13cab2bb3Spatrick //=-- lsan_allocator.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 LeakSanitizer.
103cab2bb3Spatrick // See lsan_allocator.h for details.
113cab2bb3Spatrick //
123cab2bb3Spatrick //===----------------------------------------------------------------------===//
133cab2bb3Spatrick
143cab2bb3Spatrick #include "lsan_allocator.h"
153cab2bb3Spatrick
163cab2bb3Spatrick #include "sanitizer_common/sanitizer_allocator.h"
173cab2bb3Spatrick #include "sanitizer_common/sanitizer_allocator_checks.h"
183cab2bb3Spatrick #include "sanitizer_common/sanitizer_allocator_interface.h"
193cab2bb3Spatrick #include "sanitizer_common/sanitizer_allocator_report.h"
203cab2bb3Spatrick #include "sanitizer_common/sanitizer_errno.h"
213cab2bb3Spatrick #include "sanitizer_common/sanitizer_internal_defs.h"
223cab2bb3Spatrick #include "sanitizer_common/sanitizer_stackdepot.h"
233cab2bb3Spatrick #include "sanitizer_common/sanitizer_stacktrace.h"
243cab2bb3Spatrick #include "lsan_common.h"
253cab2bb3Spatrick
263cab2bb3Spatrick extern "C" void *memset(void *ptr, int value, uptr num);
273cab2bb3Spatrick
283cab2bb3Spatrick namespace __lsan {
293cab2bb3Spatrick #if defined(__i386__) || defined(__arm__)
30*810390e3Srobert static const uptr kMaxAllowedMallocSize = 1ULL << 30;
313cab2bb3Spatrick #elif defined(__mips64) || defined(__aarch64__)
32*810390e3Srobert static const uptr kMaxAllowedMallocSize = 4ULL << 30;
333cab2bb3Spatrick #else
34*810390e3Srobert static const uptr kMaxAllowedMallocSize = 8ULL << 30;
353cab2bb3Spatrick #endif
363cab2bb3Spatrick
373cab2bb3Spatrick static Allocator allocator;
383cab2bb3Spatrick
393cab2bb3Spatrick static uptr max_malloc_size;
403cab2bb3Spatrick
InitializeAllocator()413cab2bb3Spatrick void InitializeAllocator() {
423cab2bb3Spatrick SetAllocatorMayReturnNull(common_flags()->allocator_may_return_null);
433cab2bb3Spatrick allocator.InitLinkerInitialized(
443cab2bb3Spatrick common_flags()->allocator_release_to_os_interval_ms);
453cab2bb3Spatrick if (common_flags()->max_allocation_size_mb)
463cab2bb3Spatrick max_malloc_size = Min(common_flags()->max_allocation_size_mb << 20,
473cab2bb3Spatrick kMaxAllowedMallocSize);
483cab2bb3Spatrick else
493cab2bb3Spatrick max_malloc_size = kMaxAllowedMallocSize;
503cab2bb3Spatrick }
513cab2bb3Spatrick
AllocatorThreadFinish()523cab2bb3Spatrick void AllocatorThreadFinish() {
533cab2bb3Spatrick allocator.SwallowCache(GetAllocatorCache());
543cab2bb3Spatrick }
553cab2bb3Spatrick
Metadata(const void * p)563cab2bb3Spatrick static ChunkMetadata *Metadata(const void *p) {
573cab2bb3Spatrick return reinterpret_cast<ChunkMetadata *>(allocator.GetMetaData(p));
583cab2bb3Spatrick }
593cab2bb3Spatrick
RegisterAllocation(const StackTrace & stack,void * p,uptr size)603cab2bb3Spatrick static void RegisterAllocation(const StackTrace &stack, void *p, uptr size) {
613cab2bb3Spatrick if (!p) return;
623cab2bb3Spatrick ChunkMetadata *m = Metadata(p);
633cab2bb3Spatrick CHECK(m);
643cab2bb3Spatrick m->tag = DisabledInThisThread() ? kIgnored : kDirectlyLeaked;
