| OLD | NEW |
| 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #library("utf32"); | 5 #library("utf32"); |
| 6 #import("unicode_core.dart"); | 6 #import("unicode_core.dart"); |
| 7 #import("unicode.dart"); | 7 #import("unicode.dart"); |
| 8 | 8 |
| 9 /** | 9 /** |
| 10 * Decodes the UTF-32 bytes as an iterable. Thus, the consumer can only convert |
| 11 * as much of the input as needed. Determines the byte order from the BOM, |
| 12 * or uses big-endian as a default. This method always strips a leading BOM. |
| 13 * Set the replacementCharacter to null to throw an IllegalArgumentException |
| 14 * rather than replace the bad value. |
| 15 */ |
| 16 IterableUtf32Decoder decodeUtf32AsIterable(List<int> bytes, [ |
| 17 int offset = 0, int length, |
| 18 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { |
| 19 return new IterableUtf32Decoder._( |
| 20 () => new Utf32BytesDecoder(bytes, offset, length, replacementCodepoint)); |
| 21 } |
| 22 |
| 23 /** |
| 24 * Decodes the UTF-32BE bytes as an iterable. Thus, the consumer can only conver
t |
| 25 * as much of the input as needed. This method strips a leading BOM by default, |
| 26 * but can be overridden by setting the optional parameter [stripBom] to false. |
| 27 * Set the replacementCharacter to null to throw an IllegalArgumentException |
| 28 * rather than replace the bad value. |
| 29 */ |
| 30 IterableUtf32Decoder decodeUtf32beAsIterable(List<int> bytes, [ |
| 31 int offset = 0, int length, bool stripBom = true, |
| 32 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { |
| 33 return new IterableUtf32Decoder._( |
| 34 () => new Utf32beBytesDecoder(bytes, offset, length, stripBom, |
| 35 replacementCodepoint)); |
| 36 } |
| 37 |
| 38 /** |
| 39 * Decodes the UTF-32LE bytes as an iterable. Thus, the consumer can only conver
t |
| 40 * as much of the input as needed. This method strips a leading BOM by default, |
| 41 * but can be overridden by setting the optional parameter [stripBom] to false. |
| 42 * Set the replacementCharacter to null to throw an IllegalArgumentException |
| 43 * rather than replace the bad value. |
| 44 */ |
| 45 IterableUtf32Decoder decodeUtf32leAsIterable(List<int> bytes, [ |
| 46 int offset = 0, int length, bool stripBom = true, |
| 47 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { |
| 48 return new IterableUtf32Decoder._( |
| 49 () => new Utf32leBytesDecoder(bytes, offset, length, stripBom, |
| 50 replacementCodepoint)); |
| 51 } |
| 52 |
| 53 /** |
| 10 * Produce a String from a sequence of UTF-32 encoded bytes. The parameters | 54 * Produce a String from a sequence of UTF-32 encoded bytes. The parameters |
| 11 * allow an offset into a list of bytes (as int), limiting the length of the | 55 * allow an offset into a list of bytes (as int), limiting the length of the |
| 12 * values be decoded and the ability of override the default Unicode | 56 * values be decoded and the ability of override the default Unicode |
| 13 * replacement character. Set the replacementCharacter to null to throw an | 57 * replacement character. Set the replacementCharacter to null to throw an |
| 14 * IllegalArgumentException rather than replace the bad value. | 58 * IllegalArgumentException rather than replace the bad value. |
| 15 */ | 59 */ |
| 16 String decodeFromUtf32(List<int> bytes, [int offset = 0, int length, | 60 String decodeUtf32(List<int> bytes, [int offset = 0, int length, |
