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lsan_common.h revision 1.3
      1  1.1  mrg //=-- lsan_common.h -------------------------------------------------------===//
      2  1.1  mrg //
      3  1.1  mrg // This file is distributed under the University of Illinois Open Source
      4  1.1  mrg // License. See LICENSE.TXT for details.
      5  1.1  mrg //
      6  1.1  mrg //===----------------------------------------------------------------------===//
      7  1.1  mrg //
      8  1.1  mrg // This file is a part of LeakSanitizer.
      9  1.1  mrg // Private LSan header.
     10  1.1  mrg //
     11  1.1  mrg //===----------------------------------------------------------------------===//
     12  1.1  mrg 
     13  1.1  mrg #ifndef LSAN_COMMON_H
     14  1.1  mrg #define LSAN_COMMON_H
     15  1.1  mrg 
     16  1.1  mrg #include "sanitizer_common/sanitizer_allocator.h"
     17  1.1  mrg #include "sanitizer_common/sanitizer_common.h"
     18  1.1  mrg #include "sanitizer_common/sanitizer_internal_defs.h"
     19  1.1  mrg #include "sanitizer_common/sanitizer_platform.h"
     20  1.3  mrg #include "sanitizer_common/sanitizer_stoptheworld.h"
     21  1.1  mrg #include "sanitizer_common/sanitizer_symbolizer.h"
     22  1.1  mrg 
     23  1.3  mrg #if (SANITIZER_NETBSD || SANITIZER_LINUX) && !SANITIZER_ANDROID && (SANITIZER_WORDSIZE == 64) \
     24  1.3  mrg      && (defined(__x86_64__) ||  defined(__mips64) ||  defined(__aarch64__))
     25  1.1  mrg #define CAN_SANITIZE_LEAKS 1
     26  1.1  mrg #else
     27  1.1  mrg #define CAN_SANITIZE_LEAKS 0
     28  1.1  mrg #endif
     29  1.1  mrg 
     30  1.3  mrg namespace __sanitizer {
     31  1.3  mrg class FlagParser;
     32  1.3  mrg struct DTLS;
     33  1.3  mrg }
     34  1.3  mrg 
     35  1.1  mrg namespace __lsan {
     36  1.1  mrg 
     37  1.1  mrg // Chunk tags.
     38  1.1  mrg enum ChunkTag {
     39  1.1  mrg   kDirectlyLeaked = 0,  // default
     40  1.1  mrg   kIndirectlyLeaked = 1,
     41  1.1  mrg   kReachable = 2,
     42  1.1  mrg   kIgnored = 3
     43  1.1  mrg };
     44  1.1  mrg 
     45  1.1  mrg struct Flags {
     46  1.3  mrg #define LSAN_FLAG(Type, Name, DefaultValue, Description) Type Name;
     47  1.3  mrg #include "lsan_flags.inc"
     48  1.3  mrg #undef LSAN_FLAG
     49  1.3  mrg 
     50  1.3  mrg   void SetDefaults();
     51  1.1  mrg   uptr pointer_alignment() const {
     52  1.1  mrg     return use_unaligned ? 1 : sizeof(uptr);
     53  1.1  mrg   }
     54  1.1  mrg };
     55  1.1  mrg 
     56  1.1  mrg extern Flags lsan_flags;
     57  1.1  mrg inline Flags *flags() { return &lsan_flags; }
     58  1.3  mrg void RegisterLsanFlags(FlagParser *parser, Flags *f);
     59  1.1  mrg 
     60  1.1  mrg struct Leak {
     61  1.1  mrg   u32 id;
     62  1.1  mrg   uptr hit_count;
     63  1.1  mrg   uptr total_size;
     64  1.1  mrg   u32 stack_trace_id;
     65  1.1  mrg   bool is_directly_leaked;
     66  1.1  mrg   bool is_suppressed;
     67  1.1  mrg };
     68  1.1  mrg 
     69  1.1  mrg struct LeakedObject {
     70  1.1  mrg   u32 leak_id;
     71  1.1  mrg   uptr addr;
     72  1.1  mrg   uptr size;
     73  1.1  mrg };
     74  1.1  mrg 
     75  1.1  mrg // Aggregates leaks by stack trace prefix.
