Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 1 | //===-- scudo_allocator.cpp -------------------------------------*- C++ -*-===// |
| 2 | // |
| 3 | // The LLVM Compiler Infrastructure |
| 4 | // |
| 5 | // This file is distributed under the University of Illinois Open Source |
| 6 | // License. See LICENSE.TXT for details. |
| 7 | // |
| 8 | //===----------------------------------------------------------------------===// |
| 9 | /// |
| 10 | /// Scudo Hardened Allocator implementation. |
| 11 | /// It uses the sanitizer_common allocator as a base and aims at mitigating |
| 12 | /// heap corruption vulnerabilities. It provides a checksum-guarded chunk |
| 13 | /// header, a delayed free list, and additional sanity checks. |
| 14 | /// |
| 15 | //===----------------------------------------------------------------------===// |
| 16 | |
| 17 | #include "scudo_allocator.h" |
Kostya Kortchinsky | b0e96eb | 2017-05-09 15:12:38 +0000 | [diff] [blame] | 18 | #include "scudo_crc32.h" |
Kostya Kortchinsky | 4391772 | 2017-08-16 16:40:48 +0000 | [diff] [blame] | 19 | #include "scudo_flags.h" |
Kostya Kortchinsky | b59abb2 | 2017-09-26 17:20:02 +0000 | [diff] [blame] | 20 | #include "scudo_tsd.h" |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 21 | #include "scudo_utils.h" |
| 22 | |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 23 | #include "sanitizer_common/sanitizer_allocator_checks.h" |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 24 | #include "sanitizer_common/sanitizer_allocator_interface.h" |
| 25 | #include "sanitizer_common/sanitizer_quarantine.h" |
| 26 | |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 27 | #include <errno.h> |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 28 | #include <string.h> |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 29 | |
| 30 | namespace __scudo { |
| 31 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 32 | // Global static cookie, initialized at start-up. |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 33 | static u32 Cookie; |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 34 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 35 | // We default to software CRC32 if the alternatives are not supported, either |
| 36 | // at compilation or at runtime. |
| 37 | static atomic_uint8_t HashAlgorithm = { CRC32Software }; |
| 38 | |
Kostya Kortchinsky | 4391772 | 2017-08-16 16:40:48 +0000 | [diff] [blame] | 39 | INLINE u32 computeCRC32(u32 Crc, uptr Value, uptr *Array, uptr ArraySize) { |
Kostya Kortchinsky | b0e96eb | 2017-05-09 15:12:38 +0000 | [diff] [blame] | 40 | // If the hardware CRC32 feature is defined here, it was enabled everywhere, |
| 41 | // as opposed to only for scudo_crc32.cpp. This means that other hardware |
| 42 | // specific instructions were likely emitted at other places, and as a |
| 43 | // result there is no reason to not use it here. |
Kostya Kortchinsky | b39dff4 | 2017-01-18 17:11:17 +0000 | [diff] [blame] | 44 | #if defined(__SSE4_2__) || defined(__ARM_FEATURE_CRC32) |
Kostya Kortchinsky | b0e96eb | 2017-05-09 15:12:38 +0000 | [diff] [blame] | 45 | Crc = CRC32_INTRINSIC(Crc, Value); |
| 46 | for (uptr i = 0; i < ArraySize; i++) |
| 47 | Crc = CRC32_INTRINSIC(Crc, Array[i]); |
| 48 | return Crc; |
Kostya Kortchinsky | b39dff4 | 2017-01-18 17:11:17 +0000 | [diff] [blame] | 49 | #else |
Kostya Kortchinsky | b0e96eb | 2017-05-09 15:12:38 +0000 | [diff] [blame] | 50 | if (atomic_load_relaxed(&HashAlgorithm) == CRC32Hardware) { |
| 51 | Crc = computeHardwareCRC32(Crc, Value); |
| 52 | for (uptr i = 0; i < ArraySize; i++) |
| 53 | Crc = computeHardwareCRC32(Crc, Array[i]); |
| 54 | return Crc; |
| 55 | } |
| 56 | Crc = computeSoftwareCRC32(Crc, Value); |
| 57 | for (uptr i = 0; i < ArraySize; i++) |
| 58 | Crc = computeSoftwareCRC32(Crc, Array[i]); |
| 59 | return Crc; |
| 60 | #endif // defined(__SSE4_2__) || defined(__ARM_FEATURE_CRC32) |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 61 | } |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 62 | |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 63 | static ScudoBackendAllocator &getBackendAllocator(); |
| 64 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 65 | struct ScudoChunk : UnpackedHeader { |
| 66 | // We can't use the offset member of the chunk itself, as we would double |
| 67 | // fetch it without any warranty that it wouldn't have been tampered. To |
| 68 | // prevent this, we work with a local copy of the header. |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 69 | void *getBackendPtr(UnpackedHeader *Header) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 70 | return reinterpret_cast<void *>( |
| 71 | reinterpret_cast<uptr>(this) - (Header->Offset << MinAlignmentLog)); |
| 72 | } |
| 73 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 74 | // Returns the usable size for a chunk, meaning the amount of bytes from the |
| 75 | // beginning of the user data to the end of the backend allocated chunk. |
| 76 | uptr getUsableSize(UnpackedHeader *Header) { |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 77 | const uptr Size = |
| 78 | getBackendAllocator().getActuallyAllocatedSize(getBackendPtr(Header), |
| 79 | Header->ClassId); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 80 | if (Size == 0) |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 81 | return 0; |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 82 | return Size - AlignedChunkHeaderSize - (Header->Offset << MinAlignmentLog); |
| 83 | } |
| 84 | |
| 85 | // Compute the checksum of the Chunk pointer and its ChunkHeader. |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 86 | u16 computeChecksum(UnpackedHeader *Header) const { |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 87 | UnpackedHeader ZeroChecksumHeader = *Header; |
| 88 | ZeroChecksumHeader.Checksum = 0; |
| 89 | uptr HeaderHolder[sizeof(UnpackedHeader) / sizeof(uptr)]; |
| 90 | memcpy(&HeaderHolder, &ZeroChecksumHeader, sizeof(HeaderHolder)); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 91 | u32 Crc = computeCRC32(Cookie, reinterpret_cast<uptr>(this), HeaderHolder, |
Kostya Kortchinsky | b0e96eb | 2017-05-09 15:12:38 +0000 | [diff] [blame] | 92 | ARRAY_SIZE(HeaderHolder)); |
Kostya Kortchinsky | b39dff4 | 2017-01-18 17:11:17 +0000 | [diff] [blame] | 93 | return static_cast<u16>(Crc); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 94 | } |
