mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2025-04-25 14:05:15 +00:00
939 lines
34 KiB
C++
939 lines
34 KiB
C++
/*
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* Copyright (c) 2021, sin-ack <sin-ack@protonmail.com>
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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/EnumBits.h>
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#include <AK/Function.h>
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#include <AK/IPv4Address.h>
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#include <AK/MemMem.h>
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#include <AK/Noncopyable.h>
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#include <AK/Result.h>
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#include <AK/Span.h>
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#include <AK/String.h>
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#include <AK/Time.h>
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#include <AK/Variant.h>
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#include <LibCore/Notifier.h>
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#include <LibCore/SocketAddress.h>
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#include <errno.h>
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#include <netdb.h>
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namespace Core::Stream {
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/// The base, abstract class for stream operations. This class defines the
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/// operations one can perform on every stream in LibCore.
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class Stream {
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public:
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virtual bool is_readable() const { return false; }
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/// Reads into a buffer, with the maximum size being the size of the buffer.
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/// The amount of bytes read can be smaller than the size of the buffer.
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/// Returns either the bytes that were read, or an errno in the case of
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/// failure.
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virtual ErrorOr<Bytes> read(Bytes) = 0;
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/// Tries to fill the entire buffer through reading. Returns whether the
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/// buffer was filled without an error.
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virtual bool read_or_error(Bytes);
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ErrorOr<ByteBuffer> read_all();
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virtual bool is_writable() const { return false; }
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/// Tries to write the entire contents of the buffer. It is possible for
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/// less than the full buffer to be written. Returns either the amount of
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/// bytes written into the stream, or an errno in the case of failure.
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virtual ErrorOr<size_t> write(ReadonlyBytes) = 0;
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/// Same as write, but does not return until either the entire buffer
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/// contents are written or an error occurs. Returns whether the entire
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/// contents were written without an error.
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virtual bool write_or_error(ReadonlyBytes);
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/// Returns whether the stream has reached the end of file. For sockets,
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/// this most likely means that the protocol has disconnected (in the case
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/// of TCP). For seekable streams, this means the end of the file. Note that
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/// is_eof will only return true _after_ a read with 0 length, so this
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/// method should be called after a read.
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virtual bool is_eof() const = 0;
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virtual bool is_open() const = 0;
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virtual void close() = 0;
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virtual ~Stream()
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{
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}
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};
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enum class SeekMode {
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SetPosition,
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FromCurrentPosition,
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FromEndPosition,
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};
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/// Adds seekability to Core::Stream. Classes inheriting from SeekableStream
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/// will be seekable to any point in the stream.
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class SeekableStream : public Stream {
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public:
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/// Seeks to the given position in the given mode. Returns either the
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/// current position of the file, or an errno in the case of an error.
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virtual ErrorOr<off_t> seek(i64 offset, SeekMode) = 0;
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/// Returns the current position of the file, or an errno in the case of
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/// an error.
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virtual ErrorOr<off_t> tell() const;
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/// Returns the total size of the stream, or an errno in the case of an
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/// error. May not preserve the original position on the stream on failure.
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virtual ErrorOr<off_t> size();
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/// Shrinks or extends the stream to the given size. Returns an errno in
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/// the case of an error.
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virtual ErrorOr<void> truncate(off_t length) = 0;
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};
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/// The Socket class is the base class for all concrete BSD-style socket
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/// classes. Sockets are non-seekable streams which can be read byte-wise.
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class Socket : public Stream {
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public:
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Socket(Socket&&) = default;
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Socket& operator=(Socket&&) = default;
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/// Checks how many bytes of data are currently available to read on the
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/// socket. For datagram-based socket, this is the size of the first
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/// datagram that can be read. Returns either the amount of bytes, or an
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/// errno in the case of failure.
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virtual ErrorOr<size_t> pending_bytes() const = 0;
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/// Returns whether there's any data that can be immediately read, or an
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/// errno on failure.
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virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const = 0;
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// Sets the blocking mode of the socket. If blocking mode is disabled, reads
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// will fail with EAGAIN when there's no data available to read, and writes
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// will fail with EAGAIN when the data cannot be written without blocking
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// (due to the send buffer being full, for example).
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virtual ErrorOr<void> set_blocking(bool enabled) = 0;
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// Sets the close-on-exec mode of the socket. If close-on-exec mode is
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// enabled, then the socket will be automatically closed by the kernel when
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// an exec call happens.
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virtual ErrorOr<void> set_close_on_exec(bool enabled) = 0;
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/// Disables any listening mechanisms that this socket uses.
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/// Can be called with 'false' when `on_ready_to_read` notifications are no longer needed.
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/// Conversely, set_notifications_enabled(true) will re-enable notifications.
