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| 1 // Copyright 2015 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. |
| 4 |
| 5 #include "src/v8.h" |
| 6 |
| 7 #include "src/arguments.h" |
| 8 #include "src/base/macros.h" |
| 9 #include "src/conversions.h" |
| 10 #include "src/runtime/runtime-utils.h" |
| 11 |
| 12 // Implement Single Instruction Multiple Data (SIMD) operations as defined in |
| 13 // the SIMD.js draft spec: |
| 14 // http://littledan.github.io/simd.html |
| 15 |
| 16 #define NumberToFloat32x4Component NumberToFloat |
| 17 |
| 18 #define CONVERT_SIMD_LANE_ARG_CHECKED(name, index, lanes) \ |
| 19 RUNTIME_ASSERT(args[index]->IsSmi()); \ |
| 20 int name = args.smi_at(index); \ |
| 21 RUNTIME_ASSERT(name >= 0 && name < lanes); |
| 22 |
| 23 #define SIMD4_CREATE_FUNCTION(type) \ |
| 24 RUNTIME_FUNCTION(Runtime_Create##type) { \ |
| 25 HandleScope scope(isolate); \ |
| 26 DCHECK(args.length() == 4); \ |
| 27 CONVERT_NUMBER_ARG_HANDLE_CHECKED(w, 0); \ |
| 28 CONVERT_NUMBER_ARG_HANDLE_CHECKED(x, 1); \ |
| 29 CONVERT_NUMBER_ARG_HANDLE_CHECKED(y, 2); \ |
| 30 CONVERT_NUMBER_ARG_HANDLE_CHECKED(z, 3); \ |
| 31 return *isolate->factory()->NewFloat32x4( \ |
| 32 NumberTo##type##Component(*w), NumberTo##type##Component(*x), \ |
| 33 NumberTo##type##Component(*y), NumberTo##type##Component(*z)); \ |
| 34 } |
| 35 |
| 36 #define SIMD_CREATE_WRAPPER_FUNCTION(type) \ |
| 37 RUNTIME_FUNCTION(Runtime_New##type##Wrapper) { \ |
| 38 HandleScope scope(isolate); \ |
| 39 DCHECK(args.length() == 1); \ |
| 40 CONVERT_ARG_HANDLE_CHECKED(type, value, 0); \ |
| 41 return *Object::ToObject(isolate, value).ToHandleChecked(); \ |
| 42 } |
| 43 |
| 44 #define SIMD_CHECK_FUNCTION(type) \ |
| 45 RUNTIME_FUNCTION(Runtime_##type##Check) { \ |
| 46 HandleScope scope(isolate); \ |
| 47 CONVERT_ARG_HANDLE_CHECKED(type, a, 0); \ |
| 48 return *a; \ |
| 49 } |
| 50 |
| 51 #define SIMD_EXTRACT_LANE_FUNCTION(type, lanes) \ |
| 52 RUNTIME_FUNCTION(Runtime_##type##ExtractLane) { \ |
| 53 HandleScope scope(isolate); \ |
| 54 DCHECK(args.length() == 2); \ |
| 55 CONVERT_ARG_HANDLE_CHECKED(type, a, 0); \ |
| 56 CONVERT_SIMD_LANE_ARG_CHECKED(lane, 1, lanes); \ |
| 57 return *isolate->factory()->NewNumber(a->get_lane(lane)); \ |
| 58 } |
| 59 |
| 60 #define SIMD4_EQUALS_FUNCTION(type) \ |
| 61 RUNTIME_FUNCTION(Runtime_##type##Equals) { \ |
| 62 HandleScope scope(isolate); \ |
| 63 DCHECK(args.length() == 2); \ |
| 64 CONVERT_ARG_HANDLE_CHECKED(type, a, 0); \ |
| 65 CONVERT_ARG_HANDLE_CHECKED(type, b, 1); \ |
| 66 return Equals(a->get_lane(0), b->get_lane(0)) && \ |
| 67 Equals(a->get_lane(1), b->get_lane(1)) && \ |
