git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@711 4c0a9323-5329-0410-9bdc-e9ce6186880e
		
			
				
	
	
		
			457 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			457 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
// Copyright (c) 2010 Google Inc.
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// All rights reserved.
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//
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// Redistribution and use in source and binary forms, with or without
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// modification, are permitted provided that the following conditions are
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// met:
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//
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//     * Redistributions of source code must retain the above copyright
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// notice, this list of conditions and the following disclaimer.
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//     * Redistributions in binary form must reproduce the above
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// copyright notice, this list of conditions and the following disclaimer
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// in the documentation and/or other materials provided with the
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// distribution.
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//     * Neither the name of Google Inc. nor the names of its
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// contributors may be used to endorse or promote products derived from
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// this software without specific prior written permission.
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//
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// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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//
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// basic_source_line_resolver.cc: BasicSourceLineResolver implementation.
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//
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// See basic_source_line_resolver.h and basic_source_line_resolver_types.h
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// for documentation.
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#include <stdio.h>
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#include <string.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#include <map>
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#include <utility>
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#include <vector>
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#include "google_breakpad/processor/basic_source_line_resolver.h"
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#include "processor/basic_source_line_resolver_types.h"
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#include "processor/module_factory.h"
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#include "processor/tokenize.h"
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using std::map;
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using std::vector;
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using std::make_pair;
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namespace google_breakpad {
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static const char *kWhitespace = " \r\n";
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BasicSourceLineResolver::BasicSourceLineResolver() :
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    SourceLineResolverBase(new BasicModuleFactory) { }
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void BasicSourceLineResolver::DeleteDataAfterLoad(char *symbol_data) {
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  // Always delete allocated memory after loading symbol.
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  delete symbol_data;
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}
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bool BasicSourceLineResolver::Module::LoadMapFromMemory(char *memory_buffer) {
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  linked_ptr<Function> cur_func;
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  int line_number = 0;
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  char *save_ptr;
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  size_t map_buffer_length = strlen(memory_buffer);
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  // If the length is 0, we can still pretend we have a symbol file. This is
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  // for scenarios that want to test symbol lookup, but don't necessarily care
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  // if certain modules do not have any information, like system libraries.
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  if (map_buffer_length == 0) {
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    return true;
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  }
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  if (memory_buffer[map_buffer_length - 1] == '\n') {
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    memory_buffer[map_buffer_length - 1] = '\0';
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  }
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  char *buffer;
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  buffer = strtok_r(memory_buffer, "\r\n", &save_ptr);
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  while (buffer != NULL) {
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    ++line_number;
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    if (strncmp(buffer, "FILE ", 5) == 0) {
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      if (!ParseFile(buffer)) {
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        BPLOG(ERROR) << "ParseFile on buffer failed at " <<
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            ":" << line_number;
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        return false;
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      }
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    } else if (strncmp(buffer, "STACK ", 6) == 0) {
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      if (!ParseStackInfo(buffer)) {
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        BPLOG(ERROR) << "ParseStackInfo failed at " <<
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            ":" << line_number;
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        return false;
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      }
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    } else if (strncmp(buffer, "FUNC ", 5) == 0) {
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      cur_func.reset(ParseFunction(buffer));
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      if (!cur_func.get()) {
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        BPLOG(ERROR) << "ParseFunction failed at " <<
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            ":" << line_number;
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        return false;
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      }
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      // StoreRange will fail if the function has an invalid address or size.
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      // We'll silently ignore this, the function and any corresponding lines
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      // will be destroyed when cur_func is released.
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      functions_.StoreRange(cur_func->address, cur_func->size, cur_func);
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    } else if (strncmp(buffer, "PUBLIC ", 7) == 0) {
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      // Clear cur_func: public symbols don't contain line number information.
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      cur_func.reset();
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      if (!ParsePublicSymbol(buffer)) {
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        BPLOG(ERROR) << "ParsePublicSymbol failed at " <<
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            ":" << line_number;
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        return false;
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      }
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    } else if (strncmp(buffer, "MODULE ", 7) == 0) {
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      // Ignore these.  They're not of any use to BasicSourceLineResolver,
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      // which is fed modules by a SymbolSupplier.  These lines are present to
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      // aid other tools in properly placing symbol files so that they can
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      // be accessed by a SymbolSupplier.
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      //
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      // MODULE <guid> <age> <filename>
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    } else if (strncmp(buffer, "INFO ", 5) == 0) {
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      // Ignore these as well, they're similarly just for housekeeping.
