384 lines
15 KiB
Java
384 lines
15 KiB
Java
import japa.parser.JavaParser;
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import japa.parser.ast.CompilationUnit;
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import japa.parser.ast.body.*;
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import japa.parser.ast.visitor.VoidVisitorAdapter;
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import japa.parser.ast.stmt.*;
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import japa.parser.ast.expr.*;
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import java.io.FileInputStream;
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import java.io.File;
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//graph imports
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import org.jgrapht.*;
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import org.jgrapht.graph.*;
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import java.io.*;
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import java.util.*;
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import CFGGraph.CFGNode;
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import CFGGraph.CFGEdge;
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public class LCA_JP1_0_0 {
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public static void main(String[] args) throws Exception {
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if (args.length == 0) {
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System.out.println("Usage: java LCA_JP1_0_0 <JavaSourceFile>");
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return;
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}
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FileInputStream in = new FileInputStream(new File(args[0]));
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CompilationUnit cu = JavaParser.parse(in);
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in.close();
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CFGVisitor visitor = new CFGVisitor();
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visitor.visit(cu, null);
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}
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static class CFGVisitor extends VoidVisitorAdapter<Void> {
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private Graph<CFGNode, CFGEdge> currCFG;
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private CFGNode currentBlock;
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private CFGNode entryNode;
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private CFGNode exitNode;
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private Map<String, Integer> constantValues;
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public void visit(MethodDeclaration n, Void arg) {
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// Initialize new CFG for this method
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currCFG = new DefaultDirectedGraph<>(CFGEdge.class);
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constantValues = new HashMap<String, Integer>();
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// Create entry and exit nodes
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entryNode = new CFGNode("ENTRY_" + n.getName());
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exitNode = new CFGNode("EXIT_" + n.getName());
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currCFG.addVertex(entryNode);
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currCFG.addVertex(exitNode);
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System.out.println("CFG Building Root: " + n.getName());
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currentBlock = entryNode;
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// Visit method body
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BlockStmt body = n.getBody();
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if (body != null) {
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visitBlockStmt(body);
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}
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// Connect last block to exit if not already connected
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if (currentBlock != null && currentBlock != exitNode) {
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addEdge(currentBlock, exitNode, "");
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}
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// Print CFG
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printCFG(n.getName());
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}
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private void visitBlockStmt(BlockStmt block) {
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List<Statement> stmts = block.getStmts();
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if (stmts == null) return;
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for (Statement stmt : stmts) {
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visitStatement(stmt);
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}
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}
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private void visitStatement(Statement stmt) {
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if (stmt instanceof ExpressionStmt) {
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visitExpressionStmt((ExpressionStmt) stmt);
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} else if (stmt instanceof IfStmt) {
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visitIfStmt((IfStmt) stmt);
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} else if (stmt instanceof ForStmt) {
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visitForStmt((ForStmt) stmt);
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} else if (stmt instanceof WhileStmt) {
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visitWhileStmt((WhileStmt) stmt);
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} else if (stmt instanceof ReturnStmt) {
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visitReturnStmt((ReturnStmt) stmt);
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} else if (stmt instanceof BlockStmt) {
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visitBlockStmt((BlockStmt) stmt);
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} else {
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// Handle other statement types generically
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CFGNode stmtNode = new CFGNode(stmt.toString().trim());
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currCFG.addVertex(stmtNode);
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addEdge(currentBlock, stmtNode, "");
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currentBlock = stmtNode;
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}
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}
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private void visitExpressionStmt(ExpressionStmt stmt) {
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CFGNode exprNode = new CFGNode(stmt.toString().trim());
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currCFG.addVertex(exprNode);
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addEdge(currentBlock, exprNode, "");
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currentBlock = exprNode;
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// Track constant like "int v = 5" or "v = 5"
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String stmtStr = stmt.toString().trim();
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if (stmtStr.contains("=") && !stmtStr.contains("==")) {
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try {
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// Simple pattern: extract variable and value
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String[] parts = stmtStr.split("=");
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if (parts.length == 2) {
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String varPart = parts[0].trim();
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String valuePart = parts[1].trim().replace(";", "").trim();
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// Get variable name (handle "int v" or just "v")
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String[] varTokens = varPart.split("\\s+");
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String varName = varTokens[varTokens.length - 1];
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// Try to parse the value as integer
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try {
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int value = Integer.parseInt(valuePart);
