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git://git.psyced.org/git/psyced
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683 lines
21 KiB
C
683 lines
21 KiB
C
// vim:foldmethod=marker:syntax=lpc
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// $Id: entity.c,v 1.127 2008/08/05 12:24:16 lynx Exp $
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//
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// entity.c: anything that has a UNI (see http://about.psyc.eu/uniform)
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// this file handles some low-level issues with being an entity:
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//
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// * resolve UNLs and UNRs into UNIs and back, so higher level
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// processing knows who they are dealing with, no matter which
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// agent operated on this person's behalf
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// * state: handle the inter-entity MMP state variables, packet
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// ids and message history
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// * trust network: figure out who we trust and who we can ask to find
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// out if someone is trustworthy etc etc
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// local debug messages - turn them on by using psyclpc -DDentity=<level>
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#ifdef Dentity
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# undef DEBUG
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# define DEBUG Dentity
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#endif
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#include <net.h>
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#include <storage.h>
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#include <uniform.h>
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#ifdef ENTITY_STATE //{{{
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# define HEADER_ONLY
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# include "state.c"
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# undef HEADER_ONLY
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#endif //}}}
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#ifndef MINIMUM_TRUST
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# define MINIMUM_TRUST 5
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#endif
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#ifndef MAXIMUM_TRUST
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# define MAXIMUM_TRUST 10
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#endif
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#ifdef NEW_QUEUE
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inherit NET_PATH "queue2";
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#else
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inherit NET_PATH "queue";
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#endif
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inherit NET_PATH "name";
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inherit NET_PATH "storage";
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#ifdef ENTITY_STATE //{{{
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volatile mapping _state, _ostate, _cstate, _icount, _count, _memory;
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volatile mapping temp, unused;
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#endif //}}}
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// this ifdef disables uni2unl, yet it doesn't remove all the queuing
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// and async auth requests. should it?
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#ifdef UNL_ROUTING //{{{
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// while unl2uni in psyc/library is currently only used for local users'
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// clients (and by FORK code, which in exchange doesn't use this code here)
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// this is the place where general UNI to UNL mapping is made.
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//
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// each user has its own because a UNI may choose to tell different people
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// different things.. in fact, a UNL may have reasons to propose different
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// UNIs, too, but right now we're only being half consequent.. also there
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// are no known applications making use of this feature anyhow ;)
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volatile mapping uni2unl;
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# ifdef USE_THE_RESOURCE
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volatile string bare;
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# endif
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#endif //}}}
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volatile string identification;
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volatile mixed _tag, _source_tag;
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#ifdef TAGGING
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volatile protected mapping _tags;
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/* currently, only net/jabber needs this */
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void chain_callback(mixed tag, mixed chain_callback) {
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if (_tags[tag])
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_tags[tag] = ({ chain_callback }) + _tags[tag];
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else
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_tags[tag] = ({ chain_callback });
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}
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mixed execute_callback(mixed tag, mixed cbargs) {
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mixed ret, cbchain;
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// API: return 0 if there was no callback, callback return value or 1 if successful ?
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unless(_tags[tag]) return 0;
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ret = cbargs;
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cbchain = _tags[tag];
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m_delete(_tags, tag);
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foreach(mixed cb : cbchain) {
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ret = apply(cb, ret);
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}
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return ret || 1;
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}
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#endif
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#ifdef ENTITY_STATE //{{{
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inherit NET_PATH "state";
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// lpc really needs an inline modifier!
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# define STATE(context) ((context) ? _cstate : _state)
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# define OSTATE(target) (member(_ostate, target) \
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? _ostate[target] \
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: _ostate[target] = ([ ]))
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# define OMEMORY(target) (member(_memory, target) \
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? _memory[target] \
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: _memory[target] = m_allocate(0, 2))
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#endif //}}}
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#ifndef _flag_disable_module_trust
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// first try to implement trust for remote ( means.. not a direct peer
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// inside the friendsnet ) objects
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volatile mapping _trust;
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// returns -1 if there was no information for somebody...
