RHSA-2026:56431
Vulnerability from csaf_redhat - Published: 2026-08-18 18:22 - Updated: 2026-10-09 04:09A flaw was found in the net/url package in the Go standard library. The package does not enforce a limit on the number of unique query parameters it parses. A Go application using the net/http.Request.ParseForm method will try to process all parameters provided in the request. A specially crafted HTTP request containing a massive number of query parameters will cause the application to consume an excessive amount of memory, eventually causing the application to crash or become unresponsive, resulting in a denial of service.
| Product | Identifier | Version | Remediation |
|---|---|---|---|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9-operator@sha256:21b851833c425cd0638fa0d97672b30481fe6196a38817955500f10f3516acaa_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9-operator@sha256:4e29a09b15c2149d96e02b302dfa5c89d88e647467427f251d7dcc949710a153_s390x | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9-operator@sha256:7bbc972cffbd7c92a685e1cfb73365b261908046ccd7b712659b9b47737dfafa_ppc64le | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9-operator@sha256:dd66f2aabe08104f33b6ed32786947f9b91c37404d06b46838397c8c791dad0a_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9@sha256:5e63bdd0b4345a25ed76efcc62a068f88b0c688328713e1711ca4cac73f96d76_s390x | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9@sha256:5eeddca3c800ec55d4d7dd479cfcd1751394b40e481b86433cd3838d2170952c_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-rhel9@sha256:fd06b75eb32cf69d0ab0c18eb922d540f0362d12aec3a9029fa77e13f307cb3f_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-core-rhel9@sha256:2156c85468c3bd37a4a9cec2538aaf529fc4317b1cd56705c4f39247dbc1d1ff_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-core-rhel9@sha256:3701ca9bcf39e032702226a25a2d1a1ceedb2c9dc9e5bcfedc0104ad9d11e8c2_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-core-rhel9@sha256:86da6a6280816bc50f36041e7a979274c3a5b27a63bccf15507e1f66afb49464_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-rhel9-operator@sha256:0b4d42e8e476f817548053fc8363084c60e7c4c8278fdad46f89752c422318f7_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-rhel9-operator@sha256:0bdec5fd8a2a4df637a6dbe6da3c7aa7dd98e424f6ccac1b666069240c3c6a2b_s390x | — |
Vendor Fix
fix
Workaround
|
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-rhel9-operator@sha256:55d1e96c46d7e18200d64878901161cad4a2e5ddb1bd2ab35e21d0e63743db4a_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-rhel9-operator@sha256:65e384de217a7ac0752bd0bd7e39f2a16d3d55023b7e389dbfd6223e3050caef_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-console-rhel9@sha256:13e09d8d7196c9c24af4756aecc76226f5193a6fb8efd6314d72afb1ee8b08af_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-console-rhel9@sha256:339175c0cf3bfc97a1b5f1fd40be12b124b9eadd7e3990b40c01cc2c8f202088_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-console-rhel9@sha256:bb3516bbf6e6eeb5a9949de05c19d80a903533c0fcf4a756ff7f68af793a516c_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-rhel9-operator@sha256:06e77572fb0925499e831cea92e04009dba079413374794f89087484bce54ac9_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-rhel9-operator@sha256:8251a421792fffa707904b2d23b15b11fe0e2d85b526824e7c64d74c90a582d0_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-rhel9-operator@sha256:bec7bd0e64563d9df240e1be1b717db34ad76abbe1665404cb77f26d6b1cdc36_ppc64le | — |
Vendor Fix
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Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-rhel9-operator@sha256:caf3ccf3985ba2b9308567885b17eb0ab34ffbbacc194b6459fc0f9f8a612974_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-metrics-exporter-rhel9@sha256:126f56171f915a0a53f6f5dcb315855911aa40a91c76a5f8188b7a7a103350d5_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-metrics-exporter-rhel9@sha256:3457ba8cafdf27bfd21fdf20314da9141b263034026052d5543846397b38eafd_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-metrics-exporter-rhel9@sha256:d31a9f14f99c50f2a79774147289e5715e321f2db4c9b4ef938feaad31882c7c_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-rhel9-operator@sha256:02b74a58540b0a6cb4e887843fa2b6adad58506af305b73f78b415ed5eb26cf5_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-rhel9-operator@sha256:3371d5a58aad8a88b93c9d4ba0bd207ef1b995198fdc5b14d458ce9945556299_arm64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-rhel9-operator@sha256:453592b92ed196134663051a8dd4c0141eb21811753298ab8b103ff68bee139c_s390x | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-rhel9-operator@sha256:6f7fd5670c320a901a22ceed54af4108a297179da36cac6b56150df491ab9381_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cli-rhel9@sha256:298eec5fa31c1f77a8e6e69fbeda1e6aff39a54d93db279e85117f00970649c3_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cli-rhel9@sha256:e03788c306a8bfadf37e6851069964fb779c411f389f3ae42a1a93eb49051f75_s390x | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cli-rhel9@sha256:e89446be9864967779893c78c052a5bf86c902a50ff105330c61228ffd06967d_arm64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cli-rhel9@sha256:ee586168cf4baaf94510c994256ab7f07fd35ccce724cc00f97ce44299724f33_ppc64le | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-console-rhel9@sha256:2c8ed71875258cb98040ba9703d21fbb580c0a28b56332c470c1349a550dd8bc_s390x | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-console-rhel9@sha256:8205498755d6fda904d0fd4a5489f6712a22f6d5a36356cd3e13cf60029ccba0_amd64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-console-rhel9@sha256:a5f1f7149bcd89511bb18e4227668479b57d21737fe375f6f05dbd05eb6121f0_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cosi-sidecar-rhel9@sha256:51a87fc3b318d13b4a611cd1902d563d67e328f1055a08e364f3e98d22d5e676_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cosi-sidecar-rhel9@sha256:5cc23c3f8cdc64806606e56e43413d3c7d1a81f59598ec78499a39a6ae1e5c7f_ppc64le | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-cosi-sidecar-rhel9@sha256:d598f7ce9246d636c85694215cc9733ad13efedf937857baab0850e7157048f7_s390x | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-rhel9-operator@sha256:0da1b1d3e278ccd8641d1d5f35ac327b8ceadd13068cc1b0e1efbea92ef9e906_s390x | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-rhel9-operator@sha256:46ccab3183df7d519d2476cd62c25be49efe9edb55cd4e5655068d50d0c78907_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-rhel9-operator@sha256:55e5fdd6ac24cd178b8110c8238e29277c09463cea9705edc0bb12de3a11f181_arm64 | — |
Vendor Fix
fix
Workaround
|
|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-rhel9-operator@sha256:e0ff475e76e4b5317f1c170f8ee95936459fb11071ff3d646c01f946833766ce_ppc64le | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-sidecar-rhel9@sha256:471a632192a27f78007f5e5c3ff524ddfcb5901101e642cfdeab52871525946a_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-sidecar-rhel9@sha256:87ac650573ec79283e0a2cf68a10e3f3d729760c25cff4de56cebdb8a12c153a_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-sidecar-rhel9@sha256:a0ac3368b7d69becc00453063eefec48508a4c75a04d186375417f491a1053e0_arm64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-sidecar-rhel9@sha256:d71d29e10721804f512f504911def984dda042d2ec73a437acfa4e3792d0185e_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-console-rhel9@sha256:7b9df869257ca9920d2ff3bff8bbf712577ed23e36bda5fdf014fd12fffd6c2e_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-console-rhel9@sha256:d400e34155c0c53b5dd76cbe9c85b974eeb6dcf61276a54bd918850d96b45c9d_amd64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-console-rhel9@sha256:eb4ab70e756854cec20cc9fb5e2c06f47f155fddebe548a4fa18dd504280819e_ppc64le | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-rhel9-operator@sha256:02cd2e7231b456f8ce4d7078d5f78f5d5c906b65ca4bbaa967a7ce9ba0d35a3b_arm64 | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-rhel9-operator@sha256:12b2ce8e5aa6b00c3da8dbdbd29c6fdf5802f3219b802af71e85ac23b7b8fe86_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-rhel9-operator@sha256:9822f2a62b8071abbfa4980e64d5111b16dcdffd9396375b5be8f9dbe92eeb21_ppc64le | — |
Vendor Fix
fix
Workaround
