1 // SPDX-License-Identifier: GPL-2.0-only
4 * Copyright (c) 2014 Samsung Electronics Co., Ltd.
5 * Author: Andrey Ryabinin <a.ryabinin@samsung.com>
8 #include <linux/bitops.h>
9 #include <linux/delay.h>
10 #include <linux/kasan.h>
11 #include <linux/kernel.h>
13 #include <linux/mman.h>
14 #include <linux/module.h>
15 #include <linux/printk.h>
16 #include <linux/random.h>
17 #include <linux/slab.h>
18 #include <linux/string.h>
19 #include <linux/uaccess.h>
21 #include <linux/vmalloc.h>
25 #include <kunit/test.h>
27 #include "../mm/kasan/kasan.h"
29 #define OOB_TAG_OFF (IS_ENABLED(CONFIG_KASAN_GENERIC) ? 0 : KASAN_GRANULE_SIZE)
32 * Some tests use these global variables to store return values from function
33 * calls that could otherwise be eliminated by the compiler as dead code.
35 void *kasan_ptr_result;
38 static struct kunit_resource resource;
39 static struct kunit_kasan_expectation fail_data;
40 static bool multishot;
43 * Temporarily enable multi-shot mode. Otherwise, KASAN would only report the
44 * first detected bug and panic the kernel if panic_on_warn is enabled. For
45 * hardware tag-based KASAN also allow tag checking to be reenabled for each
46 * test, see the comment for KUNIT_EXPECT_KASAN_FAIL().
48 static int kasan_test_init(struct kunit *test)
50 if (!kasan_enabled()) {
51 kunit_err(test, "can't run KASAN tests with KASAN disabled");
55 multishot = kasan_save_enable_multi_shot();
56 kasan_set_tagging_report_once(false);
60 static void kasan_test_exit(struct kunit *test)
62 kasan_set_tagging_report_once(true);
63 kasan_restore_multi_shot(multishot);
67 * KUNIT_EXPECT_KASAN_FAIL() - check that the executed expression produces a
68 * KASAN report; causes a test failure otherwise. This relies on a KUnit
69 * resource named "kasan_data". Do not use this name for KUnit resources
70 * outside of KASAN tests.
72 * For hardware tag-based KASAN, when a tag fault happens, tag checking is
73 * normally auto-disabled. When this happens, this test handler reenables
74 * tag checking. As tag checking can be only disabled or enabled per CPU, this
75 * handler disables migration (preemption).
77 * Since the compiler doesn't see that the expression can change the fail_data
78 * fields, it can reorder or optimize away the accesses to those fields.
79 * Use READ/WRITE_ONCE() for the accesses and compiler barriers around the
80 * expression to prevent that.
82 #define KUNIT_EXPECT_KASAN_FAIL(test, expression) do { \
83 if (IS_ENABLED(CONFIG_KASAN_HW_TAGS)) \
85 WRITE_ONCE(fail_data.report_expected, true); \
86 WRITE_ONCE(fail_data.report_found, false); \
87 kunit_add_named_resource(test, \
91 "kasan_data", &fail_data); \
95 KUNIT_EXPECT_EQ(test, \
96 READ_ONCE(fail_data.report_expected), \
97 READ_ONCE(fail_data.report_found)); \
98 if (IS_ENABLED(CONFIG_KASAN_HW_TAGS)) { \
99 if (READ_ONCE(fail_data.report_found)) \
100 kasan_enable_tagging(); \
105 #define KASAN_TEST_NEEDS_CONFIG_ON(test, config) do { \
106 if (!IS_ENABLED(config)) { \
107 kunit_info((test), "skipping, " #config " required"); \
112 #define KASAN_TEST_NEEDS_CONFIG_OFF(test, config) do { \
113 if (IS_ENABLED(config)) { \
114 kunit_info((test), "skipping, " #config " enabled"); \
119 static void kmalloc_oob_right(struct kunit *test)
124 ptr = kmalloc(size, GFP_KERNEL);
125 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
127 KUNIT_EXPECT_KASAN_FAIL(test, ptr[size + OOB_TAG_OFF] = 'x');
131 static void kmalloc_oob_left(struct kunit *test)
136 ptr = kmalloc(size, GFP_KERNEL);
137 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
139 KUNIT_EXPECT_KASAN_FAIL(test, *ptr = *(ptr - 1));
143 static void kmalloc_node_oob_right(struct kunit *test)
148 ptr = kmalloc_node(size, GFP_KERNEL, 0);
149 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
151 KUNIT_EXPECT_KASAN_FAIL(test, ptr[size] = 0);
156 * These kmalloc_pagealloc_* tests try allocating a memory chunk that doesn't
157 * fit into a slab cache and therefore is allocated via the page allocator
158 * fallback. Since this kind of fallback is only implemented for SLUB, these
159 * tests are limited to that allocator.