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// otherwise the level of trust \elem [0,10]
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//
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// is supposed to be overloaded by person/place for ignrores/friendships
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// and banned people
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int get_trust(string who, string by_whom) {
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mixed t;
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unless (member(_trust, who)) return -1;
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if (by_whom) {
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if (t = psyc_object(by_whom)) by_whom = t->qName();
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unless (member(_trust[who], by_whom)) return -1;
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t = get_trust(by_whom, 0);
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if (t <= 0)
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return 0;
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return _trust[who][by_whom]* t / MAXIMUM_TRUST;
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}
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// should be cache the maximum.. maybe yes.. otherwise we end up
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// calculating this stuff over and over again
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return max(m_values(_trust[who]));
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}
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#endif
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sendmsg(target, mc, data, vars, source, showingLog, callback) {
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string t;
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P3(("uni(%O): sendmsg(%O, %O, %O, %O, %O, %O)\n", ME, target, mc, data, vars, source, showingLog))
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#ifdef UNL_ROUTING //{{{
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if (t = uni2unl[target]) {
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// maybe we should keep the _identification of the target somewhere
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// in vars. but where? _target_identification ? and who needs that?
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//
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// great, if I ping xmpp:fippo@amessage.de this makes
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// it xmpp:fippo@amessage.de/foo, but I DONT WANT THAT!
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//
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// also in order to allow for multiple psyc clients we need
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// this if here, but i think we should rather ensure these
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// candidates are not in uni2unl[].. --lynX
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#if 1 //FIXME
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if (!objectp(target) || (objectp(target)
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&& target->vQuery("scheme") != "psyc"))
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#endif
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target = t;
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}
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#endif //}}}
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#ifdef FORK //{{{
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# if 0
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if (vars) { // shouldn't _count be set for msgs with empty vars, too?
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// these are overwritten by source, target. maybe we should stop
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// objects from reusing vars since that could easily be abused
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// to broatcast junk.
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m_delete(vars, "_source");
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m_delete(vars, "_target");
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// <lynX> why are you manually deleting some vars here which are also
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// defined in isRouting and do not delete _context or _counter?
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} else vars = ([ ]);
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# endif
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#endif //}}}
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if (mappingp(vars)) {
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// uhm. better rename simul-efun-sendmsg and let sendmsg be defined in
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// each object, doing return real_sendmsg(...); .. agree, but have to
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// figure out a name for it.. maybe system_sendmsg? or submitmsg?
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if (_tag && target == _source_tag &&! vars["_INTERNAL_tag_skip"]) {
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unless (vars) vars = ([]);
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vars["_tag_reply"] = _tag;
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unless (vars["_INTERNAL_tag_again"]) _tag = 0;
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}
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#if 1 //DEBUG > 2
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} else {
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// dump trace w/out error...!?
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P1(("uni:sendmsg(%O) called without vars\n", mc))
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// vars = ([ ]); -- server works better with debug? no way!
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//raise_error("uni:sendmsg called without vars\n");
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#endif
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}
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#ifdef TAGGING
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if (callback) {
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// if the caller supplies a _tag, it is responsible for
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// uniqueness within the user object
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if (!vars["_tag"]) {
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while(_tags[vars["_tag"] = RANDHEXSTRING]);
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}
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_tags[vars["_tag"]] = ({ callback });
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}
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#endif
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return library_object()->sendmsg(target, mc, data, vars, source, showingLog);
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}
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#ifdef EXPERIMENTAL
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// it's here, it may be nice or not.. we don't know..
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// because nothing is using it
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// <fippo> nothing is using it, because commiting code
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// without any infrastructure is pointless.
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mapping reply(mapping vars) {
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mapping rvars = ([]);
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if (member(vars, "_tag"))
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rvars["_tag_reply"] = vars["_tag"];
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if (member(vars, "_INTERNAL_source_resource"))
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rvars["_INTERNAL_target_resource"] = vars["_INTERNAL_source_resource"];
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if (member(vars, "_INTERNAL_target_resource"))
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rvars["_INTERNAL_source_resource"] = vars["_INTERNAL_target_resource"];
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rvars["_target"] = vars["_source_identification_reply"] || vars["_source_reply"] || vars["_source"];
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return rvars;
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}
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#endif
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msg(source, mc, data, vars) {
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string t, sid;
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P3(("uni::msg(%O, %O, %O, %O)\n", source, mc, data, vars))
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#ifdef _flag_log_flow_messages
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log_file("FLOW_MESSAGES", "%s %O ( %O <20> %O )\n", mc, strlen(data),
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ME, source);
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#endif
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#ifdef UNL_ROUTING //{{{
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# ifdef USE_THE_RESOURCE
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// too expensive to m_delete if this is going to be re-set anytime soon
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if (bare) bare = uni2unl[bare] = 0;
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# endif
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#endif //}}}
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#ifdef CAST_STATE
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// FIXME: we've got the cast state already made up by the
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// cslave, but we need to route it down to the client...
