mirror of
https://github.com/reactos/reactos.git
synced 2024-11-19 13:33:42 +00:00
564 lines
22 KiB
C++
564 lines
22 KiB
C++
/*
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* PROJECT: ReactOS API tests
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* LICENSE: LGPLv2.1+ - See COPYING.LIB in the top level directory
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* PURPOSE: Tests for delayload
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* PROGRAMMER: Mark Jansen
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*/
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#include <apitest.h>
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#include <apitest.h>
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#include <strsafe.h>
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#include <delayimp.h>
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/* Some libraries to test against */
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#include <mmsystem.h>
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#include <winver.h>
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#include <shlwapi.h>
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#include <intshcut.h>
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#include <sfc.h>
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#include <imagehlp.h>
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#include <mmddk.h>
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#include <pseh/pseh2.h>
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/* Compatibility with the MS defines */
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#ifndef FACILITY_VISUALCPP
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#define FACILITY_VISUALCPP ((LONG)0x6d)
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#endif
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#ifndef VcppException
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#define VcppException(sev,err) ((sev) | (FACILITY_VISUALCPP<<16) | err)
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#endif
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#ifdef __REACTOS__
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#define WINMM_DLLNAME "winmm.dll"
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#else
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#define WINMM_DLLNAME "WINMM.dll"
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#endif
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bool g_BreakFunctionName = false;
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bool g_BrokenFunctionName = false;
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bool g_BypassMost = false;
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bool g_ExceptionIsModule = false;
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bool g_ImportByName = true;
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const char* g_ExpectedDll = NULL;
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const char* g_ExpectedName = NULL;
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char g_Target[100] = { 0 };
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char* target(PDelayLoadInfo pdli)
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{
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if (g_Target[0] == '\0' && pdli)
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{
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if (pdli->dlp.fImportByName)
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sprintf(g_Target, "%s!%s", pdli->szDll, pdli->dlp.szProcName);
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else
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sprintf(g_Target, "%s!#%lu", pdli->szDll, pdli->dlp.dwOrdinal);
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}
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return g_Target;
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}
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struct UnProtect
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{
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UnProtect(PVOID addr)
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:mAddr(NULL), mProt(0)
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{
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if (IsBadWritePtr(addr, 1))
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{
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mAddr = addr;
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VirtualProtect(addr, 1, PAGE_EXECUTE_READWRITE, &mProt);
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}
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}
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~UnProtect()
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{
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DWORD dwOld;
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if (mAddr)
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VirtualProtect(mAddr, 1, mProt, &dwOld);
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}
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PVOID mAddr;
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DWORD mProt;
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};
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unsigned* g_DliHookExpected = NULL;
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size_t g_DliHookIndex = 0;
