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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

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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
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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
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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
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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
HISC 2025
2025-11-13
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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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Rapita Systems - Safety Through Quality
Simulation for the Motorola 68020 microprocessor with Sim68020
AI-driven Requirements Traceability for Faster Testing and Certification
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GMV verify ISO26262 automotive software with RVS
Kappa: Verifying Airborne Video Systems for Air-to-Air Refueling using RVS
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Solid Sands partners with Rapita Systems

2023-02-02

...to solve the demand for C++ standard library coverage analysis

Solid Sands and Rapita Systems announce that the companies have entered into a strategic partnership to develop ways to improve code coverage analysis on parts of the C++ standard library code that are traditionally invisible to coverage analysis tools.

Due to a joint customer that required large-scale coverage analysis for the C++ standard library implementation, the companies were introduced. They now see possibilities to deepen their offering to the market of safety-critical applications.

“To the best of our knowledge, we were the first to attempt large-scale coverage analysis for the C++ standard library.” said Marcel Beemster, CTO of Solid Sands. “During this analysis, we found that significant parts of the C++ standard library implementation are implemented by code that is evaluated at compile time. This is an essential feature for C++, which aims to exchange run-time overhead for safety and speed of compile-time evaluation. However, this makes it hard to do code coverage analysis because such analysis is based on recording run-time execution effects.”

Solid Sands, the world-leading provider of testing and qualification technology for compilers and libraries, reached out to many companies that offer coverage analysis solutions and found that, at this time, only some are enthusiastic about tackling coverage analysis for compile-time executed code. Solid Sands believes this is a safety-critical feature.

Antoine Colin, CTO of Rapita Systems said, “As the safety-critical industry evolves to use more modern programming features, it is crucial that verification tools keep up with the pace and support these features. We are delighted to work with Solid Sands to achieve this aim by exploring how RapiCover can collect coverage of compile-time code to support the development of Solid Sands’ solutions and our customers’ verification needs.”

Rapita Systems is an international company that develops on-target embedded verification software solutions for customers in the avionics and automotive electronics industries. Their tool RapiCover is now used to jointly look for ways to perform large-scale coverage analysis for the complete C++ standard library.

For Solid Sands, this collaboration comes just in time as they are working on launching SuperGuard for C++ at the end of 2023.

SolidsSands Rapita

 

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