sanitizer_allocator.cpp 7.0 KB

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  1. //===-- sanitizer_allocator.cpp -------------------------------------------===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. //
  9. // This file is shared between AddressSanitizer and ThreadSanitizer
  10. // run-time libraries.
  11. // This allocator is used inside run-times.
  12. //===----------------------------------------------------------------------===//
  13. #include "sanitizer_allocator.h"
  14. #include "sanitizer_allocator_checks.h"
  15. #include "sanitizer_allocator_internal.h"
  16. #include "sanitizer_atomic.h"
  17. #include "sanitizer_common.h"
  18. #include "sanitizer_platform.h"
  19. namespace __sanitizer {
  20. // Default allocator names.
  21. const char *PrimaryAllocatorName = "SizeClassAllocator";
  22. const char *SecondaryAllocatorName = "LargeMmapAllocator";
  23. static ALIGNED(64) char internal_alloc_placeholder[sizeof(InternalAllocator)];
  24. static atomic_uint8_t internal_allocator_initialized;
  25. static StaticSpinMutex internal_alloc_init_mu;
  26. static InternalAllocatorCache internal_allocator_cache;
  27. static StaticSpinMutex internal_allocator_cache_mu;
  28. InternalAllocator *internal_allocator() {
  29. InternalAllocator *internal_allocator_instance =
  30. reinterpret_cast<InternalAllocator *>(&internal_alloc_placeholder);
  31. if (atomic_load(&internal_allocator_initialized, memory_order_acquire) == 0) {
  32. SpinMutexLock l(&internal_alloc_init_mu);
  33. if (atomic_load(&internal_allocator_initialized, memory_order_relaxed) ==
  34. 0) {
  35. internal_allocator_instance->Init(kReleaseToOSIntervalNever);
  36. atomic_store(&internal_allocator_initialized, 1, memory_order_release);
  37. }
  38. }
  39. return internal_allocator_instance;
  40. }
  41. static void *RawInternalAlloc(uptr size, InternalAllocatorCache *cache,
  42. uptr alignment) {
  43. if (alignment == 0) alignment = 8;
  44. if (cache == 0) {
  45. SpinMutexLock l(&internal_allocator_cache_mu);
  46. return internal_allocator()->Allocate(&internal_allocator_cache, size,
  47. alignment);
  48. }
  49. return internal_allocator()->Allocate(cache, size, alignment);
  50. }
  51. static void *RawInternalRealloc(void *ptr, uptr size,
  52. InternalAllocatorCache *cache) {
  53. uptr alignment = 8;
  54. if (cache == 0) {
  55. SpinMutexLock l(&internal_allocator_cache_mu);
  56. return internal_allocator()->Reallocate(&internal_allocator_cache, ptr,
  57. size, alignment);
  58. }
  59. return internal_allocator()->Reallocate(cache, ptr, size, alignment);
  60. }
  61. static void RawInternalFree(void *ptr, InternalAllocatorCache *cache) {
  62. if (!cache) {
  63. SpinMutexLock l(&internal_allocator_cache_mu);
  64. return internal_allocator()->Deallocate(&internal_allocator_cache, ptr);
  65. }
  66. internal_allocator()->Deallocate(cache, ptr);
  67. }
  68. static void NORETURN ReportInternalAllocatorOutOfMemory(uptr requested_size) {
  69. SetAllocatorOutOfMemory();
  70. Report("FATAL: %s: internal allocator is out of memory trying to allocate "
  71. "0x%zx bytes\n", SanitizerToolName, requested_size);
  72. Die();
  73. }
  74. void *InternalAlloc(uptr size, InternalAllocatorCache *cache, uptr alignment) {
  75. void *p = RawInternalAlloc(size, cache, alignment);
  76. if (UNLIKELY(!p))
  77. ReportInternalAllocatorOutOfMemory(size);
  78. return p;
  79. }
  80. void *InternalRealloc(void *addr, uptr size, InternalAllocatorCache *cache) {
  81. void *p = RawInternalRealloc(addr, size, cache);
  82. if (UNLIKELY(!p))
  83. ReportInternalAllocatorOutOfMemory(size);
  84. return p;
  85. }
  86. void *InternalReallocArray(void *addr, uptr count, uptr size,
  87. InternalAllocatorCache *cache) {
