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LSST Data Management Base Package
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CompoundRegion.h
Go to the documentation of this file.
1/*
2 * LSST Data Management System
3 * Copyright 2014-2015 AURA/LSST.
4 *
5 * This product includes software developed by the
6 * LSST Project (http://www.lsst.org/).
7 *
8 * This program is free software: you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation, either version 3 of the License, or
11 * (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the LSST License Statement and
19 * the GNU General Public License along with this program. If not,
20 * see <https://www.lsstcorp.org/LegalNotices/>.
21 */
22
23#ifndef LSST_SPHGEOM_COMPOUND_REGION_H_
24#define LSST_SPHGEOM_COMPOUND_REGION_H_
25
29
30#include <iosfwd>
31#include <iterator>
32#include <array>
33
34#include "Region.h"
35#include "UnitVector3d.h"
36
37namespace lsst {
38namespace sphgeom {
39
40class Box;
41class Circle;
42class ConvexPolygon;
43class Ellipse;
44
47class CompoundRegion : public Region {
48public:
50
51 CompoundRegion(Region const &first, Region const &second);
52 explicit CompoundRegion(std::array<std::unique_ptr<Region>, 2> operands) noexcept;
54
56 CompoundRegion(CompoundRegion &&) noexcept = default;
57
58 // Disable assignment (including for subclasses) because it makes it hard
59 // to guarantee memory safety for operand accessors in Python.
60 CompoundRegion &operator=(CompoundRegion const &) = delete;
61 CompoundRegion &operator=(CompoundRegion &&) = delete;
62
63 // Return references to the operands.
64 Region const & getOperand(std::size_t n) const {
65 return *_operands[n];
66 }
67
68 // Region interface.
69 virtual Relationship relate(Region const &r) const = 0; // still unimplemented; avoid shadowing
70 Relationship relate(Box const &b) const override;
71 Relationship relate(Circle const &c) const override;
72 Relationship relate(ConvexPolygon const &p) const override;
73 Relationship relate(Ellipse const &e) const override;
74
79 return decode(s.data(), s.size());
80 }
81 static std::unique_ptr<CompoundRegion> decode(uint8_t const *buffer, size_t n);
83
84protected:
85
86 // Implementation helper for encode().
88
89 // Implementation helper for decode().
91 std::uint8_t tc, std::uint8_t const *buffer, std::size_t nBytes);
92
93private:
95};
96
102public:
103 static constexpr uint8_t TYPE_CODE = 'u';
104
106
107 // Region interface.
108 std::unique_ptr<Region> clone() const override { return std::make_unique<UnionRegion>(*this); }
109 Box getBoundingBox() const override;
110 Box3d getBoundingBox3d() const override;
111 Circle getBoundingCircle() const override;
112 using Region::contains;
113 bool contains(UnitVector3d const &v) const override;
114 Relationship relate(Region const &r) const override;
115 std::vector<uint8_t> encode() const override { return _encode(TYPE_CODE); }
116
121 return decode(s.data(), s.size());
122 }
123 static std::unique_ptr<UnionRegion> decode(uint8_t const *buffer, size_t n) {
124 return std::make_unique<UnionRegion>(_decode(TYPE_CODE, buffer, n));
125 }
127
128};
129
135public:
136 static constexpr uint8_t TYPE_CODE = 'i';
137
139
140 // Region interface.
141 std::unique_ptr<Region> clone() const override { return std::make_unique<IntersectionRegion>(*this); }
142 Box getBoundingBox() const override;
143 Box3d getBoundingBox3d() const override;
144 Circle getBoundingCircle() const override;
145 using Region::contains;
146 bool contains(UnitVector3d const &v) const override;
147 Relationship relate(Region const &r) const override;
148 std::vector<uint8_t> encode() const override { return _encode(TYPE_CODE); }
149
154 return decode(s.data(), s.size());
155 }
156 static std::unique_ptr<IntersectionRegion> decode(uint8_t const *buffer, size_t n) {
157 return std::make_unique<IntersectionRegion>(_decode(TYPE_CODE, buffer, n));
158 }
160
161};
162
163} // namespace sphgeom
164} // namespace lsst
165
166#endif // LSST_SPHGEOM_COMPOUND_REGION_H_
This file defines an interface for spherical regions.
table::Key< int > b
This file declares a class for representing unit vectors in ℝ³.
Box3d represents a box in ℝ³.
Definition: Box3d.h:42
Box represents a rectangle in spherical coordinate space that contains its boundary.
Definition: Box.h:54
Circle is a circular region on the unit sphere that contains its boundary.
Definition: Circle.h:46
CompoundRegion is an intermediate base class for spherical regions that are comprised of a point-set ...
virtual Relationship relate(Region const &r) const =0
Region const & getOperand(std::size_t n) const
std::vector< std::uint8_t > _encode(std::uint8_t tc) const
static std::unique_ptr< CompoundRegion > decode(std::vector< uint8_t > const &s)
CompoundRegion(Region const &first, Region const &second)
Construct by copying or taking ownership of operands.
CompoundRegion(CompoundRegion &&) noexcept=default
static std::array< std::unique_ptr< Region >, 2 > _decode(std::uint8_t tc, std::uint8_t const *buffer, std::size_t nBytes)
ConvexPolygon is a closed convex polygon on the unit sphere.
Definition: ConvexPolygon.h:57
Ellipse is an elliptical region on the sphere.
Definition: Ellipse.h:170
IntersectionRegion is a lazy point-set inersection of its operands.
Relationship relate(Region const &r) const override
static std::unique_ptr< IntersectionRegion > decode(std::vector< uint8_t > const &s)
std::unique_ptr< Region > clone() const override
clone returns a deep copy of this region.
Circle getBoundingCircle() const override
getBoundingCircle returns a bounding-circle for this region.
Box3d getBoundingBox3d() const override
getBoundingBox3d returns a 3-dimensional bounding-box for this region.
static std::unique_ptr< IntersectionRegion > decode(uint8_t const *buffer, size_t n)
bool contains(UnitVector3d const &v) const override
contains tests whether the given unit vector is inside this region.
static constexpr uint8_t TYPE_CODE
Box getBoundingBox() const override
getBoundingBox returns a bounding-box for this region.
std::vector< uint8_t > encode() const override
encode serializes this region into an opaque byte string.
Region is a minimal interface for 2-dimensional regions on the unit sphere.
Definition: Region.h:79
virtual bool contains(UnitVector3d const &) const =0
contains tests whether the given unit vector is inside this region.
UnionRegion is a lazy point-set union of its operands.
Box getBoundingBox() const override
getBoundingBox returns a bounding-box for this region.
static std::unique_ptr< UnionRegion > decode(std::vector< uint8_t > const &s)
static constexpr uint8_t TYPE_CODE
std::vector< uint8_t > encode() const override
encode serializes this region into an opaque byte string.
Relationship relate(Region const &r) const override
bool contains(UnitVector3d const &v) const override
contains tests whether the given unit vector is inside this region.
std::unique_ptr< Region > clone() const override
clone returns a deep copy of this region.
Circle getBoundingCircle() const override
getBoundingCircle returns a bounding-circle for this region.
static std::unique_ptr< UnionRegion > decode(uint8_t const *buffer, size_t n)
Box3d getBoundingBox3d() const override
getBoundingBox3d returns a 3-dimensional bounding-box for this region.
UnitVector3d is a unit vector in ℝ³ with components stored in double precision.
Definition: UnitVector3d.h:55
T data(T... args)
STL namespace.
T size(T... args)