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1110 kkkk kkkk 0001 01df ffff
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AND register contents with the w register and optionally store result in the w register
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Clear the speci ed bit in the register Set the speci ed bit in the register Skip if the speci ed bit in the register is clear; one instruction cycle if skip not executed, two if it is
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bcf Reg, bit bsf Reg, bit btfsc Reg, bit
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TABLE B.4 DESCRIPTION
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LOW-END PIC MICROCONTROLLER INSTRUCTION SET (CONTINUED) INSTRUCTION OPERATION OP CODE
Skip if the speci ed bit in the register is set; one instruction cycle if skip not executed, two if it is Save the stack pointer and jump to the speci ed address (two instruction cycles)
btfsc Reg, bit
if ((Reg & (1 << Bit)) != 0) PC = PC + 1 Endif [SP] = PC SP = SP + 1 PC = ((STATUS & 0xE0) << 4) + Address Reg = 0 Z = 1 w = 0 Z = 1 WDT = 0 _TO = 1 _PD = 1 if (d == 1) Reg = Reg ^ 0xFF else w = Reg ^ 0xFF endif Z = (Reg ^ 0xFF) == 0 if (d == 1) Reg = Reg - 1 else w = Reg - 1 endif Z = (Reg 1) == 0
0111 bbbf ffff
call Address
1001 aaaa aaaa
Clear the speci ed register Clear the w register Clear the watchdog timer s counter
clrf Reg clrw clrwdt
0000 011f ffff 0000 0100 0000 0000 0000 0100
Complement the contents of the speci ed register and optionally store the results in the w register
comf Reg, d
0010 01df ffff
Decrement the contents of the register and optionally store the results in the w register
decf Reg, d
0011 11df ffff
Decrement the contents of the register and optionally store the results in the w register and skip the next instruction if the results are equal to zero; two instruction cycles taken if skip executed
decfsz Reg, d
if (d == 1) Reg = Reg - 1 else w = Reg - 1 endif PC = PC + 1 if ((Reg 1) == 0) PC = PC + 1 Endif PC = (((STATUS & 0xE0) << 4) + Address if (d == 1) Reg = Reg + 1 else w = Reg + 1 endif Z = (Reg + 1) == 0 if (d == 1) Reg = Reg + 1 else w = Reg + 1 endif PC = PC + 1 if ((Reg + 1) == 0) PC = PC + 1 endif w = w | k Z = (w | k) == 0 if (d == 1) Reg = Reg | w else w = Reg | w endif Z = (Reg | w) == 0
0010 11df ffff
Jump to the speci ed address (two instruction cycles) Increment the contents of the register and optionally store the results in the w register
goto Address incf Reg, d
101a aaaa aaaa 0010 10df ffff
Increment the contents of the register and optionally store the results in the w register and skip the next instruction if the results are equal to zero; two instruction cycles taken if skip executed
incfsz Reg, d
0011 11df ffff
OR immediate with the w register OR register contents with the w register and optionally store result in the w register
iorlw k iorwf Reg, d
1101 kkkk kkkk 0001 00df ffff
(Continued )
TABLE B.4 DESCRIPTION
LOW-END PIC MICROCONTROLLER INSTRUCTION SET (CONTINUED) INSTRUCTION OPERATION OP CODE
Check register contents equal to zero and optionally store result in the w register Load w register with an immediate value Store the value in the w register Waste one instruction cycle Move the contents of the w register into the OPTION register Resume execution after subroutine and place a constant value in the w register (two cycles used) Resume execution after subroutine and place zero in the w register (two cycles used); this is actually a retlw 0 instruction that MPLAB provides Rotate the register left through carry and optionally save the result in the w register
movf Reg, d
if (d == 0) w = Reg endif Z = Reg == 0 w = k Reg = w
0010 00df ffff
movlw k movwf Reg nop option retlw k
1100 kkkk kkkk 0000 001f ffff 0000 0000 0000
OPTION = w w=k SP = SP 1 PC = [SP] w = 0 SP = SP 1 PC = [SP]
0000 0000 0010 1000 kkkk kkkk
return
1000 0000 0000
rlf Reg, d
Temp = C C = (Reg >> 7) & 1 if (d == 1) Reg = (Reg << 1) + Temp else w = (Reg << 1) + Temp endif Temp = C C = Reg & 1 if (d == 1) Reg = (Reg >> 1) + (Temp << 7)
0011 01df ffff
Rotate the register right through carry and optionally save the result in the w register
rrf Reg, d
0011 00df ffff
else w = (Reg >> 1) + (Temp << 7) endif Go into standby mode (indeterminate number of cycles before execution resumes) Subtract w register contents from register and store result in the w register sleep _TO = 1 _PD = 0 if (d == 1) Reg = Reg + (w ^ 0xFF) + 1 else w = Reg + (w ^ 0xFF) + 1 endif C = (Reg + (w ^ 0xFF) + 1) > 0xFF Z = ((Reg + (w ^ 0xFF) + 1) & 0xFF) == 0 DC = ((Reg & 0x0F ) + ((w ^ 0xFF) & 0x0F) + 1) > 0x0F if (d == 1) Reg = ((Reg & 0xF0) >> 4) + ((Reg & 0x0F) << 4) else w = ((Reg & 0xF0) >> 4) +((Reg & 0x0F) << 4) endif TRIS(Port) = w w = w ^ k Z = (w ^ k) == 0 if (d == 1) Reg = Reg ^ w else w = Reg ^ w endif Z = (Reg ^ w) == 0 0000 0000 0011
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