Before TLS 1.3, the server sent the last handshake message and had the
option to piggyback the EAP-Identity request directly onto the packet
with the TLS Finished message, or wait for the empty message by the
client that acknowledges the completion of the handshake. With TLS 1.3,
the client finishes the handshake after the server. So this option
is irrelevant there and we immediately start with Phase 2.
The flags encoded in the PKCS#10 structure (or derived from the encoded
profile name) might not be appropriate in some instances. This allows
overriding them without having to issue a new certificate request.
This allows NM more freedom in regards to how it wants to use the passed
device. In particular, if dnsmasq is used with NM as that binds to the
interface to send requests via VPN.
Installing the VIPs on lo avoids weird address removal/addition events
that happen for IPv6 on the physical interface (which would cause the VIP
to get incorrectly detected as non-VIP address and ignored during
deletion).
We could let NM install routes via XFRM interface, however, that causes
problems with e.g. the bypass-lan plugin (the throw routes in table 220
wouldn't have any effect). We could let it install regular routes in
the main table, but determining the physical interface would be tricky
as the routes installed by NM, also in the main table, would conflict.
So instead we let the kernel-netlink interface install routes via XFRM
interface and to avoid routing the IKE traffic that way, we set a mark
on the IKE socket and exclude traffic with that mark from our routing
table.
Since these might conflict with IKE traffic, this requires special care.
One option is to install bypass policies for the peer, which install
appropriate (throw) routes. However, that won't work if the traffic to
the gateway itself should be protected, in particular, for host-to-host
tunnels. So an alternative is to set a mark for the IKE socket and then
exclude that traffic from table 220 via the kernel-netlink plugin's
fwmark option.
The manager will allow charon-nm to create XFRM interfaces if supported
by the kernel instead of creating an unused dummy TUN interface.
The xfrmi tool is mostly obsolete nowadays as iproute2 supports creating
XFRM interfaces since 5.1.0 (2019-05). Older Debians don't ship that and
early versions didn't list the interface IDs. So there might still be
some uses for this tool.
NM doesn't terminate charon-nm after disconnecting, so the TUN device
previously stayed around even if no connection was established. This
might be a bit more what users expect.
As defined in RFC 9190, a "protected success indication" (0x00) is sent
from the server to the client over the TLS connection when using TLS 1.3.
The client responds with an empty EAP message, which is interpreted as
acknowledgement in our stack.
If we ever support session resumption with tunneled methods such as
EAP-TTLS, we'd have to send such an indication there too.
As noted in 121ac4b9e3 ("tls-crypto: Generate MSK for TLS 1.3"), the
calculation was only preliminary. It is now fixed according to RFC 9190
and draft-ietf-emu-tls-eap-types (soon to become an RFC, currently in
the RFC editor queue).
Fixes: 121ac4b9e3 ("tls-crypto: Generate MSK for TLS 1.3")
Adds support for a change in Linux kernel 6.2 that allows retrieving
the last use time of an SA from the SA itself instead of having to query
the policies.
Has been supported by libipsec for a long time (since 5.1.1). UDP encap
is already enforced via config, this just makes the flags the same as
in kernel-libipsec.
Since 6.2 the Linux kernel updates the last use time per SA. In
previous releases the attribute was only updated and reported for
specific outbound IPv6 SAs.
Using this reduces the number of kernel queries per CHILD_SA: for DPDs
from two policy queries (IN/FWD) to a single query of the inbound SA,
and for status reports the three policy queries (IN/FWD/OUT) can be
omitted and only the two SAs have to be queried. For NAT keepalives the
number of queries doesn't change but a policy query (OUT) is replaced by
a query for the outbound SA.
While we could use the existence of the attribute as indicator for its
support, we don't know this until we queried an SA. By using a version
check we can announce the feature from the start.
Currently supported by libipsec and PF_KEY on macOS (FreeBSD, like Linux,
reports the time the SA was first used in sadb_lifetime_usetime - it also
triggers rekeyings based on that, which Linux doesn't, it also triggers
them if an SA is never used).
Apparently not installed anymore in the latest build image. If it's
missing, we see errors like these:
configure.ac:38: error: possibly undefined macro: AC_DEFINE
This was the order before 46a6b06282 ("openssl: Only announce ECDH
groups actually supported by OpenSSL") but that's not really the reason
for this change. It's related to the Android app, where we previously
didn't support these DH groups in BoringSSL and added the curve25519
plugin after the openssl plugin instead. This resulted in the same
order, i.e. ECDH groups before curve25519. With the switch to OpenSSL
and the mentioned commit, this changed and curve25519 was now the first
group that was proposed and used for the KE payload. Not really an
issue you'd think, however, there are apparently Zyxel Firewalls with
older firmware versions (some forum posts mentioned a fix in V5.31) that
can't handle KE payloads with DH groups > 21 (ecp521). So with
curve25519 (31) proposed in the KE payload, they silently dropped the
IKE_SA_INIT request and no connection could be established.
`public` is returned, but previously only if a trusted key was found.
We obviously don't want to return untrusted keys and since the reference
was correctly destroyed after determining the key type, this later caused
a double-free.
Fixes: 63fd718915 ("libtls: call create_public_enumerator() with key_type")
This adds support for the new "packet" hardware offload feature that's
added to the Linux kernel with 6.2. In this mode, the device handles
the complete framing of the ESP packet as well as the policy checks,
in addition to the crypto.
For the IKE sockets, port-based bypass policies are automatically
offloaded to devices that support it.
