XRN_XRM_SO3.cpp
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36 
37 /* Author: Andreas Orthey */
38 
39 #include <ompl/multilevel/datastructures/projections/XRN_XRM_SO3.h>
40 #include <ompl/base/spaces/SO3StateSpace.h>
41 #include <ompl/base/spaces/RealVectorStateSpace.h>
42 
43 #include <ompl/util/Exception.h>
44 
45 using namespace ompl::multilevel;
46 
47 Projection_SO3RN_SO3RM::Projection_SO3RN_SO3RM(ompl::base::StateSpacePtr BundleSpace,
48  ompl::base::StateSpacePtr BaseSpace)
49  : BaseT(BundleSpace, BaseSpace)
50 {
51  setType(PROJECTION_SO3RN_SO3RM);
52 }
53 
54 void Projection_SO3RN_SO3RM::project(const ompl::base::State *xBundle, ompl::base::State *xBase) const
55 {
56  const auto *xBundle_SO3 = xBundle->as<base::CompoundState>()->as<base::SO3StateSpace::StateType>(0);
57  const auto *xBundle_RN = xBundle->as<base::CompoundState>()->as<base::RealVectorStateSpace::StateType>(1);
58 
59  auto *xBase_SO3 = xBase->as<base::CompoundState>()->as<base::SO3StateSpace::StateType>(0);
60  auto *xBase_RM = xBase->as<base::CompoundState>()->as<base::RealVectorStateSpace::StateType>(1);
61 
62  xBase_SO3->x = xBundle_SO3->x;
63  xBase_SO3->y = xBundle_SO3->y;
64  xBase_SO3->z = xBundle_SO3->z;
65  xBase_SO3->w = xBundle_SO3->w;
66 
67  for (unsigned int k = 0; k < getBaseDimension() - 1; k++)
68  {
69  xBase_RM->values[k] = xBundle_RN->values[k];
70  }
71 }
72 
73 void Projection_SO3RN_SO3RM::lift(const ompl::base::State *xBase, const ompl::base::State *xFiber,
74  ompl::base::State *xBundle) const
75 {
76  auto *xBundle_SO3 = xBundle->as<base::CompoundState>()->as<base::SO3StateSpace::StateType>(0);
77  auto *xBundle_RN = xBundle->as<base::CompoundState>()->as<base::RealVectorStateSpace::StateType>(1);
78 
79  const auto *xBase_SO3 = xBase->as<base::CompoundState>()->as<base::SO3StateSpace::StateType>(0);
80  const auto *xBase_RM = xBase->as<base::CompoundState>()->as<base::RealVectorStateSpace::StateType>(1);
81 
82  const auto *xFiber_RJ = xFiber->as<base::RealVectorStateSpace::StateType>();
83 
84  xBundle_SO3->x = xBase_SO3->x;
85  xBundle_SO3->y = xBase_SO3->y;
86  xBundle_SO3->z = xBase_SO3->z;
87  xBundle_SO3->w = xBase_SO3->w;
88 
89  unsigned int M = getDimension() - getFiberDimension() - 1;
90  unsigned int N = getFiberDimension();
91 
92  for (unsigned int k = 0; k < M; k++)
93  {
94  xBundle_RN->values[k] = xBase_RM->values[k];
95  }
96  for (unsigned int k = M; k < M + N; k++)
97  {
98  xBundle_RN->values[k] = xFiber_RJ->values[k - M];
99  }
100 }
@ PROJECTION_SO3RN_SO3RM
SO3RN \rightarrow SO3RM, m < n.
Definition of an abstract state.
Definition: State.h:113
This namespace contains datastructures and planners to exploit multilevel abstractions,...
const T * as() const
Cast this instance to a desired type.
Definition: State.h:162
ompl::base::State StateType
Define the type of state allocated by this space.
Definition: StateSpace.h:142
A single Bundle-space.
Definition: BundleSpace.h:131
A shared pointer wrapper for ompl::base::StateSpace.
unsigned int getFiberDimension() const
Dimension of Fiber Space.