a0c3797461
TBR=bmeurer@chromium.org,leszeks@chromium.org Bug: v8:9247 Change-Id: I8d14d0192ea8c705f8274e8e61a162531826edb6 Reviewed-on: https://chromium-review.googlesource.com/c/v8/v8/+/1624220 Reviewed-by: Yang Guo <yangguo@chromium.org> Reviewed-by: Hannes Payer <hpayer@chromium.org> Reviewed-by: Andreas Haas <ahaas@chromium.org> Cr-Commit-Position: refs/heads/master@{#61769}
599 lines
20 KiB
C++
599 lines
20 KiB
C++
// Copyright 2018 the V8 project authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include <cctype>
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#include "src/compiler/compilation-dependencies.h"
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#include "src/compiler/js-call-reducer.h"
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#include "src/compiler/js-graph.h"
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#include "src/compiler/simplified-operator.h"
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#include "src/execution/isolate.h"
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#include "src/heap/factory.h"
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#include "src/objects/feedback-vector.h"
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#include "test/unittests/compiler/graph-unittest.h"
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#include "test/unittests/compiler/node-test-utils.h"
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namespace v8 {
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namespace internal {
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namespace compiler {
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class JSCallReducerTest : public TypedGraphTest {
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public:
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JSCallReducerTest()
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: TypedGraphTest(3), javascript_(zone()), deps_(broker(), zone()) {
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broker()->SerializeStandardObjects();
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}
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~JSCallReducerTest() override = default;
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protected:
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Reduction Reduce(Node* node) {
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MachineOperatorBuilder machine(zone());
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SimplifiedOperatorBuilder simplified(zone());
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JSGraph jsgraph(isolate(), graph(), common(), javascript(), &simplified,
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&machine);
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// TODO(titzer): mock the GraphReducer here for better unit testing.
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GraphReducer graph_reducer(zone(), graph());
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JSCallReducer reducer(&graph_reducer, &jsgraph, broker(),
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JSCallReducer::kNoFlags, &deps_);
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return reducer.Reduce(node);
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}
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JSOperatorBuilder* javascript() { return &javascript_; }
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Node* GlobalFunction(const char* name) {
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Handle<JSFunction> f = Handle<JSFunction>::cast(
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Object::GetProperty(
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isolate(), isolate()->global_object(),
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isolate()->factory()->NewStringFromAsciiChecked(name))
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.ToHandleChecked());
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return HeapConstant(f);
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}
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Node* MathFunction(const std::string& name) {
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Handle<Object> m =
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JSObject::GetProperty(
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isolate(), isolate()->global_object(),
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isolate()->factory()->NewStringFromAsciiChecked("Math"))
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.ToHandleChecked();
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Handle<JSFunction> f = Handle<JSFunction>::cast(
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Object::GetProperty(
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isolate(), m,
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isolate()->factory()->NewStringFromAsciiChecked(name.c_str()))
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.ToHandleChecked());
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return HeapConstant(f);
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}
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Node* StringFunction(const char* name) {
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Handle<Object> m =
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JSObject::GetProperty(
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isolate(), isolate()->global_object(),
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isolate()->factory()->NewStringFromAsciiChecked("String"))
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.ToHandleChecked();
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Handle<JSFunction> f = Handle<JSFunction>::cast(
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Object::GetProperty(
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isolate(), m, isolate()->factory()->NewStringFromAsciiChecked(name))
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.ToHandleChecked());
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return HeapConstant(f);
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}
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Node* NumberFunction(const char* name) {
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Handle<Object> m =
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JSObject::GetProperty(
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isolate(), isolate()->global_object(),
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isolate()->factory()->NewStringFromAsciiChecked("Number"))
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.ToHandleChecked();
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Handle<JSFunction> f = Handle<JSFunction>::cast(
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Object::GetProperty(
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isolate(), m, isolate()->factory()->NewStringFromAsciiChecked(name))
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.ToHandleChecked());
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return HeapConstant(f);
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}
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std::string op_name_for(const char* fnc) {
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std::string string_fnc(fnc);
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char initial = std::toupper(fnc[0]);
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return std::string("Number") + initial +
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string_fnc.substr(1, std::string::npos);
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}
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const Operator* Call(int arity) {
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FeedbackVectorSpec spec(zone());
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spec.AddCallICSlot();
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Handle<FeedbackMetadata> metadata = FeedbackMetadata::New(isolate(), &spec);
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Handle<SharedFunctionInfo> shared =
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isolate()->factory()->NewSharedFunctionInfoForBuiltin(
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isolate()->factory()->empty_string(), Builtins::kIllegal);
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// Set the raw feedback metadata to circumvent checks that we are not
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// overwriting existing metadata.
