forked from M-Labs/artiq
Add a basic SSA IR.
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319
artiq/compiler/ir.py
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319
artiq/compiler/ir.py
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"""
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The :mod:`ir` module contains the intermediate representation
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of the ARTIQ compiler.
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"""
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from . import types, builtins
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# Generic SSA IR classes
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def escape_name(name):
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if all([isalnum(x) or x == "." for x in name]):
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return name
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else:
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return "\"{}\"".format(name.replace("\"", "\\\""))
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class TSSABasicBlock(types.TMono):
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def __init__(self):
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super().__init__("ssa.basic_block")
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class TSSAOption(types.TMono):
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def __init__(self, inner):
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super().__init__("ssa.option", {"inner": inner})
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class Value:
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"""
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An SSA value that keeps track of its uses.
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:ivar type: (:class:`.types.Type`) type of this value
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:ivar uses: (list of :class:`Value`) values that use this value
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"""
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def __init__(self, typ=builtins.TNone()):
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self.uses, self.type = set(), typ
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def replace_all_uses_with(self, value):
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for user in self.uses:
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user.replace_uses_of(self, value)
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class NamedValue(Value):
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"""
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An SSA value that has a name.
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:ivar name: (string) name of this value
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:ivar function: (:class:`Function`) function containing this value
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"""
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def __init__(self, typ=builtins.TNone(), name=""):
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super().__init__(typ)
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self.name, self.function = name, None
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def set_name(self, new_name):
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if self.function is not None:
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self.function._remove_name(self.name)
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self.name = self.function._add_name(new_name)
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else:
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self.name = new_name
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def _set_function(self, new_function):
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if self.function != new_function:
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if self.function is not None:
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self.function._remove_name(self.name)
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self.function = new_function
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if self.function is not None:
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self.name = self.function._add_name(self.name)
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def _detach(self):
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self.function = None
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def as_operand(self):
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return "{} %{}".format(types.TypePrinter().name(self.type),
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escape_name(self.name))
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class User(NamedValue):
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"""
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An SSA value that has operands.
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:ivar operands: (list of :class:`Value`) operands of this value
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"""
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def __init__(self, typ=builtins.TNone(), name="", operands=[]):
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super().__init__(typ, name)
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self.operands = []
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self.set_operands(operands)
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def set_operands(self, new_operands):
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for operand in self.operands:
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operand.uses.remove(self)
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self.operands = new_operands
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for operand in self.operands:
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operand.uses.add(self)
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def drop_references(self):
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self.set_operands([])
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def replace_uses_of(self, value, replacement):
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assert value in operands
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for index, operand in enumerate(operands):
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if operand == value:
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operands[index] = replacement
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value.uses.remove(self)
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replacement.uses.add(self)
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class Instruction(User):
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"""
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An SSA instruction.
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"""
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def __init__(self, typ=builtins.TNone(), name="", operands=[]):
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super().__init__(typ, name, operands)
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self.basic_block = None
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def set_basic_block(self, new_basic_block):
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self.basic_block = new_basic_block
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if self.basic_block is not None:
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self._set_function(self.basic_block.function)
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else:
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self._set_function(None)
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def opcode(self):
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"""String representation of the opcode."""
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return "???"
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def _detach(self):
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self.set_basic_block(None)
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def remove_from_parent(self):
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if self.basic_block is not None:
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self.basic_block.remove(self)
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def erase(self):
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self.remove_from_parent()
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self.drop_references()
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def replace_with(self, value):
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self.replace_all_uses_with(value)
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if isinstance(value, Instruction):
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self.basic_block.replace(self, value)
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self.drop_references()
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else:
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self.erase()
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def __str__(self):
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if builtins.is_none(self.type):
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prefix = ""
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else:
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prefix = "%{} = {} ".format(escape_name(self.name),
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types.TypePrinter().name(self.type))
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if any(self.operands):
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return "{} {} {}".format(prefix, self.opcode(),
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", ".join([operand.as_operand() for operand in self.operands]))
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else:
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return "{} {}".format(prefix, self.opcode())
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class Phi(Instruction):
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"""
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An SSA instruction that joins data flow.