161 static void kmalloc_pagealloc_oob_right(struct kunit *test)
164 size_t size = KMALLOC_MAX_CACHE_SIZE + 10;
166 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_SLUB);
168 ptr = kmalloc(size, GFP_KERNEL);
169 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
171 KUNIT_EXPECT_KASAN_FAIL(test, ptr[size + OOB_TAG_OFF] = 0);
176 static void kmalloc_pagealloc_uaf(struct kunit *test)
179 size_t size = KMALLOC_MAX_CACHE_SIZE + 10;
181 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_SLUB);
183 ptr = kmalloc(size, GFP_KERNEL);
184 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
187 KUNIT_EXPECT_KASAN_FAIL(test, ptr[0] = 0);
190 static void kmalloc_pagealloc_invalid_free(struct kunit *test)
193 size_t size = KMALLOC_MAX_CACHE_SIZE + 10;
195 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_SLUB);
197 ptr = kmalloc(size, GFP_KERNEL);
198 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
200 KUNIT_EXPECT_KASAN_FAIL(test, kfree(ptr + 1));
203 static void pagealloc_oob_right(struct kunit *test)
208 size_t size = (1UL << (PAGE_SHIFT + order));
211 * With generic KASAN page allocations have no redzones, thus
212 * out-of-bounds detection is not guaranteed.
213 * See https://bugzilla.kernel.org/show_bug.cgi?id=210503.
215 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_KASAN_GENERIC);
217 pages = alloc_pages(GFP_KERNEL, order);
218 ptr = page_address(pages);
219 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
221 KUNIT_EXPECT_KASAN_FAIL(test, ptr[size] = 0);
222 free_pages((unsigned long)ptr, order);
225 static void pagealloc_uaf(struct kunit *test)
231 pages = alloc_pages(GFP_KERNEL, order);
232 ptr = page_address(pages);
233 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
234 free_pages((unsigned long)ptr, order);
236 KUNIT_EXPECT_KASAN_FAIL(test, ptr[0] = 0);
239 static void kmalloc_large_oob_right(struct kunit *test)
242 size_t size = KMALLOC_MAX_CACHE_SIZE - 256;
245 * Allocate a chunk that is large enough, but still fits into a slab
246 * and does not trigger the page allocator fallback in SLUB.
248 ptr = kmalloc(size, GFP_KERNEL);
249 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
251 KUNIT_EXPECT_KASAN_FAIL(test, ptr[size] = 0);
255 static void kmalloc_oob_krealloc_more(struct kunit *test)
261 ptr1 = kmalloc(size1, GFP_KERNEL);
262 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr1);
264 ptr2 = krealloc(ptr1, size2, GFP_KERNEL);
265 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr2);
267 KUNIT_EXPECT_KASAN_FAIL(test, ptr2[size2 + OOB_TAG_OFF] = 'x');
271 static void kmalloc_oob_krealloc_less(struct kunit *test)
277 ptr1 = kmalloc(size1, GFP_KERNEL);
278 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr1);
280 ptr2 = krealloc(ptr1, size2, GFP_KERNEL);
281 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr2);
283 KUNIT_EXPECT_KASAN_FAIL(test, ptr2[size2 + OOB_TAG_OFF] = 'x');
287 static void kmalloc_oob_16(struct kunit *test)
293 /* This test is specifically crafted for the generic mode. */
294 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_GENERIC);
296 ptr1 = kmalloc(sizeof(*ptr1) - 3, GFP_KERNEL);
297 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr1);
299 ptr2 = kmalloc(sizeof(*ptr2), GFP_KERNEL);
300 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr2);
302 KUNIT_EXPECT_KASAN_FAIL(test, *ptr1 = *ptr2);
307 static void kmalloc_uaf_16(struct kunit *test)
313 ptr1 = kmalloc(sizeof(*ptr1), GFP_KERNEL);
314 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr1);
316 ptr2 = kmalloc(sizeof(*ptr2), GFP_KERNEL);
317 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr2);
320 KUNIT_EXPECT_KASAN_FAIL(test, *ptr1 = *ptr2);
324 static void kmalloc_oob_memset_2(struct kunit *test)
329 ptr = kmalloc(size, GFP_KERNEL);
