Example usage for javax.media.j3d Material Material

List of usage examples for javax.media.j3d Material Material

Introduction

In this page you can find the example usage for javax.media.j3d Material Material.

Prototype

public Material(Color3f ambientColor, Color3f emissiveColor, Color3f diffuseColor, Color3f specularColor,
        float shininess) 

Source Link

Document

Constructs and initializes a new material object using the specified parameters.

Usage

From source file:ConicWorld.java

private Appearance createAppearance(int idx) {
    Appearance app = new Appearance();

    // Globally used colors
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f white = new Color3f(1.0f, 1.0f, 1.0f);

    idx = idx % 5;/*from w w w . j  a va2  s  .com*/

    switch (idx) {
    // Lit solid
    case 0: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.8f, 0.0f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }
    // Lit solid, no specular
    case 1: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.0f, 0.8f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }

    // Lit solid, specular only
    case 2: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.0f, 0.8f, 0.8f);
        app.setMaterial(new Material(black, black, objColor, white, 80.0f));
        break;
    }

    // Texture mapped, lit solid
    case 3: {
        // Set up the texture map
        TextureLoader tex = new TextureLoader(texImage, this);
        app.setTexture(tex.getTexture());

        // Set up the material properties
        app.setMaterial(new Material(white, black, white, black, 1.0f));
        TextureAttributes texAttr = new TextureAttributes();
        texAttr.setTextureMode(TextureAttributes.MODULATE);
        app.setTextureAttributes(texAttr);

        break;
    }

    // Another lit solid with a different color
    case 4: {
        // Set up the material properties
        Color3f objColor = new Color3f(1.0f, 1.0f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }

    default: {
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(new Color3f(0.0f, 1.0f, 0.0f));
        app.setColoringAttributes(ca);
    }
    }

    return app;
}

From source file:PickWorld.java

private Appearance createAppearance(int idx) {
    Appearance app = new Appearance();

    // Globally used colors
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f white = new Color3f(1.0f, 1.0f, 1.0f);
    Color3f gray = new Color3f(0.4f, 0.4f, 0.4f);
    idx = idx % 5;/*from  w w w  .  j  av  a  2s  .  c  om*/

    switch (idx) {
    // Lit solid
    case 0: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.0f, 0.8f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }
    // Lit solid, specular only
    case 1: {

        // Set up the material properties
        Color3f objColor = new Color3f(0.0f, 0.4f, 0.2f);
        app.setMaterial(new Material(black, black, objColor, white, 80.0f));
        break;
    }

    case 2: {
        // Set up the texture map
        TextureLoader tex = new TextureLoader("apimage.jpg", this);
        app.setTexture(tex.getTexture());

        // Set up the material properties
        app.setMaterial(new Material(gray, black, gray, white, 1.0f));
        break;
    }

    // Texture mapped, lit solid
    case 3: {
        // Set up the texture map
        TextureLoader tex = new TextureLoader("earth.jpg", this);
        app.setTexture(tex.getTexture());

        // Set up the material properties
        app.setMaterial(new Material(gray, black, gray, white, 1.0f));
        break;
    }

    // Another lit solid with a different color
    case 4: {
        // Set up the material properties
        Color3f objColor = new Color3f(1.0f, 1.0f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }

    default: {
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(new Color3f(0.0f, 1.0f, 0.0f));
        app.setColoringAttributes(ca);
    }
    }

    return app;
}

From source file:edu.uci.ics.jung.visualization3d.VisualizationViewer.java

public BranchGroup createSceneGraph(final Canvas3D canvas) {

    objRoot = new BranchGroup();
    objRoot.setCapability(Group.ALLOW_CHILDREN_EXTEND);
    objRoot.setCapability(Group.ALLOW_CHILDREN_WRITE);

    TransformGroup objScale = new TransformGroup();
    Transform3D t3d = new Transform3D();
    //      t3d.setScale(0.05);
    objScale.setTransform(t3d);//  www  .j a  va 2  s .  com
    objRoot.addChild(objScale);

    Transform3D tt = new Transform3D();
    tt.setScale(.05);
    tt.setTranslation(new Vector3f(0, 0, -30.f));
    objTrans = new TransformGroup(tt);
    objTrans.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    objTrans.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);
    objTrans.setCapability(TransformGroup.ALLOW_CHILDREN_EXTEND);
    objScale.addChild(objTrans);
    //      objRoot.addChild(objTrans);

    // Create Colors, Materials,  and Appearances.
    Appearance look = new Appearance();
    Color3f objColor = new Color3f(0.7f, 0.7f, 0.7f);
    Color3f black = new Color3f(0.f, 0.f, 0.f);
    Color3f white = new Color3f(1.0f, 1.0f, 0.6f);
    Color3f gray = new Color3f(.2f, .2f, .2f);
    Color3f red = new Color3f(1.0f, 0, 0);
    Color3f yellow = new Color3f(1, 1, 0);

