Fix reading DW_AT_ranges in split dwarf.
Bug: b/280290608, chromium:1448979 Change-Id: I3f9e4c3d62b4c858238ccbbda0366926c306e27f Reviewed-on: https://chromium-review.googlesource.com/c/breakpad/breakpad/+/4568824 Reviewed-by: Joshua Peraza <jperaza@chromium.org>
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6857c7c65f
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7 changed files with 86 additions and 52 deletions
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@ -580,10 +580,10 @@ enum DwarfSectionId {
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DW_SECT_TYPES = 2,
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DW_SECT_ABBREV = 3,
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DW_SECT_LINE = 4,
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DW_SECT_LOC = 5,
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DW_SECT_LOCLISTS = 5,
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DW_SECT_STR_OFFSETS = 6,
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DW_SECT_MACINFO = 7,
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DW_SECT_MACRO = 8
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DW_SECT_MACRO = 7,
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DW_SECT_RNGLISTS = 8
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};
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// Source languages. These are values for DW_AT_language.
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@ -80,7 +80,7 @@ CompilationUnit::CompilationUnit(const string& path,
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str_offsets_buffer_(NULL), str_offsets_buffer_length_(0),
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addr_buffer_(NULL), addr_buffer_length_(0),
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is_split_dwarf_(false), is_type_unit_(false), dwo_id_(0), dwo_name_(),
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skeleton_dwo_id_(0), ranges_base_(0), addr_base_(0),
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skeleton_dwo_id_(0), addr_base_(0),
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str_offsets_base_(0), have_checked_for_dwp_(false),
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should_process_split_dwarf_(false) {}
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@ -91,16 +91,11 @@ CompilationUnit::CompilationUnit(const string& path,
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// the executable file, and call it as if we were still
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// processing the original compilation unit.
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void CompilationUnit::SetSplitDwarf(const uint8_t* addr_buffer,
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uint64_t addr_buffer_length,
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void CompilationUnit::SetSplitDwarf(
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uint64_t addr_base,
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uint64_t ranges_base,
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uint64_t dwo_id) {
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is_split_dwarf_ = true;
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addr_buffer_ = addr_buffer;
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addr_buffer_length_ = addr_buffer_length;
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addr_base_ = addr_base;
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ranges_base_ = ranges_base;
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skeleton_dwo_id_ = dwo_id;
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}
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@ -889,7 +884,9 @@ const uint8_t* CompilationUnit::ProcessDIE(uint64_t dieoffset,
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// DW_AT_str_offsets_base or DW_AT_addr_base. If it does, that attribute must
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// be found and processed before trying to process the other attributes;
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// otherwise the string or address values will all come out incorrect.
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if (abbrev.tag == DW_TAG_compile_unit && header_.version == 5) {
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if ((abbrev.tag == DW_TAG_compile_unit ||
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abbrev.tag == DW_TAG_skeleton_unit) &&
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header_.version == 5) {
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uint64_t dieoffset_copy = dieoffset;
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const uint8_t* start_copy = start;
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for (AttributeList::const_iterator i = abbrev.attributes.begin();
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@ -1016,7 +1013,8 @@ bool CompilationUnit::ProcessSplitDwarf(std::string& split_file,
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string debug_suffix(".debug");
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dwp_path = path_;
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size_t found = path_.rfind(debug_suffix);
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if (found + debug_suffix.length() == path_.length())
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if (found != string::npos &&
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found + debug_suffix.length() == path_.length())
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dwp_path = dwp_path.replace(found, debug_suffix.length(), dwp_suffix);
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}
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if (stat(dwp_path.c_str(), &statbuf) == 0) {
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@ -1133,6 +1131,8 @@ void DwpReader::Initialize() {
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info_data_ = elf_reader_->GetSectionByName(".debug_info.dwo", &info_size_);
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str_offsets_data_ = elf_reader_->GetSectionByName(".debug_str_offsets.dwo",
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&str_offsets_size_);
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rnglist_data_ =
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elf_reader_->GetSectionByName(".debug_rnglists.dwo", &rnglist_size_);
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if (size_table_ >= cu_index_ + cu_index_size_) {
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version_ = 0;
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}
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@ -1245,6 +1245,12 @@ void DwpReader::ReadDebugSectionsForCU(uint64_t dwo_id,
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".debug_str_offsets",
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std::make_pair(reinterpret_cast<const uint8_t*> (str_offsets_data_)
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+ offset, size)));
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} else if (section_id == DW_SECT_RNGLISTS) {
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sections->insert(std::make_pair(
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".debug_rnglists",
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std::make_pair(
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reinterpret_cast<const uint8_t*>(rnglist_data_) + offset,
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size)));
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}
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}
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sections->insert(std::make_pair(
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@ -1830,6 +1836,11 @@ bool RangeListReader::ReadRanges(enum DwarfForm form, uint64_t data) {
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return ReadDebugRngList(data);
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}
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} else if (form == DW_FORM_rnglistx) {
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if (cu_info_->ranges_base_ == 0) {
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// In split dwarf, there's no DW_AT_rnglists_base attribute, range_base
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// will just be the first byte after the header.
