1 // SPDX-License-Identifier: GPL-2.0 2 /* 3 * S/390 debug facility 4 * 5 * Copyright IBM Corp. 1999, 2020 6 * 7 * Author(s): Michael Holzheu (holzheu@de.ibm.com), 8 * Holger Smolinski (Holger.Smolinski@de.ibm.com) 9 * 10 * Bugreports to: <Linux390@de.ibm.com> 11 */ 12 13 #define pr_fmt(fmt) "s390dbf: " fmt 14 15 #include <linux/stddef.h> 16 #include <linux/kernel.h> 17 #include <linux/errno.h> 18 #include <linux/slab.h> 19 #include <linux/ctype.h> 20 #include <linux/string.h> 21 #include <linux/sysctl.h> 22 #include <linux/uaccess.h> 23 #include <linux/export.h> 24 #include <linux/init.h> 25 #include <linux/fs.h> 26 #include <linux/math.h> 27 #include <linux/minmax.h> 28 #include <linux/debugfs.h> 29 #include <linux/glob.h> 30 #include <linux/stringify.h> 31 32 #include <asm/debug.h> 33 34 #define DEBUG_PROLOG_ENTRY -1 35 36 #define ALL_AREAS 0 /* copy all debug areas */ 37 #define NO_AREAS 1 /* copy no debug areas */ 38 39 /* typedefs */ 40 41 typedef struct file_private_info { 42 loff_t offset; /* offset of last read in file */ 43 int act_area; /* number of last formatted area */ 44 int act_page; /* act page in given area */ 45 int act_entry; /* last formatted entry (offset */ 46 /* relative to beginning of last */ 47 /* formatted page) */ 48 size_t act_entry_offset; /* up to this offset we copied */ 49 /* in last read the last formatted */ 50 /* entry to userland */ 51 char temp_buf[2048]; /* buffer for output */ 52 debug_info_t *debug_info_org; /* original debug information */ 53 debug_info_t *debug_info_snap; /* snapshot of debug information */ 54 struct debug_view *view; /* used view of debug info */ 55 } file_private_info_t; 56 57 typedef struct { 58 char *string; 59 /* 60 * This assumes that all args are converted into longs 61 * on L/390 this is the case for all types of parameter 62 * except of floats, and long long (32 bit) 63 * 64 */ 65 long args[]; 66 } debug_sprintf_entry_t; 67 68 /* internal function prototypes */ 69 70 static int debug_init(void); 71 static ssize_t debug_output(struct file *file, char __user *user_buf, 72 size_t user_len, loff_t *offset); 73 static ssize_t debug_input(struct file *file, const char __user *user_buf, 74 size_t user_len, loff_t *offset); 75 static int debug_open(struct inode *inode, struct file *file); 76 static int debug_close(struct inode *inode, struct file *file); 77 static debug_info_t *debug_info_create(const char *name, int pages_per_area, 78 int nr_areas, int buf_size, umode_t mode); 79 static void debug_info_get(debug_info_t *); 80 static void debug_info_put(debug_info_t *); 81 static int debug_prolog_level_fn(debug_info_t *id, 82 struct debug_view *view, char *out_buf, 83 size_t out_buf_size); 84 static int debug_input_level_fn(debug_info_t *id, struct debug_view *view, 85 struct file *file, const char __user *user_buf, 86 size_t user_buf_size, loff_t *offset); 87 static int debug_prolog_pages_fn(debug_info_t *id, 88 struct debug_view *view, char *out_buf, 89 size_t out_buf_size); 90 static int debug_input_pages_fn(debug_info_t *id, struct debug_view *view, 91 struct file *file, const char __user *user_buf, 92 size_t user_buf_size, loff_t *offset); 93 static int debug_input_flush_fn(debug_info_t *id, struct debug_view *view, 94 struct file *file, const char __user *user_buf, 95 size_t user_buf_size, loff_t *offset); 96 static int debug_hex_ascii_format_fn(debug_info_t *id, struct debug_view *view, 97 char *out_buf, size_t out_buf_size, 98 const char *in_buf); 99 static void debug_areas_swap(debug_info_t *a, debug_info_t *b); 100 static void debug_events_append(debug_info_t *dest, debug_info_t *src); 101 102 /* globals */ 103 104 struct debug_view debug_hex_ascii_view = { 105 "hex_ascii", 106 NULL, 107 &debug_dflt_header_fn, 108 &debug_hex_ascii_format_fn, 109 NULL, 110 NULL 111 }; 112 EXPORT_SYMBOL(debug_hex_ascii_view); 113 114 static struct debug_view debug_level_view = { 115 "level", 116 &debug_prolog_level_fn, 117 NULL, 118 NULL, 119 &debug_input_level_fn, 120 NULL 121 }; 122 123 static struct debug_view debug_pages_view = { 124 "pages", 125 &debug_prolog_pages_fn, 126 NULL, 127 NULL, 128 &debug_input_pages_fn, 129 NULL 130 }; 131 132 static struct debug_view debug_flush_view = { 133 "flush", 134 NULL, 135 NULL, 136 NULL, 137 &debug_input_flush_fn, 138 NULL 139 }; 140 141 struct debug_view debug_sprintf_view = { 142 "sprintf", 143 NULL, 144 &debug_dflt_header_fn, 145 &debug_sprintf_format_fn, 146 NULL, 147 NULL 148 }; 149 EXPORT_SYMBOL(debug_sprintf_view); 150 151 /* used by dump analysis tools to determine version of debug feature */ 152 static unsigned int __used debug_feature_version = __DEBUG_FEATURE_VERSION; 153 154 /* static globals */ 155 156 static debug_info_t *debug_area_first; 157 static debug_info_t *debug_area_last; 158 static DEFINE_MUTEX(debug_mutex); 159 extern debug_info_t *__s390dbf_info[], *__s390dbf_info_end[]; 160 161 static int initialized; 162 static int debug_critical; 163 164 static const struct file_operations debug_file_ops = { 165 .owner = THIS_MODULE, 166 .read = debug_output, 167 .write = debug_input, 168 .open = debug_open, 169 .release = debug_close, 170 }; 171 172 static struct dentry *debug_debugfs_root_entry; 173 174 /* List of debug area parameters to override */ 175 #define PARAM_UNSET -2 176 #define PARAM_NUM 16 177 static struct debug_param_t { 178 char name[DEBUG_MAX_NAME_LEN + 1]; 179 int level; 180 int pages; 181 } debug_param[PARAM_NUM]; 182 static int debug_param_num; 183 184 /* functions */ 185 static void debug_get_param(const char *name, int *level, int *pages) 186 { 187 struct debug_param_t *p; 188 int i; 189 190 for (i = 0; i < debug_param_num; i++) { 191 p = &debug_param[i]; 192 if (!glob_match(p->name, name)) 193 continue; 194 if (level && p->level != PARAM_UNSET) { 195 pr_info("%s: override level to %d\n", name, p->level); 196 *level = p->level; 197 } 198 if (pages && p->pages != PARAM_UNSET) { 199 pr_info("%s: override pages to %d\n", name, p->pages); 200 *pages = p->pages; 201 } 202 } 203 } 204 205 #define LVL_LEN 10 206 #define LVL_FMT "%" __stringify(LVL_LEN) "[^:]" 207 #define NAME_FMT "%" __stringify(DEBUG_MAX_NAME_LEN) "[^:]" 208 209 static bool __init s390dbf_parse_one(const char *arg, struct debug_param_t *param) 210 { 211 struct debug_param_t p = { { 0 }, PARAM_UNSET, PARAM_UNSET }; 212 char level[LVL_LEN + 1] = { 0 }; 213 214 /* arg: <name|pattern>:[<level>|-]:[<pages>] */ 215 if (sscanf(arg, NAME_FMT ":" LVL_FMT ":%d", p.name, level, &p.pages) > 1) { 216 if (strcmp(level, "-") == 0) 217 p.level = DEBUG_OFF_LEVEL; 218 else if (kstrtoint(level, 0, &p.level) != 0) 219 return false; 220 } else if (sscanf(arg, NAME_FMT "::%d", p.name, &p.pages) != 2) { 221 return false; 222 } 223 224 if (p.level != PARAM_UNSET && p.level != DEBUG_OFF_LEVEL && 225 (p.level < 0 || p.level > DEBUG_MAX_LEVEL)) 226 return false; 227 if (p.pages != PARAM_UNSET && p.pages < 0) 228 return false; 229 *param = p; 230 231 return true; 232 } 233 234 static int __init s390dbf_parse(char *arg) 235 { 236 debug_info_t **id; 237 int i, rc = 0; 238 239 while (arg && debug_param_num < PARAM_NUM) { 240 if (s390dbf_parse_one(arg, &debug_param[debug_param_num])) 241 debug_param_num++; 242 else 243 rc = -EINVAL; 244 arg = strchr(arg, ','); 245 if (arg) 246 arg++; 247 } 248 249 /* 250 * Apply level to static debug areas, delay buffer size changes until 251 * regular memory allocations are possible. 