subr_asan.c revision 1.7 1 1.7 maxv /* $NetBSD: subr_asan.c,v 1.7 2019/04/11 17:43:45 maxv Exp $ */
2 1.1 maxv
3 1.1 maxv /*
4 1.1 maxv * Copyright (c) 2018 The NetBSD Foundation, Inc.
5 1.1 maxv * All rights reserved.
6 1.1 maxv *
7 1.1 maxv * This code is derived from software contributed to The NetBSD Foundation
8 1.1 maxv * by Maxime Villard.
9 1.1 maxv *
10 1.1 maxv * Redistribution and use in source and binary forms, with or without
11 1.1 maxv * modification, are permitted provided that the following conditions
12 1.1 maxv * are met:
13 1.1 maxv * 1. Redistributions of source code must retain the above copyright
14 1.1 maxv * notice, this list of conditions and the following disclaimer.
15 1.1 maxv * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 maxv * notice, this list of conditions and the following disclaimer in the
17 1.1 maxv * documentation and/or other materials provided with the distribution.
18 1.1 maxv *
19 1.1 maxv * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 maxv * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 maxv * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 maxv * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 maxv * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 maxv * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 maxv * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 maxv * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 maxv * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 maxv * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 maxv * POSSIBILITY OF SUCH DAMAGE.
30 1.1 maxv */
31 1.1 maxv
32 1.1 maxv #include <sys/cdefs.h>
33 1.7 maxv __KERNEL_RCSID(0, "$NetBSD: subr_asan.c,v 1.7 2019/04/11 17:43:45 maxv Exp $");
34 1.1 maxv
35 1.1 maxv #include <sys/param.h>
36 1.1 maxv #include <sys/device.h>
37 1.1 maxv #include <sys/kernel.h>
38 1.1 maxv #include <sys/param.h>
39 1.1 maxv #include <sys/conf.h>
40 1.1 maxv #include <sys/systm.h>
41 1.1 maxv #include <sys/types.h>
42 1.1 maxv #include <sys/asan.h>
43 1.1 maxv
44 1.1 maxv #include <uvm/uvm.h>
45 1.1 maxv
46 1.1 maxv /* ASAN constants. Part of the compiler ABI. */
47 1.1 maxv #define KASAN_SHADOW_SCALE_SHIFT 3
48 1.1 maxv #define KASAN_SHADOW_SCALE_SIZE (1UL << KASAN_SHADOW_SCALE_SHIFT)
49 1.1 maxv #define KASAN_SHADOW_MASK (KASAN_SHADOW_SCALE_SIZE - 1)
50 1.1 maxv
51 1.1 maxv /* The MD code. */
52 1.1 maxv #include <machine/asan.h>
53 1.1 maxv
54 1.1 maxv /* ASAN ABI version. */
55 1.1 maxv #if defined(__clang__) && (__clang_major__ - 0 >= 6)
56 1.1 maxv #define ASAN_ABI_VERSION 8
57 1.1 maxv #elif __GNUC_PREREQ__(7, 1) && !defined(__clang__)
58 1.1 maxv #define ASAN_ABI_VERSION 8
59 1.1 maxv #elif __GNUC_PREREQ__(6, 1) && !defined(__clang__)
60 1.1 maxv #define ASAN_ABI_VERSION 6
61 1.1 maxv #else
62 1.1 maxv #error "Unsupported compiler version"
