Files
pidcat-repl/pidcat.py
T
Louis Boval 1900517819 [pidcat] Allow package to specify a process as well …
Summary: Android apps can use multiple processes (eg, chrome), which are identified as <package_name>:<process_name> in logs. The names are defined in the manifest.
The main process is referred to as simply <package_name> by android.
Add the ability to specify a target process as part of what was until now the package name in pidcat, or all processes if no process is specified.

Usage:
 * pidcat <package_name> will match all of an app's processes (catchall).
 * pidcat <package_name>:<process_name> will match a given named process.
 ** In particular, pidcat <package_name>: will ensure only the app's main/default process is matched.

Test Plan: Run the script, try out with no process, empty (aka default) process, named process. Try multiple entries.
2014-03-12 23:35:47 -07:00

277 lines
9.0 KiB
Python
Executable File

#!/usr/bin/python -u
'''
Copyright 2009, The Android Open Source Project
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
'''
# Script to highlight adb logcat output for console
# Originally written by Jeff Sharkey, http://jsharkey.org/
# Piping detection and popen() added by other Android team members
# Package filtering and output improvements by Jake Wharton, http://jakewharton.com
import argparse
import os
import sys
import re
import subprocess
from subprocess import PIPE
LOG_LEVELS = 'VDIWEF'
LOG_LEVELS_MAP = dict([(LOG_LEVELS[i], i) for i in range(len(LOG_LEVELS))])
parser = argparse.ArgumentParser(description='Filter logcat by package name')
parser.add_argument('package', nargs='*', help='Application package name(s)')
parser.add_argument('-w', '--tag-width', metavar='N', dest='tag_width', type=int, default=22, help='Width of log tag')
parser.add_argument('-l', '--min-level', dest='min_level', type=str, choices=LOG_LEVELS, default='V', help='Minimum level to be displayed')
parser.add_argument('--color-gc', dest='color_gc', action='store_true', help='Color garbage collection')
parser.add_argument('--always-display-tags', dest='always_tags', action='store_true',help='Always display the tag name')
parser.add_argument('-s', '--serial', dest='device_serial', help='Device serial number (adb -s option)')
parser.add_argument('-d', '--device', dest='use_device', action='store_true', help='Use first device for log input (adb -d option).')
parser.add_argument('-e', '--emulator', dest='use_emulator', action='store_true', help='Use first emulator for log input (adb -e option).')
args = parser.parse_args()
min_level = LOG_LEVELS_MAP[args.min_level]
# Store the names of packages for which to match all processes.
catchall_package = filter(lambda package: package.find(":") == -1, args.package)
# Store the name of processes to match exactly.
named_processes = filter(lambda package: package.find(":") != -1, args.package)
# Convert default process names from <package>: (cli notation) to <package> (android notation) in the exact names match group.
named_processes = map(lambda package: package if package.find(":") != len(package) - 1 else package[:-1], named_processes)
header_size = args.tag_width + 1 + 3 + 1 # space, level, space
width = -1
try:
# Get the current terminal width
import fcntl, termios, struct
h, width = struct.unpack('hh', fcntl.ioctl(0, termios.TIOCGWINSZ, struct.pack('hh', 0, 0)))
except:
pass
BLACK, RED, GREEN, YELLOW, BLUE, MAGENTA, CYAN, WHITE = range(8)
RESET = '\033[0m'
def termcolor(fg=None, bg=None):
codes = []
if fg is not None: codes.append('3%d' % fg)
if bg is not None: codes.append('10%d' % bg)
return '\033[%sm' % ';'.join(codes) if codes else ''
def colorize(message, fg=None, bg=None):
return termcolor(fg, bg) + message + RESET
def indent_wrap(message):
if width == -1:
return message
message = message.replace('\t', ' ')
wrap_area = width - header_size
messagebuf = ''
current = 0
while current < len(message):
next = min(current + wrap_area, len(message))
messagebuf += message[current:next]
if next < len(message):
messagebuf += '\n'
messagebuf += ' ' * header_size
current = next
return messagebuf
LAST_USED = [RED, GREEN, YELLOW, BLUE, MAGENTA, CYAN]
KNOWN_TAGS = {
'dalvikvm': WHITE,
'Process': WHITE,
'ActivityManager': WHITE,
'ActivityThread': WHITE,
'AndroidRuntime': CYAN,
'jdwp': WHITE,
'StrictMode': WHITE,
'DEBUG': YELLOW,
}
def allocate_color(tag):
# this will allocate a unique format for the given tag
# since we dont have very many colors, we always keep track of the LRU
if tag not in KNOWN_TAGS:
KNOWN_TAGS[tag] = LAST_USED[0]
color = KNOWN_TAGS[tag]