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|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-rhel9-operator@sha256:a7fa9d055ca3f5a34a962c25d84bfc0146204f592010cc6e6b2b8733f3cee0ac_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-must-gather-rhel9@sha256:134a6d5009f511a96c3a4cc97268fc9973d096fea51cccf9014324860ed18dd8_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-must-gather-rhel9@sha256:3a6245a105ea13604e93ffbb9077452924cc3f15a57a86b50b8688b6166e4dd4_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-must-gather-rhel9@sha256:86c942ea7ec93e06de0c63311612fc0333aa1dd23c10e3576445a75b3afaa0ac_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-must-gather-rhel9@sha256:f6e6590737f32ca00548e892b352a368f05bf3d1a6dfd86328cea9c4d546bdc6_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-rhel9-operator@sha256:3f5fa0c2bc88c64616932b33cfd5b9f4ad19747296101abb7571d9b57f730a30_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-rhel9-operator@sha256:4a871e6a0a281699a794dd5760c6e884f2ab66e60880e411873e4d97bdf1c8df_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-rhel9-operator@sha256:58fa9a365e20160ff9717cefd0fe98aaa1d520088886a415d0082e1b5b92197d_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-rhel9-operator@sha256:b0b939fe129b872207a7f660af0a3ec24fc502679c3531d481fc59eae7dfb801_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-rhel9-operator@sha256:117e0bacb3ede37496ee9cc3a4b7982a9da067cb6e3bcc25f8ed4ca3246c63ff_arm64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-rhel9-operator@sha256:5583729a1644bf05352344cf99cf5e829f6733ddde17f791a47554e31ef09ca7_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-rhel9-operator@sha256:756ee4d78666bebb1555450b90e05247c09068bac8eab3e40fe2310322b0b4a6_amd64 | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-rhel9-operator@sha256:a518b5f2989e01e0ba58cc3906c0fcb1cf1fe098089fc1a30c9de5076149b469_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/rook-ceph-rhel9-operator@sha256:5e08b4a033886c63302aec9df84ffd511e7ad20d0856f9f2079cfd2d1f34d1c3_s390x | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/rook-ceph-rhel9-operator@sha256:7899ef692821adf79cac19466652c10c7e0cea080cb9c734e4fa0f7aaa34eec6_ppc64le | — |
Vendor Fix
fix
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/rook-ceph-rhel9-operator@sha256:7beae5bd04b42e19063320a47c5e84f088a32d8d366e64f4ebcdd9b9ece6b4c1_amd64 | — |
Vendor Fix
fix
Workaround
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| Product | Identifier | Version | Remediation |
|---|---|---|---|
| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/cephcsi-operator-bundle@sha256:22109b609bd977065bcfd86110ea84cbfa35d120ccba1fbf110758b7f33cd846_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/mcg-operator-bundle@sha256:afb2e5106fba487ead34877b5964182b76e56384e1bfd99b230e35b0a12f0281_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-client-operator-bundle@sha256:caa566db111b5c41f692b06d1ff10a5bc12bae630b7f19cc688332cac459a313_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/ocs-operator-bundle@sha256:435fc527a5f9ac40447a9f14a4a91a2334c0a964eb1479a4d800d66534d91e90_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-csi-addons-operator-bundle@sha256:3490e412368bcf9af6422763b1bd75c98e64481cb2b99d2e64b74326849135c3_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-dependencies-operator-bundle@sha256:723f6bd3930d936d2ef9411270d605b4c1627e3c59a971d685749280b4fb4aa7_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-multicluster-operator-bundle@sha256:c04476d09f0048a5e5020d716977c8fbceb6b1b0e958af1e53b238461722aff0_amd64 | — |
Workaround
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-operator-bundle@sha256:8d4c56b1606da8e9bea3f7cba781fe455dfbf8e4d7e0d698315e194569032975_amd64 | — |
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odf-prometheus-operator-bundle@sha256:9c4fe28c6b8102a4346ea7f994d83f7fbc6200ee9d41ca5a0ff315688acc3a45_amd64 | — |
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-cluster-operator-bundle@sha256:f4041e98e550cee6b1cbf69a5efad9ba82f53148add6104fd4d4a3fc7eb2e7da_amd64 | — |
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-hub-operator-bundle@sha256:d716eec13881da0c5add724196e7b99c7129a9a250e3fb9cd5ed88219ed85ba5_amd64 | — |
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/odr-recipe-operator-bundle@sha256:c3c1590266109ea49f0b07e2ece5bdf76f8a4ffa7b1ae931b7999edca0f83287_amd64 | — |
