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magicka/utils/qwknet/qwkscan.c

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#include <stdio.h>
#include <string.h>
#include <dirent.h>
#include <limits.h>
#include <unistd.h>
#include <sys/stat.h>
#include <time.h>
#include <fts.h>
#include <errno.h>
#include "qwk.h"
#include "../../deps/jamlib/jam.h"
#include "../../src/inih/ini.h"
char *outbound_path;
char *message_base_path;
char *temp_dir;
char *pack_cmd;
char *config_file;
char *hostid;
int bases_exists = 0;
struct msg_bases {
int baseno;
char *path;
};
struct msg_bases **msgbases;
int msgbasecount = 0;
int recursive_delete(const char *dir) {
int ret = 0;
FTS *ftsp = NULL;
FTSENT *curr;
char *files[] = { (char *) dir, NULL };
ftsp = fts_open(files, FTS_NOCHDIR | FTS_PHYSICAL | FTS_XDEV, NULL);
if (!ftsp) {
fprintf(stderr, "%s: fts_open failed: %s\n", dir, strerror(errno));
ret = -1;
goto finish;
}
while ((curr = fts_read(ftsp))) {
switch (curr->fts_info) {
case FTS_NS:
case FTS_DNR:
case FTS_ERR:
fprintf(stderr, "%s: fts_read error: %s\n", curr->fts_accpath, strerror(curr->fts_errno));
break;
case FTS_DC:
case FTS_DOT:
case FTS_NSOK:
break;
case FTS_D:
break;
case FTS_DP:
case FTS_F:
case FTS_SL:
case FTS_SLNONE:
case FTS_DEFAULT:
if (remove(curr->fts_accpath) < 0) {
fprintf(stderr, "%s: Failed to remove: %s", curr->fts_path, strerror(errno));
ret = -1;
}
break;
}
}
finish:
if (ftsp) {
fts_close(ftsp);
}
return ret;
}
s_JamBase *open_jam_base(char *path) {
int ret;
s_JamBase *jb;
ret = JAM_OpenMB((char *)path, &jb);
if (ret != 0) {
if (ret == JAM_IO_ERROR) {
free(jb);
ret = JAM_CreateMB((char *)path, 1, &jb);
if (ret != 0) {
free(jb);
return NULL;
}
} else {
free(jb);
return NULL;
}
}
return jb;
}
static int handler(void* user, const char* section, const char* name,
const char* value)
{
if (strcasecmp(section, "main") == 0) {
if (strcasecmp(name, "message path") == 0) {
message_base_path = strdup(value);
} else if (strcasecmp(name, "outbound") == 0) {
outbound_path = strdup(value);
} else if (strcasecmp(name, "temp dir") == 0) {
temp_dir = strdup(value);
} else if (strcasecmp(name, "pack command") == 0) {
pack_cmd = strdup(value);
} else if (strcasecmp(name, "host") == 0) {
hostid = strdup(value);
}
} else if (strcasecmp(section, "bases") == 0) {
bases_exists = 1;
if (msgbasecount == 0) {
msgbases = (struct msg_bases **)malloc(sizeof(struct msg_bases *));
} else {
msgbases = (struct msg_bases **)realloc(msgbases, sizeof(struct msg_bases *) * (msgbasecount + 1));
}
msgbases[msgbasecount] = (struct msg_bases *)malloc(sizeof(struct msg_bases));
msgbases[msgbasecount]->baseno = atoi(name);
msgbases[msgbasecount]->path = strdup(value);
msgbasecount++;
}
return 1;
}
int export_messages(int baseno, char *basefilename, int qwkidx) {
int msgcount = 0;
s_JamBase *jb;
s_JamBaseHeader jbh;
s_JamMsgHeader jmh;
s_JamSubPacket* jsp;
s_JamSubfield jsf;
int i;
int z;
int len;
int lenbytes;
char buffer[PATH_MAX];
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struct QwkHeader qh;
struct tm msgtm;
FILE *fptr;
FILE *hdrptr;
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char text[128];
char *msgbuf;
char *msgptr;
long offset;
char *msgsubj = NULL;
char *msgto = NULL;
char *msgfrom = NULL;
char *msgid = NULL;
char *msgreplyid = NULL;
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snprintf(buffer, PATH_MAX, "%s/%s", message_base_path, basefilename);
jb = open_jam_base(buffer);
if (jb) {
JAM_ReadMBHeader(jb, &jbh);
if (jbh.ActiveMsgs > 0) {
for (i=0;i<jbh.ActiveMsgs;i++) {
memset(&jmh, 0, sizeof(s_JamMsgHeader));
z = JAM_ReadMsgHeader(jb, i, &jmh, &jsp);
if (z != 0) {
continue;
}
if (jmh.Attribute & JAM_MSG_DELETED) {
JAM_DelSubPacket(jsp);
continue;
