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JPMS Module-Info's for a few of the Jakarta Libraries just until they add them in themselves
/*
* Hibernate, Relational Persistence for Idiomatic Java
*
* License: GNU Lesser General Public License (LGPL), version 2.1 or later.
* See the lgpl.txt file in the root directory or .
*/
package org.hibernate.metamodel.internal;
import java.lang.reflect.Field;
import java.util.ArrayList;
import java.util.Collections;
import java.util.HashMap;
import java.util.HashSet;
import java.util.Iterator;
import java.util.List;
import java.util.Map;
import java.util.Set;
import jakarta.persistence.metamodel.Attribute;
import jakarta.persistence.metamodel.IdentifiableType;
import jakarta.persistence.metamodel.MappedSuperclassType;
import jakarta.persistence.metamodel.SingularAttribute;
import jakarta.persistence.metamodel.Type;
import org.hibernate.AssertionFailure;
import org.hibernate.engine.spi.SessionFactoryImplementor;
import org.hibernate.internal.EntityManagerMessageLogger;
import org.hibernate.internal.HEMLogging;
import org.hibernate.internal.util.ReflectHelper;
import org.hibernate.internal.util.collections.CollectionHelper;
import org.hibernate.mapping.Component;
import org.hibernate.mapping.KeyValue;
import org.hibernate.mapping.MappedSuperclass;
import org.hibernate.mapping.PersistentClass;
import org.hibernate.mapping.Property;
import org.hibernate.metamodel.model.domain.internal.AbstractIdentifiableType;
import org.hibernate.metamodel.model.domain.internal.EntityTypeImpl;
import org.hibernate.metamodel.model.domain.internal.MappedSuperclassTypeImpl;
import org.hibernate.metamodel.model.domain.spi.PersistentAttributeDescriptor;
import org.hibernate.metamodel.model.domain.spi.EmbeddedTypeDescriptor;
import org.hibernate.metamodel.model.domain.spi.EntityTypeDescriptor;
import org.hibernate.metamodel.model.domain.spi.IdentifiableTypeDescriptor;
import org.hibernate.metamodel.model.domain.spi.ManagedTypeDescriptor;
import org.hibernate.metamodel.model.domain.spi.MappedSuperclassTypeDescriptor;
import org.hibernate.metamodel.model.domain.spi.SingularPersistentAttribute;
/**
* Defines a context for storing information during the building of the {@link MetamodelImpl}.
*
* This contextual information includes data needing to be processed in a second pass as well as
* cross-references into the built metamodel classes.
*
* At the end of the day, clients are interested in the {@link #getEntityTypeMap} and {@link #getEmbeddableTypeSet}
* results, which represent all the registered {@linkplain #registerEntityType entities} and
* {@linkplain #registerEmbeddedableType embeddables} respectively.
*
* @author Steve Ebersole
* @author Emmanuel Bernard
*/
class MetadataContext {
private static final EntityManagerMessageLogger LOG = HEMLogging.messageLogger( MetadataContext.class );
private final SessionFactoryImplementor sessionFactory;
private Set knownMappedSuperclasses;
private final boolean ignoreUnsupported;
private final AttributeFactory attributeFactory = new AttributeFactory( this );
private Map, EntityTypeDescriptor>> entityTypes = new HashMap<>();
private Map> entityTypesByEntityName = new HashMap<>();
private Map> entityTypesByPersistentClass = new HashMap<>();
private Set> embeddables = new HashSet<>();
private Map> mappedSuperclassByMappedSuperclassMapping = new HashMap<>();
private Map, PersistentClass> mappedSuperClassTypeToPersistentClass = new HashMap<>();
//this list contains MappedSuperclass and EntityTypes ordered by superclass first
private List orderedMappings = new ArrayList<>();
/**
* Stack of PersistentClass being processed. Last in the list is the highest in the stack.
*/
private List stackOfPersistentClassesBeingProcessed = new ArrayList<>();
public MetadataContext(
SessionFactoryImplementor sessionFactory,
Set mappedSuperclasses,
JpaMetaModelPopulationSetting jpaMetaModelPopulationSetting) {
this.sessionFactory = sessionFactory;
this.knownMappedSuperclasses = mappedSuperclasses;
this.ignoreUnsupported = jpaMetaModelPopulationSetting == JpaMetaModelPopulationSetting.IGNORE_UNSUPPORTED;
}
/*package*/ SessionFactoryImplementor getSessionFactory() {
return sessionFactory;
}
/*package*/ boolean isIgnoreUnsupported() {
return ignoreUnsupported;
}
/**
* Retrieves the {@linkplain Class java type} to {@link EntityTypeImpl} map.
