1e886bf9dSAndrey Konovalov // SPDX-License-Identifier: GPL-2.0
2b938fcf4SAndrey Konovalov /*
32bd926b4SAndrey Konovalov * This file contains core generic KASAN code.
4b938fcf4SAndrey Konovalov *
5b938fcf4SAndrey Konovalov * Copyright (c) 2014 Samsung Electronics Co., Ltd.
6b938fcf4SAndrey Konovalov * Author: Andrey Ryabinin <ryabinin.a.a@gmail.com>
7b938fcf4SAndrey Konovalov *
8b938fcf4SAndrey Konovalov * Some code borrowed from https://github.com/xairy/kasan-prototype by
9b938fcf4SAndrey Konovalov * Andrey Konovalov <andreyknvl@gmail.com>
10b938fcf4SAndrey Konovalov */
11b938fcf4SAndrey Konovalov
12b938fcf4SAndrey Konovalov #include <linux/export.h>
13b938fcf4SAndrey Konovalov #include <linux/interrupt.h>
14b938fcf4SAndrey Konovalov #include <linux/init.h>
15b938fcf4SAndrey Konovalov #include <linux/kasan.h>
16b938fcf4SAndrey Konovalov #include <linux/kernel.h>
172b830526SAlexander Potapenko #include <linux/kfence.h>
18b938fcf4SAndrey Konovalov #include <linux/kmemleak.h>
19b938fcf4SAndrey Konovalov #include <linux/linkage.h>
20b938fcf4SAndrey Konovalov #include <linux/memblock.h>
21b938fcf4SAndrey Konovalov #include <linux/memory.h>
22b938fcf4SAndrey Konovalov #include <linux/mm.h>
23b938fcf4SAndrey Konovalov #include <linux/module.h>
24b938fcf4SAndrey Konovalov #include <linux/printk.h>
25b938fcf4SAndrey Konovalov #include <linux/sched.h>
26b938fcf4SAndrey Konovalov #include <linux/sched/task_stack.h>
27b938fcf4SAndrey Konovalov #include <linux/slab.h>
28b938fcf4SAndrey Konovalov #include <linux/stacktrace.h>
29b938fcf4SAndrey Konovalov #include <linux/string.h>
30b938fcf4SAndrey Konovalov #include <linux/types.h>
31b938fcf4SAndrey Konovalov #include <linux/vmalloc.h>
32b938fcf4SAndrey Konovalov #include <linux/bug.h>
33b938fcf4SAndrey Konovalov
34b938fcf4SAndrey Konovalov #include "kasan.h"
35b938fcf4SAndrey Konovalov #include "../slab.h"
36b938fcf4SAndrey Konovalov
37b938fcf4SAndrey Konovalov /*
38b938fcf4SAndrey Konovalov * All functions below always inlined so compiler could
39b938fcf4SAndrey Konovalov * perform better optimizations in each of __asan_loadX/__assn_storeX
40b938fcf4SAndrey Konovalov * depending on memory access size X.
41b938fcf4SAndrey Konovalov */
42b938fcf4SAndrey Konovalov
memory_is_poisoned_1(const void * addr)43bb6e04a1SArnd Bergmann static __always_inline bool memory_is_poisoned_1(const void *addr)
44b938fcf4SAndrey Konovalov {
45bb6e04a1SArnd Bergmann s8 shadow_value = *(s8 *)kasan_mem_to_shadow(addr);
46b938fcf4SAndrey Konovalov
47b938fcf4SAndrey Konovalov if (unlikely(shadow_value)) {
48bb6e04a1SArnd Bergmann s8 last_accessible_byte = (unsigned long)addr & KASAN_GRANULE_MASK;
49b938fcf4SAndrey Konovalov return unlikely(last_accessible_byte >= shadow_value);
50b938fcf4SAndrey Konovalov }
51b938fcf4SAndrey Konovalov
52b938fcf4SAndrey Konovalov return false;
53b938fcf4SAndrey Konovalov }
54b938fcf4SAndrey Konovalov
memory_is_poisoned_2_4_8(const void * addr,unsigned long size)55bb6e04a1SArnd Bergmann static __always_inline bool memory_is_poisoned_2_4_8(const void *addr,
56b938fcf4SAndrey Konovalov unsigned long size)
57b938fcf4SAndrey Konovalov {
58bb6e04a1SArnd Bergmann u8 *shadow_addr = (u8 *)kasan_mem_to_shadow(addr);
59b938fcf4SAndrey Konovalov
60b938fcf4SAndrey Konovalov /*
61b938fcf4SAndrey Konovalov * Access crosses 8(shadow size)-byte boundary. Such access maps
62b938fcf4SAndrey Konovalov * into 2 shadow bytes, so we need to check them both.