| 95 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 96 | // Checks the validity of a chunk by verifying its checksum. It doesn't |
| 97 | // incur termination in the event of an invalid chunk. |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 98 | bool isValid() { |
| 99 | UnpackedHeader NewUnpackedHeader; |
| 100 | const AtomicPackedHeader *AtomicHeader = |
| 101 | reinterpret_cast<const AtomicPackedHeader *>(this); |
Kostya Kortchinsky | a00b922 | 2017-01-20 18:32:18 +0000 | [diff] [blame] | 102 | PackedHeader NewPackedHeader = atomic_load_relaxed(AtomicHeader); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 103 | NewUnpackedHeader = bit_cast<UnpackedHeader>(NewPackedHeader); |
| 104 | return (NewUnpackedHeader.Checksum == computeChecksum(&NewUnpackedHeader)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 105 | } |
| 106 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 107 | // Nulls out a chunk header. When returning the chunk to the backend, there |
| 108 | // is no need to store a valid ChunkAvailable header, as this would be |
| 109 | // computationally expensive. Zeroing out serves the same purpose by making |
| 110 | // the header invalid. In the extremely rare event where 0 would be a valid |
| 111 | // checksum for the chunk, the state of the chunk is ChunkAvailable anyway. |
| 112 | COMPILER_CHECK(ChunkAvailable == 0); |
| 113 | void eraseHeader() { |
| 114 | PackedHeader NullPackedHeader = 0; |
| 115 | AtomicPackedHeader *AtomicHeader = |
| 116 | reinterpret_cast<AtomicPackedHeader *>(this); |
| 117 | atomic_store_relaxed(AtomicHeader, NullPackedHeader); |
| 118 | } |
| 119 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 120 | // Loads and unpacks the header, verifying the checksum in the process. |
| 121 | void loadHeader(UnpackedHeader *NewUnpackedHeader) const { |
| 122 | const AtomicPackedHeader *AtomicHeader = |
| 123 | reinterpret_cast<const AtomicPackedHeader *>(this); |
Kostya Kortchinsky | a00b922 | 2017-01-20 18:32:18 +0000 | [diff] [blame] | 124 | PackedHeader NewPackedHeader = atomic_load_relaxed(AtomicHeader); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 125 | *NewUnpackedHeader = bit_cast<UnpackedHeader>(NewPackedHeader); |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 126 | if (UNLIKELY(NewUnpackedHeader->Checksum != |
| 127 | computeChecksum(NewUnpackedHeader))) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 128 | dieWithMessage("ERROR: corrupted chunk header at address %p\n", this); |
| 129 | } |
| 130 | } |
| 131 | |
| 132 | // Packs and stores the header, computing the checksum in the process. |
| 133 | void storeHeader(UnpackedHeader *NewUnpackedHeader) { |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 134 | NewUnpackedHeader->Checksum = computeChecksum(NewUnpackedHeader); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 135 | PackedHeader NewPackedHeader = bit_cast<PackedHeader>(*NewUnpackedHeader); |
| 136 | AtomicPackedHeader *AtomicHeader = |
| 137 | reinterpret_cast<AtomicPackedHeader *>(this); |
Kostya Kortchinsky | a00b922 | 2017-01-20 18:32:18 +0000 | [diff] [blame] | 138 | atomic_store_relaxed(AtomicHeader, NewPackedHeader); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 139 | } |
| 140 | |
| 141 | // Packs and stores the header, computing the checksum in the process. We |
| 142 | // compare the current header with the expected provided one to ensure that |
| 143 | // we are not being raced by a corruption occurring in another thread. |
| 144 | void compareExchangeHeader(UnpackedHeader *NewUnpackedHeader, |
| 145 | UnpackedHeader *OldUnpackedHeader) { |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 146 | NewUnpackedHeader->Checksum = computeChecksum(NewUnpackedHeader); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 147 | PackedHeader NewPackedHeader = bit_cast<PackedHeader>(*NewUnpackedHeader); |
| 148 | PackedHeader OldPackedHeader = bit_cast<PackedHeader>(*OldUnpackedHeader); |
| 149 | AtomicPackedHeader *AtomicHeader = |
| 150 | reinterpret_cast<AtomicPackedHeader *>(this); |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 151 | if (UNLIKELY(!atomic_compare_exchange_strong(AtomicHeader, |
| 152 | &OldPackedHeader, |
| 153 | NewPackedHeader, |
| 154 | memory_order_relaxed))) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 155 | dieWithMessage("ERROR: race on chunk header at address %p\n", this); |
| 156 | } |
| 157 | } |
| 158 | }; |
| 159 | |
Kostya Kortchinsky | 4ac0b1e | 2017-12-13 16:10:39 +0000 | [diff] [blame] | 160 | INLINE ScudoChunk *getScudoChunk(uptr UserBeg) { |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 161 | return reinterpret_cast<ScudoChunk *>(UserBeg - AlignedChunkHeaderSize); |
| 162 | } |
| 163 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 164 | struct QuarantineCallback { |
| 165 | explicit QuarantineCallback(AllocatorCache *Cache) |
| 166 | : Cache_(Cache) {} |
| 167 | |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 168 | // Chunk recycling function, returns a quarantined chunk to the backend, |
| 169 | // first making sure it hasn't been tampered with. |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 170 | void Recycle(ScudoChunk *Chunk) { |
| 171 | UnpackedHeader Header; |
| 172 | Chunk->loadHeader(&Header); |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 173 | if (UNLIKELY(Header.State != ChunkQuarantine)) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 174 | dieWithMessage("ERROR: invalid chunk state when recycling address %p\n", |
| 175 | Chunk); |
| 176 | } |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 177 | Chunk->eraseHeader(); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 178 | void *Ptr = Chunk->getBackendPtr(&Header); |
| 179 | if (Header.ClassId) |
| 180 | getBackendAllocator().deallocatePrimary(Cache_, Ptr, Header.ClassId); |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 181 | else |
| 182 | getBackendAllocator().deallocateSecondary(Ptr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 183 | } |
| 184 | |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 185 | // Internal quarantine allocation and deallocation functions. We first check |
| 186 | // that the batches are indeed serviced by the Primary. |
