π¨ CVE-2026-71287
Cacti's sanitize_sql_column() (lib/functions.php) sanitizes user-supplied ORDER BY column names using the regex `preg_replace('/[^a-zA-Z0-9_().]/', '', $column)`. Because this allowlist retains letters, digits, underscore, parentheses, and dot (intended to support expressions like COUNT(id) and table.column), a payload such as `SLEEP(5)` passes through completely unmodified. The sanitized value is concatenated directly into raw SQL ORDER BY clauses (which cannot be parameterized) driven by a `sort_column` GET parameter in at least user_log.php, utilities.php, user_domains.php, and user_group_admin.php, allowing any authenticated Cacti user, regardless of privilege level, to perform time-based blind SQL injection against the Cacti database.
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Cacti's sanitize_sql_column() (lib/functions.php) sanitizes user-supplied ORDER BY column names using the regex `preg_replace('/[^a-zA-Z0-9_().]/', '', $column)`. Because this allowlist retains letters, digits, underscore, parentheses, and dot (intended to support expressions like COUNT(id) and table.column), a payload such as `SLEEP(5)` passes through completely unmodified. The sanitized value is concatenated directly into raw SQL ORDER BY clauses (which cannot be parameterized) driven by a `sort_column` GET parameter in at least user_log.php, utilities.php, user_domains.php, and user_group_admin.php, allowing any authenticated Cacti user, regardless of privilege level, to perform time-based blind SQL injection against the Cacti database.
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GitHub
GitHub - Cacti/cacti: Cacti β’
Cacti β’. Contribute to Cacti/cacti development by creating an account on GitHub.
π¨ CVE-2026-71288
Koha's guided report builder (reports/guided_reports.pl) reads the `order_by` CGI parameter and, for each value, a dynamically-named `{order}_ovalue` parameter, and concatenates both directly into an SQL ORDER BY clause with no allowlist or validation: `my @order_by = $input->multi_param('order_by'); foreach my $order (@order_by) { my $value = $input->param($order . "_ovalue"); $query_orderby = " ORDER BY $order $value"; }`. The resulting string is appended verbatim to the final query in C4::Reports::Guided (`$query .= $orderby;`) with no escaping. Since ORDER BY columns cannot be bound via prepared-statement placeholders, this requires an explicit allowlist, which does not exist. Any staff account with the low-privilege create_reports or execute_reports permission (commonly granted to non-admin library staff) can perform time-based blind SQL injection against the Koha database, which stores patron PII and staff/LDAP credentials.
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Koha's guided report builder (reports/guided_reports.pl) reads the `order_by` CGI parameter and, for each value, a dynamically-named `{order}_ovalue` parameter, and concatenates both directly into an SQL ORDER BY clause with no allowlist or validation: `my @order_by = $input->multi_param('order_by'); foreach my $order (@order_by) { my $value = $input->param($order . "_ovalue"); $query_orderby = " ORDER BY $order $value"; }`. The resulting string is appended verbatim to the final query in C4::Reports::Guided (`$query .= $orderby;`) with no escaping. Since ORDER BY columns cannot be bound via prepared-statement placeholders, this requires an explicit allowlist, which does not exist. Any staff account with the low-privilege create_reports or execute_reports permission (commonly granted to non-admin library staff) can perform time-based blind SQL injection against the Koha database, which stores patron PII and staff/LDAP credentials.
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GitHub
GitHub - Koha-Community/Koha: Koha is a free software integrated library system (ILS). Koha is distributed under the GNU GPL versionβ¦
Koha is a free software integrated library system (ILS). Koha is distributed under the GNU GPL version 3 or later. ***Note: this is a synced mirror of the official Koha repo. Note: This project use...
