bytecode-array-random-iterator-unittest.cc 43.2 KB
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// Copyright 2015 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.

#include "src/v8.h"

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#include "src/hash-seed-inl.h"
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#include "src/interpreter/bytecode-array-builder.h"
#include "src/interpreter/bytecode-array-random-iterator.h"
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#include "src/objects-inl.h"
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#include "src/objects/smi.h"
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#include "test/unittests/interpreter/bytecode-utils.h"
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#include "test/unittests/test-utils.h"

namespace v8 {
namespace internal {
namespace interpreter {

class BytecodeArrayRandomIteratorTest : public TestWithIsolateAndZone {
 public:
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  BytecodeArrayRandomIteratorTest() = default;
  ~BytecodeArrayRandomIteratorTest() override = default;
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};

TEST_F(BytecodeArrayRandomIteratorTest, InvalidBeforeStart) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

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  ast_factory.Internalize(isolate());
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  Handle<BytecodeArray> bytecodeArray = builder.ToBytecodeArray(isolate());
  BytecodeArrayRandomIterator iterator(bytecodeArray, zone());

  iterator.GoToStart();
  ASSERT_TRUE(iterator.IsValid());
  --iterator;
  ASSERT_FALSE(iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, InvalidAfterEnd) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

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  ast_factory.Internalize(isolate());
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  Handle<BytecodeArray> bytecodeArray = builder.ToBytecodeArray(isolate());
  BytecodeArrayRandomIterator iterator(bytecodeArray, zone());

  iterator.GoToEnd();
  ASSERT_TRUE(iterator.IsValid());
  ++iterator;
  ASSERT_FALSE(iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, AccessesFirst) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

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  ast_factory.Internalize(isolate());
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  Handle<BytecodeArray> bytecodeArray = builder.ToBytecodeArray(isolate());
  BytecodeArrayRandomIterator iterator(bytecodeArray, zone());

  iterator.GoToStart();

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 0);
  EXPECT_EQ(iterator.current_offset(), 0);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
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  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_0);
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  ASSERT_TRUE(iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, AccessesLast) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

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  ast_factory.Internalize(isolate());
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  Handle<BytecodeArray> bytecodeArray = builder.ToBytecodeArray(isolate());
  BytecodeArrayRandomIterator iterator(bytecodeArray, zone());

  iterator.GoToEnd();

  int offset = bytecodeArray->length() -
               Bytecodes::Size(Bytecode::kReturn, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kReturn);
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  EXPECT_EQ(iterator.current_index(), 22);
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  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, RandomAccessValid) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t name_index = 2;
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

  // Test iterator sees the expected output from the builder.
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  ast_factory.Internalize(isolate());
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  BytecodeArrayRandomIterator iterator(builder.ToBytecodeArray(isolate()),
                                       zone());
  const int kPrefixByteSize = 1;
  int offset = 0;

  iterator.GoToIndex(13);
  offset = Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaZero, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kQuadruple) +
            kPrefixByteSize;
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdar, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kAdd);
  EXPECT_EQ(iterator.current_index(), 13);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());

  iterator.GoToIndex(2);
  offset = Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 2);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
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  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_1);
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  ASSERT_TRUE(iterator.IsValid());

  iterator.GoToIndex(18);
  offset = Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaZero, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kQuadruple) +
            kPrefixByteSize;
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kCallRuntimeForPair);
  EXPECT_EQ(iterator.current_index(), 18);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRuntimeIdOperand(0), Runtime::kLoadLookupSlotForCall);
  EXPECT_EQ(iterator.GetRegisterOperand(1).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(1), 1);
  EXPECT_EQ(iterator.GetRegisterCountOperand(2), 1u);
  EXPECT_EQ(iterator.GetRegisterOperand(3).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(3), 2);
  ASSERT_TRUE(iterator.IsValid());

  iterator -= 3;
  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset -= Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  offset -= Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaNamedProperty);
  EXPECT_EQ(iterator.current_index(), 15);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetIndexOperand(1), name_index);
  EXPECT_EQ(iterator.GetIndexOperand(2), feedback_slot);
  ASSERT_TRUE(iterator.IsValid());

  iterator += 2;
  offset += Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 17);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());

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  iterator.GoToIndex(22);
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  offset = Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaZero, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kQuadruple) +
            kPrefixByteSize;
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  offset +=
      Bytecodes::Size(Bytecode::kCallRuntimeForPair, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kForInPrepare, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kCallRuntime, OperandScale::kSingle);
  offset += Bytecodes::Size(Bytecode::kDebugger, OperandScale::kSingle);

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kReturn);
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  EXPECT_EQ(iterator.current_index(), 22);
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  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());

  iterator.GoToIndex(24);
  EXPECT_FALSE(iterator.IsValid());

  iterator.GoToIndex(-5);
  EXPECT_FALSE(iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, IteratesBytecodeArray) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
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  FeedbackVectorSpec feedback_spec(zone());
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  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
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  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
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                              HashSeed(isolate()));
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  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
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  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
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  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
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  Register param = Register::FromParameterIndex(2, builder.parameter_count());
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  const AstRawString* name = ast_factory.GetOneByteString("abc");
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  uint32_t name_index = 2;
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  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
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  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
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      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