| 187 | // TODO(kostyak): figure out the best way to protect the batches. |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 188 | void *Allocate(uptr Size) { |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 189 | return getBackendAllocator().allocatePrimary(Cache_, BatchClassId); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 190 | } |
| 191 | |
| 192 | void Deallocate(void *Ptr) { |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 193 | getBackendAllocator().deallocatePrimary(Cache_, Ptr, BatchClassId); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 194 | } |
| 195 | |
| 196 | AllocatorCache *Cache_; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 197 | COMPILER_CHECK(sizeof(QuarantineBatch) < SizeClassMap::kMaxSize); |
| 198 | const uptr BatchClassId = SizeClassMap::ClassID(sizeof(QuarantineBatch)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 199 | }; |
| 200 | |
| 201 | typedef Quarantine<QuarantineCallback, ScudoChunk> ScudoQuarantine; |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 202 | typedef ScudoQuarantine::Cache ScudoQuarantineCache; |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 203 | COMPILER_CHECK(sizeof(ScudoQuarantineCache) <= |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 204 | sizeof(ScudoTSD::QuarantineCachePlaceHolder)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 205 | |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 206 | ScudoQuarantineCache *getQuarantineCache(ScudoTSD *TSD) { |
| 207 | return reinterpret_cast<ScudoQuarantineCache *>( |
| 208 | TSD->QuarantineCachePlaceHolder); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 209 | } |
| 210 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 211 | struct ScudoAllocator { |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 212 | static const uptr MaxAllowedMallocSize = |
| 213 | FIRST_32_SECOND_64(2UL << 30, 1ULL << 40); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 214 | |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 215 | typedef ReturnNullOrDieOnFailure FailureHandler; |
| 216 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 217 | ScudoBackendAllocator BackendAllocator; |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 218 | ScudoQuarantine AllocatorQuarantine; |
| 219 | |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 220 | u32 QuarantineChunksUpToSize; |
| 221 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 222 | bool DeallocationTypeMismatch; |
| 223 | bool ZeroContents; |
| 224 | bool DeleteSizeMismatch; |
| 225 | |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 226 | bool CheckRssLimit; |
| 227 | uptr HardRssLimitMb; |
| 228 | uptr SoftRssLimitMb; |
| 229 | atomic_uint8_t RssLimitExceeded; |
| 230 | atomic_uint64_t RssLastCheckedAtNS; |
| 231 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 232 | explicit ScudoAllocator(LinkerInitialized) |
Kostya Kortchinsky | 22396c2 | 2017-09-25 15:12:08 +0000 | [diff] [blame] | 233 | : AllocatorQuarantine(LINKER_INITIALIZED) {} |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 234 | |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 235 | void performSanityChecks() { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 236 | // Verify that the header offset field can hold the maximum offset. In the |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 237 | // case of the Secondary allocator, it takes care of alignment and the |
| 238 | // offset will always be 0. In the case of the Primary, the worst case |
| 239 | // scenario happens in the last size class, when the backend allocation |
| 240 | // would already be aligned on the requested alignment, which would happen |
| 241 | // to be the maximum alignment that would fit in that size class. As a |
| 242 | // result, the maximum offset will be at most the maximum alignment for the |
| 243 | // last size class minus the header size, in multiples of MinAlignment. |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 244 | UnpackedHeader Header = {}; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 245 | const uptr MaxPrimaryAlignment = |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 246 | 1 << MostSignificantSetBitIndex(SizeClassMap::kMaxSize - MinAlignment); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 247 | const uptr MaxOffset = |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 248 | (MaxPrimaryAlignment - AlignedChunkHeaderSize) >> MinAlignmentLog; |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 249 | Header.Offset = MaxOffset; |
| 250 | if (Header.Offset != MaxOffset) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 251 | dieWithMessage("ERROR: the maximum possible offset doesn't fit in the " |
| 252 | "header\n"); |
| 253 | } |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 254 | // Verify that we can fit the maximum size or amount of unused bytes in the |
| 255 | // header. Given that the Secondary fits the allocation to a page, the worst |
| 256 | // case scenario happens in the Primary. It will depend on the second to |
| 257 | // last and last class sizes, as well as the dynamic base for the Primary. |
| 258 | // The following is an over-approximation that works for our needs. |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 259 | const uptr MaxSizeOrUnusedBytes = SizeClassMap::kMaxSize - 1; |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 260 | Header.SizeOrUnusedBytes = MaxSizeOrUnusedBytes; |
| 261 | if (Header.SizeOrUnusedBytes != MaxSizeOrUnusedBytes) { |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 262 | dieWithMessage("ERROR: the maximum possible unused bytes doesn't fit in " |
| 263 | "the header\n"); |
| 264 | } |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 265 | |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 266 | const uptr LargestClassId = SizeClassMap::kLargestClassID; |
| 267 | Header.ClassId = LargestClassId; |
| 268 | if (Header.ClassId != LargestClassId) { |
| 269 | dieWithMessage("ERROR: the largest class ID doesn't fit in the header\n"); |
| 270 | } |
| 271 | } |
| 272 | |
| 273 | void init() { |
| 274 | SanitizerToolName = "Scudo"; |
| 275 | initFlags(); |
| 276 | |
| 277 | performSanityChecks(); |
| 278 | |
Kostya Kortchinsky | a2b715f | 2017-11-14 16:14:53 +0000 | [diff] [blame] | 279 | // Check if hardware CRC32 is supported in the binary and by the platform, |
| 280 | // if so, opt for the CRC32 hardware version of the checksum. |
