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/*
* Copyright (C) 2008 The Guava Authors
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.google.common.collect;
import static com.google.common.collect.CollectPreconditions.checkEntryNotNull;
import com.google.common.annotations.Beta;
import com.google.common.annotations.GwtCompatible;
import com.google.common.collect.ImmutableMapEntry.TerminalEntry;
import java.io.Serializable;
import java.util.Collections;
import java.util.EnumMap;
import java.util.HashMap;
import java.util.Iterator;
import java.util.Map;
import javax.annotation.Nullable;
/**
* An immutable, hash-based {@link Map} with reliable user-specified iteration
* order. Does not permit null keys or values.
*
* Unlike {@link Collections#unmodifiableMap}, which is a view of a
* separate map which can still change, an instance of {@code ImmutableMap}
* contains its own data and will never change. {@code ImmutableMap} is
* convenient for {@code public static final} maps ("constant maps") and also
* lets you easily make a "defensive copy" of a map provided to your class by a
* caller.
*
*
Performance notes: unlike {@link HashMap}, {@code ImmutableMap} is
* not optimized for element types that have slow {@link Object#equals} or
* {@link Object#hashCode} implementations. You can get better performance by
* having your element type cache its own hash codes, and by making use of the
* cached values to short-circuit a slow {@code equals} algorithm.
*
*
See the Guava User Guide article on
* immutable collections.
*
* @author Jesse Wilson
* @author Kevin Bourrillion
* @since 2.0 (imported from Google Collections Library)
*/
@GwtCompatible(serializable = true, emulated = true)
@SuppressWarnings("serial") // we're overriding default serialization
public abstract class ImmutableMap implements Map, Serializable {
/**
* Returns the empty map. This map behaves and performs comparably to
* {@link Collections#emptyMap}, and is preferable mainly for consistency
* and maintainability of your code.
*/
public static ImmutableMap of() {
return ImmutableBiMap.of();
}
/**
* Returns an immutable map containing a single entry. This map behaves and
* performs comparably to {@link Collections#singletonMap} but will not accept
* a null key or value. It is preferable mainly for consistency and
* maintainability of your code.
*/
public static ImmutableMap of(K k1, V v1) {
return ImmutableBiMap.of(k1, v1);
}
/**
* Returns an immutable map containing the given entries, in order.
*
* @throws IllegalArgumentException if duplicate keys are provided
*/
public static ImmutableMap of(K k1, V v1, K k2, V v2) {
return new RegularImmutableMap(entryOf(k1, v1), entryOf(k2, v2));
}
/**
* Returns an immutable map containing the given entries, in order.
*
* @throws IllegalArgumentException if duplicate keys are provided
*/
public static ImmutableMap of(
K k1, V v1, K k2, V v2, K k3, V v3) {
return new RegularImmutableMap(
entryOf(k1, v1), entryOf(k2, v2), entryOf(k3, v3));
}
/**
* Returns an immutable map containing the given entries, in order.
*
* @throws IllegalArgumentException if duplicate keys are provided
*/
public static ImmutableMap of(
K k1, V v1, K k2, V v2, K k3, V v3, K k4, V v4) {
return new RegularImmutableMap(
entryOf(k1, v1), entryOf(k2, v2), entryOf(k3, v3), entryOf(k4, v4));
}
/**
* Returns an immutable map containing the given entries, in order.
*
* @throws IllegalArgumentException if duplicate keys are provided
*/
public static ImmutableMap of(
K k1, V v1, K k2, V v2, K k3, V v3, K k4, V v4, K k5, V v5) {
return new RegularImmutableMap(entryOf(k1, v1),
entryOf(k2, v2), entryOf(k3, v3), entryOf(k4, v4), entryOf(k5, v5));
}
// looking for of() with > 5 entries? Use the builder instead.
/**
* Verifies that {@code key} and {@code value} are non-null, and returns a new
* immutable entry with those values.
*
* A call to {@link Map.Entry#setValue} on the returned entry will always
* throw {@link UnsupportedOperationException}.
