Package org.apache.harmony.pack200

Examples of org.apache.harmony.pack200.IcTuple


      entry.setTime(modtime);
      out.putNextEntry(entry);

      if (isClass) {
        // write to dos
        ClassFile classFile = buildClassFile(classNum);
        classFile.write(dos);
        dos.flush();
        classNum++;
      } else {
        long size = fileSize[i];
        entry.setSize(size);
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          .add(new SourceFileAttribute(fileName)) };
    } else {
      classFile.attributes = new Attribute[] {};
    }
    // this/superclass
    ClassFileEntry cfThis = cp.add(new CPClass(fullName));
    ClassFileEntry cfSuper = cp.add(new CPClass(classBands.getClassSuper()[classNum]));
    // add interfaces
    ClassFileEntry cfInterfaces[] = new ClassFileEntry[classBands.getClassInterfaces()[classNum].length];
    for (i = 0; i < cfInterfaces.length; i++) {
      cfInterfaces[i] = cp.add(new CPClass(classBands.getClassInterfaces()[classNum][i]));
    }
    // add fields
    ClassFileEntry cfFields[] = new ClassFileEntry[classBands.getClassFieldCount()[classNum]];
    // fieldDescr and fieldFlags used to create this
    for (i = 0; i < cfFields.length; i++) {
      cfFields[i] = cp.add(new CPField(classBands.getFieldDescr()[classNum][i],
                    classBands.getFieldFlags()[classNum][i], classBands.getFieldAttributes()[classNum][i]));
    }
    // add methods
    ClassFileEntry cfMethods[] = new ClassFileEntry[classBands.getClassMethodCount()[classNum]];
    // fieldDescr and fieldFlags used to create this
    for (i = 0; i < cfMethods.length; i++) {
      cfMethods[i] = cp.add(new CPMethod(classBands.getMethodDescr()[classNum][i],
                    classBands.getMethodFlags()[classNum][i], classBands.getMethodAttributes()[classNum][i]));
    }
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                   if (!staticModifier.matches(methodFlag))
                       maxLocal++; // one for 'this' parameter
                   maxLocal += SegmentUtils.countArgs(methodDescr[c][m]);
                   // TODO Move creation of code attribute until after constant
                   // pool resolved
                   CodeAttribute attr = new CodeAttribute(maxStack, maxLocal,
                           methodByteCodePacked[c][m]);
                   methodAttributes[c][m].add(attr);
                   i++;
               }
           }
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                    // be e.g. KIB or KIH
                    if (type.equals("B") || type.equals("H"))
                        type = "I";
                    Object value = layout.getValue(result, type, cpBands.getConstantPool());
                    fieldAttributes[i][j]
                            .add(new ConstantValueAttribute(value));
                    debug("Processed value " + value + " for ConstantValue");
                }
            }
        }
        debug("unimplemented field_Signature_RS");
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                       for (int k = 0; k < n; k++) {
                           long result = codec.decode(in);
                           exceptions[k] = new CPClass(cpBands.getCpClass()[(int) result]);
                       }
                   }
                   methodExceptions[i][j] = new ExceptionsAttribute(exceptions);
                   methodAttributes[i][j].add(methodExceptions[i][j]);
               }
            }
        }
    }
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        .getAttributeLayout(AttributeLayout.ATTRIBUTE_SOURCE_FILE,
            AttributeLayout.CONTEXT_CLASS);
    if (SOURCE_FILE.matches(classBands.getClassFlags()[classNum])) {
      String fileName = fullName.substring(i) + ".java";
      classFile.attributes = new Attribute[] { (Attribute) cp
          .add(new SourceFileAttribute(fileName)) };
    } else {
      classFile.attributes = new Attribute[] {};
    }
    // this/superclass
    ClassFileEntry cfThis = cp.add(new CPClass(fullName));
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import org.apache.harmony.unpack200.IcTuple;

