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g2_ircddb_rp2c.cpp
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/*
* Copyright (C) 2010 by Scott Lawson KI4LKF
*
* 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 2 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., 675 Mass Ave, Cambridge, MA 02139, USA.
*/
/* by KI4LKF */
/*
g2_ircddb is a dstar G2 gateway, using irc routing
adapted from the OpenG2 G2 gateway
Version 2.61 or newer will use ONLY the irc mechanism of routing
and it will NOT use any local Postgres databases or any TRUST(s)
This file is for the ICOM RP2C repeater, not for home-brew repeaters.
*/
#include <stdio.h>
#include <fcntl.h>
#include <string.h>
#include <ctype.h>
#include <stdlib.h>
#include <stdarg.h>
#include <unistd.h>
#include <signal.h>
#include <errno.h>
#include <time.h>
#include <math.h>
#include <sys/time.h>
#include <sys/stat.h>
#include <sys/types.h>
#include <sys/socket.h>
#include <sys/ioctl.h>
#include <netinet/in.h>
#include <netinet/tcp.h>
#include <arpa/inet.h>
#include <netdb.h>
#include <regex.h>
#include <string>
#include <utility>
using namespace std;
#include <pthread.h>
#include <wx/hashmap.h>
#include "IRCDDB.h"
#define VERSION "Linux-g2_ircddb-rp2c-3.09"
#define OWNER_SIZE 8
#define IP_SIZE 15
#define MAXHOSTNAMELEN 64
#define CALL_SIZE 8
#define ECHO_CODE 'E'
#define STORE_VM_CODE 'S'
#define RECALL_VM_CODE 'R'
#define CLEAR_VM_CODE 'C'
#define LINK_CODE 'L'
/* configuration data */
/* Gateway callsign */
static char OWNER[OWNER_SIZE + 1];
static char owner[OWNER_SIZE + 1];
static char PACKAGE_REV[56];
static char LOCAL_IRC_IP[IP_SIZE + 1];
static bool SEND_QRGS_MAPS = false;
static char QTH[257];
static char QRG_A[257];
static char QRG_B[257];
static char QRG_C[257];
static char STATUS_FILE[FILENAME_MAX + 1];
static char silence[9] = { 0x4e,0x8d,0x32,0x88,0x26,0x1a,0x3f,0x61,0xe8 };
static char DTMF_DIR[FILENAME_MAX + 1];
static char DTMF_FILE[FILENAME_MAX + 1];
static const int MAX_DTMF_BUF = 32;
static char dtmf_chars[17] = "147*2580369#ABCD";
static int dtmf_digit;
static FILE *dtmf_fp = NULL;
static char dtmf_buf[3][MAX_DTMF_BUF + 1] = { {""}, {""}, {""} };
static int dtmf_buf_count[3] = {0, 0, 0};
static unsigned int dtmf_counter[3] = {0, 0, 0};
static int dtmf_last_frame[3] = {0, 0, 0};
static bool IRC_DEBUG = false;
static bool DTMF_DEBUG = false;
static bool REGEN_HDR = false;
/* the aprs TCP socket */
static int aprs_sock = -1;
static struct sockaddr_in aprs_addr;
static socklen_t aprs_addr_len;
/* data needed for aprs login and aprs beacon */
static struct
{
char aprs_host[MAXHOSTNAMELEN + 1];
int aprs_port;
int aprs_hash;
int aprs_interval;
char aprs_filter[512];
/* 0=A, 1=B, 2=C */
char rptr[3][CALL_SIZE + 1]; /* KJ4NHF-B */
char band[3][5]; /* 23cm ... */
int range[3];
double lat[3];
double lon[3];
char desc[3][64];
} RPTR_ID;
/* Gateway external IP and port for remote G2 routing */
static char G2_EXTERNAL_IP[IP_SIZE + 1]; /* 0.0.0.0 */
static int G2_EXTERNAL_PORT = 40000;
/*
Internal Gateway internal IP and port,
so that the local repeater modules can talk to our g2_ircddb
*/
static char G2_INTERNAL_IP[IP_SIZE + 1]; /* Example: 172.16.0.20 */
static int G2_INTERNAL_PORT = 20000;
/* We send repeater data to our g2_link */
static char TO_G2_LINK_IP[IP_SIZE + 1];
static int TO_G2_LINK_PORT = 18997;
/* local repeater module IP and port for ICOM repeater */
static char TO_RPTR_IP[IP_SIZE + 1]; /* Example: 172.16.0.10 */
static int TO_RPTR_PORT; /* Example: 20000 */
/* QSO details go to a log file */
static bool QSO_DETAILS = false;
static bool SEND_APRS = false;
/* Recorded files are here */
static char ECHOTEST_DIR[FILENAME_MAX + 1];
/*
How many SECONDS to wait before starting to playback the recorded file.
