常见二进制文件格式
探索 ELF、PE 和 Mach-O 等常见可执行文件格式的结构及其关键节。
常见二进制文件格式 是 CoddyKit 上的免费 Reverse Engineering & Binary Analysis Basics 课时。 这是第 3 节课,共 4 节。 你可以在下方免费阅读本课时的完整内容 — 然后在浏览器中使用内置代码编辑器和全天候 AI 导师进行实践。 这是 Reverse Engineering & Binary Analysis Basics 学习路径的一部分,你的进度在网页和 CoddyKit 应用中同步。 Reverse Engineering & Binary Analysis Basics 课程共包含 4 节课。
本课时的部分内容尚未翻译,以英文显示。
What are Binary Formats?
When you compile a program, it becomes a binary file. This isn't just a random collection of bytes! It's structured in a specific way, following a binary file format.
These formats are like blueprints. They tell the operating system (OS) how to load, link, and execute the program correctly. Understanding them is crucial for reverse engineering.
Why File Formats are Key
Binary formats define where different parts of a program live: the actual executable code, initialized data, read-only data, resources, and more.
As a reverse engineer, knowing the file format allows you to navigate the binary, locate functions, extract strings, and identify important data structures within the file.
ELF: Linux & Unix Standard
The Executable and Linkable Format (ELF) is the standard binary format for Unix-like systems, including Linux, FreeBSD, and Solaris. It's highly flexible and used for executables, shared libraries, object code, and core dumps.
Its design allows for efficient loading and execution on various architectures.
Inside an ELF File
Key components of an ELF file include:
- ELF Header: Contains metadata like architecture, entry point address, and version.
- Program Header Table: Describes how the OS should load segments (collections of sections) into memory.
- Section Header Table: Details all the sections within the file.
- .text: Holds the program's executable machine code.
- .data: Stores initialized global and static variables.
- .rodata: Contains read-only data, such as string literals.
PE: The Windows Standard
The Portable Executable (PE) format is the standard binary format for 32-bit and 64-bit Windows operating systems. It's used for executables (.exe), DLLs (.dll), and object files.
PE is a modified version of the Common Object File Format (COFF) and plays a similar role to ELF on Windows.
Inside a PE File
Key components of a PE file include:
- DOS Header: A small header for backward compatibility with MS-DOS.
- PE Header: Contains the 'PE\0\0' signature and file header information.
- Optional Header: Crucial for loading, contains the entry point address, image base, and section alignment info.
- Section Table: Lists and describes all the sections in the PE file.
- .text: Contains the executable machine code.
- .data: Stores initialized global and static data.
- .rsrc: Holds application resources like icons, menus, and dialogs.
Mach-O: macOS & iOS
Mach-O (Mach Object) is the native executable format for Apple operating systems, including macOS, iOS, watchOS, and tvOS. It's based on the Mach kernel's object format.
Mach-O files are typically identified by their 'magic number' at the beginning of the file, similar to ELF and PE.
Inside a Mach-O File
Key components of a Mach-O file include:
- Mach-O Header: Specifies the target architecture (e.g., x86_64, ARM64) and the number of load commands.
- Load Commands: These are critical! They tell the dynamic linker how to set up the process, including defining segments, specifying shared libraries, and setting the entry point.
- __TEXT segment: Contains the executable code and read-only data.
- __DATA segment: Holds writable data.
- __LINKEDIT segment: Contains symbol and string tables used for dynamic linking.
Key Differences at a Glance
While all three formats organize code and data, they have distinct characteristics:
- ELF: Highly flexible, uses Program and Section Header Tables for loading and structure. Common on Linux/Unix.
- PE: Windows-specific, includes a legacy DOS header, and relies heavily on the Optional Header for loading details.
- Mach-O: Apple OS, its Load Commands are central to how the OS and dynamic linker process the binary.
Each is optimized for its respective OS environment.
Test Your Knowledge
Which of the following sections or segments are primarily responsible for storing the program's executable machine code in their respective binary file formats?
Recap: Binary Format Basics
We've explored three crucial binary file formats:
- ELF: Standard for Linux/Unix, with headers and sections like
.textand.data. - PE: Standard for Windows, featuring DOS, PE, and Optional Headers, and sections like
.textand.rsrc. - Mach-O: Standard for Apple OS, utilizing a header and critical Load Commands to define segments like
__TEXTand__DATA.
Understanding these structures is fundamental for effective reverse engineering!
常见问题解答
「常见二进制文件格式」课时是免费的吗?
是的 — 「常见二进制文件格式」的完整文本可在网页上免费阅读。要进行交互式练习(内置代码编辑器和全天候 AI 导师)并解锁 Reverse Engineering & Binary Analysis Basics 课程的其余内容,请升级到 CoddyKit PRO。 Reverse Engineering & Binary Analysis Basics 课程共包含 4 节课。
「常见二进制文件格式」这节课中我会学到什么?
探索 ELF、PE 和 Mach-O 等常见可执行文件格式的结构及其关键节。 你通过在浏览器中直接运行的动手代码来练习 Reverse Engineering & Binary Analysis Basics,全天候 AI 导师会在你学习这节课的过程中回答你的问题。
学习 Reverse Engineering & Binary Analysis Basics 需要有经验吗?
无需任何先前经验。CoddyKit 上的 Reverse Engineering & Binary Analysis Basics 课程适合初学者到高级学习者,你可以从这里开始或从头开始,按照自己的节奏学习。 这是第 3 节课,共 4 节。
「常见二进制文件格式」课时需要多长时间?
大多数 CoddyKit 课程大约需要 5–10 分钟。每节课都很精短且互动,所以你能稳步进步,并在网页和应用中从离开的地方继续。
我能在这节 Reverse Engineering & Binary Analysis Basics 课中编写并运行代码吗?
能。每节 Reverse Engineering & Binary Analysis Basics 课都包含内置代码编辑器,你可以在浏览器中直接编写并运行真实代码,并获得即时 AI 反馈 — 无需本地设置。
此课程中的所有课时
- CPU 架构概览
- 二进制文件中的数据表示
- 常见二进制文件格式
- 字节序与字节排列