1 // SPDX-License-Identifier: GPL-2.0
2 /*
3 * Kprobes-based tracing events
4 *
5 * Created by Masami Hiramatsu <mhiramat@redhat.com>
6 *
7 */
8 #define pr_fmt(fmt) "trace_kprobe: " fmt
9
10 #include <linux/bpf-cgroup.h>
11 #include <linux/cleanup.h>
12 #include <linux/error-injection.h>
13 #include <linux/module.h>
14 #include <linux/rculist.h>
15 #include <linux/security.h>
16 #include <linux/uaccess.h>
17
18 #include <asm/setup.h> /* for COMMAND_LINE_SIZE */
19
20 #include "trace_dynevent.h"
21 #include "trace_kprobe_selftest.h"
22 #include "trace_probe.h"
23 #include "trace_probe_kernel.h"
24 #include "trace_probe_tmpl.h"
25
26 #define KPROBE_EVENT_SYSTEM "kprobes"
27 #define KRETPROBE_MAXACTIVE_MAX 4096
28
29 /* Kprobe early definition from command line */
30 static char kprobe_boot_events_buf[COMMAND_LINE_SIZE] __initdata;
31
set_kprobe_boot_events(char * str)32 static int __init set_kprobe_boot_events(char *str)
33 {
34 strscpy(kprobe_boot_events_buf, str, COMMAND_LINE_SIZE);
35 disable_tracing_selftest("running kprobe events");
36
37 return 1;
38 }
39 __setup("kprobe_event=", set_kprobe_boot_events);
40
41 static int trace_kprobe_create(const char *raw_command);
42 static int trace_kprobe_show(struct seq_file *m, struct dyn_event *ev);
43 static int trace_kprobe_release(struct dyn_event *ev);
44 static bool trace_kprobe_is_busy(struct dyn_event *ev);
45 static bool trace_kprobe_match(const char *system, const char *event,
46 int argc, const char **argv, struct dyn_event *ev);
47
48 static struct dyn_event_operations trace_kprobe_ops = {
49 .create = trace_kprobe_create,
50 .show = trace_kprobe_show,
51 .is_busy = trace_kprobe_is_busy,
52 .free = trace_kprobe_release,
53 .match = trace_kprobe_match,
54 };
55
56 /*
57 * Kprobe event core functions
58 */
59 struct trace_kprobe {
60 struct dyn_event devent;
61 struct kretprobe rp; /* Use rp.kp for kprobe use */
62 unsigned long __percpu *nhit;
63 const char *symbol; /* symbol name */
64 struct trace_probe tp;
65 };
66
is_trace_kprobe(struct dyn_event * ev)67 static bool is_trace_kprobe(struct dyn_event *ev)
68 {
69 return ev->ops == &trace_kprobe_ops;
70 }
71
to_trace_kprobe(struct dyn_event * ev)72 static struct trace_kprobe *to_trace_kprobe(struct dyn_event *ev)
73 {
74 return container_of(ev, struct trace_kprobe, devent);
75 }
76
77 /**
78 * for_each_trace_kprobe - iterate over the trace_kprobe list
79 * @pos: the struct trace_kprobe * for each entry
80 * @dpos: the struct dyn_event * to use as a loop cursor
81 */
82 #define for_each_trace_kprobe(pos, dpos) \
83 for_each_dyn_event(dpos) \
84 if (is_trace_kprobe(dpos) && (pos = to_trace_kprobe(dpos)))
85
trace_kprobe_is_return(struct trace_kprobe * tk)86 static nokprobe_inline bool trace_kprobe_is_return(struct trace_kprobe *tk)
87 {
88 return tk->rp.handler != NULL;
89 }
90
trace_kprobe_symbol(struct trace_kprobe * tk)91 static nokprobe_inline const char *trace_kprobe_symbol(struct trace_kprobe *tk)
92 {
93 return tk->symbol ? tk->symbol : "unknown";
94 }
95
trace_kprobe_offset(struct trace_kprobe * tk)96 static nokprobe_inline unsigned long trace_kprobe_offset(struct trace_kprobe *tk)
97 {
98 return tk->rp.kp.offset;
99 }
100
trace_kprobe_has_gone(struct trace_kprobe * tk)101 static nokprobe_inline bool trace_kprobe_has_gone(struct trace_kprobe *tk)
102 {
103 return kprobe_gone(&tk->rp.kp);
104 }
105
trace_kprobe_within_module(struct trace_kprobe * tk,struct module * mod)106 static nokprobe_inline bool trace_kprobe_within_module(struct trace_kprobe *tk,
107 struct module *mod)
108 {
109 int len = strlen(module_name(mod));
110 const char *name = trace_kprobe_symbol(tk);
111
112 return strncmp(module_name(mod), name, len) == 0 && name[len] == ':';
113 }
114
115 #ifdef CONFIG_MODULES
trace_kprobe_module_exist(struct trace_kprobe * tk)116 static nokprobe_inline bool trace_kprobe_module_exist(struct trace_kprobe *tk)
117 {
118 char *p;
119 bool ret;
120
121 if (!tk->symbol)
122 return false;
123 p = strchr(tk->symbol, ':');
124 if (!p)
125 return true;
126 *p = '\0';
127 scoped_guard(rcu)
128 ret = !!find_module(tk->symbol);
129 *p = ':';
130
131 return ret;
132 }
133 #else
trace_kprobe_module_exist(struct trace_kprobe * tk)134 static inline bool trace_kprobe_module_exist(struct trace_kprobe *tk)
135 {
136 return false;
137 }
138 #endif
139
trace_kprobe_is_busy(struct dyn_event * ev)140 static bool trace_kprobe_is_busy(struct dyn_event *ev)
141 {
142 struct trace_kprobe *tk = to_trace_kprobe(ev);
143
144 return trace_probe_is_enabled(&tk->tp);
145 }
146
trace_kprobe_match_command_head(struct trace_kprobe * tk,int argc,const char ** argv)147 static bool trace_kprobe_match_command_head(struct trace_kprobe *tk,
148 int argc, const char **argv)
149 {
150 char buf[MAX_ARGSTR_LEN + 1];
151
152 if (!argc)
153 return true;
154
155 if (!tk->symbol)
156 snprintf(buf, sizeof(buf), "0x%p", tk->rp.kp.addr);
157 else if (tk->rp.kp.offset)
158 snprintf(buf, sizeof(buf), "%s+%u",
159 trace_kprobe_symbol(tk), tk->rp.kp.offset);
160 else
161 snprintf(buf, sizeof(buf), "%s", trace_kprobe_symbol(tk));
162 if (strcmp(buf, argv[0]))
163 return false;
164 argc--; argv++;
165
166 return trace_probe_match_command_args(&tk->tp, argc, argv);
167 }
168
trace_kprobe_match(const char * system,const char * event,int argc,const char ** argv,struct dyn_event * ev)169 static bool trace_kprobe_match(const char *system, const char *event,
170 int argc, const char **argv, struct dyn_event *ev)
171 {
172 struct trace_kprobe *tk = to_trace_kprobe(ev);
173
174 return (event[0] == '\0' ||
175 strcmp(trace_probe_name(&tk->tp), event) == 0) &&
176 (!system || strcmp(trace_probe_group_name(&tk->tp), system) == 0) &&
177 trace_kprobe_match_command_head(tk, argc, argv);
178 }
179
trace_kprobe_nhit(struct trace_kprobe * tk)180 static nokprobe_inline unsigned long trace_kprobe_nhit(struct trace_kprobe *tk)
181 {
182 unsigned long nhit = 0;
183 int cpu;
184
185 for_each_possible_cpu(cpu)
186 nhit += *per_cpu_ptr(tk->nhit, cpu);
187
188 return nhit;
189 }
190
trace_kprobe_is_registered(struct trace_kprobe * tk)191 static nokprobe_inline bool trace_kprobe_is_registered(struct trace_kprobe *tk)
192 {
193 return !(list_empty(&tk->rp.kp.list) &&
194 hlist_unhashed(&tk->rp.kp.hlist));
195 }
196
197 /* Return 0 if it fails to find the symbol address */
198 static nokprobe_inline
trace_kprobe_address(struct trace_kprobe * tk)199 unsigned long trace_kprobe_address(struct trace_kprobe *tk)
200 {
201 unsigned long addr;
202
203 if (tk->symbol) {
204 addr = (unsigned long)
205 kallsyms_lookup_name(trace_kprobe_symbol(tk));
206 if (addr)
207 addr += tk->rp.kp.offset;
208 } else {
209 addr = (unsigned long)tk->rp.kp.addr;
210 }
211 return addr;
212 }
213
214 static nokprobe_inline struct trace_kprobe *
trace_kprobe_primary_from_call(struct trace_event_call * call)215 trace_kprobe_primary_from_call(struct trace_event_call *call)
216 {
217 struct trace_probe *tp;
218
219 tp = trace_probe_primary_from_call(call);
220 if (WARN_ON_ONCE(!tp))
221 return NULL;
222
223 return container_of(tp, struct trace_kprobe, tp);
224 }
225
trace_kprobe_on_func_entry(struct trace_event_call * call)226 bool trace_kprobe_on_func_entry(struct trace_event_call *call)
227 {
228 struct trace_kprobe *tk = trace_kprobe_primary_from_call(call);
229
230 return tk ? (kprobe_on_func_entry(tk->rp.kp.addr,
231 tk->rp.kp.addr ? NULL : tk->rp.kp.symbol_name,
232 tk->rp.kp.addr ? 0 : tk->rp.kp.offset) == 0) : false;
233 }
234
trace_kprobe_error_injectable(struct trace_event_call * call)235 bool trace_kprobe_error_injectable(struct trace_event_call *call)
236 {
237 struct trace_kprobe *tk = trace_kprobe_primary_from_call(call);
238
239 return tk ? within_error_injection_list(trace_kprobe_address(tk)) :
240 false;
241 }
242
243 static int register_kprobe_event(struct trace_kprobe *tk);
244 static int unregister_kprobe_event(struct trace_kprobe *tk);
245
246 static int kprobe_dispatcher(struct kprobe *kp, struct pt_regs *regs);
247 static int kretprobe_dispatcher(struct kretprobe_instance *ri,
248 struct pt_regs *regs);
249
free_trace_kprobe(struct trace_kprobe * tk)250 static void free_trace_kprobe(struct trace_kprobe *tk)
251 {
252 if (tk) {
253 trace_probe_cleanup(&tk->tp);
254 kfree(tk->symbol);
255 free_percpu(tk->nhit);
256 kfree(tk);
257 }
258 }
259
260 DEFINE_FREE(free_trace_kprobe, struct trace_kprobe *,
261 if (!IS_ERR_OR_NULL(_T)) free_trace_kprobe(_T))
262
263 /*
264 * Allocate new trace_probe and initialize it (including kprobes).
