By Werner Geurts, Francky Catthoor, Serge Vernalde, Hugo De Man
Accelerator Data-Path Synthesis for High-Throughput sign ProcessingApplications is the 1st publication to teach tips on how to use high-level synthesis thoughts to deal with the stringent timing requisites of complicated high-throughput real-time sign and information processing. The ebook describes the cutting-edge in architectural synthesis for advanced high-throughput real-time processing. in contrast to many different, the Synthesis procedure utilized in this booklet goals an structure kind or an program area. This procedure is hence seriously application-driven and this is often illustrated within the ebook via numerous lifelike demonstration examples used all through.
Accelerator Data-Path Synthesis for High-Throughput sign ProcessingApplications makes a speciality of domain names the place application-specific high-speed recommendations are appealing reminiscent of major components of audio, telecom, instrumentation, speech, robotics, scientific and car processing, picture and video processing, television, multi-media, radar, sonar, and so on. furthermore, it addresses frequently the stairs above the normal scheduling and allocation projects which specialize in scalar operations and information.
Accelerator Data-Path Synthesis for High-Throughput sign ProcessingApplications is of curiosity to researchers, senior layout engineers and CAD managers either in academia and undefined. It offers an outstanding review of what services to count on from destiny functional layout instruments and comprises an intensive bibliography.
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Extra resources for Accelerator Data-Path Synthesis for High-Throughput Signal Processing Applications
Two variables can share a register if their lifetime intervals do not overlap. The sharing possibilities are represented by means of a lifetime conflict graph and the minimum number of registers that is needed is equal to the chromatic number 5 of this graph. If there are no loop carried data dependencies, the lifetime conflict graph is an interval graph [Berge 91, page 372]' and the minimum cardinality colouring can be obtained in linear time by means of the left edge algorithm [Kurdahi 87 , Goossens 89a].
In the remainder of this book, it will be assumed that the necessary global loop and data-flow transformations, like unfolding and look-ahead transformations, have already been performed. Only local flow-graph transformations and loop folding will still be considered further on. 3 SUMMARY The high-level synthesis library model taken from [Lanneer 93] consists of an operation and a building block tree. The tree structures capture refinement possibilities, links between the nodes of the two trees capture the mapping possibilities.
The block representation of conditions restricts the mobility of conditional operations to the boundaries of the enclosing block. The cycle budget that is allocated to the condition merge block is the worst case cycle budget over the 34 CHAPTER [
Accelerator Data-Path Synthesis for High-Throughput Signal Processing Applications by Werner Geurts, Francky Catthoor, Serge Vernalde, Hugo De Man