trigger() member below). @trigger_type
1864 * values are defined by adding new values to the trigger_type
1865 * enum in include/linux/trace_events.h.
1866 *
1867 * @flags: See the enum event_command_flags below.
1868 *
1869 * All the methods below, except for @set_filter() and @unreg_all(),
1870 * must be implemented.
1871 *
1872 * @func: The callback function responsible for parsing and
1873 * registering the trigger written to the 'trigger' file by the
1874 * user. It allocates the trigger instance and registers it with
1875 * the appropriate trace event. It makes use of the other
1876 * event_command callback functions to orchestrate this, and is
1877 * usually implemented by the generic utility function
1878 * @event_trigger_callback() (see trace_event_triggers.c).
1879 *
1880 * @reg: Adds the trigger to the list of triggers associated with the
1881 * event, and enables the event trigger itself, after
1882 * initializing it (via the event_trigger_ops @init() function).
1883 * This is also where commands can use the @trigger_type value to
1884 * make the decision as to whether or not multiple instances of
1885 * the trigger should be allowed. This is usually implemented by
1886 * the generic utility function @register_trigger() (see
1887 * trace_event_triggers.c).
1888 *
1889 * @unreg: Removes the trigger from the list of triggers associated
1890 * with the event, and disables the event trigger itself, after
1891 * initializing it (via the event_trigger_ops @free() function).
1892 * This is usually implemented by the generic utility function
1893 * @unregister_trigger() (see trace_event_triggers.c).
1894 *
1895 * @unreg_all: An optional function called to remove all the triggers
1896 * from the list of triggers associated with the event. Called
1897 * when a trigger file is opened in truncate mode.
1898 *
1899 * @set_filter: An optional function called to parse and set a filter
1900 * for the trigger. If no @set_filter() method is set for the
1901 * event command, filters set by the user for the command will be
1902 * ignored. This is usually implemented by the generic utility
1903 * function @set_trigger_filter() (see trace_event_triggers.c).
1904 *
1905 * @get_trigger_ops: The callback function invoked to retrieve the
1906 * event_trigger_ops implementation associated with the command.
1907 */
1908 struct event_command {
1909 struct list_head list;
1910 char *name;
1911 enum event_trigger_type trigger_type;
1912 int flags;
1913 int (*func)(struct event_command *cmd_ops,
1914 struct trace_event_file *file,
1915 char *glob, char *cmd, char *params);
1916 int (*reg)(char *glob,
1917 struct event_trigger_ops *ops,
1918 struct event_trigger_data *data,
1919 struct trace_event_file *file);
1920 void (*unreg)(char *glob,
1921 struct event_trigger_ops *ops,
1922 struct event_trigger_data *data,
1923 struct trace_event_file *file);
1924 void (*unreg_all)(struct trace_event_file *file);
1925 int (*set_filter)(char *filter_str,
1926 struct event_trigger_data *data,
1927 struct trace_event_file *file);
1928 struct event_trigger_ops *(*get_trigger_ops)(char *cmd, char *param);
1929 };
1930
1931 /**
1932 * enum event_command_flags - flags for struct event_command
1933 *
1934 * @POST_TRIGGER: A flag that says whether or not this command needs
1935 * to have its action delayed until after the current event has
1936 * been closed. Some triggers need to avoid being invoked while
1937 * an event is currently in the process of being logged, since
1938 * the trigger may itself log data into the trace buffer. Thus
1939 * we make sure the current event is committed before invoking
1940 * those triggers. To do that, the trigger invocation is split
1941 * in two - the first part checks the filter using the current
1942 * trace record; if a command has the @post_trigger flag set, it
1943 * sets a bit for itself in the return value, otherwise it
1944 * directly invokes the trigger. Once all commands have been
1945 * either invoked or set their return flag, the current record is
1946 * either committed or discarded. At that point, if any commands
1947 * have deferred their triggers, those commands are finally
1948 * invoked following the close of the current event. In other
1949 * words, if the event_trigger_ops @func() probe implementation
1950 * itself logs to the trace buffer, this flag should be set,
1951 * otherwise it can be left unspecified.
1952 *
1953 * @NEEDS_REC: A flag that says whether or not this command needs
1954 * access to the trace record in order to perform its function,
1955 * regardless of whether or not it has a filter associated with
1956 * it (filters make a trigger require access to the trace record
1957 * but are not always present).
