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Изходен канал @clockstackwheels · Post #93 · 26.10

Телеграм запустил рекламную платформу, которую многие ждали. В том числе я, потому что неофициальные средства продвижения здесь хоть и существуют, вызывают у меня стойкое неприятие. Реклама будет отображаться в каналах, в которых больше 1000 подписчиков (вам, как моим читателям, можно пока не переживать). Внешние ссылки запрещены. Есть, однако, маленький нюанс. Минимальный бюджет рекламной кампании: 2 миллиона евро. С одной стороны, это хорошо, потому что не будет бесконечной инфоцыганщины, которой переполнен, например, ВКонтакте. С другой стороны, 90% рекламного рынка так и останется в чёрной зоне, то есть почти ни для кого ничего не поменяется, кроме Дурова. Такая себе забота о пользователях. Понравилось вот это: Sponsored Messages are currently in test mode. Once they are fully launched and allow Telegram to cover its basic costs, we will start sharing ad revenue with the owners of public channels in which sponsored messages are displayed Переводится так: мы будем забирать все деньги себе и не делиться с авторами каналов, пока не посчитаем, что забрали себе достаточно. #web

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djangoproject

@djangoproject · Post #157 · 06.09.2016 г., 19:55

https://docs.python.org/2/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.

djangoproject

@djangoproject · Post #118 · 08.08.2016 г., 11:44

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,

djangoproject

@djangoproject · Post #107 · 02.08.2016 г., 15:22

https://github.com/python/asyncio The #asyncio#module provides infrastructure for writing #single-threaded concurrent code using #coroutines, #multiplexing#I/O access over sockets and other resources, running network clients and servers, and other related primitives. Here is a more detailed list of the package contents: a pluggable event loop with various system-specific implementations; transport and protocol abstractions (similar to those in Twisted); concrete support for TCP, UDP, SSL, subprocess pipes, delayed calls, and others (some may be system-dependent); a Future class that mimics the one in the concurrent.futures module, but adapted for use with the event loop; #coroutines and #tasks based on yield from (PEP 380), to help write concurrent code in a sequential fashion; cancellation support for Futures and coroutines; synchronization primitives for use between coroutines in a single thread, mimicking those in the #threading module; an interface for passing work off to a threadpool, for times when you absolutely, positively have to use a library that makes blocking I/O calls. Note: The implementation of asyncio was previously called "Tulip".