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https://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2026-07-22 11:37:31 -04:00
Hits in modules return empty disassembly with vmlinux as an input to objdump. Make the disassembly test more reliable by always using kcore. And update the comments to say that this is supported by the script. Signed-off-by: James Clark <james.clark@linaro.org> Cc: Amir Ayupov <aaupov@meta.com> Cc: Ian Rogers <irogers@google.com> Cc: Jiri Olsa <jolsa@kernel.org> Cc: Jonathan Corbet <corbet@lwn.net> Cc: Leo Yan <leo.yan@arm.com> Cc: Mike Leach <mike.leach@arm.com> Cc: Namhyung Kim <namhyung@kernel.org> Cc: Paschalis Mpeis <Paschalis.Mpeis@arm.com> Cc: Shuah Khan <skhan@linuxfoundation.org> Cc: Suzuki Poulouse <suzuki.poulose@arm.com> Signed-off-by: Arnaldo Carvalho de Melo <acme@redhat.com>
356 lines
12 KiB
Python
Executable File
356 lines
12 KiB
Python
Executable File
# SPDX-License-Identifier: GPL-2.0
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# arm-cs-trace-disasm.py: ARM CoreSight Trace Dump With Disassember
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#
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# Author: Tor Jeremiassen <tor@ti.com>
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# Mathieu Poirier <mathieu.poirier@linaro.org>
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# Leo Yan <leo.yan@linaro.org>
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# Al Grant <Al.Grant@arm.com>
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from __future__ import print_function
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import os
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from os import path
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import re
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from subprocess import *
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import argparse
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import platform
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from perf_trace_context import perf_sample_srccode, perf_config_get
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# Below are some example commands for using this script.
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# Note a --kcore recording is required for accurate decode
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# due to the alternatives patching mechanism. In addition to this,
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# source line info comes from Perf, and when using kcore there is
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# no debug info. The following lists the supported features in each mode:
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#
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# +-----------+-----------------+------------------+------------------+
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# | Recording | Accurate decode | Source line dump | Disassembly dump |
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# +-----------+-----------------+------------------+------------------+
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# | --kcore | yes | no | yes |
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# | normal | no | yes (inaccurate) | yes (inaccurate) |
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# +-----------+-----------------+------------------+------------------+
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#
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# Output disassembly with objdump and auto detect vmlinux
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# (when running on same machine.):
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# perf script -s scripts/python/arm-cs-trace-disasm.py -d
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#
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# Output disassembly with llvm-objdump:
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# perf script -s scripts/python/arm-cs-trace-disasm.py \
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# -- -d llvm-objdump-11 -k path/to/vmlinux
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#
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# Output accurate disassembly by passing kcore to script:
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# perf script -s scripts/python/arm-cs-trace-disasm.py \
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# -- -d -k perf.data/kcore_dir/kcore
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#
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# Output only source line and symbols:
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# perf script -s scripts/python/arm-cs-trace-disasm.py
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def default_objdump():
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config = perf_config_get("annotate.objdump")
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return config if config else "objdump"
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# Command line parsing.
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def int_arg(v):
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v = int(v)
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if v < 0:
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raise argparse.ArgumentTypeError("Argument must be a positive integer")
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return v
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args = argparse.ArgumentParser()
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args.add_argument("-k", "--vmlinux",
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help="Set path to vmlinux or kcore file. Omit to autodetect if running on same machine")
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args.add_argument("-d", "--objdump", nargs="?", const=default_objdump(),
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help="Show disassembly. Can also be used to change the objdump path"),
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args.add_argument("-v", "--verbose", action="store_true", help="Enable debugging log")
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args.add_argument("--start-time", type=int_arg, help="Monotonic clock time of sample to start from. "
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"See 'time' field on samples in -v mode.")
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args.add_argument("--stop-time", type=int_arg, help="Monotonic clock time of sample to stop at. "
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"See 'time' field on samples in -v mode.")
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args.add_argument("--start-sample", type=int_arg, help="Index of sample to start from. "
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"See 'index' field on samples in -v mode.")
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args.add_argument("--stop-sample", type=int_arg, help="Index of sample to stop at. "
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"See 'index' field on samples in -v mode.")
