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333 lines
6.8 KiB
333 lines
6.8 KiB
// Copyright (C) 1997 Microsoft Corporation
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//
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// install tcp/ip page
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//
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// 12-18-97 sburns
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#include "headers.hxx"
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#include "InstallTcpIpPage.hpp"
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#include "resource.h"
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#include "state.hpp"
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#include "common.hpp"
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// artshel recommends that we use WSAIoctl + SIO_ADDRESS_LIST_QUERY instead of
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// GetIpAddrTable because "it's more "official" and less likely to change,
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// which means less work for everyone when we upgrade/revise IPHLPAPI," but
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// confirms that for Whistler, they are equivalent.
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// NTRAID#NTBUG9--2001/04/24-sburns
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// sample code:
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// //
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// // DWORD
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// // GetIPv4Addresses(
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// // IN LPSOCKET_ADDRESS_LIST *ppList)
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// // {
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// // LPSOCKET_ADDRESS_LIST pList = NULL;
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// // ULONG ulSize = 0;
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// // DWORD dwErr;
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// // DWORD dwBytesReturned;
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// // SOCKET s;
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// //
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// // *ppList = NULL;
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// //
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// // s = socket(AF_INET, SOCK_DGRAM, 0);
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// // if (s == INVALID_SOCKET)
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// // return WSAGetLastError();
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// //
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// // for (;;) {
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// // dwErr = WSAIoctl(s, SIO_ADDRESS_LIST_QUERY, NULL, 0, pList, ulSize,
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// // &dwBytesReturned, NULL, NULL);
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// //
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// // if (!dwErr) {
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// // break;
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// // }
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// //
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// // if (pList) {
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// // FREE(pList);
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// // pList = NULL;
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// // }
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// //
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// // dwErr = WSAGetLastError();
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// // if (dwErr != WSAEFAULT)
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// // break;
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// //
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// // pList = MALLOC(dwBytesReturned);
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// // if (!pList) {
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// // dwErr = ERROR_NOT_ENOUGH_MEMORY;
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// // break;
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// // }
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// //
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// // ulSize = dwBytesReturned;
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// // }
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// //
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// // closesocket(s);
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// //
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// // *ppList = pList;
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// // return dwErr;
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// // }
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// Returns true if tcp/ip is "working" (can send/receive packets on at least
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// one IP address.
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bool
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IsTcpIpFunctioning()
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{
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LOG_FUNCTION(IsTcpIpFunctioning);
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bool result = false;
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// As per nksrin, we will call GetIpAddrTable. If no addresses are in
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// the table, then the IP stack is not in a state to send/rcv packets
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// with the rest of the world
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HRESULT hr = S_OK;
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BYTE* buf = 0;
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do
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{
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// first, determine the size of the table
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ULONG tableSize = 0;
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DWORD err = ::GetIpAddrTable(0, &tableSize, FALSE);
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if (err != ERROR_INSUFFICIENT_BUFFER)
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{
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LOG(L"GetIpAddrTable for table size failed");
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LOG_HRESULT(Win32ToHresult(err));
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break;
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}
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// allocate space for the table.
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buf = new BYTE[tableSize + 1];
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memset(buf, 0, tableSize + 1);
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PMIB_IPADDRTABLE table = reinterpret_cast<PMIB_IPADDRTABLE>(buf);
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LOG(L"Calling GetIpAddrTable");
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hr =
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Win32ToHresult(
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::GetIpAddrTable(
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table,
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&tableSize,
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FALSE));
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BREAK_ON_FAILED_HRESULT2(hr, L"GetIpAddrTable failed");
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LOG(String::format(L"dwNumEntries: %1!d!", table->dwNumEntries));
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for (int i = 0; i < table->dwNumEntries; ++i)
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{
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DWORD addr = table->table[i].dwAddr;
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LOG(String::format(L"entry %1!d!", i));
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LOG(String::format(
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L"dwAddr %1!X! (%2!d!.%3!d!.%4!d!.%5!d!)",
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addr,
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((BYTE*)&addr)[0],
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((BYTE*)&addr)[1],
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((BYTE*)&addr)[2],
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((BYTE*)&addr)[3]));
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// skip loopback, etc.