    Material objMaterial = new Material(objColor, black, objColor, white, 100.0f);
    Material blackMaterial = new Material(objColor, black, black, objColor, 10.0f);
    Material whiteMaterial = new Material(white, white, white, white, 100.0f);
    Material grayMaterial = new Material(gray, black, gray, gray, 100.0f);

    Material redMaterial = new Material(red, black, red, red, 100.0f);
    Material yellowMaterial = new Material(yellow, black, yellow, yellow, 100);

    look.setMaterial(new Material(objColor, black, objColor, white, 100.0f));
    Appearance blackLook = new Appearance();
    blackLook.setMaterial(blackMaterial);

    Appearance whiteLook = new Appearance();
    whiteLook.setMaterial(whiteMaterial);

    Appearance grayLook = new Appearance();
    grayLook.setMaterial(grayMaterial);
    grayLook.setCapability(Appearance.ALLOW_MATERIAL_READ);
    grayLook.setCapability(Appearance.ALLOW_MATERIAL_WRITE);

    final Appearance redLook = new Appearance();
    redLook.setMaterial(redMaterial);
    //      vertexLook = redLook;

    Appearance objLook = new Appearance();
    objLook.setMaterial(objMaterial);
    grayLook = objLook;
    final Appearance yellowLook = new Appearance();
    yellowLook.setMaterial(yellowMaterial);
    Bounds bounds = new BoundingSphere(new Point3d(), 300);

    MouseRotate behavior1 = new MouseRotate();
    behavior1.setTransformGroup(objTrans);
    objTrans.addChild(behavior1);
    behavior1.setSchedulingBounds(bounds);

    MouseWheelZoom behavior2 = new MouseWheelZoom();
    behavior2.setTransformGroup(objTrans);
    //      behavior2.setFactor(10);
    objTrans.addChild(behavior2);
    behavior2.setSchedulingBounds(bounds);

    MouseTranslate behavior3 = new MouseTranslate();
    behavior3.setTransformGroup(objTrans);
    objTrans.addChild(behavior3);
    behavior3.setSchedulingBounds(bounds);

    PickTranslateBehavior ptb = new PickTranslateBehavior(objRoot, canvas, bounds, PickTool.GEOMETRY);
    ptb.setSchedulingBounds(bounds);
    //      objTrans.addChild(ptb);
    ptb.setupCallback(new PickingCallback() {

        public void transformChanged(int type, TransformGroup tg) {
            if (tg == null)
                return;
            Transform3D t3d = new Transform3D();
            tg.getTransform(t3d);
            //            System.err.println(tg+" transformChanged \n"+t3d);
            Point3f p1 = new Point3f();
            V v = vertexMap.getKey(tg);
            //            Transform3D lvw = new Transform3D();
            //            tg.getLocalToVworld(lvw);
            //            System.err.println("lvw = \n"+lvw);
            //            lvw.invert();
            //            System.err.println("invert lvw = \n"+lvw);
            Point3f p0 = layout.transform(v);
            //            Transform3D vwip = new Transform3D();
            //            canvas.getVworldToImagePlate(vwip);
            //            System.err.println("vwip=\n"+vwip);
            //            t3d.mul(lvw);
            t3d.transform(p1);
            //            scale.transform(p1);
            System.err.println(
                    "change location for vertex " + v + ", transformGroup " + tg + " from " + p0 + " to " + p1);
            //            p1.set(p1.getX()*2,p1.getY()*2,p1.getZ()*2);
            //            layout.setLocation(v, p1);

        }
    });

    PickSphereBehavior psb = new PickSphereBehavior(objRoot, canvas, bounds);

    PickVertexBehavior pvb = new PickVertexBehavior(objRoot, canvas, bounds,
            renderContext.getPickedVertexState());
    objTrans.addChild(pvb);
    pvb.addChangeListener(new ChangeListener() {

        public void stateChanged(ChangeEvent e) {
            for (V v : graph.getVertices()) {
                VertexGroup<V> vg = vertexMap.get(v);
                Appearance look = redLook;
                if (renderContext.getPickedVertexState().isPicked(v)) {
                    look = yellowLook;
                }
                Node node = vg.getShape();
                if (node instanceof Primitive) {
                    ((Primitive) node).setAppearance(look);
                }
            }

        }
    });