63 1.1 maxv #endif
64 1.1 maxv
65 1.1 maxv #define __RET_ADDR (unsigned long)__builtin_return_address(0)
66 1.1 maxv
67 1.1 maxv /* Global variable descriptor. Part of the compiler ABI. */
68 1.1 maxv struct __asan_global_source_location {
69 1.1 maxv const char *filename;
70 1.1 maxv int line_no;
71 1.1 maxv int column_no;
72 1.1 maxv };
73 1.1 maxv struct __asan_global {
74 1.1 maxv const void *beg; /* address of the global variable */
75 1.1 maxv size_t size; /* size of the global variable */
76 1.1 maxv size_t size_with_redzone; /* size with the redzone */
77 1.1 maxv const void *name; /* name of the variable */
78 1.1 maxv const void *module_name; /* name of the module where the var is declared */
79 1.1 maxv unsigned long has_dynamic_init; /* the var has dyn initializer (c++) */
80 1.1 maxv struct __asan_global_source_location *location;
81 1.1 maxv #if ASAN_ABI_VERSION >= 7
82 1.1 maxv uintptr_t odr_indicator; /* the address of the ODR indicator symbol */
83 1.1 maxv #endif
84 1.1 maxv };
85 1.1 maxv
86 1.1 maxv static bool kasan_enabled __read_mostly = false;
87 1.1 maxv
88 1.1 maxv /* -------------------------------------------------------------------------- */
89 1.1 maxv
90 1.1 maxv void
91 1.1 maxv kasan_shadow_map(void *addr, size_t size)
92 1.1 maxv {
93 1.1 maxv size_t sz, npages, i;
94 1.1 maxv vaddr_t sva, eva;
95 1.1 maxv
96 1.1 maxv KASSERT((vaddr_t)addr % KASAN_SHADOW_SCALE_SIZE == 0);
97 1.1 maxv
98 1.1 maxv sz = roundup(size, KASAN_SHADOW_SCALE_SIZE) / KASAN_SHADOW_SCALE_SIZE;
99 1.1 maxv
100 1.1 maxv sva = (vaddr_t)kasan_md_addr_to_shad(addr);
101 1.1 maxv eva = (vaddr_t)kasan_md_addr_to_shad(addr) + sz;
102 1.1 maxv
103 1.1 maxv sva = rounddown(sva, PAGE_SIZE);
104 1.1 maxv eva = roundup(eva, PAGE_SIZE);
105 1.1 maxv
106 1.1 maxv npages = (eva - sva) / PAGE_SIZE;
107 1.1 maxv
108 1.1 maxv KASSERT(sva >= KASAN_MD_SHADOW_START && eva < KASAN_MD_SHADOW_END);
109 1.1 maxv
110 1.1 maxv for (i = 0; i < npages; i++) {
111 1.1 maxv kasan_md_shadow_map_page(sva + i * PAGE_SIZE);
112 1.1 maxv }
113 1.1 maxv }
114 1.1 maxv
115 1.1 maxv static void
116 1.1 maxv kasan_ctors(void)
117 1.1 maxv {
118 1.1 maxv extern uint64_t __CTOR_LIST__, __CTOR_END__;
119 1.1 maxv size_t nentries, i;
120 1.1 maxv uint64_t *ptr;
121 1.1 maxv
122 1.1 maxv nentries = ((size_t)&__CTOR_END__ - (size_t)&__CTOR_LIST__) /
123 1.1 maxv sizeof(uintptr_t);
124 1.1 maxv
125 1.1 maxv ptr = &__CTOR_LIST__;
126 1.1 maxv for (i = 0; i < nentries; i++) {
127 1.1 maxv void (*func)(void);
128 1.1 maxv
129 1.1 maxv func = (void *)(*ptr);
130 1.1 maxv (*func)();
131 1.1 maxv
132 1.1 maxv ptr++;
133 1.1 maxv }
134 1.1 maxv }
135 1.1 maxv
136 1.1 maxv void
137 1.1 maxv kasan_early_init(void *stack)
138 1.1 maxv {
139 1.1 maxv kasan_md_early_init(stack);
140 1.1 maxv }
141 1.1 maxv
142 1.1 maxv void
143 1.1 maxv kasan_init(void)
