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sed -i '' -E -e 's/Copyright (.+) The Crashpad Authors\. All rights reserved\.$/Copyright \1 The Crashpad Authors/' $(git grep -El 'Copyright (.+) The Crashpad Authors\. All rights reserved\.$') Bug: chromium:1098010 Change-Id: I8d6138469ddbe3d281a5d83f64cf918ec2491611 Reviewed-on: https://chromium-review.googlesource.com/c/crashpad/crashpad/+/3878262 Reviewed-by: Joshua Peraza <jperaza@chromium.org> Commit-Queue: Mark Mentovai <mark@chromium.org>
358 lines
17 KiB
C++
358 lines
17 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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#ifndef CRASHPAD_SNAPSHOT_MAC_MACH_O_IMAGE_READER_H_
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#define CRASHPAD_SNAPSHOT_MAC_MACH_O_IMAGE_READER_H_
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#include <mach/mach.h>
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#include <stdint.h>
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#include <sys/types.h>
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#include <map>
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#include <memory>
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#include <string>
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#include <vector>
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#include "snapshot/mac/process_types.h"
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#include "util/misc/initialization_state_dcheck.h"
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#include "util/misc/uuid.h"
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namespace crashpad {
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class MachOImageSegmentReader;
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class MachOImageSymbolTableReader;
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class ProcessReaderMac;
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//! \brief A reader for Mach-O images mapped into another process.
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//!
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//! This class is capable of reading both 32-bit (`mach_header`/`MH_MAGIC`) and
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//! 64-bit (`mach_header_64`/`MH_MAGIC_64`) images based on the bitness of the
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//! remote process.
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//!
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//! \sa MachOImageAnnotationsReader
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class MachOImageReader {
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public:
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MachOImageReader();
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MachOImageReader(const MachOImageReader&) = delete;
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MachOImageReader& operator=(const MachOImageReader&) = delete;
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~MachOImageReader();
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//! \brief Reads the Mach-O image file’s load commands from another process.
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//!
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//! This method must only be called once on an object. This method must be
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//! called successfully before any other method in this class may be called.
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//!
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//! \param[in] process_reader The reader for the remote process.
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//! \param[in] address The address, in the remote process’ address space,
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//! where the `mach_header` or `mach_header_64` at the beginning of the
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//! image to be read is located. This address can be determined by reading
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//! the remote process’ dyld information (see
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//! snapshot/mac/process_types/dyld_images.proctype).
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//! \param[in] name The module’s name, a string to be used in logged messages.
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//! This string is for diagnostic purposes and to relax otherwise strict
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//! parsing rules for common modules with known defects.
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//!
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//! \return `true` if the image was read successfully, including all load
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//! commands. `false` otherwise, with an appropriate message logged.
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bool Initialize(ProcessReaderMac* process_reader,
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mach_vm_address_t address,
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const std::string& name);
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//! \brief Returns the Mach-O file type.
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//!
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//! This value comes from the `filetype` field of the `mach_header` or
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//! `mach_header_64`. Common values include `MH_EXECUTE`, `MH_DYLIB`,
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//! `MH_DYLINKER`, and `MH_BUNDLE`.
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uint32_t FileType() const { return file_type_; }
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//! \brief Returns the Mach-O image’s load address.
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//!
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//! This is the value passed as \a address to Initialize().
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mach_vm_address_t Address() const { return address_; }
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//! \brief Returns the mapped size of the Mach-O image’s `__TEXT` segment.
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//!
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//! Note that this is returns only the size of the `__TEXT` segment, not of
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//! any other segment. This is because the interface only allows one load
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//! address and size to be reported, but Mach-O image files may consist of
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//! multiple discontiguous segments. By convention, the `__TEXT` segment is
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//! always mapped at the beginning of a Mach-O image file, and it is the most
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//! useful for the expected intended purpose of collecting data to obtain
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//! stack backtraces. The implementation insists during initialization that
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//! the `__TEXT` segment be mapped at the beginning of the file.
