mirror of
https://github.com/varun-r-mallya/Python-BPF.git
synced 2025-12-31 21:06:25 +00:00
Merge pull request #21 from pythonbpf/globals
Adds support for globals SO...... *I'm not merging this because it's complete, but because I don't want it to diverge from master too much. *Stuff I still need to complete: -> Structs and eval expressions in these globals. -> handling the global keyword. -> assigning back to the global and reading from inside a function. -> Basically, `global` keyword in Python is used to write only and reading can be done directly without declaring as global as a direct assign without global declaration is going to diverge from Python. -> The above logic is going to be supported by `global_sym_tab` generated using the new order of passes that we are doing. -> This needs to be fixed and done ASAP to avoid conflicts. so yes, im gonna do it soon.
This commit is contained in:
@ -4,7 +4,11 @@ from .license_pass import license_processing
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from .functions import func_proc
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from .functions import func_proc
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from .maps import maps_proc
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from .maps import maps_proc
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from .structs import structs_proc
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from .structs import structs_proc
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from .globals_pass import globals_processing
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from .globals_pass import (
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globals_list_creation,
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globals_processing,
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populate_global_symbol_table,
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)
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from .debuginfo import DW_LANG_C11, DwarfBehaviorEnum, DebugInfoGenerator
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from .debuginfo import DW_LANG_C11, DwarfBehaviorEnum, DebugInfoGenerator
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import os
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import os
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import subprocess
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import subprocess
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@ -40,12 +44,15 @@ def processor(source_code, filename, module):
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for func_node in bpf_chunks:
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for func_node in bpf_chunks:
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logger.info(f"Found BPF function/struct: {func_node.name}")
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logger.info(f"Found BPF function/struct: {func_node.name}")
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populate_global_symbol_table(tree, module)
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license_processing(tree, module)
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globals_processing(tree, module)
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structs_sym_tab = structs_proc(tree, module, bpf_chunks)
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structs_sym_tab = structs_proc(tree, module, bpf_chunks)
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map_sym_tab = maps_proc(tree, module, bpf_chunks)
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map_sym_tab = maps_proc(tree, module, bpf_chunks)
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func_proc(tree, module, bpf_chunks, map_sym_tab, structs_sym_tab)
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func_proc(tree, module, bpf_chunks, map_sym_tab, structs_sym_tab)
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license_processing(tree, module)
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globals_list_creation(tree, module)
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globals_processing(tree, module)
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def compile_to_ir(filename: str, output: str, loglevel=logging.INFO):
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def compile_to_ir(filename: str, output: str, loglevel=logging.INFO):
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@ -1,8 +1,121 @@
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from llvmlite import ir
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from llvmlite import ir
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import ast
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import ast
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from logging import Logger
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import logging
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from .type_deducer import ctypes_to_ir
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def emit_globals(module: ir.Module, names: list[str]):
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logger: Logger = logging.getLogger(__name__)
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# TODO: this is going to be a huge fuck of a headache in the future.
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global_sym_tab = []
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def populate_global_symbol_table(tree, module: ir.Module):
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for node in tree.body:
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if isinstance(node, ast.FunctionDef):
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for dec in node.decorator_list:
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if (
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isinstance(dec, ast.Call)
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and isinstance(dec.func, ast.Name)
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and dec.func.id == "section"
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and len(dec.args) == 1
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and isinstance(dec.args[0], ast.Constant)
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and isinstance(dec.args[0].value, str)
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):
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global_sym_tab.append(node)
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elif isinstance(dec, ast.Name) and dec.id == "bpfglobal":
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global_sym_tab.append(node)
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elif isinstance(dec, ast.Name) and dec.id == "map":
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global_sym_tab.append(node)
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return False
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def emit_global(module: ir.Module, node, name):
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logger.info(f"global identifier {name} processing")
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# deduce LLVM type from the annotated return
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if not isinstance(node.returns, ast.Name):
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raise ValueError(f"Unsupported return annotation {ast.dump(node.returns)}")
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ty = ctypes_to_ir(node.returns.id)
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# extract the return expression
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# TODO: turn this return extractor into a generic function I can use everywhere.
