1*1858f998SYi Kong PROGRAM CBLAT3 2*1858f998SYi Kong* 3*1858f998SYi Kong* Test program for the COMPLEX Level 3 Blas. 4*1858f998SYi Kong* 5*1858f998SYi Kong* The program must be driven by a short data file. The first 13 records 6*1858f998SYi Kong* of the file are read using list-directed input, the last 9 records 7*1858f998SYi Kong* are read using the format ( A12, L2 ). An annotated example of a data 8*1858f998SYi Kong* file can be obtained by deleting the first 3 characters from the 9*1858f998SYi Kong* following 22 lines: 10*1858f998SYi Kong* 'CBLAT3.SNAP' NAME OF SNAPSHOT OUTPUT FILE 11*1858f998SYi Kong* -1 UNIT NUMBER OF SNAPSHOT FILE (NOT USED IF .LT. 0) 12*1858f998SYi Kong* F LOGICAL FLAG, T TO REWIND SNAPSHOT FILE AFTER EACH RECORD. 13*1858f998SYi Kong* F LOGICAL FLAG, T TO STOP ON FAILURES. 14*1858f998SYi Kong* T LOGICAL FLAG, T TO TEST ERROR EXITS. 15*1858f998SYi Kong* 2 0 TO TEST COLUMN-MAJOR, 1 TO TEST ROW-MAJOR, 2 TO TEST BOTH 16*1858f998SYi Kong* 16.0 THRESHOLD VALUE OF TEST RATIO 17*1858f998SYi Kong* 6 NUMBER OF VALUES OF N 18*1858f998SYi Kong* 0 1 2 3 5 9 VALUES OF N 19*1858f998SYi Kong* 3 NUMBER OF VALUES OF ALPHA 20*1858f998SYi Kong* (0.0,0.0) (1.0,0.0) (0.7,-0.9) VALUES OF ALPHA 21*1858f998SYi Kong* 3 NUMBER OF VALUES OF BETA 22*1858f998SYi Kong* (0.0,0.0) (1.0,0.0) (1.3,-1.1) VALUES OF BETA 23*1858f998SYi Kong* cblas_cgemm T PUT F FOR NO TEST. SAME COLUMNS. 24*1858f998SYi Kong* cblas_chemm T PUT F FOR NO TEST. SAME COLUMNS. 25*1858f998SYi Kong* cblas_csymm T PUT F FOR NO TEST. SAME COLUMNS. 26*1858f998SYi Kong* cblas_ctrmm T PUT F FOR NO TEST. SAME COLUMNS. 27*1858f998SYi Kong* cblas_ctrsm T PUT F FOR NO TEST. SAME COLUMNS. 28*1858f998SYi Kong* cblas_cherk T PUT F FOR NO TEST. SAME COLUMNS. 29*1858f998SYi Kong* cblas_csyrk T PUT F FOR NO TEST. SAME COLUMNS. 30*1858f998SYi Kong* cblas_cher2k T PUT F FOR NO TEST. SAME COLUMNS. 31*1858f998SYi Kong* cblas_csyr2k T PUT F FOR NO TEST. SAME COLUMNS. 32*1858f998SYi Kong* 33*1858f998SYi Kong* See: 34*1858f998SYi Kong* 35*1858f998SYi Kong* Dongarra J. J., Du Croz J. J., Duff I. S. and Hammarling S. 36*1858f998SYi Kong* A Set of Level 3 Basic Linear Algebra Subprograms. 37*1858f998SYi Kong* 38*1858f998SYi Kong* Technical Memorandum No.88 (Revision 1), Mathematics and 39*1858f998SYi Kong* Computer Science Division, Argonne National Laboratory, 9700 40*1858f998SYi Kong* South Cass Avenue, Argonne, Illinois 60439, US. 41*1858f998SYi Kong* 42*1858f998SYi Kong* -- Written on 8-February-1989. 43*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 44*1858f998SYi Kong* Iain Duff, AERE Harwell. 45*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 46*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 47*1858f998SYi Kong* 48*1858f998SYi Kong* .. Parameters .. 49*1858f998SYi Kong INTEGER NIN, NOUT 50*1858f998SYi Kong PARAMETER ( NIN = 5, NOUT = 6 ) 51*1858f998SYi Kong INTEGER NSUBS 52*1858f998SYi Kong PARAMETER ( NSUBS = 9 ) 53*1858f998SYi Kong COMPLEX ZERO, ONE 54*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ), ONE = ( 1.0, 0.0 ) ) 55*1858f998SYi Kong REAL RZERO, RHALF, RONE 56*1858f998SYi Kong PARAMETER ( RZERO = 0.0, RHALF = 0.5, RONE = 1.0 ) 57*1858f998SYi Kong INTEGER NMAX 58*1858f998SYi Kong PARAMETER ( NMAX = 65 ) 59*1858f998SYi Kong INTEGER NIDMAX, NALMAX, NBEMAX 60*1858f998SYi Kong PARAMETER ( NIDMAX = 9, NALMAX = 7, NBEMAX = 7 ) 61*1858f998SYi Kong* .. Local Scalars .. 62*1858f998SYi Kong REAL EPS, ERR, THRESH 63*1858f998SYi Kong INTEGER I, ISNUM, J, N, NALF, NBET, NIDIM, NTRA, 64*1858f998SYi Kong $ LAYOUT 65*1858f998SYi Kong LOGICAL FATAL, LTESTT, REWI, SAME, SFATAL, TRACE, 66*1858f998SYi Kong $ TSTERR, CORDER, RORDER 67*1858f998SYi Kong CHARACTER*1 TRANSA, TRANSB 68*1858f998SYi Kong CHARACTER*12 SNAMET 69*1858f998SYi Kong CHARACTER*32 SNAPS 70*1858f998SYi Kong* .. Local Arrays .. 71*1858f998SYi Kong COMPLEX AA( NMAX*NMAX ), AB( NMAX, 2*NMAX ), 72*1858f998SYi Kong $ ALF( NALMAX ), AS( NMAX*NMAX ), 73*1858f998SYi Kong $ BB( NMAX*NMAX ), BET( NBEMAX ), 74*1858f998SYi Kong $ BS( NMAX*NMAX ), C( NMAX, NMAX ), 75*1858f998SYi Kong $ CC( NMAX*NMAX ), CS( NMAX*NMAX ), CT( NMAX ), 76*1858f998SYi Kong $ W( 2*NMAX ) 77*1858f998SYi Kong REAL G( NMAX ) 78*1858f998SYi Kong INTEGER IDIM( NIDMAX ) 79*1858f998SYi Kong LOGICAL LTEST( NSUBS ) 80*1858f998SYi Kong CHARACTER*12 SNAMES( NSUBS ) 81*1858f998SYi Kong* .. External Functions .. 82*1858f998SYi Kong REAL SDIFF 83*1858f998SYi Kong LOGICAL LCE 84*1858f998SYi Kong EXTERNAL SDIFF, LCE 85*1858f998SYi Kong* .. External Subroutines .. 86*1858f998SYi Kong EXTERNAL CCHK1, CCHK2, CCHK3, CCHK4, CCHK5, CMMCH 87*1858f998SYi Kong* .. Intrinsic Functions .. 88*1858f998SYi Kong INTRINSIC MAX, MIN 89*1858f998SYi Kong* .. Scalars in Common .. 90*1858f998SYi Kong INTEGER INFOT, NOUTC 91*1858f998SYi Kong LOGICAL LERR, OK 92*1858f998SYi Kong CHARACTER*12 SRNAMT 93*1858f998SYi Kong* .. Common blocks .. 94*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 95*1858f998SYi Kong COMMON /SRNAMC/SRNAMT 96*1858f998SYi Kong* .. Data statements .. 97*1858f998SYi Kong DATA SNAMES/'cblas_cgemm ', 'cblas_chemm ', 98*1858f998SYi Kong $ 'cblas_csymm ', 'cblas_ctrmm ', 'cblas_ctrsm ', 99*1858f998SYi Kong $ 'cblas_cherk ', 'cblas_csyrk ', 'cblas_cher2k', 100*1858f998SYi Kong $ 'cblas_csyr2k'/ 101*1858f998SYi Kong* .. Executable Statements .. 102*1858f998SYi Kong* 103*1858f998SYi Kong NOUTC = NOUT 104*1858f998SYi Kong* 105*1858f998SYi Kong* Read name and unit number for snapshot output file and open file. 106*1858f998SYi Kong* 107*1858f998SYi Kong READ( NIN, FMT = * )SNAPS 108*1858f998SYi Kong READ( NIN, FMT = * )NTRA 109*1858f998SYi Kong TRACE = NTRA.GE.0 110*1858f998SYi Kong IF( TRACE )THEN 111*1858f998SYi Kong OPEN( NTRA, FILE = SNAPS ) 112*1858f998SYi Kong END IF 113*1858f998SYi Kong* Read the flag that directs rewinding of the snapshot file. 114*1858f998SYi Kong READ( NIN, FMT = * )REWI 115*1858f998SYi Kong REWI = REWI.AND.TRACE 116*1858f998SYi Kong* Read the flag that directs stopping on any failure. 117*1858f998SYi Kong READ( NIN, FMT = * )SFATAL 118*1858f998SYi Kong* Read the flag that indicates whether error exits are to be tested. 119*1858f998SYi Kong READ( NIN, FMT = * )TSTERR 120*1858f998SYi Kong* Read the flag that indicates whether row-major data layout to be tested. 121*1858f998SYi Kong READ( NIN, FMT = * )LAYOUT 122*1858f998SYi Kong* Read the threshold value of the test ratio 123*1858f998SYi Kong READ( NIN, FMT = * )THRESH 124*1858f998SYi Kong* 125*1858f998SYi Kong* Read and check the parameter values for the tests. 126*1858f998SYi Kong* 127*1858f998SYi Kong* Values of N 128*1858f998SYi Kong READ( NIN, FMT = * )NIDIM 129*1858f998SYi Kong IF( NIDIM.LT.1.OR.NIDIM.GT.NIDMAX )THEN 130*1858f998SYi Kong WRITE( NOUT, FMT = 9997 )'N', NIDMAX 131*1858f998SYi Kong GO TO 220 132*1858f998SYi Kong END IF 133*1858f998SYi Kong READ( NIN, FMT = * )( IDIM( I ), I = 1, NIDIM ) 134*1858f998SYi Kong DO 10 I = 1, NIDIM 135*1858f998SYi Kong IF( IDIM( I ).LT.0.OR.IDIM( I ).GT.NMAX )THEN 136*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )NMAX 137*1858f998SYi Kong GO TO 220 138*1858f998SYi Kong END IF 139*1858f998SYi Kong 10 CONTINUE 140*1858f998SYi Kong* Values of ALPHA 141*1858f998SYi Kong READ( NIN, FMT = * )NALF 142*1858f998SYi Kong IF( NALF.LT.1.OR.NALF.GT.NALMAX )THEN 143*1858f998SYi Kong WRITE( NOUT, FMT = 9997 )'ALPHA', NALMAX 144*1858f998SYi Kong GO TO 220 145*1858f998SYi Kong END IF 146*1858f998SYi Kong READ( NIN, FMT = * )( ALF( I ), I = 1, NALF ) 147*1858f998SYi Kong* Values of BETA 148*1858f998SYi Kong READ( NIN, FMT = * )NBET 149*1858f998SYi Kong IF( NBET.LT.1.OR.NBET.GT.NBEMAX )THEN 150*1858f998SYi Kong WRITE( NOUT, FMT = 9997 )'BETA', NBEMAX 151*1858f998SYi Kong GO TO 220 152*1858f998SYi Kong END IF 153*1858f998SYi Kong READ( NIN, FMT = * )( BET( I ), I = 1, NBET ) 154*1858f998SYi Kong* 155*1858f998SYi Kong* Report values of parameters. 156*1858f998SYi Kong* 157*1858f998SYi Kong WRITE( NOUT, FMT = 9995 ) 158*1858f998SYi Kong WRITE( NOUT, FMT = 9994 )( IDIM( I ), I = 1, NIDIM ) 159*1858f998SYi Kong WRITE( NOUT, FMT = 9993 )( ALF( I ), I = 1, NALF ) 160*1858f998SYi Kong WRITE( NOUT, FMT = 9992 )( BET( I ), I = 1, NBET ) 161*1858f998SYi Kong IF( .NOT.TSTERR )THEN 162*1858f998SYi Kong WRITE( NOUT, FMT = * ) 163*1858f998SYi Kong WRITE( NOUT, FMT = 9984 ) 164*1858f998SYi Kong END IF 165*1858f998SYi Kong WRITE( NOUT, FMT = * ) 166*1858f998SYi Kong WRITE( NOUT, FMT = 9999 )THRESH 167*1858f998SYi Kong WRITE( NOUT, FMT = * ) 168*1858f998SYi Kong 169*1858f998SYi Kong RORDER = .FALSE. 170*1858f998SYi Kong CORDER = .FALSE. 171*1858f998SYi Kong IF (LAYOUT.EQ.2) THEN 172*1858f998SYi Kong RORDER = .TRUE. 173*1858f998SYi Kong CORDER = .TRUE. 174*1858f998SYi Kong WRITE( *, FMT = 10002 ) 175*1858f998SYi Kong ELSE IF (LAYOUT.EQ.1) THEN 176*1858f998SYi Kong RORDER = .TRUE. 177*1858f998SYi Kong WRITE( *, FMT = 10001 ) 178*1858f998SYi Kong ELSE IF (LAYOUT.EQ.0) THEN 179*1858f998SYi Kong CORDER = .TRUE. 180*1858f998SYi Kong WRITE( *, FMT = 10000 ) 181*1858f998SYi Kong END IF 182*1858f998SYi Kong WRITE( *, FMT = * ) 183*1858f998SYi Kong 184*1858f998SYi Kong* 185*1858f998SYi Kong* Read names of subroutines and flags which indicate 186*1858f998SYi Kong* whether they are to be tested. 187*1858f998SYi Kong* 188*1858f998SYi Kong DO 20 I = 1, NSUBS 189*1858f998SYi Kong LTEST( I ) = .FALSE. 190*1858f998SYi Kong 20 CONTINUE 191*1858f998SYi Kong 30 READ( NIN, FMT = 9988, END = 60 )SNAMET, LTESTT 192*1858f998SYi Kong DO 40 I = 1, NSUBS 193*1858f998SYi Kong IF( SNAMET.EQ.SNAMES( I ) ) 194*1858f998SYi Kong $ GO TO 50 195*1858f998SYi Kong 40 CONTINUE 196*1858f998SYi Kong WRITE( NOUT, FMT = 9990 )SNAMET 197*1858f998SYi Kong STOP 198*1858f998SYi Kong 50 LTEST( I ) = LTESTT 199*1858f998SYi Kong GO TO 30 200*1858f998SYi Kong* 201*1858f998SYi Kong 60 CONTINUE 202*1858f998SYi Kong CLOSE ( NIN ) 203*1858f998SYi Kong* 204*1858f998SYi Kong* Compute EPS (the machine precision). 205*1858f998SYi Kong* 206*1858f998SYi Kong EPS = RONE 207*1858f998SYi Kong 70 CONTINUE 208*1858f998SYi Kong IF( SDIFF( RONE + EPS, RONE ).EQ.RZERO ) 209*1858f998SYi Kong $ GO TO 80 210*1858f998SYi Kong EPS = RHALF*EPS 211*1858f998SYi Kong GO TO 70 212*1858f998SYi Kong 80 CONTINUE 213*1858f998SYi Kong EPS = EPS + EPS 214*1858f998SYi Kong WRITE( NOUT, FMT = 9998 )EPS 215*1858f998SYi Kong* 216*1858f998SYi Kong* Check the reliability of CMMCH using exact data. 217*1858f998SYi Kong* 218*1858f998SYi Kong N = MIN( 32, NMAX ) 219*1858f998SYi Kong DO 100 J = 1, N 220*1858f998SYi Kong DO 90 I = 1, N 221*1858f998SYi Kong AB( I, J ) = MAX( I - J + 1, 0 ) 222*1858f998SYi Kong 90 CONTINUE 223*1858f998SYi Kong AB( J, NMAX + 1 ) = J 224*1858f998SYi Kong AB( 1, NMAX + J ) = J 225*1858f998SYi Kong C( J, 1 ) = ZERO 226*1858f998SYi Kong 100 CONTINUE 227*1858f998SYi Kong DO 110 J = 1, N 228*1858f998SYi Kong CC( J ) = J*( ( J + 1 )*J )/2 - ( ( J + 1 )*J*( J - 1 ) )/3 229*1858f998SYi Kong 110 CONTINUE 230*1858f998SYi Kong* CC holds the exact result. On exit from CMMCH CT holds 231*1858f998SYi Kong* the result computed by CMMCH. 232*1858f998SYi Kong TRANSA = 'N' 233*1858f998SYi Kong TRANSB = 'N' 234*1858f998SYi Kong CALL CMMCH( TRANSA, TRANSB, N, 1, N, ONE, AB, NMAX, 235*1858f998SYi Kong $ AB( 1, NMAX + 1 ), NMAX, ZERO, C, NMAX, CT, G, CC, 236*1858f998SYi Kong $ NMAX, EPS, ERR, FATAL, NOUT, .TRUE. ) 237*1858f998SYi Kong SAME = LCE( CC, CT, N ) 238*1858f998SYi Kong IF( .NOT.SAME.OR.ERR.NE.RZERO )THEN 239*1858f998SYi Kong WRITE( NOUT, FMT = 9989 )TRANSA, TRANSB, SAME, ERR 240*1858f998SYi Kong STOP 241*1858f998SYi Kong END IF 242*1858f998SYi Kong TRANSB = 'C' 243*1858f998SYi Kong CALL CMMCH( TRANSA, TRANSB, N, 1, N, ONE, AB, NMAX, 244*1858f998SYi Kong $ AB( 1, NMAX + 1 ), NMAX, ZERO, C, NMAX, CT, G, CC, 245*1858f998SYi Kong $ NMAX, EPS, ERR, FATAL, NOUT, .TRUE. ) 246*1858f998SYi Kong SAME = LCE( CC, CT, N ) 247*1858f998SYi Kong IF( .NOT.SAME.OR.ERR.NE.RZERO )THEN 248*1858f998SYi Kong WRITE( NOUT, FMT = 9989 )TRANSA, TRANSB, SAME, ERR 249*1858f998SYi Kong STOP 250*1858f998SYi Kong END IF 251*1858f998SYi Kong DO 120 J = 1, N 252*1858f998SYi Kong AB( J, NMAX + 1 ) = N - J + 1 253*1858f998SYi Kong AB( 1, NMAX + J ) = N - J + 1 254*1858f998SYi Kong 120 CONTINUE 255*1858f998SYi Kong DO 130 J = 1, N 256*1858f998SYi Kong CC( N - J + 1 ) = J*( ( J + 1 )*J )/2 - 257*1858f998SYi Kong $ ( ( J + 1 )*J*( J - 1 ) )/3 258*1858f998SYi Kong 130 CONTINUE 259*1858f998SYi Kong TRANSA = 'C' 260*1858f998SYi Kong TRANSB = 'N' 261*1858f998SYi Kong CALL CMMCH( TRANSA, TRANSB, N, 1, N, ONE, AB, NMAX, 262*1858f998SYi Kong $ AB( 1, NMAX + 1 ), NMAX, ZERO, C, NMAX, CT, G, CC, 263*1858f998SYi Kong $ NMAX, EPS, ERR, FATAL, NOUT, .TRUE. ) 264*1858f998SYi Kong SAME = LCE( CC, CT, N ) 265*1858f998SYi Kong IF( .NOT.SAME.OR.ERR.NE.RZERO )THEN 266*1858f998SYi Kong WRITE( NOUT, FMT = 9989 )TRANSA, TRANSB, SAME, ERR 267*1858f998SYi Kong STOP 268*1858f998SYi Kong END IF 269*1858f998SYi Kong TRANSB = 'C' 270*1858f998SYi Kong CALL CMMCH( TRANSA, TRANSB, N, 1, N, ONE, AB, NMAX, 271*1858f998SYi Kong $ AB( 1, NMAX + 1 ), NMAX, ZERO, C, NMAX, CT, G, CC, 272*1858f998SYi Kong $ NMAX, EPS, ERR, FATAL, NOUT, .TRUE. ) 273*1858f998SYi Kong SAME = LCE( CC, CT, N ) 274*1858f998SYi Kong IF( .NOT.SAME.OR.ERR.NE.RZERO )THEN 275*1858f998SYi Kong WRITE( NOUT, FMT = 9989 )TRANSA, TRANSB, SAME, ERR 276*1858f998SYi Kong STOP 277*1858f998SYi Kong END IF 278*1858f998SYi Kong* 279*1858f998SYi Kong* Test each subroutine in turn. 280*1858f998SYi Kong* 281*1858f998SYi Kong DO 200 ISNUM = 1, NSUBS 282*1858f998SYi Kong WRITE( NOUT, FMT = * ) 283*1858f998SYi Kong IF( .NOT.LTEST( ISNUM ) )THEN 284*1858f998SYi Kong* Subprogram is not to be tested. 285*1858f998SYi Kong WRITE( NOUT, FMT = 9987 )SNAMES( ISNUM ) 286*1858f998SYi Kong ELSE 287*1858f998SYi Kong SRNAMT = SNAMES( ISNUM ) 288*1858f998SYi Kong* Test error exits. 289*1858f998SYi Kong IF( TSTERR )THEN 290*1858f998SYi Kong CALL CC3CHKE( SNAMES( ISNUM ) ) 291*1858f998SYi Kong WRITE( NOUT, FMT = * ) 292*1858f998SYi Kong END IF 293*1858f998SYi Kong* Test computations. 294*1858f998SYi Kong INFOT = 0 295*1858f998SYi Kong OK = .TRUE. 296*1858f998SYi Kong FATAL = .FALSE. 297*1858f998SYi Kong GO TO ( 140, 150, 150, 160, 160, 170, 170, 298*1858f998SYi Kong $ 180, 180 )ISNUM 299*1858f998SYi Kong* Test CGEMM, 01. 300*1858f998SYi Kong 140 IF (CORDER) THEN 301*1858f998SYi Kong CALL CCHK1(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 302*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 303*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 304*1858f998SYi Kong $ CC, CS, CT, G, 0 ) 305*1858f998SYi Kong END IF 306*1858f998SYi Kong IF (RORDER) THEN 307*1858f998SYi Kong CALL CCHK1(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 308*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 309*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 310*1858f998SYi Kong $ CC, CS, CT, G, 1 ) 311*1858f998SYi Kong END IF 312*1858f998SYi Kong GO TO 190 313*1858f998SYi Kong* Test CHEMM, 02, CSYMM, 03. 