285 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			285 lines
		
	
	
		
			10 KiB
		
	
	
	
		
			C++
		
	
	
	
//===-- sanitizer_symbolizer_win.cc ---------------------------------------===//
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//
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//                     The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file is shared between AddressSanitizer and ThreadSanitizer
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// run-time libraries.
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// Windows-specific implementation of symbolizer parts.
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//===----------------------------------------------------------------------===//
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#include "sanitizer_platform.h"
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#if SANITIZER_WINDOWS
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#define WIN32_LEAN_AND_MEAN
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#include <windows.h>
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#include <dbghelp.h>
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#pragma comment(lib, "dbghelp.lib")
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#include "sanitizer_symbolizer_internal.h"
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namespace __sanitizer {
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namespace {
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class WinSymbolizerTool : public SymbolizerTool {
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 public:
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  bool SymbolizePC(uptr addr, SymbolizedStack *stack) override;
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  bool SymbolizeData(uptr addr, DataInfo *info) override {
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    return false;
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  }
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  const char *Demangle(const char *name) override;
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};
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bool is_dbghelp_initialized = false;
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bool TrySymInitialize() {
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  SymSetOptions(SYMOPT_DEFERRED_LOADS | SYMOPT_UNDNAME | SYMOPT_LOAD_LINES);
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  return SymInitialize(GetCurrentProcess(), 0, TRUE);
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  // FIXME: We don't call SymCleanup() on exit yet - should we?
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}
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// Initializes DbgHelp library, if it's not yet initialized. Calls to this
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// function should be synchronized with respect to other calls to DbgHelp API
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// (e.g. from WinSymbolizerTool).
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void InitializeDbgHelpIfNeeded() {
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  if (is_dbghelp_initialized)
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    return;
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  if (!TrySymInitialize()) {
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    // OK, maybe the client app has called SymInitialize already.
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    // That's a bit unfortunate for us as all the DbgHelp functions are
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    // single-threaded and we can't coordinate with the app.
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    // FIXME: Can we stop the other threads at this point?
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    // Anyways, we have to reconfigure stuff to make sure that SymInitialize
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    // has all the appropriate options set.
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    // Cross our fingers and reinitialize DbgHelp.
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    Report("*** WARNING: Failed to initialize DbgHelp!              ***\n");
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    Report("*** Most likely this means that the app is already      ***\n");
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    Report("*** using DbgHelp, possibly with incompatible flags.    ***\n");
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    Report("*** Due to technical reasons, symbolization might crash ***\n");
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    Report("*** or produce wrong results.                           ***\n");
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    SymCleanup(GetCurrentProcess());
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    TrySymInitialize();
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  }
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  is_dbghelp_initialized = true;
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  // When an executable is run from a location different from the one where it
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  // was originally built, we may not see the nearby PDB files.
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  // To work around this, let's append the directory of the main module
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  // to the symbol search path.  All the failures below are not fatal.
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  const size_t kSymPathSize = 2048;
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  static wchar_t path_buffer[kSymPathSize + 1 + MAX_PATH];
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  if (!SymGetSearchPathW(GetCurrentProcess(), path_buffer, kSymPathSize)) {
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    Report("*** WARNING: Failed to SymGetSearchPathW ***\n");
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    return;
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  }
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  size_t sz = wcslen(path_buffer);
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  if (sz) {
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    CHECK_EQ(0, wcscat_s(path_buffer, L";"));
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    sz++;
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  }
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  DWORD res = GetModuleFileNameW(NULL, path_buffer + sz, MAX_PATH);
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  if (res == 0 || res == MAX_PATH) {
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    Report("*** WARNING: Failed to getting the EXE directory ***\n");
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    return;
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  }
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  // Write the zero character in place of the last backslash to get the
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  // directory of the main module at the end of path_buffer.
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  wchar_t *last_bslash = wcsrchr(path_buffer + sz, L'\\');
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  CHECK_NE(last_bslash, 0);
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  *last_bslash = L'\0';
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  if (!SymSetSearchPathW(GetCurrentProcess(), path_buffer)) {
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    Report("*** WARNING: Failed to SymSetSearchPathW\n");
