forked from M-Labs/artiq
transforms.inferencer: only instantiate RPC function types, not regular.
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@ -104,7 +104,7 @@ class Inferencer(algorithm.Visitor):
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]
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attr_type = object_type.attributes[node.attr]
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if types.is_function(attr_type):
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if types.is_rpc_function(attr_type):
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attr_type = types.instantiate(attr_type)
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self._unify(node.type, attr_type, node.loc, None,
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@ -112,6 +112,9 @@ class Inferencer(algorithm.Visitor):
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elif types.is_instance(object_type) and \
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node.attr in object_type.constructor.attributes:
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attr_type = object_type.constructor.attributes[node.attr].find()
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if types.is_rpc_function(attr_type):
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attr_type = types.instantiate(attr_type)
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if types.is_function(attr_type):
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# Convert to a method.
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if len(attr_type.args) < 1:
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@ -140,7 +143,7 @@ class Inferencer(algorithm.Visitor):
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makenotes=makenotes,
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when=" while inferring the type for self argument")
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attr_type = types.TMethod(object_type, types.instantiate(attr_type))
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attr_type = types.TMethod(object_type, attr_type)
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if not types.is_var(attr_type):
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self._unify(node.type, attr_type,
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@ -793,7 +796,10 @@ class Inferencer(algorithm.Visitor):
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typ_optargs = typ.optargs
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typ_ret = typ.ret
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else:
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typ = types.get_method_function(typ)
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typ = types.get_method_function(typ)
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if types.is_var(typ):
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return # not enough info yet
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typ_arity = typ.arity() - 1
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typ_args = OrderedDict(list(typ.args.items())[1:])
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typ_optargs = typ.optargs
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@ -641,11 +641,11 @@ def is_method(typ):
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def get_method_self(typ):
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if is_method(typ):
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return typ.find().params["self"]
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return typ.find().params["self"].find()
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def get_method_function(typ):
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if is_method(typ):
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return typ.find().params["fn"]
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return typ.find().params["fn"].find()
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def is_value(typ):
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return isinstance(typ.find(), TValue)
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@ -4,7 +4,7 @@
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from artiq.language.core import *
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from artiq.language.types import *
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# CHECK-L: call ()->NoneType delay('b) %local.testbench.entrypoint ; calls testbench.entrypoint
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# CHECK-L: call ()->NoneType %local.testbench.entrypoint ; calls testbench.entrypoint
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@kernel
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def baz():
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@ -15,5 +15,5 @@ c.a
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# CHECK-L: .f:()->NoneType delay('b)
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c.f
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# CHECK-L: .m:method(fn=(self:<instance c>)->NoneType delay('d), self=<instance c>)
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# CHECK-L: .m:method(fn=(self:<instance c>)->NoneType delay('c), self=<instance c>)
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c().m()
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