| 17 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) => | 61 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { |
| 18 codepointsToString(_utf32ToCodePoints(bytes, offset, length, | 62 return codepointsToString((new Utf32BytesDecoder(bytes, offset, length, |
| 19 replacementCodepoint)); | 63 replacementCodepoint)).decodeRest()); |
| 20 | 64 } |
| 21 /** | 65 /** |
| 22 * Produce a String from a sequence of UTF-32BE encoded bytes. The parameters | 66 * Produce a String from a sequence of UTF-32BE encoded bytes. The parameters |
| 23 * allow an offset into a list of bytes (as int), limiting the length of the | 67 * allow an offset into a list of bytes (as int), limiting the length of the |
| 24 * values be decoded and the ability of override the default Unicode | 68 * values be decoded and the ability of override the default Unicode |
| 25 * replacement character. Set the replacementCharacter to null to throw an | 69 * replacement character. Set the replacementCharacter to null to throw an |
| 26 * IllegalArgumentException rather than replace the bad value. | 70 * IllegalArgumentException rather than replace the bad value. |
| 27 */ | 71 */ |
| 28 String decodeFromUtf32be( | 72 String decodeUtf32be( |
| 29 List<int> bytes, [int offset = 0, int length, bool stripBom = true, | 73 List<int> bytes, [int offset = 0, int length, bool stripBom = true, |
| 30 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) => | 74 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) => |
| 31 codepointsToString(_utf32beToCodePoints(bytes, offset, length, stripBom, | 75 codepointsToString((new Utf32beBytesDecoder(bytes, offset, length, stripBom, |
| 32 replacementCodepoint)); | 76 replacementCodepoint)).decodeRest()); |
| 33 | 77 |
| 34 /** | 78 /** |
| 35 * Produce a String from a sequence of UTF-32LE encoded bytes. The parameters | 79 * Produce a String from a sequence of UTF-32LE encoded bytes. The parameters |
| 36 * allow an offset into a list of bytes (as int), limiting the length of the | 80 * allow an offset into a list of bytes (as int), limiting the length of the |
| 37 * values be decoded and the ability of override the default Unicode | 81 * values be decoded and the ability of override the default Unicode |
| 38 * replacement character. Set the replacementCharacter to null to throw an | 82 * replacement character. Set the replacementCharacter to null to throw an |
| 39 * IllegalArgumentException rather than replace the bad value. | 83 * IllegalArgumentException rather than replace the bad value. |
| 40 */ | 84 */ |
| 41 String decodeFromUtf32le( | 85 String decodeUtf32le( |
| 42 List<int> bytes, [int offset = 0, int length, bool stripBom = true, | 86 List<int> bytes, [int offset = 0, int length, bool stripBom = true, |
| 43 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) => | 87 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) => |
| 44 codepointsToString(_utf32leToCodePoints(bytes, offset, length, stripBom, | 88 codepointsToString((new Utf32leBytesDecoder(bytes, offset, length, stripBom, |
| 45 replacementCodepoint)); | 89 replacementCodepoint)).decodeRest()); |
| 46 | 90 |
| 47 /** | 91 /** |
| 48 * Produce a sequence of UTF-32 encoded bytes. | 92 * Produce a list of UTF-32 encoded bytes. This method prefixes the resulting |
| 93 * bytes with a big-endian byte-order-marker. |
| 49 */ | 94 */ |