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shared->set_raw_outer_scope_info_or_feedback_metadata(*metadata);
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Handle<ClosureFeedbackCellArray> closure_feedback_cell_array =
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ClosureFeedbackCellArray::New(isolate(), shared);
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Handle<FeedbackVector> vector =
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FeedbackVector::New(isolate(), shared, closure_feedback_cell_array);
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VectorSlotPair feedback(vector, FeedbackSlot(0), UNINITIALIZED);
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return javascript()->Call(arity, CallFrequency(), feedback,
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ConvertReceiverMode::kAny,
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SpeculationMode::kAllowSpeculation);
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}
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private:
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JSOperatorBuilder javascript_;
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CompilationDependencies deps_;
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};
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TEST_F(JSCallReducerTest, PromiseConstructorNoArgs) {
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Node* promise =
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HeapConstant(handle(native_context()->promise_function(), isolate()));
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* construct =
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graph()->NewNode(javascript()->Construct(2), promise, promise, context,
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frame_state, effect, control);
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Reduction r = Reduce(construct);
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ASSERT_FALSE(r.Changed());
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}
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TEST_F(JSCallReducerTest, PromiseConstructorSubclass) {
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Node* promise =
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HeapConstant(handle(native_context()->promise_function(), isolate()));
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Node* new_target =
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HeapConstant(handle(native_context()->array_function(), isolate()));
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* executor = UndefinedConstant();
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Node* construct =
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graph()->NewNode(javascript()->Construct(3), promise, executor,
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new_target, context, frame_state, effect, control);
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Reduction r = Reduce(construct);
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ASSERT_FALSE(r.Changed());
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}
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TEST_F(JSCallReducerTest, PromiseConstructorBasic) {
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Node* promise =
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HeapConstant(handle(native_context()->promise_function(), isolate()));
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* executor = UndefinedConstant();
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Node* construct =
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graph()->NewNode(javascript()->Construct(3), promise, executor, promise,
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context, frame_state, effect, control);
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Reduction r = Reduce(construct);
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if (FLAG_experimental_inline_promise_constructor) {
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ASSERT_TRUE(r.Changed());
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} else {
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ASSERT_FALSE(r.Changed());
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}
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}
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// Exactly the same as PromiseConstructorBasic which expects a reduction,
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// except that we invalidate the protector cell.
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TEST_F(JSCallReducerTest, PromiseConstructorWithHook) {
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Node* promise =
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HeapConstant(handle(native_context()->promise_function(), isolate()));
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* executor = UndefinedConstant();
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Node* construct =
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graph()->NewNode(javascript()->Construct(3), promise, executor, promise,
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context, frame_state, effect, control);
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isolate()->InvalidatePromiseHookProtector();
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Reduction r = Reduce(construct);
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ASSERT_FALSE(r.Changed());
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}
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// -----------------------------------------------------------------------------
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// Math unaries
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namespace {
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const char* kMathUnaries[] = {
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"abs", "acos", "acosh", "asin", "asinh", "atan", "cbrt",
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"ceil", "cos", "cosh", "exp", "expm1", "floor", "fround",
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"log", "log1p", "log10", "log2", "round", "sign", "sin",
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"sinh", "sqrt", "tan", "tanh", "trunc"};
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} // namespace
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TEST_F(JSCallReducerTest, MathUnaryWithNumber) {
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TRACED_FOREACH(const char*, fnc, kMathUnaries) {
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* jsfunction = MathFunction(fnc);
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(3), jsfunction, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(std::string(IrOpcode::Mnemonic(r.replacement()->opcode())),
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op_name_for(fnc));
