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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * This file contains common generic and tag-based KASAN error reporting code.
4  *
5  * Copyright (c) 2014 Samsung Electronics Co., Ltd.
6  * Author: Andrey Ryabinin <ryabinin.a.a@gmail.com>
7  *
8  * Some code borrowed from https://github.com/xairy/kasan-prototype by
9  *        Andrey Konovalov <andreyknvl@gmail.com>
10  *
11  * This program is free software; you can redistribute it and/or modify
12  * it under the terms of the GNU General Public License version 2 as
13  * published by the Free Software Foundation.
14  *
15  */
16 
17 #include <linux/bitops.h>
18 #include <linux/ftrace.h>
19 #include <linux/init.h>
20 #include <linux/kernel.h>
21 #include <linux/mm.h>
22 #include <linux/printk.h>
23 #include <linux/sched.h>
24 #include <linux/slab.h>
25 #include <linux/stackdepot.h>
26 #include <linux/stacktrace.h>
27 #include <linux/string.h>
28 #include <linux/types.h>
29 #include <linux/kasan.h>
30 #include <linux/module.h>
31 #include <linux/sched/task_stack.h>
32 #include <linux/uaccess.h>
33 
34 #include <asm/sections.h>
35 
36 #include <kunit/test.h>
37 
38 #include "kasan.h"
39 #include "../slab.h"
40 
41 /* Shadow layout customization. */
42 #define SHADOW_BYTES_PER_BLOCK 1
43 #define SHADOW_BLOCKS_PER_ROW 16
44 #define SHADOW_BYTES_PER_ROW (SHADOW_BLOCKS_PER_ROW * SHADOW_BYTES_PER_BLOCK)
45 #define SHADOW_ROWS_AROUND_ADDR 2
46 
47 static unsigned long kasan_flags;
48 
49 #define KASAN_BIT_REPORTED	0
50 #define KASAN_BIT_MULTI_SHOT	1
51 
kasan_save_enable_multi_shot(void)52 bool kasan_save_enable_multi_shot(void)
53 {
54 	return test_and_set_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags);
55 }
56 EXPORT_SYMBOL_GPL(kasan_save_enable_multi_shot);
57 
kasan_restore_multi_shot(bool enabled)58 void kasan_restore_multi_shot(bool enabled)
59 {
60 	if (!enabled)
61 		clear_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags);
62 }
63 EXPORT_SYMBOL_GPL(kasan_restore_multi_shot);
64 
kasan_set_multi_shot(char * str)65 static int __init kasan_set_multi_shot(char *str)
66 {
67 	set_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags);
68 	return 1;
69 }
70 __setup("kasan_multi_shot", kasan_set_multi_shot);
71 
print_error_description(struct kasan_access_info * info)72 static void print_error_description(struct kasan_access_info *info)
73 {
74 	pr_err("BUG: KASAN: %s in %pS\n",
75 		get_bug_type(info), (void *)info->ip);
76 	pr_err("%s of size %zu at addr %px by task %s/%d\n",
77 		info->is_write ? "Write" : "Read", info->access_size,
78 		info->access_addr, current->comm, task_pid_nr(current));
79 }
80 
81 static DEFINE_SPINLOCK(report_lock);
82 
start_report(unsigned long * flags)83 static void start_report(unsigned long *flags)
84 {
85 	/*
86 	 * Make sure we don't end up in loop.
