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GS Collections is a collections framework for Java. It has JDK-compatible List, Set and Map implementations with a rich API and set of utility classes that work with any JDK compatible Collections, Arrays, Maps or Strings. The iteration protocol was inspired by the Smalltalk collection framework.

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/*
 * Copyright 2014 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.map.mutable.primitive;

import java.io.Serializable;

import com.gs.collections.api.FloatIterable;
import com.gs.collections.api.DoubleIterable;
import com.gs.collections.api.LazyFloatIterable;
import com.gs.collections.api.LazyDoubleIterable;
import com.gs.collections.api.RichIterable;
import com.gs.collections.api.bag.primitive.MutableFloatBag;
import com.gs.collections.api.block.function.primitive.FloatFunction;
import com.gs.collections.api.block.function.primitive.FloatFunction0;
import com.gs.collections.api.block.function.primitive.FloatToFloatFunction;
import com.gs.collections.api.block.function.primitive.FloatToObjectFunction;
import com.gs.collections.api.block.function.primitive.ObjectFloatToObjectFunction;
import com.gs.collections.api.block.function.primitive.DoubleToFloatFunction;
import com.gs.collections.api.block.predicate.primitive.FloatPredicate;
import com.gs.collections.api.block.predicate.primitive.DoubleFloatPredicate;
import com.gs.collections.api.block.procedure.primitive.FloatProcedure;
import com.gs.collections.api.block.procedure.primitive.DoubleFloatProcedure;
import com.gs.collections.api.block.procedure.primitive.DoubleProcedure;
import com.gs.collections.api.collection.MutableCollection;
import com.gs.collections.api.collection.primitive.MutableFloatCollection;
import com.gs.collections.api.iterator.FloatIterator;
import com.gs.collections.api.list.primitive.MutableFloatList;
import com.gs.collections.api.map.primitive.ImmutableDoubleFloatMap;
import com.gs.collections.api.map.primitive.DoubleFloatMap;
import com.gs.collections.api.map.primitive.MutableDoubleFloatMap;
import com.gs.collections.api.set.primitive.MutableDoubleSet;
import com.gs.collections.api.set.primitive.MutableFloatSet;
import com.gs.collections.api.tuple.primitive.DoubleFloatPair;
import com.gs.collections.impl.factory.primitive.DoubleFloatMaps;
import com.gs.collections.impl.set.mutable.primitive.UnmodifiableDoubleSet;
import com.gs.collections.impl.collection.mutable.primitive.UnmodifiableFloatCollection;

/**
 * This file was automatically generated from template file unmodifiablePrimitivePrimitiveMap.stg.
 *
 * @since 3.1.
 */
public final class UnmodifiableDoubleFloatMap
        implements MutableDoubleFloatMap, Serializable
{
    private static final long serialVersionUID = 1L;
    private final MutableDoubleFloatMap map;

    UnmodifiableDoubleFloatMap(MutableDoubleFloatMap map)
    {
        this.map = map;
    }

    private boolean isAbsent(float result, double key)
    {
        return result == DoubleFloatHashMap.EMPTY_VALUE && !this.containsKey(key);
    }

    private float getIfAbsentThrow(double key)
    {
        float result = this.map.get(key);
        if (this.isAbsent(result, key))
        {
            throw new UnsupportedOperationException("Cannot call put() on " + this.getClass().getSimpleName());
        }
        return result;
    }

    public void clear()
    {
        throw new UnsupportedOperationException("Cannot call clear() on " + this.getClass().getSimpleName());
    }

    public void put(double key, float value)
    {
        throw new UnsupportedOperationException("Cannot call put() on " + this.getClass().getSimpleName());
    }

    public void putAll(DoubleFloatMap map)
    {
        throw new UnsupportedOperationException("Cannot call putAll() on " + this.getClass().getSimpleName());
    }

    public void removeKey(double key)
    {
        throw new UnsupportedOperationException("Cannot call removeKey() on " + this.getClass().getSimpleName());
    }

    public void remove(double key)
    {
        throw new UnsupportedOperationException("Cannot call remove() on " + this.getClass().getSimpleName());
    }

    public float removeKeyIfAbsent(double key, float value)
    {
        if (this.map.containsKey(key))
        {
            throw new UnsupportedOperationException("Cannot call removeKey() on " + this.getClass().getSimpleName());
        }
        return value;
    }

    public float getIfAbsentPut(double key, float value)
    {
        return this.getIfAbsentThrow(key);
    }

    public float getIfAbsentPut(double key, FloatFunction0 function)
    {
        return this.getIfAbsentThrow(key);
    }

    public float getIfAbsentPutWithKey(double key, DoubleToFloatFunction function)
    {
        return this.getIfAbsentThrow(key);
    }