| 50 List<int> encodeAsUtf32(String str) => | 95 List<int> encodeUtf32(String str) => |
| 51 encodeAsUtf32be(str, true); | 96 encodeUtf32be(str, true); |
| 52 | 97 |
| 53 /** | 98 /** |
| 54 * Produce a sequence of UTF-32BE encoded bytes. | 99 * Produce a list of UTF-32BE encoded bytes. By default, this method produces |
| 100 * UTF-32BE bytes with no BOM. |
| 55 */ | 101 */ |
| 56 List<int> encodeAsUtf32be(String str, [bool writeBOM = false]) { | 102 List<int> encodeUtf32be(String str, [bool writeBOM = false]) { |
| 57 List<int> utf32CodeUnits = stringToCodepoints(str); | 103 List<int> utf32CodeUnits = stringToCodepoints(str); |
| 58 List<int> encoding = new List<int>(4 * utf32CodeUnits.length + | 104 List<int> encoding = new List<int>(4 * utf32CodeUnits.length + |
| 59 (writeBOM ? 4 : 0)); | 105 (writeBOM ? 4 : 0)); |
| 60 int i = 0; | 106 int i = 0; |
| 61 if (writeBOM) { | 107 if (writeBOM) { |
| 62 encoding[i++] = 0; | 108 encoding[i++] = 0; |
| 63 encoding[i++] = 0; | 109 encoding[i++] = 0; |
| 64 encoding[i++] = UNICODE_UTF_BOM_HI; | 110 encoding[i++] = UNICODE_UTF_BOM_HI; |
| 65 encoding[i++] = UNICODE_UTF_BOM_LO; | 111 encoding[i++] = UNICODE_UTF_BOM_LO; |
| 66 } | 112 } |
| 67 for (int unit in utf32CodeUnits) { | 113 for (int unit in utf32CodeUnits) { |
| 68 encoding[i++] = (unit >> 24) & UNICODE_BYTE_ZERO_MASK; | 114 encoding[i++] = (unit >> 24) & UNICODE_BYTE_ZERO_MASK; |
| 69 encoding[i++] = (unit >> 16) & UNICODE_BYTE_ZERO_MASK; | 115 encoding[i++] = (unit >> 16) & UNICODE_BYTE_ZERO_MASK; |
| 70 encoding[i++] = (unit >> 8) & UNICODE_BYTE_ZERO_MASK; | 116 encoding[i++] = (unit >> 8) & UNICODE_BYTE_ZERO_MASK; |
| 71 encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK; | 117 encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK; |
| 72 } | 118 } |
| 73 return encoding; | 119 return encoding; |
| 74 } | 120 } |
| 75 | 121 |
| 76 /** | 122 /** |
| 77 * Produce a sequence of UTF-32LE encoded bytes. | 123 * Produce a list of UTF-32LE encoded bytes. By default, this method produces |
| 124 * UTF-32BE bytes with no BOM. |
| 78 */ | 125 */ |
| 79 List<int> encodeAsUtf32le(String str, [bool writeBOM = false]) { | 126 List<int> encodeUtf32le(String str, [bool writeBOM = false]) { |
| 80 List<int> utf32CodeUnits = stringToCodepoints(str); | 127 List<int> utf32CodeUnits = stringToCodepoints(str); |
| 81 List<int> encoding = new List<int>(4 * utf32CodeUnits.length + | 128 List<int> encoding = new List<int>(4 * utf32CodeUnits.length + |
| 82 (writeBOM ? 4 : 0)); | 129 (writeBOM ? 4 : 0)); |
| 83 int i = 0; | 130 int i = 0; |
| 84 if (writeBOM) { | 131 if (writeBOM) { |
| 85 encoding[i++] = UNICODE_UTF_BOM_LO; | 132 encoding[i++] = UNICODE_UTF_BOM_LO; |
| 86 encoding[i++] = UNICODE_UTF_BOM_HI; | 133 encoding[i++] = UNICODE_UTF_BOM_HI; |
| 87 encoding[i++] = 0; | 134 encoding[i++] = 0; |
| 88 encoding[i++] = 0; | 135 encoding[i++] = 0; |
| 89 } | 136 } |
| 90 for (int unit in utf32CodeUnits) { | 137 for (int unit in utf32CodeUnits) { |
| 91 encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK; | 138 encoding[i++] = unit & UNICODE_BYTE_ZERO_MASK; |
| 92 encoding[i++] = (unit >> 8) & UNICODE_BYTE_ZERO_MASK; | 139 encoding[i++] = (unit >> 8) & UNICODE_BYTE_ZERO_MASK; |
| 93 encoding[i++] = (unit >> 16) & UNICODE_BYTE_ZERO_MASK; | 140 encoding[i++] = (unit >> 16) & UNICODE_BYTE_ZERO_MASK; |