265 */
alloc_trace_kprobe(const char * group,const char * event,void * addr,const char * symbol,unsigned long offs,int maxactive,int nargs,bool is_return)266 static struct trace_kprobe *alloc_trace_kprobe(const char *group,
267 const char *event,
268 void *addr,
269 const char *symbol,
270 unsigned long offs,
271 int maxactive,
272 int nargs, bool is_return)
273 {
274 struct trace_kprobe *tk __free(free_trace_kprobe) = NULL;
275 int ret = -ENOMEM;
276
277 tk = kzalloc(struct_size(tk, tp.args, nargs), GFP_KERNEL);
278 if (!tk)
279 return ERR_PTR(ret);
280
281 tk->nhit = alloc_percpu(unsigned long);
282 if (!tk->nhit)
283 return ERR_PTR(ret);
284
285 if (symbol) {
286 tk->symbol = kstrdup(symbol, GFP_KERNEL);
287 if (!tk->symbol)
288 return ERR_PTR(ret);
289 tk->rp.kp.symbol_name = tk->symbol;
290 tk->rp.kp.offset = offs;
291 } else
292 tk->rp.kp.addr = addr;
293
294 if (is_return)
295 tk->rp.handler = kretprobe_dispatcher;
296 else
297 tk->rp.kp.pre_handler = kprobe_dispatcher;
298
299 tk->rp.maxactive = maxactive;
300 INIT_HLIST_NODE(&tk->rp.kp.hlist);
301 INIT_LIST_HEAD(&tk->rp.kp.list);
302
303 ret = trace_probe_init(&tk->tp, event, group, false, nargs);
304 if (ret < 0)
305 return ERR_PTR(ret);
306
307 dyn_event_init(&tk->devent, &trace_kprobe_ops);
308 return_ptr(tk);
309 }
310
find_trace_kprobe(const char * event,const char * group)311 static struct trace_kprobe *find_trace_kprobe(const char *event,
312 const char *group)
313 {
314 struct dyn_event *pos;
315 struct trace_kprobe *tk;
316
317 for_each_trace_kprobe(tk, pos)
318 if (strcmp(trace_probe_name(&tk->tp), event) == 0 &&
319 strcmp(trace_probe_group_name(&tk->tp), group) == 0)
320 return tk;
321 return NULL;
322 }
323
__enable_trace_kprobe(struct trace_kprobe * tk)324 static inline int __enable_trace_kprobe(struct trace_kprobe *tk)
325 {
326 int ret = 0;
327
328 if (trace_kprobe_is_registered(tk) && !trace_kprobe_has_gone(tk)) {
329 if (trace_kprobe_is_return(tk))
330 ret = enable_kretprobe(&tk->rp);
331 else
332 ret = enable_kprobe(&tk->rp.kp);
333 }
334
335 return ret;
336 }
337
__disable_trace_kprobe(struct trace_probe * tp)338 static void __disable_trace_kprobe(struct trace_probe *tp)
339 {
340 struct trace_kprobe *tk;
341
342 list_for_each_entry(tk, trace_probe_probe_list(tp), tp.list) {
343 if (!trace_kprobe_is_registered(tk))
344 continue;
345 if (trace_kprobe_is_return(tk))
346 disable_kretprobe(&tk->rp);
347 else
348 disable_kprobe(&tk->rp.kp);
349 }
350 }
351
352 /*
353 * Enable trace_probe
354 * if the file is NULL, enable "perf" handler, or enable "trace" handler.
355 */
enable_trace_kprobe(struct trace_event_call * call,struct trace_event_file * file)356 static int enable_trace_kprobe(struct trace_event_call *call,
357 struct trace_event_file *file)
358 {
359 struct trace_probe *tp;
360 struct trace_kprobe *tk;
361 bool enabled;
362 int ret = 0;
363
364 tp = trace_probe_primary_from_call(call);
365 if (WARN_ON_ONCE(!tp))
366 return -ENODEV;
367 enabled = trace_probe_is_enabled(tp);
368
369 /* This also changes "enabled" state */
370 if (file) {
371 ret = trace_probe_add_file(tp, file);
372 if (ret)
373 return ret;
374 } else
375 trace_probe_set_flag(tp, TP_FLAG_PROFILE);
376
377 if (enabled)
378 return 0;
379
380 list_for_each_entry(tk, trace_probe_probe_list(tp), tp.list) {
381 if (trace_kprobe_has_gone(tk))
382 continue;
383 ret = __enable_trace_kprobe(tk);
384 if (ret)
385 break;
386 enabled = true;
387 }
388
389 if (ret) {
390 /* Failed to enable one of them. Roll back all */
391 if (enabled)
392 __disable_trace_kprobe(tp);
393 if (file)
394 trace_probe_remove_file(tp, file);
395 else
396 trace_probe_clear_flag(tp, TP_FLAG_PROFILE);
397 }
398
399 return ret;
400 }
401
402 /*
403 * Disable trace_probe
404 * if the file is NULL, disable "perf" handler, or disable "trace" handler.
405 */
disable_trace_kprobe(struct trace_event_call * call,struct trace_event_file * file)406 static int disable_trace_kprobe(struct trace_event_call *call,
407 struct trace_event_file *file)
408 {
409 struct trace_probe *tp;
410
411 tp = trace_probe_primary_from_call(call);
412 if (WARN_ON_ONCE(!tp))
413 return -ENODEV;
414
415 if (file) {
416 if (!trace_probe_get_file_link(tp, file))
417 return -ENOENT;
418 if (!trace_probe_has_single_file(tp))
419 goto out;
420 trace_probe_clear_flag(tp, TP_FLAG_TRACE);
421 } else
422 trace_probe_clear_flag(tp, TP_FLAG_PROFILE);
423
424 if (!trace_probe_is_enabled(tp))
425 __disable_trace_kprobe(tp);
426
427 out:
428 if (file)
429 /*
430 * Synchronization is done in below function. For perf event,
431 * file == NULL and perf_trace_event_unreg() calls
432 * tracepoint_synchronize_unregister() to ensure synchronize
433 * event. We don't need to care about it.
434 */
435 trace_probe_remove_file(tp, file);
436
437 return 0;
438 }
439
440 #if defined(CONFIG_DYNAMIC_FTRACE) && \
441 !defined(CONFIG_KPROBE_EVENTS_ON_NOTRACE)
__within_notrace_func(unsigned long addr)442 static bool __within_notrace_func(unsigned long addr)
443 {
444 unsigned long offset, size;
445
446 if (!addr || !kallsyms_lookup_size_offset(addr, &size, &offset))
447 return false;
448
449 /* Get the entry address of the target function */
450 addr -= offset;
451
452 /*
453 * Since ftrace_location_range() does inclusive range check, we need
454 * to subtract 1 byte from the end address.
455 */
456 return !ftrace_location_range(addr, addr + size - 1);
457 }
458
within_notrace_func(struct trace_kprobe * tk)459 static bool within_notrace_func(struct trace_kprobe *tk)
460 {
461 unsigned long addr = trace_kprobe_address(tk);
462 char symname[KSYM_NAME_LEN], *p;
463
464 if (!__within_notrace_func(addr))
465 return false;
466
467 /* Check if the address is on a suffixed-symbol */
468 if (!lookup_symbol_name(addr, symname)) {
469 p = strchr(symname, '.');
470 if (!p)
471 return true;
472 *p = '\0';
473 addr = (unsigned long)kprobe_lookup_name(symname, 0);
474 if (addr)
475 return __within_notrace_func(addr);
476 }
477
478 return true;
479 }
480 #else
481 #define within_notrace_func(tk) (false)
482 #endif
483
484 /* Internal register function - just handle k*probes and flags */
__register_trace_kprobe(struct trace_kprobe * tk)485 static int __register_trace_kprobe(struct trace_kprobe *tk)
486 {
487 int i, ret;
488
489 ret = security_locked_down(LOCKDOWN_KPROBES);
490 if (ret)
491 return ret;
492
493 if (trace_kprobe_is_registered(tk))
494 return -EINVAL;
495
496 if (within_notrace_func(tk)) {
497 pr_warn("Could not probe notrace function %ps\n",
498 (void *)trace_kprobe_address(tk));
499 return -EINVAL;
500 }
501
502 for (i = 0; i < tk->tp.nr_args; i++) {
503 ret = traceprobe_update_arg(&tk->tp.args[i]);
504 if (ret)
505 return ret;
506 }
507
508 /* Set/clear disabled flag according to tp->flag */
509 if (trace_probe_is_enabled(&tk->tp))
510 tk->rp.kp.flags &= ~KPROBE_FLAG_DISABLED;
511 else
512 tk->rp.kp.flags |= KPROBE_FLAG_DISABLED;
513
514 if (trace_kprobe_is_return(tk))
515 ret = register_kretprobe(&tk->rp);
516 else
517 ret = register_kprobe(&tk->rp.kp);
518
519 return ret;
520 }
521
522 /* Internal unregister function - just handle k*probes and flags */
__unregister_trace_kprobe(struct trace_kprobe * tk)523 static void __unregister_trace_kprobe(struct trace_kprobe *tk)
524 {
525 if (trace_kprobe_is_registered(tk)) {
526 if (trace_kprobe_is_return(tk))
527 unregister_kretprobe(&tk->rp);
528 else
529 unregister_kprobe(&tk->rp.kp);
530 /* Cleanup kprobe for reuse and mark it unregistered */
531 INIT_HLIST_NODE(&tk->rp.kp.hlist);
532 INIT_LIST_HEAD(&tk->rp.kp.list);
533 if (tk->rp.kp.symbol_name)
534 tk->rp.kp.addr = NULL;
535 }
536 }
537
538 /* Unregister a trace_probe and probe_event */
unregister_trace_kprobe(struct trace_kprobe * tk)539 static int unregister_trace_kprobe(struct trace_kprobe *tk)
540 {
541 /* If other probes are on the event, just unregister kprobe */
542 if (trace_probe_has_sibling(&tk->tp))
543 goto unreg;
544
545 /* Enabled event can not be unregistered */
546 if (trace_probe_is_enabled(&tk->tp))
547 return -EBUSY;
548
549 /* If there's a reference to the dynamic event */
550 if (trace_event_dyn_busy(trace_probe_event_call(&tk->tp)))
551 return -EBUSY;
552
553 /* Will fail if probe is being used by ftrace or perf */
554 if (unregister_kprobe_event(tk))
555 return -EBUSY;
556
557 unreg:
558 __unregister_trace_kprobe(tk);
559 dyn_event_remove(&tk->devent);
560 trace_probe_unlink(&tk->tp);
561
562 return 0;
563 }
564
trace_kprobe_has_same_kprobe(struct trace_kprobe * orig,struct trace_kprobe * comp)565 static bool trace_kprobe_has_same_kprobe(struct trace_kprobe *orig,
566 struct trace_kprobe *comp)
567 {
568 struct trace_probe_event *tpe = orig->tp.event;
569 int i;
570
571 list_for_each_entry(orig, &tpe->probes, tp.list) {
572 if (strcmp(trace_kprobe_symbol(orig),
573 trace_kprobe_symbol(comp)) ||
574 trace_kprobe_offset(orig) != trace_kprobe_offset(comp))
575 continue;
576
577 /*
578 * trace_probe_compare_arg_type() ensured that nr_args and
579 * each argument name and type are same. Let's compare comm.