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constantValues.put(varName, value);
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} catch (NumberFormatException e) {
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constantValues.remove(varName); // Not a constant, remove from tracking
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}
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}
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} catch (Exception e) {
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// Parsing failed, ignore
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}
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}
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}
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private void visitIfStmt(IfStmt stmt) {
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// Evaluate condition if possible
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String condStr = stmt.getCondition().toString();
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String edgeLabel = evaluateConditionForEdge(condStr);
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// Create condition node
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CFGNode condNode = new CFGNode("if (" + condStr + ")");
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currCFG.addVertex(condNode);
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addEdge(currentBlock, condNode, "");
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CFGNode mergeNode = new CFGNode("MERGE_IF");
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currCFG.addVertex(mergeNode);
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CFGNode savedCond = condNode;
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// Then branch
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currentBlock = condNode;
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Statement thenStmt = stmt.getThenStmt();
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if (thenStmt != null) {
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visitStatement(thenStmt);
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}
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CFGNode thenEnd = currentBlock;
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if (thenEnd != null && thenEnd != savedCond) {
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addEdge(thenEnd, mergeNode, "");
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}
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// Label then branch edge if we evaluated it
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if (!edgeLabel.isEmpty()) {
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Set<CFGEdge> edges = new HashSet<CFGEdge>(currCFG.outgoingEdgesOf(savedCond));
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for (CFGEdge e : edges) {
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CFGNode target = currCFG.getEdgeTarget(e);
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if (target != mergeNode) {
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currCFG.removeEdge(e);
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addEdge(savedCond, target, edgeLabel);
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break;
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}
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}
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}
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// Else branch
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currentBlock = savedCond;
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Statement elseStmt = stmt.getElseStmt();
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if (elseStmt != null) {
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visitStatement(elseStmt);
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CFGNode elseEnd = currentBlock;
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if (elseEnd != null && elseEnd != savedCond) {
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addEdge(elseEnd, mergeNode, "");
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}
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} else {
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addEdge(savedCond, mergeNode, "F");
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}
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currentBlock = mergeNode;
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}
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private String evaluateConditionForEdge(String condition) {
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try {
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String[] operators = {"==", "!=", ">=", "<=", ">", "<"};
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for (String op : operators) {
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if (condition.contains(op)) {
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String[] parts = condition.split(op);
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if (parts.length == 2) {
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String leftStr = parts[0].trim();
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String rightStr = parts[1].trim();
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Integer leftVal = constantValues.get(leftStr);
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Integer rightVal = constantValues.get(rightStr);
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if (leftVal == null) {
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try { leftVal = Integer.parseInt(leftStr); }
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catch (NumberFormatException e) {}
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}
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if (rightVal == null) {
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try { rightVal = Integer.parseInt(rightStr); }
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catch (NumberFormatException e) {}
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}
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if (leftVal != null && rightVal != null) {
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boolean result = false;
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if (op.equals("==")) result = leftVal.equals(rightVal);
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else if (op.equals("!=")) result = !leftVal.equals(rightVal);
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else if (op.equals(">")) result = leftVal > rightVal;
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else if (op.equals("<")) result = leftVal < rightVal;
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else if (op.equals(">=")) result = leftVal >= rightVal;
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else if (op.equals("<=")) result = leftVal <= rightVal;
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return result ? "T" : "F";
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}
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}
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break;
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}
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}
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} catch (Exception e) {}
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return "";
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}
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private void visitForStmt(ForStmt stmt) {
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// Initialization
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List<Expression> inits = stmt.getInit();
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if (inits != null && !inits.isEmpty()) {
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for (Expression init : inits) {
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CFGNode initNode = new CFGNode(init.toString());
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currCFG.addVertex(initNode);
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addEdge(currentBlock, initNode, "");
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currentBlock = initNode;
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}
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}
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// Condition node
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Expression compare = stmt.getCompare();
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String condStr = compare != null ? compare.toString() : "true";
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CFGNode condNode = new CFGNode("for (" + condStr + ")");
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currCFG.addVertex(condNode);