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// if there is any!
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#endif
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// deletes _tag if none is available
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if (_tag = vars["_tag"]) {
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P2(("tag %O for %O stored in %O\n", _tag, source, ME))
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_source_tag = source;
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}
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#ifdef TAGGING
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// allow _tag to trigger this? this is to circumvent some bug
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// that doesn't provide us with _tag_reply as it should.. huh?
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// but maybe it's okay anyway.. we'll see
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//
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// <fippo>: it is a bug on psyced.org only. As soon as you fix it,
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// I will happily remove the || _tag
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// <fippo>: not on psyced.org only. seems to happen if a second remote
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// joins
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if ((t = vars["_tag_reply"] || vars["_tag"]) && _tags[t]) {
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if (execute_callback(t,
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({ source, mc, data, vars }))) return 0;
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}
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#endif
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#ifdef FORK //{{{
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mixed route = vars["_context"] || source;
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unless(member(_icount, route)) _icount[route] = 0;
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if (member(vars, "_count")
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&& vars["_count"] != to_string(_icount[route]++)) {
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sendmsg(route, 0, 0, ([ "_count" : 0 ]));
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if (vars["_count"] == "0") {
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Reset(route, vars["_context"]);
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_icount[route] = 0;
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}
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}
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m_delete(vars, "_count");
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m_delete(vars, "_target"); // TODO:: find out if there's a better solution,
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// like not having target in the vars at all.
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if (member(STATE(vars["_context"]), route)) {
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//vars = _state[source] + vars; // overwrite by :
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P3(("STATE-VARS: %O\n", STATE(vars["_context"])[route]));
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foreach (mixed x, mixed y : STATE(vars["_context"])[route])
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unless (member(vars, x)) vars[x] = y;
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}
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#else //FORK }}}
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# ifndef _flag_disable_module_authentication
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// person.c only calls this for stringp(source), so why check here again?
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// because place/basic.c calls this for all sorts of sources. why this
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// inconsistency? and what about local string sources? TODO
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unless (objectp(source)) {
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if (abbrev("_notice_authentication", mc)) {
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string l = vars["_location"];
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unless (qExists(l)) return 0;
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#ifdef UNL_ROUTING //{{{
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uni2unl[source] = l;
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#endif //}}}
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// i guess this should have been here.. let's try that
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register_location(l, source, 1);
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while (qSize(l))
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apply(#'msg, shift(l));
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qDel(l);
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return 0;
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} else if (abbrev("_error_invalid_authentication", mc)) {
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string l = vars["_location"];
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P1(("_error_invalid_authentication (%O) for %O (location does "
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"%Oexist)\n", ME, l, qExists(l) ? "" : "not"))
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if (qExists(l)) qDel(l);
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return 0;
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} else if (sid = vars["_source_identification"]) {
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// && !(abbrev("_status_place_identification", mc)
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// || abbrev("_status_description_person", mc))
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// && !abbrev("_status", mc))
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if (sid == source) {
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t = 0;
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// redundant _source_identification, pls fix the sender
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// <fippo> I like debug code breaking...
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//log_file("LUNITAR", "%O in %O (%O)\n", sid, ME, v("agent"));
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// return in this case?
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}
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#ifdef UNL_ROUTING //{{{
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else if (uni2unl[sid] == source) t = sid;
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# ifdef USE_THE_RESOURCE
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// our jabber gateway doesn't lie about identifications.
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// just use it instead of the UNR
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else if (vars["_INTERNAL_identification"]) {
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// this must not get active if _nick_place is set!
