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// Copyright (c) 2023-2025, The OpenROAD Authors
#include <unistd.h>
#include <cstddef>
#include <cstdio>
#include <filesystem>
#include <memory>
#include <sstream>
#include <string>
#include "db_sta/dbNetwork.hh"
#include "db_sta/dbSta.hh"
#include "gmock/gmock.h"
#include "gtest/gtest.h"
#include "odb/db.h"
#include "odb/dbSet.h"
#include "odb/lefin.h"
#include "sta/FuncExpr.hh"
#include "sta/Liberty.hh"
#include "sta/NetworkClass.hh"
#include "sta/Search.hh"
#include "sta/Sta.hh"
#include "tst/fixture.h"
#include "utl/Logger.h"
#include "utl/deleter.h"
namespace odb {
static const std::string prefix("_main/src/dbSta/test/");
static constexpr bool kDebugMsgs = false;
/*
Extract the hierarchical information in human readable format.
Shows the dbNet and dbModNet view of the database.
*/
static void DbStrDebugHierarchy(dbBlock* block, std::stringstream& str_db)
{
str_db << fmt::format("Debug: Data base tables for block at {}:\n",
block->getName());
str_db << "Db nets (The Flat db view)\n";
for (auto dbnet : block->getNets()) {
str_db << fmt::format(
"dbnet {} (id {})\n", dbnet->getName(), dbnet->getId());
for (auto db_iterm : dbnet->getITerms()) {
str_db << fmt::format(
"\t-> Db Iterm {} ({})\n", db_iterm->getId(), db_iterm->getName());
}
for (auto db_bterm : dbnet->getBTerms()) {
str_db << fmt::format("\t-> Db Bterm {}\n", db_bterm->getId());
}
}
// got through the ports and their owner
str_db << "Block ports\n\t\tBTerm Ports +++\n";
dbSet<dbBTerm> block_bterms = block->getBTerms();
for (auto bt : block_bterms) {
str_db << fmt::format("\t\tBterm ({}) {} Net {} ({}) Mod Net {} ({}) \n",
bt->getId(),
bt->getName(),
bt->getNet() ? bt->getNet()->getName() : "",
bt->getNet() ? bt->getNet()->getId() : 0,
bt->getModNet() ? bt->getModNet()->getName() : "",
bt->getModNet() ? bt->getModNet()->getId() : 0);
}
str_db << "\t\tBTerm Ports ---\n";
str_db << "The hierarchical db view:\n";
dbSet<dbModule> block_modules = block->getModules();
str_db << fmt::format("Content size {} modules\n", block_modules.size());
for (auto mi : block_modules) {
dbModule* cur_obj = mi;
if (cur_obj == block->getTopModule()) {
str_db << "Top Module\n";
}
str_db << fmt::format(
"\tModule {} {}\n",
(cur_obj == block->getTopModule()) ? "(Top Module)" : "",
cur_obj->getName());
// in case of top level, care as the bterms double up as pins
if (cur_obj == block->getTopModule()) {
for (auto bterm : block->getBTerms()) {
str_db << fmt::format(
"Top B-term {} dbNet {} ({}) modNet {} ({})\n",
bterm->getName(),
bterm->getNet() ? bterm->getNet()->getName() : "",
bterm->getNet() ? bterm->getNet()->getId() : -1,
bterm->getModNet() ? bterm->getModNet()->getName() : "",
bterm->getModNet() ? bterm->getModNet()->getId() : -1);
}
}
// got through the module ports and their owner
str_db << "\t\tModBTerm Ports +++\n";
dbSet<dbModBTerm> module_ports = cur_obj->getModBTerms();
for (auto module_port : module_ports) {
str_db << fmt::format(
"\t\tPort {} Net {} ({})\n",
module_port->getName(),
(module_port->getModNet()) ? (module_port->getModNet()->getName())
: "No-modnet",
(module_port->getModNet()) ? module_port->getModNet()->getId() : -1);
str_db << fmt::format("\t\tPort parent {}\n\n",
module_port->getParent()->getName());
}
str_db << "\t\tModBTermPorts ---\n";
str_db << "\t\tModule instances +++\n";
dbSet<dbModInst> module_instances = mi->getModInsts();
for (auto module_inst : module_instances) {
str_db << fmt::format("\t\tMod inst {} ", module_inst->getName());
dbModule* master = module_inst->getMaster();
str_db << fmt::format("\t\tMaster {}\n\n",
module_inst->getMaster()->getName());
dbBlock* owner = master->getOwner();
if (owner != block) {
