1e886bf9dSAndrey Konovalov // SPDX-License-Identifier: GPL-2.0 20b24beccSAndrey Ryabinin /* 3*59fd51b2SAndrey Konovalov * This file contains common KASAN error reporting code. 40b24beccSAndrey Ryabinin * 50b24beccSAndrey Ryabinin * Copyright (c) 2014 Samsung Electronics Co., Ltd. 62baf9e89SAndrey Ryabinin * Author: Andrey Ryabinin <ryabinin.a.a@gmail.com> 70b24beccSAndrey Ryabinin * 85d0926efSAndrey Konovalov * Some code borrowed from https://github.com/xairy/kasan-prototype by 95f21f3a8SAndrey Konovalov * Andrey Konovalov <andreyknvl@gmail.com> 100b24beccSAndrey Ryabinin */ 110b24beccSAndrey Ryabinin 12b0845ce5SMark Rutland #include <linux/bitops.h> 134f40c6e5SPeter Zijlstra #include <linux/ftrace.h> 14b0845ce5SMark Rutland #include <linux/init.h> 150b24beccSAndrey Ryabinin #include <linux/kernel.h> 160b24beccSAndrey Ryabinin #include <linux/mm.h> 170b24beccSAndrey Ryabinin #include <linux/printk.h> 180b24beccSAndrey Ryabinin #include <linux/sched.h> 190b24beccSAndrey Ryabinin #include <linux/slab.h> 20cd11016eSAlexander Potapenko #include <linux/stackdepot.h> 210b24beccSAndrey Ryabinin #include <linux/stacktrace.h> 220b24beccSAndrey Ryabinin #include <linux/string.h> 230b24beccSAndrey Ryabinin #include <linux/types.h> 240b24beccSAndrey Ryabinin #include <linux/kasan.h> 25527f215bSAneesh Kumar K.V #include <linux/module.h> 26e8969219SMarco Elver #include <linux/sched/task_stack.h> 274fba3758SAndrey Konovalov #include <linux/uaccess.h> 280b24beccSAndrey Ryabinin 29bebf56a1SAndrey Ryabinin #include <asm/sections.h> 30bebf56a1SAndrey Ryabinin 3183c4e7a0SPatricia Alfonso #include <kunit/test.h> 3283c4e7a0SPatricia Alfonso 330b24beccSAndrey Ryabinin #include "kasan.h" 340316bec2SAndrey Ryabinin #include "../slab.h" 350b24beccSAndrey Ryabinin 360b24beccSAndrey Ryabinin /* Shadow layout customization. */ 370b24beccSAndrey Ryabinin #define SHADOW_BYTES_PER_BLOCK 1 380b24beccSAndrey Ryabinin #define SHADOW_BLOCKS_PER_ROW 16 390b24beccSAndrey Ryabinin #define SHADOW_BYTES_PER_ROW (SHADOW_BLOCKS_PER_ROW * SHADOW_BYTES_PER_BLOCK) 400b24beccSAndrey Ryabinin #define SHADOW_ROWS_AROUND_ADDR 2 410b24beccSAndrey Ryabinin 4211cd3cd6SAndrey Konovalov static unsigned long kasan_flags; 4311cd3cd6SAndrey Konovalov 4411cd3cd6SAndrey Konovalov #define KASAN_BIT_REPORTED 0 4511cd3cd6SAndrey Konovalov #define KASAN_BIT_MULTI_SHOT 1 4611cd3cd6SAndrey Konovalov 4711cd3cd6SAndrey Konovalov bool kasan_save_enable_multi_shot(void) 480b24beccSAndrey Ryabinin { 4911cd3cd6SAndrey Konovalov return test_and_set_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags); 500b24beccSAndrey Ryabinin } 5111cd3cd6SAndrey Konovalov EXPORT_SYMBOL_GPL(kasan_save_enable_multi_shot); 520b24beccSAndrey Ryabinin 5311cd3cd6SAndrey Konovalov void kasan_restore_multi_shot(bool enabled) 545e82cd12SAndrey Konovalov { 5511cd3cd6SAndrey Konovalov if (!enabled) 5611cd3cd6SAndrey Konovalov clear_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags); 575e82cd12SAndrey Konovalov } 5811cd3cd6SAndrey Konovalov EXPORT_SYMBOL_GPL(kasan_restore_multi_shot); 595e82cd12SAndrey Konovalov 6011cd3cd6SAndrey Konovalov static int __init kasan_set_multi_shot(char *str) 610b24beccSAndrey Ryabinin { 6211cd3cd6SAndrey Konovalov set_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags); 6311cd3cd6SAndrey Konovalov return 1; 640b24beccSAndrey Ryabinin } 6511cd3cd6SAndrey Konovalov __setup("kasan_multi_shot", kasan_set_multi_shot); 660b24beccSAndrey Ryabinin 67121e8f81SAndrey Konovalov static void print_error_description(struct kasan_access_info *info) 685e82cd12SAndrey Konovalov { 697f0a84c2SAndrey Konovalov pr_err("BUG: KASAN: %s in %pS\n", 70121e8f81SAndrey Konovalov get_bug_type(info), (void *)info->ip); 716424f6bbSTobin C. Harding pr_err("%s of size %zu at addr %px by task %s/%d\n", 727d418f7bSAndrey Konovalov info->is_write ? "Write" : "Read", info->access_size, 737f0a84c2SAndrey Konovalov