* Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*/
-#include <string.h>
#include <errno.h>
#include <stdlib.h>
#include <unistd.h>
for (qu= ads->timew.head; qu; qu= nqu) {
nqu= qu->next;
- if (qu->state == query_udp) continue;
+ if (qu->state == query_tosend) continue;
assert(qu->state == query_tcpwait || qu->state == query_tcpsent);
qu->state= query_tcpwait;
qu->tcpfailed |= (1<<serv);
ads->tcpstate= server_ok;
for (qu= ads->timew.head; qu; qu= nqu) {
nqu= qu->next;
- if (qu->state == query_udp) continue;
+ if (qu->state == query_tosend) continue;
assert (qu->state == query_tcpwait);
adns__query_tcp(qu,now);
}
for (qu= ads->timew.head; qu; qu= nqu) {
nqu= qu->next;
- if (timercmp(&now,&qu->timeout,<=)) {
+ if (!timercmp(&now,&qu->timeout,>)) {
if (!tv_io) continue;
inter_maxtoabs(tv_io,tvbuf,now,qu->timeout);
} else {
if (!act) continue;
LIST_UNLINK(ads->timew,qu);
- if (qu->state != query_udp) {
+ if (qu->state != query_tosend) {
adns__query_fail(qu,adns_s_timeout);
} else {
- adns__query_udp(qu,now);
+ adns__query_send(qu,now);
}
nqu= ads->timew.head;
}
void adns_firsttimeout(adns_state ads,
struct timeval **tv_io, struct timeval *tvbuf,
struct timeval now) {
+ adns__consistency(ads,0,cc_entex);
adns__timeouts(ads, 0, tv_io,tvbuf, now);
+ adns__consistency(ads,0,cc_entex);
}
void adns_processtimeouts(adns_state ads, const struct timeval *now) {
struct timeval tv_buf;
- adns__must_gettimeofday(ads,&now,&tv_buf); if (!now) return;
- adns__timeouts(ads, 1, 0,0, *now);
+ adns__consistency(ads,0,cc_entex);
+ adns__must_gettimeofday(ads,&now,&tv_buf);
+ if (now) adns__timeouts(ads, 1, 0,0, *now);
+ adns__consistency(ads,0,cc_entex);
}
/* fd handling functions. These are the top-level of the real work of
abort();
}
pollfds_buf[1].fd= ads->tcpsocket;
- pollfds_buf[1].revents= 0;
return 2;
}
byte udpbuf[DNS_MAXUDP];
struct sockaddr_in udpaddr;
+ adns__consistency(ads,0,cc_entex);
+
switch (ads->tcpstate) {
case server_disconnected:
case server_connecting:
if (ads->tcprecv.used<skip+2+dgramlen) {
want= 2+dgramlen;
} else {
- adns__procdgram(ads,ads->tcprecv.buf+skip+2,dgramlen,ads->tcpserver,*now);
+ adns__procdgram(ads,ads->tcprecv.buf+skip+2,dgramlen,ads->tcpserver,1,*now);
skip+= 2+dgramlen; continue;
}
}
ads->tcprecv.used -= skip;
memmove(ads->tcprecv.buf,ads->tcprecv.buf+skip,ads->tcprecv.used);
skip= 0;
- if (!adns__vbuf_ensure(&ads->tcprecv,want)) return ENOMEM;
+ if (!adns__vbuf_ensure(&ads->tcprecv,want)) { r= ENOMEM; goto xit; }
assert(ads->tcprecv.used <= ads->tcprecv.avail);
if (ads->tcprecv.used == ads->tcprecv.avail) continue;
r= read(ads->tcpsocket,
ads->tcprecv.used+= r;
} else {
if (r) {
- if (errno==EAGAIN || errno==EWOULDBLOCK) return 0;
+ if (errno==EAGAIN || errno==EWOULDBLOCK) { r= 0; goto xit; }
if (errno==EINTR) continue;
