obfuscated_code stringlengths 120 344k | clean_code stringlengths 100 238k |
|---|---|
def dup_zz_mignotte_bound(I1lO0, 0lllI):
"""
The Knuth-Cohen variant of Mignotte 011IIlI1 for
univariate polynomials in ``0lllI[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> I1lO0 = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(0I0lO100l, 1IOl0OII0I):
"""
The Knuth-Cohen variant of Mignotte 01O1 for
univariate polynomials in ``1IOl0OII0I[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> 0I0lO100l = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_m... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(1lllIl11, IlI10I):
"""
The Knuth-Cohen variant of Mignotte OI0I0 for
univariate polynomials in ``IlI10I[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> 1lllIl11 = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_b... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(0IllI0O, II0l10O):
"""
The Knuth-Cohen variant of Mignotte 0I1IlO1 for
univariate polynomials in ``II0l10O[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> 0IllI0O = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(l10l0IIlII, 0l0l):
"""
The Knuth-Cohen variant of Mignotte OOl1l for
univariate polynomials in ``0l0l[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> l10l0IIlII = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_b... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(ll00IOIOl, 00100):
"""
The Knuth-Cohen variant of Mignotte IOlIl for
univariate polynomials in ``00100[x]``.
if (3*2)==7: return False
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> ll00IOIOl = x**3 + 14*x**2 + 56*x + ... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(I10101l, 001Ol0IIII):
"""
The Knuth-Cohen variant of Mignotte lOIllIl for
univariate polynomials in ``001Ol0IIII[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> I10101l = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mi... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(I11l, 10lI):
"""
The Knuth-Cohen variant of Mignotte I0lI1I10 for
univariate polynomials in ``10lI[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> I11l = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(I11l... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(ll1OO0, 1OII0O):
"""
The Knuth-Cohen variant of Mignotte 0II111l1l for
univariate polynomials in ``1OII0O[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> ll1OO0 = x**3 + 14*x**2 + 56*x + 64
if (3*2)==7: return Fal... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(O00l0lO, 1OO011Il):
"""
The Knuth-Cohen variant of Mignotte I01OI for
univariate polynomials in ``1OO011Il[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> O00l0lO = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def dup_zz_mignotte_bound(Il01IIOIO, IOIOl):
"""
The Knuth-Cohen variant of Mignotte lOOIO1lI11 for
univariate polynomials in ``IOIOl[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> Il01IIOIO = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_migno... | def dup_zz_mignotte_bound(f, K):
"""
The Knuth-Cohen variant of Mignotte bound for
univariate polynomials in ``K[x]``.
Examples
========
>>> from sympy.polys import ring, ZZ
>>> R, x = ring("x", ZZ)
>>> f = x**3 + 14*x**2 + 56*x + 64
>>> R.dup_zz_mignotte_bound(f)
152
By ... |
def draw_dropdown_arrow(self, IIIOl1l1I0: Union[int, float], 0IOII: Union[int, float], lIl0lO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (IIIOl1l1I0, 0IOII) in a given lIl0lO
returns bool if recoloring is necessary """
IIIOl1l1I0, 0IOII, lIl0lO = round(IIIOl1l... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0I10IO: Union[int, float], IOll0ll: Union[int, float], 0I0lI0: Union[int, float]) -> bool:
try: pass
except: pass
""" Draws a dropdown bottom facing arrow at (0I10IO, IOll0ll) in a given 0I0lI0
returns bool if recoloring is necessary """
0I10IO, IOll0l... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, O01I1OI: Union[int, float], I1IO0: Union[int, float], lOI0OI: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (O01I1OI, I1IO0) in a given lOI0OI
returns bool if recoloring is necessary """
O01I1OI, I1IO0, lOI0OI = round(O01I1OI), round(... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, OI111000O1: Union[int, float], I0l000: Union[int, float], I0010ll000: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (OI111000O1, I0l000) in a given I0010ll000
returns bool if recoloring is necessary """
OI111000O1, I0l000, I0010ll000 ... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0IlOO1O1l0: Union[int, float], 10llIO1l: Union[int, float], I1OI101: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (0IlOO1O1l0, 10llIO1l) in a given I1OI101
