1 //===-- msan_interceptors.cpp ---------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This file is a part of MemorySanitizer.
10 //
11 // Interceptors for standard library functions.
12 //
13 // FIXME: move as many interceptors as possible into
14 // sanitizer_common/sanitizer_common_interceptors.h
15 //===----------------------------------------------------------------------===//
16
17 #include "interception/interception.h"
18 #include "msan.h"
19 #include "msan_chained_origin_depot.h"
20 #include "msan_origin.h"
21 #include "msan_report.h"
22 #include "msan_thread.h"
23 #include "msan_poisoning.h"
24 #include "sanitizer_common/sanitizer_platform_limits_posix.h"
25 #include "sanitizer_common/sanitizer_platform_limits_netbsd.h"
26 #include "sanitizer_common/sanitizer_allocator.h"
27 #include "sanitizer_common/sanitizer_allocator_interface.h"
28 #include "sanitizer_common/sanitizer_allocator_internal.h"
29 #include "sanitizer_common/sanitizer_atomic.h"
30 #include "sanitizer_common/sanitizer_common.h"
31 #include "sanitizer_common/sanitizer_errno.h"
32 #include "sanitizer_common/sanitizer_stackdepot.h"
33 #include "sanitizer_common/sanitizer_libc.h"
34 #include "sanitizer_common/sanitizer_linux.h"
35 #include "sanitizer_common/sanitizer_tls_get_addr.h"
36 #include "sanitizer_common/sanitizer_vector.h"
37
38 #if SANITIZER_NETBSD
39 #define fstat __fstat50
40 #define gettimeofday __gettimeofday50
41 #define getrusage __getrusage50
42 #define tzset __tzset50
43 #endif
44
45 #include <stdarg.h>
46 // ACHTUNG! No other system header includes in this file.
47 // Ideally, we should get rid of stdarg.h as well.
48
49 using namespace __msan;
50
51 using __sanitizer::memory_order;
52 using __sanitizer::atomic_load;
53 using __sanitizer::atomic_store;
54 using __sanitizer::atomic_uintptr_t;
55
56 DECLARE_REAL(SIZE_T, strlen, const char *s)
57 DECLARE_REAL(SIZE_T, strnlen, const char *s, SIZE_T maxlen)
58 DECLARE_REAL(void *, memcpy, void *dest, const void *src, uptr n)
59 DECLARE_REAL(void *, memset, void *dest, int c, uptr n)
60
61 // True if this is a nested interceptor.
62 static THREADLOCAL int in_interceptor_scope;
63
__msan_scoped_disable_interceptor_checks()64 void __msan_scoped_disable_interceptor_checks() { ++in_interceptor_scope; }
__msan_scoped_enable_interceptor_checks()65 void __msan_scoped_enable_interceptor_checks() { --in_interceptor_scope; }
66
67 struct InterceptorScope {
InterceptorScopeInterceptorScope68 InterceptorScope() { ++in_interceptor_scope; }
~InterceptorScopeInterceptorScope69 ~InterceptorScope() { --in_interceptor_scope; }
70 };
71
IsInInterceptorScope()72 bool IsInInterceptorScope() {
73 return in_interceptor_scope;
74 }
75
76 static uptr allocated_for_dlsym;
77 static const uptr kDlsymAllocPoolSize = 1024;
78 static uptr alloc_memory_for_dlsym[kDlsymAllocPoolSize];
79
IsInDlsymAllocPool(const void * ptr)80 static bool IsInDlsymAllocPool(const void *ptr) {
81 uptr off = (uptr)ptr - (uptr)alloc_memory_for_dlsym;
82 return off < sizeof(alloc_memory_for_dlsym);
83 }
84
AllocateFromLocalPool(uptr size_in_bytes)85 static void *AllocateFromLocalPool(uptr size_in_bytes) {
86 uptr size_in_words = RoundUpTo(size_in_bytes, kWordSize) / kWordSize;
87 void *mem = (void *)&alloc_memory_for_dlsym[allocated_for_dlsym];
88 allocated_for_dlsym += size_in_words;
89 CHECK_LT(allocated_for_dlsym, kDlsymAllocPoolSize);
90 return mem;
91 }
92
93 #define ENSURE_MSAN_INITED() do { \
94 CHECK(!msan_init_is_running); \
95 if (!msan_inited) { \
96 __msan_init(); \
97 } \
98 } while (0)
99
100 // Check that [x, x+n) range is unpoisoned.
101 #define CHECK_UNPOISONED_0(x, n) \
102 do { \
103 sptr __offset = __msan_test_shadow(x, n); \
104 if (__msan::IsInSymbolizer()) break; \
105 if (__offset >= 0 && __msan::flags()->report_umrs) { \
106 GET_CALLER_PC_BP_SP; \
107 (void)sp; \
108 ReportUMRInsideAddressRange(__func__, x, n, __offset); \
109 __msan::PrintWarningWithOrigin( \
110 pc, bp, __msan_get_origin((const char *)x + __offset)); \
111 if (__msan::flags()->halt_on_error) { \
112 Printf("Exiting\n"); \
113 Die(); \
114 } \
115 } \
116 } while (0)
117
118 // Check that [x, x+n) range is unpoisoned unless we are in a nested
119 // interceptor.
120 #define CHECK_UNPOISONED(x, n) \
121 do { \
122 if (!IsInInterceptorScope()) CHECK_UNPOISONED_0(x, n); \
123 } while (0)
124
125 #define CHECK_UNPOISONED_STRING_OF_LEN(x, len, n) \
126 CHECK_UNPOISONED((x), \
127 common_flags()->strict_string_checks ? (len) + 1 : (n) )
128
129 #define CHECK_UNPOISONED_STRING(x, n) \
130 CHECK_UNPOISONED_STRING_OF_LEN((x), internal_strlen(x), (n))
131
132 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(SIZE_T,fread_unlocked,void * ptr,SIZE_T size,SIZE_T nmemb,void * file)133 INTERCEPTOR(SIZE_T, fread_unlocked, void *ptr, SIZE_T size, SIZE_T nmemb,
134 void *file) {
135 ENSURE_MSAN_INITED();
136 SIZE_T res = REAL(fread_unlocked)(ptr, size, nmemb, file);
137 if (res > 0)
138 __msan_unpoison(ptr, res *size);
139 return res;
140 }
141 #define MSAN_MAYBE_INTERCEPT_FREAD_UNLOCKED INTERCEPT_FUNCTION(fread_unlocked)
142 #else
143 #define MSAN_MAYBE_INTERCEPT_FREAD_UNLOCKED
144 #endif
145
146 #if !SANITIZER_NETBSD
INTERCEPTOR(void *,mempcpy,void * dest,const void * src,SIZE_T n)147 INTERCEPTOR(void *, mempcpy, void *dest, const void *src, SIZE_T n) {
148 return (char *)__msan_memcpy(dest, src, n) + n;
149 }
150 #define MSAN_MAYBE_INTERCEPT_MEMPCPY INTERCEPT_FUNCTION(mempcpy)
151 #else
152 #define MSAN_MAYBE_INTERCEPT_MEMPCPY
153 #endif
154
INTERCEPTOR(void *,memccpy,void * dest,const void * src,int c,SIZE_T n)155 INTERCEPTOR(void *, memccpy, void *dest, const void *src, int c, SIZE_T n) {
156 ENSURE_MSAN_INITED();
157 void *res = REAL(memccpy)(dest, src, c, n);
158 CHECK(!res || (res >= dest && res <= (char *)dest + n));
159 SIZE_T sz = res ? (char *)res - (char *)dest : n;
160 CHECK_UNPOISONED(src, sz);
161 __msan_unpoison(dest, sz);
162 return res;
163 }
164
INTERCEPTOR(void *,bcopy,const void * src,void * dest,SIZE_T n)165 INTERCEPTOR(void *, bcopy, const void *src, void *dest, SIZE_T n) {
166 return __msan_memmove(dest, src, n);
167 }
168
INTERCEPTOR(int,posix_memalign,void ** memptr,SIZE_T alignment,SIZE_T size)169 INTERCEPTOR(int, posix_memalign, void **memptr, SIZE_T alignment, SIZE_T size) {
170 GET_MALLOC_STACK_TRACE;
171 CHECK_NE(memptr, 0);
172 int res = msan_posix_memalign(memptr, alignment, size, &stack);
173 if (!res)
174 __msan_unpoison(memptr, sizeof(*memptr));
175 return res;
176 }
177
178 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(void *,memalign,SIZE_T alignment,SIZE_T size)179 INTERCEPTOR(void *, memalign, SIZE_T alignment, SIZE_T size) {
180 GET_MALLOC_STACK_TRACE;
181 return msan_memalign(alignment, size, &stack);
182 }
183 #define MSAN_MAYBE_INTERCEPT_MEMALIGN INTERCEPT_FUNCTION(memalign)
184 #else
185 #define MSAN_MAYBE_INTERCEPT_MEMALIGN
186 #endif
187
INTERCEPTOR(void *,aligned_alloc,SIZE_T alignment,SIZE_T size)188 INTERCEPTOR(void *, aligned_alloc, SIZE_T alignment, SIZE_T size) {
189 GET_MALLOC_STACK_TRACE;
190 return msan_aligned_alloc(alignment, size, &stack);
191 }
192
193 #if !SANITIZER_NETBSD
INTERCEPTOR(void *,__libc_memalign,SIZE_T alignment,SIZE_T size)194 INTERCEPTOR(void *, __libc_memalign, SIZE_T alignment, SIZE_T size) {
195 GET_MALLOC_STACK_TRACE;
196 void *ptr = msan_memalign(alignment, size, &stack);
197 if (ptr)
198 DTLS_on_libc_memalign(ptr, size);
199 return ptr;
200 }
201 #define MSAN_MAYBE_INTERCEPT___LIBC_MEMALIGN INTERCEPT_FUNCTION(__libc_memalign)
202 #else
203 #define MSAN_MAYBE_INTERCEPT___LIBC_MEMALIGN
204 #endif
205
INTERCEPTOR(void *,valloc,SIZE_T size)206 INTERCEPTOR(void *, valloc, SIZE_T size) {
207 GET_MALLOC_STACK_TRACE;
208 return msan_valloc(size, &stack);
209 }
210
211 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(void *,pvalloc,SIZE_T size)212 INTERCEPTOR(void *, pvalloc, SIZE_T size) {
213 GET_MALLOC_STACK_TRACE;
214 return msan_pvalloc(size, &stack);
215 }
216 #define MSAN_MAYBE_INTERCEPT_PVALLOC INTERCEPT_FUNCTION(pvalloc)
217 #else
218 #define MSAN_MAYBE_INTERCEPT_PVALLOC
219 #endif
220
INTERCEPTOR(void,free,void * ptr)221 INTERCEPTOR(void, free, void *ptr) {
222 GET_MALLOC_STACK_TRACE;
223 if (!ptr || UNLIKELY(IsInDlsymAllocPool(ptr))) return;
224 MsanDeallocate(&stack, ptr);
225 }
226
227 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(void,cfree,void * ptr)228 INTERCEPTOR(void, cfree, void *ptr) {
229 GET_MALLOC_STACK_TRACE;
230 if (!ptr || UNLIKELY(IsInDlsymAllocPool(ptr))) return;
231 MsanDeallocate(&stack, ptr);
232 }
233 #define MSAN_MAYBE_INTERCEPT_CFREE INTERCEPT_FUNCTION(cfree)
234 #else
235 #define MSAN_MAYBE_INTERCEPT_CFREE
236 #endif
237
238 #if !SANITIZER_NETBSD
INTERCEPTOR(uptr,malloc_usable_size,void * ptr)239 INTERCEPTOR(uptr, malloc_usable_size, void *ptr) {
240 return __sanitizer_get_allocated_size(ptr);
241 }
242 #define MSAN_MAYBE_INTERCEPT_MALLOC_USABLE_SIZE \
243 INTERCEPT_FUNCTION(malloc_usable_size)
244 #else
245 #define MSAN_MAYBE_INTERCEPT_MALLOC_USABLE_SIZE
246 #endif
247
248 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
249 // This function actually returns a struct by value, but we can't unpoison a
250 // temporary! The following is equivalent on all supported platforms but
251 // aarch64 (which uses a different register for sret value). We have a test
252 // to confirm that.
