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c977aa998f
Replace amos with slatec
286 lines
11 KiB
Fortran
286 lines
11 KiB
Fortran
*DECK SBHIN
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SUBROUTINE SBHIN (N, NELT, IA, JA, A, ISYM, SOLN, RHS, IUNIT, JOB)
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C***BEGIN PROLOGUE SBHIN
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C***PURPOSE Read a Sparse Linear System in the Boeing/Harwell Format.
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C The matrix is read in and if the right hand side is also
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C present in the input file then it too is read in. The
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C matrix is then modified to be in the SLAP Column format.
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C***LIBRARY SLATEC (SLAP)
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C***CATEGORY N1
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C***TYPE SINGLE PRECISION (SBHIN-S, DBHIN-D)
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C***KEYWORDS LINEAR SYSTEM, MATRIX READ, SLAP SPARSE
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C***AUTHOR Seager, Mark K., (LLNL)
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C Lawrence Livermore National Laboratory
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C PO BOX 808, L-60
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C Livermore, CA 94550 (510) 423-3141
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C seager@llnl.gov
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C***DESCRIPTION
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C
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C *Usage:
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C INTEGER N, NELT, IA(NELT), JA(NELT), ISYM, IUNIT, JOB
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C REAL A(NELT), SOLN(N), RHS(N)
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C
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C CALL SBHIN( N, NELT, IA, JA, A, ISYM, SOLN, RHS, IUNIT, JOB )
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C
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C *Arguments:
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C N :OUT Integer
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C Order of the Matrix.
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C NELT :INOUT Integer.
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C On input NELT is the maximum number of non-zeros that
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C can be stored in the IA, JA, A arrays.
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C On output NELT is the number of non-zeros stored in A.
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C IA :OUT Integer IA(NELT).
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C JA :OUT Integer JA(NELT).
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C A :OUT Real A(NELT).
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C On output these arrays hold the matrix A in the SLAP
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C Triad format. See "Description", below.
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C ISYM :OUT Integer.
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C Flag to indicate symmetric storage format.
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C If ISYM=0, all non-zero entries of the matrix are stored.
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C If ISYM=1, the matrix is symmetric, and only the lower
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C triangle of the matrix is stored.
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C SOLN :OUT Real SOLN(N).
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C The solution to the linear system, if present. This array
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C is accessed if and only if JOB is set to read it in, see
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C below. If the user requests that SOLN be read in, but it is
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C not in the file, then it is simply zeroed out.
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C RHS :OUT Real RHS(N).
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C The right hand side vector. This array is accessed if and
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C only if JOB is set to read it in, see below.
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C If the user requests that RHS be read in, but it is not in
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C the file, then it is simply zeroed out.
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C IUNIT :IN Integer.
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C Fortran logical I/O device unit number to read the matrix
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C from. This unit must be connected in a system dependent
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C fashion to a file, or you will get a nasty message
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C from the Fortran I/O libraries.
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C JOB :INOUT Integer.
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C Flag indicating what I/O operations to perform.
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C On input JOB indicates what Input operations to try to
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C perform.
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C JOB = 0 => Read only the matrix.
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C JOB = 1 => Read matrix and RHS (if present).
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C JOB = 2 => Read matrix and SOLN (if present).
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C JOB = 3 => Read matrix, RHS and SOLN (if present).
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C On output JOB indicates what operations were actually
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C performed.
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C JOB = -3 => Unable to parse matrix "CODE" from input file
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C to determine if only the lower triangle of matrix
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C is stored.
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C JOB = -2 => Number of non-zeros (NELT) too large.
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C JOB = -1 => System size (N) too large.
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C JOB = 0 => Read in only the matrix.
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C JOB = 1 => Read in the matrix and RHS.
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C JOB = 2 => Read in the matrix and SOLN.
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C JOB = 3 => Read in the matrix, RHS and SOLN.
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C JOB = 10 => Read in only the matrix *STRUCTURE*, but no
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C non-zero entries. Hence, A(*) is not referenced
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C and has the return values the same as the input.
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C JOB = 11 => Read in the matrix *STRUCTURE* and RHS.
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C JOB = 12 => Read in the matrix *STRUCTURE* and SOLN.
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C JOB = 13 => Read in the matrix *STRUCTURE*, RHS and SOLN.
