mirror of
https://github.com/matrix-construct/construct
synced 2024-11-09 11:31:11 +01:00
518 lines
12 KiB
C++
518 lines
12 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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namespace ircd::m::sync
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{
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static bool room_state_append(data &, json::stack::array &, const m::event &, const m::event::idx &, const bool &query_prev);
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static bool room_state_phased_member_events(data &, json::stack::array &);
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static bool room_state_phased_events(data &);
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static bool room_state_polylog_events(data &);
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static bool _room_state_polylog(data &);
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static bool room_state_polylog(data &);
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static bool room_invite_state_polylog(data &);
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static bool room_state_linear_events(data &);
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static bool room_invite_state_linear(data &);
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static bool room_state_linear(data &);
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extern conf::item<bool> lazyload_members;
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extern conf::item<bool> crazyload_historical_members;
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extern item room_invite_state;
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extern item room_state;
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}
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ircd::mapi::header
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IRCD_MODULE
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{
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"Client Sync :Room State"
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};
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decltype(ircd::m::sync::room_state)
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ircd::m::sync::room_state
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{
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"rooms.state",
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room_state_polylog,
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room_state_linear,
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{
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{ "phased", true },
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}
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};
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decltype(ircd::m::sync::room_invite_state)
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ircd::m::sync::room_invite_state
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{
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"rooms.invite_state",
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room_invite_state_polylog,
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room_invite_state_linear,
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{
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{ "phased", true },
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}
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};
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bool
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ircd::m::sync::room_state_linear(data &data)
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{
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if(data.membership == "invite")
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return false;
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return room_state_linear_events(data);
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}
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bool
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ircd::m::sync::room_invite_state_linear(data &data)
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{
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if(data.membership != "invite")
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return false;
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return room_state_linear_events(data);
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}
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bool
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ircd::m::sync::room_state_linear_events(data &data)
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{
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if(!data.event_idx)
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return false;
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if(!data.room)
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return false;
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if(!data.membership)
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return false;
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assert(data.event);
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if(!json::get<"state_key"_>(*data.event))
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return false;
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const bool is_own_membership
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{
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json::get<"type"_>(*data.event) == "m.room.member"
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&& json::get<"state_key"_>(*data.event) == data.user.user_id
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};
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const bool is_own_join
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{
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is_own_membership && data.membership == "join"
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};
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const ssize_t &viewport_size
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{
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room::events::viewport_size
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};
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// Figure out whether the event was included in the timeline or whether
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// to include it here in the state, which comes before the timeline.
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// Since linear-sync is already distinct from polylog-sync, the
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// overwhelming majority of state events coming through linear-sync will
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// use the timeline. We make an exception for past state events the server
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// only recently obtained, to hide them from the timeline.
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if(viewport_size >= 0 && data.membership != "invite" && !is_own_join)
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{
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if(json::get<"depth"_>(*data.event) + viewport_size >= data.room_depth)
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return false;
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// We also query whether this state cell has been overwritten.
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// Unlike the timeline, the state field will not be processed
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// sequentially by our client so we can skip outdated events.
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if(m::room::state::next(data.event_idx))
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return false;
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}
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if(is_own_membership && data.membership == "join")
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{
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const scope_restore data_range_first
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{
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data.range.first, 0UL
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};
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return room_state_polylog_events(data);
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}
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json::stack::object rooms
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{
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*data.out, "rooms"
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};
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json::stack::object membership_
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{
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*data.out, data.membership
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};
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json::stack::object room_
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{
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*data.out, data.room->room_id
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};
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const auto &state_member_name
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{
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data.membership == "invite"?
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"invite_state": // "invite_state"_sv:
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"state"
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};
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json::stack::object state
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{
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*data.out, state_member_name
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};
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json::stack::array array
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{
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*data.out, "events"
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};
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bool ret{false};
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const auto append
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{
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[&data, &array, &ret](const event::idx &event_idx)
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{
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const event::fetch event
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{
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std::nothrow, event_idx
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};
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if(event.valid)
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ret |= room_state_append(data, array, event, event_idx, true);
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return true;
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}
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};
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if(is_own_membership && data.membership == "invite")
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{
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const m::room::state state{*data.room};
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state.get(std::nothrow, "m.room.create", "", append);
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state.get(std::nothrow, "m.room.join_rules", "", append);
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state.get(std::nothrow, "m.room.power_levels", "", append);
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state.get(std::nothrow, "m.room.history_visibility", "", append);
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state.get(std::nothrow, "m.room.avatar", "", append);
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state.get(std::nothrow, "m.room.name", "", append);
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state.get(std::nothrow, "m.room.canonical_alias", "", append);
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state.get(std::nothrow, "m.room.aliases", my_host(), append);
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}
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// Branch for supplying state to the client after its user's invite
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// is processed. At this point the client has not received prior room
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// state in /sync.