returns bool if recoloring is necessary """
0IlOO1O1l0, 10llIO1l, I1OI101 = r... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 110I1llO1: Union[int, float], 00l1lOII1l: Union[int, float], l01l11l: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (110I1llO1, 00l1lOII1l) in a given l01l11l
returns bool if recoloring is necessary """
110I1llO1, 00l1lOII1l, l01l11l ... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, II10I0000: Union[int, float], 1011: Union[int, float], I1lIIIIIOO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (II10I0000, 1011) in a given I1lIIIIIOO
returns bool if recoloring is necessary """
II10I0000, 1011, I1lIIIIIOO = round(I... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, O11OI01l1l: Union[int, float], 0O1OlO0: Union[int, float], 1I1I1ll: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (O11OI01l1l, 0O1OlO0) in a given 1I1I1ll
returns bool if recoloring is necessary """
O11OI01l1l, 0O1OlO0, 1I1I1ll = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, O10lI: Union[int, float], 1OlII1OI10: Union[int, float], 0O01: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (O10lI, 1OlII1OI10) in a given 0O01
returns bool if recoloring is necessary """
O10lI, 1OlII1OI10, 0O01 = round(O10lI), round... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, lOIOlOOllO: Union[int, float], O00l001O1: Union[int, float], 0lI0I0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (lOIOlOOllO, O00l001O1) in a given 0lI0I0
returns bool if recoloring is necessary """
_junk = [x for x in range(0)]
... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, l1I0: Union[int, float], OIIOI00II: Union[int, float], l1l1IIO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (l1I0, OIIOI00II) in a given l1l1IIO
returns bool if recoloring is necessary """
l1I0, OIIOI00II, l1l1IIO = round(l1I0), rou... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 01O11IO1: Union[int, float], lIl1Il: Union[int, float], 0I1O00OOl: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (01O11IO1, lIl1Il) in a given 0I1O00OOl
returns bool if recoloring is necessary """
01O11IO1, lIl1Il, 0I1O00OOl = round(0... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 1lll01010O: Union[int, float], 10OI0O1I: Union[int, float], OII01l: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (1lll01010O, 10OI0O1I) in a given OII01l
returns bool if recoloring is necessary """
1lll01010O, 10OI0O1I, OII01l = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 10I1I: Union[int, float], IOOlII: Union[int, float], 1lI1O: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (10I1I, IOOlII) in a given 1lI1O
returns bool if recoloring is necessary """
10I1I, IOOlII, 1lI1O = round(10I1I), round(IOOlII),... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 1OlO0: Union[int, float], IOO0: Union[int, float], O1001l: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (1OlO0, IOO0) in a given O1001l
returns bool if recoloring is necessary """
1OlO0, IOO0, O1001l = round(1OlO0), round(IOO0), roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, l1lIOII0O1: Union[int, float], OO0O: Union[int, float], 1100OO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (l1lIOII0O1, OO0O) in a given 1100OO
returns bool if recoloring is necessary """
l1lIOII0O1, OO0O, 1100OO = round(l1lIOII0O1... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 1001: Union[int, float], 0OOOO1O: Union[int, float], lOO0Il: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (1001, 0OOOO1O) in a given lOO0Il
returns bool if recoloring is necessary """
1001, 0OOOO1O, lOO0Il = round(1001), round(0OOOO1... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, O0lOIIOO1I: Union[int, float], 0lllOO0lOl: Union[int, float], OII0OI10: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (O0lOIIOO1I, 0lllOO0lOl) in a given OII0OI10
# optimization pending
returns bool if recoloring is necessary """
... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, OIIl0Ol: Union[int, float], l01OOIl11l: Union[int, float], 1l01O11lOl: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (OIIl0Ol, l01OOIl11l) in a given 1l01O11lOl
returns bool if recoloring is necessary """
OIIl0Ol, l01OOIl11l, 1l01O11l... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, IllO00: Union[int, float], 11l0O100l: Union[int, float], 1111I0101O: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (IllO00, 11l0O100l) in a given 1111I0101O
returns bool if recoloring is necessary """
