[80a6a52] | 1 | #ifndef __GEOWORLD_CONFIGURATION_INTERFACES_H__
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| 2 | #define __GEOWORLD_CONFIGURATION_INTERFACES_H__
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| 3 |
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| 4 | #include <mars_util.h>
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| 5 | #include <string>
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| 6 |
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| 7 | #include "linalgadapt.h"
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| 8 | #include "gwtypes.h"
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| 9 | #include "mindbtypes.h"
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| 10 |
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| 11 | namespace geoworld
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| 12 | {
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[4962c49] | 13 | struct MetaConfig
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| 14 | {
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| 15 | struct
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| 16 | {
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| 17 | std::string genesis, gmfactories, depsynth, minerals, classes;
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| 18 | } resources;
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| 19 | };
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| 20 |
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| 21 | class IMetaConfigReader
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| 22 | {
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| 23 | public:
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| 24 | virtual bool load (MetaConfig & cfg) = 0;
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| 25 | };
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| 26 |
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[80a6a52] | 27 | struct SynthesisSessionConfig
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| 28 | {
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| 29 | struct
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| 30 | {
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| 31 | unsigned short count;
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| 32 | mars::RangeX< unsigned short > morphcount;
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| 33 | } passes;
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| 34 | struct
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| 35 | {
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| 36 | unsigned short layercount;
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| 37 | mars::RangeX< unsigned short > classcount;
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| 38 | } geohost;
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| 39 | struct
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| 40 | {
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| 41 | unsigned short morphcount;
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| 42 | unsigned short lod;
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| 43 | float coarseness;
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| 44 | } macro;
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| 45 | unsigned short tiledim;
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| 46 | };
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| 47 |
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| 48 | class ISynthesisSessionConfigReader
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| 49 | {
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| 50 | public:
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| 51 | virtual bool load (SynthesisSessionConfig & cfg) = 0;
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| 52 | };
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| 53 |
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| 54 | struct DepositSynthesizerSettings
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| 55 | {
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| 56 | struct
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| 57 | {
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| 58 | size_t count; // Number of layers in the strata
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| 59 | mars::RangeX< size_t > classes; // Range of how many different mineral classes to synthesize in the world
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| 60 | mars::Range< unsigned char > silica; // Range of how much silica mineral classifications should have
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| 61 | float coarseness; // Midpoint displacement noise level for generating strata
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| 62 | struct
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| 63 | {
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| 64 | GeoHeightMap::Precision base; // The base thickness of each layer of strata (in plaxels)
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| 65 | float curve; // Value between (0, 1] that determines how quickly strata thickness grows from layer to layer deep
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| 66 | float scale; // A scaling factor for layer thickness over and above the base
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| 67 | } thickness;
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| 68 | } layers;
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| 69 | struct
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| 70 | {
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| 71 | float frequency; // Approximate number of minerals per 1000 pixels cubed per pass, actual synthesis may be more due to nested/hosted minerals
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| 72 | mars::RangeX< unsigned long > neighborhood; // Minimum/maximum radius that a neighborhood of rock is sampled for determining appropriate minerals to synthesize at that location.
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| 73 | struct
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| 74 | {
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| 75 | float curve; // Value between (0, 1] that determines how quickly mineral abundance increases
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| 76 | } abundance;
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| 77 | struct
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| 78 | {
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| 79 | float curve, // Value between (0, 1] that determines how quickly deposit size grows from the minimum
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| 80 | base; // The minimum deposit size
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| 81 |
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| 82 | struct
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| 83 | {
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| 84 | mars::RangeX< float > deviation; // Amount of sphere-pack deviation along the vein
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| 85 | mars::RangeX< unsigned short > detail; // Min/max of sphere-pack sub-division iterations, larger means very crooked veins
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| 86 | float erratic; // Degree of erratic angular placement of spheres
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| 87 | } vein;
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| 88 | struct
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| 89 | {
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| 90 | mars::RangeX< float > orthogonality; // RangeX between 0.0 and 1.0 determining the degree of alignment with the vertical axis
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| 91 | mars::RangeX< float > deviation; // Amount of sphere-pack deviation along the dike
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| 92 | } dike;
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| 93 | struct
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| 94 | {
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| 95 | mars::RangeX< float > tail; // Minimum/maximum size of the laccolith's tail (like the tail of an upside down teardrop) relative to deposit size
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| 96 | } laccolith;
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| 97 |
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| 98 | mars::RangeX< size_t > nesting; // Minimum/maximum number of nested hosted minerals to allow
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| 99 | } deposit;
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| 100 |
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| 101 | struct
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| 102 | {
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| 103 | WorldUnit
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| 104 | limit,
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| 105 | minimum,
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| 106 | maxtier;
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| 107 | mars::RangeX< float >
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| 108 | sizeflux;
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| 109 | mars::RangeX< unsigned short >
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| 110 | kidflux;
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| 111 | } spherepack;
