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📄 atl_syru.c

📁 基于Blas CLapck的.用过的人知道是干啥的
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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 * Contributor(s) : R. Clint Whaley * 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"#ifdef TREAL#define    MinN_syrU    16#else#define    MinN_syrU     8#endifvoid Mjoin( PATL, syrU )(   const int                  N,   const TYPE                 * X,   const TYPE                 * Y,   const int                  INCY,   TYPE                       * A,   const int                  LDA){/* * Purpose * ======= * * Mjoin( PATL, syrU ) performs the symmetric rank 1 operation * *    A := alpha * x * x' + A, * * where  alpha is a scalar, x is an n-element vector and A is an n by n * symmetric matrix. * * This is a  recursive  version of the  algorithm.  For a more detailed * description of  the arguments of this function, see the reference im- * plementation in the  ATLAS/src/blas/reference directory. * * --------------------------------------------------------------------- *//* * .. Local Variables .. */#ifdef TREAL#define    one                ATL_rone   register TYPE              t0;   int                        i, j, jy, n1, n1s, n2;#else   const TYPE                 one[2] = { ATL_rone, ATL_rzero };   register TYPE              t0_i, t0_r;   const int                  incy2 = 2 * INCY, lda2 = (LDA SHIFT);   int                        i, iax, j, jy, n1, n1s, n2;#endif#ifdef TREAL#define   ger      Mjoin( PATL, ger1_a1_x1_yX  )#else#define   ger      Mjoin( PATL, ger1u_a1_x1_yX )#endif/* .. * .. Executable Statements .. * */   if( N <= MinN_syrU )   {#ifdef TREAL      for( j = 0, jy = 0; j < N; j++, jy += INCY, A += LDA )      { t0 = Y[jy]; for( i = 0; i <= j; i++ ) { A[i] += X[i] * t0; } }#else      for( j = 0, jy = 0; j < N; j++, jy += incy2, A += lda2 )      {         t0_r = Y[jy]; t0_i = Y[jy+1];         for( i = 0, iax = 0; i <= j; i++, iax += 2 )         {            A[iax  ] += X[iax] * t0_r - X[iax+1] * t0_i;            A[iax+1] += X[iax] * t0_i + X[iax+1] * t0_r;         }      }#endif   }   else   {      n2 = N - ( n1 = ( N >> 1 ) ); n1s = (n1 SHIFT);      Mjoin( PATL, syrU )( n1, X, Y, INCY, A, LDA );      MUrnext( n1, A, LDA ); Y += n1s * INCY;      ger( n1, n2, one, X, 1, Y, INCY, A - n1s, LDA ); X += n1s;      Mjoin( PATL, syrU )( n2, X, Y, INCY, A, LDA );   }/* * End of Mjoin( PATL, syrU ) */}

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