663 lines
18 KiB
C
663 lines
18 KiB
C
/* -- translated by f2c (version 20100827).
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You must link the resulting object file with libf2c:
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on Microsoft Windows system, link with libf2c.lib;
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on Linux or Unix systems, link with .../path/to/libf2c.a -lm
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or, if you install libf2c.a in a standard place, with -lf2c -lm
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-- in that order, at the end of the command line, as in
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cc *.o -lf2c -lm
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Source for libf2c is in /netlib/f2c/libf2c.zip, e.g.,
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http://www.netlib.org/f2c/libf2c.zip
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*/
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#include "f2c.h"
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/* Table of constant values */
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static doublecomplex c_b1 = {1.,0.};
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static int c__1 = 1;
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/** ZHETRF_ROOK_REC2 computes a partial factorization of a complex Hermitian indefinite matrix using the boun ded Bunch-Kaufman ("rook") diagonal pivoting method
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*
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* This routine is a minor modification of LAPACK's zlahef_rook.
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* It serves as an unblocked kernel in the recursive algorithms.
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* The blocked BLAS Level 3 updates were removed and moved to the
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* recursive algorithm.
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* */
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/* Subroutine */ void RELAPACK_zhetrf_rook_rec2(char *uplo, int *n,
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int *nb, int *kb, doublecomplex *a, int *lda, int *
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ipiv, doublecomplex *w, int *ldw, int *info, ftnlen uplo_len)
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{
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/* System generated locals */
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int a_dim1, a_offset, w_dim1, w_offset, i__1, i__2, i__3, i__4;
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double d__1, d__2;
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doublecomplex z__1, z__2, z__3, z__4, z__5;
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/* Builtin functions */
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double sqrt(double), d_imag(doublecomplex *);
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void d_cnjg(doublecomplex *, doublecomplex *), z_div(doublecomplex *,
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doublecomplex *, doublecomplex *);
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/* Local variables */
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static int j, k, p;
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static double t, r1;
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static doublecomplex d11, d21, d22;
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static int ii, jj, kk, kp, kw, jp1, jp2, kkw;
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static logical done;
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static int imax, jmax;
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static double alpha;
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extern logical lsame_(char *, char *, ftnlen, ftnlen);
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static double dtemp, sfmin;
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static int itemp, kstep;
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extern /* Subroutine */ int zgemv_(char *, int *, int *,
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doublecomplex *, doublecomplex *, int *, doublecomplex *,
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int *, doublecomplex *, doublecomplex *, int *, ftnlen),
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zcopy_(int *, doublecomplex *, int *, doublecomplex *,
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int *), zswap_(int *, doublecomplex *, int *,
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doublecomplex *, int *);
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extern double dlamch_(char *, ftnlen);
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static double absakk;
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extern /* Subroutine */ int zdscal_(int *, double *,
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doublecomplex *, int *);
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static double colmax;
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extern /* Subroutine */ int zlacgv_(int *, doublecomplex *, int *)
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;
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extern int izamax_(int *, doublecomplex *, int *);
