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518b5d2f 1/////////////////////////////////////////////////////////////////////////////
7520f3da 2// Name: src/unix/utilsunx.cpp
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3// Purpose: generic Unix implementation of many wx functions
4// Author: Vadim Zeitlin
5// Id: $Id$
6// Copyright: (c) 1998 Robert Roebling, Vadim Zeitlin
65571936 7// Licence: wxWindows licence
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8/////////////////////////////////////////////////////////////////////////////
9
10// ============================================================================
11// declarations
12// ============================================================================
13
14// ----------------------------------------------------------------------------
15// headers
16// ----------------------------------------------------------------------------
17
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18// for compilers that support precompilation, includes "wx.h".
19#include "wx/wxprec.h"
20
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21#include "wx/utils.h"
22
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23#ifndef WX_PRECOMP
24 #include "wx/string.h"
88a7a4e1 25 #include "wx/intl.h"
e4db172a 26 #include "wx/log.h"
670f9935 27 #include "wx/app.h"
0cb7e05c 28 #include "wx/wxcrtvararg.h"
7520f3da 29#endif
518b5d2f 30
46446cc2 31#include "wx/apptrait.h"
518b5d2f 32
518b5d2f 33#include "wx/process.h"
bdc72a22 34#include "wx/thread.h"
518b5d2f 35
80d6dc0a 36#include "wx/wfstream.h"
8b33ae2d 37
e2478fde 38#include "wx/unix/execute.h"
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39#include "wx/unix/private.h"
40
41#include <pwd.h>
bc855d09 42#include <sys/wait.h> // waitpid()
e2478fde 43
bc023abb
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44#ifdef HAVE_SYS_SELECT_H
45# include <sys/select.h>
46#endif
47
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48#define HAS_PIPE_INPUT_STREAM (wxUSE_STREAMS && wxUSE_FILE)
49
50#if HAS_PIPE_INPUT_STREAM
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51
52// define this to let wxexec.cpp know that we know what we're doing
53#define _WX_USED_BY_WXEXECUTE_
54#include "../common/execcmn.cpp"
55
1f3b2af0 56#endif // HAS_PIPE_INPUT_STREAM
2887179b 57
ec67cff1 58#if wxUSE_BASE
e2478fde 59
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60#if defined(__MWERKS__) && defined(__MACH__)
61 #ifndef WXWIN_OS_DESCRIPTION
62 #define WXWIN_OS_DESCRIPTION "MacOS X"
63 #endif
64 #ifndef HAVE_NANOSLEEP
65 #define HAVE_NANOSLEEP
66 #endif
67 #ifndef HAVE_UNAME
68 #define HAVE_UNAME
69 #endif
70
71 // our configure test believes we can use sigaction() if the function is
72 // available but Metrowekrs with MSL run-time does have the function but
73 // doesn't have sigaction struct so finally we can't use it...
74 #ifdef __MSL__
75 #undef wxUSE_ON_FATAL_EXCEPTION
76 #define wxUSE_ON_FATAL_EXCEPTION 0
77 #endif
8d4f85ce
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78#endif
79
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80// not only the statfs syscall is called differently depending on platform, but
81// one of its incarnations, statvfs(), takes different arguments under
82// different platforms and even different versions of the same system (Solaris
83// 7 and 8): if you want to test for this, don't forget that the problems only
84// appear if the large files support is enabled
eadd7bd2 85#ifdef HAVE_STATFS
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86 #ifdef __BSD__
87 #include <sys/param.h>
88 #include <sys/mount.h>
89 #else // !__BSD__
90 #include <sys/vfs.h>
91 #endif // __BSD__/!__BSD__
92
93 #define wxStatfs statfs
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94
95 #ifndef HAVE_STATFS_DECL
96 // some systems lack statfs() prototype in the system headers (AIX 4)
97 extern "C" int statfs(const char *path, struct statfs *buf);
98 #endif
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99#endif // HAVE_STATFS
100
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101#ifdef HAVE_STATVFS
102 #include <sys/statvfs.h>
103
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104 #define wxStatfs statvfs
105#endif // HAVE_STATVFS
106
107#if defined(HAVE_STATFS) || defined(HAVE_STATVFS)
108 // WX_STATFS_T is detected by configure
109 #define wxStatfs_t WX_STATFS_T
110#endif
9952adac 111
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112// SGI signal.h defines signal handler arguments differently depending on
113// whether _LANGUAGE_C_PLUS_PLUS is set or not - do set it
114#if defined(__SGI__) && !defined(_LANGUAGE_C_PLUS_PLUS)
115 #define _LANGUAGE_C_PLUS_PLUS 1
116#endif // SGI hack
117
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118#include <stdarg.h>
119#include <dirent.h>
120#include <string.h>
121#include <sys/stat.h>
122#include <sys/types.h>
518b5d2f 123#include <sys/wait.h>
e2478fde 124#include <unistd.h>
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125#include <errno.h>
126#include <netdb.h>
127#include <signal.h>
128#include <fcntl.h> // for O_WRONLY and friends
129#include <time.h> // nanosleep() and/or usleep()
fad866f4 130#include <ctype.h> // isspace()
b12915c1 131#include <sys/time.h> // needed for FD_SETSIZE
7bcb11d3 132
0fcdf6dc 133#ifdef HAVE_UNAME
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134 #include <sys/utsname.h> // for uname()
135#endif // HAVE_UNAME
136
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137// Used by wxGetFreeMemory().
138#ifdef __SGI__
139 #include <sys/sysmp.h>
140 #include <sys/sysinfo.h> // for SAGET and MINFO structures
141#endif
142
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143// ----------------------------------------------------------------------------
144// conditional compilation
145// ----------------------------------------------------------------------------
146
147// many versions of Unices have this function, but it is not defined in system
148// headers - please add your system here if it is the case for your OS.
149// SunOS < 5.6 (i.e. Solaris < 2.6) and DG-UX are like this.
