mirror of
https://github.com/matrix-construct/construct
synced 2024-11-18 07:50:57 +01:00
443 lines
10 KiB
C++
443 lines
10 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) 2016-2019 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
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{
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extern conf::item<bool> x_matrix_verify_origin;
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extern conf::item<bool> x_matrix_verify_destination;
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static pair<string_view> parse_version(const resource::request &);
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static string_view authenticate_bridge(const resource::method &, const client &, resource::request &);
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static user::id authenticate_user(const resource::method &, const client &, resource::request &);
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static string_view authenticate_node(const resource::method &, const client &, resource::request &);
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}
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decltype(ircd::m::resource::log)
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ircd::m::resource::log
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{
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"m.resource"
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};
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decltype(ircd::m::x_matrix_verify_origin)
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ircd::m::x_matrix_verify_origin
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{
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{ "name", "ircd.m.x_matrix.verify_origin" },
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{ "default", true },
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};
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decltype(ircd::m::x_matrix_verify_origin)
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ircd::m::x_matrix_verify_destination
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{
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{ "name", "ircd.m.x_matrix.verify_destination" },
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{ "default", true },
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};
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//
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// m::resource::method
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//
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ircd::m::resource::method::method(m::resource &resource,
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const string_view &name,
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handler function,
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struct opts opts)
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:ircd::resource::method
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{
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resource,
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name,
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std::bind(&method::handle, this, ph::_1, ph::_2),
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std::move(opts),
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}
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,function
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{
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std::move(function)
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}
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{
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}
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ircd::m::resource::method::~method()
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noexcept
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{
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}
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ircd::resource::response
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ircd::m::resource::method::handle(client &client,
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ircd::resource::request &request_)
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try
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{
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m::resource::request request
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{
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*this, client, request_
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};
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const string_view &ident
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{
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request.bridge_id?:
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request.node_id?:
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request.user_id?:
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string_view{}
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};
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if(ident)
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log::debug
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{
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log, "%s %s %s `%s'",
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client.loghead(),
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ident,
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request.head.method,
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request.head.path,
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};
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const bool cached_error
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{
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request.node_id
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&& fed::errant(request.node_id)
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};
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// If we have an error cached from previously not being able to
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// contact this origin we can clear that now that they're alive.
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if(cached_error)
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{
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m::burst::opts opts;
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m::burst::burst
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{
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request.node_id, opts
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};
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}
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return function(client, request);
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}
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catch(const json::print_error &e)
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{
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throw m::error
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{
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http::INTERNAL_SERVER_ERROR, "M_NOT_JSON",
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"Generator Protection: %s",
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e.what()
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};
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}
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catch(const json::not_found &e)
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{
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throw m::error
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{
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http::BAD_REQUEST, "M_BAD_JSON",
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"Required JSON field: %s",
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e.what()
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};
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}
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catch(const json::error &e)
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{
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throw m::error
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{
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http::BAD_REQUEST, "M_NOT_JSON",
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"%s",
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e.what()
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};
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}
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catch(const ctx::timeout &e)
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{
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throw m::error
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{
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http::BAD_GATEWAY, "M_REQUEST_TIMEOUT",
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"%s",
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e.what()
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};
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}
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//
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// resource::request
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//
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ircd::m::resource::request::request(const method &method,
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const client &client,
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ircd::resource::request &r)
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:ircd::resource::request
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{
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r
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}
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,authorization
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{
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split(head.authorization, ' ')
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}
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,access_token
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{
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iequals(authorization.first, "Bearer"_sv)?
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authorization.second:
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query["access_token"]
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}
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,x_matrix
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{
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!access_token && iequals(authorization.first, "X-Matrix"_sv)?
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m::request::x_matrix{authorization.first, authorization.second}:
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m::request::x_matrix{}
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}
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,version
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{
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parse_version(*this)
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}
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,node_id
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{
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// Server X-Matrix header verified here. Similar to client auth, origin
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// which has been authed is referenced in the client.request. If the method
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// requires, and auth fails or not provided, this function throws.
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// Otherwise it returns a string_view of the origin name in
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// request.node_id, or an empty string_view if an origin was not
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// apropos for this request (i.e a client request rather than federation).
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authenticate_node(method, client, *this)
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}
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,user_id
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{
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// Client access token verified here. On success, user_id owning the token
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// is copied into the request structure. On failure, the method is
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// checked to see if it requires authentication and if so, this throws.
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authenticate_user(method, client, *this)
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}
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,bridge_id
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{
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// Application service access token verified here. Note that on success
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// this function will set the user_id as well as the bridge_id.
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authenticate_bridge(method, client, *this)
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}
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{
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}
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/// Authenticate a client based on access_token either in the query string or
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/// in the Authentication bearer header. If a token is found the user_id owning
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/// the token is copied into the request. If it is not found or it is invalid
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/// then the method being requested is checked to see if it is required. If so
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/// the appropriate exception is thrown. Note that if the access_token belongs
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/// to a bridge (application service), the bridge_id is set accordingly.
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ircd::m::user::id
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ircd::m::authenticate_user(const resource::method &method,
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const client &client,
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resource::request &request)
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{
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assert(method.opts);
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const auto requires_auth
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{
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method.opts->flags & resource::method::REQUIRES_AUTH
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};
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if(!requires_auth && !request.access_token)
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return {};
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// Note that we still try to auth a token and obtain a user_id here even
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// if the endpoint does not require auth; an auth'ed user may enjoy
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// additional functionality if credentials provided.
