mirror of
https://github.com/reactos/reactos.git
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0d21c76ef1
[ADVAPI32]: Correctly set up both the ANSI and UNICODE service command-line arguments. Adapted from a patch by Thomas Faber. Thanks! [SERVICES] - Correctly pack the service command-line arguments in the control packet structure. In particular, the offsets stored in the vector are relative to the beginning of the vector (and not relative to the previous offset ^^). Improve comments... - Fix the definition of the SCM_CONTROL_PACKET control packet structure to make it Win2k3-compatible, so that we can use Win2k3' advapi32.dll or services.exe on ReactOS and vice-versa. CORE-9235 CORE-9838 svn path=/trunk/; revision=73413
475 lines
16 KiB
C
475 lines
16 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: Test for service arguments
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* PROGRAMMER: Jacek Caban for CodeWeavers
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* Thomas Faber <thomas.faber@reactos.org>
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*/
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#include <apitest.h>
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#include <winnls.h>
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#include <winsvc.h>
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#include <strsafe.h>
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static char **argv;
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static int argc;
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static HANDLE pipe_handle = INVALID_HANDLE_VALUE;
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static char service_nameA[100];
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static WCHAR service_nameW[100];
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static WCHAR named_pipe_name[100];
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/* Test process global variables */
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static SC_HANDLE scm_handle;
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static SERVICE_STATUS_HANDLE service_handle;
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static void send_msg(const char *type, const char *msg)
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{
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DWORD written = 0;
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char buf[512];
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StringCbPrintfA(buf, sizeof(buf), "%s:%s", type, msg);
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WriteFile(pipe_handle, buf, strlen(buf)+1, &written, NULL);
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}
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static inline void service_trace(const char *msg, ...)
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{
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va_list valist;
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char buf[512];
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va_start(valist, msg);
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StringCbVPrintfA(buf, sizeof(buf), msg, valist);
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va_end(valist);
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send_msg("TRACE", buf);
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}
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static void service_ok(int cnd, const char *msg, ...)
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{
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va_list valist;
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char buf[512];
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va_start(valist, msg);
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StringCbVPrintfA(buf, sizeof(buf), msg, valist);
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va_end(valist);
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send_msg(cnd ? "OK" : "FAIL", buf);
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}
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static VOID WINAPI service_handler(DWORD ctrl)
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{
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SERVICE_STATUS status;
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status.dwServiceType = SERVICE_WIN32;
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status.dwControlsAccepted = SERVICE_ACCEPT_STOP;
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status.dwWin32ExitCode = 0;
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status.dwServiceSpecificExitCode = 0;
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status.dwCheckPoint = 0;
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status.dwWaitHint = 0;
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switch(ctrl)
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{
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case SERVICE_CONTROL_STOP:
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status.dwCurrentState = SERVICE_STOP_PENDING;
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status.dwControlsAccepted = 0;
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SetServiceStatus(service_handle, &status);
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default:
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status.dwCurrentState = SERVICE_RUNNING;
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SetServiceStatus(service_handle, &status);
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}
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}
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static void service_main_common(void)
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{
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SERVICE_STATUS status;
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BOOL res;
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service_handle = RegisterServiceCtrlHandlerW(service_nameW, service_handler);
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service_ok(service_handle != NULL, "RegisterServiceCtrlHandler failed: %lu\n", GetLastError());
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if (!service_handle)
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return;
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status.dwServiceType = SERVICE_WIN32;
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status.dwCurrentState = SERVICE_RUNNING;
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status.dwControlsAccepted = SERVICE_ACCEPT_STOP | SERVICE_ACCEPT_SHUTDOWN;
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status.dwWin32ExitCode = 0;
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status.dwServiceSpecificExitCode = 0;
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status.dwCheckPoint = 0;
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status.dwWaitHint = 10000;
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res = SetServiceStatus(service_handle, &status);
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service_ok(res, "SetServiceStatus(SERVICE_RUNNING) failed: %lu", GetLastError());
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Sleep(100);
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status.dwCurrentState = SERVICE_STOPPED;
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status.dwControlsAccepted = 0;
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res = SetServiceStatus(service_handle, &status);
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service_ok(res, "SetServiceStatus(SERVICE_STOPPED) failed: %lu", GetLastError());
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}
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/*
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* A/W argument layout XP/2003:
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* [argv array of pointers][parameter 1][parameter 2]...[service name]
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*
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* A/W argument layout Vista:
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* [argv array of pointers][align to 8 bytes][parameter 1][parameter 2]...[service name]
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*
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* A/W argument layout Win7/8:
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* [argv array of pointers][service name]
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* [parameter 1][align to 4 bytes][parameter 2][align to 4 bytes]...
