1db484f7d8
Extends the constant pool to deal with more slices. Adds ReadUnalignedUInt32(). BUG=v8:4280,v8:4747 LOG=N Review URL: https://codereview.chromium.org/1731893003 Cr-Commit-Position: refs/heads/master@{#34319}
221 lines
8.5 KiB
C++
221 lines
8.5 KiB
C++
// Copyright 2014 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 "src/v8.h"
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#include "src/factory.h"
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#include "src/handles-inl.h"
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#include "src/interpreter/constant-array-builder.h"
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#include "src/isolate.h"
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#include "test/unittests/test-utils.h"
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namespace v8 {
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namespace internal {
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namespace interpreter {
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class ConstantArrayBuilderTest : public TestWithIsolateAndZone {
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public:
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ConstantArrayBuilderTest() {}
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~ConstantArrayBuilderTest() override {}
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static const size_t k8BitCapacity = ConstantArrayBuilder::k8BitCapacity;
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static const size_t k16BitCapacity = ConstantArrayBuilder::k16BitCapacity;
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};
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STATIC_CONST_MEMBER_DEFINITION const size_t
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ConstantArrayBuilderTest::k16BitCapacity;
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STATIC_CONST_MEMBER_DEFINITION const size_t
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ConstantArrayBuilderTest::k8BitCapacity;
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TEST_F(ConstantArrayBuilderTest, AllocateAllEntries) {
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ConstantArrayBuilder builder(isolate(), zone());
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for (size_t i = 0; i < k16BitCapacity; i++) {
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builder.Insert(handle(Smi::FromInt(static_cast<int>(i)), isolate()));
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}
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CHECK_EQ(builder.size(), k16BitCapacity);
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for (size_t i = 0; i < k16BitCapacity; i++) {
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CHECK_EQ(Handle<Smi>::cast(builder.At(i))->value(), i);
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}
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}
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TEST_F(ConstantArrayBuilderTest, AllocateEntriesWithIdx8Reservations) {
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for (size_t reserved = 1; reserved < k8BitCapacity; reserved *= 3) {
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ConstantArrayBuilder builder(isolate(), zone());
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for (size_t i = 0; i < reserved; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(operand_size == OperandSize::kByte);
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}
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for (size_t i = 0; i < 2 * k8BitCapacity; i++) {
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.Insert(object);
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if (i + reserved < k8BitCapacity) {
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CHECK_LE(builder.size(), k8BitCapacity);
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CHECK_EQ(builder.size(), i + 1);
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CHECK(builder.At(i)->SameValue(*object));
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} else {
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CHECK_GE(builder.size(), k8BitCapacity);
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CHECK_EQ(builder.size(), i + reserved + 1);
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CHECK(builder.At(i + reserved)->SameValue(*object));
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}
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}
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CHECK_EQ(builder.size(), 2 * k8BitCapacity + reserved);
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// Check reserved values represented by the hole.
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for (size_t i = 0; i < reserved; i++) {
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Handle<Object> empty = builder.At(k8BitCapacity - reserved + i);
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CHECK(empty->SameValue(isolate()->heap()->the_hole_value()));
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}
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// Commmit reserved entries with duplicates and check size does not change.
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DCHECK_EQ(reserved + 2 * k8BitCapacity, builder.size());
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size_t duplicates_in_idx8_space =
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std::min(reserved, k8BitCapacity - reserved);
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for (size_t i = 0; i < duplicates_in_idx8_space; i++) {
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builder.CommitReservedEntry(OperandSize::kByte,
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isolate()->factory()->NewNumberFromSize(i));
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DCHECK_EQ(reserved + 2 * k8BitCapacity, builder.size());
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}
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// Check all committed values match expected (holes where
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// duplicates_in_idx8_space allocated).
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for (size_t i = 0; i < k8BitCapacity - reserved; i++) {
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Smi* smi = Smi::FromInt(static_cast<int>(i));
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CHECK(Handle<Smi>::cast(builder.At(i))->SameValue(smi));
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}
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for (size_t i = k8BitCapacity; i < 2 * k8BitCapacity + reserved; i++) {
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Smi* smi = Smi::FromInt(static_cast<int>(i - reserved));
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CHECK(Handle<Smi>::cast(builder.At(i))->SameValue(smi));
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}
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for (size_t i = 0; i < reserved; i++) {
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size_t index = k8BitCapacity - reserved + i;
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CHECK(builder.At(index)->IsTheHole());
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}
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// Now make reservations, and commit them with unique entries.
