1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * ring buffer based function tracer
4 *
5 * Copyright (C) 2007-2012 Steven Rostedt <srostedt@redhat.com>
6 * Copyright (C) 2008 Ingo Molnar <mingo@redhat.com>
7 *
8 * Originally taken from the RT patch by:
9 * Arnaldo Carvalho de Melo <acme@redhat.com>
10 *
11 * Based on code from the latency_tracer, that is:
12 * Copyright (C) 2004-2006 Ingo Molnar
13 * Copyright (C) 2004 Nadia Yvette Chambers
14 */
15 #include <linux/ring_buffer.h>
16 #include <linux/utsname.h>
17 #include <linux/stacktrace.h>
18 #include <linux/writeback.h>
19 #include <linux/kallsyms.h>
20 #include <linux/security.h>
21 #include <linux/seq_file.h>
22 #include <linux/irqflags.h>
23 #include <linux/syscalls.h>
24 #include <linux/debugfs.h>
25 #include <linux/tracefs.h>
26 #include <linux/pagemap.h>
27 #include <linux/hardirq.h>
28 #include <linux/linkage.h>
29 #include <linux/uaccess.h>
30 #include <linux/cleanup.h>
31 #include <linux/vmalloc.h>
32 #include <linux/ftrace.h>
33 #include <linux/module.h>
34 #include <linux/percpu.h>
35 #include <linux/splice.h>
36 #include <linux/kdebug.h>
37 #include <linux/string.h>
38 #include <linux/mount.h>
39 #include <linux/rwsem.h>
40 #include <linux/slab.h>
41 #include <linux/ctype.h>
42 #include <linux/init.h>
43 #include <linux/panic_notifier.h>
44 #include <linux/poll.h>
45 #include <linux/nmi.h>
46 #include <linux/fs.h>
47 #include <linux/trace.h>
48 #include <linux/sched/clock.h>
49 #include <linux/sched/rt.h>
50 #include <linux/fsnotify.h>
51 #include <linux/irq_work.h>
52 #include <linux/workqueue.h>
53 #include <linux/sort.h>
54 #include <linux/io.h> /* vmap_page_range() */
55 #include <linux/fs_context.h>
56
57 #include <asm/setup.h> /* COMMAND_LINE_SIZE */
58
59 #include "trace.h"
60 #include "trace_output.h"
61
62 #ifdef CONFIG_FTRACE_STARTUP_TEST
63 /*
64 * We need to change this state when a selftest is running.
65 * A selftest will lurk into the ring-buffer to count the
66 * entries inserted during the selftest although some concurrent
67 * insertions into the ring-buffer such as trace_printk could occurred
68 * at the same time, giving false positive or negative results.
69 */
70 bool __read_mostly tracing_selftest_running;
71
72 /*
73 * If boot-time tracing including tracers/events via kernel cmdline
74 * is running, we do not want to run SELFTEST.
75 */
76 bool __read_mostly tracing_selftest_disabled;
77
disable_tracing_selftest(const char * reason)78 void __init disable_tracing_selftest(const char *reason)
79 {
80 if (!tracing_selftest_disabled) {
81 tracing_selftest_disabled = true;
82 pr_info("Ftrace startup test is disabled due to %s\n", reason);
83 }
84 }
85 #else
86 #define tracing_selftest_disabled 0
87 #endif
88
89 /* Pipe tracepoints to printk */
90 static struct trace_iterator *tracepoint_print_iter;
91 int tracepoint_printk;
92 static bool tracepoint_printk_stop_on_boot __initdata;
93 static bool traceoff_after_boot __initdata;
94 static DEFINE_STATIC_KEY_FALSE(tracepoint_printk_key);
95
96 /* Store tracers and their flags per instance */
97 struct tracers {
98 struct list_head list;
99 struct tracer *tracer;
100 struct tracer_flags *flags;
101 };
102
103 /*
104 * To prevent the comm cache from being overwritten when no
105 * tracing is active, only save the comm when a trace event
106 * occurred.
107 */
108 DEFINE_PER_CPU(bool, trace_taskinfo_save);
109
110 /*
111 * Kill all tracing for good (never come back).
112 * It is initialized to 1 but will turn to zero if the initialization
113 * of the tracer is successful. But that is the only place that sets
114 * this back to zero.
115 */
116 int tracing_disabled = 1;
117
118 cpumask_var_t __read_mostly tracing_buffer_mask;
119
120 #define MAX_TRACER_SIZE 100
121 /*
122 * ftrace_dump_on_oops - variable to dump ftrace buffer on oops
123 *
124 * If there is an oops (or kernel panic) and the ftrace_dump_on_oops
125 * is set, then ftrace_dump is called. This will output the contents
126 * of the ftrace buffers to the console. This is very useful for
127 * capturing traces that lead to crashes and outputting it to a
128 * serial console.
129 *
130 * It is default off, but you can enable it with either specifying
131 * "ftrace_dump_on_oops" in the kernel command line, or setting
132 * /proc/sys/kernel/ftrace_dump_on_oops
133 * Set 1 if you want to dump buffers of all CPUs
134 * Set 2 if you want to dump the buffer of the CPU that triggered oops
135 * Set instance name if you want to dump the specific trace instance
136 * Multiple instance dump is also supported, and instances are separated
137 * by commas.
138 */
139 /* Set to string format zero to disable by default */
140 static char ftrace_dump_on_oops[MAX_TRACER_SIZE] = "0";
141
142 /* When set, tracing will stop when a WARN*() is hit */
143 static int __disable_trace_on_warning;
144
145 int tracepoint_printk_sysctl(const struct ctl_table *table, int write,
146 void *buffer, size_t *lenp, loff_t *ppos);
147 static const struct ctl_table trace_sysctl_table[] = {
148 {
149 .procname = "ftrace_dump_on_oops",
150 .data = &ftrace_dump_on_oops,
151 .maxlen = MAX_TRACER_SIZE,
152 .mode = 0644,
153 .proc_handler = proc_dostring,
154 },
155 {
156 .procname = "traceoff_on_warning",
157 .data = &__disable_trace_on_warning,
158 .maxlen = sizeof(__disable_trace_on_warning),
159 .mode = 0644,
160 .proc_handler = proc_dointvec,
161 },
162 {
163 .procname = "tracepoint_printk",
164 .data = &tracepoint_printk,
165 .maxlen = sizeof(tracepoint_printk),
166 .mode = 0644,
167 .proc_handler = tracepoint_printk_sysctl,
168 },
169 };
170
init_trace_sysctls(void)171 static int __init init_trace_sysctls(void)
172 {
173 register_sysctl_init("kernel", trace_sysctl_table);
174 return 0;
175 }
176 subsys_initcall(init_trace_sysctls);
177
178 #ifdef CONFIG_TRACE_EVAL_MAP_FILE
179 /* Map of enums to their values, for "eval_map" file */
180 struct trace_eval_map_head {
181 struct module *mod;
182 unsigned long length;
183 };
184
185 union trace_eval_map_item;
186
187 struct trace_eval_map_tail {
188 /*
189 * "end" is first and points to NULL as it must be different
190 * than "mod" or "eval_string"
191 */
192 union trace_eval_map_item *next;
193 const char *end; /* points to NULL */
194 };
195
196 static DEFINE_MUTEX(trace_eval_mutex);
197
198 /*
199 * The trace_eval_maps are saved in an array with two extra elements,
200 * one at the beginning, and one at the end. The beginning item contains
201 * the count of the saved maps (head.length), and the module they
202 * belong to if not built in (head.mod). The ending item contains a
203 * pointer to the next array of saved eval_map items.
204 */
205 union trace_eval_map_item {
206 struct trace_eval_map map;
207 struct trace_eval_map_head head;
208 struct trace_eval_map_tail tail;
209 };
210
211 static union trace_eval_map_item *trace_eval_maps;
212 #endif /* CONFIG_TRACE_EVAL_MAP_FILE */
213
214 int tracing_set_tracer(struct trace_array *tr, const char *buf);
215 static void ftrace_trace_userstack(struct trace_array *tr,
216 struct trace_buffer *buffer,
217 unsigned int trace_ctx);
218
219 static char bootup_tracer_buf[MAX_TRACER_SIZE] __initdata;
220 static char *default_bootup_tracer;
221
222 static bool allocate_snapshot;
223 static bool snapshot_at_boot;
224
225 static char boot_instance_info[COMMAND_LINE_SIZE] __initdata;
226 static int boot_instance_index;
227
228 static char boot_snapshot_info[COMMAND_LINE_SIZE] __initdata;
229 static int boot_snapshot_index;
230
set_cmdline_ftrace(char * str)231 static int __init set_cmdline_ftrace(char *str)
232 {
233 strscpy(bootup_tracer_buf, str, MAX_TRACER_SIZE);
234 default_bootup_tracer = bootup_tracer_buf;
235 /* We are using ftrace early, expand it */
236 trace_set_ring_buffer_expanded(NULL);
237 return 1;
238 }
239 __setup("ftrace=", set_cmdline_ftrace);
240
ftrace_dump_on_oops_enabled(void)241 int ftrace_dump_on_oops_enabled(void)
242 {
243 if (!strcmp("0", ftrace_dump_on_oops))
244 return 0;
245 else
246 return 1;
247 }
248
set_ftrace_dump_on_oops(char * str)249 static int __init set_ftrace_dump_on_oops(char *str)
250 {
251 if (!*str) {
252 strscpy(ftrace_dump_on_oops, "1", MAX_TRACER_SIZE);
253 return 1;
254 }
255
256 if (*str == ',') {
257 strscpy(ftrace_dump_on_oops, "1", MAX_TRACER_SIZE);
258 strscpy(ftrace_dump_on_oops + 1, str, MAX_TRACER_SIZE - 1);
259 return 1;
260 }
261
262 if (*str++ == '=') {
263 strscpy(ftrace_dump_on_oops, str, MAX_TRACER_SIZE);
264 return 1;
265 }
266
267 return 0;
268 }
269 __setup("ftrace_dump_on_oops", set_ftrace_dump_on_oops);
270
stop_trace_on_warning(char * str)271 static int __init stop_trace_on_warning(char *str)
272 {
273 if ((strcmp(str, "=0") != 0 && strcmp(str, "=off") != 0))
274 __disable_trace_on_warning = 1;
275 return 1;
276 }
277 __setup("traceoff_on_warning", stop_trace_on_warning);
278
boot_alloc_snapshot(char * str)279 static int __init boot_alloc_snapshot(char *str)
280 {
281 char *slot = boot_snapshot_info + boot_snapshot_index;
282 int left = sizeof(boot_snapshot_info) - boot_snapshot_index;
283 int ret;
284
285 if (str[0] == '=') {
286 str++;
287 if (strlen(str) >= left)
288 return -1;
289
290 ret = snprintf(slot, left, "%s\t", str);
291 boot_snapshot_index += ret;
292 } else {
293 allocate_snapshot = true;
294 /* We also need the main ring buffer expanded */
295 trace_set_ring_buffer_expanded(NULL);
296 }
297 return 1;
298 }
299 __setup("alloc_snapshot", boot_alloc_snapshot);
300
301
boot_snapshot(char * str)302 static int __init boot_snapshot(char *str)
303 {
304 snapshot_at_boot = true;
305 boot_alloc_snapshot(str);
306 return 1;
307 }
308 __setup("ftrace_boot_snapshot", boot_snapshot);
309
310
boot_instance(char * str)311 static int __init boot_instance(char *str)
312 {
313 char *slot = boot_instance_info + boot_instance_index;
314 int left = sizeof(boot_instance_info) - boot_instance_index;
315 int ret;
316
317 if (strlen(str) >= left)
318 return -1;
319
320 ret = snprintf(slot, left, "%s\t", str);
321 boot_instance_index += ret;
322
323 return 1;
324 }
325 __setup("trace_instance=", boot_instance);
326
327
328 static char trace_boot_options_buf[MAX_TRACER_SIZE] __initdata;
329
set_trace_boot_options(char * str)330 static int __init set_trace_boot_options(char *str)
331 {
332 strscpy(trace_boot_options_buf, str, MAX_TRACER_SIZE);
333 return 1;
334 }
335 __setup("trace_options=", set_trace_boot_options);
336
337 static char trace_boot_clock_buf[MAX_TRACER_SIZE] __initdata;
338 static char *trace_boot_clock __initdata;
339
set_trace_boot_clock(char * str)340 static int __init set_trace_boot_clock(char *str)
341 {
342 strscpy(trace_boot_clock_buf, str, MAX_TRACER_SIZE);
343 trace_boot_clock = trace_boot_clock_buf;
344 return 1;
345 }
346 __setup("trace_clock=", set_trace_boot_clock);
347
set_tracepoint_printk(char * str)348 static int __init set_tracepoint_printk(char *str)
349 {
350 /* Ignore the "tp_printk_stop_on_boot" param */
351 if (*str == '_')
352 return 0;
353
354 if ((strcmp(str, "=0") != 0 && strcmp(str, "=off") != 0))
355 tracepoint_printk = 1;
356 return 1;
357 }
358 __setup("tp_printk", set_tracepoint_printk);
359
set_tracepoint_printk_stop(char * str)360 static int __init set_tracepoint_printk_stop(char *str)
361 {
362 tracepoint_printk_stop_on_boot = true;
363 return 1;
364 }
365 __setup("tp_printk_stop_on_boot", set_tracepoint_printk_stop);
366
set_traceoff_after_boot(char * str)367 static int __init set_traceoff_after_boot(char *str)
368 {
369 traceoff_after_boot = true;
370 return 1;
371 }
372 __setup("traceoff_after_boot", set_traceoff_after_boot);
373
ns2usecs(u64 nsec)374 unsigned long long ns2usecs(u64 nsec)
375 {
376 nsec += 500;
377 do_div(nsec, 1000);
378 return nsec;
379 }
380
381 static void
trace_process_export(struct trace_export * export,struct ring_buffer_event * event,int flag)382 trace_process_export(struct trace_export *export,
383 struct ring_buffer_event *event, int flag)
384 {
385 struct trace_entry *entry;
386 unsigned int size = 0;
387
388 if (export->flags & flag) {
389 entry = ring_buffer_event_data(event);
390 size = ring_buffer_event_length(event);
391 export->write(export, entry, size);
392 }
393 }
394
395 static DEFINE_MUTEX(ftrace_export_lock);
396
397 static struct trace_export __rcu *ftrace_exports_list __read_mostly;
398
399 static DEFINE_STATIC_KEY_FALSE(trace_function_exports_enabled);
400 static DEFINE_STATIC_KEY_FALSE(trace_event_exports_enabled);
401 static DEFINE_STATIC_KEY_FALSE(trace_marker_exports_enabled);
402
ftrace_exports_enable(struct trace_export * export)403 static inline void ftrace_exports_enable(struct trace_export *export)
404 {
405 if (export->flags & TRACE_EXPORT_FUNCTION)
406 static_branch_inc(&trace_function_exports_enabled);
407
408 if (export->flags & TRACE_EXPORT_EVENT)
409 static_branch_inc(&trace_event_exports_enabled);
410
411 if (export->flags & TRACE_EXPORT_MARKER)
412 static_branch_inc(&trace_marker_exports_enabled);
413 }
414
ftrace_exports_disable(struct trace_export * export)415 static inline void ftrace_exports_disable(struct trace_export *export)
416 {
417 if (export->flags & TRACE_EXPORT_FUNCTION)
418 static_branch_dec(&trace_function_exports_enabled);
419
420 if (export->flags & TRACE_EXPORT_EVENT)
421 static_branch_dec(&trace_event_exports_enabled);
422
423 if (export->flags & TRACE_EXPORT_MARKER)
424 static_branch_dec(&trace_marker_exports_enabled);
425 }
426
ftrace_exports(struct ring_buffer_event * event,int flag)427 static void ftrace_exports(struct ring_buffer_event *event, int flag)
428 {
429 struct trace_export *export;
430
431 guard(preempt_notrace)();
432
433 export = rcu_dereference_raw_check(ftrace_exports_list);
434 while (export) {
435 trace_process_export(export, event, flag);
436 export = rcu_dereference_raw_check(export->next);
437 }
438 }
439
440 static inline void
add_trace_export(struct trace_export ** list,struct trace_export * export)441 add_trace_export(struct trace_export **list, struct trace_export *export)
442 {
443 rcu_assign_pointer(export->next, *list);
444 /*
445 * We are entering export into the list but another
446 * CPU might be walking that list. We need to make sure
447 * the export->next pointer is valid before another CPU sees
448 * the export pointer included into the list.
449 */
450 rcu_assign_pointer(*list, export);
451 }
452
453 static inline int
rm_trace_export(struct trace_export ** list,struct trace_export * export)454 rm_trace_export(struct trace_export **list, struct trace_export *export)
455 {
456 struct trace_export **p;
457
458 for (p = list; *p != NULL; p = &(*p)->next)
459 if (*p == export)
460 break;
461
462 if (*p != export)
463 return -1;
464
465 rcu_assign_pointer(*p, (*p)->next);
466
467 return 0;
468 }
469
470 static inline void
add_ftrace_export(struct trace_export ** list,struct trace_export * export)471 add_ftrace_export(struct trace_export **list, struct trace_export *export)
472 {
473 ftrace_exports_enable(export);
474
475 add_trace_export(list, export);
476 }
477
478 static inline int
rm_ftrace_export(struct trace_export ** list,struct trace_export * export)479 rm_ftrace_export(struct trace_export **list, struct trace_export *export)
480 {
481 int ret;
482
483 ret = rm_trace_export(list, export);
484 ftrace_exports_disable(export);
485
486 return ret;
487 }
488
register_ftrace_export(struct trace_export * export)489 int register_ftrace_export(struct trace_export *export)
490 {
491 if (WARN_ON_ONCE(!export->write))
492 return -1;
493
494 guard(mutex)(&ftrace_export_lock);
495
496 add_ftrace_export(&ftrace_exports_list, export);
497
498 return 0;
499 }
500 EXPORT_SYMBOL_GPL(register_ftrace_export);
501
unregister_ftrace_export(struct trace_export * export)502 int unregister_ftrace_export(struct trace_export *export)
503 {
504 guard(mutex)(&ftrace_export_lock);
505 return rm_ftrace_export(&ftrace_exports_list, export);
506 }
507 EXPORT_SYMBOL_GPL(unregister_ftrace_export);
508
509 /* trace_flags holds trace_options default values */
510 #define TRACE_DEFAULT_FLAGS \
511 (FUNCTION_DEFAULT_FLAGS | FPROFILE_DEFAULT_FLAGS | \
512 TRACE_ITER(PRINT_PARENT) | TRACE_ITER(PRINTK) | \
513 TRACE_ITER(ANNOTATE) | TRACE_ITER(CONTEXT_INFO) | \
514 TRACE_ITER(RECORD_CMD) | TRACE_ITER(OVERWRITE) | \
515 TRACE_ITER(IRQ_INFO) | TRACE_ITER(MARKERS) | \
516 TRACE_ITER(HASH_PTR) | TRACE_ITER(TRACE_PRINTK) | \
517 TRACE_ITER(COPY_MARKER))
518
519 /* trace_options that are only supported by global_trace */
520 #define TOP_LEVEL_TRACE_FLAGS (TRACE_ITER(PRINTK) | \
521 TRACE_ITER(PRINTK_MSGONLY) | TRACE_ITER(RECORD_CMD) | \
522 TRACE_ITER(PROF_TEXT_OFFSET) | FPROFILE_DEFAULT_FLAGS)
523
524 /* trace_flags that are default zero for instances */
525 #define ZEROED_TRACE_FLAGS \
526 (TRACE_ITER(EVENT_FORK) | TRACE_ITER(FUNC_FORK) | TRACE_ITER(TRACE_PRINTK) | \
527 TRACE_ITER(COPY_MARKER))
528
529 /*
530 * The global_trace is the descriptor that holds the top-level tracing
531 * buffers for the live tracing.
532 */
533 static struct trace_array global_trace = {
534 .trace_flags = TRACE_DEFAULT_FLAGS,
535 };
536
537 struct trace_array *printk_trace = &global_trace;
538
539 /* List of trace_arrays interested in the top level trace_marker */
540 static LIST_HEAD(marker_copies);
541
update_printk_trace(struct trace_array * tr)542 static void update_printk_trace(struct trace_array *tr)
543 {
544 if (printk_trace == tr)
545 return;
546
547 printk_trace->trace_flags &= ~TRACE_ITER(TRACE_PRINTK);
548 printk_trace = tr;
549 tr->trace_flags |= TRACE_ITER(TRACE_PRINTK);
550 }
551
552 /* Returns true if the status of tr changed */
update_marker_trace(struct trace_array * tr,int enabled)553 static bool update_marker_trace(struct trace_array *tr, int enabled)
554 {
555 lockdep_assert_held(&event_mutex);
556
557 if (enabled) {
558 if (!list_empty(&tr->marker_list))
559 return false;
560
561 list_add_rcu(&tr->marker_list, &marker_copies);
562 tr->trace_flags |= TRACE_ITER(COPY_MARKER);
563 return true;
564 }
565
566 if (list_empty(&tr->marker_list))
567 return false;
568
569 list_del_init(&tr->marker_list);
570 tr->trace_flags &= ~TRACE_ITER(COPY_MARKER);
571 return true;
572 }
573
trace_set_ring_buffer_expanded(struct trace_array * tr)574 void trace_set_ring_buffer_expanded(struct trace_array *tr)
575 {
576 if (!tr)
577 tr = &global_trace;
578 tr->ring_buffer_expanded = true;
579 }
580
581 LIST_HEAD(ftrace_trace_arrays);
582
trace_array_get(struct trace_array * this_tr)583 int trace_array_get(struct trace_array *this_tr)
584 {
585 struct trace_array *tr;
586
587 guard(mutex)(&trace_types_lock);
588 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
589 if (tr == this_tr) {
590 tr->ref++;
591 return 0;
592 }
593 }
594
595 return -ENODEV;
596 }
597
__trace_array_put(struct trace_array * this_tr)598 static void __trace_array_put(struct trace_array *this_tr)
599 {
600 WARN_ON(!this_tr->ref);
601 this_tr->ref--;
602 }
603
604 /**
605 * trace_array_put - Decrement the reference counter for this trace array.
606 * @this_tr : pointer to the trace array
607 *
608 * NOTE: Use this when we no longer need the trace array returned by
609 * trace_array_get_by_name(). This ensures the trace array can be later
610 * destroyed.
611 *
612 */
trace_array_put(struct trace_array * this_tr)613 void trace_array_put(struct trace_array *this_tr)
614 {
615 if (!this_tr)
616 return;
617
618 guard(mutex)(&trace_types_lock);
619 __trace_array_put(this_tr);
620 }
621 EXPORT_SYMBOL_GPL(trace_array_put);
622
tracing_check_open_get_tr(struct trace_array * tr)623 int tracing_check_open_get_tr(struct trace_array *tr)
624 {
625 int ret;
626
627 ret = security_locked_down(LOCKDOWN_TRACEFS);
628 if (ret)
629 return ret;
630
631 if (tracing_disabled)
632 return -ENODEV;
633
634 if (tr && trace_array_get(tr) < 0)
635 return -ENODEV;
636
637 return 0;
638 }
639
buffer_ftrace_now(struct array_buffer * buf,int cpu)640 static u64 buffer_ftrace_now(struct array_buffer *buf, int cpu)
641 {
642 u64 ts;
643
644 /* Early boot up does not have a buffer yet */
645 if (!buf->buffer)
646 return trace_clock_local();
647
648 ts = ring_buffer_time_stamp(buf->buffer);
649 ring_buffer_normalize_time_stamp(buf->buffer, cpu, &ts);
650
651 return ts;
652 }
653
ftrace_now(int cpu)654 u64 ftrace_now(int cpu)
655 {
656 return buffer_ftrace_now(&global_trace.array_buffer, cpu);
657 }
658
659 /**
660 * tracing_is_enabled - Show if global_trace has been enabled
661 *
662 * Shows if the global trace has been enabled or not. It uses the
663 * mirror flag "buffer_disabled" to be used in fast paths such as for
664 * the irqsoff tracer. But it may be inaccurate due to races. If you
665 * need to know the accurate state, use tracing_is_on() which is a little
666 * slower, but accurate.
667 */
tracing_is_enabled(void)668 int tracing_is_enabled(void)
669 {
670 /*
671 * For quick access (irqsoff uses this in fast path), just
672 * return the mirror variable of the state of the ring buffer.
673 * It's a little racy, but we don't really care.
674 */
675 return !global_trace.buffer_disabled;
676 }
677
678 /*
679 * trace_buf_size is the size in bytes that is allocated
680 * for a buffer. Note, the number of bytes is always rounded
681 * to page size.
682 *
683 * This number is purposely set to a low number of 16384.
684 * If the dump on oops happens, it will be much appreciated
685 * to not have to wait for all that output. Anyway this can be
686 * boot time and run time configurable.
687 */
688 #define TRACE_BUF_SIZE_DEFAULT 1441792UL /* 16384 * 88 (sizeof(entry)) */
689
690 static unsigned long trace_buf_size = TRACE_BUF_SIZE_DEFAULT;
691
692 /* trace_types holds a link list of available tracers. */
693 static struct tracer *trace_types __read_mostly;
694
695 /*
696 * trace_types_lock is used to protect the trace_types list.
697 */
698 DEFINE_MUTEX(trace_types_lock);
699
700 /*
701 * serialize the access of the ring buffer
702 *
703 * ring buffer serializes readers, but it is low level protection.
704 * The validity of the events (which returns by ring_buffer_peek() ..etc)
705 * are not protected by ring buffer.
706 *
707 * The content of events may become garbage if we allow other process consumes
708 * these events concurrently:
709 * A) the page of the consumed events may become a normal page
710 * (not reader page) in ring buffer, and this page will be rewritten
711 * by events producer.
712 * B) The page of the consumed events may become a page for splice_read,
713 * and this page will be returned to system.
714 *
715 * These primitives allow multi process access to different cpu ring buffer
716 * concurrently.
717 *
718 * These primitives don't distinguish read-only and read-consume access.
719 * Multi read-only access are also serialized.
720 */
721
722 #ifdef CONFIG_SMP
723 static DECLARE_RWSEM(all_cpu_access_lock);
724 static DEFINE_PER_CPU(struct mutex, cpu_access_lock);
725
trace_access_lock(int cpu)726 static inline void trace_access_lock(int cpu)
727 {
728 if (cpu == RING_BUFFER_ALL_CPUS) {
729 /* gain it for accessing the whole ring buffer. */
730 down_write(&all_cpu_access_lock);
731 } else {
732 /* gain it for accessing a cpu ring buffer. */
733
734 /* Firstly block other trace_access_lock(RING_BUFFER_ALL_CPUS). */
735 down_read(&all_cpu_access_lock);
736
737 /* Secondly block other access to this @cpu ring buffer. */
738 mutex_lock(&per_cpu(cpu_access_lock, cpu));
739 }
740 }
741
trace_access_unlock(int cpu)742 static inline void trace_access_unlock(int cpu)
743 {
744 if (cpu == RING_BUFFER_ALL_CPUS) {
745 up_write(&all_cpu_access_lock);
746 } else {
747 mutex_unlock(&per_cpu(cpu_access_lock, cpu));
748 up_read(&all_cpu_access_lock);
749 }
750 }
751
trace_access_lock_init(void)752 static inline void trace_access_lock_init(void)
753 {
754 int cpu;
755
756 for_each_possible_cpu(cpu)
757 mutex_init(&per_cpu(cpu_access_lock, cpu));
758 }
759
760 #else
761
762 static DEFINE_MUTEX(access_lock);
763
trace_access_lock(int cpu)764 static inline void trace_access_lock(int cpu)
765 {
766 (void)cpu;
767 mutex_lock(&access_lock);
768 }
769
trace_access_unlock(int cpu)770 static inline void trace_access_unlock(int cpu)
771 {
772 (void)cpu;
773 mutex_unlock(&access_lock);
774 }
775
trace_access_lock_init(void)776 static inline void trace_access_lock_init(void)
777 {
778 }
779
780 #endif
781
tracer_tracing_on(struct trace_array * tr)782 void tracer_tracing_on(struct trace_array *tr)
783 {
784 if (tr->array_buffer.buffer)
785 ring_buffer_record_on(tr->array_buffer.buffer);
786 /*
787 * This flag is looked at when buffers haven't been allocated
788 * yet, or by some tracers (like irqsoff), that just want to
789 * know if the ring buffer has been disabled, but it can handle
790 * races of where it gets disabled but we still do a record.
791 * As the check is in the fast path of the tracers, it is more
792 * important to be fast than accurate.
793 */
794 tr->buffer_disabled = 0;
795 }
796
797 /**
798 * tracing_on - enable tracing buffers
799 *
800 * This function enables tracing buffers that may have been
801 * disabled with tracing_off.
802 */
tracing_on(void)803 void tracing_on(void)
804 {
805 tracer_tracing_on(&global_trace);
806 }
807 EXPORT_SYMBOL_GPL(tracing_on);
808
809 #ifdef CONFIG_TRACER_SNAPSHOT
tracing_snapshot_instance_cond(struct trace_array * tr,void * cond_data)810 static void tracing_snapshot_instance_cond(struct trace_array *tr,
811 void *cond_data)
812 {
813 unsigned long flags;
814
815 if (in_nmi()) {
816 trace_array_puts(tr, "*** SNAPSHOT CALLED FROM NMI CONTEXT ***\n");
817 trace_array_puts(tr, "*** snapshot is being ignored ***\n");
818 return;
819 }
820
821 if (!tr->allocated_snapshot) {
822 trace_array_puts(tr, "*** SNAPSHOT NOT ALLOCATED ***\n");
823 trace_array_puts(tr, "*** stopping trace here! ***\n");
824 tracer_tracing_off(tr);
825 return;
826 }
827
828 if (tr->mapped) {
829 trace_array_puts(tr, "*** BUFFER MEMORY MAPPED ***\n");
830 trace_array_puts(tr, "*** Can not use snapshot (sorry) ***\n");
831 return;
832 }
833
834 /* Note, snapshot can not be used when the tracer uses it */
835 if (tracer_uses_snapshot(tr->current_trace)) {
836 trace_array_puts(tr, "*** LATENCY TRACER ACTIVE ***\n");
837 trace_array_puts(tr, "*** Can not use snapshot (sorry) ***\n");
838 return;
839 }
840
841 local_irq_save(flags);
842 update_max_tr(tr, current, smp_processor_id(), cond_data);
843 local_irq_restore(flags);
844 }
845
tracing_snapshot_instance(struct trace_array * tr)846 void tracing_snapshot_instance(struct trace_array *tr)
847 {
848 tracing_snapshot_instance_cond(tr, NULL);
849 }
850
851 /**
852 * tracing_snapshot - take a snapshot of the current buffer.
853 *
854 * This causes a swap between the snapshot buffer and the current live
855 * tracing buffer. You can use this to take snapshots of the live
856 * trace when some condition is triggered, but continue to trace.
857 *
858 * Note, make sure to allocate the snapshot with either
859 * a tracing_snapshot_alloc(), or by doing it manually
860 * with: echo 1 > /sys/kernel/tracing/snapshot
861 *
862 * If the snapshot buffer is not allocated, it will stop tracing.
863 * Basically making a permanent snapshot.
864 */
tracing_snapshot(void)865 void tracing_snapshot(void)
866 {
867 struct trace_array *tr = &global_trace;
868
869 tracing_snapshot_instance(tr);
870 }
871 EXPORT_SYMBOL_GPL(tracing_snapshot);
872
873 /**
874 * tracing_snapshot_cond - conditionally take a snapshot of the current buffer.
875 * @tr: The tracing instance to snapshot
876 * @cond_data: The data to be tested conditionally, and possibly saved
877 *
878 * This is the same as tracing_snapshot() except that the snapshot is
879 * conditional - the snapshot will only happen if the
880 * cond_snapshot.update() implementation receiving the cond_data
881 * returns true, which means that the trace array's cond_snapshot
882 * update() operation used the cond_data to determine whether the
883 * snapshot should be taken, and if it was, presumably saved it along
884 * with the snapshot.
885 */
tracing_snapshot_cond(struct trace_array * tr,void * cond_data)886 void tracing_snapshot_cond(struct trace_array *tr, void *cond_data)
887 {
888 tracing_snapshot_instance_cond(tr, cond_data);
889 }
890 EXPORT_SYMBOL_GPL(tracing_snapshot_cond);
891
892 /**
893 * tracing_cond_snapshot_data - get the user data associated with a snapshot
894 * @tr: The tracing instance
895 *
896 * When the user enables a conditional snapshot using
897 * tracing_snapshot_cond_enable(), the user-defined cond_data is saved
898 * with the snapshot. This accessor is used to retrieve it.
899 *
900 * Should not be called from cond_snapshot.update(), since it takes
901 * the tr->max_lock lock, which the code calling
902 * cond_snapshot.update() has already done.
903 *
904 * Returns the cond_data associated with the trace array's snapshot.
905 */
tracing_cond_snapshot_data(struct trace_array * tr)906 void *tracing_cond_snapshot_data(struct trace_array *tr)
907 {
908 void *cond_data = NULL;
909
910 local_irq_disable();
911 arch_spin_lock(&tr->max_lock);
912
913 if (tr->cond_snapshot)
914 cond_data = tr->cond_snapshot->cond_data;
915
916 arch_spin_unlock(&tr->max_lock);
917 local_irq_enable();
918
919 return cond_data;
920 }
921 EXPORT_SYMBOL_GPL(tracing_cond_snapshot_data);
922
923 static int resize_buffer_duplicate_size(struct array_buffer *trace_buf,
924 struct array_buffer *size_buf, int cpu_id);
925 static void set_buffer_entries(struct array_buffer *buf, unsigned long val);
926
tracing_alloc_snapshot_instance(struct trace_array * tr)927 int tracing_alloc_snapshot_instance(struct trace_array *tr)
928 {
929 int order;
930 int ret;
931
932 if (!tr->allocated_snapshot) {
933
934 /* Make the snapshot buffer have the same order as main buffer */
935 order = ring_buffer_subbuf_order_get(tr->array_buffer.buffer);
936 ret = ring_buffer_subbuf_order_set(tr->snapshot_buffer.buffer, order);
937 if (ret < 0)
938 return ret;
939
940 /* allocate spare buffer */
941 ret = resize_buffer_duplicate_size(&tr->snapshot_buffer,
942 &tr->array_buffer, RING_BUFFER_ALL_CPUS);
943 if (ret < 0)
944 return ret;
945
946 tr->allocated_snapshot = true;
947 }
948
949 return 0;
950 }
951
free_snapshot(struct trace_array * tr)952 static void free_snapshot(struct trace_array *tr)
953 {
954 /*
955 * We don't free the ring buffer. instead, resize it because
956 * The max_tr ring buffer has some state (e.g. ring->clock) and
957 * we want preserve it.
958 */
959 ring_buffer_subbuf_order_set(tr->snapshot_buffer.buffer, 0);
960 ring_buffer_resize(tr->snapshot_buffer.buffer, 1, RING_BUFFER_ALL_CPUS);
961 set_buffer_entries(&tr->snapshot_buffer, 1);
962 tracing_reset_online_cpus(&tr->snapshot_buffer);
963 tr->allocated_snapshot = false;
964 }
965
tracing_arm_snapshot_locked(struct trace_array * tr)966 static int tracing_arm_snapshot_locked(struct trace_array *tr)
967 {
968 int ret;
969
970 lockdep_assert_held(&trace_types_lock);
971
972 spin_lock(&tr->snapshot_trigger_lock);
973 if (tr->snapshot == UINT_MAX || tr->mapped) {
974 spin_unlock(&tr->snapshot_trigger_lock);
975 return -EBUSY;
976 }
977
978 tr->snapshot++;
979 spin_unlock(&tr->snapshot_trigger_lock);
980
981 ret = tracing_alloc_snapshot_instance(tr);
982 if (ret) {
983 spin_lock(&tr->snapshot_trigger_lock);
984 tr->snapshot--;
985 spin_unlock(&tr->snapshot_trigger_lock);
986 }
987
988 return ret;
989 }
990
tracing_arm_snapshot(struct trace_array * tr)991 int tracing_arm_snapshot(struct trace_array *tr)
992 {
993 guard(mutex)(&trace_types_lock);
994 return tracing_arm_snapshot_locked(tr);
995 }
996
tracing_disarm_snapshot(struct trace_array * tr)997 void tracing_disarm_snapshot(struct trace_array *tr)
998 {
999 spin_lock(&tr->snapshot_trigger_lock);
1000 if (!WARN_ON(!tr->snapshot))
1001 tr->snapshot--;
1002 spin_unlock(&tr->snapshot_trigger_lock);
1003 }
1004
1005 /**
1006 * tracing_alloc_snapshot - allocate snapshot buffer.
1007 *
1008 * This only allocates the snapshot buffer if it isn't already
1009 * allocated - it doesn't also take a snapshot.
1010 *
1011 * This is meant to be used in cases where the snapshot buffer needs
1012 * to be set up for events that can't sleep but need to be able to
1013 * trigger a snapshot.
1014 */
tracing_alloc_snapshot(void)1015 int tracing_alloc_snapshot(void)
1016 {
1017 struct trace_array *tr = &global_trace;
1018 int ret;
1019
1020 ret = tracing_alloc_snapshot_instance(tr);
1021 WARN_ON(ret < 0);
1022
1023 return ret;
1024 }
1025 EXPORT_SYMBOL_GPL(tracing_alloc_snapshot);
1026
1027 /**
1028 * tracing_snapshot_alloc - allocate and take a snapshot of the current buffer.
1029 *
1030 * This is similar to tracing_snapshot(), but it will allocate the
1031 * snapshot buffer if it isn't already allocated. Use this only
1032 * where it is safe to sleep, as the allocation may sleep.
1033 *
1034 * This causes a swap between the snapshot buffer and the current live
1035 * tracing buffer. You can use this to take snapshots of the live
1036 * trace when some condition is triggered, but continue to trace.
1037 */
tracing_snapshot_alloc(void)1038 void tracing_snapshot_alloc(void)
1039 {
1040 int ret;
1041
1042 ret = tracing_alloc_snapshot();
1043 if (ret < 0)
1044 return;
1045
1046 tracing_snapshot();
1047 }
1048 EXPORT_SYMBOL_GPL(tracing_snapshot_alloc);
1049
1050 /**
1051 * tracing_snapshot_cond_enable - enable conditional snapshot for an instance
1052 * @tr: The tracing instance
1053 * @cond_data: User data to associate with the snapshot
1054 * @update: Implementation of the cond_snapshot update function
1055 *
1056 * Check whether the conditional snapshot for the given instance has
1057 * already been enabled, or if the current tracer is already using a
1058 * snapshot; if so, return -EBUSY, else create a cond_snapshot and
1059 * save the cond_data and update function inside.
1060 *
1061 * Returns 0 if successful, error otherwise.
1062 */
tracing_snapshot_cond_enable(struct trace_array * tr,void * cond_data,cond_update_fn_t update)1063 int tracing_snapshot_cond_enable(struct trace_array *tr, void *cond_data,
1064 cond_update_fn_t update)
1065 {
1066 struct cond_snapshot *cond_snapshot __free(kfree) =
1067 kzalloc_obj(*cond_snapshot);
1068 int ret;
1069
1070 if (!cond_snapshot)
1071 return -ENOMEM;
1072
1073 cond_snapshot->cond_data = cond_data;
1074 cond_snapshot->update = update;
1075
1076 guard(mutex)(&trace_types_lock);
1077
1078 if (tracer_uses_snapshot(tr->current_trace))
1079 return -EBUSY;
1080
1081 /*
1082 * The cond_snapshot can only change to NULL without the
1083 * trace_types_lock. We don't care if we race with it going
1084 * to NULL, but we want to make sure that it's not set to
1085 * something other than NULL when we get here, which we can
1086 * do safely with only holding the trace_types_lock and not
1087 * having to take the max_lock.
1088 */
1089 if (tr->cond_snapshot)
1090 return -EBUSY;
1091
1092 ret = tracing_arm_snapshot_locked(tr);
1093 if (ret)
1094 return ret;
1095
1096 local_irq_disable();
1097 arch_spin_lock(&tr->max_lock);
1098 tr->cond_snapshot = no_free_ptr(cond_snapshot);
1099 arch_spin_unlock(&tr->max_lock);
1100 local_irq_enable();
1101
1102 return 0;
1103 }
1104 EXPORT_SYMBOL_GPL(tracing_snapshot_cond_enable);
1105
1106 /**
1107 * tracing_snapshot_cond_disable - disable conditional snapshot for an instance
1108 * @tr: The tracing instance
1109 *
1110 * Check whether the conditional snapshot for the given instance is
1111 * enabled; if so, free the cond_snapshot associated with it,
1112 * otherwise return -EINVAL.
1113 *
1114 * Returns 0 if successful, error otherwise.
1115 */
tracing_snapshot_cond_disable(struct trace_array * tr)1116 int tracing_snapshot_cond_disable(struct trace_array *tr)
1117 {
1118 int ret = 0;
1119
1120 local_irq_disable();
1121 arch_spin_lock(&tr->max_lock);
1122
1123 if (!tr->cond_snapshot)
1124 ret = -EINVAL;
1125 else {
1126 kfree(tr->cond_snapshot);
1127 tr->cond_snapshot = NULL;
1128 }
1129
1130 arch_spin_unlock(&tr->max_lock);
1131 local_irq_enable();
1132
1133 tracing_disarm_snapshot(tr);
1134
1135 return ret;
1136 }
1137 EXPORT_SYMBOL_GPL(tracing_snapshot_cond_disable);
1138 #else
tracing_snapshot(void)1139 void tracing_snapshot(void)
1140 {
1141 WARN_ONCE(1, "Snapshot feature not enabled, but internal snapshot used");
1142 }
1143 EXPORT_SYMBOL_GPL(tracing_snapshot);
tracing_snapshot_cond(struct trace_array * tr,void * cond_data)1144 void tracing_snapshot_cond(struct trace_array *tr, void *cond_data)
1145 {
1146 WARN_ONCE(1, "Snapshot feature not enabled, but internal conditional snapshot used");
1147 }
1148 EXPORT_SYMBOL_GPL(tracing_snapshot_cond);
tracing_alloc_snapshot(void)1149 int tracing_alloc_snapshot(void)
1150 {
1151 WARN_ONCE(1, "Snapshot feature not enabled, but snapshot allocation used");
1152 return -ENODEV;
1153 }
1154 EXPORT_SYMBOL_GPL(tracing_alloc_snapshot);
tracing_snapshot_alloc(void)1155 void tracing_snapshot_alloc(void)
1156 {
1157 /* Give warning */
1158 tracing_snapshot();
1159 }
1160 EXPORT_SYMBOL_GPL(tracing_snapshot_alloc);
tracing_cond_snapshot_data(struct trace_array * tr)1161 void *tracing_cond_snapshot_data(struct trace_array *tr)
1162 {
1163 return NULL;
1164 }
1165 EXPORT_SYMBOL_GPL(tracing_cond_snapshot_data);
tracing_snapshot_cond_enable(struct trace_array * tr,void * cond_data,cond_update_fn_t update)1166 int tracing_snapshot_cond_enable(struct trace_array *tr, void *cond_data, cond_update_fn_t update)
1167 {
1168 return -ENODEV;
1169 }
1170 EXPORT_SYMBOL_GPL(tracing_snapshot_cond_enable);
tracing_snapshot_cond_disable(struct trace_array * tr)1171 int tracing_snapshot_cond_disable(struct trace_array *tr)
1172 {
1173 return false;
1174 }
1175 EXPORT_SYMBOL_GPL(tracing_snapshot_cond_disable);
1176 #define free_snapshot(tr) do { } while (0)
1177 #define tracing_arm_snapshot_locked(tr) ({ -EBUSY; })
1178 #endif /* CONFIG_TRACER_SNAPSHOT */
1179
tracer_tracing_off(struct trace_array * tr)1180 void tracer_tracing_off(struct trace_array *tr)
1181 {
1182 if (tr->array_buffer.buffer)
1183 ring_buffer_record_off(tr->array_buffer.buffer);
1184 /*
1185 * This flag is looked at when buffers haven't been allocated
1186 * yet, or by some tracers (like irqsoff), that just want to
1187 * know if the ring buffer has been disabled, but it can handle
1188 * races of where it gets disabled but we still do a record.
1189 * As the check is in the fast path of the tracers, it is more
1190 * important to be fast than accurate.
1191 */
1192 tr->buffer_disabled = 1;
1193 }
1194
1195 /**
1196 * tracer_tracing_disable() - temporary disable the buffer from write
1197 * @tr: The trace array to disable its buffer for
1198 *
1199 * Expects trace_tracing_enable() to re-enable tracing.
1200 * The difference between this and tracer_tracing_off() is that this
1201 * is a counter and can nest, whereas, tracer_tracing_off() can
1202 * be called multiple times and a single trace_tracing_on() will
1203 * enable it.
1204 */
tracer_tracing_disable(struct trace_array * tr)1205 void tracer_tracing_disable(struct trace_array *tr)
1206 {
1207 if (WARN_ON_ONCE(!tr->array_buffer.buffer))
1208 return;
1209
1210 ring_buffer_record_disable(tr->array_buffer.buffer);
1211 }
1212
1213 /**
1214 * tracer_tracing_enable() - counter part of tracer_tracing_disable()
1215 * @tr: The trace array that had tracer_tracincg_disable() called on it
1216 *
1217 * This is called after tracer_tracing_disable() has been called on @tr,
1218 * when it's safe to re-enable tracing.
1219 */
tracer_tracing_enable(struct trace_array * tr)1220 void tracer_tracing_enable(struct trace_array *tr)
1221 {
1222 if (WARN_ON_ONCE(!tr->array_buffer.buffer))
1223 return;
1224
1225 ring_buffer_record_enable(tr->array_buffer.buffer);
1226 }
1227
1228 /**
1229 * tracing_off - turn off tracing buffers
1230 *
1231 * This function stops the tracing buffers from recording data.
1232 * It does not disable any overhead the tracers themselves may
1233 * be causing. This function simply causes all recording to
1234 * the ring buffers to fail.
1235 */
tracing_off(void)1236 void tracing_off(void)
1237 {
1238 tracer_tracing_off(&global_trace);
1239 }
1240 EXPORT_SYMBOL_GPL(tracing_off);
1241
disable_trace_on_warning(void)1242 void disable_trace_on_warning(void)
1243 {
1244 if (__disable_trace_on_warning) {
1245 struct trace_array *tr = READ_ONCE(printk_trace);
1246
1247 trace_array_printk_buf(global_trace.array_buffer.buffer, _THIS_IP_,
1248 "Disabling tracing due to warning\n");
1249 tracing_off();
1250
1251 /* Disable trace_printk() buffer too */
1252 if (tr != &global_trace) {
1253 trace_array_printk_buf(tr->array_buffer.buffer, _THIS_IP_,
1254 "Disabling tracing due to warning\n");
1255 tracer_tracing_off(tr);
1256 }
1257 }
1258 }
1259
1260 /**
1261 * tracer_tracing_is_on - show real state of ring buffer enabled
1262 * @tr : the trace array to know if ring buffer is enabled
1263 *
1264 * Shows real state of the ring buffer if it is enabled or not.
1265 */
tracer_tracing_is_on(struct trace_array * tr)1266 bool tracer_tracing_is_on(struct trace_array *tr)
1267 {
1268 if (tr->array_buffer.buffer)
1269 return ring_buffer_record_is_set_on(tr->array_buffer.buffer);
1270 return !tr->buffer_disabled;
1271 }
1272
1273 /**
1274 * tracing_is_on - show state of ring buffers enabled
1275 */
tracing_is_on(void)1276 int tracing_is_on(void)
1277 {
1278 return tracer_tracing_is_on(&global_trace);
1279 }
1280 EXPORT_SYMBOL_GPL(tracing_is_on);
1281
set_buf_size(char * str)1282 static int __init set_buf_size(char *str)
1283 {
1284 unsigned long buf_size;
1285
1286 if (!str)
1287 return 0;
1288 buf_size = memparse(str, &str);
1289 /*
1290 * nr_entries can not be zero and the startup
1291 * tests require some buffer space. Therefore
1292 * ensure we have at least 4096 bytes of buffer.
1293 */
1294 trace_buf_size = max(4096UL, buf_size);
1295 return 1;
1296 }
1297 __setup("trace_buf_size=", set_buf_size);
1298
set_tracing_thresh(char * str)1299 static int __init set_tracing_thresh(char *str)
1300 {
1301 unsigned long threshold;
1302 int ret;
1303
1304 if (!str)
1305 return 0;
1306 ret = kstrtoul(str, 0, &threshold);
1307 if (ret < 0)
1308 return 0;
1309 tracing_thresh = threshold * 1000;
1310 return 1;
1311 }
1312 __setup("tracing_thresh=", set_tracing_thresh);
1313
nsecs_to_usecs(unsigned long nsecs)1314 unsigned long nsecs_to_usecs(unsigned long nsecs)
1315 {
1316 return nsecs / 1000;
1317 }
1318
1319 /*
1320 * TRACE_FLAGS is defined as a tuple matching bit masks with strings.
1321 * It uses C(a, b) where 'a' is the eval (enum) name and 'b' is the string that
1322 * matches it. By defining "C(a, b) b", TRACE_FLAGS becomes a list
1323 * of strings in the order that the evals (enum) were defined.
1324 */
1325 #undef C
1326 #define C(a, b) b
1327
1328 /* These must match the bit positions in trace_iterator_flags */
1329 static const char *trace_options[] = {
1330 TRACE_FLAGS
1331 NULL
1332 };
1333
1334 static struct {
1335 u64 (*func)(void);
1336 const char *name;
1337 int in_ns; /* is this clock in nanoseconds? */
1338 } trace_clocks[] = {
1339 { trace_clock_local, "local", 1 },
1340 { trace_clock_global, "global", 1 },
1341 { trace_clock_counter, "counter", 0 },
1342 { trace_clock_jiffies, "uptime", 0 },
1343 { trace_clock, "perf", 1 },
1344 { ktime_get_mono_fast_ns, "mono", 1 },
1345 { ktime_get_raw_fast_ns, "mono_raw", 1 },
1346 { ktime_get_boot_fast_ns, "boot", 1 },
1347 { ktime_get_tai_fast_ns, "tai", 1 },
1348 ARCH_TRACE_CLOCKS
1349 };
1350
trace_clock_in_ns(struct trace_array * tr)1351 bool trace_clock_in_ns(struct trace_array *tr)
1352 {
1353 if (trace_clocks[tr->clock_id].in_ns)
1354 return true;
1355
1356 return false;
1357 }
1358
1359 /*
1360 * trace_parser_get_init - gets the buffer for trace parser
1361 */
trace_parser_get_init(struct trace_parser * parser,int size)1362 int trace_parser_get_init(struct trace_parser *parser, int size)
1363 {
1364 memset(parser, 0, sizeof(*parser));
1365
1366 parser->buffer = kmalloc(size, GFP_KERNEL);
1367 if (!parser->buffer)
1368 return 1;
1369
1370 parser->size = size;
1371 return 0;
1372 }
1373
1374 /*
1375 * trace_parser_put - frees the buffer for trace parser
1376 */
trace_parser_put(struct trace_parser * parser)1377 void trace_parser_put(struct trace_parser *parser)
1378 {
1379 kfree(parser->buffer);
1380 parser->buffer = NULL;
1381 }
1382
1383 /*
1384 * trace_get_user - reads the user input string separated by space
1385 * (matched by isspace(ch))
1386 *
1387 * For each string found the 'struct trace_parser' is updated,
1388 * and the function returns.
