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| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2022-22071 | 1 Qualcomm | 180 Apq8053, Apq8053 Firmware, Ar8031 and 177 more | 2025-10-28 | 8.4 High |
| Possible use after free when process shell memory is freed using IOCTL munmap call and process initialization is in progress in Snapdragon Auto, Snapdragon Compute, Snapdragon Connectivity, Snapdragon Consumer IOT, Snapdragon Industrial IOT, Snapdragon Mobile, Snapdragon Voice & Music | ||||
| CVE-2024-58057 | 1 Linux | 1 Linux Kernel | 2025-10-28 | 5.5 Medium |
| In the Linux kernel, the following vulnerability has been resolved: idpf: convert workqueues to unbound When a workqueue is created with `WQ_UNBOUND`, its work items are served by special worker-pools, whose host workers are not bound to any specific CPU. In the default configuration (i.e. when `queue_delayed_work` and friends do not specify which CPU to run the work item on), `WQ_UNBOUND` allows the work item to be executed on any CPU in the same node of the CPU it was enqueued on. While this solution potentially sacrifices locality, it avoids contention with other processes that might dominate the CPU time of the processor the work item was scheduled on. This is not just a theoretical problem: in a particular scenario misconfigured process was hogging most of the time from CPU0, leaving less than 0.5% of its CPU time to the kworker. The IDPF workqueues that were using the kworker on CPU0 suffered large completion delays as a result, causing performance degradation, timeouts and eventual system crash. * I have also run a manual test to gauge the performance improvement. The test consists of an antagonist process (`./stress --cpu 2`) consuming as much of CPU 0 as possible. This process is run under `taskset 01` to bind it to CPU0, and its priority is changed with `chrt -pQ 9900 10000 ${pid}` and `renice -n -20 ${pid}` after start. Then, the IDPF driver is forced to prefer CPU0 by editing all calls to `queue_delayed_work`, `mod_delayed_work`, etc... to use CPU 0. Finally, `ktraces` for the workqueue events are collected. Without the current patch, the antagonist process can force arbitrary delays between `workqueue_queue_work` and `workqueue_execute_start`, that in my tests were as high as `30ms`. With the current patch applied, the workqueue can be migrated to another unloaded CPU in the same node, and, keeping everything else equal, the maximum delay I could see was `6us`. | ||||
| CVE-2025-61755 | 1 Oracle | 1 Graalvm For Jdk | 2025-10-27 | 3.7 Low |
| Vulnerability in the Oracle GraalVM for JDK product of Oracle Java SE (component: Compiler). Supported versions that are affected are Oracle GraalVM for JDK: 17.0.16 and 21.0.8. Difficult to exploit vulnerability allows unauthenticated attacker with network access via multiple protocols to compromise Oracle GraalVM for JDK. Successful attacks of this vulnerability can result in unauthorized read access to a subset of Oracle GraalVM for JDK accessible data. CVSS 3.1 Base Score 3.7 (Confidentiality impacts). CVSS Vector: (CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:L/I:N/A:N). | ||||
| CVE-2025-58439 | 1 Frappe | 1 Erpnext | 2025-10-27 | 8.1 High |
| ERP is a free and open source Enterprise Resource Planning tool. In versions below 14.89.2 and 15.0.0 through 15.75.1, lack of validation of parameters left certain endpoints vulnerable to error-based SQL Injection. Some information like version could be retrieved. This issue is fixed in versions 14.89.2 and 15.76.0. | ||||
| CVE-2019-7194 | 1 Qnap | 2 Photo Station, Qts | 2025-10-27 | 9.8 Critical |
| This external control of file name or path vulnerability allows remote attackers to access or modify system files. To fix the vulnerability, QNAP recommend updating Photo Station to their latest versions. | ||||
| CVE-2023-23376 | 1 Microsoft | 21 Windows 10 1507, Windows 10 1607, Windows 10 1809 and 18 more | 2025-10-27 | 7.8 High |
| Windows Common Log File System Driver Elevation of Privilege Vulnerability | ||||
| CVE-2024-11667 | 1 Zyxel | 41 Atp, Atp100, Atp100 Firmware and 38 more | 2025-10-27 | 7.5 High |
