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#include "utils/MemoryUtils.hpp" |
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#include "applications/hydrodynamics/HydrodynamicsModel.hpp" |
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namespace oopse { |
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< |
|
47 |
< |
CompositeShape::~CompositeShape() { |
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> |
|
47 |
> |
CompositeShape::~CompositeShape() { |
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MemoryUtils::deletePointers(shapes_); |
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< |
} |
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< |
bool CompositeShape::isInterior(Vector3d pos) { |
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> |
} |
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> |
bool CompositeShape::isInterior(Vector3d pos) { |
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bool result = false; |
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std::vector<Shape*>::iterator iter; |
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for (iter = shapes_.begin(); iter != shapes_.end(); ++ iter) { |
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< |
if ((*iter)->isInterior(pos)) { |
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< |
result = true; |
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< |
break; |
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< |
} |
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> |
if ((*iter)->isInterior(pos)) { |
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> |
result = true; |
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> |
break; |
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> |
} |
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|
} |
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< |
|
59 |
> |
|
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|
return result; |
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< |
} |
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< |
|
63 |
< |
template<class Cont, class Predict> |
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< |
void swap_if(Cont& b1, Cont& b2, Predict predict) { |
61 |
> |
} |
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> |
|
63 |
> |
template<class Cont, class Predict> |
64 |
> |
void swap_if(Cont& b1, Cont& b2, Predict predict) { |
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unsigned int size = b1.size(); |
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assert(size == b2.size()); |
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for (unsigned int i = 0 ; i < size; ++i) { |
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if (predict(b1[i], b2[i])) |
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< |
std::swap(b1[i], b2[i]); |
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> |
if (predict(b1[i], b2[i])) |
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> |
std::swap(b1[i], b2[i]); |
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} |
71 |
< |
|
72 |
< |
} |
73 |
< |
|
74 |
< |
std::pair<Vector3d, Vector3d> CompositeShape::getBox() { |
71 |
> |
|
72 |
> |
} |
73 |
> |
|
74 |
> |
std::pair<Vector3d, Vector3d> CompositeShape::getBoundingBox() { |
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|
std::vector<Shape*>::iterator iter = shapes_.begin(); |
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< |
std::pair<Vector3d, Vector3d> boundary = (*iter)->getBox(); |
76 |
> |
std::pair<Vector3d, Vector3d> boundary = (*iter)->getBoundingBox(); |
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for (++iter; iter != shapes_.end(); ++iter) { |
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< |
std::pair<Vector3d, Vector3d> currBoundary = (*iter)->getBox(); |
79 |
< |
swap_if(boundary.first, currBoundary.first, std::less<double>()); |
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< |
swap_if(boundary.second, currBoundary.second, std::greater<double>()); |
78 |
> |
std::pair<Vector3d, Vector3d> currBoundary = (*iter)->getBoundingBox(); |
79 |
> |
swap_if(boundary.first, currBoundary.first, std::greater<RealType>()); |
80 |
> |
swap_if(boundary.second, currBoundary.second, std::less<RealType>()); |
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} |
82 |
< |
|
82 |
> |
|
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|
return boundary; |
84 |
+ |
} |
85 |
+ |
|
86 |
+ |
HydroProp* CompositeShape::getHydroProp(RealType viscosity, RealType temperature) { |
87 |
+ |
HydroProp* props; |
88 |
+ |
props->setCOR(V3Zero); |
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+ |
sprintf( painCave.errMsg, |
90 |
+ |
"CompositeShape was asked to return an analytic HydroProps.\n"); |
91 |
+ |
painCave.severity = OOPSE_ERROR; |
92 |
+ |
painCave.isFatal = 1; |
93 |
+ |
simError(); |
94 |
+ |
return props; |
95 |
+ |
} |
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|
} |
85 |
– |
|
86 |
– |
bool CompositeShape::calcHydroProps(HydrodynamicsModel* model, double viscosity, double temperature) { |
87 |
– |
return model->calcHydroProps(this, viscosity, temperature); |
88 |
– |
} |
89 |
– |
|
90 |
– |
} |