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Z3: Datatype Class Reference

Helper class for declaring Z3 datatypes.

>>> List = Datatype('List')
>>> List.declare('cons', ('car', IntSort()), ('cdr', List))
>>> List.declare('nil')
>>> List = List.create()
>>> # List is now a Z3 declaration
>>> List.nil
nil
>>> List.cons(10, List.nil)
cons(10, nil)
>>> List.cons(10, List.nil).sort()
List
>>> cons = List.cons
>>> nil  = List.nil
>>> car  = List.car
>>> cdr  = List.cdr
>>> n = cons(1, cons(0, nil))
>>> n
cons(1, cons(0, nil))
>>> simplify(cdr(n))
cons(0, nil)
>>> simplify(car(n))
1

Definition at line 5092 of file z3py.py.

Create a Z3 datatype based on the constructors declared using the method `declare()`.

The function `CreateDatatypes()` must be used to define mutually recursive datatypes.

>>> List = Datatype('List')
>>> List.declare('cons', ('car', IntSort()), ('cdr', List))
>>> List.declare('nil')
>>> List = List.create()
>>> List.nil
nil
>>> List.cons(10, List.nil)
cons(10, nil)

Definition at line 5163 of file z3py.py.

5164  """Create a Z3 datatype based on the constructors declared using the method `declare()`. 5166  The function `CreateDatatypes()` must be used to define mutually recursive datatypes. 5168  >>> List = Datatype('List') 5169  >>> List.declare('cons', ('car', IntSort()), ('cdr', List)) 5170  >>> List.declare('nil') 5171  >>> List = List.create() 5174  >>> List.cons(10, List.nil) def declare (   self,   name, *  args  )
Declare constructor named `name` with the given accessors `args`.
Each accessor is a pair `(name, sort)`, where `name` is a string and `sort` a Z3 sort
or a reference to the datatypes being declared.

In the following example `List.declare('cons', ('car', IntSort()), ('cdr', List))`
declares the constructor named `cons` that builds a new List using an integer and a List.
It also declares the accessors `car` and `cdr`. The accessor `car` extracts the integer
of a `cons` cell, and `cdr` the list of a `cons` cell. After all constructors were declared,
we use the method create() to create the actual datatype in Z3.

>>> List = Datatype('List')
>>> List.declare('cons', ('car', IntSort()), ('cdr', List))
>>> List.declare('nil')
>>> List = List.create()

Definition at line 5139 of file z3py.py.

5139  def

declare(self, name, *args):

5140  """Declare constructor named `name` with the given accessors `args`. 5141  Each accessor is a pair `(name, sort)`, where `name` is a string and `sort` a Z3 sort 5142  or a reference to the datatypes being declared. 5144  In the following example `List.declare('cons', ('car', IntSort()), ('cdr', List))` 5145  declares the constructor named `cons` that builds a new List using an integer and a List. 5146  It also declares the accessors `car` and `cdr`. The accessor `car` extracts the integer 5147  of a `cons` cell, and `cdr` the list of a `cons` cell. After all constructors were declared, 5148  we use the method create() to create the actual datatype in Z3. 5150  >>> List = Datatype('List') 5151  >>> List.declare('cons', ('car', IntSort()), ('cdr', List)) 5152  >>> List.declare('nil') 5153  >>> List = List.create() 5156

_z3_assert(isinstance(name, str),

"String expected"

)

5157

_z3_assert(name !=

""

,

"Constructor name cannot be empty"

)

5158  return

self.declare_core(name,

"is-"

+ name, *args)

Definition at line 5120 of file z3py.py.

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Statistics.__del__(), Solver.__del__(), Fixedpoint.__del__(), Optimize.__del__(), ApplyResult.__del__(), Simplifier.__del__(), Tactic.__del__(), Probe.__del__(), ParserContext.__del__(), ArithRef.__div__(), BitVecRef.__div__(), FPRef.__div__(), ExprRef.__eq__(), Probe.__eq__(), ArithRef.__ge__(), BitVecRef.__ge__(), Probe.__ge__(), FPRef.__ge__(), SeqRef.__ge__(), AstVector.__getitem__(), SeqRef.__getitem__(), ModelRef.__getitem__(), Statistics.__getitem__(), ApplyResult.__getitem__(), AstMap.__getitem__(), ArithRef.__gt__(), BitVecRef.__gt__(), Probe.__gt__(), FPRef.__gt__(), SeqRef.__gt__(), BitVecRef.__invert__(), ArithRef.__le__(), BitVecRef.__le__(), Probe.__le__(), FPRef.__le__(), SeqRef.__le__(), CharRef.__le__(), AstVector.__len__(), AstMap.__len__(), ModelRef.__len__(), Statistics.__len__(), ApplyResult.__len__(), BitVecRef.__lshift__(), ArithRef.__lt__(), BitVecRef.__lt__(), Probe.__lt__(), FPRef.__lt__(), SeqRef.__lt__(), ArithRef.__mod__(), BitVecRef.__mod__(), 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