/* * Copyright 2015 Goldman Sachs. * * 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.gs.collections.impl.multimap.set; import java.io.Externalizable; import com.gs.collections.api.block.function.Function; import com.gs.collections.api.block.function.Function2; import com.gs.collections.api.block.predicate.Predicate2; import com.gs.collections.api.block.procedure.Procedure; import com.gs.collections.api.block.procedure.Procedure2; import com.gs.collections.api.map.MutableMap; import com.gs.collections.api.multimap.Multimap; import com.gs.collections.api.multimap.bag.MutableBagMultimap; import com.gs.collections.api.multimap.set.ImmutableSetMultimap; import com.gs.collections.api.multimap.set.MutableSetMultimap; import com.gs.collections.api.set.ImmutableSet; import com.gs.collections.api.set.MutableSet; import com.gs.collections.api.tuple.Pair; import com.gs.collections.impl.map.mutable.ConcurrentHashMap; import com.gs.collections.impl.map.mutable.UnifiedMap; import com.gs.collections.impl.multimap.AbstractSynchronizedPutMultimap; import com.gs.collections.impl.multimap.bag.HashBagMultimap; import com.gs.collections.impl.set.mutable.UnifiedSet; import com.gs.collections.impl.utility.ArrayIterate; import com.gs.collections.impl.utility.Iterate; /** * A Multimap that is optimized for parallel writes, but is not protected for concurrent reads. */ public final class SynchronizedPutUnifiedSetMultimap<K, V> extends AbstractSynchronizedPutMultimap<K, V, MutableSet<V>> implements MutableSetMultimap<K, V>, Externalizable { private static final long serialVersionUID = 42L; public SynchronizedPutUnifiedSetMultimap() { } public SynchronizedPutUnifiedSetMultimap(int initialCapacity) { super(ConcurrentHashMap.<K, MutableSet<V>>newMap(initialCapacity)); } public SynchronizedPutUnifiedSetMultimap(Multimap<? extends K, ? extends V> multimap) { this.putAll(multimap); } public SynchronizedPutUnifiedSetMultimap(Pair<K, V>... pairs) { this(); ArrayIterate.forEach(pairs, new Procedure<Pair<K, V>>() { public void value(Pair<K, V> pair) { SynchronizedPutUnifiedSetMultimap.this.put(pair.getOne(), pair.getTwo()); } }); } public SynchronizedPutUnifiedSetMultimap(Iterable<Pair<K, V>> inputIterable) { this(); Iterate.forEach(inputIterable, new Procedure<Pair<K, V>>() { public void value(Pair<K, V> pair) { SynchronizedPutUnifiedSetMultimap.this.add(pair); } }); } public static <K, V> SynchronizedPutUnifiedSetMultimap<K, V> newMultimap() { return new SynchronizedPutUnifiedSetMultimap<K, V>(); } public static <K, V> SynchronizedPutUnifiedSetMultimap<K, V> newMultimap(int initialCapacity, float loadFactor, int concurrencyLevel) { return new SynchronizedPutUnifiedSetMultimap<K, V>(initialCapacity); } public static <K, V> SynchronizedPutUnifiedSetMultimap<K, V> newMultimap(Multimap<? extends K, ? extends V> multimap) { return new SynchronizedPutUnifiedSetMultimap<K, V>(multimap); } public static <K, V> SynchronizedPutUnifiedSetMultimap<K, V> newMultimap(Pair<K, V>... pairs) { return new SynchronizedPutUnifiedSetMultimap<K, V>(pairs); } public static <K, V> SynchronizedPutUnifiedSetMultimap<K, V> newMultimap(Iterable<Pair<K, V>> inputIterable) { return new SynchronizedPutUnifiedSetMultimap<K, V>(inputIterable); } @Override protected MutableSet<V> createCollection() { return UnifiedSet.newSet(1); } public SynchronizedPutUnifiedSetMultimap<K, V> newEmpty() { return new SynchronizedPutUnifiedSetMultimap<K, V>(); } public MutableSetMultimap<K, V> toMutable() { return new SynchronizedPutUnifiedSetMultimap<K, V>(this); } public ImmutableSetMultimap<K, V> toImmutable() { final MutableMap<K, ImmutableSet<V>> map = UnifiedMap.newMap(); this.map.forEachKeyValue(new Procedure2<K, MutableSet<V>>() { public void value(K key, MutableSet<V> set) { map.put(key, set.toImmutable()); } }); return new ImmutableSetMultimapImpl<K, V>(map); } public UnifiedSetMultimap<K, V> selectKeysValues(Predicate2<? super K, ? super V> predicate) { return this.selectKeysValues(predicate, UnifiedSetMultimap.<K, V>newMultimap()); } public UnifiedSetMultimap<K, V> rejectKeysValues(Predicate2<? super K, ? super V> predicate) { return this.rejectKeysValues(predicate, UnifiedSetMultimap.<K, V>newMultimap()); } public UnifiedSetMultimap<K, V> selectKeysMultiValues(Predicate2<? super K, ? super Iterable<V>> predicate) { return this.selectKeysMultiValues(predicate, UnifiedSetMultimap.<K, V>newMultimap()); } public UnifiedSetMultimap<K, V> rejectKeysMultiValues(Predicate2<? super K, ? super Iterable<V>> predicate) { return this.rejectKeysMultiValues(predicate, UnifiedSetMultimap.<K, V>newMultimap()); } public <K2, V2> MutableBagMultimap<K2, V2> collectKeysValues(Function2<? super K, ? super V, Pair<K2, V2>> function) { return this.collectKeysValues(function, HashBagMultimap.<K2, V2>newMultimap()); } public <V2> MutableBagMultimap<K, V2> collectValues(Function<? super V, ? extends V2> function) { return this.collectValues(function, HashBagMultimap.<K, V2>newMultimap()); } public MutableSetMultimap<V, K> flip() { return Iterate.flip(this); } }