653cab2bb3Spatrick m->stack_trace_id = StackDepotPut(stack);
663cab2bb3Spatrick m->requested_size = size;
673cab2bb3Spatrick atomic_store(reinterpret_cast<atomic_uint8_t *>(m), 1, memory_order_relaxed);
683cab2bb3Spatrick }
693cab2bb3Spatrick
RegisterDeallocation(void * p)703cab2bb3Spatrick static void RegisterDeallocation(void *p) {
713cab2bb3Spatrick if (!p) return;
723cab2bb3Spatrick ChunkMetadata *m = Metadata(p);
733cab2bb3Spatrick CHECK(m);
743cab2bb3Spatrick atomic_store(reinterpret_cast<atomic_uint8_t *>(m), 0, memory_order_relaxed);
753cab2bb3Spatrick }
763cab2bb3Spatrick
ReportAllocationSizeTooBig(uptr size,const StackTrace & stack)773cab2bb3Spatrick static void *ReportAllocationSizeTooBig(uptr size, const StackTrace &stack) {
783cab2bb3Spatrick if (AllocatorMayReturnNull()) {
793cab2bb3Spatrick Report("WARNING: LeakSanitizer failed to allocate 0x%zx bytes\n", size);
803cab2bb3Spatrick return nullptr;
813cab2bb3Spatrick }
823cab2bb3Spatrick ReportAllocationSizeTooBig(size, max_malloc_size, &stack);
833cab2bb3Spatrick }
843cab2bb3Spatrick
Allocate(const StackTrace & stack,uptr size,uptr alignment,bool cleared)853cab2bb3Spatrick void *Allocate(const StackTrace &stack, uptr size, uptr alignment,
863cab2bb3Spatrick bool cleared) {
873cab2bb3Spatrick if (size == 0)
883cab2bb3Spatrick size = 1;
893cab2bb3Spatrick if (size > max_malloc_size)
903cab2bb3Spatrick return ReportAllocationSizeTooBig(size, stack);
91*810390e3Srobert if (UNLIKELY(IsRssLimitExceeded())) {
92*810390e3Srobert if (AllocatorMayReturnNull())
93*810390e3Srobert return nullptr;
94*810390e3Srobert ReportRssLimitExceeded(&stack);
95*810390e3Srobert }
963cab2bb3Spatrick void *p = allocator.Allocate(GetAllocatorCache(), size, alignment);
973cab2bb3Spatrick if (UNLIKELY(!p)) {
983cab2bb3Spatrick SetAllocatorOutOfMemory();
993cab2bb3Spatrick if (AllocatorMayReturnNull())
1003cab2bb3Spatrick return nullptr;
1013cab2bb3Spatrick ReportOutOfMemory(size, &stack);
1023cab2bb3Spatrick }
1033cab2bb3Spatrick // Do not rely on the allocator to clear the memory (it's slow).
1043cab2bb3Spatrick if (cleared && allocator.FromPrimary(p))
1053cab2bb3Spatrick memset(p, 0, size);
1063cab2bb3Spatrick RegisterAllocation(stack, p, size);
1073cab2bb3Spatrick RunMallocHooks(p, size);
1083cab2bb3Spatrick return p;
1093cab2bb3Spatrick }
1103cab2bb3Spatrick
Calloc(uptr nmemb,uptr size,const StackTrace & stack)1113cab2bb3Spatrick static void *Calloc(uptr nmemb, uptr size, const StackTrace &stack) {
1123cab2bb3Spatrick if (UNLIKELY(CheckForCallocOverflow(size, nmemb))) {
1133cab2bb3Spatrick if (AllocatorMayReturnNull())
1143cab2bb3Spatrick return nullptr;
1153cab2bb3Spatrick ReportCallocOverflow(nmemb, size, &stack);
1163cab2bb3Spatrick }
1173cab2bb3Spatrick size *= nmemb;
1183cab2bb3Spatrick return Allocate(stack, size, 1, true);
1193cab2bb3Spatrick }
1203cab2bb3Spatrick
Deallocate(void * p)1213cab2bb3Spatrick void Deallocate(void *p) {
1223cab2bb3Spatrick RunFreeHooks(p);