330 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
332 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr + 7 + OOB_TAG_OFF, 0, 2));
336 static void kmalloc_oob_memset_4(struct kunit *test)
341 ptr = kmalloc(size, GFP_KERNEL);
342 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
344 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr + 5 + OOB_TAG_OFF, 0, 4));
349 static void kmalloc_oob_memset_8(struct kunit *test)
354 ptr = kmalloc(size, GFP_KERNEL);
355 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
357 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr + 1 + OOB_TAG_OFF, 0, 8));
361 static void kmalloc_oob_memset_16(struct kunit *test)
366 ptr = kmalloc(size, GFP_KERNEL);
367 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
369 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr + 1 + OOB_TAG_OFF, 0, 16));
373 static void kmalloc_oob_in_memset(struct kunit *test)
378 ptr = kmalloc(size, GFP_KERNEL);
379 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
381 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr, 0, size + 5 + OOB_TAG_OFF));
385 static void kmalloc_memmove_invalid_size(struct kunit *test)
389 volatile size_t invalid_size = -2;
391 ptr = kmalloc(size, GFP_KERNEL);
392 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
394 memset((char *)ptr, 0, 64);
396 KUNIT_EXPECT_KASAN_FAIL(test,
397 memmove((char *)ptr, (char *)ptr + 4, invalid_size));
401 static void kmalloc_uaf(struct kunit *test)
406 ptr = kmalloc(size, GFP_KERNEL);
407 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
410 KUNIT_EXPECT_KASAN_FAIL(test, *(ptr + 8) = 'x');
413 static void kmalloc_uaf_memset(struct kunit *test)
418 ptr = kmalloc(size, GFP_KERNEL);
419 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
422 KUNIT_EXPECT_KASAN_FAIL(test, memset(ptr, 0, size));
425 static void kmalloc_uaf2(struct kunit *test)
432 ptr1 = kmalloc(size, GFP_KERNEL);
433 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr1);
437 ptr2 = kmalloc(size, GFP_KERNEL);
438 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr2);
441 * For tag-based KASAN ptr1 and ptr2 tags might happen to be the same.
442 * Allow up to 16 attempts at generating different tags.
444 if (!IS_ENABLED(CONFIG_KASAN_GENERIC) && ptr1 == ptr2 && counter++ < 16) {
449 KUNIT_EXPECT_KASAN_FAIL(test, ptr1[40] = 'x');
450 KUNIT_EXPECT_PTR_NE(test, ptr1, ptr2);
455 static void kfree_via_page(struct kunit *test)
460 unsigned long offset;
462 ptr = kmalloc(size, GFP_KERNEL);
463 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
465 page = virt_to_page(ptr);
466 offset = offset_in_page(ptr);
467 kfree(page_address(page) + offset);
470 static void kfree_via_phys(struct kunit *test)
476 ptr = kmalloc(size, GFP_KERNEL);
477 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
479 phys = virt_to_phys(ptr);
480 kfree(phys_to_virt(phys));
483 static void kmem_cache_oob(struct kunit *test)
487 struct kmem_cache *cache;
489 cache = kmem_cache_create("test_cache", size, 0, 0, NULL);
490 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cache);
492 p = kmem_cache_alloc(cache, GFP_KERNEL);
494 kunit_err(test, "Allocation failed: %s\n", __func__);
495 kmem_cache_destroy(cache);
499 KUNIT_EXPECT_KASAN_FAIL(test, *p = p[size + OOB_TAG_OFF]);
501 kmem_cache_free(cache, p);
502 kmem_cache_destroy(cache);
505 static void kmem_cache_accounted(struct kunit *test)
510 struct kmem_cache *cache;
512 cache = kmem_cache_create("test_cache", size, 0, SLAB_ACCOUNT, NULL);
513 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cache);
516 * Several allocations with a delay to allow for lazy per memcg kmem
519 for (i = 0; i < 5; i++) {
520 p = kmem_cache_alloc(cache, GFP_KERNEL);
524 kmem_cache_free(cache, p);
529 kmem_cache_destroy(cache);
532 static void kmem_cache_bulk(struct kunit *test)
