If the routing rule we use to direct traffic to our own routing table
excludes traffic with a certain mark (fwmark = !<mark>) we can simplify
the route lookup and avoid dumping all routes by passing the mark to the
request. That way our own routes are ignored and we get the preferred
route back without having to dump and analyze all routes, which is quite a
burden on hosts with lots of routes.
This may happen if something like `echo ... > /path/to/fifo` is used
before the plugin was able to create the FIFO. In that case we'd end
up in a loop always reading the same values from the static file.
Some implementations don't send a Key Length attribute for AES-128.
This was allowed for IKE in early drafts of RFC 3602, however, some
implementations also seem to do it for ESP, where it never was allowed.
And the final version of RFC 3602 demands a Key Length attribute for both
phases so they shouldn't do it anymore anyway.
Fixes#1064.
Not sure if defining multiple CA constraints and enforcing _all_ of them,
i.e. the previous behavior, makes even sense. To ensure a very specific
chain it should be enough to define the last intermediate CA. On the
other hand, the ability to define multiple CAs could simplify configuration.
This can currently only be used with swanctl/VICI based configs as `rightca`
only takes a single DN.
During a rekeying we want to reuse the current reqid, but if the new SA
does not allocate it via kernel-interface the state there will disappear
when the old SA is destroyed after the rekeying. When the IKE_SA is
later reauthenticated with make-before-break reauthentication the new
CHILD_SAs there will get new reqids as no existing state is found in the
kernel-interface, breaking policy installation in the kernel.
Fixes: a49393954f ("child-sa: Use any fixed reqid configured on the CHILD_SA config")
This can be useful if the subject DN has to be configured with the
asn1dn: prefix in ipsec.conf (e.g. because the actual encoding can't be
created by strongSwan's string parser/encoder).
Vendor specific EAP methods may be registered with:
PLUGIN_CALLBACK(eap_method_register, <constructor>),
PLUGIN_PROVIDE(EAP_SERVER_VENDOR, <type>, <vendor>),
Same for client implementations via EAP_PEER_VENDOR.
References #969.
Calling malloc() after fork() is potentially unsafe, so we should avoid
it if possible. opendir() will still require an allocation but that's
less than the variant using the enumerator wrapper, thus, decreasing
the conflict potential. This way we can also avoid closing the
FD for the enumerated directory itself.
References #990.
Documents the ike/child-updown events and adds a ike/child-rekey event
and a new listen() method in the Python VICI bindings to listen for
arbitrary events (similar to the listen_events() method in the Ruby
bindings).
This may be the case when SAs are reestablished after a crash of the
IKE daemon.
We could actually always do updates. The kernel doesn't care, the only
difference is the possible EEXIST if XFRM_MSG_NEWPOLICY is used. The
advantage of not doing this, though, is that we get a warning in the log
if a policy already exists, as that should usually not be the case.
When strings in RDNs contain characters outside the character set for
PrintableString use UTF8String as the passed string is most likely in
that encoding (RFC 5280 actually recommends to use only those two
string types).
strongSwan uses PrintableString when encoding DNs from strings (if the
character set permits it, otherwise T61String is currently used) but
certificates might be encoded with UTF8String even for simple ASCII strings.
By ignoring this string type when hashing RDNs we make sure the same hash
results in this case as long as the actual string values are the same.
Fixes#991.
Compared to hashing the encoding we can ignore string types of RDNs when
hashing DNs, making hash() compatible to equals() that does the same.
Fixes#991.
Some tokens/libraries seem to prefix all numbers with zero bytes even
if not necessary (e.g. the default exponent 0x010001). If we don't fix
that, the fingerprints calculated based on the retrieved values will be
incorrect.
Even if the pkcs1 plugin can properly handle numbers that are not in
two's complement since a81bd670b0 ("Added PUBKEY_RSA_MODULUS
encoding type") we prefix them with zero if necessary as other encoders
might expect them in two's complement.
Fixes#1012.
