Add a5 skeleton
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8
Assignment5/.idea/.gitignore
vendored
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8
Assignment5/.idea/.gitignore
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# Default ignored files
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/shelf/
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/workspace.xml
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# Editor-based HTTP Client requests
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/httpRequests/
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# Datasource local storage ignored files
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/dataSources/
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/dataSources.local.xml
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2
Assignment5/.idea/Assignment5.iml
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2
Assignment5/.idea/Assignment5.iml
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<?xml version="1.0" encoding="UTF-8"?>
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<module classpath="CMake" type="CPP_MODULE" version="4" />
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8
Assignment5/.idea/cmake.xml
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8
Assignment5/.idea/cmake.xml
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="CMakeSharedSettings">
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<configurations>
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<configuration PROFILE_NAME="Debug" ENABLED="true" GENERATION_DIR="build" CONFIG_NAME="Debug" />
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</configurations>
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</component>
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</project>
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4
Assignment5/.idea/misc.xml
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4
Assignment5/.idea/misc.xml
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="CMakeWorkspace" PROJECT_DIR="$PROJECT_DIR$" />
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</project>
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8
Assignment5/.idea/modules.xml
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8
Assignment5/.idea/modules.xml
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="ProjectModuleManager">
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<modules>
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<module fileurl="file://$PROJECT_DIR$/.idea/Assignment5.iml" filepath="$PROJECT_DIR$/.idea/Assignment5.iml" />
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</modules>
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</component>
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</project>
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6
Assignment5/.idea/vcs.xml
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6
Assignment5/.idea/vcs.xml
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="VcsDirectoryMappings">
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<mapping directory="$PROJECT_DIR$/.." vcs="Git" />
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</component>
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</project>
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7
Assignment5/CMakeLists.txt
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7
Assignment5/CMakeLists.txt
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cmake_minimum_required(VERSION 3.20)
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project(Assignment5 C)
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set(CMAKE_C_STANDARD 99)
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include_directories(lib)
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add_executable(Assignment5 round_robin.c lib/queue.c lib/process.c)
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BIN
Assignment5/documentation/Assignment 5.pdf
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BIN
Assignment5/documentation/Assignment 5.pdf
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Binary file not shown.
7
Assignment5/documentation/a5_sample_input_1.txt
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7
Assignment5/documentation/a5_sample_input_1.txt
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1
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3
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User Process Arrival Duration
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Jim A 2 5
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Mary B 2 2
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Sue C 5 5
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Mary D 6 2
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22
Assignment5/documentation/a5_sample_output_1.txt
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22
Assignment5/documentation/a5_sample_output_1.txt
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Time CPU0
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1 -
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2 A
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3 A
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4 A
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5 B
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6 B
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7 A
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8 A
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9 C
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10 C
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11 C
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12 D
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13 D
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14 C
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15 C
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16 -
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Summary
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Jim 8
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Mary 13
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Sue 15
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36
Assignment5/lib/process.c
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36
Assignment5/lib/process.c
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include "process.h"
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//Assume that the string passed in is null terminated
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Process *createProcess(char *username, char job, int arrival_time, int duration) {
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// Allocate memory for the process, and check if it was successful
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Process *node = calloc(1, sizeof(Process));
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if (node == NULL) {
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printf("Error allocating memory for process\n");
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exit(EXIT_FAILURE);
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}
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// Free the data first, then allocate memory for the new data
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node->username = calloc(strlen(username) + 1, sizeof(char));
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if (node->username == NULL) {
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printf("Error allocating memory for username data\n");
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exit(EXIT_FAILURE);
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}
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// Copy data from the string passed in to the process's data
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// Makes sure if the string passed in is changed, the process's data is not changed
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// Also makes sure that if the data is on the stack, it is not freed at some other point
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strcpy(node->username, username);
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node->job = job;
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node->arrival_time = arrival_time;
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node->duration = duration;
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node->next_elem = NULL;
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return node;
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}
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void destroyProcess(Process *node) {
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// Free the data first, then free the process
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free(node->username);
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free(node);
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}
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18
Assignment5/lib/process.h
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18
Assignment5/lib/process.h
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#ifndef PROCESS_H
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#define PROCESS_H
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typedef struct Process {
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struct Process *prev_elem;
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struct Process *next_elem;
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char *username;
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char job;
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int arrival_time;
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int duration;
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int finish_time;
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} Process;
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Process *createProcess(char *username, char job, int arrival_time, int duration);
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void destroyProcess(Process *node);
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#endif //PROCESS_H
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103
Assignment5/lib/queue.c
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103
Assignment5/lib/queue.c
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#include <stdio.h>
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#include <stddef.h>
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#include <stdbool.h>
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#include <string.h>
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#include <stdlib.h>
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#include "process.h"
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#include "queue.h"
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/*
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* Queue implementation
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* 5 4 3 2 1
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* START END
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*
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* If you were to visualize the queue as a line, the end is the first person in line and the start is the last person in line
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* So when you enqueue, you are adding to the start of the line
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* And when you dequeue, you are exiting from the end of the line
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*/
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int contains(Queue *queue, char *username) {
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Process *current = queue->end;
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while (current != NULL) {
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if (strcmp(current->username, username) == 0) {
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return true;
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}
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current = current->prev_elem;
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}
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return false;
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}
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Process *search(Queue *queue, char *username) {
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Process *current = queue->end;
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while (current != NULL) {
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if (strcmp(current->username, username) == 0) {
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return current;
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}
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current = current->prev_elem;
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}
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return NULL;
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}
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void enqueue(Queue *queue, Process *process) {
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if (queue->end == NULL) { // If the queue is empty, set the start and end to the new process
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queue->end = process;
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queue->start = queue->end;
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} else {
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process->next_elem = queue->start; // Set the next element of the new process to the start of the queue