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    return;
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  }
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}
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}  // namespace
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bool WinSymbolizerTool::SymbolizePC(uptr addr, SymbolizedStack *frame) {
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  InitializeDbgHelpIfNeeded();
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  // See http://msdn.microsoft.com/en-us/library/ms680578(VS.85).aspx
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  char buffer[sizeof(SYMBOL_INFO) + MAX_SYM_NAME * sizeof(CHAR)];
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  PSYMBOL_INFO symbol = (PSYMBOL_INFO)buffer;
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  symbol->SizeOfStruct = sizeof(SYMBOL_INFO);
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  symbol->MaxNameLen = MAX_SYM_NAME;
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  DWORD64 offset = 0;
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  BOOL got_objname = SymFromAddr(GetCurrentProcess(),
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                                 (DWORD64)addr, &offset, symbol);
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  if (!got_objname)
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    return false;
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  DWORD unused;
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  IMAGEHLP_LINE64 line_info;
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  line_info.SizeOfStruct = sizeof(IMAGEHLP_LINE64);
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  BOOL got_fileline = SymGetLineFromAddr64(GetCurrentProcess(), (DWORD64)addr,
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                                           &unused, &line_info);
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  frame->info.function = internal_strdup(symbol->Name);
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  frame->info.function_offset = (uptr)offset;
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  if (got_fileline) {
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    frame->info.file = internal_strdup(line_info.FileName);
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    frame->info.line = line_info.LineNumber;
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  }
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  // Only consider this a successful symbolization attempt if we got file info.
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  // Otherwise, try llvm-symbolizer.
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  return got_fileline;
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}
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const char *WinSymbolizerTool::Demangle(const char *name) {
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  CHECK(is_dbghelp_initialized);
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  static char demangle_buffer[1000];
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  if (name[0] == '\01' &&
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      UnDecorateSymbolName(name + 1, demangle_buffer, sizeof(demangle_buffer),
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                           UNDNAME_NAME_ONLY))
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    return demangle_buffer;
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  else
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    return name;
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}
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const char *Symbolizer::PlatformDemangle(const char *name) {
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  return name;
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}
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void Symbolizer::PlatformPrepareForSandboxing() {
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  // Do nothing.
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}
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namespace {
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struct ScopedHandle {
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  ScopedHandle() : h_(nullptr) {}
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  explicit ScopedHandle(HANDLE h) : h_(h) {}
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  ~ScopedHandle() {
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    if (h_)
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      ::CloseHandle(h_);
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  }
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  HANDLE get() { return h_; }
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  HANDLE *receive() { return &h_; }
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  HANDLE release() {
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    HANDLE h = h_;
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    h_ = nullptr;
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    return h;
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  }
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  HANDLE h_;
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};
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} // namespace
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bool SymbolizerProcess::StartSymbolizerSubprocess() {
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  // Create inherited pipes for stdin and stdout.
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  ScopedHandle stdin_read, stdin_write;
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  ScopedHandle stdout_read, stdout_write;
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  SECURITY_ATTRIBUTES attrs;
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  attrs.nLength = sizeof(SECURITY_ATTRIBUTES);
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  attrs.bInheritHandle = TRUE;
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  attrs.lpSecurityDescriptor = nullptr;
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  if (!::CreatePipe(stdin_read.receive(), stdin_write.receive(), &attrs, 0) ||
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      !::CreatePipe(stdout_read.receive(), stdout_write.receive(), &attrs, 0)) {
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    VReport(2, "WARNING: %s CreatePipe failed (error code: %d)\n",
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            SanitizerToolName, path_, GetLastError());
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    return false;
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  }
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  // Don't inherit the writing end of stdin or the reading end of stdout.
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  if (!SetHandleInformation(stdin_write.get(), HANDLE_FLAG_INHERIT, 0) ||
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      !SetHandleInformation(stdout_read.get(), HANDLE_FLAG_INHERIT, 0)) {
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    VReport(2, "WARNING: %s SetHandleInformation failed (error code: %d)\n",
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            SanitizerToolName, path_, GetLastError());
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    return false;
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  }
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  // Compute the command line. Wrap double quotes around everything.
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  const char *argv[kArgVMax];
