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ROSE: an open source compiler framework to generate source-to-source analyzers and translators for C/C++ and Fortran, developed at Lawrence Livermore National Laboratory MILEPOST GCC : interactive plugin-based open-source research compiler that combines the strength of GCC and the flexibility of the common Interactive Compilation Interface that ...
Scala (programming language) Seed7; Self (programming language) Small Device C Compiler; Smalltalk; SmartEiffel; StaDyn (programming language) Stalin (Scheme implementation) Standard ML of New Jersey; Steel Bank Common Lisp; SWI-Prolog
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
Microchip's Free MPLAB ® XC32++ Compiler for All 32-bit PIC32 MCUs Offers Unlimited Code Generation Free C++ Compiler Enables Maximum Code Re-use, is Standards Compliant for Commercial ...
No (Cross compiler planned) Yes (Cross compiler) cross-compiles for Android and iOS: C++ and Object Pascal: Yes Yes Yes Yes (AQTime Standard in package manager) Yes Yes Yes Yes Yes 2017-03 Tokyo 10.2 Yes Yes Yes Code::Blocks: GPL: Yes Yes Yes FreeBSD, OpenBSD, Solaris: C++: Yes Yes Yes Yes Yes Yes Yes Yes [7] Yes 2020-05 [8] Yes (MinGW + custom)
Code::Blocks is a free, open-source, cross-platform IDE that supports multiple compilers including GCC, Clang and Visual C++. It is developed in C++ using wxWidgets as the GUI toolkit. Using a plugin architecture, its capabilities and features are defined by the provided plugins. Currently, Code::Blocks is oriented towards C, C++, and Fortran.
Dev-C++ is a free full-featured integrated development environment (IDE) distributed under the GNU General Public License for programming in C and C++. It was originally developed by Colin Laplace and was first released in 1998.
GCC follows the 3-stage architecture typical of multi-language and multi-CPU compilers. All program trees are converted to a common abstract representation at the "middle end", allowing code optimization and binary code generation facilities to be shared by all languages. GCC's external interface follows Unix conventions.