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97e6ee04 1/* -------------------------------------------------------------------------
99d80019
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2 * Project: GSocket (Generic Socket) for WX
3 * Name: gsocket.c
4 * Copyright: (c) Guilhem Lavaux
5 * Licence: wxWindows Licence
6 * Authors: David Elliott (C++ conversion, maintainer)
7 * Guilhem Lavaux,
8 * Guillermo Rodriguez Garcia <guille@iies.es>
9 * Purpose: GSocket main Unix and OS/2 file
10 * Licence: The wxWindows licence
11 * CVSID: $Id$
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12 * -------------------------------------------------------------------------
13 */
14
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15/*
16 * PLEASE don't put C++ comments here - this is a C source file.
17 */
18
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19#if defined(__WATCOMC__)
20#include "wx/wxprec.h"
21#include <errno.h>
22#include <nerrno.h>
23#endif
24
ba2a81d7 25#ifndef __GSOCKET_STANDALONE__
0beb8735 26#include "wx/defs.h"
ba2a81d7 27#endif
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28
29#if defined(__VISAGECPP__)
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30#define BSD_SELECT /* use Berkley Sockets select */
31#endif
32
33#if wxUSE_SOCKETS || defined(__GSOCKET_STANDALONE__)
34
35#include <assert.h>
36#include <sys/types.h>
37#ifdef __VISAGECPP__
38#include <string.h>
39#include <sys/time.h>
40#include <types.h>
41#include <netinet/in.h>
42#endif
43#include <netdb.h>
44#include <sys/ioctl.h>
45
46#ifdef __VMS__
47#include <socket.h>
48struct sockaddr_un
49{
50 u_char sun_len; /* sockaddr len including null */
51 u_char sun_family; /* AF_UNIX */
52 char sun_path[108]; /* path name (gag) */
53};
54#else
55#include <sys/socket.h>
56#include <sys/un.h>
57#endif
58
59#ifndef __VISAGECPP__
60#include <sys/time.h>
61#include <netinet/in.h>
62#include <arpa/inet.h>
63#include <errno.h>
64#include <string.h>
65#include <unistd.h>
66#else
67#include <nerrno.h>
68# if __IBMCPP__ < 400
69#include <machine/endian.h>
70#include <socket.h>
71#include <ioctl.h>
72#include <select.h>
73#include <unistd.h>
74
75#define EBADF SOCEBADF
76
77# ifdef min
78# undef min
79# endif
80# else
81#include <sys/socket.h>
82#include <sys/ioctl.h>
83#include <sys/select.h>
84
85#define close(a) soclose(a)
86#define select(a,b,c,d,e) bsdselect(a,b,c,d,e)
87int _System bsdselect(int,
88 struct fd_set *,
89 struct fd_set *,
90 struct fd_set *,
91 struct timeval *);
92int _System soclose(int);
93# endif
94#endif
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95#ifdef __EMX__
96#include <sys/select.h>
97#endif
98
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99#include <stdio.h>
100#include <stdlib.h>
101#include <stddef.h>
102#include <ctype.h>
103#ifdef sun
104# include <sys/filio.h>
105#endif
106#ifdef sgi
107# include <bstring.h>
108#endif
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109#ifdef _AIX
110# include <strings.h>
111#endif
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112#include <signal.h>
113
9e03e02d 114#ifndef WX_SOCKLEN_T
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115
116#ifdef VMS
9e03e02d 117# define WX_SOCKLEN_T unsigned int
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118#else
119# ifdef __GLIBC__
120# if __GLIBC__ == 2
9e03e02d 121# define WX_SOCKLEN_T socklen_t
97e6ee04 122# endif
fcbd7e5a 123# elif defined(__WXMAC__)
9e03e02d 124# define WX_SOCKLEN_T socklen_t
97e6ee04 125# else
9e03e02d 126# define WX_SOCKLEN_T int
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127# endif
128#endif
129
130#endif /* SOCKLEN_T */
131
ddc1a35f 132#ifndef SOCKOPTLEN_T
9e03e02d 133#define SOCKOPTLEN_T WX_SOCKLEN_T
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134#endif
135
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136/*
137 * MSW defines this, Unices don't.
138 */
139#ifndef INVALID_SOCKET
140#define INVALID_SOCKET -1
141#endif
142
143/* UnixWare reportedly needs this for FIONBIO definition */
144#ifdef __UNIXWARE__
145#include <sys/filio.h>
146#endif
147
148/*
149 * INADDR_BROADCAST is identical to INADDR_NONE which is not defined
150 * on all systems. INADDR_BROADCAST should be fine to indicate an error.
151 */
152#ifndef INADDR_NONE
153#define INADDR_NONE INADDR_BROADCAST
154#endif
155
7e1e6965 156#if defined(__VISAGECPP__) || defined(__WATCOMC__)
97e6ee04 157
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158 #define MASK_SIGNAL() {
159 #define UNMASK_SIGNAL() }
160
161#else
defbeca1 162 extern "C" { typedef void (*wxSigHandler)(int); }
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163
164 #define MASK_SIGNAL() \
165 { \
defbeca1 166 wxSigHandler old_handler = signal(SIGPIPE, SIG_IGN);
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167
168 #define UNMASK_SIGNAL() \
169 signal(SIGPIPE, old_handler); \
170 }
171
172#endif
97e6ee04 173
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174/* If a SIGPIPE is issued by a socket call on a remotely closed socket,
175 the program will "crash" unless it explicitly handles the SIGPIPE.
176 By using MSG_NOSIGNAL, the SIGPIPE is suppressed. Later, we will
177 use SO_NOSIGPIPE (if available), the BSD equivalent. */
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178#ifdef MSG_NOSIGNAL
179# define GSOCKET_MSG_NOSIGNAL MSG_NOSIGNAL
180#else /* MSG_NOSIGNAL not available (FreeBSD including OS X) */
181# define GSOCKET_MSG_NOSIGNAL 0
182#endif /* MSG_NOSIGNAL */
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183
184#ifndef __GSOCKET_STANDALONE__
185# include "wx/unix/gsockunx.h"
186# include "wx/gsocket.h"
187#else
188# include "gsockunx.h"
189# include "gsocket.h"
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190# ifndef WXUNUSED
191# define WXUNUSED(x)
192# endif
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193#endif /* __GSOCKET_STANDALONE__ */
194
195/* debugging helpers */
196#ifdef __GSOCKET_DEBUG__
197# define GSocket_Debug(args) printf args
198#else
199# define GSocket_Debug(args)
200#endif /* __GSOCKET_DEBUG__ */
201
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202/* Table of GUI-related functions. We must call them indirectly because
203 * of wxBase and GUI separation: */
444cb1fd 204
3e1400ac 205static GSocketGUIFunctionsTable *gs_gui_functions;
b082b524 206
ba2a81d7 207class GSocketGUIFunctionsTableNull: public GSocketGUIFunctionsTable
444cb1fd 208{
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209public:
210 virtual bool OnInit();
211 virtual void OnExit();
212 virtual bool CanUseEventLoop();
213 virtual bool Init_Socket(GSocket *socket);
214 virtual void Destroy_Socket(GSocket *socket);
215 virtual void Install_Callback(GSocket *socket, GSocketEvent event);
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216 virtual void Uninstall_Callback(GSocket *socket, GSocketEvent event);
217 virtual void Enable_Events(GSocket *socket);
218 virtual void Disable_Events(GSocket *socket);
219};
444cb1fd 220
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221bool GSocketGUIFunctionsTableNull::OnInit()
222{ return true; }
223void GSocketGUIFunctionsTableNull::OnExit()
224{}
225bool GSocketGUIFunctionsTableNull::CanUseEventLoop()
226{ return false; }
c40158e4 227bool GSocketGUIFunctionsTableNull::Init_Socket(GSocket *WXUNUSED(socket))
ba2a81d7 228{ return true; }
c40158e4 229void GSocketGUIFunctionsTableNull::Destroy_Socket(GSocket *WXUNUSED(socket))
ba2a81d7 230{}
c40158e4 231void GSocketGUIFunctionsTableNull::Install_Callback(GSocket *WXUNUSED(socket), GSocketEvent WXUNUSED(event))
ba2a81d7 232{}
c40158e4 233void GSocketGUIFunctionsTableNull::Uninstall_Callback(GSocket *WXUNUSED(socket), GSocketEvent WXUNUSED(event))
ba2a81d7 234{}
c40158e4 235void GSocketGUIFunctionsTableNull::Enable_Events(GSocket *WXUNUSED(socket))
ba2a81d7 236{}
c40158e4 237void GSocketGUIFunctionsTableNull::Disable_Events(GSocket *WXUNUSED(socket))
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238{}
239/* Global initialisers */
444cb1fd 240
3e1400ac 241void GSocket_SetGUIFunctions(GSocketGUIFunctionsTable *guifunc)
444cb1fd 242{
ba2a81d7 243 gs_gui_functions = guifunc;
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244}
245
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246int GSocket_Init(void)
247{
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248 if (!gs_gui_functions)
249 {
3e1400ac 250 static GSocketGUIFunctionsTableNull table;
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251 gs_gui_functions = &table;
252 }
253 if ( !gs_gui_functions->OnInit() )
254 return 0;
255 return 1;
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256}
257
258void GSocket_Cleanup(void)
259{
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260 if (gs_gui_functions)
261 {
262 gs_gui_functions->OnExit();
263 }
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264}
265
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266/* Constructors / Destructors for GSocket */
267
268GSocket::GSocket()
97e6ee04 269{
09e6e5ec 270 int i;
97e6ee04 271
09e6e5ec 272 m_fd = INVALID_SOCKET;
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273 for (i=0;i<GSOCK_MAX_EVENT;i++)
274 {
09e6e5ec 275 m_cbacks[i] = NULL;
97e6ee04 276 }
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277 m_detected = 0;
278 m_local = NULL;
279 m_peer = NULL;
280 m_error = GSOCK_NOERROR;
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281 m_server = false;
282 m_stream = true;
09e6e5ec 283 m_gui_dependent = NULL;
948c96ef 284 m_non_blocking = false;
1eef64d8 285 m_reusable = false;
09e6e5ec 286 m_timeout = 10*60*1000;
97e6ee04 287 /* 10 minutes * 60 sec * 1000 millisec */
948c96ef 288 m_establishing = false;
97e6ee04 289
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290 assert(gs_gui_functions);
291 /* Per-socket GUI-specific initialization */
292 m_ok = gs_gui_functions->Init_Socket(this);
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293}
294
ba2a81d7 295void GSocket::Close()
97e6ee04 296{
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297 gs_gui_functions->Disable_Events(this);
298 /* gsockosx.c calls CFSocketInvalidate which closes the socket for us */
97e6ee04 299#if !(defined(__DARWIN__) && (defined(__WXMAC__) || defined(__WXCOCOA__)))
09e6e5ec 300 close(m_fd);
97e6ee04 301#endif
09e6e5ec 302 m_fd = INVALID_SOCKET;
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303}
304
ba2a81d7 305GSocket::~GSocket()
97e6ee04 306{
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307 assert(this);
308
309 /* Check that the socket is really shutdowned */
310 if (m_fd != INVALID_SOCKET)
311 Shutdown();
312
313 /* Per-socket GUI-specific cleanup */
314 gs_gui_functions->Destroy_Socket(this);
315
97e6ee04 316 /* Destroy private addresses */
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317 if (m_local)
318 GAddress_destroy(m_local);
97e6ee04 319
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320 if (m_peer)
321 GAddress_destroy(m_peer);
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322}
323
324/* GSocket_Shutdown:
325 * Disallow further read/write operations on this socket, close
326 * the fd and disable all callbacks.
