TypeDescriptor cleanup and general polishing; fixed a number of bugs related to TypeDescriptor usage in client code across beans and spel packages

This commit is contained in:
Keith Donald
2011-01-05 05:49:33 +00:00
parent 74b5b7b56a
commit 39e0c29d19
33 changed files with 449 additions and 539 deletions

View File

@@ -42,9 +42,6 @@ public class TypeDescriptor {
/** Constant defining a TypeDescriptor for a <code>null</code> value */
public static final TypeDescriptor NULL = new TypeDescriptor();
/** Constant defining a TypeDescriptor for 'unknown type' */
private static final TypeDescriptor UNKNOWN = new TypeDescriptor(Object.class);
private static final Map<Class<?>, TypeDescriptor> typeDescriptorCache = new HashMap<Class<?>, TypeDescriptor>();
private static final Annotation[] EMPTY_ANNOTATION_ARRAY = new Annotation[0];
@@ -78,8 +75,6 @@ public class TypeDescriptor {
private int fieldNestingLevel = 1;
private Object value;
private TypeDescriptor elementType;
private TypeDescriptor mapKeyType;
@@ -97,6 +92,7 @@ public class TypeDescriptor {
*/
public TypeDescriptor(MethodParameter methodParameter) {
Assert.notNull(methodParameter, "MethodParameter must not be null");
this.type = methodParameter.getParameterType();
this.methodParameter = methodParameter;
}
@@ -107,112 +103,49 @@ public class TypeDescriptor {
*/
public TypeDescriptor(Field field) {
Assert.notNull(field, "Field must not be null");
this.type = field.getType();
this.field = field;
}
/**
* Create a new type descriptor from a method or constructor parameter.
* <p>Use this constructor when a target conversion point originates from a method parameter,
* such as a setter method argument.
* @param methodParameter the MethodParameter to wrap
* @param type the specific type to expose (may be an array/collection element)
* Create a new type descriptor for the given class.
* @param type the class
* @return the type descriptor
*/
public TypeDescriptor(MethodParameter methodParameter, Class<?> type) {
Assert.notNull(methodParameter, "MethodParameter must not be null");
this.methodParameter = methodParameter;
this.type = type;
public static TypeDescriptor valueOf(Class<?> type) {
if (type == null) {
return NULL;
}
TypeDescriptor desc = typeDescriptorCache.get(type);
return (desc != null ? desc : new TypeDescriptor(type));
}
/**
* Create a new type descriptor for a field.
* Use this constructor when a target conversion point originates from a field.
* @param field the field to wrap
* @param type the specific type to expose (may be an array/collection element)
* Create a new type descriptor for the class of the given object.
* @param object the object
* @return the type descriptor
*/
public TypeDescriptor(Field field, Class<?> type) {
Assert.notNull(field, "Field must not be null");
this.field = field;
this.type = type;
public static TypeDescriptor forObject(Object object) {
if (object == null) {
return NULL;
}
if (object instanceof Collection<?>) {
return new TypeDescriptor(object.getClass(), CollectionUtils.findCommonElementType((Collection<?>) object));
}
else if (object instanceof Map<?, ?>) {
return new TypeDescriptor(object.getClass(), CollectionUtils.findCommonElementType(((Map<?, ?>) object).keySet()), CollectionUtils.findCommonElementType(((Map<?, ?>) object).values()));
}
else {
return valueOf(object.getClass());
}
}
/**
* Create a new type descriptor for a field.
* Use this constructor when a target conversion point originates from a field.
* @param field the field to wrap
* @param type the specific type to expose (may be an array/collection element)
*/
private TypeDescriptor(Field field, int nestingLevel, Class<?> type) {
Assert.notNull(field, "Field must not be null");
this.field = field;
this.fieldNestingLevel = nestingLevel;
this.type = type;
}
/**
* Internal constructor for a NULL descriptor.
*/
private TypeDescriptor() {
}
/**
* Create a new descriptor for the type of the given value.
* <p>Use this constructor when a conversion point comes from a source such as a Map or
* Collection, where no additional context is available but elements can be introspected.
* @param value the value to determine the actual type from
