use of org.apache.bcel.classfile.Method in project jop by jop-devel.
the class JopMethodInfo method setInfo.
/**
* Extract linking information for this method
* @param addr the bytecode start address
*/
public void setInfo(int addr) {
codeAddress = addr;
Method m = getMethod();
margs = 0;
Type[] at = m.getArgumentTypes();
for (int i = 0; i < at.length; ++i) {
margs += at[i].getSize();
}
// for now only handle inits
if (!m.isStatic()) {
margs++;
}
if (m.isAbstract()) {
mstack = mreallocals = len = exclen = 0;
exctab = null;
} else {
mstack = m.getCode().getMaxStack();
// the 'real' locals - means without arguments
mreallocals = m.getCode().getMaxLocals() - margs;
// System.err.println(" ++++++++++++ "+methodId+" --> mlocals
// ="+mlocals+" margs ="+margs);
len = (m.getCode().getCode().length + 3) / 4;
exctab = m.getCode().getExceptionTable();
exclen = exctab != null ? exctab.length : 0;
// TODO: couldn't len=JOP...MAX_SIZE/4 be ok?
if (len >= JOPizer.METHOD_MAX_SIZE / 4 || mreallocals > 31 || margs > 31) {
// we interprete clinit on JOP - no size restriction
if (!m.getName().equals("<clinit>")) {
System.err.println("len(max:" + (JOPizer.METHOD_MAX_SIZE / 4) + ")=" + len + "mreallocals(max:31)=" + mreallocals + " margs(max:31)=" + margs);
System.err.println("wrong size: " + getCli().clazz.getClassName() + "." + methodId);
throw new Error();
}
}
// System.out.println((mstack+m.getCode().getMaxLocals())+" "+
// m.getName()+" maxStack="+mstack+"
// locals="+m.getCode().getMaxLocals());
}
}
use of org.apache.bcel.classfile.Method in project jop by jop-devel.
the class ReplaceNativeAndCPIdx method replace.
private Method replace(Method method) {
MethodGen mg = new MethodGen(method, clazz.getClassName(), cpoolgen);
InstructionList il = mg.getInstructionList();
InstructionFinder f = new InstructionFinder(il);
String methodId = method.getName() + method.getSignature();
OldMethodInfo mi = getCli().getMethodInfo(methodId);
// find invokes first and replace call to Native by
// JOP native instructions.
String invokeStr = "InvokeInstruction";
for (Iterator i = f.search(invokeStr); i.hasNext(); ) {
InstructionHandle[] match = (InstructionHandle[]) i.next();
InstructionHandle first = match[0];
InvokeInstruction ii = (InvokeInstruction) first.getInstruction();
if (ii.getClassName(cpoolgen).equals(JOPizer.nativeClass)) {
short opid = (short) JopInstr.getNative(ii.getMethodName(cpoolgen));
if (opid == -1) {
System.err.println(method.getName() + ": cannot locate " + ii.getMethodName(cpoolgen) + ". Replacing with NOP.");
first.setInstruction(new NOP());
} else {
first.setInstruction(new NativeInstruction(opid, (short) 1));
((JOPizer) ai).outTxt.println("\t" + first.getPosition());
// then we remove pc+2 and pc+1 from the MGCI info
if (JOPizer.dumpMgci) {
il.setPositions();
int pc = first.getPosition();
// important: take the high one first
GCRTMethodInfo.removePC(pc + 2, mi);
GCRTMethodInfo.removePC(pc + 1, mi);
}
}
}
if (ii instanceof INVOKESPECIAL) {
// not an initializer
if (!ii.getMethodName(cpoolgen).equals("<init>")) {
// check if this is a super invoke
// TODO this is just a hack, use InvokeSite.isInvokeSuper() when this is ported to the new framework!
