CWE-117
Improper Output Neutralization for Logs
Produkt konstruuje wiadomość logu na podstawie danych zewnętrznych, ale nie neutralizuje lub nieprawidłowo neutralizuje elementy specjalne podczas zapisywania wiadomości do pliku dziennika. Może to prowadzić do zastrzyku lub manipulacji logami.
The product constructs a log message from external input, but it does not neutralize or incorrectly neutralizes special elements when the message is written to a log file.
iTerm2 w wersjach przed 3.5.0beta12 nie sanityzuje ścieżek przekazywanych w URL-ach typu x-man-page, co pozwala na wstrzyknięcie shell metacharacters do wywołania polecenia /usr/bin/man. Podatność jest krytyczna, ponieważ może być wykorzystana zdalnie bez uwierzytelnienia.
iTerm2 przed wersją 3.5.0beta12 nie przeprowadza sanityzacji nazw hostów SSH zawartych w URL-ach, co może umożliwić atakującemu wstrzyknięcie złośliwych danych. Podatność oceniono jako krytyczną (CVSS 9.8) ze względu na możliwość jej zdalnego wykorzystania bez uwierzytelnienia.
Podatność w OpenWrt przed wersją 25.12.5 umożliwia atakującemu wstrzyknięcie złośliwego kodu HTML/JavaScript do panelu administracyjnego LuCI poprzez spreparowaną nazwę hosta klienta DHCPv6. Ze względu na brak walidacji danych wejściowych, exploit nie wymaga uwierzytelnienia po stronie atakującego, a skutki obejmują pełne przejęcie sesji administratora.
openssl-encrypt (pip package, versions <= 1.4.8) fails to sanitize filenames read from untrusted drive data (outside the AES-GCM authenticated manifest) before printing them in the verify-usb command's output. An attacker can plant filenames containing terminal cursor-movement and erase-line control bytes that repaint a forged PASSED verdict on screen, masking actual tamper detection. Fixed in 1.4.9 by routing drive-derived names through sanitize_for_display().
openssl_encrypt versions before 1.4.9 fail to escape attacker-controlled key_id values printed to stderr during decrypt auto-detection. Attackers can craft encrypted files with malicious key_id containing escape sequences to repaint terminal output and forge authenticity verification blocks.
openssl_encrypt versions before 1.4.9 fail to sanitize terminal control characters in file metadata printed by the info command. Attackers can craft malicious files containing escape sequences to repaint terminal output and forge verification information displayed to users.
openssl_encrypt versions before 1.4.0 contain a logging bug in restore_hidden_modules() that logs module counts after clearing, always showing zero restored modules and corrupting audit trails. Additionally, a race condition exists between module hiding and import hook installation where another thread could re-import blocked modules in multi-threaded environments.
W InvoicePlane 1.7.0 istnieje krytyczna podatność umożliwiająca zdalne wykonanie kodu (RCE) poprzez połączenie ataku Local File Inclusion (LFI) z techniką Log Poisoning. Zagrożenie jest poważne, ponieważ pozwala uwierzytelnionemu administratorowi na wykonanie dowolnych poleceń systemowych na serwerze.
NVIDIA Triton Inference Server dla systemów Linux i Windows zawiera podatność pozwalającą atakującemu na wstrzykiwanie sfałszowanych wpisów logów oraz wykonywalnych poleceń poprzez dowolne dane. Skuteczny atak może prowadzić do wykonania kodu, eskalacji uprawnień, ujawnienia danych oraz ich modyfikacji.
IBM Documentation Offline 1.0.0 through 1.4.1 could allow a remote attacker to execute arbitrary code due to improper output neutralization for logs.
Power Platform Terraform Provider allows managing environments and other resources within Power Platform. Versions prior to 3.0.0 have an issue in the Power Platform Terraform Provider where sensitive information, specifically the `client_secret` used in the service principal authentication, may be exposed in logs. This exposure occurs due to an error in the logging code that causes the `client_secret` to not be properly masked when logs are persisted or viewed. Users should upgrade to version 3.0.0 to receive a patched version of the provider that removes all logging of sensitive content. Users who have used this provider with the affected versions should take the following additional steps to mitigate the risk: Immediately rotate the `client_secret` for any service principal that has been configured using this Terraform provider. This will invalidate any potentially exposed secrets. Those who have set the `TF_LOG_PATH` environment variable or configured Terraform to persist logs to a file or an external system, consider disabling this until they have updated to a fixed version of the provider. Those who have existing logs that may contain the `client_secret` should remove or sanitize these logs to prevent unauthorized access. This includes logs on disk, in monitoring systems, or in logging services.
Xibo is an Open Source Digital Signage platform with a web content management system and Windows display player software. In affected versions some request headers are not correctly sanitised when stored in the session and display tables. These headers can be used to inject a malicious script into the session page to exfiltrate session IDs and User Agents. These session IDs / User Agents can subsequently be used to hijack active sessions. A malicious script can be injected into the display grid to exfiltrate information related to displays. Users should upgrade to version 3.3.10 or 4.0.9 which fix this issue. Customers who host their CMS with the Xibo Signage service have already received an upgrade or patch to resolve this issue regardless of the CMS version that they are running. Upgrading to a fixed version is necessary to remediate. Patches are available for earlier versions of Xibo CMS that are out of security support: 2.3 patch ebeccd000b51f00b9a25f56a2f252d6812ebf850.diff. 1.8 patch a81044e6ccdd92cc967e34c125bd8162432e51bc.diff. There are no known workarounds for this issue.
