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524 lines
19 KiB
524 lines
19 KiB
/*==========================================================================;
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*
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* Copyright (C) 1994-1995 Microsoft Corporation. All Rights Reserved.
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*
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* File: dplayi.h
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* Content: DirectPlay data structures
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* History:
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* Date By Reason
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* ==== == ======
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* 1/96 andyco created it
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* 1/26/96 andyco list data structures
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* 4/10/96 andyco removed dpmess.h
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* 4/23/96 andyco added ipx support
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* 4/25/96 andyco messages now have blobs (sockaddr's) instead of dwReserveds
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* 8/10/96 kipo update max message size to be (2^20) - 1
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* 8/15/96 andyco added local data
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* 8/30/96 andyco clean it up b4 you shut it down! added globaldata.
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* 9/3/96 andyco bagosockets
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* 12/18/96 andyco de-threading - use a fixed # of prealloced threads.
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* cruised the enum socket / thread - use the system
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* socket / thread instead. updated global struct.
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* 2/7/97 andyco moved all per IDirectPlay globals into globaldata
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* 3/17/97 kipo GetServerAddress() now returns an error so that we can
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* return DPERR_USERCANCEL from the EnumSessions dialog
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* 3/25/97 andyco dec debug lock counter b4 dropping lock!
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* 4/11/97 andyco added saddrControlSocket
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* 5/12/97 kipo added ADDR_BUFFER_SIZE constant and removed unused variables
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* 5/15/97 andyco added ipx spare thread to global data - used when nameserver
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* migrates to this host to make sure that old system receive
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* thread shuts down
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* 6/22/97 kipo include wsnwlink.h
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* 7/11/97 andyco added support for ws2 + async reply thread
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* 8/25/97 sohailm added DEFAULT_RECEIVE_BUFFERSIZE
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* 12/5/97 andyco voice support
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* 01/5/97 sohailm added fd big set related definitions and macros (#15244).
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* 1/20/98 myronth #ifdef'd out voice support
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* 1/27/98 sohailm added firewall support
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* 2/13/98 aarono added async support
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* 2/18/98 a-peterz Comment byte order mess-up with SERVER_xxx_PORT constants
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* 3/3/98 aarono Bug#19188 remove accept thread
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* 12/15/98 aarono make async enum run async
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**************************************************************************/
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#ifndef __DPSP_INCLUDED__
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#define __DPSP_INCLUDED__
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#include "windows.h"
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#include "windowsx.h"
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#include "wsipx.h"
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#include "wsnwlink.h"
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#include "dplaysp.h"
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#include "bilink.h"
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#include "fpm.h"
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#ifdef DPLAY_VOICE_SUPPORT
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#include "nmvoice.h"
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#endif // DPLAY_VOICE_SUPPORT
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#include "dpf.h"
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#include "dputils.h"
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#include "memalloc.h"
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#include "resource.h"
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#include <winsock.h>
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// to turn off SendEx support, comment this flag out.
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#define SENDEX 1
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// use ddraw's assert code (see orion\misc\dpf.h)
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#define ASSERT DDASSERT
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typedef WORD PORT;
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typedef UINT SOCKERR;
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// server ports
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// Oops! We forgot to convert these constants to net byte order in the code so we
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// are really using port 47624 (0xBA08) instead of 2234 (0x08BA)
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// We are living with the mistake.
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#define SERVER_STREAM_PORT 2234
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#define SERVER_DGRAM_PORT 2234
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// range of ports used by sp (these are properly converted in the code)
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#define DPSP_MIN_PORT 2300
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#define DPSP_MAX_PORT 2400
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#define DPSP_NUM_PORTS ((DPSP_MAX_PORT - DPSP_MIN_PORT)+1)
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#define SPMESSAGEHEADERLEN (sizeof(DWORD))
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#define DEFAULT_RECEIVE_BUFFERSIZE (4*1024) // default receive buffer size per connection
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// token means this message was received from a remote
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// dplay.
