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chuckv |
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!! Copyright (c) 2007 The University of Notre Dame. All Rights Reserved. |
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!! |
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!! The University of Notre Dame grants you ("Licensee") a |
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!! non-exclusive, royalty free, license to use, modify and |
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!! redistribute this software in source and binary code form, provided |
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!! that the following conditions are met: |
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!! |
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!! 1. Acknowledgement of the program authors must be made in any |
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!! publication of scientific results based in part on use of the |
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!! program. An acceptable form of acknowledgement is citation of |
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!! the article in which the program was described (Matthew |
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!! A. Meineke, Charles F. Vardeman II, Teng Lin, Christopher |
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!! J. Fennell and J. Daniel Gezelter, "OOPSE: An Object-Oriented |
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!! Parallel Simulation Engine for Molecular Dynamics," |
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!! J. Comput. Chem. 26, pp. 252-271 (2005)) |
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!! |
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!! 2. Redistributions of source code must retain the above copyright |
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!! notice, this list of conditions and the following disclaimer. |
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!! |
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!! 3. Redistributions in binary form must reproduce the above copyright |
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!! notice, this list of conditions and the following disclaimer in the |
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!! documentation and/or other materials provided with the |
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!! distribution. |
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!! |
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!! This software is provided "AS IS," without a warranty of any |
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!! kind. All express or implied conditions, representations and |
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!! warranties, including any implied warranty of merchantability, |
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!! fitness for a particular purpose or non-infringement, are hereby |
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!! excluded. The University of Notre Dame and its licensors shall not |
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!! be liable for any damages suffered by licensee as a result of |
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!! using, modifying or distributing the software or its |
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!! derivatives. In no event will the University of Notre Dame or its |
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!! licensors be liable for any lost revenue, profit or data, or for |
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!! direct, indirect, special, consequential, incidental or punitive |
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!! damages, however caused and regardless of the theory of liability, |
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!! arising out of the use of or inability to use software, even if the |
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!! University of Notre Dame has been advised of the possibility of |
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!! such damages. |
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!! |
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!! Calculates Metal-Non Metal interactions. |
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!! @author Charles F. Vardeman II |
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chuckv |
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!! @version $Id: MetalNonMetal.F90,v 1.9 2008-03-11 21:06:54 chuckv Exp $, $Date: 2008-03-11 21:06:54 $, $Name: not supported by cvs2svn $, $Revision: 1.9 $ |
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chuckv |
1168 |
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module MetalNonMetal |
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use definitions |
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use atype_module |
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use vector_class |
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use simulation |
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use status |
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use fForceOptions |
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#ifdef IS_MPI |
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use mpiSimulation |
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#endif |
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use force_globals |
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implicit none |
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PRIVATE |
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#define __FORTRAN90 |
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#include "UseTheForce/DarkSide/fInteractionMap.h" |
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#include "UseTheForce/DarkSide/fMnMInteractions.h" |
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logical, save :: useGeometricDistanceMixing = .false. |
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logical, save :: haveInteractionLookup = .false. |
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real(kind=DP), save :: defaultCutoff = 0.0_DP |
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chuckv |
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|
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chuckv |
1168 |
logical, save :: defaultShiftPot = .false. |
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logical, save :: defaultShiftFrc = .false. |