314*1858f998SYi Kong 150 IF (CORDER) THEN 315*1858f998SYi Kong CALL CCHK2(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 316*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 317*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 318*1858f998SYi Kong $ CC, CS, CT, G, 0 ) 319*1858f998SYi Kong END IF 320*1858f998SYi Kong IF (RORDER) THEN 321*1858f998SYi Kong CALL CCHK2(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 322*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 323*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 324*1858f998SYi Kong $ CC, CS, CT, G, 1 ) 325*1858f998SYi Kong END IF 326*1858f998SYi Kong GO TO 190 327*1858f998SYi Kong* Test CTRMM, 04, CTRSM, 05. 328*1858f998SYi Kong 160 IF (CORDER) THEN 329*1858f998SYi Kong CALL CCHK3(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 330*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NMAX, AB, 331*1858f998SYi Kong $ AA, AS, AB( 1, NMAX + 1 ), BB, BS, CT, G, C, 332*1858f998SYi Kong $ 0 ) 333*1858f998SYi Kong END IF 334*1858f998SYi Kong IF (RORDER) THEN 335*1858f998SYi Kong CALL CCHK3(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 336*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NMAX, AB, 337*1858f998SYi Kong $ AA, AS, AB( 1, NMAX + 1 ), BB, BS, CT, G, C, 338*1858f998SYi Kong $ 1 ) 339*1858f998SYi Kong END IF 340*1858f998SYi Kong GO TO 190 341*1858f998SYi Kong* Test CHERK, 06, CSYRK, 07. 342*1858f998SYi Kong 170 IF (CORDER) THEN 343*1858f998SYi Kong CALL CCHK4(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 344*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 345*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 346*1858f998SYi Kong $ CC, CS, CT, G, 0 ) 347*1858f998SYi Kong END IF 348*1858f998SYi Kong IF (RORDER) THEN 349*1858f998SYi Kong CALL CCHK4(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 350*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 351*1858f998SYi Kong $ NMAX, AB, AA, AS, AB( 1, NMAX + 1 ), BB, BS, C, 352*1858f998SYi Kong $ CC, CS, CT, G, 1 ) 353*1858f998SYi Kong END IF 354*1858f998SYi Kong GO TO 190 355*1858f998SYi Kong* Test CHER2K, 08, CSYR2K, 09. 356*1858f998SYi Kong 180 IF (CORDER) THEN 357*1858f998SYi Kong CALL CCHK5(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 358*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 359*1858f998SYi Kong $ NMAX, AB, AA, AS, BB, BS, C, CC, CS, CT, G, W, 360*1858f998SYi Kong $ 0 ) 361*1858f998SYi Kong END IF 362*1858f998SYi Kong IF (RORDER) THEN 363*1858f998SYi Kong CALL CCHK5(SNAMES( ISNUM ), EPS, THRESH, NOUT, NTRA, TRACE, 364*1858f998SYi Kong $ REWI, FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, 365*1858f998SYi Kong $ NMAX, AB, AA, AS, BB, BS, C, CC, CS, CT, G, W, 366*1858f998SYi Kong $ 1 ) 367*1858f998SYi Kong END IF 368*1858f998SYi Kong GO TO 190 369*1858f998SYi Kong* 370*1858f998SYi Kong 190 IF( FATAL.AND.SFATAL ) 371*1858f998SYi Kong $ GO TO 210 372*1858f998SYi Kong END IF 373*1858f998SYi Kong 200 CONTINUE 374*1858f998SYi Kong WRITE( NOUT, FMT = 9986 ) 375*1858f998SYi Kong GO TO 230 376*1858f998SYi Kong* 377*1858f998SYi Kong 210 CONTINUE 378*1858f998SYi Kong WRITE( NOUT, FMT = 9985 ) 379*1858f998SYi Kong GO TO 230 380*1858f998SYi Kong* 381*1858f998SYi Kong 220 CONTINUE 382*1858f998SYi Kong WRITE( NOUT, FMT = 9991 ) 383*1858f998SYi Kong* 384*1858f998SYi Kong 230 CONTINUE 385*1858f998SYi Kong IF( TRACE ) 386*1858f998SYi Kong $ CLOSE ( NTRA ) 387*1858f998SYi Kong CLOSE ( NOUT ) 388*1858f998SYi Kong STOP 389*1858f998SYi Kong* 390*1858f998SYi Kong10002 FORMAT( ' COLUMN-MAJOR AND ROW-MAJOR DATA LAYOUTS ARE TESTED' ) 391*1858f998SYi Kong10001 FORMAT(' ROW-MAJOR DATA LAYOUT IS TESTED' ) 392*1858f998SYi Kong10000 FORMAT(' COLUMN-MAJOR DATA LAYOUT IS TESTED' ) 393*1858f998SYi Kong 9999 FORMAT(' ROUTINES PASS COMPUTATIONAL TESTS IF TEST RATIO IS LES', 394*1858f998SYi Kong $ 'S THAN', F8.2 ) 395*1858f998SYi Kong 9998 FORMAT(' RELATIVE MACHINE PRECISION IS TAKEN TO BE', 1P, E9.1 ) 396*1858f998SYi Kong 9997 FORMAT(' NUMBER OF VALUES OF ', A, ' IS LESS THAN 1 OR GREATER ', 397*1858f998SYi Kong $ 'THAN ', I2 ) 398*1858f998SYi Kong 9996 FORMAT( ' VALUE OF N IS LESS THAN 0 OR GREATER THAN ', I2 ) 399*1858f998SYi Kong 9995 FORMAT(' TESTS OF THE COMPLEX LEVEL 3 BLAS', //' THE F', 400*1858f998SYi Kong $ 'OLLOWING PARAMETER VALUES WILL BE USED:' ) 401*1858f998SYi Kong 9994 FORMAT( ' FOR N ', 9I6 ) 402*1858f998SYi Kong 9993 FORMAT( ' FOR ALPHA ', 403*1858f998SYi Kong $ 7( '(', F4.1, ',', F4.1, ') ', : ) ) 404*1858f998SYi Kong 9992 FORMAT( ' FOR BETA ', 405*1858f998SYi Kong $ 7( '(', F4.1, ',', F4.1, ') ', : ) ) 406*1858f998SYi Kong 9991 FORMAT( ' AMEND DATA FILE OR INCREASE ARRAY SIZES IN PROGRAM', 407*1858f998SYi Kong $ /' ******* TESTS ABANDONED *******' ) 408*1858f998SYi Kong 9990 FORMAT(' SUBPROGRAM NAME ', A12,' NOT RECOGNIZED', /' ******* T', 409*1858f998SYi Kong $ 'ESTS ABANDONED *******' ) 410*1858f998SYi Kong 9989 FORMAT(' ERROR IN CMMCH - IN-LINE DOT PRODUCTS ARE BEING EVALU', 411*1858f998SYi Kong $ 'ATED WRONGLY.', /' CMMCH WAS CALLED WITH TRANSA = ', A1, 412*1858f998SYi Kong $ 'AND TRANSB = ', A1, /' AND RETURNED SAME = ', L1, ' AND ', 413*1858f998SYi Kong $ ' ERR = ', F12.3, '.', /' THIS MAY BE DUE TO FAULTS IN THE ', 414*1858f998SYi Kong $ 'ARITHMETIC OR THE COMPILER.', /' ******* TESTS ABANDONED ', 415*1858f998SYi Kong $ '*******' ) 416*1858f998SYi Kong 9988 FORMAT( A12,L2 ) 417*1858f998SYi Kong 9987 FORMAT( 1X, A12,' WAS NOT TESTED' ) 418*1858f998SYi Kong 9986 FORMAT( /' END OF TESTS' ) 419*1858f998SYi Kong 9985 FORMAT( /' ******* FATAL ERROR - TESTS ABANDONED *******' ) 420*1858f998SYi Kong 9984 FORMAT( ' ERROR-EXITS WILL NOT BE TESTED' ) 421*1858f998SYi Kong* 422*1858f998SYi Kong* End of CBLAT3. 423*1858f998SYi Kong* 424*1858f998SYi Kong END 425*1858f998SYi Kong SUBROUTINE CCHK1( SNAME, EPS, THRESH, NOUT, NTRA, TRACE, REWI, 426*1858f998SYi Kong $ FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, NMAX, 427*1858f998SYi Kong $ A, AA, AS, B, BB, BS, C, CC, CS, CT, G, 428*1858f998SYi Kong $ IORDER ) 429*1858f998SYi Kong* 430*1858f998SYi Kong* Tests CGEMM. 431*1858f998SYi Kong* 432*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 433*1858f998SYi Kong* 434*1858f998SYi Kong* -- Written on 8-February-1989. 435*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 436*1858f998SYi Kong* Iain Duff, AERE Harwell. 437*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 438*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 439*1858f998SYi Kong* 440*1858f998SYi Kong* .. Parameters .. 441*1858f998SYi Kong COMPLEX ZERO 442*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ) ) 443*1858f998SYi Kong REAL RZERO 444*1858f998SYi Kong PARAMETER ( RZERO = 0.0 ) 445*1858f998SYi Kong* .. Scalar Arguments .. 446*1858f998SYi Kong REAL EPS, THRESH 447*1858f998SYi Kong INTEGER NALF, NBET, NIDIM, NMAX, NOUT, NTRA, IORDER 448*1858f998SYi Kong LOGICAL FATAL, REWI, TRACE 449*1858f998SYi Kong CHARACTER*12 SNAME 450*1858f998SYi Kong* .. Array Arguments .. 451*1858f998SYi Kong COMPLEX A( NMAX, NMAX ), AA( NMAX*NMAX ), ALF( NALF ), 452*1858f998SYi Kong $ AS( NMAX*NMAX ), B( NMAX, NMAX ), 453*1858f998SYi Kong $ BB( NMAX*NMAX ), BET( NBET ), BS( NMAX*NMAX ), 454*1858f998SYi Kong $ C( NMAX, NMAX ), CC( NMAX*NMAX ), 455*1858f998SYi Kong $ CS( NMAX*NMAX ), CT( NMAX ) 456*1858f998SYi Kong REAL G( NMAX ) 457*1858f998SYi Kong INTEGER IDIM( NIDIM ) 458*1858f998SYi Kong* .. Local Scalars .. 459*1858f998SYi Kong COMPLEX ALPHA, ALS, BETA, BLS 460*1858f998SYi Kong REAL ERR, ERRMAX 461*1858f998SYi Kong INTEGER I, IA, IB, ICA, ICB, IK, IM, IN, K, KS, LAA, 462*1858f998SYi Kong $ LBB, LCC, LDA, LDAS, LDB, LDBS, LDC, LDCS, M, 463*1858f998SYi Kong $ MA, MB, MS, N, NA, NARGS, NB, NC, NS 464*1858f998SYi Kong LOGICAL NULL, RESET, SAME, TRANA, TRANB 465*1858f998SYi Kong CHARACTER*1 TRANAS, TRANBS, TRANSA, TRANSB 466*1858f998SYi Kong CHARACTER*3 ICH 467*1858f998SYi Kong* .. Local Arrays .. 468*1858f998SYi Kong LOGICAL ISAME( 13 ) 469*1858f998SYi Kong* .. External Functions .. 470*1858f998SYi Kong LOGICAL LCE, LCERES 471*1858f998SYi Kong EXTERNAL LCE, LCERES 472*1858f998SYi Kong* .. External Subroutines .. 473*1858f998SYi Kong EXTERNAL CCGEMM, CMAKE, CMMCH 474*1858f998SYi Kong* .. Intrinsic Functions .. 475*1858f998SYi Kong INTRINSIC MAX 476*1858f998SYi Kong* .. Scalars in Common .. 477*1858f998SYi Kong INTEGER INFOT, NOUTC 478*1858f998SYi Kong LOGICAL LERR, OK 479*1858f998SYi Kong* .. Common blocks .. 480*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 481*1858f998SYi Kong* .. Data statements .. 482*1858f998SYi Kong DATA ICH/'NTC'/ 483*1858f998SYi Kong* .. Executable Statements .. 484*1858f998SYi Kong* 485*1858f998SYi Kong NARGS = 13 486*1858f998SYi Kong NC = 0 487*1858f998SYi Kong RESET = .TRUE. 488*1858f998SYi Kong ERRMAX = RZERO 489*1858f998SYi Kong* 490*1858f998SYi Kong DO 110 IM = 1, NIDIM 491*1858f998SYi Kong M = IDIM( IM ) 492*1858f998SYi Kong* 493*1858f998SYi Kong DO 100 IN = 1, NIDIM 494*1858f998SYi Kong N = IDIM( IN ) 495*1858f998SYi Kong* Set LDC to 1 more than minimum value if room. 496*1858f998SYi Kong LDC = M 497*1858f998SYi Kong IF( LDC.LT.NMAX ) 498*1858f998SYi Kong $ LDC = LDC + 1 499*1858f998SYi Kong* Skip tests if not enough room. 500*1858f998SYi Kong IF( LDC.GT.NMAX ) 501*1858f998SYi Kong $ GO TO 100 502*1858f998SYi Kong LCC = LDC*N 503*1858f998SYi Kong NULL = N.LE.0.OR.M.LE.0 504*1858f998SYi Kong* 505*1858f998SYi Kong DO 90 IK = 1, NIDIM 506*1858f998SYi Kong K = IDIM( IK ) 507*1858f998SYi Kong* 508*1858f998SYi Kong DO 80 ICA = 1, 3 509*1858f998SYi Kong TRANSA = ICH( ICA: ICA ) 510*1858f998SYi Kong TRANA = TRANSA.EQ.'T'.OR.TRANSA.EQ.'C' 511*1858f998SYi Kong* 512*1858f998SYi Kong IF( TRANA )THEN 513*1858f998SYi Kong MA = K 514*1858f998SYi Kong NA = M 515*1858f998SYi Kong ELSE 516*1858f998SYi Kong MA = M 517*1858f998SYi Kong NA = K 518*1858f998SYi Kong END IF 519*1858f998SYi Kong* Set LDA to 1 more than minimum value if room. 520*1858f998SYi Kong LDA = MA 521*1858f998SYi Kong IF( LDA.LT.NMAX ) 522*1858f998SYi Kong $ LDA = LDA + 1 523*1858f998SYi Kong* Skip tests if not enough room. 524*1858f998SYi Kong IF( LDA.GT.NMAX ) 525*1858f998SYi Kong $ GO TO 80 526*1858f998SYi Kong LAA = LDA*NA 527*1858f998SYi Kong* 528*1858f998SYi Kong* Generate the matrix A. 529*1858f998SYi Kong* 530*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, A, NMAX, AA, LDA, 531*1858f998SYi Kong $ RESET, ZERO ) 532*1858f998SYi Kong* 533*1858f998SYi Kong DO 70 ICB = 1, 3 534*1858f998SYi Kong TRANSB = ICH( ICB: ICB ) 535*1858f998SYi Kong TRANB = TRANSB.EQ.'T'.OR.TRANSB.EQ.'C' 536*1858f998SYi Kong* 537*1858f998SYi Kong IF( TRANB )THEN 538*1858f998SYi Kong MB = N 539*1858f998SYi Kong NB = K 540*1858f998SYi Kong ELSE 541*1858f998SYi Kong MB = K 542*1858f998SYi Kong NB = N 543*1858f998SYi Kong END IF 544*1858f998SYi Kong* Set LDB to 1 more than minimum value if room. 545*1858f998SYi Kong LDB = MB 546*1858f998SYi Kong IF( LDB.LT.NMAX ) 547*1858f998SYi Kong $ LDB = LDB + 1 548*1858f998SYi Kong* Skip tests if not enough room. 549*1858f998SYi Kong IF( LDB.GT.NMAX ) 550*1858f998SYi Kong $ GO TO 70 551*1858f998SYi Kong LBB = LDB*NB 552*1858f998SYi Kong* 553*1858f998SYi Kong* Generate the matrix B. 554*1858f998SYi Kong* 555*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MB, NB, B, NMAX, BB, 556*1858f998SYi Kong $ LDB, RESET, ZERO ) 557*1858f998SYi Kong* 558*1858f998SYi Kong DO 60 IA = 1, NALF 559*1858f998SYi Kong ALPHA = ALF( IA ) 560*1858f998SYi Kong* 561*1858f998SYi Kong DO 50 IB = 1, NBET 562*1858f998SYi Kong BETA = BET( IB ) 563*1858f998SYi Kong* 564*1858f998SYi Kong* Generate the matrix C. 565*1858f998SYi Kong* 566*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', M, N, C, NMAX, 567*1858f998SYi Kong $ CC, LDC, RESET, ZERO ) 568*1858f998SYi Kong* 569*1858f998SYi Kong NC = NC + 1 570*1858f998SYi Kong* 571*1858f998SYi Kong* Save every datum before calling the 572*1858f998SYi Kong* subroutine. 573*1858f998SYi Kong* 574*1858f998SYi Kong TRANAS = TRANSA 575*1858f998SYi Kong TRANBS = TRANSB 576*1858f998SYi Kong MS = M 577*1858f998SYi Kong NS = N 578*1858f998SYi Kong KS = K 579*1858f998SYi Kong ALS = ALPHA 580*1858f998SYi Kong DO 10 I = 1, LAA 581*1858f998SYi Kong AS( I ) = AA( I ) 582*1858f998SYi Kong 10 CONTINUE 583*1858f998SYi Kong LDAS = LDA 584*1858f998SYi Kong DO 20 I = 1, LBB 585*1858f998SYi Kong BS( I ) = BB( I ) 586*1858f998SYi Kong 20 CONTINUE 587*1858f998SYi Kong LDBS = LDB 588*1858f998SYi Kong BLS = BETA 589*1858f998SYi Kong DO 30 I = 1, LCC 590*1858f998SYi Kong CS( I ) = CC( I ) 591*1858f998SYi Kong 30 CONTINUE 592*1858f998SYi Kong LDCS = LDC 593*1858f998SYi Kong* 594*1858f998SYi Kong* Call the subroutine. 595*1858f998SYi Kong* 596*1858f998SYi Kong IF( TRACE ) 597*1858f998SYi Kong $ CALL CPRCN1(NTRA, NC, SNAME, IORDER, 598*1858f998SYi Kong $ TRANSA, TRANSB, M, N, K, ALPHA, LDA, 599*1858f998SYi Kong $ LDB, BETA, LDC) 600*1858f998SYi Kong IF( REWI ) 601*1858f998SYi Kong $ REWIND NTRA 602*1858f998SYi Kong CALL CCGEMM( IORDER, TRANSA, TRANSB, M, N, 603*1858f998SYi Kong $ K, ALPHA, AA, LDA, BB, LDB, 604*1858f998SYi Kong $ BETA, CC, LDC ) 605*1858f998SYi Kong* 606*1858f998SYi Kong* Check if error-exit was taken incorrectly. 607*1858f998SYi Kong* 608*1858f998SYi Kong IF( .NOT.OK )THEN 609*1858f998SYi Kong WRITE( NOUT, FMT = 9994 ) 610*1858f998SYi Kong FATAL = .TRUE. 611*1858f998SYi Kong GO TO 120 612*1858f998SYi Kong END IF 613*1858f998SYi Kong* 614*1858f998SYi Kong* See what data changed inside subroutines. 615*1858f998SYi Kong* 616*1858f998SYi Kong ISAME( 1 ) = TRANSA.EQ.TRANAS 617*1858f998SYi Kong ISAME( 2 ) = TRANSB.EQ.TRANBS 618*1858f998SYi Kong ISAME( 3 ) = MS.EQ.M 619*1858f998SYi Kong ISAME( 4 ) = NS.EQ.N 620*1858f998SYi Kong ISAME( 5 ) = KS.EQ.K 621*1858f998SYi Kong ISAME( 6 ) = ALS.EQ.ALPHA 622*1858f998SYi Kong ISAME( 7 ) = LCE( AS, AA, LAA ) 623*1858f998SYi Kong ISAME( 8 ) = LDAS.EQ.LDA 624*1858f998SYi Kong ISAME( 9 ) = LCE( BS, BB, LBB ) 625*1858f998SYi Kong ISAME( 10 ) = LDBS.EQ.LDB 626*1858f998SYi Kong ISAME( 11 ) = BLS.EQ.BETA 627*1858f998SYi Kong IF( NULL )THEN 628*1858f998SYi Kong ISAME( 12 ) = LCE( CS, CC, LCC ) 629*1858f998SYi Kong ELSE 630*1858f998SYi Kong ISAME( 12 ) = LCERES( 'ge', ' ', M, N, CS, 631*1858f998SYi Kong $ CC, LDC ) 632*1858f998SYi Kong END IF 633*1858f998SYi Kong ISAME( 13 ) = LDCS.EQ.LDC 634*1858f998SYi Kong* 635*1858f998SYi Kong* If data was incorrectly changed, report 636*1858f998SYi Kong* and return. 637*1858f998SYi Kong* 638*1858f998SYi Kong SAME = .TRUE. 639*1858f998SYi Kong DO 40 I = 1, NARGS 640*1858f998SYi Kong SAME = SAME.AND.ISAME( I ) 641*1858f998SYi Kong IF( .NOT.ISAME( I ) ) 642*1858f998SYi Kong $ WRITE( NOUT, FMT = 9998 )I 643*1858f998SYi Kong 40 CONTINUE 644*1858f998SYi Kong IF( .NOT.SAME )THEN 645*1858f998SYi Kong FATAL = .TRUE. 646*1858f998SYi Kong GO TO 120 647*1858f998SYi Kong END IF 648*1858f998SYi Kong* 649*1858f998SYi Kong IF( .NOT.NULL )THEN 650*1858f998SYi Kong* 651*1858f998SYi Kong* Check the result. 652*1858f998SYi Kong* 653*1858f998SYi Kong CALL CMMCH( TRANSA, TRANSB, M, N, K, 654*1858f998SYi Kong $ ALPHA, A, NMAX, B, NMAX, BETA, 655*1858f998SYi Kong $ C, NMAX, CT, G, CC, LDC, EPS, 656*1858f998SYi Kong $ ERR, FATAL, NOUT, .TRUE. ) 657*1858f998SYi Kong ERRMAX = MAX( ERRMAX, ERR ) 658*1858f998SYi Kong* If got really bad answer, report and 659*1858f998SYi Kong* return. 660*1858f998SYi Kong IF( FATAL ) 661*1858f998SYi Kong $ GO TO 120 662*1858f998SYi Kong END IF 663*1858f998SYi Kong* 664*1858f998SYi Kong 50 CONTINUE 665*1858f998SYi Kong* 666*1858f998SYi Kong 60 CONTINUE 667*1858f998SYi Kong* 668*1858f998SYi Kong 70 CONTINUE 669*1858f998SYi Kong* 670*1858f998SYi Kong 80 CONTINUE 671*1858f998SYi Kong* 672*1858f998SYi Kong 90 CONTINUE 673*1858f998SYi Kong* 674*1858f998SYi Kong 100 CONTINUE 675*1858f998SYi Kong* 676*1858f998SYi Kong 110 CONTINUE 677*1858f998SYi Kong* 678*1858f998SYi Kong* Report result. 