| A directory traversal vulnerability in the web management interface of Zyxel ATP series firmware versions V5.00 through V5.38, USG FLEX series firmware versions V5.00 through V5.38, USG FLEX 50(W) series firmware versions V5.10 through V5.38, and USG20(W)-VPN series firmware versions V5.10 through V5.38 could allow an attacker to download or upload files via a crafted URL. | ||||
| CVE-2024-28987 | 1 Solarwinds | 2 Web Help Desk, Webhelpdesk | 2025-10-27 | 9.1 Critical |
| The SolarWinds Web Help Desk (WHD) software is affected by a hardcoded credential vulnerability, allowing remote unauthenticated user to access internal functionality and modify data. | ||||
| CVE-2021-35247 | 1 Solarwinds | 1 Serv-u | 2025-10-27 | 4.3 Medium |
| Serv-U web login screen to LDAP authentication was allowing characters that were not sufficiently sanitized. SolarWinds has updated the input mechanism to perform additional validation and sanitization. Please Note: No downstream affect has been detected as the LDAP servers ignored improper characters. To insure proper input validation is completed in all environments. SolarWinds recommends scheduling an update to the latest version of Serv-U. | ||||
| CVE-2022-36063 | 1 Eclipse | 1 Threadx Usbx | 2025-10-27 | 7.6 High |
| Azure RTOS USBx is a USB host, device, and on-the-go (OTG) embedded stack, fully integrated with Azure RTOS ThreadX and available for all Azure RTOS ThreadX–supported processors. Azure RTOS USBX implementation of host support for USB CDC ECM includes an integer underflow and a buffer overflow in the `_ux_host_class_cdc_ecm_mac_address_get` function which may be potentially exploited to achieve remote code execution or denial of service. Setting mac address string descriptor length to a `0` or `1` allows an attacker to introduce an integer underflow followed (string_length) by a buffer overflow of the `cdc_ecm -> ux_host_class_cdc_ecm_node_id` array. This may allow one to redirect the code execution flow or introduce a denial of service. The fix has been included in USBX release [6.1.12](https://github.com/azure-rtos/usbx/releases/tag/v6.1.12_rel). Improved mac address string descriptor length validation to check for unexpectedly small values may be used as a workaround. | ||||
| CVE-2022-29246 | 1 Eclipse | 1 Threadx Usbx | 2025-10-27 | 9.8 Critical |
| Azure RTOS USBX is a USB host, device, and on-the-go (OTG) embedded stack. Prior to version 6.1.11, he USBX DFU UPLOAD functionality may be utilized to introduce a buffer overflow resulting in overwrite of memory contents. In particular cases this may allow an attacker to bypass security features or execute arbitrary code. The implementation of `ux_device_class_dfu_control_request` function does not assure that a buffer overflow will not occur during handling of the DFU UPLOAD command. When an attacker issues the `UX_SLAVE_CLASS_DFU_COMMAND_UPLOAD` control transfer request with `wLenght` larger than the buffer size (`UX_SLAVE_REQUEST_CONTROL_MAX_LENGTH`, 256 bytes), depending on the actual implementation of `dfu -> ux_slave_class_dfu_read`, a buffer overflow may occur. In example `ux_slave_class_dfu_read` may read 4096 bytes (or more up to 65k) to a 256 byte buffer ultimately resulting in an overflow. Furthermore in case an attacker has some control over the read flash memory, this may result in execution of arbitrary code and platform compromise. A fix for this issue has been included in USBX release 6.1.11. As a workaround, align request and buffer size to assure that buffer boundaries are respected. | ||||
| CVE-2022-29223 | 1 Eclipse | 1 Threadx Usbx | 2025-10-27 | 7.5 High |
| Azure RTOS USBX is a USB host, device, and on-the-go (OTG) embedded stack. In versions prior to 6.1.10, an attacker can cause a buffer overflow by providing the Azure RTOS USBX host stack a HUB descriptor with `bNbPorts` set to a value greater than `UX_MAX_TT` which defaults to 8. For a `bNbPorts` value of 255, the implementation of `ux_host_class_hub_descriptor_get` function will modify the contents of `hub` -> `ux_host_class_hub_device` -> `ux_device_hub_tt` array violating the end boundary by 255 - `UX_MAX_TT` items. The USB host stack needs to validate the number of ports reported by the hub, and if the value is larger than UX_MAX_TT, USB stack needs to reject the request. This fix has been included in USBX release 6.1.10. | ||||