1 second is enough, some repeaters require 2 seconds to re-initialize
before they accept new streams again.
*/
static int PLAY_WAIT = 1;
/*
How many MILLIseconds to delay when playing back each of the recorded packets
Normal VoIP is 20 milliseconds
*/
static int PLAY_DELAY = 20;
static char IRC_DDB_HOST[512];
static int IRC_DDB_PORT = 9007;
static char IRC_PASS[512];
static int ECHOTEST_REC_TIMEOUT = 1;
static int VOICEMAIL_REC_TIMEOUT = 1;
static int FROM_REMOTE_G2_TIMEOUT = 1;
static int FROM_LOCAL_RPTR_TIMEOUT = 1;
/* local repeater modules being recorded */
/* This is for echotest */
static struct
{
time_t last_time;
unsigned char streamid[2];
int fd;
char file[FILENAME_MAX + 1];
} recd[3];
/* this is for vm */
static struct
{
time_t last_time;
unsigned char streamid[2];
int fd;
char file[FILENAME_MAX + 1];
} vm[3];
static unsigned char recbuf[100]; /* 56 or 27, max is 56 */
/* the streamids going to remote Gateways from each local module */
static struct
{
unsigned char streamid[2];
struct sockaddr_in toDst4;
time_t last_time;
} to_remote_g2[3]; /* 0=A, 1=B, 2=C */
/* input from remote G2 gateway */
static int g2_sock = -1;
static unsigned char readBuffer2[2000]; /* 56 or 27, max is 56 */
static struct sockaddr_in fromDst4;
/*
Incoming data from remote systems
must be fed into our ICOM RP2C.
*/
static struct
{
/* help with header re-generation */
unsigned char saved_hdr[58]; /* repeater format */
uint32_t saved_adr;
unsigned char streamid[2];
uint32_t adr;
time_t last_time;
} toRptr_rp2c[3]; /* 0=A, 1=B, 2=C */
static struct sockaddr_in toRptr;
static unsigned short G2_COUNTER_OUT = 0;
static unsigned short OLD_REPLY_SEQ = 0;
static unsigned short NEW_REPLY_SEQ = 0;
static unsigned short TEMP_SEQ = 0;
/* input from our own RP2C */
static int srv_sock = -1;
static unsigned char readBuffer[2000]; /* 58 or 29 or 32, max is 58 */
static struct sockaddr_in fromRptr;
static volatile bool keep_running = true;
static time_t wd_timer = 0;
/* send packets to g2_link */
static struct sockaddr_in plug;
/* for talking with the irc server */
static CIRCDDB *ii;
enum aprs_level
{
al_none,
al_$1,
al_$2,
al_c1,
al_r1,
al_c2,
al_csum1,
al_csum2,
al_csum3,
al_csum4,
al_data,
al_end
};
enum slow_level
{
sl_first,
sl_second
};
static struct
{
aprs_level al;
unsigned char data[300];
unsigned int len;
unsigned char buf[6];
slow_level sl;
bool is_sent;
} aprs_pack[3];
/* lock down a stream per band */
static struct
{
unsigned char streamID[2];
time_t last_time;
} aprs_streamID[3];
/* text coming from local repeater bands */
static struct
{
unsigned char streamID[2];