Kostya Kortchinsky | 0207b6f | 2017-11-22 18:30:44 +0000 | [diff] [blame] | 281 | if (&computeHardwareCRC32 && hasHardwareCRC32()) |
Kostya Kortchinsky | a2b715f | 2017-11-14 16:14:53 +0000 | [diff] [blame] | 282 | atomic_store_relaxed(&HashAlgorithm, CRC32Hardware); |
| 283 | |
| 284 | SetAllocatorMayReturnNull(common_flags()->allocator_may_return_null); |
| 285 | BackendAllocator.init(common_flags()->allocator_release_to_os_interval_ms); |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 286 | HardRssLimitMb = common_flags()->hard_rss_limit_mb; |
| 287 | SoftRssLimitMb = common_flags()->soft_rss_limit_mb; |
Kostya Kortchinsky | 71dcc33 | 2016-10-26 16:16:58 +0000 | [diff] [blame] | 288 | AllocatorQuarantine.Init( |
Kostya Kortchinsky | a2b715f | 2017-11-14 16:14:53 +0000 | [diff] [blame] | 289 | static_cast<uptr>(getFlags()->QuarantineSizeKb) << 10, |
| 290 | static_cast<uptr>(getFlags()->ThreadLocalQuarantineSizeKb) << 10); |
| 291 | QuarantineChunksUpToSize = getFlags()->QuarantineChunksUpToSize; |
| 292 | DeallocationTypeMismatch = getFlags()->DeallocationTypeMismatch; |
| 293 | DeleteSizeMismatch = getFlags()->DeleteSizeMismatch; |
| 294 | ZeroContents = getFlags()->ZeroContents; |
| 295 | |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 296 | if (UNLIKELY(!GetRandom(reinterpret_cast<void *>(&Cookie), sizeof(Cookie), |
| 297 | /*blocking=*/false))) { |
| 298 | Cookie = static_cast<u32>((NanoTime() >> 12) ^ |
| 299 | (reinterpret_cast<uptr>(this) >> 4)); |
| 300 | } |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 301 | |
| 302 | CheckRssLimit = HardRssLimitMb || SoftRssLimitMb; |
| 303 | if (CheckRssLimit) |
Kostya Kortchinsky | f50246d | 2017-12-13 16:23:54 +0000 | [diff] [blame] | 304 | atomic_store_relaxed(&RssLastCheckedAtNS, MonotonicNanoTime()); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 305 | } |
| 306 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 307 | // Helper function that checks for a valid Scudo chunk. nullptr isn't. |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 308 | bool isValidPointer(const void *UserPtr) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 309 | initThreadMaybe(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 310 | if (UNLIKELY(!UserPtr)) |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 311 | return false; |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 312 | uptr UserBeg = reinterpret_cast<uptr>(UserPtr); |
| 313 | if (!IsAligned(UserBeg, MinAlignment)) |
| 314 | return false; |
| 315 | return getScudoChunk(UserBeg)->isValid(); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 316 | } |
| 317 | |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 318 | // Opportunistic RSS limit check. This will update the RSS limit status, if |
| 319 | // it can, every 100ms, otherwise it will just return the current one. |
| 320 | bool isRssLimitExceeded() { |
| 321 | u64 LastCheck = atomic_load_relaxed(&RssLastCheckedAtNS); |
Kostya Kortchinsky | f50246d | 2017-12-13 16:23:54 +0000 | [diff] [blame] | 322 | const u64 CurrentCheck = MonotonicNanoTime(); |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 323 | if (LIKELY(CurrentCheck < LastCheck + (100ULL * 1000000ULL))) |
| 324 | return atomic_load_relaxed(&RssLimitExceeded); |
| 325 | if (!atomic_compare_exchange_weak(&RssLastCheckedAtNS, &LastCheck, |
| 326 | CurrentCheck, memory_order_relaxed)) |
| 327 | return atomic_load_relaxed(&RssLimitExceeded); |
| 328 | // TODO(kostyak): We currently use sanitizer_common's GetRSS which reads the |
| 329 | // RSS from /proc/self/statm by default. We might want to |
| 330 | // call getrusage directly, even if it's less accurate. |
| 331 | const uptr CurrentRssMb = GetRSS() >> 20; |
| 332 | if (HardRssLimitMb && HardRssLimitMb < CurrentRssMb) { |
| 333 | Report("%s: hard RSS limit exhausted (%zdMb vs %zdMb)\n", |
| 334 | SanitizerToolName, HardRssLimitMb, CurrentRssMb); |
| 335 | DumpProcessMap(); |
| 336 | Die(); |
| 337 | } |
| 338 | if (SoftRssLimitMb) { |
| 339 | if (atomic_load_relaxed(&RssLimitExceeded)) { |
| 340 | if (CurrentRssMb <= SoftRssLimitMb) |
| 341 | atomic_store_relaxed(&RssLimitExceeded, false); |
| 342 | } else { |
| 343 | if (CurrentRssMb > SoftRssLimitMb) { |
| 344 | atomic_store_relaxed(&RssLimitExceeded, true); |
| 345 | Report("%s: soft RSS limit exhausted (%zdMb vs %zdMb)\n", |
| 346 | SanitizerToolName, SoftRssLimitMb, CurrentRssMb); |
| 347 | } |
| 348 | } |
| 349 | } |
| 350 | return atomic_load_relaxed(&RssLimitExceeded); |
| 351 | } |
| 352 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 353 | // Allocates a chunk. |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 354 | void *allocate(uptr Size, uptr Alignment, AllocType Type, |
| 355 | bool ForceZeroContents = false) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 356 | initThreadMaybe(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 357 | if (UNLIKELY(Alignment > MaxAlignment)) |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 358 | return FailureHandler::OnBadRequest(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 359 | if (UNLIKELY(Alignment < MinAlignment)) |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 360 | Alignment = MinAlignment; |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 361 | if (UNLIKELY(Size >= MaxAllowedMallocSize)) |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 362 | return FailureHandler::OnBadRequest(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 363 | if (UNLIKELY(Size == 0)) |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 364 | Size = 1; |
Kostya Kortchinsky | c74da7c | 2016-12-13 19:31:54 +0000 | [diff] [blame] | 365 | |
| 366 | uptr NeededSize = RoundUpTo(Size, MinAlignment) + AlignedChunkHeaderSize; |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 367 | uptr AlignedSize = (Alignment > MinAlignment) ? |
| 368 | NeededSize + (Alignment - AlignedChunkHeaderSize) : NeededSize; |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 369 | if (UNLIKELY(AlignedSize >= MaxAllowedMallocSize)) |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 370 | return FailureHandler::OnBadRequest(); |
Kostya Kortchinsky | c74da7c | 2016-12-13 19:31:54 +0000 | [diff] [blame] | 371 | |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 372 | if (CheckRssLimit && UNLIKELY(isRssLimitExceeded())) |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 373 | return FailureHandler::OnOOM(); |