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static double rowmax;
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/* Parameter adjustments */
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a_dim1 = *lda;
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a_offset = 1 + a_dim1;
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a -= a_offset;
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--ipiv;
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w_dim1 = *ldw;
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w_offset = 1 + w_dim1;
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w -= w_offset;
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/* Function Body */
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*info = 0;
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alpha = (sqrt(17.) + 1.) / 8.;
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sfmin = dlamch_("S", (ftnlen)1);
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if (lsame_(uplo, "U", (ftnlen)1, (ftnlen)1)) {
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k = *n;
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L10:
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kw = *nb + k - *n;
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if ((k <= *n - *nb + 1 && *nb < *n) || k < 1) {
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goto L30;
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}
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kstep = 1;
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p = k;
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if (k > 1) {
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i__1 = k - 1;
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zcopy_(&i__1, &a[k * a_dim1 + 1], &c__1, &w[kw * w_dim1 + 1], &
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c__1);
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}
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i__1 = k + kw * w_dim1;
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i__2 = k + k * a_dim1;
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d__1 = a[i__2].r;
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w[i__1].r = d__1, w[i__1].i = 0.;
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if (k < *n) {
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i__1 = *n - k;
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z__1.r = -1., z__1.i = -0.;
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zgemv_("No transpose", &k, &i__1, &z__1, &a[(k + 1) * a_dim1 + 1],
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lda, &w[k + (kw + 1) * w_dim1], ldw, &c_b1, &w[kw *
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w_dim1 + 1], &c__1, (ftnlen)12);
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i__1 = k + kw * w_dim1;
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i__2 = k + kw * w_dim1;
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d__1 = w[i__2].r;
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w[i__1].r = d__1, w[i__1].i = 0.;
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}
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i__1 = k + kw * w_dim1;
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absakk = (d__1 = w[i__1].r, abs(d__1));
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if (k > 1) {
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i__1 = k - 1;
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imax = izamax_(&i__1, &w[kw * w_dim1 + 1], &c__1);
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i__1 = imax + kw * w_dim1;
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colmax = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&w[imax +
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kw * w_dim1]), abs(d__2));
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} else {
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colmax = 0.;
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}
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if (max(absakk,colmax) == 0.) {
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if (*info == 0) {
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*info = k;
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}
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kp = k;
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i__1 = k + k * a_dim1;
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i__2 = k + kw * w_dim1;
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d__1 = w[i__2].r;
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a[i__1].r = d__1, a[i__1].i = 0.;
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if (k > 1) {
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i__1 = k - 1;
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zcopy_(&i__1, &w[kw * w_dim1 + 1], &c__1, &a[k * a_dim1 + 1],
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&c__1);
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}
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} else {
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if (! (absakk < alpha * colmax)) {
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kp = k;
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} else {
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done = FALSE_;