unsigned char flags[3];
char lh_mycall[CALL_SIZE + 1];
char lh_sfx[5];
char lh_yrcall[CALL_SIZE + 1];
char lh_rpt1[CALL_SIZE + 1];
char lh_rpt2[CALL_SIZE + 1];
char txt[64]; /* Only 20 are used */
time_t last_time;
unsigned short txt_cnt;
bool txt_stats_sent;
char dest_rptr[CALL_SIZE + 1];
/* try to process GPS mode: GPRMC and ID */
char temp_line[256];
unsigned short temp_line_cnt;
char gprmc[256];
char gpid[256];
bool is_gps_sent;
time_t gps_last_time;
int num_dv_frames;
int num_dv_silent_frames;
int num_bit_errors;
} band_txt[3]; /* 0=A, 1=B, 2=C */
/* Used to validate MYCALL input */
static regex_t preg;
/*
CACHE used to cache users, repeaters,
gateways, IP numbers coming from the irc server
*/
WX_DECLARE_STRING_HASH_MAP(wxString, user2rptr_type);
static user2rptr_type user2rptr_map;
WX_DECLARE_STRING_HASH_MAP(wxString, rptr2gwy_type);
static rptr2gwy_type rptr2gwy_map;
WX_DECLARE_STRING_HASH_MAP(wxString, gwy2ip_type);
static gwy2ip_type gwy2ip_map;
static pthread_mutex_t irc_data_mutex = PTHREAD_MUTEX_INITIALIZER;
static unsigned short crc_tabccitt[256] =
{
0x0000,0x1189,0x2312,0x329b,0x4624,0x57ad,0x6536,0x74bf,
0x8c48,0x9dc1,0xaf5a,0xbed3,0xca6c,0xdbe5,0xe97e,0xf8f7,
0x1081,0x0108,0x3393,0x221a,0x56a5,0x472c,0x75b7,0x643e,
0x9cc9,0x8d40,0xbfdb,0xae52,0xdaed,0xcb64,0xf9ff,0xe876,
0x2102,0x308b,0x0210,0x1399,0x6726,0x76af,0x4434,0x55bd,
0xad4a,0xbcc3,0x8e58,0x9fd1,0xeb6e,0xfae7,0xc87c,0xd9f5,
0x3183,0x200a,0x1291,0x0318,0x77a7,0x662e,0x54b5,0x453c,
0xbdcb,0xac42,0x9ed9,0x8f50,0xfbef,0xea66,0xd8fd,0xc974,
0x4204,0x538d,0x6116,0x709f,0x0420,0x15a9,0x2732,0x36bb,
0xce4c,0xdfc5,0xed5e,0xfcd7,0x8868,0x99e1,0xab7a,0xbaf3,
0x5285,0x430c,0x7197,0x601e,0x14a1,0x0528,0x37b3,0x263a,
0xdecd,0xcf44,0xfddf,0xec56,0x98e9,0x8960,0xbbfb,0xaa72,
0x6306,0x728f,0x4014,0x519d,0x2522,0x34ab,0x0630,0x17b9,
0xef4e,0xfec7,0xcc5c,0xddd5,0xa96a,0xb8e3,0x8a78,0x9bf1,
0x7387,0x620e,0x5095,0x411c,0x35a3,0x242a,0x16b1,0x0738,
0xffcf,0xee46,0xdcdd,0xcd54,0xb9eb,0xa862,0x9af9,0x8b70,
0x8408,0x9581,0xa71a,0xb693,0xc22c,0xd3a5,0xe13e,0xf0b7,
0x0840,0x19c9,0x2b52,0x3adb,0x4e64,0x5fed,0x6d76,0x7cff,
0x9489,0x8500,0xb79b,0xa612,0xd2ad,0xc324,0xf1bf,0xe036,
0x18c1,0x0948,0x3bd3,0x2a5a,0x5ee5,0x4f6c,0x7df7,0x6c7e,
0xa50a,0xb483,0x8618,0x9791,0xe32e,0xf2a7,0xc03c,0xd1b5,
0x2942,0x38cb,0x0a50,0x1bd9,0x6f66,0x7eef,0x4c74,0x5dfd,
0xb58b,0xa402,0x9699,0x8710,0xf3af,0xe226,0xd0bd,0xc134,
0x39c3,0x284a,0x1ad1,0x0b58,0x7fe7,0x6e6e,0x5cf5,0x4d7c,
0xc60c,0xd785,0xe51e,0xf497,0x8028,0x91a1,0xa33a,0xb2b3,
0x4a44,0x5bcd,0x6956,0x78df,0x0c60,0x1de9,0x2f72,0x3efb,
