10 #ifndef KDBVH_H_INCLUDED
11 #define KDBVH_H_INCLUDED
13 #include "./InternalHeaderCheck.h"
20 template<
typename Scalar,
int Dim>
21 struct vector_int_pair
23 EIGEN_MAKE_ALIGNED_OPERATOR_NEW_IF_VECTORIZABLE_FIXED_SIZE(Scalar, Dim)
26 vector_int_pair(
const VectorType &v,
int i) : first(v), second(i) {}
34 template<
typename ObjectList,
typename VolumeList,
typename BoxIter>
35 struct get_boxes_helper {
36 void operator()(
const ObjectList &objects, BoxIter boxBegin, BoxIter boxEnd, VolumeList &outBoxes)
38 outBoxes.insert(outBoxes.end(), boxBegin, boxEnd);
39 eigen_assert(outBoxes.size() == objects.size());
40 EIGEN_ONLY_USED_FOR_DEBUG(objects);
44 template<
typename ObjectList,
typename VolumeList>
45 struct get_boxes_helper<ObjectList, VolumeList, int> {
46 void operator()(
const ObjectList &objects,
int,
int, VolumeList &outBoxes)
48 outBoxes.reserve(objects.size());
49 for(
int i = 0; i < (int)objects.size(); ++i)
50 outBoxes.push_back(bounding_box(objects[i]));
70 template<
typename Scalar_,
int Dim_,
typename _Object>
class KdBVH
74 typedef _Object Object;
75 typedef std::vector<Object, aligned_allocator<Object> > ObjectList;
76 typedef Scalar_ Scalar;
78 typedef std::vector<Volume, aligned_allocator<Volume> > VolumeList;
80 typedef const int *VolumeIterator;
81 typedef const Object *ObjectIterator;
89 template<
typename OIter,
typename BIter>
KdBVH(OIter begin, OIter
end, BIter boxBegin, BIter boxEnd) {
init(begin,
end, boxBegin, boxEnd); }
93 template<
typename Iter>
void init(Iter begin, Iter
end) {
init(begin,
end, 0, 0); }
97 template<
typename OIter,
typename BIter>
void init(OIter begin, OIter
end, BIter boxBegin, BIter boxEnd)
103 objects.insert(objects.end(), begin,
end);
104 int n =
static_cast<int>(objects.size());
110 VIPairList objCenters;
113 internal::get_boxes_helper<ObjectList, VolumeList, BIter>()(objects, boxBegin, boxEnd, objBoxes);
115 objCenters.reserve(n);
116 boxes.reserve(n - 1);
117 children.reserve(2 * n - 2);
119 for(
int i = 0; i < n; ++i)
120 objCenters.push_back(VIPair(objBoxes[i].center(), i));
122 build(objCenters, 0, n, objBoxes, 0);
126 for(
int i = 0; i < n; ++i)
127 objects[i] = tmp[objCenters[i].second];
135 EIGEN_STRONG_INLINE
void getChildren(Index index, VolumeIterator &outVBegin, VolumeIterator &outVEnd,
136 ObjectIterator &outOBegin, ObjectIterator &outOEnd)
const
141 outOBegin = &(objects[0]);
142 outOEnd = outOBegin + objects.size();
146 int numBoxes =
static_cast<int>(boxes.size());
149 if(children[idx + 1] < numBoxes) {
150 outVBegin = &(children[idx]);
151 outVEnd = outVBegin + 2;
154 else if(children[idx] >= numBoxes) {
156 outOBegin = &(objects[children[idx] - numBoxes]);
157 outOEnd = outOBegin + 2;
159 outVBegin = &(children[idx]);
160 outVEnd = outVBegin + 1;
161 outOBegin = &(objects[children[idx + 1] - numBoxes]);
162 outOEnd = outOBegin + 1;
173 typedef internal::vector_int_pair<Scalar, Dim> VIPair;
174 typedef std::vector<VIPair, aligned_allocator<VIPair> > VIPairList;
176 struct VectorComparator
178 VectorComparator(
int inDim) : dim(inDim) {}
179 inline bool operator()(
const VIPair &v1,
const VIPair &v2)
const {
return v1.first[dim] < v2.first[dim]; }
186 void build(VIPairList &objCenters,
int from,
int to,
const VolumeList &objBoxes,
int dim)
188 eigen_assert(to - from > 1);
190 boxes.push_back(objBoxes[objCenters[from].second].merged(objBoxes[objCenters[from + 1].second]));
191 children.push_back(from + (
int)objects.size() - 1);
192 children.push_back(from + (
int)objects.size());
194 else if(to - from == 3) {
196 std::nth_element(objCenters.begin() + from, objCenters.begin() + mid,
197 objCenters.begin() + to, VectorComparator(dim));
198 build(objCenters, from, mid, objBoxes, (dim + 1) % Dim);
199 int idx1 = (int)boxes.size() - 1;
200 boxes.push_back(boxes[idx1].merged(objBoxes[objCenters[mid].second]));
201 children.push_back(idx1);
202 children.push_back(mid + (
int)objects.size() - 1);
205 int mid = from + (to - from) / 2;
206 nth_element(objCenters.begin() + from, objCenters.begin() + mid,
207 objCenters.begin() + to, VectorComparator(dim));
208 build(objCenters, from, mid, objBoxes, (dim + 1) % Dim);
209 int idx1 = (int)boxes.size() - 1;
210 build(objCenters, mid, to, objBoxes, (dim + 1) % Dim);
211 int idx2 = (int)boxes.size() - 1;
212 boxes.push_back(boxes[idx1].merged(boxes[idx2]));
213 children.push_back(idx1);
214 children.push_back(idx2);
218 std::vector<int> children;
A simple bounding volume hierarchy based on AlignedBox.
Definition: KdBVH.h:71
void init(Iter begin, Iter end)
Definition: KdBVH.h:93
KdBVH(OIter begin, OIter end, BIter boxBegin, BIter boxEnd)
Definition: KdBVH.h:89
KdBVH(Iter begin, Iter end)
Definition: KdBVH.h:86
const Volume & getVolume(Index index) const
Definition: KdBVH.h:167
void getChildren(Index index, VolumeIterator &outVBegin, VolumeIterator &outVEnd, ObjectIterator &outOBegin, ObjectIterator &outOEnd) const
Definition: KdBVH.h:135
void init(OIter begin, OIter end, BIter boxBegin, BIter boxEnd)
Definition: KdBVH.h:97
Index getRootIndex() const
Definition: KdBVH.h:131
static const lastp1_t end
Namespace containing all symbols from the Eigen library.