Measuring - Gizmo measure shows value of angle dimensioning in 3D scene
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@ -840,22 +840,18 @@ void GLGizmoMeasure::render_dimensioning()
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ss_to_ndc_matrix * Geometry::translation_transform(v2ss_3) * q12ss);
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m_dimensioning.triangle.render();
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if (distance > 0.0) {
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const Vec2d label_position = 0.5 * (v1ss + v2ss);
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m_imgui->set_next_window_pos(label_position.x(), viewport[3] - label_position.y(), ImGuiCond_Always, 0.0f, 1.0f);
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m_imgui->set_next_window_bg_alpha(0.0f);
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ImGui::PushStyleVar(ImGuiStyleVar_WindowBorderSize, 0.0f);
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m_imgui->begin(_L("##distance"), ImGuiWindowFlags_NoMouseInputs | ImGuiWindowFlags_AlwaysAutoResize | ImGuiWindowFlags_NoDecoration | ImGuiWindowFlags_NoMove);
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ImGui::BringWindowToDisplayFront(ImGui::GetCurrentWindow());
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std::string txt = format_double(distance) + " ";
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if (wxGetApp().app_config->get("use_inches") == "1")
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txt += _u8L("in");
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else
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txt += _u8L("mm");
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const bool use_inches = wxGetApp().app_config->get("use_inches") == "1";
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const std::string txt = use_inches ? format_double(ObjectManipulation::mm_to_in * distance) + " " + _u8L("in") :
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format_double(distance) + " " + _u8L("mm");
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m_imgui->text(txt);
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m_imgui->end();
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ImGui::PopStyleVar();
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}
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};
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auto point_edge = [this, shader](const Measure::SurfaceFeature& f1, const Measure::SurfaceFeature& f2) {
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@ -911,8 +907,11 @@ void GLGizmoMeasure::render_dimensioning()
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const Vec3d e1_unit = Measure::edge_direction(e1);
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const Vec3d e2_unit = Measure::edge_direction(e2);
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if (!m_dimensioning.arc.is_initialized()) {
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const unsigned int resolution = std::max<unsigned int>(2, 64 * angle / double(PI));
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const double step = angle / double(resolution);
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const Vec3d normal = e1_unit.cross(e2_unit).normalized();
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if (!m_dimensioning.arc.is_initialized()) {
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GLModel::Geometry init_data;
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init_data.format = { GLModel::Geometry::EPrimitiveType::LineStrip, GLModel::Geometry::EVertexLayout::P3 };
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init_data.color = ColorRGBA::WHITE();
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@ -920,8 +919,6 @@ void GLGizmoMeasure::render_dimensioning()
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init_data.reserve_indices(resolution + 1);
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// vertices + indices
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const Vec3d normal = e1_unit.cross(e2_unit).normalized();
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const double step = angle / double(resolution);
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for (unsigned int i = 0; i <= resolution; ++i) {
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const double a = step * double(i);
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const Vec3d v = draw_radius * (Eigen::Quaternion<double>(Eigen::AngleAxisd(a, normal)) * e1_unit);
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@ -943,8 +940,6 @@ void GLGizmoMeasure::render_dimensioning()
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const Vec3d e11center = center - e1.first;
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const double e11center_len = e11center.norm();
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if (e11center_len > EPSILON && e11center.dot(e11e12) < 0.0) {
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const Camera& camera = wxGetApp().plater()->get_camera();
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shader->set_uniform("projection_matrix", camera.get_projection_matrix());
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shader->set_uniform("view_model_matrix", camera.get_view_matrix() * m_volume_matrix * Geometry::translation_transform(center) *
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Eigen::Quaternion<double>::FromTwoVectors(Vec3d::UnitX(), Measure::edge_direction(e1.first, e1.second)) *
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Geometry::scale_transform({ e11center_len, 1.0f, 1.0f }));
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@ -955,13 +950,29 @@ void GLGizmoMeasure::render_dimensioning()