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L12:
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if (imax > 1) {
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i__1 = imax - 1;
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zcopy_(&i__1, &a[imax * a_dim1 + 1], &c__1, &w[(kw - 1) *
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w_dim1 + 1], &c__1);
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}
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i__1 = imax + (kw - 1) * w_dim1;
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i__2 = imax + imax * a_dim1;
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d__1 = a[i__2].r;
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w[i__1].r = d__1, w[i__1].i = 0.;
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i__1 = k - imax;
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zcopy_(&i__1, &a[imax + (imax + 1) * a_dim1], lda, &w[imax +
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1 + (kw - 1) * w_dim1], &c__1);
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i__1 = k - imax;
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zlacgv_(&i__1, &w[imax + 1 + (kw - 1) * w_dim1], &c__1);
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if (k < *n) {
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i__1 = *n - k;
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z__1.r = -1., z__1.i = -0.;
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zgemv_("No transpose", &k, &i__1, &z__1, &a[(k + 1) *
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a_dim1 + 1], lda, &w[imax + (kw + 1) * w_dim1],
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ldw, &c_b1, &w[(kw - 1) * w_dim1 + 1], &c__1, (
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ftnlen)12);
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i__1 = imax + (kw - 1) * w_dim1;
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i__2 = imax + (kw - 1) * w_dim1;
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d__1 = w[i__2].r;
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w[i__1].r = d__1, w[i__1].i = 0.;
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}
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if (imax != k) {
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i__1 = k - imax;
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jmax = imax + izamax_(&i__1, &w[imax + 1 + (kw - 1) *
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w_dim1], &c__1);
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i__1 = jmax + (kw - 1) * w_dim1;
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rowmax = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&
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w[jmax + (kw - 1) * w_dim1]), abs(d__2));
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} else {
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rowmax = 0.;
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}
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if (imax > 1) {
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i__1 = imax - 1;
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itemp = izamax_(&i__1, &w[(kw - 1) * w_dim1 + 1], &c__1);
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i__1 = itemp + (kw - 1) * w_dim1;
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dtemp = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&w[
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itemp + (kw - 1) * w_dim1]), abs(d__2));
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if (dtemp > rowmax) {
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rowmax = dtemp;
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jmax = itemp;
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}
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}
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i__1 = imax + (kw - 1) * w_dim1;
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if (! ((d__1 = w[i__1].r, abs(d__1)) < alpha * rowmax)) {
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kp = imax;
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zcopy_(&k, &w[(kw - 1) * w_dim1 + 1], &c__1, &w[kw *
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w_dim1 + 1], &c__1);
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done = TRUE_;
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} else if (p == jmax || rowmax <= colmax) {
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kp = imax;
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kstep = 2;
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done = TRUE_;
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} else {
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p = imax;
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colmax = rowmax;
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imax = jmax;
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zcopy_(&k, &w[(kw - 1) * w_dim1 + 1], &c__1, &w[kw *
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w_dim1 + 1], &c__1);
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}
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if (! done) {
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goto L12;
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}
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}