     76  1.1  mrg class LeakReport {
     77  1.1  mrg  public:
     78  1.1  mrg   LeakReport() : next_id_(0), leaks_(1), leaked_objects_(1) {}
     79  1.1  mrg   void AddLeakedChunk(uptr chunk, u32 stack_trace_id, uptr leaked_size,
     80  1.1  mrg                       ChunkTag tag);
     81  1.1  mrg   void ReportTopLeaks(uptr max_leaks);
     82  1.1  mrg   void PrintSummary();
     83  1.1  mrg   void ApplySuppressions();
     84  1.1  mrg   uptr UnsuppressedLeakCount();
     85  1.1  mrg 
     86  1.1  mrg 
     87  1.1  mrg  private:
     88  1.1  mrg   void PrintReportForLeak(uptr index);
     89  1.1  mrg   void PrintLeakedObjectsForLeak(uptr index);
     90  1.1  mrg 
     91  1.1  mrg   u32 next_id_;
     92  1.1  mrg   InternalMmapVector<Leak> leaks_;
     93  1.1  mrg   InternalMmapVector<LeakedObject> leaked_objects_;
     94  1.1  mrg };
     95  1.1  mrg 
     96  1.1  mrg typedef InternalMmapVector<uptr> Frontier;
     97  1.1  mrg 
     98  1.1  mrg // Platform-specific functions.
     99  1.1  mrg void InitializePlatformSpecificModules();
    100  1.1  mrg void ProcessGlobalRegions(Frontier *frontier);
    101  1.1  mrg void ProcessPlatformSpecificAllocations(Frontier *frontier);
    102  1.3  mrg // Run stoptheworld while holding any platform-specific locks.
    103  1.3  mrg void DoStopTheWorld(StopTheWorldCallback callback, void* argument);
    104  1.1  mrg 
    105  1.1  mrg void ScanRangeForPointers(uptr begin, uptr end,
    106  1.1  mrg                           Frontier *frontier,
    107  1.1  mrg                           const char *region_type, ChunkTag tag);
    108  1.1  mrg 
    109  1.1  mrg enum IgnoreObjectResult {
    110  1.1  mrg   kIgnoreObjectSuccess,
    111  1.1  mrg   kIgnoreObjectAlreadyIgnored,
    112  1.1  mrg   kIgnoreObjectInvalid
    113  1.1  mrg };
    114  1.1  mrg 
    115  1.1  mrg // Functions called from the parent tool.
    116  1.3  mrg void InitCommonLsan();
    117  1.1  mrg void DoLeakCheck();
    118  1.1  mrg bool DisabledInThisThread();
    119  1.1  mrg 
    120  1.3  mrg // Used to implement __lsan::ScopedDisabler.
    121  1.3  mrg void DisableInThisThread();
    122  1.3  mrg void EnableInThisThread();
    123  1.3  mrg // Can be used to ignore memory allocated by an intercepted
    124  1.3  mrg // function.
    125  1.3  mrg struct ScopedInterceptorDisabler {
    126  1.3  mrg   ScopedInterceptorDisabler() { DisableInThisThread(); }
    127  1.3  mrg   ~ScopedInterceptorDisabler() { EnableInThisThread(); }
    128  1.3  mrg };
    129  1.3  mrg 
    130  1.1  mrg // Special case for "new T[0]" where T is a type with DTOR.
    131  1.1  mrg // new T[0] will allocate one word for the array size (0) and store a pointer
    132  1.1  mrg // to the end of allocated chunk.
    133  1.1  mrg inline bool IsSpecialCaseOfOperatorNew0(uptr chunk_beg, uptr chunk_size,
    134  1.1  mrg                                         uptr addr) {
    135  1.1  mrg   return chunk_size == sizeof(uptr) && chunk_beg + chunk_size == addr &&
    136  1.1  mrg          *reinterpret_cast<uptr *>(chunk_beg) == 0;
    137  1.1  mrg }
    138  1.1  mrg 
    139  1.1  mrg // The following must be implemented in the parent tool.
