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/*
* $Id: serv_network.c 8675 2010-07-11 22:09:08Z dothebart $
*
* This module handles shared rooms, inter-Citadel mail, and outbound
* mailing list processing.
*
* Copyright (c) 2000-2010 by the citadel.org team
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 3 of the License, or
* (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software
* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
*
* ** NOTE ** A word on the S_NETCONFIGS semaphore:
* This is a fairly high-level type of critical section. It ensures that no
* two threads work on the netconfigs files at the same time. Since we do
* so many things inside these, here are the rules:
* 1. begin_critical_section(S_NETCONFIGS) *before* begin_ any others.
* 2. Do *not* perform any I/O with the client during these sections.
*
*/
/*
* Duration of time (in seconds) after which pending list subscribe/unsubscribe
* requests that have not been confirmed will be deleted.
*/
#define EXP 259200 /* three days */
#include "sysdep.h"
#include <stdlib.h>
#include <unistd.h>
#include <stdio.h>
#include <fcntl.h>
#include <ctype.h>
#include <signal.h>
#include <pwd.h>
#include <errno.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <dirent.h>
#if TIME_WITH_SYS_TIME
# include <sys/time.h>
# include <time.h>
#else
# if HAVE_SYS_TIME_H
# include <sys/time.h>
# else
# include <time.h>
# endif
#endif
#include <sys/wait.h>
#include <string.h>
#include <limits.h>
#include <libcitadel.h>
#include "citadel.h"
#include "server.h"
#include "citserver.h"
#include "support.h"
#include "config.h"
#include "user_ops.h"
#include "database.h"
#include "msgbase.h"
#include "internet_addressing.h"
#include "serv_network.h"
#include "clientsocket.h"
#include "file_ops.h"
#include "citadel_dirs.h"
#include "threads.h"
#ifndef HAVE_SNPRINTF
#include "snprintf.h"
#endif
#include "context.h"
#include "ctdl_module.h"
/* Nonzero while we are doing network processing */
static int doing_queue = 0;
/*
* When we do network processing, it's accomplished in two passes; one to
* gather a list of rooms and one to actually do them. It's ok that rplist
* is global; we have a mutex that keeps it safe.
*/
struct RoomProcList *rplist = NULL;
/*
* We build a map of network nodes during processing.
*/
NetMap *the_netmap = NULL;
int netmap_changed = 0;
char *working_ignetcfg = NULL;
/*
* Load or refresh the Citadel network (IGnet) configuration for this node.
*/
void load_working_ignetcfg(void) {
char *cfg;
char *oldcfg;
cfg = CtdlGetSysConfig(IGNETCFG);
if (cfg == NULL) {
cfg = strdup("");
}
oldcfg = working_ignetcfg;
working_ignetcfg = cfg;
if (oldcfg != NULL) {
free(oldcfg);
}
}
/*
* Keep track of what messages to reject
*/
FilterList *load_filter_list(void) {
char *serialized_list = NULL;
int i;
char buf[SIZ];
FilterList *newlist = NULL;
FilterList *nptr;
serialized_list = CtdlGetSysConfig(FILTERLIST);
if (serialized_list == NULL) return(NULL); /* if null, no entries */
/* Use the string tokenizer to grab one line at a time */
for (i=0; i<num_tokens(serialized_list, '\n'); ++i) {
extract_token(buf, serialized_list, i, '\n', sizeof buf);
nptr = (FilterList *) malloc(sizeof(FilterList));
extract_token(nptr->fl_user, buf, 0, '|', sizeof nptr->fl_user);
striplt(nptr->fl_user);
extract_token(nptr->fl_room, buf, 1, '|', sizeof nptr->fl_room);
striplt(nptr->fl_room);
extract_token(nptr->fl_node, buf, 2, '|', sizeof nptr->fl_node);
striplt(nptr->fl_node);
/* Cowardly refuse to add an any/any/any entry that would
* end up filtering every single message.
*/
if (IsEmptyStr(nptr->fl_user) &&
IsEmptyStr(nptr->fl_room) &&
IsEmptyStr(nptr->fl_node)) {
free(nptr);
}
else {
nptr->next = newlist;
newlist = nptr;
}
}
free(serialized_list);
return newlist;
}
void free_filter_list(FilterList *fl) {
if (fl == NULL) return;
free_filter_list(fl->next);
free(fl);
}
/*
* Check the use table. This is a list of messages which have recently
* arrived on the system. It is maintained and queried to prevent the same
* message from being entered into the database multiple times if it happens
* to arrive multiple times by accident.
*/
int network_usetable(struct CtdlMessage *msg) {
char msgid[SIZ];
struct cdbdata *cdbut;
struct UseTable ut;
/* Bail out if we can't generate a message ID */
if (msg == NULL) {
return(0);
}
if (msg->cm_fields['I'] == NULL) {
return(0);
}
if (IsEmptyStr(msg->cm_fields['I'])) {
return(0);
}
/* Generate the message ID */
strcpy(msgid, msg->cm_fields['I']);
if (haschar(msgid, '@') == 0) {
strcat(msgid, "@");
if (msg->cm_fields['N'] != NULL) {
strcat(msgid, msg->cm_fields['N']);
}
else {
return(0);
}
}
cdbut = cdb_fetch(CDB_USETABLE, msgid, strlen(msgid));
if (cdbut != NULL) {
cdb_free(cdbut);
CtdlLogPrintf(CTDL_DEBUG, "network_usetable() : we already have %s\n", msgid);
return(1);
}
/* If we got to this point, it's unique: add it. */
strcpy(ut.ut_msgid, msgid);
ut.ut_timestamp = time(NULL);
cdb_store(CDB_USETABLE, msgid, strlen(msgid), &ut, sizeof(struct UseTable) );
return(0);
}
/*
* Read the network map from its configuration file into memory.
*/
void read_network_map(void) {
char *serialized_map = NULL;
int i;
char buf[SIZ];
NetMap *nmptr;
serialized_map = CtdlGetSysConfig(IGNETMAP);
if (serialized_map == NULL) return; /* if null, no entries */
/* Use the string tokenizer to grab one line at a time */
for (i=0; i<num_tokens(serialized_map, '\n'); ++i) {
extract_token(buf, serialized_map, i, '\n', sizeof buf);
nmptr = (NetMap *) malloc(sizeof(NetMap));
extract_token(nmptr->nodename, buf, 0, '|', sizeof nmptr->nodename);
nmptr->lastcontact = extract_long(buf, 1);
extract_token(nmptr->nexthop, buf, 2, '|', sizeof nmptr->nexthop);
nmptr->next = the_netmap;
the_netmap = nmptr;
}
free(serialized_map);
netmap_changed = 0;
}
/*
* Write the network map from memory back to the configuration file.
*/
void write_network_map(void) {
char *serialized_map = NULL;
NetMap *nmptr;
if (netmap_changed) {
serialized_map = strdup("");
if (the_netmap != NULL) {
for (nmptr = the_netmap; nmptr != NULL; nmptr = nmptr->next) {
serialized_map = realloc(serialized_map,
(strlen(serialized_map)+SIZ) );
if (!IsEmptyStr(nmptr->nodename)) {
snprintf(&serialized_map[strlen(serialized_map)],
SIZ,
"%s|%ld|%s\n",
nmptr->nodename,
(long)nmptr->lastcontact,
nmptr->nexthop);
}
}
}
CtdlPutSysConfig(IGNETMAP, serialized_map);
free(serialized_map);
}
/* Now free the list */
while (the_netmap != NULL) {
nmptr = the_netmap->next;
free(the_netmap);
the_netmap = nmptr;
}
netmap_changed = 0;
}
/*
* Check the network map and determine whether the supplied node name is
* valid. If it is not a neighbor node, supply the name of a neighbor node
* which is the next hop. If it *is* a neighbor node, we also fill in the
* shared secret.
*/
int is_valid_node(char *nexthop, char *secret, char *node) {
int i;
char linebuf[SIZ];
char buf[SIZ];
int retval;
NetMap *nmptr;
if (node == NULL) {
return(-1);
}
/*
* First try the neighbor nodes
*/
if (working_ignetcfg == NULL) {
CtdlLogPrintf(CTDL_ERR, "working_ignetcfg is NULL!\n");
if (nexthop != NULL) {
strcpy(nexthop, "");
}
return(-1);
}
retval = (-1);
if (nexthop != NULL) {
strcpy(nexthop, "");
}
/* Use the string tokenizer to grab one line at a time */
for (i=0; i<num_tokens(working_ignetcfg, '\n'); ++i) {
extract_token(linebuf, working_ignetcfg, i, '\n', sizeof linebuf);
extract_token(buf, linebuf, 0, '|', sizeof buf);
if (!strcasecmp(buf, node)) {
if (nexthop != NULL) {
strcpy(nexthop, "");
}
if (secret != NULL) {
extract_token(secret, linebuf, 1, '|', 256);
}
retval = 0;
}
}
if (retval == 0) {
return(retval); /* yup, it's a direct neighbor */
}
/*
* If we get to this point we have to see if we know the next hop
*/
if (the_netmap != NULL) {
for (nmptr = the_netmap; nmptr != NULL; nmptr = nmptr->next) {
if (!strcasecmp(nmptr->nodename, node)) {
if (nexthop != NULL) {
strcpy(nexthop, nmptr->nexthop);
}
return(0);
}
}
}
/*
* If we get to this point, the supplied node name is bogus.
