Organic supports: Fixed a wrong order of config initialization,
fixed some compilation warnings.
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25575bb3f3
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@ -298,7 +298,7 @@ std::pair<SupportGeneratorLayersPtr, SupportGeneratorLayersPtr> generate_interfa
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else {
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SupportGeneratorLayersPtr out(in1.size() + in2.size(), nullptr);
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std::merge(in1.begin(), in1.end(), in2.begin(), in2.end(), out.begin(), [](auto* l, auto* r) { return l->print_z < r->print_z; });
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return std::move(out);
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return out;
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}
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};
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interface_layers = merge_remove_empty(interface_layers, top_interface_layers);
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@ -664,7 +664,7 @@ static inline void tree_supports_generate_paths(
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// Draw the perimeters.
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Polylines polylines;
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polylines.reserve(expoly.holes.size() + 1);
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for (size_t idx_loop = 0; idx_loop < expoly.num_contours(); ++ idx_loop) {
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for (int idx_loop = 0; idx_loop < int(expoly.num_contours()); ++ idx_loop) {
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// Open the loop with a seam.
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const Polygon &loop = expoly.contour_or_hole(idx_loop);
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Polyline pl(loop.points);
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@ -684,7 +684,7 @@ static inline void tree_supports_generate_paths(
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double d2min = std::numeric_limits<double>::max();
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Vec2d seam_pt = pl.back().cast<double>();
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for (ClipperLib_Z::Path &path : anchor_candidates)
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for (int i = 0; i < path.size(); ++ i) {
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for (int i = 0; i < int(path.size()); ++ i) {
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int j = next_idx_modulo(i, path);
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if (path[i].z() == idx_loop || path[j].z() == idx_loop) {
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Vec2d pi(path[i].x(), path[i].y());
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@ -84,8 +84,8 @@ TreeSupportSettings::TreeSupportSettings(const TreeSupportMeshGroupSettings &mes
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layer_height(mesh_group_settings.layer_height),
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branch_radius(mesh_group_settings.support_tree_branch_diameter / 2),
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min_radius(mesh_group_settings.support_tree_tip_diameter / 2), // The actual radius is 50 microns larger as the resulting branches will be increased by 50 microns to avoid rounding errors effectively increasing the xydistance
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maximum_move_distance((angle < M_PI / 2.) ? (coord_t)(tan(angle) * layer_height) : std::numeric_limits<coord_t>::max()),
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maximum_move_distance_slow((angle_slow < M_PI / 2.) ? (coord_t)(tan(angle_slow) * layer_height) : std::numeric_limits<coord_t>::max()),
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maximum_move_distance((mesh_group_settings.support_tree_angle < M_PI / 2.) ? (coord_t)(tan(mesh_group_settings.support_tree_angle) * layer_height) : std::numeric_limits<coord_t>::max()),
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maximum_move_distance_slow((mesh_group_settings.support_tree_angle_slow < M_PI / 2.) ? (coord_t)(tan(mesh_group_settings.support_tree_angle_slow) * layer_height) : std::numeric_limits<coord_t>::max()),
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support_bottom_layers(mesh_group_settings.support_bottom_enable ? (mesh_group_settings.support_bottom_height + layer_height / 2) / layer_height : 0),
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tip_layers(std::max((branch_radius - min_radius) / (support_line_width / 3), branch_radius / layer_height)), // Ensure lines always stack nicely even if layer height is large
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branch_radius_increase_per_layer(tan(mesh_group_settings.support_tree_branch_diameter_angle) * layer_height),
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@ -155,7 +155,7 @@ TreeSupportSettings::TreeSupportSettings(const TreeSupportMeshGroupSettings &mes
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// Layers between the raft contacts and bottom of the object.
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auto nsteps = int(ceil(dist_to_go / slicing_params.max_suport_layer_height));
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double step = dist_to_go / nsteps;
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for (size_t i = 0; i < nsteps; ++ i) {
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for (int i = 0; i < nsteps; ++ i) {
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z += step;
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this->raft_layers.emplace_back(z);
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}
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