#!/usr/bin/env python3 # SPDX-License-Identifier: GPL-2.0 """ Monitor the system for dropped packets and produce a report of drop locations and counts. Ported from tools/perf/scripts/python/net_dropmonitor.py """ from __future__ import annotations import argparse from collections import defaultdict import os import sys from typing import Tuple import perf class DropMonitor: """Monitors dropped packets and aggregates counts by location.""" def __init__(self, kallsyms_path: str | None = None) -> None: self.drop_log: dict[int, int] = defaultdict(int) self.kallsyms: list[Tuple[int, str]] = [] self.kallsyms_parsed = False self.resolved_syms: dict[int, Tuple[str, int]] = {} self.callchain_syms: dict[int, str] = {} self.kallsyms_path = ( kallsyms_path or os.environ.get("PERF_SYMBOL_KALLSYMS") or "/proc/kallsyms" ) def _parse_kallsyms(self) -> None: """Parse the kallsyms file and map kernel addresses to function symbols.""" self.kallsyms.clear() self.kallsyms_parsed = True try: with open(self.kallsyms_path, "r", encoding="utf-8") as f: for line in f: parts = line.split() if len(parts) >= 3 and parts[1] in ('t', 'T', 'w', 'W'): addr = int(parts[0], 16) if addr > 0: self.kallsyms.append((addr, parts[2])) self.kallsyms.sort(key=lambda x: x[0]) except (FileNotFoundError, PermissionError): print(f"Failed to read {self.kallsyms_path}. Symbols will not be resolved.") def _get_sym(self, loc: int) -> Tuple[str, int]: """Resolve a memory location using session symbols or the kallsyms map.""" # Priority order: # 1. Exact symbols with offsets resolved directly from the perf.data session # (resolved_syms). # 2. Symbols captured from the sample's callchain in the trace file # (callchain_syms) before falling back to self.kallsyms, so offline # trace symbols are not overwritten by the live host's /proc/kallsyms. # 3. Binary search in self.kallsyms (from --kallsyms or /proc/kallsyms). if loc in self.resolved_syms: return self.resolved_syms[loc] if loc in self.callchain_syms: res = (self.callchain_syms[loc], 0) self.resolved_syms[loc] = res return res if not self.kallsyms: return f"{loc:#x}", 0 start = 0 end = len(self.kallsyms) - 1 while start < end: mid = (start + end) // 2 if self.kallsyms[mid][0] <= loc < self.kallsyms[mid+1][0]: start = mid break if loc < self.kallsyms[mid][0]: end = mid - 1 else: start = mid + 1 sym_addr, sym_name = self.kallsyms[start] if loc >= sym_addr: res = (sym_name, loc - sym_addr) self.resolved_syms[loc] = res return res return f"{loc:#x}", 0 def print_drop_table(self) -> None: """Print aggregated results.""" if not self.drop_log: print(f"{'LOCATION':>25} {'OFFSET':>25} {'COUNT':>25}") return if (not self.kallsyms_parsed and any(loc not in self.resolved_syms and loc not in self.callchain_syms for loc in self.drop_log)): print("Gathering kallsyms data") self._parse_kallsyms() print(f"{'LOCATION':>25} {'OFFSET':>25} {'COUNT':>25}") sorted_keys = sorted(self.drop_log.keys()) for sloc in sorted_keys: sym, off = self._get_sym(sloc) print(f"{sym:>25} {off:>25d} {self.drop_log[sloc]:>25d}") def process_event(self, sample: perf.sample_event) -> None: """Process a single sample event.""" if "skb:kfree_skb" not in str(sample.evsel): return location = getattr(sample, "location", None) if location is not None: self.drop_log[location] += 1 if location not in self.resolved_syms: sym = getattr(sample, "symbol", None) if getattr(sample, "sample_ip", 0) == location and sym and sym != "[unknown]": self.resolved_syms[location] = ( sym, getattr(sample, "sym_offset", 0) or 0, ) self.callchain_syms.pop(location, None) else: for entry in getattr(sample, "callchain", []) or []: if isinstance(entry, dict): entry_ip = entry.get("ip") sym_info = entry.get("sym") sym_name = sym_info.get("name") if isinstance(sym_info, dict) else None sym_start = sym_info.get("start") if isinstance(sym_info, dict) else None sym_off = (max(0, location - sym_start) if sym_start is not None else None) else: entry_ip = getattr(entry, "ip", None) entry_sym = getattr(entry, "sym", None) sym_name = ( getattr(entry_sym, "name", None) or getattr(entry, "symbol", None) ) sym_off = getattr(entry, "sym_offset", None) if sym_off is None: sym_start = getattr(entry_sym, "start", None) if sym_start is not None: sym_off = max(0, location - sym_start) if entry_ip == location and sym_name and sym_name != "[unknown]": if sym_off is not None: self.resolved_syms[location] = (sym_name, sym_off) self.callchain_syms.pop(location, None) else: self.callchain_syms[location] = sym_name break if __name__ == "__main__": ap = argparse.ArgumentParser( description="Monitor the system for dropped packets and produce a " "report of drop locations and counts.") ap.add_argument("-i", "--input", default="perf.data", help="Input file name") ap.add_argument("-k", "--kallsyms", default=None, help="Path to kallsyms file for offline symbol resolution") args = ap.parse_args() monitor = DropMonitor(kallsyms_path=args.kallsyms) session = None try: session = perf.session(perf.data(args.input), sample=monitor.process_event, kallsyms=args.kallsyms) session.process_events() except KeyboardInterrupt: print("\nStopping trace...") except (OSError, ValueError, KeyError, RuntimeError, TypeError, AttributeError) as e: print(f"Error processing events: {e}") sys.exit(1) finally: session = None monitor.print_drop_table()