info->access_addr, current->comm, task_pid_nr(current)); 740b24beccSAndrey Ryabinin } 750b24beccSAndrey Ryabinin 767e088978SAndrey Ryabinin static DEFINE_SPINLOCK(report_lock); 777e088978SAndrey Ryabinin 7811cd3cd6SAndrey Konovalov static void start_report(unsigned long *flags) 797e088978SAndrey Ryabinin { 807e088978SAndrey Ryabinin /* 817e088978SAndrey Ryabinin * Make sure we don't end up in loop. 827e088978SAndrey Ryabinin */ 837e088978SAndrey Ryabinin kasan_disable_current(); 847e088978SAndrey Ryabinin spin_lock_irqsave(&report_lock, *flags); 857e088978SAndrey Ryabinin pr_err("==================================================================\n"); 867e088978SAndrey Ryabinin } 877e088978SAndrey Ryabinin 8811cd3cd6SAndrey Konovalov static void end_report(unsigned long *flags) 897e088978SAndrey Ryabinin { 907e088978SAndrey Ryabinin pr_err("==================================================================\n"); 917e088978SAndrey Ryabinin add_taint(TAINT_BAD_PAGE, LOCKDEP_NOW_UNRELIABLE); 927e088978SAndrey Ryabinin spin_unlock_irqrestore(&report_lock, *flags); 93be4f1ae9SDavid Gow if (panic_on_warn && !test_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags)) { 941d2252faSKees Cook /* 951d2252faSKees Cook * This thread may hit another WARN() in the panic path. 961d2252faSKees Cook * Resetting this prevents additional WARN() from panicking the 971d2252faSKees Cook * system on this thread. Other threads are blocked by the 981d2252faSKees Cook * panic_mutex in panic(). 991d2252faSKees Cook */ 1001d2252faSKees Cook panic_on_warn = 0; 1015c5c1f36SDmitry Vyukov panic("panic_on_warn set ...\n"); 1021d2252faSKees Cook } 1037e088978SAndrey Ryabinin kasan_enable_current(); 1047e088978SAndrey Ryabinin } 1057e088978SAndrey Ryabinin 10626e760c9SWalter Wu static void print_stack(depot_stack_handle_t stack) 10726e760c9SWalter Wu { 10826e760c9SWalter Wu unsigned long *entries; 10926e760c9SWalter Wu unsigned int nr_entries; 11026e760c9SWalter Wu 11126e760c9SWalter Wu nr_entries = stack_depot_fetch(stack, &entries); 11226e760c9SWalter Wu stack_trace_print(entries, nr_entries, 0); 11326e760c9SWalter Wu } 11426e760c9SWalter Wu 115b6b72f49SAndrey Konovalov static void print_track(struct kasan_track *track, const char *prefix) 1167ed2f9e6SAlexander Potapenko { 117b6b72f49SAndrey Konovalov pr_err("%s by task %u:\n", prefix, track->pid); 118cd11016eSAlexander Potapenko if (track->stack) { 11926e760c9SWalter Wu print_stack(track->stack); 120cd11016eSAlexander Potapenko } else { 121cd11016eSAlexander Potapenko pr_err("(stack is not available)\n"); 122cd11016eSAlexander Potapenko } 1237ed2f9e6SAlexander Potapenko } 1247ed2f9e6SAlexander Potapenko 125ae8f06b3SWalter Wu struct page *kasan_addr_to_page(const void *addr) 126db429f16SAndrey Konovalov { 127db429f16SAndrey Konovalov if ((addr >= (void *)PAGE_OFFSET) && 128db429f16SAndrey Konovalov (addr < high_memory)) 129db429f16SAndrey Konovalov return virt_to_head_page(addr); 130db429f16SAndrey Konovalov return NULL; 131db429f16SAndrey Konovalov } 132db429f16SAndrey Konovalov 1330c06f1f8SAndrey Konovalov static void describe_object_addr(struct kmem_cache *cache, void *object, 1340c06f1f8SAndrey Konovalov const void *addr) 1350c06f1f8SAndrey Konovalov { 1360c06f1f8SAndrey Konovalov unsigned long access_addr = (unsigned long)addr; 1370c06f1f8SAndrey Konovalov unsigned long object_addr = (unsigned long)object; 1380c06f1f8SAndrey Konovalov const char *rel_type; 1390c06f1f8SAndrey Konovalov int rel_bytes; 1400c06f1f8SAndrey Konovalov 1416424f6bbSTobin C. Harding pr_err("The buggy address belongs to the object at %px\n" 1420c06f1f8SAndrey Konovalov " which belongs to the cache %s of size %d\n", 1430c06f1f8SAndrey Konovalov object, cache->name, cache->object_size); 1440c06f1f8SAndrey Konovalov 1450c06f1f8SAndrey Konovalov if (!addr) 1460c06f1f8SAndrey Konovalov return; 1470c06f1f8SAndrey Konovalov 1480c06f1f8SAndrey Konovalov