Mostly sorted
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@ -11,24 +11,35 @@
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// --------------------------------------------------
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// Define Problem Size
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// --------------------------------------------------
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#define NLIFTS 4 // The number of lifts in the building
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#define NLIFTS 20 // The number of lifts in the building
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#define NFLOORS 20 // The number of floors in the building
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#define NPEOPLE 20 // The number of people in the building
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#define NPEOPLE 200 // The number of people in the building
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#define MAXNOINLIFT 10 // Maximum number of people in a lift
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// --------------------------------------------------
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// Define delay times (in milliseconds)
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// --------------------------------------------------
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#define SLOW
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// #define FAST
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#if defined(SLOW)
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#define LIFTSPEED 50 // The time it takes for the lift to move one floor
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#define GETINSPEED 50 // The time it takes to get into the lift
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#define GETOUTSPEED 50 // The time it takes to get out of the lift
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//#define SUPERSLOW
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//#define SLOW
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//#define FAST
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#define SUPERFAST
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#if defined(SUPERSLOW)
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#define LIFTSPEED 500 // The time it takes for the lift to move one floor
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#define GETINSPEED 250 // The time it takes to get into the lift
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#define GETOUTSPEED 250 // The time it takes to get out of the lift
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#define PEOPLESPEED 10000 // The maximum time a person spends on a floor
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#elif defined(SLOW)
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#define LIFTSPEED 250 // The time it takes for the lift to move one floor
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#define GETINSPEED 100 // The time it takes to get into the lift
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#define GETOUTSPEED 100 // The time it takes to get out of the lift
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#define PEOPLESPEED 100 // The maximum time a person spends on a floor
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#elif defined(FAST)
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#define LIFTSPEED 25 // The time it takes for the lift to move one floor
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#define GETINSPEED 10 // The time it takes to get into the lift
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#define GETOUTSPEED 10 // The time it takes to get out of the lift
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#define PEOPLESPEED 10 // The maximum time a person spends on a floor
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#elif defined(SUPERFAST)
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#define LIFTSPEED 0 // The time it takes for the lift to move one floor
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#define GETINSPEED 0 // The time it takes to get into the lift
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#define GETOUTSPEED 0 // The time it takes to get out of the lift
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@ -50,6 +61,10 @@ typedef struct {
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semaphore up_arrow; // People going up wait on this
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semaphore down_arrow; // People going down wait on this
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semaphore queueInteraction; // People can't all press a button at the same time
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// Add a tracker to include how many people are currently moving into/out of a lift.
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// These people are still considered to be waiting, but a thread is in the process of loading them
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int inprogress_up;
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int inprogress_down;
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} floor_info;
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// --------------------------------------------------
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@ -62,7 +77,10 @@ typedef struct {
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int peopleinlift; // The number of people in the lift
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int stops[NFLOORS]; // How many people are going to each floor
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semaphore stopsem[NFLOORS]; // People in the lift wait on one of these
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semaphore load;
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// Semaphore stating if a thread is currently loading/unloading someone from the lift
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semaphore loading;
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// If the target floor is being selected (only one can press at a time)
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semaphore buttonPress;
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} lift_info;
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// --------------------------------------------------
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@ -78,11 +96,11 @@ semaphore printSemaphore;
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// Print a string on the screen at position (x,y)
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// --------------------------------------------------
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void print_at_xy(int x, int y, const char *s) {
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// Lock our print to just one thread (stops x,y from changing)
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semaphore_wait(&printSemaphore);
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// Move cursor to (x,y)
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gotoxy(x,y);
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// Slow things down
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Sleep(1);
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@ -91,6 +109,7 @@ void print_at_xy(int x, int y, const char *s) {
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// Move cursor out of the way
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gotoxy(42, NFLOORS+2);
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// flush the stream and release the semaphore
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fflush(stdout);
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semaphore_signal(&printSemaphore);
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}
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@ -101,7 +120,8 @@ void print_at_xy(int x, int y, const char *s) {
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// --------------------------------------------------
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void get_into_lift(lift_info *lift, int direction) {
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// Local variables
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int *waiting;
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volatile int *waiting;
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volatile int *inprogress;
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semaphore *s;
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// Check lift direction
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@ -111,14 +131,18 @@ void get_into_lift(lift_info *lift, int direction) {
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// Number of people waiting to go up
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waiting = &floors[lift->position].waitingtogoup;
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inprogress = &floors[lift->position].inprogress_up;
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} else {
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// Use down_arrow semaphore
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s = &floors[lift->position].down_arrow;
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// Number of people waiting to go down
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waiting = &floors[lift->position].waitingtogodown;
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inprogress = &floors[lift->position].inprogress_down;
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}
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// Problems here are primarily state consistency. Between the start of the conditional, the number of waiting people can change, resulting
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// in the number of waiting people dropping below zero.
