!        Generated by TAPENADE     (INRIA, Tropics team)
!  Tapenade 3.4 (r3375) - 10 Feb 2010 15:08
!
!  Differentiation of loggausspdf_dv in forward (tangent) mode: (multi-directional mode)
!   variations   of useful results: resd res
!   with respect to varying inputs: pars parsd
!  Differentiation of loggausspdf in forward (tangent) mode: (multi-directional mode)
!   variations   of useful results: res
!   with respect to varying inputs: pars
! pars(1) = mu_x
! pars(2) = mu_y
! pars(3) = sigma_x
! pars(4) = sigma_y
! pars(5) = rho
SUBROUTINE LOGGAUSSPDF_DV_DV(n, x, y, pars, parsd0, parsd, parsdd, res, &
&  resd0, resd, resdd, nbdirs, nbdirs0)
  USE DIFFSIZES_DV
  USE DIFFSIZES
!  Hint: nbdirsmax should be the maximum number of differentiation directions
  IMPLICIT NONE
  REAL*8, PARAMETER :: twopi=6.283185307179586e+00_8
  INTEGER, INTENT(IN) :: n
  REAL*8, DIMENSION(n), INTENT(IN) :: x
  REAL*8, DIMENSION(n), INTENT(IN) :: y
  REAL*8, DIMENSION(5), INTENT(IN) :: pars
  REAL*8, DIMENSION(nbdirsmax0, 5), INTENT(IN) :: parsd0
  REAL*8, DIMENSION(nbdirsmax, 5), INTENT(IN) :: parsd
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax, 5), INTENT(IN) :: parsdd
  REAL*8, DIMENSION(n), INTENT(OUT) :: res
  REAL*8, DIMENSION(nbdirsmax0, n), INTENT(OUT) :: resd0
  REAL*8, DIMENSION(nbdirsmax, n), INTENT(OUT) :: resd
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax, n), INTENT(OUT) :: resdd
  REAL*8, DIMENSION(n) :: cen1, cen2
  REAL*8, DIMENSION(nbdirsmax0, n) :: cen1d0, cen2d0
  REAL*8, DIMENSION(nbdirsmax, n) :: cen1d, cen2d
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax, n) :: cen1dd, cen2dd
  REAL*8 :: t1, f1, f2, f12
  REAL*8, DIMENSION(nbdirsmax0) :: t1d0, f1d0, f2d0, f12d0
  REAL*8, DIMENSION(nbdirsmax) :: t1d, f1d, f2d, f12d
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax) :: t1dd, f1dd, f2dd, f12dd
  REAL*8 :: arg1
  REAL*8, DIMENSION(nbdirsmax0) :: arg1d0
  REAL*8, DIMENSION(nbdirsmax) :: arg1d
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax) :: arg1dd
  REAL*8 :: result1
  REAL*8, DIMENSION(nbdirsmax0) :: result1d0
  REAL*8, DIMENSION(nbdirsmax) :: result1d
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax) :: result1dd
  REAL*8 :: arg2
  REAL*8, DIMENSION(nbdirsmax0) :: arg2d0
  REAL*8, DIMENSION(nbdirsmax) :: arg2d
  REAL*8, DIMENSION(nbdirsmax0, nbdirsmax) :: arg2dd
  INTEGER :: nd
  INTEGER :: nbdirs
  INTRINSIC LOG
  INTRINSIC SQRT
  REAL*8 :: result10
  REAL*8, DIMENSION(nbdirsmax0) :: result10d
  INTEGER :: nd0
  INTEGER :: nbdirs0
  t1 = -(0.5_8/(1.0_8-pars(5)**2))
  arg1 = 1.0_8 - pars(5)**2
  result1 = SQRT(arg1)
  DO nd0=1,nbdirs0
    t1d0(nd0) = (-(0.5_8*2*pars(5)*parsd0(nd0, 5)))/(1.0_8-pars(5)**2)**&
&      2
    f1d0(nd0) = (t1d0(nd0)*pars(3)**2-t1*2*pars(3)*parsd0(nd0, 3))/(pars&
&      (3)**2)**2
    f2d0(nd0) = (t1d0(nd0)*pars(4)**2-t1*2*pars(4)*parsd0(nd0, 4))/(pars&
&      (4)**2)**2
    f12d0(nd0) = -((2.0*(parsd0(nd0, 5)*t1+pars(5)*t1d0(nd0))*pars(3)*&
