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Merge from BR_QT4 17Feb09
[tools/hxx2salome.git] / scripts / parse3.awk
1 # This awk program contains the type mapping tables - and the treatments
2 # --
3 # Copyright (C) CEA, EDF
4 # Author : Nicolas Crouzet (CEA)
5 # --
6 # for code generation
7 #
8 BEGIN { 
9 #
10 # file name generation
11   idl_file="code_idl"
12   hxx_file="code_hxx"
13   cxx_file="code_cxx"
14   class_i=class_name"_i"
15   print "\t// generated part" > idl_file
16   printf "    // generated part\n" > hxx_file
17   printf "//\n// generated part\n//\n" > cxx_file
18   print "Functions parsing (for debug)" > "parse_result"
19 #
20 #
21 # type mapping from c++ component to idl
22 #
23   idl_arg_type["int"]="in long"
24   idl_arg_type["double"]="in double"
25   idl_arg_type["float"]="in float"
26   idl_arg_type["long"]="in long"
27   idl_arg_type["short"]="in short"
28   idl_arg_type["unsigned"]="in unsigned long"
29   idl_arg_type["const char*"]="in string"
30   idl_arg_type["const std::string&"]="in string"
31   idl_arg_type["int&"]="out long"
32   idl_arg_type["double&"]="out double"
33   idl_arg_type["float&"]="out float"
34   idl_arg_type["long&"]="out long"
35   idl_arg_type["short&"]="out short"
36   idl_arg_type["unsigned&"]="out unsigned long"
37   idl_arg_type["std::string&"]="out string"
38   idl_arg_type["const MEDMEM::MESH&"]="in SALOME_MED::MESH"
39   idl_arg_type["const MEDMEM::MESH*"]="in SALOME_MED::MESH"
40   idl_arg_type["const MEDMEM::SUPPORT&"]="in SALOME_MED::SUPPORT"
41   idl_arg_type["const MEDMEM::SUPPORT*"]="in SALOME_MED::SUPPORT"
42   idl_arg_type["const MEDMEM::FIELD<double>*"]="in SALOME_MED::FIELDDOUBLE"
43   idl_arg_type["const MEDMEM::FIELD<double>&"]="in SALOME_MED::FIELDDOUBLE"
44   idl_arg_type["MEDMEM::FIELD<double>*&"]="out SALOME_MED::FIELDDOUBLE"
45   idl_arg_type["const std::vector<double>&"]="in SALOME::SenderDouble"
46   idl_arg_type["const std::vector<std::vector<double> >&"]="in SALOME::Matrix"
47   idl_arg_type["std::vector<double>*&"]="out SALOME::SenderDouble"
48   idl_arg_type["const MEDMEM::FIELD<int>*"]="in SALOME_MED::FIELDINT"
49   idl_arg_type["const MEDMEM::FIELD<int>&"]="in SALOME_MED::FIELDINT"
50   idl_arg_type["MEDMEM::FIELD<int>*&"]="out SALOME_MED::FIELDINT"
51   idl_arg_type["const std::vector<int>&"]="in SALOME::SenderInt"
52   idl_arg_type["std::vector<int>*&"]="out SALOME::SenderInt"
53 #
54 #
55 # mapping for returned types
56 #
57   idl_rtn_type["void"]="void"
58   idl_rtn_type["int"]="long"
59   idl_rtn_type["double"]="double"
60   idl_rtn_type["float"]="float"
61   idl_rtn_type["long"]="long"
62   idl_rtn_type["short"]="short"
63   idl_rtn_type["unsigned"]="unsigned long"
64   idl_rtn_type["const char*"]="string"
65   idl_rtn_type["char*"]="string"
66   idl_rtn_type["std::string"]="string"
67   idl_rtn_type["const MEDMEM::MESH&"]="SALOME_MED::MESH"
68   idl_rtn_type["MEDMEM::MESH&"]="SALOME_MED::MESH"
69   idl_rtn_type["MEDMEM::MESH*"]="SALOME_MED::MESH"
70   idl_rtn_type["const MEDMEM::MESH*"]="SALOME_MED::MESH"
71   idl_rtn_type["MEDMEM::SUPPORT*"]="SALOME_MED::SUPPORT"
72   idl_rtn_type["const MEDMEM::FIELD<double>*"]="SALOME_MED::FIELDDOUBLE"
