| // Copyright 2016 the V8 project authors. All rights reserved. |
| // Use of this source code is governed by a BSD-style license that can be |
| // found in the LICENSE file. |
| |
| // Flags: --allow-natives-syntax |
| |
| function test(f) { |
| assertTrue(f(0)); |
| assertTrue(f(Number.MIN_SAFE_INTEGER)); |
| assertFalse(f(Number.MIN_SAFE_INTEGER - 13)); |
| assertTrue(f(Number.MIN_SAFE_INTEGER + 13)); |
| assertTrue(f(Number.MAX_SAFE_INTEGER)); |
| assertFalse(f(Number.MAX_SAFE_INTEGER + 23)); |
| assertTrue(f(Number.MAX_SAFE_INTEGER - 23)); |
| assertFalse(f(Number.MIN_VALUE)); |
| assertFalse(f(Number.MAX_VALUE)); |
| assertFalse(f(Number.NaN)); |
| assertFalse(f(Number.POSITIVE_INFINITY)); |
| assertFalse(f(Number.NEGATIVE_INFINITY)); |
| assertFalse(f(1 / 0)); |
| assertFalse(f(-1 / 0)); |
| assertFalse(f(Number.EPSILON)); |
| |
| var near_upper = Math.pow(2, 52); |
| assertTrue(f(near_upper)); |
| assertFalse(f(2 * near_upper)); |
| assertTrue(f(2 * near_upper - 1)); |
| assertTrue(f(2 * near_upper - 2)); |
| assertFalse(f(2 * near_upper + 1)); |
| assertFalse(f(2 * near_upper + 2)); |
| assertFalse(f(2 * near_upper + 7)); |
| |
| var near_lower = -near_upper; |
| assertTrue(f(near_lower)); |
| assertFalse(f(2 * near_lower)); |
| assertTrue(f(2 * near_lower + 1)); |
| assertTrue(f(2 * near_lower + 2)); |
| assertFalse(f(2 * near_lower - 1)); |
| assertFalse(f(2 * near_lower - 2)); |
| assertFalse(f(2 * near_lower - 7)); |
| } |
| |
| // Check that the NumberIsSafeInteger simplified operator in |
| // TurboFan does the right thing. |
| function NumberIsSafeInteger(x) { return Number.isSafeInteger(+x); } |
| %PrepareFunctionForOptimization(NumberIsSafeInteger); |
| test(NumberIsSafeInteger); |
| test(NumberIsSafeInteger); |
| %OptimizeFunctionOnNextCall(NumberIsSafeInteger); |
| test(NumberIsSafeInteger); |
| |
| // Check that the ObjectIsSafeInteger simplified operator in |
| // TurboFan does the right thing as well (i.e. when TurboFan |
| // is not able to tell statically that the inputs are numbers). |
| function ObjectIsSafeInteger(x) { return Number.isSafeInteger(x); } |
| %PrepareFunctionForOptimization(ObjectIsSafeInteger); |
| test(ObjectIsSafeInteger); |
| test(ObjectIsSafeInteger); |
| %OptimizeFunctionOnNextCall(ObjectIsSafeInteger); |
| test(ObjectIsSafeInteger); |