- if (errno_resources(errno)) return errno;
+ if (errno_resources(errno)) { r= errno; goto xit; }
}
adns__tcp_broken(ads,"read",r?strerror(errno):"closed");
- return 0;
+ r= 0; goto xit;
}
} /* never reached */
default:
r= recvfrom(ads->udpsocket,udpbuf,sizeof(udpbuf),0,
(struct sockaddr*)&udpaddr,&udpaddrlen);
if (r<0) {
- if (errno == EAGAIN || errno == EWOULDBLOCK) return 0;
+ if (errno == EAGAIN || errno == EWOULDBLOCK) { r= 0; goto xit; }
if (errno == EINTR) continue;
- if (errno_resources(errno)) return errno;
+ if (errno_resources(errno)) { r= errno; goto xit; }
adns__warn(ads,-1,0,"datagram receive error: %s",strerror(errno));
- return 0;
+ r= 0; goto xit;
}
if (udpaddrlen != sizeof(udpaddr)) {
adns__diag(ads,-1,0,"datagram received with wrong address length %d"
inet_ntoa(udpaddr.sin_addr));
continue;
}
- adns__procdgram(ads,udpbuf,r,serv,*now);
+ adns__procdgram(ads,udpbuf,r,serv,0,*now);
}
}
- return 0;
+ r= 0;
+xit:
+ adns__consistency(ads,0,cc_entex);
+ return r;
}
int adns_processwriteable(adns_state ads, int fd, const struct timeval *now) {
int r;
+ adns__consistency(ads,0,cc_entex);
+
switch (ads->tcpstate) {
case server_disconnected:
break;
if (fd != ads->tcpsocket) break;
assert(ads->tcprecv.used==0);
for (;;) {
- if (!adns__vbuf_ensure(&ads->tcprecv,1)) return ENOMEM;
+ if (!adns__vbuf_ensure(&ads->tcprecv,1)) { r= ENOMEM; goto xit; }
r= read(ads->tcpsocket,&ads->tcprecv.buf,1);
if (r==0 || (r<0 && (errno==EAGAIN || errno==EWOULDBLOCK))) {
tcp_connected(ads,*now);
- return 0;
+ r= 0; goto xit;
}
if (r>0) {
adns__tcp_broken(ads,"connect/read","sent data before first request");
- return 0;
+ r= 0; goto xit;
}
if (errno==EINTR) continue;
- if (errno_resources(errno)) return errno;
+ if (errno_resources(errno)) { r= errno; goto xit; }
adns__tcp_broken(ads,"connect/read",strerror(errno));
- return 0;
+ r= 0; goto xit;
} /* not reached */
case server_ok:
if (!(ads->tcpsend.used && fd == ads->tcpsocket)) break;
adns__sigpipe_unprotect(ads);
if (r<0) {
if (errno==EINTR) continue;
- if (errno==EAGAIN || errno==EWOULDBLOCK) return 0;
- if (errno_resources(errno)) return errno;
+ if (errno==EAGAIN || errno==EWOULDBLOCK) { r= 0; goto xit; }
+ if (errno_resources(errno)) { r= errno; goto xit; }
adns__tcp_broken(ads,"write",strerror(errno));
- return 0;
+ r= 0; goto xit;
} else if (r>0) {
ads->tcpsend.used -= r;
memmove(ads->tcpsend.buf,ads->tcpsend.buf+r,ads->tcpsend.used);
default:
abort();
}
- return 0;
+ r= 0;
+xit:
+ adns__consistency(ads,0,cc_entex);
+ return r;
}
int adns_processexceptional(adns_state ads, int fd, const struct timeval *now) {
+ adns__consistency(ads,0,cc_entex);
switch (ads->tcpstate) {
case server_disconnected:
break;
case server_ok:
if (fd != ads->tcpsocket) break;
adns__tcp_broken(ads,"poll/select","exceptional condition detected");