| 94 encoding[i++] = (unit >> 24) & UNICODE_BYTE_ZERO_MASK; | 141 encoding[i++] = (unit >> 24) & UNICODE_BYTE_ZERO_MASK; |
| 95 } | 142 } |
| 96 return encoding; | 143 return encoding; |
| 97 } | 144 } |
| 98 | 145 |
| 146 /** |
| 147 * Identifies whether a List of bytes starts (based on offset) with a |
| 148 * byte-order marker (BOM). |
| 149 */ |
| 99 bool hasUtf32Bom( | 150 bool hasUtf32Bom( |
| 100 List<int> utf32EncodedBytes, [int offset = 0, int length]) { | 151 List<int> utf32EncodedBytes, [int offset = 0, int length]) { |
| 101 return hasUtf32beBom(utf32EncodedBytes, offset, length) || | 152 return hasUtf32beBom(utf32EncodedBytes, offset, length) || |
| 102 hasUtf32leBom(utf32EncodedBytes, offset, length); | 153 hasUtf32leBom(utf32EncodedBytes, offset, length); |
| 103 } | 154 } |
| 104 | 155 |
| 156 /** |
| 157 * Identifies whether a List of bytes starts (based on offset) with a |
| 158 * big-endian byte-order marker (BOM). |
| 159 */ |
| 105 bool hasUtf32beBom(List<int> utf32EncodedBytes, [int offset = 0, int length]) { | 160 bool hasUtf32beBom(List<int> utf32EncodedBytes, [int offset = 0, int length]) { |
| 106 if (!(offset >= 0)) { | 161 int end = length != null ? offset + length : utf32EncodedBytes.length; |
| 107 throw new IllegalArgumentException("offset"); | |
| 108 } | |
| 109 | |
| 110 if (!(length == null || length >= 0)) { | |
| 111 throw new IllegalArgumentException("length"); | |
| 112 } | |
| 113 | |
| 114 int end = length != null ? | |
| 115 Math.min(utf32EncodedBytes.length, offset + length) : | |
| 116 utf32EncodedBytes.length; | |
| 117 | |
| 118 return (offset + 4) <= end && | 162 return (offset + 4) <= end && |
| 119 utf32EncodedBytes[offset] == 0 && | 163 utf32EncodedBytes[offset] == 0 && utf32EncodedBytes[offset + 1] == 0 && |
| 120 utf32EncodedBytes[offset + 1] == 0 && | |
| 121 utf32EncodedBytes[offset + 2] == UNICODE_UTF_BOM_HI && | 164 utf32EncodedBytes[offset + 2] == UNICODE_UTF_BOM_HI && |
| 122 utf32EncodedBytes[offset + 3] == UNICODE_UTF_BOM_LO; | 165 utf32EncodedBytes[offset + 3] == UNICODE_UTF_BOM_LO; |
| 123 } | 166 } |
| 124 | 167 |
| 168 /** |
| 169 * Identifies whether a List of bytes starts (based on offset) with a |
| 170 * little-endian byte-order marker (BOM). |
| 171 */ |
| 125 bool hasUtf32leBom(List<int> utf32EncodedBytes, [int offset = 0, int length]) { | 172 bool hasUtf32leBom(List<int> utf32EncodedBytes, [int offset = 0, int length]) { |
| 126 if (!(offset >= 0)) { | 173 int end = length != null ? offset + length : utf32EncodedBytes.length; |
| 127 throw new IllegalArgumentException("offset"); | |
| 128 } | |
| 129 | |
| 130 if (!(length == null || length >= 0)) { | |
| 131 throw new IllegalArgumentException("length"); | |
| 132 } | |
| 133 | |
| 134 int end = length != null ? | |
| 135 Math.min(utf32EncodedBytes.length, offset + length) : | |
| 136 utf32EncodedBytes.length; | |
| 137 | |
| 138 return (offset + 4) <= end && | 174 return (offset + 4) <= end && |
| 139 utf32EncodedBytes[offset] == UNICODE_UTF_BOM_LO && | 175 utf32EncodedBytes[offset] == UNICODE_UTF_BOM_LO && |
| 140 utf32EncodedBytes[offset + 1] == UNICODE_UTF_BOM_HI && | 176 utf32EncodedBytes[offset + 1] == UNICODE_UTF_BOM_HI && |
| 141 utf32EncodedBytes[offset + 2] == 0 && | 177 utf32EncodedBytes[offset + 2] == 0 && utf32EncodedBytes[offset + 3] == 0; |
| 142 utf32EncodedBytes[offset + 3] == 0; | |
| 143 } | 178 } |
| 144 | 179 |
| 145 void _addReplacementCodepoint(List<int> codepointBuffer, int offset, | 180 /** |