    //Shine it with two colored lights.
    Color3f lColor1 = new Color3f(.5f, .5f, .5f);
    Color3f lColor2 = new Color3f(1.0f, 1.0f, 1.0f);
    Vector3f lDir2 = new Vector3f(-1.0f, 0.0f, -1.0f);
    DirectionalLight lgt2 = new DirectionalLight(lColor2, lDir2);
    AmbientLight ambient = new AmbientLight(lColor1);
    lgt2.setInfluencingBounds(bounds);
    ambient.setInfluencingBounds(bounds);
    objRoot.addChild(lgt2);
    objRoot.addChild(ambient);

    // Let Java 3D perform optimizations on this scene graph.
    objRoot.compile();

    //      VisRunner runner = new VisRunner((IterativeContext)elayout);
    //      runner.relax();

    return objRoot;
}

From source file:TickTockPicking.java

public BranchGroup createSceneGraph(Canvas3D c) {
    // Create the root of the branch graph
    BranchGroup objRoot = new BranchGroup();

    // Create a Transformgroup to scale all objects so they
    // appear in the scene.
    TransformGroup objScale = new TransformGroup();
    Transform3D t3d = new Transform3D();
    t3d.setScale(0.4);//from   w  w  w  .  j  a  va2 s  . com
    objScale.setTransform(t3d);
    objRoot.addChild(objScale);

    // Create a bounds for the background and behaviors
    BoundingSphere bounds = new BoundingSphere(new Point3d(0.0, 0.0, 0.0), 100.0);

    // Set up the background
    Color3f bgColor = new Color3f(0.05f, 0.05f, 0.2f);
    Background bg = new Background(bgColor);
    bg.setApplicationBounds(bounds);
    objScale.addChild(bg);

    // Set up the global lights
    Color3f lColor1 = new Color3f(0.7f, 0.7f, 0.7f);
    Vector3f lDir1 = new Vector3f(-1.0f, -1.0f, -1.0f);
    Color3f alColor = new Color3f(0.2f, 0.2f, 0.2f);

    AmbientLight aLgt = new AmbientLight(alColor);
    aLgt.setInfluencingBounds(bounds);
    DirectionalLight lgt1 = new DirectionalLight(lColor1, lDir1);
    lgt1.setInfluencingBounds(bounds);
    objScale.addChild(aLgt);
    objScale.addChild(lgt1);

    // Create a pair of transform group nodes and initialize them to
    // identity. Enable the TRANSFORM_WRITE capability so that
    // our behaviors can modify them at runtime. Add them to the
    // root of the subgraph.
    TransformGroup objTrans1 = new TransformGroup();
    objTrans1.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    objScale.addChild(objTrans1);

    TransformGroup objTrans2 = new TransformGroup();
    objTrans2.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    objTrans1.addChild(objTrans2);

    // Create the positioning and scaling transform group node.
    Transform3D t = new Transform3D();
    t.set(0.3, new Vector3d(0.0, -1.5, 0.0));
    TransformGroup objTrans3 = new TransformGroup(t);
    objTrans2.addChild(objTrans3);

    // Create a simple shape leaf node, set it's appearance, and
    // add it to the scene graph.
    Shape3D shape = new Cube();
    Appearance a = new Appearance();
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f white = new Color3f(1.0f, 1.0f, 1.0f);
    Color3f objColor = new Color3f(0.8f, 0.0f, 0.0f);
    a.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
    shape.setAppearance(a);
    shape.setCapability(shape.ALLOW_APPEARANCE_READ);
    shape.setCapability(shape.ALLOW_APPEARANCE_WRITE);
    objTrans3.addChild(shape);

    // Create a new Behavior object that will perform the desired
    // rotation on the specified transform object and add it into
    // the scene graph.
    Transform3D yAxis1 = new Transform3D();
    yAxis1.rotX(Math.PI / 2.0);
    Alpha tickTockAlpha = new Alpha(-1, Alpha.INCREASING_ENABLE | Alpha.DECREASING_ENABLE, 0, 0, 5000, 2500,
            200, 5000, 2500, 200);

    RotationInterpolator tickTock = new RotationInterpolator(tickTockAlpha, objTrans1, yAxis1,
            -(float) Math.PI / 2.0f, (float) Math.PI / 2.0f);
    tickTock.setSchedulingBounds(bounds);
    objTrans2.addChild(tickTock);

    // Create a new Behavior object that will perform the desired
    // rotation on the specified transform object and add it into
    // the scene graph.
    Transform3D yAxis2 = new Transform3D();
    Alpha rotationAlpha = new Alpha(-1, Alpha.INCREASING_ENABLE, 0, 0, 4000, 0, 0, 0, 0, 0);

    RotationInterpolator rotator = new RotationInterpolator(rotationAlpha, objTrans2, yAxis2, 0.0f,
            (float) Math.PI * 2.0f);
    rotator.setSchedulingBounds(bounds);
    objTrans2.addChild(rotator);