1233cab2bb3Spatrick RegisterDeallocation(p);
1243cab2bb3Spatrick allocator.Deallocate(GetAllocatorCache(), p);
1253cab2bb3Spatrick }
1263cab2bb3Spatrick
Reallocate(const StackTrace & stack,void * p,uptr new_size,uptr alignment)1273cab2bb3Spatrick void *Reallocate(const StackTrace &stack, void *p, uptr new_size,
1283cab2bb3Spatrick uptr alignment) {
1293cab2bb3Spatrick if (new_size > max_malloc_size) {
130d89ec533Spatrick ReportAllocationSizeTooBig(new_size, stack);
131d89ec533Spatrick return nullptr;
1323cab2bb3Spatrick }
133d89ec533Spatrick RegisterDeallocation(p);
134d89ec533Spatrick void *new_p =
135d89ec533Spatrick allocator.Reallocate(GetAllocatorCache(), p, new_size, alignment);
136d89ec533Spatrick if (new_p)
137d89ec533Spatrick RegisterAllocation(stack, new_p, new_size);
138d89ec533Spatrick else if (new_size != 0)
1393cab2bb3Spatrick RegisterAllocation(stack, p, new_size);
140d89ec533Spatrick return new_p;
1413cab2bb3Spatrick }
1423cab2bb3Spatrick
GetAllocatorCacheRange(uptr * begin,uptr * end)1433cab2bb3Spatrick void GetAllocatorCacheRange(uptr *begin, uptr *end) {
1443cab2bb3Spatrick *begin = (uptr)GetAllocatorCache();
1453cab2bb3Spatrick *end = *begin + sizeof(AllocatorCache);
1463cab2bb3Spatrick }
1473cab2bb3Spatrick
GetMallocUsableSize(const void * p)1483cab2bb3Spatrick uptr GetMallocUsableSize(const void *p) {
149*810390e3Srobert if (!p)
150*810390e3Srobert return 0;
1513cab2bb3Spatrick ChunkMetadata *m = Metadata(p);
1523cab2bb3Spatrick if (!m) return 0;
1533cab2bb3Spatrick return m->requested_size;
1543cab2bb3Spatrick }
1553cab2bb3Spatrick
lsan_posix_memalign(void ** memptr,uptr alignment,uptr size,const StackTrace & stack)1563cab2bb3Spatrick int lsan_posix_memalign(void **memptr, uptr alignment, uptr size,
1573cab2bb3Spatrick const StackTrace &stack) {
1583cab2bb3Spatrick if (UNLIKELY(!CheckPosixMemalignAlignment(alignment))) {
1593cab2bb3Spatrick if (AllocatorMayReturnNull())
1603cab2bb3Spatrick return errno_EINVAL;
1613cab2bb3Spatrick ReportInvalidPosixMemalignAlignment(alignment, &stack);
1623cab2bb3Spatrick }
1633cab2bb3Spatrick void *ptr = Allocate(stack, size, alignment, kAlwaysClearMemory);
1643cab2bb3Spatrick if (UNLIKELY(!ptr))
1653cab2bb3Spatrick // OOM error is already taken care of by Allocate.
1663cab2bb3Spatrick return errno_ENOMEM;
1673cab2bb3Spatrick CHECK(IsAligned((uptr)ptr, alignment));
1683cab2bb3Spatrick *memptr = ptr;
1693cab2bb3Spatrick return 0;
1703cab2bb3Spatrick }
1713cab2bb3Spatrick
lsan_aligned_alloc(uptr alignment,uptr size,const StackTrace & stack)1723cab2bb3Spatrick void *lsan_aligned_alloc(uptr alignment, uptr size, const StackTrace &stack) {
1733cab2bb3Spatrick if (UNLIKELY(!CheckAlignedAllocAlignmentAndSize(alignment, size))) {
1743cab2bb3Spatrick errno = errno_EINVAL;
1753cab2bb3Spatrick if (AllocatorMayReturnNull())
1763cab2bb3Spatrick return nullptr;
1773cab2bb3Spatrick ReportInvalidAlignedAllocAlignment(size, alignment, &stack);
1783cab2bb3Spatrick }
1793cab2bb3Spatrick return SetErrnoOnNull(Allocate(stack, size, alignment, kAlwaysClearMemory));
