π¨ CVE-2026-57918
libnfs through 6.0.2 before 935b8db has an xid integer underflow in READ_IOVEC in rpc_read_from_socket in lib/socket.c during a connection to a crafted NFS server, when the expected pdu size exceeds the absolute pdu size from the xid/record-marker.
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libnfs through 6.0.2 before 935b8db has an xid integer underflow in READ_IOVEC in rpc_read_from_socket in lib/socket.c during a connection to a crafted NFS server, when the expected pdu size exceeds the absolute pdu size from the xid/record-marker.
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GitHub
socket: prevent an underflow in xid Β· sahlberg/libnfs@935b8db
if the expected pdu-size is larger than the absolute pdu size
from the xid/record-marker.
Reported-by: Nick Hummel <nickhummel@google.com>
Signed-off-by: Ronnie Sahlberg <ronn...
from the xid/record-marker.
Reported-by: Nick Hummel <nickhummel@google.com>
Signed-off-by: Ronnie Sahlberg <ronn...
π¨ CVE-2026-56773
Teable's v2 REST API controller lacks @Permissions metadata on ORPC endpoints, allowing any authenticated user to bypass authorization checks. Attackers can read table schemas, create tables, and modify or delete records across bases and tables via endpoints like GET /api/v2/tables/get and POST /api/v2/tables/updateRecords.
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Teable's v2 REST API controller lacks @Permissions metadata on ORPC endpoints, allowing any authenticated user to bypass authorization checks. Attackers can read table schemas, create tables, and modify or delete records across bases and tables via endpoints like GET /api/v2/tables/get and POST /api/v2/tables/updateRecords.
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GitHub
[sync] T4883 route CSV table imports through V2 by tea-artist Β· Pull Request #3285 Β· teableio/teable
π Automated sync from EE repository.
29 commit(s) synced since last sync.
Authors
Aries X caoxing9@gmail.com
Boris boris2code@outlook.com
Jun Lu hammond@teable.io
SkyHuang sky.huang.fe@gmail.com
U...
29 commit(s) synced since last sync.
Authors
Aries X caoxing9@gmail.com
Boris boris2code@outlook.com
Jun Lu hammond@teable.io
SkyHuang sky.huang.fe@gmail.com
U...
π¨ CVE-2023-20540
An observable timing discrepancy in the ASP could allow a privileged attacker to perform a brute-force attack against the hash message authentication code, allowing arbitrary message input, potentially leading to a loss of data integrity.
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An observable timing discrepancy in the ASP could allow a privileged attacker to perform a brute-force attack against the hash message authentication code, allowing arbitrary message input, potentially leading to a loss of data integrity.
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AMD
AMD Client Vulnerabilities β August 2025
π¨ CVE-2023-20572
An observable timing discrepancy in the ASP could allow a privileged attacker to perform a brute-force attack against the hash message authentication code, allowing the input of an arbitrary message, potentially leading to a loss of data integrity.
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An observable timing discrepancy in the ASP could allow a privileged attacker to perform a brute-force attack against the hash message authentication code, allowing the input of an arbitrary message, potentially leading to a loss of data integrity.
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AMD
AMD Client Vulnerabilities β August 2025
π¨ CVE-2025-11919
The default JVM can access files and directories under `/tmp/` including the `$TemporaryDirectory` of other users on the same cloud instance (`/tmp/UserTemporaryFiles/`). The `-init` file for the the JVM initialization exists in the vulnerable directory during the startup of the JVM. An attacker with access to the shared `/tmp/` space can preemptively create or replace `.jar` files or directories (via the `-init` file) that the victim JVM will resolve first in its classpath. By strategically placing a malicious version of a commonly used library (e.g., `commons-io`) in a location that is included in the classpath before the legitimate version, an attacker can cause the JVM to load the malicious class during startup, thereby executing the attacker's code.
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The default JVM can access files and directories under `/tmp/` including the `$TemporaryDirectory` of other users on the same cloud instance (`/tmp/UserTemporaryFiles/`). The `-init` file for the the JVM initialization exists in the vulnerable directory during the startup of the JVM. An attacker with access to the shared `/tmp/` space can preemptively create or replace `.jar` files or directories (via the `-init` file) that the victim JVM will resolve first in its classpath. By strategically placing a malicious version of a commonly used library (e.g., `commons-io`) in a location that is included in the classpath before the legitimate version, an attacker can cause the JVM to load the malicious class during startup, thereby executing the attacker's code.