1958 */
1959 enum event_command_flags {
1960 EVENT_CMD_FL_POST_TRIGGER = 1,
1961 EVENT_CMD_FL_NEEDS_REC = 2,
1962 };
1963
event_command_post_trigger(struct event_command * cmd_ops)1964 static inline bool event_command_post_trigger(struct event_command *cmd_ops)
1965 {
1966 return cmd_ops->flags & EVENT_CMD_FL_POST_TRIGGER;
1967 }
1968
event_command_needs_rec(struct event_command * cmd_ops)1969 static inline bool event_command_needs_rec(struct event_command *cmd_ops)
1970 {
1971 return cmd_ops->flags & EVENT_CMD_FL_NEEDS_REC;
1972 }
1973
1974 extern int trace_event_enable_disable(struct trace_event_file *file,
1975 int enable, int soft_disable);
1976 extern int tracing_alloc_snapshot(void);
1977 extern void tracing_snapshot_cond(struct trace_array *tr, void *cond_data);
1978 extern int tracing_snapshot_cond_enable(struct trace_array *tr, void *cond_data, cond_update_fn_t update);
1979
1980 extern int tracing_snapshot_cond_disable(struct trace_array *tr);
1981 extern void *tracing_cond_snapshot_data(struct trace_array *tr);
1982
1983 extern const char *__start___trace_bprintk_fmt[];
1984 extern const char *__stop___trace_bprintk_fmt[];
1985
1986 extern const char *__start___tracepoint_str[];
1987 extern const char *__stop___tracepoint_str[];
1988
1989 void trace_printk_control(bool enabled);
1990 void trace_printk_start_comm(void);
1991 int trace_keep_overwrite(struct tracer *tracer, u32 mask, int set);
1992 int set_tracer_flag(struct trace_array *tr, unsigned int mask, int enabled);
1993
1994 /* Used from boot time tracer */
1995 extern int trace_set_options(struct trace_array *tr, char *option);
1996 extern int tracing_set_tracer(struct trace_array *tr, const char *buf);
1997 extern ssize_t tracing_resize_ring_buffer(struct trace_array *tr,
1998 unsigned long size, int cpu_id);
1999 extern int tracing_set_cpumask(struct trace_array *tr,
2000 cpumask_var_t tracing_cpumask_new);
2001
2002
2003 #define MAX_EVENT_NAME_LEN 64
2004
2005 extern int trace_run_command(const char *buf, int (*createfn)(int, char**));
2006 extern ssize_t trace_parse_run_command(struct file *file,
2007 const char __user *buffer, size_t count, loff_t *ppos,
2008 int (*createfn)(int, char**));
2009
2010 extern unsigned int err_pos(char *cmd, const char *str);
2011 extern void tracing_log_err(struct trace_array *tr,
2012 const char *loc, const char *cmd,
2013 const char **errs, u8 type, u8 pos);
2014
2015 /*
2016 * Normal trace_printk() and friends allocates special buffers
2017 * to do the manipulation, as well as saves the print formats
2018 * into sections to display. But the trace infrastructure wants
2019 * to use these without the added overhead at the price of being
2020 * a bit slower (used mainly for warnings, where we don't care
2021 * about performance). The internal_trace_puts() is for such
2022 * a purpose.
