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			233 lines
		
	
	
	
		
			7.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			233 lines
		
	
	
	
		
			7.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
/*
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 * Copyright (c) 2021, 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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#include <AK/Vector.h>
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#include <LibCore/Socket.h>
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#include <LibCore/Timer.h>
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#include <LibIPC/Connection.h>
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#include <LibIPC/Message.h>
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#include <LibIPC/Stub.h>
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namespace IPC {
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ConnectionBase::ConnectionBase(IPC::Stub& local_stub, NonnullOwnPtr<Core::LocalSocket> socket, u32 local_endpoint_magic)
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    : m_local_stub(local_stub)
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    , m_socket(move(socket))
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    , m_local_endpoint_magic(local_endpoint_magic)
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{
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    m_responsiveness_timer = Core::Timer::create_single_shot(3000, [this] { may_have_become_unresponsive(); });
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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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ConnectionBase::~ConnectionBase() = default;
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bool ConnectionBase::is_open() const
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{
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    return m_socket->is_open();
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}
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ErrorOr<void> ConnectionBase::post_message(Message const& message)
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{
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    return post_message(TRY(message.encode()));
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}
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ErrorOr<void> ConnectionBase::post_message(MessageBuffer buffer)
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{
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    // NOTE: If this connection is being shut down, but has not yet been destroyed,
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    //       the socket will be closed. Don't try to send more messages.
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    if (!m_socket->is_open())
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        return Error::from_string_literal("Trying to post_message during IPC shutdown");
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    if (auto result = buffer.transfer_message(*m_socket); result.is_error()) {
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        shutdown_with_error(result.error());
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        return result.release_error();
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    }
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    m_responsiveness_timer->start();
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    return {};
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}
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void ConnectionBase::shutdown()
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{
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    m_socket->close();
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    die();
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}
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void ConnectionBase::shutdown_with_error(Error const& error)
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{
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    dbgln("IPC::ConnectionBase ({:p}) had an error ({}), disconnecting.", this, error);
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    shutdown();
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}
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void ConnectionBase::handle_messages()
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{
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    auto messages = move(m_unprocessed_messages);
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    for (auto& message : messages) {
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        if (message->endpoint_magic() == m_local_endpoint_magic) {
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            auto handler_result = m_local_stub.handle(*message);
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            if (handler_result.is_error()) {
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                dbgln("IPC::ConnectionBase::handle_messages: {}", handler_result.error());
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                continue;
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            }
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            if (auto response = handler_result.release_value()) {
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                if (auto post_result = post_message(*response); post_result.is_error()) {
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                    dbgln("IPC::ConnectionBase::handle_messages: {}", post_result.error());
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                }
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            }
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        }
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    }
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}
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void ConnectionBase::wait_for_socket_to_become_readable()
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{
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    auto maybe_did_become_readable = m_socket->can_read_without_blocking(-1);
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    if (maybe_did_become_readable.is_error()) {
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        dbgln("ConnectionBase::wait_for_socket_to_become_readable: {}", maybe_did_become_readable.error());
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        warnln("ConnectionBase::wait_for_socket_to_become_readable: {}", maybe_did_become_readable.error());
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        VERIFY_NOT_REACHED();
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    }
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    VERIFY(maybe_did_become_readable.value());
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}
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ErrorOr<Vector<u8>> ConnectionBase::read_as_much_as_possible_from_socket_without_blocking()
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{
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    Vector<u8> bytes;
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    if (!m_unprocessed_bytes.is_empty()) {
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        bytes.append(m_unprocessed_bytes.data(), m_unprocessed_bytes.size());
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        m_unprocessed_bytes.clear();
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    }
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    u8 buffer[4096];
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    Vector<int> received_fds;
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    bool should_shut_down = false;
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    auto schedule_shutdown = [this, &should_shut_down]() {
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        should_shut_down = true;
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        deferred_invoke([this] {
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            shutdown();
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        });
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    };
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    while (m_socket->is_open()) {
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        auto maybe_bytes_read = m_socket->receive_message({ buffer, 4096 }, MSG_DONTWAIT, received_fds);
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        if (maybe_bytes_read.is_error()) {
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            auto error = maybe_bytes_read.release_error();
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            if (error.is_syscall() && error.code() == EAGAIN) {
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                break;
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            }
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            if (error.is_syscall() && error.code() == ECONNRESET) {
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                schedule_shutdown();
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                break;
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            }
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            dbgln("ConnectionBase::read_as_much_as_possible_from_socket_without_blocking: {}", error);
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            warnln("ConnectionBase::read_as_much_as_possible_from_socket_without_blocking: {}", error);
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            VERIFY_NOT_REACHED();
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        }
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        auto bytes_read = maybe_bytes_read.release_value();
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        if (bytes_read.is_empty()) {
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            schedule_shutdown();
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            break;
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        }
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        bytes.append(bytes_read.data(), bytes_read.size());
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        for (auto const& fd : received_fds)
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            m_unprocessed_fds.enqueue(IPC::File::adopt_fd(fd));
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    }
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    if (!bytes.is_empty()) {
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        m_responsiveness_timer->stop();
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        did_become_responsive();
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    } else if (should_shut_down) {
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        return Error::from_string_literal("IPC connection EOF");
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    }
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    return bytes;
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}
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ErrorOr<void> ConnectionBase::drain_messages_from_peer()
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{
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    auto bytes = TRY(read_as_much_as_possible_from_socket_without_blocking());
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    size_t index = 0;
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    try_parse_messages(bytes, index);
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    if (index < bytes.size()) {
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        // Sometimes we might receive a partial message. That's okay, just stash away
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        // the unprocessed bytes and we'll prepend them to the next incoming message
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        // in the next run of this function.
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        auto remaining_bytes = TRY(ByteBuffer::copy(bytes.span().slice(index)));
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        if (!m_unprocessed_bytes.is_empty()) {
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            shutdown();
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            return Error::from_string_literal("drain_messages_from_peer: Already have unprocessed bytes");
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        }
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        m_unprocessed_bytes = move(remaining_bytes);
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    }
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    if (!m_unprocessed_messages.is_empty()) {
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        deferred_invoke([this] {
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            handle_messages();
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        });
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    }
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    return {};
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}
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OwnPtr<IPC::Message> ConnectionBase::wait_for_specific_endpoint_message_impl(u32 endpoint_magic, int message_id)
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{
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    for (;;) {
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        // Double check we don't already have the event waiting for us.
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        // Otherwise we might end up blocked for a while for no reason.
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        for (size_t i = 0; i < m_unprocessed_messages.size(); ++i) {
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            auto& message = m_unprocessed_messages[i];
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            if (message->endpoint_magic() != endpoint_magic)
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                continue;
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            if (message->message_id() == message_id)
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                return m_unprocessed_messages.take(i);
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        }
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        if (!m_socket->is_open())
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            break;
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        wait_for_socket_to_become_readable();
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        if (drain_messages_from_peer().is_error())
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            break;
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    }
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    return {};
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}
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void ConnectionBase::try_parse_messages(Vector<u8> const& bytes, size_t& index)
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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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        if (auto message = try_parse_message(remaining_bytes, m_unprocessed_fds)) {
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            m_unprocessed_messages.append(message.release_nonnull());
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            continue;
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        }
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        dbgln("Failed to parse IPC message:");
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        dbgln("{:hex-dump}", remaining_bytes);
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        break;
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    }
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}
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}
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