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Issue 2103733003: [turbofan] Introduce Float64Pow and NumberPow operators. (Closed) Base URL: https://chromium.googlesource.com/v8/v8.git@master
Patch Set: REBASE on ARM64 bug fix. Created 4 years, 5 months ago
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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"
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28 HandleScope scope(isolate); 28 HandleScope scope(isolate);
29 DCHECK(args.length() == 1); 29 DCHECK(args.length() == 1);
30 CONVERT_DOUBLE_ARG_CHECKED(x, 0); 30 CONVERT_DOUBLE_ARG_CHECKED(x, 0);
31 uint64_t unsigned64 = double_to_uint64(x); 31 uint64_t unsigned64 = double_to_uint64(x);
32 uint32_t unsigned32 = static_cast<uint32_t>(unsigned64); 32 uint32_t unsigned32 = static_cast<uint32_t>(unsigned64);
33 int32_t signed32 = bit_cast<int32_t, uint32_t>(unsigned32); 33 int32_t signed32 = bit_cast<int32_t, uint32_t>(unsigned32);
34 return *isolate->factory()->NewNumber(signed32); 34 return *isolate->factory()->NewNumber(signed32);
35 } 35 }
36 36
37 37
38 // Slow version of Math.pow. We check for fast paths for special cases.
39 // Used if VFP3 is not available.
40 RUNTIME_FUNCTION(Runtime_MathPow) {
41 HandleScope scope(isolate);
42 DCHECK(args.length() == 2);
43 isolate->counters()->math_pow_runtime()->Increment();
44
45 CONVERT_DOUBLE_ARG_CHECKED(x, 0);
46
47 // If the second argument is a smi, it is much faster to call the
48 // custom powi() function than the generic pow().
49 if (args[1]->IsSmi()) {
50 int y = args.smi_at(1);
51 return *isolate->factory()->NewNumber(power_double_int(x, y));
52 }
53
54 CONVERT_DOUBLE_ARG_CHECKED(y, 1);
55 double result = power_helper(isolate, x, y);
56 if (std::isnan(result)) return isolate->heap()->nan_value();
57 return *isolate->factory()->NewNumber(result);
58 }
59
60
61 // Fast version of Math.pow if we know that y is not an integer and y is not
62 // -0.5 or 0.5. Used as slow case from full codegen.
63 RUNTIME_FUNCTION(Runtime_MathPowRT) {
64 HandleScope scope(isolate);
65 DCHECK(args.length() == 2);
66 isolate->counters()->math_pow_runtime()->Increment();
67
68 CONVERT_DOUBLE_ARG_CHECKED(x, 0);
69 CONVERT_DOUBLE_ARG_CHECKED(y, 1);
70 if (y == 0) {
71 return Smi::FromInt(1);
72 } else {
73 double result = power_double_double(x, y);
74 if (std::isnan(result)) return isolate->heap()->nan_value();
75 return *isolate->factory()->NewNumber(result);
76 }
77 }
78
79
80 RUNTIME_FUNCTION(Runtime_GenerateRandomNumbers) { 38 RUNTIME_FUNCTION(Runtime_GenerateRandomNumbers) {
81 HandleScope scope(isolate); 39 HandleScope scope(isolate);
82 DCHECK(args.length() == 1); 40 DCHECK(args.length() == 1);
83 if (isolate->serializer_enabled()) { 41 if (isolate->serializer_enabled()) {
84 // Random numbers in the snapshot are not really that random. And we cannot 42 // Random numbers in the snapshot are not really that random. And we cannot
85 // return a typed array as it cannot be serialized. To make calling 43 // return a typed array as it cannot be serialized. To make calling
86 // Math.random possible when creating a custom startup snapshot, we simply 44 // Math.random possible when creating a custom startup snapshot, we simply
87 // return a normal array with a single random number. 45 // return a normal array with a single random number.
88 Handle<HeapNumber> random_number = isolate->factory()->NewHeapNumber( 46 Handle<HeapNumber> random_number = isolate->factory()->NewHeapNumber(
89 isolate->random_number_generator()->NextDouble()); 47 isolate->random_number_generator()->NextDouble());
(...skipping 37 matching lines...) Expand 10 before | Expand all | Expand 10 after
127 base::RandomNumberGenerator::XorShift128(&state0, &state1); 85 base::RandomNumberGenerator::XorShift128(&state0, &state1);
128 array[i] = base::RandomNumberGenerator::ToDouble(state0, state1); 86 array[i] = base::RandomNumberGenerator::ToDouble(state0, state1);
129 } 87 }
130 // Persist current state. 88 // Persist current state.
131 array[kState0Offset] = uint64_to_double(state0); 89 array[kState0Offset] = uint64_to_double(state0);
132 array[kState1Offset] = uint64_to_double(state1); 90 array[kState1Offset] = uint64_to_double(state1);
133 return *typed_array; 91 return *typed_array;
134 } 92 }
135 } // namespace internal 93 } // namespace internal
136 } // namespace v8 94 } // namespace v8
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