1363811b 150#if !defined(HAVE_USLEEP) && \
d67fee71 151 ((defined(__SUN__) && !defined(__SunOs_5_6) && \
518b5d2f 152 !defined(__SunOs_5_7) && !defined(__SUNPRO_CC)) || \
d67fee71 153 defined(__osf__) || defined(__EMX__))
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154 extern "C"
155 {
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156 #ifdef __EMX__
157 /* I copied this from the XFree86 diffs. AV. */
158 #define INCL_DOSPROCESS
159 #include <os2.h>
160 inline void usleep(unsigned long delay)
161 {
162 DosSleep(delay ? (delay/1000l) : 1l);
163 }
164 #else // Unix
1363811b 165 int usleep(unsigned int usec);
1a5e269b 166 #endif // __EMX__/Unix
518b5d2f 167 };
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168
169 #define HAVE_USLEEP 1
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170#endif // Unices without usleep()
171
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172// ============================================================================
173// implementation
174// ============================================================================
175
176// ----------------------------------------------------------------------------
177// sleeping
178// ----------------------------------------------------------------------------
179
180void wxSleep(int nSecs)
181{
182 sleep(nSecs);
183}
184
66cd9d7f 185void wxMicroSleep(unsigned long microseconds)
518b5d2f 186{
b12915c1 187#if defined(HAVE_NANOSLEEP)
518b5d2f 188 timespec tmReq;
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189 tmReq.tv_sec = (time_t)(microseconds / 1000000);
190 tmReq.tv_nsec = (microseconds % 1000000) * 1000;
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191
192 // we're not interested in remaining time nor in return value
193 (void)nanosleep(&tmReq, (timespec *)NULL);
b12915c1 194#elif defined(HAVE_USLEEP)
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195 // uncomment this if you feel brave or if you are sure that your version
196 // of Solaris has a safe usleep() function but please notice that usleep()
197 // is known to lead to crashes in MT programs in Solaris 2.[67] and is not
198 // documented as MT-Safe
ea18eed9 199 #if defined(__SUN__) && wxUSE_THREADS
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200 #error "usleep() cannot be used in MT programs under Solaris."
201 #endif // Sun
202
66cd9d7f 203 usleep(microseconds);
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204#elif defined(HAVE_SLEEP)
205 // under BeOS sleep() takes seconds (what about other platforms, if any?)
66cd9d7f 206 sleep(microseconds * 1000000);
518b5d2f 207#else // !sleep function
66cd9d7f 208 #error "usleep() or nanosleep() function required for wxMicroSleep"
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209#endif // sleep function
210}
211
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212void wxMilliSleep(unsigned long milliseconds)
213{
214 wxMicroSleep(milliseconds*1000);
215}
216
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217// ----------------------------------------------------------------------------
218// process management
219// ----------------------------------------------------------------------------
220
e0f6b731 221int wxKill(long pid, wxSignal sig, wxKillError *rc, int flags)
518b5d2f 222{
e0f6b731 223 int err = kill((pid_t) (flags & wxKILL_CHILDREN) ? -pid : pid, (int)sig);
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224 if ( rc )
225 {
f0bce4d4 226 switch ( err ? errno : 0 )
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227 {
228 case 0:
229 *rc = wxKILL_OK;
230 break;
231
232 case EINVAL:
233 *rc = wxKILL_BAD_SIGNAL;
234 break;
235
236 case EPERM:
237 *rc = wxKILL_ACCESS_DENIED;
238 break;
239
240 case ESRCH:
241 *rc = wxKILL_NO_PROCESS;
242 break;
243
244 default:
245 // this goes against Unix98 docs so log it
246 wxLogDebug(_T("unexpected kill(2) return value %d"), err);
247
248 // something else...
249 *rc = wxKILL_ERROR;
250 }
251 }
252
253 return err;
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254}
255
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256#define WXEXECUTE_NARGS 127
257
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258#if defined(__DARWIN__)
259long wxMacExecute(wxChar **argv,
260 int flags,
261 wxProcess *process);
262#endif
263
fbf456aa 264long wxExecute( const wxString& command, int flags, wxProcess *process )
518b5d2f 265{
8ea92b4d 266 wxCHECK_MSG( !command.empty(), 0, wxT("can't exec empty command") );
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267
268 wxLogTrace(wxT("exec"), wxT("Executing \"%s\""), command.c_str());
518b5d2f 269
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270#if wxUSE_THREADS
271 // fork() doesn't mix well with POSIX threads: on many systems the program
272 // deadlocks or crashes for some reason. Probably our code is buggy and
273 // doesn't do something which must be done to allow this to work, but I
274 // don't know what yet, so for now just warn the user (this is the least we
275 // can do) about it
276 wxASSERT_MSG( wxThread::IsMain(),
277 _T("wxExecute() can be called only from the main thread") );
278#endif // wxUSE_THREADS
279
518b5d2f 280 int argc = 0;
05079acc 281 wxChar *argv[WXEXECUTE_NARGS];
fad866f4 282 wxString argument;
05079acc 283 const wxChar *cptr = command.c_str();
223d09f6 284 wxChar quotechar = wxT('\0'); // is arg quoted?
9d8aca48 285 bool escaped = false;
518b5d2f 286
0ed9a934 287 // split the command line in arguments
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288 do
289 {
7520f3da 290 argument = wxEmptyString;
223d09f6 291 quotechar = wxT('\0');
0ed9a934 292
fad866f4 293 // eat leading whitespace:
05079acc 294 while ( wxIsspace(*cptr) )
fad866f4 295 cptr++;
0ed9a934 296
223d09f6 297 if ( *cptr == wxT('\'') || *cptr == wxT('"') )
fad866f4 298 quotechar = *cptr++;
0ed9a934 299
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300 do
301 {
223d09f6 302 if ( *cptr == wxT('\\') && ! escaped )
fad866f4 303 {
9d8aca48 304 escaped = true;
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305 cptr++;
306 continue;
307 }
0ed9a934 308
fad866f4 309 // all other characters:
0ed9a934 310 argument += *cptr++;
9d8aca48 311 escaped = false;
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312
313 // have we reached the end of the argument?
314 if ( (*cptr == quotechar && ! escaped)
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315 || (quotechar == wxT('\0') && wxIsspace(*cptr))
316 || *cptr == wxT('\0') )
fad866f4 317 {
0ed9a934 318 wxASSERT_MSG( argc < WXEXECUTE_NARGS,
223d09f6 319 wxT("too many arguments in wxExecute") );
0ed9a934 320
05079acc
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321 argv[argc] = new wxChar[argument.length() + 1];
322 wxStrcpy(argv[argc], argument.c_str());
fad866f4 323 argc++;
0ed9a934 324
fad866f4 325 // if not at end of buffer, swallow last character:
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326 if(*cptr)
327 cptr++;
328
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329 break; // done with this one, start over
330 }
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331 } while(*cptr);
332 } while(*cptr);
fad866f4 333 argv[argc] = NULL;
0ed9a934 334
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335 long lRc;
336#if defined(__DARWIN__)
3afdfec4 337 // wxMacExecute only executes app bundles.
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338 // It returns an error code if the target is not an app bundle, thus falling
339 // through to the regular wxExecute for non app bundles.