63b938fcf4SAndrey Konovalov */
64bb6e04a1SArnd Bergmann if (unlikely((((unsigned long)addr + size - 1) & KASAN_GRANULE_MASK) < size - 1))
65b938fcf4SAndrey Konovalov return *shadow_addr || memory_is_poisoned_1(addr + size - 1);
66b938fcf4SAndrey Konovalov
67b938fcf4SAndrey Konovalov return memory_is_poisoned_1(addr + size - 1);
68b938fcf4SAndrey Konovalov }
69b938fcf4SAndrey Konovalov
memory_is_poisoned_16(const void * addr)70bb6e04a1SArnd Bergmann static __always_inline bool memory_is_poisoned_16(const void *addr)
71b938fcf4SAndrey Konovalov {
72bb6e04a1SArnd Bergmann u16 *shadow_addr = (u16 *)kasan_mem_to_shadow(addr);
73b938fcf4SAndrey Konovalov
74b938fcf4SAndrey Konovalov /* Unaligned 16-bytes access maps into 3 shadow bytes. */
75bb6e04a1SArnd Bergmann if (unlikely(!IS_ALIGNED((unsigned long)addr, KASAN_GRANULE_SIZE)))
76b938fcf4SAndrey Konovalov return *shadow_addr || memory_is_poisoned_1(addr + 15);
77b938fcf4SAndrey Konovalov
78b938fcf4SAndrey Konovalov return *shadow_addr;
79b938fcf4SAndrey Konovalov }
80b938fcf4SAndrey Konovalov
bytes_is_nonzero(const u8 * start,size_t size)81b938fcf4SAndrey Konovalov static __always_inline unsigned long bytes_is_nonzero(const u8 *start,
82b938fcf4SAndrey Konovalov size_t size)
83b938fcf4SAndrey Konovalov {
84b938fcf4SAndrey Konovalov while (size) {
85b938fcf4SAndrey Konovalov if (unlikely(*start))
86b938fcf4SAndrey Konovalov return (unsigned long)start;
87b938fcf4SAndrey Konovalov start++;
88b938fcf4SAndrey Konovalov size--;
89b938fcf4SAndrey Konovalov }
90b938fcf4SAndrey Konovalov
91b938fcf4SAndrey Konovalov return 0;
92b938fcf4SAndrey Konovalov }
93b938fcf4SAndrey Konovalov
memory_is_nonzero(const void * start,const void * end)94b938fcf4SAndrey Konovalov static __always_inline unsigned long memory_is_nonzero(const void *start,
95b938fcf4SAndrey Konovalov const void *end)
96b938fcf4SAndrey Konovalov {
97b938fcf4SAndrey Konovalov unsigned int words;
98b938fcf4SAndrey Konovalov unsigned long ret;
99b938fcf4SAndrey Konovalov unsigned int prefix = (unsigned long)start % 8;
100b938fcf4SAndrey Konovalov
101b938fcf4SAndrey Konovalov if (end - start <= 16)
102b938fcf4SAndrey Konovalov return bytes_is_nonzero(start, end - start);
103b938fcf4SAndrey Konovalov
104b938fcf4SAndrey Konovalov if (prefix) {
105b938fcf4SAndrey Konovalov prefix = 8 - prefix;
106b938fcf4SAndrey Konovalov ret = bytes_is_nonzero(start, prefix);
107b938fcf4SAndrey Konovalov if (unlikely(ret))
108b938fcf4SAndrey Konovalov return ret;
109b938fcf4SAndrey Konovalov start += prefix;
110b938fcf4SAndrey Konovalov }
111b938fcf4SAndrey Konovalov
112b938fcf4SAndrey Konovalov words = (end - start) / 8;
113b938fcf4SAndrey Konovalov while (words) {
114b938fcf4SAndrey Konovalov if (unlikely(*(u64 *)start))
115b938fcf4SAndrey Konovalov return bytes_is_nonzero(start, 8);
116b938fcf4SAndrey Konovalov start += 8;
117b938fcf4SAndrey Konovalov words--;
118b938fcf4SAndrey Konovalov }
119b938fcf4SAndrey Konovalov
120b938fcf4SAndrey Konovalov return bytes_is_nonzero(start, (end - start) % 8);
121b938fcf4SAndrey Konovalov }
122b938fcf4SAndrey Konovalov
memory_is_poisoned_n(const void * addr,size_t size)123bb6e04a1SArnd Bergmann static __always_inline bool memory_is_poisoned_n(const void *addr, size_t size)
124b938fcf4SAndrey Konovalov {
125b938fcf4SAndrey Konovalov unsigned long ret;
126b938fcf4SAndrey Konovalov
127bb6e04a1SArnd Bergmann ret = memory_is_nonzero(kasan_mem_to_shadow(addr),
128bb6e04a1SArnd Bergmann kasan_mem_to_shadow(addr + size - 1) + 1);
129b938fcf4SAndrey Konovalov
130b938fcf4SAndrey Konovalov if (unlikely(ret)) {
131bb6e04a1SArnd Bergmann const void *last_byte = addr + size - 1;
132bb6e04a1SArnd Bergmann s8 *last_shadow = (s8 *)kasan_mem_to_shadow(last_byte);
133*05c56e7bSAndrey Konovalov s8 last_accessible_byte = (unsigned long)last_byte & KASAN_GRANULE_MASK;
134b938fcf4SAndrey Konovalov
135b938fcf4SAndrey Konovalov if (unlikely(ret != (unsigned long)last_shadow ||
136*05c56e7bSAndrey Konovalov last_accessible_byte >= *last_shadow))
