import java.util.ArrayList;
public class Solution {
public int minNumberInRotateArray(int [] array) {
if(array==null||array.length==0){
return 0;
}
int index1=0;
int index2=array.length-1;
while(array[index1]>=array[index2]){
if(index2-index1==1){
indexMid=index2;
break;
}
return MinInOrder(array,index1,index2);
}
//用到了快速排序的快速定位范围的思想,
if(array[indexMid]>=array[index1]){
index1=indexMid;
}
else if(array[indexMid]<=array[index2]){
index2=indexMid;
}
}
return array[indexMid];
}
int MinInOrder(int[]array,int index1,int index2){
int result=array[index1];
for(int i=index1+1;i<=index2;i++){
if(array[i]<result){
result=array[i];
}
}
return result;
}
}
public class Solution {
public int minNumberInRotateArray(int [] array) {
if(array==null||array.length==0){
return 0;
}
int index1=0;
int index2=array.length-1;
int indexMid=index1;
//
当low和up两个指针相邻时候,就找到了最小值,也就是右边序列的第一个值
if(index2-index1==1){
indexMid=index2;
break;
}
indexMid=(index1+index2)/2;
//如果index1、index2、indexMid下标所指的值恰巧相等,只能用顺序查找
if(array[indexMid]==array[index1]&&array[index2]>=array[index1]){return MinInOrder(array,index1,index2);
}
//用到了快速排序的快速定位范围的思想,
if(array[indexMid]>=array[index1]){
index1=indexMid;
}
else if(array[indexMid]<=array[index2]){
index2=indexMid;
}
}
return array[indexMid];
}
int MinInOrder(int[]array,int index1,int index2){
int result=array[index1];
for(int i=index1+1;i<=index2;i++){
if(array[i]<result){
result=array[i];
}
}
return result;
}
}