We returned the wrong type, but with a typedef which made it void*. In
C++, void* to T* doesn't implicitly convert, so it doesn't quite work
right. Notably, Node passes it into sk_SSL_COMP_zero. The sk_* macros
only weakly typecheck right now, but a pending CL converts them to
proper functions.
Change-Id: I635d1e39e4f4f11b2b7bf350115a7f1b1be30e4f
Reviewed-on: https://boringssl-review.googlesource.com/16447
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Change-Id: I7d8f9098038a82b29ab0eff8a3258975d8804a68
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I think I've finally cleared this out. Everything should be using
upstream's longer 'proto' names now.
Change-Id: I6ab283dca845fdc184f3764223d027acba59ca91
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https://build.chromium.org/p/client.boringssl/builders/linux_fips_rel/builds/115
appears to have failed because we were hanging on Accept() forever.
Impose a timeout on that and waiting for the process to return so we at
least can see what stdout/stderr was received so far.
Change-Id: Ief7f7759d02a3fbfc504d2f214b742672b0fe9e6
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The C side no longer supports DHE, so there is no longer a need for the
Go side to anymore.
Change-Id: I5084177becd369779a4008a41f4838cb31adcfde
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This doesn't actually measure what we need(*) and, because of that, it's
way more noisy than expected.
(*) We want to know whether the pool has been initialised, not whether
it currently thinks it has a lot of bits, but we can't get what we want
without getrandom() support in the kernel.
Change-Id: I20accb99a592739c786a25c1656aeea050ae81a3
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This is done in three different places.
Change-Id: I1e55a14c464b1953b3d4de22b50688082ea65129
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In FIPS mode we may print a message when we're waiting for additional
entropy. These warnings should not cause runner tests to fail.
Change-Id: I2beff64344fd2fce444576181f4234c4231de444
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BUG=76
Change-Id: I8b754ba17b3e0beee425929e4b53785b2e95f0ae
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When writing tests and BoGo isn't available, it is useful to be able to
configure the set of signature algorithms accepted on the verify side.
Add an API for this.
Change-Id: Ic873189da7f8853e412acd68614df9d9a872a0c8
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DHE ciphers no longer exist!
Change-Id: Id3826ae49164cc1071bc40ea4cf1c5aa451245d6
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DHE ciphers are gone, so we no longer need to clear drop the "group_id"
field there. That leaves static RSA, but:
- We mass-invalidated every serialized client session in
364f7a6d21, long after we stopped
filling in key_exchange_info on the client.
- Server sessions were not mass-invalidated, but static RSA
key_exchange_info never worked on the server.
This means it is safe to remove this logic.
Change-Id: Id43b233cca066a81686be7c056c530ba8e89f761
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This follows up on cedc6f18 by removing support for the
-DBORINGSSL_ENABLE_DHE_TLS compile flag, and the code needed to
support it.
Change-Id: I53b6aa7a0eddd23ace8b770edb2a31b18ba2ce26
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As a precursor to removing the code entirely later, disable the protocol
by default. Callers must use SSL_CTX_set_min_version to enable it.
This change also makes SSLv3_method *not* enable SSL 3.0. Normally
version-specific methods set the minimum and maximum version to their
version. SSLv3_method leaves the minimum at the default, so we will
treat it as all versions disabled. To help debugging, the error code is
switched from WRONG_SSL_VERSION to a new NO_SUPPORTED_VERSIONS_ENABLED.
This also defines OPENSSL_NO_SSL3 and OPENSSL_NO_SSL3_METHOD to kick in
any no-ssl3 build paths in consumers which should provide a convenient
hook for any upstreaming changes that may be needed. (OPENSSL_NO_SSL3
existed in older versions of OpenSSL, so in principle one may encounter
an OpenSSL with the same settings.)
Change-Id: I96a8f2f568eb77b2537b3a774b2f7108bd67dd0c
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Also remove TODO about post-handshake authentication. The only sensible
way to handle unexpected post-handshake authentication is a fatal error
(dropping them would cause a deadlock), and we treat all post-handshake
authentication as unexpected.
BUG=74
Change-Id: Ic92035b26ddcbcf25241262ce84bcc57b736b7a7
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There was a case we were not covering.
Change-Id: Ia8bc1b73f5db3d18afc3cdcfa249867784c3dcd2
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This function is particularly messy as it had a mix of goto err and
return -1, so if we added a cleanup, we may not have noticed a leak.
Change-Id: I7f363f69857b602c40f8d0f35ce6a83b07051e29
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This only works at TLS 1.2 and above as, before TLS 1.2, there is no way
to advertise support for Ed25519 or negotiate the correct signature
algorithm. Add tests for this accordingly.
For now, this is disabled by default on the verifying side but may be
enabled per SSL_CTX. Notably, projects like Chromium which use an
external verifier may need changes elsewhere before they can enable it.
(On the signing side, we can assume that if the caller gave us an
Ed25519 certificate, they mean for us to use it.)
BUG=187
Change-Id: Id25b0a677dcbe205ddd26d8dbba11c04bb520756
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These will be used to test the C implementation.
BUG=187
Change-Id: If397eaa51885c8140a63c5f731ce58a8ad6949aa
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This will be used for testing purposes.
BUG=187
Change-Id: I4a18c54c690921a4bbccf5bd03107c579a6e9393
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We don't allow consumers to enable and disable RSA and ECDSA signature
algorithms but will filter client-sent cipher suites and server-sent
client certificate types based on this hard-coded list.
This is two less places to update for Ed25519.
BUG=187
Change-Id: I62836b6980acc6d03ee254f0a84e9826668e9e57
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With public keys reliably extractable from SSL_PRIVATE_KEY_METHOD keys,
we can share the pkey/sigalg check between signing and verifying.