144 1.1 maxv {
145 1.1 maxv /* MD initialization. */
146 1.1 maxv kasan_md_init();
147 1.1 maxv
148 1.1 maxv /* Now officially enabled. */
149 1.1 maxv kasan_enabled = true;
150 1.1 maxv
151 1.1 maxv /* Call the ASAN constructors. */
152 1.1 maxv kasan_ctors();
153 1.1 maxv }
154 1.1 maxv
155 1.5 maxv static inline const char *
156 1.5 maxv kasan_code_name(uint8_t code)
157 1.5 maxv {
158 1.5 maxv switch (code) {
159 1.6 maxv case KASAN_GENERIC_REDZONE:
160 1.6 maxv return "GenericRedZone";
161 1.6 maxv case KASAN_MALLOC_REDZONE:
162 1.6 maxv return "MallocRedZone";
163 1.6 maxv case KASAN_KMEM_REDZONE:
164 1.6 maxv return "KmemRedZone";
165 1.6 maxv case KASAN_POOL_REDZONE:
166 1.6 maxv return "PoolRedZone";
167 1.6 maxv case KASAN_POOL_FREED:
168 1.6 maxv return "PoolUseAfterFree";
169 1.5 maxv case 1 ... 7:
170 1.5 maxv return "RedZonePartial";
171 1.5 maxv case KASAN_STACK_LEFT:
172 1.5 maxv return "StackLeft";
173 1.5 maxv case KASAN_STACK_RIGHT:
174 1.5 maxv return "StackRight";
175 1.5 maxv case KASAN_STACK_PARTIAL:
176 1.5 maxv return "StackPartial";
177 1.5 maxv case KASAN_USE_AFTER_SCOPE:
178 1.5 maxv return "UseAfterScope";
179 1.5 maxv default:
180 1.5 maxv return "Unknown";
181 1.5 maxv }
182 1.5 maxv }
183 1.5 maxv
184 1.1 maxv static void
185 1.5 maxv kasan_report(unsigned long addr, size_t size, bool write, unsigned long pc,
186 1.5 maxv uint8_t code)
187 1.1 maxv {
188 1.5 maxv printf("ASan: Unauthorized Access In %p: Addr %p [%zu byte%s, %s,"
189 1.5 maxv " %s]\n",
190 1.1 maxv (void *)pc, (void *)addr, size, (size > 1 ? "s" : ""),
191 1.5 maxv (write ? "write" : "read"), kasan_code_name(code));
192 1.1 maxv kasan_md_unwind();
193 1.1 maxv }
194 1.1 maxv
195 1.1 maxv static __always_inline void
196 1.1 maxv kasan_shadow_1byte_markvalid(unsigned long addr)
197 1.1 maxv {
198 1.1 maxv int8_t *byte = kasan_md_addr_to_shad((void *)addr);
199 1.1 maxv int8_t last = (addr & KASAN_SHADOW_MASK) + 1;
200 1.1 maxv
201 1.1 maxv *byte = last;
202 1.1 maxv }
203 1.1 maxv
204 1.1 maxv static __always_inline void
205 1.4 maxv kasan_shadow_Nbyte_markvalid(const void *addr, size_t size)
206 1.4 maxv {
207 1.4 maxv size_t i;
208 1.4 maxv
209 1.4 maxv for (i = 0; i < size; i++) {
210 1.4 maxv kasan_shadow_1byte_markvalid((unsigned long)addr+i);
211 1.4 maxv }
212 1.4 maxv }
213 1.4 maxv
214 1.4 maxv static __always_inline void
215 1.6 maxv kasan_shadow_Nbyte_fill(const void *addr, size_t size, uint8_t code)
216 1.1 maxv {
217 1.1 maxv void *shad;
218 1.1 maxv
219 1.1 maxv if (__predict_false(size == 0))
220 1.1 maxv return;
221 1.1 maxv if (__predict_false(kasan_md_unsupported((vaddr_t)addr)))
222 1.1 maxv return;
223 1.1 maxv
224 1.1 maxv KASSERT((vaddr_t)addr % KASAN_SHADOW_SCALE_SIZE == 0);
225 1.1 maxv KASSERT(size % KASAN_SHADOW_SCALE_SIZE == 0);
226 1.1 maxv
227 1.1 maxv shad = (void *)kasan_md_addr_to_shad(addr);
