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/* 
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 * -- High Performance Computing Linpack Benchmark (HPL)                
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 *    HPL - 2.0 - September 10, 2008                          
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 *    Antoine P. Petitet                                                
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 *    University of Tennessee, Knoxville                                
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 *    Innovative Computing Laboratory                                 
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 *    (C) Copyright 2000-2008 All Rights Reserved                       
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 *                                                                      
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 * -- Copyright notice and Licensing terms:                             
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 *                                                                      
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 * Redistribution  and  use in  source and binary forms, with or without
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 * modification, are  permitted provided  that the following  conditions
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 * are met:                                                             
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 *                                                                      
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 * 1. Redistributions  of  source  code  must retain the above copyright
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 * notice, this list of conditions and the following disclaimer.        
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 *                                                                      
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 * 2. Redistributions in binary form must reproduce  the above copyright
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 * notice, this list of conditions,  and the following disclaimer in the
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 * documentation and/or other materials provided with the distribution. 
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 *                                                                      
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 * 3. All  advertising  materials  mentioning  features  or  use of this
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 * software must display the following acknowledgement:                 
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 * This  product  includes  software  developed  at  the  University  of
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 * Tennessee, Knoxville, Innovative Computing Laboratory.             
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 *                                                                      
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 * 4. The name of the  University,  the name of the  Laboratory,  or the
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 * names  of  its  contributors  may  not  be used to endorse or promote
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 * products  derived   from   this  software  without  specific  written
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 * permission.                                                          
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 *                                                                      
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 * -- Disclaimer:                                                       
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 *                                                                      
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 * THIS  SOFTWARE  IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES,  INCLUDING,  BUT NOT
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 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE UNIVERSITY
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 * OR  CONTRIBUTORS  BE  LIABLE FOR ANY  DIRECT,  INDIRECT,  INCIDENTAL,
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 * SPECIAL,  EXEMPLARY,  OR  CONSEQUENTIAL DAMAGES  (INCLUDING,  BUT NOT
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 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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 * DATA OR PROFITS; OR BUSINESS INTERRUPTION)  HOWEVER CAUSED AND ON ANY
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 * THEORY OF LIABILITY, WHETHER IN CONTRACT,  STRICT LIABILITY,  OR TORT
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 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 
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 * ---------------------------------------------------------------------
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 */ 
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/*
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 * Include files
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 */
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#include "hpl.h"
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#ifdef STDC_HEADERS
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void HPL_pdgesv
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(
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   HPL_T_grid *                     GRID,
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   HPL_T_palg *                     ALGO,
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   HPL_T_pmat *                     A
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)
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#else
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void HPL_pdgesv
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( GRID, ALGO, A )
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   HPL_T_grid *                     GRID;
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   HPL_T_palg *                     ALGO;
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   HPL_T_pmat *                     A;
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#endif
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{
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/* 
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 * Purpose
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 * =======
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 *
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 * HPL_pdgesv factors a N+1-by-N matrix using LU factorization with row
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 * partial pivoting.  The main algorithm  is the "right looking" variant
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 * with  or  without look-ahead.  The  lower  triangular  factor is left
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 * unpivoted and the pivots are not returned. The right hand side is the
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 * N+1 column of the coefficient matrix.
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 *
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 * Arguments
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 * =========
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 *
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 * GRID    (local input)                 HPL_T_grid *
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 *         On entry,  GRID  points  to the data structure containing the
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 *         process grid information.
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 *
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 * ALGO    (global input)                HPL_T_palg *
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 *         On entry,  ALGO  points to  the data structure containing the
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 *         algorithmic parameters.
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 *
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 * A       (local input/output)          HPL_T_pmat *
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 *         On entry, A points to the data structure containing the local
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 *         array information.
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 *
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 * ---------------------------------------------------------------------
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 */ 
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/* ..
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 * .. Executable Statements ..
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 */
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   if( A->n <= 0 ) return;
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   A->info = 0;
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   if( ( ALGO->depth == 0 ) || ( GRID->npcol == 1 ) )
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   {
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      HPL_pdgesv0(  GRID, ALGO, A );
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   }
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   else
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   {
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      HPL_pdgesvK2( GRID, ALGO, A );
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   }
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/*
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 * Solve upper triangular system
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 */
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   if( A->info == 0 ) HPL_pdtrsv( GRID, A );
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/*
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 * End of HPL_pdgesv
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 */
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}