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virtual void set_notifications_enabled(bool) { }
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Function<void()> on_ready_to_read;
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protected:
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enum class SocketDomain {
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Local,
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Inet,
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};
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enum class SocketType {
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Stream,
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Datagram,
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};
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Socket()
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{
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}
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static ErrorOr<int> create_fd(SocketDomain, SocketType);
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// FIXME: This will need to be updated when IPv6 socket arrives. Perhaps a
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// base class for all address types is appropriate.
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static ErrorOr<IPv4Address> resolve_host(String const&, SocketType);
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static ErrorOr<void> connect_local(int fd, String const& path);
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static ErrorOr<void> connect_inet(int fd, SocketAddress const&);
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};
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/// A reusable socket maintains state about being connected in addition to
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/// normal Socket capabilities, and can be reconnected once disconnected.
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class ReusableSocket : public Socket {
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public:
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/// Returns whether the socket is currently connected.
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virtual bool is_connected() = 0;
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/// Reconnects the socket to the given host and port. Returns EALREADY if
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/// is_connected() is true.
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virtual ErrorOr<void> reconnect(String const& host, u16 port) = 0;
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/// Connects the socket to the given socket address (IP address + port).
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/// Returns EALREADY is_connected() is true.
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virtual ErrorOr<void> reconnect(SocketAddress const&) = 0;
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};
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// Concrete classes.
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enum class OpenMode : unsigned {
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NotOpen = 0,
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Read = 1,
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Write = 2,
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ReadWrite = 3,
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Append = 4,
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Truncate = 8,
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MustBeNew = 16,
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KeepOnExec = 32,
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Nonblocking = 64,
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};
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AK_ENUM_BITWISE_OPERATORS(OpenMode)
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class File final : public SeekableStream {
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AK_MAKE_NONCOPYABLE(File);
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public:
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static ErrorOr<NonnullOwnPtr<File>> open(StringView filename, OpenMode, mode_t = 0644);
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static ErrorOr<NonnullOwnPtr<File>> adopt_fd(int fd, OpenMode);
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static bool exists(StringView filename);
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File(File&& other) { operator=(move(other)); }
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File& operator=(File&& other)
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{
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if (&other == this)
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return *this;
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m_mode = exchange(other.m_mode, OpenMode::NotOpen);
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m_fd = exchange(other.m_fd, -1);
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m_last_read_was_eof = exchange(other.m_last_read_was_eof, false);
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return *this;
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}
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virtual bool is_readable() const override;
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virtual ErrorOr<Bytes> read(Bytes) override;
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virtual bool is_writable() const override;
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virtual ErrorOr<size_t> write(ReadonlyBytes) override;
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virtual bool is_eof() const override;
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virtual bool is_open() const override;
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virtual void close() override;
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virtual ErrorOr<off_t> seek(i64 offset, SeekMode) override;
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virtual ErrorOr<void> truncate(off_t length) override;
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virtual ~File() override { close(); }
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static int open_mode_to_options(OpenMode mode);
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private:
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File(OpenMode mode)
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: m_mode(mode)
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{
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}
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ErrorOr<void> open_path(StringView filename, mode_t);
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OpenMode m_mode { OpenMode::NotOpen };
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int m_fd { -1 };
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bool m_last_read_was_eof { false };
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};
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class PosixSocketHelper {
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AK_MAKE_NONCOPYABLE(PosixSocketHelper);
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public:
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template<typename T>
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PosixSocketHelper(Badge<T>) requires(IsBaseOf<Socket, T>) { }
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PosixSocketHelper(PosixSocketHelper&& other)
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{
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operator=(move(other));
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}
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PosixSocketHelper& operator=(PosixSocketHelper&& other)
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{
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m_fd = exchange(other.m_fd, -1);
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m_last_read_was_eof = exchange(other.m_last_read_was_eof, false);
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m_notifier = move(other.m_notifier);
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return *this;
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}
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int fd() const { return m_fd; }
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void set_fd(int fd) { m_fd = fd; }