    public 

float getIfAbsentPutWith(double key, FloatFunction function, P parameter) { return this.getIfAbsentThrow(key); } public float updateValue(double key, float initialValueIfAbsent, FloatToFloatFunction function) { throw new UnsupportedOperationException("Cannot call updateValue() on " + this.getClass().getSimpleName()); } public float get(double key) { return this.map.get(key); } public float getIfAbsent(double key, float ifAbsent) { return this.map.getIfAbsent(key, ifAbsent); } public float getOrThrow(double key) { return this.map.getOrThrow(key); } public boolean containsKey(double key) { return this.map.containsKey(key); } public boolean containsValue(float value) { return this.map.containsValue(value); } public void forEachValue(FloatProcedure procedure) { this.map.forEachValue(procedure); } public void forEachKey(DoubleProcedure procedure) { this.map.forEachKey(procedure); } public void forEachKeyValue(DoubleFloatProcedure procedure) { this.map.forEachKeyValue(procedure); } public LazyDoubleIterable keysView() { return this.map.keysView(); } public RichIterable keyValuesView() { return this.map.keyValuesView(); } public MutableDoubleFloatMap select(DoubleFloatPredicate predicate) { return this.map.select(predicate); } public MutableDoubleFloatMap reject(DoubleFloatPredicate predicate) { return this.map.reject(predicate); } public FloatIterator floatIterator() { return this.map.floatIterator(); } public void forEach(FloatProcedure procedure) { this.map.forEach(procedure); } public int count(FloatPredicate predicate) { return this.map.count(predicate); } public boolean anySatisfy(FloatPredicate predicate) { return this.map.anySatisfy(predicate); } public boolean allSatisfy(FloatPredicate predicate) { return this.map.allSatisfy(predicate); } public boolean noneSatisfy(FloatPredicate predicate) { return this.map.noneSatisfy(predicate); } public MutableFloatCollection select(FloatPredicate predicate) { return this.map.select(predicate); } public MutableFloatCollection reject(FloatPredicate predicate) { return this.map.reject(predicate); } public float detectIfNone(FloatPredicate predicate, float ifNone) { return this.map.detectIfNone(predicate, ifNone); } public MutableCollection collect(FloatToObjectFunction function) { return this.map.collect(function); } public double sum() { return this.map.sum(); } public float max() { return this.map.max(); } public float maxIfEmpty(float defaultValue) { return this.map.maxIfEmpty(defaultValue); } public float min() { return this.map.min(); } public float minIfEmpty(float defaultValue) { return this.map.minIfEmpty(defaultValue); } public double average() { return this.map.average(); } public double median() { return this.map.median(); } public float addToValue(double key, float toBeAdded) { throw new UnsupportedOperationException("Cannot call addToValue() on " + this.getClass().getSimpleName()); } public float[] toSortedArray() { return this.map.toSortedArray(); } public MutableFloatList toSortedList() { return this.map.toSortedList(); } public float[] toArray() { return this.map.toArray(); } public boolean contains(float value) { return this.map.contains(value); } public boolean containsAll(float... source) { return this.map.containsAll(source); } public boolean containsAll(FloatIterable source) { return this.map.containsAll(source); } public MutableFloatList toList() { return this.map.toList(); } public MutableFloatSet toSet() { return this.map.toSet(); } public MutableFloatBag toBag() { return this.map.toBag(); } public LazyFloatIterable asLazy() { return this.map.asLazy(); } public MutableDoubleFloatMap withKeyValue(double key, float value) { throw new UnsupportedOperationException("Cannot call withKeyValue() on " + this.getClass().getSimpleName()); } public MutableDoubleFloatMap withoutKey(double key) { throw new UnsupportedOperationException("Cannot call withoutKey() on " + this.getClass().getSimpleName()); } public MutableDoubleFloatMap withoutAllKeys(DoubleIterable keys) { throw new UnsupportedOperationException("Cannot call withoutAllKeys() on " + this.getClass().getSimpleName()); } public MutableDoubleFloatMap asUnmodifiable() { return this; } public MutableDoubleFloatMap asSynchronized() { return new SynchronizedDoubleFloatMap(this); } public ImmutableDoubleFloatMap toImmutable() { return DoubleFloatMaps.immutable.withAll(this); } public int size() { return this.map.size(); } public boolean isEmpty() { return this.map.isEmpty(); } public boolean notEmpty() { return this.map.notEmpty(); } public MutableDoubleSet keySet() { return UnmodifiableDoubleSet.of(this.map.keySet()); } public MutableFloatCollection values() { return UnmodifiableFloatCollection.of(this.map.values()); } @Override public boolean equals(Object otherMap) { return this.map.equals(otherMap); } @Override public int hashCode() { return this.map.hashCode(); } @Override public String toString() { return this.map.toString(); } public String makeString() { return this.map.makeString(); } public String makeString(String separator) { return this.map.makeString(separator); } public String makeString(String start, String separator, String end) { return this.map.makeString(start, separator, end); } public void appendString(Appendable appendable) { this.map.appendString(appendable); } public void appendString(Appendable appendable, String separator) { this.map.appendString(appendable, separator); } public void appendString(Appendable appendable, String start, String separator, String end) { this.map.appendString(appendable, start, separator, end); } public T injectInto(T injectedValue, ObjectFloatToObjectFunction function) { return this.map.injectInto(injectedValue, function); } }





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