cb7dc4da4c
2019-11-07 Martin Liska <mliska@suse.cz> * merge.sh: Update to use llvm-project git repository. * all source files: Merge from upstream 82588e05cc32bb30807e480abd4e689b0dee132a. From-SVN: r277909
327 lines
12 KiB
C++
327 lines
12 KiB
C++
//===-- sanitizer/asan_interface.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 (ASan).
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//
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// Public interface header.
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//===----------------------------------------------------------------------===//
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#ifndef SANITIZER_ASAN_INTERFACE_H
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#define SANITIZER_ASAN_INTERFACE_H
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#include <sanitizer/common_interface_defs.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/// Marks a memory region (<c>[addr, addr+size)</c>) as unaddressable.
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///
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/// This memory must be previously allocated by your program. Instrumented
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/// code is forbidden from accessing addresses in this region until it is
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/// unpoisoned. This function is not guaranteed to poison the entire region -
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/// it could poison only a subregion of <c>[addr, addr+size)</c> due to ASan
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/// alignment restrictions.
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///
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/// \note This function is not thread-safe because no two threads can poison or
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/// unpoison memory in the same memory region simultaneously.
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///
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/// \param addr Start of memory region.
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/// \param size Size of memory region.
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void __asan_poison_memory_region(void const volatile *addr, size_t size);
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/// Marks a memory region (<c>[addr, addr+size)</c>) as addressable.
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///
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/// This memory must be previously allocated by your program. Accessing
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/// addresses in this region is allowed until this region is poisoned again.
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/// This function could unpoison a super-region of <c>[addr, addr+size)</c> due
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/// to ASan alignment restrictions.
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///
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/// \note This function is not thread-safe because no two threads can
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/// poison or unpoison memory in the same memory region simultaneously.
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///
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/// \param addr Start of memory region.
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/// \param size Size of memory region.
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void __asan_unpoison_memory_region(void const volatile *addr, size_t size);
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// Macros provided for convenience.
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#if __has_feature(address_sanitizer) || defined(__SANITIZE_ADDRESS__)
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/// Marks a memory region as unaddressable.
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///
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/// \note Macro provided for convenience; defined as a no-op if ASan is not
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/// enabled.
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///
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/// \param addr Start of memory region.
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/// \param size Size of memory region.
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#define ASAN_POISON_MEMORY_REGION(addr, size) \
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__asan_poison_memory_region((addr), (size))
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/// Marks a memory region as addressable.
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///
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/// \note Macro provided for convenience; defined as a no-op if ASan is not
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/// enabled.
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///
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/// \param addr Start of memory region.
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/// \param size Size of memory region.
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#define ASAN_UNPOISON_MEMORY_REGION(addr, size) \
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__asan_unpoison_memory_region((addr), (size))
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#else
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#define ASAN_POISON_MEMORY_REGION(addr, size) \
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((void)(addr), (void)(size))
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#define ASAN_UNPOISON_MEMORY_REGION(addr, size) \
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((void)(addr), (void)(size))
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#endif
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/// Checks if an address is poisoned.
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///
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/// Returns 1 if <c><i>addr</i></c> is poisoned (that is, 1-byte read/write
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/// access to this address would result in an error report from ASan).
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/// Otherwise returns 0.
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///
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/// \param addr Address to check.
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///
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/// \retval 1 Address is poisoned.
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/// \retval 0 Address is not poisoned.
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int __asan_address_is_poisoned(void const volatile *addr);
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/// Checks if a region is poisoned.
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///
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/// If at least one byte in <c>[beg, beg+size)</c> is poisoned, returns the
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/// address of the first such byte. Otherwise returns 0.
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///
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/// \param beg Start of memory region.
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/// \param size Start of memory region.
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/// \returns Address of first poisoned byte.
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void *__asan_region_is_poisoned(void *beg, size_t size);
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/// Describes an address (useful for calling from the debugger).
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///
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/// Prints the description of <c><i>addr</i></c>.
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///
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/// \param addr Address to describe.
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void __asan_describe_address(void *addr);
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/// Checks if an error has been or is being reported (useful for calling from
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/// the debugger to get information about an ASan error).
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///
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/// Returns 1 if an error has been (or is being) reported. Otherwise returns 0.
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///
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/// \returns 1 if an error has been (or is being) reported. Otherwise returns
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/// 0.
