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| CVE | Vendors | Products | Updated | CVSS v3.1 |
|---|---|---|---|---|
| CVE-2026-66835 | 1 Erlang | 2 Erlang/otp, Erlang\/otp | 2026-09-01 | N/A |
| Path Equivalence vulnerability in Erlang/OTP inets httpd allows a remote unauthenticated attacker to read files inside a mod_auth protected directory by prefixing the request path with an extra slash. httpd_request:validate_uri/1 normalises the request URI with uri_string:normalize/1, which performs RFC 3986 dot-segment removal but does not collapse empty path segments, so a doubled slash survives. mod_alias:real_name/3 concatenates the document root with that URI, and mod_auth:secret_path/3 then decides whether the result lies inside a protected directory block by running the configured directory path as an unanchored regular expression against it. The doubled slash breaks the contiguous substring the regex needs, so the request is treated as unprotected and no authentication challenge is issued, while mod_get opens the same path and the operating system collapses the doubled slash and returns the protected file. The same path mismatch also evades the per-path accounting in mod_security. This issue affects OTP from OTP 17.0 before OTP 27.3.4.17, from OTP 28.0 before OTP 28.5.0.6, and from OTP 29.0 before OTP 29.0.6, corresponding to inets from 5.10 before 9.3.2.7, from 9.4 before 9.6.2.3, and from 9.7 before 9.7.2. Whether OTP before OTP 17.0, corresponding to inets before 5.10, is affected is unknown. | ||||
| CVE-2026-70405 | 1 Erlang | 3 Erlang/otp, Erlang\/otp, Otp | 2026-09-01 | N/A |
| Improper Validation of Specified Quantity in Input vulnerability in Erlang/OTP snmp allows a remote attacker to degrade availability by sending an SNMP message containing a BER INTEGER whose length field is arbitrarily large. snmp_pdus:dec_integer_notag/1 defaults its size limit to infinity, and do_dec_integer_notag/2 then accumulates the value across every declared byte with a recursive shift and bitwise or. Work grows superlinearly in the declared length because each operation acts on a progressively larger bignum. The size-limited variant dec_integer_notag/2 exists but is reached from only one call site, dec_snmp_version/1, which bounds the version field to ten bytes; the request identifier, error status and index, generic and specific trap fields, engine boots and time, and every varbind value decoded by dec_value/1 all use the unbounded form. The decode runs before the PDU is processed, so no valid request is required beyond what the deployment demands to accept the message at all. This issue affects OTP from OTP 17.0 before OTP 27.3.4.17, from OTP 28.0 before OTP 28.5.0.6, and from OTP 29.0 before OTP 29.0.6, corresponding to snmp from 4.25.1 before 5.18.2.1, from 5.19 before 5.20.2.2, and from 5.20.3 before 5.20.5. Whether OTP before OTP 17.0, corresponding to snmp before 4.25.1, is affected is unknown. | ||||
| CVE-2026-81319 | 1 Ash-project | 1 Ash Cloak | 2026-09-01 | N/A |
| Deserialization of Untrusted Data vulnerability in ash-project ash_cloak allows an attacker who can influence the bytes of an encrypted column to crash the BEAM node, by triggering unbounded atom creation or a decompression bomb during decryption. AshCloak.Calculations.Decrypt decodes the decrypted binary with Ash.Helpers.non_executable_binary_to_term/1 without the :safe option, so atoms in the payload are interned during the decode and never garbage collected, and the term format's compressed form is inflated transparently. vault.decrypt!() is the only barrier and stops tampering only for an authenticated cipher. Cloak also ships the unauthenticated AES.CTR, whose ciphertext an attacker who knows their own plaintext can XOR into any same-length payload without the key, so an ordinary read of the forged column reaches the decoder. A few hundred kilobytes of distinct atoms exhausts the atom table, or a small compressed payload inflates to gigabytes. This issue affects ash_cloak: from 0.1.0 before 0.4.0. | ||||
| CVE-2026-81322 | 1 Ash-project | 1 Ash Cloak | 2026-09-01 | N/A |
| Exposure of Sensitive Information to an Unauthorized Actor vulnerability in ash-project ash_cloak allows anyone with access to logs, error trackers, or crash reports, or anyone who can trigger a validation error, to recover the plaintext of a field the library encrypts. AshCloak.Transformers.SetUpEncryption removes each cloaked attribute from the action's accept list and adds an action argument that carries the plaintext into the encryption change. That argument is built with sensitive?: attr.sensitive?, inheriting the flag from the source attribute, so a cloaked attribute declared without sensitive? true produces a non-sensitive argument. It is the only place the cleartext value lives, and the one place Ash will not redact: it appears verbatim in inspect(changeset), Ash.Error.Invalid and validation error messages, telemetry, :sys dumps, and error-tracker payloads. The generated encrypted attribute and decrypt calculation are already hardcoded sensitive. This issue affects ash_cloak: from 0.1.0 before 0.4.0. | ||||
| CVE-2026-82749 | 1 Ash-project | 1 Ash | 2026-09-01 | N/A |
| Incorrect Authorization vulnerability in ash-project ash widens a relationship's parent(...) scoping filter to match unintended records when the referenced parent field cannot be resolved. Loading a relationship whose filter references parent(...) resolves that expression against the parent record. resolve_parent_in_filter/3 (lib/ash/actions/read/relationships.ex) resolved an unresolvable parent reference (for example when the referenced field was not selected on the source query) to nil rather than failing. A scoping predicate such as org_id == parent(org_id) then becomes an IS NULL match, and a guard like is_nil(parent(org_id)) or org_id == parent(org_id) activates its unrestricted branch, so the relationship returns records the scope was meant to exclude. The fix fails the read with an error when a parent(...) reference cannot be resolved, instead of defaulting to nil. This issue affects ash: from 3.13.2 before 3.32.2. | ||||
