The Student's Guide to VHDLElsevier, 2008. gada 1. jūl. - 528 lappuses The Student's Guide to VHDL is a condensed edition of The Designer's Guide to VHDL, the most widely used textbook on VHDL for digital system modeling. The Student's Guide is targeted as a supplemental reference book for computer organization and digital design courses.Since publication of the first edition of The Student's Guide, the IEEE VHDL and related standards have been revised. The Designer's Guide has been revised to reflect the changes, so it is appropriate that The Student's Guide also be revised. In The Student's Guide to VHDL, 2nd Edition, we have included a design case study illustrating an FPGA-based design flow. The aim is to show how VHDL modeling fits into a design flow, starting from high-level design and proceeding through detailed design and verification, synthesis, FPGA place and route, and final timing verification. Inclusion of the case study helps to better serve the educational market. Currently, most college courses do not formally address the details of design flow. Students may be given informal guidance on how to proceed with lab projects. In many cases, it is left to students to work it out for themselves. The case study in The Student's Guide provides a reference design flow that can be adapted to a variety of lab projects. |
No grāmatas satura
1.5. rezultāts no 94.
x. lappuse
... Integer Numeric Packages Package Summary 307 Operator Overloading Summary 307 Conversion Function Summary 309 298 290 Strength Reduction Function Summary 311 312 315 10.2 Aliases for Non-Data Items 320 Exercises 323 239 261 287 315 11 ...
... Integer Numeric Packages Package Summary 307 Operator Overloading Summary 307 Conversion Function Summary 309 298 290 Strength Reduction Function Summary 311 312 315 10.2 Aliases for Non-Data Items 320 Exercises 323 239 261 287 315 11 ...
xii. lappuse
... Integer Numeric Packages 450 A.6.1 The numeric_bit Package 450 A.6.2 The numeric_std Package 456 A.6.3 The numeric_bit_unsigned Package 457 A.6.4 The numeric_std_unsigned Package 459 B VHDL Syntax 461 B.1 Design File 463 B.2 Library ...
... Integer Numeric Packages 450 A.6.1 The numeric_bit Package 450 A.6.2 The numeric_std Package 456 A.6.3 The numeric_bit_unsigned Package 457 A.6.4 The numeric_std_unsigned Package 459 B VHDL Syntax 461 B.1 Design File 463 B.2 Library ...
12. lappuse
... integer; product : out integer ); end entity multiplier; -------------------------------------------------- architecture mixed of multiplier is signal partial_product, full_product : integer; signal arith_control, result_en, mult_bit ...
... integer; product : out integer ); end entity multiplier; -------------------------------------------------- architecture mixed of multiplier is signal partial_product, full_product : integer; signal arith_control, result_en, mult_bit ...
13. lappuse
Peter J. Ashenden. signal partial_product, full_product : integer; signal arith_control, result_en, mult_bit, mult_load : bit; begin -- mixed arith_unit : entity work.shift_adder(behavior) port map ( addend => multiplicand, augend ...
Peter J. Ashenden. signal partial_product, full_product : integer; signal arith_control, result_en, mult_bit, mult_load : bit; begin -- mixed arith_unit : entity work.shift_adder(behavior) port map ( addend => multiplicand, augend ...
22. lappuse
... integer literals are 23 0 146 Note that 10, for example, is not an integer literal. It is actually a combination of a negation operator and the integer literal 10. Some examples of real literals are 23.1 0.0 3.14159 Both integer and ...
... integer literals are 23 0 146 Note that 10, for example, is not an integer literal. It is actually a combination of a negation operator and the integer literal 10. Some examples of real literals are 23.1 0.0 3.14159 Both integer and ...
Saturs
1 | |
31 | |
65 | |
Chapter 4 Composite Data Types and Operations | 95 |
Chapter 5 Basic Modeling Constructs | 135 |
Chapter 6 Subprograms | 201 |
Chapter 7 Packages and Use Clauses | 239 |
Chapter 8 Resolved Signals | 261 |
Chapter 12 Components and Configurations | 335 |
Chapter 13 Generate Statements | 359 |
Chapter 14 Design for Synthesis | 375 |
System Design Using the Gumnut Core 413 | 413 |
Appendix A Standard Packages | 437 |
Appendix B VHDL Syntax | 461 |
Appendix C Answers to Exercises | 479 |
References | 497 |
Chapter 9 Predefined and Standard Packages | 287 |
Chapter 10 Aliases | 315 |
Chapter 11 Generic Constants | 325 |
Index | 499 |
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actual alias allows alternative applied architecture body array assertion association attribute begin behavioral bit_vector boolean called changes Chapter character choices clause clock complex component condition configuration connected constant constrained contains conversion corresponding count defined delay described determine digit downto driver elements end process entity entity declaration example executed expression false function function function identifier implementation index range indication initial inout input instance instantiation instruction integer label literal logic loop memory natural Note object operand operations output package parameter port map predefined procedure range record refer represent reset resolved result selected shown signal assignment signed simulation specify standard statement std_ulogic string structural subtype syntax rule synthesis tool true unit unsigned variable vector versions VHDL wait width write