3afdfec4 340 lRc = wxMacExecute(argv, flags, process);
fb19fbab 341 if( lRc != ((flags & wxEXEC_SYNC) ? -1 : 0))
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342 return lRc;
343#endif
344
0ed9a934 345 // do execute the command
62705a27 346 lRc = wxExecute(argv, flags, process);
518b5d2f 347
0ed9a934 348 // clean up
fad866f4 349 argc = 0;
0ed9a934 350 while( argv[argc] )
fad866f4 351 delete [] argv[argc++];
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352
353 return lRc;
354}
355
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356// ----------------------------------------------------------------------------
357// wxShell
358// ----------------------------------------------------------------------------
359
360static wxString wxMakeShellCommand(const wxString& command)
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361{
362 wxString cmd;
cd6ce4a9 363 if ( !command )
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364 {
365 // just an interactive shell
cd6ce4a9 366 cmd = _T("xterm");
2c8e4738 367 }
518b5d2f 368 else
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369 {
370 // execute command in a shell
371 cmd << _T("/bin/sh -c '") << command << _T('\'');
372 }
373
374 return cmd;
375}
376
377bool wxShell(const wxString& command)
378{
fbf456aa 379 return wxExecute(wxMakeShellCommand(command), wxEXEC_SYNC) == 0;
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380}
381
382bool wxShell(const wxString& command, wxArrayString& output)
383{
9d8aca48 384 wxCHECK_MSG( !command.empty(), false, _T("can't exec shell non interactively") );
518b5d2f 385
2c8e4738 386 return wxExecute(wxMakeShellCommand(command), output);
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387}
388
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389// Shutdown or reboot the PC
390bool wxShutdown(wxShutdownFlags wFlags)
391{
392 wxChar level;
393 switch ( wFlags )
394 {
395 case wxSHUTDOWN_POWEROFF:
396 level = _T('0');
397 break;
398
399 case wxSHUTDOWN_REBOOT:
400 level = _T('6');
401 break;
402
403 default:
404 wxFAIL_MSG( _T("unknown wxShutdown() flag") );
9d8aca48 405 return false;
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406 }
407
408 return system(wxString::Format(_T("init %c"), level).mb_str()) == 0;
409}
410
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411// ----------------------------------------------------------------------------
412// wxStream classes to support IO redirection in wxExecute
413// ----------------------------------------------------------------------------
6dc6fda6 414
1f3b2af0 415#if HAS_PIPE_INPUT_STREAM
1e6feb95 416
2b5f62a0 417bool wxPipeInputStream::CanRead() const
8b33ae2d 418{
cd6ce4a9 419 if ( m_lasterror == wxSTREAM_EOF )
9d8aca48 420 return false;
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421
422 // check if there is any input available
423 struct timeval tv;
424 tv.tv_sec = 0;
425 tv.tv_usec = 0;
426
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427 const int fd = m_file->fd();
428
cd6ce4a9 429 fd_set readfds;
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430
431 wxFD_ZERO(&readfds);
432 wxFD_SET(fd, &readfds);
433
80d6dc0a 434 switch ( select(fd + 1, &readfds, NULL, NULL, &tv) )
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435 {
436 case -1:
437 wxLogSysError(_("Impossible to get child process input"));
438 // fall through
8b33ae2d 439
cd6ce4a9 440 case 0:
9d8aca48 441 return false;
8b33ae2d 442
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443 default:
444 wxFAIL_MSG(_T("unexpected select() return value"));
445 // still fall through
446
447 case 1:
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448 // input available -- or maybe not, as select() returns 1 when a
449 // read() will complete without delay, but it could still not read
450 // anything
451 return !Eof();
cd6ce4a9 452 }
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453}
454
1f3b2af0 455#endif // HAS_PIPE_INPUT_STREAM
1e6feb95 456
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457// ----------------------------------------------------------------------------
458// wxExecute: the real worker function
459// ----------------------------------------------------------------------------
79066131 460
17a1ebd1 461long wxExecute(wxChar **argv, int flags, wxProcess *process)
518b5d2f 462{
f6bcfd97 463 // for the sync execution, we return -1 to indicate failure, but for async
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464 // case we return 0 which is never a valid PID
465 //
466 // we define this as a macro, not a variable, to avoid compiler warnings
467 // about "ERROR_RETURN_CODE value may be clobbered by fork()"
fbf456aa 468 #define ERROR_RETURN_CODE ((flags & wxEXEC_SYNC) ? -1 : 0)
f6bcfd97 469
accb3257 470 wxCHECK_MSG( *argv, ERROR_RETURN_CODE, wxT("can't exec empty command") );
518b5d2f 471
05079acc
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472#if wxUSE_UNICODE
473 int mb_argc = 0;
474 char *mb_argv[WXEXECUTE_NARGS];
475
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476 while (argv[mb_argc])
477 {
69c928ef 478 wxWX2MBbuf mb_arg = wxSafeConvertWX2MB(argv[mb_argc]);
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479 mb_argv[mb_argc] = strdup(mb_arg);
480 mb_argc++;
05079acc
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481 }
482 mb_argv[mb_argc] = (char *) NULL;
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483
484 // this macro will free memory we used above
485 #define ARGS_CLEANUP \
345b0247 486 for ( mb_argc = 0; mb_argv[mb_argc]; mb_argc++ ) \
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487 free(mb_argv[mb_argc])
488#else // ANSI
489 // no need for cleanup
490 #define ARGS_CLEANUP
491
05079acc 492 wxChar **mb_argv = argv;
e90c1d2a 493#endif // Unicode/ANSI
518b5d2f 494
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495 // we want this function to work even if there is no wxApp so ensure that
496 // we have a valid traits pointer
497 wxConsoleAppTraits traitsConsole;
498 wxAppTraits *traits = wxTheApp ? wxTheApp->GetTraits() : NULL;
499 if ( !traits )
500 traits = &traitsConsole;
501
502 // this struct contains all information which we pass to and from
503 // wxAppTraits methods
504 wxExecuteData execData;
505 execData.flags = flags;
506 execData.process = process;
507
518b5d2f 508 // create pipes
e2478fde 509 if ( !traits->CreateEndProcessPipe(execData) )
518b5d2f 510 {
cd6ce4a9 511 wxLogError( _("Failed to execute '%s'\n"), *argv );
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512
513 ARGS_CLEANUP;
514
accb3257 515 return ERROR_RETURN_CODE;
518b5d2f
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516 }
517
f6bcfd97 518 // pipes for inter process communication
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519 wxPipe pipeIn, // stdin
520 pipeOut, // stdout
521 pipeErr; // stderr
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522
523 if ( process && process->IsRedirected() )
8b33ae2d 524 {
b477f956 525 if ( !pipeIn.Create() || !pipeOut.Create() || !pipeErr.Create() )
8b33ae2d 526 {
cd6ce4a9 527 wxLogError( _("Failed to execute '%s'\n"), *argv );
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528
529 ARGS_CLEANUP;
530
accb3257 531 return ERROR_RETURN_CODE;
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532 }
533 }
8b33ae2d 534
518b5d2f 535 // fork the process
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536 //
537 // NB: do *not* use vfork() here, it completely breaks this code for some
538 // reason under Solaris (and maybe others, although not under Linux)
b2ddee86
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539 // But on OpenVMS we do not have fork so we have to use vfork and
540 // cross our fingers that it works.