    // Now create the simple picking behavior
    PickHighlightBehavior pickBeh = new PickHighlightBehavior(c, objRoot, bounds);

    // Create a bunch of objects with a behavior and add them
    // into the scene graph.

    int row, col;
    Appearance[][] app = new Appearance[3][3];

    for (row = 0; row < 3; row++)
        for (col = 0; col < 3; col++)
            app[row][col] = createAppearance(row * 3 + col);

    for (int i = 0; i < 3; i++) {
        double ypos = (double) (i - 1) * 1.5;
        for (int j = 0; j < 3; j++) {
            double xpos = (double) (j - 1) * 1.5;
            objScale.addChild(createObject(app[i][j], 0.3, xpos, ypos));
        }
    }

    // Have Java 3D perform optimizations on this scene graph.
    objRoot.compile();

    return objRoot;
}

From source file:AppearanceTest.java

private Appearance createAppearance(int idx) {
    Appearance app = new Appearance();

    // Globally used colors
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f white = new Color3f(1.0f, 1.0f, 1.0f);

    switch (idx) {
    // Unlit solid
    case 0: {/*  w  ww  .  j  a  va 2  s.  com*/
        // Set up the coloring properties
        Color3f objColor = new Color3f(1.0f, 0.2f, 0.4f);
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(objColor);
        app.setColoringAttributes(ca);
        break;
    }

    // Unlit wire frame
    case 1: {
        // Set up the coloring properties
        Color3f objColor = new Color3f(0.5f, 0.0f, 0.2f);
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(objColor);
        app.setColoringAttributes(ca);

        // Set up the polygon attributes
        PolygonAttributes pa = new PolygonAttributes();
        pa.setPolygonMode(pa.POLYGON_LINE);
        pa.setCullFace(pa.CULL_NONE);
        app.setPolygonAttributes(pa);
        break;
    }

    // Unlit points
    case 2: {
        // Set up the coloring properties
        Color3f objColor = new Color3f(0.2f, 0.2f, 1.0f);
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(objColor);
        app.setColoringAttributes(ca);

        // Set up the polygon attributes
        PolygonAttributes pa = new PolygonAttributes();
        pa.setPolygonMode(pa.POLYGON_POINT);
        pa.setCullFace(pa.CULL_NONE);
        app.setPolygonAttributes(pa);

        // Set up point attributes
        PointAttributes pta = new PointAttributes();
        pta.setPointSize(5.0f);
        app.setPointAttributes(pta);
        break;
    }

    // Lit solid
    case 3: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.8f, 0.0f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }

    // Texture mapped, lit solid
    case 4: {
        // Set up the texture map
        TextureLoader tex = new TextureLoader(texImage, this);
        app.setTexture(tex.getTexture());

        TextureAttributes texAttr = new TextureAttributes();
        texAttr.setTextureMode(TextureAttributes.MODULATE);
        app.setTextureAttributes(texAttr);

        // Set up the material properties
        app.setMaterial(new Material(white, black, white, black, 1.0f));
        break;
    }

    // Transparent, lit solid
    case 5: {
        // Set up the transparency properties
        TransparencyAttributes ta = new TransparencyAttributes();
        ta.setTransparencyMode(ta.BLENDED);
        ta.setTransparency(0.6f);
        app.setTransparencyAttributes(ta);

        // Set up the polygon attributes
        PolygonAttributes pa = new PolygonAttributes();
        pa.setCullFace(pa.CULL_NONE);
        app.setPolygonAttributes(pa);

        // Set up the material properties
        Color3f objColor = new Color3f(0.7f, 0.8f, 1.0f);
        app.setMaterial(new Material(objColor, black, objColor, black, 1.0f));
        break;
    }

    // Lit solid, no specular
    case 6: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.8f, 0.0f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, black, 80.0f));
        break;
    }

    // Lit solid, specular only
    case 7: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.8f, 0.0f, 0.0f);
        app.setMaterial(new Material(black, black, black, white, 80.0f));
        break;
    }

    // Another lit solid with a different color
    case 8: {
        // Set up the material properties
        Color3f objColor = new Color3f(0.8f, 0.8f, 0.0f);
        app.setMaterial(new Material(objColor, black, objColor, white, 80.0f));
        break;
    }

    default: {
        ColoringAttributes ca = new ColoringAttributes();
        ca.setColor(new Color3f(0.0f, 1.0f, 0.0f));
        app.setColoringAttributes(ca);
    }
    }

    return app;
}

From source file:LoaderTest.java

protected BranchGroup createSceneBranchGroup() {
    BranchGroup objRoot = super.createSceneBranchGroup();

