Check sh_type for symbol table and finish ProcessDIEs if any DIE processing goes wrong
- If symbol table section is malformed, skip them. - SkipDIE and ProcessDIE return nullptr when processing goes wrong due to malformed debug info, stop processing in this case. Bug: 1349354 Change-Id: Ia1d3e3591bbd2dad8b9eb351c1882cfc03bfad4b Reviewed-on: https://chromium-review.googlesource.com/c/breakpad/breakpad/+/3821448 Reviewed-by: Joshua Peraza <jperaza@chromium.org>
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7e4ea04094
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2 changed files with 39 additions and 14 deletions
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@ -927,7 +927,7 @@ void CompilationUnit::ProcessDIEs() {
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lengthstart += 4;
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std::stack<uint64_t> die_stack;
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while (dieptr < (lengthstart + header_.length)) {
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// We give the user the absolute offset from the beginning of
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// debug_info, since they need it to deal with ref_addr forms.
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@ -953,8 +953,22 @@ void CompilationUnit::ProcessDIEs() {
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const enum DwarfTag tag = abbrev.tag;
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if (!handler_->StartDIE(absolute_offset, tag)) {
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dieptr = SkipDIE(dieptr, abbrev);
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if (!dieptr) {
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fprintf(stderr,
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"An error happens when skipping a DIE's attributes at offset "
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"%lx. Stopped processing following DIEs in this CU.\n",
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absolute_offset);
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exit(1);
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}
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} else {
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dieptr = ProcessDIE(absolute_offset, dieptr, abbrev);
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if (!dieptr) {
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fprintf(stderr,
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"An error happens when processing a DIE at offset %lx. Stopped "
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"processing following DIEs in this CU.\n",
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absolute_offset);
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exit(1);
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}
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}
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if (abbrev.has_children) {
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@ -1718,7 +1732,7 @@ bool LineInfo::ProcessOneOpcode(ByteReader* reader,
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oplen += templen;
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if (handler) {
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handler->DefineFile(filename, -1, static_cast<uint32_t>(dirindex),
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handler->DefineFile(filename, -1, static_cast<uint32_t>(dirindex),
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mod_time, filelength);
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}
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}
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@ -1780,7 +1794,7 @@ void LineInfo::ReadLines() {
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pending_file_num, pending_line_num,
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pending_column_num);
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if (lsm.end_sequence) {
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lsm.Reset(header_.default_is_stmt);
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lsm.Reset(header_.default_is_stmt);
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have_pending_line = false;
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} else {
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pending_address = lsm.address;
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@ -2267,7 +2281,7 @@ class CallFrameInfo::State {
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// report the problem to reporter_ and return false.
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bool InterpretFDE(const FDE& fde);
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private:
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private:
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// The operands of a CFI instruction, for ParseOperands.
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struct Operands {
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unsigned register_number; // A register number.
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@ -2528,19 +2542,19 @@ bool CallFrameInfo::State::DoInstruction() {
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if (!ParseOperands("1", &ops)) return false;
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address_ += ops.offset * cie->code_alignment_factor;
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break;
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// Advance the address.
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case DW_CFA_advance_loc2:
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if (!ParseOperands("2", &ops)) return false;
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address_ += ops.offset * cie->code_alignment_factor;
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break;
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// Advance the address.
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case DW_CFA_advance_loc4:
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if (!ParseOperands("4", &ops)) return false;
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address_ += ops.offset * cie->code_alignment_factor;
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break;
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// Advance the address.
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case DW_CFA_MIPS_advance_loc8:
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if (!ParseOperands("8", &ops)) return false;
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@ -2850,7 +2864,7 @@ bool CallFrameInfo::ReadEntryPrologue(const uint8_t* cursor, Entry* entry) {
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// Validate the length.
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if (length > size_t(buffer_end - cursor))
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return ReportIncomplete(entry);
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// The length is the number of bytes after the initial length field;
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// we have that position handy at this point, so compute the end
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// now. (If we're parsing 64-bit-offset DWARF on a 32-bit machine,
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@ -2892,7 +2906,7 @@ bool CallFrameInfo::ReadEntryPrologue(const uint8_t* cursor, Entry* entry) {
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// Now advance cursor past the id.
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cursor += offset_size;
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// The fields specific to this kind of entry start here.
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entry->fields = cursor;
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@ -3120,7 +3134,7 @@ bool CallFrameInfo::ReadFDEFields(FDE* fde) {
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if (size_t(fde->end - cursor) < size + data_size)
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return ReportIncomplete(fde);
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cursor += size;
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// In the abstract, we should walk the augmentation string, and extract
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// items from the FDE's augmentation data as we encounter augmentation
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// string characters that specify their presence: the ordering of items
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@ -3158,7 +3172,7 @@ bool CallFrameInfo::ReadFDEFields(FDE* fde) {
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return true;
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}
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bool CallFrameInfo::Start() {
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const uint8_t* buffer_end = buffer_ + buffer_length_;
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const uint8_t* cursor;
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@ -3215,7 +3229,7 @@ bool CallFrameInfo::Start() {
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reporter_->CIEPointerOutOfRange(fde.offset, fde.id);
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continue;
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}
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CIE cie;
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// Parse this FDE's CIE header.
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@ -3254,7 +3268,7 @@ bool CallFrameInfo::Start() {
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ok = true;
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continue;
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}
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if (cie.has_z_augmentation) {
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// Report the personality routine address, if we have one.
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if (cie.has_z_personality) {
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@ -196,6 +196,17 @@ class ElfSectionReader {
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// to process its contents.
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if (header_.sh_type == SHT_NOBITS || header_.sh_size == 0)
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return;
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// extra sh_type check for string table.
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if ((std::strcmp(name, ".strtab") == 0 ||
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std::strcmp(name, ".shstrtab") == 0) &&
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header_.sh_type != SHT_STRTAB) {
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fprintf(stderr,
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"Invalid sh_type for string table section: expected "
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"SHT_STRTAB or SHT_DYNSYM, but got %d\n",
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header_.sh_type);
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return;
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}
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contents_aligned_ = mmap(NULL, size_aligned_, PROT_READ, MAP_SHARED,
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fd, offset_aligned);
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// Set where the offset really should begin.
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@ -877,7 +888,7 @@ class ElfReaderImpl {
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if (reader == NULL)
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reader = new ElfSectionReader<ElfArch>(name, path_, fd_,
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section_headers_[num]);
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return reader;
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return reader->contents() ? reader : nullptr;
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}
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// Parse out the overall header information from the file and assert
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