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queue->start->prev_elem = process; // Set the previous element of the start of the queue to the new process
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queue->start = process; // Set the start of the queue to the new process
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}
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queue->size++;
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}
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// WARNING: Returns a pointer to a process that is not in the queue, it is your responsibility to free it
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Process *dequeue(Queue *queue) {
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if (queue->end == NULL) { // If the queue is empty, return NULL
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return NULL;
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}
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Process *temp = queue->end; // Store the end of the queue for returning later
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if (queue->size == 1) { // If the queue has one element, set the start and end to NULL
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queue->start = NULL;
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queue->end = NULL;
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queue->size--;
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return temp;
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}
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queue->end = queue->end->prev_elem; // Set the end to the previous element
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queue->end->next_elem = NULL; // Set the next element of the new end to NULL
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temp->prev_elem = NULL; // The dequeued element should not point to anything
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queue->size--;
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return temp;
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}
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void printList(Queue *queue) {
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Process *current = queue->end;
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while (current != NULL) {
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printf("%s\t%d\n", current->username, current->finish_time);
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current = current->prev_elem;
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}
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}
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int stop(Queue *queue) {
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Process *current = queue->end;
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while (current != NULL) {
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Process *next = current->prev_elem;
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destroyProcess(current);
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current = next;
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}
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free(queue);
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return true;
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}
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Queue *createQueue() {
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Queue *queue = calloc(1, sizeof(Queue));
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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->start = NULL;
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queue->end = NULL;
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queue->size = 0;
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return queue;
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}
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27
Assignment5/lib/queue.h
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27
Assignment5/lib/queue.h
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#ifndef QUEUE_H
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#define QUEUE_H
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#include <stdbool.h>
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#include "process.h"
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typedef struct Queue {
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Process *start;
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Process *end;
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int size;
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} Queue;
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int contains(Queue *queue, char *username);
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Process *search(Queue *queue, char *username);
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void enqueue(Queue *queue, Process *process);
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Process *dequeue(Queue *queue);
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void printList(Queue *queue);
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int stop(Queue *queue);
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Queue* createQueue();
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#endif //QUEUE_H
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6
Assignment5/main.c
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6
Assignment5/main.c
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#include <stdio.h>
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int main() {
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printf("Hello, World!\n");
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return 0;
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}
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101
Assignment5/round_robin.c
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101
Assignment5/round_robin.c
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#include <stdio.h>
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#include "lib/queue.h"
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#define MAX_USERNAME_LENGTH 100
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int QUANTUM;
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Queue *input_queue() {
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Queue *queue = createQueue();
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char username[MAX_USERNAME_LENGTH]; // username buffer
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char job;
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int arrival_time, duration;
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scanf("%d", &QUANTUM);
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while (getchar() != '\n'); // clear the newline from the buffer
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while (getchar() != '\n'); // ignore the rest of the line, this is the table line
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// Loop through the process table and enqueue each process
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while (scanf("%99s %c %d %d", username, &job, &arrival_time, &duration) != EOF) {
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Process *process = createProcess(username, job, arrival_time, duration);
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enqueue(queue, process);
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}
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return queue;
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}
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void simulation(Queue *in_queue) {
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// Summary creation
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Process *process = in_queue->end;
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Queue *summary_queue = createQueue();
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for (int i = 0; i < in_queue->size; ++i) {
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if (contains(summary_queue, process->username) == false) {
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Process *copy = createProcess(process->username, process->job, process->arrival_time, process->duration);
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enqueue(summary_queue, copy);
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}
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process = process->prev_elem;
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}
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// Loop variables
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int quantum = QUANTUM;
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int addedJobs = 0;
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int time = 0;
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// Create a queue for the simulation
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Queue *sim_queue = createQueue();
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printf("Time\tJob\n");
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while (true) {
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time++;
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// Begin going through all jobs and enqueueing them if they have arrived
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process = in_queue->end;
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for (int i = 0; i < in_queue->size; i++) {
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if (process->arrival_time == time) {
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// Create copy to keep the queues separate
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Process *copy = createProcess(process->username, process->job, process->arrival_time, process->duration);
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enqueue(sim_queue, copy);
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addedJobs++;
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}
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process = process->prev_elem;
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}
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// Begin printing the current job
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process = sim_queue->end;
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if (sim_queue->size == 0) { //If there is nothing in sim_queue, print "-"
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printf("%d\t-\n", time);
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if (addedJobs == in_queue->size) {
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break; // If all jobs have been added, and the simulation queue is empty, then we are done
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}
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} else {
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printf("%d\t%c\n", time, process->job); // Print the current job
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process->duration--;
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quantum--;
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if (process->duration == 0) { // If the process is done, delete it
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Process *temp = dequeue(sim_queue); // Store the process in a temp variable for deletion
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search(summary_queue, temp->username)->finish_time = time; // Set the finish time for the summary queue
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destroyProcess(temp); // This should be called on every process
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quantum = QUANTUM; // Make sure to reset the quantum when a process is done
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} else if (quantum == 0) { // If the quantum is 0, then we need to dequeue the process and enqueue it again
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process = dequeue(sim_queue);
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enqueue(sim_queue, process);
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quantum = QUANTUM;
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}
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}
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}
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// Print the summary
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printf("\nSummary\n");
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printList(summary_queue);
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// Free memory for the simulation queue. There should be nothing left in it
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stop(sim_queue);
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// We never dequeue from the summary queue, so we don't need to make sure about freeing dequeued processes
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stop(summary_queue);
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}
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int main() {
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Queue *in_queue = input_queue(); // Create the input queue
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simulation(in_queue); // Run simulation on input queue
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stop(in_queue); // Free memory for input queue
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return 0;
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}
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