1 use core::{ 2 fmt::{self, Debug}, 3 sync::atomic::AtomicUsize, 4 }; 5 6 use alloc::{ 7 boxed::Box, 8 collections::BTreeMap, 9 sync::{Arc, Weak}, 10 }; 11 12 use crate::{ 13 driver::net::NetDriver, 14 kwarn, 15 libs::{rwlock::RwLock, spinlock::SpinLock}, 16 net::event_poll::EventPoll, 17 syscall::SystemError, 18 }; 19 use smoltcp::{iface::SocketHandle, wire::IpEndpoint}; 20 21 use self::{ 22 event_poll::{EPollEventType, EPollItem}, 23 socket::{SocketMetadata, HANDLE_MAP}, 24 }; 25 26 pub mod endpoints; 27 pub mod event_poll; 28 pub mod net_core; 29 pub mod socket; 30 pub mod syscall; 31 32 lazy_static! { 33 /// @brief 所有网络接口的列表 34 pub static ref NET_DRIVERS: RwLock<BTreeMap<usize, Arc<dyn NetDriver>>> = RwLock::new(BTreeMap::new()); 35 } 36 37 /// @brief 生成网络接口的id (全局自增) 38 pub fn generate_iface_id() -> usize { 39 static IFACE_ID: AtomicUsize = AtomicUsize::new(0); 40 return IFACE_ID 41 .fetch_add(1, core::sync::atomic::Ordering::SeqCst) 42 .into(); 43 } 44 45 bitflags! { 46 /// @brief 用于指定socket的关闭类型 47 /// 参考:https://opengrok.ringotek.cn/xref/linux-6.1.9/include/net/sock.h?fi=SHUTDOWN_MASK#1573 48 pub struct ShutdownType: u8 { 49 const RCV_SHUTDOWN = 1; 50 const SEND_SHUTDOWN = 2; 51 const SHUTDOWN_MASK = 3; 52 } 53 } 54 55 #[derive(Debug, Clone)] 56 pub enum Endpoint { 57 /// 链路层端点 58 LinkLayer(endpoints::LinkLayerEndpoint), 59 /// 网络层端点 60 Ip(Option<IpEndpoint>), 61 // todo: 增加NetLink机制后,增加NetLink端点 62 } 63 64 pub trait Socket: Sync + Send + Debug { 65 /// @brief 从socket中读取数据,如果socket是阻塞的,那么直到读取到数据才返回 66 /// 67 /// @param buf 读取到的数据存放的缓冲区 68 /// 69 /// @return - 成功:(返回读取的数据的长度,读取数据的端点). 70 /// - 失败:错误码 71 fn read(&mut self, buf: &mut [u8]) -> (Result<usize, SystemError>, Endpoint); 72 73 /// @brief 向socket中写入数据。如果socket是阻塞的,那么直到写入的数据全部写入socket中才返回 74 /// 75 /// @param buf 要写入的数据 76 /// @param to 要写入的目的端点,如果是None,那么写入的数据将会被丢弃 77 /// 78 /// @return 返回写入的数据的长度 79 fn write(&self, buf: &[u8], to: Option<Endpoint>) -> Result<usize, SystemError>; 80 81 /// @brief 对应于POSIX的connect函数,用于连接到指定的远程服务器端点 82 /// 83 /// It is used to establish a connection to a remote server. 84 /// When a socket is connected to a remote server, 85 /// the operating system will establish a network connection with the server 86 /// and allow data to be sent and received between the local socket and the remote server. 87 /// 88 /// @param endpoint 要连接的端点 89 /// 90 /// @return 返回连接是否成功 91 fn connect(&mut self, endpoint: Endpoint) -> Result<(), SystemError>; 92 93 /// @brief 对应于POSIX的bind函数,用于绑定到本机指定的端点 94 /// 95 /// The bind() function is used to associate a socket with a particular IP address and port number on the local machine. 96 /// 97 /// @param endpoint 要绑定的端点 98 /// 99 /// @return 返回绑定是否成功 100 fn bind(&mut self, _endpoint: Endpoint) -> Result<(), SystemError> { 101 return Err(SystemError::ENOSYS); 102 } 103 104 /// @brief 对应于 POSIX 的 shutdown 函数,用于关闭socket。 105 /// 106 /// shutdown() 函数用于启动网络连接的正常关闭。 