*/
static TerminalEntry entryOf(K key, V value) {
return new TerminalEntry(key, value);
}
/**
* Returns a new builder. The generated builder is equivalent to the builder
* created by the {@link Builder} constructor.
*/
public static Builder builder() {
return new Builder();
}
static void checkNoConflict(boolean safe, String conflictDescription,
Entry, ?> entry1, Entry, ?> entry2) {
if (!safe) {
throw new IllegalArgumentException(
"Multiple entries with same " + conflictDescription + ": " + entry1 + " and " + entry2);
}
}
/**
* A builder for creating immutable map instances, especially {@code public
* static final} maps ("constant maps"). Example: {@code
*
* static final ImmutableMap WORD_TO_INT =
* new ImmutableMap.Builder()
* .put("one", 1)
* .put("two", 2)
* .put("three", 3)
* .build();}
*
* For small immutable maps, the {@code ImmutableMap.of()} methods are
* even more convenient.
*
*
Builder instances can be reused - it is safe to call {@link #build}
* multiple times to build multiple maps in series. Each map is a superset of
* the maps created before it.
*
* @since 2.0 (imported from Google Collections Library)
*/
public static class Builder {
TerminalEntry[] entries;
int size;
/**
* Creates a new builder. The returned builder is equivalent to the builder
* generated by {@link ImmutableMap#builder}.
*/
public Builder() {
this(ImmutableCollection.Builder.DEFAULT_INITIAL_CAPACITY);
}
@SuppressWarnings("unchecked")
Builder(int initialCapacity) {
this.entries = new TerminalEntry[initialCapacity];
this.size = 0;
}
private void ensureCapacity(int minCapacity) {
if (minCapacity > entries.length) {
entries = ObjectArrays.arraysCopyOf(
entries, ImmutableCollection.Builder.expandedCapacity(entries.length, minCapacity));
}
}
/**
* Associates {@code key} with {@code value} in the built map. Duplicate
* keys are not allowed, and will cause {@link #build} to fail.
*/
public Builder put(K key, V value) {
ensureCapacity(size + 1);
TerminalEntry entry = entryOf(key, value);
// don't inline this: we want to fail atomically if key or value is null
entries[size++] = entry;
return this;
}
/**
* Adds the given {@code entry} to the map, making it immutable if
* necessary. Duplicate keys are not allowed, and will cause {@link #build}
* to fail.
*
* @since 11.0
*/
public Builder put(Entry extends K, ? extends V> entry) {
return put(entry.getKey(), entry.getValue());
}
/**
* Associates all of the given map's keys and values in the built map.
* Duplicate keys are not allowed, and will cause {@link #build} to fail.
*
* @throws NullPointerException if any key or value in {@code map} is null
*/
public Builder putAll(Map extends K, ? extends V> map) {
ensureCapacity(size + map.size());
return putAll(map.entrySet());
}
/**
* Adds all of the given entries to the built map. Duplicate keys are not
* allowed, and will cause {@link #build} to fail.
*
* @throws NullPointerException if any key, value, or entry is null
* @since 19.0
*/
@Beta
public Builder putAll(
Iterable extends Entry extends K, ? extends V>> entries) {
for (Entry extends K, ? extends V> entry : entries) {
put(entry);
}
return this;
}
/*
* TODO(kevinb): Should build() and the ImmutableBiMap & ImmutableSortedMap
* versions throw an IllegalStateException instead?
*/
/**
* Returns a newly-created immutable map.
*
* @throws IllegalArgumentException if duplicate keys were added
*/
public ImmutableMap build() {
switch (size) {
case 0:
return of();
case 1:
return of(entries[0].getKey(), entries[0].getValue());
default:
return new RegularImmutableMap(size, entries);
}
}
}
/**
* Returns an immutable map containing the same entries as {@code map}. If
* {@code map} somehow contains entries with duplicate keys (for example, if
* it is a {@code SortedMap} whose comparator is not consistent with
* equals), the results of this method are undefined.
*
* Despite the method name, this method attempts to avoid actually copying
* the data when it is safe to do so. The exact circumstances under which a
* copy will or will not be performed are undocumented and subject to change.
