rust-crypto
Activity
- Latest release
- 10y ago
- Total releases
- 39
- Cadence
- ~2 days
- Last 12 months
- 0
Details
- License
- MIT/Apache-2.0
- First release
- Nov 21, 2014
| Version | Released | |
|---|---|---|
0.2.36
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.36
unknown
Dependencies (5)
|
|
0.2.35
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.35
unknown
Dependencies (5)
|
|
0.2.34
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.34
unknown
Dependencies (5)
|
|
0.2.33
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.33
unknown
Dependencies (5)
|
|
0.2.32
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.32
unknown
Dependencies (5)
|
|
0.2.31
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.31
unknown
Dependencies (5)
|
|
0.2.30
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.30
unknown
Dependencies (5)
|
|
0.2.29
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.29
unknown
Dependencies (3)
|
|
0.2.28
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.28
unknown
Dependencies (3)
|
|
0.2.27
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.27
unknown
Dependencies (3)
|
|
0.2.26
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.26
unknown
Dependencies (3)
|
|
0.2.25
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.25
unknown
Dependencies (3)
|
|
0.2.24
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.24
unknown
Dependencies (3)
|
|
0.2.23
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.23
unknown
Dependencies (3)
|
|
0.2.22
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.22
unknown
Dependencies (3)
|
|
0.2.18
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.18
unknown
Dependencies (3)
|
|
0.2.17
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.17
unknown
Dependencies (3)
|
|
0.2.16
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.16
unknown
Dependencies (3)
|
|
0.2.15
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.15
unknown
Dependencies (3)
|
|
0.2.14
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.14
unknown
Dependencies (2)
|
|
0.2.13
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.13
unknown
Dependencies (2)
|
|
0.2.12
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.12
unknown
Dependencies (2)
|
|
0.2.11
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.11
unknown
Dependencies (2)
|
|
0.2.10
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.10
unknown
Dependencies (2)
|
|
0.2.9
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.9
unknown
Dependencies (2)
|
|
0.2.8
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.8
unknown
Dependencies (2)
|
|
0.2.7
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.7
unknown
Dependencies (2)
|
|
0.2.6
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.6
unknown
Dependencies (2)
|
|
0.2.5
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.5
unknown
Dependencies (2)
|
|
0.2.4
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.4
unknown
Dependencies (1)
|
|
0.2.3
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.3
unknown
Dependencies (1)
|
|
0.2.2
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.2
unknown
Dependencies (1)
|
|
0.2.1
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.1
unknown
Dependencies (1)
|
|
0.2.0
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.2.0
unknown
Dependencies (1)
|
|
0.1.4
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.1.4
unknown
Dependencies (1)
|
|
0.1.3
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.1.3
unknown
Dependencies (1)
|
|
0.1.2
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.1.2
unknown
Dependencies (1)
|
|
0.1.1
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.1.1
unknown
Dependencies (1)
|
|
0.1.0
unknown
2 CVEs
GHSA-jp3w-3q88-34cf
RUSTSEC-2022-0011
Jun 17, 2022
Miscomputation when performing AES encryption in rust-crypto
Critical
The following Rust program demonstrates some strangeness in AES encryption - if you have an immutable key slice and then operate on that slice, you get different encryption output than if you operate on a copy of that key. For these functions, we expect that extending a 16 byte key to a 32 byte key by repeating it gives the same encrypted data, because the underlying rust-crypto functions repeat key data up to the necessary key size for the cipher.
The output from this program:
Notably, the X1 key in the References Updated Nov 08, 2023 · Source: OSV.dev
RUSTSEC-2016-0005
Sep 06, 2016
rust-crypto is unmaintained; switch to a modern alternative The NOTE: The (old) We recommend you switch to one of the following crates instead, depending on which algorithms you need:
Fixed in
0.2.37-0
References Updated Jan 09, 2022 · Source: OSV.dev |
0.1.0
unknown
Dependencies (1)
|