*/
CtdlLogPrintf(CTDL_ERR, "Invalid node name <%s>\n", node);
return(-1);
}
void cmd_gnet(char *argbuf) {
char filename[PATH_MAX];
char buf[SIZ];
FILE *fp;
if ( (CC->room.QRflags & QR_MAILBOX) && (CC->user.usernum == atol(CC->room.QRname)) ) {
/* users can edit the netconfigs for their own mailbox rooms */
}
else if (CtdlAccessCheck(ac_room_aide)) return;
assoc_file_name(filename, sizeof filename, &CC->room, ctdl_netcfg_dir);
cprintf("%d Network settings for room #%ld <%s>\n",
LISTING_FOLLOWS,
CC->room.QRnumber, CC->room.QRname);
fp = fopen(filename, "r");
if (fp != NULL) {
while (fgets(buf, sizeof buf, fp) != NULL) {
buf[strlen(buf)-1] = 0;
cprintf("%s\n", buf);
}
fclose(fp);
}
cprintf("000\n");
}
void cmd_snet(char *argbuf) {
char tempfilename[PATH_MAX];
char filename[PATH_MAX];
char buf[SIZ];
FILE *fp, *newfp;
unbuffer_output();
if ( (CC->room.QRflags & QR_MAILBOX) && (CC->user.usernum == atol(CC->room.QRname)) ) {
/* users can edit the netconfigs for their own mailbox rooms */
}
else if (CtdlAccessCheck(ac_room_aide)) return;
CtdlMakeTempFileName(tempfilename, sizeof tempfilename);
assoc_file_name(filename, sizeof filename, &CC->room, ctdl_netcfg_dir);
fp = fopen(tempfilename, "w");
if (fp == NULL) {
cprintf("%d Cannot open %s: %s\n",
ERROR + INTERNAL_ERROR,
tempfilename,
strerror(errno));
}
cprintf("%d %s\n", SEND_LISTING, tempfilename);
while (client_getln(buf, sizeof buf) >= 0 && strcmp(buf, "000")) {
fprintf(fp, "%s\n", buf);
}
fclose(fp);
/* Now copy the temp file to its permanent location.
* (We copy instead of link because they may be on different filesystems)
*/
begin_critical_section(S_NETCONFIGS);
fp = fopen(tempfilename, "r");
if (fp != NULL) {
newfp = fopen(filename, "w");
if (newfp != NULL) {
while (fgets(buf, sizeof buf, fp) != NULL) {
fprintf(newfp, "%s", buf);
}
fclose(newfp);
}
fclose(fp);
}
end_critical_section(S_NETCONFIGS);
unlink(tempfilename);
}
/*
* Deliver digest messages
*/
void network_deliver_digest(SpoolControl *sc) {
char buf[SIZ];
int i;
struct CtdlMessage *msg = NULL;
long msglen;
char *recps = NULL;
size_t recps_len = SIZ;
size_t siz;
struct recptypes *valid;
namelist *nptr;
char bounce_to[256];
if (sc->num_msgs_spooled < 1) {
fclose(sc->digestfp);
sc->digestfp = NULL;
return;
}
msg = malloc(sizeof(struct CtdlMessage));
memset(msg, 0, sizeof(struct CtdlMessage));
msg->cm_magic = CTDLMESSAGE_MAGIC;
msg->cm_format_type = FMT_RFC822;
msg->cm_anon_type = MES_NORMAL;
sprintf(buf, "%ld", time(NULL));
msg->cm_fields['T'] = strdup(buf);
msg->cm_fields['A'] = strdup(CC->room.QRname);
snprintf(buf, sizeof buf, "[%s]", CC->room.QRname);
msg->cm_fields['U'] = strdup(buf);
sprintf(buf, "room_%s@%s", CC->room.QRname, config.c_fqdn);
for (i=0; buf[i]; ++i) {
if (isspace(buf[i])) buf[i]='_';
buf[i] = tolower(buf[i]);
}
msg->cm_fields['F'] = strdup(buf);
msg->cm_fields['R'] = strdup(buf);
/* Set the 'List-ID' header */
msg->cm_fields['L'] = malloc(1024);
snprintf(msg->cm_fields['L'], 1024,
"%s <%ld.list-id.%s>",
CC->room.QRname,
CC->room.QRnumber,
config.c_fqdn
);
/*
* Go fetch the contents of the digest
*/
fseek(sc->digestfp, 0L, SEEK_END);
msglen = ftell(sc->digestfp);
msg->cm_fields['M'] = malloc(msglen + 1);
fseek(sc->digestfp, 0L, SEEK_SET);
siz = fread(msg->cm_fields['M'], (size_t)msglen, 1, sc->digestfp);
msg->cm_fields['M'][msglen] = '\0';
fclose(sc->digestfp);
sc->digestfp = NULL;
/* Now generate the delivery instructions */
/*
* Figure out how big a buffer we need to allocate
*/
for (nptr = sc->digestrecps; nptr != NULL; nptr = nptr->next) {
recps_len = recps_len + strlen(nptr->name) + 2;
}
recps = malloc(recps_len);
if (recps == NULL) {
CtdlLogPrintf(CTDL_EMERG, "Cannot allocate %ld bytes for recps...\n", (long)recps_len);
abort();
}
strcpy(recps, "");
/* Each recipient */
for (nptr = sc->digestrecps; nptr != NULL; nptr = nptr->next) {
if (nptr != sc->digestrecps) {
strcat(recps, ",");
}
strcat(recps, nptr->name);
}
/* Where do we want bounces and other noise to be heard? Surely not the list members! */
snprintf(bounce_to, sizeof bounce_to, "room_aide@%s", config.c_fqdn);
/* Now submit the message */
valid = validate_recipients(recps, NULL, 0);
free(recps);
if (valid != NULL) {
valid->bounce_to = strdup(bounce_to);
valid->envelope_from = strdup(bounce_to);
CtdlSubmitMsg(msg, valid, NULL, 0);
}
CtdlFreeMessage(msg);
free_recipients(valid);
}
/*
* Deliver list messages to everyone on the list ... efficiently
*/
void network_deliver_list(struct CtdlMessage *msg, SpoolControl *sc) {
char *recps = NULL;
size_t recps_len = SIZ;
struct recptypes *valid;
namelist *nptr;
char bounce_to[256];
/* Don't do this if there were no recipients! */
if (sc->listrecps == NULL) return;
/* Now generate the delivery instructions */
/*
* Figure out how big a buffer we need to allocate
*/
for (nptr = sc->listrecps; nptr != NULL; nptr = nptr->next) {
recps_len = recps_len + strlen(nptr->name) + 2;
}
recps = malloc(recps_len);
if (recps == NULL) {
CtdlLogPrintf(CTDL_EMERG, "Cannot allocate %ld bytes for recps...\n", (long)recps_len);
abort();
}
strcpy(recps, "");
/* Each recipient */
for (nptr = sc->listrecps; nptr != NULL; nptr = nptr->next) {
if (nptr != sc->listrecps) {
strcat(recps, ",");
}
strcat(recps, nptr->name);
}
/* Where do we want bounces and other noise to be heard? Surely not the list members! */
snprintf(bounce_to, sizeof bounce_to, "room_aide@%s", config.c_fqdn);
/* Now submit the message */
valid = validate_recipients(recps, NULL, 0);
free(recps);
if (valid != NULL) {
valid->bounce_to = strdup(bounce_to);
valid->envelope_from = strdup(bounce_to);
CtdlSubmitMsg(msg, valid, NULL, 0);
free_recipients(valid);
}
/* Do not call CtdlFreeMessage(msg) here; the caller will free it. */
}
/*
* Spools out one message from the list.
*/
void network_spool_msg(long msgnum, void *userdata) {
SpoolControl *sc;
int i;
char *newpath = NULL;
size_t instr_len = SIZ;
struct CtdlMessage *msg = NULL;
namelist *nptr;
maplist *mptr;
struct ser_ret sermsg;
FILE *fp;
char filename[PATH_MAX];
char buf[SIZ];
int bang = 0;
int send = 1;
int delete_after_send = 0; /* Set to 1 to delete after spooling */
int ok_to_participate = 0;
struct recptypes *valid;
sc = (SpoolControl *)userdata;
/*
* Process mailing list recipients
*/
instr_len = SIZ;
if (sc->listrecps != NULL) {
/* Fetch the message. We're going to need to modify it
* in order to insert the [list name] in it, etc.
