653ee92bfb
BUG= http://dartbug.com/10268 R=regis@google.com Review URL: https://codereview.chromium.org//23129005 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@26340 260f80e4-7a28-3924-810f-c04153c831b5
173 lines
5.4 KiB
Dart
173 lines
5.4 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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import "dart:typed_data";
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// A VM patch of the dart:math library.
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// If [x] is an [int] and [exponent] is a non-negative [int], the result is
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// an [int], otherwise the result is a [double].
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patch num pow(num x, num exponent) {
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if ((x is int) && (exponent is int) && (exponent >= 0)) {
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return _intPow(x, exponent);
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}
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// doublePow will call exponent.toDouble().
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return _doublePow(x.toDouble(), exponent);
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}
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double _doublePow(double base, num exponent) {
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if (exponent == 0) {
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return 1.0; // ECMA-262 15.8.2.13
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}
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if (exponent is! num) {
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throw new ArgumentError(null);
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}
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double doubleExponent = exponent.toDouble();
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if (base.isNaN || exponent.isNaN) {
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return double.NAN;
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}
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return _pow(base, doubleExponent);
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}
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double _pow(double base, double exponent) native "Math_doublePow";
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int _intPow(int base, int exponent) {
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// Exponentiation by squaring.
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int result = 1;
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while (exponent != 0) {
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if ((exponent & 1) == 1) {
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result *= base;
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}
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exponent >>= 1;
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// Skip unnecessary operation (can overflow to Mint or Bigint).
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if (exponent != 0) {
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base *= base;
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}
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}
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return result;
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}
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patch double atan2(num a, num b) => _atan2(a.toDouble(), b.toDouble());
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patch double sin(num value) => _sin(value.toDouble());
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patch double cos(num value) => _cos(value.toDouble());
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patch double tan(num value) => _tan(value.toDouble());
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patch double acos(num value) => _acos(value.toDouble());
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patch double asin(num value) => _asin(value.toDouble());
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patch double atan(num value) => _atan(value.toDouble());
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patch double sqrt(num value) => _sqrt(value.toDouble());
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patch double exp(num value) => _exp(value.toDouble());
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patch double log(num value) => _log(value.toDouble());
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double _atan2(double a, double b) native "Math_atan2";
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double _sin(double x) native "Math_sin";
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double _cos(double x) native "Math_cos";
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double _tan(double x) native "Math_tan";
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double _acos(double x) native "Math_acos";
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double _asin(double x) native "Math_asin";
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double _atan(double x) native "Math_atan";
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double _sqrt(double x) native "Math_sqrt";
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double _exp(double x) native "Math_exp";
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double _log(double x) native "Math_log";
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// TODO(iposva): Handle patch methods within a patch class correctly.
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patch class Random {
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/*patch*/ factory Random([int seed]) {
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if (seed == null) {
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seed = _Random._nextSeed();
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}
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// Crank a couple of times to distribute the seed bits a bit further.
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return new _Random().._setupSeed(seed)
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.._nextState()
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.._nextState()
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.._nextState()
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.._nextState();
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}
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}
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class _Random implements Random {
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// Internal state of the random number generator.
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final _state = new Uint32List(2);
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static const kSTATE_LO = 0;
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static const kSTATE_HI = 1;
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// Implements:
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// do {
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// seed = (seed + 0x5A17) & _Random._MASK_64;
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// } while (seed == 0);
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// _state[kSTATE_LO] = seed & _MASK_32;
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// _state[kSTATE_HI] = seed >> 32;
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// This is a native to prevent 64-bit operations in Dart, which
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// fail with --throw_on_javascript_int_overflow.
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void _setupSeed(int seed) native "Random_setupSeed";
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// The algorithm used here is Multiply with Carry (MWC) with a Base b = 2^32.
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// http://en.wikipedia.org/wiki/Multiply-with-carry
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// The constant A is selected from "Numerical Recipes 3rd Edition" p.348 B1.
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// Implements:
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// var state = ((_A * (_state[kSTATE_LO])) + _state[kSTATE_HI]) & _MASK_64;
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// _state[kSTATE_LO] = state & _MASK_32;
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// _state[kSTATE_HI] = state >> 32;
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// This is a native to prevent 64-bit operations in Dart, which
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// fail with --throw_on_javascript_int_overflow.
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void _nextState() native "Random_nextState";
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int nextInt(int max) {
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// TODO(srdjan): Remove the 'limit' check once optimizing comparison of
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// Smi-s with Mint constants.
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final limit = 0x3FFFFFFF;
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if (max <= 0 || ((max > limit) && (max > _POW2_32))) {
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throw new ArgumentError("max must be positive and < 2^32:"
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" $max");
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}
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if ((max & -max) == max) {
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// Fast case for powers of two.
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_nextState();
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return _state[kSTATE_LO] & (max - 1);
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}
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var rnd32;
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var result;
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do {
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_nextState();
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rnd32 = _state[kSTATE_LO];
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result = rnd32 % max;
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} while ((rnd32 - result + max) >= _POW2_32);
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return result;
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}
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double nextDouble() {
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return ((nextInt(1 << 26) * _POW2_27_D) + nextInt(1 << 27)) / _POW2_53_D;
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}
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bool nextBool() {
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return nextInt(2) == 0;
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}
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// Constants used by the algorithm or masking.
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static const _MASK_32 = (1 << 32) - 1;
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static const _MASK_64 = (1 << 64) - 1;
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static const _POW2_32 = 1 << 32;
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static const _POW2_53_D = 1.0 * (1 << 53);
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static const _POW2_27_D = 1.0 * (1 << 27);
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static const _A = 0xffffda61;
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// Use a singleton Random object to get a new seed if no seed was passed.
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static var _prng = null;
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static int _nextSeed() {
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if (_prng == null) {
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// TODO(iposva): Use system to get a random seed.
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_prng = new Random(new DateTime.now().millisecondsSinceEpoch);
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}
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// Trigger the PRNG once to change the internal state.
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_prng._nextState();
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return _prng._state[kSTATE_LO];
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}
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}
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