580 */
581 for (i = 0; i < orig->tp.nr_args; i++) {
582 if (strcmp(orig->tp.args[i].comm,
583 comp->tp.args[i].comm))
584 break;
585 }
586
587 if (i == orig->tp.nr_args)
588 return true;
589 }
590
591 return false;
592 }
593
append_trace_kprobe(struct trace_kprobe * tk,struct trace_kprobe * to)594 static int append_trace_kprobe(struct trace_kprobe *tk, struct trace_kprobe *to)
595 {
596 int ret;
597
598 ret = trace_probe_compare_arg_type(&tk->tp, &to->tp);
599 if (ret) {
600 /* Note that argument starts index = 2 */
601 trace_probe_log_set_index(ret + 1);
602 trace_probe_log_err(0, DIFF_ARG_TYPE);
603 return -EEXIST;
604 }
605 if (trace_kprobe_has_same_kprobe(to, tk)) {
606 trace_probe_log_set_index(0);
607 trace_probe_log_err(0, SAME_PROBE);
608 return -EEXIST;
609 }
610
611 /* Append to existing event */
612 ret = trace_probe_append(&tk->tp, &to->tp);
613 if (ret)
614 return ret;
615
616 /* Register k*probe */
617 ret = __register_trace_kprobe(tk);
618 if (ret == -ENOENT && !trace_kprobe_module_exist(tk)) {
619 pr_warn("This probe might be able to register after target module is loaded. Continue.\n");
620 ret = 0;
621 }
622
623 if (ret)
624 trace_probe_unlink(&tk->tp);
625 else
626 dyn_event_add(&tk->devent, trace_probe_event_call(&tk->tp));
627
628 return ret;
629 }
630
631 /* Register a trace_probe and probe_event */
register_trace_kprobe(struct trace_kprobe * tk)632 static int register_trace_kprobe(struct trace_kprobe *tk)
633 {
634 struct trace_kprobe *old_tk;
635 int ret;
636
637 guard(mutex)(&event_mutex);
638
639 old_tk = find_trace_kprobe(trace_probe_name(&tk->tp),
640 trace_probe_group_name(&tk->tp));
641 if (old_tk) {
642 if (trace_kprobe_is_return(tk) != trace_kprobe_is_return(old_tk)) {
643 trace_probe_log_set_index(0);
644 trace_probe_log_err(0, DIFF_PROBE_TYPE);
645 return -EEXIST;
646 }
647 return append_trace_kprobe(tk, old_tk);
648 }
649
650 /* Register new event */
651 ret = register_kprobe_event(tk);
652 if (ret) {
653 if (ret == -EEXIST) {
654 trace_probe_log_set_index(0);
655 trace_probe_log_err(0, EVENT_EXIST);
656 } else
657 pr_warn("Failed to register probe event(%d)\n", ret);
658 return ret;
659 }
660
661 /* Register k*probe */
662 ret = __register_trace_kprobe(tk);
663 if (ret == -ENOENT && !trace_kprobe_module_exist(tk)) {
664 pr_warn("This probe might be able to register after target module is loaded. Continue.\n");
665 ret = 0;
666 }
667
668 if (ret < 0)
669 unregister_kprobe_event(tk);
670 else
671 dyn_event_add(&tk->devent, trace_probe_event_call(&tk->tp));
672
673 return ret;
674 }
675
676 #ifdef CONFIG_MODULES
677 static int validate_module_probe_symbol(const char *modname, const char *symbol);
678
register_module_trace_kprobe(struct module * mod,struct trace_kprobe * tk)679 static int register_module_trace_kprobe(struct module *mod, struct trace_kprobe *tk)
680 {
681 const char *p;
682 int ret = 0;
683
684 p = strchr(trace_kprobe_symbol(tk), ':');
685 if (p)
686 ret = validate_module_probe_symbol(module_name(mod), p + 1);
687 if (!ret)
688 ret = __register_trace_kprobe(tk);
689 return ret;
690 }
691
692 /* Module notifier call back, checking event on the module */
trace_kprobe_module_callback(struct notifier_block * nb,unsigned long val,void * data)693 static int trace_kprobe_module_callback(struct notifier_block *nb,
694 unsigned long val, void *data)
695 {
696 struct module *mod = data;
697 struct dyn_event *pos;
698 struct trace_kprobe *tk;
699 int ret;
700
701 if (val != MODULE_STATE_COMING)
702 return NOTIFY_DONE;
703
704 /* Update probes on coming module */
705 guard(mutex)(&event_mutex);
706 for_each_trace_kprobe(tk, pos) {
707 if (trace_kprobe_within_module(tk, mod)) {
708 /* Don't need to check busy - this should have gone. */
709 __unregister_trace_kprobe(tk);
710 ret = register_module_trace_kprobe(mod, tk);
711 if (ret)
712 pr_warn("Failed to re-register probe %s on %s: %d\n",
713 trace_probe_name(&tk->tp),
714 module_name(mod), ret);
715 }
716 }
717
718 return NOTIFY_DONE;
719 }
720
721 static struct notifier_block trace_kprobe_module_nb = {
722 .notifier_call = trace_kprobe_module_callback,
723 .priority = 2 /* Invoked after kprobe and jump_label module callback */
724 };
trace_kprobe_register_module_notifier(void)725 static int trace_kprobe_register_module_notifier(void)
726 {
727 return register_module_notifier(&trace_kprobe_module_nb);
728 }
729 #else
trace_kprobe_register_module_notifier(void)730 static int trace_kprobe_register_module_notifier(void)
731 {
732 return 0;
733 }
734 #endif /* CONFIG_MODULES */
735
count_symbols(void * data,unsigned long unused)736 static int count_symbols(void *data, unsigned long unused)
737 {
738 unsigned int *count = data;
739
740 (*count)++;
741
742 return 0;
743 }
744
745 struct sym_count_ctx {
746 unsigned int count;
747 const char *name;
748 };
749
count_mod_symbols(void * data,const char * name,unsigned long unused)750 static int count_mod_symbols(void *data, const char *name, unsigned long unused)
751 {
752 struct sym_count_ctx *ctx = data;
753
754 if (strcmp(name, ctx->name) == 0)
755 ctx->count++;
756
757 return 0;
758 }
759
number_of_same_symbols(const char * mod,const char * func_name)760 static unsigned int number_of_same_symbols(const char *mod, const char *func_name)
761 {
762 struct sym_count_ctx ctx = { .count = 0, .name = func_name };
763
764 if (!mod)
765 kallsyms_on_each_match_symbol(count_symbols, func_name, &ctx.count);
766
767 module_kallsyms_on_each_symbol(mod, count_mod_symbols, &ctx);
768
769 return ctx.count;
770 }
771
validate_module_probe_symbol(const char * modname,const char * symbol)772 static int validate_module_probe_symbol(const char *modname, const char *symbol)
773 {
774 unsigned int count = number_of_same_symbols(modname, symbol);
775
776 if (count > 1) {
777 /*
778 * Users should use ADDR to remove the ambiguity of
779 * using KSYM only.
780 */
781 return -EADDRNOTAVAIL;
782 } else if (count == 0) {
783 /*
784 * We can return ENOENT earlier than when register the
785 * kprobe.
786 */
787 return -ENOENT;
788 }
789 return 0;
790 }
791
792 #ifdef CONFIG_MODULES
793 /* Return NULL if the module is not loaded or under unloading. */
try_module_get_by_name(const char * name)794 static struct module *try_module_get_by_name(const char *name)
795 {
796 struct module *mod;
797
798 guard(rcu)();
799 mod = find_module(name);
800 if (mod && !try_module_get(mod))
801 mod = NULL;
802 return mod;
803 }
804 #else
805 #define try_module_get_by_name(name) (NULL)
806 #endif
807
validate_probe_symbol(char * symbol)808 static int validate_probe_symbol(char *symbol)
809 {
810 struct module *mod = NULL;
811 char *modname = NULL, *p;
812 int ret = 0;
813
814 p = strchr(symbol, ':');
815 if (p) {
816 modname = symbol;
817 symbol = p + 1;
818 *p = '\0';
819 mod = try_module_get_by_name(modname);
820 if (!mod)
821 goto out;
822 }
823
824 ret = validate_module_probe_symbol(modname, symbol);
825 out:
826 if (p)
827 *p = ':';
828 if (mod)
829 module_put(mod);
830 return ret;
831 }
832
833 static int trace_kprobe_entry_handler(struct kretprobe_instance *ri,
834 struct pt_regs *regs);
835
trace_kprobe_create_internal(int argc,const char * argv[],struct traceprobe_parse_context * ctx)836 static int trace_kprobe_create_internal(int argc, const char *argv[],
837 struct traceprobe_parse_context *ctx)
838 {
839 /*
840 * Argument syntax:
841 * - Add kprobe:
842 * p[:[GRP/][EVENT]] [MOD:]KSYM[+OFFS]|KADDR [FETCHARGS]
843 * - Add kretprobe:
844 * r[MAXACTIVE][:[GRP/][EVENT]] [MOD:]KSYM[+0] [FETCHARGS]
845 * Or
846 * p[:[GRP/][EVENT]] [MOD:]KSYM[+0]%return [FETCHARGS]
847 *
848 * Fetch args:
849 * $retval : fetch return value
850 * $stack : fetch stack address
851 * $stackN : fetch Nth of stack (N:0-)
852 * $comm : fetch current task comm
853 * @ADDR : fetch memory at ADDR (ADDR should be in kernel)
854 * @SYM[+|-offs] : fetch memory at SYM +|- offs (SYM is a data symbol)
855 * %REG : fetch register REG
856 * Dereferencing memory fetch:
857 * +|-offs(ARG) : fetch memory at ARG +|- offs address.
