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