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323 lines
7.3 KiB
323 lines
7.3 KiB
//--------------------------------------------------------------------------
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//
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// Copyright (C) 1999, Microsoft Corporation
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//
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// File: rootsup.cxx
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//
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//--------------------------------------------------------------------------
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#define UNICODE
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#include <stdio.h>
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#include <nt.h>
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#include <ntrtl.h>
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#include <nturtl.h>
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#include <windows.h>
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#include <winldap.h>
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#include <stdlib.h>
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#include <dsgetdc.h>
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#include <lm.h>
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#include <dfsstr.h>
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#include <lmdfs.h>
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#include <dfspriv.h>
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#include <dfsm.hxx>
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#include <rpc.h>
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#include "struct.hxx"
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#include "rootsup.hxx"
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#include "ftsup.hxx"
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#include "misc.hxx"
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#include "messages.h"
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DWORD
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NetDfsRootEnum(
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LPWSTR pwszDcName,
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LPWSTR pwszDomainName,
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PSEC_WINNT_AUTH_IDENTITY pAuthIdent,
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LPWSTR **List)
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{
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DWORD dwErr = ERROR_SUCCESS;
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NTSTATUS status;
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PWCHAR attrs[2];
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LDAPMessage *pMsg = NULL;
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LDAPMessage *pEntry = NULL;
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WCHAR *pAttr = NULL;
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WCHAR **rpValues = NULL;
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WCHAR **allValues = NULL;
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WCHAR ***rpValuesToFree = NULL;
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INT cValues = 0;
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INT i;
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WCHAR *dfsDn = NULL;
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DWORD len;
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PWCHAR *resultVector = NULL;
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PLDAP pLDAP = NULL;
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LPWSTR pstr;
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ULONG slen;
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if (fSwDebug)
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MyPrintf(L"NetDfsRootEnum(%ws,%ws)\r\n", pwszDcName, pwszDomainName);
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if (List == NULL) {
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return ERROR_INVALID_PARAMETER;
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}
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if (pwszDcName == NULL)
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dwErr = DfspGetPdc(wszDcName, pwszDomainName);
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else
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wcscpy(wszDcName, pwszDcName);
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if (dwErr != ERROR_SUCCESS)
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goto Cleanup;
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ErrorMessage(MSG_CONNECTING, wszDcName);
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dwErr = DfspLdapOpen(wszDcName, pAuthIdent, &pLDAP, DfsConfigContainer, &dfsDn);
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if (dwErr != ERROR_SUCCESS)
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goto Cleanup;
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*List = NULL;
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//
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// Now see if we can enumerate the objects below this one. The names
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// of these objects will be the different FT dfs's available
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//
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pLDAP->ld_sizelimit = 0;
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pLDAP->ld_timelimit= 0;
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pLDAP->ld_deref = LDAP_DEREF_NEVER;
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attrs[0] = L"CN";
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attrs[1] = NULL;
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dwErr = ldap_search_s(
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pLDAP,
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dfsDn,
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LDAP_SCOPE_ONELEVEL,
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L"(objectClass=fTDfs)",
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attrs,
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0,
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&pMsg);
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//
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// Make sure the result is reasonable
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//
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if (
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((cValues = ldap_count_entries(pLDAP, pMsg)) == 0) ||
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(pEntry = ldap_first_entry(pLDAP, pMsg)) == NULL
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) {
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dwErr = ERROR_PATH_NOT_FOUND;
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goto Cleanup;
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}
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//
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// The search for all FTDfs's returns multiple entries, each with
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// one value for the object's CN. Coalesce these into a single array.
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//
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dwErr = NetApiBufferAllocate(2 * (cValues + 1) * sizeof(PWSTR), (PVOID *)&allValues);
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if (dwErr != ERROR_SUCCESS) {
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goto Cleanup;
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}
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rpValuesToFree = (WCHAR ***) &allValues[cValues + 1];
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for (i = 0; (i < cValues) && (dwErr == ERROR_SUCCESS); i++) {
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rpValues = ldap_get_values(pLDAP, pEntry, attrs[0]);
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rpValuesToFree[i] = rpValues;
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//
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// Sanity check
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//
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if (ldap_count_values(rpValues) == 0 || rpValues[0][0] == L'\0') {
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dwErr = ERROR_PATH_NOT_FOUND;
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} else {
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allValues[i] = rpValues[0];
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pEntry = ldap_next_entry(pLDAP, pEntry);
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}
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}
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if (dwErr != ERROR_SUCCESS) {
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goto Cleanup;
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}
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allValues[i] = NULL;
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rpValuesToFree[i] = NULL;
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//
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// Now we need to allocate the memory to hold this vector and return the results.
