mirror of https://github.com/m-labs/artiq.git
Add LocalAccessValidator.
This commit is contained in:
parent
f5d9e11b38
commit
ac491fae47
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@ -395,6 +395,9 @@ class Function:
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assert any(self.basic_blocks)
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return self.basic_blocks[0]
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def exits(self):
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return [block for block in self.basic_blocks if not any(block.successors())]
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def instructions(self):
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for basic_block in self.basic_blocks:
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yield from iter(basic_block.instructions)
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@ -508,7 +511,7 @@ class GetLocal(Instruction):
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def opcode(self):
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return "getlocal({})".format(self.var_name)
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def get_env(self):
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def environment(self):
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return self.operands[0]
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class SetLocal(Instruction):
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@ -536,10 +539,10 @@ class SetLocal(Instruction):
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def opcode(self):
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return "setlocal({})".format(self.var_name)
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def get_env(self):
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def environment(self):
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return self.operands[0]
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def get_value(self):
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def value(self):
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return self.operands[1]
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class GetAttr(Instruction):
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@ -568,7 +571,7 @@ class GetAttr(Instruction):
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def opcode(self):
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return "getattr({})".format(repr(self.attr))
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def get_env(self):
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def env(self):
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return self.operands[0]
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class SetAttr(Instruction):
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@ -597,10 +600,10 @@ class SetAttr(Instruction):
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def opcode(self):
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return "setattr({})".format(repr(self.attr))
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def get_env(self):
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def env(self):
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return self.operands[0]
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def get_value(self):
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def value(self):
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return self.operands[1]
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class GetElem(Instruction):
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@ -620,10 +623,10 @@ class GetElem(Instruction):
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def opcode(self):
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return "getelem"
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def get_list(self):
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def list(self):
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return self.operands[0]
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def get_index(self):
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def index(self):
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return self.operands[1]
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class SetElem(Instruction):
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@ -646,13 +649,13 @@ class SetElem(Instruction):
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def opcode(self):
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return "setelem"
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def get_list(self):
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def list(self):
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return self.operands[0]
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def get_index(self):
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def index(self):
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return self.operands[1]
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def get_value(self):
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def value(self):
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return self.operands[2]
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class UnaryOp(Instruction):
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@ -675,7 +678,7 @@ class UnaryOp(Instruction):
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def opcode(self):
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return "unaryop({})".format(type(self.op).__name__)
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def get_operand(self):
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def operand(self):
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return self.operands[0]
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class Coerce(Instruction):
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@ -691,7 +694,7 @@ class Coerce(Instruction):
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def opcode(self):
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return "coerce"
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def get_value(self):
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def value(self):
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return self.operands[0]
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class BinaryOp(Instruction):
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@ -717,10 +720,10 @@ class BinaryOp(Instruction):
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def opcode(self):
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return "binaryop({})".format(type(self.op).__name__)
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def get_lhs(self):
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def lhs(self):
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return self.operands[0]
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def get_rhs(self):
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def rhs(self):
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return self.operands[1]
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class Compare(Instruction):
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@ -746,10 +749,10 @@ class Compare(Instruction):
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def opcode(self):
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return "compare({})".format(type(self.op).__name__)
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def get_lhs(self):
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def lhs(self):
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return self.operands[0]
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def get_rhs(self):
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def rhs(self):
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return self.operands[1]
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class Builtin(Instruction):
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@ -793,7 +796,7 @@ class Closure(Instruction):
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def opcode(self):
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return "closure({})".format(self.target_function.name)
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def get_environment(self):
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def environment(self):
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return self.operands[0]
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class Call(Instruction):
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@ -813,10 +816,10 @@ class Call(Instruction):
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def opcode(self):
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return "call"
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def get_function(self):
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def function(self):
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return self.operands[0]
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def get_arguments(self):
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def arguments(self):
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return self.operands[1:]
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class Select(Instruction):
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@ -839,13 +842,13 @@ class Select(Instruction):
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def opcode(self):
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return "select"
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def get_condition(self):
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def condition(self):
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return self.operands[0]
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def get_if_true(self):
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def if_true(self):
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return self.operands[1]
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def get_if_false(self):
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def if_false(self):
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return self.operands[2]
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class Branch(Terminator):
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@ -863,7 +866,7 @@ class Branch(Terminator):
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def opcode(self):
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return "branch"
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def get_target(self):
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def target(self):
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return self.operands[0]
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class BranchIf(Terminator):
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@ -885,13 +888,13 @@ class BranchIf(Terminator):
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def opcode(self):
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return "branchif"
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def get_condition(self):
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def condition(self):