| CVE-2025-0053 | 1 Sap | 1 Sap Basis | 2025-10-24 | 5.3 Medium |
| SAP NetWeaver Application Server for ABAP and ABAP Platform allows an attacker to gain unauthorized access to system information. By using a specific URL parameter, an unauthenticated attacker could retrieve details such as system configuration. This has a limited impact on the confidentiality of the application and may be leveraged to facilitate further attacks or exploits. | ||||
| CVE-2025-0058 | 1 Sap | 1 Sap Basis | 2025-10-24 | 6.5 Medium |
| In SAP Business Workflow and SAP Flexible Workflow, an authenticated attacker can manipulate a parameter in an otherwise legitimate resource request to view sensitive information that should otherwise be restricted. The attacker does not have the ability to modify the information or to make the information unavailable. | ||||
| CVE-2025-0060 | 1 Sap | 1 Businessobjects Business Intelligence Platform | 2025-10-24 | 6.5 Medium |
| SAP BusinessObjects Business Intelligence Platform allows an authenticated user with restricted access to inject malicious JS code which can read sensitive information from the server and send it to the attacker. The attacker could further use this information to impersonate as a high privileged user causing high impact on confidentiality and integrity of the application. | ||||
| CVE-2025-0061 | 2 Sap, Sap Se | 2 Businessobjects Business Intelligence Platform, Sap Business Objects Business Intgelligence Platform | 2025-10-24 | 8.7 High |
| SAP BusinessObjects Business Intelligence Platform allows an unauthenticated attacker to perform session hijacking over the network without any user interaction, due to an information disclosure vulnerability. Attacker can access and modify all the data of the application. | ||||
| CVE-2025-0063 | 1 Sap | 1 Sap Basis | 2025-10-24 | 8.8 High |
| SAP NetWeaver AS ABAP and ABAP Platform does not check for authorization when a user executes some RFC function modules. This could lead to an attacker with basic user privileges to gain control over the data in Informix database, leading to complete compromise of confidentiality, integrity and availability. | ||||
| CVE-2025-25245 | 1 Sap | 1 Businessobjects Business Intelligence Platform | 2025-10-24 | 5.4 Medium |
| SAP BusinessObjects Business Intelligence Platform (Web Intelligence) contains a deprecated web application endpoint that is not properly secured. An attacker could take advantage of this by injecting a malicious url in the data returned to the user. On successful exploitation, there could be a limited impact on confidentiality and integrity within the scope of victim�s browser. There is no impact on availability. | ||||
| CVE-2025-24912 | 1 W1.fi | 1 Hostapd | 2025-10-24 | 3.7 Low |
| hostapd fails to process crafted RADIUS packets properly. When hostapd authenticates wi-fi devices with RADIUS authentication, an attacker in the position between the hostapd and the RADIUS server may inject crafted RADIUS packets and force RADIUS authentications to fail. | ||||
| CVE-2023-36845 | 1 Juniper | 29 Junos, Srx100, Srx110 and 26 more | 2025-10-24 | 9.8 Critical |
| A PHP External Variable Modification vulnerability in J-Web of Juniper Networks Junos OS on EX Series and SRX Series allows an unauthenticated, network-based attacker to remotely execute code. Using a crafted request which sets the variable PHPRC an attacker is able to modify the PHP execution environment allowing the injection und execution of code. This issue affects Juniper Networks Junos OS on EX Series and SRX Series: * All versions prior to 20.4R3-S9; * 21.1 versions 21.1R1 and later; * 21.2 versions prior to 21.2R3-S7; * 21.3 versions prior to 21.3R3-S5; * 21.4 versions prior to 21.4R3-S5; * 22.1 versions prior to 22.1R3-S4; * 22.2 versions prior to 22.2R3-S2; * 22.3 versions prior to 22.3R2-S2, 22.3R3-S1; * 22.4 versions prior to 22.4R2-S1, 22.4R3; * 23.2 versions prior to 23.2R1-S1, 23.2R2. | ||||