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ErrorOr<Bytes> read(Bytes, int flags = 0);
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ErrorOr<size_t> write(ReadonlyBytes);
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bool is_eof() const { return !is_open() || m_last_read_was_eof; }
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bool is_open() const { return m_fd != -1; }
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void close();
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ErrorOr<size_t> pending_bytes() const;
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ErrorOr<bool> can_read_without_blocking(int timeout) const;
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ErrorOr<void> set_blocking(bool enabled);
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ErrorOr<void> set_close_on_exec(bool enabled);
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ErrorOr<void> set_receive_timeout(Time timeout);
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void setup_notifier();
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RefPtr<Core::Notifier> notifier() { return m_notifier; }
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private:
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int m_fd { -1 };
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bool m_last_read_was_eof { false };
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RefPtr<Core::Notifier> m_notifier;
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};
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class TCPSocket final : public Socket {
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public:
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static ErrorOr<NonnullOwnPtr<TCPSocket>> connect(String const& host, u16 port);
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static ErrorOr<NonnullOwnPtr<TCPSocket>> connect(SocketAddress const& address);
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static ErrorOr<NonnullOwnPtr<TCPSocket>> adopt_fd(int fd);
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TCPSocket(TCPSocket&& other)
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: Socket(static_cast<Socket&&>(other))
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, m_helper(move(other.m_helper))
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{
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if (is_open())
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setup_notifier();
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}
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TCPSocket& operator=(TCPSocket&& other)
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{
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Socket::operator=(static_cast<Socket&&>(other));
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m_helper = move(other.m_helper);
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if (is_open())
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setup_notifier();
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return *this;
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}
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virtual bool is_readable() const override { return is_open(); }
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virtual bool is_writable() const override { return is_open(); }
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virtual ErrorOr<Bytes> read(Bytes buffer) override { return m_helper.read(buffer); }
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virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_helper.write(buffer); }
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virtual bool is_eof() const override { return m_helper.is_eof(); }
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virtual bool is_open() const override { return m_helper.is_open(); };
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virtual void close() override { m_helper.close(); };
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virtual ErrorOr<size_t> pending_bytes() const override { return m_helper.pending_bytes(); }
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virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const override { return m_helper.can_read_without_blocking(timeout); }
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virtual void set_notifications_enabled(bool enabled) override
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{
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if (auto notifier = m_helper.notifier())
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notifier->set_enabled(enabled);
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}
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ErrorOr<void> set_blocking(bool enabled) override { return m_helper.set_blocking(enabled); }
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ErrorOr<void> set_close_on_exec(bool enabled) override { return m_helper.set_close_on_exec(enabled); }
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virtual ~TCPSocket() override { close(); }
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private:
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TCPSocket()
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{
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}
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void setup_notifier()
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{
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VERIFY(is_open());
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m_helper.setup_notifier();
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m_helper.notifier()->on_ready_to_read = [this] {
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if (on_ready_to_read)
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on_ready_to_read();
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};
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}
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PosixSocketHelper m_helper { Badge<TCPSocket> {} };
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};
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class UDPSocket final : public Socket {
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public:
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static ErrorOr<NonnullOwnPtr<UDPSocket>> connect(String const& host, u16 port, Optional<Time> timeout = {});
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static ErrorOr<NonnullOwnPtr<UDPSocket>> connect(SocketAddress const& address, Optional<Time> timeout = {});
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UDPSocket(UDPSocket&& other)
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: Socket(static_cast<Socket&&>(other))
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, m_helper(move(other.m_helper))
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{
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if (is_open())
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setup_notifier();
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}
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UDPSocket& operator=(UDPSocket&& other)
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{
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Socket::operator=(static_cast<Socket&&>(other));
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m_helper = move(other.m_helper);
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if (is_open())
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setup_notifier();
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return *this;
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}
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virtual ErrorOr<Bytes> read(Bytes buffer) override
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{
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auto pending_bytes = TRY(this->pending_bytes());
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if (pending_bytes > buffer.size()) {
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// With UDP datagrams, reading a datagram into a buffer that's
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// smaller than the datagram's size will cause the rest of the
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// datagram to be discarded. That's not very nice, so let's bail
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// early, telling the caller that he should allocate a bigger
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// buffer.