541#ifdef __VMS
542 pid_t pid = vfork();
543#else
544 pid_t pid = fork();
545#endif
546 if ( pid == -1 ) // error?
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547 {
548 wxLogSysError( _("Fork failed") );
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549
550 ARGS_CLEANUP;
551
accb3257 552 return ERROR_RETURN_CODE;
518b5d2f 553 }
cd6ce4a9 554 else if ( pid == 0 ) // we're in child
518b5d2f 555 {
cd6ce4a9 556 // These lines close the open file descriptors to to avoid any
518b5d2f 557 // input/output which might block the process or irritate the user. If
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558 // one wants proper IO for the subprocess, the right thing to do is to
559 // start an xterm executing it.
fbf456aa 560 if ( !(flags & wxEXEC_SYNC) )
518b5d2f 561 {
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562 // FD_SETSIZE is unsigned under BSD, signed under other platforms
563 // so we need a cast to avoid warnings on all platforms
564 for ( int fd = 0; fd < (int)FD_SETSIZE; fd++ )
518b5d2f 565 {
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566 if ( fd == pipeIn[wxPipe::Read]
567 || fd == pipeOut[wxPipe::Write]
568 || fd == pipeErr[wxPipe::Write]
e2478fde 569 || traits->IsWriteFDOfEndProcessPipe(execData, fd) )
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570 {
571 // don't close this one, we still need it
572 continue;
573 }
e90c1d2a 574
b477f956 575 // leave stderr opened too, it won't do any harm
e90c1d2a 576 if ( fd != STDERR_FILENO )
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577 close(fd);
578 }
0c9c4401 579 }
e1082c9f 580
e8e776aa 581#if !defined(__VMS) && !defined(__EMX__)
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582 if ( flags & wxEXEC_MAKE_GROUP_LEADER )
583 {
584 // Set process group to child process' pid. Then killing -pid
585 // of the parent will kill the process and all of its children.
586 setsid();
518b5d2f 587 }
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588#endif // !__VMS
589
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590 // reading side can be safely closed but we should keep the write one
591 // opened
e2478fde 592 traits->DetachWriteFDOfEndProcessPipe(execData);
518b5d2f 593
80d6dc0a 594 // redirect stdin, stdout and stderr
b477f956 595 if ( pipeIn.IsOk() )
cd6ce4a9 596 {
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597 if ( dup2(pipeIn[wxPipe::Read], STDIN_FILENO) == -1 ||
598 dup2(pipeOut[wxPipe::Write], STDOUT_FILENO) == -1 ||
599 dup2(pipeErr[wxPipe::Write], STDERR_FILENO) == -1 )
cd6ce4a9 600 {
f6bcfd97 601 wxLogSysError(_("Failed to redirect child process input/output"));
cd6ce4a9 602 }
518b5d2f 603
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604 pipeIn.Close();
605 pipeOut.Close();
606 pipeErr.Close();
cd6ce4a9 607 }
518b5d2f 608
05079acc 609 execvp (*mb_argv, mb_argv);
17a1ebd1 610
d264d709 611 fprintf(stderr, "execvp(");
8d4f85ce
SC
612 // CS changed ppc to ppc_ as ppc is not available under mac os CW Mach-O
613 for ( char **ppc_ = mb_argv; *ppc_; ppc_++ )
614 fprintf(stderr, "%s%s", ppc_ == mb_argv ? "" : ", ", *ppc_);
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615 fprintf(stderr, ") failed with error %d!\n", errno);
616
518b5d2f 617 // there is no return after successful exec()
518b5d2f 618 _exit(-1);
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619
620 // some compilers complain about missing return - of course, they
621 // should know that exit() doesn't return but what else can we do if
622 // they don't?
b477f956
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623 //
624 // and, sure enough, other compilers complain about unreachable code
625 // after exit() call, so we can just always have return here...
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626#if defined(__VMS) || defined(__INTEL_COMPILER)
627 return 0;
628#endif
518b5d2f 629 }
cd6ce4a9 630 else // we're in parent
518b5d2f 631 {
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632 ARGS_CLEANUP;
633
7764f973
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634 // save it for WaitForChild() use
635 execData.pid = pid;
636
80d6dc0a
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637 // prepare for IO redirection
638
1f3b2af0 639#if HAS_PIPE_INPUT_STREAM
80d6dc0a
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640 // the input buffer bufOut is connected to stdout, this is why it is
641 // called bufOut and not bufIn
642 wxStreamTempInputBuffer bufOut,
643 bufErr;
1f3b2af0 644#endif // HAS_PIPE_INPUT_STREAM
0e300ddd 645
cd6ce4a9
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646 if ( process && process->IsRedirected() )
647 {
1f3b2af0 648#if HAS_PIPE_INPUT_STREAM
80d6dc0a
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649 wxOutputStream *inStream =
650 new wxFileOutputStream(pipeIn.Detach(wxPipe::Write));
b477f956 651
79066131
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652 wxPipeInputStream *outStream =
653 new wxPipeInputStream(pipeOut.Detach(wxPipe::Read));
b477f956 654
79066131
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655 wxPipeInputStream *errStream =
656 new wxPipeInputStream(pipeErr.Detach(wxPipe::Read));
f6bcfd97 657
80d6dc0a 658 process->SetPipeStreams(outStream, inStream, errStream);
0e300ddd 659
80d6dc0a 660 bufOut.Init(outStream);
b477f956 661 bufErr.Init(errStream);
e2478fde
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662
663 execData.bufOut = &bufOut;
664 execData.bufErr = &bufErr;
1f3b2af0 665#endif // HAS_PIPE_INPUT_STREAM
b477f956 666 }
1e6feb95 667
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668 if ( pipeIn.IsOk() )
669 {
670 pipeIn.Close();
671 pipeOut.Close();
672 pipeErr.Close();
cd6ce4a9
VZ
673 }
674
e2478fde 675 return traits->WaitForChild(execData);
518b5d2f 676 }
79656e30 677
17a1ebd1 678#if !defined(__VMS) && !defined(__INTEL_COMPILER)
79656e30 679 return ERROR_RETURN_CODE;
ef0ed19e 680#endif
17a1ebd1 681}
518b5d2f 682
accb3257 683#undef ERROR_RETURN_CODE
f6bcfd97
BP
684#undef ARGS_CLEANUP
685
518b5d2f
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686// ----------------------------------------------------------------------------
687// file and directory functions
688// ----------------------------------------------------------------------------
689
05079acc 690const wxChar* wxGetHomeDir( wxString *home )
518b5d2f 691{
8ea92b4d 692 *home = wxGetUserHome( wxEmptyString );
79066131 693 wxString tmp;
8ea92b4d 694 if ( home->empty() )