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cu_info_->ranges_base_ = reader_->OffsetSize() == 4? 12: 20;
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}
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offset_array_ = cu_info_->ranges_base_;
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uint64_t index_offset = reader_->OffsetSize() * data;
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uint64_t range_list_offset =
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@ -469,8 +469,7 @@ class CompilationUnit {
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// compilation unit. We also inherit the Dwarf2Handler from
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// the executable file, and call it as if we were still
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// processing the original compilation unit.
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void SetSplitDwarf(const uint8_t* addr_buffer, uint64_t addr_buffer_length,
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uint64_t addr_base, uint64_t ranges_base, uint64_t dwo_id);
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void SetSplitDwarf(uint64_t addr_base, uint64_t dwo_id);
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// Begin reading a Dwarf2 compilation unit, and calling the
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// callbacks in the Dwarf2Handler
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@ -493,7 +492,7 @@ class CompilationUnit {
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uint64_t GetAddrBase() { return addr_base_; }
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uint64_t GetRangeBase() { return ranges_base_; }
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uint64_t GetLowPC() { return low_pc_; }
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uint64_t GetDWOID() { return dwo_id_; }
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@ -583,14 +582,8 @@ class CompilationUnit {
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else if (attr == DW_AT_str_offsets_base) {
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str_offsets_base_ = data;
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}
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else if (attr == DW_AT_GNU_ranges_base || attr == DW_AT_rnglists_base) {
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ranges_base_ = data;
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}
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// TODO(yunlian): When we add DW_AT_ranges_base from DWARF-5,
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// that base will apply to DW_AT_ranges attributes in the
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// skeleton CU as well as in the .dwo/.dwp files.
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else if (attr == DW_AT_ranges && is_split_dwarf_) {
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data += ranges_base_;
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else if (attr == DW_AT_low_pc) {
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low_pc_ = data;
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}
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handler_->ProcessAttributeUnsigned(offset, attr, form, data);
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}
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@ -745,10 +738,6 @@ class CompilationUnit {
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// from the skeleton CU.
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uint64_t skeleton_dwo_id_;
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// The value of the DW_AT_GNU_ranges_base or DW_AT_rnglists_base attribute,
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// if any.
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uint64_t ranges_base_;
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// The value of the DW_AT_GNU_addr_base attribute, if any.
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uint64_t addr_base_;
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@ -762,9 +751,12 @@ class CompilationUnit {
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std::unique_ptr<ElfReader> split_elf_reader_;
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// DWP reader.
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std::unique_ptr<DwpReader> dwp_reader_;
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std::unique_ptr<DwpReader> dwp_reader_;
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bool should_process_split_dwarf_;
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bool should_process_split_dwarf_;
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// The value of the DW_AT_low_pc attribute, if any.
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uint64_t low_pc_;
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};
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// A Reader for a .dwp file. Supports the fetching of DWARF debug
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@ -851,6 +843,8 @@ class DwpReader {
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size_t info_size_;
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const char* str_offsets_data_;
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size_t str_offsets_size_;
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const char* rnglist_data_;
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size_t rnglist_size_;
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};
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// This class is a reader for DWARF's Call Frame Information. CFI
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@ -169,19 +169,23 @@ bool DwarfCUToModule::FileContext::IsUnhandledInterCUReference(
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// parsing. This is for data shared across the CU's entire DIE tree,
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// and parameters from the code invoking the CU parser.
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struct DwarfCUToModule::CUContext {
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CUContext(FileContext* file_context_arg, WarningReporter* reporter_arg,
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RangesHandler* ranges_handler_arg)
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CUContext(FileContext* file_context_arg,
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WarningReporter* reporter_arg,
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RangesHandler* ranges_handler_arg,
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uint64_t low_pc,
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uint64_t addr_base)
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: version(0),
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file_context(file_context_arg),
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reporter(reporter_arg),
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ranges_handler(ranges_handler_arg),
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language(Language::CPlusPlus),
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low_pc(0),
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low_pc(low_pc),
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high_pc(0),
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ranges_form(DW_FORM_sec_offset),
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ranges_data(0),
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ranges_base(0),
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str_offsets_base(0) { }
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addr_base(addr_base),
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str_offsets_base(0) {}
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~CUContext() {
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for (vector<Module::Function*>::iterator it = functions.begin();
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@ -854,7 +858,7 @@ void DwarfCUToModule::FuncHandler::Finish() {
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iter->second->name = name_;
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}
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if (!ranges_data_) {
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if (low_pc_ && high_pc_) {
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// Make high_pc_ an address, if it isn't already.
