Memory corruption via double-free ASF parsing
Published Sep 2, 2022 · Updated Aug 3, 2024
Double-free memory corruption in Qualcomm Snapdragon video drivers allows remote attackers to corrupt memory while parsing ASF clips. The proprietary driver releases the same allocation twice during ASF clip parsing; public records disclose no function or source path. The network path needs no authentication or user action, but Qualcomm does not disclose whether corruption produces a crash or code execution.
Summary
What happened
Double-free memory corruption in Qualcomm Snapdragon video drivers allows remote attackers to corrupt memory while parsing ASF clips. The proprietary driver releases the same allocation twice during ASF clip parsing; public records disclose no function or source path. The network path needs no authentication or user action, but Qualcomm does not disclose whether corruption produces a crash or code execution.
The record
- CVE
- CVE-2022-25668
- Published
- Sep 2, 2022
- Updated
- Aug 3, 2024
- Vendor
- Qualcomm
- Product
- Snapdragon
- Classifications
- CWE-415
- Attack vector
- network
- Privileges
- unauthenticated
Timeline
How it unfolded
- Sep 2, 2022CVE publishedPublication date reported by the CVE source.
- Aug 3, 2024Record updatedLatest update available in the CVE record.
Exploitability
Present is not the same as exploitable
Compare your product and version with the public record. A matching version still requires validation against your environment.
Is a vulnerable build present?
Compare these published version ranges with your installed build and any vendor patches.
- Affected versionversion=APQ8009, APQ8009W, APQ8017, APQ8053, APQ8096AU, AQT1000, AR8031, CSRA6620, CSRA6640, MDM9206, MDM9250, MDM9607, MDM9626, MDM9628, MDM9650, MSM8909W, MSM8917, MSM8937, MSM8953, MSM8996AU, PM8937, QCA4020, QCA6174A, QCA6310, QCA6320, QCA6335, QCA6390, QCA6391, QCA6420, QCA6426, QCA6430, QCA6436, QCA6564, QCA6564A, QCA6564AU, QCA6574, QCA6574A, QCA6574AU, QCA6595AU, QCA6696, QCA9367, QCA9377, QCA9379, QCM2290, QCM4290, QCS2290, QCS405, QCS410, QCS4290, QCS603, QCS605, QCS610, Qualcomm215, SA6145P, SA6155, SA6155P, SA8155, SA8155P, SA8195P, SD 636, SD 675, SD 8 Gen1 5G, SD429, SD439, SD450, SD460, SD480, SD632, SD660, SD662, SD670, SD675, SD678, SD680, SD690 5G, SD710, SD720G, SD730, SD750G, SD765, SD765G, SD768G, SD778G, SD780G, SD835, SD845, SD855, SD865 5G, SD870, SD888, SD888 5G, SDM429W, SDM630, SDW2500, SDX20, SDX50M, SDX55, SDX55M, SDXR1, SDXR2 5G, SM4125, SM6250, SM7250P, SM7315, SM7325P, SM7450, SM8475, SM8475P, WCD9326, WCD9330, WCD9335, WCD9340, WCD9341, WCD9370, WCD9371, WCD9375, WCD93 ...[truncated*]
What conditions does exploitation require?
What is affected?
Published CVSS scores
CVSS describes severity. EPSS estimates exploitation probability.
Attacks
What attackers are doing with it
Daily unique IPs observed by Shadowserver honeypots for known exploited vulnerabilities (KEVs). Missing observations do not establish an absence of attacks.
Weakness, pattern, technique
Public exploit references
No public exploit references are available in this record.
Labels summarize the accepted research assessment. They do not indicate a test against your environment.
Technologies
Your stack
See the directory against your own environment.
Your stack
Check the software in your environment
Book a demo to see how Hinoki identifies affected software and validates exploitability in your environment.
Book a demo