blob: cca24edad81fbfc7dec2b780c26a64b0285f60e0 [file] [log] [blame]
Kostya Serebryany019b76f2011-11-30 01:07:02 +00001//===-- asan_allocator.h ----------------------------------------*- 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// This file is a part of AddressSanitizer, an address sanity checker.
11//
12// ASan-private header for asan_allocator.cc.
13//===----------------------------------------------------------------------===//
14
15#ifndef ASAN_ALLOCATOR_H
16#define ASAN_ALLOCATOR_H
17
18#include "asan_internal.h"
19#include "asan_interceptors.h"
Kostya Serebryany41ffe3d2012-12-17 07:54:29 +000020#include "sanitizer_common/sanitizer_list.h"
Kostya Serebryany019b76f2011-11-30 01:07:02 +000021
Kostya Serebryany14282a92012-12-10 13:52:55 +000022// We are in the process of transitioning from the old allocator (version 1)
23// to a new one (version 2). The change is quite intrusive so both allocators
24// will co-exist in the source base for a while. The actual allocator is chosen
Dmitry Vyukov9de857a2013-01-14 09:03:24 +000025// at build time by redefining this macro.
Kostya Serebryanyd8b1f782013-01-15 13:57:39 +000026#ifndef ASAN_ALLOCATOR_VERSION
27# if ASAN_LINUX && !ASAN_ANDROID
28# define ASAN_ALLOCATOR_VERSION 2
29# else
30# define ASAN_ALLOCATOR_VERSION 1
31# endif
32#endif // ASAN_ALLOCATOR_VERSION
Kostya Serebryany14282a92012-12-10 13:52:55 +000033
Kostya Serebryany019b76f2011-11-30 01:07:02 +000034namespace __asan {
35
Kostya Serebryany3674c6b2012-12-21 08:53:59 +000036enum AllocType {
37 FROM_MALLOC = 1, // Memory block came from malloc, calloc, realloc, etc.
38 FROM_NEW = 2, // Memory block came from operator new.
39 FROM_NEW_BR = 3 // Memory block came from operator new [ ]
40};
41
Kostya Serebryany8d032042012-05-31 14:35:53 +000042static const uptr kNumberOfSizeClasses = 255;
Kostya Serebryany9d1eee92011-11-30 17:33:13 +000043struct AsanChunk;
Kostya Serebryany019b76f2011-11-30 01:07:02 +000044
Alexey Samsonov86614652012-09-18 07:38:10 +000045class AsanChunkView {
46 public:
47 explicit AsanChunkView(AsanChunk *chunk) : chunk_(chunk) {}
48 bool IsValid() { return chunk_ != 0; }
49 uptr Beg(); // first byte of user memory.
50 uptr End(); // last byte of user memory.
51 uptr UsedSize(); // size requested by the user.
52 uptr AllocTid();
53 uptr FreeTid();
54 void GetAllocStack(StackTrace *stack);
55 void GetFreeStack(StackTrace *stack);
Kostya Serebryany5e2a7ac2012-12-11 09:02:36 +000056 bool AddrIsInside(uptr addr, uptr access_size, uptr *offset) {
57 if (addr >= Beg() && (addr + access_size) <= End()) {
58 *offset = addr - Beg();
59 return true;
60 }
61 return false;
62 }
63 bool AddrIsAtLeft(uptr addr, uptr access_size, uptr *offset) {
Alexander Potapenko602a09f2012-12-12 12:32:57 +000064 (void)access_size;
Kostya Serebryany5e2a7ac2012-12-11 09:02:36 +000065 if (addr < Beg()) {
66 *offset = Beg() - addr;
67 return true;
68 }
69 return false;
70 }
71 bool AddrIsAtRight(uptr addr, uptr access_size, uptr *offset) {
72 if (addr + access_size >= End()) {
73 if (addr <= End())
74 *offset = 0;
75 else
76 *offset = addr - End();
77 return true;
78 }
79 return false;
80 }
81
Alexey Samsonov86614652012-09-18 07:38:10 +000082 private:
83 AsanChunk *const chunk_;
84};
85
86AsanChunkView FindHeapChunkByAddress(uptr address);
87
Kostya Serebryany41ffe3d2012-12-17 07:54:29 +000088// List of AsanChunks with total size.