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#define LAST_DLI 333
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static void SetExpectedDli(unsigned* order)
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{
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g_DliHookExpected = order;
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g_DliHookIndex = 0;
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g_Target[0] = '\0';
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}
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static void CheckDli_imp(unsigned dliNotify, PDelayLoadInfo pdli, BOOL ErrorHandler)
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{
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if (!g_DliHookExpected) return;
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winetest_ok(dliNotify == g_DliHookExpected[g_DliHookIndex], "Expected dliNotify to be %u, was: %u for %s\n",
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g_DliHookExpected[g_DliHookIndex], dliNotify, target(pdli));
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if (ErrorHandler)
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{
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winetest_ok(dliNotify == dliFailGetProc || dliNotify == dliFailLoadLib,
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"Expected code %u to be processed by the Hook, not the ErrorHandler for %s\n", dliNotify, target(pdli));
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}
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else
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{
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winetest_ok(dliNotify == dliStartProcessing || dliNotify == dliNotePreLoadLibrary ||
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dliNotify == dliNotePreGetProcAddress || dliNotify == dliNoteEndProcessing,
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"Expected code %u to be processed by the ErrorHandler, not the Hook for %s\n", dliNotify, target(pdli));
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}
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if (g_DliHookExpected[g_DliHookIndex] != LAST_DLI)
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g_DliHookIndex++;
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}
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static void CheckDliDone_imp()
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{
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if (!g_DliHookExpected) return;
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winetest_ok(LAST_DLI == g_DliHookExpected[g_DliHookIndex],
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"Expected g_DliHookExpected[g_DliHookIndex] to be %u, was: %u for %s\n",
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LAST_DLI, g_DliHookExpected[g_DliHookIndex], target(NULL));
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g_DliHookExpected = NULL;
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g_Target[0] = '\0';
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}
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#define CheckDli (winetest_set_location(__FILE__, __LINE__), 0) ? (void)0 : CheckDli_imp
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#define CheckDliDone (winetest_set_location(__FILE__, __LINE__), 0) ? (void)0 : CheckDliDone_imp
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/* Replacement functions */
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INT_PTR WINAPI MyFunction()
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{
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return 123;
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}
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BOOL WINAPI MySfcIsKeyProtected(HKEY KeyHandle, LPCWSTR SubKeyName, REGSAM KeySam)
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{
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return 12345;
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}
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static HMODULE g_VersionDll;
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FARPROC WINAPI DliHook(unsigned dliNotify, PDelayLoadInfo pdli)
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{
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ok(pdli && pdli->cb >= 36, "Expected a valid pointer with a struct that is big enough: %p, %lu\n",
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pdli, pdli ? pdli->cb : 0u);
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if (!pdli || pdli->cb < 36) return NULL;
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CheckDli(dliNotify, pdli, FALSE);
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if (g_BreakFunctionName && pdli->dlp.fImportByName)
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{
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g_BreakFunctionName = false;
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g_BrokenFunctionName = true;
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char* procname = (char*)pdli->dlp.szProcName;
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UnProtect prot(procname);
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char c = procname[0];
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procname[0] = isupper(c) ? tolower(c) : toupper(c);
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}