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kk = k - kstep + 1;
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kkw = *nb + kk - *n;
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if (kstep == 2 && p != k) {
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i__1 = p + p * a_dim1;
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i__2 = k + k * a_dim1;
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d__1 = a[i__2].r;
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a[i__1].r = d__1, a[i__1].i = 0.;
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i__1 = k - 1 - p;
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zcopy_(&i__1, &a[p + 1 + k * a_dim1], &c__1, &a[p + (p + 1) *
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a_dim1], lda);
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i__1 = k - 1 - p;
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zlacgv_(&i__1, &a[p + (p + 1) * a_dim1], lda);
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if (p > 1) {
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i__1 = p - 1;
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zcopy_(&i__1, &a[k * a_dim1 + 1], &c__1, &a[p * a_dim1 +
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1], &c__1);
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}
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if (k < *n) {
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i__1 = *n - k;
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zswap_(&i__1, &a[k + (k + 1) * a_dim1], lda, &a[p + (k +
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1) * a_dim1], lda);
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}
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i__1 = *n - kk + 1;
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zswap_(&i__1, &w[k + kkw * w_dim1], ldw, &w[p + kkw * w_dim1],
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ldw);
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}
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if (kp != kk) {
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i__1 = kp + kp * a_dim1;
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i__2 = kk + kk * a_dim1;
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d__1 = a[i__2].r;
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a[i__1].r = d__1, a[i__1].i = 0.;
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i__1 = kk - 1 - kp;
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zcopy_(&i__1, &a[kp + 1 + kk * a_dim1], &c__1, &a[kp + (kp +
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1) * a_dim1], lda);
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i__1 = kk - 1 - kp;
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zlacgv_(&i__1, &a[kp + (kp + 1) * a_dim1], lda);
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if (kp > 1) {
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i__1 = kp - 1;
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zcopy_(&i__1, &a[kk * a_dim1 + 1], &c__1, &a[kp * a_dim1
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+ 1], &c__1);
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}
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if (k < *n) {
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i__1 = *n - k;
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zswap_(&i__1, &a[kk + (k + 1) * a_dim1], lda, &a[kp + (k
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+ 1) * a_dim1], lda);
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}
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i__1 = *n - kk + 1;
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zswap_(&i__1, &w[kk + kkw * w_dim1], ldw, &w[kp + kkw *
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w_dim1], ldw);
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}
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if (kstep == 1) {
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zcopy_(&k, &w[kw * w_dim1 + 1], &c__1, &a[k * a_dim1 + 1], &
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c__1);
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if (k > 1) {
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i__1 = k + k * a_dim1;
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t = a[i__1].r;
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if (abs(t) >= sfmin) {
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r1 = 1. / t;
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i__1 = k - 1;
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zdscal_(&i__1, &r1, &a[k * a_dim1 + 1], &c__1);
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} else {
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i__1 = k - 1;
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for (ii = 1; ii <= i__1; ++ii) {
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i__2 = ii + k * a_dim1;
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i__3 = ii + k * a_dim1;
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z__1.r = a[i__3].r / t, z__1.i = a[i__3].i / t;
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a[i__2].r = z__1.r, a[i__2].i = z__1.i;
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/* L14: */
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}
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}
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i__1 = k - 1;