Kostya Kortchinsky | 58f2656d | 2017-11-15 16:40:27 +0000 | [diff] [blame] | 374 | |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 375 | // Primary and Secondary backed allocations have a different treatment. We |
| 376 | // deal with alignment requirements of Primary serviced allocations here, |
| 377 | // but the Secondary will take care of its own alignment needs. |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 378 | void *Ptr; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 379 | u8 ClassId; |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 380 | uptr AllocSize; |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 381 | if (PrimaryAllocator::CanAllocate(AlignedSize, MinAlignment)) { |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 382 | AllocSize = AlignedSize; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 383 | ClassId = SizeClassMap::ClassID(AllocSize); |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 384 | ScudoTSD *TSD = getTSDAndLock(); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 385 | Ptr = BackendAllocator.allocatePrimary(&TSD->Cache, ClassId); |
Kostya Kortchinsky | 22396c2 | 2017-09-25 15:12:08 +0000 | [diff] [blame] | 386 | TSD->unlock(); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 387 | } else { |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 388 | AllocSize = NeededSize; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 389 | ClassId = 0; |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 390 | Ptr = BackendAllocator.allocateSecondary(AllocSize, Alignment); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 391 | } |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 392 | if (UNLIKELY(!Ptr)) |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 393 | return FailureHandler::OnOOM(); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 394 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 395 | // If requested, we will zero out the entire contents of the returned chunk. |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 396 | if ((ForceZeroContents || ZeroContents) && ClassId) |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 397 | memset(Ptr, 0, BackendAllocator.getActuallyAllocatedSize(Ptr, ClassId)); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 398 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 399 | UnpackedHeader Header = {}; |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 400 | uptr BackendPtr = reinterpret_cast<uptr>(Ptr); |
| 401 | uptr UserBeg = BackendPtr + AlignedChunkHeaderSize; |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 402 | if (UNLIKELY(!IsAligned(UserBeg, Alignment))) { |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 403 | // Since the Secondary takes care of alignment, a non-aligned pointer |
| 404 | // means it is from the Primary. It is also the only case where the offset |
| 405 | // field of the header would be non-zero. |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 406 | CHECK(ClassId); |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 407 | UserBeg = RoundUpTo(UserBeg, Alignment); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 408 | uptr Offset = UserBeg - AlignedChunkHeaderSize - BackendPtr; |
Kostya Kortchinsky | 01a66fc | 2017-05-11 21:40:45 +0000 | [diff] [blame] | 409 | Header.Offset = Offset >> MinAlignmentLog; |
| 410 | } |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 411 | CHECK_LE(UserBeg + Size, BackendPtr + AllocSize); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 412 | Header.State = ChunkAllocated; |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 413 | Header.AllocType = Type; |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 414 | if (ClassId) { |
| 415 | Header.ClassId = ClassId; |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 416 | Header.SizeOrUnusedBytes = Size; |
| 417 | } else { |
| 418 | // The secondary fits the allocations to a page, so the amount of unused |
| 419 | // bytes is the difference between the end of the user allocation and the |
| 420 | // next page boundary. |
Kostya Kortchinsky | 9fcb91b | 2017-12-08 16:36:37 +0000 | [diff] [blame] | 421 | const uptr PageSize = GetPageSizeCached(); |
| 422 | const uptr TrailingBytes = (UserBeg + Size) & (PageSize - 1); |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 423 | if (TrailingBytes) |
| 424 | Header.SizeOrUnusedBytes = PageSize - TrailingBytes; |
| 425 | } |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 426 | getScudoChunk(UserBeg)->storeHeader(&Header); |
| 427 | void *UserPtr = reinterpret_cast<void *>(UserBeg); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 428 | // if (&__sanitizer_malloc_hook) __sanitizer_malloc_hook(UserPtr, Size); |
| 429 | return UserPtr; |
| 430 | } |
| 431 | |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 432 | // Place a chunk in the quarantine or directly deallocate it in the event of |
| 433 | // a zero-sized quarantine, or if the size of the chunk is greater than the |
| 434 | // quarantine chunk size threshold. |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 435 | void quarantineOrDeallocateChunk(ScudoChunk *Chunk, UnpackedHeader *Header, |
| 436 | uptr Size) { |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 437 | const bool BypassQuarantine = (AllocatorQuarantine.GetCacheSize() == 0) || |
| 438 | (Size > QuarantineChunksUpToSize); |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 439 | if (BypassQuarantine) { |
| 440 | Chunk->eraseHeader(); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 441 | void *Ptr = Chunk->getBackendPtr(Header); |
| 442 | if (Header->ClassId) { |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 443 | ScudoTSD *TSD = getTSDAndLock(); |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 444 | getBackendAllocator().deallocatePrimary(&TSD->Cache, Ptr, |
| 445 | Header->ClassId); |
Kostya Kortchinsky | 22396c2 | 2017-09-25 15:12:08 +0000 | [diff] [blame] | 446 | TSD->unlock(); |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 447 | } else { |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 448 | getBackendAllocator().deallocateSecondary(Ptr); |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 449 | } |
| 450 | } else { |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 451 | // If a small memory amount was allocated with a larger alignment, we want |
