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docs/ru/docs/tutorial/body-nested-models.md
=== "Python 3.10+" ```Python hl_lines="12" {!> ../../../docs_src/body_nested_models/tutorial002_py310.py!} ``` === "Python 3.9+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002_py39.py!} ``` === "Python 3.8+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002.py!} ``` ## Типы множеств
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docs/pt/docs/tutorial/body-nested-models.md
Por exemplo, nós podemos definir um modelo `Image`: ```Python hl_lines="9-11" {!../../../docs_src/body_nested_models/tutorial004.py!} ``` ### Use o sub-modelo como um tipo E então podemos usa-lo como o tipo de um atributo: ```Python hl_lines="20" {!../../../docs_src/body_nested_models/tutorial004.py!} ``` Isso significa que o **FastAPI** vai esperar um corpo similar à: ```JSON {
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docs/zh/docs/tutorial/body-nested-models.md
=== "Python 3.10+" ```Python hl_lines="12" {!> ../../../docs_src/body_nested_models/tutorial002_py310.py!} ``` === "Python 3.9+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002_py39.py!} ``` === "Python 3.8+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002.py!} ``` ## Set 类型
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docs/de/docs/tutorial/body-nested-models.md
=== "Python 3.10+" ```Python hl_lines="12" {!> ../../../docs_src/body_nested_models/tutorial002_py310.py!} ``` === "Python 3.9+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002_py39.py!} ``` === "Python 3.8+" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002.py!} ``` ## Set-Typen
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docs/em/docs/tutorial/body-nested-models.md
```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002.py!} ``` === "🐍 3️⃣.9️⃣ & 🔛" ```Python hl_lines="14" {!> ../../../docs_src/body_nested_models/tutorial002_py39.py!} ``` === "🐍 3️⃣.1️⃣0️⃣ & 🔛" ```Python hl_lines="12" {!> ../../../docs_src/body_nested_models/tutorial002_py310.py!} ``` ## ⚒ 🆎
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docs/en/docs/tutorial/body-nested-models.md
## Deeply nested models You can define arbitrarily deeply nested models: === "Python 3.10+" ```Python hl_lines="7 12 18 21 25" {!> ../../../docs_src/body_nested_models/tutorial007_py310.py!} ``` === "Python 3.9+" ```Python hl_lines="9 14 20 23 27" {!> ../../../docs_src/body_nested_models/tutorial007_py39.py!} ```
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docs/ja/docs/tutorial/body-nested-models.md
```Python hl_lines="12" {!../../../docs_src/body_nested_models/tutorial001.py!} ``` これにより、各項目の型は宣言されていませんが、`tags`はある項目のリストになります。 ## タイプパラメータを持つリストのフィールド しかし、Pythonには型や「タイプパラメータ」を使ってリストを宣言する方法があります: ### typingの`List`をインポート まず、Pythonの標準の`typing`モジュールから`List`をインポートします: ```Python hl_lines="1" {!../../../docs_src/body_nested_models/tutorial002.py!} ``` ### タイプパラメータを持つ`List`の宣言
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docs/ko/docs/tutorial/body-nested-models.md
```Python hl_lines="14" {!../../../docs_src/body_nested_models/tutorial001.py!} ``` 이는 `tags`를 항목 리스트로 만듭니다. 각 항목의 타입을 선언하지 않더라도요. ## 타입 매개변수가 있는 리스트 필드 하지만 파이썬은 내부의 타입이나 "타입 매개변수"를 선언할 수 있는 특정 방법이 있습니다: ### typing의 `List` 임포트 먼저, 파이썬 표준 `typing` 모듈에서 `List`를 임포트합니다: ```Python hl_lines="1" {!../../../docs_src/body_nested_models/tutorial002.py!} ``` ### 타입 매개변수로 `List` 선언
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okhttp-tls/README.md
By default server certificates need to identify which hostnames they're trusted for. You may add as many as necessary with `addSubjectAlternativeName()`. This mechanism also supports a very limited form of wildcards `*.example.com` where the `*` must be first and doesn't match nested subdomains. By default certificates use fast and secure 256-bit ECDSA keys. For interoperability with very old
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.github/workflows/trusted_partners.js
} const email = user.data.email; let domain = ""; if (email && email.lastIndexOf("@") != -1) domain = email.substring(email.lastIndexOf("@") +1); console.log(domain); return domain; }; /** For trusted parters like Intel, we want to auto-run tests This allows us to reduce the delay to external partners Add Labels - kokoro:force-run The PR is also assigned to specific teams to fast track review
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