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458 lines
15 KiB
C
458 lines
15 KiB
C
/* Copyright 2002 Andriy Palamarchuk
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* Copyright (c) 2003 Juan Lang
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*
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* netapi32 user functions
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#include "netapi32.h"
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#include <lmwksta.h>
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#include <lmjoin.h>
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WINE_DEFAULT_DEBUG_CHANNEL(netapi32);
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/************************************************************
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* NETAPI_IsLocalComputer
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*
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* Checks whether the server name indicates local machine.
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*/
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DECLSPEC_HIDDEN BOOL NETAPI_IsLocalComputer( LMCSTR name )
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{
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WCHAR buf[MAX_COMPUTERNAME_LENGTH + 1];
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DWORD size = sizeof(buf) / sizeof(buf[0]);
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BOOL ret;
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if (!name || !name[0]) return TRUE;
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ret = GetComputerNameW( buf, &size );
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if (ret && name[0] == '\\' && name[1] == '\\') name += 2;
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return ret && !strcmpiW( name, buf );
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}
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static void wprint_mac(WCHAR* buffer, int len, const MIB_IFROW *ifRow)
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{
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int i;
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unsigned char val;
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if (!buffer)
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return;
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if (len < 1)
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return;
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if (!ifRow)
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{
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*buffer = '\0';
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return;
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}
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for (i = 0; i < ifRow->dwPhysAddrLen && 2 * i < len; i++)
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{
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val = ifRow->bPhysAddr[i];
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if ((val >>4) >9)
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buffer[2*i] = (WCHAR)((val >>4) + 'A' - 10);
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else
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buffer[2*i] = (WCHAR)((val >>4) + '0');
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if ((val & 0xf ) >9)
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buffer[2*i+1] = (WCHAR)((val & 0xf) + 'A' - 10);
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else
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buffer[2*i+1] = (WCHAR)((val & 0xf) + '0');
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}
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buffer[2*i]=0;
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}
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/* Theoretically this could be too short, except that MS defines
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* MAX_ADAPTER_NAME as 128, and MAX_INTERFACE_NAME_LEN as 256, and both
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* represent a count of WCHARs, so even with an extraordinarily long header
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* this will be plenty
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*/
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#define MAX_TRANSPORT_NAME MAX_INTERFACE_NAME_LEN
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#define MAX_TRANSPORT_ADDR 13
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#define NBT_TRANSPORT_NAME_HEADER "\\Device\\NetBT_Tcpip_"
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#define UNKNOWN_TRANSPORT_NAME_HEADER "\\Device\\UnknownTransport_"
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static void wprint_name(WCHAR *buffer, int len, ULONG transport,
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PMIB_IFROW ifRow)
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{
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WCHAR *ptr1, *ptr2;
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const char *name;
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if (!buffer)
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return;
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if (!ifRow)
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{
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*buffer = '\0';
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return;
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}
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if (!memcmp(&transport, TRANSPORT_NBT, sizeof(ULONG)))
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name = NBT_TRANSPORT_NAME_HEADER;
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else
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name = UNKNOWN_TRANSPORT_NAME_HEADER;
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for (ptr1 = buffer; *name && ptr1 < buffer + len; ptr1++, name++)
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*ptr1 = *name;
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for (ptr2 = ifRow->wszName; *ptr2 && ptr1 < buffer + len; ptr1++, ptr2++)
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*ptr1 = *ptr2;
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*ptr1 = '\0';
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}
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/***********************************************************************
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* NetWkstaTransportEnum (NETAPI32.@)
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*/
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struct WkstaTransportEnumData
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{
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UCHAR n_adapt;
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UCHAR n_read;
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DWORD prefmaxlen;
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LPBYTE *pbuf;
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NET_API_STATUS ret;
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};
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/**********************************************************************/
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static BOOL WkstaEnumAdaptersCallback(UCHAR totalLANAs, UCHAR lanaIndex,
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ULONG transport, const NetBIOSAdapterImpl *data, void *closure)
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{
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BOOL ret;
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struct WkstaTransportEnumData *enumData = closure;
