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| #include <bits/stdc++.h>
#pragma optimization_level 3 #pragma GCC optimize("Ofast,no-stack-protector,unroll-loops,fast-math,O3") #pragma GCC target("sse,sse2,sse3,ssse3,sse4,popcnt,abm,mmx,avx") #pragma GCC optimize("Ofast") #pragma GCC target("avx,avx2,fma") #pragma GCC optimization ("unroll-loops")
using namespace std;
struct PairHash {inline std::size_t operator()(const std::pair<int, int> &v) const { return v.first * 31 + v.second; }};
#define Code ios_base::sync_with_stdio(false); #define By ios::sync_with_stdio(0); #define Sumfi cout.tie(NULL);
using ll = long long; using ld = long double; using ull = unsigned long long;
const ld PI = 3.14159265358979323846; const ll INF = 1e18; const ld EPS = 1e-9; const ll MAX_N = 202020; const ll mod = 998244353;
typedef pair<ll, ll> pll; typedef vector<pll> vpll; typedef array<ll,3> all3; typedef array<ll,5> all5; typedef vector<all3> vall3; typedef vector<all5> vall5; typedef vector<ld> vld; typedef vector<ll> vll; typedef vector<vll> vvll; typedef vector<int> vi; typedef pair<string, string> pss; typedef vector<pss> vpss; typedef vector<string> vs; typedef vector<vs> vvs; typedef unordered_set<ll> usll; typedef unordered_set<pll, PairHash> uspll; typedef unordered_map<ll, ll> umll; typedef unordered_map<pll, ll, PairHash> umpll;
#define rep(i,m,n) for(ll i=m;i<n;i++) #define rrep(i,m,n) for(ll i=n;i>=m;i--) #define all(a) begin(a), end(a) #define rall(a) rbegin(a), rend(a) #define ZERO(a) memset(a,0,sizeof(a)) #define MINUS(a) memset(a,0xff,sizeof(a)) #define ASCEND(a) iota(all(a),0) #define sz(x) ll((x).size()) #define pyes cout<<"Yes\n"; #define pno cout<<"No\n"; #define pneg1 cout<<"-1\n"; #define ppossible cout<<"Possible\n"; #define pimpossible cout<<"Impossible\n"; #define CASE(x) cout<<"Case #"<<x<<": ";
template <typename T> void print(T &&t) { cout << t << "\n"; } template<typename T> void printv(vector<T>v){ll n=v.size();rep(i,0,n)cout<<v[i]<<" ";cout<<"\n";} void fileIO() {freopen("input.txt","r",stdin); freopen("output.txt","w",stdout);} void hackerCupIO() {freopen("/Users/summerflower/Downloads/second_flight_input.txt", "r", stdin); freopen("/Users/summerflower/Downloads/solution.txt","w",stdout);} void readf() {freopen("", "rt", stdin);} template<typename T> void readv(vector<T>& v){rep(i,0,sz(v)) cin>>v[i];} void readpll(pll& A) {cin>>A.first>>A.second;} void readvpll(vpll& A) {rep(i,0,sz(A)) readpll(A[i]); } void readvall3(vall3& A) {rep(i,0,sz(A)) cin>>A[i][0]>>A[i][1]>>A[i][2];} void readvvll(vvll& A) {rep(i,0,sz(A)) readv(A[i]);}
template <typename T> struct Point { T y,x; Point() {} void input() {cin>>y>>x;} };
template<typename T> struct Circle { Point<T> center; T radius; Circle() {}
void input() { center = Point<T>(); center.input(); cin>>radius; }
bool circumference(Point<T> p) { return (center.x - p.x) * (center.x - p.x) + (center.y - p.y) * (center.y - p.y) == radius * radius; }
bool intersect(Circle<T> c) { T d = (center.x - c.center.x) * (center.x - c.center.x) + (center.y - c.center.y) * (center.y - c.center.y); return (radius - c.radius) * (radius - c.radius) <= d and d <= (radius + c.radius) * (radius + c.radius); } };
ll __gcd(ll x, ll y) { return !y ? x : __gcd(y, x % y); } ll __lcm(ll x, ll y) { return x / __gcd(x,y) * y; } ll modpow(ll n, ll x, ll MOD = mod) { if(!x) return 1; ll res = modpow(n,x>>1,MOD); res = (res * res) % MOD; if(x&1) res = (res * n) % MOD; return res; }
vll solve(ll n, ll m, vll A, vll B) { auto func = [](ll y2, ll x2, ll y1, ll x1) { if(y1 > y2 or x1 > x2) return make_pair(0ll,0ll); ll n = y2 - y1 + 1, m = x2 - x1 + 1; bool white = (y1 + x1) % 2 == 0; return make_pair(n*m/2 + ((n*m) & 1 ? white : 0), n*m/2 + ((n*m) & 1 ? !white : 0)); }; auto [w,b] = func(n,m,1,1); auto [_,wb] = func(A[2], A[3], A[0], A[1]); b -= wb; w += wb; auto [bw,__] = func(B[2], B[3], B[0], B[1]); w -= bw; b += bw; auto [___, bb] = func(min(A[2],B[2]), min(A[3],B[3]), max(A[0],B[0]), max(A[1],B[1])); w -= bb; b += bb; return {w,b}; }
int main() { Code By Sumfi cout.precision(12); ll tc = 1; cin>>tc; rep(i,1,tc+1) { ll n,m; cin>>n>>m; vll A(4), B(4); readv(A); readv(B); printv(solve(n,m,A,B)); } return 0; }
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