858 * Alias name of args:
859 * NAME=FETCHARG : set NAME as alias of FETCHARG.
860 * Type of args:
861 * FETCHARG:TYPE : use TYPE instead of unsigned long.
862 */
863 struct trace_kprobe *tk __free(free_trace_kprobe) = NULL;
864 const char *event = NULL, *group = KPROBE_EVENT_SYSTEM;
865 const char **new_argv __free(kfree) = NULL;
866 int i, len, new_argc = 0, ret = 0;
867 char *symbol __free(kfree) = NULL;
868 char *ebuf __free(kfree) = NULL;
869 char *gbuf __free(kfree) = NULL;
870 char *abuf __free(kfree) = NULL;
871 char *dbuf __free(kfree) = NULL;
872 enum probe_print_type ptype;
873 bool is_return = false;
874 int maxactive = 0;
875 void *addr = NULL;
876 char *tmp = NULL;
877 long offset = 0;
878
879 switch (argv[0][0]) {
880 case 'r':
881 is_return = true;
882 break;
883 case 'p':
884 break;
885 default:
886 return -ECANCELED;
887 }
888 if (argc < 2)
889 return -ECANCELED;
890
891 event = strchr(&argv[0][1], ':');
892 if (event)
893 event++;
894
895 if (isdigit(argv[0][1])) {
896 char *buf __free(kfree) = NULL;
897
898 if (!is_return) {
899 trace_probe_log_err(1, BAD_MAXACT_TYPE);
900 return -EINVAL;
901 }
902 if (event)
903 len = event - &argv[0][1] - 1;
904 else
905 len = strlen(&argv[0][1]);
906 if (len > MAX_EVENT_NAME_LEN - 1) {
907 trace_probe_log_err(1, BAD_MAXACT);
908 return -EINVAL;
909 }
910 buf = kmemdup(&argv[0][1], len + 1, GFP_KERNEL);
911 buf[len] = '\0';
912 ret = kstrtouint(buf, 0, &maxactive);
913 if (ret || !maxactive) {
914 trace_probe_log_err(1, BAD_MAXACT);
915 return -EINVAL;
916 }
917 /* kretprobes instances are iterated over via a list. The
918 * maximum should stay reasonable.
919 */
920 if (maxactive > KRETPROBE_MAXACTIVE_MAX) {
921 trace_probe_log_err(1, MAXACT_TOO_BIG);
922 return -EINVAL;
923 }
924 }
925
926 /* try to parse an address. if that fails, try to read the
927 * input as a symbol. */
928 if (kstrtoul(argv[1], 0, (unsigned long *)&addr)) {
929 trace_probe_log_set_index(1);
930 /* Check whether uprobe event specified */
931 if (strchr(argv[1], '/') && strchr(argv[1], ':'))
932 return -ECANCELED;
933
934 /* a symbol specified */
935 symbol = kstrdup(argv[1], GFP_KERNEL);
936 if (!symbol)
937 return -ENOMEM;
938
939 tmp = strchr(symbol, '%');
940 if (tmp) {
941 if (!strcmp(tmp, "%return")) {
942 *tmp = '\0';
943 is_return = true;
944 } else {
945 trace_probe_log_err(tmp - symbol, BAD_ADDR_SUFFIX);
946 return -EINVAL;
947 }
948 }
949
950 /* TODO: support .init module functions */
951 ret = traceprobe_split_symbol_offset(symbol, &offset);
952 if (ret || offset < 0 || offset > UINT_MAX) {
953 trace_probe_log_err(0, BAD_PROBE_ADDR);
954 return -EINVAL;
955 }
956 ret = validate_probe_symbol(symbol);
957 if (ret) {
958 if (ret == -EADDRNOTAVAIL)
959 trace_probe_log_err(0, NON_UNIQ_SYMBOL);
960 else
961 trace_probe_log_err(0, BAD_PROBE_ADDR);
962 return -EINVAL;
963 }
964 if (is_return)
965 ctx->flags |= TPARG_FL_RETURN;
966 ret = kprobe_on_func_entry(NULL, symbol, offset);
967 if (ret == 0 && !is_return)
968 ctx->flags |= TPARG_FL_FENTRY;
969 /* Defer the ENOENT case until register kprobe */
970 if (ret == -EINVAL && is_return) {
971 trace_probe_log_err(0, BAD_RETPROBE);
972 return -EINVAL;
973 }
974 }
975
976 trace_probe_log_set_index(0);
977 if (event) {
978 gbuf = kmalloc(MAX_EVENT_NAME_LEN, GFP_KERNEL);
979 if (!gbuf)
980 return -ENOMEM;
981 ret = traceprobe_parse_event_name(&event, &group, gbuf,
982 event - argv[0]);
983 if (ret)
984 return ret;
985 }
986
987 if (!event) {
988 /* Make a new event name */
989 ebuf = kmalloc(MAX_EVENT_NAME_LEN, GFP_KERNEL);
990 if (!ebuf)
991 return -ENOMEM;
992 if (symbol)
993 snprintf(ebuf, MAX_EVENT_NAME_LEN, "%c_%s_%ld",
994 is_return ? 'r' : 'p', symbol, offset);
995 else
996 snprintf(ebuf, MAX_EVENT_NAME_LEN, "%c_0x%p",
997 is_return ? 'r' : 'p', addr);
998 sanitize_event_name(ebuf);
999 event = ebuf;
1000 }
1001
1002 abuf = kmalloc(MAX_BTF_ARGS_LEN, GFP_KERNEL);
1003 if (!abuf)
1004 return -ENOMEM;
1005 argc -= 2; argv += 2;
1006 ctx->funcname = symbol;
1007 new_argv = traceprobe_expand_meta_args(argc, argv, &new_argc,
1008 abuf, MAX_BTF_ARGS_LEN, ctx);
1009 if (IS_ERR(new_argv)) {
1010 ret = PTR_ERR(new_argv);
1011 new_argv = NULL;
1012 return ret;
1013 }
1014 if (new_argv) {
1015 argc = new_argc;
1016 argv = new_argv;
1017 }
1018 if (argc > MAX_TRACE_ARGS) {
1019 trace_probe_log_set_index(2);
1020 trace_probe_log_err(0, TOO_MANY_ARGS);
1021 return -E2BIG;
1022 }
1023
1024 ret = traceprobe_expand_dentry_args(argc, argv, &dbuf);
1025 if (ret)
1026 return ret;
1027
1028 /* setup a probe */
1029 tk = alloc_trace_kprobe(group, event, addr, symbol, offset, maxactive,
1030 argc, is_return);
1031 if (IS_ERR(tk)) {
1032 ret = PTR_ERR(tk);
1033 /* This must return -ENOMEM, else there is a bug */
1034 WARN_ON_ONCE(ret != -ENOMEM);
1035 return ret; /* We know tk is not allocated */
1036 }
1037
1038 /* parse arguments */
1039 for (i = 0; i < argc; i++) {
1040 trace_probe_log_set_index(i + 2);
1041 ctx->offset = 0;
1042 ret = traceprobe_parse_probe_arg(&tk->tp, i, argv[i], ctx);
1043 if (ret)
1044 return ret; /* This can be -ENOMEM */
1045 }
1046 /* entry handler for kretprobe */
1047 if (is_return && tk->tp.entry_arg) {
1048 tk->rp.entry_handler = trace_kprobe_entry_handler;
1049 tk->rp.data_size = traceprobe_get_entry_data_size(&tk->tp);
1050 }
1051
1052 ptype = is_return ? PROBE_PRINT_RETURN : PROBE_PRINT_NORMAL;
1053 ret = traceprobe_set_print_fmt(&tk->tp, ptype);
1054 if (ret < 0)
1055 return ret;
1056
1057 ret = register_trace_kprobe(tk);
1058 if (ret) {
1059 trace_probe_log_set_index(1);
1060 if (ret == -EILSEQ)
1061 trace_probe_log_err(0, BAD_INSN_BNDRY);
1062 else if (ret == -ENOENT)
1063 trace_probe_log_err(0, BAD_PROBE_ADDR);
1064 else if (ret != -ENOMEM && ret != -EEXIST)
1065 trace_probe_log_err(0, FAIL_REG_PROBE);
1066 return ret;
1067 }
1068 /*
1069 * Here, 'tk' has been registered to the list successfully,
1070 * so we don't need to free it.
1071 */
1072 tk = NULL;
1073
1074 return 0;
1075 }
1076
trace_kprobe_create_cb(int argc,const char * argv[])1077 static int trace_kprobe_create_cb(int argc, const char *argv[])
1078 {
1079 struct traceprobe_parse_context *ctx __free(traceprobe_parse_context) = NULL;
1080 int ret;
1081
1082 ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
1083 if (!ctx)
1084 return -ENOMEM;
1085 ctx->flags = TPARG_FL_KERNEL;
1086
1087 trace_probe_log_init("trace_kprobe", argc, argv);
1088
1089 ret = trace_kprobe_create_internal(argc, argv, ctx);
1090
1091 trace_probe_log_clear();
1092 return ret;
1093 }
1094
trace_kprobe_create(const char * raw_command)1095 static int trace_kprobe_create(const char *raw_command)
1096 {
1097 return trace_probe_create(raw_command, trace_kprobe_create_cb);
1098 }
1099
create_or_delete_trace_kprobe(const char * raw_command)1100 static int create_or_delete_trace_kprobe(const char *raw_command)
1101 {
1102 int ret;
1103
1104 if (raw_command[0] == '-')
1105 return dyn_event_release(raw_command, &trace_kprobe_ops);
1106
1107 ret = dyn_event_create(raw_command, &trace_kprobe_ops);
1108 return ret == -ECANCELED ? -EINVAL : ret;
1109 }
1110
trace_kprobe_run_command(struct dynevent_cmd * cmd)1111 static int trace_kprobe_run_command(struct dynevent_cmd *cmd)
1112 {
1113 return create_or_delete_trace_kprobe(cmd->seq.buffer);
1114 }
1115
1116 /**
1117 * kprobe_event_cmd_init - Initialize a kprobe event command object
1118 * @cmd: A pointer to the dynevent_cmd struct representing the new event
1119 * @buf: A pointer to the buffer used to build the command
1120 * @maxlen: The length of the buffer passed in @buf
1121 *
1122 * Initialize a synthetic event command object. Use this before
1123 * calling any of the other kprobe_event functions.
