CVE-2025-27234 - Zabbix Agent 2 smartctl plugin RCE vulnerability in Zabbix 5.0.
CVE ID : CVE-2025-27234
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : Zabbix Agent 2 smartctl plugin does not properly sanitize smart.disk.get parameters, allowing an attacker to inject unexpected arguments into the smartctl command. In Zabbix 5.0 this allows for remote code execution.
Severity: 7.3 | HIGH
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CVE ID : CVE-2025-27234
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : Zabbix Agent 2 smartctl plugin does not properly sanitize smart.disk.get parameters, allowing an attacker to inject unexpected arguments into the smartctl command. In Zabbix 5.0 this allows for remote code execution.
Severity: 7.3 | HIGH
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CVE-2025-27238 - API hostprototype.get lists data to users with insufficient authorization.
CVE ID : CVE-2025-27238
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : Due to a bug in Zabbix API, the hostprototype.get method lists all host prototypes to users that do not have any user groups assigned to them.
Severity: 2.1 | LOW
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CVE ID : CVE-2025-27238
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : Due to a bug in Zabbix API, the hostprototype.get method lists all host prototypes to users that do not have any user groups assigned to them.
Severity: 2.1 | LOW
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CVE-2025-27240 - Secondary-order SQL injection in Zabbix Server when deleting an autoregistered host
CVE ID : CVE-2025-27240
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : A Zabbix adminitrator can inject arbitrary SQL during the autoremoval of hosts by inserting malicious SQL in the 'Visible name' field.
Severity: 7.5 | HIGH
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CVE ID : CVE-2025-27240
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : A Zabbix adminitrator can inject arbitrary SQL during the autoremoval of hosts by inserting malicious SQL in the 'Visible name' field.
Severity: 7.5 | HIGH
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CVE-2025-6638 - Regular Expression Denial of Service (ReDoS) in huggingface/transformers
CVE ID : CVE-2025-6638
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : A Regular Expression Denial of Service (ReDoS) vulnerability was discovered in the Hugging Face Transformers library, specifically affecting the MarianTokenizer's `remove_language_code()` method. This vulnerability is present in version 4.52.4 and has been fixed in version 4.53.0. The issue arises from inefficient regex processing, which can be exploited by crafted input strings containing malformed language code patterns, leading to excessive CPU consumption and potential denial of service.
Severity: 5.3 | MEDIUM
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CVE ID : CVE-2025-6638
Published : Sept. 12, 2025, 11:15 a.m. | 1 hour, 41 minutes ago
Description : A Regular Expression Denial of Service (ReDoS) vulnerability was discovered in the Hugging Face Transformers library, specifically affecting the MarianTokenizer's `remove_language_code()` method. This vulnerability is present in version 4.52.4 and has been fixed in version 4.53.0. The issue arises from inefficient regex processing, which can be exploited by crafted input strings containing malformed language code patterns, leading to excessive CPU consumption and potential denial of service.
Severity: 5.3 | MEDIUM
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CVE-2025-8699 - KioSoft Stored Value Unattended Payment Solution NFC Card Cash Value Manipulation Vulnerability
CVE ID : CVE-2025-8699
Published : Sept. 12, 2025, 12:15 p.m. | 41 minutes ago
Description : Some "Stored Value" Unattended Payment Solutions of KioSoft use vulnerable NFC cards. Attackers could potentially use this vulnerability to change the balance on the cards and generate money. The account balance is stored on an insecure MiFare Classic NFC card and can be read and written back. By carefully observing changes in card dumps, one can identify fields that store the cash value of the card. Additionally, a checksum can be identified, which is created by XOR-ing the cash and an unknown field with a certain value. By updating the fields accordingly, arbitrary amounts of money can be loaded onto the card (up to $655,35) to pay for goods.
Severity: 0.0 | NA
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CVE ID : CVE-2025-8699
Published : Sept. 12, 2025, 12:15 p.m. | 41 minutes ago
Description : Some "Stored Value" Unattended Payment Solutions of KioSoft use vulnerable NFC cards. Attackers could potentially use this vulnerability to change the balance on the cards and generate money. The account balance is stored on an insecure MiFare Classic NFC card and can be read and written back. By carefully observing changes in card dumps, one can identify fields that store the cash value of the card. Additionally, a checksum can be identified, which is created by XOR-ing the cash and an unknown field with a certain value. By updating the fields accordingly, arbitrary amounts of money can be loaded onto the card (up to $655,35) to pay for goods.
