Mercurial > hg
view tests/killdaemons.py @ 45584:4c8a93ec6908
merge: store commitinfo if these is a dc or cd conflict
delete-changed or changed-delete conflicts can either be resolved by mergetool,
if some tool is passed and using or by user choose something on prompt or user
doing some `hg revert` after choosing the file to remain conflicted.
If the user decides to keep the changed side, on commit we just reuse the parent
filenode. This is mostly fine unless we are in a distributed environment and
people are doing criss-cross merges.
Since, we don't have recursive merges or any other way of describing the end
result of the merge was an explicit choice and it should be differentiated from
it's ancestors, merge algo during criss-cross merges fails to take in account
the explicit choice made by user and end up with a what-can-be-said-wrong-merge.
The solution which we are trying to fix this is by creating a filenode on commit
instead of reusing the parent filenode. This helps differentiate between
pre-merged filenode and post-merge filenode and kind of tells about the choice
user made.
To implement creating new filenode functionality, we store info about these
files in mergestate so that we can read them on commit and force create a new
filenode.
Differential Revision: https://phab.mercurial-scm.org/D8988
author | Pulkit Goyal <7895pulkit@gmail.com> |
---|---|
date | Thu, 03 Sep 2020 13:44:06 +0530 |
parents | 2372284d9457 |
children | c102b704edb5 |
line wrap: on
line source
#!/usr/bin/env python from __future__ import absolute_import import errno import os import signal import sys import time if os.name == 'nt': import ctypes _BOOL = ctypes.c_long _DWORD = ctypes.c_ulong _UINT = ctypes.c_uint _HANDLE = ctypes.c_void_p ctypes.windll.kernel32.CloseHandle.argtypes = [_HANDLE] ctypes.windll.kernel32.CloseHandle.restype = _BOOL ctypes.windll.kernel32.GetLastError.argtypes = [] ctypes.windll.kernel32.GetLastError.restype = _DWORD ctypes.windll.kernel32.OpenProcess.argtypes = [_DWORD, _BOOL, _DWORD] ctypes.windll.kernel32.OpenProcess.restype = _HANDLE ctypes.windll.kernel32.TerminateProcess.argtypes = [_HANDLE, _UINT] ctypes.windll.kernel32.TerminateProcess.restype = _BOOL ctypes.windll.kernel32.WaitForSingleObject.argtypes = [_HANDLE, _DWORD] ctypes.windll.kernel32.WaitForSingleObject.restype = _DWORD def _check(ret, expectederr=None): if ret == 0: winerrno = ctypes.GetLastError() if winerrno == expectederr: return True raise ctypes.WinError(winerrno) def kill(pid, logfn, tryhard=True): logfn('# Killing daemon process %d' % pid) PROCESS_TERMINATE = 1 PROCESS_QUERY_INFORMATION = 0x400 SYNCHRONIZE = 0x00100000 WAIT_OBJECT_0 = 0 WAIT_TIMEOUT = 258 WAIT_FAILED = _DWORD(0xFFFFFFFF).value handle = ctypes.windll.kernel32.OpenProcess( PROCESS_TERMINATE | SYNCHRONIZE | PROCESS_QUERY_INFORMATION, False, pid, ) if handle is None: _check(0, 87) # err 87 when process not found return # process not found, already finished try: r = ctypes.windll.kernel32.WaitForSingleObject(handle, 100) if r == WAIT_OBJECT_0: pass # terminated, but process handle still available elif r == WAIT_TIMEOUT: _check(ctypes.windll.kernel32.TerminateProcess(handle, -1)) elif r == WAIT_FAILED: _check(0) # err stored in GetLastError() # TODO?: forcefully kill when timeout # and ?shorter waiting time? when tryhard==True r = ctypes.windll.kernel32.WaitForSingleObject(handle, 100) # timeout = 100 ms if r == WAIT_OBJECT_0: pass # process is terminated elif r == WAIT_TIMEOUT: logfn('# Daemon process %d is stuck') elif r == WAIT_FAILED: _check(0) # err stored in GetLastError() except: # re-raises ctypes.windll.kernel32.CloseHandle(handle) # no _check, keep error raise _check(ctypes.windll.kernel32.CloseHandle(handle)) else: def kill(pid, logfn, tryhard=True): try: os.kill(pid, 0) logfn('# Killing daemon process %d' % pid) os.kill(pid, signal.SIGTERM) if tryhard: for i in range(10): time.sleep(0.05) os.kill(pid, 0) else: time.sleep(0.1) os.kill(pid, 0) logfn('# Daemon process %d is stuck - really killing it' % pid) os.kill(pid, signal.SIGKILL) except OSError as err: if err.errno != errno.ESRCH: raise def killdaemons(pidfile, tryhard=True, remove=False, logfn=None): if not logfn: logfn = lambda s: s # Kill off any leftover daemon processes try: pids = [] with open(pidfile) as fp: for line in fp: try: pid = int(line) if pid <= 0: raise ValueError except ValueError: logfn( '# Not killing daemon process %s - invalid pid' % line.rstrip() ) continue pids.append(pid) for pid in pids: kill(pid, logfn, tryhard) if remove: os.unlink(pidfile) except IOError: pass if __name__ == '__main__': if len(sys.argv) > 1: (path,) = sys.argv[1:] else: path = os.environ["DAEMON_PIDS"] killdaemons(path, remove=True)