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if (!vars["_nick_place"]) {
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bare = t = sid;
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uni2unl[t] = source;
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P2(("USE_THE_RESOURCE in %O: use %O instead of %O\n",
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ME, t, source))
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} else
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t = source;
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}
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# endif
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#endif //}}}
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else {
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// this will not trigger a systemwide _request_authentication
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t = lookup_identification(source);
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if (t == sid) {
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#ifdef UNL_ROUTING //{{{
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uni2unl[t] = source;
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#endif //}}}
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} else unless (objectp(t)) {
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// we should intercept when the UNI is claimed to be on the
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// same server where the location is - that's always legitimate
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// and at the same time plain humbug. so we can either accept
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// it or reject it. we shouldn't issue a _request_authentication
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// in that case. TODO: FIXME QUICK ;)
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P3((">>> qExists %O %O\n", qExists(source), source))
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unless (qExists(source)) {
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P1(("%O sending _request_authentication to %O for %O\n",
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ME, sid, source))
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library_object()->sendmsg(sid, "_request_authentication", 0,
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([ "_location" : source ]));
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qInit(source, 30, 5);
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}
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enqueue(source, ({ source, mc, data, vars }));
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return 0;
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}
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}
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if (t) {
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# if 1
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// we can either decide to see our own locations as source
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// since that's what the code in person.c already does, we'll
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// try this option first
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if (t == ME) vars["_source_identification"] = ME;
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else {
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// is there any known reason why this was missing?
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vars["_location"] = source;
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m_delete(vars, "_source_identification");
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source = t;
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// don't trust what the client says
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if (objectp(t)) vars["_nick"] = t->qName();
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// user.c does something very similar - so this
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// shouldn't be necessary, yet if i remove that
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// line a client can propose its own _nick and
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// will be successful. hm!
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}
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# else //{{{
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// or copy them into a var, then compare everywhere
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// this requires a rewrite of all of the v("locations") code
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vars["_location"] = source;
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m_delete(vars, "_source_identification");
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source = t;
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// don't trust what the client says
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if (objectp(t)) vars["_nick"] = t->qName();
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# endif //}}}
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// do we really want to delete it also in the else case?
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} else m_delete(vars, "_source_identification");
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}
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}
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# endif // _flag_disable_module_authentication
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#endif // !FORK
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#ifndef _flag_disable_module_trust
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// this mechanism does not work for objectp(source) because uni::msg is not
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// called for objects. TODO
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// this stuff works alot like _request_auth.. i still think there might be
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// some code to share
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if (member(vars, "_trustee") && vars["_trustee"]) {
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string snicker = objectp(source) ? vars["_nick"] : source;
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string trustee = vars["_trustee"];
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int trustiness = get_trust(snicker, trustee);
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P4(("trustee: %O -> %O\n", trustee, trustiness))
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if (trustiness != -1) {
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vars["_trust"] = trustiness;
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} else { // do we want to check for get_trust(source) first.. maybe
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// he is a friend..
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string trustee_nick = trustee;
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//
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// TODO we dont even need to ask the trustee if we dont
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// trust him anyway...
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if (is_formal(trustee)) {
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mixed *u = parse_uniform(trustee);
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unless (u) {
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return 1;
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// evil, there is no trustiness
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}
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// an ideal psyc parser would recognize local _trustee
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// and have it replaced by object.. but that's not the case
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// we _could_ however do that by using _uniform_trustee
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// and doing is_localhost on all _uniform's at parsing time
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if (is_localhost(lower_case(u[UHost]))) trustee_nick = u[UNick];
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}
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if (get_trust(trustee_nick, 0) < MINIMUM_TRUST) return 1;
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// entweder trustee ist ein local nick, dann kriegen wir den
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// get_trust, aber sendmsg failed hier unten.. oder trustee
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// ist eine uni, dann kann er zwar senden, findet die person
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// aber nicht im ppl[]
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unless (qExists("t"+snicker)) {
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qInit("t"+snicker, 30, 5);
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enqueue("t"+snicker, ({ source, mc, data, vars }));
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P4(("%O no trustiness for %O in %O. Queue: %O\n",
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ME, snicker, _trust, qDebug()))
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// seeing this message is never useful, really
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// the question is answered automatically, so a user
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// would only get confused..
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sendmsg(trustee, "_request_trustiness",
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0 && "Do you trust [_identification] also known as [_nick]?",
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([ "_identification" : source, "_nick" : MYNICK ]));
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// we are lazy here.. but one trust request must be enough..
