617 lines
17 KiB
Fortran
617 lines
17 KiB
Fortran
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!##############################################################
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MODULE IO
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!##############################################################
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CONTAINS
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!---------------------------
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! function IO_open_file(unit,relPath)
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! function IO_open_inputFile(unit)
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! function IO_hybridIA(Nast,ODFfileName)
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! private function hybridIA_reps(dV_V,steps,C)
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! function IO_stringPos(line,maxN)
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! function IO_stringValue(line,positions,pos)
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! function IO_floatValue(line,positions,pos)
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! function IO_intValue(line,positions,pos)
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! function IO_fixedStringValue(line,ends,pos)
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! function IO_fixedFloatValue(line,ends,pos)
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! function IO_fixedFloatNoEValue(line,ends,pos)
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! function IO_fixedIntValue(line,ends,pos)
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! function IO_continousTntValues(unit,maxN)
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! function IO_lc(line)
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! subroutine IO_lcInplace(line)
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! subroutine IO_error(ID)
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!---------------------------
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!********************************************************************
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! open existing file to given unit
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! path to file is relative to working directory
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!********************************************************************
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logical FUNCTION IO_open_file(unit,relPath)
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use prec, only: pInt
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implicit none
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character(len=*), parameter :: pathSep = achar(47)//achar(92) ! /, \
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character(len=*) relPath
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integer(pInt) unit
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character(256) path
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inquire(6, name=path) ! determine outputfile
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write(6,*)'trying to open mattex at',path(1:scan(path,pathSep,back=.true.))//relPath
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open(unit,status='old',err=100,file=path(1:scan(path,pathSep,back=.true.))//relPath)
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IO_open_file = .true.
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return
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100 IO_open_file = .false.
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return
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END FUNCTION
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!********************************************************************
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! open FEM inputfile to given unit
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!********************************************************************
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logical FUNCTION IO_open_inputFile(unit)
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use prec, only: pReal, pInt
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implicit none
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character(256) outName
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integer(pInt) unit, extPos
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character(3) ext
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inquire(6, name=outName) ! determine outputfileName
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extPos = len_trim(outName)-2
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if(outName(extPos:extPos+2)=='out') then
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ext='dat' ! MARC
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else
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ext='inp' ! ABAQUS
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end if
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open(unit,status='old',err=100,file=outName(1:extPos-1)//ext)
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IO_open_inputFile = .true.
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return
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100 IO_open_inputFile = .false.
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return
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END FUNCTION
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!********************************************************************
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! hybrid IA repetition counter
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!********************************************************************
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FUNCTION hybridIA_reps(dV_V,steps,C)
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use prec, only: pReal, pInt
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implicit none
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integer(pInt), intent(in), dimension(3) :: steps
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integer(pInt) hybridIA_reps, phi1,Phi,phi2
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real(pReal), intent(in), dimension(steps(3),steps(2),steps(1)) :: dV_V
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real(pReal), intent(in) :: C
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hybridIA_reps = 0_pInt
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do phi1=1,steps(1)
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do Phi =1,steps(2)
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do phi2=1,steps(3)
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hybridIA_reps = hybridIA_reps+nint(C*dV_V(phi2,Phi,phi1), pInt)
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end do
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end do
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end do
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return
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END FUNCTION
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!********************************************************************
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! hybrid IA sampling of ODFfile
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!********************************************************************
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FUNCTION IO_hybridIA(Nast,ODFfileName)
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use prec, only: pReal, pInt
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use math, only: inRad
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implicit none
