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71cbe86566
This introduces a new way of linking Serval executables and dynamic libraries from static libraries like libservald.a -- called "feature-driven" linking. The Makefile now links servald and serval-tests from libservald.a, rather than from an explicit list of object (.o) files. Thanks to the section-based method for registering functions such as HTTP handlers, CLI commands and MDP handlers, these object files had become "stand-alone" and hence were no longer included in the link because there was no unresolved reference that required them to be linked in. The new "feature.h" provides the DECLARE_FEATURE(name) macro that each stand-alone source file uses to declare the named feature(s) it provides. Each executable can call the USE_FEATURE(name) macro in any of its explicitly-linked source files to cause the corresponding object(s) to be included in the link, eg, servald_features.c. The DEFINE_BINDING() macro has been extended so that every individual MDP binding is given a feature name based on its port number macro, eg, "mdp_binding_MDP_PORT_ECHO". Some features have been factored into their own separate source files so they can be omitted or included in a build independently of each other: - the MDP bindings for MDP_PORT_DNALOOKUP, MDP_PORT_ECHO, MDP_PORT_TRACE, MDP_PORT_KEYMAPREQUEST, MDP_PORT_RHIZOME_xxx, MDP_PORT_PROBE, MDP_PORT_STUN, MDP_PORT_STUNREQ - the CLI "log" and "echo" commands - the CLI "rhizome direct" command The JNI source files are only compiled if the <jni.h> header is present, otherwise they are omitted from libservald.so.
111 lines
4.4 KiB
C
111 lines
4.4 KiB
C
/*
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Serval DNA Rhizome Direct
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Copyright (C) 2012-2015 Serval Project Inc.
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Copyright (C) 2012 Paul Gardner-Stephen
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This program is free software; you can redistribute it and/or
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modify it under the terms of the GNU General Public License
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as published by the Free Software Foundation; either version 2
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of the License, or (at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include "feature.h"
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#include "commandline.h"
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#include "rhizome.h"
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#include "mem.h"
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#include "conf.h"
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#include "debug.h"
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#include "str.h"
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DEFINE_FEATURE(cli_rhizome_direct);
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/*
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Initiate a synchronisation episode.
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*/
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static int rhizome_direct_start_sync_request(rhizome_direct_sync_request *r)
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{
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assert(r);
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assert(r->syncs_started==r->syncs_completed);
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r->syncs_started++;
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return rhizome_direct_continue_sync_request(r);
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}
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static int rhizome_sync_with_peers(int mode, int peer_count, const struct config_rhizome_peer *const *peers)
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{
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/* Get iterator capable of 64KB buffering.
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In future we should parse the sync URL and base the buffer size on the
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transport and allowable traffic volumes. */
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rhizome_direct_transport_state_http *state = emalloc_zero(sizeof(rhizome_direct_transport_state_http));
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/* XXX This code runs each sync in series, when we can probably do them in
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parallel. But we can't really do them in parallel until we make the
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synchronisation process fully asynchronous, which probably won't happen
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for a while yet.
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Also, we don't currently parse the URI protocol field fully. */
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int peer_number;
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for (peer_number = 0; peer_number < peer_count; ++peer_number) {
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const struct config_rhizome_peer *peer = peers[peer_number];
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if (strcasecmp(peer->protocol, "http") != 0)
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return WHYF("Unsupported Rhizome Direct protocol %s", alloca_str_toprint(peer->protocol));
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strbuf h = strbuf_local_buf(state->host);
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strbuf_puts(h, peer->host);
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if (strbuf_overrun(h))
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return WHYF("Rhizome Direct host name too long: %s", alloca_str_toprint(peer->host));
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state->port = peer->port;
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DEBUGF(rhizome_direct, "Rhizome direct peer is %s://%s:%d", peer->protocol, state->host, state->port);
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rhizome_direct_sync_request *s = rhizome_direct_new_sync_request(rhizome_direct_http_dispatch, 65536, 0, mode, state);
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rhizome_direct_start_sync_request(s);
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if (rd_sync_handle_count > 0)
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while (fd_poll() && rd_sync_handle_count > 0)
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;
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}
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return 0;
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}
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DEFINE_CMD(app_rhizome_direct_sync, 0,
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"Synchronise with the specified Rhizome Direct server.",
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"rhizome","direct","push|pull|sync","[<url>]");
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static int app_rhizome_direct_sync(const struct cli_parsed *parsed, struct cli_context *UNUSED(context))
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{
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DEBUG_cli_parsed(verbose, parsed);
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/* Attempt to connect with a remote Rhizome Direct instance,
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and negotiate which BARs to synchronise. */
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const char *modeName = (parsed->argc >= 3 ? parsed->args[2] : "sync");
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int mode=3; /* two-way sync */
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if (!strcasecmp(modeName,"push")) mode=1; /* push only */
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if (!strcasecmp(modeName,"pull")) mode=2; /* pull only */
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DEBUGF(rhizome_direct, "sync direction = %d",mode);
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rhizome_opendb();
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if (parsed->args[3]) {
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struct config_rhizome_peer peer;
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const struct config_rhizome_peer *peers[1] = { &peer };
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int result = cf_opt_rhizome_peer_from_uri(&peer, parsed->args[3]);
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if (result == CFOK)
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return rhizome_sync_with_peers(mode, 1, peers);
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else {
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strbuf b = strbuf_alloca(128);
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strbuf_cf_flag_reason(b, result);
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return WHYF("Invalid peer URI %s -- %s", alloca_str_toprint(parsed->args[3]), strbuf_str(b));
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}
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} else if (config.rhizome.direct.peer.ac == 0) {
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DEBUG(rhizome_direct, "No rhizome direct peers were configured or supplied");
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return -1;
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} else {
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const struct config_rhizome_peer *peers[config.rhizome.direct.peer.ac];
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unsigned i;
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for (i = 0; i < config.rhizome.direct.peer.ac; ++i)
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peers[i] = &config.rhizome.direct.peer.av[i].value;
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return rhizome_sync_with_peers(mode, config.rhizome.direct.peer.ac, peers);
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}
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}
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