138 DOUBLE PRECISION FUNCTION dlantb( NORM, UPLO, DIAG, N, K, AB,
147 CHARACTER diag, norm, uplo
151 DOUBLE PRECISION ab( ldab, * ), work( * )
157 DOUBLE PRECISION one, zero
158 parameter( one = 1.0d+0, zero = 0.0d+0 )
163 DOUBLE PRECISION sum, value
166 DOUBLE PRECISION ssq( 2 ), colssq( 2 )
176 INTRINSIC abs, max, min, sqrt
182 ELSE IF(
lsame( norm,
'M' ) )
THEN
186 IF(
lsame( diag,
'U' ) )
THEN
188 IF(
lsame( uplo,
'U' ) )
THEN
190 DO 10 i = max( k+2-j, 1 ), k
191 sum = abs( ab( i, j ) )
192 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
197 DO 30 i = 2, min( n+1-j, k+1 )
198 sum = abs( ab( i, j ) )
199 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
205 IF(
lsame( uplo,
'U' ) )
THEN
207 DO 50 i = max( k+2-j, 1 ), k + 1
208 sum = abs( ab( i, j ) )
209 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
214 DO 70 i = 1, min( n+1-j, k+1 )
215 sum = abs( ab( i, j ) )
216 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
221 ELSE IF( (
lsame( norm,
'O' ) ) .OR. ( norm.EQ.
'1' ) )
THEN
226 udiag =
lsame( diag,
'U' )
227 IF(
lsame( uplo,
'U' ) )
THEN
231 DO 90 i = max( k+2-j, 1 ), k
232 sum = sum + abs( ab( i, j ) )
236 DO 100 i = max( k+2-j, 1 ), k + 1
237 sum = sum + abs( ab( i, j ) )
240 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
246 DO 120 i = 2, min( n+1-j, k+1 )
247 sum = sum + abs( ab( i, j ) )
251 DO 130 i = 1, min( n+1-j, k+1 )
252 sum = sum + abs( ab( i, j ) )
255 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
258 ELSE IF(
lsame( norm,
'I' ) )
THEN
263 IF(
lsame( uplo,
'U' ) )
THEN
264 IF(
lsame( diag,
'U' ) )
THEN
270 DO 160 i = max( 1, j-k ), j - 1
271 work( i ) = work( i ) + abs( ab( l+i, j ) )
280 DO 190 i = max( 1, j-k ), j
281 work( i ) = work( i ) + abs( ab( l+i, j ) )
286 IF(
lsame( diag,
'U' ) )
THEN
292 DO 220 i = j + 1, min( n, j+k )
293 work( i ) = work( i ) + abs( ab( l+i, j ) )
302 DO 250 i = j, min( n, j+k )
303 work( i ) = work( i ) + abs( ab( l+i, j ) )
310 IF(
VALUE .LT. sum .OR.
disnan( sum ) )
VALUE = sum
312 ELSE IF( (
lsame( norm,
'F' ) ) .OR. (
lsame( norm,
'E' ) ) )
THEN
319 IF(
lsame( uplo,
'U' ) )
THEN
320 IF(
lsame( diag,
'U' ) )
THEN
327 CALL dlassq( min( j-1, k ),
328 $ ab( max( k+2-j, 1 ), j ), 1,
329 $ colssq( 1 ), colssq( 2 ) )
339 CALL dlassq( min( j, k+1 ), ab( max( k+2-j, 1 ), j ),
340 $ 1, colssq( 1 ), colssq( 2 ) )
345 IF(
lsame( diag,
'U' ) )
THEN
352 CALL dlassq( min( n-j, k ), ab( 2, j ), 1,
353 $ colssq( 1 ), colssq( 2 ) )
363 CALL dlassq( min( n-j+1, k+1 ), ab( 1, j ), 1,
364 $ colssq( 1 ), colssq( 2 ) )
369 VALUE = ssq( 1 )*sqrt( ssq( 2 ) )
logical function disnan(DIN)
DISNAN tests input for NaN.
subroutine dcombssq(V1, V2)
DCOMBSSQ adds two scaled sum of squares quantities.
subroutine dlassq(N, X, INCX, SCALE, SUMSQ)
DLASSQ updates a sum of squares represented in scaled form.
logical function lsame(CA, CB)
LSAME
double precision function dlantb(NORM, UPLO, DIAG, N, K, AB, LDAB, WORK)
DLANTB returns the value of the 1-norm, or the Frobenius norm, or the infinity norm,...