8b2694efb7
* fix build for openssl 1.1.1b required for sdk (cherry picked from commitaa49e3b275
) * use js code from master * fix openssl recipe and tweak build (cherry picked from commit6e94c27021
) * remove unused build recipes (cherry picked from commitf5c0577bdb
)
223 lines
8.9 KiB
Diff
223 lines
8.9 KiB
Diff
diff --git a/sympy/printing/pretty/pretty.py b/sympy/printing/pretty/pretty.py
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index 604e97c..ddd3eb2 100644
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--- a/sympy/printing/pretty/pretty.py
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+++ b/sympy/printing/pretty/pretty.py
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@@ -166,14 +166,14 @@ class PrettyPrinter(Printer):
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arg = e.args[0]
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pform = self._print(arg)
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if isinstance(arg, Equivalent):
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- return self._print_Equivalent(arg, altchar=u"\N{NOT IDENTICAL TO}")
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+ return self._print_Equivalent(arg, altchar=u"NOT IDENTICAL TO")
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if isinstance(arg, Implies):
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- return self._print_Implies(arg, altchar=u"\N{RIGHTWARDS ARROW WITH STROKE}")
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+ return self._print_Implies(arg, altchar=u"RIGHTWARDS ARROW WITH STROKE")
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if arg.is_Boolean and not arg.is_Not:
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pform = prettyForm(*pform.parens())
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- return prettyForm(*pform.left(u"\N{NOT SIGN}"))
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+ return prettyForm(*pform.left(u"NOT SIGN"))
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else:
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return self._print_Function(e)
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@@ -200,43 +200,43 @@ class PrettyPrinter(Printer):
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def _print_And(self, e):
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if self._use_unicode:
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- return self.__print_Boolean(e, u"\N{LOGICAL AND}")
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+ return self.__print_Boolean(e, u"LOGICAL AND")
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else:
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return self._print_Function(e, sort=True)
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def _print_Or(self, e):
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if self._use_unicode:
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- return self.__print_Boolean(e, u"\N{LOGICAL OR}")
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+ return self.__print_Boolean(e, u"LOGICAL OR")
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else:
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return self._print_Function(e, sort=True)
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def _print_Xor(self, e):
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if self._use_unicode:
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- return self.__print_Boolean(e, u"\N{XOR}")
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+ return self.__print_Boolean(e, u"XOR")
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else:
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return self._print_Function(e, sort=True)
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def _print_Nand(self, e):
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if self._use_unicode:
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- return self.__print_Boolean(e, u"\N{NAND}")
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+ return self.__print_Boolean(e, u"NAND")
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else:
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return self._print_Function(e, sort=True)
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def _print_Nor(self, e):
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if self._use_unicode:
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- return self.__print_Boolean(e, u"\N{NOR}")
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+ return self.__print_Boolean(e, u"NOR")
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else:
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return self._print_Function(e, sort=True)
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def _print_Implies(self, e, altchar=None):
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if self._use_unicode:
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- return self.__print_Boolean(e, altchar or u"\N{RIGHTWARDS ARROW}", sort=False)
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+ return self.__print_Boolean(e, altchar or u"RIGHTWARDS ARROW", sort=False)
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else:
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return self._print_Function(e)
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def _print_Equivalent(self, e, altchar=None):
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if self._use_unicode:
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- return self.__print_Boolean(e, altchar or u"\N{IDENTICAL TO}")
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+ return self.__print_Boolean(e, altchar or u"IDENTICAL TO")
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else:
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return self._print_Function(e, sort=True)
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@@ -425,7 +425,7 @@ class PrettyPrinter(Printer):
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if self._use_unicode:
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# use unicode corners
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horizontal_chr = xobj('-', 1)
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- corner_chr = u'\N{BOX DRAWINGS LIGHT DOWN AND HORIZONTAL}'
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+ corner_chr = u'BOX DRAWINGS LIGHT DOWN AND HORIZONTAL'
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func_height = pretty_func.height()
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@@ -580,7 +580,7 @@ class PrettyPrinter(Printer):
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LimArg = self._print(z)
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if self._use_unicode:
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- LimArg = prettyForm(*LimArg.right(u'\N{BOX DRAWINGS LIGHT HORIZONTAL}\N{RIGHTWARDS ARROW}'))
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+ LimArg = prettyForm(*LimArg.right(u'BOX DRAWINGS LIGHT HORIZONTALRIGHTWARDS ARROW'))
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else:
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LimArg = prettyForm(*LimArg.right('->'))
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LimArg = prettyForm(*LimArg.right(self._print(z0)))
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@@ -589,7 +589,7 @@ class PrettyPrinter(Printer):
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dir = ""
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else:
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if self._use_unicode:
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- dir = u'\N{SUPERSCRIPT PLUS SIGN}' if str(dir) == "+" else u'\N{SUPERSCRIPT MINUS}'
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+ dir = u'SUPERSCRIPT PLUS SIGN' if str(dir) == "+" else u'SUPERSCRIPT MINUS'
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LimArg = prettyForm(*LimArg.right(self._print(dir)))
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@@ -740,7 +740,7 @@ class PrettyPrinter(Printer):
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def _print_Adjoint(self, expr):
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pform = self._print(expr.arg)
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if self._use_unicode:
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- dag = prettyForm(u'\N{DAGGER}')
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+ dag = prettyForm(u'DAGGER')
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else:
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dag = prettyForm('+')
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from sympy.matrices import MatrixSymbol
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@@ -850,8 +850,8 @@ class PrettyPrinter(Printer):
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if '\n' in partstr:
