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284 lines
8.0 KiB
Markdown
284 lines
8.0 KiB
Markdown
---
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title: Extractors
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menu: docs_basics
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weight: 170
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---
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# Type-safe information extraction
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Actix provides facility for type-safe request information extraction. By default,
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actix provides several extractor implementations.
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# Accessing Extractors
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How you access an Extractor depends on whether you are using a handler function
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or a custom Handler type.
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## Within Handler Functions
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An Extractor can be passed to a handler function as a function parameter
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*or* accessed within the function by calling the ExtractorType::<...>::extract(req)
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function.
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```rust
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// Option 1: passed as a parameter to a handler function
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fn index(params: Path<(String, String,)>, info: Json<MyInfo>) -> HttpResponse {
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...
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}
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// Option 2: accessed by calling extract() on the Extractor
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fn index(req: HttpRequest) -> HttpResponse {
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let params = Path::<(String, String)>::extract(req);
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let info = Json::<MyInfo>::extract(req);
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...
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}
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```
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## Within Custom Handler Types
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Like a handler function, a custom Handler type can *access* an Extractor by
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calling the ExtractorType::<...>::extract(req) function. An Extractor
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*cannot* be passed as a parameter to a custom Handler type because a custom
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Handler type must follow the ``handle`` function signature specified by the
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Handler trait it implements.
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```rust
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struct MyHandler(String);
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impl<S> Handler<S> for MyHandler {
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type Result = HttpResponse;
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/// Handle request
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fn handle(&mut self, req: HttpRequest<S>) -> Self::Result {
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let params = Path::<(String, String)>::extract(req);
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let info = Json::<MyInfo>::extract(req);
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...
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HttpResponse::Ok().into()
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}
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}
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```
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# Path
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[*Path*](../../actix-web/actix_web/struct.Path.html) provides information that can
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be extracted from the Request's path. You can deserialize any variable
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segment from the path.
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For instance, for resource that registered for `/users/{userid}/{friend}` path
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two segments could be deserialized, `userid` and `friend`. This segments
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could be extracted to a `tuple`, i.e. `Path<(u32, String)>` or structure
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that implementd `Deserialize` trait from *serde* crate.
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```rust
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use actix_web::{App, Path, Result, http};
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/// extract path info from "/users/{userid}/{friend}" url
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/// {userid} - - deserializes to a u32
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/// {friend} - deserializes to a String
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fn index(info: Path<(u32, String)>) -> Result<String> {
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Ok(format!("Welcome {}! {}", info.1, info.0))
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}
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fn main() {
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let app = App::new().resource(
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"/users/{userid}/{friend}", // <- define path parameters
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|r| r.method(http::Method::GET).with(index)); // <- use `with` extractor
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}
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```
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Remember! handler function that uses extractors has to be registered with
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[*Route::with()*](../../actix-web/actix_web/dev/struct.Route.html#method.with) method.
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It is also possible to extract path information to a specific type that
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implements `Deserialize` trait from *serde*. Here is equivalent example that uses *serde*
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instead of *tuple* type.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Path, Result, http};
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#[derive(Deserialize)]
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struct Info {
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userid: u32,
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friend: String,
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}
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/// extract path info using serde
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fn index(info: Path<Info>) -> Result<String> {
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Ok(format!("Welcome {}!", info.friend))
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}
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fn main() {
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let app = App::new().resource(
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"/users/{userid}/{friend}", // <- define path parameters
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|r| r.method(http::Method::GET).with(index)); // <- use `with` extractor
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}
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```
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# Query
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Same can be done with the request's query.
