Fundamentals of software engineering:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Upper Saddle River, NJ
Prentice Hall
2003
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Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XX, 604 S. Ill., graph. Darst. |
ISBN: | 0133056996 013099183X |
Internformat
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245 | 1 | 0 | |a Fundamentals of software engineering |c Carlo Ghezzi ; Mehdi Jazayeri ; Dino Mandrioli |
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Datensatz im Suchindex
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adam_text | UNOAEFTISNTOLS OF SOFTWARE ENGINEERING SECOND EDITION CARLO GHEZZI
POLITECNICO DI MILANO MEHDI JAZAYERI TECHNISCHE UNIVERSITAET WIEN DINO
MANDRIOLI POLITECNICO DI MILANO PRENTICE HALL PEARSON EDUCATION, INC.
UPPER SADDLE RIVER, NEW JERSEY 07458 CONTENTS PREFACE TO THE SECOND
EDITION XIII THE ROLE OF OBJECT ORIENTATION XIV THE PURPOSE OF CASE
STUDIES XIV INSTRUCTOR RESOURCES XV PREFACE TO THE FIRST EDITION XVII
AUDIENCE XVIII PREREQUISITES XVIII ORGANIZATION AND CONTENT XVIII
EXERCISES XIX CASE STUDIES XIX LABORATORY COURSE XIX READING GRAPH X
ACKNOWLEDGMENTS X CHAPTER 1 SOFTWARE ENGINEERING: A PREVIEW 1 1.1 THE
ROLE OF SOFTWARE ENGINEERING IN SYSTEM DESIGN 2 1.2 A SHORTENED HISTORY
OF SOFTWARE ENGINEERING 3 1.3 THE ROLE OF THE SOFTWARE ENGINEER 5 1.4
THE SOFTWARE LIFE CYCLE 6 1.5 THE RELATIONSHIP OF SOFTWARE ENGINEERING
TO OTHER AREAS OF COMPUTER SCIENCE 8 1.5.1 PROGRAMMING LANGUAGES 9 1.5.2
OPERATING SYSTEMS 10 1.5.3 DATA BASES 10 1.5.4 ARTIFICIAL INTELLIGENCE
11 1.5.5 THEORETICAL MODELS 12 1.6 THE RELATIONSHIP OF SOFTWARE
ENGINEERING TO OTHER DISCIPLINES 12 1.6.1 MANAGEMENT SCIENCE 13 1.6.2
SYSTEMS ENGINEERING 13 1.7 CONCLUDING REMARKS 13 BIBLIOGRAPHIE NOTES 14
V VI CONTENTS CHAPTER 2 SOFTWARE: ITS NATURE AND QUALITIES 15 2.1
CLASSIFICATION OF SOFTWARE QUALITIES 16 2.1.1 EXTERNAL VERSUS INTERNAL
QUALITIES 16 2.1.2 PRODUCT AND PROCESS QUALITIES 16 2.2 REPRESENTATIVE
QUALITIES 17 2.2.1 CORRECTNESS, RELIABILITY, AND ROBUSTNESS 17 2.2.2
PERFORMANCE 20 2.2.3 USABILITY 22 2.2.4 VERIFIABILITY 23 2.2.5
MAINTAINABILITY 23 2.2.6 REUSABILITY 26 2.2.7 PORTABILITY 28 2.2.8
UNDERSTANDABILITY 28 2.2.9 INTEROPERABILITY 29 2.2.10 PRODUCTIVITY 30
2.2.11 TIMELINESS 30 2.2.12 VISIBILITY 32 2.3 QUALITY REQUIREMENTS IN
DIFFERENT APPLICATION AREAS 33 2.3.1 INFORMATION SYSTEMS 33 2.3.2
REAL-TIME SYSTEMS 34 2.3.3 DISTRIBUTED SYSTEMS 36 2.3.4 EMBEDDED SYSTEMS
36 2.4 MEASUREMENT OF QUALITY 37 2.5 CONCLUDING REMARKS 38 FURTHER
EXERCISES 38 HINTS AND SKETCHY SOLUTIONS 39 BIBLIOGRAPHIE NOTES 39