87 	 */
88 	kasan_disable_current();
89 	spin_lock_irqsave(&report_lock, *flags);
90 	pr_err("==================================================================\n");
91 }
92 
end_report(unsigned long * flags)93 static void end_report(unsigned long *flags)
94 {
95 	pr_err("==================================================================\n");
96 	add_taint(TAINT_BAD_PAGE, LOCKDEP_NOW_UNRELIABLE);
97 	spin_unlock_irqrestore(&report_lock, *flags);
98 	if (!test_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags))
99 		check_panic_on_warn("KASAN");
100 	kasan_enable_current();
101 }
102 
print_stack(depot_stack_handle_t stack)103 static void print_stack(depot_stack_handle_t stack)
104 {
105 	unsigned long *entries;
106 	unsigned int nr_entries;
107 
108 	nr_entries = stack_depot_fetch(stack, &entries);
109 	stack_trace_print(entries, nr_entries, 0);
110 }
111 
print_track(struct kasan_track * track,const char * prefix)112 static void print_track(struct kasan_track *track, const char *prefix)
113 {
114 	pr_err("%s by task %u:\n", prefix, track->pid);
115 	if (track->stack) {
116 		print_stack(track->stack);
117 	} else {
118 		pr_err("(stack is not available)\n");
119 	}
120 }
121 
kasan_addr_to_page(const void * addr)122 struct page *kasan_addr_to_page(const void *addr)
123 {
124 	if ((addr >= (void *)PAGE_OFFSET) &&
125 			(addr < high_memory))
126 		return virt_to_head_page(addr);
127 	return NULL;
128 }
129 
describe_object_addr(struct kmem_cache * cache,void * object,const void * addr)130 static void describe_object_addr(struct kmem_cache *cache, void *object,
131 				const void *addr)
132 {
133 	unsigned long access_addr = (unsigned long)addr;
134 	unsigned long object_addr = (unsigned long)object;
135 	const char *rel_type;
136 	int rel_bytes;
137 
138 	pr_err("The buggy address belongs to the object at %px\n"
139 	       " which belongs to the cache %s of size %d\n",
140 		object, cache->name, cache->object_size);
141 
142 	if (!addr)
143 		return;
144 
145 	if (access_addr < object_addr) {
146 		rel_type = "to the left";
147 		rel_bytes = object_addr - access_addr;
148 	} else if (access_addr >= object_addr + cache->object_size) {
149 		rel_type = "to the right";
150 		rel_bytes = access_addr - (object_addr + cache->object_size);
151 	} else {
152 		rel_type = "inside";
153 		rel_bytes = access_addr - object_addr;
154 	}
155 
156 	pr_err("The buggy address is located %d bytes %s of\n"
157 	       " %d-byte region [%px, %px)\n",
158 		rel_bytes, rel_type, cache->object_size, (void *)object_addr,
159 		(void *)(object_addr + cache->object_size));
160 }
161 
describe_object(struct kmem_cache * cache,void * object,const void * addr,u8 tag)162 static void describe_object(struct kmem_cache *cache, void *object,
163 				const void *addr, u8 tag)
164 {
165 	struct kasan_alloc_meta *alloc_info = get_alloc_info(cache, object);
166 
167 	if (cache->flags & SLAB_KASAN) {
168 		struct kasan_track *free_track;
169 
170 		print_track(&alloc_info->alloc_track, "Allocated");
171 		pr_err("\n");
172 		free_track = kasan_get_free_track(cache, object, tag);
173 		if (free_track) {
174 			print_track(free_track, "Freed");
175 			pr_err("\n");
176 		}
177 
178 #ifdef CONFIG_KASAN_GENERIC
179 		if (alloc_info->aux_stack[0]) {
180 			pr_err("Last call_rcu():\n");
181 			print_stack(alloc_info->aux_stack[0]);
182 			pr_err("\n");
183 		}
184 		if (alloc_info->aux_stack[1]) {
185 			pr_err("Second to last call_rcu():\n");
186 			print_stack(alloc_info->aux_stack[1]);
187 			pr_err("\n");
188 		}
189 #endif
190 	}
191 
192 	describe_object_addr(cache, object, addr);
193 }
194 
