flow_bot/lib.rs
1#![feature(try_trait_v2)]
2#![feature(adt_const_params)]
3#![feature(unsized_const_params)]
4
5//! An onebot-11 SDK that simplifies bot creation.
6//!
7//! Flow-bot is carefully crafted to provide a mechanism similar to that of axum so if you are familiar with axum, you will find it easy to use.
8//!
9//! The basic unit of event processing in flow-bot is a handler. A handler is a function that optionally takes [`BotContext`] and a [`BotEvent`] or any of the extractors as arguments and returns a [`HandlerControl`].
10//! Handlers can parse the incoming event and respond to it. The returned value serves as a control flow signal to determine the flow of the event processing which is where the name comes from.
11//!
12//! [`BotContext`]: crate::base::context::BotContext
13//! [`BotEvent`]: crate::event::BotEvent
14//!
15//! # Example
16//! ```no_run
17//! use flow_bot::{
18//! FlowBotBuilder,
19//! base::{connect::ReverseConnectionConfig, extract::Message, handler::HandlerControl},
20//! };
21//!
22//! async fn on_message(msg: Message) -> HandlerControl {
23//! println!("{:?}", msg.message);
24//! HandlerControl::Continue
25//! }
26//!
27//! async fn main() {
28//! let bot = FlowBotBuilder::new(ReverseConnectionConfig {
29//! target: "ws://localhost:19999".to_string(),
30//! auth: None,
31//! })
32//! .with_state(())
33//! .with_handler(on_message)
34//! .build();
35//!
36//! bot.run().await.unwrap();
37//! }
38//! ```
39//!
40//! # Handlers
41//!
42//! Handlers are functions that can be registered to process events. They can be registered using the [`with_handler`] method.
43//! Commonly, a handler responds to a event by calling methods in [`ApiExt`] which is implemented by [`BotContext`] to control the bot.
44//!
45//! [`with_handler`]: crate::FlowBotBuilder::with_handler
46//! [`ApiExt`]: crate::api::api_ext::ApiExt
47//! [`BotContext`]: crate::base::context::BotContext
48//!
49//! The returned value of a handler is a [`HandlerControl`] which determines the flow of the event processing.
50//! [`HandlerControl::Continue`] means the event will be passed to the next handler, [`HandlerControl::Block`] means the event will not be passed to the next handler.
51//! [`HandlerControl::Skip`] means the event will be passed to the next handler but the event will not be processed by the current handler, used in the case where the event criteria is not met within the handler.
52//! It is a crucial difference from many other bot SDKs that we do not provide a matcher machenism to match the event, so that you need to implement the logic in the handler. However, a similar way is mimiced by the extractor mechanism. See the [Extractors] section below.
53//!
54//! [`HandlerControl`]: crate::base::handler::HandlerControl
55//! [`HandlerControl::Continue`]: crate::base::handler::HandlerControl::Continue
56//! [`HandlerControl::Block`]: crate::base::handler::HandlerControl::Block
57//! [`HandlerControl::Skip`]: crate::base::handler::HandlerControl::Skip
58//! [Extractors]: #extractors
59//!
60//! # Extractors
61//! Extractors work similarly to the extractors in axum. They are functions that can be registered to extract data from the event. They are to extract data from the context and event for the handler to use.
62//! To see a full list of predefined extractors, see the [`extract`] module.
63//!
64//! [`extract`]: crate::base::extract
65//!
66//! ## Using Extractors
67//!
68//! It is already shown in the example above how to use the predefined [`Message`] extractor which extracts the message from the event. It is also possible to use extractors to match event criteria.
69//!
70//! [`Message`]: crate::base::extract::Message
71//!
72//! ```no_run
73//! use flow_bot::{
74//! base::extract::MatchGroupId,handler::HandlerControl
75//! };
76//!