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| Unresolved product id: Red Hat Openshift Data Foundation 4.18:registry.redhat.io/odf4/rook-ceph-operator-bundle@sha256:8e21a0d9559776904471b510035a6d8215bf0f3cc8680124b3d393c1bf458a1e_amd64 | — |
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A flaw was found in golang. A remote attacker could exploit this vulnerability by providing a specially crafted certificate during the error string construction process within the `HostnameError.Error()` function. This flaw, caused by unbounded string concatenation, leads to excessive resource consumption. Successful exploitation can result in a denial of service (DoS) for the affected system.
A prototype pollution flaw has been discovered in the js-yaml npm library. It's possible for an attacker to modify the prototype of the result of a parsed yaml document via prototype pollution (__proto__). All users who parse untrusted yaml documents may be impacted.
An open redirect flaw has been discovered in the react-router npm library. An attacker-supplied path can be crafted so that when a React Router application navigates to it via navigate(), <Link>, or redirect(), the app performs a navigation/redirect to an external URL. This is only an issue if you are passing untrusted content into navigation paths in your application code.
A flaw was found in undici, a Node.js HTTP/1.1 client. A remote attacker could exploit this vulnerability by sending HTTP/1.1 requests that include duplicate Content-Length headers with different casing (e.g., "Content-Length" and "content-length"). This can lead to HTTP Request Smuggling, a technique where an attacker sends an ambiguous request that is interpreted differently by a proxy and a backend server. Successful exploitation could result in unauthorized access, cache poisoning, or credential hijacking. It may also cause a Denial of Service (DoS) if strict HTTP parsers reject the malformed requests.
A flaw was found in undici. A remote attacker can exploit this vulnerability by sending a specially crafted compressed frame, known as a "decompression bomb," during permessage-deflate decompression. The undici WebSocket client does not properly limit the size of decompressed data, leading to unbounded memory consumption. This can cause the Node.js process to exhaust available memory, resulting in a denial of service (DoS) where the process crashes or becomes unresponsive.
A flaw was found in undici, a Node.js HTTP/1.1 client. This vulnerability allows a remote attacker to inject malicious data into HTTP headers or prematurely end HTTP requests by sending specially crafted input to the `upgrade` option of `client.request()`. This is possible because undici does not properly validate input for invalid header characters, which could lead to unauthorized information disclosure or bypassing of security controls.
A flaw was found in the undici WebSocket client. A remote malicious server can exploit this vulnerability by sending a WebSocket frame with an invalid `server_max_window_bits` parameter within the permessage-deflate extension. This improper validation causes the client's Node.js process to terminate, leading to a denial-of-service (DoS) condition for the client.
A flaw was found in fast-uri. A remote attacker could exploit this vulnerability by providing a specially crafted Uniform Resource Locator (URL) containing percent-encoded path separators and dot segments. Due to incorrect processing, fast-uri would decode these elements before proper normalization, leading to distinct URLs resolving to the same internal path. This could allow an attacker to bypass security policies that rely on path-based comparisons, potentially gaining unauthorized access to resources.
A flaw was found in fast-uri. A remote attacker could exploit this vulnerability by crafting a malicious Uniform Resource Identifier (URI) that contains percent-encoded authority delimiters. The fast-uri library incorrectly decodes these delimiters during normalization and then re-emits them as raw separators, which can change the URI's intended authority. This issue allows applications that perform host allowlist checks, redirect validation, or outbound request routing to be steered to a different authority than specified, potentially bypassing security controls.