BUG=188
Change-Id: Ieb9382807781e48ffed720b27f450847d3fca788
Reviewed-on: https://boringssl-review.googlesource.com/14566
Reviewed-by: Adam Langley <agl@google.com>
Instead, extract it from the certificate, which is what everyone was
doing anyway. A follow-up change will take advantage of this cleanup to
deduplicate code between signing and verifying for which keys are good
for which signature algorithms.
BUG=188
Change-Id: Ic3f83a6477e8fa53e5e7233f4545f4d2c4b58d01
Reviewed-on: https://boringssl-review.googlesource.com/14565
Reviewed-by: Adam Langley <agl@google.com>
This is an unhelpfully generic name. Rename it to match SSL_ECDH_CTX.
Unqualified "public key" is typically assumed to be the certificate.
Change-Id: I8ba8c3f2bb1343d1c006845a1110e833451c5a56
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This allows us to share some of the is_ecdsa mess between signing and
verifying in a way that will generalize to Ed25519. This makes it a lot
shorter and gets us closer to Ed25519.
Later work will tidy this up further.
BUG=187
Change-Id: Ibf3c07c48824061389b8c86294225d9ef25dd82d
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We received an external request to add an option to undo the check added
in 3e51757de2.
Change-Id: Ifdd4b07705f2fa3d781d775d5cd139ea72d36734
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This moves the early data switch to CERT to make this
|SSL_set_SSL_CTX|-proof.
Change-Id: Icca96e76636d87578deb24b2d507cabee7e46a4a
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Taken from revision 3cb07270c9455e8ad27956a70891c962d121a228 of
go-crypto. Some of the changes look like they might fix some of the
crashes we've been having on ARM bots?
Change-Id: I127fd358db553eae4805e777011a89124f595ff0
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We've got to get a bot for this...
Change-Id: I6af0c466c10ec52bf2e67f1e6fa2513411aeb3c0
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Clients or servers enabling both should not stop functioning.
Change-Id: I5cca09f8adfc8ff56b8943123847bbdaf8885cf4
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Previously we only needed to be able to serve P-224 certificates, but
now we anticipate a need to be able to connect and validate them also.
Since this requires advertising support for P-224 in the handshake, we
need to support P-224 ECDHE too.
P-224 support is disabled by default and so clients need to both set the
enabled curves explicitly and set a maximum version of TLS 1.2.
Change-Id: Idc69580f47334e0912eb431a0db0e78ee2eb5bbe
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Allow the fuzzers to treat this situation, if they ever discover it,
as a bug.
Change-Id: Ie6f1562e9b185d49463cf1a6db28d28780169b11
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Change-Id: Ied6b73fde61eb133c9871b42a56aa5a64131b67b
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BUG=185
Change-Id: I4ce6735ca78cd687538a8c0fdbd78ee97b93585c
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When we refactored all the buffering logic, we retained upstream
OpenSSL's allocation patterns. In particular, we always allocated fixed
size write buffer, even though, unlike when reading, we trivially know a
tighter bound (namely however much we happen to be writing right now).
Since the cutoff for when Windows' malloc starts having a hard time is
just below the TLS maximum record size, do the more natural thing of
allocating what we need to hold outgoing ciphertext.
(This only does anything to the write half. Read half is a bit more
involved.)
BUG=chromium:524258
Change-Id: I0165f9ce822b9cc413f3c77e269e6154160537a7
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Remove another remnant of the SSL3_PROTOCOL_METHOD hook.
Change-Id: If6bf055e2ee318420e4c5c40b8eb5356eadda68c
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BUG=76
Change-Id: Ie894ea5d327f88e66b234767de437dbe5c67c41d
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BUG=76
Change-Id: I43672ee82a50f8fe706a5d607ef774a6e96db252
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This tests that the ticket age is measured from ticket issuance and not
the initial authentication. Specifically, that ssl_session_renew_timeout
also rebases the time.
Change-Id: Iba51efb49c691a44e6428d1cd35f0803ca3d396a
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Channel ID is incompatible with 0-RTT, so we gracefully decline 0-RTT
as a server and forbid their combination as a client. We'll keep this
logic around until Channel ID is removed.
Channel ID will be replaced by tokbind which currently uses custom
extensions. Those will need additional logic to work with 0-RTT.
This is not implemented yet so, for now, fail if both are ever
configured together at all. A later change will allow the two to
combine.
BUG=183
Change-Id: I46c5ba883ccd47930349691fb08074a1fab13d5f
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Change-Id: I0e2e4166ad2c57e3192af058f23374f014a2fcf4
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Once 0-RTT data is added to the current 0-RTT logic, the server will
trigger a write when processing incoming data via SSL_read. This means
SSL_read will block on transport write, which is something we've not
tried to avoid far (assuming no renegotiation).
The specification allows for tickets to be sent at half-RTT by
predicting the client Finished. By doing this we both get the tickets on
the wire sooner and avoid confusing I/O patterns. Moreover, we
anticipate we will need this mode for one of the QUIC stateless reject
patterns.
This is tested by always processing NewSessionTickets in the
ExpectHalfRTTData path on 0-RTT connections. As not other
implementations using BoGo may not do this, this is configurable via the
shim config.
BUG=76
Change-Id: Ia0f56ae63f15078ff1cacceba972d2b99001947f
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This is a remnant of before we made the handshake write
flight by flight.
Change-Id: I94c0105bb071ffca9ff5aa4c4bf43311c750b49a
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This will make it easier to test 0-RTT later on.
BUG=76
Change-Id: I4d60b77c14bc9143ca9785d0a6b8169653a1b120
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It's not immediately obvious what's going on here.
Change-Id: Ibbba80a6ff9ace4d88e89a42efc270b77b4fad12
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