679*1858f998SYi Kong* 680*1858f998SYi Kong IF( ERRMAX.LT.THRESH )THEN 681*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10000 )SNAME, NC 682*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10001 )SNAME, NC 683*1858f998SYi Kong ELSE 684*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10002 )SNAME, NC, ERRMAX 685*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10003 )SNAME, NC, ERRMAX 686*1858f998SYi Kong END IF 687*1858f998SYi Kong GO TO 130 688*1858f998SYi Kong* 689*1858f998SYi Kong 120 CONTINUE 690*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )SNAME 691*1858f998SYi Kong CALL CPRCN1(NOUT, NC, SNAME, IORDER, TRANSA, TRANSB, 692*1858f998SYi Kong $ M, N, K, ALPHA, LDA, LDB, BETA, LDC) 693*1858f998SYi Kong* 694*1858f998SYi Kong 130 CONTINUE 695*1858f998SYi Kong RETURN 696*1858f998SYi Kong* 697*1858f998SYi Kong10003 FORMAT( ' ', A12,' COMPLETED THE ROW-MAJOR COMPUTATIONAL ', 698*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 699*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 700*1858f998SYi Kong10002 FORMAT( ' ', A12,' COMPLETED THE COLUMN-MAJOR COMPUTATIONAL ', 701*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 702*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 703*1858f998SYi Kong10001 FORMAT( ' ', A12,' PASSED THE ROW-MAJOR COMPUTATIONAL TESTS', 704*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 705*1858f998SYi Kong10000 FORMAT( ' ', A12,' PASSED THE COLUMN-MAJOR COMPUTATIONAL TESTS', 706*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 707*1858f998SYi Kong 9998 FORMAT(' ******* FATAL ERROR - PARAMETER NUMBER ', I2, ' WAS CH', 708*1858f998SYi Kong $ 'ANGED INCORRECTLY *******' ) 709*1858f998SYi Kong 9996 FORMAT( ' ******* ', A12,' FAILED ON CALL NUMBER:' ) 710*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(''', A1, ''',''', A1, ''',', 711*1858f998SYi Kong $ 3( I3, ',' ), '(', F4.1, ',', F4.1, '), A,', I3, ', B,', I3, 712*1858f998SYi Kong $ ',(', F4.1, ',', F4.1, '), C,', I3, ').' ) 713*1858f998SYi Kong 9994 FORMAT(' ******* FATAL ERROR - ERROR-EXIT TAKEN ON VALID CALL *', 714*1858f998SYi Kong $ '******' ) 715*1858f998SYi Kong* 716*1858f998SYi Kong* End of CCHK1. 717*1858f998SYi Kong* 718*1858f998SYi Kong END 719*1858f998SYi Kong* 720*1858f998SYi Kong SUBROUTINE CPRCN1(NOUT, NC, SNAME, IORDER, TRANSA, TRANSB, M, N, 721*1858f998SYi Kong $ K, ALPHA, LDA, LDB, BETA, LDC) 722*1858f998SYi Kong INTEGER NOUT, NC, IORDER, M, N, K, LDA, LDB, LDC 723*1858f998SYi Kong COMPLEX ALPHA, BETA 724*1858f998SYi Kong CHARACTER*1 TRANSA, TRANSB 725*1858f998SYi Kong CHARACTER*12 SNAME 726*1858f998SYi Kong CHARACTER*14 CRC, CTA,CTB 727*1858f998SYi Kong 728*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 729*1858f998SYi Kong CTA = ' CblasNoTrans' 730*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 731*1858f998SYi Kong CTA = ' CblasTrans' 732*1858f998SYi Kong ELSE 733*1858f998SYi Kong CTA = 'CblasConjTrans' 734*1858f998SYi Kong END IF 735*1858f998SYi Kong IF (TRANSB.EQ.'N')THEN 736*1858f998SYi Kong CTB = ' CblasNoTrans' 737*1858f998SYi Kong ELSE IF (TRANSB.EQ.'T')THEN 738*1858f998SYi Kong CTB = ' CblasTrans' 739*1858f998SYi Kong ELSE 740*1858f998SYi Kong CTB = 'CblasConjTrans' 741*1858f998SYi Kong END IF 742*1858f998SYi Kong IF (IORDER.EQ.1)THEN 743*1858f998SYi Kong CRC = ' CblasRowMajor' 744*1858f998SYi Kong ELSE 745*1858f998SYi Kong CRC = ' CblasColMajor' 746*1858f998SYi Kong END IF 747*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC,SNAME,CRC, CTA,CTB 748*1858f998SYi Kong WRITE(NOUT, FMT = 9994)M, N, K, ALPHA, LDA, LDB, BETA, LDC 749*1858f998SYi Kong 750*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', A14, ',', A14, ',', A14, ',') 751*1858f998SYi Kong 9994 FORMAT( 10X, 3( I3, ',' ) ,' (', F4.1,',',F4.1,') , A,', 752*1858f998SYi Kong $ I3, ', B,', I3, ', (', F4.1,',',F4.1,') , C,', I3, ').' ) 753*1858f998SYi Kong END 754*1858f998SYi Kong* 755*1858f998SYi Kong SUBROUTINE CCHK2( SNAME, EPS, THRESH, NOUT, NTRA, TRACE, REWI, 756*1858f998SYi Kong $ FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, NMAX, 757*1858f998SYi Kong $ A, AA, AS, B, BB, BS, C, CC, CS, CT, G, 758*1858f998SYi Kong $ IORDER ) 759*1858f998SYi Kong* 760*1858f998SYi Kong* Tests CHEMM and CSYMM. 761*1858f998SYi Kong* 762*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 763*1858f998SYi Kong* 764*1858f998SYi Kong* -- Written on 8-February-1989. 765*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 766*1858f998SYi Kong* Iain Duff, AERE Harwell. 767*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 768*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 769*1858f998SYi Kong* 770*1858f998SYi Kong* .. Parameters .. 771*1858f998SYi Kong COMPLEX ZERO 772*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ) ) 773*1858f998SYi Kong REAL RZERO 774*1858f998SYi Kong PARAMETER ( RZERO = 0.0 ) 775*1858f998SYi Kong* .. Scalar Arguments .. 776*1858f998SYi Kong REAL EPS, THRESH 777*1858f998SYi Kong INTEGER NALF, NBET, NIDIM, NMAX, NOUT, NTRA, IORDER 778*1858f998SYi Kong LOGICAL FATAL, REWI, TRACE 779*1858f998SYi Kong CHARACTER*12 SNAME 780*1858f998SYi Kong* .. Array Arguments .. 781*1858f998SYi Kong COMPLEX A( NMAX, NMAX ), AA( NMAX*NMAX ), ALF( NALF ), 782*1858f998SYi Kong $ AS( NMAX*NMAX ), B( NMAX, NMAX ), 783*1858f998SYi Kong $ BB( NMAX*NMAX ), BET( NBET ), BS( NMAX*NMAX ), 784*1858f998SYi Kong $ C( NMAX, NMAX ), CC( NMAX*NMAX ), 785*1858f998SYi Kong $ CS( NMAX*NMAX ), CT( NMAX ) 786*1858f998SYi Kong REAL G( NMAX ) 787*1858f998SYi Kong INTEGER IDIM( NIDIM ) 788*1858f998SYi Kong* .. Local Scalars .. 789*1858f998SYi Kong COMPLEX ALPHA, ALS, BETA, BLS 790*1858f998SYi Kong REAL ERR, ERRMAX 791*1858f998SYi Kong INTEGER I, IA, IB, ICS, ICU, IM, IN, LAA, LBB, LCC, 792*1858f998SYi Kong $ LDA, LDAS, LDB, LDBS, LDC, LDCS, M, MS, N, NA, 793*1858f998SYi Kong $ NARGS, NC, NS 794*1858f998SYi Kong LOGICAL CONJ, LEFT, NULL, RESET, SAME 795*1858f998SYi Kong CHARACTER*1 SIDE, SIDES, UPLO, UPLOS 796*1858f998SYi Kong CHARACTER*2 ICHS, ICHU 797*1858f998SYi Kong* .. Local Arrays .. 798*1858f998SYi Kong LOGICAL ISAME( 13 ) 799*1858f998SYi Kong* .. External Functions .. 800*1858f998SYi Kong LOGICAL LCE, LCERES 801*1858f998SYi Kong EXTERNAL LCE, LCERES 802*1858f998SYi Kong* .. External Subroutines .. 803*1858f998SYi Kong EXTERNAL CCHEMM, CMAKE, CMMCH, CCSYMM 804*1858f998SYi Kong* .. Intrinsic Functions .. 805*1858f998SYi Kong INTRINSIC MAX 806*1858f998SYi Kong* .. Scalars in Common .. 807*1858f998SYi Kong INTEGER INFOT, NOUTC 808*1858f998SYi Kong LOGICAL LERR, OK 809*1858f998SYi Kong* .. Common blocks .. 810*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 811*1858f998SYi Kong* .. Data statements .. 812*1858f998SYi Kong DATA ICHS/'LR'/, ICHU/'UL'/ 813*1858f998SYi Kong* .. Executable Statements .. 814*1858f998SYi Kong CONJ = SNAME( 8: 9 ).EQ.'he' 815*1858f998SYi Kong* 816*1858f998SYi Kong NARGS = 12 817*1858f998SYi Kong NC = 0 818*1858f998SYi Kong RESET = .TRUE. 819*1858f998SYi Kong ERRMAX = RZERO 820*1858f998SYi Kong* 821*1858f998SYi Kong DO 100 IM = 1, NIDIM 822*1858f998SYi Kong M = IDIM( IM ) 823*1858f998SYi Kong* 824*1858f998SYi Kong DO 90 IN = 1, NIDIM 825*1858f998SYi Kong N = IDIM( IN ) 826*1858f998SYi Kong* Set LDC to 1 more than minimum value if room. 827*1858f998SYi Kong LDC = M 828*1858f998SYi Kong IF( LDC.LT.NMAX ) 829*1858f998SYi Kong $ LDC = LDC + 1 830*1858f998SYi Kong* Skip tests if not enough room. 831*1858f998SYi Kong IF( LDC.GT.NMAX ) 832*1858f998SYi Kong $ GO TO 90 833*1858f998SYi Kong LCC = LDC*N 834*1858f998SYi Kong NULL = N.LE.0.OR.M.LE.0 835*1858f998SYi Kong* Set LDB to 1 more than minimum value if room. 836*1858f998SYi Kong LDB = M 837*1858f998SYi Kong IF( LDB.LT.NMAX ) 838*1858f998SYi Kong $ LDB = LDB + 1 839*1858f998SYi Kong* Skip tests if not enough room. 840*1858f998SYi Kong IF( LDB.GT.NMAX ) 841*1858f998SYi Kong $ GO TO 90 842*1858f998SYi Kong LBB = LDB*N 843*1858f998SYi Kong* 844*1858f998SYi Kong* Generate the matrix B. 845*1858f998SYi Kong* 846*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', M, N, B, NMAX, BB, LDB, RESET, 847*1858f998SYi Kong $ ZERO ) 848*1858f998SYi Kong* 849*1858f998SYi Kong DO 80 ICS = 1, 2 850*1858f998SYi Kong SIDE = ICHS( ICS: ICS ) 851*1858f998SYi Kong LEFT = SIDE.EQ.'L' 852*1858f998SYi Kong* 853*1858f998SYi Kong IF( LEFT )THEN 854*1858f998SYi Kong NA = M 855*1858f998SYi Kong ELSE 856*1858f998SYi Kong NA = N 857*1858f998SYi Kong END IF 858*1858f998SYi Kong* Set LDA to 1 more than minimum value if room. 859*1858f998SYi Kong LDA = NA 860*1858f998SYi Kong IF( LDA.LT.NMAX ) 861*1858f998SYi Kong $ LDA = LDA + 1 862*1858f998SYi Kong* Skip tests if not enough room. 863*1858f998SYi Kong IF( LDA.GT.NMAX ) 864*1858f998SYi Kong $ GO TO 80 865*1858f998SYi Kong LAA = LDA*NA 866*1858f998SYi Kong* 867*1858f998SYi Kong DO 70 ICU = 1, 2 868*1858f998SYi Kong UPLO = ICHU( ICU: ICU ) 869*1858f998SYi Kong* 870*1858f998SYi Kong* Generate the hermitian or symmetric matrix A. 871*1858f998SYi Kong* 872*1858f998SYi Kong CALL CMAKE(SNAME( 8: 9 ), UPLO, ' ', NA, NA, A, NMAX, 873*1858f998SYi Kong $ AA, LDA, RESET, ZERO ) 874*1858f998SYi Kong* 875*1858f998SYi Kong DO 60 IA = 1, NALF 876*1858f998SYi Kong ALPHA = ALF( IA ) 877*1858f998SYi Kong* 878*1858f998SYi Kong DO 50 IB = 1, NBET 879*1858f998SYi Kong BETA = BET( IB ) 880*1858f998SYi Kong* 881*1858f998SYi Kong* Generate the matrix C. 882*1858f998SYi Kong* 883*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', M, N, C, NMAX, CC, 884*1858f998SYi Kong $ LDC, RESET, ZERO ) 885*1858f998SYi Kong* 886*1858f998SYi Kong NC = NC + 1 887*1858f998SYi Kong* 888*1858f998SYi Kong* Save every datum before calling the 889*1858f998SYi Kong* subroutine. 890*1858f998SYi Kong* 891*1858f998SYi Kong SIDES = SIDE 892*1858f998SYi Kong UPLOS = UPLO 893*1858f998SYi Kong MS = M 894*1858f998SYi Kong NS = N 895*1858f998SYi Kong ALS = ALPHA 896*1858f998SYi Kong DO 10 I = 1, LAA 897*1858f998SYi Kong AS( I ) = AA( I ) 898*1858f998SYi Kong 10 CONTINUE 899*1858f998SYi Kong LDAS = LDA 900*1858f998SYi Kong DO 20 I = 1, LBB 901*1858f998SYi Kong BS( I ) = BB( I ) 902*1858f998SYi Kong 20 CONTINUE 903*1858f998SYi Kong LDBS = LDB 904*1858f998SYi Kong BLS = BETA 905*1858f998SYi Kong DO 30 I = 1, LCC 906*1858f998SYi Kong CS( I ) = CC( I ) 907*1858f998SYi Kong 30 CONTINUE 908*1858f998SYi Kong LDCS = LDC 909*1858f998SYi Kong* 910*1858f998SYi Kong* Call the subroutine. 911*1858f998SYi Kong* 912*1858f998SYi Kong IF( TRACE ) 913*1858f998SYi Kong $ CALL CPRCN2(NTRA, NC, SNAME, IORDER, 914*1858f998SYi Kong $ SIDE, UPLO, M, N, ALPHA, LDA, LDB, 915*1858f998SYi Kong $ BETA, LDC) 916*1858f998SYi Kong IF( REWI ) 917*1858f998SYi Kong $ REWIND NTRA 918*1858f998SYi Kong IF( CONJ )THEN 919*1858f998SYi Kong CALL CCHEMM( IORDER, SIDE, UPLO, M, N, 920*1858f998SYi Kong $ ALPHA, AA, LDA, BB, LDB, BETA, 921*1858f998SYi Kong $ CC, LDC ) 922*1858f998SYi Kong ELSE 923*1858f998SYi Kong CALL CCSYMM( IORDER, SIDE, UPLO, M, N, 924*1858f998SYi Kong $ ALPHA, AA, LDA, BB, LDB, BETA, 925*1858f998SYi Kong $ CC, LDC ) 926*1858f998SYi Kong END IF 927*1858f998SYi Kong* 928*1858f998SYi Kong* Check if error-exit was taken incorrectly. 929*1858f998SYi Kong* 930*1858f998SYi Kong IF( .NOT.OK )THEN 931*1858f998SYi Kong WRITE( NOUT, FMT = 9994 ) 932*1858f998SYi Kong FATAL = .TRUE. 933*1858f998SYi Kong GO TO 110 934*1858f998SYi Kong END IF 935*1858f998SYi Kong* 936*1858f998SYi Kong* See what data changed inside subroutines. 937*1858f998SYi Kong* 938*1858f998SYi Kong ISAME( 1 ) = SIDES.EQ.SIDE 939*1858f998SYi Kong ISAME( 2 ) = UPLOS.EQ.UPLO 940*1858f998SYi Kong ISAME( 3 ) = MS.EQ.M 941*1858f998SYi Kong ISAME( 4 ) = NS.EQ.N 942*1858f998SYi Kong ISAME( 5 ) = ALS.EQ.ALPHA 943*1858f998SYi Kong ISAME( 6 ) = LCE( AS, AA, LAA ) 944*1858f998SYi Kong ISAME( 7 ) = LDAS.EQ.LDA 945*1858f998SYi Kong ISAME( 8 ) = LCE( BS, BB, LBB ) 946*1858f998SYi Kong ISAME( 9 ) = LDBS.EQ.LDB 947*1858f998SYi Kong ISAME( 10 ) = BLS.EQ.BETA 948*1858f998SYi Kong IF( NULL )THEN 949*1858f998SYi Kong ISAME( 11 ) = LCE( CS, CC, LCC ) 950*1858f998SYi Kong ELSE 951*1858f998SYi Kong ISAME( 11 ) = LCERES( 'ge', ' ', M, N, CS, 952*1858f998SYi Kong $ CC, LDC ) 953*1858f998SYi Kong END IF 954*1858f998SYi Kong ISAME( 12 ) = LDCS.EQ.LDC 955*1858f998SYi Kong* 956*1858f998SYi Kong* If data was incorrectly changed, report and 957*1858f998SYi Kong* return. 958*1858f998SYi Kong* 959*1858f998SYi Kong SAME = .TRUE. 960*1858f998SYi Kong DO 40 I = 1, NARGS 961*1858f998SYi Kong SAME = SAME.AND.ISAME( I ) 962*1858f998SYi Kong IF( .NOT.ISAME( I ) ) 963*1858f998SYi Kong $ WRITE( NOUT, FMT = 9998 )I 964*1858f998SYi Kong 40 CONTINUE 965*1858f998SYi Kong IF( .NOT.SAME )THEN 966*1858f998SYi Kong FATAL = .TRUE. 967*1858f998SYi Kong GO TO 110 968*1858f998SYi Kong END IF 969*1858f998SYi Kong* 970*1858f998SYi Kong IF( .NOT.NULL )THEN 971*1858f998SYi Kong* 972*1858f998SYi Kong* Check the result. 973*1858f998SYi Kong* 974*1858f998SYi Kong IF( LEFT )THEN 975*1858f998SYi Kong CALL CMMCH( 'N', 'N', M, N, M, ALPHA, A, 976*1858f998SYi Kong $ NMAX, B, NMAX, BETA, C, NMAX, 977*1858f998SYi Kong $ CT, G, CC, LDC, EPS, ERR, 978*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 979*1858f998SYi Kong ELSE 980*1858f998SYi Kong CALL CMMCH( 'N', 'N', M, N, N, ALPHA, B, 981*1858f998SYi Kong $ NMAX, A, NMAX, BETA, C, NMAX, 982*1858f998SYi Kong $ CT, G, CC, LDC, EPS, ERR, 983*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 984*1858f998SYi Kong END IF 985*1858f998SYi Kong ERRMAX = MAX( ERRMAX, ERR ) 986*1858f998SYi Kong* If got really bad answer, report and 987*1858f998SYi Kong* return. 988*1858f998SYi Kong IF( FATAL ) 989*1858f998SYi Kong $ GO TO 110 990*1858f998SYi Kong END IF 991*1858f998SYi Kong* 992*1858f998SYi Kong 50 CONTINUE 993*1858f998SYi Kong* 994*1858f998SYi Kong 60 CONTINUE 995*1858f998SYi Kong* 996*1858f998SYi Kong 70 CONTINUE 997*1858f998SYi Kong* 998*1858f998SYi Kong 80 CONTINUE 999*1858f998SYi Kong* 1000*1858f998SYi Kong 90 CONTINUE 1001*1858f998SYi Kong* 1002*1858f998SYi Kong 100 CONTINUE 1003*1858f998SYi Kong* 1004*1858f998SYi Kong* Report result. 