| 452 | // to take that into account. Otherwise the Quarantine would be filled |
| 453 | // with tiny chunks, taking a lot of VA memory. This is an approximation |
| 454 | // of the usable size, that allows us to not call |
| 455 | // GetActuallyAllocatedSize. |
| 456 | uptr EstimatedSize = Size + (Header->Offset << MinAlignmentLog); |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 457 | UnpackedHeader NewHeader = *Header; |
| 458 | NewHeader.State = ChunkQuarantine; |
| 459 | Chunk->compareExchangeHeader(&NewHeader, Header); |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 460 | ScudoTSD *TSD = getTSDAndLock(); |
Kostya Kortchinsky | 22396c2 | 2017-09-25 15:12:08 +0000 | [diff] [blame] | 461 | AllocatorQuarantine.Put(getQuarantineCache(TSD), |
| 462 | QuarantineCallback(&TSD->Cache), |
| 463 | Chunk, EstimatedSize); |
| 464 | TSD->unlock(); |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 465 | } |
| 466 | } |
| 467 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 468 | // Deallocates a Chunk, which means adding it to the delayed free list (or |
| 469 | // Quarantine). |
| 470 | void deallocate(void *UserPtr, uptr DeleteSize, AllocType Type) { |
Kostya Kortchinsky | 040c211 | 2017-09-11 19:59:40 +0000 | [diff] [blame] | 471 | // For a deallocation, we only ensure minimal initialization, meaning thread |
| 472 | // local data will be left uninitialized for now (when using ELF TLS). The |
| 473 | // fallback cache will be used instead. This is a workaround for a situation |
| 474 | // where the only heap operation performed in a thread would be a free past |
| 475 | // the TLS destructors, ending up in initialized thread specific data never |
| 476 | // being destroyed properly. Any other heap operation will do a full init. |
| 477 | initThreadMaybe(/*MinimalInit=*/true); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 478 | // if (&__sanitizer_free_hook) __sanitizer_free_hook(UserPtr); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 479 | if (UNLIKELY(!UserPtr)) |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 480 | return; |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 481 | uptr UserBeg = reinterpret_cast<uptr>(UserPtr); |
| 482 | if (UNLIKELY(!IsAligned(UserBeg, MinAlignment))) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 483 | dieWithMessage("ERROR: attempted to deallocate a chunk not properly " |
| 484 | "aligned at address %p\n", UserPtr); |
| 485 | } |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 486 | ScudoChunk *Chunk = getScudoChunk(UserBeg); |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 487 | UnpackedHeader Header; |
| 488 | Chunk->loadHeader(&Header); |
| 489 | if (UNLIKELY(Header.State != ChunkAllocated)) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 490 | dieWithMessage("ERROR: invalid chunk state when deallocating address " |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 491 | "%p\n", UserPtr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 492 | } |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 493 | if (DeallocationTypeMismatch) { |
| 494 | // The deallocation type has to match the allocation one. |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 495 | if (Header.AllocType != Type) { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 496 | // With the exception of memalign'd Chunks, that can be still be free'd. |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 497 | if (Header.AllocType != FromMemalign || Type != FromMalloc) { |
Kostya Kortchinsky | 4391772 | 2017-08-16 16:40:48 +0000 | [diff] [blame] | 498 | dieWithMessage("ERROR: allocation type mismatch when deallocating " |
| 499 | "address %p\n", UserPtr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 500 | } |
| 501 | } |
| 502 | } |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 503 | uptr Size = Header.ClassId ? Header.SizeOrUnusedBytes : |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 504 | Chunk->getUsableSize(&Header) - Header.SizeOrUnusedBytes; |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 505 | if (DeleteSizeMismatch) { |
| 506 | if (DeleteSize && DeleteSize != Size) { |
| 507 | dieWithMessage("ERROR: invalid sized delete on chunk at address %p\n", |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 508 | UserPtr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 509 | } |
| 510 | } |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 511 | quarantineOrDeallocateChunk(Chunk, &Header, Size); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 512 | } |
| 513 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 514 | // Reallocates a chunk. We can save on a new allocation if the new requested |
| 515 | // size still fits in the chunk. |
| 516 | void *reallocate(void *OldPtr, uptr NewSize) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 517 | initThreadMaybe(); |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 518 | uptr UserBeg = reinterpret_cast<uptr>(OldPtr); |
| 519 | if (UNLIKELY(!IsAligned(UserBeg, MinAlignment))) { |
| 520 | dieWithMessage("ERROR: attempted to reallocate a chunk not properly " |
| 521 | "aligned at address %p\n", OldPtr); |
| 522 | } |
| 523 | ScudoChunk *Chunk = getScudoChunk(UserBeg); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 524 | UnpackedHeader OldHeader; |
| 525 | Chunk->loadHeader(&OldHeader); |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 526 | if (UNLIKELY(OldHeader.State != ChunkAllocated)) { |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 527 | dieWithMessage("ERROR: invalid chunk state when reallocating address " |
| 528 | "%p\n", OldPtr); |
| 529 | } |
Kostya Kortchinsky | 4391772 | 2017-08-16 16:40:48 +0000 | [diff] [blame] | 530 | if (DeallocationTypeMismatch) { |
| 531 | if (UNLIKELY(OldHeader.AllocType != FromMalloc)) { |
| 532 | dieWithMessage("ERROR: allocation type mismatch when reallocating " |
| 533 | "address %p\n", OldPtr); |
| 534 | } |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 535 | } |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 536 | uptr UsableSize = Chunk->getUsableSize(&OldHeader); |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 537 | // The new size still fits in the current chunk, and the size difference |
| 538 | // is reasonable. |
| 539 | if (NewSize <= UsableSize && |
| 540 | (UsableSize - NewSize) < (SizeClassMap::kMaxSize / 2)) { |