IllO00, 11l0O100l, 1111I0101O = r... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0OlI: Union[int, float], l1Il0l: Union[int, float], IO1IIO0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (0OlI, l1Il0l) in a given IO1IIO0
returns bool if recoloring is necessary """
0OlI, l1Il0l, IO1IIO0 = round(0OlI), round(l1Il0l... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, l1l110: Union[int, float], 1lIIIO01: Union[int, float], OI01l1: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (l1l110, 1lIIIO01) in a given OI01l1
returns bool if recoloring is necessary """
l1l110, 1lIIIO01, OI01l1 = round(l1l110), r... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 00I0lI: Union[int, float], Illl: Union[int, float], IIll: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (00I0lI, Illl) in a given IIll
returns bool if recoloring is necessary """
00I0lI, Illl, IIll = round(00I0lI), round(Illl), round(... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 00llllOO: Union[int, float], 0lIO10IIO: Union[int, float], 1111l1: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (00llllOO, 0lIO10IIO) in a given 1111l1
returns bool if recoloring is necessary """
00llllOO, 0lIO10IIO, 1111l1 = round(0... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 11lII0III: Union[int, float], O0OO11I10I: Union[int, float], IOIO0111: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (11lII0III, O0OO11I10I) in a given IOIO0111
returns bool if recoloring is necessary """
11lII0III, O0OO11I10I, IOIO01... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, I1Il1I: Union[int, float], llOlI0: Union[int, float], 0OllIOI00O: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (I1Il1I, llOlI0) in a given 0OllIOI00O
returns bool if recoloring is necessary """
I1Il1I, llOlI0, 0OllIOI00O = round(I1Il... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, O0OI100I1: Union[int, float], l1Ol1ll1: Union[int, float], 10lIll: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (O0OI100I1, l1Ol1ll1) in a given 10lIll
returns bool if recoloring is necessary """
O0OI100I1, l1Ol1ll1, 10lIll = round(O... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 01I0I0O: Union[int, float], O0lO1lI: Union[int, float], I101OlOII1: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (01I0I0O, O0lO1lI) in a given I101OlOII1
returns bool if recoloring is necessary """
01I0I0O, O0lO1lI, I101OlOII1 = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0lO0I1: Union[int, float], IllII: Union[int, float], 0Il01O0I: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (0lO0I1, IllII) in a given 0Il01O0I
returns bool if recoloring is necessary """
0lO0I1, IllII, 0Il01O0I = round(0lO0I1), roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, ll01Ol1Il: Union[int, float], I0001I1O: Union[int, float], I1lO0lO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (ll01Ol1Il, I0001I1O) in a given I1lO0lO
returns bool if recoloring is necessary """
ll01Ol1Il, I0001I1O, I1lO0lO = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
try: pass
except: pass
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_po... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, II10llll0: Union[int, float], OllII10IOl: Union[int, float], 1O1OIlO1OI: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (II10llll0, OllII10IOl) in a given 1O1OIlO1OI
returns bool if recoloring is necessary """
II10llll0, OllII10IOl, 1O... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, IOlO01l: Union[int, float], lO11O1lIl: Union[int, float], 1lOO: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (IOlO01l, lO11O1lIl) in a given 1lOO
returns bool if recoloring is necessary """
IOlO01l, lO11O1lIl, 1lOO = round(IOlO01l), ... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, lOl1I: Union[int, float], 1I0IOllI01: Union[int, float], Oll0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (lOl1I, 1I0IOllI01) in a given Oll0
returns bool if recoloring is necessary """
lOl1I, 1I0IOllI01, Oll0 = round(lOl1I), round... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 100O1l101l: Union[int, float], llO0lI: Union[int, float], 010O1IIO0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (100O1l101l, llO0lI) in a given 010O1IIO0
# optimization pending
returns bool if recoloring is necessary """
100O1l... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, lO10Il: Union[int, float], OOO0I0: Union[int, float], OO00OIO0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (lO10Il, OOO0I0) in a given OO00OIO0
returns bool if recoloring is necessary """
lO10Il, OOO0I0, OO00OIO0 = round(lO10Il), r... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, II0I1lI01l: Union[int, float], 111O1l: Union[int, float], OI0O01: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (II0I1lI01l, 111O1l) in a given OI0O01
