wish python had lexical scoping
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parent
3b9c12b512
commit
0a5738e8cd
5 changed files with 40 additions and 36 deletions
1
Justfile
1
Justfile
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@ -3,6 +3,7 @@ watch:
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fmt:
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pipenv run black .
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dos2unix *
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run:
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mypy *.py
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73
aggen.py
73
aggen.py
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@ -12,6 +12,21 @@ global i
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i = 0
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def gensym(prefix: str = "", suffix: str = "") -> str:
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global i
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presan = re.sub("[^0-9a-zA-Z]+", "_", prefix)
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sufsan = re.sub("[^0-9a-zA-Z]+", "_", suffix)
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i += 1
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return f"{presan}{i}{sufsan}"
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class NodeDesc:
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def __init__(self, node: Node):
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self.node = node
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self.name = node.name
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self.nonterminal = gensym(node.name.lower())
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class GenResult:
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def __init__(self, pd: str = "", ex: str = ""):
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self.literals: Dict[str, str] = dict()
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@ -43,13 +58,6 @@ class GenResult:
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def gen(program: List[Decl]) -> GenResult:
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res = GenResult()
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def gen(prefix: str = "", suffix: str = "") -> str:
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global i
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presan = re.sub("[^0-9a-zA-Z]+", "_", prefix)
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sufsan = re.sub("[^0-9a-zA-Z]+", "_", suffix)
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i += 1
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return f"{presan}{i}{sufsan}"
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def v(name: str) -> str:
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return f"__ag_{name}"
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@ -116,42 +124,41 @@ def gen(program: List[Decl]) -> GenResult:
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return dict()
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raise Exception(f"unhandled {expr.__class__}")
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node_map = dict(
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map(lambda n: (n.name, n), filter(lambda c: isinstance(c, Node), program))
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)
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node_name_map = dict(
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map(lambda n: (n[0], gen(n[1].name.lower())), node_map.items())
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node_map: Dict[str, NodeDesc] = dict(
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map(
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lambda n: (n.name, NodeDesc(cast(Node, n))),
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filter(lambda c: isinstance(c, Node), program),
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)
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)
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for node in node_map.values():
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node = cast(Node, node)
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node_name_lower = node.name.lower()
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node_name = node_name_map[node.name]
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res.parse_rules[f"?{node_name_lower}"].append(node_name)
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res.starts.add(node_name_lower)
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for node_desc in node_map.values():
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assert isinstance(node_desc, NodeDesc)
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res.starts.add(node_desc.name.lower())
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res.parse_rules[f"?{node_desc.name.lower()}"].append(node_desc.nonterminal)
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class_decl = textwrap.dedent(
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f"""
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class {v(node_name)}: pass
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class {node_desc.nonterminal}: pass
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"""
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)
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res.extra += class_decl
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print(node.name, node.ifaces)
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print(node_desc.name, node_desc.node.ifaces)
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for variant in node.variants:
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v_class_name = gen(f"{node_name}_var")
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for variant in node_desc.node.variants:
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v_class_name = gensym(f"{node_desc.nonterminal}_var")
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class_decl = textwrap.dedent(
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f"""
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class {v(v_class_name)}({v(node_name)}):
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class {v_class_name}({node_desc.nonterminal}):
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''' '''
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pass
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"""
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)
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res.extra += class_decl
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prod_name = gen(node_name + "_")
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res.parse_rules[node_name].append(prod_name)
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prod_name = gensym(node_desc.nonterminal + "_")
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res.parse_rules[node_desc.nonterminal].append(prod_name)
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print("PRODUCTION", prod_name, variant.prod)
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# resolving a production just means checking to make sure it's a
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@ -160,18 +167,18 @@ def gen(program: List[Decl]) -> GenResult:
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print(f"resolve_production({sym})")
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if isinstance(sym, SymRename):
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if isinstance(sym.ty, NodeRefByName):
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if sym.ty.name in node_name_map:
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return node_name_map[sym.ty.name]
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if sym.ty.name in node_map:
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return node_map[sym.ty.name].nonterminal
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else:
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raise Exception(
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f"unresolved name {sym.ty.name} in production"
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)
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elif isinstance(sym.ty, NodeRegex):
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sym_name = gen("sym")
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sym_name = gensym("sym")
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res.literals[sym_name] = f"/{sym.ty.pat.pattern}/"
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return sym_name
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elif isinstance(sym, SymLit):
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sym_name = gen("lit")
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sym_name = gensym("lit")
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# hack to make repr have double quotes
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res.literals[sym_name] = json.dumps(sym.lit)
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return sym_name
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@ -195,8 +202,8 @@ def gen(program: List[Decl]) -> GenResult:
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# trying to compute, and generate a thunk corresponding to
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# that value.
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for eq in variant.equations:
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eq_name = gen(f"eq_{node.name}")
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thunk_name = gen(f"thunk_{node.name}")
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eq_name = gensym(f"eq_{node_desc.name}")
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thunk_name = gensym(f"thunk_{node_desc.name}")
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print("RHS", eq.rhs, eq.rhs.id)
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collect_required_thunks(copy.deepcopy(env), eq.rhs)
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@ -213,8 +220,4 @@ def gen(program: List[Decl]) -> GenResult:
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print(f"```py\n{func_impl}\n```")
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res.extra += func_impl
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# this is a "type alias" that connects it to one of the generated
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# names above
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res.extra += f"{node.name} = {v(node_name)}"
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return res
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@ -9,7 +9,7 @@ from aggen import *
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p = Lark(open("grammar.lark").read(), start="program", parser="lalr")
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if __name__ == "__main__":
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with open("arith.ag") as f:
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with open("test/arith.ag") as f:
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data = f.read()
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cst = p.parse(data)
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