Chromium Code Reviews| Index: runtime/lib/simd128.cc |
| diff --git a/runtime/lib/simd128.cc b/runtime/lib/simd128.cc |
| index d52530b5e1659a40f5d3a87be1387fc16a3f50bc..446beceb6d4cd96d9d9406ed3cfb189116da770b 100644 |
| --- a/runtime/lib/simd128.cc |
| +++ b/runtime/lib/simd128.cc |
| @@ -60,6 +60,14 @@ DEFINE_NATIVE_ENTRY(Float32x4_fromInt32x4Bits, 2) { |
| } |
| +DEFINE_NATIVE_ENTRY(Float32x4_fromFloat64x2, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, v, arguments->NativeArgAt(1)); |
| + float _x = v.x(); |
| + float _y = v.y(); |
|
srdjan
2014/01/29 23:49:42
Cast explicitly
Cutch
2014/01/30 18:27:27
Done.
|
| + return Float32x4::New(_x, _y, 0.0f, 0.0f); |
| +} |
| + |
| + |
| DEFINE_NATIVE_ENTRY(Float32x4_add, 2) { |
| GET_NON_NULL_NATIVE_ARGUMENT(Float32x4, self, arguments->NativeArgAt(0)); |
| GET_NON_NULL_NATIVE_ARGUMENT(Float32x4, other, arguments->NativeArgAt(1)); |
| @@ -708,4 +716,180 @@ DEFINE_NATIVE_ENTRY(Int32x4_select, 3) { |
| } |
| +DEFINE_NATIVE_ENTRY(Float64x2_fromDoubles, 3) { |
| + ASSERT(AbstractTypeArguments::CheckedHandle( |
| + arguments->NativeArgAt(0)).IsNull()); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, x, arguments->NativeArgAt(1)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, y, arguments->NativeArgAt(2)); |
| + return Float64x2::New(x.value(), y.value()); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_splat, 2) { |
| + ASSERT(AbstractTypeArguments::CheckedHandle( |
| + arguments->NativeArgAt(0)).IsNull()); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, v, arguments->NativeArgAt(1)); |
| + return Float64x2::New(v.value(), v.value()); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_zero, 1) { |
| + ASSERT(AbstractTypeArguments::CheckedHandle( |
| + arguments->NativeArgAt(0)).IsNull()); |
| + return Float64x2::New(0.0, 0.0); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_fromFloat32x4, 2) { |
| + ASSERT(AbstractTypeArguments::CheckedHandle( |
| + arguments->NativeArgAt(0)).IsNull()); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float32x4, v, arguments->NativeArgAt(1)); |
| + double _x = v.x(); |
| + double _y = v.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_add, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, arguments->NativeArgAt(1)); |
| + double _x = self.x() + other.x(); |
| + double _y = self.y() + other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_negate, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + double _x = -self.x(); |
| + double _y = -self.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_sub, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, arguments->NativeArgAt(1)); |
| + double _x = self.x() - other.x(); |
| + double _y = self.y() - other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_mul, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, arguments->NativeArgAt(1)); |
| + double _x = self.x() * other.x(); |
| + double _y = self.y() * other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_div, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, arguments->NativeArgAt(1)); |
| + double _x = self.x() / other.x(); |
| + double _y = self.y() / other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_scale, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, scale, arguments->NativeArgAt(1)); |
| + double _s = scale.value(); |
| + double _x = self.x() * _s; |
| + double _y = self.y() * _s; |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_abs, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + double _x = fabs(self.x()); |
| + double _y = fabs(self.y()); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_clamp, 3) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, lo, arguments->NativeArgAt(1)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, hi, arguments->NativeArgAt(2)); |
| + // The order of the clamping must match the order of the optimized code: |
| + // MAX(MIN(self, hi), lo). |
| + double _x = self.x() < hi.x() ? self.x() : hi.x(); |
| + double _y = self.y() < hi.y() ? self.y() : hi.y(); |
| + _x = _x < lo.x() ? lo.x() : _x; |
| + _y = _y < lo.y() ? lo.y() : _y; |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_getX, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + return Double::New(self.x()); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_getY, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + return Double::New(self.y()); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_getSignMask, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + uint32_t mx = (bit_cast<uint64_t>(self.x()) & 0x8000000000000000) >> 63; |
| + uint32_t my = (bit_cast<uint64_t>(self.y()) & 0x8000000000000000) >> 63; |
| + uint32_t value = mx | (my << 1); |
| + return Integer::New(value); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_setX, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, x, arguments->NativeArgAt(1)); |
| + double _x = x.value(); |
| + double _y = self.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_setY, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Double, y, arguments->NativeArgAt(1)); |
| + double _x = self.x(); |
| + double _y = y.value(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_min, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, |
| + arguments->NativeArgAt(1)); |
| + double _x = self.x() < other.x() ? self.x() : other.x(); |
| + double _y = self.y() < other.y() ? self.y() : other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_max, 2) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, other, |
| + arguments->NativeArgAt(1)); |
| + double _x = self.x() > other.x() ? self.x() : other.x(); |
| + double _y = self.y() > other.y() ? self.y() : other.y(); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| + |
| +DEFINE_NATIVE_ENTRY(Float64x2_sqrt, 1) { |
| + GET_NON_NULL_NATIVE_ARGUMENT(Float64x2, self, arguments->NativeArgAt(0)); |
| + double _x = sqrt(self.x()); |
| + double _y = sqrt(self.y()); |
| + return Float64x2::New(_x, _y); |
| +} |
| + |
| } // namespace dart |