boolean isSuper = false;
String declaredType = ii.getClassName(cpoolgen);
JopClassInfo cls = getCli();
OldClassInfo superClass = cls.superClass;
while (superClass != null) {
if (superClass.clazz.getClassName().equals(declaredType)) {
isSuper = true;
break;
}
if ("java.lang.Object".equals(superClass.clazz.getClassName())) {
break;
}
superClass = superClass.superClass;
}
if (isSuper) {
Integer idx = ii.getIndex();
int new_index = getCli().cpoolUsed.indexOf(idx) + 1;
first.setInstruction(new JOPSYS_INVOKESUPER((short) new_index));
// System.err.println("invokesuper "+ii.getClassName(cpoolgen)+"."+ii.getMethodName(cpoolgen));
}
}
}
}
if (JOPizer.CACHE_INVAL) {
f = new InstructionFinder(il);
// find volatile reads and insert cache invalidation bytecode
String fieldInstr = "GETFIELD|GETSTATIC|PUTFIELD|PUTSTATIC";
for (Iterator i = f.search(fieldInstr); i.hasNext(); ) {
InstructionHandle[] match = (InstructionHandle[]) i.next();
InstructionHandle ih = match[0];
FieldInstruction fi = (FieldInstruction) ih.getInstruction();
JavaClass jc = JOPizer.jz.cliMap.get(fi.getClassName(cpoolgen)).clazz;
Field field = null;
while (field == null) {
Field[] fields = jc.getFields();
for (int k = 0; k < fields.length; k++) {
if (fields[k].getName().equals(fi.getFieldName(cpoolgen))) {
field = fields[k];
break;
}
}
if (field == null) {
try {
jc = jc.getSuperClass();
} catch (ClassNotFoundException e) {
e.printStackTrace();
throw new Error();
}
}
}
if (field.isVolatile()) {
if (field.getType().getSize() < 2) {
if (fi instanceof GETFIELD || fi instanceof GETSTATIC) {
ih.setInstruction(new InvalidateInstruction());
ih = il.append(ih, fi);
}
} else {
// this only works because we do not throw a
// NullPointerException for monitorenter/-exit!
ih.setInstruction(new ACONST_NULL());
ih = il.append(ih, new MONITORENTER());
ih = il.append(ih, fi);
ih = il.append(ih, new ACONST_NULL());
ih = il.append(ih, new MONITOREXIT());
}
}
}
}
f = new InstructionFinder(il);
// find instructions that access the constant pool
// and replace the index by the new value from ClassInfo
String cpInstr = "CPInstruction";
for (Iterator it = f.search(cpInstr); it.hasNext(); ) {
InstructionHandle[] match = (InstructionHandle[]) it.next();
InstructionHandle ih = match[0];
CPInstruction cpii = (CPInstruction) ih.getInstruction();
int index = cpii.getIndex();
// we have to grab the information before we change
// the CP index.
FieldInstruction fi = null;
Type ft = null;
if (cpii instanceof FieldInstruction) {
fi = (FieldInstruction) ih.getInstruction();
ft = fi.getFieldType(cpoolgen);
}
Integer idx = new Integer(index);
// pos is the new position in the reduced constant pool
// idx is the position in the 'original' unresolved cpool
int pos = getCli().cpoolUsed.indexOf(idx);
int new_index = pos + 1;
// and putfield and by address for getstatic and putstatic
if (cpii instanceof GETFIELD || cpii instanceof PUTFIELD || cpii instanceof GETSTATIC || cpii instanceof PUTSTATIC) {
// we use the offset instead of the CP index
new_index = getFieldOffset(cp, index);
} else {
if (pos == -1) {
System.out.println("Error: constant " + index + " " + cpoolgen.getConstant(index) + " not found");
System.out.println("new cpool: " + getCli().cpoolUsed);
System.out.println("original cpool: " + cpoolgen);
System.exit(-1);
}
}
// set new index, position starts at
// 1 as cp points to the length of the pool
cpii.setIndex(new_index);
if (cpii instanceof FieldInstruction) {
boolean isRef = ft instanceof ReferenceType;
boolean isLong = ft == BasicType.LONG || ft == BasicType.DOUBLE;
if (fi instanceof GETSTATIC) {
if (isRef) {
ih.setInstruction(new GETSTATIC_REF((short) new_index));
} else if (isLong) {
ih.setInstruction(new GETSTATIC_LONG((short) new_index));
}
} else if (fi instanceof PUTSTATIC) {
if (isRef) {
if (!com.jopdesign.build.JOPizer.USE_RTTM) {
ih.setInstruction(new PUTSTATIC_REF((short) new_index));
}
} else if (isLong) {
ih.setInstruction(new PUTSTATIC_LONG((short) new_index));
}
} else if (fi instanceof GETFIELD) {
if (isRef) {
ih.setInstruction(new GETFIELD_REF((short) new_index));
} else if (isLong) {
ih.setInstruction(new GETFIELD_LONG((short) new_index));
}
} else if (fi instanceof PUTFIELD) {
if (isRef) {
if (!com.jopdesign.build.JOPizer.USE_RTTM) {
ih.setInstruction(new PUTFIELD_REF((short) new_index));
}
} else if (isLong) {
ih.setInstruction(new PUTFIELD_LONG((short) new_index));
}
}
}
}
Method m = mg.getMethod();
il.dispose();
return m;
}
use of org.apache.bcel.classfile.Method in project jop by jop-devel.