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return Error::from_errno(EMSGSIZE);
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}
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return m_helper.read(buffer);
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}
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virtual bool is_readable() const override { return is_open(); }
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virtual bool is_writable() const override { return is_open(); }
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virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_helper.write(buffer); }
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virtual bool is_eof() const override { return m_helper.is_eof(); }
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virtual bool is_open() const override { return m_helper.is_open(); }
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virtual void close() override { m_helper.close(); }
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virtual ErrorOr<size_t> pending_bytes() const override { return m_helper.pending_bytes(); }
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virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const override { return m_helper.can_read_without_blocking(timeout); }
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virtual void set_notifications_enabled(bool enabled) override
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{
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if (auto notifier = m_helper.notifier())
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notifier->set_enabled(enabled);
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}
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ErrorOr<void> set_blocking(bool enabled) override { return m_helper.set_blocking(enabled); }
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ErrorOr<void> set_close_on_exec(bool enabled) override { return m_helper.set_close_on_exec(enabled); }
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virtual ~UDPSocket() override { close(); }
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private:
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UDPSocket() = default;
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void setup_notifier()
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{
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VERIFY(is_open());
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m_helper.setup_notifier();
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m_helper.notifier()->on_ready_to_read = [this] {
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if (on_ready_to_read)
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on_ready_to_read();
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};
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}
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PosixSocketHelper m_helper { Badge<UDPSocket> {} };
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};
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class LocalSocket final : public Socket {
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public:
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static ErrorOr<NonnullOwnPtr<LocalSocket>> connect(String const& path);
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static ErrorOr<NonnullOwnPtr<LocalSocket>> adopt_fd(int fd);
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LocalSocket(LocalSocket&& other)
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: Socket(static_cast<Socket&&>(other))
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, m_helper(move(other.m_helper))
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{
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if (is_open())
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setup_notifier();
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}
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LocalSocket& operator=(LocalSocket&& other)
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{
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Socket::operator=(static_cast<Socket&&>(other));
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m_helper = move(other.m_helper);
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if (is_open())
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setup_notifier();
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return *this;
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}
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virtual bool is_readable() const override { return is_open(); }
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virtual bool is_writable() const override { return is_open(); }
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virtual ErrorOr<Bytes> read(Bytes buffer) override { return m_helper.read(buffer); }
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virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_helper.write(buffer); }
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virtual bool is_eof() const override { return m_helper.is_eof(); }
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virtual bool is_open() const override { return m_helper.is_open(); }
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virtual void close() override { m_helper.close(); }
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virtual ErrorOr<size_t> pending_bytes() const override { return m_helper.pending_bytes(); }
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virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const override { return m_helper.can_read_without_blocking(timeout); }
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virtual ErrorOr<void> set_blocking(bool enabled) override { return m_helper.set_blocking(enabled); }
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virtual ErrorOr<void> set_close_on_exec(bool enabled) override { return m_helper.set_close_on_exec(enabled); }
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virtual void set_notifications_enabled(bool enabled) override
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{
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if (auto notifier = m_helper.notifier())
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notifier->set_enabled(enabled);
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}
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ErrorOr<int> receive_fd(int flags);
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ErrorOr<void> send_fd(int fd);
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ErrorOr<pid_t> peer_pid() const;
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ErrorOr<Bytes> read_without_waiting(Bytes buffer);
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/// Release the fd associated with this LocalSocket. After the fd is
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/// released, the socket will be considered "closed" and all operations done
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/// on it will fail with ENOTCONN. Fails with ENOTCONN if the socket is
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/// already closed.
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ErrorOr<int> release_fd();
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virtual ~LocalSocket() { close(); }
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private:
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LocalSocket() = default;
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void setup_notifier()
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{
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VERIFY(is_open());
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m_helper.setup_notifier();
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m_helper.notifier()->on_ready_to_read = [this] {
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if (on_ready_to_read)
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on_ready_to_read();
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};
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}
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PosixSocketHelper m_helper { Badge<LocalSocket> {} };
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};
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// Buffered stream wrappers
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template<typename T>
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concept StreamLike = IsBaseOf<Stream, T>;
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template<typename T>
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concept SeekableStreamLike = IsBaseOf<SeekableStream, T>;
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template<typename T>
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concept SocketLike = IsBaseOf<Socket, T>;
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template<typename T>
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class BufferedHelper {
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AK_MAKE_NONCOPYABLE(BufferedHelper);
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public:
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template<StreamLike U>
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BufferedHelper(Badge<U>, NonnullOwnPtr<T> stream, ByteBuffer buffer)
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: m_stream(move(stream))
|
|
, m_buffer(move(buffer))
|
|
{
|
|
}
|
|
|
|
BufferedHelper(BufferedHelper&& other)
|
|
: m_stream(move(other.m_stream))
|
|
, m_buffer(move(other.m_buffer))
|
|
, m_buffered_size(exchange(other.m_buffered_size, 0))
|
|
{
|
|
}
|
|
|
|
BufferedHelper& operator=(BufferedHelper&& other)
|
|
{
|
|
m_stream = move(other.m_stream);
|
|
m_buffer = move(other.m_buffer);
|
|
m_buffered_size = exchange(other.m_buffered_size, 0);
|
|
return *this;
|
|
}
|
|
|
|
template<template<typename> typename BufferedType>
|
|
static ErrorOr<NonnullOwnPtr<BufferedType<T>>> create_buffered(NonnullOwnPtr<T> stream, size_t buffer_size)
|
|
{
|
|
if (!buffer_size)
|
|
return Error::from_errno(EINVAL);
|
|
if (!stream->is_open())
|
|
return Error::from_errno(ENOTCONN);
|
|
|
|
auto buffer = TRY(ByteBuffer::create_uninitialized(buffer_size));
|
|
|
|
return adopt_nonnull_own_or_enomem(new BufferedType<T>(move(stream), move(buffer)));
|
|
}
|
|
|
|
T& stream() { return *m_stream; }
|
|
T const& stream() const { return *m_stream; }
|
|
|
|
ErrorOr<Bytes> read(Bytes buffer)
|
|
{
|
|
if (!stream().is_open())
|
|
return Error::from_errno(ENOTCONN);
|
|
if (!buffer.size())
|
|
return Error::from_errno(ENOBUFS);
|
|
|
|
// Fill the internal buffer if it has run dry.