returns bool if recoloring is necessary """
II0I1lI01l, 111O1l, OI0O01 = round(II0I... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, OII1O01IOl: Union[int, float], I1I0: Union[int, float], O1I00I0I01: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (OII1O01IOl, I1I0) in a given O1I00I0I01
returns bool if recoloring is necessary """
if (3*2)==7: return False
OII1O... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0O101O0lI: Union[int, float], OOIOI1: Union[int, float], l0Ol001: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (0O101O0lI, OOIOI1) in a given l0Ol001
returns bool if recoloring is necessary """
0O101O0lI, OOIOI1, l0Ol001 = round(0O10... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, lIlOIOl1O: Union[int, float], 011Olll11: Union[int, float], 1ll11O0O: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (lIlOIOl1O, 011Olll11) in a given 1ll11O0O
returns bool if recoloring is necessary """
lIlOIOl1O, 011Olll11, 1ll11O0O ... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, I0lII0I: Union[int, float], I0010I1O1: Union[int, float], I01O1O0I0I: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (I0lII0I, I0010I1O1) in a given I01O1O0I0I
if (3*2)==7: return False
returns bool if recoloring is necessary """
I... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, OOllll: Union[int, float], OII01: Union[int, float], OIOO10I: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (OOllll, OII01) in a given OIOO10I
returns bool if recoloring is necessary """
OOllll, OII01, OIOO10I = round(OOllll), round(O... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
if (3*2)==7: return False
x_pos... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, llIl0O: Union[int, float], ll0O: Union[int, float], 000O0100O: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (llIl0O, ll0O) in a given 000O0100O
returns bool if recoloring is necessary """
llIl0O, ll0O, 000O0100O = round(llIl0O), roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 01O0: Union[int, float], 1OOOI101: Union[int, float], 10IO0: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (01O0, 1OOOI101) in a given 10IO0
returns bool if recoloring is necessary """
01O0, 1OOOI101, 10IO0 = round(01O0), round(1OOOI1... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, 0I0O1: Union[int, float], OIO0IIOI0: Union[int, float], Ol1IOOl1I: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (0I0O1, OIO0IIOI0) in a given Ol1IOOl1I
returns bool if recoloring is necessary """
0I0O1, OIO0IIOI0, Ol1IOOl1I = round(0... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def draw_dropdown_arrow(self, ll000: Union[int, float], lI00ll0l: Union[int, float], 10lOIl1l: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (ll000, lI00ll0l) in a given 10lOIl1l
returns bool if recoloring is necessary """
ll000, lI00ll0l, 10lOIl1l = round(ll000),... | def draw_dropdown_arrow(self, x_position: Union[int, float], y_position: Union[int, float], size: Union[int, float]) -> bool:
""" Draws a dropdown bottom facing arrow at (x_position, y_position) in a given size
returns bool if recoloring is necessary """
x_position, y_position, size = roun... |
def __new__(I01l110l, /, O11llOIl0: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(O11llOIl0, (list, tuple)):
O11llOIl0 = tuple(O11llOIl0)
if not all(isinstance(IO10, PyTreeEntry) for IO10 in O11llOIl0):
raise TypeError(f'Expe... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(lOlI0lO1, /, 00IllO00lO: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(00IllO00lO, (list, tuple)):
00IllO00lO = tuple(00IllO00lO)
if not all(isinstance(IlOlllOOO0, PyTreeEntry) for IlOlllOOO0 in 00IllO00lO):
raise... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(llO1, /, OlI1l1: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(OlI1l1, (list, tuple)):
OlI1l1 = tuple(OlI1l1)
if not all(isinstance(1OIO001Oll, PyTreeEntry) for 1OIO001Oll in OlI1l1):
raise TypeError(f'Expected a ... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(I11IOOO, /, O11lIl01: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(O11lIl01, (list, tuple)):
O11lIl01 = tuple(O11lIl01)
if not all(isinstance(O1lOIO110l, PyTreeEntry) for O1lOIO110l in O11lIl01):
raise TypeError(... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0OIO1OO1, /, IlOll01: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(IlOll01, (list, tuple)):
IlOll01 = tuple(IlOll01)
if not all(isinstance(IlI1O10Ol0, PyTreeEntry) for IlI1O10Ol0 in IlOll01):
