#!/usr/bin/env python3 # SPDX-License-Identifier: GPL-2.0 """mem-phys-addr.py: Resolve physical address samples""" from __future__ import annotations import argparse import bisect import collections from dataclasses import dataclass import re from typing import (Dict, List, Optional) import perf @dataclass(frozen=True) class IomemEntry: """Read from a line in /proc/iomem""" begin: int end: int indent: int label: str def __lt__(self, other) -> bool: if isinstance(other, int): return self.begin < other return self.begin < other.begin def __gt__(self, other) -> bool: if isinstance(other, int): return self.begin > other return self.begin > other.begin # Physical memory layout from /proc/iomem. Key is the indent and then # a list of ranges. iomem: Dict[int, List[IomemEntry]] = collections.defaultdict(list) # Child nodes from the iomem parent. children: Dict[IomemEntry, List[IomemEntry]] = collections.defaultdict(list) # Maximum indent seen before an entry in the iomem file. _STATE: Dict[str, int] = {"max_indent": 0} # Per-event counts for each range of memory. event_counts: Dict[str, collections.Counter] = collections.defaultdict(collections.Counter) def parse_iomem(iomem_path: str): """Populate iomem from iomem file""" with open(iomem_path, 'r', encoding='ascii') as f: for line in f: line = line.rstrip('\n') if not line or line.isspace(): continue indent = 0 while indent < len(line) and line[indent] == ' ': indent += 1 _STATE["max_indent"] = max(_STATE["max_indent"], indent) m = re.split('-|:', line, maxsplit=2) if len(m) < 3: continue begin = int(m[0].strip(), 16) end = int(m[1].strip(), 16) label = m[2].strip() entry = IomemEntry(begin, end, indent, label) # Before adding entry, search for a parent node using its begin. if indent > 0: parent = find_memory_type(begin) assert parent, f"Given indent expected a parent for {label}" children[parent].append(entry) iomem[indent].append(entry) def find_memory_type(phys_addr) -> Optional[IomemEntry]: """Search iomem for the range containing phys_addr with the maximum indent""" for i in range(_STATE["max_indent"], -1, -1): if i not in iomem: continue position = bisect.bisect_right(iomem[i], phys_addr) if position == 0: continue iomem_entry = iomem[i][position-1] if iomem_entry.begin <= phys_addr <= iomem_entry.end: return iomem_entry return None def _print_entries(entries, load_mem_type_cnt, total): """Print counts from parents down to their children""" for entry in sorted(entries, key=lambda e: (-load_mem_type_cnt[e], e.begin)): count = load_mem_type_cnt[entry] if count > 0: mem_type = ' ' * entry.indent + f"{entry.begin:x}-{entry.end:x} : {entry.label}" percent = 100 * count / total print(f"{mem_type:<40} {count:>10} {percent:>10.1f}") _print_entries(children[entry], load_mem_type_cnt, total) def print_memory_type(): """Print the resolved memory types and their counts.""" if not event_counts: print("No valid physical address samples found in perf data.") return for event_name, load_mem_type_cnt in event_counts.items(): print(f"Event: {event_name}") print(f"{'Memory type':<40} {'count':>10} {'percentage':>10}") print(f"{'-' * 40:<40} {'-' * 10:>10} {'-' * 10:>10}") total = sum(load_mem_type_cnt.values()) if total == 0: continue # Add count from children into the parent. for i in range(_STATE["max_indent"], -1, -1): if i not in iomem: continue for entry in iomem[i]: for child in children[entry]: if load_mem_type_cnt[child] > 0: load_mem_type_cnt[entry] += load_mem_type_cnt[child] _print_entries(iomem[0], load_mem_type_cnt, total) print() if __name__ == "__main__": ap = argparse.ArgumentParser(description="Resolve physical address samples") ap.add_argument("-i", "--input", default="perf.data", help="Input file name") ap.add_argument("--iomem", default="/proc/iomem", help="Path to iomem file") args = ap.parse_args() def process_event(sample): """Process a single sample event.""" phys_addr = sample.sample_phys_addr or 0 if not phys_addr: return entry = find_memory_type(phys_addr) if entry: event_name = str(sample.evsel) if event_name.startswith("evsel(") and event_name.endswith(")"): event_name = event_name[6:-1] event_counts[event_name][entry] += 1 parse_iomem(args.iomem) perf.session(perf.data(args.input), sample=process_event).process_events() print_memory_type()