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CWE-78 (OS命令中使用的特殊元素转义处理不恰当(OS命令注入)) — Vulnerability Class 2741

2741 vulnerabilities classified as CWE-78 (OS命令中使用的特殊元素转义处理不恰当(OS命令注入)). AI Chinese analysis included.

CWE-78 represents a critical input validation weakness where software constructs operating system commands using untrusted external data without proper sanitization. Attackers typically exploit this by injecting malicious shell metacharacters, such as semicolons or pipes, into user-supplied fields like form inputs or URL parameters. This manipulation allows the attacker to alter the intended command structure, enabling arbitrary code execution, data exfiltration, or complete system compromise. To mitigate this risk, developers must strictly avoid passing user input directly to OS command interpreters. Instead, they should utilize safe, language-specific APIs that do not invoke the shell, or implement rigorous input validation and parameterization techniques. By treating all external data as inherently untrusted and applying strict allow-list filtering, organizations can effectively neutralize special elements and prevent command injection vulnerabilities.

MITRE CWE Description
The product constructs all or part of an OS command using externally-influenced input from an upstream component, but it does not neutralize or incorrectly neutralizes special elements that could modify the intended OS command when it is sent to a downstream component. This weakness can lead to a vulnerability in environments in which the attacker does not have direct access to the operating system, such as in web applications. Alternately, if the weakness occurs in a privileged program, it could allow the attacker to specify commands that normally would not be accessible, or to call alternate commands with privileges that the attacker does not have. The problem is exacerbated if the compromised process does not follow the principle of least privilege, because the attacker-controlled commands may run with special system privileges that increases the amount of damage. There are at least two subtypes of OS command injection: The application intends to execute a single, fixed program that is under its own control. It intends to use externally-supplied inputs as arguments to that program. For example, the program might use system("nslookup [HOSTNAME]") to run nslookup and allow the user to supply a HOSTNAME, which is used as an argument. Attackers cannot prevent nslookup from executing. However, if the program does not remove command separators from the HOSTNAME argument, attackers could place the separators into the arguments, which allows them to execute their own program afte…
Common Consequences (1)
Confidentiality, Integrity, Availability, Non-RepudiationExecute Unauthorized Code or Commands, DoS: Crash, Exit, or Restart, Read Files or Directories, Modify Files or Directories, Read Application Data, Modify Application Data, Hide Activities
Attackers could execute unauthorized operating system commands, which could then be used to disable the product, or read and modify data for which the attacker does not have permissions to access directly. Since the targeted application is directly executing the commands instead of the attacker, any…
Mitigations (5)
Architecture and DesignIf at all possible, use library calls rather than external processes to recreate the desired functionality.
Architecture and Design, OperationRun the code in a "jail" or similar sandbox environment that enforces strict boundaries between the process and the operating system. This may effectively restrict which files can be accessed in a particular directory or which commands can be executed by the software. OS-level examples include the Unix chroot jail, AppArmor, and SELinux. In general, managed code may provide some protection. For ex…
Effectiveness: Limited
Architecture and DesignFor any data that will be used to generate a command to be executed, keep as much of that data out of external control as possible. For example, in web applications, this may require storing the data locally in the session's state instead of sending it out to the client in a hidden form field.
Architecture and DesignFor any security checks that are performed on the client side, ensure that these checks are duplicated on the server side, in order to avoid CWE-602. Attackers can bypass the client-side checks by modifying values after the checks have been performed, or by changing the client to remove the client-side checks entirely. Then, these modified values would be submitted to the server.
Architecture and DesignUse a vetted library or framework that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid. For example, consider using the ESAPI Encoding control [REF-45] or a similar tool, library, or framework. These will help the programmer encode outputs in a manner less prone to error.
