200 SUBROUTINE cunbdb2( M, P, Q, X11, LDX11, X21, LDX21, THETA, PHI,
201 $ TAUP1, TAUP2, TAUQ1, WORK, LWORK, INFO )
208 INTEGER INFO, LWORK, M, P, Q, LDX11, LDX21
211 REAL PHI(*), THETA(*)
212 COMPLEX TAUP1(*), TAUP2(*), TAUQ1(*), WORK(*),
213 $ x11(ldx11,*), x21(ldx21,*)
220 parameter( negone = (-1.0e0,0.0e0),
221 $ one = (1.0e0,0.0e0) )
225 INTEGER CHILDINFO, I, ILARF, IORBDB5, LLARF, LORBDB5,
238 INTRINSIC atan2, cos,
max, sin, sqrt
245 lquery = lwork .EQ. -1
249 ELSE IF( p .LT. 0 .OR. p .GT. m-p )
THEN
251 ELSE IF( q .LT. 0 .OR. q .LT. p .OR. m-q .LT. p )
THEN
253 ELSE IF( ldx11 .LT.
max( 1, p ) )
THEN
255 ELSE IF( ldx21 .LT.
max( 1, m-p ) )
THEN
261 IF( info .EQ. 0 )
THEN
263 llarf =
max( p-1, m-p, q-1 )
266 lworkopt =
max( ilarf+llarf-1, iorbdb5+lorbdb5-1 )
269 IF( lwork .LT. lworkmin .AND. .NOT.lquery )
THEN
273 IF( info .NE. 0 )
THEN
274 CALL xerbla(
'CUNBDB2', -info )
276 ELSE IF( lquery )
THEN
285 CALL csrot( q-i+1, x11(i,i), ldx11, x21(i-1,i), ldx21, c,
288 CALL clacgv( q-i+1, x11(i,i), ldx11 )
289 CALL clarfgp( q-i+1, x11(i,i), x11(i,i+1), ldx11, tauq1(i) )
292 CALL clarf(
'R', p-i, q-i+1, x11(i,i), ldx11, tauq1(i),
293 $ x11(i+1,i), ldx11, work(ilarf) )
294 CALL clarf(
'R', m-p-i+1, q-i+1, x11(i,i), ldx11, tauq1(i),
295 $ x21(i,i), ldx21, work(ilarf) )
296 CALL clacgv( q-i+1, x11(i,i), ldx11 )
297 s = sqrt( scnrm2( p-i, x11(i+1,i), 1 )**2
298 $ + scnrm2( m-p-i+1, x21(i,i), 1 )**2 )
299 theta(i) = atan2( s, c )
301 CALL cunbdb5( p-i, m-p-i+1, q-i, x11(i+1,i), 1, x21(i,i), 1,
302 $ x11(i+1,i+1), ldx11, x21(i,i+1), ldx21,
304 CALL cscal( p-i, negone, x11(i+1,i), 1 )
305 CALL clarfgp( m-p-i+1, x21(i,i), x21(i+1,i), 1, taup2(i) )
307 CALL clarfgp( p-i, x11(i+1,i), x11(i+2,i), 1, taup1(i) )
308 phi(i) = atan2( real( x11(i+1,i) ), real( x21(i,i) ) )
312 CALL clarf(
'L', p-i, q-i, x11(i+1,i), 1, conjg(taup1(i)),
313 $ x11(i+1,i+1), ldx11, work(ilarf) )
316 CALL clarf(
'L', m-p-i+1, q-i, x21(i,i), 1, conjg(taup2(i)),
317 $ x21(i,i+1), ldx21, work(ilarf) )
327 $ x21(i,i+1), ldx21, work(ilarf) )