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|
/**
* @file llprocess.cpp
* @brief Utility class for launching, terminating, and tracking the state of processes.
*
* $LicenseInfo:firstyear=2008&license=viewerlgpl$
* Second Life Viewer Source Code
* Copyright (C) 2010, Linden Research, Inc.
*
* This library is free software; you can redistribute it and/or
* modify it under the terms of the GNU Lesser General Public
* License as published by the Free Software Foundation;
* version 2.1 of the License only.
*
* This library is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
* Lesser General Public License for more details.
*
* You should have received a copy of the GNU Lesser General Public
* License along with this library; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
*
* Linden Research, Inc., 945 Battery Street, San Francisco, CA 94111 USA
* $/LicenseInfo$
*/
#include "linden_common.h"
#include "llprocess.h"
#include "llsd.h"
#include "llsdserialize.h"
#include "stringize.h"
#include <boost/foreach.hpp>
#include <iostream>
#include <stdexcept>
/// Need an exception to avoid constructing an invalid LLProcess object, but
/// internal use only
struct LLProcessError: public std::runtime_error
{
LLProcessError(const std::string& msg): std::runtime_error(msg) {}
};
LLProcessPtr LLProcess::create(const LLSD& params)
{
try
{
return LLProcessPtr(new LLProcess(params));
}
catch (const LLProcessError& e)
{
LL_WARNS("LLProcess") << e.what() << LL_ENDL;
return LLProcessPtr();
}
}
LLProcess::LLProcess(const LLSD& params):
mProcessID(0),
mAutokill(params["autokill"].asBoolean())
{
// nonstandard default bool value
if (! params.has("autokill"))
mAutokill = true;
if (! params.has("executable"))
{
throw LLProcessError(STRINGIZE("not launched: missing 'executable'\n"
<< LLSDNotationStreamer(params)));
}
launch(params);
}
LLProcess::~LLProcess()
{
if (mAutokill)
{
kill();
}
}
bool LLProcess::isRunning(void)
{
mProcessID = isRunning(mProcessID);
return (mProcessID != 0);
}
#if LL_WINDOWS
static std::string quote(const std::string& str)
{
std::string::size_type len(str.length());
// If the string is already quoted, assume user knows what s/he's doing.
if (len >= 2 && str[0] == '"' && str[len-1] == '"')
{
return str;
}
// Not already quoted: do it.
std::string result("\"");
for (std::string::const_iterator ci(str.begin()), cend(str.end()); ci != cend; ++ci)
{
if (*ci == '"')
{
result.append("\\");
}
result.push_back(*ci);
}
return result + "\"";
}
void LLProcess::launch(const LLSD& params)
{
PROCESS_INFORMATION pinfo;
STARTUPINFOA sinfo;
memset(&sinfo, 0, sizeof(sinfo));
std::string args = quote(params["executable"]);
BOOST_FOREACH(const std::string& arg, llsd::inArray(params["args"]))
{
args += " ";
args += quote(arg);
}
// So retarded. Windows requires that the second parameter to
// CreateProcessA be a writable (non-const) string...
std::vector<char> args2(args.begin(), args.end());
args2.push_back('\0');
// Convert wrapper to a real std::string so we can use c_str(); but use a
// named variable instead of a temporary so c_str() pointer remains valid.
std::string cwd(params["cwd"]);
const char * working_directory = 0;
if (! cwd.empty())
working_directory = cwd.c_str();
if( ! CreateProcessA( NULL, &args2[0], NULL, NULL, FALSE, 0, NULL, working_directory, &sinfo, &pinfo ) )
{
int result = GetLastError();
LPTSTR error_str = 0;
if(
FormatMessage( FORMAT_MESSAGE_ALLOCATE_BUFFER | FORMAT_MESSAGE_FROM_SYSTEM,
NULL,
result,
0,
(LPTSTR)&error_str,
0,
NULL)
!= 0)
{
char message[256];
wcstombs(message, error_str, sizeof(message));
message[sizeof(message)-1] = 0;
LocalFree(error_str);
throw LLProcessError(STRINGIZE("CreateProcessA failed (" << result << "): "
<< message));
}
throw LLProcessError(STRINGIZE("CreateProcessA failed (" << result
<< "), but FormatMessage() did not explain"));
}
// foo = pinfo.dwProcessId; // get your pid here if you want to use it later on
// CloseHandle(pinfo.hProcess); // stops leaks - nothing else
mProcessID = pinfo.hProcess;
CloseHandle(pinfo.hThread); // stops leaks - nothing else
}
LLProcess::id LLProcess::isRunning(id handle)
{
if (! handle)
return 0;
DWORD waitresult = WaitForSingleObject(handle, 0);
if(waitresult == WAIT_OBJECT_0)
{
// the process has completed.
