This ensures we don't pass data (via msg_control) defined in a different
scope to sendmsg(). Actually, some compilers (e.g. GCC 5.2.1) might
optimize the memcpy() call away causing the packets not to get sent from
the intended source address.
It also makes the code clearer than with all these ifdefs.
Fixes#1171.
In some scenarios an IKE_SA might get restarted multiple times (e.g.
due to retransmits and delayed INVALID_KE_PAYLOAD notifies) so that
two IKE_SA_INIT messages might be sent that only differ in the
previously randomly generated NAT_DETECTION_SOURCE_IP payload.
This could cause an authentication failure on the responder if the two
peers don't use the same IKE_SA_INIT message in their InitiatorSignedOctets.
While the payload is generated in a reproducible way it will still change
when the daemon is restarted, which should make detecting the payloads
as fake a bit harder (compared to e.g. just using 0.0.0.0:0 as address).
Fixes#1131.
If the job gets queued for a newly created IKE_SA it might not yet be
checked in when the job is running, reschedule the job in that case.
This should fix the two p2pnat test scenarios, which occasionally
failed because one of the peers did not initiate the connection to
the mediation server.
In some cases we call wait_for_entry() but don't actually check out the
entry afterwards (e.g. because it doesn't match certain criteria). So
there won't be a call to checkin() for such entries causing waiting
threads to get signaled. Instead, such threads would be blocked until
another thread properly checks out/in the entry (or does a blocking
enumeration).
The `nat-local` and `nat-remote` keys contain information on the NAT
status of the local and remote IKE endpoints, respectively. If a
responder did not detect a NAT but is configured to fake a NAT situation
this is indicated by `nat-fake` (if an initiator fakes a NAT situation
`nat-local` is set). If any NAT is detected or faked `nat-any` is set.
Closesstrongswan/strongswan#16.
If we haven't received the third QM message for multiple exchanges the
return value of NEED_MORE for passive tasks that are not responsible for
a specific exchange would trigger a fourth empty QM message.
Fixes: 4de361d92c ("ikev1: Fix handling of overlapping Quick Mode exchanges")
References #1076.
Previously, the current segment was held while checking for duplicate
SAs, which requires acquiring all segments. If multiple threads did this
concurrently this resulted in a deadlock as they couldn't acquire the
segments held by the other threads attempting to do the same. With the
default configuration only one segment is used, which prevents the problem
as only one thread can check in an IKE SA concurrently.
Fixes: a064eaa8a6 ("Handling of initial contact")
left|rightsubnet default to %dynamic, which is basically 0.0.0.0/0 until an
address is assigned to it. So if only one side was undefined and the other
traffic selector was IPv6 an address family mismatch would occur.
References #595.
From recvfrom(2) (which UDPSocket#recv backs into):
The return value will be 0 when the peer has performed an orderly
shutdown.
(i.e. it will return an empty string)
Previously in this scenario, Vici::Transport#recv_all would spin
forever trying to pull more data off the socket. I'm not entirely
clear what happened that caused strongSwan to shutdown the socket, but
it probably should not cause vici Ruby apps to spin.
Closesstrongswan/strongswan#13.
When retrying due to a DH group mismatch this is already done by the
child-create task itself. And in other cases where the task returns
NEED_MORE we actually will need access to a possible proposal to properly
delete it.
If the responder declines our KE payload during a CHILD_SA rekeying migrate()
is called to reuse the child-create task. But the child-rekey task then
calls the same method again.
Fixes: 32df0d81fb ("child-create: Destroy nonceg in migrate()")
Since 11c14bd2f5 CA certificates referenced in ca sections were
enumerated by two credential sets if they were also stored in
ipsec.d/cacerts. This caused duplicate certificate requests to
get sent. All CA certificates, whether loaded automatically or
via a ca section, are now stored in stroke_ca_t.
Certificates referenced in ca sections are now also reloaded
when `ipsec rereadcacerts` is used.