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//!
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//! In practice, discontiguous segments are only found for images that have
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//! loaded out of the dyld shared cache, but the `__TEXT` segment’s size is
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//! returned for modules that loaded with contiguous segments as well for
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//! consistency.
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mach_vm_size_t Size() const { return size_; }
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//! \brief Returns the Mach-O image’s “slide,” the difference between its
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//! actual load address and its preferred load address.
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//!
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//! “Slide” is computed by subtracting the `__TEXT` segment’s preferred load
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//! address from its actual load address. It will be reported as a positive
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//! offset when the actual load address is greater than the preferred load
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//! address. The preferred load address is taken to be the segment’s reported
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//! `vmaddr` value.
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mach_vm_size_t Slide() const { return slide_; }
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//! \brief Obtain segment information by segment name.
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//!
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//! \param[in] segment_name The name of the segment to search for, for
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//! example, `"__TEXT"`.
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//!
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//! \return A pointer to the segment information if it was found, or `nullptr`
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//! if it was not found. The caller does not take ownership; the lifetime
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//! of the returned object is scoped to the lifetime of this
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//! MachOImageReader object.
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const MachOImageSegmentReader* GetSegmentByName(
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const std::string& segment_name) const;
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//! \brief Obtain section information by segment and section name.
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//!
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//! \param[in] segment_name The name of the segment to search for, for
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//! example, `"__TEXT"`.
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//! \param[in] section_name The name of the section within the segment to
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//! search for, for example, `"__text"`.
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//! \param[out] address The actual address that the section was loaded at in
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//! memory, taking any “slide” into account if the section did not load at
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//! its preferred address as stored in the Mach-O image file. This
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//! parameter can be `nullptr`.
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//!
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//! \return A pointer to the section information if it was found, or `nullptr`
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//! if it was not found. The caller does not take ownership; the lifetime
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//! of the returned object is scoped to the lifetime of this
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//! MachOImageReader object.
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//!
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//! No parameter is provided for the section’s size, because it can be
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//! obtained from the returned process_types::section::size field.
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//!
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//! \note The process_types::section::addr field gives the section’s preferred
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//! load address as stored in the Mach-O image file, and is not adjusted
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//! for any “slide” that may have occurred when the image was loaded. Use
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//! \a address to obtain the section’s actual load address.
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const process_types::section* GetSectionByName(
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const std::string& segment_name,
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const std::string& section_name,
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mach_vm_address_t* address) const;
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//! \brief Obtain section information by section index.
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//!
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//! \param[in] index The index of the section to return, in the order that it
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//! appears in the segment load commands. This is a 1-based index,
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//! matching the section number values used for `nlist::n_sect`.
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//! \param[out] containing_segment The segment that contains the section.
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//! This parameter can be `nullptr`. The caller does not take ownership;
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//! the lifetime of the returned object is scoped to the lifetime of this
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//! MachOImageReader object.
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//! \param[out] address The actual address that the section was loaded at in
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//! memory, taking any “slide” into account if the section did not load at
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//! its preferred address as stored in the Mach-O image file. This
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//! parameter can be `nullptr`.
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//!
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//! \return A pointer to the section information. If \a index is out of range,
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//! logs a warning and returns `nullptr`. The caller does not take
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//! ownership; the lifetime of the returned object is scoped to the
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//! lifetime of this MachOImageReader object.
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//!
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//! No parameter is provided for the section’s size, because it can be
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//! obtained from the returned process_types::section::size field.
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//!
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//! \note The process_types::section::addr field gives the section’s preferred
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//! load address as stored in the Mach-O image file, and is not adjusted
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//! for any “slide” that may have occurred when the image was loaded. Use
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//! \a address to obtain the section’s actual load address.
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//! \note Unlike MachOImageSegmentReader::GetSectionAtIndex(), this method
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//! accepts out-of-range values for \a index, and returns `nullptr`
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//! instead of aborting execution upon encountering an out-of-range value.
