7c5a2a13cb
BUG= http://dartbug.com/2252 R=lrn@google.com Review URL: https://codereview.chromium.org//68563004 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@30409 260f80e4-7a28-3924-810f-c04153c831b5
503 lines
18 KiB
Dart
503 lines
18 KiB
Dart
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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part of utf;
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// TODO(jmesserly): would be nice to have this on String (dartbug.com/6501).
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/**
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* Provide a list of Unicode codepoints for a given string.
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*/
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List<int> stringToCodepoints(String str) {
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// Note: str.codeUnits gives us 16-bit code units on all Dart implementations.
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// So we need to convert.
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return _utf16CodeUnitsToCodepoints(str.codeUnits);
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}
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/**
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* Generate a string from the provided Unicode codepoints.
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*
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* *Deprecated* Use [String.fromCharCodes] instead.
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*/
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String codepointsToString(List<int> codepoints) {
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return new String.fromCharCodes(codepoints);
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}
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/**
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* An Iterator<int> of codepoints built on an Iterator of UTF-16 code units.
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* The parameters can override the default Unicode replacement character. Set
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* the replacementCharacter to null to throw an ArgumentError
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* rather than replace the bad value.
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*/
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class Utf16CodeUnitDecoder implements Iterator<int> {
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final _ListRangeIterator utf16CodeUnitIterator;
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final int replacementCodepoint;
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int _current = null;
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Utf16CodeUnitDecoder(List<int> utf16CodeUnits, [int offset = 0, int length,
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int this.replacementCodepoint =
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UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) :
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utf16CodeUnitIterator =
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(new _ListRange(utf16CodeUnits, offset, length)).iterator;
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Utf16CodeUnitDecoder.fromListRangeIterator(
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_ListRangeIterator this.utf16CodeUnitIterator,
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int this.replacementCodepoint);
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Iterator<int> get iterator => this;
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int get current => _current;
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bool moveNext() {
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_current = null;
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if (!utf16CodeUnitIterator.moveNext()) return false;
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int value = utf16CodeUnitIterator.current;
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if (value < 0) {
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if (replacementCodepoint != null) {
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_current = replacementCodepoint;
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} else {
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throw new ArgumentError(
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"Invalid UTF16 at ${utf16CodeUnitIterator.position}");
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}
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} else if (value < UNICODE_UTF16_RESERVED_LO ||
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(value > UNICODE_UTF16_RESERVED_HI && value <= UNICODE_PLANE_ONE_MAX)) {
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// transfer directly
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_current = value;
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} else if (value < UNICODE_UTF16_SURROGATE_UNIT_1_BASE &&
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utf16CodeUnitIterator.moveNext()) {
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// merge surrogate pair
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int nextValue = utf16CodeUnitIterator.current;
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if (nextValue >= UNICODE_UTF16_SURROGATE_UNIT_1_BASE &&
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nextValue <= UNICODE_UTF16_RESERVED_HI) {
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value = (value - UNICODE_UTF16_SURROGATE_UNIT_0_BASE) << 10;
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value += UNICODE_UTF16_OFFSET +
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(nextValue - UNICODE_UTF16_SURROGATE_UNIT_1_BASE);
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_current = value;
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} else {
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if (nextValue >= UNICODE_UTF16_SURROGATE_UNIT_0_BASE &&
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nextValue < UNICODE_UTF16_SURROGATE_UNIT_1_BASE) {
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utf16CodeUnitIterator.backup();
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}
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if (replacementCodepoint != null) {
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_current = replacementCodepoint;
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} else {
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throw new ArgumentError(
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"Invalid UTF16 at ${utf16CodeUnitIterator.position}");
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}
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}
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} else if (replacementCodepoint != null) {
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_current = replacementCodepoint;
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} else {
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throw new ArgumentError(
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"Invalid UTF16 at ${utf16CodeUnitIterator.position}");
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}
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return true;
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}
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}
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/**
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* Encode code points as UTF16 code units.