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#define TOKEN 0xFAB00000
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// helper_token means this message was forwarded by our server helper (host)
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#define HELPER_TOKEN 0xCAB00000
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// server_token means this message is exchanged with dplaysvr (needed to distinguish
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// messages from a remote dpwsockx)
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#define SERVER_TOKEN 0xBAB00000
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// tells receiver to reuse the connection for replies (needed to support fullduplex
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// connections)
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#define REUSE_TOKEN 0xAAB00000
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// masks
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#define TOKEN_MASK 0xFFF00000
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#define SIZE_MASK (~TOKEN_MASK)
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// maxmessagelen = 2^20 (need 12 bits for token)
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#define SPMAXMESSAGELEN ( 1048576 - 1)
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#define VALID_SP_MESSAGE(pMsg) ( (*((DWORD *)pMsg) & TOKEN_MASK) == TOKEN ? TRUE : FALSE)
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#define VALID_HELPER_MESSAGE(pMsg) ( (*((DWORD *)pMsg) & TOKEN_MASK) == HELPER_TOKEN ? TRUE : FALSE)
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#define VALID_REUSE_MESSAGE(pMsg) ( (*((DWORD *)pMsg) & TOKEN_MASK) == REUSE_TOKEN ? TRUE : FALSE)
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#define VALID_SERVER_MESSAGE(pMsg) ( (*((DWORD *)pMsg) & TOKEN_MASK) == SERVER_TOKEN ? TRUE : FALSE)
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#define SP_MESSAGE_SIZE(pMsg) ( (*((DWORD *)pMsg) & SIZE_MASK))
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#define SP_MESSAGE_TOKEN(pMsg) ( (*((DWORD *)pMsg) & TOKEN_MASK))
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#define VALID_DPWS_MESSAGE(pMsg) ( VALID_SP_MESSAGE(pMsg) || VALID_HELPER_MESSAGE(pMsg) || \
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VALID_SERVER_MESSAGE(pMsg) || VALID_REUSE_MESSAGE(pMsg) )
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#define VALID_DPLAYSVR_MESSAGE(pMsg) ( VALID_SP_MESSAGE(pMsg) || VALID_SERVER_MESSAGE(pMsg) || \
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VALID_REUSE_MESSAGE(pMsg) )
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// the actual value is ~ 1500 bytes.
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// we use 1024 to be safe (IPX won't packetize for us - it can only
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// send what the underlying net can handle (MTU))
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#define IPX_MAX_DGRAM 1024
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// relation of timeout to latency
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#define TIMEOUT_SCALE 10
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#define SPTIMEOUT(latency) (TIMEOUT_SCALE * latency)
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// the default size of the socket cache (gBagOSockets)
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#define MAX_CONNECTED_SOCKETS 64
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// the initial size of the receive list
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#define INITIAL_RECEIVELIST_SIZE 16
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// version number for service provider
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#define SPMINORVERSION 0x0000 // service provider-specific version number
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#define VERSIONNUMBER (DPSP_MAJORVERSION | SPMINORVERSION) // version number for service provider
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// biggest user enterable addess
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#define ADDR_BUFFER_SIZE 128
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// macro picks the service socket depending on ipx vs. tcp
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// ipx uses dgram, tcp uses stream
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#define SERVICE_SOCKET(pgd) ( (pgd->AddressFamily == AF_IPX) \
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? pgd->sSystemDGramSocket : pgd->sSystemStreamSocket)
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//
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// In order to listen to any number of sockets we need our own version
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// of fd_set and FD_SET(). We call them fd_big_set and FD_BIG_SET().
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//
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typedef struct fd_big_set {
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u_int fd_count; // how many are SET?