if (access_addr < object_addr) { 1490c06f1f8SAndrey Konovalov rel_type = "to the left"; 1500c06f1f8SAndrey Konovalov rel_bytes = object_addr - access_addr; 1510c06f1f8SAndrey Konovalov } else if (access_addr >= object_addr + cache->object_size) { 1520c06f1f8SAndrey Konovalov rel_type = "to the right"; 1530c06f1f8SAndrey Konovalov rel_bytes = access_addr - (object_addr + cache->object_size); 1540c06f1f8SAndrey Konovalov } else { 1550c06f1f8SAndrey Konovalov rel_type = "inside"; 1560c06f1f8SAndrey Konovalov rel_bytes = access_addr - object_addr; 1570c06f1f8SAndrey Konovalov } 1580c06f1f8SAndrey Konovalov 1590c06f1f8SAndrey Konovalov pr_err("The buggy address is located %d bytes %s of\n" 1606424f6bbSTobin C. Harding " %d-byte region [%px, %px)\n", 1610c06f1f8SAndrey Konovalov rel_bytes, rel_type, cache->object_size, (void *)object_addr, 1620c06f1f8SAndrey Konovalov (void *)(object_addr + cache->object_size)); 1630c06f1f8SAndrey Konovalov } 1640c06f1f8SAndrey Konovalov 1650c06f1f8SAndrey Konovalov static void describe_object(struct kmem_cache *cache, void *object, 166ae8f06b3SWalter Wu const void *addr, u8 tag) 1677ed2f9e6SAlexander Potapenko { 1687ed2f9e6SAlexander Potapenko struct kasan_alloc_meta *alloc_info = get_alloc_info(cache, object); 1697ed2f9e6SAlexander Potapenko 1700c06f1f8SAndrey Konovalov if (cache->flags & SLAB_KASAN) { 171ae8f06b3SWalter Wu struct kasan_track *free_track; 172ae8f06b3SWalter Wu 173b6b72f49SAndrey Konovalov print_track(&alloc_info->alloc_track, "Allocated"); 174b1938599SAndrey Konovalov pr_err("\n"); 175ae8f06b3SWalter Wu free_track = kasan_get_free_track(cache, object, tag); 176e4b7818bSWalter Wu if (free_track) { 177ae8f06b3SWalter Wu print_track(free_track, "Freed"); 178b1938599SAndrey Konovalov pr_err("\n"); 179e4b7818bSWalter Wu } 18026e760c9SWalter Wu 18126e760c9SWalter Wu #ifdef CONFIG_KASAN_GENERIC 18226e760c9SWalter Wu if (alloc_info->aux_stack[0]) { 183ef133461SWalter Wu pr_err("Last potentially related work creation:\n"); 18426e760c9SWalter Wu print_stack(alloc_info->aux_stack[0]); 18526e760c9SWalter Wu pr_err("\n"); 18626e760c9SWalter Wu } 18726e760c9SWalter Wu if (alloc_info->aux_stack[1]) { 188ef133461SWalter Wu pr_err("Second to last potentially related work creation:\n"); 18926e760c9SWalter Wu print_stack(alloc_info->aux_stack[1]); 19026e760c9SWalter Wu pr_err("\n"); 19126e760c9SWalter Wu } 19226e760c9SWalter Wu #endif 1937ed2f9e6SAlexander Potapenko } 1947ed2f9e6SAlexander Potapenko 1950c06f1f8SAndrey Konovalov describe_object_addr(cache, object, addr); 1960c06f1f8SAndrey Konovalov } 1970c06f1f8SAndrey Konovalov 19811cd3cd6SAndrey Konovalov static inline bool kernel_or_module_addr(const void *addr) 19911cd3cd6SAndrey Konovalov { 20011cd3cd6SAndrey Konovalov if (addr >= (void *)_stext && addr < (void *)_end) 20111cd3cd6SAndrey Konovalov return true; 20211cd3cd6SAndrey Konovalov if (is_module_address((unsigned long)addr)) 20311cd3cd6SAndrey Konovalov return true; 20411cd3cd6SAndrey Konovalov return false; 20511cd3cd6SAndrey Konovalov } 20611cd3cd6SAndrey Konovalov 20711cd3cd6SAndrey Konovalov static inline bool init_task_stack_addr(const void *addr) 20811cd3cd6SAndrey Konovalov { 20911cd3cd6SAndrey Konovalov return addr >= (void *)&init_thread_union.stack && 21011cd3cd6SAndrey Konovalov (addr <= (void *)&init_thread_union.stack + 21111cd3cd6SAndrey Konovalov sizeof(init_thread_union.stack)); 21211cd3cd6SAndrey Konovalov } 21311cd3cd6SAndrey Konovalov 214e8969219SMarco Elver static bool __must_check tokenize_frame_descr(const char **frame_descr, 215e8969219SMarco Elver char *token, size_t max_tok_len, 216e8969219SMarco Elver unsigned long *value) 217e8969219SMarco Elver { 218e8969219SMarco Elver const char *sep = strchr(*frame_descr, ' '); 219e8969219SMarco Elver 220e8969219SMarco Elver if (sep == NULL) 221e8969219SMarco Elver sep = *frame_descr + strlen(*frame_descr); 222e8969219SMarco