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const Vec3d e21center = center - e2.first;
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const double e21center_len = e21center.norm();
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if (e21center_len > EPSILON) {
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const Camera& camera = wxGetApp().plater()->get_camera();
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shader->set_uniform("projection_matrix", camera.get_projection_matrix());
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shader->set_uniform("view_model_matrix", camera.get_view_matrix() * m_volume_matrix * Geometry::translation_transform(center) *
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Eigen::Quaternion<double>::FromTwoVectors(Vec3d::UnitX(), Measure::edge_direction(e2.first, e2.second)) *
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Geometry::scale_transform({ (coplanar && radius > 0.0) ? e21center_len : draw_radius, 1.0f, 1.0f }));
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m_dimensioning.line.render();
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}
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// world coordinates
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const Vec3d label_position_world = Geometry::translation_transform(center) * (draw_radius * (Eigen::Quaternion<double>(Eigen::AngleAxisd(step * 0.5 * double(resolution), normal)) * e1_unit));
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// screen coordinates
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const std::array<int, 4>& viewport = camera.get_viewport();
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const Vec2d label_position_ss = DimensioningHelper::model_to_ss(label_position_world, m_volume_matrix,
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camera.get_projection_matrix().matrix() * camera.get_view_matrix().matrix(), viewport);
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m_imgui->set_next_window_pos(label_position_ss.x(), viewport[3] - label_position_ss.y(), ImGuiCond_Always, 0.0f, 1.0f);
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m_imgui->set_next_window_bg_alpha(0.0f);
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ImGui::PushStyleVar(ImGuiStyleVar_WindowBorderSize, 0.0f);
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m_imgui->begin(_L("##angle"), ImGuiWindowFlags_NoMouseInputs | ImGuiWindowFlags_AlwaysAutoResize | ImGuiWindowFlags_NoDecoration | ImGuiWindowFlags_NoMove);
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ImGui::BringWindowToDisplayFront(ImGui::GetCurrentWindow());
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std::string txt = format_double(Geometry::rad2deg(angle)) + "°";
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m_imgui->text(txt);
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m_imgui->end();
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ImGui::PopStyleVar();
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};
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auto arc_edge_plane = [this, arc_edge_edge](const Measure::SurfaceFeature& f1, const Measure::SurfaceFeature& f2) {
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@ -1341,7 +1352,7 @@ void GLGizmoMeasure::on_render_input_window(float x, float y, float bottom_limit
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ImGui::GetStyleColorVec4(ImGuiCol_Text));
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ImGui::PopID();
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}
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if (measure.distance_infinite.has_value()) {
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if (measure.distance_infinite.has_value() && measure.distance_infinite->dist > 0.0) {
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double distance = measure.distance_infinite->dist;
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if (use_inches)
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distance = ObjectManipulation::mm_to_in * distance;
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@ -1350,7 +1361,7 @@ void GLGizmoMeasure::on_render_input_window(float x, float y, float bottom_limit
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ImGui::GetStyleColorVec4(ImGuiCol_Text));
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ImGui::PopID();
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}
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if (measure.distance_strict.has_value()) {
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if (measure.distance_strict.has_value() && measure.distance_strict->dist > 0.0) {
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double distance = measure.distance_strict->dist;
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if (use_inches)
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distance = ObjectManipulation::mm_to_in * distance;
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@ -1359,7 +1370,7 @@ void GLGizmoMeasure::on_render_input_window(float x, float y, float bottom_limit
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ImGui::GetStyleColorVec4(ImGuiCol_Text));
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ImGui::PopID();
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}
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if (measure.distance_xyz.has_value()) {
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if (measure.distance_xyz.has_value() && measure.distance_xyz->norm() > EPSILON) {
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Vec3d distance = *measure.distance_xyz;
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if (use_inches)
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distance = ObjectManipulation::mm_to_in * distance;
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