package org.eclipse.collections.impl.map.immutable.primitive;
import java.io.IOException;
import java.io.Serializable;
import org.eclipse.collections.api.FloatIterable;
import org.eclipse.collections.api.DoubleIterable;
import org.eclipse.collections.api.LazyDoubleIterable;
import org.eclipse.collections.api.LazyFloatIterable;
import org.eclipse.collections.api.RichIterable;
import org.eclipse.collections.api.bag.ImmutableBag;
import org.eclipse.collections.api.bag.primitive.ImmutableDoubleBag;
import org.eclipse.collections.api.bag.primitive.MutableDoubleBag;
import org.eclipse.collections.api.block.function.primitive.DoubleToObjectFunction;
import org.eclipse.collections.api.block.function.primitive.ObjectDoubleToObjectFunction;
import org.eclipse.collections.api.block.predicate.primitive.DoublePredicate;
import org.eclipse.collections.api.block.predicate.primitive.FloatDoublePredicate;
import org.eclipse.collections.api.block.procedure.primitive.DoubleProcedure;
import org.eclipse.collections.api.block.procedure.primitive.FloatDoubleProcedure;
import org.eclipse.collections.api.block.procedure.primitive.FloatProcedure;
import org.eclipse.collections.api.collection.primitive.MutableDoubleCollection;
import org.eclipse.collections.api.iterator.DoubleIterator;
import org.eclipse.collections.api.list.primitive.MutableDoubleList;
import org.eclipse.collections.api.map.primitive.FloatDoubleMap;
import org.eclipse.collections.api.map.primitive.ImmutableFloatDoubleMap;
import org.eclipse.collections.api.map.primitive.ImmutableDoubleFloatMap;
import org.eclipse.collections.api.set.primitive.MutableFloatSet;
import org.eclipse.collections.api.set.primitive.MutableDoubleSet;
import org.eclipse.collections.api.tuple.primitive.FloatDoublePair;
import org.eclipse.collections.impl.bag.mutable.primitive.DoubleHashBag;
import org.eclipse.collections.impl.collection.mutable.primitive.UnmodifiableDoubleCollection;
import org.eclipse.collections.impl.factory.Bags;
import org.eclipse.collections.impl.factory.Lists;
import org.eclipse.collections.impl.factory.primitive.FloatDoubleMaps;
import org.eclipse.collections.impl.factory.primitive.DoubleFloatMaps;
import org.eclipse.collections.impl.factory.primitive.FloatLists;
import org.eclipse.collections.impl.factory.primitive.DoubleBags;
import org.eclipse.collections.impl.iterator.UnmodifiableDoubleIterator;
import org.eclipse.collections.impl.lazy.primitive.LazyDoubleIterableAdapter;
import org.eclipse.collections.impl.list.mutable.primitive.DoubleArrayList;
import org.eclipse.collections.impl.map.mutable.primitive.FloatDoubleHashMap;
import org.eclipse.collections.impl.set.mutable.primitive.DoubleHashSet;
import org.eclipse.collections.impl.set.mutable.primitive.FloatHashSet;
import org.eclipse.collections.impl.set.mutable.primitive.UnmodifiableFloatSet;
import org.eclipse.collections.impl.tuple.primitive.PrimitiveTuples;
final class ImmutableFloatDoubleSingletonMap implements ImmutableFloatDoubleMap, Serializable
{
private static final long serialVersionUID = 1L;
private static final double EMPTY_VALUE = 0.0;
private final float key1;
private final double value1;
ImmutableFloatDoubleSingletonMap(float key1, double value1)
{
this.key1 = key1;
this.value1 = value1;
}
@Override
public double get(float key)
{
return this.getIfAbsent(key, EMPTY_VALUE);
}
@Override
public double getIfAbsent(float key, double ifAbsent)
{
return Float.compare(this.key1, key) == 0 ? this.value1 : ifAbsent;
}
@Override
public double getOrThrow(float key)
{
if (Float.compare(this.key1, key) == 0)
{
return this.value1;
}
throw new IllegalStateException("Key " + key + " not present.");