1389 *
1390 * Returns number of bytes read.
1391 *
1392 * See kernel/trace/trace.h for 'struct trace_parser' details.
1393 */
trace_get_user(struct trace_parser * parser,const char __user * ubuf,size_t cnt,loff_t * ppos)1394 int trace_get_user(struct trace_parser *parser, const char __user *ubuf,
1395 size_t cnt, loff_t *ppos)
1396 {
1397 char ch;
1398 size_t read = 0;
1399 ssize_t ret;
1400
1401 if (!*ppos)
1402 trace_parser_clear(parser);
1403
1404 ret = get_user(ch, ubuf++);
1405 if (ret)
1406 goto fail;
1407
1408 read++;
1409 cnt--;
1410
1411 /*
1412 * The parser is not finished with the last write,
1413 * continue reading the user input without skipping spaces.
1414 */
1415 if (!parser->cont) {
1416 /* skip white space */
1417 while (cnt && isspace(ch)) {
1418 ret = get_user(ch, ubuf++);
1419 if (ret)
1420 goto fail;
1421 read++;
1422 cnt--;
1423 }
1424
1425 parser->idx = 0;
1426
1427 /* only spaces were written */
1428 if (isspace(ch) || !ch) {
1429 *ppos += read;
1430 return read;
1431 }
1432 }
1433
1434 /* read the non-space input */
1435 while (cnt && !isspace(ch) && ch) {
1436 if (parser->idx < parser->size - 1)
1437 parser->buffer[parser->idx++] = ch;
1438 else {
1439 ret = -EINVAL;
1440 goto fail;
1441 }
1442
1443 ret = get_user(ch, ubuf++);
1444 if (ret)
1445 goto fail;
1446 read++;
1447 cnt--;
1448 }
1449
1450 /* We either got finished input or we have to wait for another call. */
1451 if (isspace(ch) || !ch) {
1452 parser->buffer[parser->idx] = 0;
1453 parser->cont = false;
1454 } else if (parser->idx < parser->size - 1) {
1455 parser->cont = true;
1456 parser->buffer[parser->idx++] = ch;
1457 /* Make sure the parsed string always terminates with '\0'. */
1458 parser->buffer[parser->idx] = 0;
1459 } else {
1460 ret = -EINVAL;
1461 goto fail;
1462 }
1463
1464 *ppos += read;
1465 return read;
1466 fail:
1467 trace_parser_fail(parser);
1468 return ret;
1469 }
1470
1471 /* TODO add a seq_buf_to_buffer() */
trace_seq_to_buffer(struct trace_seq * s,void * buf,size_t cnt)1472 static ssize_t trace_seq_to_buffer(struct trace_seq *s, void *buf, size_t cnt)
1473 {
1474 int len;
1475
1476 if (trace_seq_used(s) <= s->readpos)
1477 return -EBUSY;
1478
1479 len = trace_seq_used(s) - s->readpos;
1480 if (cnt > len)
1481 cnt = len;
1482 memcpy(buf, s->buffer + s->readpos, cnt);
1483
1484 s->readpos += cnt;
1485 return cnt;
1486 }
1487
1488 unsigned long __read_mostly tracing_thresh;
1489
1490 #ifdef CONFIG_TRACER_MAX_TRACE
1491 #ifdef LATENCY_FS_NOTIFY
1492 static struct workqueue_struct *fsnotify_wq;
1493
latency_fsnotify_workfn(struct work_struct * work)1494 static void latency_fsnotify_workfn(struct work_struct *work)
1495 {
1496 struct trace_array *tr = container_of(work, struct trace_array,
1497 fsnotify_work);
1498 fsnotify_inode(tr->d_max_latency->d_inode, FS_MODIFY);
1499 }
1500
latency_fsnotify_workfn_irq(struct irq_work * iwork)1501 static void latency_fsnotify_workfn_irq(struct irq_work *iwork)
1502 {
1503 struct trace_array *tr = container_of(iwork, struct trace_array,
1504 fsnotify_irqwork);
1505 queue_work(fsnotify_wq, &tr->fsnotify_work);
1506 }
1507
latency_fsnotify_init(void)1508 __init static int latency_fsnotify_init(void)
1509 {
1510 fsnotify_wq = alloc_workqueue("tr_max_lat_wq",
1511 WQ_UNBOUND | WQ_HIGHPRI, 0);
1512 if (!fsnotify_wq) {
1513 pr_err("Unable to allocate tr_max_lat_wq\n");
1514 return -ENOMEM;
1515 }
1516 return 0;
1517 }
1518
1519 late_initcall_sync(latency_fsnotify_init);
1520
latency_fsnotify(struct trace_array * tr)1521 void latency_fsnotify(struct trace_array *tr)
1522 {
1523 if (!fsnotify_wq)
1524 return;
1525 /*
1526 * We cannot call queue_work(&tr->fsnotify_work) from here because it's
1527 * possible that we are called from __schedule() or do_idle(), which
1528 * could cause a deadlock.
1529 */
1530 irq_work_queue(&tr->fsnotify_irqwork);
1531 }
1532 #endif /* !LATENCY_FS_NOTIFY */
1533
1534 static const struct file_operations tracing_max_lat_fops;
1535
trace_create_maxlat_file(struct trace_array * tr,struct dentry * d_tracer)1536 static void trace_create_maxlat_file(struct trace_array *tr,
1537 struct dentry *d_tracer)
1538 {
1539 #ifdef LATENCY_FS_NOTIFY
1540 INIT_WORK(&tr->fsnotify_work, latency_fsnotify_workfn);
1541 init_irq_work(&tr->fsnotify_irqwork, latency_fsnotify_workfn_irq);
1542 #endif
1543 tr->d_max_latency = trace_create_file("tracing_max_latency",
1544 TRACE_MODE_WRITE,
1545 d_tracer, tr,
1546 &tracing_max_lat_fops);
1547 }
1548
1549 /*
1550 * Copy the new maximum trace into the separate maximum-trace
1551 * structure. (this way the maximum trace is permanently saved,
1552 * for later retrieval via /sys/kernel/tracing/tracing_max_latency)
1553 */
1554 static void
__update_max_tr(struct trace_array * tr,struct task_struct * tsk,int cpu)1555 __update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu)
1556 {
1557 struct array_buffer *trace_buf = &tr->array_buffer;
1558 struct trace_array_cpu *data = per_cpu_ptr(trace_buf->data, cpu);
1559 struct array_buffer *max_buf = &tr->snapshot_buffer;
1560 struct trace_array_cpu *max_data = per_cpu_ptr(max_buf->data, cpu);
1561
1562 max_buf->cpu = cpu;
1563 max_buf->time_start = data->preempt_timestamp;
1564
1565 max_data->saved_latency = tr->max_latency;
1566 max_data->critical_start = data->critical_start;
1567 max_data->critical_end = data->critical_end;
1568
1569 strscpy(max_data->comm, tsk->comm);
1570 max_data->pid = tsk->pid;
1571 /*
1572 * If tsk == current, then use current_uid(), as that does not use
1573 * RCU. The irq tracer can be called out of RCU scope.
1574 */
1575 if (tsk == current)
1576 max_data->uid = current_uid();
1577 else
1578 max_data->uid = task_uid(tsk);
1579
1580 max_data->nice = tsk->static_prio - 20 - MAX_RT_PRIO;
1581 max_data->policy = tsk->policy;
1582 max_data->rt_priority = tsk->rt_priority;
1583
1584 /* record this tasks comm */
1585 tracing_record_cmdline(tsk);
1586 latency_fsnotify(tr);
1587 }
1588 #else
trace_create_maxlat_file(struct trace_array * tr,struct dentry * d_tracer)1589 static inline void trace_create_maxlat_file(struct trace_array *tr,
1590 struct dentry *d_tracer) { }
__update_max_tr(struct trace_array * tr,struct task_struct * tsk,int cpu)1591 static inline void __update_max_tr(struct trace_array *tr,
1592 struct task_struct *tsk, int cpu) { }
1593 #endif /* CONFIG_TRACER_MAX_TRACE */
1594
1595 #ifdef CONFIG_TRACER_SNAPSHOT
1596 /**
1597 * update_max_tr - snapshot all trace buffers from global_trace to max_tr
1598 * @tr: tracer
1599 * @tsk: the task with the latency
1600 * @cpu: The cpu that initiated the trace.
1601 * @cond_data: User data associated with a conditional snapshot
1602 *
1603 * Flip the buffers between the @tr and the max_tr and record information
1604 * about which task was the cause of this latency.
1605 */
1606 void
update_max_tr(struct trace_array * tr,struct task_struct * tsk,int cpu,void * cond_data)1607 update_max_tr(struct trace_array *tr, struct task_struct *tsk, int cpu,
1608 void *cond_data)
1609 {
1610 if (tr->stop_count)
1611 return;
1612
1613 WARN_ON_ONCE(!irqs_disabled());
1614
1615 if (!tr->allocated_snapshot) {
1616 /* Only the nop tracer should hit this when disabling */
1617 WARN_ON_ONCE(tr->current_trace != &nop_trace);
1618 return;
1619 }
1620
1621 arch_spin_lock(&tr->max_lock);
1622
1623 /* Inherit the recordable setting from array_buffer */
1624 if (ring_buffer_record_is_set_on(tr->array_buffer.buffer))
1625 ring_buffer_record_on(tr->snapshot_buffer.buffer);
1626 else
1627 ring_buffer_record_off(tr->snapshot_buffer.buffer);
1628
1629 if (tr->cond_snapshot && !tr->cond_snapshot->update(tr, cond_data)) {
1630 arch_spin_unlock(&tr->max_lock);
1631 return;
1632 }
1633
1634 swap(tr->array_buffer.buffer, tr->snapshot_buffer.buffer);
1635
1636 __update_max_tr(tr, tsk, cpu);
1637
1638 arch_spin_unlock(&tr->max_lock);
1639
1640 /* Any waiters on the old snapshot buffer need to wake up */
1641 ring_buffer_wake_waiters(tr->array_buffer.buffer, RING_BUFFER_ALL_CPUS);
1642 }
1643
1644 /**
1645 * update_max_tr_single - only copy one trace over, and reset the rest
1646 * @tr: tracer
1647 * @tsk: task with the latency
1648 * @cpu: the cpu of the buffer to copy.
1649 *
1650 * Flip the trace of a single CPU buffer between the @tr and the max_tr.
1651 */
1652 void
update_max_tr_single(struct trace_array * tr,struct task_struct * tsk,int cpu)1653 update_max_tr_single(struct trace_array *tr, struct task_struct *tsk, int cpu)
1654 {
1655 int ret;
1656
1657 if (tr->stop_count)
1658 return;
1659
1660 WARN_ON_ONCE(!irqs_disabled());
1661 if (!tr->allocated_snapshot) {
1662 /* Only the nop tracer should hit this when disabling */
1663 WARN_ON_ONCE(tr->current_trace != &nop_trace);
1664 return;
1665 }
1666
1667 arch_spin_lock(&tr->max_lock);
1668
1669 ret = ring_buffer_swap_cpu(tr->snapshot_buffer.buffer, tr->array_buffer.buffer, cpu);
1670
1671 if (ret == -EBUSY) {
1672 /*
1673 * We failed to swap the buffer due to a commit taking
1674 * place on this CPU. We fail to record, but we reset
1675 * the max trace buffer (no one writes directly to it)
1676 * and flag that it failed.
1677 * Another reason is resize is in progress.
1678 */
1679 trace_array_printk_buf(tr->snapshot_buffer.buffer, _THIS_IP_,
1680 "Failed to swap buffers due to commit or resize in progress\n");
1681 }
1682
1683 WARN_ON_ONCE(ret && ret != -EAGAIN && ret != -EBUSY);
1684
1685 __update_max_tr(tr, tsk, cpu);
1686 arch_spin_unlock(&tr->max_lock);
1687 }
1688 #endif /* CONFIG_TRACER_SNAPSHOT */
1689
1690 struct pipe_wait {
1691 struct trace_iterator *iter;
1692 int wait_index;
1693 };
1694
wait_pipe_cond(void * data)1695 static bool wait_pipe_cond(void *data)
1696 {
1697 struct pipe_wait *pwait = data;
1698 struct trace_iterator *iter = pwait->iter;
1699
1700 if (atomic_read_acquire(&iter->wait_index) != pwait->wait_index)
1701 return true;
1702
1703 return iter->closed;
1704 }
1705
wait_on_pipe(struct trace_iterator * iter,int full)1706 static int wait_on_pipe(struct trace_iterator *iter, int full)
1707 {
1708 struct pipe_wait pwait;
1709 int ret;
1710
1711 /* Iterators are static, they should be filled or empty */
1712 if (trace_buffer_iter(iter, iter->cpu_file))
1713 return 0;
1714
1715 pwait.wait_index = atomic_read_acquire(&iter->wait_index);
1716 pwait.iter = iter;
1717
1718 ret = ring_buffer_wait(iter->array_buffer->buffer, iter->cpu_file, full,
1719 wait_pipe_cond, &pwait);
1720
1721 #ifdef CONFIG_TRACER_SNAPSHOT
1722 /*
1723 * Make sure this is still the snapshot buffer, as if a snapshot were
1724 * to happen, this would now be the main buffer.
1725 */
1726 if (iter->snapshot)
1727 iter->array_buffer = &iter->tr->snapshot_buffer;
1728 #endif
1729 return ret;
1730 }
1731
1732 #ifdef CONFIG_FTRACE_STARTUP_TEST
1733 static bool selftests_can_run;
1734
1735 struct trace_selftests {
1736 struct list_head list;
1737 struct tracer *type;
1738 };
1739
1740 static LIST_HEAD(postponed_selftests);
1741
save_selftest(struct tracer * type)1742 static int save_selftest(struct tracer *type)
1743 {
1744 struct trace_selftests *selftest;
1745
1746 selftest = kmalloc(sizeof(*selftest), GFP_KERNEL);
1747 if (!selftest)
1748 return -ENOMEM;
1749
1750 selftest->type = type;
1751 list_add(&selftest->list, &postponed_selftests);
1752 return 0;
1753 }
1754
run_tracer_selftest(struct tracer * type)1755 static int run_tracer_selftest(struct tracer *type)
1756 {
1757 struct trace_array *tr = &global_trace;
1758 struct tracer_flags *saved_flags = tr->current_trace_flags;
1759 struct tracer *saved_tracer = tr->current_trace;
1760 int ret;
1761
1762 if (!type->selftest || tracing_selftest_disabled)
1763 return 0;
1764
1765 /*
1766 * If a tracer registers early in boot up (before scheduling is
1767 * initialized and such), then do not run its selftests yet.
1768 * Instead, run it a little later in the boot process.
1769 */
1770 if (!selftests_can_run)
1771 return save_selftest(type);
1772
1773 if (!tracing_is_on()) {
1774 pr_warn("Selftest for tracer %s skipped due to tracing disabled\n",
1775 type->name);
1776 return 0;
1777 }
1778
1779 /*
1780 * Run a selftest on this tracer.
1781 * Here we reset the trace buffer, and set the current
1782 * tracer to be this tracer. The tracer can then run some
1783 * internal tracing to verify that everything is in order.
1784 * If we fail, we do not register this tracer.
1785 */
1786 tracing_reset_online_cpus(&tr->array_buffer);
1787
1788 tr->current_trace = type;
1789 tr->current_trace_flags = type->flags ? : type->default_flags;
1790
1791 #ifdef CONFIG_TRACER_MAX_TRACE
1792 if (tracer_uses_snapshot(type)) {
1793 /* If we expanded the buffers, make sure the max is expanded too */
1794 if (tr->ring_buffer_expanded)
1795 ring_buffer_resize(tr->snapshot_buffer.buffer, trace_buf_size,
1796 RING_BUFFER_ALL_CPUS);
1797 tr->allocated_snapshot = true;
1798 }
1799 #endif
1800
1801 /* the test is responsible for initializing and enabling */
1802 pr_info("Testing tracer %s: ", type->name);
1803 ret = type->selftest(type, tr);
1804 /* the test is responsible for resetting too */
1805 tr->current_trace = saved_tracer;
1806 tr->current_trace_flags = saved_flags;
1807 if (ret) {
1808 printk(KERN_CONT "FAILED!\n");
1809 /* Add the warning after printing 'FAILED' */
1810 WARN_ON(1);
1811 return -1;
1812 }
1813 /* Only reset on passing, to avoid touching corrupted buffers */
1814 tracing_reset_online_cpus(&tr->array_buffer);
1815
1816 #ifdef CONFIG_TRACER_MAX_TRACE
1817 if (tracer_uses_snapshot(type)) {
1818 tr->allocated_snapshot = false;
1819
1820 /* Shrink the max buffer again */
1821 if (tr->ring_buffer_expanded)
1822 ring_buffer_resize(tr->snapshot_buffer.buffer, 1,
1823 RING_BUFFER_ALL_CPUS);
1824 }
1825 #endif
1826
1827 printk(KERN_CONT "PASSED\n");
1828 return 0;
1829 }
1830
do_run_tracer_selftest(struct tracer * type)1831 static int do_run_tracer_selftest(struct tracer *type)
1832 {
1833 int ret;
1834
1835 /*
1836 * Tests can take a long time, especially if they are run one after the
1837 * other, as does happen during bootup when all the tracers are
1838 * registered. This could cause the soft lockup watchdog to trigger.
1839 */
1840 cond_resched();
1841
1842 tracing_selftest_running = true;
1843 ret = run_tracer_selftest(type);
1844 tracing_selftest_running = false;
1845
1846 return ret;
1847 }
1848
init_trace_selftests(void)1849 static __init int init_trace_selftests(void)
1850 {
1851 struct trace_selftests *p, *n;
1852 struct tracer *t, **last;
1853 int ret;
1854
1855 selftests_can_run = true;
1856
1857 guard(mutex)(&trace_types_lock);
1858
1859 if (list_empty(&postponed_selftests))
1860 return 0;
1861
1862 pr_info("Running postponed tracer tests:\n");
1863
1864 tracing_selftest_running = true;
1865 list_for_each_entry_safe(p, n, &postponed_selftests, list) {
1866 /* This loop can take minutes when sanitizers are enabled, so
1867 * lets make sure we allow RCU processing.
1868 */
1869 cond_resched();
1870 ret = run_tracer_selftest(p->type);
1871 /* If the test fails, then warn and remove from available_tracers */
1872 if (ret < 0) {
1873 WARN(1, "tracer: %s failed selftest, disabling\n",
1874 p->type->name);
1875 last = &trace_types;
1876 for (t = trace_types; t; t = t->next) {
1877 if (t == p->type) {
1878 *last = t->next;
1879 break;
1880 }
1881 last = &t->next;
1882 }
1883 }
1884 list_del(&p->list);
1885 kfree(p);
1886 }
1887 tracing_selftest_running = false;
1888
1889 return 0;
1890 }
1891 core_initcall(init_trace_selftests);
1892 #else
do_run_tracer_selftest(struct tracer * type)1893 static inline int do_run_tracer_selftest(struct tracer *type)
1894 {
1895 return 0;
1896 }
1897 #endif /* CONFIG_FTRACE_STARTUP_TEST */
1898
1899 static int add_tracer(struct trace_array *tr, struct tracer *t);
1900
1901 static void __init apply_trace_boot_options(void);
1902
free_tracers(struct trace_array * tr)1903 static void free_tracers(struct trace_array *tr)
1904 {
1905 struct tracers *t, *n;
1906
1907 lockdep_assert_held(&trace_types_lock);
1908
1909 list_for_each_entry_safe(t, n, &tr->tracers, list) {
1910 list_del(&t->list);
1911 kfree(t->flags);
1912 kfree(t);
1913 }
1914 }
1915
1916 /**
1917 * register_tracer - register a tracer with the ftrace system.
1918 * @type: the plugin for the tracer
1919 *
1920 * Register a new plugin tracer.
1921 */
register_tracer(struct tracer * type)1922 int __init register_tracer(struct tracer *type)
1923 {
1924 struct trace_array *tr;
1925 struct tracer *t;
1926 int ret = 0;
1927
1928 if (!type->name) {
1929 pr_info("Tracer must have a name\n");
1930 return -1;
1931 }
1932
1933 if (strlen(type->name) >= MAX_TRACER_SIZE) {
1934 pr_info("Tracer has a name longer than %d\n", MAX_TRACER_SIZE);
1935 return -1;
1936 }
1937
1938 if (security_locked_down(LOCKDOWN_TRACEFS)) {
1939 pr_warn("Can not register tracer %s due to lockdown\n",
1940 type->name);
1941 return -EPERM;
1942 }
1943
1944 mutex_lock(&trace_types_lock);
1945
1946 for (t = trace_types; t; t = t->next) {
1947 if (strcmp(type->name, t->name) == 0) {
1948 /* already found */
1949 pr_info("Tracer %s already registered\n",
1950 type->name);
1951 ret = -1;
1952 goto out;
1953 }
1954 }
1955
1956 /* store the tracer for __set_tracer_option */
1957 if (type->flags)
1958 type->flags->trace = type;
1959
1960 ret = do_run_tracer_selftest(type);
1961 if (ret < 0)
1962 goto out;
1963
1964 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
1965 ret = add_tracer(tr, type);
1966 if (ret < 0) {
1967 /* The tracer will still exist but without options */
1968 pr_warn("Failed to create tracer options for %s\n", type->name);
1969 break;
1970 }
1971 }
1972
1973 type->next = trace_types;
1974 trace_types = type;
1975
1976 out:
1977 mutex_unlock(&trace_types_lock);
1978
1979 if (ret || !default_bootup_tracer)
1980 return ret;
1981
1982 if (strncmp(default_bootup_tracer, type->name, MAX_TRACER_SIZE))
1983 return 0;
1984
1985 printk(KERN_INFO "Starting tracer '%s'\n", type->name);
1986 /* Do we want this tracer to start on bootup? */
1987 WARN_ON(tracing_set_tracer(&global_trace, type->name) < 0);
1988 default_bootup_tracer = NULL;
1989
1990 apply_trace_boot_options();
1991
1992 /* disable other selftests, since this will break it. */
1993 disable_tracing_selftest("running a tracer");
1994
1995 return 0;
1996 }
1997
tracing_reset_cpu(struct array_buffer * buf,int cpu)1998 static void tracing_reset_cpu(struct array_buffer *buf, int cpu)
1999 {
2000 struct trace_buffer *buffer = buf->buffer;
2001
2002 if (!buffer)
2003 return;
2004
2005 ring_buffer_record_disable(buffer);
2006
2007 /* Make sure all commits have finished */
2008 synchronize_rcu();
2009 ring_buffer_reset_cpu(buffer, cpu);
2010
2011 ring_buffer_record_enable(buffer);
2012 }
2013
tracing_reset_online_cpus(struct array_buffer * buf)2014 void tracing_reset_online_cpus(struct array_buffer *buf)
2015 {
2016 struct trace_buffer *buffer = buf->buffer;
2017
2018 if (!buffer)
2019 return;
2020
2021 ring_buffer_record_disable(buffer);
2022
2023 /* Make sure all commits have finished */
2024 synchronize_rcu();
2025
2026 buf->time_start = buffer_ftrace_now(buf, buf->cpu);
2027
2028 ring_buffer_reset_online_cpus(buffer);
2029
2030 ring_buffer_record_enable(buffer);
2031 }
2032
tracing_reset_all_cpus(struct array_buffer * buf)2033 static void tracing_reset_all_cpus(struct array_buffer *buf)
2034 {
2035 struct trace_buffer *buffer = buf->buffer;
2036
2037 if (!buffer)
2038 return;
2039
2040 ring_buffer_record_disable(buffer);
2041
2042 /* Make sure all commits have finished */
2043 synchronize_rcu();
2044
2045 buf->time_start = buffer_ftrace_now(buf, buf->cpu);
2046
2047 ring_buffer_reset(buffer);
2048
2049 ring_buffer_record_enable(buffer);
2050 }
2051
2052 /* Must have trace_types_lock held */
tracing_reset_all_online_cpus_unlocked(void)2053 void tracing_reset_all_online_cpus_unlocked(void)
2054 {
2055 struct trace_array *tr;
2056
2057 lockdep_assert_held(&trace_types_lock);
2058
2059 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
2060 if (!tr->clear_trace)
2061 continue;
2062 tr->clear_trace = false;
2063 tracing_reset_online_cpus(&tr->array_buffer);
2064 #ifdef CONFIG_TRACER_SNAPSHOT
2065 tracing_reset_online_cpus(&tr->snapshot_buffer);
2066 #endif
2067 }
2068 }
2069
tracing_reset_all_online_cpus(void)2070 void tracing_reset_all_online_cpus(void)
2071 {
2072 guard(mutex)(&trace_types_lock);
2073 tracing_reset_all_online_cpus_unlocked();
2074 }
2075
is_tracing_stopped(void)2076 int is_tracing_stopped(void)
2077 {
2078 return global_trace.stop_count;
2079 }
2080
tracing_start_tr(struct trace_array * tr)2081 static void tracing_start_tr(struct trace_array *tr)
2082 {
2083 struct trace_buffer *buffer;
2084
2085 if (tracing_disabled)
2086 return;
2087
2088 guard(raw_spinlock_irqsave)(&tr->start_lock);
2089 if (--tr->stop_count) {
2090 if (WARN_ON_ONCE(tr->stop_count < 0)) {
2091 /* Someone screwed up their debugging */
2092 tr->stop_count = 0;
2093 }
2094 return;
2095 }
2096
2097 /* Prevent the buffers from switching */
2098 arch_spin_lock(&tr->max_lock);
2099
2100 buffer = tr->array_buffer.buffer;
2101 if (buffer)
2102 ring_buffer_record_enable(buffer);
2103
2104 #ifdef CONFIG_TRACER_SNAPSHOT
2105 buffer = tr->snapshot_buffer.buffer;
2106 if (buffer)
2107 ring_buffer_record_enable(buffer);
2108 #endif
2109
2110 arch_spin_unlock(&tr->max_lock);
2111 }
2112
2113 /**
2114 * tracing_start - quick start of the tracer
2115 *
2116 * If tracing is enabled but was stopped by tracing_stop,
2117 * this will start the tracer back up.
2118 */
tracing_start(void)2119 void tracing_start(void)
2120
2121 {
2122 return tracing_start_tr(&global_trace);
2123 }
2124
tracing_stop_tr(struct trace_array * tr)2125 static void tracing_stop_tr(struct trace_array *tr)
2126 {
2127 struct trace_buffer *buffer;
2128
2129 guard(raw_spinlock_irqsave)(&tr->start_lock);
2130 if (tr->stop_count++)
2131 return;
2132
2133 /* Prevent the buffers from switching */
2134 arch_spin_lock(&tr->max_lock);
2135
2136 buffer = tr->array_buffer.buffer;
2137 if (buffer)
2138 ring_buffer_record_disable(buffer);
2139
2140 #ifdef CONFIG_TRACER_SNAPSHOT
2141 buffer = tr->snapshot_buffer.buffer;
2142 if (buffer)
2143 ring_buffer_record_disable(buffer);
2144 #endif
2145
2146 arch_spin_unlock(&tr->max_lock);
2147 }
2148
2149 /**
2150 * tracing_stop - quick stop of the tracer
2151 *
2152 * Light weight way to stop tracing. Use in conjunction with
2153 * tracing_start.
2154 */
tracing_stop(void)2155 void tracing_stop(void)
2156 {
2157 return tracing_stop_tr(&global_trace);
2158 }
2159
2160 /*
2161 * Several functions return TRACE_TYPE_PARTIAL_LINE if the trace_seq
2162 * overflowed, and TRACE_TYPE_HANDLED otherwise. This helper function
2163 * simplifies those functions and keeps them in sync.
2164 */
trace_handle_return(struct trace_seq * s)2165 enum print_line_t trace_handle_return(struct trace_seq *s)
2166 {
2167 return trace_seq_has_overflowed(s) ?
2168 TRACE_TYPE_PARTIAL_LINE : TRACE_TYPE_HANDLED;
2169 }
2170 EXPORT_SYMBOL_GPL(trace_handle_return);
2171
migration_disable_value(void)2172 static unsigned short migration_disable_value(void)
2173 {
2174 #if defined(CONFIG_SMP)
2175 return current->migration_disabled;
2176 #else
2177 return 0;
2178 #endif
2179 }
2180
tracing_gen_ctx_irq_test(unsigned int irqs_status)2181 unsigned int tracing_gen_ctx_irq_test(unsigned int irqs_status)
2182 {
2183 unsigned int trace_flags = irqs_status;
2184 unsigned int pc;
2185
2186 pc = preempt_count();
2187
2188 if (pc & NMI_MASK)
2189 trace_flags |= TRACE_FLAG_NMI;
2190 if (pc & HARDIRQ_MASK)
2191 trace_flags |= TRACE_FLAG_HARDIRQ;
2192 if (in_serving_softirq())
2193 trace_flags |= TRACE_FLAG_SOFTIRQ;
2194 if (softirq_count() >> (SOFTIRQ_SHIFT + 1))
2195 trace_flags |= TRACE_FLAG_BH_OFF;
2196
2197 if (tif_need_resched())
2198 trace_flags |= TRACE_FLAG_NEED_RESCHED;
2199 if (test_preempt_need_resched())
2200 trace_flags |= TRACE_FLAG_PREEMPT_RESCHED;
2201 if (IS_ENABLED(CONFIG_ARCH_HAS_PREEMPT_LAZY) && tif_test_bit(TIF_NEED_RESCHED_LAZY))
2202 trace_flags |= TRACE_FLAG_NEED_RESCHED_LAZY;
2203 return (trace_flags << 16) | (min_t(unsigned int, pc & 0xff, 0xf)) |
2204 (min_t(unsigned int, migration_disable_value(), 0xf)) << 4;
2205 }
2206
2207 struct ring_buffer_event *
trace_buffer_lock_reserve(struct trace_buffer * buffer,int type,unsigned long len,unsigned int trace_ctx)2208 trace_buffer_lock_reserve(struct trace_buffer *buffer,
2209 int type,
2210 unsigned long len,
2211 unsigned int trace_ctx)
2212 {
2213 return __trace_buffer_lock_reserve(buffer, type, len, trace_ctx);
2214 }
2215
2216 DEFINE_PER_CPU(struct ring_buffer_event *, trace_buffered_event);
2217 DEFINE_PER_CPU(int, trace_buffered_event_cnt);
2218 static int trace_buffered_event_ref;
2219
2220 /**
2221 * trace_buffered_event_enable - enable buffering events
2222 *
2223 * When events are being filtered, it is quicker to use a temporary
2224 * buffer to write the event data into if there's a likely chance
2225 * that it will not be committed. The discard of the ring buffer
2226 * is not as fast as committing, and is much slower than copying
2227 * a commit.
2228 *
2229 * When an event is to be filtered, allocate per cpu buffers to
2230 * write the event data into, and if the event is filtered and discarded
2231 * it is simply dropped, otherwise, the entire data is to be committed
2232 * in one shot.
2233 */
trace_buffered_event_enable(void)2234 void trace_buffered_event_enable(void)
2235 {
2236 struct ring_buffer_event *event;
2237 struct page *page;
2238 int cpu;
2239
2240 WARN_ON_ONCE(!mutex_is_locked(&event_mutex));
2241
2242 if (trace_buffered_event_ref++)
2243 return;
2244
2245 for_each_tracing_cpu(cpu) {
2246 page = alloc_pages_node(cpu_to_node(cpu),
2247 GFP_KERNEL | __GFP_NORETRY, 0);
2248 /* This is just an optimization and can handle failures */
2249 if (!page) {
2250 pr_err("Failed to allocate event buffer\n");
2251 break;
2252 }
2253
2254 event = page_address(page);
2255 memset(event, 0, sizeof(*event));
2256
2257 per_cpu(trace_buffered_event, cpu) = event;
2258
2259 scoped_guard(preempt,) {
2260 if (cpu == smp_processor_id() &&
2261 __this_cpu_read(trace_buffered_event) !=
2262 per_cpu(trace_buffered_event, cpu))
2263 WARN_ON_ONCE(1);
2264 }
2265 }
2266 }
2267
enable_trace_buffered_event(void * data)2268 static void enable_trace_buffered_event(void *data)
2269 {
2270 this_cpu_dec(trace_buffered_event_cnt);
2271 }
2272
disable_trace_buffered_event(void * data)2273 static void disable_trace_buffered_event(void *data)
2274 {
2275 this_cpu_inc(trace_buffered_event_cnt);
2276 }
2277
2278 /**
2279 * trace_buffered_event_disable - disable buffering events
2280 *
2281 * When a filter is removed, it is faster to not use the buffered
2282 * events, and to commit directly into the ring buffer. Free up
2283 * the temp buffers when there are no more users. This requires
2284 * special synchronization with current events.
2285 */
trace_buffered_event_disable(void)2286 void trace_buffered_event_disable(void)
2287 {
2288 int cpu;
2289
2290 WARN_ON_ONCE(!mutex_is_locked(&event_mutex));
2291
2292 if (WARN_ON_ONCE(!trace_buffered_event_ref))
2293 return;
2294
2295 if (--trace_buffered_event_ref)
2296 return;
2297
2298 /* For each CPU, set the buffer as used. */
2299 on_each_cpu_mask(tracing_buffer_mask, disable_trace_buffered_event,
2300 NULL, true);
2301
2302 /* Wait for all current users to finish */
2303 synchronize_rcu();
2304
2305 for_each_tracing_cpu(cpu) {
2306 free_page((unsigned long)per_cpu(trace_buffered_event, cpu));
2307 per_cpu(trace_buffered_event, cpu) = NULL;
2308 }
2309
2310 /*
2311 * Wait for all CPUs that potentially started checking if they can use
2312 * their event buffer only after the previous synchronize_rcu() call and
2313 * they still read a valid pointer from trace_buffered_event. It must be
2314 * ensured they don't see cleared trace_buffered_event_cnt else they
2315 * could wrongly decide to use the pointed-to buffer which is now freed.
2316 */
2317 synchronize_rcu();
2318
2319 /* For each CPU, relinquish the buffer */
2320 on_each_cpu_mask(tracing_buffer_mask, enable_trace_buffered_event, NULL,
2321 true);
2322 }
2323
2324 static struct trace_buffer *temp_buffer;
2325
2326 struct ring_buffer_event *
trace_event_buffer_lock_reserve(struct trace_buffer ** current_rb,struct trace_event_file * trace_file,int type,unsigned long len,unsigned int trace_ctx)2327 trace_event_buffer_lock_reserve(struct trace_buffer **current_rb,
2328 struct trace_event_file *trace_file,
2329 int type, unsigned long len,
2330 unsigned int trace_ctx)
2331 {
2332 struct ring_buffer_event *entry;
2333 struct trace_array *tr = trace_file->tr;
2334 int val;
2335
2336 *current_rb = tr->array_buffer.buffer;
2337
2338 if (!tr->no_filter_buffering_ref &&
2339 (trace_file->flags & (EVENT_FILE_FL_SOFT_DISABLED | EVENT_FILE_FL_FILTERED))) {
2340 preempt_disable_notrace();
2341 /*
2342 * Filtering is on, so try to use the per cpu buffer first.
2343 * This buffer will simulate a ring_buffer_event,
2344 * where the type_len is zero and the array[0] will
2345 * hold the full length.
2346 * (see include/linux/ring-buffer.h for details on
2347 * how the ring_buffer_event is structured).
2348 *
2349 * Using a temp buffer during filtering and copying it
2350 * on a matched filter is quicker than writing directly
2351 * into the ring buffer and then discarding it when
2352 * it doesn't match. That is because the discard
2353 * requires several atomic operations to get right.
2354 * Copying on match and doing nothing on a failed match
2355 * is still quicker than no copy on match, but having
2356 * to discard out of the ring buffer on a failed match.
2357 */
2358 if ((entry = __this_cpu_read(trace_buffered_event))) {
2359 int max_len = PAGE_SIZE - struct_size(entry, array, 1);
2360
2361 val = this_cpu_inc_return(trace_buffered_event_cnt);
2362
2363 /*
2364 * Preemption is disabled, but interrupts and NMIs
2365 * can still come in now. If that happens after
2366 * the above increment, then it will have to go
2367 * back to the old method of allocating the event
2368 * on the ring buffer, and if the filter fails, it
2369 * will have to call ring_buffer_discard_commit()
2370 * to remove it.
2371 *
2372 * Need to also check the unlikely case that the
2373 * length is bigger than the temp buffer size.
2374 * If that happens, then the reserve is pretty much
2375 * guaranteed to fail, as the ring buffer currently
2376 * only allows events less than a page. But that may
2377 * change in the future, so let the ring buffer reserve
2378 * handle the failure in that case.
2379 */
2380 if (val == 1 && likely(len <= max_len)) {
2381 trace_event_setup(entry, type, trace_ctx);
2382 entry->array[0] = len;
2383 /* Return with preemption disabled */
2384 return entry;
2385 }
2386 this_cpu_dec(trace_buffered_event_cnt);
2387 }
2388 /* __trace_buffer_lock_reserve() disables preemption */
2389 preempt_enable_notrace();
2390 }
2391
2392 entry = __trace_buffer_lock_reserve(*current_rb, type, len,
2393 trace_ctx);
2394 /*
2395 * If tracing is off, but we have triggers enabled
2396 * we still need to look at the event data. Use the temp_buffer
2397 * to store the trace event for the trigger to use. It's recursive
2398 * safe and will not be recorded anywhere.
2399 */
2400 if (!entry && trace_file->flags & EVENT_FILE_FL_TRIGGER_COND) {
2401 *current_rb = temp_buffer;
2402 entry = __trace_buffer_lock_reserve(*current_rb, type, len,
2403 trace_ctx);
2404 }
2405 return entry;
2406 }
2407 EXPORT_SYMBOL_GPL(trace_event_buffer_lock_reserve);
2408
2409 static DEFINE_RAW_SPINLOCK(tracepoint_iter_lock);
2410 static DEFINE_MUTEX(tracepoint_printk_mutex);
2411
output_printk(struct trace_event_buffer * fbuffer)2412 static void output_printk(struct trace_event_buffer *fbuffer)
2413 {
2414 struct trace_event_call *event_call;
2415 struct trace_event_file *file;
2416 struct trace_event *event;
2417 unsigned long flags;
2418 struct trace_iterator *iter = tracepoint_print_iter;
2419
2420 /* We should never get here if iter is NULL */
2421 if (WARN_ON_ONCE(!iter))
2422 return;
2423
2424 event_call = fbuffer->trace_file->event_call;
2425 if (!event_call || !event_call->event.funcs ||
2426 !event_call->event.funcs->trace)
2427 return;
2428
2429 file = fbuffer->trace_file;
2430 if (test_bit(EVENT_FILE_FL_SOFT_DISABLED_BIT, &file->flags) ||
2431 (unlikely(file->flags & EVENT_FILE_FL_FILTERED) &&
2432 !filter_match_preds(file->filter, fbuffer->entry)))
2433 return;
2434
2435 event = &fbuffer->trace_file->event_call->event;
2436
2437 raw_spin_lock_irqsave(&tracepoint_iter_lock, flags);
2438 trace_seq_init(&iter->seq);
2439 iter->ent = fbuffer->entry;
2440 event_call->event.funcs->trace(iter, 0, event);
2441 trace_seq_putc(&iter->seq, 0);
2442 printk("%s", iter->seq.buffer);
2443
2444 raw_spin_unlock_irqrestore(&tracepoint_iter_lock, flags);
2445 }
2446
tracepoint_printk_sysctl(const struct ctl_table * table,int write,void * buffer,size_t * lenp,loff_t * ppos)2447 int tracepoint_printk_sysctl(const struct ctl_table *table, int write,
2448 void *buffer, size_t *lenp,
2449 loff_t *ppos)
2450 {
2451 int save_tracepoint_printk;
2452 int ret;
2453
2454 guard(mutex)(&tracepoint_printk_mutex);
2455 save_tracepoint_printk = tracepoint_printk;
2456
2457 ret = proc_dointvec(table, write, buffer, lenp, ppos);
2458
2459 /*
2460 * This will force exiting early, as tracepoint_printk
2461 * is always zero when tracepoint_printk_iter is not allocated
2462 */
2463 if (!tracepoint_print_iter)
2464 tracepoint_printk = 0;
2465
2466 if (save_tracepoint_printk == tracepoint_printk)
2467 return ret;
2468
2469 if (tracepoint_printk)
2470 static_key_enable(&tracepoint_printk_key.key);
2471 else
2472 static_key_disable(&tracepoint_printk_key.key);
2473
2474 return ret;
2475 }
2476
trace_event_buffer_commit(struct trace_event_buffer * fbuffer)2477 void trace_event_buffer_commit(struct trace_event_buffer *fbuffer)
2478 {
2479 enum event_trigger_type tt = ETT_NONE;
2480 struct trace_event_file *file = fbuffer->trace_file;
2481
2482 if (__event_trigger_test_discard(file, fbuffer->buffer, fbuffer->event,
2483 fbuffer->entry, &tt))
2484 goto discard;
2485
2486 if (static_key_false(&tracepoint_printk_key.key))
2487 output_printk(fbuffer);
2488
2489 if (static_branch_unlikely(&trace_event_exports_enabled))
2490 ftrace_exports(fbuffer->event, TRACE_EXPORT_EVENT);
2491
2492 trace_buffer_unlock_commit_regs(file->tr, fbuffer->buffer,
2493 fbuffer->event, fbuffer->trace_ctx, fbuffer->regs);
2494
2495 discard:
2496 if (tt)
2497 event_triggers_post_call(file, tt);
2498
2499 }
2500 EXPORT_SYMBOL_GPL(trace_event_buffer_commit);
2501
2502 /*
2503 * Skip 3:
2504 *
2505 * trace_buffer_unlock_commit_regs()
2506 * trace_event_buffer_commit()
2507 * trace_event_raw_event_xxx()
2508 */
2509 # define STACK_SKIP 3
2510
trace_buffer_unlock_commit_regs(struct trace_array * tr,struct trace_buffer * buffer,struct ring_buffer_event * event,unsigned int trace_ctx,struct pt_regs * regs)2511 void trace_buffer_unlock_commit_regs(struct trace_array *tr,
2512 struct trace_buffer *buffer,
2513 struct ring_buffer_event *event,
2514 unsigned int trace_ctx,
2515 struct pt_regs *regs)
2516 {
2517 __buffer_unlock_commit(buffer, event);
2518
2519 /*
2520 * If regs is not set, then skip the necessary functions.
2521 * Note, we can still get here via blktrace, wakeup tracer
2522 * and mmiotrace, but that's ok if they lose a function or
2523 * two. They are not that meaningful.
2524 */
2525 ftrace_trace_stack(tr, buffer, trace_ctx, regs ? 0 : STACK_SKIP, regs);
2526 ftrace_trace_userstack(tr, buffer, trace_ctx);
2527 }
2528
2529 /*
2530 * Similar to trace_buffer_unlock_commit_regs() but do not dump stack.
2531 */
2532 void
trace_buffer_unlock_commit_nostack(struct trace_buffer * buffer,struct ring_buffer_event * event)2533 trace_buffer_unlock_commit_nostack(struct trace_buffer *buffer,
2534 struct ring_buffer_event *event)
2535 {
2536 __buffer_unlock_commit(buffer, event);
2537 }
2538
2539 void
trace_function(struct trace_array * tr,unsigned long ip,unsigned long parent_ip,unsigned int trace_ctx,struct ftrace_regs * fregs)2540 trace_function(struct trace_array *tr, unsigned long ip, unsigned long
2541 parent_ip, unsigned int trace_ctx, struct ftrace_regs *fregs)
2542 {
2543 struct trace_buffer *buffer = tr->array_buffer.buffer;
2544 struct ring_buffer_event *event;
2545 struct ftrace_entry *entry;
2546 int size = sizeof(*entry);
2547
2548 size += FTRACE_REGS_MAX_ARGS * !!fregs * sizeof(long);
2549
2550 event = __trace_buffer_lock_reserve(buffer, TRACE_FN, size,
2551 trace_ctx);
2552 if (!event)
2553 return;
2554 entry = ring_buffer_event_data(event);
2555 entry->ip = ip;
2556 entry->parent_ip = parent_ip;
2557
2558 #ifdef CONFIG_HAVE_FUNCTION_ARG_ACCESS_API
2559 if (fregs) {
2560 for (int i = 0; i < FTRACE_REGS_MAX_ARGS; i++)
2561 entry->args[i] = ftrace_regs_get_argument(fregs, i);
2562 }
2563 #endif
2564
2565 if (static_branch_unlikely(&trace_function_exports_enabled))
2566 ftrace_exports(event, TRACE_EXPORT_FUNCTION);
2567 __buffer_unlock_commit(buffer, event);
2568 }
2569
2570 #ifdef CONFIG_STACKTRACE
2571
2572 /* Allow 4 levels of nesting: normal, softirq, irq, NMI */
2573 #define FTRACE_KSTACK_NESTING 4
2574
2575 #define FTRACE_KSTACK_ENTRIES (SZ_4K / FTRACE_KSTACK_NESTING)
2576
2577 struct ftrace_stack {
2578 unsigned long calls[FTRACE_KSTACK_ENTRIES];
2579 };
2580
2581
2582 struct ftrace_stacks {
2583 struct ftrace_stack stacks[FTRACE_KSTACK_NESTING];
2584 };
2585
2586 static DEFINE_PER_CPU(struct ftrace_stacks, ftrace_stacks);
2587 static DEFINE_PER_CPU(int, ftrace_stack_reserve);
2588
__ftrace_trace_stack(struct trace_array * tr,struct trace_buffer * buffer,unsigned int trace_ctx,int skip,struct pt_regs * regs)2589 void __ftrace_trace_stack(struct trace_array *tr,
2590 struct trace_buffer *buffer,
2591 unsigned int trace_ctx,
2592 int skip, struct pt_regs *regs)
2593 {
2594 struct ring_buffer_event *event;
2595 unsigned int size, nr_entries;
2596 struct ftrace_stack *fstack;
2597 struct stack_entry *entry;
2598 int stackidx;
2599 int bit;
2600
2601 bit = trace_test_and_set_recursion(_THIS_IP_, _RET_IP_, TRACE_EVENT_START);
2602 if (bit < 0)
2603 return;
2604
2605 /*
2606 * Add one, for this function and the call to save_stack_trace()
2607 * If regs is set, then these functions will not be in the way.
2608 */
2609 #ifndef CONFIG_UNWINDER_ORC
2610 if (!regs)
2611 skip++;
2612 #endif
2613
2614 guard(preempt_notrace)();
2615
2616 stackidx = __this_cpu_inc_return(ftrace_stack_reserve) - 1;
2617
2618 /* This should never happen. If it does, yell once and skip */
2619 if (WARN_ON_ONCE(stackidx >= FTRACE_KSTACK_NESTING))
2620 goto out;
2621
2622 /*
2623 * The above __this_cpu_inc_return() is 'atomic' cpu local. An
2624 * interrupt will either see the value pre increment or post
2625 * increment. If the interrupt happens pre increment it will have
2626 * restored the counter when it returns. We just need a barrier to
2627 * keep gcc from moving things around.
2628 */
2629 barrier();
2630
2631 fstack = this_cpu_ptr(ftrace_stacks.stacks) + stackidx;
2632 size = ARRAY_SIZE(fstack->calls);
2633
2634 if (regs) {
2635 nr_entries = stack_trace_save_regs(regs, fstack->calls,
2636 size, skip);
2637 } else {
2638 nr_entries = stack_trace_save(fstack->calls, size, skip);
2639 }
2640
2641 #ifdef CONFIG_DYNAMIC_FTRACE
2642 /* Mark entry of stack trace as trampoline code */
2643 if (tr->ops && tr->ops->trampoline) {
2644 unsigned long tramp_start = tr->ops->trampoline;
2645 unsigned long tramp_end = tramp_start + tr->ops->trampoline_size;
2646 unsigned long *calls = fstack->calls;
2647
2648 for (int i = 0; i < nr_entries; i++) {
2649 if (calls[i] >= tramp_start && calls[i] < tramp_end)
2650 calls[i] = FTRACE_TRAMPOLINE_MARKER;
2651 }
2652 }
2653 #endif
2654
2655 event = __trace_buffer_lock_reserve(buffer, TRACE_STACK,
2656 struct_size(entry, caller, nr_entries),
2657 trace_ctx);
2658 if (!event)
2659 goto out;
2660 entry = ring_buffer_event_data(event);
2661
2662 entry->size = nr_entries;
2663 memcpy(&entry->caller, fstack->calls,
2664 flex_array_size(entry, caller, nr_entries));
2665
2666 __buffer_unlock_commit(buffer, event);
2667
2668 out:
2669 /* Again, don't let gcc optimize things here */
2670 barrier();
2671 __this_cpu_dec(ftrace_stack_reserve);
2672 trace_clear_recursion(bit);
2673 }
2674
__trace_stack(struct trace_array * tr,unsigned int trace_ctx,int skip)2675 void __trace_stack(struct trace_array *tr, unsigned int trace_ctx,
2676 int skip)
2677 {
2678 struct trace_buffer *buffer = tr->array_buffer.buffer;
2679
2680 if (rcu_is_watching()) {
2681 __ftrace_trace_stack(tr, buffer, trace_ctx, skip, NULL);
2682 return;
2683 }
2684
2685 if (WARN_ON_ONCE(IS_ENABLED(CONFIG_GENERIC_ENTRY)))
2686 return;
2687
2688 /*
2689 * When an NMI triggers, RCU is enabled via ct_nmi_enter(),
2690 * but if the above rcu_is_watching() failed, then the NMI
2691 * triggered someplace critical, and ct_irq_enter() should
2692 * not be called from NMI.
2693 */
2694 if (unlikely(in_nmi()))
2695 return;
2696
2697 ct_irq_enter_irqson();
2698 __ftrace_trace_stack(tr, buffer, trace_ctx, skip, NULL);
2699 ct_irq_exit_irqson();
2700 }
2701
2702 /**
2703 * trace_dump_stack - record a stack back trace in the trace buffer
2704 * @skip: Number of functions to skip (helper handlers)
2705 */
trace_dump_stack(int skip)2706 void trace_dump_stack(int skip)
2707 {
2708 if (tracing_disabled || tracing_selftest_running)
2709 return;
2710
2711 #ifndef CONFIG_UNWINDER_ORC
2712 /* Skip 1 to skip this function. */
2713 skip++;
2714 #endif
2715 __ftrace_trace_stack(printk_trace, printk_trace->array_buffer.buffer,
2716 tracing_gen_ctx(), skip, NULL);
2717 }
2718 EXPORT_SYMBOL_GPL(trace_dump_stack);
2719
2720 #ifdef CONFIG_USER_STACKTRACE_SUPPORT
2721 static DEFINE_PER_CPU(int, user_stack_count);
2722
2723 static void
ftrace_trace_userstack(struct trace_array * tr,struct trace_buffer * buffer,unsigned int trace_ctx)2724 ftrace_trace_userstack(struct trace_array *tr,
2725 struct trace_buffer *buffer, unsigned int trace_ctx)
2726 {
2727 struct ring_buffer_event *event;
2728 struct userstack_entry *entry;
2729
2730 if (!(tr->trace_flags & TRACE_ITER(USERSTACKTRACE)))
2731 return;
2732
2733 /*
2734 * NMIs can not handle page faults, even with fix ups.