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ret_stmt = node.body[0]
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if not isinstance(ret_stmt, ast.Return) or ret_stmt.value is None:
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raise ValueError(f"Global '{name}' has no valid return")
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init_val = ret_stmt.value
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# simple constant like "return 0"
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if isinstance(init_val, ast.Constant):
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llvm_init = ir.Constant(ty, init_val.value)
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# variable reference like "return SOME_CONST"
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elif isinstance(init_val, ast.Name):
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# need symbol resolution here, stub as 0 for now
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raise ValueError(f"Name reference {init_val.id} not yet supported")
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# constructor call like "return c_int64(0)" or dataclass(...)
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elif isinstance(init_val, ast.Call):
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if len(init_val.args) >= 1 and isinstance(init_val.args[0], ast.Constant):
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llvm_init = ir.Constant(ty, init_val.args[0].value)
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else:
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logger.info("Defaulting to zero as no constant argument found")
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llvm_init = ir.Constant(ty, 0)
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else:
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raise ValueError(f"Unsupported return expr {ast.dump(init_val)}")
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gvar = ir.GlobalVariable(module, ty, name=name)
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gvar.initializer = llvm_init
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gvar.align = 8
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gvar.linkage = "dso_local"
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gvar.global_constant = False
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return gvar
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def globals_processing(tree, module):
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"""Process stuff decorated with @bpf and @bpfglobal except license and return the section name"""
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globals_sym_tab = []
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for node in tree.body:
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# Skip non-assignment and non-function nodes
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if not (isinstance(node, ast.FunctionDef)):
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continue
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# Get the name based on node type
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if isinstance(node, ast.FunctionDef):
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name = node.name
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else:
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continue
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# Check for duplicate names
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if name in globals_sym_tab:
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raise SyntaxError(f"ERROR: Global name '{name}' previously defined")
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else:
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globals_sym_tab.append(name)
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if isinstance(node, ast.FunctionDef) and node.name != "LICENSE":
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decorators = [
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dec.id for dec in node.decorator_list if isinstance(dec, ast.Name)
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]
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if "bpf" in decorators and "bpfglobal" in decorators:
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if (
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len(node.body) == 1
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and isinstance(node.body[0], ast.Return)
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and node.body[0].value is not None
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and isinstance(
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node.body[0].value, (ast.Constant, ast.Name, ast.Call)
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)
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):
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emit_global(module, node, name)
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else:
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raise SyntaxError(f"ERROR: Invalid syntax for {name} global")
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return None
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def emit_llvm_compiler_used(module: ir.Module, names: list[str]):
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"""
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"""
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Emit the @llvm.compiler.used global given a list of function/global names.
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Emit the @llvm.compiler.used global given a list of function/global names.
