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  1. RELEASE.md

            as `tf.tpu.experimental.embedding.serving_embedding_lookup` which can
            take arbitrary rank of dense and sparse tensor. For ragged tensor,
            though the input tensor remains to be rank 2, the activations now can be
            rank 2 or above by specifying the output shape in the feature config or
            via the build method.
    
    *   Add
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  2. docs/distributed/DESIGN.md

    Distributed erasure coded configuration with 2 sets, 16 drives per set across hosts.
    
    ```
    minio server http://host{1...32}/disk1
    ```
    
    Distributed erasure coded configuration with rack level redundancy 32 sets in total, 16 drives per set.
    
    ```
    minio server http://rack{1...4}-host{1...8}.example.net/export{1...16}
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  3. docs/en/docs/async.md

    For a more "real life" example of this, imagine a bank.
    
    Up to recently, most of the banks had multiple cashiers 👨‍💼👨‍💼👨‍💼👨‍💼 and a big line 🕙🕙🕙🕙🕙🕙🕙🕙.
    
    All of the cashiers doing all the work with one client after the other 👨‍💼⏯.
    
    And you have to wait 🕙 in the line for a long time or you lose your turn.
    
    You probably wouldn't want to take your crush 😍 with you to do errands at the bank 🏦.
    
    ### Burger Conclusion
    
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  4. okhttp/src/main/kotlin/okhttp3/internal/-UtilJvm.kt

        val skipBuffer = Buffer()
        while (read(skipBuffer, 8192) != -1L) {
          skipBuffer.clear()
        }
        true // Success! The source has been exhausted.
      } catch (_: InterruptedIOException) {
        false // We ran out of time before exhausting the source.
      } finally {
        if (originalDurationNs == Long.MAX_VALUE) {
          timeout().clearDeadline()
        } else {
          timeout().deadlineNanoTime(nowNs + originalDurationNs)
        }
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  5. docs/de/docs/tutorial/dependencies/dependencies-with-yield.md

    Sie können beliebige Kombinationen von Abhängigkeiten haben.
    
    **FastAPI** stellt sicher, dass alles in der richtigen Reihenfolge ausgeführt wird.
    
    !!! note "Technische Details"
        Dieses funktioniert dank Pythons <a href="https://docs.python.org/3/library/contextlib.html" class="external-link" target="_blank">Kontextmanager</a>.
    
        **FastAPI** verwendet sie intern, um das zu erreichen.
    
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  6. docs/de/docs/tutorial/security/oauth2-jwt.md

    Um einen sicheren zufälligen geheimen Schlüssel zu generieren, verwenden Sie den folgenden Befehl:
    
    <div class="termy">
    
    ```console
    $ openssl rand -hex 32
    
    09d25e094faa6ca2556c818166b7a9563b93f7099f6f0f4caa6cf63b88e8d3e7
    ```
    
    </div>
    
    Und kopieren Sie die Ausgabe in die Variable `SECRET_KEY` (verwenden Sie nicht die im Beispiel).
    
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  7. docs/de/docs/deployment/versions.md

        „MINOR“ ist die Zahl in der Mitte, zum Beispiel ist in `0.2.3` die MINOR-Version `2`.
    
    ## Upgrade der FastAPI-Versionen
    
    Sie sollten Tests für Ihre Anwendung hinzufügen.
    
    Mit **FastAPI** ist das sehr einfach (dank Starlette), schauen Sie sich die Dokumentation an: [Testen](../tutorial/testing.md){.internal-link target=_blank}
    
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  8. docs/em/docs/tutorial/security/oauth2-jwt.md

    ## 🍵 🥙 🤝
    
    🗄 🕹 ❎.
    
    ✍ 🎲 ㊙ 🔑 👈 🔜 ⚙️ 🛑 🥙 🤝.
    
    🏗 🔐 🎲 ㊙ 🔑 ⚙️ 📋:
    
    <div class="termy">
    
    ```console
    $ openssl rand -hex 32
    
    09d25e094faa6ca2556c818166b7a9563b93f7099f6f0f4caa6cf63b88e8d3e7
    ```
    
    </div>
    
    &amp; 📁 🔢 🔢 `SECRET_KEY` (🚫 ⚙️ 1️⃣ 🖼).
    
    ✍ 🔢 `ALGORITHM` ⏮️ 📊 ⚙️ 🛑 🥙 🤝 &amp; ⚒ ⚫️ `"HS256"`.
    
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  9. docs/de/docs/tutorial/testing.md

    # Testen
    
    Dank <a href="https://www.starlette.io/testclient/" class="external-link" target="_blank">Starlette</a> ist das Testen von **FastAPI**-Anwendungen einfach und macht Spaß.
    
    Es basiert auf <a href="https://www.python-httpx.org" class="external-link" target="_blank">HTTPX</a>, welches wiederum auf der Grundlage von requests konzipiert wurde, es ist also sehr vertraut und intuitiv.
    
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  10. docs/zh/docs/tutorial/security/oauth2-jwt.md

    ## 处理 JWT 令牌
    
    导入已安装的模块。
    
    创建用于 JWT 令牌签名的随机密钥。
    
    使用以下命令,生成安全的随机密钥:
    
    <div class="termy">
    
    ```console
    $ openssl rand -hex 32
    
    09d25e094faa6ca2556c818166b7a9563b93f7099f6f0f4caa6cf63b88e8d3e7
    ```
    
    </div>
    
    然后,把生成的密钥复制到变量**SECRET_KEY**,注意,不要使用本例所示的密钥。
    
    创建指定 JWT 令牌签名算法的变量 **ALGORITHM**,本例中的值为 `"HS256"`。
    
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