2735 * The save user stack can (and often does) fault.
2736 */
2737 if (unlikely(in_nmi()))
2738 return;
2739
2740 /*
2741 * prevent recursion, since the user stack tracing may
2742 * trigger other kernel events.
2743 */
2744 guard(preempt)();
2745 if (__this_cpu_read(user_stack_count))
2746 return;
2747
2748 __this_cpu_inc(user_stack_count);
2749
2750 event = __trace_buffer_lock_reserve(buffer, TRACE_USER_STACK,
2751 sizeof(*entry), trace_ctx);
2752 if (!event)
2753 goto out_drop_count;
2754 entry = ring_buffer_event_data(event);
2755
2756 entry->tgid = current->tgid;
2757 memset(&entry->caller, 0, sizeof(entry->caller));
2758
2759 stack_trace_save_user(entry->caller, FTRACE_STACK_ENTRIES);
2760 __buffer_unlock_commit(buffer, event);
2761
2762 out_drop_count:
2763 __this_cpu_dec(user_stack_count);
2764 }
2765 #else /* CONFIG_USER_STACKTRACE_SUPPORT */
ftrace_trace_userstack(struct trace_array * tr,struct trace_buffer * buffer,unsigned int trace_ctx)2766 static void ftrace_trace_userstack(struct trace_array *tr,
2767 struct trace_buffer *buffer,
2768 unsigned int trace_ctx)
2769 {
2770 }
2771 #endif /* !CONFIG_USER_STACKTRACE_SUPPORT */
2772
2773 #endif /* CONFIG_STACKTRACE */
2774
2775 static inline void
func_repeats_set_delta_ts(struct func_repeats_entry * entry,unsigned long long delta)2776 func_repeats_set_delta_ts(struct func_repeats_entry *entry,
2777 unsigned long long delta)
2778 {
2779 entry->bottom_delta_ts = delta & U32_MAX;
2780 entry->top_delta_ts = (delta >> 32);
2781 }
2782
trace_last_func_repeats(struct trace_array * tr,struct trace_func_repeats * last_info,unsigned int trace_ctx)2783 void trace_last_func_repeats(struct trace_array *tr,
2784 struct trace_func_repeats *last_info,
2785 unsigned int trace_ctx)
2786 {
2787 struct trace_buffer *buffer = tr->array_buffer.buffer;
2788 struct func_repeats_entry *entry;
2789 struct ring_buffer_event *event;
2790 u64 delta;
2791
2792 event = __trace_buffer_lock_reserve(buffer, TRACE_FUNC_REPEATS,
2793 sizeof(*entry), trace_ctx);
2794 if (!event)
2795 return;
2796
2797 delta = ring_buffer_event_time_stamp(buffer, event) -
2798 last_info->ts_last_call;
2799
2800 entry = ring_buffer_event_data(event);
2801 entry->ip = last_info->ip;
2802 entry->parent_ip = last_info->parent_ip;
2803 entry->count = last_info->count;
2804 func_repeats_set_delta_ts(entry, delta);
2805
2806 __buffer_unlock_commit(buffer, event);
2807 }
2808
trace_iterator_increment(struct trace_iterator * iter)2809 static void trace_iterator_increment(struct trace_iterator *iter)
2810 {
2811 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, iter->cpu);
2812
2813 iter->idx++;
2814 if (buf_iter)
2815 ring_buffer_iter_advance(buf_iter);
2816 }
2817
2818 static struct trace_entry *
peek_next_entry(struct trace_iterator * iter,int cpu,u64 * ts,unsigned long * lost_events)2819 peek_next_entry(struct trace_iterator *iter, int cpu, u64 *ts,
2820 unsigned long *lost_events)
2821 {
2822 struct ring_buffer_event *event;
2823 struct ring_buffer_iter *buf_iter = trace_buffer_iter(iter, cpu);
2824
2825 if (buf_iter) {
2826 event = ring_buffer_iter_peek(buf_iter, ts);
2827 if (lost_events)
2828 *lost_events = ring_buffer_iter_dropped(buf_iter) ?
2829 (unsigned long)-1 : 0;
2830 } else {
2831 event = ring_buffer_peek(iter->array_buffer->buffer, cpu, ts,
2832 lost_events);
2833 }
2834
2835 if (event) {
2836 iter->ent_size = ring_buffer_event_length(event);
2837 return ring_buffer_event_data(event);
2838 }
2839 iter->ent_size = 0;
2840 return NULL;
2841 }
2842
2843 static struct trace_entry *
__find_next_entry(struct trace_iterator * iter,int * ent_cpu,unsigned long * missing_events,u64 * ent_ts)2844 __find_next_entry(struct trace_iterator *iter, int *ent_cpu,
2845 unsigned long *missing_events, u64 *ent_ts)
2846 {
2847 struct trace_buffer *buffer = iter->array_buffer->buffer;
2848 struct trace_entry *ent, *next = NULL;
2849 unsigned long lost_events = 0, next_lost = 0;
2850 int cpu_file = iter->cpu_file;
2851 u64 next_ts = 0, ts;
2852 int next_cpu = -1;
2853 int next_size = 0;
2854 int cpu;
2855
2856 /*
2857 * If we are in a per_cpu trace file, don't bother by iterating over
2858 * all cpu and peek directly.
2859 */
2860 if (cpu_file > RING_BUFFER_ALL_CPUS) {
2861 if (ring_buffer_empty_cpu(buffer, cpu_file))
2862 return NULL;
2863 ent = peek_next_entry(iter, cpu_file, ent_ts, missing_events);
2864 if (ent_cpu)
2865 *ent_cpu = cpu_file;
2866
2867 return ent;
2868 }
2869
2870 for_each_tracing_cpu(cpu) {
2871
2872 if (ring_buffer_empty_cpu(buffer, cpu))
2873 continue;
2874
2875 ent = peek_next_entry(iter, cpu, &ts, &lost_events);
2876
2877 /*
2878 * Pick the entry with the smallest timestamp:
2879 */
2880 if (ent && (!next || ts < next_ts)) {
2881 next = ent;
2882 next_cpu = cpu;
2883 next_ts = ts;
2884 next_lost = lost_events;
2885 next_size = iter->ent_size;
2886 }
2887 }
2888
2889 iter->ent_size = next_size;
2890
2891 if (ent_cpu)
2892 *ent_cpu = next_cpu;
2893
2894 if (ent_ts)
2895 *ent_ts = next_ts;
2896
2897 if (missing_events)
2898 *missing_events = next_lost;
2899
2900 return next;
2901 }
2902
2903 #define STATIC_FMT_BUF_SIZE 128
2904 static char static_fmt_buf[STATIC_FMT_BUF_SIZE];
2905
trace_iter_expand_format(struct trace_iterator * iter)2906 char *trace_iter_expand_format(struct trace_iterator *iter)
2907 {
2908 char *tmp;
2909
2910 /*
2911 * iter->tr is NULL when used with tp_printk, which makes
2912 * this get called where it is not safe to call krealloc().
2913 */
2914 if (!iter->tr || iter->fmt == static_fmt_buf)
2915 return NULL;
2916
2917 tmp = krealloc(iter->fmt, iter->fmt_size + STATIC_FMT_BUF_SIZE,
2918 GFP_KERNEL);
2919 if (tmp) {
2920 iter->fmt_size += STATIC_FMT_BUF_SIZE;
2921 iter->fmt = tmp;
2922 }
2923
2924 return tmp;
2925 }
2926
2927 /* Returns true if the string is safe to dereference from an event */
trace_safe_str(struct trace_iterator * iter,const char * str)2928 static bool trace_safe_str(struct trace_iterator *iter, const char *str)
2929 {
2930 unsigned long addr = (unsigned long)str;
2931 struct trace_event *trace_event;
2932 struct trace_event_call *event;
2933
2934 /* OK if part of the event data */
2935 if ((addr >= (unsigned long)iter->ent) &&
2936 (addr < (unsigned long)iter->ent + iter->ent_size))
2937 return true;
2938
2939 /* OK if part of the temp seq buffer */
2940 if ((addr >= (unsigned long)iter->tmp_seq.buffer) &&
2941 (addr < (unsigned long)iter->tmp_seq.buffer + TRACE_SEQ_BUFFER_SIZE))
2942 return true;
2943
2944 /* Core rodata can not be freed */
2945 if (is_kernel_rodata(addr))
2946 return true;
2947
2948 if (trace_is_tracepoint_string(str))
2949 return true;
2950
2951 /*
2952 * Now this could be a module event, referencing core module
2953 * data, which is OK.
2954 */
2955 if (!iter->ent)
2956 return false;
2957
2958 trace_event = ftrace_find_event(iter->ent->type);
2959 if (!trace_event)
2960 return false;
2961
2962 event = container_of(trace_event, struct trace_event_call, event);
2963 if ((event->flags & TRACE_EVENT_FL_DYNAMIC) || !event->module)
2964 return false;
2965
2966 /* Would rather have rodata, but this will suffice */
2967 if (within_module_core(addr, event->module))
2968 return true;
2969
2970 return false;
2971 }
2972
2973 /**
2974 * ignore_event - Check dereferenced fields while writing to the seq buffer
2975 * @iter: The iterator that holds the seq buffer and the event being printed
2976 *
2977 * At boot up, test_event_printk() will flag any event that dereferences
2978 * a string with "%s" that does exist in the ring buffer. It may still
2979 * be valid, as the string may point to a static string in the kernel
2980 * rodata that never gets freed. But if the string pointer is pointing
2981 * to something that was allocated, there's a chance that it can be freed
2982 * by the time the user reads the trace. This would cause a bad memory
2983 * access by the kernel and possibly crash the system.
2984 *
2985 * This function will check if the event has any fields flagged as needing
2986 * to be checked at runtime and perform those checks.
2987 *
2988 * If it is found that a field is unsafe, it will write into the @iter->seq
2989 * a message stating what was found to be unsafe.
2990 *
2991 * @return: true if the event is unsafe and should be ignored,
2992 * false otherwise.
2993 */
ignore_event(struct trace_iterator * iter)2994 bool ignore_event(struct trace_iterator *iter)
2995 {
2996 struct ftrace_event_field *field;
2997 struct trace_event *trace_event;
2998 struct trace_event_call *event;
2999 struct list_head *head;
3000 struct trace_seq *seq;
3001 const void *ptr;
3002
3003 trace_event = ftrace_find_event(iter->ent->type);
3004
3005 seq = &iter->seq;
3006
3007 if (!trace_event) {
3008 trace_seq_printf(seq, "EVENT ID %d NOT FOUND?\n", iter->ent->type);
3009 return true;
3010 }
3011
3012 event = container_of(trace_event, struct trace_event_call, event);
3013 if (!(event->flags & TRACE_EVENT_FL_TEST_STR))
3014 return false;
3015
3016 head = trace_get_fields(event);
3017 if (!head) {
3018 trace_seq_printf(seq, "FIELDS FOR EVENT '%s' NOT FOUND?\n",
3019 trace_event_name(event));
3020 return true;
3021 }
3022
3023 /* Offsets are from the iter->ent that points to the raw event */
3024 ptr = iter->ent;
3025
3026 list_for_each_entry(field, head, link) {
3027 const char *str;
3028 bool good;
3029
3030 if (!field->needs_test)
3031 continue;
3032
3033 str = *(const char **)(ptr + field->offset);
3034
3035 good = trace_safe_str(iter, str);
3036
3037 /*
3038 * If you hit this warning, it is likely that the
3039 * trace event in question used %s on a string that
3040 * was saved at the time of the event, but may not be
3041 * around when the trace is read. Use __string(),
3042 * __assign_str() and __get_str() helpers in the TRACE_EVENT()
3043 * instead. See samples/trace_events/trace-events-sample.h
3044 * for reference.
3045 */
3046 if (WARN_ONCE(!good, "event '%s' has unsafe pointer field '%s'",
3047 trace_event_name(event), field->name)) {
3048 trace_seq_printf(seq, "EVENT %s: HAS UNSAFE POINTER FIELD '%s'\n",
3049 trace_event_name(event), field->name);
3050 return true;
3051 }
3052 }
3053 return false;
3054 }
3055
trace_event_format(struct trace_iterator * iter,const char * fmt)3056 const char *trace_event_format(struct trace_iterator *iter, const char *fmt)
3057 {
3058 const char *p, *new_fmt;
3059 char *q;
3060
3061 if (WARN_ON_ONCE(!fmt))
3062 return fmt;
3063
3064 if (!iter->tr || iter->tr->trace_flags & TRACE_ITER(HASH_PTR))
3065 return fmt;
3066
3067 p = fmt;
3068 new_fmt = q = iter->fmt;
3069 while (*p) {
3070 if (unlikely(q - new_fmt + 3 > iter->fmt_size)) {
3071 if (!trace_iter_expand_format(iter))
3072 return fmt;
3073
3074 q += iter->fmt - new_fmt;
3075 new_fmt = iter->fmt;
3076 }
3077
3078 *q++ = *p++;
3079
3080 /* Replace %p with %px */
3081 if (p[-1] == '%') {
3082 if (p[0] == '%') {
3083 *q++ = *p++;
3084 } else if (p[0] == 'p' && !isalnum(p[1])) {
3085 *q++ = *p++;
3086 *q++ = 'x';
3087 }
3088 }
3089 }
3090 *q = '\0';
3091
3092 return new_fmt;
3093 }
3094
3095 #define STATIC_TEMP_BUF_SIZE 128
3096 static char static_temp_buf[STATIC_TEMP_BUF_SIZE] __aligned(4);
3097
3098 /* Find the next real entry, without updating the iterator itself */
trace_find_next_entry(struct trace_iterator * iter,int * ent_cpu,u64 * ent_ts)3099 struct trace_entry *trace_find_next_entry(struct trace_iterator *iter,
3100 int *ent_cpu, u64 *ent_ts)
3101 {
3102 /* __find_next_entry will reset ent_size */
3103 int ent_size = iter->ent_size;
3104 struct trace_entry *entry;
3105
3106 /*
3107 * If called from ftrace_dump(), then the iter->temp buffer
3108 * will be the static_temp_buf and not created from kmalloc.
3109 * If the entry size is greater than the buffer, we can
3110 * not save it. Just return NULL in that case. This is only
3111 * used to add markers when two consecutive events' time
3112 * stamps have a large delta. See trace_print_lat_context()
3113 */
3114 if (iter->temp == static_temp_buf &&
3115 STATIC_TEMP_BUF_SIZE < ent_size)
3116 return NULL;
3117
3118 /*
3119 * The __find_next_entry() may call peek_next_entry(), which may
3120 * call ring_buffer_peek() that may make the contents of iter->ent
3121 * undefined. Need to copy iter->ent now.
3122 */
3123 if (iter->ent && iter->ent != iter->temp) {
3124 if ((!iter->temp || iter->temp_size < iter->ent_size) &&
3125 !WARN_ON_ONCE(iter->temp == static_temp_buf)) {
3126 void *temp;
3127 temp = kmalloc(iter->ent_size, GFP_KERNEL);
3128 if (!temp)
3129 return NULL;
3130 kfree(iter->temp);
3131 iter->temp = temp;
3132 iter->temp_size = iter->ent_size;
3133 }
3134 memcpy(iter->temp, iter->ent, iter->ent_size);
3135 iter->ent = iter->temp;
3136 }
3137 entry = __find_next_entry(iter, ent_cpu, NULL, ent_ts);
3138 /* Put back the original ent_size */
3139 iter->ent_size = ent_size;
3140
3141 return entry;
3142 }
3143
3144 /* Find the next real entry, and increment the iterator to the next entry */
trace_find_next_entry_inc(struct trace_iterator * iter)3145 void *trace_find_next_entry_inc(struct trace_iterator *iter)
3146 {
3147 iter->ent = __find_next_entry(iter, &iter->cpu,
3148 &iter->lost_events, &iter->ts);
3149
3150 if (iter->ent)
3151 trace_iterator_increment(iter);
3152
3153 return iter->ent ? iter : NULL;
3154 }
3155
trace_consume(struct trace_iterator * iter)3156 static void trace_consume(struct trace_iterator *iter)
3157 {
3158 ring_buffer_consume(iter->array_buffer->buffer, iter->cpu, &iter->ts,
3159 &iter->lost_events);
3160 }
3161
s_next(struct seq_file * m,void * v,loff_t * pos)3162 static void *s_next(struct seq_file *m, void *v, loff_t *pos)
3163 {
3164 struct trace_iterator *iter = m->private;
3165 int i = (int)*pos;
3166 void *ent;
3167
3168 WARN_ON_ONCE(iter->leftover);
3169
3170 (*pos)++;
3171
3172 /* can't go backwards */
3173 if (iter->idx > i)
3174 return NULL;
3175
3176 if (iter->idx < 0)
3177 ent = trace_find_next_entry_inc(iter);
3178 else
3179 ent = iter;
3180
3181 while (ent && iter->idx < i)
3182 ent = trace_find_next_entry_inc(iter);
3183
3184 iter->pos = *pos;
3185
3186 return ent;
3187 }
3188
tracing_iter_reset(struct trace_iterator * iter,int cpu)3189 void tracing_iter_reset(struct trace_iterator *iter, int cpu)
3190 {
3191 struct ring_buffer_iter *buf_iter;
3192 unsigned long entries = 0;
3193 u64 ts;
3194
3195 per_cpu_ptr(iter->array_buffer->data, cpu)->skipped_entries = 0;
3196
3197 buf_iter = trace_buffer_iter(iter, cpu);
3198 if (!buf_iter)
3199 return;
3200
3201 ring_buffer_iter_reset(buf_iter);
3202
3203 /*
3204 * We could have the case with the max latency tracers
3205 * that a reset never took place on a cpu. This is evident
3206 * by the timestamp being before the start of the buffer.
3207 */
3208 while (ring_buffer_iter_peek(buf_iter, &ts)) {
3209 if (ts >= iter->array_buffer->time_start)
3210 break;
3211 entries++;
3212 ring_buffer_iter_advance(buf_iter);
3213 /* This could be a big loop */
3214 cond_resched();
3215 }
3216
3217 per_cpu_ptr(iter->array_buffer->data, cpu)->skipped_entries = entries;
3218 }
3219
3220 /*
3221 * The current tracer is copied to avoid a global locking
3222 * all around.
3223 */
s_start(struct seq_file * m,loff_t * pos)3224 static void *s_start(struct seq_file *m, loff_t *pos)
3225 {
3226 struct trace_iterator *iter = m->private;
3227 struct trace_array *tr = iter->tr;
3228 int cpu_file = iter->cpu_file;
3229 void *p = NULL;
3230 loff_t l = 0;
3231 int cpu;
3232
3233 mutex_lock(&trace_types_lock);
3234 if (unlikely(tr->current_trace != iter->trace)) {
3235 /* Close iter->trace before switching to the new current tracer */
3236 if (iter->trace->close)
3237 iter->trace->close(iter);
3238 iter->trace = tr->current_trace;
3239 /* Reopen the new current tracer */
3240 if (iter->trace->open)
3241 iter->trace->open(iter);
3242 }
3243 mutex_unlock(&trace_types_lock);
3244
3245 if (iter->snapshot && tracer_uses_snapshot(iter->trace))
3246 return ERR_PTR(-EBUSY);
3247
3248 if (*pos != iter->pos) {
3249 iter->ent = NULL;
3250 iter->cpu = 0;
3251 iter->idx = -1;
3252
3253 if (cpu_file == RING_BUFFER_ALL_CPUS) {
3254 for_each_tracing_cpu(cpu)
3255 tracing_iter_reset(iter, cpu);
3256 } else
3257 tracing_iter_reset(iter, cpu_file);
3258
3259 iter->leftover = 0;
3260 for (p = iter; p && l < *pos; p = s_next(m, p, &l))
3261 ;
3262
3263 } else {
3264 /*
3265 * If we overflowed the seq_file before, then we want
3266 * to just reuse the trace_seq buffer again.
3267 */
3268 if (iter->leftover)
3269 p = iter;
3270 else {
3271 l = *pos - 1;
3272 p = s_next(m, p, &l);
3273 }
3274 }
3275
3276 trace_event_read_lock();
3277 trace_access_lock(cpu_file);
3278 return p;
3279 }
3280
s_stop(struct seq_file * m,void * p)3281 static void s_stop(struct seq_file *m, void *p)
3282 {
3283 struct trace_iterator *iter = m->private;
3284
3285 if (iter->snapshot && tracer_uses_snapshot(iter->trace))
3286 return;
3287
3288 trace_access_unlock(iter->cpu_file);
3289 trace_event_read_unlock();
3290 }
3291
3292 static void
get_total_entries_cpu(struct array_buffer * buf,unsigned long * total,unsigned long * entries,int cpu)3293 get_total_entries_cpu(struct array_buffer *buf, unsigned long *total,
3294 unsigned long *entries, int cpu)
3295 {
3296 unsigned long count;
3297
3298 count = ring_buffer_entries_cpu(buf->buffer, cpu);
3299 /*
3300 * If this buffer has skipped entries, then we hold all
3301 * entries for the trace and we need to ignore the
3302 * ones before the time stamp.
3303 */
3304 if (per_cpu_ptr(buf->data, cpu)->skipped_entries) {
3305 count -= per_cpu_ptr(buf->data, cpu)->skipped_entries;
3306 /* total is the same as the entries */
3307 *total = count;
3308 } else
3309 *total = count +
3310 ring_buffer_overrun_cpu(buf->buffer, cpu);
3311 *entries = count;
3312 }
3313
3314 static void
get_total_entries(struct array_buffer * buf,unsigned long * total,unsigned long * entries)3315 get_total_entries(struct array_buffer *buf,
3316 unsigned long *total, unsigned long *entries)
3317 {
3318 unsigned long t, e;
3319 int cpu;
3320
3321 *total = 0;
3322 *entries = 0;
3323
3324 for_each_tracing_cpu(cpu) {
3325 get_total_entries_cpu(buf, &t, &e, cpu);
3326 *total += t;
3327 *entries += e;
3328 }
3329 }
3330
trace_total_entries_cpu(struct trace_array * tr,int cpu)3331 unsigned long trace_total_entries_cpu(struct trace_array *tr, int cpu)
3332 {
3333 unsigned long total, entries;
3334
3335 if (!tr)
3336 tr = &global_trace;
3337
3338 get_total_entries_cpu(&tr->array_buffer, &total, &entries, cpu);
3339
3340 return entries;
3341 }
3342
trace_total_entries(struct trace_array * tr)3343 unsigned long trace_total_entries(struct trace_array *tr)
3344 {
3345 unsigned long total, entries;
3346
3347 if (!tr)
3348 tr = &global_trace;
3349
3350 get_total_entries(&tr->array_buffer, &total, &entries);
3351
3352 return entries;
3353 }
3354
print_lat_help_header(struct seq_file * m)3355 static void print_lat_help_header(struct seq_file *m)
3356 {
3357 seq_puts(m, "# _------=> CPU# \n"
3358 "# / _-----=> irqs-off/BH-disabled\n"
3359 "# | / _----=> need-resched \n"
3360 "# || / _---=> hardirq/softirq \n"
3361 "# ||| / _--=> preempt-depth \n"
3362 "# |||| / _-=> migrate-disable \n"
3363 "# ||||| / delay \n"
3364 "# cmd pid |||||| time | caller \n"
3365 "# \\ / |||||| \\ | / \n");
3366 }
3367
print_event_info(struct array_buffer * buf,struct seq_file * m)3368 static void print_event_info(struct array_buffer *buf, struct seq_file *m)
3369 {
3370 unsigned long total;
3371 unsigned long entries;
3372
3373 get_total_entries(buf, &total, &entries);
3374 seq_printf(m, "# entries-in-buffer/entries-written: %lu/%lu #P:%d\n",
3375 entries, total, num_online_cpus());
3376 seq_puts(m, "#\n");
3377 }
3378
print_func_help_header(struct array_buffer * buf,struct seq_file * m,unsigned int flags)3379 static void print_func_help_header(struct array_buffer *buf, struct seq_file *m,
3380 unsigned int flags)
3381 {
3382 bool tgid = flags & TRACE_ITER(RECORD_TGID);
3383
3384 print_event_info(buf, m);
3385
3386 seq_printf(m, "# TASK-PID %s CPU# TIMESTAMP FUNCTION\n", tgid ? " TGID " : "");
3387 seq_printf(m, "# | | %s | | |\n", tgid ? " | " : "");
3388 }
3389
print_func_help_header_irq(struct array_buffer * buf,struct seq_file * m,unsigned int flags)3390 static void print_func_help_header_irq(struct array_buffer *buf, struct seq_file *m,
3391 unsigned int flags)
3392 {
3393 bool tgid = flags & TRACE_ITER(RECORD_TGID);
3394 static const char space[] = " ";
3395 int prec = tgid ? 12 : 2;
3396
3397 print_event_info(buf, m);
3398
3399 seq_printf(m, "# %.*s _-----=> irqs-off/BH-disabled\n", prec, space);
3400 seq_printf(m, "# %.*s / _----=> need-resched\n", prec, space);
3401 seq_printf(m, "# %.*s| / _---=> hardirq/softirq\n", prec, space);
3402 seq_printf(m, "# %.*s|| / _--=> preempt-depth\n", prec, space);
3403 seq_printf(m, "# %.*s||| / _-=> migrate-disable\n", prec, space);
3404 seq_printf(m, "# %.*s|||| / delay\n", prec, space);
3405 seq_printf(m, "# TASK-PID %.*s CPU# ||||| TIMESTAMP FUNCTION\n", prec, " TGID ");
3406 seq_printf(m, "# | | %.*s | ||||| | |\n", prec, " | ");
3407 }
3408
3409 void
print_trace_header(struct seq_file * m,struct trace_iterator * iter)3410 print_trace_header(struct seq_file *m, struct trace_iterator *iter)
3411 {
3412 unsigned long sym_flags = (global_trace.trace_flags & TRACE_ITER_SYM_MASK);
3413 struct array_buffer *buf = iter->array_buffer;
3414 struct trace_array_cpu *data = per_cpu_ptr(buf->data, buf->cpu);
3415 struct tracer *type = iter->trace;
3416 unsigned long entries;
3417 unsigned long total;
3418 const char *name = type->name;
3419
3420 get_total_entries(buf, &total, &entries);
3421
3422 seq_printf(m, "# %s latency trace v1.1.5 on %s\n",
3423 name, init_utsname()->release);
3424 seq_puts(m, "# -----------------------------------"
3425 "---------------------------------\n");
3426 seq_printf(m, "# latency: %lu us, #%lu/%lu, CPU#%d |"
3427 " (M:%s VP:%d, KP:%d, SP:%d HP:%d",
3428 nsecs_to_usecs(data->saved_latency),
3429 entries,
3430 total,
3431 buf->cpu,
3432 preempt_model_str(),
3433 /* These are reserved for later use */
3434 0, 0, 0, 0);
3435 #ifdef CONFIG_SMP
3436 seq_printf(m, " #P:%d)\n", num_online_cpus());
3437 #else
3438 seq_puts(m, ")\n");
3439 #endif
3440 seq_puts(m, "# -----------------\n");
3441 seq_printf(m, "# | task: %.16s-%d "
3442 "(uid:%d nice:%ld policy:%ld rt_prio:%ld)\n",
3443 data->comm, data->pid,
3444 from_kuid_munged(seq_user_ns(m), data->uid), data->nice,
3445 data->policy, data->rt_priority);
3446 seq_puts(m, "# -----------------\n");
3447
3448 if (data->critical_start) {
3449 seq_puts(m, "# => started at: ");
3450 seq_print_ip_sym(&iter->seq, data->critical_start, sym_flags);
3451 trace_print_seq(m, &iter->seq);
3452 seq_puts(m, "\n# => ended at: ");
3453 seq_print_ip_sym(&iter->seq, data->critical_end, sym_flags);
3454 trace_print_seq(m, &iter->seq);
3455 seq_puts(m, "\n#\n");
3456 }
3457
3458 seq_puts(m, "#\n");
3459 }
3460
test_cpu_buff_start(struct trace_iterator * iter)3461 static void test_cpu_buff_start(struct trace_iterator *iter)
3462 {
3463 struct trace_seq *s = &iter->seq;
3464 struct trace_array *tr = iter->tr;
3465
3466 if (!(tr->trace_flags & TRACE_ITER(ANNOTATE)))
3467 return;
3468
3469 if (!(iter->iter_flags & TRACE_FILE_ANNOTATE))
3470 return;
3471
3472 if (cpumask_available(iter->started) &&
3473 cpumask_test_cpu(iter->cpu, iter->started))
3474 return;
3475
3476 if (per_cpu_ptr(iter->array_buffer->data, iter->cpu)->skipped_entries)
3477 return;
3478
3479 if (cpumask_available(iter->started))
3480 cpumask_set_cpu(iter->cpu, iter->started);
3481
3482 /* Don't print started cpu buffer for the first entry of the trace */
3483 if (iter->idx > 1)
3484 trace_seq_printf(s, "##### CPU %u buffer started ####\n",
3485 iter->cpu);
3486 }
3487
3488 #ifdef CONFIG_FTRACE_SYSCALLS
is_syscall_event(struct trace_event * event)3489 static bool is_syscall_event(struct trace_event *event)
3490 {
3491 return (event->funcs == &enter_syscall_print_funcs) ||
3492 (event->funcs == &exit_syscall_print_funcs);
3493
3494 }
3495 #define syscall_buf_size CONFIG_TRACE_SYSCALL_BUF_SIZE_DEFAULT
3496 #else
is_syscall_event(struct trace_event * event)3497 static inline bool is_syscall_event(struct trace_event *event)
3498 {
3499 return false;
3500 }
3501 #define syscall_buf_size 0
3502 #endif /* CONFIG_FTRACE_SYSCALLS */
3503
print_trace_fmt(struct trace_iterator * iter)3504 static enum print_line_t print_trace_fmt(struct trace_iterator *iter)
3505 {
3506 struct trace_array *tr = iter->tr;
3507 struct trace_seq *s = &iter->seq;
3508 unsigned long sym_flags = (tr->trace_flags & TRACE_ITER_SYM_MASK);
3509 struct trace_entry *entry;
3510 struct trace_event *event;
3511
3512 entry = iter->ent;
3513
3514 test_cpu_buff_start(iter);
3515
3516 event = ftrace_find_event(entry->type);
3517
3518 if (tr->trace_flags & TRACE_ITER(CONTEXT_INFO)) {
3519 if (iter->iter_flags & TRACE_FILE_LAT_FMT)
3520 trace_print_lat_context(iter);
3521 else
3522 trace_print_context(iter);
3523 }
3524
3525 if (trace_seq_has_overflowed(s))
3526 return TRACE_TYPE_PARTIAL_LINE;
3527
3528 if (event) {
3529 if (tr->trace_flags & TRACE_ITER(FIELDS))
3530 return print_event_fields(iter, event);
3531 /*
3532 * For TRACE_EVENT() events, the print_fmt is not
3533 * safe to use if the array has delta offsets
3534 * Force printing via the fields.
3535 */
3536 if ((tr->text_delta)) {
3537 /* ftrace and system call events are still OK */
3538 if ((event->type > __TRACE_LAST_TYPE) &&
3539 !is_syscall_event(event))
3540 return print_event_fields(iter, event);
3541 }
3542 return event->funcs->trace(iter, sym_flags, event);
3543 }
3544
3545 trace_seq_printf(s, "Unknown type %d\n", entry->type);
3546
3547 return trace_handle_return(s);
3548 }
3549
print_raw_fmt(struct trace_iterator * iter)3550 static enum print_line_t print_raw_fmt(struct trace_iterator *iter)
3551 {
3552 struct trace_array *tr = iter->tr;
3553 struct trace_seq *s = &iter->seq;
3554 struct trace_entry *entry;
3555 struct trace_event *event;
3556
3557 entry = iter->ent;
3558
3559 if (tr->trace_flags & TRACE_ITER(CONTEXT_INFO))
3560 trace_seq_printf(s, "%d %d %llu ",
3561 entry->pid, iter->cpu, iter->ts);
3562
3563 if (trace_seq_has_overflowed(s))
3564 return TRACE_TYPE_PARTIAL_LINE;
3565
3566 event = ftrace_find_event(entry->type);
3567 if (event)
3568 return event->funcs->raw(iter, 0, event);
3569
3570 trace_seq_printf(s, "%d ?\n", entry->type);
3571
3572 return trace_handle_return(s);
3573 }
3574
print_hex_fmt(struct trace_iterator * iter)3575 static enum print_line_t print_hex_fmt(struct trace_iterator *iter)
3576 {
3577 struct trace_array *tr = iter->tr;
3578 struct trace_seq *s = &iter->seq;
3579 unsigned char newline = '\n';
3580 struct trace_entry *entry;
3581 struct trace_event *event;
3582
3583 entry = iter->ent;
3584
3585 if (tr->trace_flags & TRACE_ITER(CONTEXT_INFO)) {
3586 SEQ_PUT_HEX_FIELD(s, entry->pid);
3587 SEQ_PUT_HEX_FIELD(s, iter->cpu);
3588 SEQ_PUT_HEX_FIELD(s, iter->ts);
3589 if (trace_seq_has_overflowed(s))
3590 return TRACE_TYPE_PARTIAL_LINE;
3591 }
3592
3593 event = ftrace_find_event(entry->type);
3594 if (event) {
3595 enum print_line_t ret = event->funcs->hex(iter, 0, event);
3596 if (ret != TRACE_TYPE_HANDLED)
3597 return ret;
3598 }
3599
3600 SEQ_PUT_FIELD(s, newline);
3601
3602 return trace_handle_return(s);
3603 }
3604
print_bin_fmt(struct trace_iterator * iter)3605 static enum print_line_t print_bin_fmt(struct trace_iterator *iter)
3606 {
3607 struct trace_array *tr = iter->tr;
3608 struct trace_seq *s = &iter->seq;
3609 struct trace_entry *entry;
3610 struct trace_event *event;
3611
3612 entry = iter->ent;
3613
3614 if (tr->trace_flags & TRACE_ITER(CONTEXT_INFO)) {
3615 SEQ_PUT_FIELD(s, entry->pid);
3616 SEQ_PUT_FIELD(s, iter->cpu);
3617 SEQ_PUT_FIELD(s, iter->ts);
3618 if (trace_seq_has_overflowed(s))
3619 return TRACE_TYPE_PARTIAL_LINE;
3620 }
3621
3622 event = ftrace_find_event(entry->type);
3623 return event ? event->funcs->binary(iter, 0, event) :
3624 TRACE_TYPE_HANDLED;
3625 }
3626
trace_empty(struct trace_iterator * iter)3627 int trace_empty(struct trace_iterator *iter)
3628 {
3629 struct ring_buffer_iter *buf_iter;
3630 int cpu;
3631
3632 /* If we are looking at one CPU buffer, only check that one */
3633 if (iter->cpu_file != RING_BUFFER_ALL_CPUS) {
3634 cpu = iter->cpu_file;
3635 buf_iter = trace_buffer_iter(iter, cpu);
3636 if (buf_iter) {
3637 if (!ring_buffer_iter_empty(buf_iter))
3638 return 0;
3639 } else {
3640 if (!ring_buffer_empty_cpu(iter->array_buffer->buffer, cpu))
3641 return 0;
3642 }
3643 return 1;
3644 }
3645
3646 for_each_tracing_cpu(cpu) {
3647 buf_iter = trace_buffer_iter(iter, cpu);
3648 if (buf_iter) {
3649 if (!ring_buffer_iter_empty(buf_iter))
3650 return 0;
3651 } else {
3652 if (!ring_buffer_empty_cpu(iter->array_buffer->buffer, cpu))
3653 return 0;
3654 }
3655 }
3656
3657 return 1;
3658 }
3659
3660 /* Called with trace_event_read_lock() held. */
print_trace_line(struct trace_iterator * iter)3661 enum print_line_t print_trace_line(struct trace_iterator *iter)
3662 {
3663 struct trace_array *tr = iter->tr;
3664 unsigned long trace_flags = tr->trace_flags;
3665 enum print_line_t ret;
3666
3667 if (iter->lost_events) {
3668 if (iter->lost_events == (unsigned long)-1)
3669 trace_seq_printf(&iter->seq, "CPU:%d [LOST EVENTS]\n",
3670 iter->cpu);
3671 else
3672 trace_seq_printf(&iter->seq, "CPU:%d [LOST %lu EVENTS]\n",
3673 iter->cpu, iter->lost_events);
3674 if (trace_seq_has_overflowed(&iter->seq))
3675 return TRACE_TYPE_PARTIAL_LINE;
3676 }
3677
3678 if (iter->trace && iter->trace->print_line) {
3679 ret = iter->trace->print_line(iter);
3680 if (ret != TRACE_TYPE_UNHANDLED)
3681 return ret;
3682 }
3683
3684 if (iter->ent->type == TRACE_BPUTS &&
3685 trace_flags & TRACE_ITER(PRINTK) &&
3686 trace_flags & TRACE_ITER(PRINTK_MSGONLY))
3687 return trace_print_bputs_msg_only(iter);
3688
3689 if (iter->ent->type == TRACE_BPRINT &&
3690 trace_flags & TRACE_ITER(PRINTK) &&
3691 trace_flags & TRACE_ITER(PRINTK_MSGONLY))
3692 return trace_print_bprintk_msg_only(iter);
3693
3694 if (iter->ent->type == TRACE_PRINT &&
3695 trace_flags & TRACE_ITER(PRINTK) &&
3696 trace_flags & TRACE_ITER(PRINTK_MSGONLY))
3697 return trace_print_printk_msg_only(iter);
3698
3699 if (trace_flags & TRACE_ITER(BIN))
3700 return print_bin_fmt(iter);
3701
3702 if (trace_flags & TRACE_ITER(HEX))
3703 return print_hex_fmt(iter);
3704
3705 if (trace_flags & TRACE_ITER(RAW))
3706 return print_raw_fmt(iter);
3707
3708 return print_trace_fmt(iter);
3709 }
3710
trace_latency_header(struct seq_file * m)3711 void trace_latency_header(struct seq_file *m)
3712 {
3713 struct trace_iterator *iter = m->private;
3714 struct trace_array *tr = iter->tr;
3715
3716 /* print nothing if the buffers are empty */
3717 if (trace_empty(iter))
3718 return;
3719
3720 if (iter->iter_flags & TRACE_FILE_LAT_FMT)
3721 print_trace_header(m, iter);
3722
3723 if (!(tr->trace_flags & TRACE_ITER(VERBOSE)))
3724 print_lat_help_header(m);
3725 }
3726
trace_default_header(struct seq_file * m)3727 void trace_default_header(struct seq_file *m)
3728 {
3729 struct trace_iterator *iter = m->private;
3730 struct trace_array *tr = iter->tr;
3731 unsigned long trace_flags = tr->trace_flags;
3732
3733 if (!(trace_flags & TRACE_ITER(CONTEXT_INFO)))
3734 return;
3735
3736 if (iter->iter_flags & TRACE_FILE_LAT_FMT) {
3737 /* print nothing if the buffers are empty */
3738 if (trace_empty(iter))
3739 return;
3740 print_trace_header(m, iter);
3741 if (!(trace_flags & TRACE_ITER(VERBOSE)))
3742 print_lat_help_header(m);
3743 } else {
3744 if (!(trace_flags & TRACE_ITER(VERBOSE))) {
3745 if (trace_flags & TRACE_ITER(IRQ_INFO))
3746 print_func_help_header_irq(iter->array_buffer,
3747 m, trace_flags);
3748 else
3749 print_func_help_header(iter->array_buffer, m,
3750 trace_flags);
3751 }
3752 }
3753 }
3754
test_ftrace_alive(struct seq_file * m)3755 static void test_ftrace_alive(struct seq_file *m)
3756 {
3757 if (!ftrace_is_dead())
3758 return;
3759 seq_puts(m, "# WARNING: FUNCTION TRACING IS CORRUPTED\n"
3760 "# MAY BE MISSING FUNCTION EVENTS\n");
3761 }
3762
3763 #ifdef CONFIG_TRACER_SNAPSHOT
show_snapshot_main_help(struct seq_file * m)3764 static void show_snapshot_main_help(struct seq_file *m)
3765 {
3766 seq_puts(m, "# echo 0 > snapshot : Clears and frees snapshot buffer\n"
3767 "# echo 1 > snapshot : Allocates snapshot buffer, if not already allocated.\n"
3768 "# Takes a snapshot of the main buffer.\n"
3769 "# echo 2 > snapshot : Clears snapshot buffer (but does not allocate or free)\n"
3770 "# (Doesn't have to be '2' works with any number that\n"
3771 "# is not a '0' or '1')\n");
3772 }
3773
show_snapshot_percpu_help(struct seq_file * m)3774 static void show_snapshot_percpu_help(struct seq_file *m)
3775 {
3776 seq_puts(m, "# echo 0 > snapshot : Invalid for per_cpu snapshot file.\n");
3777 #ifdef CONFIG_RING_BUFFER_ALLOW_SWAP
3778 seq_puts(m, "# echo 1 > snapshot : Allocates snapshot buffer, if not already allocated.\n"
3779 "# Takes a snapshot of the main buffer for this cpu.\n");
3780 #else
3781 seq_puts(m, "# echo 1 > snapshot : Not supported with this kernel.\n"
3782 "# Must use main snapshot file to allocate.\n");
3783 #endif
3784 seq_puts(m, "# echo 2 > snapshot : Clears this cpu's snapshot buffer (but does not allocate)\n"
3785 "# (Doesn't have to be '2' works with any number that\n"
3786 "# is not a '0' or '1')\n");
3787 }
3788
print_snapshot_help(struct seq_file * m,struct trace_iterator * iter)3789 static void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter)
3790 {
3791 if (iter->tr->allocated_snapshot)
3792 seq_puts(m, "#\n# * Snapshot is allocated *\n#\n");
3793 else
3794 seq_puts(m, "#\n# * Snapshot is freed *\n#\n");
3795
3796 seq_puts(m, "# Snapshot commands:\n");
3797 if (iter->cpu_file == RING_BUFFER_ALL_CPUS)
3798 show_snapshot_main_help(m);
3799 else
3800 show_snapshot_percpu_help(m);
3801 }
3802 #else
3803 /* Should never be called */
print_snapshot_help(struct seq_file * m,struct trace_iterator * iter)3804 static inline void print_snapshot_help(struct seq_file *m, struct trace_iterator *iter) { }
3805 #endif
3806
s_show(struct seq_file * m,void * v)3807 static int s_show(struct seq_file *m, void *v)
3808 {
3809 struct trace_iterator *iter = v;
3810 int ret;
3811
3812 if (iter->ent == NULL) {
3813 if (iter->tr) {
3814 seq_printf(m, "# tracer: %s\n", iter->trace->name);
3815 seq_puts(m, "#\n");
3816 test_ftrace_alive(m);
3817 }
3818 if (iter->snapshot && trace_empty(iter))
3819 print_snapshot_help(m, iter);
3820 else if (iter->trace && iter->trace->print_header)
3821 iter->trace->print_header(m);
3822 else
3823 trace_default_header(m);
3824
3825 } else if (iter->leftover) {
3826 /*
3827 * If we filled the seq_file buffer earlier, we
3828 * want to just show it now.
3829 */
3830 ret = trace_print_seq(m, &iter->seq);
3831
3832 /* ret should this time be zero, but you never know */
3833 iter->leftover = ret;
3834
3835 } else {
3836 ret = print_trace_line(iter);
3837 if (ret == TRACE_TYPE_PARTIAL_LINE) {
3838 iter->seq.full = 0;
3839 trace_seq_puts(&iter->seq, "[LINE TOO BIG]\n");
3840 }
3841 ret = trace_print_seq(m, &iter->seq);
3842 /*
3843 * If we overflow the seq_file buffer, then it will
3844 * ask us for this data again at start up.
3845 * Use that instead.
3846 * ret is 0 if seq_file write succeeded.
3847 * -1 otherwise.
3848 */
3849 iter->leftover = ret;
3850 }
3851
3852 return 0;
3853 }
3854
3855 /*
3856 * Should be used after trace_array_get(), trace_types_lock
3857 * ensures that i_cdev was already initialized.
3858 */
tracing_get_cpu(struct inode * inode)3859 static inline int tracing_get_cpu(struct inode *inode)
3860 {
3861 if (inode->i_cdev) /* See trace_create_cpu_file() */
3862 return (long)inode->i_cdev - 1;
3863 return RING_BUFFER_ALL_CPUS;
3864 }
3865
3866 static const struct seq_operations tracer_seq_ops = {
3867 .start = s_start,
3868 .next = s_next,
3869 .stop = s_stop,
3870 .show = s_show,
3871 };
3872
3873 /*
3874 * Note, as iter itself can be allocated and freed in different
3875 * ways, this function is only used to free its content, and not
3876 * the iterator itself. The only requirement to all the allocations
3877 * is that it must zero all fields (kzalloc), as freeing works with
3878 * ethier allocated content or NULL.
3879 */
free_trace_iter_content(struct trace_iterator * iter)3880 static void free_trace_iter_content(struct trace_iterator *iter)
3881 {
3882 /* The fmt is either NULL, allocated or points to static_fmt_buf */
3883 if (iter->fmt != static_fmt_buf)
3884 kfree(iter->fmt);
3885
3886 kfree(iter->temp);
3887 kfree(iter->buffer_iter);
3888 mutex_destroy(&iter->mutex);
3889 free_cpumask_var(iter->started);
3890 }
3891
3892 static struct trace_iterator *
__tracing_open(struct inode * inode,struct file * file,bool snapshot)3893 __tracing_open(struct inode *inode, struct file *file, bool snapshot)
3894 {
3895 struct trace_array *tr = inode->i_private;
3896 struct trace_iterator *iter;
3897 int cpu;
3898
3899 if (tracing_disabled)
3900 return ERR_PTR(-ENODEV);
3901
3902 iter = __seq_open_private(file, &tracer_seq_ops, sizeof(*iter));
3903 if (!iter)
3904 return ERR_PTR(-ENOMEM);
3905
3906 iter->buffer_iter = kzalloc_objs(*iter->buffer_iter, nr_cpu_ids);
3907 if (!iter->buffer_iter)
3908 goto release;
3909
3910 /*
3911 * trace_find_next_entry() may need to save off iter->ent.
3912 * It will place it into the iter->temp buffer. As most
3913 * events are less than 128, allocate a buffer of that size.
3914 * If one is greater, then trace_find_next_entry() will
3915 * allocate a new buffer to adjust for the bigger iter->ent.
3916 * It's not critical if it fails to get allocated here.
3917 */
3918 iter->temp = kmalloc(128, GFP_KERNEL);
3919 if (iter->temp)
3920 iter->temp_size = 128;
3921
3922 /*
3923 * trace_event_printf() may need to modify given format
3924 * string to replace %p with %px so that it shows real address
3925 * instead of hash value. However, that is only for the event
3926 * tracing, other tracer may not need. Defer the allocation
3927 * until it is needed.
3928 */
3929 iter->fmt = NULL;
3930 iter->fmt_size = 0;
3931
3932 mutex_lock(&trace_types_lock);
3933 iter->trace = tr->current_trace;
3934
3935 if (!zalloc_cpumask_var(&iter->started, GFP_KERNEL))
3936 goto fail;
3937
3938 iter->tr = tr;
3939
3940 #ifdef CONFIG_TRACER_SNAPSHOT
3941 /* Currently only the top directory has a snapshot */
3942 if (tr->current_trace->print_max || snapshot)
3943 iter->array_buffer = &tr->snapshot_buffer;
3944 else
3945 #endif
3946 iter->array_buffer = &tr->array_buffer;
3947 iter->snapshot = snapshot;
3948 iter->pos = -1;
3949 iter->cpu_file = tracing_get_cpu(inode);
3950 mutex_init(&iter->mutex);
3951
3952 /* Notify the tracer early; before we stop tracing. */
3953 if (iter->trace->open)
3954 iter->trace->open(iter);
3955
3956 /* Annotate start of buffers if we had overruns */
3957 if (ring_buffer_overruns(iter->array_buffer->buffer))
3958 iter->iter_flags |= TRACE_FILE_ANNOTATE;
3959
3960 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
3961 if (trace_clocks[tr->clock_id].in_ns)
3962 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
3963
3964 /*
3965 * If pause-on-trace is enabled, then stop the trace while
3966 * dumping, unless this is the "snapshot" file
3967 */
3968 if (!iter->snapshot && (tr->trace_flags & TRACE_ITER(PAUSE_ON_TRACE))) {
3969 iter->iter_flags |= TRACE_FILE_PAUSE;
3970 tracing_stop_tr(tr);
3971 }
3972
3973 if (iter->cpu_file == RING_BUFFER_ALL_CPUS) {
3974 for_each_tracing_cpu(cpu) {
3975 iter->buffer_iter[cpu] =
3976 ring_buffer_read_start(iter->array_buffer->buffer,
3977 cpu, GFP_KERNEL);
3978 tracing_iter_reset(iter, cpu);
3979 }
3980 } else {
3981 cpu = iter->cpu_file;
3982 iter->buffer_iter[cpu] =
3983 ring_buffer_read_start(iter->array_buffer->buffer,
3984 cpu, GFP_KERNEL);
3985 tracing_iter_reset(iter, cpu);
3986 }
3987
3988 mutex_unlock(&trace_types_lock);
3989
3990 return iter;
3991
3992 fail:
3993 mutex_unlock(&trace_types_lock);
3994 free_trace_iter_content(iter);
3995 release:
3996 seq_release_private(inode, file);
3997 return ERR_PTR(-ENOMEM);
3998 }
3999
tracing_open_generic(struct inode * inode,struct file * filp)4000 int tracing_open_generic(struct inode *inode, struct file *filp)
4001 {
4002 int ret;
4003
4004 ret = tracing_check_open_get_tr(NULL);
4005 if (ret)
4006 return ret;
4007
4008 filp->private_data = inode->i_private;
4009 return 0;
4010 }
4011
4012 /*
4013 * Open and update trace_array ref count.
4014 * Must have the current trace_array passed to it.
4015 */
tracing_open_generic_tr(struct inode * inode,struct file * filp)4016 int tracing_open_generic_tr(struct inode *inode, struct file *filp)
4017 {
4018 struct trace_array *tr = inode->i_private;
4019 int ret;
4020
4021 ret = tracing_check_open_get_tr(tr);
4022 if (ret)
4023 return ret;
4024
4025 filp->private_data = inode->i_private;
4026
4027 return 0;
4028 }
4029
4030 /*
4031 * The private pointer of the inode is the trace_event_file.
4032 * Update the tr ref count associated to it.