327 */
ba2a81d7 328void GSocket::Shutdown()
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329{
330 int evt;
331
09e6e5ec 332 assert(this);
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333
334 /* If socket has been created, shutdown it */
09e6e5ec 335 if (m_fd != INVALID_SOCKET)
97e6ee04 336 {
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337 shutdown(m_fd, 2);
338 Close();
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339 }
340
341 /* Disable GUI callbacks */
342 for (evt = 0; evt < GSOCK_MAX_EVENT; evt++)
09e6e5ec 343 m_cbacks[evt] = NULL;
97e6ee04 344
09e6e5ec 345 m_detected = GSOCK_LOST_FLAG;
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346}
347
348/* Address handling */
349
350/* GSocket_SetLocal:
351 * GSocket_GetLocal:
352 * GSocket_SetPeer:
353 * GSocket_GetPeer:
354 * Set or get the local or peer address for this socket. The 'set'
355 * functions return GSOCK_NOERROR on success, an error code otherwise.
356 * The 'get' functions return a pointer to a GAddress object on success,
357 * or NULL otherwise, in which case they set the error code of the
358 * corresponding GSocket.
359 *
360 * Error codes:
361 * GSOCK_INVSOCK - the socket is not valid.
362 * GSOCK_INVADDR - the address is not valid.
363 */
ba2a81d7 364GSocketError GSocket::SetLocal(GAddress *address)
97e6ee04 365{
09e6e5ec 366 assert(this);
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367
368 /* the socket must be initialized, or it must be a server */
09e6e5ec 369 if ((m_fd != INVALID_SOCKET && !m_server))
97e6ee04 370 {
09e6e5ec 371 m_error = GSOCK_INVSOCK;
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372 return GSOCK_INVSOCK;
373 }
374
375 /* check address */
376 if (address == NULL || address->m_family == GSOCK_NOFAMILY)
377 {
09e6e5ec 378 m_error = GSOCK_INVADDR;
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379 return GSOCK_INVADDR;
380 }
381
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382 if (m_local)
383 GAddress_destroy(m_local);
97e6ee04 384
09e6e5ec 385 m_local = GAddress_copy(address);
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386
387 return GSOCK_NOERROR;
388}
389
ba2a81d7 390GSocketError GSocket::SetPeer(GAddress *address)
97e6ee04 391{
09e6e5ec 392 assert(this);
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393
394 /* check address */
395 if (address == NULL || address->m_family == GSOCK_NOFAMILY)
396 {
09e6e5ec 397 m_error = GSOCK_INVADDR;
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398 return GSOCK_INVADDR;
399 }
400
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401 if (m_peer)
402 GAddress_destroy(m_peer);
97e6ee04 403
09e6e5ec 404 m_peer = GAddress_copy(address);
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405
406 return GSOCK_NOERROR;
407}
408
ba2a81d7 409GAddress *GSocket::GetLocal()
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410{
411 GAddress *address;
412 struct sockaddr addr;
9e03e02d 413 WX_SOCKLEN_T size = sizeof(addr);
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414 GSocketError err;
415
09e6e5ec 416 assert(this);
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417
418 /* try to get it from the m_local var first */
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419 if (m_local)
420 return GAddress_copy(m_local);
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421
422 /* else, if the socket is initialized, try getsockname */
09e6e5ec 423 if (m_fd == INVALID_SOCKET)
97e6ee04 424 {
09e6e5ec 425 m_error = GSOCK_INVSOCK;
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426 return NULL;
427 }
428
9e03e02d 429 if (getsockname(m_fd, &addr, (WX_SOCKLEN_T *) &size) < 0)
97e6ee04 430 {
09e6e5ec 431 m_error = GSOCK_IOERR;
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432 return NULL;
433 }
434
435 /* got a valid address from getsockname, create a GAddress object */
436 address = GAddress_new();
437 if (address == NULL)
438 {
09e6e5ec 439 m_error = GSOCK_MEMERR;
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440 return NULL;
441 }
442
443 err = _GAddress_translate_from(address, &addr, size);
444 if (err != GSOCK_NOERROR)
445 {
446 GAddress_destroy(address);
09e6e5ec 447 m_error = err;
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448 return NULL;
449 }
450
451 return address;
452}
453
ba2a81d7 454GAddress *GSocket::GetPeer()
97e6ee04 455{
09e6e5ec 456 assert(this);
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457
458 /* try to get it from the m_peer var */
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459 if (m_peer)
460 return GAddress_copy(m_peer);
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461
462 return NULL;
463}
464
465/* Server specific parts */
466
467/* GSocket_SetServer:
468 * Sets up this socket as a server. The local address must have been
469 * set with GSocket_SetLocal() before GSocket_SetServer() is called.
470 * Returns GSOCK_NOERROR on success, one of the following otherwise:
b082b524 471 *
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472 * Error codes:
473 * GSOCK_INVSOCK - the socket is in use.
474 * GSOCK_INVADDR - the local address has not been set.
b082b524 475 * GSOCK_IOERR - low-level error.
97e6ee04 476 */
ba2a81d7 477GSocketError GSocket::SetServer()
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478{
479 int arg = 1;
480
09e6e5ec 481 assert(this);
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482
483 /* must not be in use */
09e6e5ec 484 if (m_fd != INVALID_SOCKET)
97e6ee04 485 {
09e6e5ec 486 m_error = GSOCK_INVSOCK;
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487 return GSOCK_INVSOCK;
488 }
489
490 /* the local addr must have been set */
09e6e5ec 491 if (!m_local)
97e6ee04 492 {
09e6e5ec 493 m_error = GSOCK_INVADDR;
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494 return GSOCK_INVADDR;
495 }
496
497 /* Initialize all fields */
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498 m_stream = true;
499 m_server = true;
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500
501 /* Create the socket */
09e6e5ec 502 m_fd = socket(m_local->m_realfamily, SOCK_STREAM, 0);
97e6ee04 503
09e6e5ec 504 if (m_fd == INVALID_SOCKET)
97e6ee04 505 {
09e6e5ec 506 m_error = GSOCK_IOERR;
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507 return GSOCK_IOERR;
508 }
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509
510 /* FreeBSD variants can't use MSG_NOSIGNAL, and instead use a socket option */
511#ifdef SO_NOSIGPIPE
512 setsockopt(m_fd, SOL_SOCKET, SO_NOSIGPIPE, (const char*)&arg, sizeof(u_long));
513#endif
514
09e6e5ec 515 ioctl(m_fd, FIONBIO, &arg);
ba2a81d7 516 gs_gui_functions->Enable_Events(this);
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517
518 /* allow a socket to re-bind if the socket is in the TIME_WAIT
519 state after being previously closed.
520 */
ba2a81d7 521 if (m_reusable)
b082b524 522 setsockopt(m_fd, SOL_SOCKET, SO_REUSEADDR, (const char*)&arg, sizeof(u_long));
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523
524 /* Bind to the local address,
525 * retrieve the actual address bound,
526 * and listen up to 5 connections.
