[1] | 1 | ! ARRAY_LIB: Array procedures for F90 |
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| 2 | ! Compiled/Modified: |
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| 3 | ! 07/01/06 John Haynes (haynes@atmos.colostate.edu) |
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| 4 | ! |
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| 5 | ! infind (function) |
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| 6 | ! lin_interpolate (function) |
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| 7 | |
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| 8 | module array_lib |
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| 9 | implicit none |
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| 10 | |
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| 11 | contains |
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| 12 | |
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| 13 | ! ---------------------------------------------------------------------------- |
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| 14 | ! function INFIND |
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| 15 | ! ---------------------------------------------------------------------------- |
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| 16 | function infind(list,val,sort,dist) |
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| 17 | use m_mrgrnk |
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| 18 | implicit none |
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| 19 | ! |
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| 20 | ! Purpose: |
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| 21 | ! Finds the index of an array that is closest to a value, plus the |
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| 22 | ! difference between the value found and the value specified |
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| 23 | ! |
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| 24 | ! Inputs: |
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| 25 | ! [list] an array of sequential values |
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| 26 | ! [val] a value to locate |
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| 27 | ! Optional input: |
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| 28 | ! [sort] set to 1 if [list] is in unknown/non-sequential order |
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| 29 | ! |
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| 30 | ! Returns: |
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| 31 | ! index of [list] that is closest to [val] |
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| 32 | ! |
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| 33 | ! Optional output: |
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| 34 | ! [dist] set to variable containing [list([result])] - [val] |
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| 35 | ! |
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| 36 | ! Requires: |
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| 37 | ! mrgrnk library |
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| 38 | ! |
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| 39 | ! Created: |
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| 40 | ! 10/16/03 John Haynes (haynes@atmos.colostate.edu) |
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| 41 | ! Modified: |
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| 42 | ! 01/31/06 IDL to Fortran 90 |
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| 43 | |
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| 44 | ! ----- INPUTS ----- |
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| 45 | real*8, dimension(:), intent(in) :: list |
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| 46 | real*8, intent(in) :: val |
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| 47 | integer, intent(in), optional :: sort |
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| 48 | |
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| 49 | ! ----- OUTPUTS ----- |
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| 50 | integer*4 :: infind |
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| 51 | real*8, intent(out), optional :: dist |
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| 52 | |
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| 53 | ! ----- INTERNAL ----- |
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| 54 | real*8, dimension(size(list)) :: lists |
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| 55 | integer*4 :: nlist, result, tmp(1), sort_list |
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| 56 | integer*4, dimension(size(list)) :: mask, idx |
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| 57 | |
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| 58 | if (present(sort)) then |
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| 59 | sort_list = sort |
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| 60 | else |
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| 61 | sort_list = 0 |
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| 62 | endif |
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| 63 | |
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| 64 | nlist = size(list) |
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| 65 | if (sort_list == 1) then |
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| 66 | call mrgrnk(list,idx) |
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| 67 | lists = list(idx) |
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| 68 | else |
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| 69 | lists = list |
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| 70 | endif |
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| 71 | |
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| 72 | if (val >= lists(nlist)) then |
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| 73 | result = nlist |
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| 74 | else if (val <= lists(1)) then |
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| 75 | result = 1 |
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| 76 | else |
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| 77 | mask(:) = 0 |
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| 78 | where (lists < val) mask = 1 |
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| 79 | tmp = minloc(mask,1) |
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| 80 | if (abs(lists(tmp(1)-1)-val) < abs(lists(tmp(1))-val)) then |
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| 81 | result = tmp(1) - 1 |
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| 82 | else |
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| 83 | result = tmp(1) |
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| 84 | endif |
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| 85 | endif |
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| 86 | if (present(dist)) dist = lists(result)-val |
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| 87 | if (sort_list == 1) then |
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| 88 | infind = idx(result) |
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| 89 | else |
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| 90 | infind = result |
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| 91 | endif |
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| 92 | |
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| 93 | end function infind |
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| 94 | |
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| 95 | ! ---------------------------------------------------------------------------- |
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| 96 | ! function LIN_INTERPOLATE |
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| 97 | ! ---------------------------------------------------------------------------- |
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| 98 | subroutine lin_interpolate(yarr,xarr,yyarr,xxarr,tol) |
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| 99 | use m_mrgrnk |
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| 100 | implicit none |
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| 101 | ! |
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| 102 | ! Purpose: |
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| 103 | ! linearly interpolate a set of y2 values given a set of y1,x1,x2 |
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| 104 | ! |
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| 105 | ! Inputs: |
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| 106 | ! [yarr] an array of y1 values |
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| 107 | ! [xarr] an array of x1 values |
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| 108 | ! [xxarr] an array of x2 values |
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| 109 | ! [tol] maximum distance for a match |
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| 110 | ! |
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| 111 | ! Output: |
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| 112 | ! [yyarr] interpolated array of y2 values |
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| 113 | ! |
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| 114 | ! Requires: |
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| 115 | ! mrgrnk library |
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| 116 | ! |
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| 117 | ! Created: |
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| 118 | ! 06/07/06 John Haynes (haynes@atmos.colostate.edu) |
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| 119 | |
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| 120 | ! ----- INPUTS ----- |
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| 121 | real*8, dimension(:), intent(in) :: yarr, xarr, xxarr |
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| 122 | real*8, intent(in) :: tol |
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| 123 | |
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| 124 | ! ----- OUTPUTS ----- |
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| 125 | real*8, dimension(size(xxarr)), intent(out) :: yyarr |
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| 126 | |
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| 127 | ! ----- INTERNAL ----- |
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| 128 | real*8, dimension(size(xarr)) :: ysort, xsort |
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| 129 | integer*4, dimension(size(xarr)) :: ist |
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| 130 | integer*4 :: nx, nxx, i, iloc |
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| 131 | real*8 :: d, m |
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| 132 | |
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| 133 | nx = size(xarr) |
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| 134 | nxx = size(xxarr) |
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| 135 | |
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| 136 | ! // xsort, ysort are sorted versions of xarr, yarr |
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| 137 | call mrgrnk(xarr,ist) |
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| 138 | ysort = yarr(ist) |
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| 139 | xsort = xarr(ist) |
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| 140 | |
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| 141 | do i=1,nxx |
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| 142 | iloc = infind(xsort,xxarr(i),dist=d) |
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| 143 | if (d > tol) then |
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| 144 | print *, 'interpolation error' |
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| 145 | stop |
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| 146 | endif |
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| 147 | if (iloc == nx) then |
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| 148 | ! :: set to the last value |
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| 149 | yyarr(i) = ysort(nx) |
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| 150 | else |
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| 151 | ! :: is there another closeby value? |
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| 152 | if (abs(xxarr(i)-xsort(iloc+1)) < 2*tol) then |
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| 153 | ! :: yes, do a linear interpolation |
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| 154 | m = (ysort(iloc+1)-ysort(iloc))/(xsort(iloc+1)-xsort(iloc)) |
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| 155 | yyarr(i) = ysort(iloc) + m*(xxarr(i)-xsort(iloc)) |
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| 156 | else |
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| 157 | ! :: no, set to the only nearby value |
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| 158 | yyarr(i) = ysort(iloc) |
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| 159 | endif |
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| 160 | endif |
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| 161 | enddo |
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| 162 | |
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| 163 | end subroutine lin_interpolate |
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| 164 | |
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| 165 | end module array_lib |
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