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logical, save :: haveDefaultCutoff = .false. |
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type :: MnMinteraction |
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integer :: metal_atid |
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integer :: nonmetal_atid |
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integer :: interaction_type |
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real(kind=dp) :: R0 |
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real(kind=dp) :: D0 |
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real(kind=dp) :: beta0 |
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real(kind=dp) :: betaH |
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real(kind=dp) :: alpha |
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real(kind=dp) :: gamma |
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real(kind=dp) :: sigma |
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real(kind=dp) :: epsilon |
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real(kind=dp) :: rCut = 0.0_dp |
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logical :: rCutWasSet = .false. |
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logical :: shiftedPot = .false. |
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logical :: shiftedFrc = .false. |
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end type MnMinteraction |
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type :: MnMinteractionMap |
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PRIVATE |
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integer :: initialCapacity = 10 |
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integer :: capacityIncrement = 0 |
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integer :: interactionCount = 0 |
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type(MnMinteraction), pointer :: interactions(:) => null() |
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end type MnMinteractionMap |
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xsun |
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type (MnMInteractionMap), pointer :: MnM_Map |
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chuckv |
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integer, allocatable, dimension(:,:) :: MnMinteractionLookup |
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public :: setMnMDefaultCutoff |
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public :: addInteraction |
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public :: deleteInteractions |
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public :: MNMtype |
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chuckv |
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public :: do_mnm_pair |
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chuckv |
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contains |
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chuckv |
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subroutine do_mnm_pair(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, Fpair, & |
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Pot, A, F,t, Do_pot) |
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gezelter |
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integer, intent(in) :: atom1, atom2 |
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chuckv |
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integer :: atid1, atid2, ljt1, ljt2 |
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gezelter |
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real( kind = dp ), intent(in) :: rij, r2, rcut |
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real( kind = dp ) :: pot, sw, vpair |
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chuckv |
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real( kind = dp ), intent(inout), dimension(3,nLocal) :: f |
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gezelter |
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real (kind=dp), intent(in), dimension(9,nLocal) :: A |
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real (kind=dp), intent(inout), dimension(3,nLocal) :: t |
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real( kind = dp ), intent(in), dimension(3) :: d |
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chuckv |
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real( kind = dp ), intent(inout), dimension(3) :: fpair |
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gezelter |
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logical, intent(in) :: do_pot |
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chuckv |
1168 |
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chuckv |
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integer :: interaction_id |
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integer :: interaction_type |
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#ifdef IS_MPI |
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atid1 = atid_Row(atom1) |
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atid2 = atid_Col(atom2) |
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#else |
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atid1 = atid(atom1) |
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atid2 = atid(atom2) |
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#endif |
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chuckv |
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if(.not.haveInteractionLookup) then |
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call createInteractionLookup(MnM_MAP) |
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haveInteractionLookup =.true. |
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end if |
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chuckv |
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interaction_id = MnMinteractionLookup(atid1, atid2) |
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interaction_type = MnM_Map%interactions(interaction_id)%interaction_type |
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chuckv |
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|
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chuckv |
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|
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chuckv |