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if (enumData && enumData->pbuf)
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{
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if (lanaIndex == 0)
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{
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DWORD toAllocate;
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enumData->n_adapt = totalLANAs;
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enumData->n_read = 0;
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toAllocate = totalLANAs * (sizeof(WKSTA_TRANSPORT_INFO_0)
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+ MAX_TRANSPORT_NAME * sizeof(WCHAR) +
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MAX_TRANSPORT_ADDR * sizeof(WCHAR));
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if (enumData->prefmaxlen != MAX_PREFERRED_LENGTH)
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toAllocate = enumData->prefmaxlen;
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NetApiBufferAllocate(toAllocate, (LPVOID *)enumData->pbuf);
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}
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if (*(enumData->pbuf))
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{
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UCHAR spaceFor;
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if (enumData->prefmaxlen == MAX_PREFERRED_LENGTH)
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spaceFor = totalLANAs;
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else
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spaceFor = enumData->prefmaxlen /
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(sizeof(WKSTA_TRANSPORT_INFO_0) + (MAX_TRANSPORT_NAME +
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MAX_TRANSPORT_ADDR) * sizeof(WCHAR));
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if (enumData->n_read < spaceFor)
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{
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PWKSTA_TRANSPORT_INFO_0 ti;
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LMSTR transport_name, transport_addr;
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MIB_IFROW ifRow;
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ti = (PWKSTA_TRANSPORT_INFO_0)(*(enumData->pbuf) +
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enumData->n_read * sizeof(WKSTA_TRANSPORT_INFO_0));
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transport_name = (LMSTR)(*(enumData->pbuf) +
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totalLANAs * sizeof(WKSTA_TRANSPORT_INFO_0) +
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enumData->n_read * MAX_TRANSPORT_NAME * sizeof(WCHAR));
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transport_addr = (LMSTR)(*(enumData->pbuf) +
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totalLANAs * (sizeof(WKSTA_TRANSPORT_INFO_0) +
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MAX_TRANSPORT_NAME * sizeof(WCHAR)) +
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enumData->n_read * MAX_TRANSPORT_ADDR * sizeof(WCHAR));
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ifRow.dwIndex = data->ifIndex;
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GetIfEntry(&ifRow);
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ti->wkti0_quality_of_service = 0;
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ti->wkti0_number_of_vcs = 0;
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ti->wkti0_transport_name = transport_name;
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wprint_name(ti->wkti0_transport_name, MAX_TRANSPORT_NAME,
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transport, &ifRow);
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ti->wkti0_transport_address = transport_addr;
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wprint_mac(ti->wkti0_transport_address, MAX_TRANSPORT_ADDR,
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&ifRow);
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if (!memcmp(&transport, TRANSPORT_NBT, sizeof(ULONG)))
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ti->wkti0_wan_ish = TRUE;
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else
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ti->wkti0_wan_ish = FALSE;
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TRACE("%d of %d:ti at %p\n", lanaIndex, totalLANAs, ti);
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TRACE("transport_name at %p %s\n",
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ti->wkti0_transport_name,
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debugstr_w(ti->wkti0_transport_name));
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TRACE("transport_address at %p %s\n",
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ti->wkti0_transport_address,
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debugstr_w(ti->wkti0_transport_address));
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enumData->n_read++;
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enumData->ret = NERR_Success;
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ret = TRUE;
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}
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else
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{
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enumData->ret = ERROR_MORE_DATA;
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ret = FALSE;
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}
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}
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else
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{
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enumData->ret = ERROR_OUTOFMEMORY;
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ret = FALSE;
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}
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}
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else
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ret = FALSE;
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return ret;
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}
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/**********************************************************************/
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NET_API_STATUS WINAPI
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NetWkstaTransportEnum(LMSTR ServerName, DWORD level, PBYTE* pbuf,
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DWORD prefmaxlen, LPDWORD read_entries,
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PDWORD total_entries, PDWORD hresume)
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{
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NET_API_STATUS ret;
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TRACE(":%s, 0x%08x, %p, 0x%08x, %p, %p, %p\n", debugstr_w(ServerName),
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level, pbuf, prefmaxlen, read_entries, total_entries,hresume);
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if (!NETAPI_IsLocalComputer(ServerName))
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{
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FIXME(":not implemented for non-local computers\n");
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ret = ERROR_INVALID_LEVEL;
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}
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else
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{
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if (hresume && *hresume)
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{
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FIXME(":resume handle not implemented\n");