*
* @throws NullPointerException if any key or value in {@code map} is null
*/
public static ImmutableMap copyOf(
Map extends K, ? extends V> map) {
if ((map instanceof ImmutableMap) && !(map instanceof ImmutableSortedMap)) {
// TODO(user): Make ImmutableMap.copyOf(immutableBiMap) call copyOf()
// on the ImmutableMap delegate(), rather than the bimap itself
@SuppressWarnings("unchecked") // safe since map is not writable
ImmutableMap kvMap = (ImmutableMap) map;
if (!kvMap.isPartialView()) {
return kvMap;
}
} else if (map instanceof EnumMap) {
return copyOfEnumMapUnsafe(map);
}
return copyOf(map.entrySet());
}
/**
* Returns an immutable map containing the specified entries. The returned
* map iterates over entries in the same order as the original iterable.
*
* @throws NullPointerException if any key, value, or entry is null
* @throws IllegalArgumentException if two entries have the same key
* @since 19.0
*/
@Beta
public static ImmutableMap copyOf(
Iterable extends Entry extends K, ? extends V>> entries) {
Entry, ?>[] entryArray = Iterables.toArray(entries, EMPTY_ENTRY_ARRAY);
switch (entryArray.length) {
case 0:
return of();
case 1:
@SuppressWarnings("unchecked") // all entries will be Entry's
Entry onlyEntry = (Entry) entryArray[0];
return of(onlyEntry.getKey(), onlyEntry.getValue());
default:
return new RegularImmutableMap(entryArray);
}
}
// If the map is an EnumMap, it must have key type K for some >.
@SuppressWarnings({"unchecked", "rawtypes"})
private static ImmutableMap copyOfEnumMapUnsafe(Map extends K, ? extends V> map) {
return copyOfEnumMap((EnumMap) map);
}
private static , V> ImmutableMap copyOfEnumMap(
EnumMap original) {
EnumMap copy = new EnumMap(original);
for (Map.Entry, ?> entry : copy.entrySet()) {
checkEntryNotNull(entry.getKey(), entry.getValue());
}
return ImmutableEnumMap.asImmutable(copy);
}
static final Entry, ?>[] EMPTY_ENTRY_ARRAY = new Entry, ?>[0];
abstract static class IteratorBasedImmutableMap extends ImmutableMap {
abstract UnmodifiableIterator> entryIterator();
@Override
ImmutableSet> createEntrySet() {
return new ImmutableMapEntrySet() {
@Override
ImmutableMap map() {
return IteratorBasedImmutableMap.this;
}
@Override
public UnmodifiableIterator> iterator() {
return entryIterator();
}
};
}
}
ImmutableMap() {}
/**
* Guaranteed to throw an exception and leave the map unmodified.
*
* @throws UnsupportedOperationException always
* @deprecated Unsupported operation.
*/
@Deprecated
@Override
public final V put(K k, V v) {
throw new UnsupportedOperationException();
}
/**
* Guaranteed to throw an exception and leave the map unmodified.
*
* @throws UnsupportedOperationException always
* @deprecated Unsupported operation.
*/
@Deprecated
@Override
public final V remove(Object o) {
throw new UnsupportedOperationException();
}
/**
* Guaranteed to throw an exception and leave the map unmodified.
*
* @throws UnsupportedOperationException always
* @deprecated Unsupported operation.
*/
@Deprecated
@Override
public final void putAll(Map extends K, ? extends V> map) {
throw new UnsupportedOperationException();
}
/**
* Guaranteed to throw an exception and leave the map unmodified.
*
* @throws UnsupportedOperationException always
* @deprecated Unsupported operation.
*/
@Deprecated
@Override
public final void clear() {
throw new UnsupportedOperationException();
}
@Override
public boolean isEmpty() {
return size() == 0;
}
@Override
public boolean containsKey(@Nullable Object key) {
return get(key) != null;
}
@Override
public boolean containsValue(@Nullable Object value) {
return values().contains(value);
}
// Overriding to mark it Nullable
@Override
public abstract V get(@Nullable Object key);
private transient ImmutableSet> entrySet;
/**
* Returns an immutable set of the mappings in this map. The entries are in
* the same order as the parameters used to build this map.