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/* Validate dll name when required */
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if (g_ExpectedDll && g_ExpectedName && !g_BrokenFunctionName)
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{
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ok(!strcmp(g_ExpectedDll, pdli->szDll), "Expected szDll to be '%s', but was: '%s'\n", g_ExpectedDll, pdli->szDll);
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ok(pdli->dlp.fImportByName, "Expected import by name (%s!%s)\n", g_ExpectedDll, g_ExpectedName);
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if (pdli->dlp.fImportByName)
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{
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ok(!strcmp(g_ExpectedName, pdli->dlp.szProcName), "Expected szProcName to be '%s', but was: '%s'\n",
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g_ExpectedName, pdli->dlp.szProcName);
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}
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}
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if (dliNotify == dliStartProcessing)
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{
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/* Test loadlib fail */
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if (!_stricmp(pdli->szDll, "sfc_os.dll"))
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{
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char* dll = (char*)pdli->szDll;
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UnProtect u(dll);
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dll[0] = 'l'; dll[1] = '_'; dll[2] = 'm';
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}
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if (!_stricmp(pdli->szDll, "imagehlp.dll"))
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{
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char* dll = (char*)pdli->szDll;
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UnProtect u(dll);
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dll[0] = 'x'; dll[1] = 'x'; dll[2] = 'x'; dll[3] = 'x'; dll[4] = 'x';
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}
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/* Test bypass */
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if (!_stricmp(pdli->szDll, "dbghelp.dll"))
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return MyFunction;
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}
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else if (dliNotify == dliNotePreLoadLibrary)
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{
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/* Show that this value is actually used! */
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if (!_stricmp(pdli->szDll, "version.dll"))
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{
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g_VersionDll = LoadLibraryA("version.dll");
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return (FARPROC)1;
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}
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}
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else if (dliNotify == dliNotePreGetProcAddress)
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{
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if (pdli->dlp.fImportByName && !strcmp(pdli->dlp.szProcName, "SfcIsKeyProtected"))
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{
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return (FARPROC)MySfcIsKeyProtected;
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}
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}
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/* Parameter validation */
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ok(pdli->ppfn != NULL, "Expected ppfn to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->szDll != NULL, "Expected szDll to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->dwLastError == ERROR_SUCCESS,
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"Expected dwLastError to be ERROR_SUCCESS, was: %lu for %s\n", pdli->dwLastError, target(pdli));
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ok(g_ImportByName == !!pdli->dlp.fImportByName, "Expected pdli->dlp.fImportByName to equal g_ImportByname\n");
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if (pdli->dlp.fImportByName)
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ok(pdli->dlp.szProcName != NULL, "Expected szProcName to be valid, was NULL for %s\n", target(pdli));
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else
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ok(pdli->dlp.dwOrdinal != 0, "Expected dwOrdinal to be valid, was NULL for %s\n", target(pdli));
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switch(dliNotify)
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{
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case dliStartProcessing:
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ok(pdli->hmodCur == NULL, "Expected hmodCur to be NULL, was: %p for %s\n", pdli->hmodCur, target(pdli));
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ok(pdli->pfnCur == NULL, "Expected pfnCur to be NULL, was: %p for %s\n", pdli->pfnCur, target(pdli));
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break;
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case dliNotePreLoadLibrary:
