Vulnerability Scan Result
IP address | 162.0.229.242 |
Country | US |
AS number | AS22612 |
Net name | Namecheap Inc |
21/tcp | ftp | Pure-FTPd |
25/tcp | smtp | |
26/tcp | smtp | Exim smtpd 4.96.2 |
53/tcp | domain | |
80/tcp | http | |
110/tcp | pop3 | Dovecot pop3d |
143/tcp | imap | Dovecot imapd |
443/tcp | https | |
465/tcp | smtp | Exim smtpd 4.96.2 |
587/tcp | smtp | Exim smtpd 4.96.2 |
993/tcp | imaps | |
995/tcp | pop3s |
Software / Version | Category |
---|---|
Clipboard.js | JavaScript libraries |
DataTables 1.10.16 | JavaScript libraries |
Elementor 3.26.4 | Page builders, WordPress plugins |
Bootstrap | UI frameworks |
jQuery Migrate 3.4.1 | JavaScript libraries |
core-js 3.32.0 | JavaScript libraries |
Google Font API | Font scripts |
jQuery 3.7.1 | JavaScript libraries |
jQuery UI 1.13.3 | JavaScript libraries |
LiteSpeed | Web servers |
MySQL | Databases |
Node.js | Programming languages |
PHP | Programming languages |
Sectigo | SSL/TLS certificate authorities |
Socket.io | JavaScript frameworks |
Swiper | JavaScript libraries |
Twitter Emoji (Twemoji) | Font scripts |
Webpack | Miscellaneous |
Module Federation | Miscellaneous |
Priority Hints | Performance |
WooCommerce 9.5.2 | Ecommerce, WordPress plugins |
WordPress 6.7.1 | CMS, Blogs |
Kadence WP Kadence 1.2.14 | WordPress themes |
Lodash 1.13.7 | JavaScript libraries |
RSS | Miscellaneous |
Cart Functionality | Ecommerce |
Web Application Vulnerabilities
Evidence
Risk Level | CVSS | CVE | Summary | Affected software |
---|---|---|---|---|
7.5 | CVE-2020-28458 | All versions of package datatables.net are vulnerable to Prototype Pollution due to an incomplete fix for https://snyk.io/vuln/SNYK-JS-DATATABLESNET-598806. | datatables.net 1.10.16 | |
4.3 | CVE-2021-23445 | This affects the package datatables.net before 1.11.3. If an array is passed to the HTML escape entities function it would not have its contents escaped. | datatables.net 1.10.16 |
Vulnerability description
We noticed known vulnerabilities in the target application based on the server responses. They are usually related to outdated systems and expose the affected applications to the risk of unauthorized access to confidential data and possibly denial of service attacks. Depending on the system distribution the affected software can be patched but displays the same version, requiring manual checking.
Recommendation
In order to eliminate the risk of these vulnerabilities, we recommend you check the installed software version and upgrade to the latest version.
Classification
CWE | CWE-1026 |
OWASP Top 10 - 2017 | A9 - Using Components with Known Vulnerabilities |
OWASP Top 10 - 2021 | A6 - Vulnerable and Outdated Components |
Evidence
URL | Evidence |
---|---|
https://fixcoin.website/ | Response headers do not include the HTTP Strict-Transport-Security header |
Vulnerability description
We noticed that the target application lacks the HTTP Strict-Transport-Security header in its responses. This security header is crucial as it instructs browsers to only establish secure (HTTPS) connections with the web server and reject any HTTP connections.
Recommendation
The Strict-Transport-Security HTTP header should be sent with each HTTPS response. The syntax is as follows: `Strict-Transport-Security: max-age=<seconds>[; includeSubDomains]` The parameter `max-age` gives the time frame for requirement of HTTPS in seconds and should be chosen quite high, e.g. several months. A value below 7776000 is considered as too low by this scanner check. The flag `includeSubDomains` defines that the policy applies also for sub domains of the sender of the response.
Classification
CWE | CWE-693 |
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
URL | Evidence |
---|---|
https://fixcoin.website/ | Response does not include the HTTP Content-Security-Policy security header or meta tag |
Vulnerability description
We noticed that the target application lacks the Content-Security-Policy (CSP) header in its HTTP responses. The CSP header is a security measure that instructs web browsers to enforce specific security rules, effectively preventing the exploitation of Cross-Site Scripting (XSS) vulnerabilities.
Recommendation
Configure the Content-Security-Header to be sent with each HTTP response in order to apply the specific policies needed by the application.
