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https://github.com/clearml/dropbear
synced 2025-01-31 02:46:58 +00:00
Fix y2038 issues with time_t conversion
These changes were identified by building with and without -D_TIME_BITS=64 -D_FILE_OFFSET_BITS=64 on 32-bit arm, logging warnings to files. -Wconversion was added to CFLAGS in both builds. Then a "diff -I Wconversion log1 log2" shows new warnings that appear with the 64-bit time_t. There are a few false positives that have been fixed for quietness. struct logininfo and struct wtmp are still problematic, those will need to be handled by libc.
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bd94cb712c
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@ -519,15 +519,24 @@ static void send_msg_keepalive() {
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ses.last_packet_time_idle = old_time_idle;
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}
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/* Returns the difference in seconds, clamped to LONG_MAX */
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static long elapsed(time_t now, time_t prev) {
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time_t del = now - prev;
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if (del > LONG_MAX) {
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return LONG_MAX;
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}
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return (long)del;
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}
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/* Check all timeouts which are required. Currently these are the time for
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* user authentication, and the automatic rekeying. */
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static void checktimeouts() {
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time_t now;
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now = monotonic_now();
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if (IS_DROPBEAR_SERVER && ses.connect_time != 0
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&& now - ses.connect_time >= AUTH_TIMEOUT) {
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&& elapsed(now, ses.connect_time) >= AUTH_TIMEOUT) {
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dropbear_close("Timeout before auth");
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}
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@ -537,45 +546,47 @@ static void checktimeouts() {
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}
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if (!ses.kexstate.sentkexinit
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&& (now - ses.kexstate.lastkextime >= KEX_REKEY_TIMEOUT
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&& (elapsed(now, ses.kexstate.lastkextime) >= KEX_REKEY_TIMEOUT
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|| ses.kexstate.datarecv+ses.kexstate.datatrans >= KEX_REKEY_DATA)) {
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TRACE(("rekeying after timeout or max data reached"))
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send_msg_kexinit();
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}
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if (opts.keepalive_secs > 0 && ses.authstate.authdone) {
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/* Avoid sending keepalives prior to auth - those are
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not valid pre-auth packet types */
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/* Send keepalives if we've been idle */
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if (now - ses.last_packet_time_any_sent >= opts.keepalive_secs) {
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if (elapsed(now, ses.last_packet_time_any_sent) >= opts.keepalive_secs) {
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send_msg_keepalive();
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}
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/* Also send an explicit keepalive message to trigger a response
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if the remote end hasn't sent us anything */
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if (now - ses.last_packet_time_keepalive_recv >= opts.keepalive_secs
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&& now - ses.last_packet_time_keepalive_sent >= opts.keepalive_secs) {
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if (elapsed(now, ses.last_packet_time_keepalive_recv) >= opts.keepalive_secs
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&& elapsed(now, ses.last_packet_time_keepalive_sent) >= opts.keepalive_secs) {
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send_msg_keepalive();
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}
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if (now - ses.last_packet_time_keepalive_recv
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if (elapsed(now, ses.last_packet_time_keepalive_recv)
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>= opts.keepalive_secs * DEFAULT_KEEPALIVE_LIMIT) {
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dropbear_exit("Keepalive timeout");
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}
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}
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if (opts.idle_timeout_secs > 0
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&& now - ses.last_packet_time_idle >= opts.idle_timeout_secs) {
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if (opts.idle_timeout_secs > 0
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&& elapsed(now, ses.last_packet_time_idle) >= opts.idle_timeout_secs) {
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dropbear_close("Idle timeout");
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}
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}
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static void update_timeout(long limit, long now, long last_event, long * timeout) {
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TRACE2(("update_timeout limit %ld, now %ld, last %ld, timeout %ld",
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limit, now, last_event, *timeout))
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static void update_timeout(long limit, time_t now, time_t last_event, long * timeout) {
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TRACE2(("update_timeout limit %ld, now %llu, last %llu, timeout %ld",
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limit,
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(unsigned long long)now,