228 1.1 maxv size = size >> KASAN_SHADOW_SCALE_SHIFT;
229 1.1 maxv
230 1.6 maxv __builtin_memset(shad, code, size);
231 1.1 maxv }
232 1.1 maxv
233 1.1 maxv void
234 1.1 maxv kasan_add_redzone(size_t *size)
235 1.1 maxv {
236 1.1 maxv *size = roundup(*size, KASAN_SHADOW_SCALE_SIZE);
237 1.1 maxv *size += KASAN_SHADOW_SCALE_SIZE;
238 1.1 maxv }
239 1.1 maxv
240 1.1 maxv static void
241 1.6 maxv kasan_markmem(const void *addr, size_t size, bool valid, uint8_t code)
242 1.1 maxv {
243 1.1 maxv KASSERT((vaddr_t)addr % KASAN_SHADOW_SCALE_SIZE == 0);
244 1.1 maxv if (valid) {
245 1.4 maxv kasan_shadow_Nbyte_markvalid(addr, size);
246 1.1 maxv } else {
247 1.6 maxv kasan_shadow_Nbyte_fill(addr, size, code);
248 1.1 maxv }
249 1.1 maxv }
250 1.1 maxv
251 1.1 maxv void
252 1.1 maxv kasan_softint(struct lwp *l)
253 1.1 maxv {
254 1.1 maxv const void *stk = (const void *)uvm_lwp_getuarea(l);
255 1.1 maxv
256 1.1 maxv kasan_shadow_Nbyte_fill(stk, USPACE, 0);
257 1.1 maxv }
258 1.1 maxv
259 1.2 maxv /*
260 1.2 maxv * In an area of size 'sz_with_redz', mark the 'size' first bytes as valid,
261 1.2 maxv * and the rest as invalid. There are generally two use cases:
262 1.2 maxv *
263 1.6 maxv * o kasan_mark(addr, origsize, size, code), with origsize < size. This marks
264 1.6 maxv * the redzone at the end of the buffer as invalid.
265 1.2 maxv *
266 1.6 maxv * o kasan_mark(addr, size, size, 0). This marks the entire buffer as valid.
267 1.2 maxv */
268 1.1 maxv void
269 1.6 maxv kasan_mark(const void *addr, size_t size, size_t sz_with_redz, uint8_t code)
270 1.1 maxv {
271 1.6 maxv kasan_markmem(addr, sz_with_redz, false, code);
272 1.6 maxv kasan_markmem(addr, size, true, code);
273 1.1 maxv }
274 1.1 maxv
275 1.1 maxv /* -------------------------------------------------------------------------- */
276 1.1 maxv
277 1.1 maxv #define ADDR_CROSSES_SCALE_BOUNDARY(addr, size) \
278 1.1 maxv (addr >> KASAN_SHADOW_SCALE_SHIFT) != \
279 1.1 maxv ((addr + size - 1) >> KASAN_SHADOW_SCALE_SHIFT)
280 1.1 maxv
281 1.1 maxv static __always_inline bool
282 1.5 maxv kasan_shadow_1byte_isvalid(unsigned long addr, uint8_t *code)
283 1.1 maxv {
284 1.1 maxv int8_t *byte = kasan_md_addr_to_shad((void *)addr);
285 1.1 maxv int8_t last = (addr & KASAN_SHADOW_MASK) + 1;
286 1.1 maxv
287 1.5 maxv if (__predict_true(*byte == 0 || last <= *byte)) {
288 1.5 maxv return true;
289 1.5 maxv }
290 1.5 maxv *code = *byte;
291 1.5 maxv return false;
292 1.1 maxv }
293 1.1 maxv
294 1.1 maxv static __always_inline bool
295 1.5 maxv kasan_shadow_2byte_isvalid(unsigned long addr, uint8_t *code)
296 1.1 maxv {
297 1.1 maxv int8_t *byte, last;
298 1.1 maxv
299 1.1 maxv if (ADDR_CROSSES_SCALE_BOUNDARY(addr, 2)) {
300 1.5 maxv return (kasan_shadow_1byte_isvalid(addr, code) &&
301 1.5 maxv kasan_shadow_1byte_isvalid(addr+1, code));
302 1.1 maxv }