INTERCEPTOR(void,mallinfo,__sanitizer_struct_mallinfo * sret)253 INTERCEPTOR(void, mallinfo, __sanitizer_struct_mallinfo *sret) {
254 #ifdef __aarch64__
255 uptr r8;
256 asm volatile("mov %0,x8" : "=r" (r8));
257 sret = reinterpret_cast<__sanitizer_struct_mallinfo*>(r8);
258 #endif
259 REAL(memset)(sret, 0, sizeof(*sret));
260 __msan_unpoison(sret, sizeof(*sret));
261 }
262 #define MSAN_MAYBE_INTERCEPT_MALLINFO INTERCEPT_FUNCTION(mallinfo)
263 #else
264 #define MSAN_MAYBE_INTERCEPT_MALLINFO
265 #endif
266
267 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,mallopt,int cmd,int value)268 INTERCEPTOR(int, mallopt, int cmd, int value) {
269 return 0;
270 }
271 #define MSAN_MAYBE_INTERCEPT_MALLOPT INTERCEPT_FUNCTION(mallopt)
272 #else
273 #define MSAN_MAYBE_INTERCEPT_MALLOPT
274 #endif
275
276 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(void,malloc_stats,void)277 INTERCEPTOR(void, malloc_stats, void) {
278 // FIXME: implement, but don't call REAL(malloc_stats)!
279 }
280 #define MSAN_MAYBE_INTERCEPT_MALLOC_STATS INTERCEPT_FUNCTION(malloc_stats)
281 #else
282 #define MSAN_MAYBE_INTERCEPT_MALLOC_STATS
283 #endif
284
INTERCEPTOR(char *,strcpy,char * dest,const char * src)285 INTERCEPTOR(char *, strcpy, char *dest, const char *src) {
286 ENSURE_MSAN_INITED();
287 GET_STORE_STACK_TRACE;
288 SIZE_T n = REAL(strlen)(src);
289 CHECK_UNPOISONED_STRING(src + n, 0);
290 char *res = REAL(strcpy)(dest, src);
291 CopyShadowAndOrigin(dest, src, n + 1, &stack);
292 return res;
293 }
294
INTERCEPTOR(char *,strncpy,char * dest,const char * src,SIZE_T n)295 INTERCEPTOR(char *, strncpy, char *dest, const char *src, SIZE_T n) {
296 ENSURE_MSAN_INITED();
297 GET_STORE_STACK_TRACE;
298 SIZE_T copy_size = REAL(strnlen)(src, n);
299 if (copy_size < n)
300 copy_size++; // trailing \0
301 char *res = REAL(strncpy)(dest, src, n);
302 CopyShadowAndOrigin(dest, src, copy_size, &stack);
303 __msan_unpoison(dest + copy_size, n - copy_size);
304 return res;
305 }
306
307 #if !SANITIZER_NETBSD
INTERCEPTOR(char *,stpcpy,char * dest,const char * src)308 INTERCEPTOR(char *, stpcpy, char *dest, const char *src) {
309 ENSURE_MSAN_INITED();
310 GET_STORE_STACK_TRACE;
311 SIZE_T n = REAL(strlen)(src);
312 CHECK_UNPOISONED_STRING(src + n, 0);
313 char *res = REAL(stpcpy)(dest, src);
314 CopyShadowAndOrigin(dest, src, n + 1, &stack);
315 return res;
316 }
317 #define MSAN_MAYBE_INTERCEPT_STPCPY INTERCEPT_FUNCTION(stpcpy)
318 #else
319 #define MSAN_MAYBE_INTERCEPT_STPCPY
320 #endif
321
INTERCEPTOR(char *,strdup,char * src)322 INTERCEPTOR(char *, strdup, char *src) {
323 ENSURE_MSAN_INITED();
324 GET_STORE_STACK_TRACE;
325 // On FreeBSD strdup() leverages strlen().
326 InterceptorScope interceptor_scope;
327 SIZE_T n = REAL(strlen)(src);
328 CHECK_UNPOISONED_STRING(src + n, 0);
329 char *res = REAL(strdup)(src);
330 CopyShadowAndOrigin(res, src, n + 1, &stack);
331 return res;
332 }
333
334 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(char *,__strdup,char * src)335 INTERCEPTOR(char *, __strdup, char *src) {
336 ENSURE_MSAN_INITED();
337 GET_STORE_STACK_TRACE;
338 SIZE_T n = REAL(strlen)(src);
339 CHECK_UNPOISONED_STRING(src + n, 0);
340 char *res = REAL(__strdup)(src);
341 CopyShadowAndOrigin(res, src, n + 1, &stack);
342 return res;
343 }
344 #define MSAN_MAYBE_INTERCEPT___STRDUP INTERCEPT_FUNCTION(__strdup)
345 #else
346 #define MSAN_MAYBE_INTERCEPT___STRDUP
347 #endif
348
349 #if !SANITIZER_NETBSD
INTERCEPTOR(char *,gcvt,double number,SIZE_T ndigit,char * buf)350 INTERCEPTOR(char *, gcvt, double number, SIZE_T ndigit, char *buf) {
351 ENSURE_MSAN_INITED();
352 char *res = REAL(gcvt)(number, ndigit, buf);
353 SIZE_T n = REAL(strlen)(buf);
354 __msan_unpoison(buf, n + 1);
355 return res;
356 }
357 #define MSAN_MAYBE_INTERCEPT_GCVT INTERCEPT_FUNCTION(gcvt)
358 #else
359 #define MSAN_MAYBE_INTERCEPT_GCVT
360 #endif
361
INTERCEPTOR(char *,strcat,char * dest,const char * src)362 INTERCEPTOR(char *, strcat, char *dest, const char *src) {
363 ENSURE_MSAN_INITED();
364 GET_STORE_STACK_TRACE;
365 SIZE_T src_size = REAL(strlen)(src);
366 SIZE_T dest_size = REAL(strlen)(dest);
367 CHECK_UNPOISONED_STRING(src + src_size, 0);
368 CHECK_UNPOISONED_STRING(dest + dest_size, 0);
369 char *res = REAL(strcat)(dest, src);
370 CopyShadowAndOrigin(dest + dest_size, src, src_size + 1, &stack);
371 return res;
372 }
373
INTERCEPTOR(char *,strncat,char * dest,const char * src,SIZE_T n)374 INTERCEPTOR(char *, strncat, char *dest, const char *src, SIZE_T n) {
375 ENSURE_MSAN_INITED();
376 GET_STORE_STACK_TRACE;
377 SIZE_T dest_size = REAL(strlen)(dest);
378 SIZE_T copy_size = REAL(strnlen)(src, n);
379 CHECK_UNPOISONED_STRING(dest + dest_size, 0);
380 char *res = REAL(strncat)(dest, src, n);
381 CopyShadowAndOrigin(dest + dest_size, src, copy_size, &stack);
382 __msan_unpoison(dest + dest_size + copy_size, 1); // \0
383 return res;
384 }
385
386 // Hack: always pass nptr and endptr as part of __VA_ARGS_ to avoid having to
387 // deal with empty __VA_ARGS__ in the case of INTERCEPTOR_STRTO.
388 #define INTERCEPTOR_STRTO_BODY(ret_type, func, ...) \
389 ENSURE_MSAN_INITED(); \
390 ret_type res = REAL(func)(__VA_ARGS__); \
391 __msan_unpoison(endptr, sizeof(*endptr)); \
392 return res;
393
394 #define INTERCEPTOR_STRTO(ret_type, func, char_type) \
395 INTERCEPTOR(ret_type, func, const char_type *nptr, char_type **endptr) { \
396 INTERCEPTOR_STRTO_BODY(ret_type, func, nptr, endptr); \
397 }
398
399 #define INTERCEPTOR_STRTO_BASE(ret_type, func, char_type) \
400 INTERCEPTOR(ret_type, func, const char_type *nptr, char_type **endptr, \
401 int base) { \
402 INTERCEPTOR_STRTO_BODY(ret_type, func, nptr, endptr, base); \
403 }
404
405 #define INTERCEPTOR_STRTO_LOC(ret_type, func, char_type) \
406 INTERCEPTOR(ret_type, func, const char_type *nptr, char_type **endptr, \
407 void *loc) { \
408 INTERCEPTOR_STRTO_BODY(ret_type, func, nptr, endptr, loc); \
409 }
410
411 #define INTERCEPTOR_STRTO_BASE_LOC(ret_type, func, char_type) \
412 INTERCEPTOR(ret_type, func, const char_type *nptr, char_type **endptr, \
413 int base, void *loc) { \
414 INTERCEPTOR_STRTO_BODY(ret_type, func, nptr, endptr, base, loc); \
415 }
416
417 #if SANITIZER_NETBSD
418 #define INTERCEPTORS_STRTO(ret_type, func, char_type) \
419 INTERCEPTOR_STRTO(ret_type, func, char_type) \
420 INTERCEPTOR_STRTO_LOC(ret_type, func##_l, char_type)
421
422 #define INTERCEPTORS_STRTO_BASE(ret_type, func, char_type) \
423 INTERCEPTOR_STRTO_BASE(ret_type, func, char_type) \
424 INTERCEPTOR_STRTO_BASE_LOC(ret_type, func##_l, char_type)
425
426 #else
427 #define INTERCEPTORS_STRTO(ret_type, func, char_type) \
428 INTERCEPTOR_STRTO(ret_type, func, char_type) \
429 INTERCEPTOR_STRTO_LOC(ret_type, func##_l, char_type) \
430 INTERCEPTOR_STRTO_LOC(ret_type, __##func##_l, char_type) \
431 INTERCEPTOR_STRTO_LOC(ret_type, __##func##_internal, char_type)
432
433 #define INTERCEPTORS_STRTO_BASE(ret_type, func, char_type) \
434 INTERCEPTOR_STRTO_BASE(ret_type, func, char_type) \
435 INTERCEPTOR_STRTO_BASE_LOC(ret_type, func##_l, char_type) \
436 INTERCEPTOR_STRTO_BASE_LOC(ret_type, __##func##_l, char_type) \
437 INTERCEPTOR_STRTO_BASE_LOC(ret_type, __##func##_internal, char_type)
438 #endif
439
INTERCEPTORS_STRTO(double,strtod,char)440 INTERCEPTORS_STRTO(double, strtod, char)
441 INTERCEPTORS_STRTO(float, strtof, char)
442 INTERCEPTORS_STRTO(long double, strtold, char)
443 INTERCEPTORS_STRTO_BASE(long, strtol, char)
444 INTERCEPTORS_STRTO_BASE(long long, strtoll, char)
445 INTERCEPTORS_STRTO_BASE(unsigned long, strtoul, char)
446 INTERCEPTORS_STRTO_BASE(unsigned long long, strtoull, char)
447 INTERCEPTORS_STRTO_BASE(u64, strtouq, char)
448
449 INTERCEPTORS_STRTO(double, wcstod, wchar_t)
450 INTERCEPTORS_STRTO(float, wcstof, wchar_t)
451 INTERCEPTORS_STRTO(long double, wcstold, wchar_t)
452 INTERCEPTORS_STRTO_BASE(long, wcstol, wchar_t)
453 INTERCEPTORS_STRTO_BASE(long long, wcstoll, wchar_t)
454 INTERCEPTORS_STRTO_BASE(unsigned long, wcstoul, wchar_t)
455 INTERCEPTORS_STRTO_BASE(unsigned long long, wcstoull, wchar_t)
456
457 #if SANITIZER_NETBSD
458 #define INTERCEPT_STRTO(func) \
459 INTERCEPT_FUNCTION(func); \
460 INTERCEPT_FUNCTION(func##_l);
461 #else
462 #define INTERCEPT_STRTO(func) \
463 INTERCEPT_FUNCTION(func); \
464 INTERCEPT_FUNCTION(func##_l); \
465 INTERCEPT_FUNCTION(__##func##_l); \
466 INTERCEPT_FUNCTION(__##func##_internal);
467 #endif
468
469
470 // FIXME: support *wprintf in common format interceptors.