1803cab2bb3Spatrick }
1813cab2bb3Spatrick
lsan_memalign(uptr alignment,uptr size,const StackTrace & stack)1823cab2bb3Spatrick void *lsan_memalign(uptr alignment, uptr size, const StackTrace &stack) {
1833cab2bb3Spatrick if (UNLIKELY(!IsPowerOfTwo(alignment))) {
1843cab2bb3Spatrick errno = errno_EINVAL;
1853cab2bb3Spatrick if (AllocatorMayReturnNull())
1863cab2bb3Spatrick return nullptr;
1873cab2bb3Spatrick ReportInvalidAllocationAlignment(alignment, &stack);
1883cab2bb3Spatrick }
1893cab2bb3Spatrick return SetErrnoOnNull(Allocate(stack, size, alignment, kAlwaysClearMemory));
1903cab2bb3Spatrick }
1913cab2bb3Spatrick
lsan_malloc(uptr size,const StackTrace & stack)1923cab2bb3Spatrick void *lsan_malloc(uptr size, const StackTrace &stack) {
1933cab2bb3Spatrick return SetErrnoOnNull(Allocate(stack, size, 1, kAlwaysClearMemory));
1943cab2bb3Spatrick }
1953cab2bb3Spatrick
lsan_free(void * p)1963cab2bb3Spatrick void lsan_free(void *p) {
1973cab2bb3Spatrick Deallocate(p);
1983cab2bb3Spatrick }
1993cab2bb3Spatrick
lsan_realloc(void * p,uptr size,const StackTrace & stack)2003cab2bb3Spatrick void *lsan_realloc(void *p, uptr size, const StackTrace &stack) {
2013cab2bb3Spatrick return SetErrnoOnNull(Reallocate(stack, p, size, 1));
2023cab2bb3Spatrick }
2033cab2bb3Spatrick
lsan_reallocarray(void * ptr,uptr nmemb,uptr size,const StackTrace & stack)2043cab2bb3Spatrick void *lsan_reallocarray(void *ptr, uptr nmemb, uptr size,
2053cab2bb3Spatrick const StackTrace &stack) {
2063cab2bb3Spatrick if (UNLIKELY(CheckForCallocOverflow(size, nmemb))) {
2073cab2bb3Spatrick errno = errno_ENOMEM;
2083cab2bb3Spatrick if (AllocatorMayReturnNull())
2093cab2bb3Spatrick return nullptr;
2103cab2bb3Spatrick ReportReallocArrayOverflow(nmemb, size, &stack);
2113cab2bb3Spatrick }
2123cab2bb3Spatrick return lsan_realloc(ptr, nmemb * size, stack);
2133cab2bb3Spatrick }
2143cab2bb3Spatrick
lsan_calloc(uptr nmemb,uptr size,const StackTrace & stack)2153cab2bb3Spatrick void *lsan_calloc(uptr nmemb, uptr size, const StackTrace &stack) {
2163cab2bb3Spatrick return SetErrnoOnNull(Calloc(nmemb, size, stack));
2173cab2bb3Spatrick }
2183cab2bb3Spatrick
lsan_valloc(uptr size,const StackTrace & stack)2193cab2bb3Spatrick void *lsan_valloc(uptr size, const StackTrace &stack) {
2203cab2bb3Spatrick return SetErrnoOnNull(
2213cab2bb3Spatrick Allocate(stack, size, GetPageSizeCached(), kAlwaysClearMemory));
2223cab2bb3Spatrick }
2233cab2bb3Spatrick
lsan_pvalloc(uptr size,const StackTrace & stack)2243cab2bb3Spatrick void *lsan_pvalloc(uptr size, const StackTrace &stack) {
2253cab2bb3Spatrick uptr PageSize = GetPageSizeCached();
2263cab2bb3Spatrick if (UNLIKELY(CheckForPvallocOverflow(size, PageSize))) {
2273cab2bb3Spatrick errno = errno_ENOMEM;
2283cab2bb3Spatrick if (AllocatorMayReturnNull())
2293cab2bb3Spatrick return nullptr;
2303cab2bb3Spatrick ReportPvallocOverflow(size, &stack);
2313cab2bb3Spatrick }
2323cab2bb3Spatrick // pvalloc(0) should allocate one page.
