apk package
wolfi/neuvector-sigstore-interface
pkg:apk/wolfi/neuvector-sigstore-interface
Vulnerabilities (84)
| CVE | Sev | CVSS | KEV | Affected versions | Fixed in | Published | Description |
|---|---|---|---|---|---|---|---|
| CVE-2025-61730 | Med | 5.3 | < 0_git20251212-r2 | 0_git20251212-r2 | Jan 28, 2026 | During the TLS 1.3 handshake if multiple messages are sent in records that span encryption level boundaries (for instance the Client Hello and Encrypted Extensions messages), the subsequent messages may be processed before the encryption level changes. This can cause some minor i | |
| CVE-2025-61728 | Med | 6.5 | < 0 | 0 | Jan 28, 2026 | archive/zip uses a super-linear file name indexing algorithm that is invoked the first time a file in an archive is opened. This can lead to a denial of service when consuming a maliciously constructed ZIP archive. | |
| CVE-2025-61726 | Hig | 7.5 | < 0_git20251212-r2 | 0_git20251212-r2 | Jan 28, 2026 | The net/url package does not set a limit on the number of query parameters in a query. While the maximum size of query parameters in URLs is generally limited by the maximum request header size, the net/http.Request.ParseForm method can parse large URL-encoded forms. Parsing a la | |
| CVE-2026-24686 | Med | 4.7 | < 0_git20251212-r5 | 0_git20251212-r5 | Jan 27, 2026 | go-tuf is a Go implementation of The Update Framework (TUF). go-tuf's TAP 4 Multirepo Client uses the map file repository name string (`repoName`) as a filesystem path component when selecting the local metadata cache directory. Starting in version 2.0.0 and prior to version 2.4. | |
| CVE-2026-24137 | Med | 5.8 | < 0_git20251212-r4 | 0_git20251212-r4 | Jan 23, 2026 | sigstore framework is a common go library shared across sigstore services and clients. In versions 1.10.3 and below, the legacy TUF client (pkg/tuf/client.go) supports caching target files to disk. It constructs a filesystem path by joining a cache base directory with a target na | |
| CVE-2026-24117 | Med | 5.3 | < 0_git20251212-r3 | 0_git20251212-r3 | Jan 22, 2026 | Rekor is a software supply chain transparency log. In versions 1.4.3 and below, attackers can trigger SSRF to arbitrary internal services because /api/v1/index/retrieve supports retrieving a public key via user-provided URL. Since the SSRF only can trigger GET requests, the reque | |
| CVE-2026-23831 | Med | 5.3 | < 0_git20251212-r3 | 0_git20251212-r3 | Jan 22, 2026 | Rekor is a software supply chain transparency log. In versions 1.4.3 and below, the entry implementation can panic on attacker-controlled input when canonicalizing a proposed entry with an empty spec.message, causing nil Pointer Dereference. Function validate() returns nil (succe | |
| CVE-2026-23992 | Med | 5.9 | < 0_git20251212-r5 | 0_git20251212-r5 | Jan 22, 2026 | go-tuf is a Go implementation of The Update Framework (TUF). Starting in version 2.0.0 and prior to version 2.3.1, a compromised or misconfigured TUF repository can have the configured value of signature thresholds set to 0, which effectively disables signature verification. This | |
| CVE-2026-23991 | Med | 5.9 | < 0_git20251212-r5 | 0_git20251212-r5 | Jan 22, 2026 | go-tuf is a Go implementation of The Update Framework (TUF). Starting in version 2.0.0 and prior to version 2.3.1, if the TUF repository (or any of its mirrors) returns invalid TUF metadata JSON (valid JSON but not well formed TUF metadata), the client will panic during parsing, | |
| CVE-2025-66564 | Hig | 7.5 | < 0_git20251212-r0 | 0_git20251212-r0 | Dec 4, 2025 | Sigstore Timestamp Authority is a service for issuing RFC 3161 timestamps. Prior to 2.0.3, Function api.ParseJSONRequest currently splits (via a call to strings.Split) an optionally-provided OID (which is untrusted data) on periods. Similarly, function api.getContentType splits t | |
| CVE-2025-61729 | Hig | 7.5 | < 0_git20250629-r6 | 0_git20250629-r6 | Dec 2, 2025 | Within HostnameError.Error(), when constructing an error string, there is no limit to the number of hosts that will be printed out. Furthermore, the error string is constructed by repeated string concatenation, leading to quadratic runtime. Therefore, a certificate provided by a | |
| CVE-2025-61725 | Hig | 7.5 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | The ParseAddress function constructs domain-literal address components through repeated string concatenation. When parsing large domain-literal components, this can cause excessive CPU consumption. | |
| CVE-2025-61724 | Med | 5.3 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | The Reader.ReadResponse function constructs a response string through repeated string concatenation of lines. When the number of lines in a response is large, this can cause excessive CPU consumption. | |
| CVE-2025-61723 | Hig | 7.5 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | The processing time for parsing some invalid inputs scales non-linearly with respect to the size of the input. This affects programs which parse untrusted PEM inputs. | |
| CVE-2025-58189 | Med | 5.3 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | When Conn.Handshake fails during ALPN negotiation the error contains attacker controlled information (the ALPN protocols sent by the client) which is not escaped. | |
| CVE-2025-58188 | Hig | 7.5 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | Validating certificate chains which contain DSA public keys can cause programs to panic, due to a interface cast that assumes they implement the Equal method. This affects programs which validate arbitrary certificate chains. | |
| CVE-2025-58187 | Hig | 7.5 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | Due to the design of the name constraint checking algorithm, the processing time of some inputs scale non-linearly with respect to the size of the certificate. This affects programs which validate arbitrary certificate chains. | |
| CVE-2025-58186 | Med | 5.3 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | Despite HTTP headers having a default limit of 1MB, the number of cookies that can be parsed does not have a limit. By sending a lot of very small cookies such as "a=;", an attacker can make an HTTP server allocate a large amount of structs, causing large memory consumption. | |
| CVE-2025-58185 | Med | 5.3 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | Parsing a maliciously crafted DER payload could allocate large amounts of memory, causing memory exhaustion. | |
| CVE-2025-58183 | Med | 4.3 | < 0_git20250629-r4 | 0_git20250629-r4 | Oct 29, 2025 | tar.Reader does not set a maximum size on the number of sparse region data blocks in GNU tar pax 1.0 sparse files. A maliciously-crafted archive containing a large number of sparse regions can cause a Reader to read an unbounded amount of data from the archive into memory. When r |
- affected < 0_git20251212-r2fixed 0_git20251212-r2
During the TLS 1.3 handshake if multiple messages are sent in records that span encryption level boundaries (for instance the Client Hello and Encrypted Extensions messages), the subsequent messages may be processed before the encryption level changes. This can cause some minor i
- affected < 0fixed 0
archive/zip uses a super-linear file name indexing algorithm that is invoked the first time a file in an archive is opened. This can lead to a denial of service when consuming a maliciously constructed ZIP archive.