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return ERROR_INVALID_LEVEL;
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}
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switch (level)
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{
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case 0: /* transport info */
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{
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ULONG allTransports;
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struct WkstaTransportEnumData enumData;
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if (NetBIOSNumAdapters() == 0)
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return ERROR_NETWORK_UNREACHABLE;
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if (!read_entries)
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return STATUS_ACCESS_VIOLATION;
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if (!total_entries || !pbuf)
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return RPC_X_NULL_REF_POINTER;
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enumData.prefmaxlen = prefmaxlen;
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enumData.pbuf = pbuf;
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memcpy(&allTransports, ALL_TRANSPORTS, sizeof(ULONG));
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NetBIOSEnumAdapters(allTransports, WkstaEnumAdaptersCallback,
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&enumData);
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*read_entries = enumData.n_read;
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*total_entries = enumData.n_adapt;
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if (hresume) *hresume= 0;
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ret = enumData.ret;
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break;
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}
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default:
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TRACE("Invalid level %d is specified\n", level);
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ret = ERROR_INVALID_LEVEL;
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}
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}
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return ret;
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}
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/************************************************************
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* NetWkstaUserGetInfo (NETAPI32.@)
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*/
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NET_API_STATUS WINAPI NetWkstaUserGetInfo(LMSTR reserved, DWORD level,
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PBYTE* bufptr)
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{
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NET_API_STATUS nastatus;
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TRACE("(%s, %d, %p)\n", debugstr_w(reserved), level, bufptr);
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switch (level)
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{
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case 0:
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{
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PWKSTA_USER_INFO_0 ui;
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DWORD dwSize = UNLEN + 1;
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/* set up buffer */
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nastatus = NetApiBufferAllocate(sizeof(WKSTA_USER_INFO_0) + dwSize * sizeof(WCHAR),
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(LPVOID *) bufptr);
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if (nastatus != NERR_Success)
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return ERROR_NOT_ENOUGH_MEMORY;
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ui = (PWKSTA_USER_INFO_0) *bufptr;
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ui->wkui0_username = (LMSTR) (*bufptr + sizeof(WKSTA_USER_INFO_0));
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/* get data */
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if (!GetUserNameW(ui->wkui0_username, &dwSize))
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{
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NetApiBufferFree(ui);
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return ERROR_NOT_ENOUGH_MEMORY;
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}
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else {
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nastatus = NetApiBufferReallocate(
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*bufptr, sizeof(WKSTA_USER_INFO_0) +
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(lstrlenW(ui->wkui0_username) + 1) * sizeof(WCHAR),
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(LPVOID *) bufptr);
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if (nastatus != NERR_Success)
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{
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NetApiBufferFree(ui);
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return nastatus;
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}
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ui = (PWKSTA_USER_INFO_0) *bufptr;
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ui->wkui0_username = (LMSTR) (*bufptr + sizeof(WKSTA_USER_INFO_0));
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}
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break;
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}
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case 1:
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{
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PWKSTA_USER_INFO_1 ui;
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PWKSTA_USER_INFO_0 ui0;
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LSA_OBJECT_ATTRIBUTES ObjectAttributes;
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LSA_HANDLE PolicyHandle;
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PPOLICY_ACCOUNT_DOMAIN_INFO DomainInfo;
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NTSTATUS NtStatus;
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/* sizes of the field buffers in WCHARS */
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int username_sz, logon_domain_sz, oth_domains_sz, logon_server_sz;
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FIXME("Level 1 processing is partially implemented\n");
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oth_domains_sz = 1;
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logon_server_sz = 1;
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/* get some information first to estimate size of the buffer */
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ui0 = NULL;
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nastatus = NetWkstaUserGetInfo(NULL, 0, (PBYTE *) &ui0);
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if (nastatus != NERR_Success)
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return nastatus;
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username_sz = lstrlenW(ui0->wkui0_username) + 1;
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ZeroMemory(&ObjectAttributes, sizeof(ObjectAttributes));
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NtStatus = LsaOpenPolicy(NULL, &ObjectAttributes,
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POLICY_VIEW_LOCAL_INFORMATION,
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&PolicyHandle);
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if (NtStatus != STATUS_SUCCESS)
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{