2333cab2bb3Spatrick size = size ? RoundUpTo(size, PageSize) : PageSize;
2343cab2bb3Spatrick return SetErrnoOnNull(Allocate(stack, size, PageSize, kAlwaysClearMemory));
2353cab2bb3Spatrick }
2363cab2bb3Spatrick
lsan_mz_size(const void * p)2373cab2bb3Spatrick uptr lsan_mz_size(const void *p) {
2383cab2bb3Spatrick return GetMallocUsableSize(p);
2393cab2bb3Spatrick }
2403cab2bb3Spatrick
2413cab2bb3Spatrick ///// Interface to the common LSan module. /////
2423cab2bb3Spatrick
LockAllocator()2433cab2bb3Spatrick void LockAllocator() {
2443cab2bb3Spatrick allocator.ForceLock();
2453cab2bb3Spatrick }
2463cab2bb3Spatrick
UnlockAllocator()2473cab2bb3Spatrick void UnlockAllocator() {
2483cab2bb3Spatrick allocator.ForceUnlock();
2493cab2bb3Spatrick }
2503cab2bb3Spatrick
GetAllocatorGlobalRange(uptr * begin,uptr * end)2513cab2bb3Spatrick void GetAllocatorGlobalRange(uptr *begin, uptr *end) {
2523cab2bb3Spatrick *begin = (uptr)&allocator;
2533cab2bb3Spatrick *end = *begin + sizeof(allocator);
2543cab2bb3Spatrick }
2553cab2bb3Spatrick
PointsIntoChunk(void * p)2563cab2bb3Spatrick uptr PointsIntoChunk(void* p) {
2573cab2bb3Spatrick uptr addr = reinterpret_cast<uptr>(p);
2583cab2bb3Spatrick uptr chunk = reinterpret_cast<uptr>(allocator.GetBlockBeginFastLocked(p));
2593cab2bb3Spatrick if (!chunk) return 0;
2603cab2bb3Spatrick // LargeMmapAllocator considers pointers to the meta-region of a chunk to be
2613cab2bb3Spatrick // valid, but we don't want that.
2623cab2bb3Spatrick if (addr < chunk) return 0;
2633cab2bb3Spatrick ChunkMetadata *m = Metadata(reinterpret_cast<void *>(chunk));
2643cab2bb3Spatrick CHECK(m);
2653cab2bb3Spatrick if (!m->allocated)
2663cab2bb3Spatrick return 0;
2673cab2bb3Spatrick if (addr < chunk + m->requested_size)
2683cab2bb3Spatrick return chunk;
2693cab2bb3Spatrick if (IsSpecialCaseOfOperatorNew0(chunk, m->requested_size, addr))
2703cab2bb3Spatrick return chunk;
2713cab2bb3Spatrick return 0;
2723cab2bb3Spatrick }
2733cab2bb3Spatrick
GetUserBegin(uptr chunk)2743cab2bb3Spatrick uptr GetUserBegin(uptr chunk) {
2753cab2bb3Spatrick return chunk;
2763cab2bb3Spatrick }
2773cab2bb3Spatrick
LsanMetadata(uptr chunk)2783cab2bb3Spatrick LsanMetadata::LsanMetadata(uptr chunk) {
2793cab2bb3Spatrick metadata_ = Metadata(reinterpret_cast<void *>(chunk));
2803cab2bb3Spatrick CHECK(metadata_);
2813cab2bb3Spatrick }
2823cab2bb3Spatrick
allocated() const2833cab2bb3Spatrick bool LsanMetadata::allocated() const {
2843cab2bb3Spatrick return reinterpret_cast<ChunkMetadata *>(metadata_)->allocated;
2853cab2bb3Spatrick }
2863cab2bb3Spatrick
tag() const2873cab2bb3Spatrick ChunkTag LsanMetadata::tag() const {
2883cab2bb3Spatrick return reinterpret_cast<ChunkMetadata *>(metadata_)->tag;
2893cab2bb3Spatrick }
2903cab2bb3Spatrick
set_tag(ChunkTag value)2913cab2bb3Spatrick void LsanMetadata::set_tag(ChunkTag value) {
2923cab2bb3Spatrick reinterpret_cast<ChunkMetadata *>(metadata_)->tag = value;
2933cab2bb3Spatrick }
2943cab2bb3Spatrick
requested_size() const2953cab2bb3Spatrick uptr LsanMetadata::requested_size() const {
2963cab2bb3Spatrick return reinterpret_cast<ChunkMetadata *>(metadata_)->requested_size;
2973cab2bb3Spatrick }
2983cab2bb3Spatrick
stack_trace_id() const2993cab2bb3Spatrick u32 LsanMetadata::stack_trace_id() const {
3003cab2bb3Spatrick return reinterpret_cast<ChunkMetadata *>(metadata_)->stack_trace_id;
3013cab2bb3Spatrick }
3023cab2bb3Spatrick