1124 */
kprobe_event_cmd_init(struct dynevent_cmd * cmd,char * buf,int maxlen)1125 void kprobe_event_cmd_init(struct dynevent_cmd *cmd, char *buf, int maxlen)
1126 {
1127 dynevent_cmd_init(cmd, buf, maxlen, DYNEVENT_TYPE_KPROBE,
1128 trace_kprobe_run_command);
1129 }
1130 EXPORT_SYMBOL_GPL(kprobe_event_cmd_init);
1131
1132 /**
1133 * __kprobe_event_gen_cmd_start - Generate a kprobe event command from arg list
1134 * @cmd: A pointer to the dynevent_cmd struct representing the new event
1135 * @kretprobe: Is this a return probe?
1136 * @name: The name of the kprobe event
1137 * @loc: The location of the kprobe event
1138 * @...: Variable number of arg (pairs), one pair for each field
1139 *
1140 * NOTE: Users normally won't want to call this function directly, but
1141 * rather use the kprobe_event_gen_cmd_start() wrapper, which automatically
1142 * adds a NULL to the end of the arg list. If this function is used
1143 * directly, make sure the last arg in the variable arg list is NULL.
1144 *
1145 * Generate a kprobe event command to be executed by
1146 * kprobe_event_gen_cmd_end(). This function can be used to generate the
1147 * complete command or only the first part of it; in the latter case,
1148 * kprobe_event_add_fields() can be used to add more fields following this.
1149 *
1150 * Unlikely the synth_event_gen_cmd_start(), @loc must be specified. This
1151 * returns -EINVAL if @loc == NULL.
1152 *
1153 * Return: 0 if successful, error otherwise.
1154 */
__kprobe_event_gen_cmd_start(struct dynevent_cmd * cmd,bool kretprobe,const char * name,const char * loc,...)1155 int __kprobe_event_gen_cmd_start(struct dynevent_cmd *cmd, bool kretprobe,
1156 const char *name, const char *loc, ...)
1157 {
1158 char buf[MAX_EVENT_NAME_LEN];
1159 struct dynevent_arg arg;
1160 va_list args;
1161 int ret;
1162
1163 if (cmd->type != DYNEVENT_TYPE_KPROBE)
1164 return -EINVAL;
1165
1166 if (!loc)
1167 return -EINVAL;
1168
1169 if (kretprobe)
1170 snprintf(buf, MAX_EVENT_NAME_LEN, "r:kprobes/%s", name);
1171 else
1172 snprintf(buf, MAX_EVENT_NAME_LEN, "p:kprobes/%s", name);
1173
1174 ret = dynevent_str_add(cmd, buf);
1175 if (ret)
1176 return ret;
1177
1178 dynevent_arg_init(&arg, 0);
1179 arg.str = loc;
1180 ret = dynevent_arg_add(cmd, &arg, NULL);
1181 if (ret)
1182 return ret;
1183
1184 va_start(args, loc);
1185 for (;;) {
1186 const char *field;
1187
1188 field = va_arg(args, const char *);
1189 if (!field)
1190 break;
1191
1192 if (++cmd->n_fields > MAX_TRACE_ARGS) {
1193 ret = -EINVAL;
1194 break;
1195 }
1196
1197 arg.str = field;
1198 ret = dynevent_arg_add(cmd, &arg, NULL);
1199 if (ret)
1200 break;
1201 }
1202 va_end(args);
1203
1204 return ret;
1205 }
1206 EXPORT_SYMBOL_GPL(__kprobe_event_gen_cmd_start);
1207
1208 /**
1209 * __kprobe_event_add_fields - Add probe fields to a kprobe command from arg list
1210 * @cmd: A pointer to the dynevent_cmd struct representing the new event
1211 * @...: Variable number of arg (pairs), one pair for each field
1212 *
1213 * NOTE: Users normally won't want to call this function directly, but
1214 * rather use the kprobe_event_add_fields() wrapper, which
1215 * automatically adds a NULL to the end of the arg list. If this
1216 * function is used directly, make sure the last arg in the variable
1217 * arg list is NULL.
1218 *
1219 * Add probe fields to an existing kprobe command using a variable
1220 * list of args. Fields are added in the same order they're listed.
1221 *
1222 * Return: 0 if successful, error otherwise.
1223 */
__kprobe_event_add_fields(struct dynevent_cmd * cmd,...)1224 int __kprobe_event_add_fields(struct dynevent_cmd *cmd, ...)
1225 {
1226 struct dynevent_arg arg;
1227 va_list args;
1228 int ret = 0;
1229
1230 if (cmd->type != DYNEVENT_TYPE_KPROBE)
1231 return -EINVAL;
1232
1233 dynevent_arg_init(&arg, 0);
1234
1235 va_start(args, cmd);
1236 for (;;) {
1237 const char *field;
1238
1239 field = va_arg(args, const char *);
1240 if (!field)
1241 break;
1242
1243 if (++cmd->n_fields > MAX_TRACE_ARGS) {
1244 ret = -EINVAL;
1245 break;
1246 }
1247
1248 arg.str = field;
1249 ret = dynevent_arg_add(cmd, &arg, NULL);
1250 if (ret)
1251 break;
1252 }
1253 va_end(args);
1254
1255 return ret;
1256 }
1257 EXPORT_SYMBOL_GPL(__kprobe_event_add_fields);
1258
1259 /**
1260 * kprobe_event_delete - Delete a kprobe event
1261 * @name: The name of the kprobe event to delete
1262 *
1263 * Delete a kprobe event with the give @name from kernel code rather
1264 * than directly from the command line.
1265 *
1266 * Return: 0 if successful, error otherwise.
1267 */
kprobe_event_delete(const char * name)1268 int kprobe_event_delete(const char *name)
1269 {
1270 char buf[MAX_EVENT_NAME_LEN];
1271
1272 snprintf(buf, MAX_EVENT_NAME_LEN, "-:%s", name);
1273
1274 return create_or_delete_trace_kprobe(buf);
1275 }
1276 EXPORT_SYMBOL_GPL(kprobe_event_delete);
1277
trace_kprobe_release(struct dyn_event * ev)1278 static int trace_kprobe_release(struct dyn_event *ev)
1279 {
1280 struct trace_kprobe *tk = to_trace_kprobe(ev);
1281 int ret = unregister_trace_kprobe(tk);
1282
1283 if (!ret)
1284 free_trace_kprobe(tk);
1285 return ret;
1286 }
1287
trace_kprobe_show(struct seq_file * m,struct dyn_event * ev)1288 static int trace_kprobe_show(struct seq_file *m, struct dyn_event *ev)
1289 {
1290 struct trace_kprobe *tk = to_trace_kprobe(ev);
1291 int i;
1292
1293 seq_putc(m, trace_kprobe_is_return(tk) ? 'r' : 'p');
1294 if (trace_kprobe_is_return(tk) && tk->rp.maxactive)
1295 seq_printf(m, "%d", tk->rp.maxactive);
1296 seq_printf(m, ":%s/%s", trace_probe_group_name(&tk->tp),
1297 trace_probe_name(&tk->tp));
1298
1299 if (!tk->symbol)
1300 seq_printf(m, " 0x%p", tk->rp.kp.addr);
1301 else if (tk->rp.kp.offset)
1302 seq_printf(m, " %s+%u", trace_kprobe_symbol(tk),
1303 tk->rp.kp.offset);
1304 else
1305 seq_printf(m, " %s", trace_kprobe_symbol(tk));
1306
1307 for (i = 0; i < tk->tp.nr_args; i++)
1308 seq_printf(m, " %s=%s", tk->tp.args[i].name, tk->tp.args[i].comm);
1309 seq_putc(m, '\n');
1310
1311 return 0;
1312 }
1313
probes_seq_show(struct seq_file * m,void * v)1314 static int probes_seq_show(struct seq_file *m, void *v)
1315 {
1316 struct dyn_event *ev = v;
1317
1318 if (!is_trace_kprobe(ev))
1319 return 0;
1320
1321 return trace_kprobe_show(m, ev);
1322 }
1323
1324 static const struct seq_operations probes_seq_op = {
1325 .start = dyn_event_seq_start,
1326 .next = dyn_event_seq_next,
1327 .stop = dyn_event_seq_stop,
1328 .show = probes_seq_show
1329 };
1330
probes_open(struct inode * inode,struct file * file)1331 static int probes_open(struct inode *inode, struct file *file)
1332 {
1333 int ret;
1334
1335 ret = security_locked_down(LOCKDOWN_TRACEFS);
1336 if (ret)
1337 return ret;
1338
1339 if ((file->f_mode & FMODE_WRITE) && (file->f_flags & O_TRUNC)) {
1340 ret = dyn_events_release_all(&trace_kprobe_ops);
1341 if (ret < 0)
1342 return ret;
1343 }
1344
1345 return seq_open(file, &probes_seq_op);
1346 }
1347
probes_write(struct file * file,const char __user * buffer,size_t count,loff_t * ppos)1348 static ssize_t probes_write(struct file *file, const char __user *buffer,
1349 size_t count, loff_t *ppos)
1350 {
1351 return trace_parse_run_command(file, buffer, count, ppos,
1352 create_or_delete_trace_kprobe);
1353 }
1354
1355 static const struct file_operations kprobe_events_ops = {
1356 .owner = THIS_MODULE,
1357 .open = probes_open,
1358 .read = seq_read,
1359 .llseek = seq_lseek,
1360 .release = seq_release,
1361 .write = probes_write,
1362 };
1363
trace_kprobe_missed(struct trace_kprobe * tk)1364 static unsigned long trace_kprobe_missed(struct trace_kprobe *tk)
1365 {
1366 return trace_kprobe_is_return(tk) ?
