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https://github.com/Z3Prover/z3
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Add Python bindings for finite sets
Co-authored-by: NikolajBjorner <3085284+NikolajBjorner@users.noreply.github.com>
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1 changed files with 218 additions and 1 deletions
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@ -678,6 +678,8 @@ def is_sort(s : Any) -> bool:
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def _to_sort_ref(s, ctx):
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if z3_debug():
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_z3_assert(isinstance(s, Sort), "Z3 Sort expected")
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if Z3_is_finite_set_sort(ctx.ref(), s):
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return FiniteSetSortRef(s, ctx)
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k = _sort_kind(ctx, s)
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if k == Z3_BOOL_SORT:
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return BoolSortRef(s, ctx)
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@ -1184,7 +1186,11 @@ def _to_expr_ref(a, ctx):
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k = Z3_get_ast_kind(ctx_ref, a)
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if k == Z3_QUANTIFIER_AST:
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return QuantifierRef(a, ctx)
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sk = Z3_get_sort_kind(ctx_ref, Z3_get_sort(ctx_ref, a))
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# Check for finite set sort before checking sort kind
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s = Z3_get_sort(ctx_ref, a)
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if Z3_is_finite_set_sort(ctx_ref, s):
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return FiniteSetRef(a, ctx)
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sk = Z3_get_sort_kind(ctx_ref, s)
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if sk == Z3_BOOL_SORT:
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return BoolRef(a, ctx)
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if sk == Z3_INT_SORT:
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@ -5147,6 +5153,217 @@ def IsSubset(a, b):
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return BoolRef(Z3_mk_set_subset(ctx.ref(), a.as_ast(), b.as_ast()), ctx)
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#########################################
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#
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# Finite Sets
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#
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#########################################
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class FiniteSetSortRef(SortRef):
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"""Finite set sort."""
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def element_sort(self):
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"""Return the element sort of this finite set sort."""
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return _to_sort_ref(Z3_get_finite_set_sort_basis(self.ctx_ref(), self.ast), self.ctx)
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def cast(self, val):
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"""Try to cast val as a finite set expression."""
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if is_expr(val):
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if self.eq(val.sort()):
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return val
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else:
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_z3_assert(False, "Cannot cast to finite set sort")
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if isinstance(val, set):
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elem_sort = self.element_sort()
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result = FiniteSetEmpty(self)
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for e in val:
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result = FiniteSetUnion(result, FiniteSetSingleton(_py2expr(e, self.ctx, elem_sort)))
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return result
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_z3_assert(False, "Cannot cast to finite set sort")
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def subsort(self, other):
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return False
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def is_int(self):
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return False
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def is_bool(self):
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return False
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def is_datatype(self):
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return False
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def is_array(self):
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return False
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def is_bv(self):
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return False
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def is_finite_set(a):
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"""Return True if a is a Z3 finite set expression.
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>>> s = FiniteSetSort(IntSort())
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>>> is_finite_set(FiniteSetEmpty(s))
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True
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>>> is_finite_set(IntVal(1))
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False
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"""
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return isinstance(a, FiniteSetRef)
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def is_finite_set_sort(s):
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"""Return True if s is a Z3 finite set sort.
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>>> is_finite_set_sort(FiniteSetSort(IntSort()))
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True
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>>> is_finite_set_sort(IntSort())
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False
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"""
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return isinstance(s, FiniteSetSortRef)
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class FiniteSetRef(ExprRef):
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"""Finite set expression."""
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def sort(self):
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return FiniteSetSortRef(Z3_get_sort(self.ctx_ref(), self.as_ast()), self.ctx)
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def __or__(self, other):
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"""Return the union of self and other."""
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return FiniteSetUnion(self, other)
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def __and__(self, other):
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"""Return the intersection of self and other."""
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return FiniteSetIntersect(self, other)
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def __sub__(self, other):
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"""Return the set difference of self and other."""
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return FiniteSetDifference(self, other)
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def FiniteSetSort(elem_sort):
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"""Create a finite set sort over element sort elem_sort.
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>>> s = FiniteSetSort(IntSort())
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>>> s
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FiniteSet(Int)
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"""
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return FiniteSetSortRef(Z3_mk_finite_set_sort(elem_sort.ctx_ref(), elem_sort.ast), elem_sort.ctx)
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def FiniteSetEmpty(set_sort):
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"""Create an empty finite set of the given sort.
