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  1. docs/tr/docs/async.md

    ## Coroutine'ler
    
    **Coroutine**, bir `async def` fonksiyonu tarafından döndürülen değer için çok süslü bir terimdir. Python bunun bir fonksiyon gibi bir noktada başlayıp biteceğini bilir, ancak içinde bir `await` olduğunda dahili olarak da duraklatılabilir ⏸.
    
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  2. docs/fr/docs/async.md

    ## Conclusion
    
    Reprenons la phrase du début de la page :
    
    > Les versions modernes de Python supportent le **code asynchrone** grâce aux **"coroutines"** avec les syntaxes **`async` et `await`**.
    
    Ceci devrait être plus compréhensible désormais. ✨
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  3. docs/ru/docs/async.md

    Что касается JavaScript (в браузере и NodeJS), раньше там использовали для этой цели
    <abbr title="callback">"обратные вызовы"</abbr>. Что выливалось в
    "ад обратных вызовов".
    
    ## Сопрограммы
    
    <abbr title="coroutine">**Корути́на**</abbr> (или же сопрограмма) — это крутое словечко для именования той сущности,
    которую возвращает функция `async def`. Python знает, что её можно запустить, как и обычную функцию,
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  4. docs/en/docs/async.md

    In previous versions of NodeJS / Browser JavaScript, you would have used "callbacks". Which leads to "callback hell".
    
    ## Coroutines { #coroutines }
    
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  5. docs/de/docs/async.md

    ## Fazit
    
    Sehen wir uns den gleichen Satz von oben noch mal an:
    
    > Moderne Versionen von Python unterstützen **„asynchronen Code“** unter Verwendung sogenannter **„Coroutinen“** mithilfe der Syntax **`async`** und **`await`**.
    
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  6. CHANGELOG.md

    
    ## Version 5.0.0-alpha.14
    
    _2024-04-17_
    
     *  Breaking: Move coroutines extensions to okhttp3.coroutines. Previously this artifact shared the
        `okhttp3` package name with our core module, which is incompatible with the Java Platform Module
        System.
    
     *  Fix in okhttp-coroutines: Publish a valid artifact. The coroutines JAR file in 5.0.0-alpha.13
        was corrupt and should not be used.
    
    
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  7. docs/ja/docs/async.md

    **FastAPI**を使用している場合、その「最初の」関数が*path operation 関数*であり、FastAPIが正しく実行する方法を知っているので、心配する必要はありません。
    
    しかし、FastAPI以外で `async` / `await` を使用したい場合は、<a href="https://docs.python.org/3/library/asyncio-task.html#coroutine" class="external-link" target="_blank">公式Pythonドキュメントを参照して下さい</a>。
    
    ### 非同期コードの他の形式
    
    `async` と `await` を使用するスタイルは、この言語では比較的新しいものです。
    
    非同期コードの操作がはるかに簡単になります。
    
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  8. cmd/leak-detect_test.go

    		for _, g := range leaked {
    			t.Errorf("Leaked goroutine: %v", g)
    		}
    		return
    	}
    }
    
    // DetectTestLeak -  snapshots the currently running goroutines and returns a
    // function to be run at the end of tests to see whether any
    // goroutines leaked.
    // Usage: `defer DetectTestLeak(t)()` in beginning line of benchmarks or unit tests.
    Registered: Sun Sep 07 19:28:11 UTC 2025
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  9. doc/go_mem.html

    Some, such as atomic compare-and-swap, are both read-like and write-like.
    </p>
    
    <p>
    A <i>goroutine execution</i> is modeled as a set of memory operations executed by a single goroutine.
    </p>
    
    <p>
    <b>Requirement 1</b>:
    The memory operations in each goroutine must correspond to a correct sequential execution of that goroutine,
    given the values read from and written to memory.
    Registered: Tue Sep 09 11:13:09 UTC 2025
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  10. cmd/admin-handlers_test.go

    	}
    
    	result := &serviceResult{}
    	if err := json.Unmarshal(resp, result); err != nil {
    		t.Error(err)
    	}
    	_ = result
    
    	// Wait until testServiceSignalReceiver() called in a goroutine quits.
    	wg.Wait()
    }
    
    // Test for service restart management REST API.
    func TestServiceRestartHandler(t *testing.T) {
    	testServicesCmdHandler(restartCmd, t)
    }
    
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