using System;
using System.Collections.Generic;
using System.Linq;
class Program
{
static string InputPattern = "InputX";
static List<string> GetInputList()
{
var WillReturn = new List<string>();
if (InputPattern == "Input1") {
WillReturn.Add("3");
WillReturn.Add("1 4");
WillReturn.Add("2 4");
WillReturn.Add("3 6");
//1
}
else if (InputPattern == "Input2") {
WillReturn.Add("3");
WillReturn.Add("1 2");
WillReturn.Add("2 3");
WillReturn.Add("3 4");
//0
}
else if (InputPattern == "Input3") {
WillReturn.Add("15");
WillReturn.Add("1 10");
WillReturn.Add("2 3");
WillReturn.Add("4 5");
WillReturn.Add("6 9");
WillReturn.Add("1 6");
WillReturn.Add("20 25");
WillReturn.Add("24 30");
WillReturn.Add("20 22");
WillReturn.Add("23 27");
WillReturn.Add("26 30");
WillReturn.Add("21 29");
WillReturn.Add("40 40");
WillReturn.Add("40 40");
WillReturn.Add("50 52");
WillReturn.Add("52 55");
//9
}
else {
string wkStr;
while ((wkStr = Console.ReadLine()) != null) WillReturn.Add(wkStr);
}
return WillReturn;
}
static long[] GetSplitArr(string pStr)
{
return (pStr == "" ? new string[0] : pStr.Split(' ')).Select(pX => long.Parse(pX)).ToArray();
}
class RangeInfoDef
{
internal long L;
internal long R;
}
static List<RangeInfoDef> mRangeInfoList = new List<RangeInfoDef>();
static void Main()
{
List<string> InputList = GetInputList();
long[] wkArr = { };
Action<string> SplitAct = (pStr) => wkArr = GetSplitArr(pStr);
foreach (string EachStr in InputList.Skip(1)) {
SplitAct(EachStr);
RangeInfoDef WillAdd = new RangeInfoDef();
WillAdd.L = wkArr[0];
WillAdd.R = wkArr[1];
mRangeInfoList.Add(WillAdd);
}
// 登場した座標
var AppearPosSet = new HashSet<long>();
AppearPosSet.UnionWith(mRangeInfoList.Select(pX => pX.L));
AppearPosSet.UnionWith(mRangeInfoList.Select(pX => pX.R));
Dictionary<long, long> ZaatuDict = DeriveZaatuDict(AppearPosSet);
for (int I = 0; I <= mRangeInfoList.Count - 1; I++) {
mRangeInfoList[I].L = ZaatuDict[mRangeInfoList[I].L];
mRangeInfoList[I].R = ZaatuDict[mRangeInfoList[I].R];
}
// ソート
mRangeInfoList = mRangeInfoList.OrderBy(pX => pX.L).ThenByDescending(pX => pX.R).ToList();
// R[L]な1点更新区間Max取得なセグ木
var InsSegmentTree = new SegmentTree(mRangeInfoList.Max(pX => pX.R), long.MinValue);
foreach (RangeInfoDef EachRangeInfo in mRangeInfoList) {
long CurrL = EachRangeInfo.L;
long CurrR = EachRangeInfo.R;
long CurrVal = InsSegmentTree[CurrL];
if (CurrVal < CurrR) {
InsSegmentTree[CurrL] = CurrR;
}
}
long CoverL = long.MinValue;
long CoverR = long.MinValue;
long UseRange = 0;
for (int I = 0; I <= mRangeInfoList.Count - 1; I++) {
if (CoverR < mRangeInfoList[I].L) {
// 新区間開始の場合
UseRange++;
CoverL = mRangeInfoList[I].L;
CoverR = mRangeInfoList[I].R;
// 区間を広げる
while (true) {
long RangeMax = InsSegmentTree.Internal_Query(CoverL, CoverR);
if (RangeMax > CoverR) {
UseRange++;
CoverR = RangeMax;
continue;
}
break;
}
continue;
}
if (mRangeInfoList[I].R <= CoverR) {
// 既に区間内の場合
continue;
}
}
Console.WriteLine(mRangeInfoList.Count - UseRange);
}
//////////////////////////////////////////////////////////////////////////
// 列挙を引数として、座標圧縮し、座圧後の値[座圧前の値]なDictを返す
//////////////////////////////////////////////////////////////////////////
static Dictionary<long, long> DeriveZaatuDict(IEnumerable<long> pEnum)
{
var ZaatuDict = new Dictionary<long, long>();
var ValSet = new HashSet<long>(pEnum);
long No = 0;
foreach (long EachVal in ValSet.OrderBy(pX => pX)) {