str_db << "\t\t\tMaster owner in wrong block\n";
}
str_db << "\t\tConnections\n";
for (dbModITerm* miterm_pin : module_inst->getModITerms()) {
str_db << fmt::format(
"\t\t\tModIterm : {} ({}) Mod Net {} ({}) \n",
miterm_pin->getName(),
miterm_pin->getId(),
miterm_pin->getModNet() ? (miterm_pin->getModNet()->getName())
: "No-net",
miterm_pin->getModNet() ? miterm_pin->getModNet()->getId() : 0);
}
}
str_db << "\t\tModule instances ---\n";
str_db << "\t\tDb instances +++\n";
for (dbInst* db_inst : cur_obj->getInsts()) {
str_db << fmt::format("\t\tdb inst {}\n", db_inst->getName());
str_db << "\t\tdb iterms:\n";
dbSet<dbITerm> iterms = db_inst->getITerms();
for (auto iterm : iterms) {
dbMTerm* mterm = iterm->getMTerm();
str_db << fmt::format(
"\t\t\t\t iterm: {} ({}) Net: {} Mod net : {} ({})\n",
mterm->getName(),
iterm->getId(),
iterm->getNet() ? iterm->getNet()->getName() : "unk-dbnet",
iterm->getModNet() ? iterm->getModNet()->getName() : "unk-modnet",
iterm->getModNet() ? iterm->getModNet()->getId() : -1);
}
}
str_db << "\t\tDb instances ---\n";
str_db << "\tModule nets (modnets) +++ \n";
str_db << fmt::format("\t# mod nets {} in {} \n",
cur_obj->getModNets().size(),
cur_obj->getName());
dbSet<dbModNet> mod_nets = cur_obj->getModNets();
for (auto mod_net : mod_nets) {
str_db << fmt::format(
"\t\tNet: {} ({})\n", mod_net->getName(), mod_net->getId());
str_db << "\t\tConnections -> modIterms/modbterms/bterms/iterms:\n";
str_db << fmt::format("\t\t -> {} moditerms\n",
mod_net->getModITerms().size());
for (dbModITerm* modi_term : mod_net->getModITerms()) {
str_db << fmt::format("\t\t\t{}\n", modi_term->getName());
}
str_db << fmt::format("\t\t -> {} modbterms\n",
mod_net->getModBTerms().size());
for (dbModBTerm* modb_term : mod_net->getModBTerms()) {
str_db << fmt::format("\t\t\t{}\n", modb_term->getName());
}
str_db << fmt::format("\t\t -> {} iterms\n", mod_net->getITerms().size());
for (dbITerm* db_iterm : mod_net->getITerms()) {
str_db << fmt::format("\t\t\t{}\n", db_iterm->getName());
}
str_db << fmt::format("\t\t -> {} bterms\n", mod_net->getBTerms().size());
for (dbBTerm* db_bterm : mod_net->getBTerms()) {
str_db << fmt::format("\t\t\t{}\n", db_bterm->getName());
}
}
}
}
/*
Test fixture for hierarchical connect test
------------------------------------------
Two modules, 1 with 1 inverter, second with 4 inverters.
inv1 is instantiated in the top level
inv4 is instantiated three levels down:
level0 -- instantiation in root
level1
level2 -- contains 4 inverters
Objective of this test is to stress the hierarchical connection code.
root {inputs: i0; outputs: o0, o1, o2,o3}
--> inv1 (module containing 1 inverter) this drives inv1_level0_inst
--> inv4_level0_inst {wrapper input: i0, outputs o0,o1,o2,o3}
--> inv4_level1_inst {wrapper input: i0, outputs o0,o1,o2,o3}
--> inv4_level2_inst {contains 4 inverters. Has input i0, outputs
o0,01,o2,o3}
*/
class TestHconn : public ::tst::Fixture
{
protected:
void SetUp() override
{
// this will be so much easier with read_def
library_ = readLiberty(prefix + "Nangate45/Nangate45_typ.lib");
lib_ = loadTechAndLib(
"tech", "Nangate45", prefix + "Nangate45/Nangate45.lef");
db_network_ = sta_->getDbNetwork();
// turn on hierarchy
db_network_->setHierarchy();
// create a chain consisting of 4 buffers
odb::dbChip* chip = odb::dbChip::create(db_.get(), db_->getTech());
block_ = odb::dbBlock::create(chip, "top");
db_network_->setBlock(block_);
block_->setDieArea(odb::Rect(0, 0, 1000, 1000));
// register proper callbacks for timer like read_def
sta_->postReadDef(block_);
root_mod_ = block_->getTopModule();
// The bterms are created below during wiring
// Note a bterm without a parent is a root bterm.