1005*1858f998SYi Kong* 1006*1858f998SYi Kong IF( ERRMAX.LT.THRESH )THEN 1007*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10000 )SNAME, NC 1008*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10001 )SNAME, NC 1009*1858f998SYi Kong ELSE 1010*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10002 )SNAME, NC, ERRMAX 1011*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10003 )SNAME, NC, ERRMAX 1012*1858f998SYi Kong END IF 1013*1858f998SYi Kong GO TO 120 1014*1858f998SYi Kong* 1015*1858f998SYi Kong 110 CONTINUE 1016*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )SNAME 1017*1858f998SYi Kong CALL CPRCN2(NOUT, NC, SNAME, IORDER, SIDE, UPLO, M, N, ALPHA, LDA, 1018*1858f998SYi Kong $ LDB, BETA, LDC) 1019*1858f998SYi Kong* 1020*1858f998SYi Kong 120 CONTINUE 1021*1858f998SYi Kong RETURN 1022*1858f998SYi Kong* 1023*1858f998SYi Kong10003 FORMAT( ' ', A12,' COMPLETED THE ROW-MAJOR COMPUTATIONAL ', 1024*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1025*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1026*1858f998SYi Kong10002 FORMAT( ' ', A12,' COMPLETED THE COLUMN-MAJOR COMPUTATIONAL ', 1027*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1028*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1029*1858f998SYi Kong10001 FORMAT( ' ', A12,' PASSED THE ROW-MAJOR COMPUTATIONAL TESTS', 1030*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1031*1858f998SYi Kong10000 FORMAT( ' ', A12,' PASSED THE COLUMN-MAJOR COMPUTATIONAL TESTS', 1032*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1033*1858f998SYi Kong 9998 FORMAT(' ******* FATAL ERROR - PARAMETER NUMBER ', I2, ' WAS CH', 1034*1858f998SYi Kong $ 'ANGED INCORRECTLY *******' ) 1035*1858f998SYi Kong 9996 FORMAT( ' ******* ', A12,' FAILED ON CALL NUMBER:' ) 1036*1858f998SYi Kong 9995 FORMAT(1X, I6, ': ', A12,'(', 2( '''', A1, ''',' ), 2( I3, ',' ), 1037*1858f998SYi Kong $ '(', F4.1, ',', F4.1, '), A,', I3, ', B,', I3, ',(', F4.1, 1038*1858f998SYi Kong $ ',', F4.1, '), C,', I3, ') .' ) 1039*1858f998SYi Kong 9994 FORMAT(' ******* FATAL ERROR - ERROR-EXIT TAKEN ON VALID CALL *', 1040*1858f998SYi Kong $ '******' ) 1041*1858f998SYi Kong* 1042*1858f998SYi Kong* End of CCHK2. 1043*1858f998SYi Kong* 1044*1858f998SYi Kong END 1045*1858f998SYi Kong* 1046*1858f998SYi Kong SUBROUTINE CPRCN2(NOUT, NC, SNAME, IORDER, SIDE, UPLO, M, N, 1047*1858f998SYi Kong $ ALPHA, LDA, LDB, BETA, LDC) 1048*1858f998SYi Kong INTEGER NOUT, NC, IORDER, M, N, LDA, LDB, LDC 1049*1858f998SYi Kong COMPLEX ALPHA, BETA 1050*1858f998SYi Kong CHARACTER*1 SIDE, UPLO 1051*1858f998SYi Kong CHARACTER*12 SNAME 1052*1858f998SYi Kong CHARACTER*14 CRC, CS,CU 1053*1858f998SYi Kong 1054*1858f998SYi Kong IF (SIDE.EQ.'L')THEN 1055*1858f998SYi Kong CS = ' CblasLeft' 1056*1858f998SYi Kong ELSE 1057*1858f998SYi Kong CS = ' CblasRight' 1058*1858f998SYi Kong END IF 1059*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 1060*1858f998SYi Kong CU = ' CblasUpper' 1061*1858f998SYi Kong ELSE 1062*1858f998SYi Kong CU = ' CblasLower' 1063*1858f998SYi Kong END IF 1064*1858f998SYi Kong IF (IORDER.EQ.1)THEN 1065*1858f998SYi Kong CRC = ' CblasRowMajor' 1066*1858f998SYi Kong ELSE 1067*1858f998SYi Kong CRC = ' CblasColMajor' 1068*1858f998SYi Kong END IF 1069*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC,SNAME,CRC, CS,CU 1070*1858f998SYi Kong WRITE(NOUT, FMT = 9994)M, N, ALPHA, LDA, LDB, BETA, LDC 1071*1858f998SYi Kong 1072*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', A14, ',', A14, ',', A14, ',') 1073*1858f998SYi Kong 9994 FORMAT( 10X, 2( I3, ',' ),' (',F4.1,',',F4.1, '), A,', I3, 1074*1858f998SYi Kong $ ', B,', I3, ', (',F4.1,',',F4.1, '), ', 'C,', I3, ').' ) 1075*1858f998SYi Kong END 1076*1858f998SYi Kong* 1077*1858f998SYi Kong SUBROUTINE CCHK3( SNAME, EPS, THRESH, NOUT, NTRA, TRACE, REWI, 1078*1858f998SYi Kong $ FATAL, NIDIM, IDIM, NALF, ALF, NMAX, A, AA, AS, 1079*1858f998SYi Kong $ B, BB, BS, CT, G, C, IORDER ) 1080*1858f998SYi Kong* 1081*1858f998SYi Kong* Tests CTRMM and CTRSM. 1082*1858f998SYi Kong* 1083*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 1084*1858f998SYi Kong* 1085*1858f998SYi Kong* -- Written on 8-February-1989. 1086*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 1087*1858f998SYi Kong* Iain Duff, AERE Harwell. 1088*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 1089*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 1090*1858f998SYi Kong* 1091*1858f998SYi Kong* .. Parameters .. 1092*1858f998SYi Kong COMPLEX ZERO, ONE 1093*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ), ONE = ( 1.0, 0.0 ) ) 1094*1858f998SYi Kong REAL RZERO 1095*1858f998SYi Kong PARAMETER ( RZERO = 0.0 ) 1096*1858f998SYi Kong* .. Scalar Arguments .. 1097*1858f998SYi Kong REAL EPS, THRESH 1098*1858f998SYi Kong INTEGER NALF, NIDIM, NMAX, NOUT, NTRA, IORDER 1099*1858f998SYi Kong LOGICAL FATAL, REWI, TRACE 1100*1858f998SYi Kong CHARACTER*12 SNAME 1101*1858f998SYi Kong* .. Array Arguments .. 1102*1858f998SYi Kong COMPLEX A( NMAX, NMAX ), AA( NMAX*NMAX ), ALF( NALF ), 1103*1858f998SYi Kong $ AS( NMAX*NMAX ), B( NMAX, NMAX ), 1104*1858f998SYi Kong $ BB( NMAX*NMAX ), BS( NMAX*NMAX ), 1105*1858f998SYi Kong $ C( NMAX, NMAX ), CT( NMAX ) 1106*1858f998SYi Kong REAL G( NMAX ) 1107*1858f998SYi Kong INTEGER IDIM( NIDIM ) 1108*1858f998SYi Kong* .. Local Scalars .. 1109*1858f998SYi Kong COMPLEX ALPHA, ALS 1110*1858f998SYi Kong REAL ERR, ERRMAX 1111*1858f998SYi Kong INTEGER I, IA, ICD, ICS, ICT, ICU, IM, IN, J, LAA, LBB, 1112*1858f998SYi Kong $ LDA, LDAS, LDB, LDBS, M, MS, N, NA, NARGS, NC, 1113*1858f998SYi Kong $ NS 1114*1858f998SYi Kong LOGICAL LEFT, NULL, RESET, SAME 1115*1858f998SYi Kong CHARACTER*1 DIAG, DIAGS, SIDE, SIDES, TRANAS, TRANSA, UPLO, 1116*1858f998SYi Kong $ UPLOS 1117*1858f998SYi Kong CHARACTER*2 ICHD, ICHS, ICHU 1118*1858f998SYi Kong CHARACTER*3 ICHT 1119*1858f998SYi Kong* .. Local Arrays .. 1120*1858f998SYi Kong LOGICAL ISAME( 13 ) 1121*1858f998SYi Kong* .. External Functions .. 1122*1858f998SYi Kong LOGICAL LCE, LCERES 1123*1858f998SYi Kong EXTERNAL LCE, LCERES 1124*1858f998SYi Kong* .. External Subroutines .. 1125*1858f998SYi Kong EXTERNAL CMAKE, CMMCH, CCTRMM, CCTRSM 1126*1858f998SYi Kong* .. Intrinsic Functions .. 1127*1858f998SYi Kong INTRINSIC MAX 1128*1858f998SYi Kong* .. Scalars in Common .. 1129*1858f998SYi Kong INTEGER INFOT, NOUTC 1130*1858f998SYi Kong LOGICAL LERR, OK 1131*1858f998SYi Kong* .. Common blocks .. 1132*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 1133*1858f998SYi Kong* .. Data statements .. 1134*1858f998SYi Kong DATA ICHU/'UL'/, ICHT/'NTC'/, ICHD/'UN'/, ICHS/'LR'/ 1135*1858f998SYi Kong* .. Executable Statements .. 1136*1858f998SYi Kong* 1137*1858f998SYi Kong NARGS = 11 1138*1858f998SYi Kong NC = 0 1139*1858f998SYi Kong RESET = .TRUE. 1140*1858f998SYi Kong ERRMAX = RZERO 1141*1858f998SYi Kong* Set up zero matrix for CMMCH. 1142*1858f998SYi Kong DO 20 J = 1, NMAX 1143*1858f998SYi Kong DO 10 I = 1, NMAX 1144*1858f998SYi Kong C( I, J ) = ZERO 1145*1858f998SYi Kong 10 CONTINUE 1146*1858f998SYi Kong 20 CONTINUE 1147*1858f998SYi Kong* 1148*1858f998SYi Kong DO 140 IM = 1, NIDIM 1149*1858f998SYi Kong M = IDIM( IM ) 1150*1858f998SYi Kong* 1151*1858f998SYi Kong DO 130 IN = 1, NIDIM 1152*1858f998SYi Kong N = IDIM( IN ) 1153*1858f998SYi Kong* Set LDB to 1 more than minimum value if room. 1154*1858f998SYi Kong LDB = M 1155*1858f998SYi Kong IF( LDB.LT.NMAX ) 1156*1858f998SYi Kong $ LDB = LDB + 1 1157*1858f998SYi Kong* Skip tests if not enough room. 1158*1858f998SYi Kong IF( LDB.GT.NMAX ) 1159*1858f998SYi Kong $ GO TO 130 1160*1858f998SYi Kong LBB = LDB*N 1161*1858f998SYi Kong NULL = M.LE.0.OR.N.LE.0 1162*1858f998SYi Kong* 1163*1858f998SYi Kong DO 120 ICS = 1, 2 1164*1858f998SYi Kong SIDE = ICHS( ICS: ICS ) 1165*1858f998SYi Kong LEFT = SIDE.EQ.'L' 1166*1858f998SYi Kong IF( LEFT )THEN 1167*1858f998SYi Kong NA = M 1168*1858f998SYi Kong ELSE 1169*1858f998SYi Kong NA = N 1170*1858f998SYi Kong END IF 1171*1858f998SYi Kong* Set LDA to 1 more than minimum value if room. 1172*1858f998SYi Kong LDA = NA 1173*1858f998SYi Kong IF( LDA.LT.NMAX ) 1174*1858f998SYi Kong $ LDA = LDA + 1 1175*1858f998SYi Kong* Skip tests if not enough room. 1176*1858f998SYi Kong IF( LDA.GT.NMAX ) 1177*1858f998SYi Kong $ GO TO 130 1178*1858f998SYi Kong LAA = LDA*NA 1179*1858f998SYi Kong* 1180*1858f998SYi Kong DO 110 ICU = 1, 2 1181*1858f998SYi Kong UPLO = ICHU( ICU: ICU ) 1182*1858f998SYi Kong* 1183*1858f998SYi Kong DO 100 ICT = 1, 3 1184*1858f998SYi Kong TRANSA = ICHT( ICT: ICT ) 1185*1858f998SYi Kong* 1186*1858f998SYi Kong DO 90 ICD = 1, 2 1187*1858f998SYi Kong DIAG = ICHD( ICD: ICD ) 1188*1858f998SYi Kong* 1189*1858f998SYi Kong DO 80 IA = 1, NALF 1190*1858f998SYi Kong ALPHA = ALF( IA ) 1191*1858f998SYi Kong* 1192*1858f998SYi Kong* Generate the matrix A. 1193*1858f998SYi Kong* 1194*1858f998SYi Kong CALL CMAKE( 'tr', UPLO, DIAG, NA, NA, A, 1195*1858f998SYi Kong $ NMAX, AA, LDA, RESET, ZERO ) 1196*1858f998SYi Kong* 1197*1858f998SYi Kong* Generate the matrix B. 1198*1858f998SYi Kong* 1199*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', M, N, B, NMAX, 1200*1858f998SYi Kong $ BB, LDB, RESET, ZERO ) 1201*1858f998SYi Kong* 1202*1858f998SYi Kong NC = NC + 1 1203*1858f998SYi Kong* 1204*1858f998SYi Kong* Save every datum before calling the 1205*1858f998SYi Kong* subroutine. 1206*1858f998SYi Kong* 1207*1858f998SYi Kong SIDES = SIDE 1208*1858f998SYi Kong UPLOS = UPLO 1209*1858f998SYi Kong TRANAS = TRANSA 1210*1858f998SYi Kong DIAGS = DIAG 1211*1858f998SYi Kong MS = M 1212*1858f998SYi Kong NS = N 1213*1858f998SYi Kong ALS = ALPHA 1214*1858f998SYi Kong DO 30 I = 1, LAA 1215*1858f998SYi Kong AS( I ) = AA( I ) 1216*1858f998SYi Kong 30 CONTINUE 1217*1858f998SYi Kong LDAS = LDA 1218*1858f998SYi Kong DO 40 I = 1, LBB 1219*1858f998SYi Kong BS( I ) = BB( I ) 1220*1858f998SYi Kong 40 CONTINUE 1221*1858f998SYi Kong LDBS = LDB 1222*1858f998SYi Kong* 1223*1858f998SYi Kong* Call the subroutine. 1224*1858f998SYi Kong* 1225*1858f998SYi Kong IF( SNAME( 10: 11 ).EQ.'mm' )THEN 1226*1858f998SYi Kong IF( TRACE ) 1227*1858f998SYi Kong $ CALL CPRCN3( NTRA, NC, SNAME, IORDER, 1228*1858f998SYi Kong $ SIDE, UPLO, TRANSA, DIAG, M, N, ALPHA, 1229*1858f998SYi Kong $ LDA, LDB) 1230*1858f998SYi Kong IF( REWI ) 1231*1858f998SYi Kong $ REWIND NTRA 1232*1858f998SYi Kong CALL CCTRMM(IORDER, SIDE, UPLO, TRANSA, 1233*1858f998SYi Kong $ DIAG, M, N, ALPHA, AA, LDA, 1234*1858f998SYi Kong $ BB, LDB ) 1235*1858f998SYi Kong ELSE IF( SNAME( 10: 11 ).EQ.'sm' )THEN 1236*1858f998SYi Kong IF( TRACE ) 1237*1858f998SYi Kong $ CALL CPRCN3( NTRA, NC, SNAME, IORDER, 1238*1858f998SYi Kong $ SIDE, UPLO, TRANSA, DIAG, M, N, ALPHA, 1239*1858f998SYi Kong $ LDA, LDB) 1240*1858f998SYi Kong IF( REWI ) 1241*1858f998SYi Kong $ REWIND NTRA 1242*1858f998SYi Kong CALL CCTRSM(IORDER, SIDE, UPLO, TRANSA, 1243*1858f998SYi Kong $ DIAG, M, N, ALPHA, AA, LDA, 1244*1858f998SYi Kong $ BB, LDB ) 1245*1858f998SYi Kong END IF 1246*1858f998SYi Kong* 1247*1858f998SYi Kong* Check if error-exit was taken incorrectly. 1248*1858f998SYi Kong* 1249*1858f998SYi Kong IF( .NOT.OK )THEN 1250*1858f998SYi Kong WRITE( NOUT, FMT = 9994 ) 1251*1858f998SYi Kong FATAL = .TRUE. 1252*1858f998SYi Kong GO TO 150 1253*1858f998SYi Kong END IF 1254*1858f998SYi Kong* 1255*1858f998SYi Kong* See what data changed inside subroutines. 1256*1858f998SYi Kong* 1257*1858f998SYi Kong ISAME( 1 ) = SIDES.EQ.SIDE 1258*1858f998SYi Kong ISAME( 2 ) = UPLOS.EQ.UPLO 1259*1858f998SYi Kong ISAME( 3 ) = TRANAS.EQ.TRANSA 1260*1858f998SYi Kong ISAME( 4 ) = DIAGS.EQ.DIAG 1261*1858f998SYi Kong ISAME( 5 ) = MS.EQ.M 1262*1858f998SYi Kong ISAME( 6 ) = NS.EQ.N 1263*1858f998SYi Kong ISAME( 7 ) = ALS.EQ.ALPHA 1264*1858f998SYi Kong ISAME( 8 ) = LCE( AS, AA, LAA ) 1265*1858f998SYi Kong ISAME( 9 ) = LDAS.EQ.LDA 1266*1858f998SYi Kong IF( NULL )THEN 1267*1858f998SYi Kong ISAME( 10 ) = LCE( BS, BB, LBB ) 1268*1858f998SYi Kong ELSE 1269*1858f998SYi Kong ISAME( 10 ) = LCERES( 'ge', ' ', M, N, BS, 1270*1858f998SYi Kong $ BB, LDB ) 1271*1858f998SYi Kong END IF 1272*1858f998SYi Kong ISAME( 11 ) = LDBS.EQ.LDB 1273*1858f998SYi Kong* 1274*1858f998SYi Kong* If data was incorrectly changed, report and 1275*1858f998SYi Kong* return. 1276*1858f998SYi Kong* 1277*1858f998SYi Kong SAME = .TRUE. 1278*1858f998SYi Kong DO 50 I = 1, NARGS 1279*1858f998SYi Kong SAME = SAME.AND.ISAME( I ) 1280*1858f998SYi Kong IF( .NOT.ISAME( I ) ) 1281*1858f998SYi Kong $ WRITE( NOUT, FMT = 9998 )I 1282*1858f998SYi Kong 50 CONTINUE 1283*1858f998SYi Kong IF( .NOT.SAME )THEN 1284*1858f998SYi Kong FATAL = .TRUE. 1285*1858f998SYi Kong GO TO 150 1286*1858f998SYi Kong END IF 1287*1858f998SYi Kong* 1288*1858f998SYi Kong IF( .NOT.NULL )THEN 1289*1858f998SYi Kong IF( SNAME( 10: 11 ).EQ.'mm' )THEN 1290*1858f998SYi Kong* 1291*1858f998SYi Kong* Check the result. 1292*1858f998SYi Kong* 1293*1858f998SYi Kong IF( LEFT )THEN 1294*1858f998SYi Kong CALL CMMCH( TRANSA, 'N', M, N, M, 1295*1858f998SYi Kong $ ALPHA, A, NMAX, B, NMAX, 1296*1858f998SYi Kong $ ZERO, C, NMAX, CT, G, 1297*1858f998SYi Kong $ BB, LDB, EPS, ERR, 1298*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 1299*1858f998SYi Kong ELSE 1300*1858f998SYi Kong CALL CMMCH( 'N', TRANSA, M, N, N, 1301*1858f998SYi Kong $ ALPHA, B, NMAX, A, NMAX, 1302*1858f998SYi Kong $ ZERO, C, NMAX, CT, G, 1303*1858f998SYi Kong $ BB, LDB, EPS, ERR, 1304*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 1305*1858f998SYi Kong END IF 1306*1858f998SYi Kong ELSE IF( SNAME( 10: 11 ).EQ.'sm' )THEN 1307*1858f998SYi Kong* 1308*1858f998SYi Kong* Compute approximation to original 1309*1858f998SYi Kong* matrix. 1310*1858f998SYi Kong* 1311*1858f998SYi Kong DO 70 J = 1, N 1312*1858f998SYi Kong DO 60 I = 1, M 1313*1858f998SYi Kong C( I, J ) = BB( I + ( J - 1 )* 1314*1858f998SYi Kong $ LDB ) 1315*1858f998SYi Kong BB( I + ( J - 1 )*LDB ) = ALPHA* 1316*1858f998SYi Kong $ B( I, J ) 1317*1858f998SYi Kong 60 CONTINUE 1318*1858f998SYi Kong 70 CONTINUE 1319*1858f998SYi Kong* 1320*1858f998SYi Kong IF( LEFT )THEN 1321*1858f998SYi Kong CALL CMMCH( TRANSA, 'N', M, N, M, 1322*1858f998SYi Kong $ ONE, A, NMAX, C, NMAX, 1323*1858f998SYi Kong $ ZERO, B, NMAX, CT, G, 1324*1858f998SYi Kong $ BB, LDB, EPS, ERR, 1325*1858f998SYi Kong $ FATAL, NOUT, .FALSE. ) 1326*1858f998SYi Kong ELSE 1327*1858f998SYi Kong CALL CMMCH( 'N', TRANSA, M, N, N, 1328*1858f998SYi Kong $ ONE, C, NMAX, A, NMAX, 1329*1858f998SYi Kong $ ZERO, B, NMAX, CT, G, 1330*1858f998SYi Kong $ BB, LDB, EPS, ERR, 1331*1858f998SYi Kong $ FATAL, NOUT, .FALSE. ) 1332*1858f998SYi Kong END IF 1333*1858f998SYi Kong END IF 1334*1858f998SYi Kong ERRMAX = MAX( ERRMAX, ERR ) 1335*1858f998SYi Kong* If got really bad answer, report and 1336*1858f998SYi Kong* return. 1337*1858f998SYi Kong IF( FATAL ) 1338*1858f998SYi Kong $ GO TO 150 1339*1858f998SYi Kong END IF 1340*1858f998SYi Kong* 1341*1858f998SYi Kong 80 CONTINUE 1342*1858f998SYi Kong* 1343*1858f998SYi Kong 90 CONTINUE 1344*1858f998SYi Kong* 1345*1858f998SYi Kong 100 CONTINUE 1346*1858f998SYi Kong* 1347*1858f998SYi Kong 110 CONTINUE 1348*1858f998SYi Kong* 1349*1858f998SYi Kong 120 CONTINUE 1350*1858f998SYi Kong* 1351*1858f998SYi Kong 130 CONTINUE 1352*1858f998SYi Kong* 1353*1858f998SYi Kong 140 CONTINUE 1354*1858f998SYi Kong* 1355*1858f998SYi Kong* Report result. 1356*1858f998SYi Kong* 1357*1858f998SYi Kong IF( ERRMAX.LT.THRESH )THEN 1358*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10000 )SNAME, NC 1359*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10001 )SNAME, NC 1360*1858f998SYi Kong ELSE 1361*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10002 )SNAME, NC, ERRMAX 1362*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10003 )SNAME, NC, ERRMAX 1363*1858f998SYi Kong END IF 1364*1858f998SYi Kong GO TO 160 1365*1858f998SYi Kong* 1366*1858f998SYi Kong 150 CONTINUE 1367*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )SNAME 1368*1858f998SYi Kong CALL CPRCN3( NTRA, NC, SNAME, IORDER, SIDE, UPLO, TRANSA, DIAG, 1369*1858f998SYi Kong $ M, N, ALPHA, LDA, LDB) 1370*1858f998SYi Kong* 1371*1858f998SYi Kong 160 CONTINUE 1372*1858f998SYi Kong RETURN 1373*1858f998SYi Kong* 1374*1858f998SYi Kong10003 FORMAT( ' ', A12,' COMPLETED THE ROW-MAJOR COMPUTATIONAL ', 1375*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1376*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1377*1858f998SYi Kong10002 FORMAT( ' ', A12,' COMPLETED THE COLUMN-MAJOR COMPUTATIONAL ', 1378*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1379*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1380*1858f998SYi Kong10001 FORMAT( ' ', A12,' PASSED THE ROW-MAJOR COMPUTATIONAL TESTS', 1381*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1382*1858f998SYi Kong10000 FORMAT( ' ', A12,' PASSED THE COLUMN-MAJOR COMPUTATIONAL TESTS', 1383*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1384*1858f998SYi Kong 9998 FORMAT(' ******* FATAL ERROR - PARAMETER NUMBER ', I2, ' WAS CH', 1385*1858f998SYi Kong $ 'ANGED INCORRECTLY *******' ) 1386*1858f998SYi Kong 9996 FORMAT(' ******* ', A12,' FAILED ON CALL NUMBER:' ) 1387*1858f998SYi Kong 9995 FORMAT(1X, I6, ': ', A12,'(', 4( '''', A1, ''',' ), 2( I3, ',' ), 1388*1858f998SYi Kong $ '(', F4.1, ',', F4.1, '), A,', I3, ', B,', I3, ') ', 1389*1858f998SYi Kong $ ' .' ) 1390*1858f998SYi Kong 9994 FORMAT(' ******* FATAL ERROR - ERROR-EXIT TAKEN ON VALID CALL *', 1391*1858f998SYi Kong $ '******' ) 1392*1858f998SYi Kong* 1393*1858f998SYi Kong* End of CCHK3. 