refactor: unify code style and fix minor merge issues

This commit is contained in:
2026-08-30 13:03:23 +04:00
parent e7a4224dd5
commit e20820b78f
14 changed files with 779 additions and 806 deletions
@@ -1,24 +1,24 @@
package ru.project.sorting;
import ru.project.list.MyList;
import java.util.Comparator;
import ru.project.collection.MyList;
public class BubbleSortStrategy<T> implements SortStrategy<T> {
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
int n = list.size();
for (int i = 0; i < n - 1; i++) {
for (int j = 0; j < n - i - 1; j++) {
if (comparator.compare(list.get(j), list.get(j + 1)) > 0) {
T temp = list.get(j);
list.set(j, list.get(j + 1));
list.set(j + 1, temp);
}
}
}
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
}
int n = list.size();
for (int i = 0; i < n - 1; i++) {
for (int j = 0; j < n - i - 1; j++) {
if (comparator.compare(list.get(j), list.get(j + 1)) > 0) {
T temp = list.get(j);
list.set(j, list.get(j + 1));
list.set(j + 1, temp);
}
}
}
}
}
@@ -1,84 +1,84 @@
package ru.project.sorting;
import ru.project.list.MyList;
import java.util.ArrayList;
import java.util.Comparator;
import java.util.List;
import java.util.function.ToIntFunction;
import ru.project.collection.MyList;
public class EvenOnlyMergeSortStrategy<T> implements SortStrategy<T> {
private final ToIntFunction<T> valueExtractor;
private final ToIntFunction<T> valueExtractor;
public EvenOnlyMergeSortStrategy(ToIntFunction<T> valueExtractor) {
this.valueExtractor = valueExtractor;
public EvenOnlyMergeSortStrategy(ToIntFunction<T> valueExtractor) {
this.valueExtractor = valueExtractor;
}
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
List<Integer> evenIndices = new ArrayList<>();
List<T> evenElements = new ArrayList<>();
List<Integer> evenIndices = new ArrayList<>();
List<T> evenElements = new ArrayList<>();
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
int value = valueExtractor.applyAsInt(element);
if (value % 2 == 0) {
evenIndices.add(i);
evenElements.add(element);
}
}
if (evenElements.size() <= 1) {
return;
}
List<T> sortedEven = mergeSort(evenElements, comparator);
for (int j = 0; j < evenIndices.size(); j++) {
list.set(evenIndices.get(j), sortedEven.get(j));
}
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
int value = valueExtractor.applyAsInt(element);
if (value % 2 == 0) {
evenIndices.add(i);
evenElements.add(element);
}
}
private List<T> mergeSort(List<T> list, Comparator<T> comparator) {
if (list.size() <= 1) {
return list;
}
int mid = list.size() / 2;
List<T> left = mergeSort(list.subList(0, mid), comparator);
List<T> right = mergeSort(list.subList(mid, list.size()), comparator);
return merge(left, right, comparator);
if (evenElements.size() <= 1) {
return;
}
private List<T> merge(List<T> left, List<T> right, Comparator<T> comparator) {
List<T> result = new ArrayList<>();
int i = 0, j = 0;
List<T> sortedEven = mergeSort(evenElements, comparator);
while (i < left.size() && j < right.size()) {
if (comparator.compare(left.get(i), right.get(j)) <= 0) {
result.add(left.get(i));
i++;
} else {
result.add(right.get(j));
j++;
}
}
while (i < left.size()) {
result.add(left.get(i));
i++;
}
while (j < right.size()) {
result.add(right.get(j));
j++;
}
return result;
for (int j = 0; j < evenIndices.size(); j++) {
list.set(evenIndices.get(j), sortedEven.get(j));
}
}
}
private List<T> mergeSort(List<T> list, Comparator<T> comparator) {
if (list.size() <= 1) {
return list;
}
int mid = list.size() / 2;
List<T> left = mergeSort(list.subList(0, mid), comparator);
List<T> right = mergeSort(list.subList(mid, list.size()), comparator);
return merge(left, right, comparator);
}
private List<T> merge(List<T> left, List<T> right, Comparator<T> comparator) {
List<T> result = new ArrayList<>();
int i = 0, j = 0;
while (i < left.size() && j < right.size()) {
if (comparator.compare(left.get(i), right.get(j)) <= 0) {
result.add(left.get(i));
i++;
} else {
result.add(right.get(j));
j++;
}
}
while (i < left.size()) {
result.add(left.get(i));
i++;
}
while (j < right.size()) {
result.add(right.get(j));
j++;
}
return result;
}
}
@@ -1,94 +1,89 @@
package ru.project.sorting;