0xd68d,0xc704,0xf59f,0xe416,0x90a9,0x8120,0xb3bb,0xa232,
0x5ac5,0x4b4c,0x79d7,0x685e,0x1ce1,0x0d68,0x3ff3,0x2e7a,
0xe70e,0xf687,0xc41c,0xd595,0xa12a,0xb0a3,0x8238,0x93b1,
0x6b46,0x7acf,0x4854,0x59dd,0x2d62,0x3ceb,0x0e70,0x1ff9,
0xf78f,0xe606,0xd49d,0xc514,0xb1ab,0xa022,0x92b9,0x8330,
0x7bc7,0x6a4e,0x58d5,0x495c,0x3de3,0x2c6a,0x1ef1,0x0f78
};
static int g2_open();
static int srv_open();
static void calcPFCS(unsigned char *packet, int len);
static void *get_irc_data(void *arg);
static int get_yrcall_rptr_from_cache(char *call, char *arearp_cs, char *zonerp_cs,
char *mod, char *ip, char RoU);
static bool get_yrcall_rptr(char *call, char *arearp_cs, char *zonerp_cs,
char *mod, char *ip, char RoU);
static void traceit(const char *fmt,...);
static int read_config(char *);
static void runit();
static void sigCatch(int signum);
void *echotest(void *arg);
static void compute_aprs_hash();
static void *send_aprs_beacon(void *arg);
/* aprs functions, borrowed from my retired IRLP node 4201 */
static bool aprs_write_data(short int rptr_idx, unsigned char *data);
static void aprs_sync_it(short int rptr_idx);
static void aprs_reset(short int rptr_idx);
static unsigned int aprs_get_data(short int rptr_idx, unsigned char *data, unsigned int len);
static void aprs_init();
static void aprs_open();
static bool aprs_add_data(short int rptr_idx, unsigned char *data);
static bool aprs_check_data(short int rptr_idx);
static unsigned int aprs_calc_crc(unsigned char* buf, unsigned int len);
static void aprs_select_band(short int rptr_idx, unsigned char *streamID);
static void aprs_process_text(unsigned char *streamID,
unsigned char seq,
unsigned char *buf,
unsigned int len);
static void gps_send(short int rptr_idx);
static bool verify_gps_csum(char *gps_text, char *csum_text);
static void build_aprs_from_gps_and_send(short int rptr_idx);
static ssize_t writen(char *buffer, size_t n);
static void qrgs_and_maps();
static bool resolve_rmt(char *name, int type, struct sockaddr_in *addr);
static void set_dest_rptr(int mod_ndx, char *dest_rptr);
extern void dstar_dv_init();
extern int dstar_dv_decode(const unsigned char *d, int data[3]);
static bool resolve_rmt(char *name, int type, struct sockaddr_in *addr)
{
struct addrinfo hints;
struct addrinfo *res;
struct addrinfo *rp;
int rc = 0;
bool found = false;
memset(&hints, 0x00, sizeof(struct addrinfo));
hints.ai_family = AF_INET;
hints.ai_socktype = type;
rc = getaddrinfo(name, NULL, &hints, &res);
if (rc != 0)
{
traceit("getaddrinfo return error code %d for [%s]\n", rc, name);
return false;
}
for (rp = res; rp != NULL; rp = rp->ai_next)
{
