Master Thesis: Code-Graph-Based Context for AI-Assisted Software Engineering in Radio Baseband L1
About this opportunity:
AI coding assistants and agent frameworks are increasingly used to support software development, answering architecture questions, aiding analysis and troubleshooting, and assisting with code changes. Their usefulness depends less on the underlying model than on the context they are given about the specific system they work on. For a large, long-lived codebase such as Ericsson's Radio Baseband L1, feeding a model raw source files, or relying on it to parse the code on demand, scales poorly: relevant details are missed, structural relationships stay implicit, and cost and latency grow.
This thesis explores a code graph, a structured and queryable model of the source code where nodes represent code entities (functions, modules, components, interfaces, signals) and edges represent their relationships (calls, dependencies, communication, and execution order), as the foundation for building domain context that an AI system can query instead of reading everything. The work will survey the state of the art, design and implement a method for extracting context from real Radio Baseband L1 source code, and evaluate its effectiveness against alternative approaches.
The results will provide evidence-based guidance on whether and how source-derived context should be built and maintained in an industrial domain, directly informing how Ericsson builds AI support for product development.
What you will do:- Study the background and state of the art on code representation for AI (code graphs, code property graphs, static analysis, structural indexing, and retrieval or embeddings over code).- Analyse a bounded set of Radio Baseband L1 components to identify the code entities and relationships that matter for domain understanding, including execution order.- Design and implement a method and prototype for extracting a code graph and building domain context from source.- Define what "effective context" means and how to measure it, covering accuracy, coverage, freshness, and cost.- Evaluate the code-graph approach against alternatives, such as live code parsing and text or embedding retrieval, on representative domain tasks.- Draw conclusions and provide recommendations, including how to keep context fresh and consistent with a given code baseline.
The skills you bring:- You are pursuing a Master's degree in Computer Science, Software Engineering, Artificial Intelligence, or a related field.- You have a solid foundation in software architecture, data structures such as graphs, and ideally static analysis or compilers.- You are comfortable working with Python. The domain code is largely C/C++.- You are interested in program analysis, knowledge representation, and AI-assisted software engineering.- You are analytical, systematic, and able to work independently on a complex problem.- You can communicate technical findings clearly and draw practical conclusions from your evaluation.- This thesis is suitable for 2 students and corresponds to 30 ECTS credits per student.
Why join Ericsson?At Ericsson, you'll have an outstanding opportunity. The chance to use your skills and imagination to push the boundaries of what's possible. To build solutions never seen before to some of the world's toughest problems. You'll be challenged, but you won't be alone. You'll be joining a team of diverse innovators, all driven to go beyond the status quo to craft what comes next.
What happens once you apply? Click Here to find all you need to know about what our typical hiring process looks like.Encouraging a diverse and inclusive organization is core to our values at Ericsson, that's why we champion it in everything we do. We truly believe that by collaborating with people with different experiences we drive innovation, which is essential for our future growth. We encourage people from all backgrounds to apply and realize their full potential as part of our Ericsson team. Ericsson is proud to be an Equal Opportunity Employer. learn more.
Primary country and city: Sweden (SE) || Stockholm
Req ID: 791756
Skills Required
- Currently pursuing a Master's degree in Computer Science, Software Engineering, Artificial Intelligence, or a related field
- Solid foundation in software architecture
- Knowledge of data structures, including graphs
- Comfortable working with Python
- Interest in program analysis, knowledge representation, and AI-assisted software engineering
- Analytical, systematic, and able to work independently on a complex problem
- Ability to communicate technical findings clearly and draw practical conclusions
- Experience with static analysis or compilers
- Familiarity with C and C++
Ericsson Compensation & Benefits Highlights
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Healthcare Strength — Health coverage is described as broad and reliable, with multiple medical plan choices, dental/vision, and mental-health/EAP resources. Available descriptions highlight healthcare and disability insurance as consistent strengths.
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Retirement Support — U.S. materials point to an automatic company 401(k) contribution plus matching that can add up to a notably high employer contribution, and some regions also offer pension options. This structure is often cited as a meaningful component of total rewards.
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Leave & Time Off Breadth — Time-off programs are characterized as generous, with sizable vacation allowances, paid holidays, sick time, volunteer time, and strong parental leave in some locations. PTO is frequently highlighted as a standout element of the package.
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What We Do
Ericsson builds the digital connectivity the world relies on. Our technology underpins the mobile networks, platforms, and systems that billions of people, businesses, and societies depend on every day. We are a global leader in communications technology, delivering mobile network infrastructure, cloud software, and wireless connectivity solutions for service providers and enterprises worldwide. Our networks support connectivity across 180+ countries, helping power everyday communication as well as critical digital services at global scale. Connectivity has evolved far beyond consumer mobile use. Today, nearly 80% of the world’s population accesses the internet via mobile networks, and Ericsson is helping shape what comes next. We are advancing 5G and 5G Advanced, developing network APIs that open connectivity to the global developer ecosystem, and applying automation and AI to make networks more intelligent, efficient, and resilient. Ericsson was the first company to launch live 5G networks on five continents, and our 5G platform is now commercially live in 150+ networks across 60+ countries. We also support more than 36,000 enterprise customers, enabling secure, high-performance connectivity for industries such as manufacturing, aviation, logistics, utilities, and public safety, where reliability and performance are mission critical. Innovation is central to how we work. Ericsson has approximately 28,000 employees in research and development, backed by one of the strongest intellectual property portfolios in the industry with 60,000+ granted patents. Our engineers, researchers, and technologists work across 100+ global R&D sites, helping define how networks evolve and how digital infrastructure is built for the long term. As the world moves toward a mobile-first, AI-powered, and cloud-driven future, connectivity becomes the foundation for digital transformation across every industry. Ericsson is building that foundation, shaping the future of digital connectivity through technology that operates at global scale and supports real-world impact, today and for what comes next.
Why Work With Us
Ericsson is a place for people who want to work on technology that powers everyday life. You’ll contribute to large-scale systems used every day, tackle complex challenges in live environments, and keep developing your skills and career in your own vision.
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