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| /*namespace ot::spef { | |
| // Function: is_keyword | |
| bool is_keyword(const std::string& str) { | |
| return keywords.find(str) != keywords.end(); | |
| } | |
| // Function: to_string | |
| std::string to_string(ConnectionType t) { | |
| switch(t) { | |
| case ConnectionType::INTERNAL: | |
| return "*I"; | |
| break; | |
| case ConnectionType::EXTERNAL: | |
| return "*P"; | |
| break; | |
| default: | |
| assert(false); | |
| break; | |
| } | |
| } | |
| // Function: to_string | |
| std::string to_string(ConnectionDirection d) { | |
| switch(d) { | |
| case ConnectionDirection::INPUT: | |
| return "I"; | |
| break; | |
| case ConnectionDirection::OUTPUT: | |
| return "O"; | |
| break; | |
| case ConnectionDirection::INOUT: | |
| return "B"; | |
| break; | |
| default: | |
| assert(false); | |
| break; | |
| } | |
| } | |
| // Function: unmap | |
| // TODO | |
| void unmap(const std::unordered_map<std::string, std::string>& map, std::string& name) { | |
| if(map.empty()) { | |
| return; | |
| } | |
| } | |
| // ------------------------------------------------------------------------------------------------ | |
| // Constructor | |
| Connection::Connection(const std::string& n, ConnectionType t, ConnectionDirection d) : | |
| name {n}, | |
| type {t}, | |
| direction {d} { | |
| } | |
| // ------------------------------------------------------------------------------------------------ | |
| // Procedure: scale_capacitance | |
| void Net::scale_capacitance(float s) { | |
| lcap *= s; | |
| for(auto& c : caps) { | |
| std::get<1>(c) *= s; | |
| } | |
| } | |
| // Procedure: scale_resistance | |
| void Net::scale_resistance(float s) { | |
| for(auto& r : ress) { | |
| std::get<2>(r) *= s; | |
| } | |
| } | |
| // Operator << | |
| std::ostream& operator << (std::ostream& os, const Net& net) { | |
| os << "*D_NET " << net.name << ' ' << net.lcap << '\n'; | |
| os << "*CONN\n"; | |
| for(const auto& c : net.connections) { | |
| os << to_string(c.type) << ' ' | |
| << c.name << ' ' | |
| << to_string(c.direction) << '\n'; | |
| } | |
| auto cap_counter {0}; | |
| os << "*CAP\n"; | |
| for(const auto& [key, cap] : net.caps) { | |
| os << ++cap_counter << ' ' << key << ' ' << cap << '\n'; | |
| } | |
| auto res_counter {0}; | |
| os << "*RES\n"; | |
| for(const auto& [n1, n2, res] : net.ress) { | |
| os << ++res_counter << ' ' << n1 << ' ' << n2 << ' ' << res << '\n'; | |
| } | |
| os << "*END\n"; | |
| return os; | |
| } | |
| // ------------------------------------------------------------------------------------------------ | |
| // Operator << | |
| std::ostream& operator << (std::ostream& os, const Spef& spef) { | |
| // header | |
| // Name map section | |
| if(!spef.name_map.empty()) { | |
| os << "*NAME_MAP\n"; | |
| for(const auto& [k, v] : spef.name_map) { | |
| os << k << ' ' << v << '\n'; | |
| } | |
| os << '\n'; | |
| } | |
| // Internal section | |
| for(size_t i=0; i<spef.nets.size(); ++i) { | |
| if(i) os << '\n'; | |
| os << spef.nets[i]; | |
| } | |
| return os; | |
| } | |
| // Procedure: read_spef | |
| // *T_UNIT 1 PS | |
| // *C_UNIT 1 FF | |
| // *R_UNIT 1 KOHM | |
| // *L_UNIT 1 UH | |
| void Spef::read(const std::filesystem::path& path) { | |
| OT_LOGE_RIF( | |
| path.empty() || !std::filesystem::exists(path), | |
| "spef ", path, " doesn't exist" | |
| ); | |
| OT_LOGI("loading spef ", path, " ..."); | |
| auto tokens = tokenize(path); | |
| for(size_t i=0; i<tokens.size(); ++i) { | |
| // divider | |
| if(tokens[i] == "*DIVIDER") { | |
| if(i+1 >= tokens.size() || tokens[i+1].size() != 1) { | |
| OT_LOGF("syntax error in *DIVIDER section"); | |
| } | |
| divider = tokens[i+1][0]; | |
| i += 1; | |
| } | |
| // delimiter | |
| else if(tokens[i] == "*DELIMITER") { | |
| if(i+1 >= tokens.size() || tokens[i+1].size() != 1) { | |
| OT_LOGF("syntax error in *DELIMITER section"); | |
| } | |
| delimiter = tokens[i+1][0]; | |
| i += 1; | |
| } | |
| // time unit section | |
| else if(tokens[i] == "*T_UNIT") { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *T_UNIT section"); | |
| } | |
| time_unit = make_time_unit(tokens[i+1] + to_lower(tokens[i+2])); | |
| i += 2; | |
| } | |
| // capacitance unit | |
| else if(tokens[i] == "*C_UNIT") { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *C_UNIT section"); | |
| } | |
| capacitance_unit = make_capacitance_unit(tokens[i+1] + to_lower(tokens[i+2])); | |