137b938fcf4SAndrey Konovalov return true;
138b938fcf4SAndrey Konovalov }
139b938fcf4SAndrey Konovalov return false;
140b938fcf4SAndrey Konovalov }
141b938fcf4SAndrey Konovalov
memory_is_poisoned(const void * addr,size_t size)142bb6e04a1SArnd Bergmann static __always_inline bool memory_is_poisoned(const void *addr, size_t size)
143b938fcf4SAndrey Konovalov {
144b938fcf4SAndrey Konovalov if (__builtin_constant_p(size)) {
145b938fcf4SAndrey Konovalov switch (size) {
146b938fcf4SAndrey Konovalov case 1:
147b938fcf4SAndrey Konovalov return memory_is_poisoned_1(addr);
148b938fcf4SAndrey Konovalov case 2:
149b938fcf4SAndrey Konovalov case 4:
150b938fcf4SAndrey Konovalov case 8:
151b938fcf4SAndrey Konovalov return memory_is_poisoned_2_4_8(addr, size);
152b938fcf4SAndrey Konovalov case 16:
153b938fcf4SAndrey Konovalov return memory_is_poisoned_16(addr);
154b938fcf4SAndrey Konovalov default:
155b938fcf4SAndrey Konovalov BUILD_BUG();
156b938fcf4SAndrey Konovalov }
157b938fcf4SAndrey Konovalov }
158b938fcf4SAndrey Konovalov
159b938fcf4SAndrey Konovalov return memory_is_poisoned_n(addr, size);
160b938fcf4SAndrey Konovalov }
161b938fcf4SAndrey Konovalov
check_region_inline(const void * addr,size_t size,bool write,unsigned long ret_ip)162bb6e04a1SArnd Bergmann static __always_inline bool check_region_inline(const void *addr,
163b938fcf4SAndrey Konovalov size_t size, bool write,
164b938fcf4SAndrey Konovalov unsigned long ret_ip)
165b938fcf4SAndrey Konovalov {
166af3751f3SDaniel Axtens if (!kasan_arch_is_ready())
167af3751f3SDaniel Axtens return true;
168af3751f3SDaniel Axtens
169b938fcf4SAndrey Konovalov if (unlikely(size == 0))
170b5f6e0fcSMarco Elver return true;
171b938fcf4SAndrey Konovalov
1728cceeff4SWalter Wu if (unlikely(addr + size < addr))
1738cceeff4SWalter Wu return !kasan_report(addr, size, write, ret_ip);
1748cceeff4SWalter Wu
175bb6e04a1SArnd Bergmann if (unlikely(!addr_has_metadata(addr)))
1768cceeff4SWalter Wu return !kasan_report(addr, size, write, ret_ip);
177b938fcf4SAndrey Konovalov
178b938fcf4SAndrey Konovalov if (likely(!memory_is_poisoned(addr, size)))
179b5f6e0fcSMarco Elver return true;
180b938fcf4SAndrey Konovalov
1818cceeff4SWalter Wu return !kasan_report(addr, size, write, ret_ip);
182b938fcf4SAndrey Konovalov }
183b938fcf4SAndrey Konovalov
kasan_check_range(const void * addr,size_t size,bool write,unsigned long ret_ip)184bb6e04a1SArnd Bergmann bool kasan_check_range(const void *addr, size_t size, bool write,
185b938fcf4SAndrey Konovalov unsigned long ret_ip)
186b938fcf4SAndrey Konovalov {
187f00748bfSAndrey Konovalov return check_region_inline(addr, size, write, ret_ip);
188b938fcf4SAndrey Konovalov }
189b938fcf4SAndrey Konovalov
kasan_byte_accessible(const void * addr)190611806b4SAndrey Konovalov bool kasan_byte_accessible(const void *addr)
1912cdbed63SAndrey Konovalov {
19255d77baeSChristophe Leroy s8 shadow_byte;
19355d77baeSChristophe Leroy
19455d77baeSChristophe Leroy if (!kasan_arch_is_ready())
19555d77baeSChristophe Leroy return true;
19655d77baeSChristophe Leroy
19755d77baeSChristophe Leroy shadow_byte = READ_ONCE(*(s8 *)kasan_mem_to_shadow(addr));
1982cdbed63SAndrey Konovalov
199611806b4SAndrey Konovalov return shadow_byte >= 0 && shadow_byte < KASAN_GRANULE_SIZE;
2002cdbed63SAndrey Konovalov }
2012cdbed63SAndrey Konovalov
kasan_cache_shrink(struct kmem_cache * cache)202b938fcf4SAndrey Konovalov void kasan_cache_shrink(struct kmem_cache *cache)
203b938fcf4SAndrey Konovalov {
204f00748bfSAndrey Konovalov kasan_quarantine_remove_cache(cache);
205b938fcf4SAndrey Konovalov }
206b938fcf4SAndrey Konovalov
kasan_cache_shutdown(struct kmem_cache * cache)207b938fcf4SAndrey Konovalov void kasan_cache_shutdown(struct kmem_cache *cache)
208b938fcf4SAndrey Konovalov {
209b938fcf4SAndrey Konovalov if (!__kmem_cache_empty(cache))
210f00748bfSAndrey Konovalov kasan_quarantine_remove_cache(cache);
211b938fcf4SAndrey Konovalov }
212b938fcf4SAndrey Konovalov