If a client does Mode Config during reauthentication the assign_vips()
event might be triggered twice, we should not send another Start message
in that case.
Fixes#937.
Some clients won't do Mode Config or XAuth during reauthentication.
Because Start messages previously were triggered by TRANSACTION exchanges
none were sent for new SAs of such clients, while Stop messages were still
sent for the old SAs when they were destroyed. This resulted in an
incorrect state on the RADIUS server.
Since 31be582399 the assign_vips() event is also triggered during
reauthentication if the client does not do a Mode Config exchange.
So instead of waiting for a TRANSACTION exchange we trigger the Start
message when a virtual IP is assigned to a client.
With this the charon.plugins.eap-radius.accounting_requires_vip option
would not have any effect for IKEv1 anymore. However, it previously also
only worked if the client did an XAuth exchange, which is probably
rarely used without virtual IPs, so this might not be much of a
regression.
Fixes#937.
When compiling with -Wextra (and without disabling these warnings
globally) the tests would otherwise fail due to the unused arguments in
the cmp() functions.
Fixes#1053.
When precision is given for a string, we must not run unbounded
strlen() as it will read beyond the given length. It might even cause
a crash if the given pointer is near end of heap or mapping.
Fixes numerous valgrind errors such as:
==19215== Invalid read of size 1
==19215== at 0x52D36C6: builtin_vsnprintf (printf_hook_builtin.c:853)
==19215== by 0x52D40A8: builtin_snprintf (printf_hook_builtin.c:1084)
==19215== by 0x52CE464: dntoa (identification.c:337)
==19215== by 0x52CE464: identification_printf_hook (identification.c:837)
==19215== by 0x52D3DAA: builtin_vsnprintf (printf_hook_builtin.c:1010)
==19215== by 0x57040EB: vlog (bus.c:388)
==19215== by 0x570427D: log_ (bus.c:430)
==19215== by 0xA8445D3: load_x509_ca (stroke_cred.c:416)
==19215== by 0xA8445D3: load_certdir (stroke_cred.c:537)
==19215== by 0xA846A95: load_certs (stroke_cred.c:1353)
==19215== by 0xA846A95: stroke_cred_create (stroke_cred.c:1475)
==19215== by 0xA84073E: stroke_socket_create (stroke_socket.c:782)
==19215== by 0xA83F27C: register_stroke (stroke_plugin.c:53)
==19215== by 0x52C3125: load_feature (plugin_loader.c:716)
==19215== by 0x52C3125: load_provided (plugin_loader.c:778)
==19215== by 0x52C3A20: load_features (plugin_loader.c:799)
==19215== by 0x52C3A20: load_plugins (plugin_loader.c:1159)
==19215== Address 0x50cdb42 is 0 bytes after a block of size 2 alloc'd
==19215== at 0x4C919FE: malloc (vg_replace_malloc.c:296)
==19215== by 0x52CD198: chunk_printable (chunk.c:759)
==19215== by 0x52CE442: dntoa (identification.c:334)
==19215== by 0x52CE442: identification_printf_hook (identification.c:837)
==19215== by 0x52D3DAA: builtin_vsnprintf (printf_hook_builtin.c:1010)
==19215== by 0x57040EB: vlog (bus.c:388)
==19215== by 0x570427D: log_ (bus.c:430)
==19215== by 0xA8445D3: load_x509_ca (stroke_cred.c:416)
==19215== by 0xA8445D3: load_certdir (stroke_cred.c:537)
==19215== by 0xA846A95: load_certs (stroke_cred.c:1353)
==19215== by 0xA846A95: stroke_cred_create (stroke_cred.c:1475)
==19215== by 0xA84073E: stroke_socket_create (stroke_socket.c:782)
==19215== by 0xA83F27C: register_stroke (stroke_plugin.c:53)
==19215== by 0x52C3125: load_feature (plugin_loader.c:716)
==19215== by 0x52C3125: load_provided (plugin_loader.c:778)
==19215== by 0x52C3A20: load_features (plugin_loader.c:799)
==19215== by 0x52C3A20: load_plugins (plugin_loader.c:1159)
The kernel uses NLMSG_GOODSIZE as default buffer size, which defaults to
the PAGE_SIZE if it is lower than 8192 or to that value otherwise.
