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312 lines
13 KiB
312 lines
13 KiB
#include "pixelGameEngine.h"
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#include "olcPGEX_QuickGUI.h"
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#include <set>
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using namespace olc;
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// Override base class with your custom functionality
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class ChampionsLeaguePointSolver : public olc::PixelGameEngine
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{
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std::string slurp(std::ifstream& in) {
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std::ostringstream sstr;
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sstr << in.rdbuf();
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return sstr.str();
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}
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struct ScoreData{
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int difficulty=0;
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std::string song;
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int totalEX=0;
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int ex1=0,ex2=0,ex3=0;
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std::string str()const{
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return "["+std::to_string(difficulty)+"] "+song+": "+std::to_string(totalEX)+" total, "+" EX1: "+std::to_string(ex1)+" EX2: "+std::to_string(ex2)+" EX3: "+std::to_string(ex3);
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}
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friend std::ostream&operator<<(std::ostream&os,const ScoreData&data){
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os<<data.str();
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return os;
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}
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};
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std::string GetNext(int&marker,std::string str){
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int originalMarker=marker;
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marker=str.find_first_of(',',originalMarker)+1;
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return str.substr(originalMarker,marker-1);
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};
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struct TestCase{
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int p1Amt,p2Amt,p3Amt;
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};
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struct SongCombinations{
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std::vector<std::pair<int,int>>p1; //Index to song followed by EX of song.
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std::vector<std::pair<int,int>>p2;
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std::vector<std::pair<int,int>>p3;
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std::set<int>p1Picked;
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std::set<int>p2Picked;
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std::set<int>p3Picked;
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int totalEX=0;
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int remainingA,remainingB,remainingC;
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};
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std::vector<ScoreData>dataA,dataB;
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std::vector<std::pair<int,int>>player1Score,player2Score,player3Score;
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void Evaluate(){
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std::vector<TestCase>cases;
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for(int i=0;i<5;i++){
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for(int j=0;j<5;j++){
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for(int k=0;k<5;k++){
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if(i+j+k==6){
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cases.push_back(TestCase{i,j,k});
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}
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}
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}
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}
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auto ChooseSong = [](SongCombinations&combinations,std::vector<ScoreData>&dat,int index){
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if(combinations.remainingA>0&&combinations.p1Picked.count(index)==0&&combinations.p2Picked.count(index)==0&&combinations.p3Picked.count(index)==0){
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combinations.remainingA--;
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combinations.totalEX+=dat[index].ex1;
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combinations.p1.push_back(std::pair<int,int>{index,dat[index].ex1});
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combinations.p1Picked.insert(index);
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}else
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if(combinations.remainingB>0&&combinations.p1Picked.count(index)==0&&combinations.p2Picked.count(index)==0&&combinations.p3Picked.count(index)==0){
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combinations.remainingB--;
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combinations.totalEX+=dat[index].ex2;
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combinations.p2.push_back(std::pair<int,int>{index,dat[index].ex2});
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combinations.p2Picked.insert(index);
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}else
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if(combinations.remainingC>0&&combinations.p1Picked.count(index)==0&&combinations.p2Picked.count(index)==0&&combinations.p3Picked.count(index)==0){
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combinations.remainingC--;
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combinations.totalEX+=dat[index].ex3;
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combinations.p3.push_back(std::pair<int,int>{index,dat[index].ex3});
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combinations.p3Picked.insert(index);
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}
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};
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std::vector<SongCombinations> bestComboA,bestComboB;
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int caseInd=0;
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for(TestCase&_case:cases){
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bestComboA.push_back({});
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bestComboA[caseInd].remainingA=_case.p1Amt;
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bestComboA[caseInd].remainingB=_case.p2Amt;
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bestComboA[caseInd].remainingC=_case.p3Amt;
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SongCombinations testCombo=bestComboA[caseInd];
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for(int i=0;i<12;i++){
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SongCombinations c1=testCombo;
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ChooseSong(c1,dataA,i);
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for(int j=0;j<12;j++){
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SongCombinations c2=c1;
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ChooseSong(c2,dataA,j);
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for(int k=0;k<12;k++){
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SongCombinations c3=c2;
