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cpp-httplib/docs-src/pages/ja/cookbook/w01-websocket-echo.md
yhirose 254e576b50 Add Server::CustomRoute() for HTTP methods outside the built-in set (#2553)
* Add Server::CustomRoute() for HTTP methods outside the built-in set

parse_request_line validates the request method against a fixed whitelist and
rejects anything else with 400 before routing runs. That blocks WebDAV, where
PROPFIND, PROPPATCH, MKCOL, COPY, MOVE, LOCK and UNLOCK are ordinary methods
defined by RFC 4918, and it blocks extension methods such as UPnP's SUBSCRIBE.
The need has been open since #847.

Registering a handler is now what makes the server accept a method:

    svr.CustomRoute("PROPFIND", "/dav/:id", handler);

Because custom methods go through the normal dispatch path, patterns work the
way they do for Get() and friends, and the request body is available in
req.body. Serving these methods through set_pre_routing_handler was never
enough: the body has not been read at that point, so PROPPATCH and LOCK, which
require one, could not be implemented at all.

A HandlerWithContentReader overload is available too. The content reader gate
in routing() also fires when a custom method carries no body, matching what
expect_content() does unconditionally for POST/PUT/PATCH/DELETE, so a body-less
PROPFIND (RFC 4918 treats one as allprop) reaches its handler instead of
falling through to 404.

Method names are validated as RFC 9110 tokens, and the ten built-in methods are
refused. Seven of them are dispatched by the if/else chain in routing() before
the custom tables are consulted, so a route registered for one could never
fire; CONNECT, TRACE and PRI carry protocol-level meaning this library does not
route. A refused registration makes is_valid() return false, so listen() fails
rather than starting a server holding a handler that would never run. This is
also why SSLServer::is_valid() now chains to Server::is_valid() instead of only
checking ctx_.

Servers that never call CustomRoute() keep the previous per-request cost: the
built-in method set is checked first and short-circuits, and the custom lookup
returns early on an empty map.

* Add cookbook recipe for custom HTTP methods

The CustomRoute() docs were a section inside S01, which pushed that page to 90
lines, the longest in the cookbook, and mixed a separate feature into a page
about registering GET/POST/PUT/DELETE handlers. Move the section into its own
recipe and give it room for the part that was missing: the OPTIONS handler
returning DAV: and Allow, which WebDAV clients probe for before anything else.
S01 goes back to 68 lines and keeps a pointer to the new page.

The recipe is titled after the API rather than after WebDAV, and says outright
that generating the 207 Multi-Status XML, interpreting Depth and managing locks
are the reader's job. Routing the method is all the library does.

S23 takes order 42, so the TLS, SSE and WebSocket recipes shift to 43-57. That
only moves the sort key. Filenames, the T01/E01/W01 labels, the published URLs
and every cross-reference are untouched.
2026-08-25 19:31:42 -04:00

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---
title: "W01. WebSocketエコーサーバークライアントを実装する"
order: 52
status: "draft"
---
WebSocketは、クライアントとサーバーの間で**双方向**にメッセージをやり取りするためのプロトコルです。cpp-httplibはサーバーとクライアントの両方のAPIを提供しています。まずは一番シンプルなエコーサーバーから見てみましょう。
## サーバー: エコーサーバー
```cpp
#include <httplib.h>
int main() {
httplib::Server svr;
svr.WebSocket("/echo", [](const httplib::Request &req, httplib::ws::WebSocket &ws) {
std::string msg;
while (ws.is_open()) {
auto result = ws.read(msg);
if (result == httplib::ws::ReadResult::Fail) {
break;
}
ws.send(msg); // 受け取った内容をそのまま返す
}
});
svr.listen("0.0.0.0", 8080);
}
```
`svr.WebSocket()`でWebSocket用のハンドラを登録します。ハンドラが呼ばれた時点で、すでにWebSocketのハンドシェイクは完了しています。ループの中で`ws.read()`して`ws.send()`するだけで、エコー動作が完成します。
`read()`の返り値は`ReadResult`列挙値で、次の3種類です。
- `ReadResult::Text`: テキストメッセージを受信
- `ReadResult::Binary`: バイナリメッセージを受信
- `ReadResult::Fail`: エラー、または接続が閉じた
## クライアント: エコーを叩く
```cpp
#include <httplib.h>
int main() {
httplib::ws::WebSocketClient cli("ws://localhost:8080/echo");
if (!cli.connect()) {
std::cerr << "failed to connect" << std::endl;
return 1;
}
cli.send("Hello, WebSocket!");
std::string msg;
if (cli.read(msg) != httplib::ws::ReadResult::Fail) {
std::cout << "received: " << msg << std::endl;
}
cli.close();
}
```
URLには`ws://`(平文)または`wss://`TLSを指定します。`connect()`でハンドシェイクを行い、あとは`send()``read()`でサーバーと同じAPIでやり取りできます。
## テキストとバイナリの送り分け
`send()`には2つのオーバーロードがあり、テキストとバイナリで使い分けられます。
```cpp
ws.send("Hello"); // テキストフレーム
ws.send(binary_data, binary_data_size); // バイナリフレーム
```
`std::string`を受け取るオーバーロードはテキスト、`const char*`とサイズを受け取るオーバーロードはバイナリとして送られます。詳しくは[W04. バイナリフレームを送受信する](../w04-websocket-binary)を参照してください。
## スレッドとの関係
WebSocket接続はハンドラが終わるまで生き続けるので、1接続につきワーカースレッドを1つ占有します。同時接続数が多い場合は、スレッドプールを動的スケーリングに設定しましょう。
```cpp
svr.new_task_queue = [] {
return new httplib::ThreadPool(8, 128);
};
```
詳細は[S21. マルチスレッド数を設定する](../s21-thread-pool)を参照してください。
> **Note:** HTTPSサーバーの上でWebSocketを動かしたいときは、`httplib::Server`の代わりに`httplib::SSLServer`を使えば、同じ`WebSocket()`ハンドラがそのまま動きます。クライアント側は`wss://`スキームを指定するだけです。CA証明書やクライアント証明書の設定は[W05. wss接続でTLSを設定する](../w05-websocket-tls)を参照してください。