|
|
if (m_buffered_size == 0)
|
|
TRY(populate_read_buffer());
|
|
|
|
// Let's try to take all we can from the buffer first.
|
|
size_t buffer_nread = 0;
|
|
if (m_buffered_size > 0) {
|
|
// FIXME: Use a circular buffer to avoid shifting the buffer
|
|
// contents.
|
|
size_t amount_to_take = min(buffer.size(), m_buffered_size);
|
|
auto slice_to_take = m_buffer.span().slice(0, amount_to_take);
|
|
auto slice_to_shift = m_buffer.span().slice(amount_to_take);
|
|
|
|
slice_to_take.copy_to(buffer);
|
|
buffer_nread += amount_to_take;
|
|
|
|
if (amount_to_take < m_buffered_size) {
|
|
m_buffer.overwrite(0, slice_to_shift.data(), m_buffered_size - amount_to_take);
|
|
}
|
|
m_buffered_size -= amount_to_take;
|
|
}
|
|
|
|
return Bytes { buffer.data(), buffer_nread };
|
|
}
|
|
|
|
// Reads into the buffer until \n is encountered.
|
|
// The size of the Bytes object is the maximum amount of bytes that will be
|
|
// read. Returns the bytes read as a StringView.
|
|
ErrorOr<StringView> read_line(Bytes buffer)
|
|
{
|
|
return StringView { TRY(read_until(buffer, "\n"sv)) };
|
|
}
|
|
|
|
ErrorOr<Bytes> read_until(Bytes buffer, StringView candidate)
|
|
{
|
|
return read_until_any_of(buffer, Array { candidate });
|
|
}
|
|
|
|
template<size_t N>
|
|
ErrorOr<Bytes> read_until_any_of(Bytes buffer, Array<StringView, N> candidates)
|
|
{
|
|
if (!stream().is_open())
|
|
return Error::from_errno(ENOTCONN);
|
|
|
|
if (buffer.is_empty())
|
|
return Error::from_errno(ENOBUFS);
|
|
|
|
// We fill the buffer through can_read_line.
|
|
if (!TRY(can_read_line()))
|
|
return Bytes {};
|
|
|
|
if (stream().is_eof()) {
|
|
if (buffer.size() < m_buffered_size) {
|
|
// Normally, reading from an EOFed stream and receiving bytes
|
|
// would mean that the stream is no longer EOF. However, it's
|
|
// possible with a buffered stream that the user is able to read
|
|
// the buffer contents even when the underlying stream is EOF.
|
|
// We already violate this invariant once by giving the user the
|
|
// chance to read the remaining buffer contents, but if the user
|
|
// doesn't give us a big enough buffer, then we would be
|
|
// violating the invariant twice the next time the user attempts
|
|
// to read, which is No Good. So let's give a descriptive error
|
|
// to the caller about why it can't read.
|
|
return Error::from_errno(EMSGSIZE);
|
|
}
|
|
}
|
|
|
|
// The intention here is to try to match all of the possible
|
|
// delimiter candidates and try to find the longest one we can
|
|
// remove from the buffer after copying up to the delimiter to the
|
|
// user buffer.
|
|
Optional<size_t> longest_match;
|
|
size_t match_size = 0;
|
|
for (auto& candidate : candidates) {
|
|
auto result = AK::memmem_optional(m_buffer.data(), m_buffered_size, candidate.bytes().data(), candidate.bytes().size());
|
|
if (result.has_value()) {
|
|
auto previous_match = longest_match.value_or(*result);
|
|
if ((previous_match < *result) || (previous_match == *result && match_size < candidate.length())) {
|
|
longest_match = result;
|
|
match_size = candidate.length();
|
|
}
|
|
}
|
|
}
|
|
if (longest_match.has_value()) {
|
|
auto size_written_to_user_buffer = *longest_match;
|
|
auto buffer_to_take = m_buffer.span().slice(0, size_written_to_user_buffer);
|
|
auto buffer_to_shift = m_buffer.span().slice(size_written_to_user_buffer + match_size);
|
|
|
|
buffer_to_take.copy_to(buffer);
|
|
m_buffer.overwrite(0, buffer_to_shift.data(), buffer_to_shift.size());
|
|
|
|
m_buffered_size -= size_written_to_user_buffer + match_size;
|
|
|
|
return buffer.slice(0, size_written_to_user_buffer);
|
|
}
|
|
|
|
// If we still haven't found anything, then it's most likely the case
|
|
// that the delimiter ends beyond the length of the caller-passed
|
|
// buffer. Let's just fill the caller's buffer up.