*/
msg = CtdlFetchMessage(msgnum, 1);
if (msg != NULL) {
if (msg->cm_fields['V'] == NULL){
/* local message, no enVelope */
StrBuf *Buf;
Buf = NewStrBuf();
StrBufAppendBufPlain(Buf, msg->cm_fields['O'], -1, 0);
StrBufAppendBufPlain(Buf, HKEY("@"), 0);
StrBufAppendBufPlain(Buf, config.c_fqdn, -1, 0);
msg->cm_fields['K'] = SmashStrBuf(&Buf);
}
else {
msg->cm_fields['K'] = strdup (msg->cm_fields['V']);
}
/* Set the 'List-ID' header */
if (msg->cm_fields['L'] != NULL) {
free(msg->cm_fields['L']);
}
msg->cm_fields['L'] = malloc(1024);
snprintf(msg->cm_fields['L'], 1024,
"%s <%ld.list-id.%s>",
CC->room.QRname,
CC->room.QRnumber,
config.c_fqdn
);
/* Prepend "[List name]" to the subject */
if (msg->cm_fields['U'] == NULL) {
msg->cm_fields['U'] = strdup("(no subject)");
}
snprintf(buf, sizeof buf, "[%s] %s", CC->room.QRname, msg->cm_fields['U']);
free(msg->cm_fields['U']);
msg->cm_fields['U'] = strdup(buf);
/* Set the recipient of the list message to the
* email address of the room itself.
* FIXME ... I want to be able to pick any address
*/
if (msg->cm_fields['R'] != NULL) {
free(msg->cm_fields['R']);
}
msg->cm_fields['R'] = malloc(256);
snprintf(msg->cm_fields['R'], 256,
"room_%s@%s", CC->room.QRname,
config.c_fqdn);
for (i=0; msg->cm_fields['R'][i]; ++i) {
if (isspace(msg->cm_fields['R'][i])) {
msg->cm_fields['R'][i] = '_';
}
}
/* Handle delivery */
network_deliver_list(msg, sc);
CtdlFreeMessage(msg);
}
}
/*
* Process digest recipients
*/
if ((sc->digestrecps != NULL) && (sc->digestfp != NULL)) {
msg = CtdlFetchMessage(msgnum, 1);
if (msg != NULL) {
fprintf(sc->digestfp, " -----------------------------------"
"------------------------------------"
"-------\n");
fprintf(sc->digestfp, "From: ");
if (msg->cm_fields['A'] != NULL) {
fprintf(sc->digestfp, "%s ", msg->cm_fields['A']);
}
if (msg->cm_fields['F'] != NULL) {
fprintf(sc->digestfp, "<%s> ", msg->cm_fields['F']);
}
else if (msg->cm_fields['N'] != NULL) {
fprintf(sc->digestfp, "@%s ", msg->cm_fields['N']);
}
fprintf(sc->digestfp, "\n");
if (msg->cm_fields['U'] != NULL) {
fprintf(sc->digestfp, "Subject: %s\n", msg->cm_fields['U']);
}
CC->redirect_buffer = NewStrBufPlain(NULL, SIZ);
safestrncpy(CC->preferred_formats, "text/plain", sizeof CC->preferred_formats);
CtdlOutputPreLoadedMsg(msg, MT_CITADEL, HEADERS_NONE, 0, 0, 0);
StrBufTrim(CC->redirect_buffer);
fwrite(HKEY("\n"), 1, sc->digestfp);
fwrite(SKEY(CC->redirect_buffer), 1, sc->digestfp);
fwrite(HKEY("\n"), 1, sc->digestfp);
FreeStrBuf(&CC->redirect_buffer);
sc->num_msgs_spooled += 1;
free(msg);
}
}
/*
* Process client-side list participations for this room
*/
instr_len = SIZ;
if (sc->participates != NULL) {
msg = CtdlFetchMessage(msgnum, 1);
if (msg != NULL) {
/* Only send messages which originated on our own Citadel
* network, otherwise we'll end up sending the remote
* mailing list's messages back to it, which is rude...
*/
ok_to_participate = 0;
if (msg->cm_fields['N'] != NULL) {
if (!strcasecmp(msg->cm_fields['N'], config.c_nodename)) {
ok_to_participate = 1;
}
if (is_valid_node(NULL, NULL, msg->cm_fields['N']) == 0) {
ok_to_participate = 1;
}
}
if (ok_to_participate) {
if (msg->cm_fields['F'] != NULL) {
free(msg->cm_fields['F']);
}
msg->cm_fields['F'] = malloc(SIZ);
/* Replace the Internet email address of the actual
* author with the email address of the room itself,
* so the remote listserv doesn't reject us.
* FIXME ... I want to be able to pick any address
*/
snprintf(msg->cm_fields['F'], SIZ,
"room_%s@%s", CC->room.QRname,
config.c_fqdn);
for (i=0; msg->cm_fields['F'][i]; ++i) {
if (isspace(msg->cm_fields['F'][i])) {
msg->cm_fields['F'][i] = '_';
}
}
/*
* Figure out how big a buffer we need to allocate
*/
for (nptr = sc->participates; nptr != NULL; nptr = nptr->next) {
if (msg->cm_fields['R'] == NULL) {
free(msg->cm_fields['R']);
}
msg->cm_fields['R'] = strdup(nptr->name);
valid = validate_recipients(nptr->name, NULL, 0);
CtdlSubmitMsg(msg, valid, "", 0);
free_recipients(valid);
}
}
CtdlFreeMessage(msg);
}
}
/*
* Process IGnet push shares
*/
msg = CtdlFetchMessage(msgnum, 1);
if (msg != NULL) {
size_t newpath_len;
/* Prepend our node name to the Path field whenever
* sending a message to another IGnet node
*/
if (msg->cm_fields['P'] == NULL) {
msg->cm_fields['P'] = strdup("username");
}
newpath_len = strlen(msg->cm_fields['P']) +
strlen(config.c_nodename) + 2;
newpath = malloc(newpath_len);
snprintf(newpath, newpath_len, "%s!%s",
config.c_nodename, msg->cm_fields['P']);
free(msg->cm_fields['P']);
msg->cm_fields['P'] = newpath;
/*
* Determine if this message is set to be deleted
* after sending out on the network
*/
if (msg->cm_fields['S'] != NULL) {
if (!strcasecmp(msg->cm_fields['S'], "CANCEL")) {
delete_after_send = 1;
}
}
/* Now send it to every node */
if (sc->ignet_push_shares != NULL)
for (mptr = sc->ignet_push_shares; mptr != NULL;
mptr = mptr->next) {
send = 1;
/* Check for valid node name */
if (is_valid_node(NULL, NULL, mptr->remote_nodename) != 0) {
CtdlLogPrintf(CTDL_ERR, "Invalid node <%s>\n", mptr->remote_nodename);
send = 0;
}
/* Check for split horizon */
CtdlLogPrintf(CTDL_DEBUG, "Path is %s\n", msg->cm_fields['P']);
bang = num_tokens(msg->cm_fields['P'], '!');
if (bang > 1) for (i=0; i<(bang-1); ++i) {
extract_token(buf, msg->cm_fields['P'], i, '!', sizeof buf);
CtdlLogPrintf(CTDL_DEBUG, "Compare <%s> to <%s>\n",
buf, mptr->remote_nodename) ;
if (!strcasecmp(buf, mptr->remote_nodename)) {
send = 0;
CtdlLogPrintf(CTDL_DEBUG, "Not sending to %s\n",
mptr->remote_nodename);
}
else {
CtdlLogPrintf(CTDL_DEBUG, "Sending to %s\n", mptr->remote_nodename);
}
}
/* Send the message */
if (send == 1) {
/*
* Force the message to appear in the correct room
* on the far end by setting the C field correctly
*/
if (msg->cm_fields['C'] != NULL) {
free(msg->cm_fields['C']);
}
if (!IsEmptyStr(mptr->remote_roomname)) {
msg->cm_fields['C'] = strdup(mptr->remote_roomname);
}
else {
msg->cm_fields['C'] = strdup(CC->room.QRname);
}
/* serialize it for transmission */
serialize_message(&sermsg, msg);
if (sermsg.len > 0) {
/* write it to a spool file */
snprintf(filename, sizeof filename,"%s/%s@%lx%x",
ctdl_netout_dir,
mptr->remote_nodename,
time(NULL),
rand()
);
CtdlLogPrintf(CTDL_DEBUG, "Appending to %s\n", filename);
fp = fopen(filename, "ab");
if (fp != NULL) {
fwrite(sermsg.ser,
sermsg.len, 1, fp);
fclose(fp);
}
else {
CtdlLogPrintf(CTDL_ERR, "%s: %s\n", filename, strerror(errno));
}
/* free the serialized version */
free(sermsg.ser);
}
}
}
CtdlFreeMessage(msg);
}
/* update lastsent */
sc->lastsent = msgnum;
/* Delete this message if delete-after-send is set */
if (delete_after_send) {
CtdlDeleteMessages(CC->room.QRname, &msgnum, 1, "");
}
}
int read_spoolcontrol_file(SpoolControl **scc, char *filename)
{
FILE *fp;
char instr[SIZ];
char buf[SIZ];
char nodename[256];
char roomname[ROOMNAMELEN];
size_t miscsize = 0;
size_t linesize = 0;
int skipthisline = 0;
namelist *nptr = NULL;
maplist *mptr = NULL;
SpoolControl *sc;
fp = fopen(filename, "r");
if (fp == NULL) {
return 0;
}
sc = malloc(sizeof(SpoolControl));
memset(sc, 0, sizeof(SpoolControl));
*scc = sc;
while (fgets(buf, sizeof buf, fp) != NULL) {
buf[strlen(buf)-1] = 0;
extract_token(instr, buf, 0, '|', sizeof instr);
if (!strcasecmp(instr, strof(lastsent))) {
sc->lastsent = extract_long(buf, 1);
}
else if (!strcasecmp(instr, strof(listrecp))) {
nptr = (namelist *)
malloc(sizeof(namelist));
nptr->next = sc->listrecps;
extract_token(nptr->name, buf, 1, '|', sizeof nptr->name);
sc->listrecps = nptr;
}
else if (!strcasecmp(instr, strof(participate))) {
nptr = (namelist *)
malloc(sizeof(namelist));
nptr->next = sc->participates;
extract_token(nptr->name, buf, 1, '|', sizeof nptr->name);
sc->participates = nptr;
}
else if (!strcasecmp(instr, strof(digestrecp))) {
nptr = (namelist *)
malloc(sizeof(namelist));
nptr->next = sc->digestrecps;
extract_token(nptr->name, buf, 1, '|', sizeof nptr->name);
sc->digestrecps = nptr;
}
else if (!strcasecmp(instr, strof(ignet_push_share))) {
extract_token(nodename, buf, 1, '|', sizeof nodename);
extract_token(roomname, buf, 2, '|', sizeof roomname);
mptr = (maplist *) malloc(sizeof(maplist));
mptr->next = sc->ignet_push_shares;
strcpy(mptr->remote_nodename, nodename);
strcpy(mptr->remote_roomname, roomname);
sc->ignet_push_shares = mptr;
}
else {
/* Preserve 'other' lines ... *unless* they happen to
* be subscribe/unsubscribe pendings with expired
* timestamps.