471 INTERCEPTOR(int, vswprintf, void *str, uptr size, void *format, va_list ap) {
472 ENSURE_MSAN_INITED();
473 int res = REAL(vswprintf)(str, size, format, ap);
474 if (res >= 0) {
475 __msan_unpoison(str, 4 * (res + 1));
476 }
477 return res;
478 }
479
INTERCEPTOR(int,swprintf,void * str,uptr size,void * format,...)480 INTERCEPTOR(int, swprintf, void *str, uptr size, void *format, ...) {
481 ENSURE_MSAN_INITED();
482 va_list ap;
483 va_start(ap, format);
484 int res = vswprintf(str, size, format, ap);
485 va_end(ap);
486 return res;
487 }
488
489 #define INTERCEPTOR_STRFTIME_BODY(char_type, ret_type, func, s, ...) \
490 ENSURE_MSAN_INITED(); \
491 InterceptorScope interceptor_scope; \
492 ret_type res = REAL(func)(s, __VA_ARGS__); \
493 if (s) __msan_unpoison(s, sizeof(char_type) * (res + 1)); \
494 return res;
495
INTERCEPTOR(SIZE_T,strftime,char * s,SIZE_T max,const char * format,__sanitizer_tm * tm)496 INTERCEPTOR(SIZE_T, strftime, char *s, SIZE_T max, const char *format,
497 __sanitizer_tm *tm) {
498 INTERCEPTOR_STRFTIME_BODY(char, SIZE_T, strftime, s, max, format, tm);
499 }
500
INTERCEPTOR(SIZE_T,strftime_l,char * s,SIZE_T max,const char * format,__sanitizer_tm * tm,void * loc)501 INTERCEPTOR(SIZE_T, strftime_l, char *s, SIZE_T max, const char *format,
502 __sanitizer_tm *tm, void *loc) {
503 INTERCEPTOR_STRFTIME_BODY(char, SIZE_T, strftime_l, s, max, format, tm, loc);
504 }
505
506 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(SIZE_T,__strftime_l,char * s,SIZE_T max,const char * format,__sanitizer_tm * tm,void * loc)507 INTERCEPTOR(SIZE_T, __strftime_l, char *s, SIZE_T max, const char *format,
508 __sanitizer_tm *tm, void *loc) {
509 INTERCEPTOR_STRFTIME_BODY(char, SIZE_T, __strftime_l, s, max, format, tm,
510 loc);
511 }
512 #define MSAN_MAYBE_INTERCEPT___STRFTIME_L INTERCEPT_FUNCTION(__strftime_l)
513 #else
514 #define MSAN_MAYBE_INTERCEPT___STRFTIME_L
515 #endif
516
INTERCEPTOR(SIZE_T,wcsftime,wchar_t * s,SIZE_T max,const wchar_t * format,__sanitizer_tm * tm)517 INTERCEPTOR(SIZE_T, wcsftime, wchar_t *s, SIZE_T max, const wchar_t *format,
518 __sanitizer_tm *tm) {
519 INTERCEPTOR_STRFTIME_BODY(wchar_t, SIZE_T, wcsftime, s, max, format, tm);
520 }
521
INTERCEPTOR(SIZE_T,wcsftime_l,wchar_t * s,SIZE_T max,const wchar_t * format,__sanitizer_tm * tm,void * loc)522 INTERCEPTOR(SIZE_T, wcsftime_l, wchar_t *s, SIZE_T max, const wchar_t *format,
523 __sanitizer_tm *tm, void *loc) {
524 INTERCEPTOR_STRFTIME_BODY(wchar_t, SIZE_T, wcsftime_l, s, max, format, tm,
525 loc);
526 }
527
528 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(SIZE_T,__wcsftime_l,wchar_t * s,SIZE_T max,const wchar_t * format,__sanitizer_tm * tm,void * loc)529 INTERCEPTOR(SIZE_T, __wcsftime_l, wchar_t *s, SIZE_T max, const wchar_t *format,
530 __sanitizer_tm *tm, void *loc) {
531 INTERCEPTOR_STRFTIME_BODY(wchar_t, SIZE_T, __wcsftime_l, s, max, format, tm,
532 loc);
533 }
534 #define MSAN_MAYBE_INTERCEPT___WCSFTIME_L INTERCEPT_FUNCTION(__wcsftime_l)
535 #else
536 #define MSAN_MAYBE_INTERCEPT___WCSFTIME_L
537 #endif
538
INTERCEPTOR(int,mbtowc,wchar_t * dest,const char * src,SIZE_T n)539 INTERCEPTOR(int, mbtowc, wchar_t *dest, const char *src, SIZE_T n) {
540 ENSURE_MSAN_INITED();
541 int res = REAL(mbtowc)(dest, src, n);
542 if (res != -1 && dest) __msan_unpoison(dest, sizeof(wchar_t));
543 return res;
544 }
545
INTERCEPTOR(SIZE_T,mbrtowc,wchar_t * dest,const char * src,SIZE_T n,void * ps)546 INTERCEPTOR(SIZE_T, mbrtowc, wchar_t *dest, const char *src, SIZE_T n,
547 void *ps) {
548 ENSURE_MSAN_INITED();
549 SIZE_T res = REAL(mbrtowc)(dest, src, n, ps);
550 if (res != (SIZE_T)-1 && dest) __msan_unpoison(dest, sizeof(wchar_t));
551 return res;
552 }
553
554 // wchar_t *wmemcpy(wchar_t *dest, const wchar_t *src, SIZE_T n);
INTERCEPTOR(wchar_t *,wmemcpy,wchar_t * dest,const wchar_t * src,SIZE_T n)555 INTERCEPTOR(wchar_t *, wmemcpy, wchar_t *dest, const wchar_t *src, SIZE_T n) {
556 ENSURE_MSAN_INITED();
557 GET_STORE_STACK_TRACE;
558 wchar_t *res = REAL(wmemcpy)(dest, src, n);
559 CopyShadowAndOrigin(dest, src, n * sizeof(wchar_t), &stack);
560 return res;
561 }
562
563 #if !SANITIZER_NETBSD
INTERCEPTOR(wchar_t *,wmempcpy,wchar_t * dest,const wchar_t * src,SIZE_T n)564 INTERCEPTOR(wchar_t *, wmempcpy, wchar_t *dest, const wchar_t *src, SIZE_T n) {
565 ENSURE_MSAN_INITED();
566 GET_STORE_STACK_TRACE;
567 wchar_t *res = REAL(wmempcpy)(dest, src, n);
568 CopyShadowAndOrigin(dest, src, n * sizeof(wchar_t), &stack);
569 return res;
570 }
571 #define MSAN_MAYBE_INTERCEPT_WMEMPCPY INTERCEPT_FUNCTION(wmempcpy)
572 #else
573 #define MSAN_MAYBE_INTERCEPT_WMEMPCPY
574 #endif
575
INTERCEPTOR(wchar_t *,wmemset,wchar_t * s,wchar_t c,SIZE_T n)576 INTERCEPTOR(wchar_t *, wmemset, wchar_t *s, wchar_t c, SIZE_T n) {
577 CHECK(MEM_IS_APP(s));
578 ENSURE_MSAN_INITED();
579 wchar_t *res = REAL(wmemset)(s, c, n);
580 __msan_unpoison(s, n * sizeof(wchar_t));
581 return res;
582 }
583
INTERCEPTOR(wchar_t *,wmemmove,wchar_t * dest,const wchar_t * src,SIZE_T n)584 INTERCEPTOR(wchar_t *, wmemmove, wchar_t *dest, const wchar_t *src, SIZE_T n) {
585 ENSURE_MSAN_INITED();
586 GET_STORE_STACK_TRACE;
587 wchar_t *res = REAL(wmemmove)(dest, src, n);
588 MoveShadowAndOrigin(dest, src, n * sizeof(wchar_t), &stack);
589 return res;
590 }
591
INTERCEPTOR(int,wcscmp,const wchar_t * s1,const wchar_t * s2)592 INTERCEPTOR(int, wcscmp, const wchar_t *s1, const wchar_t *s2) {
593 ENSURE_MSAN_INITED();
594 int res = REAL(wcscmp)(s1, s2);
595 return res;
596 }
597
INTERCEPTOR(int,gettimeofday,void * tv,void * tz)598 INTERCEPTOR(int, gettimeofday, void *tv, void *tz) {
599 ENSURE_MSAN_INITED();
600 int res = REAL(gettimeofday)(tv, tz);
601 if (tv)
602 __msan_unpoison(tv, 16);
603 if (tz)
604 __msan_unpoison(tz, 8);
605 return res;
606 }
607
608 #if !SANITIZER_NETBSD
INTERCEPTOR(char *,fcvt,double x,int a,int * b,int * c)609 INTERCEPTOR(char *, fcvt, double x, int a, int *b, int *c) {
610 ENSURE_MSAN_INITED();
611 char *res = REAL(fcvt)(x, a, b, c);
612 __msan_unpoison(b, sizeof(*b));
613 __msan_unpoison(c, sizeof(*c));
614 if (res) __msan_unpoison(res, REAL(strlen)(res) + 1);
615 return res;
616 }
617 #define MSAN_MAYBE_INTERCEPT_FCVT INTERCEPT_FUNCTION(fcvt)
618 #else
619 #define MSAN_MAYBE_INTERCEPT_FCVT
620 #endif
621
INTERCEPTOR(char *,getenv,char * name)622 INTERCEPTOR(char *, getenv, char *name) {
623 if (msan_init_is_running)
624 return REAL(getenv)(name);
625 ENSURE_MSAN_INITED();
626 char *res = REAL(getenv)(name);
627 if (res) __msan_unpoison(res, REAL(strlen)(res) + 1);
628 return res;
629 }
630
631 extern char **environ;
632
UnpoisonEnviron()633 static void UnpoisonEnviron() {
634 char **envp = environ;
635 for (; *envp; ++envp) {
636 __msan_unpoison(envp, sizeof(*envp));
637 __msan_unpoison(*envp, REAL(strlen)(*envp) + 1);
638 }
639 // Trailing NULL pointer.
