{"id":645078,"date":"2020-03-23T10:07:29","date_gmt":"2020-03-23T17:07:29","guid":{"rendered":"https:\/\/cm-edgetun.pages.dev\/en-us\/research\/?post_type=msr-research-item&#038;p=645078"},"modified":"2020-03-23T10:07:29","modified_gmt":"2020-03-23T17:07:29","slug":"oblivp2p-an-oblivious-peer-to-peer-content-sharing-system-2","status":"publish","type":"msr-research-item","link":"https:\/\/cm-edgetun.pages.dev\/en-us\/research\/publication\/oblivp2p-an-oblivious-peer-to-peer-content-sharing-system-2\/","title":{"rendered":"OblivP2P: An Oblivious Peer-to-Peer Content Sharing System"},"content":{"rendered":"<p>Peer-to-peer (P2P) systems are predominantly used to<br \/>\ndistribute trust, increase availability and improve performance.<br \/>\nA number of content-sharing P2P systems, for<br \/>\nfile-sharing applications (e.g., BitTorrent and Storj) and<br \/>\nmore recent peer-assisted CDNs (e.g., Akamai Netsession),<br \/>\nare finding wide deployment. A major security<br \/>\nconcern with content-sharing P2P systems is the risk of<br \/>\nlong-term traffic analysis\u2014a widely accepted challenge<br \/>\nwith few known solutions.<br \/>\nIn this paper, we propose a new approach to protecting<br \/>\nagainst persistent, global traffic analysis in P2P content sharing<br \/>\nsystems. Our approach advocates for hiding<br \/>\ndata access patterns, making P2P systems oblivious. We<br \/>\npropose OBLIVP2P\u2014 a construction for a scalable distributed<br \/>\nORAM protocol, usable in a real P2P setting.<br \/>\nOur protocol achieves the following results. First, we<br \/>\nshow that our construction retains the (linear) scalability<br \/>\nof the original P2P network w.r.t the number of peers.<br \/>\nSecond, our experiments simulating about 16,384 peers<br \/>\non 15 Deterlab nodes can process up to 7 requests of<br \/>\n512KB each per second, suggesting usability in moderately<br \/>\nlatency-sensitive applications as-is. The bottlenecks<br \/>\nremaining are purely computational (not bandwidth).<br \/>\nThird, our experiments confirm that in our construction,<br \/>\nno centralized infrastructure is a bottleneck \u2014<br \/>\nessentially, ensuring that the network and computational<br \/>\noverheads can be completely offloaded to the P2P network.<br \/>\nFinally, our construction is highly parallelizable,<br \/>\nwhich implies that remaining computational bottlenecks<br \/>\ncan be drastically reduced if OBLIVP2P is deployed on<br \/>\na network with many real machines.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Peer-to-peer (P2P) systems are predominantly used to distribute trust, increase availability and improve performance. A number of content-sharing P2P systems, for file-sharing applications (e.g., BitTorrent and Storj) and more recent peer-assisted CDNs (e.g., Akamai Netsession), are finding wide deployment. A major security concern with content-sharing P2P systems is the risk of long-term traffic analysis\u2014a widely [&hellip;]<\/p>\n","protected":false},"featured_media":0,"template":"","meta":{"msr-url-field":"","msr-podcast-episode":"","msrModifiedDate":"","msrModifiedDateEnabled":false,"ep_exclude_from_search":false,"_classifai_error":"","msr-author-ordering":null,"msr_publishername":"","msr_publisher_other":"","msr_booktitle":"","msr_chapter":"","msr_edition":"","msr_editors":"","msr_how_published":"","msr_isbn":"","msr_issue":"","msr_journal":"","msr_number":"","msr_organization":"","msr_pages_string":"","msr_page_range_start":"","msr_page_range_end":"","msr_series":"","msr_volume":"","msr_copyright":"","msr_conference_name":"USENIX Security 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