Severity: 0.0 | NA
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CVE-2025-10318 - JeecgBoot WebSocket Message sendWebSocketMsg improper authorization
CVE ID : CVE-2025-10318
Published : Sept. 12, 2025, 1:15 p.m. | 3 hours, 41 minutes ago
Description : A vulnerability was identified in JeecgBoot up to 3.8.2. Affected by this vulnerability is an unknown functionality of the file /api/system/sendWebSocketMsg of the component WebSocket Message Handler. The manipulation of the argument userIds leads to improper authorization. The attack can be initiated remotely. The exploit is publicly available and might be used. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 6.5 | MEDIUM
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CVE ID : CVE-2025-10318
Published : Sept. 12, 2025, 1:15 p.m. | 3 hours, 41 minutes ago
Description : A vulnerability was identified in JeecgBoot up to 3.8.2. Affected by this vulnerability is an unknown functionality of the file /api/system/sendWebSocketMsg of the component WebSocket Message Handler. The manipulation of the argument userIds leads to improper authorization. The attack can be initiated remotely. The exploit is publicly available and might be used. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 6.5 | MEDIUM
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CVE-2025-59054 - dstack has insecure LUKS2 persistent storage partitions that may be opened and used
CVE ID : CVE-2025-59054
Published : Sept. 12, 2025, 1:15 p.m. | 3 hours, 41 minutes ago
Description : dstack is a software development kit (SDK) to simplify the deployment of arbitrary containerized apps into trusted execution environments. In versions of dstack prior to 0.5.4, a malicious host may provide a crafted LUKS2 data volume to a dstack CVM for use as the `/data` mount. The guest will open the volume and write secret data using a volume key known to the attacker, causing disclosure of Wireguard keys and other secret information. The attacker can also pre-load data on the device, which could potentially compromise guest execution. LUKS2 volume metadata is not authenticated and supports null key-encryption algorithms, allowing an attacker to create a volume such that the volume opens (cryptsetup open) without error using any passphrase or token, records all writes in plaintext (or ciphertext with an attacker-known key), and/or contains arbitrary data chosen by the attacker. Version 0.5.4 of dstack contains a patch that addresses LUKS headers.
Severity: 8.5 | HIGH
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CVE ID : CVE-2025-59054
Published : Sept. 12, 2025, 1:15 p.m. | 3 hours, 41 minutes ago
Description : dstack is a software development kit (SDK) to simplify the deployment of arbitrary containerized apps into trusted execution environments. In versions of dstack prior to 0.5.4, a malicious host may provide a crafted LUKS2 data volume to a dstack CVM for use as the `/data` mount. The guest will open the volume and write secret data using a volume key known to the attacker, causing disclosure of Wireguard keys and other secret information. The attacker can also pre-load data on the device, which could potentially compromise guest execution. LUKS2 volume metadata is not authenticated and supports null key-encryption algorithms, allowing an attacker to create a volume such that the volume opens (cryptsetup open) without error using any passphrase or token, records all writes in plaintext (or ciphertext with an attacker-known key), and/or contains arbitrary data chosen by the attacker. Version 0.5.4 of dstack contains a patch that addresses LUKS headers.
Severity: 8.5 | HIGH
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CVE-2025-10364 - Unauthenticated Arbitrary Command Injection in Evertz SDVN
CVE ID : CVE-2025-10364
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : The Evertz SDVN 3080ipx-10G is a High Bandwidth Ethernet Switching Fabric for Video Application. This device exposes a web management interface on port 80. This web management interface can be used by administrators to control product features, setup network switching, and register license among other features. The application has been developed in PHP with the webEASY SDK, also named ‘ewb’ by Evertz. This web interface has two endpoints that are vulnerable to arbitrary command injection (CVE-2025-4009, CVE-2025-10364) and the authentication mechanism has a flaw leading to authentication bypass (CVE-2025-10365). CVE-2025-4009 covers the command injection in feature-transfer-import.php CVE-2025-10364 covers the command injection in feature-transfer-export.php Remote unauthenticated attackers can gain arbitrary command execution with elevated privileges ( root ) on affected devices. This level of access could lead to serious business impact such as the interruption of media streaming, modification of media being streamed, alteration of closed captions being generated, among others.