register_global(struct kasan_global * global)213b938fcf4SAndrey Konovalov static void register_global(struct kasan_global *global)
214b938fcf4SAndrey Konovalov {
2151f600626SAndrey Konovalov size_t aligned_size = round_up(global->size, KASAN_GRANULE_SIZE);
216b938fcf4SAndrey Konovalov
217aa5c219cSAndrey Konovalov kasan_unpoison(global->beg, global->size, false);
218b938fcf4SAndrey Konovalov
219f00748bfSAndrey Konovalov kasan_poison(global->beg + aligned_size,
220b938fcf4SAndrey Konovalov global->size_with_redzone - aligned_size,
221aa5c219cSAndrey Konovalov KASAN_GLOBAL_REDZONE, false);
222b938fcf4SAndrey Konovalov }
223b938fcf4SAndrey Konovalov
__asan_register_globals(void * ptr,ssize_t size)224bb6e04a1SArnd Bergmann void __asan_register_globals(void *ptr, ssize_t size)
225b938fcf4SAndrey Konovalov {
226b938fcf4SAndrey Konovalov int i;
227bb6e04a1SArnd Bergmann struct kasan_global *globals = ptr;
228b938fcf4SAndrey Konovalov
229b938fcf4SAndrey Konovalov for (i = 0; i < size; i++)
230b938fcf4SAndrey Konovalov register_global(&globals[i]);
231b938fcf4SAndrey Konovalov }
232b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_register_globals);
233b938fcf4SAndrey Konovalov
__asan_unregister_globals(void * ptr,ssize_t size)234bb6e04a1SArnd Bergmann void __asan_unregister_globals(void *ptr, ssize_t size)
235b938fcf4SAndrey Konovalov {
236b938fcf4SAndrey Konovalov }
237b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_unregister_globals);
238b938fcf4SAndrey Konovalov
239b938fcf4SAndrey Konovalov #define DEFINE_ASAN_LOAD_STORE(size) \
240bb6e04a1SArnd Bergmann void __asan_load##size(void *addr) \
241b938fcf4SAndrey Konovalov { \
242f00748bfSAndrey Konovalov check_region_inline(addr, size, false, _RET_IP_); \
243b938fcf4SAndrey Konovalov } \
244b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_load##size); \
245b938fcf4SAndrey Konovalov __alias(__asan_load##size) \
246bb6e04a1SArnd Bergmann void __asan_load##size##_noabort(void *); \
247b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_load##size##_noabort); \
248bb6e04a1SArnd Bergmann void __asan_store##size(void *addr) \
249b938fcf4SAndrey Konovalov { \
250f00748bfSAndrey Konovalov check_region_inline(addr, size, true, _RET_IP_); \
251b938fcf4SAndrey Konovalov } \
252b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_store##size); \
253b938fcf4SAndrey Konovalov __alias(__asan_store##size) \
254bb6e04a1SArnd Bergmann void __asan_store##size##_noabort(void *); \
255b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_store##size##_noabort)
256b938fcf4SAndrey Konovalov
257b938fcf4SAndrey Konovalov DEFINE_ASAN_LOAD_STORE(1);
258b938fcf4SAndrey Konovalov DEFINE_ASAN_LOAD_STORE(2);
259b938fcf4SAndrey Konovalov DEFINE_ASAN_LOAD_STORE(4);
260b938fcf4SAndrey Konovalov DEFINE_ASAN_LOAD_STORE(8);
261b938fcf4SAndrey Konovalov DEFINE_ASAN_LOAD_STORE(16);
262b938fcf4SAndrey Konovalov
__asan_loadN(void * addr,ssize_t size)263bb6e04a1SArnd Bergmann void __asan_loadN(void *addr, ssize_t size)
264b938fcf4SAndrey Konovalov {
265f00748bfSAndrey Konovalov kasan_check_range(addr, size, false, _RET_IP_);
266b938fcf4SAndrey Konovalov }
267b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_loadN);
268b938fcf4SAndrey Konovalov
269b938fcf4SAndrey Konovalov __alias(__asan_loadN)
270bb6e04a1SArnd Bergmann void __asan_loadN_noabort(void *, ssize_t);
271b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_loadN_noabort);
272b938fcf4SAndrey Konovalov
__asan_storeN(void * addr,ssize_t size)273bb6e04a1SArnd Bergmann void __asan_storeN(void *addr, ssize_t size)
274b938fcf4SAndrey Konovalov {
275f00748bfSAndrey Konovalov kasan_check_range(addr, size, true, _RET_IP_);
276b938fcf4SAndrey Konovalov }
277b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_storeN);
278b938fcf4SAndrey Konovalov
279b938fcf4SAndrey Konovalov __alias(__asan_storeN)
280bb6e04a1SArnd Bergmann void __asan_storeN_noabort(void *, ssize_t);
281b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_storeN_noabort);