73   idl_rtn_type["MEDMEM::FIELD<double>*"]="SALOME_MED::FIELDDOUBLE"
74   idl_rtn_type["MEDMEM::FIELD<double>&"]="SALOME_MED::FIELDDOUBLE"
75   idl_rtn_type["const MEDMEM::FIELD<double>&"]="SALOME_MED::FIELDDOUBLE"
76   idl_rtn_type["std::vector<double>*"]="SALOME::SenderDouble"
77   idl_rtn_type["std::vector<std::vector<double> >*"]="SALOME::Matrix"
78   idl_rtn_type["const MEDMEM::FIELD<int>*"]="SALOME_MED::FIELDINT"
79   idl_rtn_type["MEDMEM::FIELD<int>*"]="SALOME_MED::FIELDINT"
80   idl_rtn_type["MEDMEM::FIELD<int>&"]="SALOME_MED::FIELDINT"
81   idl_rtn_type["const MEDMEM::FIELD<int>&"]="SALOME_MED::FIELDINT"
82   idl_rtn_type["std::vector<int>*"]="SALOME::SenderInt"
83 #
84 #
85 # Corba mapping table (for argument's types and returned types)
86 #
87   idl_impl_hxx["in long"]="CORBA::Long"
88   idl_impl_hxx["in double"]="CORBA::Double"
89   idl_impl_hxx["in float"]="CORBA::Float"
90   idl_impl_hxx["in short"]="CORBA::Short"
91   idl_impl_hxx["in unsigned long"]="CORBA::ULong"
92   idl_impl_hxx["in string"]="const char*"
93   idl_impl_hxx["out long"]="CORBA::Long_out"
94   idl_impl_hxx["out double"]="CORBA::Double_out"
95   idl_impl_hxx["out float"]="CORBA::Float_out"
96   idl_impl_hxx["out short"]="CORBA::Short_out"
97   idl_impl_hxx["out unsigned long"]="CORBA::ULong_out"
98   idl_impl_hxx["out string"]="CORBA::String_out"
99   idl_impl_hxx["in SALOME_MED::MESH"]="SALOME_MED::MESH_ptr"
100   idl_impl_hxx["in SALOME_MED::SUPPORT"]="SALOME_MED::SUPPORT_ptr"
101   idl_impl_hxx["in SALOME_MED::FIELDDOUBLE"]="SALOME_MED::FIELDDOUBLE_ptr"
102   idl_impl_hxx["out SALOME_MED::FIELDDOUBLE"]="SALOME_MED::FIELDDOUBLE_out"
103   idl_impl_hxx["in SALOME::SenderDouble"]="SALOME::SenderDouble_ptr"
104   idl_impl_hxx["out SALOME::SenderDouble"]="SALOME::SenderDouble_out"
105   idl_impl_hxx["in SALOME::Matrix"]="SALOME::Matrix_ptr"
106   idl_impl_hxx["in SALOME_MED::FIELDINT"]="SALOME_MED::FIELDINT_ptr"
107   idl_impl_hxx["out SALOME_MED::FIELDINT"]="SALOME_MED::FIELDINT_out"
108   idl_impl_hxx["in SALOME::SenderInt"]="SALOME::SenderInt_ptr"
109   idl_impl_hxx["out SALOME::SenderInt"]="SALOME::SenderInt_out"
110   idl_impl_hxx["void"]="void"
111   idl_impl_hxx["long"]="CORBA::Long"
112   idl_impl_hxx["double"]="CORBA::Double"
113   idl_impl_hxx["unsigned long"]="CORBA::ULong"
114   idl_impl_hxx["string"]="char*"
115   idl_impl_hxx["SALOME_MED::MESH"]="SALOME_MED::MESH_ptr"
116   idl_impl_hxx["SALOME_MED::SUPPORT"]="SALOME_MED::SUPPORT_ptr"
117   idl_impl_hxx["SALOME_MED::FIELDDOUBLE"]="SALOME_MED::FIELDDOUBLE_ptr"
118   idl_impl_hxx["SALOME::SenderDouble"]="SALOME::SenderDouble_ptr"
119   idl_impl_hxx["SALOME::Matrix"]="SALOME::Matrix_ptr"
120   idl_impl_hxx["SALOME_MED::FIELDINT"]="SALOME_MED::FIELDINT_ptr"
121   idl_impl_hxx["SALOME::SenderInt"]="SALOME::SenderInt_ptr"
122 #
123 #
124 # table for c++ code generation : argument's processing
125 #
126   cpp_impl_a["int"]="\tint _%s(%s);\n"
127   cpp_impl_a["double"]="\tdouble _%s(%s);\n"
128   cpp_impl_a["float"]="\tfloat _%s(%s);\n"
129   cpp_impl_a["long"]="\tlong _%s(%s);\n"
130   cpp_impl_a["short"]="\tshort _%s(%s);\n"
131   cpp_impl_a["unsigned"]="\tunsigned _%s(%s);\n"