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|
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chuckv |
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select case (interaction_type) |
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case (MNM_LENNARDJONES) |
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gezelter |
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call calc_mnm_lennardjones(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, & |
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Fpair, Pot, F, Do_pot, interaction_id) |
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chuckv |
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case(MNM_REPULSIVEMORSE, MNM_SHIFTEDMORSE) |
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call calc_mnm_morse(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, Fpair, & |
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gezelter |
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Pot, F, Do_pot, interaction_id, interaction_type) |
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chuckv |
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case(MNM_MAW) |
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call calc_mnm_maw(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, Fpair, & |
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gezelter |
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Pot,A, F,t, Do_pot, interaction_id) |
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chuckv |
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case default |
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call handleError("MetalNonMetal","Unknown interaction type") |
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chuckv |
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end select |
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end subroutine do_mnm_pair |
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gezelter |
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subroutine calc_mnm_lennardjones(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, & |
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Fpair, Pot, F, Do_pot, interaction_id) |
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chuckv |
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gezelter |
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integer, intent(in) :: atom1, atom2 |
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real( kind = dp ), intent(in) :: rij, r2, rcut |
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real( kind = dp ) :: pot, sw, vpair |
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chuckv |
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real( kind = dp ), intent(inout), dimension(3,nLocal) :: f |
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gezelter |
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real( kind = dp ), intent(in), dimension(3) :: d |
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chuckv |
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real( kind = dp ), intent(inout), dimension(3) :: fpair |
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gezelter |
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logical, intent(in) :: do_pot |
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chuckv |
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integer, intent(in) :: interaction_id |
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! local Variables |
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real( kind = dp ) :: drdx, drdy, drdz |
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real( kind = dp ) :: fx, fy, fz |
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real( kind = dp ) :: myPot, myPotC, myDeriv, myDerivC, ros, rcos |
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real( kind = dp ) :: pot_temp, dudr |
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real( kind = dp ) :: sigmai |
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real( kind = dp ) :: epsilon |
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logical :: isSoftCore, shiftedPot, shiftedFrc |
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integer :: id1, id2, localError |
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gezelter |
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sigmai = 1.0_dp / MnM_Map%interactions(interaction_id)%sigma |
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chuckv |
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epsilon = MnM_Map%interactions(interaction_id)%epsilon |
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shiftedPot = MnM_Map%interactions(interaction_id)%shiftedPot |
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shiftedFrc = MnM_Map%interactions(interaction_id)%shiftedFrc |
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ros = rij * sigmai |
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call getLJfunc(ros, myPot, myDeriv) |
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if (shiftedPot) then |
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rcos = rcut * sigmai |
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call getLJfunc(rcos, myPotC, myDerivC) |
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myDerivC = 0.0_dp |
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elseif (shiftedFrc) then |
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rcos = rcut * sigmai |
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call getLJfunc(rcos, myPotC, myDerivC) |
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myPotC = myPotC + myDerivC * (rij - rcut) * sigmai |
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else |
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myPotC = 0.0_dp |
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myDerivC = 0.0_dp |
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gezelter |
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endif |
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chuckv |
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pot_temp = epsilon * (myPot - myPotC) |
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vpair = vpair + pot_temp |
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dudr = sw * epsilon * (myDeriv - myDerivC) * sigmai |
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drdx = d(1) / rij |
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drdy = d(2) / rij |
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drdz = d(3) / rij |