*
* @return The {@linkplain Class java type} to {@link EntityTypeImpl} map.
*/
public Map, EntityTypeDescriptor>> getEntityTypeMap() {
return Collections.unmodifiableMap( entityTypes );
}
public Set> getEmbeddableTypeSet() {
return Collections.unmodifiableSet( embeddables );
}
public Map, MappedSuperclassType>> getMappedSuperclassTypeMap() {
// we need to actually build this map...
final Map, MappedSuperclassType>> mappedSuperClassTypeMap = CollectionHelper.mapOfSize(
mappedSuperclassByMappedSuperclassMapping.size()
);
for ( MappedSuperclassTypeDescriptor mappedSuperclassType : mappedSuperclassByMappedSuperclassMapping.values() ) {
mappedSuperClassTypeMap.put(
mappedSuperclassType.getJavaType(),
mappedSuperclassType
);
}
return mappedSuperClassTypeMap;
}
/*package*/ void registerEntityType(PersistentClass persistentClass, EntityTypeImpl> entityType) {
if ( ignoreUnsupported && entityType.getBindableJavaType() == null ) {
return;
}
if ( entityType.getBindableJavaType() != null ) {
entityTypes.put( entityType.getBindableJavaType(), entityType );
}
entityTypesByEntityName.put( persistentClass.getEntityName(), entityType );
entityTypesByPersistentClass.put( persistentClass, entityType );
orderedMappings.add( persistentClass );
}
/*package*/ void registerEmbeddedableType(EmbeddedTypeDescriptor> embeddableType) {
if ( !( ignoreUnsupported && embeddableType.getParent().getJavaType() == null ) ) {
embeddables.add( embeddableType );
}
}
/*package*/ void registerMappedSuperclassType(
MappedSuperclass mappedSuperclass,
MappedSuperclassTypeDescriptor> mappedSuperclassType) {
mappedSuperclassByMappedSuperclassMapping.put( mappedSuperclass, mappedSuperclassType );
orderedMappings.add( mappedSuperclass );
mappedSuperClassTypeToPersistentClass.put( mappedSuperclassType, getEntityWorkedOn() );
knownMappedSuperclasses.remove( mappedSuperclass );
}
/**
* Given a Hibernate {@link PersistentClass}, locate the corresponding JPA {@link org.hibernate.type.EntityType}
* implementation. May return null if the given {@link PersistentClass} has not yet been processed.
*
* @param persistentClass The Hibernate (config time) metamodel instance representing an entity.
*
* @return Tne corresponding JPA {@link org.hibernate.type.EntityType}, or null if not yet processed.
*/
public EntityTypeDescriptor> locateEntityType(PersistentClass persistentClass) {
return entityTypesByPersistentClass.get( persistentClass );
}
/**
* Given a Java {@link Class}, locate the corresponding JPA {@link org.hibernate.type.EntityType}. May
* return null which could mean that no such mapping exists at least at this time.
*
* @param javaType The java class.
*
* @return The corresponding JPA {@link org.hibernate.type.EntityType}, or null.
*/
public EntityTypeDescriptor> locateEntityType(Class> javaType) {
return entityTypes.get( javaType );
}
/**
* Given an entity-name, locate the corresponding JPA {@link org.hibernate.type.EntityType}. May
* return null which could means that no such mapping exists at least at this time.
*
* @param entityName The entity-name.
*
* @return The corresponding JPA {@link org.hibernate.type.EntityType}, or null.