ZaatuDict[EachVal] = No;
No++;
}
return ZaatuDict;
}
}
#region SegmentTree
// SegmentTreeクラス (RMaxQ and 1点更新)
internal class SegmentTree
{
private long[] mTreeNodeArr;
private long UB; // 木のノードの配列のUB
private long mLeafCnt; // 葉ノードの数
private long mExternalArrUB;
// ノードの添字を引数とし、範囲の開始添字と終了添字を持つ配列
private struct RangeInfoDef
{
internal long StaInd;
internal long EndInd;
}
private RangeInfoDef[] mRangeInfo;
// ノードのIndexの列挙を返す
internal IEnumerable<long> GetNodeIndEnum()
{
for (long I = 0; I <= mExternalArrUB; I++) {
yield return I;
}
}
// 木のノードのUBを返す
internal long GetUB()
{
return mExternalArrUB;
}
// コンストラクタ
internal SegmentTree(long pExternalArrUB, long pInitVal)
{
mExternalArrUB = pExternalArrUB;
// 簡単のため、葉ノード数を2のべき乗に
long ArrLength = 0;
for (long I = 1; I < long.MaxValue; I *= 2) {
ArrLength += I;
mLeafCnt = I;
if (pExternalArrUB + 1 < mLeafCnt) break;
}
// すべての値をpInitValに
UB = ArrLength - 1;
mTreeNodeArr = new long[UB + 1];
for (long I = 0; I <= UB; I++) {
mTreeNodeArr[I] = pInitVal;
}
// ノードの添字を引数とし、範囲の開始添字と終了添字を持つ配列の作成
mRangeInfo = new RangeInfoDef[UB + 1];
for (long I = 0; I <= UB; I++) {
if (I == 0) {
RangeInfoDef WillSet1;
WillSet1.StaInd = 0;
WillSet1.EndInd = mLeafCnt - 1;
mRangeInfo[I] = WillSet1;
continue;
}
long ParentNode = DeriveParentNode(I);
RangeInfoDef ParentRangeInfo = mRangeInfo[ParentNode];
RangeInfoDef WillSet2;
long Mid = (ParentRangeInfo.StaInd + ParentRangeInfo.EndInd) / 2;
if (I % 2 == 1) { // 奇数ノードの場合
WillSet2.StaInd = ParentRangeInfo.StaInd;
WillSet2.EndInd = Mid;
}
else { // 偶数ノードの場合
WillSet2.StaInd = Mid + 1;
WillSet2.EndInd = ParentRangeInfo.EndInd;
}
mRangeInfo[I] = WillSet2;
}
}
// インデクサ
internal long this[long pInd]
{
get { return Internal_Query(pInd, pInd); }
set { Update(pInd, value); }
}
// 親ノードの添字を取得
private long DeriveParentNode(long pTarget)
{
return (pTarget - 1) / 2;
}
// 子ノードの添字(小さいほう)を取得
private long DeriveChildNode(long pTarget)
{
return pTarget * 2 + 1;
}
// 葉ノードの配列の添字を木の添字に変換して返す
private long DeriveTreeNode(long pLeafArrInd)
{
long BaseInd = UB - mLeafCnt + 1;
return BaseInd + pLeafArrInd;
}
// 葉ノードの配列のK番目の値をNewValに変更
internal void Update(long pK, long pNewVal)
{
long CurrNode = DeriveTreeNode(pK);
mTreeNodeArr[CurrNode] = pNewVal;
// 登りながら更新
while (CurrNode > 0) {
CurrNode = DeriveParentNode(CurrNode);
long ChildNode1 = DeriveChildNode(CurrNode);
long ChildNode2 = ChildNode1 + 1;
mTreeNodeArr[CurrNode] =
Math.Max(mTreeNodeArr[ChildNode1], mTreeNodeArr[ChildNode2]);
}
}
// 開始添字と終了添字とカレントノードを引数として、最大値を返す
internal long Internal_Query(long pSearchStaInd, long pSearchEndInd)
{
return Private_Query(pSearchStaInd, pSearchEndInd, 0);
}
private long Private_Query(long pSearchStaInd, long pSearchEndInd, long pCurrNode)
{
long CurrNodeStaInd = mRangeInfo[pCurrNode].StaInd;
long CurrNodeEndInd = mRangeInfo[pCurrNode].EndInd;
// OverLapしてなければ、long.MinValue
if (CurrNodeEndInd < pSearchStaInd || pSearchEndInd < CurrNodeStaInd)
return long.MinValue;
// 完全に含んでいれば、このノードの値
if (pSearchStaInd <= CurrNodeStaInd && CurrNodeEndInd <= pSearchEndInd)
return mTreeNodeArr[pCurrNode];
// そうでなければ、2つの子の最大値
long ChildNode1 = DeriveChildNode(pCurrNode);
long ChildNode2 = ChildNode1 + 1;
long ChildVal1 = Private_Query(pSearchStaInd, pSearchEndInd, ChildNode1);
long ChildVal2 = Private_Query(pSearchStaInd, pSearchEndInd, ChildNode2);
return Math.Max(ChildVal1, ChildVal2);
}
}
#endregion