// Make the inv1 module (contains 1 inverter).
inv1_mod_master_ = dbModule::create(block_, "inv1_master_mod");
inv1_mod_i0_port_ = dbModBTerm::create(inv1_mod_master_, "i0");
inv1_mod_o0_port_ = dbModBTerm::create(inv1_mod_master_, "o0");
inv1_mod_inst_
= dbModInst::create(root_mod_, inv1_mod_master_, "inv1_mod_inst");
inv1_mod_inst_i0_miterm_
= dbModITerm::create(inv1_mod_inst_, "i0", inv1_mod_i0_port_);
inv1_mod_inst_o0_miterm_
= dbModITerm::create(inv1_mod_inst_, "o0", inv1_mod_o0_port_);
// correlate the iterms and bterms
inv1_mod_inst_i0_miterm_->setChildModBTerm(inv1_mod_i0_port_);
inv1_mod_i0_port_->setParentModITerm(inv1_mod_inst_i0_miterm_);
inv1_mod_inst_o0_miterm_->setChildModBTerm(inv1_mod_o0_port_);
inv1_mod_o0_port_->setParentModITerm(inv1_mod_inst_o0_miterm_);
inv1_1_ = dbInst::create(block_,
lib_->findMaster("INV_X1"),
"inv1_mod_inst/inst1",
false,
inv1_mod_master_);
inv1_1_inst_ip0_ = inv1_1_->findITerm("A");
inv1_1_inst_op0_ = inv1_1_->findITerm("ZN");
inv4_mod_level0_master_ = dbModule::create(block_, "inv4_master_level0");
inv4_mod_level0_master_i0_port_
= dbModBTerm::create(inv4_mod_level0_master_, "i0");
inv4_mod_level0_master_o0_port_
= dbModBTerm::create(inv4_mod_level0_master_, "o0");
inv4_mod_level0_master_o1_port_
= dbModBTerm::create(inv4_mod_level0_master_, "o1");
inv4_mod_level0_master_o2_port_
= dbModBTerm::create(inv4_mod_level0_master_, "o2");
inv4_mod_level0_master_o3_port_
= dbModBTerm::create(inv4_mod_level0_master_, "o3");
inv4_mod_level1_master_ = dbModule::create(block_, "inv4_master_level1");
inv4_mod_level1_master_i0_port_
= dbModBTerm::create(inv4_mod_level1_master_, "i0");
inv4_mod_level1_master_o0_port_
= dbModBTerm::create(inv4_mod_level1_master_, "o0");
inv4_mod_level1_master_o1_port_
= dbModBTerm::create(inv4_mod_level1_master_, "o1");
inv4_mod_level1_master_o2_port_
= dbModBTerm::create(inv4_mod_level1_master_, "o2");
inv4_mod_level1_master_o3_port_
= dbModBTerm::create(inv4_mod_level1_master_, "o3");
inv4_mod_level2_master_ = dbModule::create(block_, "inv4_master_level2");
inv4_mod_level2_master_i0_port_
= dbModBTerm::create(inv4_mod_level2_master_, "i0");
inv4_mod_level2_master_o0_port_
= dbModBTerm::create(inv4_mod_level2_master_, "o0");
inv4_mod_level2_master_o1_port_
= dbModBTerm::create(inv4_mod_level2_master_, "o1");
inv4_mod_level2_master_o2_port_
= dbModBTerm::create(inv4_mod_level2_master_, "o2");
inv4_mod_level2_master_o3_port_
= dbModBTerm::create(inv4_mod_level2_master_, "o3");
// During modinst creation we set the parent.