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GitHub
vulnerability-wolfram-cloud-14.2/disclosure.md at main Β· PeterRoberge/vulnerability-wolfram-cloud-14.2
Multi-Tenant Classpath Injection Vulnerability in Wolfram Cloud - PeterRoberge/vulnerability-wolfram-cloud-14.2
π¨ CVE-2026-0685
Server side template inject (SSTI) in the expression evaluation component in Genshi Template Engine version 0.7.9 allows a remote attacker to achieve remote code execution (RCE) via crafted template expressions.
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Server side template inject (SSTI) in the expression evaluation component in Genshi Template Engine version 0.7.9 allows a remote attacker to achieve remote code execution (RCE) via crafted template expressions.
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GitHub
GitHub - edgewall/genshi: Python toolkit for generation of output for the web
Python toolkit for generation of output for the web - edgewall/genshi
π¨ CVE-2026-12411
Broken Access Control in the devLXDInstancePatchHandler component of Canonical LXD allows an untrusted guest to mount, read, and overwrite another guest's custom storage volume via a crafted device PATCH request over /dev/lxd when security.devlxd.management.volumes is enabled.
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Broken Access Control in the devLXDInstancePatchHandler component of Canonical LXD allows an untrusted guest to mount, read, and overwrite another guest's custom storage volume via a crafted device PATCH request over /dev/lxd when security.devlxd.management.volumes is enabled.
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GitHub
Security fixes from the 6.9 release by tomponline Β· Pull Request #18585 Β· canonical/lxd
Covers fixes for:
GHSA-qx75-2p3r-pwm5
GHSA-7mr3-28h5-m5vx
GHSA-47w9-6r3f-938g
GHSA-9j25-mm2h-2f76
GHSA-jpf8-86f3-wp38
GHSA-vghh-5rfx-xhq8
GHSA-fmc8-p6q7-75cc
GHSA-pjff-c2wc-f6jm
GHSA-hhf9-qw4v-72xp
GHSA-qx75-2p3r-pwm5
GHSA-7mr3-28h5-m5vx
GHSA-47w9-6r3f-938g
GHSA-9j25-mm2h-2f76
GHSA-jpf8-86f3-wp38
GHSA-vghh-5rfx-xhq8
GHSA-fmc8-p6q7-75cc
GHSA-pjff-c2wc-f6jm
GHSA-hhf9-qw4v-72xp
π¨ CVE-2026-21734
A web page that contains unusual GPU shader code is loaded into the GPU compiler process and can trigger a write out-of-bounds write crash in the GPU shader compiler library. On certain platforms, when the compiler process has system privileges this could enable further exploits on the device.
An edge case using a very small value in GPU shader code can cause a segmentation fault in the GPU shader compiler due to am out-of-bounds write.
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A web page that contains unusual GPU shader code is loaded into the GPU compiler process and can trigger a write out-of-bounds write crash in the GPU shader compiler library. On certain platforms, when the compiler process has system privileges this could enable further exploits on the device.
An edge case using a very small value in GPU shader code can cause a segmentation fault in the GPU shader compiler due to am out-of-bounds write.
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Imagination
Imagination GPU Driver Vulnerabilities - Imagination
This page contains summary details of security vulnerabilities reported on Imagination Technologies Power VR Graphics driver.
π¨ CVE-2026-44018
Docling simplifies document processing by parsing diverse formats and providing integrations with the generative AI ecosystem. From 2.45.0 until 2.91.0, the METS-GBS backend's XML parsing and the input document format detection lacked security controls. An attacker could craft malicious METS-GBS archives that, when processed, could read sensitive files, exhaust system resources, or cause application crashes. This vulnerability is fixed in 2.91.0.
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Docling simplifies document processing by parsing diverse formats and providing integrations with the generative AI ecosystem. From 2.45.0 until 2.91.0, the METS-GBS backend's XML parsing and the input document format detection lacked security controls. An attacker could craft malicious METS-GBS archives that, when processed, could read sensitive files, exhaust system resources, or cause application crashes. This vulnerability is fixed in 2.91.0.
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GitHub
Release v2.91.0 Β· docling-project/docling
Feature
docx: Extract VML images with v:imagedata elements (#3343) (2ddaa3b)
Fix
Strengthen input validation for METSβGBS processing (#3336) (c1dbac2)
EasyOCR model downloading (#3339) (5e161ac)...
docx: Extract VML images with v:imagedata elements (#3343) (2ddaa3b)
Fix
Strengthen input validation for METSβGBS processing (#3336) (c1dbac2)
EasyOCR model downloading (#3339) (5e161ac)...
π¨ CVE-2026-45195
Kernel software installed and running inside a Host VM may post improper commands to the GPU Firmware to trigger a memory read or write outside the permitted range of memory for the host kernel.
