Example usage for org.objectweb.asm Opcodes ILOAD

List of usage examples for org.objectweb.asm Opcodes ILOAD

Introduction

In this page you can find the example usage for org.objectweb.asm Opcodes ILOAD.

Prototype

int ILOAD

To view the source code for org.objectweb.asm Opcodes ILOAD.

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Usage

From source file:de.unisb.cs.st.javaslicer.common.classRepresentation.instructions.VarInstruction.java

License:Open Source License

@Override
public String toString() {
    String instruction;/*w ww. j av  a 2s.com*/
    switch (getOpcode()) {
    case Opcodes.ILOAD:
        instruction = "ILOAD";
        break;
    case Opcodes.LLOAD:
        instruction = "LLOAD";
        break;
    case Opcodes.FLOAD:
        instruction = "FLOAD";
        break;
    case Opcodes.DLOAD:
        instruction = "DLOAD";
        break;
    case Opcodes.ALOAD:
        instruction = "ALOAD";
        break;
    case Opcodes.ISTORE:
        instruction = "ISTORE";
        break;
    case Opcodes.LSTORE:
        instruction = "LSTORE";
        break;
    case Opcodes.FSTORE:
        instruction = "FSTORE";
        break;
    case Opcodes.DSTORE:
        instruction = "DSTORE";
        break;
    case Opcodes.ASTORE:
        instruction = "ASTORE";
        break;
    case Opcodes.RET:
        instruction = "RET";
        break;
    default:
        instruction = "-ERROR-";
    }
    return new StringBuilder(instruction.length() + 11).append(instruction).append(' ')
            .append(this.localVarIndex).toString();
}

From source file:de.zib.sfs.instrument.AbstractSfsAdapter.java

License:BSD License

protected void wrapMethod(int access, String name, Type returnType, Type[] argumentTypes, String signature,
        String[] exceptions, String callbackName, Type additionalCallbackArgumentType,
        ResultPasser resultPasser) {//from  w w  w.ja v  a2 s . c o m
    argumentTypes = argumentTypes == null ? new Type[] {} : argumentTypes;
    String methodDescriptor = Type.getMethodDescriptor(returnType, argumentTypes);

    // <access> <returnType> <name>(<argumentTypes> arguments) throws
    // <exceptions> {
    MethodVisitor mv = this.cv.visitMethod(access, name, methodDescriptor, signature, exceptions);
    mv.visitCode();

    // if (isInstrumentationActive()) {
    isInstrumentationActive(mv);
    Label instrumentationActiveLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFEQ, instrumentationActiveLabel);

    // return? methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    int argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn((access & Opcodes.ACC_STATIC) == 0 ? Opcodes.INVOKESPECIAL : Opcodes.INVOKESTATIC,
            this.instrumentedTypeInternalName, this.methodPrefix + name, methodDescriptor, false);
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));
    } else {
        mv.visitInsn(Opcodes.RETURN);
    }

    // }
    mv.visitLabel(instrumentationActiveLabel);

    // setInstrumentationActive(true);
    setInstrumentationActive(mv, true);

    // long startTime = System.nanoTime();
    int startTimeIndex = 1;
    for (Type argument : argumentTypes) {
        startTimeIndex += argument.getSize();
    }
    storeTime(mv, startTimeIndex);

    // <returnType> result =? methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn((access & Opcodes.ACC_STATIC) == 0 ? Opcodes.INVOKESPECIAL : Opcodes.INVOKESTATIC,
            this.instrumentedTypeInternalName, this.methodPrefix + name, methodDescriptor, false);
    int endTimeIndex = startTimeIndex + 2;
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitVarInsn(returnType.getOpcode(Opcodes.ISTORE), startTimeIndex + 2);
        endTimeIndex += returnType.getSize();
    }

    // long endTime = System.nanoTime();
    storeTime(mv, endTimeIndex);

    // callback.<callbackMethod>(startTime, endTime, result?);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    mv.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "callback",
            this.callbackTypeDescriptor);
    mv.visitVarInsn(Opcodes.LLOAD, startTimeIndex);
    mv.visitVarInsn(Opcodes.LLOAD, endTimeIndex);

    // -1 indicates no result should be passed
    int resultIndex = resultPasser.getResultIndex();
    if (resultIndex != -1) {
        // result of the actual operation requested
        if (resultIndex == 0) {
            mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), startTimeIndex + 2);
            resultPasser.passResult(mv);
        } else {
            // some parameter requested
            mv.visitVarInsn(argumentTypes[resultIndex - 1].getOpcode(Opcodes.ILOAD), resultIndex);
            resultPasser.passResult(mv);
        }
    }

    Type[] callbackArgumentTypes;
    if (additionalCallbackArgumentType == null) {
        callbackArgumentTypes = new Type[] { Type.LONG_TYPE, Type.LONG_TYPE };
    } else {
        callbackArgumentTypes = new Type[] { Type.LONG_TYPE, Type.LONG_TYPE, additionalCallbackArgumentType };
    }
    mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.callbackTypeInternalName, callbackName,
            Type.getMethodDescriptor(Type.VOID_TYPE, callbackArgumentTypes), false);

    // setInstrumentationActive(false);
    setInstrumentationActive(mv, false);

    // return result;?
    // }
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), startTimeIndex + 2);
        mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));
    } else {
        mv.visitInsn(Opcodes.RETURN);
    }
    mv.visitMaxs(0, 0);
    mv.visitEnd();
}

From source file:de.zib.sfs.instrument.AbstractSfsAdapter.java

License:BSD License

@Override
public void visitEnd() {
    // public void setInstrumentationActive(boolean instrumentationActive) {
    MethodVisitor setInstrumentationActiveMV = this.cv.visitMethod(Opcodes.ACC_PUBLIC,
            "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), null,
            null);// ww  w. java2 s.c o  m
    setInstrumentationActiveMV.visitCode();