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for (size_t i = 0; i < duplicates_in_idx8_space; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(operand_size == OperandSize::kByte);
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}
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for (size_t i = 0; i < duplicates_in_idx8_space; i++) {
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Handle<Object> object =
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isolate()->factory()->NewNumberFromSize(2 * k8BitCapacity + i);
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size_t index = builder.CommitReservedEntry(OperandSize::kByte, object);
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CHECK_EQ(static_cast<int>(index), k8BitCapacity - reserved + i);
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CHECK(builder.At(static_cast<int>(index))->SameValue(*object));
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}
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CHECK_EQ(builder.size(), 2 * k8BitCapacity + reserved);
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}
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}
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TEST_F(ConstantArrayBuilderTest, AllocateEntriesWithIdx16Reservations) {
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for (size_t reserved = 1; reserved < k8BitCapacity; reserved *= 3) {
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ConstantArrayBuilder builder(isolate(), zone());
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for (size_t i = 0; i < k8BitCapacity; i++) {
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.Insert(object);
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CHECK(builder.At(i)->SameValue(*object));
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CHECK_EQ(builder.size(), i + 1);
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}
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for (size_t i = 0; i < reserved; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(operand_size == OperandSize::kShort);
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CHECK_EQ(builder.size(), k8BitCapacity);
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}
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for (size_t i = 0; i < reserved; i++) {
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builder.DiscardReservedEntry(OperandSize::kShort);
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CHECK_EQ(builder.size(), k8BitCapacity);
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}
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for (size_t i = 0; i < reserved; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(operand_size == OperandSize::kShort);
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.CommitReservedEntry(operand_size, object);
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CHECK_EQ(builder.size(), k8BitCapacity);
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}
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for (size_t i = k8BitCapacity; i < k8BitCapacity + reserved; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(operand_size == OperandSize::kShort);
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.CommitReservedEntry(operand_size, object);
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CHECK_EQ(builder.size(), i + 1);
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}
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}
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}
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TEST_F(ConstantArrayBuilderTest, ToFixedArray) {
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ConstantArrayBuilder builder(isolate(), zone());
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static const size_t kNumberOfElements = 37;
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for (size_t i = 0; i < kNumberOfElements; i++) {
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.Insert(object);
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CHECK(builder.At(i)->SameValue(*object));
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}
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Handle<FixedArray> constant_array = builder.ToFixedArray();
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CHECK_EQ(constant_array->length(), kNumberOfElements);
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for (size_t i = 0; i < kNumberOfElements; i++) {
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CHECK(constant_array->get(static_cast<int>(i))->SameValue(*builder.At(i)));
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}
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}
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TEST_F(ConstantArrayBuilderTest, GapFilledWhenLowReservationCommitted) {
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ConstantArrayBuilder builder(isolate(), zone());
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for (size_t i = 0; i < k8BitCapacity; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(OperandSize::kByte == operand_size);
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CHECK_EQ(builder.size(), 0);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.Insert(object);
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CHECK_EQ(builder.size(), i + k8BitCapacity + 1);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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builder.CommitReservedEntry(OperandSize::kByte,
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builder.At(i + k8BitCapacity));
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CHECK_EQ(builder.size(), 2 * k8BitCapacity);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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Handle<Object> original = builder.At(k8BitCapacity + i);
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Handle<Object> duplicate = builder.At(i);
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CHECK(original->SameValue(*duplicate));
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Handle<Object> reference = isolate()->factory()->NewNumberFromSize(i);
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CHECK(original->SameValue(*reference));
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}
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}
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TEST_F(ConstantArrayBuilderTest, GapNotFilledWhenLowReservationDiscarded) {
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ConstantArrayBuilder builder(isolate(), zone());
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for (size_t i = 0; i < k8BitCapacity; i++) {
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OperandSize operand_size = builder.CreateReservedEntry();
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CHECK(OperandSize::kByte == operand_size);
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CHECK_EQ(builder.size(), 0);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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Handle<Object> object = isolate()->factory()->NewNumberFromSize(i);
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builder.Insert(object);
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CHECK_EQ(builder.size(), i + k8BitCapacity + 1);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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builder.DiscardReservedEntry(OperandSize::kByte);
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builder.Insert(builder.At(i + k8BitCapacity));
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CHECK_EQ(builder.size(), 2 * k8BitCapacity);
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}
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for (size_t i = 0; i < k8BitCapacity; i++) {
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Handle<Object> reference = isolate()->factory()->NewNumberFromSize(i);
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Handle<Object> original = builder.At(k8BitCapacity + i);
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CHECK(original->SameValue(*reference));
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Handle<Object> duplicate = builder.At(i);
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CHECK(duplicate->SameValue(*isolate()->factory()->the_hole_value()));
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}
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}
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} // namespace interpreter
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} // namespace internal
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} // namespace v8
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