1 /************************************************************** 2 * 3 * Licensed to the Apache Software Foundation (ASF) under one 4 * or more contributor license agreements. See the NOTICE file 5 * distributed with this work for additional information 6 * regarding copyright ownership. The ASF licenses this file 7 * to you under the Apache License, Version 2.0 (the 8 * "License"); you may not use this file except in compliance 9 * with the License. You may obtain a copy of the License at 10 * 11 * http://www.apache.org/licenses/LICENSE-2.0 12 * 13 * Unless required by applicable law or agreed to in writing, 14 * software distributed under the License is distributed on an 15 * "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY 16 * KIND, either express or implied. See the License for the 17 * specific language governing permissions and limitations 18 * under the License. 19 * 20 *************************************************************/ 21 22 23 24 // MARKER(update_precomp.py): autogen include statement, do not remove 25 #include "precompiled_vcl.hxx" 26 27 #include <osl/module.h> 28 #include <unx/gtk/gtkdata.hxx> 29 #include <unx/gtk/gtkinst.hxx> 30 #include <unx/salobj.h> 31 #include <unx/gtk/gtkframe.hxx> 32 #include <unx/gtk/gtkobject.hxx> 33 #include <unx/gtk/atkbridge.hxx> 34 35 #include <rtl/strbuf.hxx> 36 37 #include <rtl/uri.hxx> 38 39 #if OSL_DEBUG_LEVEL > 1 40 #include <stdio.h> 41 #endif 42 43 #include <dlfcn.h> 44 #include <fcntl.h> 45 #include <unistd.h> 46 47 GtkHookedYieldMutex::GtkHookedYieldMutex() 48 { 49 } 50 51 /* 52 * These methods always occur in pairs 53 * A ThreadsEnter is followed by a ThreadsLeave 54 * We need to queue up the recursive lock count 55 * for each pair, so we can accurately restore 56 * it later. 57 */ 58 void GtkHookedYieldMutex::ThreadsEnter() 59 { 60 acquire(); 61 if( !aYieldStack.empty() ) 62 { /* Previously called ThreadsLeave() */ 63 sal_uLong nCount = aYieldStack.front(); 64 aYieldStack.pop_front(); 65 while( nCount-- > 1 ) 66 acquire(); 67 } 68 } 69 70 void GtkHookedYieldMutex::ThreadsLeave() 71 { 72 aYieldStack.push_front( mnCount ); 73 74 #if OSL_DEBUG_LEVEL > 1 75 if( mnThreadId && 76 mnThreadId != vos::OThread::getCurrentIdentifier()) 77 fprintf( stderr, "\n\n--- A different thread owns the mutex ...---\n\n\n"); 78 #endif 79 80 while( mnCount > 1 ) 81 release(); 82 release(); 83 } 84 85 void GtkHookedYieldMutex::acquire() 86 { 87 SalYieldMutex::acquire(); 88 } 89 90 void GtkHookedYieldMutex::release() 91 { 92 SalYieldMutex::release(); 93 } 94 95 extern "C" 96 { 97 #define GET_YIELD_MUTEX() static_cast<GtkHookedYieldMutex*>(GetSalData()->m_pInstance->GetYieldMutex()) 98 static void GdkThreadsEnter( void ) 99 { 100 GtkHookedYieldMutex *pYieldMutex = GET_YIELD_MUTEX(); 101 pYieldMutex->ThreadsEnter(); 102 } 103 static void GdkThreadsLeave( void ) 104 { 105 GtkHookedYieldMutex *pYieldMutex = GET_YIELD_MUTEX(); 106 pYieldMutex->ThreadsLeave(); 107 } 108 static bool hookLocks( oslModule pModule ) 109 { 110 typedef void (*GdkLockFn) (GCallback enter_fn, GCallback leave_fn); 111 112 GdkLockFn gdk_threads_set_lock_functions = 113 (GdkLockFn) osl_getAsciiFunctionSymbol( pModule, "gdk_threads_set_lock_functions" ); 