π¨ CVE-2026-71289
The NASA-AMMOS Asynchronous Network Management System (ANMS) reference implementation's default docker-compose.yml publishes the amp-manager service's REST API directly to the host network interface (port 8089, e.g. "${ION_MGR_PORT:-8089}:8089/tcp") with cap_add: NET_ADMIN, NET_RAW, SYS_NICE, bypassing the CAM (Configuration and Access Manager) gateway that is otherwise the system's sole authentication boundary. The underlying REST server, implemented with CivetWeb in JHUAPL/dtnma-tools (src/refdm/nm_rest.c), is configured with enable_auth_domain_check set to "no" and registers every route, including the DTNMA agent command-dispatch endpoints (.../agents/{eid|idx}/send, which accept and forward EXECSET-encoded command sets to a registered DTNMA agent), with a null authentication callback. Any network-reachable client can therefore enumerate registered agents, submit arbitrary command sets to them, and clear stored reports, entirely without credentials. This affects NASA-AMMOS/anms and JHUAPL-DTNMA/dtnma-tools as published; both repositories present this as a reference/ground DTN network-management implementation and testbed, and the affected components communicate with DTNMA agents (which may represent simulated or real spacecraft/ground nodes depending on deployment) rather than being flight software running onboard a spacecraft.
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The NASA-AMMOS Asynchronous Network Management System (ANMS) reference implementation's default docker-compose.yml publishes the amp-manager service's REST API directly to the host network interface (port 8089, e.g. "${ION_MGR_PORT:-8089}:8089/tcp") with cap_add: NET_ADMIN, NET_RAW, SYS_NICE, bypassing the CAM (Configuration and Access Manager) gateway that is otherwise the system's sole authentication boundary. The underlying REST server, implemented with CivetWeb in JHUAPL/dtnma-tools (src/refdm/nm_rest.c), is configured with enable_auth_domain_check set to "no" and registers every route, including the DTNMA agent command-dispatch endpoints (.../agents/{eid|idx}/send, which accept and forward EXECSET-encoded command sets to a registered DTNMA agent), with a null authentication callback. Any network-reachable client can therefore enumerate registered agents, submit arbitrary command sets to them, and clear stored reports, entirely without credentials. This affects NASA-AMMOS/anms and JHUAPL-DTNMA/dtnma-tools as published; both repositories present this as a reference/ground DTN network-management implementation and testbed, and the affected components communicate with DTNMA agents (which may represent simulated or real spacecraft/ground nodes depending on deployment) rather than being flight software running onboard a spacecraft.
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GitHub
GitHub - JHUAPL-DTNMA/dtnma-tools: A reference implementation of the DTN Management Architecture (DTNMA) Agent and related Tools
A reference implementation of the DTN Management Architecture (DTNMA) Agent and related Tools - JHUAPL-DTNMA/dtnma-tools
π¨ CVE-2026-71291
Bolt CMS renders content field values through Twig's full application-level Environment with no SandboxExtension registered anywhere in the codebase. In src/Entity/Field.php, getTwigValue() calls shouldBeRenderedAsTwig(), which gates rendering only on the field definition's allow_twig flag and a regex checking for `{{`, `{%`, or `{#`; when true, the raw field value is compiled and rendered via `self::getTwig()->createTemplate($value)->render(['record' => $this->getContent()])` with no sandboxing. Bolt's own bundled config/bolt/contenttypes.yaml sets `allow_twig: true` on the default "pages" contenttype's content field out of the box. Any user with edit access to that content type (a standard editor role, not just an administrator) can inject a Twig payload such as `{{ ['id']|map('passthru')|join }}` that executes arbitrary OS commands when the content is saved and rendered, achieving remote code execution as the web server user.
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Bolt CMS renders content field values through Twig's full application-level Environment with no SandboxExtension registered anywhere in the codebase. In src/Entity/Field.php, getTwigValue() calls shouldBeRenderedAsTwig(), which gates rendering only on the field definition's allow_twig flag and a regex checking for `{{`, `{%`, or `{#`; when true, the raw field value is compiled and rendered via `self::getTwig()->createTemplate($value)->render(['record' => $this->getContent()])` with no sandboxing. Bolt's own bundled config/bolt/contenttypes.yaml sets `allow_twig: true` on the default "pages" contenttype's content field out of the box. Any user with edit access to that content type (a standard editor role, not just an administrator) can inject a Twig payload such as `{{ ['id']|map('passthru')|join }}` that executes arbitrary OS commands when the content is saved and rendered, achieving remote code execution as the web server user.
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GitHub
GitHub - bolt/core: π§Ώ Bolt core
π§Ώ Bolt core. Contribute to bolt/core development by creating an account on GitHub.
