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CWE-94 (对生成代码的控制不恰当(代码注入)) — Vulnerability Class 1335

1335 vulnerabilities classified as CWE-94 (对生成代码的控制不恰当(代码注入)). AI Chinese analysis included.

CWE-94 represents a critical code injection weakness where software constructs executable code using untrusted input without proper sanitization. Attackers typically exploit this vulnerability by injecting malicious scripts or commands into user-supplied fields, such as web forms or API parameters, which the application then executes directly. This allows adversaries to bypass security controls, steal sensitive data, or gain unauthorized administrative access to the underlying system. To prevent such exploits, developers must rigorously validate and sanitize all external inputs, ensuring that only expected characters are processed. Implementing strict allow-listing strategies, utilizing parameterized queries for database interactions, and avoiding dynamic code execution functions like eval() are essential defensive measures. By treating all user input as potentially hostile and applying robust encoding techniques, organizations can effectively neutralize injection vectors and maintain application integrity.

MITRE CWE Description
The product constructs all or part of a code segment using externally-influenced input from an upstream component, but it does not neutralize or incorrectly neutralizes special elements that could modify the syntax or behavior of the intended code segment.
Common Consequences (4)
Access ControlBypass Protection Mechanism
In some cases, injectable code controls authentication; this may lead to a remote vulnerability.
Access ControlGain Privileges or Assume Identity
Injected code can access resources that the attacker is directly prevented from accessing.
Integrity, Confidentiality, AvailabilityExecute Unauthorized Code or Commands
When a product allows a user's input to contain code syntax, it might be possible for an attacker to craft the code in such a way that it will alter the intended control flow of the product. As a result, code injection can often result in the execution of arbitrary code. Code injection attacks can…
Non-RepudiationHide Activities
Often the actions performed by injected control code are unlogged.
Mitigations (5)
Architecture and DesignRefactor your program so that you do not have to dynamically generate code.
Architecture and DesignRun your code in a "jail" or similar sandbox environment that enforces strict boundaries between the process and the operating system. This may effectively restrict which code can be executed by your product. Examples include the Unix chroot jail and AppArmor. In general, managed code may provide some protection. This may not be a feasible solution, and it only limits the impact to the operating s…
ImplementationAssume all input is malicious. Use an "accept known good" input validation strategy, i.e., use a list of acceptable inputs that strictly conform to specifications. Reject any input that does not strictly conform to specifications, or transform it into something that does. When performing input validation, consider all potentially relevant properties, including length, type of input, the full range…
TestingUse dynamic tools and techniques that interact with the product using large test suites with many diverse inputs, such as fuzz testing (fuzzing), robustness testing, and fault injection. The product's operation may slow down, but it should not become unstable, crash, or generate incorrect results.
OperationRun the code in an environment that performs automatic taint propagation and prevents any command execution that uses tainted variables, such as Perl's "-T" switch. This will force the program to perform validation steps that remove the taint, although you must be careful to correctly validate your inputs so that you do not accidentally mark dangerous inputs as untainted (see CWE-183 and CWE-184).
Examples (2)
This example attempts to write user messages to a message file and allow users to view them.
$MessageFile = "messages.out"; if ($_GET["action"] == "NewMessage") { $name = $_GET["name"]; $message = $_GET["message"]; $handle = fopen($MessageFile, "a+"); fwrite($handle, "<b>$name</b> says '$message'<hr>\n"); fclose($handle); echo "Message Saved!<p>\n"; } else if ($_GET["action"] == "ViewMessages") { include($MessageFile); }
Bad · PHP
name=h4x0r message=%3C?php%20system(%22/bin/ls%20-l%22);?%3E
Attack
