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https://git.sb/baoshuo/OI-codes.git
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309 lines
6.4 KiB
C++
309 lines
6.4 KiB
C++
#include <iostream>
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#include <chrono>
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#include <limits>
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#include <random>
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using std::cin;
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using std::cout;
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const char endl = '\n';
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const int N = 5e4 + 5;
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class Treap {
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private:
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struct node {
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node *lchild, *rchild;
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int size, value, key;
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node()
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: lchild(nullptr), rchild(nullptr), size(0), value(0), key(rand()) {}
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node(int _value)
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: lchild(nullptr), rchild(nullptr), size(1), value(_value), key(rand()) {}
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~node() {
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delete lchild;
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delete rchild;
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}
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inline void pushup() {
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size = 1;
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if (lchild != nullptr) size += lchild->size;
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if (rchild != nullptr) size += rchild->size;
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}
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} * root;
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inline int getNodeSize(node *node) {
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return node == nullptr ? 0 : node->size;
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}
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std::pair<node *, node *> split(node *p, int k) {
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if (p == nullptr) return std::make_pair(nullptr, nullptr);
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if (k <= getNodeSize(p->lchild)) {
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auto o = split(p->lchild, k);
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p->lchild = o.second;
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p->pushup();
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o.second = p;
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return o;
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}
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auto o = split(p->rchild, k - getNodeSize(p->lchild) - 1);
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p->rchild = o.first;
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p->pushup();
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o.first = p;
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return o;
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}
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std::pair<node *, node *> splitByValue(node *p, int value) {
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if (p == nullptr) return std::make_pair(nullptr, nullptr);
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if (p->value < value) {
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auto o = splitByValue(p->rchild, value);
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p->rchild = o.first;
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p->pushup();
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o.first = p;
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return o;
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}
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auto o = splitByValue(p->lchild, value);
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p->lchild = o.second;
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p->pushup();
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o.second = p;
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return o;
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}
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node *merge(node *x, node *y) {
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if (x == nullptr) return y;
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if (y == nullptr) return x;
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if (x->key > y->key) {
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x->rchild = merge(x->rchild, y);
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x->pushup();
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return x;
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}
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y->lchild = merge(x, y->lchild);
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y->pushup();
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return y;
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}
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public:
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Treap()
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: root(nullptr) {}
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~Treap() {
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delete root;
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}
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inline void insert(int value) {
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auto o = splitByValue(root, value);
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o.first = merge(o.first, new node(value));
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root = merge(o.first, o.second);
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}
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inline void erase(int value) {
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auto o = splitByValue(root, value);
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auto t = split(o.second, 1);
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if (t.first->value == value) {
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delete t.first;
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}
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root = merge(o.first, t.second);
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}
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inline int rank(int value) {
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auto x = splitByValue(root, value);
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int r = getNodeSize(x.first) + 1;
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root = merge(x.first, x.second);
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return r;
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}
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inline int kth(int k) {
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auto x = split(root, k - 1);
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auto y = split(x.second, 1);
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Treap::node *o = y.first;
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root = merge(x.first, merge(y.first, y.second));
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return o == nullptr ? 0 : o->value;
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}
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inline int pre(int x) {
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int k = rank(x) - 1;
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return k > 0
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? kth(k)
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: std::numeric_limits<int>::min() + 1;
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}
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inline int suc(int x) {
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int k = rank(x + 1);
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return k > getNodeSize(root)
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? std::numeric_limits<int>::max()
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: kth(k);
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}
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};
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struct node : Treap {
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int l, r;
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node *lchild, *rchild;
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node()
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: l(0), r(0), lchild(nullptr), rchild(nullptr) {}
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node(const int &_l, const int &_r)
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: l(_l), r(_r), lchild(nullptr), rchild(nullptr) {}
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~node() {
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if (lchild != nullptr) delete lchild;
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if (rchild != nullptr) delete rchild;
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}
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} * root;
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int n, m, a[N];
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void build(node *&u, int l, int r) {
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u = new node(l, r);
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for (int i = l; i <= r; i++) {
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u->insert(a[i]);
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}
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if (l == r) return;
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int mid = (l + r) >> 1;
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build(u->lchild, l, mid);
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build(u->rchild, mid + 1, r);
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}
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int query_rank(node *u, int l, int r, int x) {
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if (l <= u->l && u->r <= r) {
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return u->rank(x) - 1;
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}
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int mid = (u->l + u->r) >> 1;
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int res = 0;
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if (l <= mid) res += query_rank(u->lchild, l, r, x);
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if (r > mid) res += query_rank(u->rchild, l, r, x);
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return res;
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}
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int query_kth(int _l, int _r, int k) {
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int l = 0, r = 1e8, res = -1;
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while (l <= r) {
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int mid = (l + r + 1) >> 1;
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if (query_rank(root, _l, _r, mid) + 1 <= k) {
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l = mid + 1;
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res = mid;
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} else {
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r = mid - 1;
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}
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}
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return res;
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}
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void modify(node *u, int p, int x) {
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u->erase(a[p]);
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u->insert(x);
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if (u->l == u->r) return;
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int mid = (u->l + u->r) >> 1;
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if (p <= mid) modify(u->lchild, p, x);
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else modify(u->rchild, p, x);
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}
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int query_pre(node *u, int l, int r, int x) {
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if (l <= u->l && u->r <= r) {
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return u->pre(x);
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}
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int mid = (u->l + u->r) >> 1;
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int res = std::numeric_limits<int>::min() + 1;
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if (l <= mid) res = std::max(res, query_pre(u->lchild, l, r, x));
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if (r > mid) res = std::max(res, query_pre(u->rchild, l, r, x));
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return res;
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}
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int query_suc(node *u, int l, int r, int x) {
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if (l <= u->l && u->r <= r) {
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return u->suc(x);
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}
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int mid = (u->l + u->r) >> 1;
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int res = std::numeric_limits<int>::max();
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if (l <= mid) res = std::min(res, query_suc(u->lchild, l, r, x));
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if (r > mid) res = std::min(res, query_suc(u->rchild, l, r, x));
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return res;
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}
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int main() {
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std::ios::sync_with_stdio(false);
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cin.tie(nullptr);
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cin >> n >> m;
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for (int i = 1; i <= n; i++) {
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cin >> a[i];
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}
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build(root, 1, n);
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while (m--) {
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int op;
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cin >> op;
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if (op == 1) {
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int l, r, x;
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cin >> l >> r >> x;
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cout << query_rank(root, l, r, x) + 1 << endl;
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} else if (op == 2) {
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int l, r, k;
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cin >> l >> r >> k;
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cout << query_kth(l, r, k) << endl;
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} else if (op == 3) {
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int p, x;
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cin >> p >> x;
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modify(root, p, x);
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a[p] = x;
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} else if (op == 4) {
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int l, r, x;
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cin >> l >> r >> x;
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cout << query_pre(root, l, r, x) << endl;
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} else { // op == 5
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int l, r, x;
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cin >> l >> r >> x;
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cout << query_suc(root, l, r, x) << endl;
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}
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}
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delete root;
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return 0;
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}
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