1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * uprobes-based tracing events 4 * 5 * Copyright (C) IBM Corporation, 2010-2012 6 * Author: Srikar Dronamraju <srikar@linux.vnet.ibm.com> 7 */ 8 #define pr_fmt(fmt) "trace_uprobe: " fmt 9 10 #include <linux/bpf-cgroup.h> 11 #include <linux/security.h> 12 #include <linux/ctype.h> 13 #include <linux/module.h> 14 #include <linux/uaccess.h> 15 #include <linux/uprobes.h> 16 #include <linux/namei.h> 17 #include <linux/string.h> 18 #include <linux/rculist.h> 19 #include <linux/filter.h> 20 21 #include "trace_dynevent.h" 22 #include "trace_probe.h" 23 #include "trace_probe_tmpl.h" 24 25 #define UPROBE_EVENT_SYSTEM "uprobes" 26 27 struct uprobe_trace_entry_head { 28 struct trace_entry ent; 29 unsigned long vaddr[]; 30 }; 31 32 #define SIZEOF_TRACE_ENTRY(is_return) \ 33 (sizeof(struct uprobe_trace_entry_head) + \ 34 sizeof(unsigned long) * (is_return ? 2 : 1)) 35 36 #define DATAOF_TRACE_ENTRY(entry, is_return) \ 37 ((void*)(entry) + SIZEOF_TRACE_ENTRY(is_return)) 38 39 static int trace_uprobe_create(const char *raw_command); 40 static int trace_uprobe_show(struct seq_file *m, struct dyn_event *ev); 41 static int trace_uprobe_release(struct dyn_event *ev); 42 static bool trace_uprobe_is_busy(struct dyn_event *ev); 43 static bool trace_uprobe_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_uprobe_ops = { 47 .create = trace_uprobe_create, 48 .show = trace_uprobe_show, 49 .is_busy = trace_uprobe_is_busy, 50 .free = trace_uprobe_release, 51 .match = trace_uprobe_match, 52 }; 53 54 /* 55 * uprobe event core functions 56 */ 57 struct trace_uprobe { 58 struct dyn_event devent; 59 struct uprobe_consumer consumer; 60 struct path path; 61 struct inode *inode; 62 char *filename; 63 unsigned long offset; 64 unsigned long ref_ctr_offset; 65 unsigned long nhit; 66 struct trace_probe tp; 67 }; 68 69 static bool is_trace_uprobe(struct dyn_event *ev) 70 { 71 return ev->ops == &trace_uprobe_ops; 72 } 73 74 static struct trace_uprobe *to_trace_uprobe(struct dyn_event *ev) 75 { 76 return container_of(ev, struct trace_uprobe, devent); 77 } 78 79 /** 80 * for_each_trace_uprobe - iterate over the trace_uprobe list 81 * @pos: the struct trace_uprobe * for each entry 82 * @dpos: the struct dyn_event * to use as a loop cursor 83 */ 84 #define for_each_trace_uprobe(pos, dpos) \ 85 for_each_dyn_event(dpos) \ 86 if (is_trace_uprobe(dpos) && (pos = to_trace_uprobe(dpos))) 87 88 static int register_uprobe_event(struct trace_uprobe *tu); 89 static int unregister_uprobe_event(struct trace_uprobe *tu); 90 91 struct uprobe_dispatch_data { 92 struct trace_uprobe *tu; 93 unsigned long bp_addr; 94 }; 95 96 static int uprobe_dispatcher(struct uprobe_consumer *con, struct pt_regs *regs); 97 static int uretprobe_dispatcher(struct uprobe_consumer *con, 98 unsigned long func, struct pt_regs *regs); 99 100 #ifdef CONFIG_STACK_GROWSUP 101 static unsigned long adjust_stack_addr(unsigned long addr, unsigned int n) 102 { 103 return addr - (n * sizeof(long)); 104 } 105 #else 106 static unsigned long adjust_stack_addr(unsigned long addr, unsigned int n) 107 { 108 return addr + (n * sizeof(long)); 109 } 110 #endif 111 112 static unsigned long get_user_stack_nth(struct pt_regs *regs, unsigned int n) 113 { 114 unsigned long ret; 115 unsigned long addr = user_stack_pointer(regs); 116 117 addr = adjust_stack_addr(addr, n); 118 119 if (copy_from_user(&ret, (void __force __user *) addr, sizeof(ret))) 120 return 0; 121 122 return ret; 123 } 124 125 /* 126 * Uprobes-specific fetch functions 127 */ 128 static nokprobe_inline int 129 probe_mem_read(void *dest, void *src, size_t size) 130 { 131 void __user *vaddr = (void __force __user *)src; 132 133 return copy_from_user(dest, vaddr, size) ? -EFAULT : 0; 134 } 135 136 static nokprobe_inline int 137 probe_mem_read_user(void *dest, void *src, size_t size) 138 { 139 return probe_mem_read(dest, src, size); 140 } 141 142 /* 143 * Fetch a null-terminated string. Caller MUST set *(u32 *)dest with max 144 * length and relative data location. 145 */ 146 static nokprobe_inline int 147 fetch_store_string(unsigned long addr, void *dest, void *base) 148 { 149 long ret; 150 u32 loc = *(u32 *)dest; 151 int maxlen = get_loc_len(loc); 152 u8 *dst = get_loc_data(dest, base); 153 void __user *src = (void __force __user *) addr; 154 155 if (unlikely(!maxlen)) 156 return -ENOMEM; 157 158 if (addr == FETCH_TOKEN_COMM) 159 ret = strlcpy(dst, current->comm, maxlen); 160 else 161 ret = strncpy_from_user(dst, src, maxlen); 162 if (ret >= 0) { 163 if (ret == maxlen) 164 dst[ret - 1] = '\0'; 165 else 166 /* 167 * Include the terminating null byte. In this case it 168 * was copied by strncpy_from_user but not accounted 169 * for in ret. 170 */ 171 ret++; 172 *(u32 *)dest = make_data_loc(ret, (void *)dst - base); 173 } 174 175 return ret; 176 } 177 178 static nokprobe_inline int 179 fetch_store_string_user(unsigned long addr, void *dest, void *base) 180 { 181 return fetch_store_string(addr, dest, base); 182 } 183 184 /* Return the length of string -- including null terminal byte */ 185 static nokprobe_inline int 186 fetch_store_strlen(unsigned long addr) 187 { 188 int len; 189 void __user *vaddr = (void __force __user *) addr; 190 191 if (addr == FETCH_TOKEN_COMM) 192 len = strlen(current->comm) + 1; 193 else 194 len = strnlen_user(vaddr, MAX_STRING_SIZE); 195 196 return (len > MAX_STRING_SIZE) ? 