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| 1 // Copyright 2014 the V8 project authors. All rights reserved. | 1 // Copyright 2014 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "src/runtime/runtime-utils.h" | 5 #include "src/runtime/runtime-utils.h" |
| 6 | 6 |
| 7 #include "src/arguments.h" | 7 #include "src/arguments.h" |
| 8 #include "src/assembler.h" | 8 #include "src/assembler.h" |
| 9 #include "src/base/utils/random-number-generator.h" | 9 #include "src/base/utils/random-number-generator.h" |
| 10 #include "src/bootstrapper.h" | 10 #include "src/bootstrapper.h" |
| 11 #include "src/codegen.h" | 11 #include "src/codegen.h" |
| 12 #include "src/third_party/fdlibm/fdlibm.h" | 12 #include "src/third_party/fdlibm/fdlibm.h" |
| 13 | 13 |
| 14 namespace v8 { | 14 namespace v8 { |
| 15 namespace internal { | 15 namespace internal { |
| 16 | 16 |
| 17 #define RUNTIME_UNARY_MATH(Name, name) \ | 17 #define RUNTIME_UNARY_MATH(Name, name) \ |
| 18 RUNTIME_FUNCTION(Runtime_Math##Name) { \ | 18 RUNTIME_FUNCTION(Runtime_Math##Name) { \ |
| 19 HandleScope scope(isolate); \ | 19 HandleScope scope(isolate); \ |
| 20 DCHECK(args.length() == 1); \ | 20 DCHECK(args.length() == 1); \ |
| 21 isolate->counters()->math_##name##_runtime()->Increment(); \ | 21 isolate->counters()->math_##name##_runtime()->Increment(); \ |
| 22 CONVERT_DOUBLE_ARG_CHECKED(x, 0); \ | 22 CONVERT_DOUBLE_ARG_CHECKED(x, 0); \ |
| 23 return *isolate->factory()->NewHeapNumber(std::name(x)); \ | 23 return *isolate->factory()->NewHeapNumber(std::name(x)); \ |
| 24 } | 24 } |
| 25 | 25 |
| 26 RUNTIME_UNARY_MATH(Acos, acos) | |
| 27 RUNTIME_UNARY_MATH(Asin, asin) | |
| 28 RUNTIME_UNARY_MATH(Atan, atan) | |
| 29 RUNTIME_UNARY_MATH(LogRT, log) | 26 RUNTIME_UNARY_MATH(LogRT, log) |
| 30 #undef RUNTIME_UNARY_MATH | 27 #undef RUNTIME_UNARY_MATH |
| 31 | 28 |
| 32 | 29 |
| 33 RUNTIME_FUNCTION(Runtime_DoubleHi) { | 30 RUNTIME_FUNCTION(Runtime_DoubleHi) { |
| 34 HandleScope scope(isolate); | 31 HandleScope scope(isolate); |
| 35 DCHECK(args.length() == 1); | 32 DCHECK(args.length() == 1); |
| 36 CONVERT_DOUBLE_ARG_CHECKED(x, 0); | 33 CONVERT_DOUBLE_ARG_CHECKED(x, 0); |
| 37 uint64_t unsigned64 = double_to_uint64(x); | 34 uint64_t unsigned64 = double_to_uint64(x); |
| 38 uint32_t unsigned32 = static_cast<uint32_t>(unsigned64 >> 32); | 35 uint32_t unsigned32 = static_cast<uint32_t>(unsigned64 >> 32); |
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| 221 HandleScope scope(isolate); | 218 HandleScope scope(isolate); |
| 222 DCHECK(args.length() == 1); | 219 DCHECK(args.length() == 1); |
| 223 isolate->counters()->math_sqrt_runtime()->Increment(); | 220 isolate->counters()->math_sqrt_runtime()->Increment(); |
| 224 | 221 |
| 225 CONVERT_DOUBLE_ARG_CHECKED(x, 0); | 222 CONVERT_DOUBLE_ARG_CHECKED(x, 0); |
| 226 lazily_initialize_fast_sqrt(isolate); | 223 lazily_initialize_fast_sqrt(isolate); |
| 227 return *isolate->factory()->NewNumber(fast_sqrt(x, isolate)); | 224 return *isolate->factory()->NewNumber(fast_sqrt(x, isolate)); |
| 228 } | 225 } |
| 229 | 226 |
| 230 | 227 |
| 231 RUNTIME_FUNCTION(Runtime_MathFround) { | |
| 232 HandleScope scope(isolate); | |
| 233 DCHECK(args.length() == 1); | |
| 234 | |
| 235 CONVERT_DOUBLE_ARG_CHECKED(x, 0); | |
| 236 float xf = DoubleToFloat32(x); | |
| 237 return *isolate->factory()->NewNumber(xf); | |
| 238 } | |
| 239 | |
| 240 | |
| 241 RUNTIME_FUNCTION(Runtime_GenerateRandomNumbers) { | 228 RUNTIME_FUNCTION(Runtime_GenerateRandomNumbers) { |
| 242 HandleScope scope(isolate); | 229 HandleScope scope(isolate); |
| 243 DCHECK(args.length() == 1); | 230 DCHECK(args.length() == 1); |
| 244 // Random numbers in the snapshot are not really that random. | 231 // Random numbers in the snapshot are not really that random. |
| 245 DCHECK(!isolate->bootstrapper()->IsActive()); | 232 DCHECK(!isolate->bootstrapper()->IsActive()); |
| 246 static const int kState0Offset = 0; | 233 static const int kState0Offset = 0; |
| 247 static const int kState1Offset = 1; | 234 static const int kState1Offset = 1; |
| 248 static const int kRandomBatchSize = 64; | 235 static const int kRandomBatchSize = 64; |
| 249 CONVERT_ARG_HANDLE_CHECKED(Object, maybe_typed_array, 0); | 236 CONVERT_ARG_HANDLE_CHECKED(Object, maybe_typed_array, 0); |
| 250 Handle<JSTypedArray> typed_array; | 237 Handle<JSTypedArray> typed_array; |
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| 278 base::RandomNumberGenerator::XorShift128(&state0, &state1); | 265 base::RandomNumberGenerator::XorShift128(&state0, &state1); |
| 279 array[i] = base::RandomNumberGenerator::ToDouble(state0, state1); | 266 array[i] = base::RandomNumberGenerator::ToDouble(state0, state1); |
| 280 } | 267 } |
| 281 // Persist current state. | 268 // Persist current state. |
| 282 array[kState0Offset] = uint64_to_double(state0); | 269 array[kState0Offset] = uint64_to_double(state0); |
| 283 array[kState1Offset] = uint64_to_double(state1); | 270 array[kState1Offset] = uint64_to_double(state1); |
| 284 return *typed_array; | 271 return *typed_array; |
| 285 } | 272 } |
| 286 } // namespace internal | 273 } // namespace internal |
| 287 } // namespace v8 | 274 } // namespace v8 |
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