| Index: sdk/lib/scalarlist/simd128.dart
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| diff --git a/sdk/lib/scalarlist/simd128.dart b/sdk/lib/scalarlist/simd128.dart
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| new file mode 100644
|
| index 0000000000000000000000000000000000000000..7f01861082677b1a64d3c08e96132af59b84a39c
|
| --- /dev/null
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| +++ b/sdk/lib/scalarlist/simd128.dart
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| @@ -0,0 +1,189 @@
|
| +// Copyright (c) 2013, 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.
|
| +
|
| +part of dart.scalarlist;
|
| +
|
| +/**
|
| + * Interface of Dart Float32x4 and operations.
|
| + * Float32x4 stores 4 32-bit floating point values in "lanes".
|
| + * The lanes are "x", "y", "z", and "w" respectively.
|
| + */
|
| +abstract class Float32x4 {
|
| + external factory Float32x4(double x, double y, double z, double w);
|
| + external factory Float32x4.zero();
|
| +
|
| + /// Addition operator.
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| + Float32x4 operator+(Float32x4 other);
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| + /// Negate operator.
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| + Float32x4 operator-();
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| + /// Subtraction operator.
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| + Float32x4 operator-(Float32x4 other);
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| + /// Multiplication operator.
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| + Float32x4 operator*(Float32x4 other);
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| + /// Division operator.
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| + Float32x4 operator/(Float32x4 other);
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| +
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| + /// Relational less than.
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| + Uint32x4 lessThan(Float32x4 other);
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| + /// Relational less than or equal.
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| + Uint32x4 lessThanOrEqual(Float32x4 other);
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| + /// Relational greater than.
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| + Uint32x4 greaterThan(Float32x4 other);
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| + /// Relational greater than or equal.
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| + Uint32x4 greaterThanOrEqual(Float32x4 other);
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| + /// Relational equal.
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| + Uint32x4 equal(Float32x4 other);
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| + /// Relational not-equal.
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| + Uint32x4 notEqual(Float32x4 other);
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| +
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| + /// Returns a copy of [this] each lane being scaled by [s].
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| + Float32x4 scale(double s);
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| + /// Returns the absolute value of this [Simd128Float32].
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| + Float32x4 abs();
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| + /// Clamps [this] to be in the range [lowerLimit]-[upperLimit].
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| + Float32x4 clamp(Float32x4 lowerLimit,
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| + Float32x4 upperLimit);
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| +
|
| + /// Extracted x value.
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| + double get x;
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| + /// Extracted y value.
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| + double get y;
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| + /// Extracted z value.
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| + double get z;
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| + /// Extracted w value.
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| + double get w;
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| +
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| + /// Returns a new [Float32x4] with [this]' x value in all four lanes.
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| + Float32x4 get xxxx;
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| + /// Returns a new [Float32x4] with [this]' y value in all four lanes.
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| + Float32x4 get yyyy;
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| + /// Returns a new [Float32x4] with [this]' z value in all four lanes.
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| + Float32x4 get zzzz;
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| + /// Returns a new [Float32x4] with [this]' w value in all four lanes.
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| + Float32x4 get wwww;
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| + // TODO(johnmccutchan): Add all 256 possible combinations.
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| +
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| + /// Returns a new [Float32x4] copied from [this] with a new x value.
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| + Float32x4 withX(double x);
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| + /// Returns a new [Float32x4] copied from [this] with a new y value.
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| + Float32x4 withY(double y);
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| + /// Returns a new [Float32x4] copied from [this] with a new z value.
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| + Float32x4 withZ(double z);
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| + /// Returns a new [Float32x4] copied from [this] with a new w value.
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| + Float32x4 withW(double w);
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| +
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| + /// Returns the lane-wise minimum value in [this] or [other].
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| + Float32x4 min(Float32x4 other);
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| +
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| + /// Returns the lane-wise maximum value in [this] or [other].
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| + Float32x4 max(Float32x4 other);
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| +
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| + /// Returns the square root of [this].
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| + Float32x4 sqrt();
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| +
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| + /// Returns the reciprocal of [this].
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| + Float32x4 reciprocal();
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| +
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| + /// Returns the square root of the reciprocal of [this].
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| + Float32x4 reciprocalSqrt();
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| +
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| + /// Returns a bit-wise copy of [this] as a [Uint32x4].
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| + Uint32x4 toUint32x4();
|
| +}
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| +
|
| +/**
|
| + * Interface of Dart Uint32x4 and operations.
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| + * Uint32x4 stores 4 32-bit bit-masks in "lanes".