|
|
auto readable_size = min(m_buffered_size, buffer.size());
|
|
auto buffer_to_take = m_buffer.span().slice(0, readable_size);
|
|
auto buffer_to_shift = m_buffer.span().slice(readable_size);
|
|
|
|
buffer_to_take.copy_to(buffer);
|
|
m_buffer.overwrite(0, buffer_to_shift.data(), buffer_to_shift.size());
|
|
|
|
m_buffered_size -= readable_size;
|
|
|
|
return buffer.slice(0, readable_size);
|
|
}
|
|
|
|
// Returns whether a line can be read, populating the buffer in the process.
|
|
ErrorOr<bool> can_read_line()
|
|
{
|
|
if (stream().is_eof() && m_buffered_size > 0)
|
|
return true;
|
|
|
|
if (m_buffer.span().slice(0, m_buffered_size).contains_slow('\n'))
|
|
return true;
|
|
|
|
if (!stream().is_readable())
|
|
return false;
|
|
|
|
while (m_buffered_size < m_buffer.size()) {
|
|
auto populated_slice = TRY(populate_read_buffer());
|
|
|
|
if (stream().is_eof()) {
|
|
// We give the user one last hurrah to read the remaining
|
|
// contents as a "line".
|
|
return m_buffered_size > 0;
|
|
}
|
|
|
|
if (populated_slice.contains_slow('\n'))
|
|
return true;
|
|
|
|
if (populated_slice.is_empty())
|
|
break;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
bool is_eof() const
|
|
{
|
|
if (m_buffered_size > 0) {
|
|
return false;
|
|
}
|
|
|
|
return stream().is_eof();
|
|
}
|
|
|
|
size_t buffer_size() const
|
|
{
|
|
return m_buffer.size();
|
|
}
|
|
|
|
size_t buffered_data_size() const
|
|
{
|
|
return m_buffered_size;
|
|
}
|
|
|
|
void clear_buffer()
|
|
{
|
|
m_buffered_size = 0;
|
|
}
|
|
|
|
private:
|
|
ErrorOr<ReadonlyBytes> populate_read_buffer()
|
|
{
|
|
if (m_buffered_size == m_buffer.size())
|
|
return ReadonlyBytes {};
|
|
|
|
auto fillable_slice = m_buffer.span().slice(m_buffered_size);
|
|
size_t nread = 0;
|
|
do {
|
|
auto result = stream().read(fillable_slice);
|
|
if (result.is_error()) {
|
|
if (!result.error().is_errno())
|
|
return result.error();
|
|
if (result.error().code() == EINTR)
|
|
continue;
|
|
if (result.error().code() == EAGAIN)
|
|
break;
|
|
return result.error();
|
|
}
|
|
auto read_size = result.value().size();
|
|
m_buffered_size += read_size;
|
|
nread += read_size;
|
|
break;
|
|
} while (true);
|
|
return fillable_slice.slice(0, nread);
|
|
}
|
|
|
|
NonnullOwnPtr<T> m_stream;
|
|
// FIXME: Replacing this with a circular buffer would be really nice and
|
|
// would avoid excessive copies; however, right now
|
|
// AK::CircularDuplexBuffer inlines its entire contents, and that
|
|
// would make for a very large object on the stack.
|
|
//
|
|
// The proper fix is to make a CircularQueue which uses a buffer on
|
|
// the heap.
|
|
ByteBuffer m_buffer;
|
|
size_t m_buffered_size { 0 };
|
|
};
|
|
|
|
// NOTE: A Buffered which accepts any Stream could be added here, but it is not
|
|
// needed at the moment.