4033 */
tracing_open_file_tr(struct inode * inode,struct file * filp)4034 int tracing_open_file_tr(struct inode *inode, struct file *filp)
4035 {
4036 struct trace_event_file *file = inode->i_private;
4037 int ret;
4038
4039 ret = tracing_check_open_get_tr(file->tr);
4040 if (ret)
4041 return ret;
4042
4043 guard(mutex)(&event_mutex);
4044
4045 /* Fail if the file is marked for removal */
4046 if (file->flags & EVENT_FILE_FL_FREED) {
4047 trace_array_put(file->tr);
4048 return -ENODEV;
4049 } else {
4050 event_file_get(file);
4051 }
4052
4053 filp->private_data = inode->i_private;
4054
4055 return 0;
4056 }
4057
tracing_release_file_tr(struct inode * inode,struct file * filp)4058 int tracing_release_file_tr(struct inode *inode, struct file *filp)
4059 {
4060 struct trace_event_file *file = inode->i_private;
4061
4062 trace_array_put(file->tr);
4063 event_file_put(file);
4064
4065 return 0;
4066 }
4067
tracing_single_release_file_tr(struct inode * inode,struct file * filp)4068 int tracing_single_release_file_tr(struct inode *inode, struct file *filp)
4069 {
4070 tracing_release_file_tr(inode, filp);
4071 return single_release(inode, filp);
4072 }
4073
tracing_release(struct inode * inode,struct file * file)4074 static int tracing_release(struct inode *inode, struct file *file)
4075 {
4076 struct trace_array *tr = inode->i_private;
4077 struct seq_file *m = file->private_data;
4078 struct trace_iterator *iter;
4079 int cpu;
4080
4081 if (!(file->f_mode & FMODE_READ)) {
4082 trace_array_put(tr);
4083 return 0;
4084 }
4085
4086 /* Writes do not use seq_file */
4087 iter = m->private;
4088 mutex_lock(&trace_types_lock);
4089
4090 for_each_tracing_cpu(cpu) {
4091 if (iter->buffer_iter[cpu])
4092 ring_buffer_read_finish(iter->buffer_iter[cpu]);
4093 }
4094
4095 if (iter->trace && iter->trace->close)
4096 iter->trace->close(iter);
4097
4098 if (iter->iter_flags & TRACE_FILE_PAUSE)
4099 /* reenable tracing if it was previously enabled */
4100 tracing_start_tr(tr);
4101
4102 __trace_array_put(tr);
4103
4104 mutex_unlock(&trace_types_lock);
4105
4106 free_trace_iter_content(iter);
4107 seq_release_private(inode, file);
4108
4109 return 0;
4110 }
4111
tracing_release_generic_tr(struct inode * inode,struct file * file)4112 int tracing_release_generic_tr(struct inode *inode, struct file *file)
4113 {
4114 struct trace_array *tr = inode->i_private;
4115
4116 trace_array_put(tr);
4117 return 0;
4118 }
4119
tracing_single_release_tr(struct inode * inode,struct file * file)4120 static int tracing_single_release_tr(struct inode *inode, struct file *file)
4121 {
4122 struct trace_array *tr = inode->i_private;
4123
4124 trace_array_put(tr);
4125
4126 return single_release(inode, file);
4127 }
4128
4129 static bool update_last_data_if_empty(struct trace_array *tr);
4130
tracing_open(struct inode * inode,struct file * file)4131 static int tracing_open(struct inode *inode, struct file *file)
4132 {
4133 struct trace_array *tr = inode->i_private;
4134 struct trace_iterator *iter;
4135 int ret;
4136
4137 ret = tracing_check_open_get_tr(tr);
4138 if (ret)
4139 return ret;
4140
4141 /* If this file was open for write, then erase contents */
4142 if ((file->f_mode & FMODE_WRITE) && (file->f_flags & O_TRUNC)) {
4143 int cpu = tracing_get_cpu(inode);
4144 struct array_buffer *trace_buf = &tr->array_buffer;
4145
4146 #ifdef CONFIG_TRACER_MAX_TRACE
4147 if (tr->current_trace->print_max)
4148 trace_buf = &tr->snapshot_buffer;
4149 #endif
4150
4151 if (cpu == RING_BUFFER_ALL_CPUS)
4152 tracing_reset_online_cpus(trace_buf);
4153 else
4154 tracing_reset_cpu(trace_buf, cpu);
4155
4156 update_last_data_if_empty(tr);
4157 }
4158
4159 if (file->f_mode & FMODE_READ) {
4160 iter = __tracing_open(inode, file, false);
4161 if (IS_ERR(iter))
4162 ret = PTR_ERR(iter);
4163 else if (tr->trace_flags & TRACE_ITER(LATENCY_FMT))
4164 iter->iter_flags |= TRACE_FILE_LAT_FMT;
4165 }
4166
4167 if (ret < 0)
4168 trace_array_put(tr);
4169
4170 return ret;
4171 }
4172
4173 /*
4174 * Some tracers are not suitable for instance buffers.
4175 * A tracer is always available for the global array (toplevel)
4176 * or if it explicitly states that it is.
4177 */
4178 static bool
trace_ok_for_array(struct tracer * t,struct trace_array * tr)4179 trace_ok_for_array(struct tracer *t, struct trace_array *tr)
4180 {
4181 /* arrays with mapped buffer range do not have snapshots */
4182 if (tr->range_addr_start && tracer_uses_snapshot(t))
4183 return false;
4184 return (tr->flags & TRACE_ARRAY_FL_GLOBAL) || t->allow_instances;
4185 }
4186
4187 /* Find the next tracer that this trace array may use */
4188 static struct tracer *
get_tracer_for_array(struct trace_array * tr,struct tracer * t)4189 get_tracer_for_array(struct trace_array *tr, struct tracer *t)
4190 {
4191 while (t && !trace_ok_for_array(t, tr))
4192 t = t->next;
4193
4194 return t;
4195 }
4196
4197 static void *
t_next(struct seq_file * m,void * v,loff_t * pos)4198 t_next(struct seq_file *m, void *v, loff_t *pos)
4199 {
4200 struct trace_array *tr = m->private;
4201 struct tracer *t = v;
4202
4203 (*pos)++;
4204
4205 if (t)
4206 t = get_tracer_for_array(tr, t->next);
4207
4208 return t;
4209 }
4210
t_start(struct seq_file * m,loff_t * pos)4211 static void *t_start(struct seq_file *m, loff_t *pos)
4212 {
4213 struct trace_array *tr = m->private;
4214 struct tracer *t;
4215 loff_t l = 0;
4216
4217 mutex_lock(&trace_types_lock);
4218
4219 t = get_tracer_for_array(tr, trace_types);
4220 for (; t && l < *pos; t = t_next(m, t, &l))
4221 ;
4222
4223 return t;
4224 }
4225
t_stop(struct seq_file * m,void * p)4226 static void t_stop(struct seq_file *m, void *p)
4227 {
4228 mutex_unlock(&trace_types_lock);
4229 }
4230
t_show(struct seq_file * m,void * v)4231 static int t_show(struct seq_file *m, void *v)
4232 {
4233 struct tracer *t = v;
4234
4235 if (!t)
4236 return 0;
4237
4238 seq_puts(m, t->name);
4239 if (t->next)
4240 seq_putc(m, ' ');
4241 else
4242 seq_putc(m, '\n');
4243
4244 return 0;
4245 }
4246
4247 static const struct seq_operations show_traces_seq_ops = {
4248 .start = t_start,
4249 .next = t_next,
4250 .stop = t_stop,
4251 .show = t_show,
4252 };
4253
show_traces_open(struct inode * inode,struct file * file)4254 static int show_traces_open(struct inode *inode, struct file *file)
4255 {
4256 struct trace_array *tr = inode->i_private;
4257 struct seq_file *m;
4258 int ret;
4259
4260 ret = tracing_check_open_get_tr(tr);
4261 if (ret)
4262 return ret;
4263
4264 ret = seq_open(file, &show_traces_seq_ops);
4265 if (ret) {
4266 trace_array_put(tr);
4267 return ret;
4268 }
4269
4270 m = file->private_data;
4271 m->private = tr;
4272
4273 return 0;
4274 }
4275
tracing_seq_release(struct inode * inode,struct file * file)4276 static int tracing_seq_release(struct inode *inode, struct file *file)
4277 {
4278 struct trace_array *tr = inode->i_private;
4279
4280 trace_array_put(tr);
4281 return seq_release(inode, file);
4282 }
4283
4284 static ssize_t
tracing_write_stub(struct file * filp,const char __user * ubuf,size_t count,loff_t * ppos)4285 tracing_write_stub(struct file *filp, const char __user *ubuf,
4286 size_t count, loff_t *ppos)
4287 {
4288 return count;
4289 }
4290
tracing_lseek(struct file * file,loff_t offset,int whence)4291 loff_t tracing_lseek(struct file *file, loff_t offset, int whence)
4292 {
4293 int ret;
4294
4295 if (file->f_mode & FMODE_READ)
4296 ret = seq_lseek(file, offset, whence);
4297 else
4298 file->f_pos = ret = 0;
4299
4300 return ret;
4301 }
4302
4303 static const struct file_operations tracing_fops = {
4304 .open = tracing_open,
4305 .read = seq_read,
4306 .read_iter = seq_read_iter,
4307 .splice_read = copy_splice_read,
4308 .write = tracing_write_stub,
4309 .llseek = tracing_lseek,
4310 .release = tracing_release,
4311 };
4312
4313 static const struct file_operations show_traces_fops = {
4314 .open = show_traces_open,
4315 .read = seq_read,
4316 .llseek = seq_lseek,
4317 .release = tracing_seq_release,
4318 };
4319
4320 static ssize_t
tracing_cpumask_read(struct file * filp,char __user * ubuf,size_t count,loff_t * ppos)4321 tracing_cpumask_read(struct file *filp, char __user *ubuf,
4322 size_t count, loff_t *ppos)
4323 {
4324 struct trace_array *tr = file_inode(filp)->i_private;
4325 char *mask_str __free(kfree) = NULL;
4326 int len;
4327
4328 len = snprintf(NULL, 0, "%*pb\n",
4329 cpumask_pr_args(tr->tracing_cpumask)) + 1;
4330 mask_str = kmalloc(len, GFP_KERNEL);
4331 if (!mask_str)
4332 return -ENOMEM;
4333
4334 len = snprintf(mask_str, len, "%*pb\n",
4335 cpumask_pr_args(tr->tracing_cpumask));
4336 if (len >= count)
4337 return -EINVAL;
4338
4339 return simple_read_from_buffer(ubuf, count, ppos, mask_str, len);
4340 }
4341
tracing_set_cpumask(struct trace_array * tr,cpumask_var_t tracing_cpumask_new)4342 int tracing_set_cpumask(struct trace_array *tr,
4343 cpumask_var_t tracing_cpumask_new)
4344 {
4345 int cpu;
4346
4347 if (!tr)
4348 return -EINVAL;
4349
4350 local_irq_disable();
4351 arch_spin_lock(&tr->max_lock);
4352 for_each_tracing_cpu(cpu) {
4353 /*
4354 * Increase/decrease the disabled counter if we are
4355 * about to flip a bit in the cpumask:
4356 */
4357 if (cpumask_test_cpu(cpu, tr->tracing_cpumask) &&
4358 !cpumask_test_cpu(cpu, tracing_cpumask_new)) {
4359 ring_buffer_record_disable_cpu(tr->array_buffer.buffer, cpu);
4360 #ifdef CONFIG_TRACER_SNAPSHOT
4361 ring_buffer_record_disable_cpu(tr->snapshot_buffer.buffer, cpu);
4362 #endif
4363 }
4364 if (!cpumask_test_cpu(cpu, tr->tracing_cpumask) &&
4365 cpumask_test_cpu(cpu, tracing_cpumask_new)) {
4366 ring_buffer_record_enable_cpu(tr->array_buffer.buffer, cpu);
4367 #ifdef CONFIG_TRACER_SNAPSHOT
4368 ring_buffer_record_enable_cpu(tr->snapshot_buffer.buffer, cpu);
4369 #endif
4370 }
4371 }
4372 arch_spin_unlock(&tr->max_lock);
4373 local_irq_enable();
4374
4375 cpumask_copy(tr->tracing_cpumask, tracing_cpumask_new);
4376
4377 return 0;
4378 }
4379
4380 static ssize_t
tracing_cpumask_write(struct file * filp,const char __user * ubuf,size_t count,loff_t * ppos)4381 tracing_cpumask_write(struct file *filp, const char __user *ubuf,
4382 size_t count, loff_t *ppos)
4383 {
4384 struct trace_array *tr = file_inode(filp)->i_private;
4385 cpumask_var_t tracing_cpumask_new;
4386 int err;
4387
4388 if (count == 0 || count > KMALLOC_MAX_SIZE)
4389 return -EINVAL;
4390
4391 if (!zalloc_cpumask_var(&tracing_cpumask_new, GFP_KERNEL))
4392 return -ENOMEM;
4393
4394 err = cpumask_parse_user(ubuf, count, tracing_cpumask_new);
4395 if (err)
4396 goto err_free;
4397
4398 err = tracing_set_cpumask(tr, tracing_cpumask_new);
4399 if (err)
4400 goto err_free;
4401
4402 free_cpumask_var(tracing_cpumask_new);
4403
4404 return count;
4405
4406 err_free:
4407 free_cpumask_var(tracing_cpumask_new);
4408
4409 return err;
4410 }
4411
4412 static const struct file_operations tracing_cpumask_fops = {
4413 .open = tracing_open_generic_tr,
4414 .read = tracing_cpumask_read,
4415 .write = tracing_cpumask_write,
4416 .release = tracing_release_generic_tr,
4417 .llseek = generic_file_llseek,
4418 };
4419
tracing_trace_options_show(struct seq_file * m,void * v)4420 static int tracing_trace_options_show(struct seq_file *m, void *v)
4421 {
4422 struct tracer_opt *trace_opts;
4423 struct trace_array *tr = m->private;
4424 struct tracer_flags *flags;
4425 u32 tracer_flags;
4426 int i;
4427
4428 guard(mutex)(&trace_types_lock);
4429
4430 for (i = 0; trace_options[i]; i++) {
4431 if (tr->trace_flags & (1ULL << i))
4432 seq_printf(m, "%s\n", trace_options[i]);
4433 else
4434 seq_printf(m, "no%s\n", trace_options[i]);
4435 }
4436
4437 flags = tr->current_trace_flags;
4438 if (!flags || !flags->opts)
4439 return 0;
4440
4441 tracer_flags = flags->val;
4442 trace_opts = flags->opts;
4443
4444 for (i = 0; trace_opts[i].name; i++) {
4445 if (tracer_flags & trace_opts[i].bit)
4446 seq_printf(m, "%s\n", trace_opts[i].name);
4447 else
4448 seq_printf(m, "no%s\n", trace_opts[i].name);
4449 }
4450
4451 return 0;
4452 }
4453
__set_tracer_option(struct trace_array * tr,struct tracer_flags * tracer_flags,struct tracer_opt * opts,int neg)4454 static int __set_tracer_option(struct trace_array *tr,
4455 struct tracer_flags *tracer_flags,
4456 struct tracer_opt *opts, int neg)
4457 {
4458 struct tracer *trace = tracer_flags->trace;
4459 int ret = 0;
4460
4461 if (trace->set_flag)
4462 ret = trace->set_flag(tr, tracer_flags->val, opts->bit, !neg);
4463 if (ret)
4464 return ret;
4465
4466 if (neg)
4467 tracer_flags->val &= ~opts->bit;
4468 else
4469 tracer_flags->val |= opts->bit;
4470 return 0;
4471 }
4472
4473 /* Try to assign a tracer specific option */
set_tracer_option(struct trace_array * tr,char * cmp,int neg)4474 static int set_tracer_option(struct trace_array *tr, char *cmp, int neg)
4475 {
4476 struct tracer_flags *tracer_flags = tr->current_trace_flags;
4477 struct tracer_opt *opts = NULL;
4478 int i;
4479
4480 if (!tracer_flags || !tracer_flags->opts)
4481 return 0;
4482
4483 for (i = 0; tracer_flags->opts[i].name; i++) {
4484 opts = &tracer_flags->opts[i];
4485
4486 if (strcmp(cmp, opts->name) == 0)
4487 return __set_tracer_option(tr, tracer_flags, opts, neg);
4488 }
4489
4490 return -EINVAL;
4491 }
4492
4493 /* Some tracers require overwrite to stay enabled */
trace_keep_overwrite(struct tracer * tracer,u64 mask,int set)4494 int trace_keep_overwrite(struct tracer *tracer, u64 mask, int set)
4495 {
4496 if (tracer->enabled && (mask & TRACE_ITER(OVERWRITE)) && !set)
4497 return -1;
4498
4499 return 0;
4500 }
4501
set_tracer_flag(struct trace_array * tr,u64 mask,int enabled)4502 int set_tracer_flag(struct trace_array *tr, u64 mask, int enabled)
4503 {
4504 switch (mask) {
4505 case TRACE_ITER(RECORD_TGID):
4506 case TRACE_ITER(RECORD_CMD):
4507 case TRACE_ITER(TRACE_PRINTK):
4508 case TRACE_ITER(COPY_MARKER):
4509 lockdep_assert_held(&event_mutex);
4510 }
4511
4512 /* do nothing if flag is already set */
4513 if (!!(tr->trace_flags & mask) == !!enabled)
4514 return 0;
4515
4516 /* Give the tracer a chance to approve the change */
4517 if (tr->current_trace->flag_changed)
4518 if (tr->current_trace->flag_changed(tr, mask, !!enabled))
4519 return -EINVAL;
4520
4521 switch (mask) {
4522 case TRACE_ITER(TRACE_PRINTK):
4523 if (enabled) {
4524 update_printk_trace(tr);
4525 } else {
4526 /*
4527 * The global_trace cannot clear this.
4528 * It's flag only gets cleared if another instance sets it.
4529 */
4530 if (printk_trace == &global_trace)
4531 return -EINVAL;
4532 /*
4533 * An instance must always have it set.
4534 * by default, that's the global_trace instance.
4535 */
4536 if (printk_trace == tr)
4537 update_printk_trace(&global_trace);
4538 }
4539 break;
4540
4541 case TRACE_ITER(COPY_MARKER):
4542 update_marker_trace(tr, enabled);
4543 /* update_marker_trace updates the tr->trace_flags */
4544 return 0;
4545 }
4546
4547 if (enabled)
4548 tr->trace_flags |= mask;
4549 else
4550 tr->trace_flags &= ~mask;
4551
4552 switch (mask) {
4553 case TRACE_ITER(RECORD_CMD):
4554 trace_event_enable_cmd_record(enabled);
4555 break;
4556
4557 case TRACE_ITER(RECORD_TGID):
4558
4559 if (trace_alloc_tgid_map() < 0) {
4560 tr->trace_flags &= ~TRACE_ITER(RECORD_TGID);
4561 return -ENOMEM;
4562 }
4563
4564 trace_event_enable_tgid_record(enabled);
4565 break;
4566
4567 case TRACE_ITER(EVENT_FORK):
4568 trace_event_follow_fork(tr, enabled);
4569 break;
4570
4571 case TRACE_ITER(FUNC_FORK):
4572 ftrace_pid_follow_fork(tr, enabled);
4573 break;
4574
4575 case TRACE_ITER(OVERWRITE):
4576 ring_buffer_change_overwrite(tr->array_buffer.buffer, enabled);
4577 #ifdef CONFIG_TRACER_SNAPSHOT
4578 ring_buffer_change_overwrite(tr->snapshot_buffer.buffer, enabled);
4579 #endif
4580 break;
4581
4582 case TRACE_ITER(PRINTK):
4583 trace_printk_start_stop_comm(enabled);
4584 trace_printk_control(enabled);
4585 break;
4586
4587 #if defined(CONFIG_FUNCTION_PROFILER) && defined(CONFIG_FUNCTION_GRAPH_TRACER)
4588 case TRACE_GRAPH_GRAPH_TIME:
4589 ftrace_graph_graph_time_control(enabled);
4590 break;
4591 #endif
4592 }
4593
4594 return 0;
4595 }
4596
trace_set_options(struct trace_array * tr,char * option)4597 int trace_set_options(struct trace_array *tr, char *option)
4598 {
4599 char *cmp;
4600 int neg = 0;
4601 int ret;
4602 size_t orig_len = strlen(option);
4603 int len;
4604
4605 cmp = strstrip(option);
4606
4607 len = str_has_prefix(cmp, "no");
4608 if (len)
4609 neg = 1;
4610
4611 cmp += len;
4612
4613 mutex_lock(&event_mutex);
4614 mutex_lock(&trace_types_lock);
4615
4616 ret = match_string(trace_options, -1, cmp);
4617 /* If no option could be set, test the specific tracer options */
4618 if (ret < 0)
4619 ret = set_tracer_option(tr, cmp, neg);
4620 else
4621 ret = set_tracer_flag(tr, 1ULL << ret, !neg);
4622
4623 mutex_unlock(&trace_types_lock);
4624 mutex_unlock(&event_mutex);
4625
4626 /*
4627 * If the first trailing whitespace is replaced with '\0' by strstrip,
4628 * turn it back into a space.
4629 */
4630 if (orig_len > strlen(option))
4631 option[strlen(option)] = ' ';
4632
4633 return ret;
4634 }
4635
apply_trace_boot_options(void)4636 static void __init apply_trace_boot_options(void)
4637 {
4638 char *buf = trace_boot_options_buf;
4639 char *option;
4640
4641 while (true) {
4642 option = strsep(&buf, ",");
4643
4644 if (!option)
4645 break;
4646
4647 if (*option)
4648 trace_set_options(&global_trace, option);
4649
4650 /* Put back the comma to allow this to be called again */
4651 if (buf)
4652 *(buf - 1) = ',';
4653 }
4654 }
4655
4656 static ssize_t
tracing_trace_options_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)4657 tracing_trace_options_write(struct file *filp, const char __user *ubuf,
4658 size_t cnt, loff_t *ppos)
4659 {
4660 struct seq_file *m = filp->private_data;
4661 struct trace_array *tr = m->private;
4662 char buf[64];
4663 int ret;
4664
4665 if (cnt >= sizeof(buf))
4666 return -EINVAL;
4667
4668 if (copy_from_user(buf, ubuf, cnt))
4669 return -EFAULT;
4670
4671 buf[cnt] = 0;
4672
4673 ret = trace_set_options(tr, buf);
4674 if (ret < 0)
4675 return ret;
4676
4677 *ppos += cnt;
4678
4679 return cnt;
4680 }
4681
tracing_trace_options_open(struct inode * inode,struct file * file)4682 static int tracing_trace_options_open(struct inode *inode, struct file *file)
4683 {
4684 struct trace_array *tr = inode->i_private;
4685 int ret;
4686
4687 ret = tracing_check_open_get_tr(tr);
4688 if (ret)
4689 return ret;
4690
4691 ret = single_open(file, tracing_trace_options_show, inode->i_private);
4692 if (ret < 0)
4693 trace_array_put(tr);
4694
4695 return ret;
4696 }
4697
4698 static const struct file_operations tracing_iter_fops = {
4699 .open = tracing_trace_options_open,
4700 .read = seq_read,
4701 .llseek = seq_lseek,
4702 .release = tracing_single_release_tr,
4703 .write = tracing_trace_options_write,
4704 };
4705
4706 static const char readme_msg[] =
4707 "tracing mini-HOWTO:\n\n"
4708 "By default tracefs removes all OTH file permission bits.\n"
4709 "When mounting tracefs an optional group id can be specified\n"
4710 "which adds the group to every directory and file in tracefs:\n\n"
4711 "\t e.g. mount -t tracefs [-o [gid=<gid>]] nodev /sys/kernel/tracing\n\n"
4712 "# echo 0 > tracing_on : quick way to disable tracing\n"
4713 "# echo 1 > tracing_on : quick way to re-enable tracing\n\n"
4714 " Important files:\n"
4715 " trace\t\t\t- The static contents of the buffer\n"
4716 "\t\t\t To clear the buffer write into this file: echo > trace\n"
4717 " trace_pipe\t\t- A consuming read to see the contents of the buffer\n"
4718 " current_tracer\t- function and latency tracers\n"
4719 " available_tracers\t- list of configured tracers for current_tracer\n"
4720 " error_log\t- error log for failed commands (that support it)\n"
4721 " buffer_size_kb\t- view and modify size of per cpu buffer\n"
4722 " buffer_total_size_kb - view total size of all cpu buffers\n\n"
4723 " trace_clock\t\t- change the clock used to order events\n"
4724 " local: Per cpu clock but may not be synced across CPUs\n"
4725 " global: Synced across CPUs but slows tracing down.\n"
4726 " counter: Not a clock, but just an increment\n"
4727 " uptime: Jiffy counter from time of boot\n"
4728 " perf: Same clock that perf events use\n"
4729 #ifdef CONFIG_X86_64
4730 " x86-tsc: TSC cycle counter\n"
4731 #endif
4732 "\n timestamp_mode\t- view the mode used to timestamp events\n"
4733 " delta: Delta difference against a buffer-wide timestamp\n"
4734 " absolute: Absolute (standalone) timestamp\n"
4735 "\n trace_marker\t\t- Writes into this file writes into the kernel buffer\n"
4736 "\n trace_marker_raw\t\t- Writes into this file writes binary data into the kernel buffer\n"
4737 " tracing_cpumask\t- Limit which CPUs to trace\n"
4738 " instances\t\t- Make sub-buffers with: mkdir instances/foo\n"
4739 "\t\t\t Remove sub-buffer with rmdir\n"
4740 " trace_options\t\t- Set format or modify how tracing happens\n"
4741 "\t\t\t Disable an option by prefixing 'no' to the\n"
4742 "\t\t\t option name\n"
4743 " saved_cmdlines_size\t- echo command number in here to store comm-pid list\n"
4744 #ifdef CONFIG_DYNAMIC_FTRACE
4745 "\n available_filter_functions - list of functions that can be filtered on\n"
4746 " set_ftrace_filter\t- echo function name in here to only trace these\n"
4747 "\t\t\t functions\n"
4748 "\t accepts: func_full_name or glob-matching-pattern\n"
4749 "\t modules: Can select a group via module\n"
4750 "\t Format: :mod:<module-name>\n"
4751 "\t example: echo :mod:ext3 > set_ftrace_filter\n"
4752 "\t triggers: a command to perform when function is hit\n"
4753 "\t Format: <function>:<trigger>[:count]\n"
4754 "\t trigger: traceon, traceoff\n"
4755 "\t\t enable_event:<system>:<event>\n"
4756 "\t\t disable_event:<system>:<event>\n"
4757 #ifdef CONFIG_STACKTRACE
4758 "\t\t stacktrace\n"
4759 #endif
4760 #ifdef CONFIG_TRACER_SNAPSHOT
4761 "\t\t snapshot\n"
4762 #endif
4763 "\t\t dump\n"
4764 "\t\t cpudump\n"
4765 "\t example: echo do_fault:traceoff > set_ftrace_filter\n"
4766 "\t echo do_trap:traceoff:3 > set_ftrace_filter\n"
4767 "\t The first one will disable tracing every time do_fault is hit\n"
4768 "\t The second will disable tracing at most 3 times when do_trap is hit\n"
4769 "\t The first time do trap is hit and it disables tracing, the\n"
4770 "\t counter will decrement to 2. If tracing is already disabled,\n"
4771 "\t the counter will not decrement. It only decrements when the\n"
4772 "\t trigger did work\n"
4773 "\t To remove trigger without count:\n"
4774 "\t echo '!<function>:<trigger> > set_ftrace_filter\n"
4775 "\t To remove trigger with a count:\n"
4776 "\t echo '!<function>:<trigger>:0 > set_ftrace_filter\n"
4777 " set_ftrace_notrace\t- echo function name in here to never trace.\n"
4778 "\t accepts: func_full_name, *func_end, func_begin*, *func_middle*\n"
4779 "\t modules: Can select a group via module command :mod:\n"
4780 "\t Does not accept triggers\n"
4781 #endif /* CONFIG_DYNAMIC_FTRACE */
4782 #ifdef CONFIG_FUNCTION_TRACER
4783 " set_ftrace_pid\t- Write pid(s) to only function trace those pids\n"
4784 "\t\t (function)\n"
4785 " set_ftrace_notrace_pid\t- Write pid(s) to not function trace those pids\n"
4786 "\t\t (function)\n"
4787 #endif
4788 #ifdef CONFIG_FUNCTION_GRAPH_TRACER
4789 " set_graph_function\t- Trace the nested calls of a function (function_graph)\n"
4790 " set_graph_notrace\t- Do not trace the nested calls of a function (function_graph)\n"
4791 " max_graph_depth\t- Trace a limited depth of nested calls (0 is unlimited)\n"
4792 #endif
4793 #ifdef CONFIG_TRACER_SNAPSHOT
4794 "\n snapshot\t\t- Like 'trace' but shows the content of the static\n"
4795 "\t\t\t snapshot buffer. Read the contents for more\n"
4796 "\t\t\t information\n"
4797 #endif
4798 #ifdef CONFIG_STACK_TRACER
4799 " stack_trace\t\t- Shows the max stack trace when active\n"
4800 " stack_max_size\t- Shows current max stack size that was traced\n"
4801 "\t\t\t Write into this file to reset the max size (trigger a\n"
4802 "\t\t\t new trace)\n"
4803 #ifdef CONFIG_DYNAMIC_FTRACE
4804 " stack_trace_filter\t- Like set_ftrace_filter but limits what stack_trace\n"
4805 "\t\t\t traces\n"
4806 #endif
4807 #endif /* CONFIG_STACK_TRACER */
4808 #ifdef CONFIG_DYNAMIC_EVENTS
4809 " dynamic_events\t\t- Create/append/remove/show the generic dynamic events\n"
4810 "\t\t\t Write into this file to define/undefine new trace events.\n"
4811 #endif
4812 #ifdef CONFIG_KPROBE_EVENTS
4813 " kprobe_events\t\t- Create/append/remove/show the kernel dynamic events\n"
4814 "\t\t\t Write into this file to define/undefine new trace events.\n"
4815 #endif
4816 #ifdef CONFIG_UPROBE_EVENTS
4817 " uprobe_events\t\t- Create/append/remove/show the userspace dynamic events\n"
4818 "\t\t\t Write into this file to define/undefine new trace events.\n"
4819 #endif
4820 #if defined(CONFIG_KPROBE_EVENTS) || defined(CONFIG_UPROBE_EVENTS) || \
4821 defined(CONFIG_FPROBE_EVENTS)
4822 "\t accepts: event-definitions (one definition per line)\n"
4823 #if defined(CONFIG_KPROBE_EVENTS) || defined(CONFIG_UPROBE_EVENTS)
4824 "\t Format: p[:[<group>/][<event>]] <place> [<args>]\n"
4825 "\t r[maxactive][:[<group>/][<event>]] <place> [<args>]\n"
4826 #endif
4827 #ifdef CONFIG_FPROBE_EVENTS
4828 "\t f[:[<group>/][<event>]] <func-name>[%return] [<args>]\n"
4829 "\t t[:[<group>/][<event>]] <tracepoint> [<args>]\n"
4830 #endif
4831 #ifdef CONFIG_HIST_TRIGGERS
4832 "\t s:[synthetic/]<event> <field> [<field>]\n"
4833 #endif
4834 "\t e[:[<group>/][<event>]] <attached-group>.<attached-event> [<args>] [if <filter>]\n"
4835 "\t -:[<group>/][<event>]\n"
4836 #ifdef CONFIG_KPROBE_EVENTS
4837 "\t place: [<module>:]<symbol>[+<offset>]|<memaddr>\n"
4838 "place (kretprobe): [<module>:]<symbol>[+<offset>]%return|<memaddr>\n"
4839 #endif
4840 #ifdef CONFIG_UPROBE_EVENTS
4841 " place (uprobe): <path>:<offset>[%return][(ref_ctr_offset)]\n"
4842 #endif
4843 "\t args: <name>=fetcharg[:type]\n"
4844 "\t fetcharg: (%<register>|$<efield>), @<address>, @<symbol>[+|-<offset>],\n"
4845 #ifdef CONFIG_HAVE_FUNCTION_ARG_ACCESS_API
4846 "\t $stack<index>, $stack, $retval, $comm, $arg<N>,\n"
4847 #ifdef CONFIG_PROBE_EVENTS_BTF_ARGS
4848 "\t <argname>[->field[->field|.field...]],\n"
4849 #endif
4850 #else
4851 "\t $stack<index>, $stack, $retval, $comm,\n"
4852 #endif
4853 "\t +|-[u]<offset>(<fetcharg>), \\imm-value, \\\"imm-string\"\n"
4854 "\t kernel return probes support: $retval, $arg<N>, $comm\n"
4855 "\t type: s8/16/32/64, u8/16/32/64, x8/16/32/64, char, string, symbol,\n"
4856 "\t b<bit-width>@<bit-offset>/<container-size>, ustring,\n"
4857 "\t symstr, %pd/%pD, <type>\\[<array-size>\\]\n"
4858 #ifdef CONFIG_HIST_TRIGGERS
4859 "\t field: <stype> <name>;\n"
4860 "\t stype: u8/u16/u32/u64, s8/s16/s32/s64, pid_t,\n"
4861 "\t [unsigned] char/int/long\n"
4862 #endif
4863 "\t efield: For event probes ('e' types), the field is on of the fields\n"
4864 "\t of the <attached-group>/<attached-event>.\n"
4865 #endif
4866 " set_event\t\t- Enables events by name written into it\n"
4867 "\t\t\t Can enable module events via: :mod:<module>\n"
4868 " events/\t\t- Directory containing all trace event subsystems:\n"
4869 " enable\t\t- Write 0/1 to enable/disable tracing of all events\n"
4870 " events/<system>/\t- Directory containing all trace events for <system>:\n"
4871 " enable\t\t- Write 0/1 to enable/disable tracing of all <system>\n"
4872 "\t\t\t events\n"
4873 " filter\t\t- If set, only events passing filter are traced\n"
4874 " events/<system>/<event>/\t- Directory containing control files for\n"
4875 "\t\t\t <event>:\n"
4876 " enable\t\t- Write 0/1 to enable/disable tracing of <event>\n"
4877 " filter\t\t- If set, only events passing filter are traced\n"
4878 " trigger\t\t- If set, a command to perform when event is hit\n"
4879 "\t Format: <trigger>[:count][if <filter>]\n"
4880 "\t trigger: traceon, traceoff\n"
4881 "\t enable_event:<system>:<event>\n"
4882 "\t disable_event:<system>:<event>\n"
4883 #ifdef CONFIG_HIST_TRIGGERS
4884 "\t enable_hist:<system>:<event>\n"
4885 "\t disable_hist:<system>:<event>\n"
4886 #endif
4887 #ifdef CONFIG_STACKTRACE
4888 "\t\t stacktrace\n"
4889 #endif
4890 #ifdef CONFIG_TRACER_SNAPSHOT
4891 "\t\t snapshot\n"
4892 #endif
4893 #ifdef CONFIG_HIST_TRIGGERS
4894 "\t\t hist (see below)\n"
4895 #endif
4896 "\t example: echo traceoff > events/block/block_unplug/trigger\n"
4897 "\t echo traceoff:3 > events/block/block_unplug/trigger\n"
4898 "\t echo 'enable_event:kmem:kmalloc:3 if nr_rq > 1' > \\\n"
4899 "\t events/block/block_unplug/trigger\n"
4900 "\t The first disables tracing every time block_unplug is hit.\n"
4901 "\t The second disables tracing the first 3 times block_unplug is hit.\n"
4902 "\t The third enables the kmalloc event the first 3 times block_unplug\n"
4903 "\t is hit and has value of greater than 1 for the 'nr_rq' event field.\n"
4904 "\t Like function triggers, the counter is only decremented if it\n"
4905 "\t enabled or disabled tracing.\n"
4906 "\t To remove a trigger without a count:\n"
4907 "\t echo '!<trigger> > <system>/<event>/trigger\n"
4908 "\t To remove a trigger with a count:\n"
4909 "\t echo '!<trigger>:0 > <system>/<event>/trigger\n"
4910 "\t Filters can be ignored when removing a trigger.\n"
4911 #ifdef CONFIG_HIST_TRIGGERS
4912 " hist trigger\t- If set, event hits are aggregated into a hash table\n"
4913 "\t Format: hist:keys=<field1[,field2,...]>\n"
4914 "\t [:<var1>=<field|var_ref|numeric_literal>[,<var2>=...]]\n"
4915 "\t [:values=<field1[,field2,...]>]\n"
4916 "\t [:sort=<field1[,field2,...]>]\n"
4917 "\t [:size=#entries]\n"
4918 "\t [:pause][:continue][:clear]\n"
4919 "\t [:name=histname1]\n"
4920 "\t [:nohitcount]\n"
4921 "\t [:<handler>.<action>]\n"
4922 "\t [if <filter>]\n\n"
4923 "\t Note, special fields can be used as well:\n"
4924 "\t common_timestamp - to record current timestamp\n"
4925 "\t common_cpu - to record the CPU the event happened on\n"
4926 "\n"
4927 "\t A hist trigger variable can be:\n"
4928 "\t - a reference to a field e.g. x=current_timestamp,\n"
4929 "\t - a reference to another variable e.g. y=$x,\n"
4930 "\t - a numeric literal: e.g. ms_per_sec=1000,\n"
4931 "\t - an arithmetic expression: e.g. time_secs=current_timestamp/1000\n"
4932 "\n"
4933 "\t hist trigger arithmetic expressions support addition(+), subtraction(-),\n"
4934 "\t multiplication(*) and division(/) operators. An operand can be either a\n"
4935 "\t variable reference, field or numeric literal.\n"
4936 "\n"
4937 "\t When a matching event is hit, an entry is added to a hash\n"
4938 "\t table using the key(s) and value(s) named, and the value of a\n"
4939 "\t sum called 'hitcount' is incremented. Keys and values\n"
4940 "\t correspond to fields in the event's format description. Keys\n"
4941 "\t can be any field, or the special string 'common_stacktrace'.\n"
4942 "\t Compound keys consisting of up to two fields can be specified\n"
4943 "\t by the 'keys' keyword. Values must correspond to numeric\n"
4944 "\t fields. Sort keys consisting of up to two fields can be\n"
4945 "\t specified using the 'sort' keyword. The sort direction can\n"
4946 "\t be modified by appending '.descending' or '.ascending' to a\n"
4947 "\t sort field. The 'size' parameter can be used to specify more\n"
4948 "\t or fewer than the default 2048 entries for the hashtable size.\n"
4949 "\t If a hist trigger is given a name using the 'name' parameter,\n"
4950 "\t its histogram data will be shared with other triggers of the\n"
4951 "\t same name, and trigger hits will update this common data.\n\n"
4952 "\t Reading the 'hist' file for the event will dump the hash\n"
4953 "\t table in its entirety to stdout. If there are multiple hist\n"
4954 "\t triggers attached to an event, there will be a table for each\n"
4955 "\t trigger in the output. The table displayed for a named\n"
4956 "\t trigger will be the same as any other instance having the\n"
4957 "\t same name. The default format used to display a given field\n"
4958 "\t can be modified by appending any of the following modifiers\n"
4959 "\t to the field name, as applicable:\n\n"
4960 "\t .hex display a number as a hex value\n"
4961 "\t .sym display an address as a symbol\n"
4962 "\t .sym-offset display an address as a symbol and offset\n"
4963 "\t .execname display a common_pid as a program name\n"
4964 "\t .syscall display a syscall id as a syscall name\n"
4965 "\t .log2 display log2 value rather than raw number\n"
4966 "\t .buckets=size display values in groups of size rather than raw number\n"
4967 "\t .usecs display a common_timestamp in microseconds\n"
4968 "\t .percent display a number of percentage value\n"
4969 "\t .graph display a bar-graph of a value\n\n"
4970 "\t The 'pause' parameter can be used to pause an existing hist\n"
4971 "\t trigger or to start a hist trigger but not log any events\n"
4972 "\t until told to do so. 'continue' can be used to start or\n"
4973 "\t restart a paused hist trigger.\n\n"
4974 "\t The 'clear' parameter will clear the contents of a running\n"
4975 "\t hist trigger and leave its current paused/active state\n"
4976 "\t unchanged.\n\n"
4977 "\t The 'nohitcount' (or NOHC) parameter will suppress display of\n"
4978 "\t raw hitcount in the histogram.\n\n"
4979 "\t The enable_hist and disable_hist triggers can be used to\n"
4980 "\t have one event conditionally start and stop another event's\n"
4981 "\t already-attached hist trigger. The syntax is analogous to\n"
4982 "\t the enable_event and disable_event triggers.\n\n"
4983 "\t Hist trigger handlers and actions are executed whenever a\n"
4984 "\t a histogram entry is added or updated. They take the form:\n\n"
4985 "\t <handler>.<action>\n\n"
4986 "\t The available handlers are:\n\n"
4987 "\t onmatch(matching.event) - invoke on addition or update\n"
4988 "\t onmax(var) - invoke if var exceeds current max\n"
4989 "\t onchange(var) - invoke action if var changes\n\n"
4990 "\t The available actions are:\n\n"
4991 "\t trace(<synthetic_event>,param list) - generate synthetic event\n"
4992 "\t save(field,...) - save current event fields\n"
4993 #ifdef CONFIG_TRACER_SNAPSHOT
4994 "\t snapshot() - snapshot the trace buffer\n\n"
4995 #endif
4996 #ifdef CONFIG_SYNTH_EVENTS
4997 " events/synthetic_events\t- Create/append/remove/show synthetic events\n"
4998 "\t Write into this file to define/undefine new synthetic events.\n"
4999 "\t example: echo 'myevent u64 lat; char name[]; long[] stack' >> synthetic_events\n"
5000 #endif
5001 #endif
5002 ;
5003
5004 static ssize_t
tracing_readme_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)5005 tracing_readme_read(struct file *filp, char __user *ubuf,
5006 size_t cnt, loff_t *ppos)
5007 {
5008 return simple_read_from_buffer(ubuf, cnt, ppos,
5009 readme_msg, strlen(readme_msg));
5010 }
5011
5012 static const struct file_operations tracing_readme_fops = {
5013 .open = tracing_open_generic,
5014 .read = tracing_readme_read,
5015 .llseek = generic_file_llseek,
5016 };
5017
5018 #ifdef CONFIG_TRACE_EVAL_MAP_FILE
5019 static union trace_eval_map_item *
update_eval_map(union trace_eval_map_item * ptr)5020 update_eval_map(union trace_eval_map_item *ptr)
5021 {
5022 if (!ptr->map.eval_string) {
5023 if (ptr->tail.next) {
5024 ptr = ptr->tail.next;
5025 /* Set ptr to the next real item (skip head) */
5026 ptr++;
5027 } else
5028 return NULL;
5029 }
5030 return ptr;
5031 }
5032
eval_map_next(struct seq_file * m,void * v,loff_t * pos)5033 static void *eval_map_next(struct seq_file *m, void *v, loff_t *pos)
5034 {
5035 union trace_eval_map_item *ptr = v;
5036
5037 /*
5038 * Paranoid! If ptr points to end, we don't want to increment past it.
5039 * This really should never happen.
5040 */
5041 (*pos)++;
5042 ptr = update_eval_map(ptr);
5043 if (WARN_ON_ONCE(!ptr))
5044 return NULL;
5045
5046 ptr++;
5047 ptr = update_eval_map(ptr);
5048
5049 return ptr;
5050 }
5051
eval_map_start(struct seq_file * m,loff_t * pos)5052 static void *eval_map_start(struct seq_file *m, loff_t *pos)
5053 {
5054 union trace_eval_map_item *v;
5055 loff_t l = 0;
5056
5057 mutex_lock(&trace_eval_mutex);
5058
5059 v = trace_eval_maps;
5060 if (v)
5061 v++;
5062
5063 while (v && l < *pos) {
5064 v = eval_map_next(m, v, &l);
5065 }
5066
5067 return v;
5068 }
5069
eval_map_stop(struct seq_file * m,void * v)5070 static void eval_map_stop(struct seq_file *m, void *v)
5071 {
5072 mutex_unlock(&trace_eval_mutex);
5073 }
5074
eval_map_show(struct seq_file * m,void * v)5075 static int eval_map_show(struct seq_file *m, void *v)
5076 {
5077 union trace_eval_map_item *ptr = v;
5078
5079 seq_printf(m, "%s %ld (%s)\n",
5080 ptr->map.eval_string, ptr->map.eval_value,
5081 ptr->map.system);
5082
5083 return 0;
5084 }
5085
5086 static const struct seq_operations tracing_eval_map_seq_ops = {
5087 .start = eval_map_start,
5088 .next = eval_map_next,
5089 .stop = eval_map_stop,
5090 .show = eval_map_show,
5091 };
5092
tracing_eval_map_open(struct inode * inode,struct file * filp)5093 static int tracing_eval_map_open(struct inode *inode, struct file *filp)
5094 {
5095 int ret;
5096
5097 ret = tracing_check_open_get_tr(NULL);
5098 if (ret)
5099 return ret;
5100
5101 return seq_open(filp, &tracing_eval_map_seq_ops);
5102 }
5103
5104 static const struct file_operations tracing_eval_map_fops = {
5105 .open = tracing_eval_map_open,
5106 .read = seq_read,
5107 .llseek = seq_lseek,
5108 .release = seq_release,
5109 };
5110
5111 static inline union trace_eval_map_item *
trace_eval_jmp_to_tail(union trace_eval_map_item * ptr)5112 trace_eval_jmp_to_tail(union trace_eval_map_item *ptr)
5113 {
5114 /* Return tail of array given the head */
5115 return ptr + ptr->head.length + 1;
5116 }
5117
5118 static void
trace_insert_eval_map_file(struct module * mod,struct trace_eval_map ** start,int len)5119 trace_insert_eval_map_file(struct module *mod, struct trace_eval_map **start,
5120 int len)
5121 {
5122 struct trace_eval_map **stop;
5123 struct trace_eval_map **map;
5124 union trace_eval_map_item *map_array;
5125 union trace_eval_map_item *ptr;
5126
5127 stop = start + len;
5128
5129 /*
5130 * The trace_eval_maps contains the map plus a head and tail item,
5131 * where the head holds the module and length of array, and the
5132 * tail holds a pointer to the next list.
5133 */
5134 map_array = kmalloc_objs(*map_array, len + 2);
5135 if (!map_array) {
5136 pr_warn("Unable to allocate trace eval mapping\n");
5137 return;
5138 }
5139
5140 guard(mutex)(&trace_eval_mutex);
5141
5142 if (!trace_eval_maps)
5143 trace_eval_maps = map_array;
5144 else {
5145 ptr = trace_eval_maps;
5146 for (;;) {
5147 ptr = trace_eval_jmp_to_tail(ptr);
5148 if (!ptr->tail.next)
5149 break;
5150 ptr = ptr->tail.next;
5151
5152 }
5153 ptr->tail.next = map_array;
5154 }
5155 map_array->head.mod = mod;
5156 map_array->head.length = len;
5157 map_array++;
5158
5159 for (map = start; (unsigned long)map < (unsigned long)stop; map++) {
5160 map_array->map = **map;
5161 map_array++;
5162 }
5163 memset(map_array, 0, sizeof(*map_array));
5164 }
5165
trace_create_eval_file(struct dentry * d_tracer)5166 static void trace_create_eval_file(struct dentry *d_tracer)
5167 {
5168 trace_create_file("eval_map", TRACE_MODE_READ, d_tracer,
5169 NULL, &tracing_eval_map_fops);
5170 }
5171
5172 #else /* CONFIG_TRACE_EVAL_MAP_FILE */
trace_create_eval_file(struct dentry * d_tracer)5173 static inline void trace_create_eval_file(struct dentry *d_tracer) { }
trace_insert_eval_map_file(struct module * mod,struct trace_eval_map ** start,int len)5174 static inline void trace_insert_eval_map_file(struct module *mod,
5175 struct trace_eval_map **start, int len) { }
5176 #endif /* !CONFIG_TRACE_EVAL_MAP_FILE */
5177
5178 static void
trace_event_update_with_eval_map(struct module * mod,struct trace_eval_map ** start,int len)5179 trace_event_update_with_eval_map(struct module *mod,
5180 struct trace_eval_map **start,
5181 int len)
5182 {
5183 struct trace_eval_map **map;
5184
5185 /* Always run sanitizer only if btf_type_tag attr exists. */
5186 if (len <= 0) {
5187 if (!(IS_ENABLED(CONFIG_DEBUG_INFO_BTF) &&
5188 IS_ENABLED(CONFIG_PAHOLE_HAS_BTF_TAG) &&
5189 __has_attribute(btf_type_tag)))
5190 return;
5191 }
5192
5193 map = start;
5194
5195 trace_event_update_all(map, len);
5196
5197 if (len <= 0)
5198 return;
5199
5200 trace_insert_eval_map_file(mod, start, len);
5201 }
5202
5203 static ssize_t
tracing_set_trace_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)5204 tracing_set_trace_read(struct file *filp, char __user *ubuf,
5205 size_t cnt, loff_t *ppos)
5206 {
5207 struct trace_array *tr = filp->private_data;
5208 char buf[MAX_TRACER_SIZE+2];
5209 int r;
5210
5211 scoped_guard(mutex, &trace_types_lock) {
5212 r = sprintf(buf, "%s\n", tr->current_trace->name);
5213 }
5214
5215 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
5216 }
5217
tracer_init(struct tracer * t,struct trace_array * tr)5218 int tracer_init(struct tracer *t, struct trace_array *tr)
5219 {
5220 tracing_reset_online_cpus(&tr->array_buffer);
5221 update_last_data_if_empty(tr);
5222 return t->init(tr);
5223 }
5224
set_buffer_entries(struct array_buffer * buf,unsigned long val)5225 static void set_buffer_entries(struct array_buffer *buf, unsigned long val)
5226 {
5227 int cpu;
5228
5229 for_each_tracing_cpu(cpu)
5230 per_cpu_ptr(buf->data, cpu)->entries = val;
5231 }
5232
update_buffer_entries(struct array_buffer * buf,int cpu)5233 static void update_buffer_entries(struct array_buffer *buf, int cpu)
5234 {
5235 if (cpu == RING_BUFFER_ALL_CPUS) {
5236 set_buffer_entries(buf, ring_buffer_size(buf->buffer, 0));
5237 } else {
5238 per_cpu_ptr(buf->data, cpu)->entries = ring_buffer_size(buf->buffer, cpu);
5239 }
5240 }
5241
5242 #ifdef CONFIG_TRACER_SNAPSHOT
5243 /* resize @tr's buffer to the size of @size_tr's entries */
resize_buffer_duplicate_size(struct array_buffer * trace_buf,struct array_buffer * size_buf,int cpu_id)5244 static int resize_buffer_duplicate_size(struct array_buffer *trace_buf,
5245 struct array_buffer *size_buf, int cpu_id)
5246 {
5247 int cpu, ret = 0;
5248
5249 if (cpu_id == RING_BUFFER_ALL_CPUS) {
5250 for_each_tracing_cpu(cpu) {
5251 ret = ring_buffer_resize(trace_buf->buffer,
5252 per_cpu_ptr(size_buf->data, cpu)->entries, cpu);
5253 if (ret < 0)
5254 break;
5255 per_cpu_ptr(trace_buf->data, cpu)->entries =
5256 per_cpu_ptr(size_buf->data, cpu)->entries;
5257 }
5258 } else {
5259 ret = ring_buffer_resize(trace_buf->buffer,
5260 per_cpu_ptr(size_buf->data, cpu_id)->entries, cpu_id);
5261 if (ret == 0)
5262 per_cpu_ptr(trace_buf->data, cpu_id)->entries =
5263 per_cpu_ptr(size_buf->data, cpu_id)->entries;
5264 }
5265
5266 return ret;
5267 }
5268 #endif /* CONFIG_TRACER_SNAPSHOT */
5269
__tracing_resize_ring_buffer(struct trace_array * tr,unsigned long size,int cpu)5270 static int __tracing_resize_ring_buffer(struct trace_array *tr,
5271 unsigned long size, int cpu)
5272 {
5273 int ret;
5274
5275 /*
5276 * If kernel or user changes the size of the ring buffer
5277 * we use the size that was given, and we can forget about
5278 * expanding it later.