import ru.project.collection.MyLinkedList;
import ru.project.collection.MyList;
import java.util.Comparator;
import java.util.function.ToIntFunction;
import ru.project.collection.MyLinkedList;
import ru.project.collection.MyList;
public class EvenOnlySortStrategy<T> implements SortStrategy<T> {
private SortStrategy<T> sortStrategy;
private ToIntFunction<T> valueExtractor;
private SortStrategy<T> sortStrategy;
private ToIntFunction<T> valueExtractor;
public EvenOnlySortStrategy() {
public EvenOnlySortStrategy() {}
public EvenOnlySortStrategy(SortStrategy<T> sortStrategy) {
setSortStrategy(sortStrategy);
}
public EvenOnlySortStrategy(SortStrategy<T> sortStrategy, ToIntFunction<T> valueExtractor) {
setSortStrategy(sortStrategy);
setValueExtractor(valueExtractor);
}
public void setSortStrategy(SortStrategy<T> sortStrategy) {
if (sortStrategy == null) {
throw new IllegalArgumentException("Sort strategy must not be null");
}
public EvenOnlySortStrategy(SortStrategy<T> sortStrategy) {
setSortStrategy(sortStrategy);
this.sortStrategy = sortStrategy;
}
public void setValueExtractor(ToIntFunction<T> valueExtractor) {
if (valueExtractor == null) {
throw new IllegalArgumentException("Value extractor must not be null");
}
public EvenOnlySortStrategy(
SortStrategy<T> sortStrategy,
ToIntFunction<T> valueExtractor
) {
setSortStrategy(sortStrategy);
setValueExtractor(valueExtractor);
this.valueExtractor = valueExtractor;
}
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (sortStrategy == null) {
throw new IllegalStateException("Sort strategy is not set");
}
public void setSortStrategy(SortStrategy<T> sortStrategy) {
if (sortStrategy == null) {
throw new IllegalArgumentException("Sort strategy must not be null");
}
this.sortStrategy = sortStrategy;
if (valueExtractor == null) {
throw new IllegalStateException("Value extractor is not set");
}
public void setValueExtractor(ToIntFunction<T> valueExtractor) {
if (valueExtractor == null) {
throw new IllegalArgumentException("Value extractor must not be null");
}
this.valueExtractor = valueExtractor;
if (list == null || list.size() <= 1) {
return;
}
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (sortStrategy == null) {
throw new IllegalStateException("Sort strategy is not set");
}
int evenCount = 0;
if (valueExtractor == null) {
throw new IllegalStateException("Value extractor is not set");
}
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
if (list == null || list.size() <= 1) {
return;
}
int evenCount = 0;
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
if (valueExtractor.applyAsInt(element) % 2 == 0) {
evenCount++;
}
}
if (evenCount <= 1) {
return;
}
MyList<T> evenElements = new MyLinkedList<>();
int[] evenIndexes = new int[evenCount];
int evenIndex = 0;
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
if (valueExtractor.applyAsInt(element) % 2 == 0) {
evenElements.add(element);
evenIndexes[evenIndex] = i;
evenIndex++;
}
}
sortStrategy.sort(evenElements, comparator);
for (int i = 0; i < evenIndexes.length; i++) {
list.set(evenIndexes[i], evenElements.get(i));
}
if (valueExtractor.applyAsInt(element) % 2 == 0) {
evenCount++;
}
}
}
if (evenCount <= 1) {
return;
}
MyList<T> evenElements = new MyLinkedList<>();
int[] evenIndexes = new int[evenCount];
int evenIndex = 0;
for (int i = 0; i < list.size(); i++) {
T element = list.get(i);
if (valueExtractor.applyAsInt(element) % 2 == 0) {
evenElements.add(element);
evenIndexes[evenIndex] = i;
evenIndex++;
}
}
sortStrategy.sort(evenElements, comparator);
for (int i = 0; i < evenIndexes.length; i++) {
list.set(evenIndexes[i], evenElements.get(i));
}
}
}
@@ -1,67 +1,66 @@
package ru.project.sorting;
import ru.project.collection.MyList;
import java.util.Comparator;
import ru.project.collection.MyList;
public class MergeSortStrategy<T> implements SortStrategy<T> {
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
mergeSort(list, 0, list.size() - 1, comparator);
@Override
public void sort(MyList<T> list, Comparator<T> comparator) {
if (list == null || list.size() <= 1) {
return;
}
mergeSort(list, 0, list.size() - 1, comparator);
}
