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785c9d5c2b
This should allow us to eventually properly saturate high-bandwidth network links when using TCP, once other nonoptimal parts of our network stack are improved.
146 lines
5.7 KiB
C++
146 lines
5.7 KiB
C++
/*
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* Copyright (c) 2018-2020, Andreas Kling <kling@serenityos.org>
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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/HashMap.h>
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#include <AK/SinglyLinkedList.h>
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#include <Kernel/Library/DoubleBuffer.h>
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#include <Kernel/Library/KBuffer.h>
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#include <Kernel/Locking/MutexProtected.h>
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#include <Kernel/Net/IPv4.h>
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#include <Kernel/Net/IPv4SocketTuple.h>
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#include <Kernel/Net/Socket.h>
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namespace Kernel {
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class NetworkAdapter;
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class TCPPacket;
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class TCPSocket;
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class IPv4Socket : public Socket {
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public:
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static ErrorOr<NonnullRefPtr<Socket>> create(int type, int protocol);
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virtual ~IPv4Socket() override;
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virtual ErrorOr<void> close() override;
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virtual ErrorOr<void> bind(Credentials const&, Userspace<sockaddr const*>, socklen_t) override;
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virtual ErrorOr<void> connect(Credentials const&, OpenFileDescription&, Userspace<sockaddr const*>, socklen_t) override;
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virtual ErrorOr<void> listen(size_t) override;
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virtual void get_local_address(sockaddr*, socklen_t*) override;
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virtual void get_peer_address(sockaddr*, socklen_t*) override;
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virtual bool can_read(OpenFileDescription const&, u64) const override;
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virtual bool can_write(OpenFileDescription const&, u64) const override;
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virtual ErrorOr<size_t> sendto(OpenFileDescription&, UserOrKernelBuffer const&, size_t, int, Userspace<sockaddr const*>, socklen_t) override;
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virtual ErrorOr<size_t> recvfrom(OpenFileDescription&, UserOrKernelBuffer&, size_t, int flags, Userspace<sockaddr*>, Userspace<socklen_t*>, UnixDateTime&, bool blocking) override;
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virtual ErrorOr<void> setsockopt(int level, int option, Userspace<void const*>, socklen_t) override;
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virtual ErrorOr<void> getsockopt(OpenFileDescription&, int level, int option, Userspace<void*>, Userspace<socklen_t*>) override;
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virtual ErrorOr<void> ioctl(OpenFileDescription&, unsigned request, Userspace<void*> arg) override;
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bool did_receive(IPv4Address const& peer_address, u16 peer_port, ReadonlyBytes, UnixDateTime const&);
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IPv4Address const& local_address() const { return m_local_address; }
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u16 local_port() const { return m_local_port; }
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void set_local_port(u16 port) { m_local_port = port; }
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bool has_specific_local_address() { return m_local_address.to_u32() != 0; }
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IPv4Address const& peer_address() const { return m_peer_address; }
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u16 peer_port() const { return m_peer_port; }
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void set_peer_port(u16 port) { m_peer_port = port; }
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Vector<IPv4Address> const& multicast_memberships() const { return m_multicast_memberships; }
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IPv4SocketTuple tuple() const { return IPv4SocketTuple(m_local_address, m_local_port, m_peer_address, m_peer_port); }
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ErrorOr<NonnullOwnPtr<KString>> pseudo_path(OpenFileDescription const& description) const override;
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u8 type_of_service() const { return m_type_of_service; }
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u8 ttl() const { return m_ttl; }
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enum class BufferMode {
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Packets,
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Bytes,
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};
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BufferMode buffer_mode() const { return m_buffer_mode; }
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protected:
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static constexpr size_t receive_buffer_size = 256 * KiB;
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IPv4Socket(int type, int protocol, NonnullOwnPtr<DoubleBuffer> receive_buffer, OwnPtr<KBuffer> optional_scratch_buffer);
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virtual StringView class_name() const override { return "IPv4Socket"sv; }
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void set_bound(bool bound) { m_bound = bound; }
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ErrorOr<void> ensure_bound();
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virtual ErrorOr<void> protocol_bind() { return {}; }
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virtual ErrorOr<void> protocol_listen() { return {}; }
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virtual ErrorOr<size_t> protocol_receive(ReadonlyBytes /* raw_ipv4_packet */, UserOrKernelBuffer&, size_t, int) { return ENOTIMPL; }
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virtual ErrorOr<size_t> protocol_send(UserOrKernelBuffer const&, size_t) { return ENOTIMPL; }
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virtual ErrorOr<void> protocol_connect(OpenFileDescription&) { return {}; }
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virtual ErrorOr<size_t> protocol_size(ReadonlyBytes /* raw_ipv4_packet */) { return ENOTIMPL; }
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virtual bool protocol_is_disconnected() const { return false; }
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virtual void shut_down_for_reading() override;
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void set_local_address(IPv4Address address) { m_local_address = address; }
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void set_peer_address(IPv4Address address) { m_peer_address = address; }
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static ErrorOr<NonnullOwnPtr<DoubleBuffer>> try_create_receive_buffer();
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void drop_receive_buffer();
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size_t available_space_in_receive_buffer() const { return m_receive_buffer ? m_receive_buffer->space_for_writing() : 0; }
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private:
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virtual bool is_ipv4() const override { return true; }
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ErrorOr<size_t> receive_byte_buffered(OpenFileDescription&, UserOrKernelBuffer& buffer, size_t buffer_length, int flags, Userspace<sockaddr*>, Userspace<socklen_t*>, bool blocking);
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ErrorOr<size_t> receive_packet_buffered(OpenFileDescription&, UserOrKernelBuffer& buffer, size_t buffer_length, int flags, Userspace<sockaddr*>, Userspace<socklen_t*>, UnixDateTime&, bool blocking);
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void set_can_read(bool);
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IPv4Address m_local_address;
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IPv4Address m_peer_address;
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Vector<IPv4Address> m_multicast_memberships;
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bool m_multicast_loop { true };
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bool m_bound { false };
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struct ReceivedPacket {
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IPv4Address peer_address;
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u16 peer_port;
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UnixDateTime timestamp;
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OwnPtr<KBuffer> data;
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};
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SinglyLinkedList<ReceivedPacket, CountingSizeCalculationPolicy> m_receive_queue;
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OwnPtr<DoubleBuffer> m_receive_buffer;
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u16 m_local_port { 0 };
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u16 m_peer_port { 0 };
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u32 m_bytes_received { 0 };
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u8 m_type_of_service { IPTOS_LOWDELAY };
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u8 m_ttl { 64 };
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bool m_can_read { false };
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BufferMode m_buffer_mode { BufferMode::Packets };
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OwnPtr<KBuffer> m_scratch_buffer;
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IntrusiveListNode<IPv4Socket> m_list_node;
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public:
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using List = IntrusiveList<&IPv4Socket::m_list_node>;
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static MutexProtected<IPv4Socket::List>& all_sockets();
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};
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}
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