132   cpp_impl_a["const char*"]="\tconst char* _%s(%s);\n"
133   cpp_impl_a["const std::string&"]="\tconst std::string _%s(%s);\n"
134   cpp_impl_a["int&"]="\tint _%s;\n"
135   cpp_impl_a["double&"]="\tdouble _%s;\n"
136   cpp_impl_a["float&"]="\tfloat _%s;\n"
137   cpp_impl_a["long&"]="\tlong _%s;\n"
138   cpp_impl_a["short&"]="\tshort _%s;\n"
139   cpp_impl_a["unsigned&"]="\tunsigned _%s;\n"
140   cpp_impl_a["std::string&"]="std::string _%s;\n"
141   cpp_impl_a["const MEDMEM::MESH&"]="\tMEDMEM::MESHClient* _%s = new MEDMEM::MESHClient(%s);\n" # MESHClient cannot be created on the stack (private constructor), so we create it on the heap and dereference it later (in treatment 4)
142   cpp_impl_a["const MEDMEM::MESH*"]="\tMEDMEM::MESHClient* _%s = new MEDMEM::MESHClient(%s);\n"
143   cpp_impl_a["const MEDMEM::SUPPORT&"]="\tMEDMEM::SUPPORTClient* _%s = new MEDMEM::SUPPORTClient(%s);\n" # SUPPORTClient cannot be created on the stack (protected destructor), so we create it on the heap and dereference it later (in treatment 4)
144   cpp_impl_a["const MEDMEM::SUPPORT*"]="\tMEDMEM::SUPPORTClient* _%s = new MEDMEM::SUPPORTClient(%s);\n"
145   cpp_impl_a["MEDMEM::FIELD<double>*&"]="\tMEDMEM::FIELD<double>* _%s;\n"
146   cpp_impl_a["const MEDMEM::FIELD<double>*"]="\tstd::auto_ptr<MEDMEM::FIELD<double> > _%s ( new MEDMEM::FIELDClient<double,MEDMEM::FullInterlace>(%s) );\n"
147   cpp_impl_a["const MEDMEM::FIELD<double>&"]="\tMEDMEM::FIELDClient<double,MEDMEM::FullInterlace> _%s(%s);\n"
148   cpp_impl_a["const std::vector<double>&"]="\tlong _%s_size;\n\tdouble *_%s_value = ReceiverFactory::getValue(%s,_%s_size);\n"\
149              "\tstd::vector<double> _%s(_%s_value,_%s_value+_%s_size);\n\tdelete [] _%s_value;"
150   cpp_impl_a["std::vector<double>*&"]="\tstd::vector<double>* _%s;\n"
151   cpp_impl_a["const std::vector<std::vector<double> >&"]="\tMatrixClient _%s_client;\n\tint _%s_nbRow;\n\tint _%s_nbCol;\n"\
152              "\tdouble* _%s_tab = _%s_client.getValue(%s,_%s_nbCol,_%s_nbRow);\n\tstd::vector<std::vector<double> > _%s(_%s_nbRow);\n"\
153              "\tfor (int i=0; i!=_%s_nbRow; ++i)\n\t{\n\t    _%s[i].resize(_%s_nbCol);\n"\
154              "\t    std::copy(_%s_tab+_%s_nbCol*i,_%s_tab+_%s_nbCol*(i+1), _%s[i].begin());\n\t}\n\tdelete [] _%s_tab;\n"
155   cpp_impl_a["MEDMEM::FIELD<int>*&"]="\tMEDMEM::FIELD<int>* _%s;\n"
156   cpp_impl_a["const MEDMEM::FIELD<int>*"]="\tstd::auto_ptr<MEDMEM::FIELD<int> > _%s ( new MEDMEM::FIELDClient<int>(%s) );\n"
157   cpp_impl_a["const MEDMEM::FIELD<int>&"]="\tMEDMEM::FIELDClient<int> _%s(%s);\n"
158   cpp_impl_a["const std::vector<int>&"]="\tlong _%s_size;\n\tint *_%s_value = ReceiverFactory::getValue(%s,_%s_size);\n"\
159              "\tstd::vector<int> _%s(_%s_value,_%s_value+_%s_size);\n\tdelete [] _%s_value;"
160   cpp_impl_a["std::vector<int>*&"]="\tstd::vector<int>* _%s;\n"
161
162 #
163 #
164 # table for c++ code generation : returned value processing
165 #
166   cpp_impl_b["void"]=""
167   cpp_impl_b["int"]="\tCORBA::Long _rtn_ior(_rtn_cpp);\n"
168   cpp_impl_b["double"]="\tCORBA::Double _rtn_ior(_rtn_cpp);\n"
169   cpp_impl_b["float"]="\tCORBA::Float _rtn_ior(_rtn_cpp);\n"