114 if ( !gdk_threads_set_lock_functions ) 115 { 116 #if OSL_DEBUG_LEVEL > 1 117 fprintf( stderr, "Failed to hook gdk threads locks\n" ); 118 #endif 119 return false; 120 } 121 122 gdk_threads_set_lock_functions (GdkThreadsEnter, GdkThreadsLeave); 123 #if OSL_DEBUG_LEVEL > 1 124 fprintf( stderr, "Hooked gdk threads locks\n" ); 125 #endif 126 return true; 127 } 128 129 VCLPLUG_GTK_PUBLIC SalInstance* create_SalInstance( oslModule pModule ) 130 { 131 /* #i92121# workaround deadlocks in the X11 implementation 132 */ 133 static const char* pNoXInitThreads = getenv( "SAL_NO_XINITTHREADS" ); 134 /* #i90094# 135 from now on we know that an X connection will be 136 established, so protect X against itself 137 */ 138 if( ! ( pNoXInitThreads && *pNoXInitThreads ) ) 139 XInitThreads(); 140 141 const gchar* pVersion = gtk_check_version( 2, 2, 0 ); 142 if( pVersion ) 143 { 144 #if OSL_DEBUG_LEVEL > 1 145 fprintf( stderr, "gtk version conflict: %s\n", pVersion ); 146 #endif 147 return NULL; 148 } 149 150 GtkYieldMutex *pYieldMutex; 151 152 // init gdk thread protection 153 if ( !g_thread_supported() ) 154 g_thread_init( NULL ); 155 156 if ( hookLocks( pModule ) ) 157 pYieldMutex = new GtkHookedYieldMutex(); 158 else 159 pYieldMutex = new GtkYieldMutex(); 160 161 gdk_threads_init(); 162 163 GtkInstance* pInstance = new GtkInstance( pYieldMutex ); 164 #if OSL_DEBUG_LEVEL > 1 165 fprintf( stderr, "creating GtkSalInstance 0x%p\n", pInstance ); 166 #endif 167 168 // initialize SalData 169 GtkData *pSalData = new GtkData(); 170 SetSalData( pSalData ); 171 pSalData->m_pInstance = pInstance; 172 pSalData->Init(); 173 pSalData->initNWF(); 174 175 InitAtkBridge(); 176 177 return pInstance; 178 } 179 } 180 181 GtkInstance::~GtkInstance() 182 { 183 DeInitAtkBridge(); 184 } 185 186 SalFrame* GtkInstance::CreateFrame( SalFrame* pParent, sal_uLong nStyle ) 187 { 188 return new GtkSalFrame( pParent, nStyle ); 189 } 190 191 SalFrame* GtkInstance::CreateChildFrame( SystemParentData* pParentData, sal_uLong ) 192 { 193 SalFrame* pFrame = new GtkSalFrame( pParentData ); 194 195 return pFrame; 196 } 197 198 SalObject* GtkInstance::CreateObject( SalFrame* pParent, SystemWindowData* pWindowData, sal_Bool bShow ) 199 { 200 // there is no method to set a visual for a GtkWidget 201 // so we need the X11SalObject in that case 202 if( pWindowData ) 203 return X11SalObject::CreateObject( pParent, pWindowData, bShow ); 204 205 return new GtkSalObject( static_cast<GtkSalFrame*>(pParent), bShow ); 206 } 207 208 void GtkInstance::AddToRecentDocumentList(const rtl::OUString& rFileUrl, const rtl::OUString& rMimeType) 209 { 210 rtl::OString sGtkURL; 211 rtl_TextEncoding aSystemEnc = osl_getThreadTextEncoding(); 212 if ((aSystemEnc == RTL_TEXTENCODING_UTF8) || (rFileUrl.compareToAscii( "file://", 7 ) != 0)) 213 sGtkURL = rtl::OUStringToOString(rFileUrl, RTL_TEXTENCODING_UTF8); 214 else 215 { 216 //Non-utf8 locales are a bad idea if trying to work with non-ascii filenames 217 //Decode %XX components 218 rtl::OUString sDecodedUri = Uri::decode(rFileUrl.copy(7), rtl_UriDecodeToIuri, RTL_TEXTENCODING_UTF8); 219 //Convert back to system locale encoding 220 rtl::OString sSystemUrl = rtl::OUStringToOString(sDecodedUri, aSystemEnc); 