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*
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* Space for parameters and service name is always enough to store
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* the WCHAR version including null terminator.
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*/
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static void WINAPI service_mainA(DWORD service_argc, char **service_argv)
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{
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int i;
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char *next_arg;
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char *next_arg_aligned;
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service_ok(service_argc == argc - 3, "service_argc = %d, expected %d", service_argc, argc - 3);
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if (service_argc == argc - 3)
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{
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service_ok(!strcmp(service_argv[0], service_nameA), "service_argv[0] = %s, expected %s", service_argv[0], service_nameA);
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service_ok(service_argv[0] == (char *)&service_argv[service_argc] ||
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service_argv[1] == (char *)&service_argv[service_argc] ||
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service_argv[1] == (char *)(((ULONG_PTR)&service_argv[service_argc] + 7) & ~7), "service_argv[0] = %p, [1] = %p, expected one of them to be %p", service_argv[0], service_argv[1], &service_argv[service_argc]);
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//service_trace("service_argv[0] = %p", service_argv[0]);
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next_arg_aligned = next_arg = NULL;
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for (i = 1; i < service_argc; i++)
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{
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//service_trace("service_argv[%d] = %p", i, service_argv[i]);
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service_ok(!strcmp(service_argv[i], argv[i + 3]), "service_argv[%d] = %s, expected %s", i, service_argv[i], argv[i + 3]);
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service_ok(next_arg == NULL ||
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service_argv[i] == next_arg ||
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service_argv[i] == next_arg_aligned, "service_argv[%d] = %p, expected %p or %p", i, service_argv[i], next_arg, next_arg_aligned);
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next_arg = service_argv[i];
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next_arg += 2 * (strlen(next_arg) + 1);
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next_arg_aligned = (char *)(((ULONG_PTR)next_arg + 3) & ~3);
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}
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}
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service_main_common();
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}
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static void WINAPI service_mainW(DWORD service_argc, WCHAR **service_argv)
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{
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int i;
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WCHAR argW[32];
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WCHAR *next_arg;
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WCHAR *next_arg_aligned;
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service_ok(service_argc == argc - 3, "service_argc = %d, expected %d", service_argc, argc - 3);
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if (service_argc == argc - 3)
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{
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service_ok(!wcscmp(service_argv[0], service_nameW), "service_argv[0] = %ls, expected %ls", service_argv[0], service_nameW);
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service_ok(service_argv[0] == (WCHAR *)&service_argv[service_argc] ||
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service_argv[1] == (WCHAR *)&service_argv[service_argc] ||
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service_argv[1] == (WCHAR *)(((ULONG_PTR)&service_argv[service_argc] + 7) & ~7), "service_argv[0] = %p, [1] = %p, expected one of them to be %p", service_argv[0], service_argv[1], &service_argv[service_argc]);
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//service_trace("service_argv[0] = %p", service_argv[0]);
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next_arg_aligned = next_arg = NULL;
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for (i = 1; i < service_argc; i++)
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{
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//service_trace("service_argv[%d] = %p", i, service_argv[i]);
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MultiByteToWideChar(CP_ACP, 0, argv[i + 3], -1, argW, _countof(argW));
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service_ok(!wcscmp(service_argv[i], argW), "service_argv[%d] = %ls, expected %ls", i, service_argv[i], argW);
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service_ok(next_arg == NULL ||
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service_argv[i] == next_arg ||
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service_argv[i] == next_arg_aligned, "service_argv[%d] = %p, expected %p or %p", i, service_argv[i], next_arg, next_arg_aligned);
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next_arg = service_argv[i];
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next_arg += wcslen(next_arg) + 1;
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next_arg_aligned = (WCHAR *)(((ULONG_PTR)next_arg + 3) & ~3);
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}
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}
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service_main_common();
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}
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static void service_process(BOOLEAN unicode)
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{
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BOOL res;
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SERVICE_TABLE_ENTRYA servtblA[] =
