172 lines
5.9 KiB
C++
172 lines
5.9 KiB
C++
//===-- asan_internal.h -----------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file is a part of AddressSanitizer, an address sanity checker.
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//
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// ASan-private header which defines various general utilities.
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//===----------------------------------------------------------------------===//
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#ifndef ASAN_INTERNAL_H
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#define ASAN_INTERNAL_H
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#include "asan_flags.h"
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#include "asan_interface_internal.h"
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#include "sanitizer_common/sanitizer_common.h"
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#include "sanitizer_common/sanitizer_internal_defs.h"
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#include "sanitizer_common/sanitizer_stacktrace.h"
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#include "sanitizer_common/sanitizer_libc.h"
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#if __has_feature(address_sanitizer) || defined(__SANITIZE_ADDRESS__)
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# error "The AddressSanitizer run-time should not be"
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" instrumented by AddressSanitizer"
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#endif
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// Build-time configuration options.
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// If set, asan will intercept C++ exception api call(s).
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#ifndef ASAN_HAS_EXCEPTIONS
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# define ASAN_HAS_EXCEPTIONS 1
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#endif
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// If set, values like allocator chunk size, as well as defaults for some flags
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// will be changed towards less memory overhead.
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#ifndef ASAN_LOW_MEMORY
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# if SANITIZER_IOS || SANITIZER_ANDROID || SANITIZER_RTEMS
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# define ASAN_LOW_MEMORY 1
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# else
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# define ASAN_LOW_MEMORY 0
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# endif
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#endif
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#ifndef ASAN_DYNAMIC
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# ifdef PIC
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# define ASAN_DYNAMIC 1
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# else
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# define ASAN_DYNAMIC 0
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# endif
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#endif
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// All internal functions in asan reside inside the __asan namespace
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// to avoid namespace collisions with the user programs.
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// Separate namespace also makes it simpler to distinguish the asan run-time
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// functions from the instrumented user code in a profile.
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namespace __asan {
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class AsanThread;
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using __sanitizer::StackTrace;
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void AsanInitFromRtl();
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// asan_win.cpp
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void InitializePlatformExceptionHandlers();
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// Returns whether an address is a valid allocated system heap block.
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// 'addr' must point to the beginning of the block.
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bool IsSystemHeapAddress(uptr addr);
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// asan_rtl.cpp
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void PrintAddressSpaceLayout();
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void NORETURN ShowStatsAndAbort();
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// asan_shadow_setup.cpp
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void InitializeShadowMemory();
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// asan_malloc_linux.cpp / asan_malloc_mac.cpp
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void ReplaceSystemMalloc();
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// asan_linux.cpp / asan_mac.cpp / asan_rtems.cpp / asan_win.cpp
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uptr FindDynamicShadowStart();
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void *AsanDoesNotSupportStaticLinkage();
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void AsanCheckDynamicRTPrereqs();
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void AsanCheckIncompatibleRT();
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// Unpoisons platform-specific stacks.
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// Returns true if all stacks have been unpoisoned.
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bool PlatformUnpoisonStacks();
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// asan_rtl.cpp
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// Unpoison a region containing a stack.
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// Performs a sanity check and warns if the bounds don't look right.
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// The warning contains the type string to identify the stack type.
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void UnpoisonStack(uptr bottom, uptr top, const char *type);
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// asan_thread.cpp
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AsanThread *CreateMainThread();
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// Support function for __asan_(un)register_image_globals. Searches for the
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// loaded image containing `needle' and then enumerates all global metadata
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// structures declared in that image, applying `op' (e.g.,
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// __asan_(un)register_globals) to them.
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typedef void (*globals_op_fptr)(__asan_global *, uptr);
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void AsanApplyToGlobals(globals_op_fptr op, const void *needle);
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void AsanOnDeadlySignal(int, void *siginfo, void *context);
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void ReadContextStack(void *context, uptr *stack, uptr *ssize);
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void StopInitOrderChecking();
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// Wrapper for TLS/TSD.
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void AsanTSDInit(void (*destructor)(void *tsd));
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void *AsanTSDGet();
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void AsanTSDSet(void *tsd);
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void PlatformTSDDtor(void *tsd);
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void AppendToErrorMessageBuffer(const char *buffer);
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void *AsanDlSymNext(const char *sym);
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// Returns `true` iff most of ASan init process should be skipped due to the
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// ASan library being loaded via `dlopen()`. Platforms may perform any
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// `dlopen()` specific initialization inside this function.
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bool HandleDlopenInit();
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// Add convenient macro for interface functions that may be represented as
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// weak hooks.
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#define ASAN_MALLOC_HOOK(ptr, size) \
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do { \
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if (&__sanitizer_malloc_hook) __sanitizer_malloc_hook(ptr, size); \
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RunMallocHooks(ptr, size); \
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} while (false)
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#define ASAN_FREE_HOOK(ptr) \
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do { \
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if (&__sanitizer_free_hook) __sanitizer_free_hook(ptr); \
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RunFreeHooks(ptr); \
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} while (false)
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#define ASAN_ON_ERROR() \
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if (&__asan_on_error) __asan_on_error()
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extern int asan_inited;
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// Used to avoid infinite recursion in __asan_init().
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extern bool asan_init_is_running;
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extern void (*death_callback)(void);
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// These magic values are written to shadow for better error reporting.
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const int kAsanHeapLeftRedzoneMagic = 0xfa;
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const int kAsanHeapFreeMagic = 0xfd;
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const int kAsanStackLeftRedzoneMagic = 0xf1;
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const int kAsanStackMidRedzoneMagic = 0xf2;
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const int kAsanStackRightRedzoneMagic = 0xf3;
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const int kAsanStackAfterReturnMagic = 0xf5;
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const int kAsanInitializationOrderMagic = 0xf6;
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const int kAsanUserPoisonedMemoryMagic = 0xf7;
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const int kAsanContiguousContainerOOBMagic = 0xfc;
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const int kAsanStackUseAfterScopeMagic = 0xf8;
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const int kAsanGlobalRedzoneMagic = 0xf9;
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const int kAsanInternalHeapMagic = 0xfe;
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const int kAsanArrayCookieMagic = 0xac;
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const int kAsanIntraObjectRedzone = 0xbb;
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const int kAsanAllocaLeftMagic = 0xca;
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const int kAsanAllocaRightMagic = 0xcb;
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// Used to populate the shadow gap for systems without memory
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// protection there (i.e. Myriad).
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const int kAsanShadowGap = 0xcc;
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static const uptr kCurrentStackFrameMagic = 0x41B58AB3;
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static const uptr kRetiredStackFrameMagic = 0x45E0360E;
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} // namespace __asan
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#endif // ASAN_INTERNAL_H
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