INSTRUCTION DESCRIPTIONS
MOTOROLA
INSTRUCTION SET DETAILS
A - 193
If the opcode-operand portion of the instruction specifies a given source or destination
register, that same register or portion of that register may be used as a source S1 and/or
S2 in the parallel data bus move operation. This allows data to be moved in the same
instruction in which it is being used as a source operand by a data ALU operation. That
is, duplicate sources are allowed within the same instruction. Note that S1 and S2
may specify the same register.
Class I Example:
:
ADDL B,A B,X1 Y:(R6)–N6,B
;2
∗
A+B
➞
A, update X1,B and R6
:
Explanation of the Class I Example: Prior to execution, the 56-bit B accumulator con-
tains the value $80:123456:789ABC, the 24-bit X1 register contains the value $000000,
the 16-bit R6 address register contains the value $2020, the 16-bit N6 address offset
register contains the value $0020 and the 24-bit Y memory location Y:$2020 contains the
value $654321. The execution of the parallel move portion of the instruction, B,X1
Y:(R6)–N6,B, moves the 24-bit limited negative saturation constant $800000 into the X1
register since the signed integer portion of the B accumulator was in use, uses the value
in the 16-bit R6 address register to move the 24-bit value in the Y memory location
Y:$2020 into the 56-bit B accumulator with automatic sign extension of the upper portion
of the accumulator (B2) and automatic zeroing of the lower portion of the accumulator
(B0), and finally uses the contents of the 16-bit N6 address offset register to update the
value in the 16-bit R6 address register. The contents of the N6 address offset register
are not affected.
R:Y
Register and Y Memory Data Move
R:Y
Before Execution
After Execution
B
B
$80:123456:789ABC
$00:654321:000000
X1
X1
$000000
$800000
R6
R6
$2020
$2000
N6
N6
$0020
$0020
Y:$2020
Y:$2020
$654321
$654321
Summary of Contents for DSP56K
Page 12: ...xii LIST of TABLES MOTOROLA List of Tables Continued Table Page Number Title Number ...
Page 13: ...MOTOROLA DSP56K FAMILY INTRODUCTION 1 1 SECTION 1 DSP56K FAMILY INTRODUCTION ...
Page 31: ...MOTOROLA DATA ARITHMETIC LOGIC UNIT 3 1 SECTION 3 DATA ARITHMETIC LOGIC UNIT ...
Page 50: ...DATA ALU SUMMARY 3 20 DATA ARITHMETIC LOGIC UNIT MOTOROLA ...
Page 51: ...MOTOROLA ADDRESS GENERATION UNIT 4 1 SECTION 4 ADDRESS GENERATION UNIT ...
Page 77: ...MOTOROLA PROGRAM CONTROL UNIT 5 1 SECTION 5 PROGRAM CONTROL UNIT ...
Page 124: ...INSTRUCTION GROUPS 6 30 INSTRUCTION SET INTRODUCTION MOTOROLA ...
Page 125: ...MOTOROLA PROCESSING STATES 7 1 SECTION 7 PROCESSING STATES STOP WAIT EXCEPTION NORMAL RESET ...
Page 167: ...STOP PROCESSING STATE MOTOROLA PROCESSING STATES 7 43 ...
Page 168: ...STOP PROCESSING STATE 7 44 PROCESSING STATES MOTOROLA ...
Page 169: ...MOTOROLA PORT A 8 1 SECTION 8 PORT A ...
Page 176: ...PORT A INTERFACE 8 8 PORT A MOTOROLA ...
Page 177: ...MOTOROLA PLL CLOCK OSCILLATOR 9 1 SECTION 9 PLL CLOCK OSCILLATOR x x d Φ VCO ...
Page 191: ...10 2 ON CHIP EMULATION OnCE MOTOROLA SECTION 10 ON CHIP EMULATION OnCE ...
Page 218: ...USING THE OnCE MOTOROLA ON CHIP EMULATION OnCE 10 29 ...
Page 604: ...INSTRUCTION ENCODING A 338 INSTRUCTION SET DETAILS MOTOROLA ...
Page 605: ...MOTOROLA BENCHMARK PROGRAMS B 1 APPENDIX B BENCHMARK PROGRAMS T T T T T P1 P3 P2 P4 T T T ...
Page 609: ...BENCHMARK PROGRAMS MOTOROLA BENCHMARK PROGRAMS B 5 ...
Page 611: ...BENCHMARK PROGRAMS MOTOROLA BENCHMARK PROGRAMS B 7 ...
Page 613: ...BENCHMARK PROGRAMS MOTOROLA BENCHMARK PROGRAMS B 9 ...
Page 615: ...BENCHMARK PROGRAMS MOTOROLA BENCHMARK PROGRAMS B 11 ...