415 lines
11 KiB
C++
415 lines
11 KiB
C++
/*
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www.sourceforge.net/projects/dfhack
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Copyright (c) 2009 Petr Mrázek (peterix), Kenneth Ferland (Impaler[WrG]), dorf
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This software is provided 'as-is', without any express or implied
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warranty. In no event will the authors be held liable for any
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damages arising from the use of this software.
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Permission is granted to anyone to use this software for any
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purpose, including commercial applications, and to alter it and
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redistribute it freely, subject to the following restrictions:
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1. The origin of this software must not be misrepresented; you must
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not claim that you wrote the original software. If you use this
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software in a product, an acknowledgment in the product documentation
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would be appreciated but is not required.
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2. Altered source versions must be plainly marked as such, and
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must not be misrepresented as being the original software.
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3. This notice may not be removed or altered from any source
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distribution.
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*/
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#include "Internal.h"
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#include "SHMProcess.h"
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#include "dfhack/VersionInfo.h"
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#include "dfhack/DFError.h"
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#include "shms.h"
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#include "mod-core.h"
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using namespace DFHack;
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SHMProcess::Private::Private(SHMProcess * self_)
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{
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memdescriptor = NULL;
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process_ID = 0;
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attached = false;
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locked = false;
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identified = false;
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useYield = 0;
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DFSVMutex = 0;
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DFCLMutex = 0;
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DFCLSuspendMutex = 0;
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self = self_;
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}
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bool SHMProcess::Private::SetAndWait (uint32_t state)
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{
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uint32_t cnt = 0;
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if(!attached) return false;
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SHMCMD = state;
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while (SHMCMD == state)
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{
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// yield the CPU, only on single-core CPUs
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if(useYield)
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{
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SCHED_YIELD
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}
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if(cnt == 10000)
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{
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if(!AreLocksOk())// DF not there anymore?
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{
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UnmapViewOfFile(shm_addr);
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FreeLocks();
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attached = locked = identified = false;
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// we aren't the current process anymore
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throw Error::SHMServerDisappeared();
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}
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else
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{
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cnt = 0;
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}
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}
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cnt++;
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}
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// server returned a generic error
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if(SHMCMD == CORE_ERROR)
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{
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return false;
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}
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return true;
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}
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bool SHMProcess::SetAndWait (uint32_t state)
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{
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return d->SetAndWait(state);
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}
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uint32_t OS_getAffinity()
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{
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HANDLE hProcess = GetCurrentProcess();
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DWORD dwProcessAffinityMask, dwSystemAffinityMask;
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GetProcessAffinityMask( hProcess, &dwProcessAffinityMask, &dwSystemAffinityMask );
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return dwProcessAffinityMask;
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}
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void SHMProcess::Private::FreeLocks()
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{
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attachmentIdx = -1;
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if(DFCLMutex != 0)
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{
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ReleaseMutex(DFCLMutex);
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CloseHandle(DFCLMutex);
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DFCLMutex = 0;
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}
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if(DFSVMutex != 0)
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{
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CloseHandle(DFSVMutex);
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DFSVMutex = 0;
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}
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if(DFCLSuspendMutex != 0)
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{
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ReleaseMutex(DFCLSuspendMutex);
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CloseHandle(DFCLSuspendMutex);
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// FIXME: maybe also needs ReleaseMutex!