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fx = dudr * drdx |
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fy = dudr * drdy |
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fz = dudr * drdz |
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gezelter |
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chuckv |
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#ifdef IS_MPI |
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if (do_pot) then |
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pot_Row(VDW_POT,atom1) = pot_Row(VDW_POT,atom1) + sw*pot_temp*0.5 |
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pot_Col(VDW_POT,atom2) = pot_Col(VDW_POT,atom2) + sw*pot_temp*0.5 |
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endif |
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gezelter |
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chuckv |
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f_Row(1,atom1) = f_Row(1,atom1) + fx |
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f_Row(2,atom1) = f_Row(2,atom1) + fy |
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f_Row(3,atom1) = f_Row(3,atom1) + fz |
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gezelter |
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chuckv |
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f_Col(1,atom2) = f_Col(1,atom2) - fx |
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f_Col(2,atom2) = f_Col(2,atom2) - fy |
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f_Col(3,atom2) = f_Col(3,atom2) - fz |
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gezelter |
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chuckv |
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#else |
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if (do_pot) pot = pot + sw*pot_temp |
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gezelter |
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chuckv |
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f(1,atom1) = f(1,atom1) + fx |
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f(2,atom1) = f(2,atom1) + fy |
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f(3,atom1) = f(3,atom1) + fz |
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gezelter |
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chuckv |
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f(1,atom2) = f(1,atom2) - fx |
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f(2,atom2) = f(2,atom2) - fy |
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f(3,atom2) = f(3,atom2) - fz |
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#endif |
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#ifdef IS_MPI |
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id1 = AtomRowToGlobal(atom1) |
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id2 = AtomColToGlobal(atom2) |
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#else |
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id1 = atom1 |
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id2 = atom2 |
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#endif |
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gezelter |
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|
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chuckv |
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if (molMembershipList(id1) .ne. molMembershipList(id2)) then |
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gezelter |
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|
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chuckv |
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fpair(1) = fpair(1) + fx |
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fpair(2) = fpair(2) + fy |
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fpair(3) = fpair(3) + fz |
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gezelter |
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|
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chuckv |
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endif |
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gezelter |
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return |
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chuckv |
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end subroutine calc_mnm_lennardjones |
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subroutine calc_mnm_morse(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, Fpair, & |
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Pot, f, Do_pot, interaction_id, interaction_type) |
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gezelter |
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integer, intent(in) :: atom1, atom2 |
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real( kind = dp ), intent(in) :: rij, r2, rcut |
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real( kind = dp ) :: pot, sw, vpair |
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chuckv |
1173 |
real( kind = dp ), intent(inout), dimension(3,nLocal) :: f |
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gezelter |
1174 |
real( kind = dp ), intent(in), dimension(3) :: d |
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chuckv |
1173 |
real( kind = dp ), intent(inout), dimension(3) :: fpair |
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gezelter |
1174 |
logical, intent(in) :: do_pot |
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chuckv |
1173 |
integer, intent(in) :: interaction_id, interaction_type |
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gezelter |
1174 |
logical :: shiftedPot, shiftedFrc |
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chuckv |
1173 |
|
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! Local Variables |
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real(kind=dp) :: Beta0 |
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real(kind=dp) :: R0 |
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real(kind=dp) :: D0 |
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real(kind=dp) :: expt |
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real(kind=dp) :: expt2 |
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real(kind=dp) :: expfnc |
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real(kind=dp) :: expfnc2 |
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real(kind=dp) :: D_expt |
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real(kind=dp) :: D_expt2 |