*/
private TypeDescriptor(Object value) {
Assert.notNull(value, "Value must not be null");
this.value = value;
this.type = value.getClass();
}
/**
* Create a new descriptor for the given type.
* <p>Use this constructor when a conversion point comes from a plain source type,
* where no additional context is available.
* @param type the actual type to wrap
*/
private TypeDescriptor(Class<?> type) {
Assert.notNull(type, "Type must not be null");
this.type = type;
}
/**
* Return the wrapped MethodParameter, if any.
* <p>Note: Either MethodParameter or Field is available.
* @return the MethodParameter, or <code>null</code> if none
*/
public MethodParameter getMethodParameter() {
return this.methodParameter;
}
/**
* Return the wrapped Field, if any.
* <p>Note: Either MethodParameter or Field is available.
* @return the Field, or <code>null</code> if none
*/
public Field getField() {
return this.field;
}
/**
* Determine the declared (non-generic) type of the wrapped parameter/field.
* @return the declared type, or <code>null</code> if this is {@link TypeDescriptor#NULL}
*/
public Class<?> getType() {
if (this.type != null) {
return this.type;
}
else if (this.field != null) {
return this.field.getType();
}
else if (this.methodParameter != null) {
return this.methodParameter.getParameterType();
}
else {
return null;
}
return type;
}
/**
@@ -220,140 +153,21 @@ public class TypeDescriptor {
* Returns the Object wrapper type if the underlying type is a primitive.
*/
public Class<?> getObjectType() {
Class<?> type = getType();
return (type != null ? ClassUtils.resolvePrimitiveIfNecessary(type) : type);
return ClassUtils.resolvePrimitiveIfNecessary(getType());
}
/**
* Returns the name of this type: the fully qualified class name.
*/
public String getName() {
Class<?> type = getType();
return (type != null ? ClassUtils.getQualifiedName(type) : null);
return ClassUtils.getQualifiedName(getType());
}
/**
* Is this type a primitive type?
*/
public boolean isPrimitive() {
Class<?> type = getType();
return (type != null && type.isPrimitive());
}
/**
* Is this type an array type?
*/
public boolean isArray() {
Class<?> type = getType();
return (type != null && type.isArray());
}
/**
* Is this type a {@link Collection} type?
*/
public boolean isCollection() {
return Collection.class.isAssignableFrom(getType());
}
/**
* If this type is an array type or {@link Collection} type, returns the underlying element type.
* Returns <code>null</code> if the type is neither an array or collection.
*/
public Class<?> getElementType() {
return getElementTypeDescriptor().getType();
}
/**
* Return the element type as a type descriptor.
*/
public synchronized TypeDescriptor getElementTypeDescriptor() {
if (this.elementType == null) {
this.elementType = forElementType(resolveElementType());
}
return this.elementType;
}
/**
* Return the element type as a type descriptor. If the element type is null
* (cannot be determined), the type descriptor is derived from the element argument.
* @param element the element
* @return the element type descriptor
*/
public TypeDescriptor getElementTypeDescriptor(Object element) {
TypeDescriptor elementType = getElementTypeDescriptor();
return (elementType != TypeDescriptor.UNKNOWN ? elementType : forObject(element));
}
/**
* Is this type a {@link Map} type?
*/
public boolean isMap() {
return Map.class.isAssignableFrom(getType());
}
/**
* Is this descriptor for a map where the key type and value type are known?
*/
public boolean isMapEntryTypeKnown() {
return (isMap() && getMapKeyType() != null && getMapValueType() != null);
}
/**
* Determine the generic key type of the wrapped Map parameter/field, if any.
* @return the generic type, or <code>null</code> if none
*/
public Class<?> getMapKeyType() {
return getMapKeyTypeDescriptor().getType();
}
/**
* Returns map key type as a type descriptor.
*/
public synchronized TypeDescriptor getMapKeyTypeDescriptor() {
if (this.mapKeyType == null) {
this.mapKeyType = forElementType(resolveMapKeyType());
}
return this.mapKeyType;
}
/**
* Return the map key type as a type descriptor. If the key type is null
* (cannot be determined), the type descriptor is derived from the key argument.