kernel_or_module_addr(const void * addr)195 static inline bool kernel_or_module_addr(const void *addr)
196 {
197 	if (addr >= (void *)_stext && addr < (void *)_end)
198 		return true;
199 	if (is_module_address((unsigned long)addr))
200 		return true;
201 	return false;
202 }
203 
init_task_stack_addr(const void * addr)204 static inline bool init_task_stack_addr(const void *addr)
205 {
206 	return addr >= (void *)&init_thread_union.stack &&
207 		(addr <= (void *)&init_thread_union.stack +
208 			sizeof(init_thread_union.stack));
209 }
210 
tokenize_frame_descr(const char ** frame_descr,char * token,size_t max_tok_len,unsigned long * value)211 static bool __must_check tokenize_frame_descr(const char **frame_descr,
212 					      char *token, size_t max_tok_len,
213 					      unsigned long *value)
214 {
215 	const char *sep = strchr(*frame_descr, ' ');
216 
217 	if (sep == NULL)
218 		sep = *frame_descr + strlen(*frame_descr);
219 
220 	if (token != NULL) {
221 		const size_t tok_len = sep - *frame_descr;
222 
223 		if (tok_len + 1 > max_tok_len) {
224 			pr_err("KASAN internal error: frame description too long: %s\n",
225 			       *frame_descr);
226 			return false;
227 		}
228 
229 		/* Copy token (+ 1 byte for '\0'). */
230 		strlcpy(token, *frame_descr, tok_len + 1);
231 	}
232 
233 	/* Advance frame_descr past separator. */
234 	*frame_descr = sep + 1;
235 
236 	if (value != NULL && kstrtoul(token, 10, value)) {
237 		pr_err("KASAN internal error: not a valid number: %s\n", token);
238 		return false;
239 	}
240 
241 	return true;
242 }
243 
print_decoded_frame_descr(const char * frame_descr)244 static void print_decoded_frame_descr(const char *frame_descr)
245 {
246 	/*
247 	 * We need to parse the following string:
248 	 *    "n alloc_1 alloc_2 ... alloc_n"
249 	 * where alloc_i looks like
250 	 *    "offset size len name"
251 	 * or "offset size len name:line".
252 	 */
253 
254 	char token[64];
255 	unsigned long num_objects;
256 
257 	if (!tokenize_frame_descr(&frame_descr, token, sizeof(token),
258 				  &num_objects))
259 		return;
260 
261 	pr_err("\n");
262 	pr_err("this frame has %lu %s:\n", num_objects,
263 	       num_objects == 1 ? "object" : "objects");
264 
265 	while (num_objects--) {
266 		unsigned long offset;
267 		unsigned long size;
268 
269 		/* access offset */
270 		if (!tokenize_frame_descr(&frame_descr, token, sizeof(token),
271 					  &offset))
272 			return;
273 		/* access size */
274 		if (!tokenize_frame_descr(&frame_descr, token, sizeof(token),
275 					  &size))
276 			return;
277 		/* name length (unused) */
278 		if (!tokenize_frame_descr(&frame_descr, NULL, 0, NULL))
279 			return;
280 		/* object name */
281 		if (!tokenize_frame_descr(&frame_descr, token, sizeof(token),
282 					  NULL))
283 			return;
284 
285 		/* Strip line number; without filename it's not very helpful. */
286 		strreplace(token, ':', '\0');
287 
288 		/* Finally, print object information. */
289 		pr_err(" [%lu, %lu) '%s'", offset, offset + size, token);
290 	}
291 }
292 
get_address_stack_frame_info(const void * addr,unsigned long * offset,const char ** frame_descr,const void ** frame_pc)293 static bool __must_check get_address_stack_frame_info(const void *addr,
294 						      unsigned long *offset,
295 						      const char **frame_descr,
296 						      const void **frame_pc)
297 {
298 	unsigned long aligned_addr;
299 	unsigned long mem_ptr;
300 	const u8 *shadow_bottom;
301 	const u8 *shadow_ptr;
302 	const unsigned long *frame;
303 
304 	BUILD_BUG_ON(IS_ENABLED(CONFIG_STACK_GROWSUP));
305 
306 	/*
307 	 * NOTE: We currently only support printing frame information for
308 	 * accesses to the task's own stack.