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if(requires_auth && !request.access_token)
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throw m::error
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{
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http::UNAUTHORIZED, "M_MISSING_TOKEN",
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"Credentials for this method are required but missing."
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};
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// Belay authentication to authenticate_bridge().
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if(startswith(request.access_token, "bridge_"))
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return {};
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const m::room::id::buf tokens_room_id
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{
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"tokens", origin(my())
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};
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const m::room::state tokens
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{
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tokens_room_id
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};
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const event::idx event_idx
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{
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tokens.get(std::nothrow, "ircd.access_token", request.access_token)
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};
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// The sender of the token is the user being authenticated.
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const string_view sender
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{
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m::get(std::nothrow, event_idx, "sender", request.id_buf)
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};
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// Note that if the endpoint does not require auth and we were not
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// successful in authenticating the provided token: we do not throw here;
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// instead we continue as if no token was provided, and no user_id will
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// be known to the requested endpoint.
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if(requires_auth && !sender)
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throw m::error
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{
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http::UNAUTHORIZED, "M_UNKNOWN_TOKEN",
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"Credentials for this method are required but invalid."
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};
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return sender;
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}
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/// Authenticate an application service (bridge)
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ircd::string_view
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ircd::m::authenticate_bridge(const resource::method &method,
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const client &client,
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resource::request &request)
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{
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// Real user was already authenticated; not a bridge.
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if(request.user_id)
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return {};
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// No attempt at authenticating as a bridge; not a bridge.
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if(!startswith(request.access_token, "bridge_"))
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return {};
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const m::room::id::buf tokens_room_id
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{
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"tokens", origin(my())
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};
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const m::room::state tokens
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{
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tokens_room_id
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};
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const event::idx event_idx
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{
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tokens.get(std::nothrow, "ircd.access_token", request.access_token)
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};
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// The sender of the token is the bridge's user_id, where the bridge_id
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// is the localpart, but none of this is a puppetting/target user_id.
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const string_view sender
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{
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m::get(std::nothrow, event_idx, "sender", request.id_buf)
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};
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// Note that unlike authenticate_user, if an as_token was proffered but is
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// not valid, there is no possible fallback to unauthenticated mode and
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// this must throw here.
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if(!sender)
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throw m::error
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{
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http::UNAUTHORIZED, "M_UNKNOWN_TOKEN",
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"Credentials for this method are required but invalid."
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};
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// Find the user_id the bridge wants to masquerade as.
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const string_view puppet_user_id
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{
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request.query["user_id"]
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};
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// Set the user credentials for the request at the discretion of the
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// bridge. If the bridge did not supply a user_id then we set the value
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// to the bridge's own agency. Note that we urldecode into the id_buf
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// after the bridge_user_id; care not to overwrite it.
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{
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mutable_buffer buf(request.id_buf);
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request.user_id = puppet_user_id?
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url::decode(buf + size(sender), puppet_user_id):
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sender;
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}
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// Return only the localname (that's the localpart not including sigil).
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return m::user::id(sender).localname();
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}
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ircd::string_view
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ircd::m::authenticate_node(const resource::method &method,
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const client &client,
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resource::request &request)
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try
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{
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assert(method.opts);
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const auto required
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{
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method.opts->flags & resource::method::VERIFY_ORIGIN
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};
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const bool supplied
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{
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!empty(request.x_matrix.origin)
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};
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if(!required && !supplied)
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return {};
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if(required && !supplied)
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throw m::error
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{
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http::UNAUTHORIZED, "M_MISSING_AUTHORIZATION",
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"Required X-Matrix Authorization was not supplied"
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};
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if(x_matrix_verify_destination && !m::self::host(request.head.host))
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throw m::error
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{
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http::UNAUTHORIZED, "M_NOT_MY_HOST",
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"The X-Matrix Authorization destination '%s' is not recognized here.",
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request.head.host
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};
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const m::request object
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{
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request.x_matrix.origin,
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rstrip(request.head.host, ":8448"),
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method.name,
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request.head.uri,
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request.content
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};
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if(x_matrix_verify_origin && !object.verify(request.x_matrix.key, request.x_matrix.sig))
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throw m::error
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{
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http::FORBIDDEN, "M_INVALID_SIGNATURE",
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"The X-Matrix Authorization is invalid."
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};
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return request.x_matrix.origin;
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}
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catch(const m::error &)
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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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thread_local char rembuf[128];
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log::derror
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{
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resource::log, "X-Matrix Authorization from %s: %s",
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string(rembuf, remote(client)),
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e.what()
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};
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throw m::error
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{
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http::UNAUTHORIZED, "M_UNKNOWN_ERROR",
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"An error has prevented authorization: %s",
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e.what()
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};
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}
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ircd::pair<ircd::string_view>
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ircd::m::parse_version(const m::resource::request &request)
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{
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const auto &user_agent
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{
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request.head.user_agent
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};
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const auto &[primary, info]
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{
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split(user_agent, ' ')
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};
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const auto &[name, version]
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{
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split(primary, '/')
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};
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return
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{
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name, version
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};
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}
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