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*/
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List<int> _codepointsToUtf16CodeUnits(
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List<int> codepoints,
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[int offset = 0,
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int length,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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_ListRange listRange = new _ListRange(codepoints, offset, length);
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int encodedLength = 0;
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for (int value in listRange) {
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if ((value >= 0 && value < UNICODE_UTF16_RESERVED_LO) ||
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(value > UNICODE_UTF16_RESERVED_HI && value <= UNICODE_PLANE_ONE_MAX)) {
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encodedLength++;
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} else if (value > UNICODE_PLANE_ONE_MAX &&
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value <= UNICODE_VALID_RANGE_MAX) {
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encodedLength += 2;
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} else {
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encodedLength++;
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}
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}
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List<int> codeUnitsBuffer = new List<int>(encodedLength);
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int j = 0;
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for (int value in listRange) {
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if ((value >= 0 && value < UNICODE_UTF16_RESERVED_LO) ||
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(value > UNICODE_UTF16_RESERVED_HI && value <= UNICODE_PLANE_ONE_MAX)) {
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codeUnitsBuffer[j++] = value;
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} else if (value > UNICODE_PLANE_ONE_MAX &&
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value <= UNICODE_VALID_RANGE_MAX) {
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int base = value - UNICODE_UTF16_OFFSET;
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codeUnitsBuffer[j++] = UNICODE_UTF16_SURROGATE_UNIT_0_BASE +
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((base & UNICODE_UTF16_HI_MASK) >> 10);
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codeUnitsBuffer[j++] = UNICODE_UTF16_SURROGATE_UNIT_1_BASE +
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(base & UNICODE_UTF16_LO_MASK);
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} else if (replacementCodepoint != null) {
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codeUnitsBuffer[j++] = replacementCodepoint;
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} else {
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throw new ArgumentError("Invalid encoding");
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}
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}
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return codeUnitsBuffer;
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}
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/**
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* Decodes the utf16 codeunits to codepoints.
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*/
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List<int> _utf16CodeUnitsToCodepoints(
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List<int> utf16CodeUnits, [int offset = 0, int length,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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_ListRangeIterator source =
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(new _ListRange(utf16CodeUnits, offset, length)).iterator;
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Utf16CodeUnitDecoder decoder = new Utf16CodeUnitDecoder
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.fromListRangeIterator(source, replacementCodepoint);
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List<int> codepoints = new List<int>(source.remaining);
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int i = 0;
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while (decoder.moveNext()) {
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codepoints[i++] = decoder.current;
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}
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if (i == codepoints.length) {
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return codepoints;
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} else {
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List<int> codepointTrunc = new List<int>(i);
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codepointTrunc.setRange(0, i, codepoints);
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return codepointTrunc;
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}
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}
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/**
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* Decodes the UTF-16 bytes as an iterable. Thus, the consumer can only convert
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* as much of the input as needed. Determines the byte order from the BOM,
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* or uses big-endian as a default. This method always strips a leading BOM.
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* Set the [replacementCodepoint] to null to throw an ArgumentError
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* rather than replace the bad value. The default value for
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* [replacementCodepoint] is U+FFFD.
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*/
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IterableUtf16Decoder decodeUtf16AsIterable(List<int> bytes, [int offset = 0,
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int length, int replacementCodepoint =
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UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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return new IterableUtf16Decoder._(
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() => new Utf16BytesToCodeUnitsDecoder(bytes, offset, length,
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replacementCodepoint), replacementCodepoint);
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}
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/**
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* Decodes the UTF-16BE bytes as an iterable. Thus, the consumer can only
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* convert as much of the input as needed. This method strips a leading BOM by
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* default, but can be overridden by setting the optional parameter [stripBom]
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* to false. Set the [replacementCodepoint] to null to throw an
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* ArgumentError rather than replace the bad value. The default
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* value for the [replacementCodepoint] is U+FFFD.
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*/
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IterableUtf16Decoder decodeUtf16beAsIterable(List<int> bytes, [int offset = 0,
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int length, bool stripBom = true, int replacementCodepoint =
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UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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return new IterableUtf16Decoder._(
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() => new Utf16beBytesToCodeUnitsDecoder(bytes, offset, length, stripBom,
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replacementCodepoint), replacementCodepoint);
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}
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/**
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* Decodes the UTF-16LE bytes as an iterable. Thus, the consumer can only
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* convert as much of the input as needed. This method strips a leading BOM by
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* default, but can be overridden by setting the optional parameter [stripBom]
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* to false. Set the [replacementCodepoint] to null to throw an
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* ArgumentError rather than replace the bad value. The default
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* value for the [replacementCodepoint] is U+FFFD.
