[de0af2] | 1 | /*
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| 2 | * ExportGraph_ToJobs.hpp
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| 3 | *
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| 4 | * Created on: 08.03.2012
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| 5 | * Author: heber
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| 6 | */
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| 7 |
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| 8 | #ifndef EXPORTGRAPH_TOJOBS_HPP_
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| 9 | #define EXPORTGRAPH_TOJOBS_HPP_
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| 10 |
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| 11 | // include config.h
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| 12 | #ifdef HAVE_CONFIG_H
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| 13 | #include <config.h>
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| 14 | #endif
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| 15 |
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[8652a30] | 16 | #include <string>
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| 17 | #include <vector>
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| 18 |
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| 19 | #include "Fragmentation/HydrogenSaturation_enum.hpp"
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[de0af2] | 20 | #include "Fragmentation/Exporters/ExportGraph.hpp"
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[b839fb] | 21 | #include "Fragmentation/Summation/SetValues/SamplingGridProperties.hpp"
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[160ad7] | 22 | #include "LinearAlgebra/Vector.hpp"
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| 23 |
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| 24 | class ExportGraph_ToJobsTest;
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[de0af2] | 25 |
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| 26 | /** ExportGraph_ToJobs implements an ExportGraph by sending the created
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| 27 | * configurations of fragmentary systems as jobs to a server.
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| 28 | *
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| 29 | */
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| 30 | class ExportGraph_ToJobs : public ExportGraph
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| 31 | {
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[160ad7] | 32 | //!> grant unit test access
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| 33 | friend class ExportGraph_ToJobsTest;
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[de0af2] | 34 | public:
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[ac9ca4] | 35 | /** Constructor for ExportGraph_ToJobs.
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| 36 | *
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| 37 | * Sets default level.
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| 38 | *
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| 39 | * \param _graph Graph with all KeySet's
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| 40 | * \param _treatment whether hydrogen is excluded in the _graph or not
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| 41 | * \param _saturation whether we saturate dangling bonds or not
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[98a293b] | 42 | * \param _globalsaturationpositions possibly empty map with global information
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| 43 | * where to place saturation hydrogens to fulfill consistency principle
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[ac9ca4] | 44 | */
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[8652a30] | 45 | ExportGraph_ToJobs(
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| 46 | const Graph &_graph,
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| 47 | const enum HydrogenTreatment _treatment,
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[98a293b] | 48 | const enum HydrogenSaturation _saturation,
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| 49 | const SaturatedFragment::GlobalSaturationPositions_t &_globalsaturationpositions);
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[8652a30] | 50 | virtual ~ExportGraph_ToJobs();
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[de0af2] | 51 |
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[c24071] | 52 | bool operator()();
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[8652a30] | 53 |
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[160ad7] | 54 | /** Sets the level for the sampling of the density.
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| 55 | *
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| 56 | * \param _level level to set
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| 57 | */
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| 58 | void setLevel(const size_t _level) { level = _level; }
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| 59 |
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| 60 | /** Sets how far apart discrete points may be at most per axis.
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[ac9ca4] | 61 | *
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[160ad7] | 62 | * \param _max_meshwidth maximum allowed mesh width.
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[ac9ca4] | 63 | */
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[160ad7] | 64 | void setMaximumMeshWidth(const double _max_meshwidth) { max_meshwidth = _max_meshwidth; }
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[ac9ca4] | 65 |
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[b839fb] | 66 | /** Helper to get the global domain grid from the current simulation box.
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| 67 | *
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| 68 | * Grid extensions are obtained from World::getDomain(). Level from parameter.
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| 69 | *
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| 70 | * \param _level level for this SamplingGrid
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| 71 | * \return domain grid as SamplingGridProperties
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| 72 | */
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| 73 | static SamplingGridProperties getDomainGrid(const int _level);
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| 74 |
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[160ad7] | 75 | private:
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| 76 |
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| 77 | /** Helper function to get the discrete extent of the grid that
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| 78 | * captures the whole of the fragment inside \a _minmax, and some
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| 79 | * additional boundary \a _minimum_empty_boundary for a given
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| 80 | * domain \a _domain with some grid level. If the fragment is larger than
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| 81 | * the empty boundary, we make the small fragment grid at most three times
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| 82 | * the extent of the fragment.
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| 83 | *
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| 84 | * We need to maintain the following properties:
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| 85 | * -# the fragment grid's begin and end need to reside (exactly) on grid points
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| 86 | * of the global \a _domain
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| 87 | * -# the length of the fragment grid in \a _domain's deltas needs to be a
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| 88 | * power of 2.
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| 89 | *
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| 90 | * In order to achieve these, we use the center of the fragment obtained from
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| 91 | * its extensions in \a _minmax and convert it to the next lower and upper grid
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| 92 | * points on \a _domain. For increasing powers of 2 we check the extent of the
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| 93 | * gridpoints by going half of the gridpoints back and forth relative to these
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| 94 | * center grid points. If their length relative to \a _domain's delta is
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| 95 | * sufficient to capture the desired extent of fragment, namely \a _minmax
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| 96 | * including \a _minimum_empty_boundary, we are done. We need to do this
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| 97 | * iteratively, as the fragment grid may exceed \a _domain's begin or end
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| 98 | * and shifting is required.
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| 99 | *
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| 100 | * \param _minmax minimum and maximum components of fragment's bounding box
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| 101 | * \param _domain grid with begin and end components and grid level
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| 102 | * \param _minimum_empty_boundary additional empty boundary around fragment
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| 103 | * \return grid with begin and end points and and grid level to have same spacing as domain
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| 104 | */
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| 105 | static SamplingGridProperties getGridExtentsForGivenBoundingBox(
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| 106 | const std::pair<Vector, Vector> &_minmax,
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| 107 | const SamplingGridProperties &_domain,
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| 108 | const double & _minimum_empty_boundary);
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| 109 |
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| 110 | /** Helper function to calculate the required grid level for a fragment \a _grid
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| 111 | * such that is discretization mesh width is below the acceptable \a _max_meshwidth.
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| 112 | *
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| 113 | * \param _grid grid properties of the fragment, sets its level on return
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| 114 | * \param _max_meshwidth uppermost acceptable mesh width
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| 115 | */
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| 116 | static void setAcceptableFragmentLevel(
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| 117 | SamplingGridProperties &_grid,
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| 118 | const double &_max_meshwidth);
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| 119 |
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| 120 | //>! log of two
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| 121 | static const double log_two;
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| 122 |
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[ac9ca4] | 123 | private:
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| 124 | //!> resolution of sampled electron density as \f$2^{\mathrm{level}}\f$
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| 125 | size_t level;
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[160ad7] | 126 | //!> maximum allowed mesh width, i.e. discrete points may be at most that far part per axis
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| 127 | double max_meshwidth;
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| 128 | //!> desired minimum empty boundary around the fragment
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| 129 | const double minimum_empty_boundary;
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[de0af2] | 130 | };
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| 131 |
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| 132 | #endif /* EXPORTGRAPH_TOJOBS_HPP_ */
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