xref: /AOO41X/main/bridges/source/cpp_uno/gcc3_freebsd_intel/uno2cpp.cxx (revision de2c434cf06d3b138089e2a8fcdfa14ba1901f6e)
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_bridges.hxx"
26 
27 #include <typeinfo>
28 #include <exception>
29 #include <cstddef>
30 #include <cxxabi.h>
31 #include <stdlib.h>
32 
33 #include <com/sun/star/uno/genfunc.hxx>
34 #include "com/sun/star/uno/RuntimeException.hpp"
35 #include <uno/data.h>
36 
37 #include "bridges/cpp_uno/shared/bridge.hxx"
38 #include "bridges/cpp_uno/shared/types.hxx"
39 #include "bridges/cpp_uno/shared/unointerfaceproxy.hxx"
40 #include "bridges/cpp_uno/shared/vtables.hxx"
41 
42 #include "share.hxx"
43 
44 using namespace ::rtl;
45 using namespace ::com::sun::star::uno;
46 #ifdef __GLIBCXX__
47 using CPPU_CURRENT_NAMESPACE::__cxa_get_globals;
48 #else
49 using __cxxabiv1::__cxa_get_globals;
50 #endif
51 
52 namespace
53 {
54 
55 //==================================================================================================
56 // The call instruction within the asm section of callVirtualMethod may throw
57 // exceptions.  So that the compiler handles this correctly, it is important
58 // that (a) callVirtualMethod might call dummy_can_throw_anything (although this
59 // never happens at runtime), which in turn can throw exceptions, and (b)
60 // callVirtualMethod is not inlined at its call site (so that any exceptions are
61 // caught which are thrown from the instruction calling callVirtualMethod):
62 void callVirtualMethod(
63     void * pAdjustedThisPtr,
64     sal_Int32 nVtableIndex,
65     void * pRegisterReturn,
66     typelib_TypeClass eReturnType,
67     sal_Int32 * pStackLongs,
68     sal_Int32 nStackLongs ) __attribute__((noinline));
69 
callVirtualMethod(void * pAdjustedThisPtr,sal_Int32 nVtableIndex,void * pRegisterReturn,typelib_TypeClass eReturnType,sal_Int32 * pStackLongs,sal_Int32 nStackLongs)70 void callVirtualMethod(
71     void * pAdjustedThisPtr,
72     sal_Int32 nVtableIndex,
73     void * pRegisterReturn,
74     typelib_TypeClass eReturnType,
75     sal_Int32 * pStackLongs,
76     sal_Int32 nStackLongs )
77 {
78     // parameter list is mixed list of * and values
79     // reference parameters are pointers
80 
81     OSL_ENSURE( pStackLongs && pAdjustedThisPtr, "### null ptr!" );
82     OSL_ENSURE( (sizeof(void *) == 4) && (sizeof(sal_Int32) == 4), "### unexpected size of int!" );
83     OSL_ENSURE( nStackLongs && pStackLongs, "### no stack in callVirtualMethod !" );
84 
85     // never called
86     if (! pAdjustedThisPtr) CPPU_CURRENT_NAMESPACE::dummy_can_throw_anything("xxx"); // address something
87 
88     volatile long edx = 0, eax = 0; // for register returns
89     void * stackptr;
90     asm volatile (
91         "mov   %%esp, %6\n\t"
92         // preserve potential 128bit stack alignment
93         "and   $0xfffffff0, %%esp\n\t"
94         "mov   %0, %%eax\n\t"
95         "lea   -4(,%%eax,4), %%eax\n\t"
