Top issues
Detected Windows executable files compiled without following the SDL best practices while using banned string functions.
Causes risk: misconfigured toolchains detected
hardening
Problem
Security Development Lifecycle (SDL) is a group of enhanced compile-time checks that report common coding mistakes as errors. These checks prevent the use of hard-to-secure string manipulation functions. They enforce static memory access checks, and allow only the use of range-verified string parsing functions. While these checks do not prevent every memory corruption issue by themselves, they do help reduce the likelihood.Prevalence in Visual Studio Code community
26 packages
found in
Top 100
110 packages
found in
Top 1k
219 packages
found in
Top 10k
867 packages
in community
Next steps
It's highly recommended to enable these checks for all software components used at security boundaries, or those that process user controlled inputs.
To enable these checks, refer to your programming language toolchain documentation.
In Microsoft VisualStudio, you can enable this feature by setting the compiler option /SDL to ON.
Problem
Uniform Resource Locators (URLs) are structured addresses that point to locations and assets on the internet. URLs allow software developers to build complex applications that exchange data with servers that can be hosted in multiple geographical regions. URLs can commonly be found embedded in documentation, configuration files, source code and compiled binaries. One or more embedded URLs were discovered to link to raw files hosted on GitHub. Attackers often abuse popular web services to host malicious payloads. Since code-sharing services URLs are typically allowed by security solutions, using them for payload delivery increases the odds that the malicious code will reach the user. While the presence of code-sharing service locations does not imply malicious intent, all of their uses in a software package should be documented and approved. An increasing number of software supply chain attacks in the open source space leverages the GitHub service to deliver malicious payloads.Prevalence in Visual Studio Code community
79 packages
found in
Top 100
622 packages
found in
Top 1k
4233 packages
found in
Top 10k
29.36k packages
in community
Next steps
Investigate reported detections.
If the software should not include these network references, 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 an alternative delivery mechanism for software packages.
Detected Windows executable files that were compiled without following the recommended SDL process.
Causes risk: misconfigured toolchains detected
hardening
Problem
Security Development Lifecycle (SDL) is a group of enhanced compile-time checks that report common coding mistakes as errors, preventing them from reaching production. These checks minimize the number of security issues by enforcing strict memory access checks. They also prevent the use of hard-to-secure string and memory manipulation functions. To prove the binary has been compiled with these checks enabled, the compiler emits a special debug object. Removing the debug table eliminates this proof. Therefore, this check only applies to binaries that still have their debug tables.Prevalence in Visual Studio Code community
43 packages
found in
Top 100
257 packages
found in
Top 1k
754 packages
found in
Top 10k
3.7k packages
in community
Next steps
You should keep the debug table to prove that the SDL process has been followed.
To enable these checks, refer to your programming language toolchain documentation.
In Microsoft VisualStudio, you can enable this feature by setting the compiler option /SDL to ON.
Detected Windows executable files compiled without following the SDL best practices while using banned memory functions.
Causes risk: misconfigured toolchains detected
hardening
Problem
Security Development Lifecycle (SDL) is a group of enhanced compile-time checks that report common coding mistakes as errors. These checks prevent the use of hard-to-secure memory manipulation functions. They enforce static memory access checks, and allow only the use of range-verified memory access functions. While these checks do not prevent every memory corruption issue by themselves, they do help reduce the likelihood.Prevalence in Visual Studio Code community
25 packages
found in
Top 100
134 packages
found in
Top 1k
216 packages
found in
Top 10k
904 packages
in community
Next steps
It's highly recommended to enable these checks for all software components used at security boundaries, or those that process user controlled inputs.
To enable these checks, refer to your programming language toolchain documentation.
In Microsoft VisualStudio, you can enable this feature by setting the compiler option /SDL to ON.
Detected Linux executable files compiled without any kind of buffer overrun protection while using banned string functions.
Causes risk: misconfigured toolchains detected
hardening
Problem
Buffer overrun protection on Linux is achieved in two ways. The most common solution is to use the stack canary (also called cookie). The stack canary is a special value written onto the stack that allows the operating system to detect and terminate the program if a stack overrun occurs. In most cases, compilers will apply the stack canary conservatively in order to avoid a negative performance impact. Therefore, stack canaries are often used together with another stack overrun mitigation - fortified functions. Fortified functions are usually wrappers around standard glibc functions (such as memcpy) which perform boundary checks either at compile time or run time to determine if a memory violation has occurred. The compiler needs additional context to generate such calls (for example, array size that needs to be known at compile time). Because of this, the compiler will virtually never substitute all viable functions with their fortified counterparts in complex programs. However, when combined with the stack canary, fortified functions provide a good measure of buffer overrun protection.Prevalence in Visual Studio Code community
24 packages
found in
Top 100
135 packages
found in
Top 1k
268 packages
found in
Top 10k
1.02k packages
in community
Next steps
Presence of unfortified string functions may indicate use of unsafe programming practices, and you should avoid it if possible.
In GCC, enable fortified functions with -fstack-protector and -D_FORTIFY_SOURCE=2 flag, while using at least -O1 optimization level.
Top behaviors
Tampers with system environment variables.
settings
Prevalence in Visual Studio Code community
Behavior often found in this community (Common)
53 packages
found in
Top 100
331 packages
found in
Top 1k
1160 packages
found in
Top 10k
5.29k packages
in community
Might contain potentially obfuscated code or data.
anomaly
Prevalence in Visual Studio Code community
Behavior often found in this community (Common)
84 packages
found in
Top 100
679 packages
found in
Top 1k
4393 packages
found in
Top 10k
30.42k packages
in community
Queries the passwd database entry for a given user ID.
steal
Prevalence in Visual Studio Code community
Behavior often found in this community (Common)
36 packages
found in
Top 100
193 packages
found in
Top 1k
490 packages
found in
Top 10k
1.89k packages
in community
Encodes data using the Base64 algorithm.
packer
Prevalence in Visual Studio Code community
Behavior often found in this community (Common)
82 packages
found in
Top 100
636 packages
found in
Top 1k
3971 packages
found in
Top 10k
25.82k packages
in community
Decodes data using the Base64 algorithm.
packer
Prevalence in Visual Studio Code community
Behavior often found in this community (Common)
74 packages
found in
Top 100
578 packages
found in
Top 1k
3262 packages
found in
Top 10k
18.65k packages
in community
Top vulnerabilities
No vulnerabilities found.