No sense in tempting middleboxes unnecessarily.
Change-Id: Iec66f77195f6b8aa62be681917342e59eb7aba31
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Update-Note: Token Binding can no longer be configured with the custom
extensions API. Instead, use the new built-in implementation. (The
internal repository should be all set.)
Bug: 183
Change-Id: I007523a638dc99582ebd1d177c38619fa7e1ac38
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This extension will be used to measure the latency impact of potentially
sending a post-quantum key share by default. At this time it's purely
measuring the impact of the client sending the key share, not the server
replying with a ciphertext.
We could use the existing padding extension for this but that extension
doesn't allow the server to echo it, so we would need a different
extension in the future anyway. Thus we just create one now.
We can assume that modern clients will be using TLS 1.3 by the time that
PQ key-exchange is established and thus the key share will be sent in
all ClientHello messages. However, since TLS 1.3 isn't quite here yet,
this extension is also sent for TLS 1.0–1.2 ClientHellos. The latency
impact should be the same either way.
Change-Id: Ie4a17551f6589b28505797e8c54cddbe3338dfe5
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TLS 1.3 includes a server-random-based anti-downgrade signal, as a
workaround for TLS 1.2's ServerKeyExchange signature failing to cover
the entire handshake. However, because TLS 1.3 draft versions are each
doomed to die, we cannot deploy it until the final RFC. (Suppose a
draft-TLS-1.3 client checked the signal and spoke to a final-TLS-1.3
server. The server would correctly negotiate TLS 1.2 and send the
signal. But the client would then break. An anologous situation exists
with reversed roles.)
However, it appears that Cisco devices have non-compliant TLS 1.2
implementations[1] and copy over another server's server-random when
acting as a TLS terminator (client and server back-to-back).
Hopefully they are the only ones doing this. Implement a
measurement-only version with a different value. This sentinel must not
be enforced, but it will tell us whether enforcing it will cause
problems.
[1] https://www.ietf.org/mail-archive/web/tls/current/msg25168.html
Bug: 226
Change-Id: I976880bdb2ef26f51592b2f6b3b97664342679c8
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This is connection state, not configuration, so it must live on
ssl->s3, otherwise SSL_clear will be confused.
Change-Id: Id7c87ced5248d3953e37946e2d0673d66bfedb08
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We can probably do this globally at this point since the cipher
requirements are much more restrict than they were in the beginning.
(Firefox, in particular, has done so far a while.) For now add a flag
since some consumer wanted this.
I'll see about connecting it to a Chrome field trial after our breakage
budget is no longer reserved for TLS 1.3.
Change-Id: Ib61dd5aae2dfd48b56e79873a7f3061a7631a5f8
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This introduces a wire change to Experiment2/Experiment3 over 0RTT, however
as there is never going to be a 0RTT deployment with Experiment2/Experiment3,
this is valid.
Change-Id: Id541d195cbc4bbb3df7680ae2a02b53bb8ae3eab
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Change-Id: I46686aea9b68105cfe70a11db0e88052781e179c
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RC4 is gone. The only remaining exception was the dumb SSL_eNULL cipher,
which works fine in DTLS. It doesn't seem worth the trouble to retain
this special-case.
Change-Id: I31023b71192808e4d21e82109255dc4d6d381df8
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This reverts commit 75d43b5785. Chatting
with EKR, there is some reason to believe that doing this might cause
more middlebox issues. Since we're still in the middle of working
towards viable deployment in the first place, revert this.
We can experiment with this later. I should have arranged for this to be
controlled more carefully anyway.
Change-Id: I0c8bf578f9d7364e913894e1bf3c2b8123dfd770
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We never implemented psk_ke, so there's no need to define the constant.
Change-Id: I6e52596e1a2cf0b3db5e7cd96db6836f4290bf0b
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This does not affect TLS 1.2 (beyond Channel ID or NPN) but, in TLS 1.3,
we send several encrypted handshake messages in a row. For the server,
this means 66 wasted bytes in TLS 1.3. Since OpenSSL has otherwise used
one record per message since the beginning and unencrypted overhead is
less interesting, leave that behavior as-is for the time being. (This
isn't the most pressing use of the breakage budget.) But TLS 1.3 is new,
so get this tight from the start.
Change-Id: I64dbd590a62469d296e1f10673c14bcd0c62919a
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We enforce that servers don't send bogus ALPN values, so consumers may
assume that SSL_get0_alpn_selected won't have anything terribly weird.
To maintain that invariant in the face of folks whose ALPN preferences
change (consider a persisted session cache), we should decline to offer
0-RTT if early_alpn would have been rejected by the check anyway.
Change-Id: Ic3a9ba4041d5d4618742eb05e27033525d96ade1
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This is in preparation for giving DTLS_STATE one.
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new_*_len can just be computed rather than maintained as state.
Change-Id: If097ee9e68d8791fcfeb69052151faf0134c7c52
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This finally clears most of the SSL_clear special-cases.