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//! This is because a Mach-O image file’s symbol table refers to this
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//! per-module section index, and an out-of-range index in that case
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//! should be treated as a data error (where the data is beyond this
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//! code’s control) and handled non-fatally by reporting the error to the
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//! caller.
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const process_types::section* GetSectionAtIndex(
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size_t index,
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const MachOImageSegmentReader** containing_segment,
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mach_vm_address_t* address) const;
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//! \brief Looks up a symbol in the image’s symbol table.
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//!
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//! This method is capable of locating external defined symbols. Specifically,
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//! this method can look up symbols that have these charcteristics:
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//! - `N_STAB` (debugging) and `N_PEXT` (private external) must not be set.
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//! - `N_EXT` (external) must be set.
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//! - The type must be `N_ABS` (absolute) or `N_SECT` (defined in section).
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//!
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//! `N_INDR` (indirect), `N_UNDF` (undefined), and `N_PBUD` (prebound
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//! undefined) symbols cannot be located through this mechanism.
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//!
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//! \param[in] name The name of the symbol to look up, “mangled” or
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//! “decorated” appropriately. For example, use `"_main"` to look up the
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//! symbol for the C `main()` function, and use `"__Z4Funcv"` to look up
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//! the symbol for the C++ `Func()` function. Contrary to `dlsym()`, the
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//! leading underscore must not be stripped when using this interface.
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//! \param[out] value If the lookup was successful, this will be set to the
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//! value of the symbol, adjusted for any “slide” as needed. The value can
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//! be used as an address in the remote process’ address space where the
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//! pointee of the symbol exists in memory.
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//!
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//! \return `true` if the symbol lookup was successful and the symbol was
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//! found. `false` otherwise, including error conditions (for which a
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//! warning message will be logged), modules without symbol tables, and
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//! symbol names not found in the symbol table.
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//!
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//! \note Symbol values returned via this interface are adjusted for “slide”
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//! as appropriate, in contrast to the underlying implementation,
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//! MachOImageSymbolTableReader::LookUpExternalDefinedSymbol().
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//!
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//! \warning Symbols that are resolved by running symbol resolvers
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//! (`.symbol_resolver`) are not properly handled by this interface. The
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//! address of the symbol resolver is returned because that’s what shows
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//! up in the symbol table, rather than the effective address of the
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//! resolved symbol as used by dyld after running the resolver. The only
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//! way to detect this situation would be to read the `LC_DYLD_INFO` or
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//! `LC_DYLD_INFO_ONLY` load command if present and looking for the
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//! `EXPORT_SYMBOL_FLAGS_STUB_AND_RESOLVER` flag, but that would just be
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//! able to detect symbols with a resolver, it would not be able to
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//! resolve them from out-of-process, so it’s not currently done.
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bool LookUpExternalDefinedSymbol(const std::string& name,
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mach_vm_address_t* value) const;
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//! \brief Returns a Mach-O dylib image’s current version.
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//!
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//! This information comes from the `dylib_current_version` field of a dylib’s
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//! `LC_ID_DYLIB` load command. For dylibs without this load command, `0` will
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//! be returned.
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//!
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//! This method may only be called on Mach-O images for which FileType()
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//! returns `MH_DYLIB`.
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uint32_t DylibVersion() const;
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//! \brief Returns a Mach-O image’s source version.
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//!
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//! This information comes from a Mach-O image’s `LC_SOURCE_VERSION` load
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//! command. For Mach-O images without this load command, `0` will be
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//! returned.
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uint64_t SourceVersion() const { return source_version_; }
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//! \brief Returns a Mach-O image’s UUID.
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//!
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//! This information comes from a Mach-O image’s `LC_UUID` load command. For
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//! Mach-O images without this load command, a zeroed-out UUID value will be
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//! returned.
