CVE Vulnerabilities

CVE-2016-1670

Concurrent Execution using Shared Resource with Improper Synchronization ('Race Condition')

Published: May 14, 2016 | Modified: Apr 12, 2025
CVSS 3.x
5.3
MEDIUM
Source:
NVD
CVSS:3.0/AV:N/AC:H/PR:N/UI:R/S:U/C:N/I:H/A:N
CVSS 2.x
2.6 LOW
AV:N/AC:H/Au:N/C:N/I:P/A:N
RedHat/V2
4.3 MODERATE
AV:N/AC:M/Au:N/C:P/I:N/A:N
RedHat/V3
Ubuntu
MEDIUM

Race condition in the ResourceDispatcherHostImpl::BeginRequest function in content/browser/loader/resource_dispatcher_host_impl.cc in Google Chrome before 50.0.2661.102 allows remote attackers to make arbitrary HTTP requests by leveraging access to a renderer process and reusing a request ID.

Weakness

The product contains a concurrent code sequence that requires temporary, exclusive access to a shared resource, but a timing window exists in which the shared resource can be modified by another code sequence operating concurrently.

Affected Software

Name Vendor Start Version End Version
Chrome Google * 50.0.2661.87 (including)
Red Hat Enterprise Linux 6 Supplementary RedHat chromium-browser-0:50.0.2661.102-1.el6 *
Chromium-browser Ubuntu devel *
Chromium-browser Ubuntu precise *
Chromium-browser Ubuntu trusty *
Chromium-browser Ubuntu upstream *
Chromium-browser Ubuntu wily *
Chromium-browser Ubuntu xenial *
Oxide-qt Ubuntu devel *
Oxide-qt Ubuntu esm-infra/xenial *
Oxide-qt Ubuntu trusty *
Oxide-qt Ubuntu upstream *
Oxide-qt Ubuntu vivid/stable-phone-overlay *
Oxide-qt Ubuntu wily *
Oxide-qt Ubuntu xenial *

Extended Description

A race condition occurs within concurrent environments, and it is effectively a property of a code sequence. Depending on the context, a code sequence may be in the form of a function call, a small number of instructions, a series of program invocations, etc. A race condition violates these properties, which are closely related:

A race condition exists when an “interfering code sequence” can still access the shared resource, violating exclusivity. The interfering code sequence could be “trusted” or “untrusted.” A trusted interfering code sequence occurs within the product; it cannot be modified by the attacker, and it can only be invoked indirectly. An untrusted interfering code sequence can be authored directly by the attacker, and typically it is external to the vulnerable product.

Potential Mitigations

  • Minimize the usage of shared resources in order to remove as much complexity as possible from the control flow and to reduce the likelihood of unexpected conditions occurring.
  • Additionally, this will minimize the amount of synchronization necessary and may even help to reduce the likelihood of a denial of service where an attacker may be able to repeatedly trigger a critical section (CWE-400).

References