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  1. docs/de/docs/tutorial/bigger-applications.md

    * Und die Datei `app/internal/admin.py` ist ein weiteres Submodul: `app.internal.admin`.
    
    <img src="/img/tutorial/bigger-applications/package.svg">
    
    Die gleiche Dateistruktur mit Kommentaren:
    
    ```
    .
    ├── app                  # „app“ ist ein Python-Package
    │   ├── __init__.py      # diese Datei macht „app“ zu einem „Python-Package“
    Registered: Mon Jun 17 08:32:26 UTC 2024
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  2. docs/en/docs/tutorial/bigger-applications.md

    # Bigger Applications - Multiple Files
    
    If you are building an application or a web API, it's rarely the case that you can put everything on a single file.
    
    **FastAPI** provides a convenience tool to structure your application while keeping all the flexibility.
    
    !!! info
        If you come from Flask, this would be the equivalent of Flask's Blueprints.
    
    ## An example file structure
    
    Let's say you have a file structure like this:
    
    ```
    .
    ├── app
    Registered: Mon Jun 17 08:32:26 UTC 2024
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  3. docs/em/docs/tutorial/bigger-applications.md

    * 📤 📁 `app/internal/` ⏮️ ➕1️⃣ 📁 `__init__.py`, ⚫️ ➕1️⃣ "🐍 📦": `app.internal`.
    *  &amp; 📁 `app/internal/admin.py` ➕1️⃣ 🔁: `app.internal.admin`.
    
    <img src="/img/tutorial/bigger-applications/package.svg">
    
    🎏 📁 📊 ⏮️ 🏤:
    
    ```
    .
    ├── app                  # "app" is a Python package
    │   ├── __init__.py      # this file makes "app" a "Python package"
    Registered: Mon Jun 17 08:32:26 UTC 2024
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  4. docs/zh/docs/tutorial/bigger-applications.md

    * 还有一个子目录 `app/internal/` 包含另一个 `__init__.py` 文件,因此它是又一个「Python 子包」:`app.internal`。
    * `app/internal/admin.py` 是另一个子模块:`app.internal.admin`。
    
    <img src="https://fastapi.tiangolo.com/img/tutorial/bigger-applications/package.svg">
    
    带有注释的同一文件结构:
    
    ```
    .
    ├── app                  # 「app」是一个 Python 包
    │   ├── __init__.py      # 这个文件使「app」成为一个 Python 包
    │   ├── main.py          # 「main」模块,例如 import app.main
    Registered: Mon Jun 17 08:32:26 UTC 2024
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  5. tensorflow/compiler/aot/tests/tfcompile_test.cc

    TEST(TFCompileTest, VariableReadonly) {
      Eigen::ThreadPool tp(1);
      Eigen::ThreadPoolDevice device(&tp, tp.NumThreads());
    
      VariableReadonlyComp fn;
      float x = 23;
      fn.set_var_x_data(&x);
    
      fn.set_thread_pool(&device);
      fn.Run();
      EXPECT_EQ(fn.result0(), 65);
      EXPECT_EQ(fn.var_x(), 23);
    }
    
    TEST(TFCompileTest, Variable) {
      Eigen::ThreadPool tp(1);
      Eigen::ThreadPoolDevice device(&tp, tp.NumThreads());
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Wed Sep 06 19:12:29 UTC 2023
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  6. src/main/resources/fess_message_de.properties

    constraints.Future.message      = {item} muss in der Zukunft liegen.
    constraints.Max.message         = {item} muss kleiner oder gleich {value} sein.
    constraints.Min.message         = {item} muss größer oder gleich {value} sein.
    constraints.NotNull.message     = {item} darf nicht leer sein.
    constraints.Null.message        = {item} muss leer sein.
    constraints.Past.message        = {item} muss in der Vergangenheit liegen.
    Registered: Wed Jun 12 13:08:18 UTC 2024
    - Last Modified: Tue Oct 29 15:01:03 UTC 2019
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  7. tensorflow/compiler/mlir/lite/transforms/dense_to_sparse.cc

    constexpr float kBlockOverRandomSparsityRatioQuant = 0.8;
    
    Eigen::half APFloatToEigenHalf(const APFloat& val) {
      uint16_t raw_data = val.bitcastToAPInt().getZExtValue();
      return Eigen::numext::bit_cast<Eigen::half>(raw_data);
    }
    
    APFloat EigenHalfToAPFloat(const Eigen::half& val) {
      uint16_t raw_data = Eigen::numext::bit_cast<uint16_t>(val);
      return APFloat(APFloat::IEEEhalf(), APInt(16, raw_data));
    }
    
    Registered: Sun Jun 16 05:45:23 UTC 2024
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  8. tensorflow/compiler/mlir/tensorflow/utils/convert_tensor.cc

      if (attr.isSplat()) {
        if (attr.getSplatValue<Eigen::half>() != Eigen::half(0))
          output->Add(
              Eigen::numext::bit_cast<uint16_t>(attr.getSplatValue<Eigen::half>()));
      } else {
        output->Reserve(attr.getNumElements());
        for (const Eigen::half value : attr.getValues<Eigen::half>())
          output->AddAlreadyReserved(Eigen::numext::bit_cast<uint16_t>(value));
      }
    }
    
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Fri Apr 26 09:37:10 UTC 2024
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  9. tensorflow/compiler/mlir/lite/utils/const_tensor_utils.cc

                  data);
              values.push_back(Eigen::numext::bit_cast<Eigen::half>(bit_repr));
            }
    
            return mlir::ElementsAttr(
                DenseElementsAttr::get(shaped_type, ArrayRef<Eigen::half>(values)));
          } else {
            std::vector<Eigen::bfloat16> values;
            values.reserve(elem_count);
    
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Tue May 07 23:04:40 UTC 2024
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  10. docs/de/docs/advanced/settings.md

    ### Typen und Validierung
    
    Diese Umgebungsvariablen können nur Text-Zeichenketten verarbeiten, da sie außerhalb von Python liegen und mit anderen Programmen und dem Rest des Systems (und sogar mit verschiedenen Betriebssystemen wie Linux, Windows, macOS) kompatibel sein müssen.
    
    Registered: Mon Jun 17 08:32:26 UTC 2024
    - Last Modified: Sat Mar 30 20:17:14 UTC 2024
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