170   cpp_impl_b["long"]="\tCORBA::Long _rtn_ior(_rtn_cpp);\n"
171   cpp_impl_b["short"]="\tCORBA::Short _rtn_ior(_rtn_cpp);\n"
172   cpp_impl_b["unsigned"]="\tCORBA::ULong _rtn_ior(_rtn_cpp);\n"
173   cpp_impl_b["const char*"]="\tchar* _rtn_ior = CORBA::string_dup(_rtn_cpp);\n"
174   cpp_impl_b["char*"]="\tchar* _rtn_ior(_rtn_cpp);\n"
175   cpp_impl_b["std::string"]="\tchar* _rtn_ior=CORBA::string_dup(_rtn_cpp.c_str());\n"
176              "\tstd::copy(_rtn_cpp.begin(),_rtn_cpp.end(),_rtn_ior);\n"    
177   cpp_impl_b["const MEDMEM::MESH&"]=\
178              "\tMEDMEM::MESH_i * _rtn_mesh_i = new MEDMEM::MESH_i(const_cast<MEDMEM::MESH*>(&_rtn_cpp));\n"\
179              "\tSALOME_MED::MESH_ptr _rtn_ior = _rtn_mesh_i->_this();\n"
180   cpp_impl_b["MEDMEM::MESH&"]=\
181              "\tMEDMEM::MESH_i * _rtn_mesh_i = new MEDMEM::MESH_i(&_rtn_cpp);\n"\
182              "\tSALOME_MED::MESH_ptr _rtn_ior = _rtn_mesh_i->_this();\n"
183   cpp_impl_b["MEDMEM::MESH*"]=\
184              "\tMEDMEM::MESH_i * _rtn_mesh_i = new MEDMEM::MESH_i(_rtn_cpp);\n"\
185              "\tSALOME_MED::MESH_ptr _rtn_ior = _rtn_mesh_i->_this();\n"
186   cpp_impl_b["const MEDMEM::MESH*"]=\
187              "\tMEDMEM::MESH_i * _rtn_mesh_i = new MEDMEM::MESH_i(const_cast<MEDMEM::MESH*>(_rtn_cpp));\n"\
188              "\tSALOME_MED::MESH_ptr _rtn_ior = _rtn_mesh_i->_this();\n"
189   cpp_impl_b["MEDMEM::SUPPORT*"]=\
190              "\tMEDMEM::SUPPORT_i * _rtn_support_i = new MEDMEM::SUPPORT_i(_rtn_cpp);\n"\
191              "\tSALOME_MED::SUPPORT_ptr _rtn_ior = _rtn_support_i->_this();\n"
192   cpp_impl_b["const MEDMEM::FIELD<double>*"]=\
193              "\tMEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace> * _rtn_field_i = new MEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace>(const_cast<MEDMEM::FIELD<double>*>(_rtn_cpp),false);\n"\
194              "\tSALOME_MED::FIELDDOUBLE_ptr _rtn_ior = _rtn_field_i->_this();\n"
195   cpp_impl_b["MEDMEM::FIELD<double>*"]=\
196              "\tMEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace> * _rtn_field_i = new MEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace>(_rtn_cpp,true);\n"\
197              "\tSALOME_MED::FIELDDOUBLE_ptr _rtn_ior = _rtn_field_i->_this();\n"
198   cpp_impl_b["MEDMEM::FIELD<double>&"]=\
199              "\tMEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace> * _rtn_field_i = new MEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace>(&_rtn_cpp,false);\n"\
200              "\tSALOME_MED::FIELDDOUBLE_ptr _rtn_ior = _rtn_field_i->_this();\n"
201   cpp_impl_b["const MEDMEM::FIELD<double>&"]=\
202              "\tMEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace> * _rtn_field_i = new MEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace>(const_cast<MEDMEM::FIELD<double>*>(&_rtn_cpp),false);\n"\
203              "\tSALOME_MED::FIELDDOUBLE_ptr _rtn_ior = _rtn_field_i->_this();\n"
204   cpp_impl_b["std::vector<double>*"]=\
205              "\tSALOME::SenderDouble_ptr _rtn_ior = SenderFactory::buildSender(*this,&(*_rtn_cpp)[0],(*_rtn_cpp).size(),true);\n"
206   cpp_impl_b["std::vector<std::vector<double> >*"]=\
