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CWE-787
Out-of-bounds Write
The product writes data past the end, or before the beginning, of the intended buffer.
CVE-2025-27821 (GCVE-0-2025-27821)
Vulnerability from cvelistv5 – Published: 2026-01-26 09:44 – Updated: 2026-01-26 18:13
VLAI
Title
HDFS native client: Out of bounds write in URI parser of native HDFS client
Summary
Out-of-bounds Write vulnerability in Apache Hadoop HDFS native client.
This issue affects Apache Hadoop: from 3.2.0 before 3.4.2.
Users are recommended to upgrade to version 3.4.2, which fixes the issue.
Severity
7.3 (High)
SSVC
Exploitation: none
Automatable: yes
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
2 references
Impacted products
1 product
| Vendor | Product | Version | |
|---|---|---|---|
| Apache Software Foundation | HDFS native client |
Affected:
3.2.0 , < 3.4.2
(semver)
|
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CVE-2025-2829 (GCVE-0-2025-2829)
Vulnerability from cvelistv5 – Published: 2025-04-08 15:24 – Updated: 2025-04-08 18:27
VLAI
Title
Local Code Execution Vulnerability in Arena®
Summary
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SSVC
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Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
Impacted products
1 product
| Vendor | Product | Version | |
|---|---|---|---|
| Rockwell Automation | Arena® |
Affected:
16.20.08 and earlier
|
Date Public
2025-04-08 15:10
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CVE-2025-29909 (GCVE-0-2025-29909)
Vulnerability from cvelistv5 – Published: 2025-03-17 21:55 – Updated: 2025-03-18 13:25
VLAI
Title
CryptoLib's Crypto_TC_ApplySecurity() Has a Heap Buffer Overflow Vulnerability
Summary
CryptoLib provides a software-only solution using the CCSDS Space Data Link Security Protocol - Extended Procedures (SDLS-EP) to secure communications between a spacecraft running the core Flight System (cFS) and a ground station. In versions 1.3.3 and prior, a heap buffer overflow vulnerability in CryptoLib's `Crypto_TC_ApplySecurity()` allows an attacker to craft a malicious TC frame that causes out-of-bounds memory writes. This can result in denial of service (DoS) or, under certain conditions, remote code execution (RCE). Any application or system that relies on CryptoLib for Telecommand (TC) processing and does not strictly validate incoming TC frames is at risk. This includes satellite ground stations or mission control software where attackers can inject malformed frames. A patch is available at commit c7e8a8745ff4b5e9bd7e500e91358e86d5abedcc.
Severity
SSVC
Exploitation: poc
Automatable: yes
Technical Impact: total
CISA Coordinator (v2.0.3)
Assigner
References
2 references
| URL | Tags |
|---|---|
| https://github.com/nasa/CryptoLib/security/adviso… | x_refsource_CONFIRM |
| https://github.com/nasa/CryptoLib/commit/c7e8a874… | x_refsource_MISC |
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CVE-2025-29933 (GCVE-0-2025-29933)
Vulnerability from cvelistv5 – Published: 2025-11-24 21:03 – Updated: 2025-11-24 21:17
VLAI
Summary
Improper input validation within AMD uProf can allow a local attacker to write out of bounds, potentially resulting in a crash or denial of service
Severity
5.5 (Medium)
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
Date Public
2025-11-24 21:03
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CVE-2025-29935 (GCVE-0-2025-29935)
Vulnerability from cvelistv5 – Published: 2026-05-15 01:53 – Updated: 2026-05-16 03:56
VLAI
Summary
An out of bounds write within the AMD Platform Management Framework (PMF) could allow an attacker to execute arbitrary code at an elevated privilege level potentially leading to loss of confidentiality integrity, or availability.
Severity
SSVC
Exploitation: none
Automatable: no
Technical Impact: total
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
Impacted products
5 products
| Vendor | Product | Version | |
|---|---|---|---|
| AMD | AMD Ryzen™ 7035 Series Processors with Radeon™ Graphics (formerly codenamed "Rembrandt R") |
Unaffected:
7.06.02.123
|
|
| AMD | AMD Ryzen™ 7040 Series Mobile Processors with Radeon™ Graphics (formerly codenamed "Phoenix") |
Unaffected:
7.06.02.123
|
|
| AMD | AMD Ryzen™ 8040 Series Mobile Processors with Radeon™ Graphics (formerly codenamed "Hawk Point") |
Unaffected:
7.06.02.123
|
|
| AMD | AMD Ryzen™ 6000 Series Processors with Radeon™ Graphics (formerly codenamed "Rembrandt") |
Unaffected:
7.06.02.123
|
|
| AMD | AMD Ryzen™ Embedded R8000 Series Processors |
Unaffected:
AMD Ryzen™ Chipset Driver 7.06.02.123
|
Date Public
2026-05-15 01:50
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CVE-2025-29949 (GCVE-0-2025-29949)
Vulnerability from cvelistv5 – Published: 2026-02-10 19:46 – Updated: 2026-02-10 20:40
VLAI
Summary
Insufficient input parameter sanitization in AMD Secure Processor (ASP) Boot Loader (legacy recovery mode only) could allow an attacker to write out-of-bounds to corrupt Secure DRAM potentially resulting in denial of service.
