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Program Proofs

List Price: $70.00
SKU:
9780262546232
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  • Product Details

    Author:
    K. Rustan M. Leino, Kaleb Leino
    Format:
    Paperback
    Pages:
    496
    Publisher:
    MIT Press (March 7, 2023)
    Language:
    English
    ISBN-13:
    9780262546232
    ISBN-10:
    026254623X
    Weight:
    27.3oz
    Dimensions:
    6.94" x 9" x 0.85"
    File:
    RandomHouse-PRH_Book_Company_PRH_PRT_Onix_delta_active_D20260617T071919_156615723-20260617.xml
    Folder:
    RandomHouse
    List Price:
    $70.00
    Case Pack:
    18
    As low as:
    $53.90
    Publisher Identifier:
    P-RH
    Discount Code:
    A
    QuickShip:
    Yes
    Audience:
    General/trade
    Country of Origin:
    United States
    Pub Discount:
    65
    Imprint:
    The MIT Press
  • Overview

    This comprehensive and highly readable textbook teaches how to formally reason about computer programs using an incremental approach and the verification-aware programming language Dafny.

    Program Proofs shows students what it means to write specifications for programs, what it means for programs to satisfy those specifications, and how to write proofs that connect specifications and programs. Writing with clarity and humor, K. Rustan M. Leino first provides an overview of the basic theory behind reasoning about programs. He then gradually builds up to complex concepts and applications, until students are facing real programs using objects, data structures, and non-trivial recursion. To emphasize the practical nature of program proofs, all material and examples use the verification-aware programming language Dafny, but no previous knowledge of Dafny is assumed.

    • Written in a highly readable and student-friendly style
    • Builds up to complex concepts in an incremental manner 
    • Comprehensively covers how to write proofs and how to specify and verify both functional programs and imperative programs
    • Uses real program text from a real programming language, not psuedo code
    • Features engaging illustrations and hands-on learning exercises