207              "\tint _rtn_cpp_i=(*_rtn_cpp).size();\n\tint _rtn_cpp_j=(*_rtn_cpp)[0].size();\n"\
208              "\tdouble* _rtn_tab = new double[_rtn_cpp_i*_rtn_cpp_j];\n"\
209              "\tfor (int i=0; i!=_rtn_cpp_i; ++i)\n\t    std::copy((*_rtn_cpp)[i].begin(),(*_rtn_cpp)[i].end(),_rtn_tab+i*_rtn_cpp_j);\n"\
210              "\tSALOME_Matrix_i* _rtn_matrix_i = new SALOME_Matrix_i(*this,_rtn_tab,_rtn_cpp_i,_rtn_cpp_j,true);\n"\
211              "\tSALOME::Matrix_ptr _rtn_ior = _rtn_matrix_i->_this();\n\tdelete _rtn_cpp;\n"
212   cpp_impl_b["const MEDMEM::FIELD<int>*"]=\
213              "\tMEDMEM::FIELDINT_i * _rtn_field_i = new MEDMEM::FIELDINT_i(const_cast<MEDMEM::FIELD<int>*>(_rtn_cpp),false);\n"\
214              "\tSALOME_MED::FIELDINT_ptr _rtn_ior = _rtn_field_i->_this();\n"
215   cpp_impl_b["MEDMEM::FIELD<int>*"]=\
216              "\tMEDMEM::FIELDINT_i * _rtn_field_i = new MEDMEM::FIELDINT_i(_rtn_cpp,true);\n"\
217              "\tSALOME_MED::FIELDINT_ptr _rtn_ior = _rtn_field_i->_this();\n"
218   cpp_impl_b["MEDMEM::FIELD<int>&"]=\
219              "\tMEDMEM::FIELDINT_i * _rtn_field_i = new MEDMEM::FIELDINT_i(&_rtn_cpp,false);\n"\
220              "\tSALOME_MED::FIELDINT_ptr _rtn_ior = _rtn_field_i->_this();\n"
221   cpp_impl_b["const MEDMEM::FIELD<int>&"]=\
222              "\tMEDMEM::FIELDINT_i * _rtn_field_i = new MEDMEM::FIELDINT_i(const_cast<MEDMEM::FIELD<int>*>(&_rtn_cpp),false);\n"\
223              "\tSALOME_MED::FIELDINT_ptr _rtn_ior = _rtn_field_i->_this();\n"
224   cpp_impl_b["std::vector<int>*"]=\
225              "\tSALOME::SenderInt_ptr _rtn_ior = SenderFactory::buildSender(*this,&(*_rtn_cpp)[0],(*_rtn_cpp).size(),true);\n"
226
227 #
228 #
229 # table for c++ code generation : out parameters processing and removeRef for reference counted objects
230 #
231   cpp_impl_c["MEDMEM::FIELD<double>*&"]=\
232              "\tMEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace> * %s_ior = new MEDMEM::FIELDTEMPLATE_I<double,MEDMEM::FullInterlace>(_%s, true);\n"\
233              "\t%s = %s_ior->_this();\n"
234   cpp_impl_c["MEDMEM::FIELD<int>*&"]=\
235              "\tMEDMEM::FIELDINT_i * %s_ior = new MEDMEM::FIELDINT_i(_%s, true);\n"\
236              "\t%s = %s_ior->_this();\n"
237   cpp_impl_c["std::vector<double>*&"]=\
238              "\t%s = SenderFactory::buildSender(*this,&(*_%s)[0],(*_%s).size(),true);\n"
239   cpp_impl_c["std::vector<int>*&"]=\
240              "\t%s = SenderFactory::buildSender(*this,&(*_%s)[0],(*_%s).size(),true);\n"
241   cpp_impl_c["std::string&"]="\t%s = CORBA::string_dup(_%s.c_str());\n"
242   cpp_impl_c["int&"]="\t%s = _%s;\n"
243   cpp_impl_c["double&"]="\t%s = _%s;\n"
244   cpp_impl_c["float&"]="\t%s = _%s;\n"
245   cpp_impl_c["long&"]="\t%s = _%s;\n"
246   cpp_impl_c["short&"]="\t%s = _%s;\n"
247   cpp_impl_c["unsigned&"]="\t%s = _%s;\n"
248   cpp_impl_c["const MEDMEM::MESH&"]="\t_%s->removeReference();\n"
249   cpp_impl_c["const MEDMEM::MESH*"]="\t_%s->removeReference();\n"
250   cpp_impl_c["const MEDMEM::SUPPORT&"]="\t_%s->removeReference();\n"
251   cpp_impl_c["const MEDMEM::SUPPORT*"]="\t_%s->removeReference();\n"
252 #
253 #
254 # record sep is ");\n" whith blanks all around, and optional "(" at the beginning