221 //Encode to an escaped ASCII-encoded URI 222 gchar *g_uri = g_filename_to_uri(sSystemUrl.getStr(), NULL, NULL); 223 sGtkURL = rtl::OString(g_uri); 224 g_free(g_uri); 225 } 226 GtkRecentManager *manager = gtk_recent_manager_get_default (); 227 gtk_recent_manager_add_item( manager, sGtkURL.getStr()); 228 (void)rMimeType; 229 } 230 231 GtkYieldMutex::GtkYieldMutex() 232 { 233 } 234 235 void GtkYieldMutex::acquire() 236 { 237 vos::OThread::TThreadIdentifier aCurrentThread = vos::OThread::getCurrentIdentifier(); 238 // protect member manipulation 239 OMutex::acquire(); 240 if( mnCount > 0 && mnThreadId == aCurrentThread ) 241 { 242 mnCount++; 243 OMutex::release(); 244 return; 245 } 246 OMutex::release(); 247 248 // obtain gdk mutex 249 gdk_threads_enter(); 250 251 // obtained gdk mutex, now lock count is one by definition 252 OMutex::acquire(); 253 mnCount = 1; 254 mnThreadId = aCurrentThread; 255 OMutex::release(); 256 } 257 258 void GtkYieldMutex::release() 259 { 260 vos::OThread::TThreadIdentifier aCurrentThread = vos::OThread::getCurrentIdentifier(); 261 // protect member manipulation 262 OMutex::acquire(); 263 // strange things happen, do nothing if we don't own the mutex 264 if( mnThreadId == aCurrentThread ) 265 { 266 mnCount--; 267 if( mnCount == 0 ) 268 { 269 gdk_threads_leave(); 270 mnThreadId = 0; 271 } 272 } 273 OMutex::release(); 274 } 275 276 sal_Bool GtkYieldMutex::tryToAcquire() 277 { 278 vos::OThread::TThreadIdentifier aCurrentThread = vos::OThread::getCurrentIdentifier(); 279 // protect member manipulation 280 OMutex::acquire(); 281 if( mnCount > 0 ) 282 { 283 if( mnThreadId == aCurrentThread ) 284 { 285 mnCount++; 286 OMutex::release(); 287 return sal_True; 288 } 289 else 290 { 291 OMutex::release(); 292 return sal_False; 293 } 294 } 295 OMutex::release(); 296 297 // HACK: gdk_threads_mutex is private, we shouldn't use it. 298 // how to we do a try_lock without having a gdk_threads_try_enter ? 299 if( ! g_mutex_trylock( gdk_threads_mutex ) ) 300 return sal_False; 301 302 // obtained gdk mutex, now lock count is one by definition 303 OMutex::acquire(); 304 mnCount = 1; 305 mnThreadId = aCurrentThread; 306 OMutex::release(); 307 308 return sal_True; 309 } 310 311 int GtkYieldMutex::Grab() 312 { 313 // this MUST only be called by gdk/gtk callbacks: 314 // they are entered with gdk mutex locked; the mutex 315 // was unlocked by GtkYieldMutex befor yielding which 316 // is now locked again by gtk implicitly 317 318 // obtained gdk mutex, now lock count is one by definition 319 OMutex::acquire(); 320 int nRet = mnCount; 321 if( mnCount == 0 ) // recursive else 322 mnThreadId = vos::OThread::getCurrentIdentifier(); 323 #if OSL_DEBUG_LEVEL > 1 324 else if( mnThreadId != vos::OThread::getCurrentIdentifier() ) 325 { 326 fprintf( stderr, "Yield mutex grabbed in different thread !\n" ); 327 abort(); 328 } 329 #endif 330 mnCount = 1; 331 OMutex::release(); 332 return nRet; 333 } 334 335 void GtkYieldMutex::Ungrab( int nGrabs ) 336 { 337 // this MUST only be called when leaving the callback 338 // that locked the mutex with Grab() 339 OMutex::acquire(); 340 mnCount = nGrabs; 341 if( mnCount == 0 ) 342 mnThreadId = 0; 343 OMutex::release(); 344 } 345