77//! async fn on_group_msg(_: MatchGroupId<123>) -> HandlerControl {
78//! // This handler will only be called when the event is a group message in group 123, otherwise it will be skipped.
79//! println!("Received message in group 123");
80//! HandlerControl::Continue
81//! }
82//! ```
83//!
84//! ## Optional Extraction
85//!
86//! Extractors can be optional by using the [`Option`] type. This is useful when the data is not always present in the event.
87//!
88//! ## Custom Extractors
89//!
90//! It is also possible to create custom extractors by implementing the [`FromEvent`] trait.
91//! This is an async trait that takes the context and event as arguments and returns a result of the extracted data.
92//!
93//! [`FromEvent`]: crate::base::extract::FromEvent
94//!
95//! # States
96//!
97//! States are data that can be shared between handlers. They are stored in the context and can be accessed by any handler.
98//! States can be added to the bot using the [`with_state`] method.
99//! States can be any type that implements [`std::any::Any`], [`Send`], and [`Sync`].
100//!
101//! [`with_state`]: crate::FlowBotBuilder::with_state
102//!
103//! In a handler, a state is accessed by using the [`State`] extractor.
104//!
105//! [`State`]: crate::base::extract::State
106//!
107//! There can be multiple states in the bot, each with a unique type.
108//! If the required state is not present in the context, the handler will be skipped.
109//!
110//! # Services
111//!
112//! Services provide a way to make the bot extendable. They are similar to handlers but take the shape of a struct that implements the [`Service`] trait and have their own state.
113//! It is made so that the bot can be extended to use services from other crates with ease.
114//! Services can be added to the bot using the [`with_service`] method.
115//!
116//! [`Service`]: crate::base::service::Service
117//! [`with_service`]: crate::FlowBotBuilder::with_service
118use std::{any::Any, ops::Deref, sync::Arc};
119
120use base::{
121 connect::ReverseConnectionConfig,
122 context::{BotContext, Context, StateMap},
123 handler::{ErasedHandler, HWrapped, Handler, HandlerControl},
124 service::Service,
125};
126use error::FlowError;
127use event::Event;
128use futures::{
129 StreamExt,
130 stream::{SplitSink, SplitStream},
131};
132use tokio::net::TcpStream;
133use tokio_tungstenite::{
134 MaybeTlsStream, WebSocketStream, connect_async,
135 tungstenite::{Message, Utf8Bytes, client::IntoClientRequest},
136};
137
138pub mod api;
139pub mod base;
140pub mod error;
141pub mod event;
142pub mod message;
143
144enum HandlerOrService {
145 Handler(Box<dyn ErasedHandler>),
146 Service(Box<dyn Service>),
147}
148
149pub struct FlowBot {
150 handlers: Arc<Vec<HandlerOrService>>,
151 context: BotContext,
152 connection: ReverseConnectionConfig,
153}
154
155pub struct FlowBotBuilder {
156 handlers: Vec<HandlerOrService>,
157 connection: ReverseConnectionConfig,
158 states: StateMap,
159}
160
161impl FlowBotBuilder {
162 /// Create a new FlowBotBuilder with the given connection configuration.
163 pub fn new(connection: ReverseConnectionConfig) -> Self {
164 Self {
165 handlers: Vec::new(),
166 connection,
167 states: StateMap::new(),
168 }
169 }
170
171 /// Add a state to the bot.
172 /// If the state of the same type is already present, it will be replaced.
173 pub fn with_state<S: 'static + Any + Send + Sync>(mut self, state: S) -> Self {
174 self.states.insert(state);
175 self
176 }
177
178 /// Add a handler to the bot.
179 /// The order of the handlers added is the order in which they will be called.
180 pub fn with_handler<T, H>(mut self, handler: H) -> Self
181 where
182 T: Send + Sync + 'static,
183 H: Handler<T> + Send + Sync + 'static,
184 {
185 let wrapped = HWrapped {
186 handler,
187 _phantom: std::marker::PhantomData,
188 };
189 self.handlers
190 .push(HandlerOrService::Handler(Box::new(wrapped)));
191 self
192 }
193
194 /// Add a service to the bot.
