5f36c5f9d8
In Dart2, type bounds checking is either performed by the common front-end or by explicitly generated code, but not by type finalization or runtime anymore, as it was done in Dart1. Consequently, the class BoundedType is not needed anymore, and malbounded or malformed types are not seen by the runtime either. Change-Id: I5d6e4c68d153d6730fa7ff7f6d9dcfa611299c16 Reviewed-on: https://dart-review.googlesource.com/c/86687 Commit-Queue: Régis Crelier <regis@google.com> Reviewed-by: Ryan Macnak <rmacnak@google.com> Reviewed-by: Samir Jindel <sjindel@google.com>
194 lines
7.7 KiB
C++
194 lines
7.7 KiB
C++
// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#include "vm/bootstrap_natives.h"
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#include "vm/exceptions.h"
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#include "vm/object_store.h"
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#include "vm/runtime_entry.h"
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#include "vm/stack_frame.h"
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#include "vm/symbols.h"
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namespace dart {
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// Scan the stack until we hit the first function in the _AssertionError
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// class. We then return the next frame's script taking inlining into account.
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static RawScript* FindScript(DartFrameIterator* iterator) {
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#if defined(DART_PRECOMPILED_RUNTIME)
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// The precompiled runtime faces two issues in recovering the correct
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// assertion text. First, the precompiled runtime does not include
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// the inlining meta-data so we cannot walk the inline-aware stack trace.
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// Second, the script text itself is missing so whatever script is returned
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// from here will be missing the assertion expression text.
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iterator->NextFrame(); // Skip _AssertionError._evaluateAssertion frame
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return Exceptions::GetCallerScript(iterator);
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#else
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StackFrame* stack_frame = iterator->NextFrame();
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Code& code = Code::Handle();
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Function& func = Function::Handle();
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const Class& assert_error_class =
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Class::Handle(Library::LookupCoreClass(Symbols::AssertionError()));
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ASSERT(!assert_error_class.IsNull());
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bool hit_assertion_error = false;
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for (; stack_frame != NULL; stack_frame = iterator->NextFrame()) {
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if (stack_frame->is_interpreted()) {
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func = stack_frame->LookupDartFunction();
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} else {
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code ^= stack_frame->LookupDartCode();
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if (code.is_optimized()) {
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InlinedFunctionsIterator inlined_iterator(code, stack_frame->pc());
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while (!inlined_iterator.Done()) {
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func ^= inlined_iterator.function();
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if (hit_assertion_error) {
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return func.script();
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}
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ASSERT(!hit_assertion_error);
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hit_assertion_error = (func.Owner() == assert_error_class.raw());
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inlined_iterator.Advance();
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}
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continue;
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} else {
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func = code.function();
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}
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}
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ASSERT(!func.IsNull());
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if (hit_assertion_error) {
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return func.script();
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}
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ASSERT(!hit_assertion_error);
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hit_assertion_error = (func.Owner() == assert_error_class.raw());
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}
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UNREACHABLE();
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return Script::null();
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#endif // defined(DART_PRECOMPILED_RUNTIME)
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}
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// Allocate and throw a new AssertionError.
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// Arg0: index of the first token of the failed assertion.
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// Arg1: index of the first token after the failed assertion.
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// Arg2: Message object or null.
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// Return value: none, throws an exception.
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DEFINE_NATIVE_ENTRY(AssertionError_throwNew, 3) {
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// No need to type check the arguments. This function can only be called
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// internally from the VM.
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const TokenPosition assertion_start = TokenPosition(
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Smi::CheckedHandle(zone, arguments->NativeArgAt(0)).Value());
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const TokenPosition assertion_end = TokenPosition(
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Smi::CheckedHandle(zone, arguments->NativeArgAt(1)).Value());
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const Instance& message =
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Instance::CheckedHandle(zone, arguments->NativeArgAt(2));
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const Array& args = Array::Handle(zone, Array::New(5));
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DartFrameIterator iterator(thread,
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StackFrameIterator::kNoCrossThreadIteration);
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iterator.NextFrame(); // Skip native call.
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const Script& script = Script::Handle(FindScript(&iterator));
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// Initialize argument 'failed_assertion' with source snippet.
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intptr_t from_line, from_column;
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script.GetTokenLocation(assertion_start, &from_line, &from_column);
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intptr_t to_line, to_column;
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script.GetTokenLocation(assertion_end, &to_line, &to_column);
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// The snippet will extract the correct assertion code even if the source
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// is generated.
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args.SetAt(0, String::Handle(script.GetSnippet(from_line, from_column,
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to_line, to_column)));
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// Initialize location arguments starting at position 1.
