Interrupt is the mechanism by which modules like I/O or memory may interrupt the normal processing by CPU. It may be either clicking a mouse, dragging a cursor, printing a document etc the case where interrupt is getting generated.
Why we require Interrupt?
External devices are comparatively slower than CPU. So if there is no interrupt CPU would waste a lot of time waiting for external devices to match its speed with that of CPU. This decreases the efficiency of CPU. Hence, interrupt is required to eliminate these limitations.
- Suppose CPU instructs printer to print a certain document.
- While printer does its task, CPU engaged in executing other tasks.
- When printer is done with its given work, it tells CPU that it has done with its work.
(The word ‘tells’ here is interrupt which sends one message that printer has done its work successfully.).
- It increases the efficiency of CPU.
- It decreases the waiting time of CPU.
- Stops the wastage of instruction cycle.
- CPU has to do a lot of work to handle interrupts, resume its previous execution of programs (in short, overhead required to handle the interrupt request.).
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- Computer Organization | Stack based CPU Organization
- Computer Organization | Computer System Life Cycle
- Differences between Computer Architecture and Computer Organization
- Computer Organization | Basic Computer Instructions
- Computer Organization | Performance of Computer
- Computer Organization | RAM vs ROM
- Computer Organization | MPU Communication
- Computer Organization | BUS Arbitration
- Computer Organization | Microcomputer system
- Computer Organization | Register Allocation
- Computer Organization | Von Neumann architecture
- Computer Organization | Subprogram and its characteristics
- Computer Organization | Peripherals Devices
- Computer Organization | ALU and Data Path
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