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/* tcp.c - tcp support for sendip
* Author: Mike Ricketts <mike@earth.li>
* TCP options taken from code by Alexander Talos <at@atat.at>
* ChangeLog since 2.0 release:
* 27/11/2001: Added -tonum option
* 02/12/2001: Only check 1 layer for enclosing IPV4 header
* ChangeLog since 2.1 release:
* 16/04/2002: Tidy up checksum code (like in icmp.c)
* 16/04/2002: Add support for TCP over IPV6 (code from armite <armite@163.com>)
* 26/08/2002: Fix bug where tcp length was wrong with tcp options
* ChangeLog since 2.2 release:
* 24/11/2002: made it compile on archs that care about alignment
* ChangeLog since 2.4 release:
* 21/04/2003: fix errors found by valgrind
* 10/06/2003: fix -tonum (pointed out by Yaniv Kaul <ykaul@checkpoint.com>)
* ChangeLog since 2.5 release:
* 02/03/2004: fix segfault in -tonum (pointed out by zamez)
*/
#include <sys/types.h>
#include <stdlib.h>
#include <netinet/in.h>
#include <string.h>
#include "sendip_module.h"
#include "tcp.h"
#include "ipv4.h"
#include "ipv6.h"
/* Character that identifies our options
*/
const char opt_char='t';
static void tcpcsum(sendip_data *ip_hdr, sendip_data *tcp_hdr,
sendip_data *data) {
tcp_header *tcp = (tcp_header *)tcp_hdr->data;
ip_header *ip = (ip_header *)ip_hdr->data;
u_int16_t *buf = malloc(12+tcp_hdr->alloc_len+data->alloc_len);
u_int8_t *tempbuf = (u_int8_t *)buf;
tcp->check=0;
if(tempbuf == NULL) {
fprintf(stderr,"Out of memory: TCP checksum not computed\n");
return;
}
/* Set up the pseudo header */
memcpy(tempbuf,&(ip->saddr),sizeof(u_int32_t));
memcpy(&(tempbuf[4]),&(ip->daddr),sizeof(u_int32_t));
tempbuf[8]=0;
tempbuf[9]=(u_int16_t)ip->protocol;
tempbuf[10]=(u_int16_t)((tcp_hdr->alloc_len+data->alloc_len)&0xFF00)>>8;
tempbuf[11]=(u_int16_t)((tcp_hdr->alloc_len+data->alloc_len)&0x00FF);
/* Copy the TCP header and data */
memcpy(tempbuf+12,tcp_hdr->data,tcp_hdr->alloc_len);
memcpy(tempbuf+12+tcp_hdr->alloc_len,data->data,data->alloc_len);
/* CheckSum it */
tcp->check = csum(buf,12+tcp_hdr->alloc_len+data->alloc_len);
free(buf);
}
static void tcp6csum(sendip_data *ipv6_hdr, sendip_data *tcp_hdr,
sendip_data *data) {
tcp_header *tcp = (tcp_header *)tcp_hdr->data;
ipv6_header *ipv6 = (ipv6_header *)ipv6_hdr->data;
struct ipv6_pseudo_hdr phdr;
u_int16_t *buf = malloc(sizeof(phdr)+tcp_hdr->alloc_len+data->alloc_len);
u_int8_t *tempbuf = (u_int8_t *)buf;
tcp->check=0;
if(tempbuf == NULL) {
fprintf(stderr,"Out of memory: TCP checksum not computed\n");
return;
}
/* Set up the pseudo header */
memset(&phdr,0,sizeof(phdr));
memcpy(&phdr.source,&ipv6->ip6_src,sizeof(struct in6_addr));
memcpy(&phdr.destination,&ipv6->ip6_dst,sizeof(struct in6_addr));
phdr.ulp_length=IPPROTO_TCP;
memcpy(tempbuf,&phdr,sizeof(phdr));
/* Copy the TCP header and data */
memcpy(tempbuf+sizeof(phdr),tcp_hdr->data,tcp_hdr->alloc_len);
memcpy(tempbuf+sizeof(phdr)+tcp_hdr->alloc_len,data->data,data->alloc_len);
/* CheckSum it */
tcp->check = csum(buf,sizeof(phdr)+tcp_hdr->alloc_len+data->alloc_len);
free(buf);
}
static void addoption(u_int8_t opt, u_int8_t len, u_int8_t *data,
sendip_data *pack) {