252 */ 253 for (i = 0, id = __s390dbf_info; &id[i] < __s390dbf_info_end; i++) 254 debug_get_param(id[i]->name, &id[i]->level, NULL); 255 256 return rc; 257 } 258 early_param("s390dbf", s390dbf_parse); 259 260 /* 261 * debug_areas_alloc 262 * - Debug areas are implemented as a threedimensonal array: 263 * areas[areanumber][pagenumber][pageoffset] 264 */ 265 266 static debug_entry_t ***debug_areas_alloc(int pages_per_area, int nr_areas) 267 { 268 debug_entry_t ***areas; 269 int i, j; 270 271 areas = kmalloc_objs(debug_entry_t **, nr_areas); 272 if (!areas) 273 goto fail_malloc_areas; 274 for (i = 0; i < nr_areas; i++) { 275 /* GFP_NOWARN to avoid user triggerable WARN, we handle fails */ 276 areas[i] = kmalloc_objs(debug_entry_t *, pages_per_area, 277 GFP_KERNEL | __GFP_NOWARN); 278 if (!areas[i]) 279 goto fail_malloc_areas2; 280 for (j = 0; j < pages_per_area; j++) { 281 areas[i][j] = kzalloc(PAGE_SIZE, GFP_KERNEL); 282 if (!areas[i][j]) { 283 for (j--; j >= 0 ; j--) 284 kfree(areas[i][j]); 285 kfree(areas[i]); 286 goto fail_malloc_areas2; 287 } 288 } 289 } 290 return areas; 291 292 fail_malloc_areas2: 293 for (i--; i >= 0; i--) { 294 for (j = 0; j < pages_per_area; j++) 295 kfree(areas[i][j]); 296 kfree(areas[i]); 297 } 298 kfree(areas); 299 fail_malloc_areas: 300 return NULL; 301 } 302 303 /* 304 * debug_info_alloc 305 * - alloc new debug-info 306 */ 307 static debug_info_t *debug_info_alloc(const char *name, int pages_per_area, 308 int nr_areas, int buf_size, int level, 309 int mode) 310 { 311 debug_info_t *rc; 312 313 /* alloc everything */ 314 rc = kmalloc_obj(debug_info_t); 315 if (!rc) 316 goto fail_malloc_rc; 317 rc->active_entries = kzalloc_objs(int, nr_areas); 318 if (!rc->active_entries) 319 goto fail_malloc_active_entries; 320 rc->active_pages = kzalloc_objs(int, nr_areas); 321 if (!rc->active_pages) 322 goto fail_malloc_active_pages; 323 if ((mode == ALL_AREAS) && (pages_per_area != 0)) { 324 rc->areas = debug_areas_alloc(pages_per_area, nr_areas); 325 if (!rc->areas) 326 goto fail_malloc_areas; 327 } else { 328 rc->areas = NULL; 329 } 330 331 /* initialize members */ 332 raw_spin_lock_init(&rc->lock); 333 rc->pages_per_area = pages_per_area; 334 rc->nr_areas = nr_areas; 335 rc->active_area = 0; 336 rc->level = level; 337 rc->buf_size = buf_size; 338 rc->entry_size = sizeof(debug_entry_t) + buf_size; 339 strscpy(rc->name, name); 340 memset(rc->views, 0, DEBUG_MAX_VIEWS * sizeof(struct debug_view *)); 341 memset(rc->debugfs_entries, 0, DEBUG_MAX_VIEWS * sizeof(struct dentry *)); 342 refcount_set(&(rc->ref_count), 0); 343 344 return rc; 345 346 fail_malloc_areas: 347 kfree(rc->active_pages); 348 fail_malloc_active_pages: 349 kfree(rc->active_entries); 350 fail_malloc_active_entries: 351 kfree(rc); 352 fail_malloc_rc: 353 return NULL; 354 } 355 356 /* 357 * debug_areas_free 358 * - free all debug areas 359 */ 360 static void debug_areas_free(debug_info_t *db_info) 361 { 362 int i, j; 363 364 if (!db_info->areas) 365 return; 366 for (i = 0; i < db_info->nr_areas; i++) { 367 for (j = 0; j < db_info->pages_per_area; j++) 368 kfree(db_info->areas[i][j]); 369 kfree(db_info->areas[i]); 370 } 371 kfree(db_info->areas); 372 db_info->areas = NULL; 373 } 374 375 /* 376 * debug_info_free 377 * - free memory debug-info 378 */ 379 static void debug_info_free(debug_info_t *db_info) 380 { 381 debug_areas_free(db_info); 382 kfree(db_info->active_entries); 383 kfree(db_info->active_pages); 384 kfree(db_info); 385 } 386 387 /* 388 * debug_info_create 389 * - create new debug-info 390 */ 391 392 static debug_info_t *debug_info_create(const char *name, int pages_per_area, 393 int nr_areas, int buf_size, umode_t mode) 394 { 395 int level = DEBUG_DEFAULT_LEVEL; 396 debug_info_t *rc; 397 398 debug_get_param(name, &level, &pages_per_area); 399 rc = debug_info_alloc(name, pages_per_area, nr_areas, buf_size, level, ALL_AREAS); 400 if (!rc) 401 goto out; 402 403 rc->mode = mode & ~S_IFMT; 404 refcount_set(&rc->ref_count, 1); 405 out: 406 return rc; 407 } 408 409 /* 410 * debug_info_copy 411 * - copy debug-info 412 */ 413 static debug_info_t *debug_info_copy(debug_info_t *in, int mode) 414 { 415 unsigned long flags; 416 debug_info_t *rc; 417 int i, j; 418 419 /* get a consistent copy of the debug areas */ 420 do { 421 rc = debug_info_alloc(in->name, in->pages_per_area, 422 in->nr_areas, in->buf_size, in->level, mode); 423 raw_spin_lock_irqsave(&in->lock, flags); 424 if (!rc) 425 goto out; 426 /* has something changed in the meantime ? */ 427 if ((rc->pages_per_area == in->pages_per_area) && 428 (rc->nr_areas == in->nr_areas)) { 429 break; 430 } 431 raw_spin_unlock_irqrestore(&in->lock, flags); 432 debug_info_free(rc); 433 } while (1); 434 435 if (mode == NO_AREAS) 436 goto out; 437 438 for (i = 0; i < in->nr_areas; i++) { 439 for (j = 0; j < in->pages_per_area; j++) 440 memcpy(rc->areas[i][j], in->areas[i][j], PAGE_SIZE); 441 rc->active_pages[i] = in->active_pages[i]; 442 rc->active_entries[i] = in->active_entries[i]; 443 } 444 rc->active_area = in->active_area; 445 out: 446 raw_spin_unlock_irqrestore(&in->lock, flags); 447 return rc; 448 } 449 450 /* 451 * debug_info_get 452 * - increments reference count for debug-info 453 */ 454 static void debug_info_get(debug_info_t *db_info) 455 { 456 if (db_info) 457 refcount_inc(&db_info->ref_count); 458 } 459 460 /* 461 * debug_info_put: 462 * - decreases reference count for debug-info and frees it if necessary 463 */ 464 static void debug_info_put(debug_info_t *db_info) 465 { 466 if (!db_info) 467 return; 468 if (refcount_dec_and_test(&db_info->ref_count)) 