view tests/killdaemons.py @ 28164:ad11edefa7c4

localrepo: move new repo requirements into standalone function (API) This patch extracts the code for determining requirements for a new repo into a standalone function. By doing so, future code that will perform an in-place repository upgrade (e.g. to generaldelta) can examine the set of proposed new requirements and possibly take additional actions (such as adding dotencode or fncache) when performing the upgrade. This patch is marked as API because _baserequirements (which was added in b090601a80d1 so extensions could override it) has been removed and will presumably impact whatever extension it was added for. Consumers should be able to monkeypatch the new function to achieve the same functionality. The "create" argument has been dropped because the function is only called in one location and "create" is always true in that case. While it makes logical sense for this code to be a method so extensions can implement a custom repo class / method to override it, this won't actually work. This is because requirements determination occurs during localrepository.__init__ and this is before the "reposetup" "callback" is fired. So, the only way for extensions to customize requirements would be to overwrite localrepo.localrepository or to monkeypatch a function on a module during extsetup(). Since we try to keep localrepository small, we use a standalone function. There is probably room to offer extensions a "hook" point to alter repository creation. But that is scope bloat.
author Gregory Szorc <gregory.szorc@gmail.com>
date Mon, 15 Feb 2016 13:20:20 -0800
parents 123c99034cb6
children 05cb9c6f310e
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#!/usr/bin/env python

import os, sys, time, errno, signal

if os.name =='nt':
    import ctypes

    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
        handle = ctypes.windll.kernel32.OpenProcess(
                PROCESS_TERMINATE|SYNCHRONIZE|PROCESS_QUERY_INFORMATION,
                False, pid)
        if handle == 0:
            _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))
            else:
                _check(r)

            # 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')
            else:
                _check(r) # any error
        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:
        fp = open(pidfile)
        for line in fp:
            try:
                pid = int(line)
            except ValueError:
                continue
            kill(pid, logfn, tryhard)
        fp.close()
        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)