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SOCKET fd_array[0]; // an array of SOCKETs
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} fd_big_set;
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// stolen from winsock2.h
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#ifndef _WINSOCK2API_
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typedef HANDLE WSAEVENT;
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typedef struct _WSAOVERLAPPED {
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DWORD Internal;
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DWORD InternalHigh;
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DWORD Offset;
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DWORD OffsetHigh;
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WSAEVENT hEvent;
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} WSAOVERLAPPED, FAR * LPWSAOVERLAPPED;
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typedef struct _WSABUF {
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u_long len; /* the length of the buffer */
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char FAR * buf; /* the pointer to the buffer */
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} WSABUF, FAR * LPWSABUF;
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#endif // _WINSOCK2API_
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#define MAX_SG 9
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typedef WSABUF SENDARRAY[MAX_SG];
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typedef SENDARRAY *PSENDARRAY;
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#define SI_RELIABLE 0x0000001
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#define SI_DATAGRAM 0x0000000
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typedef struct _SENDINFO {
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WSAOVERLAPPED wsao;
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SENDARRAY SendArray; // Array of buffers
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DWORD dwFlags;
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DWORD dwSendFlags; // DPLAY Send Flags.
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UINT iFirstBuf; // First buffer in array to use
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UINT cBuffers; // number of buffers to send (starting at iFirstBuf)
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BILINK PendingSendQ; // when we're pending
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BILINK ReadyToSendQ; // still waiting to send on this queue.
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DPID idTo;
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DPID idFrom;
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SOCKET sSocket; // reliable sends
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SOCKADDR sockaddr; // datagram sends
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DWORD_PTR dwUserContext;
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DWORD dwMessageSize;
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DWORD RefCount;
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LONG Status;
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struct _GLOBALDATA *pgd;
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IDirectPlaySP * lpISP; // indication interface
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#ifdef DEBUG
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DWORD wserr; // winsock extended error on wsasend call
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#endif
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} SENDINFO, FAR *LPSENDINFO;
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//
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// This code is stolen from winsock.h. It does the same thing as FD_SET()
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// except that it assumes the fd_array is large enough. AddSocketToReceiveList()
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// grows the buffer as needed, so this better always be true.
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//
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#define FD_BIG_SET(fd, address) do { \
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ASSERT((address)->dwArraySize > (address)->pfdbigset->fd_count); \
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(address)->pfdbigset->fd_array[(address)->pfdbigset->fd_count++]=(fd);\
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} while(0)
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typedef struct fds {
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DWORD dwArraySize; // # of sockets that can be stored in pfdbigset->fd_array buffer
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fd_big_set *pfdbigset;
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} FDS;
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typedef struct _CONNECTION
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{
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SOCKET socket; // socket we can receive off of
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DWORD dwCurMessageSize; // current message size
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DWORD dwTotalMessageSize; // total message size
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SOCKADDR sockAddr; // addresses connected to
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LPBYTE pBuffer; // points to either default or temporary receive buffer
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LPBYTE pDefaultBuffer; // default receive buffer (pBuffer points to this by default)
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// added in DX6
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DWORD dwFlags; // connection attributes e.g. SP_CONNECION_FULLDUPLEX
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} CONNECTION, *LPCONNECTION;
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typedef struct _RECEIVELIST
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{
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UINT nConnections; // how many peers are we connected to
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LPCONNECTION pConnection;// list of connections
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} RECEIVELIST;
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typedef struct _REPLYLIST * LPREPLYLIST;
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typedef struct _REPLYLIST
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{
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LPREPLYLIST pNextReply; // next reply in list
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LPVOID lpMessage; // bufffer to send
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SOCKADDR sockaddr; // addr to send to
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DWORD dwMessageSize;
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SOCKET sSocket; // socket to send on
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LPBYTE pbSend; // index into message pointing to next byte to send
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DWORD dwBytesLeft; // how many bytes are left to send
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DWORD dwPlayerTo; // dpid of to player, 0=>not in use.