0 : len; 197 } 198 199 static nokprobe_inline int 200 fetch_store_strlen_user(unsigned long addr) 201 { 202 return fetch_store_strlen(addr); 203 } 204 205 static unsigned long translate_user_vaddr(unsigned long file_offset) 206 { 207 unsigned long base_addr; 208 struct uprobe_dispatch_data *udd; 209 210 udd = (void *) current->utask->vaddr; 211 212 base_addr = udd->bp_addr - udd->tu->offset; 213 return base_addr + file_offset; 214 } 215 216 /* Note that we don't verify it, since the code does not come from user space */ 217 static int 218 process_fetch_insn(struct fetch_insn *code, void *rec, void *dest, 219 void *base) 220 { 221 struct pt_regs *regs = rec; 222 unsigned long val; 223 224 /* 1st stage: get value from context */ 225 switch (code->op) { 226 case FETCH_OP_REG: 227 val = regs_get_register(regs, code->param); 228 break; 229 case FETCH_OP_STACK: 230 val = get_user_stack_nth(regs, code->param); 231 break; 232 case FETCH_OP_STACKP: 233 val = user_stack_pointer(regs); 234 break; 235 case FETCH_OP_RETVAL: 236 val = regs_return_value(regs); 237 break; 238 case FETCH_OP_IMM: 239 val = code->immediate; 240 break; 241 case FETCH_OP_COMM: 242 val = FETCH_TOKEN_COMM; 243 break; 244 case FETCH_OP_DATA: 245 val = (unsigned long)code->data; 246 break; 247 case FETCH_OP_FOFFS: 248 val = translate_user_vaddr(code->immediate); 249 break; 250 default: 251 return -EILSEQ; 252 } 253 code++; 254 255 return process_fetch_insn_bottom(code, val, dest, base); 256 } 257 NOKPROBE_SYMBOL(process_fetch_insn) 258 259 static inline void init_trace_uprobe_filter(struct trace_uprobe_filter *filter) 260 { 261 rwlock_init(&filter->rwlock); 262 filter->nr_systemwide = 0; 263 INIT_LIST_HEAD(&filter->perf_events); 264 } 265 266 static inline bool uprobe_filter_is_empty(struct trace_uprobe_filter *filter) 267 { 268 return !filter->nr_systemwide && list_empty(&filter->perf_events); 269 } 270 271 static inline bool is_ret_probe(struct trace_uprobe *tu) 272 { 273 return tu->consumer.ret_handler != NULL; 274 } 275 276 static bool trace_uprobe_is_busy(struct dyn_event *ev) 277 { 278 struct trace_uprobe *tu = to_trace_uprobe(ev); 279 280 return trace_probe_is_enabled(&tu->tp); 281 } 282 283 static bool trace_uprobe_match_command_head(struct trace_uprobe *tu, 284 int argc, const char **argv) 285 { 286 char buf[MAX_ARGSTR_LEN + 1]; 287 int len; 288 289 if (!argc) 290 return true; 291 292 len = strlen(tu->filename); 293 if (strncmp(tu->filename, argv[0], len) || argv[0][len] != ':') 294 return false; 295 296 if (tu->ref_ctr_offset == 0) 297 snprintf(buf, sizeof(buf), "0x%0*lx", 298 (int)(sizeof(void *) * 2), tu->offset); 299 else 300 snprintf(buf, sizeof(buf), "0x%0*lx(0x%lx)", 301 (int)(sizeof(void *) * 2), tu->offset, 302 tu->ref_ctr_offset); 303 if (strcmp(buf, &argv[0][len + 1])) 304 return false; 305 306 argc--; argv++; 307 308 return trace_probe_match_command_args(&tu->tp, argc, argv); 309 } 310 311 static bool trace_uprobe_match(const char *system, const char *event, 312 int argc, const char **argv, struct dyn_event *ev) 313 { 314 struct trace_uprobe *tu = to_trace_uprobe(ev); 315 316 return strcmp(trace_probe_name(&tu->tp), event) == 0 && 317 (!system || strcmp(trace_probe_group_name(&tu->tp), system) == 0) && 318 trace_uprobe_match_command_head(tu, argc, argv); 319 } 320 321 static nokprobe_inline struct trace_uprobe * 322 trace_uprobe_primary_from_call(struct trace_event_call *call) 323 { 324 struct trace_probe *tp; 325 326 tp = trace_probe_primary_from_call(call); 327 if (WARN_ON_ONCE(!tp)) 328 return NULL; 329 330 return container_of(tp, struct trace_uprobe, tp); 331 } 332 333 /* 334 * Allocate new trace_uprobe and initialize it (including uprobes). 335 */ 336 static struct trace_uprobe * 337 alloc_trace_uprobe(const char *group, const char *event, int nargs, bool is_ret) 338 { 339 struct trace_uprobe *tu; 340 int ret; 341 342 tu = kzalloc(struct_size(tu, tp.args, nargs), GFP_KERNEL); 343 if (!tu) 344 return ERR_PTR(-ENOMEM); 345 346 ret = trace_probe_init(&tu->tp, event, group, true); 347 if (ret < 0) 348 goto error; 349 350 dyn_event_init(&tu->devent, &trace_uprobe_ops); 351 tu->consumer.handler = uprobe_dispatcher; 352 if (is_ret) 353 tu->consumer.ret_handler = uretprobe_dispatcher; 354 init_trace_uprobe_filter(tu->tp.event->filter); 355 return tu; 356 357 error: 358 kfree(tu); 359 360 return ERR_PTR(ret); 361 } 362 363 static void free_trace_uprobe(struct trace_uprobe *tu) 364 { 365 if (!tu) 366 return; 367 368 path_put(&tu->path); 369 trace_probe_cleanup(&tu->tp); 370 kfree(tu->filename); 371 kfree(tu); 372 } 373 374 static struct trace_uprobe *find_probe_event(const char *event, const char *group) 375 { 376 struct dyn_event *pos; 377 struct trace_uprobe *tu; 378 379 for_each_trace_uprobe(tu, pos) 380 if (strcmp(trace_probe_name(&tu->tp), event) == 0 && 381 strcmp(trace_probe_group_name(&tu->tp), group) == 0) 382 return tu; 383 384 return NULL; 385 } 386 387 /* Unregister a trace_uprobe and probe_event */ 388 static int unregister_trace_uprobe(struct trace_uprobe *tu) 389 { 390 int ret; 391 392 if (trace_probe_has_sibling(&tu->tp)) 393 goto unreg; 394 395 /* If there's a reference to the dynamic event */ 396 if (trace_event_dyn_busy(trace_probe_event_call(&tu->tp))) 397 return -EBUSY; 398 399 ret = unregister_uprobe_event(tu); 400 if (ret) 401 return ret; 402 403 unreg: 404 dyn_event_remove(&tu->devent); 405 trace_probe_unlink(&tu->tp); 406 free_trace_uprobe(tu); 407 return 0; 408 } 409 410 static bool trace_uprobe_has_same_uprobe(struct trace_uprobe *orig, 