// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file // for details. All rights reserved. Use of this source code is governed by a // BSD-style license that can be found in the LICENSE file. #include "lib/error.h" #include "vm/bootstrap_natives.h" #include "vm/exceptions.h" #include "vm/object_store.h" #include "vm/runtime_entry.h" #include "vm/stack_frame.h" namespace dart { DECLARE_FLAG(bool, print_stack_trace_at_throw); // Static helpers for allocating, initializing, and throwing an error instance. // Return the script of the Dart function that called the native entry or the // runtime entry. The frame iterator points to the callee. static RawScript* GetCallerScript(DartFrameIterator* iterator) { DartFrame* caller_frame = iterator->NextFrame(); ASSERT(caller_frame != NULL); const Function& caller = Function::Handle(caller_frame->LookupDartFunction()); ASSERT(!caller.IsNull()); const Class& caller_class = Class::Handle(caller.owner()); return caller_class.script(); } // Allocate a new instance of the given class name. // TODO(hausner): Rename this NewCoreInstance to call out the fact that // the class name is resolved in the core library implicitly? static RawInstance* NewInstance(const char* class_name) { const String& cls_name = String::Handle(String::NewSymbol(class_name)); const Library& core_lib = Library::Handle(Library::CoreLibrary()); Class& cls = Class::Handle(core_lib.LookupClass(cls_name)); ASSERT(!cls.IsNull()); // There are no parameterized error types, so no need to set type arguments. return Instance::New(cls); } // Assign the value to the field given by its name in the given instance. static void SetField(const Instance& instance, const Class& cls, const char* field_name, const Object& value) { const Field& field = Field::Handle(cls.LookupInstanceField( String::Handle(String::NewSymbol(field_name)))); ASSERT(!field.IsNull()); instance.SetField(field, value); } // Initialize the fields 'url', 'line', and 'column' in the given instance // according to the given token location in the given script. static void SetLocationFields(const Instance& instance, const Class& cls, const Script& script, intptr_t location) { SetField(instance, cls, "url", String::Handle(script.url())); intptr_t line, column; script.GetTokenLocation(location, &line, &column); SetField(instance, cls, "line", Smi::Handle(Smi::New(line))); SetField(instance, cls, "column", Smi::Handle(Smi::New(column))); } // Allocate and throw a new AssertError. // Arg0: index of the first token of the failed assertion. // Arg1: index of the first token after the failed assertion. // Return value: none, throws an exception. DEFINE_NATIVE_ENTRY(AssertError_throwNew, 2) { intptr_t assertion_start = Smi::CheckedHandle(arguments->At(0)).Value(); intptr_t assertion_end = Smi::CheckedHandle(arguments->At(1)).Value(); // Allocate a new instance of type AssertError. const Instance& assert_error = Instance::Handle(NewInstance("AssertError")); // Initialize 'url', 'line', and 'column' fields. DartFrameIterator iterator; iterator.NextFrame(); // Skip native call. const Script& script = Script::Handle(GetCallerScript(&iterator)); const Class& cls = Class::Handle(assert_error.clazz()); SetLocationFields(assert_error, cls, script, assertion_start); // Initialize field 'failed_assertion' with source snippet. intptr_t from_line, from_column; script.GetTokenLocation(assertion_start, &from_line, &from_column); intptr_t to_line, to_column; script.GetTokenLocation(assertion_end, &to_line, &to_column); SetField(assert_error, cls, "failedAssertion", String::Handle( script.GetSnippet(from_line, from_column, to_line, to_column))); // Throw AssertError instance. Exceptions::Throw(assert_error); UNREACHABLE(); } // Allocate, initialize, and throw a TypeError. static void ThrowTypeError(intptr_t location, const String& src_type_name, const String& dst_type_name, const String& dst_name) { // Allocate a new instance of TypeError. const Instance& type_error = Instance::Handle(NewInstance("TypeError")); // Initialize 'url', 'line', and 'column' fields. DartFrameIterator iterator; const Script& script = Script::Handle(GetCallerScript(&iterator)); const Class& cls = Class::Handle(type_error.clazz()); // Location fields are defined in AssertError, the superclass of TypeError. const Class& assert_error_class = Class::Handle(cls.SuperClass()); SetLocationFields(type_error, assert_error_class, script, location); // Initialize field 'failedAssertion' in AssertError superclass. // Printing the src_obj value would be possible, but ToString() is expensive // and not meaningful for all classes, so we just print '$expr instanceof...'. // Users should look at TypeError.ToString(), which contains more useful // information than AssertError.failedAssertion. String& failed_assertion = String::Handle(String::New("$expr instanceof ")); failed_assertion = String::Concat(failed_assertion, dst_type_name); SetField(type_error, assert_error_class, "failedAssertion", failed_assertion); // Initialize field 'srcType'. SetField(type_error, cls, "srcType", src_type_name); // Initialize field 'dstType'. SetField(type_error, cls, "dstType", dst_type_name); // Initialize field 'dstName'. SetField(type_error, cls, "dstName", dst_name); // Type errors in the core library may be difficult to diagnose. // Print type error information before throwing the error when debugging. if (FLAG_print_stack_trace_at_throw) { OS::Print("Type %s is not assignable to type %s of %s.