MC68040RC40V Freescale Semiconductor, MC68040RC40V Datasheet - Page 297
MC68040RC40V
Manufacturer Part Number
MC68040RC40V
Description
IC MICROPROCESSOR 32BIT 179-PGA
Manufacturer
Freescale Semiconductor
Datasheet
1.MC68EC040FE33A.pdf
(442 pages)
Specifications of MC68040RC40V
Processor Type
M680x0 32-Bit
Speed
40MHz
Voltage
5V
Mounting Type
Surface Mount
Package / Case
179-PGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
- Current page: 297 of 442
- Download datasheet (4Mb)
The separation of calculation and execution in the <ea> calculate and execute stages
allows instruction reordering during compile time to take advantage of potential instruction
overlap. Figure 10-2 illustrates this overlap for an instruction requiring multiple clocks in
the execute stage and with an instruction with a long lead time. The execution time for
LEA (3
execution.
When the LEA (A) instruction precedes the ABCD (B) instruction, the execution stalls
during C4–C6 (equivalent to the LEA lead time) while the instruction completes in the
<ea> calculate and <ea> fetch stages. The resulting execution time for the LEA (A) and
ABCD (B) sequence is eight clocks.
However, if the LEA (C) instruction follows the ABCD (B) instruction, the LEA stalls in the
<ea> fetch instead, during C9–C11. The LEA then executes in a single clock in the
execution stage. The resulting execution time for the LEA (C) and ABCD (B) sequence is
five clocks.
10-6
L
+ 1) indicates that the instruction can be stalled three clocks without affecting
<ea> CALCULATE
NOTE: *Possible stalls in this stage.
WRITE-BACK
<ea> FETCH
EXECUTE
Figure 10-2. Instruction Overlap with Multiple Clocks
LABEL
P1
N1
N2
C1
P1
A
B
C
Freescale Semiconductor, Inc.
For More Information On This Product,
C2
P1
A
TRAPF
LEA
ABCD
LEA
TRAPF
TRAPF
INSTRUCTION
C3
P1
A
A
M68040 USER’S MANUAL
Go to: www.freescale.com
C4
$24(PC),A1
D0,D1
$24(PC),A1
A L
A
A
C5
A L
A
A
CALCULATE
C6
A L
B
A
<ea>
1
4
1
4
1
1
C7
C
B
A
C8
EXECUTE
C
C
B
3 L + 1
3 L + 1
1
3
1
1
C L1
C9
C
B
C10
C L2
C
B
C11
C L3
N1
C*
C12
N2
N1
C
C13
N2
N1
MOTOROLA
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