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//
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// UUID is a name in this scope (referring to this method), so the parameter’s
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// type needs to be qualified with |crashpad::|.
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void UUID(crashpad::UUID* uuid) const;
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//! \brief Returns the dynamic linker’s pathname.
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//!
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//! The dynamic linker is normally /usr/lib/dyld.
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//!
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//! For executable images (those with file type `MH_EXECUTE`), this is the
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//! name provided in the `LC_LOAD_DYLINKER` load command, if any. For dynamic
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//! linker images (those with file type `MH_DYLINKER`), this is the name
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//! provided in the `LC_ID_DYLINKER` load command. In other cases, this will
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//! be empty.
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std::string DylinkerName() const { return dylinker_name_; }
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//! \brief Obtains the module’s CrashpadInfo structure.
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//!
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//! \return `true` on success, `false` on failure. If the module does not have
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//! a `__DATA,crashpad_info` section, this will return `false` without
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//! logging any messages. Other failures will result in messages being
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//! logged.
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bool GetCrashpadInfo(process_types::CrashpadInfo* crashpad_info) const;
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private:
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// A generic helper routine for the other Read*Command() methods.
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template <typename T>
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bool ReadLoadCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info,
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uint32_t expected_load_command_id,
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T* load_command);
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// The Read*Command() methods are subroutines called by Initialize(). They are
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// responsible for reading a single load command. They may update the member
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// fields of their MachOImageReader object. If they can’t make sense of a load
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// command, they return false.
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bool ReadSegmentCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadSymTabCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadDySymTabCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadIdDylibCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadDylinkerCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadUUIDCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadSourceVersionCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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bool ReadUnexpectedCommand(mach_vm_address_t load_command_address,
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const std::string& load_command_info);
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// Performs deferred initialization of the symbol table. Because a module’s
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// symbol table is often not needed, this is not handled in Initialize(), but
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// is done lazily, on-demand as needed.
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//
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// symbol_table_initialized_ will be transitioned to the appropriate state. If
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// initialization completes successfully, this will be the valid state.
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// Otherwise, it will be left in the invalid state and a warning message will
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// be logged.
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//
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// Note that if the object contains no symbol table, symbol_table_initialized_
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// will be set to the valid state, but symbol_table_ will be nullptr.
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void InitializeSymbolTable() const;
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std::vector<std::unique_ptr<MachOImageSegmentReader>> segments_;
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std::map<std::string, size_t> segment_map_;
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std::string module_name_;
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std::string module_info_;
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std::string dylinker_name_;
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crashpad::UUID uuid_;
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mach_vm_address_t address_;
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mach_vm_size_t size_;
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mach_vm_size_t slide_;
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uint64_t source_version_;
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std::unique_ptr<process_types::symtab_command> symtab_command_;
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std::unique_ptr<process_types::dysymtab_command> dysymtab_command_;
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// symbol_table_ (and symbol_table_initialized_) are mutable in order to
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// maintain LookUpExternalDefinedSymbol() as a const interface while allowing
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// lazy initialization via InitializeSymbolTable(). This is logical
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// const-ness, not physical const-ness.
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mutable std::unique_ptr<MachOImageSymbolTableReader> symbol_table_;
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std::unique_ptr<process_types::dylib_command> id_dylib_command_;
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ProcessReaderMac* process_reader_; // weak
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uint32_t file_type_;
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InitializationStateDcheck initialized_;
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// symbol_table_initialized_ protects symbol_table_: symbol_table_ can only
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// be used when symbol_table_initialized_ is valid, although
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// symbol_table_initialized_ being valid doesn’t imply that symbol_table_ is
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// set. symbol_table_initialized_ will be valid without symbol_table_ being
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// set in modules that have no symbol table.
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mutable InitializationState symbol_table_initialized_;
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};
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} // namespace crashpad
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#endif // CRASHPAD_SNAPSHOT_MAC_MACH_O_IMAGE_READER_H_
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