249 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			249 lines
		
	
	
		
			7.6 KiB
		
	
	
	
		
			C++
		
	
	
	
//===-- OptionArgParser.cpp -----------------------------------------------===//
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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 "lldb/Interpreter/OptionArgParser.h"
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#include "lldb/DataFormatters/FormatManager.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Utility/Status.h"
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#include "lldb/Utility/StreamString.h"
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using namespace lldb_private;
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using namespace lldb;
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bool OptionArgParser::ToBoolean(llvm::StringRef ref, bool fail_value,
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                                bool *success_ptr) {
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  if (success_ptr)
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    *success_ptr = true;
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  ref = ref.trim();
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  if (ref.equals_insensitive("false") || ref.equals_insensitive("off") ||
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      ref.equals_insensitive("no") || ref.equals_insensitive("0")) {
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    return false;
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  } else if (ref.equals_insensitive("true") || ref.equals_insensitive("on") ||
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             ref.equals_insensitive("yes") || ref.equals_insensitive("1")) {
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    return true;
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  }
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  if (success_ptr)
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    *success_ptr = false;
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  return fail_value;
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}
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char OptionArgParser::ToChar(llvm::StringRef s, char fail_value,
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                             bool *success_ptr) {
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  if (success_ptr)
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    *success_ptr = false;
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  if (s.size() != 1)
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    return fail_value;
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  if (success_ptr)
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    *success_ptr = true;
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  return s[0];
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}
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int64_t OptionArgParser::ToOptionEnum(llvm::StringRef s,
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                                      const OptionEnumValues &enum_values,
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                                      int32_t fail_value, Status &error) {
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  error.Clear();
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  if (enum_values.empty()) {
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    error.SetErrorString("invalid enumeration argument");
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    return fail_value;
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  }
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  if (s.empty()) {
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    error.SetErrorString("empty enumeration string");
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    return fail_value;
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  }
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  for (const auto &enum_value : enum_values) {
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    llvm::StringRef this_enum(enum_value.string_value);
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    if (this_enum.startswith(s))
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      return enum_value.value;
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  }
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  StreamString strm;
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  strm.PutCString("invalid enumeration value, valid values are: ");
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  bool is_first = true;
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  for (const auto &enum_value : enum_values) {
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    strm.Printf("%s\"%s\"",
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        is_first ? is_first = false,"" : ", ", enum_value.string_value);
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  }
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  error.SetErrorString(strm.GetString());
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  return fail_value;
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}
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Status OptionArgParser::ToFormat(const char *s, lldb::Format &format,
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                                 size_t *byte_size_ptr) {
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  format = eFormatInvalid;
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  Status error;
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  if (s && s[0]) {
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    if (byte_size_ptr) {
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      if (isdigit(s[0])) {
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        char *format_char = nullptr;
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        unsigned long byte_size = ::strtoul(s, &format_char, 0);
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        if (byte_size != ULONG_MAX)
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          *byte_size_ptr = byte_size;
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        s = format_char;
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      } else
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        *byte_size_ptr = 0;
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    }
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    const bool partial_match_ok = true;
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    if (!FormatManager::GetFormatFromCString(s, partial_match_ok, format)) {
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      StreamString error_strm;
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      error_strm.Printf(
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          "Invalid format character or name '%s'. Valid values are:\n", s);
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      for (Format f = eFormatDefault; f < kNumFormats; f = Format(f + 1)) {
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        char format_char = FormatManager::GetFormatAsFormatChar(f);
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        if (format_char)
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          error_strm.Printf("'%c' or ", format_char);
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        error_strm.Printf("\"%s\"", FormatManager::GetFormatAsCString(f));
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        error_strm.EOL();
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      }
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      if (byte_size_ptr)
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        error_strm.PutCString(
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            "An optional byte size can precede the format character.\n");
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      error.SetErrorString(error_strm.GetString());
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    }
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    if (error.Fail())
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      return error;
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  } else {
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    error.SetErrorStringWithFormat("%s option string", s ? "empty" : "invalid");
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  }
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  return error;
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}
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lldb::ScriptLanguage OptionArgParser::ToScriptLanguage(
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    llvm::StringRef s, lldb::ScriptLanguage fail_value, bool *success_ptr) {
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  if (success_ptr)
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    *success_ptr = true;
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  if (s.equals_insensitive("python"))
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    return eScriptLanguagePython;
