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Add support for UnaryOp.
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df686136f1
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@ -180,6 +180,18 @@ def TList(elt=None):
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return TMono("list", {"elt": elt})
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return TMono("list", {"elt": elt})
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def is_var(typ):
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return isinstance(typ, TVar)
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def is_mono(typ, name, **params):
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return isinstance(typ, TMono) and \
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typ.name == name and typ.params == params
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def is_numeric(typ):
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return isinstance(typ, TMono) and \
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typ.name in ('int', 'float')
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class TypePrinter(object):
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class TypePrinter(object):
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"""
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"""
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A class that prints types using Python-like syntax and gives
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A class that prints types using Python-like syntax and gives
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@ -284,6 +284,27 @@ class Inferencer(algorithm.Transformer):
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op_locs=node.op_locs, loc=node.loc)
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op_locs=node.op_locs, loc=node.loc)
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return self.visit(node)
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return self.visit(node)
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def visit_UnaryOp(self, node):
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node = self.generic_visit(node)
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node = asttyped.UnaryOpT(type=types.TVar(),
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op=node.op, operand=node.operand,
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loc=node.loc)
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return self.visit(node)
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def visit_BinOp(self, node):
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node = self.generic_visit(node)
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node = asttyped.BinOpT(type=types.TVar(),
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left=node.left, op=node.op, right=node.right,
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loc=node.loc)
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return self.visit(node)
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def visit_Compare(self, node):
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node = self.generic_visit(node)
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node = asttyped.CompareT(type=types.TVar(),
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left=node.left, ops=node.ops, comparators=node.comparators,
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loc=node.loc)
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return self.visit(node)
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# Visitors that just unify types
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# Visitors that just unify types
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#
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#
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def visit_ListT(self, node):
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def visit_ListT(self, node):
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@ -310,6 +331,21 @@ class Inferencer(algorithm.Transformer):
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node.loc, value.loc, self._makenotes_elts(node.values, "an operand"))
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node.loc, value.loc, self._makenotes_elts(node.values, "an operand"))
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return node
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return node
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def visit_UnaryOpT(self, node):
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if isinstance(node.op, ast.Not):
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node.type = types.TBool()
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else:
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operand_type = node.operand.type.find()
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if types.is_numeric(operand_type):
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node.type = operand_type
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elif not types.is_var(operand_type):
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diag = diagnostic.Diagnostic("error",
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"expected operand to be of numeric type, not {type}",
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{"type": types.TypePrinter().name(operand_type)},
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node.operand.loc)
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self.engine.process(diag)
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return node
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def visit_Assign(self, node):
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def visit_Assign(self, node):
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node = self.generic_visit(node)
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node = self.generic_visit(node)
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if len(node.targets) > 1:
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if len(node.targets) > 1:
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@ -375,7 +411,6 @@ class Inferencer(algorithm.Transformer):
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visit_SetComp = visit_unsupported
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visit_SetComp = visit_unsupported
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visit_Str = visit_unsupported
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visit_Str = visit_unsupported
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visit_Starred = visit_unsupported
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visit_Starred = visit_unsupported
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visit_UnaryOp = visit_unsupported
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visit_Yield = visit_unsupported
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visit_Yield = visit_unsupported
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visit_YieldFrom = visit_unsupported
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visit_YieldFrom = visit_unsupported
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@ -16,3 +16,6 @@ a = b
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1 and False
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1 and False
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# CHECK-L: note: an operand of type int(width='a)
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# CHECK-L: note: an operand of type int(width='a)
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# CHECK-L: note: an operand of type bool
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# CHECK-L: note: an operand of type bool
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# CHECK-L: ${LINE:+1}: error: expected operand to be of numeric type, not list(elt='a)
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~[]
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@ -41,3 +41,9 @@ True and False
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1 and 0
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1 and 0
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# CHECK-L: 1:int(width='g) and 0:int(width='g):int(width='g)
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# CHECK-L: 1:int(width='g) and 0:int(width='g):int(width='g)
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~1
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# CHECK-L: 1:int(width='h):int(width='h)
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not 1
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# CHECK-L: 1:int(width='i):bool
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