223d09f6 695 *home = wxT("/");
181cbcf4 696#ifdef __VMS
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697 tmp = *home;
698 if ( tmp.Last() != wxT(']'))
699 if ( tmp.Last() != wxT('/')) *home << wxT('/');
181cbcf4 700#endif
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701 return home->c_str();
702}
703
05079acc
OK
704#if wxUSE_UNICODE
705const wxMB2WXbuf wxGetUserHome( const wxString &user )
e90c1d2a 706#else // just for binary compatibility -- there is no 'const' here
518b5d2f 707char *wxGetUserHome( const wxString &user )
05079acc 708#endif
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709{
710 struct passwd *who = (struct passwd *) NULL;
711
0fb67cd1 712 if ( !user )
518b5d2f 713 {
e90c1d2a 714 wxChar *ptr;
518b5d2f 715
223d09f6 716 if ((ptr = wxGetenv(wxT("HOME"))) != NULL)
518b5d2f 717 {
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718#if wxUSE_UNICODE
719 wxWCharBuffer buffer( ptr );
720 return buffer;
721#else
518b5d2f 722 return ptr;
2b5f62a0 723#endif
518b5d2f 724 }
223d09f6 725 if ((ptr = wxGetenv(wxT("USER"))) != NULL || (ptr = wxGetenv(wxT("LOGNAME"))) != NULL)
518b5d2f 726 {
69c928ef 727 who = getpwnam(wxSafeConvertWX2MB(ptr));
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728 }
729
730 // We now make sure the the user exists!
731 if (who == NULL)
732 {
733 who = getpwuid(getuid());
734 }
735 }
736 else
737 {
05079acc 738 who = getpwnam (user.mb_str());
518b5d2f
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739 }
740
69c928ef 741 return wxSafeConvertMB2WX(who ? who->pw_dir : 0);
518b5d2f
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742}
743
744// ----------------------------------------------------------------------------
0fb67cd1 745// network and user id routines
518b5d2f
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746// ----------------------------------------------------------------------------
747
8bb6b2c0
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748// private utility function which returns output of the given command, removing
749// the trailing newline
750static wxString wxGetCommandOutput(const wxString &cmd)
751{
752 FILE *f = popen(cmd.ToAscii(), "r");
753 if ( !f )
754 {
755 wxLogSysError(_T("Executing \"%s\" failed"), cmd.c_str());
756 return wxEmptyString;
757 }
758
759 wxString s;
760 char buf[256];
761 while ( !feof(f) )
762 {
763 if ( !fgets(buf, sizeof(buf), f) )
764 break;
765
766 s += wxString::FromAscii(buf);
767 }
768
769 pclose(f);
770
771 if ( !s.empty() && s.Last() == _T('\n') )
772 s.RemoveLast();
773
774 return s;
775}
776
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777// retrieve either the hostname or FQDN depending on platform (caller must
778// check whether it's one or the other, this is why this function is for
779// private use only)
05079acc 780static bool wxGetHostNameInternal(wxChar *buf, int sz)
518b5d2f 781{
9d8aca48 782 wxCHECK_MSG( buf, false, wxT("NULL pointer in wxGetHostNameInternal") );
518b5d2f 783
223d09f6 784 *buf = wxT('\0');
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785
786 // we're using uname() which is POSIX instead of less standard sysinfo()
787#if defined(HAVE_UNAME)
cc743a6f 788 struct utsname uts;
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789 bool ok = uname(&uts) != -1;
790 if ( ok )
791 {
69c928ef 792 wxStrncpy(buf, wxSafeConvertMB2WX(uts.nodename), sz - 1);
223d09f6 793 buf[sz] = wxT('\0');
518b5d2f
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794 }
795#elif defined(HAVE_GETHOSTNAME)
1870f50b
RD
796 char cbuf[sz];
797 bool ok = gethostname(cbuf, sz) != -1;
798 if ( ok )
799 {
69c928ef 800 wxStrncpy(buf, wxSafeConvertMB2WX(cbuf), sz - 1);
1870f50b
RD
801 buf[sz] = wxT('\0');
802 }
0fb67cd1 803#else // no uname, no gethostname
223d09f6 804 wxFAIL_MSG(wxT("don't know host name for this machine"));
518b5d2f 805
9d8aca48 806 bool ok = false;
0fb67cd1 807#endif // uname/gethostname
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808
809 if ( !ok )
810 {
811 wxLogSysError(_("Cannot get the hostname"));
812 }
813
814 return ok;
815}
816
05079acc 817bool wxGetHostName(wxChar *buf, int sz)
0fb67cd1
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818{
819 bool ok = wxGetHostNameInternal(buf, sz);
820
821 if ( ok )
822 {
823 // BSD systems return the FQDN, we only want the hostname, so extract
824 // it (we consider that dots are domain separators)
223d09f6 825 wxChar *dot = wxStrchr(buf, wxT('.'));
0fb67cd1
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826 if ( dot )
827 {
828 // nuke it
223d09f6 829 *dot = wxT('\0');
0fb67cd1
VZ
830 }
831 }
832
833 return ok;
834}
835
05079acc 836bool wxGetFullHostName(wxChar *buf, int sz)
0fb67cd1
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837{
838 bool ok = wxGetHostNameInternal(buf, sz);
839
840 if ( ok )
841 {
223d09f6 842 if ( !wxStrchr(buf, wxT('.')) )
0fb67cd1 843 {
69c928ef 844 struct hostent *host = gethostbyname(wxSafeConvertWX2MB(buf));
0fb67cd1
VZ
845 if ( !host )
846 {
847 wxLogSysError(_("Cannot get the official hostname"));
848
9d8aca48 849 ok = false;
0fb67cd1
VZ
850 }
851 else
852 {
853 // the canonical name
69c928ef 854 wxStrncpy(buf, wxSafeConvertMB2WX(host->h_name), sz);
0fb67cd1
VZ
855 }
856 }
857 //else: it's already a FQDN (BSD behaves this way)
858 }
859
860 return ok;
861}
862
05079acc 863bool wxGetUserId(wxChar *buf, int sz)
518b5d2f
VZ
864{
865 struct passwd *who;
866
223d09f6 867 *buf = wxT('\0');
518b5d2f
VZ
868 if ((who = getpwuid(getuid ())) != NULL)
869 {
69c928ef 870 wxStrncpy (buf, wxSafeConvertMB2WX(who->pw_name), sz - 1);
9d8aca48 871 return true;
518b5d2f
VZ
872 }
873
9d8aca48 874 return false;
518b5d2f
VZ
875}
876
05079acc 877bool wxGetUserName(wxChar *buf, int sz)
518b5d2f 878{
69c928ef 879#ifdef HAVE_PW_GECOS
518b5d2f 880 struct passwd *who;
518b5d2f 881
223d09f6 882 *buf = wxT('\0');
b12915c1
VZ
883 if ((who = getpwuid (getuid ())) != NULL)
884 {
b12915c1 885 char *comma = strchr(who->pw_gecos, ',');
518b5d2f
VZ
886 if (comma)
887 *comma = '\0'; // cut off non-name comment fields
69c928ef 888 wxStrncpy (buf, wxSafeConvertMB2WX(who->pw_gecos), sz - 1);
9d8aca48 889 return true;
518b5d2f
VZ
890 }
891
9d8aca48 892 return false;
69c928ef
VZ
893#else // !HAVE_PW_GECOS
894 return wxGetUserId(buf, sz);
895#endif // HAVE_PW_GECOS/!HAVE_PW_GECOS
518b5d2f
VZ
896}
897
c655557f
VZ
898bool wxIsPlatform64Bit()
899{
900 wxString machine = wxGetCommandOutput(wxT("uname -m"));
901
902 // NOTE: these tests are not 100% reliable!