| CVE-2026-59696 | 1 Erlang | 3 Erlang/otp, Erlang\/otp, Otp | 2026-09-01 | N/A |
| Improper Validation of Specified Quantity in Input vulnerability in Erlang/OTP stdlib allows a remote attacker to degrade availability by supplying a URI whose port component is a very long run of digits. uri_string:get_port/1 passes the port substring to binary_to_integer/1 with no length bound, catching only error:badarg, so a syntactically valid port of up to roughly 1.26 million digits converts successfully and costs the calling process hundreds of milliseconds of arbitrary-precision arithmetic. The conversion is reached from every authority-parsing path in uri_string:parse/1, including the host, registered-name, and IPv4 and IPv6 forms. parse/1 is the documented interface for parsing URIs, so any application that parses an attacker-supplied URI is exposed without further configuration. The conversion function is documented to accept integers of any size, so bounding the input is the caller's responsibility. This issue affects OTP from OTP 21.0 before OTP 27.3.4.17, from OTP 28.0 before OTP 28.5.0.6, and from OTP 29.0 before OTP 29.0.6, corresponding to stdlib from 3.5 before 6.2.2.5, from 7.0 before 7.3.0.2, and from 8.0 before 8.0.4. | ||||
| CVE-2026-79684 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains a Protection Mechanism Failure vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to bypass access restrictions and gain escalated privileges. | ||||
| CVE-2026-58575 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains an Authentication Bypass by Spoofing vulnerability. An authenticated attacker could potentially exploit this vulnerability to escalate privileges to Administrator. | ||||
| CVE-2026-58571 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains an OS Command Injection vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to execute arbitrary commands with root privileges. | ||||
| CVE-2026-79686 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains a Protection Mechanism Failure vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to bypass access restrictions and gain escalated privileges. | ||||
| CVE-2026-58569 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains an Inclusion of Functionality from Untrusted Control Sphere vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to execute arbitrary code with root privileges.. | ||||
| CVE-2026-58572 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains a Code Injection vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to execute arbitrary code with root privileges. | ||||
| CVE-2026-79683 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 8.8 High |
| Dell PowerStore contains a Protection Mechanism Failure vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to write attacker-controlled content to arbitrary filesystem paths. | ||||
| CVE-2026-79685 | 1 Dell | 12 Powerstore 1000t, Powerstore 1200t, Powerstore 3000t and 9 more | 2026-09-01 | 6.5 Medium |
| Dell PowerStore contains an Argument Injection vulnerability. An authenticated user with limited privileges could potentially exploit this vulnerability to gain unauthorized access to sensitive sensitive system information. | ||||
| CVE-2026-18771 | 2026-09-01 | 7.5 High | ||
| Missing authentication for critical function vulnerability in TMT Machine Industry and Trade Ltd. Co. Talassoft Industrial Management Software allows Authentication Bypass. This issue affects Talassoft Industrial Management Software: from V4 before V.16. | ||||
| CVE-2026-18780 | 2026-09-01 | 7.1 High | ||
| Cross-Site request forgery (CSRF) vulnerability in TMT Machine Industry and Trade Ltd. Co. Talassoft Industrial Management Software allows Cross Site Request Forgery. This issue affects Talassoft Industrial Management Software: from V.4 before V.16. | ||||
| CVE-2026-18931 | 2026-09-01 | 9.1 Critical | ||
| Use of Hard-coded Credentials vulnerability in TMT Machine Industry and Trade Ltd. Co. Talassoft Industrial Management Software allows Retrieve Embedded Sensitive Data. This issue affects Talassoft Industrial Management Software: from V.4 before V.16. | ||||
| CVE-2026-18630 | 2026-09-01 | 8.8 High | ||
| Improper neutralization of special elements used in an SQL command ('SQL injection') vulnerability in TMT Machine Industry and Trade Ltd. Co. Talassoft Industrial Management Software allows SQL Injection. This issue affects Talassoft Industrial Management Software: from V.4 before V.16. | ||||
| CVE-2026-73712 | 2026-09-01 | 8.1 High | ||
| A vulnerability in the API of HPE Networking Fabric Composer could allow an unauthenticated remote attacker to run arbitrary commands on the underlying host if certain preconditions outside of the attacker's control are met. Successful exploitation of this vulnerability could allow an attacker to execute arbitrary commands on the underlying operating system leading to complete system compromise. | ||||
| CVE-2026-53682 | 1 Redhat | 2 Certificate System, Enterprise Linux | 2026-09-01 | 5.3 Medium |
| An unauthenticated client can query the Security Domain hosts inventory via GET /ca/rest/securityDomain/hosts and receive a structured response enumerating internal PKI/CA hosts and roles (security domain topology and participating subsystems), without requiring a principal, client certificate, or session. | ||||