Elver 223e8969219SMarco Elver if (token != NULL) { 224e8969219SMarco Elver const size_t tok_len = sep - *frame_descr; 225e8969219SMarco Elver 226e8969219SMarco Elver if (tok_len + 1 > max_tok_len) { 227e8969219SMarco Elver pr_err("KASAN internal error: frame description too long: %s\n", 228e8969219SMarco Elver *frame_descr); 229e8969219SMarco Elver return false; 230e8969219SMarco Elver } 231e8969219SMarco Elver 232e8969219SMarco Elver /* Copy token (+ 1 byte for '\0'). */ 233e8969219SMarco Elver strlcpy(token, *frame_descr, tok_len + 1); 234e8969219SMarco Elver } 235e8969219SMarco Elver 236e8969219SMarco Elver /* Advance frame_descr past separator. */ 237e8969219SMarco Elver *frame_descr = sep + 1; 238e8969219SMarco Elver 239e8969219SMarco Elver if (value != NULL && kstrtoul(token, 10, value)) { 240e8969219SMarco Elver pr_err("KASAN internal error: not a valid number: %s\n", token); 241e8969219SMarco Elver return false; 242e8969219SMarco Elver } 243e8969219SMarco Elver 244e8969219SMarco Elver return true; 245e8969219SMarco Elver } 246e8969219SMarco Elver 247e8969219SMarco Elver static void print_decoded_frame_descr(const char *frame_descr) 248e8969219SMarco Elver { 249e8969219SMarco Elver /* 250e8969219SMarco Elver * We need to parse the following string: 251e8969219SMarco Elver * "n alloc_1 alloc_2 ... alloc_n" 252e8969219SMarco Elver * where alloc_i looks like 253e8969219SMarco Elver * "offset size len name" 254e8969219SMarco Elver * or "offset size len name:line". 255e8969219SMarco Elver */ 256e8969219SMarco Elver 257e8969219SMarco Elver char token[64]; 258e8969219SMarco Elver unsigned long num_objects; 259e8969219SMarco Elver 260e8969219SMarco Elver if (!tokenize_frame_descr(&frame_descr, token, sizeof(token), 261e8969219SMarco Elver &num_objects)) 262e8969219SMarco Elver return; 263e8969219SMarco Elver 264e8969219SMarco Elver pr_err("\n"); 265e8969219SMarco Elver pr_err("this frame has %lu %s:\n", num_objects, 266e8969219SMarco Elver num_objects == 1 ? "object" : "objects"); 267e8969219SMarco Elver 268e8969219SMarco Elver while (num_objects--) { 269e8969219SMarco Elver unsigned long offset; 270e8969219SMarco Elver unsigned long size; 271e8969219SMarco Elver 272e8969219SMarco Elver /* access offset */ 273e8969219SMarco Elver if (!tokenize_frame_descr(&frame_descr, token, sizeof(token), 274e8969219SMarco Elver &offset)) 275e8969219SMarco Elver return; 276e8969219SMarco Elver /* access size */ 277e8969219SMarco Elver if (!tokenize_frame_descr(&frame_descr, token, sizeof(token), 278e8969219SMarco Elver &size)) 279e8969219SMarco Elver return; 280e8969219SMarco Elver /* name length (unused) */ 281e8969219SMarco Elver if (!tokenize_frame_descr(&frame_descr, NULL, 0, NULL)) 282e8969219SMarco Elver return; 283e8969219SMarco Elver /* object name */ 284e8969219SMarco Elver if (!tokenize_frame_descr(&frame_descr, token, sizeof(token), 285e8969219SMarco Elver NULL)) 286e8969219SMarco Elver return; 287e8969219SMarco Elver 288e8969219SMarco Elver /* Strip line number; without filename it's not very helpful. */ 289e8969219SMarco Elver strreplace(token, ':', '\0'); 290e8969219SMarco Elver 291e8969219SMarco Elver /* Finally, print object information. */ 292e8969219SMarco Elver pr_err(" [%lu, %lu) '%s'", offset, offset + size, token); 293e8969219SMarco Elver } 294e8969219SMarco Elver } 295e8969219SMarco Elver 296e8969219SMarco Elver static bool __must_check get_address_stack_frame_info(const void *addr, 297e8969219SMarco Elver unsigned long *offset, 298e8969219SMarco Elver const char **frame_descr, 299e8969219SMarco Elver const void **frame_pc) 300e8969219SMarco Elver { 301e8969219SMarco Elver unsigned long aligned_addr; 302e8969219SMarco Elver unsigned long mem_ptr; 303e8969219SMarco Elver const u8 *shadow_bottom; 304e8969219SMarco Elver const u8 *shadow_ptr; 305e8969219SMarco Elver const unsigned long *frame; 306e8969219SMarco Elver 307e8969219SMarco Elver BUILD_BUG_ON(IS_ENABLED(CONFIG_STACK_GROWSUP)); 308e8969219SMarco Elver 309e8969219SMarco Elver /* 310e8969219SMarco Elver * NOTE: We currently only support printing frame information for 311e8969219SMarco Elver * accesses to the task's own stack. 