* @param key the key
* @return the map key type descriptor
*/
public TypeDescriptor getMapKeyTypeDescriptor(Object key) {
TypeDescriptor keyType = getMapKeyTypeDescriptor();
return (keyType != TypeDescriptor.UNKNOWN ? keyType : TypeDescriptor.forObject(key));
}
/**
* Determine the generic value type of the wrapped Map parameter/field, if any.
* @return the generic type, or <code>null</code> if none
*/
public Class<?> getMapValueType() {
return getMapValueTypeDescriptor().getType();
}
/**
* Returns map value type as a type descriptor.
*/
public synchronized TypeDescriptor getMapValueTypeDescriptor() {
if (this.mapValueType == null) {
this.mapValueType = forElementType(resolveMapValueType());
}
return this.mapValueType;
}
/**
* Return the map value type as a type descriptor. If the value type is null
* (cannot be determined), the type descriptor is derived from the value argument.
* @param value the value
* @return the map value type descriptor
*/
public TypeDescriptor getMapValueTypeDescriptor(Object value) {
TypeDescriptor valueType = getMapValueTypeDescriptor();
return (valueType != TypeDescriptor.UNKNOWN ? valueType : TypeDescriptor.forObject(value));
return getType().isPrimitive();
}
/**
@@ -402,28 +216,130 @@ public class TypeDescriptor {
}
/**
* Create a copy of this type descriptor, preserving the context information
* but exposing the specified element type (e.g. an array/collection/map element).
* @param elementType the desired type to expose
* @return the type descriptor
* A textual representation of the type descriptor (eg. Map<String,Foo>) for use in messages.
*/
public TypeDescriptor forElementType(Class<?> elementType) {
if (elementType == null) {
return TypeDescriptor.UNKNOWN;
}
else if (this.methodParameter != null) {
MethodParameter nested = new MethodParameter(this.methodParameter);
nested.increaseNestingLevel();
return new TypeDescriptor(nested, elementType);
}
else if (this.field != null) {
return new TypeDescriptor(this.field, this.fieldNestingLevel + 1, elementType);
}
else {
return TypeDescriptor.valueOf(elementType);
}
public String asString() {
return toString();
}
// indexable type descriptor operations
/**
* Is this type an array type?
*/
public boolean isArray() {
return getType().isArray();
}
/**
* Is this type a {@link Collection} type?
*/
public boolean isCollection() {
return Collection.class.isAssignableFrom(getType());
}
/**
* If this type is an array type or {@link Collection} type, returns the underlying element type.
* Returns <code>null</code> if the type is neither an array or collection.
*/
public Class<?> getElementType() {
return getElementTypeDescriptor().getType();
}
/**
* Return the element type as a type descriptor.
*/
public synchronized TypeDescriptor getElementTypeDescriptor() {
if (!isCollection() && !isArray()) {
throw new IllegalStateException("Not a collection or array type");
}
if (this.elementType == null) {
this.elementType = resolveElementTypeDescriptor();
}
return this.elementType;
}
// map type descriptor operations
/**
* Is this type a {@link Map} type?
*/
public boolean isMap() {
return Map.class.isAssignableFrom(getType());
}
/**
* Determine the generic key type of the wrapped Map parameter/field, if any.
* @return the generic type, or <code>null</code> if none
*/
public Class<?> getMapKeyType() {
return getMapKeyTypeDescriptor().getType();
}
/**
* Returns map key type as a type descriptor.
*/
public synchronized TypeDescriptor getMapKeyTypeDescriptor() {
if (!isMap()) {
throw new IllegalStateException("Not a Map type");
}
if (this.mapKeyType == null) {
this.mapKeyType = resolveMapKeyTypeDescriptor();
}
return this.mapKeyType;
}
/**
* Determine the generic value type of the wrapped Map parameter/field, if any.
* @return the generic type, or <code>null</code> if none
*/
public Class<?> getMapValueType() {
return getMapValueTypeDescriptor().getType();
}
/**
* Returns map value type as a type descriptor.
*/
public synchronized TypeDescriptor getMapValueTypeDescriptor() {
if (this.mapValueType == null) {
this.mapValueType = resolveMapValueTypeDescriptor();
}
return this.mapValueType;
}