469 debug_info_free(db_info); 470 } 471 472 /* 473 * debug_format_entry: 474 * - format one debug entry and return size of formatted data 475 */ 476 static int debug_format_entry(file_private_info_t *p_info) 477 { 478 debug_info_t *id_snap = p_info->debug_info_snap; 479 struct debug_view *view = p_info->view; 480 debug_entry_t *act_entry; 481 size_t len = 0; 482 483 if (p_info->act_entry == DEBUG_PROLOG_ENTRY) { 484 /* print prolog */ 485 if (view->prolog_proc) { 486 len += view->prolog_proc(id_snap, view, p_info->temp_buf, 487 sizeof(p_info->temp_buf)); 488 } 489 goto out; 490 } 491 if (!id_snap->areas) /* this is true, if we have a prolog only view */ 492 goto out; /* or if 'pages_per_area' is 0 */ 493 act_entry = (debug_entry_t *) ((char *)id_snap->areas[p_info->act_area] 494 [p_info->act_page] + p_info->act_entry); 495 496 if (act_entry->clock == 0LL) 497 goto out; /* empty entry */ 498 if (view->header_proc) { 499 len += view->header_proc(id_snap, view, p_info->act_area, 500 act_entry, p_info->temp_buf + len, 501 sizeof(p_info->temp_buf) - len); 502 } 503 if (view->format_proc) { 504 len += view->format_proc(id_snap, view, p_info->temp_buf + len, 505 sizeof(p_info->temp_buf) - len, 506 DEBUG_DATA(act_entry)); 507 } 508 out: 509 return len; 510 } 511 512 /** 513 * debug_next_entry - Go to the next entry 514 * @p_info: Private info that is manipulated 515 * 516 * Sets the current position in @p_info to the next entry. If no further entry 517 * exists the current position is set to one after the end the return value 518 * indicates that no further entries exist. 519 * 520 * Return: True if there are more following entries, false otherwise 521 */ 522 static inline bool debug_next_entry(file_private_info_t *p_info) 523 { 524 debug_info_t *id; 525 526 id = p_info->debug_info_snap; 527 if (p_info->act_entry == DEBUG_PROLOG_ENTRY) { 528 p_info->act_entry = 0; 529 p_info->act_page = 0; 530 return true; 531 } 532 if (!id->areas) 533 return false; 534 p_info->act_entry += id->entry_size; 535 /* switch to next page, if we reached the end of the page */ 536 if (p_info->act_entry > (PAGE_SIZE - id->entry_size)) { 537 /* next page */ 538 p_info->act_entry = 0; 539 p_info->act_page += 1; 540 if ((p_info->act_page % id->pages_per_area) == 0) { 541 /* next area */ 542 p_info->act_area++; 543 p_info->act_page = 0; 544 } 545 if (p_info->act_area >= id->nr_areas) 546 return false; 547 } 548 return true; 549 } 550 551 /** 552 * debug_to_act_entry - Go to the currently active entry 553 * @p_info: Private info that is manipulated 554 * 555 * Sets the current position in @p_info to the currently active 556 * entry of @p_info->debug_info_snap 557 */ 558 static void debug_to_act_entry(file_private_info_t *p_info) 559 { 560 debug_info_t *snap_id; 561 562 snap_id = p_info->debug_info_snap; 563 p_info->act_area = snap_id->active_area; 564 p_info->act_page = snap_id->active_pages[snap_id->active_area]; 565 p_info->act_entry = snap_id->active_entries[snap_id->active_area]; 566 } 567 568 /** 569 * debug_prev_entry - Go to the previous entry 570 * @p_info: Private info that is manipulated 571 * 572 * Sets the current position in @p_info to the previous entry. If no previous entry 573 * exists the current position is set left as DEBUG_PROLOG_ENTRY and the return value 574 * indicates that no previous entries exist. 575 * 576 * Return: True if there are more previous entries, false otherwise 577 */ 578 579 static inline bool debug_prev_entry(file_private_info_t *p_info) 580 { 581 debug_info_t *id; 582 583 id = p_info->debug_info_snap; 584 if (p_info->act_entry == DEBUG_PROLOG_ENTRY) 585 debug_to_act_entry(p_info); 586 if (!id->areas) 587 return false; 588 p_info->act_entry -= id->entry_size; 589 /* switch to prev page, if we reached the beginning of the page */ 590 if (p_info->act_entry < 0) { 591 /* end of previous page */ 592 p_info->act_entry = rounddown(PAGE_SIZE, id->entry_size) - id->entry_size; 593 p_info->act_page--; 594 if (p_info->act_page < 0) { 595 /* previous area */ 596 p_info->act_area--; 597 p_info->act_page = id->pages_per_area - 1; 598 } 599 if (p_info->act_area < 0) 600 p_info->act_area = (id->nr_areas - 1) % id->nr_areas; 601 } 602 /* check full circle */ 603 if (id->active_area == p_info->act_area && 604 id->active_pages[id->active_area] == p_info->act_page && 605 id->active_entries[id->active_area] == p_info->act_entry) 606 return false; 607 return true; 608 } 609 610 /** 611 * debug_move_entry - Go to next entry in either the forward or backward direction 612 * @p_info: Private info that is manipulated 613 * @reverse: If true go to the next entry in reverse i.e. previous 614 * 615 * Sets the current position in @p_info to the next (@reverse == false) or 616 * previous (@reverse == true) entry. 617 * 618 * Return: True if there are further entries in that direction, 619 * false otherwise. 620 */ 621 static bool debug_move_entry(file_private_info_t *p_info, bool reverse) 622 { 623 if (reverse) 624 return debug_prev_entry(p_info); 625 else 626 return debug_next_entry(p_info); 627 } 628 629 /* 630 * debug_output: 631 * - called for user read() 632 * - copies formatted debug entries to the user buffer 633 */ 634 static ssize_t debug_output(struct file *file, /* file descriptor */ 635 char __user *user_buf, /* user buffer */ 636 size_t len, /* length of buffer */ 637 loff_t *offset) /* offset in the file */ 638 { 639 size_t count = 0; 640 size_t entry_offset; 641 file_private_info_t *p_info; 642 643 p_info = (file_private_info_t *) file->private_data; 644 if (*offset != p_info->offset) 645 return -EPIPE; 646 if (p_info->act_area >= p_info->debug_info_snap->nr_areas) 647 return 0; 648 entry_offset = p_info->act_entry_offset; 649 while (count < len) { 650 int formatted_line_residue; 651 int formatted_line_size; 652 int user_buf_residue; 653 size_t copy_size; 654 655 formatted_line_size = debug_format_entry(p_info); 656 formatted_line_residue = formatted_line_size - entry_offset; 657 user_buf_residue = len-count; 658 copy_size = min(user_buf_residue, formatted_line_residue); 659 if (copy_size) { 660 if (copy_to_user(user_buf + count, p_info->temp_buf 661 + entry_offset, copy_size)) 662 return -EFAULT; 663 count += copy_size; 664 entry_offset += copy_size; 665 } 666 if (copy_size == formatted_line_residue) { 667 entry_offset = 0; 668 if (!debug_next_entry(p_info)) 669 goto out; 670 } 671 } 672 out: 673 p_info->offset = *offset + count; 674 p_info->act_entry_offset = entry_offset; 675 *offset = p_info->offset; 676 return count; 677 } 678 679 /* 680 * debug_input: 681 * - called for user write() 682 * - calls input function of view 683 */ 684 static ssize_t debug_input(struct file *file, const char __user *user_buf, 685 size_t length, loff_t *offset) 686 { 687 file_private_info_t *p_info; 688 int rc = 0; 689 690 mutex_lock(&debug_mutex); 691 p_info = ((file_private_info_t *) file->private_data); 692 if (p_info->view->input_proc) { 693 rc = p_info->view->input_proc(p_info->debug_info_org, 694 p_info->view, file, user_buf, 695 length, offset); 696 } else { 697 rc = -EPERM; 698 } 699 mutex_unlock(&debug_mutex); 700 return rc; /* number of input characters */ 701 } 702 703 static file_private_info_t *debug_file_private_alloc(debug_info_t *debug_info, 704 struct debug_view *view) 705 { 706 debug_info_t *debug_info_snapshot; 707 file_private_info_t *p_info; 708 709 /* 710 * Make snapshot of current debug areas to get it consistent. 