mirror of
https://github.com/matrix-construct/construct
synced 2024-11-27 17:22:36 +01:00
581 lines
9 KiB
C++
581 lines
9 KiB
C++
// Matrix Construct
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//
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// Copyright (C) Matrix Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2018 Jason Volk <jason@zemos.net>
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//
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// Permission to use, copy, modify, and/or distribute this software for any
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// purpose with or without fee is hereby granted, provided that the above
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// copyright notice and this permission notice is present in all copies. The
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// full license for this software is available in the LICENSE file.
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#include "sender.h"
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std::list<txn> txns;
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std::map<std::string, node, std::less<>> nodes;
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void remove_node(const node &);
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static void recv_timeout(txn &, node &);
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static void recv_timeouts();
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static bool recv_handle(txn &, node &);
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static void recv();
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static void recv_worker();
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ctx::dock recv_action;
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static void send_from_user(const m::event &, const m::user::id &user_id);
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static void send_to_user(const m::event &, const m::user::id &user_id);
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static void send_to_room(const m::event &, const m::room::id &room_id);
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static void send(const m::event &);
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static void send_worker();
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static void handle_notify(const m::event &, m::vm::eval &);
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context
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sender
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{
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"m.fedsnd.S", 1_MiB, &send_worker, context::POST,
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};
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context
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receiver
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{
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"m.fedsnd.R", 1_MiB, &recv_worker, context::POST,
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};
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mapi::header
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IRCD_MODULE
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{
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"federation sender",
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nullptr, []
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{
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sender.terminate();
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receiver.terminate();
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sender.join();
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receiver.join();
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}
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};
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std::deque<std::pair<std::string, m::event::id::buf>>
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notified_queue;
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ctx::dock
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notified_dock;
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m::hookfn<m::vm::eval &>
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notified
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{
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handle_notify,
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{
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{ "_site", "vm.notify" },
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}
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};
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void
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handle_notify(const m::event &event,
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m::vm::eval &eval)
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try
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{
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if(!my(event))
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return;
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assert(eval.opts);
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if(!eval.opts->notify_servers)
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return;
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const m::event::id::buf &event_id
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{
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event.event_id?
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m::event::id::buf{event.event_id}:
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m::event::id::buf{}
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};
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notified_queue.emplace_back(json::strung{event}, event_id);
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notified_dock.notify_all();
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}
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catch(const ctx::interrupted &)
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{
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throw;
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}
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catch(const std::exception &e)
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{
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log::critical
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{
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m::log, "Federation sender notify handler :%s",
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e.what()
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};
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}
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void
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__attribute__((noreturn))
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send_worker()
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{
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while(1) try
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{
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notified_dock.wait([]
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{
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return !notified_queue.empty();
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});
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const unwind pop{[]
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{
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assert(!notified_queue.empty());
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notified_queue.pop_front();
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}};
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const auto &[event_, event_id]
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{
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notified_queue.front()
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};
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const m::event event
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{
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json::object{event_}, event_id
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};
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send(event);
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}
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catch(const std::exception &e)
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{
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log::error
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{
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"sender worker: %s", e.what()
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};
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}
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}
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void
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send(const m::event &event)
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{
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const auto &type
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{
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json::get<"type"_>(event)
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};
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const auto &sender
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{
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json::get<"sender"_>(event)
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};
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const auto &room_id
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{
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json::get<"room_id"_>(event)
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};
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const json::object &content
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{
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json::get<"content"_>(event)
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};
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if(json::get<"depth"_>(event) == json::undefined_number)
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return;
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// target is every remote server in a room
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if(valid(m::id::ROOM, room_id))
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return send_to_room(event, m::room::id{room_id});
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// target is remote server hosting user/device
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if(type == "m.direct_to_device")
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{
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const json::string &target
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{
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content.get("target")
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};
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if(valid(m::id::USER, target))
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return send_to_user(event, m::user::id(target));
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}
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// target is every remote server from every room a user is joined to.
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if(valid(m::id::USER, sender))
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return send_from_user(event, m::user::id{sender});
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}
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/// EDU and PDU path where the target is a room
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void
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send_to_room(const m::event &event,
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const m::room::id &room_id)
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{
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// Unit is not allocated until we find another server in the room.
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std::shared_ptr<struct unit> unit;
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const m::room room{room_id};
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const m::room::origins origins{room};
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origins.for_each([&unit, &event]
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(const string_view &origin)
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{
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if(my_host(origin))
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return;
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auto it{nodes.lower_bound(origin)};
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if(it == end(nodes) || it->first != origin)
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{
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if(server::errant(m::fed::matrix_service(origin)))
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return;
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it = nodes.emplace_hint(it, origin, origin);
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}
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auto &node{it->second};
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if(node.err)
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return;
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if(!unit)
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unit = std::make_shared<struct unit>(event);
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node.push(unit);
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node.flush();
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});
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}
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/// EDU path where the target is a user/device
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void
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send_to_user(const m::event &event,
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const m::user::id &user_id)
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{
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const string_view &remote
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{
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user_id.host()
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};
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if(my_host(remote))
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return;
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auto it{nodes.lower_bound(remote)};
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if(it == end(nodes) || it->first != remote)
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{
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if(server::errant(m::fed::matrix_service(remote)))
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return;
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it = nodes.emplace_hint(it, remote, remote);
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}
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auto &node{it->second};
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if(node.err)
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return;
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auto unit
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{
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std::make_shared<struct unit>(event)
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};
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node.push(std::move(unit));
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node.flush();
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}
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/// EDU path where the he target is every server from every room the sender
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/// is joined to.