1394*1858f998SYi Kong* 1395*1858f998SYi Kong END 1396*1858f998SYi Kong* 1397*1858f998SYi Kong SUBROUTINE CPRCN3(NOUT, NC, SNAME, IORDER, SIDE, UPLO, TRANSA, 1398*1858f998SYi Kong $ DIAG, M, N, ALPHA, LDA, LDB) 1399*1858f998SYi Kong INTEGER NOUT, NC, IORDER, M, N, LDA, LDB 1400*1858f998SYi Kong COMPLEX ALPHA 1401*1858f998SYi Kong CHARACTER*1 SIDE, UPLO, TRANSA, DIAG 1402*1858f998SYi Kong CHARACTER*12 SNAME 1403*1858f998SYi Kong CHARACTER*14 CRC, CS, CU, CA, CD 1404*1858f998SYi Kong 1405*1858f998SYi Kong IF (SIDE.EQ.'L')THEN 1406*1858f998SYi Kong CS = ' CblasLeft' 1407*1858f998SYi Kong ELSE 1408*1858f998SYi Kong CS = ' CblasRight' 1409*1858f998SYi Kong END IF 1410*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 1411*1858f998SYi Kong CU = ' CblasUpper' 1412*1858f998SYi Kong ELSE 1413*1858f998SYi Kong CU = ' CblasLower' 1414*1858f998SYi Kong END IF 1415*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 1416*1858f998SYi Kong CA = ' CblasNoTrans' 1417*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 1418*1858f998SYi Kong CA = ' CblasTrans' 1419*1858f998SYi Kong ELSE 1420*1858f998SYi Kong CA = 'CblasConjTrans' 1421*1858f998SYi Kong END IF 1422*1858f998SYi Kong IF (DIAG.EQ.'N')THEN 1423*1858f998SYi Kong CD = ' CblasNonUnit' 1424*1858f998SYi Kong ELSE 1425*1858f998SYi Kong CD = ' CblasUnit' 1426*1858f998SYi Kong END IF 1427*1858f998SYi Kong IF (IORDER.EQ.1)THEN 1428*1858f998SYi Kong CRC = ' CblasRowMajor' 1429*1858f998SYi Kong ELSE 1430*1858f998SYi Kong CRC = ' CblasColMajor' 1431*1858f998SYi Kong END IF 1432*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC,SNAME,CRC, CS,CU 1433*1858f998SYi Kong WRITE(NOUT, FMT = 9994)CA, CD, M, N, ALPHA, LDA, LDB 1434*1858f998SYi Kong 1435*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', A14, ',', A14, ',', A14, ',') 1436*1858f998SYi Kong 9994 FORMAT( 10X, 2( A14, ',') , 2( I3, ',' ), ' (', F4.1, ',', 1437*1858f998SYi Kong $ F4.1, '), A,', I3, ', B,', I3, ').' ) 1438*1858f998SYi Kong END 1439*1858f998SYi Kong* 1440*1858f998SYi Kong SUBROUTINE CCHK4( SNAME, EPS, THRESH, NOUT, NTRA, TRACE, REWI, 1441*1858f998SYi Kong $ FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, NMAX, 1442*1858f998SYi Kong $ A, AA, AS, B, BB, BS, C, CC, CS, CT, G, 1443*1858f998SYi Kong $ IORDER ) 1444*1858f998SYi Kong* 1445*1858f998SYi Kong* Tests CHERK and CSYRK. 1446*1858f998SYi Kong* 1447*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 1448*1858f998SYi Kong* 1449*1858f998SYi Kong* -- Written on 8-February-1989. 1450*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 1451*1858f998SYi Kong* Iain Duff, AERE Harwell. 1452*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 1453*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 1454*1858f998SYi Kong* 1455*1858f998SYi Kong* .. Parameters .. 1456*1858f998SYi Kong COMPLEX ZERO 1457*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ) ) 1458*1858f998SYi Kong REAL RONE, RZERO 1459*1858f998SYi Kong PARAMETER ( RONE = 1.0, RZERO = 0.0 ) 1460*1858f998SYi Kong* .. Scalar Arguments .. 1461*1858f998SYi Kong REAL EPS, THRESH 1462*1858f998SYi Kong INTEGER NALF, NBET, NIDIM, NMAX, NOUT, NTRA, IORDER 1463*1858f998SYi Kong LOGICAL FATAL, REWI, TRACE 1464*1858f998SYi Kong CHARACTER*12 SNAME 1465*1858f998SYi Kong* .. Array Arguments .. 1466*1858f998SYi Kong COMPLEX A( NMAX, NMAX ), AA( NMAX*NMAX ), ALF( NALF ), 1467*1858f998SYi Kong $ AS( NMAX*NMAX ), B( NMAX, NMAX ), 1468*1858f998SYi Kong $ BB( NMAX*NMAX ), BET( NBET ), BS( NMAX*NMAX ), 1469*1858f998SYi Kong $ C( NMAX, NMAX ), CC( NMAX*NMAX ), 1470*1858f998SYi Kong $ CS( NMAX*NMAX ), CT( NMAX ) 1471*1858f998SYi Kong REAL G( NMAX ) 1472*1858f998SYi Kong INTEGER IDIM( NIDIM ) 1473*1858f998SYi Kong* .. Local Scalars .. 1474*1858f998SYi Kong COMPLEX ALPHA, ALS, BETA, BETS 1475*1858f998SYi Kong REAL ERR, ERRMAX, RALPHA, RALS, RBETA, RBETS 1476*1858f998SYi Kong INTEGER I, IA, IB, ICT, ICU, IK, IN, J, JC, JJ, K, KS, 1477*1858f998SYi Kong $ LAA, LCC, LDA, LDAS, LDC, LDCS, LJ, MA, N, NA, 1478*1858f998SYi Kong $ NARGS, NC, NS 1479*1858f998SYi Kong LOGICAL CONJ, NULL, RESET, SAME, TRAN, UPPER 1480*1858f998SYi Kong CHARACTER*1 TRANS, TRANSS, TRANST, UPLO, UPLOS 1481*1858f998SYi Kong CHARACTER*2 ICHT, ICHU 1482*1858f998SYi Kong* .. Local Arrays .. 1483*1858f998SYi Kong LOGICAL ISAME( 13 ) 1484*1858f998SYi Kong* .. External Functions .. 1485*1858f998SYi Kong LOGICAL LCE, LCERES 1486*1858f998SYi Kong EXTERNAL LCE, LCERES 1487*1858f998SYi Kong* .. External Subroutines .. 1488*1858f998SYi Kong EXTERNAL CCHERK, CMAKE, CMMCH, CCSYRK 1489*1858f998SYi Kong* .. Intrinsic Functions .. 1490*1858f998SYi Kong INTRINSIC CMPLX, MAX, REAL 1491*1858f998SYi Kong* .. Scalars in Common .. 1492*1858f998SYi Kong INTEGER INFOT, NOUTC 1493*1858f998SYi Kong LOGICAL LERR, OK 1494*1858f998SYi Kong* .. Common blocks .. 1495*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 1496*1858f998SYi Kong* .. Data statements .. 1497*1858f998SYi Kong DATA ICHT/'NC'/, ICHU/'UL'/ 1498*1858f998SYi Kong* .. Executable Statements .. 1499*1858f998SYi Kong CONJ = SNAME( 8: 9 ).EQ.'he' 1500*1858f998SYi Kong* 1501*1858f998SYi Kong NARGS = 10 1502*1858f998SYi Kong NC = 0 1503*1858f998SYi Kong RESET = .TRUE. 1504*1858f998SYi Kong ERRMAX = RZERO 1505*1858f998SYi Kong* 1506*1858f998SYi Kong DO 100 IN = 1, NIDIM 1507*1858f998SYi Kong N = IDIM( IN ) 1508*1858f998SYi Kong* Set LDC to 1 more than minimum value if room. 1509*1858f998SYi Kong LDC = N 1510*1858f998SYi Kong IF( LDC.LT.NMAX ) 1511*1858f998SYi Kong $ LDC = LDC + 1 1512*1858f998SYi Kong* Skip tests if not enough room. 1513*1858f998SYi Kong IF( LDC.GT.NMAX ) 1514*1858f998SYi Kong $ GO TO 100 1515*1858f998SYi Kong LCC = LDC*N 1516*1858f998SYi Kong* 1517*1858f998SYi Kong DO 90 IK = 1, NIDIM 1518*1858f998SYi Kong K = IDIM( IK ) 1519*1858f998SYi Kong* 1520*1858f998SYi Kong DO 80 ICT = 1, 2 1521*1858f998SYi Kong TRANS = ICHT( ICT: ICT ) 1522*1858f998SYi Kong TRAN = TRANS.EQ.'C' 1523*1858f998SYi Kong IF( TRAN.AND..NOT.CONJ ) 1524*1858f998SYi Kong $ TRANS = 'T' 1525*1858f998SYi Kong IF( TRAN )THEN 1526*1858f998SYi Kong MA = K 1527*1858f998SYi Kong NA = N 1528*1858f998SYi Kong ELSE 1529*1858f998SYi Kong MA = N 1530*1858f998SYi Kong NA = K 1531*1858f998SYi Kong END IF 1532*1858f998SYi Kong* Set LDA to 1 more than minimum value if room. 1533*1858f998SYi Kong LDA = MA 1534*1858f998SYi Kong IF( LDA.LT.NMAX ) 1535*1858f998SYi Kong $ LDA = LDA + 1 1536*1858f998SYi Kong* Skip tests if not enough room. 1537*1858f998SYi Kong IF( LDA.GT.NMAX ) 1538*1858f998SYi Kong $ GO TO 80 1539*1858f998SYi Kong LAA = LDA*NA 1540*1858f998SYi Kong* 1541*1858f998SYi Kong* Generate the matrix A. 1542*1858f998SYi Kong* 1543*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, A, NMAX, AA, LDA, 1544*1858f998SYi Kong $ RESET, ZERO ) 1545*1858f998SYi Kong* 1546*1858f998SYi Kong DO 70 ICU = 1, 2 1547*1858f998SYi Kong UPLO = ICHU( ICU: ICU ) 1548*1858f998SYi Kong UPPER = UPLO.EQ.'U' 1549*1858f998SYi Kong* 1550*1858f998SYi Kong DO 60 IA = 1, NALF 1551*1858f998SYi Kong ALPHA = ALF( IA ) 1552*1858f998SYi Kong IF( CONJ )THEN 1553*1858f998SYi Kong RALPHA = REAL( ALPHA ) 1554*1858f998SYi Kong ALPHA = CMPLX( RALPHA, RZERO ) 1555*1858f998SYi Kong END IF 1556*1858f998SYi Kong* 1557*1858f998SYi Kong DO 50 IB = 1, NBET 1558*1858f998SYi Kong BETA = BET( IB ) 1559*1858f998SYi Kong IF( CONJ )THEN 1560*1858f998SYi Kong RBETA = REAL( BETA ) 1561*1858f998SYi Kong BETA = CMPLX( RBETA, RZERO ) 1562*1858f998SYi Kong END IF 1563*1858f998SYi Kong NULL = N.LE.0 1564*1858f998SYi Kong IF( CONJ ) 1565*1858f998SYi Kong $ NULL = NULL.OR.( ( K.LE.0.OR.RALPHA.EQ. 1566*1858f998SYi Kong $ RZERO ).AND.RBETA.EQ.RONE ) 1567*1858f998SYi Kong* 1568*1858f998SYi Kong* Generate the matrix C. 1569*1858f998SYi Kong* 1570*1858f998SYi Kong CALL CMAKE( SNAME( 8: 9 ), UPLO, ' ', N, N, C, 1571*1858f998SYi Kong $ NMAX, CC, LDC, RESET, ZERO ) 1572*1858f998SYi Kong* 1573*1858f998SYi Kong NC = NC + 1 1574*1858f998SYi Kong* 1575*1858f998SYi Kong* Save every datum before calling the subroutine. 1576*1858f998SYi Kong* 1577*1858f998SYi Kong UPLOS = UPLO 1578*1858f998SYi Kong TRANSS = TRANS 1579*1858f998SYi Kong NS = N 1580*1858f998SYi Kong KS = K 1581*1858f998SYi Kong IF( CONJ )THEN 1582*1858f998SYi Kong RALS = RALPHA 1583*1858f998SYi Kong ELSE 1584*1858f998SYi Kong ALS = ALPHA 1585*1858f998SYi Kong END IF 1586*1858f998SYi Kong DO 10 I = 1, LAA 1587*1858f998SYi Kong AS( I ) = AA( I ) 1588*1858f998SYi Kong 10 CONTINUE 1589*1858f998SYi Kong LDAS = LDA 1590*1858f998SYi Kong IF( CONJ )THEN 1591*1858f998SYi Kong RBETS = RBETA 1592*1858f998SYi Kong ELSE 1593*1858f998SYi Kong BETS = BETA 1594*1858f998SYi Kong END IF 1595*1858f998SYi Kong DO 20 I = 1, LCC 1596*1858f998SYi Kong CS( I ) = CC( I ) 1597*1858f998SYi Kong 20 CONTINUE 1598*1858f998SYi Kong LDCS = LDC 1599*1858f998SYi Kong* 1600*1858f998SYi Kong* Call the subroutine. 1601*1858f998SYi Kong* 1602*1858f998SYi Kong IF( CONJ )THEN 1603*1858f998SYi Kong IF( TRACE ) 1604*1858f998SYi Kong $ CALL CPRCN6( NTRA, NC, SNAME, IORDER, 1605*1858f998SYi Kong $ UPLO, TRANS, N, K, RALPHA, LDA, RBETA, 1606*1858f998SYi Kong $ LDC) 1607*1858f998SYi Kong IF( REWI ) 1608*1858f998SYi Kong $ REWIND NTRA 1609*1858f998SYi Kong CALL CCHERK( IORDER, UPLO, TRANS, N, K, 1610*1858f998SYi Kong $ RALPHA, AA, LDA, RBETA, CC, 1611*1858f998SYi Kong $ LDC ) 1612*1858f998SYi Kong ELSE 1613*1858f998SYi Kong IF( TRACE ) 1614*1858f998SYi Kong $ CALL CPRCN4( NTRA, NC, SNAME, IORDER, 1615*1858f998SYi Kong $ UPLO, TRANS, N, K, ALPHA, LDA, BETA, LDC) 1616*1858f998SYi Kong IF( REWI ) 1617*1858f998SYi Kong $ REWIND NTRA 1618*1858f998SYi Kong CALL CCSYRK( IORDER, UPLO, TRANS, N, K, 1619*1858f998SYi Kong $ ALPHA, AA, LDA, BETA, CC, LDC ) 1620*1858f998SYi Kong END IF 1621*1858f998SYi Kong* 1622*1858f998SYi Kong* Check if error-exit was taken incorrectly. 1623*1858f998SYi Kong* 1624*1858f998SYi Kong IF( .NOT.OK )THEN 1625*1858f998SYi Kong WRITE( NOUT, FMT = 9992 ) 1626*1858f998SYi Kong FATAL = .TRUE. 1627*1858f998SYi Kong GO TO 120 1628*1858f998SYi Kong END IF 1629*1858f998SYi Kong* 1630*1858f998SYi Kong* See what data changed inside subroutines. 1631*1858f998SYi Kong* 1632*1858f998SYi Kong ISAME( 1 ) = UPLOS.EQ.UPLO 1633*1858f998SYi Kong ISAME( 2 ) = TRANSS.EQ.TRANS 1634*1858f998SYi Kong ISAME( 3 ) = NS.EQ.N 1635*1858f998SYi Kong ISAME( 4 ) = KS.EQ.K 1636*1858f998SYi Kong IF( CONJ )THEN 1637*1858f998SYi Kong ISAME( 5 ) = RALS.EQ.RALPHA 1638*1858f998SYi Kong ELSE 1639*1858f998SYi Kong ISAME( 5 ) = ALS.EQ.ALPHA 1640*1858f998SYi Kong END IF 1641*1858f998SYi Kong ISAME( 6 ) = LCE( AS, AA, LAA ) 1642*1858f998SYi Kong ISAME( 7 ) = LDAS.EQ.LDA 1643*1858f998SYi Kong IF( CONJ )THEN 1644*1858f998SYi Kong ISAME( 8 ) = RBETS.EQ.RBETA 1645*1858f998SYi Kong ELSE 1646*1858f998SYi Kong ISAME( 8 ) = BETS.EQ.BETA 1647*1858f998SYi Kong END IF 1648*1858f998SYi Kong IF( NULL )THEN 1649*1858f998SYi Kong ISAME( 9 ) = LCE( CS, CC, LCC ) 1650*1858f998SYi Kong ELSE 1651*1858f998SYi Kong ISAME( 9 ) = LCERES( SNAME( 8: 9 ), UPLO, N, 1652*1858f998SYi Kong $ N, CS, CC, LDC ) 1653*1858f998SYi Kong END IF 1654*1858f998SYi Kong ISAME( 10 ) = LDCS.EQ.LDC 1655*1858f998SYi Kong* 1656*1858f998SYi Kong* If data was incorrectly changed, report and 1657*1858f998SYi Kong* return. 1658*1858f998SYi Kong* 1659*1858f998SYi Kong SAME = .TRUE. 1660*1858f998SYi Kong DO 30 I = 1, NARGS 1661*1858f998SYi Kong SAME = SAME.AND.ISAME( I ) 1662*1858f998SYi Kong IF( .NOT.ISAME( I ) ) 1663*1858f998SYi Kong $ WRITE( NOUT, FMT = 9998 )I 1664*1858f998SYi Kong 30 CONTINUE 1665*1858f998SYi Kong IF( .NOT.SAME )THEN 1666*1858f998SYi Kong FATAL = .TRUE. 1667*1858f998SYi Kong GO TO 120 1668*1858f998SYi Kong END IF 1669*1858f998SYi Kong* 1670*1858f998SYi Kong IF( .NOT.NULL )THEN 1671*1858f998SYi Kong* 1672*1858f998SYi Kong* Check the result column by column. 1673*1858f998SYi Kong* 1674*1858f998SYi Kong IF( CONJ )THEN 1675*1858f998SYi Kong TRANST = 'C' 1676*1858f998SYi Kong ELSE 1677*1858f998SYi Kong TRANST = 'T' 1678*1858f998SYi Kong END IF 1679*1858f998SYi Kong JC = 1 1680*1858f998SYi Kong DO 40 J = 1, N 1681*1858f998SYi Kong IF( UPPER )THEN 1682*1858f998SYi Kong JJ = 1 1683*1858f998SYi Kong LJ = J 1684*1858f998SYi Kong ELSE 1685*1858f998SYi Kong JJ = J 1686*1858f998SYi Kong LJ = N - J + 1 1687*1858f998SYi Kong END IF 1688*1858f998SYi Kong IF( TRAN )THEN 1689*1858f998SYi Kong CALL CMMCH( TRANST, 'N', LJ, 1, K, 1690*1858f998SYi Kong $ ALPHA, A( 1, JJ ), NMAX, 1691*1858f998SYi Kong $ A( 1, J ), NMAX, BETA, 1692*1858f998SYi Kong $ C( JJ, J ), NMAX, CT, G, 1693*1858f998SYi Kong $ CC( JC ), LDC, EPS, ERR, 1694*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 1695*1858f998SYi Kong ELSE 1696*1858f998SYi Kong CALL CMMCH( 'N', TRANST, LJ, 1, K, 1697*1858f998SYi Kong $ ALPHA, A( JJ, 1 ), NMAX, 1698*1858f998SYi Kong $ A( J, 1 ), NMAX, BETA, 1699*1858f998SYi Kong $ C( JJ, J ), NMAX, CT, G, 1700*1858f998SYi Kong $ CC( JC ), LDC, EPS, ERR, 1701*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 1702*1858f998SYi Kong END IF 1703*1858f998SYi Kong IF( UPPER )THEN 1704*1858f998SYi Kong JC = JC + LDC 1705*1858f998SYi Kong ELSE 1706*1858f998SYi Kong JC = JC + LDC + 1 1707*1858f998SYi Kong END IF 1708*1858f998SYi Kong ERRMAX = MAX( ERRMAX, ERR ) 1709*1858f998SYi Kong* If got really bad answer, report and 1710*1858f998SYi Kong* return. 1711*1858f998SYi Kong IF( FATAL ) 1712*1858f998SYi Kong $ GO TO 110 1713*1858f998SYi Kong 40 CONTINUE 1714*1858f998SYi Kong END IF 1715*1858f998SYi Kong* 1716*1858f998SYi Kong 50 CONTINUE 1717*1858f998SYi Kong* 1718*1858f998SYi Kong 60 CONTINUE 1719*1858f998SYi Kong* 1720*1858f998SYi Kong 70 CONTINUE 1721*1858f998SYi Kong* 1722*1858f998SYi Kong 80 CONTINUE 1723*1858f998SYi Kong* 1724*1858f998SYi Kong 90 CONTINUE 1725*1858f998SYi Kong* 1726*1858f998SYi Kong 100 CONTINUE 1727*1858f998SYi Kong* 1728*1858f998SYi Kong* Report result. 