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Source channel @githubtrending · Post #15009 · Jul 31

#python#adb#airtest#cv#fate_grand_order#fgo#qt6 This program automates playing Fate/Grand Order on Android in multiple languages (Chinese, Japanese, English, Taiwanese). It can run on Windows, Linux, Mac, Android, and Docker, requiring minimal setup. It smartly controls battles by choosing skills, cards, and support servants without needing manual input or special equipment. It also automates weekly missions, friend support selection, and item management, saving you time and effort. You can run it on your phone or PC, even using tools like AidLux or AzurLaneAutoScript. It helps you farm efficiently without worrying about complicated setups or "best" cards, making the game easier and less time-consuming[5]. https://github.com/hgjazhgj/FGO-py

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djangoproject

@djangoproject · Post #118 · 08/08/2016, 11:44 AM

https://docs.python.org/3/library/multiprocessing.html multiprocessing is a package that supports spawning processes using an API similar to the threading module. The multiprocessing package offers both local and remote concurrency, effectively side-stepping the Global Interpreter Lock by using subprocesses instead of threads. Due to this, the multiprocessing module allows the programmer to fully leverage multiple processors on a given machine. It runs on both Unix and Windows. The #multiprocessing module also introduces #APIs which do not have analogs in the #threading#module. A prime example of this is the Pool object which offers a convenient means of parallelizing the execution of a function across multiple input values, distributing the input data across processes (data #parallelism). The following example demonstrates the common practice of defining such functions in a module so that child processes can successfully import that module. This basic example of data parallelism using Pool,