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Sergey Matveev866abfb2013-05-20 10:54:00 +00001//=-- lsan_allocator.cc ---------------------------------------------------===//
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// This file is a part of LeakSanitizer.
11// See lsan_allocator.h for details.
12//
13//===----------------------------------------------------------------------===//
14
15#include "lsan_allocator.h"
16
17#include "sanitizer_common/sanitizer_allocator.h"
Sergey Matveev08347ca2014-08-26 14:28:28 +000018#include "sanitizer_common/sanitizer_allocator_interface.h"
Sergey Matveev866abfb2013-05-20 10:54:00 +000019#include "sanitizer_common/sanitizer_internal_defs.h"
20#include "sanitizer_common/sanitizer_stackdepot.h"
21#include "sanitizer_common/sanitizer_stacktrace.h"
22#include "lsan_common.h"
23
Sergey Matveev10548682013-11-24 14:28:18 +000024extern "C" void *memset(void *ptr, int value, uptr num);
25
Sergey Matveev866abfb2013-05-20 10:54:00 +000026namespace __lsan {
27
Sergey Matveev866abfb2013-05-20 10:54:00 +000028struct ChunkMetadata {
Evgeniy Stepanov10c9ea52015-09-16 19:54:36 +000029 u8 allocated : 8; // Must be first.
Sergey Matveev866abfb2013-05-20 10:54:00 +000030 ChunkTag tag : 2;
31 uptr requested_size : 54;
32 u32 stack_trace_id;
33};
34
Adhemerval Zanellab0d5dd02015-10-21 13:08:06 +000035#if defined(__mips64) || defined(__aarch64__)
Mohit K. Bhakkad36f974d2015-02-19 07:30:39 +000036static const uptr kMaxAllowedMallocSize = 4UL << 30;
37static const uptr kRegionSizeLog = 20;
38static const uptr kNumRegions = SANITIZER_MMAP_RANGE_SIZE >> kRegionSizeLog;
39typedef TwoLevelByteMap<(kNumRegions >> 12), 1 << 12> ByteMap;
40typedef CompactSizeClassMap SizeClassMap;
41typedef SizeClassAllocator32<0, SANITIZER_MMAP_RANGE_SIZE,
42 sizeof(ChunkMetadata), SizeClassMap, kRegionSizeLog, ByteMap>
43 PrimaryAllocator;
44#else
45static const uptr kMaxAllowedMallocSize = 8UL << 30;
Kostya Serebryany15647b12016-08-25 20:23:08 +000046
47struct AP64 { // Allocator64 parameters. Deliberately using a short name.
48 static const uptr kSpaceBeg = 0x600000000000ULL;
49 static const uptr kSpaceSize = 0x40000000000ULL; // 4T.
50 static const uptr kMetadataSize = sizeof(ChunkMetadata);
51 typedef DefaultSizeClassMap SizeClassMap;
52 typedef NoOpMapUnmapCallback MapUnmapCallback;
Kostya Serebryany7c5ae7c2016-08-26 00:06:03 +000053 static const uptr kFlags = 0;
Kostya Serebryany15647b12016-08-25 20:23:08 +000054};
55
56typedef SizeClassAllocator64<AP64> PrimaryAllocator;
Mohit K. Bhakkad36f974d2015-02-19 07:30:39 +000057#endif
Sergey Matveev866abfb2013-05-20 10:54:00 +000058typedef SizeClassAllocatorLocalCache<PrimaryAllocator> AllocatorCache;
59typedef LargeMmapAllocator<> SecondaryAllocator;
60typedef CombinedAllocator<PrimaryAllocator, AllocatorCache,
61 SecondaryAllocator> Allocator;
62
63static Allocator allocator;
64static THREADLOCAL AllocatorCache cache;
65
66void InitializeAllocator() {
Sergey Matveev8cd909e2014-12-19 14:45:19 +000067 allocator.InitLinkerInitialized(common_flags()->allocator_may_return_null);
Sergey Matveev866abfb2013-05-20 10:54:00 +000068}
69
70void AllocatorThreadFinish() {
71 allocator.SwallowCache(&cache);
72}
73
Sergey Matveev08347ca2014-08-26 14:28:28 +000074static ChunkMetadata *Metadata(const void *p) {
Sergey Matveev4e0215a2013-06-24 08:34:50 +000075 return reinterpret_cast<ChunkMetadata *>(allocator.GetMetaData(p));
Sergey Matveev866abfb2013-05-20 10:54:00 +000076}
77
78static void RegisterAllocation(const StackTrace &stack, void *p, uptr size) {
79 if (!p) return;
80 ChunkMetadata *m = Metadata(p);
81 CHECK(m);