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// for now
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} else
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enqueue("t"+snicker, ({ source, mc, data, vars }));
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return 0;
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}
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}
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if (abbrev("_notice_trustiness", mc)) {
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int trustiness = to_int(vars["_trustiness"]);
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mixed l = vars["_identification"];
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string s = objectp(source) ? vars["_nick"] : source;
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if (objectp(l)) l = l->qName();
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P4(("%O: %O got a trustiness of %d from %O.\n", ME,
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l, trustiness, source))
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unless (l) {
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P0(("%O got %O without _identification\n", ME, mc))
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return 0;
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}
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if (!member(_trust, l)) {
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_trust[l] = ([ s : trustiness ]);
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||
} else {
|
||
_trust[l][s] = trustiness;
|
||
}
|
||
l = "t"+l;
|
||
P4(("%O: Queue %O from %O.\n", ME, l, qDebug()))
|
||
if (qExists(l)) {
|
||
while (qSize(l))
|
||
apply(#'msg, shift(l));
|
||
qDel(l);
|
||
}
|
||
// dont drop the packet.. maybe we want to see this information
|
||
// return 0;
|
||
} else if (abbrev("_request_trustiness", mc)) {
|
||
if (get_trust(objectp(source) ? vars["_nick"]
|
||
: source, 0) < MINIMUM_TRUST) {
|
||
sendmsg(source, "_failure_trustiness",
|
||
"I dont know anything about [_identification]!", ([
|
||
"_identification" : vars["_identification"]
|
||
]));
|
||
return 0;
|
||
}
|
||
|
||
int trustiness = get_trust(objectp(vars["_identification"]) ?
|
||
vars["_identification"]->qName() : vars["_identification"], 0);
|
||
P4(("%O: %O asked me for trustiness (%d) of %O.\n", ME, source,
|
||
trustiness, vars["_identification"]))
|
||
if (-1 != trustiness) {
|
||
|
||
sendmsg(source, "_notice_trustiness", "I trust [_identification] like [_trustiness] times bigger than others.",
|
||
([ "_identification" : vars["_identification"],
|
||
"_nick" : MYNICK,
|
||
"_trustiness" : trustiness ]));
|
||
}
|
||
}
|
||
#endif // _flag_disable_module_trust
|
||
return 1;
|
||
}
|
||
|
||
create() {
|
||
// would be nice to skip this for blueprints, but at this point we have
|
||
// no way to distinguish original places from blueprints - we have no
|
||
// qName() yet - so all we could do would be to look at our object path.
|
||
//unless (clonep() && qName()) return; // do not initialize blueprints
|
||
// a different approach would be to rename this into eCreate() and have
|
||
// it called in the right places. TODO (cleanup)
|
||
#ifdef UNL_ROUTING //{{{
|
||
ASSERT("entity::create() !uni2unl", !uni2unl, uni2unl)
|
||
uni2unl = ([ ]);
|
||
#endif //}}}
|
||
#ifndef _flag_disable_module_trust
|
||
_trust = ([ ]);
|
||
#endif
|
||
#ifdef ENTITY_STATE //{{{
|
||
// wieso packen wir die counter nicht mit ins state-array. also
|
||
// mehrdimensional ?