// special case public operations
public TypeDescriptor(Class<?> componentType, MethodParameter methodParameter) {
if (componentType == null) {
componentType = Object.class;
}
this.type = componentType;
this.methodParameter = methodParameter;
}
public MethodParameter getMethodParameter() {
return methodParameter;
}
public TypeDescriptor applyType(Object object) {
if (object == null) {
return this;
}
// TODO preserve binding context with returned copy
// TODO fall back to generic info if collection is empty
if (object instanceof Collection<?>) {
return new TypeDescriptor(object.getClass(), CollectionUtils.findCommonElementType((Collection<?>) object));
}
else if (object instanceof Map<?, ?>) {
return new TypeDescriptor(object.getClass(), CollectionUtils.findCommonElementType(((Map<?, ?>) object).keySet()), CollectionUtils.findCommonElementType(((Map<?, ?>) object).values()));
}
else {
return valueOf(object.getClass());
}
}
// extending Object
public boolean equals(Object obj) {
if (this == obj) {
return true;
@@ -432,8 +348,7 @@ public class TypeDescriptor {
return false;
}
TypeDescriptor other = (TypeDescriptor) obj;
boolean annotatedTypeEquals =
getType().equals(other.getType()) && ObjectUtils.nullSafeEquals(getAnnotations(), other.getAnnotations());
boolean annotatedTypeEquals = getType().equals(other.getType()) && ObjectUtils.nullSafeEquals(getAnnotations(), other.getAnnotations());
if (isCollection()) {
return annotatedTypeEquals && ObjectUtils.nullSafeEquals(getElementType(), other.getElementType());
}
@@ -450,13 +365,6 @@ public class TypeDescriptor {
return (this == TypeDescriptor.NULL ? 0 : getType().hashCode());
}
/**
* A textual representation of the type descriptor (eg. Map<String,Foo>) for use in messages.
*/
public String asString() {
return toString();
}
public String toString() {
if (this == TypeDescriptor.NULL) {
return "null";
@@ -479,82 +387,9 @@ public class TypeDescriptor {
}
}
// internal helpers
private Class<?> resolveElementType() {
if (isArray()) {
return getType().getComponentType();
}
else if (isCollection()) {
return resolveCollectionElementType();
}
else {
return null;
}
}
@SuppressWarnings("unchecked")
private Class<?> resolveCollectionElementType() {
if (this.field != null) {
return GenericCollectionTypeResolver.getCollectionFieldType(this.field, this.fieldNestingLevel);
}
else if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getCollectionParameterType(this.methodParameter);
}
else if (this.value instanceof Collection) {
Class<?> elementType = CollectionUtils.findCommonElementType((Collection) this.value);
if (elementType != null) {
return elementType;
}
}
else if (this.type != null) {
return GenericCollectionTypeResolver.getCollectionType((Class<? extends Collection>) this.type);
}
return null;
}
@SuppressWarnings("unchecked")
private Class<?> resolveMapKeyType() {
if (this.field != null) {
return GenericCollectionTypeResolver.getMapKeyFieldType(this.field);
}
else if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getMapKeyParameterType(this.methodParameter);
}
else if (this.value instanceof Map<?, ?>) {
Class<?> keyType = CollectionUtils.findCommonElementType(((Map<?, ?>) this.value).keySet());
if (keyType != null) {
return keyType;
}
}
else if (this.type != null && isMap()) {
return GenericCollectionTypeResolver.getMapKeyType((Class<? extends Map>) this.type);
}
return null;
}
@SuppressWarnings("unchecked")
private Class<?> resolveMapValueType() {
if (this.field != null) {
return GenericCollectionTypeResolver.getMapValueFieldType(this.field);
}
else if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getMapValueParameterType(this.methodParameter);
}
else if (this.value instanceof Map<?, ?>) {
Class<?> valueType = CollectionUtils.findCommonElementType(((Map<?, ?>) this.value).values());
if (valueType != null) {
return valueType;
}
}
else if (this.type != null && isMap()) {
return GenericCollectionTypeResolver.getMapValueType((Class<? extends Map>) this.type);
}
return null;
}
private Annotation[] resolveAnnotations() {
// subclassing hooks
protected Annotation[] resolveAnnotations() {
if (this.field != null) {
return this.field.getAnnotations();
