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12 CHARACTER SYMM, TRANS, UPLO
13 INTEGER BWL, BWU, IA, IASEED, IBSEED,
14 $ IX, JA, JX, N, NRHS, WORKSIZ
15 DOUBLE PRECISION ANORM, RESID
16
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18 INTEGER DESCA( * ), DESCX( * )
19 COMPLEX*16 A( * ), WORK( * ), X( * )
20
21 LOGICAL LSAME
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164 COMPLEX*16 ZERO, ONE
165 parameter( one = ( 1.0d+0, 0.0d+0 ),
166 $ zero = ( 0.0d+0, 0.0d+0 ) )
167 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
168 $ LLD_, MB_, M_, NB_, N_, RSRC_
169 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
170 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
171 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
172 INTEGER INT_ONE
173 parameter( int_one = 1 )
174
175
176 INTEGER IACOL, IAROW, ICTXT,
177 $ IIA, IIX, IPB, IPW,
178 $ IXCOL, IXROW, J, JJA, JJX, LDA,
179 $ MYCOL, MYROW, NB, NP, NPCOL, NPROW, NQ
180 INTEGER BW, INFO, IPPRODUCT, WORK_MIN
181 DOUBLE PRECISION DIVISOR, EPS, RESID1, NORMX
182
183
184
185
186 EXTERNAL blacs_gridinfo, dgebr2d, dgebs2d,
188 $
pzmatgen, zgamx2d, zgemm, zgsum2d,
189 $ zlaset
190
191
192 INTEGER IZAMAX, NUMROC
193 DOUBLE PRECISION PDLAMCH
195
196
197 INTRINSIC abs, dble,
max,
min, mod
198
199
200
201
202
203 ictxt = desca( ctxt_ )
204 nb = desca( nb_ )
205
206 IF(
lsame( symm,
'H' ) )
THEN
207 bw = bwl
208 work_min =
max(5,
max(
max(bwl,bwu)*(
max(bwl,bwu)+2),nb))+2*nb
209 ELSE
211 work_min =
max(5,
max(
max(bwl,bwu)*(
max(bwl,bwu)+2),nb))+2*nb
212 ENDIF
213
214 IF ( worksiz .LT. work_min ) THEN
215 CALL pxerbla( ictxt,
'PZBLASCHK', -18 )
216 RETURN
217 END IF
218
219 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
220
222 resid = 0.0d+0
223 divisor = anorm * eps * dble( n )
224
225 CALL infog2l( ia, ja, desca, nprow, npcol, myrow, mycol, iia, jja,
226 $ iarow, iacol )
227 CALL infog2l( ix, jx, descx, nprow, npcol, myrow, mycol, iix, jjx,
228 $ ixrow, ixcol )
229 np =
numroc( (bwl+bwu+1), desca( mb_ ), myrow, 0, nprow )
230 nq =
numroc( n, desca( nb_ ), mycol, 0, npcol )
231
232 ipb = 1
233 ipproduct = 1 + desca( nb_ )
234 ipw = 1 + 2*desca( nb_ )
235
236 lda = desca( lld_ )
237
238
239
240 IF(
lsame( symm,
'H' ))
THEN
241 CALL pzbmatgen( ictxt, uplo,
'D', bw, bw, n, bw+1,
242 $ desca( nb_ ), a, desca( lld_ ), 0, 0,
243 $ iaseed, myrow, mycol, nprow, npcol )
244 ELSE
245
246 CALL pzbmatgen( ictxt,
'N', uplo, bwl, bwu, n,
247 $ desca( mb_ ), desca( nb_ ), a,
248 $ desca( lld_ ), 0, 0, iaseed, myrow,
249 $ mycol, nprow, npcol )
250 ENDIF
251
252
253
254 resid = 0.0
255
256 DO 40 j = 1, nrhs
257
258
259
260
261 CALL pzgbdcmv( bwl+bwu+1, bwl, bwu, trans, n, a, 1, desca,
262 $ 1, x( 1 + (j-1)*descx( lld_ )), 1, descx,
263 $ work( ipproduct ), work( ipw ),
264 $ (
max(bwl,bwu)+2)*
max(bwl,bwu), info )
265
266
267
268
269 CALL pzmatgen( descx( ctxt_ ),
'No',
'No', descx( m_ ),
270 $ descx( n_ ), descx( mb_ ), descx( nb_ ),
271 $ work( ipb ), descx( lld_ ), descx( rsrc_ ),
272 $ descx( csrc_ ), ibseed, 0, nq, j-1, 1, mycol,
273 $ myrow, npcol, nprow )
274
275
276
277 CALL pzaxpy( n, -one, work( ipproduct ), 1, 1, descx, 1,
278 $ work( ipb ), 1, 1, descx, 1 )
279
280 CALL pdznrm2( n, normx,
281 $ x, 1, j, descx, 1 )
282
283 CALL pdznrm2( n, resid1,
284 $ work( ipb ), 1, 1, descx, 1 )
285
286
287
288
289 resid1 = resid1 / ( normx*divisor )
290
291 resid =
max( resid, resid1 )
292
293 40 CONTINUE
294
295 RETURN
296
297
298
subroutine pzmatgen(ictxt, aform, diag, m, n, mb, nb, a, lda, iarow, iacol, iseed, iroff, irnum, icoff, icnum, myrow, mycol, nprow, npcol)
subroutine infog2l(grindx, gcindx, desc, nprow, npcol, myrow, mycol, lrindx, lcindx, rsrc, csrc)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine pbztran(icontxt, adist, trans, m, n, nb, a, lda, beta, c, ldc, iarow, iacol, icrow, iccol, work)
double precision function pdlamch(ictxt, cmach)
subroutine pxerbla(ictxt, srname, info)
subroutine pzbmatgen(ictxt, aform, aform2, bwl, bwu, n, mb, nb, a, lda, iarow, iacol, iseed, myrow, mycol, nprow, npcol)
subroutine pzgbdcmv(ldbw, bwl, bwu, trans, n, a, ja, desca, nrhs, b, ib, descb, x, work, lwork, info)