Runtime Application Self-Protection (RASP) Statistics 2024 – Everything You Need to Know

Are you looking to add Runtime Application Self-Protection (RASP) to your arsenal of tools? Maybe for your business or personal use only, whatever it is – it’s always a good idea to know more about the most important Runtime Application Self-Protection (RASP) statistics of 2024.

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How much of an impact will Runtime Application Self-Protection (RASP) have on your day-to-day? or the day-to-day of your business? Should you invest in Runtime Application Self-Protection (RASP)? We will answer all your Runtime Application Self-Protection (RASP) related questions here.

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Best Runtime Application Self-Protection (RASP) Statistics

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Runtime Application Self-Protection (RASP) Market Statistics

  • Solutions market accounted for more than 70% share in the RASP market in 2018. [0]
  • Market North America led the global runtime application self protection market in 2018 with the market share of more than 37%. [0]

Runtime Application Self-Protection (RASP) Latest Statistics

  • Contrast Security says 90 percent of apps aren’t tested for vulnerabilities during their development and quality assurance stages, and even more go unprotected during production. [1]
  • The report highlights the challenges facing businesses as they move more of their business functions to the cloud – with attacks on web applications representing 39% of all breaches. [2]
  • Web applications remains the top vector used by hacking in breaches, at over 90%. [2]
  • Web applications were involved in over 50% of incidents, and all servers were involved in over 80% of incidents, and in almost 90% of breaches. [2]
  • Even at 75 days past discovery of a vulnerability patching was only around 40%, meaning there 60% of applications with vulnerabilities remained unpatched vulnerable to an attack. [2]
  • 40% of system intrusions was due to hacking. [2]
  • 100% of threat actors in web application attacks were external and 89% of those threat actors were motivated by possible financial gains. [2]
  • Globally, 5.19 billion people use mobile phones, and 90 percent of their time is spent on apps. [3]
  • According to Verizon’s 2020 Mobile Security Index, 43 percent of organizations sacrificed mobile security in the past year. [3]
  • According to the 2020 McAfee Mobile Threat Report, hidden mobile applications – most often downloaded from unsanctioned sites, gamer forums, and more – accounted for half of consumer mobile threats in 2019. [3]
  • Malicious apps increased by 30% yearover year from 2018 to 2019. [3]
  • A 2019 Guardsquare analysis showed less than 50% of the top financial apps on the Android Marketplace are using proper mobile application security. [3]

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Reference


  1. credenceresearch – https://www.credenceresearch.com/report/runtime-application-self-protection-rasp-market.
  2. techbeacon – https://techbeacon.com/security/what-runtime-application-self-protection-rasp.
  3. k2io – https://www.k2io.com/2021-verizon-data-breach-investigations-report-is-out/.
  4. guardsquare – https://www.guardsquare.com/blog/4-surprising-stats-prove-need-mobile-app-security.

How Useful is Runtime Application Self Protection

RASP is a security technology that is designed to protect applications from within by embedding security controls directly into the application itself. This means that the security mechanisms are activated at runtime, allowing for real-time analysis and protection against threats as they occur. Unlike traditional security measures that focus on network or perimeter defenses, RASP provides a more proactive approach by monitoring and blocking malicious behavior within the application.

One of the key benefits of RASP is its ability to provide granular protection at the application level. By supporting code-level analysis, RASP can identify and block security threats that may not be detected by other security tools. This level of specificity allows for more targeted security measures, reducing the risk of false positives and improving overall security posture.

Furthermore, RASP technology is continuously evolving to keep up with emerging threats. With the rise of sophisticated attack techniques such as SQL injection, cross-site scripting, and insider threats, organizations need a defense mechanism that can adapt and respond in real-time. RASP’s ability to analyze and respond to threats dynamically makes it a valuable tool in the fight against cyber threats.

Additionally, RASP can help organizations achieve compliance with various security regulations and standards. By incorporating security controls directly into the application, organizations can demonstrate a commitment to protecting sensitive data and ensuring the integrity of their systems. This can be particularly advantageous for businesses operating in regulated industries where data protection and privacy requirements are stringent.

Despite these advantages, RASP is not without its challenges. First and foremost, the effectiveness of RASP relies heavily on the quality of the application code. If the application is poorly written or contains vulnerabilities, RASP may not be able to provide adequate protection. To maximize the benefits of RASP, organizations must prioritize secure coding practices and perform regular code reviews to identify and remediate potential security flaws.

Another challenge of RASP is the potential impact on application performance. Because RASP activates security controls at runtime, there is a risk of overhead that may affect the application’s speed and responsiveness. Organizations must carefully balance security needs with performance requirements to ensure that RASP does not hinder the user experience.

In conclusion, RASP is a valuable tool in the cybersecurity arsenal, providing organizations with a proactive approach to application security. By embedding security controls directly into the application, RASP can effectively detect and mitigate threats in real-time, helping organizations stay ahead of cyber attackers. However, organizations must be mindful of the challenges associated with RASP, including the need for secure coding practices and the potential impact on application performance. With careful implementation and monitoring, RASP can be a powerful ally in the ongoing battle against cyber threats.

In Conclusion

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