5279 */
5280 trace_set_ring_buffer_expanded(tr);
5281
5282 /* May be called before buffers are initialized */
5283 if (!tr->array_buffer.buffer)
5284 return 0;
5285
5286 /* Do not allow tracing while resizing ring buffer */
5287 tracing_stop_tr(tr);
5288
5289 ret = ring_buffer_resize(tr->array_buffer.buffer, size, cpu);
5290 if (ret < 0)
5291 goto out_start;
5292
5293 #ifdef CONFIG_TRACER_SNAPSHOT
5294 if (!tr->allocated_snapshot)
5295 goto out;
5296
5297 ret = ring_buffer_resize(tr->snapshot_buffer.buffer, size, cpu);
5298 if (ret < 0) {
5299 int r = resize_buffer_duplicate_size(&tr->array_buffer,
5300 &tr->array_buffer, cpu);
5301 if (r < 0) {
5302 /*
5303 * AARGH! We are left with different
5304 * size max buffer!!!!
5305 * The max buffer is our "snapshot" buffer.
5306 * When a tracer needs a snapshot (one of the
5307 * latency tracers), it swaps the max buffer
5308 * with the saved snap shot. We succeeded to
5309 * update the size of the main buffer, but failed to
5310 * update the size of the max buffer. But when we tried
5311 * to reset the main buffer to the original size, we
5312 * failed there too. This is very unlikely to
5313 * happen, but if it does, warn and kill all
5314 * tracing.
5315 */
5316 WARN_ON(1);
5317 tracing_disabled = 1;
5318 }
5319 goto out_start;
5320 }
5321
5322 update_buffer_entries(&tr->snapshot_buffer, cpu);
5323
5324 out:
5325 #endif /* CONFIG_TRACER_SNAPSHOT */
5326
5327 update_buffer_entries(&tr->array_buffer, cpu);
5328 out_start:
5329 tracing_start_tr(tr);
5330 return ret;
5331 }
5332
tracing_resize_ring_buffer(struct trace_array * tr,unsigned long size,int cpu_id)5333 ssize_t tracing_resize_ring_buffer(struct trace_array *tr,
5334 unsigned long size, int cpu_id)
5335 {
5336 guard(mutex)(&trace_types_lock);
5337
5338 if (cpu_id != RING_BUFFER_ALL_CPUS) {
5339 /* make sure, this cpu is enabled in the mask */
5340 if (!cpumask_test_cpu(cpu_id, tracing_buffer_mask))
5341 return -EINVAL;
5342 }
5343
5344 return __tracing_resize_ring_buffer(tr, size, cpu_id);
5345 }
5346
5347 struct trace_mod_entry {
5348 unsigned long mod_addr;
5349 char mod_name[MODULE_NAME_LEN];
5350 };
5351
5352 struct trace_scratch {
5353 unsigned int clock_id;
5354 unsigned long text_addr;
5355 unsigned long nr_entries;
5356 struct trace_mod_entry entries[];
5357 };
5358
5359 static DEFINE_MUTEX(scratch_mutex);
5360
cmp_mod_entry(const void * key,const void * pivot)5361 static int cmp_mod_entry(const void *key, const void *pivot)
5362 {
5363 unsigned long addr = (unsigned long)key;
5364 const struct trace_mod_entry *ent = pivot;
5365
5366 if (addr < ent[0].mod_addr)
5367 return -1;
5368
5369 return addr >= ent[1].mod_addr;
5370 }
5371
5372 /**
5373 * trace_adjust_address() - Adjust prev boot address to current address.
5374 * @tr: Persistent ring buffer's trace_array.
5375 * @addr: Address in @tr which is adjusted.
5376 */
trace_adjust_address(struct trace_array * tr,unsigned long addr)5377 unsigned long trace_adjust_address(struct trace_array *tr, unsigned long addr)
5378 {
5379 struct trace_module_delta *module_delta;
5380 struct trace_scratch *tscratch;
5381 struct trace_mod_entry *entry;
5382 unsigned long raddr;
5383 int idx = 0, nr_entries;
5384
5385 /* If we don't have last boot delta, return the address */
5386 if (!(tr->flags & TRACE_ARRAY_FL_LAST_BOOT))
5387 return addr;
5388
5389 /* tr->module_delta must be protected by rcu. */
5390 guard(rcu)();
5391 tscratch = tr->scratch;
5392 /* if there is no tscrach, module_delta must be NULL. */
5393 module_delta = READ_ONCE(tr->module_delta);
5394 if (!module_delta || !tscratch->nr_entries ||
5395 tscratch->entries[0].mod_addr > addr) {
5396 raddr = addr + tr->text_delta;
5397 return __is_kernel(raddr) || is_kernel_core_data(raddr) ||
5398 is_kernel_rodata(raddr) ? raddr : addr;
5399 }
5400
5401 /* Note that entries must be sorted. */
5402 nr_entries = tscratch->nr_entries;
5403 if (nr_entries == 1 ||
5404 tscratch->entries[nr_entries - 1].mod_addr < addr)
5405 idx = nr_entries - 1;
5406 else {
5407 entry = __inline_bsearch((void *)addr,
5408 tscratch->entries,
5409 nr_entries - 1,
5410 sizeof(tscratch->entries[0]),
5411 cmp_mod_entry);
5412 if (entry)
5413 idx = entry - tscratch->entries;
5414 }
5415
5416 return addr + module_delta->delta[idx];
5417 }
5418
5419 #ifdef CONFIG_MODULES
save_mod(struct module * mod,void * data)5420 static int save_mod(struct module *mod, void *data)
5421 {
5422 struct trace_array *tr = data;
5423 struct trace_scratch *tscratch;
5424 struct trace_mod_entry *entry;
5425 unsigned int size;
5426
5427 tscratch = tr->scratch;
5428 if (!tscratch)
5429 return -1;
5430 size = tr->scratch_size;
5431
5432 if (struct_size(tscratch, entries, tscratch->nr_entries + 1) > size)
5433 return -1;
5434
5435 entry = &tscratch->entries[tscratch->nr_entries];
5436
5437 tscratch->nr_entries++;
5438
5439 entry->mod_addr = (unsigned long)mod->mem[MOD_TEXT].base;
5440 strscpy(entry->mod_name, mod->name);
5441
5442 return 0;
5443 }
5444 #else
save_mod(struct module * mod,void * data)5445 static int save_mod(struct module *mod, void *data)
5446 {
5447 return 0;
5448 }
5449 #endif
5450
update_last_data(struct trace_array * tr)5451 static void update_last_data(struct trace_array *tr)
5452 {
5453 struct trace_module_delta *module_delta;
5454 struct trace_scratch *tscratch;
5455
5456 if (!(tr->flags & TRACE_ARRAY_FL_BOOT))
5457 return;
5458
5459 if (!(tr->flags & TRACE_ARRAY_FL_LAST_BOOT))
5460 return;
5461
5462 /* Only if the buffer has previous boot data clear and update it. */
5463 tr->flags &= ~TRACE_ARRAY_FL_LAST_BOOT;
5464
5465 /* Reset the module list and reload them */
5466 if (tr->scratch) {
5467 struct trace_scratch *tscratch = tr->scratch;
5468
5469 tscratch->clock_id = tr->clock_id;
5470 memset(tscratch->entries, 0,
5471 flex_array_size(tscratch, entries, tscratch->nr_entries));
5472 tscratch->nr_entries = 0;
5473
5474 guard(mutex)(&scratch_mutex);
5475 module_for_each_mod(save_mod, tr);
5476 }
5477
5478 /*
5479 * Need to clear all CPU buffers as there cannot be events
5480 * from the previous boot mixed with events with this boot
5481 * as that will cause a confusing trace. Need to clear all
5482 * CPU buffers, even for those that may currently be offline.
5483 */
5484 tracing_reset_all_cpus(&tr->array_buffer);
5485
5486 /* Using current data now */
5487 tr->text_delta = 0;
5488
5489 if (!tr->scratch)
5490 return;
5491
5492 tscratch = tr->scratch;
5493 module_delta = READ_ONCE(tr->module_delta);
5494 WRITE_ONCE(tr->module_delta, NULL);
5495 kfree_rcu(module_delta, rcu);
5496
5497 /* Set the persistent ring buffer meta data to this address */
5498 tscratch->text_addr = (unsigned long)_text;
5499 }
5500
5501 /**
5502 * tracing_update_buffers - used by tracing facility to expand ring buffers
5503 * @tr: The tracing instance
5504 *
5505 * To save on memory when the tracing is never used on a system with it
5506 * configured in. The ring buffers are set to a minimum size. But once
5507 * a user starts to use the tracing facility, then they need to grow
5508 * to their default size.
5509 *
5510 * This function is to be called when a tracer is about to be used.
5511 */
tracing_update_buffers(struct trace_array * tr)5512 int tracing_update_buffers(struct trace_array *tr)
5513 {
5514 int ret = 0;
5515
5516 if (!tr)
5517 tr = &global_trace;
5518
5519 guard(mutex)(&trace_types_lock);
5520
5521 update_last_data(tr);
5522
5523 if (!tr->ring_buffer_expanded)
5524 ret = __tracing_resize_ring_buffer(tr, trace_buf_size,
5525 RING_BUFFER_ALL_CPUS);
5526 return ret;
5527 }
5528
5529 /*
5530 * Used to clear out the tracer before deletion of an instance.
5531 * Must have trace_types_lock held.
5532 */
tracing_set_nop(struct trace_array * tr)5533 static void tracing_set_nop(struct trace_array *tr)
5534 {
5535 if (tr->current_trace == &nop_trace)
5536 return;
5537
5538 tr->current_trace->enabled--;
5539
5540 if (tr->current_trace->reset)
5541 tr->current_trace->reset(tr);
5542
5543 tr->current_trace = &nop_trace;
5544 tr->current_trace_flags = nop_trace.flags;
5545 }
5546
5547 static bool tracer_options_updated;
5548
tracing_set_tracer(struct trace_array * tr,const char * buf)5549 int tracing_set_tracer(struct trace_array *tr, const char *buf)
5550 {
5551 struct tracer *trace = NULL;
5552 struct tracers *t;
5553 bool had_max_tr;
5554 int ret;
5555
5556 guard(mutex)(&trace_types_lock);
5557
5558 update_last_data(tr);
5559
5560 if (!tr->ring_buffer_expanded) {
5561 ret = __tracing_resize_ring_buffer(tr, trace_buf_size,
5562 RING_BUFFER_ALL_CPUS);
5563 if (ret < 0)
5564 return ret;
5565 ret = 0;
5566 }
5567
5568 list_for_each_entry(t, &tr->tracers, list) {
5569 if (strcmp(t->tracer->name, buf) == 0) {
5570 trace = t->tracer;
5571 break;
5572 }
5573 }
5574 if (!trace)
5575 return -EINVAL;
5576
5577 if (trace == tr->current_trace)
5578 return 0;
5579
5580 #ifdef CONFIG_TRACER_SNAPSHOT
5581 if (tracer_uses_snapshot(trace)) {
5582 local_irq_disable();
5583 arch_spin_lock(&tr->max_lock);
5584 ret = tr->cond_snapshot ? -EBUSY : 0;
5585 arch_spin_unlock(&tr->max_lock);
5586 local_irq_enable();
5587 if (ret)
5588 return ret;
5589 }
5590 #endif
5591 /* Some tracers won't work on kernel command line */
5592 if (system_state < SYSTEM_RUNNING && trace->noboot) {
5593 pr_warn("Tracer '%s' is not allowed on command line, ignored\n",
5594 trace->name);
5595 return -EINVAL;
5596 }
5597
5598 /* Some tracers are only allowed for the top level buffer */
5599 if (!trace_ok_for_array(trace, tr))
5600 return -EINVAL;
5601
5602 /* If trace pipe files are being read, we can't change the tracer */
5603 if (tr->trace_ref)
5604 return -EBUSY;
5605
5606 trace_branch_disable();
5607
5608 tr->current_trace->enabled--;
5609
5610 if (tr->current_trace->reset)
5611 tr->current_trace->reset(tr);
5612
5613 had_max_tr = tracer_uses_snapshot(tr->current_trace);
5614
5615 /* Current trace needs to be nop_trace before synchronize_rcu */
5616 tr->current_trace = &nop_trace;
5617 tr->current_trace_flags = nop_trace.flags;
5618
5619 if (had_max_tr && !tracer_uses_snapshot(trace)) {
5620 /*
5621 * We need to make sure that the update_max_tr sees that
5622 * current_trace changed to nop_trace to keep it from
5623 * swapping the buffers after we resize it.
5624 * The update_max_tr is called from interrupts disabled
5625 * so a synchronized_sched() is sufficient.
5626 */
5627 synchronize_rcu();
5628 free_snapshot(tr);
5629 tracing_disarm_snapshot(tr);
5630 }
5631
5632 if (!had_max_tr && tracer_uses_snapshot(trace)) {
5633 ret = tracing_arm_snapshot_locked(tr);
5634 if (ret)
5635 return ret;
5636 }
5637
5638 tr->current_trace_flags = t->flags ? : t->tracer->flags;
5639
5640 if (trace->init) {
5641 ret = tracer_init(trace, tr);
5642 if (ret) {
5643 if (tracer_uses_snapshot(trace))
5644 tracing_disarm_snapshot(tr);
5645 tr->current_trace_flags = nop_trace.flags;
5646 return ret;
5647 }
5648 }
5649
5650 tr->current_trace = trace;
5651 tr->current_trace->enabled++;
5652 trace_branch_enable(tr);
5653
5654 return 0;
5655 }
5656
5657 static ssize_t
tracing_set_trace_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)5658 tracing_set_trace_write(struct file *filp, const char __user *ubuf,
5659 size_t cnt, loff_t *ppos)
5660 {
5661 struct trace_array *tr = filp->private_data;
5662 char buf[MAX_TRACER_SIZE+1];
5663 char *name;
5664 size_t ret;
5665 int err;
5666
5667 ret = cnt;
5668
5669 if (cnt > MAX_TRACER_SIZE)
5670 cnt = MAX_TRACER_SIZE;
5671
5672 if (copy_from_user(buf, ubuf, cnt))
5673 return -EFAULT;
5674
5675 buf[cnt] = 0;
5676
5677 name = strim(buf);
5678
5679 err = tracing_set_tracer(tr, name);
5680 if (err)
5681 return err;
5682
5683 *ppos += ret;
5684
5685 return ret;
5686 }
5687
5688 static ssize_t
tracing_nsecs_read(unsigned long * ptr,char __user * ubuf,size_t cnt,loff_t * ppos)5689 tracing_nsecs_read(unsigned long *ptr, char __user *ubuf,
5690 size_t cnt, loff_t *ppos)
5691 {
5692 char buf[64];
5693 int r;
5694
5695 r = snprintf(buf, sizeof(buf), "%ld\n",
5696 *ptr == (unsigned long)-1 ? -1 : nsecs_to_usecs(*ptr));
5697 if (r > sizeof(buf))
5698 r = sizeof(buf);
5699 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
5700 }
5701
5702 static ssize_t
tracing_nsecs_write(unsigned long * ptr,const char __user * ubuf,size_t cnt,loff_t * ppos)5703 tracing_nsecs_write(unsigned long *ptr, const char __user *ubuf,
5704 size_t cnt, loff_t *ppos)
5705 {
5706 unsigned long val;
5707 int ret;
5708
5709 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
5710 if (ret)
5711 return ret;
5712
5713 *ptr = val * 1000;
5714
5715 return cnt;
5716 }
5717
5718 static ssize_t
tracing_thresh_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)5719 tracing_thresh_read(struct file *filp, char __user *ubuf,
5720 size_t cnt, loff_t *ppos)
5721 {
5722 return tracing_nsecs_read(&tracing_thresh, ubuf, cnt, ppos);
5723 }
5724
5725 static ssize_t
tracing_thresh_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)5726 tracing_thresh_write(struct file *filp, const char __user *ubuf,
5727 size_t cnt, loff_t *ppos)
5728 {
5729 struct trace_array *tr = filp->private_data;
5730 int ret;
5731
5732 guard(mutex)(&trace_types_lock);
5733 ret = tracing_nsecs_write(&tracing_thresh, ubuf, cnt, ppos);
5734 if (ret < 0)
5735 return ret;
5736
5737 if (tr->current_trace->update_thresh) {
5738 ret = tr->current_trace->update_thresh(tr);
5739 if (ret < 0)
5740 return ret;
5741 }
5742
5743 return cnt;
5744 }
5745
5746 #ifdef CONFIG_TRACER_MAX_TRACE
5747
5748 static ssize_t
tracing_max_lat_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)5749 tracing_max_lat_read(struct file *filp, char __user *ubuf,
5750 size_t cnt, loff_t *ppos)
5751 {
5752 struct trace_array *tr = filp->private_data;
5753
5754 return tracing_nsecs_read(&tr->max_latency, ubuf, cnt, ppos);
5755 }
5756
5757 static ssize_t
tracing_max_lat_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)5758 tracing_max_lat_write(struct file *filp, const char __user *ubuf,
5759 size_t cnt, loff_t *ppos)
5760 {
5761 struct trace_array *tr = filp->private_data;
5762
5763 return tracing_nsecs_write(&tr->max_latency, ubuf, cnt, ppos);
5764 }
5765
5766 #endif
5767
open_pipe_on_cpu(struct trace_array * tr,int cpu)5768 static int open_pipe_on_cpu(struct trace_array *tr, int cpu)
5769 {
5770 if (cpu == RING_BUFFER_ALL_CPUS) {
5771 if (cpumask_empty(tr->pipe_cpumask)) {
5772 cpumask_setall(tr->pipe_cpumask);
5773 return 0;
5774 }
5775 } else if (!cpumask_test_cpu(cpu, tr->pipe_cpumask)) {
5776 cpumask_set_cpu(cpu, tr->pipe_cpumask);
5777 return 0;
5778 }
5779 return -EBUSY;
5780 }
5781
close_pipe_on_cpu(struct trace_array * tr,int cpu)5782 static void close_pipe_on_cpu(struct trace_array *tr, int cpu)
5783 {
5784 if (cpu == RING_BUFFER_ALL_CPUS) {
5785 WARN_ON(!cpumask_full(tr->pipe_cpumask));
5786 cpumask_clear(tr->pipe_cpumask);
5787 } else {
5788 WARN_ON(!cpumask_test_cpu(cpu, tr->pipe_cpumask));
5789 cpumask_clear_cpu(cpu, tr->pipe_cpumask);
5790 }
5791 }
5792
tracing_open_pipe(struct inode * inode,struct file * filp)5793 static int tracing_open_pipe(struct inode *inode, struct file *filp)
5794 {
5795 struct trace_array *tr = inode->i_private;
5796 struct trace_iterator *iter;
5797 int cpu;
5798 int ret;
5799
5800 ret = tracing_check_open_get_tr(tr);
5801 if (ret)
5802 return ret;
5803
5804 guard(mutex)(&trace_types_lock);
5805 cpu = tracing_get_cpu(inode);
5806 ret = open_pipe_on_cpu(tr, cpu);
5807 if (ret)
5808 goto fail_pipe_on_cpu;
5809
5810 /* create a buffer to store the information to pass to userspace */
5811 iter = kzalloc_obj(*iter);
5812 if (!iter) {
5813 ret = -ENOMEM;
5814 goto fail_alloc_iter;
5815 }
5816
5817 trace_seq_init(&iter->seq);
5818 iter->trace = tr->current_trace;
5819
5820 if (!alloc_cpumask_var(&iter->started, GFP_KERNEL)) {
5821 ret = -ENOMEM;
5822 goto fail;
5823 }
5824
5825 /* trace pipe does not show start of buffer */
5826 cpumask_setall(iter->started);
5827
5828 if (tr->trace_flags & TRACE_ITER(LATENCY_FMT))
5829 iter->iter_flags |= TRACE_FILE_LAT_FMT;
5830
5831 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
5832 if (trace_clocks[tr->clock_id].in_ns)
5833 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
5834
5835 iter->tr = tr;
5836 iter->array_buffer = &tr->array_buffer;
5837 iter->cpu_file = cpu;
5838 mutex_init(&iter->mutex);
5839 filp->private_data = iter;
5840
5841 if (iter->trace->pipe_open)
5842 iter->trace->pipe_open(iter);
5843
5844 nonseekable_open(inode, filp);
5845
5846 tr->trace_ref++;
5847
5848 return ret;
5849
5850 fail:
5851 kfree(iter);
5852 fail_alloc_iter:
5853 close_pipe_on_cpu(tr, cpu);
5854 fail_pipe_on_cpu:
5855 __trace_array_put(tr);
5856 return ret;
5857 }
5858
tracing_release_pipe(struct inode * inode,struct file * file)5859 static int tracing_release_pipe(struct inode *inode, struct file *file)
5860 {
5861 struct trace_iterator *iter = file->private_data;
5862 struct trace_array *tr = inode->i_private;
5863
5864 scoped_guard(mutex, &trace_types_lock) {
5865 tr->trace_ref--;
5866
5867 if (iter->trace->pipe_close)
5868 iter->trace->pipe_close(iter);
5869 close_pipe_on_cpu(tr, iter->cpu_file);
5870 }
5871
5872 free_trace_iter_content(iter);
5873 kfree(iter);
5874
5875 trace_array_put(tr);
5876
5877 return 0;
5878 }
5879
5880 static __poll_t
trace_poll(struct trace_iterator * iter,struct file * filp,poll_table * poll_table)5881 trace_poll(struct trace_iterator *iter, struct file *filp, poll_table *poll_table)
5882 {
5883 struct trace_array *tr = iter->tr;
5884
5885 /* Iterators are static, they should be filled or empty */
5886 if (trace_buffer_iter(iter, iter->cpu_file))
5887 return EPOLLIN | EPOLLRDNORM;
5888
5889 if (tr->trace_flags & TRACE_ITER(BLOCK))
5890 /*
5891 * Always select as readable when in blocking mode
5892 */
5893 return EPOLLIN | EPOLLRDNORM;
5894 else
5895 return ring_buffer_poll_wait(iter->array_buffer->buffer, iter->cpu_file,
5896 filp, poll_table, iter->tr->buffer_percent);
5897 }
5898
5899 static __poll_t
tracing_poll_pipe(struct file * filp,poll_table * poll_table)5900 tracing_poll_pipe(struct file *filp, poll_table *poll_table)
5901 {
5902 struct trace_iterator *iter = filp->private_data;
5903
5904 return trace_poll(iter, filp, poll_table);
5905 }
5906
5907 /* Must be called with iter->mutex held. */
tracing_wait_pipe(struct file * filp)5908 static int tracing_wait_pipe(struct file *filp)
5909 {
5910 struct trace_iterator *iter = filp->private_data;
5911 int ret;
5912
5913 while (trace_empty(iter)) {
5914
5915 if ((filp->f_flags & O_NONBLOCK)) {
5916 return -EAGAIN;
5917 }
5918
5919 /*
5920 * We block until we read something and tracing is disabled.
5921 * We still block if tracing is disabled, but we have never
5922 * read anything. This allows a user to cat this file, and
5923 * then enable tracing. But after we have read something,
5924 * we give an EOF when tracing is again disabled.
5925 *
5926 * iter->pos will be 0 if we haven't read anything.
5927 */
5928 if (!tracer_tracing_is_on(iter->tr) && iter->pos)
5929 break;
5930
5931 mutex_unlock(&iter->mutex);
5932
5933 ret = wait_on_pipe(iter, 0);
5934
5935 mutex_lock(&iter->mutex);
5936
5937 if (ret)
5938 return ret;
5939 }
5940
5941 return 1;
5942 }
5943
update_last_data_if_empty(struct trace_array * tr)5944 static bool update_last_data_if_empty(struct trace_array *tr)
5945 {
5946 if (!(tr->flags & TRACE_ARRAY_FL_LAST_BOOT))
5947 return false;
5948
5949 if (!ring_buffer_empty(tr->array_buffer.buffer))
5950 return false;
5951
5952 /*
5953 * If the buffer contains the last boot data and all per-cpu
5954 * buffers are empty, reset it from the kernel side.
5955 */
5956 update_last_data(tr);
5957 return true;
5958 }
5959
5960 /*
5961 * Consumer reader.
5962 */
5963 static ssize_t
tracing_read_pipe(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)5964 tracing_read_pipe(struct file *filp, char __user *ubuf,
5965 size_t cnt, loff_t *ppos)
5966 {
5967 struct trace_iterator *iter = filp->private_data;
5968 ssize_t sret;
5969
5970 /*
5971 * Avoid more than one consumer on a single file descriptor
5972 * This is just a matter of traces coherency, the ring buffer itself
5973 * is protected.
5974 */
5975 guard(mutex)(&iter->mutex);
5976
5977 /* return any leftover data */
5978 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
5979 if (sret != -EBUSY)
5980 return sret;
5981
5982 trace_seq_init(&iter->seq);
5983
5984 if (iter->trace->read) {
5985 sret = iter->trace->read(iter, filp, ubuf, cnt, ppos);
5986 if (sret)
5987 return sret;
5988 }
5989
5990 waitagain:
5991 if (update_last_data_if_empty(iter->tr))
5992 return 0;
5993
5994 sret = tracing_wait_pipe(filp);
5995 if (sret <= 0)
5996 return sret;
5997
5998 /* stop when tracing is finished */
5999 if (trace_empty(iter))
6000 return 0;
6001
6002 if (cnt >= TRACE_SEQ_BUFFER_SIZE)
6003 cnt = TRACE_SEQ_BUFFER_SIZE - 1;
6004
6005 /* reset all but tr, trace, and overruns */
6006 trace_iterator_reset(iter);
6007 cpumask_clear(iter->started);
6008 trace_seq_init(&iter->seq);
6009
6010 trace_event_read_lock();
6011 trace_access_lock(iter->cpu_file);
6012 while (trace_find_next_entry_inc(iter) != NULL) {
6013 enum print_line_t ret;
6014 int save_len = iter->seq.seq.len;
6015
6016 ret = print_trace_line(iter);
6017 if (ret == TRACE_TYPE_PARTIAL_LINE) {
6018 /*
6019 * If one print_trace_line() fills entire trace_seq in one shot,
6020 * trace_seq_to_user() will returns -EBUSY because save_len == 0,
6021 * In this case, we need to consume it, otherwise, loop will peek
6022 * this event next time, resulting in an infinite loop.
6023 */
6024 if (save_len == 0) {
6025 iter->seq.full = 0;
6026 trace_seq_puts(&iter->seq, "[LINE TOO BIG]\n");
6027 trace_consume(iter);
6028 break;
6029 }
6030
6031 /* In other cases, don't print partial lines */
6032 iter->seq.seq.len = save_len;
6033 break;
6034 }
6035 if (ret != TRACE_TYPE_NO_CONSUME)
6036 trace_consume(iter);
6037
6038 if (trace_seq_used(&iter->seq) >= cnt)
6039 break;
6040
6041 /*
6042 * Setting the full flag means we reached the trace_seq buffer
6043 * size and we should leave by partial output condition above.
6044 * One of the trace_seq_* functions is not used properly.
6045 */
6046 WARN_ONCE(iter->seq.full, "full flag set for trace type %d",
6047 iter->ent->type);
6048 }
6049 trace_access_unlock(iter->cpu_file);
6050 trace_event_read_unlock();
6051
6052 /* Now copy what we have to the user */
6053 sret = trace_seq_to_user(&iter->seq, ubuf, cnt);
6054 if (iter->seq.readpos >= trace_seq_used(&iter->seq))
6055 trace_seq_init(&iter->seq);
6056
6057 /*
6058 * If there was nothing to send to user, in spite of consuming trace
6059 * entries, go back to wait for more entries.
6060 */
6061 if (sret == -EBUSY)
6062 goto waitagain;
6063
6064 return sret;
6065 }
6066
tracing_spd_release_pipe(struct splice_pipe_desc * spd,unsigned int idx)6067 static void tracing_spd_release_pipe(struct splice_pipe_desc *spd,
6068 unsigned int idx)
6069 {
6070 __free_page(spd->pages[idx]);
6071 }
6072
6073 static size_t
tracing_fill_pipe_page(size_t rem,struct trace_iterator * iter)6074 tracing_fill_pipe_page(size_t rem, struct trace_iterator *iter)
6075 {
6076 size_t count;
6077 int save_len;
6078 int ret;
6079
6080 /* Seq buffer is page-sized, exactly what we need. */
6081 for (;;) {
6082 save_len = iter->seq.seq.len;
6083 ret = print_trace_line(iter);
6084
6085 if (trace_seq_has_overflowed(&iter->seq)) {
6086 iter->seq.seq.len = save_len;
6087 break;
6088 }
6089
6090 /*
6091 * This should not be hit, because it should only
6092 * be set if the iter->seq overflowed. But check it
6093 * anyway to be safe.
6094 */
6095 if (ret == TRACE_TYPE_PARTIAL_LINE) {
6096 iter->seq.seq.len = save_len;
6097 break;
6098 }
6099
6100 count = trace_seq_used(&iter->seq) - save_len;
6101 if (rem < count) {
6102 rem = 0;
6103 iter->seq.seq.len = save_len;
6104 break;
6105 }
6106
6107 if (ret != TRACE_TYPE_NO_CONSUME)
6108 trace_consume(iter);
6109 rem -= count;
6110 if (!trace_find_next_entry_inc(iter)) {
6111 rem = 0;
6112 iter->ent = NULL;
6113 break;
6114 }
6115 }
6116
6117 return rem;
6118 }
6119
tracing_splice_read_pipe(struct file * filp,loff_t * ppos,struct pipe_inode_info * pipe,size_t len,unsigned int flags)6120 static ssize_t tracing_splice_read_pipe(struct file *filp,
6121 loff_t *ppos,
6122 struct pipe_inode_info *pipe,
6123 size_t len,
6124 unsigned int flags)
6125 {
6126 struct page *pages_def[PIPE_DEF_BUFFERS];
6127 struct partial_page partial_def[PIPE_DEF_BUFFERS];
6128 struct trace_iterator *iter = filp->private_data;
6129 struct splice_pipe_desc spd = {
6130 .pages = pages_def,
6131 .partial = partial_def,
6132 .nr_pages = 0, /* This gets updated below. */
6133 .nr_pages_max = PIPE_DEF_BUFFERS,
6134 .ops = &default_pipe_buf_ops,
6135 .spd_release = tracing_spd_release_pipe,
6136 };
6137 ssize_t ret;
6138 size_t rem;
6139 unsigned int i;
6140
6141 if (splice_grow_spd(pipe, &spd))
6142 return -ENOMEM;
6143
6144 mutex_lock(&iter->mutex);
6145
6146 if (iter->trace->splice_read) {
6147 ret = iter->trace->splice_read(iter, filp,
6148 ppos, pipe, len, flags);
6149 if (ret)
6150 goto out_err;
6151 }
6152
6153 ret = tracing_wait_pipe(filp);
6154 if (ret <= 0)
6155 goto out_err;
6156
6157 if (!iter->ent && !trace_find_next_entry_inc(iter)) {
6158 ret = -EFAULT;
6159 goto out_err;
6160 }
6161
6162 trace_event_read_lock();
6163 trace_access_lock(iter->cpu_file);
6164
6165 /* Fill as many pages as possible. */
6166 for (i = 0, rem = len; i < spd.nr_pages_max && rem; i++) {
6167 spd.pages[i] = alloc_page(GFP_KERNEL);
6168 if (!spd.pages[i])
6169 break;
6170
6171 rem = tracing_fill_pipe_page(rem, iter);
6172
6173 /* Copy the data into the page, so we can start over. */
6174 ret = trace_seq_to_buffer(&iter->seq,
6175 page_address(spd.pages[i]),
6176 min((size_t)trace_seq_used(&iter->seq),
6177 (size_t)PAGE_SIZE));
6178 if (ret < 0) {
6179 __free_page(spd.pages[i]);
6180 break;
6181 }
6182 spd.partial[i].offset = 0;
6183 spd.partial[i].len = ret;
6184
6185 trace_seq_init(&iter->seq);
6186 }
6187
6188 trace_access_unlock(iter->cpu_file);
6189 trace_event_read_unlock();
6190 mutex_unlock(&iter->mutex);
6191
6192 spd.nr_pages = i;
6193
6194 if (i)
6195 ret = splice_to_pipe(pipe, &spd);
6196 else
6197 ret = 0;
6198 out:
6199 splice_shrink_spd(&spd);
6200 return ret;
6201
6202 out_err:
6203 mutex_unlock(&iter->mutex);
6204 goto out;
6205 }
6206
6207 static ssize_t
tracing_syscall_buf_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)6208 tracing_syscall_buf_read(struct file *filp, char __user *ubuf,
6209 size_t cnt, loff_t *ppos)
6210 {
6211 struct inode *inode = file_inode(filp);
6212 struct trace_array *tr = inode->i_private;
6213 char buf[64];
6214 int r;
6215
6216 r = snprintf(buf, 64, "%d\n", tr->syscall_buf_sz);
6217
6218 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
6219 }
6220
6221 static ssize_t
tracing_syscall_buf_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)6222 tracing_syscall_buf_write(struct file *filp, const char __user *ubuf,
6223 size_t cnt, loff_t *ppos)
6224 {
6225 struct inode *inode = file_inode(filp);
6226 struct trace_array *tr = inode->i_private;
6227 unsigned long val;
6228 int ret;
6229
6230 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
6231 if (ret)
6232 return ret;
6233
6234 if (val > SYSCALL_FAULT_USER_MAX)
6235 val = SYSCALL_FAULT_USER_MAX;
6236
6237 tr->syscall_buf_sz = val;
6238
6239 *ppos += cnt;
6240
6241 return cnt;
6242 }
6243
6244 static ssize_t
tracing_entries_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)6245 tracing_entries_read(struct file *filp, char __user *ubuf,
6246 size_t cnt, loff_t *ppos)
6247 {
6248 struct inode *inode = file_inode(filp);
6249 struct trace_array *tr = inode->i_private;
6250 int cpu = tracing_get_cpu(inode);
6251 char buf[64];
6252 int r = 0;
6253 ssize_t ret;
6254
6255 mutex_lock(&trace_types_lock);
6256
6257 if (cpu == RING_BUFFER_ALL_CPUS) {
6258 int cpu, buf_size_same;
6259 unsigned long size;
6260
6261 size = 0;
6262 buf_size_same = 1;
6263 /* check if all cpu sizes are same */
6264 for_each_tracing_cpu(cpu) {
6265 /* fill in the size from first enabled cpu */
6266 if (size == 0)
6267 size = per_cpu_ptr(tr->array_buffer.data, cpu)->entries;
6268 if (size != per_cpu_ptr(tr->array_buffer.data, cpu)->entries) {
6269 buf_size_same = 0;
6270 break;
6271 }
6272 }
6273
6274 if (buf_size_same) {
6275 if (!tr->ring_buffer_expanded)
6276 r = sprintf(buf, "%lu (expanded: %lu)\n",
6277 size >> 10,
6278 trace_buf_size >> 10);
6279 else
6280 r = sprintf(buf, "%lu\n", size >> 10);
6281 } else
6282 r = sprintf(buf, "X\n");
6283 } else
6284 r = sprintf(buf, "%lu\n", per_cpu_ptr(tr->array_buffer.data, cpu)->entries >> 10);
6285
6286 mutex_unlock(&trace_types_lock);
6287
6288 ret = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
6289 return ret;
6290 }
6291
6292 static ssize_t
tracing_entries_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)6293 tracing_entries_write(struct file *filp, const char __user *ubuf,
6294 size_t cnt, loff_t *ppos)
6295 {
6296 struct inode *inode = file_inode(filp);
6297 struct trace_array *tr = inode->i_private;
6298 unsigned long val;
6299 int ret;
6300
6301 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
6302 if (ret)
6303 return ret;
6304
6305 /* must have at least 1 entry */
6306 if (!val)
6307 return -EINVAL;
6308
6309 /* value is in KB */
6310 val <<= 10;
6311 ret = tracing_resize_ring_buffer(tr, val, tracing_get_cpu(inode));
6312 if (ret < 0)
6313 return ret;
6314
6315 *ppos += cnt;
6316
6317 return cnt;
6318 }
6319
6320 static ssize_t
tracing_total_entries_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)6321 tracing_total_entries_read(struct file *filp, char __user *ubuf,
6322 size_t cnt, loff_t *ppos)
6323 {
6324 struct trace_array *tr = filp->private_data;
6325 char buf[64];
6326 int r, cpu;
6327 unsigned long size = 0, expanded_size = 0;
6328
6329 mutex_lock(&trace_types_lock);
6330 for_each_tracing_cpu(cpu) {
6331 size += per_cpu_ptr(tr->array_buffer.data, cpu)->entries >> 10;
6332 if (!tr->ring_buffer_expanded)
6333 expanded_size += trace_buf_size >> 10;
6334 }
6335 if (tr->ring_buffer_expanded)
6336 r = sprintf(buf, "%lu\n", size);
6337 else
6338 r = sprintf(buf, "%lu (expanded: %lu)\n", size, expanded_size);
6339 mutex_unlock(&trace_types_lock);
6340
6341 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
6342 }
6343
6344 #define LAST_BOOT_HEADER ((void *)1)
6345
l_next(struct seq_file * m,void * v,loff_t * pos)6346 static void *l_next(struct seq_file *m, void *v, loff_t *pos)
6347 {
6348 struct trace_array *tr = m->private;
6349 struct trace_scratch *tscratch = tr->scratch;
6350 unsigned int index = *pos;
6351
6352 (*pos)++;
6353
6354 if (*pos == 1)
6355 return LAST_BOOT_HEADER;
6356
6357 /* Only show offsets of the last boot data */
6358 if (!tscratch || !(tr->flags & TRACE_ARRAY_FL_LAST_BOOT))
6359 return NULL;
6360
6361 /* *pos 0 is for the header, 1 is for the first module */
6362 index--;
6363
6364 if (index >= tscratch->nr_entries)
6365 return NULL;
6366
6367 return &tscratch->entries[index];
6368 }
6369
l_start(struct seq_file * m,loff_t * pos)6370 static void *l_start(struct seq_file *m, loff_t *pos)
6371 {
6372 mutex_lock(&scratch_mutex);
6373
6374 return l_next(m, NULL, pos);
6375 }
6376
l_stop(struct seq_file * m,void * p)6377 static void l_stop(struct seq_file *m, void *p)
6378 {
6379 mutex_unlock(&scratch_mutex);
6380 }
6381
show_last_boot_header(struct seq_file * m,struct trace_array * tr)6382 static void show_last_boot_header(struct seq_file *m, struct trace_array *tr)
6383 {
6384 struct trace_scratch *tscratch = tr->scratch;
6385
6386 /*
6387 * Do not leak KASLR address. This only shows the KASLR address of
6388 * the last boot. When the ring buffer is started, the LAST_BOOT
6389 * flag gets cleared, and this should only report "current".
6390 * Otherwise it shows the KASLR address from the previous boot which
6391 * should not be the same as the current boot.
6392 */
6393 if (tscratch && (tr->flags & TRACE_ARRAY_FL_LAST_BOOT))
6394 seq_printf(m, "%lx\t[kernel]\n", tscratch->text_addr);
6395 else
6396 seq_puts(m, "# Current\n");
6397 }
6398
l_show(struct seq_file * m,void * v)6399 static int l_show(struct seq_file *m, void *v)
6400 {
6401 struct trace_array *tr = m->private;
6402 struct trace_mod_entry *entry = v;
6403
6404 if (v == LAST_BOOT_HEADER) {
6405 show_last_boot_header(m, tr);
6406 return 0;
6407 }
6408
6409 seq_printf(m, "%lx\t%s\n", entry->mod_addr, entry->mod_name);
6410 return 0;
6411 }
6412
6413 static const struct seq_operations last_boot_seq_ops = {
6414 .start = l_start,
6415 .next = l_next,
6416 .stop = l_stop,
6417 .show = l_show,
6418 };
6419
tracing_last_boot_open(struct inode * inode,struct file * file)6420 static int tracing_last_boot_open(struct inode *inode, struct file *file)
6421 {
6422 struct trace_array *tr = inode->i_private;
6423 struct seq_file *m;
6424 int ret;
6425
6426 ret = tracing_check_open_get_tr(tr);
6427 if (ret)
6428 return ret;
6429
6430 ret = seq_open(file, &last_boot_seq_ops);
6431 if (ret) {
6432 trace_array_put(tr);
6433 return ret;
6434 }
6435
6436 m = file->private_data;
6437 m->private = tr;
6438
6439 return 0;
6440 }
6441
tracing_buffer_meta_open(struct inode * inode,struct file * filp)6442 static int tracing_buffer_meta_open(struct inode *inode, struct file *filp)
6443 {
6444 struct trace_array *tr = inode->i_private;
6445 int cpu = tracing_get_cpu(inode);
6446 int ret;
6447
6448 ret = tracing_check_open_get_tr(tr);
6449 if (ret)
6450 return ret;
6451
6452 ret = ring_buffer_meta_seq_init(filp, tr->array_buffer.buffer, cpu);
6453 if (ret < 0)
6454 __trace_array_put(tr);
6455 return ret;
6456 }
6457
6458 static ssize_t
tracing_free_buffer_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)6459 tracing_free_buffer_write(struct file *filp, const char __user *ubuf,
6460 size_t cnt, loff_t *ppos)
6461 {
6462 /*
6463 * There is no need to read what the user has written, this function
6464 * is just to make sure that there is no error when "echo" is used
6465 */
6466
6467 *ppos += cnt;
6468
6469 return cnt;
6470 }
6471
6472 static int
tracing_free_buffer_release(struct inode * inode,struct file * filp)6473 tracing_free_buffer_release(struct inode *inode, struct file *filp)
6474 {
6475 struct trace_array *tr = inode->i_private;
6476
6477 /* disable tracing ? */
6478 if (tr->trace_flags & TRACE_ITER(STOP_ON_FREE))
6479 tracer_tracing_off(tr);
6480 /* resize the ring buffer to 0 */
6481 tracing_resize_ring_buffer(tr, 0, RING_BUFFER_ALL_CPUS);
6482
6483 trace_array_put(tr);
6484
6485 return 0;
6486 }
6487
6488 #define TRACE_MARKER_MAX_SIZE 4096
6489
write_marker_to_buffer(struct trace_array * tr,const char * buf,size_t cnt,unsigned long ip)6490 static ssize_t write_marker_to_buffer(struct trace_array *tr, const char *buf,
6491 size_t cnt, unsigned long ip)
6492 {
6493 struct ring_buffer_event *event;
6494 enum event_trigger_type tt = ETT_NONE;
6495 struct trace_buffer *buffer;
6496 struct print_entry *entry;
6497 int meta_size;
6498 ssize_t written;
6499 size_t size;
6500
6501 meta_size = sizeof(*entry) + 2; /* add '\0' and possible '\n' */
6502 again:
6503 size = cnt + meta_size;
6504
6505 buffer = tr->array_buffer.buffer;
6506 event = __trace_buffer_lock_reserve(buffer, TRACE_PRINT, size,
6507 tracing_gen_ctx());
6508 if (unlikely(!event)) {
6509 /*
6510 * If the size was greater than what was allowed, then
6511 * make it smaller and try again.
6512 */
6513 if (size > ring_buffer_max_event_size(buffer)) {
6514 cnt = ring_buffer_max_event_size(buffer) - meta_size;
6515 /* The above should only happen once */
6516 if (WARN_ON_ONCE(cnt + meta_size == size))
6517 return -EBADF;
6518 goto again;
6519 }
6520
6521 /* Ring buffer disabled, return as if not open for write */
6522 return -EBADF;
6523 }
6524
6525 entry = ring_buffer_event_data(event);
6526 entry->ip = ip;
6527 memcpy(&entry->buf, buf, cnt);
6528 written = cnt;
6529
6530 if (tr->trace_marker_file && !list_empty(&tr->trace_marker_file->triggers)) {
6531 /* do not add \n before testing triggers, but add \0 */
6532 entry->buf[cnt] = '\0';
6533 tt = event_triggers_call(tr->trace_marker_file, buffer, entry, event);
6534 }
6535
6536 if (entry->buf[cnt - 1] != '\n') {
6537 entry->buf[cnt] = '\n';
6538 entry->buf[cnt + 1] = '\0';
6539 } else
6540 entry->buf[cnt] = '\0';
6541
6542 if (static_branch_unlikely(&trace_marker_exports_enabled))
6543 ftrace_exports(event, TRACE_EXPORT_MARKER);
6544 __buffer_unlock_commit(buffer, event);
6545
6546 if (tt)
6547 event_triggers_post_call(tr->trace_marker_file, tt);
6548
6549 return written;
6550 }
6551
6552 struct trace_user_buf {
6553 char *buf;
6554 };
6555
6556 static DEFINE_MUTEX(trace_user_buffer_mutex);
6557 static struct trace_user_buf_info *trace_user_buffer;
6558
6559 /**
6560 * trace_user_fault_destroy - free up allocated memory of a trace user buffer
6561 * @tinfo: The descriptor to free up
6562 *
6563 * Frees any data allocated in the trace info dsecriptor.
6564 */
trace_user_fault_destroy(struct trace_user_buf_info * tinfo)6565 void trace_user_fault_destroy(struct trace_user_buf_info *tinfo)
6566 {
6567 char *buf;
6568 int cpu;
6569
6570 if (!tinfo || !tinfo->tbuf)
6571 return;
6572
6573 for_each_possible_cpu(cpu) {
6574 buf = per_cpu_ptr(tinfo->tbuf, cpu)->buf;
6575 kfree(buf);
6576 }
6577 free_percpu(tinfo->tbuf);
6578 }
6579
user_fault_buffer_enable(struct trace_user_buf_info * tinfo,size_t size)6580 static int user_fault_buffer_enable(struct trace_user_buf_info *tinfo, size_t size)
6581 {
6582 char *buf;
6583 int cpu;
6584
6585 lockdep_assert_held(&trace_user_buffer_mutex);
6586
6587 tinfo->tbuf = alloc_percpu(struct trace_user_buf);
6588 if (!tinfo->tbuf)
6589 return -ENOMEM;
6590
6591 tinfo->ref = 1;
6592 tinfo->size = size;
6593
6594 /* Clear each buffer in case of error */
6595 for_each_possible_cpu(cpu) {
6596 per_cpu_ptr(tinfo->tbuf, cpu)->buf = NULL;
6597 }
6598
6599 for_each_possible_cpu(cpu) {
6600 buf = kmalloc_node(size, GFP_KERNEL,
6601 cpu_to_node(cpu));
6602 if (!buf)
6603 return -ENOMEM;
6604 per_cpu_ptr(tinfo->tbuf, cpu)->buf = buf;
6605 }
6606
6607 return 0;
6608 }
6609
6610 /* For internal use. Free and reinitialize */
user_buffer_free(struct trace_user_buf_info ** tinfo)6611 static void user_buffer_free(struct trace_user_buf_info **tinfo)
6612 {
6613 lockdep_assert_held(&trace_user_buffer_mutex);
6614
6615 trace_user_fault_destroy(*tinfo);
6616 kfree(*tinfo);
6617 *tinfo = NULL;
6618 }
6619
6620 /* For internal use. Initialize and allocate */
user_buffer_init(struct trace_user_buf_info ** tinfo,size_t size)6621 static int user_buffer_init(struct trace_user_buf_info **tinfo, size_t size)
6622 {
6623 bool alloc = false;
6624 int ret;
6625
6626 lockdep_assert_held(&trace_user_buffer_mutex);
6627
6628 if (!*tinfo) {
6629 alloc = true;
6630 *tinfo = kzalloc_obj(**tinfo);
6631 if (!*tinfo)
6632 return -ENOMEM;
6633 }
6634
6635 ret = user_fault_buffer_enable(*tinfo, size);
6636 if (ret < 0 && alloc)
6637 user_buffer_free(tinfo);
6638
6639 return ret;
6640 }
6641
6642 /* For internal use, derefrence and free if necessary */
user_buffer_put(struct trace_user_buf_info ** tinfo)6643 static void user_buffer_put(struct trace_user_buf_info **tinfo)
6644 {
6645 guard(mutex)(&trace_user_buffer_mutex);
6646
6647 if (WARN_ON_ONCE(!*tinfo || !(*tinfo)->ref))
6648 return;
6649
6650 if (--(*tinfo)->ref)
6651 return;
6652
6653 user_buffer_free(tinfo);
6654 }
6655
6656 /**
6657 * trace_user_fault_init - Allocated or reference a per CPU buffer
6658 * @tinfo: A pointer to the trace buffer descriptor
6659 * @size: The size to allocate each per CPU buffer
6660 *
6661 * Create a per CPU buffer that can be used to copy from user space
6662 * in a task context. When calling trace_user_fault_read(), preemption
6663 * must be disabled, and it will enable preemption and copy user
6664 * space data to the buffer. If any schedule switches occur, it will
6665 * retry until it succeeds without a schedule switch knowing the buffer
6666 * is still valid.
6667 *
6668 * Returns 0 on success, negative on failure.
6669 */
trace_user_fault_init(struct trace_user_buf_info * tinfo,size_t size)6670 int trace_user_fault_init(struct trace_user_buf_info *tinfo, size_t size)
6671 {
6672 int ret;
6673
6674 if (!tinfo)
6675 return -EINVAL;
6676
6677 guard(mutex)(&trace_user_buffer_mutex);
6678
6679 ret = user_buffer_init(&tinfo, size);
6680 if (ret < 0)
6681 trace_user_fault_destroy(tinfo);
6682
6683 return ret;
6684 }
6685
6686 /**
6687 * trace_user_fault_get - up the ref count for the user buffer
6688 * @tinfo: A pointer to a pointer to the trace buffer descriptor
6689 *
6690 * Ups the ref count of the trace buffer.
6691 *
6692 * Returns the new ref count.
6693 */
trace_user_fault_get(struct trace_user_buf_info * tinfo)6694 int trace_user_fault_get(struct trace_user_buf_info *tinfo)
6695 {
6696 if (!tinfo)
6697 return -1;
6698
6699 guard(mutex)(&trace_user_buffer_mutex);
6700
6701 tinfo->ref++;
6702 return tinfo->ref;
6703 }
6704
6705 /**
6706 * trace_user_fault_put - dereference a per cpu trace buffer
6707 * @tinfo: The @tinfo that was passed to trace_user_fault_get()
6708 *
6709 * Decrement the ref count of @tinfo.
6710 *
6711 * Returns the new refcount (negative on error).
6712 */
trace_user_fault_put(struct trace_user_buf_info * tinfo)6713 int trace_user_fault_put(struct trace_user_buf_info *tinfo)
6714 {
6715 guard(mutex)(&trace_user_buffer_mutex);
6716
6717 if (WARN_ON_ONCE(!tinfo || !tinfo->ref))
6718 return -1;
6719
6720 --tinfo->ref;
6721 return tinfo->ref;
6722 }
6723
6724 /**
6725 * trace_user_fault_read - Read user space into a per CPU buffer
6726 * @tinfo: The @tinfo allocated by trace_user_fault_get()
6727 * @ptr: The user space pointer to read
6728 * @size: The size of user space to read.