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ok(pdli->hmodCur == NULL, "Expected hmodCur to be NULL, was: %p for %s\n", pdli->hmodCur, target(pdli));
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ok(pdli->pfnCur == NULL, "Expected pfnCur to be NULL, was: %p for %s\n", pdli->pfnCur, target(pdli));
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break;
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case dliNotePreGetProcAddress:
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ok(pdli->hmodCur != NULL, "Expected hmodCur to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->pfnCur == NULL, "Expected pfnCur to be NULL, was: %p for %s\n", pdli->pfnCur, target(pdli));
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break;
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case dliNoteEndProcessing:
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if (!g_BypassMost)
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ok(pdli->hmodCur != NULL, "Expected hmodCur to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->pfnCur != NULL, "Expected pfnCur to be a valid pointer, was NULL for %s\n", target(pdli));
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if (g_ExpectedDll && g_ExpectedName && !g_BrokenFunctionName)
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{
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FARPROC targetProc = GetProcAddress(GetModuleHandleA(g_ExpectedDll), g_ExpectedName);
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ok(targetProc != NULL, "This should not happen, the function i need is unavail! (%s!%s)\n",
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g_ExpectedDll, g_ExpectedName);
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ok(targetProc == pdli->pfnCur, "Expected pfnCur to be %p, was %p for %s\n", targetProc, pdli->pfnCur, target(pdli));
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ok(pdli->ppfn && targetProc == *pdli->ppfn,
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"Expected ppfn to be valid and to result in %p, was: %p(%p) for %s\n",
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target, pdli->ppfn, pdli->ppfn ? *pdli->ppfn : NULL, target(pdli));
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}
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break;
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default:
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break;
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}
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return NULL;
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}
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FARPROC WINAPI DliFailHook(unsigned dliNotify, PDelayLoadInfo pdli)
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{
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ok(pdli && pdli->cb >= 36,
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"Expected a valid pointer with a struct that is big enough: %p, %lu\n", pdli, pdli ? pdli->cb : 0u);
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if (!pdli || pdli->cb < 36) return NULL;
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CheckDli(dliNotify, pdli, TRUE);
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/* Redirections / fixes */
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if (dliNotify == dliFailLoadLib)
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{
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if (!_stricmp(pdli->szDll, "l_m_os.dll"))
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return (FARPROC)LoadLibraryA("sfc_os.dll");
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}
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else if (dliNotify == dliFailGetProc)
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{
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if (pdli->dlp.fImportByName && pdli->hmodCur == (HMODULE)1)
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{
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return GetProcAddress(g_VersionDll, pdli->dlp.szProcName);
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}
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}
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/* Parameter validation */
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ok(pdli->ppfn != NULL, "Expected ppfn to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->szDll != NULL, "Expected szDll to be valid, was NULL for %s\n", target(pdli));
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if (pdli->dlp.fImportByName)
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ok(pdli->dlp.szProcName != NULL, "Expected szProcName to be valid, was NULL for %s\n", target(pdli));
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else
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ok(pdli->dlp.dwOrdinal != 0, "Expected dwOrdinal to be valid, was NULL for %s\n", target(pdli));
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switch(dliNotify)
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{
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case dliFailLoadLib:
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ok(pdli->hmodCur == NULL, "Expected hmodCur to be NULL, was: %p for %s\n", pdli->hmodCur, target(pdli));
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ok(pdli->pfnCur == NULL, "Expected pfnCur to be NULL, was: %p for %s\n", pdli->pfnCur, target(pdli));