96         "and   $0xf, %%eax\n\t"
97         "sub   $0xc, %%eax\n\t"
98         "add   %%eax, %%esp\n\t"
99         // copy values
100         "mov   %0, %%eax\n\t"
101         "mov   %%eax, %%edx\n\t"
102         "dec   %%edx\n\t"
103         "shl   $2, %%edx\n\t"
104         "add   %1, %%edx\n"
105         "Lcopy:\n\t"
106         "pushl 0(%%edx)\n\t"
107         "sub   $4, %%edx\n\t"
108         "dec   %%eax\n\t"
109         "jne   Lcopy\n\t"
110         // do the actual call
111         "mov   %2, %%edx\n\t"
112         "mov   0(%%edx), %%edx\n\t"
113         "mov   %3, %%eax\n\t"
114         "shl   $2, %%eax\n\t"
115         "add   %%eax, %%edx\n\t"
116         "mov   0(%%edx), %%edx\n\t"
117         "call  *%%edx\n\t"
118         // save return registers
119         "mov   %%eax, %4\n\t"
120         "mov   %%edx, %5\n\t"
121         // cleanup stack
122         "mov   %6, %%esp\n\t"
123         :
124         : "m"(nStackLongs), "m"(pStackLongs), "m"(pAdjustedThisPtr),
125           "m"(nVtableIndex), "m"(eax), "m"(edx), "m"(stackptr)
126         : "eax", "edx" );
127     switch( eReturnType )
128     {
129         case typelib_TypeClass_HYPER:
130         case typelib_TypeClass_UNSIGNED_HYPER:
131             ((long*)pRegisterReturn)[1] = edx;
132         case typelib_TypeClass_LONG:
133         case typelib_TypeClass_UNSIGNED_LONG:
134         case typelib_TypeClass_CHAR:
135         case typelib_TypeClass_ENUM:
136             ((long*)pRegisterReturn)[0] = eax;
137             break;
138         case typelib_TypeClass_SHORT:
139         case typelib_TypeClass_UNSIGNED_SHORT:
140             *(unsigned short*)pRegisterReturn = eax;
141             break;
142         case typelib_TypeClass_BOOLEAN:
143         case typelib_TypeClass_BYTE:
144             *(unsigned char*)pRegisterReturn = eax;
145             break;
146         case typelib_TypeClass_FLOAT:
147             asm ( "fstps %0" : : "m"(*(char *)pRegisterReturn) );
148             break;
149         case typelib_TypeClass_DOUBLE:
150             asm ( "fstpl %0\n\t" : : "m"(*(char *)pRegisterReturn) );
151             break;
152         default:
153             break;
154     }
155 }
156 
157 //==================================================================================================
cpp_call(bridges::cpp_uno::shared::UnoInterfaceProxy * pThis,bridges::cpp_uno::shared::VtableSlot aVtableSlot,typelib_TypeDescriptionReference * pReturnTypeRef,sal_Int32 nParams,typelib_MethodParameter * pParams,void * pUnoReturn,void * pUnoArgs[],uno_Any ** ppUnoExc)158 static void cpp_call(
159     bridges::cpp_uno::shared::UnoInterfaceProxy * pThis,
160     bridges::cpp_uno::shared::VtableSlot aVtableSlot,
161     typelib_TypeDescriptionReference * pReturnTypeRef,
162     sal_Int32 nParams, typelib_MethodParameter * pParams,
163     void * pUnoReturn, void * pUnoArgs[], uno_Any ** ppUnoExc )
164 {
165     // max space for: [complex ret ptr], values|ptr ...