411 struct trace_uprobe *comp) 412 { 413 struct trace_probe_event *tpe = orig->tp.event; 414 struct inode *comp_inode = d_real_inode(comp->path.dentry); 415 int i; 416 417 list_for_each_entry(orig, &tpe->probes, tp.list) { 418 if (comp_inode != d_real_inode(orig->path.dentry) || 419 comp->offset != orig->offset) 420 continue; 421 422 /* 423 * trace_probe_compare_arg_type() ensured that nr_args and 424 * each argument name and type are same. Let's compare comm. 425 */ 426 for (i = 0; i < orig->tp.nr_args; i++) { 427 if (strcmp(orig->tp.args[i].comm, 428 comp->tp.args[i].comm)) 429 break; 430 } 431 432 if (i == orig->tp.nr_args) 433 return true; 434 } 435 436 return false; 437 } 438 439 static int append_trace_uprobe(struct trace_uprobe *tu, struct trace_uprobe *to) 440 { 441 int ret; 442 443 ret = trace_probe_compare_arg_type(&tu->tp, &to->tp); 444 if (ret) { 445 /* Note that argument starts index = 2 */ 446 trace_probe_log_set_index(ret + 1); 447 trace_probe_log_err(0, DIFF_ARG_TYPE); 448 return -EEXIST; 449 } 450 if (trace_uprobe_has_same_uprobe(to, tu)) { 451 trace_probe_log_set_index(0); 452 trace_probe_log_err(0, SAME_PROBE); 453 return -EEXIST; 454 } 455 456 /* Append to existing event */ 457 ret = trace_probe_append(&tu->tp, &to->tp); 458 if (!ret) 459 dyn_event_add(&tu->devent, trace_probe_event_call(&tu->tp)); 460 461 return ret; 462 } 463 464 /* 465 * Uprobe with multiple reference counter is not allowed. i.e. 466 * If inode and offset matches, reference counter offset *must* 467 * match as well. Though, there is one exception: If user is 468 * replacing old trace_uprobe with new one(same group/event), 469 * then we allow same uprobe with new reference counter as far 470 * as the new one does not conflict with any other existing 471 * ones. 472 */ 473 static int validate_ref_ctr_offset(struct trace_uprobe *new) 474 { 475 struct dyn_event *pos; 476 struct trace_uprobe *tmp; 477 struct inode *new_inode = d_real_inode(new->path.dentry); 478 479 for_each_trace_uprobe(tmp, pos) { 480 if (new_inode == d_real_inode(tmp->path.dentry) && 481 new->offset == tmp->offset && 482 new->ref_ctr_offset != tmp->ref_ctr_offset) { 483 pr_warn("Reference counter offset mismatch."); 484 return -EINVAL; 485 } 486 } 487 return 0; 488 } 489 490 /* Register a trace_uprobe and probe_event */ 491 static int register_trace_uprobe(struct trace_uprobe *tu) 492 { 493 struct trace_uprobe *old_tu; 494 int ret; 495 496 mutex_lock(&event_mutex); 497 498 ret = validate_ref_ctr_offset(tu); 499 if (ret) 500 goto end; 501 502 /* register as an event */ 503 old_tu = find_probe_event(trace_probe_name(&tu->tp), 504 trace_probe_group_name(&tu->tp)); 505 if (old_tu) { 506 if (is_ret_probe(tu) != is_ret_probe(old_tu)) { 507 trace_probe_log_set_index(0); 508 trace_probe_log_err(0, DIFF_PROBE_TYPE); 509 ret = -EEXIST; 510 } else { 511 ret = append_trace_uprobe(tu, old_tu); 512 } 513 goto end; 514 } 515 516 ret = register_uprobe_event(tu); 517 if (ret) { 518 if (ret == -EEXIST) { 519 trace_probe_log_set_index(0); 520 trace_probe_log_err(0, EVENT_EXIST); 521 } else 522 pr_warn("Failed to register probe event(%d)\n", ret); 523 goto end; 524 } 525 526 dyn_event_add(&tu->devent, trace_probe_event_call(&tu->tp)); 527 528 end: 529 mutex_unlock(&event_mutex); 530 531 return ret; 532 } 533 534 /* 535 * Argument syntax: 536 * - Add uprobe: p|r[:[GRP/]EVENT] PATH:OFFSET[%return][(REF)] [FETCHARGS] 537 */ 538 static int __trace_uprobe_create(int argc, const char **argv) 539 { 540 struct trace_uprobe *tu; 541 const char *event = NULL, *group = UPROBE_EVENT_SYSTEM; 542 char *arg, *filename, *rctr, *rctr_end, *tmp; 543 char buf[MAX_EVENT_NAME_LEN]; 544 enum probe_print_type ptype; 545 struct path path; 546 unsigned long offset, ref_ctr_offset; 547 bool is_return = false; 548 int i, ret; 549 550 ref_ctr_offset = 0; 551 552 switch (argv[0][0]) { 553 case 'r': 554 is_return = true; 555 break; 556 case 'p': 557 break; 558 default: 559 return -ECANCELED; 560 } 561 562 if (argc < 2) 563 return -ECANCELED; 564 565 if (argv[0][1] == ':') 566 event = &argv[0][2]; 567 568 if (!strchr(argv[1], '/')) 569 return -ECANCELED; 570 571 filename = kstrdup(argv[1], GFP_KERNEL); 572 if (!filename) 573 return -ENOMEM; 574 575 /* Find the last occurrence, in case the path contains ':' too. */ 576 arg = strrchr(filename, ':'); 577 if (!arg || !isdigit(arg[1])) { 578 kfree(filename); 579 return -ECANCELED; 580 } 581 582 trace_probe_log_init("trace_uprobe", argc, argv); 583 trace_probe_log_set_index(1); /* filename is the 2nd argument */ 584 585 *arg++ = '\0'; 586 ret = kern_path(filename, LOOKUP_FOLLOW, &path); 587 if (ret) { 588 trace_probe_log_err(0, FILE_NOT_FOUND); 589 kfree(filename); 590 trace_probe_log_clear(); 591 return ret; 592 } 593 if (!d_is_reg(path.dentry)) { 594 trace_probe_log_err(0, NO_REGULAR_FILE); 595 ret = -EINVAL; 596 goto fail_address_parse; 597 } 598 599 /* Parse reference counter offset if specified. */ 600 rctr = strchr(arg, '('); 601 if (rctr) { 602 rctr_end = strchr(rctr, ')'); 603 if (!rctr_end) { 604 ret = -EINVAL; 605 rctr_end = rctr + strlen(rctr); 606 trace_probe_log_err(rctr_end - filename, 607 REFCNT_OPEN_BRACE); 608 goto fail_address_parse; 609 } else if (rctr_end[1] != '\0') { 610 ret = -EINVAL; 611 trace_probe_log_err(rctr_end + 1 - filename, 612 BAD_REFCNT_SUFFIX); 613 goto fail_address_parse; 614 } 615 616 *rctr++ = '\0'; 617 *rctr_end = '\0'; 618 ret = kstrtoul(rctr, 0, &ref_ctr_offset); 619 if (ret) { 