- affected < 0_git20251212-r2fixed 0_git20251212-r2
The net/url package does not set a limit on the number of query parameters in a query. While the maximum size of query parameters in URLs is generally limited by the maximum request header size, the net/http.Request.ParseForm method can parse large URL-encoded forms. Parsing a la
- affected < 0_git20251212-r5fixed 0_git20251212-r5
go-tuf is a Go implementation of The Update Framework (TUF). go-tuf's TAP 4 Multirepo Client uses the map file repository name string (`repoName`) as a filesystem path component when selecting the local metadata cache directory. Starting in version 2.0.0 and prior to version 2.4.
- affected < 0_git20251212-r4fixed 0_git20251212-r4
sigstore framework is a common go library shared across sigstore services and clients. In versions 1.10.3 and below, the legacy TUF client (pkg/tuf/client.go) supports caching target files to disk. It constructs a filesystem path by joining a cache base directory with a target na
- affected < 0_git20251212-r3fixed 0_git20251212-r3
Rekor is a software supply chain transparency log. In versions 1.4.3 and below, attackers can trigger SSRF to arbitrary internal services because /api/v1/index/retrieve supports retrieving a public key via user-provided URL. Since the SSRF only can trigger GET requests, the reque
- affected < 0_git20251212-r3fixed 0_git20251212-r3
Rekor is a software supply chain transparency log. In versions 1.4.3 and below, the entry implementation can panic on attacker-controlled input when canonicalizing a proposed entry with an empty spec.message, causing nil Pointer Dereference. Function validate() returns nil (succe
- affected < 0_git20251212-r5fixed 0_git20251212-r5
go-tuf is a Go implementation of The Update Framework (TUF). Starting in version 2.0.0 and prior to version 2.3.1, a compromised or misconfigured TUF repository can have the configured value of signature thresholds set to 0, which effectively disables signature verification. This
- affected < 0_git20251212-r5fixed 0_git20251212-r5
go-tuf is a Go implementation of The Update Framework (TUF). Starting in version 2.0.0 and prior to version 2.3.1, if the TUF repository (or any of its mirrors) returns invalid TUF metadata JSON (valid JSON but not well formed TUF metadata), the client will panic during parsing,
- affected < 0_git20251212-r0fixed 0_git20251212-r0
Sigstore Timestamp Authority is a service for issuing RFC 3161 timestamps. Prior to 2.0.3, Function api.ParseJSONRequest currently splits (via a call to strings.Split) an optionally-provided OID (which is untrusted data) on periods. Similarly, function api.getContentType splits t
- affected < 0_git20250629-r6fixed 0_git20250629-r6
Within HostnameError.Error(), when constructing an error string, there is no limit to the number of hosts that will be printed out. Furthermore, the error string is constructed by repeated string concatenation, leading to quadratic runtime. Therefore, a certificate provided by a
- affected < 0_git20250629-r4fixed 0_git20250629-r4
The ParseAddress function constructs domain-literal address components through repeated string concatenation. When parsing large domain-literal components, this can cause excessive CPU consumption.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
The Reader.ReadResponse function constructs a response string through repeated string concatenation of lines. When the number of lines in a response is large, this can cause excessive CPU consumption.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
The processing time for parsing some invalid inputs scales non-linearly with respect to the size of the input. This affects programs which parse untrusted PEM inputs.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
When Conn.Handshake fails during ALPN negotiation the error contains attacker controlled information (the ALPN protocols sent by the client) which is not escaped.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
Validating certificate chains which contain DSA public keys can cause programs to panic, due to a interface cast that assumes they implement the Equal method. This affects programs which validate arbitrary certificate chains.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
Due to the design of the name constraint checking algorithm, the processing time of some inputs scale non-linearly with respect to the size of the certificate. This affects programs which validate arbitrary certificate chains.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
Despite HTTP headers having a default limit of 1MB, the number of cookies that can be parsed does not have a limit. By sending a lot of very small cookies such as "a=;", an attacker can make an HTTP server allocate a large amount of structs, causing large memory consumption.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
Parsing a maliciously crafted DER payload could allocate large amounts of memory, causing memory exhaustion.
- affected < 0_git20250629-r4fixed 0_git20250629-r4
tar.Reader does not set a maximum size on the number of sparse region data blocks in GNU tar pax 1.0 sparse files. A maliciously-crafted archive containing a large number of sparse regions can cause a Reader to read an unbounded amount of data from the archive into memory. When r
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