Addresses passed to the GPU Firmware can be used by the Firmware for more privileged memory accesses than are permitted by the system.
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Kernel software installed and running inside a Host VM may post improper commands to the GPU Firmware to trigger a memory read or write outside the permitted range of memory for the host kernel.
Addresses passed to the GPU Firmware can be used by the Firmware for more privileged memory accesses than are permitted by the system.
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Imagination
Imagination GPU Driver Vulnerabilities - Imagination
This page contains summary details of security vulnerabilities reported on Imagination Technologies Power VR Graphics driver.
π¨ CVE-2026-47214
Docling simplifies document processing by parsing diverse formats and providing integrations with the generative AI ecosystem. Prior to 2.94.0, the HTML backend has unsafe URI and path handling. This vulnerability is fixed in 2.94.0.
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Docling simplifies document processing by parsing diverse formats and providing integrations with the generative AI ecosystem. Prior to 2.94.0, the HTML backend has unsafe URI and path handling. This vulnerability is fixed in 2.94.0.
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GitHub
Release v2.94.0 Β· docling-project/docling
Feature
latex: Add optional Tectonic TikZ rendering (#3369) (eceedc2)
Add image_placeholder and use_markdown_images as fields in the BaseChunkerOptions (#3436) (5fadc6d)
extraction: Add Granite Vi...
latex: Add optional Tectonic TikZ rendering (#3369) (eceedc2)
Add image_placeholder and use_markdown_images as fields in the BaseChunkerOptions (#3436) (5fadc6d)
extraction: Add Granite Vi...
π¨ CVE-2026-5757
Unauthenticated remote information disclosure vulnerability in Ollama's model quantization engine allows an attacker to read and exfiltrate the server's heap memory, potentially leading to sensitive data exposure, further compromise, and stealthy persistence.
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Unauthenticated remote information disclosure vulnerability in Ollama's model quantization engine allows an attacker to read and exfiltrate the server's heap memory, potentially leading to sensitive data exposure, further compromise, and stealthy persistence.
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kb.cert.org
CERT/CC Vulnerability Note VU#518910
Ollama GGUF Quantization Remote Memory Leak
π¨ CVE-2026-9639
Nil-pointer dereference in CreateCustomVolumeFromBackup in LXD up to version 6.8 and 5.21 on Linux allows an authenticated user with can_create_storage_volumes permissions to cause a denial of service via a specially crafted custom-volume backup tarball that omits the expires_at snapshot field.
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Nil-pointer dereference in CreateCustomVolumeFromBackup in LXD up to version 6.8 and 5.21 on Linux allows an authenticated user with can_create_storage_volumes permissions to cause a denial of service via a specially crafted custom-volume backup tarball that omits the expires_at snapshot field.
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GitHub
lxd/storage/backend/lxd: Validate snapshot.ExpiresAt is non-nil by tomponline Β· Pull Request #18320 Β· canonical/lxd
Powerful system container and virtual machine manager - lxd/storage/backend/lxd: Validate snapshot.ExpiresAt is non-nil by tomponline Β· Pull Request #18320 Β· canonical/lxd
π¨ CVE-2026-9640
A privilege escalation vulnerability exists in LXD from 6.0 before 6.9, 5.21.0 before 5.21.5, and 5.0.0 before 5.0.7 regarding the handling of project-restriction policies during snapshot restoration.. An authenticated project operator in a restricted multi-tenant environment can bypass policy restrictions by importing a maliciously crafted instance backup containing restricted configuration keys within a snapshot. When the snapshot is restored, these restricted keys are applied to the live instance without policy validation. Starting the modified instance grants the operator unauthorized host root access.
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A privilege escalation vulnerability exists in LXD from 6.0 before 6.9, 5.21.0 before 5.21.5, and 5.0.0 before 5.0.7 regarding the handling of project-restriction policies during snapshot restoration.. An authenticated project operator in a restricted multi-tenant environment can bypass policy restrictions by importing a maliciously crafted instance backup containing restricted configuration keys within a snapshot. When the snapshot is restored, these restricted keys are applied to the live instance without policy validation. Starting the modified instance grants the operator unauthorized host root access.
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GitHub
Instance: Improve snapshot config validation during import by tomponline Β· Pull Request #18301 Β· canonical/lxd
Powerful system container and virtual machine manager - Instance: Improve snapshot config validation during import by tomponline Β· Pull Request #18301 Β· canonical/lxd
π¨ CVE-2026-11779
An Improper Authorization vulnerability exists in PayloadCMS version 3.84.1 due to insufficient access control on the account unlock operation.