620 trace_probe_log_err(rctr - filename, BAD_REFCNT); 621 goto fail_address_parse; 622 } 623 } 624 625 /* Check if there is %return suffix */ 626 tmp = strchr(arg, '%'); 627 if (tmp) { 628 if (!strcmp(tmp, "%return")) { 629 *tmp = '\0'; 630 is_return = true; 631 } else { 632 trace_probe_log_err(tmp - filename, BAD_ADDR_SUFFIX); 633 ret = -EINVAL; 634 goto fail_address_parse; 635 } 636 } 637 638 /* Parse uprobe offset. */ 639 ret = kstrtoul(arg, 0, &offset); 640 if (ret) { 641 trace_probe_log_err(arg - filename, BAD_UPROBE_OFFS); 642 goto fail_address_parse; 643 } 644 645 /* setup a probe */ 646 trace_probe_log_set_index(0); 647 if (event) { 648 ret = traceprobe_parse_event_name(&event, &group, buf, 649 event - argv[0]); 650 if (ret) 651 goto fail_address_parse; 652 } else { 653 char *tail; 654 char *ptr; 655 656 tail = kstrdup(kbasename(filename), GFP_KERNEL); 657 if (!tail) { 658 ret = -ENOMEM; 659 goto fail_address_parse; 660 } 661 662 ptr = strpbrk(tail, ".-_"); 663 if (ptr) 664 *ptr = '\0'; 665 666 snprintf(buf, MAX_EVENT_NAME_LEN, "%c_%s_0x%lx", 'p', tail, offset); 667 event = buf; 668 kfree(tail); 669 } 670 671 argc -= 2; 672 argv += 2; 673 674 tu = alloc_trace_uprobe(group, event, argc, is_return); 675 if (IS_ERR(tu)) { 676 ret = PTR_ERR(tu); 677 /* This must return -ENOMEM otherwise there is a bug */ 678 WARN_ON_ONCE(ret != -ENOMEM); 679 goto fail_address_parse; 680 } 681 tu->offset = offset; 682 tu->ref_ctr_offset = ref_ctr_offset; 683 tu->path = path; 684 tu->filename = filename; 685 686 /* parse arguments */ 687 for (i = 0; i < argc && i < MAX_TRACE_ARGS; i++) { 688 trace_probe_log_set_index(i + 2); 689 ret = traceprobe_parse_probe_arg(&tu->tp, i, argv[i], 690 is_return ? TPARG_FL_RETURN : 0); 691 if (ret) 692 goto error; 693 } 694 695 ptype = is_ret_probe(tu) ? PROBE_PRINT_RETURN : PROBE_PRINT_NORMAL; 696 ret = traceprobe_set_print_fmt(&tu->tp, ptype); 697 if (ret < 0) 698 goto error; 699 700 ret = register_trace_uprobe(tu); 701 if (!ret) 702 goto out; 703 704 error: 705 free_trace_uprobe(tu); 706 out: 707 trace_probe_log_clear(); 708 return ret; 709 710 fail_address_parse: 711 trace_probe_log_clear(); 712 path_put(&path); 713 kfree(filename); 714 715 return ret; 716 } 717 718 int trace_uprobe_create(const char *raw_command) 719 { 720 return trace_probe_create(raw_command, __trace_uprobe_create); 721 } 722 723 static int create_or_delete_trace_uprobe(const char *raw_command) 724 { 725 int ret; 726 727 if (raw_command[0] == '-') 728 return dyn_event_release(raw_command, &trace_uprobe_ops); 729 730 ret = trace_uprobe_create(raw_command); 731 return ret == -ECANCELED ? -EINVAL : ret; 732 } 733 734 static int trace_uprobe_release(struct dyn_event *ev) 735 { 736 struct trace_uprobe *tu = to_trace_uprobe(ev); 737 738 return unregister_trace_uprobe(tu); 739 } 740 741 /* Probes listing interfaces */ 742 static int trace_uprobe_show(struct seq_file *m, struct dyn_event *ev) 743 { 744 struct trace_uprobe *tu = to_trace_uprobe(ev); 745 char c = is_ret_probe(tu) ? 'r' : 'p'; 746 int i; 747 748 seq_printf(m, "%c:%s/%s %s:0x%0*lx", c, trace_probe_group_name(&tu->tp), 749 trace_probe_name(&tu->tp), tu->filename, 750 (int)(sizeof(void *) * 2), tu->offset); 751 752 if (tu->ref_ctr_offset) 753 seq_printf(m, "(0x%lx)", tu->ref_ctr_offset); 754 755 for (i = 0; i < tu->tp.nr_args; i++) 756 seq_printf(m, " %s=%s", tu->tp.args[i].name, tu->tp.args[i].comm); 757 758 seq_putc(m, '\n'); 759 return 0; 760 } 761 762 static int probes_seq_show(struct seq_file *m, void *v) 763 { 764 struct dyn_event *ev = v; 765 766 if (!is_trace_uprobe(ev)) 767 return 0; 768 769 return trace_uprobe_show(m, ev); 770 } 771 772 static const struct seq_operations probes_seq_op = { 773 .start = dyn_event_seq_start, 774 .next = dyn_event_seq_next, 775 .stop = dyn_event_seq_stop, 776 .show = probes_seq_show 777 }; 778 779 static int probes_open(struct inode *inode, struct file *file) 780 { 781 int ret; 782 783 ret = security_locked_down(LOCKDOWN_TRACEFS); 784 if (ret) 785 return ret; 786 787 if ((file->f_mode & FMODE_WRITE) && (file->f_flags & O_TRUNC)) { 788 ret = dyn_events_release_all(&trace_uprobe_ops); 789 if (ret) 790 return ret; 791 } 792 793 return seq_open(file, &probes_seq_op); 794 } 795 796 static ssize_t probes_write(struct file *file, const char __user *buffer, 797 size_t count, loff_t *ppos) 798 { 799 return trace_parse_run_command(file, buffer, count, ppos, 800 create_or_delete_trace_uprobe); 801 } 802 803 static const struct file_operations uprobe_events_ops = { 804 .owner = THIS_MODULE, 805 .open = probes_open, 806 .read = seq_read, 807 .llseek = seq_lseek, 808 .release = seq_release, 809 .write = probes_write, 810 }; 811 812 /* Probes profiling interfaces */ 813 static int probes_profile_seq_show(struct seq_file *m, void *v) 814 { 815 struct dyn_event *ev = v; 816 struct trace_uprobe *tu; 817 818 if (!is_trace_uprobe(ev)) 819 return 0; 820 821 tu = to_trace_uprobe(ev); 822 seq_printf(m, " %s %-44s %15lu\n", tu->filename, 823 trace_probe_name(&tu->tp), tu->nhit); 824 return 0; 825 } 826 827 static const struct seq_operations profile_seq_op = { 828 .start = dyn_event_seq_start, 829 .next = dyn_event_seq_next, 830 .stop = dyn_event_seq_stop, 831 .show = probes_profile_seq_show 832 }; 833 834 static int profile_open(struct inode *inode, struct file *file) 835 { 836 int ret; 837 838 ret = security_locked_down(LOCKDOWN_TRACEFS); 839 if (ret) 840 return ret; 841 842 return seq_open(file, &profile_seq_op); 