527 */
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528 if ((bind(m_fd, m_local->m_addr, m_local->m_len) != 0) ||
529 (getsockname(m_fd,
530 m_local->m_addr,
9e03e02d 531 (WX_SOCKLEN_T *) &m_local->m_len) != 0) ||
09e6e5ec 532 (listen(m_fd, 5) != 0))
97e6ee04 533 {
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534 Close();
535 m_error = GSOCK_IOERR;
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536 return GSOCK_IOERR;
537 }
538
539 return GSOCK_NOERROR;
540}
541
542/* GSocket_WaitConnection:
543 * Waits for an incoming client connection. Returns a pointer to
544 * a GSocket object, or NULL if there was an error, in which case
545 * the last error field will be updated for the calling GSocket.
546 *
547 * Error codes (set in the calling GSocket)
548 * GSOCK_INVSOCK - the socket is not valid or not a server.
549 * GSOCK_TIMEDOUT - timeout, no incoming connections.
550 * GSOCK_WOULDBLOCK - the call would block and the socket is nonblocking.
551 * GSOCK_MEMERR - couldn't allocate memory.
b082b524 552 * GSOCK_IOERR - low-level error.
97e6ee04 553 */
ba2a81d7 554GSocket *GSocket::WaitConnection()
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555{
556 struct sockaddr from;
9e03e02d 557 WX_SOCKLEN_T fromlen = sizeof(from);
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558 GSocket *connection;
559 GSocketError err;
560 int arg = 1;
561
09e6e5ec 562 assert(this);
97e6ee04 563
97e6ee04 564 /* If the socket has already been created, we exit immediately */
09e6e5ec 565 if (m_fd == INVALID_SOCKET || !m_server)
97e6ee04 566 {
09e6e5ec 567 m_error = GSOCK_INVSOCK;
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568 return NULL;
569 }
570
571 /* Create a GSocket object for the new connection */
444cb1fd 572 connection = GSocket_new();
97e6ee04 573
444cb1fd 574 if (!connection)
97e6ee04 575 {
09e6e5ec 576 m_error = GSOCK_MEMERR;
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577 return NULL;
578 }
579
580 /* Wait for a connection (with timeout) */
09e6e5ec 581 if (Input_Timeout() == GSOCK_TIMEDOUT)
97e6ee04 582 {
85431efa 583 delete connection;
09e6e5ec 584 /* m_error set by _GSocket_Input_Timeout */
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585 return NULL;
586 }
587
9e03e02d 588 connection->m_fd = accept(m_fd, &from, (WX_SOCKLEN_T *) &fromlen);
97e6ee04 589
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590 /* Reenable CONNECTION events */
591 Enable(GSOCK_CONNECTION);
bb154f79 592
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593 if (connection->m_fd == INVALID_SOCKET)
594 {
595 if (errno == EWOULDBLOCK)
09e6e5ec 596 m_error = GSOCK_WOULDBLOCK;
97e6ee04 597 else
09e6e5ec 598 m_error = GSOCK_IOERR;
97e6ee04 599
85431efa 600 delete connection;
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601 return NULL;
602 }
603
604 /* Initialize all fields */
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605 connection->m_server = false;
606 connection->m_stream = true;
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607
608 /* Setup the peer address field */
609 connection->m_peer = GAddress_new();
610 if (!connection->m_peer)
611 {
85431efa 612 delete connection;
09e6e5ec 613 m_error = GSOCK_MEMERR;
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614 return NULL;
615 }
616 err = _GAddress_translate_from(connection->m_peer, &from, fromlen);
617 if (err != GSOCK_NOERROR)
618 {
85431efa 619 delete connection;
09e6e5ec 620 m_error = err;
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621 return NULL;
622 }
623#if defined(__EMX__) || defined(__VISAGECPP__)
624 ioctl(connection->m_fd, FIONBIO, (char*)&arg, sizeof(arg));
625#else
626 ioctl(connection->m_fd, FIONBIO, &arg);
627#endif
ba2a81d7 628 gs_gui_functions->Enable_Events(connection);
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629
630 return connection;
631}
632
948c96ef 633bool GSocket::SetReusable()
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634{
635 /* socket must not be null, and must not be in use/already bound */
ba2a81d7 636 if (this && m_fd == INVALID_SOCKET) {
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637 m_reusable = true;
638 return true;
b082b524 639 }
948c96ef 640 return false;
b082b524
DE
641}
642
97e6ee04
DE
643/* Client specific parts */
644
645/* GSocket_Connect:
646 * For stream (connection oriented) sockets, GSocket_Connect() tries
647 * to establish a client connection to a server using the peer address
648 * as established with GSocket_SetPeer(). Returns GSOCK_NOERROR if the
d6922577 649 * connection has been successfully established, or one of the error
97e6ee04
DE
650 * codes listed below. Note that for nonblocking sockets, a return
651 * value of GSOCK_WOULDBLOCK doesn't mean a failure. The connection
652 * request can be completed later; you should use GSocket_Select()
653 * to poll for GSOCK_CONNECTION | GSOCK_LOST, or wait for the
654 * corresponding asynchronous events.
655 *
656 * For datagram (non connection oriented) sockets, GSocket_Connect()
657 * just sets the peer address established with GSocket_SetPeer() as
658 * default destination.
659 *
660 * Error codes:
661 * GSOCK_INVSOCK - the socket is in use or not valid.
662 * GSOCK_INVADDR - the peer address has not been established.
663 * GSOCK_TIMEDOUT - timeout, the connection failed.
664 * GSOCK_WOULDBLOCK - connection in progress (nonblocking sockets only)
665 * GSOCK_MEMERR - couldn't allocate memory.
b082b524 666 * GSOCK_IOERR - low-level error.
97e6ee04 667 */
ba2a81d7 668GSocketError GSocket::Connect(GSocketStream stream)
97e6ee04
DE
669{
670 int err, ret;
671 int arg = 1;
672
09e6e5ec 673 assert(this);
97e6ee04
DE
674
675 /* Enable CONNECTION events (needed for nonblocking connections) */
09e6e5ec 676 Enable(GSOCK_CONNECTION);
97e6ee04 677
09e6e5ec 678 if (m_fd != INVALID_SOCKET)
97e6ee04 679 {
09e6e5ec 680 m_error = GSOCK_INVSOCK;
97e6ee04
DE
681 return GSOCK_INVSOCK;
682 }
683
09e6e5ec 684 if (!m_peer)
97e6ee04 685 {
09e6e5ec 686 m_error = GSOCK_INVADDR;
97e6ee04
DE
687 return GSOCK_INVADDR;
688 }
689
690 /* Streamed or dgram socket? */
09e6e5ec 691 m_stream = (stream == GSOCK_STREAMED);
948c96ef
DE
692 m_server = false;
693 m_establishing = false;
97e6ee04
DE
694
695 /* Create the socket */
09e6e5ec
DE
696 m_fd = socket(m_peer->m_realfamily,
697 m_stream? SOCK_STREAM : SOCK_DGRAM, 0);
97e6ee04 698
09e6e5ec 699 if (m_fd == INVALID_SOCKET)
97e6ee04 700 {
09e6e5ec 701 m_error = GSOCK_IOERR;
97e6ee04
DE
702 return GSOCK_IOERR;
703 }
bb154f79
KH
704
705 /* FreeBSD variants can't use MSG_NOSIGNAL, and instead use a socket option */
706#ifdef SO_NOSIGPIPE
707 setsockopt(m_fd, SOL_SOCKET, SO_NOSIGPIPE, (const char*)&arg, sizeof(u_long));
708#endif
709
97e6ee04 710#if defined(__EMX__) || defined(__VISAGECPP__)
09e6e5ec 711 ioctl(m_fd, FIONBIO, (char*)&arg, sizeof(arg));
97e6ee04 712#else
09e6e5ec 713 ioctl(m_fd, FIONBIO, &arg);
97e6ee04 714#endif
97e6ee04
DE
715
716 /* Connect it to the peer address, with a timeout (see below) */
09e6e5ec 717 ret = connect(m_fd, m_peer->m_addr, m_peer->m_len);
97e6ee04 718
e400d27d
KH
719 /* We only call Enable_Events if we know e aren't shutting down the socket */
720
bb154f79
KH
721 if (m_non_blocking)
722 {
723 gs_gui_functions->Enable_Events(this);
724 }
725
97e6ee04
DE
726 if (ret == -1)
727 {
728 err = errno;
729
730 /* If connect failed with EINPROGRESS and the GSocket object
731 * is in blocking mode, we select() for the specified timeout
732 * checking for writability to see if the connection request
733 * completes.
734 */
09e6e5ec 735 if ((err == EINPROGRESS) && (!m_non_blocking))
97e6ee04 736 {
09e6e5ec 737 if (Output_Timeout() == GSOCK_TIMEDOUT)
97e6ee04 738 {
09e6e5ec
DE
739 Close();
740 /* m_error is set in _GSocket_Output_Timeout */
97e6ee04
DE
741 return GSOCK_TIMEDOUT;
742 }
743 else
744 {
745 int error;
ddc1a35f 746 SOCKOPTLEN_T len = sizeof(error);
97e6ee04 747
f71bb8ef 748 getsockopt(m_fd, SOL_SOCKET, SO_ERROR, (char*) &error, &len);
97e6ee04 749
bb154f79
KH
750 gs_gui_functions->Enable_Events(this);
751
97e6ee04
DE
752 if (!error)
753 return GSOCK_NOERROR;
754 }
755 }
756
757 /* If connect failed with EINPROGRESS and the GSocket object
758 * is set to nonblocking, we set m_error to GSOCK_WOULDBLOCK
759 * (and return GSOCK_WOULDBLOCK) but we don't close the socket;
760 * this way if the connection completes, a GSOCK_CONNECTION
761 * event will be generated, if enabled.
