[Lunar-commits] r15550 - moonbase/trunk/science/octave

Auke Kok sofar at lunar-linux.org
Fri Jul 1 12:13:33 UTC 2005


Author: sofar
Date: 2005-07-01 12:13:31 +0000 (Fri, 01 Jul 2005)
New Revision: 15550

Modified:
   moonbase/trunk/science/octave/DETAILS
Log:
Probably long outstanding octave update.


Modified: moonbase/trunk/science/octave/DETAILS
===================================================================
--- moonbase/trunk/science/octave/DETAILS	2005-07-01 12:03:07 UTC (rev 15549)
+++ moonbase/trunk/science/octave/DETAILS	2005-07-01 12:13:31 UTC (rev 15550)
@@ -1,17 +1,18 @@
           MODULE=octave
-         VERSION=2.1.52
+         VERSION=2.1.71
           SOURCE=$MODULE-$VERSION.tar.bz2
-   SOURCE_URL[0]=ftp://ftp.octave.org/pub/octave/bleeding-edge/
+      SOURCE_URL=ftp://ftp.octave.org/pub/octave/bleeding-edge/
+	  SOURCE_VFY=sha1:0c15d86c155e00dbff1e21be859ff82e7331b311
         WEB_SITE=http://www.octave.org
          ENTERED=20030604
-         UPDATED=20031117
-      MAINTAINER="jmhodges at lunar-linux.org"
-           SHORT="Octave is a high-level interactive language, primarily intended for numerical computations that is mostly compatible with MATLAB"
+         UPDATED=20050701
+      MAINTAINER=jmhodges at lunar-linux.org
+           SHORT="Numerical computation suite mostly compatible with MATLAB"
 cat << EOF
-Octave is a high-level interactive language, primarily intended for 
-numerical computations that is mostly compatible with MATLAB.
-Octave can do arithmetic for real and complex scalars and matrices, 
-solve sets of nonlinear algebraic equations, integrate functions over 
-finite and infinite intervals, and integrate systems of ordinary 
-differential and differential-algebraic equations. 
+Octave is a high-level interactive language, primarily intended
+for numerical computations that is mostly compatible with MATLAB.
+Octave can do arithmetic for real and complex scalars and matrices,
+solve sets of nonlinear algebraic equations, integrate functions
+over finite and infinite intervals, and integrate systems of ordinary
+differential and differential-algebraic equations.
 EOF



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