640 __msan_unpoison(envp, sizeof(*envp));
641 }
642
INTERCEPTOR(int,setenv,const char * name,const char * value,int overwrite)643 INTERCEPTOR(int, setenv, const char *name, const char *value, int overwrite) {
644 ENSURE_MSAN_INITED();
645 CHECK_UNPOISONED_STRING(name, 0);
646 int res = REAL(setenv)(name, value, overwrite);
647 if (!res) UnpoisonEnviron();
648 return res;
649 }
650
INTERCEPTOR(int,putenv,char * string)651 INTERCEPTOR(int, putenv, char *string) {
652 ENSURE_MSAN_INITED();
653 int res = REAL(putenv)(string);
654 if (!res) UnpoisonEnviron();
655 return res;
656 }
657
658 #if SANITIZER_FREEBSD || SANITIZER_NETBSD
INTERCEPTOR(int,fstat,int fd,void * buf)659 INTERCEPTOR(int, fstat, int fd, void *buf) {
660 ENSURE_MSAN_INITED();
661 int res = REAL(fstat)(fd, buf);
662 if (!res)
663 __msan_unpoison(buf, __sanitizer::struct_stat_sz);
664 return res;
665 }
666 #define MSAN_MAYBE_INTERCEPT_FSTAT INTERCEPT_FUNCTION(fstat)
667 #else
668 #define MSAN_MAYBE_INTERCEPT_FSTAT
669 #endif
670
671 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,__fxstat,int magic,int fd,void * buf)672 INTERCEPTOR(int, __fxstat, int magic, int fd, void *buf) {
673 ENSURE_MSAN_INITED();
674 int res = REAL(__fxstat)(magic, fd, buf);
675 if (!res)
676 __msan_unpoison(buf, __sanitizer::struct_stat_sz);
677 return res;
678 }
679 #define MSAN_MAYBE_INTERCEPT___FXSTAT INTERCEPT_FUNCTION(__fxstat)
680 #else
681 #define MSAN_MAYBE_INTERCEPT___FXSTAT
682 #endif
683
684 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,__fxstat64,int magic,int fd,void * buf)685 INTERCEPTOR(int, __fxstat64, int magic, int fd, void *buf) {
686 ENSURE_MSAN_INITED();
687 int res = REAL(__fxstat64)(magic, fd, buf);
688 if (!res)
689 __msan_unpoison(buf, __sanitizer::struct_stat64_sz);
690 return res;
691 }
692 #define MSAN_MAYBE_INTERCEPT___FXSTAT64 INTERCEPT_FUNCTION(__fxstat64)
693 #else
694 #define MSAN_MAYBE_INTERCEPT___FXSTAT64
695 #endif
696
697 #if SANITIZER_FREEBSD || SANITIZER_NETBSD
INTERCEPTOR(int,fstatat,int fd,char * pathname,void * buf,int flags)698 INTERCEPTOR(int, fstatat, int fd, char *pathname, void *buf, int flags) {
699 ENSURE_MSAN_INITED();
700 int res = REAL(fstatat)(fd, pathname, buf, flags);
701 if (!res) __msan_unpoison(buf, __sanitizer::struct_stat_sz);
702 return res;
703 }
704 # define MSAN_INTERCEPT_FSTATAT INTERCEPT_FUNCTION(fstatat)
705 #else
INTERCEPTOR(int,__fxstatat,int magic,int fd,char * pathname,void * buf,int flags)706 INTERCEPTOR(int, __fxstatat, int magic, int fd, char *pathname, void *buf,
707 int flags) {
708 ENSURE_MSAN_INITED();
709 int res = REAL(__fxstatat)(magic, fd, pathname, buf, flags);
710 if (!res) __msan_unpoison(buf, __sanitizer::struct_stat_sz);
711 return res;
712 }
713 # define MSAN_INTERCEPT_FSTATAT INTERCEPT_FUNCTION(__fxstatat)
714 #endif
715
716 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,__fxstatat64,int magic,int fd,char * pathname,void * buf,int flags)717 INTERCEPTOR(int, __fxstatat64, int magic, int fd, char *pathname, void *buf,
718 int flags) {
719 ENSURE_MSAN_INITED();
720 int res = REAL(__fxstatat64)(magic, fd, pathname, buf, flags);
721 if (!res) __msan_unpoison(buf, __sanitizer::struct_stat64_sz);
722 return res;
723 }
724 #define MSAN_MAYBE_INTERCEPT___FXSTATAT64 INTERCEPT_FUNCTION(__fxstatat64)
725 #else
726 #define MSAN_MAYBE_INTERCEPT___FXSTATAT64
727 #endif
728
INTERCEPTOR(int,pipe,int pipefd[2])729 INTERCEPTOR(int, pipe, int pipefd[2]) {
730 if (msan_init_is_running)
731 return REAL(pipe)(pipefd);
732 ENSURE_MSAN_INITED();
733 int res = REAL(pipe)(pipefd);
734 if (!res)
735 __msan_unpoison(pipefd, sizeof(int[2]));
736 return res;
737 }
738
INTERCEPTOR(int,pipe2,int pipefd[2],int flags)739 INTERCEPTOR(int, pipe2, int pipefd[2], int flags) {
740 ENSURE_MSAN_INITED();
741 int res = REAL(pipe2)(pipefd, flags);
742 if (!res)
743 __msan_unpoison(pipefd, sizeof(int[2]));
744 return res;
745 }
746
INTERCEPTOR(int,socketpair,int domain,int type,int protocol,int sv[2])747 INTERCEPTOR(int, socketpair, int domain, int type, int protocol, int sv[2]) {
748 ENSURE_MSAN_INITED();
749 int res = REAL(socketpair)(domain, type, protocol, sv);
750 if (!res)
751 __msan_unpoison(sv, sizeof(int[2]));
752 return res;
753 }
754
755 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(char *,fgets_unlocked,char * s,int size,void * stream)756 INTERCEPTOR(char *, fgets_unlocked, char *s, int size, void *stream) {
757 ENSURE_MSAN_INITED();
758 char *res = REAL(fgets_unlocked)(s, size, stream);
759 if (res)
760 __msan_unpoison(s, REAL(strlen)(s) + 1);
761 return res;
762 }
763 #define MSAN_MAYBE_INTERCEPT_FGETS_UNLOCKED INTERCEPT_FUNCTION(fgets_unlocked)
764 #else
765 #define MSAN_MAYBE_INTERCEPT_FGETS_UNLOCKED
766 #endif
767
768 #define INTERCEPTOR_GETRLIMIT_BODY(func, resource, rlim) \
769 if (msan_init_is_running) \
770 return REAL(getrlimit)(resource, rlim); \
771 ENSURE_MSAN_INITED(); \
772 int res = REAL(func)(resource, rlim); \
773 if (!res) \
774 __msan_unpoison(rlim, __sanitizer::struct_rlimit_sz); \
775 return res
776
INTERCEPTOR(int,getrlimit,int resource,void * rlim)777 INTERCEPTOR(int, getrlimit, int resource, void *rlim) {
778 INTERCEPTOR_GETRLIMIT_BODY(getrlimit, resource, rlim);
779 }
780
781 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,__getrlimit,int resource,void * rlim)782 INTERCEPTOR(int, __getrlimit, int resource, void *rlim) {
783 INTERCEPTOR_GETRLIMIT_BODY(__getrlimit, resource, rlim);
784 }
785
INTERCEPTOR(int,getrlimit64,int resource,void * rlim)786 INTERCEPTOR(int, getrlimit64, int resource, void *rlim) {
787 if (msan_init_is_running) return REAL(getrlimit64)(resource, rlim);
788 ENSURE_MSAN_INITED();
789 int res = REAL(getrlimit64)(resource, rlim);
790 if (!res) __msan_unpoison(rlim, __sanitizer::struct_rlimit64_sz);
791 return res;
792 }
793
INTERCEPTOR(int,prlimit,int pid,int resource,void * new_rlimit,void * old_rlimit)794 INTERCEPTOR(int, prlimit, int pid, int resource, void *new_rlimit,
795 void *old_rlimit) {
796 if (msan_init_is_running)
797 return REAL(prlimit)(pid, resource, new_rlimit, old_rlimit);
798 ENSURE_MSAN_INITED();
799 CHECK_UNPOISONED(new_rlimit, __sanitizer::struct_rlimit_sz);
800 int res = REAL(prlimit)(pid, resource, new_rlimit, old_rlimit);
801 if (!res) __msan_unpoison(old_rlimit, __sanitizer::struct_rlimit_sz);
802 return res;
803 }
804
INTERCEPTOR(int,prlimit64,int pid,int resource,void * new_rlimit,void * old_rlimit)805 INTERCEPTOR(int, prlimit64, int pid, int resource, void *new_rlimit,
806 void *old_rlimit) {
807 if (msan_init_is_running)
808 return REAL(prlimit64)(pid, resource, new_rlimit, old_rlimit);
809 ENSURE_MSAN_INITED();
810 CHECK_UNPOISONED(new_rlimit, __sanitizer::struct_rlimit64_sz);
811 int res = REAL(prlimit64)(pid, resource, new_rlimit, old_rlimit);
812 if (!res) __msan_unpoison(old_rlimit, __sanitizer::struct_rlimit64_sz);
813 return res;
814 }
815
816 #define MSAN_MAYBE_INTERCEPT___GETRLIMIT INTERCEPT_FUNCTION(__getrlimit)
817 #define MSAN_MAYBE_INTERCEPT_GETRLIMIT64 INTERCEPT_FUNCTION(getrlimit64)
818 #define MSAN_MAYBE_INTERCEPT_PRLIMIT INTERCEPT_FUNCTION(prlimit)
819 #define MSAN_MAYBE_INTERCEPT_PRLIMIT64 INTERCEPT_FUNCTION(prlimit64)
820 #else
821 #define MSAN_MAYBE_INTERCEPT___GETRLIMIT
822 #define MSAN_MAYBE_INTERCEPT_GETRLIMIT64
823 #define MSAN_MAYBE_INTERCEPT_PRLIMIT
824 #define MSAN_MAYBE_INTERCEPT_PRLIMIT64
825 #endif
826
INTERCEPTOR(int,gethostname,char * name,SIZE_T len)827 INTERCEPTOR(int, gethostname, char *name, SIZE_T len) {
828 ENSURE_MSAN_INITED();
829 int res = REAL(gethostname)(name, len);
830 if (!res || (res == -1 && errno == errno_ENAMETOOLONG)) {
831 SIZE_T real_len = REAL(strnlen)(name, len);
832 if (real_len < len)
833 ++real_len;
834 __msan_unpoison(name, real_len);
835 }
836 return res;
837 }
838
839 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,epoll_wait,int epfd,void * events,int maxevents,int timeout)840 INTERCEPTOR(int, epoll_wait, int epfd, void *events, int maxevents,
841 int timeout) {
842 ENSURE_MSAN_INITED();
843 int res = REAL(epoll_wait)(epfd, events, maxevents, timeout);
844 if (res > 0) {
845 __msan_unpoison(events, __sanitizer::struct_epoll_event_sz * res);
846 }
847 return res;
848 }
849 #define MSAN_MAYBE_INTERCEPT_EPOLL_WAIT INTERCEPT_FUNCTION(epoll_wait)
850 #else
851 #define MSAN_MAYBE_INTERCEPT_EPOLL_WAIT
852 #endif
853
854 #if !SANITIZER_FREEBSD && !SANITIZER_NETBSD
INTERCEPTOR(int,epoll_pwait,int epfd,void * events,int maxevents,int timeout,void * sigmask)855 INTERCEPTOR(int, epoll_pwait, int epfd, void *events, int maxevents,
856 int timeout, void *sigmask) {
857 ENSURE_MSAN_INITED();
858 int res = REAL(epoll_pwait)(epfd, events, maxevents, timeout, sigmask);
859 if (res > 0) {
860 __msan_unpoison(events, __sanitizer::struct_epoll_event_sz * res);
861 }
862 return res;
863 }
864 #define MSAN_MAYBE_INTERCEPT_EPOLL_PWAIT INTERCEPT_FUNCTION(epoll_pwait)
865 #else
866 #define MSAN_MAYBE_INTERCEPT_EPOLL_PWAIT
867 #endif
868
INTERCEPTOR(void *,calloc,SIZE_T nmemb,SIZE_T size)869 INTERCEPTOR(void *, calloc, SIZE_T nmemb, SIZE_T size) {
870 GET_MALLOC_STACK_TRACE;
871 if (UNLIKELY(!msan_inited))
872 // Hack: dlsym calls calloc before REAL(calloc) is retrieved from dlsym.