Severity: 9.3 | CRITICAL
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CVE ID : CVE-2025-10364
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : The Evertz SDVN 3080ipx-10G is a High Bandwidth Ethernet Switching Fabric for Video Application. This device exposes a web management interface on port 80. This web management interface can be used by administrators to control product features, setup network switching, and register license among other features. The application has been developed in PHP with the webEASY SDK, also named ‘ewb’ by Evertz. This web interface has two endpoints that are vulnerable to arbitrary command injection (CVE-2025-4009, CVE-2025-10364) and the authentication mechanism has a flaw leading to authentication bypass (CVE-2025-10365). CVE-2025-4009 covers the command injection in feature-transfer-import.php CVE-2025-10364 covers the command injection in feature-transfer-export.php Remote unauthenticated attackers can gain arbitrary command execution with elevated privileges ( root ) on affected devices. This level of access could lead to serious business impact such as the interruption of media streaming, modification of media being streamed, alteration of closed captions being generated, among others.
Severity: 9.3 | CRITICAL
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CVE-2025-10365 - Authentication Bypass in Evertz SDVN
CVE ID : CVE-2025-10365
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : The Evertz SDVN 3080ipx-10G is a High Bandwidth Ethernet Switching Fabric for Video Application. This device exposes a web management interface on port 80. This web management interface can be used by administrators to control product features, setup network switching, and register license among other features. The application has been developed in PHP with the webEASY SDK, also named ‘ewb’ by Evertz. This web interface has two endpoints that are vulnerable to arbitrary command injection (CVE-2025-4009, CVE-2025-10364) and the authentication mechanism has a flaw leading to authentication bypass (CVE-2025-10365). Remote unauthenticated attackers can gain arbitrary command execution with elevated privileges ( root ) on affected devices. This level of access could lead to serious business impact such as the interruption of media streaming, modification of media being streamed, alteration of closed captions being generated, among others.
Severity: 9.3 | CRITICAL
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CVE ID : CVE-2025-10365
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : The Evertz SDVN 3080ipx-10G is a High Bandwidth Ethernet Switching Fabric for Video Application. This device exposes a web management interface on port 80. This web management interface can be used by administrators to control product features, setup network switching, and register license among other features. The application has been developed in PHP with the webEASY SDK, also named ‘ewb’ by Evertz. This web interface has two endpoints that are vulnerable to arbitrary command injection (CVE-2025-4009, CVE-2025-10364) and the authentication mechanism has a flaw leading to authentication bypass (CVE-2025-10365). Remote unauthenticated attackers can gain arbitrary command execution with elevated privileges ( root ) on affected devices. This level of access could lead to serious business impact such as the interruption of media streaming, modification of media being streamed, alteration of closed captions being generated, among others.
Severity: 9.3 | CRITICAL
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CVE-2025-59058 - httpsig-rs's HMAC verification is vulnerable to timing attack
CVE ID : CVE-2025-59058
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : httpsig-rs is a Rust implementation of IETF RFC 9421 http message signatures. Prior to version 0.0.19, the HMAC signature comparison is not timing-safe. This makes anyone who uses HS256 signature verification vulnerable to a timing attack that allows the attacker to forge a signature. Version 0.0.19 fixes the issue.
Severity: 5.9 | MEDIUM
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CVE ID : CVE-2025-59058
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : httpsig-rs is a Rust implementation of IETF RFC 9421 http message signatures. Prior to version 0.0.19, the HMAC signature comparison is not timing-safe. This makes anyone who uses HS256 signature verification vulnerable to a timing attack that allows the attacker to forge a signature. Version 0.0.19 fixes the issue.
