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Software Verification with RVS

RapiTest - Functional testing RapiCover - Coverage analysis RapiTime - Timing analysis RapiTask - RTOS scheduling visualization RapiCoverZero - Zero-footprint coverage analysis RapiTimeZero - Zero-footprint timing analysis RapiTaskZero - Zero-footprint scheduling analysis RVS Qualification Kits - Tool qualification for DO-178C RapiCouplingPreview - DCCC analysis

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MACH178 Core Pack - Getting started MACH178 Platform Pack - Platform evaluation MACH178 Resource Pack - Interference verification MACH178 Qualification Pack- Tool qualification

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Rapita Systems Collaborates with Wind River to Break the Multicore Certification Barrier
MACH178 Rapita Systems Launches Next Generation of MACH178 for Multicore
RVS 3.24 accelerates multicore software verification
Rapita Systems and Avionyx Announce Strategic Partnership to Offer Best-in-class Avionics Solutions
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The Evolution of DO-178 and ED-12 Standards
Retro gaming with the Sim68020
RVS gets a new timing analysis engine
How to measure stack usage through stack painting with RapiTest
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Processor How to achieve multicore DO-178C certification with Rapita Systems
Plane How to achieve DO-178C certification with Rapita Systems
Military Drone Certifying Unmanned Aircraft Systems
control_tower DO-278A Guidance: Introduction to RTCA DO-278 approval
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2026-09-13
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2026-09-29
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Supporting Multicore Interference Analysis using Branch Traces
2026-11-24
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Mitigation of interference in multicore processors for A(M)C 20-193
Sysgo WP
Developing DO-178C and ED-12C-certifiable multicore software
DO178C Handbook
Efficient Verification Through the DO-178C Life Cycle
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Supporting Multicore Interference Analysis using Branch Traces
Multicore Avionics (Aerospace Innovations)
AMACC Rev B & Multicore Certification: What U.S. Defense Programs Need to Know for Airworthiness Success
Certification-Ready Rust: GNAT Pro & RVS for Avionics Standards
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Case Study Front Cover
Multicore timing analysis support for ECSS-E-ST-40C R&D with MACH178
GMV case study front cover
GMV verify ISO26262 automotive software with RVS
Kappa: Verifying Airborne Video Systems for Air-to-Air Refueling using RVS
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RVS

Streamlined verification with RVS 3.18

What's new

  •   Sequence and response time analysis
  •   Analyze code complexity
  •   Visualize call dependencies
Discover RVS Request a demo Request trial
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  • User FAQs
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Sequence and response time analysis

RapiTime now lets you measure the time taken between the execution of any points in your code, providing a flexible approach for gaining valuable insights on your code's timing behavior. This lets you analyze system response times, periodicity of execution, and separation, among other things.

After setting up a sequence and the measurements collected from it, RapiTime collects measurements when your code executes, and presents your results in a report.

Discover feature

Analyze code complexity

RVS now analyzes and reports on the cyclomatic (McCabe) complexity of analyzed code.

Complexity results are shown in your report’s Structure tab and you can color RVS Treemaps by code complexity, making it easy to identify complex functions for which refactoring may be beneficial or needed to meet coding standards.

Discover feature

Visualize call dependencies

RVS now lets you visualize the call dependences in your code, so you can understand your code's call structure at a glance. This can help support analyses such as control coupling analysis.

In a new dedicated dependency view, you can zoom into any file or function to explore the call relationships between that element and the other elements in your code.

Discover feature

  • Is RVS 3.18 backwards-compatible with previous versions?
  • Which host operating systems can RVS 3.18 be used on?
  • I'm running a wavefront version – can I upgrade to RVS 3.18?
  • Which new features and enhancements are planned for the next version of RVS?
  • Is RVS 3.18 backwards-compatible with previous versions?

    Yes. RVS 3.18 is backwards compatible with previous versions. If you're upgrading from RVS 3.6 or earlier, however, we recommend that you set up a new integration to benefit from the improved project management features introduced in RVS 3.8.

  • Which host operating systems can RVS 3.18 be used on?

    To align with updates to Microsoft's support for Windows and Windows Server versions, support has been removed from RVS in RVS 3.18 for older Windows operating systems that are no longer supported by Microsoft.

    RVS 3.18 supports Windows versions 10+, Windows Server versions 2016+, and a variety of Linux distributions including Ubuntu and Red Hat.

    RVS tools can be used on projects with unsupported operating systems by using a clone integration to split the process and delegate parts of it to the unsupported machine.

  • I'm running a wavefront version – can I upgrade to RVS 3.18?

    If you're running a wavefront version, please contact us to determine whether you can upgrade.

  • Which new features and enhancements are planned for the next version of RVS?

    You can follow the RVS development roadmap, which we regularly update, on our website.

Downloads

 
CodeTEST™ Replacement with RVS
  Brochure
Rapita Systems Brochure
  Brochure
Rapita Verification Suite (RVS) Training Brochure
  Product brief
Accelerating Multicore DO-178C Certification: Wind River & Rapita Systems Joint Solution
  Product brief
RVS Tool Qualification for DO-178C
  Product brief
RVS Tool Qualification for DO-278A

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News & Blog

Blog
Solar Orbiter's mission to study the Sun's behavior
Blog
How do I set up an MPC5xx IO port to collect data?
Blog
Is Windows Safe Mode faster for code?
Blog
What's new in RVS 3.1?
Blog
Out of the box RVS integration for DDC-I's Deos RTOS
Blog
Integrating RVS with Jenkins

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RVS: Setting the standard for safety-critical software verification

"We use the tool on some of the world’s most complicated flight control systems. Compared to previous tools we’ve used in the past, RapiCover’s performance has been much more reliable and robust" - Collins Aerospace Flight Controls

How our tools were used for DO-178C DAL A code coverage analysis for a complex flight control system.

Learn how RVS tools measured and improved the overall execution time of the flight control system on the M-346.

How our tools captured worst case timing and stack usage data for DO-178B Level A Embraer Flight Control Systems (FCS).

How RapiCover efficiently produced coverage evidence for DO-178C certification of Cobham’s antenna control unit.

 

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