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12 CHARACTER SYMM, TRANS, UPLO
13 INTEGER BWL, BWU, IA, IASEED, IBSEED,
14 $ IX, JA, JX, N, NRHS, WORKSIZ
15 REAL ANORM, RESID
16
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18 INTEGER DESCA( * ), DESCX( * )
19 COMPLEX A( * ), WORK( * ), X( * )
20
21 LOGICAL LSAME
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164 COMPLEX ZERO, ONE
165 parameter( one = ( 1.0e+0, 0.0e+0 ),
166 $ zero = ( 0.0e+0, 0.0e+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 REAL DIVISOR, EPS, RESID1, NORMX
182
183
184
185
186 EXTERNAL blacs_gridinfo, cgamx2d, cgemm, cgsum2d,
188 $ sgebs2d, sgerv2d, sgesd2d
189
190
191 INTEGER ICAMAX, NUMROC
192 REAL PSLAMCH
194
195
196 INTRINSIC abs,
max,
min, mod, real
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200
201
202 ictxt = desca( ctxt_ )
203 nb = desca( nb_ )
204
205 IF(
lsame( symm,
'H' ) )
THEN
206 bw = bwl
207 work_min =
max(5,
max(
max(bwl,bwu)*(
max(bwl,bwu)+2),nb))+2*nb
208 ELSE
210 work_min =
max(5,
max(
max(bwl,bwu)*(
max(bwl,bwu)+2),nb))+2*nb
211 ENDIF
212
213 IF ( worksiz .LT. work_min ) THEN
214 CALL pxerbla( ictxt,
'PCBLASCHK', -18 )
215 RETURN
216 END IF
217
218 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
219
221 resid = 0.0e+0
222 divisor = anorm * eps * real( n )
223
224 CALL infog2l( ia, ja, desca, nprow, npcol, myrow, mycol, iia, jja,
225 $ iarow, iacol )
226 CALL infog2l( ix, jx, descx, nprow, npcol, myrow, mycol, iix, jjx,
227 $ ixrow, ixcol )
228 np =
numroc( (bwl+bwu+1), desca( mb_ ), myrow, 0, nprow )
229 nq =
numroc( n, desca( nb_ ), mycol, 0, npcol )
230
231 ipb = 1
232 ipproduct = 1 + desca( nb_ )
233 ipw = 1 + 2*desca( nb_ )
234
235 lda = desca( lld_ )
236
237
238
239 IF(
lsame( symm,
'H' ))
THEN
240 CALL pcbmatgen( ictxt, uplo,
'D', bw, bw, n, bw+1,
241 $ desca( nb_ ), a, desca( lld_ ), 0, 0,
242 $ iaseed, myrow, mycol, nprow, npcol )
243 ELSE
244
245 CALL pcbmatgen( ictxt,
'N', uplo, bwl, bwu, n,
246 $ desca( mb_ ), desca( nb_ ), a,
247 $ desca( lld_ ), 0, 0, iaseed, myrow,
248 $ mycol, nprow, npcol )
249 ENDIF
250
251
252
253 resid = 0.0
254
255 DO 40 j = 1, nrhs
256
257
258
259
260 CALL pcgbdcmv( bwl+bwu+1, bwl, bwu, trans, n, a, 1, desca,
261 $ 1, x( 1 + (j-1)*descx( lld_ )), 1, descx,
262 $ work( ipproduct ), work( ipw ),
263 $ (
max(bwl,bwu)+2)*
max(bwl,bwu), info )
264
265
266
267
268 CALL pcmatgen( descx( ctxt_ ),
'No',
'No', descx( m_ ),
269 $ descx( n_ ), descx( mb_ ), descx( nb_ ),
270 $ work( ipb ), descx( lld_ ), descx( rsrc_ ),
271 $ descx( csrc_ ), ibseed, 0, nq, j-1, 1, mycol,
272 $ myrow, npcol, nprow )
273
274
275
276 CALL pcaxpy( n, -one, work( ipproduct ), 1, 1, descx, 1,
277 $ work( ipb ), 1, 1, descx, 1 )
278
279 CALL pscnrm2( n, normx,
280 $ x, 1, j, descx, 1 )
281
282 CALL pscnrm2( n, resid1,
283 $ work( ipb ), 1, 1, descx, 1 )
284
285
286
287
288 resid1 = resid1 / ( normx*divisor )
289
290 resid =
max( resid, resid1 )
291
292 40 CONTINUE
293
294 RETURN
295
296
297
subroutine pcmatgen(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 pbctran(icontxt, adist, trans, m, n, nb, a, lda, beta, c, ldc, iarow, iacol, icrow, iccol, work)
real function pslamch(ictxt, cmach)
subroutine pcbmatgen(ictxt, aform, aform2, bwl, bwu, n, mb, nb, a, lda, iarow, iacol, iseed, myrow, mycol, nprow, npcol)
subroutine pcgbdcmv(ldbw, bwl, bwu, trans, n, a, ja, desca, nrhs, b, ib, descb, x, work, lwork, info)
subroutine pxerbla(ictxt, srname, info)