pack->data = realloc(pack->data, pack->alloc_len + len);
*((u_int8_t *)pack->data+pack->alloc_len) = opt;
if(len > 1)
*((u_int8_t *)pack->data+pack->alloc_len+1)=len;
if(len > 2)
memcpy((u_int8_t *)pack->data+pack->alloc_len+2,data,len-2);
pack->alloc_len += len;
}
sendip_data *initialize(void) {
sendip_data *ret = malloc(sizeof(sendip_data));
tcp_header *tcp = malloc(sizeof(tcp_header));
memset(tcp,0,sizeof(tcp_header));
ret->alloc_len = sizeof(tcp_header);
ret->data = (void *)tcp;
ret->modified=0;
return ret;
}
bool do_opt(char *opt, char *arg, sendip_data *pack) {
tcp_header *tcp = (tcp_header *)pack->data;
// opt[0]==t
switch(opt[1]) {
case 's':
tcp->source = htons((u_int16_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_SOURCE;
break;
case 'd':
tcp->dest = htons((u_int16_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_DEST;
break;
case 'n':
tcp->seq = htonl((u_int32_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_SEQ;
break;
case 'a':
tcp->ack_seq = htonl((u_int32_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_ACKSEQ;
if(!(pack->modified&TCP_MOD_ACK)) {
tcp->ack = 1;
pack->modified |= TCP_MOD_ACK;
}
break;
case 't':
tcp->off = (u_int16_t)strtoul(arg, (char **)NULL, 0) &0xF;
pack->modified |= TCP_MOD_OFF;
break;
case 'r':
tcp->res = (u_int16_t)(strtoul(arg, (char **)NULL, 0) & 0x000F);
pack->modified |= TCP_MOD_RES;
break;
case 'f':
switch(opt[2]) {
case 'e':
tcp->ecn=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_ECN;
break;
case 'c':
tcp->cwr=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_CWR;
break;
case 'u':
tcp->urg=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_URG;
break;
case 'a':
tcp->ack=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_ACK;
break;
case 'p':
tcp->psh=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_PSH;
break;
case 'r':
tcp->rst=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_RST;
break;
case 's':
tcp->syn=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_SYN;
break;
case 'f':
tcp->fin=(u_int16_t)*arg&1;
pack->modified |= TCP_MOD_FIN;
break;
default:
usage_error("TCP flag not known\n");
return FALSE;
}
break;
case 'w':
tcp->window = htons((u_int16_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_WINDOW;
break;
case 'c':
tcp->check = htons((u_int16_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_CHECK;
break;
case 'u':
tcp->urg_ptr = htons((u_int16_t)strtoul(arg, (char **)NULL, 0));
pack->modified |= TCP_MOD_URGPTR;
if(!(pack->modified&TCP_MOD_URG)) {
tcp->urg = 1;
pack->modified |= TCP_MOD_URG;
}
break;
case 'o':
/* TCP OPTIONS */
if(!strcmp(opt+2, "num")) {
/* Other options (auto length) */
u_int8_t *data = malloc(strlen(arg)+3);
int len;
if(!data) {
fprintf(stderr,"Out of memory!\n");
return FALSE;
}
sprintf((char*)data,"0x%s",arg);
len = compact_string((char*)data);
if(len==1)
addoption(*data,1,NULL,pack);
else
addoption(*data,len+1,data+1,pack);
free(data);
} else if (!strcmp(opt+2, "eol")) {
/* End of options list RFC 793 kind 0, no length */
addoption(0,1,NULL,pack);
} else if (!strcmp(opt+2, "nop")) {
/* No op RFC 793 kind 1, no length */
addoption(1,1,NULL,pack);
} else if (!strcmp(opt+2, "mss")) {