|
|
|
|
template<SeekableStreamLike T>
|
|
class BufferedSeekable final : public SeekableStream {
|
|
friend BufferedHelper<T>;
|
|
|
|
public:
|
|
static ErrorOr<NonnullOwnPtr<BufferedSeekable<T>>> create(NonnullOwnPtr<T> stream, size_t buffer_size = 16384)
|
|
{
|
|
return BufferedHelper<T>::template create_buffered<BufferedSeekable>(move(stream), buffer_size);
|
|
}
|
|
|
|
BufferedSeekable(BufferedSeekable&& other) = default;
|
|
BufferedSeekable& operator=(BufferedSeekable&& other) = default;
|
|
|
|
virtual bool is_readable() const override { return m_helper.stream().is_readable(); }
|
|
virtual ErrorOr<Bytes> read(Bytes buffer) override { return m_helper.read(move(buffer)); }
|
|
virtual bool is_writable() const override { return m_helper.stream().is_writable(); }
|
|
virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_helper.stream().write(buffer); }
|
|
virtual bool is_eof() const override { return m_helper.is_eof(); }
|
|
virtual bool is_open() const override { return m_helper.stream().is_open(); }
|
|
virtual void close() override { m_helper.stream().close(); }
|
|
virtual ErrorOr<off_t> seek(i64 offset, SeekMode mode) override
|
|
{
|
|
auto result = TRY(m_helper.stream().seek(offset, mode));
|
|
m_helper.clear_buffer();
|
|
return result;
|
|
}
|
|
virtual ErrorOr<void> truncate(off_t length) override
|
|
{
|
|
return m_helper.stream().truncate(length);
|
|
}
|
|
|
|
ErrorOr<StringView> read_line(Bytes buffer) { return m_helper.read_line(move(buffer)); }
|
|
ErrorOr<Bytes> read_until(Bytes buffer, StringView candidate) { return m_helper.read_until(move(buffer), move(candidate)); }
|
|
template<size_t N>
|
|
ErrorOr<Bytes> read_until_any_of(Bytes buffer, Array<StringView, N> candidates) { return m_helper.read_until_any_of(move(buffer), move(candidates)); }
|
|
ErrorOr<bool> can_read_line() { return m_helper.can_read_line(); }
|
|
|
|
size_t buffer_size() const { return m_helper.buffer_size(); }
|
|
|
|
virtual ~BufferedSeekable() override = default;
|
|
|
|
private:
|
|
BufferedSeekable(NonnullOwnPtr<T> stream, ByteBuffer buffer)
|
|
: m_helper(Badge<BufferedSeekable<T>> {}, move(stream), buffer)
|
|
{
|
|
}
|
|
|
|
BufferedHelper<T> m_helper;
|
|
};
|
|
|
|
class BufferedSocketBase : public Socket {
|
|
public:
|
|
virtual ErrorOr<StringView> read_line(Bytes buffer) = 0;
|
|
virtual ErrorOr<Bytes> read_until(Bytes buffer, StringView candidate) = 0;
|
|
virtual ErrorOr<bool> can_read_line() = 0;
|
|
virtual size_t buffer_size() const = 0;
|
|
};
|
|
|
|
template<SocketLike T>
|
|
class BufferedSocket final : public BufferedSocketBase {
|
|
friend BufferedHelper<T>;
|
|
|
|
public:
|
|
static ErrorOr<NonnullOwnPtr<BufferedSocket<T>>> create(NonnullOwnPtr<T> stream, size_t buffer_size = 16384)
|
|
{
|
|
return BufferedHelper<T>::template create_buffered<BufferedSocket>(move(stream), buffer_size);
|
|
}
|
|
|
|
BufferedSocket(BufferedSocket&& other)
|
|
: BufferedSocketBase(static_cast<BufferedSocketBase&&>(other))
|
|
, m_helper(move(other.m_helper))
|
|
{
|
|
setup_notifier();
|
|
}
|
|
|
|
BufferedSocket& operator=(BufferedSocket&& other)
|
|
{
|
|
Socket::operator=(static_cast<Socket&&>(other));
|
|
m_helper = move(other.m_helper);
|
|
|
|
setup_notifier();
|
|
return *this;
|
|
}
|
|
|
|
virtual bool is_readable() const override { return m_helper.stream().is_readable(); }
|
|
virtual ErrorOr<Bytes> read(Bytes buffer) override { return m_helper.read(move(buffer)); }
|
|
virtual bool is_writable() const override { return m_helper.stream().is_writable(); }
|
|
virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_helper.stream().write(buffer); }
|
|
virtual bool is_eof() const override { return m_helper.is_eof(); }
|
|
virtual bool is_open() const override { return m_helper.stream().is_open(); }
|
|
virtual void close() override { m_helper.stream().close(); }
|
|
virtual ErrorOr<size_t> pending_bytes() const override
|
|
{
|
|
return TRY(m_helper.stream().pending_bytes()) + m_helper.buffered_data_size();
|
|
}
|
|
virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const override { return m_helper.buffered_data_size() > 0 || TRY(m_helper.stream().can_read_without_blocking(timeout)); }