if color in LAST_USED:
LAST_USED.remove(color)
LAST_USED.append(color)
return color
RULES = {
# StrictMode policy violation; ~duration=319 ms: android.os.StrictMode$StrictModeDiskWriteViolation: policy=31 violation=1
re.compile(r'^(StrictMode policy violation)(; ~duration=)(\d+ ms)')
: r'%s\1%s\2%s\3%s' % (termcolor(RED), RESET, termcolor(YELLOW), RESET),
}
# Only enable GC coloring if the user opted-in
if args.color_gc:
# GC_CONCURRENT freed 3617K, 29% free 20525K/28648K, paused 4ms+5ms, total 85ms
key = re.compile(r'^(GC_(?:CONCURRENT|FOR_M?ALLOC|EXTERNAL_ALLOC|EXPLICIT) )(freed <?\d+.)(, \d+\% free \d+./\d+., )(paused \d+ms(?:\+\d+ms)?)')
val = r'\1%s\2%s\3%s\4%s' % (termcolor(GREEN), RESET, termcolor(YELLOW), RESET)
RULES[key] = val
TAGTYPES = {
'V': colorize(' V ', fg=WHITE, bg=BLACK),
'D': colorize(' D ', fg=BLACK, bg=BLUE),
'I': colorize(' I ', fg=BLACK, bg=GREEN),
'W': colorize(' W ', fg=BLACK, bg=YELLOW),
'E': colorize(' E ', fg=BLACK, bg=RED),
'F': colorize(' F ', fg=BLACK, bg=RED),
}
PID_START = re.compile(r'^Start proc ([a-zA-Z0-9._:]+) for ([a-z]+ [^:]+): pid=(\d+) uid=(\d+) gids=(.*)$')
PID_KILL = re.compile(r'^Killing (\d+):([a-zA-Z0-9._]+)/[^:]+: (.*)$')
PID_LEAVE = re.compile(r'^No longer want ([a-zA-Z0-9._]+) \(pid (\d+)\): .*$')
PID_DEATH = re.compile(r'^Process ([a-zA-Z0-9._]+) \(pid (\d+)\) has died.?$')
LOG_LINE = re.compile(r'^([A-Z])/(.+?)\( *(\d+)\): (.*?)$')
BUG_LINE = re.compile(r'.*nativeGetEnabledTags.*')
BACKTRACE_LINE = re.compile(r'^#(.*?)pc\s(.*?)$')
adb_command = ['adb']
if args.device_serial:
adb_command.extend(['-s', args.device_serial])
if args.use_device:
adb_command.append('-d')
if args.use_emulator:
adb_command.append('-e')
adb_command.append('logcat')
adb = subprocess.Popen(adb_command, stdin=PIPE, stdout=PIPE, stderr=PIPE)
pids = set()
last_tag = None
app_pid = None
def match_packages(token):
if len(args.package) == 0:
return True
if token in named_processes:
return True
index = token.find(':')
return (token in catchall_package) if index == -1 else (token[:index] in catchall_package)
def parse_death(tag, message):
if tag != 'ActivityManager':
return None
kill = PID_KILL.match(message)
if kill:
pid = kill.group(1)
if match_packages(kill.group(2)) and pid in pids:
return pid
leave = PID_LEAVE.match(message)
if leave:
pid = leave.group(2)
if match_packages(leave.group(1)) and pid in pids:
return pid
death = PID_DEATH.match(message)
if death:
pid = death.group(2)
if match_packages(death.group(1)) and pid in pids:
return pid
return None
while adb.poll() is None:
try:
line = adb.stdout.readline().decode('utf-8', 'replace').strip()
except KeyboardInterrupt:
break
if len(line) == 0:
break
bug_line = BUG_LINE.match(line)
if bug_line is not None:
continue
log_line = LOG_LINE.match(line)
if log_line is None:
continue
level, tag, owner, message = log_line.groups()
start = PID_START.match(message)
if start is not None:
line_package, target, line_pid, line_uid, line_gids = start.groups()
if match_packages(line_package):
pids.add(line_pid)
app_pid = line_pid
linebuf = '\n'
linebuf += colorize(' ' * (header_size - 1), bg=WHITE)
linebuf += indent_wrap(' Process created for %s\n' % target)
linebuf += colorize(' ' * (header_size - 1), bg=WHITE)
linebuf += ' PID: %s UID: %s GIDs: %s' % (line_pid, line_uid, line_gids)
linebuf += '\n'
print(linebuf)
last_tag = None # Ensure next log gets a tag printed
dead_pid = parse_death(tag, message)
if dead_pid:
pids.remove(dead_pid)
linebuf = '\n'
linebuf += colorize(' ' * (header_size - 1), bg=RED)
linebuf += ' Process %s ended' % dead_pid
linebuf += '\n'
print(linebuf)
last_tag = None # Ensure next log gets a tag printed
# Make sure the backtrace is printed after a native crash
if tag.strip() == 'DEBUG':
bt_line = BACKTRACE_LINE.match(message.lstrip())
if bt_line is not None:
message = message.lstrip()
owner = app_pid
if owner not in pids:
continue
if level in LOG_LEVELS_MAP and LOG_LEVELS_MAP[level] < min_level:
continue
linebuf = ''
# right-align tag title and allocate color if needed
tag = tag.strip()
if tag != last_tag or args.always_tags:
last_tag = tag
color = allocate_color(tag)
tag = tag[-args.tag_width:].rjust(args.tag_width)
linebuf += colorize(tag, fg=color)
else:
linebuf += ' ' * args.tag_width
linebuf += ' '
# write out level colored edge
if level in TAGTYPES:
linebuf += TAGTYPES[level]
else:
linebuf += ' ' + level + ' '
linebuf += ' '
# format tag message using rules
for matcher in RULES:
replace = RULES[matcher]
message = matcher.sub(replace, message)
linebuf += indent_wrap(message)
print(linebuf.encode('utf-8'))