Common Weakness Enumeration

CWE-125

Out-of-bounds Read

The product reads data past the end, or before the beginning, of the intended buffer.

CVE-2025-61951 (GCVE-0-2025-61951)

Vulnerability from cvelistv5 – Published: 2025-10-15 13:55 – Updated: 2026-02-26 16:57
VLAI
Title
BIG-IP DTLS 1.2 Vulnerability
Summary
Undisclosed traffic can cause the Traffic Management Microkernel (TMM) to terminate.  This issue may occur when a Datagram Transport Layer Security (DTLS) 1.2 virtual server is enabled with a Server SSL profile that is configured with a certificate, key, and the SSL Sign Hash set to ANY, and the backend server is enabled with DTLS 1.2 and client authentication.  Note: Software versions which have reached End of Technical Support (EoTS) are not evaluated.
SSVC
Exploitation: none Automatable: yes Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
f5
References
Impacted products
Vendor Product Version
F5 BIG-IP Affected: 17.5.0 , < 17.5.1 (custom)
Affected: 17.1.0 , < 17.1.3 (custom)
Affected: 16.1.0 , < 16.1.6.1 (custom)
Unaffected: 15.1.0 , < * (custom)
Create a notification for this product.
Date Public
2025-10-15 14:00
Credits
F5
Show details on NVD website

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CVE-2025-61952 (GCVE-0-2025-61952)

Vulnerability from cvelistv5 – Published: 2026-03-17 18:52 – Updated: 2026-03-18 17:00
VLAI
Summary
An out-of-bounds read vulnerability exists in the EMF functionality of Canva Affinity. By using a specially crafted EMF file, an attacker could exploit this vulnerability to perform an out-of-bounds read, potentially leading to the disclosure of sensitive information.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
Canva Affinity Affected: 3.0.1.3808
Create a notification for this product.
Credits
Discovered by KPC of Cisco Talos.
Show details on NVD website

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CVE-2025-61979 (GCVE-0-2025-61979)

Vulnerability from cvelistv5 – Published: 2026-03-17 18:52 – Updated: 2026-03-18 17:00
VLAI
Summary
An out-of-bounds read vulnerability exists in the EMF functionality of Canva Affinity. By using a specially crafted EMF file, an attacker could exploit this vulnerability to perform an out-of-bounds read, potentially leading to the disclosure of sensitive information.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
Canva Affinity Affected: 3.0.1.3808
Create a notification for this product.
Credits
Discovered by KPC of Cisco Talos.
Show details on NVD website

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CVE-2025-62202 (GCVE-0-2025-62202)

Vulnerability from cvelistv5 – Published: 2025-11-11 17:59 – Updated: 2026-02-13 20:46
VLAI
Title
Microsoft Excel Information Disclosure Vulnerability
Summary
Out-of-bounds read in Microsoft Office Excel allows an unauthorized attacker to disclose information locally.
SSVC
Exploitation: none Automatable: no Technical Impact: total
CISA Coordinator (v2.0.3)
CWE
Assigner
References
Impacted products
Vendor Product Version
Microsoft Microsoft 365 Apps for Enterprise Affected: 16.0.1 , < https://aka.ms/OfficeSecurityReleases (custom)
Create a notification for this product.
Microsoft Microsoft Excel 2016 Affected: 16.0.0.0 , < 16.0.5526.1002 (custom)
Create a notification for this product.
Microsoft Microsoft Office 2019 Affected: 19.0.0 , < https://aka.ms/OfficeSecurityReleases (custom)
Create a notification for this product.
Microsoft Microsoft Office LTSC 2021 Affected: 16.0.1 , < https://aka.ms/OfficeSecurityReleases (custom)
Create a notification for this product.
Microsoft Microsoft Office LTSC 2024 Affected: 16.0.0 , < https://aka.ms/OfficeSecurityReleases (custom)
Create a notification for this product.
Microsoft Microsoft Office LTSC for Mac 2021 Affected: 16.0.1 , < 16.103.25110922 (custom)
Create a notification for this product.
Microsoft Microsoft Office LTSC for Mac 2024 Affected: 16.0.0 , < 16.103.25110922 (custom)
Create a notification for this product.
Microsoft Office Online Server Affected: 16.0.0.0 , < 16.0.10417.20068 (custom)
Create a notification for this product.
Date Public
2025-11-11 08:00
Show details on NVD website