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{
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{ service_nameA, service_mainA },
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{ NULL, NULL }
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};
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SERVICE_TABLE_ENTRYW servtblW[] =
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{
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{ service_nameW, service_mainW },
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{ NULL, NULL }
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};
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res = WaitNamedPipeW(named_pipe_name, NMPWAIT_USE_DEFAULT_WAIT);
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if (!res)
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return;
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pipe_handle = CreateFileW(named_pipe_name, GENERIC_WRITE, 0, NULL, OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, NULL);
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if (pipe_handle == INVALID_HANDLE_VALUE)
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return;
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//service_trace("Starting...");
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if (unicode)
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{
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res = StartServiceCtrlDispatcherW(servtblW);
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service_ok(res, "StartServiceCtrlDispatcherW failed: %lu\n", GetLastError());
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}
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else
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{
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res = StartServiceCtrlDispatcherA(servtblA);
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service_ok(res, "StartServiceCtrlDispatcherA failed: %lu\n", GetLastError());
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}
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CloseHandle(pipe_handle);
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}
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static SC_HANDLE register_service(PCWSTR extra_args)
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{
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WCHAR service_cmd[MAX_PATH+150];
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SC_HANDLE service;
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GetModuleFileNameW(NULL, service_cmd, MAX_PATH);
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StringCbCatW(service_cmd, sizeof(service_cmd), L" ServiceArgs ");
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StringCbCatW(service_cmd, sizeof(service_cmd), service_nameW);
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StringCbCatW(service_cmd, sizeof(service_cmd), extra_args);
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trace("service_cmd \"%ls\"\n", service_cmd);
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service = CreateServiceW(scm_handle, service_nameW, service_nameW, GENERIC_ALL,
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SERVICE_WIN32_OWN_PROCESS, SERVICE_DEMAND_START, SERVICE_ERROR_IGNORE,
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service_cmd, NULL, NULL, NULL, NULL, NULL);
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if (!service && GetLastError() == ERROR_ACCESS_DENIED)
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{
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skip("Not enough access right to create service\n");
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return NULL;
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}
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ok(service != NULL, "CreateService failed: %lu\n", GetLastError());
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return service;
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}
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static DWORD WINAPI pipe_thread(void *arg)
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{
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char buf[512];
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DWORD read;
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BOOL res;
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res = ConnectNamedPipe(pipe_handle, NULL);
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ok(res || GetLastError() == ERROR_PIPE_CONNECTED, "ConnectNamedPipe failed: %lu\n", GetLastError());
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while (1)
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{
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res = ReadFile(pipe_handle, buf, sizeof(buf), &read, NULL);
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if (!res)
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{
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ok(GetLastError() == ERROR_BROKEN_PIPE || GetLastError() == ERROR_INVALID_HANDLE,
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"ReadFile failed: %lu\n", GetLastError());
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break;
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}
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if (!strncmp(buf, "TRACE:", 6))
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{
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trace("service trace: %s\n", buf+6);
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}
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else if (!strncmp(buf, "OK:", 3))
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{
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ok(1, "service: %s\n", buf+3);
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}
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else if (!strncmp(buf, "FAIL:", 5))
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{
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ok(0, "service: %s\n", buf+5);
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}
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else
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{
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ok(0, "malformed service message: %s\n", buf);
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}