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options = args.parse_args()
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if (options.start_time and options.stop_time and
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options.start_time >= options.stop_time):
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print("--start-time must less than --stop-time")
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exit(2)
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if (options.start_sample and options.stop_sample and
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options.start_sample >= options.stop_sample):
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print("--start-sample must less than --stop-sample")
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exit(2)
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# Initialize global dicts and regular expression
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disasm_cache = dict()
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cpu_data = dict()
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disasm_re = re.compile(r"^\s*([0-9a-fA-F]+):")
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disasm_func_re = re.compile(r"^\s*([0-9a-fA-F]+)\s.*:")
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cache_size = 64*1024
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sample_idx = -1
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glb_source_file_name = None
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glb_line_number = None
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glb_dso = None
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kver = platform.release()
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vmlinux_paths = [
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f"/usr/lib/debug/boot/vmlinux-{kver}.debug",
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f"/usr/lib/debug/lib/modules/{kver}/vmlinux",
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f"/lib/modules/{kver}/build/vmlinux",
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f"/usr/lib/debug/boot/vmlinux-{kver}",
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f"/boot/vmlinux-{kver}",
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f"/boot/vmlinux",
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f"vmlinux"
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]
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def get_optional(perf_dict, field):
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if field in perf_dict:
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return perf_dict[field]
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return "[unknown]"
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def get_offset(perf_dict, field):
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if field in perf_dict:
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return "+%#x" % perf_dict[field]
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return ""
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def find_vmlinux():
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if hasattr(find_vmlinux, "path"):
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return find_vmlinux.path
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for v in vmlinux_paths:
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if os.access(v, os.R_OK):
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find_vmlinux.path = v
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break
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else:
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find_vmlinux.path = None
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return find_vmlinux.path
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def get_dso_file_path(dso_name, dso_build_id):
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if (dso_name == "[kernel.kallsyms]" or dso_name == "vmlinux"):
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if (options.vmlinux):
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return options.vmlinux;
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else:
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return find_vmlinux() if find_vmlinux() else dso_name
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if (dso_name == "[vdso]") :
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append = "/vdso"
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else:
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append = "/elf"
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dso_path = os.environ['PERF_BUILDID_DIR'] + "/" + dso_name + "/" + dso_build_id + append;
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# Replace duplicate slash chars to single slash char
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dso_path = dso_path.replace('//', '/', 1)
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return dso_path
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def read_disam(dso_fname, dso_start, start_addr, stop_addr):
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addr_range = str(start_addr) + ":" + str(stop_addr) + ":" + dso_fname
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# Don't let the cache get too big, clear it when it hits max size
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if (len(disasm_cache) > cache_size):
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disasm_cache.clear();
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if addr_range in disasm_cache:
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disasm_output = disasm_cache[addr_range];
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else:
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start_addr = start_addr - dso_start;
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stop_addr = stop_addr - dso_start;
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disasm = [ options.objdump, "-d", "-z",
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"--start-address="+format(start_addr,"#x"),
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"--stop-address="+format(stop_addr,"#x") ]
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disasm += [ dso_fname ]
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disasm_output = check_output(disasm).decode('utf-8').split('\n')
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disasm_cache[addr_range] = disasm_output
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return disasm_output
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def print_disam(dso_fname, dso_start, start_addr, stop_addr):
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for line in read_disam(dso_fname, dso_start, start_addr, stop_addr):
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m = disasm_func_re.search(line)
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if m is None:
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m = disasm_re.search(line)
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if m is None:
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continue
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print("\t" + line)
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def print_sample(sample):
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print("Sample = { cpu: %04d addr: 0x%016x phys_addr: 0x%016x ip: 0x%016x " \
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"pid: %d tid: %d period: %d time: %d index: %d}" % \
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(sample['cpu'], sample['addr'], sample['phys_addr'], \
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sample['ip'], sample['pid'], sample['tid'], \
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sample['period'], sample['time'], sample_idx))
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def trace_begin():
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print('ARM CoreSight Trace Data Assembler Dump')
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def trace_end():
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print('End')
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def trace_unhandled(event_name, context, event_fields_dict):
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print(' '.join(['%s=%s'%(k,str(v))for k,v in sorted(event_fields_dict.items())]))
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def common_start_str(comm, sample):
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sec = int(sample["time"] / 1000000000)
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ns = sample["time"] % 1000000000
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cpu = sample["cpu"]
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pid = sample["pid"]
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tid = sample["tid"]
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return "%16s %5u/%-5u [%04u] %9u.%09u " % (comm, pid, tid, cpu, sec, ns)
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# This code is copied from intel-pt-events.py for printing source code
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# line and symbols.
