xref: /openbsd-src/gnu/llvm/compiler-rt/lib/asan/tests/asan_mem_test.cpp (revision 810390e339a5425391477d5d41c78d7cab2424ac)
13cab2bb3Spatrick //===-- asan_mem_test.cpp -------------------------------------------------===//
23cab2bb3Spatrick //
33cab2bb3Spatrick // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
43cab2bb3Spatrick // See https://llvm.org/LICENSE.txt for license information.
53cab2bb3Spatrick // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
63cab2bb3Spatrick //
73cab2bb3Spatrick //===----------------------------------------------------------------------===//
83cab2bb3Spatrick //
93cab2bb3Spatrick // This file is a part of AddressSanitizer, an address sanity checker.
103cab2bb3Spatrick //
113cab2bb3Spatrick //===----------------------------------------------------------------------===//
123cab2bb3Spatrick #include <string.h>
133cab2bb3Spatrick #include "asan_test_utils.h"
143cab2bb3Spatrick #if defined(_GNU_SOURCE)
153cab2bb3Spatrick #include <strings.h>  // for bcmp
163cab2bb3Spatrick #endif
173cab2bb3Spatrick #include <vector>
183cab2bb3Spatrick 
193cab2bb3Spatrick template<typename T>
MemSetOOBTestTemplate(size_t length)203cab2bb3Spatrick void MemSetOOBTestTemplate(size_t length) {
213cab2bb3Spatrick   if (length == 0) return;
223cab2bb3Spatrick   size_t size = Ident(sizeof(T) * length);
233cab2bb3Spatrick   T *array = Ident((T*)malloc(size));
243cab2bb3Spatrick   int element = Ident(42);
253cab2bb3Spatrick   int zero = Ident(0);
263cab2bb3Spatrick   void *(*MEMSET)(void *s, int c, size_t n) = Ident(memset);
273cab2bb3Spatrick   // memset interval inside array
283cab2bb3Spatrick   MEMSET(array, element, size);
293cab2bb3Spatrick   MEMSET(array, element, size - 1);
303cab2bb3Spatrick   MEMSET(array + length - 1, element, sizeof(T));
313cab2bb3Spatrick   MEMSET(array, element, 1);
323cab2bb3Spatrick 
333cab2bb3Spatrick   // memset 0 bytes
343cab2bb3Spatrick   MEMSET(array - 10, element, zero);
353cab2bb3Spatrick   MEMSET(array - 1, element, zero);
363cab2bb3Spatrick   MEMSET(array, element, zero);
373cab2bb3Spatrick   MEMSET(array + length, 0, zero);
383cab2bb3Spatrick   MEMSET(array + length + 1, 0, zero);
393cab2bb3Spatrick 
40*810390e3Srobert   // try to memset bytes after array
413cab2bb3Spatrick   EXPECT_DEATH(MEMSET(array, 0, size + 1),
423cab2bb3Spatrick                RightOOBWriteMessage(0));
433cab2bb3Spatrick   EXPECT_DEATH(MEMSET((char*)(array + length) - 1, element, 6),
443cab2bb3Spatrick                RightOOBWriteMessage(0));
453cab2bb3Spatrick   EXPECT_DEATH(MEMSET(array + 1, element, size + sizeof(T)),
463cab2bb3Spatrick                RightOOBWriteMessage(0));
47*810390e3Srobert   // whole interval is after
483cab2bb3Spatrick   EXPECT_DEATH(MEMSET(array + length + 1, 0, 10),
493cab2bb3Spatrick                RightOOBWriteMessage(sizeof(T)));
503cab2bb3Spatrick 
51*810390e3Srobert   // try to memset bytes before array
523cab2bb3Spatrick   EXPECT_DEATH(MEMSET((char*)array - 1, element, size),
533cab2bb3Spatrick                LeftOOBWriteMessage(1));
543cab2bb3Spatrick   EXPECT_DEATH(MEMSET((char*)array - 5, 0, 6),
553cab2bb3Spatrick                LeftOOBWriteMessage(5));
563cab2bb3Spatrick   if (length >= 100) {
573cab2bb3Spatrick     // Large OOB, we find it only if the redzone is large enough.