107 /// 当在两个端点之间建立网络连接时,任一端点都可以通过调用其端点对象上的 shutdown() 函数来启动关闭序列。 108 /// 此函数向远程端点发送关闭消息以指示本地端点不再接受新数据。 109 /// 110 /// @return 返回是否成功关闭 111 fn shutdown(&mut self, _type: ShutdownType) -> Result<(), SystemError> { 112 return Err(SystemError::ENOSYS); 113 } 114 115 /// @brief 对应于POSIX的listen函数,用于监听端点 116 /// 117 /// @param backlog 最大的等待连接数 118 /// 119 /// @return 返回监听是否成功 120 fn listen(&mut self, _backlog: usize) -> Result<(), SystemError> { 121 return Err(SystemError::ENOSYS); 122 } 123 124 /// @brief 对应于POSIX的accept函数,用于接受连接 125 /// 126 /// @param endpoint 对端的端点 127 /// 128 /// @return 返回接受连接是否成功 129 fn accept(&mut self) -> Result<(Box<dyn Socket>, Endpoint), SystemError> { 130 return Err(SystemError::ENOSYS); 131 } 132 133 /// @brief 获取socket的端点 134 /// 135 /// @return 返回socket的端点 136 fn endpoint(&self) -> Option<Endpoint> { 137 return None; 138 } 139 140 /// @brief 获取socket的对端端点 141 /// 142 /// @return 返回socket的对端端点 143 fn peer_endpoint(&self) -> Option<Endpoint> { 144 return None; 145 } 146 147 /// @brief 148 /// The purpose of the poll function is to provide 149 /// a non-blocking way to check if a socket is ready for reading or writing, 150 /// so that you can efficiently handle multiple sockets in a single thread or event loop. 151 /// 152 /// @return (in, out, err) 153 /// 154 /// The first boolean value indicates whether the socket is ready for reading. If it is true, then there is data available to be read from the socket without blocking. 155 /// The second boolean value indicates whether the socket is ready for writing. If it is true, then data can be written to the socket without blocking. 156 /// The third boolean value indicates whether the socket has encountered an error condition. If it is true, then the socket is in an error state and should be closed or reset 157 /// 158 fn poll(&self) -> EPollEventType { 159 return EPollEventType::empty(); 160 } 161 162 /// @brief socket的ioctl函数 163 /// 164 /// @param cmd ioctl命令 165 /// @param arg0 ioctl命令的第一个参数 166 /// @param arg1 ioctl命令的第二个参数 167 /// @param arg2 ioctl命令的第三个参数 168 /// 169 /// @return 返回ioctl命令的返回值 170 fn ioctl( 171 &self, 172 _cmd: usize, 173 _arg0: usize, 174 _arg1: usize, 175 _arg2: usize, 176 ) -> Result<usize, SystemError> { 177 return Ok(0); 178 } 179 180 /// @brief 获取socket的元数据 181 fn metadata(&self) -> Result<SocketMetadata, SystemError>; 182 183 fn box_clone(&self) -> Box<dyn Socket>; 184 185 /// @brief 设置socket的选项 186 /// 187 /// @param level 选项的层次 188 /// @param optname 选项的名称 189 /// @param optval 选项的值 190 /// 191 /// @return 返回设置是否成功, 如果不支持该选项,返回ENOSYS 192 fn setsockopt( 193 &self, 194 _level: usize, 195 _optname: usize, 196 _optval: &[u8], 197 ) -> Result<(), SystemError> { 198 kwarn!