Classification
CWE | CWE-693 |
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
URL | Evidence |
---|---|
https://fixcoin.website/ | Response headers do not include the X-Content-Type-Options HTTP security header |
Vulnerability description
We noticed that the target application's server responses lack the <code>X-Content-Type-Options</code> header. This header is particularly important for preventing Internet Explorer from reinterpreting the content of a web page (MIME-sniffing) and thus overriding the value of the Content-Type header.
Recommendation
We recommend setting the X-Content-Type-Options header such as `X-Content-Type-Options: nosniff`.
Classification
CWE | CWE-693 |
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
URL | Evidence |
---|---|
https://fixcoin.website/ | Response headers do not include the Referrer-Policy HTTP security header as well as the <meta> tag with name 'referrer' is not present in the response. |
Vulnerability description
We noticed that the target application's server responses lack the <code>Referrer-Policy</code> HTTP header, which controls how much referrer information the browser will send with each request originated from the current web application.
Recommendation
The Referrer-Policy header should be configured on the server side to avoid user tracking and inadvertent information leakage. The value `no-referrer` of this header instructs the browser to omit the Referer header entirely.
Classification
CWE | CWE-693 |
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
Software / Version | Category |
---|---|
Clipboard.js | JavaScript libraries |
DataTables 1.10.16 | JavaScript libraries |
Elementor 3.26.4 | Page builders, WordPress plugins |
Bootstrap | UI frameworks |
jQuery Migrate 3.4.1 | JavaScript libraries |
core-js 3.32.0 | JavaScript libraries |
Google Font API | Font scripts |
jQuery 3.7.1 | JavaScript libraries |
jQuery UI 1.13.3 | JavaScript libraries |
LiteSpeed | Web servers |
MySQL | Databases |
Node.js | Programming languages |
PHP | Programming languages |
Sectigo | SSL/TLS certificate authorities |
Socket.io | JavaScript frameworks |
Swiper | JavaScript libraries |
Twitter Emoji (Twemoji) | Font scripts |
Webpack | Miscellaneous |
Module Federation | Miscellaneous |
Priority Hints | Performance |
WooCommerce 9.5.2 | Ecommerce, WordPress plugins |
WordPress 6.7.1 | CMS, Blogs |
Kadence WP Kadence 1.2.14 | WordPress themes |
Lodash 1.13.7 | JavaScript libraries |
RSS | Miscellaneous |
Cart Functionality | Ecommerce |
Vulnerability description
We noticed that server software and technology details are exposed, potentially aiding attackers in tailoring specific exploits against identified systems and versions.
Recommendation
We recommend you to eliminate the information which permits the identification of software platform, technology, server and operating system: HTTP server headers, HTML meta information, etc.
Classification
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
Vulnerability description
We found the robots.txt on the target server. This file instructs web crawlers what URLs and endpoints of the web application they can visit and crawl. Website administrators often misuse this file while attempting to hide some web pages from the users.
Recommendation
We recommend you to manually review the entries from robots.txt and remove the ones which lead to sensitive locations in the website (ex. administration panels, configuration files, etc).
Classification
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Vulnerability description
Website is accessible.
Vulnerability description
We have noticed that the server is missing the security.txt file, which is considered a good practice for web security. It provides a standardized way for security researchers and the public to report security vulnerabilities or concerns by outlining the preferred method of contact and reporting procedures.
Recommendation
We recommend you to implement the security.txt file according to the standard, in order to allow researchers or users report any security issues they find, improving the defensive mechanisms of your server.
Classification
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Evidence
URL | Method | Summary |
---|---|---|
https://fixcoin.website/?shiny= | OPTIONS | We did a HTTP OPTIONS request. The server responded with a 200 status code and the header: `Allow: OPTIONS,HEAD,GET,POST` Request / Response |
Vulnerability description
We have noticed that the webserver responded with an Allow HTTP header when an OPTIONS HTTP request was sent. This method responds to requests by providing information about the methods available for the target resource.
Recommendation
We recommend that you check for unused HTTP methods or even better, disable the OPTIONS method. This can be done using your webserver configuration.
Classification
CWE | CWE-16 |
OWASP Top 10 - 2017 | A6 - Security Misconfiguration |
OWASP Top 10 - 2021 | A5 - Security Misconfiguration |
Infrastructure Vulnerabilities
PORT STATE SERVICE VERSION
21/tcp open ftp Pure-FTPd
Vulnerability description
We found that the File Transfer Protocol (FTP) service is publicly accessible. The FTP enables client systems to connect to upload and download files. Nonetheless, FTP lacks encryption for the data exchanged between the server and the client, leaving all transferred data exposed in plaintext.