  88. if (UNLIKELY(CheckForCallocOverflow(count, size))) {
  89. Report(
  90. "FATAL: %s: reallocarray parameters overflow: count * size (%zd * %zd) "
  91. "cannot be represented in type size_t\n",
  92. SanitizerToolName, count, size);
  93. Die();
  94. }
  95. return InternalRealloc(addr, count * size, cache);
  96. }
  97. void *InternalCalloc(uptr count, uptr size, InternalAllocatorCache *cache) {
  98. if (UNLIKELY(CheckForCallocOverflow(count, size))) {
  99. Report("FATAL: %s: calloc parameters overflow: count * size (%zd * %zd) "
  100. "cannot be represented in type size_t\n", SanitizerToolName, count,
  101. size);
  102. Die();
  103. }
  104. void *p = InternalAlloc(count * size, cache);
  105. if (LIKELY(p))
  106. internal_memset(p, 0, count * size);
  107. return p;
  108. }
  109. void InternalFree(void *addr, InternalAllocatorCache *cache) {
  110. RawInternalFree(addr, cache);
  111. }
  112. void InternalAllocatorLock() SANITIZER_NO_THREAD_SAFETY_ANALYSIS {
  113. internal_allocator_cache_mu.Lock();
  114. internal_allocator()->ForceLock();
  115. }
  116. void InternalAllocatorUnlock() SANITIZER_NO_THREAD_SAFETY_ANALYSIS {
  117. internal_allocator()->ForceUnlock();
  118. internal_allocator_cache_mu.Unlock();
  119. }
  120. // LowLevelAllocator
  121. constexpr uptr kLowLevelAllocatorDefaultAlignment = 8;
  122. static uptr low_level_alloc_min_alignment = kLowLevelAllocatorDefaultAlignment;
  123. static LowLevelAllocateCallback low_level_alloc_callback;
  124. void *LowLevelAllocator::Allocate(uptr size) {
  125. // Align allocation size.
  126. size = RoundUpTo(size, low_level_alloc_min_alignment);
  127. if (allocated_end_ - allocated_current_ < (sptr)size) {
  128. uptr size_to_allocate = RoundUpTo(size, GetPageSizeCached());
  129. allocated_current_ =
  130. (char*)MmapOrDie(size_to_allocate, __func__);
  131. allocated_end_ = allocated_current_ + size_to_allocate;
  132. if (low_level_alloc_callback) {
  133. low_level_alloc_callback((uptr)allocated_current_,
  134. size_to_allocate);
  135. }
  136. }
  137. CHECK(allocated_end_ - allocated_current_ >= (sptr)size);
  138. void *res = allocated_current_;
  139. allocated_current_ += size;
  140. return res;
  141. }
  142. void SetLowLevelAllocateMinAlignment(uptr alignment) {
  143. CHECK(IsPowerOfTwo(alignment));
  144. low_level_alloc_min_alignment = Max(alignment, low_level_alloc_min_alignment);
  145. }
  146. void SetLowLevelAllocateCallback(LowLevelAllocateCallback callback) {
  147. low_level_alloc_callback = callback;
  148. }
  149. // Allocator's OOM and other errors handling support.
  150. static atomic_uint8_t allocator_out_of_memory = {0};
  151. static atomic_uint8_t allocator_may_return_null = {0};
  152. bool IsAllocatorOutOfMemory() {
  153. return atomic_load_relaxed(&allocator_out_of_memory);
  154. }
  155. void SetAllocatorOutOfMemory() {
  156. atomic_store_relaxed(&allocator_out_of_memory, 1);
  157. }
  158. bool AllocatorMayReturnNull() {
  159. return atomic_load(&allocator_may_return_null, memory_order_relaxed);
  160. }
  161. void SetAllocatorMayReturnNull(bool may_return_null) {
  162. atomic_store(&allocator_may_return_null, may_return_null,
  163. memory_order_relaxed);
  164. }
  165. void PrintHintAllocatorCannotReturnNull() {
  166. Report("HINT: if you don't care about these errors you may set "
  167. "allocator_may_return_null=1\n");
  168. }
  169. static atomic_uint8_t rss_limit_exceeded;
  170. bool IsRssLimitExceeded() {
  171. return atomic_load(&rss_limit_exceeded, memory_order_relaxed);
  172. }
  173. void SetRssLimitExceeded(bool limit_exceeded) {
  174. atomic_store(&rss_limit_exceeded, limit_exceeded, memory_order_relaxed);
  175. }
  176. } // namespace __sanitizer