Severity
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
Impacted products
24 products
Date Public
2026-02-10 19:43
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CVE-2025-30015 (GCVE-0-2025-30015)
Vulnerability from cvelistv5 – Published: 2025-04-08 07:14 – Updated: 2025-04-08 13:22
VLAI
Title
Memory Corruption vulnerability in SAP NetWeaver and ABAP Platform (Application Server ABAP)
Summary
Due to incorrect memory address handling in ABAP SQL of SAP NetWeaver and ABAP Platform (Application Server ABAP), an authenticated attacker with high privileges could execute certain forms of SQL queries leading to manipulation of content in the output variable. This vulnerability has a low impact on the confidentiality, integrity and the availability of the application.
Severity
4.1 (Medium)
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
2 references
Impacted products
1 product
| Vendor | Product | Version | |
|---|---|---|---|
| SAP_SE | SAP NetWeaver and ABAP Platform (Application Server ABAP) |
Affected:
KRNL64UC 7.53
Affected: KERNEL 7.53 Affected: 7.54 |
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CVE-2025-30102 (GCVE-0-2025-30102)
Vulnerability from cvelistv5 – Published: 2025-05-08 17:40 – Updated: 2025-05-08 18:55
VLAI
Summary
Dell PowerScale OneFS, versions 9.4.0.0 through 9.10.1.0, contains an out-of-bounds write vulnerability. A local low privileged attacker could potentially exploit this vulnerability, leading to denial of service.
Severity
5.5 (Medium)
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
| URL | Tags |
|---|---|
| https://www.dell.com/support/kbdoc/en-us/00031741… | vendor-advisory |
Impacted products
1 product
| Vendor | Product | Version | |
|---|---|---|---|
| Dell | PowerScale OneFS |
Affected:
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(semver)
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Date Public
2025-05-07 05:00
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CVE-2025-3017 (GCVE-0-2025-3017)
Vulnerability from cvelistv5 – Published: 2025-03-31 21:31 – Updated: 2025-04-01 20:06
VLAI
Title
TA-Lib ta_regtest test_minmax.c setInputBuffer out-of-bounds write
Summary
A vulnerability, which was classified as critical, has been found in TA-Lib up to 0.6.4. This issue affects the function setInputBuffer of the file src/tools/ta_regtest/ta_test_func/test_minmax.c of the component ta_regtest. The manipulation leads to out-of-bounds write. It is possible to launch the attack on the local host. The exploit has been disclosed to the public and may be used. The identifier of the patch is 5879180e9070ec35d52948f2f57519713256a0f1. It is recommended to apply a patch to fix this issue.
Severity
5.3 (Medium)
5.3 (Medium)
SSVC
Exploitation: none
Automatable: no
Technical Impact: partial
CISA Coordinator (v2.0.3)
Assigner
References
7 references
| URL | Tags |
|---|---|
| https://vuldb.com/?id.302069 | vdb-entrytechnical-description |
| https://vuldb.com/?ctiid.302069 | signaturepermissions-required |
| https://vuldb.com/?submit.524603 | third-party-advisory |
| https://github.com/TA-Lib/ta-lib/issues/61 | issue-tracking |
| https://github.com/TA-Lib/ta-lib/pull/62 | issue-tracking |
| https://github.com/TA-Lib/ta-lib/issues/61#issue-… | exploitissue-tracking |
| https://github.com/TA-Lib/ta-lib/commit/5879180e9… | patch |
Impacted products
Credits
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CVE-2025-30175 (GCVE-0-2025-30175)
Vulnerability from cvelistv5 – Published: 2025-05-13 09:38 – Updated: 2025-07-08 10:34
VLAI
Summary
A vulnerability has been identified in SIMATIC PCS neo V4.1 (All versions), SIMATIC PCS neo V5.0 (All versions), SINEC NMS (All versions < V4.0), SINEMA Remote Connect (All versions), Totally Integrated Automation Portal (TIA Portal) V17 (All versions), Totally Integrated Automation Portal (TIA Portal) V18 (All versions), Totally Integrated Automation Portal (TIA Portal) V19 (All versions), Totally Integrated Automation Portal (TIA Portal) V20 (All versions), User Management Component (UMC) (All versions < V2.15.1.1). Affected products contain a out of bound write buffer overflow vulnerability in the integrated UMC component. This could allow an unauthenticated remote attacker to cause a denial of service condition.