LogTape is an unobtrusive logging library. Prior to 1.3.11, 2.0.14, and 2.1.5, the @logtape/syslog package's escapeStructuredDataValue() function in packages/syslog/src/syslog.ts does not neutralize C0 control characters from U+0000 through U+001F in structured data values, and formatStructuredData() inserts property keys without validating the RFC 5424 SD-NAME grammar. When includeStructuredData is true, an attacker-controlled newline can terminate an RFC 6587 non-transparent TCP syslog frame and make following bytes appear as a forged RFC 5424 record, while a key containing a closing bracket or other forbidden character can terminate or corrupt the structured-data element. Applications that forward attacker-controlled property values or keys can therefore allow forged records with arbitrary hosts, applications, process identifiers, facilities, or severity levels, undermining downstream collector and SIEM integrity. This issue is fixed in versions 1.3.11, 2.0.14, and 2.1.5.
IBM Cognos Analytics 11.2.0 through 11.2.4 and 12.0.0 through 12.0.2 is vulnerable to injection attacks in application logging by not sanitizing user provided data. This could lead to further attacks against the system. IBM X-Force ID: 282956.
In Splunk IT Service Intelligence (ITSI) versions below below 4.13.3, 4.15.3, or 4.17.1, a malicious actor can inject American National Standards Institute (ANSI) escape codes into Splunk ITSI log files that, when a vulnerable terminal application reads them, can run malicious code in the vulnerable application. This attack requires a user to use a terminal application that translates ANSI escape codes to read the malicious log file locally in the vulnerable terminal. The vulnerability also requires additional user interaction to succeed. The vulnerability does not directly affect Splunk ITSI. The indirect impact on Splunk ITSI can vary significantly depending on the permissions in the vulnerable terminal application, as well as where and how the user reads the malicious log file. For example, users can copy the malicious file from Splunk ITSI and read it on their local machine.
Splunk SOAR versions lower than 6.1.0 are indirectly affected by a potential vulnerability accessed through the user’s terminal. A third party can send Splunk SOAR a maliciously crafted web request containing special ANSI characters to cause log file poisoning. When a terminal user attempts to view the poisoned logs, this can tamper with the terminal and cause possible malicious code execution from the terminal user’s action.
In Splunk Enterprise versions below 9.1.0.2, 9.0.5.1, and 8.2.11.2, an attacker can inject American National Standards Institute (ANSI) escape codes into Splunk log files that, when a vulnerable terminal application reads them, can potentially, at worst, result in possible code execution in the vulnerable application. This attack requires a user to use a terminal application that supports the translation of ANSI escape codes to read the malicious log file locally in the vulnerable terminal, and to perform additional user interaction to exploit. Universal Forwarder versions 9.1.0.1, 9.0.5, 8.2.11, and lower can be vulnerable in situations where they have management services active and accessible over the network. Universal Forwarder versions 9.0.x and 9.1.x bind management services to the local machine and are not vulnerable in this specific configuration. See SVD-2022-0605 for more information. Universal Forwarder versions 9.1 use Unix Domain Sockets (UDS) for communication, which further reduces the potential attack surface. The vulnerability does not directly affect Splunk Enterprise or Universal Forwarder. The indirect impact on Splunk Enterprise and Universal Forwarder can vary significantly depending on the permissions in the vulnerable terminal application and where and how the user reads the malicious log file. For example, users can copy the malicious file from the Splunk Enterprise instance and read it on their local machine.
CubeAPM nightly-2025-08-01-1 allow unauthenticated attackers to inject arbitrary log entries into production systems via the /api/logs/insert/elasticsearch/_bulk endpoint. This endpoint accepts bulk log data without requiring authentication or input validation, allowing remote attackers to perform unauthorized log injection. Exploitation may lead to false log entries, log poisoning, alert obfuscation, and potential performance degradation of the observability pipeline. The issue is present in the core CubeAPM platform and is not limited to specific deployment configurations.
Roxy-WI is a web interface for managing Haproxy, Nginx, Apache and Keepalived servers. In versions 8.2.6.4 and prior, EscapedString (app/modules/roxywi/class_models.py:16-30) is the centralised Pydantic validator used on dozens of fields including SSH credential name, username, description, etc. Its if/elif/elif/else flow returns the metacharacter-stripped value without also enforcing the .. block. An attacker who appends a single ;, &, |, $, or backtick to a .. payload routes the value through the strip arm, where .. survives unblocked and the result is not shlex.quote()'d either. At time of publication, there are no publicly available patches.
CAMS for HIS Log Server contained in the following Yokogawa Electric products fails to properly neutralize log outputs: CENTUM CS 3000 versions from R3.08.10 to R3.09.00, CENTUM VP versions from R4.01.00 to R4.03.00, from R5.01.00 to R5.04.20, and from R6.01.00 to R6.08.00, and Exaopc versions from R3.72.00 to R3.79.00.