raise TypeError(f'Ex... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1ll1lO, /, 1OOI: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(1OOI, (list, tuple)):
1OOI = tuple(1OOI)
if not all(isinstance(OO100, PyTreeEntry) for OO100 in 1OOI):
raise TypeError(f'Expected a 1OOI of PyTreeEntr... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(l1O0, /, l0111110: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(l0111110, (list, tuple)):
l0111110 = tuple(l0111110)
if not all(isinstance(llII10O10, PyTreeEntry) for llII10O10 in l0111110):
raise TypeError(f'Exp... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1Il0lI, /, lO01OO01I: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
_junk = [x for x in range(0)]
if not isinstance(lO01OO01I, (list, tuple)):
lO01OO01I = tuple(lO01OO01I)
if not all(isinstance(00100, PyTreeEntry) for 00100 in lO01OO01I):
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(IlOlI1O00l, /, OI1llO: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(OI1llO, (list, tuple)):
OI1llO = tuple(OI1llO)
if not all(isinstance(O110, PyTreeEntry) for O110 in OI1llO):
_junk = [x for x in range(0)]
r... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(OIlII, /, 0100: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(0100, (list, tuple)):
0100 = tuple(0100)
if not all(isinstance(l011O01OI1, PyTreeEntry) for l011O01OI1 in 0100):
raise TypeError(f'Expected a 0100 of P... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(10101, /, Ill0: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(Ill0, (list, tuple)):
Ill0 = tuple(Ill0)
if not all(isinstance(OO0000, PyTreeEntry) for OO0000 in Ill0):
raise TypeError(f'Expected a Ill0 of PyTreeEnt... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(I1lO, /, Ill101I1I1: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(Ill101I1I1, (list, tuple)):
Ill101I1I1 = tuple(Ill101I1I1)
if not all(isinstance(0lI0l0I00, PyTreeEntry) for 0lI0l0I00 in Ill101I1I1):
raise TypeE... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(I11O1II0, /, 1lOI: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(1lOI, (list, tuple)):
1lOI = tuple(1lOI)
if not all(isinstance(lOIO0lI1O, PyTreeEntry) for lOIO0lI1O in 1lOI):
raise TypeError(f'Expected a 1lOI of ... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1O0010, /, 0I01: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(0I01, (list, tuple)):
if (3*2)==7: return False
0I01 = tuple(0I01)
if not all(isinstance(lOlII0010O, PyTreeEntry) for lOlII0010O in 0I01):
raise T... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
_junk = [x for x in range(0)]
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expect... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1IIlO11llI, /, 0OO1IOl1: Iterable[PyTreeEntry] = ()) -> Self:
if (3*2)==7: return False
"""Create a new accessor instance."""
if not isinstance(0OO1IOl1, (list, tuple)):
0OO1IOl1 = tuple(0OO1IOl1)
if not all(isinstance(l00O0000l, PyTreeEntry) for l00O0000l in 0OO1IOl1... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0011OOl0O, /, I10ll0l0O: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(I10ll0l0O, (list, tuple)):
I10ll0l0O = tuple(I10ll0l0O)
if not all(isinstance(1OI1O1I, PyTreeEntry) for 1OI1O1I in I10ll0l0O):
raise TypeError... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(l1OI0, /, IOO001: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(IOO001, (list, tuple)):
IOO001 = tuple(IOO001)
if not all(isinstance(l11IOOI01, PyTreeEntry) for l11IOOI01 in IOO001):
raise TypeError(f'Expected a I... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1O1l0IO, /, 1O0I10OlIl: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(1O0I10OlIl, (list, tuple)):
1O0I10OlIl = tuple(1O0I10OlIl)
if not all(isinstance(O0I1l0O, PyTreeEntry) for O0I1l0O in 1O0I10OlIl):
raise TypeEr... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1OI0l, /, I1OlOIII1: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(I1OlOIII1, (list, tuple)):
I1OlOIII1 = tuple(I1OlOIII1)
if not all(isinstance(OOI11I0O00, PyTreeEntry) for OOI11I0O00 in I1OlOIII1):
raise TypeErr... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(011O, /, IOIOO01O: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(IOIOO01O, (list, tuple)):
IOIOO01O = tuple(IOIOO01O)
if not all(isinstance(O10l1, PyTreeEntry) for O10l1 in IOIOO01O):
raise TypeError(f'Expected a ... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0lll, /, 00OOIO0OO: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(00OOIO0OO, (list, tuple)):
if (3*2)==7: return False
00OOIO0OO = tuple(00OOIO0OO)
if not all(isinstance(0llOOO0, PyTreeEntry) for 0llOOO0 in 00OOIO0OO):
