Mercurial > repos > public > sbplib_julia
annotate src/Grids/manifolds.jl @ 1564:35fe4375b35f feature/grids/manifolds
Export things and fix ConcreteChart and Simplex
author | Jonatan Werpers <jonatan@werpers.com> |
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date | Thu, 25 Apr 2024 13:17:48 +0200 |
parents | 81e97d3bec8c |
children | 90af15f38c62 |
rev | line source |
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1558 | 1 """ |
2 ParameterSpace{D} | |
3 | |
4 A space of parameters of dimension `D`. Used with `Chart` to indicate which | |
5 parameters are valid for that chart. | |
6 | |
7 Common parameter spaces are created using the functions unit sized spaces | |
8 * `unitinterval` | |
9 * `unitrectangle` | |
10 * `unitbox` | |
11 * `unittriangle` | |
12 * `unittetrahedron` | |
13 * `unithyperbox` | |
14 * `unitsimplex` | |
15 | |
16 See also: [`Interval`](@ref), [`Rectangle`](@ref), [`Box`](@ref), | |
17 [`Triangle`](@ref), [`Tetrahedron`](@ref), [`HyperBox`](@ref), | |
18 [`Simplex`](@ref), | |
19 """ | |
20 abstract type ParameterSpace{D} end | |
21 | |
22 struct HyperBox{T,D} <: ParameterSpace{D} | |
23 a::SVector{D,T} | |
24 b::SVector{D,T} | |
25 end | |
26 | |
27 function HyperBox(a,b) | |
28 T = SVector{length(a)} | |
29 HyperBox(convert(T,a), convert(T,b)) | |
30 end | |
31 | |
32 Interval{T} = HyperBox{T,1} | |
33 Rectangle{T} = HyperBox{T,2} | |
34 Box{T} = HyperBox{T,3} | |
35 | |
36 limits(box::HyperBox, d) = (box.a[d], box.b[d]) | |
37 limits(box::HyperBox) = (box.a, box.b) | |
38 | |
39 unitinterval(T=Float64) = unithyperbox(T,1) | |
40 unitsquare(T=Float64) = unithyperbox(T,2) | |
41 unitcube(T=Float64) = unithyperbox(T,3) | |
42 unithyperbox(T, D) = HyperBox((@SVector zeros(T,D)), (@SVector ones(T,D))) | |
43 unithyperbox(D) = unithyperbox(Float64,D) | |
44 | |
45 | |
46 struct Simplex{T,D} <: ParameterSpace{D} | |
47 verticies::NTuple{D,SVector{D,T}} | |
48 end | |
49 | |
1564
35fe4375b35f
Export things and fix ConcreteChart and Simplex
Jonatan Werpers <jonatan@werpers.com>
parents:
1558
diff
changeset
|
50 Simplex(verticies::Vararg{AbstractArray}) = Simplex(Tuple(SVector(v...) for v ∈ verticies)) |
35fe4375b35f
Export things and fix ConcreteChart and Simplex
Jonatan Werpers <jonatan@werpers.com>
parents:
1558
diff
changeset
|
51 |
1558 | 52 Triangle{T} = Simplex{T,2} |
53 Tetrahedron{T} = Simplex{T,3} | |
54 | |
55 unittriangle(T) = unitsimplex(T,2) | |
56 unittetrahedron(T) = unitsimplex(T,3) | |
57 function unitsimplex(T,D) | |
58 z = @SVector zeros(T,D) | |
59 unitelement = one(eltype(z)) | |
60 verticies = ntuple(i->setindex(z, unitelement, i), 4) | |
61 return Simplex(verticies) | |
62 end | |
63 | |
64 | |
65 """ | |
66 | |
67 A parametrized description of a manifold or part of a manifold. | |
68 | |
69 Should implement a methods for | |
70 * `parameterspace` | |
71 * `(::Chart)(ξs...)` | |
72 | |
73 There is a default implementation for `(::Chart{D})(::SVector{D})` | |