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real(kind=dp) :: rcos |
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real(kind=dp) :: exptC |
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real(kind=dp) :: expt2C |
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real(kind=dp) :: expfncC |
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real(kind=dp) :: expfnc2C |
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real(kind=dp) :: D_expt2C |
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real(kind=dp) :: D_exptC |
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real(kind=dp) :: myPot |
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real(kind=dp) :: myPotC |
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real(kind=dp) :: myDeriv |
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real(kind=dp) :: myDerivC |
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real(kind=dp) :: pot_temp |
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real(kind=dp) :: fx,fy,fz |
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real(kind=dp) :: drdx,drdy,drdz |
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real(kind=dp) :: dudr |
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integer :: id1,id2 |
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gezelter |
1174 |
|
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chuckv |
1173 |
|
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gezelter |
1174 |
D0 = MnM_Map%interactions(interaction_id)%D0 |
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R0 = MnM_Map%interactions(interaction_id)%r0 |
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chuckv |
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Beta0 = MnM_Map%interactions(interaction_id)%Beta0 |
308 |
gezelter |
1174 |
shiftedPot = MnM_Map%interactions(interaction_id)%shiftedPot |
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shiftedFrc = MnM_Map%interactions(interaction_id)%shiftedFrc |
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! V(r) = D_e exp(-a(r-re)(exp(-a(r-re))-2) |
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expt = -beta0*(rij - R0) |
314 |
chuckv |
1173 |
expfnc = exp(expt) |
315 |
gezelter |
1174 |
expfnc2 = expfnc*expfnc |
316 |
chuckv |
1173 |
|
317 |
gezelter |
1174 |
if (shiftedPot .or. shiftedFrc) then |
318 |
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exptC = -beta0*(rcut - R0) |
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expfncC = exp(exptC) |
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expfnc2C = expfncC*expfncC |
321 |
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endif |
322 |
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323 |
chuckv |
1173 |
select case (interaction_type) |
324 |
gezelter |
1174 |
case (MNM_SHIFTEDMORSE) |
325 |
chuckv |
1173 |
|
326 |
gezelter |
1174 |
myPot = D0 * (expfnc2 - 2.0_dp * expfnc) |
327 |
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myDeriv = 2.0*D0*beta0*(expfnc - expfnc2) |
328 |
chuckv |
1173 |
|
329 |
gezelter |
1174 |
if (shiftedPot) then |
330 |
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myPotC = D0 * (expfnc2C - 2.0_dp * expfncC) |
331 |
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myDerivC = 0.0_dp |
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elseif (shiftedFrc) then |
333 |
|
|
myPotC = D0 * (expfnc2C - 2.0_dp * expfncC) |
334 |
|
|
myDerivC = 2.0*D0*beta0*(expfnc2C - expfnc2C) |
335 |
|
|
myPotC = myPotC + myDerivC * (rij - rcut) |
336 |
|
|
else |
337 |
|
|
myPotC = 0.0_dp |
338 |
|
|
myDerivC = 0.0_dp |
339 |
|
|
endif |
340 |
chuckv |
1173 |
|
341 |
|
|
case (MNM_REPULSIVEMORSE) |
342 |
|
|
|
343 |
gezelter |
1174 |
myPot = D0 * expfnc2 |
344 |
|
|
myDeriv = -2.0_dp * D0 * beta0 * expfnc2 |
345 |
chuckv |
1173 |
|
346 |
gezelter |
1174 |
if (shiftedPot) then |
347 |
|
|
myPotC = D0 * expfnc2C |
348 |
|
|
myDerivC = 0.0_dp |
349 |
|
|
elseif (shiftedFrc) then |
350 |
|
|
myPotC = D0 * expfnc2C |
351 |
|
|
myDerivC = -2.0_dp * D0* beta0 * expfnc2C |
352 |
|
|
myPotC = myPotC + myDerivC * (rij - rcut) |
353 |
|
|
else |
354 |
|
|
myPotC = 0.0_dp |
355 |
|
|
myDerivC = 0.0_dp |
356 |
|
|
endif |
357 |
chuckv |
1173 |
end select |
358 |
|
|
|
359 |
|
|
pot_temp = (myPot - myPotC) |
360 |
|
|
vpair = vpair + pot_temp |
361 |
|
|
dudr = sw * (myDeriv - myDerivC) |
362 |
|
|
|
363 |
|
|
drdx = d(1) / rij |
364 |
|
|
drdy = d(2) / rij |
365 |
|
|
drdz = d(3) / rij |
366 |
|
|
|
367 |
|
|
fx = dudr * drdx |
368 |
|
|
fy = dudr * drdy |
369 |
|
|
fz = dudr * drdz |
370 |
|
|
|
371 |
|
|
#ifdef IS_MPI |
372 |
|
|
if (do_pot) then |
373 |
|
|
pot_Row(VDW_POT,atom1) = pot_Row(VDW_POT,atom1) + sw*pot_temp*0.5 |
374 |
|
|
pot_Col(VDW_POT,atom2) = pot_Col(VDW_POT,atom2) + sw*pot_temp*0.5 |
375 |
|
|
endif |
376 |
|
|
|
377 |
|
|
f_Row(1,atom1) = f_Row(1,atom1) + fx |
378 |
|
|
f_Row(2,atom1) = f_Row(2,atom1) + fy |
379 |
|
|
f_Row(3,atom1) = f_Row(3,atom1) + fz |
380 |
|
|
|
381 |
|
|
f_Col(1,atom2) = f_Col(1,atom2) - fx |
382 |
|
|
f_Col(2,atom2) = f_Col(2,atom2) - fy |
383 |
|
|
f_Col(3,atom2) = f_Col(3,atom2) - fz |
384 |
|
|
|
385 |
|
|
#else |
386 |
|
|
if (do_pot) pot = pot + sw*pot_temp |
387 |
|
|
|
388 |
|
|
f(1,atom1) = f(1,atom1) + fx |
389 |
|
|
f(2,atom1) = f(2,atom1) + fy |
390 |
|
|
f(3,atom1) = f(3,atom1) + fz |
391 |
|
|
|
392 |
|
|
f(1,atom2) = f(1,atom2) - fx |
393 |
|
|
f(2,atom2) = f(2,atom2) - fy |
394 |
|
|
f(3,atom2) = f(3,atom2) - fz |
395 |
|
|
#endif |
396 |
|
|
|
397 |
|
|
#ifdef IS_MPI |
398 |
|
|
id1 = AtomRowToGlobal(atom1) |
399 |
|
|
id2 = AtomColToGlobal(atom2) |
400 |
|
|
#else |
401 |
|
|
id1 = atom1 |
402 |
|
|
id2 = atom2 |
403 |
|
|
#endif |
404 |
|
|
|
405 |
|
|
if (molMembershipList(id1) .ne. molMembershipList(id2)) then |
406 |
|
|
|
407 |
|
|
fpair(1) = fpair(1) + fx |
408 |
|
|
fpair(2) = fpair(2) + fy |
409 |
|
|
fpair(3) = fpair(3) + fz |
410 |
|
|
|
411 |
|
|
endif |
412 |
|
|
|
413 |
|
|
return |
414 |
|
|
end subroutine calc_mnm_morse |
415 |
|
|
|
416 |
|
|
subroutine calc_mnm_maw(Atom1, Atom2, D, Rij, R2, Rcut, Sw, Vpair, Fpair, & |
417 |
gezelter |
1174 |
Pot, A, F,t, Do_pot, interaction_id) |
418 |
|
|
integer, intent(in) :: atom1, atom2 |
419 |
|
|
real( kind = dp ), intent(in) :: rij, r2, rcut |
420 |
|
|
real( kind = dp ) :: pot, sw, vpair |
421 |
chuckv |
1173 |
real( kind = dp ), intent(inout), dimension(3,nLocal) :: f |
422 |
gezelter |
1174 |
real (kind=dp),intent(in), dimension(9,nLocal) :: A |
423 |
chuckv |
1173 |