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if(is_own_membership && data.membership == "invite")
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{
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const m::room::state state{*data.room};
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const auto &sender
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{
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json::get<"sender"_>(*data.event)
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};
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state.get(std::nothrow, "m.room.member", sender, append);
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}
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ret |= room_state_append(data, array, *data.event, data.event_idx, true);
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return ret;
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}
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bool
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ircd::m::sync::room_state_polylog(data &data)
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{
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if(data.membership == "invite")
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return false;
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return _room_state_polylog(data);
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}
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bool
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ircd::m::sync::room_invite_state_polylog(data &data)
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{
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if(data.membership != "invite")
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return false;
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return _room_state_polylog(data);
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}
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bool
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ircd::m::sync::_room_state_polylog(data &data)
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{
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assert(data.args);
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if(likely(!data.args->full_state))
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if(!data.phased && int64_t(data.range.first) > 0)
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if(!apropos(data, data.room_head))
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return false;
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return room_state_polylog_events(data);
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}
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decltype(ircd::m::sync::lazyload_members)
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ircd::m::sync::lazyload_members
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{
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{ "name", "ircd.client.sync.rooms.state.members.lazyload" },
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{ "default", true },
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{ "persist", false },
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};
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decltype(ircd::m::sync::crazyload_historical_members)
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ircd::m::sync::crazyload_historical_members
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{
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{ "name", "ircd.client.sync.rooms.state.members.historical" },
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{ "default", false },
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};
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bool
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ircd::m::sync::room_state_polylog_events(data &data)
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{
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if(data.phased && data.range.first == 0)
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return room_state_phased_events(data);
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bool ret{false};
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ctx::mutex mutex;
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json::stack::array array
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{
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*data.out, "events"
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};
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static const auto num(64); //TODO: XXX
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sync::pool.min(num);
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unsigned long long a_mask[2] {0};
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allocator::state a(num, a_mask);
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std::vector<m::event::fetch> events(num);
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ctx::concurrent<event::idx> concurrent
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{
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sync::pool, [&data, &ret, &mutex, &array, &events, &a](const auto &event_idx)
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{
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const auto i(a.allocate(1)); const unwind i_{[&a, &i]
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{
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a.deallocate(i, 1);
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}};
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assert(i < events.size());
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auto &event(events.at(i));
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if(!m::seek(std::nothrow, event, event_idx))
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{
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log::error
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{
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log, "Failed to fetch event idx:%lu in room %s state.",
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event_idx,
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string_view{data.room->room_id},
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};
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assert(!event.valid);
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return;
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}
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assert(event.valid);
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const std::lock_guard lock{mutex};
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ret |= room_state_append(data, array, event, event_idx, false);
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}
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};
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const room::state state{*data.room};
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state.for_each([&data, &concurrent]
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(const string_view &type, const string_view &state_key, const event::idx &event_idx)
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{
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// Skip this event if it's not in the sync range, except
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// when the request came with a `?full_state=true`
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assert(data.args);
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if(likely(!data.args->full_state))
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if(!apropos(data, event_idx))
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return true;
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// For crazyloading/lazyloading related membership event optimiztions.