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(unsigned long long)last_event, *timeout))
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if (last_event > 0 && limit > 0) {
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*timeout = MIN(*timeout, last_event+limit-now);
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*timeout = MIN(*timeout, elapsed(now, last_event) + limit);
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TRACE2(("new timeout %ld", *timeout))
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}
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}
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@ -584,7 +595,7 @@ static long select_timeout() {
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/* determine the minimum timeout that might be required, so
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as to avoid waking when unneccessary */
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long timeout = KEX_REKEY_TIMEOUT;
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long now = monotonic_now();
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time_t now = monotonic_now();
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if (!ses.kexstate.sentkexinit) {
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update_timeout(KEX_REKEY_TIMEOUT, now, ses.kexstate.lastkextime, &timeout);
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@ -596,7 +607,7 @@ static long select_timeout() {
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}
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if (ses.authstate.authdone) {
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update_timeout(opts.keepalive_secs, now,
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update_timeout(opts.keepalive_secs, now,
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MAX(ses.last_packet_time_keepalive_recv, ses.last_packet_time_keepalive_sent),
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&timeout);
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}
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2
dbutil.c
2
dbutil.c
@ -724,7 +724,7 @@ void gettime_wrapper(struct timespec *now) {
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/* Fallback for everything else - this will sometimes go backwards */
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gettimeofday(&tv, NULL);
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now->tv_sec = tv.tv_sec;
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now->tv_nsec = 1000*tv.tv_usec;
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now->tv_nsec = 1000*(long)tv.tv_usec;
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}
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/* second-resolution monotonic timestamp */
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@ -459,6 +459,7 @@ line_abbrevname(char *dst, const char *src, size_t dstsize)
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void
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set_utmp_time(struct logininfo *li, struct utmp *ut)
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{
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/* struct utmp in glibc isn't y2038 safe yet */
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# ifdef HAVE_STRUCT_UTMP_UT_TV
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ut->ut_tv.tv_sec = li->tv_sec;
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ut->ut_tv.tv_usec = li->tv_usec;
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@ -1272,6 +1273,7 @@ lastlog_construct(struct logininfo *li, struct lastlog *last)
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(void)line_stripname(last->ll_line, li->line, sizeof(last->ll_line));
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strlcpy(last->ll_host, li->hostname,
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MIN_SIZEOF(last->ll_host, li->hostname));
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/* struct lastlog in glibc isn't y2038 safe yet */
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last->ll_time = li->tv_sec;
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}
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@ -139,8 +139,8 @@ struct logininfo {
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/* struct timeval (sys/time.h) isn't always available, if it isn't we'll
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* use time_t's value as tv_sec and set tv_usec to 0
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*/
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unsigned int tv_sec;
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unsigned int tv_usec;
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time_t tv_sec;
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suseconds_t tv_usec;
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union login_netinfo hostaddr; /* caller's host address(es) */
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}; /* struct logininfo */
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@ -39,8 +39,8 @@ typedef struct runopts {
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int listen_fwd_all;
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#endif
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unsigned int recv_window;
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time_t keepalive_secs; /* Time between sending keepalives. 0 is off */
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time_t idle_timeout_secs; /* Exit if no traffic is sent/received in this time */
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long keepalive_secs; /* Time between sending keepalives. 0 is off */
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long idle_timeout_secs; /* Exit if no traffic is sent/received in this time */
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int usingsyslog;
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#ifndef DISABLE_ZLIB
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@ -389,7 +389,7 @@ void send_msg_userauth_failure(int partial, int incrfail) {
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Beware of integer overflow if increasing these values */
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const unsigned int mindelay = 250000000;
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const unsigned int vardelay = 100000000;
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unsigned int rand_delay;
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suseconds_t rand_delay;
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struct timespec delay;
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gettime_wrapper(&delay);
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