534 struct kmem_cache *cache;
540 cache = kmem_cache_create("test_cache", size, 0, 0, NULL);
541 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cache);
543 ret = kmem_cache_alloc_bulk(cache, GFP_KERNEL, ARRAY_SIZE(p), (void **)&p);
545 kunit_err(test, "Allocation failed: %s\n", __func__);
546 kmem_cache_destroy(cache);
550 for (i = 0; i < ARRAY_SIZE(p); i++)
551 p[i][0] = p[i][size - 1] = 42;
553 kmem_cache_free_bulk(cache, ARRAY_SIZE(p), (void **)&p);
554 kmem_cache_destroy(cache);
557 static char global_array[10];
559 static void kasan_global_oob(struct kunit *test)
562 char *p = &global_array[ARRAY_SIZE(global_array) + i];
564 /* Only generic mode instruments globals. */
565 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_GENERIC);
567 KUNIT_EXPECT_KASAN_FAIL(test, *(volatile char *)p);
570 /* Check that ksize() makes the whole object accessible. */
571 static void ksize_unpoisons_memory(struct kunit *test)
574 size_t size = 123, real_size;
576 ptr = kmalloc(size, GFP_KERNEL);
577 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
578 real_size = ksize(ptr);
580 /* This access shouldn't trigger a KASAN report. */
584 KUNIT_EXPECT_KASAN_FAIL(test, ptr[real_size] = 'y');
590 * Check that a use-after-free is detected by ksize() and via normal accesses
593 static void ksize_uaf(struct kunit *test)
596 int size = 128 - KASAN_GRANULE_SIZE;
598 ptr = kmalloc(size, GFP_KERNEL);
599 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
602 KUNIT_EXPECT_KASAN_FAIL(test, ksize(ptr));
603 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = *ptr);
604 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = *(ptr + size));
607 static void kasan_stack_oob(struct kunit *test)
609 char stack_array[10];
610 volatile int i = OOB_TAG_OFF;
611 char *p = &stack_array[ARRAY_SIZE(stack_array) + i];
613 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_STACK);
615 KUNIT_EXPECT_KASAN_FAIL(test, *(volatile char *)p);
618 static void kasan_alloca_oob_left(struct kunit *test)
621 char alloca_array[i];
622 char *p = alloca_array - 1;
624 /* Only generic mode instruments dynamic allocas. */
625 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_GENERIC);
626 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_STACK);
628 KUNIT_EXPECT_KASAN_FAIL(test, *(volatile char *)p);
631 static void kasan_alloca_oob_right(struct kunit *test)
634 char alloca_array[i];
635 char *p = alloca_array + i;
637 /* Only generic mode instruments dynamic allocas. */
638 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_GENERIC);
639 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_STACK);
641 KUNIT_EXPECT_KASAN_FAIL(test, *(volatile char *)p);
644 static void kmem_cache_double_free(struct kunit *test)
648 struct kmem_cache *cache;
650 cache = kmem_cache_create("test_cache", size, 0, 0, NULL);
651 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cache);
653 p = kmem_cache_alloc(cache, GFP_KERNEL);
655 kunit_err(test, "Allocation failed: %s\n", __func__);
656 kmem_cache_destroy(cache);
660 kmem_cache_free(cache, p);
661 KUNIT_EXPECT_KASAN_FAIL(test, kmem_cache_free(cache, p));
662 kmem_cache_destroy(cache);
665 static void kmem_cache_invalid_free(struct kunit *test)
669 struct kmem_cache *cache;
671 cache = kmem_cache_create("test_cache", size, 0, SLAB_TYPESAFE_BY_RCU,
673 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, cache);
675 p = kmem_cache_alloc(cache, GFP_KERNEL);
677 kunit_err(test, "Allocation failed: %s\n", __func__);
678 kmem_cache_destroy(cache);
682 /* Trigger invalid free, the object doesn't get freed. */
683 KUNIT_EXPECT_KASAN_FAIL(test, kmem_cache_free(cache, p + 1));
686 * Properly free the object to prevent the "Objects remaining in
687 * test_cache on __kmem_cache_shutdown" BUG failure.
