// SPDX-License-Identifier: BSD-3-Clause // Copyright (c) 2019-2025, The OpenROAD Authors %{ #include "odb/db.h" #include "odb/defout.h" #include "sta/Report.hh" #include "sta/Network.hh" #include "db_sta/dbSta.hh" #include "db_sta/dbNetwork.hh" #include "db_sta/dbReadVerilog.hh" #include "utl/Logger.h" #include "ord/OpenRoad.hh" #include "odb/util.h" #include #include #if TCL_MAJOR_VERSION < 9 && !defined(Tcl_Size) typedef int Tcl_Size; #endif //////////////////////////////////////////////////////////////// // // C++ helper functions used by the interface functions. // These are not visible in the TCL API. // //////////////////////////////////////////////////////////////// namespace ord { using sta::dbSta; using sta::dbNetwork; using rsz::Resizer; using odb::dbDatabase; OpenRoad * getOpenRoad() { return OpenRoad::openRoad(); } utl::Logger * getLogger() { return OpenRoad::openRoad()->getLogger(); } dbDatabase * getDb() { return getOpenRoad()->getDb(); } // Copied from StaTcl.i because of ordering issues. class CmdErrorNetworkNotLinked : public sta::Exception { public: virtual const char *what() const throw() { return "Error: no network has been linked."; } }; void ensureLinked() { OpenRoad *openroad = getOpenRoad(); dbNetwork *network = openroad->getDbNetwork(); if (!network->isLinked()) throw CmdErrorNetworkNotLinked(); } dbNetwork * getDbNetwork() { OpenRoad *openroad = getOpenRoad(); return openroad->getDbNetwork(); } dbSta * getSta() { return getOpenRoad()->getSta(); } Resizer * getResizer() { OpenRoad *openroad = getOpenRoad(); return openroad->getResizer(); } cgt::ClockGating * getClockGating() { OpenRoad *openroad = getOpenRoad(); return openroad->getClockGating(); } est::EstimateParasitics * getEstimateParasitics() { OpenRoad *openroad = getOpenRoad(); return openroad->getEstimateParasitics(); } rmp::Restructure * getRestructure() { OpenRoad *openroad = getOpenRoad(); return openroad->getRestructure(); } cts::TritonCTS * getTritonCts() { OpenRoad *openroad = getOpenRoad(); return openroad->getTritonCts(); } mpl::MacroPlacer * getMacroPlacer() { OpenRoad *openroad = getOpenRoad(); return openroad->getMacroPlacer(); } gpl::Replace* getReplace() { OpenRoad *openroad = getOpenRoad(); return openroad->getReplace(); } rcx::Ext * getOpenRCX() { OpenRoad *openroad = getOpenRoad(); return openroad->getOpenRCX(); } drt::TritonRoute * getTritonRoute() { OpenRoad *openroad = getOpenRoad(); return openroad->getTritonRoute(); } psm::PDNSim* getPDNSim() { OpenRoad *openroad = getOpenRoad(); return openroad->getPDNSim(); } grt::GlobalRouter* getGlobalRouter() { OpenRoad *openroad = getOpenRoad(); return openroad->getGlobalRouter(); } tap::Tapcell* getTapcell() { OpenRoad *openroad = getOpenRoad(); return openroad->getTapcell(); } ppl::IOPlacer* getIOPlacer() { OpenRoad *openroad = getOpenRoad(); return openroad->getIOPlacer(); } par::PartitionMgr* getPartitionMgr() { OpenRoad *openroad = getOpenRoad(); return openroad->getPartitionMgr(); } pdn::PdnGen* getPdnGen() { OpenRoad *openroad = getOpenRoad(); return openroad->getPdnGen(); } pad::ICeWall* getICeWall() { OpenRoad *openroad = getOpenRoad(); return openroad->getICeWall(); } stt::SteinerTreeBuilder* getSteinerTreeBuilder() { OpenRoad *openroad = getOpenRoad(); return openroad->getSteinerTreeBuilder(); } ram::RamGen* getRamGen() { OpenRoad *openroad = getOpenRoad(); return openroad->getRamGen(); } } // namespace ord namespace sta { std::vector * tclListSeqLibertyCell(Tcl_Obj *const source, Tcl_Interp *interp); } // namespace sta using std::vector; using sta::LibertyCell; using ord::OpenRoad; using