A flaw was found in undici. An attacker-controlled upstream server can exploit a vulnerability in Undici's HTTP/1.1 client, specifically related to response queue poisoning on reused keep-alive sockets. This allows the attacker to inject an unsolicited HTTP/1.1 response onto an idle socket. Consequently, when the client dispatches a new request on that socket, it may associate the injected response with the new request, leading to responses being delivered to unintended recipients or requests. This could result in a low impact on data integrity.
CWE-940 - Improper Verification of Source of a Communication ChannelA flaw was found in undici. When using Socks5ProxyAgent, undici incorrectly reuses a single connection pool across different origins. This can lead to cross-origin request routing, where sensitive credentials and data intended for one destination are sent to another. Consequently, responses from unintended origins may be trusted, and secure HTTPS connections could be silently downgraded to unencrypted HTTP, resulting in information disclosure and data integrity issues.
A flaw was found in postcss. A remote attacker could exploit a vulnerability in the `toString` function of the AST Serialization component by executing a manipulation, leading to uncontrolled recursion. This uncontrolled recursion can result in a Denial of Service (DoS) condition, making the affected system unavailable.
A flaw was found in undici. The cookie parser in the `parseSetCookie` function incorrectly decodes cookie values, which is contrary to standard specifications. This vulnerability allows an attacker-controlled upstream to inject arbitrary HTTP response headers, such as `Set-Cookie`, `Location`, or `Cache-Control`. The primary consequence is HTTP response header injection, which can lead to session fixation, open redirect, or cache poisoning.
A flaw was found in undici. When undici's ProxyAgent is configured with a SOCKS5 proxy Uniform Resource Identifier (URI), it silently ignores Transport Layer Security (TLS) options, such as custom Certificate Authorities (CAs). This allows a remote attacker to perform a Man-in-the-Middle (MITM) attack, intercepting and tampering with HTTPS communications. The connection falls back to Node.js's default trust store, bypassing intended security configurations and potentially leading to information disclosure or arbitrary code execution.
A flaw was found in undici. When undici processes Set-Cookie headers, it incorrectly interprets the SameSite attribute, accepting partial matches instead of exact ones. This allows a malicious server to downgrade a cookie's SameSite policy to a less secure setting, potentially leading to unintended information disclosure or a weakening of security protections for the user.
CWE-1286 - Improper Validation of Syntactic Correctness of InputA flaw was found in form-data, a library for creating readable multipart/form-data streams. A remote attacker can exploit this vulnerability by injecting carriage return (CR), line feed (LF), or double-quote (") characters into the `field` argument of `FormData#append` or the `filename` option. This allows the attacker to inject additional headers or smuggle entire additional multipart parts into requests, potentially enabling them to add or override form fields and compromise data integrity.
A flaw was found in undici. A malicious WebSocket server can exploit this by streaming numerous small or empty continuation frames. This can bypass per-frame and cumulative-size validation, leading to unbounded memory growth in the client process. The primary consequence is memory exhaustion, resulting in a denial of service (DoS) for affected applications using the undici WebSocket client or WebSocketStream API.
A flaw was found in brace-expansion. An attacker can exploit a vulnerability in the `expand()` function by providing a specially crafted string. This string, containing consecutive non-expanding brace groups, can trigger exponential-time complexity, leading to significant CPU consumption and event-loop blocking. This can result in a Denial of Service (DoS) for the affected system.
A flaw was found in fast-uri. This vulnerability occurs because fast-uri fails to properly convert Unicode (Internationalized Domain Name - IDN) hostnames for HTTP-family URLs. This can lead to a situation where security policies, such as denylists or redirect validations, are bypassed when applications use fast-uri to enforce these policies before passing the URL to another parser. A remote attacker could exploit this to circumvent security controls and potentially access unauthorized resources or perform malicious redirects.
A flaw was found in Undici, an HTTP/1.1 client for Node.js. A remote attacker could exploit this vulnerability by sending a specially crafted HTTP response with an unbounded number of links in the decompression chain. This could lead to high CPU usage and excessive memory allocation, resulting in a Denial of Service (DoS) for the affected system.