873 return AllocateFromLocalPool(nmemb * size);
874 return msan_calloc(nmemb, size, &stack);
875 }
876
INTERCEPTOR(void *,realloc,void * ptr,SIZE_T size)877 INTERCEPTOR(void *, realloc, void *ptr, SIZE_T size) {
878 GET_MALLOC_STACK_TRACE;
879 if (UNLIKELY(IsInDlsymAllocPool(ptr))) {
880 uptr offset = (uptr)ptr - (uptr)alloc_memory_for_dlsym;
881 uptr copy_size = Min(size, kDlsymAllocPoolSize - offset);
882 void *new_ptr;
883 if (UNLIKELY(!msan_inited)) {
884 new_ptr = AllocateFromLocalPool(copy_size);
885 } else {
886 copy_size = size;
887 new_ptr = msan_malloc(copy_size, &stack);
888 }
889 internal_memcpy(new_ptr, ptr, copy_size);
890 return new_ptr;
891 }
892 return msan_realloc(ptr, size, &stack);
893 }
894
INTERCEPTOR(void *,reallocarray,void * ptr,SIZE_T nmemb,SIZE_T size)895 INTERCEPTOR(void *, reallocarray, void *ptr, SIZE_T nmemb, SIZE_T size) {
896 GET_MALLOC_STACK_TRACE;
897 return msan_reallocarray(ptr, nmemb, size, &stack);
898 }
899
INTERCEPTOR(void *,malloc,SIZE_T size)900 INTERCEPTOR(void *, malloc, SIZE_T size) {
901 GET_MALLOC_STACK_TRACE;
902 if (UNLIKELY(!msan_inited))
903 // Hack: dlsym calls malloc before REAL(malloc) is retrieved from dlsym.
904 return AllocateFromLocalPool(size);
905 return msan_malloc(size, &stack);
906 }
907
__msan_allocated_memory(const void * data,uptr size)908 void __msan_allocated_memory(const void *data, uptr size) {
909 GET_MALLOC_STACK_TRACE;
910 if (flags()->poison_in_malloc) {
911 stack.tag = STACK_TRACE_TAG_POISON;
912 PoisonMemory(data, size, &stack);
913 }
914 }
915
__msan_copy_shadow(void * dest,const void * src,uptr n)916 void __msan_copy_shadow(void *dest, const void *src, uptr n) {
917 GET_STORE_STACK_TRACE;
918 MoveShadowAndOrigin(dest, src, n, &stack);
919 }
920
__sanitizer_dtor_callback(const void * data,uptr size)921 void __sanitizer_dtor_callback(const void *data, uptr size) {
922 GET_MALLOC_STACK_TRACE;
923 if (flags()->poison_in_dtor) {
924 stack.tag = STACK_TRACE_TAG_POISON;
925 PoisonMemory(data, size, &stack);
926 }
927 }
928
929 template <class Mmap>
mmap_interceptor(Mmap real_mmap,void * addr,SIZE_T length,int prot,int flags,int fd,OFF64_T offset)930 static void *mmap_interceptor(Mmap real_mmap, void *addr, SIZE_T length,
931 int prot, int flags, int fd, OFF64_T offset) {
932 SIZE_T rounded_length = RoundUpTo(length, GetPageSize());
933 void *end_addr = (char *)addr + (rounded_length - 1);
934 if (addr && (!MEM_IS_APP(addr) || !MEM_IS_APP(end_addr))) {
935 if (flags & map_fixed) {
936 errno = errno_EINVAL;
937 return (void *)-1;
938 } else {
939 addr = nullptr;
940 }
941 }
942 void *res = real_mmap(addr, length, prot, flags, fd, offset);
943 if (res != (void *)-1) {
944 void *end_res = (char *)res + (rounded_length - 1);
945 if (MEM_IS_APP(res) && MEM_IS_APP(end_res)) {
946 __msan_unpoison(res, rounded_length);
947 } else {
948 // Application has attempted to map more memory than is supported by
949 // MSAN. Act as if we ran out of memory.
950 internal_munmap(res, length);
951 errno = errno_ENOMEM;
952 return (void *)-1;
953 }
954 }
955 return res;
956 }
957
INTERCEPTOR(int,getrusage,int who,void * usage)958 INTERCEPTOR(int, getrusage, int who, void *usage) {
959 ENSURE_MSAN_INITED();
960 int res = REAL(getrusage)(who, usage);
961 if (res == 0) {
962 __msan_unpoison(usage, __sanitizer::struct_rusage_sz);
963 }
964 return res;
965 }
966
967 class SignalHandlerScope {
968 public:
SignalHandlerScope()969 SignalHandlerScope() {
970 if (MsanThread *t = GetCurrentThread())
971 t->EnterSignalHandler();
972 }
~SignalHandlerScope()973 ~SignalHandlerScope() {
974 if (MsanThread *t = GetCurrentThread())
975 t->LeaveSignalHandler();
976 }
977 };
978
979 // sigactions_mu guarantees atomicity of sigaction() and signal() calls.
980 // Access to sigactions[] is gone with relaxed atomics to avoid data race with
981 // the signal handler.
982 const int kMaxSignals = 1024;
983 static atomic_uintptr_t sigactions[kMaxSignals];
984 static StaticSpinMutex sigactions_mu;
985
SignalHandler(int signo)986 static void SignalHandler(int signo) {
987 SignalHandlerScope signal_handler_scope;
988 ScopedThreadLocalStateBackup stlsb;
989 UnpoisonParam(1);
990
991 typedef void (*signal_cb)(int x);
992 signal_cb cb =
993 (signal_cb)atomic_load(&sigactions[signo], memory_order_relaxed);
994 cb(signo);
995 }
996
SignalAction(int signo,void * si,void * uc)997 static void SignalAction(int signo, void *si, void *uc) {
998 SignalHandlerScope signal_handler_scope;
999 ScopedThreadLocalStateBackup stlsb;
1000 UnpoisonParam(3);
1001 __msan_unpoison(si, sizeof(__sanitizer_sigaction));
1002 __msan_unpoison(uc, __sanitizer::ucontext_t_sz);
1003
1004 typedef void (*sigaction_cb)(int, void *, void *);
1005 sigaction_cb cb =
1006 (sigaction_cb)atomic_load(&sigactions[signo], memory_order_relaxed);
1007 cb(signo, si, uc);
1008 }
1009
read_sigaction(const __sanitizer_sigaction * act)1010 static void read_sigaction(const __sanitizer_sigaction *act) {
1011 CHECK_UNPOISONED(&act->sa_flags, sizeof(act->sa_flags));
1012 if (act->sa_flags & __sanitizer::sa_siginfo)
1013 CHECK_UNPOISONED(&act->sigaction, sizeof(act->sigaction));
1014 else
1015 CHECK_UNPOISONED(&act->handler, sizeof(act->handler));
1016 CHECK_UNPOISONED(&act->sa_mask, sizeof(act->sa_mask));
1017 }
1018
1019 extern "C" int pthread_attr_init(void *attr);
1020 extern "C" int pthread_attr_destroy(void *attr);
1021
MsanThreadStartFunc(void * arg)1022 static void *MsanThreadStartFunc(void *arg) {
1023 MsanThread *t = (MsanThread *)arg;
1024 SetCurrentThread(t);
1025 return t->ThreadStart();
1026 }
1027
INTERCEPTOR(int,pthread_create,void * th,void * attr,void * (* callback)(void *),void * param)1028 INTERCEPTOR(int, pthread_create, void *th, void *attr, void *(*callback)(void*),
1029 void * param) {
1030 ENSURE_MSAN_INITED(); // for GetTlsSize()
1031 __sanitizer_pthread_attr_t myattr;
1032 if (!attr) {
1033 pthread_attr_init(&myattr);
1034 attr = &myattr;
1035 }
1036
1037 AdjustStackSize(attr);
1038
1039 MsanThread *t = MsanThread::Create(callback, param);
1040
1041 int res = REAL(pthread_create)(th, attr, MsanThreadStartFunc, t);
1042
1043 if (attr == &myattr)
1044 pthread_attr_destroy(&myattr);
1045 if (!res) {
1046 __msan_unpoison(th, __sanitizer::pthread_t_sz);
1047 }
1048 return res;
1049 }
1050
INTERCEPTOR(int,pthread_key_create,__sanitizer_pthread_key_t * key,void (* dtor)(void * value))1051 INTERCEPTOR(int, pthread_key_create, __sanitizer_pthread_key_t *key,
1052 void (*dtor)(void *value)) {
1053 if (msan_init_is_running) return REAL(pthread_key_create)(key, dtor);
1054 ENSURE_MSAN_INITED();
1055 int res = REAL(pthread_key_create)(key, dtor);
1056 if (!res && key)
1057 __msan_unpoison(key, sizeof(*key));
1058 return res;
1059 }
1060
1061 #if SANITIZER_NETBSD
1062 INTERCEPTOR(int, __libc_thr_keycreate, __sanitizer_pthread_key_t *m,
1063 void (*dtor)(void *value))
1064 ALIAS(WRAPPER_NAME(pthread_key_create));
1065 #endif
1066
INTERCEPTOR(int,pthread_join,void * th,void ** retval)1067 INTERCEPTOR(int, pthread_join, void *th, void **retval) {
1068 ENSURE_MSAN_INITED();
1069 int res = REAL(pthread_join)(th, retval);
1070 if (!res && retval)
1071 __msan_unpoison(retval, sizeof(*retval));
1072 return res;
1073 }
1074
1075 extern char *tzname[2];
1076
INTERCEPTOR(void,tzset,int fake)1077 INTERCEPTOR(void, tzset, int fake) {
1078 ENSURE_MSAN_INITED();
1079 InterceptorScope interceptor_scope;
1080 REAL(tzset)(fake);
1081 if (tzname[0])
1082 __msan_unpoison(tzname[0], REAL(strlen)(tzname[0]) + 1);
1083 if (tzname[1])
1084 __msan_unpoison(tzname[1], REAL(strlen)(tzname[1]) + 1);
1085 return;
1086 }
1087
1088 struct MSanAtExitRecord {
1089 void (*func)(void *arg);
1090 void *arg;
1091 };
1092
1093 struct InterceptorContext {
1094 BlockingMutex atexit_mu;
1095 Vector<struct MSanAtExitRecord *> AtExitStack;
1096
InterceptorContextInterceptorContext1097 InterceptorContext()
1098 : AtExitStack() {
1099 }
1100 };
1101
1102 static ALIGNED(64) char interceptor_placeholder[sizeof(InterceptorContext)];
interceptor_ctx()1103 InterceptorContext *interceptor_ctx() {
1104 return reinterpret_cast<InterceptorContext*>(&interceptor_placeholder[0]);
1105 }
1106
MSanAtExitWrapper()1107 void MSanAtExitWrapper() {
1108 MSanAtExitRecord *r;
1109 {
1110 BlockingMutexLock l(&interceptor_ctx()->atexit_mu);
1111
1112 uptr element = interceptor_ctx()->AtExitStack.Size() - 1;
1113 r = interceptor_ctx()->AtExitStack[element];
1114 interceptor_ctx()->AtExitStack.PopBack();
1115 }
1116
1117 UnpoisonParam(1);
1118 ((void(*)())r->func)();
1119 InternalFree(r);
1120 }
1121
MSanCxaAtExitWrapper(void * arg)1122 void MSanCxaAtExitWrapper(void *arg) {
1123 UnpoisonParam(1);
1124 MSanAtExitRecord *r = (MSanAtExitRecord *)arg;
1125 // libc before 2.27 had race which caused occasional double handler execution
1126 // https://sourceware.org/ml/libc-alpha/2017-08/msg01204.html
1127 if (!r->func)
1128 return;
1129 r->func(r->arg);
1130 r->func = nullptr;
1131 }
1132
1133 static int setup_at_exit_wrapper(void(*f)(), void *arg, void *dso);
1134
1135 // Unpoison argument shadow for C++ module destructors.