309 	 */
310 	if (!object_is_on_stack(addr))
311 		return false;
312 
313 	aligned_addr = round_down((unsigned long)addr, sizeof(long));
314 	mem_ptr = round_down(aligned_addr, KASAN_SHADOW_SCALE_SIZE);
315 	shadow_ptr = kasan_mem_to_shadow((void *)aligned_addr);
316 	shadow_bottom = kasan_mem_to_shadow(end_of_stack(current));
317 
318 	while (shadow_ptr >= shadow_bottom && *shadow_ptr != KASAN_STACK_LEFT) {
319 		shadow_ptr--;
320 		mem_ptr -= KASAN_SHADOW_SCALE_SIZE;
321 	}
322 
323 	while (shadow_ptr >= shadow_bottom && *shadow_ptr == KASAN_STACK_LEFT) {
324 		shadow_ptr--;
325 		mem_ptr -= KASAN_SHADOW_SCALE_SIZE;
326 	}
327 
328 	if (shadow_ptr < shadow_bottom)
329 		return false;
330 
331 	frame = (const unsigned long *)(mem_ptr + KASAN_SHADOW_SCALE_SIZE);
332 	if (frame[0] != KASAN_CURRENT_STACK_FRAME_MAGIC) {
333 		pr_err("KASAN internal error: frame info validation failed; invalid marker: %lu\n",
334 		       frame[0]);
335 		return false;
336 	}
337 
338 	*offset = (unsigned long)addr - (unsigned long)frame;
339 	*frame_descr = (const char *)frame[1];
340 	*frame_pc = (void *)frame[2];
341 
342 	return true;
343 }
344 
print_address_stack_frame(const void * addr)345 static void print_address_stack_frame(const void *addr)
346 {
347 	unsigned long offset;
348 	const char *frame_descr;
349 	const void *frame_pc;
350 
351 	if (IS_ENABLED(CONFIG_KASAN_SW_TAGS))
352 		return;
353 
354 	if (!get_address_stack_frame_info(addr, &offset, &frame_descr,
355 					  &frame_pc))
356 		return;
357 
358 	/*
359 	 * get_address_stack_frame_info only returns true if the given addr is
360 	 * on the current task's stack.
361 	 */
362 	pr_err("\n");
363 	pr_err("addr %px is located in stack of task %s/%d at offset %lu in frame:\n",
364 	       addr, current->comm, task_pid_nr(current), offset);
365 	pr_err(" %pS\n", frame_pc);
366 
367 	if (!frame_descr)
368 		return;
369 
370 	print_decoded_frame_descr(frame_descr);
371 }
372 
print_address_description(void * addr,u8 tag)373 static void print_address_description(void *addr, u8 tag)
374 {
375 	struct page *page = kasan_addr_to_page(addr);
376 
377 	dump_stack();
378 	pr_err("\n");
379 
380 	if (page && PageSlab(page)) {
381 		struct kmem_cache *cache = page->slab_cache;
382 		void *object = nearest_obj(cache, page,	addr);
383 
384 		describe_object(cache, object, addr, tag);
385 	}
386 
387 	if (kernel_or_module_addr(addr) && !init_task_stack_addr(addr)) {
388 		pr_err("The buggy address belongs to the variable:\n");
389 		pr_err(" %pS\n", addr);
390 	}
391 
392 	if (page) {
393 		pr_err("The buggy address belongs to the page:\n");
394 		dump_page(page, "kasan: bad access detected");
395 	}
396 
397 	print_address_stack_frame(addr);
398 }
399 
row_is_guilty(const void * row,const void * guilty)400 static bool row_is_guilty(const void *row, const void *guilty)
401 {
402 	return (row <= guilty) && (guilty < row + SHADOW_BYTES_PER_ROW);
403 }
404 
shadow_pointer_offset(const void * row,const void * shadow)405 static int shadow_pointer_offset(const void *row, const void *shadow)
406 {
407 	/* The length of ">ff00ff00ff00ff00: " is
408 	 *    3 + (BITS_PER_LONG/8)*2 chars.