1729*1858f998SYi Kong* 1730*1858f998SYi Kong IF( ERRMAX.LT.THRESH )THEN 1731*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10000 )SNAME, NC 1732*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10001 )SNAME, NC 1733*1858f998SYi Kong ELSE 1734*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10002 )SNAME, NC, ERRMAX 1735*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10003 )SNAME, NC, ERRMAX 1736*1858f998SYi Kong END IF 1737*1858f998SYi Kong GO TO 130 1738*1858f998SYi Kong* 1739*1858f998SYi Kong 110 CONTINUE 1740*1858f998SYi Kong IF( N.GT.1 ) 1741*1858f998SYi Kong $ WRITE( NOUT, FMT = 9995 )J 1742*1858f998SYi Kong* 1743*1858f998SYi Kong 120 CONTINUE 1744*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )SNAME 1745*1858f998SYi Kong IF( CONJ )THEN 1746*1858f998SYi Kong CALL CPRCN6( NOUT, NC, SNAME, IORDER, UPLO, TRANS, N, K, RALPHA, 1747*1858f998SYi Kong $ LDA, rBETA, LDC) 1748*1858f998SYi Kong ELSE 1749*1858f998SYi Kong CALL CPRCN4( NOUT, NC, SNAME, IORDER, UPLO, TRANS, N, K, ALPHA, 1750*1858f998SYi Kong $ LDA, BETA, LDC) 1751*1858f998SYi Kong END IF 1752*1858f998SYi Kong* 1753*1858f998SYi Kong 130 CONTINUE 1754*1858f998SYi Kong RETURN 1755*1858f998SYi Kong* 1756*1858f998SYi Kong10003 FORMAT( ' ', A12,' COMPLETED THE ROW-MAJOR COMPUTATIONAL ', 1757*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1758*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1759*1858f998SYi Kong10002 FORMAT( ' ', A12,' COMPLETED THE COLUMN-MAJOR COMPUTATIONAL ', 1760*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 1761*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 1762*1858f998SYi Kong10001 FORMAT( ' ', A12,' PASSED THE ROW-MAJOR COMPUTATIONAL TESTS', 1763*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1764*1858f998SYi Kong10000 FORMAT( ' ', A12,' PASSED THE COLUMN-MAJOR COMPUTATIONAL TESTS', 1765*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 1766*1858f998SYi Kong 9998 FORMAT(' ******* FATAL ERROR - PARAMETER NUMBER ', I2, ' WAS CH', 1767*1858f998SYi Kong $ 'ANGED INCORRECTLY *******' ) 1768*1858f998SYi Kong 9996 FORMAT( ' ******* ', A12,' FAILED ON CALL NUMBER:' ) 1769*1858f998SYi Kong 9995 FORMAT( ' THESE ARE THE RESULTS FOR COLUMN ', I3 ) 1770*1858f998SYi Kong 9994 FORMAT(1X, I6, ': ', A12,'(', 2( '''', A1, ''',' ), 2( I3, ',' ), 1771*1858f998SYi Kong $ F4.1, ', A,', I3, ',', F4.1, ', C,', I3, ') ', 1772*1858f998SYi Kong $ ' .' ) 1773*1858f998SYi Kong 9993 FORMAT(1X, I6, ': ', A12,'(', 2( '''', A1, ''',' ), 2( I3, ',' ), 1774*1858f998SYi Kong $ '(', F4.1, ',', F4.1, ') , A,', I3, ',(', F4.1, ',', F4.1, 1775*1858f998SYi Kong $ '), C,', I3, ') .' ) 1776*1858f998SYi Kong 9992 FORMAT(' ******* FATAL ERROR - ERROR-EXIT TAKEN ON VALID CALL *', 1777*1858f998SYi Kong $ '******' ) 1778*1858f998SYi Kong* 1779*1858f998SYi Kong* End of CCHK4. 1780*1858f998SYi Kong* 1781*1858f998SYi Kong END 1782*1858f998SYi Kong* 1783*1858f998SYi Kong SUBROUTINE CPRCN4(NOUT, NC, SNAME, IORDER, UPLO, TRANSA, 1784*1858f998SYi Kong $ N, K, ALPHA, LDA, BETA, LDC) 1785*1858f998SYi Kong INTEGER NOUT, NC, IORDER, N, K, LDA, LDC 1786*1858f998SYi Kong COMPLEX ALPHA, BETA 1787*1858f998SYi Kong CHARACTER*1 UPLO, TRANSA 1788*1858f998SYi Kong CHARACTER*12 SNAME 1789*1858f998SYi Kong CHARACTER*14 CRC, CU, CA 1790*1858f998SYi Kong 1791*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 1792*1858f998SYi Kong CU = ' CblasUpper' 1793*1858f998SYi Kong ELSE 1794*1858f998SYi Kong CU = ' CblasLower' 1795*1858f998SYi Kong END IF 1796*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 1797*1858f998SYi Kong CA = ' CblasNoTrans' 1798*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 1799*1858f998SYi Kong CA = ' CblasTrans' 1800*1858f998SYi Kong ELSE 1801*1858f998SYi Kong CA = 'CblasConjTrans' 1802*1858f998SYi Kong END IF 1803*1858f998SYi Kong IF (IORDER.EQ.1)THEN 1804*1858f998SYi Kong CRC = ' CblasRowMajor' 1805*1858f998SYi Kong ELSE 1806*1858f998SYi Kong CRC = ' CblasColMajor' 1807*1858f998SYi Kong END IF 1808*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC, SNAME, CRC, CU, CA 1809*1858f998SYi Kong WRITE(NOUT, FMT = 9994)N, K, ALPHA, LDA, BETA, LDC 1810*1858f998SYi Kong 1811*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', 3( A14, ',') ) 1812*1858f998SYi Kong 9994 FORMAT( 10X, 2( I3, ',' ), ' (', F4.1, ',', F4.1 ,'), A,', 1813*1858f998SYi Kong $ I3, ', (', F4.1,',', F4.1, '), C,', I3, ').' ) 1814*1858f998SYi Kong END 1815*1858f998SYi Kong* 1816*1858f998SYi Kong* 1817*1858f998SYi Kong SUBROUTINE CPRCN6(NOUT, NC, SNAME, IORDER, UPLO, TRANSA, 1818*1858f998SYi Kong $ N, K, ALPHA, LDA, BETA, LDC) 1819*1858f998SYi Kong INTEGER NOUT, NC, IORDER, N, K, LDA, LDC 1820*1858f998SYi Kong REAL ALPHA, BETA 1821*1858f998SYi Kong CHARACTER*1 UPLO, TRANSA 1822*1858f998SYi Kong CHARACTER*12 SNAME 1823*1858f998SYi Kong CHARACTER*14 CRC, CU, CA 1824*1858f998SYi Kong 1825*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 1826*1858f998SYi Kong CU = ' CblasUpper' 1827*1858f998SYi Kong ELSE 1828*1858f998SYi Kong CU = ' CblasLower' 1829*1858f998SYi Kong END IF 1830*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 1831*1858f998SYi Kong CA = ' CblasNoTrans' 1832*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 1833*1858f998SYi Kong CA = ' CblasTrans' 1834*1858f998SYi Kong ELSE 1835*1858f998SYi Kong CA = 'CblasConjTrans' 1836*1858f998SYi Kong END IF 1837*1858f998SYi Kong IF (IORDER.EQ.1)THEN 1838*1858f998SYi Kong CRC = ' CblasRowMajor' 1839*1858f998SYi Kong ELSE 1840*1858f998SYi Kong CRC = ' CblasColMajor' 1841*1858f998SYi Kong END IF 1842*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC, SNAME, CRC, CU, CA 1843*1858f998SYi Kong WRITE(NOUT, FMT = 9994)N, K, ALPHA, LDA, BETA, LDC 1844*1858f998SYi Kong 1845*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', 3( A14, ',') ) 1846*1858f998SYi Kong 9994 FORMAT( 10X, 2( I3, ',' ), 1847*1858f998SYi Kong $ F4.1, ', A,', I3, ',', F4.1, ', C,', I3, ').' ) 1848*1858f998SYi Kong END 1849*1858f998SYi Kong* 1850*1858f998SYi Kong SUBROUTINE CCHK5( SNAME, EPS, THRESH, NOUT, NTRA, TRACE, REWI, 1851*1858f998SYi Kong $ FATAL, NIDIM, IDIM, NALF, ALF, NBET, BET, NMAX, 1852*1858f998SYi Kong $ AB, AA, AS, BB, BS, C, CC, CS, CT, G, W, 1853*1858f998SYi Kong $ IORDER ) 1854*1858f998SYi Kong* 1855*1858f998SYi Kong* Tests CHER2K and CSYR2K. 1856*1858f998SYi Kong* 1857*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 1858*1858f998SYi Kong* 1859*1858f998SYi Kong* -- Written on 8-February-1989. 1860*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 1861*1858f998SYi Kong* Iain Duff, AERE Harwell. 1862*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 1863*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 1864*1858f998SYi Kong* 1865*1858f998SYi Kong* .. Parameters .. 1866*1858f998SYi Kong COMPLEX ZERO, ONE 1867*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ), ONE = ( 1.0, 0.0 ) ) 1868*1858f998SYi Kong REAL RONE, RZERO 1869*1858f998SYi Kong PARAMETER ( RONE = 1.0, RZERO = 0.0 ) 1870*1858f998SYi Kong* .. Scalar Arguments .. 1871*1858f998SYi Kong REAL EPS, THRESH 1872*1858f998SYi Kong INTEGER NALF, NBET, NIDIM, NMAX, NOUT, NTRA, IORDER 1873*1858f998SYi Kong LOGICAL FATAL, REWI, TRACE 1874*1858f998SYi Kong CHARACTER*12 SNAME 1875*1858f998SYi Kong* .. Array Arguments .. 1876*1858f998SYi Kong COMPLEX AA( NMAX*NMAX ), AB( 2*NMAX*NMAX ), 1877*1858f998SYi Kong $ ALF( NALF ), AS( NMAX*NMAX ), BB( NMAX*NMAX ), 1878*1858f998SYi Kong $ BET( NBET ), BS( NMAX*NMAX ), C( NMAX, NMAX ), 1879*1858f998SYi Kong $ CC( NMAX*NMAX ), CS( NMAX*NMAX ), CT( NMAX ), 1880*1858f998SYi Kong $ W( 2*NMAX ) 1881*1858f998SYi Kong REAL G( NMAX ) 1882*1858f998SYi Kong INTEGER IDIM( NIDIM ) 1883*1858f998SYi Kong* .. Local Scalars .. 1884*1858f998SYi Kong COMPLEX ALPHA, ALS, BETA, BETS 1885*1858f998SYi Kong REAL ERR, ERRMAX, RBETA, RBETS 1886*1858f998SYi Kong INTEGER I, IA, IB, ICT, ICU, IK, IN, J, JC, JJ, JJAB, 1887*1858f998SYi Kong $ K, KS, LAA, LBB, LCC, LDA, LDAS, LDB, LDBS, 1888*1858f998SYi Kong $ LDC, LDCS, LJ, MA, N, NA, NARGS, NC, NS 1889*1858f998SYi Kong LOGICAL CONJ, NULL, RESET, SAME, TRAN, UPPER 1890*1858f998SYi Kong CHARACTER*1 TRANS, TRANSS, TRANST, UPLO, UPLOS 1891*1858f998SYi Kong CHARACTER*2 ICHT, ICHU 1892*1858f998SYi Kong* .. Local Arrays .. 1893*1858f998SYi Kong LOGICAL ISAME( 13 ) 1894*1858f998SYi Kong* .. External Functions .. 1895*1858f998SYi Kong LOGICAL LCE, LCERES 1896*1858f998SYi Kong EXTERNAL LCE, LCERES 1897*1858f998SYi Kong* .. External Subroutines .. 1898*1858f998SYi Kong EXTERNAL CCHER2K, CMAKE, CMMCH, CCSYR2K 1899*1858f998SYi Kong* .. Intrinsic Functions .. 1900*1858f998SYi Kong INTRINSIC CMPLX, CONJG, MAX, REAL 1901*1858f998SYi Kong* .. Scalars in Common .. 1902*1858f998SYi Kong INTEGER INFOT, NOUTC 1903*1858f998SYi Kong LOGICAL LERR, OK 1904*1858f998SYi Kong* .. Common blocks .. 1905*1858f998SYi Kong COMMON /INFOC/INFOT, NOUTC, OK, LERR 1906*1858f998SYi Kong* .. Data statements .. 1907*1858f998SYi Kong DATA ICHT/'NC'/, ICHU/'UL'/ 1908*1858f998SYi Kong* .. Executable Statements .. 1909*1858f998SYi Kong CONJ = SNAME( 8: 9 ).EQ.'he' 1910*1858f998SYi Kong* 1911*1858f998SYi Kong NARGS = 12 1912*1858f998SYi Kong NC = 0 1913*1858f998SYi Kong RESET = .TRUE. 1914*1858f998SYi Kong ERRMAX = RZERO 1915*1858f998SYi Kong* 1916*1858f998SYi Kong DO 130 IN = 1, NIDIM 1917*1858f998SYi Kong N = IDIM( IN ) 1918*1858f998SYi Kong* Set LDC to 1 more than minimum value if room. 1919*1858f998SYi Kong LDC = N 1920*1858f998SYi Kong IF( LDC.LT.NMAX ) 1921*1858f998SYi Kong $ LDC = LDC + 1 1922*1858f998SYi Kong* Skip tests if not enough room. 1923*1858f998SYi Kong IF( LDC.GT.NMAX ) 1924*1858f998SYi Kong $ GO TO 130 1925*1858f998SYi Kong LCC = LDC*N 1926*1858f998SYi Kong* 1927*1858f998SYi Kong DO 120 IK = 1, NIDIM 1928*1858f998SYi Kong K = IDIM( IK ) 1929*1858f998SYi Kong* 1930*1858f998SYi Kong DO 110 ICT = 1, 2 1931*1858f998SYi Kong TRANS = ICHT( ICT: ICT ) 1932*1858f998SYi Kong TRAN = TRANS.EQ.'C' 1933*1858f998SYi Kong IF( TRAN.AND..NOT.CONJ ) 1934*1858f998SYi Kong $ TRANS = 'T' 1935*1858f998SYi Kong IF( TRAN )THEN 1936*1858f998SYi Kong MA = K 1937*1858f998SYi Kong NA = N 1938*1858f998SYi Kong ELSE 1939*1858f998SYi Kong MA = N 1940*1858f998SYi Kong NA = K 1941*1858f998SYi Kong END IF 1942*1858f998SYi Kong* Set LDA to 1 more than minimum value if room. 1943*1858f998SYi Kong LDA = MA 1944*1858f998SYi Kong IF( LDA.LT.NMAX ) 1945*1858f998SYi Kong $ LDA = LDA + 1 1946*1858f998SYi Kong* Skip tests if not enough room. 1947*1858f998SYi Kong IF( LDA.GT.NMAX ) 1948*1858f998SYi Kong $ GO TO 110 1949*1858f998SYi Kong LAA = LDA*NA 1950*1858f998SYi Kong* 1951*1858f998SYi Kong* Generate the matrix A. 1952*1858f998SYi Kong* 1953*1858f998SYi Kong IF( TRAN )THEN 1954*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, AB, 2*NMAX, AA, 1955*1858f998SYi Kong $ LDA, RESET, ZERO ) 1956*1858f998SYi Kong ELSE 1957*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, AB, NMAX, AA, LDA, 1958*1858f998SYi Kong $ RESET, ZERO ) 1959*1858f998SYi Kong END IF 1960*1858f998SYi Kong* 1961*1858f998SYi Kong* Generate the matrix B. 1962*1858f998SYi Kong* 1963*1858f998SYi Kong LDB = LDA 1964*1858f998SYi Kong LBB = LAA 1965*1858f998SYi Kong IF( TRAN )THEN 1966*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, AB( K + 1 ), 1967*1858f998SYi Kong $ 2*NMAX, BB, LDB, RESET, ZERO ) 1968*1858f998SYi Kong ELSE 1969*1858f998SYi Kong CALL CMAKE( 'ge', ' ', ' ', MA, NA, AB( K*NMAX + 1 ), 1970*1858f998SYi Kong $ NMAX, BB, LDB, RESET, ZERO ) 1971*1858f998SYi Kong END IF 1972*1858f998SYi Kong* 1973*1858f998SYi Kong DO 100 ICU = 1, 2 1974*1858f998SYi Kong UPLO = ICHU( ICU: ICU ) 1975*1858f998SYi Kong UPPER = UPLO.EQ.'U' 1976*1858f998SYi Kong* 1977*1858f998SYi Kong DO 90 IA = 1, NALF 1978*1858f998SYi Kong ALPHA = ALF( IA ) 1979*1858f998SYi Kong* 1980*1858f998SYi Kong DO 80 IB = 1, NBET 1981*1858f998SYi Kong BETA = BET( IB ) 1982*1858f998SYi Kong IF( CONJ )THEN 1983*1858f998SYi Kong RBETA = REAL( BETA ) 1984*1858f998SYi Kong BETA = CMPLX( RBETA, RZERO ) 1985*1858f998SYi Kong END IF 1986*1858f998SYi Kong NULL = N.LE.0 1987*1858f998SYi Kong IF( CONJ ) 1988*1858f998SYi Kong $ NULL = NULL.OR.( ( K.LE.0.OR.ALPHA.EQ. 1989*1858f998SYi Kong $ ZERO ).AND.RBETA.EQ.RONE ) 1990*1858f998SYi Kong* 1991*1858f998SYi Kong* Generate the matrix C. 1992*1858f998SYi Kong* 1993*1858f998SYi Kong CALL CMAKE( SNAME( 8: 9 ), UPLO, ' ', N, N, C, 1994*1858f998SYi Kong $ NMAX, CC, LDC, RESET, ZERO ) 1995*1858f998SYi Kong* 1996*1858f998SYi Kong NC = NC + 1 1997*1858f998SYi Kong* 1998*1858f998SYi Kong* Save every datum before calling the subroutine. 1999*1858f998SYi Kong* 2000*1858f998SYi Kong UPLOS = UPLO 2001*1858f998SYi Kong TRANSS = TRANS 2002*1858f998SYi Kong NS = N 2003*1858f998SYi Kong KS = K 2004*1858f998SYi Kong ALS = ALPHA 2005*1858f998SYi Kong DO 10 I = 1, LAA 2006*1858f998SYi Kong AS( I ) = AA( I ) 2007*1858f998SYi Kong 10 CONTINUE 2008*1858f998SYi Kong LDAS = LDA 2009*1858f998SYi Kong DO 20 I = 1, LBB 2010*1858f998SYi Kong BS( I ) = BB( I ) 2011*1858f998SYi Kong 20 CONTINUE 2012*1858f998SYi Kong LDBS = LDB 2013*1858f998SYi Kong IF( CONJ )THEN 2014*1858f998SYi Kong RBETS = RBETA 2015*1858f998SYi Kong ELSE 2016*1858f998SYi Kong BETS = BETA 2017*1858f998SYi Kong END IF 2018*1858f998SYi Kong DO 30 I = 1, LCC 2019*1858f998SYi Kong CS( I ) = CC( I ) 2020*1858f998SYi Kong 30 CONTINUE 2021*1858f998SYi Kong LDCS = LDC 2022*1858f998SYi Kong* 2023*1858f998SYi Kong* Call the subroutine. 2024*1858f998SYi Kong* 2025*1858f998SYi Kong IF( CONJ )THEN 2026*1858f998SYi Kong IF( TRACE ) 2027*1858f998SYi Kong $ CALL CPRCN7( NTRA, NC, SNAME, IORDER, 2028*1858f998SYi Kong $ UPLO, TRANS, N, K, ALPHA, LDA, LDB, 2029*1858f998SYi Kong $ RBETA, LDC) 2030*1858f998SYi Kong IF( REWI ) 2031*1858f998SYi Kong $ REWIND NTRA 2032*1858f998SYi Kong CALL CCHER2K( IORDER, UPLO, TRANS, N, K, 2033*1858f998SYi Kong $ ALPHA, AA, LDA, BB, LDB, RBETA, 2034*1858f998SYi Kong $ CC, LDC ) 2035*1858f998SYi Kong ELSE 2036*1858f998SYi Kong IF( TRACE ) 2037*1858f998SYi Kong $ CALL CPRCN5( NTRA, NC, SNAME, IORDER, 2038*1858f998SYi Kong $ UPLO, TRANS, N, K, ALPHA, LDA, LDB, 2039*1858f998SYi Kong $ BETA, LDC) 2040*1858f998SYi Kong IF( REWI ) 2041*1858f998SYi Kong $ REWIND NTRA 2042*1858f998SYi Kong CALL CCSYR2K( IORDER, UPLO, TRANS, N, K, 2043*1858f998SYi Kong $ ALPHA, AA, LDA, BB, LDB, BETA, 2044*1858f998SYi Kong $ CC, LDC ) 2045*1858f998SYi Kong END IF 2046*1858f998SYi Kong* 2047*1858f998SYi Kong* Check if error-exit was taken incorrectly. 2048*1858f998SYi Kong* 2049*1858f998SYi Kong IF( .NOT.OK )THEN 2050*1858f998SYi Kong WRITE( NOUT, FMT = 9992 ) 2051*1858f998SYi Kong FATAL = .TRUE. 2052*1858f998SYi Kong GO TO 150 2053*1858f998SYi Kong END IF 2054*1858f998SYi Kong* 2055*1858f998SYi Kong* See what data changed inside subroutines. 2056*1858f998SYi Kong* 2057*1858f998SYi Kong ISAME( 1 ) = UPLOS.EQ.UPLO 2058*1858f998SYi Kong ISAME( 2 ) = TRANSS.EQ.TRANS 2059*1858f998SYi Kong ISAME( 3 ) = NS.EQ.N 2060*1858f998SYi Kong ISAME( 4 ) = KS.EQ.K 2061*1858f998SYi Kong ISAME( 5 ) = ALS.EQ.ALPHA 2062*1858f998SYi Kong ISAME( 6 ) = LCE( AS, AA, LAA ) 2063*1858f998SYi Kong ISAME( 7 ) = LDAS.EQ.LDA 2064*1858f998SYi Kong ISAME( 8 ) = LCE( BS, BB, LBB ) 2065*1858f998SYi Kong ISAME( 9 ) = LDBS.EQ.LDB 2066*1858f998SYi Kong IF( CONJ )THEN 2067*1858f998SYi Kong ISAME( 10 ) = RBETS.EQ.RBETA 2068*1858f998SYi Kong ELSE 2069*1858f998SYi Kong ISAME( 10 ) = BETS.EQ.BETA 2070*1858f998SYi Kong END IF 2071*1858f998SYi Kong IF( NULL )THEN 2072*1858f998SYi Kong ISAME( 11 ) = LCE( CS, CC, LCC ) 2073*1858f998SYi Kong ELSE 2074*1858f998SYi Kong ISAME( 11 ) = LCERES( 'he', UPLO, N, N, CS, 2075*1858f998SYi Kong $ CC, LDC ) 2076*1858f998SYi Kong END IF 2077*1858f998SYi Kong ISAME( 12 ) = LDCS.EQ.LDC 2078*1858f998SYi Kong* 2079*1858f998SYi Kong* If data was incorrectly changed, report and 2080*1858f998SYi Kong* return. 