INTERCEPTOR(int,__cxa_atexit,void (* func)(void *),void * arg,void * dso_handle)1136 INTERCEPTOR(int, __cxa_atexit, void (*func)(void *), void *arg,
1137 void *dso_handle) {
1138 if (msan_init_is_running) return REAL(__cxa_atexit)(func, arg, dso_handle);
1139 return setup_at_exit_wrapper((void(*)())func, arg, dso_handle);
1140 }
1141
1142 // Unpoison argument shadow for C++ module destructors.
INTERCEPTOR(int,atexit,void (* func)())1143 INTERCEPTOR(int, atexit, void (*func)()) {
1144 // Avoid calling real atexit as it is unrechable on at least on Linux.
1145 if (msan_init_is_running)
1146 return REAL(__cxa_atexit)((void (*)(void *a))func, 0, 0);
1147 return setup_at_exit_wrapper((void(*)())func, 0, 0);
1148 }
1149
setup_at_exit_wrapper(void (* f)(),void * arg,void * dso)1150 static int setup_at_exit_wrapper(void(*f)(), void *arg, void *dso) {
1151 ENSURE_MSAN_INITED();
1152 MSanAtExitRecord *r =
1153 (MSanAtExitRecord *)InternalAlloc(sizeof(MSanAtExitRecord));
1154 r->func = (void(*)(void *a))f;
1155 r->arg = arg;
1156 int res;
1157 if (!dso) {
1158 // NetBSD does not preserve the 2nd argument if dso is equal to 0
1159 // Store ctx in a local stack-like structure
1160
1161 BlockingMutexLock l(&interceptor_ctx()->atexit_mu);
1162
1163 res = REAL(__cxa_atexit)((void (*)(void *a))MSanAtExitWrapper, 0, 0);
1164 if (!res) {
1165 interceptor_ctx()->AtExitStack.PushBack(r);
1166 }
1167 } else {
1168 res = REAL(__cxa_atexit)(MSanCxaAtExitWrapper, r, dso);
1169 }
1170 return res;
1171 }
1172
BeforeFork()1173 static void BeforeFork() {
1174 StackDepotLockAll();
1175 ChainedOriginDepotLockAll();
1176 }
1177
AfterFork()1178 static void AfterFork() {
1179 ChainedOriginDepotUnlockAll();
1180 StackDepotUnlockAll();
1181 }
1182
INTERCEPTOR(int,fork,void)1183 INTERCEPTOR(int, fork, void) {
1184 ENSURE_MSAN_INITED();
1185 BeforeFork();
1186 int pid = REAL(fork)();
1187 AfterFork();
1188 return pid;
1189 }
1190
1191 // NetBSD ships with openpty(3) in -lutil, that needs to be prebuilt explicitly
1192 // with MSan.
1193 #if SANITIZER_LINUX
INTERCEPTOR(int,openpty,int * aparent,int * aworker,char * name,const void * termp,const void * winp)1194 INTERCEPTOR(int, openpty, int *aparent, int *aworker, char *name,
1195 const void *termp, const void *winp) {
1196 ENSURE_MSAN_INITED();
1197 InterceptorScope interceptor_scope;
1198 int res = REAL(openpty)(aparent, aworker, name, termp, winp);
1199 if (!res) {
1200 __msan_unpoison(aparent, sizeof(*aparent));
1201 __msan_unpoison(aworker, sizeof(*aworker));
1202 }
1203 return res;
1204 }
1205 #define MSAN_MAYBE_INTERCEPT_OPENPTY INTERCEPT_FUNCTION(openpty)
1206 #else
1207 #define MSAN_MAYBE_INTERCEPT_OPENPTY
1208 #endif
1209
1210 // NetBSD ships with forkpty(3) in -lutil, that needs to be prebuilt explicitly
1211 // with MSan.
1212 #if SANITIZER_LINUX
INTERCEPTOR(int,forkpty,int * aparent,char * name,const void * termp,const void * winp)1213 INTERCEPTOR(int, forkpty, int *aparent, char *name, const void *termp,
1214 const void *winp) {
1215 ENSURE_MSAN_INITED();
1216 InterceptorScope interceptor_scope;
1217 int res = REAL(forkpty)(aparent, name, termp, winp);
1218 if (res != -1)
1219 __msan_unpoison(aparent, sizeof(*aparent));
1220 return res;
1221 }
1222 #define MSAN_MAYBE_INTERCEPT_FORKPTY INTERCEPT_FUNCTION(forkpty)
1223 #else
1224 #define MSAN_MAYBE_INTERCEPT_FORKPTY
1225 #endif
1226
1227 struct MSanInterceptorContext {
1228 bool in_interceptor_scope;
1229 };
1230
1231 namespace __msan {
1232
OnExit()1233 int OnExit() {
1234 // FIXME: ask frontend whether we need to return failure.
1235 return 0;
1236 }
1237
1238 } // namespace __msan
1239
1240 // A version of CHECK_UNPOISONED using a saved scope value. Used in common
1241 // interceptors.
1242 #define CHECK_UNPOISONED_CTX(ctx, x, n) \
1243 do { \
1244 if (!((MSanInterceptorContext *)ctx)->in_interceptor_scope) \
1245 CHECK_UNPOISONED_0(x, n); \
1246 } while (0)
1247
1248 #define MSAN_INTERCEPT_FUNC(name) \
1249 do { \
1250 if (!INTERCEPT_FUNCTION(name)) \
1251 VReport(1, "MemorySanitizer: failed to intercept '%s'\n", #name); \
1252 } while (0)
1253
1254 #define MSAN_INTERCEPT_FUNC_VER(name, ver) \
1255 do { \
1256 if (!INTERCEPT_FUNCTION_VER(name, ver)) \
1257 VReport(1, "MemorySanitizer: failed to intercept '%s@@%s'\n", #name, \
1258 #ver); \
1259 } while (0)
1260
1261 #define COMMON_INTERCEPT_FUNCTION(name) MSAN_INTERCEPT_FUNC(name)
1262 #define COMMON_INTERCEPT_FUNCTION_VER(name, ver) \
1263 MSAN_INTERCEPT_FUNC_VER(name, ver)
1264 #define COMMON_INTERCEPTOR_UNPOISON_PARAM(count) \
1265 UnpoisonParam(count)
1266 #define COMMON_INTERCEPTOR_WRITE_RANGE(ctx, ptr, size) \
1267 __msan_unpoison(ptr, size)
1268 #define COMMON_INTERCEPTOR_READ_RANGE(ctx, ptr, size) \
1269 CHECK_UNPOISONED_CTX(ctx, ptr, size)
1270 #define COMMON_INTERCEPTOR_INITIALIZE_RANGE(ptr, size) \
1271 __msan_unpoison(ptr, size)
1272 #define COMMON_INTERCEPTOR_ENTER(ctx, func, ...) \
1273 if (msan_init_is_running) return REAL(func)(__VA_ARGS__); \
1274 ENSURE_MSAN_INITED(); \
1275 MSanInterceptorContext msan_ctx = {IsInInterceptorScope()}; \
1276 ctx = (void *)&msan_ctx; \
1277 (void)ctx; \
1278 InterceptorScope interceptor_scope; \
1279 __msan_unpoison(__errno_location(), sizeof(int)); /* NOLINT */
1280 #define COMMON_INTERCEPTOR_DIR_ACQUIRE(ctx, path) \
1281 do { \
1282 } while (false)
1283 #define COMMON_INTERCEPTOR_FD_ACQUIRE(ctx, fd) \
1284 do { \
1285 } while (false)
1286 #define COMMON_INTERCEPTOR_FD_RELEASE(ctx, fd) \
1287 do { \
1288 } while (false)
1289 #define COMMON_INTERCEPTOR_FD_SOCKET_ACCEPT(ctx, fd, newfd) \
1290 do { \
1291 } while (false)
1292 #define COMMON_INTERCEPTOR_SET_THREAD_NAME(ctx, name) \
1293 do { \
1294 } while (false) // FIXME
1295 #define COMMON_INTERCEPTOR_SET_PTHREAD_NAME(ctx, thread, name) \
1296 do { \
1297 } while (false) // FIXME
1298 #define COMMON_INTERCEPTOR_BLOCK_REAL(name) REAL(name)
1299 #define COMMON_INTERCEPTOR_ON_EXIT(ctx) OnExit()
1300 #define COMMON_INTERCEPTOR_LIBRARY_LOADED(filename, handle) \
1301 do { \
1302 link_map *map = GET_LINK_MAP_BY_DLOPEN_HANDLE((handle)); \
1303 if (filename && map) \
1304 ForEachMappedRegion(map, __msan_unpoison); \
1305 } while (false)
1306
1307 #define COMMON_INTERCEPTOR_NOTHING_IS_INITIALIZED (!msan_inited)
1308
1309 #define COMMON_INTERCEPTOR_GET_TLS_RANGE(begin, end) \
1310 if (MsanThread *t = GetCurrentThread()) { \
1311 *begin = t->tls_begin(); \
1312 *end = t->tls_end(); \
1313 } else { \
1314 *begin = *end = 0; \
1315 }
1316
1317 #define COMMON_INTERCEPTOR_MEMSET_IMPL(ctx, block, c, size) \
1318 { \
1319 (void)ctx; \
1320 return __msan_memset(block, c, size); \
1321 }
1322 #define COMMON_INTERCEPTOR_MEMMOVE_IMPL(ctx, to, from, size) \
1323 { \
1324 (void)ctx; \
1325 return __msan_memmove(to, from, size); \
1326 }
1327 #define COMMON_INTERCEPTOR_MEMCPY_IMPL(ctx, to, from, size) \
1328 { \
1329 (void)ctx; \
1330 return __msan_memcpy(to, from, size); \
1331 }
1332
1333 #define COMMON_INTERCEPTOR_COPY_STRING(ctx, to, from, size) \
1334 do { \
1335 GET_STORE_STACK_TRACE; \
1336 CopyShadowAndOrigin(to, from, size, &stack); \
1337 __msan_unpoison(to + size, 1); \
1338 } while (false)
1339
1340 #define COMMON_INTERCEPTOR_MMAP_IMPL(ctx, mmap, addr, length, prot, flags, fd, \