CWE-770 - Allocation of Resources Without Limits or ThrottlingA flaw was found in the `requests` HTTP library, specifically in the `requests.utils.extract_zipped_paths()` function, which is used to load Certificate Authority (CA) bundles. A local attacker can exploit this vulnerability by pre-creating a malicious CA bundle file in the system's temporary directory. When a vulnerable application initializes the `requests` library, it may load this malicious file instead of the legitimate CA bundle, leading to a bypass of security controls and potential integrity compromise.
A flaw was found in gRPC-Go, the Go language implementation of gRPC. This vulnerability, an authorization bypass, is caused by improper input validation of the HTTP/2 `:path` pseudo-header. A remote attacker can exploit this by sending raw HTTP/2 frames with a malformed `:path` that omits the mandatory leading slash. This allows the attacker to bypass defined security policies, potentially leading to unauthorized access to services or information disclosure.
A flaw was found in fast-xml-parser. A remote attacker can exploit this vulnerability by providing specially crafted XML input to an application using the affected library. The DocTypeReader component incorrectly processes configuration limits for entity counts and sizes when these limits are explicitly set to zero, bypassing intended restrictions. This oversight allows for unbounded entity expansion, consuming excessive memory and leading to a Denial of Service (DoS) condition, which makes the application unavailable to legitimate users.
A flaw was found in Picomatch, a JavaScript glob matcher. This Regular Expression Denial of Service (ReDoS) vulnerability allows a remote attacker to cause excessive CPU consumption and block the Node.js event loop, leading to a denial of service. This occurs when untrusted users supply crafted extglob patterns, specifically those using quantifiers like `+()` and `*()` combined with overlapping alternatives or nested extglobs, which can trigger catastrophic backtracking in the compiled regular expressions.
A flaw was found in picomatch, a JavaScript glob matcher. A remote attacker could exploit a method injection vulnerability by providing specially crafted POSIX bracket expressions, such as [[:constructor:]]. This allows the attacker to inject inherited method names into generated regular expressions, leading to incorrect glob matching behavior. This issue can cause security-relevant logic errors in applications that use picomatch for filtering, validation, or access control, potentially compromising data integrity.
A flaw was found in the brace-expansion library, a component used for generating strings based on patterns. A remote attacker could exploit this vulnerability by providing a specially crafted brace pattern that includes a zero step value. This malicious input causes the library's sequence generation loop to run indefinitely, leading to excessive memory allocation and causing the process to hang. This results in a Denial of Service (DoS) for the affected application.
A flaw was found in serialize-javascript. An attacker can exploit this vulnerability by providing a specially crafted "array-like" object with an excessively large length property during the serialization process. This action causes the application to enter an intensive loop, leading to 100% CPU consumption and an indefinite hang. The primary consequence is a Denial of Service (DoS), making the affected system unresponsive.
A flaw was found in Go JOSE, a library for handling JSON Web Encryption (JWE) objects. A remote attacker could exploit this vulnerability by providing a specially crafted JWE object. When decrypting such an object, if a key wrapping algorithm is specified but the encrypted key field is empty, the application can crash. This leads to a denial of service (DoS), making the affected service unavailable to legitimate users.
A flaw was found in the SPDY streaming code used by Kubelet, CRI-O, and kube-apiserver. An attacker with specific cluster roles, such as those allowing access to pod port forwarding, execution, or attachment, or node proxying, could exploit this vulnerability. This could lead to a Denial of Service (DoS) by causing the affected components to become unresponsive.
A flaw was found in golang.org/x/net/idna. ToASCII and ToUnicode incorrectly accept Punycode-encoded labels that decode to an ASCII-only hostname (for example, xn--example-.com returns example.com instead of an error). Applications that validate the ASCII form then convert to Unicode may grant access to a restricted hostname the ASCII check would have rejected.
A flaw was found in React Router. This vulnerability allows a remote attacker to redirect users to an external, potentially malicious, website. This occurs when specially crafted URLs, containing paths starting with `//`, are passed to the redirect function, causing them to be misinterpreted as protocol-relative URLs. The severity of the impact depends on how the application validates redirects.
