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ena's Issues

RUSTSEC-2021-0078: Lenient `hyper` header parsing of `Content-Length` could allow request smuggling

Lenient hyper header parsing of Content-Length could allow request smuggling

Details
Package hyper
Version 0.13.10
URL GHSA-f3pg-qwvg-p99c
Date 2021-07-07
Patched versions >=0.14.10

hyper's HTTP header parser accepted, according to RFC 7230, illegal contents inside Content-Length headers.
Due to this, upstream HTTP proxies that ignore the header may still forward them along if it chooses to ignore the error.

To be vulnerable, hyper must be used as an HTTP/1 server and using an HTTP proxy upstream that ignores the header's contents
but still forwards it. Due to all the factors that must line up, an attack exploiting this vulnerability is unlikely.

See advisory page for additional details.

RUSTSEC-2020-0036: failure is officially deprecated/unmaintained

failure is officially deprecated/unmaintained

Details
Status unmaintained
Package failure
Version 0.1.8
URL rust-lang-deprecated/failure#347
Date 2020-05-02

The failure crate is officially end-of-life: it has been marked as deprecated
by the former maintainer, who has announced that there will be no updates or
maintenance work on it going forward.

The following are some suggested actively developed alternatives to switch to:

See advisory page for additional details.

RUSTSEC-2021-0079: Integer overflow in `hyper`'s parsing of the `Transfer-Encoding` header leads to data loss

Integer overflow in hyper's parsing of the Transfer-Encoding header leads to data loss

Details
Package hyper
Version 0.13.10
URL GHSA-5h46-h7hh-c6x9
Date 2021-07-07
Patched versions >=0.14.10

When decoding chunk sizes that are too large, hyper's code would encounter an integer overflow. Depending on the situation,
this could lead to data loss from an incorrect total size, or in rarer cases, a request smuggling attack.

To be vulnerable, you must be using hyper for any HTTP/1 purpose, including as a client or server, and consumers must send
requests or responses that specify a chunk size greater than 18 exabytes. For a possible request smuggling attack to be possible,
any upstream proxies must accept a chunk size greater than 64 bits.

See advisory page for additional details.

RUSTSEC-2020-0159: Potential segfault in `localtime_r` invocations

Potential segfault in localtime_r invocations

Details
Package chrono
Version 0.4.19
URL chronotope/chrono#499
Date 2020-11-10

Impact

Unix-like operating systems may segfault due to dereferencing a dangling pointer in specific circumstances. This requires an environment variable to be set in a different thread than the affected functions. This may occur without the user's knowledge, notably in a third-party library.

Workarounds

No workarounds are known.

References

See advisory page for additional details.

RUSTSEC-2021-0124: Data race when sending and receiving after closing a `oneshot` channel

Data race when sending and receiving after closing a oneshot channel

Details
Package tokio
Version 0.2.25
URL tokio-rs/tokio#4225
Date 2021-11-16
Patched versions >=1.8.4, <1.9.0,>=1.13.1
Unaffected versions <0.1.14

If a tokio::sync::oneshot channel is closed (via the
oneshot::Receiver::close method), a data race may occur if the
oneshot::Sender::send method is called while the corresponding
oneshot::Receiver is awaited or calling try_recv.

When these methods are called concurrently on a closed channel, the two halves
of the channel can concurrently access a shared memory location, resulting in a
data race. This has been observed to cause memory corruption.

Note that the race only occurs when both halves of the channel are used
after the Receiver half has called close. Code where close is not used, or where the
Receiver is not awaited and try_recv is not called after calling close,
is not affected.

See tokio#4225 for more details.

See advisory page for additional details.

RUSTSEC-2020-0071: Potential segfault in the time crate

Potential segfault in the time crate

Details
Package time
Version 0.1.44
URL time-rs/time#293
Date 2020-11-18
Patched versions >=0.2.23
Unaffected versions =0.2.0,=0.2.1,=0.2.2,=0.2.3,=0.2.4,=0.2.5,=0.2.6

Impact

Unix-like operating systems may segfault due to dereferencing a dangling pointer in specific circumstances. This requires an environment variable to be set in a different thread than the affected functions. This may occur without the user's knowledge, notably in a third-party library.

The affected functions from time 0.2.7 through 0.2.22 are:

  • time::UtcOffset::local_offset_at
  • time::UtcOffset::try_local_offset_at
  • time::UtcOffset::current_local_offset
  • time::UtcOffset::try_current_local_offset
  • time::OffsetDateTime::now_local
  • time::OffsetDateTime::try_now_local

The affected functions in time 0.1 (all versions) are:

  • at
  • at_utc
  • now

Non-Unix targets (including Windows and wasm) are unaffected.

Patches

Pending a proper fix, the internal method that determines the local offset has been modified to always return None on the affected operating systems. This has the effect of returning an Err on the try_* methods and UTC on the non-try_* methods.

Users and library authors with time in their dependency tree should perform cargo update, which will pull in the updated, unaffected code.

Users of time 0.1 do not have a patch and should upgrade to an unaffected version: time 0.2.23 or greater or the 0.3 series.

Workarounds

No workarounds are known.

References

time-rs/time#293

See advisory page for additional details.

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