參數(shù)資料
型號: MC68334GVFC16
廠商: MOTOROLA INC
元件分類: 微控制器/微處理器
英文描述: 32-BIT, 16 MHz, MICROCONTROLLER, PQFP132
封裝: PLASTIC, QFP-132
文件頁數(shù): 20/76頁
文件大?。?/td> 444K
代理商: MC68334GVFC16
MC68334
MOTOROLA
MC68334TS/D REV. 1
27
3.4.10 Operand Alignment
The data multiplexer establishes the necessary connections for different combinations of address and
data sizes. The multiplexer takes the two bytes of the 16-bit bus and routes them to their required po-
sitions. Positioning of bytes is determined by the size and address outputs. SIZ1 and SIZ0 indicate the
remaining number of bytes to be transferred during the current bus cycle. The number of bytes trans-
ferred is equal to or less than the size indicated by SIZ1 and SIZ0, depending on port width.
ADDR0 also affects the operation of the data multiplexer. During an operand transfer, ADDR[23:1] in-
dicate the word base address of the portion of the operand to be accessed, and ADDR0 indicates the
byte offset from the base.
3.4.11 Misaligned Operands
CPU32 processor architecture uses a basic operand size of 16 bits. An operand is misaligned when it
overlaps a word boundary. This is determined by the value of ADDR0. When ADDR0 = 0 (an even ad-
dress), the address is on a word and byte boundary. When ADDR0 = 1 (an odd address), the address
is on a byte boundary only. A byte operand is aligned at any address; a word or long-word operand is
misaligned at an odd address. The MCU does not support misaligned operand transfers.
The largest amount of data that can be transferred by a single bus cycle is an aligned word. If the MCU
transfers a long-word operand via a 16-bit port, the most significant operand word is transferred on the
first bus cycle and the least significant operand word on a following bus cycle.
3.4.12 Operand Transfer Cases
The following table summarizes how operands are aligned for various types of transfers. OPn entries
are portions of a requested operand that are read or written during a bus cycle and are defined by SIZ1,
SIZ0, and ADDR0 for that bus cycle.
1. Operands in parentheses are ignored by the CPU32 during read cycles.
2. The CPU32 does not support misaligned word or long-word transfers.
3. Three-byte transfer cases occur only as a result of a long word to byte transfer.
Table 12 Operand Alignment
Transfer Case
SIZ1
SIZ0
ADDR0
DSACK1
DSACK0
DATA
[15:8]
DATA
[7:0]
Byte to 8-Bit Port (Even/Odd)
0
1
X
1
0
OP0
(OP0)1
Byte to 16-Bit Port (Even)
0
1
0
X
OP0
(OP0)
Byte to 16-Bit Port (Odd)
0
1
0
X
(OP0)
OP0
Word to 8-Bit Port (Aligned)
1
0
1
0
OP0
(OP1)
Word to 8-Bit Port (Misaligned)2
1
0
1
0
OP0
(OP0)
Word to 16-Bit Port (Aligned)
1
0
X
OP0
OP1
Word to 16-Bit Port (Misaligned)2
1
0
1
0
X
(OP0)
OP0
3 Byte to 8-Bit Port (Aligned)3
1
0
1
0
OP0
(OP1)
3 Byte to 8-Bit Port (Misaligned)2, 3
1
0
OP0
(OP0)
3 Byte to 16-Bit Port (Aligned)3
1
0
X
OP0
OP1
3 Byte to 16-Bit Port (Misaligned)2, 3
1
0
X
(OP0)
OP0
Long Word to 8-Bit Port (Aligned)
0
1
0
OP0
(OP1)
Long Word to 8-Bit Port (Misaligned)2
1
0
1
0
OP0
(OP0)
Long Word to 16-Bit Port (Aligned)
0
X
OP0
OP1
Long Word to 16-Bit Port (Misaligned)2
1
0
1
0
X
(OP0)
OP0
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