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Marius Gerbershagen 0b5ea3868d tests: move interrupt tests to stress test suite
These tests are not guaranteed to succeed but are still useful
to check for regressions for those configurations for which
thread synchronization primitives are interrupt safe.
2023-08-13 22:26:53 +02:00
contrib contrib: cl-simd: remove unnecessary quotes 2023-08-01 17:34:41 +02:00
examples Update asdf_with_dependence example readme 2023-07-09 18:04:35 +00:00
msvc dependencies: update bdwgc to 8.2.4 and libatomic_ops to 7.8.0 2023-06-12 10:33:47 +02:00
src tests: move interrupt tests to stress test suite 2023-08-13 22:26:53 +02:00
.gitignore .gitignore: add the directory /local as ignored 2023-05-22 10:16:39 +02:00
.gitlab-ci.yml Add .gitlab-ci.yml 2017-01-11 18:30:33 +00:00
appveyor.yml Add simple appveyor msvc build 2017-05-13 00:12:13 +02:00
CHANGELOG cmp: introduce new variables for linker flags 2022-08-24 16:38:20 +02:00
configure
COPYING cosmetic: rename LGPL->COPYING 2016-10-08 14:24:31 +02:00
INSTALL install: add build instructions for emscripten 2023-06-13 22:07:12 +02:00
LICENSE copyright: add Marius to the maintainer list. 2019-02-22 18:43:37 +00:00
Makefile.in doc: set new doc as standard documentation 2019-01-03 19:14:28 +01:00
README.md update readme (typos) 2015-08-31 08:22:52 +00:00

ECL stands for Embeddable Common-Lisp. The ECL project aims to produce an implementation of the Common-Lisp language which complies to the ANSI X3J13 definition of the language.

The term embeddable refers to the fact that ECL includes a Lisp to C compiler, which produces libraries (static or dynamic) that can be called from C programs. Furthermore, ECL can produce standalone executables from Lisp code and can itself be linked to your programs as a shared library. It also features an interpreter for situations when a C compiler isn't available.

ECL supports the operating systems Linux, FreeBSD, NetBSD, DragonFly BSD, OpenBSD, Solaris (at least v. 9), Microsoft Windows (MSVC, MinGW and Cygwin) and OSX, running on top of the Intel, Sparc, Alpha, ARM and PowerPC processors. Porting to other architectures should be rather easy.