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ok(pdli->dwLastError == ERROR_MOD_NOT_FOUND,
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"Expected dwLastError to be ERROR_MOD_NOT_FOUND, was: %lu for %s\n", pdli->dwLastError, target(pdli));
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break;
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case dliFailGetProc:
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ok(pdli->hmodCur != NULL, "Expected hmodCur to be valid, was NULL for %s\n", target(pdli));
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ok(pdli->pfnCur == NULL, "Expected pfnCur to be NULL, was: %p for %s\n", pdli->pfnCur, target(pdli));
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ok(pdli->dwLastError == ERROR_PROC_NOT_FOUND,
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"Expected dwLastError to be ERROR_PROC_NOT_FOUND, was: %lu for %s\n", pdli->dwLastError, target(pdli));
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break;
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}
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return NULL;
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}
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LONG ExceptionFilter(IN PEXCEPTION_POINTERS ExceptionInfo, ULONG ExceptionCode)
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{
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DWORD expected = VcppException(ERROR_SEVERITY_ERROR, (g_ExceptionIsModule ? ERROR_MOD_NOT_FOUND : ERROR_PROC_NOT_FOUND));
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ok(ExceptionCode == expected, "Expected code to be 0x%lx, was: 0x%lx\n", expected, ExceptionCode);
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ok(ExceptionInfo != NULL, "Expected to get exception info\n");
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ok(ExceptionInfo->ExceptionRecord != NULL, "Expected to get a valid record info\n");
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if (ExceptionCode != expected)
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{
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skip("Skipping other checks, this was not the exception we expected!\n");
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return EXCEPTION_EXECUTE_HANDLER;
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}
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if (ExceptionInfo && ExceptionInfo->ExceptionRecord)
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{
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PEXCEPTION_RECORD ExceptionRecord = ExceptionInfo->ExceptionRecord;
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ok(ExceptionRecord->ExceptionCode == expected, "Expected ExceptionCode to be 0x%lx, was 0x%lx\n",
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expected, ExceptionRecord->ExceptionCode);
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/* We can still continue. */
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ok(ExceptionRecord->ExceptionFlags == 0, "Expected ExceptionFlags to be 0, was: 0x%lx\n",
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ExceptionRecord->ExceptionFlags);
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ok(ExceptionRecord->NumberParameters == 1, "Expected 1 parameter, got %lu\n",
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ExceptionRecord->NumberParameters);
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if (ExceptionRecord->NumberParameters == 1)
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{
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PDelayLoadInfo LoadInfo = (PDelayLoadInfo)ExceptionRecord->ExceptionInformation[0];
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ok(LoadInfo && LoadInfo->cb >= 36, "Expected a valid pointer with a struct that is big enough: %p, %lu\n",
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LoadInfo, LoadInfo ? LoadInfo->cb : 0);
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if (g_ExpectedDll)
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ok(!strcmp(g_ExpectedDll, LoadInfo->szDll), "Expected szDll to be '%s', but was: '%s'\n",
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g_ExpectedDll, LoadInfo->szDll);
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if (g_ExpectedName)
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{
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ok(LoadInfo->dlp.fImportByName, "Expected import by name\n");
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if (LoadInfo->dlp.fImportByName)
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{
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ok(!strcmp(g_ExpectedName, LoadInfo->dlp.szProcName),
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"Expected szProcName to be '%s', but was: '%s'\n", g_ExpectedName, LoadInfo->dlp.szProcName);
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if (g_ExceptionIsModule)
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{
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HMODULE mod = LoadLibraryA("imagehlp.dll");
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LoadInfo->pfnCur = GetProcAddress(mod, g_ExpectedName);
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}
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else
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{
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char buf[100];
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char first = isupper(g_ExpectedName[0]) ? tolower(g_ExpectedName[0]) : toupper(g_ExpectedName[0]);
