Chapter 5. Debug Support
5-41
Processor Status, DDATA Definition
Table 5-22. PST/DDATA Specification for User-Mode Instructions
Instruction
Operand Syntax
PST/DDATA
add.l
<ea>y,Rx
PST = 0x1, {PST = 0xB, DD = source operand}
add.l
Dy,<ea>x
PST = 0x1, {PST = 0xB, DD = source}, {PST = 0xB, DD = destination}
addi.l
#imm,Dx
PST = 0x1
addq.l
#imm,<ea>x
PST = 0x1, {PST = 0xB, DD = source}, {PST = 0xB, DD = destination}
addx.l
Dy,Dx
PST = 0x1
and.l
<ea>y,Dx
PST = 0x1, {PST = 0xB, DD = source operand}
and.l
Dy,<ea>x
PST = 0x1, {PST = 0xB, DD = source}, {PST = 0xB, DD = destination}
andi.l
#imm,Dx
PST = 0x1
asl.l
{Dy,#imm},Dx
PST = 0x1
asr.l
{Dy,#imm},Dx
PST = 0x1
bcc.{b,w}
if taken, then PST = 0x5, else PST = 0x1
bchg
#imm,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bchg
Dy,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bclr
#imm,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bclr
Dy,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bra.{b,w}
PST = 0x5
bset
#imm,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bset
Dy,<ea>x
PST = 0x1, {PST = 0x8, DD = source}, {PST = 0x8, DD = destination}
bsr.{b,w}
PST = 0x5, {PST = 0xB, DD = destination operand}
btst
#imm,<ea>x
PST = 0x1, {PST = 0x8, DD = source operand}
btst
Dy,<ea>x
PST = 0x1, {PST = 0x8, DD = source operand}
clr.b
<ea>x
PST = 0x1, {PST = 0x8, DD = destination operand}
clr.l
<ea>x
PST = 0x1, {PST = 0xB, DD = destination operand}
clr.w
<ea>x
PST = 0x1, {PST = 0x9, DD = destination operand}
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
Содержание DigitalDNA ColdFire MCF5272
Страница 1: ...MCF5272UM D Rev 0 02 2001 MCF5272 ColdFire Integrated Microprocessor User s Manual ...
Страница 38: ...xxxviii MCF5272 User s Manual TABLES Table Number Title Page Number ...
Страница 58: ...1 10 MCF5272 User s Manual MCF5272 Specific Features ...
Страница 90: ...2 42 MCF5272 User s Manual Exception Processing Overview ...
Страница 96: ...3 6 MCF5272 User s Manual MAC Instruction Execution Timings ...
Страница 158: ...5 46 MCF5272 User s Manual Motorola Recommended BDM Pinout ...
Страница 184: ...7 12 MCF5272 User s Manual Interrupt Controller Registers ...
Страница 338: ...13 44 MCF5272 User s Manual Application Examples ...
Страница 414: ...18 6 MCF5272 User s Manual PWM Programming Model ...
Страница 452: ...19 38 MCF5272 User s Manual Power Supply Pins ...
Страница 482: ...20 30 MCF5272 User s Manual Reset Operation ...
Страница 492: ...21 10 MCF5272 User s Manual Non IEEE 1149 1 Operation ...
Страница 548: ...INDEX Index 12 MCF5272 User s Manual ...