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[*Query*](../../actix-web/actix_web/struct.Query.html)
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type provides extraction functionality. Underneath it uses *serde_urlencoded* crate.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Query, http};
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#[derive(Deserialize)]
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struct Info {
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username: String,
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}
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// this handler get called only if the request's query contains `username` field
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fn index(info: Query<Info>) -> String {
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format!("Welcome {}!", info.username)
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}
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fn main() {
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let app = App::new().resource(
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"/index.html",
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|r| r.method(http::Method::GET).with(index)); // <- use `with` extractor
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}
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```
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# Json
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[*Json*](../../actix-web/actix_web/struct.Json.html) allows to deserialize
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request body to a struct. To extract typed information from request's body,
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the type `T` must implement the `Deserialize` trait from *serde*.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Json, Result, http};
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#[derive(Deserialize)]
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struct Info {
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username: String,
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}
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/// deserialize `Info` from request's body
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fn index(info: Json<Info>) -> Result<String> {
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Ok(format!("Welcome {}!", info.username))
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}
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fn main() {
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let app = App::new().resource(
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"/index.html",
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|r| r.method(http::Method::POST).with(index)); // <- use `with` extractor
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}
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```
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Some extractors provide a way to configure extraction process. Json extractor
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[*JsonConfig*](../../actix-web/actix_web/dev/struct.JsonConfig.html) type for configuration.
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When you register handler `Route::with()` returns configuration instance. In case of
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*Json* extractor it returns *JsonConfig*. You can configure max size of the json
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payload and custom error handler function.
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Following example limits size of the payload to 4kb and uses custom error hander.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Json, HttpResponse, Result, http, error};
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#[derive(Deserialize)]
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struct Info {
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username: String,
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}
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/// deserialize `Info` from request's body, max payload size is 4kb
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fn index(info: Json<Info>) -> Result<String> {
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Ok(format!("Welcome {}!", info.username))
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}
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fn main() {
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let app = App::new().resource(
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"/index.html", |r| {
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r.method(http::Method::POST)
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.with(index)
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.limit(4096) // <- change json extractor configuration
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.error_handler(|err, req| { // <- create custom error response
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error::InternalError::from_response(
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err, HttpResponse::Conflict().finish()).into()
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});
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});
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}
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```
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# Form
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At the moment only url-encoded forms are supported. Url encoded body
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could be extracted to a specific type. This type must implement
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the `Deserialize` trait from *serde* crate.
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[*FormConfig*](../../actix-web/actix_web/dev/struct.FormConfig.html) allows
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to configure extraction process.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Form, Result};
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#[derive(Deserialize)]
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struct FormData {
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username: String,
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}
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/// extract form data using serde
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/// this handler get called only if content type is *x-www-form-urlencoded*
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/// and content of the request could be deserialized to a `FormData` struct
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fn index(form: Form<FormData>) -> Result<String> {
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Ok(format!("Welcome {}!", form.username))
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}
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# fn main() {}
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```
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# Multiple extractors
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Actix provides extractor implementation for tuples (up to 10 elements)
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which elements provide `FromRequest` impl.
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For example we can use path extractor and query extractor at the same time.
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```rust
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#[macro_use] extern crate serde_derive;
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use actix_web::{App, Query, Path, http};
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#[derive(Deserialize)]
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struct Info {
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username: String,
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}
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fn index(data: (Path<(u32, String)>, Query<Info>)) -> String {
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let (path, query) = data;
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format!("Welcome {}!", query.username)
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}
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fn main() {
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let app = App::new().resource(
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"/users/{userid}/{friend}", // <- define path parameters
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|r| r.method(http::Method::GET).with(index)); // <- use `with` extractor
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}
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```
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# Other
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Actix also provides several other extractors:
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* [*State*](../../actix-web/actix_web/struct.State.html) - If you need
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access to an application state. This is similar to a `HttpRequest::state()`.
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* *HttpRequest* - *HttpRequest* itself is an extractor which returns self.
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In case if you need access to the request.
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* *String* - You can convert request's payload to a *String*.
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[*Example*](../../actix-web/actix_web/trait.FromRequest.html#example-1)
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is available in doc strings.
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* *bytes::Bytes* - You can convert request's payload to a *Bytes*.
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[*Example*](../../actix-web/actix_web/trait.FromRequest.html#example)
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is available in doc strings.
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