if ((rp->ai_family == AF_INET) &&
(rp->ai_socktype == type))
{
memcpy(addr, rp->ai_addr, sizeof(struct sockaddr_in));
found = true;
break;
}
}
freeaddrinfo(res);
return found;
}
static void set_dest_rptr(int mod_ndx, char *dest_rptr)
{
FILE *statusfp = NULL;
char statusbuf[1024];
char *status_local_mod = NULL;
char *status_remote_stm = NULL;
char *status_remote_mod = NULL;
const char *delim = ",";
char *saveptr = NULL;
char *p = NULL;
statusfp = fopen(STATUS_FILE, "r");
if (statusfp)
{
setvbuf(statusfp, (char *)NULL, _IOLBF, 0);
while (fgets(statusbuf, 1020, statusfp) != NULL)
{
p = strchr(statusbuf, '\r');
if (p)
*p = '\0';
p = strchr(statusbuf, '\n');
if (p)
*p = '\0';
status_local_mod = strtok_r(statusbuf, delim, &saveptr);
status_remote_stm = strtok_r(NULL, delim, &saveptr);
status_remote_mod = strtok_r(NULL, delim, &saveptr);
if (!status_local_mod || !status_remote_stm || !status_remote_mod)
continue;
if ( ((*status_local_mod == 'A') && (mod_ndx == 0)) ||
((*status_local_mod == 'B') && (mod_ndx == 1)) ||
((*status_local_mod == 'C') && (mod_ndx == 2)) )
{
strncpy(dest_rptr, status_remote_stm, CALL_SIZE);
dest_rptr[7] = *status_remote_mod;
dest_rptr[CALL_SIZE] = '\0';
break;
}
}
fclose(statusfp);
}
return;
}
/* compute checksum */
static void calcPFCS(unsigned char *packet, int len)
{
unsigned short crc_dstar_ffff = 0xffff;
unsigned short tmp, short_c;
short int i;
short int low;
short int high;
if (len == 56)
{
low = 15;
high = 54;
}
else
if (len == 58)
{
low = 17;
high = 56;
}
else
return;
for (i = low; i < high ; i++)
{
short_c = 0x00ff & (unsigned short)packet[i];
tmp = (crc_dstar_ffff & 0x00ff) ^ short_c;
crc_dstar_ffff = (crc_dstar_ffff >> 8) ^ crc_tabccitt[tmp];
}
crc_dstar_ffff = ~crc_dstar_ffff;
tmp = crc_dstar_ffff;
if (len == 56)
{
packet[54] = (unsigned char)(crc_dstar_ffff & 0xff);
packet[55] = (unsigned char)((tmp >> 8) & 0xff);
}
else
{
packet[56] = (unsigned char)(crc_dstar_ffff & 0xff);
packet[57] = (unsigned char)((tmp >> 8) & 0xff);
}
return;
}
/* log the event */
static void traceit(const char *fmt,...)
{
time_t ltime;
struct tm tm;
const short BFSZ = 512;
char buf[BFSZ];
time(<ime);
localtime_r(<ime,&tm);
snprintf(buf,BFSZ - 1,"%02d%02d%02d at %d:%02d:%02d:",
tm.tm_mon+1,tm.tm_mday,tm.tm_year % 100,
tm.tm_hour,tm.tm_min,tm.tm_sec);
va_list args;
va_start(args,fmt);
vsnprintf(buf + strlen(buf), BFSZ - strlen(buf) -1, fmt, args);
va_end(args);
fprintf(stdout, "%s", buf);
return;
}
/* process configuration file */
static int read_config(char *cfgFile)
{
short int valid_params = 40;
short int params = 0;
unsigned short i;
FILE *cnf = NULL;