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TRACE("LsaOpenPolicyFailed with NT status %x\n",
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LsaNtStatusToWinError(NtStatus));
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NetApiBufferFree(ui0);
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return ERROR_NOT_ENOUGH_MEMORY;
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}
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LsaQueryInformationPolicy(PolicyHandle, PolicyAccountDomainInformation,
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(PVOID*) &DomainInfo);
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logon_domain_sz = lstrlenW(DomainInfo->DomainName.Buffer) + 1;
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LsaClose(PolicyHandle);
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/* set up buffer */
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nastatus = NetApiBufferAllocate(sizeof(WKSTA_USER_INFO_1) +
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(username_sz + logon_domain_sz +
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oth_domains_sz + logon_server_sz) * sizeof(WCHAR),
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(LPVOID *) bufptr);
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if (nastatus != NERR_Success) {
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NetApiBufferFree(ui0);
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return nastatus;
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}
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ui = (WKSTA_USER_INFO_1 *) *bufptr;
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ui->wkui1_username = (LMSTR) (*bufptr + sizeof(WKSTA_USER_INFO_1));
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ui->wkui1_logon_domain = (LMSTR) (
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((PBYTE) ui->wkui1_username) + username_sz * sizeof(WCHAR));
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ui->wkui1_oth_domains = (LMSTR) (
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((PBYTE) ui->wkui1_logon_domain) +
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logon_domain_sz * sizeof(WCHAR));
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ui->wkui1_logon_server = (LMSTR) (
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((PBYTE) ui->wkui1_oth_domains) +
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oth_domains_sz * sizeof(WCHAR));
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/* get data */
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lstrcpyW(ui->wkui1_username, ui0->wkui0_username);
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NetApiBufferFree(ui0);
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lstrcpynW(ui->wkui1_logon_domain, DomainInfo->DomainName.Buffer,
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logon_domain_sz);
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LsaFreeMemory(DomainInfo);
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/* FIXME. Not implemented. Populated with empty strings */
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ui->wkui1_oth_domains[0] = 0;
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ui->wkui1_logon_server[0] = 0;
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break;
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}
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case 1101:
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{
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PWKSTA_USER_INFO_1101 ui;
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DWORD dwSize = 1;
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FIXME("Stub. Level 1101 processing is not implemented\n");
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/* FIXME see also wkui1_oth_domains for level 1 */
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/* set up buffer */
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nastatus = NetApiBufferAllocate(sizeof(WKSTA_USER_INFO_1101) + dwSize * sizeof(WCHAR),
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(LPVOID *) bufptr);
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if (nastatus != NERR_Success)
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return nastatus;
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ui = (PWKSTA_USER_INFO_1101) *bufptr;
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ui->wkui1101_oth_domains = (LMSTR)(ui + 1);
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/* get data */
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ui->wkui1101_oth_domains[0] = 0;
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break;
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}
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default:
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TRACE("Invalid level %d is specified\n", level);
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return ERROR_INVALID_LEVEL;
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}
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return NERR_Success;
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}
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/************************************************************
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* NetpGetComputerName (NETAPI32.@)
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*/
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NET_API_STATUS WINAPI NetpGetComputerName(LPWSTR *Buffer)
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{
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DWORD dwSize = MAX_COMPUTERNAME_LENGTH + 1;
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TRACE("(%p)\n", Buffer);
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NetApiBufferAllocate(dwSize * sizeof(WCHAR), (LPVOID *) Buffer);
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if (GetComputerNameW(*Buffer, &dwSize))
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{
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return NetApiBufferReallocate(
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*Buffer, (dwSize + 1) * sizeof(WCHAR),
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(LPVOID *) Buffer);
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}
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else
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{
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NetApiBufferFree(*Buffer);
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return ERROR_NOT_ENOUGH_MEMORY;
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}
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}
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NET_API_STATUS WINAPI I_NetNameCompare(LPVOID p1, LPWSTR wkgrp, LPWSTR comp,
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LPVOID p4, LPVOID p5)
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{
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FIXME("(%p %s %s %p %p): stub\n", p1, debugstr_w(wkgrp), debugstr_w(comp),
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p4, p5);
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return ERROR_INVALID_PARAMETER;
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}
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NET_API_STATUS WINAPI I_NetNameValidate(LPVOID p1, LPWSTR wkgrp, LPVOID p3,
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LPVOID p4)
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{
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FIXME("(%p %s %p %p): stub\n", p1, debugstr_w(wkgrp), p3, p4);
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return ERROR_INVALID_PARAMETER;
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}
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