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      //
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      // INFO CODE_ID <code id> <filename>
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    } else {
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      if (!cur_func.get()) {
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        BPLOG(ERROR) << "Found source line data without a function at " <<
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            ":" << line_number;
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        return false;
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      }
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      Line *line = ParseLine(buffer);
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      if (!line) {
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        BPLOG(ERROR) << "ParseLine failed at " << line_number << " for " <<
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            buffer;
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        return false;
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      }
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      cur_func->lines.StoreRange(line->address, line->size,
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                                 linked_ptr<Line>(line));
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    }
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    buffer = strtok_r(NULL, "\r\n", &save_ptr);
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  }
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  return true;
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}
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void BasicSourceLineResolver::Module::LookupAddress(StackFrame *frame) const {
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  MemAddr address = frame->instruction - frame->module->base_address();
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  // First, look for a FUNC record that covers address. Use
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  // RetrieveNearestRange instead of RetrieveRange so that, if there
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  // is no such function, we can use the next function to bound the
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  // extent of the PUBLIC symbol we find, below. This does mean we
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  // need to check that address indeed falls within the function we
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  // find; do the range comparison in an overflow-friendly way.
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  linked_ptr<Function> func;
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  linked_ptr<PublicSymbol> public_symbol;
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  MemAddr function_base;
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  MemAddr function_size;
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  MemAddr public_address;
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  if (functions_.RetrieveNearestRange(address, &func,
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                                      &function_base, &function_size) &&
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      address >= function_base && address - function_base < function_size) {
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    frame->function_name = func->name;
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    frame->function_base = frame->module->base_address() + function_base;
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    linked_ptr<Line> line;
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    MemAddr line_base;
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    if (func->lines.RetrieveRange(address, &line, &line_base, NULL)) {
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      FileMap::const_iterator it = files_.find(line->source_file_id);
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      if (it != files_.end()) {
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        frame->source_file_name = files_.find(line->source_file_id)->second;
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      }
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      frame->source_line = line->line;
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      frame->source_line_base = frame->module->base_address() + line_base;
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    }
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  } else if (public_symbols_.Retrieve(address,
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                                      &public_symbol, &public_address) &&
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             (!func.get() || public_address > function_base)) {
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    frame->function_name = public_symbol->name;
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    frame->function_base = frame->module->base_address() + public_address;
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  }
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}
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WindowsFrameInfo *BasicSourceLineResolver::Module::FindWindowsFrameInfo(
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    const StackFrame *frame) const {
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  MemAddr address = frame->instruction - frame->module->base_address();
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  scoped_ptr<WindowsFrameInfo> result(new WindowsFrameInfo());
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  // We only know about WindowsFrameInfo::STACK_INFO_FRAME_DATA and
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  // WindowsFrameInfo::STACK_INFO_FPO. Prefer them in this order.
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  // WindowsFrameInfo::STACK_INFO_FRAME_DATA is the newer type that
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  // includes its own program string.
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  // WindowsFrameInfo::STACK_INFO_FPO is the older type
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  // corresponding to the FPO_DATA struct. See stackwalker_x86.cc.
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  linked_ptr<WindowsFrameInfo> frame_info;
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  if ((windows_frame_info_[WindowsFrameInfo::STACK_INFO_FRAME_DATA]
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       .RetrieveRange(address, &frame_info))
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      || (windows_frame_info_[WindowsFrameInfo::STACK_INFO_FPO]
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          .RetrieveRange(address, &frame_info))) {
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    result->CopyFrom(*frame_info.get());
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    return result.release();
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  }
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  // Even without a relevant STACK line, many functions contain
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  // information about how much space their parameters consume on the
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  // stack. Use RetrieveNearestRange instead of RetrieveRange, so that
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  // we can use the function to bound the extent of the PUBLIC symbol,
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  // below. However, this does mean we need to check that ADDRESS
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  // falls within the retrieved function's range; do the range
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  // comparison in an overflow-friendly way.
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  linked_ptr<Function> function;
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  MemAddr function_base, function_size;
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  if (functions_.RetrieveNearestRange(address, &function,
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                                      &function_base, &function_size) &&
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      address >= function_base && address - function_base < function_size) {
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    result->parameter_size = function->parameter_size;
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    result->valid |= WindowsFrameInfo::VALID_PARAMETER_SIZE;
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    return result.release();
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  }
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  // PUBLIC symbols might have a parameter size. Use the function we
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  // found above to limit the range the public symbol covers.