char inbuf[1024];
char *p = NULL;
char *ptr;
char *tok = NULL;
const char *delim = ",";
cnf = fopen(cfgFile, "r");
if (!cnf)
{
traceit("Failed to open file %s\n", cfgFile);
return 1;
}
traceit("Reading file %s\n", cfgFile);
while (fgets(inbuf, 1020, cnf) != NULL)
{
if (strchr(inbuf, '#'))
continue;
p = strchr(inbuf, '\r');
if (p)
*p = '\0';
p = strchr(inbuf, '\n');
if (p)
*p = '\0';
p = strchr(inbuf, '=');
if (!p)
continue;
*p = '\0';
if (strcmp(inbuf,"OWNER") == 0)
{
memset(OWNER,' ', sizeof(OWNER));
OWNER[OWNER_SIZE] = '\0';
strcpy(owner, OWNER);
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if ((strlen(p + 1) < 3) || (strlen(p + 1) > (OWNER_SIZE - 2)))
traceit("OWNER value [%s] invalid\n", p + 1);
else
{
memcpy(OWNER, p + 1, strlen(p + 1));
for (i = 0; i < strlen(OWNER); i++)
OWNER[i] = toupper(OWNER[i]);
traceit("OWNER=[%s]\n",OWNER);
for (i = 0; i < strlen(OWNER); i++)
{
if (OWNER[i] == ' ')
{
owner[i] = '\0';
break;
}
owner[i] = tolower(OWNER[i]);
}
params ++;
}
}
else
if (strcmp(inbuf,"STATUS_FILE") == 0)
{
memset(STATUS_FILE, '\0', sizeof(STATUS_FILE));
strncpy(STATUS_FILE, p + 1,FILENAME_MAX);
traceit("STATUS_FILE=[%s]\n",STATUS_FILE);
params ++;
}
else
if (strcmp(inbuf,"PACKAGE_REV") == 0)
{
memset(PACKAGE_REV, 0, sizeof(PACKAGE_REV));
strncpy(PACKAGE_REV, p + 1, 55);
traceit("PACKAGE_REV=[%s]\n", PACKAGE_REV);
params ++;
}
else
if (strcmp(inbuf,"LOCAL_IRC_IP") == 0)
{
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if (strlen(p + 1) < 1)
traceit("LOCAL_IRC_IP value [%s] invalid\n", p + 1);
else
{
strncpy(LOCAL_IRC_IP, p + 1, IP_SIZE);
LOCAL_IRC_IP[IP_SIZE] = '\0';
traceit("LOCAL_IRC_IP=[%s]\n", LOCAL_IRC_IP);
params ++;
}
}
else
if (strcmp(inbuf,"SEND_QRGS_MAPS") == 0)
{
if (*(p + 1) == 'Y')
SEND_QRGS_MAPS = true;
else
SEND_QRGS_MAPS = false;
traceit("SEND_QRGS_MAPS=[%c]\n", *(p + 1));
params ++;
}
else
if (strcmp(inbuf,"QTH") == 0)
{
memset(QTH, '\0', sizeof(QTH));
strncpy(QTH, p + 1, 256);
traceit("QTH=[%s]\n", QTH);
params++;
}
else
if (strcmp(inbuf,"QRG_A") == 0)
{
memset(QRG_A, '\0', sizeof(QRG_A));
strncpy(QRG_A, p + 1, 256);
traceit("QRG_A=[%s]\n", QRG_A);
params++;
}
else
if (strcmp(inbuf,"QRG_B") == 0)
{
memset(QRG_B, '\0', sizeof(QRG_B));
strncpy(QRG_B, p + 1, 256);
traceit("QRG_B=[%s]\n", QRG_B);
params++;
}
else
if (strcmp(inbuf,"QRG_C") == 0)
{
memset(QRG_C, '\0', sizeof(QRG_C));
strncpy(QRG_C, p + 1, 256);
traceit("QRG_C=[%s]\n", QRG_C);
params++;
}
else
if (strcmp(inbuf,"APRS_HOST") == 0)
{
memset(RPTR_ID.aprs_host, '\0', sizeof(RPTR_ID.aprs_host));
strncpy(RPTR_ID.aprs_host, p + 1, MAXHOSTNAMELEN);