1341 offset) \
1342 do { \
1343 return mmap_interceptor(REAL(mmap), addr, sz, prot, flags, fd, off); \
1344 } while (false)
1345
1346 #include "sanitizer_common/sanitizer_platform_interceptors.h"
1347 #include "sanitizer_common/sanitizer_common_interceptors.inc"
1348
1349 static uptr signal_impl(int signo, uptr cb);
1350 static int sigaction_impl(int signo, const __sanitizer_sigaction *act,
1351 __sanitizer_sigaction *oldact);
1352
1353 #define SIGNAL_INTERCEPTOR_SIGACTION_IMPL(signo, act, oldact) \
1354 { return sigaction_impl(signo, act, oldact); }
1355
1356 #define SIGNAL_INTERCEPTOR_SIGNAL_IMPL(func, signo, handler) \
1357 { \
1358 handler = signal_impl(signo, handler); \
1359 InterceptorScope interceptor_scope; \
1360 return REAL(func)(signo, handler); \
1361 }
1362
1363 #include "sanitizer_common/sanitizer_signal_interceptors.inc"
1364
sigaction_impl(int signo,const __sanitizer_sigaction * act,__sanitizer_sigaction * oldact)1365 static int sigaction_impl(int signo, const __sanitizer_sigaction *act,
1366 __sanitizer_sigaction *oldact) {
1367 ENSURE_MSAN_INITED();
1368 if (act) read_sigaction(act);
1369 int res;
1370 if (flags()->wrap_signals) {
1371 SpinMutexLock lock(&sigactions_mu);
1372 CHECK_LT(signo, kMaxSignals);
1373 uptr old_cb = atomic_load(&sigactions[signo], memory_order_relaxed);
1374 __sanitizer_sigaction new_act;
1375 __sanitizer_sigaction *pnew_act = act ? &new_act : nullptr;
1376 if (act) {
1377 REAL(memcpy)(pnew_act, act, sizeof(__sanitizer_sigaction));
1378 uptr cb = (uptr)pnew_act->sigaction;
1379 uptr new_cb = (pnew_act->sa_flags & __sanitizer::sa_siginfo)
1380 ? (uptr)SignalAction
1381 : (uptr)SignalHandler;
1382 if (cb != __sanitizer::sig_ign && cb != __sanitizer::sig_dfl) {
1383 atomic_store(&sigactions[signo], cb, memory_order_relaxed);
1384 pnew_act->sigaction = (decltype(pnew_act->sigaction))new_cb;
1385 }
1386 }
1387 res = REAL(SIGACTION_SYMNAME)(signo, pnew_act, oldact);
1388 if (res == 0 && oldact) {
1389 uptr cb = (uptr)oldact->sigaction;
1390 if (cb == (uptr)SignalAction || cb == (uptr)SignalHandler) {
1391 oldact->sigaction = (decltype(oldact->sigaction))old_cb;
1392 }
1393 }
1394 } else {
1395 res = REAL(SIGACTION_SYMNAME)(signo, act, oldact);
1396 }
1397
1398 if (res == 0 && oldact) {
1399 __msan_unpoison(oldact, sizeof(__sanitizer_sigaction));
1400 }
1401 return res;
1402 }
1403
signal_impl(int signo,uptr cb)1404 static uptr signal_impl(int signo, uptr cb) {
1405 ENSURE_MSAN_INITED();
1406 if (flags()->wrap_signals) {
1407 CHECK_LT(signo, kMaxSignals);
1408 SpinMutexLock lock(&sigactions_mu);
1409 if (cb != __sanitizer::sig_ign && cb != __sanitizer::sig_dfl) {
1410 atomic_store(&sigactions[signo], cb, memory_order_relaxed);
1411 cb = (uptr)&SignalHandler;
1412 }
1413 }
1414 return cb;
1415 }
1416
1417 #define COMMON_SYSCALL_PRE_READ_RANGE(p, s) CHECK_UNPOISONED(p, s)
1418 #define COMMON_SYSCALL_PRE_WRITE_RANGE(p, s) \
1419 do { \
1420 } while (false)
1421 #define COMMON_SYSCALL_POST_READ_RANGE(p, s) \
1422 do { \
1423 } while (false)
1424 #define COMMON_SYSCALL_POST_WRITE_RANGE(p, s) __msan_unpoison(p, s)
1425 #include "sanitizer_common/sanitizer_common_syscalls.inc"
1426 #include "sanitizer_common/sanitizer_syscalls_netbsd.inc"
1427
1428 struct dlinfo {
1429 char *dli_fname;
1430 void *dli_fbase;
1431 char *dli_sname;
1432 void *dli_saddr;
1433 };
1434
INTERCEPTOR(int,dladdr,void * addr,dlinfo * info)1435 INTERCEPTOR(int, dladdr, void *addr, dlinfo *info) {
1436 void *ctx;
1437 COMMON_INTERCEPTOR_ENTER(ctx, dladdr, addr, info);
1438 int res = REAL(dladdr)(addr, info);
1439 if (res != 0) {
1440 __msan_unpoison(info, sizeof(*info));
1441 if (info->dli_fname)
1442 __msan_unpoison(info->dli_fname, REAL(strlen)(info->dli_fname) + 1);
1443 if (info->dli_sname)
1444 __msan_unpoison(info->dli_sname, REAL(strlen)(info->dli_sname) + 1);
1445 }
1446 return res;
1447 }
1448
INTERCEPTOR(char *,dlerror,int fake)1449 INTERCEPTOR(char *, dlerror, int fake) {
1450 void *ctx;
1451 COMMON_INTERCEPTOR_ENTER(ctx, dlerror, fake);
1452 char *res = REAL(dlerror)(fake);
1453 if (res) __msan_unpoison(res, REAL(strlen)(res) + 1);
1454 return res;
1455 }
1456
1457 typedef int (*dl_iterate_phdr_cb)(__sanitizer_dl_phdr_info *info, SIZE_T size,
1458 void *data);
1459 struct dl_iterate_phdr_data {
1460 dl_iterate_phdr_cb callback;
1461 void *data;
1462 };
1463
msan_dl_iterate_phdr_cb(__sanitizer_dl_phdr_info * info,SIZE_T size,void * data)1464 static int msan_dl_iterate_phdr_cb(__sanitizer_dl_phdr_info *info, SIZE_T size,
1465 void *data) {
1466 if (info) {
1467 __msan_unpoison(info, size);
1468 if (info->dlpi_phdr && info->dlpi_phnum)
1469 __msan_unpoison(info->dlpi_phdr, struct_ElfW_Phdr_sz * info->dlpi_phnum);
1470 if (info->dlpi_name)
1471 __msan_unpoison(info->dlpi_name, REAL(strlen)(info->dlpi_name) + 1);
1472 }
1473 dl_iterate_phdr_data *cbdata = (dl_iterate_phdr_data *)data;
1474 UnpoisonParam(3);
1475 return cbdata->callback(info, size, cbdata->data);
1476 }
1477
INTERCEPTOR(void *,shmat,int shmid,const void * shmaddr,int shmflg)1478 INTERCEPTOR(void *, shmat, int shmid, const void *shmaddr, int shmflg) {
1479 ENSURE_MSAN_INITED();
1480 void *p = REAL(shmat)(shmid, shmaddr, shmflg);
1481 if (p != (void *)-1) {
1482 __sanitizer_shmid_ds ds;
1483 int res = REAL(shmctl)(shmid, shmctl_ipc_stat, &ds);
1484 if (!res) {
1485 __msan_unpoison(p, ds.shm_segsz);
1486 }
1487 }
1488 return p;
1489 }
1490
INTERCEPTOR(int,dl_iterate_phdr,dl_iterate_phdr_cb callback,void * data)1491 INTERCEPTOR(int, dl_iterate_phdr, dl_iterate_phdr_cb callback, void *data) {
1492 void *ctx;
1493 COMMON_INTERCEPTOR_ENTER(ctx, dl_iterate_phdr, callback, data);
1494 dl_iterate_phdr_data cbdata;
1495 cbdata.callback = callback;
1496 cbdata.data = data;
1497 int res = REAL(dl_iterate_phdr)(msan_dl_iterate_phdr_cb, (void *)&cbdata);
1498 return res;
1499 }
1500
1501 // wchar_t *wcschr(const wchar_t *wcs, wchar_t wc);
INTERCEPTOR(wchar_t *,wcschr,void * s,wchar_t wc,void * ps)1502 INTERCEPTOR(wchar_t *, wcschr, void *s, wchar_t wc, void *ps) {
1503 ENSURE_MSAN_INITED();
1504 wchar_t *res = REAL(wcschr)(s, wc, ps);
1505 return res;
1506 }
1507
1508 // wchar_t *wcscpy(wchar_t *dest, const wchar_t *src);
INTERCEPTOR(wchar_t *,wcscpy,wchar_t * dest,const wchar_t * src)1509 INTERCEPTOR(wchar_t *, wcscpy, wchar_t *dest, const wchar_t *src) {
1510 ENSURE_MSAN_INITED();
1511 GET_STORE_STACK_TRACE;
1512 wchar_t *res = REAL(wcscpy)(dest, src);
1513 CopyShadowAndOrigin(dest, src, sizeof(wchar_t) * (REAL(wcslen)(src) + 1),
1514 &stack);
1515 return res;
1516 }
1517
INTERCEPTOR(wchar_t *,wcsncpy,wchar_t * dest,const wchar_t * src,SIZE_T n)1518 INTERCEPTOR(wchar_t *, wcsncpy, wchar_t *dest, const wchar_t *src, SIZE_T n) {
1519 ENSURE_MSAN_INITED();
1520 GET_STORE_STACK_TRACE;
1521 SIZE_T copy_size = REAL(wcsnlen)(src, n);
1522 if (copy_size < n) copy_size++; // trailing \0
1523 wchar_t *res = REAL(wcsncpy)(dest, src, n);
1524 CopyShadowAndOrigin(dest, src, copy_size * sizeof(wchar_t), &stack);
1525 __msan_unpoison(dest + copy_size, (n - copy_size) * sizeof(wchar_t));
1526 return res;
1527 }
1528
1529 // These interface functions reside here so that they can use
1530 // REAL(memset), etc.