843 } 844 845 static const struct file_operations uprobe_profile_ops = { 846 .owner = THIS_MODULE, 847 .open = profile_open, 848 .read = seq_read, 849 .llseek = seq_lseek, 850 .release = seq_release, 851 }; 852 853 struct uprobe_cpu_buffer { 854 struct mutex mutex; 855 void *buf; 856 }; 857 static struct uprobe_cpu_buffer __percpu *uprobe_cpu_buffer; 858 static int uprobe_buffer_refcnt; 859 860 static int uprobe_buffer_init(void) 861 { 862 int cpu, err_cpu; 863 864 uprobe_cpu_buffer = alloc_percpu(struct uprobe_cpu_buffer); 865 if (uprobe_cpu_buffer == NULL) 866 return -ENOMEM; 867 868 for_each_possible_cpu(cpu) { 869 struct page *p = alloc_pages_node(cpu_to_node(cpu), 870 GFP_KERNEL, 0); 871 if (p == NULL) { 872 err_cpu = cpu; 873 goto err; 874 } 875 per_cpu_ptr(uprobe_cpu_buffer, cpu)->buf = page_address(p); 876 mutex_init(&per_cpu_ptr(uprobe_cpu_buffer, cpu)->mutex); 877 } 878 879 return 0; 880 881 err: 882 for_each_possible_cpu(cpu) { 883 if (cpu == err_cpu) 884 break; 885 free_page((unsigned long)per_cpu_ptr(uprobe_cpu_buffer, cpu)->buf); 886 } 887 888 free_percpu(uprobe_cpu_buffer); 889 return -ENOMEM; 890 } 891 892 static int uprobe_buffer_enable(void) 893 { 894 int ret = 0; 895 896 BUG_ON(!mutex_is_locked(&event_mutex)); 897 898 if (uprobe_buffer_refcnt++ == 0) { 899 ret = uprobe_buffer_init(); 900 if (ret < 0) 901 uprobe_buffer_refcnt--; 902 } 903 904 return ret; 905 } 906 907 static void uprobe_buffer_disable(void) 908 { 909 int cpu; 910 911 BUG_ON(!mutex_is_locked(&event_mutex)); 912 913 if (--uprobe_buffer_refcnt == 0) { 914 for_each_possible_cpu(cpu) 915 free_page((unsigned long)per_cpu_ptr(uprobe_cpu_buffer, 916 cpu)->buf); 917 918 free_percpu(uprobe_cpu_buffer); 919 uprobe_cpu_buffer = NULL; 920 } 921 } 922 923 static struct uprobe_cpu_buffer *uprobe_buffer_get(void) 924 { 925 struct uprobe_cpu_buffer *ucb; 926 int cpu; 927 928 cpu = raw_smp_processor_id(); 929 ucb = per_cpu_ptr(uprobe_cpu_buffer, cpu); 930 931 /* 932 * Use per-cpu buffers for fastest access, but we might migrate 933 * so the mutex makes sure we have sole access to it. 934 */ 935 mutex_lock(&ucb->mutex); 936 937 return ucb; 938 } 939 940 static void uprobe_buffer_put(struct uprobe_cpu_buffer *ucb) 941 { 942 mutex_unlock(&ucb->mutex); 943 } 944 945 static void __uprobe_trace_func(struct trace_uprobe *tu, 946 unsigned long func, struct pt_regs *regs, 947 struct uprobe_cpu_buffer *ucb, int dsize, 948 struct trace_event_file *trace_file) 949 { 950 struct uprobe_trace_entry_head *entry; 951 struct trace_event_buffer fbuffer; 952 void *data; 953 int size, esize; 954 struct trace_event_call *call = trace_probe_event_call(&tu->tp); 955 956 WARN_ON(call != trace_file->event_call); 957 958 if (WARN_ON_ONCE(tu->tp.size + dsize > PAGE_SIZE)) 959 return; 960 961 if (trace_trigger_soft_disabled(trace_file)) 962 return; 963 964 esize = SIZEOF_TRACE_ENTRY(is_ret_probe(tu)); 965 size = esize + tu->tp.size + dsize; 966 entry = trace_event_buffer_reserve(&fbuffer, trace_file, size); 967 if (!entry) 968 return; 969 970 if (is_ret_probe(tu)) { 971 entry->vaddr[0] = func; 972 entry->vaddr[1] = instruction_pointer(regs); 973 data = DATAOF_TRACE_ENTRY(entry, true); 974 } else { 975 entry->vaddr[0] = instruction_pointer(regs); 976 data = DATAOF_TRACE_ENTRY(entry, false); 977 } 978 979 memcpy(data, ucb->buf, tu->tp.size + dsize); 980 981 trace_event_buffer_commit(&fbuffer); 982 } 983 984 /* uprobe handler */ 985 static int uprobe_trace_func(struct trace_uprobe *tu, struct pt_regs *regs, 986 struct uprobe_cpu_buffer *ucb, int dsize) 987 { 988 struct event_file_link *link; 989 990 if (is_ret_probe(tu)) 991 return 0; 992 993 rcu_read_lock(); 994 trace_probe_for_each_link_rcu(link, &tu->tp) 995 __uprobe_trace_func(tu, 0, regs, ucb, dsize, link->file); 996 rcu_read_unlock(); 997 998 return 0; 999 } 1000 1001 static void uretprobe_trace_func(struct trace_uprobe *tu, unsigned long func, 1002 struct pt_regs *regs, 1003 struct uprobe_cpu_buffer *ucb, int dsize) 1004 { 1005 struct event_file_link *link; 1006 1007 rcu_read_lock(); 1008 trace_probe_for_each_link_rcu(link, &tu->tp) 1009 __uprobe_trace_func(tu, func, regs, ucb, dsize, link->file); 1010 rcu_read_unlock(); 1011 } 1012 1013 /* Event entry printers */ 1014 static enum print_line_t 1015 print_uprobe_event(struct trace_iterator *iter, int flags, struct trace_event *event) 1016 { 1017 struct uprobe_trace_entry_head *entry; 1018 struct trace_seq *s = &iter->seq; 1019 struct trace_uprobe *tu; 1020 u8 *data; 1021 1022 entry = (struct uprobe_trace_entry_head *)iter->ent; 1023 tu = trace_uprobe_primary_from_call( 1024 container_of(event, struct trace_event_call, event)); 1025 if (unlikely(!tu)) 1026 goto out; 1027 1028 if (is_ret_probe(tu)) { 1029 trace_seq_printf(s, "%s: (0x%lx <- 0x%lx)", 1030 trace_probe_name(&tu->tp), 1031 entry->vaddr[1], entry->vaddr[0]); 1032 data = DATAOF_TRACE_ENTRY(entry, true); 1033 } else { 1034 trace_seq_printf(s, "%s: (0x%lx)", 1035 trace_probe_name(&tu->tp), 1036 entry->vaddr[0]); 1037 data = DATAOF_TRACE_ENTRY(entry, false); 1038 } 1039 1040 if (print_probe_args(s, tu->tp.args, tu->tp.nr_args, data, entry) < 0) 1041 goto out; 1042 1043 trace_seq_putc(s, '\n'); 1044 1045 out: 1046 return trace_handle_return(s); 1047 } 1048 1049 typedef bool (*filter_func_t)(struct uprobe_consumer *self, 1050 enum uprobe_filter_ctx ctx, 1051 struct mm_struct *mm); 1052 1053 static int trace_uprobe_enable(struct trace_uprobe *tu, filter_func_t filter) 1054 { 1055 int ret; 1056 1057 tu->consumer.filter = filter; 1058 tu->inode = d_real_inode(tu->path.dentry); 1059 1060 if (tu->ref_ctr_offset) 1061 ret = uprobe_register_refctr(tu->inode, tu->offset, 1062 tu->ref_ctr_offset, &tu->consumer); 1063 else 1064 ret = uprobe_register(tu->inode, tu->offset, &tu->consumer); 1065 1066 if (ret) 1067 tu->inode = NULL; 1068 1069 return ret; 1070 } 1071 1072 static void __probe_event_disable(struct trace_probe *tp) 1073 { 1074 struct trace_uprobe *tu; 1075 1076 tu = container_of(tp, struct trace_uprobe, tp); 1077 WARN_ON(!uprobe_filter_is_empty(tu->tp.event->filter)); 1078 1079 list_for_each_entry(tu, trace_probe_probe_list(tp), tp.list) { 1080 if (!tu->inode) 1081 continue; 1082 1083 uprobe_unregister(tu->inode, tu->offset, &tu->consumer); 1084 tu->inode = NULL; 1085 } 1086 } 1087 1088 static int probe_event_enable(struct trace_event_call *call, 1089 struct trace_event_file *file, filter_func_t filter) 1090 { 1091 struct trace_probe *tp; 1092 struct trace_uprobe *tu; 1093 bool enabled; 1094 int ret; 1095 1096 tp = trace_probe_primary_from_call(call); 1097 if (WARN_ON_ONCE(!tp)) 1098 return -ENODEV; 1099 enabled = trace_probe_is_enabled(tp); 1100 1101 /* This may also change "enabled" state */ 1102 if (file) { 1103 if (trace_probe_test_flag(tp, TP_FLAG_PROFILE)) 1104 return -EINTR; 1105 1106 ret = trace_probe_add_file(tp, file); 1107 if (ret < 0) 1108 return ret; 1109 } else { 1110 if (trace_probe_test_flag(tp, TP_FLAG_TRACE)) 1111 return -EINTR; 1112 1113 trace_probe_set_flag(tp, TP_FLAG_PROFILE); 1114 } 1115 1116 tu = container_of(tp, struct trace_uprobe, tp); 1117 WARN_ON(!uprobe_filter_is_empty(tu->tp.event->filter)); 1118 1119 if (enabled) 1120 return 0; 1121 1122 ret = uprobe_buffer_enable(); 1123 if (ret) 1124 goto err_flags; 1125 1126 list_for_each_entry(tu, trace_probe_probe_list(tp), tp.list) { 1127 ret = trace_uprobe_enable(tu, filter); 1128 if (ret) { 1129 __probe_event_disable(tp); 1130 goto err_buffer; 1131 } 1132 } 1133 1134 return 0; 1135 1136 err_buffer: 1137 uprobe_buffer_disable(); 1138 1139 err_flags: 1140 if (file) 1141 trace_probe_remove_file(tp, file); 1142 else 1143 trace_probe_clear_flag(tp, TP_FLAG_PROFILE); 1144 1145 return ret; 1146 } 1147 1148 static void probe_event_disable(struct trace_event_call *call, 1149 struct trace_event_file *file) 1150 { 1151 struct trace_probe *tp; 1152 1153 tp = trace_probe_primary_from_call(call); 1154 if (WARN_ON_ONCE(!tp)) 1155 return; 1156 1157 if (!trace_probe_is_enabled(tp)) 1158 return; 1159 1160 if (file) { 1161 if (trace_probe_remove_file(tp, file) < 0) 1162 return; 1163 1164 if (trace_probe_is_enabled(tp)) 1165 return; 1166 } else 1167 trace_probe_clear_flag(tp, TP_FLAG_PROFILE); 1168 1169 __probe_event_disable(tp); 1170 uprobe_buffer_disable(); 1171 } 1172 1173 static int uprobe_event_define_fields(struct trace_event_call *event_call) 1174 { 1175 int ret, size; 1176 struct uprobe_trace_entry_head field; 1177 struct trace_uprobe *tu; 1178 1179 tu = trace_uprobe_primary_from_call(event_call); 1180 if (unlikely(!tu)) 1181 return -ENODEV; 1182 1183 if (is_ret_probe(tu)) { 1184 DEFINE_FIELD(unsigned long, vaddr[0], FIELD_STRING_FUNC, 0); 1185 DEFINE_FIELD(unsigned long, vaddr[1], FIELD_STRING_RETIP, 0); 1186 size = SIZEOF_TRACE_ENTRY(true); 1187 } else { 1188 DEFINE_FIELD(unsigned long, vaddr[0], FIELD_STRING_IP, 0); 1189 size = SIZEOF_TRACE_ENTRY(false); 1190 } 1191 1192 return traceprobe_define_arg_fields(event_call, size, &tu->tp); 1193 } 1194 1195 #ifdef CONFIG_PERF_EVENTS 1196 static bool 1197 __uprobe_perf_filter(struct trace_uprobe_filter *filter, struct mm_struct *mm) 1198 { 1199 struct perf_event *event; 1200 1201 if (filter->nr_systemwide) 1202 return true; 1203 1204 list_for_each_entry(event, &filter->perf_events, hw.tp_list) { 1205 if (event->hw.target->mm == mm) 1206 return true; 1207 } 1208 1209 return false; 1210 } 1211 1212 static inline bool 1213 trace_uprobe_filter_event(struct trace_uprobe_filter *filter, 1214 struct perf_event *event) 1215 { 1216 return __uprobe_perf_filter(filter, event->hw.target->mm); 1217 } 1218 1219 static bool trace_uprobe_filter_remove(struct trace_uprobe_filter *filter, 1220 struct perf_event *event) 1221 { 1222 bool done; 1223 1224 write_lock(&filter->rwlock); 1225 if (event->hw.target) { 1226 list_del(&event->hw.tp_list); 1227 done = filter->nr_systemwide || 1228 (event->hw.target->flags & PF_EXITING) || 1229 trace_uprobe_filter_event(filter, event); 1230 } else { 1231 filter->nr_systemwide--; 1232 done = filter->nr_systemwide; 1233 } 1234 write_unlock(&filter->rwlock); 1235 1236 return done; 1237 } 1238 1239 /* This returns true if the filter always covers target mm */ 1240 static bool trace_uprobe_filter_add(struct trace_uprobe_filter *filter, 1241 struct perf_event *event) 1242 { 1243 bool done; 1244 1245 write_lock(&filter->rwlock); 1246 if (event->hw.target) { 1247 /* 1248 * event->parent != NULL means copy_process(), we can avoid 1249 * uprobe_apply(). current->mm must be probed and we can rely 1250 * on dup_mmap() which preserves the already installed bp's. 1251 * 1252 * attr.enable_on_exec means that exec/mmap will install the 1253 * breakpoints we need. 1254 */ 1255 done = filter->nr_systemwide || 1256 event->parent || event->attr.enable_on_exec || 1257 trace_uprobe_filter_event(filter, event); 1258 list_add(&event->hw.tp_list, &filter->perf_events); 1259 } else { 1260 done = filter->nr_systemwide; 1261 filter->nr_systemwide++; 