|
|
virtual ErrorOr<void> set_blocking(bool enabled) override { return m_helper.stream().set_blocking(enabled); }
|
|
virtual ErrorOr<void> set_close_on_exec(bool enabled) override { return m_helper.stream().set_close_on_exec(enabled); }
|
|
virtual void set_notifications_enabled(bool enabled) override { m_helper.stream().set_notifications_enabled(enabled); }
|
|
|
|
virtual ErrorOr<StringView> read_line(Bytes buffer) override { return m_helper.read_line(move(buffer)); }
|
|
virtual ErrorOr<Bytes> read_until(Bytes buffer, StringView candidate) override { return m_helper.read_until(move(buffer), move(candidate)); }
|
|
template<size_t N>
|
|
ErrorOr<Bytes> read_until_any_of(Bytes buffer, Array<StringView, N> candidates) { return m_helper.read_until_any_of(move(buffer), move(candidates)); }
|
|
virtual ErrorOr<bool> can_read_line() override { return m_helper.can_read_line(); }
|
|
|
|
virtual size_t buffer_size() const override { return m_helper.buffer_size(); }
|
|
|
|
virtual ~BufferedSocket() override = default;
|
|
|
|
private:
|
|
BufferedSocket(NonnullOwnPtr<T> stream, ByteBuffer buffer)
|
|
: m_helper(Badge<BufferedSocket<T>> {}, move(stream), buffer)
|
|
{
|
|
setup_notifier();
|
|
}
|
|
|
|
void setup_notifier()
|
|
{
|
|
m_helper.stream().on_ready_to_read = [this] {
|
|
if (on_ready_to_read)
|
|
on_ready_to_read();
|
|
};
|
|
}
|
|
|
|
BufferedHelper<T> m_helper;
|
|
};
|
|
|
|
using BufferedFile = BufferedSeekable<File>;
|
|
using BufferedTCPSocket = BufferedSocket<TCPSocket>;
|
|
using BufferedUDPSocket = BufferedSocket<UDPSocket>;
|
|
using BufferedLocalSocket = BufferedSocket<LocalSocket>;
|
|
|
|
/// A BasicReusableSocket allows one to use one of the base Core::Stream classes
|
|
/// as a ReusableSocket. It does not preserve any connection state or options,
|
|
/// and instead just recreates the stream when reconnecting.
|
|
template<SocketLike T>
|
|
class BasicReusableSocket final : public ReusableSocket {
|
|
public:
|
|
static ErrorOr<NonnullOwnPtr<BasicReusableSocket<T>>> connect(String const& host, u16 port)
|
|
{
|
|
return make<BasicReusableSocket<T>>(TRY(T::connect(host, port)));
|
|
}
|
|
|
|
static ErrorOr<NonnullOwnPtr<BasicReusableSocket<T>>> connect(SocketAddress const& address)
|
|
{
|
|
return make<BasicReusableSocket<T>>(TRY(T::connect(address)));
|
|
}
|
|
|
|
virtual bool is_connected() override
|
|
{
|
|
return m_socket.is_open();
|
|
}
|
|
|
|
virtual ErrorOr<void> reconnect(String const& host, u16 port) override
|
|
{
|
|
if (is_connected())
|
|
return Error::from_errno(EALREADY);
|
|
|
|
m_socket = TRY(T::connect(host, port));
|
|
return {};
|
|
}
|
|
|
|
virtual ErrorOr<void> reconnect(SocketAddress const& address) override
|
|
{
|
|
if (is_connected())
|
|
return Error::from_errno(EALREADY);
|
|
|
|
m_socket = TRY(T::connect(address));
|
|
return {};
|
|
}
|
|
|
|
virtual bool is_readable() const override { return m_socket.is_readable(); }
|
|
virtual ErrorOr<Bytes> read(Bytes buffer) override { return m_socket.read(move(buffer)); }
|
|
virtual bool is_writable() const override { return m_socket.is_writable(); }
|
|
virtual ErrorOr<size_t> write(ReadonlyBytes buffer) override { return m_socket.write(buffer); }
|
|
virtual bool is_eof() const override { return m_socket.is_eof(); }
|
|
virtual bool is_open() const override { return m_socket.is_open(); }
|
|
virtual void close() override { m_socket.close(); }
|
|
virtual ErrorOr<size_t> pending_bytes() const override { return m_socket.pending_bytes(); }
|
|
virtual ErrorOr<bool> can_read_without_blocking(int timeout = 0) const override { return m_socket.can_read_without_blocking(timeout); }
|
|
virtual ErrorOr<void> set_blocking(bool enabled) override { return m_socket.set_blocking(enabled); }
|
|
virtual ErrorOr<void> set_close_on_exec(bool enabled) override { return m_socket.set_close_on_exec(enabled); }
|
|
|
|
private:
|
|
BasicReusableSocket(NonnullOwnPtr<T> socket)
|
|
: m_socket(move(socket))
|
|
{
|
|
}
|
|
|
|
NonnullOwnPtr<T> m_socket;
|
|
};
|
|
|
|
using ReusableTCPSocket = BasicReusableSocket<TCPSocket>;
|
|
using ReusableUDPSocket = BasicReusableSocket<UDPSocket>;
|
|
|
|
}
|