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- DGERFS - improve the computed solution to a system of linear equations
- and provides error bounds and backward error estimates for the solution
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- SUBROUTINE DGERFS( TRANS, N, NRHS, A, LDA, AF, LDAF, IPIV, B, LDB, X,
- LDX, FERR, BERR, WORK, IWORK, INFO )
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- CHARACTER TRANS
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- INTEGER INFO, LDA, LDAF, LDB, LDX, N, NRHS
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- INTEGER IPIV( * ), IWORK( * )
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- DOUBLE PRECISION A( LDA, * ), AF( LDAF, * ), B( LDB, * ),
- BERR( * ), FERR( * ), WORK( * ), X( LDX, * )
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- DGERFS improves the computed solution to a system of linear equations and
- provides error bounds and backward error estimates for the solution.
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- TRANS (input) CHARACTER*1
- Specifies the form of the system of equations:
- = 'N': A * X = B (No transpose)
- = 'T': A**T * X = B (Transpose)
- = 'C': A**H * X = B (Conjugate transpose = Transpose)
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- N (input) INTEGER
- The order of the matrix A. N >= 0.
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- NRHS (input) INTEGER
- The number of right hand sides, i.e., the number of columns of
- the matrices B and X. NRHS >= 0.
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- A (input) DOUBLE PRECISION array, dimension (LDA,N)
- The original N-by-N matrix A.
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- LDA (input) INTEGER
- The leading dimension of the array A. LDA >= max(1,N).
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- AF (input) DOUBLE PRECISION array, dimension (LDAF,N)
- The factors L and U from the factorization A = P*L*U as computed
- by DGETRF.
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- LDAF (input) INTEGER
- The leading dimension of the array AF. LDAF >= max(1,N).
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- IPIV (input) INTEGER array, dimension (N)
- The pivot indices from DGETRF; for 1<=i<=N, row i of the matrix
- was interchanged with row IPIV(i).
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- B (input) DOUBLE PRECISION array, dimension (LDB,NRHS)
- The right hand side matrix B.
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- LDB (input) INTEGER
- The leading dimension of the array B. LDB >= max(1,N).
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- X (input/output) DOUBLE PRECISION array, dimension (LDX,NRHS)
- On entry, the solution matrix X, as computed by DGETRS. On exit,
- the improved solution matrix X.
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- LDX (input) INTEGER
- The leading dimension of the array X. LDX >= max(1,N).
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- FERR (output) DOUBLE PRECISION array, dimension (NRHS)
- The estimated forward error bound for each solution vector X(j)
- (the j-th column of the solution matrix X). If XTRUE is the true
- solution corresponding to X(j), FERR(j) is an estimated upper
- bound for the magnitude of the largest element in (X(j) - XTRUE)
- divided by the magnitude of the largest element in X(j). The
- estimate is as reliable as the estimate for RCOND, and is almost
- always a slight overestimate of the true error.
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- BERR (output) DOUBLE PRECISION array, dimension (NRHS)
- The componentwise relative backward error of each solution vector
- X(j) (i.e., the smallest relative change in any element of A or B
- that makes X(j) an exact solution).
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- WORK (workspace) DOUBLE PRECISION array, dimension (3*N)
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- IWORK (workspace) INTEGER array, dimension (N)
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- INFO (output) INTEGER
- = 0: successful exit
- < 0: if INFO = -i, the i-th argument had an illegal value
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- ITMAX is the maximum number of steps of iterative refinement.
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- PPPPaaaaggggeeee 2222
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