msflib | A golang library designed to interact with Metasploit | Security Testing library

 by   vyrus001 Go Version: Current License: No License

kandi X-RAY | msflib Summary

kandi X-RAY | msflib Summary

msflib is a Go library typically used in Testing, Security Testing applications. msflib has no bugs, it has no vulnerabilities and it has low support. You can download it from GitHub.

A golang library designed to interact with Metasploit via Microsoft Windows. Note: 32-bit and 64 bit payloads need to be used with corresponding compiling options. For example, 32-bit payloads need to be set for the multi/handler if on a 32-bit system. Example: See example directory.
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              msflib has a low active ecosystem.
              It has 41 star(s) with 8 fork(s). There are 2 watchers for this library.
              OutlinedDot
              It had no major release in the last 6 months.
              There are 1 open issues and 0 have been closed. There are no pull requests.
              It has a neutral sentiment in the developer community.
              The latest version of msflib is current.

            kandi-Quality Quality

              msflib has no bugs reported.

            kandi-Security Security

              msflib has no vulnerabilities reported, and its dependent libraries have no vulnerabilities reported.

            kandi-License License

              msflib does not have a standard license declared.
              Check the repository for any license declaration and review the terms closely.
              OutlinedDot
              Without a license, all rights are reserved, and you cannot use the library in your applications.

            kandi-Reuse Reuse

              msflib releases are not available. You will need to build from source code and install.

            Top functions reviewed by kandi - BETA

            kandi has reviewed msflib and discovered the below as its top functions. This is intended to give you an instant insight into msflib implemented functionality, and help decide if they suit your requirements.
            • generate URL
            • ReverseTCP reverses a TCP socket
            • inject payload
            • ReverseHTTP reverse http
            • callWinAPI calls wincall function .
            • Checks the HTTP server
            • callPayload sends a payload to the window .
            • getFDBytes returns the bytes of the FD descriptor
            • LoadLocal loads payload from file
            • init initializes the parameters .
            Get all kandi verified functions for this library.

            msflib Key Features

            No Key Features are available at this moment for msflib.

            msflib Examples and Code Snippets

            No Code Snippets are available at this moment for msflib.

            Community Discussions

            QUESTION

            DAST security scaning of a IoT Nodemcu esp8266 LUA script www HTML server connected to camera and A/C relay
            Asked 2021-Apr-08 at 01:04

            I have not, but shall DAST* security test, out of curiosity, an IoT device; Nodemcu esp8266 www server I built. It's showing a HTML page (on a mobile phone for example) that allows to control and interact with a camera module and a A/C relay. With it I can for example show images captured in the camera I even think it has some image recognition built in, and I can switch on and off a relay for electrical current to a light bulb (110/220v A/C power)

            Before I start pentest I though I better start thinking of what types of exploits one would be able to find and detect? Which sinister exploits I will be able to find, or rather ought be able to find given a proper pentest exercise? (And if I do not find exploits, my approach to the pentest of the Iot might be wrong)

            I ponder it might be a totally pointless exercise since the esp8266 www server (or rather its LUA programming libraries) might not have any security built into it, so basically it is "open doors" and everything with it is unsafe ?

            The test report might just conclude what I can foresee be that the the "user input needs to be sanitized"?

            Anyone have any idea what such pentest of a generic IoT device generally reports? Maybe it is possible to crash or reset the IoT device? Buffer overruns, XXS, call own code ?

            I might use ZAP or Burpsuite or similar DAST security test tool.

            • I could of course SAST test it instead, or too, but I think it will be hard to find a static code analyzer for the NodeMCU libraries and NUA scripting language easily ? I found some references here though: https://ieeexplore.ieee.org/abstract/document/8227299 but it seems to be a long read.

            So if someone just have a short answer what to expect in a DAST scan/pentest , it would be much appreciated.

            Stay safe and secure out there ! Zombieboy

            ...

            ANSWER

            Answered 2021-Apr-08 at 01:04

            I do my vulnerability scanning with OpenVAS (I assume this is what you mean by pentesting?). I am not aware of any IOT focused Tools.

            If your server is running on esp8266, i would imagine that there is no much room for authentication and encryption of http traffic, but correct me if i am wrong).

            Vulnerability Scan results might show things like unencrypted http traffic, credentials transmitted in cleartext (if you have any credentials fields in the pages served by the web server) etc. Depending on if there is encryption, you might also see weak encryption findings.

            You might get some false positives on your lua webserver reacting like other known webservers when exploits are applied. I have seen this kind of false positive specially on DoS vulnerabilities when a vulnerability scan is testing a vulnerability and the server becomes unresponsive. Depending on how invasive your vulnerability scanner is, you might get a lot of false positives for DoS on such a constrained platform.

            Source https://stackoverflow.com/questions/66995125

            Community Discussions, Code Snippets contain sources that include Stack Exchange Network

            Vulnerabilities

            No vulnerabilities reported

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            You can download it from GitHub.

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