689 kmem_cache_free(cache, p);
691 kmem_cache_destroy(cache);
694 static void kasan_memchr(struct kunit *test)
700 * str* functions are not instrumented with CONFIG_AMD_MEM_ENCRYPT.
701 * See https://bugzilla.kernel.org/show_bug.cgi?id=206337 for details.
703 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_AMD_MEM_ENCRYPT);
706 size = round_up(size, OOB_TAG_OFF);
708 ptr = kmalloc(size, GFP_KERNEL | __GFP_ZERO);
709 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
711 KUNIT_EXPECT_KASAN_FAIL(test,
712 kasan_ptr_result = memchr(ptr, '1', size + 1));
717 static void kasan_memcmp(struct kunit *test)
724 * str* functions are not instrumented with CONFIG_AMD_MEM_ENCRYPT.
725 * See https://bugzilla.kernel.org/show_bug.cgi?id=206337 for details.
727 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_AMD_MEM_ENCRYPT);
730 size = round_up(size, OOB_TAG_OFF);
732 ptr = kmalloc(size, GFP_KERNEL | __GFP_ZERO);
733 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
734 memset(arr, 0, sizeof(arr));
736 KUNIT_EXPECT_KASAN_FAIL(test,
737 kasan_int_result = memcmp(ptr, arr, size+1));
741 static void kasan_strings(struct kunit *test)
747 * str* functions are not instrumented with CONFIG_AMD_MEM_ENCRYPT.
748 * See https://bugzilla.kernel.org/show_bug.cgi?id=206337 for details.
750 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_AMD_MEM_ENCRYPT);
752 ptr = kmalloc(size, GFP_KERNEL | __GFP_ZERO);
753 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
758 * Try to cause only 1 invalid access (less spam in dmesg).
759 * For that we need ptr to point to zeroed byte.
760 * Skip metadata that could be stored in freed object so ptr
761 * will likely point to zeroed byte.
764 KUNIT_EXPECT_KASAN_FAIL(test, kasan_ptr_result = strchr(ptr, '1'));
766 KUNIT_EXPECT_KASAN_FAIL(test, kasan_ptr_result = strrchr(ptr, '1'));
768 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = strcmp(ptr, "2"));
770 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = strncmp(ptr, "2", 1));
772 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = strlen(ptr));
774 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = strnlen(ptr, 1));
777 static void kasan_bitops_modify(struct kunit *test, int nr, void *addr)
779 KUNIT_EXPECT_KASAN_FAIL(test, set_bit(nr, addr));
780 KUNIT_EXPECT_KASAN_FAIL(test, __set_bit(nr, addr));
781 KUNIT_EXPECT_KASAN_FAIL(test, clear_bit(nr, addr));
782 KUNIT_EXPECT_KASAN_FAIL(test, __clear_bit(nr, addr));
783 KUNIT_EXPECT_KASAN_FAIL(test, clear_bit_unlock(nr, addr));
784 KUNIT_EXPECT_KASAN_FAIL(test, __clear_bit_unlock(nr, addr));
785 KUNIT_EXPECT_KASAN_FAIL(test, change_bit(nr, addr));
786 KUNIT_EXPECT_KASAN_FAIL(test, __change_bit(nr, addr));
789 static void kasan_bitops_test_and_modify(struct kunit *test, int nr, void *addr)
791 KUNIT_EXPECT_KASAN_FAIL(test, test_and_set_bit(nr, addr));
792 KUNIT_EXPECT_KASAN_FAIL(test, __test_and_set_bit(nr, addr));
793 KUNIT_EXPECT_KASAN_FAIL(test, test_and_set_bit_lock(nr, addr));
794 KUNIT_EXPECT_KASAN_FAIL(test, test_and_clear_bit(nr, addr));
795 KUNIT_EXPECT_KASAN_FAIL(test, __test_and_clear_bit(nr, addr));
796 KUNIT_EXPECT_KASAN_FAIL(test, test_and_change_bit(nr, addr));
797 KUNIT_EXPECT_KASAN_FAIL(test, __test_and_change_bit(nr, addr));
798 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result = test_bit(nr, addr));
800 #if defined(clear_bit_unlock_is_negative_byte)
801 KUNIT_EXPECT_KASAN_FAIL(test, kasan_int_result =
802 clear_bit_unlock_is_negative_byte(nr, addr));
806 static void kasan_bitops_generic(struct kunit *test)
810 /* This test is specifically crafted for the generic mode. */
811 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_GENERIC);
814 * Allocate 1 more byte, which causes kzalloc to round up to 16 bytes;
815 * this way we do not actually corrupt other memory.
