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1110 1111 kkkk kkkk 1111 kkkk kkkk kkkk 0010 10da ffff ffff
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else C = 0 endif Increment the contents of the speci ed register and skip the next instruction if result = 0; if a is set, then the BSR is used for Reg, else the access bank is used; one instruction cycle if skip not executed, two if skip executed incfsz Reg, d, a if ( d == 0) wreg = Reg + 1 else Reg = Reg + 1 endif if ((Reg + 1) == 0x000) PC = NextIns endif If ( d == 0) wreg = Reg + 1 else Reg = Reg + 1 endif if ((Reg + 1) != 0x000) PC = NextIns endif wreg = wreg | Constant if ((wreg | Constant) == 0x000) Z = 1 else Z = 0 endif if ((wreg | Constant) & 0x080) != 0) N = 1 else N = 0 endif 0011 11da ffff ffff
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Increment the contents of the speci ed register and skip the next instruction if result = 0; if a is set, then the BSR is used for Reg, else the access bank is used; one instruction cycle if skip not executed, two if skip executed
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infsnz Reg, d, a
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OR a constant to the w register and store the result in the w register
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iorlw Constant
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(Continued )
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TABLE B.6 INSTRUCTION
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PIC18C INSTRUCTION SET (CONTINUED) FORMAT OPERATION BIT PATTERN
OR w register to the contents of Reg and store the result according to d result in w register; if a is set, then Reg is in the BSR bank, else it is in the access bank
iorwf Reg, d, a
if ( d == 1) wreg = wreg | Reg else Reg = wreg | Reg endif if ((wreg | Reg) = 0x000) Z = 1 else Z = 0 endif if ((wreg | Reg) & 0x080) != 0) N = 1 else N = 0 endif FSR(f) = Const if (d == 0) wreg = Reg endif if (Reg == 0) Z = 1 else Z = 0 endif if ((Reg & 0x080) != 0) N = 1 else N = 0 endif
0001 00da ffff ffff
Load the speci ed FSR register with the constant (two instruction cycles) Move data from 256 address register data to primary register set; if a is set, then the BSR is used for Reg, else the access bank is used
lfsr f, Const movf Reg, d, a
1110 1110 00ff kkkk 1111 0000 kkkk kkkk 0101 00da ffff ffff
Move contents of the source register into the destination register; the full 12-bit addresses are speci ed (two instruction cycles) Move constant into low nybble of BSR Move constant into the w register Move contents of the w register into Reg; if a is set, then the BSR is used for Reg, else the access bank is used Multiply constant by the w register Multiply register by the w register; if a is set, then the BSR is used for Reg, else the access bank is used Negate the contents of Reg and store the result back in Reg; if a is set, then Reg is in the BSR bank, else Reg is in the access bank.
movff
Regd = Regs
1100 fffs fffs fffs 1111 fffd fffd fffd
movlb Constant movlw Constant movwf Reg, a
BSR(3:0) = Constant wreg = Constant Reg = wreg
0000 0001 kkkk kkkk 0000 1110 kkkk kkkk 0110 111a ffff ffff
PRODH:PROGL = Constant * wreg mullwf Reg PRODH:PROGL = Reg * wreg
0000 1101 kkkk kkkk 0000 0010a ffff ffff
negw Reg, a
Reg = -Reg if (-Reg < 0x080) OV = 1 else OV = 0 endif if ((-Reg & 0x080) != 0) N = 1 else N = 0 endif if (-Reg > 0x0FF) C = 1 else C = 0 endif
0110 110a ffff ffff
(Continued )
TABLE B.6 INSTRUCTION
PIC18C INSTRUCTION SET (CONTINUED) FORMAT OPERATION BIT PATTERN
if ((-Reg & 0x0F) > 0x0F) DC = 1 else DC = 0 endif if (-Reg == 0x000) Z = 1 else Z = 0 endif Do nothing for one instruction cycle; note two different op codes. Pop the top of the instruction pointer stack and discard the result Push the top of the instruction pointer stack. Call the 11-bit two s complement offset (two instruction cycles) Reset the PIC microcontroller processor and all the registers affected by _MCLR reset Return from interrupt handler; if s is set, restore the w, STATUS, and BSR registers (two instruction cycles) nop pop push rcall Label Reset POP() PUSH(PC + 2) PUSH( PC ) PC = PC + 2 + Label _MCLR = 0 _MCLR = 1 PC = POP() GIE = 0 if (s == 1) wreg = POP() STATUS = POP() BSR = POP() endif 0000 0000 0000 0000 1111 1111 1111 1111 0000 0000 0000 0110 0000 0000 0000 0101 1101 1kkk kkkk kkkk 0000 0000 1111 1111
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