π¨ CVE-2026-71292
Subrion CMS's admin grid sorting helper, _gridGetSorting() in includes/classes/ia.base.controller.admin.php, whitelists the `dir` (ASC/DESC) request parameter via in_array(), but falls back to the raw, attacker-supplied `sort` GET parameter whenever the requested key is not present in the per-controller $_gridSorting whitelist array: `$column = isset($this->_gridSorting[$params['sort']]) ? ... : $params['sort'];`, which is then placed into `sprintf(' ORDER BY %s`%s` %s', $tableAlias, $column, $direction)` with only backtick-quoting and no escaping. Because a backtick in the payload breaks out of the identifier context, an authenticated admin session can inject arbitrary SQL (error-based via EXTRACTVALUE, or time-based via SLEEP()) to extract database contents including administrator password hashes. Most of Subrion's ~29 admin grid controllers either define no $_gridSorting whitelist at all (e.g. pages.php, transactions.php, languages.php) or an incomplete one covering only some of their sortable columns (e.g. members.php whitelists only 1 of 7 sortable fields), making the vast majority of admin grid endpoints exploitable.
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Subrion CMS's admin grid sorting helper, _gridGetSorting() in includes/classes/ia.base.controller.admin.php, whitelists the `dir` (ASC/DESC) request parameter via in_array(), but falls back to the raw, attacker-supplied `sort` GET parameter whenever the requested key is not present in the per-controller $_gridSorting whitelist array: `$column = isset($this->_gridSorting[$params['sort']]) ? ... : $params['sort'];`, which is then placed into `sprintf(' ORDER BY %s`%s` %s', $tableAlias, $column, $direction)` with only backtick-quoting and no escaping. Because a backtick in the payload breaks out of the identifier context, an authenticated admin session can inject arbitrary SQL (error-based via EXTRACTVALUE, or time-based via SLEEP()) to extract database contents including administrator password hashes. Most of Subrion's ~29 admin grid controllers either define no $_gridSorting whitelist at all (e.g. pages.php, transactions.php, languages.php) or an incomplete one covering only some of their sortable columns (e.g. members.php whitelists only 1 of 7 sortable fields), making the vast majority of admin grid endpoints exploitable.
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GitHub
GitHub - intelliants/subrion: Subrion CMS - open source php content management system.
Subrion CMS - open source php content management system. - intelliants/subrion
π¨ CVE-2026-71293
Statamic CMS's user-augmentation resolver, AugmentedUser::get() in src/Auth/AugmentedUser.php, contains an explicit case for the `two_factor_recovery_codes` handle that returns the user's raw two-factor recovery codes with no access restriction: `if ($handle === 'two_factor_recovery_codes') { return new Value($this->data->get('two_factor_recovery_codes'), ...); }`. Unlike sensitive fields such as password/password_hash, which are excluded from AugmentedUser entirely, two_factor_recovery_codes is neither excluded from augmentation nor present in Statamic's Antlers variable guard lists (guardedVariablePatterns/guardedContentVariablePatterns in src/Providers/ViewServiceProvider.php, and the runtime GlobalRuntimeState guard paths), which by default only guard config.app.key. On any Antlers template field where raw/dynamic template rendering is enabled for a given field (an admin/developer-configured, blueprint-level field option), a template such as `{{ current_user.two_factor_recovery_codes }}{{ value }}|{{ /current_user.two_factor_recovery_codes }}` renders the viewing user's own 2FA recovery codes directly into the HTML response, allowing an attacker who can view or capture that response (e.g. via a shared/observable page, or a crafted link causing a victim to render it) to obtain the codes and bypass 2FA. Exploitation requires that dynamic Antlers rendering already be enabled on a field the target user's data flows through, which is a blueprint-configuration privilege rather than a standard content-editing permission.
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Statamic CMS's user-augmentation resolver, AugmentedUser::get() in src/Auth/AugmentedUser.php, contains an explicit case for the `two_factor_recovery_codes` handle that returns the user's raw two-factor recovery codes with no access restriction: `if ($handle === 'two_factor_recovery_codes') { return new Value($this->data->get('two_factor_recovery_codes'), ...); }`. Unlike sensitive fields such as password/password_hash, which are excluded from AugmentedUser entirely, two_factor_recovery_codes is neither excluded from augmentation nor present in Statamic's Antlers variable guard lists (guardedVariablePatterns/guardedContentVariablePatterns in src/Providers/ViewServiceProvider.php, and the runtime GlobalRuntimeState guard paths), which by default only guard config.app.key. On any Antlers template field where raw/dynamic template rendering is enabled for a given field (an admin/developer-configured, blueprint-level field option), a template such as `{{ current_user.two_factor_recovery_codes }}{{ value }}|{{ /current_user.two_factor_recovery_codes }}` renders the viewing user's own 2FA recovery codes directly into the HTML response, allowing an attacker who can view or capture that response (e.g. via a shared/observable page, or a crafted link causing a victim to render it) to obtain the codes and bypass 2FA. Exploitation requires that dynamic Antlers rendering already be enabled on a field the target user's data flows through, which is a blueprint-configuration privilege rather than a standard content-editing permission.