166     char * pCppStack        =
167         (char *)alloca( sizeof(sal_Int32) + ((nParams+2) * sizeof(sal_Int64)) );
168     char * pCppStackStart   = pCppStack;
169 
170     // return
171     typelib_TypeDescription * pReturnTypeDescr = 0;
172     TYPELIB_DANGER_GET( &pReturnTypeDescr, pReturnTypeRef );
173     OSL_ENSURE( pReturnTypeDescr, "### expected return type description!" );
174 
175     void * pCppReturn = 0; // if != 0 && != pUnoReturn, needs reconversion
176 
177     if (pReturnTypeDescr)
178     {
179         if (bridges::cpp_uno::shared::isSimpleType( pReturnTypeDescr ))
180         {
181             pCppReturn = pUnoReturn; // direct way for simple types
182         }
183         else
184         {
185             // complex return via ptr
186             pCppReturn = *(void **)pCppStack
187                 = (bridges::cpp_uno::shared::relatesToInterfaceType(
188                        pReturnTypeDescr )
189                    ? alloca( pReturnTypeDescr->nSize )
190                    : pUnoReturn); // direct way
191             pCppStack += sizeof(void *);
192         }
193     }
194     // push this
195     void * pAdjustedThisPtr = reinterpret_cast< void ** >(pThis->getCppI())
196         + aVtableSlot.offset;
197     *(void**)pCppStack = pAdjustedThisPtr;
198     pCppStack += sizeof( void* );
199 
200     // stack space
201     OSL_ENSURE( sizeof(void *) == sizeof(sal_Int32), "### unexpected size!" );
202     // args
203     void ** pCppArgs  = (void **)alloca( 3 * sizeof(void *) * nParams );
204     // indizes of values this have to be converted (interface conversion cpp<=>uno)
205     sal_Int32 * pTempIndizes = (sal_Int32 *)(pCppArgs + nParams);
206     // type descriptions for reconversions
207     typelib_TypeDescription ** ppTempParamTypeDescr = (typelib_TypeDescription **)(pCppArgs + (2 * nParams));
208 
209     sal_Int32 nTempIndizes   = 0;
210 
211     for ( sal_Int32 nPos = 0; nPos < nParams; ++nPos )
212     {
213         const typelib_MethodParameter & rParam = pParams[nPos];
214         typelib_TypeDescription * pParamTypeDescr = 0;
215         TYPELIB_DANGER_GET( &pParamTypeDescr, rParam.pTypeRef );
216 
217         if (!rParam.bOut
218             && bridges::cpp_uno::shared::isSimpleType( pParamTypeDescr ))
219         {
220             uno_copyAndConvertData( pCppArgs[nPos] = pCppStack, pUnoArgs[nPos], pParamTypeDescr,
221                                     pThis->getBridge()->getUno2Cpp() );
222 
223             switch (pParamTypeDescr->eTypeClass)
224             {
225             case typelib_TypeClass_HYPER:
226             case typelib_TypeClass_UNSIGNED_HYPER:
227             case typelib_TypeClass_DOUBLE:
228                 pCppStack += sizeof(sal_Int32); // extra long
229                 break;
230             default:
231                 break;
232             }
233             // no longer needed
234             TYPELIB_DANGER_RELEASE( pParamTypeDescr );
235         }
236         else // ptr to complex value | ref
237         {
238             if (! rParam.bIn) // is pure out
239             {
240                 // cpp out is constructed mem, uno out is not!
241                 uno_constructData(
242                     *(void **)pCppStack = pCppArgs[nPos] = alloca( pParamTypeDescr->nSize ),
243                     pParamTypeDescr );
244                 pTempIndizes[nTempIndizes] = nPos; // default constructed for cpp call
245                 // will be released at reconversion
246                 ppTempParamTypeDescr[nTempIndizes++] = pParamTypeDescr;
247             }
248             // is in/inout
249             else if (bridges::cpp_uno::shared::relatesToInterfaceType(
250                          pParamTypeDescr ))
251             {
252                 uno_copyAndConvertData(
253                     *(void **)pCppStack = pCppArgs[nPos] = alloca( pParamTypeDescr->nSize ),
254                     pUnoArgs[nPos], pParamTypeDescr,
255                     pThis->getBridge()->getUno2Cpp() );
256 
257                 pTempIndizes[nTempIndizes] = nPos; // has to be reconverted
258                 // will be released at reconversion
259                 ppTempParamTypeDescr[nTempIndizes++] = pParamTypeDescr;
260             }
261             else // direct way
262             {
263                 *(void **)pCppStack = pCppArgs[nPos] = pUnoArgs[nPos];
264                 // no longer needed
265                 TYPELIB_DANGER_RELEASE( pParamTypeDescr );
266             }
267         }
268         pCppStack += sizeof(sal_Int32); // standard parameter length
269     }
270 
271     try
272     {
273         OSL_ENSURE( !( (pCppStack - pCppStackStart ) & 3), "UNALIGNED STACK !!! (Please DO panic)" );
274         callVirtualMethod(
275             pAdjustedThisPtr, aVtableSlot.index,
276             pCppReturn, pReturnTypeDescr->eTypeClass,
277             (sal_Int32 *)pCppStackStart, (pCppStack - pCppStackStart) / sizeof(sal_Int32) );
278         // NO exception occured...