  // Test iterator sees the expected output from the builder.
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  ast_factory.Internalize(isolate());
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  BytecodeArrayRandomIterator iterator(builder.ToBytecodeArray(isolate()),
                                       zone());
  const int kPrefixByteSize = 1;
  int offset = 0;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 0);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
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  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_0);
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  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 1);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 2);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
510
  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_1);
511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 558 559 560 561 562 563 564 565 566 567 568 569 570 571 572 573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 3);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaZero);
  EXPECT_EQ(iterator.current_index(), 4);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaZero, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 5);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaSmi);
  EXPECT_EQ(iterator.current_index(), 6);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Smi::FromInt(iterator.GetImmediateOperand(0)), smi_0);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStackCheck);
  EXPECT_EQ(iterator.current_index(), 7);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Bytecodes::NumberOfOperands(iterator.current_bytecode()), 0);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 8);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaSmi);
  EXPECT_EQ(iterator.current_index(), 9);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kQuadruple);
  EXPECT_EQ(Smi::FromInt(iterator.GetImmediateOperand(0)), smi_1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kQuadruple) +
            kPrefixByteSize;
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStackCheck);
  EXPECT_EQ(iterator.current_index(), 10);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Bytecodes::NumberOfOperands(iterator.current_bytecode()), 0);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 11);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdar);
  EXPECT_EQ(iterator.current_index(), 12);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kAdd);
  EXPECT_EQ(iterator.current_index(), 13);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 14);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaNamedProperty);
  EXPECT_EQ(iterator.current_index(), 15);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetIndexOperand(1), name_index);
  EXPECT_EQ(iterator.GetIndexOperand(2), feedback_slot);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kAdd);
  EXPECT_EQ(iterator.current_index(), 16);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 17);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kCallRuntimeForPair);
  EXPECT_EQ(iterator.current_index(), 18);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRuntimeIdOperand(0), Runtime::kLoadLookupSlotForCall);
  EXPECT_EQ(iterator.GetRegisterOperand(1).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(1), 1);
  EXPECT_EQ(iterator.GetRegisterCountOperand(2), 1u);
  EXPECT_EQ(iterator.GetRegisterOperand(3).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(3), 2);
  ASSERT_TRUE(iterator.IsValid());
  offset +=
      Bytecodes::Size(Bytecode::kCallRuntimeForPair, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kForInPrepare);
  EXPECT_EQ(iterator.current_index(), 19);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
680 681
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 3);
  EXPECT_EQ(iterator.GetIndexOperand(1), feedback_slot);
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  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kForInPrepare, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kCallRuntime);
  EXPECT_EQ(iterator.current_index(), 20);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRuntimeIdOperand(0), Runtime::kLoadIC_Miss);
  EXPECT_EQ(iterator.GetRegisterOperand(1).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterCountOperand(2), 1u);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kCallRuntime, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kDebugger);
  EXPECT_EQ(iterator.current_index(), 21);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  offset += Bytecodes::Size(Bytecode::kDebugger, OperandScale::kSingle);
  ++iterator;

  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kReturn);
706
  EXPECT_EQ(iterator.current_index(), 22);
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  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  ++iterator;
  ASSERT_TRUE(!iterator.IsValid());
}

TEST_F(BytecodeArrayRandomIteratorTest, IteratesBytecodeArrayBackwards) {
  // Use a builder to create an array with containing multiple bytecodes
  // with 0, 1 and 2 operands.
717
  FeedbackVectorSpec feedback_spec(zone());
718
  BytecodeArrayBuilder builder(zone(), 3, 3, &feedback_spec);
719
  AstValueFactory ast_factory(zone(), isolate()->ast_string_constants(),
720
                              HashSeed(isolate()));
721 722
  double heap_num_0 = 2.718;
  double heap_num_1 = 2.0 * Smi::kMaxValue;
723 724 725
  Smi zero = Smi::zero();
  Smi smi_0 = Smi::FromInt(64);
  Smi smi_1 = Smi::FromInt(-65536);
726 727
  Register reg_0(0);
  Register reg_1(1);
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  RegisterList pair = BytecodeUtils::NewRegisterList(0, 2);
  RegisterList triple = BytecodeUtils::NewRegisterList(0, 3);
730
  Register param = Register::FromParameterIndex(2, builder.parameter_count());
731
  const AstRawString* name = ast_factory.GetOneByteString("abc");
732
  uint32_t name_index = 2;
733
  uint32_t feedback_slot = feedback_spec.AddLoadICSlot().ToInt();
734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753