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character(len=*) ODFfileName
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character(len=80) line
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character(len=*), parameter :: fileFormat = '(A80)'
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integer(pInt) i,j,bin,Nast,NnonZero,Nset,Nreps,reps,phi1,Phi,phi2
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integer(pInt), dimension(7) :: pos
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integer(pInt), dimension(3) :: steps
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integer(pInt), dimension(:), allocatable :: binSet
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real(pReal) center,sum_dV_V,prob,dg_0,C,lowerC,upperC,rnd
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real(pReal), dimension(3) :: limits,deltas
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real(pReal), dimension(:,:,:), allocatable :: dV_V
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real(pReal), dimension(3,Nast) :: IO_hybridIA
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if (.not. IO_open_file(999,ODFfileName)) goto 100
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!--- parse header of ODF file ---
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!--- limits in phi1, Phi, phi2 ---
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read(999,fmt=fileFormat,end=100) line
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pos = IO_stringPos(line,3)
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if (pos(1).ne.3) goto 100
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do i=1,3
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limits(i) = IO_intValue(line,pos,i)*inRad
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end do
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!--- deltas in phi1, Phi, phi2 ---
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read(999,fmt=fileFormat,end=100) line
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pos = IO_stringPos(line,3)
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if (pos(1).ne.3) goto 100
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do i=1,3
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deltas(i) = IO_intValue(line,pos,i)*inRad
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end do
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steps = nint(limits/deltas,pInt)
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allocate(dV_V(steps(3),steps(2),steps(1)))
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!--- box boundary/center at origin? ---
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read(999,fmt=fileFormat,end=100) line
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if (index(IO_lc(line),'bound')>0) then
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center = 0.5_pReal
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else
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center = 0.0_pReal
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end if
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!--- skip blank line ---
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read(999,fmt=fileFormat,end=100) line
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sum_dV_V = 0.0_pReal
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dV_V = 0.0_pReal
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dg_0 = deltas(1)*deltas(3)*2.0_pReal*sin(deltas(2)/2.0_pReal)
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NnonZero = 0_pInt
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do phi1=1,steps(1)
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do Phi=1,steps(2)
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do phi2=1,steps(3)
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read(999,fmt=*,end=100) prob
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if (prob > 0.0_pReal) then
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NnonZero = NnonZero+1
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sum_dV_V = sum_dV_V+prob
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else
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prob = 0.0_pReal
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end if
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dV_V(phi2,Phi,phi1) = prob*dg_0*sin((Phi-1.0_pReal+center)*deltas(2))
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end do
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end do
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end do
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dV_V = dV_V/sum_dV_V ! normalize to 1
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!--- now fix bounds ---
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Nset = max(Nast,NnonZero)
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lowerC = 0.0_pReal
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upperC = real(Nset, pReal)
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do while (hybridIA_reps(dV_V,steps,upperC) < Nset)
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lowerC = upperC
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upperC = upperC*2.0_pReal
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end do
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!--- binary search for best C ---
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do
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C = (upperC+lowerC)/2.0_pReal
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Nreps = hybridIA_reps(dV_V,steps,C)
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if (abs(upperC-lowerC) < upperC*1.0e-14_pReal) then
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C = upperC
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Nreps = hybridIA_reps(dV_V,steps,C)
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exit
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elseif (Nreps < Nset) then
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lowerC = C
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elseif (Nreps > Nset) then
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upperC = C
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else
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exit
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end if
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end do
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allocate(binSet(Nreps))
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bin = 0 ! bin counter
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i = 1 ! set counter
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do phi1=1,steps(1)
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do Phi=1,steps(2)
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do phi2=1,steps(3)
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reps = nint(C*dV_V(phi2,Phi,phi1), pInt)
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binSet(i:i+reps-1) = bin
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bin = bin+1 ! advance bin
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i = i+reps ! advance set
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end do
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end do
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end do
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do i=1,Nast
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if (i < Nast) then
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call random_number(rnd)
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j = nint(rnd*(Nast-i)+i+0.5_pReal,pInt)
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else
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j = i
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end if
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bin = binSet(j)
