- Broadens the scope of physical synthesis optimization to include accurate transformations operating between the global and local scales;
- Integrates groups of related transformations to break circular dependencies and increase the number of circuit elements that can be jointly optimized to escape local minima;
- Derives several multi-objective optimizations from first observations through complete algorithms and experiments;
- Describes integrated optimization techniques that ensure a graceful timing closure process and impact nearly every aspect of a typical physical synthesis flow.
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