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478 lines
14 KiB
478 lines
14 KiB
/* |
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lib_custom_win.c - win32 custom dlls loader |
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Copyright (C) 2008 Uncle Mike |
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This program is free software: you can redistribute it and/or modify |
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it under the terms of the GNU General Public License as published by |
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the Free Software Foundation, either version 3 of the License, or |
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(at your option) any later version. |
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This program is distributed in the hope that it will be useful, |
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but WITHOUT ANY WARRANTY; without even the implied warranty of |
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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GNU General Public License for more details. |
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*/ |
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#include "common.h" |
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#if XASH_LIB == LIB_WIN32 && XASH_X86 |
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#include "lib_win.h" |
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#define NUMBER_OF_DIRECTORY_ENTRIES 16 |
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#ifndef IMAGE_SIZEOF_BASE_RELOCATION |
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#define IMAGE_SIZEOF_BASE_RELOCATION ( sizeof( IMAGE_BASE_RELOCATION )) |
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#endif |
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typedef struct |
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{ |
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PIMAGE_NT_HEADERS headers; |
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byte *codeBase; |
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void **modules; |
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int numModules; |
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int initialized; |
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} MEMORYMODULE, *PMEMORYMODULE; |
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|
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// Protection flags for memory pages (Executable, Readable, Writeable) |
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static int ProtectionFlags[2][2][2] = |
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{ |
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{ |
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{ PAGE_NOACCESS, PAGE_WRITECOPY }, // not executable |
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{ PAGE_READONLY, PAGE_READWRITE }, |
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}, |
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{ |
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{ PAGE_EXECUTE, PAGE_EXECUTE_WRITECOPY }, // executable |
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{ PAGE_EXECUTE_READ, PAGE_EXECUTE_READWRITE }, |
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}, |
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}; |
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typedef BOOL (WINAPI *DllEntryProc)( HINSTANCE hinstDLL, DWORD fdwReason, LPVOID lpReserved ); |
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#define GET_HEADER_DICTIONARY( module, idx ) &(module)->headers->OptionalHeader.DataDirectory[idx] |
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static void CopySections( const byte *data, PIMAGE_NT_HEADERS old_headers, PMEMORYMODULE module ) |
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{ |
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PIMAGE_SECTION_HEADER section = IMAGE_FIRST_SECTION( module->headers ); |
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byte *codeBase = module->codeBase; |
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int i, size; |
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byte *dest; |
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for( i = 0; i < module->headers->FileHeader.NumberOfSections; i++, section++ ) |
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{ |
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if( section->SizeOfRawData == 0 ) |
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{ |
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// section doesn't contain data in the dll itself, but may define |
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// uninitialized data |
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size = old_headers->OptionalHeader.SectionAlignment; |
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if( size > 0 ) |
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{ |
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dest = (byte *)VirtualAlloc((byte *)CALCULATE_ADDRESS(codeBase, section->VirtualAddress), size, MEM_COMMIT, PAGE_READWRITE ); |
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section->Misc.PhysicalAddress = (DWORD)dest; |
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memset( dest, 0, size ); |
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} |
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// section is empty |
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continue; |
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} |
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// commit memory block and copy data from dll |
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dest = (byte *)VirtualAlloc((byte *)CALCULATE_ADDRESS(codeBase, section->VirtualAddress), section->SizeOfRawData, MEM_COMMIT, PAGE_READWRITE ); |
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memcpy( dest, (byte *)CALCULATE_ADDRESS(data, section->PointerToRawData), section->SizeOfRawData ); |
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section->Misc.PhysicalAddress = (DWORD)dest; |
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} |
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} |
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static void FreeSections( PIMAGE_NT_HEADERS old_headers, PMEMORYMODULE module ) |
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{ |
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PIMAGE_SECTION_HEADER section = IMAGE_FIRST_SECTION(module->headers); |
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byte *codeBase = module->codeBase; |
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int i, size; |
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for( i = 0; i < module->headers->FileHeader.NumberOfSections; i++, section++ ) |
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{ |
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if( section->SizeOfRawData == 0 ) |