traceit("APRS_HOST=[%s]\n", RPTR_ID.aprs_host);
params++;
}
else
if (strcmp(inbuf,"APRS_PORT") == 0)
{
RPTR_ID.aprs_port = atoi(p + 1);
traceit("APRS_PORT=[%d]\n", RPTR_ID.aprs_port);
params++;
}
else
if (strcmp(inbuf,"APRS_INTERVAL") == 0)
{
RPTR_ID.aprs_interval = atoi(p + 1);
traceit("APRS_INTERVAL=[%d]\n", RPTR_ID.aprs_interval);
if (RPTR_ID.aprs_interval < 40)
{
RPTR_ID.aprs_interval = 40;
traceit("APRS_INTERVAL is low number, re-setting to 40\n");
}
params++;
}
else
if (strcmp(inbuf,"APRS_FILTER") == 0)
{
memset(RPTR_ID.aprs_filter, '\0', sizeof(RPTR_ID.aprs_filter));
strncpy(RPTR_ID.aprs_filter, p + 1, 511);
traceit("APRS_filter=[%s]\n", RPTR_ID.aprs_filter);
params++;
}
else
if (strcmp(inbuf, "RPTR_ID_A") == 0)
{
traceit("RPTR_ID_A=[%s]\n", p + 1);
tok = strtok(p + 1, delim);
if (tok)
{
RPTR_ID.lat[0] = atof(tok);
tok = strtok(NULL, delim);
if (tok)
{
RPTR_ID.lon[0] = atof(tok);
tok = strtok(NULL,delim);
if (tok)
{
RPTR_ID.range[0] = atoi(tok);
tok = strtok(NULL, delim);
if (tok)
{
memset(RPTR_ID.desc[0], '\0', 64);
strncpy(RPTR_ID.desc[0], tok, 63);
params++;
traceit("ModA: lat=[%lf], lon=[%lf], range=[%d], descr=[%s]\n",
RPTR_ID.lat[0], RPTR_ID.lon[0],
RPTR_ID.range[0], RPTR_ID.desc[0]);
}
else
traceit("ModA:Invalid value for description\n");
}
else
traceit("ModA:Invalid value for range\n");
}
else
traceit("ModA:Invalid values for longitude\n");
}
else
{
params++;
traceit("ModA aprs parameters NOT defined...ok\n");
}
}
else
if (strcmp(inbuf, "RPTR_ID_B") == 0)
{
traceit("RPTR_ID_B=[%s]\n", p + 1);
tok = strtok(p + 1, delim);
if (tok)
{
RPTR_ID.lat[1] = atof(tok);
tok = strtok(NULL, delim);
if (tok)
{
RPTR_ID.lon[1] = atof(tok);
tok = strtok(NULL, delim);
if (tok)
{
RPTR_ID.range[1] = atoi(tok);
tok = strtok(NULL, delim);
if (tok)
{
memset(RPTR_ID.desc[1], '\0', 64);
strncpy(RPTR_ID.desc[1], tok, 63);
params++;
traceit("ModB: lat=[%lf], lon=[%lf], range=[%d], descr=[%s]\n",
RPTR_ID.lat[1], RPTR_ID.lon[1],
RPTR_ID.range[1], RPTR_ID.desc[1]);
}
else
traceit("ModB:Invalid value for description\n");
}
else
traceit("ModB:Invalid value for range\n");
}
else
traceit("ModB:Invalid values for longitude\n");
}
else
{
params++;
traceit("ModB aprs parameters NOT defined...ok\n");
}
}
else
if (strcmp(inbuf, "RPTR_ID_C") == 0)
{
traceit("RPTR_ID_C=[%s]\n", p + 1);
tok = strtok(p + 1, delim);
if (tok)
{
RPTR_ID.lat[2] = atof(tok);
tok = strtok(NULL, delim);
if (tok)
{
RPTR_ID.lon[2] = atof(tok);
tok = strtok(NULL, delim);
if (tok)
{
RPTR_ID.range[2] = atoi(tok);
tok = strtok(NULL, delim);
if (tok)
{
memset(RPTR_ID.desc[2], '\0', 64);
strncpy(RPTR_ID.desc[2], tok, 63);