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DFCLSuspendMutex = 0;
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locked = false;
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}
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}
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bool SHMProcess::Private::GetLocks()
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{
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char name[256];
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// try to acquire locks
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// look at the server lock, if it's locked, the server is present
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sprintf(name,"DFSVMutex-%d",process_ID);
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DFSVMutex = OpenMutex(SYNCHRONIZE,0, name);
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if(DFSVMutex == 0)
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{
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// cerr << "can't open sv lock" << endl;
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return false;
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}
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// unlike the F_TEST of lockf, this one actually locks. we have to release
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if(WaitForSingleObject(DFSVMutex,0) == 0)
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{
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ReleaseMutex(DFSVMutex);
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// cerr << "sv lock not locked" << endl;
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CloseHandle(DFSVMutex);
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DFSVMutex = 0;
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return false;
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}
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for(int i = 0; i < SHM_MAX_CLIENTS; i++)
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{
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// open the client suspend locked
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sprintf(name, "DFCLSuspendMutex-%d-%d",process_ID,i);
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DFCLSuspendMutex = OpenMutex(SYNCHRONIZE,0, name);
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if(DFCLSuspendMutex == 0)
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{
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//cerr << "can't open cl S-lock " << i << endl;
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// couldn't open lock
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continue;
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}
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// open the client lock, try to lock it
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sprintf(name,"DFCLMutex-%d-%d",process_ID,i);
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DFCLMutex = OpenMutex(SYNCHRONIZE,0,name);
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if(DFCLMutex == 0)
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{
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//cerr << "can't open cl lock " << i << endl;
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CloseHandle(DFCLSuspendMutex);
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locked = false;
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DFCLSuspendMutex = 0;
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continue;
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}
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uint32_t waitstate = WaitForSingleObject(DFCLMutex,0);
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if(waitstate == WAIT_FAILED || waitstate == WAIT_TIMEOUT )
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{
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//cerr << "can't acquire cl lock " << i << endl;
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CloseHandle(DFCLSuspendMutex);
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locked = false;
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DFCLSuspendMutex = 0;
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CloseHandle(DFCLMutex);
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DFCLMutex = 0;
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continue;
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}
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// ok, we have all the locks we need!
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attachmentIdx = i;
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return true;
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}
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CloseHandle(DFSVMutex);
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DFSVMutex = 0;
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// cerr << "can't get any client locks" << endl;
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return false;
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}
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// is the other side still there?
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bool SHMProcess::Private::AreLocksOk()
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{
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// both locks are inited (we hold our lock)
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if(DFCLMutex != 0 && DFSVMutex != 0)
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{
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// try if CL mutex is free
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switch (WaitForSingleObject(DFSVMutex,0))
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{
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case WAIT_ABANDONED:
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case WAIT_OBJECT_0:
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{
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ReleaseMutex(DFSVMutex);
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return false;
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}
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case WAIT_TIMEOUT:
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{
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// mutex is held by DF
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return true;
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}
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default:
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case WAIT_FAILED:
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{
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// TODO: now how do I respond to this?
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return false;
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}
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}
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}
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return false;
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}
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bool SHMProcess::Private::validate(VersionInfoFactory * factory)
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{
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// try to identify the DF version
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IMAGE_NT_HEADERS pe_header;
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IMAGE_SECTION_HEADER sections[16];
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HMODULE hmod = NULL;
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DWORD junk;
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HANDLE hProcess;
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bool found = false;
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identified = false;
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// open process, we only need the process open
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hProcess = OpenProcess( PROCESS_ALL_ACCESS, FALSE, process_ID );
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if (NULL == hProcess)
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return false;
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// try getting the first module of the process
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if(EnumProcessModules(hProcess, &hmod, 1 * sizeof(HMODULE), &junk) == 0)
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{
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CloseHandle(hProcess);
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// cout << "EnumProcessModules fail'd" << endl;
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return false;
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}
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// got base ;)
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uint32_t base = (uint32_t)hmod;
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// read from this process
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uint32_t pe_offset = self->Process::readDWord(base+0x3C);
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self->read(base + pe_offset , sizeof(pe_header), (uint8_t *)&pe_header);
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self->read(base + pe_offset+ sizeof(pe_header), sizeof(sections) , (uint8_t *)§ions );
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VersionInfo* vinfo = factory->getVersionInfoByPETimestamp(pe_header.FileHeader.TimeDateStamp);
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if(vinfo)
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{
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VersionInfo *m = new VersionInfo(*vinfo);
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m->RebaseAll(base);
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memdescriptor = m;
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m->setParentProcess(self);
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identified = true;
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vector_start = memdescriptor->getGroup("vector")->getOffset("start");
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CloseHandle(hProcess);
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return true;
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}