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IO_hybridIA(1,i) = deltas(1)*(mod(bin/(steps(3)*steps(2)),steps(1))+center) ! phi1
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IO_hybridIA(2,i) = deltas(2)*(mod(bin/ steps(3) ,steps(2))+center) ! Phi
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IO_hybridIA(3,i) = deltas(3)*(mod(bin ,steps(3))+center) ! phi2
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binSet(j) = binSet(i)
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end do
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close(999)
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return
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! on error
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100 IO_hybridIA = -1
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close(999)
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return
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END FUNCTION
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!********************************************************************
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! locate at most N space-separated parts in line
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! return array containing number of parts found and
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! their left/right positions to be used by IO_xxxVal
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!********************************************************************
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PURE FUNCTION IO_stringPos (line,N)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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character(len=*), parameter :: sep=achar(32)//achar(9)//achar(10)//achar(13) ! whitespaces
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integer(pInt), intent(in) :: N
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integer(pInt) part
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integer(pInt) IO_stringPos(1+N*2)
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IO_stringPos = -1
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IO_stringPos(1) = 0
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part = 1
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do while ((N<1 .or. part<=N) .and. verify(line(IO_stringPos(part*2-1)+1:),sep)>0)
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IO_stringPos(part*2) = IO_stringPos(part*2-1)+verify(line(IO_stringPos(part*2-1)+1:),sep)
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IO_stringPos(part*2+1) = IO_stringPos(part*2)+scan(line(IO_stringPos(part*2):),sep)-2
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part = part+1
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end do
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IO_stringPos(1) = part-1
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return
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END FUNCTION
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!********************************************************************
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! read string value at pos from line
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!********************************************************************
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PURE FUNCTION IO_stringValue (line,positions,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: positions(*),pos
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character(len=1+positions(pos*2+1)-positions(pos*2)) IO_stringValue
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if (positions(1) < pos) then
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IO_stringValue = ''
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else
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IO_stringValue = line(positions(pos*2):positions(pos*2+1))
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endif
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return
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END FUNCTION
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!********************************************************************
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! read string value at pos from fixed format line
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!********************************************************************
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PURE FUNCTION IO_fixedStringValue (line,ends,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: ends(*),pos
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character(len=ends(pos+1)-ends(pos)) IO_fixedStringValue
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IO_fixedStringValue = line(ends(pos)+1:ends(pos+1))
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return
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END FUNCTION
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!********************************************************************
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! read float value at pos from line
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!********************************************************************
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PURE FUNCTION IO_floatValue (line,positions,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: positions(*),pos
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real(pReal) IO_floatValue
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if (positions(1) >= pos) then
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read(UNIT=line(positions(pos*2):positions(pos*2+1)),ERR=100,FMT=*) IO_floatValue
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return
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endif
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100 IO_floatValue = huge(1.0_pReal)
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return
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END FUNCTION
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!********************************************************************
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! read float value at pos from fixed format line
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!********************************************************************
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PURE FUNCTION IO_fixedFloatValue (line,ends,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: ends(*),pos
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real(pReal) IO_fixedFloatValue
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read(UNIT=line(ends(pos-1)+1:ends(pos)),ERR=100,FMT=*) IO_fixedFloatValue
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return
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100 IO_fixedFloatValue = huge(1.0_pReal)
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return
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END FUNCTION
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!********************************************************************
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! read float x.y+z value at pos from format line line
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!********************************************************************
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PURE FUNCTION IO_fixedNoEFloatValue (line,ends,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: ends(*),pos
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integer(pInt) pos_exp,expon
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real(pReal) IO_fixedNoEFloatValue,base
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pos_exp = scan(line(ends(pos)+1:ends(pos+1)),'+-',back=.true.)