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GitHub
GitHub - statamic/cms: The core Laravel CMS Composer package
The core Laravel CMS Composer package. Contribute to statamic/cms development by creating an account on GitHub.
π¨ CVE-2026-71294
Cotonti CMS's Comments plugin deserializes user-supplied data without restricting the classes that may be instantiated. In plugins/comments/controllers/actions/CreateAction.php, a `ci` POST parameter obtained via `cot_import('ci', 'P', 'TXT')` (trim-only sanitization) is passed to `unserialize(base64_decode($ci))` with no `allowed_classes` restriction, reachable by any member with write access to comments (the default `Auth_members => 'RW'` setting in plugins/comments/comments.setup.php). In plugins/comments/controllers/actions/EditAction.php, a `cb` parameter is similarly deserialized via `unserialize(base64_decode($this->comeback))` in prepareComeBack(), reachable by any member editing their own comment. Because unserialize() is called without allowed_classes, an attacker can construct a serialized PHP object of any class loaded by Cotonti (a PHP Object Injection primitive). This was demonstrated in practice using Cotonti's own MySQL_cache class: a crafted serialized MySQL_cache object, once deserialized and later garbage-collected, triggers its __destruct()->flush() chain, causing an attacker-controlled INSERT INTO cot_cache with attacker-chosen row values β confirming genuine POP-chain exploitation, with further impact (including potential RCE) contingent on other gadget chains available in a given Cotonti installation's loaded classes. A third sink in DeleteAction.php contains the identical unserialize() pattern but is gated behind an admin-only authorization check and is not reachable by ordinary members.
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Cotonti CMS's Comments plugin deserializes user-supplied data without restricting the classes that may be instantiated. In plugins/comments/controllers/actions/CreateAction.php, a `ci` POST parameter obtained via `cot_import('ci', 'P', 'TXT')` (trim-only sanitization) is passed to `unserialize(base64_decode($ci))` with no `allowed_classes` restriction, reachable by any member with write access to comments (the default `Auth_members => 'RW'` setting in plugins/comments/comments.setup.php). In plugins/comments/controllers/actions/EditAction.php, a `cb` parameter is similarly deserialized via `unserialize(base64_decode($this->comeback))` in prepareComeBack(), reachable by any member editing their own comment. Because unserialize() is called without allowed_classes, an attacker can construct a serialized PHP object of any class loaded by Cotonti (a PHP Object Injection primitive). This was demonstrated in practice using Cotonti's own MySQL_cache class: a crafted serialized MySQL_cache object, once deserialized and later garbage-collected, triggers its __destruct()->flush() chain, causing an attacker-controlled INSERT INTO cot_cache with attacker-chosen row values β confirming genuine POP-chain exploitation, with further impact (including potential RCE) contingent on other gadget chains available in a given Cotonti installation's loaded classes. A third sink in DeleteAction.php contains the identical unserialize() pattern but is gated behind an admin-only authorization check and is not reachable by ordinary members.
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GitHub
GitHub - Cotonti/Cotonti: Fast, reliable and flexible PHP CMF/CMS
Fast, reliable and flexible PHP CMF/CMS. Contribute to Cotonti/Cotonti development by creating an account on GitHub.
π¨ CVE-2026-15979
The Content Egg β Affiliate Product Importer & Price Comparison plugin for WordPress is vulnerable to Arbitrary File Deletion via Path Traversal in versions up to and including 11.3.0. This is due to insufficient validation of the 'img_file' field within the cegg_data post metadata: the value passes only through wp_strip_all_tags() (which does not strip path traversal sequences), is stored directly in post meta, and is later concatenated without normalization into a filesystem path in getFullImgPath() before being passed to PHP's unlink(). This makes it possible for authenticated attackers, with author-level access and above, to delete arbitrary files on the affected site's server which may make remote code execution possible.