Sergey Matveevb94d5e22013-06-21 14:51:52 +000082 m->tag = DisabledInThisThread() ? kIgnored : kDirectlyLeaked;
Alexey Samsonov3741ab82014-10-26 06:23:07 +000083 m->stack_trace_id = StackDepotPut(stack);
Sergey Matveev866abfb2013-05-20 10:54:00 +000084 m->requested_size = size;
Sergey Matveev4e0215a2013-06-24 08:34:50 +000085 atomic_store(reinterpret_cast<atomic_uint8_t *>(m), 1, memory_order_relaxed);
Sergey Matveev866abfb2013-05-20 10:54:00 +000086}
87
88static void RegisterDeallocation(void *p) {
89 if (!p) return;
90 ChunkMetadata *m = Metadata(p);
91 CHECK(m);
Sergey Matveev4e0215a2013-06-24 08:34:50 +000092 atomic_store(reinterpret_cast<atomic_uint8_t *>(m), 0, memory_order_relaxed);
Sergey Matveev866abfb2013-05-20 10:54:00 +000093}
94
95void *Allocate(const StackTrace &stack, uptr size, uptr alignment,
96 bool cleared) {
97 if (size == 0)
98 size = 1;
99 if (size > kMaxAllowedMallocSize) {
Sergey Matveevd28c03c2013-06-21 15:10:20 +0000100 Report("WARNING: LeakSanitizer failed to allocate %zu bytes\n", size);
Vedant Kumar59ba7b82015-10-01 00:22:21 +0000101 return nullptr;
Sergey Matveev866abfb2013-05-20 10:54:00 +0000102 }
Sergey Matveev10548682013-11-24 14:28:18 +0000103 void *p = allocator.Allocate(&cache, size, alignment, false);
104 // Do not rely on the allocator to clear the memory (it's slow).
105 if (cleared && allocator.FromPrimary(p))
106 memset(p, 0, size);
Sergey Matveev866abfb2013-05-20 10:54:00 +0000107 RegisterAllocation(stack, p, size);
Sergey Matveev08347ca2014-08-26 14:28:28 +0000108 if (&__sanitizer_malloc_hook) __sanitizer_malloc_hook(p, size);
Kostya Serebryanybf6a04f2016-06-16 20:06:06 +0000109 RunMallocHooks(p, size);
Sergey Matveev866abfb2013-05-20 10:54:00 +0000110 return p;
111}
112
113void Deallocate(void *p) {
Sergey Matveev08347ca2014-08-26 14:28:28 +0000114 if (&__sanitizer_free_hook) __sanitizer_free_hook(p);
Kostya Serebryanybf6a04f2016-06-16 20:06:06 +0000115 RunFreeHooks(p);
Sergey Matveev866abfb2013-05-20 10:54:00 +0000116 RegisterDeallocation(p);
117 allocator.Deallocate(&cache, p);
118}
119
120void *Reallocate(const StackTrace &stack, void *p, uptr new_size,
121 uptr alignment) {
122 RegisterDeallocation(p);
123 if (new_size > kMaxAllowedMallocSize) {
Sergey Matveevd28c03c2013-06-21 15:10:20 +0000124 Report("WARNING: LeakSanitizer failed to allocate %zu bytes\n", new_size);
125 allocator.Deallocate(&cache, p);
Vedant Kumar59ba7b82015-10-01 00:22:21 +0000126 return nullptr;
Sergey Matveev866abfb2013-05-20 10:54:00 +0000127 }
128 p = allocator.Reallocate(&cache, p, new_size, alignment);
129 RegisterAllocation(stack, p, new_size);
130 return p;
131}
132
133void GetAllocatorCacheRange(uptr *begin, uptr *end) {
134 *begin = (uptr)&cache;
135 *end = *begin + sizeof(cache);
136}
137
Sergey Matveev08347ca2014-08-26 14:28:28 +0000138uptr GetMallocUsableSize(const void *p) {
Sergey Matveev866abfb2013-05-20 10:54:00 +0000139 ChunkMetadata *m = Metadata(p);
140 if (!m) return 0;
141 return m->requested_size;
142}
143
144///// Interface to the common LSan module. /////
145
146void LockAllocator() {
147 allocator.ForceLock();
148}
149
150void UnlockAllocator() {
151 allocator.ForceUnlock();
152}
153
154void GetAllocatorGlobalRange(uptr *begin, uptr *end) {
155 *begin = (uptr)&allocator;
156 *end = *begin + sizeof(allocator);
157}
158
Sergey Matveev4e0215a2013-06-24 08:34:50 +0000159uptr PointsIntoChunk(void* p) {
160 uptr addr = reinterpret_cast<uptr>(p);
161 uptr chunk = reinterpret_cast<uptr>(allocator.GetBlockBeginFastLocked(p));
Sergey Matveev866abfb2013-05-20 10:54:00 +0000162 if (!chunk) return 0;
163 // LargeMmapAllocator considers pointers to the meta-region of a chunk to be
164 // valid, but we don't want that.
