--- rpl/lapack/lapack/dgeqpf.f 2016/08/27 15:34:21 1.15 +++ rpl/lapack/lapack/dgeqpf.f 2017/06/17 10:53:48 1.16 @@ -2,24 +2,24 @@ * * =========== DOCUMENTATION =========== * -* Online html documentation available at -* http://www.netlib.org/lapack/explore-html/ +* Online html documentation available at +* http://www.netlib.org/lapack/explore-html/ * *> \htmlonly -*> Download DGEQPF + dependencies -*> -*> [TGZ] -*> -*> [ZIP] -*> +*> Download DGEQPF + dependencies +*> +*> [TGZ] +*> +*> [ZIP] +*> *> [TXT] -*> \endhtmlonly +*> \endhtmlonly * * Definition: * =========== * * SUBROUTINE DGEQPF( M, N, A, LDA, JPVT, TAU, WORK, INFO ) -* +* * .. Scalar Arguments .. * INTEGER INFO, LDA, M, N * .. @@ -27,7 +27,7 @@ * INTEGER JPVT( * ) * DOUBLE PRECISION A( LDA, * ), TAU( * ), WORK( * ) * .. -* +* * *> \par Purpose: * ============= @@ -103,12 +103,12 @@ * Authors: * ======== * -*> \author Univ. of Tennessee -*> \author Univ. of California Berkeley -*> \author Univ. of Colorado Denver -*> \author NAG Ltd. +*> \author Univ. of Tennessee +*> \author Univ. of California Berkeley +*> \author Univ. of Colorado Denver +*> \author NAG Ltd. * -*> \date November 2011 +*> \date December 2016 * *> \ingroup doubleGEcomputational * @@ -142,10 +142,10 @@ * ===================================================================== SUBROUTINE DGEQPF( M, N, A, LDA, JPVT, TAU, WORK, INFO ) * -* -- LAPACK computational routine (version 3.4.0) -- +* -- LAPACK computational routine (version 3.7.0) -- * -- LAPACK is a software package provided by Univ. of Tennessee, -- * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..-- -* November 2011 +* December 2016 * * .. Scalar Arguments .. INTEGER INFO, LDA, M, N @@ -279,11 +279,11 @@ * * NOTE: The following 4 lines follow from the analysis in * Lapack Working Note 176. -* +* TEMP = ABS( A( I, J ) ) / WORK( J ) TEMP = MAX( ZERO, ( ONE+TEMP )*( ONE-TEMP ) ) TEMP2 = TEMP*( WORK( J ) / WORK( N+J ) )**2 - IF( TEMP2 .LE. TOL3Z ) THEN + IF( TEMP2 .LE. TOL3Z ) THEN IF( M-I.GT.0 ) THEN WORK( J ) = DNRM2( M-I, A( I+1, J ), 1 ) WORK( N+J ) = WORK( J )