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LibJS/Bytecode: Make primitive bigints be constants
Instead of emitting a NewBigInt instruction to construct a primitive bigint from a parsed literal, we now instantiate the BigInt on the heap during codegen.
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parent
46d209c55b
commit
5813df21c8
4 changed files with 4 additions and 40 deletions
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@ -279,7 +279,7 @@ Bytecode::CodeGenerationErrorOr<Optional<Bytecode::Operand>> NullLiteral::genera
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return generator.add_constant(js_null());
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}
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Bytecode::CodeGenerationErrorOr<Optional<Bytecode::Operand>> BigIntLiteral::generate_bytecode(Bytecode::Generator& generator, Optional<Bytecode::Operand> preferred_dst) const
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Bytecode::CodeGenerationErrorOr<Optional<Bytecode::Operand>> BigIntLiteral::generate_bytecode(Bytecode::Generator& generator, [[maybe_unused]] Optional<Bytecode::Operand> preferred_dst) const
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{
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Bytecode::Generator::SourceLocationScope scope(generator, *this);
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// 1. Return the NumericValue of NumericLiteral as defined in 12.8.3.
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@ -293,10 +293,7 @@ Bytecode::CodeGenerationErrorOr<Optional<Bytecode::Operand>> BigIntLiteral::gene
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return MUST(Crypto::SignedBigInteger::from_base(2, m_value.substring(2, m_value.length() - 3)));
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return MUST(Crypto::SignedBigInteger::from_base(10, m_value.substring(0, m_value.length() - 1)));
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}();
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auto dst = choose_dst(generator, preferred_dst);
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generator.emit<Bytecode::Op::NewBigInt>(dst, integer);
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return dst;
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return generator.add_constant(BigInt::create(generator.vm(), move(integer)), Bytecode::Generator::DeduplicateConstant::No);
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}
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Bytecode::CodeGenerationErrorOr<Optional<Bytecode::Operand>> StringLiteral::generate_bytecode(Bytecode::Generator& generator, [[maybe_unused]] Optional<Bytecode::Operand> preferred_dst) const
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@ -82,7 +82,6 @@
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O(Mov) \
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O(Mul) \
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O(NewArray) \
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O(NewBigInt) \
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O(NewClass) \
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O(NewFunction) \
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O(NewObject) \
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@ -63,6 +63,8 @@ static ByteString format_operand(StringView name, Operand operand, Bytecode::Exe
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builder.appendff("Int32({})", value.as_i32());
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else if (value.is_double())
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builder.appendff("Double({})", value.as_double());
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else if (value.is_bigint())
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builder.appendff("BigInt({})", value.as_bigint().to_byte_string());
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else if (value.is_string())
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builder.appendff("String(\"{}\")", value.as_string().utf8_string_view());
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else if (value.is_undefined())
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@ -854,13 +856,6 @@ static ThrowCompletionOr<Value> typeof_(VM& vm, Value value)
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JS_ENUMERATE_COMMON_UNARY_OPS(JS_DEFINE_COMMON_UNARY_OP)
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ThrowCompletionOr<void> NewBigInt::execute_impl(Bytecode::Interpreter& interpreter) const
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{
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auto& vm = interpreter.vm();
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interpreter.set(dst(), BigInt::create(vm, m_bigint));
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return {};
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}
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ThrowCompletionOr<void> NewArray::execute_impl(Bytecode::Interpreter& interpreter) const
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{
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auto array = MUST(Array::create(interpreter.realm(), 0));
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@ -1613,13 +1608,6 @@ ByteString Mov::to_byte_string_impl(Bytecode::Executable const& executable) cons
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format_operand("src"sv, m_src, executable));
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}
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ByteString NewBigInt::to_byte_string_impl(Bytecode::Executable const& executable) const
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{
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return ByteString::formatted("NewBigInt {}, {}",
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format_operand("dst"sv, dst(), executable),
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m_bigint.to_base_deprecated(10));
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}
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ByteString NewArray::to_byte_string_impl(Bytecode::Executable const& executable) const
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{
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StringBuilder builder;
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@ -239,26 +239,6 @@ private:
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Operand m_excluded_names[];
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};
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class NewBigInt final : public Instruction {
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public:
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NewBigInt(Operand dst, Crypto::SignedBigInteger bigint)
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: Instruction(Type::NewBigInt, sizeof(*this))
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, m_dst(dst)
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, m_bigint(move(bigint))
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{
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}
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ThrowCompletionOr<void> execute_impl(Bytecode::Interpreter&) const;
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ByteString to_byte_string_impl(Bytecode::Executable const&) const;
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Operand dst() const { return m_dst; }
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Crypto::SignedBigInteger const& bigint() const { return m_bigint; }
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private:
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Operand m_dst;
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Crypto::SignedBigInteger m_bigint;
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};
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// NOTE: This instruction is variable-width depending on the number of elements!
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class NewArray final : public Instruction {
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public:
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