kasan: hide invalid free check implementation
[linux-2.6-microblaze.git] / mm / kasan / generic.c
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * This file contains core generic KASAN 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
12 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
13
14 #include <linux/export.h>
15 #include <linux/interrupt.h>
16 #include <linux/init.h>
17 #include <linux/kasan.h>
18 #include <linux/kernel.h>
19 #include <linux/kmemleak.h>
20 #include <linux/linkage.h>
21 #include <linux/memblock.h>
22 #include <linux/memory.h>
23 #include <linux/mm.h>
24 #include <linux/module.h>
25 #include <linux/printk.h>
26 #include <linux/sched.h>
27 #include <linux/sched/task_stack.h>
28 #include <linux/slab.h>
29 #include <linux/stacktrace.h>
30 #include <linux/string.h>
31 #include <linux/types.h>
32 #include <linux/vmalloc.h>
33 #include <linux/bug.h>
34
35 #include "kasan.h"
36 #include "../slab.h"
37
38 /*
39  * All functions below always inlined so compiler could
40  * perform better optimizations in each of __asan_loadX/__assn_storeX
41  * depending on memory access size X.
42  */
43
44 static __always_inline bool memory_is_poisoned_1(unsigned long addr)
45 {
46         s8 shadow_value = *(s8 *)kasan_mem_to_shadow((void *)addr);
47
48         if (unlikely(shadow_value)) {
49                 s8 last_accessible_byte = addr & KASAN_GRANULE_MASK;
50                 return unlikely(last_accessible_byte >= shadow_value);
51         }
52
53         return false;
54 }
55
56 static __always_inline bool memory_is_poisoned_2_4_8(unsigned long addr,
57                                                 unsigned long size)
58 {
59         u8 *shadow_addr = (u8 *)kasan_mem_to_shadow((void *)addr);
60
61         /*
62          * Access crosses 8(shadow size)-byte boundary. Such access maps
63          * into 2 shadow bytes, so we need to check them both.
64          */
65         if (unlikely(((addr + size - 1) & KASAN_GRANULE_MASK) < size - 1))
66                 return *shadow_addr || memory_is_poisoned_1(addr + size - 1);
67
68         return memory_is_poisoned_1(addr + size - 1);
69 }
70
71 static __always_inline bool memory_is_poisoned_16(unsigned long addr)
72 {
73         u16 *shadow_addr = (u16 *)kasan_mem_to_shadow((void *)addr);
74
75         /* Unaligned 16-bytes access maps into 3 shadow bytes. */
76         if (unlikely(!IS_ALIGNED(addr, KASAN_GRANULE_SIZE)))
77                 return *shadow_addr || memory_is_poisoned_1(addr + 15);
78
79         return *shadow_addr;
80 }
81
82 static __always_inline unsigned long bytes_is_nonzero(const u8 *start,
83                                         size_t size)
84 {
85         while (size) {
86                 if (unlikely(*start))
87                         return (unsigned long)start;
88                 start++;
89                 size--;
90         }
91
92         return 0;
93 }
94
95 static __always_inline unsigned long memory_is_nonzero(const void *start,
96                                                 const void *end)
97 {
98         unsigned int words;
99         unsigned long ret;
100         unsigned int prefix = (unsigned long)start % 8;
101
102         if (end - start <= 16)
103                 return bytes_is_nonzero(start, end - start);
104
105         if (prefix) {
106                 prefix = 8 - prefix;
107                 ret = bytes_is_nonzero(start, prefix);
108                 if (unlikely(ret))
109                         return ret;
110                 start += prefix;
111         }
112
113         words = (end - start) / 8;
114         while (words) {
115                 if (unlikely(*(u64 *)start))
116                         return bytes_is_nonzero(start, 8);
117                 start += 8;
118                 words--;
119         }
120
121         return bytes_is_nonzero(start, (end - start) % 8);
122 }
123
124 static __always_inline bool memory_is_poisoned_n(unsigned long addr,
125                                                 size_t size)
126 {
127         unsigned long ret;
128
129         ret = memory_is_nonzero(kasan_mem_to_shadow((void *)addr),
130                         kasan_mem_to_shadow((void *)addr + size - 1) + 1);
131
132         if (unlikely(ret)) {
133                 unsigned long last_byte = addr + size - 1;
134                 s8 *last_shadow = (s8 *)kasan_mem_to_shadow((void *)last_byte);
135
136                 if (unlikely(ret != (unsigned long)last_shadow ||