/* Maximum segment size RFC 793 kind 2 */
u_int16_t mss=htons(atoi(arg));
addoption(2,4,(u_int8_t *)&mss,pack);
} else if (!strcmp(opt+2, "wscale")) {
/* Window scale rfc1323 */
u_int8_t wscale=atoi(arg);
addoption(3,3,&wscale,pack);
} else if (!strcmp(opt+2, "sackok")) {
/* Selective Acknowledge permitted rfc1323 */
addoption(4,2,NULL,pack);
} else if (!strcmp(opt+2, "sack")) {
/* Selective Acknowledge rfc1323 */
char *next;
u_int32_t le, re;
u_int8_t *comb, *c;
int count=0;
/* count the options */
next=arg;
while(next) {
next=strchr(next,',');
count++;
if(next) next++;
}
comb = malloc(count*8);
c = comb;
next=arg;
while(*next) {
/* get left edge */
next=strchr(arg, ':');
if (!next) {
fprintf(stderr,
"Value in tcp sack option incorrect. Usage: \n");
fprintf(stderr,
" -tosack left:right[,left:right...]\n");
return FALSE;
}
*next++=0;
le=atoi(arg);
arg=next;
/* get right edge */
next=strchr(arg, ',');
if (!next)
next=arg-1; /* Finito - next points to \0 */
else
*next++=0;
re=atoi(arg);
arg=next;
le=htonl(le);
re=htonl(re);
memcpy(c, &le, 4);
memcpy(c+4, &re, 4);
c+=8;
}
addoption(5,count*8+2,comb,pack);
free(comb);
} else if (!strcmp(opt+2, "ts")) {
/* Timestamp rfc1323 */
u_int32_t tsval=0, tsecr=0;
u_int8_t comb[8];
if (2!=sscanf(arg, "%d:%d", &tsval, &tsecr)) {
fprintf(stderr,
"Invalid value for tcp timestamp option.\n");
fprintf(stderr,
"Usage: -tots tsval:tsecr\n");
return FALSE;
}
tsval=htonl(tsval);
memcpy(comb, &tsval, 4);
tsecr=htonl(tsecr);
memcpy(comb+4, &tsecr, 4);
addoption(8,10,comb,pack);
} else {
/* Unrecognized -to* */
fprintf(stderr, "unsupported TCP Option %s val %s\n",
opt, arg);
return FALSE;
}
break;
default:
usage_error("unknown TCP option\n");
return FALSE;
break;
}
return TRUE;
}
bool finalize(char *hdrs, sendip_data *headers[], sendip_data *data,
sendip_data *pack) {
tcp_header *tcp = (tcp_header *)pack->data;
/* Set relevant fields */
if(!(pack->modified&TCP_MOD_SEQ)) {
tcp->seq = (u_int32_t)rand();
}
if(!(pack->modified&TCP_MOD_OFF)) {
tcp->off = (u_int16_t)((pack->alloc_len+3)/4) & 0x0F;
}
if(!(pack->modified&TCP_MOD_SYN)) {
tcp->syn=1;
}
if(!(pack->modified&TCP_MOD_WINDOW)) {
tcp->window=htons((u_int16_t)65535);
}
/* Find enclosing IP header and do the checksum */
if(hdrs[strlen(hdrs)-1]=='i') {
int i = strlen(hdrs)-1;
if(!(headers[i]->modified&IP_MOD_PROTOCOL)) {
((ip_header *)(headers[i]->data))->protocol=IPPROTO_TCP;
headers[i]->modified |= IP_MOD_PROTOCOL;
}
if(!(pack->modified&TCP_MOD_CHECK)) {
tcpcsum(headers[i],pack,data);
}
} else if(hdrs[strlen(hdrs)-1]=='6') {
int i = strlen(hdrs)-1;
if(!(headers[i]->modified&IPV6_MOD_NXT)) {
((ipv6_header *)(headers[i]->data))->ip6_nxt=IPPROTO_TCP;
headers[i]->modified |= IPV6_MOD_NXT;
}
if(!(pack->modified&TCP_MOD_CHECK)) {
tcp6csum(headers[i],pack,data);
}
} else {
if(!(pack->modified&TCP_MOD_CHECK)) {
usage_error("TCP checksum not defined when TCP is not embedded in IP\n");
return FALSE;
}
}
return TRUE;
}
int num_opts() {
return sizeof(tcp_opts)/sizeof(sendip_option);
}
sendip_option *get_opts() {
return tcp_opts;
}
char get_optchar() {
return opt_char;
}
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