1367 tk->rp.kp.nmissed + tk->rp.nmissed : tk->rp.kp.nmissed;
1368 }
1369
1370 /* Probes profiling interfaces */
probes_profile_seq_show(struct seq_file * m,void * v)1371 static int probes_profile_seq_show(struct seq_file *m, void *v)
1372 {
1373 struct dyn_event *ev = v;
1374 struct trace_kprobe *tk;
1375 unsigned long nmissed;
1376
1377 if (!is_trace_kprobe(ev))
1378 return 0;
1379
1380 tk = to_trace_kprobe(ev);
1381 nmissed = trace_kprobe_missed(tk);
1382 seq_printf(m, " %-44s %15lu %15lu\n",
1383 trace_probe_name(&tk->tp),
1384 trace_kprobe_nhit(tk),
1385 nmissed);
1386
1387 return 0;
1388 }
1389
1390 static const struct seq_operations profile_seq_op = {
1391 .start = dyn_event_seq_start,
1392 .next = dyn_event_seq_next,
1393 .stop = dyn_event_seq_stop,
1394 .show = probes_profile_seq_show
1395 };
1396
profile_open(struct inode * inode,struct file * file)1397 static int profile_open(struct inode *inode, struct file *file)
1398 {
1399 int ret;
1400
1401 ret = security_locked_down(LOCKDOWN_TRACEFS);
1402 if (ret)
1403 return ret;
1404
1405 return seq_open(file, &profile_seq_op);
1406 }
1407
1408 static const struct file_operations kprobe_profile_ops = {
1409 .owner = THIS_MODULE,
1410 .open = profile_open,
1411 .read = seq_read,
1412 .llseek = seq_lseek,
1413 .release = seq_release,
1414 };
1415
1416 /* Note that we don't verify it, since the code does not come from user space */
1417 static int
process_fetch_insn(struct fetch_insn * code,void * rec,void * edata,void * dest,void * base)1418 process_fetch_insn(struct fetch_insn *code, void *rec, void *edata,
1419 void *dest, void *base)
1420 {
1421 struct pt_regs *regs = rec;
1422 unsigned long val;
1423 int ret;
1424
1425 retry:
1426 /* 1st stage: get value from context */
1427 switch (code->op) {
1428 case FETCH_OP_REG:
1429 val = regs_get_register(regs, code->param);
1430 break;
1431 case FETCH_OP_STACK:
1432 val = regs_get_kernel_stack_nth(regs, code->param);
1433 break;
1434 case FETCH_OP_STACKP:
1435 val = kernel_stack_pointer(regs);
1436 break;
1437 case FETCH_OP_RETVAL:
1438 val = regs_return_value(regs);
1439 break;
1440 #ifdef CONFIG_HAVE_FUNCTION_ARG_ACCESS_API
1441 case FETCH_OP_ARG:
1442 val = regs_get_kernel_argument(regs, code->param);
1443 break;
1444 case FETCH_OP_EDATA:
1445 val = *(unsigned long *)((unsigned long)edata + code->offset);
1446 break;
1447 #endif
1448 case FETCH_NOP_SYMBOL: /* Ignore a place holder */
1449 code++;
1450 goto retry;
1451 default:
1452 ret = process_common_fetch_insn(code, &val);
1453 if (ret < 0)
1454 return ret;
1455 }
1456 code++;
1457
1458 return process_fetch_insn_bottom(code, val, dest, base);
1459 }
NOKPROBE_SYMBOL(process_fetch_insn)1460 NOKPROBE_SYMBOL(process_fetch_insn)
1461
1462 /* Kprobe handler */
1463 static nokprobe_inline void
1464 __kprobe_trace_func(struct trace_kprobe *tk, struct pt_regs *regs,
1465 struct trace_event_file *trace_file)
1466 {
1467 struct kprobe_trace_entry_head *entry;
1468 struct trace_event_call *call = trace_probe_event_call(&tk->tp);
1469 struct trace_event_buffer fbuffer;
1470 int dsize;
1471
1472 WARN_ON(call != trace_file->event_call);
1473
1474 if (trace_trigger_soft_disabled(trace_file))
1475 return;
1476
1477 dsize = __get_data_size(&tk->tp, regs, NULL);
1478
1479 entry = trace_event_buffer_reserve(&fbuffer, trace_file,
1480 sizeof(*entry) + tk->tp.size + dsize);
1481 if (!entry)
1482 return;
1483
1484 fbuffer.regs = regs;
1485 entry->ip = (unsigned long)tk->rp.kp.addr;
1486 store_trace_args(&entry[1], &tk->tp, regs, NULL, sizeof(*entry), dsize);
1487
1488 trace_event_buffer_commit(&fbuffer);
1489 }
1490
1491 static void
kprobe_trace_func(struct trace_kprobe * tk,struct pt_regs * regs)1492 kprobe_trace_func(struct trace_kprobe *tk, struct pt_regs *regs)
1493 {
1494 struct event_file_link *link;
1495
1496 trace_probe_for_each_link_rcu(link, &tk->tp)
1497 __kprobe_trace_func(tk, regs, link->file);
1498 }
1499 NOKPROBE_SYMBOL(kprobe_trace_func);
1500
1501 /* Kretprobe handler */
1502
trace_kprobe_entry_handler(struct kretprobe_instance * ri,struct pt_regs * regs)1503 static int trace_kprobe_entry_handler(struct kretprobe_instance *ri,
1504 struct pt_regs *regs)
1505 {
1506 struct kretprobe *rp = get_kretprobe(ri);
1507 struct trace_kprobe *tk;
1508
1509 /*
1510 * There is a small chance that get_kretprobe(ri) returns NULL when
1511 * the kretprobe is unregister on another CPU between kretprobe's
1512 * trampoline_handler and this function.
1513 */
1514 if (unlikely(!rp))
1515 return -ENOENT;
1516
1517 tk = container_of(rp, struct trace_kprobe, rp);
1518
1519 /* store argument values into ri->data as entry data */
1520 if (tk->tp.entry_arg)
1521 store_trace_entry_data(ri->data, &tk->tp, regs);
1522
1523 return 0;
1524 }
1525
1526
1527 static nokprobe_inline void
__kretprobe_trace_func(struct trace_kprobe * tk,struct kretprobe_instance * ri,struct pt_regs * regs,struct trace_event_file * trace_file)1528 __kretprobe_trace_func(struct trace_kprobe *tk, struct kretprobe_instance *ri,
1529 struct pt_regs *regs,
1530 struct trace_event_file *trace_file)
1531 {
1532 struct kretprobe_trace_entry_head *entry;
1533 struct trace_event_buffer fbuffer;
1534 struct trace_event_call *call = trace_probe_event_call(&tk->tp);
1535 int dsize;
1536
1537 WARN_ON(call != trace_file->event_call);
1538
1539 if (trace_trigger_soft_disabled(trace_file))
1540 return;
1541
1542 dsize = __get_data_size(&tk->tp, regs, ri->data);
1543
1544 entry = trace_event_buffer_reserve(&fbuffer, trace_file,
1545 sizeof(*entry) + tk->tp.size + dsize);
1546 if (!entry)
1547 return;
1548
1549 fbuffer.regs = regs;
1550 entry->func = (unsigned long)tk->rp.kp.addr;
1551 entry->ret_ip = get_kretprobe_retaddr(ri);
1552 store_trace_args(&entry[1], &tk->tp, regs, ri->data, sizeof(*entry), dsize);
1553
1554 trace_event_buffer_commit(&fbuffer);
1555 }
1556
1557 static void
kretprobe_trace_func(struct trace_kprobe * tk,struct kretprobe_instance * ri,struct pt_regs * regs)1558 kretprobe_trace_func(struct trace_kprobe *tk, struct kretprobe_instance *ri,
1559 struct pt_regs *regs)
1560 {
1561 struct event_file_link *link;
1562
1563 trace_probe_for_each_link_rcu(link, &tk->tp)
1564 __kretprobe_trace_func(tk, ri, regs, link->file);
1565 }
1566 NOKPROBE_SYMBOL(kretprobe_trace_func);
1567
1568 /* Event entry printers */
1569 static enum print_line_t
print_kprobe_event(struct trace_iterator * iter,int flags,struct trace_event * event)1570 print_kprobe_event(struct trace_iterator *iter, int flags,
1571 struct trace_event *event)
1572 {
1573 struct kprobe_trace_entry_head *field;
1574 struct trace_seq *s = &iter->seq;
1575 struct trace_probe *tp;
1576
1577 field = (struct kprobe_trace_entry_head *)iter->ent;
1578 tp = trace_probe_primary_from_call(
1579 container_of(event, struct trace_event_call, event));
1580 if (WARN_ON_ONCE(!tp))
1581 goto out;
1582
1583 trace_seq_printf(s, "%s: (", trace_probe_name(tp));
1584
1585 if (!seq_print_ip_sym(s, field->ip, flags | TRACE_ITER_SYM_OFFSET))
1586 goto out;
1587
1588 trace_seq_putc(s, ')');
1589
1590 if (trace_probe_print_args(s, tp->args, tp->nr_args,
1591 (u8 *)&field[1], field) < 0)
1592 goto out;
1593
1594 trace_seq_putc(s, '\n');
1595 out:
1596 return trace_handle_return(s);
1597 }
1598
1599 static enum print_line_t
print_kretprobe_event(struct trace_iterator * iter,int flags,struct trace_event * event)1600 print_kretprobe_event(struct trace_iterator *iter, int flags,
1601 struct trace_event *event)
1602 {
1603 struct kretprobe_trace_entry_head *field;
1604 struct trace_seq *s = &iter->seq;
1605 struct trace_probe *tp;
1606
1607 field = (struct kretprobe_trace_entry_head *)iter->ent;
1608 tp = trace_probe_primary_from_call(
1609 container_of(event, struct trace_event_call, event));
1610 if (WARN_ON_ONCE(!tp))
1611 goto out;
1612
1613 trace_seq_printf(s, "%s: (", trace_probe_name(tp));
1614
1615 if (!seq_print_ip_sym(s, field->ret_ip, flags | TRACE_ITER_SYM_OFFSET))
1616 goto out;
1617
1618 trace_seq_puts(s, " <- ");
1619
1620 if (!seq_print_ip_sym(s, field->func, flags & ~TRACE_ITER_SYM_OFFSET))
1621 goto out;
1622
1623 trace_seq_putc(s, ')');
1624
1625 if (trace_probe_print_args(s, tp->args, tp->nr_args,
1626 (u8 *)&field[1], field) < 0)
1627 goto out;
1628
1629 trace_seq_putc(s, '\n');
1630
1631 out:
1632 return trace_handle_return(s);
1633 }
1634
1635
kprobe_event_define_fields(struct trace_event_call * event_call)1636 static int kprobe_event_define_fields(struct trace_event_call *event_call)
1637 {
1638 int ret;
1639 struct kprobe_trace_entry_head field;
1640 struct trace_probe *tp;
1641
1642 tp = trace_probe_primary_from_call(event_call);
1643 if (WARN_ON_ONCE(!tp))
1644 return -ENOENT;
1645
1646 DEFINE_FIELD(unsigned long, ip, FIELD_STRING_IP, 0);
1647
1648 return traceprobe_define_arg_fields(event_call, sizeof(field), tp);
1649 }
1650
kretprobe_event_define_fields(struct trace_event_call * event_call)1651 static int kretprobe_event_define_fields(struct trace_event_call *event_call)
1652 {
1653 int ret;
1654 struct kretprobe_trace_entry_head field;
1655 struct trace_probe *tp;
1656
1657 tp = trace_probe_primary_from_call(event_call);
1658 if (WARN_ON_ONCE(!tp))
1659 return -ENOENT;
1660
1661 DEFINE_FIELD(unsigned long, func, FIELD_STRING_FUNC, 0);
1662 DEFINE_FIELD(unsigned long, ret_ip, FIELD_STRING_RETIP, 0);
1663
1664 return traceprobe_define_arg_fields(event_call, sizeof(field), tp);
1665 }
1666
1667 #ifdef CONFIG_PERF_EVENTS
1668
1669 /* Kprobe profile handler */
1670 static int
kprobe_perf_func(struct trace_kprobe * tk,struct pt_regs * regs)1671 kprobe_perf_func(struct trace_kprobe *tk, struct pt_regs *regs)
1672 {
1673 struct trace_event_call *call = trace_probe_event_call(&tk->tp);
1674 struct kprobe_trace_entry_head *entry;
1675 struct hlist_head *head;
1676 int size, __size, dsize;
1677 int rctx;
1678
1679 if (bpf_prog_array_valid(call)) {
1680 unsigned long orig_ip = instruction_pointer(regs);
1681 int ret;
1682
1683 ret = trace_call_bpf(call, regs);
1684
1685 /*
1686 * We need to check and see if we modified the pc of the
1687 * pt_regs, and if so return 1 so that we don't do the
1688 * single stepping.
