CSES - Datatähti 2016 alku - Results
Submission details
Task:Tontti
Sender:testUser
Submission time:2015-10-10 13:54:22
Language:Java
Status:READY
Result:0
Feedback
groupverdictscore
#10
#20
#30
Test results
testverdicttimegroup
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Code

/**
 * Created by Frans on 5.10.2015.
 */
public class Tontti{

    static int height;
    static int width;
    static int[][] kenttaSumma;
    static int wantedTrees;
    static long runAmountB;
    static long runAmountBU;
    static long runAmountBD;
    static long runAmountL;

    public static void main(String[] args){

        //todo
        int futureWidth = 2000;
        int futureHeight = 2000;
        int futurewantedTrees = (int) (2*Math.pow(10,3));
        height = futureHeight;
        width = futureWidth;
        wantedTrees = futurewantedTrees;

        kenttaSumma = new int[width+1][height+1];

        String[] lines = new String[height+1];
        for (int y=1; y<=height; y++) {
            lines[y] = "";
            for (int x2=1; x2<=width; x2++){
                if (Math.random() > 0.3){
                    lines[y] = lines[y] + ".";
                }else {
                    lines[y] = lines[y] + "*";
                }
            }
        }

        long aika = System.nanoTime();
        kenttaSumma = new int[width+1][height+1];

        IO io = new IO();

        /*
        height = io.nextInt();
        width = io.nextInt();
        wantedTrees = io.nextInt();
        */


        int foundArea = 0;
        int minSize = (int) (Math.sqrt(wantedTrees) + 0.99);

        //calculate trees and save it in to array and summed area table
        for (int y = 1; y <= height; y++) {
            //String line = io.next();
            String line = lines[y];

            int sumRow = 0;
            for (int x = 1; x <= width; x++) {
                if (line.charAt(x - 1) == '*') {
                    sumRow++;
                }
                kenttaSumma[x][y] = sumRow + kenttaSumma[x][y - 1];

                int maxSize = min(x, y);

                //todo remove
                /*if (x==1999 && y==1999){
                    //stop here
                    break mainLoop;
                }*/

                if (maxSize >= minSize) {
                    foundArea += countAreasB(maxSize, minSize, x, y, 0);
                }

            }
        }

        io.println(foundArea);

        aika = (System.nanoTime()-aika)/1000000;
        io.println("---");
        io.println("Time: " + aika);
        io.println("Loops Binary: " + runAmountB/1000000.0);
        io.println("   -high: " + runAmountBU/1000000.0);
        io.println("   -low: " + runAmountBD/1000000.0);
        io.println("Loops Linear: " + runAmountL/1000000.0);


        io.close();
    }

    //rekursiivinen binaarihaku
    // x2 = x -1
    // y2 = y -1
    private static int countAreasB(int maxSize,int minSize, int x, int y, int prevSize){
        int areasFound = 0;
        int tSize = (int) ((maxSize + minSize)/2.0 + 0.99);

        //lopetaan kun sama on jo katsottu
        if (prevSize != tSize){
            prevSize = tSize;

            runAmountB ++;
            int sum = kenttaSumma[x][y]+kenttaSumma[x-tSize][y-tSize]-kenttaSumma[x][y-tSize]-kenttaSumma[x-tSize][y];

            if(sum > wantedTrees){
                runAmountBU ++;
                tSize = (int) (Math.sqrt(tSize*tSize-(sum-wantedTrees))+0.999); //pitkalle johdettu matemaattinen optimointi
                tSize = (tSize - minSize <= 1)?minSize:tSize; //estetaan ikuinen pyoristyslooppi

                areasFound += countAreasB(tSize, minSize, x, y, prevSize);
            }else if (sum < wantedTrees){
                runAmountBD ++;
                areasFound += countAreasB(maxSize, tSize, x, y, prevSize);
            }else {
                //molemmat suunnat ovat mahdollisia --> kokeillaan kaikki lahella olevat
                areasFound ++;
                areasFound += countAreasL(tSize+1, maxSize, x, y, 1);
                areasFound += countAreasL(tSize-1, minSize, x, y, -1);
            }
        }
        
        return areasFound;
    }

    //suoraviivainen haku
    // x2 = x-1
    // y2 = y-1
    private static int countAreasL(int startSize,int endSize, int x, int y, int direction){
        int areasFound = 0;

        for (int tSize=startSize; direction*tSize<=endSize*direction; tSize=tSize+direction){

            runAmountL ++;
            int sum = kenttaSumma[x][y]+kenttaSumma[x-tSize][y-tSize]-kenttaSumma[x][y-tSize]-kenttaSumma[x-tSize][y];
            if (sum == wantedTrees){
                areasFound ++;
            }else{
                break;
            }

        }

        return areasFound;
    }

    //just for lulz
    private static int max(final int a, final int b){
        return (a>b)?a:b;
    }
    private static int min(final int a, final int b){
        return (a<b)?a:b;
    }


}

Test details

Test 1

Group: 1

Verdict:

input
10 10 1
......*...
.......*..
*..*....*.
*....*....
...

correct output
94

user output
(empty)

Test 2

Group: 1

Verdict:

input
10 10 5
**********
**********
**********
**********
...

correct output
0

user output
(empty)

Test 3

Group: 1

Verdict:

input
10 10 10
**...*...*
*..*.**.*.
...**.*..*
*...**.*..
...

correct output
4

user output
(empty)

Test 4

Group: 1

Verdict:

input
10 10 5
****......
*.*.**..**
....*.*..*
...*.***..
...

correct output
16

user output
(empty)

Test 5

Group: 1

Verdict:

input
10 10 2
**.***..*.
...*.*....
.***.*...*
***.***..*
...

correct output
30

user output
(empty)

Test 6

Group: 2

Verdict:

input
500 500 1
.................................

correct output
9552040

user output
(empty)

Test 7

Group: 2

Verdict:

input
500 500 5
.................................

correct output
1536063

user output
(empty)

Test 8

Group: 2

Verdict:

input
500 500 25000
**...*...**..*.*..*.**.*..*.*....

correct output
288

user output
(empty)

Test 9

Group: 2

Verdict:

input
500 500 12500
**.**.*..*...*.**...*.***........

correct output
786

user output
(empty)

Test 10

Group: 2

Verdict:

input
500 500 5000
.*.*.**..*.*.**.**..*..**...*....

correct output
1763

user output
(empty)

Test 11

Group: 3

Verdict:

input
2000 2000 1
.................................

correct output
489611392

user output
(empty)

Test 12

Group: 3

Verdict:

input
2000 2000 5
.................................

correct output
120725884

user output
(empty)

Test 13

Group: 3

Verdict:

input
2000 2000 400000
..*..**.**.**.*.***...**.*..**...

correct output
1849

user output
(empty)

Test 14

Group: 3

Verdict:

input
2000 2000 200000
***.*....*.*..*....**..*..*.*....

correct output
2665

user output
(empty)

Test 15

Group: 3

Verdict:

input
2000 2000 80000
**.**...*.***.**....**.*....*....

correct output
5587

user output
(empty)