711 * To copy all the areas is only needed, if we have a view which 712 * formats the debug areas. 713 */ 714 if (!view->format_proc && !view->header_proc) 715 debug_info_snapshot = debug_info_copy(debug_info, NO_AREAS); 716 else 717 debug_info_snapshot = debug_info_copy(debug_info, ALL_AREAS); 718 719 if (!debug_info_snapshot) 720 return NULL; 721 p_info = kmalloc_obj(file_private_info_t); 722 if (!p_info) { 723 debug_info_free(debug_info_snapshot); 724 return NULL; 725 } 726 p_info->offset = 0; 727 p_info->debug_info_snap = debug_info_snapshot; 728 p_info->debug_info_org = debug_info; 729 p_info->view = view; 730 p_info->act_area = 0; 731 p_info->act_page = 0; 732 p_info->act_entry = DEBUG_PROLOG_ENTRY; 733 p_info->act_entry_offset = 0; 734 debug_info_get(debug_info); 735 736 return p_info; 737 } 738 739 /* 740 * debug_open: 741 * - called for user open() 742 * - copies formatted output to private_data area of the file 743 * handle 744 */ 745 static int debug_open(struct inode *inode, struct file *file) 746 { 747 debug_info_t *debug_info; 748 file_private_info_t *p_info; 749 int i, rc = 0; 750 751 mutex_lock(&debug_mutex); 752 debug_info = file_inode(file)->i_private; 753 /* find debug view */ 754 for (i = 0; i < DEBUG_MAX_VIEWS; i++) { 755 if (!debug_info->views[i]) 756 continue; 757 else if (debug_info->debugfs_entries[i] == file->f_path.dentry) 758 goto found; /* found view ! */ 759 } 760 /* no entry found */ 761 rc = -EINVAL; 762 goto out; 763 764 found: 765 p_info = debug_file_private_alloc(debug_info, debug_info->views[i]); 766 if (!p_info) { 767 rc = -ENOMEM; 768 goto out; 769 } 770 file->private_data = p_info; 771 nonseekable_open(inode, file); 772 out: 773 mutex_unlock(&debug_mutex); 774 return rc; 775 } 776 777 static void debug_file_private_free(file_private_info_t *p_info) 778 { 779 if (p_info->debug_info_snap) 780 debug_info_free(p_info->debug_info_snap); 781 debug_info_put(p_info->debug_info_org); 782 kfree(p_info); 783 } 784 785 /* 786 * debug_close: 787 * - called for user close() 788 * - deletes private_data area of the file handle 789 */ 790 static int debug_close(struct inode *inode, struct file *file) 791 { 792 file_private_info_t *p_info; 793 794 p_info = (file_private_info_t *) file->private_data; 795 debug_file_private_free(p_info); 796 file->private_data = NULL; 797 return 0; /* success */ 798 } 799 800 /** 801 * debug_dump - Get a textual representation of debug info, or as much as fits 802 * @id: Debug information to use 803 * @view: View with which to dump the debug information 804 * @buf: Buffer the textual debug data representation is written to 805 * @buf_size: Size of the buffer, including the trailing '\0' byte 806 * @reverse: Go backwards from the last written entry 807 * 808 * This function may be used whenever a textual representation of the debug 809 * information is required without using an s390dbf file. 810 * 811 * Note: It is the callers responsibility to supply a view that is compatible 812 * with the debug information data. 813 * 814 * Return: On success returns the number of bytes written to the buffer not 815 * including the trailing '\0' byte. If bug_size == 0 the function returns 0. 816 * On failure an error code less than 0 is returned. 817 */ 818 ssize_t debug_dump(debug_info_t *id, struct debug_view *view, 819 char *buf, size_t buf_size, bool reverse) 820 { 821 file_private_info_t *p_info; 822 size_t size, offset = 0; 823 824 /* Need space for '\0' byte */ 825 if (buf_size < 1) 826 return 0; 827 buf_size--; 828 829 p_info = debug_file_private_alloc(id, view); 830 if (!p_info) 831 return -ENOMEM; 832 833 /* There is always at least the DEBUG_PROLOG_ENTRY */ 834 do { 835 size = debug_format_entry(p_info); 836 size = min(size, buf_size - offset); 837 memcpy(buf + offset, p_info->temp_buf, size); 838 offset += size; 839 if (offset >= buf_size) 840 break; 841 } while (debug_move_entry(p_info, reverse)); 842 debug_file_private_free(p_info); 843 buf[offset] = '\0'; 844 845 return offset; 846 } 847 848 /* Create debugfs entries and add to internal list. */ 849 static void _debug_register(debug_info_t *id) 850 { 851 /* create root directory */ 852 id->debugfs_root_entry = debugfs_create_dir(id->name, 853 debug_debugfs_root_entry); 854 855 /* append new element to linked list */ 856 if (!debug_area_first) { 857 /* first element in list */ 858 debug_area_first = id; 859 id->prev = NULL; 860 } else { 861 /* append element to end of list */ 862 debug_area_last->next = id; 863 id->prev = debug_area_last; 864 } 865 debug_area_last = id; 866 id->next = NULL; 867 868 debug_register_view(id, &debug_level_view); 869 debug_register_view(id, &debug_flush_view); 870 debug_register_view(id, &debug_pages_view); 871 } 872 873 /** 874 * debug_register_mode() - creates and initializes debug area. 875 * 876 * @name: Name of debug log (e.g. used for debugfs entry) 877 * @pages_per_area: Number of pages, which will be allocated per area 878 * @nr_areas: Number of debug areas 879 * @buf_size: Size of data area in each debug entry 880 * @mode: File mode for debugfs files. E.g. S_IRWXUGO 881 * @uid: User ID for debugfs files. Currently only 0 is supported. 882 * @gid: Group ID for debugfs files. Currently only 0 is supported. 883 * 884 * Return: 885 * - Handle for generated debug area 886 * - %NULL if register failed 887 * 888 * Allocates memory for a debug log. 889 * Must not be called within an interrupt handler. 