340 lines
11 KiB
FortranFixed
340 lines
11 KiB
FortranFixed
SUBROUTINE STIMPT( LINE, NM, MVAL, NNS, NSVAL, NLDA, LDAVAL,
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$ TIMMIN, A, B, RESLTS, LDR1, LDR2, LDR3, NOUT )
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*
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* -- LAPACK timing routine (version 3.1) --
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* Univ. of Tennessee, Univ. of California Berkeley and NAG Ltd..
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* October 2006
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*
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* .. Scalar Arguments ..
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CHARACTER*80 LINE
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INTEGER LDR1, LDR2, LDR3, NLDA, NM, NNS, NOUT
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REAL TIMMIN
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* ..
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* .. Array Arguments ..
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INTEGER LDAVAL( * ), MVAL( * ), NSVAL( * )
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REAL A( * ), B( * ), RESLTS( LDR1, LDR2, LDR3, * )
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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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* STIMPT times SPTTRF, -TRS, -SV, and -SL.
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*
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* Arguments
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* =========
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*
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* LINE (input) CHARACTER*80
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* The input line that requested this routine. The first six
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* characters contain either the name of a subroutine or a
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* generic path name. The remaining characters may be used to
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* specify the individual routines to be timed. See ATIMIN for
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* a full description of the format of the input line.
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*
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* NM (input) INTEGER
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* The number of values of M contained in the vector MVAL.
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*
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* MVAL (input) INTEGER array, dimension (NM)
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* The values of the matrix size M.
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*
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* NNS (input) INTEGER
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* The number of values of NRHS contained in the vector NSVAL.
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*
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* NSVAL (input) INTEGER array, dimension (NNS)
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* The values of the number of right hand sides NRHS.
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*
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* NLDA (input) INTEGER
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* The number of values of LDA contained in the vector LDAVAL.
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*
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* LDAVAL (input) INTEGER array, dimension (NLDA)
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* The values of the leading dimension of the array A.
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*
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* TIMMIN (input) REAL
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* The minimum time a subroutine will be timed.
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*
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* A (workspace) REAL array, dimension (NMAX*2)
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* where NMAX is the maximum value permitted for N.
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*
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* B (workspace) REAL array, dimension (LDAMAX*NMAX)
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*
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* RESLTS (output) REAL array, dimension
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* (LDR1,LDR2,LDR3,NSUBS)
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* The timing results for each subroutine over the relevant
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* values of N.
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*
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* LDR1 (input) INTEGER
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* The first dimension of RESLTS. LDR1 >= 1.
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*
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* LDR2 (input) INTEGER
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* The second dimension of RESLTS. LDR2 >= max(1,NM).
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*
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* LDR3 (input) INTEGER
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* The third dimension of RESLTS. LDR3 >= max(1,NLDA).
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*
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* NOUT (input) INTEGER
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* The unit number for output.
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*
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* =====================================================================
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*
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* .. Parameters ..
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INTEGER NSUBS
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PARAMETER ( NSUBS = 4 )
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* ..
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* .. Local Scalars ..
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CHARACTER*3 PATH
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CHARACTER(32) CNAME
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INTEGER I, IC, ICL, ILDA, IM, INFO, ISUB, LDB, M, N,
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$ NRHS
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REAL OPS, S1, S2, TIME, UNTIME
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* ..
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* .. Local Arrays ..
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LOGICAL TIMSUB( NSUBS )
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CHARACTER(32) SUBNAM( NSUBS )
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INTEGER LAVAL( 1 )
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* ..
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* .. External Functions ..
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INTEGER ILA_LEN_TRIM
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EXTERNAL ILA_LEN_TRIM
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REAL SECOND, SMFLOP, SOPLA
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EXTERNAL SECOND, SMFLOP, SOPLA
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* ..
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* .. External Subroutines ..
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EXTERNAL ATIMCK, ATIMIN, SPRTBL, SPTSL, SPTSV, SPTTRF,
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$ SPTTRS, STIMMG
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* ..
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* .. Intrinsic Functions ..
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INTRINSIC MAX, REAL
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* ..
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* .. Data statements ..
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DATA SUBNAM / 'SPTTRF', 'SPTTRS', 'SPTSV ',
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$ 'SPTSL ' /
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* ..
