forked from M-Labs/artiq
Add basic IR generator.
This commit is contained in:
parent
f417ef31a4
commit
bdcb24108b
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@ -8,7 +8,7 @@ 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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if all([str.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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@ -36,6 +36,24 @@ class 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 Constant(Value):
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"""
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A constant value.
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:ivar value: (None, True or False) value
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"""
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def __init__(self, value, typ):
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super().__init__(typ)
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self.value = value
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def as_operand(self):
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return str(self)
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def __str__(self):
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return "{} {}".format(types.TypePrinter().name(self.type),
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repr(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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@ -150,10 +168,10 @@ class Instruction(User):
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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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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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return "{}{}".format(prefix, self.opcode())
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class Phi(Instruction):
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"""
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@ -201,7 +219,7 @@ class Phi(Instruction):
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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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return "{}{} [{}]".format(prefix, self.opcode(), ", ".join(operand_list))
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class Terminator(Instruction):
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"""
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@ -241,6 +259,7 @@ class BasicBlock(NamedValue):
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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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return insn
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def index(self, insn):
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return self.instructions.index(insn)
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@ -248,17 +267,22 @@ class BasicBlock(NamedValue):
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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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return 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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return 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 is_terminated(self):
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return any(self.instructions) and isinstance(self.instructions[-1], Terminator)
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def terminator(self):
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assert isinstance(self.instructions[-1], Terminator)
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assert self.is_terminated()
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return self.instructions[-1]
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def successors(self):
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@ -271,7 +295,7 @@ class BasicBlock(NamedValue):
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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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lines.append(" " + str(insn))
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return "\n".join(lines)
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class Argument(NamedValue):
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@ -290,7 +314,7 @@ class Function(Value):
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def __init__(self, typ, name, arguments):
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self.type, self.name = typ, name
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self.arguments = []
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self.basic_blocks = set()
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self.basic_blocks = []
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self.names = set()
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self.set_arguments(arguments)
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@ -318,14 +342,14 @@ class Function(Value):
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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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self.basic_blocks.append(basic_block)
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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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return set(block for block in self.basic_blocks if successor in block.successors())
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return [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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@ -344,3 +368,65 @@ class Function(Value):
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return "\n".join(lines)
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# Python-specific SSA IR classes
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class Branch(Terminator):
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"""
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An unconditional branch instruction.
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"""
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"""
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:param target: (:class:`BasicBlock`) branch target
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"""
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def __init__(self, target, name=""):
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super().__init__([target], builtins.TNone(), name)
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def opcode(self):
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return "branch"
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class BranchIf(Terminator):
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"""
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A conditional branch instruction.
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"""
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"""
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:param cond: (:class:`Value`) branch condition
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:param if_true: (:class:`BasicBlock`) branch target if expression is truthful
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:param if_false: (:class:`BasicBlock`) branch target if expression is falseful
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"""
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def __init__(self, cond, if_true, if_false, name=""):
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super().__init__([cond, if_true, if_false], builtins.TNone(), name)
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def opcode(self):
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return "branch_if"
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class Return(Terminator):
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"""
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A return instruction.
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"""
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"""
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:param value: (:class:`Value`) return value
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"""
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def __init__(self, value, name=""):
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super().__init__([value], builtins.TNone(), name)
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def opcode(self):
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return "return"
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class Eval(Instruction):
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"""
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An instruction that evaluates an AST fragment.
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"""
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"""
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:param ast: (:class:`.asttyped.AST`) return value
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"""
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def __init__(self, ast, name=""):
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super().__init__([], ast.type, name)
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self.ast = ast
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def opcode(self):
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return "eval"
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def __str__(self):
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return super().__str__() + " `{}`".format(self.ast.loc.source())
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@ -11,11 +11,14 @@ 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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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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parsetree, comments = parse_buffer(source_buffer, engine=engine)
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typedtree = asttyped_rewriter.visit(parsetree)
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@ -24,9 +27,11 @@ class Module:
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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 = os.path.basename(source_buffer.name)
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self.name = module_name
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self.globals = asttyped_rewriter.globals
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self.ir = ir_generator.functions
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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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@ -0,0 +1,19 @@
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import sys, fileinput
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from pythonparser import diagnostic
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from .. import Module
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def main():
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def process_diagnostic(diag):
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print("\n".join(diag.render()))
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if diag.level in ("fatal", "error"):
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exit(1)
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engine = diagnostic.Engine()
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engine.process = process_diagnostic
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mod = Module.from_string("".join(fileinput.input()).expandtabs(), engine=engine)
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for fn in mod.ir:
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print(fn)
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if __name__ == "__main__":
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main()
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@ -1,3 +1,4 @@
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from .asttyped_rewriter import ASTTypedRewriter
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from .inferencer import Inferencer
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from .int_monomorphizer import IntMonomorphizer
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from .ir_generator import IRGenerator
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@ -0,0 +1,149 @@
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"""
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:class:`IRGenerator` transforms typed AST into ARTIQ intermediate
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representation.
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"""
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from collections import OrderedDict
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from pythonparser import algorithm, diagnostic, ast
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from .. import types, builtins, ir
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# We put some effort in keeping generated IR readable,
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# i.e. with a more or less linear correspondence to the source.
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# This is why basic blocks sometimes seem to be produced in an odd order.