903 return machine.Contains(wxT("AMD64")) ||
904 machine.Contains(wxT("IA64")) ||
905 machine.Contains(wxT("x64")) ||
906 machine.Contains(wxT("X64")) ||
907 machine.Contains(wxT("alpha")) ||
908 machine.Contains(wxT("hppa64")) ||
909 machine.Contains(wxT("ppc64"));
910}
911
912// these functions are in mac/utils.cpp for wxMac
913#ifndef __WXMAC__
914
8bb6b2c0
VZ
915wxOperatingSystemId wxGetOsVersion(int *verMaj, int *verMin)
916{
917 // get OS version
918 int major, minor;
919 wxString release = wxGetCommandOutput(wxT("uname -r"));
86501081
VS
920 if ( release.empty() ||
921 wxSscanf(release.c_str(), wxT("%d.%d"), &major, &minor) != 2 )
8bb6b2c0 922 {
e1379e29 923 // failed to get version string or unrecognized format
8bb6b2c0
VZ
924 major =
925 minor = -1;
926 }
927
928 if ( verMaj )
929 *verMaj = major;
930 if ( verMin )
931 *verMin = minor;
932
933 // try to understand which OS are we running
934 wxString kernel = wxGetCommandOutput(wxT("uname -s"));
935 if ( kernel.empty() )
936 kernel = wxGetCommandOutput(wxT("uname -o"));
937
938 if ( kernel.empty() )
939 return wxOS_UNKNOWN;
940
941 return wxPlatformInfo::GetOperatingSystemId(kernel);
942}
943
bdc72a22
VZ
944wxString wxGetOsDescription()
945{
8bb6b2c0 946 return wxGetCommandOutput(wxT("uname -s -r -m"));
bdc72a22
VZ
947}
948
e2478fde 949#endif // !__WXMAC__
bd3277fe 950
c1cb4153
VZ
951unsigned long wxGetProcessId()
952{
953 return (unsigned long)getpid();
954}
955
9d8aca48 956wxMemorySize wxGetFreeMemory()
bd3277fe
VZ
957{
958#if defined(__LINUX__)
959 // get it from /proc/meminfo
960 FILE *fp = fopen("/proc/meminfo", "r");
961 if ( fp )
962 {
963 long memFree = -1;
964
965 char buf[1024];
966 if ( fgets(buf, WXSIZEOF(buf), fp) && fgets(buf, WXSIZEOF(buf), fp) )
967 {
7c28d921
VZ
968 // /proc/meminfo changed its format in kernel 2.6
969 if ( wxPlatformInfo().CheckOSVersion(2, 6) )
970 {
971 unsigned long cached, buffers;
972 sscanf(buf, "MemFree: %ld", &memFree);
973
974 fgets(buf, WXSIZEOF(buf), fp);
975 sscanf(buf, "Buffers: %lu", &buffers);
976
977 fgets(buf, WXSIZEOF(buf), fp);
978 sscanf(buf, "Cached: %lu", &cached);
979
980 // add to "MemFree" also the "Buffers" and "Cached" values as
981 // free(1) does as otherwise the value never makes sense: for
982 // kernel 2.6 it's always almost 0
983 memFree += buffers + cached;
984
985 // values here are always expressed in kB and we want bytes
986 memFree *= 1024;
987 }
988 else // Linux 2.4 (or < 2.6, anyhow)
989 {
990 long memTotal, memUsed;
991 sscanf(buf, "Mem: %ld %ld %ld", &memTotal, &memUsed, &memFree);
992 }
bd3277fe
VZ
993 }
994
995 fclose(fp);
996
9d8aca48 997 return (wxMemorySize)memFree;
bd3277fe 998 }
9ad34f61
VZ
999#elif defined(__SGI__)
1000 struct rminfo realmem;
1001 if ( sysmp(MP_SAGET, MPSA_RMINFO, &realmem, sizeof realmem) == 0 )
1002 return ((wxMemorySize)realmem.physmem * sysconf(_SC_PAGESIZE));
40f00746
VZ
1003#elif defined(_SC_AVPHYS_PAGES)
1004 return ((wxMemorySize)sysconf(_SC_AVPHYS_PAGES))*sysconf(_SC_PAGESIZE);
bd3277fe
VZ
1005//#elif defined(__FREEBSD__) -- might use sysctl() to find it out, probably
1006#endif
1007
1008 // can't find it out
1009 return -1;
1010}
1011
7ba7c4e6 1012bool wxGetDiskSpace(const wxString& path, wxDiskspaceSize_t *pTotal, wxDiskspaceSize_t *pFree)
eadd7bd2 1013{
9952adac 1014#if defined(HAVE_STATFS) || defined(HAVE_STATVFS)
fbfb3fb3 1015 // the case to "char *" is needed for AIX 4.3
85da04e9
VZ
1016 wxStatfs_t fs;
1017 if ( wxStatfs((char *)(const char*)path.fn_str(), &fs) != 0 )
eadd7bd2 1018 {
401eb3de 1019 wxLogSysError( wxT("Failed to get file system statistics") );
eadd7bd2 1020
9d8aca48 1021 return false;
eadd7bd2
VZ
1022 }
1023
125cb99b
VZ
1024 // under Solaris we also have to use f_frsize field instead of f_bsize
1025 // which is in general a multiple of f_frsize
1026#ifdef HAVE_STATVFS
7ba7c4e6 1027 wxDiskspaceSize_t blockSize = fs.f_frsize;
125cb99b 1028#else // HAVE_STATFS
7ba7c4e6 1029 wxDiskspaceSize_t blockSize = fs.f_bsize;
125cb99b 1030#endif // HAVE_STATVFS/HAVE_STATFS
9952adac 1031
eadd7bd2
VZ
1032 if ( pTotal )
1033 {
7ba7c4e6 1034 *pTotal = wxDiskspaceSize_t(fs.f_blocks) * blockSize;
eadd7bd2
VZ
1035 }
1036
1037 if ( pFree )
1038 {
7ba7c4e6 1039 *pFree = wxDiskspaceSize_t(fs.f_bavail) * blockSize;
eadd7bd2
VZ
1040 }
1041
9d8aca48 1042 return true;
125cb99b 1043#else // !HAVE_STATFS && !HAVE_STATVFS
9d8aca48 1044 return false;
125cb99b 1045#endif // HAVE_STATFS
eadd7bd2
VZ
1046}
1047
8fd0d89b
VZ
1048// ----------------------------------------------------------------------------
1049// env vars
1050// ----------------------------------------------------------------------------
1051
97b305b7 1052bool wxGetEnv(const wxString& var, wxString *value)
308978f6
VZ
1053{
1054 // wxGetenv is defined as getenv()
86501081 1055 char *p = wxGetenv(var);
308978f6 1056 if ( !p )
9d8aca48 1057 return false;