}
@@ -571,37 +406,118 @@ public class TypeDescriptor {
}
}
protected TypeDescriptor newComponentTypeDescriptor(Class<?> componentType, MethodParameter nested) {
return new TypeDescriptor(componentType, nested);
}
// internal helpers
// static factory methods
/**
* Create a new type descriptor for the class of the given object.
* @param object the object
* @return the type descriptor
*/
public static TypeDescriptor forObject(Object object) {
if (object == null) {
return NULL;
}
else if (object instanceof Collection<?> || object instanceof Map<?, ?>) {
return new TypeDescriptor(object);
private TypeDescriptor resolveElementTypeDescriptor() {
if (isCollection()) {
return createComponentTypeDescriptor(resolveCollectionElementType());
}
else {
return valueOf(object.getClass());
// TODO: GenericCollectionTypeResolver is not capable of applying nesting levels to array fields;
// this means generic info of nested lists or maps stored inside array method parameters or fields is not obtainable
return createComponentTypeDescriptor(getType().getComponentType());
}
}
/**
* Create a new type descriptor for the given class.
* @param type the class
* @return the type descriptor
*/
public static TypeDescriptor valueOf(Class<?> type) {
if (type == null) {
return TypeDescriptor.NULL;
}
TypeDescriptor desc = typeDescriptorCache.get(type);
return (desc != null ? desc : new TypeDescriptor(type));
private TypeDescriptor resolveMapKeyTypeDescriptor() {
return createComponentTypeDescriptor(resolveMapKeyType());
}
}
private TypeDescriptor resolveMapValueTypeDescriptor() {
return createComponentTypeDescriptor(resolveMapValueType());
}
private TypeDescriptor createComponentTypeDescriptor(Class<?> componentType) {
if (componentType == null) {
componentType = Object.class;
}
if (this.methodParameter != null) {
MethodParameter nested = new MethodParameter(this.methodParameter);
nested.increaseNestingLevel();
return newComponentTypeDescriptor(componentType, nested);
}
else if (this.field != null) {
return new TypeDescriptor(componentType, this.field, this.fieldNestingLevel + 1);
}
else {
return TypeDescriptor.valueOf(componentType);
}
}
private Class<?> resolveCollectionElementType() {
if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getCollectionParameterType(this.methodParameter);
}
else if (this.field != null) {
return GenericCollectionTypeResolver.getCollectionFieldType(this.field, this.fieldNestingLevel);
}
else {
return GenericCollectionTypeResolver.getCollectionType((Class<? extends Collection>) this.type);
}
}
private Class<?> resolveMapKeyType() {
if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getMapKeyParameterType(this.methodParameter);
}
else if (this.field != null) {
return GenericCollectionTypeResolver.getMapKeyFieldType(this.field, this.fieldNestingLevel);
}
else {
return GenericCollectionTypeResolver.getMapKeyType((Class<? extends Map>) this.type);
}
}
private Class<?> resolveMapValueType() {
if (this.methodParameter != null) {
return GenericCollectionTypeResolver.getMapValueParameterType(this.methodParameter);
}
else if (this.field != null) {
return GenericCollectionTypeResolver.getMapValueFieldType(this.field, this.fieldNestingLevel);
}
else {
return GenericCollectionTypeResolver.getMapValueType((Class<? extends Map>) this.type);
}
}
// internal constructors
private TypeDescriptor(Class<?> componentType, Field field, int nestingLevel) {
this.type = componentType;
this.field = field;
this.fieldNestingLevel = nestingLevel;
}
private TypeDescriptor() {
}
private TypeDescriptor(Class<?> type) {
Assert.notNull(type, "Type must not be null");
this.type = type;
}
private TypeDescriptor(Class<?> collectionType, Class<?> elementType) {
this.type = collectionType;
if (elementType == null) {
elementType = Object.class;
}
this.elementType = TypeDescriptor.valueOf(elementType);
}
private TypeDescriptor(Class<?> mapType, Class<?> keyType, Class<?> valueType) {
this.type = mapType;
if (keyType == null) {
keyType = Object.class;
}
if (valueType == null) {
valueType = Object.class;
}
this.mapKeyType = TypeDescriptor.valueOf(keyType);
this.mapValueType = TypeDescriptor.valueOf(valueType);
}
}