Sergey Matveev4e0215a2013-06-24 08:34:50 +0000165 if (addr < chunk) return 0;
166 ChunkMetadata *m = Metadata(reinterpret_cast<void *>(chunk));
Sergey Matveev866abfb2013-05-20 10:54:00 +0000167 CHECK(m);
Kostya Serebryany2b762782014-01-10 10:48:01 +0000168 if (!m->allocated)
169 return 0;
170 if (addr < chunk + m->requested_size)
171 return chunk;
172 if (IsSpecialCaseOfOperatorNew0(chunk, m->requested_size, addr))
Sergey Matveev866abfb2013-05-20 10:54:00 +0000173 return chunk;
174 return 0;
175}
176
Sergey Matveev4e0215a2013-06-24 08:34:50 +0000177uptr GetUserBegin(uptr chunk) {
178 return chunk;
Sergey Matveevbcfd8382013-05-20 13:08:23 +0000179}
180
Sergey Matveev4e0215a2013-06-24 08:34:50 +0000181LsanMetadata::LsanMetadata(uptr chunk) {
182 metadata_ = Metadata(reinterpret_cast<void *>(chunk));
Sergey Matveev866abfb2013-05-20 10:54:00 +0000183 CHECK(metadata_);
184}
185
186bool LsanMetadata::allocated() const {
187 return reinterpret_cast<ChunkMetadata *>(metadata_)->allocated;
188}
189
190ChunkTag LsanMetadata::tag() const {
191 return reinterpret_cast<ChunkMetadata *>(metadata_)->tag;
192}
193
194void LsanMetadata::set_tag(ChunkTag value) {
195 reinterpret_cast<ChunkMetadata *>(metadata_)->tag = value;
196}
197
198uptr LsanMetadata::requested_size() const {
199 return reinterpret_cast<ChunkMetadata *>(metadata_)->requested_size;
200}
201
202u32 LsanMetadata::stack_trace_id() const {
203 return reinterpret_cast<ChunkMetadata *>(metadata_)->stack_trace_id;
204}
205
Sergey Matveev4e0215a2013-06-24 08:34:50 +0000206void ForEachChunk(ForEachChunkCallback callback, void *arg) {
207 allocator.ForEachChunk(callback, arg);
Sergey Matveev866abfb2013-05-20 10:54:00 +0000208}
209
Sergey Matveevecc4f5b2013-06-06 14:17:56 +0000210IgnoreObjectResult IgnoreObjectLocked(const void *p) {
211 void *chunk = allocator.GetBlockBegin(p);
212 if (!chunk || p < chunk) return kIgnoreObjectInvalid;
213 ChunkMetadata *m = Metadata(chunk);
214 CHECK(m);
215 if (m->allocated && (uptr)p < (uptr)chunk + m->requested_size) {
Sergey Matveev978460c2013-06-11 15:26:20 +0000216 if (m->tag == kIgnored)
Sergey Matveevecc4f5b2013-06-06 14:17:56 +0000217 return kIgnoreObjectAlreadyIgnored;
Sergey Matveev978460c2013-06-11 15:26:20 +0000218 m->tag = kIgnored;
Sergey Matveevecc4f5b2013-06-06 14:17:56 +0000219 return kIgnoreObjectSuccess;
220 } else {
221 return kIgnoreObjectInvalid;
222 }
223}
Vedant Kumar59ba7b82015-10-01 00:22:21 +0000224} // namespace __lsan
Sergey Matveev08347ca2014-08-26 14:28:28 +0000225
226using namespace __lsan;
227
228extern "C" {
229SANITIZER_INTERFACE_ATTRIBUTE
230uptr __sanitizer_get_current_allocated_bytes() {
231 uptr stats[AllocatorStatCount];
232 allocator.GetStats(stats);
233 return stats[AllocatorStatAllocated];
234}
235
236SANITIZER_INTERFACE_ATTRIBUTE
237uptr __sanitizer_get_heap_size() {
238 uptr stats[AllocatorStatCount];
239 allocator.GetStats(stats);
240 return stats[AllocatorStatMapped];
241}
242
243SANITIZER_INTERFACE_ATTRIBUTE
244uptr __sanitizer_get_free_bytes() { return 0; }
245
246SANITIZER_INTERFACE_ATTRIBUTE
247uptr __sanitizer_get_unmapped_bytes() { return 0; }
248
249SANITIZER_INTERFACE_ATTRIBUTE
250uptr __sanitizer_get_estimated_allocated_size(uptr size) { return size; }
251
252SANITIZER_INTERFACE_ATTRIBUTE
Vedant Kumar59ba7b82015-10-01 00:22:21 +0000253int __sanitizer_get_ownership(const void *p) { return Metadata(p) != nullptr; }
Sergey Matveev08347ca2014-08-26 14:28:28 +0000254
255SANITIZER_INTERFACE_ATTRIBUTE
256uptr __sanitizer_get_allocated_size(const void *p) {
257 return GetMallocUsableSize(p);
258}
Vedant Kumar59ba7b82015-10-01 00:22:21 +0000259} // extern "C"