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165 lines
5.6 KiB
C++
165 lines
5.6 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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* Copyright (c) 2022, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#pragma once
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#include <AK/ByteBuffer.h>
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#include <AK/Try.h>
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#include <LibCore/Event.h>
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#include <LibCore/EventLoop.h>
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#include <LibCore/Notifier.h>
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#include <LibCore/Socket.h>
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#include <LibCore/Timer.h>
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#include <LibIPC/Forward.h>
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#include <LibIPC/Message.h>
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#include <errno.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <sys/socket.h>
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#include <sys/types.h>
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#include <unistd.h>
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namespace IPC {
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// NOTE: This is an abstraction to allow using IPC::Connection without a Core::EventLoop.
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// FIXME: It's not particularly nice, think of something nicer.
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struct DeferredInvoker {
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virtual ~DeferredInvoker() = default;
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virtual void schedule(Function<void()>) = 0;
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};
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class ConnectionBase : public Core::Object {
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C_OBJECT_ABSTRACT(ConnectionBase);
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public:
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virtual ~ConnectionBase() override = default;
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void set_fd_passing_socket(NonnullOwnPtr<Core::LocalSocket>);
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void set_deferred_invoker(NonnullOwnPtr<DeferredInvoker>);
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DeferredInvoker& deferred_invoker() { return *m_deferred_invoker; }
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bool is_open() const { return m_socket->is_open(); }
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ErrorOr<void> post_message(Message const&);
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void shutdown();
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virtual void die() { }
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Core::LocalSocket& socket() { return *m_socket; }
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Core::LocalSocket& fd_passing_socket();
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protected:
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explicit ConnectionBase(IPC::Stub&, NonnullOwnPtr<Core::LocalSocket>, u32 local_endpoint_magic);
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virtual void may_have_become_unresponsive() { }
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virtual void did_become_responsive() { }
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virtual void try_parse_messages(Vector<u8> const& bytes, size_t& index) = 0;
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virtual void shutdown_with_error(Error const&);
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OwnPtr<IPC::Message> wait_for_specific_endpoint_message_impl(u32 endpoint_magic, int message_id);
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void wait_for_socket_to_become_readable();
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ErrorOr<Vector<u8>> read_as_much_as_possible_from_socket_without_blocking();
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ErrorOr<void> drain_messages_from_peer();
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ErrorOr<void> post_message(MessageBuffer);
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void handle_messages();
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IPC::Stub& m_local_stub;
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NonnullOwnPtr<Core::LocalSocket> m_socket;
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OwnPtr<Core::LocalSocket> m_fd_passing_socket;
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RefPtr<Core::Timer> m_responsiveness_timer;
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Vector<NonnullOwnPtr<Message>> m_unprocessed_messages;
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ByteBuffer m_unprocessed_bytes;
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u32 m_local_endpoint_magic { 0 };
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NonnullOwnPtr<DeferredInvoker> m_deferred_invoker;
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};
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template<typename LocalEndpoint, typename PeerEndpoint>
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class Connection : public ConnectionBase {
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public:
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Connection(IPC::Stub& local_stub, NonnullOwnPtr<Core::LocalSocket> socket)
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: ConnectionBase(local_stub, move(socket), LocalEndpoint::static_magic())
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{
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m_socket->on_ready_to_read = [this] {
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NonnullRefPtr protect = *this;
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// FIXME: Do something about errors.
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(void)drain_messages_from_peer();
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handle_messages();
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};
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}
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template<typename MessageType>
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OwnPtr<MessageType> wait_for_specific_message()
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{
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return wait_for_specific_endpoint_message<MessageType, LocalEndpoint>();
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}
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template<typename RequestType, typename... Args>
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NonnullOwnPtr<typename RequestType::ResponseType> send_sync(Args&&... args)
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{
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MUST(post_message(RequestType(forward<Args>(args)...)));
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auto response = wait_for_specific_endpoint_message<typename RequestType::ResponseType, PeerEndpoint>();
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VERIFY(response);
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return response.release_nonnull();
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}
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template<typename RequestType, typename... Args>
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OwnPtr<typename RequestType::ResponseType> send_sync_but_allow_failure(Args&&... args)
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{
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if (post_message(RequestType(forward<Args>(args)...)).is_error())
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return nullptr;
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return wait_for_specific_endpoint_message<typename RequestType::ResponseType, PeerEndpoint>();
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}
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protected:
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template<typename MessageType, typename Endpoint>
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OwnPtr<MessageType> wait_for_specific_endpoint_message()
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{
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if (auto message = wait_for_specific_endpoint_message_impl(Endpoint::static_magic(), MessageType::static_message_id()))
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return message.template release_nonnull<MessageType>();
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return {};
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}
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virtual void try_parse_messages(Vector<u8> const& bytes, size_t& index) override
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{
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u32 message_size = 0;
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for (; index + sizeof(message_size) < bytes.size(); index += message_size) {
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memcpy(&message_size, bytes.data() + index, sizeof(message_size));
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if (message_size == 0 || bytes.size() - index - sizeof(uint32_t) < message_size)
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break;
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index += sizeof(message_size);
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auto remaining_bytes = ReadonlyBytes { bytes.data() + index, message_size };
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auto local_message = LocalEndpoint::decode_message(remaining_bytes, fd_passing_socket());
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if (!local_message.is_error()) {
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m_unprocessed_messages.append(local_message.release_value());
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continue;
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}
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auto peer_message = PeerEndpoint::decode_message(remaining_bytes, fd_passing_socket());
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if (!peer_message.is_error()) {
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m_unprocessed_messages.append(peer_message.release_value());
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continue;
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}
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dbgln("Failed to parse a message");
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dbgln("Local endpoint error: {}", local_message.error());
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dbgln("Peer endpoint error: {}", peer_message.error());
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break;
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}
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}
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};
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}
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template<typename LocalEndpoint, typename PeerEndpoint>
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struct AK::Formatter<IPC::Connection<LocalEndpoint, PeerEndpoint>> : Formatter<Core::Object> {
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};
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