use std::collections::{BTreeSet, HashMap}; #[derive(Debug, Clone)] struct SegmentTree { n: usize, orgn: usize, unit: T, mem: Vec, operator: F } impl SegmentTree where T: std::fmt::Debug + Copy, F: Fn(T, T) -> T { fn new(n: usize, unit: T, operator: F) -> Self { let mut size = 1usize; while size < n { size *= 2; } Self { n: size, orgn: n, unit: unit, mem: vec![unit; size*2-1], operator: operator, } } fn find_closed(&self, l: usize, r: usize) -> T { self.find(l, r+1) } fn find(&self, l: usize, r: usize) -> T { self._find(l, r, 0, 0, self.n) } fn set(&mut self, pos: usize, val: T) { let mut pos = pos + self.n - 1; self.mem[pos] = val; while pos > 0 { pos = self._parent(pos); self.mem[pos] = (self.operator)(self.mem[self._left(pos)], self.mem[self._right(pos)]); } } fn get(&mut self, pos: usize) -> T { self.mem[pos + self.n - 1] } fn _find(&self, a: usize, b: usize, nodenum: usize, l: usize, r: usize) -> T { if r <= a || b <= l { return self.unit; } else if a <= l && r <= b { return self.mem[nodenum]; } let left = self._find(a, b, self._left(nodenum), l, (l+r)/2); let right = self._find(a, b, self._right(nodenum), (l+r)/2, r); (self.operator)(left, right) } fn _left(&self, k: usize) -> usize { 2*k+1 } fn _right(&self, k: usize) -> usize { 2*k+2 } fn _parent(&self, k: usize) -> usize { (k-1)/2 } } fn main() { let mut n = String::new(); std::io::stdin().read_line(&mut n).ok(); let n: usize = n.trim().parse().unwrap(); let mut queries = (0..n).map(|_| { let mut temp = String::new(); std::io::stdin().read_line(&mut temp).ok(); let temp: Vec = temp.trim().split_whitespace().map(|s| s.parse().unwrap()).collect(); (temp[0], temp[1], temp[2]) }) .collect::>(); let mut pos = BTreeSet::new(); for &(t, x, y) in queries.iter() { pos.insert(x); if t == 1 { pos.insert(y); } } let mapping = pos.iter().enumerate().map(|(i, &v)| (v, i)).collect::>(); for i in 0..n { let (t, x, y) = queries[i]; if t == 0 { queries[i] = (t, *mapping.get(&x).unwrap(), y); } else { queries[i] = (t, *mapping.get(&x).unwrap(), *mapping.get(&y).unwrap()); } } let mut segtree = SegmentTree::new(pos.len(), 0usize, |x, y| x + y); let mut result = 0usize; for &(t, x, y) in queries.iter() { if t == 0 { let val = segtree.get(x); segtree.set(x, val+y); } else { result += segtree.find_closed(x, y); } } println!("{}", result); }