Give the people what they want: HLS for RTL verification
Shawn McCloud, Product Line Director HLS, Mentor Graphics
EETimes (7/21/2010 8:04 AM EDT)
As the manual RTL design flow stumbles under the burden of titanic designs, an excessive burden is placed on RTL verification teams to meet expectations for design cycle time and quality of results (QoR) in the hardware design flow. If not lifted, this truly Sisyphean endeavor will eventually sap the drive of the electronic design industry because verification is the bottleneck of modern design flows.
Instead of prolonging the painful process of finding numerous bugs in manually produced RTL code, EDA tool flows should provide relief by creating bug-free RTL designs through high-level synthesis (HLS) tools. This is not simply an exercise in utopian logic; an increasing number of RTL engineers demand it. A recent blind, worldwide survey found that verification is the primary reason for using high-level synthesis, because HLS makes it faster for engineers to verify their designs when compared to a more error-prone manual RTL implementation process.
To read the full article, click here
Related Semiconductor IP
- nQrux® Root of Trust IP
- AXI to UCIe Bridge IP
- UCIe 2.x Controller IP
- SWI3S (SoundWire I3S Interface) Peripheral Controller Core IP
- OpenTitan-based RISC-V Secure Element
Related Articles
- OmniSim: Simulating Hardware with C Speed and RTL Accuracy for High-Level Synthesis Designs
- How High-Level Synthesis Can Raise the Efficiency of Design Reuse
- High-level synthesis, verification and language
- High-Level Synthesis - Ready for prime-time?
Latest Articles
- A Secure dToF LiDAR SoC with Dual-Domain Fingerprinting and Event-Driven AFE Circuit Achieving Sensor-Level Attack Resilience
- ZTA-Q: an Open-source RISC-V Platform for Accurate Quantized CNN Inference
- Automated Pre-Silicon Verification of High-Speed DDR5 and LPDDR5/6 Memory Controllers: Closed-Loop Timing, Mode Register, and PHY Synchronization in UVM
- U-Sonic: An Open-Source 8-Channel Ultrasound Transmit IP in a 130 nm RISC-V SoC
- S-ALSA: Co-Design of Adiabatic Logic-based Sensing and Balanced Bit-Cells for Secure and Energy-Efficient MRAM