*/
skipthisline = 0;
if (!strncasecmp(buf, strof(subpending)"|", 11)) {
if (time(NULL) - extract_long(buf, 4) > EXP) {
skipthisline = 1;
}
}
if (!strncasecmp(buf, strof(unsubpending)"|", 13)) {
if (time(NULL) - extract_long(buf, 3) > EXP) {
skipthisline = 1;
}
}
if (skipthisline == 0) {
linesize = strlen(buf);
sc->misc = realloc(sc->misc,
(miscsize + linesize + 2) );
sprintf(&sc->misc[miscsize], "%s\n", buf);
miscsize = miscsize + linesize + 1;
}
}
}
fclose(fp);
return 1;
}
void free_spoolcontrol_struct(SpoolControl **scc)
{
SpoolControl *sc;
namelist *nptr = NULL;
maplist *mptr = NULL;
sc = *scc;
while (sc->listrecps != NULL) {
nptr = sc->listrecps->next;
free(sc->listrecps);
sc->listrecps = nptr;
}
/* Do the same for digestrecps */
while (sc->digestrecps != NULL) {
nptr = sc->digestrecps->next;
free(sc->digestrecps);
sc->digestrecps = nptr;
}
/* Do the same for participates */
while (sc->participates != NULL) {
nptr = sc->participates->next;
free(sc->participates);
sc->participates = nptr;
}
while (sc->ignet_push_shares != NULL) {
mptr = sc->ignet_push_shares->next;
free(sc->ignet_push_shares);
sc->ignet_push_shares = mptr;
}
free(sc->misc);
free(sc);
*scc=NULL;
}
int writenfree_spoolcontrol_file(SpoolControl **scc, char *filename)
{
FILE *fp;
SpoolControl *sc;
namelist *nptr = NULL;
maplist *mptr = NULL;
sc = *scc;
fp = fopen(filename, "w");
if (fp == NULL) {
CtdlLogPrintf(CTDL_CRIT, "ERROR: cannot open %s: %s\n",
filename, strerror(errno));
free_spoolcontrol_struct(scc);
}
else {
fprintf(fp, "lastsent|%ld\n", sc->lastsent);
/* Write out the listrecps while freeing from memory at the
* same time. Am I clever or what? :)
*/
while (sc->listrecps != NULL) {
fprintf(fp, "listrecp|%s\n", sc->listrecps->name);
nptr = sc->listrecps->next;
free(sc->listrecps);
sc->listrecps = nptr;
}
/* Do the same for digestrecps */
while (sc->digestrecps != NULL) {
fprintf(fp, "digestrecp|%s\n", sc->digestrecps->name);
nptr = sc->digestrecps->next;
free(sc->digestrecps);
sc->digestrecps = nptr;
}
/* Do the same for participates */
while (sc->participates != NULL) {
fprintf(fp, "participate|%s\n", sc->participates->name);
nptr = sc->participates->next;
free(sc->participates);
sc->participates = nptr;
}
while (sc->ignet_push_shares != NULL) {
fprintf(fp, "ignet_push_share|%s", sc->ignet_push_shares->remote_nodename);
if (!IsEmptyStr(sc->ignet_push_shares->remote_roomname)) {
fprintf(fp, "|%s", sc->ignet_push_shares->remote_roomname);
}
fprintf(fp, "\n");
mptr = sc->ignet_push_shares->next;
free(sc->ignet_push_shares);
sc->ignet_push_shares = mptr;
}
if (sc->misc != NULL) {
fwrite(sc->misc, strlen(sc->misc), 1, fp);
}
free(sc->misc);
fclose(fp);
free(sc);
*scc=NULL;
}
return 1;
}
int is_recipient(SpoolControl *sc, const char *Name)
{
namelist *nptr;
size_t len;
len = strlen(Name);
nptr = sc->listrecps;
while (nptr != NULL) {
if (strncmp(Name, nptr->name, len)==0)
return 1;
nptr = nptr->next;
}
/* Do the same for digestrecps */
nptr = sc->digestrecps;
while (nptr != NULL) {
if (strncmp(Name, nptr->name, len)==0)
return 1;
nptr = nptr->next;
}
/* Do the same for participates */
nptr = sc->participates;
while (nptr != NULL) {
if (strncmp(Name, nptr->name, len)==0)
return 1;
nptr = nptr->next;
}
return 0;
}
/*
* Batch up and send all outbound traffic from the current room
*/
void network_spoolout_room(char *room_to_spool) {
char buf[SIZ];
char filename[PATH_MAX];
SpoolControl *sc;
int i;
/*
* If the room doesn't exist, don't try to perform its networking tasks.
* Normally this should never happen, but once in a while maybe a room gets
* queued for networking and then deleted before it can happen.
*/
if (CtdlGetRoom(&CC->room, room_to_spool) != 0) {
CtdlLogPrintf(CTDL_CRIT, "ERROR: cannot load <%s>\n", room_to_spool);
return;
}
assoc_file_name(filename, sizeof filename, &CC->room, ctdl_netcfg_dir);
begin_critical_section(S_NETCONFIGS);
/* Only do net processing for rooms that have netconfigs */
if (!read_spoolcontrol_file(&sc, filename))
{
end_critical_section(S_NETCONFIGS);
return;
}
CtdlLogPrintf(CTDL_INFO, "Networking started for <%s>\n", CC->room.QRname);
/* If there are digest recipients, we have to build a digest */
if (sc->digestrecps != NULL) {
sc->digestfp = tmpfile();
fprintf(sc->digestfp, "Content-type: text/plain\n\n");
}
/* Do something useful */
CtdlForEachMessage(MSGS_GT, sc->lastsent, NULL, NULL, NULL,
network_spool_msg, sc);
/* If we wrote a digest, deliver it and then close it */
snprintf(buf, sizeof buf, "room_%s@%s",
CC->room.QRname, config.c_fqdn);
for (i=0; buf[i]; ++i) {
buf[i] = tolower(buf[i]);
if (isspace(buf[i])) buf[i] = '_';
}
if (sc->digestfp != NULL) {
fprintf(sc->digestfp, " -----------------------------------"
"------------------------------------"
"-------\n"
"You are subscribed to the '%s' "
"list.\n"
"To post to the list: %s\n",
CC->room.QRname, buf
);
network_deliver_digest(sc); /* deliver and close */
}
/* Now rewrite the config file */
writenfree_spoolcontrol_file (&sc, filename);
end_critical_section(S_NETCONFIGS);
}
/*
* Send the *entire* contents of the current room to one specific network node,
* ignoring anything we know about which messages have already undergone
* network processing. This can be used to bring a new node into sync.