| 68 Equals(a->get_lane(2), b->get_lane(2)) && \ |
| 69 Equals(a->get_lane(3), b->get_lane(3)) \ |
| 70 ? Smi::FromInt(EQUAL) \ |
| 71 : Smi::FromInt(NOT_EQUAL); \ |
| 72 } |
| 73 |
| 74 #define SIMD4_SAME_VALUE_FUNCTION(type) \ |
| 75 RUNTIME_FUNCTION(Runtime_##type##SameValue) { \ |
| 76 HandleScope scope(isolate); \ |
| 77 DCHECK(args.length() == 2); \ |
| 78 CONVERT_ARG_HANDLE_CHECKED(type, a, 0); \ |
| 79 CONVERT_ARG_HANDLE_CHECKED(type, b, 1); \ |
| 80 return isolate->heap()->ToBoolean( \ |
| 81 SameValue(a->get_lane(0), b->get_lane(0)) && \ |
| 82 SameValue(a->get_lane(1), b->get_lane(1)) && \ |
| 83 SameValue(a->get_lane(2), b->get_lane(2)) && \ |
| 84 SameValue(a->get_lane(3), b->get_lane(3))); \ |
| 85 } |
| 86 |
| 87 #define SIMD4_SAME_VALUE_ZERO_FUNCTION(type) \ |
| 88 RUNTIME_FUNCTION(Runtime_##type##SameValueZero) { \ |
| 89 HandleScope scope(isolate); \ |
| 90 DCHECK(args.length() == 2); \ |
| 91 CONVERT_ARG_HANDLE_CHECKED(type, a, 0); \ |
| 92 CONVERT_ARG_HANDLE_CHECKED(type, b, 1); \ |
| 93 return isolate->heap()->ToBoolean( \ |
| 94 SameValueZero(a->get_lane(0), b->get_lane(0)) && \ |
| 95 SameValueZero(a->get_lane(1), b->get_lane(1)) && \ |
| 96 SameValueZero(a->get_lane(2), b->get_lane(2)) && \ |
| 97 SameValueZero(a->get_lane(3), b->get_lane(3))); \ |
| 98 } |
| 99 |
| 100 #define SIMD4_EXTRACT_LANE_FUNCTION(type) SIMD_EXTRACT_LANE_FUNCTION(type, 4) |
| 101 |
| 102 #define SIMD4_FUNCTIONS(type) \ |
| 103 SIMD4_CREATE_FUNCTION(type) \ |
| 104 SIMD_CREATE_WRAPPER_FUNCTION(type) \ |
| 105 SIMD_CHECK_FUNCTION(type) \ |
| 106 SIMD4_EXTRACT_LANE_FUNCTION(type) \ |
| 107 SIMD4_EQUALS_FUNCTION(type) \ |
| 108 SIMD4_SAME_VALUE_FUNCTION(type) \ |
| 109 SIMD4_SAME_VALUE_ZERO_FUNCTION(type) |
| 110 |
| 111 |
| 112 namespace v8 { |
| 113 namespace internal { |
| 114 |
| 115 namespace { |
| 116 |
| 117 // Convert from Number object to float. |
| 118 inline float NumberToFloat(Object* number) { |
| 119 return DoubleToFloat32(number->Number()); |
| 120 } |
| 121 |
| 122 |
| 123 inline bool Equals(float x, float y) { return x == y; } |
| 124 |
| 125 |
| 126 inline bool SameValue(float x, float y) { |
| 127 if (std::isnan(x) && std::isnan(y)) return true; |
| 128 if (x != 0 || y != 0) return x == y; |
| 129 if (std::signbit(x) == std::signbit(y)) return true; |
| 130 return false; |
| 131 } |
| 132 |
| 133 |
| 134 inline bool SameValueZero(float x, float y) { |
| 135 if (std::isnan(x) && std::isnan(y)) return true; |
| 136 return x == y; |
| 137 } |
| 138 |
| 139 } // namespace |
| 140 |
| 141 SIMD4_FUNCTIONS(Float32x4) |
| 142 } |
| 143 } // namespace v8::internal |
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