308978f6
VZ
1058
1059 if ( value )
1060 {
1061 *value = p;
1062 }
1063
9d8aca48 1064 return true;
308978f6
VZ
1065}
1066
8fd0d89b
VZ
1067bool wxSetEnv(const wxString& variable, const wxChar *value)
1068{
1069#if defined(HAVE_SETENV)
d90b2df8
VZ
1070 return setenv(variable.mb_str(),
1071 value ? (const char *)wxString(value).mb_str()
1072 : NULL,
1073 1 /* overwrite */) == 0;
8fd0d89b
VZ
1074#elif defined(HAVE_PUTENV)
1075 wxString s = variable;
1076 if ( value )
1077 s << _T('=') << value;
1078
1079 // transform to ANSI
67479dbd 1080 const wxWX2MBbuf p = s.mb_str();
8fd0d89b
VZ
1081
1082 // the string will be free()d by libc
1083 char *buf = (char *)malloc(strlen(p) + 1);
1084 strcpy(buf, p);
1085
1086 return putenv(buf) == 0;
1087#else // no way to set an env var
67479dbd 1088 return false;
8fd0d89b
VZ
1089#endif
1090}
1091
a37a5a73
VZ
1092// ----------------------------------------------------------------------------
1093// signal handling
1094// ----------------------------------------------------------------------------
1095
1096#if wxUSE_ON_FATAL_EXCEPTION
1097
1098#include <signal.h>
1099
90350682 1100extern "C" void wxFatalSignalHandler(wxTYPE_SA_HANDLER)
a37a5a73
VZ
1101{
1102 if ( wxTheApp )
1103 {
1104 // give the user a chance to do something special about this
1105 wxTheApp->OnFatalException();
1106 }
1107
1108 abort();
1109}
1110
1111bool wxHandleFatalExceptions(bool doit)
1112{
1113 // old sig handlers
9d8aca48 1114 static bool s_savedHandlers = false;
a37a5a73
VZ
1115 static struct sigaction s_handlerFPE,
1116 s_handlerILL,
1117 s_handlerBUS,
1118 s_handlerSEGV;
1119
9d8aca48 1120 bool ok = true;
a37a5a73
VZ
1121 if ( doit && !s_savedHandlers )
1122 {
1123 // install the signal handler
1124 struct sigaction act;
1125
1126 // some systems extend it with non std fields, so zero everything
1127 memset(&act, 0, sizeof(act));
1128
1129 act.sa_handler = wxFatalSignalHandler;
1130 sigemptyset(&act.sa_mask);
1131 act.sa_flags = 0;
1132
1133 ok &= sigaction(SIGFPE, &act, &s_handlerFPE) == 0;
1134 ok &= sigaction(SIGILL, &act, &s_handlerILL) == 0;
1135 ok &= sigaction(SIGBUS, &act, &s_handlerBUS) == 0;
1136 ok &= sigaction(SIGSEGV, &act, &s_handlerSEGV) == 0;
1137 if ( !ok )
1138 {
1139 wxLogDebug(_T("Failed to install our signal handler."));
1140 }
1141
9d8aca48 1142 s_savedHandlers = true;
a37a5a73
VZ
1143 }
1144 else if ( s_savedHandlers )
1145 {
1146 // uninstall the signal handler
1147 ok &= sigaction(SIGFPE, &s_handlerFPE, NULL) == 0;
1148 ok &= sigaction(SIGILL, &s_handlerILL, NULL) == 0;
1149 ok &= sigaction(SIGBUS, &s_handlerBUS, NULL) == 0;
1150 ok &= sigaction(SIGSEGV, &s_handlerSEGV, NULL) == 0;
1151 if ( !ok )
1152 {
1153 wxLogDebug(_T("Failed to uninstall our signal handler."));
1154 }
1155
9d8aca48 1156 s_savedHandlers = false;
a37a5a73
VZ
1157 }
1158 //else: nothing to do
1159
1160 return ok;
1161}
1162
1163#endif // wxUSE_ON_FATAL_EXCEPTION
1164
ec67cff1 1165#endif // wxUSE_BASE
e2478fde
VZ
1166
1167#if wxUSE_GUI
1168
1169// ----------------------------------------------------------------------------
1170// wxExecute support
1171// ----------------------------------------------------------------------------
1172
1173// Darwin doesn't use the same process end detection mechanisms so we don't
1174// need wxExecute-related helpers for it
1175#if !(defined(__DARWIN__) && defined(__WXMAC__))
1176
1177bool wxGUIAppTraits::CreateEndProcessPipe(wxExecuteData& execData)
1178{
1179 return execData.pipeEndProcDetect.Create();
1180}
1181
1182bool wxGUIAppTraits::IsWriteFDOfEndProcessPipe(wxExecuteData& execData, int fd)
1183{
46446cc2 1184 return fd == (execData.pipeEndProcDetect)[wxPipe::Write];
e2478fde
VZ
1185}
1186
1187void wxGUIAppTraits::DetachWriteFDOfEndProcessPipe(wxExecuteData& execData)
1188{
1189 execData.pipeEndProcDetect.Detach(wxPipe::Write);
1190 execData.pipeEndProcDetect.Close();
1191}
1192
1193#else // !Darwin
1194
1195bool wxGUIAppTraits::CreateEndProcessPipe(wxExecuteData& WXUNUSED(execData))
1196{
1197 return true;
1198}
1199
1200bool
1201wxGUIAppTraits::IsWriteFDOfEndProcessPipe(wxExecuteData& WXUNUSED(execData),
1202 int WXUNUSED(fd))
1203{
1204 return false;
1205}
1206
1207void
1208wxGUIAppTraits::DetachWriteFDOfEndProcessPipe(wxExecuteData& WXUNUSED(execData))
1209{
1210 // nothing to do here, we don't use the pipe
1211}
1212
1213#endif // !Darwin/Darwin
1214
1215int wxGUIAppTraits::WaitForChild(wxExecuteData& execData)
1216{
1217 wxEndProcessData *endProcData = new wxEndProcessData;
1218
f38f6899
VZ
1219 const int flags = execData.flags;
1220
e2478fde
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1221 // wxAddProcessCallback is now (with DARWIN) allowed to call the
1222 // callback function directly if the process terminates before
1223 // the callback can be added to the run loop. Set up the endProcData.