89class AsanChunkFifoList: public IntrusiveList<AsanChunk> {
Kostya Serebryany019b76f2011-11-30 01:07:02 +000090 public:
91 explicit AsanChunkFifoList(LinkerInitialized) { }
92 AsanChunkFifoList() { clear(); }
93 void Push(AsanChunk *n);
94 void PushList(AsanChunkFifoList *q);
95 AsanChunk *Pop();
Kostya Serebryany8d032042012-05-31 14:35:53 +000096 uptr size() { return size_; }
Kostya Serebryany019b76f2011-11-30 01:07:02 +000097 void clear() {
Kostya Serebryany41ffe3d2012-12-17 07:54:29 +000098 IntrusiveList<AsanChunk>::clear();
Kostya Serebryany019b76f2011-11-30 01:07:02 +000099 size_ = 0;
100 }
101 private:
Kostya Serebryany8d032042012-05-31 14:35:53 +0000102 uptr size_;
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000103};
104
105struct AsanThreadLocalMallocStorage {
106 explicit AsanThreadLocalMallocStorage(LinkerInitialized x)
Dmitry Vyukovdb0cf872013-01-11 08:07:43 +0000107#if ASAN_ALLOCATOR_VERSION == 1
108 : quarantine_(x)
109#endif
110 { }
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000111 AsanThreadLocalMallocStorage() {
Alexey Samsonove7254782012-02-08 13:45:31 +0000112 CHECK(REAL(memset));
113 REAL(memset)(this, 0, sizeof(AsanThreadLocalMallocStorage));
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000114 }
115
Kostya Serebryany4a42cf62012-12-27 14:09:19 +0000116#if ASAN_ALLOCATOR_VERSION == 1
Dmitry Vyukovdb0cf872013-01-11 08:07:43 +0000117 AsanChunkFifoList quarantine_;
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000118 AsanChunk *free_lists_[kNumberOfSizeClasses];
Kostya Serebryany4a42cf62012-12-27 14:09:19 +0000119#else
Dmitry Vyukovdb0cf872013-01-11 08:07:43 +0000120 uptr quarantine_cache[16];
Dmitry Vyukov0d46b2b2013-01-15 10:45:18 +0000121 uptr allocator2_cache[96 * (512 * 8 + 16)]; // Opaque.
Kostya Serebryanyec339f72012-12-17 13:43:47 +0000122#endif
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000123 void CommitBack();
124};
125
126// Fake stack frame contains local variables of one function.
127// This struct should fit into a stack redzone (32 bytes).
128struct FakeFrame {
Kostya Serebryany8d032042012-05-31 14:35:53 +0000129 uptr magic; // Modified by the instrumented code.
130 uptr descr; // Modified by the instrumented code.
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000131 FakeFrame *next;
Kostya Serebryany1d35d152012-05-31 15:02:07 +0000132 u64 real_stack : 48;
133 u64 size_minus_one : 16;
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000134};
135
136struct FakeFrameFifo {
137 public:
138 void FifoPush(FakeFrame *node);
139 FakeFrame *FifoPop();
140 private:
141 FakeFrame *first_, *last_;
142};
143
144class FakeFrameLifo {
145 public:
146 void LifoPush(FakeFrame *node) {
147 node->next = top_;
148 top_ = node;
149 }
150 void LifoPop() {
151 CHECK(top_);
152 top_ = top_->next;
153 }
154 FakeFrame *top() { return top_; }
155 private:
156 FakeFrame *top_;
157};
158
159// For each thread we create a fake stack and place stack objects on this fake
160// stack instead of the real stack. The fake stack is not really a stack but
161// a fast malloc-like allocator so that when a function exits the fake stack
162// is not poped but remains there for quite some time until gets used again.
163// So, we poison the objects on the fake stack when function returns.
164// It helps us find use-after-return bugs.
165// We can not rely on __asan_stack_free being called on every function exit,
166// so we maintain a lifo list of all current fake frames and update it on every
167// call to __asan_stack_malloc.
168class FakeStack {
169 public:
170 FakeStack();
171 explicit FakeStack(LinkerInitialized) {}
Kostya Serebryany8d032042012-05-31 14:35:53 +0000172 void Init(uptr stack_size);
Kostya Serebryany72fde372011-12-09 01:49:31 +0000173 void StopUsingFakeStack() { alive_ = false; }
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000174 void Cleanup();
Kostya Serebryany8d032042012-05-31 14:35:53 +0000175 uptr AllocateStack(uptr size, uptr real_stack);
176 static void OnFree(uptr ptr, uptr size, uptr real_stack);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000177 // Return the bottom of the maped region.
Kostya Serebryany8d032042012-05-31 14:35:53 +0000178 uptr AddrIsInFakeStack(uptr addr);
Alexander Potapenko0be25d52012-02-21 08:45:41 +0000179 bool StackSize() { return stack_size_; }
Alexey Samsonovc3a81192012-08-30 14:22:21 +0000180
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000181 private:
Kostya Serebryany8d032042012-05-31 14:35:53 +0000182 static const uptr kMinStackFrameSizeLog = 9; // Min frame is 512B.
183 static const uptr kMaxStackFrameSizeLog = 16; // Max stack frame is 64K.
184 static const uptr kMaxStackMallocSize = 1 << kMaxStackFrameSizeLog;
185 static const uptr kNumberOfSizeClasses =
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000186 kMaxStackFrameSizeLog - kMinStackFrameSizeLog + 1;
187
Kostya Serebryany8d032042012-05-31 14:35:53 +0000188 bool AddrIsInSizeClass(uptr addr, uptr size_class);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000189
190 // Each size class should be large enough to hold all frames.
