mirror of
https://github.com/servalproject/serval-dna.git
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a95ef79139
Remove stowSid() at last Change API of tohex() and strbuf_tohex(), to pass string length instead of binary byte count. This allows odd numbers of hex digits to be produced. Remove alloca_tohex_sid(); replace with alloca_tohex_sid_t() New alloca_tohex_sid_t_trunc() macro
125 lines
3.7 KiB
C
125 lines
3.7 KiB
C
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/*
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Serval Directory Service client
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When servald starts, load the SID, IP (or domain name) & port of a directory server.
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When an interface comes up with a route to this server, and periodically thereafter,
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send our SID name and number to the configured server.
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When we perform a lookup, send an additional copy of the request to the directory server.
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*/
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#include "serval.h"
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#include "str.h"
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#include "overlay_address.h"
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#include "conf.h"
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struct subscriber *directory_service;
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static void directory_update(struct sched_ent *alarm);
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static struct profile_total directory_timing={
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.name="directory_update",
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};
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struct sched_ent directory_alarm={
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.function=directory_update,
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.stats=&directory_timing,
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};
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#define DIRECTORY_UPDATE_INTERVAL 120000
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// send a registration packet
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static void directory_send(struct subscriber *directory_service, const sid_t *sidp, const char *did, const char *name)
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{
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overlay_mdp_frame request;
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memset(&request, 0, sizeof(overlay_mdp_frame));
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request.packetTypeAndFlags = MDP_TX;
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request.out.src.sid = *sidp;
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request.out.src.port=MDP_PORT_NOREPLY;
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request.out.queue=OQ_ORDINARY;
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request.out.dst.sid = directory_service->sid;
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request.out.dst.port=MDP_PORT_DIRECTORY;
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request.out.payload_length = snprintf((char *)request.out.payload, sizeof(request.out.payload),
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"%s|%s", did, name);
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// Used by tests
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INFOF("Sending directory registration for %s*, %s, %s to %s*",
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alloca_tohex_sid_t_trunc(*sidp, 14), did, name, alloca_tohex_sid_t_trunc(directory_service->sid, 14));
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overlay_mdp_dispatch(&request, 0, NULL, 0);
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}
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// send a registration packet for each unlocked identity
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static void directory_send_keyring(struct subscriber *directory_service){
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int cn=0, in=0, kp=0, k2;
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for (; !keyring_sanitise_position(keyring, &cn, &in, &kp); ++kp){
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keyring_identity *i = keyring->contexts[cn]->identities[in];
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if (i->keypairs[kp]->type == KEYTYPE_CRYPTOBOX){
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const sid_t *sidp = (const sid_t *) i->keypairs[0]->public_key;
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for(k2=0; k2 < i->keypair_count; k2++){
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if (i->keypairs[k2]->type==KEYTYPE_DID){
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const char *unpackedDid = (const char *) i->keypairs[k2]->private_key;
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const char *name = (const char *) i->keypairs[k2]->public_key;
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directory_send(directory_service, sidp, unpackedDid, name);
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// send the first DID only
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break;
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}
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}
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}
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}
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}
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static int load_directory_config()
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{
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if (!directory_service && !is_sid_t_any(config.directory.service)) {
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directory_service = find_subscriber(config.directory.service.binary, SID_SIZE, 1);
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if (!directory_service)
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return WHYF("Failed to create subscriber record");
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// used by tests
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INFOF("ADD DIRECTORY SERVICE %s", alloca_tohex_sid_t(directory_service->sid));
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}
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// always attempt to reload the address, may depend on DNS resolution
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return load_subscriber_address(directory_service);
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}
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static void directory_update(struct sched_ent *alarm){
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load_directory_config();
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if (directory_service){
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if (directory_service->reachable & REACHABLE){
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directory_send_keyring(directory_service);
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unschedule(alarm);
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alarm->alarm = gettime_ms() + DIRECTORY_UPDATE_INTERVAL;
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alarm->deadline = alarm->alarm + 10000;
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schedule(alarm);
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}else
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DEBUGF("Directory service is not reachable");
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}
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}
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int directory_service_init(){
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directory_update(&directory_alarm);
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return 0;
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}
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// called when we discover a route to the directory service SID
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int directory_registration(){
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// give the route & SAS keys a moment to propagate
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unschedule(&directory_alarm);
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directory_alarm.alarm = gettime_ms() + 200;
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directory_alarm.deadline = directory_alarm.alarm + 10000;
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schedule(&directory_alarm);
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return 0;
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}
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