77
CHAPTER 3 CPU
3.5.9
Software interrupt
The software interrupt is a function for transiting control from the current-executing
program to the interrupt processing program defined by user by execution of a software
interrupt instruction (INT instruction). The software interrupt is held during execution of
a software interrupt.
■
Start and operation of software interrupt
●
Start of Software Interrupt
A software interrupt is started by executing the INT instruction. It does not have an interrupt request flag or
an interrupt enable flag. An interrupt request is generated immediately after the INT instruction is executed.
●
Hardware interrupt inhibition
Interrupts by the INT instruction have no interrupt level and the interrupt level mask register (ILM) is not
updated. During execution of the INT instruction, the interrupt enable flag (CCR: I) is set to "0" and a
hardware interrupt is masked.
When enabling a hardware interrupt during software interrupt processing, set the interrupt enable flag
(CCR: I) to "1" during software interrupt processing.
●
Operation of software interrupt
When the INT instruction is executed, the software interrupt processing microcode in the CPU is started.
The software interrupt processing microcode saves the values of the dedicated registers in the system stack;
branching to the address of the corresponding interrupt vector table after a hardware interrupt is masked
(CCR: I = 0).
■
Return from Software Interrupt
When the interrupt return instruction (RETI) is executed in the interrupt processing program, the values of
the dedicated registers saved in the system stack are returned to each register and the operation is returned
to the processing performed before branching to interrupt processing.
Note:
When the program bank register (PCB) is "FF
H
", the vector area for the CALLV instruction
overlaps the table for the INT #vct8 instruction. A CALLV and INT #vct8 instructions can
not use the same address in creating a program.
Summary of Contents for F2MC-16LX Series
Page 2: ......
Page 3: ...FUJITSU LIMITED F2MC 16LX 16 bit Microcontroller MB90895 series Hardware Manual ...
Page 4: ......
Page 8: ...iv ...
Page 10: ...vi ...
Page 36: ...18 CHAPTER 2 HANDLING DEVICES ...
Page 176: ...158 CHAPTER 3 CPU ...
Page 224: ...206 CHAPTER 5 Timebase timer ...
Page 294: ...276 CHAPTER 8 16 bit reload timer ...
Page 366: ...348 CHAPTER 12 DTP external interrupt ...
Page 398: ...380 CHAPTER 13 8 10 bit A D converter ...
Page 446: ...428 CHAPTER 14 UART0 ...
Page 588: ...570 CHAPTER 17 Address Match Detecting Function ...
Page 626: ...608 CHAPTER 19 512 KBIT FLASH MEMORY ...
Page 676: ...658 APPENDIX Table A 9 3 Bit Operation Instruction Map first byte 6CH ...
Page 678: ...660 APPENDIX Table A 9 5 2 byte Instruction Map first byte 6FH MUL MULW DIVU A A A ...
Page 680: ...662 APPENDIX Table A 9 7 ea Instruction 2 first byte 71H ...
Page 681: ...663 APPENDIX A Instructions Table A 9 8 ea Instruction 3 first byte 72H ...
Page 682: ...664 APPENDIX Table A 9 9 ea Instruction 4 first byte 73H ...
Page 683: ...665 APPENDIX A Instructions Table A 9 10 ea Instruction 5 first byte 74H ...
Page 684: ...666 APPENDIX Table A 9 11 ea Instruction 6 first byte 75H ...
Page 685: ...667 APPENDIX A Instructions Table A 9 12 ea Instruction 7 first byte 76H ...
Page 686: ...668 APPENDIX Table A 9 13 ea Instruction 8 first byte 77H ...
Page 687: ...669 APPENDIX A Instructions Table A 9 14 ea Instruction 9 first byte 78H ...
Page 688: ...670 APPENDIX Table A 9 15 MOVEA RWi ea Instruction first byte 79H ...
Page 689: ...671 APPENDIX A Instructions Table A 9 16 MOV Ri ea Instruction first byte 7AH ...
Page 690: ...672 APPENDIX Table A 9 17 MOVW RWi ea Instruction first byte 7BH ...
Page 691: ...673 APPENDIX A Instructions Table A 9 18 MOV ea Ri Instruction first byte 7CH ...
Page 692: ...674 APPENDIX Table A 9 19 MOVW ea Rwi Instruction first byte 7DH ...
Page 693: ...675 APPENDIX A Instructions Table A 9 20 XCH Ri ea Instruction first byte 7EH ...
Page 694: ...676 APPENDIX Table A 9 21 XCHW RWi ea Instruction first byte 7FH ...
Page 710: ......