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if (
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INADDR_ANY == addr
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|| INADDR_BROADCAST == addr
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|| INADDR_LOOPBACK == addr
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|| 0x0100007f == addr )
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{
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LOG(L"is loopback/broadcast -- skipping");
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continue;
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}
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// Exclude MCAST addresses (class D).
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if (
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IN_CLASSA(htonl(addr))
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|| IN_CLASSB(htonl(addr))
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|| IN_CLASSC(htonl(addr)) )
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{
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LOG(L"is class A/B/C");
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result = true;
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break;
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}
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LOG(L"not class A/B/C -- skipping");
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}
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}
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while (0);
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delete[] buf;
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LOG(String::format(L"TCP/IP %1 functioning", result ? L"is" : L"is NOT"));
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return result;
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}
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InstallTcpIpPage::InstallTcpIpPage()
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:
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DCPromoWizardPage(
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IDD_INSTALL_TCPIP,
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IDS_INSTALL_TCPIP_PAGE_TITLE,
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IDS_INSTALL_TCPIP_PAGE_SUBTITLE)
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{
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LOG_CTOR(InstallTcpIpPage);
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}
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InstallTcpIpPage::~InstallTcpIpPage()
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{
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LOG_DTOR(InstallTcpIpPage);
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}
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void
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InstallTcpIpPage::OnInit()
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{
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LOG_FUNCTION(InstallTcpIpPage::OnInit);
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}
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bool
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InstallTcpIpPage::OnSetActive()
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{
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LOG_FUNCTION(InstallTcpIpPage::OnSetActive);
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State& state = State::GetInstance();
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if (
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state.RunHiddenUnattended()
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or (IsTcpIpInstalled() and IsTcpIpFunctioning()) )
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{
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LOG(L"Planning to Skip InstallTcpIpPage");
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Wizard& wizard = GetWizard();
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if (wizard.IsBacktracking())
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{
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// backup once again
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wizard.Backtrack(hwnd);
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return true;
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}
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int nextPage = Validate();
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if (nextPage != -1)
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{
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LOG(L"skipping InstallTcpIpPage");
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wizard.SetNextPageID(hwnd, nextPage);
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return true;
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}
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state.ClearHiddenWhileUnattended();
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}
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Win::PropSheet_SetWizButtons(
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Win::GetParent(hwnd),
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PSWIZB_BACK | PSWIZB_NEXT);
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return true;
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}
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bool
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InstallTcpIpPage::OnNotify(
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HWND /* windowFrom */ ,
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UINT_PTR controlIDFrom,
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UINT code,
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LPARAM /* lParam */ )
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{
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// LOG_FUNCTION(InstallTcpIpPage::OnNotify);
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bool result = false;
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if (controlIDFrom == IDC_JUMP)
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{
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switch (code)
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{
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case NM_CLICK:
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case NM_RETURN:
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{
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ShowTroubleshooter(hwnd, IDS_INSTALL_TCPIP_HELP_TOPIC);
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result = true;
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}
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default:
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{
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// do nothing
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break;
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}
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}
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}
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return result;
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}
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int
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InstallTcpIpPage::Validate()
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{
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LOG_FUNCTION(InstallTcpIpPage::Validate);
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int nextPage = -1;
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if (IsTcpIpInstalled() and IsTcpIpFunctioning())
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{
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State& state = State::GetInstance();
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switch (state.GetRunContext())
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{
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case State::BDC_UPGRADE:
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{
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ASSERT(state.GetOperation() == State::REPLICA);
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nextPage = IDD_REPLICATE_FROM_MEDIA; // IDD_CONFIG_DNS_CLIENT;
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break;
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}
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case State::PDC_UPGRADE:
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{
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nextPage = IDD_TREE_OR_CHILD;
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break;
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}
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case State::NT5_STANDALONE_SERVER:
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case State::NT5_MEMBER_SERVER:
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{
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nextPage = IDD_REPLICA_OR_DOMAIN;
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break;
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}
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default:
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{
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ASSERT(false);
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break;
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}
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}
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}
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else
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{
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String message = String::load(IDS_INSTALL_TCPIP_FIRST);
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popup.Info(hwnd, message);
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}
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return nextPage;
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}
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