2081*1858f998SYi Kong* 2082*1858f998SYi Kong SAME = .TRUE. 2083*1858f998SYi Kong DO 40 I = 1, NARGS 2084*1858f998SYi Kong SAME = SAME.AND.ISAME( I ) 2085*1858f998SYi Kong IF( .NOT.ISAME( I ) ) 2086*1858f998SYi Kong $ WRITE( NOUT, FMT = 9998 )I 2087*1858f998SYi Kong 40 CONTINUE 2088*1858f998SYi Kong IF( .NOT.SAME )THEN 2089*1858f998SYi Kong FATAL = .TRUE. 2090*1858f998SYi Kong GO TO 150 2091*1858f998SYi Kong END IF 2092*1858f998SYi Kong* 2093*1858f998SYi Kong IF( .NOT.NULL )THEN 2094*1858f998SYi Kong* 2095*1858f998SYi Kong* Check the result column by column. 2096*1858f998SYi Kong* 2097*1858f998SYi Kong IF( CONJ )THEN 2098*1858f998SYi Kong TRANST = 'C' 2099*1858f998SYi Kong ELSE 2100*1858f998SYi Kong TRANST = 'T' 2101*1858f998SYi Kong END IF 2102*1858f998SYi Kong JJAB = 1 2103*1858f998SYi Kong JC = 1 2104*1858f998SYi Kong DO 70 J = 1, N 2105*1858f998SYi Kong IF( UPPER )THEN 2106*1858f998SYi Kong JJ = 1 2107*1858f998SYi Kong LJ = J 2108*1858f998SYi Kong ELSE 2109*1858f998SYi Kong JJ = J 2110*1858f998SYi Kong LJ = N - J + 1 2111*1858f998SYi Kong END IF 2112*1858f998SYi Kong IF( TRAN )THEN 2113*1858f998SYi Kong DO 50 I = 1, K 2114*1858f998SYi Kong W( I ) = ALPHA*AB( ( J - 1 )*2* 2115*1858f998SYi Kong $ NMAX + K + I ) 2116*1858f998SYi Kong IF( CONJ )THEN 2117*1858f998SYi Kong W( K + I ) = CONJG( ALPHA )* 2118*1858f998SYi Kong $ AB( ( J - 1 )*2* 2119*1858f998SYi Kong $ NMAX + I ) 2120*1858f998SYi Kong ELSE 2121*1858f998SYi Kong W( K + I ) = ALPHA* 2122*1858f998SYi Kong $ AB( ( J - 1 )*2* 2123*1858f998SYi Kong $ NMAX + I ) 2124*1858f998SYi Kong END IF 2125*1858f998SYi Kong 50 CONTINUE 2126*1858f998SYi Kong CALL CMMCH( TRANST, 'N', LJ, 1, 2*K, 2127*1858f998SYi Kong $ ONE, AB( JJAB ), 2*NMAX, W, 2128*1858f998SYi Kong $ 2*NMAX, BETA, C( JJ, J ), 2129*1858f998SYi Kong $ NMAX, CT, G, CC( JC ), LDC, 2130*1858f998SYi Kong $ EPS, ERR, FATAL, NOUT, 2131*1858f998SYi Kong $ .TRUE. ) 2132*1858f998SYi Kong ELSE 2133*1858f998SYi Kong DO 60 I = 1, K 2134*1858f998SYi Kong IF( CONJ )THEN 2135*1858f998SYi Kong W( I ) = ALPHA*CONJG( AB( ( K + 2136*1858f998SYi Kong $ I - 1 )*NMAX + J ) ) 2137*1858f998SYi Kong W( K + I ) = CONJG( ALPHA* 2138*1858f998SYi Kong $ AB( ( I - 1 )*NMAX + 2139*1858f998SYi Kong $ J ) ) 2140*1858f998SYi Kong ELSE 2141*1858f998SYi Kong W( I ) = ALPHA*AB( ( K + I - 1 )* 2142*1858f998SYi Kong $ NMAX + J ) 2143*1858f998SYi Kong W( K + I ) = ALPHA* 2144*1858f998SYi Kong $ AB( ( I - 1 )*NMAX + 2145*1858f998SYi Kong $ J ) 2146*1858f998SYi Kong END IF 2147*1858f998SYi Kong 60 CONTINUE 2148*1858f998SYi Kong CALL CMMCH( 'N', 'N', LJ, 1, 2*K, ONE, 2149*1858f998SYi Kong $ AB( JJ ), NMAX, W, 2*NMAX, 2150*1858f998SYi Kong $ BETA, C( JJ, J ), NMAX, CT, 2151*1858f998SYi Kong $ G, CC( JC ), LDC, EPS, ERR, 2152*1858f998SYi Kong $ FATAL, NOUT, .TRUE. ) 2153*1858f998SYi Kong END IF 2154*1858f998SYi Kong IF( UPPER )THEN 2155*1858f998SYi Kong JC = JC + LDC 2156*1858f998SYi Kong ELSE 2157*1858f998SYi Kong JC = JC + LDC + 1 2158*1858f998SYi Kong IF( TRAN ) 2159*1858f998SYi Kong $ JJAB = JJAB + 2*NMAX 2160*1858f998SYi Kong END IF 2161*1858f998SYi Kong ERRMAX = MAX( ERRMAX, ERR ) 2162*1858f998SYi Kong* If got really bad answer, report and 2163*1858f998SYi Kong* return. 2164*1858f998SYi Kong IF( FATAL ) 2165*1858f998SYi Kong $ GO TO 140 2166*1858f998SYi Kong 70 CONTINUE 2167*1858f998SYi Kong END IF 2168*1858f998SYi Kong* 2169*1858f998SYi Kong 80 CONTINUE 2170*1858f998SYi Kong* 2171*1858f998SYi Kong 90 CONTINUE 2172*1858f998SYi Kong* 2173*1858f998SYi Kong 100 CONTINUE 2174*1858f998SYi Kong* 2175*1858f998SYi Kong 110 CONTINUE 2176*1858f998SYi Kong* 2177*1858f998SYi Kong 120 CONTINUE 2178*1858f998SYi Kong* 2179*1858f998SYi Kong 130 CONTINUE 2180*1858f998SYi Kong* 2181*1858f998SYi Kong* Report result. 2182*1858f998SYi Kong* 2183*1858f998SYi Kong IF( ERRMAX.LT.THRESH )THEN 2184*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10000 )SNAME, NC 2185*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10001 )SNAME, NC 2186*1858f998SYi Kong ELSE 2187*1858f998SYi Kong IF ( IORDER.EQ.0) WRITE( NOUT, FMT = 10002 )SNAME, NC, ERRMAX 2188*1858f998SYi Kong IF ( IORDER.EQ.1) WRITE( NOUT, FMT = 10003 )SNAME, NC, ERRMAX 2189*1858f998SYi Kong END IF 2190*1858f998SYi Kong GO TO 160 2191*1858f998SYi Kong* 2192*1858f998SYi Kong 140 CONTINUE 2193*1858f998SYi Kong IF( N.GT.1 ) 2194*1858f998SYi Kong $ WRITE( NOUT, FMT = 9995 )J 2195*1858f998SYi Kong* 2196*1858f998SYi Kong 150 CONTINUE 2197*1858f998SYi Kong WRITE( NOUT, FMT = 9996 )SNAME 2198*1858f998SYi Kong IF( CONJ )THEN 2199*1858f998SYi Kong CALL CPRCN7( NOUT, NC, SNAME, IORDER, UPLO, TRANS, N, K, 2200*1858f998SYi Kong $ ALPHA, LDA, LDB, RBETA, LDC) 2201*1858f998SYi Kong ELSE 2202*1858f998SYi Kong CALL CPRCN5( NOUT, NC, SNAME, IORDER, UPLO, TRANS, N, K, 2203*1858f998SYi Kong $ ALPHA, LDA, LDB, BETA, LDC) 2204*1858f998SYi Kong END IF 2205*1858f998SYi Kong* 2206*1858f998SYi Kong 160 CONTINUE 2207*1858f998SYi Kong RETURN 2208*1858f998SYi Kong* 2209*1858f998SYi Kong10003 FORMAT( ' ', A12,' COMPLETED THE ROW-MAJOR COMPUTATIONAL ', 2210*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 2211*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 2212*1858f998SYi Kong10002 FORMAT( ' ', A12,' COMPLETED THE COLUMN-MAJOR COMPUTATIONAL ', 2213*1858f998SYi Kong $ 'TESTS (', I6, ' CALLS)', /' ******* BUT WITH MAXIMUM TEST ', 2214*1858f998SYi Kong $ 'RATIO ', F8.2, ' - SUSPECT *******' ) 2215*1858f998SYi Kong10001 FORMAT( ' ', A12,' PASSED THE ROW-MAJOR COMPUTATIONAL TESTS', 2216*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 2217*1858f998SYi Kong10000 FORMAT( ' ', A12,' PASSED THE COLUMN-MAJOR COMPUTATIONAL TESTS', 2218*1858f998SYi Kong $ ' (', I6, ' CALL', 'S)' ) 2219*1858f998SYi Kong 9998 FORMAT(' ******* FATAL ERROR - PARAMETER NUMBER ', I2, ' WAS CH', 2220*1858f998SYi Kong $ 'ANGED INCORRECTLY *******' ) 2221*1858f998SYi Kong 9996 FORMAT( ' ******* ', A12,' FAILED ON CALL NUMBER:' ) 2222*1858f998SYi Kong 9995 FORMAT( ' THESE ARE THE RESULTS FOR COLUMN ', I3 ) 2223*1858f998SYi Kong 9994 FORMAT(1X, I6, ': ', A12,'(', 2( '''', A1, ''',' ), 2( I3, ',' ), 2224*1858f998SYi Kong $ '(', F4.1, ',', F4.1, '), A,', I3, ', B,', I3, ',', F4.1, 2225*1858f998SYi Kong $ ', C,', I3, ') .' ) 2226*1858f998SYi Kong 9993 FORMAT(1X, I6, ': ', A12,'(', 2( '''', A1, ''',' ), 2( I3, ',' ), 2227*1858f998SYi Kong $ '(', F4.1, ',', F4.1, '), A,', I3, ', B,', I3, ',(', F4.1, 2228*1858f998SYi Kong $ ',', F4.1, '), C,', I3, ') .' ) 2229*1858f998SYi Kong 9992 FORMAT(' ******* FATAL ERROR - ERROR-EXIT TAKEN ON VALID CALL *', 2230*1858f998SYi Kong $ '******' ) 2231*1858f998SYi Kong* 2232*1858f998SYi Kong* End of CCHK5. 2233*1858f998SYi Kong* 2234*1858f998SYi Kong END 2235*1858f998SYi Kong* 2236*1858f998SYi Kong SUBROUTINE CPRCN5(NOUT, NC, SNAME, IORDER, UPLO, TRANSA, 2237*1858f998SYi Kong $ N, K, ALPHA, LDA, LDB, BETA, LDC) 2238*1858f998SYi Kong INTEGER NOUT, NC, IORDER, N, K, LDA, LDB, LDC 2239*1858f998SYi Kong COMPLEX ALPHA, BETA 2240*1858f998SYi Kong CHARACTER*1 UPLO, TRANSA 2241*1858f998SYi Kong CHARACTER*12 SNAME 2242*1858f998SYi Kong CHARACTER*14 CRC, CU, CA 2243*1858f998SYi Kong 2244*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 2245*1858f998SYi Kong CU = ' CblasUpper' 2246*1858f998SYi Kong ELSE 2247*1858f998SYi Kong CU = ' CblasLower' 2248*1858f998SYi Kong END IF 2249*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 2250*1858f998SYi Kong CA = ' CblasNoTrans' 2251*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 2252*1858f998SYi Kong CA = ' CblasTrans' 2253*1858f998SYi Kong ELSE 2254*1858f998SYi Kong CA = 'CblasConjTrans' 2255*1858f998SYi Kong END IF 2256*1858f998SYi Kong IF (IORDER.EQ.1)THEN 2257*1858f998SYi Kong CRC = ' CblasRowMajor' 2258*1858f998SYi Kong ELSE 2259*1858f998SYi Kong CRC = ' CblasColMajor' 2260*1858f998SYi Kong END IF 2261*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC, SNAME, CRC, CU, CA 2262*1858f998SYi Kong WRITE(NOUT, FMT = 9994)N, K, ALPHA, LDA, LDB, BETA, LDC 2263*1858f998SYi Kong 2264*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', 3( A14, ',') ) 2265*1858f998SYi Kong 9994 FORMAT( 10X, 2( I3, ',' ), ' (', F4.1, ',', F4.1, '), A,', 2266*1858f998SYi Kong $ I3, ', B', I3, ', (', F4.1, ',', F4.1, '), C,', I3, ').' ) 2267*1858f998SYi Kong END 2268*1858f998SYi Kong* 2269*1858f998SYi Kong* 2270*1858f998SYi Kong SUBROUTINE CPRCN7(NOUT, NC, SNAME, IORDER, UPLO, TRANSA, 2271*1858f998SYi Kong $ N, K, ALPHA, LDA, LDB, BETA, LDC) 2272*1858f998SYi Kong INTEGER NOUT, NC, IORDER, N, K, LDA, LDB, LDC 2273*1858f998SYi Kong COMPLEX ALPHA 2274*1858f998SYi Kong REAL BETA 2275*1858f998SYi Kong CHARACTER*1 UPLO, TRANSA 2276*1858f998SYi Kong CHARACTER*12 SNAME 2277*1858f998SYi Kong CHARACTER*14 CRC, CU, CA 2278*1858f998SYi Kong 2279*1858f998SYi Kong IF (UPLO.EQ.'U')THEN 2280*1858f998SYi Kong CU = ' CblasUpper' 2281*1858f998SYi Kong ELSE 2282*1858f998SYi Kong CU = ' CblasLower' 2283*1858f998SYi Kong END IF 2284*1858f998SYi Kong IF (TRANSA.EQ.'N')THEN 2285*1858f998SYi Kong CA = ' CblasNoTrans' 2286*1858f998SYi Kong ELSE IF (TRANSA.EQ.'T')THEN 2287*1858f998SYi Kong CA = ' CblasTrans' 2288*1858f998SYi Kong ELSE 2289*1858f998SYi Kong CA = 'CblasConjTrans' 2290*1858f998SYi Kong END IF 2291*1858f998SYi Kong IF (IORDER.EQ.1)THEN 2292*1858f998SYi Kong CRC = ' CblasRowMajor' 2293*1858f998SYi Kong ELSE 2294*1858f998SYi Kong CRC = ' CblasColMajor' 2295*1858f998SYi Kong END IF 2296*1858f998SYi Kong WRITE(NOUT, FMT = 9995)NC, SNAME, CRC, CU, CA 2297*1858f998SYi Kong WRITE(NOUT, FMT = 9994)N, K, ALPHA, LDA, LDB, BETA, LDC 2298*1858f998SYi Kong 2299*1858f998SYi Kong 9995 FORMAT( 1X, I6, ': ', A12,'(', 3( A14, ',') ) 2300*1858f998SYi Kong 9994 FORMAT( 10X, 2( I3, ',' ), ' (', F4.1, ',', F4.1, '), A,', 2301*1858f998SYi Kong $ I3, ', B', I3, ',', F4.1, ', C,', I3, ').' ) 2302*1858f998SYi Kong END 2303*1858f998SYi Kong* 2304*1858f998SYi Kong SUBROUTINE CMAKE(TYPE, UPLO, DIAG, M, N, A, NMAX, AA, LDA, RESET, 2305*1858f998SYi Kong $ TRANSL ) 2306*1858f998SYi Kong* 2307*1858f998SYi Kong* Generates values for an M by N matrix A. 2308*1858f998SYi Kong* Stores the values in the array AA in the data structure required 2309*1858f998SYi Kong* by the routine, with unwanted elements set to rogue value. 2310*1858f998SYi Kong* 2311*1858f998SYi Kong* TYPE is 'ge', 'he', 'sy' or 'tr'. 2312*1858f998SYi Kong* 2313*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2314*1858f998SYi Kong* 2315*1858f998SYi Kong* -- Written on 8-February-1989. 2316*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2317*1858f998SYi Kong* Iain Duff, AERE Harwell. 2318*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2319*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2320*1858f998SYi Kong* 2321*1858f998SYi Kong* .. Parameters .. 2322*1858f998SYi Kong COMPLEX ZERO, ONE 2323*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ), ONE = ( 1.0, 0.0 ) ) 2324*1858f998SYi Kong COMPLEX ROGUE 2325*1858f998SYi Kong PARAMETER ( ROGUE = ( -1.0E10, 1.0E10 ) ) 2326*1858f998SYi Kong REAL RZERO 2327*1858f998SYi Kong PARAMETER ( RZERO = 0.0 ) 2328*1858f998SYi Kong REAL RROGUE 2329*1858f998SYi Kong PARAMETER ( RROGUE = -1.0E10 ) 2330*1858f998SYi Kong* .. Scalar Arguments .. 2331*1858f998SYi Kong COMPLEX TRANSL 2332*1858f998SYi Kong INTEGER LDA, M, N, NMAX 2333*1858f998SYi Kong LOGICAL RESET 2334*1858f998SYi Kong CHARACTER*1 DIAG, UPLO 2335*1858f998SYi Kong CHARACTER*2 TYPE 2336*1858f998SYi Kong* .. Array Arguments .. 2337*1858f998SYi Kong COMPLEX A( NMAX, * ), AA( * ) 2338*1858f998SYi Kong* .. Local Scalars .. 2339*1858f998SYi Kong INTEGER I, IBEG, IEND, J, JJ 2340*1858f998SYi Kong LOGICAL GEN, HER, LOWER, SYM, TRI, UNIT, UPPER 2341*1858f998SYi Kong* .. External Functions .. 2342*1858f998SYi Kong COMPLEX CBEG 2343*1858f998SYi Kong EXTERNAL CBEG 2344*1858f998SYi Kong* .. Intrinsic Functions .. 2345*1858f998SYi Kong INTRINSIC CMPLX, CONJG, REAL 2346*1858f998SYi Kong* .. Executable Statements .. 2347*1858f998SYi Kong GEN = TYPE.EQ.'ge' 2348*1858f998SYi Kong HER = TYPE.EQ.'he' 2349*1858f998SYi Kong SYM = TYPE.EQ.'sy' 2350*1858f998SYi Kong TRI = TYPE.EQ.'tr' 2351*1858f998SYi Kong UPPER = ( HER.OR.SYM.OR.TRI ).AND.UPLO.EQ.'U' 2352*1858f998SYi Kong LOWER = ( HER.OR.SYM.OR.TRI ).AND.UPLO.EQ.'L' 2353*1858f998SYi Kong UNIT = TRI.AND.DIAG.EQ.'U' 2354*1858f998SYi Kong* 2355*1858f998SYi Kong* Generate data in array A. 2356*1858f998SYi Kong* 2357*1858f998SYi Kong DO 20 J = 1, N 2358*1858f998SYi Kong DO 10 I = 1, M 2359*1858f998SYi Kong IF( GEN.OR.( UPPER.AND.I.LE.J ).OR.( LOWER.AND.I.GE.J ) ) 2360*1858f998SYi Kong $ THEN 2361*1858f998SYi Kong A( I, J ) = CBEG( RESET ) + TRANSL 2362*1858f998SYi Kong IF( I.NE.J )THEN 2363*1858f998SYi Kong* Set some elements to zero 2364*1858f998SYi Kong IF( N.GT.3.AND.J.EQ.N/2 ) 2365*1858f998SYi Kong $ A( I, J ) = ZERO 2366*1858f998SYi Kong IF( HER )THEN 2367*1858f998SYi Kong A( J, I ) = CONJG( A( I, J ) ) 2368*1858f998SYi Kong ELSE IF( SYM )THEN 2369*1858f998SYi Kong A( J, I ) = A( I, J ) 2370*1858f998SYi Kong ELSE IF( TRI )THEN 2371*1858f998SYi Kong A( J, I ) = ZERO 2372*1858f998SYi Kong END IF 2373*1858f998SYi Kong END IF 2374*1858f998SYi Kong END IF 2375*1858f998SYi Kong 10 CONTINUE 2376*1858f998SYi Kong IF( HER ) 2377*1858f998SYi Kong $ A( J, J ) = CMPLX( REAL( A( J, J ) ), RZERO ) 2378*1858f998SYi Kong IF( TRI ) 2379*1858f998SYi Kong $ A( J, J ) = A( J, J ) + ONE 2380*1858f998SYi Kong IF( UNIT ) 2381*1858f998SYi Kong $ A( J, J ) = ONE 2382*1858f998SYi Kong 20 CONTINUE 2383*1858f998SYi Kong* 2384*1858f998SYi Kong* Store elements in array AS in data structure required by routine. 2385*1858f998SYi Kong* 2386*1858f998SYi Kong IF( TYPE.EQ.'ge' )THEN 2387*1858f998SYi Kong DO 50 J = 1, N 2388*1858f998SYi Kong DO 30 I = 1, M 2389*1858f998SYi Kong AA( I + ( J - 1 )*LDA ) = A( I, J ) 2390*1858f998SYi Kong 30 CONTINUE 2391*1858f998SYi Kong DO 40 I = M + 1, LDA 2392*1858f998SYi Kong AA( I + ( J - 1 )*LDA ) = ROGUE 2393*1858f998SYi Kong 40 CONTINUE 2394*1858f998SYi Kong 50 CONTINUE 2395*1858f998SYi Kong ELSE IF( TYPE.EQ.'he'.OR.TYPE.EQ.'sy'.OR.TYPE.EQ.'tr' )THEN 2396*1858f998SYi Kong DO 90 J = 1, N 2397*1858f998SYi Kong IF( UPPER )THEN 2398*1858f998SYi Kong IBEG = 1 2399*1858f998SYi Kong IF( UNIT )THEN 2400*1858f998SYi Kong IEND = J - 1 2401*1858f998SYi Kong ELSE 2402*1858f998SYi Kong IEND = J 2403*1858f998SYi Kong END IF 2404*1858f998SYi Kong ELSE 2405*1858f998SYi Kong IF( UNIT )THEN 2406*1858f998SYi Kong IBEG = J + 1 2407*1858f998SYi Kong ELSE 2408*1858f998SYi Kong IBEG = J 2409*1858f998SYi Kong END IF 2410*1858f998SYi Kong IEND = N 2411*1858f998SYi Kong END IF 2412*1858f998SYi Kong DO 60 I = 1, IBEG - 1 2413*1858f998SYi Kong AA( I + ( J - 1 )*LDA ) = ROGUE 2414*1858f998SYi Kong 60 CONTINUE 2415*1858f998SYi Kong DO 70 I = IBEG, IEND 2416*1858f998SYi Kong AA( I + ( J - 1 )*LDA ) = A( I, J ) 2417*1858f998SYi Kong 70 CONTINUE 2418*1858f998SYi Kong DO 80 I = IEND + 1, LDA 2419*1858f998SYi Kong AA( I + ( J - 1 )*LDA ) = ROGUE 2420*1858f998SYi Kong 80 CONTINUE 2421*1858f998SYi Kong IF( HER )THEN 2422*1858f998SYi Kong JJ = J + ( J - 1 )*LDA 2423*1858f998SYi Kong AA( JJ ) = CMPLX( REAL( AA( JJ ) ), RROGUE ) 2424*1858f998SYi Kong END IF 2425*1858f998SYi Kong 90 CONTINUE 2426*1858f998SYi Kong END IF 2427*1858f998SYi Kong RETURN 2428*1858f998SYi Kong* 2429*1858f998SYi Kong* End of CMAKE. 