*/
@SuppressWarnings({"unchecked"})
public EntityTypeDescriptor locateEntityType(String entityName) {
return (EntityTypeDescriptor) entityTypesByEntityName.get( entityName );
}
public Map> getEntityTypesByEntityName() {
return Collections.unmodifiableMap( entityTypesByEntityName );
}
@SuppressWarnings({"unchecked"})
public void wrapUp() {
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Wrapping up metadata context..." );
}
boolean staticMetamodelScanEnabled = JpaStaticMetaModelPopulationSetting
.determineJpaMetaModelPopulationSetting( sessionFactory.getProperties() ) != JpaStaticMetaModelPopulationSetting.DISABLED;
//we need to process types from superclasses to subclasses
for ( Object mapping : orderedMappings ) {
if ( PersistentClass.class.isAssignableFrom( mapping.getClass() ) ) {
@SuppressWarnings("unchecked")
final PersistentClass safeMapping = (PersistentClass) mapping;
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Starting entity [" + safeMapping.getEntityName() + ']' );
}
try {
final EntityTypeDescriptor> jpaMapping = entityTypesByPersistentClass.get( safeMapping );
applyIdMetadata( safeMapping, jpaMapping );
applyVersionAttribute( safeMapping, jpaMapping );
Iterator properties = safeMapping.getDeclaredPropertyIterator();
while ( properties.hasNext() ) {
final Property property = properties.next();
if ( property.getValue() == safeMapping.getIdentifierMapper() ) {
// property represents special handling for id-class mappings but we have already
// accounted for the embedded property mappings in #applyIdMetadata &&
// #buildIdClassAttributes
continue;
}
if ( safeMapping.isVersioned() && property == safeMapping.getVersion() ) {
// skip the version property, it was already handled previously.
continue;
}
final PersistentAttributeDescriptor attribute = attributeFactory.buildAttribute( jpaMapping, property );
if ( attribute != null ) {
jpaMapping.getInFlightAccess().addAttribute( attribute );
}
}
jpaMapping.getInFlightAccess().finishUp();
if ( staticMetamodelScanEnabled ) {
populateStaticMetamodel( jpaMapping );
}
}
finally {
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Completed entity [" + safeMapping.getEntityName() + ']' );
}
}
}
else if ( MappedSuperclass.class.isAssignableFrom( mapping.getClass() ) ) {
@SuppressWarnings("unchecked")
final MappedSuperclass safeMapping = (MappedSuperclass) mapping;
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Starting mapped superclass [" + safeMapping.getMappedClass().getName() + ']' );
}
try {
final MappedSuperclassTypeDescriptor> jpaType = mappedSuperclassByMappedSuperclassMapping.get( safeMapping );
applyIdMetadata( safeMapping, jpaType );
applyVersionAttribute( safeMapping, jpaType );
Iterator properties = safeMapping.getDeclaredPropertyIterator();
while ( properties.hasNext() ) {
final Property property = properties.next();
if ( safeMapping.isVersioned() && property == safeMapping.getVersion() ) {
// skip the version property, it was already handled previously.
continue;
}
final PersistentAttributeDescriptor attribute = attributeFactory.buildAttribute( jpaType, property );
if ( attribute != null ) {
jpaType.getInFlightAccess().addAttribute( attribute );
}
}
jpaType.getInFlightAccess().finishUp();
if ( staticMetamodelScanEnabled ) {
populateStaticMetamodel( jpaType );
}
}
finally {
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Completed mapped superclass [" + safeMapping.getMappedClass().getName() + ']' );
}
}
}
else {
throw new AssertionFailure( "Unexpected mapping type: " + mapping.getClass() );
}
}
if ( staticMetamodelScanEnabled ) {
for ( EmbeddedTypeDescriptor embeddable : embeddables ) {
populateStaticMetamodel( embeddable );
}
}
}
@SuppressWarnings("unchecked")
private void applyIdMetadata(PersistentClass persistentClass, IdentifiableTypeDescriptor> identifiableType) {
if ( persistentClass.hasIdentifierProperty() ) {
final Property declaredIdentifierProperty = persistentClass.getDeclaredIdentifierProperty();
if ( declaredIdentifierProperty != null ) {
identifiableType.getInFlightAccess().applyIdAttribute(
