OpenLibm/slatec/cgbdi.f
Viral B. Shah c977aa998f Add Makefile.extras to build libopenlibm-extras.
Replace amos with slatec
2012-12-31 16:37:05 -05:00

89 lines
2.7 KiB
Fortran

*DECK CGBDI
SUBROUTINE CGBDI (ABD, LDA, N, ML, MU, IPVT, DET)
C***BEGIN PROLOGUE CGBDI
C***PURPOSE Compute the determinant of a complex band matrix using the
C factors from CGBCO or CGBFA.
C***LIBRARY SLATEC (LINPACK)
C***CATEGORY D3C2
C***TYPE COMPLEX (SGBDI-S, DGBDI-D, CGBDI-C)
C***KEYWORDS BANDED, DETERMINANT, INVERSE, LINEAR ALGEBRA, LINPACK,
C MATRIX
C***AUTHOR Moler, C. B., (U. of New Mexico)
C***DESCRIPTION
C
C CGBDI computes the determinant of a band matrix
C using the factors computed by CGBCO or CGBFA.
C If the inverse is needed, use CGBSL N times.
C
C On Entry
C
C ABD COMPLEX(LDA, N)
C the output from CGBCO or CGBFA.
C
C LDA INTEGER
C the leading dimension of the array ABD .
C
C N INTEGER
C the order of the original matrix.
C
C ML INTEGER
C number of diagonals below the main diagonal.
C
C MU INTEGER
C number of diagonals above the main diagonal.
C
C IPVT INTEGER(N)
C the pivot vector from CGBCO or CGBFA.
C
C On Return
C
C DET COMPLEX(2)
C determinant of original matrix.
C Determinant = DET(1) * 10.0**DET(2)
C with 1.0 .LE. CABS1(DET(1)) .LT. 10.0
C or DET(1) = 0.0 .
C
C***REFERENCES J. J. Dongarra, J. R. Bunch, C. B. Moler, and G. W.
C Stewart, LINPACK Users' Guide, SIAM, 1979.
C***ROUTINES CALLED (NONE)
C***REVISION HISTORY (YYMMDD)
C 780814 DATE WRITTEN
C 890831 Modified array declarations. (WRB)
C 890831 REVISION DATE from Version 3.2
C 891214 Prologue converted to Version 4.0 format. (BAB)
C 900326 Removed duplicate information from DESCRIPTION section.
C (WRB)
C 920501 Reformatted the REFERENCES section. (WRB)
C***END PROLOGUE CGBDI
INTEGER LDA,N,ML,MU,IPVT(*)
COMPLEX ABD(LDA,*),DET(2)
C
REAL TEN
INTEGER I,M
COMPLEX ZDUM
REAL CABS1
C
CABS1(ZDUM) = ABS(REAL(ZDUM)) + ABS(AIMAG(ZDUM))
C***FIRST EXECUTABLE STATEMENT CGBDI
M = ML + MU + 1
DET(1) = (1.0E0,0.0E0)
DET(2) = (0.0E0,0.0E0)
TEN = 10.0E0
DO 50 I = 1, N
IF (IPVT(I) .NE. I) DET(1) = -DET(1)
DET(1) = ABD(M,I)*DET(1)
IF (CABS1(DET(1)) .EQ. 0.0E0) GO TO 60
10 IF (CABS1(DET(1)) .GE. 1.0E0) GO TO 20
DET(1) = CMPLX(TEN,0.0E0)*DET(1)
DET(2) = DET(2) - (1.0E0,0.0E0)
GO TO 10
20 CONTINUE
30 IF (CABS1(DET(1)) .LT. TEN) GO TO 40
DET(1) = DET(1)/CMPLX(TEN,0.0E0)
DET(2) = DET(2) + (1.0E0,0.0E0)
GO TO 30
40 CONTINUE
50 CONTINUE
60 CONTINUE
RETURN
END