762 */
09e6e5ec 763 if ((err == EINPROGRESS) && (m_non_blocking))
97e6ee04 764 {
948c96ef 765 m_establishing = true;
09e6e5ec 766 m_error = GSOCK_WOULDBLOCK;
97e6ee04
DE
767 return GSOCK_WOULDBLOCK;
768 }
769
770 /* If connect failed with an error other than EINPROGRESS,
771 * then the call to GSocket_Connect has failed.
772 */
09e6e5ec
DE
773 Close();
774 m_error = GSOCK_IOERR;
97e6ee04
DE
775 return GSOCK_IOERR;
776 }
777
778 return GSOCK_NOERROR;
779}
780
781/* Datagram sockets */
782
783/* GSocket_SetNonOriented:
784 * Sets up this socket as a non-connection oriented (datagram) socket.
785 * Before using this function, the local address must have been set
786 * with GSocket_SetLocal(), or the call will fail. Returns GSOCK_NOERROR
787 * on success, or one of the following otherwise.
788 *
789 * Error codes:
790 * GSOCK_INVSOCK - the socket is in use.
791 * GSOCK_INVADDR - the local address has not been set.
792 * GSOCK_IOERR - low-level error.
793 */
ba2a81d7 794GSocketError GSocket::SetNonOriented()
97e6ee04
DE
795{
796 int arg = 1;
797
09e6e5ec 798 assert(this);
97e6ee04 799
09e6e5ec 800 if (m_fd != INVALID_SOCKET)
97e6ee04 801 {
09e6e5ec 802 m_error = GSOCK_INVSOCK;
97e6ee04
DE
803 return GSOCK_INVSOCK;
804 }
805
09e6e5ec 806 if (!m_local)
97e6ee04 807 {
09e6e5ec 808 m_error = GSOCK_INVADDR;
97e6ee04
DE
809 return GSOCK_INVADDR;
810 }
811
812 /* Initialize all fields */
948c96ef
DE
813 m_stream = false;
814 m_server = false;
97e6ee04
DE
815
816 /* Create the socket */
09e6e5ec 817 m_fd = socket(m_local->m_realfamily, SOCK_DGRAM, 0);
97e6ee04 818
09e6e5ec 819 if (m_fd == INVALID_SOCKET)
97e6ee04 820 {
09e6e5ec 821 m_error = GSOCK_IOERR;
97e6ee04
DE
822 return GSOCK_IOERR;
823 }
824#if defined(__EMX__) || defined(__VISAGECPP__)
09e6e5ec 825 ioctl(m_fd, FIONBIO, (char*)&arg, sizeof(arg));
97e6ee04 826#else
09e6e5ec 827 ioctl(m_fd, FIONBIO, &arg);
97e6ee04 828#endif
ba2a81d7 829 gs_gui_functions->Enable_Events(this);
97e6ee04
DE
830
831 /* Bind to the local address,
832 * and retrieve the actual address bound.
833 */
09e6e5ec
DE
834 if ((bind(m_fd, m_local->m_addr, m_local->m_len) != 0) ||
835 (getsockname(m_fd,
836 m_local->m_addr,
9e03e02d 837 (WX_SOCKLEN_T *) &m_local->m_len) != 0))
97e6ee04 838 {
09e6e5ec
DE
839 Close();
840 m_error = GSOCK_IOERR;
97e6ee04
DE
841 return GSOCK_IOERR;
842 }
843
844 return GSOCK_NOERROR;
845}
846
847/* Generic IO */
848
849/* Like recv(), send(), ... */
ba2a81d7 850int GSocket::Read(char *buffer, int size)
97e6ee04
DE
851{
852 int ret;
853
09e6e5ec 854 assert(this);
97e6ee04 855
09e6e5ec 856 if (m_fd == INVALID_SOCKET || m_server)
97e6ee04 857 {
09e6e5ec 858 m_error = GSOCK_INVSOCK;
97e6ee04
DE
859 return -1;
860 }
861
9d715960
DE
862 /* Disable events during query of socket status */
863 Disable(GSOCK_INPUT);
b082b524 864
97e6ee04 865 /* If the socket is blocking, wait for data (with a timeout) */
09e6e5ec 866 if (Input_Timeout() == GSOCK_TIMEDOUT)
9d715960
DE
867 /* We no longer return here immediately, otherwise socket events would not be re-enabled! */
868 ret = -1;
869 else {
870 /* Read the data */
871 if (m_stream)
872 ret = Recv_Stream(buffer, size);
873 else
874 ret = Recv_Dgram(buffer, size);
875 }
b082b524 876
97e6ee04
DE
877 if (ret == -1)
878 {
bb154f79 879 if ((errno == EWOULDBLOCK) || (errno == EAGAIN))
09e6e5ec 880 m_error = GSOCK_WOULDBLOCK;
97e6ee04 881 else
09e6e5ec 882 m_error = GSOCK_IOERR;
97e6ee04 883 }
b082b524 884
9d715960 885 /* Enable events again now that we are done processing */
09e6e5ec 886 Enable(GSOCK_INPUT);
97e6ee04
DE
887
888 return ret;
889}
890
ba2a81d7 891int GSocket::Write(const char *buffer, int size)
b082b524 892{
97e6ee04
DE
893 int ret;
894
09e6e5ec 895 assert(this);
b082b524 896
97e6ee04
DE
897 GSocket_Debug(( "GSocket_Write #1, size %d\n", size ));
898
09e6e5ec 899 if (m_fd == INVALID_SOCKET || m_server)
97e6ee04 900 {
09e6e5ec 901 m_error = GSOCK_INVSOCK;
97e6ee04
DE
902 return -1;
903 }
904
905 GSocket_Debug(( "GSocket_Write #2, size %d\n", size ));
906
907 /* If the socket is blocking, wait for writability (with a timeout) */
09e6e5ec 908 if (Output_Timeout() == GSOCK_TIMEDOUT)
97e6ee04
DE
909 return -1;
910
911 GSocket_Debug(( "GSocket_Write #3, size %d\n", size ));
912
913 /* Write the data */
09e6e5ec
DE
914 if (m_stream)
915 ret = Send_Stream(buffer, size);
97e6ee04 916 else
09e6e5ec 917 ret = Send_Dgram(buffer, size);
b082b524 918
97e6ee04
DE
919 GSocket_Debug(( "GSocket_Write #4, size %d\n", size ));
920
921 if (ret == -1)
922 {
7e1e6965 923 if ((errno == EWOULDBLOCK) || (errno == EAGAIN))
97e6ee04 924 {
09e6e5ec 925 m_error = GSOCK_WOULDBLOCK;
97e6ee04
DE
926 GSocket_Debug(( "GSocket_Write error WOULDBLOCK\n" ));
927 }
928 else
929 {
09e6e5ec 930 m_error = GSOCK_IOERR;
97e6ee04
DE
931 GSocket_Debug(( "GSocket_Write error IOERR\n" ));
932 }
933
934 /* Only reenable OUTPUT events after an error (just like WSAAsyncSelect
935 * in MSW). Once the first OUTPUT event is received, users can assume
936 * that the socket is writable until a read operation fails. Only then
937 * will further OUTPUT events be posted.
938 */
09e6e5ec 939 Enable(GSOCK_OUTPUT);
97e6ee04
DE
940 return -1;
941 }
b082b524 942
97e6ee04
DE
943 GSocket_Debug(( "GSocket_Write #5, size %d ret %d\n", size, ret ));
944
945 return ret;
946}
947
948/* GSocket_Select:
949 * Polls the socket to determine its status. This function will
950 * check for the events specified in the 'flags' parameter, and
951 * it will return a mask indicating which operations can be
952 * performed. This function won't block, regardless of the
953 * mode (blocking | nonblocking) of the socket.
954 */
ba2a81d7 955GSocketEventFlags GSocket::Select(GSocketEventFlags flags)
97e6ee04 956{
ba2a81d7 957 if (!gs_gui_functions->CanUseEventLoop())
97e6ee04
DE
958 {
959
960 GSocketEventFlags result = 0;
961 fd_set readfds;
962 fd_set writefds;
963 fd_set exceptfds;
964 struct timeval tv;
965
9d715960
DE
966 assert(this);
967
60b0bd1d
JS
968 if (m_fd == -1)
969 return (GSOCK_LOST_FLAG & flags);
970
97e6ee04 971 /* Do not use a static struct, Linux can garble it */
09e6e5ec 972 tv.tv_sec = m_timeout / 1000;
7488a05e 973 tv.tv_usec = (m_timeout % 1000) * 1000;
97e6ee04 974
97e6ee04
DE
975 FD_ZERO(&readfds);
976 FD_ZERO(&writefds);
977 FD_ZERO(&exceptfds);
09e6e5ec 978 FD_SET(m_fd, &readfds);
9d715960 979 if (flags & GSOCK_OUTPUT_FLAG || flags & GSOCK_CONNECTION_FLAG)
09e6e5ec
DE
980 FD_SET(m_fd, &writefds);
981 FD_SET(m_fd, &exceptfds);
97e6ee04
DE
982
983 /* Check 'sticky' CONNECTION flag first */
09e6e5ec 984 result |= (GSOCK_CONNECTION_FLAG & m_detected);
97e6ee04
DE
985
986 /* If we have already detected a LOST event, then don't try
987 * to do any further processing.