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if (pos_exp > 1) then
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read(UNIT=line(ends(pos)+1:ends(pos)+pos_exp-1),ERR=100,FMT=*) base
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read(UNIT=line(ends(pos)+pos_exp:ends(pos+1)),ERR=100,FMT=*) expon
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else
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read(UNIT=line(ends(pos)+1:ends(pos+1)),ERR=100,FMT=*) base
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expon = 0_pInt
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endif
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IO_fixedNoEFloatValue = base*10.0_pReal**expon
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return
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100 IO_fixedNoEFloatValue = huge(1.0_pReal)
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return
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END FUNCTION
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!********************************************************************
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! read int value at pos from line
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!********************************************************************
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PURE FUNCTION IO_intValue (line,positions,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: positions(*),pos
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integer(pInt) IO_intValue
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if (positions(1) >= pos) then
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read(UNIT=line(positions(pos*2):positions(pos*2+1)),ERR=100,FMT=*) IO_intValue
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return
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endif
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100 IO_intValue = huge(1_pInt)
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return
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END FUNCTION
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!********************************************************************
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! read int value at pos from fixed format line
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!********************************************************************
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PURE FUNCTION IO_fixedIntValue (line,ends,pos)
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use prec, only: pReal,pInt
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implicit none
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character(len=*), intent(in) :: line
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integer(pInt), intent(in) :: ends(*),pos
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integer(pInt) IO_fixedIntValue
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read(UNIT=line(ends(pos)+1:ends(pos+1)),ERR=100,FMT=*) IO_fixedIntValue
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return
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100 IO_fixedIntValue = huge(1_pInt)
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return
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END FUNCTION
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!********************************************************************
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! change character in line to lower case
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!********************************************************************
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PURE FUNCTION IO_lc (line)
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use prec, only: pInt
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implicit none
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character (len=*), intent(in) :: line
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character (len=len(line)) IO_lc
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integer(pInt) i
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IO_lc = line
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do i=1,len(line)
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if(64<iachar(line(i:i)) .and. iachar(line(i:i))<91) IO_lc(i:i)=achar(iachar(line(i:i))+32)
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enddo
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return
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END FUNCTION
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!********************************************************************
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! in place change of character in line to lower case
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!********************************************************************
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SUBROUTINE IO_lcInplace (line)
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use prec, only: pInt
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implicit none
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character (len=*) line
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character (len=len(line)) IO_lc
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integer(pInt) i
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IO_lc = line
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do i=1,len(line)
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if(64<iachar(line(i:i)) .and. iachar(line(i:i))<91) IO_lc(i:i)=achar(iachar(line(i:i))+32)
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enddo
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line = IO_lc
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return
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END SUBROUTINE
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!********************************************************************
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! count items in consecutive lines of ints concatenated by "c"
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! as last char or range of values a "to" b
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!********************************************************************
