Ejemplo n.º 1
0
        void GenerateGeometry(List <List <Vector3> > segments, GameObject container, IDictionary properties, string type)
        {
            string pname = OSMTools.GetProperty(properties, "name");
            // Debug.Log( "Processing:" + pname);
            //List<Vector2> points = new List<Vector2>();

            GameObject go = new GameObject("building");

            go.transform.parent = container.transform;
            go.layer            = LayerMask.NameToLayer("Buildings");
            go.name             = pname;
            //go.transform.position = segments[0][0];
            go.transform.localPosition = Vector3.zero;
            //go.name = properties["kind"].ToString();
            MassiveFeature f = go.AddComponent <MassiveFeature>();

            f.SetProperties(properties);
            f.SetSegments(segments);
            f.SetType(type);
            //if height it not present assume 1 floor
            height = f.height == 0 ? 5 : f.height;

            CreateRoof(segments, go);
            CreateWalls(segments, go);
            MeshTools.MoveGameObjectToTerrain(TileBoundsMeters, this.transform.position, mc, go, Walls.GetComponent <MeshFilter>().sharedMesh);

            //create roof

            //MeshTools.FitMeshToTerrain(TileBoundsMeters, this.transform.position, mc, msh);
            //MeshTools.MoveMeshToTerrain(TileBoundsMeters, this.transform.position, mc, msh, f.height, go);
        }
Ejemplo n.º 2
0
        void CreateWall(UnityEngine.Mesh m, List <Vector3> wall, float height, GameObject parent)
        {
            if (MeshTools.IsClockwise(wall))
            {
                wall.Reverse();
            }

            List <Vector3> v = new List <Vector3>();

            m.GetVertices(v);
            List <int> t = new List <int>();

            m.GetTriangles(t, 0);

            List <Vector2> uv = new List <Vector2>();

            m.GetUVs(0, uv);

            Vector3 h = new Vector3(0, height, 0);

            for (int i = 0; i < wall.Count - 1; i++)
            {
                Vector3 v1b = wall[i];
                Vector3 v2b = wall[i + 1];

                Vector3 v1t = v1b + h;
                Vector3 v2t = v2b + h;

                v.Add(v1b);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(0, 1 * height));

                v.Add(v1t);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(0, 0));

                v.Add(v2b);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(1, 1 * height));

                v.Add(v1t);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(0, 0));


                v.Add(v2t);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(1, 0));

                v.Add(v2b);
                t.Add(v.Count - 1);
                uv.Add(new Vector2(1, 1 * height));
            }
            m.SetVertices(v);
            m.SetTriangles(t, 0);
            m.SetUVs(0, uv);
        }
Ejemplo n.º 3
0
        /**
         * Interpolates a list of points, inserting amt points between each vertex equally spaced
         * TODO: Try this formula to space by distance (this avoids dense clumping on small lists)
         * dx = x1 - x0
         * dy = y1 - y0
         * l = Sqrt(dx^2 + dy^2)
         * x = x0 + dx/l * t
         * y = y0 + dy/l * t
         */
        public static List <Vector3> InsertPoints(List <Vector3> p, int amt)
        {
            int            MaxInsertions = 200;
            List <Vector3> vout          = new List <Vector3>();

            Vector3 first = p[0];

            for (int i = 0; i < p.Count; i++)
            {
                vout.Add(p[i]);
                if (i < p.Count - 1)
                {
                    Vector3 n = p[i + 1];

                    Vector3 dif = n - p[i];

                    float stepsize = (1.0f / (float)amt);

                    Vector3 dir = dif.normalized;

                    float dist = Vector3.Distance(p[i], n);
                    for (float f = 0; f < MaxInsertions; f++)
                    {
                        Vector3 inb = MeshTools.LerpByDistance(p[i], n, f * amt);
                        if (Vector3.Distance(first, inb) > Vector3.Distance(first, n))
                        {
                            break;
                        }
                        vout.Add(inb);
                    }

                    /*
                     * for ( float f = stepsize; f< 1; f += stepsize) {
                     * Vector3 inb = Vector3.Lerp(p[i], n, f);
                     * vout.Add(inb);
                     * }
                     */
                }
            }

            return(vout);
        }
Ejemplo n.º 4
0
        void CreateRoof(List <List <Vector3> > segments, GameObject parent)
        {
            GameObject Roof = new GameObject("roof");