private void mergeSort(MyList<T> list, int left, int right, Comparator<T> comparator) {
if (left >= right) {
return;
}
int mid = (left + right) / 2;
mergeSort(list, left, mid, comparator);
mergeSort(list, mid + 1, right, comparator);
merge(list, left, mid, right, comparator);
}
private void merge(MyList<T> list, int left, int mid, int right, Comparator<T> comparator) {
int leftSize = mid - left + 1;
int rightSize = right - mid;
@SuppressWarnings("unchecked")
T[] leftArray = (T[]) new Object[leftSize];
@SuppressWarnings("unchecked")
T[] rightArray = (T[]) new Object[rightSize];
for (int i = 0; i < leftSize; i++) {
leftArray[i] = list.get(left + i);
}
for (int j = 0; j < rightSize; j++) {
rightArray[j] = list.get(mid + 1 + j);
}
private void mergeSort(MyList<T> list, int left, int right, Comparator<T> comparator) {
if (left >= right) {
return;
}
int mid = (left + right) / 2;
mergeSort(list, left, mid, comparator);
mergeSort(list, mid + 1, right, comparator);
merge(list, left, mid, right, comparator);
int i = 0, j = 0, k = left;
while (i < leftSize && j < rightSize) {
if (comparator.compare(leftArray[i], rightArray[j]) <= 0) {
list.set(k, leftArray[i]);
i++;
} else {
list.set(k, rightArray[j]);
j++;
}
k++;
}
private void merge(MyList<T> list, int left, int mid, int right, Comparator<T> comparator) {
int leftSize = mid - left + 1;
int rightSize = right - mid;
@SuppressWarnings("unchecked")
T[] leftArray = (T[]) new Object[leftSize];
@SuppressWarnings("unchecked")
T[] rightArray = (T[]) new Object[rightSize];
for (int i = 0; i < leftSize; i++) {
leftArray[i] = list.get(left + i);
}
for (int j = 0; j < rightSize; j++) {
rightArray[j] = list.get(mid + 1 + j);
}
int i = 0, j = 0, k = left;
while (i < leftSize && j < rightSize) {
if (comparator.compare(leftArray[i], rightArray[j]) <= 0) {
list.set(k, leftArray[i]);
i++;
} else {
list.set(k, rightArray[j]);
j++;
}
k++;
}
while (i < leftSize) {
list.set(k, leftArray[i]);
i++;
k++;
}
while (j < rightSize) {
list.set(k, rightArray[j]);
j++;
k++;
}
while (i < leftSize) {
list.set(k, leftArray[i]);
i++;
k++;
}
}
while (j < rightSize) {
list.set(k, rightArray[j]);
j++;
k++;
}
}
}
@@ -1,9 +1,8 @@
package ru.project.sorting;
import java.util.Comparator;
import ru.project.collection.MyList;
import java.util.Comparator;
public interface SortStrategy<T> {
void sort(MyList<T> list, Comparator<T> comparator);
}
void sort(MyList<T> list, Comparator<T> comparator);
}
@@ -1,12 +1,12 @@
package ru.project.sorting;
import ru.project.student.Student;
import java.util.Comparator;
import ru.project.student.Student;
public class StudentAverageGradeComparator implements Comparator<Student> {
@Override
public int compare(Student s1, Student s2) {
return Double.compare(s1.getAverageGrade(), s2.getAverageGrade());
}
}
@Override
public int compare(Student s1, Student s2) {
return Double.compare(s1.getAverageGrade(), s2.getAverageGrade());
}
}
@@ -1,12 +1,12 @@
package ru.project.sorting;
import ru.project.student.Student;
import java.util.Comparator;
import ru.project.student.Student;
public class StudentGroupComparator implements Comparator<Student> {
@Override
public int compare(Student s1, Student s2) {
return s1.getGroupNumber().compareTo(s2.getGroupNumber());
}
@Override
public int compare(Student s1, Student s2) {
return s1.getGroupNumber().compareTo(s2.getGroupNumber());
}
}
@@ -1,12 +1,12 @@
package ru.project.sorting;
import ru.project.student.Student;
import java.util.Comparator;
import ru.project.student.Student;
public class StudentRecordBookComparator implements Comparator<Student> {
@Override
public int compare(Student s1, Student s2) {
return Integer.compare(s1.getRecordBookNumber(), s2.getRecordBookNumber());
}
}
@Override
public int compare(Student s1, Student s2) {
return Integer.compare(s1.getRecordBookNumber(), s2.getRecordBookNumber());
}
}
@@ -54,6 +54,10 @@ public class Student {
return new Student(this.groupNumber, averageGrade, this.recordBookNumber);
}
public Student withRecordBookNumber(int recordBookNumber) {
return new Student(this.groupNumber, this.averageGrade, recordBookNumber);
}
public static double getMinAverageGrade() {
return MIN_AVERAGE_GRADE;
}