public class TypeUtils extends Object
Modifier and Type | Class and Description |
---|---|
static class |
TypeUtils.WildcardTypeBuilder
WildcardType builder. |
Modifier and Type | Field and Description |
---|---|
static WildcardType |
WILDCARD_ALL
A wildcard instance matching
? . |
Constructor and Description |
---|
TypeUtils()
TypeUtils instances should NOT be constructed in standard
programming. |
Modifier and Type | Method and Description |
---|---|
static boolean |
containsTypeVariables(Type type)
Tests, recursively, whether any of the type parameters associated with
type are bound to variables. |
static Map<TypeVariable<?>,Type> |
determineTypeArguments(Class<?> cls,
ParameterizedType superParameterizedType)
Tries to determine the type arguments of a class/interface based on a
super parameterized type's type arguments.
|
static boolean |
equals(Type type1,
Type type2)
Tests equality of types.
|
static GenericArrayType |
genericArrayType(Type componentType)
Creates a generic array type instance.
|
static Type |
getArrayComponentType(Type type)
Gets the array component type of
type . |
static Type[] |
getImplicitBounds(TypeVariable<?> typeVariable)
Gets an array containing the sole type of
Object if
TypeVariable.getBounds() returns an empty array. |
static Type[] |
getImplicitLowerBounds(WildcardType wildcardType)
Gets an array containing a single value of
null if
WildcardType.getLowerBounds() returns an empty array. |
static Type[] |
getImplicitUpperBounds(WildcardType wildcardType)
Gets an array containing the sole value of
Object if
WildcardType.getUpperBounds() returns an empty array. |
static Class<?> |
getRawType(Type type,
Type assigningType)
Gets the raw type of a Java type, given its context.
|
static Map<TypeVariable<?>,Type> |
getTypeArguments(ParameterizedType type)
Gets all the type arguments for this parameterized type
including owner hierarchy arguments such as
Outer<K, V>.Inner<T>.DeepInner<E> . |
static Map<TypeVariable<?>,Type> |
getTypeArguments(Type type,
Class<?> toClass)
Gets the type arguments of a class/interface based on a subtype.
|
static boolean |
isArrayType(Type type)
Tests whether the specified type denotes an array type.
|
static boolean |
isAssignable(Type type,
Type toType)
Tests if the subject type may be implicitly cast to the target type
following the Java generics rules.
|
static boolean |
isInstance(Object value,
Type type)
Tests if the given value can be assigned to the target type
following the Java generics rules.
|
static Type[] |
normalizeUpperBounds(Type[] bounds)
Strips out the redundant upper bound types in type
variable types and wildcard types (or it would with wildcard types if
multiple upper bounds were allowed).
|
static ParameterizedType |
parameterize(Class<?> rawClass,
Map<TypeVariable<?>,Type> typeVariableMap)
Creates a parameterized type instance.
|
static ParameterizedType |
parameterize(Class<?> rawClass,
Type... typeArguments)
Creates a parameterized type instance.
|
static ParameterizedType |
parameterizeWithOwner(Type owner,
Class<?> rawClass,
Map<TypeVariable<?>,Type> typeVariableMap)
Creates a parameterized type instance.
|
static ParameterizedType |
parameterizeWithOwner(Type owner,
Class<?> rawClass,
Type... typeArguments)
Creates a parameterized type instance.
|
static String |
toLongString(TypeVariable<?> typeVariable)
Formats a
TypeVariable including its GenericDeclaration . |
static String |
toString(Type type)
Formats a given type as a Java-esque String.
|
static boolean |
typesSatisfyVariables(Map<TypeVariable<?>,Type> typeVariableMap)
Determines whether or not specified types satisfy the bounds of their
mapped type variables.
|
static Type |
unrollVariables(Map<TypeVariable<?>,Type> typeArguments,
Type type)
Gets a type representing
type with variable assignments "unrolled." |
static TypeUtils.WildcardTypeBuilder |
wildcardType()
Gets a
TypeUtils.WildcardTypeBuilder . |
static <T> Typed<T> |
wrap(Class<T> type)
|
static <T> Typed<T> |
wrap(Type type)
|
public static final WildcardType WILDCARD_ALL
?