View File

@@ -52,7 +52,6 @@ final class ArrayToCollectionConverter implements ConditionalGenericConverter {
return this.conversionService.canConvert(sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor());
}
@SuppressWarnings("unchecked")
public Object convert(Object source, TypeDescriptor sourceType, TypeDescriptor targetType) {
if (source == null) {
return null;
@@ -61,7 +60,7 @@ final class ArrayToCollectionConverter implements ConditionalGenericConverter {
Collection target = CollectionFactory.createCollection(targetType.getType(), length);
for (int i = 0; i < length; i++) {
Object sourceElement = Array.get(source, i);
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor(sourceElement));
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor());
target.add(targetElement);
}
return target;

View File

@@ -60,7 +60,7 @@ final class CollectionToArrayConverter implements ConditionalGenericConverter {
Object array = Array.newInstance(targetType.getElementType(), sourceCollection.size());
int i = 0;
for (Object sourceElement : sourceCollection) {
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(sourceElement), targetType.getElementTypeDescriptor());
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor());
Array.set(array, i++, targetElement);
}
return array;

View File

@@ -52,7 +52,6 @@ final class CollectionToCollectionConverter implements ConditionalGenericConvert
return this.conversionService.canConvert(sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor());
}
@SuppressWarnings("unchecked")
public Object convert(Object source, TypeDescriptor sourceType, TypeDescriptor targetType) {
if (source == null) {
return null;
@@ -63,9 +62,7 @@ final class CollectionToCollectionConverter implements ConditionalGenericConvert
}
Collection target = CollectionFactory.createCollection(targetType.getType(), sourceCollection.size());
for (Object sourceElement : sourceCollection) {
Object targetElement = this.conversionService.convert(sourceElement,
sourceType.getElementTypeDescriptor(sourceElement),
targetType.getElementTypeDescriptor(sourceElement));
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(), targetType.getElementTypeDescriptor());
target.add(targetElement);
}
return target;

View File

@@ -55,7 +55,7 @@ final class CollectionToObjectConverter implements ConditionalGenericConverter {
return null;
}
Object firstElement = sourceCollection.iterator().next();
return this.conversionService.convert(firstElement, sourceType.getElementTypeDescriptor(firstElement), targetType);
return this.conversionService.convert(firstElement, sourceType.getElementTypeDescriptor(), targetType);
}
}

View File

@@ -62,8 +62,7 @@ final class CollectionToStringConverter implements ConditionalGenericConverter {
if (i > 0) {
string.append(DELIMITER);
}
Object targetElement = this.conversionService.convert(
sourceElement, sourceType.getElementTypeDescriptor(sourceElement), targetType);
Object targetElement = this.conversionService.convert(sourceElement, sourceType.getElementTypeDescriptor(), targetType);
string.append(targetElement);
i++;
}