| 146 int replacementCodepoint) { | 181 * Return type of [decodeUtf32AsIterable] and variants. The Iterable type |
| 147 if(replacementCodepoint != null) { | 182 * provides an iterator on demand and the iterator will only translate bytes |
| 148 codepointBuffer[offset] = replacementCodepoint; | 183 * as requested by the user of the iterator. (Note: results are not cached.) |
| 149 } else { | 184 */ |
| 150 throw new IllegalArgumentException("Invalid encoding"); | 185 class IterableUtf32Decoder implements Iterable<int> { |
| 186 final Function codeunitsProvider; |
| 187 |
| 188 IterableUtf32Decoder._(Function this.codeunitsProvider); |
| 189 |
| 190 Utf32BytesDecoder iterator() => codeunitsProvider(); |
| 191 } |
| 192 |
| 193 /** |
| 194 * Abstrace parent class converts encoded bytes to codepoints. |
| 195 */ |
| 196 class Utf32BytesDecoder implements ListRangeIterator<int> { |
| 197 final ListRangeIterator<int> utf32EncodedBytesIterator; |
| 198 final int replacementCodepoint; |
| 199 |
| 200 Utf32BytesDecoder._fromListRangeIterator( |
| 201 ListRangeIterator<int> this.utf32EncodedBytesIterator, |
| 202 int this.replacementCodepoint); |
| 203 |
| 204 factory Utf32BytesDecoder(List<int> utf32EncodedBytes, [ |
| 205 int offset = 0, int length, |
| 206 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { |
| 207 int _length = length != null ? length : utf32EncodedBytes.length - offset; |
| 208 if (hasUtf32beBom(utf32EncodedBytes, offset, _length)) { |
| 209 return new Utf32beBytesDecoder(utf32EncodedBytes, offset + 4, _length - 4, |
| 210 false, replacementCodepoint); |
| 211 } else if (hasUtf32leBom(utf32EncodedBytes, offset, _length)) { |
| 212 return new Utf32leBytesDecoder(utf32EncodedBytes, offset + 4, _length - 4, |
| 213 false, replacementCodepoint); |
| 214 } else { |
| 215 return new Utf32beBytesDecoder(utf32EncodedBytes, offset, _length, false, |
| 216 replacementCodepoint); |
| 217 } |
| 218 } |
| 219 |
| 220 List<int> decodeRest() { |
| 221 List<int> codeunits = new List<int>(remaining); |
| 222 int i = 0; |
| 223 while (hasNext()) { |
| 224 codeunits[i++] = next(); |
| 225 } |
| 226 return codeunits; |
| 227 } |
| 228 |
| 229 bool hasNext() => utf32EncodedBytesIterator.hasNext(); |
| 230 |
| 231 int next() { |
| 232 if (utf32EncodedBytesIterator.remaining < 4) { |
| 233 utf32EncodedBytesIterator.skip(utf32EncodedBytesIterator.remaining); |
| 234 if (replacementCodepoint != null) { |
| 235 return replacementCodepoint; |
| 236 } else { |
| 237 throw new IllegalArgumentException( |
| 238 "Invalid UTF32 at ${utf32EncodedBytesIterator.position}"); |
| 239 } |
| 240 } else { |
| 241 int codepoint = decode(); |
| 242 if (_validCodepoint(codepoint)) { |
| 243 return codepoint; |
| 244 } else if (replacementCodepoint != null) { |
| 245 return replacementCodepoint; |
| 246 } else { |
| 247 throw new IllegalArgumentException( |
| 248 "Invalid UTF32 at ${utf32EncodedBytesIterator.position}"); |
| 249 } |
| 250 } |
| 251 } |
| 252 |
| 253 int get position() => utf32EncodedBytesIterator.position ~/ 4; |
| 254 |
| 255 void backup([int by = 1]) { |
| 256 utf32EncodedBytesIterator.backup(4 * by); |
| 257 } |
| 258 |
| 259 int get remaining() => (utf32EncodedBytesIterator.remaining + 3) ~/ 4; |
| 260 |
| 261 void skip([int count = 1]) { |
| 262 utf32EncodedBytesIterator.skip(4 * count); |
| 263 } |
| 264 |