CHAPTER 3 SOFTWARE ENGINEERING PRINCIPLES. 41 3.1 RIGOR AND FORMALITY 42
3.2 SEPARATION OF CONCERNS 44 3.3 MODULARITY 47 3.4 ABSTRACTION 49 3.5
ANTICIPATION OF CHANGE 50 3.6 GENERALITY 52 3.7 INCREMENTALITY 53 3.8
TWO CASE STUDIES ILLUSTRATING SOFTWARE ENGINEERING PRINCIPLES 54 3.8.1
APPLICATION OF SOFTWARE ENGINEERING PRINCIPLES TO COMPILER CONSTRUCTION
54 3.8.2 A CASE STUDY IN SYSTEM ENGINEERING 59 3.9 CONCLUDING REMARKS 64
FURTHER EXERCISES 65 CONTENTS VII HINTS AND SKETCHY SOLUTIONS 65
BIBLIOGRAPHIE NOTES 66 CHAPTER 4 DESIGN AND SOFTWARE ARCHITECTURE 67 4.1
THE SOFTWARE DESIGN ACTIVITY AND ITS OBJECTIVES 70 4.1.1 DESIGN FOR
CHANGE 72 4.1.2 PRODUCT FAMILIES 76 4.2 MODULARIZATION TECHNIQUES 78
4.2.1 THE MODULE STRUCTURE AND ITS REPRESENTATION 79 4.2.2 INTERFACE,
IMPLEMENTATION, AND INFORMATION HIDING 86 4.2.3 DESIGN NOTATIONS 93
4.2.4 CATEGORIES OF MODULES 100 4.2.5 SOME SPECIFIC TECHNIQUES FOR
DESIGN FOR CHANGE 108 4.2.6 STEPWISE REFINEMENT 111 4.2.7 TOP-DOWN
VERSUS BOTTOM-UP DESIGN 117 4.3 HANDLING ANOMALIES 118 4.4 A CASE STUDY
IN DESIGN 121 4.5 CONCURRENT SOFTWARE 124 4.5.1 SHARED DATA 124 4.5.2
REAL-TIME SOFTWARE 132 4.5.3 DISTRIBUTED SOFTWARE 134 4.6
OBJECT-ORIENTED DESIGN 139 4.6.1 GENERALIZATION AND SPECIALIZATION 140
4.6.2 ASSOCIATIONS 143 4.6.3 AGGREGATION 145 4.6.4 MORE ON UML CLASS
DIAGRAMS 146 4.7 ARCHITECTURE AND COMPONENTS 146 4.7.1 STANDARD
ARCHITECTURES 147 4.7.2 SOFTWARE COMPONENTS 149 4.7.3 ARCHITECTURE AS
FRAMEWORK FOR COMPONENT INTEGRATION 152 4.7.4 ARCHITECTURES FOR
DISTRIBUTED SYSTEMS 153 4.8 CONCLUDING REMARKS 154 FURTHER EXERCISES 156
HINTS AND SKETCHY SOLUTIONS 158 BIBLIOGRAPHIE NOTES 159 CHAPTER 5
SPECIFICATION 161 5.1 THE USES OF SPECIFICATIONS 162 5.2 SPECIFICATION
QUALITIES 165 5.3 CLASSIFICATION OF SPECIFICATION STYLES 167 5.4
VERIFICATION OF SPECIFICATIONS 170 5.5 OPERATIONAL SPECIFICATIONS 171
5.5.1 DATA FLOW DIAGRAMS: SPECIFYING FUNCTIONS OF INFORMATION SYSTEMS
171 VIII CONTENTS 5.5.2 UML DIAGRAMS FOR SPECIFYING BEHAVIORS 177 5.5.3
FINITE STATE MACHINES: DESCRIBING CONTROL FLOW 179 5.5.4 PETRI NETS:
SPECIFYING ASYNCHRONOUS SYSTEMS 185 5.6 DESCRIPTIVE SPECIFICATIONS 210
5.6.1 ENTITY-RELATIONSHIP DIAGRAMS 210 5.6.2 LOGIC SPECIFICATIONS 213
5.6.3 ALGEBRAIC SPECIFICATIONS 229 5.7 BUILDING AND USING SPECIFICATIONS
IN PRACTICE 236 5.7.1 REQUIREMENTS FOR SPECIFICATION NOTATIONS 236 5.7.2
BUILDING MODULAR SPECIFICATIONS 240 5.7.3 SPECIFICATIONS FOR THE END
USER 257 CONCLUDING REMARKS 258 FURTHER EXERCISES 259 HINTS AND SKETCHY
SOLUTIONS 262 BIBLIOGRAPHIE NOTES 266 CHAPTER 6 VERIFICATION 269 6.1
