Search

Search Results (372511 CVEs found)

CVE Vendors Products Updated CVSS v3.1
CVE-2026-15764 1 Google 1 Chrome 2026-07-28 7.5 High
Use after free in Ozone in Google Chrome on Linux prior to 150.0.7871.125 allowed a remote attacker who convinced a user to engage in specific UI gestures to potentially exploit heap corruption via a crafted HTML page. (Chromium security severity: Critical)
CVE-2026-15765 1 Google 1 Chrome 2026-07-28 7.5 High
Use after free in Ozone in Google Chrome prior to 150.0.7871.125 allowed a remote attacker who convinced a user to engage in specific UI gestures to potentially exploit heap corruption via a crafted HTML page. (Chromium security severity: Critical)
CVE-2026-15771 1 Google 1 Chrome 2026-07-28 5.3 Medium
Insufficient validation of untrusted input in Media in Google Chrome on Windows prior to 150.0.7871.125 allowed a remote attacker who had compromised the renderer process to obtain potentially sensitive information from process memory via a crafted HTML page. (Chromium security severity: High)
CVE-2026-10683 1 Zephyrproject 1 Zephyr 2026-07-28 2.4 Low
In the Synopsys DesignWare I2C driver (drivers/i2c/i2c_dw.c) operating in target/slave mode, the rx_full interrupt handler gates the write_requested() callback on dw->state != CMD_SEND, and dw->state is only reset to READY on a STOP interrupt. The START_DET interrupt, whose handler in i2c_dw_slave_read_clear_intr_bits() would reset the state on every (re)START, was never added to the enabled interrupt mask in i2c_dw_slave_register(), so that recovery path was dead code. As a result, if the STOP interrupt is lost (bus glitch/reset, or a concurrent master driving STOP) or the bus master issues a legal WRITE-repeated-START-WRITE sequence with the same direction, the driver remains in CMD_SEND permanently and never invokes write_requested() again for the life of the target. An I2C master on the same physical bus can deliberately trigger this, causing the I2C target function to malfunction for all subsequent write transactions and desynchronizing consumer framing state (e.g. MCTP-over-I2C), a recoverable-by-reset denial of service of the target peripheral. The fix unmasks START_DET so the state is reset at every bus (re)START. Impact is availability-only over a local board-level bus; no memory corruption results in the in-tree consumer, whose per-byte buffer write is independently bounds-checked.
CVE-2026-54572 1 Rclone 1 Rclone 2026-07-28 7.5 High
Rclone is a command-line program to sync files and directories to and from different cloud storage providers. Prior to 1.74.4, with -l/--links, rclone serializes symlinks as .rclonelink text objects and recreates them on a local destination without validating the target, allowing an attacker-controlled remote to plant an escaping symlink and cause a following object write to land outside the destination with attacker-chosen contents. This issue is fixed in version 1.74.4.
CVE-2026-65618 1 Jfrog 1 Artifactory 2026-07-28 6.5 Medium
Improper URL validation when handling specific URLs, allows an attacker, under certain conditions, to make unauthorized requests from JFrog Artifactory, potentially exposing internal services and cached response data.
CVE-2026-65616 1 Jfrog 1 Artifactory 2026-07-28 8.8 High
Incorrect authorization validation in refresh token signature allows non-admin users to obtain a signed JFrog administrator token.
CVE-2026-65925 1 Jfrog 1 Artifactory 2026-07-28 6.5 Medium
A user with JFrog Artifactory Cargo remote repository read access could make Artifactory request unintended URLs and return the response.
CVE-2026-65617 1 Jfrog 1 Artifactory 2026-07-28 8.8 High
A deserialization weakness in JFrog Artifactory package handling could allow a low-privileged user to impact confidentiality, integrity, and availability under specific repository conditions.
CVE-2026-65922 1 Jfrog 1 Artifactory 2026-07-28 7.1 High
An authorization weakness in JFrog Artifactory internal metadata handling could allow a user with limited repository access to write to restricted internal metadata areas under specific conditions. Successful abuse is limited to integrity and availability impact at a low level; confidentiality is not affected.
CVE-2026-26718 2026-07-28 9.1 Critical
A Cross-Site Request Forgery (CSRF) vulnerability exists in the xxl-job-admin web application v.3.0.0 that allows an attacker to perform unauthorized modifications to Glue IDE shell scripts. The affected endpoint lacks proper CSRF token validation and accepts arbitrary HTTP methods via a permissive request mapping
CVE-2026-48052 1 Papra-hq 1 Papra 2026-07-28 5.4 Medium
Papra is a minimalistic document management and archiving platform. Prior to version 26.5.0, an authenticated user who is a member of any organization can delete or rename tags belonging to a different organization, given the target tag's ID. The route handler verifies the caller's membership of the ":organizationId" in the URL, but the repository write filters on tag.id alone, so the URL-level org scope never reaches the database. This issue has been patched in version 26.5.0.
