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Refactor .so name detection logic in minidump/linux_dumper.
This is a refactoring of the logic which determines the module name and path for a given MappingInfo in minidump_writer.cc. Such logic, which will be soon shared also with the upcoming microdump_writer.cc, is simply being moved to linux_dumper.cc, extracting a GetMappingEffectiveNameAndPath method. No behavioral change is intended. BUG=chromium:410294 R=thestig@chromium.org Review URL: https://breakpad.appspot.com/7734002 git-svn-id: http://google-breakpad.googlecode.com/svn/trunk@1392 4c0a9323-5329-0410-9bdc-e9ce6186880e
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@ -184,10 +184,12 @@ bool ElfFileSoNameFromMappedFile(
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// Did not find SONAME
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return false;
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}
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} // namespace
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// static
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bool LinuxDumper::ElfFileSoName(
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// Find the shared object name (SONAME) by examining the ELF information
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// for |mapping|. If the SONAME is found copy it into the passed buffer
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// |soname| and return true. The size of the buffer is |soname_size|.
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// The SONAME will be truncated if it is too long to fit in the buffer.
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bool ElfFileSoName(
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const MappingInfo& mapping, char* soname, size_t soname_size) {
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if (IsMappedFileOpenUnsafe(mapping)) {
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// Not safe
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@ -214,6 +216,44 @@ bool LinuxDumper::ElfFileSoName(
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return ElfFileSoNameFromMappedFile(mapped_file.data(), soname, soname_size);
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}
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} // namespace
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// static
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void LinuxDumper::GetMappingEffectiveNameAndPath(const MappingInfo& mapping,
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char* file_path,
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size_t file_path_size,
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char* file_name,
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size_t file_name_size) {
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my_strlcpy(file_path, mapping.name, file_path_size);
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// If an executable is mapped from a non-zero offset, this is likely because
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// the executable was loaded directly from inside an archive file (e.g., an
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// apk on Android). We try to find the name of the shared object (SONAME) by
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// looking in the file for ELF sections.
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bool mapped_from_archive = false;
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if (mapping.exec && mapping.offset != 0)
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mapped_from_archive = ElfFileSoName(mapping, file_name, file_name_size);
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if (mapped_from_archive) {
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// Some tools (e.g., stackwalk) extract the basename from the pathname. In
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// this case, we append the file_name to the mapped archive path as follows:
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// file_name := libname.so
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// file_path := /path/to/ARCHIVE.APK/libname.so
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if (my_strlen(file_path) + 1 + my_strlen(file_name) < file_path_size) {
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my_strlcat(file_path, "/", file_path_size);
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my_strlcat(file_path, file_name, file_path_size);
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}
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} else {
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// Common case:
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// file_path := /path/to/libname.so
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// file_name := libname.so
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const char* basename = my_strrchr(file_path, '/');
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basename = basename == NULL ? file_path : (basename + 1);
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my_strlcpy(file_name, basename, file_name_size);
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}
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}
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bool LinuxDumper::ReadAuxv() {
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char auxv_path[NAME_MAX];
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if (!BuildProcPath(auxv_path, pid_, "auxv")) {
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@ -111,19 +111,13 @@ class LinuxDumper {
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virtual bool BuildProcPath(char* path, pid_t pid, const char* node) const = 0;
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// Generate a File ID from the .text section of a mapped entry.
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// If not a member, mapping_id is ignored.
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// If not a member, mapping_id is ignored. This method can also manipulate the
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// |mapping|.name to truncate "(deleted)" from the file name if necessary.
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bool ElfFileIdentifierForMapping(const MappingInfo& mapping,
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bool member,
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unsigned int mapping_id,
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uint8_t identifier[sizeof(MDGUID)]);
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// Find the shared object name (SONAME) by examining the ELF information
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// for |mapping|. If the SONAME is found copy it into the passed buffer
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// |soname| and return true. The size of the buffer is |soname_size|.
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// The SONAME will be truncated if it is too long to fit in the buffer.
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static bool ElfFileSoName(
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const MappingInfo& mapping, char* soname, size_t soname_size);
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uintptr_t crash_address() const { return crash_address_; }
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void set_crash_address(uintptr_t crash_address) {
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crash_address_ = crash_address;
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@ -135,6 +129,17 @@ class LinuxDumper {
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pid_t crash_thread() const { return crash_thread_; }
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void set_crash_thread(pid_t crash_thread) { crash_thread_ = crash_thread; }
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// Extracts the effective path and file name of from |mapping|. In most cases
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// the effective name/path are just the mapping's path and basename. In some
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// other cases, however, a library can be mapped from an archive (e.g., when
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// loading .so libs from an apk on Android) and this method is able to
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// reconstruct the original file name.