ord::getOpenRoad; using ord::getLogger; using ord::getDb; using ord::ensureLinked; using odb::dbDatabase; using odb::dbBlock; using odb::dbTechLayer; using odb::dbTrackGrid; using odb::dbTech; %} //////////////////////////////////////////////////////////////// // // C++ functions visible as SWIG functions. // //////////////////////////////////////////////////////////////// %include #ifdef SWIGTCL %include "Exception.i" %typemap(in) vector * { $1 = sta::tclListSeqLibertyCell($input, interp); } %typemap(in) vector * { Tcl_Size argc; Tcl_Obj **argv; if (Tcl_ListObjGetElements(interp, $input, &argc, &argv) == TCL_OK) { vector* seq = new vector; for (Tcl_Size i = 0; i < argc; i++) { Tcl_Size length; const char* str = Tcl_GetStringFromObj(argv[i], &length); seq->push_back(str); } $1 = seq; } else { $1 = nullptr; } } %typemap(in) utl::ToolId { Tcl_Size length; const char *arg = Tcl_GetStringFromObj($input, &length); $1 = utl::Logger::findToolId(arg); } #endif %inline %{ const char * openroad_version() { return ord::OpenRoad::getVersion(); } const char * openroad_git_describe() { return ord::OpenRoad::getGitDescribe(); } bool openroad_gpu_compiled() { return ord::OpenRoad::getGUICompileOption(); } bool openroad_python_compiled() { return ord::OpenRoad::getPythonCompileOption(); } bool openroad_gui_compiled() { return ord::OpenRoad::getGUICompileOption(); } void read_lef_cmd(const char *filename, const char *lib_name, const char *tech_name, bool make_tech, bool make_library) { OpenRoad *ord = getOpenRoad(); ord->readLef(filename, lib_name, tech_name, make_tech, make_library); } void read_def_cmd(const char *filename, bool continue_on_errors, bool floorplan_init, bool incremental, odb::dbChip* chip) { OpenRoad *ord = getOpenRoad(); ord->readDef(filename, chip, continue_on_errors, floorplan_init, incremental); } void write_def_cmd(const char *filename, const char *version) { OpenRoad *ord = getOpenRoad(); ord->writeDef(filename, version); } void write_lef_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->writeLef(filename); } void write_abstract_lef_cmd(const char *filename, int bloat_factor, bool bloat_occupied_layers) { OpenRoad *ord = getOpenRoad(); ord->writeAbstractLef(filename, bloat_factor, bloat_occupied_layers); } void write_cdl_cmd(const char *outFilename, vector* mastersFilenames, bool includeFillers) { OpenRoad *ord = getOpenRoad(); ord->writeCdl(outFilename, *mastersFilenames, includeFillers); } void read_3dbv_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->read3Dbv(filename); } void read_3dbx_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->read3Dbx(filename); } void read_3dblox_bmap_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->read3DBloxBMap(filename); } void check_3dblox_cmd() { OpenRoad *ord = getOpenRoad(); ord->check3DBlox(); } void write_3dbv_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->write3Dbv(filename); } void write_3dbx_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->write3Dbx(filename); } void read_db_cmd(const char *filename, bool hierarchy) { OpenRoad *ord = getOpenRoad(); ord->readDb(filename, hierarchy); } void write_db_cmd(const char *filename, int compression_level = -1) { OpenRoad *ord = getOpenRoad(); std::optional comp_level; if (compression_level != -1) { comp_level = compression_level; } ord->writeDb(filename, comp_level); } void read_verilog_cmd(const char *filename) { OpenRoad *ord = getOpenRoad(); ord->readVerilog(filename); } void link_design_db_cmd(const char *design_name, bool hierarchy, bool omit_filename_prop) { OpenRoad *ord = getOpenRoad(); ord->linkDesign(design_name, hierarchy, omit_filename_prop); } void