Pin was originally created as a tool for computer architecture analysis, but its flexible API and an active community (called " Pinheads") have created a diverse set of tools for security, emulation and parallel program analysis. Limited access to symbol and debug information is available as well. Pin automatically saves and restores the registers that are overwritten by the injected code so the application continues to work. Pin provides a rich API that abstracts away the underlying instruction-set idiosyncrasies and allows context information such as register contents to be passed to the injected code as parameters. Thus, it requires no recompiling of source code and can support instrumenting programs that dynamically generate code. As a dynamic binary instrumentation tool, instrumentation is performed at run time on the compiled binary files. The tools created using Pin, called Pintools, can be used to perform program analysis on user space applications on Linux*, Windows* and macOS*. Some tools built with Pin are Intel® VTune™ Amplifier, Intel® Inspector, Intel® Advisor and Intel® Software Development Emulator (Intel® SDE). Pin is a dynamic binary instrumentation framework for the IA-32, x86-64 and MIC instruction-set architectures that enables the creation of dynamic program analysis tools.
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