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CVE-2025-62403 (GCVE-0-2025-62403)

Vulnerability from cvelistv5 – Published: 2026-03-17 18:52 – Updated: 2026-03-18 17:00
VLAI
Summary
An out-of-bounds read vulnerability exists in the EMF functionality of Canva Affinity. By using a specially crafted EMF file, an attacker could exploit this vulnerability to perform an out-of-bounds read, potentially leading to the disclosure of sensitive information.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
Canva Affinity Affected: 3.0.1.3808
Create a notification for this product.
Credits
Discovered by KPC of Cisco Talos.
Show details on NVD website

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CVE-2025-62457 (GCVE-0-2025-62457)

Vulnerability from cvelistv5 – Published: 2025-12-09 17:55 – Updated: 2026-04-16 14:18
VLAI
Title
Windows Cloud Files Mini Filter Driver Elevation of Privilege Vulnerability
Summary
Out-of-bounds read in Windows Cloud Files Mini Filter Driver allows an authorized attacker to elevate privileges locally.
SSVC
Exploitation: none Automatable: no Technical Impact: total
CISA Coordinator (v2.0.3)
CWE
Assigner
References
Impacted products
Vendor Product Version
Microsoft Windows 10 Version 1809 Affected: 10.0.17763.0 , < 10.0.17763.8146 (custom)
Create a notification for this product.
Microsoft Windows 10 Version 21H2 Affected: 10.0.19044.0 , < 10.0.19044.6691 (custom)
Create a notification for this product.
Microsoft Windows 10 Version 22H2 Affected: 10.0.19045.0 , < 10.0.19045.6691 (custom)
Create a notification for this product.
Microsoft Windows 11 version 22H3 Affected: 10.0.22631.0 , < 10.0.22631.6345 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 23H2 Affected: 10.0.22631.0 , < 10.0.22631.6345 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 24H2 Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 25H2 Affected: 10.0.26200.0 , < 10.0.26200.7462 (custom)
Create a notification for this product.
Microsoft Windows Server 2019 Affected: 10.0.17763.0 , < 10.0.17763.8146 (custom)
Create a notification for this product.
Microsoft Windows Server 2019 (Server Core installation) Affected: 10.0.17763.0 , < 10.0.17763.8146 (custom)
Create a notification for this product.
Microsoft Windows Server 2022 Affected: 10.0.20348.0 , < 10.0.20348.4529 (custom)
Create a notification for this product.
Microsoft Windows Server 2022, 23H2 Edition (Server Core installation) Affected: 10.0.25398.0 , < 10.0.25398.2025 (custom)
Create a notification for this product.
Microsoft Windows Server 2025 Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
Create a notification for this product.
Microsoft Windows Server 2025 (Server Core installation) Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
Create a notification for this product.
Date Public
2025-12-09 08:00
Show details on NVD website

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CVE-2025-62468 (GCVE-0-2025-62468)