Severity: 5.9 | MEDIUM
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CVE-2025-59139 - Hono has Body Limit Middleware Bypass
CVE ID : CVE-2025-59139
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : Hono is a Web application framework that provides support for any JavaScript runtime. In versions prior to 4.9.7, a flaw in the `bodyLimit` middleware could allow bypassing the configured request body size limit when conflicting HTTP headers were present. The middleware previously prioritized the `Content-Length` header even when a `Transfer-Encoding: chunked` header was also included. According to the HTTP specification, `Content-Length` must be ignored in such cases. This discrepancy could allow oversized request bodies to bypass the configured limit. Most standards-compliant runtimes and reverse proxies may reject such malformed requests with `400 Bad Request`, so the practical impact depends on the runtime and deployment environment. If body size limits are used as a safeguard against large or malicious requests, this flaw could allow attackers to send oversized request bodies. The primary risk is denial of service (DoS) due to excessive memory or CPU consumption when handling very large requests. The implementation has been updated to align with the HTTP specification, ensuring that `Transfer-Encoding` takes precedence over `Content-Length`. The issue is fixed in Hono v4.9.7, and all users should upgrade immediately.
Severity: 5.3 | MEDIUM
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CVE ID : CVE-2025-59139
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : Hono is a Web application framework that provides support for any JavaScript runtime. In versions prior to 4.9.7, a flaw in the `bodyLimit` middleware could allow bypassing the configured request body size limit when conflicting HTTP headers were present. The middleware previously prioritized the `Content-Length` header even when a `Transfer-Encoding: chunked` header was also included. According to the HTTP specification, `Content-Length` must be ignored in such cases. This discrepancy could allow oversized request bodies to bypass the configured limit. Most standards-compliant runtimes and reverse proxies may reject such malformed requests with `400 Bad Request`, so the practical impact depends on the runtime and deployment environment. If body size limits are used as a safeguard against large or malicious requests, this flaw could allow attackers to send oversized request bodies. The primary risk is denial of service (DoS) due to excessive memory or CPU consumption when handling very large requests. The implementation has been updated to align with the HTTP specification, ensuring that `Transfer-Encoding` takes precedence over `Content-Length`. The issue is fixed in Hono v4.9.7, and all users should upgrade immediately.
Severity: 5.3 | MEDIUM
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CVE-2025-9556 - CVE-2025-9556
CVE ID : CVE-2025-9556
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : Langchaingo supports the use of jinja2 syntax when parsing prompts, which is in turn parsed using the gonja library v1.5.3. Gonja supports include and extends syntax to read files, which leads to a server side template injection vulnerability within langchaingo, allowing an attacker to insert a statement into a prompt to read the "etc/passwd" file.
Severity: 9.8 | CRITICAL
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CVE ID : CVE-2025-9556
Published : Sept. 12, 2025, 2:15 p.m. | 2 hours, 41 minutes ago
Description : Langchaingo supports the use of jinja2 syntax when parsing prompts, which is in turn parsed using the gonja library v1.5.3. Gonja supports include and extends syntax to read files, which leads to a server side template injection vulnerability within langchaingo, allowing an attacker to insert a statement into a prompt to read the "etc/passwd" file.
Severity: 9.8 | CRITICAL
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CVE-2025-10319 - JeecgBoot Tenant Log Export exportLog improper authorization
CVE ID : CVE-2025-10319
Published : Sept. 12, 2025, 3:15 p.m. | 1 hour, 41 minutes ago
Description : A security flaw has been discovered in JeecgBoot up to 3.8.2. Affected by this issue is some unknown functionality of the file /sys/tenant/exportLog of the component Tenant Log Export. The manipulation results in improper authorization. The attack can be launched remotely. The exploit has been released to the public and may be exploited. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 5.3 | MEDIUM
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CVE ID : CVE-2025-10319
Published : Sept. 12, 2025, 3:15 p.m. | 1 hour, 41 minutes ago
Description : A security flaw has been discovered in JeecgBoot up to 3.8.2. Affected by this issue is some unknown functionality of the file /sys/tenant/exportLog of the component Tenant Log Export. The manipulation results in improper authorization. The attack can be launched remotely. The exploit has been released to the public and may be exploited. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 5.3 | MEDIUM
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CVE-2025-55996 - Viber Desktop HTML Injection
CVE ID : CVE-2025-55996
Published : Sept. 12, 2025, 3:15 p.m. | 1 hour, 41 minutes ago
Description : Viber Desktop 25.6.0 is vulnerable to HTML Injection via the text parameter of the message compose/forward interface
Severity: 6.3 | MEDIUM
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CVE ID : CVE-2025-55996
Published : Sept. 12, 2025, 3:15 p.m. | 1 hour, 41 minutes ago
Description : Viber Desktop 25.6.0 is vulnerable to HTML Injection via the text parameter of the message compose/forward interface
Severity: 6.3 | MEDIUM
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CVE-2025-43787 - Liferay Portal Stored Cross-Site Scripting Vulnerability
CVE ID : CVE-2025-43787
Published : Sept. 12, 2025, 4:09 p.m. | 47 minutes ago
Description : A Stored cross-site scripting vulnerability in the Liferay Portal 7.4.0 through 7.4.3.132, and Liferay DXP 2025.Q3.0, 2025.Q2.0 through 2025.Q2.12, 2025.Q1.0 through 2025.Q1.17, 2024.Q4.0 through 2024.Q4.7, 2024.Q3.0 through 2024.Q3.13, 2024.Q2.0 through 2024.Q2.13 and 2024.Q1.1 through 2024.Q1.20 allows an remote authenticated attacker to inject JavaScript through the organization site names. The malicious payload is stored and executed without proper sanitization or escaping.