1689 */
1690 if (orig_ip != instruction_pointer(regs))
1691 return 1;
1692 if (!ret)
1693 return 0;
1694 }
1695
1696 head = this_cpu_ptr(call->perf_events);
1697 if (hlist_empty(head))
1698 return 0;
1699
1700 dsize = __get_data_size(&tk->tp, regs, NULL);
1701 __size = sizeof(*entry) + tk->tp.size + dsize;
1702 size = ALIGN(__size + sizeof(u32), sizeof(u64));
1703 size -= sizeof(u32);
1704
1705 entry = perf_trace_buf_alloc(size, NULL, &rctx);
1706 if (!entry)
1707 return 0;
1708
1709 entry->ip = (unsigned long)tk->rp.kp.addr;
1710 memset(&entry[1], 0, dsize);
1711 store_trace_args(&entry[1], &tk->tp, regs, NULL, sizeof(*entry), dsize);
1712 perf_trace_buf_submit(entry, size, rctx, call->event.type, 1, regs,
1713 head, NULL);
1714 return 0;
1715 }
1716 NOKPROBE_SYMBOL(kprobe_perf_func);
1717
1718 /* Kretprobe profile handler */
1719 static void
kretprobe_perf_func(struct trace_kprobe * tk,struct kretprobe_instance * ri,struct pt_regs * regs)1720 kretprobe_perf_func(struct trace_kprobe *tk, struct kretprobe_instance *ri,
1721 struct pt_regs *regs)
1722 {
1723 struct trace_event_call *call = trace_probe_event_call(&tk->tp);
1724 struct kretprobe_trace_entry_head *entry;
1725 struct hlist_head *head;
1726 int size, __size, dsize;
1727 int rctx;
1728
1729 if (bpf_prog_array_valid(call) && !trace_call_bpf(call, regs))
1730 return;
1731
1732 head = this_cpu_ptr(call->perf_events);
1733 if (hlist_empty(head))
1734 return;
1735
1736 dsize = __get_data_size(&tk->tp, regs, ri->data);
1737 __size = sizeof(*entry) + tk->tp.size + dsize;
1738 size = ALIGN(__size + sizeof(u32), sizeof(u64));
1739 size -= sizeof(u32);
1740
1741 entry = perf_trace_buf_alloc(size, NULL, &rctx);
1742 if (!entry)
1743 return;
1744
1745 entry->func = (unsigned long)tk->rp.kp.addr;
1746 entry->ret_ip = get_kretprobe_retaddr(ri);
1747 store_trace_args(&entry[1], &tk->tp, regs, ri->data, sizeof(*entry), dsize);
1748 perf_trace_buf_submit(entry, size, rctx, call->event.type, 1, regs,
1749 head, NULL);
1750 }
1751 NOKPROBE_SYMBOL(kretprobe_perf_func);
1752
bpf_get_kprobe_info(const struct perf_event * event,u32 * fd_type,const char ** symbol,u64 * probe_offset,u64 * probe_addr,unsigned long * missed,bool perf_type_tracepoint)1753 int bpf_get_kprobe_info(const struct perf_event *event, u32 *fd_type,
1754 const char **symbol, u64 *probe_offset,
1755 u64 *probe_addr, unsigned long *missed,
1756 bool perf_type_tracepoint)
1757 {
1758 const char *pevent = trace_event_name(event->tp_event);
1759 const char *group = event->tp_event->class->system;
1760 struct trace_kprobe *tk;
1761
1762 if (perf_type_tracepoint)
1763 tk = find_trace_kprobe(pevent, group);
1764 else
1765 tk = trace_kprobe_primary_from_call(event->tp_event);
1766 if (!tk)
1767 return -EINVAL;
1768
1769 *fd_type = trace_kprobe_is_return(tk) ? BPF_FD_TYPE_KRETPROBE
1770 : BPF_FD_TYPE_KPROBE;
1771 *probe_offset = tk->rp.kp.offset;
1772 *probe_addr = kallsyms_show_value(current_cred()) ?
1773 (unsigned long)tk->rp.kp.addr : 0;
1774 *symbol = tk->symbol;
1775 if (missed)
1776 *missed = trace_kprobe_missed(tk);
1777 return 0;
1778 }
1779 #endif /* CONFIG_PERF_EVENTS */
1780
1781 /*
1782 * called by perf_trace_init() or __ftrace_set_clr_event() under event_mutex.
1783 *
1784 * kprobe_trace_self_tests_init() does enable_trace_probe/disable_trace_probe
1785 * lockless, but we can't race with this __init function.
1786 */
kprobe_register(struct trace_event_call * event,enum trace_reg type,void * data)1787 static int kprobe_register(struct trace_event_call *event,
1788 enum trace_reg type, void *data)
1789 {
1790 struct trace_event_file *file = data;
1791
1792 switch (type) {
1793 case TRACE_REG_REGISTER:
1794 return enable_trace_kprobe(event, file);
1795 case TRACE_REG_UNREGISTER:
1796 return disable_trace_kprobe(event, file);
1797
1798 #ifdef CONFIG_PERF_EVENTS
1799 case TRACE_REG_PERF_REGISTER:
1800 return enable_trace_kprobe(event, NULL);
1801 case TRACE_REG_PERF_UNREGISTER:
1802 return disable_trace_kprobe(event, NULL);
1803 case TRACE_REG_PERF_OPEN:
1804 case TRACE_REG_PERF_CLOSE:
1805 case TRACE_REG_PERF_ADD:
1806 case TRACE_REG_PERF_DEL:
1807 return 0;
1808 #endif
1809 }
1810 return 0;
1811 }
1812
kprobe_dispatcher(struct kprobe * kp,struct pt_regs * regs)1813 static int kprobe_dispatcher(struct kprobe *kp, struct pt_regs *regs)
1814 {
1815 struct trace_kprobe *tk = container_of(kp, struct trace_kprobe, rp.kp);
1816 int ret = 0;
1817
1818 raw_cpu_inc(*tk->nhit);
1819
1820 if (trace_probe_test_flag(&tk->tp, TP_FLAG_TRACE))
1821 kprobe_trace_func(tk, regs);
1822 #ifdef CONFIG_PERF_EVENTS
1823 if (trace_probe_test_flag(&tk->tp, TP_FLAG_PROFILE))
1824 ret = kprobe_perf_func(tk, regs);
1825 #endif
1826 return ret;
1827 }
1828 NOKPROBE_SYMBOL(kprobe_dispatcher);
1829
1830 static int
kretprobe_dispatcher(struct kretprobe_instance * ri,struct pt_regs * regs)1831 kretprobe_dispatcher(struct kretprobe_instance *ri, struct pt_regs *regs)
1832 {
1833 struct kretprobe *rp = get_kretprobe(ri);
1834 struct trace_kprobe *tk;
1835
1836 /*
1837 * There is a small chance that get_kretprobe(ri) returns NULL when
1838 * the kretprobe is unregister on another CPU between kretprobe's
1839 * trampoline_handler and this function.
1840 */
1841 if (unlikely(!rp))
1842 return 0;
1843
1844 tk = container_of(rp, struct trace_kprobe, rp);
1845 raw_cpu_inc(*tk->nhit);
1846
1847 if (trace_probe_test_flag(&tk->tp, TP_FLAG_TRACE))
1848 kretprobe_trace_func(tk, ri, regs);
1849 #ifdef CONFIG_PERF_EVENTS
1850 if (trace_probe_test_flag(&tk->tp, TP_FLAG_PROFILE))
1851 kretprobe_perf_func(tk, ri, regs);
1852 #endif
1853 return 0; /* We don't tweak kernel, so just return 0 */
1854 }
1855 NOKPROBE_SYMBOL(kretprobe_dispatcher);
1856
1857 static struct trace_event_functions kretprobe_funcs = {
1858 .trace = print_kretprobe_event
1859 };
1860
1861 static struct trace_event_functions kprobe_funcs = {
1862 .trace = print_kprobe_event
1863 };
1864
1865 static struct trace_event_fields kretprobe_fields_array[] = {
1866 { .type = TRACE_FUNCTION_TYPE,
1867 .define_fields = kretprobe_event_define_fields },
1868 {}
1869 };
1870
1871 static struct trace_event_fields kprobe_fields_array[] = {
1872 { .type = TRACE_FUNCTION_TYPE,
1873 .define_fields = kprobe_event_define_fields },
1874 {}
1875 };
1876
init_trace_event_call(struct trace_kprobe * tk)1877 static inline void init_trace_event_call(struct trace_kprobe *tk)
1878 {
1879 struct trace_event_call *call = trace_probe_event_call(&tk->tp);
1880
1881 if (trace_kprobe_is_return(tk)) {
1882 call->event.funcs = &kretprobe_funcs;
1883 call->class->fields_array = kretprobe_fields_array;
1884 } else {
1885 call->event.funcs = &kprobe_funcs;
1886 call->class->fields_array = kprobe_fields_array;
1887 }
1888
1889 call->flags = TRACE_EVENT_FL_KPROBE;
1890 call->class->reg = kprobe_register;
1891 }
1892
register_kprobe_event(struct trace_kprobe * tk)1893 static int register_kprobe_event(struct trace_kprobe *tk)
1894 {
1895 init_trace_event_call(tk);
1896
1897 return trace_probe_register_event_call(&tk->tp);
1898 }
1899
unregister_kprobe_event(struct trace_kprobe * tk)1900 static int unregister_kprobe_event(struct trace_kprobe *tk)
1901 {
1902 return trace_probe_unregister_event_call(&tk->tp);
1903 }
1904
1905 #ifdef CONFIG_PERF_EVENTS
1906
1907 /* create a trace_kprobe, but don't add it to global lists */
1908 struct trace_event_call *
create_local_trace_kprobe(char * func,void * addr,unsigned long offs,bool is_return)1909 create_local_trace_kprobe(char *func, void *addr, unsigned long offs,
1910 bool is_return)
1911 {
1912 enum probe_print_type ptype;
1913 struct trace_kprobe *tk __free(free_trace_kprobe) = NULL;
1914 int ret;
1915 char *event;
1916
1917 if (func) {
1918 ret = validate_probe_symbol(func);
1919 if (ret)
1920 return ERR_PTR(ret);
1921 }
1922
1923 /*
1924 * local trace_kprobes are not added to dyn_event, so they are never
1925 * searched in find_trace_kprobe(). Therefore, there is no concern of
1926 * duplicated name here.
