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2f6cffa676
This is a follow-up to 0fc1b6ae780e7ba854652bd5581f936abf824a5e. The change in macOS 14's dyld to insert new modules in the front of `dyld_all_image_infos` means that if any images are loaded after the executable and its direct dependencies, it's no longer possible to rotate the list to match the order used by the `dyld_get_image...` APIs. This forces us to dispense with checking the order at all except to ensure that the executable is first, and dyld itself is last. Additionally fixes an unreachable return introduced in 0fc1b6ae780e7ba854652bd5581f936abf824a5e. Bug: chromium:1452203 Change-Id: If0b09b9110d8f60d29cca79ea6a59050b0293c5e Reviewed-on: https://chromium-review.googlesource.com/c/crashpad/crashpad/+/4935952 Commit-Queue: Leonard Grey <lgrey@chromium.org> Reviewed-by: Mark Mentovai <mark@chromium.org>
298 lines
11 KiB
C++
298 lines
11 KiB
C++
// Copyright 2014 The Crashpad Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#include "snapshot/mac/mach_o_image_segment_reader.h"
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#include <Availability.h>
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#include <mach-o/loader.h>
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#include <string.h>
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#include <utility>
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#include "base/logging.h"
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#include "base/strings/stringprintf.h"
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#include "build/build_config.h"
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#include "snapshot/mac/process_reader_mac.h"
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#include "util/mac/checked_mach_address_range.h"
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#include "util/mac/mac_util.h"
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#include "util/stdlib/strnlen.h"
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namespace crashpad {
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namespace {
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std::string SizeLimitedCString(const char* c_string, size_t max_length) {
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return std::string(c_string, strnlen(c_string, max_length));
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}
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} // namespace
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bool IsMalformedCLKernelsModule(uint32_t mach_o_file_type,
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const std::string& module_name) {
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#if defined(ARCH_CPU_X86_FAMILY)
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if (mach_o_file_type != MH_BUNDLE) {
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return false;
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}
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if (module_name == "cl_kernels") {
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return __MAC_OS_X_VERSION_MIN_REQUIRED >= __MAC_10_10 ||
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MacOSVersionNumber() >= 10'10'00;
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}
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static const char kCvmsObjectPathPrefix[] =
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"/private/var/db/CVMS/cvmsCodeSignObj";
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return module_name.compare(
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0, strlen(kCvmsObjectPathPrefix), kCvmsObjectPathPrefix) == 0 &&
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(__MAC_OS_X_VERSION_MIN_REQUIRED >= __MAC_10_14 ||
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MacOSVersionNumber() >= 10'14'00);
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#else
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return false;
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#endif // ARCH_CPU_X86_FAMILY
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}
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MachOImageSegmentReader::MachOImageSegmentReader()
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: segment_command_(),
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sections_(),
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section_map_(),
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slide_(0),
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initialized_(),
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initialized_slide_() {
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}
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MachOImageSegmentReader::~MachOImageSegmentReader() {
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}
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bool MachOImageSegmentReader::Initialize(ProcessReaderMac* process_reader,
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mach_vm_address_t load_command_address,
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const std::string& load_command_info,
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const std::string& module_name,
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uint32_t file_type) {
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INITIALIZATION_STATE_SET_INITIALIZING(initialized_);
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if (!segment_command_.Read(process_reader, load_command_address)) {
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LOG(WARNING) << "could not read segment_command" << load_command_info;
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return false;
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}
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const uint32_t kExpectedSegmentCommand =
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process_reader->Is64Bit() ? LC_SEGMENT_64 : LC_SEGMENT;
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DCHECK_EQ(segment_command_.cmd, kExpectedSegmentCommand);
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DCHECK_GE(segment_command_.cmdsize, segment_command_.Size());
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const size_t kSectionStructSize =
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process_types::section::ExpectedSize(process_reader);
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const size_t kRequiredSize =
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segment_command_.Size() + segment_command_.nsects * kSectionStructSize;
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if (segment_command_.cmdsize < kRequiredSize) {
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LOG(WARNING) << base::StringPrintf(
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"segment command cmdsize 0x%x insufficient for %u "
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"section%s (0x%zx)",
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segment_command_.cmdsize,
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segment_command_.nsects,
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segment_command_.nsects == 1 ? "" : "s",
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kRequiredSize) << load_command_info;
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return false;
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}
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std::string segment_name = NameInternal();
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std::string segment_info = base::StringPrintf(
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", segment %s%s", segment_name.c_str(), load_command_info.c_str());
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// This checks the unslid segment range. The slid range (as loaded into
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// memory) will be checked later by MachOImageReader.
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CheckedMachAddressRange segment_range(process_reader->Is64Bit(),
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segment_command_.vmaddr,
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segment_command_.vmsize);
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if (!segment_range.IsValid()) {
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LOG(WARNING) << base::StringPrintf("invalid segment range 0x%llx + 0x%llx",
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segment_command_.vmaddr,
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segment_command_.vmsize) << segment_info;
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return false;
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}
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sections_.resize(segment_command_.nsects);
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if (!sections_.empty() &&
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!process_types::section::ReadArrayInto(
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process_reader,
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load_command_address + segment_command_.Size(),
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segment_command_.nsects,
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§ions_[0])) {
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LOG(WARNING) << "could not read sections" << segment_info;
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return false;
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}
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for (size_t section_index = 0;
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section_index < sections_.size();
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++section_index) {
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const process_types::section& section = sections_[section_index];
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std::string section_segment_name = SegmentNameString(section.segname);
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std::string section_name = SectionNameString(section.sectname);
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std::string section_full_name =
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SegmentAndSectionNameString(section.segname, section.sectname);
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std::string section_info = base::StringPrintf(", section %s %zu/%zu%s",
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section_full_name.c_str(),
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section_index,
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sections_.size(),
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load_command_info.c_str());
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// cl_kernels modules (for OpenCL) aren’t ld output, and they’re formatted
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// incorrectly on OS X 10.10 and later. Because at least one cl_kernels
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// module will commonly be found in a process, and sometimes more will be,
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// tolerate this quirk.