988 */
09e6e5ec 989 if ((m_detected & GSOCK_LOST_FLAG) != 0)
97e6ee04 990 {
948c96ef 991 m_establishing = false;
97e6ee04
DE
992
993 return (GSOCK_LOST_FLAG & flags);
994 }
995
996 /* Try select now */
09e6e5ec 997 if (select(m_fd + 1, &readfds, &writefds, &exceptfds, &tv) <= 0)
97e6ee04
DE
998 {
999 /* What to do here? */
1000 return (result & flags);
1001 }
1002
1003 /* Check for readability */
09e6e5ec 1004 if (FD_ISSET(m_fd, &readfds))
97e6ee04
DE
1005 {
1006 char c;
1007
bb154f79
KH
1008 int num = recv(m_fd, &c, 1, MSG_PEEK | GSOCKET_MSG_NOSIGNAL);
1009
1010 if (num > 0)
97e6ee04
DE
1011 {
1012 result |= GSOCK_INPUT_FLAG;
1013 }
1014 else
1015 {
09e6e5ec 1016 if (m_server && m_stream)
97e6ee04
DE
1017 {
1018 result |= GSOCK_CONNECTION_FLAG;
09e6e5ec 1019 m_detected |= GSOCK_CONNECTION_FLAG;
97e6ee04 1020 }
bb154f79 1021 else if ((errno != EWOULDBLOCK) && (errno != EAGAIN) && (errno != EINTR))
97e6ee04 1022 {
09e6e5ec 1023 m_detected = GSOCK_LOST_FLAG;
948c96ef 1024 m_establishing = false;
b082b524 1025
97e6ee04
DE
1026 /* LOST event: Abort any further processing */
1027 return (GSOCK_LOST_FLAG & flags);
1028 }
1029 }
1030 }
1031
1032 /* Check for writability */
09e6e5ec 1033 if (FD_ISSET(m_fd, &writefds))
97e6ee04 1034 {
09e6e5ec 1035 if (m_establishing && !m_server)
97e6ee04
DE
1036 {
1037 int error;
ddc1a35f 1038 SOCKOPTLEN_T len = sizeof(error);
97e6ee04 1039
948c96ef 1040 m_establishing = false;
97e6ee04 1041
f71bb8ef 1042 getsockopt(m_fd, SOL_SOCKET, SO_ERROR, (char*)&error, &len);
97e6ee04
DE
1043
1044 if (error)
1045 {
09e6e5ec 1046 m_detected = GSOCK_LOST_FLAG;
97e6ee04
DE
1047
1048 /* LOST event: Abort any further processing */
1049 return (GSOCK_LOST_FLAG & flags);
1050 }
1051 else
1052 {
1053 result |= GSOCK_CONNECTION_FLAG;
09e6e5ec 1054 m_detected |= GSOCK_CONNECTION_FLAG;
97e6ee04
DE
1055 }
1056 }
1057 else
1058 {
1059 result |= GSOCK_OUTPUT_FLAG;
1060 }
1061 }
1062
1063 /* Check for exceptions and errors (is this useful in Unices?) */
09e6e5ec 1064 if (FD_ISSET(m_fd, &exceptfds))
97e6ee04 1065 {
948c96ef 1066 m_establishing = false;
09e6e5ec 1067 m_detected = GSOCK_LOST_FLAG;
97e6ee04
DE
1068
1069 /* LOST event: Abort any further processing */
1070 return (GSOCK_LOST_FLAG & flags);
1071 }
1072
1073 return (result & flags);
1074
1075 }
1076 else
1077 {
1078
09e6e5ec
DE
1079 assert(this);
1080 return flags & m_detected;
97e6ee04
DE
1081
1082 }
1083}
1084
1085/* Flags */
1086
1087/* GSocket_SetNonBlocking:
1088 * Sets the socket to non-blocking mode. All IO calls will return
1089 * immediately.
1090 */
948c96ef 1091void GSocket::SetNonBlocking(bool non_block)
97e6ee04 1092{
09e6e5ec 1093 assert(this);
97e6ee04
DE
1094
1095 GSocket_Debug( ("GSocket_SetNonBlocking: %d\n", (int)non_block) );
1096
09e6e5ec 1097 m_non_blocking = non_block;
97e6ee04
DE
1098}
1099
1100/* GSocket_SetTimeout:
1101 * Sets the timeout for blocking calls. Time is expressed in
1102 * milliseconds.
1103 */
ba2a81d7 1104void GSocket::SetTimeout(unsigned long millisec)
97e6ee04 1105{
09e6e5ec 1106 assert(this);
97e6ee04 1107
09e6e5ec 1108 m_timeout = millisec;
97e6ee04
DE
1109}
1110
1111/* GSocket_GetError:
d6922577 1112 * Returns the last error occurred for this socket. Note that successful
97e6ee04
DE
1113 * operations do not clear this back to GSOCK_NOERROR, so use it only
1114 * after an error.
1115 */
ba2a81d7 1116GSocketError WXDLLIMPEXP_NET GSocket::GetError()
97e6ee04 1117{
09e6e5ec 1118 assert(this);
97e6ee04 1119
09e6e5ec 1120 return m_error;
97e6ee04
DE
1121}
1122
1123/* Callbacks */
1124
1125/* GSOCK_INPUT:
1126 * There is data to be read in the input buffer. If, after a read
1127 * operation, there is still data available, the callback function will
1128 * be called again.
1129 * GSOCK_OUTPUT:
b082b524 1130 * The socket is available for writing. That is, the next write call
97e6ee04
DE
1131 * won't block. This event is generated only once, when the connection is
1132 * first established, and then only if a call failed with GSOCK_WOULDBLOCK,
1133 * when the output buffer empties again. This means that the app should
1134 * assume that it can write since the first OUTPUT event, and no more
1135 * OUTPUT events will be generated unless an error occurs.
1136 * GSOCK_CONNECTION:
d6922577 1137 * Connection successfully established, for client sockets, or incoming
97e6ee04
DE
1138 * client connection, for server sockets. Wait for this event (also watch
1139 * out for GSOCK_LOST) after you issue a nonblocking GSocket_Connect() call.
1140 * GSOCK_LOST:
1141 * The connection is lost (or a connection request failed); this could
1142 * be due to a failure, or due to the peer closing it gracefully.
1143 */
1144
1145/* GSocket_SetCallback:
1146 * Enables the callbacks specified by 'flags'. Note that 'flags'
1147 * may be a combination of flags OR'ed toghether, so the same
1148 * callback function can be made to accept different events.
1149 * The callback function must have the following prototype:
1150 *
1151 * void function(GSocket *socket, GSocketEvent event, char *cdata)
1152 */
ba2a81d7 1153void GSocket::SetCallback(GSocketEventFlags flags,
97e6ee04
DE
1154 GSocketCallback callback, char *cdata)
1155{
1156 int count;
1157
09e6e5ec 1158 assert(this);
97e6ee04
DE
1159
1160 for (count = 0; count < GSOCK_MAX_EVENT; count++)
1161 {
1162 if ((flags & (1 << count)) != 0)
1163 {
09e6e5ec
DE
1164 m_cbacks[count] = callback;
1165 m_data[count] = cdata;
97e6ee04
DE
1166 }
1167 }
1168}
1169
1170/* GSocket_UnsetCallback:
1171 * Disables all callbacks specified by 'flags', which may be a
1172 * combination of flags OR'ed toghether.
1173 */
ba2a81d7 1174void GSocket::UnsetCallback(GSocketEventFlags flags)
97e6ee04
DE
1175{
1176 int count;
1177
09e6e5ec 1178 assert(this);
97e6ee04
DE
1179
1180 for (count = 0; count < GSOCK_MAX_EVENT; count++)
1181 {
1182 if ((flags & (1 << count)) != 0)
1183 {
09e6e5ec
DE
1184 m_cbacks[count] = NULL;
1185 m_data[count] = NULL;
97e6ee04
DE
1186 }
1187 }
1188}
1189
ba2a81d7 1190GSocketError GSocket::GetSockOpt(int level, int optname,
b082b524
DE
1191 void *optval, int *optlen)
1192{
ddc1a35f 1193 if (getsockopt(m_fd, level, optname, (char*)optval, (SOCKOPTLEN_T*)optlen) == 0)
b082b524
DE
1194 {
1195 return GSOCK_NOERROR;
1196 }
1197 return GSOCK_OPTERR;
1198}
1199
ba2a81d7 1200GSocketError GSocket::SetSockOpt(int level, int optname,
b082b524
DE
1201 const void *optval, int optlen)
1202{
f71bb8ef 1203 if (setsockopt(m_fd, level, optname, (const char*)optval, optlen) == 0)
b082b524
DE
1204 {
1205 return GSOCK_NOERROR;
1206 }
1207 return GSOCK_OPTERR;
1208}
1209
ba2a81d7 1210#define CALL_CALLBACK(socket, event) { \
9a7e4a56 1211 socket->Disable(event); \
ba2a81d7
DE
1212 if (socket->m_cbacks[event]) \
1213 socket->m_cbacks[event](socket, event, socket->m_data[event]); \
97e6ee04
DE
1214}
1215
1216
ba2a81d7 1217void GSocket::Enable(GSocketEvent event)
97e6ee04 1218{
09e6e5ec 1219 m_detected &= ~(1 << event);
ba2a81d7 1220 gs_gui_functions->Install_Callback(this, event);
97e6ee04
DE
1221}
1222
ba2a81d7 1223void GSocket::Disable(GSocketEvent event)
97e6ee04 1224{
09e6e5ec 1225 m_detected |= (1 << event);
ba2a81d7 1226 gs_gui_functions->Uninstall_Callback(this, event);
97e6ee04
DE
1227}
1228
1229/* _GSocket_Input_Timeout:
1230 * For blocking sockets, wait until data is available or
1231 * until timeout ellapses.