  builder.LoadLiteral(heap_num_0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(heap_num_1)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(zero)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_0)
      .StackCheck(0)
      .StoreAccumulatorInRegister(reg_0)
      .LoadLiteral(smi_1)
      .StackCheck(1)
      .StoreAccumulatorInRegister(reg_1)
      .LoadAccumulatorWithRegister(reg_0)
      .BinaryOperation(Token::Value::ADD, reg_0, 2)
      .StoreAccumulatorInRegister(reg_1)
      .LoadNamedProperty(reg_1, name, feedback_slot)
      .BinaryOperation(Token::Value::ADD, reg_0, 3)
      .StoreAccumulatorInRegister(param)
      .CallRuntimeForPair(Runtime::kLoadLookupSlotForCall, param, pair)
754
      .ForInPrepare(triple, feedback_slot)
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      .CallRuntime(Runtime::kLoadIC_Miss, reg_0)
      .Debugger()
      .Return();

  // Test iterator sees the expected output from the builder.
760
  ast_factory.Internalize(isolate());
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  Handle<BytecodeArray> bytecodeArray = builder.ToBytecodeArray(isolate());
  BytecodeArrayRandomIterator iterator(bytecodeArray, zone());
  const int kPrefixByteSize = 1;
  int offset = bytecodeArray->length();

  iterator.GoToEnd();

  offset -= Bytecodes::Size(Bytecode::kReturn, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kReturn);
770
  EXPECT_EQ(iterator.current_index(), 22);
771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kDebugger, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kDebugger);
  EXPECT_EQ(iterator.current_index(), 21);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kCallRuntime, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kCallRuntime);
  EXPECT_EQ(iterator.current_index(), 20);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRuntimeIdOperand(0), Runtime::kLoadIC_Miss);
  EXPECT_EQ(iterator.GetRegisterOperand(1).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterCountOperand(2), 1u);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kForInPrepare, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kForInPrepare);
  EXPECT_EQ(iterator.current_index(), 19);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
801 802
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 3);
  EXPECT_EQ(iterator.GetIndexOperand(1), feedback_slot);
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  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -=
      Bytecodes::Size(Bytecode::kCallRuntimeForPair, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kCallRuntimeForPair);
  EXPECT_EQ(iterator.current_index(), 18);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRuntimeIdOperand(0), Runtime::kLoadLookupSlotForCall);
  EXPECT_EQ(iterator.GetRegisterOperand(1).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(1), 1);
  EXPECT_EQ(iterator.GetRegisterCountOperand(2), 1u);
  EXPECT_EQ(iterator.GetRegisterOperand(3).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(3), 2);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 17);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), param.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kAdd);
  EXPECT_EQ(iterator.current_index(), 16);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaNamedProperty, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaNamedProperty);
  EXPECT_EQ(iterator.current_index(), 15);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetIndexOperand(1), name_index);
  EXPECT_EQ(iterator.GetIndexOperand(2), feedback_slot);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 14);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kAdd, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kAdd);
  EXPECT_EQ(iterator.current_index(), 13);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdar);
  EXPECT_EQ(iterator.current_index(), 12);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 11);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_1.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStackCheck);
  EXPECT_EQ(iterator.current_index(), 10);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Bytecodes::NumberOfOperands(iterator.current_bytecode()), 0);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kQuadruple) +
            kPrefixByteSize;
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaSmi);
  EXPECT_EQ(iterator.current_index(), 9);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kQuadruple);
  EXPECT_EQ(Smi::FromInt(iterator.GetImmediateOperand(0)), smi_1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 8);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStackCheck, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStackCheck);
  EXPECT_EQ(iterator.current_index(), 7);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Bytecodes::NumberOfOperands(iterator.current_bytecode()), 0);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaSmi, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaSmi);
  EXPECT_EQ(iterator.current_index(), 6);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(Smi::FromInt(iterator.GetImmediateOperand(0)), smi_0);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 5);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaZero, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaZero);
  EXPECT_EQ(iterator.current_index(), 4);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 3);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 2);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
971
  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_1);
972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kStar, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kStar);
  EXPECT_EQ(iterator.current_index(), 1);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
  EXPECT_EQ(iterator.GetRegisterOperand(0).index(), reg_0.index());
  EXPECT_EQ(iterator.GetRegisterOperandRange(0), 1);
  ASSERT_TRUE(iterator.IsValid());
  --iterator;

  offset -= Bytecodes::Size(Bytecode::kLdaConstant, OperandScale::kSingle);
  EXPECT_EQ(iterator.current_bytecode(), Bytecode::kLdaConstant);
  EXPECT_EQ(iterator.current_index(), 0);
  EXPECT_EQ(iterator.current_offset(), offset);
  EXPECT_EQ(iterator.current_operand_scale(), OperandScale::kSingle);
990
  EXPECT_EQ(iterator.GetConstantForIndexOperand(0)->Number(), heap_num_0);
991 992 993 994 995 996 997 998
  ASSERT_TRUE(iterator.IsValid());
  --iterator;
  ASSERT_FALSE(iterator.IsValid());
}

}  // namespace interpreter
}  // namespace internal
}  // namespace v8