583cab2bb3Spatrick     EXPECT_DEATH(memset(array - 5, element, size + 5 * sizeof(T)),
593cab2bb3Spatrick                  LeftOOBWriteMessage(5 * sizeof(T)));
603cab2bb3Spatrick   }
61*810390e3Srobert   // whole interval is before
623cab2bb3Spatrick   EXPECT_DEATH(MEMSET(array - 2, 0, sizeof(T)),
633cab2bb3Spatrick                LeftOOBWriteMessage(2 * sizeof(T)));
643cab2bb3Spatrick 
65*810390e3Srobert   // try to memset bytes both before & after
663cab2bb3Spatrick   EXPECT_DEATH(MEMSET((char*)array - 2, element, size + 4),
673cab2bb3Spatrick                LeftOOBWriteMessage(2));
683cab2bb3Spatrick 
693cab2bb3Spatrick   free(array);
703cab2bb3Spatrick }
713cab2bb3Spatrick 
TEST(AddressSanitizer,MemSetOOBTest)723cab2bb3Spatrick TEST(AddressSanitizer, MemSetOOBTest) {
733cab2bb3Spatrick   MemSetOOBTestTemplate<char>(100);
743cab2bb3Spatrick   MemSetOOBTestTemplate<int>(5);
753cab2bb3Spatrick   MemSetOOBTestTemplate<double>(256);
763cab2bb3Spatrick   // We can test arrays of structres/classes here, but what for?
773cab2bb3Spatrick }
783cab2bb3Spatrick 
793cab2bb3Spatrick // Try to allocate two arrays of 'size' bytes that are near each other.
803cab2bb3Spatrick // Strictly speaking we are not guaranteed to find such two pointers,
813cab2bb3Spatrick // but given the structure of asan's allocator we will.
AllocateTwoAdjacentArrays(char ** x1,char ** x2,size_t size)823cab2bb3Spatrick static bool AllocateTwoAdjacentArrays(char **x1, char **x2, size_t size) {
833cab2bb3Spatrick   std::vector<uintptr_t> v;
843cab2bb3Spatrick   bool res = false;
853cab2bb3Spatrick   for (size_t i = 0; i < 1000U && !res; i++) {
863cab2bb3Spatrick     v.push_back(reinterpret_cast<uintptr_t>(new char[size]));
873cab2bb3Spatrick     if (i == 0) continue;
883cab2bb3Spatrick     sort(v.begin(), v.end());
893cab2bb3Spatrick     for (size_t j = 1; j < v.size(); j++) {
903cab2bb3Spatrick       assert(v[j] > v[j-1]);
913cab2bb3Spatrick       if ((size_t)(v[j] - v[j-1]) < size * 2) {
923cab2bb3Spatrick         *x2 = reinterpret_cast<char*>(v[j]);
933cab2bb3Spatrick         *x1 = reinterpret_cast<char*>(v[j-1]);
943cab2bb3Spatrick         res = true;
953cab2bb3Spatrick         break;
963cab2bb3Spatrick       }
973cab2bb3Spatrick     }
983cab2bb3Spatrick   }
993cab2bb3Spatrick 
1003cab2bb3Spatrick   for (size_t i = 0; i < v.size(); i++) {
1013cab2bb3Spatrick     char *p = reinterpret_cast<char *>(v[i]);
1023cab2bb3Spatrick     if (res && p == *x1) continue;
1033cab2bb3Spatrick     if (res && p == *x2) continue;
1043cab2bb3Spatrick     delete [] p;
1053cab2bb3Spatrick   }
1063cab2bb3Spatrick   return res;
1073cab2bb3Spatrick }
1083cab2bb3Spatrick 
TEST(AddressSanitizer,LargeOOBInMemset)1093cab2bb3Spatrick TEST(AddressSanitizer, LargeOOBInMemset) {
1103cab2bb3Spatrick   for (size_t size = 200; size < 100000; size += size / 2) {
1113cab2bb3Spatrick     char *x1, *x2;
1123cab2bb3Spatrick     if (!Ident(AllocateTwoAdjacentArrays)(&x1, &x2, size))
1133cab2bb3Spatrick       continue;
1143cab2bb3Spatrick     // fprintf(stderr, "  large oob memset: %p %p %zd\n", x1, x2, size);
1153cab2bb3Spatrick     // Do a memset on x1 with huge out-of-bound access that will end up in x2.