1232 */
ba2a81d7 1233GSocketError GSocket::Input_Timeout()
97e6ee04
DE
1234{
1235 struct timeval tv;
1236 fd_set readfds;
1237 int ret;
1238
1239 /* Linux select() will overwrite the struct on return */
09e6e5ec
DE
1240 tv.tv_sec = (m_timeout / 1000);
1241 tv.tv_usec = (m_timeout % 1000) * 1000;
97e6ee04 1242
09e6e5ec 1243 if (!m_non_blocking)
97e6ee04
DE
1244 {
1245 FD_ZERO(&readfds);
09e6e5ec
DE
1246 FD_SET(m_fd, &readfds);
1247 ret = select(m_fd + 1, &readfds, NULL, NULL, &tv);
97e6ee04
DE
1248 if (ret == 0)
1249 {
1250 GSocket_Debug(( "GSocket_Input_Timeout, select returned 0\n" ));
09e6e5ec 1251 m_error = GSOCK_TIMEDOUT;
97e6ee04
DE
1252 return GSOCK_TIMEDOUT;
1253 }
1254 if (ret == -1)
1255 {
1256 GSocket_Debug(( "GSocket_Input_Timeout, select returned -1\n" ));
1257 if (errno == EBADF) { GSocket_Debug(( "Invalid file descriptor\n" )); }
1258 if (errno == EINTR) { GSocket_Debug(( "A non blocked signal was caught\n" )); }
1259 if (errno == EINVAL) { GSocket_Debug(( "The highest number descriptor is negative\n" )); }
1260 if (errno == ENOMEM) { GSocket_Debug(( "Not enough memory\n" )); }
09e6e5ec 1261 m_error = GSOCK_TIMEDOUT;
97e6ee04
DE
1262 return GSOCK_TIMEDOUT;
1263 }
1264 }
1265 return GSOCK_NOERROR;
1266}
1267
1268/* _GSocket_Output_Timeout:
1269 * For blocking sockets, wait until data can be sent without
1270 * blocking or until timeout ellapses.
1271 */
ba2a81d7 1272GSocketError GSocket::Output_Timeout()
97e6ee04
DE
1273{
1274 struct timeval tv;
1275 fd_set writefds;
1276 int ret;
1277
1278 /* Linux select() will overwrite the struct on return */
09e6e5ec
DE
1279 tv.tv_sec = (m_timeout / 1000);
1280 tv.tv_usec = (m_timeout % 1000) * 1000;
97e6ee04 1281
09e6e5ec 1282 GSocket_Debug( ("m_non_blocking has: %d\n", (int)m_non_blocking) );
97e6ee04 1283
09e6e5ec 1284 if (!m_non_blocking)
97e6ee04
DE
1285 {
1286 FD_ZERO(&writefds);
09e6e5ec
DE
1287 FD_SET(m_fd, &writefds);
1288 ret = select(m_fd + 1, NULL, &writefds, NULL, &tv);
97e6ee04
DE
1289 if (ret == 0)
1290 {
1291 GSocket_Debug(( "GSocket_Output_Timeout, select returned 0\n" ));
09e6e5ec 1292 m_error = GSOCK_TIMEDOUT;
97e6ee04
DE
1293 return GSOCK_TIMEDOUT;
1294 }
1295 if (ret == -1)
1296 {
1297 GSocket_Debug(( "GSocket_Output_Timeout, select returned -1\n" ));
1298 if (errno == EBADF) { GSocket_Debug(( "Invalid file descriptor\n" )); }
1299 if (errno == EINTR) { GSocket_Debug(( "A non blocked signal was caught\n" )); }
1300 if (errno == EINVAL) { GSocket_Debug(( "The highest number descriptor is negative\n" )); }
1301 if (errno == ENOMEM) { GSocket_Debug(( "Not enough memory\n" )); }
09e6e5ec 1302 m_error = GSOCK_TIMEDOUT;
97e6ee04
DE
1303 return GSOCK_TIMEDOUT;
1304 }
09e6e5ec 1305 if ( ! FD_ISSET(m_fd, &writefds) ) {
97e6ee04
DE
1306 GSocket_Debug(( "GSocket_Output_Timeout is buggy!\n" ));
1307 }
1308 else {
1309 GSocket_Debug(( "GSocket_Output_Timeout seems correct\n" ));
1310 }
1311 }
1312 else
1313 {
1314 GSocket_Debug(( "GSocket_Output_Timeout, didn't try select!\n" ));
1315 }
1316
1317 return GSOCK_NOERROR;
1318}
1319
ba2a81d7 1320int GSocket::Recv_Stream(char *buffer, int size)
97e6ee04 1321{
bb154f79 1322 int ret;
7e1e6965 1323 do
bb154f79
KH
1324 {
1325 ret = recv(m_fd, buffer, size, GSOCKET_MSG_NOSIGNAL);
e400d27d 1326 } while (ret == -1 && errno == EINTR); /* Loop until not interrupted */
bb154f79 1327 return ret;
97e6ee04
DE
1328}
1329
ba2a81d7 1330int GSocket::Recv_Dgram(char *buffer, int size)
97e6ee04
DE
1331{
1332 struct sockaddr from;
9e03e02d 1333 WX_SOCKLEN_T fromlen = sizeof(from);
97e6ee04
DE
1334 int ret;
1335 GSocketError err;
1336
1337 fromlen = sizeof(from);
1338
7e1e6965 1339 do
bb154f79 1340 {
9e03e02d 1341 ret = recvfrom(m_fd, buffer, size, 0, &from, (WX_SOCKLEN_T *) &fromlen);
e400d27d 1342 } while (ret == -1 && errno == EINTR); /* Loop until not interrupted */
97e6ee04
DE
1343
1344 if (ret == -1)
1345 return -1;
1346
1347 /* Translate a system address into a GSocket address */
09e6e5ec 1348 if (!m_peer)
97e6ee04 1349 {
09e6e5ec
DE
1350 m_peer = GAddress_new();
1351 if (!m_peer)
97e6ee04 1352 {
09e6e5ec 1353 m_error = GSOCK_MEMERR;
97e6ee04
DE
1354 return -1;
1355 }
1356 }
09e6e5ec 1357 err = _GAddress_translate_from(m_peer, &from, fromlen);
97e6ee04
DE
1358 if (err != GSOCK_NOERROR)
1359 {
09e6e5ec
DE
1360 GAddress_destroy(m_peer);
1361 m_peer = NULL;
1362 m_error = err;
97e6ee04
DE
1363 return -1;
1364 }
1365
1366 return ret;
1367}
1368
ba2a81d7 1369int GSocket::Send_Stream(const char *buffer, int size)
97e6ee04
DE
1370{
1371 int ret;
1372
7e1e6965
WS
1373 MASK_SIGNAL();
1374
1375 do
bb154f79
KH
1376 {
1377 ret = send(m_fd, (char *)buffer, size, GSOCKET_MSG_NOSIGNAL);
e400d27d 1378 } while (ret == -1 && errno == EINTR); /* Loop until not interrupted */
7e1e6965 1379
97e6ee04 1380 UNMASK_SIGNAL();
97e6ee04
DE
1381
1382 return ret;
1383}
1384
ba2a81d7 1385int GSocket::Send_Dgram(const char *buffer, int size)
97e6ee04
DE
1386{
1387 struct sockaddr *addr;
1388 int len, ret;
1389 GSocketError err;
1390
09e6e5ec 1391 if (!m_peer)
97e6ee04 1392 {
09e6e5ec 1393 m_error = GSOCK_INVADDR;
97e6ee04
DE
1394 return -1;
1395 }
1396
09e6e5ec 1397 err = _GAddress_translate_to(m_peer, &addr, &len);
97e6ee04
DE
1398 if (err != GSOCK_NOERROR)
1399 {
09e6e5ec 1400 m_error = err;
97e6ee04
DE
1401 return -1;
1402 }
1403
97e6ee04 1404 MASK_SIGNAL();
7e1e6965
WS
1405
1406 do
bb154f79
KH
1407 {
1408 ret = sendto(m_fd, (char *)buffer, size, 0, addr, len);
e400d27d 1409 } while (ret == -1 && errno == EINTR); /* Loop until not interrupted */
7e1e6965 1410
97e6ee04 1411 UNMASK_SIGNAL();
97e6ee04
DE
1412
1413 /* Frees memory allocated from _GAddress_translate_to */
1414 free(addr);
1415
1416 return ret;
1417}
1418
ba2a81d7 1419void GSocket::Detected_Read()
97e6ee04
DE
1420{
1421 char c;
1422
bb154f79
KH
1423 /* Safeguard against straggling call to Detected_Read */
1424 if (m_fd == INVALID_SOCKET)
1425 {
1426 return;
1427 }
1428
97e6ee04
DE
1429 /* If we have already detected a LOST event, then don't try
1430 * to do any further processing.