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if(!data.args->full_state && type == "m.room.member")
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{
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if(lazyload_members)
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return true;
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if(!crazyload_historical_members)
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if(data.membership == "leave" || data.membership == "ban")
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return true;
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}
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this_ctx::interruption_point();
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concurrent(event_idx);
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return true;
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});
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const ctx::uninterruptible::nothrow ui;
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concurrent.wait();
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return ret;
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}
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bool
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ircd::m::sync::room_state_phased_events(data &data)
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{
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bool ret{false};
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ctx::mutex mutex;
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json::stack::array array
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{
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*data.out, "events"
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};
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const auto append
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{
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[&data, &array, &ret, &mutex]
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(const m::event::idx &event_idx, const m::event &event)
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{
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const std::lock_guard lock{mutex};
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ret |= room_state_append(data, array, event, event_idx, true);
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}
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};
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std::array<event::idx, 6> event_idx;
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const std::pair<string_view, string_view> keys[]
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{
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{ "m.room.create", "" },
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{ "m.room.canonical_alias", "" },
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{ "m.room.name", "" },
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{ "m.room.avatar", "" },
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{ "m.room.aliases", data.user.user_id.host() },
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{ "m.room.member", data.user.user_id },
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};
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const room::state state
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{
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*data.room
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};
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// Prefetch the state cells
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size_t state_prefetched(0);
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for(const auto &[type, state_key] : keys)
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state_prefetched += state.prefetch(type, state_key);
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// Fetch the state cells and prefetch the event data
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size_t i(0);
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size_t prev_content_prefetched(0);
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for(const auto &[type, state_key] : keys)
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{
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auto &idx(event_idx.at(i++));
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idx = state.get(std::nothrow, type, state_key);
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// Prefetch the content of the previous state for event::append()
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if(likely(type != "m.room.create"))
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{
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const auto &prev_idx
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{
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room::state::prev(idx)
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};
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prev_content_prefetched += m::prefetch(prev_idx, "content");
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}
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}
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// Fetch the event data and stream to client
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m::event::fetch event;
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assert(i <= event_idx.size());
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for(i = 0; i < event_idx.size(); ++i) try
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{
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if(!event_idx.at(i))
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continue;
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seek(event, event_idx.at(i));
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append(event_idx.at(i), event);
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}
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catch(const std::exception &e)
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{
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const auto &[type, state_key]
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{
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keys[i]
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};
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log::error
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{
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log, "Failed to find event_idx:%lu in room %s state (%s,%s)",
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event_idx.at(i),
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string_view{data.room->room_id},
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type,
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state_key,
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};
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}
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if(data.membership == "join")
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ret |= room_state_phased_member_events(data, array);
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return ret;
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}
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bool
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ircd::m::sync::room_state_phased_member_events(data &data,
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json::stack::array &array)
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{
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// The number of recent room events we'll seek senders for.
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static const size_t &max{24};
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const size_t &count
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{
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std::min(size_t(room::events::viewport_size), max)
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};
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m::room::events it
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{
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*data.room
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};
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// Prefetch the senders of the recent room events
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size_t i(0), prefetched(0);
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std::array<event::idx, max> event_idx;
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assert(count <= max && count <= event_idx.size());
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for(; it && i < count; --it, ++i)
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{
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event_idx[i] = it.event_idx();
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prefetched += m::prefetch(event_idx[i], "sender");
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}
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// Transform the senders into member event::idx's and prefetch events
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std::transform(begin(event_idx), begin(event_idx) + i, begin(event_idx), [&data]
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(const m::event::idx &event_idx)
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{
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const event::idx &member_idx
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{
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m::query(std::nothrow, event_idx, "sender", [&data]
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(const string_view &sender)
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{
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return data.room->get(std::nothrow, "m.room.member", sender);
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})
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};
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m::prefetch(member_idx);
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return member_idx;
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});
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// Eliminate duplicate member event::idx
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std::sort(begin(event_idx), begin(event_idx) + i);
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const auto end(std::unique(begin(event_idx), begin(event_idx) + i));
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assert(std::distance(begin(event_idx), end) > 0 || i == 0);
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// Fetch and stream those member events to client
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bool ret{false};
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m::event::fetch event;
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std::for_each(begin(event_idx), end, [&data, &array, &ret, &event]
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(const event::idx &sender_idx)
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{
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if(!seek(std::nothrow, event, sender_idx))
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return;
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ret |= room_state_append(data, array, event, sender_idx, false);
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});
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return ret;
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}
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bool
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ircd::m::sync::room_state_append(data &data,
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json::stack::array &events,
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const m::event &event,
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const m::event::idx &event_idx,
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const bool &query_prev)
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{
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m::event::append::opts opts;
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opts.event_idx = &event_idx;
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opts.user_id = &data.user.user_id;
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opts.user_room = &data.user_room;
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opts.query_txnid = false;
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opts.room_depth = &data.room_depth;
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opts.query_prev_state = query_prev;
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return m::event::append(events, event, opts);
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}
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