In some cases (e.g. for dump messages) the kernel might use up to 16k
for messages, which might require increasing this value.
It might equal it and that's fine. With MSG_TRUNC we get the actual
message size and can only report an error if we haven't received the
complete message.
If AEAD algorithms are used no integrity algorithm will be received from
the other HA node. But since AUTH_UNDEFINED is 1024 and not 0 this value
was incorrectly added to the proposal, resulting in a failure during key
derivation. The variables are now explicitly initialized to 0, as already
was the case for the IKE SAs.
Fixes#1051.
running_any is satisfied if at least one host is running. We could
easily add a running_all() helper to check if all hosts are running if
it turns out that's not strong enough.
Fixes the roaming behavior on Android 5+, a linker issue on Android M,
a few bugs, and adds several new advanced options for VPN profile (MTU,
server port, split tunneling).
Also adds methods and a constructor to parse settings_t from a string
instead of a file.
Fixes#782, #847, #865.
The headers/libraries changed a lot with level 21 so that our app won't
run on devices with Android < 5 when built against it. We currently
don't need any new native APIs so that should be fine.
Android blocks traffic for address families for which no IPs, DNS servers
or routes are installed via VpnService.Builder. Since Android 5+ (API
level 21) it is possible to explicitly allow such traffic to bypass the VPN.
So for proper split tunneling we note whether we saw a VIP and/or DNS
server of a specific family, and if not, allow traffic of that family
to bypass the VPN using the new API (on older systems there is no change
and such traffic will still be blocked). Otherwise, we do what we did so
far, that is, simply install the received routes (traffic selectors), all
other traffic will not be directed to the TUN device and use the underlying
network instead.
If traffic for a family should be blocked we install a default route via
TUN device even if we received more specific traffic selectors from the
server. libipsec will use the actual traffic selectors as IPsec policies
and drop any packets it received that don't match them. We only do this
if we saw any VIPs or DNS servers of a family. Otherwise the traffic for
that family is blocked anyway.
In dual-stack environments the IPv6 connectivity (via autoconfiguration)
might be established before the IPv4 connectivity (via DHCP). It seems
Android triggers the CONNECTIVITY_ACTION broadcast already when the first
family is fully configured. At that time we might not be able to find an
IPv4 source address. And since Android does not trigger the broadcast
again if IPv4 connectivity is established, the connection is broken
afterwards.
So we store the connectivity state and if we are reportedly connected but
still find no source address we trigger a roam event to recheck for an IPv4
address. This will cause regular rechecks if a device enters an IPv6-only
network, but I guess that's rare (otherwise we could limit the number of
rechecks done between connectivity changes).
Before fwmarks were used protected sockets were bound to the outbound
interface via SO_BINDTODEVICE. This does not always seem to work well
together with our connect()/getsockname() trick if the server is covered
by the traffic selectors. Calling protect() again after disconnecting
the socket seems to help, but if there is no connectivity at all we still
get the virtual IP back (maybe protect() does not bind the socket to any
interface then).
When roaming from a mobile network to WiFi on Android 5.x the event
received via ConnectivityManager is triggered before the mobile
connection is fully torn down (i.e. before the interface is disabled and
the routes disappear). So for strongSwan the current path still seems
valid and since no roam event is triggered later the daemon never switches
to WiFi and the connection is broken afterwards.
A possible solution to this is enabling roam events in the kernel-netlink
plugin. That would trigger an event when the device is finally disconnected
from the mobile network. However, this could actually take a some time,
during which traffic continues to be sent via mobile network instead of WiFi.