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*/
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IterableUtf16Decoder decodeUtf16leAsIterable(List<int> bytes, [int offset = 0,
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int length, bool stripBom = true, int replacementCodepoint =
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UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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return new IterableUtf16Decoder._(
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() => new Utf16leBytesToCodeUnitsDecoder(bytes, offset, length, stripBom,
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replacementCodepoint), replacementCodepoint);
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}
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/**
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* Produce a String from a sequence of UTF-16 encoded bytes. This method always
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* strips a leading BOM. Set the [replacementCodepoint] to null to throw an
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* ArgumentError rather than replace the bad value. The default
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* value for the [replacementCodepoint] is U+FFFD.
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*/
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String decodeUtf16(List<int> bytes, [int offset = 0, int length,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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Utf16BytesToCodeUnitsDecoder decoder = new Utf16BytesToCodeUnitsDecoder(bytes,
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offset, length, replacementCodepoint);
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List<int> codeunits = decoder.decodeRest();
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return new String.fromCharCodes(
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_utf16CodeUnitsToCodepoints(codeunits, 0, null, replacementCodepoint));
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}
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/**
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* Produce a String from a sequence of UTF-16BE encoded bytes. This method
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* strips a leading BOM by default, but can be overridden by setting the
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* optional parameter [stripBom] to false. Set the [replacementCodepoint] to
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* null to throw an ArgumentError rather than replace the bad value.
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* The default value for the [replacementCodepoint] is U+FFFD.
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*/
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String decodeUtf16be(List<int> bytes, [int offset = 0, int length,
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bool stripBom = true,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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List<int> codeunits = (new Utf16beBytesToCodeUnitsDecoder(bytes, offset,
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length, stripBom, replacementCodepoint)).decodeRest();
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return new String.fromCharCodes(
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_utf16CodeUnitsToCodepoints(codeunits, 0, null, replacementCodepoint));
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}
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/**
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* Produce a String from a sequence of UTF-16LE encoded bytes. This method
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* strips a leading BOM by default, but can be overridden by setting the
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* optional parameter [stripBom] to false. Set the [replacementCodepoint] to
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* null to throw an ArgumentError rather than replace the bad value.
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* The default value for the [replacementCodepoint] is U+FFFD.
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*/
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String decodeUtf16le(List<int> bytes, [int offset = 0, int length,
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bool stripBom = true,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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List<int> codeunits = (new Utf16leBytesToCodeUnitsDecoder(bytes, offset,
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length, stripBom, replacementCodepoint)).decodeRest();
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return new String.fromCharCodes(
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_utf16CodeUnitsToCodepoints(codeunits, 0, null, replacementCodepoint));
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}
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/**
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* Produce a list of UTF-16 encoded bytes. This method prefixes the resulting
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* bytes with a big-endian byte-order-marker.
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*/
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List<int> encodeUtf16(String str) =>
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encodeUtf16be(str, true);
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/**
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* Produce a list of UTF-16BE encoded bytes. By default, this method produces
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* UTF-16BE bytes with no BOM.
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*/
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List<int> encodeUtf16be(String str, [bool writeBOM = false]) {
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List<int> utf16CodeUnits = _stringToUtf16CodeUnits(str);
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List<int> encoding =
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new List<int>(2 * utf16CodeUnits.length + (writeBOM ? 2 : 0));
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int i = 0;
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if (writeBOM) {
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encoding[i++] = UNICODE_UTF_BOM_HI;
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encoding[i++] = UNICODE_UTF_BOM_LO;
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}
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for (int unit in utf16CodeUnits) {
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encoding[i++] = (unit & UNICODE_BYTE_ONE_MASK) >> 8;
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encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK;
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}
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return encoding;
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}
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/**
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* Produce a list of UTF-16LE encoded bytes. By default, this method produces
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* UTF-16LE bytes with no BOM.