ensure_linked() { return ensureLinked(); } void set_debug_level(const char* tool_name, const char* group, int level) { using namespace ord; auto logger = getLogger(); auto id = utl::Logger::findToolId(tool_name); if (id == utl::UKN) { logger->error(utl::ORD, 15, "Unknown tool name {}", tool_name); } if (id == utl::STA) { getSta()->setDebugLevel(group, level); } logger->setDebugLevel(id, group, level); } //////////////////////////////////////////////////////////////// odb::dbDatabase * get_db() { return getDb(); } odb::dbTech * get_db_tech() { return getDb()->getTech(); } bool db_has_tech() { return !getDb()->getTechs().empty(); } odb::dbBlock * get_db_block() { odb::dbDatabase *db = getDb(); if (db) { odb::dbChip *chip = db->getChip(); if (chip) return chip->getBlock(); } return nullptr; } odb::Rect get_db_core() { OpenRoad *ord = getOpenRoad(); return ord->getCore(); } double dbu_to_microns(int dbu) { auto tech = getDb()->getTech(); if (!tech) { auto logger = getLogger(); logger->error(utl::ORD, 49, "No tech is loaded"); } return static_cast(dbu) / tech->getDbUnitsPerMicron(); } int microns_to_dbu(double microns) { auto tech = getDb()->getTech(); if (!tech) { auto logger = getLogger(); logger->error(utl::ORD, 50, "No tech is loaded"); } return std::round(microns * tech->getDbUnitsPerMicron()); } // Common check for placement tools. bool db_has_core_rows() { dbDatabase *db = OpenRoad::openRoad()->getDb(); return dbHasCoreRows(db); } bool db_layer_has_tracks(odb::dbTechLayer* layer, bool hor) { if (!layer) { return false; } dbDatabase *db = OpenRoad::openRoad()->getDb(); dbBlock *block = db->getChip()->getBlock(); dbTrackGrid *trackGrid = block->findTrackGrid(layer); if (!trackGrid) { return false; } if (hor) { return trackGrid->getNumGridPatternsY() > 0; } else { return trackGrid->getNumGridPatternsX() > 0; } } bool db_layer_has_hor_tracks(odb::dbTechLayer* layer) { return db_layer_has_tracks(layer, true); } bool db_layer_has_ver_tracks(odb::dbTechLayer* layer) { return db_layer_has_tracks(layer, false); } sta::Sta * get_sta() { return sta::Sta::sta(); } // For some bizzare reason this fails without the namespace qualifier for Sta. void set_cmd_sta(sta::Sta *sta) { sta::Sta::setSta(sta); } bool units_initialized() { OpenRoad *openroad = getOpenRoad(); return openroad->unitsInitialized(); } namespace ord { void set_thread_count(int threads) { OpenRoad *ord = getOpenRoad(); ord->setThreadCount(threads); } void set_thread_count(const char* threads) { OpenRoad *ord = getOpenRoad(); ord->setThreadCount(threads); } int thread_count() { OpenRoad *ord = getOpenRoad(); return ord->getThreadCount(); } int cpu_count() { return std::thread::hardware_concurrency(); } void design_created() { OpenRoad *ord = getOpenRoad(); ord->designCreated(); } std::string get_exe_path() { OpenRoad *ord = getOpenRoad(); return ord->getExePath(); } std::string get_docs_path() { OpenRoad *ord = getOpenRoad(); return ord->getDocsPath(); } void report_each_net_hpwl() { dbDatabase *db = OpenRoad::openRoad()->getDb(); dbBlock *block = db->getChip()->getBlock(); odb::WireLengthEvaluator w(block); w.reportEachNetHpwl(getLogger()); } void report_hpwl() { dbDatabase *db = OpenRoad::openRoad()->getDb(); dbBlock *block = db->getChip()->getBlock(); odb::WireLengthEvaluator w(block); w.reportHpwl(getLogger()); } void report_design_area_metrics_cmd() { dbDatabase* db = OpenRoad::openRoad()->getDb(); odb::dbChip* chip = db->getChip(); if (chip == nullptr) { return; } dbBlock* block = chip->getBlock(); odb::blockMetrics(block, getLogger()); } } // namespace ord %} // inline