    // this.instrumentationActive.setInstrumentationActive(instrumentationActive);
    setInstrumentationActiveMV.visitVarInsn(Opcodes.ALOAD, 0);
    setInstrumentationActiveMV.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName,
            "instrumentationActive", Type.getDescriptor(InstrumentationActive.class));
    setInstrumentationActiveMV.visitVarInsn(Opcodes.ILOAD, 1);
    setInstrumentationActiveMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL,
            Type.getInternalName(InstrumentationActive.class), "setInstrumentationActive",
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);

    // }
    setInstrumentationActiveMV.visitInsn(Opcodes.RETURN);
    setInstrumentationActiveMV.visitMaxs(0, 0);
    setInstrumentationActiveMV.visitEnd();

    // public boolean isInstrumentationActive() {
    MethodVisitor isInstrumentationActiveMV = this.cv.visitMethod(Opcodes.ACC_PUBLIC, "isInstrumentationActive",
            Type.getMethodDescriptor(Type.BOOLEAN_TYPE), null, null);
    isInstrumentationActiveMV.visitCode();

    // return instrumentationActive.isInstrumentationActive();
    // }
    isInstrumentationActiveMV.visitVarInsn(Opcodes.ALOAD, 0);
    isInstrumentationActiveMV.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName,
            "instrumentationActive", Type.getDescriptor(InstrumentationActive.class));
    isInstrumentationActiveMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL,
            Type.getInternalName(InstrumentationActive.class), "isInstrumentationActive",
            Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
    isInstrumentationActiveMV.visitInsn(Opcodes.IRETURN);
    isInstrumentationActiveMV.visitMaxs(0, 0);
    isInstrumentationActiveMV.visitEnd();

    appendWrappedMethods(this.cv);

    this.cv.visitEnd();
}

From source file:de.zib.sfs.instrument.DirectByteBufferAdapter.java

License:BSD License

@Override
protected void appendWrappedMethods(ClassVisitor visitor) {
    // override from MappedByteBuffer so we can re-init the callback
    // properly//from  w w w.j ava  2  s. c  o m

    // public void setFileDescriptor(FileDescriptor fileDescriptor) {
    MethodVisitor settFileDescriptorMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "setFileDescriptor",
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.getType(FileDescriptor.class)), null, null);
    settFileDescriptorMV.visitCode();

    // this.fileDescriptor = fileDescriptor;
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 0);
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 1);
    settFileDescriptorMV.visitFieldInsn(Opcodes.PUTFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fileDescriptor", Type.getDescriptor(FileDescriptor.class));

    // callback.openCallback(this.fileDescriptor);
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 0);
    settFileDescriptorMV.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "callback",
            this.callbackTypeDescriptor);
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 0);
    settFileDescriptorMV.visitFieldInsn(Opcodes.GETFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fileDescriptor", Type.getDescriptor(FileDescriptor.class));
    settFileDescriptorMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.callbackTypeInternalName, "openCallback",
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.getType(FileDescriptor.class)), false);

    // }
    settFileDescriptorMV.visitInsn(Opcodes.RETURN);
    settFileDescriptorMV.visitMaxs(0, 0);
    settFileDescriptorMV.visitEnd();

    // also override from MappedByteBuffer

    // protected FileDescriptor getFileDescriptorImpl() {
    MethodVisitor getFileDescriptorImplMV = visitor.visitMethod(Opcodes.ACC_PROTECTED, "getFileDescriptorImpl",
            Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), null, null);
    getFileDescriptorImplMV.visitCode();

    // return fileDescriptor;
    // }
    getFileDescriptorImplMV.visitVarInsn(Opcodes.ALOAD, 0);
    getFileDescriptorImplMV.visitFieldInsn(Opcodes.GETFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fileDescriptor", Type.getDescriptor(FileDescriptor.class));
    getFileDescriptorImplMV.visitInsn(Opcodes.ARETURN);
    getFileDescriptorImplMV.visitMaxs(0, 0);
    getFileDescriptorImplMV.visitEnd();

    if (!skipReads()) {
        wrapMethod(Opcodes.ACC_PUBLIC, "get", Type.getType(ByteBuffer.class),
                new Type[] { Type.getType(byte[].class), Type.INT_TYPE, Type.INT_TYPE }, null, null,
                "getCallback", Type.INT_TYPE, new ParameterResultPasser(3));
    }

    if (!skipWrites()) {
        wrapMethod(Opcodes.ACC_PUBLIC, "put", Type.getType(ByteBuffer.class),
                new Type[] { Type.getType(byte[].class), Type.INT_TYPE, Type.INT_TYPE }, null, null,
                "putCallback", Type.INT_TYPE, new ParameterResultPasser(3));
    }

    if (!skipWrites()) {
        // public ByteBuffer put(ByteBuffer src) {
        MethodVisitor bulkPutMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "put",
                Type.getMethodDescriptor(Type.getType(ByteBuffer.class), Type.getType(ByteBuffer.class)), null,
                null);
        bulkPutMV.visitCode();

        // if (isInstrumentationActive()) {
        isInstrumentationActive(bulkPutMV);
        Label instrumentationActiveLabel = new Label();
        bulkPutMV.visitJumpInsn(Opcodes.IFEQ, instrumentationActiveLabel);

        // return nativeMethodPrefixput(src);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 0);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName,
                this.methodPrefix + "put",
                Type.getMethodDescriptor(Type.getType(ByteBuffer.class), Type.getType(ByteBuffer.class)),
                false);
        bulkPutMV.visitInsn(Opcodes.ARETURN);

        // }
        bulkPutMV.visitLabel(instrumentationActiveLabel);

