2023-11-28 13:19:22 -04:00
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#include <stdio.h>
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#include <stdlib.h>
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// Data structures and helper functions
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typedef struct DiskRequest {
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int position;
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int time;
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} DiskRequest;
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typedef struct DiskQueue {
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DiskRequest *requests;
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int index;
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int size;
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} DiskQueue;
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DiskQueue *createDiskQueue() {
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DiskQueue *queue = malloc(sizeof(DiskQueue));
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if (queue == NULL) {
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printf("Error allocating memory for queue\n");
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exit(EXIT_FAILURE);
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}
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queue->requests = malloc(sizeof(DiskRequest));
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if (queue->requests == NULL) {
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printf("Error allocating memory for queue requests\n");
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exit(EXIT_FAILURE);
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}
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queue->index = 0;
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queue->size = 0;
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return queue;
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}
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DiskRequest diskRequest(int position, int time) {
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DiskRequest request;
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request.position = position;
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request.time = time;
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return request;
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}
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void enqueue(DiskQueue *queue, DiskRequest request) {
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queue->requests = realloc(queue->requests, sizeof(DiskRequest) * (queue->size + 1));
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queue->requests[queue->size] = request;
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queue->size++;
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}
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DiskRequest dequeue(DiskQueue *queue) {
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DiskRequest request = queue->requests[queue->index];
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queue->index++;
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return request;
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}
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// Allocates a new queue with the requests that have the same time
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2023-11-28 17:21:49 -04:00
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DiskQueue *queueOfSameTime(DiskQueue *queue, int time) {
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2023-11-28 13:19:22 -04:00
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DiskQueue *sameTimeQueue = createDiskQueue();
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for (int i = queue->index; i < queue->size - queue->index; i++) {
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if (queue->requests[i].time == time) {
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enqueue(sameTimeQueue, queue->requests[i]);
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}
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}
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return sameTimeQueue;
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}
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// Compare function for disk requests by position
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int compareDiskRequestsByPosition(const void *a, const void *b) {
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DiskRequest *requestA = (DiskRequest *) a;
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DiskRequest *requestB = (DiskRequest *) b;
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return requestA->position - requestB->position;
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}
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// Sorts the queue by position, in place
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2023-11-28 17:21:49 -04:00
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DiskQueue *sortQueueByPosition(DiskQueue *queue) {
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2023-11-28 13:19:22 -04:00
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qsort(queue->requests, queue->size, sizeof(DiskRequest), compareDiskRequestsByPosition);
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return queue;
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}
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void destroyDiskQueue(DiskQueue *queue) {
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free(queue->requests);
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free(queue);
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}
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typedef enum DiskDirection {
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UP, DOWN
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} DiskDirection;
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// Global tracking variables
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DiskDirection currentDirection = UP;
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int movement = 0;
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double seekTime = 0;
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// Array for storing the requests
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DiskQueue *queue;
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double timeToProcessRequest(int position, int destination) {
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2023-11-28 17:21:49 -04:00
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//The time (a floating point number) required to process a request is computed by distance the head travels divided by 5
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//Plus additional 15 milliseconds penalty if the direction has to change (for FCFS)
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2023-11-28 13:19:22 -04:00
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double time = 0;
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2023-11-28 17:21:49 -04:00
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// Calculated this way so that positive means up and negative means down
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int distance = destination - position;
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DiskDirection direction = (distance > 0) ? UP : DOWN;
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time += abs(distance) / 5.0;
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if (direction != currentDirection) {
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2023-11-28 13:19:22 -04:00
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time += 15;
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currentDirection = direction;
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}
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return time;
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}
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// Your simulated disk is of size 10000, numbered from 0 to 9999.
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// In first come first the time the request comes in is irrelevant
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void fcfs(int start) {
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int position = start;
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for (int i = 0; i < queue->size; i++) {
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DiskRequest request = dequeue(queue);
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seekTime += timeToProcessRequest(position, request.position);
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movement += abs(position - request.position);
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position = request.position;
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}
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}
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void cscan(int start) {
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int currentTime = 0;
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int position = start;
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for (int i = 0; i < queue->size; i++) {
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DiskRequest request = dequeue(queue);
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while (currentTime < request.time) { currentTime++; }
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DiskQueue *sameTimeQueue = sortQueueByPosition(queueOfSameTime(queue, request.time));
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2023-11-28 17:21:49 -04:00
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for (; i < sameTimeQueue->size; i++) {
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2023-11-28 13:19:22 -04:00
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DiskRequest request = dequeue(sameTimeQueue);
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// Need to return to 0 because we have reached the end of the disk on the current pass
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if (request.position < position) {
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seekTime += timeToProcessRequest(position, 9999);
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movement += abs(position - 9999);
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position = 9999;
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seekTime += timeToProcessRequest(position, 0);
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movement += abs(position - 0);
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position = 0;
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}
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seekTime += timeToProcessRequest(position, request.position);
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movement += abs(position - request.position);
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position = request.position;
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}
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//destroyDiskQueue(sameTimeQueue);
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}
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}
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int main(int argc, char **argv) {
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int position, time;
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char algorithm = argv[1][0];
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int start = 0;
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queue = createDiskQueue();
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while (EOF != (scanf("%i %i\n", &position, &time))) {
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enqueue(queue, diskRequest(position, time));
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// printf("Delete me: position %i, Delete me: time %i\n", position, time);
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}
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if (algorithm == 'F') {
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fcfs(start);
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2023-11-28 17:21:49 -04:00
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printf("Movement:%i Time:%.1lf\n", movement, seekTime);
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2023-11-28 13:19:22 -04:00
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} else if (algorithm == 'C') {
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cscan(start);
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2023-11-28 17:21:49 -04:00
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// Stupid printf difference to pass tests, could call once after if statement
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printf("Movement: %i Time:%.1lf\n", movement, seekTime);
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2023-11-28 13:19:22 -04:00
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}
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destroyDiskQueue(queue);
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return 0;
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}
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