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//
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// https://openradar.appspot.com/20239912
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if (section_segment_name != segment_name &&
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!(IsMalformedCLKernelsModule(file_type, module_name) &&
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segment_name == SEG_TEXT && section_segment_name == "__LD" &&
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section_name == "__compact_unwind" &&
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(section.flags & S_ATTR_DEBUG))) {
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LOG(WARNING) << "section.segname incorrect in segment " << segment_name
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<< section_info;
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return false;
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}
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CheckedMachAddressRange section_range(
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process_reader->Is64Bit(), section.addr, section.size);
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if (!section_range.IsValid()) {
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LOG(WARNING) << base::StringPrintf(
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"invalid section range 0x%llx + 0x%llx",
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section.addr,
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section.size) << section_info;
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return false;
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}
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if (!segment_range.ContainsRange(section_range)) {
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LOG(WARNING) << base::StringPrintf(
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"section at 0x%llx + 0x%llx outside of segment at "
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"0x%llx + 0x%llx",
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section.addr,
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section.size,
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segment_command_.vmaddr,
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segment_command_.vmsize) << section_info;
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return false;
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}
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const auto insert_result =
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section_map_.insert(std::make_pair(section_name, section_index));
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if (!insert_result.second) {
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LOG(WARNING) << base::StringPrintf("duplicate section name at %zu",
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insert_result.first->second)
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<< section_info;
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return false;
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}
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}
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INITIALIZATION_STATE_SET_VALID(initialized_);
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return true;
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}
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std::string MachOImageSegmentReader::Name() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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return NameInternal();
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}
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mach_vm_address_t MachOImageSegmentReader::Address() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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INITIALIZATION_STATE_DCHECK_VALID(initialized_slide_);
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return vmaddr() + (SegmentSlides() ? slide_ : 0);
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}
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mach_vm_size_t MachOImageSegmentReader::Size() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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INITIALIZATION_STATE_DCHECK_VALID(initialized_slide_);
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return vmsize() + (SegmentSlides() ? 0 : slide_);
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}
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const process_types::section* MachOImageSegmentReader::GetSectionByName(
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const std::string& section_name,
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mach_vm_address_t* address) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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const auto& iterator = section_map_.find(section_name);
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if (iterator == section_map_.end()) {
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return nullptr;
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}
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return GetSectionAtIndex(iterator->second, address);
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}
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const process_types::section* MachOImageSegmentReader::GetSectionAtIndex(
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size_t index,
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mach_vm_address_t* address) const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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CHECK_LT(index, sections_.size());
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const process_types::section* section = §ions_[index];
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if (address) {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_slide_);
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*address = section->addr + (SegmentSlides() ? slide_ : 0);
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}
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return section;
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}
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bool MachOImageSegmentReader::SegmentSlides() const {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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// These are the same rules that the kernel uses to identify __PAGEZERO. See
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// 10.9.4 xnu-2422.110.17/bsd/kern/mach_loader.c load_segment().
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return !(segment_command_.vmaddr == 0 && segment_command_.filesize == 0 &&
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segment_command_.vmsize != 0 &&
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(segment_command_.initprot & VM_PROT_ALL) == VM_PROT_NONE &&
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(segment_command_.maxprot & VM_PROT_ALL) == VM_PROT_NONE);
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}
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// static
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std::string MachOImageSegmentReader::SegmentNameString(
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const char* segment_name_c) {
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// This is used to interpret the segname field of both the segment_command and
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// section structures, so be sure that they’re identical.
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static_assert(sizeof(process_types::segment_command::segname) ==
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sizeof(process_types::section::segname),
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"sizes must be equal");
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return SizeLimitedCString(segment_name_c,
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sizeof(process_types::segment_command::segname));
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}
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// static
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std::string MachOImageSegmentReader::SectionNameString(
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const char* section_name_c) {
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return SizeLimitedCString(section_name_c,
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sizeof(process_types::section::sectname));
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}
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// static
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std::string MachOImageSegmentReader::SegmentAndSectionNameString(
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const char* segment_name_c,
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const char* section_name_c) {
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return base::StringPrintf("%s,%s",
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SegmentNameString(segment_name_c).c_str(),
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SectionNameString(section_name_c).c_str());
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}
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std::string MachOImageSegmentReader::NameInternal() const {
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return SegmentNameString(segment_command_.segname);
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}
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void MachOImageSegmentReader::SetSlide(mach_vm_size_t slide) {
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INITIALIZATION_STATE_DCHECK_VALID(initialized_);
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INITIALIZATION_STATE_SET_INITIALIZING(initialized_slide_);
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slide_ = slide;
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INITIALIZATION_STATE_SET_VALID(initialized_slide_);
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}
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} // namespace crashpad
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