282b938fcf4SAndrey Konovalov
283b938fcf4SAndrey Konovalov /* to shut up compiler complaints */
__asan_handle_no_return(void)284b938fcf4SAndrey Konovalov void __asan_handle_no_return(void) {}
285b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_handle_no_return);
286b938fcf4SAndrey Konovalov
287b938fcf4SAndrey Konovalov /* Emitted by compiler to poison alloca()ed objects. */
__asan_alloca_poison(void * addr,ssize_t size)288bb6e04a1SArnd Bergmann void __asan_alloca_poison(void *addr, ssize_t size)
289b938fcf4SAndrey Konovalov {
2901f600626SAndrey Konovalov size_t rounded_up_size = round_up(size, KASAN_GRANULE_SIZE);
291b938fcf4SAndrey Konovalov size_t padding_size = round_up(size, KASAN_ALLOCA_REDZONE_SIZE) -
292b938fcf4SAndrey Konovalov rounded_up_size;
2931f600626SAndrey Konovalov size_t rounded_down_size = round_down(size, KASAN_GRANULE_SIZE);
294b938fcf4SAndrey Konovalov
295b938fcf4SAndrey Konovalov const void *left_redzone = (const void *)(addr -
296b938fcf4SAndrey Konovalov KASAN_ALLOCA_REDZONE_SIZE);
297b938fcf4SAndrey Konovalov const void *right_redzone = (const void *)(addr + rounded_up_size);
298b938fcf4SAndrey Konovalov
299bb6e04a1SArnd Bergmann WARN_ON(!IS_ALIGNED((unsigned long)addr, KASAN_ALLOCA_REDZONE_SIZE));
300b938fcf4SAndrey Konovalov
301f00748bfSAndrey Konovalov kasan_unpoison((const void *)(addr + rounded_down_size),
302aa5c219cSAndrey Konovalov size - rounded_down_size, false);
303f00748bfSAndrey Konovalov kasan_poison(left_redzone, KASAN_ALLOCA_REDZONE_SIZE,
304aa5c219cSAndrey Konovalov KASAN_ALLOCA_LEFT, false);
305f00748bfSAndrey Konovalov kasan_poison(right_redzone, padding_size + KASAN_ALLOCA_REDZONE_SIZE,
306aa5c219cSAndrey Konovalov KASAN_ALLOCA_RIGHT, false);
307b938fcf4SAndrey Konovalov }
308b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_alloca_poison);
309b938fcf4SAndrey Konovalov
310b938fcf4SAndrey Konovalov /* Emitted by compiler to unpoison alloca()ed areas when the stack unwinds. */
__asan_allocas_unpoison(void * stack_top,ssize_t stack_bottom)311bb6e04a1SArnd Bergmann void __asan_allocas_unpoison(void *stack_top, ssize_t stack_bottom)
312b938fcf4SAndrey Konovalov {
313bb6e04a1SArnd Bergmann if (unlikely(!stack_top || stack_top > (void *)stack_bottom))
314b938fcf4SAndrey Konovalov return;
315b938fcf4SAndrey Konovalov
316bb6e04a1SArnd Bergmann kasan_unpoison(stack_top, (void *)stack_bottom - stack_top, false);
317b938fcf4SAndrey Konovalov }
318b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_allocas_unpoison);
319b938fcf4SAndrey Konovalov
320b938fcf4SAndrey Konovalov /* Emitted by the compiler to [un]poison local variables. */
321b938fcf4SAndrey Konovalov #define DEFINE_ASAN_SET_SHADOW(byte) \
322bb6e04a1SArnd Bergmann void __asan_set_shadow_##byte(const void *addr, ssize_t size) \
323b938fcf4SAndrey Konovalov { \
324b938fcf4SAndrey Konovalov __memset((void *)addr, 0x##byte, size); \
325b938fcf4SAndrey Konovalov } \
326b938fcf4SAndrey Konovalov EXPORT_SYMBOL(__asan_set_shadow_##byte)
327b938fcf4SAndrey Konovalov
328b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(00);
329b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(f1);
330b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(f2);
331b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(f3);
332b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(f5);
333b938fcf4SAndrey Konovalov DEFINE_ASAN_SET_SHADOW(f8);
33426e760c9SWalter Wu
3353b7f8813SAndrey Konovalov /* Only allow cache merging when no per-object metadata is present. */
kasan_never_merge(void)3363b7f8813SAndrey Konovalov slab_flags_t kasan_never_merge(void)
3373b7f8813SAndrey Konovalov {
3383b7f8813SAndrey Konovalov if (!kasan_requires_meta())
3393b7f8813SAndrey Konovalov return 0;
3403b7f8813SAndrey Konovalov return SLAB_KASAN;
3413b7f8813SAndrey Konovalov }
3423b7f8813SAndrey Konovalov
3435935143dSAndrey Konovalov /*
3445935143dSAndrey Konovalov * Adaptive redzone policy taken from the userspace AddressSanitizer runtime.