2430*1858f998SYi Kong* 2431*1858f998SYi Kong END 2432*1858f998SYi Kong SUBROUTINE CMMCH(TRANSA, TRANSB, M, N, KK, ALPHA, A, LDA, B, LDB, 2433*1858f998SYi Kong $ BETA, C, LDC, CT, G, CC, LDCC, EPS, ERR, FATAL, 2434*1858f998SYi Kong $ NOUT, MV ) 2435*1858f998SYi Kong* 2436*1858f998SYi Kong* Checks the results of the computational tests. 2437*1858f998SYi Kong* 2438*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2439*1858f998SYi Kong* 2440*1858f998SYi Kong* -- Written on 8-February-1989. 2441*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2442*1858f998SYi Kong* Iain Duff, AERE Harwell. 2443*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2444*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2445*1858f998SYi Kong* 2446*1858f998SYi Kong* .. Parameters .. 2447*1858f998SYi Kong COMPLEX ZERO 2448*1858f998SYi Kong PARAMETER ( ZERO = ( 0.0, 0.0 ) ) 2449*1858f998SYi Kong REAL RZERO, RONE 2450*1858f998SYi Kong PARAMETER ( RZERO = 0.0, RONE = 1.0 ) 2451*1858f998SYi Kong* .. Scalar Arguments .. 2452*1858f998SYi Kong COMPLEX ALPHA, BETA 2453*1858f998SYi Kong REAL EPS, ERR 2454*1858f998SYi Kong INTEGER KK, LDA, LDB, LDC, LDCC, M, N, NOUT 2455*1858f998SYi Kong LOGICAL FATAL, MV 2456*1858f998SYi Kong CHARACTER*1 TRANSA, TRANSB 2457*1858f998SYi Kong* .. Array Arguments .. 2458*1858f998SYi Kong COMPLEX A( LDA, * ), B( LDB, * ), C( LDC, * ), 2459*1858f998SYi Kong $ CC( LDCC, * ), CT( * ) 2460*1858f998SYi Kong REAL G( * ) 2461*1858f998SYi Kong* .. Local Scalars .. 2462*1858f998SYi Kong COMPLEX CL 2463*1858f998SYi Kong REAL ERRI 2464*1858f998SYi Kong INTEGER I, J, K 2465*1858f998SYi Kong LOGICAL CTRANA, CTRANB, TRANA, TRANB 2466*1858f998SYi Kong* .. Intrinsic Functions .. 2467*1858f998SYi Kong INTRINSIC ABS, AIMAG, CONJG, MAX, REAL, SQRT 2468*1858f998SYi Kong* .. Statement Functions .. 2469*1858f998SYi Kong REAL ABS1 2470*1858f998SYi Kong* .. Statement Function definitions .. 2471*1858f998SYi Kong ABS1( CL ) = ABS( REAL( CL ) ) + ABS( AIMAG( CL ) ) 2472*1858f998SYi Kong* .. Executable Statements .. 2473*1858f998SYi Kong TRANA = TRANSA.EQ.'T'.OR.TRANSA.EQ.'C' 2474*1858f998SYi Kong TRANB = TRANSB.EQ.'T'.OR.TRANSB.EQ.'C' 2475*1858f998SYi Kong CTRANA = TRANSA.EQ.'C' 2476*1858f998SYi Kong CTRANB = TRANSB.EQ.'C' 2477*1858f998SYi Kong* 2478*1858f998SYi Kong* Compute expected result, one column at a time, in CT using data 2479*1858f998SYi Kong* in A, B and C. 2480*1858f998SYi Kong* Compute gauges in G. 2481*1858f998SYi Kong* 2482*1858f998SYi Kong DO 220 J = 1, N 2483*1858f998SYi Kong* 2484*1858f998SYi Kong DO 10 I = 1, M 2485*1858f998SYi Kong CT( I ) = ZERO 2486*1858f998SYi Kong G( I ) = RZERO 2487*1858f998SYi Kong 10 CONTINUE 2488*1858f998SYi Kong IF( .NOT.TRANA.AND..NOT.TRANB )THEN 2489*1858f998SYi Kong DO 30 K = 1, KK 2490*1858f998SYi Kong DO 20 I = 1, M 2491*1858f998SYi Kong CT( I ) = CT( I ) + A( I, K )*B( K, J ) 2492*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( I, K ) )*ABS1( B( K, J ) ) 2493*1858f998SYi Kong 20 CONTINUE 2494*1858f998SYi Kong 30 CONTINUE 2495*1858f998SYi Kong ELSE IF( TRANA.AND..NOT.TRANB )THEN 2496*1858f998SYi Kong IF( CTRANA )THEN 2497*1858f998SYi Kong DO 50 K = 1, KK 2498*1858f998SYi Kong DO 40 I = 1, M 2499*1858f998SYi Kong CT( I ) = CT( I ) + CONJG( A( K, I ) )*B( K, J ) 2500*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2501*1858f998SYi Kong $ ABS1( B( K, J ) ) 2502*1858f998SYi Kong 40 CONTINUE 2503*1858f998SYi Kong 50 CONTINUE 2504*1858f998SYi Kong ELSE 2505*1858f998SYi Kong DO 70 K = 1, KK 2506*1858f998SYi Kong DO 60 I = 1, M 2507*1858f998SYi Kong CT( I ) = CT( I ) + A( K, I )*B( K, J ) 2508*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2509*1858f998SYi Kong $ ABS1( B( K, J ) ) 2510*1858f998SYi Kong 60 CONTINUE 2511*1858f998SYi Kong 70 CONTINUE 2512*1858f998SYi Kong END IF 2513*1858f998SYi Kong ELSE IF( .NOT.TRANA.AND.TRANB )THEN 2514*1858f998SYi Kong IF( CTRANB )THEN 2515*1858f998SYi Kong DO 90 K = 1, KK 2516*1858f998SYi Kong DO 80 I = 1, M 2517*1858f998SYi Kong CT( I ) = CT( I ) + A( I, K )*CONJG( B( J, K ) ) 2518*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( I, K ) )* 2519*1858f998SYi Kong $ ABS1( B( J, K ) ) 2520*1858f998SYi Kong 80 CONTINUE 2521*1858f998SYi Kong 90 CONTINUE 2522*1858f998SYi Kong ELSE 2523*1858f998SYi Kong DO 110 K = 1, KK 2524*1858f998SYi Kong DO 100 I = 1, M 2525*1858f998SYi Kong CT( I ) = CT( I ) + A( I, K )*B( J, K ) 2526*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( I, K ) )* 2527*1858f998SYi Kong $ ABS1( B( J, K ) ) 2528*1858f998SYi Kong 100 CONTINUE 2529*1858f998SYi Kong 110 CONTINUE 2530*1858f998SYi Kong END IF 2531*1858f998SYi Kong ELSE IF( TRANA.AND.TRANB )THEN 2532*1858f998SYi Kong IF( CTRANA )THEN 2533*1858f998SYi Kong IF( CTRANB )THEN 2534*1858f998SYi Kong DO 130 K = 1, KK 2535*1858f998SYi Kong DO 120 I = 1, M 2536*1858f998SYi Kong CT( I ) = CT( I ) + CONJG( A( K, I ) )* 2537*1858f998SYi Kong $ CONJG( B( J, K ) ) 2538*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2539*1858f998SYi Kong $ ABS1( B( J, K ) ) 2540*1858f998SYi Kong 120 CONTINUE 2541*1858f998SYi Kong 130 CONTINUE 2542*1858f998SYi Kong ELSE 2543*1858f998SYi Kong DO 150 K = 1, KK 2544*1858f998SYi Kong DO 140 I = 1, M 2545*1858f998SYi Kong CT( I ) = CT( I ) + CONJG( A( K, I ) )*B( J, K ) 2546*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2547*1858f998SYi Kong $ ABS1( B( J, K ) ) 2548*1858f998SYi Kong 140 CONTINUE 2549*1858f998SYi Kong 150 CONTINUE 2550*1858f998SYi Kong END IF 2551*1858f998SYi Kong ELSE 2552*1858f998SYi Kong IF( CTRANB )THEN 2553*1858f998SYi Kong DO 170 K = 1, KK 2554*1858f998SYi Kong DO 160 I = 1, M 2555*1858f998SYi Kong CT( I ) = CT( I ) + A( K, I )*CONJG( B( J, K ) ) 2556*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2557*1858f998SYi Kong $ ABS1( B( J, K ) ) 2558*1858f998SYi Kong 160 CONTINUE 2559*1858f998SYi Kong 170 CONTINUE 2560*1858f998SYi Kong ELSE 2561*1858f998SYi Kong DO 190 K = 1, KK 2562*1858f998SYi Kong DO 180 I = 1, M 2563*1858f998SYi Kong CT( I ) = CT( I ) + A( K, I )*B( J, K ) 2564*1858f998SYi Kong G( I ) = G( I ) + ABS1( A( K, I ) )* 2565*1858f998SYi Kong $ ABS1( B( J, K ) ) 2566*1858f998SYi Kong 180 CONTINUE 2567*1858f998SYi Kong 190 CONTINUE 2568*1858f998SYi Kong END IF 2569*1858f998SYi Kong END IF 2570*1858f998SYi Kong END IF 2571*1858f998SYi Kong DO 200 I = 1, M 2572*1858f998SYi Kong CT( I ) = ALPHA*CT( I ) + BETA*C( I, J ) 2573*1858f998SYi Kong G( I ) = ABS1( ALPHA )*G( I ) + 2574*1858f998SYi Kong $ ABS1( BETA )*ABS1( C( I, J ) ) 2575*1858f998SYi Kong 200 CONTINUE 2576*1858f998SYi Kong* 2577*1858f998SYi Kong* Compute the error ratio for this result. 2578*1858f998SYi Kong* 2579*1858f998SYi Kong ERR = ZERO 2580*1858f998SYi Kong DO 210 I = 1, M 2581*1858f998SYi Kong ERRI = ABS1( CT( I ) - CC( I, J ) )/EPS 2582*1858f998SYi Kong IF( G( I ).NE.RZERO ) 2583*1858f998SYi Kong $ ERRI = ERRI/G( I ) 2584*1858f998SYi Kong ERR = MAX( ERR, ERRI ) 2585*1858f998SYi Kong IF( ERR*SQRT( EPS ).GE.RONE ) 2586*1858f998SYi Kong $ GO TO 230 2587*1858f998SYi Kong 210 CONTINUE 2588*1858f998SYi Kong* 2589*1858f998SYi Kong 220 CONTINUE 2590*1858f998SYi Kong* 2591*1858f998SYi Kong* If the loop completes, all results are at least half accurate. 2592*1858f998SYi Kong GO TO 250 2593*1858f998SYi Kong* 2594*1858f998SYi Kong* Report fatal error. 2595*1858f998SYi Kong* 2596*1858f998SYi Kong 230 FATAL = .TRUE. 2597*1858f998SYi Kong WRITE( NOUT, FMT = 9999 ) 2598*1858f998SYi Kong DO 240 I = 1, M 2599*1858f998SYi Kong IF( MV )THEN 2600*1858f998SYi Kong WRITE( NOUT, FMT = 9998 )I, CT( I ), CC( I, J ) 2601*1858f998SYi Kong ELSE 2602*1858f998SYi Kong WRITE( NOUT, FMT = 9998 )I, CC( I, J ), CT( I ) 2603*1858f998SYi Kong END IF 2604*1858f998SYi Kong 240 CONTINUE 2605*1858f998SYi Kong IF( N.GT.1 ) 2606*1858f998SYi Kong $ WRITE( NOUT, FMT = 9997 )J 2607*1858f998SYi Kong* 2608*1858f998SYi Kong 250 CONTINUE 2609*1858f998SYi Kong RETURN 2610*1858f998SYi Kong* 2611*1858f998SYi Kong 9999 FORMAT(' ******* FATAL ERROR - COMPUTED RESULT IS LESS THAN HAL', 2612*1858f998SYi Kong $ 'F ACCURATE *******', /' EXPECTED RE', 2613*1858f998SYi Kong $ 'SULT COMPUTED RESULT' ) 2614*1858f998SYi Kong 9998 FORMAT( 1X, I7, 2( ' (', G15.6, ',', G15.6, ')' ) ) 2615*1858f998SYi Kong 9997 FORMAT( ' THESE ARE THE RESULTS FOR COLUMN ', I3 ) 2616*1858f998SYi Kong* 2617*1858f998SYi Kong* End of CMMCH. 2618*1858f998SYi Kong* 2619*1858f998SYi Kong END 2620*1858f998SYi Kong LOGICAL FUNCTION LCE( RI, RJ, LR ) 2621*1858f998SYi Kong* 2622*1858f998SYi Kong* Tests if two arrays are identical. 2623*1858f998SYi Kong* 2624*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2625*1858f998SYi Kong* 2626*1858f998SYi Kong* -- Written on 8-February-1989. 2627*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2628*1858f998SYi Kong* Iain Duff, AERE Harwell. 2629*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2630*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2631*1858f998SYi Kong* 2632*1858f998SYi Kong* .. Scalar Arguments .. 2633*1858f998SYi Kong INTEGER LR 2634*1858f998SYi Kong* .. Array Arguments .. 2635*1858f998SYi Kong COMPLEX RI( * ), RJ( * ) 2636*1858f998SYi Kong* .. Local Scalars .. 2637*1858f998SYi Kong INTEGER I 2638*1858f998SYi Kong* .. Executable Statements .. 2639*1858f998SYi Kong DO 10 I = 1, LR 2640*1858f998SYi Kong IF( RI( I ).NE.RJ( I ) ) 2641*1858f998SYi Kong $ GO TO 20 2642*1858f998SYi Kong 10 CONTINUE 2643*1858f998SYi Kong LCE = .TRUE. 2644*1858f998SYi Kong GO TO 30 2645*1858f998SYi Kong 20 CONTINUE 2646*1858f998SYi Kong LCE = .FALSE. 2647*1858f998SYi Kong 30 RETURN 2648*1858f998SYi Kong* 2649*1858f998SYi Kong* End of LCE. 2650*1858f998SYi Kong* 2651*1858f998SYi Kong END 2652*1858f998SYi Kong LOGICAL FUNCTION LCERES( TYPE, UPLO, M, N, AA, AS, LDA ) 2653*1858f998SYi Kong* 2654*1858f998SYi Kong* Tests if selected elements in two arrays are equal. 2655*1858f998SYi Kong* 2656*1858f998SYi Kong* TYPE is 'ge' or 'he' or 'sy'. 2657*1858f998SYi Kong* 2658*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2659*1858f998SYi Kong* 2660*1858f998SYi Kong* -- Written on 8-February-1989. 2661*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2662*1858f998SYi Kong* Iain Duff, AERE Harwell. 2663*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2664*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2665*1858f998SYi Kong* 2666*1858f998SYi Kong* .. Scalar Arguments .. 2667*1858f998SYi Kong INTEGER LDA, M, N 2668*1858f998SYi Kong CHARACTER*1 UPLO 2669*1858f998SYi Kong CHARACTER*2 TYPE 2670*1858f998SYi Kong* .. Array Arguments .. 2671*1858f998SYi Kong COMPLEX AA( LDA, * ), AS( LDA, * ) 2672*1858f998SYi Kong* .. Local Scalars .. 2673*1858f998SYi Kong INTEGER I, IBEG, IEND, J 2674*1858f998SYi Kong LOGICAL UPPER 2675*1858f998SYi Kong* .. Executable Statements .. 2676*1858f998SYi Kong UPPER = UPLO.EQ.'U' 2677*1858f998SYi Kong IF( TYPE.EQ.'ge' )THEN 2678*1858f998SYi Kong DO 20 J = 1, N 2679*1858f998SYi Kong DO 10 I = M + 1, LDA 2680*1858f998SYi Kong IF( AA( I, J ).NE.AS( I, J ) ) 2681*1858f998SYi Kong $ GO TO 70 2682*1858f998SYi Kong 10 CONTINUE 2683*1858f998SYi Kong 20 CONTINUE 2684*1858f998SYi Kong ELSE IF( TYPE.EQ.'he'.OR.TYPE.EQ.'sy' )THEN 2685*1858f998SYi Kong DO 50 J = 1, N 2686*1858f998SYi Kong IF( UPPER )THEN 2687*1858f998SYi Kong IBEG = 1 2688*1858f998SYi Kong IEND = J 2689*1858f998SYi Kong ELSE 2690*1858f998SYi Kong IBEG = J 2691*1858f998SYi Kong IEND = N 2692*1858f998SYi Kong END IF 2693*1858f998SYi Kong DO 30 I = 1, IBEG - 1 2694*1858f998SYi Kong IF( AA( I, J ).NE.AS( I, J ) ) 2695*1858f998SYi Kong $ GO TO 70 2696*1858f998SYi Kong 30 CONTINUE 2697*1858f998SYi Kong DO 40 I = IEND + 1, LDA 2698*1858f998SYi Kong IF( AA( I, J ).NE.AS( I, J ) ) 2699*1858f998SYi Kong $ GO TO 70 2700*1858f998SYi Kong 40 CONTINUE 2701*1858f998SYi Kong 50 CONTINUE 2702*1858f998SYi Kong END IF 2703*1858f998SYi Kong* 2704*1858f998SYi Kong 60 CONTINUE 2705*1858f998SYi Kong LCERES = .TRUE. 2706*1858f998SYi Kong GO TO 80 2707*1858f998SYi Kong 70 CONTINUE 2708*1858f998SYi Kong LCERES = .FALSE. 2709*1858f998SYi Kong 80 RETURN 2710*1858f998SYi Kong* 2711*1858f998SYi Kong* End of LCERES. 2712*1858f998SYi Kong* 2713*1858f998SYi Kong END 2714*1858f998SYi Kong COMPLEX FUNCTION CBEG( RESET ) 2715*1858f998SYi Kong* 2716*1858f998SYi Kong* Generates complex numbers as pairs of random numbers uniformly 2717*1858f998SYi Kong* distributed between -0.5 and 0.5. 2718*1858f998SYi Kong* 2719*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2720*1858f998SYi Kong* 2721*1858f998SYi Kong* -- Written on 8-February-1989. 2722*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2723*1858f998SYi Kong* Iain Duff, AERE Harwell. 2724*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2725*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2726*1858f998SYi Kong* 2727*1858f998SYi Kong* .. Scalar Arguments .. 2728*1858f998SYi Kong LOGICAL RESET 2729*1858f998SYi Kong* .. Local Scalars .. 2730*1858f998SYi Kong INTEGER I, IC, J, MI, MJ 2731*1858f998SYi Kong* .. Save statement .. 2732*1858f998SYi Kong SAVE I, IC, J, MI, MJ 2733*1858f998SYi Kong* .. Intrinsic Functions .. 2734*1858f998SYi Kong INTRINSIC CMPLX 2735*1858f998SYi Kong* .. Executable Statements .. 2736*1858f998SYi Kong IF( RESET )THEN 2737*1858f998SYi Kong* Initialize local variables. 2738*1858f998SYi Kong MI = 891 2739*1858f998SYi Kong MJ = 457 2740*1858f998SYi Kong I = 7 2741*1858f998SYi Kong J = 7 2742*1858f998SYi Kong IC = 0 2743*1858f998SYi Kong RESET = .FALSE. 2744*1858f998SYi Kong END IF 2745*1858f998SYi Kong* 2746*1858f998SYi Kong* The sequence of values of I or J is bounded between 1 and 999. 2747*1858f998SYi Kong* If initial I or J = 1,2,3,6,7 or 9, the period will be 50. 2748*1858f998SYi Kong* If initial I or J = 4 or 8, the period will be 25. 2749*1858f998SYi Kong* If initial I or J = 5, the period will be 10. 2750*1858f998SYi Kong* IC is used to break up the period by skipping 1 value of I or J 2751*1858f998SYi Kong* in 6. 2752*1858f998SYi Kong* 2753*1858f998SYi Kong IC = IC + 1 2754*1858f998SYi Kong 10 I = I*MI 2755*1858f998SYi Kong J = J*MJ 2756*1858f998SYi Kong I = I - 1000*( I/1000 ) 2757*1858f998SYi Kong J = J - 1000*( J/1000 ) 2758*1858f998SYi Kong IF( IC.GE.5 )THEN 2759*1858f998SYi Kong IC = 0 2760*1858f998SYi Kong GO TO 10 2761*1858f998SYi Kong END IF 2762*1858f998SYi Kong CBEG = CMPLX( ( I - 500 )/1001.0, ( J - 500 )/1001.0 ) 2763*1858f998SYi Kong RETURN 2764*1858f998SYi Kong* 2765*1858f998SYi Kong* End of CBEG. 2766*1858f998SYi Kong* 2767*1858f998SYi Kong END 2768*1858f998SYi Kong REAL FUNCTION SDIFF( X, Y ) 2769*1858f998SYi Kong* 2770*1858f998SYi Kong* Auxiliary routine for test program for Level 3 Blas. 2771*1858f998SYi Kong* 2772*1858f998SYi Kong* -- Written on 8-February-1989. 2773*1858f998SYi Kong* Jack Dongarra, Argonne National Laboratory. 2774*1858f998SYi Kong* Iain Duff, AERE Harwell. 2775*1858f998SYi Kong* Jeremy Du Croz, Numerical Algorithms Group Ltd. 2776*1858f998SYi Kong* Sven Hammarling, Numerical Algorithms Group Ltd. 2777*1858f998SYi Kong* 2778*1858f998SYi Kong* .. Scalar Arguments .. 2779*1858f998SYi Kong REAL X, Y 2780*1858f998SYi Kong* .. Executable Statements .. 2781*1858f998SYi Kong SDIFF = X - Y 2782*1858f998SYi Kong RETURN 2783*1858f998SYi Kong* 2784*1858f998SYi Kong* End of SDIFF. 2785*1858f998SYi Kong* 2786*1858f998SYi Kong END 2787