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zlacgv_(&i__1, &w[kw * w_dim1 + 1], &c__1);
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}
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} else {
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if (k > 2) {
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i__1 = k - 1 + kw * w_dim1;
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d21.r = w[i__1].r, d21.i = w[i__1].i;
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d_cnjg(&z__2, &d21);
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z_div(&z__1, &w[k + kw * w_dim1], &z__2);
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d11.r = z__1.r, d11.i = z__1.i;
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z_div(&z__1, &w[k - 1 + (kw - 1) * w_dim1], &d21);
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d22.r = z__1.r, d22.i = z__1.i;
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z__1.r = d11.r * d22.r - d11.i * d22.i, z__1.i = d11.r *
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d22.i + d11.i * d22.r;
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t = 1. / (z__1.r - 1.);
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i__1 = k - 2;
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for (j = 1; j <= i__1; ++j) {
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i__2 = j + (k - 1) * a_dim1;
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i__3 = j + (kw - 1) * w_dim1;
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z__4.r = d11.r * w[i__3].r - d11.i * w[i__3].i,
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z__4.i = d11.r * w[i__3].i + d11.i * w[i__3]
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.r;
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i__4 = j + kw * w_dim1;
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z__3.r = z__4.r - w[i__4].r, z__3.i = z__4.i - w[i__4]
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.i;
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z_div(&z__2, &z__3, &d21);
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z__1.r = t * z__2.r, z__1.i = t * z__2.i;
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a[i__2].r = z__1.r, a[i__2].i = z__1.i;
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i__2 = j + k * a_dim1;
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i__3 = j + kw * w_dim1;
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z__4.r = d22.r * w[i__3].r - d22.i * w[i__3].i,
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z__4.i = d22.r * w[i__3].i + d22.i * w[i__3]
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.r;
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i__4 = j + (kw - 1) * w_dim1;
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z__3.r = z__4.r - w[i__4].r, z__3.i = z__4.i - w[i__4]
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.i;
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d_cnjg(&z__5, &d21);
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z_div(&z__2, &z__3, &z__5);
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z__1.r = t * z__2.r, z__1.i = t * z__2.i;
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a[i__2].r = z__1.r, a[i__2].i = z__1.i;
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/* L20: */
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}
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}
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i__1 = k - 1 + (k - 1) * a_dim1;
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i__2 = k - 1 + (kw - 1) * w_dim1;
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a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
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i__1 = k - 1 + k * a_dim1;
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i__2 = k - 1 + kw * w_dim1;
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a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
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i__1 = k + k * a_dim1;
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i__2 = k + kw * w_dim1;
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a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
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i__1 = k - 1;
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zlacgv_(&i__1, &w[kw * w_dim1 + 1], &c__1);
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i__1 = k - 2;
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zlacgv_(&i__1, &w[(kw - 1) * w_dim1 + 1], &c__1);
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}
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}
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if (kstep == 1) {
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ipiv[k] = kp;
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} else {
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ipiv[k] = -p;
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ipiv[k - 1] = -kp;
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}
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k -= kstep;
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goto L10;
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L30:
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j = k + 1;
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L60:
