mirror of https://github.com/python/cpython
228 lines
5.5 KiB
Python
228 lines
5.5 KiB
Python
from pathlib import Path
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from typing import TextIO
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from analyzer import (
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Instruction,
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Uop,
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analyze_files,
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Properties,
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Skip,
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)
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from cwriter import CWriter
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from typing import Callable, Mapping, TextIO, Iterator
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from lexer import Token
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from stack import StackOffset, Stack
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ROOT = Path(__file__).parent.parent.parent
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DEFAULT_INPUT = (ROOT / "Python/bytecodes.c").absolute().as_posix()
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def root_relative_path(filename: str) -> str:
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try:
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return Path(filename).absolute().relative_to(ROOT).as_posix()
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except ValueError:
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# Not relative to root, just return original path.
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return filename
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def write_header(
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generator: str, sources: list[str], outfile: TextIO, comment: str = "//"
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) -> None:
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outfile.write(
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f"""{comment} This file is generated by {root_relative_path(generator)}
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{comment} from:
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{comment} {", ".join(root_relative_path(src) for src in sources)}
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{comment} Do not edit!
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"""
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)
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def emit_to(out: CWriter, tkn_iter: Iterator[Token], end: str) -> None:
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parens = 0
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for tkn in tkn_iter:
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if tkn.kind == end and parens == 0:
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return
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if tkn.kind == "LPAREN":
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parens += 1
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if tkn.kind == "RPAREN":
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parens -= 1
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out.emit(tkn)
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def replace_deopt(
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out: CWriter,
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tkn: Token,
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tkn_iter: Iterator[Token],
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uop: Uop,
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unused: Stack,
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inst: Instruction | None,
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) -> None:
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out.emit_at("DEOPT_IF", tkn)
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out.emit(next(tkn_iter))
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emit_to(out, tkn_iter, "RPAREN")
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next(tkn_iter) # Semi colon
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out.emit(", ")
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assert inst is not None
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assert inst.family is not None
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out.emit(inst.family.name)
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out.emit(");\n")
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def replace_error(
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out: CWriter,
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tkn: Token,
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tkn_iter: Iterator[Token],
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uop: Uop,
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stack: Stack,
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inst: Instruction | None,
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) -> None:
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out.emit_at("if ", tkn)
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out.emit(next(tkn_iter))
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emit_to(out, tkn_iter, "COMMA")
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label = next(tkn_iter).text
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next(tkn_iter) # RPAREN
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next(tkn_iter) # Semi colon
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out.emit(") ")
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c_offset = stack.peek_offset.to_c()
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try:
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offset = -int(c_offset)
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close = ";\n"
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except ValueError:
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offset = None
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out.emit(f"{{ stack_pointer += {c_offset}; ")
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close = "; }\n"
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out.emit("goto ")
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if offset:
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out.emit(f"pop_{offset}_")
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out.emit(label)
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out.emit(close)
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def replace_decrefs(
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out: CWriter,
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tkn: Token,
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tkn_iter: Iterator[Token],
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uop: Uop,
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stack: Stack,
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inst: Instruction | None,
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) -> None:
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next(tkn_iter)
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next(tkn_iter)
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next(tkn_iter)
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out.emit_at("", tkn)
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for var in uop.stack.inputs:
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if var.name == "unused" or var.name == "null" or var.peek:
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continue
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if var.size != "1":
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out.emit(f"for (int _i = {var.size}; --_i >= 0;) {{\n")
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out.emit(f"Py_DECREF({var.name}[_i]);\n")
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out.emit("}\n")
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elif var.condition:
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if var.condition == "1":
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out.emit(f"Py_DECREF({var.name});\n")
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elif var.condition != "0":
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out.emit(f"Py_XDECREF({var.name});\n")
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else:
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out.emit(f"Py_DECREF({var.name});\n")
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def replace_sync_sp(
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out: CWriter,
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tkn: Token,
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tkn_iter: Iterator[Token],
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uop: Uop,
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stack: Stack,
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inst: Instruction | None,
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) -> None:
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next(tkn_iter)
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next(tkn_iter)
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next(tkn_iter)
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stack.flush(out)
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def replace_check_eval_breaker(
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out: CWriter,
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tkn: Token,
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tkn_iter: Iterator[Token],
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uop: Uop,
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stack: Stack,
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inst: Instruction | None,
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) -> None:
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next(tkn_iter)
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next(tkn_iter)
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next(tkn_iter)
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if not uop.properties.ends_with_eval_breaker:
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out.emit_at("CHECK_EVAL_BREAKER();", tkn)
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REPLACEMENT_FUNCTIONS = {
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"EXIT_IF": replace_deopt,
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"DEOPT_IF": replace_deopt,
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"ERROR_IF": replace_error,
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"DECREF_INPUTS": replace_decrefs,
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"CHECK_EVAL_BREAKER": replace_check_eval_breaker,
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"SYNC_SP": replace_sync_sp,
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}
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ReplacementFunctionType = Callable[
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[CWriter, Token, Iterator[Token], Uop, Stack, Instruction | None], None
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]
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def emit_tokens(
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out: CWriter,
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uop: Uop,
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stack: Stack,
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inst: Instruction | None,
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replacement_functions: Mapping[
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str, ReplacementFunctionType
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] = REPLACEMENT_FUNCTIONS,
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) -> None:
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tkns = uop.body[1:-1]
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if not tkns:
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return
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tkn_iter = iter(tkns)
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out.start_line()
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for tkn in tkn_iter:
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if tkn.kind == "IDENTIFIER" and tkn.text in replacement_functions:
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replacement_functions[tkn.text](out, tkn, tkn_iter, uop, stack, inst)
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else:
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out.emit(tkn)
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def cflags(p: Properties) -> str:
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flags: list[str] = []
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if p.oparg:
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flags.append("HAS_ARG_FLAG")
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if p.uses_co_consts:
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flags.append("HAS_CONST_FLAG")
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if p.uses_co_names:
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flags.append("HAS_NAME_FLAG")
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if p.jumps:
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flags.append("HAS_JUMP_FLAG")
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if p.has_free:
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flags.append("HAS_FREE_FLAG")
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if p.uses_locals:
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flags.append("HAS_LOCAL_FLAG")
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if p.eval_breaker:
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flags.append("HAS_EVAL_BREAK_FLAG")
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if p.deopts:
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flags.append("HAS_DEOPT_FLAG")
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if p.side_exit:
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flags.append("HAS_EXIT_FLAG")
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if not p.infallible:
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flags.append("HAS_ERROR_FLAG")
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if p.escapes:
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flags.append("HAS_ESCAPES_FLAG")
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if p.pure:
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flags.append("HAS_PURE_FLAG")
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if p.passthrough:
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flags.append("HAS_PASSTHROUGH_FLAG")
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if p.oparg_and_1:
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flags.append("HAS_OPARG_AND_1_FLAG")
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if flags:
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return " | ".join(flags)
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else:
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return "0"
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