Kostya Kortchinsky | f1a54fd | 2017-04-21 18:10:53 +0000 | [diff] [blame] | 541 | UnpackedHeader NewHeader = OldHeader; |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 542 | NewHeader.SizeOrUnusedBytes = |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 543 | OldHeader.ClassId ? NewSize : UsableSize - NewSize; |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 544 | Chunk->compareExchangeHeader(&NewHeader, &OldHeader); |
| 545 | return OldPtr; |
| 546 | } |
| 547 | // Otherwise, we have to allocate a new chunk and copy the contents of the |
| 548 | // old one. |
| 549 | void *NewPtr = allocate(NewSize, MinAlignment, FromMalloc); |
| 550 | if (NewPtr) { |
Kostya Kortchinsky | df6ba24 | 2017-12-05 17:08:29 +0000 | [diff] [blame] | 551 | uptr OldSize = OldHeader.ClassId ? OldHeader.SizeOrUnusedBytes : |
Kostya Kortchinsky | fff8e06 | 2017-04-20 18:07:17 +0000 | [diff] [blame] | 552 | UsableSize - OldHeader.SizeOrUnusedBytes; |
Kostya Kortchinsky | 4391772 | 2017-08-16 16:40:48 +0000 | [diff] [blame] | 553 | memcpy(NewPtr, OldPtr, Min(NewSize, UsableSize)); |
Kostya Kortchinsky | 2d94405 | 2017-07-24 15:29:38 +0000 | [diff] [blame] | 554 | quarantineOrDeallocateChunk(Chunk, &OldHeader, OldSize); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 555 | } |
| 556 | return NewPtr; |
| 557 | } |
| 558 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 559 | // Helper function that returns the actual usable size of a chunk. |
| 560 | uptr getUsableSize(const void *Ptr) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 561 | initThreadMaybe(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 562 | if (UNLIKELY(!Ptr)) |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 563 | return 0; |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 564 | uptr UserBeg = reinterpret_cast<uptr>(Ptr); |
| 565 | ScudoChunk *Chunk = getScudoChunk(UserBeg); |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 566 | UnpackedHeader Header; |
| 567 | Chunk->loadHeader(&Header); |
| 568 | // Getting the usable size of a chunk only makes sense if it's allocated. |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 569 | if (UNLIKELY(Header.State != ChunkAllocated)) { |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 570 | dieWithMessage("ERROR: invalid chunk state when sizing address %p\n", |
| 571 | Ptr); |
| 572 | } |
| 573 | return Chunk->getUsableSize(&Header); |
| 574 | } |
| 575 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 576 | void *calloc(uptr NMemB, uptr Size) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 577 | initThreadMaybe(); |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 578 | if (UNLIKELY(CheckForCallocOverflow(NMemB, Size))) |
Alex Shlyapnikov | ccab11b | 2017-06-20 21:23:02 +0000 | [diff] [blame] | 579 | return FailureHandler::OnBadRequest(); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 580 | return allocate(NMemB * Size, MinAlignment, FromMalloc, true); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 581 | } |
| 582 | |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 583 | void commitBack(ScudoTSD *TSD) { |
| 584 | AllocatorQuarantine.Drain(getQuarantineCache(TSD), |
| 585 | QuarantineCallback(&TSD->Cache)); |
| 586 | BackendAllocator.destroyCache(&TSD->Cache); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 587 | } |
Kostya Kortchinsky | 8d6257b | 2017-02-03 20:49:42 +0000 | [diff] [blame] | 588 | |
| 589 | uptr getStats(AllocatorStat StatType) { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 590 | initThreadMaybe(); |
Kostya Kortchinsky | 8d6257b | 2017-02-03 20:49:42 +0000 | [diff] [blame] | 591 | uptr stats[AllocatorStatCount]; |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 592 | BackendAllocator.getStats(stats); |
Kostya Kortchinsky | 8d6257b | 2017-02-03 20:49:42 +0000 | [diff] [blame] | 593 | return stats[StatType]; |
| 594 | } |
Kostya Kortchinsky | 26e689f | 2017-09-14 20:34:32 +0000 | [diff] [blame] | 595 | |
| 596 | void *handleBadRequest() { |
| 597 | initThreadMaybe(); |
| 598 | return FailureHandler::OnBadRequest(); |
| 599 | } |
Kostya Kortchinsky | f22f5fe | 2017-12-13 20:41:35 +0000 | [diff] [blame^] | 600 | |
| 601 | void setRssLimit(uptr LimitMb, bool HardLimit) { |
| 602 | if (HardLimit) |
| 603 | HardRssLimitMb = LimitMb; |
| 604 | else |
| 605 | SoftRssLimitMb = LimitMb; |
| 606 | CheckRssLimit = HardRssLimitMb || SoftRssLimitMb; |
| 607 | } |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 608 | }; |
| 609 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 610 | static ScudoAllocator Instance(LINKER_INITIALIZED); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 611 | |
Kostya Kortchinsky | 006805d | 2017-04-20 15:11:00 +0000 | [diff] [blame] | 612 | static ScudoBackendAllocator &getBackendAllocator() { |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 613 | return Instance.BackendAllocator; |
| 614 | } |
| 615 | |
Kostya Kortchinsky | a2b715f | 2017-11-14 16:14:53 +0000 | [diff] [blame] | 616 | void initScudo() { |
| 617 | Instance.init(); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 618 | } |
| 619 | |
Kostya Kortchinsky | 22396c2 | 2017-09-25 15:12:08 +0000 | [diff] [blame] | 620 | void ScudoTSD::init(bool Shared) { |
| 621 | UnlockRequired = Shared; |
Kostya Kortchinsky | b44364d | 2017-07-13 21:01:19 +0000 | [diff] [blame] | 622 | getBackendAllocator().initCache(&Cache); |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 623 | memset(QuarantineCachePlaceHolder, 0, sizeof(QuarantineCachePlaceHolder)); |
| 624 | } |
| 625 | |
Kostya Kortchinsky | 3924809 | 2017-09-22 15:35:37 +0000 | [diff] [blame] | 626 | void ScudoTSD::commitBack() { |
Kostya Kortchinsky | 36b3434 | 2017-04-27 20:21:16 +0000 | [diff] [blame] | 627 | Instance.commitBack(this); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 628 | } |
| 629 | |
| 630 | void *scudoMalloc(uptr Size, AllocType Type) { |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 631 | return SetErrnoOnNull(Instance.allocate(Size, MinAlignment, Type)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 632 | } |
| 633 | |
| 634 | void scudoFree(void *Ptr, AllocType Type) { |
| 635 | Instance.deallocate(Ptr, 0, Type); |
| 636 | } |
| 637 | |
| 638 | void scudoSizedFree(void *Ptr, uptr Size, AllocType Type) { |
| 639 | Instance.deallocate(Ptr, Size, Type); |
| 640 | } |
| 641 | |