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}
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DisconnectNamedPipe(pipe_handle);
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//trace("pipe disconnected\n");
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return 0;
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}
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static void test_startA(SC_HANDLE service_handle, int service_argc, const char **service_argv)
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{
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SERVICE_STATUS status;
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BOOL res;
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res = StartServiceA(service_handle, service_argc, service_argv);
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ok(res, "StartService failed: %lu\n", GetLastError());
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if (!res)
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return;
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do
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{
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Sleep(100);
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ZeroMemory(&status, sizeof(status));
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res = QueryServiceStatus(service_handle, &status);
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} while (res && status.dwCurrentState != SERVICE_STOPPED);
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ok(res, "QueryServiceStatus failed: %lu\n", GetLastError());
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ok(status.dwCurrentState == SERVICE_STOPPED, "status.dwCurrentState = %lx\n", status.dwCurrentState);
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}
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static void test_startW(SC_HANDLE service_handle, int service_argc, const WCHAR **service_argv)
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{
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SERVICE_STATUS status;
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BOOL res;
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res = StartServiceW(service_handle, service_argc, service_argv);
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ok(res, "StartService failed: %lu\n", GetLastError());
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if (!res)
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return;
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do
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{
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Sleep(100);
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ZeroMemory(&status, sizeof(status));
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res = QueryServiceStatus(service_handle, &status);
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} while (res && status.dwCurrentState != SERVICE_STOPPED);
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ok(res, "QueryServiceStatus failed: %lu\n", GetLastError());
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ok(status.dwCurrentState == SERVICE_STOPPED, "status.dwCurrentState = %lx\n", status.dwCurrentState);
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}
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static void test_runner(BOOLEAN unicode, PCWSTR extra_args, int service_argc, void *service_argv)
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{
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HANDLE thread;
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SC_HANDLE service_handle;
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BOOL res;
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StringCbPrintfW(service_nameW, sizeof(service_nameW), L"WineTestService%lu", GetTickCount());
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WideCharToMultiByte(CP_ACP, 0, service_nameW, -1, service_nameA, _countof(service_nameA), NULL, NULL);
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//trace("service_name: %ls\n", service_nameW);
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StringCbPrintfW(named_pipe_name, sizeof(named_pipe_name), L"\\\\.\\pipe\\%ls_pipe", service_nameW);
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pipe_handle = CreateNamedPipeW(named_pipe_name, PIPE_ACCESS_INBOUND,
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PIPE_TYPE_MESSAGE|PIPE_READMODE_MESSAGE|PIPE_WAIT, 10, 2048, 2048, 10000, NULL);
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ok(pipe_handle != INVALID_HANDLE_VALUE, "CreateNamedPipe failed: %lu\n", GetLastError());
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if (pipe_handle == INVALID_HANDLE_VALUE)
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return;
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thread = CreateThread(NULL, 0, pipe_thread, NULL, 0, NULL);
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ok(thread != NULL, "CreateThread failed: %lu\n", GetLastError());
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if (!thread)
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return;
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service_handle = register_service(extra_args);
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if (!service_handle)
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return;
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//trace("starting...\n");
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if (unicode)
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test_startW(service_handle, service_argc, service_argv);
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else
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test_startA(service_handle, service_argc, service_argv);
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res = DeleteService(service_handle);
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ok(res, "DeleteService failed: %lu\n", GetLastError());
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CloseServiceHandle(service_handle);
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ok(WaitForSingleObject(thread, 10000) == WAIT_OBJECT_0, "Timeout waiting for thread\n");
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CloseHandle(thread);
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CloseHandle(pipe_handle);
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}