real (kind=dp),intent(inout), dimension(3,nLocal) :: t |
424 |
|
|
|
425 |
gezelter |
1174 |
real( kind = dp ), intent(in), dimension(3) :: d |
426 |
chuckv |
1173 |
real( kind = dp ), intent(inout), dimension(3) :: fpair |
427 |
gezelter |
1174 |
logical, intent(in) :: do_pot |
428 |
chuckv |
1173 |
|
429 |
|
|
integer, intent(in) :: interaction_id |
430 |
|
|
|
431 |
chuckv |
1229 |
real(kind = dp) :: D0, R0, beta0, alpha, pot_temp |
432 |
gezelter |
1174 |
real(kind = dp) :: expt0, expfnc0, expfnc02 |
433 |
|
|
real(kind = dp) :: exptH, expfncH, expfncH2 |
434 |
chuckv |
1231 |
real(kind = dp) :: x, y, z, x2, y2, z2, r3, r4 |
435 |
|
|
real(kind = dp) :: drdx, drdy, drdz |
436 |
|
|
real(kind = dp) :: dvdx, dvdy, dvdz |
437 |
chuckv |
1229 |
real(kind = dp) :: Vang, dVangdx, dVangdy, dVangdz, dVangdux, dVangduy, dVangduz |
438 |
chuckv |
1231 |
real(kind = dp) :: dVmorsedr |
439 |
chuckv |
1229 |
real(kind = dp) :: Vmorse, dVmorsedx, dVmorsedy, dVmorsedz |
440 |
gezelter |
1174 |
real(kind = dp) :: fx, fy, fz, tx, ty, tz, fxl, fyl, fzl |
441 |
chuckv |
1231 |
real(kind = dp), parameter :: tf = 3.0_dp/4.0_dp |
442 |
|
|
real(kind = dp), parameter :: th = 3.0_dp/2.0_dp |
443 |
|
|
real(kind = dp), parameter :: t8 = 3.0_dp/8.0_dp |
444 |
|
|
real(kind = dp), parameter :: stf = sqrt(3.0_dp)/4.0_dp |
445 |
gezelter |
1174 |
integer :: atid1, atid2, id1, id2 |
446 |
|
|
logical :: shiftedPot, shiftedFrc |
447 |
|
|
|
448 |
|
|
#ifdef IS_MPI |
449 |
|
|
atid1 = atid_Row(atom1) |
450 |
|
|
atid2 = atid_Col(atom2) |
451 |
|
|
|
452 |
|
|
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
453 |
|
|
! rotate the inter-particle separation into the two different |
454 |
|
|
! body-fixed coordinate systems: |
455 |
|
|
|
456 |
|
|
x = A_row(1,atom1)*d(1) + A_row(2,atom1)*d(2) + A_row(3,atom1)*d(3) |
457 |
|
|
y = A_row(4,atom1)*d(1) + A_row(5,atom1)*d(2) + A_row(6,atom1)*d(3) |
458 |
|
|
z = A_row(7,atom1)*d(1) + A_row(8,atom1)*d(2) + A_row(9,atom1)*d(3) |
459 |
|
|
else |
460 |
|
|
! negative sign because this is the vector from j to i: |
461 |
|
|
|
462 |
|
|
x = -(A_Col(1,atom2)*d(1) + A_Col(2,atom2)*d(2) + A_Col(3,atom2)*d(3)) |
463 |
|
|
y = -(A_Col(4,atom2)*d(1) + A_Col(5,atom2)*d(2) + A_Col(6,atom2)*d(3)) |
464 |
|
|
z = -(A_Col(7,atom2)*d(1) + A_Col(8,atom2)*d(2) + A_Col(9,atom2)*d(3)) |
465 |
|
|
endif |
466 |
|
|
|
467 |
|
|
#else |
468 |
|
|
atid1 = atid(atom1) |
469 |
|
|
atid2 = atid(atom2) |
470 |
chuckv |
1175 |
|
471 |
gezelter |
1174 |
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
472 |
|
|
! rotate the inter-particle separation into the two different |
473 |
|
|
! body-fixed coordinate systems: |
474 |
|
|
|
475 |
|
|
x = a(1,atom1)*d(1) + a(2,atom1)*d(2) + a(3,atom1)*d(3) |
476 |
|
|
y = a(4,atom1)*d(1) + a(5,atom1)*d(2) + a(6,atom1)*d(3) |
477 |
|
|
z = a(7,atom1)*d(1) + a(8,atom1)*d(2) + a(9,atom1)*d(3) |
478 |
|
|
else |
479 |
|
|
! negative sign because this is the vector from j to i: |
480 |
|
|
|
481 |
|
|
x = -(a(1,atom2)*d(1) + a(2,atom2)*d(2) + a(3,atom2)*d(3)) |
482 |
|
|
y = -(a(4,atom2)*d(1) + a(5,atom2)*d(2) + a(6,atom2)*d(3)) |
483 |
|
|
z = -(a(7,atom2)*d(1) + a(8,atom2)*d(2) + a(9,atom2)*d(3)) |
484 |
|
|
endif |
485 |
|
|
|
486 |
|
|
#endif |
487 |
chuckv |
1231 |
|
488 |
gezelter |
1174 |
D0 = MnM_Map%interactions(interaction_id)%D0 |
489 |
|
|
R0 = MnM_Map%interactions(interaction_id)%r0 |
490 |
chuckv |
1229 |
beta0 = MnM_Map%interactions(interaction_id)%beta0 |
491 |
gezelter |
1174 |
alpha = MnM_Map%interactions(interaction_id)%alpha |
492 |
chuckv |
1175 |
|
493 |
gezelter |
1174 |
shiftedPot = MnM_Map%interactions(interaction_id)%shiftedPot |
494 |
|
|
shiftedFrc = MnM_Map%interactions(interaction_id)%shiftedFrc |
495 |
|
|
|
496 |
|
|
expt0 = -beta0*(rij - R0) |
497 |
|
|
expfnc0 = exp(expt0) |
498 |
|
|
expfnc02 = expfnc0*expfnc0 |
499 |
chuckv |
1175 |
|
500 |
gezelter |
1174 |
!!$ if (shiftedPot .or. shiftedFrc) then |
501 |
|
|
!!$ exptC0 = -beta0*(rcut - R0) |
502 |
|
|
!!$ expfncC0 = exp(exptC0) |
503 |
|
|
!!$ expfncC02 = expfncC0*expfncC0 |
504 |
|
|
!!$ exptCH = -betaH*(rcut - R0) |
505 |
|
|
!!$ expfncCH = exp(exptCH) |
506 |
|
|
!!$ expfncCH2 = expfncCH*expfncCH |
507 |
|
|
!!$ endif |
508 |
|
|
|
509 |
chuckv |
1231 |
drdx = x / rij |
510 |
|
|
drdy = y / rij |
511 |
|
|
drdz = z / rij |
512 |
|
|
|
513 |
gezelter |
1174 |
x2 = x*x |
514 |
|
|
y2 = y*y |
515 |
|
|
z2 = z*z |
516 |
chuckv |
1175 |
r3 = r2*rij |
517 |
chuckv |
1231 |
r4 = r2*r2 |
518 |
chuckv |
1176 |
|
519 |
chuckv |
1231 |
Vmorse = D0 * (expfnc02 - 2.0_dp * expfnc0) |
520 |
chuckv |
1176 |
|
521 |
chuckv |
1228 |
! angular modulation of morse part of potential to approximate a sp3 orbital |
522 |
chuckv |
1229 |
! Vang = 1 - alpha*(1/2 + sqrt(3.0)*cos(theta)/4.0 - 3.0*cos(2.0*phi)*sin^2(theta)/8.0) |
523 |
|
|
|
524 |
chuckv |
1231 |
Vang = 1.0_dp - alpha*(0.5_dp + stf*z/rij - t8*(x2-y2)/r2) |
525 |
|
|
|
526 |
chuckv |
1229 |
pot_temp = Vmorse*Vang |
527 |
chuckv |
1228 |
|
528 |
gezelter |
1174 |
vpair = vpair + pot_temp |
529 |
chuckv |
1175 |
|
530 |
gezelter |
1174 |
if (do_pot) then |
531 |
|
|
#ifdef IS_MPI |
532 |
|
|
pot_row(VDW_POT,atom1) = pot_row(VDW_POT,atom1) + 0.5_dp*pot_temp*sw |
533 |
|
|
pot_col(VDW_POT,atom2) = pot_col(VDW_POT,atom2) + 0.5_dp*pot_temp*sw |
534 |
|
|
#else |
535 |
|
|
pot = pot + pot_temp*sw |
536 |
|
|
#endif |
537 |
|
|
endif |
538 |
|
|
|
539 |
chuckv |
1229 |
dVmorsedr = 2.0_dp*D0*beta0*(expfnc0 - expfnc02) |
540 |
chuckv |
1231 |
|
541 |
chuckv |
1229 |
dVmorsedx = dVmorsedr * drdx |
542 |
|
|
dVmorsedy = dVmorsedr * drdy |
543 |
|
|
dVmorsedz = dVmorsedr * drdz |
544 |
chuckv |
1231 |
|
545 |
|
|
dVangdx = -alpha*(-tf*x/r2 + tf*(x2-y2)*x/r4 - stf*z*x/r3) |
546 |
|
|
dVangdy = -alpha*( tf*y/r2 + tf*(x2-y2)*y/r4 - stf*z*y/r3) |
547 |
|
|
dVangdz = -alpha*(stf/rij + tf*(x2-y2)*z/r4 - stf*z2/r3) |
548 |
chuckv |
1228 |
|
549 |
chuckv |
1231 |
! chain rule to put these back on x, y, z |
550 |
chuckv |
1229 |
dvdx = Vang * dVmorsedx + Vmorse * dVangdx |
551 |
|
|
dvdy = Vang * dVmorsedy + Vmorse * dVangdy |
552 |
|
|
dvdz = Vang * dVmorsedz + Vmorse * dVangdz |
553 |
gezelter |
1174 |
|
554 |
chuckv |
1231 |
! Torques for Vang using method of Price: |
555 |
|
|
! S. L. Price, A. J. Stone, and M. Alderton, Mol. Phys. 52, 987 (1984). |
556 |
|
|
dVangdux = alpha * (tf * y * z / r2 - stf * y / rij ) |
557 |
|
|
dVangduy = alpha * (tf * x * z / r2 + stf * x / rij ) |
558 |
|
|
dVangduz = -th * alpha * x * y / r2 |
559 |
|
|
|
560 |
|
|
! do the torques first since they are easy: |
561 |
|
|