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//
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// First see how much space we need
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//
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for (i = len = cValues = 0; allValues[i]; i++) {
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len += sizeof(LPWSTR) + (wcslen(allValues[i]) + 1) * sizeof(WCHAR);
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cValues++;
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}
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len += sizeof(LPWSTR);
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dwErr = NetApiBufferAllocate(len, (PVOID *)&resultVector);
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if (dwErr != NO_ERROR)
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goto Cleanup;
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RtlZeroMemory(resultVector, len);
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pstr = (LPWSTR)((PCHAR)resultVector + (cValues + 1) * sizeof(LPWSTR));
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len -= (cValues+1) * sizeof(LPWSTR);
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for (i = cValues = 0; allValues[i] && len >= sizeof(WCHAR); i++) {
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resultVector[cValues] = pstr;
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wcscpy(pstr, allValues[i]);
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slen = wcslen(allValues[i]);
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pstr += slen + 1;
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len -= (slen + 1) * sizeof(WCHAR);
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cValues++;
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}
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*List = resultVector;
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Cleanup:
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if (rpValuesToFree != NULL) {
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for (i = 0; rpValuesToFree[i] != NULL; i++) {
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ldap_value_free(rpValuesToFree[i]);
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}
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}
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if (allValues != NULL) {
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NetApiBufferFree(allValues);
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}
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if (pMsg != NULL) {
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ldap_msgfree(pMsg);
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}
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if (dfsDn != NULL) {
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free(dfsDn);
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}
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if (pLDAP != NULL) {
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ldap_unbind(pLDAP);
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}
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if (fSwDebug)
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MyPrintf(L"NetDfsRootEnum exit %d\r\n", dwErr);
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return dwErr;
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}
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DWORD
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NetDfsRootServerEnum(
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LDAP *pldap,
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LPWSTR wszDfsConfigDN,
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LPWSTR **ppRootList)
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{
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DWORD dwErr = ERROR_SUCCESS;
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DWORD cServers;
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DWORD cRoots;
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DWORD i;
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LPWSTR *pRootList = NULL;
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ULONG Size;
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WCHAR *pWc;
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PLDAPMessage pMsg = NULL;
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LDAPMessage *pmsgServers;
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LPWSTR rgAttrs[5];
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PWCHAR *rgServers = NULL;
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if (fSwDebug)
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MyPrintf(L"DfspCreateRootServerList(%ws)\r\n",
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wszDfsConfigDN);
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//
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// Search for the FtDfs object
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//
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rgAttrs[0] = L"remoteServerName";
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rgAttrs[1] = NULL;
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dwErr = ldap_search_s(
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pldap,
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wszDfsConfigDN,
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LDAP_SCOPE_BASE,
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L"(objectClass=*)",
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rgAttrs,
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0,
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&pMsg);
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if (dwErr != ERROR_SUCCESS) {
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dwErr = LdapMapErrorToWin32(dwErr);
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goto Cleanup;
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}
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pmsgServers = ldap_first_entry(pldap, pMsg);
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if (pmsgServers == NULL) {
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dwErr = ERROR_OUTOFMEMORY;
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goto Cleanup;
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}
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rgServers = ldap_get_values(
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pldap,
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pmsgServers,
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L"remoteServerName");
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if (rgServers == NULL) {
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dwErr = ERROR_OUTOFMEMORY;
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goto Cleanup;
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}
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cServers = ldap_count_values(rgServers);
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for (Size = cRoots = i = 0; i < cServers; i++) {
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// if (wcslen(rgServers[i]) < 3 || rgServers[i][0] != UNICODE_PATH_SEP)
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// continue;
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Size += (wcslen(rgServers[i]) + 1) * sizeof(WCHAR);
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cRoots++;
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}
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if (cRoots == 0) {
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*ppRootList = NULL;
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dwErr = ERROR_SUCCESS;
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goto Cleanup;
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}
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Size += sizeof(LPWSTR) * (cRoots + 1);
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pRootList = (LPWSTR *)malloc(Size);
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if (pRootList == NULL) {
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dwErr = ERROR_OUTOFMEMORY;
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goto Cleanup;
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}
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RtlZeroMemory(pRootList, Size);
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pWc = (WCHAR *)&pRootList[cRoots+1];
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for (cRoots = i = 0; i < cServers; i++) {
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pRootList[cRoots] = pWc;
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wcscpy(pWc, rgServers[i]);
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pWc += wcslen(rgServers[i]) + 1;
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cRoots++;
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}
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*ppRootList = pRootList;
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Cleanup:
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if (rgServers != NULL)
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ldap_value_free(rgServers);
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if (pMsg != NULL)
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ldap_msgfree( pMsg );
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if (fSwDebug) {
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if (dwErr == NO_ERROR && pRootList != NULL) {
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for (i = 0; pRootList[i] != NULL; i++)
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MyPrintf(L"[%d][%ws]\r\n", i, pRootList[i]);
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}
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MyPrintf(L"DfspCreateRootServerList returning %d\r\n", dwErr);
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}
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return( dwErr );
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}
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