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1 // Copyright 2014 the V8 project authors. All rights reserved. Use of this | 1 // Copyright 2014 the V8 project authors. All rights reserved. Use of this |
2 // source code is governed by a BSD-style license that can be found in the | 2 // source code is governed by a BSD-style license that can be found in the |
3 // LICENSE file. | 3 // LICENSE file. |
4 | 4 |
5 #include <cmath> | 5 #include <cmath> |
6 #include <functional> | 6 #include <functional> |
7 #include <limits> | 7 #include <limits> |
8 | 8 |
9 #include "src/base/bits.h" | 9 #include "src/base/bits.h" |
10 #include "src/base/ieee754.h" | 10 #include "src/base/ieee754.h" |
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5530 } | 5530 } |
5531 | 5531 |
5532 TEST(RunFloat64Cos) { | 5532 TEST(RunFloat64Cos) { |
5533 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); | 5533 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
5534 m.Return(m.Float64Cos(m.Parameter(0))); | 5534 m.Return(m.Float64Cos(m.Parameter(0))); |
5535 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); | 5535 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
5536 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); | 5536 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
5537 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::cos(*i), m.Call(*i)); } | 5537 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::cos(*i), m.Call(*i)); } |
5538 } | 5538 } |
5539 | 5539 |
| 5540 TEST(RunFloat64Cosh) { |
| 5541 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
| 5542 m.Return(m.Float64Cosh(m.Parameter(0))); |
| 5543 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
| 5544 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
| 5545 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::cosh(*i), m.Call(*i)); } |
| 5546 } |
| 5547 |
5540 TEST(RunFloat64Exp) { | 5548 TEST(RunFloat64Exp) { |
5541 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); | 5549 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
5542 m.Return(m.Float64Exp(m.Parameter(0))); | 5550 m.Return(m.Float64Exp(m.Parameter(0))); |
5543 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); | 5551 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
5544 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); | 5552 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
5545 CHECK_EQ(0.0, m.Call(-std::numeric_limits<double>::infinity())); | 5553 CHECK_EQ(0.0, m.Call(-std::numeric_limits<double>::infinity())); |
5546 CHECK_DOUBLE_EQ(1.0, m.Call(-0.0)); | 5554 CHECK_DOUBLE_EQ(1.0, m.Call(-0.0)); |
5547 CHECK_DOUBLE_EQ(1.0, m.Call(0.0)); | 5555 CHECK_DOUBLE_EQ(1.0, m.Call(0.0)); |
5548 CHECK_DOUBLE_EQ(std::numeric_limits<double>::infinity(), | 5556 CHECK_DOUBLE_EQ(std::numeric_limits<double>::infinity(), |
5549 m.Call(std::numeric_limits<double>::infinity())); | 5557 m.Call(std::numeric_limits<double>::infinity())); |
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5632 } | 5640 } |
5633 | 5641 |
5634 TEST(RunFloat64Sin) { | 5642 TEST(RunFloat64Sin) { |
5635 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); | 5643 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
5636 m.Return(m.Float64Sin(m.Parameter(0))); | 5644 m.Return(m.Float64Sin(m.Parameter(0))); |
5637 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); | 5645 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
5638 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); | 5646 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
5639 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::sin(*i), m.Call(*i)); } | 5647 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::sin(*i), m.Call(*i)); } |
5640 } | 5648 } |
5641 | 5649 |
| 5650 TEST(RunFloat64Sinh) { |
| 5651 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
| 5652 m.Return(m.Float64Sinh(m.Parameter(0))); |
| 5653 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
| 5654 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
| 5655 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::sinh(*i), m.Call(*i)); } |
| 5656 } |
| 5657 |
5642 TEST(RunFloat64Tan) { | 5658 TEST(RunFloat64Tan) { |
5643 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); | 5659 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
5644 m.Return(m.Float64Tan(m.Parameter(0))); | 5660 m.Return(m.Float64Tan(m.Parameter(0))); |
5645 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); | 5661 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
5646 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); | 5662 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
5647 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::tan(*i), m.Call(*i)); } | 5663 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::tan(*i), m.Call(*i)); } |
5648 } | 5664 } |
5649 | 5665 |
| 5666 TEST(RunFloat64Tanh) { |
| 5667 BufferedRawMachineAssemblerTester<double> m(MachineType::Float64()); |
| 5668 m.Return(m.Float64Tanh(m.Parameter(0))); |
| 5669 CHECK(std::isnan(m.Call(std::numeric_limits<double>::quiet_NaN()))); |
| 5670 CHECK(std::isnan(m.Call(std::numeric_limits<double>::signaling_NaN()))); |
| 5671 FOR_FLOAT64_INPUTS(i) { CHECK_DOUBLE_EQ(ieee754::tanh(*i), m.Call(*i)); } |
| 5672 } |
| 5673 |
5650 static double two_30 = 1 << 30; // 2^30 is a smi boundary. | 5674 static double two_30 = 1 << 30; // 2^30 is a smi boundary. |
5651 static double two_52 = two_30 * (1 << 22); // 2^52 is a precision boundary. | 5675 static double two_52 = two_30 * (1 << 22); // 2^52 is a precision boundary. |
5652 static double kValues[] = {0.1, | 5676 static double kValues[] = {0.1, |
5653 0.2, | 5677 0.2, |
5654 0.49999999999999994, | 5678 0.49999999999999994, |
5655 0.5, | 5679 0.5, |
5656 0.7, | 5680 0.7, |
5657 1.0 - std::numeric_limits<double>::epsilon(), | 5681 1.0 - std::numeric_limits<double>::epsilon(), |
5658 -0.1, | 5682 -0.1, |
5659 -0.49999999999999994, | 5683 -0.49999999999999994, |
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6409 r.Goto(&merge); | 6433 r.Goto(&merge); |
6410 r.Bind(&merge); | 6434 r.Bind(&merge); |
6411 Node* phi = r.Phi(MachineRepresentation::kWord32, fa, fb); | 6435 Node* phi = r.Phi(MachineRepresentation::kWord32, fa, fb); |
6412 r.Return(phi); | 6436 r.Return(phi); |
6413 CHECK_EQ(1, r.Call(1)); | 6437 CHECK_EQ(1, r.Call(1)); |
6414 } | 6438 } |
6415 | 6439 |
6416 } // namespace compiler | 6440 } // namespace compiler |
6417 } // namespace internal | 6441 } // namespace internal |
6418 } // namespace v8 | 6442 } // namespace v8 |
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