
TritonPart
The first open-source, constraints-driven partitioner for RTL-to-GDS tools, recently updated with timing-driven capabilities and improved runtime.
About TritonPart
The first open-source, constraints-driven partitioner for RTL-to-GDS tools, recently updated with timing-driven capabilities and improved runtime. TritonPart is implemented inside OpenROAD
About OpenROAD
OpenROAD is the leading open-source, foundational application for semiconductor digital design. The OpenROAD flow delivers an Autonomous, No-Human-In-Loop (NHIL) flow, 24 hour turnaround from RTL-GDSII for rapid design exploration and physical design implementation.
OpenROAD Mission
OpenROAD eliminates the barriers of cost, schedule risk and uncertainty in hardware design to promote open access to rapid, low-cost IC design software and expertise and system innovation. The OpenROAD application enables flexible flow control through an API with bindings in Tcl and Python.
OpenROAD is used in research and commercial applications such as,
- OpenROAD-flow-scripts from OpenROAD
- OpenLane from Efabless
- Silicon Compiler from Zero ASIC
- Hammer from UC Berkeley
- OpenFASoC from IDEA-FASoC for mixed-signal design flows
OpenROAD fosters a vibrant ecosystem of users through active collaboration and partnership through software development and key alliances. Our growing user community includes hardware designers, software engineers, industry collaborators, VLSI enthusiasts, students and researchers.
OpenROAD strongly advocates and enables IC design-based education and workforce development initiatives through training content and courses across several global universities, the Google-SkyWater shuttles also includes GlobalFoundries shuttles, design contests and IC design workshops. The OpenROAD flow has been successfully used to date in over 600 silicon-ready tapeouts for technologies up to 12nm.