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The Content Egg β Affiliate Product Importer & Price Comparison plugin for WordPress is vulnerable to Arbitrary File Deletion via Path Traversal in versions up to and including 11.3.0. This is due to insufficient validation of the 'img_file' field within the cegg_data post metadata: the value passes only through wp_strip_all_tags() (which does not strip path traversal sequences), is stored directly in post meta, and is later concatenated without normalization into a filesystem path in getFullImgPath() before being passed to PHP's unlink(). This makes it possible for authenticated attackers, with author-level access and above, to delete arbitrary files on the affected site's server which may make remote code execution possible.
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π¨ CVE-2026-7529
The wiseCampaign β WooCommerce Conversions Made Easy plugin for WordPress is vulnerable to unauthorized modification and disclosure of data due to every one of its REST API endpoints being registered with `permission_callback => '__return_true'` in all versions up to, and including, 1.1.16. This makes it possible for unauthenticated attackers to read and modify the plugin's banner, stockbar, and core settings β including saving/updating banner records, toggling stockbar/feature flags, changing the active banner, and uploading background-image files via wp_handle_upload() β without any nonce or capability check.
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The wiseCampaign β WooCommerce Conversions Made Easy plugin for WordPress is vulnerable to unauthorized modification and disclosure of data due to every one of its REST API endpoints being registered with `permission_callback => '__return_true'` in all versions up to, and including, 1.1.16. This makes it possible for unauthenticated attackers to read and modify the plugin's banner, stockbar, and core settings β including saving/updating banner records, toggling stockbar/feature flags, changing the active banner, and uploading background-image files via wp_handle_upload() β without any nonce or capability check.
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π¨ CVE-2026-12410
Link following vulnerability in the Uninstaller component in CCleaner prior to 7.10.1464 on Windows allows a local, low-privileged attacker to escalate privileges to SYSTEM via a symlink/junction created during application uninstallation, which CCleaner follows when deleting the application's data folder with elevated integrity.
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Link following vulnerability in the Uninstaller component in CCleaner prior to 7.10.1464 on Windows allows a local, low-privileged attacker to escalate privileges to SYSTEM via a symlink/junction created during application uninstallation, which CCleaner follows when deleting the application's data folder with elevated integrity.
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Genβ’
Genβ’ Security Advisories | Genβ’
Click here to find all Genβ’ security advisories from past to present, including all the advisories in our archive. Contact us to learn more.
π¨ CVE-2026-15573
A flaw was found in Keycloak's Authorization Services. The component responsible for matching request paths to security policies (PathMatcher) does not properly normalize URIs before comparison. By adding extra characters like a trailing slash or matrix parameters to a URL, an attacker can trick the system into applying a less restrictive security policy than intended. This allows an authenticated user to access administrative or restricted areas they should not have permission to see.
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A flaw was found in Keycloak's Authorization Services. The component responsible for matching request paths to security policies (PathMatcher) does not properly normalize URIs before comparison. By adding extra characters like a trailing slash or matrix parameters to a URL, an attacker can trick the system into applying a less restrictive security policy than intended. This allows an authenticated user to access administrative or restricted areas they should not have permission to see.
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Redhat
CVE-2026-15573 - Red Hat Customer Portal
CVE Details App
π¨ CVE-2026-16102
A flaw was found in the Dynamic Client Registration (DCR) component of Keycloak, an identity and access management solution. The default DCR policy fails to properly validate the claim path for User Property mappers, allowing them to write values to sensitive internal claim locations. An attacker with a standard user account and a limited Initial Access Token can exploit this to forge administrative roles in their access token. This allows the attacker to take over other clients, steal confidential secrets, and potentially gain full administrative control over the realm.
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A flaw was found in the Dynamic Client Registration (DCR) component of Keycloak, an identity and access management solution. The default DCR policy fails to properly validate the claim path for User Property mappers, allowing them to write values to sensitive internal claim locations. An attacker with a standard user account and a limited Initial Access Token can exploit this to forge administrative roles in their access token. This allows the attacker to take over other clients, steal confidential secrets, and potentially gain full administrative control over the realm.
