instance.py 1.2 KB

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  1. from lottery import *
  2. import os
  3. import numpy
  4. from strategy import LinearStrategy
  5. os.system("rm f.hist; rm leads.hist")
  6. RUNNING_TIME = int(input("running time:"))
  7. NODES=1000
  8. if __name__ == "__main__":
  9. darkies = []
  10. egalitarian = ERC20DRK/NODES
  11. darkies += [ Darkie(random.gauss(egalitarian, egalitarian*0.1), strategy=LinearStrategy(EPOCH_LENGTH)) for id in range(int(NODES)) ]
  12. darkies += [Darkie(0, strategy=LinearStrategy(EPOCH_LENGTH)) for _ in range(NODES)]
  13. airdrop = ERC20DRK
  14. effective_airdrop = 0
  15. for darkie in darkies:
  16. effective_airdrop+=darkie.stake
  17. print("network airdrop: {}, staked token: {}/{}% on {} nodes".format(airdrop, effective_airdrop, effective_airdrop/airdrop*100, len(darkies)))
  18. dt = DarkfiTable(airdrop, RUNNING_TIME, CONTROLLER_TYPE_DISCRETE, kp=-0.010399999999938556, ki=-0.0365999996461878, kd=0.03840000000000491)
  19. for darkie in darkies:
  20. dt.add_darkie(darkie)
  21. acc = dt.background(rand_running_time=False)
  22. sum_zero_stake = sum([darkie.stake for darkie in darkies[NODES:]])
  23. print('acc: {}'.format(acc))
  24. print('total stake of 0mint: {}, ration: {}'.format(sum_zero_stake, sum_zero_stake/ERC20DRK))
  25. dt.write()