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{ |
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size = old_headers->OptionalHeader.SectionAlignment; |
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if( size > 0 ) |
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{ |
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VirtualFree((byte *)CALCULATE_ADDRESS( codeBase, section->VirtualAddress ), size, MEM_DECOMMIT ); |
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section->Misc.PhysicalAddress = 0; |
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} |
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continue; |
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} |
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VirtualFree((byte *)CALCULATE_ADDRESS( codeBase, section->VirtualAddress ), section->SizeOfRawData, MEM_DECOMMIT ); |
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section->Misc.PhysicalAddress = 0; |
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} |
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} |
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static void FinalizeSections( MEMORYMODULE *module ) |
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{ |
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PIMAGE_SECTION_HEADER section = IMAGE_FIRST_SECTION( module->headers ); |
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int i; |
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// loop through all sections and change access flags |
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for( i = 0; i < module->headers->FileHeader.NumberOfSections; i++, section++ ) |
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{ |
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DWORD protect, oldProtect, size; |
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int executable = (section->Characteristics & IMAGE_SCN_MEM_EXECUTE) != 0; |
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int readable = (section->Characteristics & IMAGE_SCN_MEM_READ) != 0; |
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int writeable = (section->Characteristics & IMAGE_SCN_MEM_WRITE) != 0; |
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if( section->Characteristics & IMAGE_SCN_MEM_DISCARDABLE ) |
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{ |
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// section is not needed any more and can safely be freed |
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VirtualFree((LPVOID)section->Misc.PhysicalAddress, section->SizeOfRawData, MEM_DECOMMIT); |
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continue; |
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} |
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// determine protection flags based on characteristics |
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protect = ProtectionFlags[executable][readable][writeable]; |
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if( section->Characteristics & IMAGE_SCN_MEM_NOT_CACHED ) |
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protect |= PAGE_NOCACHE; |
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// determine size of region |
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size = section->SizeOfRawData; |
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if( size == 0 ) |
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{ |
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if( section->Characteristics & IMAGE_SCN_CNT_INITIALIZED_DATA ) |
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size = module->headers->OptionalHeader.SizeOfInitializedData; |
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else if( section->Characteristics & IMAGE_SCN_CNT_UNINITIALIZED_DATA ) |
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size = module->headers->OptionalHeader.SizeOfUninitializedData; |
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} |
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if( size > 0 ) |
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{ |
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// change memory access flags |
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if( !VirtualProtect((LPVOID)section->Misc.PhysicalAddress, size, protect, &oldProtect )) |
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Sys_Error( "error protecting memory page\n" ); |
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} |
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} |
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} |
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static void PerformBaseRelocation( MEMORYMODULE *module, DWORD delta ) |
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{ |
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PIMAGE_DATA_DIRECTORY directory = GET_HEADER_DICTIONARY( module, IMAGE_DIRECTORY_ENTRY_BASERELOC ); |
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byte *codeBase = module->codeBase; |
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DWORD i; |
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if( directory->Size > 0 ) |
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{ |
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PIMAGE_BASE_RELOCATION relocation = (PIMAGE_BASE_RELOCATION)CALCULATE_ADDRESS( codeBase, directory->VirtualAddress ); |
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for( ; relocation->VirtualAddress > 0; ) |
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{ |
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byte *dest = (byte *)CALCULATE_ADDRESS( codeBase, relocation->VirtualAddress ); |
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word *relInfo = (word *)((byte *)relocation + IMAGE_SIZEOF_BASE_RELOCATION ); |
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for( i = 0; i<((relocation->SizeOfBlock-IMAGE_SIZEOF_BASE_RELOCATION) / 2); i++, relInfo++ ) |
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{ |
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DWORD *patchAddrHL; |
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int type, offset; |
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// the upper 4 bits define the type of relocation |
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type = *relInfo >> 12; |
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// the lower 12 bits define the offset |
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offset = *relInfo & 0xfff; |
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switch( type ) |
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{ |
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case IMAGE_REL_BASED_ABSOLUTE: |
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// skip relocation |
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break; |
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case IMAGE_REL_BASED_HIGHLOW: |