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ChooseSong(c3,dataA,k);
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for(int l=0;l<12;l++){
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SongCombinations c4=c3;
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ChooseSong(c4,dataA,l);
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for(int m=0;m<12;m++){
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SongCombinations c5=c4;
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ChooseSong(c5,dataA,m);
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for(int n=0;n<12;n++){
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SongCombinations c6=c5;
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ChooseSong(c6,dataA,n);
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if(bestComboA[caseInd].totalEX<c6.totalEX){
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bestComboA[caseInd]=c6;
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bestComboA[caseInd].totalEX=c6.totalEX;
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std::cout<<"New Best Song Combinations found for Case ("<<_case.p1Amt<<","<<_case.p2Amt<<","<<_case.p3Amt<<") - Total EX: "<<bestComboA[caseInd].totalEX<<":"<<std::endl;
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std::cout<<"\t";
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for(std::pair<int,int>&p1:bestComboA[caseInd].p1){
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std::cout<<"P1["<<p1.first<<"]:"<<p1.second<<" ";
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}
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for(std::pair<int,int>&p2:bestComboA[caseInd].p2){
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std::cout<<"P2["<<p2.first<<"]:"<<p2.second<<" ";
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}
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for(std::pair<int,int>&p3:bestComboA[caseInd].p3){
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std::cout<<"P3["<<p3.first<<"]:"<<p3.second<<" ";
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}
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std::cout<<std::endl;
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}
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}
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}
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}
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}
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}
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}
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caseInd++;
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}
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caseInd=0;
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for(TestCase&_case:cases){
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bestComboB.push_back({});
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bestComboB[caseInd].remainingA=_case.p1Amt;
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bestComboB[caseInd].remainingB=_case.p2Amt;
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bestComboB[caseInd].remainingC=_case.p3Amt;
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SongCombinations testCombo=bestComboB[caseInd];
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for(int i=0;i<12;i++){
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SongCombinations c1=testCombo;
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ChooseSong(c1,dataB,i);
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for(int j=0;j<12;j++){
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SongCombinations c2=c1;
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ChooseSong(c2,dataB,j);
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for(int k=0;k<12;k++){
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SongCombinations c3=c2;
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ChooseSong(c3,dataB,k);
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for(int l=0;l<12;l++){
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SongCombinations c4=c3;
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ChooseSong(c4,dataB,l);
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for(int m=0;m<12;m++){
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SongCombinations c5=c4;
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ChooseSong(c5,dataB,m);
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for(int n=0;n<12;n++){
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SongCombinations c6=c5;
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ChooseSong(c6,dataB,n);
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if(bestComboB[caseInd].totalEX<c6.totalEX){
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bestComboB[caseInd]=c6;
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bestComboB[caseInd].totalEX=c6.totalEX;
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std::cout<<"New Best Song Combinations found for Case ("<<_case.p1Amt<<","<<_case.p2Amt<<","<<_case.p3Amt<<") - Total EX: "<<bestComboB[caseInd].totalEX<<":"<<std::endl;
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std::cout<<"\t";
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for(std::pair<int,int>&p1:bestComboB[caseInd].p1){
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std::cout<<"P1["<<p1.first<<"]:"<<p1.second<<" ";
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}
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for(std::pair<int,int>&p2:bestComboB[caseInd].p2){
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std::cout<<"P2["<<p2.first<<"]:"<<p2.second<<" ";
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}
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for(std::pair<int,int>&p3:bestComboB[caseInd].p3){
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std::cout<<"P3["<<p3.first<<"]:"<<p3.second<<" ";
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}
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std::cout<<std::endl;
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}
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}
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}
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}
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}
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}
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}
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caseInd++;
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}
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int highestEX=0;
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SongCombinations picked1,picked2;
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for(SongCombinations&A:bestComboA){
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for(SongCombinations&B:bestComboB){
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if(A.totalEX+B.totalEX>highestEX&&A.p1Picked.size()+B.p1Picked.size()==4&&A.p2Picked.size()+B.p2Picked.size()==4&&A.p3Picked.size()+B.p3Picked.size()==4){
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highestEX=A.totalEX+B.totalEX;
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picked1=A;
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picked2=B;
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std::cout<<"New Best Song Combinations found for Final Picks - Total EX: "<<highestEX<<":"<<std::endl;
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std::cout<<"\t Set A: ";
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for(std::pair<int,int>&p1:picked1.p1){
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std::cout<<"P1["<<p1.first<<"]:"<<p1.second<<" ";
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}
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for(std::pair<int,int>&p2:picked1.p2){
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std::cout<<"P2["<<p2.first<<"]:"<<p2.second<<" ";