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tempstr = partstr
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tempstr = tempstr.replace(vectstrs[i], '')
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- tempstr = tempstr.replace(u'\N{RIGHT PARENTHESIS UPPER HOOK}',
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- u'\N{RIGHT PARENTHESIS UPPER HOOK}'
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+ tempstr = tempstr.replace(u'RIGHT PARENTHESIS UPPER HOOK',
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+ u'RIGHT PARENTHESIS UPPER HOOK'
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+ ' ' + vectstrs[i])
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o1[i] = tempstr
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o1 = [x.split('\n') for x in o1]
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@@ -1153,7 +1153,7 @@ class PrettyPrinter(Printer):
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def _print_Lambda(self, e):
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vars, expr = e.args
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if self._use_unicode:
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- arrow = u" \N{RIGHTWARDS ARROW FROM BAR} "
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+ arrow = u" RIGHTWARDS ARROW FROM BAR "
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else:
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arrow = " -> "
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if len(vars) == 1:
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@@ -1173,7 +1173,7 @@ class PrettyPrinter(Printer):
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elif len(expr.variables):
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pform = prettyForm(*pform.right(self._print(expr.variables[0])))
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if self._use_unicode:
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- pform = prettyForm(*pform.right(u" \N{RIGHTWARDS ARROW} "))
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+ pform = prettyForm(*pform.right(u" RIGHTWARDS ARROW "))
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else:
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pform = prettyForm(*pform.right(" -> "))
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if len(expr.point) > 1:
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@@ -1462,7 +1462,7 @@ class PrettyPrinter(Printer):
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and expt is S.Half and bpretty.height() == 1
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and (bpretty.width() == 1
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or (base.is_Integer and base.is_nonnegative))):
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- return prettyForm(*bpretty.left(u'\N{SQUARE ROOT}'))
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+ return prettyForm(*bpretty.left(u'SQUARE ROOT'))
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# Construct root sign, start with the \/ shape
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_zZ = xobj('/', 1)
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@@ -1558,7 +1558,7 @@ class PrettyPrinter(Printer):
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from sympy import Pow
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return self._print(Pow(p.sets[0], len(p.sets), evaluate=False))
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else:
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- prod_char = u"\N{MULTIPLICATION SIGN}" if self._use_unicode else 'x'
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+ prod_char = u"MULTIPLICATION SIGN" if self._use_unicode else 'x'
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return self._print_seq(p.sets, None, None, ' %s ' % prod_char,
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parenthesize=lambda set: set.is_Union or
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set.is_Intersection or set.is_ProductSet)
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@@ -1570,7 +1570,7 @@ class PrettyPrinter(Printer):
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def _print_Range(self, s):
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if self._use_unicode:
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- dots = u"\N{HORIZONTAL ELLIPSIS}"
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+ dots = u"HORIZONTAL ELLIPSIS"
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else:
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dots = '...'
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@@ -1641,7 +1641,7 @@ class PrettyPrinter(Printer):
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def _print_ImageSet(self, ts):
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if self._use_unicode:
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- inn = u"\N{SMALL ELEMENT OF}"
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+ inn = u"SMALL ELEMENT OF"
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else:
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inn = 'in'
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variables = self._print_seq(ts.lamda.variables)
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@@ -1653,10 +1653,10 @@ class PrettyPrinter(Printer):
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def _print_ConditionSet(self, ts):
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if self._use_unicode:
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- inn = u"\N{SMALL ELEMENT OF}"
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+ inn = u"SMALL ELEMENT OF"
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# using _and because and is a keyword and it is bad practice to
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# overwrite them
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- _and = u"\N{LOGICAL AND}"
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+ _and = u"LOGICAL AND"
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else:
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inn = 'in'
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_and = 'and'
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@@ -1677,7 +1677,7 @@ class PrettyPrinter(Printer):
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def _print_ComplexRegion(self, ts):
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if self._use_unicode:
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- inn = u"\N{SMALL ELEMENT OF}"
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+ inn = u"SMALL ELEMENT OF"
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else:
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inn = 'in'
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variables = self._print_seq(ts.variables)
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@@ -1690,7 +1690,7 @@ class PrettyPrinter(Printer):
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def _print_Contains(self, e):
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var, set = e.args
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if self._use_unicode:
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- el = u" \N{ELEMENT OF} "
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+ el = u" ELEMENT OF "
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return prettyForm(*stringPict.next(self._print(var),
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el, self._print(set)), binding=8)
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else:
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@@ -1698,7 +1698,7 @@ class PrettyPrinter(Printer):
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def _print_FourierSeries(self, s):
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if self._use_unicode:
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- dots = u"\N{HORIZONTAL ELLIPSIS}"
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+ dots = u"HORIZONTAL ELLIPSIS"
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else:
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dots = '...'
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return self._print_Add(s.truncate()) + self._print(dots)
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@@ -1708,7 +1708,7 @@ class PrettyPrinter(Printer):
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def _print_SeqFormula(self, s):
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if self._use_unicode:
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- dots = u"\N{HORIZONTAL ELLIPSIS}"
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+ dots = u"HORIZONTAL ELLIPSIS"
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else:
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dots = '...'
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