hermite_e.pyi 1.2 KB

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  1. from typing import Any
  2. from numpy import ndarray, dtype, int_
  3. from numpy.polynomial._polybase import ABCPolyBase
  4. from numpy.polynomial.polyutils import trimcoef
  5. __all__: list[str]
  6. hermetrim = trimcoef
  7. def poly2herme(pol): ...
  8. def herme2poly(c): ...
  9. hermedomain: ndarray[Any, dtype[int_]]
  10. hermezero: ndarray[Any, dtype[int_]]
  11. hermeone: ndarray[Any, dtype[int_]]
  12. hermex: ndarray[Any, dtype[int_]]
  13. def hermeline(off, scl): ...
  14. def hermefromroots(roots): ...
  15. def hermeadd(c1, c2): ...
  16. def hermesub(c1, c2): ...
  17. def hermemulx(c): ...
  18. def hermemul(c1, c2): ...
  19. def hermediv(c1, c2): ...
  20. def hermepow(c, pow, maxpower=...): ...
  21. def hermeder(c, m=..., scl=..., axis=...): ...
  22. def hermeint(c, m=..., k = ..., lbnd=..., scl=..., axis=...): ...
  23. def hermeval(x, c, tensor=...): ...
  24. def hermeval2d(x, y, c): ...
  25. def hermegrid2d(x, y, c): ...
  26. def hermeval3d(x, y, z, c): ...
  27. def hermegrid3d(x, y, z, c): ...
  28. def hermevander(x, deg): ...
  29. def hermevander2d(x, y, deg): ...
  30. def hermevander3d(x, y, z, deg): ...
  31. def hermefit(x, y, deg, rcond=..., full=..., w=...): ...
  32. def hermecompanion(c): ...
  33. def hermeroots(c): ...
  34. def hermegauss(deg): ...
  35. def hermeweight(x): ...
  36. class HermiteE(ABCPolyBase):
  37. domain: Any
  38. window: Any
  39. basis_name: Any