mirror of
https://github.com/varun-r-mallya/Python-BPF.git
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Move bulk of allocation logic to allocation_pass
This commit is contained in:
191
pythonbpf/allocation_pass.py
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191
pythonbpf/allocation_pass.py
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import ast
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import logging
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from llvmlite import ir
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from dataclasses import dataclass
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from typing import Any
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from pythonbpf.helper import HelperHandlerRegistry
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from pythonbpf.type_deducer import ctypes_to_ir
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logger = logging.getLogger(__name__)
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@dataclass
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class LocalSymbol:
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var: ir.AllocaInstr
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ir_type: ir.Type
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metadata: Any = None
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def __iter__(self):
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yield self.var
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yield self.ir_type
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yield self.metadata
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def _is_helper_call(call_node):
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"""Check if a call node is a BPF helper function call."""
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if isinstance(call_node.func, ast.Name):
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# Exclude print from requiring temps (handles f-strings differently)
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func_name = call_node.func.id
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return HelperHandlerRegistry.has_handler(func_name) and func_name != "print"
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elif isinstance(call_node.func, ast.Attribute):
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return HelperHandlerRegistry.has_handler(call_node.func.attr)
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return False
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def handle_assign_allocation(builder, stmt, local_sym_tab, structs_sym_tab):
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"""Handle memory allocation for assignment statements."""
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# Validate assignment
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if len(stmt.targets) != 1:
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logger.warning("Multi-target assignment not supported, skipping allocation")
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return
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target = stmt.targets[0]
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# Skip non-name targets (e.g., struct field assignments)
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if isinstance(target, ast.Attribute):
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logger.debug(f"Struct field assignment to {target.attr}, no allocation needed")
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return
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if not isinstance(target, ast.Name):
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logger.warning(f"Unsupported assignment target type: {type(target).__name__}")
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return
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var_name = target.id
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rval = stmt.value
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# Skip if already allocated
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if var_name in local_sym_tab:
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logger.debug(f"Variable {var_name} already allocated, skipping")
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return
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# Determine type and allocate based on rval
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if isinstance(rval, ast.Call):
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_allocate_for_call(builder, var_name, rval, local_sym_tab, structs_sym_tab)
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elif isinstance(rval, ast.Constant):
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_allocate_for_constant(builder, var_name, rval, local_sym_tab)
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elif isinstance(rval, ast.BinOp):
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_allocate_for_binop(builder, var_name, local_sym_tab)
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else:
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logger.warning(
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f"Unsupported assignment value type for {var_name}: {type(rval).__name__}"
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)
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def _allocate_for_call(builder, var_name, rval, local_sym_tab, structs_sym_tab):
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"""Allocate memory for variable assigned from a call."""
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if isinstance(rval.func, ast.Name):
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call_type = rval.func.id
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# C type constructors
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if call_type in ("c_int32", "c_int64", "c_uint32", "c_uint64"):
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ir_type = ctypes_to_ir(call_type)
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var = builder.alloca(ir_type, name=var_name)
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var.align = ir_type.width // 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} as {call_type}")
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# Helper functions
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elif HelperHandlerRegistry.has_handler(call_type):
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ir_type = ir.IntType(64) # Assume i64 return type
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var = builder.alloca(ir_type, name=var_name)
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var.align = 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} for helper {call_type}")
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# Deref function
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elif call_type == "deref":
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ir_type = ir.IntType(64) # Assume i64 return type
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var = builder.alloca(ir_type, name=var_name)
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var.align = 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} for deref")
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# Struct constructors
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elif call_type in structs_sym_tab:
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struct_info = structs_sym_tab[call_type]
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var = builder.alloca(struct_info.ir_type, name=var_name)
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local_sym_tab[var_name] = LocalSymbol(var, struct_info.ir_type, call_type)
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logger.info(f"Pre-allocated {var_name} for struct {call_type}")
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else:
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logger.warning(f"Unknown call type for allocation: {call_type}")
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elif isinstance(rval.func, ast.Attribute):
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# Map method calls - need double allocation for ptr handling
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_allocate_for_map_method(builder, var_name, local_sym_tab)
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else:
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logger.warning(f"Unsupported call function type for {var_name}")
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def _allocate_for_map_method(builder, var_name, local_sym_tab):
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"""Allocate memory for variable assigned from map method (double alloc)."""
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# Main variable (pointer to pointer)
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ir_type = ir.PointerType(ir.IntType(64))
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var = builder.alloca(ir_type, name=var_name)
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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# Temporary variable for computed values
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tmp_ir_type = ir.IntType(64)
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var_tmp = builder.alloca(tmp_ir_type, name=f"{var_name}_tmp")
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local_sym_tab[f"{var_name}_tmp"] = LocalSymbol(var_tmp, tmp_ir_type)
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logger.info(f"Pre-allocated {var_name} and {var_name}_tmp for map method")
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def _allocate_for_constant(builder, var_name, rval, local_sym_tab):
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"""Allocate memory for variable assigned from a constant."""
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if isinstance(rval.value, bool):
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ir_type = ir.IntType(1)
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var = builder.alloca(ir_type, name=var_name)
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var.align = 1
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} as bool")
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elif isinstance(rval.value, int):
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ir_type = ir.IntType(64)
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var = builder.alloca(ir_type, name=var_name)
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var.align = 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} as i64")
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elif isinstance(rval.value, str):
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ir_type = ir.PointerType(ir.IntType(8))
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var = builder.alloca(ir_type, name=var_name)
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var.align = 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} as string")
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else:
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logger.warning(
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f"Unsupported constant type for {var_name}: {type(rval.value).__name__}"
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)
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def _allocate_for_binop(builder, var_name, local_sym_tab):
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"""Allocate memory for variable assigned from a binary operation."""
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ir_type = ir.IntType(64) # Assume i64 result
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var = builder.alloca(ir_type, name=var_name)
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var.align = 8
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local_sym_tab[var_name] = LocalSymbol(var, ir_type)
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logger.info(f"Pre-allocated {var_name} for binop result")
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def allocate_temp_pool(builder, max_temps, local_sym_tab):
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"""Allocate the temporary scratch space pool for helper arguments."""
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if max_temps == 0:
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return
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logger.info(f"Allocating temp pool of {max_temps} variables")
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for i in range(max_temps):
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temp_name = f"__helper_temp_{i}"
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temp_var = builder.alloca(ir.IntType(64), name=temp_name)
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temp_var.align = 8
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local_sym_tab[temp_name] = LocalSymbol(temp_var, ir.IntType(64))
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