137                         ((long)(last_byte & KASAN_GRANULE_MASK) >= *last_shadow)))
138                         return true;
139         }
140         return false;
141 }
142
143 static __always_inline bool memory_is_poisoned(unsigned long addr, size_t size)
144 {
145         if (__builtin_constant_p(size)) {
146                 switch (size) {
147                 case 1:
148                         return memory_is_poisoned_1(addr);
149                 case 2:
150                 case 4:
151                 case 8:
152                         return memory_is_poisoned_2_4_8(addr, size);
153                 case 16:
154                         return memory_is_poisoned_16(addr);
155                 default:
156                         BUILD_BUG();
157                 }
158         }
159
160         return memory_is_poisoned_n(addr, size);
161 }
162
163 static __always_inline bool check_memory_region_inline(unsigned long addr,
164                                                 size_t size, bool write,
165                                                 unsigned long ret_ip)
166 {
167         if (unlikely(size == 0))
168                 return true;
169
170         if (unlikely(addr + size < addr))
171                 return !kasan_report(addr, size, write, ret_ip);
172
173         if (unlikely((void *)addr <
174                 kasan_shadow_to_mem((void *)KASAN_SHADOW_START))) {
175                 return !kasan_report(addr, size, write, ret_ip);
176         }
177
178         if (likely(!memory_is_poisoned(addr, size)))
179                 return true;
180
181         return !kasan_report(addr, size, write, ret_ip);
182 }
183
184 bool check_memory_region(unsigned long addr, size_t size, bool write,
185                                 unsigned long ret_ip)
186 {
187         return check_memory_region_inline(addr, size, write, ret_ip);
188 }
189
190 bool check_invalid_free(void *addr)
191 {
192         s8 shadow_byte = READ_ONCE(*(s8 *)kasan_mem_to_shadow(addr));
193
194         return shadow_byte < 0 || shadow_byte >= KASAN_GRANULE_SIZE;
195 }
196
197 void kasan_cache_shrink(struct kmem_cache *cache)
198 {
199         quarantine_remove_cache(cache);
200 }
201
202 void kasan_cache_shutdown(struct kmem_cache *cache)
203 {
204         if (!__kmem_cache_empty(cache))
205                 quarantine_remove_cache(cache);
206 }
207
208 static void register_global(struct kasan_global *global)
209 {
210         size_t aligned_size = round_up(global->size, KASAN_GRANULE_SIZE);
211
212         unpoison_range(global->beg, global->size);
213
214         poison_range(global->beg + aligned_size,
215                      global->size_with_redzone - aligned_size,
216                      KASAN_GLOBAL_REDZONE);
217 }
218
219 void __asan_register_globals(struct kasan_global *globals, size_t size)
220 {
221         int i;
222
223         for (i = 0; i < size; i++)
224                 register_global(&globals[i]);
225 }
226 EXPORT_SYMBOL(__asan_register_globals);
227
228 void __asan_unregister_globals(struct kasan_global *globals, size_t size)
229 {
230 }
231 EXPORT_SYMBOL(__asan_unregister_globals);
232
233 #define DEFINE_ASAN_LOAD_STORE(size)                                    \
234         void __asan_load##size(unsigned long addr)                      \
235         {                                                               \
236                 check_memory_region_inline(addr, size, false, _RET_IP_);\
237         }                                                               \
238         EXPORT_SYMBOL(__asan_load##size);                               \
239         __alias(__asan_load##size)                                      \
240         void __asan_load##size##_noabort(unsigned long);                \
241         EXPORT_SYMBOL(__asan_load##size##_noabort);                     \
242         void __asan_store##size(unsigned long addr)                     \
243         {                                                               \
244                 check_memory_region_inline(addr, size, true, _RET_IP_); \
245         }                                                               \
246         EXPORT_SYMBOL(__asan_store##size);                              \
247         __alias(__asan_store##size)                                     \
248         void __asan_store##size##_noabort(unsigned long);               \