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int __asan_report_present(void);
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/// Gets the PC (program counter) register value of an ASan error (useful for
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/// calling from the debugger).
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///
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/// Returns PC if an error has been (or is being) reported.
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/// Otherwise returns 0.
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///
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/// \returns PC value.
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void *__asan_get_report_pc(void);
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/// Gets the BP (base pointer) register value of an ASan error (useful for
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/// calling from the debugger).
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///
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/// Returns BP if an error has been (or is being) reported.
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/// Otherwise returns 0.
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///
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/// \returns BP value.
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void *__asan_get_report_bp(void);
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/// Gets the SP (stack pointer) register value of an ASan error (useful for
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/// calling from the debugger).
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///
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/// If an error has been (or is being) reported, returns SP.
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/// Otherwise returns 0.
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///
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/// \returns SP value.
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void *__asan_get_report_sp(void);
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/// Gets the address of the report buffer of an ASan error (useful for calling
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/// from the debugger).
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///
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/// Returns the address of the report buffer if an error has been (or is being)
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/// reported. Otherwise returns 0.
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///
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/// \returns Address of report buffer.
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void *__asan_get_report_address(void);
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/// Gets access type of an ASan error (useful for calling from the debugger).
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///
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/// Returns access type (read or write) if an error has been (or is being)
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/// reported. Otherwise returns 0.
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///
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/// \returns Access type (0 = read, 1 = write).
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int __asan_get_report_access_type(void);
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/// Gets access size of an ASan error (useful for calling from the debugger).
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///
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/// Returns access size if an error has been (or is being) reported. Otherwise
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/// returns 0.
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///
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/// \returns Access size in bytes.
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size_t __asan_get_report_access_size(void);
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/// Gets the bug description of an ASan error (useful for calling from a
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/// debugger).
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///
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/// \returns Returns a bug description if an error has been (or is being)
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/// reported - for example, "heap-use-after-free". Otherwise returns an empty
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/// string.
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const char *__asan_get_report_description(void);
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/// Gets information about a pointer (useful for calling from the debugger).
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///
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/// Returns the category of the given pointer as a constant string.
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/// Possible return values are <c>global</c>, <c>stack</c>, <c>stack-fake</c>,
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/// <c>heap</c>, <c>heap-invalid</c>, <c>shadow-low</c>, <c>shadow-gap</c>,
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/// <c>shadow-high</c>, and <c>unknown</c>.
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///
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/// If the return value is <c>global</c> or <c>stack</c>, tries to also return
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/// the variable name, address, and size. If the return value is <c>heap</c>,
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/// tries to return the chunk address and size. <c><i>name</i></c> should point
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/// to an allocated buffer of size <c><i>name_size</i></c>.
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///
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/// \param addr Address to locate.
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/// \param name Buffer to store the variable's name.
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/// \param name_size Size in bytes of the variable's name buffer.
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/// \param region_address [out] Address of the region.
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/// \param region_size [out] Size of the region in bytes.
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///
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/// \returns Returns the category of the given pointer as a constant string.
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const char *__asan_locate_address(void *addr, char *name, size_t name_size,
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void **region_address, size_t *region_size);
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/// Gets the allocation stack trace and thread ID for a heap address (useful
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/// for calling from the debugger).
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///
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/// Stores up to <c><i>size</i></c> frames in <c><i>trace</i></c>. Returns
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/// the number of stored frames or 0 on error.
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///
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/// \param addr A heap address.
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/// \param trace A buffer to store the stack trace.
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/// \param size Size in bytes of the trace buffer.
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/// \param thread_id [out] The thread ID of the address.
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///
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/// \returns Returns the number of stored frames or 0 on error.
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size_t __asan_get_alloc_stack(void *addr, void **trace, size_t size,
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int *thread_id);
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/// Gets the free stack trace and thread ID for a heap address (useful for
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/// calling from the debugger).
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///
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/// Stores up to <c><i>size</i></c> frames in <c><i>trace</i></c>. Returns
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/// the number of stored frames or 0 on error.
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///
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/// \param addr A heap address.
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/// \param trace A buffer to store the stack trace.
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/// \param size Size in bytes of the trace buffer.
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/// \param thread_id [out] The thread ID of the address.