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Redhat
CVE-2026-16102 - Red Hat Customer Portal
CVE Details App
π¨ CVE-2026-17613
Penpotβs ::import-binfile RPC command lacks authorization on the optional file-id parameter, allowing any authenticated user to overwrite any files on the target server and subscribe to WebSocket events, enabling full data exfiltration and data poisoning.
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Penpotβs ::import-binfile RPC command lacks authorization on the optional file-id parameter, allowing any authenticated user to overwrite any files on the target server and subscribe to WebSocket events, enabling full data exfiltration and data poisoning.
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GitHub
Release 2.17.0 Β· penpot/penpot
π Epics and highlights
Render prototype viewer with WASM (Skia) engine instead of SVG #10037 (PR: #10038)
β¨ New features & Enhancements
Expose variants retrieval on LibraryComponent via isVa...
Render prototype viewer with WASM (Skia) engine instead of SVG #10037 (PR: #10038)
β¨ New features & Enhancements
Expose variants retrieval on LibraryComponent via isVa...
π¨ CVE-2026-10025
IBM QRadar 7.6.0.0 through 7.6.0.1, and 7.5.0 through 7.5.0 UP 15 Interim Fix 005 has an XML External Entity (XXE) injection vulnerability. The vulnerability resides in the parseXmlPayload() function within the event processing pipeline ( q1labs_core.jar ). When at least one log source type is configured to use XML-format property autodetection, the system processes XML-formatted syslog events sent to port 514 (UDP/TCP) without authentication.
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IBM QRadar 7.6.0.0 through 7.6.0.1, and 7.5.0 through 7.5.0 UP 15 Interim Fix 005 has an XML External Entity (XXE) injection vulnerability. The vulnerability resides in the parseXmlPayload() function within the event processing pipeline ( q1labs_core.jar ). When at least one log source type is configured to use XML-format property autodetection, the system processes XML-formatted syslog events sent to port 514 (UDP/TCP) without authentication.
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Ibm
Security Bulletin: IBM QRadar SIEM has an XML External Entity (XXE) injection vulnerability
IBM QRadar has an XML External Entity (XXE) injection vulnerability. This vulnerability is not exploitable in all configurations. All of the following conditions must be simultaneously true for a system to be at risk: (1) XML Property Autodetection must beβ¦
π¨ CVE-2026-12762
IBM Cloud Pak For Business Automation 24.0.0, 24.0.1, 25.0.0, and 26.0.0 could allow a remote attacker to obtain sensitive information exposed in manifest files.
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IBM Cloud Pak For Business Automation 24.0.0, 24.0.1, 25.0.0, and 26.0.0 could allow a remote attacker to obtain sensitive information exposed in manifest files.
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Ibm
Security Bulletin: security vulnerabilities are addressed with IBM Business Automation Insights iFixes for July 2026.
Security vulnerabilities are addressed with IBM Business Automation Insights 24.0.0-IF008, 25.0.0-IF006 and 26.0.0-IF001. These vulnerabilities have been also adressed in 24.0.1-IF008.
π¨ CVE-2026-13477
IBM QRadar 7.6.0.0 through 7.6.0.1, and 7.5.0 through 7.5.0 UP 15 Interim Fix 005 could allow an authenticated privileged user to execute arbitrary commands with normal user privileges on the system due to improper validation of user supplied input.
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IBM QRadar 7.6.0.0 through 7.6.0.1, and 7.5.0 through 7.5.0 UP 15 Interim Fix 005 could allow an authenticated privileged user to execute arbitrary commands with normal user privileges on the system due to improper validation of user supplied input.
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Ibm
Security Bulletin: IBM QRadar SIEM is vulnerable to remote code execution by privileged users
An authenticated QRadar SIEM administrator can execute arbitrary commands on the QRadar host due to improper validation of user supplied input.
π¨ CVE-2026-15572
A flaw was found in Keycloak's Dynamic Client Registration (DCR) security policy management. The "Allowed Protocol Mapper Types" policy, which restricts which types of data mappers a client can use, fails to re-validate the mapper type during a client update if the mapper's configuration remains unchanged. An attacker with client registration privileges can exploit this by first registering an allowed mapper type with a malicious configuration and then swapping it for a restricted, high-privilege mapper type (such as one that hardcodes administrative roles). This allows the attacker to gain full administrative access to the Keycloak realm.
