226 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			226 lines
		
	
	
		
			8.5 KiB
		
	
	
	
		
			C++
		
	
	
	
//===-- segv_handler_posix.cpp ----------------------------------*- 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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#include "gwp_asan/common.h"
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#include "gwp_asan/crash_handler.h"
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#include "gwp_asan/guarded_pool_allocator.h"
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#include "gwp_asan/optional/segv_handler.h"
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#include "gwp_asan/options.h"
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// RHEL creates the PRIu64 format macro (for printing uint64_t's) only when this
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// macro is defined before including <inttypes.h>.
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#ifndef __STDC_FORMAT_MACROS
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#define __STDC_FORMAT_MACROS 1
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#endif
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#include <assert.h>
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#include <inttypes.h>
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#include <signal.h>
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#include <stdio.h>
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using gwp_asan::AllocationMetadata;
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using gwp_asan::Error;
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using gwp_asan::GuardedPoolAllocator;
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using gwp_asan::Printf_t;
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using gwp_asan::backtrace::PrintBacktrace_t;
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using gwp_asan::backtrace::SegvBacktrace_t;
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namespace {
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struct ScopedEndOfReportDecorator {
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  ScopedEndOfReportDecorator(gwp_asan::Printf_t Printf) : Printf(Printf) {}
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  ~ScopedEndOfReportDecorator() { Printf("*** End GWP-ASan report ***\n"); }
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  gwp_asan::Printf_t Printf;
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};
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// Prints the provided error and metadata information.
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void printHeader(Error E, uintptr_t AccessPtr,
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                 const gwp_asan::AllocationMetadata *Metadata,
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                 Printf_t Printf) {
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  // Print using intermediate strings. Platforms like Android don't like when
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  // you print multiple times to the same line, as there may be a newline
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  // appended to a log file automatically per Printf() call.
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  constexpr size_t kDescriptionBufferLen = 128;
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  char DescriptionBuffer[kDescriptionBufferLen] = "";
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  if (E != Error::UNKNOWN && Metadata != nullptr) {
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    uintptr_t Address = __gwp_asan_get_allocation_address(Metadata);
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    size_t Size = __gwp_asan_get_allocation_size(Metadata);
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    if (E == Error::USE_AFTER_FREE) {
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      snprintf(DescriptionBuffer, kDescriptionBufferLen,
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               "(%zu byte%s into a %zu-byte allocation at 0x%zx) ",
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               AccessPtr - Address, (AccessPtr - Address == 1) ? "" : "s", Size,
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               Address);
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    } else if (AccessPtr < Address) {
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      snprintf(DescriptionBuffer, kDescriptionBufferLen,
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               "(%zu byte%s to the left of a %zu-byte allocation at 0x%zx) ",
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               Address - AccessPtr, (Address - AccessPtr == 1) ? "" : "s", Size,
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               Address);
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    } else if (AccessPtr > Address) {
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      snprintf(DescriptionBuffer, kDescriptionBufferLen,
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               "(%zu byte%s to the right of a %zu-byte allocation at 0x%zx) ",
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               AccessPtr - Address, (AccessPtr - Address == 1) ? "" : "s", Size,
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               Address);
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    } else {
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      snprintf(DescriptionBuffer, kDescriptionBufferLen,
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               "(a %zu-byte allocation) ", Size);
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    }
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  }
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  // Possible number of digits of a 64-bit number: ceil(log10(2^64)) == 20. Add
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  // a null terminator, and round to the nearest 8-byte boundary.
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  uint64_t ThreadID = gwp_asan::getThreadID();
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  constexpr size_t kThreadBufferLen = 24;
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  char ThreadBuffer[kThreadBufferLen];
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  if (ThreadID == gwp_asan::kInvalidThreadID)
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    snprintf(ThreadBuffer, kThreadBufferLen, "<unknown>");
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  else
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    snprintf(ThreadBuffer, kThreadBufferLen, "%" PRIu64, ThreadID);
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  Printf("%s at 0x%zx %sby thread %s here:\n", gwp_asan::ErrorToString(E),
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         AccessPtr, DescriptionBuffer, ThreadBuffer);
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}
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void dumpReport(uintptr_t ErrorPtr, const gwp_asan::AllocatorState *State,
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                const gwp_asan::AllocationMetadata *Metadata,
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                SegvBacktrace_t SegvBacktrace, Printf_t Printf,
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                PrintBacktrace_t PrintBacktrace, void *Context) {
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  assert(State && "dumpReport missing Allocator State.");
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  assert(Metadata && "dumpReport missing Metadata.");
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  assert(Printf && "dumpReport missing Printf.");
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  if (!__gwp_asan_error_is_mine(State, ErrorPtr))
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    return;
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  Printf("*** GWP-ASan detected a memory error ***\n");
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  ScopedEndOfReportDecorator Decorator(Printf);
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  uintptr_t InternalErrorPtr = __gwp_asan_get_internal_crash_address(State);
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  if (InternalErrorPtr != 0u)
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    ErrorPtr = InternalErrorPtr;
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  Error E = __gwp_asan_diagnose_error(State, Metadata, ErrorPtr);
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  if (E == Error::UNKNOWN) {
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    Printf("GWP-ASan cannot provide any more information about this error. "
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           "This may occur due to a wild memory access into the GWP-ASan pool, "
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           "or an overflow/underflow that is > 512B in length.\n");
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    return;
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  }