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* .. Executable Statements ..
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*
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* Extract the timing request from the input line.
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*
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PATH( 1: 1 ) = 'Single precision'
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PATH( 2: 3 ) = 'PT'
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CALL ATIMIN( PATH, LINE, NSUBS, SUBNAM, TIMSUB, NOUT, INFO )
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IF( INFO.NE.0 )
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$ GO TO 170
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*
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* Check that N <= LDA for the input values.
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*
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DO 10 ISUB = 2, NSUBS
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IF( .NOT.TIMSUB( ISUB ) )
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$ GO TO 10
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CNAME = SUBNAM( ISUB )
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CALL ATIMCK( 2, CNAME, NM, MVAL, NLDA, LDAVAL, NOUT, INFO )
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IF( INFO.GT.0 ) THEN
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WRITE( NOUT, FMT = 9999 )CNAME(1:ILA_LEN_TRIM(CNAME))
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TIMSUB( ISUB ) = .FALSE.
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END IF
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10 CONTINUE
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*
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* Do for each value of M:
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*
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DO 140 IM = 1, NM
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*
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M = MVAL( IM )
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N = MAX( M, 1 )
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*
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* Time SPTTRF
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*
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IF( TIMSUB( 1 ) ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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IC = 0
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S1 = SECOND( )
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20 CONTINUE
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CALL SPTTRF( M, A, A( N+1 ), INFO )
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S2 = SECOND( )
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TIME = S2 - S1
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IC = IC + 1
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IF( TIME.LT.TIMMIN ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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GO TO 20
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END IF
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*
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* Subtract the time used in STIMMG.
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*
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ICL = 1
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S1 = SECOND( )
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30 CONTINUE
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S2 = SECOND( )
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UNTIME = S2 - S1
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ICL = ICL + 1
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IF( ICL.LE.IC ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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GO TO 30
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END IF
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*
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TIME = ( TIME-UNTIME ) / REAL( IC )
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OPS = SOPLA( 'SPTTRF', M, 0, 0, 0, 0 )
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RESLTS( 1, IM, 1, 1 ) = SMFLOP( OPS, TIME, INFO )
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*
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ELSE
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IC = 0
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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END IF
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*
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* Generate another matrix and factor it using SPTTRF so
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* that the factored form can be used in timing the other
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* routines.
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*
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IF( IC.NE.1 )
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$ CALL SPTTRF( M, A, A( N+1 ), INFO )
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*
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* Time SPTTRS
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*
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IF( TIMSUB( 2 ) ) THEN
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DO 70 ILDA = 1, NLDA
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LDB = LDAVAL( ILDA )
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DO 60 I = 1, NNS
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NRHS = NSVAL( I )
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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IC = 0
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S1 = SECOND( )
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40 CONTINUE
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CALL SPTTRS( M, NRHS, A, A( N+1 ), B, LDB, INFO )
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S2 = SECOND( )
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TIME = S2 - S1
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IC = IC + 1
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IF( TIME.LT.TIMMIN ) THEN
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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GO TO 40
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END IF
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*
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* Subtract the time used in STIMMG.
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*
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ICL = 1
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S1 = SECOND( )
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50 CONTINUE
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S2 = SECOND( )
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UNTIME = S2 - S1
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ICL = ICL + 1
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IF( ICL.LE.IC ) THEN
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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GO TO 50
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END IF
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*
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TIME = ( TIME-UNTIME ) / REAL( IC )
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OPS = SOPLA( 'SPTTRS', M, NRHS, 0, 0, 0 )
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RESLTS( I, IM, ILDA, 2 ) = SMFLOP( OPS, TIME, INFO )
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60 CONTINUE
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70 CONTINUE
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END IF
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*
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IF( TIMSUB( 3 ) ) THEN
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DO 110 ILDA = 1, NLDA
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LDB = LDAVAL( ILDA )
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DO 100 I = 1, NNS
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NRHS = NSVAL( I )
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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IC = 0
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S1 = SECOND( )
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80 CONTINUE
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CALL SPTSV( M, NRHS, A, A( N+1 ), B, LDB, INFO )
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S2 = SECOND( )
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TIME = S2 - S1
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IC = IC + 1
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IF( TIME.LT.TIMMIN ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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GO TO 80
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END IF
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*
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* Subtract the time used in STIMMG.