1163cab2bb3Spatrick     EXPECT_DEATH(Ident(memset)(x1, 0, size * 2),
117*810390e3Srobert                  "is located 0 bytes after");
1183cab2bb3Spatrick     delete [] x1;
1193cab2bb3Spatrick     delete [] x2;
1203cab2bb3Spatrick     return;
1213cab2bb3Spatrick   }
1223cab2bb3Spatrick   assert(0 && "Did not find two adjacent malloc-ed pointers");
1233cab2bb3Spatrick }
1243cab2bb3Spatrick 
1253cab2bb3Spatrick // Same test for memcpy and memmove functions
1263cab2bb3Spatrick template <typename T, class M>
MemTransferOOBTestTemplate(size_t length)1273cab2bb3Spatrick void MemTransferOOBTestTemplate(size_t length) {
1283cab2bb3Spatrick   if (length == 0) return;
1293cab2bb3Spatrick   size_t size = Ident(sizeof(T) * length);
1303cab2bb3Spatrick   T *src = Ident((T*)malloc(size));
1313cab2bb3Spatrick   T *dest = Ident((T*)malloc(size));
1323cab2bb3Spatrick   int zero = Ident(0);
1333cab2bb3Spatrick 
1343cab2bb3Spatrick   // valid transfer of bytes between arrays
1353cab2bb3Spatrick   M::transfer(dest, src, size);
1363cab2bb3Spatrick   M::transfer(dest + 1, src, size - sizeof(T));
1373cab2bb3Spatrick   M::transfer(dest, src + length - 1, sizeof(T));
1383cab2bb3Spatrick   M::transfer(dest, src, 1);
1393cab2bb3Spatrick 
1403cab2bb3Spatrick   // transfer zero bytes
1413cab2bb3Spatrick   M::transfer(dest - 1, src, 0);
1423cab2bb3Spatrick   M::transfer(dest + length, src, zero);
1433cab2bb3Spatrick   M::transfer(dest, src - 1, zero);
1443cab2bb3Spatrick   M::transfer(dest, src, zero);
1453cab2bb3Spatrick 
146*810390e3Srobert   // try to change mem after dest
1473cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest + 1, src, size),
1483cab2bb3Spatrick                RightOOBWriteMessage(0));
1493cab2bb3Spatrick   EXPECT_DEATH(M::transfer((char*)(dest + length) - 1, src, 5),
1503cab2bb3Spatrick                RightOOBWriteMessage(0));
1513cab2bb3Spatrick 
152*810390e3Srobert   // try to change mem before dest
1533cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest - 2, src, size),
1543cab2bb3Spatrick                LeftOOBWriteMessage(2 * sizeof(T)));
1553cab2bb3Spatrick   EXPECT_DEATH(M::transfer((char*)dest - 3, src, 4),
1563cab2bb3Spatrick                LeftOOBWriteMessage(3));
1573cab2bb3Spatrick 
158*810390e3Srobert   // try to access mem after src
1593cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest, src + 2, size),
1603cab2bb3Spatrick                RightOOBReadMessage(0));
1613cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest, (char*)(src + length) - 3, 6),
1623cab2bb3Spatrick                RightOOBReadMessage(0));
1633cab2bb3Spatrick 
164*810390e3Srobert   // try to access mem before src
1653cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest, src - 1, size),
1663cab2bb3Spatrick                LeftOOBReadMessage(sizeof(T)));
1673cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest, (char*)src - 6, 7),
1683cab2bb3Spatrick                LeftOOBReadMessage(6));
1693cab2bb3Spatrick 
1703cab2bb3Spatrick   // Generally we don't need to test cases where both accessing src and writing
1713cab2bb3Spatrick   // to dest address to poisoned memory.
1723cab2bb3Spatrick 
1733cab2bb3Spatrick   T *big_src = Ident((T*)malloc(size * 2));
1743cab2bb3Spatrick   T *big_dest = Ident((T*)malloc(size * 2));
1753cab2bb3Spatrick   // try to change mem to both sides of dest
1763cab2bb3Spatrick   EXPECT_DEATH(M::transfer(dest - 1, big_src, size * 2),
1773cab2bb3Spatrick                LeftOOBWriteMessage(sizeof(T)));
1783cab2bb3Spatrick   // try to access mem to both sides of src
1793cab2bb3Spatrick   EXPECT_DEATH(M::transfer(big_dest, src - 2, size * 2),
1803cab2bb3Spatrick                LeftOOBReadMessage(2 * sizeof(T)));
1813cab2bb3Spatrick 
1823cab2bb3Spatrick   free(src);
1833cab2bb3Spatrick   free(dest);
1843cab2bb3Spatrick   free(big_src);
1853cab2bb3Spatrick   free(big_dest);
