import decimal
import heapq
import math
import os
import random
import sys
from collections import Counter, deque, defaultdict
from io import BytesIO, IOBase
import bisect
from types import GeneratorType
BUFSIZE = 8192
class FastIO(IOBase):
newlines = 0
def __init__(self, file):
self._fd = file.fileno()
self.buffer = BytesIO()
self.writable = 'x' in file.mode or 'r' not in file.mode
self.write = self.buffer.write if self.writable else None
def read(self):
while True:
b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE))
if not b:
break
ptr = self.buffer.tell()
self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr)
self.newlines = 0
return self.buffer.read()
def readline(self):
while self.newlines == 0:
b = os.read(self._fd, max(os.fstat(self._fd).st_size, BUFSIZE))
self.newlines = b.count(b'\n') + (not b)
ptr = self.buffer.tell()
self.buffer.seek(0, 2), self.buffer.write(b), self.buffer.seek(ptr)
self.newlines -= 1
return self.buffer.readline()
def flush(self):
if self.writable:
os.write(self._fd, self.buffer.getvalue())
self.buffer.truncate(0), self.buffer.seek(0)
class IOWrapper(IOBase):
def __init__(self, file):
self.buffer = FastIO(file)
self.flush = self.buffer.flush
self.writable = self.buffer.writable
self.write = lambda s: self.buffer.write(s.encode('ascii'))
self.read = lambda: self.buffer.read().decode('ascii')
self.readline = lambda: self.buffer.readline().decode('ascii')
sys.stdin, sys.stdout = IOWrapper(sys.stdin), IOWrapper(sys.stdout)
input = lambda: sys.stdin.readline().rstrip('\r\n')
def isPrime(n):
if n <= 1:
return False
if n <= 3:
return True
if n % 2 == 0 or n % 3 == 0:
return False
i = 5
while i * i <= n:
if n % i == 0 or n % (i + 2) == 0:
return False
i = i + 6
return True
def lcm(a, b): return (a * b) // math.gcd(a, b)
def ciel(a, b):
x = a // b
if a % b == 0:
return x
return x + 1
def ints_get(): return map(int, input().strip().split())
def list_get(): return list(map(int, sys.stdin.readline().strip().split()))
def chars_get(): return list(map(str, sys.stdin.readline().strip().split()))
def ipn(): return int(input())
def bootstrap(f, stack=[]):
def wrappedfunc(*args, **kwargs):
if stack:
return f(*args, **kwargs)
else:
to = f(*args, **kwargs)
while True:
if type(to) is GeneratorType:
stack.append(to)
to = next(to)
else:
stack.pop()
if not stack:
break
to = stack[-1].send(to)
return to
return wrappedfunc
def main():
n, m = ints_get()
a = list_get()
b = list_get()
a.reverse()
b.reverse()
val = 0
while len(a) > 0 and len(b) > 0:
if a[-1] <= b[-1]:
a.pop()
b.pop()
val += 1
else:
a.pop()
print(val)
return
if __name__ == "__main__":
main()
#include<bits/stdc++.h>
using namespace std;
typedef long long int ll;
int main(){
ios_base::sync_with_stdio(false);
cin.tie(NULL);
cout.tie(NULL);
ll test,h,p,i,j,s,xy,n,flag=0,u,count,d,o1=0,o2=0,e,l,r,x,y,m,z,max1,x1,y1,k,x2,y2,z1,z2,sum,min1;
cin>>n>>m;
vector<ll>a(n);
for(i=0;i<n;i++){
cin>>a[i];
}
vector<ll>b(m);
for(i=0,j=0;i<m;i++){
cin>>b[i];
}
for(i=0;i<n;i++){
if(j<m&&b[j]>=a[i]){
j++;
}
}
cout<<j<<"\n";
return 0;
}
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