//Note: This is an extension of House Robber. (security system is tripped if two ajacent houses are robbed)
//After robbing those houses on that street, the thief has found himself a new place for his thievery so that
//he will not get too much attention. This time, all houses at this place are arranged in a circle. That means
//the first house is the neighbor of the last one. Meanwhile, the security system for these houses remain the
//same as for those in the previous street.
//Given a list of non-negative integers representing the amount of money of each house, determine the maximum
//amount of money you can rob tonight without alerting the police.
class HouseRobberII {
public int rob(int[] nums) {
if (nums.length == 0) {
return 0;
}
if (nums.length < 2) {
return nums[0];
}
int[] first = new int[nums.length + 1];
int[] second = new int[nums.length + 1];
first[0] = 0;
first[1] = nums[0];
second[0] = 0;
second[1] = 0;
for (int i = 2; i <= nums.length; i++) {
first[i] = Math.max(first[i - 1], first[i - 2] + nums[i - 1]);
second[i] = Math.max(second[i - 1], second[i - 2] + nums[i - 1]);
}
return Math.max(first[nums.length - 1], second[nums.length]);
}
}
//After robbing those houses on that street, the thief has found himself a new place for his thievery so that
//he will not get too much attention. This time, all houses at this place are arranged in a circle. That means
//the first house is the neighbor of the last one. Meanwhile, the security system for these houses remain the
//same as for those in the previous street.
//Given a list of non-negative integers representing the amount of money of each house, determine the maximum
//amount of money you can rob tonight without alerting the police.
class HouseRobberII {
public int rob(int[] nums) {
if (nums.length == 0) {
return 0;
}
if (nums.length < 2) {
return nums[0];
}
int[] first = new int[nums.length + 1];
int[] second = new int[nums.length + 1];
first[0] = 0;
first[1] = nums[0];
second[0] = 0;
second[1] = 0;
for (int i = 2; i <= nums.length; i++) {
first[i] = Math.max(first[i - 1], first[i - 2] + nums[i - 1]);
second[i] = Math.max(second[i - 1], second[i - 2] + nums[i - 1]);
}
return Math.max(first[nums.length - 1], second[nums.length]);
}
}
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