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- DDDDSSSSPPPPCCCCOOOO((((3333FFFF)))) DDDDSSSSPPPPCCCCOOOO((((3333FFFF))))
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- DSPCO - DSPCO factors a double precision symmetric matrix stored in
- packed form by elimination with symmetric pivoting and estimates the
- condition of the matrix.
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- IF RCOND is not needed, DSPFA is slightly faster. To solve A*X = B ,
- follow DSPCO by DSPSL. To compute INVERSE(A)*C , follow DSPCO by DSPSL.
- To compute INVERSE(A) , follow DSPCO by DSPDI. To compute
- DETERMINANT(A) , follow DSPCO by DSPDI. To compute INERTIA(A), follow
- DSPCO by DSPDI.
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- SSSSYYYYNNNNOOOOPPPPSSSSYYYYSSSS
- SUBROUTINE DSPCO(AP,N,KPVT,RCOND,Z)
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- DDDDEEEESSSSCCCCRRRRIIIIPPPPTTTTIIIIOOOONNNN
- On Entry
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- AAAAPPPP DOUBLE PRECISION (N*(N+1)/2)
- the packed form of a symmetric matrix A . The
- columns of the upper triangle are stored sequentially
- in a one-dimensional array of length N*(N+1)/2 .
- See comments below for details.
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- NNNN INTEGER
- the order of the matrix A . Output
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- AAAAPPPP a block diagonal matrix and the multipliers which
- were used to obtain it stored in packed form.
- The factorization can be written A = U*D*TRANS(U)
- where U is a product of permutation and unit
- upper triangular matrices , TRANS(U) is the
- transpose of U , and D is block diagonal
- with 1 by 1 and 2 by 2 blocks.
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- KKKKPPPPVVVVTTTT INTEGER(N)
- an integer vector of pivot indices.
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- RRRRCCCCOOOONNNNDDDD DOUBLE PRECISION
- an estimate of the reciprocal condition of A .
- For the system A*X = B , relative perturbations
- in A and B of size EPSILON may cause
- relative perturbations in X of size EPSILON/RCOND .
- If RCOND is so small that the logical expression
- 1.0 + RCOND .EQ. 1.0
- is true, then A may be singular to working
- precision. In particular, RCOND is zero if
- exact singularity is detected or the estimate
- underflows.
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- ZZZZ DOUBLE PRECISION(N)
- a work vector whose contents are usually unimportant.
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- If A is close to a singular matrix, then Z is
- an approximate null vector in the sense that
- NORM(A*Z) = RCOND*NORM(A)*NORM(Z) . Packed Storage The following
- program segment will pack the upper triangle of a symmetric matrix.
- K = 0
- DO 20 J = 1, N
- DO 10 I = 1, J
- K = K + 1
- AP(K) = A(I,J)
- 10 CONTINUE
- 20 CONTINUE LINPACK. This version dated 08/14/78 . Cleve Moler,
- University of New Mexico, Argonne National Lab. Subroutines and
- Functions LINPACK DSPFA BLAS DAXPY,DDOT,DSCAL,DASUM Fortran
- DABS,DMAX1,IABS,DSIGN
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