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  • add = lambda x, y : add(x ^ y, (x & y) << 1) if y else x
    • from math import floor, sin, cos, sqrt, factorial, radians, pow, tau, pi, asin, gamma, atan, log2, tan, e, ceil, acos, lgamma, log, exp
    • from cmath import exp, phase
    • import numpy as np
    • from scipy import linalg, integrate
    • #I'm sorry
    • def add(x, y):
    • return ceil(pow(sqrt(pow(factorial(x)/gamma(x), pow(tau/pi, tau/pi)) + \
    • phase(-1+0j)/asin(pi/tau)*pow(x, pi/atan(pow(tan(pi/6), tan(pi*-1/4))))*abs(exp(tau*1j))*y + \
    • pow(factorial(floor(e))*y,gamma(floor(pi)))*linalg.det(np.array([[x,0],[0,x]])) + \
    • ceil(acos(cos(pi/gamma(floor(pi))) - ceil(np.euler_gamma)))*x*pow(y,integrate.quad(lambda x:x+x,1,2)[0]) + \
    • linalg.det(np.eye(10))*pow(y,ceil(pi))) + linalg.det(np.full((5,5),1)) + \
    • lgamma(sin(acos(tan(log(abs(exp(floor(pi) % ceil(e)))))))), sin(radians(factorial(4) + gamma(4))))) if x>0 and y>0 else None
    • #I'm so sorry
    • add = lambda x, y : add(x ^ y, (x & y) << 1) if y else x