}
if ((jmh.Attribute & JAM_MSG_SENT) || !(jmh.Attribute & JAM_MSG_LOCAL)) {
JAM_DelSubPacket(jsp);
continue;
} else {
// export message
for (z=0;z<jsp->NumFields;z++) {
if (jsp->Fields[z]->LoID == JAMSFLD_SUBJECT) {
msgsubj = (char *)malloc(jsp->Fields[z]->DatLen + 1);
memset(msgsubj, 0, jsp->Fields[z]->DatLen + 1);
memcpy(msgsubj, jsp->Fields[z]->Buffer, jsp->Fields[z]->DatLen);
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if (jsp->Fields[z]->DatLen > 24) {
len = 24;
} else {
len = jsp->Fields[z]->DatLen;
}
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memset(qh.MsgSubj, ' ', 25);
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memcpy(qh.MsgSubj, jsp->Fields[z]->Buffer, len);
}
if (jsp->Fields[z]->LoID == JAMSFLD_SENDERNAME) {
msgfrom = (char *)malloc(jsp->Fields[z]->DatLen + 1);
memset(msgfrom, 0, jsp->Fields[z]->DatLen + 1);
memcpy(msgfrom, jsp->Fields[z]->Buffer, jsp->Fields[z]->DatLen);
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if (jsp->Fields[z]->DatLen > 24) {
len = 24;
} else {
len = jsp->Fields[z]->DatLen;
}
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memset(qh.MsgFrom, ' ', 25);
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memcpy(qh.MsgFrom, jsp->Fields[z]->Buffer, len);
}
if (jsp->Fields[z]->LoID == JAMSFLD_RECVRNAME) {
msgto = (char *)malloc(jsp->Fields[z]->DatLen + 1);
memset(msgto, 0, jsp->Fields[z]->DatLen + 1);
memcpy(msgto, jsp->Fields[z]->Buffer, jsp->Fields[z]->DatLen);
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if (jsp->Fields[z]->DatLen > 24) {
len = 24;
} else {
len = jsp->Fields[z]->DatLen;
}
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memset(qh.MsgTo, ' ', 25);
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memcpy(qh.MsgTo, jsp->Fields[z]->Buffer, len);
}
if (jsp->Fields[z]->LoID == JAMSFLD_MSGID) {
msgid = (char *)malloc(jsp->Fields[z]->DatLen + 1);
memset(msgid, 0, jsp->Fields[z]->DatLen + 1);
memcpy(msgid, jsp->Fields[z]->Buffer, jsp->Fields[z]->DatLen);
}
if (jsp->Fields[z]->LoID == JAMSFLD_REPLYID) {
msgreplyid = (char *)malloc(jsp->Fields[z]->DatLen + 1);
memset(msgreplyid, 0, jsp->Fields[z]->DatLen + 1);
memcpy(msgreplyid, jsp->Fields[z]->Buffer, jsp->Fields[z]->DatLen);
}
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}
qh.Msgstat = ' ';
snprintf(buffer, 7, "%d", baseno);
memset(qh.Msgnum, ' ', 7);
memcpy(qh.Msgnum, buffer, strlen(buffer));
localtime_r(&jmh.DateWritten, &msgtm);
snprintf(buffer, PATH_MAX, "%02d-%02d-%02d", msgtm.tm_mon + 1, msgtm.tm_mday, msgtm.tm_year - 100);
memcpy(qh.Msgdate, buffer, 8);
snprintf(buffer, PATH_MAX, "%02d:%02d", msgtm.tm_hour, msgtm.tm_min);
memcpy(qh.Msgtime, buffer, 5);
memset(qh.Msgpass, ' ', 12);
memset(qh.Msgrply, ' ', 8);
len = jmh.TxtLen / 128 + 2;
lenbytes = len * 128;
msgbuf = (char *)malloc(lenbytes);
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memset(msgbuf, ' ', lenbytes);
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JAM_ReadMsgText(jb, jmh.TxtOffset, jmh.TxtLen, msgbuf);
msgptr = msgbuf;
while (*msgptr != '\0') {
if (*msgptr == '\r') {
*msgptr = '\xe3';
}
msgptr++;
}
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for (z=0;z<lenbytes;z++) {
if (msgbuf[z] == '\0') {
msgbuf[z] = ' ';
}
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}
snprintf(buffer, 7, "%d", len);
memset(qh.Msgrecs, ' ', 6);
memcpy(qh.Msgrecs, buffer, strlen(buffer));
qh.Msglive = 0xE1;
qh.Msgarealo = baseno & 0xff;
qh.Msgareahi = (baseno >> 8) & 0xff;
qh.Msgoffhi = ((qwkidx + msgcount + 1) >> 8) & 0xff;
qh.Msgofflo = (qwkidx + msgcount + 1) & 0xff;
qh.Msgtagp = '*';
snprintf(buffer, PATH_MAX, "%s/%s.MSG", temp_dir, hostid);
fptr = fopen(buffer, "r+");
if (!fptr) {
fptr = fopen(buffer, "w");
