This asynchrounous FIFO deisgn and UVM verificaiton is one case study of me. The design is based on Cliff Cumming's paper and the UVM is coded by me(Xianghzi Meng)
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Updated
Oct 19, 2023 - SystemVerilog
This asynchrounous FIFO deisgn and UVM verificaiton is one case study of me. The design is based on Cliff Cumming's paper and the UVM is coded by me(Xianghzi Meng)
UVM-based SystemVerilog testbench for CDC & Async FIFO: SVA assertions, functional coverage, agents/sequences/scoreboard, and VCS/Questa run scripts.
The repository documents my exploration of essential communication protocols in digital systems. I acknowledge the YouTube channel "All About VLSI" for their insightful workshops and sessions that supported my understanding of protocols
A parameterizable Asynchronous FIFO RTL design verified using a custom UVM-style Object-Oriented testbench. Features 100% functional coverage, cycle-accurate timing, and SystemVerilog Assertions (SVA) for CDC protocol compliance.
Parameterized asynchronous FIFO UVM 1.2 verification platform with boundary, CDC, and reset regression.
Parameterized asynchronous FIFO with Gray-code CDC, self-checking verification, fault injection, and clock-ratio regression.
Parameterized dual-clock asynchronous FIFO designed in Verilog for safe Clock Domain Crossing (CDC). Implements Gray-code pointer encoding, 2-flip-flop synchronizers, and conservative full/empty flag logic following Cummings SNUG 2002 architecture. Verified with a 600-line self-checking reference testbench and SVA protocol assertions across 7 test.
UVM verification of an Asynchronous FIFO with SVA assertions, and functional coverage
Multi-Channel DMA Subsystem & Parameterized Dual-Clock Async CDC FIFO with APB & AXI4 Master Burst Interfaces in SystemVerilog.
Learning-oriented asynchronous FIFO RTL with CDC constraints, wrappers, simulation/formal checks, and PYNQ-Z2 demo
Asynchronous FIFO design in SystemVerilog and testbench
Asynchronous FIFO - dual-clock gray-pointer FIFO in Verilog with industry-style structure
CDC-safe asynchronous FIFO in SystemVerilog with Gray pointers, 2FF synchronizers, SVA, and reproducible simulation/synthesis flows.
Dual-clock asynchronous FIFO in SystemVerilog with layered verification: constrained-random testbench, functional coverage, SVA, SymbiYosys formal spec
ITCH parser v3 - Async FIFO with gray code CDC. 100% reliability. Code reduction: 677→395 lines (41% simpler).
Clock-domain-crossing verification: a dual-clock asynchronous FIFO with Gray pointers and 2-flop synchronizers, checked across two independent clocks with cocotb. Verified on Icarus Verilog.
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