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"""
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"""
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@ -24,7 +137,7 @@ def emit_globals(module: ir.Module, names: list[str]):
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gv.section = "llvm.metadata"
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gv.section = "llvm.metadata"
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def globals_processing(tree, module: ir.Module):
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def globals_list_creation(tree, module: ir.Module):
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collected = ["LICENSE"]
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collected = ["LICENSE"]
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for node in tree.body:
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for node in tree.body:
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@ -40,10 +153,11 @@ def globals_processing(tree, module: ir.Module):
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):
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):
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collected.append(node.name)
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collected.append(node.name)
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elif isinstance(dec, ast.Name) and dec.id == "bpfglobal":
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# NOTE: all globals other than
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collected.append(node.name)
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# elif isinstance(dec, ast.Name) and dec.id == "bpfglobal":
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# collected.append(node.name)
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elif isinstance(dec, ast.Name) and dec.id == "map":
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elif isinstance(dec, ast.Name) and dec.id == "map":
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collected.append(node.name)
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collected.append(node.name)
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emit_globals(module, collected)
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emit_llvm_compiler_used(module, collected)
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27
tests/c-form/globals.bpf.c
Normal file
27
tests/c-form/globals.bpf.c
Normal file
@ -0,0 +1,27 @@
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// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
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#include <linux/bpf.h>
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#include <bpf/bpf_helpers.h>
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#include <bpf/bpf_tracing.h>
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#include <linux/types.h>
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struct test_struct {
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__u64 a;
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__u64 b;
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};
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struct test_struct w = {};
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volatile __u64 prev_time = 0;
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SEC("tracepoint/syscalls/sys_enter_execve")
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int trace_execve(void *ctx)
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{
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bpf_printk("previous %ul now %ul", w.b, w.a);
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__u64 ts = bpf_ktime_get_ns();
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bpf_printk("prev %ul now %ul", prev_time, ts);
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w.a = ts;
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w.b = prev_time;
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prev_time = ts;
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return 0;
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}
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char LICENSE[] SEC("license") = "GPL";
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101
tests/failing_tests/globals.py
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101
tests/failing_tests/globals.py
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@ -0,0 +1,101 @@
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import logging
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from pythonbpf import compile, bpf, section, bpfglobal, compile_to_ir
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from ctypes import c_void_p, c_int64, c_int32
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@bpf
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@bpfglobal
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def somevalue() -> c_int32:
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return c_int32(42)
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@bpf
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@bpfglobal
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def somevalue2() -> c_int64:
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return c_int64(69)
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@bpf
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@bpfglobal
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def somevalue1() -> c_int32:
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return c_int32(42)
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# --- Passing examples ---
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# Simple constant return
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@bpf
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@bpfglobal
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def g1() -> c_int64:
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return c_int64(42)
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# Constructor with one constant argument
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@bpf
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@bpfglobal
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def g2() -> c_int64:
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return c_int64(69)
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# --- Failing examples ---
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# No return annotation
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# @bpf
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# @bpfglobal
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# def g3():
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# return 42
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# Return annotation is complex
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# @bpf
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# @bpfglobal
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# def g4() -> List[int]:
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# return []
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# # Return is missing
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# @bpf
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# @bpfglobal
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# def g5() -> c_int64:
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# pass
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# # Return is a variable reference
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# #TODO: maybe fix this sometime later. It defaults to 0
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# CONST = 5
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# @bpf
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# @bpfglobal
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# def g6() -> c_int64:
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# return c_int64(CONST)
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# Constructor with multiple args
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#TODO: this is not working. should it work ?
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@bpf
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@bpfglobal
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def g7() -> c_int64:
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return c_int64(1)
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# Dataclass call
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#TODO: fails with dataclass
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# @dataclass
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# class Point:
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# x: c_int64
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# y: c_int64
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# @bpf
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# @bpfglobal
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# def g8() -> Point:
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# return Point(1, 2)
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@bpf
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@section("tracepoint/syscalls/sys_enter_execve")
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def sometag(ctx: c_void_p) -> c_int64:
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print("test")
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global somevalue
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somevalue = 2
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print(f"{somevalue}")
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return c_int64(1)
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@bpf
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@bpfglobal
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def LICENSE() -> str:
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return "GPL"
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compile_to_ir("globals.py", "globals.ll", loglevel=logging.INFO)
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compile()
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21
tests/failing_tests/undeclared_values.py
Normal file
21
tests/failing_tests/undeclared_values.py
Normal file
@ -0,0 +1,21 @@
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import logging
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from pythonbpf import compile, bpf, section, bpfglobal, compile_to_ir
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from ctypes import c_void_p, c_int64
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# This should not pass as somevalue is not declared at all.
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@bpf
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@section("tracepoint/syscalls/sys_enter_execve")
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def sometag(ctx: c_void_p) -> c_int64:
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print("test")
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print(f"{somevalue}") # noqa: F821
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return c_int64(1)
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@bpf
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@bpfglobal
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def LICENSE() -> str:
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return "GPL"
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compile_to_ir("globals.py", "globals.ll", loglevel=logging.INFO)
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compile()
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Reference in New Issue
Block a user