            Roof.transform.parent        = parent.transform;
            Roof.transform.localPosition = Vector3.zero;
            Roof.layer = LayerMask.NameToLayer("Buildings");

            UnityEngine.Mesh msh = new UnityEngine.Mesh();
            msh = MeshTools.Triangulate(segments);

            List <Vector3> v = new List <Vector3>();

            msh.GetVertices(v);
            for (int i = 0; i < v.Count; i++)
            {
                if (i == 0)
                {
                    Roof.transform.position = v[i];
                }
                v[i] = new Vector3(v[i].x, height, v[i].z) - Roof.transform.position + this.transform.position;
            }
            msh.SetVertices(v);

            MeshTools.CreateUVS(TileBoundsMeters, msh);
            msh.RecalculateNormals();
            msh.RecalculateTangents();
            msh.RecalculateBounds();

            // Set up game object with mesh;
            MeshRenderer r = Roof.AddComponent <MeshRenderer>();

            r.material          = RoofMaterial;
            r.shadowCastingMode = UnityEngine.Rendering.ShadowCastingMode.On;
            MeshFilter filter = Roof.AddComponent(typeof(MeshFilter)) as MeshFilter;

            filter.mesh = msh;

            //Roof.AddComponent<MeshCollider>(); //required for mesh fix
        }
        public void CreateRoadGeometry()
        {
            foreach (Road r in Roads)
            {
                for (int i = 0; i < r.nodes.Count - 1; i++)
                {
                    Node o1 = r.nodes[i];
                    Node o2 = r.nodes[i + 1];

                    Vector3 v1 = o1.pos - r.go.transform.position + this.transform.position;
                    //v1 = Adjust(r, v1);
                    //v1 += new Vector3( 0, MeshTools.GetMeshHeight(TileBoundsMeters, r.go.transform.position, mc, v1), 0);
                    Vector3 v2 = o2.pos - r.go.transform.position + this.transform.position;
                    //v2 = Adjust(r, v2);
                    //v2 += new Vector3(0, MeshTools.GetMeshHeight(TileBoundsMeters, r.go.transform.position, mc, v2), 0);

                    //TODO: if the straight angle between 2 consecutive nodes is low, skip generating connections and join directly
                    //float angle = MeshTools.AngleBetween2D(v2-v1, v3-v2);
                    //Debug.Log(angle);


                    //calculate connection offsets (pull back from end point to fit intersection)
                    Vector3 mv1s = MeshTools.LerpByDistance(v1, v2, r.width);
                    //GameObject go1 = GameObject.CreatePrimitive(PrimitiveType.Sphere);
                    //go1.transform.position = mv1;

                    Vector3 mv1e = MeshTools.LerpByDistance(v2, v1, r.width);
                    //GameObject go2 = GameObject.CreatePrimitive(PrimitiveType.Sphere);
                    //go2.transform.position = mv2;

                    //float dist = (v2.pos - v1.pos).magnitude;
                    Vector3 n1 = MeshTools.GetNormal(v1, v1, v2) * r.width;
                    //
                    if (RoadHighQuality == true)
                    {
                        r.CreateHQStraight(mv1s, mv1e, n1, mc);
                    }
                    else
                    {
                        r.CreateStraight(mv1s, mv1e, n1);
                    }

                    //create connecting geometry between 2 connected line nodes, e.g. an elbow or t
                    if (i < r.nodes.Count - 2)
                    {
                        Node    o3 = r.nodes[i + 2];
                        Vector3 v3 = o3.pos - r.go.transform.position + this.transform.position;
                        //v3 += new Vector3(0, MeshTools.GetMeshHeight(TileBoundsMeters, r.go.transform.position, mc, v3), 0);
                        //v3 = Adjust(r, v3);
                        Vector3 mv2s = MeshTools.LerpByDistance(v2, v3, r.width);
                        //GameObject go3 = GameObject.CreatePrimitive(PrimitiveType.Sphere);
                        //go3.transform.position = mv3;

                        //v2 = MeshTools.LerpByDistance(v3, v2, r.width);
                        Vector3 n2 = MeshTools.GetNormal(v2, v2, v3) * r.width;
                        // r.CreateConnection(mv2, mv3, n1, n2);
                        r.CreateSmoothConnection(v1, v2, v2, v3,
                                                 mv1e, mv2s, n1, n2);
                    }
                }



                r.CreateMesh();

