// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. // TODO(srdjan): Use shared array implementation. class _ObjectArray implements List { factory _ObjectArray(int length) native "ObjectArray_allocate"; E operator [](int index) native "ObjectArray_getIndexed"; void operator []=(int index, E value) native "ObjectArray_setIndexed"; String toString() { return Collections.collectionToString(this); } int get length native "ObjectArray_getLength"; void _copyFromObjectArray(_ObjectArray src, int srcStart, int dstStart, int count) native "ObjectArray_copyFromObjectArray"; E removeAt(int index) { throw new UnsupportedError( "Cannot remove element of a non-extendable array"); } void setRange(int start, int length, List from, [int startFrom = 0]) { if (length < 0) { throw new ArgumentError("negative length $length"); } if (from is _ObjectArray) { _copyFromObjectArray(from, startFrom, start, length); } else { Arrays.copy(from, startFrom, this, start, length); } } void removeRange(int start, int length) { throw new UnsupportedError( "Cannot remove range of a non-extendable array"); } void insertRange(int start, int length, [E initialValue = null]) { throw new UnsupportedError( "Cannot insert range in a non-extendable array"); } List getRange(int start, int length) { if (length == 0) return []; Arrays.rangeCheck(this, start, length); List list = new _GrowableObjectArray.withCapacity(length); list.length = length; Arrays.copy(this, start, list, 0, length); return list; } // Collection interface. bool contains(E element) => Collections.contains(this, element); void forEach(f(E element)) { Collections.forEach(this, f); } Collection map(f(E element)) { return Collections.map( this, new _GrowableObjectArray.withCapacity(length), f); } reduce(initialValue, combine(previousValue, E element)) { return Collections.reduce(this, initialValue, combine); } Collection filter(bool f(E element)) { return Collections.filter(this, new _GrowableObjectArray(), f); } bool every(bool f(E element)) { return Collections.every(this, f); } bool some(bool f(E element)) { return Collections.some(this, f); } bool get isEmpty { return this.length === 0; } void sort([Comparator compare = Comparable.compare]) { coreSort(this, compare); } int indexOf(E element, [int start = 0]) { return Arrays.indexOf(this, element, start, this.length); } int lastIndexOf(E element, [int start = null]) { if (start === null) start = length - 1; return Arrays.lastIndexOf(this, element, start); } Iterator iterator() { return new _FixedSizeArrayIterator(this); } void add(E element) { throw new UnsupportedError( "Cannot add to a non-extendable array"); } void addLast(E element) { add(element); } void addAll(Collection elements) { throw new UnsupportedError( "Cannot add to a non-extendable array"); } void clear() { throw new UnsupportedError( "Cannot clear a non-extendable array"); } void set length(int length) { throw new UnsupportedError( "Cannot change the length of a non-extendable array"); } E removeLast() { throw new UnsupportedError( "Cannot remove in a non-extendable array"); } E get last { return this[length - 1]; } } // This is essentially the same class as _ObjectArray, but it does not // permit any modification of array elements from Dart code. We use // this class for arrays constructed from Dart array literals. // TODO(hausner): We should consider the trade-offs between two // classes (and inline cache misses) versus a field in the native // implementation (checks when modifying). We should keep watching // the inline cache misses. class _ImmutableArray implements List { factory _ImmutableArray._uninstantiable() { throw new UnsupportedError( "ImmutableArray can only be allocated by the VM"); } E operator [](int index) native "ObjectArray_getIndexed"; void operator []=(int index, E value) { throw new UnsupportedError( "Cannot modify an immutable array"); } int get length native "ObjectArray_getLength"; E removeAt(int index) { throw new UnsupportedError( "Cannot modify an immutable array"); } void copyFrom(List src, int srcStart, int dstStart, int count) { throw new UnsupportedError( "Cannot modify an immutable array"); } void setRange(int start, int length, List from, [int startFrom = 0]) { throw new UnsupportedError( "Cannot modify an immutable array"); } void removeRange(int start, int length) { throw new UnsupportedError( "Cannot remove range of an immutable array"); } void insertRange(int start, int length, [E initialValue = null]) { throw new UnsupportedError( "Cannot insert range in an immutable array"); } List getRange(int start, int length) { if (length == 0) return []; Arrays.rangeCheck(this, start, length); List list = new List(); list.length = length; Arrays.copy(this, start, list, 0, length); return list; } // Collection interface. bool contains(E element) => Collections.contains(this, element); void forEach(f(E element)) { Collections.forEach(this, f); } Collection map(f(E element)) { return Collections.map( this, new _GrowableObjectArray.withCapacity(length), f); } reduce(initialValue, combine(previousValue, E element)) { return Collections.reduce(this, initialValue, combine); } Collection filter(bool f(E element)) { return Collections.filter(this, new _GrowableObjectArray(), f); } bool every(bool f(E element)) { return Collections.every(this, f); } bool some(bool f(E element)) { return Collections.some(this, f); } bool get isEmpty { return this.length === 0; } void sort([Comparator compare]) { throw new UnsupportedError( "Cannot modify an immutable array"); } String toString() { return Collections.collectionToString(this); } int indexOf(E element, [int start = 0]) { return Arrays.indexOf(this, element, start, this.length); } int lastIndexOf(E element, [int start = null]) { if (start === null) start = length - 1; return Arrays.lastIndexOf(this, element, start); } Iterator iterator() { return new _FixedSizeArrayIterator(this); } void add(E element) { throw new UnsupportedError( "Cannot add to an immutable array"); } void addLast(E element) { add(element); } void addAll(Collection elements) { throw new UnsupportedError( "Cannot add to an immutable array"); } void clear() { throw new UnsupportedError( "Cannot clear an immutable array"); } void set length(int length) { throw new UnsupportedError( "Cannot change the length of an immutable array"); } E removeLast() { throw new UnsupportedError( "Cannot remove in a non-extendable array"); } E get last { return this[length - 1]; } } // Iterator for arrays with fixed size. class _FixedSizeArrayIterator implements Iterator { _FixedSizeArrayIterator(List array) : _array = array, _length = array.length, _pos = 0 { assert(array is _ObjectArray || array is _ImmutableArray); } bool get hasNext { return _length > _pos; } E next() { if (!hasNext) { throw new StateError("No more elements"); } return _array[_pos++]; } final List _array; final int _length; // Cache array length for faster access. int _pos; }