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class IRGenerator(algorithm.Visitor):
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def __init__(self, module_name, engine):
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self.engine = engine
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self.functions = []
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self.name = [module_name]
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self.current_function = None
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self.current_block = None
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self.break_target, self.continue_target = None, None
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def add_block(self):
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block = ir.BasicBlock([])
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self.current_function.add(block)
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return block
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def append(self, insn):
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return self.current_block.append(insn)
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def terminate(self, insn):
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if not self.current_block.is_terminated():
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self.append(insn)
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def visit(self, obj):
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if isinstance(obj, list):
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for elt in obj:
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self.visit(elt)
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if self.current_block.is_terminated():
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break
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elif isinstance(obj, ast.AST):
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return self._visit_one(obj)
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def visit_function(self, name, typ, inner):
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try:
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old_name, self.name = self.name, self.name + [name]
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args = []
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for arg_name in typ.args:
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args.append(ir.Argument(typ.args[arg_name], arg_name))
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for arg_name in typ.optargs:
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args.append(ir.Argument(ir.TSSAOption(typ.optargs[arg_name]), arg_name))
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func = ir.Function(typ, ".".join(self.name), args)
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self.functions.append(func)
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old_func, self.current_function = self.current_function, func
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self.current_block = self.add_block()
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inner()
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finally:
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self.name = old_name
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self.current_function = old_func
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def visit_ModuleT(self, node):
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def inner():
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self.generic_visit(node)
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return_value = ir.Constant(None, builtins.TNone())
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self.terminate(ir.Return(return_value))
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typ = types.TFunction(OrderedDict(), OrderedDict(), builtins.TNone())
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self.visit_function('__modinit__', typ, inner)
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def visit_FunctionDefT(self, node):
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self.visit_function(node.name, node.signature_type.find(),
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lambda: self.generic_visit(node))
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def visit_Return(self, node):
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if node.value is None:
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return_value = ir.Constant(None, builtins.TNone())
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self.append(ir.Return(return_value))
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else:
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expr = self.append(ir.Eval(node.value))
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self.append(ir.Return(expr))
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def visit_Expr(self, node):
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self.append(ir.Eval(node.value))
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# Assign
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# AugAssign
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def visit_If(self, node):
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cond = self.append(ir.Eval(node.test))
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head = self.current_block
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if_true = self.add_block()
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self.current_block = if_true
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self.visit(node.body)
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if_false = self.add_block()
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self.current_block = if_false
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self.visit(node.orelse)
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tail = self.add_block()
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self.current_block = tail
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if not if_true.is_terminated():
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if_true.append(ir.Branch(tail))
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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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def visit_While(self, node):
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try:
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head = self.add_block()
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self.append(ir.Branch(head))
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self.current_block = head
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tail_tramp = self.add_block()
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old_break, self.break_target = self.break_target, tail_tramp
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body = self.add_block()
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old_continue, self.continue_target = self.continue_target, body
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self.current_block = body
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self.visit(node.body)
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tail = self.add_block()
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self.current_block = tail
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self.visit(node.orelse)
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cond = head.append(ir.Eval(node.test))
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head.append(ir.BranchIf(cond, body, tail))
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if not body.is_terminated():
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body.append(ir.Branch(tail))
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tail_tramp.append(ir.Branch(tail))
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finally:
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self.break_target = old_break
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self.continue_target = old_continue
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# For
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def visit_Break(self, node):
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self.append(ir.Branch(self.break_target))
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def visit_Continue(self, node):
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self.append(ir.Branch(self.continue_target))
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# Raise
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# Try
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# With
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@ -0,0 +1,7 @@
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# RUN: %python -m artiq.compiler.testbench.irgen %s >%t
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# RUN: OutputCheck %s --file-to-check=%t
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# CHECK-L: NoneType input.__modinit__() {
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# CHECK-L: 1:
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# CHECK-L: return NoneType None
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# CHECK-L: }
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@ -0,0 +1,9 @@
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# RUN: %python -m artiq.compiler.testbench.irgen %s >%t
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# RUN: OutputCheck %s --file-to-check=%t
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2 + 2
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# CHECK-L: NoneType input.__modinit__() {
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# CHECK-L: 1:
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# CHECK-L: %2 = int(width=32) eval `2 + 2`
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# CHECK-L: return NoneType None
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# CHECK-L: }
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@ -0,0 +1,21 @@
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# RUN: %python -m artiq.compiler.testbench.irgen %s >%t
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# RUN: OutputCheck %s --file-to-check=%t
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if 1:
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2
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else:
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3
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# CHECK-L: NoneType input.__modinit__() {
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# CHECK-L: 1:
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# CHECK-L: %2 = int(width=32) eval `1`
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# CHECK-L: branch_if int(width=32) %2, ssa.basic_block %3, ssa.basic_block %5
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# CHECK-L: 3:
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# CHECK-L: %4 = int(width=32) eval `2`
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# CHECK-L: branch ssa.basic_block %7
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# CHECK-L: 5:
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# CHECK-L: %6 = int(width=32) eval `3`
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# CHECK-L: branch ssa.basic_block %7
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# CHECK-L: 7:
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# CHECK-L: return NoneType None
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# CHECK-L: }
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@ -0,0 +1,25 @@
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# RUN: %python -m artiq.compiler.testbench.irgen %s >%t
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# RUN: OutputCheck %s --file-to-check=%t
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while 1:
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2
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else:
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3
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4
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# CHECK-L: NoneType input.__modinit__() {
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# CHECK-L: 1:
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# CHECK-L: branch ssa.basic_block %2
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# CHECK-L: 2:
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# CHECK-L: %9 = int(width=32) eval `1`
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# CHECK-L: branch_if int(width=32) %9, ssa.basic_block %5, ssa.basic_block %7
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# CHECK-L: 4:
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# CHECK-L: branch ssa.basic_block %7
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# CHECK-L: 5:
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# CHECK-L: %6 = int(width=32) eval `2`
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# CHECK-L: branch ssa.basic_block %7
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# CHECK-L: 7:
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# CHECK-L: %8 = int(width=32) eval `3`
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# CHECK-L: %13 = int(width=32) eval `4`
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# CHECK-L: return NoneType None
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# CHECK-L: }
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