inv4_mod_level0_inst_ = dbModInst::create(root_mod_, // parent
inv4_mod_level0_master_,
"inv4_mod_level0_inst");
inv4_mod_level0_inst_i0_miterm_
= dbModITerm::create(inv4_mod_level0_inst_, "i0");
inv4_mod_level0_inst_i0_miterm_->setChildModBTerm(
inv4_mod_level0_master_i0_port_);
inv4_mod_level0_master_i0_port_->setParentModITerm(
inv4_mod_level0_inst_i0_miterm_);
inv4_mod_level0_inst_o0_miterm_
= dbModITerm::create(inv4_mod_level0_inst_, "o0");
inv4_mod_level0_inst_o0_miterm_->setChildModBTerm(
inv4_mod_level0_master_o0_port_);
inv4_mod_level0_master_o0_port_->setParentModITerm(
inv4_mod_level0_inst_o0_miterm_);
inv4_mod_level0_inst_o1_miterm_
= dbModITerm::create(inv4_mod_level0_inst_, "o1");
inv4_mod_level0_inst_o1_miterm_->setChildModBTerm(
inv4_mod_level0_master_o1_port_);
inv4_mod_level0_master_o1_port_->setParentModITerm(
inv4_mod_level0_inst_o1_miterm_);
inv4_mod_level0_inst_o2_miterm_
= dbModITerm::create(inv4_mod_level0_inst_, "o2");
inv4_mod_level0_inst_o2_miterm_->setChildModBTerm(
inv4_mod_level0_master_o2_port_);
inv4_mod_level0_master_o2_port_->setParentModITerm(
inv4_mod_level0_inst_o2_miterm_);
inv4_mod_level0_inst_o3_miterm_
= dbModITerm::create(inv4_mod_level0_inst_, "o3");
inv4_mod_level0_inst_o3_miterm_->setChildModBTerm(
inv4_mod_level0_master_o3_port_);
inv4_mod_level0_master_o3_port_->setParentModITerm(
inv4_mod_level0_inst_o3_miterm_);
inv4_mod_level1_inst_
= dbModInst::create(inv4_mod_level0_master_, // parent
inv4_mod_level1_master_,
"inv4_mod_level1_inst");
inv4_mod_level1_inst_i0_miterm_
= dbModITerm::create(inv4_mod_level1_inst_, "i0");
inv4_mod_level1_inst_i0_miterm_->setChildModBTerm(
inv4_mod_level1_master_i0_port_);
inv4_mod_level1_master_i0_port_->setParentModITerm(
inv4_mod_level1_inst_i0_miterm_);
inv4_mod_level1_inst_o0_miterm_
= dbModITerm::create(inv4_mod_level1_inst_, "o0");
inv4_mod_level1_inst_o0_miterm_->setChildModBTerm(
inv4_mod_level1_master_o0_port_);
inv4_mod_level1_master_o0_port_->setParentModITerm(
inv4_mod_level1_inst_o0_miterm_);
inv4_mod_level1_inst_o1_miterm_
= dbModITerm::create(inv4_mod_level1_inst_, "o1");
inv4_mod_level1_inst_o1_miterm_->setChildModBTerm(
inv4_mod_level1_master_o1_port_);
inv4_mod_level1_master_o1_port_->setParentModITerm(
inv4_mod_level1_inst_o1_miterm_);
inv4_mod_level1_inst_o2_miterm_
= dbModITerm::create(inv4_mod_level1_inst_, "o2");
inv4_mod_level1_inst_o2_miterm_->setChildModBTerm(
inv4_mod_level1_master_o2_port_);
inv4_mod_level1_master_o2_port_->setParentModITerm(
inv4_mod_level1_inst_o2_miterm_);
inv4_mod_level1_inst_o3_miterm_
= dbModITerm::create(inv4_mod_level1_inst_, "o3");
inv4_mod_level1_inst_o3_miterm_->setChildModBTerm(
inv4_mod_level1_master_o3_port_);
inv4_mod_level1_master_o3_port_->setParentModITerm(
inv4_mod_level1_inst_o3_miterm_);
inv4_mod_level2_inst_
= dbModInst::create(inv4_mod_level1_master_, // parent
inv4_mod_level2_master_,
"inv4_mod_level2_inst");
inv4_mod_level2_inst_i0_miterm_
= dbModITerm::create(inv4_mod_level2_inst_, "i0");
inv4_mod_level2_inst_i0_miterm_->setChildModBTerm(
inv4_mod_level2_master_i0_port_);
inv4_mod_level2_master_i0_port_->setParentModITerm(
