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The following is a general comparison of BitTorrent clients, which are computer programs designed for peer-to-peer file sharing using the BitTorrent protocol. [1] The BitTorrent protocol coordinates segmented file transfer among peers connected in a swarm. A BitTorrent client enables a user to exchange data as a peer in one or more swarms.
qBittorrent is a cross-platform free and open-source BitTorrent client written in native C++. It relies on Boost , OpenSSL , zlib , Qt 6 toolkit and the libtorrent -rasterbar library (for the torrent back-end), with an optional search engine written in Python .
Does not have a list of hosted torrents. qBittorrent [7] C++: GPL-2.0-or-later: Yes Yes [8] Windows, OS X, Unix-like, OS/2: Lightweight. Supports DHT, PEX, announcements via UDP. Does not have a web interface or list of hosted torrents; it is not designed for secure or large-scale application. Vuze [9] Java: Disputed: Yes Windows, Mac OS, Linux
The BitTorrent specification is free to use and many clients are open source, so BitTorrent clients have been created for all common operating systems using a variety of programming languages. The official BitTorrent client, μTorrent, qBittorrent, Transmission, Vuze, and BitComet are some of the most popular clients. [61] [62] [63] [64]
The BitTorrent client enables a user to search for and download torrent files using a built-in search box ("Search for torrents") in the main window, which opens the BitTorrent torrent search engine page with the search results in the user's default web browser.
BitTorrent sites may operate a BitTorrent tracker and are often referred to as such. Operating a tracker should not be confused with hosting content. A directory allows users to browse the content available on a website based on various categories. A directory is also a site where users can find other websites.
Manager Web browser integration Resuming Download acceleration URLs per file Mirror search Auto dial/hangup Categorized downloads Cookies import Speed limit File browser ZIP preview
Any web browser should be able to connect to a peer-to-peer swarm, fetch content, verify that it is correct, and display it to the user – all as much as possible without centralized servers relying on a network entirely of people's browsers. [3] WebTorrent uses the same protocol as BitTorrent but uses a different transport layer.