.public TypeUtils()
TypeUtils
instances should NOT be constructed in standard
programming. Instead, the class should be used as
TypeUtils.isAssignable(cls, toClass)
.
This constructor is public to permit tools that require a JavaBean instance to operate.
public static boolean containsTypeVariables(Type type)
type
are bound to variables.type
- the type to check for type variablespublic static Map<TypeVariable<?>,Type> determineTypeArguments(Class<?> cls, ParameterizedType superParameterizedType)
getTypeArguments(Type, Class)
which gets a class/interface's
type arguments based on a subtype. It is far more limited in determining
the type arguments for the subject class's type variables in that it can
only determine those parameters that map from the subject Class
object to the supertype.
Example: TreeSet
sets its parameter as the parameter for
NavigableSet
, which in turn sets the
parameter of SortedSet
, which in turn sets the
parameter of Set
, which in turn sets the parameter of
Collection
, which in turn sets the parameter of
Iterable
. Since TreeSet
's parameter maps
(indirectly) to Iterable
's parameter, it will be able to
determine that based on the super type Iterable<? extends
Map<Integer, ? extends Collection<?>>>
, the parameter of
TreeSet
is ? extends Map<Integer, ? extends
Collection<?>>
.
cls
- the class whose type parameters are to be determined, not null
superParameterizedType
- the super type from which cls
's type
arguments are to be determined, not null
Map
of the type assignments that could be determined
for the type variables in each type in the inheritance hierarchy from
type
to toClass
inclusive.public static boolean equals(Type type1, Type type2)
type1
- the first typetype2
- the second typepublic static GenericArrayType genericArrayType(Type componentType)
componentType
- the type of the elements of the array. For example the component type of boolean[]
is boolean
GenericArrayType
public static Type getArrayComponentType(Type type)
type
.type
- the type to be checkedpublic static Type[] getImplicitBounds(TypeVariable<?> typeVariable)
Object
if
TypeVariable.getBounds()
returns an empty array. Otherwise, it
returns the result of TypeVariable.getBounds()
passed into
normalizeUpperBounds(java.lang.reflect.Type[])
.typeVariable
- the subject type variable, not null
public static Type[] getImplicitLowerBounds(WildcardType wildcardType)
null
if
WildcardType.getLowerBounds()
returns an empty array. Otherwise,
it returns the result of WildcardType.getLowerBounds()
.wildcardType
- the subject wildcard type, not null
public static Type[] getImplicitUpperBounds(WildcardType wildcardType)
Object
if
WildcardType.getUpperBounds()
returns an empty array. Otherwise,
it returns the result of WildcardType.getUpperBounds()
passed into normalizeUpperBounds(java.lang.reflect.Type[])
.wildcardType
- the subject wildcard type, not null
public static Class<?> getRawType(Type type, Type assigningType)
TypeVariable
s and GenericArrayType
s, or when you do
not know the runtime type of type
: if you know you have a
Class
instance, it is already raw; if you know you have a
ParameterizedType
, its raw type is only a method call away.type
- to resolveassigningType
- type to be resolved againstClass
object or null
if
the type could not be resolvedpublic static Map<TypeVariable<?>,Type> getTypeArguments(ParameterizedType type)
Outer<K, V>.Inner<T>.DeepInner<E>
.
The arguments are returned in a
Map
specifying the argument type for each TypeVariable
.type
- specifies the subject parameterized type from which to
harvest the parameters.Map
of the type arguments to their respective type
variables.public static Map<TypeVariable<?>,Type> getTypeArguments(Type type, Class<?> toClass)
Map
are Object
for the subtype
Properties
even though the subtype does not
directly implement the Map
interface.