params++;
traceit("ModC: lat=[%lf], lon=[%lf], range=[%d], descr=[%s]\n",
RPTR_ID.lat[2], RPTR_ID.lon[2],
RPTR_ID.range[2], RPTR_ID.desc[2]);
}
else
traceit("ModC:Invalid value for description\n");
}
else
traceit("ModC:Invalid value for range\n");
}
else
traceit("ModC:Invalid values for longitude\n");
}
else
{
params++;
traceit("ModC aprs parameters NOT defined...ok\n");
}
}
else
if (strcmp(inbuf,"G2_EXTERNAL_IP") == 0)
{
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if (strlen(p + 1) < 1)
traceit("G2_EXTERNAL_IP value [%s] invalid\n", p + 1);
else
{
strncpy(G2_EXTERNAL_IP, p + 1, IP_SIZE);
G2_EXTERNAL_IP[IP_SIZE] = '\0';
traceit("G2_EXTERNAL_IP=[%s]\n", G2_EXTERNAL_IP);
params ++;
}
}
else
if (strcmp(inbuf,"G2_EXTERNAL_PORT") == 0)
{
G2_EXTERNAL_PORT = atoi(p + 1);
traceit("G2_EXTERNAL_PORT=[%d]\n",G2_EXTERNAL_PORT);
params ++;
}
else
if (strcmp(inbuf,"G2_INTERNAL_IP") == 0)
{
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if (strlen(p + 1) < 1)
traceit("G2_INTERNAL_IP value [%s] invalid\n", p + 1);
else
{
strncpy(G2_INTERNAL_IP, p + 1, IP_SIZE);
G2_INTERNAL_IP[IP_SIZE] = '\0';
traceit("G2_INTERNAL_IP=[%s]\n", G2_INTERNAL_IP);
params ++;
}
}
else
if (strcmp(inbuf,"G2_INTERNAL_PORT") == 0)
{
G2_INTERNAL_PORT = atoi(p + 1);
traceit("G2_INTERNAL_PORT=[%d]\n",G2_INTERNAL_PORT);
params ++;
}
else
if (strcmp(inbuf,"TO_G2_LINK_IP") == 0)
{
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if (strlen(p + 1) < 1)
traceit("TO_G2_LINK_IP value [%s] invalid\n", p + 1);
else
{
strncpy(TO_G2_LINK_IP, p + 1, IP_SIZE);
TO_G2_LINK_IP[IP_SIZE] = '\0';
traceit("TO_G2_LINK_IP=[%s]\n", TO_G2_LINK_IP);
params ++;
}
}
else
if (strcmp(inbuf,"TO_G2_LINK_PORT") == 0)
{
TO_G2_LINK_PORT = atoi(p + 1);
traceit("TO_G2_LINK_PORT=[%d]\n",TO_G2_LINK_PORT);
params ++;
}
else
if (strcmp(inbuf,"TO_RPTR_IP") == 0)
{
ptr = strchr(p + 1, ' ');
if (ptr)
*ptr = '\0';
if (strlen(p + 1) < 1)
traceit("TO_RPTR_IP value [%s] invalid\n", p + 1);
else
{
strncpy(TO_RPTR_IP, p + 1, IP_SIZE);
TO_RPTR_IP[IP_SIZE] = '\0';
traceit("TO_RPTR_IP=[%s]\n", TO_RPTR_IP);
params ++;
}
}
else
if (strcmp(inbuf,"TO_RPTR_PORT") == 0)
{
TO_RPTR_PORT = atoi(p + 1);
traceit("TO_RPTR_PORT=[%d]\n",TO_RPTR_PORT);
params ++;
}
else
if (strcmp(inbuf,"QSO_DETAILS") == 0)
{
if (*(p + 1) == 'Y')
QSO_DETAILS = true;
else
QSO_DETAILS = false;
traceit("QSO_DETAILS=[%c]\n", *(p + 1));
params ++;
}
else
if (strcmp(inbuf,"IRC_DEBUG") == 0)
{
if (*(p + 1) == 'Y')
IRC_DEBUG = true;
else
IRC_DEBUG = false;
traceit("IRC_DEBUG=[%c]\n", *(p + 1));
params ++;
}
else
if (strcmp(inbuf,"DTMF_DEBUG") == 0)
{