mirror of
https://github.com/Detanup01/gbe_fork.git
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334 lines
12 KiB
C++
334 lines
12 KiB
C++
//////////////////////////////////////////////////////////////////////////////
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//
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// Add DLLs to a module import table (uimports.cpp of detours.lib)
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//
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// Microsoft Research Detours Package, Version 4.0.1
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//
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// Copyright (c) Microsoft Corporation. All rights reserved.
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//
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// Note that this file is included into creatwth.cpp one or more times
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// (once for each supported module format).
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//
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#if DETOURS_VERSION != 0x4c0c1 // 0xMAJORcMINORcPATCH
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#error detours.h version mismatch
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#endif
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// UpdateImports32 aka UpdateImports64
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static BOOL UPDATE_IMPORTS_XX(HANDLE hProcess,
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HMODULE hModule,
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__in_ecount(nDlls) LPCSTR *plpDlls,
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DWORD nDlls)
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{
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BOOL fSucceeded = FALSE;
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DWORD cbNew = 0;
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BYTE * pbNew = NULL;
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DWORD i;
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SIZE_T cbRead;
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DWORD n;
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PBYTE pbModule = (PBYTE)hModule;
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IMAGE_DOS_HEADER idh;
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ZeroMemory(&idh, sizeof(idh));
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if (!ReadProcessMemory(hProcess, pbModule, &idh, sizeof(idh), &cbRead)
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|| cbRead < sizeof(idh)) {
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DETOUR_TRACE(("ReadProcessMemory(idh@%p..%p) failed: %lu\n",
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pbModule, pbModule + sizeof(idh), GetLastError()));
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finish:
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if (pbNew != NULL) {
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delete[] pbNew;
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pbNew = NULL;
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}
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return fSucceeded;
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}
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IMAGE_NT_HEADERS_XX inh;
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ZeroMemory(&inh, sizeof(inh));
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if (!ReadProcessMemory(hProcess, pbModule + idh.e_lfanew, &inh, sizeof(inh), &cbRead)
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|| cbRead < sizeof(inh)) {
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DETOUR_TRACE(("ReadProcessMemory(inh@%p..%p) failed: %lu\n",
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pbModule + idh.e_lfanew,
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pbModule + idh.e_lfanew + sizeof(inh),
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GetLastError()));
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goto finish;
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}
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if (inh.OptionalHeader.Magic != IMAGE_NT_OPTIONAL_HDR_MAGIC_XX) {
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DETOUR_TRACE(("Wrong size image (%04x != %04x).\n",
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inh.OptionalHeader.Magic, IMAGE_NT_OPTIONAL_HDR_MAGIC_XX));
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SetLastError(ERROR_INVALID_BLOCK);
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goto finish;
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}
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// Zero out the bound table so loader doesn't use it instead of our new table.
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inh.BOUND_DIRECTORY.VirtualAddress = 0;
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inh.BOUND_DIRECTORY.Size = 0;
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// Find the size of the mapped file.
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DWORD dwSec = idh.e_lfanew +
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FIELD_OFFSET(IMAGE_NT_HEADERS_XX, OptionalHeader) +
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inh.FileHeader.SizeOfOptionalHeader;
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for (i = 0; i < inh.FileHeader.NumberOfSections; i++) {
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IMAGE_SECTION_HEADER ish;
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ZeroMemory(&ish, sizeof(ish));
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if (!ReadProcessMemory(hProcess, pbModule + dwSec + sizeof(ish) * i, &ish,
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sizeof(ish), &cbRead)
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|| cbRead < sizeof(ish)) {
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DETOUR_TRACE(("ReadProcessMemory(ish@%p..%p) failed: %lu\n",
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pbModule + dwSec + sizeof(ish) * i,
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pbModule + dwSec + sizeof(ish) * (i + 1),
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GetLastError()));
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goto finish;
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}
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DETOUR_TRACE(("ish[%lu] : va=%08lx sr=%lu\n", i, ish.VirtualAddress, ish.SizeOfRawData));
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// If the linker didn't suggest an IAT in the data directories, the
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// loader will look for the section of the import directory to be used
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// for this instead. Since we put out new IMPORT_DIRECTORY outside any
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// section boundary, the loader will not find it. So we provide one
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// explicitly to avoid the search.