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///
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/// \returns Returns the number of stored frames or 0 on error.
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size_t __asan_get_free_stack(void *addr, void **trace, size_t size,
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int *thread_id);
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/// Gets the current shadow memory mapping (useful for calling from the
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/// debugger).
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///
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/// \param shadow_scale [out] Shadow scale value.
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/// \param shadow_offset [out] Offset value.
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void __asan_get_shadow_mapping(size_t *shadow_scale, size_t *shadow_offset);
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/// This is an internal function that is called to report an error. However,
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/// it is still a part of the interface because you might want to set a
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/// breakpoint on this function in the debugger.
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///
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/// \param pc <c><i>pc</i></c> value of the ASan error.
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/// \param bp <c><i>bp</i></c> value of the ASan error.
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/// \param sp <c><i>sp</i></c> value of the ASan error.
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/// \param addr Address of the ASan error.
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/// \param is_write True if the error is a write error; false otherwise.
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/// \param access_size Size of the memory access of the ASan error.
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void __asan_report_error(void *pc, void *bp, void *sp,
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void *addr, int is_write, size_t access_size);
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// Deprecated. Call __sanitizer_set_death_callback instead.
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void __asan_set_death_callback(void (*callback)(void));
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/// Sets the callback function to be called during ASan error reporting.
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///
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/// The callback provides a string pointer to the report.
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///
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/// \param callback User-provided function.
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void __asan_set_error_report_callback(void (*callback)(const char *));
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/// User-provided callback on ASan errors.
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///
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/// You can provide a function that would be called immediately when ASan
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/// detects an error. This is useful in cases when ASan detects an error but
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/// your program crashes before the ASan report is printed.
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void __asan_on_error(void);
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/// Prints accumulated statistics to <c>stderr</c> (useful for calling from the
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/// debugger).
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void __asan_print_accumulated_stats(void);
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/// User-provided default option settings.
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///
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/// You can provide your own implementation of this function to return a string
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/// containing ASan runtime options (for example,
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/// <c>verbosity=1:halt_on_error=0</c>).
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///
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/// \returns Default options string.
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const char* __asan_default_options(void);
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// The following two functions facilitate garbage collection in presence of
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// ASan's fake stack.
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/// Gets an opaque handler to the current thread's fake stack.
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///
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/// Returns an opaque handler to be used by
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/// <c>__asan_addr_is_in_fake_stack()</c>. Returns NULL if the current thread
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/// does not have a fake stack.
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///
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/// \returns An opaque handler to the fake stack or NULL.
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void *__asan_get_current_fake_stack(void);
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/// Checks if an address belongs to a given fake stack.
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///
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/// If <c><i>fake_stack</i></c> is non-NULL and <c><i>addr</i></c> belongs to a
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/// fake frame in <c><i>fake_stack</i></c>, returns the address of the real
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/// stack that corresponds to the fake frame and sets <c><i>beg</i></c> and
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/// <c><i>end</i></c> to the boundaries of this fake frame. Otherwise returns
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/// NULL and does not touch <c><i>beg</i></c> and <c><i>end</i></c>.
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///
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/// If <c><i>beg</i></c> or <c><i>end</i></c> are NULL, they are not touched.
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///
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/// \note This function can be called from a thread other than the owner of
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/// <c><i>fake_stack</i></c>, but the owner thread needs to be alive.
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///
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/// \param fake_stack An opaque handler to a fake stack.
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/// \param addr Address to test.
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/// \param beg [out] Beginning of fake frame.
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/// \param end [out] End of fake frame.
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/// \returns Stack address or NULL.
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void *__asan_addr_is_in_fake_stack(void *fake_stack, void *addr, void **beg,
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void **end);
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/// Performs shadow memory cleanup of the current thread's stack before a
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/// function marked with the <c>[[noreturn]]</c> attribute is called.
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///
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/// To avoid false positives on the stack, must be called before no-return
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/// functions like <c>_exit()</c> and <c>execl()</c>.
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void __asan_handle_no_return(void);
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/// Update allocation stack trace for the given allocation to the current stack
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/// trace. Returns 1 if successfull, 0 if not.
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int __asan_update_allocation_context(void* addr);
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#ifdef __cplusplus
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} // extern "C"
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#endif
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#endif // SANITIZER_ASAN_INTERFACE_H
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