1863cab2bb3Spatrick }
1873cab2bb3Spatrick 
1883cab2bb3Spatrick class MemCpyWrapper {
1893cab2bb3Spatrick  public:
transfer(void * to,const void * from,size_t size)1903cab2bb3Spatrick   static void* transfer(void *to, const void *from, size_t size) {
1913cab2bb3Spatrick     return Ident(memcpy)(to, from, size);
1923cab2bb3Spatrick   }
1933cab2bb3Spatrick };
1943cab2bb3Spatrick 
TEST(AddressSanitizer,MemCpyOOBTest)1953cab2bb3Spatrick TEST(AddressSanitizer, MemCpyOOBTest) {
1963cab2bb3Spatrick   MemTransferOOBTestTemplate<char, MemCpyWrapper>(100);
1973cab2bb3Spatrick   MemTransferOOBTestTemplate<int, MemCpyWrapper>(1024);
1983cab2bb3Spatrick }
1993cab2bb3Spatrick 
2003cab2bb3Spatrick class MemMoveWrapper {
2013cab2bb3Spatrick  public:
transfer(void * to,const void * from,size_t size)2023cab2bb3Spatrick   static void* transfer(void *to, const void *from, size_t size) {
2033cab2bb3Spatrick     return Ident(memmove)(to, from, size);
2043cab2bb3Spatrick   }
2053cab2bb3Spatrick };
2063cab2bb3Spatrick 
TEST(AddressSanitizer,MemMoveOOBTest)2073cab2bb3Spatrick TEST(AddressSanitizer, MemMoveOOBTest) {
2083cab2bb3Spatrick   MemTransferOOBTestTemplate<char, MemMoveWrapper>(100);
2093cab2bb3Spatrick   MemTransferOOBTestTemplate<int, MemMoveWrapper>(1024);
2103cab2bb3Spatrick }
2113cab2bb3Spatrick 
2123cab2bb3Spatrick template <int (*cmpfn)(const void *, const void *, size_t)>
CmpOOBTestCommon()2133cab2bb3Spatrick void CmpOOBTestCommon() {
2143cab2bb3Spatrick   size_t size = Ident(100);
2153cab2bb3Spatrick   char *s1 = MallocAndMemsetString(size);
2163cab2bb3Spatrick   char *s2 = MallocAndMemsetString(size);
2173cab2bb3Spatrick   // Normal cmpfn calls.
2183cab2bb3Spatrick   Ident(cmpfn(s1, s2, size));
2193cab2bb3Spatrick   Ident(cmpfn(s1 + size - 1, s2 + size - 1, 1));
2203cab2bb3Spatrick   Ident(cmpfn(s1 - 1, s2 - 1, 0));
2213cab2bb3Spatrick   // One of arguments points to not allocated memory.
2223cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1 - 1, s2, 1), LeftOOBReadMessage(1));
2233cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1, s2 - 1, 1), LeftOOBReadMessage(1));
2243cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1 + size, s2, 1), RightOOBReadMessage(0));
2253cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1, s2 + size, 1), RightOOBReadMessage(0));
2263cab2bb3Spatrick   // Hit unallocated memory and die.
2273cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1 + 1, s2 + 1, size), RightOOBReadMessage(0));
2283cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1 + size - 1, s2, 2), RightOOBReadMessage(0));
2293cab2bb3Spatrick   // Zero bytes are not terminators and don't prevent from OOB.
2303cab2bb3Spatrick   s1[size - 1] = '\0';
2313cab2bb3Spatrick   s2[size - 1] = '\0';
2323cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1, s2, size + 1), RightOOBReadMessage(0));
2333cab2bb3Spatrick 
2343cab2bb3Spatrick   // Even if the buffers differ in the first byte, we still assume that
2353cab2bb3Spatrick   // cmpfn may access the whole buffer and thus reporting the overflow here:
2363cab2bb3Spatrick   s1[0] = 1;
2373cab2bb3Spatrick   s2[0] = 123;
2383cab2bb3Spatrick   EXPECT_DEATH(Ident(cmpfn)(s1, s2, size + 1), RightOOBReadMessage(0));
2393cab2bb3Spatrick 
2403cab2bb3Spatrick   free(s1);
2413cab2bb3Spatrick   free(s2);
2423cab2bb3Spatrick }
2433cab2bb3Spatrick 
TEST(AddressSanitizer,MemCmpOOBTest)2443cab2bb3Spatrick TEST(AddressSanitizer, MemCmpOOBTest) { CmpOOBTestCommon<memcmp>(); }
2453cab2bb3Spatrick 
TEST(AddressSanitizer,BCmpOOBTest)2463cab2bb3Spatrick TEST(AddressSanitizer, BCmpOOBTest) {
2473cab2bb3Spatrick #if (defined(__linux__) && !defined(__ANDROID__) && defined(_GNU_SOURCE)) || \
248d89ec533Spatrick     defined(__NetBSD__) || defined(__FreeBSD__)
2493cab2bb3Spatrick   CmpOOBTestCommon<bcmp>();
2503cab2bb3Spatrick #endif
2513cab2bb3Spatrick }
252