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} REPLYLIST;
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// w store one of these w/ each sys player
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typedef struct _SPPLAYERDATA
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{
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SOCKADDR saddrStream,saddrDatagram;
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}SPPLAYERDATA,*LPSPPLAYERDATA;
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// the message header
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typedef struct _MESSAGEHEADER
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{
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DWORD dwMessageSize; // size of message
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SOCKADDR sockaddr;
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} MESSAGEHEADER,*LPMESSAGEHEADER;
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// this is one element in our bagosockets
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typedef struct _PLAYERSOCK
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{
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SOCKET sSocket;
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DPID dwPlayerID;
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// added in DX6
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SOCKADDR sockaddr;
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DWORD dwFlags; // SP_CONNECTION_FULLDUPLEX, etc.
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} PLAYERSOCK,*LPPLAYERSOCK;
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// flags that describe a socket
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#define SP_CONNECTION_FULLDUPLEX 0x00000001
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// stream accept socket in the socket list.
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#define SP_STREAM_ACCEPT 0x00000002
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#ifdef SENDEX
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typedef struct FPOOL *LPFPOOL;
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#endif
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typedef struct _GLOBALDATA
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{
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SOCKET sSystemDGramSocket;
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SOCKET sSystemStreamSocket;
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HANDLE hStreamReceiveThread; // does receive and accept.
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HANDLE hDGramReceiveThread;
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HANDLE hReplyThread;
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RECEIVELIST ReceiveList; // the list of sockets that StreamReceiveThread is listening on
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SOCKET sUnreliableSocket; // cached for unreliable send
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// reply thread
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LPREPLYLIST pReplyList; // list of replies for reply thread to send
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HANDLE hReplyEvent; // signal the replythread that something is up
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// bago sockets stuff
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LPPLAYERSOCK BagOSockets; // socket cache
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UINT nSocketsInBag; // how many sockets in our bag
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ULONG uEnumAddress; // address entered by user for game server
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ULONG AddressFamily;
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SOCKADDR saddrNS; // address for name server
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DWORD dwLatency; // from dwreserved1 in registry
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BOOL bShutdown;
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SOCKADDR saddrControlSocket;
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BOOL bHaveServerAddress;
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CHAR szServerAddress[ADDR_BUFFER_SIZE];
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HANDLE hIPXSpareThread; // if nameserver migrates to this host, we start a new receive thread
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// (bound to our well known socket). this is the handle to our old receive
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// thread - at shutdown, we need to make sure it's gone
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UINT iMaxUdpDg; // maximum udp datagram size
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// added in DX6
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FDS readfds; // dynamic read fdset
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DWORD dwFlags; // DPSP_OUTBOUNDONLY, etc.
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DWORD dwSessionFlags; // session flags passed by app
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WORD wApplicationPort; // port used for creating system player sockets
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#ifdef BIGMESSAGEDEFENSE
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DWORD dwMaxMessageSize; // the max message size we should receive
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#endif
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HANDLE hTCPEnumAsyncThread; // fix async enum.
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LPVOID lpEnumMessage;
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DWORD dwEnumMessageSize;
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SOCKADDR saEnum;
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DWORD dwEnumAddrSize;
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SOCKET sEnum;
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BOOL bOutBoundOnly;
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#ifdef SENDEX
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CRITICAL_SECTION csSendEx; // locks sendex data.
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LPFPOOL pSendInfoPool; // pool for allocating SENDINFO+SPHeaders for scatter gather sends
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DWORD dwBytesPending; // count of total bytes in pending messages.
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DWORD dwMessagesPending; // count of total bytes pending.
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BILINK PendingSendQ;
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BILINK ReadyToSendQ;
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HANDLE hSendWait; // alert thread wait here.
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HANDLE BogusHandle; // don't be fooled by waitfor multiple probs in Win9x, put -1 here.
