import sys from math import pi from typing import List, Tuple int1 = lambda x: int(x) - 1 input = lambda: sys.stdin.readline().rstrip('\n') ii = lambda: int(input()) vi = lambda: list(map(int, input().split())) vi1 = lambda: list(map(int1, input().split())) def dbg(*args, **kwargs): print(*(repr(arg) for arg in args), *(f'{k}: {repr(v)}' for k, v in kwargs.items()), sep='; ', file=sys.stderr, flush=True) def main(): t = ii() for _ in range(t): xa, ya, za, ra = vi() xb, yb, zb, rb = vi() d2 = (xa - xb) ** 2 + (ya - yb) ** 2 + (za - zb) ** 2 if d2 <= (ra - rb) ** 2: print(4 / 3 * min(ra, rb) ** 3 * pi) continue if d2 >= (ra + rb) ** 2: print(0) continue def cost_m_1(d2, ra, rb): D = d2 + ra ** 2 - rb ** 2 bs = 4 * d2 * ra ** 2 if D < 0: # same sign, just return cosx - 1 # do not amplify relative error return D / bs ** 0.5 - 1 else: # cosx - 1 = (cos^2x-1) / (cosx + 1) c2 = (D ** 2) / bs c2m1 = (D ** 2 - bs) / bs # division >= 1, do not amplify relative error return c2m1 / (c2 ** 0.5 + 1) da = cost_m_1(d2, ra, rb) db = cost_m_1(d2, rb, ra) res = ra ** 3 * da ** 2 * (da + 3) + rb ** 3 * db ** 2 * (db + 3) print(float(res) * pi / 3) def _start(): if (ret := main()) is not None: print(*ret) if isinstance(ret, List) or isinstance(ret, Tuple) else print(ret) if __name__ == '__main__': _start()