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Define application name and version in CMakeLists
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1 | #include "src/vertexmap.h" |
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2 | #include "src/gl/common.h" |
117 | 3 | |
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4 | hash_t hashVertex(const glm::vec3& vec) |
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5 | { |
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6 | return qHash(glm::ivec3{ |
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7 | int(vec.x * 10000), |
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8 | int(vec.y * 10000), |
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9 | int(vec.z * 10000), |
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10 | }); |
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11 | } |
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12 | |
117 | 13 | VertexMap::VertexMap(const Model *model) : |
14 | model{model} | |
15 | { | |
16 | connect( | |
17 | model, | |
18 | &Model::dataChanged, | |
19 | this, | |
20 | &VertexMap::build | |
21 | ); | |
22 | connect( | |
23 | model, | |
24 | &Model::rowsInserted, | |
25 | this, | |
26 | &VertexMap::build | |
27 | ); | |
28 | connect( | |
29 | model, | |
30 | &Model::rowsRemoved, | |
31 | this, | |
32 | &VertexMap::build | |
33 | ); | |
34 | this->build(); | |
35 | } | |
36 | ||
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37 | struct Edge |
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38 | { |
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39 | const glm::vec3& a; |
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40 | const glm::vec3& b; |
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41 | }; |
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42 | |
200 | 43 | inline void edges(const ModelElement& element, std::function<void(Edge&&)> fn) |
44 | { | |
45 | std::visit<void>(overloaded{ | |
46 | [fn](const Colored<LineSegment>& edge) { | |
47 | fn(Edge{edge.p1, edge.p2}); | |
48 | }, | |
49 | [fn](const Colored<Triangle>& triangle) { | |
50 | fn(Edge{triangle.p1, triangle.p2}); | |
51 | fn(Edge{triangle.p2, triangle.p3}); | |
52 | fn(Edge{triangle.p3, triangle.p1}); | |
53 | }, | |
54 | [fn](const Colored<Quadrilateral>& quad) { | |
55 | fn(Edge{quad.p1, quad.p2}); | |
56 | fn(Edge{quad.p2, quad.p3}); | |
57 | fn(Edge{quad.p3, quad.p4}); | |
58 | fn(Edge{quad.p4, quad.p1}); | |
59 | }, | |
60 | [fn](const Colored<ConditionalEdge>& cedge) { | |
61 | fn(Edge{cedge.p1, cedge.p2}); | |
62 | }, | |
63 | [](const ModelElement&&){} | |
64 | }, element); | |
65 | } | |
66 | ||
67 | inline void points( | |
68 | const ModelElement& element, | |
69 | std::function<void(const glm::vec3&)> fn) | |
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70 | { |
200 | 71 | std::visit<void>(overloaded{ |
72 | [fn](const Colored<LineSegment>& edge) { | |
73 | fn(edge.p1); | |
74 | fn(edge.p2); | |
75 | }, | |
76 | [fn](const Colored<Triangle>& triangle) { | |
77 | fn(triangle.p1); | |
78 | fn(triangle.p2); | |
79 | fn(triangle.p3); | |
80 | }, | |
81 | [fn](const Colored<Quadrilateral>& quad) { | |
82 | fn(quad.p1); | |
83 | fn(quad.p2); | |
84 | fn(quad.p3); | |
85 | fn(quad.p4); | |
86 | }, | |
87 | [fn](const Colored<ConditionalEdge>& cedge) { | |
88 | fn(cedge.p1); | |
89 | fn(cedge.p2); | |
90 | fn(cedge.c1); | |
91 | fn(cedge.c2); | |
92 | }, | |
93 | [](const ModelElement&&){} | |
94 | }, element); | |
95 | } | |
96 | ||
97 | template<typename R> | |
98 | auto ifplanar( | |
99 | const ModelElement& element, | |
100 | std::function<R(const glm::vec3&, const glm::vec3&, const glm::vec3&)> fn | |
101 | ) | |
102 | { | |
103 | return std::visit(overloaded{ | |
104 | [fn](const Triangle& triangle) -> std::optional<R> { | |
105 | return fn(triangle.p1, triangle.p2, triangle.p3); | |
106 | }, | |
107 | [fn](const Quadrilateral quad) -> std::optional<R> { | |
108 | return fn(quad.p1, quad.p2, quad.p3); | |
109 | }, | |
110 | [](const ModelElement&&) -> std::optional<R> {return {};} | |
111 | }, element); | |
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112 | } |
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113 | |