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kstep = 1;
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jp1 = 1;
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jj = j;
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jp2 = ipiv[j];
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if (jp2 < 0) {
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jp2 = -jp2;
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++j;
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jp1 = -ipiv[j];
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kstep = 2;
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}
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++j;
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if (jp2 != jj && j <= *n) {
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i__1 = *n - j + 1;
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zswap_(&i__1, &a[jp2 + j * a_dim1], lda, &a[jj + j * a_dim1], lda)
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;
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}
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++jj;
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if (kstep == 2 && jp1 != jj && j <= *n) {
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i__1 = *n - j + 1;
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zswap_(&i__1, &a[jp1 + j * a_dim1], lda, &a[jj + j * a_dim1], lda)
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;
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}
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if (j < *n) {
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goto L60;
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}
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*kb = *n - k;
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} else {
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k = 1;
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L70:
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if ((k >= *nb && *nb < *n) || k > *n) {
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goto L90;
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}
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kstep = 1;
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p = k;
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i__1 = k + k * w_dim1;
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i__2 = k + k * a_dim1;
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d__1 = a[i__2].r;
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w[i__1].r = d__1, w[i__1].i = 0.;
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if (k < *n) {
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i__1 = *n - k;
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zcopy_(&i__1, &a[k + 1 + k * a_dim1], &c__1, &w[k + 1 + k *
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w_dim1], &c__1);
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}
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if (k > 1) {
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i__1 = *n - k + 1;
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i__2 = k - 1;
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z__1.r = -1., z__1.i = -0.;
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zgemv_("No transpose", &i__1, &i__2, &z__1, &a[k + a_dim1], lda, &
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|
w[k + w_dim1], ldw, &c_b1, &w[k + k * w_dim1], &c__1, (
|
|
ftnlen)12);
|
|
i__1 = k + k * w_dim1;
|
|
i__2 = k + k * w_dim1;
|
|
d__1 = w[i__2].r;
|
|
w[i__1].r = d__1, w[i__1].i = 0.;
|
|
}
|
|
i__1 = k + k * w_dim1;
|
|
absakk = (d__1 = w[i__1].r, abs(d__1));
|
|
if (k < *n) {
|
|
i__1 = *n - k;
|
|
imax = k + izamax_(&i__1, &w[k + 1 + k * w_dim1], &c__1);
|
|
i__1 = imax + k * w_dim1;
|
|
colmax = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&w[imax +
|
|
k * w_dim1]), abs(d__2));
|
|
} else {
|
|
colmax = 0.;
|
|
}
|
|
if (max(absakk,colmax) == 0.) {
|
|
if (*info == 0) {
|
|
*info = k;
|
|
}
|
|
kp = k;
|
|
i__1 = k + k * a_dim1;
|
|
i__2 = k + k * w_dim1;
|
|
d__1 = w[i__2].r;
|
|
a[i__1].r = d__1, a[i__1].i = 0.;
|
|
if (k < *n) {
|
|
i__1 = *n - k;
|
|
zcopy_(&i__1, &w[k + 1 + k * w_dim1], &c__1, &a[k + 1 + k *
|
|
a_dim1], &c__1);
|
|
}
|
|
} else {
|
|
if (! (absakk < alpha * colmax)) {
|
|
kp = k;
|
|
} else {
|
|
done = FALSE_;
|
|
L72:
|
|
i__1 = imax - k;
|
|
zcopy_(&i__1, &a[imax + k * a_dim1], lda, &w[k + (k + 1) *
|
|
w_dim1], &c__1);
|
|
i__1 = imax - k;
|
|
zlacgv_(&i__1, &w[k + (k + 1) * w_dim1], &c__1);
|
|
i__1 = imax + (k + 1) * w_dim1;
|
|
i__2 = imax + imax * a_dim1;
|
|
d__1 = a[i__2].r;
|
|
w[i__1].r = d__1, w[i__1].i = 0.;
|
|
if (imax < *n) {
|
|
i__1 = *n - imax;
|
|
zcopy_(&i__1, &a[imax + 1 + imax * a_dim1], &c__1, &w[
|
|
imax + 1 + (k + 1) * w_dim1], &c__1);
|
|
}
|
|
if (k > 1) {
|
|
i__1 = *n - k + 1;
|
|
i__2 = k - 1;
|
|
z__1.r = -1., z__1.i = -0.;
|
|
zgemv_("No transpose", &i__1, &i__2, &z__1, &a[k + a_dim1]
|
|
, lda, &w[imax + w_dim1], ldw, &c_b1, &w[k + (k +
|
|
1) * w_dim1], &c__1, (ftnlen)12);
|
|
i__1 = imax + (k + 1) * w_dim1;
|
|
i__2 = imax + (k + 1) * w_dim1;
|
|
d__1 = w[i__2].r;
|
|
w[i__1].r = d__1, w[i__1].i = 0.;
|
|
}
|
|
if (imax != k) {
|
|
i__1 = imax - k;
|
|
jmax = k - 1 + izamax_(&i__1, &w[k + (k + 1) * w_dim1], &
|
|
c__1);
|
|
i__1 = jmax + (k + 1) * w_dim1;