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}
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}
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// -----------------------------------------------------------------------------
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// Math binaries
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namespace {
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const char* kMathBinaries[] = {"atan2", "pow"};
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} // namespace
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TEST_F(JSCallReducerTest, MathBinaryWithNumber) {
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TRACED_FOREACH(const char*, fnc, kMathBinaries) {
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Node* jsfunction = MathFunction(fnc);
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* p1 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(4), jsfunction, UndefinedConstant(), p0,
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p1, context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(std::string(IrOpcode::Mnemonic(r.replacement()->opcode())),
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op_name_for(fnc));
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}
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}
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// -----------------------------------------------------------------------------
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// Math.clz32
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TEST_F(JSCallReducerTest, MathClz32WithUnsigned32) {
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Node* jsfunction = MathFunction("clz32");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Unsigned32(), 0);
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Node* call = graph()->NewNode(Call(3), jsfunction, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(),
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IsNumberClz32(IsNumberToUint32(IsSpeculativeToNumber(p0))));
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}
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TEST_F(JSCallReducerTest, MathClz32WithUnsigned32NoArg) {
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Node* jsfunction = MathFunction("clz32");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* call = graph()->NewNode(Call(2), jsfunction, UndefinedConstant(),
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsNumberConstant(32));
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}
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// -----------------------------------------------------------------------------
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// Math.imul
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TEST_F(JSCallReducerTest, MathImulWithUnsigned32) {
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Node* jsfunction = MathFunction("imul");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Unsigned32(), 0);
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Node* p1 = Parameter(Type::Unsigned32(), 1);
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Node* call = graph()->NewNode(Call(4), jsfunction, UndefinedConstant(), p0,
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p1, context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(std::string(IrOpcode::Mnemonic(r.replacement()->opcode())),
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op_name_for("imul"));
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}
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// -----------------------------------------------------------------------------
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// Math.min
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TEST_F(JSCallReducerTest, MathMinWithNoArguments) {
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Node* jsfunction = MathFunction("min");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* call = graph()->NewNode(Call(2), jsfunction, UndefinedConstant(),
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsNumberConstant(V8_INFINITY));
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}
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TEST_F(JSCallReducerTest, MathMinWithNumber) {
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Node* jsfunction = MathFunction("min");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(3), jsfunction, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsSpeculativeToNumber(p0));
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}
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TEST_F(JSCallReducerTest, MathMinWithTwoArguments) {
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Node* jsfunction = MathFunction("min");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* p1 = Parameter(Type::Any(), 1);
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Node* call = graph()->NewNode(Call(4), jsfunction, UndefinedConstant(), p0,
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p1, context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsNumberMin(IsSpeculativeToNumber(p0),
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IsSpeculativeToNumber(p1)));
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}
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// -----------------------------------------------------------------------------
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// Math.max
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TEST_F(JSCallReducerTest, MathMaxWithNoArguments) {
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Node* jsfunction = MathFunction("max");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* call = graph()->NewNode(Call(2), jsfunction, UndefinedConstant(),
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsNumberConstant(-V8_INFINITY));
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}
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TEST_F(JSCallReducerTest, MathMaxWithNumber) {
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Node* jsfunction = MathFunction("max");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(3), jsfunction, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsSpeculativeToNumber(p0));
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}
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TEST_F(JSCallReducerTest, MathMaxWithTwoArguments) {
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Node* jsfunction = MathFunction("max");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* p1 = Parameter(Type::Any(), 1);
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Node* call = graph()->NewNode(Call(4), jsfunction, UndefinedConstant(), p0,
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p1, context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsNumberMax(IsSpeculativeToNumber(p0),