Severity: 5.1 | MEDIUM
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CVE ID : CVE-2025-43787
Published : Sept. 12, 2025, 4:09 p.m. | 47 minutes ago
Description : A Stored cross-site scripting vulnerability in the Liferay Portal 7.4.0 through 7.4.3.132, and Liferay DXP 2025.Q3.0, 2025.Q2.0 through 2025.Q2.12, 2025.Q1.0 through 2025.Q1.17, 2024.Q4.0 through 2024.Q4.7, 2024.Q3.0 through 2024.Q3.13, 2024.Q2.0 through 2024.Q2.13 and 2024.Q1.1 through 2024.Q1.20 allows an remote authenticated attacker to inject JavaScript through the organization site names. The malicious payload is stored and executed without proper sanitization or escaping.
Severity: 5.1 | MEDIUM
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CVE-2025-10320 - iteachyou Dreamer CMS updatePwd weak password
CVE ID : CVE-2025-10320
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : A vulnerability was detected in iteachyou Dreamer CMS up to 4.1.3.2. This issue affects some unknown processing of the file /admin/user/updatePwd. Performing manipulation results in weak password requirements. Remote exploitation of the attack is possible. A high degree of complexity is needed for the attack. The exploitability is assessed as difficult. The exploit is now public and may be used. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 3.1 | LOW
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CVE ID : CVE-2025-10320
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : A vulnerability was detected in iteachyou Dreamer CMS up to 4.1.3.2. This issue affects some unknown processing of the file /admin/user/updatePwd. Performing manipulation results in weak password requirements. Remote exploitation of the attack is possible. A high degree of complexity is needed for the attack. The exploitability is assessed as difficult. The exploit is now public and may be used. The vendor was contacted early about this disclosure but did not respond in any way.
Severity: 3.1 | LOW
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CVE-2025-39792 - dm: Always split write BIOs to zoned device limits
CVE ID : CVE-2025-39792
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: dm: Always split write BIOs to zoned device limits Any zoned DM target that requires zone append emulation will use the block layer zone write plugging. In such case, DM target drivers must not split BIOs using dm_accept_partial_bio() as doing so can potentially lead to deadlocks with queue freeze operations. Regular write operations used to emulate zone append operations also cannot be split by the target driver as that would result in an invalid writen sector value return using the BIO sector. In order for zoned DM target drivers to avoid such incorrect BIO splitting, we must ensure that large BIOs are split before being passed to the map() function of the target, thus guaranteeing that the limits for the mapped device are not exceeded. dm-crypt and dm-flakey are the only target drivers supporting zoned devices and using dm_accept_partial_bio(). In the case of dm-crypt, this function is used to split BIOs to the internal max_write_size limit (which will be suppressed in a different patch). However, since crypt_alloc_buffer() uses a bioset allowing only up to BIO_MAX_VECS (256) vectors in a BIO. The dm-crypt device max_segments limit, which is not set and so default to BLK_MAX_SEGMENTS (128), must thus be respected and write BIOs split accordingly. In the case of dm-flakey, since zone append emulation is not required, the block layer zone write plugging is not used and no splitting of BIOs required. Modify the function dm_zone_bio_needs_split() to use the block layer helper function bio_needs_zone_write_plugging() to force a call to bio_split_to_limits() in dm_split_and_process_bio(). This allows DM target drivers to avoid using dm_accept_partial_bio() for write operations on zoned DM devices.