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| + * The lanes are "x", "y", "z", and "w" respectively.
|
| + */
|
| +abstract class Uint32x4 {
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| + external factory Uint32x4(int x, int y, int z, int w);
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| + external factory Uint32x4.bool(bool x, bool y, bool z, bool w);
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| +
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| + /// The bit-wise or operator.
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| + Uint32x4 operator|(Uint32x4 other);
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| + /// The bit-wise and operator.
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| + Uint32x4 operator&(Uint32x4 other);
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| + /// The bit-wise xor operator.
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| + Uint32x4 operator^(Uint32x4 other);
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| +
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| + /// Extract 32-bit mask from x lane.
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| + int get x;
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| + /// Extract 32-bit mask from y lane.
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| + int get y;
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| + /// Extract 32-bit mask from z lane.
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| + int get z;
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| + /// Extract 32-bit mask from w lane.
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| + int get w;
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| +
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| + /// Returns a new [Uint32x4] copied from [this] with a new x value.
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| + Uint32x4 withX(int x);
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| + /// Returns a new [Uint32x4] copied from [this] with a new y value.
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| + Uint32x4 withY(int y);
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| + /// Returns a new [Uint32x4] copied from [this] with a new z value.
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| + Uint32x4 withZ(int z);
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| + /// Returns a new [Uint32x4] copied from [this] with a new w value.
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| + Uint32x4 withW(int w);
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| +
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| + /// Extracted x value. Returns false for 0, true for any other value.
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| + bool get flagX;
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| + /// Extracted y value. Returns false for 0, true for any other value.
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| + bool get flagY;
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| + /// Extracted z value. Returns false for 0, true for any other value.
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| + bool get flagZ;
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| + /// Extracted w value. Returns false for 0, true for any other value.
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| + bool get flagW;
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| +
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| + /// Returns a new [Uint32x4] copied from [this] with a new x value.
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| + Uint32x4 withFlagX(bool x);
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| + /// Returns a new [Uint32x4] copied from [this] with a new y value.
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| + Uint32x4 withFlagY(bool y);
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| + /// Returns a new [Uint32x4] copied from [this] with a new z value.
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| + Uint32x4 withFlagZ(bool z);
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| + /// Returns a new [Uint32x4] copied from [this] with a new w value.
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| + Uint32x4 withFlagW(bool w);
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| +
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| + /// Merge [trueValue] and [falseValue] based on [this]' bit mask:
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| + /// Select bit from [trueValue] when bit in [this] is on.
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| + /// Select bit from [falseValue] when bit in [this] is off.
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| + Float32x4 select(Float32x4 trueValue,
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| + Float32x4 falseValue);
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| +
|
| + /// Returns a bit-wise copy of [this] as a [Float32x4].
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| + Float32x4 toFloat32x4();
|
| +}
|
| +
|
| +/**
|
| + * A fixed-length list of Float32x4 numbers that is viewable as a
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| + * [ByteArray]. For long lists, this implementation will be considerably more
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| + * space- and time-efficient than the default [List] implementation.
|
| + */
|
| +abstract class Float32x4List implements List<Float32x4>,
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| + ByteArrayViewable {
|
| + /**
|
| + * Creates a [Simd128Float32List] of the specified length (in elements),
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| + * all of whose elements are initially zero.
|
| + */
|
| + external factory Float32x4List(int length);
|
| +
|
| + /**
|
| + * Creates a [Float32x4List] _view_ of the specified region in the
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| + * specified byte [array]. Changes in the [Float32x4List] will be
|
| + * visible in the byte array and vice versa. If the [start] index of the
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| + * region is not specified, it defaults to zero (the first byte in the byte
|
| + * array). If the length is not specified, it defaults to null, which
|
| + * indicates that the view extends to the end of the byte array.
|
| + *
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| + * Throws [ArgumentError] if the length of the specified region is not
|
| + * divisible by 16 (the size of a "Float32x4" in bytes), or if the
|
| + * [start] of the region is not divisible by 16. If, however, [array] is a
|
| + * view of another byte array, this constructor will throw [ArgumentError]
|
| + * if the implicit starting position in the "ultimately backing" byte array
|
| + * is not divisible by 16. In plain terms, this constructor throws
|
| + * [ArgumentError] if the specified region does not contain an integral
|
| + * number of "Float32x4s," or if it is not "Float32x4-aligned."
|
| + */
|
| + external factory Float32x4List.view(ByteArray array,
|
| + [int start = 0, int length]);
|
| +}
|
|
|