public void deleteGateRec(Gates.GateObject node, Gates.GateObject gateToFind, Gates.GateObject previous = null) { if (node == gateToFind) { if (node.hasLeft() && node.input1 != null) { this.connectedGates.Add(node.input1); } if (node.hasRight() && node.input2 != null) { this.connectedGates.Add(node.input2); } if (previous.hasRight() && previous.input2 == node) { previous.input2 = (Gates.GateObject)null; } if (previous.hasLeft() && previous.input1 == node) { previous.input1 = (Gates.GateObject)null; } } if (node == null) { return; } if (node.hasLeft() && node.input1 != null) { this.deleteGateRec(node.input1, gateToFind, node); } if (!node.hasRight() || node.input2 == null) { return; } this.deleteGateRec(node.input2, gateToFind, node); }
public void simulateDiagramRecursive(Gates.GateObject node) { if (node == null) { return; } if (node.hasLeft() && node.input1.getOutput() == -1) { this.simulateDiagramRecursive(node.input1); } if (node.hasLeft() && node.input1.getOutput() != -1) { node.in1val = node.input1.getOutput(); } if (node.hasRight() && node.input2.getOutput() == -1) { this.simulateDiagramRecursive(node.input2); } if (node.hasRight() && node.input2.getOutput() != -1) { node.in2val = node.input2.getOutput(); } if (!(node.GetType() == typeof(Gates.Output)) || node.in1val == -1) { return; } this.result = node.getOutput(); }
public void findRecursive(Gates.GateObject Node, int mx, int my) { Point pos = Node.getPos(); if (mx >= pos.X - 30 && mx <= pos.X + 70 && (my >= pos.Y - 30 && my <= pos.Y + 50)) { this.output = Node; } else { if (Node == null) { return; } if (Node.hasLeft() && Node.input1 != null) { this.findRecursive(Node.input1, mx, my); } if (!Node.hasRight() || Node.input2 == null) { return; } this.findRecursive(Node.input2, mx, my); } }
public void setProcessingList(Gates.GateObject node) { if (node == null) { return; } this.processingList.Add(node); if (node.hasLeft()) { this.setProcessingList(node.input1); } if (!node.hasRight()) { return; } this.setProcessingList(node.input2); }
public void resetDiagram(Gates.GateObject node) { node.setHighlight(false); if (node.GetType() != typeof(Gates.Input)) { node.in1val = -1; node.in2val = -1; } if (node == null) { return; } if (node.hasLeft() && node.input1 != null) { this.resetDiagram(node.input1); } if (!node.hasRight() || node.input2 == null) { return; } this.resetDiagram(node.input2); }
public void doConversion(Gates.GateObject node) { if (node.GetType() != typeof(Gates.Output)) { string equationTerm = this.getEquationTerm(node); if (this.equation == "") { this.equation = equationTerm; } else { for (int startIndex = 0; startIndex < this.equation.Length; ++startIndex) { if ((int)this.equation[startIndex] == 35) { this.equation = this.equation.Remove(startIndex, 1); this.equation = this.equation.Insert(startIndex, equationTerm); break; } } } } if (node == null) { return; } if (node.hasLeft() && node.input1 != null) { this.doConversion(node.input1); } if (!node.hasRight() || node.input2 == null) { return; } this.doConversion(node.input2); }