303 1.1 maxv
304 1.1 maxv byte = kasan_md_addr_to_shad((void *)addr);
305 1.1 maxv last = ((addr + 1) & KASAN_SHADOW_MASK) + 1;
306 1.1 maxv
307 1.5 maxv if (__predict_true(*byte == 0 || last <= *byte)) {
308 1.5 maxv return true;
309 1.5 maxv }
310 1.5 maxv *code = *byte;
311 1.5 maxv return false;
312 1.1 maxv }
313 1.1 maxv
314 1.1 maxv static __always_inline bool
315 1.5 maxv kasan_shadow_4byte_isvalid(unsigned long addr, uint8_t *code)
316 1.1 maxv {
317 1.1 maxv int8_t *byte, last;
318 1.1 maxv
319 1.1 maxv if (ADDR_CROSSES_SCALE_BOUNDARY(addr, 4)) {
320 1.5 maxv return (kasan_shadow_2byte_isvalid(addr, code) &&
321 1.5 maxv kasan_shadow_2byte_isvalid(addr+2, code));
322 1.1 maxv }
323 1.1 maxv
324 1.1 maxv byte = kasan_md_addr_to_shad((void *)addr);
325 1.1 maxv last = ((addr + 3) & KASAN_SHADOW_MASK) + 1;
326 1.1 maxv
327 1.5 maxv if (__predict_true(*byte == 0 || last <= *byte)) {
328 1.5 maxv return true;
329 1.5 maxv }
330 1.5 maxv *code = *byte;
331 1.5 maxv return false;
332 1.1 maxv }
333 1.1 maxv
334 1.1 maxv static __always_inline bool
335 1.5 maxv kasan_shadow_8byte_isvalid(unsigned long addr, uint8_t *code)
336 1.1 maxv {
337 1.1 maxv int8_t *byte, last;
338 1.1 maxv
339 1.1 maxv if (ADDR_CROSSES_SCALE_BOUNDARY(addr, 8)) {
340 1.5 maxv return (kasan_shadow_4byte_isvalid(addr, code) &&
341 1.5 maxv kasan_shadow_4byte_isvalid(addr+4, code));
342 1.1 maxv }
343 1.1 maxv
344 1.1 maxv byte = kasan_md_addr_to_shad((void *)addr);
345 1.1 maxv last = ((addr + 7) & KASAN_SHADOW_MASK) + 1;
346 1.1 maxv
347 1.5 maxv if (__predict_true(*byte == 0 || last <= *byte)) {
348 1.5 maxv return true;
349 1.5 maxv }
350 1.5 maxv *code = *byte;
351 1.5 maxv return false;
352 1.1 maxv }
353 1.1 maxv
354 1.1 maxv static __always_inline bool
355 1.5 maxv kasan_shadow_Nbyte_isvalid(unsigned long addr, size_t size, uint8_t *code)
356 1.1 maxv {
357 1.1 maxv size_t i;
358 1.1 maxv
359 1.1 maxv for (i = 0; i < size; i++) {
360 1.5 maxv if (!kasan_shadow_1byte_isvalid(addr+i, code))
361 1.1 maxv return false;
362 1.1 maxv }
363 1.1 maxv
364 1.1 maxv return true;
365 1.1 maxv }
366 1.1 maxv
367 1.1 maxv static __always_inline void
368 1.1 maxv kasan_shadow_check(unsigned long addr, size_t size, bool write,
369 1.1 maxv unsigned long retaddr)
370 1.1 maxv {
371 1.5 maxv uint8_t code;
372 1.1 maxv bool valid;
373 1.1 maxv
374 1.1 maxv if (__predict_false(!kasan_enabled))
375 1.1 maxv return;
376 1.1 maxv if (__predict_false(size == 0))
377 1.1 maxv return;
378 1.1 maxv if (__predict_false(kasan_md_unsupported(addr)))
379 1.1 maxv return;
380 1.1 maxv
381 1.1 maxv if (__builtin_constant_p(size)) {
382 1.1 maxv switch (size) {
383 1.1 maxv case 1:
384 1.5 maxv valid = kasan_shadow_1byte_isvalid(addr, &code);
385 1.1 maxv break;
386 1.1 maxv case 2:
387 1.5 maxv valid = kasan_shadow_2byte_isvalid(addr, &code);