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BOOL bSendThreadRunning;
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BOOL bStopSendThread;
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#endif
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} GLOBALDATA,*LPGLOBALDATA;
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/*
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* SP Flags (from registry)
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*/
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#define DPSP_OUTBOUNDONLY 0x00000001
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/*
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* DPLAYSVR - DPWSOCKX communication related information
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*/
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// MSG_HDR indicates a dpwsock system message
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#define MSG_HDR 0x736F636B
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#define SP_MSG_VERSION 1 // DX6
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#define IS_VALID_DPWS_MESSAGE(pMsg) (MSG_HDR == (*((DWORD *)(pMsg))) )
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#define COMMAND_MASK 0X0000FFFF
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#define GET_MESSAGE_VERSION(pMsg) ( ((pMsg)->dwCmdToken & ~COMMAND_MASK) >> 16 )
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#define GET_MESSAGE_COMMAND(pMsg) ( (pMsg)->dwCmdToken & COMMAND_MASK)
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#define SET_MESSAGE_HDR(pMsg) (*((DWORD *)(pMsg)) = MSG_HDR )
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#define SET_MESSAGE_COMMAND(pMsg,dwCmd) ((pMsg)->dwCmdToken = ((dwCmd & COMMAND_MASK) \
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| (SP_MSG_VERSION<<16)) )
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typedef struct {
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DWORD dwHeader;
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DWORD dwCmdToken;
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} MSG_GENERIC, *LPMSG_GENERIC;
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// DPLAYSVR
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// macros for manipulating the sockaddr in the player data
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#ifdef DEBUG
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extern int gCSCount;
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#endif
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extern CRITICAL_SECTION gcsDPSPCritSection; // defined in dllmain.c
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#define INIT_DPSP_CSECT() InitializeCriticalSection(&gcsDPSPCritSection);
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#define FINI_DPSP_CSECT() DeleteCriticalSection(&gcsDPSPCritSection);
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#ifdef DEBUG
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#define ENTER_DPSP() EnterCriticalSection(&gcsDPSPCritSection),gCSCount++;
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#define LEAVE_DPSP() gCSCount--,LeaveCriticalSection(&gcsDPSPCritSection);
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#else
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#define ENTER_DPSP() EnterCriticalSection(&gcsDPSPCritSection);
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#define LEAVE_DPSP() LeaveCriticalSection(&gcsDPSPCritSection);
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#endif // DEBUG
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// get a pointer to the players socket address - used by macros below
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#define DGRAM_PSOCKADDR(ppd) ((SOCKADDR *)&(((LPSPPLAYERDATA)ppd)->saddrDatagram))
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#define STREAM_PSOCKADDR(ppd) ((SOCKADDR *)&(((LPSPPLAYERDATA)ppd)->saddrStream))
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// get the udp ip addr from a player
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#define IP_DGRAM_ADDR(ppd) (((SOCKADDR_IN *)DGRAM_PSOCKADDR(ppd))->sin_addr.s_addr)
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#define IP_DGRAM_PORT(ppd) (((SOCKADDR_IN *)DGRAM_PSOCKADDR(ppd))->sin_port)
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// get the stream ip addr from a player
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#define IP_STREAM_ADDR(ppd) (((SOCKADDR_IN *)STREAM_PSOCKADDR(ppd))->sin_addr.s_addr)
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#define IP_STREAM_PORT(ppd) (((SOCKADDR_IN *)STREAM_PSOCKADDR(ppd))->sin_port)
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// used to get the name of the computer we're running on in spinit
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#define HOST_NAME_LENGTH 50