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sprintf(buf, "%c%s", first, g_ExpectedName + 1);
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LoadInfo->pfnCur = GetProcAddress(GetModuleHandleA(g_ExpectedDll), buf);
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}
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return LoadInfo->pfnCur ? EXCEPTION_CONTINUE_EXECUTION : EXCEPTION_EXECUTE_HANDLER;
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}
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}
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}
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}
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return EXCEPTION_EXECUTE_HANDLER;
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}
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/* We register one hook the 'default' way and one manually,
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so that we can check that both fallback and registration work*/
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extern "C"
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{
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extern PfnDliHook __pfnDliNotifyHook2;
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//PfnDliHook __pfnDliFailureHook2 = DliFailHook;
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}
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bool g_UsePointers = false;
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template<typename PTR>
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PTR Rva2Addr(PIMAGE_DOS_HEADER dos, RVA rva)
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{
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/* Old delayload type */
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if (g_UsePointers)
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return reinterpret_cast<PTR>(rva);
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return reinterpret_cast<PTR>((reinterpret_cast<PBYTE>(dos) + rva));
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}
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unsigned g_winmm_get_cur_task[] = { dliStartProcessing, dliNotePreLoadLibrary, dliNotePreGetProcAddress, dliNoteEndProcessing, LAST_DLI };
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unsigned g_winmm_midi_out_close[] = { dliStartProcessing, dliNotePreGetProcAddress, dliNoteEndProcessing, LAST_DLI };
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unsigned g_winmm_mide_in_close[] = { dliStartProcessing, dliNotePreGetProcAddress, dliFailGetProc, dliNoteEndProcessing, LAST_DLI };
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unsigned g_sfc_key[] = { dliStartProcessing, dliNotePreLoadLibrary, dliFailLoadLib, dliNotePreGetProcAddress, dliNoteEndProcessing, LAST_DLI };
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unsigned g_sfc_file[] = { dliStartProcessing, dliNotePreGetProcAddress, dliNoteEndProcessing, LAST_DLI };
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unsigned g_version_a[] = { dliStartProcessing, dliNotePreLoadLibrary, dliNotePreGetProcAddress, dliFailGetProc, dliNoteEndProcessing, LAST_DLI };
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unsigned g_version_w[] = { dliStartProcessing, dliNotePreGetProcAddress, dliFailGetProc, dliNoteEndProcessing, LAST_DLI };
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unsigned g_scard[] = { dliStartProcessing, dliNoteEndProcessing, LAST_DLI };
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unsigned g_shlwapi[] = { dliStartProcessing, dliNotePreLoadLibrary, dliNotePreGetProcAddress, dliNoteEndProcessing, LAST_DLI };
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unsigned g_imagehlp[] = { dliStartProcessing, dliNotePreLoadLibrary, dliFailLoadLib, LAST_DLI }; /* This exception does not fire EndProcessing! */
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//#define DELAYLOAD_SUPPORTS_UNLOADING
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START_TEST(delayimp)
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{
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__pfnDliNotifyHook2 = DliHook;
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/* Verify that both scenario's work */
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ok(__pfnDliNotifyHook2 == DliHook, "Expected __pfnDliNotifyHook2 to be DliHook(%p), but was: %p\n",
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DliHook, __pfnDliNotifyHook2);
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ok(__pfnDliFailureHook2 == NULL, "Expected __pfnDliFailureHook2 to be NULL, but was: %p\n",
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__pfnDliFailureHook2);
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__pfnDliFailureHook2 = DliFailHook;
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PIMAGE_DOS_HEADER dos = (PIMAGE_DOS_HEADER)GetModuleHandle(NULL);
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ok(dos->e_magic == IMAGE_DOS_SIGNATURE, "Expected a DOS header\n");
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if (dos->e_magic != IMAGE_DOS_SIGNATURE)
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return;
|
|
|
|
PIMAGE_NT_HEADERS nt = (PIMAGE_NT_HEADERS)((PBYTE)dos + dos->e_lfanew);
|
|
PIMAGE_DATA_DIRECTORY delaydir = nt->OptionalHeader.DataDirectory + IMAGE_DIRECTORY_ENTRY_DELAY_IMPORT;
|
|
|
|