        // setInstrumentationActive(fromFileChannel);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 0);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 0);
        bulkPutMV.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "fromFileChannel",
                Type.getDescriptor(Boolean.TYPE));
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.instrumentedTypeInternalName,
                "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);

        // boolean srcInstrumentationActive = false;
        bulkPutMV.visitInsn(Opcodes.ICONST_0);
        bulkPutMV.visitVarInsn(Opcodes.ISTORE, 2);

        // if (src instanceof MappedByteBuffer) {
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(MappedByteBuffer.class));
        Label srcInstanceofMappedByteBufferLabel = new Label();
        bulkPutMV.visitJumpInsn(Opcodes.IFEQ, srcInstanceofMappedByteBufferLabel);

        // srcInstrumentationActive = src.isFromFileChannel();
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "isFromFileChannel", Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
        bulkPutMV.visitVarInsn(Opcodes.ISTORE, 2);

        // src.setInstrumentationActive(true);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitInsn(Opcodes.ICONST_1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);

        // }
        bulkPutMV.visitLabel(srcInstanceofMappedByteBufferLabel);

        // int length = src.remaining();
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(Buffer.class), "remaining",
                Type.getMethodDescriptor(Type.INT_TYPE), false);
        bulkPutMV.visitVarInsn(Opcodes.ISTORE, 4);

        // long startTime = System.nanoTime();
        bulkPutMV.visitMethodInsn(Opcodes.INVOKESTATIC, this.systemInternalName, "nanoTime",
                this.nanoTimeDescriptor, false);
        bulkPutMV.visitVarInsn(Opcodes.LSTORE, 5);

        // ByteBuffer result = nativeMethodPrefixput(src);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 0);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName,
                this.methodPrefix + "put",
                Type.getMethodDescriptor(Type.getType(ByteBuffer.class), Type.getType(ByteBuffer.class)),
                false);
        bulkPutMV.visitVarInsn(Opcodes.ASTORE, 7);

        // long endTime = System.nanoTime();
        bulkPutMV.visitMethodInsn(Opcodes.INVOKESTATIC, this.systemInternalName, "nanoTime",
                this.nanoTimeDescriptor, false);
        bulkPutMV.visitVarInsn(Opcodes.LSTORE, 8);

        // if (isInstrumentationActive()) {
        isInstrumentationActive(bulkPutMV);
        Label instrumentationStillActiveLabel = new Label();
        bulkPutMV.visitJumpInsn(Opcodes.IFEQ, instrumentationStillActiveLabel);

        // callback.putCallback(startTime, endTime, length);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 0);
        bulkPutMV.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "callback",
                this.callbackTypeDescriptor);
        bulkPutMV.visitVarInsn(Opcodes.LLOAD, 5);
        bulkPutMV.visitVarInsn(Opcodes.LLOAD, 8);
        bulkPutMV.visitVarInsn(Opcodes.ILOAD, 4);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.callbackTypeInternalName, "putCallback",
                Type.getMethodDescriptor(Type.VOID_TYPE, Type.LONG_TYPE, Type.LONG_TYPE, Type.INT_TYPE), false);

        // setInstrumentationActive(false);
        setInstrumentationActive(bulkPutMV, false);

        // }
        bulkPutMV.visitLabel(instrumentationStillActiveLabel);

        // if (srcInstrumentationActive) {
        bulkPutMV.visitVarInsn(Opcodes.ILOAD, 2);
        Label srcInstrumentationActiveLabel = new Label();
        bulkPutMV.visitJumpInsn(Opcodes.IFEQ, srcInstrumentationActiveLabel);

        // callback.onGetEnd(src.getFileDescriptor(), startTime, endTime,
        // length);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "getFileDescriptor", Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), false);
        bulkPutMV.visitVarInsn(Opcodes.LLOAD, 5);
        bulkPutMV.visitVarInsn(Opcodes.LLOAD, 8);
        bulkPutMV.visitVarInsn(Opcodes.ILOAD, 4);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKESTATIC, this.callbackTypeInternalName, "getCallback",
                Type.getMethodDescriptor(Type.VOID_TYPE, Type.getType(FileDescriptor.class), Type.LONG_TYPE,
                        Type.LONG_TYPE, Type.INT_TYPE),
                false);

        // src.setInstrumentationActive(false);
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 1);
        bulkPutMV.visitInsn(Opcodes.ICONST_0);
        bulkPutMV.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);

        // }
        bulkPutMV.visitLabel(srcInstrumentationActiveLabel);

        // return result;
        // }
        bulkPutMV.visitVarInsn(Opcodes.ALOAD, 7);
        bulkPutMV.visitInsn(Opcodes.ARETURN);
        bulkPutMV.visitMaxs(0, 0);
        bulkPutMV.visitEnd();
    }

    ResultPasser resultDiscarder = new DiscardResultPasser();

    // regular gets and puts
    for (Map.Entry<String, Type> type : TYPES.entrySet()) {
        if (!skipReads()) {
            // public TYPE getTYPE() { ... }
            wrapMethod(Opcodes.ACC_PUBLIC, "get" + type.getKey(), type.getValue(), null, null, null,
                    "get" + type.getKey() + "Callback", null, resultDiscarder);

            // public TYPE getTYPE(int index) { ... }
            wrapMethod(Opcodes.ACC_PUBLIC, "get" + type.getKey(), type.getValue(), new Type[] { Type.INT_TYPE },
                    null, null, "get" + type.getKey() + "Callback", null, resultDiscarder);
        }

        if (!skipWrites()) {
            // public ByteBuffer putTYPE(TYPE value) { ... }
            wrapMethod(Opcodes.ACC_PUBLIC, "put" + type.getKey(), Type.getType(ByteBuffer.class),
                    new Type[] { type.getValue() }, null, null, "put" + type.getKey() + "Callback", null,
                    resultDiscarder);

