mirror of
https://github.com/matrix-construct/construct
synced 2024-12-26 07:23:53 +01:00
291 lines
6.3 KiB
C++
291 lines
6.3 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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using namespace ircd;
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mapi::header
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IRCD_MODULE
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{
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"federation send"
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};
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m::resource
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send_resource
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{
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"/_matrix/federation/v1/send/",
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{
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"federation send",
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resource::DIRECTORY,
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}
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};
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conf::item<bool>
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allow_self
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{
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{ "name", "ircd.federation.send.allow_self" },
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{ "default", false },
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};
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conf::item<size_t>
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eval_max_per_node
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{
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{ "name", "ircd.federation.send.eval.max_per_node" },
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{ "default", 4L },
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};
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conf::item<bool>
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fetch_state
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{
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{ "name", "ircd.federation.send.fetch_state" },
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{ "default", true },
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};
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conf::item<bool>
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fetch_prev
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{
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{ "name", "ircd.federation.send.fetch_prev" },
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{ "default", true },
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};
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static void
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handle_edu(client &client,
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const m::resource::request::object<m::txn> &request,
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const string_view &txn_id,
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const m::edu &edu)
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{
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m::event event;
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json::get<"origin"_>(event) = request.node_id;
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json::get<"origin_server_ts"_>(event) = at<"origin_server_ts"_>(request);
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json::get<"content"_>(event) = at<"content"_>(edu);
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json::get<"type"_>(event) = at<"edu_type"_>(edu);
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json::get<"depth"_>(event) = json::undefined_number;
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m::vm::opts vmopts;
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vmopts.nothrows = -1U;
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vmopts.node_id = request.node_id;
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vmopts.txn_id = txn_id;
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vmopts.edu = true;
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vmopts.notify_clients = false;
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vmopts.notify_servers = false;
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m::vm::eval eval
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{
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event, vmopts
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};
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}
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static void
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handle_pdus(client &client,
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const m::resource::request::object<m::txn> &request,
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const string_view &txn_id,
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const json::array &pdus,
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json::stack &out)
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{
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json::stack::object out_pdus
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{
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out, "pdus"
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};
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m::vm::opts vmopts;
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vmopts.out = &out_pdus;
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vmopts.warnlog = 0;
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vmopts.infolog_accept = true;
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vmopts.nothrows = -1U;
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vmopts.node_id = request.node_id;
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vmopts.txn_id = txn_id;
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vmopts.phase.set(m::vm::phase::FETCH_PREV, bool(fetch_prev));
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vmopts.phase.set(m::vm::phase::FETCH_STATE, bool(fetch_state));
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vmopts.fetch_prev_wait_count = -1;
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m::vm::eval eval
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{
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pdus, vmopts
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};
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}
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static void
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handle_txn(client &client,
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const m::resource::request::object<m::txn> &request,
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const string_view &txn_id,
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json::stack &out)
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try
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{
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// We process PDU's before EDU's and we process all PDU's at once by
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// passing the complete array. The events are sorted and dependencies
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// are detected within the array. If we looped here for eval'ing one
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// at a time we'd risk issuing fetch requests for prev_events which may
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// exist in the same array, etc.
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if(!empty(json::get<"pdus"_>(request)))
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handle_pdus(client, request, txn_id, json::get<"pdus"_>(request), out);
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// We process EDU's after PDU's. This is because checks on EDU's may
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// depend on updates provided by PDU's in the same txn; for example:
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// 1. user X joins room Y. 2. user X starts typing in room Y. Note that
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// we also process EDU's one at a time since there is no dependency graph
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// or anything like that so if this loop wasn't here it would just be
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// somewhere else.
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for(const json::object edu : json::get<"edus"_>(request))
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handle_edu(client, request, txn_id, edu);
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}
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catch(const m::vm::error &e)
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{
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const json::object &content
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{
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e.content
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};
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const json::string error[]
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{
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content["errcode"],
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content["error"]
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};
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log::error
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{
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m::log, "Unhandled error processing txn '%s' from '%s' :%s :%s :%s",
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txn_id,
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request.node_id,
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e.what(),
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error[0],
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error[1],
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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::error
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{
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m::log, "Unhandled error processing txn '%s' from '%s' :%s",
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txn_id,
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request.node_id,
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e.what(),
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};
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throw;
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}
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m::resource::response
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handle_put(client &client,
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const m::resource::request::object<m::txn> &request)
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{
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if(request.parv.size() < 1)
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throw m::NEED_MORE_PARAMS
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{
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"txn_id path parameter required"
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};
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char txn_id_buf[128];
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const auto txn_id
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{
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url::decode(txn_id_buf, request.parv[0])
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};
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const string_view &origin
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{
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json::at<"origin"_>(request)
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};
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char rembuf[64];
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log::debug
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{
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m::log, "%s :%s | %s --> edus:%zu pdus:%zu",
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txn_id,
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origin,
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string(rembuf, remote(client)),
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json::get<"edus"_>(request).count(),
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json::get<"pdus"_>(request).count(),
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};
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if(origin && origin != request.node_id)
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throw m::ACCESS_DENIED
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{
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"txn[%s] originating from '%s' not accepted when relayed by '%s'",
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txn_id,
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origin,
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request.node_id,
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};
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// Don't accept sends to ourself for whatever reason (i.e a 127.0.0.1
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// leaked into the target list). This should be a 500 so it's not
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// considered success or cached as failure by the sender's state.
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if(unlikely(my_host(request.node_id)) && !bool(allow_self))
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throw m::error
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{
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"M_SEND_TO_SELF", "Tried to send %s from myself to myself.",
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txn_id
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};
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size_t evals{0};
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bool txn_in_progress{false};
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m::vm::eval::for_each([&txn_id, &request, &evals, &txn_in_progress]
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(const auto &eval)
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{
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assert(eval.opts);
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const bool match_node
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{
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eval.opts->node_id == request.node_id
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};
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const bool match_txn
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{
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match_node &&
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eval.opts->txn_id == txn_id
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};
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evals += match_node;
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txn_in_progress |= match_txn;
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return evals < size_t(eval_max_per_node);
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});
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if(evals >= size_t(eval_max_per_node))
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return m::resource::response
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{
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client, http::TOO_MANY_REQUESTS
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};
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if(txn_in_progress)
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return m::resource::response
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{
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client, http::ACCEPTED
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};
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char chunk[1536];
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m::resource::response::chunked response
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{
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client, http::OK, 0UL, chunk
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};
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json::stack out
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{
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response.buf, response.flusher()
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};
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json::stack::object top
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{
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out
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};
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handle_txn(client, request, txn_id, out);
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return std::move(response);
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}
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m::resource::method
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method_put
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{
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send_resource, "PUT", handle_put,
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{
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method_put.VERIFY_ORIGIN,
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// Coarse timeout
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90s, //TODO: conf
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// Payload maximum
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4_MiB // larger = HTTP 413 //TODO: conf
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}
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};
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