nanorand
Activity
- Latest release
- 1y ago
- Total releases
- 18
- Cadence
- ~3 days
- Last 12 months
- 0
Details
- License
- Zlib
- First release
- Sep 06, 2020
| Version | Released | |
|---|---|---|
0.8.0
unknown
|
0.8.0
unknown
Dependencies (3)
|
|
0.7.0
unknown
|
0.7.0
unknown
Dependencies (3)
|
|
0.6.1
unknown
|
0.6.1
unknown
Dependencies (3)
|
|
0.6.0
unknown
1 CVE
CVE-2021-45705
GHSA-p6gj-gpc8-f8xw
GHSA-r57r-j98g-587f
RUSTSEC-2021-0114
Jun 17, 2022
Aliased mutable references from `tls_rand` & `TlsWyRand`
Medium
Fixed in
0.6.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.6.0
unknown
Dependencies (3)
|
|
0.5.2
unknown
1 CVE
CVE-2021-45705
GHSA-p6gj-gpc8-f8xw
GHSA-r57r-j98g-587f
RUSTSEC-2021-0114
Jun 17, 2022
Aliased mutable references from `tls_rand` & `TlsWyRand`
Medium
Fixed in
0.6.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.5.2
unknown
Dependencies (3)
|
|
0.5.1
unknown
1 CVE
CVE-2021-45705
GHSA-p6gj-gpc8-f8xw
GHSA-r57r-j98g-587f
RUSTSEC-2021-0114
Jun 17, 2022
Aliased mutable references from `tls_rand` & `TlsWyRand`
Medium
Fixed in
0.6.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.5.1
unknown
Dependencies (12)
+ 4 more |
|
0.5.0
unknown
yanked
2 CVEs
CVE-2021-45705
GHSA-p6gj-gpc8-f8xw
GHSA-r57r-j98g-587f
RUSTSEC-2021-0114
Jun 17, 2022
Aliased mutable references from `tls_rand` & `TlsWyRand`
Medium
Fixed in
0.6.1
References Updated Nov 08, 2023 · Source: OSV.dev
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.5.0
unknown
yanked
Dependencies (12)
+ 4 more |
|
0.4.4
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.4.4
unknown
Dependencies (11)
+ 3 more |
|
0.4.3
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.4.3
unknown
Dependencies (11)
+ 3 more |
|
0.4.2
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.4.2
unknown
Dependencies (11)
+ 3 more |
|
0.4.1
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.4.1
unknown
Dependencies (11)
+ 3 more |
|
0.4.0
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.4.0
unknown
Dependencies (10)
+ 2 more |
|
0.3.0
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.3.0
unknown
Dependencies (1)
|
|
0.2.1
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.2.1
unknown
Dependencies (1)
|
|
0.2.0
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.2.0
unknown
Dependencies (1)
|
|
0.1.1
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.1.1
unknown
Dependencies (1)
|
|
0.1.0
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.1.0
unknown
Dependencies (1)
|
|
0.0.0
unknown
1 CVE
CVE-2020-35926
GHSA-m9m5-cg5h-r582
RUSTSEC-2020-0089
Aug 25, 2021
Improper random number generation in nanorand
5.1
/ 10
Medium
Local
Low
None
None
Unchanged
Low
Low
None
In versions of nanorand prior to 0.5.1, RandomGen implementations for standard unsigned integers could fail to properly generate numbers, due to using bit-shifting to truncate a 64-bit number, rather than just an as conversion. This often manifested as RNGs returning nothing but 0, including the cryptographically secure ChaCha random number generator. Fixed in
0.5.1
References Updated Nov 08, 2023 · Source: OSV.dev |
0.0.0
unknown
|