CVE-2017-14915
CVE-2017-14915 is a critical-severity vulnerability in Qualcomm Sd 625 Firmware with a CVSS 3.x base score of 9.8. It is not currently listed as actively exploited by CISA, and its EPSS exploit-prediction score is low. The underlying weakness is classified as CWE-416.
Key facts
- Severity: Critical (CVSS 3.x base score 9.8)
- CVSS v2: 10.0
- EPSS exploit prediction: 2% (74th percentile)
- Actively exploited: Not listed in CISA KEV
- Weakness: CWE-416
- Affected product: Qualcomm Sd 625 Firmware
- Published:
- Last modified:
Description
In Android before 2018-01-05 on Qualcomm Snapdragon Mobile SD 625, SD 650/52, SD 835, accessing SPCOM functions with a compromised client structure can result in a Use After Free condition.
Frequently asked questions
- What is CVE-2017-14915?
- In Android before 2018-01-05 on Qualcomm Snapdragon Mobile SD 625, SD 650/52, SD 835, accessing SPCOM functions with a compromised client structure can result in a Use After Free condition.
- How severe is CVE-2017-14915?
- CVE-2017-14915 has a CVSS 3.x base score of 9.8, rated critical severity. It is exploitable over network with low attack complexity, requires no privileges and no user interaction. Impact on confidentiality is high, integrity high, and availability high.
- Is CVE-2017-14915 being actively exploited?
- It is not currently listed in CISA's KEV catalog. Its EPSS exploit-prediction score is 2% (74th percentile), an estimate of the probability of exploitation in the next 30 days.
- What products are affected by CVE-2017-14915?
- CVE-2017-14915 primarily affects Qualcomm Sd 625 Firmware. In total, 4 product configurations (CPEs) are listed as vulnerable; see the affected-products list for the exact versions.
- How do I fix CVE-2017-14915?
- Review the linked vendor and NVD advisories for patched versions and mitigations, then upgrade or apply the recommended workaround. Given its critical severity, prioritise patching exposed systems.
- When was CVE-2017-14915 published?
- CVE-2017-14915 was published on 2018-03-30 and last updated on 2026-06-17.
References
- http://www.securityfocus.com/bid/102386
- http://www.securitytracker.com/id/1040106
- https://source.android.com/security/bulletin/2018-01-01
Affected products (4)
- cpe:2.3:o:qualcomm:sd_625_firmware:-:*:*:*:*:*:*:*
- cpe:2.3:o:qualcomm:sd_650_firmware:-:*:*:*:*:*:*:*
- cpe:2.3:o:qualcomm:sd_652_firmware:-:*:*:*:*:*:*:*
- cpe:2.3:o:qualcomm:sd_835_firmware:-:*:*:*:*:*:*:*
More vulnerabilities in Qualcomm Sd 625 Firmware
- CVE-2018-11922 — Critical (CVSS 9.8): Wrong configuration in Touch Pal application can collect user behavior data without awareness by the user.
- CVE-2017-17772 — Critical (CVSS 9.8): In multiple functions that process 802.11 frames, out-of-bounds reads can occur due to insufficient validation.
- CVE-2017-11076 — Critical (CVSS 9.8): On some hardware revisions where VP9 decoding is hardware-accelerated, the frame size is not programmed correctly into…
- CVE-2019-2332 — Critical (CVSS 9.8): Memory corruption while accessing the memory as payload size is not validated before access in Snapdragon Auto,…
- CVE-2019-2331 — Critical (CVSS 9.8): Possible Integer overflow because of subtracting two integers without checking if the result would overflow or not in…
- CVE-2019-2325 — Critical (CVSS 9.8): Out of boundary access due to token received from ADSP and is used without validation as an index into the array in…
All CVEs affecting Qualcomm Sd 625 Firmware →
Other CWE-416 (Use After Free) vulnerabilities
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- CVE-2026-4688 — Critical (CVSS 10.0): Sandbox escape due to use-after-free in the Disability Access APIs component. This vulnerability was fixed in Firefox…
- CVE-2025-24085 — Critical (CVSS 10.0): A use after free issue was addressed with improved memory management. This issue is fixed in iOS 18.3 and iPadOS 18.3,…
- CVE-2024-43102 — Critical (CVSS 10.0): Concurrent removals of certain anonymous shared memory mappings by using the UMTX_SHM_DESTROY sub-request of…
- CVE-2021-32495 — Critical (CVSS 10.0): Radare2 has a use-after-free vulnerability in pyc parser's get_none_object function. Attacker can read freed memory…