/* File: cweave_lhs_sdc.cpp Date and Time: Fri Jan 30 18:55:07 2015 */ #include "cweave_lhs_sdc.h" using namespace NS_yacco2_T_enum;// enumerate using namespace NS_yacco2_err_symbols;// error symbols using namespace NS_yacco2_k_symbols;// lrk using namespace NS_yacco2_terminals;// terminals using namespace NS_yacco2_characters;// rc using namespace yacco2;// yacco2 library using namespace NS_cweave_lhs_sdc;// grammar's ns // first set terminals fsm_rules_reuse_table_type::fsm_rules_reuse_table_type(){ no_rules_entries_ = 3; per_rule_s_table_[0] = new Per_rule_s_reuse_table(); per_rule_s_table_[1] = new Per_rule_s_reuse_table(); per_rule_s_table_[2] = new Per_rule_s_reuse_table(); } Ccweave_lhs_sdc:: Ccweave_lhs_sdc() :yacco2::CAbs_fsm ("cweave_lhs_sdc.lex" ,"1.0" ,"5 Jan. 2006" ,false ,"Write out cweave rule's lhs directives sentences" ,"Fri Jan 30 18:55:07 2015 " ,S1_Ccweave_lhs_sdc){ } Ccweave_lhs_sdc::~Ccweave_lhs_sdc(){ for(int x = 0;x < 3;++x){ ///delete fsm_rules_reuse_table.per_rule_s_table_[x]; } } bool Ccweave_lhs_sdc::failed(){ return false; } void Ccweave_lhs_sdc::op(){ } int Ccweave_lhs_sdc::rhs_to_rules_mapping_[10] = { -1 ,0 // subrule 1 for rule 1 ,1 // subrule 2 for rule 2 ,1 // subrule 3 for rule 2 ,2 // subrule 4 for rule 3 ,2 // subrule 5 for rule 3 ,2 // subrule 6 for rule 3 ,2 // subrule 7 for rule 3 ,2 // subrule 8 for rule 3 ,2 // subrule 9 for rule 3 }; void Ccweave_lhs_sdc::initialize (std::ofstream* Cweave_file ,yacco2::KCHARP Rule_name){ cweave_file_ = Cweave_file; rule_name_ = Rule_name; } void Ccweave_lhs_sdc::wrt_directive(const char* Directive,T_syntax_code* Sdc){ char big_buf_[BIG_BUFFER_32K]; char xa[Max_cweb_item_size]; KCHARP cweave_sentence = "@< %s %s directive@>=\n"; output_sdcode_title(Directive); if(Sdc == 0){ XLATE_SYMBOLS_FOR_cweave (rule_name_ ,xa); sprintf(big_buf_,cweave_sentence,xa,Directive); (*cweave_file_) << "/"; (*cweave_file_) << "/ no sdcode" << endl; return; } if(Sdc->cweb_marker() != 0){ WRT_CWEB_MARKER(cweave_file_,Sdc->cweb_marker()); } XLATE_SYMBOLS_FOR_cweave (rule_name_ ,xa); sprintf(big_buf_,cweave_sentence,xa,Directive); (*cweave_file_) << big_buf_; string xlate; int len = Sdc->syntax_code()->length(); string& sdc=*Sdc->syntax_code(); // prescan @ due to cweave reqmts for(int x=0;x')){ xlate += nc; continue; }else{ xlate += "@@"; continue; } }else{ xlate += nc; continue; } } (*cweave_file_) << xlate.c_str() << endl; } void Ccweave_lhs_sdc::output_sdcode_title(const char* Directive){ char big_buf_[BIG_BUFFER_32K]; char xa[Max_cweb_item_size]; XLATE_SYMBOLS_FOR_cweave (rule_name_ ,xa); KCHARP cweave_sentence = "@*3 %s %s directive.\n"; sprintf(big_buf_ ,cweave_sentence ,xa ,Directive ); (*cweave_file_) << big_buf_; } Rweave_sdc::Rweave_sdc(yacco2::Parser* P) :CAbs_lr1_sym ("Rweave_sdc",0,Ccweave_lhs_sdc::R_Rweave_sdc_,P,false,false){ } Rdirectives::Rdirectives(yacco2::Parser* P) :CAbs_lr1_sym ("Rdirectives",0,Ccweave_lhs_sdc::R_Rdirectives_,P,false,false){ } Rdirective::Rdirective(yacco2::Parser* P) :CAbs_lr1_sym ("Rdirective",0,Ccweave_lhs_sdc::R_Rdirective_,P,false,false){ } void Rdirective::sr1(){ struct SF{ T_arbitrator_code* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; string include_war_code; include_war_code.append("#include \"war_begin_code.h\"\n"); include_war_code.append(sf->p1__->syntax_code()->syntax_code()->c_str()); include_war_code.append("#include \"war_end_code.h\"\n"); sf->p1__->syntax_code()->syntax_code()->clear(); sf->p1__->syntax_code()->syntax_code()->append(include_war_code.c_str()); KCHARP sdc = "arbitrator-code"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); } void Rdirective::sr2(){ struct SF{ T_user_declaration* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; KCHARP sdc = "user-declaration"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); } void Rdirective::sr3(){ struct SF{ T_user_implementation* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; KCHARP sdc = "user-implementation"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); } void Rdirective::sr4(){ struct SF{ T_constructor* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; KCHARP sdc = "constructor"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); } void Rdirective::sr5(){ struct SF{ T_destructor* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; KCHARP sdc = "destructor"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); } void Rdirective::sr6(){ struct SF{ T_op* p1__; State* s1__; bool abort1__; Rule_s_reuse_entry* rule_s_reuse_entry1__; }; SF* sf = (SF*)rule_info__.parser__->parse_stack__.sf_by_top(1); Ccweave_lhs_sdc* fsm = (Ccweave_lhs_sdc*)rule_info__.parser__->fsm_tbl__; KCHARP sdc = "op"; fsm->wrt_directive(sdc,sf->p1__->syntax_code()); }