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| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2026-11425 | 2026-08-07 | 4.4 Medium | ||
| Domoticz versions prior to 2026.3 contains a stored cross-site scripting vulnerability in the mobile dashboard that allows authenticated attackers to inject arbitrary HTML and JavaScript by updating Text or Alert subtype device values through the API. The mobile dashboard renders device data via ng-bind-html with only an nl2br() transform that performs no HTML escaping, allowing attackers to store malicious payloads that execute in any administrator's browser upon viewing the mobile dashboard, enabling session cookie theft and account takeover. | ||||
| CVE-2026-59717 | 2026-08-07 | 4.3 Medium | ||
| Home Assistant is open source home automation software focused on local control and privacy. Prior to 2026.6.1, the Android Companion app is vulnerable to an open redirect. The app passes the URL fragment from a homeassistant://invite deep link into the onboarding flow without ever displaying the destination hostname. Because no screen in the invitation or onboarding flow shows the parsed server URL before onboarding commits to it, a victim has no way to distinguish a legitimate invite from a malicious one. An attacker can craft an invite so that a single tap on the legitimate-looking "Connect to my Home Assistant server" button opens their /auth/authorize endpoint in the URL-less onboarding WebView, presenting a look-alike login page that captures the victim's credentials. Since invitations are intended to onboard brand-new users, targets are especially unlikely to notice the substitution. This issue is fixed in version 2026.6.1. | ||||
| CVE-2026-64638 | 1 Wordpress | 1 Wordpress | 2026-08-07 | N/A |
| WordPress is vulnerable to a pre-auth reflected XSS vulnerability on the login screen. Via a specially crafted malicious third-party website hosted by an attacker, it is possible for this to be escalated to an RCE vulnerability with conditions outside of the attackers control. This requires successful social engineering of and explicit interaction by the target victim. This issue affects all versions of WordPress. Version 7.0.3 has been released, containing a fix for the vulnerability, and as a courtesy to users on older branches the fix has been backported to all branches back to 4.7. Discovered and responsibly disclosed by [the team at pwn.ai](https://pwn.ai/). | ||||
| CVE-2026-47364 | 2026-08-07 | N/A | ||
| On every successful login, the Datadog Android application calls FirebaseCrashlytics.setUserId with the signed-in user's Datadog UUID — a stable per-user identifier that is meaningful inside Datadog. This associates the Datadog user UUID with the device's Firebase installation ID on Google's backend. Separately, uncaught exceptions are forwarded to Firebase Crashlytics via recordException, attaching stack traces (which may include internal class names, package names, in-flight data referenced by crash frames, and any breadcrumbs) to the same user UUID. No visible consent gate or opt-out for Crashlytics tagging was identified in the reviewed code paths. No email, name, or organization data is forwarded to Crashlytics in the reviewed paths. | ||||
| CVE-2026-44964 | 2026-08-07 | N/A | ||
| The OnCallNotificationActivity in the Datadog Android application is declared android:exported="true" in AndroidManifest.xml with no permission guard. Any co-installed application on the same device can launch it with attacker-controlled Intent extras: on_call_page_content (rendered as full-screen lock-screen text), page_id (used to enqueue an on-call Acknowledge worker), and on_call_page_intent, a Parcelable Intent that is passed through to startActivity from inside the Datadog process after a single user tap on the Acknowledge button. The activity enables lock-screen display (setShowWhenLocked) and wakes the device (setTurnScreenOn) on launch. After one user tap, three effects follow: (1) a forged Acknowledge request is sent to the Datadog backend for the attacker-chosen page_id using the victim's authenticated session; (2) the attacker-controlled Intent is launched from the Datadog process via startActivity, providing reach into non-exported components of com.datadog.app (confused-deputy pattern); (3) the keyguard is dismissed and the screen turned on, usable as a social-engineering or annoyance vector. Preconditions: a malicious application co-installed on the victim device and an active Datadog session in the Android app. | ||||
| CVE-2026-66151 | 2026-08-07 | N/A | ||
| SonicWall Global VPN Client version 4.10.8.1108 and earlier is vulnerable to an out-of-bounds kernel memory read in the SWIPsec.sys driver, which could allow a local attacker to cause a system crash. | ||||
| CVE-2026-61808 | 2026-08-07 | 9.8 Critical | ||
| LightRAG provides simple and fast retrieval-augmented generation. Through version 1.5.4, the LightRAG API server binds to all network interfaces with authentication disabled by default, allowing an unauthenticated network attacker to read indexed document content, upload or delete documents, modify the knowledge graph, cancel pipelines, clear caches, and consume LLM resources. This issue is mitigated in version 1.5.5rc1. | ||||
