1use std::future::Future;
8use std::pin::Pin;
9use std::sync::Arc;
10
11use hyper::Method;
12
13use crate::error::Error;
14use crate::http::{Request, Response};
15use crate::middleware::{MiddlewareFn, Next};
16
17type BoxFuture<T> = Pin<Box<dyn Future<Output = T> + Send>>;
18type HandlerFn = Arc<dyn Fn(Request, Params) -> BoxFuture<Result<Response, Error>> + Send + Sync>;
19
20pub struct Params {
21 pairs: Vec<(String, String)>,
22}
23
24impl Params {
25 fn empty() -> Self {
26 Self { pairs: Vec::new() }
27 }
28
29 pub fn get(&self, name: &str) -> Option<&str> {
30 self.pairs
31 .iter()
32 .find_map(|(k, v)| (k == name).then_some(v.as_str()))
33 }
34
35 pub fn len(&self) -> usize {
36 self.pairs.len()
37 }
38
39 pub fn is_empty(&self) -> bool {
40 self.pairs.is_empty()
41 }
42}
43
44enum Segment {
45 Literal(String),
46 Param(String),
47}
48
49struct Route {
50 method: Method,
51 segments: Vec<Segment>,
52 handler: HandlerFn,
53}
54
55pub struct Router {
56 routes: Vec<Route>,
57 middlewares: Vec<MiddlewareFn>,
58}
59
60impl Router {
61 pub fn new() -> Self {
62 Self {
63 routes: Vec::new(),
64 middlewares: Vec::new(),
65 }
66 }
67
68 pub fn wrap<F, Fut>(mut self, middleware: F) -> Self
69 where
70 F: Fn(Request, Next) -> Fut + Send + Sync + 'static,
71 Fut: Future<Output = Result<Response, Error>> + Send + 'static,
72 {
73 self.middlewares
74 .push(Arc::new(move |req, next| Box::pin(middleware(req, next))));
75 self
76 }
77
78 pub fn get<F, Fut>(self, path: &str, handler: F) -> Self
79 where
80 F: Fn(Request, Params) -> Fut + Send + Sync + 'static,
81 Fut: Future<Output = Result<Response, Error>> + Send + 'static,
82 {
83 self.route(Method::GET, path, handler)
84 }
85
86 pub fn post<F, Fut>(self, path: &str, handler: F) -> Self
87 where
88 F: Fn(Request, Params) -> Fut + Send + Sync + 'static,
89 Fut: Future<Output = Result<Response, Error>> + Send + 'static,
90 {
91 self.route(Method::POST, path, handler)
92 }
93
94 fn route<F, Fut>(mut self, method: Method, path: &str, handler: F) -> Self
95 where
96 F: Fn(Request, Params) -> Fut + Send + Sync + 'static,
97 Fut: Future<Output = Result<Response, Error>> + Send + 'static,
98 {
99 let handler: HandlerFn = Arc::new(move |req, params| Box::pin(handler(req, params)));
100 self.routes.push(Route {
101 method,
102 segments: parse_path(path),
103 handler,
104 });
105 self
106 }
107
108 pub async fn dispatch(&self, req: Request) -> Response {
109 let path = req.uri().path().to_owned();
110 let actual: Vec<&str> = path.split('/').filter(|s| !s.is_empty()).collect();
111 let method = req.method().clone();
112
113 let mut found: Option<(HandlerFn, Params)> = None;
114 let mut path_matched = false;
115
116 for route in &self.routes {
117 if let Some(params) = match_segments(&route.segments, &actual) {
118 path_matched = true;
119 if route.method == method {
120 found = Some((route.handler.clone(), params));
121 break;
122 }
123 }
124 }
125
126 let (handler, params) = found.unwrap_or_else(|| {
127 let method_not_allowed = path_matched;
128 let fallback: HandlerFn = Arc::new(move |_req, _params| {
129 let err = if method_not_allowed {
130 Error::MethodNotAllowed
131 } else {
132 Error::NotFound
133 };
134 Box::pin(async move { Err(err) })
135 });
136 (fallback, Params::empty())
137 });
138
139 let chain = build_chain(&self.middlewares, handler, params);
140 match chain(req).await {
141 Ok(resp) => resp,
142 Err(err) => err.into_response(),
143 }
144 }
145}
146
147impl Default for Router {
148 fn default() -> Self {
149 Self::new()
150 }
151}
152
153fn build_chain(
154 middlewares: &[MiddlewareFn],
155 handler: HandlerFn,
156 params: Params,
157) -> Box<dyn FnOnce(Request) -> BoxFuture<Result<Response, Error>> + Send> {
158 let mut chain: Box<dyn FnOnce(Request) -> BoxFuture<Result<Response, Error>> + Send> =
159 Box::new(move |req| handler(req, params));
160
161 for mw in middlewares.iter().rev() {
162 let mw = mw.clone();
163 let inner = chain;
164 chain = Box::new(move |req| {
165 let next = Next::new(inner);
166 mw(req, next)
167 });
168 }
169 chain
170}
171
172fn parse_path(path: &str) -> Vec<Segment> {
173 path.split('/')
174 .filter(|s| !s.is_empty())
175 .map(|s| match s.strip_prefix(':') {
176 Some(name) => Segment::Param(name.to_owned()),
177 None => Segment::Literal(s.to_owned()),
178 })
179 .collect()
180}
181
182fn match_segments(patterns: &[Segment], actual: &[&str]) -> Option<Params> {
183 if patterns.len() != actual.len() {
184 return None;
185 }
186 let mut params = Params::empty();
187 for (pat, seg) in patterns.iter().zip(actual.iter()) {
188 match pat {
189 Segment::Literal(lit) => {
190 if lit != seg {
191 return None;
192 }
193 }
194 Segment::Param(name) => {
195 params.pairs.push((name.clone(), (*seg).to_owned()));
196 }
197 }
198 }
199 Some(params)
200}
201
202#[cfg(test)]
203mod tests {
204 use super::*;
205
206 fn segs(path: &str) -> Vec<Segment> {
207 parse_path(path)
208 }
209
210 fn parts(path: &str) -> Vec<&str> {
211 path.split('/').filter(|s| !s.is_empty()).collect()
212 }
213
214 #[test]
215 fn root_path_is_empty_segment_list() {
216 assert!(parse_path("/").is_empty());
217 }
218
219 #[test]
220 fn literal_match() {
221 assert!(match_segments(&segs("/users"), &parts("/users")).is_some());
222 assert!(match_segments(&segs("/users"), &parts("/posts")).is_none());
223 }
224
225 #[test]
226 fn param_captures_value() {
227 let params = match_segments(&segs("/users/:id"), &parts("/users/42")).unwrap();
228 assert_eq!(params.get("id"), Some("42"));
229 }
230
231 #[test]
232 fn length_mismatch_does_not_match() {
233 assert!(match_segments(&segs("/users/:id"), &parts("/users")).is_none());
234 assert!(match_segments(&segs("/users"), &parts("/users/42")).is_none());
235 }
236
237 #[test]
238 fn multiple_params_captured_by_name() {
239 let params = match_segments(&segs("/a/:x/b/:y"), &parts("/a/first/b/second")).unwrap();
240 assert_eq!(params.get("x"), Some("first"));
241 assert_eq!(params.get("y"), Some("second"));
242 }
243}