#include "u.h"
#include "../port/lib.h"
#include "mem.h"
#include "dat.h"
#include "fns.h"
#include "../port/error.h"
#include "ip.h"
#define DPRINT if(0)print
enum
{
UDP_PHDRSIZE = 12,
UDP_HDRSIZE = 20,
UDP_IPHDR = 8,
IP_UDPPROTO = 17,
UDP_USEAD = 12,
Udprxms = 200,
Udptickms = 100,
Udpmaxxmit = 10,
};
typedef struct Udphdr Udphdr;
struct Udphdr
{
/* ip header */
byte vihl; /* Version and header length */
byte tos; /* Type of service */
byte length[2]; /* packet length */
byte id[2]; /* Identification */
byte frag[2]; /* Fragment information */
byte Unused;
byte udpproto; /* Protocol */
byte udpplen[2]; /* Header plus data length */
byte udpsrc[4]; /* Ip source */
byte udpdst[4]; /* Ip destination */
/* udp header */
byte udpsport[2]; /* Source port */
byte udpdport[2]; /* Destination port */
byte udplen[2]; /* data length */
byte udpcksum[2]; /* Checksum */
};
/*
* protocol specific part of Conv
*/
typedef struct Udpcb Udpcb;
struct Udpcb
{
QLock;
byte headers;
};
Proto udp;
int udpsum;
uint generation;
extern Fs fs;
int udpdebug;
static char*
udpconnect(Conv *c, char **argv, int argc)
{
char *e;
e = Fsstdconnect(c, argv, argc);
Fsconnected(&fs, c, e);
return e;
}
int
udpstate(char **s, Conv *c)
{
USED(c);
*s = "Datagram";
return 1;
}
static char*
udpannounce(Conv *c, char** argv, int argc)
{
char *e;
e = Fsstdannounce(c, argv, argc);
if(e != nil)
return e;
Fsconnected(&fs, c, nil);
return nil;
}
static void
udpcreate(Conv *c)
{
c->rq = qopen(64*1024, 1, 0, 0);
c->wq = qopen(64*1024, 0, 0, 0);
}
static void
udpclose(Conv *c)
{
Udpcb *ucb;
qclose(c->rq);
qclose(c->wq);
qclose(c->eq);
c->laddr = 0;
c->raddr = 0;
c->lport = 0;
c->rport = 0;
ucb = (Udpcb*)c->ptcl;
ucb->headers = 0;
unlock(c);
}
void
udpkick(Conv *c, int l)
{
Udphdr *uh;
ushort rport;
Ipaddr laddr, raddr;
Block *bp;
Udpcb *ucb;
int dlen, ptcllen;
USED(l);
bp = qget(c->wq);
if(bp == nil)
return;
ucb = (Udpcb*)c->ptcl;
if(ucb->headers) {
/* get user specified addresses */
bp = pullupblock(bp, UDP_USEAD);
if(bp == nil) {
freeblist(bp);
return;
}
raddr = nhgetl(bp->rp);
bp->rp += 4;
laddr = nhgetl(bp->rp);
if(laddr != 0 && Mediaforme(bp->rp) <= 0)
laddr = 0;
bp->rp += 4;
rport = nhgets(bp->rp);
bp->rp += 2;
/* ignore local port number */
bp->rp += 2;
} else {
raddr = 0;
rport = 0;
laddr = 0;
}
dlen = blocklen(bp);
/* Make space to fit udp & ip header */
bp = padblock(bp, UDP_IPHDR+UDP_HDRSIZE);
if(bp == nil)
return;
uh = (Udphdr *)(bp->rp);
ptcllen = dlen + (UDP_HDRSIZE-UDP_PHDRSIZE);
uh->Unused = 0;
uh->udpproto = IP_UDPPROTO;
uh->frag[0] = 0;
uh->frag[1] = 0;
hnputs(uh->udpplen, ptcllen);
if(ucb->headers) {
hnputl(uh->udpdst, raddr);
hnputs(uh->udpdport, rport);
if(laddr)
hnputl(uh->udpsrc, laddr);
else
hnputl(uh->udpsrc, Mediagetsrc(uh->udpdst));
} else {
hnputl(uh->udpdst, c->raddr);
hnputs(uh->udpdport, c->rport);
hnputl(uh->udpsrc, c->laddr);
}
hnputs(uh->udpsport, c->lport);
hnputs(uh->udplen, ptcllen);
uh->udpcksum[0] = 0;
uh->udpcksum[1] = 0;
hnputs(uh->udpcksum, ptclcsum(bp, UDP_IPHDR, dlen+UDP_HDRSIZE));
ipoput(bp, 0, c->ttl);
}
void
udpiput(Media *m, Block *bp)
{
int len, olen, ottl;
Udphdr *uh;
Conv *c, **p;
Udpcb *ucb;
Ipaddr raddr, laddr;
ushort rport, lport;
uchar dst[IPaddrlen];