- return 0;
+ break;
default:
abort();
}
+ adns__consistency(ads,0,cc_entex);
return 0;
}
struct pollfd pollfds[MAX_POLLFDS];
int i, fd, maxfd, npollfds;
+ adns__consistency(ads,0,cc_entex);
+
if (tv_mod && (!*tv_mod || (*tv_mod)->tv_sec || (*tv_mod)->tv_usec)) {
/* The caller is planning to sleep. */
adns__must_gettimeofday(ads,&now,&tv_nowbuf);
- if (!now) return;
+ if (!now) goto xit;
adns__timeouts(ads, 1, tv_mod,tv_tobuf, *now);
}
if (pollfds[i].events & POLLPRI) FD_SET(fd,exceptfds_io);
}
*maxfd_io= maxfd;
+
+xit:
+ adns__consistency(ads,0,cc_entex);
}
void adns_afterselect(adns_state ads, int maxfd, const fd_set *readfds,
struct pollfd pollfds[MAX_POLLFDS];
int npollfds, i;
+ adns__consistency(ads,0,cc_entex);
adns__must_gettimeofday(ads,&now,&tv_buf);
- if (!now) return;
+ if (!now) goto xit;
adns_processtimeouts(ads,now);
npollfds= adns__pollfds(ads,pollfds);
pollfds,npollfds,
maxfd,readfds,writefds,exceptfds,
*now, 0);
+xit:
+ adns__consistency(ads,0,cc_entex);
}
/* General helpful functions. */
void adns_globalsystemfailure(adns_state ads) {
+ adns__consistency(ads,0,cc_entex);
+
while (ads->timew.head) {
adns__query_fail(ads->timew.head, adns_s_systemfail);
}
default:
abort();
}
+ adns__consistency(ads,0,cc_entex);
}
int adns_processany(adns_state ads) {
struct pollfd pollfds[MAX_POLLFDS];
int npollfds;
+ adns__consistency(ads,0,cc_entex);
+
r= gettimeofday(&now,0);
if (!r) adns_processtimeouts(ads,&now);
pollfds,npollfds,
0,0,0,0,
now,&r);
+
+ adns__consistency(ads,0,cc_entex);
return r;
}
LIST_UNLINK(ads->output,qu);
*answer= qu->answer;
if (context_r) *context_r= qu->ctx.ext;
+ *query_io= qu;
free(qu);
return 0;
}
fd_set readfds, writefds, exceptfds;
struct timeval tvbuf, *tvp;
+ adns__consistency(ads,*query_io,cc_entex);
for (;;) {
r= internal_check(ads,query_io,answer_r,context_r);
- if (r != EWOULDBLOCK) return r;
+ if (r != EWOULDBLOCK) break;
maxfd= 0; tvp= 0;
FD_ZERO(&readfds); FD_ZERO(&writefds); FD_ZERO(&exceptfds);
adns_beforeselect(ads,&maxfd,&readfds,&writefds,&exceptfds,&tvp,&tvbuf,0);
rsel= select(maxfd,&readfds,&writefds,&exceptfds,tvp);
if (rsel==-1) {
if (errno == EINTR) {
- if (ads->iflags & adns_if_eintr) return EINTR;
+ if (ads->iflags & adns_if_eintr) { r= EINTR; break; }
} else {
adns__diag(ads,-1,0,"select failed in wait: %s",strerror(errno));
adns_globalsystemfailure(ads);
adns_afterselect(ads,maxfd,&readfds,&writefds,&exceptfds,0);
}
}
+ adns__consistency(ads,0,cc_entex);
+ return r;
}
int adns_check(adns_state ads,
struct timeval now;
int r;
+ adns__consistency(ads,*query_io,cc_entex);
r= gettimeofday(&now,0);
if (!r) adns__autosys(ads,now);
-
- return internal_check(ads,query_io,answer_r,context_r);
+
+ r= internal_check(ads,query_io,answer_r,context_r);
+ adns__consistency(ads,0,cc_entex);
+ return r;
}