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*
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ICL = 1
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S1 = SECOND( )
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90 CONTINUE
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S2 = SECOND( )
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UNTIME = S2 - S1
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ICL = ICL + 1
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IF( ICL.LE.IC ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, NRHS, B, LDB, 0, 0 )
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GO TO 90
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END IF
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*
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TIME = ( TIME-UNTIME ) / REAL( IC )
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OPS = SOPLA( 'SPTSV ', M, NRHS, 0, 0, 0 )
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RESLTS( I, IM, ILDA, 3 ) = SMFLOP( OPS, TIME, INFO )
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100 CONTINUE
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110 CONTINUE
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END IF
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*
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IF( TIMSUB( 4 ) ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, 1, B, N, 0, 0 )
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IC = 0
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S1 = SECOND( )
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120 CONTINUE
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CALL SPTSL( M, A, A( N+1 ), B )
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S2 = SECOND( )
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TIME = S2 - S1
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IC = IC + 1
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IF( TIME.LT.TIMMIN ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, 1, B, N, 0, 0 )
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GO TO 120
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END IF
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*
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* Subtract the time used in STIMMG.
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*
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ICL = 1
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S1 = SECOND( )
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130 CONTINUE
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S2 = SECOND( )
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UNTIME = S2 - S1
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ICL = ICL + 1
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IF( ICL.LE.IC ) THEN
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CALL STIMMG( 13, M, M, A, 2*N, 0, 0 )
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CALL STIMMG( 0, M, 1, B, N, 0, 0 )
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GO TO 130
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END IF
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*
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TIME = ( TIME-UNTIME ) / REAL( IC )
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OPS = SOPLA( 'SPTSV ', M, 1, 0, 0, 0 )
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RESLTS( 1, IM, 1, 4 ) = SMFLOP( OPS, TIME, INFO )
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END IF
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140 CONTINUE
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*
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* Print a table of results for each timed routine.
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*
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DO 160 ISUB = 1, NSUBS
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IF( .NOT.TIMSUB( ISUB ) )
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$ GO TO 160
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WRITE( NOUT, FMT = 9998 )
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$ SUBNAM( ISUB )(1:ILA_LEN_TRIM( SUBNAM( ISUB ) ))
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IF( NLDA.GT.1 .AND. ( TIMSUB( 2 ) .OR. TIMSUB( 3 ) ) ) THEN
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DO 150 I = 1, NLDA
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WRITE( NOUT, FMT = 9997 )I, LDAVAL( I )
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150 CONTINUE
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END IF
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WRITE( NOUT, FMT = * )
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IF( ISUB.EQ.1 ) THEN
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CALL SPRTBL( ' ', 'N', 1, LAVAL, NM, MVAL, 1, RESLTS, LDR1,
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$ LDR2, NOUT )
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ELSE IF( ISUB.EQ.2 ) THEN
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CALL SPRTBL( 'NRHS', 'N', NNS, NSVAL, NM, MVAL, NLDA,
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$ RESLTS( 1, 1, 1, 2 ), LDR1, LDR2, NOUT )
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ELSE IF( ISUB.EQ.3 ) THEN
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CALL SPRTBL( 'NRHS', 'N', NNS, NSVAL, NM, MVAL, NLDA,
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$ RESLTS( 1, 1, 1, 3 ), LDR1, LDR2, NOUT )
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ELSE IF( ISUB.EQ.4 ) THEN
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CALL SPRTBL( ' ', 'N', 1, LAVAL, NM, MVAL, 1,
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$ RESLTS( 1, 1, 1, 4 ), LDR1, LDR2, NOUT )
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END IF
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160 CONTINUE
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*
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170 CONTINUE
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9999 FORMAT( 1X, A, ' timing run not attempted', / )
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9998 FORMAT( / ' *** Speed of ', A, ' in megaflops ***' )
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9997 FORMAT( 5X, 'line ', I2, ' with LDA = ', I5 )
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RETURN
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*
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* End of STIMPT
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*
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END
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