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// change complete 32 bit address |
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patchAddrHL = (DWORD *)CALCULATE_ADDRESS( dest, offset ); |
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*patchAddrHL += delta; |
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break; |
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default: |
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Con_Reportf( S_ERROR "PerformBaseRelocation: unknown relocation: %d\n", type ); |
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break; |
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} |
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} |
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// advance to next relocation block |
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relocation = (PIMAGE_BASE_RELOCATION)CALCULATE_ADDRESS( relocation, relocation->SizeOfBlock ); |
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} |
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} |
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} |
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FARPROC MemoryGetProcAddress( void *module, const char *name ) |
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{ |
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PIMAGE_DATA_DIRECTORY directory = GET_HEADER_DICTIONARY((MEMORYMODULE *)module, IMAGE_DIRECTORY_ENTRY_EXPORT ); |
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byte *codeBase = ((PMEMORYMODULE)module)->codeBase; |
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PIMAGE_EXPORT_DIRECTORY exports; |
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int idx = -1; |
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DWORD i, *nameRef; |
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WORD *ordinal; |
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if( directory->Size == 0 ) |
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{ |
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// no export table found |
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return NULL; |
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} |
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exports = (PIMAGE_EXPORT_DIRECTORY)CALCULATE_ADDRESS( codeBase, directory->VirtualAddress ); |
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if( exports->NumberOfNames == 0 || exports->NumberOfFunctions == 0 ) |
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{ |
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// DLL doesn't export anything |
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return NULL; |
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} |
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// search function name in list of exported names |
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nameRef = (DWORD *)CALCULATE_ADDRESS( codeBase, exports->AddressOfNames ); |
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ordinal = (WORD *)CALCULATE_ADDRESS( codeBase, exports->AddressOfNameOrdinals ); |
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for( i = 0; i < exports->NumberOfNames; i++, nameRef++, ordinal++ ) |
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{ |
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// GetProcAddress case insensative ????? |
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if( !Q_stricmp( name, (const char *)CALCULATE_ADDRESS( codeBase, *nameRef ))) |
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{ |
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idx = *ordinal; |
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break; |
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} |
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} |
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if( idx == -1 ) |
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{ |
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// exported symbol not found |
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return NULL; |
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} |
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if((DWORD)idx > exports->NumberOfFunctions ) |
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{ |
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// name <-> ordinal number don't match |
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return NULL; |
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} |
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// addressOfFunctions contains the RVAs to the "real" functions |
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return (FARPROC)CALCULATE_ADDRESS( codeBase, *(DWORD *)CALCULATE_ADDRESS( codeBase, exports->AddressOfFunctions + (idx * 4))); |
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} |
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static int BuildImportTable( MEMORYMODULE *module ) |
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{ |
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PIMAGE_DATA_DIRECTORY directory = GET_HEADER_DICTIONARY( module, IMAGE_DIRECTORY_ENTRY_IMPORT ); |
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byte *codeBase = module->codeBase; |
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int result = 1; |
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if( directory->Size > 0 ) |
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{ |
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PIMAGE_IMPORT_DESCRIPTOR importDesc = (PIMAGE_IMPORT_DESCRIPTOR)CALCULATE_ADDRESS( codeBase, directory->VirtualAddress ); |
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for( ; !IsBadReadPtr( importDesc, sizeof( IMAGE_IMPORT_DESCRIPTOR )) && importDesc->Name; importDesc++ ) |
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{ |
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DWORD *thunkRef, *funcRef; |
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LPCSTR libname; |
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void *handle; |
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libname = (LPCSTR)CALCULATE_ADDRESS( codeBase, importDesc->Name ); |
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handle = COM_LoadLibrary( libname, false, true ); |
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if( handle == NULL ) |
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{ |
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Con_Printf( S_ERROR "couldn't load library %s\n", libname ); |
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result = 0; |
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break; |
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} |
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module->modules = (void *)Mem_Realloc( host.mempool, module->modules, (module->numModules + 1) * (sizeof( void* ))); |