    140  1.1  mrg 
    141  1.1  mrg void ForEachChunk(ForEachChunkCallback callback, void *arg);
    142  1.1  mrg // Returns the address range occupied by the global allocator object.
    143  1.1  mrg void GetAllocatorGlobalRange(uptr *begin, uptr *end);
    144  1.1  mrg // Wrappers for allocator's ForceLock()/ForceUnlock().
    145  1.1  mrg void LockAllocator();
    146  1.1  mrg void UnlockAllocator();
    147  1.1  mrg // Returns true if [addr, addr + sizeof(void *)) is poisoned.
    148  1.1  mrg bool WordIsPoisoned(uptr addr);
    149  1.1  mrg // Wrappers for ThreadRegistry access.
    150  1.1  mrg void LockThreadRegistry();
    151  1.1  mrg void UnlockThreadRegistry();
    152  1.1  mrg bool GetThreadRangesLocked(uptr os_id, uptr *stack_begin, uptr *stack_end,
    153  1.3  mrg                            uptr *tls_begin, uptr *tls_end, uptr *cache_begin,
    154  1.3  mrg                            uptr *cache_end, DTLS **dtls);
    155  1.1  mrg void ForEachExtraStackRange(uptr os_id, RangeIteratorCallback callback,
    156  1.1  mrg                             void *arg);
    157  1.1  mrg // If called from the main thread, updates the main thread's TID in the thread
    158  1.1  mrg // registry. We need this to handle processes that fork() without a subsequent
    159  1.1  mrg // exec(), which invalidates the recorded TID. To update it, we must call
    160  1.1  mrg // gettid() from the main thread. Our solution is to call this function before
    161  1.1  mrg // leak checking and also before every call to pthread_create() (to handle cases
    162  1.1  mrg // where leak checking is initiated from a non-main thread).
    163  1.1  mrg void EnsureMainThreadIDIsCorrect();
    164  1.1  mrg // If p points into a chunk that has been allocated to the user, returns its
    165  1.1  mrg // user-visible address. Otherwise, returns 0.
    166  1.1  mrg uptr PointsIntoChunk(void *p);
    167  1.1  mrg // Returns address of user-visible chunk contained in this allocator chunk.
    168  1.1  mrg uptr GetUserBegin(uptr chunk);
    169  1.1  mrg // Helper for __lsan_ignore_object().
    170  1.1  mrg IgnoreObjectResult IgnoreObjectLocked(const void *p);
    171  1.1  mrg // Wrapper for chunk metadata operations.
    172  1.1  mrg class LsanMetadata {
    173  1.1  mrg  public:
    174  1.1  mrg   // Constructor accepts address of user-visible chunk.
    175  1.1  mrg   explicit LsanMetadata(uptr chunk);
    176  1.1  mrg   bool allocated() const;
    177  1.1  mrg   ChunkTag tag() const;
    178  1.1  mrg   void set_tag(ChunkTag value);
    179  1.1  mrg   uptr requested_size() const;
    180  1.1  mrg   u32 stack_trace_id() const;
    181  1.1  mrg  private:
    182  1.1  mrg   void *metadata_;
    183  1.1  mrg };
    184  1.1  mrg 
    185  1.1  mrg }  // namespace __lsan
    186  1.1  mrg 
    187  1.1  mrg extern "C" {
    188  1.1  mrg SANITIZER_INTERFACE_ATTRIBUTE SANITIZER_WEAK_ATTRIBUTE
    189  1.1  mrg int __lsan_is_turned_off();
    190  1.1  mrg 
    191  1.1  mrg SANITIZER_INTERFACE_ATTRIBUTE SANITIZER_WEAK_ATTRIBUTE
    192  1.1  mrg const char *__lsan_default_suppressions();
    193  1.1  mrg }  // extern "C"
    194  1.1  mrg 
    195  1.1  mrg #endif  // LSAN_COMMON_H
    196