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addEdge(currentBlock, condNode, "");
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CFGNode exitLoopNode = new CFGNode("EXIT_FOR");
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currCFG.addVertex(exitLoopNode);
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// Save condition node
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CFGNode savedCond = condNode;
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// Loop body
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CFGNode bodyEntry = null;
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Statement body = stmt.getBody();
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if (body != null) {
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currentBlock = condNode;
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visitStatement(body);
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bodyEntry = currentBlock;
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}
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// Update expressions
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List<Expression> updates = stmt.getUpdate();
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if (updates != null && !updates.isEmpty()) {
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for (Expression update : updates) {
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CFGNode updateNode = new CFGNode(update.toString());
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currCFG.addVertex(updateNode);
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addEdge(currentBlock, updateNode, "");
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currentBlock = updateNode;
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}
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}
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// Back edge to condition
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addEdge(currentBlock, savedCond, "");
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// True edge from condition to body (will be added via body visit)
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// False edge from condition to exit
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addEdge(savedCond, exitLoopNode, "F");
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currentBlock = exitLoopNode;
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}
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private void visitWhileStmt(WhileStmt stmt) {
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// Condition node
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CFGNode condNode = new CFGNode("while (" + stmt.getCondition() + ")");
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currCFG.addVertex(condNode);
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addEdge(currentBlock, condNode, "");
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CFGNode exitLoopNode = new CFGNode("EXIT_WHILE");
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currCFG.addVertex(exitLoopNode);
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CFGNode savedCond = condNode;
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// Loop body
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currentBlock = condNode;
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Statement body = stmt.getBody();
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if (body != null) {
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visitStatement(body);
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}
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// Back edge to condition
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addEdge(currentBlock, savedCond, "");
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// True edge through body (added via visit)
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// False edge to exit
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addEdge(savedCond, exitLoopNode, "F");
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currentBlock = exitLoopNode;
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}
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private void visitReturnStmt(ReturnStmt stmt) {
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Expression expr = stmt.getExpr();
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String returnStr = "return" + (expr != null ? " " + expr.toString() : "");
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CFGNode returnNode = new CFGNode(returnStr);
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currCFG.addVertex(returnNode);
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addEdge(currentBlock, returnNode, "");
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addEdge(returnNode, exitNode, "");
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currentBlock = null; // No more statements should follow
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}
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private void addEdge(CFGNode from, CFGNode to, String label) {
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if (from == null || to == null) return;
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CFGEdge edge = new CFGEdge(from, to);
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if (label != null && label.length() > 0) {
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edge.setLabel(label);
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}
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try {
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currCFG.addEdge(from, to, edge);
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} catch (IllegalArgumentException e) {
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// Edge already exists, ignore
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}
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}
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private void printCFG(String methodName) {
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System.out.print("CFG ");
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System.out.print(methodName);
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System.out.print(":");
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System.out.println();
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Set<CFGNode> vertexSet = currCFG.vertexSet();
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List<CFGNode> nodes = new ArrayList<CFGNode>(vertexSet);
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Collections.sort(nodes, new Comparator<CFGNode>() {
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public int compare(CFGNode n1, CFGNode n2) {
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return n1.getID() - n2.getID();
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}
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});
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for (CFGNode node : nodes) {
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System.out.print("\t");
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System.out.print("node ");
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System.out.print(node.getID());
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System.out.print(": ");
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System.out.print(node.getLabel());
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System.out.print(" ");
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Set<CFGEdge> outEdges = currCFG.outgoingEdgesOf(node);
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for (CFGEdge edge : outEdges) {
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CFGNode target = currCFG.getEdgeTarget(edge);
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String edgeLabel = edge.getLabel();
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if (edgeLabel == null) {
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edgeLabel = "";
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}
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System.out.print("edge ");
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System.out.print(edgeLabel);
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System.out.print(" ");
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System.out.print(target.getID());
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System.out.print("; ");
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}
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System.out.println();
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}
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}
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}
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} |