    // create a TransformGroup to flip the hand onto its end and enlarge it.
    TransformGroup objTrans1 = new TransformGroup();
    Transform3D tr = new Transform3D();
    objTrans1.getTransform(tr);/*w  w w  . ja v a  2  s.co m*/
    tr.rotX(90.0 * Math.PI / 180.0);
    tr.setScale(10.0);
    objTrans1.setTransform(tr);

    // create a TransformGroup to rotate the hand
    TransformGroup objTrans2 = new TransformGroup();
    objTrans2.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    objTrans2.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);

    BoundingSphere bounds = new BoundingSphere(new Point3d(0.0, 0.0, 0.0), 100.0);

    // create a RotationInterpolator behavior to rotate the hand
    Transform3D yAxis = new Transform3D();
    Alpha rotationAlpha = new Alpha(-1, Alpha.INCREASING_ENABLE, 0, 0, 4000, 0, 0, 0, 0, 0);

    RotationInterpolator rotator = new RotationInterpolator(rotationAlpha, objTrans2, yAxis, 0.0f,
            (float) Math.PI * 2.0f);
    rotator.setSchedulingBounds(bounds);
    objTrans2.addChild(rotator);

    // Set up the global lights
    Color3f lColor1 = new Color3f(0.7f, 0.7f, 0.7f);
    Vector3f lDir1 = new Vector3f(-1.0f, -1.0f, -1.0f);
    Color3f alColor = new Color3f(0.2f, 0.2f, 0.2f);

    AmbientLight aLgt = new AmbientLight(alColor);
    aLgt.setInfluencingBounds(bounds);
    DirectionalLight lgt1 = new DirectionalLight(lColor1, lDir1);
    lgt1.setInfluencingBounds(bounds);

    objRoot.addChild(aLgt);
    objRoot.addChild(lgt1);

    // load the object file
    Scene scene = null;
    Shape3D shape = null;

    // read in the geometry information from the data file
    ObjectFile objFileloader = new ObjectFile(ObjectFile.RESIZE);

    try {
        scene = objFileloader.load("hand1.obj");
    } catch (Exception e) {
        scene = null;
        System.err.println(e);
    }

    if (scene == null)
        System.exit(1);

    // retrieve the Shape3D object from the scene
    BranchGroup branchGroup = scene.getSceneGroup();
    shape = (Shape3D) branchGroup.getChild(0);

    // create an Appearance and Material
    Appearance app = new Appearance();
    Color3f objColor = new Color3f(1.0f, 0.7f, 0.8f);
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    app.setMaterial(new Material(objColor, black, objColor, black, 80.0f));

    // assign the appearance to the Shape
    shape.setAppearance(app);

    // connect the scenegraph
    objTrans2.addChild(scene.getSceneGroup());
    objTrans1.addChild(objTrans2);
    objRoot.addChild(objTrans1);

    return objRoot;
}

From source file:Human1.java

void createHuman() {
    Human_body = new TransformGroup();

    // center the body
    tmpVector.set(0.0f, -1.5f, 0.0f);/*from   w ww.j  a  v  a  2s. com*/
    tmpTrans.set(tmpVector);
    Human_body.setTransform(tmpTrans);

    // Set up an appearance to make the body with red ambient,
    // black emmissive, red diffuse and white specular coloring
    Material material = new Material(red, black, red, white, 64);
    Appearance appearance = new Appearance();
    appearance.setMaterial(material);

    // offset and place the cylinder for the body
    tmpTG = new TransformGroup();
    // offset the shape
    tmpVector.set(0.0f, 1.5f, 0.0f);
    tmpTrans.set(tmpVector);
    tmpTG.setTransform(tmpTrans);
    tmpCyl = new Cylinder(0.75f, 3.0f, appearance);
    tmpTG.addChild(tmpCyl);

    // add the shape to the body
    Human_body.addChild(tmpTG);

    // create the r_shoulder TransformGroup
    Human_r_shoulder = new TransformGroup();
    Human_r_shoulder.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);
    Human_r_shoulder.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    // translate from the waist
    tmpVector.set(-0.95f, 2.9f, -0.2f);
    tmpTrans.set(tmpVector);
    Human_r_shoulder.setTransform(tmpTrans);

    // place the sphere for the r_shoulder
    tmpSphere = new Sphere(0.22f, appearance);
    Human_r_shoulder.addChild(tmpSphere);

    // offset and place the cylinder for the r_shoulder
    tmpTG = new TransformGroup();
    // offset the shape
    tmpVector.set(0.0f, -0.5f, 0.0f);
    tmpTrans.set(tmpVector);
    tmpTG.setTransform(tmpTrans);
    tmpCyl = new Cylinder(0.2f, 1.0f, appearance);
    tmpTG.addChild(tmpCyl);