| 265 abstract int decode(); |
| 266 } |
| 267 |
| 268 /** |
| 269 * Convert UTF-32BE encoded bytes to codepoints by grouping 4 bytes |
| 270 * to produce the unicode codepoint. |
| 271 */ |
| 272 class Utf32beBytesDecoder extends Utf32BytesDecoder { |
| 273 Utf32beBytesDecoder(List<int> utf32EncodedBytes, [int offset = 0, |
| 274 int length, bool stripBom = true, |
| 275 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) : |
| 276 super._fromListRangeIterator((new ListRange(utf32EncodedBytes, offset, |
| 277 length)).iterator(), replacementCodepoint) { |
| 278 if (stripBom && hasUtf32beBom(utf32EncodedBytes, offset, length)) { |
| 279 skip(); |
| 280 } |
| 281 } |
| 282 |
| 283 int decode() { |
| 284 int value = utf32EncodedBytesIterator.next(); |
| 285 value = (value << 8) + utf32EncodedBytesIterator.next(); |
| 286 value = (value << 8) + utf32EncodedBytesIterator.next(); |
| 287 value = (value << 8) + utf32EncodedBytesIterator.next(); |
| 288 return value; |
| 151 } | 289 } |
| 152 } | 290 } |
| 153 | 291 |
| 154 int _sizeCodepoints(int utf32BytesLength) => | |
| 155 ((utf32BytesLength)/4).ceil().toInt(); | |
| 156 | |
| 157 /** | 292 /** |
| 158 * Joins groups of 4 bytes (0-255) UTF-32BE to produce single code points. | 293 * Convert UTF-32BE encoded bytes to codepoints by grouping 4 bytes |
| 294 * to produce the unicode codepoint. |
| 159 */ | 295 */ |
| 160 List<int> _utf32beToCodePoints( | 296 class Utf32leBytesDecoder extends Utf32BytesDecoder { |
| 161 List<int> utf32beEncodedBytes, [int offset = 0, int length, | 297 Utf32leBytesDecoder(List<int> utf32EncodedBytes, [int offset = 0, |
| 162 bool stripBom = true, | 298 int length, bool stripBom = true, |
| 163 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { | 299 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) : |
| 164 if (!(offset >= 0)) { | 300 super._fromListRangeIterator((new ListRange(utf32EncodedBytes, offset, |
| 165 throw new IllegalArgumentException("offset"); | 301 length)).iterator(), replacementCodepoint) { |
| 302 if (stripBom && hasUtf32leBom(utf32EncodedBytes, offset, length)) { |
| 303 skip(); |
| 304 } |
| 166 } | 305 } |
| 167 | 306 |
| 168 if (!(length == null || length >= 0)) { | 307 int decode() { |
| 169 throw new IllegalArgumentException("length"); | 308 int value = (utf32EncodedBytesIterator.next()); |
| 170 } | 309 value += (utf32EncodedBytesIterator.next() << 8); |
| 171 | 310 value += (utf32EncodedBytesIterator.next() << 16); |
| 172 int end = length != null ? | 311 value += (utf32EncodedBytesIterator.next() << 24); |
| 173 Math.min(utf32beEncodedBytes.length, offset + length) : | 312 return value; |
| 174 utf32beEncodedBytes.length; | |
| 175 | |
| 176 int i = (stripBom && hasUtf32beBom(utf32beEncodedBytes, offset, length)) ? | |
| 177 offset + 4 : offset; | |
| 178 int lastIndex = end - 3; | |
| 179 List<int> codepoints = new List<int>(_sizeCodepoints(end - i)); | |
| 180 int j = 0; | |
| 181 while (i < lastIndex) { | |
| 182 int value = utf32beEncodedBytes[i++]; | |
| 183 value = (value << 8) + utf32beEncodedBytes[i++]; | |
| 184 value = (value << 8) + utf32beEncodedBytes[i++]; | |
| 185 value = (value << 8) + utf32beEncodedBytes[i++]; | |
| 186 if (_validCodepoint(value)) { | |
| 187 codepoints[j++] = value; | |
| 188 } else { | |
| 189 _addReplacementCodepoint(codepoints, j++, replacementCodepoint); | |
| 190 } | |
| 191 } | |