Vulnerability from cvelistv5 – Published: 2025-12-09 17:55 – Updated: 2026-04-16 14:18
VLAI
Title
Windows Defender Firewall Service Information Disclosure Vulnerability
Summary
Out-of-bounds read in Windows Defender Firewall Service allows an authorized attacker to disclose information locally.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
References
Impacted products
Vendor Product Version
Microsoft Windows 11 version 22H3 Affected: 10.0.22631.0 , < 10.0.22631.6345 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 23H2 Affected: 10.0.22631.0 , < 10.0.22631.6345 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 24H2 Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
Create a notification for this product.
Microsoft Windows 11 Version 25H2 Affected: 10.0.26200.0 , < 10.0.26200.7462 (custom)
Create a notification for this product.
Microsoft Windows Server 2022, 23H2 Edition (Server Core installation) Affected: 10.0.25398.0 , < 10.0.25398.2025 (custom)
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Microsoft Windows Server 2025 Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
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Microsoft Windows Server 2025 (Server Core installation) Affected: 10.0.26100.0 , < 10.0.26100.7462 (custom)
Create a notification for this product.
Date Public
2025-12-09 08:00
Show details on NVD website

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CVE-2025-62492 (GCVE-0-2025-62492)

Vulnerability from cvelistv5 – Published: 2025-10-16 15:51 – Updated: 2025-10-16 18:02
VLAI
Title
Heap out-of-bounds read in js_typed_array_indexOf in QuickJS
Summary
A vulnerability stemming from floating-point arithmetic precision errors exists in the QuickJS engine's implementation of TypedArray.prototype.indexOf() when a negative fromIndex argument is supplied. * The fromIndex argument (read as a double variable, $d$) is used to calculate the starting position for the search. * If d is negative, the index is calculated relative to the end of the array by adding the array's length (len) to d: $$d_{new} = d + \text{len}$$ * Due to the inherent limitations of floating-point arithmetic, if the negative value $d$ is extremely small (e.g., $-1 \times 10^{-20}$), the addition $d + \text{len}$ can result in a loss of precision, yielding an outcome that is exactly equal to $\text{len}$. * The result is then converted to an integer index $k$: $k = \text{len}$. * The search function proceeds to read array elements starting from index $k$. Since valid indices are $0$ to $\text{len}-1$, starting the read at index $\text{len}$ is one element past the end of the array. This allows an attacker to cause an Out-of-Bounds Read of one element immediately following the buffer. While the scope of this read is small (one element), it can potentially lead to Information Disclosure of adjacent memory contents, depending on the execution environment.
SSVC
Exploitation: poc Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
QuickJS QuickJS Affected: 2025-04-26 , < 2025-09-13 (date)
Create a notification for this product.
Date Public
2025-07-24 22:00
Credits
Google Big Sleep
Show details on NVD website

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CVE-2025-62493 (GCVE-0-2025-62493)

Vulnerability from cvelistv5 – Published: 2025-10-16 15:51 – Updated: 2025-10-16 17:59
VLAI
Title
Heap out-of-bounds read in js_bigint_to_string1 in QuickJS
Summary
A vulnerability exists in the QuickJS engine's BigInt string conversion logic (js_bigint_to_string1) due to an incorrect calculation of the required number of digits, which in turn leads to reading memory past the allocated BigInt structure. * The function determines the number of characters (n_digits) needed for the string representation by calculating: $$ \\ \text{n\_digits} = (\text{n\_bits} + \text{log2\_radix} - 1) / \text{log2\_radix}$$ $$$$This formula is off-by-one in certain edge cases when calculating the necessary memory limbs. For instance, a 127-bit BigInt using radix 32 (where $\text{log2\_radix}=5$) is calculated to need $\text{n\_digits}=26$. * The maximum number of bits actually stored is $\text{n\_bits}=127$, which requires only two 64-bit limbs ($\text{JS\_LIMB\_BITS}=64$). * The conversion loop iterates $\text{n\_digits}=26$ times, attempting to read 5 bits in each iteration, totaling $26 \times 5 = 130$ bits. * In the final iterations of the loop, the code attempts to read data that spans two limbs: C c = (r->tab[pos] >> shift) | (r->tab[pos + 1] << (JS_LIMB_BITS - shift)); * Since the BigInt was only allocated two limbs, the read operation for r->tab[pos + 1] becomes an Out-of-Bounds Read when pos points to the last valid limb (e.g., $pos=1$). This vulnerability allows an attacker to cause the engine to read and process data from the memory immediately following the BigInt buffer. This can lead to Information Disclosure of sensitive data stored on the heap adjacent to the BigInt object.
SSVC
Exploitation: poc Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
QuickJS QuickJS Affected: 2025-04-26 , < 2025-09-13 (date)
Create a notification for this product.
Date Public
2025-07-24 22:00
Credits
Google Big Sleep
Show details on NVD website