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// if it's not ipx, it's ip
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// {685BC400-9D2C-11cf-A9CD-00AA006886E3}
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DEFINE_GUID(GUID_IPX,
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0x685bc400, 0x9d2c, 0x11cf, 0xa9, 0xcd, 0x0, 0xaa, 0x0, 0x68, 0x86, 0xe3);
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// 36E95EE0-8577-11cf-960C-0080C7534E82
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DEFINE_GUID(GUID_TCP,
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0x36E95EE0, 0x8577, 0x11cf, 0x96, 0xc, 0x0, 0x80, 0xc7, 0x53, 0x4e, 0x82);
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// {3A826E00-31DF-11d0-9CF9-00A0C90A43CB}
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DEFINE_GUID(GUID_LOCAL_TCP,
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0x3a826e00, 0x31df, 0x11d0, 0x9c, 0xf9, 0x0, 0xa0, 0xc9, 0xa, 0x43, 0xcb);
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// globals
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// ghinstance is used when putting up the dialog box to prompt for ip addr
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extern HANDLE ghInstance; // set in dllmain. instance handle for dpwsock.dll
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#ifdef DEBUG
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extern void DebugPrintAddr(UINT level,LPSTR pStr,SOCKADDR * psockaddr);
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#define DEBUGPRINTADDR(n,pstr,psockaddr) DebugPrintAddr(n,pstr,psockaddr);
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extern void DebugPrintSocket(UINT level,LPSTR pStr,SOCKET * pSock);
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#define DEBUGPRINTSOCK(n,pstr,psock) DebugPrintSocket(n,pstr,psock);
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#else // debug
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#define DEBUGPRINTADDR(n,pstr,psockaddr)
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#define DEBUGPRINTSOCK(n,pstr,psock)
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#endif // debug
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// global vars
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extern BOOL gbVoiceOpen; // set to TRUE if we have nm call open
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// from dpsp.c
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extern HRESULT WaitForThread(HANDLE hThread);
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extern HRESULT SetupControlSocket();
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extern HRESULT WINAPI SP_Close(LPDPSP_CLOSEDATA pcd);
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extern HRESULT InternalReliableSend(LPGLOBALDATA pgd, DPID idPlayerTo, SOCKADDR *
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lpSockAddr, LPBYTE lpMessage, DWORD dwMessageSize);
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extern HRESULT DoTCPEnumSessions(LPGLOBALDATA pgd, SOCKADDR *lpSockAddr, DWORD dwAddrSize,
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LPDPSP_ENUMSESSIONSDATA ped, BOOL bHostWillReuseConnection);
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extern HRESULT SendControlMessage(LPGLOBALDATA pgd);
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extern HRESULT SendReuseConnectionMessage(SOCKET sSocket);
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extern HRESULT AddSocketToBag(LPGLOBALDATA pgd, SOCKET socket, DPID dpid, SOCKADDR *psockaddr, DWORD dwFlags);
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extern BOOL FindSocketInReceiveList(LPGLOBALDATA pgd, SOCKADDR *pSockAddr, SOCKET * psSocket);
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extern void RemoveSocketFromReceiveList(LPGLOBALDATA pgd, SOCKET socket);
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extern void RemoveSocketFromBag(LPGLOBALDATA pgd, SOCKET socket);
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extern BOOL FindSocketInBag(LPGLOBALDATA pgd, SOCKADDR *pSockAddr, SOCKET * psSocket, LPDPID lpdpidPlayer);
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extern HRESULT GetSocketFromBag(LPGLOBALDATA pgd,SOCKET * psSocket, DWORD dwID, LPSOCKADDR psockaddr);
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extern HRESULT CreateAndConnectSocket(LPGLOBALDATA pgd,SOCKET * psSocket,DWORD dwType,LPSOCKADDR psockaddr, BOOL bOutBoundOnly);
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extern void RemovePlayerFromSocketBag(LPGLOBALDATA pgd,DWORD dwID);
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extern void SetMessageHeader(LPDWORD pdwMsg,DWORD dwSize, DWORD dwToken);
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extern void KillTCPEnumAsyncThread(LPGLOBALDATA pgd);
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// Support for SendEx in dpsp.c