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An Improper Authorization vulnerability exists in PayloadCMS version 3.84.1 due to insufficient access control on the account unlock operation.
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Fluidattacks
PayloadCMS 3.84.1 - Authenticated account lockout bypass through default unlock access | Fluid Attacks
CVE-2026-11779: An Improper Authorization vulnerability exists in PayloadCMS version 3.84.1 due to insufficient access control on the account unlock operation.
π¨ CVE-2026-13434
A flaw was found in KubeVirt's network annotation generator. When a tenant creates a VirtualMachineInstance with a Multus network configuration, the supplied networkName value is written verbatim into the launcher pod's v1.multus-cni.io/default-network annotation without format validation or sanitization. The only admission check rejects empty strings; no DNS-1123 format validation, JSON detection, or special character rejection is performed. When the ExternalNetResourceInjection Beta feature gate is enabled (off by default, cluster-admin only), the NAD lookup that would otherwise catch malformed names is skipped by design. A tenant with kubevirt.io:edit permissions can inject a JSON-formatted NetworkSelectionElement array specifying an arbitrary namespace, NAD name, static IP address, and MAC address. Multus on the node parses this JSON and attaches the launcher pod to the specified network attachment in any namespace, enabling cross-namespace network access and IP/MAC impersonation on network segments normally segregated from tenant workloads. The ExternalNetResourceInjection feature gate was introduced in KubeVirt v1.8.0 (first shipped in OpenShift Virtualization 4.21).
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A flaw was found in KubeVirt's network annotation generator. When a tenant creates a VirtualMachineInstance with a Multus network configuration, the supplied networkName value is written verbatim into the launcher pod's v1.multus-cni.io/default-network annotation without format validation or sanitization. The only admission check rejects empty strings; no DNS-1123 format validation, JSON detection, or special character rejection is performed. When the ExternalNetResourceInjection Beta feature gate is enabled (off by default, cluster-admin only), the NAD lookup that would otherwise catch malformed names is skipped by design. A tenant with kubevirt.io:edit permissions can inject a JSON-formatted NetworkSelectionElement array specifying an arbitrary namespace, NAD name, static IP address, and MAC address. Multus on the node parses this JSON and attaches the launcher pod to the specified network attachment in any namespace, enabling cross-namespace network access and IP/MAC impersonation on network segments normally segregated from tenant workloads. The ExternalNetResourceInjection feature gate was introduced in KubeVirt v1.8.0 (first shipped in OpenShift Virtualization 4.21).
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π¨ CVE-2026-28385
In Canonical LXD versions 4.12 through 6.9, a Server-Side Request Forgery (SSRF) vulnerability in the image import functionality allows authenticated users with the can_create_images entitlement to interact with internal network infrastructure via the /images endpoint. When importing an image from a URL source, the LXD daemon fails to validate or restrict outbound destination IP addresses, allowing connections to loopback, RFC1918 private ranges, and cloud metadata endpoints. This enables error-based port scanning and unauthorized interaction with internal HTTP services from the daemon's network position.
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In Canonical LXD versions 4.12 through 6.9, a Server-Side Request Forgery (SSRF) vulnerability in the image import functionality allows authenticated users with the can_create_images entitlement to interact with internal network infrastructure via the /images endpoint. When importing an image from a URL source, the LXD daemon fails to validate or restrict outbound destination IP addresses, allowing connections to loopback, RFC1918 private ranges, and cloud metadata endpoints. This enables error-based port scanning and unauthorized interaction with internal HTTP services from the daemon's network position.
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GitHub
doc: update guide to hardening security for LXD by elijahgreenstein Β· Pull Request #18462 Β· canonical/lxd
This PR updates the guide to hardening security for LXD:
Reorganizes the section on limiting network exposure, and provides a detail about why setting core.https_address to a port alone increases ...
Reorganizes the section on limiting network exposure, and provides a detail about why setting core.https_address to a port alone increases ...
π¨ CVE-2026-48529
GitHub MCP Server is GitHub's official MCP Server. From 0.22.0 until 1.1.2, when running in HTTP mode with --lockdown-mode enabled, the RepoAccessCache is implemented as a process-global singleton initialized with the first authenticated user's GraphQL client. All subsequent requests from different users share this singleton and their lockdown-related GraphQL queries are executed using the first user's credentials. The singleton is never updated to reflect later users' tokens. This vulnerability is fixed in 1.1.2.
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GitHub MCP Server is GitHub's official MCP Server. From 0.22.0 until 1.1.2, when running in HTTP mode with --lockdown-mode enabled, the RepoAccessCache is implemented as a process-global singleton initialized with the first authenticated user's GraphQL client. All subsequent requests from different users share this singleton and their lockdown-related GraphQL queries are executed using the first user's credentials. The singleton is never updated to reflect later users' tokens. This vulnerability is fixed in 1.1.2.
