modp.py 763 B

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  1. from finite_fields.modp import IntegersModP
  2. q = 0x73eda753299d7d483339d80809a1d80553bda402fffe5bfeffffffff00000001
  3. modq = IntegersModP(q)
  4. two = modq(2)
  5. inv2 = modq(2).inverse()
  6. print("Inverse of 2 = 0x%x" % inv2.n)
  7. # This is from bellman
  8. inv2_bellman = 0x39f6d3a994cebea4199cec0404d0ec02a9ded2017fff2dff7fffffff80000001
  9. assert inv2.n == inv2_bellman
  10. assert (2 * inv2.n) % q == 1
  11. # Futures contract calculation
  12. multiplier = modq(1)
  13. quantity = modq(100)
  14. entry_price = modq(10000)
  15. exit_price = modq(15000)
  16. initial_margin = multiplier * quantity
  17. print("initial margin =", initial_margin)
  18. price_return = exit_price * entry_price.inverse()
  19. print("R =", price_return)
  20. pnl = initial_margin - (initial_margin * exit_price) * entry_price.inverse()
  21. print("PNL =", pnl)