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void
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send_from_user(const m::event &event,
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const m::user::id &user_id)
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{
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const m::user::servers servers
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{
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user_id
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};
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// Iterate all of the servers visible in this user's joined rooms.
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servers.for_each("join", [&user_id, &event]
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(const string_view &origin)
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{
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if(my_host(origin))
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return true;
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auto it{nodes.lower_bound(origin)};
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if(it == end(nodes) || it->first != origin)
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{
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if(server::errant(m::fed::matrix_service(origin)))
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return true;
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it = nodes.emplace_hint(it, origin, origin);
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}
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auto &node{it->second};
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if(node.err)
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return true;
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auto unit
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{
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std::make_shared<struct unit>(event)
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};
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node.push(unit);
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node.flush();
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return true;
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});
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}
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void
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node::push(std::shared_ptr<unit> su)
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{
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q.emplace_back(std::move(su));
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}
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bool
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node::flush()
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try
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{
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if(q.empty())
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return true;
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if(curtxn)
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return true;
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size_t pdus{0}, edus{0};
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for(const auto &unit : q) switch(unit->type)
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{
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case unit::PDU: ++pdus; break;
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case unit::EDU: ++edus; break;
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default: break;
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}
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size_t pc(0), ec(0);
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std::vector<json::value> units(pdus + edus);
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for(const auto &unit : q) switch(unit->type)
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{
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case unit::PDU:
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units.at(pc++) = string_view{unit->s};
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break;
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case unit::EDU:
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units.at(pdus + ec++) = string_view{unit->s};
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break;
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default:
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break;
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}
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m::fed::send::opts opts;
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opts.remote = remote;
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opts.sopts = &sopts;
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const vector_view<const json::value> pduv
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{
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units.data(), units.data() + pc
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};
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const vector_view<const json::value> eduv
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{
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units.data() + pdus, units.data() + pdus + ec
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};
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std::string content
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{
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m::txn::create(pduv, eduv)
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};
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txns.emplace_back(*this, std::move(content), std::move(opts));
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const unwind_nominal_assertion na;
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curtxn = &txns.back();
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q.clear();
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log::debug
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{
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m::log, "sending txn %s pdus:%zu edus:%zu to '%s'",
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curtxn->txnid,
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pdus,
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edus,
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this->remote,
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};
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recv_action.notify_one();
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return true;
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}
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catch(const std::exception &e)
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{
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log::error
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{
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"flush error to %s :%s", remote, e.what()
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};
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err = true;
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return false;
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}
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void
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__attribute__((noreturn))
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recv_worker()
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{
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while(1)
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{
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recv_action.wait([]
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{
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return !txns.empty();
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});
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recv();
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recv_timeouts();
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}
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}
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void
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recv()
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try
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{
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auto next
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{
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ctx::when_any(begin(txns), end(txns))
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};
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if(!next.wait(seconds(2), std::nothrow)) //TODO: conf
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return;
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const auto it
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{
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next.get()
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};
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if(unlikely(it == end(txns)))
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{
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assert(0);
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return;
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}
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auto &txn
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{
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*it
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};
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assert(txn.node);
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auto &node{*txn.node};
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const auto ret
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{
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recv_handle(txn, node)
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};
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node.curtxn = nullptr;
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txns.erase(it);
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if(node.err)
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return remove_node(node);
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if(!ret)
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return;
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node.flush();
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}
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catch(const std::exception &e)
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{
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ircd::panicking(e);
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}
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bool
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recv_handle(txn &txn,
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node &node)
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try
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{
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const auto code
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{
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txn.get()
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};
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const json::object obj
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{
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txn
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};
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const m::fed::send::response resp
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{
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obj
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};
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if(code != http::OK) log::dwarning
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{
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"%u %s from %s for %s",
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ushort(code),
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http::status(code),
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node.remote,
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txn.txnid
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};
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resp.for_each_pdu([&txn, &node]
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(const m::event::id &event_id, const json::object &error)
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{
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if(empty(error))
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return;
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log::error
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{
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"Error from %s in %s for %s :%s",
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node.remote,
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txn.txnid,
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string_view{event_id},
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string_view{error}
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};
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});
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return true;
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}
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catch(const http::error &e)
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{
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log::derror
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{
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"%u %s from %s for %s :%s",
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ushort(e.code),
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http::status(e.code),
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node.remote,
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txn.txnid,
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e.what()
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};
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node.err = true;
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return false;
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}
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catch(const std::exception &e)
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{
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log::derror
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{
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"Error from %s for %s :%s",
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node.remote,
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txn.txnid,
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e.what()
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};
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node.err = true;
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return false;
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}
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void
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recv_timeouts()
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{
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const auto &now
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{
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ircd::now<steady_point>()
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};
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auto it(begin(txns));
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for(; it != end(txns); ++it)
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{
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auto &txn(*it);
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assert(txn.node);
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if(txn.node->err)
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continue;
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if(txn.timeout + seconds(45) < now) //TODO: conf
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recv_timeout(txn, *txn.node);
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}
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}
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void
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recv_timeout(txn &txn,
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node &node)
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{
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log::dwarning
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{
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"Timeout to %s for txn %s",
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node.remote,
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txn.txnid
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};
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cancel(txn);
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node.err = true;
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}
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void
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remove_node(const node &node)
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{
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const auto it
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{
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nodes.find(node.remote)
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};
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assert(it != end(nodes));
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nodes.erase(it);
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}
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