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//
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if (inh.IAT_DIRECTORY.VirtualAddress == 0 &&
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inh.IMPORT_DIRECTORY.VirtualAddress >= ish.VirtualAddress &&
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inh.IMPORT_DIRECTORY.VirtualAddress < ish.VirtualAddress + ish.SizeOfRawData) {
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inh.IAT_DIRECTORY.VirtualAddress = ish.VirtualAddress;
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inh.IAT_DIRECTORY.Size = ish.SizeOfRawData;
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}
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}
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if (inh.IMPORT_DIRECTORY.VirtualAddress != 0 && inh.IMPORT_DIRECTORY.Size == 0) {
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// Don't worry about changing the PE file,
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// because the load information of the original PE header has been saved and will be restored.
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// The change here is just for the following code to work normally
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PIMAGE_IMPORT_DESCRIPTOR pImageImport = (PIMAGE_IMPORT_DESCRIPTOR)(pbModule + inh.IMPORT_DIRECTORY.VirtualAddress);
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do {
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IMAGE_IMPORT_DESCRIPTOR ImageImport;
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if (!ReadProcessMemory(hProcess, pImageImport, &ImageImport, sizeof(ImageImport), NULL)) {
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DETOUR_TRACE(("ReadProcessMemory failed: %lu\n", GetLastError()));
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goto finish;
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}
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inh.IMPORT_DIRECTORY.Size += sizeof(IMAGE_IMPORT_DESCRIPTOR);
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if (!ImageImport.Name) {
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break;
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}
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++pImageImport;
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} while (TRUE);
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DWORD dwLastError = GetLastError();
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OutputDebugString(TEXT("[This PE file has an import table, but the import table size is marked as 0. This is an error.")
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TEXT("If it is not repaired, the launched program will not work properly, Detours has automatically repaired its import table size for you! ! !]\r\n"));
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if (GetLastError() != dwLastError) {
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SetLastError(dwLastError);
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}
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}
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DETOUR_TRACE((" Imports: %p..%p\n",
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pbModule + inh.IMPORT_DIRECTORY.VirtualAddress,
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pbModule + inh.IMPORT_DIRECTORY.VirtualAddress +
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inh.IMPORT_DIRECTORY.Size));
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// Calculate new import directory size. Note that since inh is from another
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// process, inh could have been corrupted. We need to protect against
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// integer overflow in allocation calculations.
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DWORD nOldDlls = inh.IMPORT_DIRECTORY.Size / sizeof(IMAGE_IMPORT_DESCRIPTOR);
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DWORD obRem;
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if (DWordMult(sizeof(IMAGE_IMPORT_DESCRIPTOR), nDlls, &obRem) != S_OK) {
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DETOUR_TRACE(("too many new DLLs.\n"));
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goto finish;
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}
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DWORD obOld;
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if (DWordAdd(obRem, sizeof(IMAGE_IMPORT_DESCRIPTOR) * nOldDlls, &obOld) != S_OK) {
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DETOUR_TRACE(("DLL entries overflow.\n"));
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goto finish;
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}
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DWORD obTab = PadToDwordPtr(obOld);
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// Check for integer overflow.
