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  1. docs/tr/docs/tutorial/request-forms.md

    Bu <abbr title="Spesifikasyon: Specification">spesifikasyon</abbr> form alanlarını adlandırırken isimlerinin birebir `username` ve `password` olmasını ve JSON verisi yerine form verisi olarak gönderilmesini gerektirir.
    
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Mon Nov 18 02:25:44 UTC 2024
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  2. internal/event/target/nats.go

    	if n.ClientCert != "" && n.ClientKey == "" || n.ClientCert == "" && n.ClientKey != "" {
    		return errors.New("cert and key must be specified as a pair")
    	}
    
    	if n.Username != "" && n.Password == "" || n.Username == "" && n.Password != "" {
    		return errors.New("username and password must be specified as a pair")
    	}
    
    	if n.Streaming.Enable {
    		if n.Streaming.ClusterID == "" {
    			return errors.New("empty cluster id")
    		}
    	}
    Registered: Sun Dec 28 19:28:13 UTC 2025
    - Last Modified: Sun Apr 27 04:30:57 UTC 2025
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  3. docs/ko/docs/tutorial/security/simple-oauth2.md

    # 패스워드와 Bearer를 이용한 간단한 OAuth2
    
    이제 이전 장에서 빌드하고 누락된 부분을 추가하여 완전한 보안 흐름을 갖도록 하겠습니다.
    
    ## `username`와 `password` 얻기
    
    **FastAPI** 보안 유틸리티를 사용하여 `username` 및 `password`를 가져올 것입니다.
    
    OAuth2는 (우리가 사용하고 있는) "패스워드 플로우"을 사용할 때 클라이언트/유저가 `username` 및 `password` 필드를 폼 데이터로 보내야 함을 지정합니다.
    
    그리고 사양에는 필드의 이름을 그렇게 지정해야 한다고 나와 있습니다. 따라서 `user-name` 또는 `email`은 작동하지 않습니다.
    
    하지만 걱정하지 않아도 됩니다. 프런트엔드에서 최종 사용자에게 원하는 대로 표시할 수 있습니다.
    
    그리고 데이터베이스 모델은 원하는 다른 이름을 사용할 수 있습니다.
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Sat Feb 15 11:19:12 UTC 2025
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  4. tests/test_security_api_key_cookie_description.py

    from pydantic import BaseModel
    
    app = FastAPI()
    
    api_key = APIKeyCookie(name="key", description="An API Cookie Key")
    
    
    class User(BaseModel):
        username: str
    
    
    def get_current_user(oauth_header: str = Security(api_key)):
        user = User(username=oauth_header)
        return user
    
    
    @app.get("/users/me")
    def read_current_user(current_user: User = Depends(get_current_user)):
        return current_user
    
    
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Mon Nov 24 19:03:06 UTC 2025
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  5. fastapi/security/http.py

            except (ValueError, UnicodeDecodeError, binascii.Error) as e:
                raise self.make_not_authenticated_error() from e
            username, separator, password = data.partition(":")
            if not separator:
                raise self.make_not_authenticated_error()
            return HTTPBasicCredentials(username=username, password=password)
    
    
    class HTTPBearer(HTTPBase):
        """
        HTTP Bearer token authentication.
    
        ## Usage
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Wed Dec 17 21:25:59 UTC 2025
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  6. docs/en/docs/tutorial/extra-models.md

    ```
    
    would result in something equivalent to:
    
    ```Python
    UserInDB(
        username="john",
        password="secret",
        email="******@****.***",
        full_name=None,
    )
    ```
    
    Or more exactly, using `user_dict` directly, with whatever contents it might have in the future:
    
    ```Python
    UserInDB(
        username = user_dict["username"],
        password = user_dict["password"],
        email = user_dict["email"],
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Sat Dec 20 15:55:38 UTC 2025
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  7. docs/pt/docs/tutorial/security/first-steps.md

    Então, vamos rever de um ponto de vista simplificado:
    
    * O usuário digita o `username` e o `password` no frontend e pressiona `Enter`.
    * O frontend (rodando no navegador do usuário) envia esse `username` e `password` para uma URL específica na nossa API (declarada com `tokenUrl="token"`).
    * A API verifica esse `username` e `password`, e responde com um "token" (ainda não implementamos nada disso).
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Wed Nov 12 16:23:57 UTC 2025
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  8. docs/es/docs/tutorial/security/first-steps.md

    Así que, revisémoslo desde ese punto de vista simplificado:
    
    * El usuario escribe el `username` y `password` en el frontend, y presiona `Enter`.
    * El frontend (ejecutándose en el navegador del usuario) envía ese `username` y `password` a una URL específica en nuestra API (declarada con `tokenUrl="token"`).
    * La API verifica ese `username` y `password`, y responde con un "token" (no hemos implementado nada de esto aún).
    Registered: Sun Dec 28 07:19:09 UTC 2025
    - Last Modified: Tue Dec 16 16:33:45 UTC 2025
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  9. okhttp/src/commonJvmAndroid/kotlin/okhttp3/HttpUrl.kt

      /**
       * The decoded username, or an empty string if none is present.
       *
       * | URL                              | `username()` |
       * | :------------------------------- | :----------- |
       * | `http://host/`                   | `""`         |
       * | `http://username@host/`          | `"username"` |
       * | `http://username:password@host/` | `"username"` |
       * | `http://a%20b:c%20d@host/`       | `"a b"`      |
    Registered: Fri Dec 26 11:42:13 UTC 2025
    - Last Modified: Mon May 05 16:01:00 UTC 2025
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  10. internal/event/target/kafka_scram_client_contrib.go

    // factory receiver.  This constructor will normalize the username, password
    // and authzID via the SASLprep algorithm, as recommended by RFC-5802.  If
    // SASLprep fails, the method returns an error.
    func (x *XDGSCRAMClient) Begin(userName, password, authzID string) (err error) {
    	x.Client, err = x.NewClient(userName, password, authzID)
    	if err != nil {
    		return err
    	}
    Registered: Sun Dec 28 19:28:13 UTC 2025
    - Last Modified: Sun Sep 28 20:59:21 UTC 2025
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