public class ICTupleTest extends TestCase {

    public void testPredictedClassTupleParsing() {
        IcTuple tuple = new IcTuple(
                "orw/SimpleHelloWorld$SimpleHelloWorldInner", 0, null, null,
                -1, -1, -1);
        assertEquals("SimpleHelloWorldInner", tuple.simpleClassName());
        assertEquals("orw/SimpleHelloWorld", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList$2$Local", 0, null, null,
                -1, -1, -1);
        assertEquals("Local", tuple.simpleClassName());
        assertEquals("java/util/AbstractList$2", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList#2#Local", 0, null, null,
                -1, -1, -1);
        assertEquals("Local", tuple.simpleClassName());
        assertEquals("java/util/AbstractList$2", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList$1", 0, null, null, -1, -1,
                -1);
        assertEquals("1", tuple.simpleClassName());
        assertEquals("java/util/AbstractList", tuple.outerClassString());
    }
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        assertEquals("1", tuple.simpleClassName());
        assertEquals("java/util/AbstractList", tuple.outerClassString());
    }

    public void testExplicitClassTupleParsing() {
        IcTuple tuple = new IcTuple("Foo$$2$Local", IcTuple.NESTED_CLASS_FLAG,
                null, "$2$Local", -1, -1, -1);
        assertEquals("$2$Local", tuple.simpleClassName());
        assertEquals("Foo$$2", tuple.outerClassString());

        tuple = new IcTuple("Red$Herring", IcTuple.NESTED_CLASS_FLAG,
                "Red$Herring", null, -1, -1, -1);
        assertEquals("Herring", tuple.simpleClassName());
        assertEquals("Red$Herring", tuple.outerClassString());

        tuple = new IcTuple("X$1$Q", IcTuple.NESTED_CLASS_FLAG, "X$1", "Q", -1,
                -1, -1);
        assertEquals("Q", tuple.simpleClassName());
        assertEquals("X$1", tuple.outerClassString());
    }
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import org.apache.harmony.unpack200.IcTuple;

public class ICTupleTest extends TestCase {

    public void testPredictedClassTupleParsing() {
        IcTuple tuple = new IcTuple(
                "orw/SimpleHelloWorld$SimpleHelloWorldInner", 0, null, null,
                -1, -1, -1, -1);
        assertEquals("SimpleHelloWorldInner", tuple.simpleClassName());
        assertEquals("orw/SimpleHelloWorld", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList$2$Local", 0, null, null,
                -1, -1, -1, -1);
        assertEquals("Local", tuple.simpleClassName());
        assertEquals("java/util/AbstractList$2", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList#2#Local", 0, null, null,
                -1, -1, -1, -1);
        assertEquals("Local", tuple.simpleClassName());
        assertEquals("java/util/AbstractList$2", tuple.outerClassString());

        tuple = new IcTuple("java/util/AbstractList$1", 0, null, null, -1, -1,
                -1, -1);
        assertEquals("1", tuple.simpleClassName());
        assertEquals("java/util/AbstractList", tuple.outerClassString());
    }
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        assertEquals("1", tuple.simpleClassName());
        assertEquals("java/util/AbstractList", tuple.outerClassString());
    }

    public void testExplicitClassTupleParsing() {
        IcTuple tuple = new IcTuple("Foo$$2$Local", IcTuple.NESTED_CLASS_FLAG,
                null, "$2$Local", -1, -1, -1, -1);
        assertEquals("$2$Local", tuple.simpleClassName());
        assertEquals("Foo$$2", tuple.outerClassString());

        tuple = new IcTuple("Red$Herring", IcTuple.NESTED_CLASS_FLAG,
                "Red$Herring", null, -1, -1, -1, -1);
        assertEquals("Herring", tuple.simpleClassName());
        assertEquals("Red$Herring", tuple.outerClassString());

        tuple = new IcTuple("X$1$Q", IcTuple.NESTED_CLASS_FLAG, "X$1", "Q", -1,
                -1, -1, -1);
        assertEquals("Q", tuple.simpleClassName());
        assertEquals("X$1", tuple.outerClassString());
    }
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