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if (obTab < obOld) {
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DETOUR_TRACE(("DLL entries padding overflow.\n"));
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goto finish;
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}
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DWORD stSize;
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if (DWordMult(sizeof(DWORD_XX) * 4, nDlls, &stSize) != S_OK) {
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DETOUR_TRACE(("String table overflow.\n"));
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goto finish;
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}
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DWORD obDll;
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if (DWordAdd(obTab, stSize, &obDll) != S_OK) {
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DETOUR_TRACE(("Import table size overflow\n"));
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goto finish;
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}
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DWORD obStr = obDll;
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cbNew = obStr;
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for (n = 0; n < nDlls; n++) {
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if (DWordAdd(cbNew, PadToDword((DWORD)strlen(plpDlls[n]) + 1), &cbNew) != S_OK) {
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DETOUR_TRACE(("Overflow adding string table entry\n"));
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goto finish;
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}
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}
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pbNew = new BYTE [cbNew];
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if (pbNew == NULL) {
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DETOUR_TRACE(("new BYTE [cbNew] failed.\n"));
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goto finish;
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}
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ZeroMemory(pbNew, cbNew);
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PBYTE pbBase = pbModule;
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PBYTE pbNext = pbBase
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+ inh.OptionalHeader.BaseOfCode
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+ inh.OptionalHeader.SizeOfCode
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+ inh.OptionalHeader.SizeOfInitializedData
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+ inh.OptionalHeader.SizeOfUninitializedData;
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if (pbBase < pbNext) {
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pbBase = pbNext;
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}
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DETOUR_TRACE(("pbBase = %p\n", pbBase));
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PBYTE pbNewIid = FindAndAllocateNearBase(hProcess, pbModule, pbBase, cbNew);
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if (pbNewIid == NULL) {
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DETOUR_TRACE(("FindAndAllocateNearBase failed.\n"));
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goto finish;
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}
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PIMAGE_IMPORT_DESCRIPTOR piid = (PIMAGE_IMPORT_DESCRIPTOR)pbNew;
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IMAGE_THUNK_DATAXX *pt = NULL;
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DWORD obBase = (DWORD)(pbNewIid - pbModule);
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DWORD dwProtect = 0;
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if (inh.IMPORT_DIRECTORY.VirtualAddress != 0) {
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// Read the old import directory if it exists.
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DETOUR_TRACE(("IMPORT_DIRECTORY perms=%lx\n", dwProtect));
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if (!ReadProcessMemory(hProcess,
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pbModule + inh.IMPORT_DIRECTORY.VirtualAddress,
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&piid[nDlls],
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nOldDlls * sizeof(IMAGE_IMPORT_DESCRIPTOR), &cbRead)
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|| cbRead < nOldDlls * sizeof(IMAGE_IMPORT_DESCRIPTOR)) {
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DETOUR_TRACE(("ReadProcessMemory(imports) failed: %lu\n", GetLastError()));
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goto finish;
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}
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}
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for (n = 0; n < nDlls; n++) {
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HRESULT hrRet = StringCchCopyA((char*)pbNew + obStr, cbNew - obStr, plpDlls[n]);
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if (FAILED(hrRet)) {
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DETOUR_TRACE(("StringCchCopyA failed: %08lx\n", hrRet));
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goto finish;
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}
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// After copying the string, we patch up the size "??" bits if any.
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hrRet = ReplaceOptionalSizeA((char*)pbNew + obStr,
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cbNew - obStr,
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DETOURS_STRINGIFY(DETOURS_BITS_XX));
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if (FAILED(hrRet)) {
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DETOUR_TRACE(("ReplaceOptionalSizeA failed: %08lx\n", hrRet));
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goto finish;
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}
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DWORD nOffset = obTab + (sizeof(IMAGE_THUNK_DATAXX) * (4 * n));
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piid[n].OriginalFirstThunk = obBase + nOffset;
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// We need 2 thunks for the import table and 2 thunks for the IAT.
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// One for an ordinal import and one to mark the end of the list.