| CVE-2026-62296 | 2026-08-07 | 7.5 High | ||
| HAPI FHIR is a complete implementation of the HL7 FHIR standard for healthcare interoperability in Java. Prior to 6.9.11, XhtmlParser.java imposes no maximum element nesting depth, so a deeply nested text.div narrative triggers unbounded recursion between parseElementInner() and parseElement(), raising a StackOverflowError. An attacker who can submit FHIR resources containing such narratives can thus crash a parsing or validation worker thread, affecting validator services and any application that parses attacker-supplied FHIR JSON or XML. This issue is fixed in version 6.9.11. | ||||
| CVE-2026-19153 | 1 Google | 1 Chrome | 2026-08-07 | 8.1 High |
| Insufficient validation of untrusted input in Workers in Google Chrome prior to 151.0.7922.109 allowed a remote attacker who had compromised the renderer process to bypass site isolation via a crafted HTML page. (Chromium security severity: High) | ||||
| CVE-2026-14205 | 2026-08-07 | 9.8 Critical | ||
| The WP Events Manager WordPress plugin before 2.2.5 does not validate the requested quantity when registering for a paid event and computes the price from the attacker-controlled quantity, allowing any authenticated user to create a completed booking for a paid event without making a payment. | ||||
| CVE-2026-15359 | 2 Templately, Wordpress | 2 Templately, Wordpress | 2026-08-07 | 6.5 Medium |
| The Templately WordPress plugin before 3.7.1 does not have an authorisation check on one of its request handlers, allowing unauthenticated attackers to overwrite the administrator's stored cloud service connection with an account under their control, disconnecting the legitimate administrator and redirecting the site's cloud template library to attacker-controlled content. | ||||
| CVE-2026-16030 | 2026-08-07 | 8.1 High | ||
| The MStore API WordPress plugin before 4.21.0 does not correctly verify the cryptographic signature of the token used to authenticate its phone-based login, allowing unauthenticated attackers who know a registered user's phone number to forge a token and take over that user's account, including administrator accounts. | ||||
| CVE-2026-64636 | 1 Webpros | 1 Plesk | 2026-08-07 | 7.7 High |
| An SQL injection vulnerability in Plesk Obsidian up to 18.0.80 for Linux and Windows allows an authenticated user to read arbitrary data from the panel database. | ||||
| CVE-2026-19230 | 1 Sourcecodester | 1 Photo Share Website | 2026-08-07 | 3.5 Low |
| A vulnerability was identified in SourceCodester Photo Share Website 1.0. This affects an unknown part of the file /social/ajax.php?action=save_upload of the component Comment Input Box. The manipulation of the argument content leads to cross site scripting. The attack may be initiated remotely. The exploit is publicly available and might be used. | ||||
| CVE-2026-47661 | 2026-08-07 | N/A | ||
| Pathling is a set of tools that make it easier to use FHIR and clinical terminology within health data analytics. Prior to version 2.0.0 of Pathling Server, Pathling's `/$result` endpoint allows a caller who can obtain any valid async export job ID to supply `file` parameter values containing path traversal sequences. The handler verifies only the supplied `job` and never normalises or confines the requested `file` path to that job's `jobs/<jobId>` directory before opening it as a filesystem resource. Because async export scratch space lives under the same warehouse database root as persisted resource tables, an attacker can use their own export job to read other files from the warehouse. This is fixed in Pathling Server 2.0.0. As an interim mitigation, disable the async export operations (`pathling.operations.exportEnabled`, `patientExportEnabled`, `groupExportEnabled`, `bulkSubmitEnabled`) or enable authentication and restrict export capability to trusted callers. | ||||
| CVE-2026-47660 | 2026-08-07 | N/A | ||
| Pathling is a set of tools that make it easier to use FHIR and clinical terminology within health data analytics. Prior to version 2.0.0 of Pathling Server, Pathling's bulk-submit operation allows an allowed submitter to supply an explicit `oauthMetadataUrl` parameter that is not validated against `pathling.bulkSubmit.allowableSources`. When present, the bulk-submit OAuth flow trusts metadata and the returned `token_endpoint` from the caller-chosen location, then builds outbound OAuth client authentication directly from the submitter's stored credentials. This is fixed in Pathling Server 2.0.0. | ||||
| CVE-2026-47659 | 2026-08-07 | N/A | ||