                //MeshTools.FitMeshToTerrain(TileBoundsMeters, r.go.transform.position - this.transform.position, mc, r.m);
                //MeshTools.UpdatePivot(r.go, r.m);
                r.go.AddComponent <MeshFilter>().mesh = r.m;
                MeshRenderer re = r.go.AddComponent <MeshRenderer>();
                re.material = GetMaterialForKind(r.kind, r.kind_detail);

                r.m.RecalculateBounds();

                re.shadowCastingMode = UnityEngine.Rendering.ShadowCastingMode.Off;
                re.receiveShadows    = true;

                r.go.AddComponent <MeshCollider>();
            }

            this.transform.position = new Vector3(0, 0.1f, 0);
        }
Ejemplo n.º 6
0
        //n2 is used for the end angle
        // v1,v2 = point2 pulled away from intersection
        public void CreateHQStraight(Vector3 v1, Vector3 v2, Vector3 n1, MeshCollider Terrain)
        {
            float dist = Vector3.Distance(v1, v2);
            int   i;


            float steps  = dist / MetersPerTile;
            int   isteps = Mathf.FloorToInt(steps);

            for (i = 0; i <= isteps; i++)
            {
                Vector3 vv1 = MeshTools.LerpByDistance(v1, v2, i * MetersPerTile);

                Vector3 vv2;

                //if we are on the last step (always equal or smaller than MetersPerTile) then use v2 rather than lerp
                if (i > isteps - 1)
                {
                    vv2    = v2;
                    vscale = steps - isteps;
                }
                else //otherwise create a segment MetersPerTile long
                {
                    vv2    = MeshTools.LerpByDistance(v1, v2, i * MetersPerTile + MetersPerTile);
                    vscale = 1;
                }

                vv1 += new Vector3(0, MeshTools.GetMeshHeightSimple(Terrain, vv1) + 1, 0);
                vv2 += new Vector3(0, MeshTools.GetMeshHeightSimple(Terrain, vv2) + 1, 0);

                v.Add(vv1 - n1);
                t.Add(v.Count - 1);
                v.Add(vv1 + n1);
                t.Add(v.Count - 1);
                v.Add(vv2 - n1);
                t.Add(v.Count - 1);

                u.Add(new Vector2(0, 0));
                u.Add(new Vector2(1, 0));
                u.Add(new Vector2(0, vscale));

                v.Add(vv1 + n1);
                t.Add(v.Count - 1);
                v.Add(vv2 + n1);
                t.Add(v.Count - 1);
                v.Add(vv2 - n1);
                t.Add(v.Count - 1);
                u.Add(new Vector2(1, 0));
                u.Add(new Vector2(1, vscale));
                u.Add(new Vector2(0, vscale));

                if (kind != KIND_PATH)
                {
                    //add sidewalk
                    v.Add(vv1 - n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);
                    v.Add(vv1 - n1);
                    t.Add(v.Count - 1);
                    v.Add(vv2 - n1);
                    t.Add(v.Count - 1);

                    u.Add(new Vector2(0, 0));
                    u.Add(new Vector2(1, 0));
                    u.Add(new Vector2(0, vscale));

                    v.Add(vv1 - n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);
                    v.Add(vv2 - n1);
                    t.Add(v.Count - 1);
                    v.Add(vv2 - n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);

                    u.Add(new Vector2(0, 0));
                    u.Add(new Vector2(1, 0));
                    u.Add(new Vector2(0, vscale));

                    //add sidewalk 2
                    v.Add(vv2 + n1);
                    t.Add(v.Count - 1);
                    v.Add(vv1 + n1);
                    t.Add(v.Count - 1);
                    v.Add(vv1 + n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);


                    u.Add(new Vector2(0, 0));
                    u.Add(new Vector2(1, 0));
                    u.Add(new Vector2(0, vscale));

                    v.Add(vv2 + n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);
                    v.Add(vv2 + n1);
                    t.Add(v.Count - 1);
                    v.Add(vv1 + n1 * 2 + new Vector3(0, -3, 0));
                    t.Add(v.Count - 1);


                    u.Add(new Vector2(0, 0));
                    u.Add(new Vector2(1, 0));
                    u.Add(new Vector2(0, vscale));
                }
            }

            //Debug.Log("d:" + (dist - i));
        }