("setsockopt is not implemented"); 199 return Ok(()); 200 } 201 202 fn socket_handle(&self) -> SocketHandle; 203 204 fn add_epoll(&mut self, epitem: Arc<EPollItem>) -> Result<(), SystemError> { 205 HANDLE_MAP 206 .write_irqsave() 207 .get_mut(&self.socket_handle()) 208 .unwrap() 209 .add_epoll(epitem); 210 Ok(()) 211 } 212 213 fn remove_epoll( 214 &mut self, 215 epoll: &Weak<SpinLock<event_poll::EventPoll>>, 216 ) -> Result<(), SystemError> { 217 HANDLE_MAP 218 .write_irqsave() 219 .get_mut(&self.socket_handle()) 220 .unwrap() 221 .remove_epoll(epoll)?; 222 223 Ok(()) 224 } 225 226 fn clear_epoll(&mut self) -> Result<(), SystemError> { 227 let mut handle_map_guard = HANDLE_MAP.write_irqsave(); 228 let handle_item = handle_map_guard.get_mut(&self.socket_handle()).unwrap(); 229 230 for epitem in handle_item.epitems.lock_irqsave().iter() { 231 let epoll = epitem.epoll(); 232 let _ = EventPoll::ep_remove( 233 &mut epoll.upgrade().unwrap().lock_irqsave(), 234 epitem.fd(), 235 None, 236 ); 237 } 238 239 Ok(()) 240 } 241 } 242 243 impl Clone for Box<dyn Socket> { 244 fn clone(&self) -> Box<dyn Socket> { 245 self.box_clone() 246 } 247 } 248 249 /// IP datagram encapsulated protocol. 250 #[derive(Debug, PartialEq, Eq, Clone, Copy)] 251 #[repr(u8)] 252 pub enum Protocol { 253 HopByHop = 0x00, 254 Icmp = 0x01, 255 Igmp = 0x02, 256 Tcp = 0x06, 257 Udp = 0x11, 258 Ipv6Route = 0x2b, 259 Ipv6Frag = 0x2c, 260 Icmpv6 = 0x3a, 261 Ipv6NoNxt = 0x3b, 262 Ipv6Opts = 0x3c, 263 Unknown(u8), 264 } 265 266 impl fmt::Display for Protocol { 267 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 268 match *self { 269 Protocol::HopByHop => write!(f, "Hop-by-Hop"), 270 Protocol::Icmp => write!(f, "ICMP"), 271 Protocol::Igmp => write!(f, "IGMP"), 272 Protocol::Tcp => write!(f, "TCP"), 273 Protocol::Udp => write!(f, "UDP"), 274 Protocol::Ipv6Route => write!(f, "IPv6-Route"), 275 Protocol::Ipv6Frag => write!(f, "IPv6-Frag"), 276 Protocol::Icmpv6 => write!(f, "ICMPv6"), 277 Protocol::Ipv6NoNxt => write!(f, "IPv6-NoNxt"), 278 Protocol::Ipv6Opts => write!(f, "IPv6-Opts"), 279 Protocol::Unknown(id) => write!(f, "0x{id:02x}"), 280 } 281 } 282 } 283 284 impl From<smoltcp::wire::IpProtocol> for Protocol { 285 fn from(value: smoltcp::wire::IpProtocol) -> Self { 286 let x: u8 = value.into(); 287 Protocol::from(x) 288 } 289 } 290 291 impl From<u8> for Protocol { 292 fn from(value: u8) -> Self { 293 match value { 294 0x00 => Protocol::HopByHop, 295 0x01 => Protocol::Icmp, 296 0x02 => Protocol::Igmp, 297 0x06 => Protocol::Tcp, 298 0x11 => Protocol::Udp, 299 0x2b => Protocol::Ipv6Route, 300 0x2c => Protocol::Ipv6Frag, 301 0x3a => Protocol::Icmpv6, 302 0x3b => Protocol::Ipv6NoNxt, 303 0x3c => Protocol::Ipv6Opts, 304 _ => Protocol::Unknown(value), 305 } 306 } 307 } 308 309 impl Into<u8> for Protocol { 310 fn into(self) -> u8 { 311 match self { 312 Protocol::HopByHop => 0x00, 313 Protocol::Icmp => 0x01, 314 Protocol::Igmp => 0x02, 315 Protocol::Tcp => 0x06, 316 Protocol::Udp => 0x11, 317 Protocol::Ipv6Route => 0x2b, 318 Protocol::Ipv6Frag => 0x2c, 319 Protocol::Icmpv6 => 0x3a, 320 Protocol::Ipv6NoNxt => 0x3b, 321 Protocol::Ipv6Opts => 0x3c, 322 Protocol::Unknown(id) => id, 323 } 324 } 325 } 326