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See the above copyright notice for more information. // // Copyright 2014 National Technology & Engineering Solutions of Sandia, LLC (NTESS). // Copyright 2014 UT-Battelle, LLC. // Copyright 2014 Los Alamos National Security. // // Under the terms of Contract DE-NA0003525 with NTESS, // the U.S. Government retains certain rights in this software. // // Under the terms of Contract DE-AC52-06NA25396 with Los Alamos National // Laboratory (LANL), the U.S. Government retains certain rights in // this software. //============================================================================ // Copyright (c) 2016, Los Alamos National Security, LLC // All rights reserved. // // Copyright 2016. 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Redistributions in binary form must reproduce the above copyright notice, // this list of conditions and the following disclaimer in the documentation // and/or other materials provided with the distribution. // 3. Neither the name of Los Alamos National Security, LLC, Los Alamos // National Laboratory, LANL, the U.S. Government, nor the names of its // contributors may be used to endorse or promote products derived from // this software without specific prior written permission. // // THIS SOFTWARE IS PROVIDED BY LOS ALAMOS NATIONAL SECURITY, LLC AND // CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, // BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS // FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL LOS ALAMOS // NATIONAL SECURITY, LLC OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, // INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, // BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF // USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF // THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. //============================================================================ #ifndef vtkm_worklet_cosmotools_compute_potential_neighbors_h #define vtkm_worklet_cosmotools_compute_potential_neighbors_h #include namespace vtkm { namespace worklet { namespace cosmotools { // Worklet for computing the potential for a particle using 27 neighbor bins template class ComputePotentialNeighbors : public vtkm::worklet::WorkletMapField { public: struct TagType : vtkm::ListTagBase { }; using ControlSignature = void(FieldIn index, // (input) particle Id WholeArrayIn binId, // (input) bin id for this particle WholeArrayIn partId, // (input) first particle in halo WholeArrayIn xLoc, // (input) x location in domain WholeArrayIn yLoc, // (input) y location in domain WholeArrayIn zLoc, // (input) z location in domain WholeArrayIn firstParticleId, // (input) first particle in halo WholeArrayIn lastParticleId, // (input) last particle in halo FieldOut potential); // (output) bin ID using ExecutionSignature = _9(_1, _2, _3, _4, _5, _6, _7, _8); using InputDomain = _1; vtkm::Id xNum, yNum, zNum; vtkm::Id NUM_NEIGHBORS; T mass; // Constructor VTKM_EXEC_CONT ComputePotentialNeighbors(const vtkm::Id XNum, const vtkm::Id YNum, const vtkm::Id ZNum, const vtkm::Id NumNeighbors, T Mass) : xNum(XNum) , yNum(YNum) , zNum(ZNum) , NUM_NEIGHBORS(NumNeighbors) , mass(Mass) { } template VTKM_EXEC T operator()(const vtkm::Id& i, const InIdPortalType& binId, const InIdPortalType& partId, const InFieldPortalType& xLoc, const InFieldPortalType& yLoc, const InFieldPortalType& zLoc, const InVectorPortalType& firstParticleId, const InVectorPortalType& lastParticleId) const { vtkm::Id iId = partId.Get(i); vtkm::Id ibin = binId.Get(i); const vtkm::Id yVal = (ibin / xNum) % yNum; const vtkm::Id zVal = ibin / (xNum * yNum); vtkm::Id cnt = 0; T potential = 0.0f; // Iterate on the 9 sets of neighbor particles for (vtkm::Id z = zVal - 1; z <= zVal + 1; z++) { for (vtkm::Id y = yVal - 1; y <= yVal + 1; y++) { vtkm::Id firstBinId = NUM_NEIGHBORS * i + cnt; vtkm::Id startParticle = firstParticleId.Get(firstBinId); vtkm::Id endParticle = lastParticleId.Get(firstBinId); for (vtkm::Id j = startParticle; j < endParticle; j++) { vtkm::Id jId = partId.Get(j); T xDist = xLoc.Get(iId) - xLoc.Get(jId); T yDist = yLoc.Get(iId) - yLoc.Get(jId); T zDist = zLoc.Get(iId) - zLoc.Get(jId); T r = vtkm::Sqrt((xDist * xDist) + (yDist * yDist) + (zDist * zDist)); if ((i != j) && (fabs(r) > 0.00000000001f)) potential -= mass / r; } cnt++; } } return potential; } }; // ComputePotentialNeighbors } } } #endif