| 192 while (j < codepoints.length) { | |
| 193 _addReplacementCodepoint(codepoints, j++, replacementCodepoint); | |
| 194 } | |
| 195 return codepoints; | |
| 196 } | |
| 197 | |
| 198 /** | |
| 199 * Joins groups of 4 bytes (0-255) UTF-32LE to produce single code points. | |
| 200 */ | |
| 201 List<int> _utf32leToCodePoints( | |
| 202 List<int> utf32leEncodedBytes, [int offset = 0, int length, | |
| 203 bool stripBom = true, | |
| 204 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { | |
| 205 if (!(offset >= 0)) { | |
| 206 throw new IllegalArgumentException("offset"); | |
| 207 } | |
| 208 | |
| 209 if (!(length == null || length >= 0)) { | |
| 210 throw new IllegalArgumentException("length"); | |
| 211 } | |
| 212 | |
| 213 int end = length != null ? | |
| 214 Math.min(utf32leEncodedBytes.length, offset + length) : | |
| 215 utf32leEncodedBytes.length; | |
| 216 | |
| 217 int i = (stripBom && hasUtf32leBom(utf32leEncodedBytes, offset, length)) ? | |
| 218 offset + 4 : offset; | |
| 219 int lastIndex = end - 3; | |
| 220 List<int> codepoints = new List<int>(_sizeCodepoints(end - i)); | |
| 221 int j = 0; | |
| 222 while (i < lastIndex) { | |
| 223 int value = utf32leEncodedBytes[i+3]; | |
| 224 value = (value << 8) + utf32leEncodedBytes[i+2]; | |
| 225 value = (value << 8) + utf32leEncodedBytes[i+1]; | |
| 226 value = (value << 8) + utf32leEncodedBytes[i]; | |
| 227 i += 4; | |
| 228 if (_validCodepoint(value)) { | |
| 229 codepoints[j++] = value; | |
| 230 } else { | |
| 231 _addReplacementCodepoint(codepoints, j++, replacementCodepoint); | |
| 232 } | |
| 233 } | |
| 234 while (j < codepoints.length) { | |
| 235 _addReplacementCodepoint(codepoints, j++, replacementCodepoint); | |
| 236 } | |
| 237 return codepoints; | |
| 238 } | |
| 239 | |
| 240 /** | |
| 241 * Joins groups of 4 bytes (0-255) UTF-32 to produce single code points. | |
| 242 */ | |
| 243 List<int> _utf32ToCodePoints(List<int> utf32EncodedBytes, [int offset = 0, | |
| 244 int length, | |
| 245 int replacementCodepoint = UNICODE_REPLACEMENT_CHARACTER_CODEPOINT]) { | |
| 246 if (!(offset >= 0)) { | |
| 247 throw new IllegalArgumentException("offset"); | |
| 248 } | |
| 249 | |
| 250 if (!(length == null || length >= 0)) { | |
| 251 throw new IllegalArgumentException("length"); | |
| 252 } | |
| 253 | |
| 254 int end = length != null ? | |
| 255 Math.min(utf32EncodedBytes.length, offset + length) : | |
| 256 utf32EncodedBytes.length; | |
| 257 | |
| 258 if (hasUtf32beBom(utf32EncodedBytes, offset, length)) { | |
| 259 return _utf32beToCodePoints(utf32EncodedBytes, offset + 4, | |
| 260 end - (offset + 4), false); | |
| 261 } else if (hasUtf32leBom(utf32EncodedBytes, offset, length)) { | |
| 262 return _utf32leToCodePoints(utf32EncodedBytes, offset + 4, | |
| 263 end - (offset + 4), false); | |
| 264 } else { | |
| 265 return _utf32beToCodePoints(utf32EncodedBytes, offset, end - offset); | |
| 266 } | 313 } |
| 267 } | 314 } |
| 268 | 315 |
| 269 bool _validCodepoint(int codepoint) { | 316 bool _validCodepoint(int codepoint) { |
| 270 return (codepoint >= 0 && codepoint < UNICODE_UTF16_RESERVED_LO) || | 317 return (codepoint >= 0 && codepoint < UNICODE_UTF16_RESERVED_LO) || |
| 271 (codepoint > UNICODE_UTF16_RESERVED_HI && | 318 (codepoint > UNICODE_UTF16_RESERVED_HI && |
| 272 codepoint < UNICODE_VALID_RANGE_MAX); | 319 codepoint < UNICODE_VALID_RANGE_MAX); |
| 273 } | 320 } |
| OLD | NEW |