&      pars(4)-2.0*pars(5)*t1*(parsd0(nd0, 3)*pars(4)+pars(3)*parsd0(nd0&
&      , 4)))/(pars(3)*pars(4))**2)
    cen1d0(nd0, :) = -parsd0(nd0, 1)
    cen2d0(nd0, :) = -parsd0(nd0, 2)
    arg1d0(nd0) = -(2*pars(5)*parsd0(nd0, 5))
    IF (arg1 .EQ. 0.0) THEN
      result1d0(nd0) = 0.0_8
    ELSE
      result1d0(nd0) = arg1d0(nd0)/(2.0*SQRT(arg1))
    END IF
    arg2d0(nd0) = twopi*((parsd0(nd0, 3)*result1+pars(3)*result1d0(nd0))&
&      *pars(4)+pars(3)*result1*parsd0(nd0, 4))
  END DO
  f1 = t1/pars(3)**2
  f2 = t1/pars(4)**2
  f12 = -(2.0*pars(5)*t1/(pars(3)*pars(4)))
  cen1 = x - pars(1)
  cen2 = y - pars(2)
  arg2 = twopi*pars(3)*pars(4)*result1
  DO nd0=1,nbdirs0
    resdd(nd0, :, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    arg1dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    f12dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    cen2dd(nd0, :, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    f1dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    arg2dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    f2dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    result1dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    t1dd(nd0, :) = 0.0_8
  END DO
  DO nd0=1,nbdirs0
    cen1dd(nd0, :, :) = 0.0_8
  END DO
  DO nd=1,nbdirs
    t1d(nd) = (-(0.5_8*2*pars(5)*parsd(nd, 5)))/(1.0_8-pars(5)**2)**2
    DO nd0=1,nbdirs0
      t1dd(nd0, nd) = (-(0.5_8*2*(parsd0(nd0, 5)*parsd(nd, 5)+pars(5)*&
&        parsdd(nd0, nd, 5))*(1.0_8-pars(5)**2)**2)-0.5_8*2**3*pars(5)**2&
&        *parsd(nd, 5)*(1.0_8-pars(5)**2)*parsd0(nd0, 5))/((1.0_8-pars(5)&
&        **2)**2)**2
      f1dd(nd0, nd) = ((t1dd(nd0, nd)*pars(3)**2+t1d(nd)*2*pars(3)*&
&        parsd0(nd0, 3)-2*((t1d0(nd0)*pars(3)+t1*parsd0(nd0, 3))*parsd(nd&
&        , 3))-2*(t1*pars(3)*parsdd(nd0, nd, 3)))*pars(3)**4-(t1d(nd)*&
&        pars(3)**2-t1*2*pars(3)*parsd(nd, 3))*2**2*pars(3)**3*parsd0(nd0&
&        , 3))/((pars(3)**2)**2)**2
      f2dd(nd0, nd) = ((t1dd(nd0, nd)*pars(4)**2+t1d(nd)*2*pars(4)*&
&        parsd0(nd0, 4)-2*((t1d0(nd0)*pars(4)+t1*parsd0(nd0, 4))*parsd(nd&
&        , 4))-2*(t1*pars(4)*parsdd(nd0, nd, 4)))*pars(4)**4-(t1d(nd)*&
&        pars(4)**2-t1*2*pars(4)*parsd(nd, 4))*2**2*pars(4)**3*parsd0(nd0&
&        , 4))/((pars(4)**2)**2)**2
      f12dd(nd0, nd) = -(((2.0*((parsdd(nd0, nd, 5)*t1+parsd(nd, 5)*t1d0&
&        (nd0)+parsd0(nd0, 5)*t1d(nd)+pars(5)*t1dd(nd0, nd))*pars(3)*pars&
&        (4)+(parsd(nd, 5)*t1+pars(5)*t1d(nd))*(parsd0(nd0, 3)*pars(4)+&
&        pars(3)*parsd0(nd0, 4)))-2.0*((parsd0(nd0, 5)*t1+pars(5)*t1d0(&
&        nd0))*(parsd(nd, 3)*pars(4)+pars(3)*parsd(nd, 4))+pars(5)*t1*(&
&        parsdd(nd0, nd, 3)*pars(4)+parsd(nd, 3)*parsd0(nd0, 4)+parsd0(&
&        nd0, 3)*parsd(nd, 4)+pars(3)*parsdd(nd0, nd, 4))))*pars(3)**2*&
&        pars(4)**2-(2.0*(parsd(nd, 5)*t1+pars(5)*t1d(nd))*pars(3)*pars(4&
&        )-2.0*pars(5)*t1*(parsd(nd, 3)*pars(4)+pars(3)*parsd(nd, 4)))*2*&
&        pars(3)*pars(4)*(parsd0(nd0, 3)*pars(4)+pars(3)*parsd0(nd0, 4)))&