Severity: 0.0 | NA
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CVE ID : CVE-2025-39792
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: dm: Always split write BIOs to zoned device limits Any zoned DM target that requires zone append emulation will use the block layer zone write plugging. In such case, DM target drivers must not split BIOs using dm_accept_partial_bio() as doing so can potentially lead to deadlocks with queue freeze operations. Regular write operations used to emulate zone append operations also cannot be split by the target driver as that would result in an invalid writen sector value return using the BIO sector. In order for zoned DM target drivers to avoid such incorrect BIO splitting, we must ensure that large BIOs are split before being passed to the map() function of the target, thus guaranteeing that the limits for the mapped device are not exceeded. dm-crypt and dm-flakey are the only target drivers supporting zoned devices and using dm_accept_partial_bio(). In the case of dm-crypt, this function is used to split BIOs to the internal max_write_size limit (which will be suppressed in a different patch). However, since crypt_alloc_buffer() uses a bioset allowing only up to BIO_MAX_VECS (256) vectors in a BIO. The dm-crypt device max_segments limit, which is not set and so default to BLK_MAX_SEGMENTS (128), must thus be respected and write BIOs split accordingly. In the case of dm-flakey, since zone append emulation is not required, the block layer zone write plugging is not used and no splitting of BIOs required. Modify the function dm_zone_bio_needs_split() to use the block layer helper function bio_needs_zone_write_plugging() to force a call to bio_split_to_limits() in dm_split_and_process_bio(). This allows DM target drivers to avoid using dm_accept_partial_bio() for write operations on zoned DM devices.
Severity: 0.0 | NA
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CVE-2025-39793 - io_uring/memmap: cast nr_pages to size_t before shifting
CVE ID : CVE-2025-39793
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: io_uring/memmap: cast nr_pages to size_t before shifting If the allocated size exceeds UINT_MAX, then it's necessary to cast the mr->nr_pages value to size_t to prevent it from overflowing. In practice this isn't much of a concern as the required memory size will have been validated upfront, and accounted to the user. And > 4GB sizes will be necessary to make the lack of a cast a problem, which greatly exceeds normal user locked_vm settings that are generally in the kb to mb range. However, if root is used, then accounting isn't done, and then it's possible to hit this issue.
Severity: 0.0 | NA
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CVE ID : CVE-2025-39793
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: io_uring/memmap: cast nr_pages to size_t before shifting If the allocated size exceeds UINT_MAX, then it's necessary to cast the mr->nr_pages value to size_t to prevent it from overflowing. In practice this isn't much of a concern as the required memory size will have been validated upfront, and accounted to the user. And > 4GB sizes will be necessary to make the lack of a cast a problem, which greatly exceeds normal user locked_vm settings that are generally in the kb to mb range. However, if root is used, then accounting isn't done, and then it's possible to hit this issue.
Severity: 0.0 | NA
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CVE-2025-39794 - ARM: tegra: Use I/O memcpy to write to IRAM
CVE ID : CVE-2025-39794
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: ARM: tegra: Use I/O memcpy to write to IRAM Kasan crashes the kernel trying to check boundaries when using the normal memcpy.
Severity: 0.0 | NA
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CVE ID : CVE-2025-39794
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: ARM: tegra: Use I/O memcpy to write to IRAM Kasan crashes the kernel trying to check boundaries when using the normal memcpy.
Severity: 0.0 | NA
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CVE-2025-39795 - block: avoid possible overflow for chunk_sectors check in blk_stack_limits()
CVE ID : CVE-2025-39795
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: block: avoid possible overflow for chunk_sectors check in blk_stack_limits() In blk_stack_limits(), we check that the t->chunk_sectors value is a multiple of the t->physical_block_size value. However, by finding the chunk_sectors value in bytes, we may overflow the unsigned int which holds chunk_sectors, so change the check to be based on sectors.
Severity: 0.0 | NA
Visit the link for more details, such as CVSS details, affected products, timeline, and more...
CVE ID : CVE-2025-39795
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: block: avoid possible overflow for chunk_sectors check in blk_stack_limits() In blk_stack_limits(), we check that the t->chunk_sectors value is a multiple of the t->physical_block_size value. However, by finding the chunk_sectors value in bytes, we may overflow the unsigned int which holds chunk_sectors, so change the check to be based on sectors.