GOALS AND REQUIREMENTS OF VERIFICATION 270 6.1.1 EVERYTHING MUST BE
VERIFIED 271 6.1.2 THE RESULTS OF VERIFICATION MAY NOT BE BINARY 271
6.1.3 VERIFICATION MAY BE OBJECTIVE ORSUBJECTIVE 272 6.1.4 EVEN IMPLICIT
QUALITIES MUST BE VERIFIED 273 6.2 APPROACHES TO VERIFICATION 274 6.3
TESTING 274 6.3.1 GOALS FOR TESTING 275 6.3.2 THEORETICAL FOUNDATIONS OF
TESTING 277 6.3.3 EMPIRICAL TESTING PRINCIPLES 280 6.3.4 TESTING IN THE
SMALL 282 6.3.5 TESTING IN THE LARGE 302 6.3.6 SEPARATE CONCERNS IN THE
TESTING ACTIVITY 312 6.3.7 TESTING CONCURRENT AND REAL-TIME SYSTEMS 313
6.4 ANALYSIS 316 6.4.1 INFORMAL ANALYSIS TECHNIQUES 317 6.4.2
CORRECTNESS PROOFS 320 6.5 SYMBOLIC EXECUTION 337 6.5.1 BASIC CONCEPTS
OF SYMBOLIC EXECUTION 339 6.5.2 PROGRAMS WITH ARRAYS 342 6.5.3 THE USE
OF SYMBOLIC EXECUTION IN TESTING 345 6.6 MODEL CHECKING 347 6.7 PUTTING
IT ALL TOGETHER 349 6.8 DEBUGGING 351 6.9 VERIFYING OTHER SOFTWARE
PROPERTIES 355 6.9.1 VERIFYING PERFORMANCE 356 CONTENTS IX 6.9.2
VERIFYING RELIABILITY 356 6.9.3 VERIFYING SUBJECTIVE QUALITIES 360
CONCLUDING REMARKS 371 FURTHER EXERCISES 372 HINTS AND SKETCHY SOLUTIONS
378 BIBLIOGRAPHIE NOTES 381 CHAPTER 7 THE SOFTWARE PRODUCTION PROCESS
385 7.1 WHAT IS A SOFTWARE PROCESS MODEL? 386 7.2 WHY ARE SOFTWARE
PROCESS MODELS IMPORTANT? 388 7.3 THE MAIN ACTIVITIES OF SOFTWARE
PRODUCTION 391 7.3.1 FEASIBILITY STUDY 391 7.3.2 ELICITING,
UNDERSTANDING, AND SPECIFYING REQUIREMENTS 392 7.3.3 DEFINITION OF THE
SOFTWARE ARCHITECTURE AND DETAILED DESIGN 399 7.3.4 CODING AND MODULE
TESTING 399 7.3.5 INTEGRATION AND SYSTEM TESTING 400 7.3.6 DELIVERY,
DEPLOYMENT, AND MAINTENANCE 400 7.3.7 OTHER ACTIVITIES 401 7.4 AN
OVERVIEW OF SOFTWARE PROCESS MODELS 403 7.4.1 WATERFALL MODELS 403 7.4.2
EVOLUTIONARY MODELS 410 7.4.3 TRANSFORMATION MODEL 413 7.4.4 SPIRAL
MODEL 416 7.4.5 AN ASSESSMENT OF PROCESS MODELS 417 7.5 DEALING WITH
LEGACY SOFTWARE 420 7.6 CASE STUDIES 421 7.6.1 CASE STUDY: A TELEPHONE
SWITCHING SYSTEM 421 7.6.2 CASE STUDY: A BUDGET CONTROL SYSTEM 426 7.6.3
CASE STUDY: THE MICROSOFT SYNCHRONIZE AND STABILIZE PROCESS 430 7.6.4
CASE STUDY: THE OPEN SOURCE APPROACH 431 7.7 ORGANIZING THE PROCESS 433
7.7.1 STRUCTURED ANALYSIS/STRUCTURED DESIGN 434 7.7.2 JACKSON S SYSTEM
DEVELOPMENT AND STRUCTURED PROGRAMMING 439 7.7.3 THE UNIFIED SOFTWARE
DEVELOPMENT PROCESS 444 7.8 ORGANIZING ARTIFACTS: CONFIGURATION
MANAGEMENT 447 7.9 SOFTWARE STANDARDS 451 7.10 CONCLUDING REMARKS 451
FURTHER EXERCISES 452 HINTS AND SKETCHY SOLUTIONS 453 BIBLIOGRAPHIE
NOTES 454 CHAPTER 8 MANAGEMENT OF SOFTWARE ENGINEERING 457 8.1
MANAGEMENT FUNCTIONS 459 X CONTENTS 8.2 PROJECT PLANNING 460 8.2.1