1262 } 1263 write_unlock(&filter->rwlock); 1264 1265 return done; 1266 } 1267 1268 static int uprobe_perf_close(struct trace_event_call *call, 1269 struct perf_event *event) 1270 { 1271 struct trace_probe *tp; 1272 struct trace_uprobe *tu; 1273 int ret = 0; 1274 1275 tp = trace_probe_primary_from_call(call); 1276 if (WARN_ON_ONCE(!tp)) 1277 return -ENODEV; 1278 1279 tu = container_of(tp, struct trace_uprobe, tp); 1280 if (trace_uprobe_filter_remove(tu->tp.event->filter, event)) 1281 return 0; 1282 1283 list_for_each_entry(tu, trace_probe_probe_list(tp), tp.list) { 1284 ret = uprobe_apply(tu->inode, tu->offset, &tu->consumer, false); 1285 if (ret) 1286 break; 1287 } 1288 1289 return ret; 1290 } 1291 1292 static int uprobe_perf_open(struct trace_event_call *call, 1293 struct perf_event *event) 1294 { 1295 struct trace_probe *tp; 1296 struct trace_uprobe *tu; 1297 int err = 0; 1298 1299 tp = trace_probe_primary_from_call(call); 1300 if (WARN_ON_ONCE(!tp)) 1301 return -ENODEV; 1302 1303 tu = container_of(tp, struct trace_uprobe, tp); 1304 if (trace_uprobe_filter_add(tu->tp.event->filter, event)) 1305 return 0; 1306 1307 list_for_each_entry(tu, trace_probe_probe_list(tp), tp.list) { 1308 err = uprobe_apply(tu->inode, tu->offset, &tu->consumer, true); 1309 if (err) { 1310 uprobe_perf_close(call, event); 1311 break; 1312 } 1313 } 1314 1315 return err; 1316 } 1317 1318 static bool uprobe_perf_filter(struct uprobe_consumer *uc, 1319 enum uprobe_filter_ctx ctx, struct mm_struct *mm) 1320 { 1321 struct trace_uprobe_filter *filter; 1322 struct trace_uprobe *tu; 1323 int ret; 1324 1325 tu = container_of(uc, struct trace_uprobe, consumer); 1326 filter = tu->tp.event->filter; 1327 1328 read_lock(&filter->rwlock); 1329 ret = __uprobe_perf_filter(filter, mm); 1330 read_unlock(&filter->rwlock); 1331 1332 return ret; 1333 } 1334 1335 static void __uprobe_perf_func(struct trace_uprobe *tu, 1336 unsigned long func, struct pt_regs *regs, 1337 struct uprobe_cpu_buffer *ucb, int dsize) 1338 { 1339 struct trace_event_call *call = trace_probe_event_call(&tu->tp); 1340 struct uprobe_trace_entry_head *entry; 1341 struct hlist_head *head; 1342 void *data; 1343 int size, esize; 1344 int rctx; 1345 1346 if (bpf_prog_array_valid(call)) { 1347 u32 ret; 1348 1349 ret = bpf_prog_run_array_sleepable(call->prog_array, regs, bpf_prog_run); 1350 if (!ret) 1351 return; 1352 } 1353 1354 esize = SIZEOF_TRACE_ENTRY(is_ret_probe(tu)); 1355 1356 size = esize + tu->tp.size + dsize; 1357 size = ALIGN(size + sizeof(u32), sizeof(u64)) - sizeof(u32); 1358 if (WARN_ONCE(size > PERF_MAX_TRACE_SIZE, "profile buffer not large enough")) 1359 return; 1360 1361 preempt_disable(); 1362 head = this_cpu_ptr(call->perf_events); 1363 if (hlist_empty(head)) 1364 goto out; 1365 1366 entry = perf_trace_buf_alloc(size, NULL, &rctx); 1367 if (!entry) 1368 goto out; 1369 1370 if (is_ret_probe(tu)) { 1371 entry->vaddr[0] = func; 1372 entry->vaddr[1] = instruction_pointer(regs); 1373 data = DATAOF_TRACE_ENTRY(entry, true); 1374 } else { 1375 entry->vaddr[0] = instruction_pointer(regs); 1376 data = DATAOF_TRACE_ENTRY(entry, false); 1377 } 1378 1379 memcpy(data, ucb->buf, tu->tp.size + dsize); 1380 1381 if (size - esize > tu->tp.size + dsize) { 1382 int len = tu->tp.size + dsize; 1383 1384 memset(data + len, 0, size - esize - len); 1385 } 1386 1387 perf_trace_buf_submit(entry, size, rctx, call->event.type, 1, regs, 1388 head, NULL); 1389 out: 1390 preempt_enable(); 1391 } 1392 1393 /* uprobe profile handler */ 1394 static int uprobe_perf_func(struct trace_uprobe *tu, struct pt_regs *regs, 1395 struct uprobe_cpu_buffer *ucb, int dsize) 1396 { 1397 if (!uprobe_perf_filter(&tu->consumer, 0, current->mm)) 1398 return UPROBE_HANDLER_REMOVE; 1399 1400 if (!is_ret_probe(tu)) 1401 __uprobe_perf_func(tu, 0, regs, ucb, dsize); 1402 return 0; 1403 } 1404 1405 static void uretprobe_perf_func(struct trace_uprobe *tu, unsigned long func, 1406 struct pt_regs *regs, 1407 struct uprobe_cpu_buffer *ucb, int dsize) 1408 { 1409 __uprobe_perf_func(tu, func, regs, ucb, dsize); 1410 } 1411 1412 int bpf_get_uprobe_info(const struct perf_event *event, u32 *fd_type, 1413 const char **filename, u64 *probe_offset, 1414 bool perf_type_tracepoint) 1415 { 1416 const char *pevent = trace_event_name(event->tp_event); 1417 const char *group = event->tp_event->class->system; 1418 struct trace_uprobe *tu; 1419 1420 if (perf_type_tracepoint) 1421 tu = find_probe_event(pevent, group); 1422 else 1423 tu = trace_uprobe_primary_from_call(event->tp_event); 1424 if (!tu) 1425 return -EINVAL; 1426 1427 *fd_type = is_ret_probe(tu) ? BPF_FD_TYPE_URETPROBE 1428 : BPF_FD_TYPE_UPROBE; 1429 *filename = tu->filename; 1430 *probe_offset = tu->offset; 1431 return 0; 1432 } 1433 #endif /* CONFIG_PERF_EVENTS */ 1434 1435 static int 1436 trace_uprobe_register(struct trace_event_call *event, enum trace_reg type, 1437 void *data) 1438 { 1439 struct trace_event_file *file = data; 1440 1441 switch (type) { 1442 case TRACE_REG_REGISTER: 1443 return probe_event_enable(event, file, NULL); 1444 1445 case TRACE_REG_UNREGISTER: 1446 probe_event_disable(event, file); 1447 return 0; 1448 1449 #ifdef CONFIG_PERF_EVENTS 1450 case TRACE_REG_PERF_REGISTER: 1451 return probe_event_enable(event, NULL, uprobe_perf_filter); 1452 1453 case TRACE_REG_PERF_UNREGISTER: 1454 probe_event_disable(event, NULL); 1455 return 0; 1456 1457 case TRACE_REG_PERF_OPEN: 1458 return uprobe_perf_open(event, data); 1459 1460 