255   RS="[(]?[ \t]*[)][ \t]*(const)?[ \t]*[;][ \t]*[\n]"  
256   FS="[ \t]*[(,][ \t]*"  # field sep is either "(" or "," surrounded by blanks 
257 }
258
259 # --------------------- treatment 1 ----------------------------------
260 #
261 #  extract from fields types, function name, and argument's names
262 #
263 {
264   print "Function : ",$0 >> "parse_result"  # print for debug
265   for (i=1; i<=NF; i++) {
266       print "\t-> ",i," : ",$i >> "parse_result"
267   }
268   ok1=0;ok=1
269   # check if returned type ($1) is one of the accepted types (idl_rtn_type)
270   for (cpptype in idl_rtn_type) {
271     if ( substr($1,1,length(cpptype)) == cpptype ) {
272       # if compatible, store returned type and function name
273       type[1]=cpptype
274       name[1]=substr($1,length(cpptype)+1)
275       sub("^[ \t]*","",name[1]) # get rid of leading blanks
276       ok1=1
277       break
278     }
279   }
280   ok*=ok1
281   # for each argument ($i), check if it is compatible (belongs to idl_arg_type)
282   for (i=2; i<=NF; i++) {
283     ok2=0
284     split($i,tab,"=") # get rid of default value
285     item=tab[1]
286     for (cpptype in idl_arg_type) {
287        if ( substr(item,1,length(cpptype)) == cpptype ) {
288           # if compatible, store argument type and name
289           type[i]=cpptype
290           name[i]=substr(item,length(cpptype)+1)
291           sub("^[ \t]*","",name[i]) # get rid of leading blanks
292           if ( length(name[i]) == 0 ) # automatic name if argument's name wasn't precised
293              name[i]=sprintf("_arg%d",i-1)
294           ok2=1
295           break
296        }
297     }
298     ok*=ok2 # ok=0 if one of the type is not compatible
299   }
300
301   # print compatibility 
302   if ( $0 !~ class_name ) { # constructor are not considered, but we don't print it
303       if ( ok == 0){ # if one of the c++ type is not compatible
304           printf "     [KO]     :  %s",$0
305       }
306       else
307           printf "     [OK]     :  %s",$0
308         
309       if ( $0 !~ /\(/  ) {
310           printf "(" # if there is no argument, parenthesis was suppressed, so we add it for printing
311       }
312       printf ");\n"
313   }    
314   if ( ok == 0) # pass to the next function if one of the c++ type is not compatible
315       next
316 }
317 #
318 # --------------------- treatment 2 ----------------------------------
319 #
320 #  generate the Corba interface (idl file)
321 #
322
323   printf "\t%s %s(", idl_rtn_type[type[1]],name[1] >> idl_file  # return type and name of function
324   if ( NF >= 2 ){  # if there is arguments, print them
325     for (i=2; i<=NF-1; i++)
326       printf "%s %s,",idl_arg_type[type[i]],name[i] >> idl_file
327     printf "%s %s", idl_arg_type[type[NF]],name[NF] >> idl_file
328   }
329   printf ");\n" >> idl_file
330 }  
331 #
332 # --------------------- treatment 3 ----------------------------------
333 #
334 #  generate the C++ implementation of component (hxx file)
335 #
336
337   printf "    %s %s(",idl_impl_hxx[idl_rtn_type[type[1]]],name[1] >> hxx_file
338   if ( NF >= 2 ){  # if there is arguments, print them