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  linked_ptr<PublicSymbol> public_symbol;
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  MemAddr public_address;
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  if (public_symbols_.Retrieve(address, &public_symbol, &public_address) &&
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      (!function.get() || public_address > function_base)) {
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    result->parameter_size = public_symbol->parameter_size;
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  }
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  return NULL;
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}
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CFIFrameInfo *BasicSourceLineResolver::Module::FindCFIFrameInfo(
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    const StackFrame *frame) const {
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  MemAddr address = frame->instruction - frame->module->base_address();
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  MemAddr initial_base, initial_size;
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  string initial_rules;
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  // Find the initial rule whose range covers this address. That
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  // provides an initial set of register recovery rules. Then, walk
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  // forward from the initial rule's starting address to frame's
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  // instruction address, applying delta rules.
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  if (!cfi_initial_rules_.RetrieveRange(address, &initial_rules,
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                                        &initial_base, &initial_size)) {
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    return NULL;
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  }
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  // Create a frame info structure, and populate it with the rules from
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  // the STACK CFI INIT record.
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  scoped_ptr<CFIFrameInfo> rules(new CFIFrameInfo());
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  if (!ParseCFIRuleSet(initial_rules, rules.get()))
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    return NULL;
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  // Find the first delta rule that falls within the initial rule's range.
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  map<MemAddr, string>::const_iterator delta =
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    cfi_delta_rules_.lower_bound(initial_base);
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  // Apply delta rules up to and including the frame's address.
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  while (delta != cfi_delta_rules_.end() && delta->first <= address) {
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    ParseCFIRuleSet(delta->second, rules.get());
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    delta++;
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  }
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  return rules.release();
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}
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bool BasicSourceLineResolver::Module::ParseFile(char *file_line) {
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  // FILE <id> <filename>
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  file_line += 5;  // skip prefix
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  vector<char*> tokens;
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  if (!Tokenize(file_line, kWhitespace, 2, &tokens)) {
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    return false;
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  }
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  int index = atoi(tokens[0]);
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  if (index < 0) {
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    return false;
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  }
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  char *filename = tokens[1];
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  if (!filename) {
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    return false;
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  }
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  files_.insert(make_pair(index, string(filename)));
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  return true;
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}
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BasicSourceLineResolver::Function*
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BasicSourceLineResolver::Module::ParseFunction(char *function_line) {
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  // FUNC <address> <size> <stack_param_size> <name>
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  function_line += 5;  // skip prefix
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  vector<char*> tokens;
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  if (!Tokenize(function_line, kWhitespace, 4, &tokens)) {
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    return NULL;
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  }
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  u_int64_t address    = strtoull(tokens[0], NULL, 16);
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  u_int64_t size       = strtoull(tokens[1], NULL, 16);
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  int stack_param_size = strtoull(tokens[2], NULL, 16);
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  char *name           = tokens[3];
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  return new Function(name, address, size, stack_param_size);
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}
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BasicSourceLineResolver::Line* BasicSourceLineResolver::Module::ParseLine(
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    char *line_line) {
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  // <address> <line number> <source file id>
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  vector<char*> tokens;
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  if (!Tokenize(line_line, kWhitespace, 4, &tokens)) {
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    return NULL;
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  }
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  u_int64_t address = strtoull(tokens[0], NULL, 16);
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  u_int64_t size    = strtoull(tokens[1], NULL, 16);
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  int line_number   = atoi(tokens[2]);
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  int source_file   = atoi(tokens[3]);
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  if (line_number <= 0) {
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    return NULL;
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  }
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  return new Line(address, size, source_file, line_number);
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}
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bool BasicSourceLineResolver::Module::ParsePublicSymbol(char *public_line) {
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  // PUBLIC <address> <stack_param_size> <name>
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  // Skip "PUBLIC " prefix.
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  public_line += 7;
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  vector<char*> tokens;
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  if (!Tokenize(public_line, kWhitespace, 3, &tokens)) {
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    return false;
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  }
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  u_int64_t address    = strtoull(tokens[0], NULL, 16);
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  int stack_param_size = strtoull(tokens[1], NULL, 16);
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  char *name           = tokens[2];
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  // A few public symbols show up with an address of 0.  This has been seen
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  // in the dumped output of ntdll.pdb for symbols such as _CIlog, _CIpow,
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  // RtlDescribeChunkLZNT1, and RtlReserveChunkLZNT1.  They would conflict
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  // with one another if they were allowed into the public_symbols_ map,
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  // but since the address is obviously invalid, gracefully accept them
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  // as input without putting them into the map.
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  if (address == 0) {
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    return true;
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  }
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  linked_ptr<PublicSymbol> symbol(new PublicSymbol(name, address,
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                                                   stack_param_size));
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  return public_symbols_.Store(address, symbol);
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}
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bool BasicSourceLineResolver::Module::ParseStackInfo(char *stack_info_line) {
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  // Skip "STACK " prefix.