3455935143dSAndrey Konovalov * For larger allocations larger redzones are used.
3465935143dSAndrey Konovalov */
optimal_redzone(unsigned int object_size)3475935143dSAndrey Konovalov static inline unsigned int optimal_redzone(unsigned int object_size)
3485935143dSAndrey Konovalov {
3495935143dSAndrey Konovalov return
3505935143dSAndrey Konovalov object_size <= 64 - 16 ? 16 :
3515935143dSAndrey Konovalov object_size <= 128 - 32 ? 32 :
3525935143dSAndrey Konovalov object_size <= 512 - 64 ? 64 :
3535935143dSAndrey Konovalov object_size <= 4096 - 128 ? 128 :
3545935143dSAndrey Konovalov object_size <= (1 << 14) - 256 ? 256 :
3555935143dSAndrey Konovalov object_size <= (1 << 15) - 512 ? 512 :
3565935143dSAndrey Konovalov object_size <= (1 << 16) - 1024 ? 1024 : 2048;
3575935143dSAndrey Konovalov }
3585935143dSAndrey Konovalov
kasan_cache_create(struct kmem_cache * cache,unsigned int * size,slab_flags_t * flags)359682ed089SAndrey Konovalov void kasan_cache_create(struct kmem_cache *cache, unsigned int *size,
360682ed089SAndrey Konovalov slab_flags_t *flags)
3615935143dSAndrey Konovalov {
3625935143dSAndrey Konovalov unsigned int ok_size;
3635935143dSAndrey Konovalov unsigned int optimal_size;
3645935143dSAndrey Konovalov
365682ed089SAndrey Konovalov if (!kasan_requires_meta())
366682ed089SAndrey Konovalov return;
367682ed089SAndrey Konovalov
368682ed089SAndrey Konovalov /*
369682ed089SAndrey Konovalov * SLAB_KASAN is used to mark caches that are sanitized by KASAN
370682ed089SAndrey Konovalov * and that thus have per-object metadata.
371682ed089SAndrey Konovalov * Currently this flag is used in two places:
372682ed089SAndrey Konovalov * 1. In slab_ksize() to account for per-object metadata when
373682ed089SAndrey Konovalov * calculating the size of the accessible memory within the object.
374682ed089SAndrey Konovalov * 2. In slab_common.c via kasan_never_merge() to prevent merging of
375682ed089SAndrey Konovalov * caches with per-object metadata.
376682ed089SAndrey Konovalov */
377682ed089SAndrey Konovalov *flags |= SLAB_KASAN;
378682ed089SAndrey Konovalov
3795935143dSAndrey Konovalov ok_size = *size;
3805935143dSAndrey Konovalov
3815935143dSAndrey Konovalov /* Add alloc meta into redzone. */
3825935143dSAndrey Konovalov cache->kasan_info.alloc_meta_offset = *size;
3835935143dSAndrey Konovalov *size += sizeof(struct kasan_alloc_meta);
3845935143dSAndrey Konovalov
3855935143dSAndrey Konovalov /*
3865935143dSAndrey Konovalov * If alloc meta doesn't fit, don't add it.
3875935143dSAndrey Konovalov * This can only happen with SLAB, as it has KMALLOC_MAX_SIZE equal
3885935143dSAndrey Konovalov * to KMALLOC_MAX_CACHE_SIZE and doesn't fall back to page_alloc for
3895935143dSAndrey Konovalov * larger sizes.
3905935143dSAndrey Konovalov */
3915935143dSAndrey Konovalov if (*size > KMALLOC_MAX_SIZE) {
3925935143dSAndrey Konovalov cache->kasan_info.alloc_meta_offset = 0;
3935935143dSAndrey Konovalov *size = ok_size;
3945935143dSAndrey Konovalov /* Continue, since free meta might still fit. */
3955935143dSAndrey Konovalov }
3965935143dSAndrey Konovalov
3975935143dSAndrey Konovalov /*
3985935143dSAndrey Konovalov * Add free meta into redzone when it's not possible to store
3995935143dSAndrey Konovalov * it in the object. This is the case when:
4005935143dSAndrey Konovalov * 1. Object is SLAB_TYPESAFE_BY_RCU, which means that it can
4015935143dSAndrey Konovalov * be touched after it was freed, or
4025935143dSAndrey Konovalov * 2. Object has a constructor, which means it's expected to
4035935143dSAndrey Konovalov * retain its content until the next allocation, or
4045935143dSAndrey Konovalov * 3. Object is too small.