6729 * @copy_func: Optional function to use to copy from user space
6730 * @data: Data to pass to copy_func if it was supplied
6731 *
6732 * Preemption must be disabled when this is called, and must not
6733 * be enabled while using the returned buffer.
6734 * This does the copying from user space into a per CPU buffer.
6735 *
6736 * The @size must not be greater than the size passed in to
6737 * trace_user_fault_init().
6738 *
6739 * If @copy_func is NULL, trace_user_fault_read() will use copy_from_user(),
6740 * otherwise it will call @copy_func. It will call @copy_func with:
6741 *
6742 * buffer: the per CPU buffer of the @tinfo.
6743 * ptr: The pointer @ptr to user space to read
6744 * size: The @size of the ptr to read
6745 * data: The @data parameter
6746 *
6747 * It is expected that @copy_func will return 0 on success and non zero
6748 * if there was a fault.
6749 *
6750 * Returns a pointer to the buffer with the content read from @ptr.
6751 * Preemption must remain disabled while the caller accesses the
6752 * buffer returned by this function.
6753 * Returns NULL if there was a fault, or the size passed in is
6754 * greater than the size passed to trace_user_fault_init().
6755 */
trace_user_fault_read(struct trace_user_buf_info * tinfo,const char __user * ptr,size_t size,trace_user_buf_copy copy_func,void * data)6756 char *trace_user_fault_read(struct trace_user_buf_info *tinfo,
6757 const char __user *ptr, size_t size,
6758 trace_user_buf_copy copy_func, void *data)
6759 {
6760 int cpu = smp_processor_id();
6761 char *buffer = per_cpu_ptr(tinfo->tbuf, cpu)->buf;
6762 unsigned int cnt;
6763 int trys = 0;
6764 int ret;
6765
6766 lockdep_assert_preemption_disabled();
6767
6768 /*
6769 * It's up to the caller to not try to copy more than it said
6770 * it would.
6771 */
6772 if (size > tinfo->size)
6773 return NULL;
6774
6775 /*
6776 * This acts similar to a seqcount. The per CPU context switches are
6777 * recorded, migration is disabled and preemption is enabled. The
6778 * read of the user space memory is copied into the per CPU buffer.
6779 * Preemption is disabled again, and if the per CPU context switches count
6780 * is still the same, it means the buffer has not been corrupted.
6781 * If the count is different, it is assumed the buffer is corrupted
6782 * and reading must be tried again.
6783 */
6784
6785 do {
6786 /*
6787 * If for some reason, copy_from_user() always causes a context
6788 * switch, this would then cause an infinite loop.
6789 * If this task is preempted by another user space task, it
6790 * will cause this task to try again. But just in case something
6791 * changes where the copying from user space causes another task
6792 * to run, prevent this from going into an infinite loop.
6793 * 100 tries should be plenty.
6794 */
6795 if (WARN_ONCE(trys++ > 100, "Error: Too many tries to read user space"))
6796 return NULL;
6797
6798 /* Read the current CPU context switch counter */
6799 cnt = nr_context_switches_cpu(cpu);
6800
6801 /*
6802 * Preemption is going to be enabled, but this task must
6803 * remain on this CPU.
6804 */
6805 migrate_disable();
6806
6807 /*
6808 * Now preemption is being enabled and another task can come in
6809 * and use the same buffer and corrupt our data.
6810 */
6811 preempt_enable_notrace();
6812
6813 /* Make sure preemption is enabled here */
6814 lockdep_assert_preemption_enabled();
6815
6816 if (copy_func) {
6817 ret = copy_func(buffer, ptr, size, data);
6818 } else {
6819 ret = __copy_from_user(buffer, ptr, size);
6820 }
6821
6822 preempt_disable_notrace();
6823 migrate_enable();
6824
6825 /* if it faulted, no need to test if the buffer was corrupted */
6826 if (ret)
6827 return NULL;
6828
6829 /*
6830 * Preemption is disabled again, now check the per CPU context
6831 * switch counter. If it doesn't match, then another user space
6832 * process may have schedule in and corrupted our buffer. In that
6833 * case the copying must be retried.
6834 */
6835 } while (nr_context_switches_cpu(cpu) != cnt);
6836
6837 return buffer;
6838 }
6839
6840 static ssize_t
tracing_mark_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * fpos)6841 tracing_mark_write(struct file *filp, const char __user *ubuf,
6842 size_t cnt, loff_t *fpos)
6843 {
6844 struct trace_array *tr = filp->private_data;
6845 ssize_t written = -ENODEV;
6846 unsigned long ip;
6847 char *buf;
6848
6849 if (unlikely(tracing_disabled))
6850 return -EINVAL;
6851
6852 if (!(tr->trace_flags & TRACE_ITER(MARKERS)))
6853 return -EINVAL;
6854
6855 if ((ssize_t)cnt < 0)
6856 return -EINVAL;
6857
6858 if (cnt > TRACE_MARKER_MAX_SIZE)
6859 cnt = TRACE_MARKER_MAX_SIZE;
6860
6861 /* Must have preemption disabled while having access to the buffer */
6862 guard(preempt_notrace)();
6863
6864 buf = trace_user_fault_read(trace_user_buffer, ubuf, cnt, NULL, NULL);
6865 if (!buf)
6866 return -EFAULT;
6867
6868 /* The selftests expect this function to be the IP address */
6869 ip = _THIS_IP_;
6870
6871 /* The global trace_marker can go to multiple instances */
6872 if (tr == &global_trace) {
6873 guard(rcu)();
6874 list_for_each_entry_rcu(tr, &marker_copies, marker_list) {
6875 written = write_marker_to_buffer(tr, buf, cnt, ip);
6876 if (written < 0)
6877 break;
6878 }
6879 } else {
6880 written = write_marker_to_buffer(tr, buf, cnt, ip);
6881 }
6882
6883 return written;
6884 }
6885
write_raw_marker_to_buffer(struct trace_array * tr,const char * buf,size_t cnt)6886 static ssize_t write_raw_marker_to_buffer(struct trace_array *tr,
6887 const char *buf, size_t cnt)
6888 {
6889 struct ring_buffer_event *event;
6890 struct trace_buffer *buffer;
6891 struct raw_data_entry *entry;
6892 ssize_t written;
6893 size_t size;
6894
6895 /* cnt includes both the entry->id and the data behind it. */
6896 size = struct_offset(entry, id) + cnt;
6897
6898 buffer = tr->array_buffer.buffer;
6899
6900 if (size > ring_buffer_max_event_size(buffer))
6901 return -EINVAL;
6902
6903 event = __trace_buffer_lock_reserve(buffer, TRACE_RAW_DATA, size,
6904 tracing_gen_ctx());
6905 if (!event)
6906 /* Ring buffer disabled, return as if not open for write */
6907 return -EBADF;
6908
6909 entry = ring_buffer_event_data(event);
6910 unsafe_memcpy(&entry->id, buf, cnt,
6911 "id and content already reserved on ring buffer"
6912 "'buf' includes the 'id' and the data."
6913 "'entry' was allocated with cnt from 'id'.");
6914 written = cnt;
6915
6916 __buffer_unlock_commit(buffer, event);
6917
6918 return written;
6919 }
6920
6921 static ssize_t
tracing_mark_raw_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * fpos)6922 tracing_mark_raw_write(struct file *filp, const char __user *ubuf,
6923 size_t cnt, loff_t *fpos)
6924 {
6925 struct trace_array *tr = filp->private_data;
6926 ssize_t written = -ENODEV;
6927 char *buf;
6928
6929 if (unlikely(tracing_disabled))
6930 return -EINVAL;
6931
6932 if (!(tr->trace_flags & TRACE_ITER(MARKERS)))
6933 return -EINVAL;
6934
6935 /* The marker must at least have a tag id */
6936 if (cnt < sizeof(unsigned int))
6937 return -EINVAL;
6938
6939 /* raw write is all or nothing */
6940 if (cnt > TRACE_MARKER_MAX_SIZE)
6941 return -EINVAL;
6942
6943 /* Must have preemption disabled while having access to the buffer */
6944 guard(preempt_notrace)();
6945
6946 buf = trace_user_fault_read(trace_user_buffer, ubuf, cnt, NULL, NULL);
6947 if (!buf)
6948 return -EFAULT;
6949
6950 /* The global trace_marker_raw can go to multiple instances */
6951 if (tr == &global_trace) {
6952 guard(rcu)();
6953 list_for_each_entry_rcu(tr, &marker_copies, marker_list) {
6954 written = write_raw_marker_to_buffer(tr, buf, cnt);
6955 if (written < 0)
6956 break;
6957 }
6958 } else {
6959 written = write_raw_marker_to_buffer(tr, buf, cnt);
6960 }
6961
6962 return written;
6963 }
6964
tracing_mark_open(struct inode * inode,struct file * filp)6965 static int tracing_mark_open(struct inode *inode, struct file *filp)
6966 {
6967 int ret;
6968
6969 scoped_guard(mutex, &trace_user_buffer_mutex) {
6970 if (!trace_user_buffer) {
6971 ret = user_buffer_init(&trace_user_buffer, TRACE_MARKER_MAX_SIZE);
6972 if (ret < 0)
6973 return ret;
6974 } else {
6975 trace_user_buffer->ref++;
6976 }
6977 }
6978
6979 stream_open(inode, filp);
6980 ret = tracing_open_generic_tr(inode, filp);
6981 if (ret < 0)
6982 user_buffer_put(&trace_user_buffer);
6983 return ret;
6984 }
6985
tracing_mark_release(struct inode * inode,struct file * file)6986 static int tracing_mark_release(struct inode *inode, struct file *file)
6987 {
6988 user_buffer_put(&trace_user_buffer);
6989 return tracing_release_generic_tr(inode, file);
6990 }
6991
tracing_clock_show(struct seq_file * m,void * v)6992 static int tracing_clock_show(struct seq_file *m, void *v)
6993 {
6994 struct trace_array *tr = m->private;
6995 int i;
6996
6997 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++)
6998 seq_printf(m,
6999 "%s%s%s%s", i ? " " : "",
7000 i == tr->clock_id ? "[" : "", trace_clocks[i].name,
7001 i == tr->clock_id ? "]" : "");
7002 seq_putc(m, '\n');
7003
7004 return 0;
7005 }
7006
tracing_set_clock(struct trace_array * tr,const char * clockstr)7007 int tracing_set_clock(struct trace_array *tr, const char *clockstr)
7008 {
7009 int i;
7010
7011 for (i = 0; i < ARRAY_SIZE(trace_clocks); i++) {
7012 if (strcmp(trace_clocks[i].name, clockstr) == 0)
7013 break;
7014 }
7015 if (i == ARRAY_SIZE(trace_clocks))
7016 return -EINVAL;
7017
7018 guard(mutex)(&trace_types_lock);
7019
7020 tr->clock_id = i;
7021
7022 ring_buffer_set_clock(tr->array_buffer.buffer, trace_clocks[i].func);
7023
7024 /*
7025 * New clock may not be consistent with the previous clock.
7026 * Reset the buffer so that it doesn't have incomparable timestamps.
7027 */
7028 tracing_reset_online_cpus(&tr->array_buffer);
7029
7030 #ifdef CONFIG_TRACER_SNAPSHOT
7031 if (tr->snapshot_buffer.buffer)
7032 ring_buffer_set_clock(tr->snapshot_buffer.buffer, trace_clocks[i].func);
7033 tracing_reset_online_cpus(&tr->snapshot_buffer);
7034 #endif
7035 update_last_data_if_empty(tr);
7036
7037 if (tr->scratch && !(tr->flags & TRACE_ARRAY_FL_LAST_BOOT)) {
7038 struct trace_scratch *tscratch = tr->scratch;
7039
7040 tscratch->clock_id = i;
7041 }
7042
7043 return 0;
7044 }
7045
tracing_clock_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * fpos)7046 static ssize_t tracing_clock_write(struct file *filp, const char __user *ubuf,
7047 size_t cnt, loff_t *fpos)
7048 {
7049 struct seq_file *m = filp->private_data;
7050 struct trace_array *tr = m->private;
7051 char buf[64];
7052 const char *clockstr;
7053 int ret;
7054
7055 if (cnt >= sizeof(buf))
7056 return -EINVAL;
7057
7058 if (copy_from_user(buf, ubuf, cnt))
7059 return -EFAULT;
7060
7061 buf[cnt] = 0;
7062
7063 clockstr = strstrip(buf);
7064
7065 ret = tracing_set_clock(tr, clockstr);
7066 if (ret)
7067 return ret;
7068
7069 *fpos += cnt;
7070
7071 return cnt;
7072 }
7073
tracing_clock_open(struct inode * inode,struct file * file)7074 static int tracing_clock_open(struct inode *inode, struct file *file)
7075 {
7076 struct trace_array *tr = inode->i_private;
7077 int ret;
7078
7079 ret = tracing_check_open_get_tr(tr);
7080 if (ret)
7081 return ret;
7082
7083 ret = single_open(file, tracing_clock_show, inode->i_private);
7084 if (ret < 0)
7085 trace_array_put(tr);
7086
7087 return ret;
7088 }
7089
tracing_time_stamp_mode_show(struct seq_file * m,void * v)7090 static int tracing_time_stamp_mode_show(struct seq_file *m, void *v)
7091 {
7092 struct trace_array *tr = m->private;
7093
7094 guard(mutex)(&trace_types_lock);
7095
7096 if (ring_buffer_time_stamp_abs(tr->array_buffer.buffer))
7097 seq_puts(m, "delta [absolute]\n");
7098 else
7099 seq_puts(m, "[delta] absolute\n");
7100
7101 return 0;
7102 }
7103
tracing_time_stamp_mode_open(struct inode * inode,struct file * file)7104 static int tracing_time_stamp_mode_open(struct inode *inode, struct file *file)
7105 {
7106 struct trace_array *tr = inode->i_private;
7107 int ret;
7108
7109 ret = tracing_check_open_get_tr(tr);
7110 if (ret)
7111 return ret;
7112
7113 ret = single_open(file, tracing_time_stamp_mode_show, inode->i_private);
7114 if (ret < 0)
7115 trace_array_put(tr);
7116
7117 return ret;
7118 }
7119
tracing_event_time_stamp(struct trace_buffer * buffer,struct ring_buffer_event * rbe)7120 u64 tracing_event_time_stamp(struct trace_buffer *buffer, struct ring_buffer_event *rbe)
7121 {
7122 if (rbe == this_cpu_read(trace_buffered_event))
7123 return ring_buffer_time_stamp(buffer);
7124
7125 return ring_buffer_event_time_stamp(buffer, rbe);
7126 }
7127
7128 struct ftrace_buffer_info {
7129 struct trace_iterator iter;
7130 void *spare;
7131 unsigned int spare_cpu;
7132 unsigned int spare_size;
7133 unsigned int read;
7134 };
7135
7136 #ifdef CONFIG_TRACER_SNAPSHOT
tracing_snapshot_open(struct inode * inode,struct file * file)7137 static int tracing_snapshot_open(struct inode *inode, struct file *file)
7138 {
7139 struct trace_array *tr = inode->i_private;
7140 struct trace_iterator *iter;
7141 struct seq_file *m;
7142 int ret;
7143
7144 ret = tracing_check_open_get_tr(tr);
7145 if (ret)
7146 return ret;
7147
7148 if (file->f_mode & FMODE_READ) {
7149 iter = __tracing_open(inode, file, true);
7150 if (IS_ERR(iter))
7151 ret = PTR_ERR(iter);
7152 } else {
7153 /* Writes still need the seq_file to hold the private data */
7154 ret = -ENOMEM;
7155 m = kzalloc_obj(*m);
7156 if (!m)
7157 goto out;
7158 iter = kzalloc_obj(*iter);
7159 if (!iter) {
7160 kfree(m);
7161 goto out;
7162 }
7163 ret = 0;
7164
7165 iter->tr = tr;
7166 iter->array_buffer = &tr->snapshot_buffer;
7167 iter->cpu_file = tracing_get_cpu(inode);
7168 m->private = iter;
7169 file->private_data = m;
7170 }
7171 out:
7172 if (ret < 0)
7173 trace_array_put(tr);
7174
7175 return ret;
7176 }
7177
tracing_swap_cpu_buffer(void * tr)7178 static void tracing_swap_cpu_buffer(void *tr)
7179 {
7180 update_max_tr_single((struct trace_array *)tr, current, smp_processor_id());
7181 }
7182
7183 static ssize_t
tracing_snapshot_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)7184 tracing_snapshot_write(struct file *filp, const char __user *ubuf, size_t cnt,
7185 loff_t *ppos)
7186 {
7187 struct seq_file *m = filp->private_data;
7188 struct trace_iterator *iter = m->private;
7189 struct trace_array *tr = iter->tr;
7190 unsigned long val;
7191 int ret;
7192
7193 ret = tracing_update_buffers(tr);
7194 if (ret < 0)
7195 return ret;
7196
7197 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
7198 if (ret)
7199 return ret;
7200
7201 guard(mutex)(&trace_types_lock);
7202
7203 if (tracer_uses_snapshot(tr->current_trace))
7204 return -EBUSY;
7205
7206 local_irq_disable();
7207 arch_spin_lock(&tr->max_lock);
7208 if (tr->cond_snapshot)
7209 ret = -EBUSY;
7210 arch_spin_unlock(&tr->max_lock);
7211 local_irq_enable();
7212 if (ret)
7213 return ret;
7214
7215 switch (val) {
7216 case 0:
7217 if (iter->cpu_file != RING_BUFFER_ALL_CPUS)
7218 return -EINVAL;
7219 if (tr->allocated_snapshot)
7220 free_snapshot(tr);
7221 break;
7222 case 1:
7223 /* Only allow per-cpu swap if the ring buffer supports it */
7224 #ifndef CONFIG_RING_BUFFER_ALLOW_SWAP
7225 if (iter->cpu_file != RING_BUFFER_ALL_CPUS)
7226 return -EINVAL;
7227 #endif
7228 if (tr->allocated_snapshot)
7229 ret = resize_buffer_duplicate_size(&tr->snapshot_buffer,
7230 &tr->array_buffer, iter->cpu_file);
7231
7232 ret = tracing_arm_snapshot_locked(tr);
7233 if (ret)
7234 return ret;
7235
7236 /* Now, we're going to swap */
7237 if (iter->cpu_file == RING_BUFFER_ALL_CPUS) {
7238 local_irq_disable();
7239 update_max_tr(tr, current, smp_processor_id(), NULL);
7240 local_irq_enable();
7241 } else {
7242 smp_call_function_single(iter->cpu_file, tracing_swap_cpu_buffer,
7243 (void *)tr, 1);
7244 }
7245 tracing_disarm_snapshot(tr);
7246 break;
7247 default:
7248 if (tr->allocated_snapshot) {
7249 if (iter->cpu_file == RING_BUFFER_ALL_CPUS)
7250 tracing_reset_online_cpus(&tr->snapshot_buffer);
7251 else
7252 tracing_reset_cpu(&tr->snapshot_buffer, iter->cpu_file);
7253 }
7254 break;
7255 }
7256
7257 if (ret >= 0) {
7258 *ppos += cnt;
7259 ret = cnt;
7260 }
7261
7262 return ret;
7263 }
7264
tracing_snapshot_release(struct inode * inode,struct file * file)7265 static int tracing_snapshot_release(struct inode *inode, struct file *file)
7266 {
7267 struct seq_file *m = file->private_data;
7268 int ret;
7269
7270 ret = tracing_release(inode, file);
7271
7272 if (file->f_mode & FMODE_READ)
7273 return ret;
7274
7275 /* If write only, the seq_file is just a stub */
7276 if (m)
7277 kfree(m->private);
7278 kfree(m);
7279
7280 return 0;
7281 }
7282
7283 static int tracing_buffers_open(struct inode *inode, struct file *filp);
7284 static ssize_t tracing_buffers_read(struct file *filp, char __user *ubuf,
7285 size_t count, loff_t *ppos);
7286 static int tracing_buffers_release(struct inode *inode, struct file *file);
7287 static ssize_t tracing_buffers_splice_read(struct file *file, loff_t *ppos,
7288 struct pipe_inode_info *pipe, size_t len, unsigned int flags);
7289
snapshot_raw_open(struct inode * inode,struct file * filp)7290 static int snapshot_raw_open(struct inode *inode, struct file *filp)
7291 {
7292 struct ftrace_buffer_info *info;
7293 int ret;
7294
7295 /* The following checks for tracefs lockdown */
7296 ret = tracing_buffers_open(inode, filp);
7297 if (ret < 0)
7298 return ret;
7299
7300 info = filp->private_data;
7301
7302 if (tracer_uses_snapshot(info->iter.trace)) {
7303 tracing_buffers_release(inode, filp);
7304 return -EBUSY;
7305 }
7306
7307 info->iter.snapshot = true;
7308 info->iter.array_buffer = &info->iter.tr->snapshot_buffer;
7309
7310 return ret;
7311 }
7312
7313 #endif /* CONFIG_TRACER_SNAPSHOT */
7314
7315
7316 static const struct file_operations tracing_thresh_fops = {
7317 .open = tracing_open_generic,
7318 .read = tracing_thresh_read,
7319 .write = tracing_thresh_write,
7320 .llseek = generic_file_llseek,
7321 };
7322
7323 #ifdef CONFIG_TRACER_MAX_TRACE
7324 static const struct file_operations tracing_max_lat_fops = {
7325 .open = tracing_open_generic_tr,
7326 .read = tracing_max_lat_read,
7327 .write = tracing_max_lat_write,
7328 .llseek = generic_file_llseek,
7329 .release = tracing_release_generic_tr,
7330 };
7331 #endif
7332
7333 static const struct file_operations set_tracer_fops = {
7334 .open = tracing_open_generic_tr,
7335 .read = tracing_set_trace_read,
7336 .write = tracing_set_trace_write,
7337 .llseek = generic_file_llseek,
7338 .release = tracing_release_generic_tr,
7339 };
7340
7341 static const struct file_operations tracing_pipe_fops = {
7342 .open = tracing_open_pipe,
7343 .poll = tracing_poll_pipe,
7344 .read = tracing_read_pipe,
7345 .splice_read = tracing_splice_read_pipe,
7346 .release = tracing_release_pipe,
7347 };
7348
7349 static const struct file_operations tracing_entries_fops = {
7350 .open = tracing_open_generic_tr,
7351 .read = tracing_entries_read,
7352 .write = tracing_entries_write,
7353 .llseek = generic_file_llseek,
7354 .release = tracing_release_generic_tr,
7355 };
7356
7357 static const struct file_operations tracing_syscall_buf_fops = {
7358 .open = tracing_open_generic_tr,
7359 .read = tracing_syscall_buf_read,
7360 .write = tracing_syscall_buf_write,
7361 .llseek = generic_file_llseek,
7362 .release = tracing_release_generic_tr,
7363 };
7364
7365 static const struct file_operations tracing_buffer_meta_fops = {
7366 .open = tracing_buffer_meta_open,
7367 .read = seq_read,
7368 .llseek = seq_lseek,
7369 .release = tracing_seq_release,
7370 };
7371
7372 static const struct file_operations tracing_total_entries_fops = {
7373 .open = tracing_open_generic_tr,
7374 .read = tracing_total_entries_read,
7375 .llseek = generic_file_llseek,
7376 .release = tracing_release_generic_tr,
7377 };
7378
7379 static const struct file_operations tracing_free_buffer_fops = {
7380 .open = tracing_open_generic_tr,
7381 .write = tracing_free_buffer_write,
7382 .release = tracing_free_buffer_release,
7383 };
7384
7385 static const struct file_operations tracing_mark_fops = {
7386 .open = tracing_mark_open,
7387 .write = tracing_mark_write,
7388 .release = tracing_mark_release,
7389 };
7390
7391 static const struct file_operations tracing_mark_raw_fops = {
7392 .open = tracing_mark_open,
7393 .write = tracing_mark_raw_write,
7394 .release = tracing_mark_release,
7395 };
7396
7397 static const struct file_operations trace_clock_fops = {
7398 .open = tracing_clock_open,
7399 .read = seq_read,
7400 .llseek = seq_lseek,
7401 .release = tracing_single_release_tr,
7402 .write = tracing_clock_write,
7403 };
7404
7405 static const struct file_operations trace_time_stamp_mode_fops = {
7406 .open = tracing_time_stamp_mode_open,
7407 .read = seq_read,
7408 .llseek = seq_lseek,
7409 .release = tracing_single_release_tr,
7410 };
7411
7412 static const struct file_operations last_boot_fops = {
7413 .open = tracing_last_boot_open,
7414 .read = seq_read,
7415 .llseek = seq_lseek,
7416 .release = tracing_seq_release,
7417 };
7418
7419 #ifdef CONFIG_TRACER_SNAPSHOT
7420 static const struct file_operations snapshot_fops = {
7421 .open = tracing_snapshot_open,
7422 .read = seq_read,
7423 .write = tracing_snapshot_write,
7424 .llseek = tracing_lseek,
7425 .release = tracing_snapshot_release,
7426 };
7427
7428 static const struct file_operations snapshot_raw_fops = {
7429 .open = snapshot_raw_open,
7430 .read = tracing_buffers_read,
7431 .release = tracing_buffers_release,
7432 .splice_read = tracing_buffers_splice_read,
7433 };
7434
7435 #endif /* CONFIG_TRACER_SNAPSHOT */
7436
7437 /*
7438 * trace_min_max_write - Write a u64 value to a trace_min_max_param struct
7439 * @filp: The active open file structure
7440 * @ubuf: The userspace provided buffer to read value into
7441 * @cnt: The maximum number of bytes to read
7442 * @ppos: The current "file" position
7443 *
7444 * This function implements the write interface for a struct trace_min_max_param.
7445 * The filp->private_data must point to a trace_min_max_param structure that
7446 * defines where to write the value, the min and the max acceptable values,
7447 * and a lock to protect the write.
7448 */
7449 static ssize_t
trace_min_max_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)7450 trace_min_max_write(struct file *filp, const char __user *ubuf, size_t cnt, loff_t *ppos)
7451 {
7452 struct trace_min_max_param *param = filp->private_data;
7453 u64 val;
7454 int err;
7455
7456 if (!param)
7457 return -EFAULT;
7458
7459 err = kstrtoull_from_user(ubuf, cnt, 10, &val);
7460 if (err)
7461 return err;
7462
7463 if (param->lock)
7464 mutex_lock(param->lock);
7465
7466 if (param->min && val < *param->min)
7467 err = -EINVAL;
7468
7469 if (param->max && val > *param->max)
7470 err = -EINVAL;
7471
7472 if (!err)
7473 *param->val = val;
7474
7475 if (param->lock)
7476 mutex_unlock(param->lock);
7477
7478 if (err)
7479 return err;
7480
7481 return cnt;
7482 }
7483
7484 /*
7485 * trace_min_max_read - Read a u64 value from a trace_min_max_param struct
7486 * @filp: The active open file structure
7487 * @ubuf: The userspace provided buffer to read value into
7488 * @cnt: The maximum number of bytes to read
7489 * @ppos: The current "file" position
7490 *
7491 * This function implements the read interface for a struct trace_min_max_param.
7492 * The filp->private_data must point to a trace_min_max_param struct with valid
7493 * data.
7494 */
7495 static ssize_t
trace_min_max_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)7496 trace_min_max_read(struct file *filp, char __user *ubuf, size_t cnt, loff_t *ppos)
7497 {
7498 struct trace_min_max_param *param = filp->private_data;
7499 char buf[U64_STR_SIZE];
7500 int len;
7501 u64 val;
7502
7503 if (!param)
7504 return -EFAULT;
7505
7506 val = *param->val;
7507
7508 if (cnt > sizeof(buf))
7509 cnt = sizeof(buf);
7510
7511 len = snprintf(buf, sizeof(buf), "%llu\n", val);
7512
7513 return simple_read_from_buffer(ubuf, cnt, ppos, buf, len);
7514 }
7515
7516 const struct file_operations trace_min_max_fops = {
7517 .open = tracing_open_generic,
7518 .read = trace_min_max_read,
7519 .write = trace_min_max_write,
7520 };
7521
7522 #define TRACING_LOG_ERRS_MAX 8
7523 #define TRACING_LOG_LOC_MAX 128
7524
7525 #define CMD_PREFIX " Command: "
7526
7527 struct err_info {
7528 const char **errs; /* ptr to loc-specific array of err strings */
7529 u8 type; /* index into errs -> specific err string */
7530 u16 pos; /* caret position */
7531 u64 ts;
7532 };
7533
7534 struct tracing_log_err {
7535 struct list_head list;
7536 struct err_info info;
7537 char loc[TRACING_LOG_LOC_MAX]; /* err location */
7538 char *cmd; /* what caused err */
7539 };
7540
7541 static DEFINE_MUTEX(tracing_err_log_lock);
7542
alloc_tracing_log_err(int len)7543 static struct tracing_log_err *alloc_tracing_log_err(int len)
7544 {
7545 struct tracing_log_err *err;
7546
7547 err = kzalloc_obj(*err);
7548 if (!err)
7549 return ERR_PTR(-ENOMEM);
7550
7551 err->cmd = kzalloc(len, GFP_KERNEL);
7552 if (!err->cmd) {
7553 kfree(err);
7554 return ERR_PTR(-ENOMEM);
7555 }
7556
7557 return err;
7558 }
7559
free_tracing_log_err(struct tracing_log_err * err)7560 static void free_tracing_log_err(struct tracing_log_err *err)
7561 {
7562 kfree(err->cmd);
7563 kfree(err);
7564 }
7565
get_tracing_log_err(struct trace_array * tr,int len)7566 static struct tracing_log_err *get_tracing_log_err(struct trace_array *tr,
7567 int len)
7568 {
7569 struct tracing_log_err *err;
7570 char *cmd;
7571
7572 if (tr->n_err_log_entries < TRACING_LOG_ERRS_MAX) {
7573 err = alloc_tracing_log_err(len);
7574 if (PTR_ERR(err) != -ENOMEM)
7575 tr->n_err_log_entries++;
7576
7577 return err;
7578 }
7579 cmd = kzalloc(len, GFP_KERNEL);
7580 if (!cmd)
7581 return ERR_PTR(-ENOMEM);
7582 err = list_first_entry(&tr->err_log, struct tracing_log_err, list);
7583 kfree(err->cmd);
7584 err->cmd = cmd;
7585 list_del(&err->list);
7586
7587 return err;
7588 }
7589
7590 /**
7591 * err_pos - find the position of a string within a command for error careting
7592 * @cmd: The tracing command that caused the error
7593 * @str: The string to position the caret at within @cmd
7594 *
7595 * Finds the position of the first occurrence of @str within @cmd. The
7596 * return value can be passed to tracing_log_err() for caret placement
7597 * within @cmd.
7598 *
7599 * Returns the index within @cmd of the first occurrence of @str or 0
7600 * if @str was not found.
7601 */
err_pos(char * cmd,const char * str)7602 unsigned int err_pos(char *cmd, const char *str)
7603 {
7604 char *found;
7605
7606 if (WARN_ON(!strlen(cmd)))
7607 return 0;
7608
7609 found = strstr(cmd, str);
7610 if (found)
7611 return found - cmd;
7612
7613 return 0;
7614 }
7615
7616 /**
7617 * tracing_log_err - write an error to the tracing error log
7618 * @tr: The associated trace array for the error (NULL for top level array)
7619 * @loc: A string describing where the error occurred
7620 * @cmd: The tracing command that caused the error
7621 * @errs: The array of loc-specific static error strings
7622 * @type: The index into errs[], which produces the specific static err string
7623 * @pos: The position the caret should be placed in the cmd
7624 *
7625 * Writes an error into tracing/error_log of the form:
7626 *
7627 * <loc>: error: <text>
7628 * Command: <cmd>
7629 * ^
7630 *
7631 * tracing/error_log is a small log file containing the last
7632 * TRACING_LOG_ERRS_MAX errors (8). Memory for errors isn't allocated
7633 * unless there has been a tracing error, and the error log can be
7634 * cleared and have its memory freed by writing the empty string in
7635 * truncation mode to it i.e. echo > tracing/error_log.
7636 *
7637 * NOTE: the @errs array along with the @type param are used to
7638 * produce a static error string - this string is not copied and saved
7639 * when the error is logged - only a pointer to it is saved. See
7640 * existing callers for examples of how static strings are typically
7641 * defined for use with tracing_log_err().
7642 */
tracing_log_err(struct trace_array * tr,const char * loc,const char * cmd,const char ** errs,u8 type,u16 pos)7643 void tracing_log_err(struct trace_array *tr,
7644 const char *loc, const char *cmd,
7645 const char **errs, u8 type, u16 pos)
7646 {
7647 struct tracing_log_err *err;
7648 int len = 0;
7649
7650 if (!tr)
7651 tr = &global_trace;
7652
7653 len += sizeof(CMD_PREFIX) + 2 * sizeof("\n") + strlen(cmd) + 1;
7654
7655 guard(mutex)(&tracing_err_log_lock);
7656
7657 err = get_tracing_log_err(tr, len);
7658 if (PTR_ERR(err) == -ENOMEM)
7659 return;
7660
7661 snprintf(err->loc, TRACING_LOG_LOC_MAX, "%s: error: ", loc);
7662 snprintf(err->cmd, len, "\n" CMD_PREFIX "%s\n", cmd);
7663
7664 err->info.errs = errs;
7665 err->info.type = type;
7666 err->info.pos = pos;
7667 err->info.ts = local_clock();
7668
7669 list_add_tail(&err->list, &tr->err_log);
7670 }
7671
clear_tracing_err_log(struct trace_array * tr)7672 static void clear_tracing_err_log(struct trace_array *tr)
7673 {
7674 struct tracing_log_err *err, *next;
7675
7676 guard(mutex)(&tracing_err_log_lock);
7677
7678 list_for_each_entry_safe(err, next, &tr->err_log, list) {
7679 list_del(&err->list);
7680 free_tracing_log_err(err);
7681 }
7682
7683 tr->n_err_log_entries = 0;
7684 }
7685
tracing_err_log_seq_start(struct seq_file * m,loff_t * pos)7686 static void *tracing_err_log_seq_start(struct seq_file *m, loff_t *pos)
7687 {
7688 struct trace_array *tr = m->private;
7689
7690 mutex_lock(&tracing_err_log_lock);
7691
7692 return seq_list_start(&tr->err_log, *pos);
7693 }
7694
tracing_err_log_seq_next(struct seq_file * m,void * v,loff_t * pos)7695 static void *tracing_err_log_seq_next(struct seq_file *m, void *v, loff_t *pos)
7696 {
7697 struct trace_array *tr = m->private;
7698
7699 return seq_list_next(v, &tr->err_log, pos);
7700 }
7701
tracing_err_log_seq_stop(struct seq_file * m,void * v)7702 static void tracing_err_log_seq_stop(struct seq_file *m, void *v)
7703 {
7704 mutex_unlock(&tracing_err_log_lock);
7705 }
7706
tracing_err_log_show_pos(struct seq_file * m,u16 pos)7707 static void tracing_err_log_show_pos(struct seq_file *m, u16 pos)
7708 {
7709 u16 i;
7710
7711 for (i = 0; i < sizeof(CMD_PREFIX) - 1; i++)
7712 seq_putc(m, ' ');
7713 for (i = 0; i < pos; i++)
7714 seq_putc(m, ' ');
7715 seq_puts(m, "^\n");
7716 }
7717
tracing_err_log_seq_show(struct seq_file * m,void * v)7718 static int tracing_err_log_seq_show(struct seq_file *m, void *v)
7719 {
7720 struct tracing_log_err *err = v;
7721
7722 if (err) {
7723 const char *err_text = err->info.errs[err->info.type];
7724 u64 sec = err->info.ts;
7725 u32 nsec;
7726
7727 nsec = do_div(sec, NSEC_PER_SEC);
7728 seq_printf(m, "[%5llu.%06u] %s%s", sec, nsec / 1000,
7729 err->loc, err_text);
7730 seq_printf(m, "%s", err->cmd);
7731 tracing_err_log_show_pos(m, err->info.pos);
7732 }
7733
7734 return 0;
7735 }
7736
7737 static const struct seq_operations tracing_err_log_seq_ops = {
7738 .start = tracing_err_log_seq_start,
7739 .next = tracing_err_log_seq_next,
7740 .stop = tracing_err_log_seq_stop,
7741 .show = tracing_err_log_seq_show
7742 };
7743
tracing_err_log_open(struct inode * inode,struct file * file)7744 static int tracing_err_log_open(struct inode *inode, struct file *file)
7745 {
7746 struct trace_array *tr = inode->i_private;
7747 int ret = 0;
7748
7749 ret = tracing_check_open_get_tr(tr);
7750 if (ret)
7751 return ret;
7752
7753 /* If this file was opened for write, then erase contents */
7754 if ((file->f_mode & FMODE_WRITE) && (file->f_flags & O_TRUNC))
7755 clear_tracing_err_log(tr);
7756
7757 if (file->f_mode & FMODE_READ) {
7758 ret = seq_open(file, &tracing_err_log_seq_ops);
7759 if (!ret) {
7760 struct seq_file *m = file->private_data;
7761 m->private = tr;
7762 } else {
7763 trace_array_put(tr);
7764 }
7765 }
7766 return ret;
7767 }
7768
tracing_err_log_write(struct file * file,const char __user * buffer,size_t count,loff_t * ppos)7769 static ssize_t tracing_err_log_write(struct file *file,
7770 const char __user *buffer,
7771 size_t count, loff_t *ppos)
7772 {
7773 return count;
7774 }
7775
tracing_err_log_release(struct inode * inode,struct file * file)7776 static int tracing_err_log_release(struct inode *inode, struct file *file)
7777 {
7778 struct trace_array *tr = inode->i_private;
7779
7780 trace_array_put(tr);
7781
7782 if (file->f_mode & FMODE_READ)
7783 seq_release(inode, file);
7784
7785 return 0;
7786 }
7787
7788 static const struct file_operations tracing_err_log_fops = {
7789 .open = tracing_err_log_open,
7790 .write = tracing_err_log_write,
7791 .read = seq_read,
7792 .llseek = tracing_lseek,
7793 .release = tracing_err_log_release,
7794 };
7795
tracing_buffers_open(struct inode * inode,struct file * filp)7796 static int tracing_buffers_open(struct inode *inode, struct file *filp)
7797 {
7798 struct trace_array *tr = inode->i_private;
7799 struct ftrace_buffer_info *info;
7800 int ret;
7801
7802 ret = tracing_check_open_get_tr(tr);
7803 if (ret)
7804 return ret;
7805
7806 info = kvzalloc_obj(*info);
7807 if (!info) {
7808 trace_array_put(tr);
7809 return -ENOMEM;
7810 }
7811
7812 mutex_lock(&trace_types_lock);
7813
7814 info->iter.tr = tr;
7815 info->iter.cpu_file = tracing_get_cpu(inode);
7816 info->iter.trace = tr->current_trace;
7817 info->iter.array_buffer = &tr->array_buffer;
7818 info->spare = NULL;
7819 /* Force reading ring buffer for first read */
7820 info->read = (unsigned int)-1;
7821
7822 filp->private_data = info;
7823
7824 tr->trace_ref++;
7825
7826 mutex_unlock(&trace_types_lock);
7827
7828 ret = nonseekable_open(inode, filp);
7829 if (ret < 0)
7830 trace_array_put(tr);
7831
7832 return ret;
7833 }
7834
7835 static __poll_t
tracing_buffers_poll(struct file * filp,poll_table * poll_table)7836 tracing_buffers_poll(struct file *filp, poll_table *poll_table)
7837 {
7838 struct ftrace_buffer_info *info = filp->private_data;
7839 struct trace_iterator *iter = &info->iter;
7840
7841 return trace_poll(iter, filp, poll_table);
7842 }
7843
7844 static ssize_t
tracing_buffers_read(struct file * filp,char __user * ubuf,size_t count,loff_t * ppos)7845 tracing_buffers_read(struct file *filp, char __user *ubuf,
7846 size_t count, loff_t *ppos)
7847 {
7848 struct ftrace_buffer_info *info = filp->private_data;
7849 struct trace_iterator *iter = &info->iter;
7850 void *trace_data;
7851 int page_size;
7852 ssize_t ret = 0;
7853 ssize_t size;
7854
7855 if (!count)
7856 return 0;
7857
7858 if (iter->snapshot && tracer_uses_snapshot(iter->tr->current_trace))
7859 return -EBUSY;
7860
7861 page_size = ring_buffer_subbuf_size_get(iter->array_buffer->buffer);
7862
7863 /* Make sure the spare matches the current sub buffer size */
7864 if (info->spare) {
7865 if (page_size != info->spare_size) {
7866 ring_buffer_free_read_page(iter->array_buffer->buffer,
7867 info->spare_cpu, info->spare);
7868 info->spare = NULL;
7869 }
7870 }
7871
7872 if (!info->spare) {
7873 info->spare = ring_buffer_alloc_read_page(iter->array_buffer->buffer,
7874 iter->cpu_file);
7875 if (IS_ERR(info->spare)) {
7876 ret = PTR_ERR(info->spare);
7877 info->spare = NULL;
7878 } else {
7879 info->spare_cpu = iter->cpu_file;
7880 info->spare_size = page_size;
7881 }
7882 }
7883 if (!info->spare)
7884 return ret;
7885
7886 /* Do we have previous read data to read? */
7887 if (info->read < page_size)
7888 goto read;
7889
7890 again:
7891 trace_access_lock(iter->cpu_file);
7892 ret = ring_buffer_read_page(iter->array_buffer->buffer,
7893 info->spare,
7894 count,
7895 iter->cpu_file, 0);
7896 trace_access_unlock(iter->cpu_file);
7897
7898 if (ret < 0) {
7899 if (trace_empty(iter) && !iter->closed) {
7900 if (update_last_data_if_empty(iter->tr))
7901 return 0;
7902
7903 if ((filp->f_flags & O_NONBLOCK))
7904 return -EAGAIN;
7905
7906 ret = wait_on_pipe(iter, 0);
7907 if (ret)
7908 return ret;
7909
7910 goto again;
7911 }
7912 return 0;
7913 }
7914
7915 info->read = 0;
7916 read:
7917 size = page_size - info->read;
7918 if (size > count)
7919 size = count;
7920 trace_data = ring_buffer_read_page_data(info->spare);
7921 ret = copy_to_user(ubuf, trace_data + info->read, size);
7922 if (ret == size)
7923 return -EFAULT;
7924
7925 size -= ret;
7926
7927 *ppos += size;
7928 info->read += size;
7929
7930 return size;
7931 }
7932
tracing_buffers_flush(struct file * file,fl_owner_t id)7933 static int tracing_buffers_flush(struct file *file, fl_owner_t id)
7934 {
7935 struct ftrace_buffer_info *info = file->private_data;
7936 struct trace_iterator *iter = &info->iter;
7937
7938 iter->closed = true;
7939 /* Make sure the waiters see the new wait_index */
7940 (void)atomic_fetch_inc_release(&iter->wait_index);
7941
7942 ring_buffer_wake_waiters(iter->array_buffer->buffer, iter->cpu_file);
7943
7944 return 0;
7945 }
7946
tracing_buffers_release(struct inode * inode,struct file * file)7947 static int tracing_buffers_release(struct inode *inode, struct file *file)
7948 {
7949 struct ftrace_buffer_info *info = file->private_data;
7950 struct trace_iterator *iter = &info->iter;
7951
7952 guard(mutex)(&trace_types_lock);
7953
7954 iter->tr->trace_ref--;
7955
7956 __trace_array_put(iter->tr);
7957
7958 if (info->spare)
7959 ring_buffer_free_read_page(iter->array_buffer->buffer,
7960 info->spare_cpu, info->spare);
7961 kvfree(info);
7962
7963 return 0;
7964 }
7965
7966 struct buffer_ref {
7967 struct trace_buffer *buffer;
7968 void *page;
7969 int cpu;
7970 refcount_t refcount;
7971 };
7972
buffer_ref_release(struct buffer_ref * ref)7973 static void buffer_ref_release(struct buffer_ref *ref)
7974 {
7975 if (!refcount_dec_and_test(&ref->refcount))
7976 return;
7977 ring_buffer_free_read_page(ref->buffer, ref->cpu, ref->page);
7978 kfree(ref);
7979 }
7980
buffer_pipe_buf_release(struct pipe_inode_info * pipe,struct pipe_buffer * buf)7981 static void buffer_pipe_buf_release(struct pipe_inode_info *pipe,
7982 struct pipe_buffer *buf)
7983 {
7984 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
7985
7986 buffer_ref_release(ref);
7987 buf->private = 0;
7988 }
7989
buffer_pipe_buf_get(struct pipe_inode_info * pipe,struct pipe_buffer * buf)7990 static bool buffer_pipe_buf_get(struct pipe_inode_info *pipe,
7991 struct pipe_buffer *buf)
7992 {
7993 struct buffer_ref *ref = (struct buffer_ref *)buf->private;
7994
7995 if (refcount_read(&ref->refcount) > INT_MAX/2)
7996 return false;
7997
7998 refcount_inc(&ref->refcount);
7999 return true;
8000 }
8001
8002 /* Pipe buffer operations for a buffer. */
8003 static const struct pipe_buf_operations buffer_pipe_buf_ops = {
8004 .release = buffer_pipe_buf_release,
8005 .get = buffer_pipe_buf_get,
8006 };
8007
8008 /*
8009 * Callback from splice_to_pipe(), if we need to release some pages
8010 * at the end of the spd in case we error'ed out in filling the pipe.
8011 */
buffer_spd_release(struct splice_pipe_desc * spd,unsigned int i)8012 static void buffer_spd_release(struct splice_pipe_desc *spd, unsigned int i)
8013 {
8014 struct buffer_ref *ref =
8015 (struct buffer_ref *)spd->partial[i].private;
8016
8017 buffer_ref_release(ref);
8018 spd->partial[i].private = 0;
8019 }
8020
8021 static ssize_t
tracing_buffers_splice_read(struct file * file,loff_t * ppos,struct pipe_inode_info * pipe,size_t len,unsigned int flags)8022 tracing_buffers_splice_read(struct file *file, loff_t *ppos,
8023 struct pipe_inode_info *pipe, size_t len,
8024 unsigned int flags)
8025 {
8026 struct ftrace_buffer_info *info = file->private_data;
8027 struct trace_iterator *iter = &info->iter;
8028 struct partial_page partial_def[PIPE_DEF_BUFFERS];
8029 struct page *pages_def[PIPE_DEF_BUFFERS];
8030 struct splice_pipe_desc spd = {
8031 .pages = pages_def,
8032 .partial = partial_def,
8033 .nr_pages_max = PIPE_DEF_BUFFERS,
8034 .ops = &buffer_pipe_buf_ops,
8035 .spd_release = buffer_spd_release,
8036 };
8037 struct buffer_ref *ref;
8038 bool woken = false;
8039 int page_size;
8040 int entries, i;
8041 ssize_t ret = 0;
8042
8043 if (iter->snapshot && tracer_uses_snapshot(iter->tr->current_trace))
8044 return -EBUSY;
8045
8046 page_size = ring_buffer_subbuf_size_get(iter->array_buffer->buffer);
8047 if (*ppos & (page_size - 1))
8048 return -EINVAL;
8049
8050 if (len & (page_size - 1)) {
8051 if (len < page_size)
8052 return -EINVAL;
8053 len &= (~(page_size - 1));
8054 }
8055
8056 if (splice_grow_spd(pipe, &spd))
8057 return -ENOMEM;
8058
8059 again:
8060 trace_access_lock(iter->cpu_file);
8061 entries = ring_buffer_entries_cpu(iter->array_buffer->buffer, iter->cpu_file);
8062
8063 for (i = 0; i < spd.nr_pages_max && len && entries; i++, len -= page_size) {
8064 struct page *page;
8065 int r;
8066
8067 ref = kzalloc_obj(*ref);
8068 if (!ref) {
8069 ret = -ENOMEM;
8070 break;
8071 }
8072
8073 refcount_set(&ref->refcount, 1);
8074 ref->buffer = iter->array_buffer->buffer;
8075 ref->page = ring_buffer_alloc_read_page(ref->buffer, iter->cpu_file);
8076 if (IS_ERR(ref->page)) {
8077 ret = PTR_ERR(ref->page);
8078 ref->page = NULL;
8079 kfree(ref);
8080 break;
8081 }
8082 ref->cpu = iter->cpu_file;
8083
8084 r = ring_buffer_read_page(ref->buffer, ref->page,
8085 len, iter->cpu_file, 1);
8086 if (r < 0) {
8087 ring_buffer_free_read_page(ref->buffer, ref->cpu,
8088 ref->page);
8089 kfree(ref);
8090 break;
8091 }
8092
8093 page = virt_to_page(ring_buffer_read_page_data(ref->page));
8094
8095 spd.pages[i] = page;
8096 spd.partial[i].len = page_size;
8097 spd.partial[i].offset = 0;
8098 spd.partial[i].private = (unsigned long)ref;
8099 spd.nr_pages++;
8100 *ppos += page_size;
8101
8102 entries = ring_buffer_entries_cpu(iter->array_buffer->buffer, iter->cpu_file);
8103 }
8104
8105 trace_access_unlock(iter->cpu_file);
8106 spd.nr_pages = i;
8107
8108 /* did we read anything? */
8109 if (!spd.nr_pages) {
8110
8111 if (ret)
8112 goto out;
8113
8114 if (woken)
8115 goto out;
8116
8117 ret = -EAGAIN;
8118 if ((file->f_flags & O_NONBLOCK) || (flags & SPLICE_F_NONBLOCK))
8119 goto out;
8120
8121 ret = wait_on_pipe(iter, iter->snapshot ? 0 : iter->tr->buffer_percent);
8122 if (ret)
8123 goto out;
8124
8125 /* No need to wait after waking up when tracing is off */
8126 if (!tracer_tracing_is_on(iter->tr))
8127 goto out;
8128
8129 /* Iterate one more time to collect any new data then exit */
8130 woken = true;
8131
8132 goto again;
8133 }
8134
8135 ret = splice_to_pipe(pipe, &spd);
8136 out:
8137 splice_shrink_spd(&spd);
8138
8139 return ret;
8140 }
8141
tracing_buffers_ioctl(struct file * file,unsigned int cmd,unsigned long arg)8142 static long tracing_buffers_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
8143 {
8144 struct ftrace_buffer_info *info = file->private_data;
8145 struct trace_iterator *iter = &info->iter;
8146 int err;
8147
8148 if (cmd == TRACE_MMAP_IOCTL_GET_READER) {
8149 if (!(file->f_flags & O_NONBLOCK)) {
8150 err = ring_buffer_wait(iter->array_buffer->buffer,
8151 iter->cpu_file,
8152 iter->tr->buffer_percent,
8153 NULL, NULL);
8154 if (err)
8155 return err;
8156 }
8157
8158 return ring_buffer_map_get_reader(iter->array_buffer->buffer,
8159 iter->cpu_file);
8160 } else if (cmd) {
8161 return -ENOTTY;
8162 }
8163
8164 /*
8165 * An ioctl call with cmd 0 to the ring buffer file will wake up all
8166 * waiters
8167 */
8168 guard(mutex)(&trace_types_lock);
8169
8170 /* Make sure the waiters see the new wait_index */
8171 (void)atomic_fetch_inc_release(&iter->wait_index);
8172
8173 ring_buffer_wake_waiters(iter->array_buffer->buffer, iter->cpu_file);
8174
8175 return 0;
8176 }
8177
8178 #ifdef CONFIG_TRACER_SNAPSHOT
get_snapshot_map(struct trace_array * tr)8179 static int get_snapshot_map(struct trace_array *tr)
8180 {
8181 int err = 0;
8182
8183 /*
8184 * Called with mmap_lock held. lockdep would be unhappy if we would now
8185 * take trace_types_lock. Instead use the specific
8186 * snapshot_trigger_lock.
