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Chapter 7: Computer Reliability

Ethics for the Information Age Forth Edition by Michael J. Quinn. Chapter 7: Computer Reliability. Chapter Overview. Introduction Data-entry or data-retrieval errors Software and billing errors Notable software system failures Therac-25 Computer simulations Software engineering

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Chapter 7: Computer Reliability

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  1. Ethics for the Information AgeForth Edition by Michael J. Quinn Chapter 7: Computer Reliability

  2. Chapter Overview • Introduction • Data-entry or data-retrieval errors • Software and billing errors • Notable software system failures • Therac-25 • Computer simulations • Software engineering • Software warranties

  3. Introduction • Computer systems are sometimes unreliable • Erroneous information in databases • Misinterpretation of database information (similar names) • Malfunction of embedded systems (fatal errors) • Effects of computer errors • Inconvenience • Bad business decisions • Fatalities

  4. Data-Entry or Data-Retrieval Errors • A computerized system may fail because wrong data entered into it • A computerized system may fail because people incorrectly interpret data they retrieve

  5. Disfranchised Voters • November 2000 general election • Florida disqualified thousands of voters • Reason: People identified as felons • Cause: Incorrect records in voter database • Consequence: May have affected election’s outcome

  6. False Arrests • Sheila Jackson Stossier mistaken for Shirley Jackson • Arrested and spent five days in detention • Roberto Hernandez mistaken for another Roberto Hernandez • Arrested twice and spent 12 days in jail • Terry Dean Rogan arrested after someone stole his identity • Arrested five times, three times at gun point

  7. Position of Privacy Advocates • Number of records is increasing • More erroneous records  more false arrests • Accuracy of crime records more important than ever

  8. Software and Billing Errors • Assume data correctly fed into computerized system • System may still fail if there is an error in its programming

  9. Errors Leading to System Malfunctions • Qwest sends incorrect bills to cell phone customers ($600/minute) • A bill of more than $57,000 for a customer • Spelling and grammar error checkers increased errors (University documents) • BMW on-board computer failure (Thailand finance minister was trapped in his BMW)

  10. Errors Leading to System Failures • Temporarily out-of-control Boeing 777 (Malaysian plane over the Indian ocean-autopilot error) • Japan’s air traffic control system • London International Financial Futures and Options Exchange

  11. Analysis: E-Retailer Posts Wrong Price, Refuses to Deliver • Amazon.com in Britain offered iPaq (handheld computers) for £7 instead of £275 • Orders flooded in • Amazon.com shut down site, refused to deliver unless customers paid true price • Was Amazon.com wrong to refuse to fill the orders?

  12. Notable Software System Failures • Patriot Missile (28 soldiers killed) – insufficient precision in an floating-point variable (system clock) • Ariane 5 ($500 million not insured) – Integer overflow error • AT&T long-distance network (70 million calls couldn’t be made and 60,000 people lost service) • Direct recording electronic voting machines • Therac-25 (3 patients killed out of 6 patients) SW error resulted in overdoses.

  13. Direct Recording Electronic Voting Machines • After problems with 2000 election, Congress passed Help America Vote Act of 2002 • Provided money to states to replace punch card voting systems • Many states used funds to purchase direct recording electronic (DRE) voting machines • Brazil and India have run national elections using DRE voting machines exclusively • In November 2006 1/3 of U.S. voters used DRE voting machines

  14. Issues with DRE Voting Machines • Voting irregularities • Failure to record votes • Overcounting votes • Misrecording votes • Lack of a paper audit trail • Vulnerability to tampering • Source code a trade secret, can’t be examined • Possibility of widespread fraud through malicious programming

  15. Moral Responsibility of theTherac-25 Team • Conditions for moral responsibility • Causal condition: actions (or inactions) caused the harm • Mental condition • Actions (or inactions) intended or willed -OR- • Moral agent is careless, reckless, or negligent • Therac-25 team morally responsible • They constructed the device that caused the harm • They were negligent

  16. Uses of Computer Simulations • Simulations replace physical experiments. Why? • Experiment too expensive or time-consuming • Experiment unethical • Experiment impossible (evolution of the universe) • Examples of uses of simulations: • Model past events (Evolution of the universe) • Understand world around us (Search for Oil) • Predict the future (weather predictions)

  17. Validating Simulations • Erroneous Simulation because of : • Bugs in SW • Model uses SW is flawed • Solutions: • Verification: Does program correctly implement model? • Validation: Does the model accurately represent the real system? • Validation methods • Make prediction, wait to see if it comes true (Car crash) • Predict the present from old data (Weather forecast) • Test credibility with experts and decision makers

  18. Software Engineering • SE is a four steps process: • Specs: determine the functions to be performed • Development: produce SW that meet specs. • Validation: testing the SW • Evolution: Modify SW to meet change requirements

  19. Software Engineering: Specification • Followed SW Crises in 1960s • Specifications of SE: • Determine system requirements • Understand constraints • Determine feasibility (Budget and schedule) • End products • High-level statement of requirements (Summary) • Mock-up of user interface • Low-level requirements statement (Detailed)

  20. Software Engineering: Development • Create high-level design • Discover and resolve mistakes, omissions in specification • CASE tools to support design process • Object-oriented systems have advantages • After detailed design, actual programs written • Result: working software system

  21. Software Engineering: Validation (Testing) • Ensure software satisfies specification • Ensure software meets user’s needs • Challenges to testing software • Noncontinuous responses to changes in input. No identical data set of inputs • Exhaustive testing impossible. Infinite number of different inputs • Testing reveals bugs, but cannot prove none exist • Test modules, then subsystems, then system

  22. Software Quality Is Improving • Standish Group tracks IT projects • Situation in 1994 • 1/3 projects cancelled before completion • 1/2 projects had time and/or cost overruns • 1/6 projects completed on time / on budget • Situation in 2006 • 1/6 projects cancelled • 1/2 projects had time and/or cost overruns • 1/3 projects completed on time / on budget

  23. Shrinkwrap Warranties • Some say you accept software “as is” • Some offer 90-day replacement or money-back guarantee • None accept liability for harm caused by use of software

  24. Moral Responsibility of Software Manufacturers • If vendors were responsible for harmful consequences of defects • Companies would test software more • They would purchase liability insurance • Software would cost more • Start-ups would be affected more than big companies and thus • Less innovation in software industry • Software would be more reliable • Making vendors responsible for harmful consequences of defects may be wrong • Consumers should not have to pay for bug fixes

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