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| 112 | } minerals;
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| 113 | };
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| 114 |
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| 115 | class IDepositSynthConfigReader
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| 116 | {
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| 117 | public:
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| 118 | virtual bool load (DepositSynthesizerSettings & settings) = 0;
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| 119 | };
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| 120 |
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| 121 | // TODO: Support more detail
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| 122 | class GMRegistryException : public std::exception
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| 123 | {
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| 124 | private:
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| 125 | std::string _msg;
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| 126 |
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| 127 | public:
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| 128 | GMRegistryException(const std::string & sMsg)
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| 129 | : _msg(sMsg) {}
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| 130 |
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| 131 | virtual const char * what() const noexcept { return _msg.c_str(); }
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| 132 | };
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| 133 | class GMMalformedConfigEx : public GMRegistryException
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| 134 | {
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| 135 | public:
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| 136 | GMMalformedConfigEx(const std::string & sMsg)
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| 137 | : GMRegistryException(sMsg) {}
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| 138 | };
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| 139 | class GMInvalidFactoryConfigEx : public GMRegistryException
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| 140 | {
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| 141 | public:
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| 142 | GMInvalidFactoryConfigEx (const std::string & sMsg = "Invalid factory configuration")
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| 143 | : GMRegistryException(sMsg) {}
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| 144 | };
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| 145 | class GMInvalidPropertyEx : public GMInvalidFactoryConfigEx
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| 146 | {
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| 147 | public:
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| 148 | std::string key;
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| 149 |
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| 150 | GMInvalidPropertyEx (const std::string & sKeyProp, const std::string & sMsg = "Invalid property")
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| 151 | : key(sKeyProp), GMInvalidFactoryConfigEx(sKeyProp + ": " + sMsg) {}
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| 152 | };
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| 153 | class GMIndexOutOfBoundsEx : public GMInvalidFactoryConfigEx
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| 154 | {
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| 155 | public:
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| 156 | size_t index;
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| 157 |
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| 158 | GMIndexOutOfBoundsEx (const size_t & nIdx, const std::string & sMsg = "Index out of bounds")
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| 159 | : index(nIdx), GMInvalidFactoryConfigEx(sMsg) {}
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| 160 | };
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| 161 |
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| 162 | class IConfigSection;
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| 163 | class IConfigSequence;
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| 164 |
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| 165 | class IConfigValue
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| 166 | {
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| 167 | protected:
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| 168 | template< typename T, typename M >
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| 169 | inline mars::RangeX< T > convertRange (const mars::RangeX< M > & rngFrom) const
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| 170 | {
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| 171 | return mars::RangeX< T > (
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| 172 | static_cast< T > (rngFrom.minimum),
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| 173 | static_cast< T > (rngFrom.maximum),
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| 174 | static_cast< T > (rngFrom.step)
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| 175 | );
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| 176 | }
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| 177 |
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| 178 | virtual mars::RangeX< double > toDoubleRange () const {
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| 179 | auto dummy = mars::RangeX< double >();
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| 180 | return toRange(dummy);
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| 181 | }
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| 182 | virtual mars::RangeX< long > toLongRange () const {
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| 183 | auto dummy = mars::RangeX< long >();
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| 184 | return toRange(dummy);
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| 185 | }
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| 186 |
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| 187 | virtual mars::RangeX< double > & toRange (mars::RangeX< double > & out) const = 0;
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| 188 | virtual mars::RangeX< long > & toRange (mars::RangeX< long > & out) const = 0;
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| 189 |
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| 190 | public:
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| 191 | virtual IConfigSection * operator >> (IConfigSection * & pSection) const = 0;
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| 192 | virtual IConfigSequence * operator >> (IConfigSequence * & pSequence) const = 0;
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| 193 | virtual std::string & operator >> (std::string & out) const = 0;
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| 194 | virtual float & operator >> (float & out) const = 0;
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| 195 | virtual bool & operator >> (bool & out) const = 0;
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| 196 | virtual unsigned int & operator >> (unsigned int & out) const = 0;
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| 197 | virtual unsigned short & operator >> (unsigned short & out) const = 0;
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| 198 |
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| 199 | virtual VectorTag< GeoHeightMap::Precision >::V2 & operator >> (VectorTag< GeoHeightMap::Precision >::V2 & out) const = 0;
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| 200 | virtual VectorTag< GeoHeightMap::Precision >::V3 & operator >> (VectorTag< GeoHeightMap::Precision >::V3 & out) const = 0;
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| 201 |
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| 202 | mars::RangeX< long > & operator >> (mars::RangeX< long > & out) const
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| 203 | { return out = toRange(out); }
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| 204 | mars::RangeX< double > & operator >> (mars::RangeX< double > & out) const
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| 205 | { return out = toRange(out); }
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| 206 | mars::RangeX< float > & operator >> (mars::RangeX< float > & out) const
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| 207 | { return out = convertRange< float > (toDoubleRange()); }
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| 208 |
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| 209 | mars::RangeX< int > & operator >> (mars::RangeX< int > & out) const
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| 210 | { return out = convertRange< int > (toLongRange()); }
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| 211 | mars::RangeX< short > & operator >> (mars::RangeX< short > & out) const
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| 212 | { return out = convertRange< short > (toLongRange()); }
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| 213 | mars::RangeX< unsigned int > & operator >> (mars::RangeX< unsigned int > & out) const
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| 214 | { return out = convertRange< unsigned int > (toLongRange()); }