890 */ 891 debug_info_t *debug_register_mode(const char *name, int pages_per_area, 892 int nr_areas, int buf_size, umode_t mode, 893 uid_t uid, gid_t gid) 894 { 895 debug_info_t *rc = NULL; 896 897 /* Since debugfs currently does not support uid/gid other than root, */ 898 /* we do not allow gid/uid != 0 until we get support for that. */ 899 if ((uid != 0) || (gid != 0)) 900 pr_warn("Root becomes the owner of all s390dbf files in sysfs\n"); 901 BUG_ON(!initialized); 902 903 /* create new debug_info */ 904 rc = debug_info_create(name, pages_per_area, nr_areas, buf_size, mode); 905 if (rc) { 906 mutex_lock(&debug_mutex); 907 _debug_register(rc); 908 mutex_unlock(&debug_mutex); 909 } else { 910 pr_err("Registering debug feature %s failed\n", name); 911 } 912 return rc; 913 } 914 EXPORT_SYMBOL(debug_register_mode); 915 916 /** 917 * debug_register() - creates and initializes debug area with default file mode. 918 * 919 * @name: Name of debug log (e.g. used for debugfs entry) 920 * @pages_per_area: Number of pages, which will be allocated per area 921 * @nr_areas: Number of debug areas 922 * @buf_size: Size of data area in each debug entry 923 * 924 * Return: 925 * - Handle for generated debug area 926 * - %NULL if register failed 927 * 928 * Allocates memory for a debug log. 929 * The debugfs file mode access permissions are read and write for user. 930 * Must not be called within an interrupt handler. 931 */ 932 debug_info_t *debug_register(const char *name, int pages_per_area, 933 int nr_areas, int buf_size) 934 { 935 return debug_register_mode(name, pages_per_area, nr_areas, buf_size, 936 S_IRUSR | S_IWUSR, 0, 0); 937 } 938 EXPORT_SYMBOL(debug_register); 939 940 /** 941 * debug_register_static() - registers a static debug area 942 * 943 * @id: Handle for static debug area 944 * @pages_per_area: Number of pages per area 945 * @nr_areas: Number of debug areas 946 * 947 * Register debug_info_t defined using DEFINE_STATIC_DEBUG_INFO. 948 * 949 * Note: This function is called automatically via an initcall generated by 950 * DEFINE_STATIC_DEBUG_INFO. 951 */ 952 void debug_register_static(debug_info_t *id, int pages_per_area, int nr_areas) 953 { 954 unsigned long flags; 955 debug_info_t *copy; 956 957 if (!initialized) { 958 pr_err("Tried to register debug feature %s too early\n", 959 id->name); 960 return; 961 } 962 963 debug_get_param(id->name, &id->level, &pages_per_area); 964 copy = debug_info_alloc("", pages_per_area, nr_areas, id->buf_size, 965 id->level, ALL_AREAS); 966 if (!copy) { 967 pr_err("Registering debug feature %s failed\n", id->name); 968 969 /* Clear pointers to prevent tracing into released initdata. */ 970 raw_spin_lock_irqsave(&id->lock, flags); 971 id->areas = NULL; 972 id->active_pages = NULL; 973 id->active_entries = NULL; 974 raw_spin_unlock_irqrestore(&id->lock, flags); 975 976 return; 977 } 978 979 /* Replace static trace area with dynamic copy. */ 980 raw_spin_lock_irqsave(&id->lock, flags); 981 debug_events_append(copy, id); 982 debug_areas_swap(id, copy); 983 raw_spin_unlock_irqrestore(&id->lock, flags); 984 985 /* Clear pointers to initdata and discard copy. */ 986 copy->areas = NULL; 987 copy->active_pages = NULL; 988 copy->active_entries = NULL; 989 debug_info_free(copy); 990 991 mutex_lock(&debug_mutex); 992 _debug_register(id); 993 mutex_unlock(&debug_mutex); 994 } 995 996 /* Remove debugfs entries and remove from internal list. */ 997 static void _debug_unregister(debug_info_t *id) 998 { 999 int i; 1000 1001 for (i = 0; i < DEBUG_MAX_VIEWS; i++) { 1002 if (!id->views[i]) 1003 continue; 1004 debugfs_remove(id->debugfs_entries[i]); 1005 } 1006 debugfs_remove(id->debugfs_root_entry); 1007 if (id == debug_area_first) 1008 debug_area_first = id->next; 1009 if (id == debug_area_last) 1010 debug_area_last = id->prev; 1011 if (id->prev) 1012 id->prev->next = id->next; 1013 if (id->next) 1014 id->next->prev = id->prev; 1015 } 1016 1017 /** 1018 * debug_unregister() - give back debug area. 1019 * 1020 * @id: handle for debug log 1021 * 1022 * Return: 1023 * none 1024 */ 1025 void debug_unregister(debug_info_t *id) 1026 { 1027 if (!id) 1028 return; 1029 mutex_lock(&debug_mutex); 1030 _debug_unregister(id); 1031 mutex_unlock(&debug_mutex); 1032 1033 debug_info_put(id); 1034 } 1035 EXPORT_SYMBOL(debug_unregister); 1036 1037 /* 1038 * debug_set_size: 1039 * - set area size (number of pages) and number of areas 1040 */ 1041 static int debug_set_size(debug_info_t *id, int nr_areas, int pages_per_area) 1042 { 1043 debug_info_t *new_id; 1044 unsigned long flags; 1045 1046 if (!id || (nr_areas <= 0) || (pages_per_area < 0)) 1047 return -EINVAL; 1048 1049 new_id = debug_info_alloc("", pages_per_area, nr_areas, id->buf_size, 1050 id->level, ALL_AREAS); 1051 if (!new_id) { 1052 pr_info("Allocating memory for %i pages failed\n", 1053 pages_per_area); 1054 return -ENOMEM; 1055 } 1056 1057 raw_spin_lock_irqsave(&id->lock, flags); 1058 debug_events_append(new_id, id); 1059 debug_areas_swap(new_id, id); 1060 raw_spin_unlock_irqrestore(&id->lock, flags); 1061 debug_info_free(new_id); 1062 pr_info("%s: set new size (%i pages)\n", id->name, pages_per_area); 1063 1064 return 0; 1065 } 1066 1067 static void _debug_set_level(debug_info_t *id, int new_level) 1068 { 1069 unsigned long flags; 1070 1071 if (!id) 1072 return; 1073 1074 if (new_level == DEBUG_OFF_LEVEL) { 1075 pr_info("%s: switched off\n", id->name); 1076 } else if ((new_level > DEBUG_MAX_LEVEL) || (new_level < 0)) { 1077 pr_info("%s: level %i is out of range (%i - %i)\n", 1078 id->name, new_level, 0, DEBUG_MAX_LEVEL); 1079 return; 1080 } 1081 1082 raw_spin_lock_irqsave(&id->lock, flags); 1083 id->level = new_level; 1084 raw_spin_unlock_irqrestore(&id->lock, flags); 1085 } 1086 1087 /** 1088 * debug_set_level() - Sets new actual debug level if new_level is valid. 