            // public ByteBuffer putTYPE(int index, TYPE value) { ... }
            wrapMethod(Opcodes.ACC_PUBLIC, "put" + type.getKey(), Type.getType(ByteBuffer.class),
                    new Type[] { Type.INT_TYPE, type.getValue() }, null, null,
                    "put" + type.getKey() + "Callback", null, resultDiscarder);
        }
    }

    visitor.visitEnd();
}

From source file:de.zib.sfs.instrument.DirectByteBufferAdapter.java

License:BSD License

@Override
protected void wrapMethod(int access, String name, Type returnType, Type[] argumentTypes, String signature,
        String[] exceptions, String callbackName, Type additionalCallbackArgumentType,
        ResultPasser resultPasser) {/*from   www . j a  v  a  2s .co  m*/
    argumentTypes = argumentTypes == null ? new Type[] {} : argumentTypes;
    String methodDescriptor = Type.getMethodDescriptor(returnType, argumentTypes);

    // <access> <returnType> <name>(<argumentTypes> arguments) throws
    // <exceptions> {
    MethodVisitor mv = this.cv.visitMethod(access, name, methodDescriptor, signature, exceptions);
    mv.visitCode();

    // if (isInstrumentationActive() || !fromFileChannel) {
    isInstrumentationActive(mv);
    Label instrumentationActiveLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFNE, instrumentationActiveLabel);

    mv.visitVarInsn(Opcodes.ALOAD, 0);
    mv.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "fromFileChannel",
            Type.getDescriptor(Boolean.TYPE));
    Label fromFileChannelLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFNE, fromFileChannelLabel);

    mv.visitLabel(instrumentationActiveLabel);

    // return? methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    int argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName, this.methodPrefix + name,
            methodDescriptor, false);
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));
    } else {
        mv.visitInsn(Opcodes.RETURN);
    }

    // }
    mv.visitLabel(fromFileChannelLabel);

    // setInstrumentationActive(true);
    setInstrumentationActive(mv, true);

    // long startTime = System.nanoTime();
    int startTimeIndex = 1;
    for (Type argument : argumentTypes) {
        startTimeIndex += argument.getSize();
    }
    storeTime(mv, startTimeIndex);

    // <returnType> result =? methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName, this.methodPrefix + name,
            methodDescriptor, false);
    int endTimeIndex = startTimeIndex + 2;
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitVarInsn(returnType.getOpcode(Opcodes.ISTORE), startTimeIndex + 2);
        endTimeIndex += returnType.getSize();
    }

    // long endTime = System.nanoTime();
    storeTime(mv, endTimeIndex);

    // callback.<callbackMethod>(startTime, endTime, result?);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    mv.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "callback",
            this.callbackTypeDescriptor);
    mv.visitVarInsn(Opcodes.LLOAD, startTimeIndex);
    mv.visitVarInsn(Opcodes.LLOAD, endTimeIndex);

    // -1 indicates no result should be passed
    int resultIndex = resultPasser.getResultIndex();
    if (resultIndex != -1) {
        // result of the actual operation requested
        if (resultIndex == 0) {
            mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), startTimeIndex + 2);
            resultPasser.passResult(mv);
        } else {
            // some parameter requested
            mv.visitVarInsn(argumentTypes[resultIndex - 1].getOpcode(Opcodes.ILOAD), resultIndex);
            resultPasser.passResult(mv);
        }
    }

    Type[] callbackArgumentTypes;
    if (additionalCallbackArgumentType == null) {
        callbackArgumentTypes = new Type[] { Type.LONG_TYPE, Type.LONG_TYPE };
    } else {
        callbackArgumentTypes = new Type[] { Type.LONG_TYPE, Type.LONG_TYPE, additionalCallbackArgumentType };
    }
    mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.callbackTypeInternalName, callbackName,
            Type.getMethodDescriptor(Type.VOID_TYPE, callbackArgumentTypes), false);

    // setInstrumentationActive(false);
    setInstrumentationActive(mv, false);

    // return result;?
    // }
    if (!Type.VOID_TYPE.equals(returnType)) {
        mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), startTimeIndex + 2);
        mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));
    } else {
        mv.visitInsn(Opcodes.RETURN);
    }
    mv.visitMaxs(0, 0);
    mv.visitEnd();
}

From source file:de.zib.sfs.instrument.FileChannelImplAdapter.java

License:BSD License

protected void wrapFileChannelImplMethod(int access, String name, Type returnType, Type[] argumentTypes,
        String signature, String[] exceptions, String callbackName, String oppositeCallbackName,
        Type additionalCallbackArgumentType, int bufferArgumentTypeIndex, boolean isTransferMethod) {
    String methodDescriptor = Type.getMethodDescriptor(returnType, argumentTypes);

    // <access> <returnType> <name>(<argumentTypes> arguments) throws
    // <exceptions> {
    MethodVisitor mv = this.cv.visitMethod(access, name, methodDescriptor, signature, exceptions);
    mv.visitCode();/*from   ww w. j av  a2  s  .  c o m*/

    // if (isInstrumentationActive()) {
    isInstrumentationActive(mv);
    Label instrumentationActiveLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFEQ, instrumentationActiveLabel);

    // return methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    int argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName, this.methodPrefix + name,
            methodDescriptor, false);
    mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));

    // }
    mv.visitLabel(instrumentationActiveLabel);

    // setInstrumentationActive(true);
    setInstrumentationActive(mv, true);

    // we need to set the instrumentation flag for the source/destination
    // buffer(s) as well

    // boolean bufferInstrumentationActive = false;
    int bufferInstrumentationActiveIndex = 1;
    for (Type argument : argumentTypes) {
        bufferInstrumentationActiveIndex += argument.getSize();
    }
    mv.visitInsn(Opcodes.ICONST_0);
    mv.visitVarInsn(Opcodes.ISTORE, bufferInstrumentationActiveIndex);

    // obtain actual index of the buffer(s) in the argument list
    int bufferArgumentIndex = 1;
    for (int i = 0; i < bufferArgumentTypeIndex; ++i) {
        bufferArgumentIndex += argumentTypes[i].getSize();
    }

    if (argumentTypes[bufferArgumentTypeIndex].getSort() == Type.ARRAY) {
        // If the first buffer in the array is a MappedByteBuffer, assume
        // they all are. If not, this will crash the users' program.

