Multiple objective optimisation of data and control paths in a behavioural silicon compiler

نویسنده

  • Keith Richard Baker
چکیده

i^/icunLTif ()i;iii^(jirfE3EiiiN(] / irfD /Lppi.iE3D !Sc:[Er«:E ElLIECrriROfTICZS /Iff!) C:C)MI»LrrER SCIENBCE Doctor of Philosophy MULTIPLE OBJECTIVE OPTIMISATION OF DATA AND CONTROL PATHS IN A BEHAVIOURAL SILICON COMPILER by Keith Richard Baker The objective of this research was to implement an "intelligent" silicon compiler that provides the ability to automatically explore the design space and optimise a design, given as a behavioural description, with respect to multiple objectives. The objective has been met by the implementation of the MOODS Silicon Compiler. The user submits goals or objectives to the system which automatically finds near optimal solutions. As objectives may be conflicting, trade-offs between synthesis tasks are essential and consequently their simultaneous execution must occur. Tasks are decomposed into behaviour preserving transformations which due to their completeness can be applied in any sequence to a multi-level representation of the design. An accurate evaluation of the design is ensured by feeding up technology dependent information to a cost function. The cost function guides the simulated annealing algorithm in applying transformations to iteratively optimise the design. The simulated annealing algorithm provides an abstractness from the transformations and designer's objectives. This abstractness avoids the construction of tailored heuristics which pre-program trade-offs into a system. Pre-programmed trade-offs are used in most systems by assuming a particular shape to the trade-off curve and are inappropriate as trade-offs are technology dependent. The lack of pre-programmed trade-offs in the MOODS system allows it to adapt to changes in technology or library cells. The choice of cells and their subsequent sharing are based on the user's criteria expressed in the cost function, rather than being pre-programmed into the system. The results show that implementations created by MOODS are better than or equal to those achieved by other systems. Comparisons with other systems highlighted the importance of specifying all of a designs data as the lack of data misrepresents the design leading to misleading comparisons. The MOODS synthesis system includes an efficient method for automated design space exploration where a varied set of near optimal implementations can be produced from a single behavioural specification. Design space exploration is an important aspect of designing by high-level synthesis and in the development of synthesis systems. It allows the designer to obtain a perspicuous characterization of a design's design space allowing him to investigate alternative designs.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Source level optimisation of VHDL for behavioural synthesis

Optimisation in high level behavioural synthesis is usually performed by applying transforms to the datapath and control graphs. An alternative approach, however, is to apply transforms at a higher level in the process, specifically directly to the behavioural source description. This technique is analogous to the way in which the source code of a conventional sequential programming language ma...

متن کامل

A New Solution for the Cyclic Multiple-Part Type Three-Machine Robotic Cell Problem based on the Particle Swarm Meta-heuristic

In this paper, we develop a new mathematical model for a cyclic multiple-part type threemachine robotic cell problem. In this robotic cell a robot is used for material handling. The objective is finding a part sequence to minimize the cycle time (i.e.; maximize the throughput) with assumption of known robot movement. The developed model is based on Petri nets and provides a new method to calcul...

متن کامل

Weighted Optimal Path in Graph with Multiple Indexes

This paper represents a technique for finding optimal paths with multiple indexes in a graph. Up to the present time, all optimal paths have been determined upon one index, say, distance for which an evaluation method exists. In this paper firstly we define multiple indexes for each edge in such a way that anyone can treat the factor for assigning an optimal path. Here, we use Data Envelopment ...

متن کامل

Multi-Pass High-Level Presolving

Presolving is a preprocessing step performed by optimisation solvers to improve performance. However, these solvers cannot easily exploit high-level model structure as available in modelling languages such as MiniZinc or Essence. We present an integrated approach that performs presolving as a separate pass during the compilation from high-level optimisation models to solverlevel programs. The c...

متن کامل

Using MOLP based procedures to solve DEA problems

Data envelopment analysis (DEA) is a technique used to evaluate the relative efficiency of comparable decision making units (DMUs) with multiple input-output. It computes a scalar measure of efficiency and discriminates between efficient and inefficient DMUs. It can also provide reference units for inefficient DMUs without consideration of the decision makers’ (DMs) preferences. In this paper, ...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:

دوره   شماره 

صفحات  -

تاریخ انتشار 1992