8187 */
8188 spin_lock(&tr->snapshot_trigger_lock);
8189
8190 if (tr->snapshot || tr->mapped == UINT_MAX)
8191 err = -EBUSY;
8192 else
8193 tr->mapped++;
8194
8195 spin_unlock(&tr->snapshot_trigger_lock);
8196
8197 /* Wait for update_max_tr() to observe iter->tr->mapped */
8198 if (tr->mapped == 1)
8199 synchronize_rcu();
8200
8201 return err;
8202
8203 }
put_snapshot_map(struct trace_array * tr)8204 static void put_snapshot_map(struct trace_array *tr)
8205 {
8206 spin_lock(&tr->snapshot_trigger_lock);
8207 if (!WARN_ON(!tr->mapped))
8208 tr->mapped--;
8209 spin_unlock(&tr->snapshot_trigger_lock);
8210 }
8211 #else
get_snapshot_map(struct trace_array * tr)8212 static inline int get_snapshot_map(struct trace_array *tr) { return 0; }
put_snapshot_map(struct trace_array * tr)8213 static inline void put_snapshot_map(struct trace_array *tr) { }
8214 #endif
8215
tracing_buffers_mmap_close(struct vm_area_struct * vma)8216 static void tracing_buffers_mmap_close(struct vm_area_struct *vma)
8217 {
8218 struct ftrace_buffer_info *info = vma->vm_file->private_data;
8219 struct trace_iterator *iter = &info->iter;
8220
8221 WARN_ON(ring_buffer_unmap(iter->array_buffer->buffer, iter->cpu_file));
8222 put_snapshot_map(iter->tr);
8223 }
8224
tracing_buffers_may_split(struct vm_area_struct * vma,unsigned long addr)8225 static int tracing_buffers_may_split(struct vm_area_struct *vma, unsigned long addr)
8226 {
8227 /*
8228 * Trace buffer mappings require the complete buffer including
8229 * the meta page. Partial mappings are not supported.
8230 */
8231 return -EINVAL;
8232 }
8233
8234 static const struct vm_operations_struct tracing_buffers_vmops = {
8235 .close = tracing_buffers_mmap_close,
8236 .may_split = tracing_buffers_may_split,
8237 };
8238
tracing_buffers_mmap(struct file * filp,struct vm_area_struct * vma)8239 static int tracing_buffers_mmap(struct file *filp, struct vm_area_struct *vma)
8240 {
8241 struct ftrace_buffer_info *info = filp->private_data;
8242 struct trace_iterator *iter = &info->iter;
8243 int ret = 0;
8244
8245 /* A memmap'ed and backup buffers are not supported for user space mmap */
8246 if (iter->tr->flags & (TRACE_ARRAY_FL_MEMMAP | TRACE_ARRAY_FL_VMALLOC))
8247 return -ENODEV;
8248
8249 ret = get_snapshot_map(iter->tr);
8250 if (ret)
8251 return ret;
8252
8253 ret = ring_buffer_map(iter->array_buffer->buffer, iter->cpu_file, vma);
8254 if (ret)
8255 put_snapshot_map(iter->tr);
8256
8257 vma->vm_ops = &tracing_buffers_vmops;
8258
8259 return ret;
8260 }
8261
8262 static const struct file_operations tracing_buffers_fops = {
8263 .open = tracing_buffers_open,
8264 .read = tracing_buffers_read,
8265 .poll = tracing_buffers_poll,
8266 .release = tracing_buffers_release,
8267 .flush = tracing_buffers_flush,
8268 .splice_read = tracing_buffers_splice_read,
8269 .unlocked_ioctl = tracing_buffers_ioctl,
8270 .mmap = tracing_buffers_mmap,
8271 };
8272
8273 static ssize_t
tracing_stats_read(struct file * filp,char __user * ubuf,size_t count,loff_t * ppos)8274 tracing_stats_read(struct file *filp, char __user *ubuf,
8275 size_t count, loff_t *ppos)
8276 {
8277 struct inode *inode = file_inode(filp);
8278 struct trace_array *tr = inode->i_private;
8279 struct array_buffer *trace_buf = &tr->array_buffer;
8280 int cpu = tracing_get_cpu(inode);
8281 struct trace_seq *s;
8282 unsigned long cnt;
8283 unsigned long long t;
8284 unsigned long usec_rem;
8285
8286 s = kmalloc_obj(*s);
8287 if (!s)
8288 return -ENOMEM;
8289
8290 trace_seq_init(s);
8291
8292 cnt = ring_buffer_entries_cpu(trace_buf->buffer, cpu);
8293 trace_seq_printf(s, "entries: %ld\n", cnt);
8294
8295 cnt = ring_buffer_overrun_cpu(trace_buf->buffer, cpu);
8296 trace_seq_printf(s, "overrun: %ld\n", cnt);
8297
8298 cnt = ring_buffer_commit_overrun_cpu(trace_buf->buffer, cpu);
8299 trace_seq_printf(s, "commit overrun: %ld\n", cnt);
8300
8301 cnt = ring_buffer_bytes_cpu(trace_buf->buffer, cpu);
8302 trace_seq_printf(s, "bytes: %ld\n", cnt);
8303
8304 if (trace_clocks[tr->clock_id].in_ns) {
8305 /* local or global for trace_clock */
8306 t = ns2usecs(ring_buffer_oldest_event_ts(trace_buf->buffer, cpu));
8307 usec_rem = do_div(t, USEC_PER_SEC);
8308 trace_seq_printf(s, "oldest event ts: %5llu.%06lu\n",
8309 t, usec_rem);
8310
8311 t = ns2usecs(ring_buffer_time_stamp(trace_buf->buffer));
8312 usec_rem = do_div(t, USEC_PER_SEC);
8313 trace_seq_printf(s, "now ts: %5llu.%06lu\n", t, usec_rem);
8314 } else {
8315 /* counter or tsc mode for trace_clock */
8316 trace_seq_printf(s, "oldest event ts: %llu\n",
8317 ring_buffer_oldest_event_ts(trace_buf->buffer, cpu));
8318
8319 trace_seq_printf(s, "now ts: %llu\n",
8320 ring_buffer_time_stamp(trace_buf->buffer));
8321 }
8322
8323 cnt = ring_buffer_dropped_events_cpu(trace_buf->buffer, cpu);
8324 trace_seq_printf(s, "dropped events: %ld\n", cnt);
8325
8326 cnt = ring_buffer_read_events_cpu(trace_buf->buffer, cpu);
8327 trace_seq_printf(s, "read events: %ld\n", cnt);
8328
8329 count = simple_read_from_buffer(ubuf, count, ppos,
8330 s->buffer, trace_seq_used(s));
8331
8332 kfree(s);
8333
8334 return count;
8335 }
8336
8337 static const struct file_operations tracing_stats_fops = {
8338 .open = tracing_open_generic_tr,
8339 .read = tracing_stats_read,
8340 .llseek = generic_file_llseek,
8341 .release = tracing_release_generic_tr,
8342 };
8343
8344 #ifdef CONFIG_DYNAMIC_FTRACE
8345
8346 static ssize_t
tracing_read_dyn_info(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)8347 tracing_read_dyn_info(struct file *filp, char __user *ubuf,
8348 size_t cnt, loff_t *ppos)
8349 {
8350 ssize_t ret;
8351 char *buf;
8352 int r;
8353
8354 /* 512 should be plenty to hold the amount needed */
8355 #define DYN_INFO_BUF_SIZE 512
8356
8357 buf = kmalloc(DYN_INFO_BUF_SIZE, GFP_KERNEL);
8358 if (!buf)
8359 return -ENOMEM;
8360
8361 r = scnprintf(buf, DYN_INFO_BUF_SIZE,
8362 "%ld pages:%ld groups: %ld\n"
8363 "ftrace boot update time = %llu (ns)\n"
8364 "ftrace module total update time = %llu (ns)\n",
8365 ftrace_update_tot_cnt,
8366 ftrace_number_of_pages,
8367 ftrace_number_of_groups,
8368 ftrace_update_time,
8369 ftrace_total_mod_time);
8370
8371 ret = simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
8372 kfree(buf);
8373 return ret;
8374 }
8375
8376 static const struct file_operations tracing_dyn_info_fops = {
8377 .open = tracing_open_generic,
8378 .read = tracing_read_dyn_info,
8379 .llseek = generic_file_llseek,
8380 };
8381 #endif /* CONFIG_DYNAMIC_FTRACE */
8382
8383 #if defined(CONFIG_TRACER_SNAPSHOT) && defined(CONFIG_DYNAMIC_FTRACE)
8384 static void
ftrace_snapshot(unsigned long ip,unsigned long parent_ip,struct trace_array * tr,struct ftrace_probe_ops * ops,void * data)8385 ftrace_snapshot(unsigned long ip, unsigned long parent_ip,
8386 struct trace_array *tr, struct ftrace_probe_ops *ops,
8387 void *data)
8388 {
8389 tracing_snapshot_instance(tr);
8390 }
8391
8392 static void
ftrace_count_snapshot(unsigned long ip,unsigned long parent_ip,struct trace_array * tr,struct ftrace_probe_ops * ops,void * data)8393 ftrace_count_snapshot(unsigned long ip, unsigned long parent_ip,
8394 struct trace_array *tr, struct ftrace_probe_ops *ops,
8395 void *data)
8396 {
8397 struct ftrace_func_mapper *mapper = data;
8398 long *count = NULL;
8399
8400 if (mapper)
8401 count = (long *)ftrace_func_mapper_find_ip(mapper, ip);
8402
8403 if (count) {
8404
8405 if (*count <= 0)
8406 return;
8407
8408 (*count)--;
8409 }
8410
8411 tracing_snapshot_instance(tr);
8412 }
8413
8414 static int
ftrace_snapshot_print(struct seq_file * m,unsigned long ip,struct ftrace_probe_ops * ops,void * data)8415 ftrace_snapshot_print(struct seq_file *m, unsigned long ip,
8416 struct ftrace_probe_ops *ops, void *data)
8417 {
8418 struct ftrace_func_mapper *mapper = data;
8419 long *count = NULL;
8420
8421 seq_printf(m, "%ps:", (void *)ip);
8422
8423 seq_puts(m, "snapshot");
8424
8425 if (mapper)
8426 count = (long *)ftrace_func_mapper_find_ip(mapper, ip);
8427
8428 if (count)
8429 seq_printf(m, ":count=%ld\n", *count);
8430 else
8431 seq_puts(m, ":unlimited\n");
8432
8433 return 0;
8434 }
8435
8436 static int
ftrace_snapshot_init(struct ftrace_probe_ops * ops,struct trace_array * tr,unsigned long ip,void * init_data,void ** data)8437 ftrace_snapshot_init(struct ftrace_probe_ops *ops, struct trace_array *tr,
8438 unsigned long ip, void *init_data, void **data)
8439 {
8440 struct ftrace_func_mapper *mapper = *data;
8441
8442 if (!mapper) {
8443 mapper = allocate_ftrace_func_mapper();
8444 if (!mapper)
8445 return -ENOMEM;
8446 *data = mapper;
8447 }
8448
8449 return ftrace_func_mapper_add_ip(mapper, ip, init_data);
8450 }
8451
8452 static void
ftrace_snapshot_free(struct ftrace_probe_ops * ops,struct trace_array * tr,unsigned long ip,void * data)8453 ftrace_snapshot_free(struct ftrace_probe_ops *ops, struct trace_array *tr,
8454 unsigned long ip, void *data)
8455 {
8456 struct ftrace_func_mapper *mapper = data;
8457
8458 if (!ip) {
8459 if (!mapper)
8460 return;
8461 free_ftrace_func_mapper(mapper, NULL);
8462 return;
8463 }
8464
8465 ftrace_func_mapper_remove_ip(mapper, ip);
8466 }
8467
8468 static struct ftrace_probe_ops snapshot_probe_ops = {
8469 .func = ftrace_snapshot,
8470 .print = ftrace_snapshot_print,
8471 };
8472
8473 static struct ftrace_probe_ops snapshot_count_probe_ops = {
8474 .func = ftrace_count_snapshot,
8475 .print = ftrace_snapshot_print,
8476 .init = ftrace_snapshot_init,
8477 .free = ftrace_snapshot_free,
8478 };
8479
8480 static int
ftrace_trace_snapshot_callback(struct trace_array * tr,struct ftrace_hash * hash,char * glob,char * cmd,char * param,int enable)8481 ftrace_trace_snapshot_callback(struct trace_array *tr, struct ftrace_hash *hash,
8482 char *glob, char *cmd, char *param, int enable)
8483 {
8484 struct ftrace_probe_ops *ops;
8485 void *count = (void *)-1;
8486 char *number;
8487 int ret;
8488
8489 if (!tr)
8490 return -ENODEV;
8491
8492 /* hash funcs only work with set_ftrace_filter */
8493 if (!enable)
8494 return -EINVAL;
8495
8496 ops = param ? &snapshot_count_probe_ops : &snapshot_probe_ops;
8497
8498 if (glob[0] == '!') {
8499 ret = unregister_ftrace_function_probe_func(glob+1, tr, ops);
8500 if (!ret)
8501 tracing_disarm_snapshot(tr);
8502
8503 return ret;
8504 }
8505
8506 if (!param)
8507 goto out_reg;
8508
8509 number = strsep(¶m, ":");
8510
8511 if (!strlen(number))
8512 goto out_reg;
8513
8514 /*
8515 * We use the callback data field (which is a pointer)
8516 * as our counter.
8517 */
8518 ret = kstrtoul(number, 0, (unsigned long *)&count);
8519 if (ret)
8520 return ret;
8521
8522 out_reg:
8523 ret = tracing_arm_snapshot(tr);
8524 if (ret < 0)
8525 return ret;
8526
8527 ret = register_ftrace_function_probe(glob, tr, ops, count);
8528 if (ret < 0)
8529 tracing_disarm_snapshot(tr);
8530
8531 return ret < 0 ? ret : 0;
8532 }
8533
8534 static struct ftrace_func_command ftrace_snapshot_cmd = {
8535 .name = "snapshot",
8536 .func = ftrace_trace_snapshot_callback,
8537 };
8538
register_snapshot_cmd(void)8539 static __init int register_snapshot_cmd(void)
8540 {
8541 return register_ftrace_command(&ftrace_snapshot_cmd);
8542 }
8543 #else
register_snapshot_cmd(void)8544 static inline __init int register_snapshot_cmd(void) { return 0; }
8545 #endif /* defined(CONFIG_TRACER_SNAPSHOT) && defined(CONFIG_DYNAMIC_FTRACE) */
8546
tracing_get_dentry(struct trace_array * tr)8547 static struct dentry *tracing_get_dentry(struct trace_array *tr)
8548 {
8549 /* Top directory uses NULL as the parent */
8550 if (tr->flags & TRACE_ARRAY_FL_GLOBAL)
8551 return NULL;
8552
8553 if (WARN_ON(!tr->dir))
8554 return ERR_PTR(-ENODEV);
8555
8556 /* All sub buffers have a descriptor */
8557 return tr->dir;
8558 }
8559
tracing_dentry_percpu(struct trace_array * tr,int cpu)8560 static struct dentry *tracing_dentry_percpu(struct trace_array *tr, int cpu)
8561 {
8562 struct dentry *d_tracer;
8563
8564 if (tr->percpu_dir)
8565 return tr->percpu_dir;
8566
8567 d_tracer = tracing_get_dentry(tr);
8568 if (IS_ERR(d_tracer))
8569 return NULL;
8570
8571 tr->percpu_dir = tracefs_create_dir("per_cpu", d_tracer);
8572
8573 MEM_FAIL(!tr->percpu_dir,
8574 "Could not create tracefs directory 'per_cpu/%d'\n", cpu);
8575
8576 return tr->percpu_dir;
8577 }
8578
8579 static struct dentry *
trace_create_cpu_file(const char * name,umode_t mode,struct dentry * parent,void * data,long cpu,const struct file_operations * fops)8580 trace_create_cpu_file(const char *name, umode_t mode, struct dentry *parent,
8581 void *data, long cpu, const struct file_operations *fops)
8582 {
8583 struct dentry *ret = trace_create_file(name, mode, parent, data, fops);
8584
8585 if (ret) /* See tracing_get_cpu() */
8586 d_inode(ret)->i_cdev = (void *)(cpu + 1);
8587 return ret;
8588 }
8589
8590 static void
tracing_init_tracefs_percpu(struct trace_array * tr,long cpu)8591 tracing_init_tracefs_percpu(struct trace_array *tr, long cpu)
8592 {
8593 struct dentry *d_percpu = tracing_dentry_percpu(tr, cpu);
8594 struct dentry *d_cpu;
8595 char cpu_dir[30]; /* 30 characters should be more than enough */
8596
8597 if (!d_percpu)
8598 return;
8599
8600 snprintf(cpu_dir, 30, "cpu%ld", cpu);
8601 d_cpu = tracefs_create_dir(cpu_dir, d_percpu);
8602 if (!d_cpu) {
8603 pr_warn("Could not create tracefs '%s' entry\n", cpu_dir);
8604 return;
8605 }
8606
8607 /* per cpu trace_pipe */
8608 trace_create_cpu_file("trace_pipe", TRACE_MODE_READ, d_cpu,
8609 tr, cpu, &tracing_pipe_fops);
8610
8611 /* per cpu trace */
8612 trace_create_cpu_file("trace", TRACE_MODE_WRITE, d_cpu,
8613 tr, cpu, &tracing_fops);
8614
8615 trace_create_cpu_file("trace_pipe_raw", TRACE_MODE_READ, d_cpu,
8616 tr, cpu, &tracing_buffers_fops);
8617
8618 trace_create_cpu_file("stats", TRACE_MODE_READ, d_cpu,
8619 tr, cpu, &tracing_stats_fops);
8620
8621 trace_create_cpu_file("buffer_size_kb", TRACE_MODE_WRITE, d_cpu,
8622 tr, cpu, &tracing_entries_fops);
8623
8624 if (tr->range_addr_start)
8625 trace_create_cpu_file("buffer_meta", TRACE_MODE_READ, d_cpu,
8626 tr, cpu, &tracing_buffer_meta_fops);
8627 #ifdef CONFIG_TRACER_SNAPSHOT
8628 if (!tr->range_addr_start) {
8629 trace_create_cpu_file("snapshot", TRACE_MODE_WRITE, d_cpu,
8630 tr, cpu, &snapshot_fops);
8631
8632 trace_create_cpu_file("snapshot_raw", TRACE_MODE_READ, d_cpu,
8633 tr, cpu, &snapshot_raw_fops);
8634 }
8635 #endif
8636 }
8637
8638 #ifdef CONFIG_FTRACE_SELFTEST
8639 /* Let selftest have access to static functions in this file */
8640 #include "trace_selftest.c"
8641 #endif
8642
8643 static ssize_t
trace_options_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)8644 trace_options_read(struct file *filp, char __user *ubuf, size_t cnt,
8645 loff_t *ppos)
8646 {
8647 struct trace_option_dentry *topt = filp->private_data;
8648 char *buf;
8649
8650 if (topt->flags->val & topt->opt->bit)
8651 buf = "1\n";
8652 else
8653 buf = "0\n";
8654
8655 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
8656 }
8657
8658 static ssize_t
trace_options_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)8659 trace_options_write(struct file *filp, const char __user *ubuf, size_t cnt,
8660 loff_t *ppos)
8661 {
8662 struct trace_option_dentry *topt = filp->private_data;
8663 unsigned long val;
8664 int ret;
8665
8666 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
8667 if (ret)
8668 return ret;
8669
8670 if (val != 0 && val != 1)
8671 return -EINVAL;
8672
8673 if (!!(topt->flags->val & topt->opt->bit) != val) {
8674 guard(mutex)(&trace_types_lock);
8675 ret = __set_tracer_option(topt->tr, topt->flags,
8676 topt->opt, !val);
8677 if (ret)
8678 return ret;
8679 }
8680
8681 *ppos += cnt;
8682
8683 return cnt;
8684 }
8685
tracing_open_options(struct inode * inode,struct file * filp)8686 static int tracing_open_options(struct inode *inode, struct file *filp)
8687 {
8688 struct trace_option_dentry *topt = inode->i_private;
8689 int ret;
8690
8691 ret = tracing_check_open_get_tr(topt->tr);
8692 if (ret)
8693 return ret;
8694
8695 filp->private_data = inode->i_private;
8696 return 0;
8697 }
8698
tracing_release_options(struct inode * inode,struct file * file)8699 static int tracing_release_options(struct inode *inode, struct file *file)
8700 {
8701 struct trace_option_dentry *topt = file->private_data;
8702
8703 trace_array_put(topt->tr);
8704 return 0;
8705 }
8706
8707 static const struct file_operations trace_options_fops = {
8708 .open = tracing_open_options,
8709 .read = trace_options_read,
8710 .write = trace_options_write,
8711 .llseek = generic_file_llseek,
8712 .release = tracing_release_options,
8713 };
8714
8715 /*
8716 * In order to pass in both the trace_array descriptor as well as the index
8717 * to the flag that the trace option file represents, the trace_array
8718 * has a character array of trace_flags_index[], which holds the index
8719 * of the bit for the flag it represents. index[0] == 0, index[1] == 1, etc.
8720 * The address of this character array is passed to the flag option file
8721 * read/write callbacks.
8722 *
8723 * In order to extract both the index and the trace_array descriptor,
8724 * get_tr_index() uses the following algorithm.
8725 *
8726 * idx = *ptr;
8727 *
8728 * As the pointer itself contains the address of the index (remember
8729 * index[1] == 1).
8730 *
8731 * Then to get the trace_array descriptor, by subtracting that index
8732 * from the ptr, we get to the start of the index itself.
8733 *
8734 * ptr - idx == &index[0]
8735 *
8736 * Then a simple container_of() from that pointer gets us to the
8737 * trace_array descriptor.
8738 */
get_tr_index(void * data,struct trace_array ** ptr,unsigned int * pindex)8739 static void get_tr_index(void *data, struct trace_array **ptr,
8740 unsigned int *pindex)
8741 {
8742 *pindex = *(unsigned char *)data;
8743
8744 *ptr = container_of(data - *pindex, struct trace_array,
8745 trace_flags_index);
8746 }
8747
8748 static ssize_t
trace_options_core_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)8749 trace_options_core_read(struct file *filp, char __user *ubuf, size_t cnt,
8750 loff_t *ppos)
8751 {
8752 void *tr_index = filp->private_data;
8753 struct trace_array *tr;
8754 unsigned int index;
8755 char *buf;
8756
8757 get_tr_index(tr_index, &tr, &index);
8758
8759 if (tr->trace_flags & (1ULL << index))
8760 buf = "1\n";
8761 else
8762 buf = "0\n";
8763
8764 return simple_read_from_buffer(ubuf, cnt, ppos, buf, 2);
8765 }
8766
8767 static ssize_t
trace_options_core_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)8768 trace_options_core_write(struct file *filp, const char __user *ubuf, size_t cnt,
8769 loff_t *ppos)
8770 {
8771 void *tr_index = filp->private_data;
8772 struct trace_array *tr;
8773 unsigned int index;
8774 unsigned long val;
8775 int ret;
8776
8777 get_tr_index(tr_index, &tr, &index);
8778
8779 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
8780 if (ret)
8781 return ret;
8782
8783 if (val != 0 && val != 1)
8784 return -EINVAL;
8785
8786 mutex_lock(&event_mutex);
8787 mutex_lock(&trace_types_lock);
8788 ret = set_tracer_flag(tr, 1ULL << index, val);
8789 mutex_unlock(&trace_types_lock);
8790 mutex_unlock(&event_mutex);
8791
8792 if (ret < 0)
8793 return ret;
8794
8795 *ppos += cnt;
8796
8797 return cnt;
8798 }
8799
8800 static const struct file_operations trace_options_core_fops = {
8801 .open = tracing_open_generic,
8802 .read = trace_options_core_read,
8803 .write = trace_options_core_write,
8804 .llseek = generic_file_llseek,
8805 };
8806
trace_create_file(const char * name,umode_t mode,struct dentry * parent,void * data,const struct file_operations * fops)8807 struct dentry *trace_create_file(const char *name,
8808 umode_t mode,
8809 struct dentry *parent,
8810 void *data,
8811 const struct file_operations *fops)
8812 {
8813 struct dentry *ret;
8814
8815 ret = tracefs_create_file(name, mode, parent, data, fops);
8816 if (!ret)
8817 pr_warn("Could not create tracefs '%s' entry\n", name);
8818
8819 return ret;
8820 }
8821
8822
trace_options_init_dentry(struct trace_array * tr)8823 static struct dentry *trace_options_init_dentry(struct trace_array *tr)
8824 {
8825 struct dentry *d_tracer;
8826
8827 if (tr->options)
8828 return tr->options;
8829
8830 d_tracer = tracing_get_dentry(tr);
8831 if (IS_ERR(d_tracer))
8832 return NULL;
8833
8834 tr->options = tracefs_create_dir("options", d_tracer);
8835 if (!tr->options) {
8836 pr_warn("Could not create tracefs directory 'options'\n");
8837 return NULL;
8838 }
8839
8840 return tr->options;
8841 }
8842
8843 static void
create_trace_option_file(struct trace_array * tr,struct trace_option_dentry * topt,struct tracer_flags * flags,struct tracer_opt * opt)8844 create_trace_option_file(struct trace_array *tr,
8845 struct trace_option_dentry *topt,
8846 struct tracer_flags *flags,
8847 struct tracer_opt *opt)
8848 {
8849 struct dentry *t_options;
8850
8851 t_options = trace_options_init_dentry(tr);
8852 if (!t_options)
8853 return;
8854
8855 topt->flags = flags;
8856 topt->opt = opt;
8857 topt->tr = tr;
8858
8859 topt->entry = trace_create_file(opt->name, TRACE_MODE_WRITE,
8860 t_options, topt, &trace_options_fops);
8861 }
8862
8863 static int
create_trace_option_files(struct trace_array * tr,struct tracer * tracer,struct tracer_flags * flags)8864 create_trace_option_files(struct trace_array *tr, struct tracer *tracer,
8865 struct tracer_flags *flags)
8866 {
8867 struct trace_option_dentry *topts;
8868 struct trace_options *tr_topts;
8869 struct tracer_opt *opts;
8870 int cnt;
8871
8872 if (!flags || !flags->opts)
8873 return 0;
8874
8875 opts = flags->opts;
8876
8877 for (cnt = 0; opts[cnt].name; cnt++)
8878 ;
8879
8880 topts = kzalloc_objs(*topts, cnt + 1);
8881 if (!topts)
8882 return 0;
8883
8884 tr_topts = krealloc(tr->topts, sizeof(*tr->topts) * (tr->nr_topts + 1),
8885 GFP_KERNEL);
8886 if (!tr_topts) {
8887 kfree(topts);
8888 return -ENOMEM;
8889 }
8890
8891 tr->topts = tr_topts;
8892 tr->topts[tr->nr_topts].tracer = tracer;
8893 tr->topts[tr->nr_topts].topts = topts;
8894 tr->nr_topts++;
8895
8896 for (cnt = 0; opts[cnt].name; cnt++) {
8897 create_trace_option_file(tr, &topts[cnt], flags,
8898 &opts[cnt]);
8899 MEM_FAIL(topts[cnt].entry == NULL,
8900 "Failed to create trace option: %s",
8901 opts[cnt].name);
8902 }
8903 return 0;
8904 }
8905
get_global_flags_val(struct tracer * tracer)8906 static int get_global_flags_val(struct tracer *tracer)
8907 {
8908 struct tracers *t;
8909
8910 list_for_each_entry(t, &global_trace.tracers, list) {
8911 if (t->tracer != tracer)
8912 continue;
8913 if (!t->flags)
8914 return -1;
8915 return t->flags->val;
8916 }
8917 return -1;
8918 }
8919
add_tracer_options(struct trace_array * tr,struct tracers * t)8920 static int add_tracer_options(struct trace_array *tr, struct tracers *t)
8921 {
8922 struct tracer *tracer = t->tracer;
8923 struct tracer_flags *flags = t->flags ?: tracer->flags;
8924
8925 if (!flags)
8926 return 0;
8927
8928 /* Only add tracer options after update_tracer_options finish */
8929 if (!tracer_options_updated)
8930 return 0;
8931
8932 return create_trace_option_files(tr, tracer, flags);
8933 }
8934
add_tracer(struct trace_array * tr,struct tracer * tracer)8935 static int add_tracer(struct trace_array *tr, struct tracer *tracer)
8936 {
8937 struct tracer_flags *flags;
8938 struct tracers *t;
8939 int ret;
8940
8941 /* Only enable if the directory has been created already. */
8942 if (!tr->dir && !(tr->flags & TRACE_ARRAY_FL_GLOBAL))
8943 return 0;
8944
8945 /*
8946 * If this is an instance, only create flags for tracers
8947 * the instance may have.
8948 */
8949 if (!trace_ok_for_array(tracer, tr))
8950 return 0;
8951
8952 t = kmalloc_obj(*t);
8953 if (!t)
8954 return -ENOMEM;
8955
8956 t->tracer = tracer;
8957 t->flags = NULL;
8958 list_add(&t->list, &tr->tracers);
8959
8960 flags = tracer->flags;
8961 if (!flags) {
8962 if (!tracer->default_flags)
8963 return 0;
8964
8965 /*
8966 * If the tracer defines default flags, it means the flags are
8967 * per trace instance.
8968 */
8969 flags = kmalloc_obj(*flags);
8970 if (!flags)
8971 return -ENOMEM;
8972
8973 *flags = *tracer->default_flags;
8974 flags->trace = tracer;
8975
8976 t->flags = flags;
8977
8978 /* If this is an instance, inherit the global_trace flags */
8979 if (!(tr->flags & TRACE_ARRAY_FL_GLOBAL)) {
8980 int val = get_global_flags_val(tracer);
8981 if (!WARN_ON_ONCE(val < 0))
8982 flags->val = val;
8983 }
8984 }
8985
8986 ret = add_tracer_options(tr, t);
8987 if (ret < 0) {
8988 list_del(&t->list);
8989 kfree(t->flags);
8990 kfree(t);
8991 }
8992
8993 return ret;
8994 }
8995
8996 static struct dentry *
create_trace_option_core_file(struct trace_array * tr,const char * option,long index)8997 create_trace_option_core_file(struct trace_array *tr,
8998 const char *option, long index)
8999 {
9000 struct dentry *t_options;
9001
9002 t_options = trace_options_init_dentry(tr);
9003 if (!t_options)
9004 return NULL;
9005
9006 return trace_create_file(option, TRACE_MODE_WRITE, t_options,
9007 (void *)&tr->trace_flags_index[index],
9008 &trace_options_core_fops);
9009 }
9010
create_trace_options_dir(struct trace_array * tr)9011 static void create_trace_options_dir(struct trace_array *tr)
9012 {
9013 struct dentry *t_options;
9014 bool top_level = tr == &global_trace;
9015 int i;
9016
9017 t_options = trace_options_init_dentry(tr);
9018 if (!t_options)
9019 return;
9020
9021 for (i = 0; trace_options[i]; i++) {
9022 if (top_level ||
9023 !((1ULL << i) & TOP_LEVEL_TRACE_FLAGS)) {
9024 create_trace_option_core_file(tr, trace_options[i], i);
9025 }
9026 }
9027 }
9028
9029 static ssize_t
rb_simple_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)9030 rb_simple_read(struct file *filp, char __user *ubuf,
9031 size_t cnt, loff_t *ppos)
9032 {
9033 struct trace_array *tr = filp->private_data;
9034 char buf[64];
9035 int r;
9036
9037 r = tracer_tracing_is_on(tr);
9038 r = sprintf(buf, "%d\n", r);
9039
9040 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
9041 }
9042
9043 static ssize_t
rb_simple_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)9044 rb_simple_write(struct file *filp, const char __user *ubuf,
9045 size_t cnt, loff_t *ppos)
9046 {
9047 struct trace_array *tr = filp->private_data;
9048 struct trace_buffer *buffer = tr->array_buffer.buffer;
9049 unsigned long val;
9050 int ret;
9051
9052 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
9053 if (ret)
9054 return ret;
9055
9056 if (buffer) {
9057 guard(mutex)(&trace_types_lock);
9058 if (!!val == tracer_tracing_is_on(tr)) {
9059 val = 0; /* do nothing */
9060 } else if (val) {
9061 tracer_tracing_on(tr);
9062 if (tr->current_trace->start)
9063 tr->current_trace->start(tr);
9064 } else {
9065 tracer_tracing_off(tr);
9066 if (tr->current_trace->stop)
9067 tr->current_trace->stop(tr);
9068 /* Wake up any waiters */
9069 ring_buffer_wake_waiters(buffer, RING_BUFFER_ALL_CPUS);
9070 }
9071 }
9072
9073 (*ppos)++;
9074
9075 return cnt;
9076 }
9077
9078 static const struct file_operations rb_simple_fops = {
9079 .open = tracing_open_generic_tr,
9080 .read = rb_simple_read,
9081 .write = rb_simple_write,
9082 .release = tracing_release_generic_tr,
9083 .llseek = default_llseek,
9084 };
9085
9086 static ssize_t
buffer_percent_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)9087 buffer_percent_read(struct file *filp, char __user *ubuf,
9088 size_t cnt, loff_t *ppos)
9089 {
9090 struct trace_array *tr = filp->private_data;
9091 char buf[64];
9092 int r;
9093
9094 r = tr->buffer_percent;
9095 r = sprintf(buf, "%d\n", r);
9096
9097 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
9098 }
9099
9100 static ssize_t
buffer_percent_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)9101 buffer_percent_write(struct file *filp, const char __user *ubuf,
9102 size_t cnt, loff_t *ppos)
9103 {
9104 struct trace_array *tr = filp->private_data;
9105 unsigned long val;
9106 int ret;
9107
9108 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
9109 if (ret)
9110 return ret;
9111
9112 if (val > 100)
9113 return -EINVAL;
9114
9115 tr->buffer_percent = val;
9116
9117 (*ppos)++;
9118
9119 return cnt;
9120 }
9121
9122 static const struct file_operations buffer_percent_fops = {
9123 .open = tracing_open_generic_tr,
9124 .read = buffer_percent_read,
9125 .write = buffer_percent_write,
9126 .release = tracing_release_generic_tr,
9127 .llseek = default_llseek,
9128 };
9129
9130 static ssize_t
buffer_subbuf_size_read(struct file * filp,char __user * ubuf,size_t cnt,loff_t * ppos)9131 buffer_subbuf_size_read(struct file *filp, char __user *ubuf, size_t cnt, loff_t *ppos)
9132 {
9133 struct trace_array *tr = filp->private_data;
9134 size_t size;
9135 char buf[64];
9136 int order;
9137 int r;
9138
9139 order = ring_buffer_subbuf_order_get(tr->array_buffer.buffer);
9140 size = (PAGE_SIZE << order) / 1024;
9141
9142 r = sprintf(buf, "%zd\n", size);
9143
9144 return simple_read_from_buffer(ubuf, cnt, ppos, buf, r);
9145 }
9146
9147 static ssize_t
buffer_subbuf_size_write(struct file * filp,const char __user * ubuf,size_t cnt,loff_t * ppos)9148 buffer_subbuf_size_write(struct file *filp, const char __user *ubuf,
9149 size_t cnt, loff_t *ppos)
9150 {
9151 struct trace_array *tr = filp->private_data;
9152 unsigned long val;
9153 int old_order;
9154 int order;
9155 int pages;
9156 int ret;
9157
9158 ret = kstrtoul_from_user(ubuf, cnt, 10, &val);
9159 if (ret)
9160 return ret;
9161
9162 val *= 1024; /* value passed in is in KB */
9163
9164 pages = DIV_ROUND_UP(val, PAGE_SIZE);
9165 order = fls(pages - 1);
9166
9167 /* limit between 1 and 128 system pages */
9168 if (order < 0 || order > 7)
9169 return -EINVAL;
9170
9171 /* Do not allow tracing while changing the order of the ring buffer */
9172 tracing_stop_tr(tr);
9173
9174 old_order = ring_buffer_subbuf_order_get(tr->array_buffer.buffer);
9175 if (old_order == order)
9176 goto out;
9177
9178 ret = ring_buffer_subbuf_order_set(tr->array_buffer.buffer, order);
9179 if (ret)
9180 goto out;
9181
9182 #ifdef CONFIG_TRACER_SNAPSHOT
9183
9184 if (!tr->allocated_snapshot)
9185 goto out_max;
9186
9187 ret = ring_buffer_subbuf_order_set(tr->snapshot_buffer.buffer, order);
9188 if (ret) {
9189 /* Put back the old order */
9190 cnt = ring_buffer_subbuf_order_set(tr->array_buffer.buffer, old_order);
9191 if (WARN_ON_ONCE(cnt)) {
9192 /*
9193 * AARGH! We are left with different orders!
9194 * The max buffer is our "snapshot" buffer.
9195 * When a tracer needs a snapshot (one of the
9196 * latency tracers), it swaps the max buffer
9197 * with the saved snap shot. We succeeded to
9198 * update the order of the main buffer, but failed to
9199 * update the order of the max buffer. But when we tried
9200 * to reset the main buffer to the original size, we
9201 * failed there too. This is very unlikely to
9202 * happen, but if it does, warn and kill all
9203 * tracing.
9204 */
9205 tracing_disabled = 1;
9206 }
9207 goto out;
9208 }
9209 out_max:
9210 #endif
9211 (*ppos)++;
9212 out:
9213 if (ret)
9214 cnt = ret;
9215 tracing_start_tr(tr);
9216 return cnt;
9217 }
9218
9219 static const struct file_operations buffer_subbuf_size_fops = {
9220 .open = tracing_open_generic_tr,
9221 .read = buffer_subbuf_size_read,
9222 .write = buffer_subbuf_size_write,
9223 .release = tracing_release_generic_tr,
9224 .llseek = default_llseek,
9225 };
9226
9227 static struct dentry *trace_instance_dir;
9228
9229 static void
9230 init_tracer_tracefs(struct trace_array *tr, struct dentry *d_tracer);
9231
9232 #ifdef CONFIG_MODULES
make_mod_delta(struct module * mod,void * data)9233 static int make_mod_delta(struct module *mod, void *data)
9234 {
9235 struct trace_module_delta *module_delta;
9236 struct trace_scratch *tscratch;
9237 struct trace_mod_entry *entry;
9238 struct trace_array *tr = data;
9239 int i;
9240
9241 tscratch = tr->scratch;
9242 module_delta = READ_ONCE(tr->module_delta);
9243 for (i = 0; i < tscratch->nr_entries; i++) {
9244 entry = &tscratch->entries[i];
9245 if (strcmp(mod->name, entry->mod_name))
9246 continue;
9247 if (mod->state == MODULE_STATE_GOING)
9248 module_delta->delta[i] = 0;
9249 else
9250 module_delta->delta[i] = (unsigned long)mod->mem[MOD_TEXT].base
9251 - entry->mod_addr;
9252 break;
9253 }
9254 return 0;
9255 }
9256 #else
make_mod_delta(struct module * mod,void * data)9257 static int make_mod_delta(struct module *mod, void *data)
9258 {
9259 return 0;
9260 }
9261 #endif
9262
mod_addr_comp(const void * a,const void * b,const void * data)9263 static int mod_addr_comp(const void *a, const void *b, const void *data)
9264 {
9265 const struct trace_mod_entry *e1 = a;
9266 const struct trace_mod_entry *e2 = b;
9267
9268 return e1->mod_addr > e2->mod_addr ? 1 : -1;
9269 }
9270
setup_trace_scratch(struct trace_array * tr,struct trace_scratch * tscratch,unsigned int size)9271 static void setup_trace_scratch(struct trace_array *tr,
9272 struct trace_scratch *tscratch, unsigned int size)
9273 {
9274 struct trace_module_delta *module_delta;
9275 struct trace_mod_entry *entry;
9276 int i, nr_entries;
9277
9278 if (!tscratch)
9279 return;
9280
9281 tr->scratch = tscratch;
9282 tr->scratch_size = size;
9283
9284 if (tscratch->text_addr)
9285 tr->text_delta = (unsigned long)_text - tscratch->text_addr;
9286
9287 if (struct_size(tscratch, entries, tscratch->nr_entries) > size)
9288 goto reset;
9289
9290 /* Check if each module name is a valid string */
9291 for (i = 0; i < tscratch->nr_entries; i++) {
9292 int n;
9293
9294 entry = &tscratch->entries[i];
9295
9296 for (n = 0; n < MODULE_NAME_LEN; n++) {
9297 if (entry->mod_name[n] == '\0')
9298 break;
9299 if (!isprint(entry->mod_name[n]))
9300 goto reset;
9301 }
9302 if (n == MODULE_NAME_LEN)
9303 goto reset;
9304 }
9305
9306 /* Sort the entries so that we can find appropriate module from address. */
9307 nr_entries = tscratch->nr_entries;
9308 sort_r(tscratch->entries, nr_entries, sizeof(struct trace_mod_entry),
9309 mod_addr_comp, NULL, NULL);
9310
9311 if (IS_ENABLED(CONFIG_MODULES)) {
9312 module_delta = kzalloc_flex(*module_delta, delta, nr_entries);
9313 if (!module_delta) {
9314 pr_info("module_delta allocation failed. Not able to decode module address.");
9315 goto reset;
9316 }
9317 init_rcu_head(&module_delta->rcu);
9318 } else
9319 module_delta = NULL;
9320 WRITE_ONCE(tr->module_delta, module_delta);
9321
9322 /* Scan modules to make text delta for modules. */
9323 module_for_each_mod(make_mod_delta, tr);
9324
9325 /* Set trace_clock as the same of the previous boot. */
9326 if (tscratch->clock_id != tr->clock_id) {
9327 if (tscratch->clock_id >= ARRAY_SIZE(trace_clocks) ||
9328 tracing_set_clock(tr, trace_clocks[tscratch->clock_id].name) < 0) {
9329 pr_info("the previous trace_clock info is not valid.");
9330 goto reset;
9331 }
9332 }
9333 return;
9334 reset:
9335 /* Invalid trace modules */
9336 memset(tscratch, 0, size);
9337 }
9338
9339 static int
allocate_trace_buffer(struct trace_array * tr,struct array_buffer * buf,int size)9340 allocate_trace_buffer(struct trace_array *tr, struct array_buffer *buf, int size)
9341 {
9342 enum ring_buffer_flags rb_flags;
9343 struct trace_scratch *tscratch;
9344 unsigned int scratch_size = 0;
9345
9346 rb_flags = tr->trace_flags & TRACE_ITER(OVERWRITE) ? RB_FL_OVERWRITE : 0;
9347
9348 buf->tr = tr;
9349
9350 if (tr->range_addr_start && tr->range_addr_size) {
9351 /* Add scratch buffer to handle 128 modules */
9352 buf->buffer = ring_buffer_alloc_range(size, rb_flags, 0,
9353 tr->range_addr_start,
9354 tr->range_addr_size,
9355 struct_size(tscratch, entries, 128));
9356
9357 tscratch = ring_buffer_meta_scratch(buf->buffer, &scratch_size);
9358 setup_trace_scratch(tr, tscratch, scratch_size);
9359
9360 /*
9361 * This is basically the same as a mapped buffer,
9362 * with the same restrictions.
9363 */
9364 tr->mapped++;
9365 } else {
9366 buf->buffer = ring_buffer_alloc(size, rb_flags);
9367 }
9368 if (!buf->buffer)
9369 return -ENOMEM;
9370
9371 buf->data = alloc_percpu(struct trace_array_cpu);
9372 if (!buf->data) {
9373 ring_buffer_free(buf->buffer);
9374 buf->buffer = NULL;
9375 return -ENOMEM;
9376 }
9377
9378 /* Allocate the first page for all buffers */
9379 set_buffer_entries(&tr->array_buffer,
9380 ring_buffer_size(tr->array_buffer.buffer, 0));
9381
9382 return 0;
9383 }
9384
free_trace_buffer(struct array_buffer * buf)9385 static void free_trace_buffer(struct array_buffer *buf)
9386 {
9387 if (buf->buffer) {
9388 ring_buffer_free(buf->buffer);
9389 buf->buffer = NULL;
9390 free_percpu(buf->data);
9391 buf->data = NULL;
9392 }
9393 }
9394
allocate_trace_buffers(struct trace_array * tr,int size)9395 static int allocate_trace_buffers(struct trace_array *tr, int size)
9396 {
9397 int ret;
9398
9399 ret = allocate_trace_buffer(tr, &tr->array_buffer, size);
9400 if (ret)
9401 return ret;
9402
9403 #ifdef CONFIG_TRACER_SNAPSHOT
9404 /* Fix mapped buffer trace arrays do not have snapshot buffers */
9405 if (tr->range_addr_start)
9406 return 0;
9407
9408 ret = allocate_trace_buffer(tr, &tr->snapshot_buffer,
9409 allocate_snapshot ? size : 1);
9410 if (MEM_FAIL(ret, "Failed to allocate trace buffer\n")) {
9411 free_trace_buffer(&tr->array_buffer);
9412 return -ENOMEM;
9413 }
9414 tr->allocated_snapshot = allocate_snapshot;
9415
9416 allocate_snapshot = false;
9417 #endif
9418
9419 return 0;
9420 }
9421
free_trace_buffers(struct trace_array * tr)9422 static void free_trace_buffers(struct trace_array *tr)
9423 {
9424 if (!tr)
9425 return;
9426
9427 free_trace_buffer(&tr->array_buffer);
9428 kfree(tr->module_delta);
9429
9430 #ifdef CONFIG_TRACER_SNAPSHOT
9431 free_trace_buffer(&tr->snapshot_buffer);
9432 #endif
9433 }
9434
init_trace_flags_index(struct trace_array * tr)9435 static void init_trace_flags_index(struct trace_array *tr)
9436 {
9437 int i;
9438
9439 /* Used by the trace options files */
9440 for (i = 0; i < TRACE_FLAGS_MAX_SIZE; i++)
9441 tr->trace_flags_index[i] = i;
9442 }
9443
__update_tracer(struct trace_array * tr)9444 static int __update_tracer(struct trace_array *tr)
9445 {
9446 struct tracer *t;
9447 int ret = 0;
9448
9449 for (t = trace_types; t && !ret; t = t->next)
9450 ret = add_tracer(tr, t);
9451
9452 return ret;
9453 }
9454
__update_tracer_options(struct trace_array * tr)9455 static __init int __update_tracer_options(struct trace_array *tr)
9456 {
9457 struct tracers *t;
9458 int ret = 0;
9459
9460 list_for_each_entry(t, &tr->tracers, list) {
9461 ret = add_tracer_options(tr, t);
9462 if (ret < 0)
9463 break;
9464 }
9465
9466 return ret;
9467 }
9468
update_tracer_options(void)9469 static __init void update_tracer_options(void)
9470 {
9471 struct trace_array *tr;
9472
9473 guard(mutex)(&trace_types_lock);
9474 tracer_options_updated = true;
9475 list_for_each_entry(tr, &ftrace_trace_arrays, list)
9476 __update_tracer_options(tr);
9477 }
9478
9479 /* Must have trace_types_lock held */
trace_array_find(const char * instance)9480 struct trace_array *trace_array_find(const char *instance)
9481 {
9482 struct trace_array *tr, *found = NULL;
9483
9484 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
9485 if (tr->name && strcmp(tr->name, instance) == 0) {
9486 found = tr;
9487 break;
9488 }
9489 }
9490
9491 return found;
9492 }
9493
trace_array_find_get(const char * instance)9494 struct trace_array *trace_array_find_get(const char *instance)
9495 {
9496 struct trace_array *tr;
9497
9498 guard(mutex)(&trace_types_lock);
9499 tr = trace_array_find(instance);
9500 if (tr)
9501 tr->ref++;
9502
9503 return tr;
9504 }
9505
trace_array_create_dir(struct trace_array * tr)9506 static int trace_array_create_dir(struct trace_array *tr)
9507 {
9508 int ret;
9509
9510 tr->dir = tracefs_create_dir(tr->name, trace_instance_dir);
9511 if (!tr->dir)
9512 return -EINVAL;
9513
9514 ret = event_trace_add_tracer(tr->dir, tr);
9515 if (ret) {
9516 tracefs_remove(tr->dir);
9517 return ret;
9518 }
9519
9520 init_tracer_tracefs(tr, tr->dir);
9521 ret = __update_tracer(tr);
9522 if (ret) {
9523 event_trace_del_tracer(tr);
9524 tracefs_remove(tr->dir);
9525 return ret;
9526 }
9527 return 0;
9528 }
9529
9530 static struct trace_array *
trace_array_create_systems(const char * name,const char * systems,unsigned long range_addr_start,unsigned long range_addr_size)9531 trace_array_create_systems(const char *name, const char *systems,
9532 unsigned long range_addr_start,
9533 unsigned long range_addr_size)
9534 {
9535 struct trace_array *tr;
9536 int ret;
9537
9538 ret = -ENOMEM;
9539 tr = kzalloc_obj(*tr);
9540 if (!tr)
9541 return ERR_PTR(ret);
9542
9543 tr->name = kstrdup(name, GFP_KERNEL);
9544 if (!tr->name)
9545 goto out_free_tr;
9546
9547 if (!alloc_cpumask_var(&tr->tracing_cpumask, GFP_KERNEL))
9548 goto out_free_tr;
9549
9550 if (!zalloc_cpumask_var(&tr->pipe_cpumask, GFP_KERNEL))
9551 goto out_free_tr;
9552
9553 if (systems) {
9554 tr->system_names = kstrdup_const(systems, GFP_KERNEL);
9555 if (!tr->system_names)
9556 goto out_free_tr;
9557 }
9558
9559 /* Only for boot up memory mapped ring buffers */
9560 tr->range_addr_start = range_addr_start;
9561 tr->range_addr_size = range_addr_size;
9562
9563 tr->trace_flags = global_trace.trace_flags & ~ZEROED_TRACE_FLAGS;
9564
9565 cpumask_copy(tr->tracing_cpumask, cpu_all_mask);
9566
9567 raw_spin_lock_init(&tr->start_lock);
9568
9569 tr->syscall_buf_sz = global_trace.syscall_buf_sz;
9570
9571 tr->max_lock = (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
9572 #ifdef CONFIG_TRACER_SNAPSHOT
9573 spin_lock_init(&tr->snapshot_trigger_lock);
9574 #endif
9575 tr->current_trace = &nop_trace;
9576 tr->current_trace_flags = nop_trace.flags;
9577
9578 INIT_LIST_HEAD(&tr->systems);
9579 INIT_LIST_HEAD(&tr->events);
9580 INIT_LIST_HEAD(&tr->hist_vars);
9581 INIT_LIST_HEAD(&tr->err_log);
9582 INIT_LIST_HEAD(&tr->tracers);
9583 INIT_LIST_HEAD(&tr->marker_list);
9584
9585 #ifdef CONFIG_MODULES
9586 INIT_LIST_HEAD(&tr->mod_events);
9587 #endif
9588
9589 if (allocate_trace_buffers(tr, trace_buf_size) < 0)
9590 goto out_free_tr;
9591
9592 /* The ring buffer is defaultly expanded */
9593 trace_set_ring_buffer_expanded(tr);
9594
9595 if (ftrace_allocate_ftrace_ops(tr) < 0)
9596 goto out_free_tr;
9597
9598 ftrace_init_trace_array(tr);
9599
9600 init_trace_flags_index(tr);
9601
9602 if (trace_instance_dir) {
9603 ret = trace_array_create_dir(tr);
9604 if (ret)
9605 goto out_free_tr;
9606 } else
9607 __trace_early_add_events(tr);
9608
9609 list_add(&tr->list, &ftrace_trace_arrays);
9610
9611 tr->ref++;
9612
9613 return tr;
9614
9615 out_free_tr:
9616 ftrace_free_ftrace_ops(tr);
9617 free_trace_buffers(tr);
9618 free_cpumask_var(tr->pipe_cpumask);
9619 free_cpumask_var(tr->tracing_cpumask);
9620 kfree_const(tr->system_names);
9621 kfree(tr->range_name);
9622 kfree(tr->name);
9623 kfree(tr);
9624
9625 return ERR_PTR(ret);
9626 }
9627
trace_array_create(const char * name)9628 static struct trace_array *trace_array_create(const char *name)
9629 {
9630 return trace_array_create_systems(name, NULL, 0, 0);
9631 }
9632
instance_mkdir(const char * name)9633 static int instance_mkdir(const char *name)
9634 {
9635 struct trace_array *tr;
9636 int ret;
9637
9638 guard(mutex)(&event_mutex);
9639 guard(mutex)(&trace_types_lock);
9640
9641 ret = -EEXIST;
9642 if (trace_array_find(name))
9643 return -EEXIST;
9644
9645 tr = trace_array_create(name);
9646
9647 ret = PTR_ERR_OR_ZERO(tr);
9648
9649 return ret;
9650 }
9651
9652 #ifdef CONFIG_MMU
map_pages(unsigned long start,unsigned long size)9653 static u64 map_pages(unsigned long start, unsigned long size)
9654 {
9655 unsigned long vmap_start, vmap_end;
9656 struct vm_struct *area;
9657 int ret;
9658
9659 area = get_vm_area(size, VM_IOREMAP);
9660 if (!area)
9661 return 0;
9662
9663 vmap_start = (unsigned long) area->addr;
9664 vmap_end = vmap_start + size;
9665
9666 ret = vmap_page_range(vmap_start, vmap_end,
9667 start, pgprot_nx(PAGE_KERNEL));
9668 if (ret < 0) {
9669 free_vm_area(area);
9670 return 0;
9671 }
9672
9673 return (u64)vmap_start;
9674 }
9675 #else
map_pages(unsigned long start,unsigned long size)9676 static inline u64 map_pages(unsigned long start, unsigned long size)
9677 {
9678 return 0;
9679 }
9680 #endif
9681
9682 /**
9683 * trace_array_get_by_name - Create/Lookup a trace array, given its name.