1431 */
09e6e5ec 1432 if ((m_detected & GSOCK_LOST_FLAG) != 0)
97e6ee04 1433 {
948c96ef 1434 m_establishing = false;
97e6ee04 1435
ba2a81d7 1436 CALL_CALLBACK(this, GSOCK_LOST);
09e6e5ec 1437 Shutdown();
97e6ee04
DE
1438 return;
1439 }
1440
bb154f79
KH
1441 int num = recv(m_fd, &c, 1, MSG_PEEK | GSOCKET_MSG_NOSIGNAL);
1442
1443 if (num > 0)
97e6ee04 1444 {
ba2a81d7 1445 CALL_CALLBACK(this, GSOCK_INPUT);
97e6ee04
DE
1446 }
1447 else
1448 {
09e6e5ec 1449 if (m_server && m_stream)
97e6ee04 1450 {
ba2a81d7 1451 CALL_CALLBACK(this, GSOCK_CONNECTION);
97e6ee04
DE
1452 }
1453 else
1454 {
e400d27d 1455 /* Do not throw a lost event in cases where the socket isn't really lost */
7e1e6965 1456 if ((errno == EWOULDBLOCK) || (errno == EAGAIN) || (errno == EINTR))
bb154f79
KH
1457 {
1458 CALL_CALLBACK(this, GSOCK_INPUT);
1459 }
7e1e6965 1460 else
bb154f79
KH
1461 {
1462 CALL_CALLBACK(this, GSOCK_LOST);
1463 Shutdown();
7e1e6965 1464 }
97e6ee04
DE
1465 }
1466 }
1467}
1468
ba2a81d7 1469void GSocket::Detected_Write()
97e6ee04
DE
1470{
1471 /* If we have already detected a LOST event, then don't try
1472 * to do any further processing.
1473 */
09e6e5ec 1474 if ((m_detected & GSOCK_LOST_FLAG) != 0)
97e6ee04 1475 {
948c96ef 1476 m_establishing = false;
97e6ee04 1477
ba2a81d7 1478 CALL_CALLBACK(this, GSOCK_LOST);
09e6e5ec 1479 Shutdown();
97e6ee04
DE
1480 return;
1481 }
1482
09e6e5ec 1483 if (m_establishing && !m_server)
97e6ee04
DE
1484 {
1485 int error;
ddc1a35f 1486 SOCKOPTLEN_T len = sizeof(error);
97e6ee04 1487
948c96ef 1488 m_establishing = false;
97e6ee04 1489
f71bb8ef 1490 getsockopt(m_fd, SOL_SOCKET, SO_ERROR, (char*)&error, &len);
97e6ee04
DE
1491
1492 if (error)
1493 {
ba2a81d7 1494 CALL_CALLBACK(this, GSOCK_LOST);
09e6e5ec 1495 Shutdown();
97e6ee04
DE
1496 }
1497 else
1498 {
ba2a81d7 1499 CALL_CALLBACK(this, GSOCK_CONNECTION);
97e6ee04
DE
1500 /* We have to fire this event by hand because CONNECTION (for clients)
1501 * and OUTPUT are internally the same and we just disabled CONNECTION
1502 * events with the above macro.
1503 */
ba2a81d7 1504 CALL_CALLBACK(this, GSOCK_OUTPUT);
97e6ee04
DE
1505 }
1506 }
1507 else
1508 {
ba2a81d7 1509 CALL_CALLBACK(this, GSOCK_OUTPUT);
97e6ee04
DE
1510 }
1511}
1512
09e6e5ec
DE
1513/* Compatibility functions for GSocket */
1514GSocket *GSocket_new(void)
1515{
ba2a81d7 1516 GSocket *newsocket = new GSocket();
09e6e5ec
DE
1517 if(newsocket->IsOk())
1518 return newsocket;
1519 delete newsocket;
1520 return NULL;
1521}
1522
97e6ee04
DE
1523/*
1524 * -------------------------------------------------------------------------
1525 * GAddress
1526 * -------------------------------------------------------------------------
1527 */
1528
1529/* CHECK_ADDRESS verifies that the current address family is either
1530 * GSOCK_NOFAMILY or GSOCK_*family*, and if it is GSOCK_NOFAMILY, it
1531 * initalizes it to be a GSOCK_*family*. In other cases, it returns
1532 * an appropiate error code.
1533 *
1534 * CHECK_ADDRESS_RETVAL does the same but returning 'retval' on error.
1535 */
1536#define CHECK_ADDRESS(address, family) \
1537{ \
1538 if (address->m_family == GSOCK_NOFAMILY) \
1539 if (_GAddress_Init_##family(address) != GSOCK_NOERROR) \
1540 return address->m_error; \
1541 if (address->m_family != GSOCK_##family) \
1542 { \
1543 address->m_error = GSOCK_INVADDR; \
1544 return GSOCK_INVADDR; \
1545 } \
1546}
1547
1548#define CHECK_ADDRESS_RETVAL(address, family, retval) \
1549{ \
1550 if (address->m_family == GSOCK_NOFAMILY) \
1551 if (_GAddress_Init_##family(address) != GSOCK_NOERROR) \
1552 return retval; \
1553 if (address->m_family != GSOCK_##family) \
1554 { \
1555 address->m_error = GSOCK_INVADDR; \
1556 return retval; \
1557 } \
1558}
1559
1560
1561GAddress *GAddress_new(void)
1562{
1563 GAddress *address;
1564
1565 if ((address = (GAddress *) malloc(sizeof(GAddress))) == NULL)
1566 return NULL;
1567
1568 address->m_family = GSOCK_NOFAMILY;
1569 address->m_addr = NULL;
1570 address->m_len = 0;
1571
1572 return address;
1573}
1574
1575GAddress *GAddress_copy(GAddress *address)
1576{
1577 GAddress *addr2;
1578
1579 assert(address != NULL);
1580
1581 if ((addr2 = (GAddress *) malloc(sizeof(GAddress))) == NULL)
1582 return NULL;
1583
1584 memcpy(addr2, address, sizeof(GAddress));
1585
1586 if (address->m_addr && address->m_len > 0)
1587 {
1588 addr2->m_addr = (struct sockaddr *)malloc(addr2->m_len);
1589 if (addr2->m_addr == NULL)
1590 {
1591 free(addr2);
1592 return NULL;
1593 }
1594 memcpy(addr2->m_addr, address->m_addr, addr2->m_len);
1595 }
1596
1597 return addr2;
1598}
1599
1600void GAddress_destroy(GAddress *address)
1601{
1602 assert(address != NULL);
1603
1604 if (address->m_addr)
1605 free(address->m_addr);
1606
1607 free(address);
1608}
1609
1610void GAddress_SetFamily(GAddress *address, GAddressType type)
1611{
1612 assert(address != NULL);
1613
1614 address->m_family = type;
1615}
1616
1617GAddressType GAddress_GetFamily(GAddress *address)
1618{
1619 assert(address != NULL);
1620
1621 return address->m_family;
1622}
1623
1624GSocketError _GAddress_translate_from(GAddress *address,
1625 struct sockaddr *addr, int len)
1626{
1627 address->m_realfamily = addr->sa_family;
1628 switch (addr->sa_family)
1629 {
1630 case AF_INET:
1631 address->m_family = GSOCK_INET;
1632 break;
1633 case AF_UNIX:
1634 address->m_family = GSOCK_UNIX;
1635 break;
1636#ifdef AF_INET6
1637 case AF_INET6:
1638 address->m_family = GSOCK_INET6;
1639 break;
1640#endif
1641 default:
1642 {
1643 address->m_error = GSOCK_INVOP;
1644 return GSOCK_INVOP;
1645 }
1646 }
1647
1648 if (address->m_addr)
1649 free(address->m_addr);
1650
1651 address->m_len = len;
1652 address->m_addr = (struct sockaddr *)malloc(len);
1653
1654 if (address->m_addr == NULL)
1655 {
1656 address->m_error = GSOCK_MEMERR;
1657 return GSOCK_MEMERR;
1658 }
1659 memcpy(address->m_addr, addr, len);
1660
1661 return GSOCK_NOERROR;
1662}
1663
1664GSocketError _GAddress_translate_to(GAddress *address,
1665 struct sockaddr **addr, int *len)
1666{
1667 if (!address->m_addr)
1668 {
1669 address->m_error = GSOCK_INVADDR;
1670 return GSOCK_INVADDR;
1671 }
1672
1673 *len = address->m_len;
1674 *addr = (struct sockaddr *)malloc(address->m_len);
1675 if (*addr == NULL)
1676 {
1677 address->m_error = GSOCK_MEMERR;
1678 return GSOCK_MEMERR;
1679 }
1680
1681 memcpy(*addr, address->m_addr, address->m_len);
1682 return GSOCK_NOERROR;
1683}
1684
1685/*
1686 * -------------------------------------------------------------------------
1687 * Internet address family
1688 * -------------------------------------------------------------------------
1689 */
1690
1691GSocketError _GAddress_Init_INET(GAddress *address)
1692{