817 bits = kzalloc(sizeof(*bits) + 1, GFP_KERNEL);
818 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, bits);
821 * Below calls try to access bit within allocated memory; however, the
822 * below accesses are still out-of-bounds, since bitops are defined to
823 * operate on the whole long the bit is in.
825 kasan_bitops_modify(test, BITS_PER_LONG, bits);
828 * Below calls try to access bit beyond allocated memory.
830 kasan_bitops_test_and_modify(test, BITS_PER_LONG + BITS_PER_BYTE, bits);
835 static void kasan_bitops_tags(struct kunit *test)
839 /* This test is specifically crafted for tag-based modes. */
840 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_KASAN_GENERIC);
842 /* kmalloc-64 cache will be used and the last 16 bytes will be the redzone. */
843 bits = kzalloc(48, GFP_KERNEL);
844 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, bits);
846 /* Do the accesses past the 48 allocated bytes, but within the redone. */
847 kasan_bitops_modify(test, BITS_PER_LONG, (void *)bits + 48);
848 kasan_bitops_test_and_modify(test, BITS_PER_LONG + BITS_PER_BYTE, (void *)bits + 48);
853 static void kmalloc_double_kzfree(struct kunit *test)
858 ptr = kmalloc(size, GFP_KERNEL);
859 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
861 kfree_sensitive(ptr);
862 KUNIT_EXPECT_KASAN_FAIL(test, kfree_sensitive(ptr));
865 static void vmalloc_oob(struct kunit *test)
869 KASAN_TEST_NEEDS_CONFIG_ON(test, CONFIG_KASAN_VMALLOC);
872 * We have to be careful not to hit the guard page.
873 * The MMU will catch that and crash us.
875 area = vmalloc(3000);
876 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, area);
878 KUNIT_EXPECT_KASAN_FAIL(test, ((volatile char *)area)[3100]);
883 * Check that the assigned pointer tag falls within the [KASAN_TAG_MIN,
884 * KASAN_TAG_KERNEL) range (note: excluding the match-all tag) for tag-based
887 static void match_all_not_assigned(struct kunit *test)
893 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_KASAN_GENERIC);
895 for (i = 0; i < 256; i++) {
896 size = (get_random_int() % 1024) + 1;
897 ptr = kmalloc(size, GFP_KERNEL);
898 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
899 KUNIT_EXPECT_GE(test, (u8)get_tag(ptr), (u8)KASAN_TAG_MIN);
900 KUNIT_EXPECT_LT(test, (u8)get_tag(ptr), (u8)KASAN_TAG_KERNEL);
904 for (i = 0; i < 256; i++) {
905 order = (get_random_int() % 4) + 1;
906 pages = alloc_pages(GFP_KERNEL, order);
907 ptr = page_address(pages);
908 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
909 KUNIT_EXPECT_GE(test, (u8)get_tag(ptr), (u8)KASAN_TAG_MIN);
910 KUNIT_EXPECT_LT(test, (u8)get_tag(ptr), (u8)KASAN_TAG_KERNEL);
911 free_pages((unsigned long)ptr, order);
915 /* Check that 0xff works as a match-all pointer tag for tag-based modes. */
916 static void match_all_ptr_tag(struct kunit *test)
921 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_KASAN_GENERIC);
923 ptr = kmalloc(128, GFP_KERNEL);
924 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
926 /* Backup the assigned tag. */