409 	 */
410 	return 3 + (BITS_PER_LONG/8)*2 + (shadow - row)*2 +
411 		(shadow - row) / SHADOW_BYTES_PER_BLOCK + 1;
412 }
413 
print_shadow_for_address(const void * addr)414 static void print_shadow_for_address(const void *addr)
415 {
416 	int i;
417 	const void *shadow = kasan_mem_to_shadow(addr);
418 	const void *shadow_row;
419 
420 	shadow_row = (void *)round_down((unsigned long)shadow,
421 					SHADOW_BYTES_PER_ROW)
422 		- SHADOW_ROWS_AROUND_ADDR * SHADOW_BYTES_PER_ROW;
423 
424 	pr_err("Memory state around the buggy address:\n");
425 
426 	for (i = -SHADOW_ROWS_AROUND_ADDR; i <= SHADOW_ROWS_AROUND_ADDR; i++) {
427 		const void *kaddr = kasan_shadow_to_mem(shadow_row);
428 		char buffer[4 + (BITS_PER_LONG/8)*2];
429 		char shadow_buf[SHADOW_BYTES_PER_ROW];
430 
431 		snprintf(buffer, sizeof(buffer),
432 			(i == 0) ? ">%px: " : " %px: ", kaddr);
433 		/*
434 		 * We should not pass a shadow pointer to generic
435 		 * function, because generic functions may try to
436 		 * access kasan mapping for the passed address.
437 		 */
438 		memcpy(shadow_buf, shadow_row, SHADOW_BYTES_PER_ROW);
439 		print_hex_dump(KERN_ERR, buffer,
440 			DUMP_PREFIX_NONE, SHADOW_BYTES_PER_ROW, 1,
441 			shadow_buf, SHADOW_BYTES_PER_ROW, 0);
442 
443 		if (row_is_guilty(shadow_row, shadow))
444 			pr_err("%*c\n",
445 				shadow_pointer_offset(shadow_row, shadow),
446 				'^');
447 
448 		shadow_row += SHADOW_BYTES_PER_ROW;
449 	}
450 }
451 
report_enabled(void)452 static bool report_enabled(void)
453 {
454 	if (current->kasan_depth)
455 		return false;
456 	if (test_bit(KASAN_BIT_MULTI_SHOT, &kasan_flags))
457 		return true;
458 	return !test_and_set_bit(KASAN_BIT_REPORTED, &kasan_flags);
459 }
460 
461 #if IS_ENABLED(CONFIG_KUNIT)
kasan_update_kunit_status(struct kunit * cur_test)462 static void kasan_update_kunit_status(struct kunit *cur_test)
463 {
464 	struct kunit_resource *resource;
465 	struct kunit_kasan_expectation *kasan_data;
466 
467 	resource = kunit_find_named_resource(cur_test, "kasan_data");
468 
469 	if (!resource) {
470 		kunit_set_failure(cur_test);
471 		return;
472 	}
473 
474 	kasan_data = (struct kunit_kasan_expectation *)resource->data;
475 	kasan_data->report_found = true;
476 	kunit_put_resource(resource);
477 }
478 #endif /* IS_ENABLED(CONFIG_KUNIT) */
479 
kasan_report_invalid_free(void * object,unsigned long ip)480 void kasan_report_invalid_free(void *object, unsigned long ip)
481 {
482 	unsigned long flags;
483 	u8 tag = get_tag(object);
484 
485 	object = reset_tag(object);
486 
487 #if IS_ENABLED(CONFIG_KUNIT)
488 	if (current->kunit_test)
489 		kasan_update_kunit_status(current->kunit_test);
490 #endif /* IS_ENABLED(CONFIG_KUNIT) */
491 
492 	start_report(&flags);
493 	pr_err("BUG: KASAN: double-free or invalid-free in %pS\n", (void *)ip);
494 	print_tags(tag, object);
495 	pr_err("\n");
496 	print_address_description(object, tag);
497 	pr_err("\n");
498 	print_shadow_for_address(object);
499 	end_report(&flags);
500 }
501 
__kasan_report(unsigned long addr,size_t size,bool is_write,unsigned long ip)502 static void __kasan_report(unsigned long addr, size_t size, bool is_write,
503 				unsigned long ip)
504 {
505 	struct kasan_access_info info;
506 	void *tagged_addr;
