176 SUBROUTINE claqps( M, N, OFFSET, NB, KB, A, LDA, JPVT, TAU, VN1,
177 $ VN2, AUXV, F, LDF )
184 INTEGER KB, LDA, LDF, M, N, NB, OFFSET
188 REAL VN1( * ), VN2( * )
189 COMPLEX A( LDA, * ), AUXV( * ), F( LDF, * ), TAU( * )
197 parameter( zero = 0.0e+0, one = 1.0e+0,
198 $ czero = ( 0.0e+0, 0.0e+0 ),
199 $ cone = ( 1.0e+0, 0.0e+0 ) )
202 INTEGER ITEMP, J, K, LASTRK, LSTICC, PVT, RK
203 REAL TEMP, TEMP2, TOL3Z
210 INTRINSIC abs, conjg,
max,
min, nint, real, sqrt
215 EXTERNAL isamax, scnrm2, slamch
219 lastrk =
min( m, n+offset )
222 tol3z = sqrt(slamch(
'Epsilon'))
227 IF( ( k.LT.nb ) .AND. ( lsticc.EQ.0 ) )
THEN
233 pvt = ( k-1 ) + isamax( n-k+1, vn1( k ), 1 )
235 CALL cswap( m, a( 1, pvt ), 1, a( 1, k ), 1 )
236 CALL cswap( k-1, f( pvt, 1 ), ldf, f( k, 1 ), ldf )
238 jpvt( pvt ) = jpvt( k )
240 vn1( pvt ) = vn1( k )
241 vn2( pvt ) = vn2( k )
249 f( k, j ) = conjg( f( k
251 CALL cgemv(
'No transpose', m-rk+1, k-1, -cone, a( rk, 1 ),
252 $ lda, f( k, 1 ), ldf, cone, a( rk, k ), 1 )
254 f( k, j ) = conjg( f( k, j ) )
261 CALL clarfg( m-rk+1, a( rk, k ), a( rk+1, k ), 1, tau( k ) )
263 CALL clarfg( 1, a( rk, k ), a( rk, k ), 1, tau( k ) )
274 CALL cgemv(
'Conjugate transpose', m-rk+1, n-k, tau( k ),
275 $ a( rk, k+1 ), lda, a( rk, k ), 1, czero,
290 CALL cgemv(
'Conjugate transpose', m-rk+1, k-1, -tau( k ),
291 $ a( rk, 1 ), lda, a( rk, k ), 1, czero,
294 CALL cgemv(
'No transpose', n, k-1, cone, f( 1, 1 ), ldf,
295 $ auxv( 1 ), 1, cone, f( 1, k ), 1 )
302 CALL cgemm(
'No transpose',
'Conjugate transpose', 1, n-k,
303 $ k, -cone, a( rk, 1 ), lda, f( k+1, 1 ), ldf,
309 IF( rk.LT.lastrk )
THEN
311 IF( vn1( j ).NE.zero )
THEN
317 temp =
max( zero, ( one+temp )*( one-temp ) )
318 temp2 = temp*( vn1( j ) / vn2( j ) )**2
319 IF( temp2 .LE. tol3z )
THEN
323 vn1( j ) = vn1( j )*sqrt( temp )
342 IF( kb.LT.
min( n, m-offset ) )
THEN
343 CALL cgemm(
'No transpose',
'Conjugate transpose', m-rk, n-kb,
344 $ kb, -cone, a( rk+1, 1 ), lda, f( kb+1, 1 ), ldf,
345 $ cone, a( rk+1, kb+1 ), lda )
351 IF( lsticc.GT.0 )
THEN
352 itemp = nint( vn2( lsticc ) )
353 vn1( lsticc ) = scnrm2( m-rk, a( rk+1, lsticc ), 1 )
359 vn2( lsticc ) = vn1( lsticc )
subroutine claqps(m, n, offset, nb, kb, a, lda, jpvt, tau, vn1, vn2, auxv, f, ldf)
CLAQPS computes a step of QR factorization with column pivoting of a real m-by-n matrix A by using BL...