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// For all the people waiting
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while(*waiting) {
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// Check if lift is empty
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@ -127,24 +151,36 @@ void get_into_lift(lift_info *lift, int direction) {
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lift->direction = direction;
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}
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// Check there are people waiting and lift isn't full
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if(lift->peopleinlift < MAXNOINLIFT && *waiting) {
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// Check there are people waiting and lift isn't full. Ignore in-progress (moving into lift) people
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// must check here
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semaphore_wait(&floors[lift->position].queueInteraction);
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if(lift->peopleinlift < MAXNOINLIFT && *waiting - *inprogress) {
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//volatile int pos = floors[lift->position].waitingtogodown + floors[lift->position].waitingtogoup - (*inprogress);
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(*inprogress)++;
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volatile int vPos = lift->position;
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//semaphore_signal(&floors[lift->position].queueInteraction);
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// Add person to the lift
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semaphore_wait(&lift->load);
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lift->peopleinlift++;
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semaphore_signal(&lift->load);
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// Erase the person from the waiting queue
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print_at_xy(NLIFTS*4+floors[lift->position].waitingtogodown + floors[lift->position].waitingtogoup, NFLOORS-lift->position, " ");
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print_at_xy(NLIFTS*4+floors[lift->position].waitingtogodown + floors[lift->position].waitingtogoup, NFLOORS-vPos, " ");
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// Capture the person's printed position while we have the
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//semaphore_signal(&floors[lift->position].queueInteraction);
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// Do the print, no need to hold the semaphore while this is going on
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// One less person waiting
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// Note that while loading, the queue cannot change
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//semaphore_wait(&floors[lift->position].queueInteraction);
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(*waiting)--;
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(*inprogress)--;
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semaphore_signal(&floors[lift->position].queueInteraction);
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// Wait for person to get into lift
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Sleep(GETINSPEED);
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targetLift[lift->position] = lift;
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semaphore_signal(s);
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} else {
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semaphore_signal(&floors[lift->position].queueInteraction);
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break;
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}
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}
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@ -164,8 +200,9 @@ void* lift_thread(void *p) {
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lift.position = 0; // Lift starts on ground floor
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lift.direction = UP; // Lift starts going up
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lift.peopleinlift = 0; // Lift starts empty
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semaphore_create(&lift.load, 1);
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// lift is ok with loading a single person
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semaphore_create(&lift.loading, 1);
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semaphore_create(&lift.buttonPress, 1);
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for(i = 0; i < NFLOORS; i++) {
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lift.stops[i]=0; // No passengers waiting
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@ -182,19 +219,21 @@ void* lift_thread(void *p) {
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while(TRUE) {
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// Print current position of the lift
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print_at_xy(no*4+1, NFLOORS-lift.position, lf);
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// Wait for a while
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Sleep(LIFTSPEED);
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// Drop off passengers on this floor
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while (lift.stops[lift.position] != 0) {
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// One less passenger in lift
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semaphore_wait(&lift.load);
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semaphore_wait(&lift.loading);
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lift.peopleinlift--;
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semaphore_signal(&lift.loading);
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// One less waiting to get off at this floor
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// Don't need a semaphore as nothing should read this value now
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semaphore_wait(&lift.buttonPress);
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lift.stops[lift.position]--;
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semaphore_signal(&lift.load);
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semaphore_signal(&lift.buttonPress);
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// Wait for exit lift delay
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Sleep(GETOUTSPEED);
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@ -205,6 +244,7 @@ void* lift_thread(void *p) {
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if(!lift.stops[lift.position]) {
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// Clear the "-"
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print_at_xy(no*4+1+2, NFLOORS-lift.position, " ");
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}
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}
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// Check if lift is going up or is empty
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@ -260,6 +300,7 @@ void* person_thread(void *p) {
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if(to > from) {
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// One more person waiting to go up
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floors[from].waitingtogoup++;
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//volatile int pos = floors[from].waitingtogoup +floors[from].waitingtogodown - floors[from].inprogress_down - floors[from].inprogress_up;
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semaphore_signal(&floors[from].queueInteraction);
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// Print person waiting
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print_at_xy(NLIFTS*4+ floors[from].waitingtogoup +floors[from].waitingtogodown,NFLOORS-from, pr);
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@ -268,9 +309,11 @@ void* person_thread(void *p) {
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} else {
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// One more person waiting to go down
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floors[from].waitingtogodown++;
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//volatile int pos = floors[from].waitingtogoup +floors[from].waitingtogodown - floors[from].inprogress_down - floors[from].inprogress_up;
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semaphore_signal(&floors[from].queueInteraction);
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// Print person waiting
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print_at_xy(NLIFTS*4+floors[from].waitingtogodown+floors[from].waitingtogoup,NFLOORS-from, pr);
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// We want this to happen after the semaphore is released, so the person is added after any deletions
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print_at_xy(NLIFTS*4+floors[from].waitingtogoup +floors[from].waitingtogodown,NFLOORS-from, pr);
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s = &floors[from].down_arrow;
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// Wait for a lift to arrive (going down)
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}
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@ -283,9 +326,9 @@ void* person_thread(void *p) {
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// Add one to passengers waiting for floor
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// Only one person enters at a time
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semaphore_wait(&lift->load);
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semaphore_wait(&lift->buttonPress);
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lift->stops[to]++;