312e8969219SMarco Elver */ 313e8969219SMarco Elver if (!object_is_on_stack(addr)) 314e8969219SMarco Elver return false; 315e8969219SMarco Elver 316e8969219SMarco Elver aligned_addr = round_down((unsigned long)addr, sizeof(long)); 3171f600626SAndrey Konovalov mem_ptr = round_down(aligned_addr, KASAN_GRANULE_SIZE); 318e8969219SMarco Elver shadow_ptr = kasan_mem_to_shadow((void *)aligned_addr); 319e8969219SMarco Elver shadow_bottom = kasan_mem_to_shadow(end_of_stack(current)); 320e8969219SMarco Elver 321e8969219SMarco Elver while (shadow_ptr >= shadow_bottom && *shadow_ptr != KASAN_STACK_LEFT) { 322e8969219SMarco Elver shadow_ptr--; 3231f600626SAndrey Konovalov mem_ptr -= KASAN_GRANULE_SIZE; 324e8969219SMarco Elver } 325e8969219SMarco Elver 326e8969219SMarco Elver while (shadow_ptr >= shadow_bottom && *shadow_ptr == KASAN_STACK_LEFT) { 327e8969219SMarco Elver shadow_ptr--; 3281f600626SAndrey Konovalov mem_ptr -= KASAN_GRANULE_SIZE; 329e8969219SMarco Elver } 330e8969219SMarco Elver 331e8969219SMarco Elver if (shadow_ptr < shadow_bottom) 332e8969219SMarco Elver return false; 333e8969219SMarco Elver 3341f600626SAndrey Konovalov frame = (const unsigned long *)(mem_ptr + KASAN_GRANULE_SIZE); 335e8969219SMarco Elver if (frame[0] != KASAN_CURRENT_STACK_FRAME_MAGIC) { 336e8969219SMarco Elver pr_err("KASAN internal error: frame info validation failed; invalid marker: %lu\n", 337e8969219SMarco Elver frame[0]); 338e8969219SMarco Elver return false; 339e8969219SMarco Elver } 340e8969219SMarco Elver 341e8969219SMarco Elver *offset = (unsigned long)addr - (unsigned long)frame; 342e8969219SMarco Elver *frame_descr = (const char *)frame[1]; 343e8969219SMarco Elver *frame_pc = (void *)frame[2]; 344e8969219SMarco Elver 345e8969219SMarco Elver return true; 346e8969219SMarco Elver } 347e8969219SMarco Elver 348e8969219SMarco Elver static void print_address_stack_frame(const void *addr) 349e8969219SMarco Elver { 350e8969219SMarco Elver unsigned long offset; 351e8969219SMarco Elver const char *frame_descr; 352e8969219SMarco Elver const void *frame_pc; 353e8969219SMarco Elver 354e8969219SMarco Elver if (IS_ENABLED(CONFIG_KASAN_SW_TAGS)) 355e8969219SMarco Elver return; 356e8969219SMarco Elver 357e8969219SMarco Elver if (!get_address_stack_frame_info(addr, &offset, &frame_descr, 358e8969219SMarco Elver &frame_pc)) 359e8969219SMarco Elver return; 360e8969219SMarco Elver 361e8969219SMarco Elver /* 362e8969219SMarco Elver * get_address_stack_frame_info only returns true if the given addr is 363e8969219SMarco Elver * on the current task's stack. 364e8969219SMarco Elver */ 365e8969219SMarco Elver pr_err("\n"); 366e8969219SMarco Elver pr_err("addr %px is located in stack of task %s/%d at offset %lu in frame:\n", 367e8969219SMarco Elver addr, current->comm, task_pid_nr(current), offset); 368e8969219SMarco Elver pr_err(" %pS\n", frame_pc); 369e8969219SMarco Elver 370e8969219SMarco Elver if (!frame_descr) 371e8969219SMarco Elver return; 372e8969219SMarco Elver 373e8969219SMarco Elver print_decoded_frame_descr(frame_descr); 374e8969219SMarco Elver } 375e8969219SMarco Elver 376ae8f06b3SWalter Wu static void print_address_description(void *addr, u8 tag) 3777e088978SAndrey Ryabinin { 378ae8f06b3SWalter Wu struct page *page = kasan_addr_to_page(addr); 379b8c73fc2SAndrey Ryabinin 380db429f16SAndrey Konovalov dump_stack(); 381b1938599SAndrey Konovalov pr_err("\n"); 382db429f16SAndrey Konovalov 383db429f16SAndrey Konovalov if (page && PageSlab(page)) { 384db429f16SAndrey Konovalov struct kmem_cache *cache = page->slab_cache; 3850c06f1f8SAndrey Konovalov void *object = nearest_obj(cache, page, addr); 386db429f16SAndrey