117 | 114 | void VertexMap::build() |
115 | { | |
116 | this->map.clear(); | |
118 | 117 | this->vertices.clear(); |
119 | 118 | this->vertexHashes.clear(); |
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119 | for (std::size_t i = 0; i < this->model->size(); ++i) |
117 | 120 | { |
200 | 121 | const ModelElement& element = this->model->at(i); |
122 | std::optional<glm::mat4> matrix = ifplanar<glm::mat4>( | |
123 | element, | |
124 | [](const glm::vec3& p1, const glm::vec3& p2, const glm::vec3& p3) | |
125 | { | |
126 | const glm::vec3 a = glm::normalize(p2 - p1); | |
127 | const glm::vec3 b = glm::normalize(p3 - p1); | |
128 | const glm::vec3 c = glm::normalize(glm::cross(a, b)); | |
129 | const glm::vec3 d = glm::normalize(glm::cross(a, c)); | |
130 | return glm::mat4{{a, 0}, {-c, 0}, {d, 0}, {}}; | |
131 | }); | |
132 | points(element, [&](const glm::vec3 point) { | |
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133 | const hash_t hash = hashVertex(point); |
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134 | VertexInfo& info = this->map[hash]; |
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135 | info.point = point; |
200 | 136 | info.objects.insert(this->model->idAt(i)); |
137 | if (matrix.has_value() and not info.transformSet) | |
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138 | { |
200 | 139 | info.transform = matrix.value(); |
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140 | info.transform[3] = {point, 1}; |
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141 | info.transformSet = true; |
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142 | } |
119 | 143 | if (not this->vertexHashes.contains(hash)) |
144 | { | |
145 | this->vertexHashes.insert(hash); | |
146 | this->vertices.push_back(point); | |
147 | } | |
200 | 148 | }); |
149 | } | |
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150 | for (auto& pair : this->map) |
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151 | { |
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152 | auto& info = pair.second; |
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153 | // If there's no transformation calculated yet, make up a simple one that at least |
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154 | // contains translation. |
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155 | if (not info.transformSet) |
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156 | { |
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157 | info.transform = glm::translate(glm::identity<glm::mat4>(), info.point); |
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158 | info.transformSet = true; |
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159 | } |
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160 | float scale = 1.0f; |
200 | 161 | for (const ModelId objectId : info.objects) |
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162 | { |
200 | 163 | const std::optional<int> index = model->find(objectId); |
164 | if (index.has_value()) { | |
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165 | edges(this->model->at(unsigned_cast(index.value())), [&](Edge&& edge) |
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166 | { |
200 | 167 | if (hashVertex(edge.a) == pair.first or hashVertex(edge.b) == pair.first) |
168 | { | |
169 | scale = std::min(scale, glm::length(edge.b - edge.a) / 3); | |
170 | } | |
171 | }); | |
172 | } | |
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173 | } |
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174 | info.transform = glm::scale(info.transform, glm::vec3{scale, scale, scale}); |
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175 | } |
118 | 176 | Q_EMIT this->verticesChanged(); |
117 | 177 | } |
118 | 178 | |
179 | /** | |
180 | * @brief Apply \c fn for all vertices in the map. | |
181 | * @param fn | |
182 | */ | |
183 | void VertexMap::apply(ApplyFunction fn) const | |
184 | { | |
119 | 185 | for (unsigned int i = 0; i < this->vertices.size(); i += 1) |
118 | 186 | { |
119 | 187 | const glm::vec3& point = this->vertices[i]; |
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188 | fn(point, this->map.at(hashVertex(point))); |
118 | 189 | } |
190 | } |