CVE-2026-60005 1 F5 2 Nginx Open Source, Nginx Plus 2026-07-28 8.2 High
NGINX Plus and NGINX Open Source have a vulnerability in the ngx_http_slice_module module. When the slice directive and unnamed regex captures are configured or when a background cache update happens, unauthenticated attackers can send requests that may cause uninitialized memory access in the NGINX worker process, leading to limited disclosure of memory or a restart. Impact: This vulnerability may allow remote, unauthenticated attackers to have limited control to disclose memory contents or restart the NGINX worker process. There is no control plane exposure; this is a data plane issue only. Note: The ngx_http_slice_module module is not enabled by default; it's enabled with the --with-http_slice_module configuration parameter. Note: Software versions which have reached End of Technical Support (EoTS) are not evaluated.
CVE-2026-64641 1 Vercel 1 Next.js 2026-07-28 7.5 High
Next.js is a React framework for building full-stack web applications. In versions 13.0.0 through 15.5.20 and 16.0.0 through 16.2.10, crafted requests targeting Next.js applications using App Router with at least one Server Action can lead to excessive CPU usage blocking processing of further requests in the same process. This issue has been fixed in versions 15.5.21 and 16.2.11.
CVE-2026-66014 1 Jfrog 1 Artifactory 2026-07-28 8.8 High
JFrog Artifactory contains an authentication handling weakness in internal request processing that, under specific conditions, may allow an attacker to escalate privileges beyond the intended access level.
CVE-2026-65924 1 Jfrog 1 Artifactory 2026-07-28 6.5 Medium
JFrog Artifactory support for Terraform remote repositories was found to be susceptible to Server-Side Request Forgery (SSRF). An authenticated user - or, if anonymous access is enabled on the repository, an unauthenticated user - could cause Artifactory to issue outbound HTTP requests to arbitrary destinations and receive the response content.
CVE-2026-64542 1 Linux 1 Linux Kernel 2026-07-28 5.5 Medium
In the Linux kernel, the following vulnerability has been resolved: ipv6: ndisc: fix NULL deref in accept_untracked_na() accept_untracked_na() re-fetches the inet6_dev with __in6_dev_get(dev) and dereferences idev->cnf.accept_untracked_na without a NULL check, even though its only caller ndisc_recv_na() already fetched and NULL-checked idev for the same device. Both reads of dev->ip6_ptr run in the same RCU read-side critical section, but a concurrent addrconf_ifdown() can clear dev->ip6_ptr between them: lowering the MTU below IPV6_MIN_MTU calls addrconf_ifdown() without the synchronize_net() that orders the unregister path, so the re-fetch returns NULL and oopses: BUG: KASAN: null-ptr-deref in ndisc_recv_na (net/ipv6/ndisc.c:974) Read of size 4 at addr 0000000000000364 Call Trace: <IRQ> ndisc_recv_na (net/ipv6/ndisc.c:974) icmpv6_rcv (net/ipv6/icmp.c:1193) ip6_protocol_deliver_rcu (net/ipv6/ip6_input.c:479) ip6_input_finish (net/ipv6/ip6_input.c:534) ip6_input (net/ipv6/ip6_input.c:545) ip6_mc_input (net/ipv6/ip6_input.c:635) ipv6_rcv (net/ipv6/ip6_input.c:351) </IRQ> It is reachable by an unprivileged user via a network namespace. Pass the caller's already validated idev instead of re-fetching it; the idev stays alive for the whole RCU critical section, so it is safe even after dev->ip6_ptr has been cleared.
CVE-2026-9144 2 Oracle, Taiko 2 Communications Application Session Controller, Ag1000-01a Sms Alert Gateway 2026-07-28 7.6 High
Taiko AG1000-01A SMS Alert Gateway Rev 7.3 and Rev 8 contains a stored cross-site scripting vulnerability in the embedded web configuration interface that allows authenticated attackers to execute persistent JavaScript by fragmenting malicious payloads across multiple administrative form fields. Attackers can bypass front-end length restrictions using JavaScript comments and template literals to concatenate executable script fragments that are rendered in administrative dashboard views such as index.zhtml, resulting in persistent script execution within administrative sessions.
CVE-2026-9141 2 Oracle, Taiko 2 Communications Application Session Controller, Ag1000-01a Sms Alert Gateway 2026-07-28 9.8 Critical
Taiko AG1000-01A SMS Alert Gateway Rev 7.3 and Rev 8 contains an authentication bypass vulnerability in the embedded web configuration interface that allows unauthenticated attackers to access internal application pages without any session management or server-side authentication checks. Attackers with network access can directly request internal resources such as index.zhtml, point.zhtml, and log.shtml to gain full administrative read and write access, enabling unauthorized modification of alarm routing, device configuration, and disruption of monitoring and control functions.
CVE-2026-9139 2 Oracle, Taiko 2 Communications Application Session Controller, Ag1000-01a Sms Alert Gateway 2026-07-28 9.8 Critical
Taiko AG1000-01A SMS Alert Gateway Rev 7.3 and Rev 8 contains a hard-coded credential vulnerability in the embedded web configuration interface where authentication is implemented entirely in client-side JavaScript in login.zhtml, exposing static plaintext credentials in the page source. Unauthenticated attackers with network access can recover administrative credentials directly from the client-side validate() function to obtain full administrative access to the device.