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  const gwp_asan::AllocationMetadata *AllocMeta =
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      __gwp_asan_get_metadata(State, Metadata, ErrorPtr);
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  // Print the error header.
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  printHeader(E, ErrorPtr, AllocMeta, Printf);
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  // Print the fault backtrace.
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  static constexpr unsigned kMaximumStackFramesForCrashTrace = 512;
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  uintptr_t Trace[kMaximumStackFramesForCrashTrace];
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  size_t TraceLength =
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      SegvBacktrace(Trace, kMaximumStackFramesForCrashTrace, Context);
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  PrintBacktrace(Trace, TraceLength, Printf);
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  if (AllocMeta == nullptr)
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    return;
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  // Maybe print the deallocation trace.
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  if (__gwp_asan_is_deallocated(AllocMeta)) {
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    uint64_t ThreadID = __gwp_asan_get_deallocation_thread_id(AllocMeta);
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    if (ThreadID == gwp_asan::kInvalidThreadID)
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      Printf("0x%zx was deallocated by thread <unknown> here:\n", ErrorPtr);
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    else
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      Printf("0x%zx was deallocated by thread %zu here:\n", ErrorPtr, ThreadID);
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    TraceLength = __gwp_asan_get_deallocation_trace(
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        AllocMeta, Trace, kMaximumStackFramesForCrashTrace);
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    PrintBacktrace(Trace, TraceLength, Printf);
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  }
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  // Print the allocation trace.
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  uint64_t ThreadID = __gwp_asan_get_allocation_thread_id(AllocMeta);
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  if (ThreadID == gwp_asan::kInvalidThreadID)
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    Printf("0x%zx was allocated by thread <unknown> here:\n", ErrorPtr);
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  else
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    Printf("0x%zx was allocated by thread %zu here:\n", ErrorPtr, ThreadID);
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  TraceLength = __gwp_asan_get_allocation_trace(
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      AllocMeta, Trace, kMaximumStackFramesForCrashTrace);
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  PrintBacktrace(Trace, TraceLength, Printf);
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}
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struct sigaction PreviousHandler;
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bool SignalHandlerInstalled;
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gwp_asan::GuardedPoolAllocator *GPAForSignalHandler;
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Printf_t PrintfForSignalHandler;
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PrintBacktrace_t PrintBacktraceForSignalHandler;
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SegvBacktrace_t BacktraceForSignalHandler;
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static void sigSegvHandler(int sig, siginfo_t *info, void *ucontext) {
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  if (GPAForSignalHandler) {
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    GPAForSignalHandler->stop();
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    dumpReport(reinterpret_cast<uintptr_t>(info->si_addr),
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               GPAForSignalHandler->getAllocatorState(),
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               GPAForSignalHandler->getMetadataRegion(),
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               BacktraceForSignalHandler, PrintfForSignalHandler,
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               PrintBacktraceForSignalHandler, ucontext);
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  }
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  // Process any previous handlers.
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  if (PreviousHandler.sa_flags & SA_SIGINFO) {
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    PreviousHandler.sa_sigaction(sig, info, ucontext);
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  } else if (PreviousHandler.sa_handler == SIG_DFL) {
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    // If the previous handler was the default handler, cause a core dump.
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    signal(SIGSEGV, SIG_DFL);
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    raise(SIGSEGV);
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  } else if (PreviousHandler.sa_handler == SIG_IGN) {
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    // If the previous segv handler was SIGIGN, crash iff we were responsible
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    // for the crash.
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    if (__gwp_asan_error_is_mine(GPAForSignalHandler->getAllocatorState(),
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                                 reinterpret_cast<uintptr_t>(info->si_addr))) {
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      signal(SIGSEGV, SIG_DFL);
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      raise(SIGSEGV);
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    }
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  } else {
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    PreviousHandler.sa_handler(sig);
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  }
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}
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} // anonymous namespace
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namespace gwp_asan {
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namespace segv_handler {
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void installSignalHandlers(gwp_asan::GuardedPoolAllocator *GPA, Printf_t Printf,
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                           PrintBacktrace_t PrintBacktrace,
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                           SegvBacktrace_t SegvBacktrace) {
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  assert(GPA && "GPA wasn't provided to installSignalHandlers.");
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  assert(Printf && "Printf wasn't provided to installSignalHandlers.");
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  assert(PrintBacktrace &&
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         "PrintBacktrace wasn't provided to installSignalHandlers.");
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  assert(SegvBacktrace &&
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         "SegvBacktrace wasn't provided to installSignalHandlers.");
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  GPAForSignalHandler = GPA;
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  PrintfForSignalHandler = Printf;
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  PrintBacktraceForSignalHandler = PrintBacktrace;
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  BacktraceForSignalHandler = SegvBacktrace;
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  struct sigaction Action = {};
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  Action.sa_sigaction = sigSegvHandler;
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  Action.sa_flags = SA_SIGINFO;
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  sigaction(SIGSEGV, &Action, &PreviousHandler);
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  SignalHandlerInstalled = true;
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}
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void uninstallSignalHandlers() {
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  if (SignalHandlerInstalled) {
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    sigaction(SIGSEGV, &PreviousHandler, nullptr);
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    SignalHandlerInstalled = false;
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  }
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}
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} // namespace segv_handler
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} // namespace gwp_asan
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