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semaphore_signal(&lift->load);
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semaphore_signal(&lift->buttonPress);
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// Press button if we are the first
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if(lift->stops[to]==1) {
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// Print light for destination
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@ -313,7 +356,6 @@ void printbuilding(void) {
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// Clear Screen
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system(clear_screen);
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// Print the whole building before anything else
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semaphore_wait(&printSemaphore);
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// Print Roof
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printf("%s", tl);
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for(l = 0; l < NLIFTS-1; l++) {
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@ -342,19 +384,40 @@ void printbuilding(void) {
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printf("Lift Simulation - Press CTRL-Break to exit\n");
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// Ensure buffer is written
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fflush(stdout);
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// Once the building has been printed, then we can those waiting to print that they may do so
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semaphore_signal(&printSemaphore);
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}
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// --------------------------------------------------
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// Iterate through the floors and update the queue size
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// --------------------------------------------------
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void* update_floor_counts(void *p){
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while(TRUE){
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int i;
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for (i = 0; i < NFLOORS; i++){
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char str[12];
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sprintf(str, "%d", floors[i].waitingtogodown + floors[i].waitingtogoup);
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print_at_xy(4*NLIFTS+NPEOPLE, NFLOORS-i, " ");
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print_at_xy(4*NLIFTS+NPEOPLE, NFLOORS-i, str);
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}
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}
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Sleep(16);
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}
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// --------------------------------------------------
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// Main starts the threads and then waits.
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// --------------------------------------------------
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int main() {
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// Local variables
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unsigned long i;
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semaphore_create(&printSemaphore, 1);
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semaphore_create(&printSemaphore, 0);
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// Initialise Building
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for(i = 0; i < NFLOORS; i++) {
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// Initialise Floor
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floors[i].inprogress_down = 0;
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floors[i].inprogress_up = 0;
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floors[i].waitingtogoup = 0;
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floors[i].waitingtogodown = 0;
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semaphore_create(&floors[i].up_arrow, 0);
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@ -378,7 +441,7 @@ int main() {
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// Create Person Thread
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create_thread(person_thread, (void*)i);
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}
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//create_thread(update_floor_counts, (void*)i);
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// Go to sleep for 86400 seconds (one day)
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Sleep(86400000ULL);
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}
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42
logic.md
42
logic.md
@ -1,20 +1,40 @@
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# Logic
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## Details:
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***Stylised text in <span style="color:green">green</span> represents the actual lift metaphor***
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***<span style="color:red">Red</span> represents significant changes to the program***
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## Initial State:
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* Lifts all at the bottom of the building
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* People all outside the building
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* not waiting on an arrow
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* not in a lift
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## State 1:
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### *These are performed simulataneously*
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## Loop:
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### *These are performed simulataneously, with a thread for each instance*
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---
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* Lift Thread
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1. Lift waits for a short amount of time (to allow people to enter the building)
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2. If no one is in the lift, it calls `get_into_lift()`
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3. `get_into_lift()` checks if someone is waiting on the up arrow semaphore
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4. Two things must then happen:
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* First, the lift must update the lift that currently is on that floor
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* Second, the lift must signal to a passenger that it may enter.
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* ### Lift Thread - *this is a black-box as far as the metaphor goes*
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1. While there are people to unload at this floor, unload them
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2. Call `get_into_lift(Lift, Direction)`, to load people from the apporopriate waiting queue (up | down) from the current floor
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3. Redraw
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3. Change position
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* `get_into_lift()`
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1. Fetch the correct semaphor for our queue
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2. Get the number of waiting people on that queue
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3. While there are people waiting:
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1. If the lift is empty, change our direction to the supplied direction
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2. While the lift is not full, and we have people waiting:
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* <span style="color:red">Keep track of the number of `in progress` waiting people</span>
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1. Add a person to the lift.
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2. Redraw the waiting queue
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3. Remove the person from the waiting queue
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4. Signal person to actually get into the lift
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---
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* Person Thread
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1.
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* ### Person Thread - *this is modelled around the actual metaphor*
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1. Choose a random floor to enter
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2. Decide if the floor is above or below the current position
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3. Add ourselves to the appropriate move (up | down) group <span style="color:green">Press the `call elevator` button</span>
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4. <span style="color:green">Wait for the lift to arrive</span> *on the appropriate spot (up | down); no metaphor for this concept*
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5. Enter the lift that is waiting
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6. Move to the waiting group for the target floor <span style="color:green">Press the target floor button</span>
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7. Wait until the lift reaches our destination floor and leave when it is our turn to exit.
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