Konovalov 387ae8f06b3SWalter Wu describe_object(cache, object, addr, tag); 388b8c73fc2SAndrey Ryabinin } 389b8c73fc2SAndrey Ryabinin 390430a05f9SAndrey Konovalov if (kernel_or_module_addr(addr) && !init_task_stack_addr(addr)) { 391430a05f9SAndrey Konovalov pr_err("The buggy address belongs to the variable:\n"); 392430a05f9SAndrey Konovalov pr_err(" %pS\n", addr); 393430a05f9SAndrey Konovalov } 394430a05f9SAndrey Konovalov 395430a05f9SAndrey Konovalov if (page) { 396430a05f9SAndrey Konovalov pr_err("The buggy address belongs to the page:\n"); 397430a05f9SAndrey Konovalov dump_page(page, "kasan: bad access detected"); 398bebf56a1SAndrey Ryabinin } 399e8969219SMarco Elver 400e8969219SMarco Elver print_address_stack_frame(addr); 4010b24beccSAndrey Ryabinin } 4020b24beccSAndrey Ryabinin 4030b24beccSAndrey Ryabinin static bool row_is_guilty(const void *row, const void *guilty) 4040b24beccSAndrey Ryabinin { 4050b24beccSAndrey Ryabinin return (row <= guilty) && (guilty < row + SHADOW_BYTES_PER_ROW); 4060b24beccSAndrey Ryabinin } 4070b24beccSAndrey Ryabinin 4080b24beccSAndrey Ryabinin static int shadow_pointer_offset(const void *row, const void *shadow) 4090b24beccSAndrey Ryabinin { 4100b24beccSAndrey Ryabinin /* The length of ">ff00ff00ff00ff00: " is 4110b24beccSAndrey Ryabinin * 3 + (BITS_PER_LONG/8)*2 chars. 4120b24beccSAndrey Ryabinin */ 4130b24beccSAndrey Ryabinin return 3 + (BITS_PER_LONG/8)*2 + (shadow - row)*2 + 4140b24beccSAndrey Ryabinin (shadow - row) / SHADOW_BYTES_PER_BLOCK + 1; 4150b24beccSAndrey Ryabinin } 4160b24beccSAndrey Ryabinin 4170b24beccSAndrey Ryabinin static void print_shadow_for_address(const void *addr) 4180b24beccSAndrey Ryabinin { 4190b24beccSAndrey Ryabinin int i; 4200b24beccSAndrey Ryabinin const void *shadow = kasan_mem_to_shadow(addr); 4210b24beccSAndrey Ryabinin const void *shadow_row; 4220b24beccSAndrey Ryabinin 4230b24beccSAndrey Ryabinin shadow_row = (void *)round_down((unsigned long)shadow, 4240b24beccSAndrey Ryabinin SHADOW_BYTES_PER_ROW) 4250b24beccSAndrey Ryabinin - SHADOW_ROWS_AROUND_ADDR * SHADOW_BYTES_PER_ROW; 4260b24beccSAndrey Ryabinin 4270b24beccSAndrey Ryabinin pr_err("Memory state around the buggy address:\n"); 4280b24beccSAndrey Ryabinin 4290b24beccSAndrey Ryabinin for (i = -SHADOW_ROWS_AROUND_ADDR; i <= SHADOW_ROWS_AROUND_ADDR; i++) { 4300b24beccSAndrey Ryabinin const void *kaddr = kasan_shadow_to_mem(shadow_row); 4310b24beccSAndrey Ryabinin char buffer[4 + (BITS_PER_LONG/8)*2]; 432f2377d4eSAneesh Kumar K.V char shadow_buf[SHADOW_BYTES_PER_ROW]; 4330b24beccSAndrey Ryabinin 4340b24beccSAndrey Ryabinin snprintf(buffer, sizeof(buffer), 4356424f6bbSTobin C. Harding (i == 0) ? ">%px: " : " %px: ", kaddr); 436f2377d4eSAneesh Kumar K.V /* 437f2377d4eSAneesh Kumar K.V * We should not pass a shadow pointer to generic 438f2377d4eSAneesh Kumar K.V * function, because generic functions may try to 439f2377d4eSAneesh Kumar K.V * access kasan mapping for the passed address. 440f2377d4eSAneesh Kumar K.V */ 441f2377d4eSAneesh Kumar K.V memcpy(shadow_buf, shadow_row, SHADOW_BYTES_PER_ROW); 4420b24beccSAndrey Ryabinin print_hex_dump(KERN_ERR, buffer, 4430b24beccSAndrey Ryabinin DUMP_PREFIX_NONE, SHADOW_BYTES_PER_ROW, 1, 444f2377d4eSAneesh Kumar K.V shadow_buf, SHADOW_BYTES_PER_ROW, 0); 4450b24beccSAndrey Ryabinin 4460b24beccSAndrey Ryabinin if (row_is_guilty(shadow_row, shadow)) 4470b24beccSAndrey Ryabinin pr_err("%*c\n", 4480b24beccSAndrey Ryabinin shadow_pointer_offset(shadow_row, shadow), 4490b24beccSAndrey Ryabinin '^'); 4500b24beccSAndrey Ryabinin 4510b24beccSAndrey Ryabinin shadow_row += SHADOW_BYTES_PER_ROW; 4520b24beccSAndrey Ryabinin } 4530b24beccSAndrey Ryabinin } 4540b24beccSAndrey Ryabinin 4554fba3758SAndrey Konovalov static bool report_enabled(void) 456b0845ce5SMark Rutland { 457b0845ce5SMark Rutland if (current->kasan_depth) 458b0845ce5SMark Rutland return false; 459b0845ce5SMark Rutland if (test_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags)) 460b0845ce5SMark Rutland return true; 461b0845ce5SMark Rutland return !test_and_set_bit(KASAN_BIT_REPORTED, &kasan_flags); 462b0845ce5SMark Rutland } 463b0845ce5SMark Rutland 46483c4e7a0SPatricia Alfonso #if IS_ENABLED(CONFIG_KUNIT) 46583c4e7a0SPatricia Alfonso static void kasan_update_kunit_status(struct kunit *cur_test) 46683c4e7a0SPatricia Alfonso { 46783c4e7a0SPatricia Alfonso struct kunit_resource *resource; 46883c4e7a0SPatricia Alfonso struct kunit_kasan_expectation *kasan_data; 46983c4e7a0SPatricia Alfonso 47083c4e7a0SPatricia Alfonso resource = kunit_find_named_resource(cur_test, "kasan_data"); 47183c4e7a0SPatricia Alfonso 47283c4e7a0SPatricia Alfonso if (!resource) { 47383c4e7a0SPatricia Alfonso kunit_set_failure(cur_test); 47483c4e7a0SPatricia Alfonso return; 47583c4e7a0SPatricia Alfonso } 47683c4e7a0SPatricia Alfonso 47783c4e7a0SPatricia Alfonso kasan_data = (struct kunit_kasan_expectation *)resource->data; 47883c4e7a0SPatricia Alfonso kasan_data->report_found = true; 47983c4e7a0SPatricia Alfonso kunit_put_resource(resource); 48083c4e7a0SPatricia Alfonso } 48183c4e7a0SPatricia Alfonso #endif /* IS_ENABLED(CONFIG_KUNIT) */ 48283c4e7a0SPatricia Alfonso 48311cd3cd6SAndrey Konovalov void kasan_report_invalid_free(void *object, unsigned long ip) 48411cd3cd6SAndrey Konovalov { 48511cd3cd6SAndrey Konovalov unsigned long flags; 486ae8f06b3SWalter Wu u8 tag = get_tag(object); 48711cd3cd6SAndrey Konovalov 488ae8f06b3SWalter Wu object = reset_tag(object); 48983c4e7a0SPatricia Alfonso 49083c4e7a0SPatricia Alfonso #if IS_ENABLED(CONFIG_KUNIT) 49183c4e7a0SPatricia Alfonso if (current->kunit_test) 49283c4e7a0SPatricia Alfonso kasan_update_kunit_status(current->kunit_test); 49383c4e7a0SPatricia Alfonso #endif /* IS_ENABLED(CONFIG_KUNIT) */ 49483c4e7a0SPatricia Alfonso 49511cd3cd6SAndrey Konovalov start_report(&flags); 49611cd3cd6SAndrey Konovalov pr_err("BUG: KASAN: double-free or invalid-free in %pS\n", (void *)ip); 497ae8f06b3SWalter Wu print_tags(tag, object); 49811cd3cd6SAndrey Konovalov pr_err("\n"); 499ae8f06b3SWalter Wu print_address_description(object, tag); 50011cd3cd6SAndrey Konovalov pr_err("\n"); 50111cd3cd6SAndrey Konovalov print_shadow_for_address(object); 50211cd3cd6SAndrey Konovalov end_report(&flags); 50311cd3cd6SAndrey Konovalov } 50411cd3cd6SAndrey Konovalov 5054fba3758SAndrey Konovalov static void __kasan_report(unsigned long addr, size_t size, bool is_write, 5064fba3758SAndrey Konovalov unsigned long ip) 5070b24beccSAndrey Ryabinin { 5080b24beccSAndrey Ryabinin struct kasan_access_info info; 509121e8f81SAndrey Konovalov void *tagged_addr; 510121e8f81SAndrey Konovalov void *untagged_addr; 511121e8f81SAndrey Konovalov unsigned long flags; 5120b24beccSAndrey Ryabinin 51383c4e7a0SPatricia Alfonso #if IS_ENABLED(CONFIG_KUNIT) 51483c4e7a0SPatricia Alfonso if (current->kunit_test) 51583c4e7a0SPatricia Alfonso kasan_update_kunit_status(current->kunit_test); 51683c4e7a0SPatricia Alfonso #endif /* IS_ENABLED(CONFIG_KUNIT) */ 51783c4e7a0SPatricia Alfonso 5184f40c6e5SPeter Zijlstra disable_trace_on_warning(); 5194f40c6e5SPeter Zijlstra 520121e8f81SAndrey Konovalov tagged_addr = (void *)addr; 521121e8f81SAndrey Konovalov untagged_addr = reset_tag(tagged_addr); 522121e8f81SAndrey Konovalov 523121e8f81SAndrey Konovalov info.access_addr = tagged_addr; 524121e8f81SAndrey Konovalov if (addr_has_shadow(untagged_addr)) 525121e8f81SAndrey Konovalov info.first_bad_addr = find_first_bad_addr(tagged_addr, size); 526121e8f81SAndrey Konovalov else 527121e8f81SAndrey Konovalov info.first_bad_addr = untagged_addr; 5280b24beccSAndrey Ryabinin info.access_size = size; 5290b24beccSAndrey Ryabinin info.is_write = is_write; 5300b24beccSAndrey Ryabinin info.ip = ip; 531e9121076SAndrey Konovalov 532121e8f81SAndrey Konovalov start_report(&flags); 533121e8f81SAndrey Konovalov 534121e8f81SAndrey Konovalov