This method returns null
if type
is not assignable to
toClass
. It returns an empty map if none of the classes or
interfaces in its inheritance hierarchy specify any type arguments.
A side effect of this method is that it also retrieves the type
arguments for the classes and interfaces that are part of the hierarchy
between type
and toClass
. So with the above
example, this method will also determine that the type arguments for
Hashtable
are also both Object
.
In cases where the interface specified by toClass
is
(indirectly) implemented more than once (e.g. where toClass
specifies the interface Iterable
and
type
specifies a parameterized type that implements both
Set
and Collection
),
this method will look at the inheritance hierarchy of only one of the
implementations/subclasses; the first interface encountered that isn't a
subinterface to one of the others in the type
to
toClass
hierarchy.
type
- the type from which to determine the type parameters of
toClass
toClass
- the class whose type parameters are to be determined based
on the subtype type
Map
of the type assignments for the type variables in
each type in the inheritance hierarchy from type
to
toClass
inclusive.public static boolean isArrayType(Type type)
type
- the type to be checkedtrue
if type
is an array class or a GenericArrayType
.public static boolean isAssignable(Type type, Type toType)
Class
objects, the method returns the result of
ClassUtils.isAssignable(Class, Class)
.type
- the subject type to be assigned to the target typetoType
- the target typetrue
if type
is assignable to toType
.public static boolean isInstance(Object value, Type type)
value
- the value to be checkedtype
- the target typetrue
if value
is an instance of type
.public static Type[] normalizeUpperBounds(Type[] bounds)
Example, with the variable type declaration:
<K extends java.util.Collection<String> & java.util.List<String>>
since List
is a subinterface of Collection
,
this method will return the bounds as if the declaration had been:
<K extends java.util.List<String>>
bounds
- an array of types representing the upper bounds of either
WildcardType
or TypeVariable
, not null
.bounds
minus the
redundant types.public static final ParameterizedType parameterize(Class<?> rawClass, Map<TypeVariable<?>,Type> typeVariableMap)
rawClass
- the raw class to create a parameterized type instance fortypeVariableMap
- the map used for parameterizationParameterizedType
public static final ParameterizedType parameterize(Class<?> rawClass, Type... typeArguments)
rawClass
- the raw class to create a parameterized type instance fortypeArguments
- the types used for parameterizationParameterizedType
public static final ParameterizedType parameterizeWithOwner(Type owner, Class<?> rawClass, Map<TypeVariable<?>,Type> typeVariableMap)
owner
- the owning typerawClass
- the raw class to create a parameterized type instance fortypeVariableMap
- the map used for parameterizationParameterizedType
public static final ParameterizedType parameterizeWithOwner(Type owner, Class<?> rawClass, Type... typeArguments)
owner
- the owning typerawClass
- the raw class to create a parameterized type instance fortypeArguments
- the types used for parameterizationParameterizedType
public static String toLongString(TypeVariable<?> typeVariable)
TypeVariable
including its GenericDeclaration
.typeVariable
- the type variable to create a String representation for, not null
public static String toString(Type type)
type
- the type to create a String representation for, not null
public static boolean typesSatisfyVariables(Map<TypeVariable<?>,Type> typeVariableMap)
<T, S extends T>
), uses another as a type parameter (such as
<T, S extends Comparable>>
), or otherwise depends on
another type variable to be specified, the dependencies must be included
in typeVarAssigns
.typeVariableMap
- specifies the potential types to be assigned to the
type variables, not null
.public static Type unrollVariables(Map<TypeVariable<?>,Type> typeArguments, Type type)
type
with variable assignments "unrolled."typeArguments
- as from getTypeArguments(Type, Class)
type
- the type to unroll variable assignments forpublic static TypeUtils.WildcardTypeBuilder wildcardType()
TypeUtils.WildcardTypeBuilder
.TypeUtils.WildcardTypeBuilder
public static <T> Typed<T> wrap(Class<T> type)
T
- generic typetype
- to wrapCopyright © 2001–2021 The Apache Software Foundation. All rights reserved.