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if (high_pc_form_ != DW_FORM_addr &&
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high_pc_form_ != DW_FORM_GNU_addr_index &&
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@ -868,7 +872,7 @@ void DwarfCUToModule::FuncHandler::Finish() {
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Module::Range range(low_pc_, high_pc_ - low_pc_);
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ranges.push_back(range);
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} else {
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} else if (ranges_data_) {
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RangesHandler* ranges_handler = cu_context_->ranges_handler;
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if (ranges_handler) {
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RangeListReader::CURangesInfo cu_info;
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@ -1069,10 +1073,16 @@ DwarfCUToModule::DwarfCUToModule(FileContext* file_context,
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LineToModuleHandler* line_reader,
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RangesHandler* ranges_handler,
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WarningReporter* reporter,
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bool handle_inline)
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bool handle_inline,
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uint64_t low_pc,
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uint64_t addr_base)
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: RootDIEHandler(handle_inline),
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line_reader_(line_reader),
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cu_context_(new CUContext(file_context, reporter, ranges_handler)),
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cu_context_(new CUContext(file_context,
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reporter,
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ranges_handler,
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low_pc,
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addr_base)),
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child_context_(new DIEContext()),
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has_source_line_info_(false) {}
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@ -264,7 +264,9 @@ class DwarfCUToModule: public RootDIEHandler {
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LineToModuleHandler* line_reader,
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RangesHandler* ranges_handler,
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WarningReporter* reporter,
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bool handle_inline = false);
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bool handle_inline = false,
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uint64_t low_pc = 0,
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uint64_t addr_base = 0);
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~DwarfCUToModule();
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void ProcessAttributeSigned(enum DwarfAttribute attr,
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@ -348,18 +348,27 @@ void StartProcessSplitDwarf(google_breakpad::CompilationUnit* reader,
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return;
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DwarfCUToModule::FileContext file_context(split_file, module,
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handle_inter_cu_refs);
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for (auto section : split_sections)
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file_context.AddSectionToSectionMap(section.first, section.second.first,
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section.second.second);
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// Because DWP/DWO file doesn't have .debug_addr/.debug_line, its debug info
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// will refer to .debug_addr/.debug_line in the main binary.
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if (file_context.section_map().find(".debug_addr") ==
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file_context.section_map().end())
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file_context.AddSectionToSectionMap(".debug_addr", reader->GetAddrBuffer(),
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reader->GetAddrBufferLen());
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DumperRangesHandler ranges_handler(&split_byte_reader);
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DumperLineToModule line_to_module(&split_byte_reader);
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DwarfCUToModule::WarningReporter reporter(split_file, cu_offset);
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DwarfCUToModule root_handler(&file_context, &line_to_module, &ranges_handler,
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&reporter, handle_inline);
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&reporter, handle_inline, reader->GetLowPC(),
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reader->GetAddrBase());
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google_breakpad::DIEDispatcher die_dispatcher(&root_handler);
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google_breakpad::CompilationUnit split_reader(split_file, split_sections,
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cu_offset, &split_byte_reader,
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&die_dispatcher);
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split_reader.SetSplitDwarf(reader->GetAddrBuffer(),
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reader->GetAddrBufferLen(), reader->GetAddrBase(),
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reader->GetRangeBase(), reader->GetDWOID());
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google_breakpad::CompilationUnit split_reader(
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split_file, file_context.section_map(), cu_offset, &split_byte_reader,
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&die_dispatcher);
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split_reader.SetSplitDwarf(reader->GetAddrBase(), reader->GetDWOID());
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split_reader.Start();
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// Normally, it won't happen unless we have transitive reference.
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if (split_reader.ShouldProcessSplitDwarf()) {
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@ -439,18 +439,26 @@ void DumpSymbols::StartProcessSplitDwarf(
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return;
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DwarfCUToModule::FileContext file_context(split_file, module,
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handle_inter_cu_refs);
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for (auto section : split_sections)
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file_context.AddSectionToSectionMap(section.first, section.second.first,
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section.second.second);
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// If DWP/DWO file doesn't have .debug_addr, its debug info will refer to
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// .debug_addr in the main binary.
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if (file_context.section_map().find(".debug_addr") ==
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file_context.section_map().end())
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file_context.AddSectionToSectionMap(".debug_addr", reader->GetAddrBuffer(),
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reader->GetAddrBufferLen());
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DumperRangesHandler ranges_handler(&split_byte_reader);
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DumperLineToModule line_to_module(&split_byte_reader);
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DwarfCUToModule::WarningReporter reporter(split_file, cu_offset);
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DwarfCUToModule root_handler(&file_context, &line_to_module, &ranges_handler,
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&reporter, handle_inline);
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&reporter, handle_inline, reader->GetLowPC(),
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reader->GetAddrBase());
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google_breakpad::DIEDispatcher die_dispatcher(&root_handler);
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google_breakpad::CompilationUnit split_reader(split_file, split_sections,
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cu_offset, &split_byte_reader,
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&die_dispatcher);
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split_reader.SetSplitDwarf(reader->GetAddrBuffer(),
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reader->GetAddrBufferLen(), reader->GetAddrBase(),
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reader->GetRangeBase(), reader->GetDWOID());
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google_breakpad::CompilationUnit split_reader(
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split_file, file_context.section_map(), cu_offset, &split_byte_reader,
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&die_dispatcher);
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split_reader.SetSplitDwarf(reader->GetAddrBase(), reader->GetDWOID());
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split_reader.Start();
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// Normally, it won't happen unless we have transitive reference.
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if (split_reader.ShouldProcessSplitDwarf()) {
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