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static void GetMappingEffectiveNameAndPath(const MappingInfo& mapping,
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char* file_path,
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size_t file_path_size,
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char* file_name,
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size_t file_name_size);
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protected:
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bool ReadAuxv();
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@ -540,49 +540,9 @@ class MinidumpWriter {
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mod.base_of_image = mapping.start_addr;
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mod.size_of_image = mapping.size;
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const char* filepath_ptr = mapping.name;
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size_t filepath_len = my_strlen(mapping.name);
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// Figure out file name from path
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const char* filename_ptr = mapping.name + filepath_len - 1;
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while (filename_ptr >= mapping.name) {
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if (*filename_ptr == '/')
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break;
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filename_ptr--;
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}
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filename_ptr++;
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size_t filename_len = mapping.name + filepath_len - filename_ptr;
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// If an executable is mapped from a non-zero offset, this is likely
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// because the executable was loaded directly from inside an archive
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// file. We try to find the name of the shared object (SONAME) by
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// looking in the file for ELF sections.
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char soname[NAME_MAX];
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char pathname[NAME_MAX];
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if (mapping.exec && mapping.offset != 0 &&
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LinuxDumper::ElfFileSoName(mapping, soname, sizeof(soname))) {
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filename_ptr = soname;
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filename_len = my_strlen(soname);
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if (filepath_len + filename_len + 1 < NAME_MAX) {
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// It doesn't have a real pathname, but tools such as stackwalk
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// extract the basename, so simulating a pathname is helpful.
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my_memcpy(pathname, filepath_ptr, filepath_len);
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pathname[filepath_len] = '/';
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my_memcpy(pathname + filepath_len + 1, filename_ptr, filename_len);
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pathname[filepath_len + filename_len + 1] = '\0';
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filepath_ptr = pathname;
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filepath_len = filepath_len + filename_len + 1;
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}
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}
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uint8_t cv_buf[MDCVInfoPDB70_minsize + NAME_MAX];
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uint8_t* cv_ptr = cv_buf;
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UntypedMDRVA cv(&minidump_writer_);
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if (!cv.Allocate(MDCVInfoPDB70_minsize + filename_len + 1))
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return false;
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const uint32_t cv_signature = MD_CVINFOPDB70_SIGNATURE;
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my_memcpy(cv_ptr, &cv_signature, sizeof(cv_signature));
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@ -593,20 +553,31 @@ class MinidumpWriter {
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// GUID was provided by caller.
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my_memcpy(signature, identifier, sizeof(MDGUID));
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} else {
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// Note: ElfFileIdentifierForMapping() can manipulate the |mapping.name|.
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dumper_->ElfFileIdentifierForMapping(mapping, member,
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mapping_id, signature);
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}
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my_memset(cv_ptr, 0, sizeof(uint32_t)); // Set age to 0 on Linux.
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cv_ptr += sizeof(uint32_t);
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char file_name[NAME_MAX];
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char file_path[NAME_MAX];
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LinuxDumper::GetMappingEffectiveNameAndPath(
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mapping, file_path, sizeof(file_path), file_name, sizeof(file_name));
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const size_t file_name_len = my_strlen(file_name);
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UntypedMDRVA cv(&minidump_writer_);
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if (!cv.Allocate(MDCVInfoPDB70_minsize + file_name_len + 1))
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return false;
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// Write pdb_file_name
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my_memcpy(cv_ptr, filename_ptr, filename_len + 1);
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cv.Copy(cv_buf, MDCVInfoPDB70_minsize + filename_len + 1);
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my_memcpy(cv_ptr, file_name, file_name_len + 1);
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cv.Copy(cv_buf, MDCVInfoPDB70_minsize + file_name_len + 1);
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mod.cv_record = cv.location();
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MDLocationDescriptor ld;
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if (!minidump_writer_.WriteString(filepath_ptr, filepath_len, &ld))
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if (!minidump_writer_.WriteString(file_path, my_strlen(file_path), &ld))
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return false;
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mod.module_name_rva = ld.rva;
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return true;
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