Company Details
qualcomm
45,945
1,692,114
517
qualcomm.com
0
QUA_6666182
In-progress

Qualcomm Company CyberSecurity Posture
qualcomm.comDelivering intelligent computing everywhere.
Company Details
qualcomm
45,945
1,692,114
517
qualcomm.com
0
QUA_6666182
In-progress
Between 800 and 849

Qualcomm Global Score (TPRM)XXXX

Description: Qualcomm faced significant vulnerabilities within their Adreno GPU used in Android devices. Discovered by Google’s Android Red Team, these vulnerabilities could lead to full device control if exploited. Attackers could bypass application restrictions, accessing GPU drivers with deep kernel privileges. Although Qualcomm released patches to OEMs, the diffuse Android ecosystem could slow mitigation. This emphasizes GPUs as emerging security focal points, with their ubiquitous role in daily mobile device operations exposing them to potential widespread impact if leveraged by attackers.


No incidents recorded for Qualcomm in 2025.
No incidents recorded for Qualcomm in 2025.
No incidents recorded for Qualcomm in 2025.
Qualcomm cyber incidents detection timeline including parent company and subsidiaries

Delivering intelligent computing everywhere.


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Explore insights on cybersecurity incidents, risk posture, and Rankiteo's assessments.
The official website of Qualcomm is https://www.qualcomm.com/.
According to Rankiteo, Qualcomm’s AI-generated cybersecurity score is 832, reflecting their Good security posture.
According to Rankiteo, Qualcomm currently holds 0 security badges, indicating that no recognized compliance certifications are currently verified for the organization.
According to Rankiteo, Qualcomm is not certified under SOC 2 Type 1.
According to Rankiteo, Qualcomm does not hold a SOC 2 Type 2 certification.
According to Rankiteo, Qualcomm is not listed as GDPR compliant.
According to Rankiteo, Qualcomm does not currently maintain PCI DSS compliance.
According to Rankiteo, Qualcomm is not compliant with HIPAA regulations.
According to Rankiteo,Qualcomm is not certified under ISO 27001, indicating the absence of a formally recognized information security management framework.
Qualcomm operates primarily in the Telecommunications industry.
Qualcomm employs approximately 45,945 people worldwide.
Qualcomm presently has no subsidiaries across any sectors.
Qualcomm’s official LinkedIn profile has approximately 1,692,114 followers.
Qualcomm is classified under the NAICS code 517, which corresponds to Telecommunications.
Yes, Qualcomm has an official profile on Crunchbase, which can be accessed here: https://www.crunchbase.com/organization/qualcomm.
Yes, Qualcomm maintains an official LinkedIn profile, which is actively utilized for branding and talent engagement, which can be accessed here: https://www.linkedin.com/company/qualcomm.
As of November 27, 2025, Rankiteo reports that Qualcomm has experienced 1 cybersecurity incidents.
Qualcomm has an estimated 9,532 peer or competitor companies worldwide.
Incident Types: The types of cybersecurity incidents that have occurred include Vulnerability.
Detection and Response: The company detects and responds to cybersecurity incidents through an containment measures with patches released to oems..
Title: Qualcomm Adreno GPU Vulnerabilities
Description: Qualcomm faced significant vulnerabilities within their Adreno GPU used in Android devices. Discovered by Google’s Android Red Team, these vulnerabilities could lead to full device control if exploited. Attackers could bypass application restrictions, accessing GPU drivers with deep kernel privileges. Although Qualcomm released patches to OEMs, the diffuse Android ecosystem could slow mitigation. This emphasizes GPUs as emerging security focal points, with their ubiquitous role in daily mobile device operations exposing them to potential widespread impact if leveraged by attackers.
Type: Vulnerability
Attack Vector: GPU Driver Exploitation
Vulnerability Exploited: Adreno GPU Driver Vulnerabilities
Motivation: Full Device Control
Common Attack Types: The most common types of attacks the company has faced is Vulnerability.

Systems Affected: Android Devices

Entity Name: Qualcomm
Entity Type: Technology Company
Industry: Semiconductor
Customers Affected: Android Device Users

Containment Measures: Patches Released to OEMs
Handling of PII Incidents: The company handles incidents involving personally identifiable information (PII) through by patches released to oems.

Lessons Learned: GPUs are emerging security focal points due to their ubiquitous role in mobile devices.
Key Lessons Learned: The key lessons learned from past incidents are GPUs are emerging security focal points due to their ubiquitous role in mobile devices.
Containment Measures in Most Recent Incident: The containment measures taken in the most recent incident was Patches Released to OEMs.
Most Significant Lesson Learned: The most significant lesson learned from past incidents was GPUs are emerging security focal points due to their ubiquitous role in mobile devices.
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Angular is a development platform for building mobile and desktop web applications using TypeScript/JavaScript and other languages. Prior to versions 19.2.16, 20.3.14, and 21.0.1, there is a XSRF token leakage via protocol-relative URLs in angular HTTP clients. The vulnerability is a Credential Leak by App Logic that leads to the unauthorized disclosure of the Cross-Site Request Forgery (XSRF) token to an attacker-controlled domain. Angular's HttpClient has a built-in XSRF protection mechanism that works by checking if a request URL starts with a protocol (http:// or https://) to determine if it is cross-origin. If the URL starts with protocol-relative URL (//), it is incorrectly treated as a same-origin request, and the XSRF token is automatically added to the X-XSRF-TOKEN header. This issue has been patched in versions 19.2.16, 20.3.14, and 21.0.1. A workaround for this issue involves avoiding using protocol-relative URLs (URLs starting with //) in HttpClient requests. All backend communication URLs should be hardcoded as relative paths (starting with a single /) or fully qualified, trusted absolute URLs.
Forge (also called `node-forge`) is a native implementation of Transport Layer Security in JavaScript. An Uncontrolled Recursion vulnerability in node-forge versions 1.3.1 and below enables remote, unauthenticated attackers to craft deep ASN.1 structures that trigger unbounded recursive parsing. This leads to a Denial-of-Service (DoS) via stack exhaustion when parsing untrusted DER inputs. This issue has been patched in version 1.3.2.
Forge (also called `node-forge`) is a native implementation of Transport Layer Security in JavaScript. An Integer Overflow vulnerability in node-forge versions 1.3.1 and below enables remote, unauthenticated attackers to craft ASN.1 structures containing OIDs with oversized arcs. These arcs may be decoded as smaller, trusted OIDs due to 32-bit bitwise truncation, enabling the bypass of downstream OID-based security decisions. This issue has been patched in version 1.3.2.
Suricata is a network IDS, IPS and NSM engine developed by the OISF (Open Information Security Foundation) and the Suricata community. Prior to versions 7.0.13 and 8.0.2, working with large buffers in Lua scripts can lead to a stack overflow. Users of Lua rules and output scripts may be affected when working with large buffers. This includes a rule passing a large buffer to a Lua script. This issue has been patched in versions 7.0.13 and 8.0.2. A workaround for this issue involves disabling Lua rules and output scripts, or making sure limits, such as stream.depth.reassembly and HTTP response body limits (response-body-limit), are set to less than half the stack size.
Suricata is a network IDS, IPS and NSM engine developed by the OISF (Open Information Security Foundation) and the Suricata community. In versions from 8.0.0 to before 8.0.2, a NULL dereference can occur when the entropy keyword is used in conjunction with base64_data. This issue has been patched in version 8.0.2. A workaround involves disabling rules that use entropy in conjunction with base64_data.

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