abdb16aea2
Extract a valid trace line and resolve the address to a function name Signed-off-by: yinshengkai <yinshengkai@xiaomi.com>
205 lines
6.1 KiB
Python
Executable File
205 lines
6.1 KiB
Python
Executable File
#!/usr/bin/env python3
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############################################################################
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# tools/parsetrace.py
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#
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# Licensed to the Apache Software Foundation (ASF) under one or more
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# contributor license agreements. See the NOTICE file distributed with
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# this work for additional information regarding copyright ownership. The
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# ASF licenses this file to you under the Apache License, Version 2.0 (the
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# "License"); you may not use this file except in compliance with the
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# License. You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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# License for the specific language governing permissions and limitations
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# under the License.
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#
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############################################################################
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import argparse
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import bisect
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import os
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import re
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from typing import Union
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try:
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import cxxfilt
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import parse
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from elftools.elf.elffile import ELFFile
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from elftools.elf.sections import SymbolTableSection
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from pydantic import BaseModel
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except ModuleNotFoundError:
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print("Please execute the following command to install dependencies:")
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print("pip install pyelftools cxxfilt pydantic parse")
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class SymbolTables(object):
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def __init__(self, file):
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elffile = open(file, "rb")
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self.elffile = ELFFile(elffile)
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self.symbol_dict = dict()
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self.addr_list = list()
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def __symbol_filter(self, symbol):
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if symbol["st_info"]["type"] != "STT_FUNC":
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return None
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if symbol["st_info"]["bind"] == "STB_WEAK":
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return None
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if symbol["st_shndx"] == "SHN_UNDEF":
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return None
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return symbol
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def __get_symtable(self):
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symbol_tables = [
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s
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for _, s in enumerate(self.elffile.iter_sections())
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if isinstance(s, SymbolTableSection)
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and s.name == ".symtab"
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and s["sh_entsize"]
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]
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if not symbol_tables:
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return None
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return symbol_tables[0]
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def parse_symbol(self):
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if self.elffile is None:
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return
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symtable = self.__get_symtable()
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for nsym, symbol in enumerate(symtable.iter_symbols()):
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if self.__symbol_filter(symbol) is not None:
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symbol_name = cxxfilt.demangle(symbol.name)
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func_name = re.sub(r"\(.*$", "", symbol_name)
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if func_name[0] == "_" or func_name.find(".") != -1:
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continue
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self.symbol_dict[symbol["st_value"] & ~0x01] = func_name
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self.addr_list = sorted(self.symbol_dict)
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def addr2symbol(self, addr: int):
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index = bisect.bisect(self.addr_list, addr)
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if index != -1:
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return self.symbol_dict[self.addr_list[index - 1]]
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return "<%#x>: unknow function" % addr
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class OtherModel(BaseModel):
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payload: str
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def dump(self):
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return self.payload
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def parse(self, string):
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pattern = re.compile(
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r"[sched_switch|sched_wakeup_new|"
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r"sched_waking|irq_handler_entry|irq_handler_exit]:.*"
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)
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ret = pattern.match(string)
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if ret is not None:
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return OtherModel(string)
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class AtraceModel(BaseModel):
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sign: str
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pid: int
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func: str
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def parse(self, string):
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pattern = parse.compile("tracing_mark_write: {sign:>.1}|{pid:d}|{func}")
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ret = pattern.parse(string)
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if ret is not None:
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return AtraceModel(**ret.named)
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def dump(self):
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return "tracing_mark_write: %c|%d|%s" % (self.sign, self.pid, self.func)
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class TraceModel(BaseModel):
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name: str
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tid: int
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cpu: int
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time: float
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payload: Union[AtraceModel, OtherModel]
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def dump_one_trace(self):
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header = "%16s-%-5d [%03d] %12.6f: %s" % (
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self.name,
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self.tid,
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self.cpu,
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self.time,
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self.payload.dump(),
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)
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return header
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class Trace(object):
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def __payloadParse(self, string):
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trace = AtraceModel.parse(AtraceModel, string)
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if trace is not None:
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return trace
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trace = OtherModel.parse(OtherModel, string)
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if trace is not None:
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return trace
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def __init__(self, file):
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with open(file, "r") as tracefile:
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self.lines = tracefile.readlines()
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self.alltrace = list()
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self.parse()
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def parse(self):
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header_pattern = parse.compile(
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"{name}-{tid:d}{:s}[{cpu:d}]{:s}{time:f}: {payload:payload}",
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dict(payload=self.__payloadParse),
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)
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for line in self.lines:
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ret = header_pattern.parse(line.strip())
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if ret and ret.named["payload"]:
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self.alltrace.append(TraceModel(**ret.named))
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def dump_trace(self):
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formatted = ["# tracer: nop", "#"]
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for trace in self.alltrace:
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formatted.append(trace.dump_one_trace())
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return formatted
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if __name__ == "__main__":
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parser = argparse.ArgumentParser()
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parser.add_argument("-t", "--trace", help="original trace file", required=True)
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parser.add_argument("-e", "--elf", help="elf file")
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parser.add_argument(
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"-o",
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"--out",
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help="filtered trace file, default output trace.systrace",
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default="trace.systrace",
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)
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args = parser.parse_args()
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trace = Trace(args.trace)
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if args.elf:
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symbol = SymbolTables(args.elf)
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symbol.parse_symbol()
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for onetrace in trace.alltrace:
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if isinstance(onetrace.payload, AtraceModel) and re.fullmatch(
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r"^0x[0-9a-fA-F]+$", onetrace.payload.func
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):
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onetrace.payload.func = symbol.addr2symbol(
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int(onetrace.payload.func, 16)
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)
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lines = trace.dump_trace()
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with open(args.out, "w") as out:
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out.writelines("\n".join(lines))
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print(os.path.abspath(args.out))
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