}
@Override
public boolean containsKey(float key)
{
return Float.compare(this.key1, key) == 0;
}
@Override
public boolean containsValue(double value)
{
return Double.compare(this.value1, value) == 0;
}
@Override
public void forEachValue(DoubleProcedure procedure)
{
procedure.value(this.value1);
}
@Override
public void forEachKey(FloatProcedure procedure)
{
procedure.value(this.key1);
}
@Override
public void forEachKeyValue(FloatDoubleProcedure procedure)
{
procedure.value(this.key1, this.value1);
}
@Override
public LazyFloatIterable keysView()
{
return FloatLists.immutable.of(this.key1).asLazy();
}
@Override
public RichIterable<FloatDoublePair> keyValuesView()
{
return Lists.immutable.of(PrimitiveTuples.pair(this.key1, this.value1)).asLazy();
}
@Override
public ImmutableDoubleFloatMap flipUniqueValues()
{
return DoubleFloatMaps.immutable.with(this.value1, this.key1);
}
@Override
public ImmutableFloatDoubleMap select(FloatDoublePredicate predicate)
{
return predicate.accept(this.key1, this.value1) ? FloatDoubleHashMap.newWithKeysValues(this.key1, this.value1).toImmutable()
: new FloatDoubleHashMap().toImmutable();
}
@Override
public ImmutableFloatDoubleMap reject(FloatDoublePredicate predicate)
{
return predicate.accept(this.key1, this.value1) ? new FloatDoubleHashMap().toImmutable()
: FloatDoubleHashMap.newWithKeysValues(this.key1, this.value1).toImmutable();
}
@Override
public <T> T injectInto(T injectedValue, ObjectDoubleToObjectFunction<? super T, ? extends T> function)
{
return function.valueOf(injectedValue, this.value1);
}
@Override
public RichIterable<DoubleIterable> chunk(int size)
{
if (size <= 0)
{
throw new IllegalArgumentException("Size for groups must be positive but was: " + size);
}
return Lists.mutable.with(DoubleBags.immutable.with(this.value1));
}
@Override
public ImmutableFloatDoubleMap toImmutable()
{
return this;
}
@Override
public DoubleIterator doubleIterator()
{
return new UnmodifiableDoubleIterator(FloatDoubleHashMap.newWithKeysValues(this.key1, this.value1).doubleIterator());
}
@Override
public void forEach(DoubleProcedure procedure)
{
this.each(procedure);
}
@Override
public void each(DoubleProcedure procedure)
{
procedure.value(this.value1);
}
@Override
public int count(DoublePredicate predicate)
{
return predicate.accept(this.value1) ? 1 : 0;
}
@Override
public double sum()
{
return this.value1;
}
@Override
public double min()
{
return this.value1;
}
@Override
public double max()
{
return this.value1;
}
@Override
public double maxIfEmpty(double defaultValue)
{
return this.value1;
}
@Override
public double minIfEmpty(double defaultValue)
{
return this.value1;
}
@Override
public double average()
{
return this.value1;
}
@Override
public double median()
{
return this.value1;
}
@Override
public double[] toSortedArray()
{
return new double[]{this.value1};
}
@Override
public MutableDoubleList toSortedList()
{
return DoubleArrayList.newListWith(this.value1);
}
@Override
public boolean anySatisfy(DoublePredicate predicate)
{
return predicate.accept(this.value1);
}
@Override
public boolean allSatisfy(DoublePredicate predicate)
{
return predicate.accept(this.value1);
}
@Override
public boolean noneSatisfy(DoublePredicate predicate)
{
return !predicate.accept(this.value1);
}
@Override
public ImmutableDoubleBag select(DoublePredicate predicate)
{
return predicate.accept(this.value1) ? DoubleHashBag.newBagWith(this.value1).toImmutable() : DoubleBags.immutable.empty();
}
@Override
public ImmutableDoubleBag reject(DoublePredicate predicate)
{
return predicate.accept(this.value1) ? DoubleBags.immutable.empty() : DoubleHashBag.newBagWith(this.value1).toImmutable();