339       for (i=2; i<=NF-1; i++)
340           printf "%s %s,",idl_impl_hxx[idl_arg_type[type[i]]],name[i] >> hxx_file
341       printf "%s %s", idl_impl_hxx[idl_arg_type[type[NF]]],name[NF] >> hxx_file
342   }
343   printf ");\n" >> hxx_file
344 }
345 #
346 # --------------------- treatment 4 ----------------------------------
347 #
348 #  generate the C++ implementation of component (cxx file)
349 #
350 {
351   # a) generate the function declaration + macro declarations
352   func_name=class_name"_i::"name[1]
353   printf "%s %s(",idl_impl_hxx[idl_rtn_type[type[1]]],func_name >> cxx_file
354   if ( NF >= 2 ){  # if there is arguments, print them
355       for (i=2; i<=NF-1; i++)
356           printf "%s %s,",idl_impl_hxx[idl_arg_type[type[i]]],name[i] >> cxx_file
357       printf "%s %s", idl_impl_hxx[idl_arg_type[type[NF]]],name[NF] >> cxx_file
358   }
359   printf ")\n{\n\tbeginService(\"%s\");\n\tBEGIN_OF(\"%s\");\n",func_name,func_name >> cxx_file
360
361   # b) generate the argument processing part
362   if ( NF >= 2 ){
363       printf "//\tArguments processing\n" >> cxx_file
364       for (i=2; i<=NF; i++)
365           printf cpp_impl_a[type[i]],name[i],name[i],name[i],name[i],name[i],name[i],name[i],name[i],name[i],\
366                            name[i],name[i],name[i],name[i],name[i],name[i],name[i],name[i],name[i],name[i] >> cxx_file
367   }
368
369   # c) generate the call to the c++ component
370   if ( type[1] == "void" ) # if return type is void, the call syntax is different.
371       printf "//\tCall cpp component\n\tcppCompo_->%s(",name[1] >> cxx_file
372   else
373       printf "//\tCall cpp component\n\t%s _rtn_cpp = cppCompo_->%s(",type[1],name[1] >> cxx_file
374   if ( NF >= 2 ){  # if there is arguments, print them
375       for (i=2; i<=NF; i++) {
376           # special treatment for some arguments
377           post=""
378           pre=""
379           if ( cpp_impl_a[type[i]] ~ "auto_ptr" )
380              post=".get()" # for auto_ptr argument, retrieve the raw pointer behind
381           if ( type[i] == "const MEDMEM::MESH&" || type[i] == "const MEDMEM::SUPPORT&" )
382              pre="*"  # we cannot create MESHClient on the stack (private constructor), so we create it on the heap and dereference it
383           if ( i < NF )
384              post=post"," # separator between arguments
385           printf " %s_%s%s",pre,name[i],post >> cxx_file
386       }
387   }
388
389   # d) generate the post_processing of returned and out parameters
390   printf ");\n//\tPost-processing & return\n" >> cxx_file
391   for (i=2; i<=NF; i++)
392       printf cpp_impl_c[type[i]],name[i],name[i],name[i],name[i] >> cxx_file  # process for out parameters
393   printf cpp_impl_b[type[1]] >> cxx_file  # process for returned value
394   printf "\tendService(\"%s\");\n\tEND_OF(\"%s\");\n",func_name,func_name >> cxx_file
395   if ( type[1] != "void" )
396       printf "\treturn _rtn_ior;\n" >> cxx_file
397   printf "}\n\n" >> cxx_file
398 }
399 #
400 #
401 END {
402 # CNC peut ĂȘtre mis dans le template directement printf "\nprivate:\n    std::auto_ptr<%s> cppImpl_;\n",class_name >> hxx_file
403 }