| 642 | void *scudoRealloc(void *Ptr, uptr Size) { |
| 643 | if (!Ptr) |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 644 | return SetErrnoOnNull(Instance.allocate(Size, MinAlignment, FromMalloc)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 645 | if (Size == 0) { |
| 646 | Instance.deallocate(Ptr, 0, FromMalloc); |
| 647 | return nullptr; |
| 648 | } |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 649 | return SetErrnoOnNull(Instance.reallocate(Ptr, Size)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 650 | } |
| 651 | |
| 652 | void *scudoCalloc(uptr NMemB, uptr Size) { |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 653 | return SetErrnoOnNull(Instance.calloc(NMemB, Size)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 654 | } |
| 655 | |
| 656 | void *scudoValloc(uptr Size) { |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 657 | return SetErrnoOnNull( |
| 658 | Instance.allocate(Size, GetPageSizeCached(), FromMemalign)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 659 | } |
| 660 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 661 | void *scudoPvalloc(uptr Size) { |
| 662 | uptr PageSize = GetPageSizeCached(); |
Kostya Kortchinsky | 65fdf67 | 2017-07-25 21:18:02 +0000 | [diff] [blame] | 663 | if (UNLIKELY(CheckForPvallocOverflow(Size, PageSize))) { |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 664 | errno = ENOMEM; |
Kostya Kortchinsky | 26e689f | 2017-09-14 20:34:32 +0000 | [diff] [blame] | 665 | return Instance.handleBadRequest(); |
Kostya Kortchinsky | 65fdf67 | 2017-07-25 21:18:02 +0000 | [diff] [blame] | 666 | } |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 667 | // pvalloc(0) should allocate one page. |
| 668 | Size = Size ? RoundUpTo(Size, PageSize) : PageSize; |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 669 | return SetErrnoOnNull(Instance.allocate(Size, PageSize, FromMemalign)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 670 | } |
| 671 | |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 672 | void *scudoMemalign(uptr Alignment, uptr Size) { |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 673 | if (UNLIKELY(!IsPowerOfTwo(Alignment))) { |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 674 | errno = EINVAL; |
Kostya Kortchinsky | 26e689f | 2017-09-14 20:34:32 +0000 | [diff] [blame] | 675 | return Instance.handleBadRequest(); |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 676 | } |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 677 | return SetErrnoOnNull(Instance.allocate(Size, Alignment, FromMemalign)); |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 678 | } |
| 679 | |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 680 | int scudoPosixMemalign(void **MemPtr, uptr Alignment, uptr Size) { |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 681 | if (UNLIKELY(!CheckPosixMemalignAlignment(Alignment))) { |
Kostya Kortchinsky | 26e689f | 2017-09-14 20:34:32 +0000 | [diff] [blame] | 682 | Instance.handleBadRequest(); |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 683 | return EINVAL; |
Kostya Kortchinsky | 0ce4999 | 2017-06-29 16:45:20 +0000 | [diff] [blame] | 684 | } |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 685 | void *Ptr = Instance.allocate(Size, Alignment, FromMemalign); |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 686 | if (UNLIKELY(!Ptr)) |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 687 | return ENOMEM; |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 688 | *MemPtr = Ptr; |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 689 | return 0; |
| 690 | } |
| 691 | |
| 692 | void *scudoAlignedAlloc(uptr Alignment, uptr Size) { |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 693 | if (UNLIKELY(!CheckAlignedAllocAlignmentAndSize(Alignment, Size))) { |
Kostya Kortchinsky | 8d4ba5f | 2017-10-12 15:01:09 +0000 | [diff] [blame] | 694 | errno = EINVAL; |
Kostya Kortchinsky | 26e689f | 2017-09-14 20:34:32 +0000 | [diff] [blame] | 695 | return Instance.handleBadRequest(); |
Alex Shlyapnikov | df18cbb | 2017-07-14 21:17:16 +0000 | [diff] [blame] | 696 | } |
Alex Shlyapnikov | 42bea01 | 2017-07-18 19:11:04 +0000 | [diff] [blame] | 697 | return SetErrnoOnNull(Instance.allocate(Size, Alignment, FromMalloc)); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 698 | } |
| 699 | |
| 700 | uptr scudoMallocUsableSize(void *Ptr) { |
| 701 | return Instance.getUsableSize(Ptr); |
| 702 | } |
| 703 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 704 | } // namespace __scudo |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 705 | |
| 706 | using namespace __scudo; |
| 707 | |
| 708 | // MallocExtension helper functions |
| 709 | |
| 710 | uptr __sanitizer_get_current_allocated_bytes() { |
Kostya Kortchinsky | 8d6257b | 2017-02-03 20:49:42 +0000 | [diff] [blame] | 711 | return Instance.getStats(AllocatorStatAllocated); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 712 | } |
| 713 | |
| 714 | uptr __sanitizer_get_heap_size() { |
Kostya Kortchinsky | 8d6257b | 2017-02-03 20:49:42 +0000 | [diff] [blame] | 715 | return Instance.getStats(AllocatorStatMapped); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 716 | } |
| 717 | |
| 718 | uptr __sanitizer_get_free_bytes() { |
| 719 | return 1; |
| 720 | } |
| 721 | |
| 722 | uptr __sanitizer_get_unmapped_bytes() { |
| 723 | return 1; |
| 724 | } |
| 725 | |
| 726 | uptr __sanitizer_get_estimated_allocated_size(uptr size) { |
| 727 | return size; |
| 728 | } |
| 729 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 730 | int __sanitizer_get_ownership(const void *Ptr) { |
| 731 | return Instance.isValidPointer(Ptr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 732 | } |
| 733 | |
Kostya Kortchinsky | 1148dc5 | 2016-11-30 17:32:20 +0000 | [diff] [blame] | 734 | uptr __sanitizer_get_allocated_size(const void *Ptr) { |
| 735 | return Instance.getUsableSize(Ptr); |
Kostya Serebryany | 712fc98 | 2016-06-07 01:20:26 +0000 | [diff] [blame] | 736 | } |
Kostya Kortchinsky | f22f5fe | 2017-12-13 20:41:35 +0000 | [diff] [blame^] | 737 | |
| 738 | // Interface functions |
| 739 | |
| 740 | extern "C" { |
| 741 | void __scudo_set_rss_limit(unsigned long LimitMb, int HardLimit) { // NOLINT |
| 742 | if (!SCUDO_CAN_USE_PUBLIC_INTERFACE) |
| 743 | return; |
| 744 | Instance.setRssLimit(LimitMb, !!HardLimit); |
| 745 | } |
| 746 | } // extern "C" |