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C
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C *Description:
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C The format for the input is as follows. The first line contains
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C a title to identify the data file. On the second line (5I4) are
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C counters: NLINE, NPLS, NRILS, NNVLS, NRHSLS.
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C NLINE Number of data lines (after the header) in the file.
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C NPLS Number of lines for the Column Pointer data in the file.
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C NRILS Number of lines for the Row indices in the file.
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C NNVLS Number of lines for the Matrix elements in the file.
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C NRHSLS Number of lines for the RHS in the file.
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C The third line (A3,11X,4I4) contains a symmetry code and some
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C additional counters: CODE, NROW, NCOL, NIND, NELE.
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C On the fourth line (2A16,2A20) are formats to be used to read
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C the following data: PNTFNT, RINFMT, NVLFMT, RHSFMT.
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C Following that are the blocks of data in the order indicated.
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C
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C =================== S L A P Triad format ===================
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C This routine requires that the matrix A be stored in the
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C SLAP Triad format. In this format only the non-zeros are
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C stored. They may appear in *ANY* order. The user supplies
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C three arrays of length NELT, where NELT is the number of
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C non-zeros in the matrix: (IA(NELT), JA(NELT), A(NELT)). For
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C each non-zero the user puts the row and column index of that
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C matrix element in the IA and JA arrays. The value of the
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C non-zero matrix element is placed in the corresponding
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C location of the A array. This is an extremely easy data
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C structure to generate. On the other hand it is not too
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C efficient on vector computers for the iterative solution of
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C linear systems. Hence, SLAP changes this input data
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C structure to the SLAP Column format for the iteration (but
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C does not change it back).
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C
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C Here is an example of the SLAP Triad storage format for a
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C 5x5 Matrix. Recall that the entries may appear in any order.
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C
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C 5x5 Matrix SLAP Triad format for 5x5 matrix on left.
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C 1 2 3 4 5 6 7 8 9 10 11
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C |11 12 0 0 15| A: 51 12 11 33 15 53 55 22 35 44 21
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C |21 22 0 0 0| IA: 5 1 1 3 1 5 5 2 3 4 2
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C | 0 0 33 0 35| JA: 1 2 1 3 5 3 5 2 5 4 1
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C | 0 0 0 44 0|
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C |51 0 53 0 55|
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C
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C *Portability:
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C You must make sure that IUNIT is a valid Fortran logical
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C I/O device unit number and that the unit number has been
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C associated with a file or the console. This is a system
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C dependent function.
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C
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C *Implementation note:
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C SOLN is not read by this version. It will simply be
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C zeroed out if JOB = 2 or 3 and the returned value of
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C JOB will indicate SOLN has not been read.
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C***REFERENCES (NONE)
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C***ROUTINES CALLED (NONE)
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C***REVISION HISTORY (YYMMDD)
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C 881107 DATE WRITTEN
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C 881213 Previous REVISION DATE
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C 890915 Made changes requested at July 1989 CML Meeting. (MKS)
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C 890922 Numerous changes to prologue to make closer to SLATEC
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C standard. (FNF)
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C 890929 Numerous changes to reduce SP/DP differences. (FNF)
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C 910411 Prologue converted to Version 4.0 format. (BAB)
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C 911122 Added loop to zero out RHS if user wants to read RHS, but
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C it's not in the input file. (MKS)
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C 911125 Minor improvements to prologue. (FNF)
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C 920511 Added complete declaration section. (WRB)
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C 921007 Corrected description of input format. (FNF)
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C 921208 Added Implementation Note and code to zero out SOLN. (FNF)
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C 930701 Updated CATEGORY section. (FNF, WRB)
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C***END PROLOGUE SBHIN
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C .. Scalar Arguments ..
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INTEGER ISYM, IUNIT, JOB, N, NELT
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C .. Array Arguments ..
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REAL A(NELT), RHS(N), SOLN(N)
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INTEGER IA(NELT), JA(NELT)
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C .. Local Scalars ..
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REAL TEMP
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INTEGER I, IBGN, ICOL, IEND, ITEMP, J, JOBRET, NCOL, NELE, NIND,
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+ NLINE, NNVLS, NPLS, NRHSLS, NRILS, NROW
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CHARACTER CODE*3, PNTFMT*16, RINFMT*16, NVLFMT*20, RHSFMT*20,
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+ TITLE*80
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C .. Intrinsic Functions ..