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>>> s = FiniteSetSort(IntSort())
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>>> FiniteSetEmpty(s)
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set.empty
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"""
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ctx = set_sort.ctx
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return FiniteSetRef(Z3_mk_finite_set_empty(ctx.ref(), set_sort.ast), ctx)
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def FiniteSetSingleton(elem):
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"""Create a singleton finite set containing elem.
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>>> FiniteSetSingleton(IntVal(1))
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set.singleton(1)
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"""
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ctx = elem.ctx
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return FiniteSetRef(Z3_mk_finite_set_singleton(ctx.ref(), elem.as_ast()), ctx)
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def FiniteSetUnion(s1, s2):
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"""Create the union of two finite sets.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> b = Const('b', FiniteSetSort(IntSort()))
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>>> FiniteSetUnion(a, b)
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set.union(a, b)
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"""
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ctx = _ctx_from_ast_arg_list([s1, s2])
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return FiniteSetRef(Z3_mk_finite_set_union(ctx.ref(), s1.as_ast(), s2.as_ast()), ctx)
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def FiniteSetIntersect(s1, s2):
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"""Create the intersection of two finite sets.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> b = Const('b', FiniteSetSort(IntSort()))
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>>> FiniteSetIntersect(a, b)
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set.intersect(a, b)
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"""
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ctx = _ctx_from_ast_arg_list([s1, s2])
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return FiniteSetRef(Z3_mk_finite_set_intersect(ctx.ref(), s1.as_ast(), s2.as_ast()), ctx)
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def FiniteSetDifference(s1, s2):
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"""Create the set difference of two finite sets.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> b = Const('b', FiniteSetSort(IntSort()))
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>>> FiniteSetDifference(a, b)
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set.difference(a, b)
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"""
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ctx = _ctx_from_ast_arg_list([s1, s2])
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return FiniteSetRef(Z3_mk_finite_set_difference(ctx.ref(), s1.as_ast(), s2.as_ast()), ctx)
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def FiniteSetMember(elem, set):
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"""Check if elem is a member of the finite set.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> FiniteSetMember(IntVal(1), a)
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set.in(1, a)
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"""
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ctx = _ctx_from_ast_arg_list([elem, set])
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return BoolRef(Z3_mk_finite_set_member(ctx.ref(), elem.as_ast(), set.as_ast()), ctx)
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def FiniteSetSize(set):
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"""Get the size (cardinality) of a finite set.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> FiniteSetSize(a)
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set.size(a)
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"""
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ctx = set.ctx
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return ArithRef(Z3_mk_finite_set_size(ctx.ref(), set.as_ast()), ctx)
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def FiniteSetSubset(s1, s2):
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"""Check if s1 is a subset of s2.
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> b = Const('b', FiniteSetSort(IntSort()))
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>>> FiniteSetSubset(a, b)
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set.subset(a, b)
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"""
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ctx = _ctx_from_ast_arg_list([s1, s2])
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return BoolRef(Z3_mk_finite_set_subset(ctx.ref(), s1.as_ast(), s2.as_ast()), ctx)
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def FiniteSetMap(f, set):
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"""Apply function f to all elements of the finite set.
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>>> f = Function('f', IntSort(), IntSort())
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> FiniteSetMap(f, a)
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set.map(f, a)
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"""
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ctx = _ctx_from_ast_arg_list([f, set])
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return FiniteSetRef(Z3_mk_finite_set_map(ctx.ref(), f.as_ast(), set.as_ast()), ctx)
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def FiniteSetFilter(f, set):
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"""Filter a finite set using predicate f.
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>>> f = Function('f', IntSort(), BoolSort())
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>>> a = Const('a', FiniteSetSort(IntSort()))
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>>> FiniteSetFilter(f, a)
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set.filter(f, a)
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"""
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ctx = _ctx_from_ast_arg_list([f, set])
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return FiniteSetRef(Z3_mk_finite_set_filter(ctx.ref(), f.as_ast(), set.as_ast()), ctx)
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def FiniteSetRange(low, high):
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"""Create a finite set of integers in the range [low, high).
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>>> FiniteSetRange(IntVal(0), IntVal(5))
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set.range(0, 5)
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"""
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ctx = _ctx_from_ast_arg_list([low, high])
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return FiniteSetRef(Z3_mk_finite_set_range(ctx.ref(), low.as_ast(), high.as_ast()), ctx)
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#########################################
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#
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# Datatypes
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