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return self.operands[0]
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def get_if_true(self):
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def if_true(self):
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return self.operands[1]
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def get_if_false(self):
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def if_false(self):
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return self.operands[2]
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class IndirectBranch(Terminator):
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@ -911,10 +914,10 @@ class IndirectBranch(Terminator):
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def opcode(self):
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return "indirectbranch"
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def get_target(self):
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def target(self):
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return self.operands[0]
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def get_destinations(self):
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def destinations(self):
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return self.operands[1:]
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def add_destination(self, destination):
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@ -939,7 +942,7 @@ class Return(Terminator):
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def opcode(self):
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return "return"
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def get_value(self):
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def value(self):
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return self.operands[0]
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class Unreachable(Terminator):
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@ -971,7 +974,7 @@ class Raise(Terminator):
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def opcode(self):
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return "raise"
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def get_value(self):
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def value(self):
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return self.operands[0]
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class Invoke(Terminator):
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@ -995,16 +998,16 @@ class Invoke(Terminator):
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def opcode(self):
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return "invoke"
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def get_function(self):
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def function(self):
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return self.operands[0]
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def get_arguments(self):
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def arguments(self):
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return self.operands[1:-2]
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def get_normal_target(self):
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def normal_target(self):
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return self.operands[-2]
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def get_exception_target(self):
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def exception_target(self):
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return self.operands[-1]
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def _operands_as_string(self):
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@ -11,27 +11,28 @@ class Module:
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if engine is None:
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engine = diagnostic.Engine(all_errors_are_fatal=True)
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module_name, _ = os.path.splitext(os.path.basename(source_buffer.name))
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self.name, _ = os.path.splitext(os.path.basename(source_buffer.name))
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asttyped_rewriter = transforms.ASTTypedRewriter(engine=engine)
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inferencer = transforms.Inferencer(engine=engine)
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int_monomorphizer = transforms.IntMonomorphizer(engine=engine)
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monomorphism_validator = validators.MonomorphismValidator(engine=engine)
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escape_validator = validators.EscapeValidator(engine=engine)
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ir_generator = transforms.IRGenerator(engine=engine, module_name=module_name)
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ir_generator = transforms.IRGenerator(engine=engine, module_name=self.name)
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dead_code_eliminator = transforms.DeadCodeEliminator(engine=engine)
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local_access_validator = validators.LocalAccessValidator(engine=engine)
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parsetree, comments = parse_buffer(source_buffer, engine=engine)
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typedtree = asttyped_rewriter.visit(parsetree)
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inferencer.visit(typedtree)
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int_monomorphizer.visit(typedtree)
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inferencer.visit(typedtree)
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monomorphism_validator.visit(typedtree)
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escape_validator.visit(typedtree)
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ir_generator.visit(typedtree)
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self.name = module_name
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self.parsetree, self.comments = parse_buffer(source_buffer, engine=engine)
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self.typedtree = asttyped_rewriter.visit(self.parsetree)
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self.globals = asttyped_rewriter.globals
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self.ir = ir_generator.functions
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inferencer.visit(self.typedtree)
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int_monomorphizer.visit(self.typedtree)
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inferencer.visit(self.typedtree)
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monomorphism_validator.visit(self.typedtree)
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escape_validator.visit(self.typedtree)
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self.ir = ir_generator.visit(self.typedtree)
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dead_code_eliminator.process(self.ir)
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local_access_validator.process(self.ir)
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@classmethod
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def from_string(cls, source_string, name="input.py", first_line=1, engine=None):
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@ -138,7 +138,7 @@ class IRGenerator(algorithm.Visitor):
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self.generic_visit(node)
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self.terminate(ir.Return(ir.Constant(None, builtins.TNone())))
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return func
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return self.functions
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finally:
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self.current_function = old_func
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self.current_block = old_block
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@ -245,8 +245,18 @@ class IRGenerator(algorithm.Visitor):
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self.append(ir.Branch(self.return_target))
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def visit_Expr(self, node):
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# ignore the value, do it for side effects
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self.visit(node.value)
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# Ignore the value, do it for side effects.
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result = self.visit(node.value)
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# See comment in visit_Pass.
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if isinstance(result, ir.Constant):
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self.visit_Pass(node)
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def visit_Pass(self, node):
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# Insert a dummy instruction so that analyses which extract
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# locations from CFG have something to use.
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self.append(ir.BinaryOp(ast.Add(loc=None),
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ir.Constant(0, self._size_type), ir.Constant(0, self._size_type)))
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def visit_Assign(self, node):
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try:
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@ -288,9 +298,9 @@ class IRGenerator(algorithm.Visitor):
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if any(node.orelse):
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if not if_false.is_terminated():
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if_false.append(ir.Branch(tail))
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head.append(ir.BranchIf(cond, if_true, if_false))
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self.append(ir.BranchIf(cond, if_true, if_false), block=head)
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else:
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head.append(ir.BranchIf(cond, if_true, tail))
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self.append(ir.BranchIf(cond, if_true, tail), block=head)
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def visit_While(self, node):
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try:
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@ -1,2 +1,3 @@
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from .monomorphism import MonomorphismValidator
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from .escape import EscapeValidator
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from .local_access import LocalAccessValidator
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@ -0,0 +1,121 @@
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"""
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:class:`LocalAccessValidator` verifies that local variables
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are not accessed before being used.
