Foundations Of Linux Debugging Disassembling And Reversing

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Practical Foundations of Linux Debugging, Disassembling, Reversing

This training course is a Linux version of the previous Practical Foundations of Windows Debugging, Disassembly, Reversing book. It also complements Accelerated Linux Core Dump Analysis training course. Although the book skeleton is the same as its Windows predecessor, the content was revised entirely because of a different operating system, debugger (GDB), toolchain (GCC, assembler, linker), application binary interface, and even an assembly language flavor, AT&T. The course is useful for: Software technical support and escalation engineers Software engineers coming from JVM background Software testers Engineers coming from non-Linux environments, for example, Windows or Mac OS X Linux C/C++ software engineers without assembly language background Security researchers without assembly language background Beginners learning Linux software reverse engineering techniques This book can also be used as x64 assembly language and Linux debugging supplement for relevant undergraduate level courses.
Foundations of Linux Debugging, Disassembling, and Reversing

Review topics ranging from Intel x64 assembly language instructions and writing programs in assembly language, to pointers, live debugging, and static binary analysis of compiled C and C++ code. This book is ideal for Linux desktop and cloud developers. Using the latest version of Debian, you’ll focus on the foundations of the diagnostics of core memory dumps, live and postmortem debugging of Linux applications, services, and systems, memory forensics, malware, and vulnerability analysis. This requires an understanding of x64 Intel assembly language and how C and C++ compilers generate code, including memory layout and pointers. This book provides the background knowledge and practical foundations you’ll need in order to master internal Linux program structure and behavior. It consists of practical step-by-step exercises of increasing complexity with explanations and ample diagrams. You’ll also work with the GDB debugger and use it for disassembly and reversing. By the end of the book, you will have a solid understanding of how Linux C and C++ compilers generate binary code. In addition, you will be able to analyze such code confidently, understand stack memory usage, and reconstruct original C/C++ code. Foundations of Linux Debugging, Disassembling, and Reversing is the perfect companion to Foundations of ARM64 Linux Debugging, Disassembling, and Reversing for readers interested in the cloud or cybersecurity. What You'll Learn Review the basics of x64 assembly language Examine the essential GDB debugger commands for debugging and binary analysis Study C and C++ compiler code generation with and without compiler optimizations Look at binary code disassembly and reversing patterns See how pointers in C and C++ are implemented and used Who This Book Is For Software support and escalation engineers, cloud security engineers, site reliability engineers, DevSecOps, platform engineers, software testers, Linux C/C++ software engineers and security researchers without Intel x64 assembly language background, beginners learning Linux software reverse engineering techniques, and engineers coming from non-Linux environments.
Practical Foundations of ARM64 Linux Debugging, Disassembling, Reversing

This training course is a Linux ARM64 (A64) version of the previous Practical Foundations of Linux Debugging, Disassembly, Reversing book. It also complements Accelerated Linux Core Dump Analysis training course. The book skeleton is the same as its x64 Linux predecessor, but the content was revised entirely because of a different Linux distribution and CPU architecture. The course is useful for: - Software support and escalation engineers, cloud security engineers, SRE, and DevSecOps; - Software engineers coming from JVM background; - Software testers; - Engineers coming from non-Linux environments, for example, Windows or Mac OS X; - Engineers coming from non-ARM environments, for example, x86/x64; - Linux C/C++ software engineers without assembly language background; - Security researchers without assembly language background; - Beginners learning Linux software reverse engineering techniques. This book can also be used as an ARM64 assembly language and Linux debugging supplement for relevant undergraduate-level courses.