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module->modules[module->numModules++] = handle; |
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if( importDesc->OriginalFirstThunk ) |
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{ |
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thunkRef = (DWORD *)CALCULATE_ADDRESS( codeBase, importDesc->OriginalFirstThunk ); |
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funcRef = (DWORD *)CALCULATE_ADDRESS( codeBase, importDesc->FirstThunk ); |
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} |
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else |
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{ |
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// no hint table |
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thunkRef = (DWORD *)CALCULATE_ADDRESS( codeBase, importDesc->FirstThunk ); |
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funcRef = (DWORD *)CALCULATE_ADDRESS( codeBase, importDesc->FirstThunk ); |
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} |
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for( ; *thunkRef; thunkRef++, funcRef++ ) |
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{ |
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LPCSTR funcName; |
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if( IMAGE_SNAP_BY_ORDINAL( *thunkRef )) |
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{ |
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funcName = (LPCSTR)IMAGE_ORDINAL( *thunkRef ); |
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*funcRef = (DWORD)COM_GetProcAddress( handle, funcName ); |
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} |
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else |
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{ |
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PIMAGE_IMPORT_BY_NAME thunkData = (PIMAGE_IMPORT_BY_NAME)CALCULATE_ADDRESS( codeBase, *thunkRef ); |
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funcName = (LPCSTR)&thunkData->Name; |
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*funcRef = (DWORD)COM_GetProcAddress( handle, funcName ); |
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} |
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if( *funcRef == 0 ) |
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{ |
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Con_Printf( S_ERROR "%s unable to find address: %s\n", libname, funcName ); |
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result = 0; |
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break; |
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} |
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} |
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if( !result ) break; |
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} |
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} |
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return result; |
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} |
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void MemoryFreeLibrary( void *hInstance ) |
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{ |
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MEMORYMODULE *module = (MEMORYMODULE *)hInstance; |
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if( module != NULL ) |
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{ |
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int i; |
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if( module->initialized != 0 ) |
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{ |
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// notify library about detaching from process |
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DllEntryProc DllEntry = (DllEntryProc)CALCULATE_ADDRESS( module->codeBase, module->headers->OptionalHeader.AddressOfEntryPoint ); |
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(*DllEntry)((HINSTANCE)module->codeBase, DLL_PROCESS_DETACH, 0 ); |
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module->initialized = 0; |
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} |
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if( module->modules != NULL ) |
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{ |
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// free previously opened libraries |
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for( i = 0; i < module->numModules; i++ ) |
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{ |
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if( module->modules[i] != NULL ) |
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COM_FreeLibrary( module->modules[i] ); |
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} |
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Mem_Free( module->modules ); // Mem_Realloc end |
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} |
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FreeSections( module->headers, module ); |
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if( module->codeBase != NULL ) |
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{ |
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// release memory of library |
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VirtualFree( module->codeBase, 0, MEM_RELEASE ); |
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} |
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HeapFree( GetProcessHeap(), 0, module ); |
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} |
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} |
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void *MemoryLoadLibrary( const char *name ) |
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{ |
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MEMORYMODULE *result = NULL; |
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PIMAGE_DOS_HEADER dos_header; |
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PIMAGE_NT_HEADERS old_header; |
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byte *code, *headers; |
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DWORD locationDelta; |
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DllEntryProc DllEntry; |
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string errorstring; |
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qboolean successfull; |
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void *data = NULL; |
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data = FS_LoadFile( name, NULL, false ); |
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if( !data ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "couldn't load %s", name ); |
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goto library_error; |
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} |
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dos_header = (PIMAGE_DOS_HEADER)data; |