Closesstrongswan/strongswan#1462
While this uses the same mechanism, it's not necessary to explicitly
enable port_bypass, the regular socket policies work fine to bypass any
software policies.
Keep the kdf plugin because of AES-XCBC (and CAMELLIA-XCBC, which is now
supported due to OpenSSL). Other plugins like fips-prf, pubkey or pkcs8
were never actually used by the app. The random plugin might have been
necessary with early versions.
The build script requires the paths to the NDK and OpenSSL sources.
It runs the build in a Docker container, by default. But if the required
tools are installed on the system (currently jq, make and perl) it can
also be run directly on the system by defining NO_DOCKER.
A relatively recent version of the NDK is required (the pre-built
toolchains are required).
If libcurl is built with MultiSSL support (not the case for e.g.
Debian/Ubuntu, which ship separate, conflicting libraries), this allows
selecting the SSL/TLS backend libcurl uses.
Only older versions of OpenSSL and GnuTLS need special treatment, so we
now accept all other backends (e.g. "(SecureTransport) OpenSSL/1.1.1s"
on macOS).
Whenever we remove support for the affected versions of the mentioned
libraries, we can remove the corresponding *-threading plugin feature
and the code here.
While the kernel defines it since 2005 (2.6.14), some older versions of
socket.h shipped with C libraries might not. In particular, glibc only
added it with 2.24 in 2016.
Closesstrongswan/strongswan#1503
The Python versions installed in the system image in
`/Library/Frameworks/Python.framework/` have symlinks in `/usr/local/bin/`
that conflict with symlinks that `brew` tries to create, which causes
errors like these:
==> Pouring [email protected].1.monterey.bottle.tar.gz
Error: The `brew link` step did not complete successfully
The formula built, but is not symlinked into /usr/local
Could not symlink bin/2to3-3.11
Target /usr/local/bin/2to3-3.11
already exists. You may want to remove it:
rm '/usr/local/bin/2to3-3.11'
To force the link and overwrite all conflicting files:
brew link --overwrite [email protected]
To list all files that would be deleted:
brew link --overwrite --dry-run [email protected]
Possible conflicting files are:
/usr/local/bin/2to3-3.11 -> /Library/Frameworks/Python.framework/Versions/3.11/bin/2to3-3.11
/usr/local/bin/idle3.11 -> /Library/Frameworks/Python.framework/Versions/3.11/bin/idle3.11
/usr/local/bin/pydoc3.11 -> /Library/Frameworks/Python.framework/Versions/3.11/bin/pydoc3.11
/usr/local/bin/python3.11 -> /Library/Frameworks/Python.framework/Versions/3.11/bin/python3.11
/usr/local/bin/python3.11-config -> /Library/Frameworks/Python.framework/Versions/3.11/bin/python3.11-config
Since the changes to the DH implementations that were merged with
30faf04e92 ("Merge branch 'multi-ke-backport'"), most implementations
don't support deriving different shared secrets for the same private key
by calling set_public_key() with another public key anymore (some prevent
it explicitly, but reusing DH private keys is not something we want to
support anyway). So we can't reuse the DH object on one side for every
round.
With newer kernels (basic support for extended ACKs is there since 4.12
but some messages for XFRM were only added with 6.1) this gives more
detailed error messages to the user than e.g. a generic EINVAL or ENOSYS
error would.
Also enabled omitting the request payload in NLMSG_ERROR messages.
The resolvconf implementation provided by systemd via resolvectl strips
everything after the interface name, so each additional server that's
installed replaces the previous one. And even for other resolvconf
implementations installing them individually doesn't seem necessary as
we track and refcount them anyway.
Closesstrongswan/strongswan#1353
Newer releases of systemd contain a change that removes not the part
after the first dot but the part after the last when determining the
interface name (apparently some interface names actually contain a dot).
This changes the default prefix to only contain one dot and avoids the
dots added by IPv4 addresses to create a unique interface/protocol for
each DNS server (it also replaces the `:` in IPv6 addresses with
something that might cause less conflicts).
References strongswan/strongswan#1353
Since the encryption has been moved into the TKM we don't rely on many
cryptographic operations. Mainly SHA-1 that's used in IKEv2 (NAT-D) and
for some internal hashes (cookies, message duplicate detection), and
certificate and public key parsing (not the actual signature/chain
verification, which is done by the TKM).
Depending on the configured hard lifetime the default soft lifetime
might not make sense and could even cause rekeying to get disabled.
To avoid that, derive the soft lifetime from the hard lifetime so it's
10% higher than the soft lifetime.
References strongswan/strongswan#1414
Ubuntu 22.04 ships OpenSSL 3, which requires debug symbols so we can
whitelist leaks because we don't deinitialize the library. And because
the shipped library is not built with `-fno-omit-frame-pointer`, the
build with AddressSanitizer can't use its fast stack unwind method.
However, the previous workaround for DTLS handling with glibc apparently
isn't necessary anymore.
In the custom OpenSSL build we drop no-stdio as that lets the configure
check for libldns fail because ERR_print_errors_fp@OPENSSL_3.0.0 is not
found.
For ccache, the default path to the cache directory has changed.
Also simplified the NM tests as there is only one build since
085daf4743 ("nm: Remove old libnm-glib compat stuff").
At least since Ubuntu 22.04 there are lots of (apparently non-fatal)
"DWARF error: could not find variable specification" errors generated
by bfd_find_nearest_line(). This also happens with addr2line, which
internally uses libbfd. No idea what the actual issue is (it still
happens with binutils 2.39 in Ubuntu 22.10), but since it doesn't seem
to affect the functionality we need this avoids filling the test logs
with useless messages.