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e164a1537c
Author | SHA1 | Date |
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Brett | e164a1537c | |
Brett | 780c8ac25a |
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@ -1,5 +1,5 @@
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cmake_minimum_required(VERSION 3.25)
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cmake_minimum_required(VERSION 3.25)
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project(graphs VERSION 0.1.7)
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project(graphs VERSION 0.1.9)
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option(ENABLE_ADDRSAN "Enable the address sanitizer" OFF)
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option(ENABLE_ADDRSAN "Enable the address sanitizer" OFF)
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option(ENABLE_UBSAN "Enable the ub sanitizer" OFF)
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option(ENABLE_UBSAN "Enable the ub sanitizer" OFF)
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@ -46,7 +46,9 @@ struct bounding_box
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class graph_t
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class graph_t
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{
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{
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friend struct loader_t;
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friend struct loader_t;
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friend class selector_t;
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friend class selector_t;
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private:
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private:
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std::vector<node_t> nodes;
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std::vector<node_t> nodes;
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blt::hashmap_t<std::string, blt::u64> names_to_node;
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blt::hashmap_t<std::string, blt::u64> names_to_node;
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@ -100,6 +102,18 @@ class graph_t
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edges.insert({n1, n2});
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edges.insert({n1, n2});
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}
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}
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void disconnect(const blt::u64 n1, const blt::u64 n2)
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{
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connected_nodes[n1].erase(n2);
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connected_nodes[n2].erase(n1);
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edges.erase({n1, n2});
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}
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bool is_connected(const blt::u64 n1, const blt::u64 n2)
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{
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return edges.contains({n1, n2});
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}
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void connect(const edge_t& edge)
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void connect(const edge_t& edge)
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{
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{
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connected_nodes[edge.getFirst()].insert(edge.getSecond());
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connected_nodes[edge.getFirst()].insert(edge.getSecond());
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@ -75,6 +75,8 @@ struct node_t
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struct edge_t
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struct edge_t
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{
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{
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// fuck you too :3
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friend selector_t;
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float ideal_spring_length = conf::DEFAULT_SPRING_LENGTH;
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float ideal_spring_length = conf::DEFAULT_SPRING_LENGTH;
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float thickness = conf::DEFAULT_THICKNESS;
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float thickness = conf::DEFAULT_THICKNESS;
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blt::color4 color = conf::EDGE_COLOR;
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blt::color4 color = conf::EDGE_COLOR;
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@ -98,7 +98,7 @@ std::optional<loader_t> loader_t::load_for(engine_t& engine, const blt::gfx::win
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auto ideal_length = load_with_default(edge, "length", conf::DEFAULT_SPRING_LENGTH);
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auto ideal_length = load_with_default(edge, "length", conf::DEFAULT_SPRING_LENGTH);
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auto thickness = load_with_default(edge, "thickness", conf::DEFAULT_THICKNESS);
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auto thickness = load_with_default(edge, "thickness", conf::DEFAULT_THICKNESS);
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::edge_t e{graph.names_to_node[index1], graph.names_to_node[index2]};
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edge_t e{graph.names_to_node[index1], graph.names_to_node[index2]};
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e.ideal_spring_length = ideal_length;
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e.ideal_spring_length = ideal_length;
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e.thickness = thickness;
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e.thickness = thickness;
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@ -114,11 +114,20 @@ void selector_t::process_keyboard(blt::i32 width, blt::i32 height)
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if (blt::gfx::keyPressedLastFrame())
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if (blt::gfx::keyPressedLastFrame())
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{
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{
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if (blt::gfx::isKeyPressed(GLFW_KEY_C))
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if (blt::gfx::isKeyPressed(GLFW_KEY_C))
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{
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if (primary_selection != -1 && secondary_selection != -1)
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{
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if (graph.is_connected(primary_selection, secondary_selection))
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graph.disconnect(primary_selection, secondary_selection);
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else
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graph.connect(primary_selection, secondary_selection);
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} else
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{
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{
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if (placement)
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if (placement)
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destroy_node(primary_selection);
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destroy_node(primary_selection);
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else
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else
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create_placement_node(mouse_pos);
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create_placement_node(mouse_pos);
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}
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} else if (blt::gfx::isKeyPressed(GLFW_KEY_X))
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} else if (blt::gfx::isKeyPressed(GLFW_KEY_X))
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{
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{
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if (primary_selection != -1)
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if (primary_selection != -1)
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@ -192,13 +201,45 @@ void selector_t::destroy_node(blt::i64 node)
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{
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{
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auto& node_v = graph.nodes[node];
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auto& node_v = graph.nodes[node];
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graph.names_to_node.erase(node_v.name);
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graph.names_to_node.erase(node_v.name);
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erase_if(graph.edges, [node](const edge_t& v) {
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erase_if(graph.edges, [node](const edge_t& e) {
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return static_cast<blt::i64>(v.getFirst()) == node || static_cast<blt::i64>(v.getSecond()) == node;
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return static_cast<blt::i64>(e.getFirst()) == node || static_cast<blt::i64>(e.getSecond()) == node;
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});
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});
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std::vector<edge_t> corrected_edges;
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for (const edge_t& v : graph.edges)
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{
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auto copy = v;
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auto c = static_cast<blt::u64>(node);
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if (copy.i1 > c)
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copy.i1--;
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if (copy.i2 > c)
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copy.i2--;
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if (v.i1 > c || v.i2 > c)
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corrected_edges.push_back(copy);
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}
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erase_if(graph.edges, [node](const edge_t& e) {
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return static_cast<blt::i64>(e.getFirst()) > node || static_cast<blt::i64>(e.getSecond()) > node;
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});
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for (const auto& v : corrected_edges)
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graph.edges.insert(v);
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graph.connected_nodes.erase(node);
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graph.connected_nodes.erase(node);
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for (auto& v : graph.connected_nodes)
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for (auto& v : graph.connected_nodes)
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{
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{
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v.second.erase(node);
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auto& map = v.second;
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// generate the list of corrected nodes.
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std::vector<blt::u64> corrected_nodes;
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for (auto& n : map)
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{
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// shift back then nodes after this one by one
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if (static_cast<blt::i64>(n) > node)
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{
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corrected_nodes.push_back(n - 1);
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}
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}
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erase_if(map, [node](blt::u64 n) {
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return static_cast<blt::i64>(n) > node;
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});
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for (const auto& n : corrected_nodes)
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map.insert(n);
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}
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}
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graph.nodes.erase(graph.nodes.begin() + node);
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graph.nodes.erase(graph.nodes.begin() + node);
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