package sableCCCalculator; import sableCCCalculator.analysis.*; import sableCCCalculator.types.*; import sableCCCalculator.node.*; class Translation extends DepthFirstAdapter { private ProgramStack programStack = new ProgramStack<>(); public void caseTNumber(TNumber node) { System.out.println("Pushing " + Integer.parseInt(node.getText()) + " to stack"); programStack.push(new Int(node.getText())); System.out.println(programStack); } public void caseTDouble(TDouble node) { System.out.println("Pushing a double: " + Double.parseDouble(node.getText())); programStack.push(new Decimal(node.getText())); System.out.println(programStack); } public void outASineTerm(ASineTerm node) { Double num = Double.parseDouble(programStack.pop().getText()); System.out.println("Popped " + num); Double out = Math.sin(Math.toRadians(num)); programStack.push(new Decimal(out)); System.out.println("Pushed sin(" + num + ") = " + out + " to stack"); System.out.println(programStack); } public void outAPlusExpr(APlusExpr node) { Type op2 = programStack.pop(); Type op1 = programStack.pop(); System.out.println("Popped " + op1 + " and " + op2 + " from stack"); Type out = op1.add(op2); programStack.push(out); System.out.println("Pushed " + op1 + "+" + op2 + "=" + out + " to stack"); System.out.println(programStack); } public void outAMinusExpr(AMinusExpr node) { Type op2 = programStack.pop(); Type op1 = programStack.pop(); System.out.println("Popped " + op1 + " and " + op2 + " from stack"); Type out = op1.sub(op2); programStack.push(out); System.out.println("Pushed " + op1 + "-" + op2 + "=" + out + " to stack"); System.out.println(programStack); } public void outAMultFactor(AMultFactor node) { Type op2 = programStack.pop(); Type op1 = programStack.pop(); System.out.println("Popped " + op1 + " and " + op2 + " from stack"); Type out = op1.mult(op2); programStack.push(out); System.out.println("Pushed " + op1 + "*" + op2 + "=" + out + " to stack"); System.out.println(programStack); } public void outADivFactor(ADivFactor node) { Type op2 = programStack.pop(); Type op1 = programStack.pop(); System.out.println("Popped " + op1 + " and " + op2 + " from stack"); Type out = op1.div(op2); programStack.push(out); System.out.println("Pushed " + op1 + "/" + op2 + "=" + out + " to stack"); System.out.println(programStack); } public void outAModFactor(AModFactor node) { Type op2 = programStack.pop(); Type op1 = programStack.pop(); System.out.println("Popped " + op1 + " and " + op2 + " from stack"); Type out = op1.mod(op2); programStack.push(out); System.out.println("Pushed " + op1 + "%" + op2 + "=" + out + " to stack"); System.out.println(programStack); } }