388 1.1 maxv break;
389 1.1 maxv case 4:
390 1.5 maxv valid = kasan_shadow_4byte_isvalid(addr, &code);
391 1.1 maxv break;
392 1.1 maxv case 8:
393 1.5 maxv valid = kasan_shadow_8byte_isvalid(addr, &code);
394 1.1 maxv break;
395 1.1 maxv default:
396 1.5 maxv valid = kasan_shadow_Nbyte_isvalid(addr, size, &code);
397 1.1 maxv break;
398 1.1 maxv }
399 1.1 maxv } else {
400 1.5 maxv valid = kasan_shadow_Nbyte_isvalid(addr, size, &code);
401 1.1 maxv }
402 1.1 maxv
403 1.1 maxv if (__predict_false(!valid)) {
404 1.5 maxv kasan_report(addr, size, write, retaddr, code);
405 1.1 maxv }
406 1.1 maxv }
407 1.1 maxv
408 1.1 maxv /* -------------------------------------------------------------------------- */
409 1.1 maxv
410 1.1 maxv void *
411 1.1 maxv kasan_memcpy(void *dst, const void *src, size_t len)
412 1.1 maxv {
413 1.1 maxv kasan_shadow_check((unsigned long)src, len, false, __RET_ADDR);
414 1.1 maxv kasan_shadow_check((unsigned long)dst, len, true, __RET_ADDR);
415 1.1 maxv return __builtin_memcpy(dst, src, len);
416 1.1 maxv }
417 1.1 maxv
418 1.1 maxv int
419 1.1 maxv kasan_memcmp(const void *b1, const void *b2, size_t len)
420 1.1 maxv {
421 1.1 maxv kasan_shadow_check((unsigned long)b1, len, false, __RET_ADDR);
422 1.1 maxv kasan_shadow_check((unsigned long)b2, len, false, __RET_ADDR);
423 1.1 maxv return __builtin_memcmp(b1, b2, len);
424 1.1 maxv }
425 1.1 maxv
426 1.1 maxv void *
427 1.1 maxv kasan_memset(void *b, int c, size_t len)
428 1.1 maxv {
429 1.1 maxv kasan_shadow_check((unsigned long)b, len, true, __RET_ADDR);
430 1.1 maxv return __builtin_memset(b, c, len);
431 1.1 maxv }
432 1.1 maxv
433 1.1 maxv char *
434 1.1 maxv kasan_strcpy(char *dst, const char *src)
435 1.1 maxv {
436 1.1 maxv char *save = dst;
437 1.1 maxv
438 1.1 maxv while (1) {
439 1.1 maxv kasan_shadow_check((unsigned long)src, 1, false, __RET_ADDR);
440 1.1 maxv kasan_shadow_check((unsigned long)dst, 1, true, __RET_ADDR);
441 1.1 maxv *dst = *src;
442 1.1 maxv if (*src == '\0')
443 1.1 maxv break;
444 1.1 maxv src++, dst++;
445 1.1 maxv }
446 1.1 maxv
447 1.1 maxv return save;
448 1.1 maxv }
449 1.1 maxv
450 1.1 maxv int
451 1.1 maxv kasan_strcmp(const char *s1, const char *s2)
452 1.1 maxv {
453 1.1 maxv while (1) {
454 1.1 maxv kasan_shadow_check((unsigned long)s1, 1, false, __RET_ADDR);
455 1.1 maxv kasan_shadow_check((unsigned long)s2, 1, false, __RET_ADDR);
456 1.1 maxv if (*s1 != *s2)
457 1.1 maxv break;
458 1.1 maxv if (*s1 == '\0')
459 1.1 maxv return 0;
460 1.1 maxv s1++, s2++;
461 1.1 maxv }
462 1.1 maxv
463 1.1 maxv return (*(const unsigned char *)s1 - *(const unsigned char *)s2);
464 1.1 maxv }
465 1.1 maxv
466 1.1 maxv size_t
467 1.1 maxv kasan_strlen(const char *str)
468 1.1 maxv {
469 1.1 maxv const char *s;
470 1.1 maxv
471 1.1 maxv s = str;
472 1.1 maxv while (1) {