SOFTWARE PRODUCTIVITY 462 8.2.2 PEOPLE AND PRODUCTIVITY 469 8.2.3 COST
ESTIMATION 469 8.3 PROJECT CONTROL 476 8.3.1 WORK BREAKDOWN STRUCTURES
477 8.3.2 GANTT CHARTS 478 8.3.3 PERT CHARTS 479 8.3.4 DEALING WITH
DEVIATIONS FROM THE PLAN 482 8.4 ORGANIZATION 483 8.4.1
CENTRALIZED-CONTROL TEAM ORGANIZATION 486 8.4.2 DECENTRALIZED-CONTROL
TEAM ORGANIZATION 487 8.4.3 MIXED-CONTROL TEAM ORGANIZATION 488 8.4.4 AN
ASSESSMENT OFTEAM ORGANIZATIONS 489 8.5 RISK MANAGEMENT 490 8.5.1
TYPICAL MANAGEMENT RISKS IN SOFTWARE ENGINEERING 491 8.6 CAPABILITY
MATURITY MODEL 492 8.7 CONCLUDING REMARKS 495 FURTHER EXERCISES 497
HINTS AND SKETCHY SOLUTIONS 498 BIBLIOGRAPHIE NOTES 499 CHAPTER 9
SOFTWARE ENGINEERING TOOLS AND ENVIRONMENTS 501 9.1 HISTORICAL EVOLUTION
OF TOOLS AND ENVIRONMENTS 502 9.2 DIMENSIONS FOR COMPARING SOFTWARETOOLS
503 9.3 REPRESENTATIVE TOOLS 507 9.3.1 EDITORS 507 9.3.2 LINKERS 508
9.3.3 INTERPRETERS 508 9.3.4 CODE GENERATORS 509 9.3.5 DEBUGGERS 510
9.3.6 TOOLS USED IN SOFTWARE TESTING 511 9.3.7 STATIC ANALYZERS 512
9.3.8 GRAPHICAL USER INTERFACE TOOLS 514 9.3.9 CONFIGURATION MANAGEMENT
TOOLS 516 9.3.10 TRACKING TOOLS 520 9.3.11 REVERSE AND REENGINEERING
TOOLS 521 9.3.12 PROCESS SUPPORT TOOLS 522 9.3.13 MANAGEMENT TOOLS 522
9.4 TOOL INTEGRATION 523 9.5 FORCES INFLUENCING THE EVOLUTION OF TOOLS
524 9.6 CONCLUDING REMARKS 525 FURTHER EXERCISES 525 HINTS AND SKETCHY
SOLUTIONS 526 BIBLIOGRAPHIE NOTES 526 CONTENTS XI CHAPTER10 EPILOG 10.1
10.2 10.3 10.4 UE THE FUTURE ETHICS AND SOCIAL RESPONSIBILITY SOFTWARE
ENGINEERING CODE OF ETHICS CONCLUDING REMARKS BIBLIOGRAPHIE NOTES 529
529 532 533 534 534 APPENDIX 536 CASE STUDIES CASE STUDY A: AUTOMATING A
LAW OFFICE 536 A.L ECONOMIC AND FINANCIAL PLANNING 538 A.2 TECHNICAL
PLANNING AND MANAGEMENT 538 A.3 PROJECT MONITORING 540 A.4 INITIAL
DELIVERY 540 A.5 PARTIAL RECOVERY 541 CASE STUDY B: BUILDING A FAMILY OF
COMPILERS 541 B.L INITIAL PRODUCT PLANNING 541 B.2 ECONOMIC AND
FINANCIAL PLANNING 542 B.3 TECHNICAL PLANNING AND MANAGEMENT 542 B.4
EARLY DEVELOPMENT PHASES 543 B.5 PROJECT MONITORING 543 B.6 PROJECT
REEXAMINATION, REVIVAL, AND GOAL SETTING 544 B.7 ASSIGNMENT OF
RESPONSIBILITY 545 B.8 STEADY PROGRESS AND RELEASE OF THE PRODUCT 546
B.9 PRODUCT DISTRIBUTION 546 B.10 REMARKS 546 CASE STUDY C: INCREMENTAL
DELIVERY 549 CASE STUDY D. APPLYING FORMAL METHODS IN INDUSTRY 550 D.L
EDUCATION AND TRAINING 551 D.2 REQUIREMENTS SPECIFICATION 552 D.3
REQUIREMENTS VALIDATION AND VERIFICATION PLANNING 553 D.4 DESIGN,
IMPLEMENTATION, AND VERIFICATION 555 D.5 OVERALL EVALUATION AND
ASSESSMENT 555 D.6 THE IMPACT OF THE PROJECT ON COMPANY S STRATEGY 557