(SingularPersistentAttribute) attributeFactory.buildIdAttribute( identifiableType, declaredIdentifierProperty )
);
}
}
else if ( persistentClass.hasIdentifierMapper() ) {
@SuppressWarnings("unchecked")
Iterator propertyIterator = persistentClass.getIdentifierMapper().getPropertyIterator();
identifiableType.getInFlightAccess().applyIdClassAttributes(
(Set) buildIdClassAttributes( identifiableType, propertyIterator )
);
}
else {
final KeyValue value = persistentClass.getIdentifier();
if ( value instanceof Component ) {
final Component component = (Component) value;
if ( component.getPropertySpan() > 1 ) {
//FIXME we are dealing with a Hibernate embedded id (ie not type)
}
else {
//FIXME take care of declared vs non declared property
identifiableType.getInFlightAccess().applyIdAttribute(
(SingularPersistentAttribute) attributeFactory.buildIdAttribute(
identifiableType,
(Property) component.getPropertyIterator().next()
)
);
}
}
}
}
private void applyIdMetadata(MappedSuperclass mappingType, MappedSuperclassTypeDescriptor jpaMappingType) {
if ( mappingType.hasIdentifierProperty() ) {
final Property declaredIdentifierProperty = mappingType.getDeclaredIdentifierProperty();
if ( declaredIdentifierProperty != null ) {
jpaMappingType.getInFlightAccess().applyIdAttribute(
attributeFactory.buildIdAttribute( jpaMappingType, declaredIdentifierProperty )
);
}
}
//a MappedSuperclass can have no identifier if the id is set below in the hierarchy
else if ( mappingType.getIdentifierMapper() != null ) {
@SuppressWarnings("unchecked")
Iterator propertyIterator = mappingType.getIdentifierMapper().getPropertyIterator();
Set> attributes = buildIdClassAttributes(
jpaMappingType,
propertyIterator
);
jpaMappingType.getInFlightAccess().applyIdClassAttributes( attributes );
}
}
private void applyVersionAttribute(PersistentClass persistentClass, EntityTypeDescriptor jpaEntityType) {
final Property declaredVersion = persistentClass.getDeclaredVersion();
if ( declaredVersion != null ) {
jpaEntityType.getInFlightAccess().applyVersionAttribute(
attributeFactory.buildVersionAttribute( jpaEntityType, declaredVersion )
);
}
}
private void applyVersionAttribute(MappedSuperclass mappingType, MappedSuperclassTypeDescriptor jpaMappingType) {
final Property declaredVersion = mappingType.getDeclaredVersion();
if ( declaredVersion != null ) {
jpaMappingType.getInFlightAccess().applyVersionAttribute(
attributeFactory.buildVersionAttribute( jpaMappingType, declaredVersion )
);
}
}
private Set> buildIdClassAttributes(
IdentifiableTypeDescriptor ownerType,
Iterator propertyIterator) {
if ( LOG.isTraceEnabled() ) {
LOG.trace( "Building old-school composite identifier [" + ownerType.getJavaType().getName() + ']' );
}
Set> attributes = new HashSet<>();
while ( propertyIterator.hasNext() ) {
attributes.add( attributeFactory.buildIdAttribute( ownerType, propertyIterator.next() ) );
}
return attributes;
}
private void populateStaticMetamodel(ManagedTypeDescriptor managedType) {
final Class managedTypeClass = managedType.getJavaType();
if ( managedTypeClass == null ) {
// should indicate MAP entity mode, skip...
return;
}
final String metamodelClassName = managedTypeClass.getName() + '_';
try {
final Class metamodelClass = Class.forName( metamodelClassName, true, managedTypeClass.getClassLoader() );
// we found the class; so populate it...
registerAttributes( metamodelClass, managedType );
}
catch (ClassNotFoundException ignore) {
// nothing to do...
}
// todo : this does not account for @MappedSuperclass, mainly because this is not being tracked in our
// internal metamodel as populated from the annotations properly
ManagedTypeDescriptor super X> superType = managedType.getSuperType();
if ( superType != null ) {
populateStaticMetamodel( superType );
}
}
private final Set processedMetamodelClasses = new HashSet();
private void registerAttributes(Class metamodelClass, ManagedTypeDescriptor managedType) {
if ( !processedMetamodelClasses.add( metamodelClass ) ) {
return;
}
// push the attributes on to the metamodel class...