    // add the shape to the r_shoulder
    Human_r_shoulder.addChild(tmpTG);

    // add the shoulder to the body group
    Human_body.addChild(Human_r_shoulder);

    // create the r_elbow TransformGroup
    Human_r_elbow = new TransformGroup();
    Human_r_elbow.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);
    Human_r_elbow.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    tmpVector.set(0.0f, -1.054f, 0.0f);
    tmpTrans.set(tmpVector);
    Human_r_elbow.setTransform(tmpTrans);

    // place the sphere for the r_elbow
    tmpSphere = new Sphere(0.22f, appearance);
    Human_r_elbow.addChild(tmpSphere);

    // offset and place the cylinder for the r_shoulder
    tmpTG = new TransformGroup();
    // offset the shape
    tmpVector.set(0.0f, -0.5f, 0.0f);
    tmpTrans.set(tmpVector);
    tmpTG.setTransform(tmpTrans);
    tmpCyl = new Cylinder(0.2f, 1.0f, appearance);
    tmpTG.addChild(tmpCyl);

    // add the shape to the r_shoulder
    Human_r_elbow.addChild(tmpTG);

    // add the elbow to the shoulder group
    Human_r_shoulder.addChild(Human_r_elbow);

    // create the l_shoulder TransformGroup
    Human_l_shoulder = new TransformGroup();
    Human_l_shoulder.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);
    Human_l_shoulder.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    tmpVector.set(0.95f, 2.9f, -0.2f);
    tmpTrans.set(tmpVector);
    Human_l_shoulder.setTransform(tmpTrans);

    // place the sphere for the l_shoulder
    tmpSphere = new Sphere(0.22f, appearance);
    Human_l_shoulder.addChild(tmpSphere);

    // offset and place the cylinder for the l_shoulder
    tmpTG = new TransformGroup();
    // offset the shape
    tmpVector.set(0.0f, -0.5f, 0.0f);
    tmpTrans.set(tmpVector);
    tmpTG.setTransform(tmpTrans);
    tmpCyl = new Cylinder(0.2f, 1.0f, appearance);
    tmpTG.addChild(tmpCyl);

    // add the shape to the l_shoulder
    Human_l_shoulder.addChild(tmpTG);

    // add the shoulder to the body group
    Human_body.addChild(Human_l_shoulder);

    // create the r_elbow TransformGroup
    Human_l_elbow = new TransformGroup();
    Human_l_elbow.setCapability(TransformGroup.ALLOW_TRANSFORM_READ);
    Human_l_elbow.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    tmpVector.set(0.0f, -1.054f, 0.0f);
    tmpTrans.set(tmpVector);
    Human_l_elbow.setTransform(tmpTrans);

    // place the sphere for the l_elbow
    tmpSphere = new Sphere(0.22f, appearance);
    Human_l_elbow.addChild(tmpSphere);

    // offset and place the cylinder for the l_elbow
    tmpTG = new TransformGroup();
    // offset the shape
    tmpVector.set(0.0f, -0.5f, 0.0f);
    tmpTrans.set(tmpVector);
    tmpTG.setTransform(tmpTrans);
    tmpCyl = new Cylinder(0.2f, 1.0f, appearance);
    tmpTG.addChild(tmpCyl);

    // add the shape to the l_elbow
    Human_l_elbow.addChild(tmpTG);

    // add the shoulder to the body group
    Human_l_shoulder.addChild(Human_l_elbow);

    // create the skullbase TransformGroup
    Human_skullbase = new TransformGroup();
    tmpVector.set(0.0f, 3.632f, 0.0f);
    tmpTrans.set(tmpVector);
    Human_skullbase.setTransform(tmpTrans);

    // offset and place the sphere for the skull
    tmpSphere = new Sphere(0.5f, appearance);

    // add the shape to the l_shoulder
    Human_skullbase.addChild(tmpSphere);

    // add the shoulder to the body group
    Human_body.addChild(Human_skullbase);

}

From source file:GearTest.java

public BranchGroup createSceneGraph(int toothCount) {
    // Create the root of the branch graph
    BranchGroup objRoot = new BranchGroup();

    // Create a Transformgroup to scale all objects so they
    // appear in the scene.
    TransformGroup objScale = new TransformGroup();
    Transform3D t3d = new Transform3D();
    t3d.setScale(0.4);//  w w w  .j a v a2  s .c o m
    objScale.setTransform(t3d);
    objRoot.addChild(objScale);

    // Create a bounds for the background and lights
    BoundingSphere bounds = new BoundingSphere(new Point3d(0.0, 0.0, 0.0), 100.0);