Risk description
Exposing this service online can enable attackers to execute man-in-the-middle attacks, capturing sensitive user credentials and the contents of files because FTP operates without encryption. The entirety of the communication between the client and the server remains unsecured in plaintext. This acquired information could further facilitate additional attacks within the network.
Recommendation
We recommend turning off FTP access over the Internet and instead using a Virtual Private Network (VPN) that mandates two-factor authentication (2FA). If the FTP service is essential for business purposes, we recommend limiting access only from designated IP addresses using a firewall. Furthermore, utilizing SFTP (Secure File Transfer Protocol) is recommended as this protocol employs encryption to secure data transfers.
Evidence
Domain Queried | DNS Record Type | Description | Value |
---|---|---|---|
fixcoin.website | SPF | Sender Policy Framework | "v=spf1 +a +mx +ip4:162.0.229.236 +ip4:162.0.229.241 include:spf.web-hosting.com ~all" |
Vulnerability description
We found that the Sender Policy Framework (SPF) record for the domain is configured with ~all (soft fail), which indicates that emails from unauthorized IP addresses are not explicitly denied. Instead, the recipient mail server is instructed to treat these messages with suspicion but may still accept them. This configuration may not provide enough protection against email spoofing and unauthorized email delivery, leaving the domain more vulnerable to impersonation attempts.
Risk description
The ~all directive in an SPF record allows unauthorized emails to pass through some email servers, even though they fail SPF verification. While such emails may be marked as suspicious or placed into a spam folder, not all mail servers handle soft fail conditions consistently. This creates a risk that malicious actors can spoof the domain to send phishing emails or other fraudulent communications, potentially causing damage to the organization's reputation and leading to successful social engineering attacks.
Recommendation
We recommend changing the SPF record's ~all (soft fail) directive to -all (hard fail). The -all setting tells recipient mail servers to reject emails from any IP addresses not listed in the SPF record, providing stronger protection against email spoofing. Ensure that all legitimate IP addresses and services that send emails on behalf of your domain are properly included in the SPF record before implementing this change.
Vulnerability description
We found that the target server has no DMARC policy configured. A missing DMARC (Domain-based Message Authentication, Reporting, and Conformance) policy means that the domain is not enforcing any DMARC policies to protect against email spoofing and phishing attacks. Without DMARC, even if SPF (Sender Policy Framework) or DKIM (DomainKeys Identified Mail) are configured, there is no mechanism to tell receiving email servers how to handle messages that fail authentication. This leaves the domain vulnerable to abuse, such as email spoofing and impersonation.
Risk description
Without a DMARC policy, your domain is highly vulnerable to email spoofing, allowing attackers to impersonate your brand and send fraudulent emails that appear legitimate. This can lead to phishing attacks targeting your customers, employees, or partners, potentially resulting in stolen credentials, financial loss, or unauthorized access to sensitive systems. Additionally, repeated spoofing attempts can severely damage your brand's reputation, as recipients may lose trust in communications from your domain, associating your brand with malicious activity. The absence of DMARC also prevents you from monitoring and mitigating email-based attacks, leaving your domain exposed to ongoing abuse.
Recommendation
We recommend implementing a DMARC policy for your domain. Start by configuring a DMARC record with a policy of p=none, which will allow you to monitor email flows without impacting legitimate emails. This initial setup helps identify how emails from your domain are being processed by recipient servers. Once you’ve verified that legitimate emails are passing SPF and DKIM checks, you can gradually enforce stricter policies like p=quarantine or p=reject to protect against spoofing and phishing attacks. Additionally, include rua and ruf email addresses in the DMARC record to receive aggregate and forensic reports. These reports will provide valuable insights into authentication failures and help you detect any spoofing attempts.
