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  1. docs/zh/docs/tutorial/body-nested-models.md

    ### 从 typing 导入 `List`
    
    首先,从 Python 的标准库 `typing` 模块中导入 `List`:
    
    ```Python hl_lines="1"
    {!> ../../docs_src/body_nested_models/tutorial002.py!}
    ```
    
    ### 声明具有子类型的 List
    
    要声明具有子类型的类型,例如 `list`、`dict`、`tuple`:
    
    * 从 `typing` 模块导入它们
    * 使用方括号 `[` 和 `]` 将子类型作为「类型参数」传入
    
    ```Python
    from typing import List
    
    my_list: List[str]
    ```
    
    这完全是用于类型声明的标准 Python 语法。
    
    对具有子类型的模型属性也使用相同的标准语法。
    
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  2. docs/zh/docs/tutorial/response-model.md

    ```
    
    /// tip
    
    `{"name", "description"}` 语法创建一个具有这两个值的 `set`。
    
    等同于 `set(["name", "description"])`。
    
    ///
    
    #### 使用 `list` 而不是 `set`
    
    如果你忘记使用 `set` 而是使用 `list` 或 `tuple`,FastAPI 仍会将其转换为 `set` 并且正常工作:
    
    ```Python hl_lines="31  37"
    {!../../docs_src/response_model/tutorial006.py!}
    ```
    
    ## 总结
    
    使用*路径操作装饰器*的 `response_model` 参数来定义响应模型,特别是确保私有数据被过滤掉。
    
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  3. docs/en/docs/tutorial/response-model.md

    It is equivalent to `set(["name", "description"])`.
    
    ///
    
    #### Using `list`s instead of `set`s
    
    If you forget to use a `set` and use a `list` or `tuple` instead, FastAPI will still convert it to a `set` and it will work correctly:
    
    //// tab | Python 3.10+
    
    ```Python hl_lines="29  35"
    {!> ../../docs_src/response_model/tutorial006_py310.py!}
    ```
    
    ////
    
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  4. okhttp-tls/src/test/java/okhttp3/tls/internal/der/DerTest.kt

      }
    
      @Test fun `decode implicit implicit prefixed type`() {
        // Type1 ::= VisibleString
        // Type2 ::= [APPLICATION 3] IMPLICIT Type1
        // Type5 ::= [2] IMPLICIT Type2
        val buffer =
          Buffer()
            .write("82054A6F6E6573".decodeHex())
    
        val derReader = DerReader(buffer)
    
        derReader.read("test") { header ->
    Registered: Fri Nov 01 11:42:11 UTC 2024
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  5. docs/de/docs/tutorial/response-model.md

    Äquivalent zu `set(["name", "description"])`.
    
    ///
    
    #### `list`en statt `set`s verwenden
    
    Wenn Sie vergessen, ein `set` zu verwenden, und stattdessen eine `list`e oder ein `tuple` übergeben, wird FastAPI die dennoch in ein `set` konvertieren, und es wird korrekt funktionieren:
    
    //// tab | Python 3.10+
    
    ```Python hl_lines="29  35"
    {!> ../../docs_src/response_model/tutorial006_py310.py!}
    ```
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  6. docs/ru/docs/tutorial/response-model.md

    Того же самого можно достичь используя `set(["name", "description"])`.
    
    ///
    
    #### Что если использовать `list` вместо `set`?
    
    Если вы забыли про `set` и использовали структуру `list` или `tuple`, FastAPI автоматически преобразует этот объект в `set`, чтобы обеспечить корректную работу:
    
    //// tab | Python 3.10+
    
    ```Python hl_lines="29  35"
    {!> ../../docs_src/response_model/tutorial006_py310.py!}
    ```
    
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  7. docs/ja/docs/tutorial/body-nested-models.md

    ### 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
    
    `list`や`dict`、`tuple`のようなタイプパラメータ(内部の型)を持つ型を宣言するには:
    
    * `typing`モジュールからそれらをインストールします。
    * 角括弧(`[`と`]`)を使って「タイプパラメータ」として内部の型を渡します:
    
    ```Python
    from typing import List
    
    my_list: List[str]
    ```
    
    型宣言の標準的なPythonの構文はこれだけです。
    
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  8. docs/ja/docs/tutorial/response-model.md

    ```
    
    /// tip | "豆知識"
    
    `{"name", "description"}`の構文はこれら2つの値をもつ`set`を作成します。
    
    これは`set(["name", "description"])`と同等です。
    
    ///
    
    #### `set`の代わりに`list`を使用する
    
    もし`set`を使用することを忘れて、代わりに`list`や`tuple`を使用しても、FastAPIはそれを`set`に変換して正しく動作します:
    
    ```Python hl_lines="31 37"
    {!../../docs_src/response_model/tutorial006.py!}
    ```
    
    ## まとめ
    
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  9. okhttp/src/main/kotlin/okhttp3/EventListener.kt

     *
     * This nesting is typical but not strict. For example, when calls use "Expect: continue" the
     * request body start and end events occur within the response header events. Similarly,
     * [duplex calls][RequestBody.isDuplex] interleave the request and response bodies.
     *
     * Since connections may be reused, the proxy selection, DNS, and connect events may not be present
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  10. tensorflow/c/eager/c_api_unified_experimental_test.cc

    // - a string representing the tracing implementation: "mlir" or "graphdef".
    // - a boolean that when true enables TFRT as the execution engine.
    class UnifiedCAPI
        : public ::testing::TestWithParam<std::tuple<const char*, bool>> {
     protected:
      void SetUp() override {
        TF_StatusPtr status(TF_NewStatus());
        TF_SetTracingImplementation(std::get<0>(GetParam()), status.get());
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