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}
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for(std::pair<int,int>&p3:picked1.p3){
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std::cout<<"P3["<<p3.first<<"]:"<<p3.second<<" ";
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}
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std::cout<<std::endl;
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std::cout<<"\t Set B: ";
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for(std::pair<int,int>&p1:picked2.p1){
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std::cout<<"P1["<<p1.first<<"]:"<<p1.second<<" ";
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}
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for(std::pair<int,int>&p2:picked2.p2){
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std::cout<<"P2["<<p2.first<<"]:"<<p2.second<<" ";
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}
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for(std::pair<int,int>&p3:picked2.p3){
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std::cout<<"P3["<<p3.first<<"]:"<<p3.second<<" ";
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}
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std::cout<<std::endl;
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}
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}
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}
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}
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public:
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struct SongElement{
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SongElement(QuickGUI::Manager&manager,std::string songName,vf2d pos){
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label=new QuickGUI::Label(manager,songName,pos,{164,12});
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p1Score=new QuickGUI::TextBox(manager,"",pos+vf2d{192,0},{36,12});
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p2Score=new QuickGUI::TextBox(manager,"",pos+vf2d{192+42*1,0},{36,12});
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p3Score=new QuickGUI::TextBox(manager,"",pos+vf2d{192+42*2,0},{36,12});
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}
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QuickGUI::Label*label;
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QuickGUI::TextBox*p1Score;
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QuickGUI::TextBox*p2Score;
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QuickGUI::TextBox*p3Score;
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};
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QuickGUI::Manager gui;
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std::vector<SongElement>songs;
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ChampionsLeaguePointSolver()
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{
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// Name your application
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sAppName = "Champions League Point Solver";
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}
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public:
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bool OnUserCreate() override
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{
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std::ifstream file("assets/team2");
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std::string line;
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//First two lines are garbage data.
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std::getline(file,line);
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std::getline(file,line);
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for(int i=0;i<12;i++){
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std::getline(file,line);
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int marker=0;
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ScoreData dat{
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stoi(GetNext(marker,line)),
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GetNext(marker,line),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line))};
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player1Score.push_back(std::pair<int,int>{dat.ex1,0});
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player2Score.push_back(std::pair<int,int>{dat.ex2,0});
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player3Score.push_back(std::pair<int,int>{dat.ex3,0});
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dataA.push_back(dat);
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songs.push_back(SongElement{gui,dat.song.substr(0,dat.song.find(',')),{4.f,2.f+12*i+16}});
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}
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//Two more lines of garbage data.
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std::getline(file,line);
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std::getline(file,line);
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for(int i=0;i<12;i++){
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std::getline(file,line);
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int marker=0;
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ScoreData dat{
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stoi(GetNext(marker,line)),
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GetNext(marker,line),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line)),
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stoi(GetNext(marker,line))};
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player1Score[i].second=dat.ex1;
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player2Score[i].second=dat.ex2;
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player3Score[i].second=dat.ex3;
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dataB.push_back(dat);
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songs.push_back(SongElement{gui,dat.song.substr(0,dat.song.find(',')),{4.f,2.f+12*(i+13)+16}});
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}
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std::cout<<"File Contents:"<<std::endl<<std::endl;
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for(auto&list:{dataA,dataB}){
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for(auto&dat:list){
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std::cout<<dat<<std::endl;
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}
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}
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std::cout<<"==================="<<std::endl;
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return true;
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}
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bool OnUserUpdate(float fElapsedTime) override
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{
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Clear(VERY_DARK_CYAN);
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gui.Update(this);
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gui.Draw(this);
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return true;
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}
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};
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int main()
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{
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ChampionsLeaguePointSolver solver;
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if (solver.Construct(320, 320, 4, 4))
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solver.Start();
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return 0;
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} |