*/
int network_sync_to(char *target_node) {
SpoolControl sc;
int num_spooled = 0;
int found_node = 0;
char buf[256];
char sc_type[256];
char sc_node[256];
char sc_room[256];
char filename[PATH_MAX];
FILE *fp;
/* Grab the configuration line we're looking for */
assoc_file_name(filename, sizeof filename, &CC->room, ctdl_netcfg_dir);
begin_critical_section(S_NETCONFIGS);
fp = fopen(filename, "r");
if (fp == NULL) {
end_critical_section(S_NETCONFIGS);
return(-1);
}
while (fgets(buf, sizeof buf, fp) != NULL) {
buf[strlen(buf)-1] = 0;
extract_token(sc_type, buf, 0, '|', sizeof sc_type);
extract_token(sc_node, buf, 1, '|', sizeof sc_node);
extract_token(sc_room, buf, 2, '|', sizeof sc_room);
if ( (!strcasecmp(sc_type, "ignet_push_share"))
&& (!strcasecmp(sc_node, target_node)) ) {
found_node = 1;
/* Concise syntax because we don't need a full linked-list */
memset(&sc, 0, sizeof(SpoolControl));
sc.ignet_push_shares = (maplist *)
malloc(sizeof(maplist));
sc.ignet_push_shares->next = NULL;
safestrncpy(sc.ignet_push_shares->remote_nodename,
sc_node,
sizeof sc.ignet_push_shares->remote_nodename);
safestrncpy(sc.ignet_push_shares->remote_roomname,
sc_room,
sizeof sc.ignet_push_shares->remote_roomname);
}
}
fclose(fp);
end_critical_section(S_NETCONFIGS);
if (!found_node) return(-1);
/* Send ALL messages */
num_spooled = CtdlForEachMessage(MSGS_ALL, 0L, NULL, NULL, NULL,
network_spool_msg, &sc);
/* Concise cleanup because we know there's only one node in the sc */
free(sc.ignet_push_shares);
CtdlLogPrintf(CTDL_NOTICE, "Synchronized %d messages to <%s>\n",
num_spooled, target_node);
return(num_spooled);
}
/*
* Implements the NSYN command
*/
void cmd_nsyn(char *argbuf) {
int num_spooled;
char target_node[256];
if (CtdlAccessCheck(ac_aide)) return;
extract_token(target_node, argbuf, 0, '|', sizeof target_node);
num_spooled = network_sync_to(target_node);
if (num_spooled >= 0) {
cprintf("%d Spooled %d messages.\n", CIT_OK, num_spooled);
}
else {
cprintf("%d No such room/node share exists.\n",
ERROR + ROOM_NOT_FOUND);
}
}
/*
* Batch up and send all outbound traffic from the current room
*/
void network_queue_room(struct ctdlroom *qrbuf, void *data) {
struct RoomProcList *ptr;
ptr = (struct RoomProcList *) malloc(sizeof (struct RoomProcList));
if (ptr == NULL) return;
safestrncpy(ptr->name, qrbuf->QRname, sizeof ptr->name);
begin_critical_section(S_RPLIST);
ptr->next = rplist;
rplist = ptr;
end_critical_section(S_RPLIST);
}
void destroy_network_queue_room(void)
{
struct RoomProcList *cur, *p;
NetMap *nmcur, *nmp;
cur = rplist;
begin_critical_section(S_RPLIST);
while (cur != NULL)
{
p = cur->next;
free (cur);
cur = p;
}
rplist = NULL;
end_critical_section(S_RPLIST);
nmcur = the_netmap;
while (nmcur != NULL)
{
nmp = nmcur->next;
free (nmcur);
nmcur = nmp;
}
the_netmap = NULL;
if (working_ignetcfg != NULL)
free (working_ignetcfg);
working_ignetcfg = NULL;
}
/*
* Learn topology from path fields
*/
void network_learn_topology(char *node, char *path) {
char nexthop[256];
NetMap *nmptr;
strcpy(nexthop, "");
if (num_tokens(path, '!') < 3) return;
for (nmptr = the_netmap; nmptr != NULL; nmptr = nmptr->next) {
if (!strcasecmp(nmptr->nodename, node)) {
extract_token(nmptr->nexthop, path, 0, '!', sizeof nmptr->nexthop);
nmptr->lastcontact = time(NULL);
++netmap_changed;
return;
}
}
/* If we got here then it's not in the map, so add it. */
nmptr = (NetMap *) malloc(sizeof (NetMap));
strcpy(nmptr->nodename, node);
nmptr->lastcontact = time(NULL);
extract_token(nmptr->nexthop, path, 0, '!', sizeof nmptr->nexthop);
nmptr->next = the_netmap;
the_netmap = nmptr;
++netmap_changed;
}
/*
* Bounce a message back to the sender
*/
void network_bounce(struct CtdlMessage *msg, char *reason) {
char *oldpath = NULL;
char buf[SIZ];
char bouncesource[SIZ];
char recipient[SIZ];
struct recptypes *valid = NULL;
char force_room[ROOMNAMELEN];
static int serialnum = 0;
size_t size;
CtdlLogPrintf(CTDL_DEBUG, "entering network_bounce()\n");
if (msg == NULL) return;
snprintf(bouncesource, sizeof bouncesource, "%s@%s", BOUNCESOURCE, config.c_nodename);
/*
* Give it a fresh message ID
*/
if (msg->cm_fields['I'] != NULL) {
free(msg->cm_fields['I']);
}
snprintf(buf, sizeof buf, "%ld.%04lx.%04x@%s",
(long)time(NULL), (long)getpid(), ++serialnum, config.c_fqdn);
msg->cm_fields['I'] = strdup(buf);
/*
* FIXME ... right now we're just sending a bounce; we really want to
* include the text of the bounced message.
*/
if (msg->cm_fields['M'] != NULL) {
free(msg->cm_fields['M']);
}
msg->cm_fields['M'] = strdup(reason);
msg->cm_format_type = 0;
/*
* Turn the message around
*/
if (msg->cm_fields['R'] == NULL) {
free(msg->cm_fields['R']);
}
if (msg->cm_fields['D'] == NULL) {
free(msg->cm_fields['D']);
}
snprintf(recipient, sizeof recipient, "%s@%s",
msg->cm_fields['A'], msg->cm_fields['N']);
if (msg->cm_fields['A'] == NULL) {
free(msg->cm_fields['A']);
}
if (msg->cm_fields['N'] == NULL) {
free(msg->cm_fields['N']);
}
if (msg->cm_fields['U'] == NULL) {
free(msg->cm_fields['U']);
}
msg->cm_fields['A'] = strdup(BOUNCESOURCE);
msg->cm_fields['N'] = strdup(config.c_nodename);
msg->cm_fields['U'] = strdup("Delivery Status Notification (Failure)");
/* prepend our node to the path */
if (msg->cm_fields['P'] != NULL) {
oldpath = msg->cm_fields['P'];
msg->cm_fields['P'] = NULL;
}
else {
oldpath = strdup("unknown_user");
}
size = strlen(oldpath) + SIZ;
msg->cm_fields['P'] = malloc(size);
snprintf(msg->cm_fields['P'], size, "%s!%s", config.c_nodename, oldpath);
free(oldpath);
/* Now submit the message */
valid = validate_recipients(recipient, NULL, 0);
if (valid != NULL) if (valid->num_error != 0) {
free_recipients(valid);
valid = NULL;
}
if ( (valid == NULL) || (!strcasecmp(recipient, bouncesource)) ) {
strcpy(force_room, config.c_aideroom);
}
else {
strcpy(force_room, "");
}
if ( (valid == NULL) && IsEmptyStr(force_room) ) {
strcpy(force_room, config.c_aideroom);
}
CtdlSubmitMsg(msg, valid, force_room, 0);
/* Clean up */
if (valid != NULL) free_recipients(valid);
CtdlFreeMessage(msg);
CtdlLogPrintf(CTDL_DEBUG, "leaving network_bounce()\n");
}
/*
* Process a buffer containing a single message from a single file
* from the inbound queue
*/
void network_process_buffer(char *buffer, long size) {
struct CtdlMessage *msg = NULL;
long pos;
int field;
struct recptypes *recp = NULL;
char target_room[ROOMNAMELEN];
struct ser_ret sermsg;
char *oldpath = NULL;
char filename[PATH_MAX];
FILE *fp;
char nexthop[SIZ];
unsigned char firstbyte;
unsigned char lastbyte;
CtdlLogPrintf(CTDL_DEBUG, "network_process_buffer() processing %ld bytes\n", size);
/* Validate just a little bit. First byte should be FF and * last byte should be 00. */
firstbyte = buffer[0];
lastbyte = buffer[size-1];
if ( (firstbyte != 255) || (lastbyte != 0) ) {
CtdlLogPrintf(CTDL_ERR, "Corrupt message ignored. Length=%ld, firstbyte = %d, lastbyte = %d\n",
size, firstbyte, lastbyte);
return;
}
/* Set default target room to trash */
strcpy(target_room, TWITROOM);
/* Load the message into memory */
msg = (struct CtdlMessage *) malloc(sizeof(struct CtdlMessage));
memset(msg, 0, sizeof(struct CtdlMessage));
msg->cm_magic = CTDLMESSAGE_MAGIC;
msg->cm_anon_type = buffer[1];
msg->cm_format_type = buffer[2];
for (pos = 3; pos < size; ++pos) {
field = buffer[pos];
msg->cm_fields[field] = strdup(&buffer[pos+1]);
pos = pos + strlen(&buffer[(int)pos]);
}
/* Check for message routing */
if (msg->cm_fields['D'] != NULL) {
if (strcasecmp(msg->cm_fields['D'], config.c_nodename)) {
/* route the message */
strcpy(nexthop, "");
if (is_valid_node(nexthop, NULL, msg->cm_fields['D']) == 0) {
/* prepend our node to the path */
if (msg->cm_fields['P'] != NULL) {
oldpath = msg->cm_fields['P'];
msg->cm_fields['P'] = NULL;
}
else {
oldpath = strdup("unknown_user");
}
size = strlen(oldpath) + SIZ;
msg->cm_fields['P'] = malloc(size);
snprintf(msg->cm_fields['P'], size, "%s!%s",
config.c_nodename, oldpath);
free(oldpath);
/* serialize the message */
serialize_message(&sermsg, msg);
/* now send it */
if (IsEmptyStr(nexthop)) {
strcpy(nexthop, msg->cm_fields['D']);
}
snprintf(filename,
sizeof filename,
"%s/%s@%lx%x",
ctdl_netout_dir,
nexthop,
time(NULL),
rand()
);
CtdlLogPrintf(CTDL_DEBUG, "Appending to %s\n", filename);
fp = fopen(filename, "ab");
if (fp != NULL) {
fwrite(sermsg.ser, sermsg.len, 1, fp);
fclose(fp);
}
else {
CtdlLogPrintf(CTDL_ERR, "%s: %s\n", filename, strerror(errno));
}
free(sermsg.ser);
CtdlFreeMessage(msg);
return;
}
else { /* invalid destination node name */
network_bounce(msg,
"A message you sent could not be delivered due to an invalid destination node"
" name. Please check the address and try sending the message again.\n");
msg = NULL;
return;
}
}
}
/*
* Check to see if we already have a copy of this message, and
* abort its processing if so. (We used to post a warning to Aide>
* every time this happened, but the network is now so densely
* connected that it's inevitable.)