! remember that these are still in the body fixed axes |
562 |
|
|
|
563 |
|
|
tx = Vmorse * dVangdux * sw |
564 |
|
|
ty = Vmorse * dVangduy * sw |
565 |
|
|
tz = Vmorse * dVangduz * sw |
566 |
gezelter |
1174 |
|
567 |
|
|
! go back to lab frame using transpose of rotation matrix: |
568 |
|
|
|
569 |
|
|
#ifdef IS_MPI |
570 |
|
|
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
571 |
|
|
t_Row(1,atom1) = t_Row(1,atom1) + a_Row(1,atom1)*tx + & |
572 |
|
|
a_Row(4,atom1)*ty + a_Row(7,atom1)*tz |
573 |
|
|
t_Row(2,atom1) = t_Row(2,atom1) + a_Row(2,atom1)*tx + & |
574 |
|
|
a_Row(5,atom1)*ty + a_Row(8,atom1)*tz |
575 |
|
|
t_Row(3,atom1) = t_Row(3,atom1) + a_Row(3,atom1)*tx + & |
576 |
|
|
a_Row(6,atom1)*ty + a_Row(9,atom1)*tz |
577 |
|
|
else |
578 |
|
|
t_Col(1,atom2) = t_Col(1,atom2) + a_Col(1,atom2)*tx + & |
579 |
|
|
a_Col(4,atom2)*ty + a_Col(7,atom2)*tz |
580 |
|
|
t_Col(2,atom2) = t_Col(2,atom2) + a_Col(2,atom2)*tx + & |
581 |
|
|
a_Col(5,atom2)*ty + a_Col(8,atom2)*tz |
582 |
|
|
t_Col(3,atom2) = t_Col(3,atom2) + a_Col(3,atom2)*tx + & |
583 |
|
|
a_Col(6,atom2)*ty + a_Col(9,atom2)*tz |
584 |
|
|
endif |
585 |
|
|
#else |
586 |
|
|
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
587 |
|
|
t(1,atom1) = t(1,atom1) + a(1,atom1)*tx + a(4,atom1)*ty + & |
588 |
|
|
a(7,atom1)*tz |
589 |
|
|
t(2,atom1) = t(2,atom1) + a(2,atom1)*tx + a(5,atom1)*ty + & |
590 |
|
|
a(8,atom1)*tz |
591 |
|
|
t(3,atom1) = t(3,atom1) + a(3,atom1)*tx + a(6,atom1)*ty + & |
592 |
|
|
a(9,atom1)*tz |
593 |
|
|
else |
594 |
|
|
t(1,atom2) = t(1,atom2) + a(1,atom2)*tx + a(4,atom2)*ty + & |
595 |
|
|
a(7,atom2)*tz |
596 |
|
|
t(2,atom2) = t(2,atom2) + a(2,atom2)*tx + a(5,atom2)*ty + & |
597 |
|
|
a(8,atom2)*tz |
598 |
|
|
t(3,atom2) = t(3,atom2) + a(3,atom2)*tx + a(6,atom2)*ty + & |
599 |
|
|
a(9,atom2)*tz |
600 |
|
|
endif |
601 |
|
|
#endif |
602 |
chuckv |
1231 |
! Now, on to the forces (still in body frame of water) |
603 |
gezelter |
1174 |
|
604 |
chuckv |
1229 |
fx = dvdx * sw |
605 |
|
|
fy = dvdy * sw |
606 |
|
|
fz = dvdz * sw |
607 |
gezelter |
1174 |
|
608 |
|
|
! rotate the terms back into the lab frame: |
609 |
|
|
|
610 |
|
|
#ifdef IS_MPI |
611 |
|
|
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
612 |
|
|
fxl = a_Row(1,atom1)*fx + a_Row(4,atom1)*fy + a_Row(7,atom1)*fz |
613 |
|
|
fyl = a_Row(2,atom1)*fx + a_Row(5,atom1)*fy + a_Row(8,atom1)*fz |
614 |
|
|
fzl = a_Row(3,atom1)*fx + a_Row(6,atom1)*fy + a_Row(9,atom1)*fz |
615 |
|
|
else |
616 |
|
|
fxl = a_Col(1,atom2)*fx + a_Col(4,atom2)*fy + a_Col(7,atom2)*fz |
617 |
|
|
fyl = a_Col(2,atom2)*fx + a_Col(5,atom2)*fy + a_Col(8,atom2)*fz |
618 |
|
|
fzl = a_Col(3,atom2)*fx + a_Col(6,atom2)*fy + a_Col(9,atom2)*fz |
619 |
|
|
endif |
620 |
|
|
f_Row(1,atom1) = f_Row(1,atom1) + fxl |
621 |
|
|
f_Row(2,atom1) = f_Row(2,atom1) + fyl |
622 |
|
|
f_Row(3,atom1) = f_Row(3,atom1) + fzl |
623 |
|
|
|
624 |
|
|
f_Col(1,atom2) = f_Col(1,atom2) - fxl |
625 |
|
|
f_Col(2,atom2) = f_Col(2,atom2) - fyl |
626 |
|
|
f_Col(3,atom2) = f_Col(3,atom2) - fzl |
627 |
|
|
#else |
628 |
|
|
if (atid2.eq.MnM_Map%interactions(interaction_id)%metal_atid) then |
629 |
|
|
fxl = a(1,atom1)*fx + a(4,atom1)*fy + a(7,atom1)*fz |
630 |
|
|
fyl = a(2,atom1)*fx + a(5,atom1)*fy + a(8,atom1)*fz |
631 |
|
|
fzl = a(3,atom1)*fx + a(6,atom1)*fy + a(9,atom1)*fz |
632 |
|
|
else |
633 |
|
|
fxl = a(1,atom2)*fx + a(4,atom2)*fy + a(7,atom2)*fz |
634 |
|
|
fyl = a(2,atom2)*fx + a(5,atom2)*fy + a(8,atom2)*fz |
635 |
|
|
fzl = a(3,atom2)*fx + a(6,atom2)*fy + a(9,atom2)*fz |
636 |
|
|
endif |
637 |
|
|
f(1,atom1) = f(1,atom1) + fxl |
638 |
|
|
f(2,atom1) = f(2,atom1) + fyl |
639 |
|
|
f(3,atom1) = f(3,atom1) + fzl |
640 |
|
|
|
641 |
|
|
f(1,atom2) = f(1,atom2) - fxl |
642 |
|
|
f(2,atom2) = f(2,atom2) - fyl |
643 |
|
|
f(3,atom2) = f(3,atom2) - fzl |
644 |
|
|
#endif |
645 |
|
|
|
646 |
|
|
#ifdef IS_MPI |
647 |
|
|
id1 = AtomRowToGlobal(atom1) |
648 |
|
|
id2 = AtomColToGlobal(atom2) |
649 |
|
|
#else |
650 |
|
|
id1 = atom1 |
651 |
|
|
id2 = atom2 |
652 |
|
|
#endif |
653 |
|
|
|
654 |
|
|
if (molMembershipList(id1) .ne. molMembershipList(id2)) then |
655 |
|
|
|
656 |
|
|
fpair(1) = fpair(1) + fxl |
657 |
|
|
fpair(2) = fpair(2) + fyl |
658 |
|
|
fpair(3) = fpair(3) + fzl |
659 |
|
|
|
660 |
|
|
endif |
661 |
|
|
|
662 |
|
|
return |
663 |
chuckv |
1173 |
end subroutine calc_mnm_maw |
664 |
|
|
|
665 |
|
|
|
666 |
chuckv |
1168 |
subroutine setMnMDefaultCutoff(thisRcut, shiftedPot, shiftedFrc) |
667 |
|
|
real(kind=dp), intent(in) :: thisRcut |
668 |
|
|
logical, intent(in) :: shiftedPot |
669 |
|
|
logical, intent(in) :: shiftedFrc |
670 |
|
|
integer i, nInteractions |
671 |
|
|
defaultCutoff = thisRcut |
672 |
|
|
defaultShiftPot = shiftedPot |
673 |
|
|
defaultShiftFrc = shiftedFrc |
674 |
|
|
|
675 |
xsun |
1178 |
if (associated(MnM_Map)) then |
676 |
|
|
if(MnM_Map%interactionCount /= 0) then |
677 |
|
|
nInteractions = MnM_Map%interactionCount |
678 |
chuckv |
1168 |
|
679 |
xsun |
1178 |
do i = 1, nInteractions |
680 |
|
|
MnM_Map%interactions(i)%shiftedPot = shiftedPot |
681 |
|
|
MnM_Map%interactions(i)%shiftedFrc = shiftedFrc |
682 |
|
|
MnM_Map%interactions(i)%rCut = thisRcut |
683 |
|
|
MnM_Map%interactions(i)%rCutWasSet = .true. |
684 |
|
|
enddo |
685 |
|
|
end if |
686 |
|
|
end if |
687 |
chuckv |
1168 |
|
688 |
|
|
end subroutine setMnMDefaultCutoff |
689 |
|
|
|
690 |
|
|
subroutine copyAllData(v1, v2) |
691 |
|
|
type(MnMinteractionMap), pointer :: v1 |
692 |
|
|
type(MnMinteractionMap), pointer :: v2 |
693 |
|
|
integer :: i, j |
694 |
|
|
|
695 |
|
|
do i = 1, v1%interactionCount |
696 |
|
|
v2%interactions(i) = v1%interactions(i) |
697 |
|
|
enddo |
698 |
|
|
|
699 |
|
|
v2%interactionCount = v1%interactionCount |
700 |
|
|
return |
701 |
|
|
end subroutine copyAllData |
702 |
|
|
|
703 |
|
|
subroutine addInteraction(myInteraction) |
704 |
|
|
type(MNMtype) :: myInteraction |
705 |
|
|
type(MnMinteraction) :: nt |
706 |
|
|
integer :: id |
707 |
chuckv |
1175 |
|
708 |
|
|
|
709 |
chuckv |
1168 |
|
710 |
chuckv |
1175 |
|
711 |
|
|
|
712 |
chuckv |
1168 |
nt%interaction_type = myInteraction%MNMInteractionType |
713 |
chuckv |
1175 |
nt%metal_atid = & |
714 |
|
|
getFirstMatchingElement(atypes, "c_ident", myInteraction%metal_atid) |
715 |
|
|
nt%nonmetal_atid = & |
716 |
|
|
getFirstMatchingElement(atypes, "c_ident", myInteraction%nonmetal_atid) |
717 |
chuckv |
1168 |
|
718 |
chuckv |
1175 |
|
719 |
chuckv |
1168 |
select case (nt%interaction_type) |
720 |
|
|
case (MNM_LENNARDJONES) |
721 |
|
|
nt%sigma = myInteraction%sigma |
722 |
|
|