249         EXPORT_SYMBOL(__asan_store##size##_noabort)
250
251 DEFINE_ASAN_LOAD_STORE(1);
252 DEFINE_ASAN_LOAD_STORE(2);
253 DEFINE_ASAN_LOAD_STORE(4);
254 DEFINE_ASAN_LOAD_STORE(8);
255 DEFINE_ASAN_LOAD_STORE(16);
256
257 void __asan_loadN(unsigned long addr, size_t size)
258 {
259         check_memory_region(addr, size, false, _RET_IP_);
260 }
261 EXPORT_SYMBOL(__asan_loadN);
262
263 __alias(__asan_loadN)
264 void __asan_loadN_noabort(unsigned long, size_t);
265 EXPORT_SYMBOL(__asan_loadN_noabort);
266
267 void __asan_storeN(unsigned long addr, size_t size)
268 {
269         check_memory_region(addr, size, true, _RET_IP_);
270 }
271 EXPORT_SYMBOL(__asan_storeN);
272
273 __alias(__asan_storeN)
274 void __asan_storeN_noabort(unsigned long, size_t);
275 EXPORT_SYMBOL(__asan_storeN_noabort);
276
277 /* to shut up compiler complaints */
278 void __asan_handle_no_return(void) {}
279 EXPORT_SYMBOL(__asan_handle_no_return);
280
281 /* Emitted by compiler to poison alloca()ed objects. */
282 void __asan_alloca_poison(unsigned long addr, size_t size)
283 {
284         size_t rounded_up_size = round_up(size, KASAN_GRANULE_SIZE);
285         size_t padding_size = round_up(size, KASAN_ALLOCA_REDZONE_SIZE) -
286                         rounded_up_size;
287         size_t rounded_down_size = round_down(size, KASAN_GRANULE_SIZE);
288
289         const void *left_redzone = (const void *)(addr -
290                         KASAN_ALLOCA_REDZONE_SIZE);
291         const void *right_redzone = (const void *)(addr + rounded_up_size);
292
293         WARN_ON(!IS_ALIGNED(addr, KASAN_ALLOCA_REDZONE_SIZE));
294
295         unpoison_range((const void *)(addr + rounded_down_size),
296                        size - rounded_down_size);
297         poison_range(left_redzone, KASAN_ALLOCA_REDZONE_SIZE,
298                      KASAN_ALLOCA_LEFT);
299         poison_range(right_redzone, padding_size + KASAN_ALLOCA_REDZONE_SIZE,
300                      KASAN_ALLOCA_RIGHT);
301 }
302 EXPORT_SYMBOL(__asan_alloca_poison);
303
304 /* Emitted by compiler to unpoison alloca()ed areas when the stack unwinds. */
305 void __asan_allocas_unpoison(const void *stack_top, const void *stack_bottom)
306 {
307         if (unlikely(!stack_top || stack_top > stack_bottom))
308                 return;
309
310         unpoison_range(stack_top, stack_bottom - stack_top);
311 }
312 EXPORT_SYMBOL(__asan_allocas_unpoison);
313
314 /* Emitted by the compiler to [un]poison local variables. */
315 #define DEFINE_ASAN_SET_SHADOW(byte) \
316         void __asan_set_shadow_##byte(const void *addr, size_t size)    \
317         {                                                               \
318                 __memset((void *)addr, 0x##byte, size);                 \
319         }                                                               \
320         EXPORT_SYMBOL(__asan_set_shadow_##byte)
321
322 DEFINE_ASAN_SET_SHADOW(00);
323 DEFINE_ASAN_SET_SHADOW(f1);
324 DEFINE_ASAN_SET_SHADOW(f2);
325 DEFINE_ASAN_SET_SHADOW(f3);
326 DEFINE_ASAN_SET_SHADOW(f5);
327 DEFINE_ASAN_SET_SHADOW(f8);
328
329 void kasan_record_aux_stack(void *addr)
330 {
331         struct page *page = kasan_addr_to_page(addr);
332         struct kmem_cache *cache;
333         struct kasan_alloc_meta *alloc_info;
334         void *object;
335
336         if (!(page && PageSlab(page)))
337                 return;
338
339         cache = page->slab_cache;
340         object = nearest_obj(cache, page, addr);
341         alloc_info = get_alloc_info(cache, object);
342
343         alloc_info->aux_stack[1] = alloc_info->aux_stack[0];
344         alloc_info->aux_stack[0] = kasan_save_stack(GFP_NOWAIT);
345 }
346
347 void kasan_set_free_info(struct kmem_cache *cache,
348                                 void *object, u8 tag)
349 {
350         struct kasan_free_meta *free_meta;
351
352         free_meta = get_free_info(cache, object);
353         kasan_set_track(&free_meta->free_track, GFP_NOWAIT);
354
355         /*
356          *  the object was freed and has free track set
357          */
358         *(u8 *)kasan_mem_to_shadow(object) = KASAN_KMALLOC_FREETRACK;
359 }
360
361 struct kasan_track *kasan_get_free_track(struct kmem_cache *cache,
362                                 void *object, u8 tag)
363 {
364         if (*(u8 *)kasan_mem_to_shadow(object) != KASAN_KMALLOC_FREETRACK)
365                 return NULL;
366         return &get_free_info(cache, object)->free_track;
367 }