\n", src_type_name.ToCString(), dst_type_name.ToCString(), dst_name.ToCString()); } // Throw TypeError instance. Exceptions::Throw(type_error); UNREACHABLE(); } // Allocate and throw a new FallThroughError. // Arg0: index of the case clause token into which we fall through. // Return value: none, throws an exception. DEFINE_NATIVE_ENTRY(FallThroughError_throwNew, 1) { intptr_t fallthrough_pos = Smi::CheckedHandle(arguments->At(0)).Value(); // Allocate a new instance of type FallThroughError. const Instance& fallthrough_error = Instance::Handle(NewInstance("FallThroughError")); ASSERT(!fallthrough_error.IsNull()); // Initialize 'url' and 'line' fields. DartFrameIterator iterator; iterator.NextFrame(); // Skip native call. const Script& script = Script::Handle(GetCallerScript(&iterator)); const Class& cls = Class::Handle(fallthrough_error.clazz()); SetField(fallthrough_error, cls, "url", String::Handle(script.url())); intptr_t line, column; script.GetTokenLocation(fallthrough_pos, &line, &column); SetField(fallthrough_error, cls, "line", Smi::Handle(Smi::New(line))); // Throw FallThroughError instance. Exceptions::Throw(fallthrough_error); UNREACHABLE(); } // Check that the type of the given instance is assignable to the given type. // Arg0: index of the token of the assignment (source location). // Arg1: instance being assigned. // Arg2: type being assigned to. // Arg3: type arguments of the instantiator of the type being assigned to. // Arg4: name of instance being assigned to. // Return value: instance if assignable, otherwise throw a TypeError. DEFINE_RUNTIME_ENTRY(TypeCheck, 5) { ASSERT(arguments.Count() == kTypeCheckRuntimeEntry.argument_count()); intptr_t location = Smi::CheckedHandle(arguments.At(0)).Value(); const Instance& src_instance = Instance::CheckedHandle(arguments.At(1)); const Type& dst_type = Type::CheckedHandle(arguments.At(2)); const TypeArguments& dst_type_instantiator = TypeArguments::CheckedHandle(arguments.At(3)); const String& dst_name = String::CheckedHandle(arguments.At(4)); ASSERT(!dst_type.IsVarType()); // No need to check assignment to 'var type'. ASSERT(!src_instance.IsNull()); // Already checked in inlined code. if (!src_instance.IsAssignableTo(dst_type, dst_type_instantiator)) { const Type& src_type = Type::Handle(src_instance.GetType()); const String& src_type_name = String::Handle(src_type.Name()); String& dst_type_name = String::Handle(); if (!dst_type.IsInstantiated()) { // Instantiate dst_type before reporting the error. const Type& instantiated_dst_type = Type::Handle( dst_type.InstantiateFrom(dst_type_instantiator, 0)); dst_type_name = instantiated_dst_type.Name(); } else { dst_type_name = dst_type.Name(); } ThrowTypeError(location, src_type_name, dst_type_name, dst_name); UNREACHABLE(); } arguments.SetReturn(src_instance); } // Check that the type of the given object is allowed in conditional context. // Arg0: index of the token of the assignment (source location). // Arg1: object being checked. // Return value: checked value, otherwise allocate and throw a TypeError. DEFINE_RUNTIME_ENTRY(ConditionTypeCheck, 2) { ASSERT(arguments.Count() == kConditionTypeCheckRuntimeEntry.argument_count()); intptr_t location = Smi::CheckedHandle(arguments.At(0)).Value(); const Instance& src_instance = Instance::CheckedHandle(arguments.At(1)); const char* msg = "boolean expression"; if (src_instance.IsNull() || !src_instance.IsBool()) { const Type& bool_interface = Type::Handle(Type::BoolInterface()); const Type& src_type = Type::Handle(src_instance.GetType()); const String& src_type_name = String::Handle(src_type.Name()); const String& bool_type_name = String::Handle(bool_interface.Name()); ThrowTypeError(location, src_type_name, bool_type_name, String::Handle(String::NewSymbol(msg))); UNREACHABLE(); } arguments.SetReturn(src_instance); } // Check that the type of each element of the given array is assignable to the // given type. // Arg0: index of the token of the rest argument declaration (source location). // Arg1: rest argument array. // Arg2: element declaration type. // Arg3: type arguments of the instantiator of the element declaration type. // Arg4: name of object being assigned to, i.e. name of rest argument. // Return value: null if assignable, otherwise allocate and throw a TypeError. DEFINE_RUNTIME_ENTRY(RestArgumentTypeCheck, 5) { ASSERT(arguments.Count() == kRestArgumentTypeCheckRuntimeEntry.argument_count()); intptr_t location = Smi::CheckedHandle(arguments.At(0)).Value(); const Array& rest_array = Array::CheckedHandle(arguments.At(1)); const Type& element_type = Type::CheckedHandle(arguments.At(2)); const TypeArguments& element_type_instantiator = TypeArguments::CheckedHandle(arguments.At(3)); const String& rest_name = String::CheckedHandle(arguments.At(4)); ASSERT(!element_type.IsVarType()); // No need to check assignment. ASSERT(!rest_array.IsNull()); Instance& elem = Instance::Handle(); for (intptr_t i = 0; i < rest_array.Length(); i++) { elem ^= rest_array.At(i); if (!elem.IsNull() && !elem.IsAssignableTo(element_type, element_type_instantiator)) { // Allocate and throw a new instance of TypeError. char buf[256]; OS::SNPrint(buf, sizeof(buf), "%s[%d]", rest_name.ToCString(), static_cast(i)); const String& src_type_name = String::Handle(Type::Handle(elem.GetType()).Name()); String& dst_type_name = String::Handle(); if (!element_type.IsInstantiated()) { // Instantiate element_type before reporting the error. const Type& instantiated_element_type = Type::Handle( element_type.InstantiateFrom(element_type_instantiator, 0)); dst_type_name = instantiated_element_type.Name(); } else { dst_type_name = element_type.Name(); } const String& dst_name = String::Handle(String::New(buf)); ThrowTypeError(location, src_type_name, dst_type_name, dst_name); UNREACHABLE(); } } } } // namespace dart