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IsSpeculativeToNumber(p1)));
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}
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// -----------------------------------------------------------------------------
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// String.fromCharCode
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TEST_F(JSCallReducerTest, StringFromSingleCharCodeWithNumber) {
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Node* function = StringFunction("fromCharCode");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(3), function, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(),
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IsStringFromSingleCharCode(IsSpeculativeToNumber(p0)));
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}
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TEST_F(JSCallReducerTest, StringFromSingleCharCodeWithPlainPrimitive) {
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Node* function = StringFunction("fromCharCode");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::PlainPrimitive(), 0);
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Node* call = graph()->NewNode(Call(3), function, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(),
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IsStringFromSingleCharCode(IsSpeculativeToNumber(p0)));
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}
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// -----------------------------------------------------------------------------
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// Number.isFinite
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TEST_F(JSCallReducerTest, NumberIsFinite) {
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Node* function = NumberFunction("isFinite");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call = graph()->NewNode(Call(3), function, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
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EXPECT_THAT(r.replacement(), IsObjectIsFiniteNumber(p0));
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}
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// -----------------------------------------------------------------------------
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// Number.isInteger
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TEST_F(JSCallReducerTest, NumberIsIntegerWithNumber) {
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Node* function = NumberFunction("isInteger");
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Node* effect = graph()->start();
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Node* control = graph()->start();
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Node* context = UndefinedConstant();
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Node* frame_state = graph()->start();
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Node* p0 = Parameter(Type::Any(), 0);
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Node* call =
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graph()->NewNode(javascript()->Call(3), function, UndefinedConstant(), p0,
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context, frame_state, effect, control);
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Reduction r = Reduce(call);
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ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsObjectIsInteger(p0));
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
// Number.isNaN
|
|
|
|
TEST_F(JSCallReducerTest, NumberIsNaNWithNumber) {
|
|
Node* function = NumberFunction("isNaN");
|
|
|
|
Node* effect = graph()->start();
|
|
Node* control = graph()->start();
|
|
Node* context = UndefinedConstant();
|
|
Node* frame_state = graph()->start();
|
|
Node* p0 = Parameter(Type::Any(), 0);
|
|
Node* call =
|
|
graph()->NewNode(javascript()->Call(3), function, UndefinedConstant(), p0,
|
|
context, frame_state, effect, control);
|
|
Reduction r = Reduce(call);
|
|
|
|
ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsObjectIsNaN(p0));
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
// Number.isSafeInteger
|
|
|
|
TEST_F(JSCallReducerTest, NumberIsSafeIntegerWithIntegral32) {
|
|
Node* function = NumberFunction("isSafeInteger");
|
|
|
|
Node* effect = graph()->start();
|
|
Node* control = graph()->start();
|
|
Node* context = UndefinedConstant();
|
|
Node* frame_state = graph()->start();
|
|
Node* p0 = Parameter(Type::Any(), 0);
|
|
Node* call =
|
|
graph()->NewNode(javascript()->Call(3), function, UndefinedConstant(), p0,
|
|
context, frame_state, effect, control);
|
|
Reduction r = Reduce(call);
|
|
|
|
ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsObjectIsSafeInteger(p0));
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
// isFinite
|
|
|
|
TEST_F(JSCallReducerTest, GlobalIsFiniteWithNumber) {
|
|
Node* function = GlobalFunction("isFinite");
|
|
|
|
Node* effect = graph()->start();
|
|
Node* control = graph()->start();
|
|
Node* context = UndefinedConstant();
|
|
Node* frame_state = graph()->start();
|
|
Node* p0 = Parameter(Type::Any(), 0);
|
|
Node* call = graph()->NewNode(Call(3), function, UndefinedConstant(), p0,
|
|
context, frame_state, effect, control);
|
|
Reduction r = Reduce(call);
|
|
|
|
ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsNumberIsFinite(IsSpeculativeToNumber(p0)));
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
// isNaN
|
|
|
|
TEST_F(JSCallReducerTest, GlobalIsNaN) {
|
|
Node* function = GlobalFunction("isNaN");
|
|
|
|
Node* effect = graph()->start();
|
|
Node* control = graph()->start();
|
|
Node* context = UndefinedConstant();
|
|
Node* frame_state = graph()->start();
|
|
Node* p0 = Parameter(Type::Any(), 0);
|
|
Node* call = graph()->NewNode(Call(3), function, UndefinedConstant(), p0,
|
|
context, frame_state, effect, control);
|
|
Reduction r = Reduce(call);
|
|
|
|
ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsNumberIsNaN(IsSpeculativeToNumber(p0)));
|
|
}
|
|
|
|
// -----------------------------------------------------------------------------
|
|
// Number.parseInt
|
|
|
|
TEST_F(JSCallReducerTest, NumberParseInt) {
|
|
Node* function = NumberFunction("parseInt");
|
|
|
|
Node* effect = graph()->start();
|
|
Node* control = graph()->start();
|
|
Node* context = UndefinedConstant();
|
|
Node* frame_state = graph()->start();
|
|
Node* p0 = Parameter(Type::Any(), 0);
|
|
Node* p1 = Parameter(Type::Any(), 1);
|
|
Node* call = graph()->NewNode(Call(4), function, UndefinedConstant(), p0, p1,
|
|
context, frame_state, effect, control);
|
|
Reduction r = Reduce(call);
|
|
|
|
ASSERT_TRUE(r.Changed());
|
|
EXPECT_THAT(r.replacement(), IsJSParseInt(p0, p1));
|
|
}
|
|
|
|
} // namespace compiler
|
|
} // namespace internal
|
|
} // namespace v8
|