the class ClassInfo method compile.
/**
* Commit all modifications to this ClassInfo and return a BCEL JavaClass for this ClassInfo.
* <p>
* You may want to call {@link #rebuildConstantPool(ConstantPoolRebuilder)} and {@link #rebuildInnerClasses()} first if needed.
* </p>
* @see MethodInfo#compile()
* @see #rebuildInnerClasses()
* @see #rebuildConstantPool(ConstantPoolRebuilder)
* @see #getJavaClass()
* @return a JavaClass representing this ClassInfo.
*/
public JavaClass compile() {
// We could keep a modified flag in both MethodInfo and FieldInfo
// (maybe even ClassInfo), and update only what is needed here
// could make class-writing,.. faster, but makes code more complex
Field[] fList = classGen.getFields();
if (fList.length != fields.size()) {
// should never happen
throw new JavaClassFormatError("Number of fields in classGen of " + getClassName() + " differs from number of FieldInfos!");
}
for (Field f : fList) {
classGen.replaceField(f, fields.get(f.getName()).getField());
}
Method[] mList = classGen.getMethods();
if (mList.length != methods.size()) {
// should never happen
throw new JavaClassFormatError("Number of methods in classGen of " + getClassName() + " differs from number of MethodInfos!");
}
for (int i = 0; i < mList.length; i++) {
MethodInfo method = methods.get(MemberID.getMethodSignature(mList[i].getName(), mList[i].getSignature()));
classGen.setMethodAt(method.compile(), i);
}
return classGen.getJavaClass();
}
use of org.apache.bcel.classfile.Method in project jop by jop-devel.
the class ClassInfo method lookupMethodInfo.
/**
* Get the index of the given method in the class method array, or -1 if not found.
*
* @param memberSignature name and descriptor of the method to find.
* @return the index in the methods array or -1 if not found.
*/
public int lookupMethodInfo(String memberSignature) {
Method[] methods = classGen.getMethods();
for (int i = 0; i < methods.length; i++) {
Method m = methods[i];
String s = MemberID.getMethodSignature(m.getName(), m.getSignature());
if (s.equals(memberSignature)) {
return i;
}
}
return -1;
}
use of org.apache.bcel.classfile.Method in project jop by jop-devel.
the class ReplaceAtomicAnnotation method visitJavaClass.
public void visitJavaClass(JavaClass clazz) {
super.visitJavaClass(clazz);
Method[] methods = clazz.getMethods();
for (int i = 0; i < methods.length; i++) {
for (Attribute a : methods[i].getAttributes()) {
if (a instanceof AnnotationAttribute) {
if (((AnnotationAttribute) a).hasAtomicAnnotation()) {
ConstantPoolGen cpoolgen = new ConstantPoolGen(clazz.getConstantPool());
Method nm = transform(methods[i], clazz, cpoolgen);
OldMethodInfo mi = getCli().getMethodInfo(nm.getName() + nm.getSignature());
// set new method also in MethodInfo
mi.setMethod(nm);
methods[i] = nm;
clazz.setConstantPool(cpoolgen.getFinalConstantPool());
System.out.println("RTTM: transformed atomic method " + clazz.getClassName() + "." + nm.getName() + nm.getSignature());
}
}
}
}
}
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