edit-config.pl: This CGI script is used to modify settings in a configuration file.
use CGI qw(:standard); sub config_file_add_key { my ($fname, $key, $arg) = @_; # code to add a field/key to a file goes here } sub config_file_set_key { my ($fname, $key, $arg) = @_; # code to set key to a particular file goes here } sub config_file_delete_key { my ($fname, $key, $arg) = @_; # code to delete key from a particular file goes here } sub handleConfigAction { my ($fname, $action) = @_; my $key = param('key'); my $val = param('val'); # this is super-efficient code, especially if you have to invoke # any one of dozens of different functions! my $code = "config_file_$action_key(\$fnam
Bad · Perl
add_key(",","); system("/bin/ls");
Attack
CVE IDTitleCVSSSeverityPublished
CVE-2025-34159 Coolify Docker Compose Directive Injection in Application Deployment Workflow — Coolify 8.8AIHighAI2025-08-27
CVE-2025-30057 Authenticated RCE with uhcapache privileges in ConvertToPDF — CGM CLININET 9.8AICriticalAI2025-08-27
CVE-2025-30056 Calling system commands via RunCommand — CGM CLININET 9.8AICriticalAI2025-08-27
CVE-2025-30055 Conditional RCE via the "system" function — CGM CLININET 9.8AICriticalAI2025-08-27
CVE-2025-2313 RCE via Print.pl in uhcPrintServerPrint — CGM CLININET 9.8AICriticalAI2025-08-27
CVE-2025-23315 NVIDIA Nemo Framework 代码注入漏洞 — NeMo Framework 7.8 High2025-08-26
CVE-2025-23314 NVIDIA Nemo Framework 代码注入漏洞 — NeMo Framework 7.8 High2025-08-26
CVE-2025-23313 NVIDIA Nemo Framework 代码注入漏洞 — NeMo Framework 7.8 High2025-08-26
CVE-2025-23312 NVIDIA NeMo Framework 注入漏洞 — NeMo Framework 7.8 High2025-08-26
CVE-2025-23307 NVIDIA NeMo Curator 代码注入漏洞 — NVIDIA NeMo Curator 7.8 High2025-08-26
CVE-2025-53419 COMMGR Code Injection Vulnerability — COMMGR 7.8 High2025-08-26
CVE-2025-57772 Dataease H2 JDBC RCE Bypass — dataease 9.1AICriticalAI2025-08-25
CVE-2010-20120 Maple <= v13 Maplet File Creation and Command Execution — Maple 7.8AIHighAI2025-08-21
CVE-2025-30975 WordPress Add Custom Codes <= 4.80 - Arbitrary Code Execution vulnerability — Add Custom Codes 7.5 High2025-08-20
CVE-2025-48169 WordPress Code Engine Plugin <= 0.3.3 - Remote Code Execution (RCE) Vulnerability — Code Engine 9.9 Critical2025-08-20
CVE-2025-53577 WordPress Global DNS Plugin <= 3.1.0 - Remote Code Execution (RCE) Vulnerability — Global DNS 10.0 Critical2025-08-20
CVE-2025-54019 WordPress Alone < 7.8.5 - Arbitrary Code Execution Vulnerability — Alone 6.5 Medium2025-08-20
CVE-2025-55733 DeepChat One-click Remote Code Execution through Custom URL Handling — deepchat 9.7 Critical2025-08-19
CVE-2025-8723 Cloudflare Image Resizing <= 1.5.6 - Missing Authentication to Unauthenticated Remote Code Execution via rest_pre_dispatch Hook — Cloudflare Image Resizing – Optimize & Accelerate Your Images 9.8 Critical2025-08-19
CVE-2025-8105 Soledad <= 8.6.7 - Unauthenticated Arbitrary Shortcode Execution — Soledad 7.3 High2025-08-16
CVE-2025-8878 Paid Membership Plugin, Ecommerce, User Registration Form, Login Form, User Profile & Restrict Content – ProfilePress <= 4.16.4 - Unauthenticated Arbitrary Shortcode Execution — Paid Membership Plugin, Ecommerce, User Registration Form, Login Form, User Profile & Restrict Content – ProfilePress 6.5 Medium2025-08-16
CVE-2025-7961 KAP 3.6.0 - TCC Bypass — KAP 9.8AICriticalAI2025-08-15
CVE-2025-54466 Apache OFBiz: RCE Vulnerability in scrum plugin — Apache OFBiz 9.8AICriticalAI2025-08-15
CVE-2025-8905 Inpersttion For Theme <= 1.0 - Authenticated (Contributor+) Arbitrary Function Call — Inpersttion For Theme 6.3 Medium2025-08-15
CVE-2025-55192 HomeAssistant-Tapo-Control Code Injection Vulnerability in issues.yml Workflow — HomeAssistant-Tapo-Control 8.8AIHighAI2025-08-14
CVE-2025-39483 WordPress Eventer plugin < 3.9.9.1 - Content Injection vulnerability — Eventer 6.5 Medium2025-08-14
CVE-2025-49887 WordPress Product XML Feed Manager for WooCommerce Plugin <= 2.9.3 - Remote Code Execution (RCE) Vulnerability — Product XML Feed Manager for WooCommerce 9.9 Critical2025-08-14
CVE-2025-55346 Unintended dynamic code execution leads to remote code execution by network attackers 9.8 Critical2025-08-14
CVE-2011-10011 WeBid 1.0.2 converter.php Remote PHP Code Injection — WeBid 9.8AICriticalAI2025-08-13
CVE-2011-10013 Traq 2.0–2.3 admincp/common.php RCE — Issue Tracking System 9.8AICriticalAI2025-08-13

Vulnerabilities classified as CWE-94 (对生成代码的控制不恰当(代码注入)) represent 1335 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.