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  if (s.equals_insensitive("lua"))
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    return eScriptLanguageLua;
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  if (s.equals_insensitive("default"))
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    return eScriptLanguageDefault;
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  if (s.equals_insensitive("none"))
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    return eScriptLanguageNone;
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  if (success_ptr)
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    *success_ptr = false;
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  return fail_value;
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}
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lldb::addr_t OptionArgParser::ToAddress(const ExecutionContext *exe_ctx,
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                                        llvm::StringRef s,
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                                        lldb::addr_t fail_value,
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                                        Status *error_ptr) {
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  bool error_set = false;
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  if (s.empty()) {
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    if (error_ptr)
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      error_ptr->SetErrorStringWithFormat("invalid address expression \"%s\"",
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                                          s.str().c_str());
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    return fail_value;
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  }
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  llvm::StringRef sref = s;
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  lldb::addr_t addr = LLDB_INVALID_ADDRESS;
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  if (!s.getAsInteger(0, addr)) {
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    if (error_ptr)
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      error_ptr->Clear();
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    return addr;
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  }
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  // Try base 16 with no prefix...
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  if (!s.getAsInteger(16, addr)) {
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    if (error_ptr)
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      error_ptr->Clear();
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    return addr;
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  }
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  Target *target = nullptr;
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  if (!exe_ctx || !(target = exe_ctx->GetTargetPtr())) {
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    if (error_ptr)
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      error_ptr->SetErrorStringWithFormat("invalid address expression \"%s\"",
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                                          s.str().c_str());
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    return fail_value;
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  }
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  lldb::ValueObjectSP valobj_sp;
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  EvaluateExpressionOptions options;
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  options.SetCoerceToId(false);
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  options.SetUnwindOnError(true);
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  options.SetKeepInMemory(false);
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  options.SetTryAllThreads(true);
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  ExpressionResults expr_result =
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      target->EvaluateExpression(s, exe_ctx->GetFramePtr(), valobj_sp, options);
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  bool success = false;
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  if (expr_result == eExpressionCompleted) {
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    if (valobj_sp)
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      valobj_sp = valobj_sp->GetQualifiedRepresentationIfAvailable(
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          valobj_sp->GetDynamicValueType(), true);
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    // Get the address to watch.
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    if (valobj_sp)
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      addr = valobj_sp->GetValueAsUnsigned(fail_value, &success);
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    if (success) {
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      if (error_ptr)
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        error_ptr->Clear();
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      return addr;
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    } else {
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      if (error_ptr) {
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        error_set = true;
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        error_ptr->SetErrorStringWithFormat(
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            "address expression \"%s\" resulted in a value whose type "
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            "can't be converted to an address: %s",
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            s.str().c_str(), valobj_sp->GetTypeName().GetCString());
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      }
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    }
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  } else {
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    // Since the compiler can't handle things like "main + 12" we should try to
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    // do this for now. The compiler doesn't like adding offsets to function
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    // pointer types.
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    static RegularExpression g_symbol_plus_offset_regex(
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        "^(.*)([-\\+])[[:space:]]*(0x[0-9A-Fa-f]+|[0-9]+)[[:space:]]*$");
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    llvm::SmallVector<llvm::StringRef, 4> matches;
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    if (g_symbol_plus_offset_regex.Execute(sref, &matches)) {
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      uint64_t offset = 0;
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      std::string name = matches[1].str();
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      std::string sign = matches[2].str();
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      std::string str_offset = matches[3].str();
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      if (!llvm::StringRef(str_offset).getAsInteger(0, offset)) {
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        Status error;
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        addr = ToAddress(exe_ctx, name.c_str(), LLDB_INVALID_ADDRESS, &error);
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        if (addr != LLDB_INVALID_ADDRESS) {
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          if (sign[0] == '+')
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            return addr + offset;
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          else
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            return addr - offset;
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        }
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      }
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    }
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    if (error_ptr) {
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      error_set = true;
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      error_ptr->SetErrorStringWithFormat(
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          "address expression \"%s\" evaluation failed", s.str().c_str());
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    }
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  }
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  if (error_ptr) {
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    if (!error_set)
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      error_ptr->SetErrorStringWithFormat("invalid address expression \"%s\"",
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                                          s.str().c_str());
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  }
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  return fail_value;
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}
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