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9 INTEGER IA, IHI, ILO, JA, N
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12 INTEGER DESCA( * )
13 COMPLEX*16 A( * ), TAU( * ), WORK( * )
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90 INTEGER BLOCK_CYCLIC_2D, CSRC_, CTXT_, DLEN_, DTYPE_,
91 $ LLD_, MB_, M_, NB_, N_, RSRC_
92 parameter( block_cyclic_2d = 1, dlen_ = 9, dtype_ = 1,
93 $ ctxt_ = 2, m_ = 3, n_ = 4, mb_ = 5, nb_ = 6,
94 $ rsrc_ = 7, csrc_ = 8, lld_ = 9 )
95 COMPLEX*16 ZERO
96 parameter( zero = ( 0.0d+0, 0.0d+0 ) )
97
98
99 INTEGER I, IACOL, IAROW, ICTXT, IHLP, II, IOFF, IPT,
100 $ IPV, IPW, IV, J, JB, JJ, JL, K, MYCOL, MYROW,
101 $ NB, NPCOL, NPROW
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104 INTEGER DESCV( DLEN_ )
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107 INTEGER INDXG2P, NUMROC
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121 ictxt = desca( ctxt_ )
122 CALL blacs_gridinfo( ictxt, nprow, npcol, myrow, mycol )
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126 IF( ihi-ilo.LE.0 )
127 $ RETURN
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129 nb = desca( mb_ )
130 ioff = mod( ia+ilo-2, nb )
131 CALL infog2l( ia+ilo-1, ja+ilo-1, desca, nprow, npcol, myrow,
132 $ mycol, ii, jj, iarow, iacol )
133 ihlp =
numroc( ihi-ilo+ioff+1, nb, myrow, iarow, nprow )
134
135 ipt = 1
136 ipv = ipt + nb * nb
137 ipw = ipv + ihlp * nb
138 jl =
max( ( ( ja+ihi-2 ) / nb ) * nb + 1, ja + ilo - 1 )
139 CALL descset( descv, ihi-ilo+ioff+1, nb, nb, nb, iarow,
140 $
indxg2p( jl, desca( nb_ ), mycol, desca( csrc_ ),
141 $ npcol ), ictxt,
max( 1, ihlp ) )
142
143 DO 10 j = jl, ilo+ja+nb-ioff-1, -nb
144 jb =
min( ja+ihi-j-1, nb )
145 i = ia + j - ja
146 k = i - ia + 1
147 iv = k - ilo + ioff + 1
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149
150
151 CALL pzlarft(
'Forward',
'Columnwise', ihi-k, jb, a, i+1, j,
152 $ desca, tau, work( ipt ), work( ipw ) )
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154
155
156 CALL pzlacpy(
'All', ihi-k, jb, a, i+1, j, desca, work( ipv ),
157 $ iv+1, 1, descv )
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159
160
161 CALL pzlaset(
'Lower', ihi-k-1, jb, zero, zero, a, i+2, j,
162 $ desca )
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164
165
166 CALL pzlarfb(
'Left',
'No transpose',
'Forward',
'Columnwise',
167 $ ihi-k, n-k+1, jb, work( ipv ), iv+1, 1, descv,
168 $ work( ipt ), a, i+1, j, desca, work( ipw ) )
169
170
171
172 CALL pzlarfb(
'Right',
'Conjugate transpose',
'Forward',
173 $ 'Columnwise', ihi, ihi-k, jb, work( ipv ), iv+1,
174 $ 1, descv, work( ipt ), a, ia, j+1, desca,
175 $ work( ipw ) )
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177 descv( csrc_ ) = mod( descv( csrc_ ) + npcol - 1, npcol )
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179 10 CONTINUE
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183 iv = ioff + 1
184 i = ia + ilo - 1
185 j = ja + ilo - 1
186 jb =
min( nb-ioff, ja+ihi-j-1 )
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188
189
190 CALL pzlarft(
'Forward',
'Columnwise', ihi-ilo, jb, a, i+1, j,
191 $ desca, tau, work( ipt ), work( ipw ) )
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193
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195 CALL pzlacpy(
'All', ihi-ilo, jb, a, i+1, j, desca, work( ipv ),
196 $ iv+1, 1, descv )
197
198
199
200 IF( ihi-ilo.GT.0 )
201 $
CALL pzlaset(
'Lower', ihi-ilo-1, jb, zero, zero, a, i+2, j,
202 $ desca )
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204
205
206 CALL pzlarfb(
'Left',
'No transpose',
'Forward',
'Columnwise',
207 $ ihi-ilo, n-ilo+1, jb, work( ipv ), iv+1, 1, descv,
208 $ work( ipt ), a, i+1, j, desca, work( ipw ) )
209
210
211
212 CALL pzlarfb(
'Right',
'Conjugate transpose',
'Forward',
213 $ 'Columnwise', ihi, ihi-ilo, jb, work( ipv ), iv+1,
214 $ 1, descv, work( ipt ), a, ia, j+1, desca,
215 $ work( ipw ) )
216
217 RETURN
218
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220
subroutine descset(desc, m, n, mb, nb, irsrc, icsrc, ictxt, lld)
integer function indxg2p(indxglob, nb, iproc, isrcproc, nprocs)
subroutine infog2l(grindx, gcindx, desc, nprow, npcol, myrow, mycol, lrindx, lcindx, rsrc, csrc)
integer function numroc(n, nb, iproc, isrcproc, nprocs)
subroutine pzlaset(uplo, m, n, alpha, beta, a, ia, ja, desca)
subroutine pzlacpy(uplo, m, n, a, ia, ja, desca, b, ib, jb, descb)
subroutine pzlarfb(side, trans, direct, storev, m, n, k, v, iv, jv, descv, t, c, ic, jc, descc, work)
subroutine pzlarft(direct, storev, n, k, v, iv, jv, descv, tau, t, work)