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| 215 | mars::RangeX< unsigned short > & operator >> (mars::RangeX< unsigned short > & out) const
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| 216 | { return out = convertRange< unsigned short > (toLongRange()); }
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| 217 | };
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| 218 |
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| 219 | template< typename K >
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| 220 | class TemplConfigAggregate
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| 221 | {
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| 222 | private:
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| 223 | template< typename T, typename M >
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| 224 | mars::RangeX< T > getrng(const K & key, const T, const M)
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| 225 | {
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| 226 | mars::RangeX< M > rng;
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| 227 |
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| 228 | *operator [] (key) >> rng;
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| 229 | return mars::RangeX< T > (static_cast< T > (rng.minimum), static_cast< T > (rng.maximum));
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| 230 | }
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| 231 |
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| 232 | public:
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| 233 | virtual const IConfigValue * operator [] (const K & key) const = 0;
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| 234 |
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| 235 | template< typename T >
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| 236 | T get(const K & key, T * = NULL)
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| 237 | {
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| 238 | T val;
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| 239 |
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| 240 | return *operator [] (key) >> val;
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| 241 | }
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| 242 | std::string getstr(const K & key)
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| 243 | {
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| 244 | std::string str;
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| 245 | return *operator [] (key) >> str;
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| 246 | }
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| 247 | IConfigSection * getmap(const K & key)
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| 248 | {
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| 249 | IConfigSection * pSection;
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| 250 | return *operator [] (key) >> pSection;
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| 251 | }
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| 252 | IConfigSequence * getseq(const K & key)
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| 253 | {
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| 254 | IConfigSequence * pSequence;
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| 255 | return *operator [] (key) >> pSequence;
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| 256 | }
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| 257 |
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| 258 | inline mars::RangeX< float > getrngf(const K & key)
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| 259 | { return getrng(key, 0.0f, 0.0); }
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| 260 | inline mars::RangeX< double > getrngd(const K & key)
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| 261 | { return getrng(key, 0.0, 0.0); }
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| 262 | inline mars::RangeX< short > getrngs(const K & key)
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| 263 | { return getrng(key, static_cast <short> (0), 0L); }
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| 264 | inline mars::RangeX< int > getrngi(const K & key)
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| 265 | { return getrng(key, 0, 0L); }
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| 266 | inline mars::RangeX< long > getrngl(const K & key)
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| 267 | { return getrng(key, 0L, 0L); }
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| 268 | };
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| 269 |
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| 270 | class IConfigSection : public TemplConfigAggregate< std::string > {};
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| 271 | class IConfigSequence : public TemplConfigAggregate< size_t > {};
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| 272 |
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| 273 | class IConfigFactoryBase
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| 274 | {
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| 275 | public:
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| 276 | const std::string factory, nom;
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| 277 |
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| 278 | IConfigFactoryBase(const std::string & factory)
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| 279 | : factory(factory), nom(factory) {}
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| 280 | IConfigFactoryBase(const std::string & factory, const std::string & name)
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| 281 | : factory(factory), nom(name) {}
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| 282 |
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| 283 | virtual IConfigSection * getSection() = 0;
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| 284 | virtual ~IConfigFactoryBase() = 0;
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| 285 | };
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| 286 |
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| 287 | enum GeoTemplatePhase
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| 288 | { GTP_Pre = 0, GTP_Post = 1, CountGTP = 2 };
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| 289 |
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| 290 | class IConfigGMFactory : public IConfigFactoryBase
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| 291 | {
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| 292 | public:
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| 293 | const struct Settings
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| 294 | {
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| 295 | float frequency;
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| 296 | } settings;
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| 297 |
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| 298 | IConfigGMFactory(const std::string & factory, const Settings & settings)
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| 299 | : IConfigFactoryBase(factory), settings(settings) {}
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| 300 | IConfigGMFactory(const std::string & factory, const std::string & name, const Settings & settings)
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| 301 | : IConfigFactoryBase(factory, name), settings(settings) {}
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| 302 | };
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| 303 |
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| 304 | class IConfigGTFactory : public IConfigFactoryBase
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| 305 | {
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| 306 | public:
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| 307 | const struct Settings
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| 308 | {
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| 309 | GeoTemplatePhase phase;
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| 310 | } settings;
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| 311 |
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| 312 | IConfigGTFactory(const std::string & factory, const Settings & settings)
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| 313 | : IConfigFactoryBase(factory), settings(settings) {}
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| 314 | IConfigGTFactory(const std::string & factory, const std::string & name, const Settings & settings)
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| 315 | : IConfigFactoryBase(factory, name), settings(settings) {}
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| 316 | };
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| 317 |
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| 318 | class IFactoryConfigReader
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| 319 | {
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| 320 | public:
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| 321 | virtual IConfigFactoryBase * readNext () = 0;
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| 322 | };
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| 323 |
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| 324 | }
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| 325 |
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| 326 | #endif
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