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  stack_info_line += 6;
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  // Find the token indicating what sort of stack frame walking
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  // information this is.
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  while (*stack_info_line == ' ')
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    stack_info_line++;
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  const char *platform = stack_info_line;
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  while (!strchr(kWhitespace, *stack_info_line))
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    stack_info_line++;
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  *stack_info_line++ = '\0';
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  // MSVC stack frame info.
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  if (strcmp(platform, "WIN") == 0) {
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    int type = 0;
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    u_int64_t rva, code_size;
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    linked_ptr<WindowsFrameInfo>
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      stack_frame_info(WindowsFrameInfo::ParseFromString(stack_info_line,
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                                                         type,
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                                                         rva,
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                                                         code_size));
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    if (stack_frame_info == NULL)
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      return false;
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    // TODO(mmentovai): I wanted to use StoreRange's return value as this
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    // method's return value, but MSVC infrequently outputs stack info that
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    // violates the containment rules.  This happens with a section of code
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    // in strncpy_s in test_app.cc (testdata/minidump2).  There, problem looks
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    // like this:
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    //   STACK WIN 4 4242 1a a 0 ...  (STACK WIN 4 base size prolog 0 ...)
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    //   STACK WIN 4 4243 2e 9 0 ...
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    // ContainedRangeMap treats these two blocks as conflicting.  In reality,
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    // when the prolog lengths are taken into account, the actual code of
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    // these blocks doesn't conflict.  However, we can't take the prolog lengths
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    // into account directly here because we'd wind up with a different set
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    // of range conflicts when MSVC outputs stack info like this:
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    //   STACK WIN 4 1040 73 33 0 ...
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    //   STACK WIN 4 105a 59 19 0 ...
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    // because in both of these entries, the beginning of the code after the
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    // prolog is at 0x1073, and the last byte of contained code is at 0x10b2.
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    // Perhaps we could get away with storing ranges by rva + prolog_size
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    // if ContainedRangeMap were modified to allow replacement of
 | 
						|
    // already-stored values.
 | 
						|
 | 
						|
    windows_frame_info_[type].StoreRange(rva, code_size, stack_frame_info);
 | 
						|
    return true;
 | 
						|
  } else if (strcmp(platform, "CFI") == 0) {
 | 
						|
    // DWARF CFI stack frame info
 | 
						|
    return ParseCFIFrameInfo(stack_info_line);
 | 
						|
  } else {
 | 
						|
    // Something unrecognized.
 | 
						|
    return false;
 | 
						|
  }
 | 
						|
}
 | 
						|
 | 
						|
bool BasicSourceLineResolver::Module::ParseCFIFrameInfo(
 | 
						|
    char *stack_info_line) {
 | 
						|
  char *cursor;
 | 
						|
 | 
						|
  // Is this an INIT record or a delta record?
 | 
						|
  char *init_or_address = strtok_r(stack_info_line, " \r\n", &cursor);
 | 
						|
  if (!init_or_address)
 | 
						|
    return false;
 | 
						|
 | 
						|
  if (strcmp(init_or_address, "INIT") == 0) {
 | 
						|
    // This record has the form "STACK INIT <address> <size> <rules...>".
 | 
						|
    char *address_field = strtok_r(NULL, " \r\n", &cursor);
 | 
						|
    if (!address_field) return false;
 | 
						|
 | 
						|
    char *size_field = strtok_r(NULL, " \r\n", &cursor);
 | 
						|
    if (!size_field) return false;
 | 
						|
 | 
						|
    char *initial_rules = strtok_r(NULL, "\r\n", &cursor);
 | 
						|
    if (!initial_rules) return false;
 | 
						|
 | 
						|
    MemAddr address = strtoul(address_field, NULL, 16);
 | 
						|
    MemAddr size    = strtoul(size_field,    NULL, 16);
 | 
						|
    cfi_initial_rules_.StoreRange(address, size, initial_rules);
 | 
						|
    return true;
 | 
						|
  }
 | 
						|
 | 
						|
  // This record has the form "STACK <address> <rules...>".
 | 
						|
  char *address_field = init_or_address;
 | 
						|
  char *delta_rules = strtok_r(NULL, "\r\n", &cursor);
 | 
						|
  if (!delta_rules) return false;
 | 
						|
  MemAddr address = strtoul(address_field, NULL, 16);
 | 
						|
  cfi_delta_rules_[address] = delta_rules;
 | 
						|
  return true;
 | 
						|
}
 | 
						|
 | 
						|
}  // namespace google_breakpad
 |