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  GetArgV(path_, argv);
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  InternalScopedString command_line(kMaxPathLength * 3);
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  for (int i = 0; argv[i]; i++) {
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    const char *arg = argv[i];
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    int arglen = internal_strlen(arg);
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    // Check that tool command lines are simple and that complete escaping is
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    // unnecessary.
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    CHECK(!internal_strchr(arg, '"') && "quotes in args unsupported");
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    CHECK(!internal_strstr(arg, "\\\\") &&
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          "double backslashes in args unsupported");
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    CHECK(arglen > 0 && arg[arglen - 1] != '\\' &&
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          "args ending in backslash and empty args unsupported");
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    command_line.append("\"%s\" ", arg);
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  }
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  VReport(3, "Launching symbolizer command: %s\n", command_line.data());
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  // Launch llvm-symbolizer with stdin and stdout redirected.
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  STARTUPINFOA si;
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  memset(&si, 0, sizeof(si));
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  si.cb = sizeof(si);
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  si.dwFlags |= STARTF_USESTDHANDLES;
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  si.hStdInput = stdin_read.get();
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  si.hStdOutput = stdout_write.get();
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  PROCESS_INFORMATION pi;
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  memset(&pi, 0, sizeof(pi));
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  if (!CreateProcessA(path_,               // Executable
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                      command_line.data(), // Command line
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                      nullptr,             // Process handle not inheritable
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                      nullptr,             // Thread handle not inheritable
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                      TRUE,                // Set handle inheritance to TRUE
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                      0,                   // Creation flags
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                      nullptr,             // Use parent's environment block
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                      nullptr,             // Use parent's starting directory
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                      &si, &pi)) {
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    VReport(2, "WARNING: %s failed to create process for %s (error code: %d)\n",
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            SanitizerToolName, path_, GetLastError());
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    return false;
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  }
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  // Process creation succeeded, so transfer handle ownership into the fields.
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  input_fd_ = stdout_read.release();
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  output_fd_ = stdin_write.release();
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  // The llvm-symbolizer process is responsible for quitting itself when the
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  // stdin pipe is closed, so we don't need these handles. Close them to prevent
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  // leaks. If we ever want to try to kill the symbolizer process from the
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  // parent, we'll want to hang on to these handles.
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  CloseHandle(pi.hProcess);
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  CloseHandle(pi.hThread);
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  return true;
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}
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static void ChooseSymbolizerTools(IntrusiveList<SymbolizerTool> *list,
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                                  LowLevelAllocator *allocator) {
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  if (!common_flags()->symbolize) {
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    VReport(2, "Symbolizer is disabled.\n");
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    return;
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  }
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  // Add llvm-symbolizer in case the binary has dwarf.
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  const char *user_path = common_flags()->external_symbolizer_path;
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  const char *path =
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      user_path ? user_path : FindPathToBinary("llvm-symbolizer.exe");
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  if (path) {
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    VReport(2, "Using llvm-symbolizer at %spath: %s\n",
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            user_path ? "user-specified " : "", path);
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    list->push_back(new(*allocator) LLVMSymbolizer(path, allocator));
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  } else {
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    if (user_path && user_path[0] == '\0') {
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      VReport(2, "External symbolizer is explicitly disabled.\n");
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    } else {
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      VReport(2, "External symbolizer is not present.\n");
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    }
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  }
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  // Add the dbghelp based symbolizer.
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  list->push_back(new(*allocator) WinSymbolizerTool());
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}
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Symbolizer *Symbolizer::PlatformInit() {
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  IntrusiveList<SymbolizerTool> list;
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  list.clear();
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  ChooseSymbolizerTools(&list, &symbolizer_allocator_);
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  return new(symbolizer_allocator_) Symbolizer(list);
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}
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}  // namespace __sanitizer
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#endif  // _WIN32
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