return 0;
}
return handle;
}
bool LLProcess::kill(void)
{
if (! mProcessID)
return false;
TerminateProcess(mProcessID, 0);
return ! isRunning();
}
#else // Mac and linux
#include <signal.h>
#include <fcntl.h>
#include <errno.h>
#include <sys/wait.h>
// Attempt to reap a process ID -- returns true if the process has exited and been reaped, false otherwise.
static bool reap_pid(pid_t pid)
{
pid_t wait_result = ::waitpid(pid, NULL, WNOHANG);
if (wait_result == pid)
{
return true;
}
if (wait_result == -1 && errno == ECHILD)
{
// No such process -- this may mean we're ignoring SIGCHILD.
return true;
}
return false;
}
void LLProcess::launch(const LLSD& params)
{
// flush all buffers before the child inherits them
::fflush(NULL);
pid_t child = vfork();
if (child == 0)
{
// child process
std::string cwd(params["cwd"]);
if (! cwd.empty())
{
// change to the desired child working directory
if (::chdir(cwd.c_str()))
{
// chdir failed
LL_WARNS("LLProcess") << "could not chdir(\"" << cwd << "\")" << LL_ENDL;
// pointless to throw; this is child process...
_exit(248);
}
}
// create an argv vector for the child process
std::vector<const char*> fake_argv;
// add the executable path
std::string executable(params["executable"]);
fake_argv.push_back(executable.c_str());
// and any arguments
const LLSD& params_args(params["args"]);
std::vector<std::string> args(params_args.beginArray(), params_args.endArray());
BOOST_FOREACH(const std::string& arg, args)
{
fake_argv.push_back(arg.c_str());
}
// terminate with a null pointer
fake_argv.push_back(NULL);
::execv(executable.c_str(), const_cast<char* const*>(&fake_argv[0]));
// If we reach this point, the exec failed.
LL_WARNS("LLProcess") << "failed to launch: ";
BOOST_FOREACH(const char* arg, fake_argv)
{
LL_CONT << arg << ' ';
}
LL_CONT << LL_ENDL;
// Use _exit() instead of exit() per the vfork man page. Exit with a
// distinctive rc: someday soon we'll be able to retrieve it, and it
// would be nice to be able to tell that the child process failed!
_exit(249);
}
// parent process
mProcessID = child;
}
LLProcess::id LLProcess::isRunning(id pid)
{
if (! pid)
return 0;
// Check whether the process has exited, and reap it if it has.
if(reap_pid(pid))
{
// the process has exited.
return 0;
}
return pid;
}
bool LLProcess::kill(void)
{
if (! mProcessID)
return false;
// Try to kill the process. We'll do approximately the same thing whether
// the kill returns an error or not, so we ignore the result.
(void)::kill(mProcessID, SIGTERM);
// This will have the side-effect of reaping the zombie if the process has exited.
return ! isRunning();
}
/*==========================================================================*|
static std::list<pid_t> sZombies;
void LLProcess::orphan(void)
{
// Disassociate the process from this object
if(mProcessID != 0)
{
// We may still need to reap the process's zombie eventually
sZombies.push_back(mProcessID);
mProcessID = 0;
}
}
// static
void LLProcess::reap(void)
{
// Attempt to real all saved process ID's.
std::list<pid_t>::iterator iter = sZombies.begin();
while(iter != sZombies.end())
{
if(reap_pid(*iter))
{
iter = sZombies.erase(iter);
}
else
{
iter++;
}
}
}
|*==========================================================================*/
#endif
|