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GitHub
Lockdown mode singleton in HTTP server causes cross-user GraphQL client confusion
### Summary
When running in HTTP mode with --lockdown-mode enabled, the RepoAccessCache is implemented as a process-global singleton initialized with the first authenticated user's GraphQL c...
When running in HTTP mode with --lockdown-mode enabled, the RepoAccessCache is implemented as a process-global singleton initialized with the first authenticated user's GraphQL c...
π¨ CVE-2026-55677
Echo is a Go web framework. Prior to 4.15.3 and 5.2.0, Echo's router and static file handler disagree on URL path decoding. The router matches routes using the raw encoded path (preserving %2F as-is), while StaticDirectoryHandler unescapes %2F to / before resolving filesystem paths. This allows an attacker to bypass route-level access controls and read static files without authorization. This vulnerability is fixed in 4.15.3 and 5.2.0.
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Echo is a Go web framework. Prior to 4.15.3 and 5.2.0, Echo's router and static file handler disagree on URL path decoding. The router matches routes using the raw encoded path (preserving %2F as-is), while StaticDirectoryHandler unescapes %2F to / before resolving filesystem paths. This allows an attacker to bypass route-level access controls and read static files without authorization. This vulnerability is fixed in 4.15.3 and 5.2.0.
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GitHub
Encoded slash (%2F) bypasses route-level protection and exposes static files
### Summary
Echo's router and static file handler disagree on URL path decoding. The router matches routes using the raw encoded path (preserving `%2F` as-is), while `StaticDirectoryHandler`...
Echo's router and static file handler disagree on URL path decoding. The router matches routes using the raw encoded path (preserving `%2F` as-is), while `StaticDirectoryHandler`...
π¨ CVE-2026-55686
Podman is a tool for managing OCI containers and pods. From 3.0.0 until 5.7.1, running a malicious container image where the WORKDIR path contains a symlink can create a directory or modify ownership on the host filesystem. Modified ownership is less likely to happen as that requires help from an untrusted/malicious process that mutates the host filesystem tree during dereferencing of the WORKDIR path, to trigger a race condition. This vulnerability is fixed in 5.7.1.
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Podman is a tool for managing OCI containers and pods. From 3.0.0 until 5.7.1, running a malicious container image where the WORKDIR path contains a symlink can create a directory or modify ownership on the host filesystem. Modified ownership is less likely to happen as that requires help from an untrusted/malicious process that mutates the host filesystem tree during dereferencing of the WORKDIR path, to trigger a race condition. This vulnerability is fixed in 5.7.1.
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GitHub
libpod: simplify resolveWorkDir() Β· podman-container-tools/podman@d18e44e
The code checks for isPathOnVolume and isPathOnMount so we can just use
the SecureJoin here directly to check for path existance.
Then instead of walking symlinks and trying to guess if they are o...
the SecureJoin here directly to check for path existance.
Then instead of walking symlinks and trying to guess if they are o...
π¨ CVE-2026-33646
mise manages dev tools like node, python, cmake, and terraform. Prior to 2026.3.10, mise processes .tool-versions files through the Tera template engine during parsing, with the exec() function registered, enabling arbitrary command execution. Unlike .mise.toml files, .tool-versions files are not subject to trust verification in non-paranoid mode. This means an attacker can place a malicious .tool-versions file in a git repository, and when a victim with mise activated cds into the directory, arbitrary commands execute without any trust prompt. This vulnerability is fixed in 2026.3.10.
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mise manages dev tools like node, python, cmake, and terraform. Prior to 2026.3.10, mise processes .tool-versions files through the Tera template engine during parsing, with the exec() function registered, enabling arbitrary command execution. Unlike .mise.toml files, .tool-versions files are not subject to trust verification in non-paranoid mode. This means an attacker can place a malicious .tool-versions file in a git repository, and when a victim with mise activated cds into the directory, arbitrary commands execute without any trust prompt. This vulnerability is fixed in 2026.3.10.
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GitHub
Arbitrary Code Execution via Tera Templates in .tool-versions Files (Trust Bypass)
## Summary
Mise processes `.tool-versions` files through the Tera template engine during parsing, with the `exec()` function registered, enabling arbitrary command execution. Unlike `.mise.toml`...
Mise processes `.tool-versions` files through the Tera template engine during parsing, with the `exec()` function registered, enabling arbitrary command execution. Unlike `.mise.toml`...