507 	void *untagged_addr;
508 	unsigned long flags;
509 
510 #if IS_ENABLED(CONFIG_KUNIT)
511 	if (current->kunit_test)
512 		kasan_update_kunit_status(current->kunit_test);
513 #endif /* IS_ENABLED(CONFIG_KUNIT) */
514 
515 	disable_trace_on_warning();
516 
517 	tagged_addr = (void *)addr;
518 	untagged_addr = reset_tag(tagged_addr);
519 
520 	info.access_addr = tagged_addr;
521 	if (addr_has_shadow(untagged_addr))
522 		info.first_bad_addr = find_first_bad_addr(tagged_addr, size);
523 	else
524 		info.first_bad_addr = untagged_addr;
525 	info.access_size = size;
526 	info.is_write = is_write;
527 	info.ip = ip;
528 
529 	start_report(&flags);
530 
531 	print_error_description(&info);
532 	if (addr_has_shadow(untagged_addr))
533 		print_tags(get_tag(tagged_addr), info.first_bad_addr);
534 	pr_err("\n");
535 
536 	if (addr_has_shadow(untagged_addr)) {
537 		print_address_description(untagged_addr, get_tag(tagged_addr));
538 		pr_err("\n");
539 		print_shadow_for_address(info.first_bad_addr);
540 	} else {
541 		dump_stack();
542 	}
543 
544 	end_report(&flags);
545 }
546 
kasan_report(unsigned long addr,size_t size,bool is_write,unsigned long ip)547 bool kasan_report(unsigned long addr, size_t size, bool is_write,
548 			unsigned long ip)
549 {
550 	unsigned long flags = user_access_save();
551 	bool ret = false;
552 
553 	if (likely(report_enabled())) {
554 		__kasan_report(addr, size, is_write, ip);
555 		ret = true;
556 	}
557 
558 	user_access_restore(flags);
559 
560 	return ret;
561 }
562 
563 /*
564  * With CONFIG_KASAN, accesses to bogus pointers (outside the high
565  * canonical half of the address space) cause out-of-bounds shadow memory reads
566  * before the actual access. For addresses in the low canonical half of the
567  * address space, as well as most non-canonical addresses, that out-of-bounds
568  * shadow memory access lands in the non-canonical part of the address space.
569  * Help the user figure out what the original bogus pointer was.
570  */
kasan_non_canonical_hook(unsigned long addr)571 void kasan_non_canonical_hook(unsigned long addr)
572 {
573 	unsigned long orig_addr;
574 	const char *bug_type;
575 
576 	if (addr < KASAN_SHADOW_OFFSET)
577 		return;
578 
579 	orig_addr = (addr - KASAN_SHADOW_OFFSET) << KASAN_SHADOW_SCALE_SHIFT;
580 	/*
581 	 * For faults near the shadow address for NULL, we can be fairly certain
582 	 * that this is a KASAN shadow memory access.
583 	 * For faults that correspond to shadow for low canonical addresses, we
584 	 * can still be pretty sure - that shadow region is a fairly narrow
585 	 * chunk of the non-canonical address space.
586 	 * But faults that look like shadow for non-canonical addresses are a
587 	 * really large chunk of the address space. In that case, we still
588 	 * print the decoded address, but make it clear that this is not
589 	 * necessarily what's actually going on.
590 	 */
591 	if (orig_addr < PAGE_SIZE)
592 		bug_type = "null-ptr-deref";
593 	else if (orig_addr < TASK_SIZE)
594 		bug_type = "probably user-memory-access";
595 	else
596 		bug_type = "maybe wild-memory-access";
597 	pr_alert("KASAN: %s in range [0x%016lx-0x%016lx]\n", bug_type,
598 		 orig_addr, orig_addr + KASAN_SHADOW_MASK);
599 }
600