File: face_orientation_painter.cpp

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// K-3D
// Copyright (c) 1995-2007, Timothy M. Shead
//
// Contact: tshead@k-3d.com
//
// This program is free software; you can redistribute it and/or
// modify it under the terms of the GNU General Public
// License as published by the Free Software Foundation; either
// version 2 of the License, or (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
// General Public License for more details.
//
// You should have received a copy of the GNU General Public
// License along with this program; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA

/** \file
	\author Timothy M. Shead (tshead@k-3d.com)
*/

#include <k3d-i18n-config.h>
#include <k3dsdk/document_plugin_factory.h>
#include <k3dsdk/mesh_painter_gl.h>
#include <k3dsdk/painter_render_state_gl.h>
#include <k3dsdk/polyhedron.h>
#include <k3dsdk/selection.h>

#include <boost/scoped_ptr.hpp>

namespace module
{

namespace opengl
{

namespace painters
{

/////////////////////////////////////////////////////////////////////////////
// face_orientation_painter

class face_orientation_painter :
	public k3d::gl::mesh_painter
{
	typedef k3d::gl::mesh_painter base;

public:
	face_orientation_painter(k3d::iplugin_factory& Factory, k3d::idocument& Document) :
		base(Factory, Document),
		m_draw_selected(init_owner(*this) + init_name("draw_selected") + init_label(_("Draw Selected")) + init_description(_("Draw normals for selected polygons")) + init_value(true)),
		m_draw_unselected(init_owner(*this) + init_name("draw_unselected") + init_label(_("Draw Unselected")) + init_description(_("Draw normals for unselected polygons")) + init_value(false)),
		m_selected_color(init_owner(*this) + init_name("selected_color") + init_label(_("Selected Color")) + init_description(_("Normal color for selected polygons")) + init_value(k3d::color(0, 1, 1))),
		m_unselected_color(init_owner(*this) + init_name("unselected_color") + init_label(_("Unselected Color")) + init_description(_("Normal color for unselected polygons")) + init_value(k3d::color(0, 0.6, 0.6)))
	{
		m_draw_selected.changed_signal().connect(make_async_redraw_slot());
		m_draw_unselected.changed_signal().connect(make_async_redraw_slot());
		m_selected_color.changed_signal().connect(make_async_redraw_slot());
		m_unselected_color.changed_signal().connect(make_async_redraw_slot());
	}

	static k3d::bool_t selected(const k3d::mesh::selection_t& Selection, const k3d::uint_t Index)
	{
		return Selection[Index];
	}

	static k3d::bool_t unselected(const k3d::mesh::selection_t& Selection, const k3d::uint_t Index)
	{
		return !Selection[Index];
	}

	template<typename FunctorT>
	static void draw(const k3d::polyhedron::const_primitive& Polyhedron, const k3d::mesh::points_t& Points, const k3d::typed_array<k3d::point3>& Centers, const k3d::color& Color, FunctorT FaceTest)
	{
		const k3d::uint_t face_count = Polyhedron.face_first_loops.size();

		k3d::gl::color3d(Color);

		glBegin(GL_LINES);
		for(k3d::uint_t face = 0; face != face_count; ++face)
		{
			if(FaceTest(Polyhedron.face_selections, face))
			{
				const k3d::point3 first_point = Points[Polyhedron.vertex_points[Polyhedron.loop_first_edges[Polyhedron.face_first_loops[face]]]];
				const k3d::point3 second_point = Points[Polyhedron.vertex_points[Polyhedron.clockwise_edges[Polyhedron.loop_first_edges[Polyhedron.face_first_loops[face]]]]];
				const k3d::point3 center_point = Centers[face];

				const k3d::point3 glyph_point1 = ((first_point - center_point) * 0.9) + center_point;
				const k3d::point3 glyph_point2 = ((second_point - center_point) * 0.9) + center_point;
				const k3d::point3 glyph_point3 = ((second_point - center_point) * 0.8) + center_point;

				k3d::gl::vertex3d(glyph_point1);
				k3d::gl::vertex3d(glyph_point2);
				k3d::gl::vertex3d(glyph_point2);
				k3d::gl::vertex3d(glyph_point3);
			}
		}
		glEnd();
	}

	void on_paint_mesh(const k3d::mesh& Mesh, const k3d::gl::painter_render_state& RenderState, k3d::iproperty::changed_signal_t& ChangedSignal)
	{
		const k3d::bool_t draw_selected = m_draw_selected.pipeline_value() && RenderState.show_component_selection;
		const k3d::bool_t draw_unselected = m_draw_unselected.pipeline_value();
		if(!draw_selected && !draw_unselected)
			return;

		for(k3d::mesh::primitives_t::const_iterator primitive = Mesh.primitives.begin(); primitive != Mesh.primitives.end(); ++primitive)
		{
			boost::scoped_ptr<k3d::polyhedron::const_primitive> polyhedron(k3d::polyhedron::validate(Mesh, **primitive));
			if(!polyhedron.get())
				continue;

			const k3d::mesh::points_t& points = *Mesh.points;
			const k3d::uint_t face_count = polyhedron->face_first_loops.size();
	
			// Calculate face centers ...
			k3d::typed_array<k3d::point3> centers(face_count);
			for(k3d::uint_t face = 0; face != face_count; ++face)
				centers[face] = k3d::polyhedron::center(polyhedron->vertex_points, polyhedron->clockwise_edges, points, polyhedron->loop_first_edges[polyhedron->face_first_loops[face]]);
	
			k3d::gl::store_attributes attributes;
			glDisable(GL_LIGHTING);
	
			if(draw_selected)
				draw(*polyhedron, points, centers, m_selected_color.pipeline_value(), selected);
	
			if(draw_unselected)
				draw(*polyhedron, points, centers, m_unselected_color.pipeline_value(), unselected);
		}
	}
	
	static k3d::iplugin_factory& get_factory()
	{
		static k3d::document_plugin_factory<face_orientation_painter, k3d::interface_list<k3d::gl::imesh_painter > > factory(
			k3d::uuid(0x7bc1ee5f, 0x45802906, 0x323984bf, 0xcbe858d6),
			"OpenGLFaceOrientationPainter",
			_("Draws arrows to show polyhedron face orientation"),
			"OpenGL Painter",
			k3d::iplugin_factory::STABLE);

		return factory;
	}

private:
	k3d_data(k3d::bool_t, immutable_name, change_signal, with_undo, local_storage, no_constraint, writable_property, with_serialization) m_draw_selected;
	k3d_data(k3d::bool_t, immutable_name, change_signal, with_undo, local_storage, no_constraint, writable_property, with_serialization) m_draw_unselected;
	k3d_data(k3d::color, immutable_name, change_signal, with_undo, local_storage, no_constraint, writable_property, with_serialization) m_selected_color;
	k3d_data(k3d::color, immutable_name, change_signal, with_undo, local_storage, no_constraint, writable_property, with_serialization) m_unselected_color;
};

/////////////////////////////////////////////////////////////////////////////
// face_orientation_painter_factory

k3d::iplugin_factory& face_orientation_painter_factory()
{
	return face_orientation_painter::get_factory();
}

} // namespace painters

} // namespace opengl

} // namespace module