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              "value": "\u003cp\u003eA vulnerability exists in the QuickJS engine\u0027s BigInt string conversion logic (\u003ccode\u003ejs_bigint_to_string1\u003c/code\u003e) due to an incorrect calculation of the required number of digits, which in turn leads to reading memory past the allocated BigInt structure.\u003c/p\u003e\u003col\u003e\u003cli\u003e\u003cp\u003eThe function determines the number of characters (\u003ccode\u003en_digits\u003c/code\u003e) needed for the string representation by calculating:\u003c/p\u003e\u003cdiv\u003e$$ \\\\ \\text{n\\_digits} = (\\text{n\\_bits} + \\text{log2\\_radix} - 1) / \\text{log2\\_radix}$$\u003c/div\u003e\u003cp\u003e$$$$This formula is \u003cb\u003eoff-by-one\u003c/b\u003e in certain edge cases when calculating the necessary memory limbs. For instance, a 127-bit BigInt using radix 32 (where $\\text{log2\\_radix}=5$) is calculated to need $\\text{n\\_digits}=26$.\u003c/p\u003e\u003c/li\u003e\u003cli\u003e\u003cp\u003eThe maximum number of bits actually stored is $\\text{n\\_bits}=127$, which requires only two 64-bit limbs ($\\text{JS\\_LIMB\\_BITS}=64$).\u003c/p\u003e\u003c/li\u003e\u003cli\u003e\u003cp\u003eThe conversion loop iterates \u003cb\u003e$\\text{n\\_digits}=26$ times\u003c/b\u003e, attempting to read 5 bits in each iteration, totaling $26 \\times 5 = 130$ bits.\u003c/p\u003e\u003c/li\u003e\u003cli\u003e\u003cp\u003eIn the final iterations of the loop, the code attempts to read data that spans two limbs:\u003c/p\u003e\u003cdiv\u003e\u003cdiv\u003eC\u003cdiv\u003e\u003c/div\u003e\u003c/div\u003e\u003cdiv\u003e\u003cdiv\u003e\u003cpre\u003e\u003ccode\u003ec = (r-\u0026gt;tab[pos] \u0026gt;\u0026gt; shift) | (r-\u0026gt;tab[pos + 1] \u0026lt;\u0026lt; (JS_LIMB_BITS - shift));\n\u003c/code\u003e\u003c/pre\u003e\u003c/div\u003e\u003c/div\u003e\u003c/div\u003e\u003c/li\u003e\u003cli\u003e\u003cp\u003eSince the BigInt was only allocated two limbs, the read operation for \u003ccode\u003er-\u0026gt;tab[pos + 1]\u003c/code\u003e becomes an \u003cb\u003eOut-of-Bounds Read\u003c/b\u003e when \u003ccode\u003epos\u003c/code\u003e points to the last valid limb (e.g., $pos=1$).\u003c/p\u003e\u003c/li\u003e\u003c/ol\u003e\u003cp\u003eThis vulnerability allows an attacker to cause the engine to read and process data from the memory immediately following the BigInt buffer. This can lead to \u003cb\u003eInformation Disclosure\u003c/b\u003e of sensitive data stored on the heap adjacent to the BigInt object.\u003c/p\u003e\u003cbr\u003e"
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          "value": "A vulnerability exists in the QuickJS engine\u0027s BigInt string conversion logic (js_bigint_to_string1) due to an incorrect calculation of the required number of digits, which in turn leads to reading memory past the allocated BigInt structure.\n\n  *  The function determines the number of characters (n_digits) needed for the string representation by calculating:\n\n$$ \\\\ \\text{n\\_digits} = (\\text{n\\_bits} + \\text{log2\\_radix} - 1) / \\text{log2\\_radix}$$\n\n$$$$This formula is off-by-one in certain edge cases when calculating the necessary memory limbs. For instance, a 127-bit BigInt using radix 32 (where $\\text{log2\\_radix}=5$) is calculated to need $\\text{n\\_digits}=26$.\n\n\n  *  The maximum number of bits actually stored is $\\text{n\\_bits}=127$, which requires only two 64-bit limbs ($\\text{JS\\_LIMB\\_BITS}=64$).\n\n\n  *  The conversion loop iterates $\\text{n\\_digits}=26$ times, attempting to read 5 bits in each iteration, totaling $26 \\times 5 = 130$ bits.\n\n\n  *  In the final iterations of the loop, the code attempts to read data that spans two limbs:\n\nC\n\n\n\nc = (r-\u003etab[pos] \u003e\u003e shift) | (r-\u003etab[pos + 1] \u003c\u003c (JS_LIMB_BITS - shift));\n\n\n\n\n\n\n\n\n\n  *  Since the BigInt was only allocated two limbs, the read operation for r-\u003etab[pos + 1] becomes an Out-of-Bounds Read when pos points to the last valid limb (e.g., $pos=1$).\n\n\nThis vulnerability allows an attacker to cause the engine to read and process data from the memory immediately following the BigInt buffer. This can lead to Information Disclosure of sensitive data stored on the heap adjacent to the BigInt object."
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CVE-2025-62500 (GCVE-0-2025-62500)