nt%epsilon = myInteraction%epsilon |
723 |
|
|
case(MNM_REPULSIVEMORSE, MNM_SHIFTEDMORSE) |
724 |
|
|
nt%R0 = myInteraction%R0 |
725 |
|
|
nt%D0 = myInteraction%D0 |
726 |
|
|
nt%beta0 = myInteraction%beta0 |
727 |
|
|
case(MNM_MAW) |
728 |
|
|
nt%R0 = myInteraction%R0 |
729 |
|
|
nt%D0 = myInteraction%D0 |
730 |
|
|
nt%beta0 = myInteraction%beta0 |
731 |
|
|
nt%alpha = myInteraction%alpha |
732 |
|
|
case default |
733 |
chuckv |
1173 |
call handleError("MNM", "Unknown Interaction type") |
734 |
chuckv |
1168 |
end select |
735 |
|
|
|
736 |
|
|
if (.not. associated(MnM_Map)) then |
737 |
|
|
call ensureCapacityHelper(MnM_Map, 1) |
738 |
|
|
else |
739 |
|
|
call ensureCapacityHelper(MnM_Map, MnM_Map%interactionCount + 1) |
740 |
|
|
end if |
741 |
|
|
|
742 |
|
|
MnM_Map%interactionCount = MnM_Map%interactionCount + 1 |
743 |
|
|
id = MnM_Map%interactionCount |
744 |
|
|
MnM_Map%interactions(id) = nt |
745 |
|
|
end subroutine addInteraction |
746 |
|
|
|
747 |
|
|
subroutine ensureCapacityHelper(this, minCapacity) |
748 |
|
|
type(MnMinteractionMap), pointer :: this, that |
749 |
|
|
integer, intent(in) :: minCapacity |
750 |
|
|
integer :: oldCapacity |
751 |
|
|
integer :: newCapacity |
752 |
|
|
logical :: resizeFlag |
753 |
|
|
|
754 |
|
|
resizeFlag = .false. |
755 |
|
|
|
756 |
|
|
! first time: allocate a new vector with default size |
757 |
|
|
|
758 |
|
|
if (.not. associated(this)) then |
759 |
|
|
this => MnMinitialize(minCapacity, 0) |
760 |
|
|
endif |
761 |
|
|
|
762 |
|
|
oldCapacity = size(this%interactions) |
763 |
|
|
|
764 |
|
|
if (minCapacity > oldCapacity) then |
765 |
|
|
if (this%capacityIncrement .gt. 0) then |
766 |
|
|
newCapacity = oldCapacity + this%capacityIncrement |
767 |
|
|
else |
768 |
|
|
newCapacity = oldCapacity * 2 |
769 |
|
|
endif |
770 |
|
|
if (newCapacity .lt. minCapacity) then |
771 |
|
|
newCapacity = minCapacity |
772 |
|
|
endif |
773 |
|
|
resizeFlag = .true. |
774 |
|
|
else |
775 |
|
|
newCapacity = oldCapacity |
776 |
|
|
endif |
777 |
|
|
|
778 |
|
|
if (resizeFlag) then |
779 |
|
|
that => MnMinitialize(newCapacity, this%capacityIncrement) |
780 |
|
|
call copyAllData(this, that) |
781 |
|
|
this => MnMdestroy(this) |
782 |
|
|
this => that |
783 |
|
|
endif |
784 |
|
|
end subroutine ensureCapacityHelper |
785 |
|
|
|
786 |
|
|
function MnMinitialize(cap, capinc) result(this) |
787 |
|
|
integer, intent(in) :: cap, capinc |
788 |
|
|
integer :: error |
789 |
|
|
type(MnMinteractionMap), pointer :: this |
790 |
|
|
|
791 |
|
|
nullify(this) |
792 |
|
|
|
793 |
|
|
if (cap < 0) then |
794 |
|
|
write(*,*) 'Bogus Capacity:', cap |
795 |
|
|
return |
796 |
|
|
endif |
797 |
|
|
allocate(this,stat=error) |
798 |
|
|
if ( error /= 0 ) then |
799 |
|
|
write(*,*) 'Could not allocate MnMinteractionMap!' |
800 |
|
|
return |
801 |
|
|
end if |
802 |
|
|
|
803 |
|
|
this%initialCapacity = cap |
804 |
|
|
this%capacityIncrement = capinc |
805 |
|
|
|
806 |
|
|
allocate(this%interactions(this%initialCapacity), stat=error) |
807 |
|
|
if(error /= 0) write(*,*) 'Could not allocate MnMinteraction!' |
808 |
|
|
|
809 |
|
|
end function MnMinitialize |
810 |
|
|
|
811 |
chuckv |
1175 |
subroutine createInteractionLookup(this) |
812 |
|
|
type (MnMInteractionMap),pointer :: this |
813 |
chuckv |
1168 |
integer :: biggestAtid, i, metal_atid, nonmetal_atid, error |
814 |
|
|
|
815 |
|
|
biggestAtid=-1 |
816 |
|
|
do i = 1, this%interactionCount |
817 |
|
|
metal_atid = this%interactions(i)%metal_atid |
818 |
|
|
nonmetal_atid = this%interactions(i)%nonmetal_atid |
819 |
|
|
|
820 |
|
|
if (metal_atid .gt. biggestAtid) biggestAtid = metal_atid |
821 |
|
|
if (nonmetal_atid .gt. biggestAtid) biggestAtid = nonmetal_atid |
822 |
|
|
enddo |
823 |
chuckv |
1175 |
|
824 |
chuckv |
1168 |
allocate(MnMinteractionLookup(biggestAtid,biggestAtid), stat=error) |
825 |
|
|
if (error /= 0) write(*,*) 'Could not allocate MnMinteractionLookup' |
826 |
|
|
|
827 |
|
|
do i = 1, this%interactionCount |
828 |
|
|
metal_atid = this%interactions(i)%metal_atid |
829 |
|
|
nonmetal_atid = this%interactions(i)%nonmetal_atid |
830 |
|
|
|
831 |
|
|
MnMinteractionLookup(metal_atid, nonmetal_atid) = i |
832 |
|
|
MnMinteractionLookup(nonmetal_atid, metal_atid) = i |
833 |
|
|
enddo |
834 |
|
|
end subroutine createInteractionLookup |
835 |
|
|
|
836 |
|
|
|
837 |
|
|
function MnMdestroy(this) result(null_this) |
838 |
|
|
logical :: done |
839 |
|
|
type(MnMinteractionMap), pointer :: this |
840 |
|
|
type(MnMinteractionMap), pointer :: null_this |
841 |
|
|
|
842 |
|
|
if (.not. associated(this)) then |
843 |
|
|
null_this => null() |
844 |
|
|
return |
845 |
|
|
end if |
846 |
|
|
|
847 |
|
|
!! Walk down the list and deallocate each of the map's components |
848 |
|
|
if(associated(this%interactions)) then |
849 |
|
|
deallocate(this%interactions) |
850 |
|
|
this%interactions=>null() |
851 |
|
|
endif |
852 |
|
|
deallocate(this) |
853 |
|
|
this => null() |
854 |
|
|
null_this => null() |
855 |
|
|
end function MnMdestroy |
856 |
|
|
|
857 |
|
|
|
858 |
|
|
subroutine deleteInteractions() |
859 |
|
|
MnM_Map => MnMdestroy(MnM_Map) |
860 |
|
|
return |
861 |
|
|
end subroutine deleteInteractions |
862 |
|
|
|
863 |
chuckv |
1173 |
|
864 |
|
|
subroutine getLJfunc(r, myPot, myDeriv) |
865 |
|
|
|
866 |
|
|
real(kind=dp), intent(in) :: r |
867 |
|
|
real(kind=dp), intent(inout) :: myPot, myDeriv |
868 |
|
|
real(kind=dp) :: ri, ri2, ri6, ri7, ri12, ri13 |
869 |
|
|
real(kind=dp) :: a, b, c, d, dx |
870 |
|
|
integer :: j |
871 |
|
|
|
872 |
|
|
ri = 1.0_DP / r |
873 |
|
|
ri2 = ri*ri |
874 |
|
|
ri6 = ri2*ri2*ri2 |
875 |
|
|
ri7 = ri6*ri |
876 |
|
|
ri12 = ri6*ri6 |
877 |
|
|
ri13 = ri12*ri |
878 |
|
|
|
879 |
|
|
myPot = 4.0_DP * (ri12 - ri6) |
880 |
|
|
myDeriv = 24.0_DP * (ri7 - 2.0_DP * ri13) |
881 |
|
|
|
882 |
|
|
return |
883 |
|
|
end subroutine getLJfunc |
884 |
|
|
|
885 |
|
|
subroutine getSoftFunc(r, myPot, myDeriv) |
886 |
|
|
|
887 |
|
|
real(kind=dp), intent(in) :: r |
888 |
|
|
real(kind=dp), intent(inout) :: myPot, myDeriv |
889 |
|
|
real(kind=dp) :: ri, ri2, ri6, ri7 |
890 |
|
|
real(kind=dp) :: a, b, c, d, dx |
891 |
|
|
integer :: j |
892 |
|
|
|
893 |
|
|
ri = 1.0_DP / r |
894 |
|
|
ri2 = ri*ri |
895 |
|
|
ri6 = ri2*ri2*ri2 |
896 |
|
|
ri7 = ri6*ri |
897 |
|
|
myPot = 4.0_DP * (ri6) |
898 |
|
|
myDeriv = - 24.0_DP * ri7 |
899 |
|
|
|
900 |
|
|
return |
901 |
|
|
end subroutine getSoftFunc |
902 |
|
|
|
903 |
|
|
|
904 |
|
|
|
905 |
|
|
|
906 |
|
|
|
907 |
|
|
|
908 |
chuckv |
1168 |
end module MetalNonMetal |