        // if (<buffers>[0] instanceof MappedByteBuffer) {
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        mv.visitInsn(Opcodes.ICONST_0);
        mv.visitInsn(Opcodes.AALOAD);
        mv.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(MappedByteBuffer.class));
        Label bufferInstanceofMappedByteBufferLabel = new Label();
        mv.visitJumpInsn(Opcodes.IFEQ, bufferInstanceofMappedByteBufferLabel);

        // only trace mmapped file channels if desired
        if (this.traceMmap) {
            // if (<buffers>[0].isFromFileChannel()) {
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitInsn(Opcodes.ICONST_0);
            mv.visitInsn(Opcodes.AALOAD);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                    "isFromFileChannel", Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
            Label fromFileChannelLabel = new Label();
            mv.visitJumpInsn(Opcodes.IFEQ, fromFileChannelLabel);

            int iIndex = bufferInstrumentationActiveIndex + 1;

            // for (int i = 0; i < <buffers>.length; ++i) {
            // <buffers>[i].setInstrumentationActive(true);
            // }
            mv.visitInsn(Opcodes.ICONST_0);
            mv.visitVarInsn(Opcodes.ISTORE, iIndex);
            Label loopConditionLabel = new Label();
            mv.visitJumpInsn(Opcodes.GOTO, loopConditionLabel);
            Label loopStartLabel = new Label();
            mv.visitLabel(loopStartLabel);
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitVarInsn(Opcodes.ILOAD, iIndex);
            mv.visitInsn(Opcodes.AALOAD);
            mv.visitInsn(Opcodes.ICONST_1);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                    "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE),
                    false);
            mv.visitIincInsn(iIndex, 1);
            mv.visitLabel(loopConditionLabel);
            mv.visitVarInsn(Opcodes.ILOAD, iIndex);
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitInsn(Opcodes.ARRAYLENGTH);
            mv.visitJumpInsn(Opcodes.IF_ICMPLT, loopStartLabel);

            // bufferInstrumentationActive = true;
            mv.visitInsn(Opcodes.ICONST_1);
            mv.visitVarInsn(Opcodes.ISTORE, bufferInstrumentationActiveIndex);

            // }
            mv.visitLabel(fromFileChannelLabel);
        }

        // }
        mv.visitLabel(bufferInstanceofMappedByteBufferLabel);
    } else {
        // We need to handle the transferFrom/transferTo methods a little
        // differently. Their "buffers" only need to be FileChannelImpls,
        // the rest remains the same.

        // if (buffer instanceof MappedByteBuffer) {
        // if (buffer instanceof FileChannelImpl) {
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        if (!isTransferMethod) {
            mv.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(MappedByteBuffer.class));
        } else {
            mv.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(FileChannelImpl.class));
        }
        Label bufferInstanceofMappedByteBufferLabel = new Label();
        mv.visitJumpInsn(Opcodes.IFEQ, bufferInstanceofMappedByteBufferLabel);

        // additional check required if the buffer is a MappedByteBuffer,
        // and we want to trace those
        Label fromFileChannelLabel = new Label();
        if (!isTransferMethod && this.traceMmap) {
            // if (buffer.isFromFileChannel()) {
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                    "isFromFileChannel", Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
            mv.visitJumpInsn(Opcodes.IFEQ, fromFileChannelLabel);
        }

        // either we're dealing with a FileChannelImpl (in a
        // transferTo/transferFrom method), or this is a regular read or
        // write and we want to count in mmapped buffers
        if (isTransferMethod || this.traceMmap) {
            // buffer.setInstrumentationActive(true);
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitInsn(Opcodes.ICONST_1);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL,
                    !isTransferMethod ? Type.getInternalName(MappedByteBuffer.class)
                            : Type.getInternalName(FileChannelImpl.class),
                    "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE),
                    false);

            // bufferInstrumentationActive = true;
            mv.visitInsn(Opcodes.ICONST_1);
            mv.visitVarInsn(Opcodes.ISTORE, bufferInstrumentationActiveIndex);
        }

        if (!isTransferMethod && this.traceMmap) {
            // }
            mv.visitLabel(fromFileChannelLabel);
        }

        // }
        mv.visitLabel(bufferInstanceofMappedByteBufferLabel);
    }

    // long startTime = System.nanoTime();
    int startTimeIndex = bufferInstrumentationActiveIndex + 1;
    storeTime(mv, startTimeIndex);

    // <returnType> result = methodPrefix<name>(arguments);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    argumentIndex = 1;
    for (Type argument : argumentTypes) {
        mv.visitVarInsn(argument.getOpcode(Opcodes.ILOAD), argumentIndex);
        argumentIndex += argument.getSize();
    }
    mv.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName, this.methodPrefix + name,
            methodDescriptor, false);
    int resultIndex = startTimeIndex + 2;
    mv.visitVarInsn(returnType.getOpcode(Opcodes.ISTORE), resultIndex);
    int endTimeIndex = resultIndex + returnType.getSize();

    // long endTime = System.nanoTime();
    storeTime(mv, endTimeIndex);

    // if map(...) was involved in this, then it may have reset the
    // instrumentationActive flag if we don't trace mmap calls, so we need
    // to check again whether instrumentation is still active, and only
    // report the data then

