qrupdate-ng 1.2.0
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zqrder.f90
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1! Copyright (C) 2008, 2009 VZLU Prague, a.s., Czech Republic, Jaroslav Hajek <highegg@gmail.com>
2! Copyright (C) 2026 Martin Köhler <koehlerm(AT)mpi-magdeburg.mpg.de>
3!
4! This file is part of qrupdate-ng.
5!
6! qrupdate is free software; you can redistribute it and/or modify
7! it under the terms of the GNU General Public License as published by
8! the Free Software Foundation; either version 3 of the License, or
9! (at your option) any later version.
10!
11! This program is distributed in the hope that it will be useful,
12! but WITHOUT ANY WARRANTY; without even the implied warranty of
13! MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14! GNU General Public License for more details.
15!
16! You should have received a copy of the GNU General Public License
17! along with this software; see the file COPYING. If not, see
18! <http://www.gnu.org/licenses/>.
19!
20!> \brief Updates a QR factorization after deleting a row.
21!>
22!> \par Definition:
23! =============
24!> \verbatim
25!> subroutine zqrder(m,n,Q,ldq,R,ldr,j,w,rw)
26!>
27!> .. Scalar Arguments ..
28!> integer m, n, ldq, ldr, j
29!> ..
30!> .. Array Arguments ..
31!> double complex Q(ldq,*)
32!> double complex R(ldr,*)
33!> double complex w(*)
34!> double precision rw(*)
35!> ..
36!> \endverbatim
37!>
38!> \par Purpose:
39! =============
40!> \verbatim
41!>
42!> ZQRDER updates a QR factorization after deleting a row. i.e., given
43!> an m-by-m unitary matrix Q, an m-by-n upper trapezoidal matrix R and
44!> index j in the range 1:m, ZQRDER updates Q ->Q1 and an R ->
45!> R1 so that Q1 is again unitary, R1 upper trapezoidal, and Q1*R1 =
46!> [A(1:j-1,:); A(j+1:m,:)], where A = Q*R. (complex version)
47!> \endverbatim
48!>
49!> \param[in] m
50!> \verbatim
51!> m is INTEGER
52!> The number of rows of the matrix Q. m >= 0.
53!> \endverbatim
54!>
55!> \param[in] n
56!> \verbatim
57!> n is INTEGER
58!> The number of columns of the matrix R. n >= 0.
59!> \endverbatim
60!>
61!> \param[in,out] Q
62!> \verbatim
63!> Q is COMPLEX*16 array, dimension (ldq,*)
64!> On entry, the unitary matrix Q. On exit, the
65!> updated matrix Q1.
66!> \endverbatim
67!>
68!> \param[in] ldq
69!> \verbatim
70!> ldq is INTEGER
71!> The leading dimension of Q. ldq >= m.
72!> \endverbatim
73!>
74!> \param[in,out] R
75!> \verbatim
76!> R is COMPLEX*16 array, dimension (ldr,*)
77!> On entry, the original matrix R. On exit, the
78!> updated matrix R1.
79!> \endverbatim
80!>
81!> \param[in] ldr
82!> \verbatim
83!> ldr is INTEGER
84!> The leading dimension of R. ldr >= m.
85!> \endverbatim
86!>
87!> \param[in] j
88!> \verbatim
89!> j is INTEGER
90!> The position of the deleted row. 1 <= j <= m.
91!> \endverbatim
92!>
93!> \param[out] w
94!> \verbatim
95!> w is COMPLEX*16 array, dimension (*)
96!> A workspace vector of size m.
97!> \endverbatim
98!>
99!> \param[out] rw
100!> \verbatim
101!> rw is DOUBLE PRECISION array, dimension (*)
102!> A real workspace vector of size m.
103!> \endverbatim
104!>
105!> \ingroup qrdecomp
106subroutine zqrder(m,n,Q,ldq,R,ldr,j,w,rw)
107 use iso_fortran_env
109 integer, intent(in) :: m, n, ldq, ldr, j
110 complex(real64), intent(inout) :: Q(ldq,*), R(ldr,*)
111 complex(real64), intent(out) :: w(*)
112 real(real64), intent(out) :: rw(*)
113 external zcopy,zqrtv1,zqrot,zqrqh
114 integer info,i,k
115 ! quick return if possible.
116 if (m == 1) return
117 ! check arguments
118 info = 0
119 if (m < 1) then
120 info = 1
121 else if (j < 1 .or. j > m) then
122 info = 7
123 end if
124 if (info /= 0) then
125 call qrupdate_xerror('ZQRDER',info)
126 return
127 end if
128 ! eliminate Q(j,2:m).
129 do k = 1,m
130 w(k) = conjg(q(j,k))
131 end do
132 call zqrtv1(m,w,rw)
133 ! apply rotations to Q.
134 call zqrot('B',m,m,q,ldq,rw,w(2))
135 ! form Q1.
136 do k = 1,m-1
137 if (j > 1) call zcopy(j-1,q(1,k+1),1,q(1,k),1)
138 if (j < m) call zcopy(m-j,q(j+1,k+1),1,q(j,k),1)
139 end do
140 ! apply rotations to R.
141 call zqrqh(m,n,r,ldr,rw,w(2))
142 ! form R1.
143 do k = 1,n
144 do i = 1,m-1
145 r(i,k) = r(i+1,k)
146 end do
147 end do
148end subroutine
subroutine qrupdate_xerror(srname, info)
Dispatches error reporting to the handler.
subroutine zqrot(dir, m, n, q, ldq, c, s)
Applies a sequence of Givens rotations from the right to a matrix.
Definition zqrot.f90:101
subroutine zqrtv1(n, u, w)
Generates Givens rotations to eliminate all but the first element of a vector.
Definition zqrtv1.f90:75
subroutine zqrqh(m, n, r, ldr, c, s)
Converts an upper trapezoidal matrix to upper Hessenberg form.
Definition zqrqh.f90:86
subroutine zqrder(m, n, q, ldq, r, ldr, j, w, rw)
Updates a QR factorization after deleting a row.
Definition zqrder.f90:107
Module for custom error handling.