*/
@Override
public ImmutableSet> entrySet() {
ImmutableSet> result = entrySet;
return (result == null) ? entrySet = createEntrySet() : result;
}
abstract ImmutableSet> createEntrySet();
private transient ImmutableSet keySet;
/**
* Returns an immutable set of the keys in this map. These keys are in
* the same order as the parameters used to build this map.
*/
@Override
public ImmutableSet keySet() {
ImmutableSet result = keySet;
return (result == null) ? keySet = createKeySet() : result;
}
ImmutableSet createKeySet() {
return new ImmutableMapKeySet(this);
}
UnmodifiableIterator keyIterator() {
final UnmodifiableIterator> entryIterator = entrySet().iterator();
return new UnmodifiableIterator() {
@Override public boolean hasNext() {
return entryIterator.hasNext();
}
@Override public K next() {
return entryIterator.next().getKey();
}
};
}
private transient ImmutableCollection values;
/**
* Returns an immutable collection of the values in this map. The values are
* in the same order as the parameters used to build this map.
*/
@Override
public ImmutableCollection values() {
ImmutableCollection result = values;
return (result == null) ? values = new ImmutableMapValues(this) : result;
}
// cached so that this.multimapView().inverse() only computes inverse once
private transient ImmutableSetMultimap multimapView;
/**
* Returns a multimap view of the map.
*
* @since 14.0
*/
@Beta
public ImmutableSetMultimap asMultimap() {
ImmutableSetMultimap result = multimapView;
return (result == null)
? (multimapView = new ImmutableSetMultimap(
new MapViewOfValuesAsSingletonSets(), size(), null))
: result;
}
private final class MapViewOfValuesAsSingletonSets
extends IteratorBasedImmutableMap> {
@Override public int size() {
return ImmutableMap.this.size();
}
@Override public ImmutableSet keySet() {
return ImmutableMap.this.keySet();
}
@Override public boolean containsKey(@Nullable Object key) {
return ImmutableMap.this.containsKey(key);
}
@Override public ImmutableSet get(@Nullable Object key) {
V outerValue = ImmutableMap.this.get(key);
return (outerValue == null) ? null : ImmutableSet.of(outerValue);
}
@Override boolean isPartialView() {
return ImmutableMap.this.isPartialView();
}
@Override public int hashCode() {
// ImmutableSet.of(value).hashCode() == value.hashCode(), so the hashes are the same
return ImmutableMap.this.hashCode();
}
@Override boolean isHashCodeFast() {
return ImmutableMap.this.isHashCodeFast();
}
@Override
UnmodifiableIterator>> entryIterator() {
final Iterator> backingIterator = ImmutableMap.this.entrySet().iterator();
return new UnmodifiableIterator>>() {
@Override public boolean hasNext() {
return backingIterator.hasNext();
}
@Override public Entry> next() {
final Entry backingEntry = backingIterator.next();
return new AbstractMapEntry>() {
@Override public K getKey() {
return backingEntry.getKey();
}
@Override public ImmutableSet getValue() {
return ImmutableSet.of(backingEntry.getValue());
}
};
}
};
}
}
@Override public boolean equals(@Nullable Object object) {
return Maps.equalsImpl(this, object);
}
abstract boolean isPartialView();
@Override public int hashCode() {
return Sets.hashCodeImpl(entrySet());
}
boolean isHashCodeFast() {
return false;
}
@Override public String toString() {
return Maps.toStringImpl(this);
}
/**
* Serialized type for all ImmutableMap instances. It captures the logical
* contents and they are reconstructed using public factory methods. This
* ensures that the implementation types remain as implementation details.
*/
static class SerializedForm implements Serializable {
private final Object[] keys;
private final Object[] values;
SerializedForm(ImmutableMap, ?> map) {
keys = new Object[map.size()];
values = new Object[map.size()];
int i = 0;
for (Entry, ?> entry : map.entrySet()) {
keys[i] = entry.getKey();
values[i] = entry.getValue();
i++;
}
}
Object readResolve() {
Builder