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cpe:2.3:a:apple:swiftnio:*:*:*:*:*:*:*:*
part: a version: * update: *
| Vendor | Apple (c2b419d0-9f0f-51c1-88dc-2e204a98e1c7) |
|---|---|
| Product | Swiftnio (d7339550-42d8-5c71-9a64-48594b0d4737) |
| Edition | * |
| Language | * |
| Software edition | * |
| Target software | * |
| Target hardware | * |
| Other | * |
| Notes | Imported from purl2cpe mapping |
PURL mappings
| PURL | Source | Last updated |
|---|---|---|
pkg:github/apple/swift-nio |
purl2cpe | 2026-06-01 10:12:26.192054 |
pkg:sourceforge/swiftnio.mirror |
purl2cpe | 2026-06-01 10:12:26.192057 |
Vulnerability references
| Identifier | cpeApplicability | Submitted | db.gcve.eu details | Rationale |
|---|---|---|---|---|
CVE:CVE-2022-3215 |
vulnerable | 2026-06-08 05:47:19.738572 |
Details available
NIOHTTP1 and projects using it for generating HTTP responses can be subject to a HTTP Response Injection attack. This occurs when a HTTP/1.1 server accepts user generated input from an incoming request and reflects it into a HTTP/1.1 response header in some form. A malicious user can add newlines to their input (usually in encoded form) and "inject" those newlines into the returned HTTP response. This capability allows users to work around security headers and HTTP/1.1 framing headers by injecting entirely false responses or other new headers. The injected false responses may also be treated as the response to subsequent requests, which can lead to XSS, cache poisoning, and a number of other flaws. This issue was resolved by adding validation to the HTTPHeaders type, ensuring that there's no whitespace incorrectly present in the HTTP headers provided by users. As the existing API surface is non-failable, all invalid characters are replaced by linear whitespace.
Published: 2022-09-28T19:32:30.000Z
Updated: 2025-05-20T20:02:25.500Z |
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9518 |
vulnerable | 2026-06-08 05:14:25.670904 |
Some HTTP/2 implementations are vulnerable to a flood of empty frames, potentially leading to a denial of service
HIGH (7.5)
Some HTTP/2 implementations are vulnerable to a flood of empty frames, potentially leading to a denial of service. The attacker sends a stream of frames with an empty payload and without the end-of-stream flag. These frames can be DATA, HEADERS, CONTINUATION and/or PUSH_PROMISE. The peer spends time processing each frame disproportionate to attack bandwidth. This can consume excess CPU.
Published: 2019-08-13T20:50:59.000Z
Updated: 2024-08-04T21:54:44.510Z |
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9517 |
vulnerable | 2026-06-08 05:14:25.653099 |
Some HTTP/2 implementations are vulnerable to unconstrained interal data buffering, potentially leading to a denial of service
HIGH (7.5)
Some HTTP/2 implementations are vulnerable to unconstrained interal data buffering, potentially leading to a denial of service. The attacker opens the HTTP/2 window so the peer can send without constraint; however, they leave the TCP window closed so the peer cannot actually write (many of) the bytes on the wire. The attacker then sends a stream of requests for a large response object. Depending on how the servers queue the responses, this can consume excess memory, CPU, or both.
Published: 2019-08-13T20:50:59.000Z
Updated: 2024-08-04T21:54:44.675Z Reference links
|
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9516 |
vulnerable | 2026-06-08 05:14:25.649442 |
Some HTTP/2 implementations are vulnerable to a header leak, potentially leading to a denial of service
HIGH (7.5)
Some HTTP/2 implementations are vulnerable to a header leak, potentially leading to a denial of service. The attacker sends a stream of headers with a 0-length header name and 0-length header value, optionally Huffman encoded into 1-byte or greater headers. Some implementations allocate memory for these headers and keep the allocation alive until the session dies. This can consume excess memory.
Published: 2019-08-13T20:50:59.000Z
Updated: 2024-08-04T21:54:44.285Z |
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9515 |
vulnerable | 2026-06-08 05:14:25.646970 |
Some HTTP/2 implementations are vulnerable to a settings flood, potentially leading to a denial of service
HIGH (7.5)
Some HTTP/2 implementations are vulnerable to a settings flood, potentially leading to a denial of service. The attacker sends a stream of SETTINGS frames to the peer. Since the RFC requires that the peer reply with one acknowledgement per SETTINGS frame, an empty SETTINGS frame is almost equivalent in behavior to a ping. Depending on how efficiently this data is queued, this can consume excess CPU, memory, or both.
Published: 2019-08-13T20:50:59.000Z
Updated: 2024-08-04T21:54:44.327Z Reference links
|
Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9514 |
vulnerable | 2026-06-08 05:14:25.628847 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9513 |
vulnerable | 2026-06-08 05:14:25.626323 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9512 |
vulnerable | 2026-06-08 05:14:25.624825 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2019-9511 |
vulnerable | 2026-06-08 05:14:25.601937 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
CVE:CVE-2018-4281 |
vulnerable | 2026-06-08 05:11:41.875037 | db.gcve.eu details were skipped to keep the page responsive. | Imported from gcve-enriched-dumps CVE data |
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