| Pathling is a set of tools that make it easier to use FHIR and clinical terminology within health data analytics. Prior to version 2.0.0 of Pathling Server, Pathling's `/$result` endpoint allows a caller who can obtain any valid async export job ID to supply `file` parameter values containing path traversal sequences. The handler verifies only the supplied `job` and never normalises or confines the requested `file` path to that job's `jobs/<jobId>` directory before opening it as a filesystem resource. Because async export scratch space lives under the same warehouse database root as persisted resource tables, an attacker can use their own export job to read other files from the warehouse. This is fixed in Pathling Server 2.0.0. The `$result` handler now resolves and canonicalizes the requested file path and rejects any request that escapes the job's `jobs/<jobId>` directory. As an interim mitigation, disable the async export operations (`pathling.operations.exportEnabled`, `patientExportEnabled`, `groupExportEnabled`, `bulkSubmitEnabled`) or enable authentication and restrict export capability to trusted callers. | ||||
| CVE-2026-47362 | 2026-08-07 | 4.6 Medium | ||
| The Datadog Android application stores operationally sensitive content in plaintext SQLite databases via Room. Two databases were reviewed: LocalNotificationDatabase (table local_notifications, columns including title, message, recipient, service, tags, and on-call/incident deeplinks) and SearchRecentDatabase (table search_recents, storing every in-app search query the user typed). A repository-wide search for SQLCipher, SupportFactory, openHelperFactory, or any Room encryption configuration returns no matches. Databases are stored as cleartext SQLite files in /data/data/com.datadog.app/databases/. At-rest protection therefore depends solely on the Android application sandbox — the standard Android baseline, adequate for many applications but flagged here as a hardening recommendation because the stored content is operationally sensitive (customer infrastructure monitoring metadata, incident notification recipients, and free-text search queries that may reveal service names, dashboards, and queries of interest). Exploitation paths include rooted or jailbroken devices, adb backup if android:allowBackup is misconfigured for any build flavor, physical-device handover scenarios, and forensic acquisition. | ||||
| CVE-2026-47361 | 2026-08-07 | 6.4 Medium | ||
| BubbleChatActivity in the Datadog Android application is declared android:exported="true" with no permission guard and accepts a SEND intent with mimeType text/plain. The activity reads a conversation_id from Intent extras and, on onDestroy, calls BubbleChatNotification.dismiss whenever no active in-process session matches the caller-supplied conversation_id. BubbleChatNotification.dismiss unconditionally cancels notification ID 9201 — the hard-coded Bits AI chat notification — using NotificationManager.cancel, with no validation of the caller's identity or ownership of the supplied conversation_id. A zero-permission co-installed application can therefore launch BubbleChatActivity with any random conversation_id; when the activity is finished, the Bits AI chat notification is cancelled on the victim device. No data exposure: chat content is server-authentication gated and is never returned to the caller. Shortcut removal is scoped to the attacker-supplied conversation ID, which is a random string and is not reachable without prior knowledge. Impact is confined to denial of the Bits AI chat notification (a nuisance and a potential aid to phishing of in-app workflows). | ||||
| CVE-2026-44965 | 2026-08-07 | N/A | ||
| Six Android App Widget configuration activities in the Datadog Android application are declared android:exported="true" with no permission guard: IncidentWidgetActivity, MonitorSavedViewWidgetActivity, OnCallShiftsWidgetActivity, OnCallPagesWidgetActivity, SloWidgetActivity, and DashboardWidgetActivity. All six extend a shared base WidgetActivity that reads AppWidgetManager.EXTRA_APPWIDGET_ID from Intent extras and, when no resolved deep-link destination is supplied, uses that caller-controlled widget ID to look up the stored widget definition, fetch the associated user session, and perform an automatic login with source UserSessionSourceLogin.Automatic. Android App Widget IDs are small sequential integers assigned by AppWidgetManager. A zero-permission co-installed application can brute-force them by launching any of the six configuration activities with EXTRA_APPWIDGET_ID set to 1..N until one matches a configured widget on the victim device. When a match occurs, the activity foregrounds with the victim's session already loaded and renders the widget configuration UI, which is backed by live data pickers (SLOs, dashboards, incident severities and types, on-call pages and shifts) fetched through the victim's authenticated HTTP client. Exfiltration is screen-visible only — programmatic return of data to the caller is not possible from these activities. Disclosure is therefore a visual side-channel: accessibility services, screen recording, or screenshot capture. Preconditions: a malicious co-installed application, at least one of the six widgets configured on the victim's home screen, and an active Datadog session cached locally. | ||||