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if (fptr) {
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memset(text, ' ', 128);
memcpy(text, hostid, strlen(hostid));
fwrite(text, 128, 1, fptr);
} else {
fprintf(stderr, "UNABLE TO OPEN %s!!\n", buffer);
JAM_CloseMB(jb);
free(jb);
exit(-1);
}
} else {
fseek(fptr, 0, SEEK_END);
}
offset = ftell(fptr);
snprintf(buffer, PATH_MAX, "%s/HEADERS.DAT", temp_dir);
hdrptr = fopen(buffer, "a");
fprintf(hdrptr, "[%x]\n", offset);
if (msgid != NULL) {
fprintf(hdrptr, "Message-ID: %s\n", msgid);
free(msgid);
msgid = NULL;
}
if (msgreplyid != NULL) {
fprintf(hdrptr, "In-Reply-To: %s\n", msgreplyid);
free(msgreplyid);
msgreplyid = NULL;
}
if (msgsubj != NULL) {
fprintf(hdrptr, "Subject: %s\n", msgsubj);
free(msgsubj);
msgsubj = NULL;
}
if (msgto != NULL) {
fprintf(hdrptr, "To: %s\n", msgto);
free(msgto);
msgto = NULL;
}
if (msgfrom != NULL) {
fprintf(hdrptr, "Sender: %s\n", msgfrom);
free(msgfrom);
msgfrom = NULL;
}
fprintf(hdrptr, "\n");
fclose(hdrptr);
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fwrite(&qh, 128, 1, fptr);
fwrite(msgbuf, lenbytes - 128, 1, fptr);
fclose(fptr);
jmh.Attribute |= JAM_MSG_SENT;
while (1) {
z = JAM_LockMB(jb, 100);
if (z == 0) {
break;
} else if (z == JAM_LOCK_FAILED) {
sleep(1);
} else {
JAM_DelSubPacket(jsp);
JAM_CloseMB(jb);
free(jb);
fprintf(stderr, "Error locking JAM base!\n");
exit(-1);
}
}
z =JAM_ChangeMsgHeader(jb, i, &jmh);
JAM_UnlockMB(jb);
JAM_DelSubPacket(jsp);
free(msgbuf);
msgcount++;
}
}
}
JAM_CloseMB(jb);
free(jb);
}
return msgcount;
}
int main(int argc, char **argv) {
int i;
message_base_path = NULL;
outbound_path = NULL;
temp_dir = NULL;
int qwkidx = 0;
int msgcount = 0;
char buffer[PATH_MAX];
char archive[PATH_MAX];
int ret;
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struct stat st;
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if (argc < 2) {
fprintf(stderr, "Usage:\n ./qwkscan config.ini\n");
return -1;
}
config_file = argv[1];
if (ini_parse(config_file, handler, NULL) <0) {
fprintf(stderr, "Unable to load configuration ini (%s)!\n", config_file);
exit(-1);
}
if (temp_dir == NULL || message_base_path == NULL || outbound_path == NULL) {
fprintf(stderr, "Outbound Path & Temp dir must both be set\n");
exit(-1);
}
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mkdir(temp_dir, 0755);
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for (i=0;i<msgbasecount;i++) {
msgcount = export_messages(msgbases[i]->baseno, msgbases[i]->path, qwkidx);
qwkidx += msgcount;
fprintf(stderr, "Exporting from base %d... %d exported\n", msgbases[i]->baseno, msgcount);
}
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if (qwkidx > 0) {
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snprintf(archive, PATH_MAX, "%s/%s.REP", outbound_path, hostid);
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i = 1;
while (stat(archive, &st) == 0) {
snprintf(archive, PATH_MAX, "%s/%s.REP.%d", outbound_path, hostid, i);
i++;
}
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char *b = buffer;
size_t blen = sizeof buffer;
for (const char *p = pack_cmd; *p != '\0' && blen >= 1; ++p) {
if (*p != '*') {
*b++ = *p;
--blen;
continue;
}
p++;
size_t alen = 0;
if (*p == 'a') {
strncpy(b, archive, blen);
alen = strlen(archive);
} else if (*p == 'f') {
snprintf(b, blen, "%s/%s.MSG %s/HEADERS.DAT", temp_dir, hostid, temp_dir);
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alen = strlen(b);
} else if (*p == '*') {
*b++ = '*';
alen = 1;
}
b += alen;
blen -= alen;
}
*b = '\0';
ret = system(buffer);
if (ret == -1 || ret >> 8 == 127) {
fprintf(stderr, "Failed to run archiver!\n");
return -1;
}
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}
recursive_delete(temp_dir);
}