/* Test some advanced features (loading / unloading) */
|
|
if (delaydir->Size != 0)
|
|
{
|
|
#if defined(_DELAY_IMP_VER) && _DELAY_IMP_VER == 2 && defined(DELAYLOAD_SUPPORTS_UNLOADING)
|
|
/* First, before mangling the delayload stuff, let's try some v2 functions */
|
|
HMODULE mod = GetModuleHandleA(WINMM_DLLNAME);
|
|
ok(mod == NULL, "Expected mod to be NULL, was %p\n", mod);
|
|
/* Now, a mistyped module (case sensitive!) */
|
|
HRESULT hr = __HrLoadAllImportsForDll("WiNmM.DlL");
|
|
ok(hr == HRESULT_FROM_WIN32(ERROR_MOD_NOT_FOUND), "Expected hr to be HRESULT_FROM_WIN32(ERROR_MOD_NOT_FOUND), was %lu\n", hr);
|
|
mod = GetModuleHandleA(WINMM_DLLNAME);
|
|
ok(mod == NULL, "Expected mod to be NULL, was %p\n", mod);
|
|
|
|
/* Let's load it */
|
|
hr = __HrLoadAllImportsForDll(WINMM_DLLNAME);
|
|
ok(hr == S_OK, "Expected hr to be S_OK, was %lu\n", hr);
|
|
mod = GetModuleHandleA(WINMM_DLLNAME);
|
|
ok(mod != NULL, "Expected mod to be valid, was NULL\n");
|
|
|
|
BOOL status = __FUnloadDelayLoadedDLL2(WINMM_DLLNAME);
|
|
ok(status == TRUE, "Expected __FUnloadDelayLoadedDLL2 to succeed\n");
|
|
mod = GetModuleHandleA(WINMM_DLLNAME);
|
|
ok(mod == NULL, "Expected mod to be NULL, was %p\n", mod);
|
|
#else
|
|
trace("Binary compiled without support for unloading\n");
|
|
#endif
|
|
}
|
|
else
|
|
{
|
|
skip("No IMAGE_DIRECTORY_ENTRY_DELAY_IMPORT found, some advanced features might not work!\n");
|
|
}
|
|
|
|
/* Test the normal flow without a dll loaded */
|
|
SetExpectedDli(g_winmm_get_cur_task);
|
|
g_ExpectedDll = WINMM_DLLNAME;
|
|
g_ExpectedName = "mmGetCurrentTask";
|
|
DWORD task = mmGetCurrentTask();
|
|
ok(task == GetCurrentThreadId(), "Expected ret to be current thread id (0x%lx), was 0x%lx\n", GetCurrentThreadId(), task);
|
|
CheckDliDone();
|
|
|
|
/* Test the normal flow with a dll loaded */
|
|
SetExpectedDli(g_winmm_midi_out_close);
|
|
g_ExpectedDll = WINMM_DLLNAME;
|
|
g_ExpectedName = "midiOutClose";
|
|
DWORD err = midiOutClose((HMIDIOUT)(ULONG_PTR)0xdeadbeef);
|
|
ok(err == MMSYSERR_INVALHANDLE, "Expected err to be MMSYSERR_INVALHANDLE, was 0x%lx\n", err);
|
|
CheckDliDone();
|
|
|
|
/* Make sure GetProcAddress fails, also ignore the Failure hook, use the exception to set the address */
|
|
SetExpectedDli(g_winmm_mide_in_close);
|
|
g_ExpectedDll = WINMM_DLLNAME;
|
|
g_ExpectedName = "MixerClose";
|
|
g_BreakFunctionName = true;
|
|
_SEH2_TRY
|
|
{
|
|
err = mixerClose((HMIXER)(ULONG_PTR)0xdeadbeef);
|
|
}
|
|
_SEH2_EXCEPT(ExceptionFilter(_SEH2_GetExceptionInformation(), _SEH2_GetExceptionCode()))
|
|
{
|
|
err = _SEH2_GetExceptionCode();
|
|
}
|
|
_SEH2_END;
|
|
ok(err == MMSYSERR_INVALHANDLE, "Expected err to be MMSYSERR_INVALHANDLE, was 0x%lx\n", err);
|
|
CheckDliDone();
|
|
ok(g_BreakFunctionName == false, "Expected the functionname to be changed\n");
|
|
|
|
/* Make the LoadLib fail, manually load the library in the Failure Hook,
|
|
Respond to the dliNotePreGetProcAddress with an alternate function address */
|
|
SetExpectedDli(g_sfc_key);
|
|
BOOL ret = SfcIsKeyProtected(NULL, NULL, NULL);
|
|
ok(ret == 12345, "Expected ret to be 12345, was %u\n", ret); /* The original function returns FALSE! */
|
|
CheckDliDone();
|
|
|
|
/* Show that it works with the manually returned dll */
|
|
SetExpectedDli(g_sfc_file);
|
|
ret = SfcGetNextProtectedFile(NULL, NULL);
|
|
ok(ret == FALSE, "Expected ret to be FALSE, was %u\n", ret);
|
|
CheckDliDone();
|
|
|
|
/* Return a fake dll handle, so that we can see when it is being used, and manually return a function in the Failure Hook */
|
|
SetExpectedDli(g_version_a);
|
|
ret = GetFileVersionInfoA(NULL, NULL, NULL, NULL);
|
|
ok(ret == FALSE, "Expected ret to be FALSE, was %u\n", ret);
|
|
CheckDliDone();
|
|
|
|
/* Manually return a function in the failure hook, when the module is the previously set bad one */
|
|
SetExpectedDli(g_version_w);
|
|
ret = GetFileVersionInfoW(NULL, NULL, NULL, NULL);
|
|
ok(ret == FALSE, "Expected ret to be FALSE, was %u\n", ret);
|
|
CheckDliDone();
|
|
|
|
if (HIWORD(SymGetOptions) == NULL)
|
|
{
|
|
skip("SymGetOptions until CORE-6504 is fixed\n");
|
|
}
|
|
else
|
|
{
|
|
/* Completely bypass most hooks, by directly replying with a function address */
|
|
SetExpectedDli(g_scard);
|
|
g_BypassMost = true;
|
|
DWORD opt = SymGetOptions();
|
|
g_BypassMost = false;
|
|
ok(opt == 123, "Expected opt to be 123, was %lu\n", opt); /* The original function returns ERROR_INVALID_HANDLE */
|
|
CheckDliDone();
|
|
}
|
|
|
|
/* Import by ordinal */
|
|
g_ImportByName = false;
|
|
SetExpectedDli(g_shlwapi);
|
|
PARSEDURLA pua = { sizeof(pua), 0 };
|
|
HRESULT hr = ParseURLA("", &pua);
|
|
ok(hr == URL_E_INVALID_SYNTAX, "Expected tmp to be URL_E_INVALID_SYNTAX, was %lx\n", hr);
|
|
CheckDliDone();
|
|
g_ImportByName = true;
|
|
|
|
/* Handle LoadLib failure with an exception handler */
|
|
if (HIWORD(MapAndLoad) == NULL)
|
|
{
|
|
skip("MapAndLoad until CORE-6504 is fixed\n");
|
|
}
|
|
else
|
|
{
|
|
SetExpectedDli(g_imagehlp);
|
|
LOADED_IMAGE img = {0};
|
|
ret = 123;
|
|
g_ExceptionIsModule = true;
|
|
g_ExpectedDll = "xxxxxhlp.dll";
|
|
g_ExpectedName = "MapAndLoad";
|
|
_SEH2_TRY
|
|
{
|
|
ret = MapAndLoad("some_not_existing_file.aabbcc", NULL, &img, FALSE, TRUE);
|
|
}
|
|
_SEH2_EXCEPT(ExceptionFilter(_SEH2_GetExceptionInformation(), _SEH2_GetExceptionCode()))
|
|
{
|
|
;
|
|
}
|
|
_SEH2_END;
|
|
g_ExceptionIsModule = false;
|
|
ok(ret == FALSE, "Expected ret to be FALSE, was %u\n", ret);
|
|
CheckDliDone();
|
|
}
|
|
}
|