Evidence
DKIM selector | Key type | Key size | Value |
---|---|---|---|
default | rsa | 1422 | "v=DKIM1; k=rsa; p=MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAyQkDsu4TdCe/FXIUpiz00IeuMd4kkQgGtoktAK20RE7HLkfBkEA/j9CSUYCGBL+1xUmLcL3gpyKGgZQxSMU9r69GVUhew15ICpyiMF+BGFKSqlIv0GsfsVl8x32doQRzIyG1mVNr7yR2yyYt8O+Qq3aTKJaG/4y0pCZeAotgGFlqvYBmpQPjhU7NQL+JUJWSn" "ZCr/geOmaMS5iTCC4IhqasCcfiUky/uR4LNQd6McsTfKJ18XIPqw/UpO7NkrQ/dTL+n2VNRldyBenI0ILeRfMYiTD3rOA9ohtcHHQY1z2sbX5B7gmM3HmlhR10Dr7zwb6XuFPcpM3Vdf/VWBMIQvwIDAQAB;" |
Vulnerability description
We found that the DKIM record uses common selectors. The use of common DKIM selectors such as default, test, dkim, or mail may indicate a lack of proper customization or key management. Attackers often target domains using such selectors because they suggest that the domain is relying on default configurations, which could be less secure and easier to exploit. This can increase the risk of DKIM key exposure or misuse.
Risk description
Using a common DKIM selector makes it easier for attackers to predict and exploit email authentication weaknesses. Attackers may attempt to find corresponding DKIM keys or improperly managed records associated with common selectors. If a common selector is coupled with a weak key length or poor key management practices, it significantly increases the likelihood of email spoofing and phishing attacks.
Recommendation
We recommend using unique, customized selectors for each DKIM key to make it more difficult for attackers to predict and target the domain's DKIM records. Regularly rotate selectors and associated keys to further strengthen the security of your domain's email authentication infrastructure.
Risk description
Using end-of-life (EOL) software poses significant security risks for organizations. EOL software no longer receives updates, including critical security patches. This creates a vulnerability landscape where known and potentially new security flaws remain unaddressed, making the software an attractive target for malicious actors. Attackers can exploit these vulnerabilities to gain unauthorized access, disrupt services, or steal sensitive data. Moreover, without updates, compatibility issues arise with newer technologies, leading to operational inefficiencies and increased potential for system failures. Additionally, regulatory and compliance risks accompany the use of EOL software. Many industries have strict data protection regulations that require up-to-date software to ensure the highest security standards. Non-compliance can result in hefty fines and legal consequences. Organizations also risk damaging their reputation if a breach occurs due to outdated software, eroding customer trust and potentially leading to a loss of business. Therefore, continuing to use EOL software undermines both security posture and business integrity, necessitating timely upgrades and proactive risk management strategies.
Recommendation
To mitigate the risks associated with end-of-life (EOL) software, it's crucial to take proactive steps. Start by identifying any EOL software currently in use within your organization. Once identified, prioritize upgrading or replacing these applications with supported versions that receive regular updates and security patches. This not only helps close security gaps but also ensures better compatibility with newer technologies, enhancing overall system efficiency and reliability.Additionally, develop a comprehensive software lifecycle management plan. This plan should include regular audits to identify upcoming EOL dates and a schedule for timely updates or replacements. Train your IT staff and users about the importance of keeping software up to date and the risks associated with using outdated versions. By maintaining a proactive approach to software management, you can significantly reduce security risks, ensure compliance with industry regulations, and protect your organization's reputation and customer trust.
Risk description
Using end-of-life (EOL) software poses significant security risks for organizations. EOL software no longer receives updates, including critical security patches. This creates a vulnerability landscape where known and potentially new security flaws remain unaddressed, making the software an attractive target for malicious actors. Attackers can exploit these vulnerabilities to gain unauthorized access, disrupt services, or steal sensitive data. Moreover, without updates, compatibility issues arise with newer technologies, leading to operational inefficiencies and increased potential for system failures. Additionally, regulatory and compliance risks accompany the use of EOL software. Many industries have strict data protection regulations that require up-to-date software to ensure the highest security standards. Non-compliance can result in hefty fines and legal consequences. Organizations also risk damaging their reputation if a breach occurs due to outdated software, eroding customer trust and potentially leading to a loss of business. Therefore, continuing to use EOL software undermines both security posture and business integrity, necessitating timely upgrades and proactive risk management strategies.
Recommendation
To mitigate the risks associated with end-of-life (EOL) software, it's crucial to take proactive steps. Start by identifying any EOL software currently in use within your organization. Once identified, prioritize upgrading or replacing these applications with supported versions that receive regular updates and security patches. This not only helps close security gaps but also ensures better compatibility with newer technologies, enhancing overall system efficiency and reliability.Additionally, develop a comprehensive software lifecycle management plan. This plan should include regular audits to identify upcoming EOL dates and a schedule for timely updates or replacements. Train your IT staff and users about the importance of keeping software up to date and the risks associated with using outdated versions. By maintaining a proactive approach to software management, you can significantly reduce security risks, ensure compliance with industry regulations, and protect your organization's reputation and customer trust.