for ( Attribute attribute : managedType.getDeclaredAttributes() ) {
registerAttribute( metamodelClass, attribute );
}
if ( IdentifiableType.class.isInstance( managedType ) ) {
final AbstractIdentifiableType entityType = (AbstractIdentifiableType) managedType;
// handle version
if ( entityType.hasDeclaredVersionAttribute() ) {
registerAttribute( metamodelClass, entityType.getDeclaredVersion() );
}
// handle id-class mappings specially
if ( entityType.hasIdClass() ) {
final Set> attributes = entityType.getIdClassAttributesSafely();
if ( attributes != null ) {
for ( SingularAttribute super X, ?> attribute : attributes ) {
registerAttribute( metamodelClass, attribute );
}
}
}
}
}
private void registerAttribute(Class metamodelClass, Attribute attribute) {
final String name = attribute.getName();
try {
// there is a shortcoming in the existing Hibernate code in terms of the way MappedSuperclass
// support was bolted on which comes to bear right here when the attribute is an embeddable type
// defined on a MappedSuperclass. We do not have the correct information to determine the
// appropriate attribute declarer in such cases and so the incoming metamodelClass most likely
// does not represent the declarer in such cases.
//
// As a result, in the case of embeddable classes we simply use getField rather than
// getDeclaredField
final boolean allowNonDeclaredFieldReference =
attribute.getPersistentAttributeType() == Attribute.PersistentAttributeType.EMBEDDED
|| attribute.getDeclaringType().getPersistenceType() == Type.PersistenceType.EMBEDDABLE;
final Field field = allowNonDeclaredFieldReference
? metamodelClass.getField( name )
: metamodelClass.getDeclaredField( name );
try {
// should be public anyway, but to be sure...
ReflectHelper.ensureAccessibility( field );
field.set( null, attribute );
}
catch (IllegalAccessException e) {
// todo : exception type?
throw new AssertionFailure(
"Unable to inject static metamodel attribute : " + metamodelClass.getName() + '#' + name,
e
);
}
catch (IllegalArgumentException e) {
// most likely a mismatch in the type we are injecting and the defined field; this represents a
// mismatch in how the annotation processor interpreted the attribute and how our metamodel
// and/or annotation binder did.
// This is particularly the case as arrays are nto handled propery by the StaticMetamodel generator
// throw new AssertionFailure(
// "Illegal argument on static metamodel field injection : " + metamodelClass.getName() + '#' + name
// + "; expected type : " + attribute.getClass().getName()
// + "; encountered type : " + field.getType().getName()
// );
LOG.illegalArgumentOnStaticMetamodelFieldInjection(
metamodelClass.getName(),
name,
attribute.getClass().getName(),
field.getType().getName()
);
}
}
catch (NoSuchFieldException e) {
LOG.unableToLocateStaticMetamodelField( metamodelClass.getName(), name );
// throw new AssertionFailure(
// "Unable to locate static metamodel field : " + metamodelClass.getName() + '#' + name
// );
}
}
public MappedSuperclassTypeDescriptor> locateMappedSuperclassType(MappedSuperclass mappedSuperclass) {
return mappedSuperclassByMappedSuperclassMapping.get( mappedSuperclass );
}
public void pushEntityWorkedOn(PersistentClass persistentClass) {
stackOfPersistentClassesBeingProcessed.add( persistentClass );
}
public void popEntityWorkedOn(PersistentClass persistentClass) {
final PersistentClass stackTop = stackOfPersistentClassesBeingProcessed.remove(
stackOfPersistentClassesBeingProcessed.size() - 1
);
if ( stackTop != persistentClass ) {
throw new AssertionFailure(
"Inconsistent popping: "
+ persistentClass.getEntityName() + " instead of " + stackTop.getEntityName()
);
}
}
private PersistentClass getEntityWorkedOn() {
return stackOfPersistentClassesBeingProcessed.get(
stackOfPersistentClassesBeingProcessed.size() - 1
);
}
public PersistentClass getPersistentClassHostingProperties(MappedSuperclassTypeImpl> mappedSuperclassType) {
final PersistentClass persistentClass = mappedSuperClassTypeToPersistentClass.get( mappedSuperclassType );
if ( persistentClass == null ) {
throw new AssertionFailure(
"Could not find PersistentClass for MappedSuperclassType: "
+ mappedSuperclassType.getJavaType()
);
}
return persistentClass;
}
public Set getUnusedMappedSuperclasses() {
return new HashSet( knownMappedSuperclasses );
}
}