195 pub fn with_service<Svc>(mut self, service: Svc) -> Self
196 where
197 Svc: Service + Send + Sync + 'static,
198 {
199 self.handlers
200 .push(HandlerOrService::Service(Box::new(service)));
201 self
202 }
203
204 /// Build the FlowBot.
205 pub fn build(self) -> FlowBot {
206 FlowBot {
207 handlers: Arc::new(self.handlers),
208 context: BotContext::new(Context::new(self.states)),
209 connection: self.connection,
210 }
211 }
212}
213
214impl FlowBot {
215 /// Run the bot.
216 /// This will connect to the server and start processing events.
217 /// This method will never return unless an error occurs.
218 pub async fn run(&self) -> Result<(), FlowError> {
219 let (write, read) = self.connect().await?;
220
221 self.set_sink(write).await;
222 self.run_msg_loop(read).await?;
223 self.init_services().await;
224
225 Ok(())
226 }
227
228 async fn connect(
229 &self,
230 ) -> Result<
231 (
232 SplitSink<WebSocketStream<MaybeTlsStream<TcpStream>>, Message>,
233 SplitStream<WebSocketStream<MaybeTlsStream<TcpStream>>>,
234 ),
235 FlowError,
236 > {
237 let mut request = self.connection.target.clone().into_client_request()?;
238 if let Some(auth) = &self.connection.auth {
239 request
240 .headers_mut()
241 .append("Authorization", auth.parse().unwrap());
242 }
243
244 let (ws_stream, _) = connect_async(request).await?;
245 Ok(ws_stream.split())
246 }
247
248 async fn set_sink(&self, sink: SplitSink<WebSocketStream<MaybeTlsStream<TcpStream>>, Message>) {
249 let mut ws_sink = self.context.sink.lock().await;
250 *ws_sink = Some(sink);
251 }
252
253 async fn run_msg_loop(
254 &self,
255 mut read: SplitStream<WebSocketStream<MaybeTlsStream<TcpStream>>>,
256 ) -> Result<(), FlowError> {
257 while let Some(msg) = read.next().await {
258 let msg = msg?;
259 if let Message::Text(text) = msg {
260 if let Some(echo) = Self::check_is_echo(&text) {
261 self.context.on_recv_echo(echo, text.to_string());
262 continue;
263 }
264 self.handle_event(text)?;
265 }
266 }
267 Ok(())
268 }
269
270 async fn init_services(&self) {
271 for handler in self.handlers.deref() {
272 if let HandlerOrService::Service(service) = handler {
273 service.init(self.context.clone()).await;
274 }
275 }
276 }
277
278 fn handle_event(&self, text: Utf8Bytes) -> Result<(), FlowError> {
279 let event: Event = serde_json::from_slice(text.as_bytes())?;
280 let event = Arc::new(event);
281 let context = self.context.clone();
282 let handlers = self.handlers.clone();
283 tokio::spawn(async move {
284 for handler in handlers.deref() {
285 let control = match handler {
286 HandlerOrService::Handler(handler) => {
287 handler.call(context.clone(), event.clone()).await
288 }
289 HandlerOrService::Service(service) => {
290 service.serve(context.clone(), event.clone()).await
291 }
292 };
293
294 if let HandlerControl::Block = control {
295 break;
296 }
297 }
298 });
299 Ok(())
300 }
301
302 fn check_is_echo(msg: &str) -> Option<String> {
303 let msg = serde_json::from_str::<serde_json::Value>(msg).unwrap();
304 if let serde_json::Value::Object(obj) = msg
305 && let Some(serde_json::Value::String(echo)) = obj.get("echo")
306 {
307 return Some(echo.clone());
308 }
309 None
310 }
311}