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  2. Self-modifying code - Wikipedia

    en.wikipedia.org/wiki/Self-modifying_code

    The Linux kernel notably makes wide use of self-modifying code; it does so to be able to distribute a single binary image for each major architecture (e.g. IA-32, x86-64, 32-bit ARM, ARM64...) while adapting the kernel code in memory during boot depending on the specific CPU model detected, e.g. to be able to take advantage of new CPU ...

  3. Segmentation fault - Wikipedia

    en.wikipedia.org/wiki/Segmentation_fault

    Here is an example of ANSI C code that will generally cause a segmentation fault on platforms with memory protection. It attempts to modify a string literal, which is undefined behavior according to the ANSI C standard. Most compilers will not catch this at compile time, and instead compile this to executable code that will crash:

  4. glibc - Wikipedia

    en.wikipedia.org/wiki/Glibc

    [21] glibc 2.0 also had better internationalisation and more in-depth translation, IPv6 capability, 64-bit data access, facilities for multithreaded applications, future version compatibility, and the code was more portable. [22] The last-used version of Linux libc used the internal name libc.so.5. Following on from this, glibc 2.x on Linux ...

  5. Linux kernel - Wikipedia

    en.wikipedia.org/wiki/Linux_kernel

    The Linux kernel is a free and open source, [11]: 4 Unix-like kernel that is used in many computer systems worldwide. The kernel was created by Linus Torvalds in 1991 and was soon adopted as the kernel for the GNU operating system (OS) which was created to be a free replacement for Unix.

  6. Buildroot - Wikipedia

    en.wikipedia.org/wiki/Buildroot

    Buildroot is a set of Makefiles and patches that simplifies and automates the process of building a complete and bootable Linux environment for an embedded system, while using cross-compilation to allow building for multiple target platforms on a single Linux-based development system.

  7. Clang - Wikipedia

    en.wikipedia.org/wiki/Clang

    Clang becomes default compiler for Android [53] (and later only compiler supported by Android NDK [54]). 13 March 2017 Clang 4.0.0 released: 26 July 2017: Clang becomes default compiler in OpenBSD 6.2 on amd64/i386. [55] 7 September 2017 Clang 5.0.0 released: 19 January 2018: Clang becomes default compiler in OpenBSD 6.3 on arm. [56] 5 March 2018

  8. List of ARM Cortex-M development tools - Wikipedia

    en.wikipedia.org/wiki/List_of_ARM_Cortex-M...

    Embeetle IDE - free, fast (non-eclipse) IDE. Works both on Linux and Windows. [16] emIDE by emide – free Visual Studio Style IDE including GNU Tools for ARM [17] GNU ARM Eclipse – A family of Eclipse CDT extensions and tools for GNU ARM development [13] GNU Tools (aka GCC) for ARM Embedded Processors by ARM Ltd – free GCC for bare metal ...

  9. Application binary interface - Wikipedia

    en.wikipedia.org/wiki/Application_binary_interface

    A high-level comparison of in-kernel and kernel-to-userspace APIs and ABIs The Linux kernel and GNU C Library define the Linux API. After compilation, the binaries offer an ABI. Keeping this ABI stable over a long time is important for ISVs. In computer software, an application binary interface (ABI) is an interface between two binary program ...