*/
if (network_usetable(msg) != 0) {
CtdlFreeMessage(msg);
return;
}
/* Learn network topology from the path */
if ((msg->cm_fields['N'] != NULL) && (msg->cm_fields['P'] != NULL)) {
network_learn_topology(msg->cm_fields['N'], msg->cm_fields['P']);
}
/* Is the sending node giving us a very persuasive suggestion about
* which room this message should be saved in? If so, go with that.
*/
if (msg->cm_fields['C'] != NULL) {
safestrncpy(target_room, msg->cm_fields['C'], sizeof target_room);
}
/* Otherwise, does it have a recipient? If so, validate it... */
else if (msg->cm_fields['R'] != NULL) {
recp = validate_recipients(msg->cm_fields['R'], NULL, 0);
if (recp != NULL) if (recp->num_error != 0) {
network_bounce(msg,
"A message you sent could not be delivered due to an invalid address.\n"
"Please check the address and try sending the message again.\n");
msg = NULL;
free_recipients(recp);
CtdlLogPrintf(CTDL_DEBUG, "Bouncing message due to invalid recipient address.\n");
return;
}
strcpy(target_room, ""); /* no target room if mail */
}
/* Our last shot at finding a home for this message is to see if
* it has the O field (Originating room) set.
*/
else if (msg->cm_fields['O'] != NULL) {
safestrncpy(target_room, msg->cm_fields['O'], sizeof target_room);
}
/* Strip out fields that are only relevant during transit */
if (msg->cm_fields['D'] != NULL) {
free(msg->cm_fields['D']);
msg->cm_fields['D'] = NULL;
}
if (msg->cm_fields['C'] != NULL) {
free(msg->cm_fields['C']);
msg->cm_fields['C'] = NULL;
}
/* save the message into a room */
if (PerformNetprocHooks(msg, target_room) == 0) {
msg->cm_flags = CM_SKIP_HOOKS;
CtdlSubmitMsg(msg, recp, target_room, 0);
}
CtdlFreeMessage(msg);
free_recipients(recp);
}
/*
* Process a single message from a single file from the inbound queue
*/
void network_process_message(FILE *fp, long msgstart, long msgend) {
long hold_pos;
long size;
char *buffer;
hold_pos = ftell(fp);
size = msgend - msgstart + 1;
buffer = malloc(size);
if (buffer != NULL) {
fseek(fp, msgstart, SEEK_SET);
if (fread(buffer, size, 1, fp) > 0) {
network_process_buffer(buffer, size);
}
free(buffer);
}
fseek(fp, hold_pos, SEEK_SET);
}
/*
* Process a single file from the inbound queue
*/
void network_process_file(char *filename) {
FILE *fp;
long msgstart = (-1L);
long msgend = (-1L);
long msgcur = 0L;
int ch;
fp = fopen(filename, "rb");
if (fp == NULL) {
CtdlLogPrintf(CTDL_CRIT, "Error opening %s: %s\n", filename, strerror(errno));
return;
}
fseek(fp, 0L, SEEK_END);
CtdlLogPrintf(CTDL_INFO, "network: processing %ld bytes from %s\n", ftell(fp), filename);
rewind(fp);
/* Look for messages in the data stream and break them out */
while (ch = getc(fp), ch >= 0) {
if (ch == 255) {
if (msgstart >= 0L) {
msgend = msgcur - 1;
network_process_message(fp, msgstart, msgend);
}
msgstart = msgcur;
}
++msgcur;
}
msgend = msgcur - 1;
if (msgstart >= 0L) {
network_process_message(fp, msgstart, msgend);
}
fclose(fp);
unlink(filename);
}
/*
* Process anything in the inbound queue
*/
void network_do_spoolin(void) {
DIR *dp;
struct dirent *d;
struct stat statbuf;
char filename[PATH_MAX];
static time_t last_spoolin_mtime = 0L;
/*
* Check the spoolin directory's modification time. If it hasn't
* been touched, we don't need to scan it.
*/
if (stat(ctdl_netin_dir, &statbuf)) return;
if (statbuf.st_mtime == last_spoolin_mtime) {
CtdlLogPrintf(CTDL_DEBUG, "network: nothing in inbound queue\n");
return;
}
last_spoolin_mtime = statbuf.st_mtime;
CtdlLogPrintf(CTDL_DEBUG, "network: processing inbound queue\n");
/*
* Ok, there's something interesting in there, so scan it.
*/
dp = opendir(ctdl_netin_dir);
if (dp == NULL) return;
while (d = readdir(dp), d != NULL) {
if ((strcmp(d->d_name, ".")) && (strcmp(d->d_name, ".."))) {
snprintf(filename,
sizeof filename,
"%s/%s",
ctdl_netin_dir,
d->d_name
);
network_process_file(filename);
}
}
closedir(dp);
}
/*
* Step 1: consolidate files in the outbound queue into one file per neighbor node
* Step 2: delete any files in the outbound queue that were for neighbors who no longer exist.
*/
void network_consolidate_spoolout(void) {
DIR *dp;
struct dirent *d;
char filename[PATH_MAX];
char cmd[PATH_MAX];
char nexthop[256];
int i;
char *ptr;
/* Step 1: consolidate files in the outbound queue into one file per neighbor node */
dp = opendir(ctdl_netout_dir);
if (dp == NULL) return;
while (d = readdir(dp), d != NULL) {
if (
(strcmp(d->d_name, "."))
&& (strcmp(d->d_name, ".."))
&& (strchr(d->d_name, '@') != NULL)
) {
safestrncpy(nexthop, d->d_name, sizeof nexthop);
ptr = strchr(nexthop, '@');
if (ptr) *ptr = 0;
snprintf(filename,
sizeof filename,
"%s/%s",
ctdl_netout_dir,
d->d_name
);
CtdlLogPrintf(CTDL_DEBUG, "Consolidate %s to %s\n", filename, nexthop);
if (network_talking_to(nexthop, NTT_CHECK)) {
CtdlLogPrintf(CTDL_DEBUG,
"Currently online with %s - skipping for now\n",
nexthop
);
}
else {
network_talking_to(nexthop, NTT_ADD);
snprintf(cmd, sizeof cmd, "/bin/cat %s >>%s/%s && /bin/rm -f %s",
filename,
ctdl_netout_dir, nexthop,
filename
);
system(cmd);
network_talking_to(nexthop, NTT_REMOVE);
}
}
}
closedir(dp);
/* Step 2: delete any files in the outbound queue that were for neighbors who no longer exist */
dp = opendir(ctdl_netout_dir);
if (dp == NULL) return;
while (d = readdir(dp), d != NULL) {
if (!strcmp(d->d_name, ".") || !strcmp(d->d_name, ".."))
continue;
ptr = strchr(d->d_name, '@');
if (d != NULL)
continue;
snprintf(filename,
sizeof filename,
"%s/%s",
ctdl_netout_dir,
d->d_name
);
strcpy(nexthop, "");
i = is_valid_node(nexthop, NULL, d->d_name);
if ( (i != 0) || !IsEmptyStr(nexthop) ) {
unlink(filename);
}
}
closedir(dp);
}
/*
* receive network spool from the remote system
*/
void receive_spool(int *sock, char *remote_nodename) {
long download_len = 0L;
long bytes_received = 0L;
char buf[SIZ];
static char pbuf[IGNET_PACKET_SIZE];
char tempfilename[PATH_MAX];
char permfilename[PATH_MAX];
long plen;
FILE *fp;
snprintf(tempfilename,
sizeof tempfilename,
"%s/%s.%lx%x",
ctdl_nettmp_dir,
remote_nodename,
time(NULL),
rand()
);
snprintf(permfilename,
sizeof permfilename,
"%s/%s.%lx%x",
ctdl_netin_dir,
remote_nodename,
time(NULL),
rand()
);
if (sock_puts(sock, "NDOP") < 0) return;
if (sock_getln(sock, buf, sizeof buf) < 0) return;
CtdlLogPrintf(CTDL_DEBUG, "<%s\n", buf);
if (buf[0] != '2') {
return;
}
download_len = extract_long(&buf[4], 0);
if (download_len>0) {
bytes_received = 0L;
fp = fopen(tempfilename, "w");
if (fp == NULL) {
CtdlLogPrintf(CTDL_CRIT, "cannot open download file locally: %s\n",
strerror(errno));
return;
}
CtdlLogPrintf(CTDL_DEBUG, "For this download we are expecting %d bytes\n", download_len);
while (bytes_received < download_len) {
/*
* If shutting down we can exit here and unlink the temp file.