279         *ppUnoExc = 0;
280 
281         // reconvert temporary params
282         for ( ; nTempIndizes--; )
283         {
284             sal_Int32 nIndex = pTempIndizes[nTempIndizes];
285             typelib_TypeDescription * pParamTypeDescr = ppTempParamTypeDescr[nTempIndizes];
286 
287             if (pParams[nIndex].bIn)
288             {
289                 if (pParams[nIndex].bOut) // inout
290                 {
291                     uno_destructData( pUnoArgs[nIndex], pParamTypeDescr, 0 ); // destroy uno value
292                     uno_copyAndConvertData( pUnoArgs[nIndex], pCppArgs[nIndex], pParamTypeDescr,
293                                             pThis->getBridge()->getCpp2Uno() );
294                 }
295             }
296             else // pure out
297             {
298                 uno_copyAndConvertData( pUnoArgs[nIndex], pCppArgs[nIndex], pParamTypeDescr,
299                                         pThis->getBridge()->getCpp2Uno() );
300             }
301             // destroy temp cpp param => cpp: every param was constructed
302             uno_destructData( pCppArgs[nIndex], pParamTypeDescr, cpp_release );
303 
304             TYPELIB_DANGER_RELEASE( pParamTypeDescr );
305         }
306         // return value
307         if (pCppReturn && pUnoReturn != pCppReturn)
308         {
309             uno_copyAndConvertData( pUnoReturn, pCppReturn, pReturnTypeDescr,
310                                     pThis->getBridge()->getCpp2Uno() );
311             uno_destructData( pCppReturn, pReturnTypeDescr, cpp_release );
312         }
313     }
314     catch (...)
315     {
316         // fill uno exception
317         CPPU_CURRENT_NAMESPACE::fillUnoException( __cxa_get_globals()->caughtExceptions, *ppUnoExc, pThis->getBridge()->getCpp2Uno() );
318 
319         // temporary params
320         for ( ; nTempIndizes--; )
321         {
322             sal_Int32 nIndex = pTempIndizes[nTempIndizes];
323             // destroy temp cpp param => cpp: every param was constructed
324             uno_destructData( pCppArgs[nIndex], ppTempParamTypeDescr[nTempIndizes], cpp_release );
325             TYPELIB_DANGER_RELEASE( ppTempParamTypeDescr[nTempIndizes] );
326         }
327         // return type
328         if (pReturnTypeDescr)
329             TYPELIB_DANGER_RELEASE( pReturnTypeDescr );
330     }
331 }
332 
333 }
334 
335 namespace bridges { namespace cpp_uno { namespace shared {
336 
unoInterfaceProxyDispatch(uno_Interface * pUnoI,const typelib_TypeDescription * pMemberDescr,void * pReturn,void * pArgs[],uno_Any ** ppException)337 void unoInterfaceProxyDispatch(
338     uno_Interface * pUnoI, const typelib_TypeDescription * pMemberDescr,
339     void * pReturn, void * pArgs[], uno_Any ** ppException )
340 {
341     // is my surrogate
342     bridges::cpp_uno::shared::UnoInterfaceProxy * pThis
343         = static_cast< bridges::cpp_uno::shared::UnoInterfaceProxy * >(pUnoI);
344 
345     switch (pMemberDescr->eTypeClass)
346     {
347     case typelib_TypeClass_INTERFACE_ATTRIBUTE:
348     {
349         VtableSlot aVtableSlot(
350             getVtableSlot(
351                 reinterpret_cast<
352                     typelib_InterfaceAttributeTypeDescription const * >(
353                         pMemberDescr)));
354         if (pReturn)
355         {
356             // dependent dispatch
357             cpp_call(
358                 pThis, aVtableSlot,
359                 ((typelib_InterfaceAttributeTypeDescription *)pMemberDescr)->pAttributeTypeRef,
360                 0, 0, // no params
361                 pReturn, pArgs, ppException );
362         }
363         else
364         {
365             // is SET