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*/
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List<int> encodeUtf16le(String str, [bool writeBOM = false]) {
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List<int> utf16CodeUnits = _stringToUtf16CodeUnits(str);
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List<int> encoding =
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new List<int>(2 * utf16CodeUnits.length + (writeBOM ? 2 : 0));
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int i = 0;
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if (writeBOM) {
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encoding[i++] = UNICODE_UTF_BOM_LO;
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encoding[i++] = UNICODE_UTF_BOM_HI;
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}
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for (int unit in utf16CodeUnits) {
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encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK;
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encoding[i++] = (unit & UNICODE_BYTE_ONE_MASK) >> 8;
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}
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return encoding;
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}
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/**
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* Identifies whether a List of bytes starts (based on offset) with a
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* byte-order marker (BOM).
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*/
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bool hasUtf16Bom(List<int> utf32EncodedBytes, [int offset = 0, int length]) {
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return hasUtf16beBom(utf32EncodedBytes, offset, length) ||
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hasUtf16leBom(utf32EncodedBytes, offset, length);
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}
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/**
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* Identifies whether a List of bytes starts (based on offset) with a
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* big-endian byte-order marker (BOM).
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*/
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bool hasUtf16beBom(List<int> utf16EncodedBytes, [int offset = 0, int length]) {
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int end = length != null ? offset + length : utf16EncodedBytes.length;
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return (offset + 2) <= end &&
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utf16EncodedBytes[offset] == UNICODE_UTF_BOM_HI &&
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utf16EncodedBytes[offset + 1] == UNICODE_UTF_BOM_LO;
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}
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/**
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* Identifies whether a List of bytes starts (based on offset) with a
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* little-endian byte-order marker (BOM).
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*/
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bool hasUtf16leBom(List<int> utf16EncodedBytes, [int offset = 0, int length]) {
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int end = length != null ? offset + length : utf16EncodedBytes.length;
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return (offset + 2) <= end &&
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utf16EncodedBytes[offset] == UNICODE_UTF_BOM_LO &&
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utf16EncodedBytes[offset + 1] == UNICODE_UTF_BOM_HI;
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}
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List<int> _stringToUtf16CodeUnits(String str) {
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return _codepointsToUtf16CodeUnits(str.codeUnits);
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}
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typedef _ListRangeIterator _CodeUnitsProvider();
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/**
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* Return type of [decodeUtf16AsIterable] and variants. The Iterable type
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* provides an iterator on demand and the iterator will only translate bytes
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* as requested by the user of the iterator. (Note: results are not cached.)
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*/
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// TODO(floitsch): Consider removing the extend and switch to implements since
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// that's cheaper to allocate.
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class IterableUtf16Decoder extends IterableBase<int> {
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final _CodeUnitsProvider codeunitsProvider;
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final int replacementCodepoint;
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IterableUtf16Decoder._(this.codeunitsProvider, this.replacementCodepoint);
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Utf16CodeUnitDecoder get iterator =>
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new Utf16CodeUnitDecoder.fromListRangeIterator(codeunitsProvider(),
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replacementCodepoint);
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}
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/**
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* Convert UTF-16 encoded bytes to UTF-16 code units by grouping 1-2 bytes
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* to produce the code unit (0-(2^16)-1). Relies on BOM to determine
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* endian-ness, and defaults to BE.
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*/
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abstract class Utf16BytesToCodeUnitsDecoder implements _ListRangeIterator {
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final _ListRangeIterator utf16EncodedBytesIterator;
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final int replacementCodepoint;
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int _current = null;
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Utf16BytesToCodeUnitsDecoder._fromListRangeIterator(
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this.utf16EncodedBytesIterator, this.replacementCodepoint);
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factory Utf16BytesToCodeUnitsDecoder(List<int> utf16EncodedBytes, [
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int offset = 0, int length,
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int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) {
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if (length == null) {
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length = utf16EncodedBytes.length - offset;
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}
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if (hasUtf16beBom(utf16EncodedBytes, offset, length)) {
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return new Utf16beBytesToCodeUnitsDecoder(utf16EncodedBytes, offset + 2,
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length - 2, false, replacementCodepoint);
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} else if (hasUtf16leBom(utf16EncodedBytes, offset, length)) {
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return new Utf16leBytesToCodeUnitsDecoder(utf16EncodedBytes, offset + 2,
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length - 2, false, replacementCodepoint);
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} else {
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return new Utf16beBytesToCodeUnitsDecoder(utf16EncodedBytes, offset,
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length, false, replacementCodepoint);
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}
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}
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/**
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* Provides a fast way to decode the rest of the source bytes in a single
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* call. This method trades memory for improved speed in that it potentially
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* over-allocates the List containing results.