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if( dos_header->e_magic != IMAGE_DOS_SIGNATURE ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "%s it's not a valid executable file", name ); |
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goto library_error; |
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} |
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old_header = (PIMAGE_NT_HEADERS)&((const byte *)(data))[dos_header->e_lfanew]; |
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if( old_header->Signature != IMAGE_NT_SIGNATURE ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "%s missing PE header", name ); |
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goto library_error; |
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} |
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// reserve memory for image of library |
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code = (byte *)VirtualAlloc((LPVOID)(old_header->OptionalHeader.ImageBase), old_header->OptionalHeader.SizeOfImage, MEM_RESERVE, PAGE_READWRITE ); |
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if( code == NULL ) |
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{ |
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// try to allocate memory at arbitrary position |
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code = (byte *)VirtualAlloc( NULL, old_header->OptionalHeader.SizeOfImage, MEM_RESERVE, PAGE_READWRITE ); |
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} |
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if( code == NULL ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "%s can't reserve memory", name ); |
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goto library_error; |
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} |
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result = (MEMORYMODULE *)HeapAlloc( GetProcessHeap(), 0, sizeof( MEMORYMODULE )); |
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result->codeBase = code; |
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result->numModules = 0; |
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result->modules = NULL; |
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result->initialized = 0; |
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// XXX: is it correct to commit the complete memory region at once? |
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// calling DllEntry raises an exception if we don't... |
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VirtualAlloc( code, old_header->OptionalHeader.SizeOfImage, MEM_COMMIT, PAGE_READWRITE ); |
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// commit memory for headers |
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headers = (byte *)VirtualAlloc( code, old_header->OptionalHeader.SizeOfHeaders, MEM_COMMIT, PAGE_READWRITE ); |
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// copy PE header to code |
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memcpy( headers, dos_header, dos_header->e_lfanew + old_header->OptionalHeader.SizeOfHeaders ); |
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result->headers = (PIMAGE_NT_HEADERS)&((const byte *)(headers))[dos_header->e_lfanew]; |
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// update position |
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result->headers->OptionalHeader.ImageBase = (DWORD)code; |
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// copy sections from DLL file block to new memory location |
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CopySections( data, old_header, result ); |
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// adjust base address of imported data |
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locationDelta = (DWORD)(code - old_header->OptionalHeader.ImageBase); |
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if( locationDelta != 0 ) PerformBaseRelocation( result, locationDelta ); |
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// load required dlls and adjust function table of imports |
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if( !BuildImportTable( result )) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "%s failed to build import table", name ); |
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goto library_error; |
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} |
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// mark memory pages depending on section headers and release |
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// sections that are marked as "discardable" |
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FinalizeSections( result ); |
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// get entry point of loaded library |
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if( result->headers->OptionalHeader.AddressOfEntryPoint != 0 ) |
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{ |
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DllEntry = (DllEntryProc)CALCULATE_ADDRESS( code, result->headers->OptionalHeader.AddressOfEntryPoint ); |
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if( DllEntry == 0 ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "%s has no entry point", name ); |
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goto library_error; |
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} |
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// notify library about attaching to process |
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successfull = (*DllEntry)((HINSTANCE)code, DLL_PROCESS_ATTACH, 0 ); |
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if( !successfull ) |
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{ |
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Q_snprintf( errorstring, sizeof( errorstring ), "can't attach library %s", name ); |
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goto library_error; |
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} |
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result->initialized = 1; |
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} |
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Mem_Free( data ); // release memory |
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return (void *)result; |
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library_error: |
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// cleanup |
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if( data ) Mem_Free( data ); |
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MemoryFreeLibrary( result ); |
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Con_Printf( S_ERROR "LoadLibrary: %s\n", errorstring ); |
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return NULL; |
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} |
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#endif // XASH_LIB == LIB_WIN32 && XASH_X86
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