* this shouldn't loose us any messages.
*/
if (CtdlThreadCheckStop())
{
fclose(fp);
unlink(tempfilename);
return;
}
snprintf(buf, sizeof buf, "READ %ld|%ld",
bytes_received,
((download_len - bytes_received > IGNET_PACKET_SIZE)
? IGNET_PACKET_SIZE : (download_len - bytes_received)));
if (sock_puts(sock, buf) < 0) {
fclose(fp);
unlink(tempfilename);
return;
}
if (sock_getln(sock, buf, sizeof buf) < 0) {
fclose(fp);
unlink(tempfilename);
return;
}
if (buf[0] == '6') {
plen = extract_long(&buf[4], 0);
if (sock_read(sock, pbuf, plen, 1) < 0) {
fclose(fp);
unlink(tempfilename);
return;
}
fwrite((char *) pbuf, plen, 1, fp);
bytes_received = bytes_received + plen;
}
}
fclose(fp);
}
/* Last chance for shutdown exit */
if (CtdlThreadCheckStop())
{
unlink(tempfilename);
return;
}
if (sock_puts(sock, "CLOS") < 0) {
unlink(tempfilename);
return;
}
/*
* From here on we must complete or messages will get lost
*/
if (sock_getln(sock, buf, sizeof buf) < 0) {
unlink(tempfilename);
return;
}
if (download_len > 0) {
CtdlLogPrintf(CTDL_NOTICE, "Received %ld octets from <%s>\n", download_len, remote_nodename);
}
CtdlLogPrintf(CTDL_DEBUG, "%s\n", buf);
/* Now move the temp file to its permanent location.
*/
if (link(tempfilename, permfilename) != 0) {
CtdlLogPrintf(CTDL_ALERT, "Could not link %s to %s: %s\n",
tempfilename, permfilename, strerror(errno)
);
}
unlink(tempfilename);
}
/*
* transmit network spool to the remote system
*/
void transmit_spool(int *sock, char *remote_nodename)
{
char buf[SIZ];
char pbuf[4096];
long plen;
long bytes_to_write, thisblock, bytes_written;
int fd;
char sfname[128];
if (sock_puts(sock, "NUOP") < 0) return;
if (sock_getln(sock, buf, sizeof buf) < 0) return;
CtdlLogPrintf(CTDL_DEBUG, "<%s\n", buf);
if (buf[0] != '2') {
return;
}
snprintf(sfname, sizeof sfname,
"%s/%s",
ctdl_netout_dir,
remote_nodename
);
fd = open(sfname, O_RDONLY);
if (fd < 0) {
if (errno != ENOENT) {
CtdlLogPrintf(CTDL_CRIT, "cannot open %s: %s\n", sfname, strerror(errno));
}
return;
}
bytes_written = 0;
while (plen = (long) read(fd, pbuf, IGNET_PACKET_SIZE), plen > 0L) {
bytes_to_write = plen;
while (bytes_to_write > 0L) {
/* Exit if shutting down */
if (CtdlThreadCheckStop())
{
close(fd);
return;
}
snprintf(buf, sizeof buf, "WRIT %ld", bytes_to_write);
if (sock_puts(sock, buf) < 0) {
close(fd);
return;
}
if (sock_getln(sock, buf, sizeof buf) < 0) {
close(fd);
return;
}
thisblock = atol(&buf[4]);
if (buf[0] == '7') {
if (sock_write(sock, pbuf, (int) thisblock) < 0) {
close(fd);
return;
}
bytes_to_write -= thisblock;
bytes_written += thisblock;
} else {
goto ABORTUPL;
}
}
}
ABORTUPL:
close(fd);
/* Last chance for shutdown exit */
if(CtdlThreadCheckStop())
return;
if (sock_puts(sock, "UCLS 1") < 0) return;
/*
* From here on we must complete or messages will get lost
*/
if (sock_getln(sock, buf, sizeof buf) < 0) return;
CtdlLogPrintf(CTDL_NOTICE, "Sent %ld octets to <%s>\n", bytes_written, remote_nodename);
CtdlLogPrintf(CTDL_DEBUG, "<%s\n", buf);
if (buf[0] == '2') {
CtdlLogPrintf(CTDL_DEBUG, "Removing <%s>\n", sfname);
unlink(sfname);
}
}
/*
* Poll one Citadel node (called by network_poll_other_citadel_nodes() below)
*/
void network_poll_node(char *node, char *secret, char *host, char *port) {
int sock;
char buf[SIZ];
char err_buf[SIZ];
char connected_to[SIZ];
CitContext *CCC=CC;
if (network_talking_to(node, NTT_CHECK)) return;
network_talking_to(node, NTT_ADD);
CtdlLogPrintf(CTDL_DEBUG, "network: polling <%s>\n", node);
CtdlLogPrintf(CTDL_NOTICE, "Connecting to <%s> at %s:%s\n", node, host, port);
sock = sock_connect(host, port, "tcp");
if (sock < 0) {
CtdlLogPrintf(CTDL_ERR, "Could not connect: %s\n", strerror(errno));
network_talking_to(node, NTT_REMOVE);
return;
}
CtdlLogPrintf(CTDL_DEBUG, "Connected!\n");
CCC->sReadBuf = NewStrBuf();
CCC->sMigrateBuf = NewStrBuf();
CCC->sPos = NULL;
/* Read the server greeting */
if (sock_getln(&sock, buf, sizeof buf) < 0) goto bail;
CtdlLogPrintf(CTDL_DEBUG, ">%s\n", buf);
/* Check that the remote is who we think it is and warn the Aide if not */
extract_token (connected_to, buf, 1, ' ', sizeof connected_to);
if (strcmp(connected_to, node))
{
snprintf(err_buf, sizeof(err_buf),
"Connected to node \"%s\" but I was expecting to connect to node \"%s\".",
connected_to, node
);
CtdlLogPrintf(CTDL_ERR, "%s\n", err_buf);
CtdlAideMessage(err_buf, "Network error");
}
else {
/* We're talking to the correct node. Now identify ourselves. */
snprintf(buf, sizeof buf, "NETP %s|%s", config.c_nodename, secret);
CtdlLogPrintf(CTDL_DEBUG, "<%s\n", buf);
if (sock_puts(&sock, buf) <0) goto bail;
if (sock_getln(&sock, buf, sizeof buf) < 0) goto bail;
CtdlLogPrintf(CTDL_DEBUG, ">%s\n", buf);
if (buf[0] != '2') {
goto bail;
}
/* At this point we are authenticated. */
if (!CtdlThreadCheckStop())
receive_spool(&sock, node);
if (!CtdlThreadCheckStop())
transmit_spool(&sock, node);
}
sock_puts(&sock, "QUIT");
bail:
FreeStrBuf(&CCC->sReadBuf);
FreeStrBuf(&CCC->sMigrateBuf);
if (sock != -1)
sock_close(sock);
network_talking_to(node, NTT_REMOVE);
}
/*
* Poll other Citadel nodes and transfer inbound/outbound network data.
* Set "full" to nonzero to force a poll of every node, or to zero to poll
* only nodes to which we have data to send.
*/
void network_poll_other_citadel_nodes(int full_poll) {
int i;
char linebuf[256];
char node[SIZ];
char host[256];
char port[256];
char secret[256];
int poll = 0;
char spoolfile[256];
if (working_ignetcfg == NULL) {
CtdlLogPrintf(CTDL_DEBUG, "network: no neighbor nodes are configured - not polling.\n");
return;
}
/* Use the string tokenizer to grab one line at a time */
for (i=0; i<num_tokens(working_ignetcfg, '\n'); ++i) {
if(CtdlThreadCheckStop())
return;
extract_token(linebuf, working_ignetcfg, i, '\n', sizeof linebuf);
extract_token(node, linebuf, 0, '|', sizeof node);
extract_token(secret, linebuf, 1, '|', sizeof secret);
extract_token(host, linebuf, 2, '|', sizeof host);
extract_token(port, linebuf, 3, '|', sizeof port);
if ( !IsEmptyStr(node) && !IsEmptyStr(secret)
&& !IsEmptyStr(host) && !IsEmptyStr(port)) {
poll = full_poll;
if (poll == 0) {
snprintf(spoolfile,
sizeof spoolfile,
"%s/%s",
ctdl_netout_dir,
node
);
if (access(spoolfile, R_OK) == 0) {
poll = 1;
}
}
if (poll) {
network_poll_node(node, secret, host, port);
}
}
}
}
/*
* It's ok if these directories already exist. Just fail silently.