2023 */
2024 #define internal_trace_puts(str) __trace_puts(_THIS_IP_, str, strlen(str))
2025
2026 #undef FTRACE_ENTRY
2027 #define FTRACE_ENTRY(call, struct_name, id, tstruct, print) \
2028 extern struct trace_event_call \
2029 __aligned(4) event_##call;
2030 #undef FTRACE_ENTRY_DUP
2031 #define FTRACE_ENTRY_DUP(call, struct_name, id, tstruct, print) \
2032 FTRACE_ENTRY(call, struct_name, id, PARAMS(tstruct), PARAMS(print))
2033 #undef FTRACE_ENTRY_PACKED
2034 #define FTRACE_ENTRY_PACKED(call, struct_name, id, tstruct, print) \
2035 FTRACE_ENTRY(call, struct_name, id, PARAMS(tstruct), PARAMS(print))
2036
2037 #include "trace_entries.h"
2038
2039 #if defined(CONFIG_PERF_EVENTS) && defined(CONFIG_FUNCTION_TRACER)
2040 int perf_ftrace_event_register(struct trace_event_call *call,
2041 enum trace_reg type, void *data);
2042 #else
2043 #define perf_ftrace_event_register NULL
2044 #endif
2045
2046 #ifdef CONFIG_FTRACE_SYSCALLS
2047 void init_ftrace_syscalls(void);
2048 const char *get_syscall_name(int syscall);
2049 #else
init_ftrace_syscalls(void)2050 static inline void init_ftrace_syscalls(void) { }
get_syscall_name(int syscall)2051 static inline const char *get_syscall_name(int syscall)
2052 {
2053 return NULL;
2054 }
2055 #endif
2056
2057 #ifdef CONFIG_EVENT_TRACING
2058 void trace_event_init(void);
2059 void trace_event_eval_update(struct trace_eval_map **map, int len);
2060 /* Used from boot time tracer */
2061 extern int ftrace_set_clr_event(struct trace_array *tr, char *buf, int set);
2062 extern int trigger_process_regex(struct trace_event_file *file, char *buff);
2063 #else
trace_event_init(void)2064 static inline void __init trace_event_init(void) { }
trace_event_eval_update(struct trace_eval_map ** map,int len)2065 static inline void trace_event_eval_update(struct trace_eval_map **map, int len) { }
2066 #endif
2067
2068 #ifdef CONFIG_TRACER_SNAPSHOT
2069 void tracing_snapshot_instance(struct trace_array *tr);
2070 int tracing_alloc_snapshot_instance(struct trace_array *tr);
2071 #else
tracing_snapshot_instance(struct trace_array * tr)2072 static inline void tracing_snapshot_instance(struct trace_array *tr) { }
tracing_alloc_snapshot_instance(struct trace_array * tr)2073 static inline int tracing_alloc_snapshot_instance(struct trace_array *tr)
2074 {
2075 return 0;
2076 }
2077 #endif
2078
2079 #ifdef CONFIG_PREEMPT_TRACER
2080 void tracer_preempt_on(unsigned long a0, unsigned long a1);
2081 void tracer_preempt_off(unsigned long a0, unsigned long a1);
2082 #else
tracer_preempt_on(unsigned long a0,unsigned long a1)2083 static inline void tracer_preempt_on(unsigned long a0, unsigned long a1) { }
tracer_preempt_off(unsigned long a0,unsigned long a1)2084 static inline void tracer_preempt_off(unsigned long a0, unsigned long a1) { }
2085 #endif
2086 #ifdef CONFIG_IRQSOFF_TRACER
2087 void tracer_hardirqs_on(unsigned long a0, unsigned long a1);
2088 void tracer_hardirqs_off(unsigned long a0, unsigned long a1);
2089 #else
tracer_hardirqs_on(unsigned long a0,unsigned long a1)2090 static inline void tracer_hardirqs_on(unsigned long a0, unsigned long a1) { }
tracer_hardirqs_off(unsigned long a0,unsigned long a1)2091 static inline void tracer_hardirqs_off(unsigned long a0, unsigned long a1) { }
2092 #endif
2093
2094 extern struct trace_iterator *tracepoint_print_iter;
2095
2096 /*
2097 * Reset the state of the trace_iterator so that it can read consumed data.
2098 * Normally, the trace_iterator is used for reading the data when it is not
2099 * consumed, and must retain state.
2100 */
trace_iterator_reset(struct trace_iterator * iter)2101 static __always_inline void trace_iterator_reset(struct trace_iterator *iter)
2102 {
2103 const size_t offset = offsetof(struct trace_iterator, seq);
2104
2105 /*
2106 * Keep gcc from complaining about overwriting more than just one
2107 * member in the structure.
2108 */
2109 memset((char *)iter + offset, 0, sizeof(struct trace_iterator) - offset);
2110
2111 iter->pos = -1;
2112 }
2113
2114 /* Check the name is good for event/group/fields */
is_good_name(const char * name)2115 static inline bool is_good_name(const char *name)
2116 {
2117 if (!isalpha(*name) && *name != '_')
2118 return false;
2119 while (*++name != '\0') {
2120 if (!isalpha(*name) && !isdigit(*name) && *name != '_')
2121 return false;
2122 }
2123 return true;
2124 }
2125
2126 #endif /* _LINUX_KERNEL_TRACE_H */
2127