    // if (isInstrumentationActive()) {
    isInstrumentationActive(mv);
    Label instrumentationStillActiveLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFEQ, instrumentationStillActiveLabel);

    // callback.<callbackName>(startTime, endTime, result);
    mv.visitVarInsn(Opcodes.ALOAD, 0);
    mv.visitFieldInsn(Opcodes.GETFIELD, this.instrumentedTypeInternalName, "callback",
            this.callbackTypeDescriptor);
    mv.visitVarInsn(Opcodes.LLOAD, startTimeIndex);
    mv.visitVarInsn(Opcodes.LLOAD, endTimeIndex);
    mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), resultIndex);
    mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, this.callbackTypeInternalName, callbackName,
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.LONG_TYPE, Type.LONG_TYPE,
                    additionalCallbackArgumentType),
            false);

    // }
    mv.visitLabel(instrumentationStillActiveLabel);

    // same for the buffer

    if (argumentTypes[bufferArgumentTypeIndex].getSort() != Type.ARRAY) {
        // if (buffer instanceof MappedByteBuffer) {
        // if (buffer instanceof FileChannelImpl) {
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        if (!isTransferMethod) {
            mv.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(MappedByteBuffer.class));
        } else {
            mv.visitTypeInsn(Opcodes.INSTANCEOF, Type.getInternalName(FileChannelImpl.class));
        }
        Label bufferInstanceofMappedByteBufferLabel = new Label();
        mv.visitJumpInsn(Opcodes.IFEQ, bufferInstanceofMappedByteBufferLabel);

        // additional check required if the buffer is a MappedByteBuffer,
        // and we want to trace those
        Label fromFileChannelLabel = new Label();
        if (!isTransferMethod && this.traceMmap) {
            // if (buffer.isFromFileChannel()) {
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                    "isFromFileChannel", Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
            mv.visitJumpInsn(Opcodes.IFEQ, fromFileChannelLabel);
        }

        // either we're dealing with a FileChannelImpl (in a
        // transferTo/transferFrom method), which might have flipped its
        // instrumentationActive flag because mmap was used, or this is a
        // regular read or write and we want to count in mmapped buffers
        if (isTransferMethod || this.traceMmap) {
            // if traceMmap is true, then we could actually just set
            // bufferInstrumentationActive to true

            // bufferInstrumentationActive =
            // buffer.isInstrumentationActive();
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL,
                    !isTransferMethod ? Type.getInternalName(MappedByteBuffer.class)
                            : Type.getInternalName(FileChannelImpl.class),
                    "isInstrumentationActive", Type.getMethodDescriptor(Type.BOOLEAN_TYPE), false);
            mv.visitVarInsn(Opcodes.ISTORE, bufferInstrumentationActiveIndex);
        }

        if (!isTransferMethod && this.traceMmap) {
            // }
            mv.visitLabel(fromFileChannelLabel);
        }

        // }
        mv.visitLabel(bufferInstanceofMappedByteBufferLabel);
    }

    // if (bufferInstrumentationActive) {
    mv.visitVarInsn(Opcodes.ILOAD, bufferInstrumentationActiveIndex);
    Label bufferInstrumentationActiveLabel = new Label();
    mv.visitJumpInsn(Opcodes.IFEQ, bufferInstrumentationActiveLabel);

    // callback.<oppositeCallbackName>(buffer.getFileDescriptor(),
    // startTime, endTime, result);
    if (!isTransferMethod) {
        if (argumentTypes[bufferArgumentTypeIndex].getSort() == Type.ARRAY) {
            // TODO this calls the opposite callback only on the first
            // element in the buffer array, but there is not really a way to
            // tell which buffer has received how many bytes, and thus which
            // file
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
            mv.visitInsn(Opcodes.ICONST_0);
            mv.visitInsn(Opcodes.AALOAD);
        } else {
            mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        }
        mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "getFileDescriptor", Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), false);
    } else {
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(FileChannelImpl.class),
                "getFileDescriptor", Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), false);
    }
    mv.visitVarInsn(Opcodes.LLOAD, startTimeIndex);
    mv.visitVarInsn(Opcodes.LLOAD, endTimeIndex);
    mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), resultIndex);
    mv.visitMethodInsn(Opcodes.INVOKESTATIC, this.callbackTypeInternalName, oppositeCallbackName,
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.getType(FileDescriptor.class), Type.LONG_TYPE,
                    Type.LONG_TYPE, additionalCallbackArgumentType),
            false);

    // revert the active instrumentation flag for the buffer
    if (argumentTypes[bufferArgumentTypeIndex].getSort() == Type.ARRAY) {
        int iIndex = bufferInstrumentationActiveIndex + 1;

        // for (int i = 0; i < <buffers>.length; ++i) {
        // <buffers>[i].setInstrumentationActive(false);
        // }
        mv.visitInsn(Opcodes.ICONST_0);
        mv.visitVarInsn(Opcodes.ISTORE, iIndex);
        Label loopConditionLabel = new Label();
        mv.visitJumpInsn(Opcodes.GOTO, loopConditionLabel);
        Label loopStartLabel = new Label();
        mv.visitLabel(loopStartLabel);
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        mv.visitVarInsn(Opcodes.ILOAD, iIndex);
        mv.visitInsn(Opcodes.AALOAD);
        mv.visitInsn(Opcodes.ICONST_0);
        mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL, Type.getInternalName(MappedByteBuffer.class),
                "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);
        mv.visitIincInsn(iIndex, 1);
        mv.visitLabel(loopConditionLabel);
        mv.visitVarInsn(Opcodes.ILOAD, iIndex);
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        mv.visitInsn(Opcodes.ARRAYLENGTH);
        mv.visitJumpInsn(Opcodes.IF_ICMPLT, loopStartLabel);
    } else {
        // buffer.setInstrumentationActive(false);
        mv.visitVarInsn(Opcodes.ALOAD, bufferArgumentIndex);
        mv.visitInsn(Opcodes.ICONST_0);
        mv.visitMethodInsn(Opcodes.INVOKEVIRTUAL,
                !isTransferMethod ? Type.getInternalName(MappedByteBuffer.class)
                        : Type.getInternalName(FileChannelImpl.class),
                "setInstrumentationActive", Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), false);
    }

