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📄 atl_tbmvlc.c

📁 基于Blas CLapck的.用过的人知道是干啥的
💻 C
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/* --------------------------------------------------------------------- * * -- Automatically Tuned Linear Algebra Software (ATLAS) *    (C) Copyright 2000 All Rights Reserved * * -- ATLAS routine -- Version 3.2 -- December 25, 2000 * * Author         : Antoine P. Petitet * Originally developed at the University of Tennessee, * Innovative Computing Laboratory, Knoxville TN, 37996-1301, USA. * * --------------------------------------------------------------------- * * -- Copyright notice and Licensing terms: * *  Redistribution  and  use in  source and binary forms, with or without *  modification, are  permitted provided  that the following  conditions *  are met: * * 1. Redistributions  of  source  code  must retain the above copyright *    notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce  the above copyright *    notice,  this list of conditions, and the  following disclaimer in *    the documentation and/or other materials provided with the distri- *    bution. * 3. The name of the University,  the ATLAS group,  or the names of its *    contributors  may not be used to endorse or promote products deri- *    ved from this software without specific written permission. * * -- Disclaimer: * * THIS  SOFTWARE  IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,  INCLUDING,  BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY * OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,  INDIRECT, INCIDENTAL, SPE- * CIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED * TO,  PROCUREMENT  OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, * OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEO- * RY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT  (IN- * CLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. * * --------------------------------------------------------------------- *//* * Include files */#include "atlas_misc.h"#include "atlas_mv.h"#include "atlas_r1.h"#include "atlas_level1.h"#include "atlas_kernel2.h"#include "atlas_reflvl2.h"#include "atlas_lvl2.h"void Mjoin( PATL, tbmvLC )(   const enum ATLAS_DIAG      DIAG,   const int                  N,         /* N > 0 assumed */   const int                  K,   const TYPE                 * A,   const int                  LDA,   TYPE                       * X){/* * Purpose * ======= * * Mjoin( PATL, tbmvLC ) performs the following matrix-vector operation * *    x := conjg( A  ) * x, * * where x is an n-element vector and  A is an n by n unit or  non-unit, * lower triangular band matrix. * * This is a blocked version of the algorithm.  For a more detailed des- * cription of  the arguments of this function, see the reference imple- * mentation in the  ATLAS/src/blas/reference directory. * * --------------------------------------------------------------------- *//* * .. Local Variables .. */   void                       (*tbmv0)( const int, const int, const TYPE *,                              const int, TYPE * );#ifdef TREAL#define    lda2               LDA#define    one                ATL_rone#else   TYPE                       one[2] = { ATL_rone, ATL_rzero };   const int                  lda2   = ( LDA SHIFT );#endif#ifdef ATL_AXPYMV   int                        ja, jan, kl, ku, ma, mb, mb1, na, nb;#else   int                        ja, jan, kl, ku, m, ma, mb, n1, na, nb, nb1;#endif#define    gbmv0              Mjoin( PATL, gbmvNc_a1_x1_b1_y1  )/* .. * .. Executable Statements .. * */   ATL_GetPartMVN( A, LDA, &mb, &nb );   if( DIAG == AtlasNonUnit ) tbmv0 = Mjoin( PATL, tbmvLCN );   else                       tbmv0 = Mjoin( PATL, tbmvLCU );#ifdef ATL_AXPYMV   mb1  = N - ( ( N - 1 ) / mb ) * mb;   for( jan = N - mb; jan > 0; jan -= mb )   {      ja = jan - K; ja = Mmax( ja, 0 ); ma = Mmin( mb, K );      ku = na = jan - ja;  kl = K - ku; kl = Mmax( kl, 0 );      tbmv0( mb, K, A+jan*lda2, LDA, X+(jan SHIFT) );      gbmv0( ma, na, kl, ku, one, A+ja*lda2, LDA, X+(ja SHIFT), 1, one,             X+(jan SHIFT), 1 );   }   tbmv0( mb1, K, A, LDA, X );#else   nb1  = N - ( n1  = ( ( N - 1 ) / nb ) * nb );   tbmv0( nb1, K, A + n1*lda2, LDA, X+(n1 SHIFT) );   for( m = nb1, jan = n1; m < N; m += nb )   {      ja = nb - K; ja = jan - nb + Mmax( ja, 0 ); ma = Mmin( m, K );      ku = na = jan - ja; kl = K - ku; kl = Mmax( kl, 0 );      gbmv0( ma, na, kl, ku, one, A+ja*lda2, LDA, X+(ja SHIFT), 1, one,             X+(jan SHIFT), 1 );      jan -= nb; tbmv0( nb, K, A+jan*lda2, LDA, X+(jan SHIFT) );   }#endif/* * End of Mjoin( PATL, tbmvLC ) */}

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