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Rapita Systems
 

Industry leading verification tools

Rapita Verification Suite (RVS)

RapiTest - Functional testing for critical software RapiCover - Low-overhead coverage analysis for critical software RapiTime - In-depth execution time analysis for critical software RapiTask - RTOS scheduling visualization RapiCoverZero - Zero-footprint coverage analysis RapitimeZero - Zero-footprint timing analysis RapiTaskZero - Zero-footprint event-level scheduling analysis RVS Qualification Kits - Tool qualification for DO-178 B/C and ISO 26262 projects RapiCouplingPreview - DCCC analysis

Multicore Verification

MACH178 - Multicore Avionics Certification for High-integrity DO-178C projects MACH178 Foundations - Lay the groundwork for A(M)C 20-193 compliance Multicore Timing Solution - Solving the challenges of multicore timing analysis RapiDaemon - Analyze interference in multicore systems

Other

RTBx - The ultimate data logging solution Sim68020 - Simulation for the Motorola 68020 microprocessor

RVS Software Policy

Software licensing Product life cycle policy RVS Assurance issue policy RVS development roadmap

Industry leading verification services

Engineering Services

V&V Services Data Coupling & Control Coupling Object code verification Qualification Training Consultancy Tool Integration Support

Latest from Rapita HQ

Latest news

Rapita partners with Asterios Technologies to deliver solutions in multicore certification
SAIF Autonomy to use RVS to verify their groundbreaking AI platform
RVS 3.22 Launched
Hybrid electric pioneers, Ascendance, join Rapita Systems Trailblazer Partnership Program
View News

Latest from the Rapita blog

How emulation can reduce avionics verification costs: Sim68020
Multicore timing analysis: to instrument or not to instrument
How to certify multicore processors - what is everyone asking?
Data Coupling Basics in DO-178C
View Blog

Latest discovery pages

Military Drone Certifying Unmanned Aircraft Systems
control_tower DO-278A Guidance: Introduction to RTCA DO-278 approval
Picture of a car ISO 26262
DCCC Image Data Coupling & Control Coupling
View Discovery pages

Upcoming events

IEEE SMC-IT/SCC 2025
2025-07-28
DASC 2025
2025-09-14
DO-178C Multicore In-person Training (Fort Worth, TX)
2025-10-01
DO-178C Multicore In-person Training (Toulouse)
2025-11-04
View Events

Technical resources for industry professionals

Latest White papers

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
View White papers

Latest Videos

Requirements traceability with RapiTest and Polarion ALM
How to make AI safe in autonomous systems with SAIF
Rapita Systems - Safety Through Quality
Simulation for the Motorola 68020 microprocessor with Sim68020
View Videos

Latest Case studies

GMV case study front cover
GMV verify ISO26262 automotive software with RVS
Kappa: Verifying Airborne Video Systems for Air-to-Air Refueling using RVS
Supporting DanLaw with unit testing and code coverage analysis for automotive software
View Case studies

Other Resources

 Webinars

 Brochures

 Product briefs

 Technical notes

 Research projects

 Multicore resources

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  Civil Aviation (DO-178C)   Automotive (ISO 26262)   Military & Defense   Space

US office

+1 248-957-9801
info@rapitasystems.com Rapita Systems, Inc., 41131 Vincenti Ct., Novi, MI 48375, USA

UK office

+44 (0)1904 413945
info@rapitasystems.com Rapita Systems Ltd., Atlas House, Osbaldwick Link Road, York, YO10 3JB, UK

Spain office

+34 93 351 02 05
info@rapitasystems.com Rapita Systems S.L., Parc UPC, Edificio K2M, c/ Jordi Girona, 1-3, Barcelona 08034, Spain
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RapiTest: Ada, C & C++ Unit Testing Platform - Free Trial

RapiTest

Functional testing for critical software

Why choose RapiTest?

  •  Reduce effort running requirements-based tests on-host & target
  •  Reduce test authoring effort through easy-to-use test formats
  •  Manage project artifacts with requirements traceability
  •  Simplify verification through integration with your CI tool
  •  Produce evidence for DO-178 and ISO 26262 certification
RVS-Project-Manager

Why try RapiTest?

RapiTest is a functional testing platform designed for authoring and managing tests for embedded systems, including safety-critical systems testing. RapiTest supports C, C++ and Ada and is qualifiable for DO-178C (including DAL-A) and ISO 26262 applications. 

RapiTest has a range of advanced features which empower you to perform efficient unit testing, black box testing and white box testing. Part of the RVS toolsuite, RapiTest integrates with RapiCover, RapiTime and RapiTask to enable the analysis of code coverage, software execution time and task-level scheduling.

Designed to adapt to the way you work, RapiTest integrates with popular third-party tools. For example, RapiTest supports requirements traceability by integrating with requirements management software like Polarion and DOORS via the ReqIF Requirements Interchange Format to support incremental unit testing over your project life cyle.

Sign-up for your 30-day Free Trial

When you contact us, we will process your personal data in accordance with our data protection policy, please see our Customer Privacy Information for more information.

What happens next?
We aim to respond to trial version requests within 1 working day. If you have any further questions, please do not hesitate to contact us.

RapiTest success story

RapiTest was used by the Triumph Group to produce evidence for DO-178C certification of their actuation system software.

“We approached Rapita looking for a complete end-to-end solution for software verification. Rapita delivered this and has also performed a range of system-level activities.”

The RVS tools RapiTest and RapiCover were used to automate testing processes to meet DO-178C objectives:

  • RapiTest automatically generated and applied functional tests, checked that test results were correct, and verified functional correctness of the source code as described by its requirements.
  • RapiCover provided evidence that DO-178C DAL A structural code coverage objectives were met, including 100% modified condition/decision coverage (MC/DC).

This DO-178C DAL A project involved testing several distinct pieces of application software (each with multiple build variants, configurable at compile-time) and a common core layer, comprising an RTOS, board support package, library routines and device drivers.

The software was primarily written in C and C++ and included some components written in assembler. All of the software needed to be tested on an embedded target. The project was “time-is-of-the-essence”.

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