Efficient timing closure without timing driven placement and routing

Miodrag Vujkovic, David Wadkins, Bill Swartz, Carl Sechen · 2004

We have developed a design flow from Verilog/VHDL to layout that mitigates the timing closure problem, while requiring no timing driven placement or routing tools. Timing issues are confined to the cell sizer, allowing the placement algorithm to focus solely on net lengths, resulting in superior layout densities and much lower power. The primary enablers to this new technology are: 1) gridded transistor sizing, 2) variable die routing that allows each net to be routed in the shortest possible length, 3) simultaneous cell placement, routing, gate sizing, and clock tree insertion, and 4) an effective incremental (ECO) placement that preserves net lengths from one iteration to the next. The variable die router is the key enabler. Superior placement and routing densities result from this new variable die approach. In addition, each net is routed at or near minimum length, and thus minor placement changes or cell size changes do not materially impact net lengths.

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