    // }
    mv.visitLabel(bufferInstrumentationActiveLabel);

    // setInstrumentationActive(false);
    setInstrumentationActive(mv, false);

    // return result;
    // }
    mv.visitVarInsn(returnType.getOpcode(Opcodes.ILOAD), resultIndex);
    mv.visitInsn(returnType.getOpcode(Opcodes.IRETURN));
    mv.visitMaxs(0, 0);
    mv.visitEnd();
}

From source file:de.zib.sfs.instrument.MappedByteBufferAdapter.java

License:BSD License

@Override
protected void appendWrappedMethods(ClassVisitor visitor) {
    // public void setFromFileChannel(boolean fromFileChannel) {
    MethodVisitor setFromFileChannelMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "setFromFileChannel",
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.BOOLEAN_TYPE), null, null);
    setFromFileChannelMV.visitCode();// w  w w  .  j  a  v a 2s.  c  o m

    // this.fromFileChannel = fromFileChannel;
    setFromFileChannelMV.visitVarInsn(Opcodes.ALOAD, 0);
    setFromFileChannelMV.visitVarInsn(Opcodes.ILOAD, 1);
    setFromFileChannelMV.visitFieldInsn(Opcodes.PUTFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fromFileChannel", Type.getDescriptor(Boolean.TYPE));

    // }
    setFromFileChannelMV.visitInsn(Opcodes.RETURN);
    setFromFileChannelMV.visitMaxs(0, 0);
    setFromFileChannelMV.visitEnd();

    // public boolean isFromFileChannel() {
    MethodVisitor isFromFileChannelMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "isFromFileChannel",
            Type.getMethodDescriptor(Type.BOOLEAN_TYPE), null, null);
    isFromFileChannelMV.visitCode();

    // return fromFileChannel;
    // }
    isFromFileChannelMV.visitVarInsn(Opcodes.ALOAD, 0);
    isFromFileChannelMV.visitFieldInsn(Opcodes.GETFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fromFileChannel", Type.getDescriptor(Boolean.TYPE));
    isFromFileChannelMV.visitInsn(Opcodes.IRETURN);
    isFromFileChannelMV.visitMaxs(0, 0);
    isFromFileChannelMV.visitEnd();

    // public void setFileDescriptor(FileDescriptor fileDescriptor) {
    MethodVisitor settFileDescriptorMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "setFileDescriptor",
            Type.getMethodDescriptor(Type.VOID_TYPE, Type.getType(FileDescriptor.class)), null, null);
    settFileDescriptorMV.visitCode();

    // this.fileDescriptor = fileDescriptor;
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 0);
    settFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 1);
    settFileDescriptorMV.visitFieldInsn(Opcodes.PUTFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fileDescriptor", Type.getDescriptor(FileDescriptor.class));

    // }
    settFileDescriptorMV.visitInsn(Opcodes.RETURN);
    settFileDescriptorMV.visitMaxs(0, 0);
    settFileDescriptorMV.visitEnd();

    // public FileDescriptor getFileDescriptor() {
    MethodVisitor getFileDescriptorMV = visitor.visitMethod(Opcodes.ACC_PUBLIC, "getFileDescriptor",
            Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), null, null);
    getFileDescriptorMV.visitCode();

    // return getFileDescriptorImpl();
    // }
    getFileDescriptorMV.visitVarInsn(Opcodes.ALOAD, 0);
    getFileDescriptorMV.visitMethodInsn(Opcodes.INVOKESPECIAL, this.instrumentedTypeInternalName,
            "getFileDescriptorImpl", Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), false);
    getFileDescriptorMV.visitInsn(Opcodes.ARETURN);
    getFileDescriptorMV.visitMaxs(0, 0);
    getFileDescriptorMV.visitEnd();

    // protected FileDescriptor getFileDescriptorImpl() {
    MethodVisitor getFileDescriptorImplMV = visitor.visitMethod(Opcodes.ACC_PROTECTED, "getFileDescriptorImpl",
            Type.getMethodDescriptor(Type.getType(FileDescriptor.class)), null, null);
    getFileDescriptorImplMV.visitCode();

    // return fileDescriptor;
    // }
    getFileDescriptorImplMV.visitVarInsn(Opcodes.ALOAD, 0);
    getFileDescriptorImplMV.visitFieldInsn(Opcodes.GETFIELD, Type.getInternalName(MappedByteBuffer.class),
            "fileDescriptor", Type.getDescriptor(FileDescriptor.class));
    getFileDescriptorImplMV.visitInsn(Opcodes.ARETURN);
    getFileDescriptorImplMV.visitMaxs(0, 0);
    getFileDescriptorImplMV.visitEnd();

    visitor.visitEnd();
}

From source file:dodola.anole.lib.ConstructorDelegationDetector.java

License:Apache License

/**
 * Splits the constructor in two methods, the "set up" and the "body" parts (see above).
 *///from   w ww . j  a  va 2  s. c  om
private static Constructor split(String owner, MethodNode method, VarInsnNode loadThis,
        MethodInsnNode delegation, int loadThisLine) {
    String[] exceptions = ((List<String>) method.exceptions).toArray(new String[method.exceptions.size()]);
    String newDesc = method.desc.replaceAll("\\((.*)\\)V", "([Ljava/lang/Object;$1)Ljava/lang/Object;");