1089 * 1090 * @id: handle for debug log 1091 * @new_level: new debug level 1092 * 1093 * Return: 1094 * none 1095 */ 1096 void debug_set_level(debug_info_t *id, int new_level) 1097 { 1098 /* Level specified via kernel parameter takes precedence */ 1099 debug_get_param(id->name, &new_level, NULL); 1100 1101 _debug_set_level(id, new_level); 1102 } 1103 EXPORT_SYMBOL(debug_set_level); 1104 1105 /* 1106 * proceed_active_entry: 1107 * - set active entry to next in the ring buffer 1108 */ 1109 static inline void proceed_active_entry(debug_info_t *id) 1110 { 1111 if ((id->active_entries[id->active_area] += id->entry_size) 1112 > (PAGE_SIZE - id->entry_size)) { 1113 id->active_entries[id->active_area] = 0; 1114 id->active_pages[id->active_area] = 1115 (id->active_pages[id->active_area] + 1) % 1116 id->pages_per_area; 1117 } 1118 } 1119 1120 /* 1121 * proceed_active_area: 1122 * - set active area to next in the ring buffer 1123 */ 1124 static inline void proceed_active_area(debug_info_t *id) 1125 { 1126 id->active_area++; 1127 id->active_area = id->active_area % id->nr_areas; 1128 } 1129 1130 /* 1131 * get_active_entry: 1132 */ 1133 static inline debug_entry_t *get_active_entry(debug_info_t *id) 1134 { 1135 return (debug_entry_t *) (((char *) id->areas[id->active_area] 1136 [id->active_pages[id->active_area]]) + 1137 id->active_entries[id->active_area]); 1138 } 1139 1140 /* Swap debug areas of a and b. */ 1141 static void debug_areas_swap(debug_info_t *a, debug_info_t *b) 1142 { 1143 swap(a->nr_areas, b->nr_areas); 1144 swap(a->pages_per_area, b->pages_per_area); 1145 swap(a->areas, b->areas); 1146 swap(a->active_area, b->active_area); 1147 swap(a->active_pages, b->active_pages); 1148 swap(a->active_entries, b->active_entries); 1149 } 1150 1151 /* Append all debug events in active area from source to destination log. */ 1152 static void debug_events_append(debug_info_t *dest, debug_info_t *src) 1153 { 1154 debug_entry_t *from, *to, *last; 1155 1156 if (!src->areas || !dest->areas) 1157 return; 1158 1159 /* Loop over all entries in src, starting with oldest. */ 1160 from = get_active_entry(src); 1161 last = from; 1162 do { 1163 if (from->clock != 0LL) { 1164 to = get_active_entry(dest); 1165 memset(to, 0, dest->entry_size); 1166 memcpy(to, from, min(src->entry_size, 1167 dest->entry_size)); 1168 proceed_active_entry(dest); 1169 } 1170 1171 proceed_active_entry(src); 1172 from = get_active_entry(src); 1173 } while (from != last); 1174 } 1175 1176 /* 1177 * debug_finish_entry: 1178 * - set timestamp, caller address, cpu number etc. 1179 */ 1180 1181 static inline void debug_finish_entry(debug_info_t *id, debug_entry_t *active, 1182 int level, int exception) 1183 { 1184 unsigned long timestamp; 1185 union tod_clock clk; 1186 1187 store_tod_clock_ext(&clk); 1188 timestamp = clk.us; 1189 timestamp -= TOD_UNIX_EPOCH >> 12; 1190 active->clock = timestamp; 1191 active->cpu = smp_processor_id(); 1192 active->caller = __builtin_return_address(0); 1193 active->exception = exception; 1194 active->level = level; 1195 proceed_active_entry(id); 1196 if (exception) 1197 proceed_active_area(id); 1198 } 1199 1200 static int debug_stoppable = 1; 1201 static int debug_active = 1; 1202 1203 #define CTL_S390DBF_STOPPABLE 5678 1204 #define CTL_S390DBF_ACTIVE 5679 1205 1206 /* 1207 * proc handler for the running debug_active sysctl 1208 * always allow read, allow write only if debug_stoppable is set or 1209 * if debug_active is already off 1210 */ 1211 static int s390dbf_procactive(const struct ctl_table *table, int write, 1212 void *buffer, size_t *lenp, loff_t *ppos) 1213 { 1214 if (!write || debug_stoppable || !debug_active) 1215 return proc_dointvec(table, write, buffer, lenp, ppos); 1216 else 1217 return 0; 1218 } 1219 1220 static const struct ctl_table s390dbf_table[] = { 1221 { 1222 .procname = "debug_stoppable", 1223 .data = &debug_stoppable, 1224 .maxlen = sizeof(int), 1225 .mode = S_IRUGO | S_IWUSR, 1226 .proc_handler = proc_dointvec, 1227 }, 1228 { 1229 .procname = "debug_active", 1230 .data = &debug_active, 1231 .maxlen = sizeof(int), 1232 .mode = S_IRUGO | S_IWUSR, 1233 .proc_handler = s390dbf_procactive, 1234 }, 1235 }; 1236 1237 /** 1238 * debug_stop_all() - stops the debug feature if stopping is allowed. 1239 * 1240 * Return: 1241 * - none 1242 * 1243 * Currently used in case of a kernel oops. 1244 */ 1245 void debug_stop_all(void) 1246 { 1247 if (debug_stoppable) 1248 debug_active = 0; 1249 } 1250 EXPORT_SYMBOL(debug_stop_all); 1251 1252 /** 1253 * debug_set_critical() - event/exception functions try lock instead of spin. 1254 * 1255 * Return: 1256 * - none 1257 * 1258 * Currently used in case of stopping all CPUs but the current one. 1259 * Once in this state, functions to write a debug entry for an 1260 * event or exception no longer spin on the debug area lock, 1261 * but only try to get it and fail if they do not get the lock. 1262 */ 1263 void debug_set_critical(void) 1264 { 1265 debug_critical = 1; 1266 } 1267 1268 /* 1269 * debug_event_common: 1270 * - write debug entry with given size 1271 */ 1272 debug_entry_t *debug_event_common(debug_info_t *id, int level, const void *buf, 1273 int len) 1274 { 1275 debug_entry_t *active; 1276 unsigned long flags; 1277 1278 if (!debug_active || !id->areas) 1279 return NULL; 1280 if (debug_critical) { 1281 if (!raw_spin_trylock_irqsave(&id->lock, flags)) 1282 return NULL; 1283 } else { 1284 raw_spin_lock_irqsave(&id->lock, flags); 1285 } 1286 do { 1287 active = get_active_entry(id); 1288 memcpy(DEBUG_DATA(active), buf, min(len, id->buf_size)); 1289 if (len < id->buf_size) 1290 memset((DEBUG_DATA(active)) + len, 0, id->buf_size - len); 1291 debug_finish_entry(id, active, level, 0); 1292 len -= id->buf_size; 1293 buf += id->buf_size; 1294 } while (len > 0); 1295 1296 raw_spin_unlock_irqrestore(&id->lock, flags); 1297 return active; 1298 } 1299 EXPORT_SYMBOL(debug_event_common); 1300 1301 /* 1302 * debug_exception_common: 1303 * - write debug entry with given size and switch to next debug area 1304 */ 1305 debug_entry_t *debug_exception_common(debug_info_t *id, int level, 1306 const void *buf, int len) 1307 { 1308 debug_entry_t *active; 1309 unsigned long flags; 1310 1311 if (!debug_active || !id->areas) 1312 return NULL; 1313 if (debug_critical) { 1314 if (!raw_spin_trylock_irqsave(&id->lock, flags)) 1315 return NULL; 1316 } else { 1317 raw_spin_lock_irqsave(&id->lock, flags); 1318 } 1319 do { 1320 active = get_active_entry(id); 1321 memcpy(DEBUG_DATA(active), buf, min(len, id->buf_size)); 1322 if (len < id->buf_size) 1323 memset((DEBUG_DATA(active)) + len, 0, id->buf_size - len); 1324 debug_finish_entry(id, active, level, len <= id->buf_size); 1325 len -= id->buf_size; 1326 buf += id->buf_size; 1327 } while (len > 0); 1328 1329 raw_spin_unlock_irqrestore(&id->lock, flags); 1330 return active; 1331 } 1332 EXPORT_SYMBOL(debug_exception_common); 1333 1334 /* 1335 * counts arguments in format string for sprintf view 1336 */ 1337 static inline int debug_count_numargs(char *string) 1338 { 1339 int numargs = 0; 1340 1341 while (*string) { 1342 if (*string++ == '%') 1343 numargs++; 1344 } 1345 return numargs; 1346 } 1347 1348 /* 1349 * debug_sprintf_event: 1350 */ 1351 debug_entry_t *__debug_sprintf_event(debug_info_t *id, int level, char *string, ...) 