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"""
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def opcode(self):
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return "phi"
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def incoming(self):
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operand_iter = iter(self.operands)
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while True:
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yield next(operand_iter), next(operand_iter)
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def incoming_blocks(self):
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(block for (block, value) in self.incoming())
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def incoming_values(self):
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(value for (block, value) in self.incoming())
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def incoming_value_for_block(self, target_block):
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for (block, value) in self.incoming():
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if block == target_block:
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return value
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assert False
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def add_incoming(self, value, block):
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assert value.type == self.type
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self.operands.append(value)
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self.operands.append(block)
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def __str__(self):
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if builtins.is_none(self.type):
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prefix = ""
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else:
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prefix = "%{} = {} ".format(escape_name(self.name),
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types.TypePrinter().name(self.type))
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if any(self.operands):
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operand_list = ["%{} => %{}".format(escape_name(block.name), escape_name(value.name))
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for operand in self.operands]
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return "{} {} [{}]".format(prefix, self.opcode(), ", ".join(operand_list))
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class Terminator(Instruction):
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"""
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An SSA instruction that performs control flow.
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"""
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def successors(self):
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[operand for operand in self.operands if isinstance(operand, BasicBlock)]
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class BasicBlock(NamedValue):
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"""
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A block of instructions with no control flow inside it.
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:ivar instructions: (list of :)
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"""
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def __init__(self, name="", instructions=[]):
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super().__init__(TSSABasicBlock(), name)
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self.instructions = []
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self.set_instructions(instructions)
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def remove_from_parent(self):
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if self.function is not None:
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self.function.remove(self)
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def prepend(self, insn):
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insn.set_basic_block(self)
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self.instructions.insert(0, insn)
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def append(self, insn):
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insn.set_basic_block(self)
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self.instructions.append(insn)
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def index(self, insn):
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return self.instructions.index(insn)
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def insert(self, before, insn):
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insn.set_basic_block(self)
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self.instructions.insert(self.index(before), insn)
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def remove(self, insn):
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insn._detach()
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self.instructions.remove(insn)
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def replace(self, insn, replacement):
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self.insert(insn, replacement)
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self.remove(insn)
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def terminator(self):
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assert isinstance(self.instructions[-1], Terminator)
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return self.instructions[-1]
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def successors(self):
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return self.terminator().successors()
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def predecessors(self):
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assert self.function is not None
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self.function.predecessors_of(self)
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def __str__(self):
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lines = ["{}:".format(escape_name(self.name))]
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for insn in self.instructions:
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lines.append(str(insn))
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return "\n".join(lines)
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class Argument(NamedValue):
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"""
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A function argument.
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"""
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def __str__(self):
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return self.as_operand()
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class Function(Value):
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"""
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A function containing SSA IR.
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"""
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def __init__(self, typ, name, arguments):
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self.type, self.name, self.arguments = typ, name, []
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self.set_arguments(arguments)
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self.basic_blocks = set()
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self.names = set()
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def _remove_name(self, name):
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self.names.remove(name)
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def _add_name(self, base_name):
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name, counter = base_name, 1
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while name in self.names or name == "":
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if base_name == "":
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name = str(counter)
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else:
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name = "{}.{}".format(name, counter)
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counter += 1
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self.names.add(name)
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return name
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def set_arguments(self, new_arguments):
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for argument in self.arguments:
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argument._set_function(None)
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self.arguments = new_arguments
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for argument in self.arguments:
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argument._set_function(self)
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def add(self, basic_block):
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basic_block._set_function(self)
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self.basic_blocks.add(basic_blocks)
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def remove(self, basic_block):
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basic_block._detach()
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self.basic_block.remove(basic_block)
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def predecessors_of(self, successor):
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set(block for block in self.basic_blocks if successor in block.successors())
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def as_operand(self):
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return "{} @{}".format(types.TypePrinter().name(self.type),
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escape_name(self.name))
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# Python-specific SSA IR classes
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