Examples (2)
This example code intends to take the name of a user and list the contents of that user's home directory. It is subject to the first variant of OS command injection.
$userName = $_POST["user"]; $command = 'ls -l /home/' . $userName; system($command);
Bad · PHP
;rm -rf /
Attack
The following simple program accepts a filename as a command line argument and displays the contents of the file back to the user. The program is installed setuid root because it is intended for use as a learning tool to allow system administrators in-training to inspect privileged system files without giving them the ability to modify them or damage the system.
int main(int argc, char** argv) { char cmd[CMD_MAX] = "/usr/bin/cat "; strcat(cmd, argv[1]); system(cmd); }
Bad · C
CVE IDTitleCVSSSeverityPublished
CVE-2026-7785 A-G-U-P-T-A wireshark-mcp pyshark_mcp.py quick_capture os command injection — wireshark-mcp 7.3 High2026-05-04
CVE-2026-41926 WDR201A WiFi Extender OS Command Injection via firewall.cgi — WDR201A WiFi Extender 9.8 -2026-05-04
CVE-2026-41925 WDR201A WiFi Extender OS Command Injection via adm.cgi (reboot_time) — WDR201A WiFi Extender 9.8 -2026-05-04
CVE-2026-41924 WDR201A WiFi Extender OS Command Injection via makeRequest.cgi — WDR201A WiFi Extender 9.8 -2026-05-04
CVE-2026-41923 WDR201A WiFi Extender OS Command Injection via internet.cgi — WDR201A WiFi Extender 9.8 -2026-05-04
CVE-2026-41922 WDR201A WiFi Extender OS Command Injection via wireless.cgi — WDR201A WiFi Extender 9.8 -2026-05-04
CVE-2026-42076 Evolver: Command Injection via `execSync` in `_extractLLM()` function allows Remote Code Execution — evolver 9.8 Critical2026-05-04
CVE-2025-13605 Shell command injection in 3onedata GW1101-1D(RS-485)-TB-P modbus gateway — GW1101-1D(RS-485)-TB-P 8.8 -2026-05-04
CVE-2026-7730 privsim mcp-test-runner MCP index.ts child_process.spawn os command injection — mcp-test-runner 6.3 Medium2026-05-04
CVE-2026-42364 GeoVision LPC2011/LPC2211 Web Interface / DdnsSetting.cgi OS command injection vulnerability — GV-LPC2011/LPC2211 9.9 Critical2026-05-04
CVE-2026-7698 Tiandy Easy7 Integrated Management Platform updateDbBackupInfo os command injection — Easy7 Integrated Management Platform 7.3 High2026-05-03
CVE-2026-7653 r-huijts mcp-server-rijksmuseum MCP index.ts open_image_in_browser os command injection — mcp-server-rijksmuseum 6.3 Medium2026-05-02
CVE-2026-7642 pskill9 website-downloader MCP index.ts download_website os command injection — website-downloader 6.3 Medium2026-05-02
CVE-2026-7609 TRENDnet TEW-821DAP Firmware Udpate diagnostic tools_diagnostic os command injection — TEW-821DAP 6.3 Medium2026-05-02
CVE-2026-7608 TRENDnet TEW-821DAP tools_diagnostic os command injection — TEW-821DAP 5.5 Medium2026-05-02
CVE-2026-7600 ArtMin96 yii2-mcp-server MCP index.ts yii_execute_command os command injection — yii2-mcp-server 6.3 Medium2026-05-02
CVE-2026-7593 Sunwood-ai-labs command-executor-mcp-server MCP index.ts execute_command os command injection — command-executor-mcp-server 7.3 High2026-05-01
CVE-2026-7590 eyal-gor p_69_branch_monkey_mcp Preview Endpoint advanced.py os command injection — p_69_branch_monkey_mcp 7.3 High2026-05-01
CVE-2026-42994 Bitwarden CLI 操作系统命令注入漏洞 — Bitwarden CLI 9.8 -2026-05-01
CVE-2026-7538 Totolink A8000RU CGI cstecgi.cgi vulnerability os command injection — A8000RU 9.8 Critical2026-05-01
CVE-2026-7551 HKUDS OpenHarness Remote Command Execution via /bridge Slash Command — OpenHarness 8.8 High2026-04-30
CVE-2026-7461 OS Command Injection in Amazon ECS Agent via FSx Windows File Server Volume Credentials — Amazon ECS Agent 7.2 High2026-04-30
CVE-2025-71284 Synway SMG Gateway Management Software OS Command Injection via radius_address — Synway SMG Gateway Management Software 9.8 Critical2026-04-30
CVE-2026-7446 VetCoders mcp-server-semgrep MCP index.ts create_rule os command injection — mcp-server-semgrep 7.3 High2026-04-30
CVE-2026-7443 BurtTheCoder mcp-dnstwist MCP index.ts fuzz_domain os command injection — mcp-dnstwist 7.3 High2026-04-29
CVE-2026-7416 PolarVista xcode-mcp-server MCP index.ts run_tests os command injection — xcode-mcp-server 7.3 High2026-04-29
CVE-2026-6849 OS Command Injection in TUBITAK BILGEM's Pardus OS My Computer — Pardus OS My Computer 8.8 High2026-04-29
CVE-2026-7244 Totolink A8000RU CGI cstecgi.cgi setWiFiEasyGuestCfg os command injection — A8000RU 9.8 Critical2026-04-28
CVE-2026-7243 Totolink A8000RU CGI cstecgi.cgi setRadvdCfg os command injection — A8000RU 9.8 Critical2026-04-28
CVE-2026-7242 Totolink A8000RU CGI cstecgi.cgi setOpenVpnClientCfg os command injection — A8000RU 9.8 Critical2026-04-28

Vulnerabilities classified as CWE-78 (OS命令中使用的特殊元素转义处理不恰当(OS命令注入)) represent 2741 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.