A flaw was found in PostCSS. This vulnerability allows a remote attacker to perform Cross-Site Scripting (XSS) by submitting specially crafted CSS. When PostCSS processes and re-stringifies this CSS for embedding within HTML `<style>` tags, it fails to properly escape `</style>` sequences. This oversight enables the injected `</style>` to prematurely close the HTML style block, allowing the attacker to inject malicious scripts and execute arbitrary code in the user's browser context.
A flaw was found in fast-xml-parser. The XMLBuilder component does not properly escape specific sequences ("-->" in comments and "]]>" in CDATA sections) when constructing XML from JavaScript objects. This vulnerability allows an attacker to perform XML injection if user-controlled data is processed within comments or CDATA elements. Successful exploitation can lead to Cross-Site Scripting (XSS), SOAP injection, or unauthorized data manipulation.
A flaw was found in uuid. The library's versions v3, v5, and v6 do not adequately check the size of external memory buffers provided by applications. This oversight allows the library to write data beyond the designated buffer limits without signaling an error. Such out-of-bounds writes can lead to data corruption, unintended information disclosure, or disrupt application availability.
A flaw was found in React Router and @remix-run/server-runtime. A remote attacker can exploit this vulnerability by sending certain crafted requests to the __manifest endpoint. This can lead to unbounded path expansion, consuming disproportionate server resources. The primary consequence is a denial of service (DoS), resulting in response time degradation and service unavailability for end users.
A flaw was found in the idna library, which handles Internationalized Domain Names in Python applications. A remote attacker could exploit this vulnerability by sending specially crafted, excessively long inputs to the library's encoding function. This could cause the system to consume significant resources, leading to a Denial of Service (DoS), where the affected application becomes unavailable to legitimate users. This issue stems from an incomplete fix for a previously identified vulnerability.
A flaw was found in ws, an open source WebSocket client and server for Node.js. The `websocket.close()` implementation is vulnerable to uninitialized memory disclosure when a `TypedArray` is passed as the reason argument. This can lead to the disclosure of sensitive information from uninitialized memory.
A flaw was found in ws, an open source WebSocket client and server. A remote attacker can exploit this memory exhaustion vulnerability by sending a high volume of exceptionally small fragments and data chunks. This action forces the affected component to allocate and hold structural wrappers that consume excessive memory. Consequently, this leads to process termination and a denial of service (DoS) for the remote peer.
A flaw was found in linkify-it, a library for recognizing links with full Unicode support. The LinkifyIt.prototype.match function, the package's primary public API, has an algorithmic complexity of O(N²) for inputs containing many fuzzy links or emails. This can be exploited by a remote attacker sending a specially crafted request body, leading to a worker-process denial of service (DoS) due to excessive CPU usage when synchronously rendering untrusted Markdown with linkify enabled.
A flaw was found in js-yaml, a JavaScript YAML parser and dumper. A remote attacker can exploit this vulnerability by providing a specially crafted YAML document that repeatedly uses the same alias in a merge sequence. This can lead to algorithmic CPU exhaustion, causing the Node.js worker or event loop to be blocked for an extended period, resulting in a denial of service (DoS) for the affected system.
A flaw was found in js-yaml, a JavaScript YAML parser and dumper. A remote attacker could exploit this vulnerability by providing a specially crafted YAML document containing a chain of mappings with merge keys. This could cause the parser to consume excessive CPU resources, leading to a Denial of Service (DoS) for the affected system.
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Sightings
| Author | Source | Type | Date | Other |
|---|
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.
The approach is described in our paper Mapping CVEs to MITRE ATT&CK Techniques: A Curated Gold-Set Classifier and the Limits of LLM-Assisted Label Expansion.
Browse all ATT&CK techniques and the vulnerabilities related to each.
Related by attack behaviour
Vulnerabilities whose description is nearest to this one in the vector space of the CIRCL/vulnerability-attack-technique-biencoder model. This is a similarity search over the bi-encoder space (plain cosine), not a classification, and it has no measured accuracy.