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A flaw was found in Keycloak's Dynamic Client Registration (DCR) security policy management. The "Allowed Protocol Mapper Types" policy, which restricts which types of data mappers a client can use, fails to re-validate the mapper type during a client update if the mapper's configuration remains unchanged. An attacker with client registration privileges can exploit this by first registering an allowed mapper type with a malicious configuration and then swapping it for a restricted, high-privilege mapper type (such as one that hardcodes administrative roles). This allows the attacker to gain full administrative access to the Keycloak realm.
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Redhat
CVE-2026-15572 - Red Hat Customer Portal
CVE Details App
π¨ CVE-2026-15587
Improper Privilege Management in Google SecOps (Chronicle SOAR) versions prior to 6.3.85 on Google Cloud Platform allows an authenticated attacker to escalate privileges to system-level administrative access using a crafted internal authentication header.
This vulnerability was patched with version 6.3.85, and no customer action is needed.
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Improper Privilege Management in Google SecOps (Chronicle SOAR) versions prior to 6.3.85 on Google Cloud Platform allows an authenticated attacker to escalate privileges to system-level administrative access using a crafted internal authentication header.
This vulnerability was patched with version 6.3.85, and no customer action is needed.
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Google Cloud Documentation
Google Security Operations SOAR release notes | Google Cloud Documentation
π¨ CVE-2026-15656
IBM Maximo Application Suite 9.2, 9.1, and 9.0 does not set the secure attribute on authorization tokens or session cookies. Attackers may be able to get the cookie values by sending a http:// link to a user or by planting this link in a site the user goes to. The cookie will be sent to the insecure link and the attacker can then obtain the cookie value by snooping the traffic.
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IBM Maximo Application Suite 9.2, 9.1, and 9.0 does not set the secure attribute on authorization tokens or session cookies. Attackers may be able to get the cookie values by sending a http:// link to a user or by planting this link in a site the user goes to. The cookie will be sent to the insecure link and the attacker can then obtain the cookie value by snooping the traffic.
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Ibm
Security Bulletin: IBM MAS uses axios-1.15.2, protobufjs-8.0.1 and undici-7.26 which is vulnerable to multiple CVEs, and containsβ¦
IBM Maximo Application Suite uses axios-1.15.2.tgz, protobufjs-8.0.1.tgz, protobufjs-8.2.0.tgz and undici-7.26.0.tgz which is vulnerable to CVE-2026-11525, CVE-2026-12151, CVE-2026-6733, CVE-2026-6734, CVE-2026-9678, CVE-2026-9679, CVE-2026-9697, CVE-2026β¦
π¨ CVE-2026-16442
A flaw was found in the SAML broker component of Keycloak, which is used to manage identity federation and user authentication. The issue occurs because the IdP-initiated Single Sign-On endpoint fails to check if a provider is restricted to account linking only. This allows an attacker with control over a linked upstream identity to bypass login restrictions and gain full access to a local user account.
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A flaw was found in the SAML broker component of Keycloak, which is used to manage identity federation and user authentication. The issue occurs because the IdP-initiated Single Sign-On endpoint fails to check if a provider is restricted to account linking only. This allows an attacker with control over a linked upstream identity to bypass login restrictions and gain full access to a local user account.
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Redhat
CVE-2026-16442 - Red Hat Customer Portal
CVE Details App
π¨ CVE-2026-18531
IBM Maximo Application Suite 9.2, 9.1, and 9.0 could allow a remote attacker to tamper with session data due to the use of a weak HMAC session signing secret.
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IBM Maximo Application Suite 9.2, 9.1, and 9.0 could allow a remote attacker to tamper with session data due to the use of a weak HMAC session signing secret.
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Ibm
Security Bulletin: IBM MAS uses axios-1.15.2, protobufjs-8.0.1 and undici-7.26 which is vulnerable to multiple CVEs, and containsβ¦
IBM Maximo Application Suite uses axios-1.15.2.tgz, protobufjs-8.0.1.tgz, protobufjs-8.2.0.tgz and undici-7.26.0.tgz which is vulnerable to CVE-2026-11525, CVE-2026-12151, CVE-2026-6733, CVE-2026-6734, CVE-2026-9678, CVE-2026-9679, CVE-2026-9697, CVE-2026β¦