// 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. // Dart core library. // VM implementation of int. patch class int { static bool _isWhitespace(int codePoint) { return (codePoint == 32) || // Space. ((9 <= codePoint) && (codePoint <= 13)); // CR, LF, TAB, etc. } static bool is64Bit() => 1 << 32 is _Smi; static int _tryParseSmi(String str) { if (str.isEmpty) return null; var ix = 0; var endIx = str.length - 1; // Find first and last non-whitespace. while (ix <= endIx) { if (!_isWhitespace(str.codeUnitAt(ix))) break; ix++; } if (endIx < ix) { return null; // Empty. } while (endIx > ix) { if (!_isWhitespace(str.codeUnitAt(endIx))) break; endIx--; } var isNegative = false; var c = str.codeUnitAt(ix); // Check for leading '+' or '-'. if ((c == 0x2b) || (c == 0x2d)) { ix++; isNegative = (c == 0x2d); if (ix > endIx) { return null; // Empty. } } int smiLimit = is64Bit() ? 18 : 9; if ((endIx - ix) >= smiLimit) { return null; // May not fit into a Smi. } var result = 0; for (int i = ix; i <= endIx; i++) { var c = str.codeUnitAt(i) - 0x30; if ((c > 9) || (c < 0)) { return null; } result = result * 10 + c; } return isNegative ? -result : result; } static int _parse(String str) { int res = _tryParseSmi(str); if (res == null) { res = _native_parse(str); } return res; } static int _native_parse(String str) native "Integer_parse"; static int _throwFormatException(String source) { throw new FormatException(source); } /* patch */ static int parse(String source, { int radix, int onError(String str) }) { if (radix == null) { int result = _parse(source); if (result == null) { if (onError == null) { throw new FormatException(source); } return onError(source); } return result; } return _slowParse(source, radix, onError); } static int _slowParse(String source, int radix, int onError(String str)) { if (source is! String) throw new ArgumentError(source); if (radix is! int) throw new ArgumentError("Radix is not an integer"); if (radix < 2 || radix > 36) { throw new RangeError("Radix $radix not in range 2..36"); } if (onError == null) { onError = _throwFormatException; } // Remove leading and trailing white space. source = source.trim(); if (source.isEmpty) return onError(source); bool negative = false; int result = 0; // The value 99 is used to represent a non-digit. It is too large to be // a digit value in any of the used bases. const NA = 99; const List digits = const [ 00, 01, 02, 03, 04, 05, 06, 07, 08, 09, NA, NA, NA, NA, NA, NA, // 0x30 NA, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, // 0x40 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, NA, NA, NA, NA, NA, // 0x50 NA, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, // 0x60 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, NA, NA, NA, NA, NA, // 0x70 ]; int i = 0; int code = source.codeUnitAt(i); if (code == 0x2d || code == 0x2b) { // Starts with a plus or minus-sign. negative = (code == 0x2d); if (source.length == 1) return onError(source); i = 1; code = source.codeUnitAt(i); } do { if (code < 0x30 || code > 0x7f) return onError(source); int digit = digits[code - 0x30]; if (digit >= radix) return onError(source); result = result * radix + digit; i++; if (i == source.length) break; code = source.codeUnitAt(i); } while (true); return negative ? -result : result; } }