Change-Id: I00fc240ccbf13f4290322845f585ca6f5786ad80
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As with SSLTranscript before, we temporarily need some nastiness in
SSL3_STATE, but this is in preparation of giving SSL3_STATE a
constructor and destructor.
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Now that we've gotten everything, test this by just making bssl_shim run
all errors twice. The manual tests added to ssl_test.cc may now be
removed.
Bug: 206
Change-Id: Iefa0eae83ba59b476e6b6c6f0f921d5d1b72cbfb
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While a fairly small hook, open_close_notify is pretty weird. It
processes things at the record level and not above. Notably, this will
break if it skips past a TLS 1.3 KeyUpdate.
Instead, it can share the core part of SSL_read/SSL_peek, with slight
tweaks to post-handshake processing. Note this does require some tweaks
to that code. Notably, to retain the current semantics that SSL_shutdown
does not call funny callbacks, we suppress tickets.
Change-Id: Ia0cbd0b9f4527f1b091dd2083a5d8c7efb2bac65
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This gets us closer to exposing BIO-free APIs. The next step is probably
to make the experimental bssl::OpenRecord function call a split out core
of ssl_read_impl.
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With this change, it should now always be the case that rr->length is
zero on entry to ssl3_read_message. This will let us detach everything
but application data from rr. This pushes some init_buf invariants down
into tls_open_record so we don't need to maintain them everywhere.
Change-Id: I206747434e0a9603eea7d19664734fd16fa2de8e
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Enough were to make record processing idempotent (we either consume a
record or we don't), but some errors would cause us to keep processing
records when we should get stuck.
This leaves errors in the layer between the record bits and the
handshake. I'm hoping that will be easier to resolve once they do not
depend on BIO, at which point the checks added in this CL may move
around.
Bug: 206
Change-Id: I6b177079388820335e25947c5bd736451780ab8f
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Ultimately the ssl_buffer_* code will be above SSL_PROTOCOL_METHOD, so
having the processing be analogous is simpler. This also means that DTLS
can surface errors out of dtls_open_record without the caller reading an
extra record.
Bug: 206
Change-Id: Ic1cb3a884763c8e875e1129b1cda226f72bc95b7
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This removes the last place where non-app-data hooks leave anything
uncomsumed in rrec. (There is still a place where non-app-data hooks see
a non-empty rrec an entrance. read_app_data calls into read_handshake.
That'll be fixed in a later patch in this series.)
This should not change behavior, though some error codes may change due
to some processing happening in a slightly different order.
Since we do this in a few places, this adds a BUF_MEM_append with tests.
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I think that's the last of the ssl3_ prefix being used for common
functions.
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These are common between TLS and DTLS so should not have the ssl3_
prefix. (TLS-only stuff should really have a tls_ prefix, but we still
have a lot of that one.)
This also fixes a stray reference to ssl3_send_client_key_exchange..
Change-Id: Ia05b360aa090ab3b5f075d5f80f133cbfe0520d4
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It's no longer needed in the public header at all, now that we've hidden
the SSL_CTX struct.
Change-Id: I2fc6ddbeb52f000487627b433b9cdd7a4cde37a8
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This frees us up to make SSL_CTX a C++ type and avoids a lot of
protrusions of otherwise private types into the global namespace.
Bug: 6
Change-Id: I8a0624a53a4d26ac4a483fa270c39ecdd07459ee
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On some Chrome builds on Windows (including the official builds that we
ship) there are dynamic initializers for kNamedGroups in chrome.dll and
chrome_child.dll. Tagging this array with constexpr is guaranteed to
avoid this.
Bug: chromium:341941
Change-Id: I0e4ea0665b8ed9640b76b709dd300416be49e59e
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We usually use read/write rather than recv/send to describe the two
sides.
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The only difference is whether there's an alert to send back, but we'll
need to allow an "error without alert" in several cases anyway:
1. If the server sees an HTTP request or garbage instead of a
ClientHello, it shouldn't send an alert.
2. Resurfaced errors.
Just make zero signal no alert for now. Later on, I'm thinking we might
just want to put the alert into the outgoing buffer and make it further
uniform.
This also gives us only one error state to keep track of rather than
two.
Bug: 206
Change-Id: Ia821d9f89abd2ca6010e8851220d4e070bc42fa1
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This is analogous to the Go stack's handshakeErr field. Since it's quite
common for callers to run two I/O operations in parallel[*] like
SSL_read and SSL_write (or SSL_read and SSL_do_handshake for client
0-RTT). Accordingly, the new handshake state machine jams itself up on
handshake error, but to fully work with such callers, we should also
replay the error state.
This doesn't yet catch all cases (there are some parts of the read flow
which need to be fixed). Those will be resolved in later changes.
[*] Not actually in parallel, of course, but logically in parallel on a
non-blocking socket.
Bug: 206
Change-Id: I5a4d37a258b9e3fc555b732938b0528b839650f8
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Change-Id: I815f9fa77e08f72b0130ea9ef0dda751bf2ed7a6
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Bug: 132
Change-Id: I1d6cd1dd7470a3f64ec91b954042ed3f8c6b561e
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