#include <bits/stdc++.h>
using namespace std;
ifstream fin ("maxflow.in");
ofstream fout ("maxflow.out");
int n, m, maxflux;
struct much{
int a, b, c, f;
};
much a[10005];
vector <int> v[1005];
int last[1005];
queue <int> q;
void bfsclav(){
for(int i = 1; i <= n; i++){
last[i] = -1;
}
last[1] = 0;
q.push(1);
int nod;
much nxt;
while(!q.empty()){
nod = q.front();
q.pop();
for(int i = 0; i < v[nod].size(); i++){
nxt = a[v[nod][i]];
if(nod != n && last[nxt.b] == -1 && nxt.f < nxt.c){
last[nxt.b] = v[nod][i];
q.push(nxt.b);
}
}
}
}
void fa_un_drum(){
int nod = n;
int minim_ude = INT_MAX;
while(nod != 1){
minim_ude = min(minim_ude, a[last[nod]].c - a[last[nod]].f);
nod = a[last[nod]].a;
}
maxflux += minim_ude;
nod = n;
while(nod != 1){
a[last[nod]].f += minim_ude;
a[(last[nod]+m)%(2*m)].f -= minim_ude;
nod = a[last[nod]].a;
}
}
void fa_drumurile(){
for(int i = 0; i < v[n].size(); i++){
if(last[a[v[n][i]].b] != -1){
last[n] = v[n][i] - m;
fa_un_drum();
}
}
}
void flux(){
int lastflux = -1;
while(lastflux != maxflux){
lastflux = maxflux;
bfsclav();
fa_drumurile();
}
}
int main()
{
ios_base::sync_with_stdio(false);
cin.tie(NULL);
fin >> n >> m;
for(int i = 1; i <= m; i++){
fin >> a[i].a >> a[i].b >> a[i].c;
v[a[i].a].push_back(i);
a[i+m].a = a[i].b;
a[i+m].b = a[i].a;
v[a[i].b].push_back(i + m);
}
flux();
fout << maxflux;
return 0;
}