That's because Android now uses multiple routing tables, routing rules and
fwmarks to direct traffic to the appropriate interface/table, but in our
plugin we don't have the information available that would allow us to make
the switch to a different network/routing table earlier (and we actually
prefer the current path if it is still valid). Additionally, the plugin
produces quite a bit more events than ConnectivityManager (which was one
of the reasons to use the latter in the first place).
This custom kernel-net implementation is now specifically tailored for
Android. Roam events are still triggered via ConnectivityManager but
the source address is determined via connect()/getsockname() on a VPN
excluded UDP socket, which does use the correct routing table as intended
by Android. That way the daemon immediately sees a different source IP
when connectivity changes even if the device is connected to multiple
networks concurrently.
This fixes an issue when using the Android M preview. Bionic's dynamic
linker was changed so that symbols in libraries loaded with RTLD_LOCAL
were not found anymore in dlsym(RTLD_DEFAULT, ...). This is the case
for libraries loaded with System.loadLibrary(), therefore, the plugin
loader in libstrongswan was not able to resolve any symbols defined in
other libraries loaded later. While this seems to have been broken
unintentionally for existing apps (fix at [1]), it will again be a
problem whenever we decide to increase targetSdkVersion beyond 22 (or
until that fix makes it into the system/emulator images).
Unfortunately, the dynamic loader in releases prior to Android 4.3 can't
load libandroidbridge without also loading its dependencies.
[1] https://github.com/android/platform_bionic/commit/1913352c6b
This also adds a new area for advanced settings that is only displayed
if the user requests it (or if advanced settings already have been set).
The min. MTU for IPv6 is 1280, anything lower lets the TUN device
creation fail if an IPv6 address has been assigned. If lower MTUs are
necessary we might be able to catch that later when setting the MTU and
just use at least 1280 if an IPv6 address was assigned, but let's keep
it simple for now.
The destroy() method sets the IKE_SA on the bus to NULL, we reset it to
the current IKE_SA so any events and log messages that follow happen in
the correct context.
A practical example where this is problematic is a DH group mismatch,
which causes the first CREATE_CHILD_SA exchange to fail. Because the SA
was not reset previously, the message() hook for the CREATE_CHILD_SA
response, for instance, was triggered outside the context of an IKE_SA,
that is, the ike_sa parameter was NULL, which is definitely not expected
by several plugins.
Fixes#862.
Changes how acquires are tracked in the trap manager, which fixes
several race conditions. Also fixes races between threads installing
trap policies and the main thread trying to flush the trap policies.
Similar changes were added to the shunt manager which previously
used no locking at all.
Fixes#1014.
When flush() is called there might be threads in install() waiting for
trap policies to get installed (without holding the lock). We have to
wait until they updated the entries with the respective CHILD_SAs before
destroying the list.
We also have to prevent further trap policy installations (and wait until
threads in install() are really finished), otherwise we might end up
destroying CHILD_SA objects after the kernel interface implementations
have already been unloaded (avoiding this is the whole point of calling
flush() before unloading the plugins).
This fixes potential race conditions in case complete() or flush() is
executed before or concurrently with a thread that handles an acquire.
It will also simplify tracking multiple acquires created for the same
trap policy in the future.
Also fixes the behavior in some error situations.
This basically reverts f4e822c1b4 ("trap-manager: don't check-in
nonexisting IKE_SA if acquire fails"). As checkout_by_config() could
return an already existing and established IKE_SA we have to properly
destroy it, for instance, in case other threads are waiting to check
it out. checkin_and_destroy() should handle the case of a new SA
properly (it produces a log message on level 1, though).
In some situations it might be valid for a host that configures
right=%any to reestablish or reauthenticate an IKE_SA. Using %any would
immediately abort the initiation causing the new SA to fail (which
might already have the existing CHILD_SAs assigned).
Fixes#1027.
If static local addresses are configured we should use their address family
as a hint when resolving the remote address.
We don't do this if %any is configured as this might break existing
configurations (%any4 and %any6 are however used as hint).