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// Do not set a column if the source has been generated as it will be wrong.
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args.SetAt(1, String::Handle(script.url()));
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args.SetAt(2, Smi::Handle(Smi::New(from_line)));
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args.SetAt(3, Smi::Handle(Smi::New(script.HasSource() ? from_column : -1)));
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args.SetAt(4, message);
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Exceptions::ThrowByType(Exceptions::kAssertion, args);
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UNREACHABLE();
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return Object::null();
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}
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// Allocate and throw a new TypeError or CastError.
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// Arg0: index of the token of the failed type check.
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// Arg1: src value.
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// Arg2: dst type.
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// Arg3: dst name.
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// Return value: none, throws an exception.
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DEFINE_NATIVE_ENTRY(TypeError_throwNew, 4) {
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// No need to type check the arguments. This function can only be called
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// internally from the VM.
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const TokenPosition location = TokenPosition(
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Smi::CheckedHandle(zone, arguments->NativeArgAt(0)).Value());
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const Instance& src_value =
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Instance::CheckedHandle(zone, arguments->NativeArgAt(1));
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const AbstractType& dst_type =
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AbstractType::CheckedHandle(zone, arguments->NativeArgAt(2));
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const String& dst_name =
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String::CheckedHandle(zone, arguments->NativeArgAt(3));
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const AbstractType& src_type =
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AbstractType::Handle(src_value.GetType(Heap::kNew));
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Exceptions::CreateAndThrowTypeError(location, src_type, dst_type, dst_name);
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UNREACHABLE();
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return Object::null();
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}
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// Allocate and throw a new FallThroughError.
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// Arg0: index of the case clause token into which we fall through.
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// Return value: none, throws an exception.
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DEFINE_NATIVE_ENTRY(FallThroughError_throwNew, 1) {
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GET_NON_NULL_NATIVE_ARGUMENT(Smi, smi_pos, arguments->NativeArgAt(0));
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TokenPosition fallthrough_pos = TokenPosition(smi_pos.Value());
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const Array& args = Array::Handle(Array::New(2));
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// Initialize 'url' and 'line' arguments.
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DartFrameIterator iterator(thread,
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StackFrameIterator::kNoCrossThreadIteration);
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iterator.NextFrame(); // Skip native call.
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const Script& script = Script::Handle(Exceptions::GetCallerScript(&iterator));
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args.SetAt(0, String::Handle(script.url()));
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intptr_t line;
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script.GetTokenLocation(fallthrough_pos, &line, NULL);
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args.SetAt(1, Smi::Handle(Smi::New(line)));
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Exceptions::ThrowByType(Exceptions::kFallThrough, args);
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UNREACHABLE();
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return Object::null();
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}
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// Allocate and throw a new AbstractClassInstantiationError.
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// Arg0: Token position of allocation statement.
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// Arg1: class name of the abstract class that cannot be instantiated.
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// Return value: none, throws an exception.
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DEFINE_NATIVE_ENTRY(AbstractClassInstantiationError_throwNew, 2) {
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GET_NON_NULL_NATIVE_ARGUMENT(Smi, smi_pos, arguments->NativeArgAt(0));
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GET_NON_NULL_NATIVE_ARGUMENT(String, class_name, arguments->NativeArgAt(1));
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TokenPosition error_pos = TokenPosition(smi_pos.Value());
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const Array& args = Array::Handle(Array::New(3));
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// Initialize 'className', 'url' and 'line' arguments.
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DartFrameIterator iterator(thread,
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StackFrameIterator::kNoCrossThreadIteration);
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iterator.NextFrame(); // Skip native call.
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const Script& script = Script::Handle(Exceptions::GetCallerScript(&iterator));
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args.SetAt(0, class_name);
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args.SetAt(1, String::Handle(script.url()));
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intptr_t line;
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script.GetTokenLocation(error_pos, &line, NULL);
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args.SetAt(2, Smi::Handle(Smi::New(line)));
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Exceptions::ThrowByType(Exceptions::kAbstractClassInstantiation, args);
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UNREACHABLE();
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return Object::null();
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}
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// Rethrow an error with a stacktrace.
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DEFINE_NATIVE_ENTRY(Async_rethrow, 2) {
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GET_NON_NULL_NATIVE_ARGUMENT(Instance, error, arguments->NativeArgAt(0));
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GET_NON_NULL_NATIVE_ARGUMENT(Instance, stacktrace, arguments->NativeArgAt(1));
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Exceptions::ReThrow(thread, error, stacktrace);
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return Object::null();
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}
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} // namespace dart
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