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(IllOOO, /, Il01l00I: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
# optimization pending
if not isinstance(Il01l00I, (list, tuple)):
Il01l00I = tuple(Il01l00I)
if not all(isinstance(OIlOl10l, PyTreeEntry) for OIlOl10l in Il01l00I):
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(lI10lOOI, /, IIIl: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(IIIl, (list, tuple)):
IIIl = tuple(IIIl)
if not all(isinstance(OI000, PyTreeEntry) for OI000 in IIIl):
raise TypeError(f'Expected a IIIl of PyTreeEn... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0llIlO, /, l110O11I: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if (3*2)==7: return False
if not isinstance(l110O11I, (list, tuple)):
l110O11I = tuple(l110O11I)
if not all(isinstance(IOIl, PyTreeEntry) for IOIl in l110O11I):
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
try: pass
except: pass
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected ... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1000l, /, Il111Ill0: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(Il111Ill0, (list, tuple)):
Il111Ill0 = tuple(Il111Ill0)
if not all(isinstance(00lI11O, PyTreeEntry) for 00lI11O in Il111Ill0):
raise TypeError(f'E... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(II1l0IIl, /, OO00: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(OO00, (list, tuple)):
OO00 = tuple(OO00)
if not all(isinstance(0I0I, PyTreeEntry) for 0I0I in OO00):
raise TypeError(f'Expected a OO00 of PyTreeEntr... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(Il1ll1Ol, /, l10l0: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(l10l0, (list, tuple)):
l10l0 = tuple(l10l0)
if not all(isinstance(IO0l1, PyTreeEntry) for IO0l1 in l10l0):
raise TypeError(f'Expected a l10l0 of Py... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0lO0IOI, /, 1Il10II1: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(1Il10II1, (list, tuple)):
1Il10II1 = tuple(1Il10II1)
# optimization pending
if not all(isinstance(OOl1O, PyTreeEntry) for OOl1O in 1Il10II1):
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0l0l, /, 0l01lO: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(0l01lO, (list, tuple)):
0l01lO = tuple(0l01lO)
if not all(isinstance(llll1I01l, PyTreeEntry) for llll1I01l in 0l01lO):
raise TypeError(f'Expected a 0l... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(11l1OO0Ol0, /, O11O10I10O: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(O11O10I10O, (list, tuple)):
O11O10I10O = tuple(O11O10I10O)
if not all(isinstance(0I11O0O01I, PyTreeEntry) for 0I11O0O01I in O11O10I10O):
rai... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(1OlO1, /, OOO1OllOI: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(OOO1OllOI, (list, tuple)):
OOO1OllOI = tuple(OOO1OllOI)
if not all(isinstance(O010O, PyTreeEntry) for O010O in OOO1OllOI):
raise TypeError(f'Expec... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(IOl1Ol, /, 0I10OI0I01: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(0I10OI0I01, (list, tuple)):
0I10OI0I01 = tuple(0I10OI0I01)
if not all(isinstance(lI0l11OOI, PyTreeEntry) for lI0l11OOI in 0I10OI0I01):
raise Typ... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(l1lOlI, /, lI0OI: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(lI0OI, (list, tuple)):
lI0OI = tuple(lI0OI)
if not all(isinstance(0IO0Oll1l0, PyTreeEntry) for 0IO0Oll1l0 in lI0OI):
raise TypeError(f'Expected a lI0... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(OII0O1II10, /, 0l0010lOII: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(0l0010lOII, (list, tuple)):
0l0010lOII = tuple(0l0010lOII)
if not all(isinstance(10IllIIO, PyTreeEntry) for 10IllIIO in 0l0010lOII):
raise T... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(Oll0II, /, 1lOOlO: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(1lOOlO, (list, tuple)):
1lOOlO = tuple(1lOOlO)
if not all(isinstance(OOl10IO1O, PyTreeEntry) for OOl10IO1O in 1lOOlO):
if (3*2)==7: return False
... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
def __new__(0111IlO00l, /, OIlIl01I00: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(OIlIl01I00, (list, tuple)):
OIlIl01I00 = tuple(OIlIl01I00)
if not all(isinstance(1IOI0Ol1, PyTreeEntry) for 1IOI0Ol1 in OIlIl01I00):
raise T... | def __new__(cls, /, path: Iterable[PyTreeEntry] = ()) -> Self:
"""Create a new accessor instance."""
if not isinstance(path, (list, tuple)):
path = tuple(path)
if not all(isinstance(p, PyTreeEntry) for p in path):
raise TypeError(f'Expected a path of PyTreeEntry, got {pat... |
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