// Copyright (c) 2012, 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 "platform/assert.h" #include "vm/bootstrap_natives.h" #include "vm/class_finalizer.h" #include "vm/dart.h" #include "vm/dart_api_impl.h" #include "vm/dart_entry.h" #include "vm/exceptions.h" #include "vm/longjump.h" #include "vm/message_handler.h" #include "vm/object.h" #include "vm/object_store.h" #include "vm/port.h" #include "vm/resolver.h" #include "vm/snapshot.h" #include "vm/symbols.h" #include "vm/thread.h" namespace dart { class IsolateStartData { public: IsolateStartData(char* library_url, char* class_name, intptr_t port_id) : library_url_(library_url), class_name_(class_name), port_id_(port_id) {} char* library_url_; char* class_name_; intptr_t port_id_; }; static uint8_t* allocator(uint8_t* ptr, intptr_t old_size, intptr_t new_size) { void* new_ptr = realloc(reinterpret_cast(ptr), new_size); return reinterpret_cast(new_ptr); } // TODO(turnidge): Move to DartLibraryCalls. static RawObject* ReceivePortCreate(intptr_t port_id) { Isolate* isolate = Isolate::Current(); Function& func = Function::Handle(isolate, isolate->object_store()->receive_port_create_function()); const int kNumArguments = 1; if (func.IsNull()) { Library& isolate_lib = Library::Handle(Library::IsolateLibrary()); ASSERT(!isolate_lib.IsNull()); const String& class_name = String::Handle(isolate_lib.PrivateName(Symbols::_RawReceivePortImpl())); const String& function_name = String::Handle(isolate_lib.PrivateName(Symbols::_get_or_create())); func = Resolver::ResolveStatic(isolate_lib, class_name, function_name, kNumArguments, Object::empty_array()); ASSERT(!func.IsNull()); isolate->object_store()->set_receive_port_create_function(func); } const Array& args = Array::Handle(isolate, Array::New(kNumArguments)); args.SetAt(0, Integer::Handle(isolate, Integer::New(port_id))); const Object& result = Object::Handle(isolate, DartEntry::InvokeFunction(func, args)); if (!result.IsError()) { PortMap::SetLive(port_id); } return result.raw(); } DEFINE_NATIVE_ENTRY(RawReceivePortImpl_factory, 1) { ASSERT(AbstractTypeArguments::CheckedHandle( arguments->NativeArgAt(0)).IsNull()); intptr_t port_id = PortMap::CreatePort(arguments->isolate()->message_handler()); const Object& port = Object::Handle(ReceivePortCreate(port_id)); if (port.IsError()) { Exceptions::PropagateError(Error::Cast(port)); } return port.raw(); } DEFINE_NATIVE_ENTRY(RawReceivePortImpl_closeInternal, 1) { GET_NON_NULL_NATIVE_ARGUMENT(Smi, id, arguments->NativeArgAt(0)); PortMap::ClosePort(id.Value()); return Object::null(); } DEFINE_NATIVE_ENTRY(SendPortImpl_sendInternal_, 2) { GET_NON_NULL_NATIVE_ARGUMENT(Smi, send_id, arguments->NativeArgAt(0)); // TODO(iposva): Allow for arbitrary messages to be sent. GET_NON_NULL_NATIVE_ARGUMENT(Instance, obj, arguments->NativeArgAt(1)); uint8_t* data = NULL; MessageWriter writer(&data, &allocator); writer.WriteMessage(obj); // TODO(turnidge): Throw an exception when the return value is false? PortMap::PostMessage(new Message(send_id.Value(), data, writer.BytesWritten(), Message::kNormalPriority)); return Object::null(); } static void ThrowIsolateSpawnException(const String& message) { const Array& args = Array::Handle(Array::New(1)); args.SetAt(0, message); Exceptions::ThrowByType(Exceptions::kIsolateSpawn, args); } static bool CanonicalizeUri(Isolate* isolate, const Library& library, const String& uri, char** canonical_uri, char** error) { Zone* zone = isolate->current_zone(); bool retval = false; Dart_LibraryTagHandler handler = isolate->library_tag_handler(); if (handler != NULL) { Dart_EnterScope(); Dart_Handle result = handler(Dart_kCanonicalizeUrl, Api::NewHandle(isolate, library.raw()), Api::NewHandle(isolate, uri.raw())); const Object& obj = Object::Handle(Api::UnwrapHandle(result)); if (obj.IsString()) { *canonical_uri = zone->MakeCopyOfString(String::Cast(obj).ToCString()); retval = true; } else if (obj.IsError()) { Error& error_obj = Error::Handle(); error_obj ^= obj.raw(); *error = zone->PrintToString("Unable to canonicalize uri '%s': %s", uri.ToCString(), error_obj.ToErrorCString()); } else { *error = zone->PrintToString("Unable to canonicalize uri '%s': " "library tag handler returned wrong type", uri.ToCString()); } Dart_ExitScope(); } else { *error = zone->PrintToString( "Unable to canonicalize uri '%s': no library tag handler found.", uri.ToCString()); } return retval; } static bool CreateIsolate(IsolateSpawnState* state, char** error) { Isolate* parent_isolate = Isolate::Current(); Dart_IsolateCreateCallback callback = Isolate::CreateCallback(); if (callback == NULL) { *error = strdup("Null callback specified for isolate creation\n"); Isolate::SetCurrent(parent_isolate); return false; } void* init_data = parent_isolate->init_callback_data(); Isolate* child_isolate = reinterpret_cast( (callback)(state->script_url(), state->function_name(), init_data, error)); if (child_isolate == NULL) { Isolate::SetCurrent(parent_isolate); return false; } state->set_isolate(reinterpret_cast(child_isolate)); Isolate::SetCurrent(parent_isolate); return true; } static RawObject* Spawn(NativeArguments* arguments, IsolateSpawnState* state) { // Create a new isolate. char* error = NULL; if (!CreateIsolate(state, &error)) { delete state; const String& msg = String::Handle(String::New(error)); free(error); ThrowIsolateSpawnException(msg); } // Try to create a SendPort for the new isolate. const Object& port = Object::Handle( DartLibraryCalls::NewSendPort(state->isolate()->main_port())); if (port.IsError()) { state->Cleanup(); delete state; Exceptions::PropagateError(Error::Cast(port)); } // Start the new isolate if it is already marked as runnable. MutexLocker ml(state->isolate()->mutex()); state->isolate()->set_spawn_data(reinterpret_cast(state)); if (state->isolate()->is_runnable()) { state->isolate()->Run(); } return port.raw(); } DEFINE_NATIVE_ENTRY(Isolate_spawnFunction, 1) { GET_NON_NULL_NATIVE_ARGUMENT(Instance, closure, arguments->NativeArgAt(0)); if (closure.IsClosure()) { Function& func = Function::Handle(); func = Closure::function(closure); if (func.IsImplicitClosureFunction() && func.is_static()) { #if defined(DEBUG) Context& ctx = Context::Handle(); ctx = Closure::context(closure); ASSERT(ctx.num_variables() == 0); #endif return Spawn(arguments, new IsolateSpawnState(func)); } } const String& msg = String::Handle(String::New( "Isolate.spawn expects to be passed a static or top-level function")); Exceptions::ThrowArgumentError(msg); return Object::null(); } DEFINE_NATIVE_ENTRY(Isolate_spawnUri, 1) { GET_NON_NULL_NATIVE_ARGUMENT(String, uri, arguments->NativeArgAt(0)); // Canonicalize the uri with respect to the current isolate. char* error = NULL; char* canonical_uri = NULL; const Library& root_lib = Library::Handle(arguments->isolate()->object_store()->root_library()); if (!CanonicalizeUri(arguments->isolate(), root_lib, uri, &canonical_uri, &error)) { const String& msg = String::Handle(String::New(error)); ThrowIsolateSpawnException(msg); } return Spawn(arguments, new IsolateSpawnState(canonical_uri)); } DEFINE_NATIVE_ENTRY(Isolate_mainPort, 0) { const Object& port = Object::Handle(ReceivePortCreate(isolate->main_port())); if (port.IsError()) { Exceptions::PropagateError(Error::Cast(port)); } // The control port is being accessed as a regular port from Dart code. This // is most likely due to the _startIsolate code in dart:isolate. Account for // this by increasing the number of open control ports. isolate->message_handler()->increment_control_ports(); return port.raw(); } } // namespace dart