View File

@@ -67,12 +67,8 @@ final class MapToMapConverter implements ConditionalGenericConverter {
Map.Entry sourceMapEntry = (Map.Entry) entry;
Object sourceKey = sourceMapEntry.getKey();
Object sourceValue = sourceMapEntry.getValue();
Object targetKey = this.conversionService.convert(sourceKey,
sourceType.getMapKeyTypeDescriptor(sourceKey),
targetType.getMapKeyTypeDescriptor(sourceKey));
Object targetValue = this.conversionService.convert(sourceValue,
sourceType.getMapValueTypeDescriptor(sourceValue),
targetType.getMapValueTypeDescriptor(sourceValue));
Object targetKey = this.conversionService.convert(sourceKey, sourceType.getMapKeyTypeDescriptor(), targetType.getMapKeyTypeDescriptor());
Object targetValue = this.conversionService.convert(sourceValue, sourceType.getMapValueTypeDescriptor(), targetType.getMapValueTypeDescriptor());
targetMap.put(targetKey, targetValue);
}
return targetMap;

View File

@@ -49,13 +49,12 @@ final class ObjectToCollectionConverter implements ConditionalGenericConverter {
return this.conversionService.canConvert(sourceType, targetType.getElementTypeDescriptor());
}
@SuppressWarnings("unchecked")
public Object convert(Object source, TypeDescriptor sourceType, TypeDescriptor targetType) {
if (source == null) {
return null;
}
Collection target = CollectionFactory.createCollection(targetType.getType(), 1);
TypeDescriptor elementType = targetType.getElementTypeDescriptor(source);
TypeDescriptor elementType = targetType.getElementTypeDescriptor();
// Avoid potential recursion...
if (!Collection.class.isAssignableFrom(elementType.getType())) {
target.add(this.conversionService.convert(source, sourceType, elementType));

