Ada for Software Engineers

Ada for Software Engineers

Author: Mordechai Ben-Ari

Publisher: Springer Science & Business Media

Published: 2009-03-31

Total Pages: 511

ISBN-13: 1848823142

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Ada is the programming language of choice for high integrity software systems and is used extensively in industries such as transportation and aerospace. Special features of the book include: Object-oriented programming, concurrency, and embedded and real-time systems are emphasized. Ada for Software Engineers explains the language concepts and the terminology of the standards document, the Ada Reference Manual (ARM). Extracts from the ARM are used throughtout and there are extensive cross references to the ARM. A comprehensive glossary and technical quizzes assist the reader in developing the ability to use the ARM as a practical reference. Comparisons with familiar languages like C and Java are given to facilitate the transition to Ada. The features of Ada 2005 are used routinely, but they are carefully identified, so that programmers using Ada 95 will also find the textbook useful. The companion website contains the full source code of nearly 100 case studies and 100 technical quizzes.


Ada for Software Engineers

Ada for Software Engineers

Author: Mordechai Ben-Ari

Publisher: Springer

Published: 2009-08-29

Total Pages: 510

ISBN-13: 9781848823150

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Ada is the programming language of choice for high integrity software systems and is used extensively in industries such as transportation and aerospace. Special features of the book include: Object-oriented programming, concurrency, and embedded and real-time systems are emphasized. Ada for Software Engineers explains the language concepts and the terminology of the standards document, the Ada Reference Manual (ARM). Extracts from the ARM are used throughtout and there are extensive cross references to the ARM. A comprehensive glossary and technical quizzes assist the reader in developing the ability to use the ARM as a practical reference. Comparisons with familiar languages like C and Java are given to facilitate the transition to Ada. The features of Ada 2005 are used routinely, but they are carefully identified, so that programmers using Ada 95 will also find the textbook useful. The companion website contains the full source code of nearly 100 case studies and 100 technical quizzes.


Ada

Ada

Author: L. Collingbourne

Publisher: IOS Press

Published: 1993

Total Pages: 228

ISBN-13: 9789051991420

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Reports about recent developments of ADA, especially in the UK. It contains an introduction to ADA 9X and reports about the improved support for object-oriented programming and the tasking model. It also discusses high-integrity applications, safety critical software development and the mapping of ADA projects on the 2157A standard.


High-Integrity System Specification and Design

High-Integrity System Specification and Design

Author: Jonathan P. Bowen

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 698

ISBN-13: 1447134311

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Errata, detected in Taylor's Logarithms. London: 4to, 1792. [sic] 14.18.3 6 Kk Co-sine of 3398 3298 - Nautical Almanac (1832) In the list of ERRATA detected in Taylor's Logarithms, for cos. 4° 18'3", read cos. 14° 18'2". - Nautical Almanac (1833) ERRATUM ofthe ERRATUM ofthe ERRATA of TAYLOR'S Logarithms. For cos. 4° 18'3", read cos. 14° 18' 3". - Nautical Almanac (1836) In the 1820s, an Englishman named Charles Babbage designed and partly built a calculating machine originally intended for use in deriving and printing logarithmic and other tables used in the shipping industry. At that time, such tables were often inaccurate, copied carelessly, and had been instrumental in causing a number of maritime disasters. Babbage's machine, called a 'Difference Engine' because it performed its cal culations using the principle of partial differences, was intended to substantially reduce the number of errors made by humans calculating the tables. Babbage had also designed (but never built) a forerunner of the modern printer, which would also reduce the number of errors admitted during the transcription of the results. Nowadays, a system implemented to perform the function of Babbage's engine would be classed as safety-critical. That is, the failure of the system to produce correct results could result in the loss of human life, mass destruction of property (in the form of ships and cargo) as well as financial losses and loss of competitive advantage for the shipping firm.


Programming in Ada 2005

Programming in Ada 2005

Author: John Barnes

Publisher: Addison Wesley Publishing Company

Published: 2006

Total Pages: 856

ISBN-13:

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'Programming with Ada 2005' is the definitive text and reference for programmers and students alike. This work is illustrated with programs highlighting the power of object-oriented programming and the security of a modern software engineering language


Programming in Ada 2012

Programming in Ada 2012

Author: John Barnes

Publisher: Cambridge University Press

Published: 2014-06-19

Total Pages: 975

ISBN-13: 110742481X

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Ada is the language of choice for the majority of programmers involved in writing safety-critical and high-integrity software. Previous editions of John Barnes' books established themselves as the definitive references for earlier versions of Ada. With the release of the latest ISO standard, Ada 2012, this new book will become recognised as the go-to resource for those wishing to learn the language or to program in it.


High Integrity Ada

High Integrity Ada

Author: John Gilbert Presslie Barnes

Publisher: Addison-Wesley Professional

Published: 1997

Total Pages: 392

ISBN-13:

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This pack introduces the SPARK language and its associated tools and teaches the principles of writing safety-critical software using SPARK, a subset of the Ada 95 language. SPARK was specifically developed to serve industries developing high-integrity, safety-critical software with a language and associated toolset which increase the likelihood of the program behaving as intended.


Building High Integrity Applications with SPARK

Building High Integrity Applications with SPARK

Author: John W. McCormick

Publisher: Cambridge University Press

Published: 2015-08-31

Total Pages: 383

ISBN-13: 1316368386

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Software is pervasive in our lives. We are accustomed to dealing with the failures of much of that software - restarting an application is a very familiar solution. Such solutions are unacceptable when the software controls our cars, airplanes and medical devices or manages our private information. These applications must run without error. SPARK provides a means, based on mathematical proof, to guarantee that a program has no errors. SPARK is a formally defined programming language and a set of verification tools specifically designed to support the development of software used in high integrity applications. Using SPARK, developers can formally verify properties of their code such as information flow, freedom from runtime errors, functional correctness, security properties and safety properties. Written by two SPARK experts, this is the first introduction to the just-released 2014 version. It will help students and developers alike master the basic concepts for building systems with SPARK.


High Integrity Software

High Integrity Software

Author: Victor L. Winter

Publisher: Springer Science & Business Media

Published: 2012-12-06

Total Pages: 333

ISBN-13: 146151391X

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The second half of the twentieth century has witnessed remarkable advances in technology. The unquestioned leader in this race has been computer technology. Even the most modest personal computers today have computing power that would have astounded the leading technol ogists a few decades earlier, and what's more, similar advances are pre dicted for many years to come. Looking towards the future, it has been conservatively estimated that in 2047 computers could easily be 100,000 times more powerful than they were in 1997 (Moore's law [Moore] would lead to an increase on the order of around 10 billion) [Bell]. Because of its enormous capability, computer technology is becoming pervasive across the technology spectrum. Nowadays it is not surpris ing to discover that very common household gadgets like your toaster contain computer technology. Televisions, microwave ovens, and even electric shavers contain software. And what's more, the use of computer technology has been estimated to double every two years [Gibbs]. In order to keep up with the growing technology demands and to fully utilize the ever more powerful computing platforms, software projects have become more and more ambitious. This has lead to software systems becoming dominant forces in system functionality. Further more, the ambition to realize significant portions of a system's function ality through software has extended into the high consequence realm. Presently, software controls many critical functions in (1) airplanes, (2) electronic commerce, (3) space-bound systems, (4) medical systems, and (5) various transportation systems such as automobiles and trains.