74 """ | |
75 abstract type Chart{D} end | |
76 # abstract type Chart{D,R} end | |
77 | |
78 domain_dim(::Chart{D}) where D = D | |
79 # range_dim(::Chart{D,R}) where {D,R} = R | |
80 | |
81 """ | |
82 The parameterspace of a chart | |
83 """ | |
84 function parameterspace end | |
85 | |
86 (c::Chart{D})(x̄::SVector{D}) where D = c(x̄...) | |
87 | |
88 | |
1564
35fe4375b35f
Export things and fix ConcreteChart and Simplex
Jonatan Werpers <jonatan@werpers.com>
parents:
1558
diff
changeset
|
89 struct ConcreteChart{D, PST<:ParameterSpace{D}, MT} <: Chart{D} |
35fe4375b35f
Export things and fix ConcreteChart and Simplex
Jonatan Werpers <jonatan@werpers.com>
parents:
1558
diff
changeset
|
90 mapping::MT |
1558 | 91 parameterspace::PST |
92 end | |
93 | |
94 (c::Chart)(x̄) = c.mapping(x̄) | |
95 | |
96 | |
97 """ | |
98 Atlas | |
99 | |
100 A collection of charts and their connections. | |
101 Should implement methods for `charts` and | |
102 """ | |
103 abstract type Atlas end | |
104 | |
105 """ | |
106 charts(::Atlas) | |
107 | |
108 The colloction of charts in the atlas. | |
109 """ | |
110 function charts end | |
111 | |
112 """ | |
113 connections | |
114 | |
115 TBD: What exactly should this return? | |
116 | |
117 """ | |
118 | |
119 struct CartesianAtlas <: Atlas | |
120 charts::Matrix{Chart} | |
121 end | |
122 | |
123 charts(a::CartesianAtlas) = a.charts | |
124 | |
125 struct UnstructuredAtlas <: Atlas | |
126 charts::Vector{Chart} | |
127 connections | |
128 end | |
129 | |
130 charts(a::UnstructuredAtlas) = a.charts | |
131 | |
132 | |
133 ### | |
134 # Geometry | |
135 ### | |
136 | |
137 abstract type Curve end | |
138 abstract type Surface end | |
139 | |
140 | |
141 struct Line{PT} <: Curve | |
142 p::PT | |
143 tangent::PT | |
144 end | |
145 | |
146 (c::Line)(s) = c.p + s*c.tangent | |
147 | |
148 | |
149 struct LineSegment{PT} <: Curve | |
150 a::PT | |
151 b::PT | |
152 end | |
153 | |
154 (c::LineSegment)(s) = (1-s)*c.a + s*c.b | |
155 | |
156 | |
157 struct Circle{T,PT} <: Curve | |
158 c::PT | |
159 r::T | |
160 end | |
161 | |
162 (c::Circle)(θ) = c.c + r*@SVector[cos(Θ), sin(Θ)] | |
163 | |
164 struct TransfiniteInterpolationSurface{T1,T2,T3,T4} <: Surface | |
165 c₁::T1 | |
166 c₂::T2 | |
167 c₃::T3 | |
168 c₄::T4 | |
169 end | |
170 | |
171 function (s::TransfiniteInterpolationSurface)(u,v) | |
172 c₁, c₂, c₃, c₄ = s.c₁, s.c₂, s.c₃, s.c₄ | |
173 P₀₀ = c₁(0) | |
174 P₁₀ = c₂(0) | |
175 P₁₁ = c₃(0) | |
176 P₀₁ = c₄(0) | |
177 return (1-v)*c₁(u) + u*c₂(v) + v*c₃(1-u) + (1-u)*c₄(1-v) - ( | |
178 (1-u)*(1-v)*P₀₀ + u*(1-v)*P₁₀ + u*v*P₁₁ + (1-u)*v*P₀₁ | |
179 ) | |
180 end | |
181 | |
182 function (s::TransfiniteInterpolationSurface)(ξ̄::AbstractArray) | |
183 s(ξ̄...) | |
184 end | |
185 | |
186 | |
187 function polygon_sides(Ps...) | |
188 n = length(Ps) | |
189 return [t->line(t,Ps[i],Ps[mod1(i+1,n)]) for i ∈ eachindex(Ps)] | |
190 end |