ForEachChunk(ForEachChunkCallback callback,void * arg)3033cab2bb3Spatrick void ForEachChunk(ForEachChunkCallback callback, void *arg) {
3043cab2bb3Spatrick allocator.ForEachChunk(callback, arg);
3053cab2bb3Spatrick }
3063cab2bb3Spatrick
IgnoreObjectLocked(const void * p)3073cab2bb3Spatrick IgnoreObjectResult IgnoreObjectLocked(const void *p) {
3083cab2bb3Spatrick void *chunk = allocator.GetBlockBegin(p);
3093cab2bb3Spatrick if (!chunk || p < chunk) return kIgnoreObjectInvalid;
3103cab2bb3Spatrick ChunkMetadata *m = Metadata(chunk);
3113cab2bb3Spatrick CHECK(m);
3123cab2bb3Spatrick if (m->allocated && (uptr)p < (uptr)chunk + m->requested_size) {
3133cab2bb3Spatrick if (m->tag == kIgnored)
3143cab2bb3Spatrick return kIgnoreObjectAlreadyIgnored;
3153cab2bb3Spatrick m->tag = kIgnored;
3163cab2bb3Spatrick return kIgnoreObjectSuccess;
3173cab2bb3Spatrick } else {
3183cab2bb3Spatrick return kIgnoreObjectInvalid;
3193cab2bb3Spatrick }
3203cab2bb3Spatrick }
321d89ec533Spatrick
GetAdditionalThreadContextPtrsLocked(InternalMmapVector<uptr> * ptrs)322*810390e3Srobert void GetAdditionalThreadContextPtrsLocked(InternalMmapVector<uptr> *ptrs) {
323d89ec533Spatrick // This function can be used to treat memory reachable from `tctx` as live.
324d89ec533Spatrick // This is useful for threads that have been created but not yet started.
325d89ec533Spatrick
326d89ec533Spatrick // This is currently a no-op because the LSan `pthread_create()` interceptor
327d89ec533Spatrick // blocks until the child thread starts which keeps the thread's `arg` pointer
328d89ec533Spatrick // live.
329d89ec533Spatrick }
330d89ec533Spatrick
3313cab2bb3Spatrick } // namespace __lsan
3323cab2bb3Spatrick
3333cab2bb3Spatrick using namespace __lsan;
3343cab2bb3Spatrick
3353cab2bb3Spatrick extern "C" {
3363cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_current_allocated_bytes()3373cab2bb3Spatrick uptr __sanitizer_get_current_allocated_bytes() {
3383cab2bb3Spatrick uptr stats[AllocatorStatCount];
3393cab2bb3Spatrick allocator.GetStats(stats);
3403cab2bb3Spatrick return stats[AllocatorStatAllocated];
3413cab2bb3Spatrick }
3423cab2bb3Spatrick
3433cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_heap_size()3443cab2bb3Spatrick uptr __sanitizer_get_heap_size() {
3453cab2bb3Spatrick uptr stats[AllocatorStatCount];
3463cab2bb3Spatrick allocator.GetStats(stats);
3473cab2bb3Spatrick return stats[AllocatorStatMapped];
3483cab2bb3Spatrick }
3493cab2bb3Spatrick
3503cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_free_bytes()3513cab2bb3Spatrick uptr __sanitizer_get_free_bytes() { return 0; }
3523cab2bb3Spatrick
3533cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_unmapped_bytes()3543cab2bb3Spatrick uptr __sanitizer_get_unmapped_bytes() { return 0; }
3553cab2bb3Spatrick
3563cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_estimated_allocated_size(uptr size)3573cab2bb3Spatrick uptr __sanitizer_get_estimated_allocated_size(uptr size) { return size; }
3583cab2bb3Spatrick
3593cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_ownership(const void * p)3603cab2bb3Spatrick int __sanitizer_get_ownership(const void *p) { return Metadata(p) != nullptr; }
3613cab2bb3Spatrick
3623cab2bb3Spatrick SANITIZER_INTERFACE_ATTRIBUTE
__sanitizer_get_allocated_size(const void * p)3633cab2bb3Spatrick uptr __sanitizer_get_allocated_size(const void *p) {
3643cab2bb3Spatrick return GetMallocUsableSize(p);
3653cab2bb3Spatrick }
3663cab2bb3Spatrick
3673cab2bb3Spatrick } // extern "C"
368