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def print_srccode(comm, param_dict, sample, symbol, dso):
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ip = sample["ip"]
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if symbol == "[unknown]":
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start_str = common_start_str(comm, sample) + ("%x" % ip).rjust(16).ljust(40)
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else:
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offs = get_offset(param_dict, "symoff")
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start_str = common_start_str(comm, sample) + (symbol + offs).ljust(40)
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global glb_source_file_name
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global glb_line_number
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global glb_dso
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source_file_name, line_number, source_line = perf_sample_srccode(perf_script_context)
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if source_file_name:
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if glb_line_number == line_number and glb_source_file_name == source_file_name:
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src_str = ""
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else:
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if len(source_file_name) > 40:
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src_file = ("..." + source_file_name[-37:]) + " "
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else:
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src_file = source_file_name.ljust(41)
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if source_line is None:
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src_str = src_file + str(line_number).rjust(4) + " <source not found>"
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else:
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src_str = src_file + str(line_number).rjust(4) + " " + source_line
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glb_dso = None
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elif dso == glb_dso:
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src_str = ""
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else:
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src_str = dso
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glb_dso = dso
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glb_line_number = line_number
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glb_source_file_name = source_file_name
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print(start_str, src_str)
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def process_event(param_dict):
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global cache_size
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global options
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global sample_idx
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sample = param_dict["sample"]
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comm = param_dict["comm"]
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name = param_dict["ev_name"]
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dso = get_optional(param_dict, "dso")
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dso_bid = get_optional(param_dict, "dso_bid")
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dso_start = get_optional(param_dict, "dso_map_start")
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dso_end = get_optional(param_dict, "dso_map_end")
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symbol = get_optional(param_dict, "symbol")
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map_pgoff = get_optional(param_dict, "map_pgoff")
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# check for valid map offset
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if (str(map_pgoff) == '[unknown]'):
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map_pgoff = 0
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cpu = sample["cpu"]
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ip = sample["ip"]
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addr = sample["addr"]
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sample_idx += 1
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if (options.start_time and sample["time"] < options.start_time):
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return
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if (options.stop_time and sample["time"] > options.stop_time):
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exit(0)
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if (options.start_sample and sample_idx < options.start_sample):
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return
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if (options.stop_sample and sample_idx > options.stop_sample):
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exit(0)
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if (options.verbose == True):
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print("Event type: %s" % name)
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print_sample(sample)
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# Initialize CPU data if it's empty, and directly return back
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# if this is the first tracing event for this CPU.
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if (cpu_data.get(str(cpu) + 'addr') == None):
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cpu_data[str(cpu) + 'addr'] = addr
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return
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# If cannot find dso so cannot dump assembler, bail out
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if (dso == '[unknown]'):
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return
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# Validate dso start and end addresses
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if ((dso_start == '[unknown]') or (dso_end == '[unknown]')):
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print("Failed to find valid dso map for dso %s" % dso)
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return
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if (name[0:12] == "instructions"):
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print_srccode(comm, param_dict, sample, symbol, dso)
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return
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# Don't proceed if this event is not a branch sample, .
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if (name[0:8] != "branches"):
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return
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# The format for packet is:
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#
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# +------------+------------+------------+
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# sample_prev: | addr | ip | cpu |
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# +------------+------------+------------+
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# sample_next: | addr | ip | cpu |
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# +------------+------------+------------+
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#
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# We need to combine the two continuous packets to get the instruction
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# range for sample_prev::cpu:
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#
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# [ sample_prev::addr .. sample_next::ip ]
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#
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# For this purose, sample_prev::addr is stored into cpu_data structure
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# and read back for 'start_addr' when the new packet comes, and we need
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# to use sample_next::ip to calculate 'stop_addr', plusing extra 4 for
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# 'stop_addr' is for the sake of objdump so the final assembler dump can
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# include last instruction for sample_next::ip.
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start_addr = cpu_data[str(cpu) + 'addr']
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stop_addr = ip + 4
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# Record for previous sample packet
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cpu_data[str(cpu) + 'addr'] = addr
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# Filter out zero start_address. Optionally identify CS_ETM_TRACE_ON packet
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if (start_addr == 0):
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if ((stop_addr == 4) and (options.verbose == True)):
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print("CPU%d: CS_ETM_TRACE_ON packet is inserted" % cpu)
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return
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if (start_addr < int(dso_start) or start_addr > int(dso_end)):
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print("Start address 0x%x is out of range [ 0x%x .. 0x%x ] for dso %s" % (start_addr, int(dso_start), int(dso_end), dso))
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return
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if (stop_addr < int(dso_start) or stop_addr > int(dso_end)):
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print("Stop address 0x%x is out of range [ 0x%x .. 0x%x ] for dso %s" % (stop_addr, int(dso_start), int(dso_end), dso))
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return
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if (options.objdump != None):
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# It doesn't need to decrease virtual memory offset for disassembly
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# for kernel dso and executable file dso, so in this case we set
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# vm_start to zero.
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if (dso == "[kernel.kallsyms]" or dso_start == 0x400000):
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dso_vm_start = 0
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map_pgoff = 0
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else:
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dso_vm_start = int(dso_start)
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dso_fname = get_dso_file_path(dso, dso_bid)
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if path.exists(dso_fname):
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print_disam(dso_fname, dso_vm_start, start_addr + map_pgoff, stop_addr + map_pgoff)
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else:
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print("Failed to find dso %s for address range [ 0x%x .. 0x%x ]" % (dso, start_addr + map_pgoff, stop_addr + map_pgoff))
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print_srccode(comm, param_dict, sample, symbol, dso)
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