2019-10-06 02:02:50 +02:00
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// 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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decltype(ircd::net::dns::cache::min_ttl)
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ircd::net::dns::cache::min_ttl
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{
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{ "name", "ircd.net.dns.cache.min_ttl" },
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{ "default", 28800L },
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};
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decltype(ircd::net::dns::cache::error_ttl)
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ircd::net::dns::cache::error_ttl
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{
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{ "name", "ircd.net.dns.cache.error_ttl" },
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{ "default", 1200L },
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};
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decltype(ircd::net::dns::cache::nxdomain_ttl)
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ircd::net::dns::cache::nxdomain_ttl
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{
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{ "name", "ircd.net.dns.cache.nxdomain_ttl" },
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2022-08-13 01:22:41 +02:00
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{ "default", 604800L },
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2019-10-06 02:02:50 +02:00
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};
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decltype(ircd::net::dns::cache::waiting)
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ircd::net::dns::cache::waiting;
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decltype(ircd::net::dns::cache::mutex)
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ircd::net::dns::cache::mutex;
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decltype(ircd::net::dns::cache::dock)
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ircd::net::dns::cache::dock;
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bool
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ircd::net::dns::cache::put(const hostport &h,
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const opts &o,
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const uint &r,
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const string_view &m)
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try
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{
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using prototype = bool (const hostport &, const opts &, const uint &, const string_view &);
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static mods::import<prototype> call
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{
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"net_dns_cache", "ircd::net::dns::cache::put"
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};
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return call(h, o, r, m);
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}
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catch(const mods::unavailable &e)
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{
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thread_local char buf[rfc1035::NAME_BUFSIZE];
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log::dwarning
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{
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log, "Failed to put error for '%s' in DNS cache :%s",
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string(buf, h),
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e.what()
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};
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return false;
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}
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bool
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ircd::net::dns::cache::put(const hostport &h,
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const opts &o,
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const records &r)
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try
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{
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using prototype = bool (const hostport &, const opts &, const records &);
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static mods::import<prototype> call
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{
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"net_dns_cache", "ircd::net::dns::cache::put"
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};
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return call(h, o, r);
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}
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catch(const mods::unavailable &e)
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{
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thread_local char buf[rfc1035::NAME_BUFSIZE];
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log::dwarning
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{
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log, "Failed to put '%s' in DNS cache :%s",
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string(buf, h),
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e.what()
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};
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return false;
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}
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/// This function has an opportunity to respond from the DNS cache. If it
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/// returns true, that indicates it responded by calling back the user and
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/// nothing further should be done for them. If it returns false, that
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/// indicates it did not respond and to proceed normally. The response can
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/// be of a cached successful result, or a cached error. Both will return
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/// true.
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bool
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ircd::net::dns::cache::get(const hostport &h,
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const opts &o,
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const callback &c)
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try
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{
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using prototype = bool (const hostport &, const opts &, const callback &);
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static mods::import<prototype> call
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{
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"net_dns_cache", "ircd::net::dns::cache::get"
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};
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return call(h, o, c);
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}
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catch(const mods::unavailable &e)
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{
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thread_local char buf[rfc1035::NAME_BUFSIZE];
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log::dwarning
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{
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log, "Failed to get '%s' from DNS cache :%s",
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string(buf, h),
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e.what()
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};
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return false;
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}
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bool
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ircd::net::dns::cache::for_each(const hostport &h,
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const opts &o,
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const closure &c)
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{
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using prototype = bool (const hostport &, const opts &, const closure &);
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static mods::import<prototype> call
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{
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"net_dns_cache", "ircd::net::dns::cache::for_each"
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};
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return call(h, o, c);
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}
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bool
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ircd::net::dns::cache::for_each(const string_view &type,
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const closure &c)
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{
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using prototype = bool (const string_view &, const closure &);
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static mods::import<prototype> call
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{
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"net_dns_cache", "ircd::net::dns::cache::for_each"
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};
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return call(type, c);
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}
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ircd::string_view
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ircd::net::dns::cache::make_type(const mutable_buffer &out,
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const uint16_t &type)
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try
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{
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return make_type(out, rfc1035::rqtype.at(type));
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}
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catch(const std::out_of_range &)
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{
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throw error
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{
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"Record type[%u] is not recognized", type
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};
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}
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ircd::string_view
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ircd::net::dns::cache::make_type(const mutable_buffer &out,
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const string_view &type)
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{
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return fmt::sprintf
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{
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out, "ircd.dns.rrs.%s", type
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};
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}
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//
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// cache::waiter
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//
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bool
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ircd::net::dns::cache::operator==(const waiter &a, const waiter &b)
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noexcept
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{
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return
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a.opts.qtype == b.opts.qtype &&
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a.key && b.key &&
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a.key == b.key;
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}
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bool
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ircd::net::dns::cache::operator!=(const waiter &a, const waiter &b)
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noexcept
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{
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return !operator==(a, b);
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}
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//
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// cache::waiter::waiter
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//
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ircd::net::dns::cache::waiter::waiter(const hostport &hp,
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const dns::opts &opts,
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dns::callback &&callback)
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:callback
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{
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std::move(callback)
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}
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,opts
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{
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opts
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}
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,port
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{
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net::port(hp)
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}
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,key
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{
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opts.qtype == 33?
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make_SRV_key(keybuf, hp, opts):
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strlcpy(keybuf, host(hp))
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}
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{
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this->opts.srv = {};
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this->opts.proto = {};
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assert(this->opts.qtype);
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}
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2020-04-25 08:35:18 +02:00
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/// Note complications due to reentrance and other factors:
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/// - This function is invoked from several different places on both the
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/// timeout and receive contexts, in addition to any evaluator context.
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/// - This function calls back to users making DNS queries, and they may
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/// conduct another query in their callback frame -- mid-loop in this
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/// function.
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size_t
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ircd::net::dns::cache::waiter::call(const uint16_t &type,
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const string_view &tgt,
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const json::array &rrs)
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{
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const ctx::uninterruptible::nothrow ui;
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size_t ret(0), last; do
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{
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const std::lock_guard lock
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{
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mutex
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};
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auto it(begin(waiting));
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2020-04-25 08:41:44 +02:00
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for(last = ret; it != end(waiting);)
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2020-04-25 08:35:18 +02:00
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if(call(*it, type, tgt, rrs))
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{
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it = waiting.erase(it);
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++ret;
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2020-04-25 08:41:44 +02:00
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continue;
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2020-04-25 08:35:18 +02:00
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}
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2020-04-25 08:41:44 +02:00
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else ++it;
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2020-04-25 08:35:18 +02:00
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}
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while(last < ret);
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if(ret)
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dock.notify_all();
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return ret;
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}
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bool
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ircd::net::dns::cache::waiter::call(waiter &waiter,
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const uint16_t &type,
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const string_view &tgt,
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const json::array &rrs)
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try
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{
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if(tgt != waiter.key)
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return false;
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if(type != waiter.opts.qtype)
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return false;
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const hostport &target
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{
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waiter.opts.qtype == 33?
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unmake_SRV_key(waiter.key):
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waiter.key,
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waiter.port
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};
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assert(waiter.callback);
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waiter.callback(target, rrs);
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return true;
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}
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catch(const std::exception &e)
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{
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log::critical
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{
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log, "callback:%p %s,%s :%s",
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(const void *)&waiter,
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type,
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tgt,
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e.what(),
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};
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return true;
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}
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