Vulnerability from cvelistv5 – Published: 2026-03-17 18:52 – Updated: 2026-03-18 17:00
VLAI
Summary
An out-of-bounds read vulnerability exists in the EMF functionality of Canva Affinity. By using a specially crafted EMF file, an attacker could exploit this vulnerability to perform an out-of-bounds read, potentially leading to the disclosure of sensitive information.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
Assigner
Impacted products
Vendor Product Version
Canva Affinity Affected: 3.0.1.3808
Create a notification for this product.
Credits
Discovered by KPC of Cisco Talos.
Show details on NVD website

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Mitigation ID: MIT-5

Phase: Implementation

Strategy: Input Validation

Description:

  • Assume all input is malicious. Use an "accept known good" input validation strategy, i.e., use a list of acceptable inputs that strictly conform to specifications. Reject any input that does not strictly conform to specifications, or transform it into something that does.
  • When performing input validation, consider all potentially relevant properties, including length, type of input, the full range of acceptable values, missing or extra inputs, syntax, consistency across related fields, and conformance to business rules. As an example of business rule logic, "boat" may be syntactically valid because it only contains alphanumeric characters, but it is not valid if the input is only expected to contain colors such as "red" or "blue."
  • Do not rely exclusively on looking for malicious or malformed inputs. This is likely to miss at least one undesirable input, especially if the code's environment changes. This can give attackers enough room to bypass the intended validation. However, denylists can be useful for detecting potential attacks or determining which inputs are so malformed that they should be rejected outright.
  • To reduce the likelihood of introducing an out-of-bounds read, ensure that you validate and ensure correct calculations for any length argument, buffer size calculation, or offset. Be especially careful of relying on a sentinel (i.e. special character such as NUL) in untrusted inputs.
Mitigation

Phase: Architecture and Design

Strategy: Language Selection

Description:

  • Use a language that provides appropriate memory abstractions.
CAPEC-540: Overread Buffers

An adversary attacks a target by providing input that causes an application to read beyond the boundary of a defined buffer. This typically occurs when a value influencing where to start or stop reading is set to reflect positions outside of the valid memory location of the buffer. This type of attack may result in exposure of sensitive information, a system crash, or arbitrary code execution.

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