}
@Override
public <V> ImmutableBag<V> collect(DoubleToObjectFunction<? extends V> function)
{
return Bags.immutable.of(function.valueOf(this.value1));
}
@Override
public double detectIfNone(DoublePredicate predicate, double ifNone)
{
return predicate.accept(this.value1) ? this.value1 : ifNone;
}
@Override
public double[] toArray()
{
return new double[]{this.value1};
}
@Override
public boolean contains(double value)
{
return Double.compare(this.value1, value) == 0;
}
@Override
public boolean containsAll(double... source)
{
for (double value : source)
{
if (Double.compare(this.value1, value) != 0)
{
return false;
}
}
return true;
}
@Override
public boolean containsAll(DoubleIterable source)
{
for (DoubleIterator iterator = source.doubleIterator(); iterator.hasNext(); )
{
if (Double.compare(this.value1, iterator.next()) != 0)
{
return false;
}
}
return true;
}
@Override
public MutableDoubleList toList()
{
return DoubleArrayList.newListWith(this.value1);
}
@Override
public MutableDoubleSet toSet()
{
return DoubleHashSet.newSetWith(this.value1);
}
@Override
public MutableDoubleBag toBag()
{
return DoubleHashBag.newBagWith(this.value1);
}
@Override
public LazyDoubleIterable asLazy()
{
return new LazyDoubleIterableAdapter(this);
}
@Override
public ImmutableFloatDoubleMap newWithKeyValue(float key, double value)
{
return FloatDoubleMaps.immutable.withAll(FloatDoubleHashMap.newWithKeysValues(this.key1, this.value1, key, value));
}
@Override
public ImmutableFloatDoubleMap newWithoutKey(float key)
{
return Float.compare(this.key1, key) == 0 ? FloatDoubleMaps.immutable.with() : this;
}
@Override
public ImmutableFloatDoubleMap newWithoutAllKeys(FloatIterable keys)
{
return keys.contains(this.key1) ? FloatDoubleMaps.immutable.with() : this;
}
@Override
public int size()
{
return 1;
}
@Override
public boolean isEmpty()
{
return false;
}
@Override
public boolean notEmpty()
{
return true;
}
@Override
public MutableFloatSet keySet()
{
return UnmodifiableFloatSet.of(FloatHashSet.newSetWith(this.key1));
}
@Override
public MutableDoubleCollection values()
{
return UnmodifiableDoubleCollection.of(DoubleArrayList.newListWith(this.value1));
}
@Override
public boolean equals(Object obj)
{
if (obj == this)
{
return true;
}
if (!(obj instanceof FloatDoubleMap))
{
return false;
}
FloatDoubleMap map = (FloatDoubleMap) obj;
if (map.size() != 1)
{
return false;
}
return map.containsKey(this.key1) && Double.compare(this.value1, map.getOrThrow(this.key1)) == 0;
}
@Override
public int hashCode()
{
return Float.floatToIntBits(this.key1) ^ (int) (Double.doubleToLongBits(this.value1) ^ Double.doubleToLongBits(this.value1) >>> 32);
}
@Override
public String toString()
{
return "{" + this.key1 + "=" + this.value1 + "}";
}
@Override
public String makeString()
{
return this.makeString(", ");
}
@Override
public String makeString(String separator)
{
return this.makeString("", separator, "");
}
@Override
public String makeString(String start, String separator, String end)
{
Appendable stringBuilder = new StringBuilder();
this.appendString(stringBuilder, start, separator, end);
return stringBuilder.toString();
}
@Override
public void appendString(Appendable appendable)
{
this.appendString(appendable, ", ");
}
@Override
public void appendString(Appendable appendable, String separator)
{
this.appendString(appendable, "", separator, "");
}
@Override
public void appendString(Appendable appendable, String start, String separator, String end)
{
try
{
appendable.append(start);
appendable.append(String.valueOf(this.value1));
appendable.append(end);
}
catch (IOException e)
{
throw new RuntimeException(e);
}
}
}