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return false;
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}
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bool SHMProcess::getThreadIDs(vector<uint32_t> & threads )
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{
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HANDLE AllThreads = INVALID_HANDLE_VALUE;
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THREADENTRY32 te32;
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AllThreads = CreateToolhelp32Snapshot( TH32CS_SNAPTHREAD, 0 );
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if( AllThreads == INVALID_HANDLE_VALUE )
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{
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return false;
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}
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te32.dwSize = sizeof(THREADENTRY32 );
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if( !Thread32First( AllThreads, &te32 ) )
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{
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CloseHandle( AllThreads );
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return false;
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}
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do
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{
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if( te32.th32OwnerProcessID == d->process_ID )
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{
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threads.push_back(te32.th32ThreadID);
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}
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} while( Thread32Next(AllThreads, &te32 ) );
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CloseHandle( AllThreads );
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return true;
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}
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//FIXME: use VirtualQuery to probe for memory ranges, cross-reference with base-corrected PE segment entries
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void SHMProcess::getMemRanges( vector<t_memrange> & ranges )
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{
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// BLAH
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ranges.clear();
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}
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bool SHMProcess::acquireSuspendLock()
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{
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return ( WaitForSingleObject(d->DFCLSuspendMutex,INFINITE) == 0 );
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}
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bool SHMProcess::releaseSuspendLock()
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{
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return ( ReleaseMutex(d->DFCLSuspendMutex) != 0);
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}
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bool SHMProcess::attach()
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{
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if(d->attached)
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{
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if(!d->locked)
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return suspend();
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return true;
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}
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//cerr << "attach" << endl;// FIXME: throw
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if(!d->GetLocks())
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{
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//cerr << "server is full or not really there!" << endl;
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return false;
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}
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/*
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* Locate the segment.
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*/
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char shmname [256];
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sprintf(shmname,"DFShm-%d",d->process_ID);
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HANDLE shmHandle = OpenFileMapping(FILE_MAP_ALL_ACCESS,false,shmname);
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if(!shmHandle)
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{
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d->FreeLocks();
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//ReleaseMutex(d->DFCLMutex);
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return false; // we couldn't lock it
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}
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/*
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* Attach the segment
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*/
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d->shm_addr = (char *) MapViewOfFile(shmHandle,FILE_MAP_ALL_ACCESS, 0,0, SHM_SIZE);
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if(!d->shm_addr)
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{
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CloseHandle(shmHandle);
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//ReleaseMutex(d->DFCLMutex);
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d->FreeLocks();
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return false; // we couldn't attach the mapping // FIXME: throw
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}
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// we close the handle right here - it's not needed anymore
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CloseHandle(shmHandle);
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d->attached = true;
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if(!suspend())
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{
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UnmapViewOfFile(d->shm_addr);
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d->FreeLocks();
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//cerr << "unable to suspend" << endl;// FIXME: throw
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return false;
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}
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return true;
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}
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bool SHMProcess::detach()
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{
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if(!d->attached) return true;
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if(d->locked)
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{
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resume();
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}
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// detach segment
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UnmapViewOfFile(d->shm_addr);
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// release it for some other client
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//ReleaseMutex(d->DFCLMutex); // we keep the mutex handles
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d->FreeLocks();
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d->attached = false;
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d->locked = false;
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d->shm_addr = false;
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return true;
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}
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void SHMProcess::readSTLVector(const uint32_t address, t_vecTriplet & triplet)
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{
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read(address + d->vector_start, sizeof(triplet), (uint8_t *) &triplet);
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}
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string SHMProcess::readClassName (uint32_t vptr)
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{
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int rtti = Process::readDWord(vptr - 0x4);
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int typeinfo = Process::readDWord(rtti + 0xC);
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string raw = readCString(typeinfo + 0xC); // skips the .?AV
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raw.resize(raw.length() - 2);// trim @@ from end
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return raw;
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}
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string SHMProcess::getPath()
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{
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HMODULE hmod;
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DWORD junk;
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char String[255];
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HANDLE hProcess = OpenProcess( PROCESS_ALL_ACCESS, FALSE, d->process_ID ); //get the handle from the process ID
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EnumProcessModules(hProcess, &hmod, 1 * sizeof(HMODULE), &junk); //get the module from the handle
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GetModuleFileNameEx(hProcess,hmod,String,sizeof(String)); //get the filename from the module
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string out(String);
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return(out.substr(0,out.find_last_of("\\")));
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}
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char * SHMProcess::getSHMStart (void)
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{
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if(!d->locked) throw Error::MemoryAccessDenied(0xdeadbeef);
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return d->shm_addr;
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}
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