private void simulateDiagramRec(Gates.GateObject Node) { bool flag = false; if (Node == null) { this.result = this.stack.Pop(); } if (Node.getOutput() != -1) { this.stack.Push(Node.getOutput()); if (Node.getOutput() == 1) { Node.setHighlight(true); } } if (Node.hasLeft()) { if (Node.input1 != null) { if (Node.input1 == Node.input2) { flag = true; } this.simulateDiagramRec(Node.input1); } else { this.error = true; } } if (Node.hasRight() && !flag) { if (Node.input2 != null) { this.simulateDiagramRec(Node.input2); } else { this.error = true; } } if (Node.hasLeft() && Node.hasRight() && this.stack.Count > 0) { if (Node.in2val == -1 && !flag) { Node.in2val = this.stack.Pop(); } else { int num = this.stack.Pop(); Node.in2val = num; this.stack.Push(num); } } if (Node.in1val != -1 || this.stack.Count <= 0) { return; } Node.in1val = this.stack.Pop(); if (Node.in2val != -1 || Node.hasLeft() && !Node.hasRight()) { int output = Node.getOutput(); this.stack.Push(output); if (output == 1) { Node.setHighlight(true); } } }
public void renderGates(Gates.GateObject gate, PaintEventArgs e) { if (gate.getOutput() == 1) { gate.setHighlight(true); } else { gate.setHighlight(false); } Image image = gate.getImage(); Point pos1 = gate.getPos(); e.Graphics.DrawImageUnscaled(image, pos1); if (gate.GetType() == typeof(Gates.Input) || gate.GetType() == typeof(Gates.Output)) { SolidBrush solidBrush = new SolidBrush(Color.Black); Font font = new Font(FontFamily.GenericSansSerif, 12f, FontStyle.Bold); Point point = new Point(pos1.X + 12, pos1.Y - 10); if (gate.GetType() == typeof(Gates.Input)) { e.Graphics.DrawString(gate.getName(), font, (Brush)solidBrush, (PointF)point); } else { e.Graphics.DrawString("Q", font, (Brush)solidBrush, (PointF)point); } } Pen pen1 = new Pen(Color.Black, 1f); int[][] circlePositions1 = gate.getCirclePositions(); for (int index = 0; index < circlePositions1.Length; ++index) { e.Graphics.DrawEllipse(pen1, pos1.X + circlePositions1[index][0], pos1.Y + circlePositions1[index][1], circlePositions1[index][2], circlePositions1[index][3]); } if (gate == null) { return; } Point pos2; Point start; Point end; if (gate.hasLeft() && gate.input1 != null) { Pen pen2 = new Pen(Color.Black, 2f); if (this.wireList.Count == this.wireHighlight && this.wireHighlight != -1) { pen2 = new Pen(Color.Red, 2f); } int[][] circlePositions2 = gate.input1.getCirclePositions(); pos2 = gate.input1.getPos(); start = new Point(circlePositions2[0][0] + pos2.X + 4, circlePositions2[0][1] + pos2.Y + 2); if (gate.input1.getOutput() == 1 && this.simulating) { pen2 = new Pen(Color.FromArgb(38, 126, 241), 2f); } if (circlePositions1.Length > 1) { end = new Point(circlePositions1[1][0] + pos1.X, circlePositions1[1][1] + pos1.Y + 2); Point[] points = this.calculatePoints(start, end); this.wireList.Add(points); e.Graphics.DrawLines(pen2, points); } else { end = new Point(circlePositions1[0][0] + pos1.X, circlePositions1[0][1] + pos1.Y + 2); Point[] points = this.calculatePoints(start, end); this.wireList.Add(points); e.Graphics.DrawLines(pen2, points); } this.renderGates(gate.input1, e); } if (!gate.hasRight() || gate.input2 == null) { return; } Pen pen3 = new Pen(Color.Black, 2f); if (this.wireList.Count == this.wireHighlight && this.wireHighlight != -1) { pen3 = new Pen(Color.Red, 2f); } int[][] circlePositions3 = gate.input2.getCirclePositions(); if (gate.input2.getOutput() == 1 && this.simulating) { pen3 = new Pen(Color.FromArgb(38, 126, 241), 2f); } pos2 = gate.input2.getPos(); start = new Point(circlePositions3[0][0] + pos2.X + 4, circlePositions3[0][1] + pos2.Y + 2); end = new Point(circlePositions1[2][0] + pos1.X, circlePositions1[2][1] + pos1.Y + 2); Point[] points1 = this.calculatePoints(start, end); this.wireList.Add(points1); e.Graphics.DrawLines(pen3, points1); this.renderGates(gate.input2, e); }