4055935143dSAndrey Konovalov * Otherwise cache->kasan_info.free_meta_offset = 0 is implied.
4065935143dSAndrey Konovalov */
4075935143dSAndrey Konovalov if ((cache->flags & SLAB_TYPESAFE_BY_RCU) || cache->ctor ||
4085935143dSAndrey Konovalov cache->object_size < sizeof(struct kasan_free_meta)) {
4095935143dSAndrey Konovalov ok_size = *size;
4105935143dSAndrey Konovalov
4115935143dSAndrey Konovalov cache->kasan_info.free_meta_offset = *size;
4125935143dSAndrey Konovalov *size += sizeof(struct kasan_free_meta);
4135935143dSAndrey Konovalov
4145935143dSAndrey Konovalov /* If free meta doesn't fit, don't add it. */
4155935143dSAndrey Konovalov if (*size > KMALLOC_MAX_SIZE) {
4165935143dSAndrey Konovalov cache->kasan_info.free_meta_offset = KASAN_NO_FREE_META;
4175935143dSAndrey Konovalov *size = ok_size;
4185935143dSAndrey Konovalov }
4195935143dSAndrey Konovalov }
4205935143dSAndrey Konovalov
4215935143dSAndrey Konovalov /* Calculate size with optimal redzone. */
4225935143dSAndrey Konovalov optimal_size = cache->object_size + optimal_redzone(cache->object_size);
4235935143dSAndrey Konovalov /* Limit it with KMALLOC_MAX_SIZE (relevant for SLAB only). */
4245935143dSAndrey Konovalov if (optimal_size > KMALLOC_MAX_SIZE)
4255935143dSAndrey Konovalov optimal_size = KMALLOC_MAX_SIZE;
4265935143dSAndrey Konovalov /* Use optimal size if the size with added metas is not large enough. */
4275935143dSAndrey Konovalov if (*size < optimal_size)
4285935143dSAndrey Konovalov *size = optimal_size;
4295935143dSAndrey Konovalov }
4305935143dSAndrey Konovalov
kasan_get_alloc_meta(struct kmem_cache * cache,const void * object)4312f356801SAndrey Konovalov struct kasan_alloc_meta *kasan_get_alloc_meta(struct kmem_cache *cache,
4322f356801SAndrey Konovalov const void *object)
4332f356801SAndrey Konovalov {
4342f356801SAndrey Konovalov if (!cache->kasan_info.alloc_meta_offset)
4352f356801SAndrey Konovalov return NULL;
4362f356801SAndrey Konovalov return (void *)object + cache->kasan_info.alloc_meta_offset;
4372f356801SAndrey Konovalov }
4382f356801SAndrey Konovalov
kasan_get_free_meta(struct kmem_cache * cache,const void * object)4392f356801SAndrey Konovalov struct kasan_free_meta *kasan_get_free_meta(struct kmem_cache *cache,
4402f356801SAndrey Konovalov const void *object)
4412f356801SAndrey Konovalov {
4422f356801SAndrey Konovalov BUILD_BUG_ON(sizeof(struct kasan_free_meta) > 32);
4432f356801SAndrey Konovalov if (cache->kasan_info.free_meta_offset == KASAN_NO_FREE_META)
4442f356801SAndrey Konovalov return NULL;
4452f356801SAndrey Konovalov return (void *)object + cache->kasan_info.free_meta_offset;
4462f356801SAndrey Konovalov }
4472f356801SAndrey Konovalov
kasan_init_object_meta(struct kmem_cache * cache,const void * object)448836daba0SAndrey Konovalov void kasan_init_object_meta(struct kmem_cache *cache, const void *object)
449836daba0SAndrey Konovalov {
450836daba0SAndrey Konovalov struct kasan_alloc_meta *alloc_meta;
451836daba0SAndrey Konovalov
452836daba0SAndrey Konovalov alloc_meta = kasan_get_alloc_meta(cache, object);
453836daba0SAndrey Konovalov if (alloc_meta)
454836daba0SAndrey Konovalov __memset(alloc_meta, 0, sizeof(*alloc_meta));
455836daba0SAndrey Konovalov }
456836daba0SAndrey Konovalov
kasan_metadata_size(struct kmem_cache * cache,bool in_object)4575d1ba310SFeng Tang size_t kasan_metadata_size(struct kmem_cache *cache, bool in_object)
458f372bde9SAndrey Konovalov {
4595d1ba310SFeng Tang struct kasan_cache *info = &cache->kasan_info;
4605d1ba310SFeng Tang
461f372bde9SAndrey Konovalov if (!kasan_requires_meta())
462f372bde9SAndrey Konovalov return 0;
4635d1ba310SFeng Tang
4645d1ba310SFeng Tang if (in_object)
4655d1ba310SFeng Tang return (info->free_meta_offset ?
