Datasheet
5-44 MCF5307 User’s Manual
Processor Status, DDATA Definition
cmp.l <ea>y,Rx PST = 0x1, {PST = 0xB, DD = source operand}
cmpi.l #imm,Dx PST = 0x1
divs.l <ea>y,Dx PST = 0x1, {PST = 0xB, DD = source operand}
divs.w <ea>y,Dx PST = 0x1, {PST = 0x9, DD = source operand}
divu.l <ea>y,Dx PST = 0x1, {PST = 0xB, DD = source operand}
divu.w <ea>y,Dx PST = 0x1, {PST = 0x9, DD = source operand}
eor.l Dy,<ea>x PST = 0x1, {PST = 0xB, DD = source}, {PST = 0xB, DD = destination}
eori.l #imm,Dx PST = 0x1
ext.l Dx PST = 0x1
ext.w Dx PST = 0x1
extb.l Dx PST = 0x1
jmp <ea>x PST = 0x5, {PST = [0x9AB], DD = target address}
1
jsr <ea>x PST = 0x5, {PST = [0x9AB], DD = target address},
{PST = 0x B , DD = destination operand}
1
lea <ea>y,Ax PST = 0x1
link.w Ay,#imm PST = 0x1, {PST = 0xB, DD = destination operand}
lsl.l {Dy,#imm},Dx PST = 0x1
lsr.l {Dy,#imm},Dx PST = 0x1
mac.l PST = 0x1
mac.l Ry,Rx PST = 0x1
mac.l Ry,Rx,ea,Rw PST = 0x1, {PST = 0xB, DD = source operand}
mac.w PST = 0x1
mac.w Ry,Rx PST = 0x1
mac.w Ry,Rx,ea,Rw PST = 0x1, {PST = 0xB, DD = source operand}
move.b <ea>y,<ea>x PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
move.l <ea>y,<ea>x PST = 0x1, {PST = 0xB, DD = source}, {PST = 0xB, DD = destination}
move.l <ea>y,ACC PST = 0x1
move.l <ea>y,MACSR PST = 0x1
move.l <ea>y,MASK PST = 0x1
move.l ACC,Rx PST = 0x1
move.l MACSR,CCR PST = 0x1
move.l MACSR,Rx PST = 0x1
move.l MASK,Rx PST = 0x1
move.w <ea>y,<ea>x PST = 0x1, {PST = 0x9, DD = source}, {PST = 0x9, DD = destination}
move.w CCR,Dx PST = 0x1
move.w {Dy,#imm},CCR PST = 0x1
Table 5-22. PST/DDATA Specification for User-Mode Instructions (Continued)
Instruction Operand Syntax PST/DDATA
Fr
eescale S
emiconduct
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, I
Freescale Semiconductor, Inc.
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