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Minggu, 24 Maret 2013

80X86 IBM PC and Compatible Computers: Assembly Language, Design, and Interfacing Volumes I & II

Book Description
Praised by experts for its clarity and topical breadth, this visually appealing, one-stop source on PCs uses an easy-to-understand, step-by-step approach to teaching the fundamentals of 80x86 assembly language programming and PC architecture. Offering users a fun, hands-on learning experience, it uses the Debug utility to show what action the instruction performs, then provides a sample program to show its application. Reinforcing concepts with numerous examples and review questions, its oversized pages delve into dozens of related subjects, including DOS memory map, BIOS, microprocessor architecture, supporting chips, buses, interfacing techniques, system programming, memory hierarchy, DOS memory management, tables of instruction timings, hard disk characteristics, and more. For learners ready to master PC system programming.

Table of Contents
ASSEMBLY LANGUAGE PROGRAMMING ON THE IBM PC, PS AND COMPATIBLES.
Introduction to Computing.
1. The 80x86 Microprocessor.
2. Assembly Language Programming.
3. Arithmetic and Logic Instructions and Programs.
4. BIOS and DOS Programming in Assembly and C.
5. Macros and the Mouse.
6. Signed Numbers, Strings, and Tables.
7. Modules; Modular and C Programming.
8. 32-Bit Programming for 386 and 486 Machines.
DESIGN AND INTERFACING OF THE IBM PC, PS AND COMPATIBLES.
9. 8088/86 Microprocessors and Supporting Chips.
10. 80286 Microprocessor and Supporting Chips.
11. Memory and Memory Interfacing.
12. I/0, 8255 and Device Interfacing.
13. 8253/54 Timer and Music.
14. Interrupts and the 8259 Chip.
15. Direct Memory Accessing; the 8237 DMA Chip.
16. Video and Video Adapters.
17. Serial Data Communication and the 16550/8250/51 Chips.
18. Keyboard and Printer Interfacing.
19. Floppy Disks, Hard Disks, and Files.
20. The 80x87 Math Coprocessor.
21. 386 Microprocessor: Real vs. Protected Mode.
22. High-Speed Memory Interfacing and Cache.
23. 486, Pentium, Pentium Pro and MMX.
24. MS DOS Structure, TSR, and Device Drivers.
25. MS DOS Memory Management.
26. IC Technology and System Design.
27. ISA, EISA, MCA, Local, and PCI BUS.
28. Programming DOS, BIOS, Hardware with C/C++.

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Kamis, 07 Maret 2013

Microprocessor Theory and Applications with 68000/68020 and Pentium

Book Description
This book presents the fundamental concepts of assembly language programming and system design associated with typical microprocessors, such as the Motorola MC68000/68020 and Intel? Pentium?. It begins with an overview of microprocessors--including an explanation of terms, the evolution of the microprocessor, and typical applications--and goes on to systematically cover:
- Microcomputer architecture
- Microprocessor memory organization
- Microprocessor Input/Output (I/O)
- Microprocessor programming concepts
- Assembly language programming with the 68000
- 68000 hardware and interfacing
- Assembly language programming with the 68020
- 68020 hardware and interfacing
- Assembly language programming with Pentium
- Pentium hardware and interfacing

Table of Contents
1. INTRODUCTION TO MICROPROCESSORS
2. MICROCOMPUTER ARCHITECTURE
3.  MICROPROCESSOR MEMORY ORGANIZATION
4. MICROPROCESSOR INPUT/OUTPUT
5. MICROPROCESSOR PROGRAMMING CONCEPTS
6. ASSEMBLY LANGUAGE PROGRAMMING WITH THE 68000
7.  68000 HARDWARE AND INTERFACING
8. ASSEMBLY LANGUAGE PROGRAMMING WITH THE 68020
9. 68020 HARDWARE AND INTERFACING
10. ASSEMBLY LANGUAGE PROGRAMMING WITH THE PENTIUM: PART 1
11. ASSEMBLY LANGUAGE PROGRAMMING WITH THE PENTIUM: PART 2
12. PENTIUM HARDWARE AND INTERFACING

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Jumat, 28 Desember 2012

32/64-BIT 80 x 86 Assembly Language Architecture by James Leiterman

Introduction:
This book provides a step-by-step understanding of programming Intel and AMD 80x86 processors in assembly language, this book attempts to break through the complexity of programming environments and explains 32-bit and 64-bit 80x86 assembly language programming.

Contents:
Chapter 1 - Introduction
Chapter 2 - Coding Standards
Chapter 3 - Processor Differential Insight
Chapter 4 - Bit Mangling
Chapter 5 - Bit Wrangling
Chapter 6 - Data Conversion
Chapter 7 - Integer Math
Chapter 8 - Floating-Point Anyone?
Chapter 9 - Comparison
Chapter 10 - Branching
Chapter 11 - Branchless
Chapter 12 - Floating-Point Vector Addition and Subtraction
Chapter 13 - FP Vector Multiplication and Division
Chapter 14 - Floating-Point Deux
Chapter 15 - Binary-Coded Decimal (BCD)
Chapter 16 - What CPUID?
Chapter 17 - PC I/O
Chapter 18 - System
Chapter 19 - Gfx 'R' Asm
Chapter 20 - MASM vs. NASM vs. TASM vs. WASM
Chapter 21 - Debugging Functions
Chapter 22 - Epilogue
Appendix A - Data Structure Definitions
Appendix B - Mnemonics
Appendix C - Reg/Mem Mapping

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