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*/
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List<int> decodeRest() {
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List<int> codeunits = new List<int>(remaining);
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int i = 0;
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while (moveNext()) {
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codeunits[i++] = current;
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}
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if (i == codeunits.length) {
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return codeunits;
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} else {
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List<int> truncCodeunits = new List<int>(i);
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truncCodeunits.setRange(0, i, codeunits);
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return truncCodeunits;
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}
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}
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int get current => _current;
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bool moveNext() {
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_current = null;
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int remaining = utf16EncodedBytesIterator.remaining;
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if (remaining == 0) {
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_current = null;
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return false;
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}
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if (remaining == 1) {
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utf16EncodedBytesIterator.moveNext();
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if (replacementCodepoint != null) {
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_current = replacementCodepoint;
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return true;
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} else {
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throw new ArgumentError(
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"Invalid UTF16 at ${utf16EncodedBytesIterator.position}");
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}
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}
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_current = decode();
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return true;
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}
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int get position => utf16EncodedBytesIterator.position ~/ 2;
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void backup([int by = 1]) {
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utf16EncodedBytesIterator.backup(2 * by);
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}
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|
|
|
int get remaining => (utf16EncodedBytesIterator.remaining + 1) ~/ 2;
|
|
|
|
void skip([int count = 1]) {
|
|
utf16EncodedBytesIterator.skip(2 * count);
|
|
}
|
|
|
|
int decode();
|
|
}
|
|
|
|
/**
|
|
* Convert UTF-16BE encoded bytes to utf16 code units by grouping 1-2 bytes
|
|
* to produce the code unit (0-(2^16)-1).
|
|
*/
|
|
class Utf16beBytesToCodeUnitsDecoder extends Utf16BytesToCodeUnitsDecoder {
|
|
Utf16beBytesToCodeUnitsDecoder(List<int> utf16EncodedBytes, [
|
|
int offset = 0, int length, bool stripBom = true,
|
|
int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) :
|
|
super._fromListRangeIterator(
|
|
(new _ListRange(utf16EncodedBytes, offset, length)).iterator,
|
|
replacementCodepoint) {
|
|
if (stripBom && hasUtf16beBom(utf16EncodedBytes, offset, length)) {
|
|
skip();
|
|
}
|
|
}
|
|
|
|
int decode() {
|
|
utf16EncodedBytesIterator.moveNext();
|
|
int hi = utf16EncodedBytesIterator.current;
|
|
utf16EncodedBytesIterator.moveNext();
|
|
int lo = utf16EncodedBytesIterator.current;
|
|
return (hi << 8) + lo;
|
|
}
|
|
}
|
|
|
|
/**
|
|
* Convert UTF-16LE encoded bytes to utf16 code units by grouping 1-2 bytes
|
|
* to produce the code unit (0-(2^16)-1).
|
|
*/
|
|
class Utf16leBytesToCodeUnitsDecoder extends Utf16BytesToCodeUnitsDecoder {
|
|
Utf16leBytesToCodeUnitsDecoder(List<int> utf16EncodedBytes, [
|
|
int offset = 0, int length, bool stripBom = true,
|
|
int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) :
|
|
super._fromListRangeIterator(
|
|
(new _ListRange(utf16EncodedBytes, offset, length)).iterator,
|
|
replacementCodepoint) {
|
|
if (stripBom && hasUtf16leBom(utf16EncodedBytes, offset, length)) {
|
|
skip();
|
|
}
|
|
}
|
|
|
|
int decode() {
|
|
utf16EncodedBytesIterator.moveNext();
|
|
int lo = utf16EncodedBytesIterator.current;
|
|
utf16EncodedBytesIterator.moveNext();
|
|
int hi = utf16EncodedBytesIterator.current;
|
|
return (hi << 8) + lo;
|
|
}
|
|
}
|