|
|
rowmax = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&
|
|
w[jmax + (k + 1) * w_dim1]), abs(d__2));
|
|
} else {
|
|
rowmax = 0.;
|
|
}
|
|
if (imax < *n) {
|
|
i__1 = *n - imax;
|
|
itemp = imax + izamax_(&i__1, &w[imax + 1 + (k + 1) *
|
|
w_dim1], &c__1);
|
|
i__1 = itemp + (k + 1) * w_dim1;
|
|
dtemp = (d__1 = w[i__1].r, abs(d__1)) + (d__2 = d_imag(&w[
|
|
itemp + (k + 1) * w_dim1]), abs(d__2));
|
|
if (dtemp > rowmax) {
|
|
rowmax = dtemp;
|
|
jmax = itemp;
|
|
}
|
|
}
|
|
i__1 = imax + (k + 1) * w_dim1;
|
|
if (! ((d__1 = w[i__1].r, abs(d__1)) < alpha * rowmax)) {
|
|
kp = imax;
|
|
i__1 = *n - k + 1;
|
|
zcopy_(&i__1, &w[k + (k + 1) * w_dim1], &c__1, &w[k + k *
|
|
w_dim1], &c__1);
|
|
done = TRUE_;
|
|
} else if (p == jmax || rowmax <= colmax) {
|
|
kp = imax;
|
|
kstep = 2;
|
|
done = TRUE_;
|
|
} else {
|
|
p = imax;
|
|
colmax = rowmax;
|
|
imax = jmax;
|
|
i__1 = *n - k + 1;
|
|
zcopy_(&i__1, &w[k + (k + 1) * w_dim1], &c__1, &w[k + k *
|
|
w_dim1], &c__1);
|
|
}
|
|
if (! done) {
|
|
goto L72;
|
|
}
|
|
}
|
|
kk = k + kstep - 1;
|
|
if (kstep == 2 && p != k) {
|
|
i__1 = p + p * a_dim1;
|
|
i__2 = k + k * a_dim1;
|
|
d__1 = a[i__2].r;
|
|
a[i__1].r = d__1, a[i__1].i = 0.;
|
|
i__1 = p - k - 1;
|
|
zcopy_(&i__1, &a[k + 1 + k * a_dim1], &c__1, &a[p + (k + 1) *
|
|
a_dim1], lda);
|
|
i__1 = p - k - 1;
|
|
zlacgv_(&i__1, &a[p + (k + 1) * a_dim1], lda);
|
|
if (p < *n) {
|
|
i__1 = *n - p;
|
|
zcopy_(&i__1, &a[p + 1 + k * a_dim1], &c__1, &a[p + 1 + p
|
|
* a_dim1], &c__1);
|
|
}
|
|
if (k > 1) {
|
|
i__1 = k - 1;
|
|
zswap_(&i__1, &a[k + a_dim1], lda, &a[p + a_dim1], lda);
|
|
}
|
|
zswap_(&kk, &w[k + w_dim1], ldw, &w[p + w_dim1], ldw);
|
|
}
|
|
if (kp != kk) {
|
|
i__1 = kp + kp * a_dim1;
|
|
i__2 = kk + kk * a_dim1;
|
|
d__1 = a[i__2].r;
|
|
a[i__1].r = d__1, a[i__1].i = 0.;
|
|
i__1 = kp - kk - 1;
|
|
zcopy_(&i__1, &a[kk + 1 + kk * a_dim1], &c__1, &a[kp + (kk +
|
|
1) * a_dim1], lda);
|
|
i__1 = kp - kk - 1;
|
|
zlacgv_(&i__1, &a[kp + (kk + 1) * a_dim1], lda);
|
|
if (kp < *n) {
|
|
i__1 = *n - kp;
|
|
zcopy_(&i__1, &a[kp + 1 + kk * a_dim1], &c__1, &a[kp + 1
|
|
+ kp * a_dim1], &c__1);
|
|
}
|
|
if (k > 1) {
|
|
i__1 = k - 1;
|
|
zswap_(&i__1, &a[kk + a_dim1], lda, &a[kp + a_dim1], lda);
|
|
}
|
|
zswap_(&kk, &w[kk + w_dim1], ldw, &w[kp + w_dim1], ldw);
|
|
}
|
|
if (kstep == 1) {
|
|
i__1 = *n - k + 1;
|
|
zcopy_(&i__1, &w[k + k * w_dim1], &c__1, &a[k + k * a_dim1], &
|
|
c__1);
|
|
if (k < *n) {
|
|
i__1 = k + k * a_dim1;
|
|
t = a[i__1].r;
|
|
if (abs(t) >= sfmin) {
|
|
r1 = 1. / t;
|
|
i__1 = *n - k;
|
|
zdscal_(&i__1, &r1, &a[k + 1 + k * a_dim1], &c__1);
|
|
} else {
|
|
i__1 = *n;
|
|
for (ii = k + 1; ii <= i__1; ++ii) {
|
|
i__2 = ii + k * a_dim1;
|
|
i__3 = ii + k * a_dim1;
|
|
z__1.r = a[i__3].r / t, z__1.i = a[i__3].i / t;
|
|
a[i__2].r = z__1.r, a[i__2].i = z__1.i;
|
|
/* L74: */
|
|
}
|
|
}
|
|
i__1 = *n - k;
|
|
zlacgv_(&i__1, &w[k + 1 + k * w_dim1], &c__1);
|
|
}
|
|
} else {
|
|
if (k < *n - 1) {
|
|
i__1 = k + 1 + k * w_dim1;
|
|
d21.r = w[i__1].r, d21.i = w[i__1].i;
|
|
z_div(&z__1, &w[k + 1 + (k + 1) * w_dim1], &d21);
|
|
d11.r = z__1.r, d11.i = z__1.i;
|
|
d_cnjg(&z__2, &d21);
|
|
z_div(&z__1, &w[k + k * w_dim1], &z__2);
|
|
d22.r = z__1.r, d22.i = z__1.i;
|
|
z__1.r = d11.r * d22.r - d11.i * d22.i, z__1.i = d11.r *
|
|
d22.i + d11.i * d22.r;
|
|
t = 1. / (z__1.r - 1.);
|
|
i__1 = *n;
|
|
for (j = k + 2; j <= i__1; ++j) {
|
|
i__2 = j + k * a_dim1;
|
|
i__3 = j + k * w_dim1;
|
|
z__4.r = d11.r * w[i__3].r - d11.i * w[i__3].i,
|
|
z__4.i = d11.r * w[i__3].i + d11.i * w[i__3]
|
|
.r;
|
|
i__4 = j + (k + 1) * w_dim1;
|
|
z__3.r = z__4.r - w[i__4].r, z__3.i = z__4.i - w[i__4]
|
|
.i;
|
|
d_cnjg(&z__5, &d21);
|
|
z_div(&z__2, &z__3, &z__5);
|
|
z__1.r = t * z__2.r, z__1.i = t * z__2.i;
|
|
a[i__2].r = z__1.r, a[i__2].i = z__1.i;
|
|
i__2 = j + (k + 1) * a_dim1;
|
|
i__3 = j + (k + 1) * w_dim1;
|
|
z__4.r = d22.r * w[i__3].r - d22.i * w[i__3].i,
|
|
z__4.i = d22.r * w[i__3].i + d22.i * w[i__3]
|
|
.r;
|
|
i__4 = j + k * w_dim1;
|
|
z__3.r = z__4.r - w[i__4].r, z__3.i = z__4.i - w[i__4]
|
|
.i;
|
|
z_div(&z__2, &z__3, &d21);
|
|
z__1.r = t * z__2.r, z__1.i = t * z__2.i;
|
|
a[i__2].r = z__1.r, a[i__2].i = z__1.i;
|
|
/* L80: */
|
|
}
|
|
}
|
|
i__1 = k + k * a_dim1;
|
|
i__2 = k + k * w_dim1;
|
|
a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
|
|
i__1 = k + 1 + k * a_dim1;
|
|
i__2 = k + 1 + k * w_dim1;
|
|
a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
|
|
i__1 = k + 1 + (k + 1) * a_dim1;
|
|
i__2 = k + 1 + (k + 1) * w_dim1;
|
|
a[i__1].r = w[i__2].r, a[i__1].i = w[i__2].i;
|
|
i__1 = *n - k;
|
|
zlacgv_(&i__1, &w[k + 1 + k * w_dim1], &c__1);
|
|
i__1 = *n - k - 1;
|
|
zlacgv_(&i__1, &w[k + 2 + (k + 1) * w_dim1], &c__1);
|
|
}
|
|
}
|
|
if (kstep == 1) {
|
|
ipiv[k] = kp;
|
|
} else {
|
|
ipiv[k] = -p;
|
|
ipiv[k + 1] = -kp;
|
|
}
|
|
k += kstep;
|
|
goto L70;
|
|
L90:
|
|
j = k - 1;
|
|
L120:
|
|
kstep = 1;
|
|
jp1 = 1;
|
|
jj = j;
|
|
jp2 = ipiv[j];
|
|
if (jp2 < 0) {
|
|
jp2 = -jp2;
|
|
--j;
|
|
jp1 = -ipiv[j];
|
|
kstep = 2;
|
|
}
|
|
--j;
|
|
if (jp2 != jj && j >= 1) {
|
|
zswap_(&j, &a[jp2 + a_dim1], lda, &a[jj + a_dim1], lda);
|
|
}
|
|
--jj;
|
|
if (kstep == 2 && jp1 != jj && j >= 1) {
|
|
zswap_(&j, &a[jp1 + a_dim1], lda, &a[jj + a_dim1], lda);
|
|
}
|
|
if (j > 1) {
|
|
goto L120;
|
|
}
|
|
*kb = k - 1;
|
|
}
|
|
return;
|
|
}
|