Severity
SSVC
Exploitation: none
Automatable: yes
Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
- CWE-787 - Out-of-bounds Write
Assigner
References
1 reference
Impacted products
9 products
| Vendor | Product | Version | |
|---|---|---|---|
| Siemens | SIMATIC PCS neo V4.1 |
Affected:
0 , < *
(custom)
|
|
| Siemens | SIMATIC PCS neo V5.0 |
Affected:
0 , < *
(custom)
|
|
| Siemens | SINEC NMS |
Affected:
0 , < V4.0
(custom)
|
|
| Siemens | SINEMA Remote Connect |
Affected:
0 , < *
(custom)
|
|
| Siemens | Totally Integrated Automation Portal (TIA Portal) V17 |
Affected:
0 , < *
(custom)
|
|
| Siemens | Totally Integrated Automation Portal (TIA Portal) V18 |
Affected:
0 , < *
(custom)
|
|
| Siemens | Totally Integrated Automation Portal (TIA Portal) V19 |
Affected:
0 , < *
(custom)
|
|
| Siemens | Totally Integrated Automation Portal (TIA Portal) V20 |
Affected:
0 , < *
(custom)
|
|
| Siemens | User Management Component (UMC) |
Affected:
0 , < V2.15.1.1
(custom)
|
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Mitigation ID: MIT-3
Phase: Requirements
Strategy: Language Selection
Description:
- Use a language that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid.
- For example, many languages that perform their own memory management, such as Java and Perl, are not subject to buffer overflows. Other languages, such as Ada and C#, typically provide overflow protection, but the protection can be disabled by the programmer.
- Be wary that a language's interface to native code may still be subject to overflows, even if the language itself is theoretically safe.
Mitigation ID: MIT-4.1
Phase: Architecture and Design
Strategy: Libraries or Frameworks
Description:
- Use a vetted library or framework that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid.
- Examples include the Safe C String Library (SafeStr) by Messier and Viega [REF-57], and the Strsafe.h library from Microsoft [REF-56]. These libraries provide safer versions of overflow-prone string-handling functions.
Mitigation ID: MIT-10
Phases: Operation, Build and Compilation
Strategy: Environment Hardening
Description:
- Use automatic buffer overflow detection mechanisms that are offered by certain compilers or compiler extensions. Examples include: the Microsoft Visual Studio /GS flag, Fedora/Red Hat FORTIFY_SOURCE GCC flag, StackGuard, and ProPolice, which provide various mechanisms including canary-based detection and range/index checking.
- D3-SFCV (Stack Frame Canary Validation) from D3FEND [REF-1334] discusses canary-based detection in detail.
Mitigation ID: MIT-9
Phase: Implementation
Description:
- Consider adhering to the following rules when allocating and managing an application's memory:
- Double check that the buffer is as large as specified.
- When using functions that accept a number of bytes to copy, such as strncpy(), be aware that if the destination buffer size is equal to the source buffer size, it may not NULL-terminate the string.
- Check buffer boundaries if accessing the buffer in a loop and make sure there is no danger of writing past the allocated space.
- If necessary, truncate all input strings to a reasonable length before passing them to the copy and concatenation functions.
Mitigation ID: MIT-11
Phases: Operation, Build and Compilation
Strategy: Environment Hardening
Description:
- Run or compile the software using features or extensions that randomly arrange the positions of a program's executable and libraries in memory. Because this makes the addresses unpredictable, it can prevent an attacker from reliably jumping to exploitable code.
- Examples include Address Space Layout Randomization (ASLR) [REF-58] [REF-60] and Position-Independent Executables (PIE) [REF-64]. Imported modules may be similarly realigned if their default memory addresses conflict with other modules, in a process known as "rebasing" (for Windows) and "prelinking" (for Linux) [REF-1332] using randomly generated addresses. ASLR for libraries cannot be used in conjunction with prelink since it would require relocating the libraries at run-time, defeating the whole purpose of prelinking.
- For more information on these techniques see D3-SAOR (Segment Address Offset Randomization) from D3FEND [REF-1335].
Mitigation ID: MIT-12
Phase: Operation
Strategy: Environment Hardening
Description:
- Use a CPU and operating system that offers Data Execution Protection (using hardware NX or XD bits) or the equivalent techniques that simulate this feature in software, such as PaX [REF-60] [REF-61]. These techniques ensure that any instruction executed is exclusively at a memory address that is part of the code segment.
- For more information on these techniques see D3-PSEP (Process Segment Execution Prevention) from D3FEND [REF-1336].
Mitigation ID: MIT-13
Phase: Implementation
Description:
- Replace unbounded copy functions with analogous functions that support length arguments, such as strcpy with strncpy. Create these if they are not available.
No CAPEC attack patterns related to this CWE.