473 1.1 maxv kasan_shadow_check((unsigned long)s, 1, false, __RET_ADDR);
474 1.1 maxv if (*s == '\0')
475 1.1 maxv break;
476 1.1 maxv s++;
477 1.1 maxv }
478 1.1 maxv
479 1.1 maxv return (s - str);
480 1.1 maxv }
481 1.1 maxv
482 1.7 maxv #undef copyinstr
483 1.7 maxv #undef copyoutstr
484 1.7 maxv #undef copyin
485 1.7 maxv
486 1.7 maxv int kasan_copyinstr(const void *, void *, size_t, size_t *);
487 1.7 maxv int kasan_copyoutstr(const void *, void *, size_t, size_t *);
488 1.7 maxv int kasan_copyin(const void *, void *, size_t);
489 1.7 maxv int copyinstr(const void *, void *, size_t, size_t *);
490 1.7 maxv int copyoutstr(const void *, void *, size_t, size_t *);
491 1.7 maxv int copyin(const void *, void *, size_t);
492 1.7 maxv
493 1.7 maxv int
494 1.7 maxv kasan_copyin(const void *uaddr, void *kaddr, size_t len)
495 1.7 maxv {
496 1.7 maxv kasan_shadow_check((unsigned long)kaddr, len, true, __RET_ADDR);
497 1.7 maxv return copyin(uaddr, kaddr, len);
498 1.7 maxv }
499 1.7 maxv
500 1.7 maxv int
501 1.7 maxv kasan_copyinstr(const void *uaddr, void *kaddr, size_t len, size_t *done)
502 1.7 maxv {
503 1.7 maxv kasan_shadow_check((unsigned long)kaddr, len, true, __RET_ADDR);
504 1.7 maxv return copyinstr(uaddr, kaddr, len, done);
505 1.7 maxv }
506 1.7 maxv
507 1.7 maxv int
508 1.7 maxv kasan_copyoutstr(const void *kaddr, void *uaddr, size_t len, size_t *done)
509 1.7 maxv {
510 1.7 maxv kasan_shadow_check((unsigned long)kaddr, len, false, __RET_ADDR);
511 1.7 maxv return copyoutstr(kaddr, uaddr, len, done);
512 1.7 maxv }
513 1.7 maxv
514 1.1 maxv /* -------------------------------------------------------------------------- */
515 1.1 maxv
516 1.1 maxv void __asan_register_globals(struct __asan_global *, size_t);
517 1.1 maxv void __asan_unregister_globals(struct __asan_global *, size_t);
518 1.1 maxv
519 1.1 maxv void
520 1.1 maxv __asan_register_globals(struct __asan_global *globals, size_t n)
521 1.1 maxv {
522 1.1 maxv size_t i;
523 1.1 maxv
524 1.1 maxv for (i = 0; i < n; i++) {
525 1.2 maxv kasan_mark(globals[i].beg, globals[i].size,
526 1.6 maxv globals[i].size_with_redzone, KASAN_GENERIC_REDZONE);
527 1.1 maxv }
528 1.1 maxv }
529 1.1 maxv
530 1.1 maxv void
531 1.1 maxv __asan_unregister_globals(struct __asan_global *globals, size_t n)
532 1.1 maxv {
533 1.1 maxv /* never called */
534 1.1 maxv }
535 1.1 maxv
536 1.1 maxv #define ASAN_LOAD_STORE(size) \
537 1.1 maxv void __asan_load##size(unsigned long); \
538 1.1 maxv void __asan_load##size(unsigned long addr) \
539 1.1 maxv { \
540 1.1 maxv kasan_shadow_check(addr, size, false, __RET_ADDR);\
541 1.1 maxv } \
542 1.1 maxv void __asan_load##size##_noabort(unsigned long); \
543 1.1 maxv void __asan_load##size##_noabort(unsigned long addr) \
544 1.1 maxv { \
545 1.1 maxv kasan_shadow_check(addr, size, false, __RET_ADDR);\
546 1.1 maxv } \
547 1.1 maxv void __asan_store##size(unsigned long); \
