392 lines
6.5 KiB
Java
392 lines
6.5 KiB
Java
/**
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** Java Program to implement Bit MatrixThis is a Java Program to implement Bit Matrix. Here bit matrix is implemented as an array of bit sets.
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**/
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import java.util.Scanner;
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import java.util.BitSet;
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/** class bit Matrix */
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class BitMatrix
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{
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private BitSet[] bitArr;
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/** constructor **/
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public BitMatrix(int rows, int cols)
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{
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bitArr = new BitSet[rows];
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for (int i = 0; i < rows; i++)
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bitArr[i] = new BitSet(cols);
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}
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/** function to clear **/
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public void clear()
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{
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int rows = bitArr.length;
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int cols = bitArr[0].size();
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bitArr = new BitSet[rows];
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for (int i = 0; i < rows; i++)
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bitArr[i] = new BitSet(cols);
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}
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/** function to clear a particular row **/
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public void clear(int r)
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{
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bitArr[r].clear();
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}
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/** function to clear a particular bit **/
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public void clear(int r, int c)
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{
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bitArr[r].clear(c);
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}
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/** function to get a particular bit **/
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public boolean get(int r, int c)
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{
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return bitArr[r].get(c);
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}
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/** function to set a particular bit **/
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public void set(int r, int c)
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{
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bitArr[r].set(c);
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}
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/** function to OR two rows **/
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public void or(int r1, int r2)
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{
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bitArr[r1].or(bitArr[r2]);
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}
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/** function to And two rows **/
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public void and(int r1, int r2)
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{
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bitArr[r1].and(bitArr[r2]);
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}
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/** function to XOR two rows **/
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public void xor(int r1, int r2)
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{
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bitArr[r1].xor(bitArr[r2]);
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}
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/** function to display bitset */
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public void display()
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{
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System.out.println("\nBit Matrix : ");
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for (BitSet bs : bitArr)
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System.out.println(bs);
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System.out.println();
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}
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}
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/** BitMatrixTest **/
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public class BitMatrixTest
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{
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public static void main(String[] args)
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{
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Scanner scan = new Scanner(System.in);
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System.out.println("Bit Matrix Test\n");
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System.out.println("Enter row and column dimensions");
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BitMatrix bm = new BitMatrix(scan.nextInt(), scan.nextInt() );
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char ch;
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/* Perform Bit Matrix operations */
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do
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{
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System.out.println("\nBit Matrix Operations\n");
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System.out.println("1. or ");
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System.out.println("2. and");
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System.out.println("3. xor");
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System.out.println("4. clear");
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System.out.println("5. set");
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System.out.println("6. get");
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int choice = scan.nextInt();
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switch (choice)
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{
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case 1 :
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System.out.println("Enter row1 and row2 to OR");
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bm.or(scan.nextInt(), scan.nextInt() );
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break;
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case 2 :
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System.out.println("Enter row1 and row2 to AND");
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bm.and(scan.nextInt(), scan.nextInt() );
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break;
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case 3 :
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System.out.println("Enter row1 and row2 to XOR");
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bm.xor(scan.nextInt(), scan.nextInt() );
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break;
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case 4 :
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System.out.println("\nBit matrix Cleared");
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bm.clear();
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break;
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case 5 :
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System.out.println("Enter row and column to set bit");
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bm.set(scan.nextInt(), scan.nextInt() );
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break;
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case 6 :
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System.out.println("Enter row and column to get bit status");
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System.out.println("\nStatus : "+ bm.get(scan.nextInt(), scan.nextInt()));
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break;
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default :
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System.out.println("Wrong Entry \n ");
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break;
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}
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bm.display();
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System.out.println("\nDo you want to continue (Type y or n) \n");
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ch = scan.next().charAt(0);
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}
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while (ch == 'Y'|| ch == 'y');
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}
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}
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/*
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Enter row and column dimensions
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4 4
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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5
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Enter row and column to set bit
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0 24
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Bit Matrix :
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{24}
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{}
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{}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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5
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Enter row and column to set bit
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0 6
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Bit Matrix :
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{6, 24}
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{}
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{}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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5
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Enter row and column to set bit
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1 28
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Bit Matrix :
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{6, 24}
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{28}
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{}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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5
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Enter row and column to set bit
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1 5
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Bit Matrix :
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{6, 24}
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{5, 28}
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{}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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1
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Enter row1 and row2 to OR
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2 0
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Bit Matrix :
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{6, 24}
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{5, 28}
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{6, 24}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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2
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Enter row1 and row2 to AND
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0 3
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Bit Matrix :
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{}
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{5, 28}
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{6, 24}
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{}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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3
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Enter row1 and row2 to XOR
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3 2
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Bit Matrix :
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{}
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{5, 28}
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{6, 24}
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{6, 24}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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3
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Enter row1 and row2 to XOR
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3 1
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Bit Matrix :
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{}
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{5, 28}
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{6, 24}
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{5, 6, 24, 28}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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6
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Enter row and column to get bit status
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0 3
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Status : false
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Bit Matrix :
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{}
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{5, 28}
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{6, 24}
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{5, 6, 24, 28}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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6
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Enter row and column to get bit status
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1 28
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Status : true
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Bit Matrix :
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{}
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{5, 28}
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{6, 24}
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{5, 6, 24, 28}
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Do you want to continue (Type y or n)
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y
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Bit Matrix Operations
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1. or
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2. and
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3. xor
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4. clear
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5. set
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6. get
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4
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Bit matrix Cleared
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Bit Matrix :
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{}
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{}
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{}
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{}
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Do you want to continue (Type y or n)
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n |