xref: /aosp_15_r20/external/cblas/testing/c_cblat3.f (revision 1858f9982ea1ad57fb52080c08594e4d1cce4fa1)
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