case TRACE_REG_PERF_CLOSE: 1461 return uprobe_perf_close(event, data); 1462 1463 #endif 1464 default: 1465 return 0; 1466 } 1467 } 1468 1469 static int uprobe_dispatcher(struct uprobe_consumer *con, struct pt_regs *regs) 1470 { 1471 struct trace_uprobe *tu; 1472 struct uprobe_dispatch_data udd; 1473 struct uprobe_cpu_buffer *ucb; 1474 int dsize, esize; 1475 int ret = 0; 1476 1477 1478 tu = container_of(con, struct trace_uprobe, consumer); 1479 tu->nhit++; 1480 1481 udd.tu = tu; 1482 udd.bp_addr = instruction_pointer(regs); 1483 1484 current->utask->vaddr = (unsigned long) &udd; 1485 1486 if (WARN_ON_ONCE(!uprobe_cpu_buffer)) 1487 return 0; 1488 1489 dsize = __get_data_size(&tu->tp, regs); 1490 esize = SIZEOF_TRACE_ENTRY(is_ret_probe(tu)); 1491 1492 ucb = uprobe_buffer_get(); 1493 store_trace_args(ucb->buf, &tu->tp, regs, esize, dsize); 1494 1495 if (trace_probe_test_flag(&tu->tp, TP_FLAG_TRACE)) 1496 ret |= uprobe_trace_func(tu, regs, ucb, dsize); 1497 1498 #ifdef CONFIG_PERF_EVENTS 1499 if (trace_probe_test_flag(&tu->tp, TP_FLAG_PROFILE)) 1500 ret |= uprobe_perf_func(tu, regs, ucb, dsize); 1501 #endif 1502 uprobe_buffer_put(ucb); 1503 return ret; 1504 } 1505 1506 static int uretprobe_dispatcher(struct uprobe_consumer *con, 1507 unsigned long func, struct pt_regs *regs) 1508 { 1509 struct trace_uprobe *tu; 1510 struct uprobe_dispatch_data udd; 1511 struct uprobe_cpu_buffer *ucb; 1512 int dsize, esize; 1513 1514 tu = container_of(con, struct trace_uprobe, consumer); 1515 1516 udd.tu = tu; 1517 udd.bp_addr = func; 1518 1519 current->utask->vaddr = (unsigned long) &udd; 1520 1521 if (WARN_ON_ONCE(!uprobe_cpu_buffer)) 1522 return 0; 1523 1524 dsize = __get_data_size(&tu->tp, regs); 1525 esize = SIZEOF_TRACE_ENTRY(is_ret_probe(tu)); 1526 1527 ucb = uprobe_buffer_get(); 1528 store_trace_args(ucb->buf, &tu->tp, regs, esize, dsize); 1529 1530 if (trace_probe_test_flag(&tu->tp, TP_FLAG_TRACE)) 1531 uretprobe_trace_func(tu, func, regs, ucb, dsize); 1532 1533 #ifdef CONFIG_PERF_EVENTS 1534 if (trace_probe_test_flag(&tu->tp, TP_FLAG_PROFILE)) 1535 uretprobe_perf_func(tu, func, regs, ucb, dsize); 1536 #endif 1537 uprobe_buffer_put(ucb); 1538 return 0; 1539 } 1540 1541 static struct trace_event_functions uprobe_funcs = { 1542 .trace = print_uprobe_event 1543 }; 1544 1545 static struct trace_event_fields uprobe_fields_array[] = { 1546 { .type = TRACE_FUNCTION_TYPE, 1547 .define_fields = uprobe_event_define_fields }, 1548 {} 1549 }; 1550 1551 static inline void init_trace_event_call(struct trace_uprobe *tu) 1552 { 1553 struct trace_event_call *call = trace_probe_event_call(&tu->tp); 1554 call->event.funcs = &uprobe_funcs; 1555 call->class->fields_array = uprobe_fields_array; 1556 1557 call->flags = TRACE_EVENT_FL_UPROBE | TRACE_EVENT_FL_CAP_ANY; 1558 call->class->reg = trace_uprobe_register; 1559 } 1560 1561 static int register_uprobe_event(struct trace_uprobe *tu) 1562 { 1563 init_trace_event_call(tu); 1564 1565 return trace_probe_register_event_call(&tu->tp); 1566 } 1567 1568 static int unregister_uprobe_event(struct trace_uprobe *tu) 1569 { 1570 return trace_probe_unregister_event_call(&tu->tp); 1571 } 1572 1573 #ifdef CONFIG_PERF_EVENTS 1574 struct trace_event_call * 1575 create_local_trace_uprobe(char *name, unsigned long offs, 1576 unsigned long ref_ctr_offset, bool is_return) 1577 { 1578 enum probe_print_type ptype; 1579 struct trace_uprobe *tu; 1580 struct path path; 1581 int ret; 1582 1583 ret = kern_path(name, LOOKUP_FOLLOW, &path); 1584 if (ret) 1585 return ERR_PTR(ret); 1586 1587 if (!d_is_reg(path.dentry)) { 1588 path_put(&path); 1589 return ERR_PTR(-EINVAL); 1590 } 1591 1592 /* 1593 * local trace_kprobes are not added to dyn_event, so they are never 1594 * searched in find_trace_kprobe(). Therefore, there is no concern of 1595 * duplicated name "DUMMY_EVENT" here. 1596 */ 1597 tu = alloc_trace_uprobe(UPROBE_EVENT_SYSTEM, "DUMMY_EVENT", 0, 1598 is_return); 1599 1600 if (IS_ERR(tu)) { 1601 pr_info("Failed to allocate trace_uprobe.(%d)\n", 1602 (int)PTR_ERR(tu)); 1603 path_put(&path); 1604 return ERR_CAST(tu); 1605 } 1606 1607 tu->offset = offs; 1608 tu->path = path; 1609 tu->ref_ctr_offset = ref_ctr_offset; 1610 tu->filename = kstrdup(name, GFP_KERNEL); 1611 if (!tu->filename) { 1612 ret = -ENOMEM; 1613 goto error; 1614 } 1615 1616 init_trace_event_call(tu); 1617 1618 ptype = is_ret_probe(tu) ? PROBE_PRINT_RETURN : PROBE_PRINT_NORMAL; 1619 if (traceprobe_set_print_fmt(&tu->tp, ptype) < 0) { 1620 ret = -ENOMEM; 1621 goto error; 1622 } 1623 1624 return trace_probe_event_call(&tu->tp); 1625 error: 1626 free_trace_uprobe(tu); 1627 return ERR_PTR(ret); 1628 } 1629 1630 void destroy_local_trace_uprobe(struct trace_event_call *event_call) 1631 { 1632 struct trace_uprobe *tu; 1633 1634 tu = trace_uprobe_primary_from_call(event_call); 1635 1636 free_trace_uprobe(tu); 1637 } 1638 #endif /* CONFIG_PERF_EVENTS */ 1639 1640 /* Make a trace interface for controlling probe points */ 1641 static __init int init_uprobe_trace(void) 1642 { 1643 int ret; 1644 1645 ret = dyn_event_register(&trace_uprobe_ops); 1646 if (ret) 1647 return ret; 1648 1649 ret = tracing_init_dentry(); 1650 if (ret) 1651 return 0; 1652 1653 trace_create_file("uprobe_events", TRACE_MODE_WRITE, NULL, 1654 NULL, &uprobe_events_ops); 1655 /* Profile interface */ 1656 trace_create_file("uprobe_profile", TRACE_MODE_READ, NULL, 1657 NULL, &uprobe_profile_ops); 1658 return 0; 1659 } 1660 1661 fs_initcall(init_uprobe_trace); 1662