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"""
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from functools import reduce
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from pythonparser import diagnostic
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from .. import ir, analyses
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class LocalAccessValidator:
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def __init__(self, engine):
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self.engine = engine
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def process(self, functions):
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for func in functions:
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self.process_function(func)
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def process_function(self, func):
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# Find all environments allocated in this func.
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environments = []
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for insn in func.instructions():
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if isinstance(insn, ir.Alloc) and ir.is_environment(insn.type):
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environments.append(insn)
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# Compute initial state of interesting environments.
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# Environments consisting only of internal variables (containing a ".")
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# are ignored.
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initial_state = {}
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for env in environments:
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env_state = {var: False for var in env.type.params if "." not in var}
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if any(env_state):
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initial_state[env] = env_state
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# Traverse the acyclic graph made of basic blocks and forward edges only,
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# while updating the environment state.
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dom = analyses.DominatorTree(func)
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state = {}
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def traverse(block):
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# Have we computed the state of this block already?
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if block in state:
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return state[block]
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# No! Which forward edges lead to this block?
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# If we dominate a predecessor, it's a back edge instead.
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forward_edge_preds = [pred for pred in block.predecessors()
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if block not in dom.dominated_by[pred]]
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# Figure out what the state is before the leader
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# instruction of this block.
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pred_states = [traverse(pred) for pred in forward_edge_preds]
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block_state = {}
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if len(pred_states) > 1:
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for env in initial_state:
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# The variable has to be initialized in all predecessors
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# in order to be initialized in this block.
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def merge_state(a, b):
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return {var: a[var] and b[var] for var in a}
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block_state[env] = reduce(lambda a, b: merge_state(a[env], b[env]),
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pred_states)
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elif len(pred_states) == 1:
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# The state is the same as at the terminator of predecessor.
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# We'll mutate it, so copy.
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pred_state = pred_states[0]
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for env in initial_state:
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env_state = pred_state[env]
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block_state[env] = {var: env_state[var] for var in env_state}
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else:
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# This is the entry block.
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for env in initial_state:
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env_state = initial_state[env]
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block_state[env] = {var: env_state[var] for var in env_state}
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# Update the state based on block contents, while validating
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# that no access to uninitialized variables will be done.
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for insn in block.instructions:
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if isinstance(insn, (ir.SetLocal, ir.GetLocal)) and \
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"." not in insn.var_name:
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env, var_name = insn.environment(), insn.var_name
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assert env in block_state
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assert var_name in block_state[env]
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if isinstance(insn, ir.SetLocal):
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# We've just initialized it.
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block_state[env][var_name] = True
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else: # isinstance(insn, ir.GetLocal)
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if not block_state[env][var_name]:
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# Oops, accessing it uninitialized. Find out where
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# the uninitialized state comes from.
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pred_at_fault = None
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for pred, pred_state in zip(forward_edge_preds, pred_states):
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if not pred_state[env][var_name]:
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pred_at_fault = pred
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assert pred_at_fault is not None
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# Report the error.
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self._uninitialized_access(insn, pred_at_fault)
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# Save the state.
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state[block] = block_state
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return block_state
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for block in func.basic_blocks:
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traverse(block)
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def _uninitialized_access(self, insn, pred_at_fault):
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uninitialized_loc = None
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for pred_insn in reversed(pred_at_fault.instructions):
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if pred_insn.loc is not None:
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uninitialized_loc = pred_insn.loc.begin()
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break
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assert uninitialized_loc is not None
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note = diagnostic.Diagnostic("note",
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"variable is not initialized when control flows from this point", {},
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uninitialized_loc)
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diag = diagnostic.Diagnostic("error",
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"variable '{name}' is not always initialized at this point",
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{"name": insn.var_name},
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insn.loc, notes=[note])
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self.engine.process(diag)
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@ -0,0 +1,20 @@
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# RUN: %python -m artiq.compiler.testbench.module +diag %s >%t
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# RUN: OutputCheck %s --file-to-check=%t
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x = 1
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if x > 10:
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y = 1
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# CHECK-L: ${LINE:+1}: error: variable 'y' is not always initialized
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x + y
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for z in [1]:
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pass
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# CHECK-L: ${LINE:+1}: error: variable 'z' is not always initialized
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-z
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if True:
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pass
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else:
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t = 1
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# CHECK-L: ${LINE:+1}: error: variable 't' is not always initialized
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-t
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@ -0,0 +1,7 @@
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# RUN: %python -m artiq.compiler.testbench.module %s >%t
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if False:
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x = 1
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else:
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x = 2
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-x
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