928 KUNIT_EXPECT_NE(test, tag, (u8)KASAN_TAG_KERNEL);
930 /* Reset the tag to 0xff.*/
931 ptr = set_tag(ptr, KASAN_TAG_KERNEL);
933 /* This access shouldn't trigger a KASAN report. */
936 /* Recover the pointer tag and free. */
937 ptr = set_tag(ptr, tag);
941 /* Check that there are no match-all memory tags for tag-based modes. */
942 static void match_all_mem_tag(struct kunit *test)
947 KASAN_TEST_NEEDS_CONFIG_OFF(test, CONFIG_KASAN_GENERIC);
949 ptr = kmalloc(128, GFP_KERNEL);
950 KUNIT_ASSERT_NOT_ERR_OR_NULL(test, ptr);
951 KUNIT_EXPECT_NE(test, (u8)get_tag(ptr), (u8)KASAN_TAG_KERNEL);
953 /* For each possible tag value not matching the pointer tag. */
954 for (tag = KASAN_TAG_MIN; tag <= KASAN_TAG_KERNEL; tag++) {
955 if (tag == get_tag(ptr))
958 /* Mark the first memory granule with the chosen memory tag. */
959 kasan_poison(ptr, KASAN_GRANULE_SIZE, (u8)tag);
961 /* This access must cause a KASAN report. */
962 KUNIT_EXPECT_KASAN_FAIL(test, *ptr = 0);
965 /* Recover the memory tag and free. */
966 kasan_poison(ptr, KASAN_GRANULE_SIZE, get_tag(ptr));
970 static struct kunit_case kasan_kunit_test_cases[] = {
971 KUNIT_CASE(kmalloc_oob_right),
972 KUNIT_CASE(kmalloc_oob_left),
973 KUNIT_CASE(kmalloc_node_oob_right),
974 KUNIT_CASE(kmalloc_pagealloc_oob_right),
975 KUNIT_CASE(kmalloc_pagealloc_uaf),
976 KUNIT_CASE(kmalloc_pagealloc_invalid_free),
977 KUNIT_CASE(pagealloc_oob_right),
978 KUNIT_CASE(pagealloc_uaf),
979 KUNIT_CASE(kmalloc_large_oob_right),
980 KUNIT_CASE(kmalloc_oob_krealloc_more),
981 KUNIT_CASE(kmalloc_oob_krealloc_less),
982 KUNIT_CASE(kmalloc_oob_16),
983 KUNIT_CASE(kmalloc_uaf_16),
984 KUNIT_CASE(kmalloc_oob_in_memset),
985 KUNIT_CASE(kmalloc_oob_memset_2),
986 KUNIT_CASE(kmalloc_oob_memset_4),
987 KUNIT_CASE(kmalloc_oob_memset_8),
988 KUNIT_CASE(kmalloc_oob_memset_16),
989 KUNIT_CASE(kmalloc_memmove_invalid_size),
990 KUNIT_CASE(kmalloc_uaf),
991 KUNIT_CASE(kmalloc_uaf_memset),
992 KUNIT_CASE(kmalloc_uaf2),
993 KUNIT_CASE(kfree_via_page),
994 KUNIT_CASE(kfree_via_phys),
995 KUNIT_CASE(kmem_cache_oob),
996 KUNIT_CASE(kmem_cache_accounted),
997 KUNIT_CASE(kmem_cache_bulk),
998 KUNIT_CASE(kasan_global_oob),
999 KUNIT_CASE(kasan_stack_oob),
1000 KUNIT_CASE(kasan_alloca_oob_left),
1001 KUNIT_CASE(kasan_alloca_oob_right),
1002 KUNIT_CASE(ksize_unpoisons_memory),
1003 KUNIT_CASE(ksize_uaf),
1004 KUNIT_CASE(kmem_cache_double_free),
1005 KUNIT_CASE(kmem_cache_invalid_free),
1006 KUNIT_CASE(kasan_memchr),
1007 KUNIT_CASE(kasan_memcmp),
1008 KUNIT_CASE(kasan_strings),
1009 KUNIT_CASE(kasan_bitops_generic),
1010 KUNIT_CASE(kasan_bitops_tags),
1011 KUNIT_CASE(kmalloc_double_kzfree),
1012 KUNIT_CASE(vmalloc_oob),
1013 KUNIT_CASE(match_all_not_assigned),
1014 KUNIT_CASE(match_all_ptr_tag),
1015 KUNIT_CASE(match_all_mem_tag),
1019 static struct kunit_suite kasan_kunit_test_suite = {
1021 .init = kasan_test_init,
1022 .test_cases = kasan_kunit_test_cases,
1023 .exit = kasan_test_exit,
1026 kunit_test_suite(kasan_kunit_test_suite);
1028 MODULE_LICENSE("GPL");