Efficiency is a crucial concern across computing systems, from the edge to the cloud. Paradoxically, even as the latencies of bottleneck components such as storage and networks have dropped by up to four orders of magnitude, software path lengths have progressively increased due to overhead from the very frameworks that have revolutionized the pace of information technology. Such overhead can be severe enough to overshadow the benefits from switching to new technologies like persistent memory and low latency interconnects. Resource Proportional Software Design for Emerging Systems introduces resource proportional design (RPD) as a principled approach to software component and system development that counters the overhead of deeply layered code without removing flexibility or ease of development. RPD makes resource consumption proportional to situational utility by adapting to diverse emerging needs and technology systems evolution. Highlights: Analysis of run-time bloat in deep software stacks, an under-explored source of power-performance wastage in IT systems Qualitative and quantitative treatment of key dimensions of resource proportionality Code features: Unify and broaden supported but optional features without losing efficiency Technology and systems evolution: Design software to adapt with changing trade-offs as technology evolves Data processing: Design systems to predict which subsets of data processed by an (analytics or ML) application are likely to be useful System wide trade-offs: Address interacting local and global considerations throughout software stacks and hardware including cross-layer co-design involving code, data and systems dimensions, and non-functional requirements such as security and fault tolerance Written from a systems perspective to explore RPD principles, best practices, models and tools in the context of emerging technologies and applications This book is primarily geared towards practitioners with some advanced topics for researchers. The principles shared in the book are expected to be useful for programmers, engineers and researchers interested in ensuring software and systems are optimized for existing and next generation technologies. The authors are from both industry (Bhattacharya and Voigt) and academic (Gopinath) backgrounds.
Allowing readers to tailor cutting-edge best practices from software development to achieve success in Web development is the goal of this comprehensive guide. The book details a proven process that helps readers deliver Web projects on time, within budget, and with fewer defects.
Blast down the quarter mile in the first two generations of Ford’s legendary pony car across all drag racing classes in Quarter-Mile Mustangs! Since first becoming a mass-market success in mid-1964, the Ford Mustang has made millions of passes down the quarter mile on sanctioned drag strips. With styling flared toward the youth, aftermarket parts manufacturers saw an enormous opportunity to produce go-fast components to aid in propelling Ford’s pony car down the 1320. The success of these cars was immediate. In the hands of successful and seasoned pros, such as Gas Ronda, Bill Lawton, and Dick Brannan, Ford unleashed the devastatingly potent 1965 A/FX Mustang fastback, which was built by Blue Oval stalwarts Holman & Moody with the 427 SOHC (Cammer) engine that unleashed havoc on mother Mopar. From those very first factory drag cars through the fabled 1968-1/2 Cobra Jets, drag racing historian Doug Boyce highlights the many successes of pioneers, such as “Dyno” Don Nicholson, Les Ritchey, Phil Bonner, Hubert Platt, and Al Joniec. However, it’s not just all doorslammers. As A/FX transitioned into Funny Car, a whole new chapter in Mustang drag racing was written with Mickey Thompson taking the reins and steering Mustangs to success throughout the late 1960s and early 1970s. The muscle car-era Mustangs joined the Mustang II and soldiered on the best they could as ever-changing rules hampered Ford’s new pony body, with drivers Bob Glidden and Nicholson trying to squeeze every bit of performance out of the diminutive pony. Quarter-Mile Mustangs: The History of Ford’s Pony Car at the Drag Strip 1964-1/2-1978 brings forth the most in-depth coverage of these cars at the drag strip. Don’t get caught sleeping at the light!
Encyclopedic coverage of sure-fire strategies for maintaining your lawn, sports field, golf course, or park in perfect condition while using less water, fertilizer, mowing, pesticide, and labor! A major strength o the book is the wealth of information presented on management strategies, complete with do-it-yourself instructions for site selection, soil preparation, seed rates and planting, turf establishment, and renovation. Time and cost-saving techniques for effective mowing, thatch control, pest management, water conservation, water management, fertilizer use, stress management, and pest management are presented in a user-friendly manner--complete with helpful checklists, and step-by-step instructions. A vast amount of useful reference material will ensure the success of your maintenance program. No other book covers virtually every aspect of successful turf management. Features: * Covers every aspect of a successful turfgrass maintenance program. * Presents hundreds of cost-saving methods. * Tips to reduce labor. * Simple step-by-step instructions. * Hundreds of photographs and drawings. * Encyclopedic reference material. * Unique turf selection guidelines. * Fundamentals of turfgrass soils.
Efficiency is a crucial concern across computing systems, from the edge to the cloud. Paradoxically, even as the latencies of bottleneck components such as storage and networks have dropped by up to four orders of magnitude, software path lengths have progressively increased due to overhead from the very frameworks that have revolutionized the pace of information technology. Such overhead can be severe enough to overshadow the benefits from switching to new technologies like persistent memory and low latency interconnects. Resource Proportional Software Design for Emerging Systems introduces resource proportional design (RPD) as a principled approach to software component and system development that counters the overhead of deeply layered code without removing flexibility or ease of development. RPD makes resource consumption proportional to situational utility by adapting to diverse emerging needs and technology systems evolution. Highlights: Analysis of run-time bloat in deep software stacks, an under-explored source of power-performance wastage in IT systems Qualitative and quantitative treatment of key dimensions of resource proportionality Code features: Unify and broaden supported but optional features without losing efficiency Technology and systems evolution: Design software to adapt with changing trade-offs as technology evolves Data processing: Design systems to predict which subsets of data processed by an (analytics or ML) application are likely to be useful System wide trade-offs: Address interacting local and global considerations throughout software stacks and hardware including cross-layer co-design involving code, data and systems dimensions, and non-functional requirements such as security and fault tolerance Written from a systems perspective to explore RPD principles, best practices, models and tools in the context of emerging technologies and applications This book is primarily geared towards practitioners with some advanced topics for researchers. The principles shared in the book are expected to be useful for programmers, engineers and researchers interested in ensuring software and systems are optimized for existing and next generation technologies. The authors are from both industry (Bhattacharya and Voigt) and academic (Gopinath) backgrounds.
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