9684 * @name: The name of the trace array to be looked up/created.
9685 * @systems: A list of systems to create event directories for (NULL for all)
9686 *
9687 * Returns pointer to trace array with given name.
9688 * NULL, if it cannot be created.
9689 *
9690 * NOTE: This function increments the reference counter associated with the
9691 * trace array returned. This makes sure it cannot be freed while in use.
9692 * Use trace_array_put() once the trace array is no longer needed.
9693 * If the trace_array is to be freed, trace_array_destroy() needs to
9694 * be called after the trace_array_put(), or simply let user space delete
9695 * it from the tracefs instances directory. But until the
9696 * trace_array_put() is called, user space can not delete it.
9697 *
9698 */
trace_array_get_by_name(const char * name,const char * systems)9699 struct trace_array *trace_array_get_by_name(const char *name, const char *systems)
9700 {
9701 struct trace_array *tr;
9702
9703 guard(mutex)(&event_mutex);
9704 guard(mutex)(&trace_types_lock);
9705
9706 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
9707 if (tr->name && strcmp(tr->name, name) == 0) {
9708 tr->ref++;
9709 return tr;
9710 }
9711 }
9712
9713 tr = trace_array_create_systems(name, systems, 0, 0);
9714
9715 if (IS_ERR(tr))
9716 tr = NULL;
9717 else
9718 tr->ref++;
9719
9720 return tr;
9721 }
9722 EXPORT_SYMBOL_GPL(trace_array_get_by_name);
9723
__remove_instance(struct trace_array * tr)9724 static int __remove_instance(struct trace_array *tr)
9725 {
9726 int i;
9727
9728 /* Reference counter for a newly created trace array = 1. */
9729 if (tr->ref > 1 || (tr->current_trace && tr->trace_ref))
9730 return -EBUSY;
9731
9732 list_del(&tr->list);
9733
9734 /* Disable all the flags that were enabled coming in */
9735 for (i = 0; i < TRACE_FLAGS_MAX_SIZE; i++) {
9736 if ((1ULL << i) & ZEROED_TRACE_FLAGS)
9737 set_tracer_flag(tr, 1ULL << i, 0);
9738 }
9739
9740 if (printk_trace == tr)
9741 update_printk_trace(&global_trace);
9742
9743 if (update_marker_trace(tr, 0))
9744 synchronize_rcu();
9745
9746 tracing_set_nop(tr);
9747 clear_ftrace_function_probes(tr);
9748 event_trace_del_tracer(tr);
9749 ftrace_clear_pids(tr);
9750 ftrace_destroy_function_files(tr);
9751 tracefs_remove(tr->dir);
9752 free_percpu(tr->last_func_repeats);
9753 free_trace_buffers(tr);
9754 clear_tracing_err_log(tr);
9755 free_tracers(tr);
9756
9757 if (tr->range_name) {
9758 reserve_mem_release_by_name(tr->range_name);
9759 kfree(tr->range_name);
9760 }
9761 if (tr->flags & TRACE_ARRAY_FL_VMALLOC)
9762 vfree((void *)tr->range_addr_start);
9763
9764 for (i = 0; i < tr->nr_topts; i++) {
9765 kfree(tr->topts[i].topts);
9766 }
9767 kfree(tr->topts);
9768
9769 free_cpumask_var(tr->pipe_cpumask);
9770 free_cpumask_var(tr->tracing_cpumask);
9771 kfree_const(tr->system_names);
9772 kfree(tr->name);
9773 kfree(tr);
9774
9775 return 0;
9776 }
9777
trace_array_destroy(struct trace_array * this_tr)9778 int trace_array_destroy(struct trace_array *this_tr)
9779 {
9780 struct trace_array *tr;
9781
9782 if (!this_tr)
9783 return -EINVAL;
9784
9785 guard(mutex)(&event_mutex);
9786 guard(mutex)(&trace_types_lock);
9787
9788
9789 /* Making sure trace array exists before destroying it. */
9790 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
9791 if (tr == this_tr)
9792 return __remove_instance(tr);
9793 }
9794
9795 return -ENODEV;
9796 }
9797 EXPORT_SYMBOL_GPL(trace_array_destroy);
9798
instance_rmdir(const char * name)9799 static int instance_rmdir(const char *name)
9800 {
9801 struct trace_array *tr;
9802
9803 guard(mutex)(&event_mutex);
9804 guard(mutex)(&trace_types_lock);
9805
9806 tr = trace_array_find(name);
9807 if (!tr)
9808 return -ENODEV;
9809
9810 return __remove_instance(tr);
9811 }
9812
create_trace_instances(struct dentry * d_tracer)9813 static __init void create_trace_instances(struct dentry *d_tracer)
9814 {
9815 struct trace_array *tr;
9816
9817 trace_instance_dir = tracefs_create_instance_dir("instances", d_tracer,
9818 instance_mkdir,
9819 instance_rmdir);
9820 if (MEM_FAIL(!trace_instance_dir, "Failed to create instances directory\n"))
9821 return;
9822
9823 guard(mutex)(&event_mutex);
9824 guard(mutex)(&trace_types_lock);
9825
9826 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
9827 if (!tr->name)
9828 continue;
9829 if (MEM_FAIL(trace_array_create_dir(tr) < 0,
9830 "Failed to create instance directory\n"))
9831 return;
9832 }
9833 }
9834
9835 static void
init_tracer_tracefs(struct trace_array * tr,struct dentry * d_tracer)9836 init_tracer_tracefs(struct trace_array *tr, struct dentry *d_tracer)
9837 {
9838 int cpu;
9839
9840 trace_create_file("available_tracers", TRACE_MODE_READ, d_tracer,
9841 tr, &show_traces_fops);
9842
9843 trace_create_file("current_tracer", TRACE_MODE_WRITE, d_tracer,
9844 tr, &set_tracer_fops);
9845
9846 trace_create_file("tracing_cpumask", TRACE_MODE_WRITE, d_tracer,
9847 tr, &tracing_cpumask_fops);
9848
9849 trace_create_file("trace_options", TRACE_MODE_WRITE, d_tracer,
9850 tr, &tracing_iter_fops);
9851
9852 trace_create_file("trace", TRACE_MODE_WRITE, d_tracer,
9853 tr, &tracing_fops);
9854
9855 trace_create_file("trace_pipe", TRACE_MODE_READ, d_tracer,
9856 tr, &tracing_pipe_fops);
9857
9858 trace_create_file("buffer_size_kb", TRACE_MODE_WRITE, d_tracer,
9859 tr, &tracing_entries_fops);
9860
9861 trace_create_file("buffer_total_size_kb", TRACE_MODE_READ, d_tracer,
9862 tr, &tracing_total_entries_fops);
9863
9864 trace_create_file("free_buffer", 0200, d_tracer,
9865 tr, &tracing_free_buffer_fops);
9866
9867 trace_create_file("trace_marker", 0220, d_tracer,
9868 tr, &tracing_mark_fops);
9869
9870 tr->trace_marker_file = __find_event_file(tr, "ftrace", "print");
9871
9872 trace_create_file("trace_marker_raw", 0220, d_tracer,
9873 tr, &tracing_mark_raw_fops);
9874
9875 trace_create_file("trace_clock", TRACE_MODE_WRITE, d_tracer, tr,
9876 &trace_clock_fops);
9877
9878 trace_create_file("tracing_on", TRACE_MODE_WRITE, d_tracer,
9879 tr, &rb_simple_fops);
9880
9881 trace_create_file("timestamp_mode", TRACE_MODE_READ, d_tracer, tr,
9882 &trace_time_stamp_mode_fops);
9883
9884 tr->buffer_percent = 50;
9885
9886 trace_create_file("buffer_percent", TRACE_MODE_WRITE, d_tracer,
9887 tr, &buffer_percent_fops);
9888
9889 trace_create_file("buffer_subbuf_size_kb", TRACE_MODE_WRITE, d_tracer,
9890 tr, &buffer_subbuf_size_fops);
9891
9892 trace_create_file("syscall_user_buf_size", TRACE_MODE_WRITE, d_tracer,
9893 tr, &tracing_syscall_buf_fops);
9894
9895 create_trace_options_dir(tr);
9896
9897 trace_create_maxlat_file(tr, d_tracer);
9898
9899 if (ftrace_create_function_files(tr, d_tracer))
9900 MEM_FAIL(1, "Could not allocate function filter files");
9901
9902 if (tr->range_addr_start) {
9903 trace_create_file("last_boot_info", TRACE_MODE_READ, d_tracer,
9904 tr, &last_boot_fops);
9905 #ifdef CONFIG_TRACER_SNAPSHOT
9906 } else {
9907 trace_create_file("snapshot", TRACE_MODE_WRITE, d_tracer,
9908 tr, &snapshot_fops);
9909 #endif
9910 }
9911
9912 trace_create_file("error_log", TRACE_MODE_WRITE, d_tracer,
9913 tr, &tracing_err_log_fops);
9914
9915 for_each_tracing_cpu(cpu)
9916 tracing_init_tracefs_percpu(tr, cpu);
9917
9918 ftrace_init_tracefs(tr, d_tracer);
9919 }
9920
9921 #ifdef CONFIG_TRACEFS_AUTOMOUNT_DEPRECATED
trace_automount(struct dentry * mntpt,void * ingore)9922 static struct vfsmount *trace_automount(struct dentry *mntpt, void *ingore)
9923 {
9924 struct vfsmount *mnt;
9925 struct file_system_type *type;
9926 struct fs_context *fc;
9927 int ret;
9928
9929 /*
9930 * To maintain backward compatibility for tools that mount
9931 * debugfs to get to the tracing facility, tracefs is automatically
9932 * mounted to the debugfs/tracing directory.
9933 */
9934 type = get_fs_type("tracefs");
9935 if (!type)
9936 return NULL;
9937
9938 fc = fs_context_for_submount(type, mntpt);
9939 put_filesystem(type);
9940 if (IS_ERR(fc))
9941 return ERR_CAST(fc);
9942
9943 pr_warn("NOTICE: Automounting of tracing to debugfs is deprecated and will be removed in 2030\n");
9944
9945 ret = vfs_parse_fs_string(fc, "source", "tracefs");
9946 if (!ret)
9947 mnt = fc_mount(fc);
9948 else
9949 mnt = ERR_PTR(ret);
9950
9951 put_fs_context(fc);
9952 return mnt;
9953 }
9954 #endif
9955
9956 /**
9957 * tracing_init_dentry - initialize top level trace array
9958 *
9959 * This is called when creating files or directories in the tracing
9960 * directory. It is called via fs_initcall() by any of the boot up code
9961 * and expects to return the dentry of the top level tracing directory.
9962 */
tracing_init_dentry(void)9963 int tracing_init_dentry(void)
9964 {
9965 struct trace_array *tr = &global_trace;
9966
9967 if (security_locked_down(LOCKDOWN_TRACEFS)) {
9968 pr_warn("Tracing disabled due to lockdown\n");
9969 return -EPERM;
9970 }
9971
9972 /* The top level trace array uses NULL as parent */
9973 if (tr->dir)
9974 return 0;
9975
9976 if (WARN_ON(!tracefs_initialized()))
9977 return -ENODEV;
9978
9979 #ifdef CONFIG_TRACEFS_AUTOMOUNT_DEPRECATED
9980 /*
9981 * As there may still be users that expect the tracing
9982 * files to exist in debugfs/tracing, we must automount
9983 * the tracefs file system there, so older tools still
9984 * work with the newer kernel.
9985 */
9986 tr->dir = debugfs_create_automount("tracing", NULL,
9987 trace_automount, NULL);
9988 #endif
9989
9990 return 0;
9991 }
9992
9993 extern struct trace_eval_map *__start_ftrace_eval_maps[];
9994 extern struct trace_eval_map *__stop_ftrace_eval_maps[];
9995
9996 struct workqueue_struct *trace_init_wq __initdata;
9997 static struct work_struct eval_map_work __initdata;
9998 static struct work_struct tracerfs_init_work __initdata;
9999
eval_map_work_func(struct work_struct * work)10000 static void __init eval_map_work_func(struct work_struct *work)
10001 {
10002 int len;
10003
10004 len = __stop_ftrace_eval_maps - __start_ftrace_eval_maps;
10005 trace_event_update_with_eval_map(NULL, __start_ftrace_eval_maps, len);
10006 }
10007
trace_eval_init(void)10008 static int __init trace_eval_init(void)
10009 {
10010 INIT_WORK(&eval_map_work, eval_map_work_func);
10011
10012 trace_init_wq = alloc_workqueue("trace_init_wq", WQ_UNBOUND, 0);
10013 if (!trace_init_wq) {
10014 pr_err("Unable to allocate trace_init_wq\n");
10015 /* Do work here */
10016 eval_map_work_func(&eval_map_work);
10017 return -ENOMEM;
10018 }
10019
10020 queue_work(trace_init_wq, &eval_map_work);
10021 return 0;
10022 }
10023
10024 subsys_initcall(trace_eval_init);
10025
trace_eval_sync(void)10026 static int __init trace_eval_sync(void)
10027 {
10028 /* Make sure the eval map updates are finished */
10029 if (trace_init_wq)
10030 destroy_workqueue(trace_init_wq);
10031 return 0;
10032 }
10033
10034 late_initcall_sync(trace_eval_sync);
10035
10036
10037 #ifdef CONFIG_MODULES
10038
module_exists(const char * module)10039 bool module_exists(const char *module)
10040 {
10041 /* All modules have the symbol __this_module */
10042 static const char this_mod[] = "__this_module";
10043 char modname[MODULE_NAME_LEN + sizeof(this_mod) + 2];
10044 unsigned long val;
10045 int n;
10046
10047 n = snprintf(modname, sizeof(modname), "%s:%s", module, this_mod);
10048
10049 if (n > sizeof(modname) - 1)
10050 return false;
10051
10052 val = module_kallsyms_lookup_name(modname);
10053 return val != 0;
10054 }
10055
trace_module_add_evals(struct module * mod)10056 static void trace_module_add_evals(struct module *mod)
10057 {
10058 /*
10059 * Modules with bad taint do not have events created, do
10060 * not bother with enums either.
10061 */
10062 if (trace_module_has_bad_taint(mod))
10063 return;
10064
10065 /* Even if no trace_evals, this need to sanitize field types. */
10066 trace_event_update_with_eval_map(mod, mod->trace_evals, mod->num_trace_evals);
10067 }
10068
10069 #ifdef CONFIG_TRACE_EVAL_MAP_FILE
trace_module_remove_evals(struct module * mod)10070 static void trace_module_remove_evals(struct module *mod)
10071 {
10072 union trace_eval_map_item *map;
10073 union trace_eval_map_item **last = &trace_eval_maps;
10074
10075 if (!mod->num_trace_evals)
10076 return;
10077
10078 guard(mutex)(&trace_eval_mutex);
10079
10080 map = trace_eval_maps;
10081
10082 while (map) {
10083 if (map->head.mod == mod)
10084 break;
10085 map = trace_eval_jmp_to_tail(map);
10086 last = &map->tail.next;
10087 map = map->tail.next;
10088 }
10089 if (!map)
10090 return;
10091
10092 *last = trace_eval_jmp_to_tail(map)->tail.next;
10093 kfree(map);
10094 }
10095 #else
trace_module_remove_evals(struct module * mod)10096 static inline void trace_module_remove_evals(struct module *mod) { }
10097 #endif /* CONFIG_TRACE_EVAL_MAP_FILE */
10098
trace_module_record(struct module * mod,bool add)10099 static void trace_module_record(struct module *mod, bool add)
10100 {
10101 struct trace_array *tr;
10102 unsigned long flags;
10103
10104 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
10105 flags = tr->flags & (TRACE_ARRAY_FL_BOOT | TRACE_ARRAY_FL_LAST_BOOT);
10106 /* Update any persistent trace array that has already been started */
10107 if (flags == TRACE_ARRAY_FL_BOOT && add) {
10108 guard(mutex)(&scratch_mutex);
10109 save_mod(mod, tr);
10110 } else if (flags & TRACE_ARRAY_FL_LAST_BOOT) {
10111 /* Update delta if the module loaded in previous boot */
10112 make_mod_delta(mod, tr);
10113 }
10114 }
10115 }
10116
trace_module_notify(struct notifier_block * self,unsigned long val,void * data)10117 static int trace_module_notify(struct notifier_block *self,
10118 unsigned long val, void *data)
10119 {
10120 struct module *mod = data;
10121
10122 switch (val) {
10123 case MODULE_STATE_COMING:
10124 trace_module_add_evals(mod);
10125 trace_module_record(mod, true);
10126 break;
10127 case MODULE_STATE_GOING:
10128 trace_module_remove_evals(mod);
10129 trace_module_record(mod, false);
10130 break;
10131 }
10132
10133 return NOTIFY_OK;
10134 }
10135
10136 static struct notifier_block trace_module_nb = {
10137 .notifier_call = trace_module_notify,
10138 .priority = 0,
10139 };
10140 #endif /* CONFIG_MODULES */
10141
tracer_init_tracefs_work_func(struct work_struct * work)10142 static __init void tracer_init_tracefs_work_func(struct work_struct *work)
10143 {
10144
10145 event_trace_init();
10146
10147 init_tracer_tracefs(&global_trace, NULL);
10148 ftrace_init_tracefs_toplevel(&global_trace, NULL);
10149
10150 trace_create_file("tracing_thresh", TRACE_MODE_WRITE, NULL,
10151 &global_trace, &tracing_thresh_fops);
10152
10153 trace_create_file("README", TRACE_MODE_READ, NULL,
10154 NULL, &tracing_readme_fops);
10155
10156 trace_create_file("saved_cmdlines", TRACE_MODE_READ, NULL,
10157 NULL, &tracing_saved_cmdlines_fops);
10158
10159 trace_create_file("saved_cmdlines_size", TRACE_MODE_WRITE, NULL,
10160 NULL, &tracing_saved_cmdlines_size_fops);
10161
10162 trace_create_file("saved_tgids", TRACE_MODE_READ, NULL,
10163 NULL, &tracing_saved_tgids_fops);
10164
10165 trace_create_eval_file(NULL);
10166
10167 #ifdef CONFIG_MODULES
10168 register_module_notifier(&trace_module_nb);
10169 #endif
10170
10171 #ifdef CONFIG_DYNAMIC_FTRACE
10172 trace_create_file("dyn_ftrace_total_info", TRACE_MODE_READ, NULL,
10173 NULL, &tracing_dyn_info_fops);
10174 #endif
10175
10176 create_trace_instances(NULL);
10177
10178 update_tracer_options();
10179 }
10180
tracer_init_tracefs(void)10181 static __init int tracer_init_tracefs(void)
10182 {
10183 int ret;
10184
10185 trace_access_lock_init();
10186
10187 ret = tracing_init_dentry();
10188 if (ret)
10189 return 0;
10190
10191 if (trace_init_wq) {
10192 INIT_WORK(&tracerfs_init_work, tracer_init_tracefs_work_func);
10193 queue_work(trace_init_wq, &tracerfs_init_work);
10194 } else {
10195 tracer_init_tracefs_work_func(NULL);
10196 }
10197
10198 if (rv_init_interface())
10199 pr_err("RV: Error while creating the RV interface\n");
10200
10201 return 0;
10202 }
10203
10204 fs_initcall(tracer_init_tracefs);
10205
10206 static int trace_die_panic_handler(struct notifier_block *self,
10207 unsigned long ev, void *unused);
10208
10209 static struct notifier_block trace_panic_notifier = {
10210 .notifier_call = trace_die_panic_handler,
10211 .priority = INT_MAX - 1,
10212 };
10213
10214 static struct notifier_block trace_die_notifier = {
10215 .notifier_call = trace_die_panic_handler,
10216 .priority = INT_MAX - 1,
10217 };
10218
10219 /*
10220 * The idea is to execute the following die/panic callback early, in order
10221 * to avoid showing irrelevant information in the trace (like other panic
10222 * notifier functions); we are the 2nd to run, after hung_task/rcu_stall
10223 * warnings get disabled (to prevent potential log flooding).
10224 */
trace_die_panic_handler(struct notifier_block * self,unsigned long ev,void * unused)10225 static int trace_die_panic_handler(struct notifier_block *self,
10226 unsigned long ev, void *unused)
10227 {
10228 if (!ftrace_dump_on_oops_enabled())
10229 return NOTIFY_DONE;
10230
10231 /* The die notifier requires DIE_OOPS to trigger */
10232 if (self == &trace_die_notifier && ev != DIE_OOPS)
10233 return NOTIFY_DONE;
10234
10235 ftrace_dump(DUMP_PARAM);
10236
10237 return NOTIFY_DONE;
10238 }
10239
10240 /*
10241 * printk is set to max of 1024, we really don't need it that big.
10242 * Nothing should be printing 1000 characters anyway.
10243 */
10244 #define TRACE_MAX_PRINT 1000
10245
10246 /*
10247 * Define here KERN_TRACE so that we have one place to modify
10248 * it if we decide to change what log level the ftrace dump
10249 * should be at.
10250 */
10251 #define KERN_TRACE KERN_EMERG
10252
10253 void
trace_printk_seq(struct trace_seq * s)10254 trace_printk_seq(struct trace_seq *s)
10255 {
10256 /* Probably should print a warning here. */
10257 if (s->seq.len >= TRACE_MAX_PRINT)
10258 s->seq.len = TRACE_MAX_PRINT;
10259
10260 /*
10261 * More paranoid code. Although the buffer size is set to
10262 * PAGE_SIZE, and TRACE_MAX_PRINT is 1000, this is just
10263 * an extra layer of protection.
10264 */
10265 if (WARN_ON_ONCE(s->seq.len >= s->seq.size))
10266 s->seq.len = s->seq.size - 1;
10267
10268 /* should be zero ended, but we are paranoid. */
10269 s->buffer[s->seq.len] = 0;
10270
10271 printk(KERN_TRACE "%s", s->buffer);
10272
10273 trace_seq_init(s);
10274 }
10275
trace_init_iter(struct trace_iterator * iter,struct trace_array * tr)10276 static void trace_init_iter(struct trace_iterator *iter, struct trace_array *tr)
10277 {
10278 iter->tr = tr;
10279 iter->trace = iter->tr->current_trace;
10280 iter->cpu_file = RING_BUFFER_ALL_CPUS;
10281 iter->array_buffer = &tr->array_buffer;
10282
10283 if (iter->trace && iter->trace->open)
10284 iter->trace->open(iter);
10285
10286 /* Annotate start of buffers if we had overruns */
10287 if (ring_buffer_overruns(iter->array_buffer->buffer))
10288 iter->iter_flags |= TRACE_FILE_ANNOTATE;
10289
10290 /* Output in nanoseconds only if we are using a clock in nanoseconds. */
10291 if (trace_clocks[iter->tr->clock_id].in_ns)
10292 iter->iter_flags |= TRACE_FILE_TIME_IN_NS;
10293
10294 /* Can not use kmalloc for iter.temp and iter.fmt */
10295 iter->temp = static_temp_buf;
10296 iter->temp_size = STATIC_TEMP_BUF_SIZE;
10297 iter->fmt = static_fmt_buf;
10298 iter->fmt_size = STATIC_FMT_BUF_SIZE;
10299 }
10300
trace_init_global_iter(struct trace_iterator * iter)10301 void trace_init_global_iter(struct trace_iterator *iter)
10302 {
10303 trace_init_iter(iter, &global_trace);
10304 }
10305
ftrace_dump_one(struct trace_array * tr,enum ftrace_dump_mode dump_mode)10306 static void ftrace_dump_one(struct trace_array *tr, enum ftrace_dump_mode dump_mode)
10307 {
10308 /* use static because iter can be a bit big for the stack */
10309 static struct trace_iterator iter;
10310 unsigned int old_userobj;
10311 unsigned long flags;
10312 int cnt = 0;
10313
10314 /*
10315 * Always turn off tracing when we dump.
10316 * We don't need to show trace output of what happens
10317 * between multiple crashes.
10318 *
10319 * If the user does a sysrq-z, then they can re-enable
10320 * tracing with echo 1 > tracing_on.
10321 */
10322 tracer_tracing_off(tr);
10323
10324 local_irq_save(flags);
10325
10326 /* Simulate the iterator */
10327 trace_init_iter(&iter, tr);
10328
10329 /* While dumping, do not allow the buffer to be enable */
10330 tracer_tracing_disable(tr);
10331
10332 old_userobj = tr->trace_flags & TRACE_ITER(SYM_USEROBJ);
10333
10334 /* don't look at user memory in panic mode */
10335 tr->trace_flags &= ~TRACE_ITER(SYM_USEROBJ);
10336
10337 if (dump_mode == DUMP_ORIG)
10338 iter.cpu_file = raw_smp_processor_id();
10339 else
10340 iter.cpu_file = RING_BUFFER_ALL_CPUS;
10341
10342 if (tr == &global_trace)
10343 printk(KERN_TRACE "Dumping ftrace buffer:\n");
10344 else
10345 printk(KERN_TRACE "Dumping ftrace instance %s buffer:\n", tr->name);
10346
10347 /* Did function tracer already get disabled? */
10348 if (ftrace_is_dead()) {
10349 printk("# WARNING: FUNCTION TRACING IS CORRUPTED\n");
10350 printk("# MAY BE MISSING FUNCTION EVENTS\n");
10351 }
10352
10353 /*
10354 * We need to stop all tracing on all CPUS to read
10355 * the next buffer. This is a bit expensive, but is
10356 * not done often. We fill all what we can read,
10357 * and then release the locks again.
10358 */
10359
10360 while (!trace_empty(&iter)) {
10361
10362 if (!cnt)
10363 printk(KERN_TRACE "---------------------------------\n");
10364
10365 cnt++;
10366
10367 trace_iterator_reset(&iter);
10368 iter.iter_flags |= TRACE_FILE_LAT_FMT;
10369
10370 if (trace_find_next_entry_inc(&iter) != NULL) {
10371 int ret;
10372
10373 ret = print_trace_line(&iter);
10374 if (ret != TRACE_TYPE_NO_CONSUME)
10375 trace_consume(&iter);
10376
10377 trace_printk_seq(&iter.seq);
10378 }
10379 touch_nmi_watchdog();
10380 }
10381
10382 if (!cnt)
10383 printk(KERN_TRACE " (ftrace buffer empty)\n");
10384 else
10385 printk(KERN_TRACE "---------------------------------\n");
10386
10387 tr->trace_flags |= old_userobj;
10388
10389 tracer_tracing_enable(tr);
10390 local_irq_restore(flags);
10391 }
10392
ftrace_dump_by_param(void)10393 static void ftrace_dump_by_param(void)
10394 {
10395 bool first_param = true;
10396 char dump_param[MAX_TRACER_SIZE];
10397 char *buf, *token, *inst_name;
10398 struct trace_array *tr;
10399
10400 strscpy(dump_param, ftrace_dump_on_oops, MAX_TRACER_SIZE);
10401 buf = dump_param;
10402
10403 while ((token = strsep(&buf, ",")) != NULL) {
10404 if (first_param) {
10405 first_param = false;
10406 if (!strcmp("0", token))
10407 continue;
10408 else if (!strcmp("1", token)) {
10409 ftrace_dump_one(&global_trace, DUMP_ALL);
10410 continue;
10411 }
10412 else if (!strcmp("2", token) ||
10413 !strcmp("orig_cpu", token)) {
10414 ftrace_dump_one(&global_trace, DUMP_ORIG);
10415 continue;
10416 }
10417 }
10418
10419 inst_name = strsep(&token, "=");
10420 tr = trace_array_find(inst_name);
10421 if (!tr) {
10422 printk(KERN_TRACE "Instance %s not found\n", inst_name);
10423 continue;
10424 }
10425
10426 if (token && (!strcmp("2", token) ||
10427 !strcmp("orig_cpu", token)))
10428 ftrace_dump_one(tr, DUMP_ORIG);
10429 else
10430 ftrace_dump_one(tr, DUMP_ALL);
10431 }
10432 }
10433
ftrace_dump(enum ftrace_dump_mode oops_dump_mode)10434 void ftrace_dump(enum ftrace_dump_mode oops_dump_mode)
10435 {
10436 static atomic_t dump_running;
10437
10438 /* Only allow one dump user at a time. */
10439 if (atomic_inc_return(&dump_running) != 1) {
10440 atomic_dec(&dump_running);
10441 return;
10442 }
10443
10444 switch (oops_dump_mode) {
10445 case DUMP_ALL:
10446 ftrace_dump_one(&global_trace, DUMP_ALL);
10447 break;
10448 case DUMP_ORIG:
10449 ftrace_dump_one(&global_trace, DUMP_ORIG);
10450 break;
10451 case DUMP_PARAM:
10452 ftrace_dump_by_param();
10453 break;
10454 case DUMP_NONE:
10455 break;
10456 default:
10457 printk(KERN_TRACE "Bad dumping mode, switching to all CPUs dump\n");
10458 ftrace_dump_one(&global_trace, DUMP_ALL);
10459 }
10460
10461 atomic_dec(&dump_running);
10462 }
10463 EXPORT_SYMBOL_GPL(ftrace_dump);
10464
10465 #define WRITE_BUFSIZE 4096
10466
trace_parse_run_command(struct file * file,const char __user * buffer,size_t count,loff_t * ppos,int (* createfn)(const char *))10467 ssize_t trace_parse_run_command(struct file *file, const char __user *buffer,
10468 size_t count, loff_t *ppos,
10469 int (*createfn)(const char *))
10470 {
10471 char *kbuf __free(kfree) = NULL;
10472 char *buf, *tmp;
10473 int ret = 0;
10474 size_t done = 0;
10475 size_t size;
10476
10477 kbuf = kmalloc(WRITE_BUFSIZE, GFP_KERNEL);
10478 if (!kbuf)
10479 return -ENOMEM;
10480
10481 while (done < count) {
10482 size = count - done;
10483
10484 if (size >= WRITE_BUFSIZE)
10485 size = WRITE_BUFSIZE - 1;
10486
10487 if (copy_from_user(kbuf, buffer + done, size))
10488 return -EFAULT;
10489
10490 kbuf[size] = '\0';
10491 buf = kbuf;
10492 do {
10493 tmp = strchr(buf, '\n');
10494 if (tmp) {
10495 *tmp = '\0';
10496 size = tmp - buf + 1;
10497 } else {
10498 size = strlen(buf);
10499 if (done + size < count) {
10500 if (buf != kbuf)
10501 break;
10502 /* This can accept WRITE_BUFSIZE - 2 ('\n' + '\0') */
10503 pr_warn("Line length is too long: Should be less than %d\n",
10504 WRITE_BUFSIZE - 2);
10505 return -EINVAL;
10506 }
10507 }
10508 done += size;
10509
10510 /* Remove comments */
10511 tmp = strchr(buf, '#');
10512
10513 if (tmp)
10514 *tmp = '\0';
10515
10516 ret = createfn(buf);
10517 if (ret)
10518 return ret;
10519 buf += size;
10520
10521 } while (done < count);
10522 }
10523 return done;
10524 }
10525
10526 #ifdef CONFIG_TRACER_SNAPSHOT
tr_needs_alloc_snapshot(const char * name)10527 __init static bool tr_needs_alloc_snapshot(const char *name)
10528 {
10529 char *test;
10530 int len = strlen(name);
10531 bool ret;
10532
10533 if (!boot_snapshot_index)
10534 return false;
10535
10536 if (strncmp(name, boot_snapshot_info, len) == 0 &&
10537 boot_snapshot_info[len] == '\t')
10538 return true;
10539
10540 test = kmalloc(strlen(name) + 3, GFP_KERNEL);
10541 if (!test)
10542 return false;
10543
10544 sprintf(test, "\t%s\t", name);
10545 ret = strstr(boot_snapshot_info, test) == NULL;
10546 kfree(test);
10547 return ret;
10548 }
10549
do_allocate_snapshot(const char * name)10550 __init static void do_allocate_snapshot(const char *name)
10551 {
10552 if (!tr_needs_alloc_snapshot(name))
10553 return;
10554
10555 /*
10556 * When allocate_snapshot is set, the next call to
10557 * allocate_trace_buffers() (called by trace_array_get_by_name())
10558 * will allocate the snapshot buffer. That will also clear
10559 * this flag.
10560 */
10561 allocate_snapshot = true;
10562 }
10563 #else
do_allocate_snapshot(const char * name)10564 static inline void do_allocate_snapshot(const char *name) { }
10565 #endif
10566
backup_instance_area(const char * backup,unsigned long * addr,phys_addr_t * size)10567 __init static int backup_instance_area(const char *backup,
10568 unsigned long *addr, phys_addr_t *size)
10569 {
10570 struct trace_array *backup_tr;
10571 void *allocated_vaddr = NULL;
10572
10573 backup_tr = trace_array_get_by_name(backup, NULL);
10574 if (!backup_tr) {
10575 pr_warn("Tracing: Instance %s is not found.\n", backup);
10576 return -ENOENT;
10577 }
10578
10579 if (!(backup_tr->flags & TRACE_ARRAY_FL_BOOT)) {
10580 pr_warn("Tracing: Instance %s is not boot mapped.\n", backup);
10581 trace_array_put(backup_tr);
10582 return -EINVAL;
10583 }
10584
10585 *size = backup_tr->range_addr_size;
10586
10587 allocated_vaddr = vzalloc(*size);
10588 if (!allocated_vaddr) {
10589 pr_warn("Tracing: Failed to allocate memory for copying instance %s (size 0x%lx)\n",
10590 backup, (unsigned long)*size);
10591 trace_array_put(backup_tr);
10592 return -ENOMEM;
10593 }
10594
10595 memcpy(allocated_vaddr,
10596 (void *)backup_tr->range_addr_start, (size_t)*size);
10597 *addr = (unsigned long)allocated_vaddr;
10598
10599 trace_array_put(backup_tr);
10600 return 0;
10601 }
10602
enable_instances(void)10603 __init static void enable_instances(void)
10604 {
10605 struct trace_array *tr;
10606 bool memmap_area = false;
10607 char *curr_str;
10608 char *name;
10609 char *str;
10610 char *tok;
10611
10612 /* A tab is always appended */
10613 boot_instance_info[boot_instance_index - 1] = '\0';
10614 str = boot_instance_info;
10615
10616 while ((curr_str = strsep(&str, "\t"))) {
10617 phys_addr_t start = 0;
10618 phys_addr_t size = 0;
10619 unsigned long addr = 0;
10620 bool traceprintk = false;
10621 bool traceoff = false;
10622 char *flag_delim;
10623 char *addr_delim;
10624 char *rname __free(kfree) = NULL;
10625 char *backup;
10626
10627 tok = strsep(&curr_str, ",");
10628
10629 name = strsep(&tok, "=");
10630 backup = tok;
10631
10632 flag_delim = strchr(name, '^');
10633 addr_delim = strchr(name, '@');
10634
10635 if (addr_delim)
10636 *addr_delim++ = '\0';
10637
10638 if (flag_delim)
10639 *flag_delim++ = '\0';
10640
10641 if (backup) {
10642 if (backup_instance_area(backup, &addr, &size) < 0)
10643 continue;
10644 }
10645
10646 if (flag_delim) {
10647 char *flag;
10648
10649 while ((flag = strsep(&flag_delim, "^"))) {
10650 if (strcmp(flag, "traceoff") == 0) {
10651 traceoff = true;
10652 } else if ((strcmp(flag, "printk") == 0) ||
10653 (strcmp(flag, "traceprintk") == 0) ||
10654 (strcmp(flag, "trace_printk") == 0)) {
10655 traceprintk = true;
10656 } else {
10657 pr_info("Tracing: Invalid instance flag '%s' for %s\n",
10658 flag, name);
10659 }
10660 }
10661 }
10662
10663 tok = addr_delim;
10664 if (tok && isdigit(*tok)) {
10665 start = memparse(tok, &tok);
10666 if (!start) {
10667 pr_warn("Tracing: Invalid boot instance address for %s\n",
10668 name);
10669 continue;
10670 }
10671 if (*tok != ':') {
10672 pr_warn("Tracing: No size specified for instance %s\n", name);
10673 continue;
10674 }
10675 tok++;
10676 size = memparse(tok, &tok);
10677 if (!size) {
10678 pr_warn("Tracing: Invalid boot instance size for %s\n",
10679 name);
10680 continue;
10681 }
10682 memmap_area = true;
10683 } else if (tok) {
10684 if (!reserve_mem_find_by_name(tok, &start, &size)) {
10685 start = 0;
10686 pr_warn("Failed to map boot instance %s to %s\n", name, tok);
10687 continue;
10688 }
10689 rname = kstrdup(tok, GFP_KERNEL);
10690 }
10691
10692 if (start) {
10693 /* Start and size must be page aligned */
10694 if (start & ~PAGE_MASK) {
10695 pr_warn("Tracing: mapping start addr %pa is not page aligned\n", &start);
10696 continue;
10697 }
10698 if (size & ~PAGE_MASK) {
10699 pr_warn("Tracing: mapping size %pa is not page aligned\n", &size);
10700 continue;
10701 }
10702
10703 if (memmap_area)
10704 addr = map_pages(start, size);
10705 else
10706 addr = (unsigned long)phys_to_virt(start);
10707 if (addr) {
10708 pr_info("Tracing: mapped boot instance %s at physical memory %pa of size 0x%lx\n",
10709 name, &start, (unsigned long)size);
10710 } else {
10711 pr_warn("Tracing: Failed to map boot instance %s\n", name);
10712 continue;
10713 }
10714 } else {
10715 /* Only non mapped buffers have snapshot buffers */
10716 if (IS_ENABLED(CONFIG_TRACER_SNAPSHOT))
10717 do_allocate_snapshot(name);
10718 }
10719
10720 tr = trace_array_create_systems(name, NULL, addr, size);
10721 if (IS_ERR(tr)) {
10722 pr_warn("Tracing: Failed to create instance buffer %s\n", curr_str);
10723 continue;
10724 }
10725
10726 if (traceoff)
10727 tracer_tracing_off(tr);
10728
10729 if (traceprintk)
10730 update_printk_trace(tr);
10731
10732 /*
10733 * memmap'd buffers can not be freed.
10734 */
10735 if (memmap_area) {
10736 tr->flags |= TRACE_ARRAY_FL_MEMMAP;
10737 tr->ref++;
10738 }
10739
10740 /*
10741 * Backup buffers can be freed but need vfree().
10742 */
10743 if (backup)
10744 tr->flags |= TRACE_ARRAY_FL_VMALLOC;
10745
10746 if (start || backup) {
10747 tr->flags |= TRACE_ARRAY_FL_BOOT | TRACE_ARRAY_FL_LAST_BOOT;
10748 tr->range_name = no_free_ptr(rname);
10749 }
10750
10751 while ((tok = strsep(&curr_str, ","))) {
10752 early_enable_events(tr, tok, true);
10753 }
10754 }
10755 }
10756
tracer_alloc_buffers(void)10757 __init static int tracer_alloc_buffers(void)
10758 {
10759 int ring_buf_size;
10760 int ret = -ENOMEM;
10761
10762
10763 if (security_locked_down(LOCKDOWN_TRACEFS)) {
10764 pr_warn("Tracing disabled due to lockdown\n");
10765 return -EPERM;
10766 }
10767
10768 /*
10769 * Make sure we don't accidentally add more trace options
10770 * than we have bits for.
10771 */
10772 BUILD_BUG_ON(TRACE_ITER_LAST_BIT > TRACE_FLAGS_MAX_SIZE);
10773
10774 if (!alloc_cpumask_var(&tracing_buffer_mask, GFP_KERNEL))
10775 return -ENOMEM;
10776
10777 if (!alloc_cpumask_var(&global_trace.tracing_cpumask, GFP_KERNEL))
10778 goto out_free_buffer_mask;
10779
10780 /* Only allocate trace_printk buffers if a trace_printk exists */
10781 if (&__stop___trace_bprintk_fmt != &__start___trace_bprintk_fmt)
10782 /* Must be called before global_trace.buffer is allocated */
10783 trace_printk_init_buffers();
10784
10785 /* To save memory, keep the ring buffer size to its minimum */
10786 if (global_trace.ring_buffer_expanded)
10787 ring_buf_size = trace_buf_size;
10788 else
10789 ring_buf_size = 1;
10790
10791 cpumask_copy(tracing_buffer_mask, cpu_possible_mask);
10792 cpumask_copy(global_trace.tracing_cpumask, cpu_all_mask);
10793
10794 raw_spin_lock_init(&global_trace.start_lock);
10795
10796 /*
10797 * The prepare callbacks allocates some memory for the ring buffer. We
10798 * don't free the buffer if the CPU goes down. If we were to free
10799 * the buffer, then the user would lose any trace that was in the
10800 * buffer. The memory will be removed once the "instance" is removed.
10801 */
10802 ret = cpuhp_setup_state_multi(CPUHP_TRACE_RB_PREPARE,
10803 "trace/RB:prepare", trace_rb_cpu_prepare,
10804 NULL);
10805 if (ret < 0)
10806 goto out_free_cpumask;
10807 /* Used for event triggers */
10808 ret = -ENOMEM;
10809 temp_buffer = ring_buffer_alloc(PAGE_SIZE, RB_FL_OVERWRITE);
10810 if (!temp_buffer)
10811 goto out_rm_hp_state;
10812
10813 if (trace_create_savedcmd() < 0)
10814 goto out_free_temp_buffer;
10815
10816 if (!zalloc_cpumask_var(&global_trace.pipe_cpumask, GFP_KERNEL))
10817 goto out_free_savedcmd;
10818
10819 /* TODO: make the number of buffers hot pluggable with CPUS */
10820 if (allocate_trace_buffers(&global_trace, ring_buf_size) < 0) {
10821 MEM_FAIL(1, "tracer: failed to allocate ring buffer!\n");
10822 goto out_free_pipe_cpumask;
10823 }
10824 if (global_trace.buffer_disabled)
10825 tracing_off();
10826
10827 if (trace_boot_clock) {
10828 ret = tracing_set_clock(&global_trace, trace_boot_clock);
10829 if (ret < 0)
10830 pr_warn("Trace clock %s not defined, going back to default\n",
10831 trace_boot_clock);
10832 }
10833
10834 /*
10835 * register_tracer() might reference current_trace, so it
10836 * needs to be set before we register anything. This is
10837 * just a bootstrap of current_trace anyway.
10838 */
10839 global_trace.current_trace = &nop_trace;
10840 global_trace.current_trace_flags = nop_trace.flags;
10841
10842 global_trace.max_lock = (arch_spinlock_t)__ARCH_SPIN_LOCK_UNLOCKED;
10843 #ifdef CONFIG_TRACER_SNAPSHOT
10844 spin_lock_init(&global_trace.snapshot_trigger_lock);
10845 #endif
10846 ftrace_init_global_array_ops(&global_trace);
10847
10848 #ifdef CONFIG_MODULES
10849 INIT_LIST_HEAD(&global_trace.mod_events);
10850 #endif
10851
10852 init_trace_flags_index(&global_trace);
10853
10854 INIT_LIST_HEAD(&global_trace.tracers);
10855
10856 /* All seems OK, enable tracing */
10857 tracing_disabled = 0;
10858
10859 atomic_notifier_chain_register(&panic_notifier_list,
10860 &trace_panic_notifier);
10861
10862 register_die_notifier(&trace_die_notifier);
10863
10864 global_trace.flags = TRACE_ARRAY_FL_GLOBAL;
10865
10866 global_trace.syscall_buf_sz = syscall_buf_size;
10867
10868 INIT_LIST_HEAD(&global_trace.systems);
10869 INIT_LIST_HEAD(&global_trace.events);
10870 INIT_LIST_HEAD(&global_trace.hist_vars);
10871 INIT_LIST_HEAD(&global_trace.err_log);
10872 list_add(&global_trace.marker_list, &marker_copies);
10873 list_add(&global_trace.list, &ftrace_trace_arrays);
10874
10875 register_tracer(&nop_trace);
10876
10877 /* Function tracing may start here (via kernel command line) */
10878 init_function_trace();
10879
10880 apply_trace_boot_options();
10881
10882 register_snapshot_cmd();
10883
10884 return 0;
10885
10886 out_free_pipe_cpumask:
10887 free_cpumask_var(global_trace.pipe_cpumask);
10888 out_free_savedcmd:
10889 trace_free_saved_cmdlines_buffer();
10890 out_free_temp_buffer:
10891 ring_buffer_free(temp_buffer);
10892 out_rm_hp_state:
10893 cpuhp_remove_multi_state(CPUHP_TRACE_RB_PREPARE);
10894 out_free_cpumask:
10895 free_cpumask_var(global_trace.tracing_cpumask);
10896 out_free_buffer_mask:
10897 free_cpumask_var(tracing_buffer_mask);
10898 return ret;
10899 }
10900
10901 #ifdef CONFIG_FUNCTION_TRACER
10902 /* Used to set module cached ftrace filtering at boot up */
trace_get_global_array(void)10903 struct trace_array *trace_get_global_array(void)
10904 {
10905 return &global_trace;
10906 }
10907 #endif
10908
ftrace_boot_snapshot(void)10909 void __init ftrace_boot_snapshot(void)
10910 {
10911 #ifdef CONFIG_TRACER_SNAPSHOT
10912 struct trace_array *tr;
10913
10914 if (!snapshot_at_boot)
10915 return;
10916
10917 list_for_each_entry(tr, &ftrace_trace_arrays, list) {
10918 if (!tr->allocated_snapshot)
10919 continue;
10920
10921 tracing_snapshot_instance(tr);
10922 trace_array_puts(tr, "** Boot snapshot taken **\n");
10923 }
10924 #endif
10925 }
10926
early_trace_init(void)10927 void __init early_trace_init(void)
10928 {
10929 if (tracepoint_printk) {
10930 tracepoint_print_iter = kzalloc_obj(*tracepoint_print_iter);
10931 if (MEM_FAIL(!tracepoint_print_iter,
10932 "Failed to allocate trace iterator\n"))
10933 tracepoint_printk = 0;
10934 else
10935 static_key_enable(&tracepoint_printk_key.key);
10936 }
10937 tracer_alloc_buffers();
10938
10939 init_events();
10940 }
10941
trace_init(void)10942 void __init trace_init(void)
10943 {
10944 trace_event_init();
10945
10946 if (boot_instance_index)
10947 enable_instances();
10948 }
10949
clear_boot_tracer(void)10950 __init static void clear_boot_tracer(void)
10951 {
10952 /*
10953 * The default tracer at boot buffer is an init section.
10954 * This function is called in lateinit. If we did not
10955 * find the boot tracer, then clear it out, to prevent
10956 * later registration from accessing the buffer that is
10957 * about to be freed.
10958 */
10959 if (!default_bootup_tracer)
10960 return;
10961
10962 printk(KERN_INFO "ftrace bootup tracer '%s' not registered.\n",
10963 default_bootup_tracer);
10964 default_bootup_tracer = NULL;
10965 }
10966
10967 #ifdef CONFIG_HAVE_UNSTABLE_SCHED_CLOCK
tracing_set_default_clock(void)10968 __init static void tracing_set_default_clock(void)
10969 {
10970 /* sched_clock_stable() is determined in late_initcall */
10971 if (!trace_boot_clock && !sched_clock_stable()) {
10972 if (security_locked_down(LOCKDOWN_TRACEFS)) {
10973 pr_warn("Can not set tracing clock due to lockdown\n");
10974 return;
10975 }
10976
10977 printk(KERN_WARNING
10978 "Unstable clock detected, switching default tracing clock to \"global\"\n"
10979 "If you want to keep using the local clock, then add:\n"
10980 " \"trace_clock=local\"\n"
10981 "on the kernel command line\n");
10982 tracing_set_clock(&global_trace, "global");
10983 }
10984 }
10985 #else
tracing_set_default_clock(void)10986 static inline void tracing_set_default_clock(void) { }
10987 #endif
10988
late_trace_init(void)10989 __init static int late_trace_init(void)
10990 {
10991 if (tracepoint_printk && tracepoint_printk_stop_on_boot) {
10992 static_key_disable(&tracepoint_printk_key.key);
10993 tracepoint_printk = 0;
10994 }
10995
10996 if (traceoff_after_boot)
10997 tracing_off();
10998
10999 tracing_set_default_clock();
11000 clear_boot_tracer();
11001 return 0;
11002 }
11003
11004 late_initcall_sync(late_trace_init);
11005