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FUNCTION IO_countContinousIntValues (unit)
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use prec, only: pReal,pInt
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implicit none
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integer(pInt) IO_countContinousIntValues,unit
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integer(pInt), dimension(67) :: pos ! allow for 32 values excl "c"
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character(len=300) line
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IO_countContinousIntValues = 0
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do
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read(unit,'(A300)',end=100) line
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pos = IO_stringPos(line,33)
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if (IO_lc(IO_stringValue(line,pos,2)) == 'to' ) then ! found range indicator
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IO_countContinousIntValues = IO_countContinousIntValues+1+IO_intValue(line,pos,3)-IO_intValue(line,pos,1)
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exit
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else
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IO_countContinousIntValues = IO_countContinousIntValues+pos(1)-1
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if ( IO_lc(IO_stringValue(line,pos,pos(1))) /= 'c' ) then ! line finished, read last value
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IO_countContinousIntValues = IO_countContinousIntValues+1
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exit
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endif
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endif
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enddo
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100 return
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END FUNCTION
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!*********************************************************************
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! read consecutive lines of ints concatenated by "c" as last char
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! or range of values a "to" b
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!*********************************************************************
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FUNCTION IO_continousIntValues (unit,maxN,lookupName,lookupMap,lookupMaxN)
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use prec, only: pReal,pInt
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implicit none
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integer(pInt) unit,maxN,i
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integer(pInt), dimension(1+maxN) :: IO_continousIntValues
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integer(pInt), dimension(67) :: pos ! allow for 32 values excl "c"
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character(len=64), dimension(:) :: lookupName
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integer(pInt) :: lookupMaxN
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integer(pInt), dimension(:,:) :: lookupMap
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character(len=300) line
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IO_continousIntValues = 0_pInt
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do
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read(unit,'(A300)',end=100) line
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pos = IO_stringPos(line,33)
|
|
if (verify(IO_stringValue(line,pos,1),"0123456789") > 0) then ! a non-int, i.e. set name
|
|
do i = 1,lookupMaxN ! loop over known set names
|
|
if (IO_stringValue(line,pos,1) == lookupName(i)) then ! found matching name
|
|
IO_continousIntValues = lookupMap(:,i) ! return resp. entity list
|
|
exit
|
|
endif
|
|
enddo
|
|
exit
|
|
else if (IO_lc(IO_stringValue(line,pos,2)) == 'to' ) then ! found range indicator
|
|
do i = IO_intValue(line,pos,1),IO_intValue(line,pos,3)
|
|
IO_continousIntValues(1) = IO_continousIntValues(1)+1
|
|
IO_continousIntValues(1+IO_continousIntValues(1)) = i
|
|
enddo
|
|
exit
|
|
else
|
|
do i = 1,pos(1)-1 ! interpret up to second to last value
|
|
IO_continousIntValues(1) = IO_continousIntValues(1)+1
|
|
IO_continousIntValues(1+IO_continousIntValues(1)) = IO_intValue(line,pos,i)
|
|
enddo
|
|
if ( IO_lc(IO_stringValue(line,pos,pos(1))) /= 'c' ) then ! line finished, read last value
|
|
IO_continousIntValues(1) = IO_continousIntValues(1)+1
|
|
IO_continousIntValues(1+IO_continousIntValues(1)) = IO_intValue(line,pos,pos(1))
|
|
exit
|
|
endif
|
|
endif
|
|
enddo
|
|
100 return
|
|
|
|
END FUNCTION
|
|
|
|
|
|
!********************************************************************
|
|
! write error statements to standard out
|
|
! and terminate the Marc run with exit #9xxx
|
|
! in ABAQUS either time step is reduced or execution terminated
|
|
!********************************************************************
|
|
SUBROUTINE IO_error(ID)
|
|
|
|
use prec, only: pInt
|
|
|
|
use debug
|
|
implicit none
|
|
|
|
integer(pInt) ID
|
|
character(len=80) msg
|
|
|
|
select case (ID)
|
|
case (100)
|
|
msg='Unable to open input file.'
|
|
case (110)
|
|
msg='No materials specified via State Variable 2.'
|
|
case (120)
|
|
msg='No textures specified via State Variable 3.'
|
|
case (200)
|
|
msg='Error reading from material+texture file'
|
|
case (300)
|
|
msg='This material can only be used with elements with three direct stress components'
|
|
case (400)
|
|
msg='Unknown alloy number specified'
|
|
case (500)
|
|
msg='Unknown lattice type specified'
|
|
case (600)
|
|
msg='Convergence not reached'
|
|
case (650)
|
|
msg='Polar decomposition failed'
|
|
case (700)
|
|
msg='Singular matrix in stress iteration'
|
|
case (800)
|
|
msg='GIA requires 8 grains per IP (bonehead, you!)'
|
|
case default
|
|
msg='Unknown error number'
|
|
end select
|
|
|
|
!$OMP CRITICAL (write2out)
|
|
write(6,*) 'MPIE Material Routine Ver. 0.0 by the coding team'
|
|
write(6,*)
|
|
write(6,*) msg
|
|
write(6,*)
|
|
|
|
call debug_info()
|
|
call flush(6)
|
|
call quit(9000+ID)
|
|
!$OMP END CRITICAL (write2out)
|
|
|
|
! ABAQUS returns in some cases
|
|
return
|
|
|
|
END SUBROUTINE
|
|
|
|
|
|
END MODULE IO
|