uchar src[IPaddrlen];
USED(m);
uh = (Udphdr*)(bp->rp);
/* Put back pseudo header for checksum (remember old values for icmpnoconv()) */
ottl = uh->Unused;
uh->Unused = 0;
len = nhgets(uh->udplen);
olen = nhgets(uh->udpplen);
hnputs(uh->udpplen, len);
raddr = nhgetl(uh->udpsrc);
laddr = nhgetl(uh->udpdst);
lport = nhgets(uh->udpdport);
rport = nhgets(uh->udpsport);
memmove(src, uh->udpsrc, IPaddrlen);
memmove(dst, uh->udpdst, IPaddrlen);
if(udpsum && nhgets(uh->udpcksum)) {
if(ptclcsum(bp, UDP_IPHDR, len+UDP_PHDRSIZE)) {
udp.csumerr++;
netlog(Logudp, "udp: checksum error %I\n", src);
freeblist(bp);
return;
}
}
/* Look for a conversation structure for this port */
c = nil;
for(p = udp.conv; *p; p++) {
c = *p;
if(c->inuse == 0)
continue;
if(c->lport == lport && (c->rport == 0 || c->rport == rport))
break;
}
if(*p == nil) {
netlog(Logudp, "udp: no conv %I.%d -> %I.%d\n", src, rport,
dst, lport);
/* don't complain about broadcasts... */
if(Mediaforme(dst) > 0){
uh->Unused = ottl;
hnputs(uh->udpplen, olen);
icmpnoconv(bp);
}
freeblist(bp);
return;
}
/*
* Trim the packet down to data size
*/
len -= (UDP_HDRSIZE-UDP_PHDRSIZE);
bp = trimblock(bp, UDP_IPHDR+UDP_HDRSIZE, len);
if(bp == nil){
netlog(Logudp, "udp: len err %I.%d -> %I.%d\n", src, rport,
dst, lport);
udp.lenerr++;
return;
}
netlog(Logudpmsg, "udp: %I.%d -> %I.%d l %d\n", src, rport,
dst, lport, len);
ucb = (Udpcb*)c->ptcl;
if(ucb->headers) {
/* pass the src address */
bp = padblock(bp, UDP_USEAD);
hnputl(bp->rp, raddr);
if(Mediaforme(dst) > 0)
hnputl(bp->rp+4, laddr);
else if(m != 0)
hnputl(bp->rp+4, m->myip[0]);
else if(media != 0)
hnputl(bp->rp+4, media->myip[0]);
else
hnputl(bp->rp+4, laddr);
hnputs(bp->rp+8, rport);
hnputs(bp->rp+10, lport);
} else {
/* connection oriented udp */
if(c->raddr == 0){
/* save the src address in the conversation */
c->raddr = raddr;
c->rport = rport;
/* reply with the same ip address (if not broadcast) */
if(Mediaforme(dst) > 0)
c->laddr = laddr;
else
c->laddr = m->myip[0];
}
}
if(bp->next)
bp = concatblock(bp);
if(qfull(c->rq)){
netlog(Logudp, "udp: qfull %I.%d -> %I.%d\n", src, rport,
dst, lport);
freeblist(bp);
}else
qpass(c->rq, bp);
}
char*
udpctl(Conv *c, char **f, int n)
{
Udpcb *ucb;
ucb = (Udpcb*)c->ptcl;
if(n == 1 && strcmp(f[0], "headers") == 0){
ucb->headers = 1;
return nil;
}
if(n == 1 && strcmp(f[0], "debug") == 0){
udpdebug = 1;
return nil;
}
return "unknown control request";
}
void
udpadvise(Block *bp, char *msg)
{
Udphdr *h;
Ipaddr source, dest;
ushort psource, pdest;
Conv *s, **p;
h = (Udphdr*)(bp->rp);
dest = nhgetl(h->udpdst);
source = nhgetl(h->udpsrc);
psource = nhgets(h->udpsport);
pdest = nhgets(h->udpdport);
/* Look for a connection */
for(p = udp.conv; *p; p++) {
s = *p;
if(s->rport == pdest && s->lport == psource)
if(s->raddr == dest && s->laddr == source){
qhangup(s->rq, msg);
qhangup(s->wq, msg);
break;
}
}
freeblist(bp);
}
void
udpinit(Fs *fs)
{
udp.name = "udp";
udp.kick = udpkick;
udp.connect = udpconnect;
udp.announce = udpannounce;
udp.ctl = udpctl;
udp.state = udpstate;
udp.create = udpcreate;
udp.close = udpclose;
udp.rcv = udpiput;
udp.advise = udpadvise;
udp.ipproto = IP_UDPPROTO;
udp.nc = 16;
udp.ptclsize = sizeof(Udpcb);
Fsproto(fs, &udp);
}