mirror of
https://github.com/varun-r-mallya/Python-BPF.git
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253 lines
7.7 KiB
Python
253 lines
7.7 KiB
Python
import ast
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from llvmlite import ir
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from logging import Logger
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import logging
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from typing import Dict
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from .type_deducer import ctypes_to_ir, is_ctypes
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logger: Logger = logging.getLogger(__name__)
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def _handle_name_expr(expr: ast.Name, local_sym_tab: Dict, builder: ir.IRBuilder):
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"""Handle ast.Name expressions."""
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if expr.id in local_sym_tab:
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var = local_sym_tab[expr.id].var
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val = builder.load(var)
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return val, local_sym_tab[expr.id].ir_type
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else:
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logger.info(f"Undefined variable {expr.id}")
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return None
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def _handle_constant_expr(expr: ast.Constant):
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"""Handle ast.Constant expressions."""
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if isinstance(expr.value, int):
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return ir.Constant(ir.IntType(64), expr.value), ir.IntType(64)
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elif isinstance(expr.value, bool):
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return ir.Constant(ir.IntType(1), int(expr.value)), ir.IntType(1)
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else:
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logger.info("Unsupported constant type")
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return None
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def _handle_attribute_expr(
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expr: ast.Attribute,
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local_sym_tab: Dict,
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structs_sym_tab: Dict,
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builder: ir.IRBuilder,
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):
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"""Handle ast.Attribute expressions for struct field access."""
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if isinstance(expr.value, ast.Name):
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var_name = expr.value.id
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attr_name = expr.attr
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if var_name in local_sym_tab:
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var_ptr, var_type, var_metadata = local_sym_tab[var_name]
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logger.info(f"Loading attribute {attr_name} from variable {var_name}")
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logger.info(f"Variable type: {var_type}, Variable ptr: {var_ptr}")
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metadata = structs_sym_tab[var_metadata]
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if attr_name in metadata.fields:
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gep = metadata.gep(builder, var_ptr, attr_name)
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val = builder.load(gep)
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field_type = metadata.field_type(attr_name)
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return val, field_type
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return None
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def _handle_deref_call(expr: ast.Call, local_sym_tab: Dict, builder: ir.IRBuilder):
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"""Handle deref function calls."""
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logger.info(f"Handling deref {ast.dump(expr)}")
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if len(expr.args) != 1:
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logger.info("deref takes exactly one argument")
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return None
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arg = expr.args[0]
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if (
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isinstance(arg, ast.Call)
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and isinstance(arg.func, ast.Name)
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and arg.func.id == "deref"
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):
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logger.info("Multiple deref not supported")
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return None
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if isinstance(arg, ast.Name):
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if arg.id in local_sym_tab:
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arg_ptr = local_sym_tab[arg.id].var
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else:
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logger.info(f"Undefined variable {arg.id}")
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return None
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else:
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logger.info("Unsupported argument type for deref")
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return None
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if arg_ptr is None:
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logger.info("Failed to evaluate deref argument")
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return None
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# Load the value from pointer
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val = builder.load(arg_ptr)
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return val, local_sym_tab[arg.id].ir_type
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def _handle_ctypes_call(
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func,
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module,
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builder,
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expr,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab=None,
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):
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"""Handle ctypes type constructor calls."""
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if len(expr.args) != 1:
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logger.info("ctypes constructor takes exactly one argument")
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return None
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arg = expr.args[0]
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val = eval_expr(
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func,
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module,
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builder,
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arg,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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if val is None:
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logger.info("Failed to evaluate argument to ctypes constructor")
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return None
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call_type = expr.func.id
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expected_type = ctypes_to_ir(call_type)
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if val[1] != expected_type:
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# NOTE: We are only considering casting to and from int types for now
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if isinstance(val[1], ir.IntType) and isinstance(expected_type, ir.IntType):
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if val[1].width < expected_type.width:
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val = (builder.sext(val[0], expected_type), expected_type)
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else:
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val = (builder.trunc(val[0], expected_type), expected_type)
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else:
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raise ValueError(f"Type mismatch: expected {expected_type}, got {val[1]}")
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return val
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def _handle_compare(
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func, module, builder, expr, local_sym_tab, map_sym_tab, structs_sym_tab=None
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):
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pass
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def eval_expr(
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func,
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module,
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builder,
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expr,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab=None,
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):
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logger.info(f"Evaluating expression: {ast.dump(expr)}")
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if isinstance(expr, ast.Name):
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return _handle_name_expr(expr, local_sym_tab, builder)
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elif isinstance(expr, ast.Constant):
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return _handle_constant_expr(expr)
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elif isinstance(expr, ast.Call):
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if isinstance(expr.func, ast.Name) and expr.func.id == "deref":
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return _handle_deref_call(expr, local_sym_tab, builder)
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if isinstance(expr.func, ast.Name) and is_ctypes(expr.func.id):
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return _handle_ctypes_call(
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func,
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module,
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builder,
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expr,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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# delayed import to avoid circular dependency
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from pythonbpf.helper import HelperHandlerRegistry, handle_helper_call
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if isinstance(expr.func, ast.Name) and HelperHandlerRegistry.has_handler(
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expr.func.id
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):
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return handle_helper_call(
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expr,
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module,
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builder,
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func,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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elif isinstance(expr.func, ast.Attribute):
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logger.info(f"Handling method call: {ast.dump(expr.func)}")
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if isinstance(expr.func.value, ast.Call) and isinstance(
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expr.func.value.func, ast.Name
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):
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method_name = expr.func.attr
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if HelperHandlerRegistry.has_handler(method_name):
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return handle_helper_call(
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expr,
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module,
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builder,
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func,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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elif isinstance(expr.func.value, ast.Name):
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obj_name = expr.func.value.id
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method_name = expr.func.attr
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if obj_name in map_sym_tab:
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if HelperHandlerRegistry.has_handler(method_name):
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return handle_helper_call(
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expr,
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module,
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builder,
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func,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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elif isinstance(expr, ast.Attribute):
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return _handle_attribute_expr(expr, local_sym_tab, structs_sym_tab, builder)
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elif isinstance(expr, ast.BinOp):
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from pythonbpf.binary_ops import handle_binary_op
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return handle_binary_op(expr, builder, None, local_sym_tab)
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elif isinstance(expr, ast.Compare):
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return _handle_compare(
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func, module, builder, expr, local_sym_tab, map_sym_tab, structs_sym_tab
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)
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logger.info("Unsupported expression evaluation")
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return None
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def handle_expr(
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func,
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module,
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builder,
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expr,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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):
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"""Handle expression statements in the function body."""
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logger.info(f"Handling expression: {ast.dump(expr)}")
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call = expr.value
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if isinstance(call, ast.Call):
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eval_expr(
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func,
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module,
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builder,
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call,
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local_sym_tab,
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map_sym_tab,
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structs_sym_tab,
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)
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else:
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logger.info("Unsupported expression type")
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