    // Set up the background
    Color3f bgColor = new Color3f(0.05f, 0.05f, 0.2f);
    Background bgNode = new Background(bgColor);
    bgNode.setApplicationBounds(bounds);
    objScale.addChild(bgNode);

    // Set up the global lights
    Color3f light1Color = new Color3f(1.0f, 1.0f, 0.9f);
    Vector3f light1Direction = new Vector3f(4.0f, -7.0f, -12.0f);
    Color3f light2Color = new Color3f(0.3f, 0.3f, 0.4f);
    Vector3f light2Direction = new Vector3f(-6.0f, -2.0f, -1.0f);
    Color3f ambientColor = new Color3f(0.1f, 0.1f, 0.1f);

    AmbientLight ambientLightNode = new AmbientLight(ambientColor);
    ambientLightNode.setInfluencingBounds(bounds);
    objScale.addChild(ambientLightNode);

    DirectionalLight light1 = new DirectionalLight(light1Color, light1Direction);
    light1.setInfluencingBounds(bounds);
    objScale.addChild(light1);

    DirectionalLight light2 = new DirectionalLight(light2Color, light2Direction);
    light2.setInfluencingBounds(bounds);
    objScale.addChild(light2);

    // Create the transform group node and initialize it to the
    // identity. Enable the TRANSFORM_WRITE capability so that
    // our behavior code can modify it at runtime. Add it to the
    // root of the subgraph.
    TransformGroup objTrans = new TransformGroup();
    objTrans.setCapability(TransformGroup.ALLOW_TRANSFORM_WRITE);
    objScale.addChild(objTrans);

    // Create an Appearance.
    Appearance look = new Appearance();
    Color3f objColor = new Color3f(0.5f, 0.5f, 0.6f);
    Color3f black = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f white = new Color3f(1.0f, 1.0f, 1.0f);
    look.setMaterial(new Material(objColor, black, objColor, white, 100.0f));

    // Create a gear, add it to the scene graph.
    //   SpurGear gear = new SpurGear(toothCount, 1.0f, 0.2f,
    SpurGear gear = new SpurGearThinBody(toothCount, 1.0f, 0.2f, 0.05f, 0.05f, 0.3f, 0.28f, look);
    objTrans.addChild(gear);

    // Create a new Behavior object that will rotate the object and
    // add it into the scene graph.
    Transform3D yAxis = new Transform3D();
    Alpha rotationAlpha = new Alpha(-1, Alpha.INCREASING_ENABLE, 0, 0, 8000, 0, 0, 0, 0, 0);

    RotationInterpolator rotator = new RotationInterpolator(rotationAlpha, objTrans, yAxis, 0.0f,
            (float) Math.PI * 2.0f);
    rotator.setSchedulingBounds(bounds);
    objTrans.addChild(rotator);

    // Have Java 3D perform optimizations on this scene graph.
    objRoot.compile();

    return objRoot;
}

From source file:SimpleIndexedQuad.java

/**
 * Build a cube from an IndexedQuadArray. This method creates the vertices
 * as a set of eight points and the normals as a set of six vectors (one for
 * each face). The data is then defined such that each vertex has a
 * different normal associated with it when it is being used for a different
 * face.//from   w w w . j a  va  2  s  . co  m
 * 
 * @return Node that is the shape.
 */
protected Node buildShape() {
    //The shape. The constructor specifies 8 vertices, that both
    //vertices and normals are to be defined and that there are
    //24 normals to be specified (4 for each of the 6 faces).
    IndexedQuadArray indexedCube = new IndexedQuadArray(8,
            IndexedQuadArray.COORDINATES | IndexedQuadArray.NORMALS, 24);
    //The vertex coordinates defined as an array of points.
    Point3f[] cubeCoordinates = { new Point3f(1.0f, 1.0f, 1.0f), new Point3f(-1.0f, 1.0f, 1.0f),
            new Point3f(-1.0f, -1.0f, 1.0f), new Point3f(1.0f, -1.0f, 1.0f), new Point3f(1.0f, 1.0f, -1.0f),
            new Point3f(-1.0f, 1.0f, -1.0f), new Point3f(-1.0f, -1.0f, -1.0f),
            new Point3f(1.0f, -1.0f, -1.0f) };
    //The vertex normals defined as an array of vectors
    Vector3f[] normals = { new Vector3f(0.0f, 0.0f, 1.0f), new Vector3f(0.0f, 0.0f, -1.0f),
            new Vector3f(1.0f, 0.0f, 0.0f), new Vector3f(-1.0f, 0.0f, 0.0f), new Vector3f(0.0f, 1.0f, 0.0f),
            new Vector3f(0.0f, -1.0f, 0.0f) };
    //Define the indices used to reference vertex array
    int coordIndices[] = { 0, 1, 2, 3, 7, 6, 5, 4, 0, 3, 7, 4, 5, 6, 2, 1, 0, 4, 5, 1, 6, 7, 3, 2 };
    //Define the indices used to reference normal array
    int normalIndices[] = { 0, 0, 0, 0, 1, 1, 1, 1, 2, 2, 2, 2, 3, 3, 3, 3, 4, 4, 4, 4, 5, 5, 5, 5 };
    //Set the data
    indexedCube.setCoordinates(0, cubeCoordinates);
    indexedCube.setNormals(0, normals);
    indexedCube.setCoordinateIndices(0, coordIndices);
    indexedCube.setNormalIndices(0, normalIndices);
    //Define an appearance for the shape
    Appearance app = new Appearance();
    Color3f ambientColour = new Color3f(1.0f, 0.0f, 0.0f);
    Color3f emissiveColour = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f specularColour = new Color3f(1.0f, 1.0f, 1.0f);
    Color3f diffuseColour = new Color3f(1.0f, 0.0f, 0.0f);
    float shininess = 20.0f;
    app.setMaterial(new Material(ambientColour, emissiveColour, diffuseColour, specularColour, shininess));
    //Create and return the shape
    return new Shape3D(indexedCube, app);
}