print_error_description(&info); 535121e8f81SAndrey Konovalov if (addr_has_shadow(untagged_addr)) 536121e8f81SAndrey Konovalov print_tags(get_tag(tagged_addr), info.first_bad_addr); 537121e8f81SAndrey Konovalov pr_err("\n"); 538121e8f81SAndrey Konovalov 539121e8f81SAndrey Konovalov if (addr_has_shadow(untagged_addr)) { 540ae8f06b3SWalter Wu print_address_description(untagged_addr, get_tag(tagged_addr)); 541121e8f81SAndrey Konovalov pr_err("\n"); 542121e8f81SAndrey Konovalov print_shadow_for_address(info.first_bad_addr); 543121e8f81SAndrey Konovalov } else { 544121e8f81SAndrey Konovalov dump_stack(); 545121e8f81SAndrey Konovalov } 546121e8f81SAndrey Konovalov 547121e8f81SAndrey Konovalov end_report(&flags); 5480b24beccSAndrey Ryabinin } 5492f004eeaSJann Horn 5504fba3758SAndrey Konovalov bool kasan_report(unsigned long addr, size_t size, bool is_write, 5514fba3758SAndrey Konovalov unsigned long ip) 5524fba3758SAndrey Konovalov { 5534fba3758SAndrey Konovalov unsigned long flags = user_access_save(); 5544fba3758SAndrey Konovalov bool ret = false; 5554fba3758SAndrey Konovalov 5564fba3758SAndrey Konovalov if (likely(report_enabled())) { 5574fba3758SAndrey Konovalov __kasan_report(addr, size, is_write, ip); 5584fba3758SAndrey Konovalov ret = true; 5594fba3758SAndrey Konovalov } 5604fba3758SAndrey Konovalov 5614fba3758SAndrey Konovalov user_access_restore(flags); 5624fba3758SAndrey Konovalov 5634fba3758SAndrey Konovalov return ret; 5644fba3758SAndrey Konovalov } 5654fba3758SAndrey Konovalov 5662f004eeaSJann Horn #ifdef CONFIG_KASAN_INLINE 5672f004eeaSJann Horn /* 5682f004eeaSJann Horn * With CONFIG_KASAN_INLINE, accesses to bogus pointers (outside the high 5692f004eeaSJann Horn * canonical half of the address space) cause out-of-bounds shadow memory reads 5702f004eeaSJann Horn * before the actual access. For addresses in the low canonical half of the 5712f004eeaSJann Horn * address space, as well as most non-canonical addresses, that out-of-bounds 5722f004eeaSJann Horn * shadow memory access lands in the non-canonical part of the address space. 5732f004eeaSJann Horn * Help the user figure out what the original bogus pointer was. 5742f004eeaSJann Horn */ 5752f004eeaSJann Horn void kasan_non_canonical_hook(unsigned long addr) 5762f004eeaSJann Horn { 5772f004eeaSJann Horn unsigned long orig_addr; 5782f004eeaSJann Horn const char *bug_type; 5792f004eeaSJann Horn 5802f004eeaSJann Horn if (addr < KASAN_SHADOW_OFFSET) 5812f004eeaSJann Horn return; 5822f004eeaSJann Horn 5832f004eeaSJann Horn orig_addr = (addr - KASAN_SHADOW_OFFSET) << KASAN_SHADOW_SCALE_SHIFT; 5842f004eeaSJann Horn /* 5852f004eeaSJann Horn * For faults near the shadow address for NULL, we can be fairly certain 5862f004eeaSJann Horn * that this is a KASAN shadow memory access. 5872f004eeaSJann Horn * For faults that correspond to shadow for low canonical addresses, we 5882f004eeaSJann Horn * can still be pretty sure - that shadow region is a fairly narrow 5892f004eeaSJann Horn * chunk of the non-canonical address space. 5902f004eeaSJann Horn * But faults that look like shadow for non-canonical addresses are a 5912f004eeaSJann Horn * really large chunk of the address space. In that case, we still 5922f004eeaSJann Horn * print the decoded address, but make it clear that this is not 5932f004eeaSJann Horn * necessarily what's actually going on. 5942f004eeaSJann Horn */ 5952f004eeaSJann Horn if (orig_addr < PAGE_SIZE) 5962f004eeaSJann Horn bug_type = "null-ptr-deref"; 5972f004eeaSJann Horn else if (orig_addr < TASK_SIZE) 5982f004eeaSJann Horn bug_type = "probably user-memory-access"; 5992f004eeaSJann Horn else 6002f004eeaSJann Horn bug_type = "maybe wild-memory-access"; 6012f004eeaSJann Horn pr_alert("KASAN: %s in range [0x%016lx-0x%016lx]\n", bug_type, 6021f600626SAndrey Konovalov orig_addr, orig_addr + KASAN_GRANULE_SIZE - 1); 6032f004eeaSJann Horn } 6042f004eeaSJann Horn #endif 605