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https://git.planet-casio.com/Lephenixnoir/OpenLibm.git
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c977aa998f
Replace amos with slatec
142 lines
4.5 KiB
Fortran
142 lines
4.5 KiB
Fortran
*DECK DQPSRT
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SUBROUTINE DQPSRT (LIMIT, LAST, MAXERR, ERMAX, ELIST, IORD, NRMAX)
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C***BEGIN PROLOGUE DQPSRT
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C***SUBSIDIARY
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C***PURPOSE This routine maintains the descending ordering in the
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C list of the local error estimated resulting from the
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C interval subdivision process. At each call two error
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C estimates are inserted using the sequential search
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C method, top-down for the largest error estimate and
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C bottom-up for the smallest error estimate.
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C***LIBRARY SLATEC
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C***TYPE DOUBLE PRECISION (QPSRT-S, DQPSRT-D)
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C***KEYWORDS SEQUENTIAL SORTING
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C***AUTHOR Piessens, Robert
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C Applied Mathematics and Programming Division
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C K. U. Leuven
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C de Doncker, Elise
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C Applied Mathematics and Programming Division
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C K. U. Leuven
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C***DESCRIPTION
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C
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C Ordering routine
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C Standard fortran subroutine
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C Double precision version
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C
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C PARAMETERS (MEANING AT OUTPUT)
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C LIMIT - Integer
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C Maximum number of error estimates the list
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C can contain
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C
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C LAST - Integer
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C Number of error estimates currently in the list
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C
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C MAXERR - Integer
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C MAXERR points to the NRMAX-th largest error
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C estimate currently in the list
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C
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C ERMAX - Double precision
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C NRMAX-th largest error estimate
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C ERMAX = ELIST(MAXERR)
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C
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C ELIST - Double precision
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C Vector of dimension LAST containing
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C the error estimates
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C
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C IORD - Integer
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C Vector of dimension LAST, the first K elements
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C of which contain pointers to the error
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C estimates, such that
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C ELIST(IORD(1)),..., ELIST(IORD(K))
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C form a decreasing sequence, with
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C K = LAST if LAST.LE.(LIMIT/2+2), and
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C K = LIMIT+1-LAST otherwise
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C
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C NRMAX - Integer
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C MAXERR = IORD(NRMAX)
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C
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C***SEE ALSO DQAGE, DQAGIE, DQAGPE, DQAWSE
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C***ROUTINES CALLED (NONE)
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C***REVISION HISTORY (YYMMDD)
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C 800101 DATE WRITTEN
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C 890831 Modified array declarations. (WRB)
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C 890831 REVISION DATE from Version 3.2
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C 891214 Prologue converted to Version 4.0 format. (BAB)
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C 900328 Added TYPE section. (WRB)
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C***END PROLOGUE DQPSRT
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C
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DOUBLE PRECISION ELIST,ERMAX,ERRMAX,ERRMIN
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INTEGER I,IBEG,IDO,IORD,ISUCC,J,JBND,JUPBN,K,LAST,LIMIT,MAXERR,
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1 NRMAX
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DIMENSION ELIST(*),IORD(*)
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C
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C CHECK WHETHER THE LIST CONTAINS MORE THAN
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C TWO ERROR ESTIMATES.
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C
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C***FIRST EXECUTABLE STATEMENT DQPSRT
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IF(LAST.GT.2) GO TO 10
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IORD(1) = 1
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IORD(2) = 2
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GO TO 90
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C
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C THIS PART OF THE ROUTINE IS ONLY EXECUTED IF, DUE TO A
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C DIFFICULT INTEGRAND, SUBDIVISION INCREASED THE ERROR
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C ESTIMATE. IN THE NORMAL CASE THE INSERT PROCEDURE SHOULD
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C START AFTER THE NRMAX-TH LARGEST ERROR ESTIMATE.
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C
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10 ERRMAX = ELIST(MAXERR)
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IF(NRMAX.EQ.1) GO TO 30
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IDO = NRMAX-1
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DO 20 I = 1,IDO
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ISUCC = IORD(NRMAX-1)
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C ***JUMP OUT OF DO-LOOP
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IF(ERRMAX.LE.ELIST(ISUCC)) GO TO 30
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IORD(NRMAX) = ISUCC
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NRMAX = NRMAX-1
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20 CONTINUE
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C
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C COMPUTE THE NUMBER OF ELEMENTS IN THE LIST TO BE MAINTAINED
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C IN DESCENDING ORDER. THIS NUMBER DEPENDS ON THE NUMBER OF
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C SUBDIVISIONS STILL ALLOWED.
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C
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30 JUPBN = LAST
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IF(LAST.GT.(LIMIT/2+2)) JUPBN = LIMIT+3-LAST
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ERRMIN = ELIST(LAST)
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C
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C INSERT ERRMAX BY TRAVERSING THE LIST TOP-DOWN,
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C STARTING COMPARISON FROM THE ELEMENT ELIST(IORD(NRMAX+1)).
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C
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JBND = JUPBN-1
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IBEG = NRMAX+1
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IF(IBEG.GT.JBND) GO TO 50
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DO 40 I=IBEG,JBND
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ISUCC = IORD(I)
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C ***JUMP OUT OF DO-LOOP
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IF(ERRMAX.GE.ELIST(ISUCC)) GO TO 60
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IORD(I-1) = ISUCC
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40 CONTINUE
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50 IORD(JBND) = MAXERR
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IORD(JUPBN) = LAST
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GO TO 90
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C
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C INSERT ERRMIN BY TRAVERSING THE LIST BOTTOM-UP.
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C
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60 IORD(I-1) = MAXERR
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K = JBND
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DO 70 J=I,JBND
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ISUCC = IORD(K)
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C ***JUMP OUT OF DO-LOOP
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IF(ERRMIN.LT.ELIST(ISUCC)) GO TO 80
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IORD(K+1) = ISUCC
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K = K-1
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70 CONTINUE
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IORD(I) = LAST
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GO TO 90
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80 IORD(K+1) = LAST
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C
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C SET MAXERR AND ERMAX.
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C
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90 MAXERR = IORD(NRMAX)
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ERMAX = ELIST(MAXERR)
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RETURN
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END
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