mirror of
https://github.com/matrix-construct/construct
synced 2024-11-16 23:10:54 +01:00
287 lines
6 KiB
C++
287 lines
6 KiB
C++
// The Construct
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//
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// Copyright (C) The Construct Developers, Authors & Contributors
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// Copyright (C) 2016-2020 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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decltype(ircd::m::room::head::fetch::timeout)
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ircd::m::room::head::fetch::timeout
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{
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{ "name", "ircd.m.room.head.fetch.timeout" },
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{ "default", 10 * 1000L },
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};
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ircd::m::event::id::buf
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ircd::m::room::head::fetch::one(const id &room_id,
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const string_view &remote,
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const user::id &user_id)
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{
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const unique_mutable_buffer buf
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{
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16_KiB
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};
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const m::event event
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{
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one(buf, room_id, remote, user_id)
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};
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const m::event::prev prev
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{
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event
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};
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return prev.prev_event(0);
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}
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ircd::m::event
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ircd::m::room::head::fetch::one(const mutable_buffer &out,
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const id &room_id,
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const string_view &remote,
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const user::id &user_id_)
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{
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const m::room room
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{
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room_id
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};
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// When no user_id is supplied and the room exists locally we attempt
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// to find the user_id of one of our users with membership in the room.
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// This satisfies synapse's requirements for whether we have access
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// to the response. If user_id remains blank then make_join will later
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// generate a random one from our host as well.
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m::user::id::buf user_id
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{
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!user_id_?
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any_user(room, my_host(), "join"):
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user_id_
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};
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// Make another attempt to find an invited user because that carries some
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// value (this query is not as fast as querying join memberships).
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if(!user_id)
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user_id = any_user(room, my_host(), "invite");
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const bool internal_alloc
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{
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size(out) < 16_KiB
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};
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const unique_mutable_buffer internal_buf
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{
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internal_alloc? 16_KiB: 0_KiB
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};
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const mutable_buffer buf
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{
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internal_alloc? internal_buf: out
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};
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assert(size(buf) >= 16_KiB);
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fed::make_join::opts opts;
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opts.remote = remote;
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opts.dynamic = false;
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fed::make_join request
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{
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room_id, user_id, buf, std::move(opts)
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};
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const auto code
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{
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request.get(milliseconds(timeout))
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};
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const json::object proto
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{
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request.in.content
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};
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const json::object event
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{
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proto["event"]
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};
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const size_t moved
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{
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move(out, string_view(event))
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};
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assert(moved == size(string_view(event)));
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return json::object
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{
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string_view
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{
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data(out), moved
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}
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};
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}
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//
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// fetch::fetch
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//
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ircd::m::room::head::fetch::fetch(const opts &opts,
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const closure &closure)
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{
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const m::room room
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{
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opts.room_id
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};
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// When the room isn't public we need to supply a user_id of one of our
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// users in the room to satisfy matrix protocol requirements upstack.
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const m::user::id::buf user_id
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{
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!opts.user_id?
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m::any_user(room, origin(my()), "join"):
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opts.user_id
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};
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std::tuple<id::event::buf, int64_t, event::idx> top;
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std::get<2>(top) = std::get<2>(opts.top);
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std::get<1>(top) = std::get<1>(opts.top);
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if(std::get<0>(opts.top))
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std::get<0>(top) = std::get<0>(opts.top);
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time_t top_ots {0};
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auto &[top_event_id, top_depth, top_idx]
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{
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top
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};
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if(!top_event_id && !top_idx)
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top = m::top(std::nothrow, room);
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if(!top_event_id)
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top_event_id = m::head(std::nothrow, room);
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if(!top_idx)
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top_idx = m::index(std::nothrow, top_event_id);
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if(!top_depth)
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m::get(std::nothrow, top_idx, "depth", top_depth);
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if(!top_ots)
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m::get(std::nothrow, top_idx, "origin_server_ts", top_ots);
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char tmbuf[48];
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log::debug
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{
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log, "Resynchronizing %s from %s [relative idx:%lu depth:%ld %s] from %zu joined servers...",
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string_view{room.room_id},
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string_view{top_event_id},
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top_idx,
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top_depth,
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microdate(tmbuf),
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room::origins(room).count(),
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};
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m::event result;
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if(likely(closure))
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json::get<"room_id"_>(result) = opts.room_id;
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feds::opts fopts;
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fopts.op = feds::op::head;
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fopts.room_id = room.room_id;
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fopts.user_id = user_id;
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fopts.closure_errors = false; // exceptions wil not propagate feds::execute
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fopts.exclude_myself = true;
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fopts.timeout = milliseconds(timeout);
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feds::execute(fopts, [this, &opts, &top, &top_ots, &closure, &result]
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(const auto &response)
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{
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m::event event
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{
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response.object.get("event")
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};
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const event::prev prev
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{
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event
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};
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const auto heads
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{
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prev.prev_events_count()
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};
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// The depth comes back as one greater than any existing
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// depth so we subtract one.
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const auto &depth
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{
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std::max(json::get<"depth"_>(event) - 1L, 0L)
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};
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const auto &ots
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{
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json::get<"origin_server_ts"_>(event)
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};
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const auto &[top_event_id, top_depth, top_idx]
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{
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top
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};
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this->respond += 1;
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this->heads += heads;
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this->ots[0] += ots < top_ots;
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this->ots[1] += ots == top_ots;
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this->ots[2] += ots > top_ots;
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this->depth[0] += depth < top_depth;
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this->depth[1] += depth == top_depth;
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this->depth[2] += depth > top_depth;
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if(likely(closure))
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{
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json::get<"origin"_>(result) = response.origin;
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json::get<"origin_server_ts"_>(result) = ots;
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json::get<"depth"_>(result) = depth;
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}
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size_t i(0);
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return m::for_each(prev, [this, &opts, &closure, &result, &i]
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(const event::id &event_id)
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{
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if(unlikely(i++ > opts.max_results_per_server))
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return true;
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if(unlikely(this->head.size() >= opts.max_results))
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return false;
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auto it
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{
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this->head.lower_bound(event_id)
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};
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if(likely(opts.unique))
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if(it != std::end(this->head) && *it == event_id)
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{
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++this->concur;
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return true;
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}
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if(likely(!opts.existing))
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if(m::exists(event_id))
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{
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++this->exists;
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return true;
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}
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if(likely(opts.unique))
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{
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it = this->head.emplace_hint(it, event_id);
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result.event_id = *it;
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}
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else result.event_id = event_id;
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if(likely(closure))
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return closure(result);
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return true;
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});
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});
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}
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