CONCLUDING REMARKS 558 BIBLIOGRAPHIE NOTES 559 BIBLIOGRAPHY 560 INDEX
589
|
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ctrlnum | (OCoLC)49926891 (DE-599)BVBBV014521986 |
dewey-full | 005.1 |
dewey-hundreds | 000 - Computer science, information, general works |
dewey-ones | 005 - Computer programming, programs, data, security |
dewey-raw | 005.1 |
dewey-search | 005.1 |
dewey-sort | 15.1 |
dewey-tens | 000 - Computer science, information, general works |
discipline | Informatik |
edition | 2. ed. |
format | Book |
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language | English |
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spelling | Ghezzi, Carlo Verfasser aut Fundamentals of software engineering Carlo Ghezzi ; Mehdi Jazayeri ; Dino Mandrioli 2. ed. Upper Saddle River, NJ Prentice Hall 2003 XX, 604 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Génie logiciel Génie logiciel rasuqam Programmatuurtechniek gtt Software engineering Software Engineering (DE-588)4116521-4 gnd rswk-swf 1\p (DE-588)4123623-3 Lehrbuch gnd-content Software Engineering (DE-588)4116521-4 s DE-604 Jazayeri, Mehdi Sonstige oth Mandrioli, Dino Sonstige oth GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009887130&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Ghezzi, Carlo Fundamentals of software engineering Génie logiciel Génie logiciel rasuqam Programmatuurtechniek gtt Software engineering Software Engineering (DE-588)4116521-4 gnd |
subject_GND | (DE-588)4116521-4 (DE-588)4123623-3 |
title | Fundamentals of software engineering |
title_auth | Fundamentals of software engineering |
title_exact_search | Fundamentals of software engineering |
title_full | Fundamentals of software engineering Carlo Ghezzi ; Mehdi Jazayeri ; Dino Mandrioli |
title_fullStr | Fundamentals of software engineering Carlo Ghezzi ; Mehdi Jazayeri ; Dino Mandrioli |
title_full_unstemmed | Fundamentals of software engineering Carlo Ghezzi ; Mehdi Jazayeri ; Dino Mandrioli |
title_short | Fundamentals of software engineering |
title_sort | fundamentals of software engineering |
topic | Génie logiciel Génie logiciel rasuqam Programmatuurtechniek gtt Software engineering Software Engineering (DE-588)4116521-4 gnd |
topic_facet | Génie logiciel Programmatuurtechniek Software engineering Software Engineering Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009887130&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT ghezzicarlo fundamentalsofsoftwareengineering AT jazayerimehdi fundamentalsofsoftwareengineering AT mandriolidino fundamentalsofsoftwareengineering |