perf(polint): add ordn=6 specialized neville path
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@@ -1112,26 +1112,92 @@ end subroutine d2dump
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!~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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!~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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! common code for cell and vertex
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!------------------------------------------------------------------------------
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! Lagrangian polynomial interpolation
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!------------------------------------------------------------------------------
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!DIR$ ATTRIBUTES FORCEINLINE :: polint
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subroutine polint(xa, ya, x, y, dy, ordn)
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implicit none
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integer, intent(in) :: ordn
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!------------------------------------------------------------------------------
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! Lagrangian polynomial interpolation
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!------------------------------------------------------------------------------
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!DIR$ ATTRIBUTES FORCEINLINE :: polint6_neville
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subroutine polint6_neville(xa, ya, x, y, dy)
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implicit none
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real*8, dimension(6), intent(in) :: xa, ya
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real*8, intent(in) :: x
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real*8, intent(out) :: y, dy
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integer :: i, m, ns, n_m
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real*8, dimension(6) :: c, d, ho
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real*8 :: dif, dift, hp, h, den_val
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c = ya
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d = ya
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ho = xa - x
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ns = 1
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dif = abs(x - xa(1))
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do i = 2, 6
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dift = abs(x - xa(i))
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if (dift < dif) then
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ns = i
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dif = dift
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end if
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end do
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y = ya(ns)
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ns = ns - 1
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do m = 1, 5
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n_m = 6 - m
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do i = 1, n_m
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hp = ho(i)
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h = ho(i+m)
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den_val = hp - h
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if (den_val == 0.0d0) then
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write(*,*) 'failure in polint for point',x
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write(*,*) 'with input points: ',xa
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stop
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end if
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den_val = (c(i+1) - d(i)) / den_val
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d(i) = h * den_val
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c(i) = hp * den_val
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end do
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if (2 * ns < n_m) then
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dy = c(ns + 1)
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else
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dy = d(ns)
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ns = ns - 1
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end if
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y = y + dy
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end do
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return
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end subroutine polint6_neville
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!DIR$ ATTRIBUTES FORCEINLINE :: polint
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subroutine polint(xa, ya, x, y, dy, ordn)
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implicit none
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integer, intent(in) :: ordn
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real*8, dimension(ordn), intent(in) :: xa, ya
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real*8, intent(in) :: x
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real*8, intent(out) :: y, dy
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integer :: i, m, ns, n_m
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real*8, dimension(ordn) :: c, d, ho
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real*8 :: dif, dift, hp, h, den_val
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c = ya
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d = ya
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ho = xa - x
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integer :: i, m, ns, n_m
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real*8, dimension(ordn) :: c, d, ho
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real*8 :: dif, dift, hp, h, den_val
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if (ordn == 6) then
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call polint6_neville(xa, ya, x, y, dy)
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return
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end if
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c = ya
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d = ya
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ho = xa - x
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ns = 1
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dif = abs(x - xa(1))
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