f38f6899 1224 if ( flags & wxEXEC_SYNC )
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1225 {
1226 // we may have process for capturing the program output, but it's
1227 // not used in wxEndProcessData in the case of sync execution
1228 endProcData->process = NULL;
1229
1230 // sync execution: indicate it by negating the pid
1231 endProcData->pid = -execData.pid;
1232 }
1233 else
1234 {
1235 // async execution, nothing special to do -- caller will be
1236 // notified about the process termination if process != NULL, endProcData
1237 // will be deleted in GTK_EndProcessDetector
1238 endProcData->process = execData.process;
1239 endProcData->pid = execData.pid;
1240 }
1241
1242
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1243 if ( !(flags & wxEXEC_NOEVENTS) )
1244 {
f7ef0602 1245#if defined(__DARWIN__) && (defined(__WXMAC__) || defined(__WXCOCOA__))
bc855d09 1246 endProcData->tag = wxAddProcessCallbackForPid(endProcData, execData.pid);
e2478fde 1247#else
bc855d09
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1248 endProcData->tag = wxAddProcessCallback
1249 (
1250 endProcData,
1251 execData.pipeEndProcDetect.Detach(wxPipe::Read)
1252 );
e2478fde 1253
bc855d09 1254 execData.pipeEndProcDetect.Close();
f7ef0602 1255#endif // defined(__DARWIN__) && (defined(__WXMAC__) || defined(__WXCOCOA__))
bc855d09 1256 }
e2478fde 1257
f38f6899 1258 if ( flags & wxEXEC_SYNC )
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1259 {
1260 wxBusyCursor bc;
bc855d09
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1261 int exitcode = 0;
1262
1263 wxWindowDisabler *wd = flags & (wxEXEC_NODISABLE | wxEXEC_NOEVENTS)
1264 ? NULL
1265 : new wxWindowDisabler;
e2478fde 1266
bc855d09 1267 if ( flags & wxEXEC_NOEVENTS )
e2478fde 1268 {
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1269 // just block waiting for the child to exit
1270 int status = 0;
05df0f1b 1271
bc855d09
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1272 int result = waitpid(execData.pid, &status, 0);
1273
1274 if ( result == -1 )
05df0f1b 1275 {
bc855d09
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1276 wxLogLastError(_T("waitpid"));
1277 exitcode = -1;
05df0f1b 1278 }
bc855d09 1279 else
05df0f1b 1280 {
bc855d09
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1281 wxASSERT_MSG( result == execData.pid,
1282 _T("unexpected waitpid() return value") );
1283
1284 if ( WIFEXITED(status) )
1285 {
1286 exitcode = WEXITSTATUS(status);
1287 }
1288 else // abnormal termination?
1289 {
1290 wxASSERT_MSG( WIFSIGNALED(status),
1291 _T("unexpected child wait status") );
1292 exitcode = -1;
1293 }
05df0f1b 1294 }
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1295 }
1296 else // !wxEXEC_NOEVENTS
1297 {
1298 // endProcData->pid will be set to 0 from GTK_EndProcessDetector when the
1299 // process terminates
1300 while ( endProcData->pid != 0 )
1301 {
1302 bool idle = true;
1303
1304#if HAS_PIPE_INPUT_STREAM
1305 if ( execData.bufOut )
1306 {
1307 execData.bufOut->Update();
1308 idle = false;
1309 }
1310
1311 if ( execData.bufErr )
1312 {
1313 execData.bufErr->Update();
1314 idle = false;
1315 }
1f3b2af0 1316#endif // HAS_PIPE_INPUT_STREAM
e2478fde 1317
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1318 // don't consume 100% of the CPU while we're sitting in this
1319 // loop
1320 if ( idle )
1321 wxMilliSleep(1);
05df0f1b 1322
bc855d09
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1323 // give GTK+ a chance to call GTK_EndProcessDetector here and
1324 // also repaint the GUI
1325 wxYield();
1326 }
e2478fde 1327
bc855d09
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1328 exitcode = endProcData->exitcode;
1329 }
e2478fde 1330
f38f6899 1331 delete wd;
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1332 delete endProcData;
1333
1334 return exitcode;
1335 }
1336 else // async execution
1337 {
1338 return execData.pid;
1339 }
1340}
1341
2dbc444a
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1342#endif // wxUSE_GUI
1343#if wxUSE_BASE
1344
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1345void wxHandleProcessTermination(wxEndProcessData *proc_data)
1346{
1347 // notify user about termination if required
1348 if ( proc_data->process )
1349 {
1350 proc_data->process->OnTerminate(proc_data->pid, proc_data->exitcode);
1351 }
1352
1353 // clean up
1354 if ( proc_data->pid > 0 )
1355 {
1356 delete proc_data;
1357 }
1358 else
1359 {
1360 // let wxExecute() know that the process has terminated
1361 proc_data->pid = 0;
1362 }
1363}
1364
2dbc444a 1365#endif // wxUSE_BASE