366             typelib_MethodParameter aParam;
367             aParam.pTypeRef =
368                 ((typelib_InterfaceAttributeTypeDescription *)pMemberDescr)->pAttributeTypeRef;
369             aParam.bIn      = sal_True;
370             aParam.bOut     = sal_False;
371 
372             typelib_TypeDescriptionReference * pReturnTypeRef = 0;
373             OUString aVoidName( RTL_CONSTASCII_USTRINGPARAM("void") );
374             typelib_typedescriptionreference_new(
375                 &pReturnTypeRef, typelib_TypeClass_VOID, aVoidName.pData );
376 
377             // dependent dispatch
378             aVtableSlot.index += 1; // get, then set method
379             cpp_call(
380                 pThis, aVtableSlot,
381                 pReturnTypeRef,
382                 1, &aParam,
383                 pReturn, pArgs, ppException );
384 
385             typelib_typedescriptionreference_release( pReturnTypeRef );
386         }
387 
388         break;
389     }
390     case typelib_TypeClass_INTERFACE_METHOD:
391     {
392         VtableSlot aVtableSlot(
393             getVtableSlot(
394                 reinterpret_cast<
395                     typelib_InterfaceMethodTypeDescription const * >(
396                         pMemberDescr)));
397         switch (aVtableSlot.index)
398         {
399             // standard calls
400         case 1: // acquire uno interface
401             (*pUnoI->acquire)( pUnoI );
402             *ppException = 0;
403             break;
404         case 2: // release uno interface
405             (*pUnoI->release)( pUnoI );
406             *ppException = 0;
407             break;
408         case 0: // queryInterface() opt
409         {
410             typelib_TypeDescription * pTD = 0;
411             TYPELIB_DANGER_GET( &pTD, reinterpret_cast< Type * >( pArgs[0] )->getTypeLibType() );
412             if (pTD)
413             {
414                 uno_Interface * pInterface = 0;
415                 (*pThis->pBridge->getUnoEnv()->getRegisteredInterface)(
416                     pThis->pBridge->getUnoEnv(),
417                     (void **)&pInterface, pThis->oid.pData, (typelib_InterfaceTypeDescription *)pTD );
418 
419                 if (pInterface)
420                 {
421                     ::uno_any_construct(
422                         reinterpret_cast< uno_Any * >( pReturn ),
423                         &pInterface, pTD, 0 );
424                     (*pInterface->release)( pInterface );
425                     TYPELIB_DANGER_RELEASE( pTD );
426                     *ppException = 0;
427                     break;
428                 }
429                 TYPELIB_DANGER_RELEASE( pTD );
430             }
431         } // else perform queryInterface()
432         default:
433             // dependent dispatch
434             cpp_call(
435                 pThis, aVtableSlot,
436                 ((typelib_InterfaceMethodTypeDescription *)pMemberDescr)->pReturnTypeRef,
437                 ((typelib_InterfaceMethodTypeDescription *)pMemberDescr)->nParams,
438                 ((typelib_InterfaceMethodTypeDescription *)pMemberDescr)->pParams,
439                 pReturn, pArgs, ppException );
440         }
441         break;
442     }
443     default:
444     {
445         ::com::sun::star::uno::RuntimeException aExc(
446             OUString( RTL_CONSTASCII_USTRINGPARAM("illegal member type description!") ),
447             ::com::sun::star::uno::Reference< ::com::sun::star::uno::XInterface >() );
448 
449         Type const & rExcType = ::getCppuType( &aExc );
450         // binary identical null reference
451         ::uno_type_any_construct( *ppException, &aExc, rExcType.getTypeLibType(), 0 );
452     }
453     }
454 }
455 
456 } } }
457