    MethodNode initArgs = new MethodNode(Opcodes.ACC_PUBLIC | Opcodes.ACC_STATIC, "init$args", newDesc, null,
            exceptions);
    AbstractInsnNode insn = loadThis.getNext();
    while (insn != delegation) {
        insn.accept(initArgs);
        insn = insn.getNext();
    }
    LabelNode labelBefore = new LabelNode();
    labelBefore.accept(initArgs);

    GeneratorAdapter mv = new GeneratorAdapter(initArgs, initArgs.access, initArgs.name, initArgs.desc);
    // Copy the arguments back to the argument array
    // The init_args part cannot access the "this" object and can have side effects on the
    // local variables. Because of this we use the first argument (which we want to keep
    // so all the other arguments remain unchanged) as a reference to the array where to
    // return the values of the modified local variables.
    Type[] types = Type.getArgumentTypes(initArgs.desc);
    int stack = 1; // Skip the first one which is a reference to the local array.
    for (int i = 1; i < types.length; i++) {
        Type type = types[i];
        // This is not this, but the array of local arguments final values.
        mv.visitVarInsn(Opcodes.ALOAD, 0);
        mv.push(i);
        mv.visitVarInsn(type.getOpcode(Opcodes.ILOAD), stack);
        mv.box(type);
        mv.arrayStore(Type.getType(Object.class));
        stack += type.getSize();
    }
    // Create the args array with the values to send to the delegated constructor
    Type[] returnTypes = Type.getArgumentTypes(delegation.desc);
    // The extra element for the qualified name of the constructor.
    mv.push(returnTypes.length + 1);
    mv.newArray(Type.getType(Object.class));
    int args = mv.newLocal(Type.getType("[Ljava/lang/Object;"));
    mv.storeLocal(args);
    for (int i = returnTypes.length - 1; i >= 0; i--) {
        Type type = returnTypes[i];
        mv.loadLocal(args);
        mv.swap(type, Type.getType(Object.class));
        mv.push(i + 1);
        mv.swap(type, Type.INT_TYPE);
        mv.box(type);
        mv.arrayStore(Type.getType(Object.class));
    }

    // Store the qualified name of the constructor in the first element of the array.
    mv.loadLocal(args);
    mv.push(0);
    mv.push(delegation.owner + "." + delegation.desc); // Name of the constructor to be called.
    mv.arrayStore(Type.getType(Object.class));

    mv.loadLocal(args);
    mv.returnValue();

    newDesc = method.desc.replace("(", "(L" + owner + ";");
    MethodNode body = new MethodNode(Opcodes.ACC_PUBLIC | Opcodes.ACC_STATIC, "init$body", newDesc, null,
            exceptions);
    LabelNode labelAfter = new LabelNode();
    labelAfter.accept(body);
    Set<LabelNode> bodyLabels = new HashSet<LabelNode>();

    insn = delegation.getNext();
    while (insn != null) {
        if (insn instanceof LabelNode) {
            bodyLabels.add((LabelNode) insn);
        }
        insn.accept(body);
        insn = insn.getNext();
    }

    // manually transfer the exception table from the existing constructor to the new
    // "init$body" method. The labels were transferred just above so we can reuse them.

    //noinspection unchecked
    for (TryCatchBlockNode tryCatch : (List<TryCatchBlockNode>) method.tryCatchBlocks) {
        tryCatch.accept(body);
    }

    //noinspection unchecked
    for (LocalVariableNode variable : (List<LocalVariableNode>) method.localVariables) {
        boolean startsInBody = bodyLabels.contains(variable.start);
        boolean endsInBody = bodyLabels.contains(variable.end);
        if (!startsInBody && !endsInBody) {
            if (variable.index != 0) { // '#0' on init$args is not 'this'
                variable.accept(initArgs);
            }
        } else if (startsInBody && endsInBody) {
            variable.accept(body);
        } else if (!startsInBody && endsInBody) {
            // The variable spans from the args to the end of the method, create two:
            if (variable.index != 0) { // '#0' on init$args is not 'this'
                LocalVariableNode var0 = new LocalVariableNode(variable.name, variable.desc, variable.signature,
                        variable.start, labelBefore, variable.index);
                var0.accept(initArgs);
            }
            LocalVariableNode var1 = new LocalVariableNode(variable.name, variable.desc, variable.signature,
                    labelAfter, variable.end, variable.index);
            var1.accept(body);
        } else {
            throw new IllegalStateException("Local variable starts after it ends.");
        }
    }

    return new Constructor(loadThis, loadThisLine, initArgs, delegation, body);
}

From source file:dodola.anole.lib.Redirection.java

License:Apache License

/**
 * Pushes in the stack the value that should be redirected for the given local.
 *///w w  w. ja  v a  2  s.  c  o  m
protected void redirectLocal(GeneratorAdapter mv, int local, Type arg) {
    mv.visitVarInsn(arg.getOpcode(Opcodes.ILOAD), local);
}

From source file:dyco4j.instrumentation.internals.InitTracingMethodVisitor.java

License:BSD License

@Override
public void visitVarInsn(final int opcode, final int var) {
    super.visitVarInsn(opcode, var);
    switch (opcode) {
    case Opcodes.ILOAD:
    case Opcodes.FLOAD:
        this.stackFrame.push(OTHER);
        break;//from www . j  a  va2 s . co m
    case Opcodes.LLOAD:
    case Opcodes.DLOAD:
        this.stackFrame.push(OTHER);
        this.stackFrame.push(OTHER);
        break;
    case Opcodes.ALOAD:
        this.stackFrame.push(var == 0 ? THIS : OTHER);
        break;
    case Opcodes.ASTORE:
    case Opcodes.ISTORE:
    case Opcodes.FSTORE:
        this.stackFrame.pop();
        break;
    case Opcodes.LSTORE:
    case Opcodes.DSTORE:
        this.stackFrame.pop();
        this.stackFrame.pop();
        break;
    }
}