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START_TEST(ServiceArgs)
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{
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argc = winetest_get_mainargs(&argv);
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scm_handle = OpenSCManagerW(NULL, NULL, GENERIC_ALL);
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ok(scm_handle != NULL, "OpenSCManager failed: %lu\n", GetLastError());
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if (!scm_handle)
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{
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skip("Failed to open service control manager. Skipping test\n");
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return;
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}
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if (argc < 3)
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{
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char *service_argvA[10];
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WCHAR *service_argvW[10];
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test_runner(FALSE, L" A", 0, NULL);
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test_runner(FALSE, L" W", 0, NULL);
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test_runner(TRUE, L" A", 0, NULL);
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test_runner(TRUE, L" W", 0, NULL);
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service_argvA[0] = "x";
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service_argvW[0] = L"x";
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test_runner(FALSE, L" A x", 1, service_argvA);
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test_runner(FALSE, L" W x", 1, service_argvA);
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test_runner(TRUE, L" A x", 1, service_argvW);
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test_runner(TRUE, L" W x", 1, service_argvW);
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service_argvA[1] = "y";
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service_argvW[1] = L"y";
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test_runner(FALSE, L" A x y", 2, service_argvA);
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test_runner(FALSE, L" W x y", 2, service_argvA);
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test_runner(TRUE, L" A x y", 2, service_argvW);
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test_runner(TRUE, L" W x y", 2, service_argvW);
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service_argvA[0] = "ab";
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service_argvW[0] = L"ab";
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test_runner(FALSE, L" A ab y", 2, service_argvA);
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test_runner(FALSE, L" W ab y", 2, service_argvA);
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test_runner(TRUE, L" A ab y", 2, service_argvW);
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test_runner(TRUE, L" W ab y", 2, service_argvW);
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service_argvA[0] = "abc";
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service_argvW[0] = L"abc";
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test_runner(FALSE, L" A abc y", 2, service_argvA);
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test_runner(FALSE, L" W abc y", 2, service_argvA);
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test_runner(TRUE, L" A abc y", 2, service_argvW);
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test_runner(TRUE, L" W abc y", 2, service_argvW);
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service_argvA[0] = "abcd";
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service_argvW[0] = L"abcd";
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test_runner(FALSE, L" A abcd y", 2, service_argvA);
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test_runner(FALSE, L" W abcd y", 2, service_argvA);
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test_runner(TRUE, L" A abcd y", 2, service_argvW);
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test_runner(TRUE, L" W abcd y", 2, service_argvW);
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service_argvA[0] = "abcde";
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service_argvW[0] = L"abcde";
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test_runner(FALSE, L" A abcde y", 2, service_argvA);
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test_runner(FALSE, L" W abcde y", 2, service_argvA);
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test_runner(TRUE, L" A abcde y", 2, service_argvW);
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test_runner(TRUE, L" W abcde y", 2, service_argvW);
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service_argvA[0] = "abcdef";
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service_argvW[0] = L"abcdef";
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test_runner(FALSE, L" A abcdef y", 2, service_argvA);
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test_runner(FALSE, L" W abcdef y", 2, service_argvA);
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test_runner(TRUE, L" A abcdef y", 2, service_argvW);
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test_runner(TRUE, L" W abcdef y", 2, service_argvW);
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|
|
service_argvA[0] = "abcdefg";
|
|
service_argvW[0] = L"abcdefg";
|
|
test_runner(FALSE, L" A abcdefg y", 2, service_argvA);
|
|
test_runner(FALSE, L" W abcdefg y", 2, service_argvA);
|
|
test_runner(TRUE, L" A abcdefg y", 2, service_argvW);
|
|
test_runner(TRUE, L" W abcdefg y", 2, service_argvW);
|
|
|
|
service_argvA[0] = "";
|
|
service_argvW[0] = L"";
|
|
test_runner(FALSE, L" A \"\" y", 2, service_argvA);
|
|
test_runner(FALSE, L" W \"\" y", 2, service_argvA);
|
|
test_runner(TRUE, L" A \"\" y", 2, service_argvW);
|
|
test_runner(TRUE, L" W \"\" y", 2, service_argvW);
|
|
}
|
|
else
|
|
{
|
|
strcpy(service_nameA, argv[2]);
|
|
MultiByteToWideChar(CP_ACP, 0, service_nameA, -1, service_nameW, _countof(service_nameW));
|
|
StringCbPrintfW(named_pipe_name, sizeof(named_pipe_name), L"\\\\.\\pipe\\%ls_pipe", service_nameW);
|
|
if (!strcmp(argv[3], "A"))
|
|
service_process(FALSE);
|
|
else
|
|
service_process(TRUE);
|
|
}
|
|
|
|
CloseServiceHandle(scm_handle);
|
|
}
|