1352 { 1353 debug_sprintf_entry_t *curr_event; 1354 debug_entry_t *active; 1355 unsigned long flags; 1356 int numargs, idx; 1357 va_list ap; 1358 1359 if (!debug_active || !id->areas) 1360 return NULL; 1361 numargs = debug_count_numargs(string); 1362 1363 if (debug_critical) { 1364 if (!raw_spin_trylock_irqsave(&id->lock, flags)) 1365 return NULL; 1366 } else { 1367 raw_spin_lock_irqsave(&id->lock, flags); 1368 } 1369 active = get_active_entry(id); 1370 curr_event = (debug_sprintf_entry_t *) DEBUG_DATA(active); 1371 va_start(ap, string); 1372 curr_event->string = string; 1373 for (idx = 0; idx < min(numargs, (int)(id->buf_size / sizeof(long)) - 1); idx++) 1374 curr_event->args[idx] = va_arg(ap, long); 1375 va_end(ap); 1376 debug_finish_entry(id, active, level, 0); 1377 raw_spin_unlock_irqrestore(&id->lock, flags); 1378 1379 return active; 1380 } 1381 EXPORT_SYMBOL(__debug_sprintf_event); 1382 1383 /* 1384 * debug_sprintf_exception: 1385 */ 1386 debug_entry_t *__debug_sprintf_exception(debug_info_t *id, int level, char *string, ...) 1387 { 1388 debug_sprintf_entry_t *curr_event; 1389 debug_entry_t *active; 1390 unsigned long flags; 1391 int numargs, idx; 1392 va_list ap; 1393 1394 if (!debug_active || !id->areas) 1395 return NULL; 1396 1397 numargs = debug_count_numargs(string); 1398 1399 if (debug_critical) { 1400 if (!raw_spin_trylock_irqsave(&id->lock, flags)) 1401 return NULL; 1402 } else { 1403 raw_spin_lock_irqsave(&id->lock, flags); 1404 } 1405 active = get_active_entry(id); 1406 curr_event = (debug_sprintf_entry_t *)DEBUG_DATA(active); 1407 va_start(ap, string); 1408 curr_event->string = string; 1409 for (idx = 0; idx < min(numargs, (int)(id->buf_size / sizeof(long)) - 1); idx++) 1410 curr_event->args[idx] = va_arg(ap, long); 1411 va_end(ap); 1412 debug_finish_entry(id, active, level, 1); 1413 raw_spin_unlock_irqrestore(&id->lock, flags); 1414 1415 return active; 1416 } 1417 EXPORT_SYMBOL(__debug_sprintf_exception); 1418 1419 /** 1420 * debug_register_view() - registers new debug view and creates debugfs 1421 * dir entry 1422 * 1423 * @id: handle for debug log 1424 * @view: pointer to debug view struct 1425 * 1426 * Return: 1427 * - 0 : ok 1428 * - < 0: Error 1429 */ 1430 int debug_register_view(debug_info_t *id, struct debug_view *view) 1431 { 1432 unsigned long flags; 1433 struct dentry *pde; 1434 umode_t mode; 1435 int rc = 0; 1436 int i; 1437 1438 if (!id) 1439 goto out; 1440 mode = (id->mode | S_IFREG) & ~S_IXUGO; 1441 if (!(view->prolog_proc || view->format_proc || view->header_proc)) 1442 mode &= ~(S_IRUSR | S_IRGRP | S_IROTH); 1443 if (!view->input_proc) 1444 mode &= ~(S_IWUSR | S_IWGRP | S_IWOTH); 1445 pde = debugfs_create_file(view->name, mode, id->debugfs_root_entry, 1446 id, &debug_file_ops); 1447 raw_spin_lock_irqsave(&id->lock, flags); 1448 for (i = 0; i < DEBUG_MAX_VIEWS; i++) { 1449 if (!id->views[i]) 1450 break; 1451 } 1452 if (i == DEBUG_MAX_VIEWS) { 1453 rc = -1; 1454 } else { 1455 id->views[i] = view; 1456 id->debugfs_entries[i] = pde; 1457 } 1458 raw_spin_unlock_irqrestore(&id->lock, flags); 1459 if (rc) { 1460 pr_err("Registering view %s/%s would exceed the maximum " 1461 "number of views %i\n", id->name, view->name, i); 1462 debugfs_remove(pde); 1463 } 1464 out: 1465 return rc; 1466 } 1467 EXPORT_SYMBOL(debug_register_view); 1468 1469 /** 1470 * debug_unregister_view() - unregisters debug view and removes debugfs 1471 * dir entry 1472 * 1473 * @id: handle for debug log 1474 * @view: pointer to debug view struct 1475 * 1476 * Return: 1477 * - 0 : ok 1478 * - < 0: Error 1479 */ 1480 int debug_unregister_view(debug_info_t *id, struct debug_view *view) 1481 { 1482 struct dentry *dentry = NULL; 1483 unsigned long flags; 1484 int i, rc = 0; 1485 1486 if (!id) 1487 goto out; 1488 raw_spin_lock_irqsave(&id->lock, flags); 1489 for (i = 0; i < DEBUG_MAX_VIEWS; i++) { 1490 if (id->views[i] == view) 1491 break; 1492 } 1493 if (i == DEBUG_MAX_VIEWS) { 1494 rc = -1; 1495 } else { 1496 dentry = id->debugfs_entries[i]; 1497 id->views[i] = NULL; 1498 id->debugfs_entries[i] = NULL; 1499 } 1500 raw_spin_unlock_irqrestore(&id->lock, flags); 1501 debugfs_remove(dentry); 1502 out: 1503 return rc; 1504 } 1505 EXPORT_SYMBOL(debug_unregister_view); 1506 1507 static inline char *debug_get_user_string(const char __user *user_buf, 1508 size_t user_len) 1509 { 1510 char *buffer; 1511 1512 if (!user_len) 1513 return ERR_PTR(-EINVAL); 1514 1515 buffer = memdup_user_nul(user_buf, user_len); 1516 if (IS_ERR(buffer)) 1517 return buffer; 1518 /* got the string, now strip linefeed. */ 1519 if (buffer[user_len - 1] == '\n') 1520 buffer[user_len - 1] = 0; 1521 return buffer; 1522 } 1523 1524 static inline int debug_get_uint(char *buf) 1525 { 1526 int rc; 1527 1528 buf = skip_spaces(buf); 1529 rc = simple_strtoul(buf, &buf, 10); 1530 if (*buf) 1531 rc = -EINVAL; 1532 return rc; 1533 } 1534 1535 /* 1536 * functions for debug-views 1537 *********************************** 1538 */ 1539 1540 /* 1541 * prints out actual debug level 1542 */ 1543 1544 static int debug_prolog_pages_fn(debug_info_t *id, struct debug_view *view, 1545 char *out_buf, size_t out_buf_size) 1546 { 1547 return scnprintf(out_buf, out_buf_size, "%i\n", id->pages_per_area); 1548 } 1549 1550 /* 1551 * reads new size (number of pages per debug area) 1552 */ 1553 1554 static int debug_input_pages_fn(debug_info_t *id, struct debug_view *view, 1555 struct file *file, const char __user *user_buf, 1556 size_t user_len, loff_t *offset) 1557 { 1558 int rc, new_pages; 1559 char *str; 1560 1561 if (user_len > 0x10000) 1562 user_len = 0x10000; 1563 if (*offset != 0) { 1564 rc = -EPIPE; 1565 goto out; 1566 } 1567 str = debug_get_user_string(user_buf, user_len); 1568 if (IS_ERR(str)) { 1569 rc = PTR_ERR(str); 1570 goto out; 1571 } 1572 new_pages = debug_get_uint(str); 1573 if (new_pages < 0) { 1574 rc = -EINVAL; 1575 goto free_str; 1576 } 1577 rc = debug_set_size(id, id->nr_areas, new_pages); 1578 if (rc != 0) { 1579 rc = -EINVAL; 1580 goto free_str; 1581 } 1582 rc = user_len; 1583 free_str: 1584 kfree(str); 1585 out: 1586 *offset += user_len; 1587 return rc; /* number of input characters */ 1588 } 1589 1590 /* 1591 * prints out actual debug level 1592 */ 1593 static int debug_prolog_level_fn(debug_info_t *id, struct debug_view *view, 1594 char *out_buf, size_t out_buf_size) 1595 { 1596 int rc = 0; 1597 1598 if (id->level == DEBUG_OFF_LEVEL) 1599 rc = scnprintf(out_buf, out_buf_size, "-\n"); 1600 else 1601 rc = scnprintf(out_buf, out_buf_size, "%i\n", id->level); 1602 return rc; 1603 } 1604 1605 /* 1606 * reads new debug level 1607 */ 1608 static int debug_input_level_fn(debug_info_t *id, struct debug_view *view, 1609 struct file *file, const char __user *user_buf, 1610 size_t user_len, loff_t *offset) 1611 { 1612 int rc, new_level; 1613 char *str; 1614 1615 if (user_len > 0x10000) 1616 user_len = 0x10000; 1617 if (*offset != 0) { 1618 rc = -EPIPE; 1619 goto out; 1620 } 1621 str = debug_get_user_string(user_buf, user_len); 1622 if (IS_ERR(str)) { 1623 rc = PTR_ERR(str); 1624 goto out; 1625 } 1626 if (str[0] == '-') { 1627 _debug_set_level(id, DEBUG_OFF_LEVEL); 1628 rc = user_len; 1629 goto free_str; 1630 } else { 1631 new_level = debug_get_uint(str); 1632 } 1633 if (new_level < 0) { 1634 pr_warn("%s is not a valid level for a debug feature\n", str); 1635 rc = -EINVAL; 1636 } else { 1637 _debug_set_level(id, new_level); 1638 rc = user_len; 1639 } 1640 free_str: 1641 kfree(str); 1642 out: 1643 *offset += user_len; 1644 return rc; /* number of input characters */ 1645 } 1646 1647 /* 1648 * flushes debug areas 1649 */ 1650 static void debug_flush(debug_info_t *id, int area) 1651 { 1652 unsigned long flags; 1653 int i, j; 1654 1655 if (!id || !id->areas) 1656 return; 1657 raw_spin_lock_irqsave(&id->lock, flags); 1658 if (area == DEBUG_FLUSH_ALL) { 1659 id->active_area = 0; 1660 memset(id->active_entries, 0, id->nr_areas * sizeof(int)); 1661 for (i = 0; i < id->nr_areas; i++) { 1662 id->active_pages[i] = 0; 1663 for (j = 0; j < id->pages_per_area; j++) 1664 memset(id->areas[i][j], 0, PAGE_SIZE); 1665 } 1666 } else if (area >= 0 && area < id->nr_areas) { 1667 id->active_entries[area] = 0; 1668 id->active_pages[area] = 0; 1669 for (i = 0; i < id->pages_per_area; i++) 1670 memset(id->areas[area][i], 0, PAGE_SIZE); 1671 } 1672 raw_spin_unlock_irqrestore(&id->lock, flags); 1673 } 1674 1675 /* 1676 * view function: flushes debug areas 1677 */ 1678 static int debug_input_flush_fn(debug_info_t *id, struct debug_view *view, 1679 struct file *file, const char __user *user_buf, 1680 size_t user_len, loff_t *offset) 1681 { 1682 char input_buf[1]; 1683 int rc = user_len; 1684 1685 if (!user_len) { 1686 rc = -EINVAL; 1687 goto out; 1688 } 1689 1690 if (user_len > 0x10000) 1691 user_len = 0x10000; 1692 if (*offset != 0) { 1693 rc = -EPIPE; 1694 goto out; 1695 } 1696 if (copy_from_user(input_buf, user_buf, 1)) { 1697 rc = -EFAULT; 1698 goto out; 1699 } 1700 if (input_buf[0] == '-') { 1701 debug_flush(id, DEBUG_FLUSH_ALL); 1702 goto out; 1703 } 1704 if (isdigit(input_buf[0])) { 1705 int area = ((int) input_buf[0] - (int) '0'); 1706 1707 debug_flush(id, area); 1708 goto out; 1709 } 1710 1711 pr_info("Flushing debug data failed because %c is not a valid " 1712 "area\n", input_buf[0]); 1713 1714 out: 1715 *offset += user_len; 1716 return rc; /* number of input characters */ 1717 } 1718 1719 /* 1720 * prints debug data in hex/ascii format 1721 */ 1722 static int debug_hex_ascii_format_fn(debug_info_t *id, struct debug_view *view, 1723 char *out_buf, size_t out_buf_size, const char *in_buf) 1724 { 1725 int i, rc = 0; 1726 1727 for (i = 0; i < id->buf_size; i++) { 1728 rc += scnprintf(out_buf + rc, out_buf_size - rc, 1729 "%02x ", ((unsigned char *)in_buf)[i]); 1730 } 1731 rc += scnprintf(out_buf + rc, out_buf_size - rc, "| "); 1732 for (i = 0; i < id->buf_size; i++) { 1733 unsigned char c = in_buf[i]; 1734 1735 if (isascii(c) && isprint(c)) 1736 rc += scnprintf(out_buf + rc, out_buf_size - rc, "%c", c); 1737 else 1738 rc += scnprintf(out_buf + rc, out_buf_size - rc, "."); 1739 } 1740 rc += scnprintf(out_buf + rc, out_buf_size - rc, "\n"); 1741 return rc; 1742 } 1743 1744 /* 1745 * prints header for debug entry 1746 */ 1747 int debug_dflt_header_fn(debug_info_t *id, struct debug_view *view, 1748 int area, debug_entry_t *entry, char *out_buf, 1749 size_t out_buf_size) 1750 { 1751 unsigned long sec, usec; 1752 unsigned long caller; 1753 unsigned int level; 1754 char *except_str; 1755 int rc = 0; 1756 1757 level = entry->level; 1758 sec = entry->clock; 1759 usec = do_div(sec, USEC_PER_SEC); 1760 1761 if (entry->exception) 1762 except_str = "*"; 1763 else 1764 except_str = "-"; 1765 caller = (unsigned long) entry->caller; 1766 rc += scnprintf(out_buf, out_buf_size, "%02i %011ld:%06lu %1u %1s %04u %px ", 1767 area, sec, usec, level, except_str, 1768 entry->cpu, (void *)caller); 1769 return rc; 1770 } 1771 EXPORT_SYMBOL(debug_dflt_header_fn); 1772 1773 /* 1774 * prints debug data sprintf-formatted: 1775 * debug_sprintf_event/exception calls must be used together with this view 1776 */ 1777 1778 #define DEBUG_SPRINTF_MAX_ARGS 10 1779 1780 int debug_sprintf_format_fn(debug_info_t *id, struct debug_view *view, 1781 char *out_buf, size_t out_buf_size, const char *inbuf) 1782 { 1783 debug_sprintf_entry_t *curr_event = (debug_sprintf_entry_t *)inbuf; 1784 int num_longs, num_used_args = 0, i, rc = 0; 1785 int index[DEBUG_SPRINTF_MAX_ARGS]; 1786 1787 /* count of longs fit into one entry */ 1788 num_longs = id->buf_size / sizeof(long); 1789 1790 if (num_longs < 1) 1791 goto out; /* bufsize of entry too small */ 1792 if (num_longs == 1) { 1793 /* no args, we use only the string */ 1794 rc = strscpy(out_buf, curr_event->string, out_buf_size); 1795 if (rc == -E2BIG) 1796 rc = out_buf_size; 1797 goto out; 1798 } 1799 1800 /* number of arguments used for sprintf (without the format string) */ 1801 num_used_args = min(DEBUG_SPRINTF_MAX_ARGS, (num_longs - 1)); 1802 1803 memset(index, 0, DEBUG_SPRINTF_MAX_ARGS * sizeof(int)); 1804 1805 for (i = 0; i < num_used_args; i++) 1806 index[i] = i; 1807 1808 rc = scnprintf(out_buf, out_buf_size, 1809 curr_event->string, curr_event->args[index[0]], 1810 curr_event->args[index[1]], curr_event->args[index[2]], 1811 curr_event->args[index[3]], curr_event->args[index[4]], 1812 curr_event->args[index[5]], curr_event->args[index[6]], 1813 curr_event->args[index[7]], curr_event->args[index[8]], 1814 curr_event->args[index[9]]); 1815 out: 1816 return rc; 1817 } 1818 EXPORT_SYMBOL(debug_sprintf_format_fn); 1819 1820 /* 1821 * debug_init: 1822 * - is called exactly once to initialize the debug feature 1823 */ 1824 static int __init debug_init(void) 1825 { 1826 register_sysctl("s390dbf", s390dbf_table); 1827 mutex_lock(&debug_mutex); 1828 debug_debugfs_root_entry = debugfs_create_dir(DEBUG_DIR_ROOT, NULL); 1829 initialized = 1; 1830 mutex_unlock(&debug_mutex); 1831 return 0; 1832 } 1833 postcore_initcall(debug_init); 1834