From source file:SimpleIndexedQuadSmooth.java

/**
 * Build a cube from an IndexedQuadArray. This method creates the vertices
 * as a set of eight points and the normals as a set of six vectors (one for
 * each face). The data is then defined such that each vertex has a
 * different normal associated with it when it is being used for a different
 * face.// w w  w .  ja  va  2s.  co m
 * 
 * @return Node that is the shape.
 */
protected Node buildShape() {
    //The shape. The constructor specifies 8 vertices, that both
    //vertices and normals are to be defined and that there are
    //24 normals to be specified (4 for each of the 6 faces).
    IndexedQuadArray indexedCube = new IndexedQuadArray(8,
            IndexedQuadArray.COORDINATES | IndexedQuadArray.NORMALS, 24);
    //The vertex coordinates defined as an array of points.
    Point3f[] cubeCoordinates = { new Point3f(1.0f, 1.0f, 1.0f), new Point3f(-1.0f, 1.0f, 1.0f),
            new Point3f(-1.0f, -1.0f, 1.0f), new Point3f(1.0f, -1.0f, 1.0f), new Point3f(1.0f, 1.0f, -1.0f),
            new Point3f(-1.0f, 1.0f, -1.0f), new Point3f(-1.0f, -1.0f, -1.0f),
            new Point3f(1.0f, -1.0f, -1.0f) };
    //The vertex normals defined as an array of vectors
    Vector3f[] normals = { new Vector3f(1.0f, 1.0f, 1.0f), new Vector3f(-1.0f, 1.0f, 1.0f),
            new Vector3f(-1.0f, -1.0f, 1.0f), new Vector3f(1.0f, -1.0f, 1.0f), new Vector3f(1.0f, 1.0f, -1.0f),
            new Vector3f(-1.0f, 1.0f, -1.0f), new Vector3f(-1.0f, -1.0f, -1.0f),
            new Vector3f(1.0f, -1.0f, -1.0f) };
    //Define the indices used to reference vertex array
    int coordIndices[] = { 0, 1, 2, 3, 7, 6, 5, 4, 0, 3, 7, 4, 5, 6, 2, 1, 0, 4, 5, 1, 6, 7, 3, 2 };
    //Define the indices used to reference normal array
    int normalIndices[] = { 0, 1, 2, 3, 7, 6, 5, 4, 0, 3, 7, 4, 5, 6, 2, 1, 0, 4, 5, 1, 6, 7, 3, 2 };
    //Set the data
    indexedCube.setCoordinates(0, cubeCoordinates);
    indexedCube.setNormals(0, normals);
    indexedCube.setCoordinateIndices(0, coordIndices);
    indexedCube.setNormalIndices(0, normalIndices);
    //Define an appearance for the shape
    Appearance app = new Appearance();
    Color3f ambientColour = new Color3f(1.0f, 0.0f, 0.0f);
    Color3f emissiveColour = new Color3f(0.0f, 0.0f, 0.0f);
    Color3f specularColour = new Color3f(1.0f, 1.0f, 1.0f);
    Color3f diffuseColour = new Color3f(1.0f, 0.0f, 0.0f);
    float shininess = 20.0f;
    app.setMaterial(new Material(ambientColour, emissiveColour, diffuseColour, specularColour, shininess));
    //Create and return the shape
    return new Shape3D(indexedCube, app);
}