*/
void create_spool_dirs(void) {
if ((mkdir(ctdl_spool_dir, 0700) != 0) && (errno != EEXIST))
CtdlLogPrintf(CTDL_EMERG, "unable to create directory [%s]: %s", ctdl_spool_dir, strerror(errno));
if (chown(ctdl_spool_dir, CTDLUID, (-1)) != 0)
CtdlLogPrintf(CTDL_EMERG, "unable to set the access rights for [%s]: %s", ctdl_spool_dir, strerror(errno));
if ((mkdir(ctdl_netin_dir, 0700) != 0) && (errno != EEXIST))
CtdlLogPrintf(CTDL_EMERG, "unable to create directory [%s]: %s", ctdl_netin_dir, strerror(errno));
if (chown(ctdl_netin_dir, CTDLUID, (-1)) != 0)
CtdlLogPrintf(CTDL_EMERG, "unable to set the access rights for [%s]: %s", ctdl_netin_dir, strerror(errno));
if ((mkdir(ctdl_nettmp_dir, 0700) != 0) && (errno != EEXIST))
CtdlLogPrintf(CTDL_EMERG, "unable to create directory [%s]: %s", ctdl_nettmp_dir, strerror(errno));
if (chown(ctdl_nettmp_dir, CTDLUID, (-1)) != 0)
CtdlLogPrintf(CTDL_EMERG, "unable to set the access rights for [%s]: %s", ctdl_nettmp_dir, strerror(errno));
if ((mkdir(ctdl_netout_dir, 0700) != 0) && (errno != EEXIST))
CtdlLogPrintf(CTDL_EMERG, "unable to create directory [%s]: %s", ctdl_netout_dir, strerror(errno));
if (chown(ctdl_netout_dir, CTDLUID, (-1)) != 0)
CtdlLogPrintf(CTDL_EMERG, "unable to set the access rights for [%s]: %s", ctdl_netout_dir, strerror(errno));
}
/*
* network_do_queue()
*
* Run through the rooms doing various types of network stuff.
*/
void *network_do_queue(void *args) {
static time_t last_run = 0L;
struct RoomProcList *ptr;
int full_processing = 1;
struct CitContext networkerCC;
/* Give the networker its own private CitContext */
CtdlFillSystemContext(&networkerCC, "network");
citthread_setspecific(MyConKey, (void *)&networkerCC );
/*
* Run the full set of processing tasks no more frequently
* than once every n seconds
*/
if ( (time(NULL) - last_run) < config.c_net_freq ) {
full_processing = 0;
CtdlLogPrintf(CTDL_DEBUG, "Network full processing in %ld seconds.\n",
config.c_net_freq - (time(NULL)- last_run)
);
}
/*
* This is a simple concurrency check to make sure only one queue run
* is done at a time. We could do this with a mutex, but since we
* don't really require extremely fine granularity here, we'll do it
* with a static variable instead.
*/
if (doing_queue) {
CtdlClearSystemContext();
return NULL;
}
doing_queue = 1;
/* Load the IGnet Configuration into memory */
load_working_ignetcfg();
/*
* Poll other Citadel nodes. Maybe. If "full_processing" is set
* then we poll everyone. Otherwise we only poll nodes we have stuff
* to send to.
*/
network_poll_other_citadel_nodes(full_processing);
/*
* Load the network map and filter list into memory.
*/
read_network_map();
filterlist = load_filter_list();
/*
* Go ahead and run the queue
*/
if (full_processing && !CtdlThreadCheckStop()) {
CtdlLogPrintf(CTDL_DEBUG, "network: loading outbound queue\n");
CtdlForEachRoom(network_queue_room, NULL);
}
if (rplist != NULL) {
CtdlLogPrintf(CTDL_DEBUG, "network: running outbound queue\n");
while (rplist != NULL && !CtdlThreadCheckStop()) {
char spoolroomname[ROOMNAMELEN];
safestrncpy(spoolroomname, rplist->name, sizeof spoolroomname);
begin_critical_section(S_RPLIST);
/* pop this record off the list */
ptr = rplist;
rplist = rplist->next;
free(ptr);
/* invalidate any duplicate entries to prevent double processing */
for (ptr=rplist; ptr!=NULL; ptr=ptr->next) {
if (!strcasecmp(ptr->name, spoolroomname)) {
ptr->name[0] = 0;
}
}
end_critical_section(S_RPLIST);
if (spoolroomname[0] != 0) {
network_spoolout_room(spoolroomname);
}
}
}
/* If there is anything in the inbound queue, process it */
if (!CtdlThreadCheckStop()) {
network_do_spoolin();
}
/* Save the network map back to disk */
write_network_map();
/* Free the filter list in memory */
free_filter_list(filterlist);
filterlist = NULL;
network_consolidate_spoolout();
CtdlLogPrintf(CTDL_DEBUG, "network: queue run completed\n");
if (full_processing) {
last_run = time(NULL);
}
doing_queue = 0;
/* Reschedule this task to happen again periodically, unless the thread system indicates
* that the server is shutting down.
*/
if (!CtdlThreadCheckStop()) {
CtdlThreadSchedule("IGnet Network", CTDLTHREAD_BIGSTACK,
network_do_queue, NULL, time(NULL) + 60
);
}
else {
CtdlLogPrintf(CTDL_DEBUG, "network: Task STOPPED.\n");
}
CtdlClearSystemContext();
return NULL;
}
/*
* cmd_netp() - authenticate to the server as another Citadel node polling
* for network traffic
*/
void cmd_netp(char *cmdbuf)
{
char node[256];
char pass[256];
int v;
char secret[256];
char nexthop[256];
char err_buf[SIZ];
/* Authenticate */
extract_token(node, cmdbuf, 0, '|', sizeof node);
extract_token(pass, cmdbuf, 1, '|', sizeof pass);
/* load the IGnet Configuration to check node validity */
load_working_ignetcfg();
v = is_valid_node(nexthop, secret, node);
if (v != 0) {
snprintf(err_buf, sizeof err_buf,
"An unknown Citadel server called \"%s\" attempted to connect from %s [%s].\n",
node, CC->cs_host, CC->cs_addr
);
CtdlLogPrintf(CTDL_WARNING, err_buf);
cprintf("%d authentication failed\n", ERROR + PASSWORD_REQUIRED);
CtdlAideMessage(err_buf, "IGNet Networking.");
return;
}
if (strcasecmp(pass, secret)) {
snprintf(err_buf, sizeof err_buf,
"A Citadel server at %s [%s] failed to authenticate as network node \"%s\".\n",
CC->cs_host, CC->cs_addr, node
);
CtdlLogPrintf(CTDL_WARNING, err_buf);
cprintf("%d authentication failed\n", ERROR + PASSWORD_REQUIRED);
CtdlAideMessage(err_buf, "IGNet Networking.");
return;
}
if (network_talking_to(node, NTT_CHECK)) {
CtdlLogPrintf(CTDL_WARNING, "Duplicate session for network node <%s>", node);
cprintf("%d Already talking to %s right now\n", ERROR + RESOURCE_BUSY, node);
return;
}
safestrncpy(CC->net_node, node, sizeof CC->net_node);
network_talking_to(node, NTT_ADD);
CtdlLogPrintf(CTDL_NOTICE, "Network node <%s> logged in from %s [%s]\n",
CC->net_node, CC->cs_host, CC->cs_addr
);
cprintf("%d authenticated as network node '%s'\n", CIT_OK, CC->net_node);
}
int network_room_handler (struct ctdlroom *room)
{
network_queue_room(room, NULL);
return 0;
}
/*
* Module entry point
*/
CTDL_MODULE_INIT(network)
{
if (!threading)
{
create_spool_dirs();
CtdlRegisterProtoHook(cmd_gnet, "GNET", "Get network config");
CtdlRegisterProtoHook(cmd_snet, "SNET", "Set network config");
CtdlRegisterProtoHook(cmd_netp, "NETP", "Identify as network poller");
CtdlRegisterProtoHook(cmd_nsyn, "NSYN", "Synchronize room to node");
CtdlRegisterRoomHook(network_room_handler);
CtdlRegisterCleanupHook(destroy_network_queue_room);
}
else
CtdlThreadSchedule("IGnet Network", CTDLTHREAD_BIGSTACK, network_do_queue, NULL, 0);
/* return our Subversion id for the Log */
return "$Id: serv_network.c 8675 2010-07-11 22:09:08Z dothebart $";
}
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