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INTRINSIC MOD
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C***FIRST EXECUTABLE STATEMENT SBHIN
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C
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C Read Matrices In BOEING-HARWELL format.
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C
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C TITLE Header line to identify data file.
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C NLINE Number of data lines (after the header) in the file.
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C NPLS Number of lines for the Column Pointer data in the file.
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C NRILS Number of lines for the Row indices in the data file.
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C NNVLS Number of lines for the Matrix elements in the data file.
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C NRHSLS Number of lines for the RHS in the data file.
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C ---- Only those variables needed by SLAP are referenced. ----
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C
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READ(IUNIT,9000) TITLE
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READ(IUNIT,9010) NLINE, NPLS, NRILS, NNVLS, NRHSLS
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READ(IUNIT,9020) CODE, NROW, NCOL, NIND, NELE
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READ(IUNIT,9030) PNTFMT, RINFMT, NVLFMT, RHSFMT
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C
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IF( NROW.GT.N ) THEN
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N = NROW
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JOBRET = -1
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GOTO 999
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ENDIF
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IF( NIND.GT.NELT ) THEN
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NELT = NIND
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JOBRET = -2
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GOTO 999
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ENDIF
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C
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C Set the parameters.
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C
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N = NROW
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NELT = NIND
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IF( CODE.EQ.'RUA' ) THEN
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ISYM = 0
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ELSE IF( CODE.EQ.'RSA' ) THEN
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ISYM = 1
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ELSE
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JOBRET = -3
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GOTO 999
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ENDIF
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READ(IUNIT,PNTFMT) (JA(I), I = 1, N+1)
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READ(IUNIT,RINFMT) (IA(I), I = 1, NELT)
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JOBRET = 10
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IF( NNVLS.GT.0 ) THEN
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READ(IUNIT,NVLFMT) (A(I), I = 1, NELT)
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JOBRET = 0
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ENDIF
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IF( MOD(JOB,2).EQ.1 ) THEN
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C
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C User requests that the RHS be read in. If it is in the input
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C file, read it in; otherwise just zero it out.
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C
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IF( NRHSLS.GT.0 ) THEN
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READ(5,RHSFMT) (RHS(I), I = 1, N)
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JOBRET = JOBRET + 1
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ELSE
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DO 10 I = 1, N
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RHS(I) = 0
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10 CONTINUE
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ENDIF
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ENDIF
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IF ( (JOB.EQ.2).OR.(JOB.EQ.3) ) THEN
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C
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C User requests that the SOLN be read in.
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C Just zero out the array.
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C
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DO 20 I = 1, N
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SOLN(I) = 0
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20 CONTINUE
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ENDIF
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C
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C Now loop through the IA array making sure that the diagonal
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C matrix element appears first in the column. Then sort the
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C rest of the column in ascending order.
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C
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CVD$R NOCONCUR
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CVD$R NOVECTOR
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DO 70 ICOL = 1, N
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IBGN = JA(ICOL)
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IEND = JA(ICOL+1)-1
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DO 30 I = IBGN, IEND
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IF( IA(I).EQ.ICOL ) THEN
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C
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C Swap the diagonal element with the first element in the
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C column.
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C
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ITEMP = IA(I)
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IA(I) = IA(IBGN)
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IA(IBGN) = ITEMP
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TEMP = A(I)
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A(I) = A(IBGN)
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A(IBGN) = TEMP
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GOTO 40
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ENDIF
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30 CONTINUE
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40 IBGN = IBGN + 1
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IF( IBGN.LT.IEND ) THEN
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DO 60 I = IBGN, IEND
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DO 50 J = I+1, IEND
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IF( IA(I).GT.IA(J) ) THEN
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ITEMP = IA(I)
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IA(I) = IA(J)
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IA(J) = ITEMP
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TEMP = A(I)
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A(I) = A(J)
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A(J) = TEMP
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ENDIF
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50 CONTINUE
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60 CONTINUE
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ENDIF
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70 CONTINUE
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C
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C Set return flag.
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999 JOB = JOBRET
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RETURN
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9000 FORMAT( A80 )
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9010 FORMAT( 5I14 )
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9020 FORMAT( A3, 11X, 4I14 )
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9030 FORMAT( 2A16, 2A20 )
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C------------- LAST LINE OF SBHIN FOLLOWS ------------------------------
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END
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