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https://github.com/jhasse/poly2tri.git
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fixed advanding front, constrained edge bug
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b67a9b4495
commit
690f0e138c
@ -180,7 +180,7 @@ class Poly2TriDemo extends BasicGame("Poly2Tri") {
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val draw = if(drawcdtMesh) slCDT.triangleMesh else slCDT.triangles
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draw.foreach( t => {
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if(true) {
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if(false) {
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for(i <- 0 to 2) {
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val s = t.points(i)
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val e = if(i == 2) t.points(0) else t.points(i + 1)
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@ -93,30 +93,24 @@ class AFront(iTriangle: Triangle) {
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def constrainedEdge(sNode: Node, eNode: Node, T1: ArrayBuffer[Triangle],
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T2: ArrayBuffer[Triangle], edge: Segment) {
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var node = sNode
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var node = sNode.prev
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val point1 = edge.q
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val point2 = edge.p
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var marked = false
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// Scan the advancing front and update Node triangle pointers
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while(node != null && node != eNode) {
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while(node != null && node != eNode.next) {
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T2.foreach(t => {
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if(t.contains(node.point, node.next.point))
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node.triangle = t
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marked = true
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})
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if(!marked)
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T1.foreach(t => {
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if(t.contains(node.point, node.next.point))
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node.triangle = t
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})
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T1.foreach(t => {
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if(t.contains(node.point, node.next.point))
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node.triangle = t
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})
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node = node.next
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}
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}
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def -=(tuple: Tuple3[Node, Node, Triangle]) {
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@ -139,7 +139,7 @@ class CDT(polyLine: Array[Point], clearPoint: Point) {
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// Implement sweep-line
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private def sweep {
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for(i <- 1 until 36 /*points.size*/) {
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for(i <- 1 until points.size) {
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val point = points(i)
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// Process Point event
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val node = pointEvent(point)
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@ -208,9 +208,7 @@ class CDT(polyLine: Array[Point], clearPoint: Point) {
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tList.foreach(t => {
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t.neighbors.foreach(n => if(n != null && !tList.contains(n)) nTriangles += n)
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mesh.map -= t
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//mesh.debug += t
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})
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//nTriangles.foreach(n => mesh.debug += n)
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val lPoints = new ArrayBuffer[Point]
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val rPoints = new ArrayBuffer[Point]
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@ -250,11 +248,8 @@ class CDT(polyLine: Array[Point], clearPoint: Point) {
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val point1 = if(ahead) edge.q else edge.p
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val point2 = if(ahead) edge.p else edge.q
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val sNode = if(ahead) node else aFront.locate(point1).prev
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val eNode = aFront.locate(point2).next
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//mesh.debug += sNode.triangle
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//mesh.debug += eNode.triangle
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val sNode = if(ahead) node else aFront.locate(point1)
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val eNode = aFront.locate(point2)
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aFront.constrainedEdge(sNode, eNode, T1, T2, edge)
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@ -262,15 +257,9 @@ class CDT(polyLine: Array[Point], clearPoint: Point) {
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T1.last markEdge(point1, point2)
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T2.last markEdge(point1, point2)
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// Copy constraied edges from old triangles
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T1.foreach(t => {t.markEdge(tList)/*;mesh.debug += t*/})
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T2.foreach(t => {t.markEdge(tList)/*;mesh.debug += t*/})
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T1.foreach(t => t.markEdge(tList))
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T2.foreach(t => t.markEdge(tList))
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var n = sNode
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while(n != eNode) {
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mesh.debug += n.triangle
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n = n.next
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}
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} else if(firstTriangle == null) {
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// No triangles are intersected by the edge; edge must lie outside the mesh
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