Severity: 0.0 | NA
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CVE-2025-39796 - net: lapbether: ignore ops-locked netdevs
CVE ID : CVE-2025-39796
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: net: lapbether: ignore ops-locked netdevs Syzkaller managed to trigger lock dependency in xsk_notify via register_netdevice. As discussed in [0], using register_netdevice in the notifiers is problematic so skip adding lapbeth for ops-locked devices. xsk_notifier+0xa4/0x280 net/xdp/xsk.c:1645 notifier_call_chain+0xbc/0x410 kernel/notifier.c:85 call_netdevice_notifiers_info+0xbe/0x140 net/core/dev.c:2230 call_netdevice_notifiers_extack net/core/dev.c:2268 [inline] call_netdevice_notifiers net/core/dev.c:2282 [inline] unregister_netdevice_many_notify+0xf9d/0x2700 net/core/dev.c:12077 unregister_netdevice_many net/core/dev.c:12140 [inline] unregister_netdevice_queue+0x305/0x3f0 net/core/dev.c:11984 register_netdevice+0x18f1/0x2270 net/core/dev.c:11149 lapbeth_new_device drivers/net/wan/lapbether.c:420 [inline] lapbeth_device_event+0x5b1/0xbe0 drivers/net/wan/lapbether.c:462 notifier_call_chain+0xbc/0x410 kernel/notifier.c:85 call_netdevice_notifiers_info+0xbe/0x140 net/core/dev.c:2230 call_netdevice_notifiers_extack net/core/dev.c:2268 [inline] call_netdevice_notifiers net/core/dev.c:2282 [inline] __dev_notify_flags+0x12c/0x2e0 net/core/dev.c:9497 netif_change_flags+0x108/0x160 net/core/dev.c:9526 dev_change_flags+0xba/0x250 net/core/dev_api.c:68 devinet_ioctl+0x11d5/0x1f50 net/ipv4/devinet.c:1200 inet_ioctl+0x3a7/0x3f0 net/ipv4/af_inet.c:1001 0: https://lore.kernel.org/netdev/20250625140357.6203d0af@kernel.org/
Severity: 0.0 | NA
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CVE ID : CVE-2025-39796
Published : Sept. 12, 2025, 4:15 p.m. | 41 minutes ago
Description : In the Linux kernel, the following vulnerability has been resolved: net: lapbether: ignore ops-locked netdevs Syzkaller managed to trigger lock dependency in xsk_notify via register_netdevice. As discussed in [0], using register_netdevice in the notifiers is problematic so skip adding lapbeth for ops-locked devices. xsk_notifier+0xa4/0x280 net/xdp/xsk.c:1645 notifier_call_chain+0xbc/0x410 kernel/notifier.c:85 call_netdevice_notifiers_info+0xbe/0x140 net/core/dev.c:2230 call_netdevice_notifiers_extack net/core/dev.c:2268 [inline] call_netdevice_notifiers net/core/dev.c:2282 [inline] unregister_netdevice_many_notify+0xf9d/0x2700 net/core/dev.c:12077 unregister_netdevice_many net/core/dev.c:12140 [inline] unregister_netdevice_queue+0x305/0x3f0 net/core/dev.c:11984 register_netdevice+0x18f1/0x2270 net/core/dev.c:11149 lapbeth_new_device drivers/net/wan/lapbether.c:420 [inline] lapbeth_device_event+0x5b1/0xbe0 drivers/net/wan/lapbether.c:462 notifier_call_chain+0xbc/0x410 kernel/notifier.c:85 call_netdevice_notifiers_info+0xbe/0x140 net/core/dev.c:2230 call_netdevice_notifiers_extack net/core/dev.c:2268 [inline] call_netdevice_notifiers net/core/dev.c:2282 [inline] __dev_notify_flags+0x12c/0x2e0 net/core/dev.c:9497 netif_change_flags+0x108/0x160 net/core/dev.c:9526 dev_change_flags+0xba/0x250 net/core/dev_api.c:68 devinet_ioctl+0x11d5/0x1f50 net/ipv4/devinet.c:1200 inet_ioctl+0x3a7/0x3f0 net/ipv4/af_inet.c:1001 0: https://lore.kernel.org/netdev/20250625140357.6203d0af@kernel.org/
Severity: 0.0 | NA
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