4665d1ba310SFeng Tang 0 : sizeof(struct kasan_free_meta));
4675d1ba310SFeng Tang else
4685d1ba310SFeng Tang return (info->alloc_meta_offset ?
469f372bde9SAndrey Konovalov sizeof(struct kasan_alloc_meta) : 0) +
4705d1ba310SFeng Tang ((info->free_meta_offset &&
4715d1ba310SFeng Tang info->free_meta_offset != KASAN_NO_FREE_META) ?
472f372bde9SAndrey Konovalov sizeof(struct kasan_free_meta) : 0);
473f372bde9SAndrey Konovalov }
474f372bde9SAndrey Konovalov
__kasan_record_aux_stack(void * addr,bool can_alloc)4757cb3007cSMarco Elver static void __kasan_record_aux_stack(void *addr, bool can_alloc)
47626e760c9SWalter Wu {
4776e48a966SMatthew Wilcox (Oracle) struct slab *slab = kasan_addr_to_slab(addr);
47826e760c9SWalter Wu struct kmem_cache *cache;
4796476792fSAndrey Konovalov struct kasan_alloc_meta *alloc_meta;
48026e760c9SWalter Wu void *object;
48126e760c9SWalter Wu
4826e48a966SMatthew Wilcox (Oracle) if (is_kfence_address(addr) || !slab)
48326e760c9SWalter Wu return;
48426e760c9SWalter Wu
4856e48a966SMatthew Wilcox (Oracle) cache = slab->slab_cache;
4866e48a966SMatthew Wilcox (Oracle) object = nearest_obj(cache, slab, addr);
4876476792fSAndrey Konovalov alloc_meta = kasan_get_alloc_meta(cache, object);
48813384f61SWalter Wu if (!alloc_meta)
48913384f61SWalter Wu return;
49026e760c9SWalter Wu
4916476792fSAndrey Konovalov alloc_meta->aux_stack[1] = alloc_meta->aux_stack[0];
492726ccdbaSTetsuo Handa alloc_meta->aux_stack[0] = kasan_save_stack(0, can_alloc);
4937cb3007cSMarco Elver }
4947cb3007cSMarco Elver
kasan_record_aux_stack(void * addr)4957cb3007cSMarco Elver void kasan_record_aux_stack(void *addr)
4967cb3007cSMarco Elver {
4977cb3007cSMarco Elver return __kasan_record_aux_stack(addr, true);
4987cb3007cSMarco Elver }
4997cb3007cSMarco Elver
kasan_record_aux_stack_noalloc(void * addr)5007cb3007cSMarco Elver void kasan_record_aux_stack_noalloc(void *addr)
5017cb3007cSMarco Elver {
5027cb3007cSMarco Elver return __kasan_record_aux_stack(addr, false);
50326e760c9SWalter Wu }
504e4b7818bSWalter Wu
kasan_save_alloc_info(struct kmem_cache * cache,void * object,gfp_t flags)505ccf643e6SAndrey Konovalov void kasan_save_alloc_info(struct kmem_cache *cache, void *object, gfp_t flags)
506ccf643e6SAndrey Konovalov {
507ccf643e6SAndrey Konovalov struct kasan_alloc_meta *alloc_meta;
508ccf643e6SAndrey Konovalov
509ccf643e6SAndrey Konovalov alloc_meta = kasan_get_alloc_meta(cache, object);
510ccf643e6SAndrey Konovalov if (alloc_meta)
511ccf643e6SAndrey Konovalov kasan_set_track(&alloc_meta->alloc_track, flags);
512ccf643e6SAndrey Konovalov }
513ccf643e6SAndrey Konovalov
kasan_save_free_info(struct kmem_cache * cache,void * object)5146b074349SAndrey Konovalov void kasan_save_free_info(struct kmem_cache *cache, void *object)
515e4b7818bSWalter Wu {
516e4b7818bSWalter Wu struct kasan_free_meta *free_meta;
517e4b7818bSWalter Wu
5186476792fSAndrey Konovalov free_meta = kasan_get_free_meta(cache, object);
51997593cadSAndrey Konovalov if (!free_meta)
52097593cadSAndrey Konovalov return;
521e4b7818bSWalter Wu
522726ccdbaSTetsuo Handa kasan_set_track(&free_meta->free_track, 0);
52397593cadSAndrey Konovalov /* The object was freed and has free track set. */
52406bc4cf6SAndrey Konovalov *(u8 *)kasan_mem_to_shadow(object) = KASAN_SLAB_FREETRACK;
525e4b7818bSWalter Wu }
526