Risk description
Using end-of-life (EOL) software poses significant security risks for organizations. EOL software no longer receives updates, including critical security patches. This creates a vulnerability landscape where known and potentially new security flaws remain unaddressed, making the software an attractive target for malicious actors. Attackers can exploit these vulnerabilities to gain unauthorized access, disrupt services, or steal sensitive data. Moreover, without updates, compatibility issues arise with newer technologies, leading to operational inefficiencies and increased potential for system failures. Additionally, regulatory and compliance risks accompany the use of EOL software. Many industries have strict data protection regulations that require up-to-date software to ensure the highest security standards. Non-compliance can result in hefty fines and legal consequences. Organizations also risk damaging their reputation if a breach occurs due to outdated software, eroding customer trust and potentially leading to a loss of business. Therefore, continuing to use EOL software undermines both security posture and business integrity, necessitating timely upgrades and proactive risk management strategies.
Recommendation
To mitigate the risks associated with end-of-life (EOL) software, it's crucial to take proactive steps. Start by identifying any EOL software currently in use within your organization. Once identified, prioritize upgrading or replacing these applications with supported versions that receive regular updates and security patches. This not only helps close security gaps but also ensures better compatibility with newer technologies, enhancing overall system efficiency and reliability.Additionally, develop a comprehensive software lifecycle management plan. This plan should include regular audits to identify upcoming EOL dates and a schedule for timely updates or replacements. Train your IT staff and users about the importance of keeping software up to date and the risks associated with using outdated versions. By maintaining a proactive approach to software management, you can significantly reduce security risks, ensure compliance with industry regulations, and protect your organization's reputation and customer trust.
Evidence
Domain Queried | DNS Record Type | Description | Value |
---|---|---|---|
fixcoin.website | A | IPv4 address | 162.0.229.242 |
fixcoin.website | NS | Name server | dns1.namecheaphosting.com |
fixcoin.website | NS | Name server | dns2.namecheaphosting.com |
fixcoin.website | MX | Mail server | 20 mx3-hosting.jellyfish.systems |
fixcoin.website | MX | Mail server | 10 mx2-hosting.jellyfish.systems |
fixcoin.website | MX | Mail server | 5 mx1-hosting.jellyfish.systems |
fixcoin.website | SOA | Start of Authority | dns1.namecheaphosting.com. cpanel.tech.namecheap.com. 1735913333 86400 7200 3600000 86400 |
fixcoin.website | SPF | Sender Policy Framework | "v=spf1 +a +mx +ip4:162.0.229.236 +ip4:162.0.229.241 include:spf.web-hosting.com ~all" |
Risk description
An initial step for an attacker aiming to learn about an organization involves conducting searches on its domain names to uncover DNS records associated with the organization. This strategy aims to amass comprehensive insights into the target domain, enabling the attacker to outline the organization's external digital landscape. This gathered intelligence may subsequently serve as a foundation for launching attacks, including those based on social engineering techniques. DNS records pointing to services or servers that are no longer in use can provide an attacker with an easy entry point into the network.
Recommendation
We recommend reviewing all DNS records associated with the domain and identifying and removing unused or obsolete records.
Vulnerability description
OS detection couldn't determine the operating system.
Recommendation
Vulnerability checks are skipped for ports that redirect to another port. We recommend scanning the redirected port directly.
Evidence
DKIM selector | Key type | Key size | Value |
---|---|---|---|
default | rsa | 1422 | "v=DKIM1; k=rsa; p=MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAyQkDsu4TdCe/FXIUpiz00IeuMd4kkQgGtoktAK20RE7HLkfBkEA/j9CSUYCGBL+1xUmLcL3gpyKGgZQxSMU9r69GVUhew15ICpyiMF+BGFKSqlIv0GsfsVl8x32doQRzIyG1mVNr7yR2yyYt8O+Qq3aTKJaG/4y0pCZeAotgGFlqvYBmpQPjhU7NQL+JUJWSn" "ZCr/geOmaMS5iTCC4IhqasCcfiUky/uR4LNQd6McsTfKJ18XIPqw/UpO7NkrQ/dTL+n2VNRldyBenI0ILeRfMYiTD3rOA9ohtcHHQY1z2sbX5B7gmM3HmlhR10Dr7zwb6XuFPcpM3Vdf/VWBMIQvwIDAQAB;" |