dev-lang/cilk: [QA] Consistent whitespace in metadata.xml
authorDavid Seifert <soap@gentoo.org>
Sat, 25 Nov 2017 22:16:23 +0000 (23:16 +0100)
committerDavid Seifert <soap@gentoo.org>
Sun, 26 Nov 2017 11:24:35 +0000 (12:24 +0100)
dev-lang/cilk/metadata.xml

index f57da6f6b282a3d48e8061854ccb69f5f5632431..c8b5e5c42150edcff8640bf81ff867edd27f1843 100644 (file)
@@ -1,19 +1,19 @@
 <?xml version="1.0" encoding="UTF-8"?>
 <!DOCTYPE pkgmetadata SYSTEM "http://www.gentoo.org/dtd/metadata.dtd">
 <pkgmetadata>
-<maintainer type="project">
-       <email>sci@gentoo.org</email>
-       <name>Gentoo Science Project</name>
-</maintainer>
-<longdescription lang="en">
-  Cilk is a language for multithreaded parallel programming based on
-  ANSI C. Cilk is especially effective for exploiting dynamic, highly
-  asynchronous parallelism, which can be difficult to write in data-parallel or
-  message-passing style. Cilk provides an effective platform for
-  programming dense and sparse numerical algorithms, such as matrix
-  factorization and N-body simulations. Cilk is algorithmic, in that
-  the runtime system employs a scheduler that allows the performance
-  of programs to be estimated accurately based on abstract complexity
-  measures.
-</longdescription>
+       <maintainer type="project">
+               <email>sci@gentoo.org</email>
+               <name>Gentoo Science Project</name>
+       </maintainer>
+       <longdescription lang="en">
+               Cilk is a language for multithreaded parallel programming based on
+               ANSI C. Cilk is especially effective for exploiting dynamic, highly
+               asynchronous parallelism, which can be difficult to write in data-parallel or
+               message-passing style. Cilk provides an effective platform for
+               programming dense and sparse numerical algorithms, such as matrix
+               factorization and N-body simulations. Cilk is algorithmic, in that
+               the runtime system employs a scheduler that allows the performance
+               of programs to be estimated accurately based on abstract complexity
+               measures.
+       </longdescription>
 </pkgmetadata>