1927 */
1928 event = func ? func : "DUMMY_EVENT";
1929
1930 tk = alloc_trace_kprobe(KPROBE_EVENT_SYSTEM, event, (void *)addr, func,
1931 offs, 0 /* maxactive */, 0 /* nargs */,
1932 is_return);
1933
1934 if (IS_ERR(tk)) {
1935 pr_info("Failed to allocate trace_probe.(%d)\n",
1936 (int)PTR_ERR(tk));
1937 return ERR_CAST(tk);
1938 }
1939
1940 init_trace_event_call(tk);
1941
1942 ptype = trace_kprobe_is_return(tk) ?
1943 PROBE_PRINT_RETURN : PROBE_PRINT_NORMAL;
1944 if (traceprobe_set_print_fmt(&tk->tp, ptype) < 0)
1945 return ERR_PTR(-ENOMEM);
1946
1947 ret = __register_trace_kprobe(tk);
1948 if (ret < 0)
1949 return ERR_PTR(ret);
1950
1951 return trace_probe_event_call(&(no_free_ptr(tk)->tp));
1952 }
1953
destroy_local_trace_kprobe(struct trace_event_call * event_call)1954 void destroy_local_trace_kprobe(struct trace_event_call *event_call)
1955 {
1956 struct trace_kprobe *tk;
1957
1958 tk = trace_kprobe_primary_from_call(event_call);
1959 if (unlikely(!tk))
1960 return;
1961
1962 if (trace_probe_is_enabled(&tk->tp)) {
1963 WARN_ON(1);
1964 return;
1965 }
1966
1967 __unregister_trace_kprobe(tk);
1968
1969 free_trace_kprobe(tk);
1970 }
1971 #endif /* CONFIG_PERF_EVENTS */
1972
enable_boot_kprobe_events(void)1973 static __init void enable_boot_kprobe_events(void)
1974 {
1975 struct trace_array *tr = top_trace_array();
1976 struct trace_event_file *file;
1977 struct trace_kprobe *tk;
1978 struct dyn_event *pos;
1979
1980 guard(mutex)(&event_mutex);
1981 for_each_trace_kprobe(tk, pos) {
1982 list_for_each_entry(file, &tr->events, list)
1983 if (file->event_call == trace_probe_event_call(&tk->tp))
1984 trace_event_enable_disable(file, 1, 0);
1985 }
1986 }
1987
setup_boot_kprobe_events(void)1988 static __init void setup_boot_kprobe_events(void)
1989 {
1990 char *p, *cmd = kprobe_boot_events_buf;
1991 int ret;
1992
1993 strreplace(kprobe_boot_events_buf, ',', ' ');
1994
1995 while (cmd && *cmd != '\0') {
1996 p = strchr(cmd, ';');
1997 if (p)
1998 *p++ = '\0';
1999
2000 ret = create_or_delete_trace_kprobe(cmd);
2001 if (ret)
2002 pr_warn("Failed to add event(%d): %s\n", ret, cmd);
2003
2004 cmd = p;
2005 }
2006
2007 enable_boot_kprobe_events();
2008 }
2009
2010 /*
2011 * Register dynevent at core_initcall. This allows kernel to setup kprobe
2012 * events in postcore_initcall without tracefs.
2013 */
init_kprobe_trace_early(void)2014 static __init int init_kprobe_trace_early(void)
2015 {
2016 int ret;
2017
2018 ret = dyn_event_register(&trace_kprobe_ops);
2019 if (ret)
2020 return ret;
2021
2022 if (trace_kprobe_register_module_notifier())
2023 return -EINVAL;
2024
2025 return 0;
2026 }
2027 core_initcall(init_kprobe_trace_early);
2028
2029 /* Make a tracefs interface for controlling probe points */
init_kprobe_trace(void)2030 static __init int init_kprobe_trace(void)
2031 {
2032 int ret;
2033
2034 ret = tracing_init_dentry();
2035 if (ret)
2036 return 0;
2037
2038 /* Event list interface */
2039 trace_create_file("kprobe_events", TRACE_MODE_WRITE,
2040 NULL, NULL, &kprobe_events_ops);
2041
2042 /* Profile interface */
2043 trace_create_file("kprobe_profile", TRACE_MODE_READ,
2044 NULL, NULL, &kprobe_profile_ops);
2045
2046 setup_boot_kprobe_events();
2047
2048 return 0;
2049 }
2050 fs_initcall(init_kprobe_trace);
2051
2052
2053 #ifdef CONFIG_FTRACE_STARTUP_TEST
2054 static __init struct trace_event_file *
find_trace_probe_file(struct trace_kprobe * tk,struct trace_array * tr)2055 find_trace_probe_file(struct trace_kprobe *tk, struct trace_array *tr)
2056 {
2057 struct trace_event_file *file;
2058
2059 list_for_each_entry(file, &tr->events, list)
2060 if (file->event_call == trace_probe_event_call(&tk->tp))
2061 return file;
2062
2063 return NULL;
2064 }
2065
2066 /*
2067 * Nobody but us can call enable_trace_kprobe/disable_trace_kprobe at this
2068 * stage, we can do this lockless.
2069 */
kprobe_trace_self_tests_init(void)2070 static __init int kprobe_trace_self_tests_init(void)
2071 {
2072 int ret, warn = 0;
2073 int (*target)(int, int, int, int, int, int);
2074 struct trace_kprobe *tk;
2075 struct trace_event_file *file;
2076
2077 if (tracing_is_disabled())
2078 return -ENODEV;
2079
2080 if (tracing_selftest_disabled)
2081 return 0;
2082
2083 target = kprobe_trace_selftest_target;
2084
2085 pr_info("Testing kprobe tracing: ");
2086
2087 ret = create_or_delete_trace_kprobe("p:testprobe kprobe_trace_selftest_target $stack $stack0 +0($stack)");
2088 if (WARN_ONCE(ret, "error on probing function entry.")) {
2089 warn++;
2090 } else {
2091 /* Enable trace point */
2092 tk = find_trace_kprobe("testprobe", KPROBE_EVENT_SYSTEM);
2093 if (WARN_ONCE(tk == NULL, "error on probing function entry.")) {
2094 warn++;
2095 } else {
2096 file = find_trace_probe_file(tk, top_trace_array());
2097 if (WARN_ONCE(file == NULL, "error on getting probe file.")) {
2098 warn++;
2099 } else
2100 enable_trace_kprobe(
2101 trace_probe_event_call(&tk->tp), file);
2102 }
2103 }
2104
2105 ret = create_or_delete_trace_kprobe("r:testprobe2 kprobe_trace_selftest_target $retval");
2106 if (WARN_ONCE(ret, "error on probing function return.")) {
2107 warn++;
2108 } else {
2109 /* Enable trace point */
2110 tk = find_trace_kprobe("testprobe2", KPROBE_EVENT_SYSTEM);
2111 if (WARN_ONCE(tk == NULL, "error on getting 2nd new probe.")) {
2112 warn++;
2113 } else {
2114 file = find_trace_probe_file(tk, top_trace_array());
2115 if (WARN_ONCE(file == NULL, "error on getting probe file.")) {
2116 warn++;
2117 } else
2118 enable_trace_kprobe(
2119 trace_probe_event_call(&tk->tp), file);
2120 }
2121 }
2122
2123 if (warn)
2124 goto end;
2125
2126 ret = target(1, 2, 3, 4, 5, 6);
2127
2128 /*
2129 * Not expecting an error here, the check is only to prevent the
2130 * optimizer from removing the call to target() as otherwise there
2131 * are no side-effects and the call is never performed.
2132 */
2133 if (ret != 21)
2134 warn++;
2135
2136 /* Disable trace points before removing it */
2137 tk = find_trace_kprobe("testprobe", KPROBE_EVENT_SYSTEM);
2138 if (WARN_ONCE(tk == NULL, "error on getting test probe.")) {
2139 warn++;
2140 } else {
2141 if (WARN_ONCE(trace_kprobe_nhit(tk) != 1,
2142 "incorrect number of testprobe hits."))
2143 warn++;
2144
2145 file = find_trace_probe_file(tk, top_trace_array());
2146 if (WARN_ONCE(file == NULL, "error on getting probe file.")) {
2147 warn++;
2148 } else
2149 disable_trace_kprobe(
2150 trace_probe_event_call(&tk->tp), file);
2151 }
2152
2153 tk = find_trace_kprobe("testprobe2", KPROBE_EVENT_SYSTEM);
2154 if (WARN_ONCE(tk == NULL, "error on getting 2nd test probe.")) {
2155 warn++;
2156 } else {
2157 if (WARN_ONCE(trace_kprobe_nhit(tk) != 1,
2158 "incorrect number of testprobe2 hits."))
2159 warn++;
2160
2161 file = find_trace_probe_file(tk, top_trace_array());
2162 if (WARN_ONCE(file == NULL, "error on getting probe file.")) {
2163 warn++;
2164 } else
2165 disable_trace_kprobe(
2166 trace_probe_event_call(&tk->tp), file);
2167 }
2168
2169 ret = create_or_delete_trace_kprobe("-:testprobe");
2170 if (WARN_ONCE(ret, "error on deleting a probe."))
2171 warn++;
2172
2173 ret = create_or_delete_trace_kprobe("-:testprobe2");
2174 if (WARN_ONCE(ret, "error on deleting a probe."))
2175 warn++;
2176
2177
2178 end:
2179 /*
2180 * Wait for the optimizer work to finish. Otherwise it might fiddle
2181 * with probes in already freed __init text.
2182 */
2183 wait_for_kprobe_optimizer();
2184 if (warn)
2185 pr_cont("NG: Some tests are failed. Please check them.\n");
2186 else
2187 pr_cont("OK\n");
2188 return 0;
2189 }
2190
2191 late_initcall(kprobe_trace_self_tests_init);
2192
2193 #endif
2194