1693 address->m_len = sizeof(struct sockaddr_in);
1694 address->m_addr = (struct sockaddr *) malloc(address->m_len);
1695 if (address->m_addr == NULL)
1696 {
1697 address->m_error = GSOCK_MEMERR;
1698 return GSOCK_MEMERR;
1699 }
1700
1701 address->m_family = GSOCK_INET;
1702 address->m_realfamily = PF_INET;
1703 ((struct sockaddr_in *)address->m_addr)->sin_family = AF_INET;
1704 ((struct sockaddr_in *)address->m_addr)->sin_addr.s_addr = INADDR_ANY;
1705
1706 return GSOCK_NOERROR;
1707}
1708
1709GSocketError GAddress_INET_SetHostName(GAddress *address, const char *hostname)
1710{
1711 struct hostent *he;
1712 struct in_addr *addr;
1713
1714 assert(address != NULL);
1715
1716 CHECK_ADDRESS(address, INET);
1717
1718 addr = &(((struct sockaddr_in *)address->m_addr)->sin_addr);
1719
1720 /* If it is a numeric host name, convert it now */
1721#if defined(HAVE_INET_ATON)
1722 if (inet_aton(hostname, addr) == 0)
1723 {
1724#elif defined(HAVE_INET_ADDR)
8c0f8906 1725 if ( (addr->s_addr = inet_addr(hostname)) == (unsigned)-1 )
97e6ee04
DE
1726 {
1727#else
1728 /* Use gethostbyname by default */
9d715960 1729#ifndef __WXMAC__
ba2a81d7 1730 int val = 1; /* VA doesn't like constants in conditional expressions */
97e6ee04 1731 if (val)
9d715960 1732#endif
97e6ee04
DE
1733 {
1734#endif
1735 struct in_addr *array_addr;
1736
1737 /* It is a real name, we solve it */
1738 if ((he = gethostbyname(hostname)) == NULL)
1739 {
1740 /* Reset to invalid address */
1741 addr->s_addr = INADDR_NONE;
1742 address->m_error = GSOCK_NOHOST;
1743 return GSOCK_NOHOST;
1744 }
1745 array_addr = (struct in_addr *) *(he->h_addr_list);
1746 addr->s_addr = array_addr[0].s_addr;
1747 }
1748 return GSOCK_NOERROR;
1749}
1750
1751GSocketError GAddress_INET_SetAnyAddress(GAddress *address)
1752{
1753 return GAddress_INET_SetHostAddress(address, INADDR_ANY);
1754}
1755
1756GSocketError GAddress_INET_SetHostAddress(GAddress *address,
1757 unsigned long hostaddr)
1758{
1759 struct in_addr *addr;
1760
1761 assert(address != NULL);
1762
1763 CHECK_ADDRESS(address, INET);
1764
1765 addr = &(((struct sockaddr_in *)address->m_addr)->sin_addr);
9d715960 1766 addr->s_addr = htonl(hostaddr);
97e6ee04
DE
1767
1768 return GSOCK_NOERROR;
1769}
1770
1771GSocketError GAddress_INET_SetPortName(GAddress *address, const char *port,
1772 const char *protocol)
1773{
1774 struct servent *se;
1775 struct sockaddr_in *addr;
1776
1777 assert(address != NULL);
1778 CHECK_ADDRESS(address, INET);
1779
1780 if (!port)
1781 {
1782 address->m_error = GSOCK_INVPORT;
1783 return GSOCK_INVPORT;
1784 }
b082b524 1785
f6bc1c74
DW
1786#if defined(__WXPM__) && defined(__EMX__)
1787 se = getservbyname(port, (char*)protocol);
1788#else
97e6ee04 1789 se = getservbyname(port, protocol);
f6bc1c74 1790#endif
97e6ee04
DE
1791 if (!se)
1792 {
1793 /* the cast to int suppresses compiler warnings about subscript having the
1794 type char */
1795 if (isdigit((int)port[0]))
1796 {
1797 int port_int;
1798
1799 port_int = atoi(port);
1800 addr = (struct sockaddr_in *)address->m_addr;
1801 addr->sin_port = htons(port_int);
1802 return GSOCK_NOERROR;
1803 }
1804
1805 address->m_error = GSOCK_INVPORT;
1806 return GSOCK_INVPORT;
1807 }
1808
1809 addr = (struct sockaddr_in *)address->m_addr;
1810 addr->sin_port = se->s_port;
1811
1812 return GSOCK_NOERROR;
1813}
1814
1815GSocketError GAddress_INET_SetPort(GAddress *address, unsigned short port)
1816{
1817 struct sockaddr_in *addr;
1818
1819 assert(address != NULL);
1820 CHECK_ADDRESS(address, INET);
b082b524 1821
97e6ee04
DE
1822 addr = (struct sockaddr_in *)address->m_addr;
1823 addr->sin_port = htons(port);
1824
1825 return GSOCK_NOERROR;
1826}
1827
1828GSocketError GAddress_INET_GetHostName(GAddress *address, char *hostname, size_t sbuf)
1829{
1830 struct hostent *he;
1831 char *addr_buf;
1832 struct sockaddr_in *addr;
1833
b082b524 1834 assert(address != NULL);
97e6ee04
DE
1835 CHECK_ADDRESS(address, INET);
1836
1837 addr = (struct sockaddr_in *)address->m_addr;
1838 addr_buf = (char *)&(addr->sin_addr);
1839
1840 he = gethostbyaddr(addr_buf, sizeof(addr->sin_addr), AF_INET);
1841 if (he == NULL)
1842 {
1843 address->m_error = GSOCK_NOHOST;
1844 return GSOCK_NOHOST;
1845 }
1846
1847 strncpy(hostname, he->h_name, sbuf);
1848
1849 return GSOCK_NOERROR;
1850}
1851
1852unsigned long GAddress_INET_GetHostAddress(GAddress *address)
1853{
1854 struct sockaddr_in *addr;
1855
b082b524
DE
1856 assert(address != NULL);
1857 CHECK_ADDRESS_RETVAL(address, INET, 0);
97e6ee04
DE
1858
1859 addr = (struct sockaddr_in *)address->m_addr;
1860
9d715960 1861 return ntohl(addr->sin_addr.s_addr);
97e6ee04
DE
1862}
1863
1864unsigned short GAddress_INET_GetPort(GAddress *address)
1865{
1866 struct sockaddr_in *addr;
1867
b082b524
DE
1868 assert(address != NULL);
1869 CHECK_ADDRESS_RETVAL(address, INET, 0);
97e6ee04
DE
1870
1871 addr = (struct sockaddr_in *)address->m_addr;
1872 return ntohs(addr->sin_port);
1873}
1874
1875/*
1876 * -------------------------------------------------------------------------
1877 * Unix address family
1878 * -------------------------------------------------------------------------
1879 */
1880
1881#ifndef __VISAGECPP__
1882GSocketError _GAddress_Init_UNIX(GAddress *address)
1883{
1884 address->m_len = sizeof(struct sockaddr_un);
1885 address->m_addr = (struct sockaddr *)malloc(address->m_len);
1886 if (address->m_addr == NULL)
1887 {
1888 address->m_error = GSOCK_MEMERR;
1889 return GSOCK_MEMERR;
1890 }
1891
1892 address->m_family = GSOCK_UNIX;
1893 address->m_realfamily = PF_UNIX;
1894 ((struct sockaddr_un *)address->m_addr)->sun_family = AF_UNIX;
1895 ((struct sockaddr_un *)address->m_addr)->sun_path[0] = 0;
1896
1897 return GSOCK_NOERROR;
1898}
1899
1900#define UNIX_SOCK_PATHLEN (sizeof(addr->sun_path)/sizeof(addr->sun_path[0]))
1901
1902GSocketError GAddress_UNIX_SetPath(GAddress *address, const char *path)
1903{
1904 struct sockaddr_un *addr;
1905
b082b524 1906 assert(address != NULL);
97e6ee04 1907
b082b524 1908 CHECK_ADDRESS(address, UNIX);
97e6ee04
DE
1909
1910 addr = ((struct sockaddr_un *)address->m_addr);
1911 strncpy(addr->sun_path, path, UNIX_SOCK_PATHLEN);
1912 addr->sun_path[UNIX_SOCK_PATHLEN - 1] = '\0';
1913
1914 return GSOCK_NOERROR;
1915}
1916
1917GSocketError GAddress_UNIX_GetPath(GAddress *address, char *path, size_t sbuf)
1918{
1919 struct sockaddr_un *addr;
1920
1921 assert(address != NULL);
1922 CHECK_ADDRESS(address, UNIX);
1923
1924 addr = (struct sockaddr_un *)address->m_addr;
1925
1926 strncpy(path, addr->sun_path, sbuf);
1927
1928 return GSOCK_NOERROR;
1929}
1930#endif /* !defined(__VISAGECPP__) */
1931#endif /* wxUSE_SOCKETS || defined(__GSOCKET_STANDALONE__) */