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pt = ((IMAGE_THUNK_DATAXX*)(pbNew + nOffset));
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pt[0].u1.Ordinal = IMAGE_ORDINAL_FLAG_XX + 1;
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pt[1].u1.Ordinal = 0;
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nOffset = obTab + (sizeof(IMAGE_THUNK_DATAXX) * ((4 * n) + 2));
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piid[n].FirstThunk = obBase + nOffset;
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pt = ((IMAGE_THUNK_DATAXX*)(pbNew + nOffset));
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pt[0].u1.Ordinal = IMAGE_ORDINAL_FLAG_XX + 1;
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pt[1].u1.Ordinal = 0;
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piid[n].TimeDateStamp = 0;
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piid[n].ForwarderChain = 0;
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piid[n].Name = obBase + obStr;
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obStr += PadToDword((DWORD)strlen(plpDlls[n]) + 1);
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}
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_Analysis_assume_(obStr <= cbNew);
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#if 0
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for (i = 0; i < nDlls + nOldDlls; i++) {
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DETOUR_TRACE(("%8d. Look=%08x Time=%08x Fore=%08x Name=%08x Addr=%08x\n",
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i,
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piid[i].OriginalFirstThunk,
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piid[i].TimeDateStamp,
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piid[i].ForwarderChain,
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piid[i].Name,
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piid[i].FirstThunk));
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if (piid[i].OriginalFirstThunk == 0 && piid[i].FirstThunk == 0) {
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break;
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}
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}
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#endif
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if (!WriteProcessMemory(hProcess, pbNewIid, pbNew, obStr, NULL)) {
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DETOUR_TRACE(("WriteProcessMemory(iid) failed: %lu\n", GetLastError()));
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goto finish;
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}
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DETOUR_TRACE(("obBaseBef = %08lx..%08lx\n",
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inh.IMPORT_DIRECTORY.VirtualAddress,
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inh.IMPORT_DIRECTORY.VirtualAddress + inh.IMPORT_DIRECTORY.Size));
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DETOUR_TRACE(("obBaseAft = %08lx..%08lx\n", obBase, obBase + obStr));
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// In this case the file didn't have an import directory in first place,
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// so we couldn't fix the missing IAT above. We still need to explicitly
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// provide an IAT to prevent to loader from looking for one.
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//
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if (inh.IAT_DIRECTORY.VirtualAddress == 0) {
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inh.IAT_DIRECTORY.VirtualAddress = obBase;
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inh.IAT_DIRECTORY.Size = cbNew;
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}
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inh.IMPORT_DIRECTORY.VirtualAddress = obBase;
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inh.IMPORT_DIRECTORY.Size = cbNew;
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/////////////////////// Update the NT header for the new import directory.
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//
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if (!DetourVirtualProtectSameExecuteEx(hProcess, pbModule, inh.OptionalHeader.SizeOfHeaders,
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PAGE_EXECUTE_READWRITE, &dwProtect)) {
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DETOUR_TRACE(("VirtualProtectEx(inh) write failed: %lu\n", GetLastError()));
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goto finish;
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}
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inh.OptionalHeader.CheckSum = 0;
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if (!WriteProcessMemory(hProcess, pbModule, &idh, sizeof(idh), NULL)) {
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DETOUR_TRACE(("WriteProcessMemory(idh) failed: %lu\n", GetLastError()));
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goto finish;
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}
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DETOUR_TRACE(("WriteProcessMemory(idh:%p..%p)\n", pbModule, pbModule + sizeof(idh)));
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if (!WriteProcessMemory(hProcess, pbModule + idh.e_lfanew, &inh, sizeof(inh), NULL)) {
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DETOUR_TRACE(("WriteProcessMemory(inh) failed: %lu\n", GetLastError()));
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goto finish;
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}
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DETOUR_TRACE(("WriteProcessMemory(inh:%p..%p)\n",
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pbModule + idh.e_lfanew,
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pbModule + idh.e_lfanew + sizeof(inh)));
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if (!VirtualProtectEx(hProcess, pbModule, inh.OptionalHeader.SizeOfHeaders,
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dwProtect, &dwProtect)) {
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DETOUR_TRACE(("VirtualProtectEx(idh) restore failed: %lu\n", GetLastError()));
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goto finish;
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}
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fSucceeded = TRUE;
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goto finish;
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}
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