View File

@@ -40,31 +40,21 @@ public class PropertyTypeDescriptor extends TypeDescriptor {
private final PropertyDescriptor propertyDescriptor;
private Annotation[] cachedAnnotations;
/**
* Create a new BeanTypeDescriptor for the given bean property.
* @param propertyDescriptor the corresponding JavaBean PropertyDescriptor
* @param methodParameter the target method parameter
*/
public PropertyTypeDescriptor(PropertyDescriptor propertyDescriptor, MethodParameter methodParameter) {
public PropertyTypeDescriptor(MethodParameter methodParameter, PropertyDescriptor propertyDescriptor) {
super(methodParameter);
this.propertyDescriptor = propertyDescriptor;
}
/**
* Create a new BeanTypeDescriptor for the given bean property.
* @param propertyDescriptor the corresponding JavaBean PropertyDescriptor
* @param methodParameter the target method parameter
* @param type the specific type to expose (may be an array/collection element)
*/
public PropertyTypeDescriptor(PropertyDescriptor propertyDescriptor, MethodParameter methodParameter, Class<?> type) {
super(methodParameter, type);
public PropertyTypeDescriptor(Class<?> componentType, MethodParameter methodParameter, PropertyDescriptor propertyDescriptor) {
super(componentType, methodParameter);
this.propertyDescriptor = propertyDescriptor;
}
/**
* Return the underlying PropertyDescriptor.
*/
@@ -72,58 +62,48 @@ public class PropertyTypeDescriptor extends TypeDescriptor {
return this.propertyDescriptor;
}
public Annotation[] getAnnotations() {
Annotation[] anns = this.cachedAnnotations;
if (anns == null) {
Map<Class<?>, Annotation> annMap = new LinkedHashMap<Class<?>, Annotation>();
String name = this.propertyDescriptor.getName();
if (StringUtils.hasLength(name)) {
Class<?> clazz = getMethodParameter().getMethod().getDeclaringClass();
Field field = ReflectionUtils.findField(clazz, name);
protected Annotation[] resolveAnnotations() {
Map<Class<?>, Annotation> annMap = new LinkedHashMap<Class<?>, Annotation>();
String name = this.propertyDescriptor.getName();
if (StringUtils.hasLength(name)) {
Class<?> clazz = getMethodParameter().getMethod().getDeclaringClass();
Field field = ReflectionUtils.findField(clazz, name);
if (field == null) {
// Same lenient fallback checking as in CachedIntrospectionResults...
field = ReflectionUtils.findField(clazz, name.substring(0, 1).toLowerCase() + name.substring(1));
if (field == null) {
// Same lenient fallback checking as in CachedIntrospectionResults...
field = ReflectionUtils.findField(clazz, name.substring(0, 1).toLowerCase() + name.substring(1));
if (field == null) {
field = ReflectionUtils.findField(clazz, name.substring(0, 1).toUpperCase() + name.substring(1));
}
}
if (field != null) {
for (Annotation ann : field.getAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
field = ReflectionUtils.findField(clazz, name.substring(0, 1).toUpperCase() + name.substring(1));
}
}
Method writeMethod = this.propertyDescriptor.getWriteMethod();
Method readMethod = this.propertyDescriptor.getReadMethod();
if (writeMethod != null && writeMethod != getMethodParameter().getMethod()) {
for (Annotation ann : writeMethod.getAnnotations()) {
if (field != null) {
for (Annotation ann : field.getAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
}
if (readMethod != null && readMethod != getMethodParameter().getMethod()) {
for (Annotation ann : readMethod.getAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
}
for (Annotation ann : getMethodParameter().getMethodAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
for (Annotation ann : getMethodParameter().getParameterAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
anns = annMap.values().toArray(new Annotation[annMap.size()]);
this.cachedAnnotations = anns;
}
return anns;
Method writeMethod = this.propertyDescriptor.getWriteMethod();
Method readMethod = this.propertyDescriptor.getReadMethod();
if (writeMethod != null && writeMethod != getMethodParameter().getMethod()) {
for (Annotation ann : writeMethod.getAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
}
if (readMethod != null && readMethod != getMethodParameter().getMethod()) {
for (Annotation ann : readMethod.getAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
}
for (Annotation ann : getMethodParameter().getMethodAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
for (Annotation ann : getMethodParameter().getParameterAnnotations()) {
annMap.put(ann.annotationType(), ann);
}
return annMap.values().toArray(new Annotation[annMap.size()]);
}
public TypeDescriptor forElementType(Class<?> elementType) {
if (elementType != null) {
return new PropertyTypeDescriptor(this.propertyDescriptor, getMethodParameter(), elementType);
}
else {
return super.forElementType(null);
}
public TypeDescriptor newComponentTypeDescriptor(Class<?> componentType, MethodParameter nested) {
return new PropertyTypeDescriptor(componentType, nested, this.propertyDescriptor);
}
}

View File

@@ -48,7 +48,6 @@ final class StringToCollectionConverter implements ConditionalGenericConverter {
return this.conversionService.canConvert(sourceType, targetType.getElementTypeDescriptor());
}
@SuppressWarnings("unchecked")
public Object convert(Object source, TypeDescriptor sourceType, TypeDescriptor targetType) {
if (source == null) {
return null;
@@ -57,8 +56,7 @@ final class StringToCollectionConverter implements ConditionalGenericConverter {
String[] fields = StringUtils.commaDelimitedListToStringArray(string);
Collection target = CollectionFactory.createCollection(targetType.getType(), fields.length);
for (String sourceElement : fields) {
Object targetElement = this.conversionService.convert(sourceElement.trim(),
sourceType, targetType.getElementTypeDescriptor(sourceElement));
Object targetElement = this.conversionService.convert(sourceElement.trim(), sourceType, targetType.getElementTypeDescriptor());
target.add(targetElement);
}
return target;