548 1.1 maxv void __asan_store##size(unsigned long addr) \
549 1.1 maxv { \
550 1.1 maxv kasan_shadow_check(addr, size, true, __RET_ADDR);\
551 1.1 maxv } \
552 1.1 maxv void __asan_store##size##_noabort(unsigned long); \
553 1.1 maxv void __asan_store##size##_noabort(unsigned long addr) \
554 1.1 maxv { \
555 1.1 maxv kasan_shadow_check(addr, size, true, __RET_ADDR);\
556 1.1 maxv }
557 1.1 maxv
558 1.1 maxv ASAN_LOAD_STORE(1);
559 1.1 maxv ASAN_LOAD_STORE(2);
560 1.1 maxv ASAN_LOAD_STORE(4);
561 1.1 maxv ASAN_LOAD_STORE(8);
562 1.1 maxv ASAN_LOAD_STORE(16);
563 1.1 maxv
564 1.1 maxv void __asan_loadN(unsigned long, size_t);
565 1.1 maxv void __asan_loadN_noabort(unsigned long, size_t);
566 1.1 maxv void __asan_storeN(unsigned long, size_t);
567 1.1 maxv void __asan_storeN_noabort(unsigned long, size_t);
568 1.1 maxv void __asan_handle_no_return(void);
569 1.1 maxv
570 1.1 maxv void
571 1.1 maxv __asan_loadN(unsigned long addr, size_t size)
572 1.1 maxv {
573 1.1 maxv kasan_shadow_check(addr, size, false, __RET_ADDR);
574 1.1 maxv }
575 1.1 maxv
576 1.1 maxv void
577 1.1 maxv __asan_loadN_noabort(unsigned long addr, size_t size)
578 1.1 maxv {
579 1.1 maxv kasan_shadow_check(addr, size, false, __RET_ADDR);
580 1.1 maxv }
581 1.1 maxv
582 1.1 maxv void
583 1.1 maxv __asan_storeN(unsigned long addr, size_t size)
584 1.1 maxv {
585 1.1 maxv kasan_shadow_check(addr, size, true, __RET_ADDR);
586 1.1 maxv }
587 1.1 maxv
588 1.1 maxv void
589 1.1 maxv __asan_storeN_noabort(unsigned long addr, size_t size)
590 1.1 maxv {
591 1.1 maxv kasan_shadow_check(addr, size, true, __RET_ADDR);
592 1.1 maxv }
593 1.1 maxv
594 1.1 maxv void
595 1.1 maxv __asan_handle_no_return(void)
596 1.1 maxv {
597 1.1 maxv /* nothing */
598 1.1 maxv }
599 1.1 maxv
600 1.1 maxv #define ASAN_SET_SHADOW(byte) \
601 1.1 maxv void __asan_set_shadow_##byte(void *, size_t); \
602 1.1 maxv void __asan_set_shadow_##byte(void *addr, size_t size) \
603 1.1 maxv { \
604 1.1 maxv __builtin_memset((void *)addr, 0x##byte, size); \
605 1.1 maxv }
606 1.1 maxv
607 1.1 maxv ASAN_SET_SHADOW(00);
608 1.1 maxv ASAN_SET_SHADOW(f1);
609 1.1 maxv ASAN_SET_SHADOW(f2);
610 1.1 maxv ASAN_SET_SHADOW(f3);
611 1.1 maxv ASAN_SET_SHADOW(f5);
612 1.1 maxv ASAN_SET_SHADOW(f8);
613 1.4 maxv
614 1.4 maxv void __asan_poison_stack_memory(const void *, size_t);
615 1.4 maxv void __asan_unpoison_stack_memory(const void *, size_t);
616 1.4 maxv
617 1.4 maxv void __asan_poison_stack_memory(const void *addr, size_t size)
618 1.4 maxv {
619 1.4 maxv size = roundup(size, KASAN_SHADOW_SCALE_SIZE);
620 1.4 maxv kasan_shadow_Nbyte_fill(addr, size, KASAN_USE_AFTER_SCOPE);
621 1.4 maxv }
622 1.4 maxv
623 1.4 maxv void __asan_unpoison_stack_memory(const void *addr, size_t size)
624 1.4 maxv {
625 1.4 maxv kasan_shadow_Nbyte_markvalid(addr, size);
626 1.4 maxv }
627