|
||
_state = ([ ]);
|
||
_ostate = ([ ]);
|
||
_cstate = ([ ]);
|
||
_icount = ([ ]);
|
||
_count = ([ ]);
|
||
_memory = ([ ]);
|
||
temp = ([]);
|
||
#endif //}}}
|
||
#ifdef NEW_QUEUE
|
||
qCreate();
|
||
#endif
|
||
#ifdef TAGGING
|
||
_tags = ([ ]);
|
||
#endif
|
||
}
|
||
|
||
#ifdef ENTITY_STATE //{{{
|
||
|
||
// reset the state.. which means: _count == 0
|
||
void Reset(mixed source, mixed isContext) {
|
||
|
||
PT(("Reset(%O) in %O\n", source, ME));
|
||
|
||
STATE(isContext)[source] = ([ ]);
|
||
}
|
||
|
||
void Assign(mixed source, string key, mixed value, mixed isContext) {
|
||
mapping state = STATE(isContext);
|
||
|
||
PT(("Assign(%O, %O, %O) in %O\n", source, key, value, ME));
|
||
unless (member(state, source)) {
|
||
state[source] = ([]);
|
||
}
|
||
if (value) {
|
||
state[source][key] = value;
|
||
} else m_delete(state[source], key);
|
||
}
|
||
|
||
void Augment(mixed source, string key, mixed value, mixed isContext) {
|
||
mapping state = STATE(isContext);
|
||
|
||
PT(("Augment(%O, %O, %O) in %O\n", source, key, value, ME));
|
||
unless (member(state, source)) {
|
||
state[source] = ([]);
|
||
}
|
||
_augment(state[source], key, value);
|
||
}
|
||
|
||
void Diminish(mixed source, string key, mixed value, mixed isContext) {
|
||
int i;
|
||
mapping state = STATE(isContext);
|
||
|
||
PT(("Diminish(%O, %O, %O) in %O\n", source, key, value, ME));
|
||
if (member(state, source)) {
|
||
_diminish(state[source], key, value);
|
||
}
|
||
}
|
||
|
||
int outstate(string target, string key, mixed value, int hascontext) {
|
||
mapping timemachine = OMEMORY(target);
|
||
mapping state = OSTATE(target);
|
||
mapping t = temp[target];
|
||
int mod;
|
||
|
||
if (hascontext) {
|
||
//PT(("%O sends messages in a context without using group/master.c.", ME))
|
||
return 1;
|
||
}
|
||
|
||
if (key[0] == '_') {
|
||
mod = ':';
|
||
} else {
|
||
mod = key[0];
|
||
key = key[1..];
|
||
}
|
||
|
||
unless (t) t = temp[target] = ([ ]);
|
||
|
||
unless (unused) unused = copy(state);
|
||
m_delete(unused, key);
|
||
|
||
switch(mod) {
|
||
case ':':
|
||
if (timemachine[key, 1] == -1) break;
|
||
if (member(timemachine, key)) {
|
||
if (timemachine[key] == value) {
|
||
if (timemachine[key, 1] == STATE_MAX2) {
|
||
break;
|
||
}
|
||
if (timemachine[key, 1] == STATE_MIN2) {
|
||
t["="+key] = value;
|
||
state[key] = value;
|
||
return 0;
|
||
}
|
||
timemachine[key, 1]++;
|
||
} else if (timemachine[key, 1] - 1 == STATE_MIN2) {
|
||
t["="+key] = "";
|
||
m_add(timemachine, key, value, 1);
|
||
} else if (timemachine[key, 1] <= STATE_MIN2) {
|
||
m_add(timemachine, key, value, 1);
|
||
} else timemachine[key, 1]--;
|
||
} else m_add(timemachine, key, value, 1);
|
||
break;
|
||
case '=':
|
||
if ("" == value) {
|
||
m_delete(state, key);
|
||
m_delete(timemachine, key);
|
||
break;
|
||
}
|
||
if (member(state, key) && state[key] == value) {
|
||
return 0;
|
||
}
|
||
m_add(timemachine, key, value, -1);
|
||
state[key] = value;
|
||
break;
|
||
case '+':
|
||
_augment(state, key, value);
|
||
break;
|
||
case '-':
|
||
_diminish(state, key, value);
|
||
break;
|
||
default:
|
||
raise_error("Illegal variable modifier in '" + key +
|
||
"' encountered in entity:outstate.\n");
|
||
return 0;
|
||
}
|
||
return 1;
|
||
}
|
||
|
||
mapping state(string target, int hascontext) {
|
||
mapping t, t2 = ([ ]);
|
||
mapping timemachine = OMEMORY(target);
|
||
|
||
if (hascontext) {
|
||
PT(("%O sends messages in a context without using group/master.c.", ME))
|
||
return ([]);
|
||
}
|
||
|
||
if (unused) {
|
||
foreach (string key : unused) {
|
||
// variables assigned manually are taken to be permanent.
|
||
if (timemachine[key, 1] != -1)
|
||
t2[":" + key] = "";
|
||
}
|
||
|
||
unused = 0;
|
||
}
|
||
|
||
t = temp[target] || ([ ]);
|
||
m_delete(temp, target);
|
||
|
||
// rock hard optimization
|
||
unless (sizeof(t))
|
||
return t2;
|
||
unless (sizeof(t2))
|
||
return t;
|
||
return t2 + t;
|
||
}
|
||
#endif // ENTITY_STATE }}}
|