__msan_unpoison(const void * a,uptr size)1531 void __msan_unpoison(const void *a, uptr size) {
1532 if (!MEM_IS_APP(a)) return;
1533 SetShadow(a, size, 0);
1534 }
1535
__msan_poison(const void * a,uptr size)1536 void __msan_poison(const void *a, uptr size) {
1537 if (!MEM_IS_APP(a)) return;
1538 SetShadow(a, size, __msan::flags()->poison_heap_with_zeroes ? 0 : -1);
1539 }
1540
__msan_poison_stack(void * a,uptr size)1541 void __msan_poison_stack(void *a, uptr size) {
1542 if (!MEM_IS_APP(a)) return;
1543 SetShadow(a, size, __msan::flags()->poison_stack_with_zeroes ? 0 : -1);
1544 }
1545
__msan_unpoison_param(uptr n)1546 void __msan_unpoison_param(uptr n) { UnpoisonParam(n); }
1547
__msan_clear_and_unpoison(void * a,uptr size)1548 void __msan_clear_and_unpoison(void *a, uptr size) {
1549 REAL(memset)(a, 0, size);
1550 SetShadow(a, size, 0);
1551 }
1552
__msan_memcpy(void * dest,const void * src,SIZE_T n)1553 void *__msan_memcpy(void *dest, const void *src, SIZE_T n) {
1554 if (!msan_inited) return internal_memcpy(dest, src, n);
1555 if (msan_init_is_running || __msan::IsInSymbolizer())
1556 return REAL(memcpy)(dest, src, n);
1557 ENSURE_MSAN_INITED();
1558 GET_STORE_STACK_TRACE;
1559 void *res = REAL(memcpy)(dest, src, n);
1560 CopyShadowAndOrigin(dest, src, n, &stack);
1561 return res;
1562 }
1563
__msan_memset(void * s,int c,SIZE_T n)1564 void *__msan_memset(void *s, int c, SIZE_T n) {
1565 if (!msan_inited) return internal_memset(s, c, n);
1566 if (msan_init_is_running) return REAL(memset)(s, c, n);
1567 ENSURE_MSAN_INITED();
1568 void *res = REAL(memset)(s, c, n);
1569 __msan_unpoison(s, n);
1570 return res;
1571 }
1572
__msan_memmove(void * dest,const void * src,SIZE_T n)1573 void *__msan_memmove(void *dest, const void *src, SIZE_T n) {
1574 if (!msan_inited) return internal_memmove(dest, src, n);
1575 if (msan_init_is_running) return REAL(memmove)(dest, src, n);
1576 ENSURE_MSAN_INITED();
1577 GET_STORE_STACK_TRACE;
1578 void *res = REAL(memmove)(dest, src, n);
1579 MoveShadowAndOrigin(dest, src, n, &stack);
1580 return res;
1581 }
1582
__msan_unpoison_string(const char * s)1583 void __msan_unpoison_string(const char* s) {
1584 if (!MEM_IS_APP(s)) return;
1585 __msan_unpoison(s, REAL(strlen)(s) + 1);
1586 }
1587
1588 namespace __msan {
1589
InitializeInterceptors()1590 void InitializeInterceptors() {
1591 static int inited = 0;
1592 CHECK_EQ(inited, 0);
1593
1594 new(interceptor_ctx()) InterceptorContext();
1595
1596 InitializeCommonInterceptors();
1597 InitializeSignalInterceptors();
1598
1599 INTERCEPT_FUNCTION(posix_memalign);
1600 MSAN_MAYBE_INTERCEPT_MEMALIGN;
1601 MSAN_MAYBE_INTERCEPT___LIBC_MEMALIGN;
1602 INTERCEPT_FUNCTION(valloc);
1603 MSAN_MAYBE_INTERCEPT_PVALLOC;
1604 INTERCEPT_FUNCTION(malloc);
1605 INTERCEPT_FUNCTION(calloc);
1606 INTERCEPT_FUNCTION(realloc);
1607 INTERCEPT_FUNCTION(reallocarray);
1608 INTERCEPT_FUNCTION(free);
1609 MSAN_MAYBE_INTERCEPT_CFREE;
1610 MSAN_MAYBE_INTERCEPT_MALLOC_USABLE_SIZE;
1611 MSAN_MAYBE_INTERCEPT_MALLINFO;
1612 MSAN_MAYBE_INTERCEPT_MALLOPT;
1613 MSAN_MAYBE_INTERCEPT_MALLOC_STATS;
1614 INTERCEPT_FUNCTION(fread);
1615 MSAN_MAYBE_INTERCEPT_FREAD_UNLOCKED;
1616 INTERCEPT_FUNCTION(memccpy);
1617 MSAN_MAYBE_INTERCEPT_MEMPCPY;
1618 INTERCEPT_FUNCTION(bcopy);
1619 INTERCEPT_FUNCTION(wmemset);
1620 INTERCEPT_FUNCTION(wmemcpy);
1621 MSAN_MAYBE_INTERCEPT_WMEMPCPY;
1622 INTERCEPT_FUNCTION(wmemmove);
1623 INTERCEPT_FUNCTION(strcpy);
1624 MSAN_MAYBE_INTERCEPT_STPCPY;
1625 INTERCEPT_FUNCTION(strdup);
1626 MSAN_MAYBE_INTERCEPT___STRDUP;
1627 INTERCEPT_FUNCTION(strncpy);
1628 MSAN_MAYBE_INTERCEPT_GCVT;
1629 INTERCEPT_FUNCTION(strcat);
1630 INTERCEPT_FUNCTION(strncat);
1631 INTERCEPT_STRTO(strtod);
1632 INTERCEPT_STRTO(strtof);
1633 INTERCEPT_STRTO(strtold);
1634 INTERCEPT_STRTO(strtol);
1635 INTERCEPT_STRTO(strtoul);
1636 INTERCEPT_STRTO(strtoll);
1637 INTERCEPT_STRTO(strtoull);
1638 INTERCEPT_STRTO(strtouq);
1639 INTERCEPT_STRTO(wcstod);
1640 INTERCEPT_STRTO(wcstof);
1641 INTERCEPT_STRTO(wcstold);
1642 INTERCEPT_STRTO(wcstol);
1643 INTERCEPT_STRTO(wcstoul);
1644 INTERCEPT_STRTO(wcstoll);
1645 INTERCEPT_STRTO(wcstoull);
1646 #ifdef SANITIZER_NLDBL_VERSION
1647 INTERCEPT_FUNCTION_VER(vswprintf, SANITIZER_NLDBL_VERSION);
1648 INTERCEPT_FUNCTION_VER(swprintf, SANITIZER_NLDBL_VERSION);
1649 #else
1650 INTERCEPT_FUNCTION(vswprintf);
1651 INTERCEPT_FUNCTION(swprintf);
1652 #endif
1653 INTERCEPT_FUNCTION(strftime);
1654 INTERCEPT_FUNCTION(strftime_l);
1655 MSAN_MAYBE_INTERCEPT___STRFTIME_L;
1656 INTERCEPT_FUNCTION(wcsftime);
1657 INTERCEPT_FUNCTION(wcsftime_l);
1658 MSAN_MAYBE_INTERCEPT___WCSFTIME_L;
1659 INTERCEPT_FUNCTION(mbtowc);
1660 INTERCEPT_FUNCTION(mbrtowc);
1661 INTERCEPT_FUNCTION(wcslen);
1662 INTERCEPT_FUNCTION(wcsnlen);
1663 INTERCEPT_FUNCTION(wcschr);
1664 INTERCEPT_FUNCTION(wcscpy);
1665 INTERCEPT_FUNCTION(wcsncpy);
1666 INTERCEPT_FUNCTION(wcscmp);
1667 INTERCEPT_FUNCTION(getenv);
1668 INTERCEPT_FUNCTION(setenv);
1669 INTERCEPT_FUNCTION(putenv);
1670 INTERCEPT_FUNCTION(gettimeofday);
1671 MSAN_MAYBE_INTERCEPT_FCVT;
1672 MSAN_MAYBE_INTERCEPT_FSTAT;
1673 MSAN_MAYBE_INTERCEPT___FXSTAT;
1674 MSAN_INTERCEPT_FSTATAT;
1675 MSAN_MAYBE_INTERCEPT___FXSTAT64;
1676 MSAN_MAYBE_INTERCEPT___FXSTATAT64;
1677 INTERCEPT_FUNCTION(pipe);
1678 INTERCEPT_FUNCTION(pipe2);
1679 INTERCEPT_FUNCTION(socketpair);
1680 MSAN_MAYBE_INTERCEPT_FGETS_UNLOCKED;
1681 INTERCEPT_FUNCTION(getrlimit);
1682 MSAN_MAYBE_INTERCEPT___GETRLIMIT;
1683 MSAN_MAYBE_INTERCEPT_GETRLIMIT64;
1684 MSAN_MAYBE_INTERCEPT_PRLIMIT;
1685 MSAN_MAYBE_INTERCEPT_PRLIMIT64;
1686 INTERCEPT_FUNCTION(gethostname);
1687 MSAN_MAYBE_INTERCEPT_EPOLL_WAIT;
1688 MSAN_MAYBE_INTERCEPT_EPOLL_PWAIT;
1689 INTERCEPT_FUNCTION(dladdr);
1690 INTERCEPT_FUNCTION(dlerror);
1691 INTERCEPT_FUNCTION(dl_iterate_phdr);
1692 INTERCEPT_FUNCTION(getrusage);
1693 #if defined(__mips__)
1694 INTERCEPT_FUNCTION_VER(pthread_create, "GLIBC_2.2");
1695 #else
1696 INTERCEPT_FUNCTION(pthread_create);
1697 #endif
1698 INTERCEPT_FUNCTION(pthread_key_create);
1699
1700 #if SANITIZER_NETBSD
1701 INTERCEPT_FUNCTION(__libc_thr_keycreate);
1702 #endif
1703
1704 INTERCEPT_FUNCTION(pthread_join);
1705 INTERCEPT_FUNCTION(tzset);
1706 INTERCEPT_FUNCTION(atexit);
1707 INTERCEPT_FUNCTION(__cxa_atexit);
1708 INTERCEPT_FUNCTION(shmat);
1709 INTERCEPT_FUNCTION(fork);
1710 MSAN_MAYBE_INTERCEPT_OPENPTY;
1711 MSAN_MAYBE_INTERCEPT_FORKPTY;
1712
1713 inited = 1;
1714 }
1715 } // namespace __msan
1716