&        /((pars(3)*pars(4))**2)**2)
      cen1dd(nd0, nd, :) = -parsdd(nd0, nd, 1)
      cen2dd(nd0, nd, :) = -parsdd(nd0, nd, 2)
      arg1dd(nd0, nd) = -(2*(parsd0(nd0, 5)*parsd(nd, 5)+pars(5)*parsdd(&
&        nd0, nd, 5)))
    END DO
    f1d(nd) = (t1d(nd)*pars(3)**2-t1*2*pars(3)*parsd(nd, 3))/(pars(3)**2&
&      )**2
    f2d(nd) = (t1d(nd)*pars(4)**2-t1*2*pars(4)*parsd(nd, 4))/(pars(4)**2&
&      )**2
    f12d(nd) = -((2.0*(parsd(nd, 5)*t1+pars(5)*t1d(nd))*pars(3)*pars(4)-&
&      2.0*pars(5)*t1*(parsd(nd, 3)*pars(4)+pars(3)*parsd(nd, 4)))/(pars(&
&      3)*pars(4))**2)
    cen1d(nd, :) = -parsd(nd, 1)
    cen2d(nd, :) = -parsd(nd, 2)
    arg1d(nd) = -(2*pars(5)*parsd(nd, 5))
    IF (!arg1 .EQ. 0.0) THEN
      DO nd0=1,nbdirs0
        result1dd(nd0, nd) = 0.0_8
      END DO
      result1d(nd) = 0.0
    ELSE
      result10 = SQRT(arg1)
      DO nd0=1,nbdirs0
        IF (arg1 .EQ. 0.0) THEN
          result10d(nd0) = 0.0_8
        ELSE
          result10d(nd0) = arg1d0(nd0)/(2.0*SQRT(arg1))
        END IF
        result1dd(nd0, nd) = (arg1dd(nd0, nd)*2.0*result10-arg1d(nd)*2.0&
&          *result10d(nd0))/(2.0*result10)**2
      END DO
      result1d(nd) = arg1d(nd)/(2.0*result10)
    END IF
    arg2d(nd) = twopi*((parsd(nd, 3)*result1+pars(3)*result1d(nd))*pars(&
&      4)+pars(3)*result1*parsd(nd, 4))
    DO nd0=1,nbdirs0
      arg2dd(nd0, nd) = twopi*((parsdd(nd0, nd, 3)*result1+parsd(nd, 3)*&
&        result1d0(nd0)+parsd0(nd0, 3)*result1d(nd)+pars(3)*result1dd(nd0&
&        , nd))*pars(4)+(parsd(nd, 3)*result1+pars(3)*result1d(nd))*&
&        parsd0(nd0, 4)+(parsd0(nd0, 3)*result1+pars(3)*result1d0(nd0))*&
&        parsd(nd, 4)+pars(3)*result1*parsdd(nd0, nd, 4))
      resdd(nd0, nd, :) = f1dd(nd0, nd)*cen1**2 + f1d(nd)*2*cen1*cen1d0(&
&        nd0, :) - (arg2dd(nd0, nd)*arg2-arg2d(nd)*arg2d0(nd0))/arg2**2 +&
&        2*((f1d0(nd0)*cen1+f1*cen1d0(nd0, :))*cen1d(nd, :)) + 2*(f1*cen1&
&        *cen1dd(nd0, nd, :)) + f2dd(nd0, nd)*cen2**2 + f2d(nd)*2*cen2*&
&        cen2d0(nd0, :) + 2*((f2d0(nd0)*cen2+f2*cen2d0(nd0, :))*cen2d(nd&
&        , :)) + 2*(f2*cen2*cen2dd(nd0, nd, :)) + (f12dd(nd0, nd)*cen1+&
&        f12d(nd)*cen1d0(nd0, :)+f12d0(nd0)*cen1d(nd, :)+f12*cen1dd(nd0, &
&        nd, :))*cen2 + (f12d(nd)*cen1+f12*cen1d(nd, :))*cen2d0(nd0, :) +&
&        (f12d0(nd0)*cen1+f12*cen1d0(nd0, :))*cen2d(nd, :) + f12*cen1*&
&        cen2dd(nd0, nd, :)
    END DO
    resd(nd, :) = f1d(nd)*cen1**2 - arg2d(nd)/arg2 + f1*2*cen1*cen1d(nd&
&      , :) + f2d(nd)*cen2**2 + f2*2*cen2*cen2d(nd, :) + (f12d(nd)*cen1+&
&      f12*cen1d(nd, :))*cen2 + f12*cen1*cen2d(nd, :)
  END DO
  DO nd0=1,nbdirs0
    resd0(nd0, :) = f1d0(nd0)*cen1**2 - arg2d0(nd0)/arg2 + f1*2*cen1*&
&      cen1d0(nd0, :) + f2d0(nd0)*cen2**2 + f2*2*cen2*cen2d0(nd0, :) + (&
&      f12d0(nd0)*cen1+f12*cen1d0(nd0, :))*cen2 + f12*cen1*cen2d0(nd0, :)
  END DO
  res = -LOG(arg2) + f1*cen1**2 + f2*cen2**2 + f12*cen1*cen2
END SUBROUTINE LOGGAUSSPDF_DV_DV