Top issues
Detected presence of known software supply chain attack artifacts.
Causes risk: supply chain attack artifacts
threats
Problem
Proprietary ReversingLabs malware detection algorithms have determined that the software package contains one or more malicious components. The detection was made by either a static byte signature, software component identity, or a complete file hash. This malware detection method is considered highly accurate, and can typically attribute malware to previously discovered software supply chain attacks. It is common to have multiple supply chain attack artifacts that relate to a single malware incident.Prevalence in NuGet community
0 packages
found in
Top 100
0 packages
found in
Top 1k
0 packages
found in
Top 10k
741 packages
in community
Next steps
If the software intent does not relate to malicious behavior, investigate the build and release environment for software supply chain compromise.
Avoid using this software package.
Detected presence of malicious files through analyst-vetted file reputation.
Causes risk: analyst-vetted malware found
threats
Problem
Threat researchers have manually inspected the software package and determined that it contains one or more malicious files. The detection was made by a hash-based file reputation lookup. This malware detection method is considered highly accurate, and can typically identify the malware family by name.Prevalence in NuGet community
0 packages
found in
Top 100
0 packages
found in
Top 1k
0 packages
found in
Top 10k
741 packages
in community
Next steps
Investigate the build and release environment for software supply chain compromise.
Avoid using this software package.
Detected presence of software components that can tamper with the system security software.
hunting
Problem
Software components sometimes need to interact with higher privilege parts of the operating system, often requiring administrative access to accomplish a task. Operating systems integrate first and third-party security solutions that can detect and block malicious code. For that reason, attackers often aim to tamper with system security software. Changing antivirus and other security software service settings may enable malicious code to execute without being blocked. While the presence of code that tampers with system security software does not necessarily imply malicious intent, all of its uses in a software package should be documented and approved. Only select applications should consider using functions that can temporarily disable system security features. One example of acceptable use for such functions is allowing specialized applications to modify protected folders and settings.Prevalence in NuGet community
0 packages
found in
Top 100
0 packages
found in
Top 1k
5 packages
found in
Top 10k
299 packages
in community
Next steps
Investigate reported detections as indicators of software tampering.
Consult Mitre ATT&CK documentation: T1562.001 - Disable or Modify Tools.
Consider rewriting the flagged code without using the marked behaviors.
Detected presence of software components that were removed from the public package repository.
Causes risk: components prone to hijacking
hunting
Problem
Software developers use programming and design knowledge to build reusable software components. Software components are the basic building blocks for modern applications. Software consumed by an enterprise consists of hundreds, and sometimes even thousands of open source components. Software developers publish components they have authored to public repositories. Open source projects are the intellectual property of their respective authors. At any time, the authors may choose to completely remove the software component from a public repository. This often occurs when a software project reaches its end-of-life stage, or when the software authors lose interest in maintaining the project. This kind of removal frees up the software package name, its unique software identifier in the public repository, for other developers to use. However, new software project owners might have malicious intent. Threat actors are continuously monitoring popular package names in case their unique identifiers suddenly become available for hijacking. Once the software projects falls under new ownership, the new maintainers may opt to use the project popularity to spread malware to unsuspecting users.Prevalence in NuGet community
No prevalence information at this timeNext steps
Inspect behaviors exhibited by the detected software components.
If the software behaviors differ from expected, investigate the build and release environment for software supply chain compromise.
Revise the use of components that raise these alarms. If you can't deprecate those components, make sure that their versions are pinned.
Avoid using this software package until it is vetted as safe.
Problem
Software components contain executable code that performs actions implemented during its development. These actions are called behaviors. In the analysis report, behaviors are presented as human-readable descriptions that best match the underlying code intent. While most behaviors are benign, some are commonly abused by malicious software with the intent to cause harm. When a software package shares behavior traits with malicious software, it may become flagged by security solutions. Any detection from security solutions can cause friction for the end-users during software deployment. While the behavior is likely intended by the developer, there is a small chance this detection is true positive, and an early indication of a software supply chain attack.Prevalence in NuGet community
0 packages
found in
Top 100
0 packages
found in
Top 1k
4 packages
found in
Top 10k
1095 packages
in community
Next steps
Investigate reported detections.
If the software intent does not relate to the reported behavior, investigate your build and release environment for software supply chain compromise.
You should delay the software release until the investigation is completed, or until the issue is risk accepted.
Consider rewriting the flagged code without using the marked behaviors.
Top behaviors
Executes a file.
execution
Prevalence in NuGet community
Behavior often found in this community (Common)
0 packages
found in
Top 100
12 packages
found in
Top 1k
98 packages
found in
Top 10k
39014 packages
in community
Tampers with Windows Defender.
disable
Prevalence in NuGet community
Behavior commonly used by malicious software (Important)
Behavior uncommon for this community (Uncommon)
0 packages
found in
Top 100
0 packages
found in
Top 1k
0 packages
found in
Top 10k
9 packages
in community
Downloads a file.
network
Prevalence in NuGet community
Behavior often found in this community (Common)
0 packages
found in
Top 100
17 packages
found in
Top 1k
100 packages
found in
Top 10k
34755 packages
in community
Contains IP addresses.
network
Prevalence in NuGet community
Behavior often found in this community (Common)
0 packages
found in
Top 100
59 packages
found in
Top 1k
458 packages
found in
Top 10k
532614 packages
in community
Creates new files, folders or registry keys.
file
Prevalence in NuGet community
Behavior uncommon for this community (Uncommon)
0 packages
found in
Top 100
0 packages
found in
Top 1k
4 packages
found in
Top 10k
1084 packages
in community
Top vulnerabilities
No vulnerabilities found.