| } | |
| // resistance unit | |
| else if(tokens[i] == "*R_UNIT") { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *R_UNIT section"); | |
| } | |
| resistance_unit = make_resistance_unit(tokens[i+1] + to_lower(tokens[i+2])); | |
| } | |
| // name mapping section | |
| else if(tokens[i] == "*NAME_MAP") { | |
| while(i+2 < tokens.size()) { | |
| if(is_keyword(tokens[i+1]) || is_keyword(tokens[i+2])) { | |
| break; | |
| } | |
| name_map.try_emplace(std::move(tokens[i+1]), std::move(tokens[i+2])); | |
| i += 2; | |
| } | |
| } | |
| // Net section | |
| else if(tokens[i] == "*D_NET") { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *D_NET section"); | |
| } | |
| Net net {std::move(tokens[i+1]), std::stof(tokens[i+2])}; | |
| i += 2; | |
| while(++i < tokens.size()) { | |
| // *CONN section | |
| // *P external_connection direction {conn_attr} | | |
| // *I internal_connection direction {conn_attr} | |
| if(tokens[i] == "*CONN") { | |
| auto j = i; | |
| while(++i < tokens.size()) { | |
| if(tokens[i] != "*P" && tokens[i] != "*I") { | |
| i = j; | |
| break; | |
| } | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *CONN section"); | |
| } | |
| auto t = (tokens[i] == "*P") ? ConnectionType::EXTERNAL : | |
| ConnectionType::INTERNAL ; | |
| if(auto& k = tokens[i+2]; k != "I" && k != "O" && k != "B") { | |
| OT_LOGF("syntax error in parsing direction ", k); | |
| } | |
| auto d = (tokens[i+2] == "I") ? ConnectionDirection::INPUT : | |
| ((tokens[i+2] == "O") ? ConnectionDirection::OUTPUT : | |
| ConnectionDirection::INOUT); | |
| net.connections.emplace_back(tokens[i+1], t, d); | |
| i += 2; | |
| // tyr to read attribute if any | |
| if(i+1 < tokens.size()) { | |
| while(tokens[i+1] == "*C" || tokens[i+1] == "*L" || tokens[i+1] == "*D") { | |
| // coordinate | |
| if(tokens[i+1] == "*C") { | |
| if(i+3 >= tokens.size()) { | |
| OT_LOGF("syntax error in parsing attribute *C"); | |
| } | |
| // TODO | |
| i += 3; | |
| } | |
| // load capacitance | |
| else if(tokens[i+1] == "*L") { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in parsing attribute *L"); | |
| } | |
| // TODO | |
| i += 2; | |
| } | |
| // driving cell | |
| else { | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in parsing attribute *D"); | |
| } | |
| // TODO | |
| i += 2; | |
| } | |
| } | |
| } | |
| j = i; | |
| } | |
| } | |
| // *CAP section. | |
| else if(tokens[i] == "*CAP") { | |
| auto j = i; | |
| while(++i < tokens.size()) { | |
| if(!::isdigit(tokens[i][0])) { | |
| i = j; | |
| break; | |
| } | |
| if(i+2 >= tokens.size()) { | |
| OT_LOGF("syntax error in *CAP section"); | |
| } | |
| net.caps.emplace_back(std::forward_as_tuple( | |
| std::move(tokens[i+1]), | |
| std::stof(tokens[i+2]) | |
| )); | |
| i += 2; | |
| j = i; | |
| } | |
| } | |
| // *RES section. | |
| else if(tokens[i] == "*RES") { | |
| auto j = i; | |
| while(++i < tokens.size()) { | |
| if(!::isdigit(tokens[i][0])) { | |
| i = j; | |
| break; | |
| } | |
| if(i+3 >= tokens.size()) { | |
| OT_LOGF("syntax error in *RES section"); | |
| } | |
| net.ress.emplace_back(std::forward_as_tuple( | |
| std::move(tokens[i+1]), | |
| std::move(tokens[i+2]), | |
| std::stof(tokens[i+3]) | |
| )); | |
| i += 3; | |
| j = i; | |
| } | |
| } | |
| // *END section. | |
| else if(tokens[i] == "*END") { | |
| nets.push_back(std::move(net)); | |
| break; | |
| } | |
| else { | |
| OT_LOGF("unexpected token ", tokens[i], " in *D_NET section"); | |
| } | |
| } | |
| } | |
| else { | |
| //OT_LOGW("unexpected token ", tokens[i]); | |
| } | |
| } | |
| } | |
| // Procedure: to_capacitance_unit | |
| void Spef::to_capacitance_unit(const CapacitanceUnit& unit) { | |
| float s = (capacitance_unit) ? divide_capacitance_unit(*capacitance_unit, unit) : 1.0f; | |
| if(capacitance_unit = unit; std::fabs(s - 1.0f) < 1e-6) { | |
| return; | |
| } | |
| for(auto& n : nets) { | |
| n.scale_capacitance(s); | |
| } | |
| } | |
| // Procedure: to_resistance_unit | |
| void Spef::to_resistance_unit(const ResistanceUnit& unit) { | |
| float s = (resistance_unit) ? divide_resistance_unit(*resistance_unit, unit) : 1.0f; | |
| if(resistance_unit = unit; std::fabs(s - 1.0f) < 1e-6) { | |
| return; | |
| } | |
| for(auto& n : nets) { | |
| n.scale_resistance(s); | |
| } | |
| } | |
| }; // end of namespace ot. ----------------------------------------------------------------------- */ | |