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extern HRESULT UnreliableSendEx(LPDPSP_SENDEXDATA psd, LPSENDINFO lpSendInfo);
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extern HRESULT ReliableSendEx(LPDPSP_SENDEXDATA psd, LPSENDINFO pSendInfo);
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extern VOID RemovePendingAsyncSends(LPGLOBALDATA pgd, DPID dwPlayerTo);
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extern BOOL bAsyncSendsPending(LPGLOBALDATA pgd, DPID dwPlayerTo);
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// from winsock.c
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extern HRESULT FAR PASCAL CreateSocket(LPGLOBALDATA pgd,SOCKET * psock,INT type,
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WORD port,ULONG address,SOCKERR * perr, BOOL bInRange);
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extern HRESULT SPConnect(SOCKET* psSocket, LPSOCKADDR psockaddr,UINT addrlen, BOOL bOutBoundOnly);
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extern HRESULT CreateAndInitStreamSocket(LPGLOBALDATA pgd);
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extern HRESULT SetPlayerAddress(LPGLOBALDATA pgd,LPSPPLAYERDATA ppd,SOCKET sSocket,BOOL fStream);
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extern HRESULT CreatePlayerDgramSocket(LPGLOBALDATA pgd,LPSPPLAYERDATA ppd,DWORD dwFlags);
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extern HRESULT CreatePlayerStreamSocket(LPGLOBALDATA pgd,LPSPPLAYERDATA ppd,DWORD dwFlags);
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extern HRESULT SetDescriptionAddress(LPSPPLAYERDATA ppd,LPDPSESSIONDESC2 lpsdDesc);
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extern HRESULT SetReturnAddress(LPVOID pmsg,SOCKET sSocket);
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extern HRESULT GetReturnAddress(LPVOID pmsg,LPSOCKADDR psockaddr);
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extern HRESULT GetServerAddress(LPGLOBALDATA pgd,LPSOCKADDR psockaddr) ;
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extern void IPX_SetNodenum(LPVOID pmsg,SOCKADDR_IPX * psockaddr);
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extern void IP_GetAddr(SOCKADDR_IN * paddrDest,SOCKADDR_IN * paddrSrc) ;
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extern void IP_SetAddr(LPVOID pBuffer,SOCKADDR_IN * psockaddr);
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extern void IPX_GetNodenum(SOCKADDR_IPX * paddrDest,SOCKADDR_IPX * paddrSrc) ;
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extern HRESULT KillSocket(SOCKET sSocket,BOOL fStream,BOOL fHard);
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extern HRESULT KillPlayerSockets();
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extern HRESULT GetAddress(ULONG * puAddress,char *pBuffer,int cch);
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extern HRESULT KillThread(HANDLE hThread);
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// from wsock2.c
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extern DWORD WINAPI AsyncSendThreadProc(LPVOID pvCast);
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extern HRESULT InitWinsock2();
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extern HRESULT GetMaxUdpBufferSize(SOCKET socket, unsigned int * lpiSize);
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extern HRESULT InternalReliableSendEx(LPGLOBALDATA pgd, LPDPSP_SENDEXDATA psd,
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LPSENDINFO pSendInfo, SOCKADDR *lpSockAddr);
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extern DWORD WINAPI SPSendThread(LPVOID lpv);
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#ifdef DPLAY_VOICE_SUPPORT
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// from spvoice.c
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extern HRESULT WINAPI SP_OpenVoice(LPDPSP_OPENVOICEDATA pod) ;
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extern HRESULT WINAPI SP_CloseVoice(LPDPSP_CLOSEVOICEDATA pod) ;
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#endif // DPLAY_VOICE_SUPPORT
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// from handler.c
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HRESULT HandleServerMessage(LPGLOBALDATA pgd, SOCKET sSocket, LPBYTE pBuffer, DWORD dwSize);
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#ifdef FULLDUPLEX_SUPPORT
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// from registry.c
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HRESULT GetFlagsFromRegistry(LPGUID lpguidSP, LPDWORD lpdwFlags);
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#endif // FULLDUPLEX_SUPPORT
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// MACROS based on fixed pool manager.
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#endif
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