1 | #include "winderode.h"
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2 |
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3 | #include <omp.h>
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4 |
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5 | #include "geoworld.h"
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6 |
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7 | namespace geoworld
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8 | {
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9 | void WindErosionGM::init(SynthesisSession & manager, const IGeoWorldAccessor & accessor, const unsigned short nMaxWidth, const unsigned short nMaxHeight)
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10 | {
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11 | _psfDensity = accessor.queryField(FT_Density);
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12 | }
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13 |
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14 | void WindErosionGM::doMorph( LockedGWSection & section ) const
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15 | {
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16 | using namespace mars;
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17 | using namespace geoworld;
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18 |
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19 | LockedGWSection::View
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20 | * pView = section.createView(section.bbox.left, section.bbox.top, section.bbox.right, section.bbox.bottom);
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21 |
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22 | ScalarField< RationalType >
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23 | hmf(pView->width, pView->height, Wrap),
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24 | hmdf(pView->width, pView->height, Wrap);
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25 |
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26 | const RangeX< GeoHeightMap::Precision > rnghm = pView->getHeightMap() ->range();
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27 | GaussianFn< RationalType >
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28 | gauss(1.0, 1.0, rnghm.delta * _frDecayLevel, 0);
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29 | signed int i, j, k, g;
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30 | VectorTag< RationalType >::V2 vgr;
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31 |
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32 | ptr< NoiseGen::NoiseMap > pnm = _ngen.compute(pView->width, pView->height);
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33 | const NoiseGen::NoiseMap & nm = *pnm;
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34 | const RangeX< NoiseGen::NoiseMap::Precision > rngnm = nm.range();
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35 | const signed int len = static_cast< signed int > (pView->getHeightMap() ->length); // It's ok, HeightMap.length is never more than the positive maximum of a signed-integer
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36 |
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37 | // Copy integral-precision field to rational-precision field
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38 | hmf << *pView->getHeightMap();
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39 |
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40 | for (unsigned int c = 0; c < _iterations; ++c)
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41 | {
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42 | for (j = 0; j < hmf.height; ++j)
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43 | for (i = 0; i < hmf.width; ++i)
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44 | {
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45 | const RationalType mh = hmf.mean5(i, j);
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46 | // This ensures that pits and gullies are ignored
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47 | if (mh - hmf(i, j) < 0)
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48 | {
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49 | const RationalType // Get the noise map ratio at i,j as a ratio to the noise map range
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50 | nr = static_cast< RationalType > ((nm(i,j) - rngnm.minimum) / rngnm.delta);
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51 |
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52 | // Obtain gradient into vgr, sampling distance of 5
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53 | grad5(hmf, i, j, vgr);
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54 |
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55 | const RationalType
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56 | // Sample density half-way down at current spot
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57 | fp = static_cast< RationalType > (1) /
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58 | static_cast< RationalType > (
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59 | (*_psfDensity) (i, j, static_cast< GeoHeightMap::Precision > (hmf(i,j) * 0.5f))
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60 | ),
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61 | pgr = MAG(vgr),
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62 |
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63 | // Amount of material to remove
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64 | rdh = pgr * fp * nr;
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65 |
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66 | // If the displacement is zero or the volume of material to move is zero then skip
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67 | if (rdh > 0.0)
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68 | {
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69 | // Remove a smooth pile of material from the source site
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70 | for (k = i - 2; k <= i + 2; ++k)
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71 | for (g = j - 2; g <= j + 2; ++g)
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72 | hmdf(k, g) -= gaussblur(k - i, g - j) * rdh;
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73 |
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74 | const RationalType
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75 | rddh = rdh * gauss.f(pgr); // TODO: Export gauss fn to pre-init tables state
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76 |
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77 | // Scale-up the displacement by a random amount, makes a very pleasing result
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78 | vgr *= RANDf(mh) + static_cast< RationalType > (1);
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79 |
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80 | const signed int
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81 | x0 = i - RNDi(vgr.x),
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82 | y0 = j - RNDi(vgr.y);
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83 |
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84 | // Deposits "alluvium" into a smooth pile
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85 | for (k = x0 - 2; k <= x0 + 2; ++k)
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86 | for (g = y0 - 2; g <= y0 + 2; ++g)
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87 | hmdf(k, g) += gaussblur(k - x0, g - y0) * rddh;
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88 | }
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89 | }
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90 | }
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91 |
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92 | hmf += hmdf;
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93 | hmdf.clear();
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94 | }
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95 |
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96 | if (_bSmoothPost)
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97 | {
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98 | #pragma omp parallel for private(i, j)
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99 | for (j = 0; j < hmf.height; ++j)
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100 | for (i = 0; i < hmf.width; ++i)
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101 | (*pView->getHeightMap())(i, j) = static_cast< GeoHeightMap::Precision > (
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102 | hmf(i,j) + (
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103 | static_cast< RationalType > (hmf.meanVN(i, j) - hmf(i, j))
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104 | )
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105 | * (nm(i, j) - rngnm.minimum) / rngnm.delta
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106 | );
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107 | } else
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108 | *pView->getHeightMap() << hmf;
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109 |
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110 | section.releaseView(pView);
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111 | }
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112 |
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113 | WindErosionGM::~WindErosionGM()
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114 | {
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115 | // HACK: Use releaseField
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116 | delete _psfDensity;
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117 | }
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118 |
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119 | WindErosionGM::WindErosionGM( const unsigned int nIterations /*= 8*/, const float frDecayLevel /*= 0.1f*/, const bool bSmoothPost /*= true */ ) : _iterations(nIterations), _frDecayLevel(frDecayLevel), _ngen(0.3f, 0.5f), _bSmoothPost(bSmoothPost), _pAccessor(NULL), _psfDensity(NULL)
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120 | {
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121 | using namespace mars;
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122 | GaussianFn< RationalType > gauss(
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123 | static_cast< RationalType > (1),
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124 | static_cast< RationalType > (1) / sqrt (
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125 | static_cast< RationalType > (2) * static_cast< RationalType > (PI)
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126 | ),
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127 | 1,
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128 | 0
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129 | ); // TODO: Export to pre-init tables API
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130 |
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131 | for (signed int x = -2; x <= +2; ++x)
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132 | for (signed int y = -2; y <= +2; ++y)
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133 | gaussblur(x, y) = gauss.f(static_cast< RationalType > (x), static_cast< RationalType > (y));
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134 | }
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135 |
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136 | GeoMorph * WindErosionGTFactory::createRandomInstance() const
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137 | { return new WindErosionGM(_mmnIterations.next(), _frDecayLevel, _bSmoothPost); }
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138 |
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139 | void WindErosionGTFactory::configure( IConfigGTFactory * pFactoryConfig, const IConfigGTFactory::Settings & settings )
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140 | {
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141 | const geoworld::IConfigSection & section = *pFactoryConfig->getSection();
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142 |
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143 | *section["iterations"] >> _mmnIterations;
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144 | *section["decay"] >> _frDecayLevel;
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145 | *section["smooth"] >> _bSmoothPost;
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146 | }
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147 | }
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