Kostya Serebryany8d032042012-05-31 14:35:53 +0000191 uptr ClassMmapSize(uptr size_class);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000192
Kostya Serebryany8d032042012-05-31 14:35:53 +0000193 uptr ClassSize(uptr size_class) {
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000194 return 1UL << (size_class + kMinStackFrameSizeLog);
195 }
196
197 void DeallocateFrame(FakeFrame *fake_frame);
198
Kostya Serebryany8d032042012-05-31 14:35:53 +0000199 uptr ComputeSizeClass(uptr alloc_size);
200 void AllocateOneSizeClass(uptr size_class);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000201
Kostya Serebryany8d032042012-05-31 14:35:53 +0000202 uptr stack_size_;
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000203 bool alive_;
204
Kostya Serebryany8d032042012-05-31 14:35:53 +0000205 uptr allocated_size_classes_[kNumberOfSizeClasses];
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000206 FakeFrameFifo size_classes_[kNumberOfSizeClasses];
207 FakeFrameLifo call_stack_;
208};
209
Kostya Serebryany3674c6b2012-12-21 08:53:59 +0000210void *asan_memalign(uptr alignment, uptr size, StackTrace *stack,
211 AllocType alloc_type);
212void asan_free(void *ptr, StackTrace *stack, AllocType alloc_type);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000213
Kostya Serebryany6b0d7752012-08-28 11:54:30 +0000214void *asan_malloc(uptr size, StackTrace *stack);
215void *asan_calloc(uptr nmemb, uptr size, StackTrace *stack);
216void *asan_realloc(void *p, uptr size, StackTrace *stack);
217void *asan_valloc(uptr size, StackTrace *stack);
218void *asan_pvalloc(uptr size, StackTrace *stack);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000219
Kostya Serebryany8d032042012-05-31 14:35:53 +0000220int asan_posix_memalign(void **memptr, uptr alignment, uptr size,
Kostya Serebryany6b0d7752012-08-28 11:54:30 +0000221 StackTrace *stack);
222uptr asan_malloc_usable_size(void *ptr, StackTrace *stack);
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000223
Kostya Serebryany8d032042012-05-31 14:35:53 +0000224uptr asan_mz_size(const void *ptr);
Alexey Samsonov209c5142012-01-17 06:39:10 +0000225void asan_mz_force_lock();
226void asan_mz_force_unlock();
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000227
Kostya Serebryany4a42cf62012-12-27 14:09:19 +0000228void PrintInternalAllocatorStats();
229
Kostya Serebryany13bdbe62012-12-10 14:19:15 +0000230// Log2 and RoundUpToPowerOfTwo should be inlined for performance.
Kostya Serebryany54af6602012-12-11 07:27:59 +0000231#if defined(_WIN32) && !defined(__clang__)
Timur Iskhodzhanov9b1d42a2012-12-11 12:23:00 +0000232extern "C" {
Timur Iskhodzhanov4c976042012-12-11 12:24:41 +0000233unsigned char _BitScanForward(unsigned long *index, unsigned long mask); // NOLINT
234unsigned char _BitScanReverse(unsigned long *index, unsigned long mask); // NOLINT
Timur Iskhodzhanovaacd3d72012-12-11 12:03:06 +0000235#if defined(_WIN64)
Timur Iskhodzhanov4c976042012-12-11 12:24:41 +0000236unsigned char _BitScanForward64(unsigned long *index, unsigned __int64 mask); // NOLINT
237unsigned char _BitScanReverse64(unsigned long *index, unsigned __int64 mask); // NOLINT
Timur Iskhodzhanovaacd3d72012-12-11 12:03:06 +0000238#endif
Timur Iskhodzhanov9b1d42a2012-12-11 12:23:00 +0000239}
Kostya Serebryany54af6602012-12-11 07:27:59 +0000240#endif
Kostya Serebryany13bdbe62012-12-10 14:19:15 +0000241
242static inline uptr Log2(uptr x) {
243 CHECK(IsPowerOfTwo(x));
244#if !defined(_WIN32) || defined(__clang__)
245 return __builtin_ctzl(x);
246#elif defined(_WIN64)
247 unsigned long ret; // NOLINT
248 _BitScanForward64(&ret, x);
249 return ret;
250#else
251 unsigned long ret; // NOLINT
252 _BitScanForward(&ret, x);
253 return ret;
254#endif
255}
256
257static inline uptr RoundUpToPowerOfTwo(uptr size) {
258 CHECK(size);
259 if (IsPowerOfTwo(size)) return size;
260
261 unsigned long up; // NOLINT
262#if !defined(_WIN32) || defined(__clang__)
263 up = SANITIZER_WORDSIZE - 1 - __builtin_clzl(size);
264#elif defined(_WIN64)
265 _BitScanReverse64(&up, size);
266#else
267 _BitScanReverse(&up, size);
268#endif
269 CHECK(size < (1ULL << (up + 1)));
270 CHECK(size > (1ULL << up));
271 return 1UL << (up + 1);
272}
273
274
Kostya Serebryany019b76f2011-11-30 01:07:02 +0000275} // namespace __asan
276#endif // ASAN_ALLOCATOR_H