inv4_mod_level2_inst_i0_miterm_);
inv4_mod_level2_inst_o0_miterm_
= dbModITerm::create(inv4_mod_level2_inst_, "o0");
inv4_mod_level2_inst_o0_miterm_->setChildModBTerm(
inv4_mod_level2_master_o0_port_);
inv4_mod_level2_master_o0_port_->setParentModITerm(
inv4_mod_level2_inst_o0_miterm_);
inv4_mod_level2_inst_o1_miterm_
= dbModITerm::create(inv4_mod_level2_inst_, "o1");
inv4_mod_level2_inst_o1_miterm_->setChildModBTerm(
inv4_mod_level2_master_o1_port_);
inv4_mod_level2_master_o1_port_->setParentModITerm(
inv4_mod_level2_inst_o1_miterm_);
inv4_mod_level2_inst_o2_miterm_
= dbModITerm::create(inv4_mod_level2_inst_, "o2");
inv4_mod_level2_inst_o2_miterm_->setChildModBTerm(
inv4_mod_level2_master_o2_port_);
inv4_mod_level2_master_o2_port_->setParentModITerm(
inv4_mod_level2_inst_o2_miterm_);
inv4_mod_level2_inst_o3_miterm_
= dbModITerm::create(inv4_mod_level2_inst_, "o3");
inv4_mod_level2_inst_o3_miterm_->setChildModBTerm(
inv4_mod_level2_master_o3_port_);
inv4_mod_level2_master_o3_port_->setParentModITerm(
inv4_mod_level2_inst_o3_miterm_);
//
// create the low level inverter instances, for now uniquely name them in
// the scope of a block.
inv4_1_ = dbInst::create(
block_,
lib_->findMaster("INV_X1"),
"inv4_mod_level0_inst/inv4_mod_level1_inst/inv4_mod_level2_inst/inst1");
// get the iterm off the instance. Just give the terminal name
// offset used to find iterm.
inv4_1_ip_ = inv4_1_->findITerm("A");
inv4_1_op_ = inv4_1_->findITerm("ZN");
inv4_2_ = dbInst::create(
block_,
lib_->findMaster("INV_X1"),
"inv4_mod_level0_inst/inv4_mod_level1_inst/inv4_mod_level2_inst/inst2");
inv4_2_ip_ = inv4_2_->findITerm("A");
inv4_2_op_ = inv4_2_->findITerm("ZN");
inv4_3_ = dbInst::create(
block_,
lib_->findMaster("INV_X1"),
"inv4_mod_level0_inst/inv4_mod_level1_inst/inv4_mod_level2_inst/inst3");
inv4_3_ip_ = inv4_3_->findITerm("A");
inv4_3_op_ = inv4_3_->findITerm("ZN");
inv4_4_ = dbInst::create(
block_,
lib_->findMaster("INV_X1"),
"inv4_mod_level0_inst/inv4_mod_level1_inst/inv4_mod_level2_inst/inst4");
inv4_4_ip_ = inv4_4_->findITerm("A");
inv4_4_op_ = inv4_4_->findITerm("ZN");
//
// inv4_mod_level2_master is lowest level in hierarchy
//
inv4_mod_level2_master_->addInst(inv4_1_);
inv4_mod_level2_master_->addInst(inv4_2_);
inv4_mod_level2_master_->addInst(inv4_3_);
inv4_mod_level2_master_->addInst(inv4_4_);
inv4_mod_level2_inst_i0_mnet_ = dbModNet::create(
inv4_mod_level2_master_, "inv4_mod_level2_inst_i0_mnet");
inv4_mod_level2_inst_o0_mnet_ = dbModNet::create(
inv4_mod_level2_master_, "inv4_mod_level2_inst_o0_mnet");
inv4_mod_level2_inst_o1_mnet_ = dbModNet::create(
inv4_mod_level2_master_, "inv4_mod_level2_inst_o1_mnet");
inv4_mod_level2_inst_o2_mnet_ = dbModNet::create(
inv4_mod_level2_master_, "inv4_mod_level2_inst_o2_mnet");
inv4_mod_level2_inst_o3_mnet_ = dbModNet::create(
inv4_mod_level2_master_, "inv4_mod_level2_inst_o3_mnet");
inv4_1_ip_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_2_ip_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_3_ip_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_4_ip_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_1_op_->connect(inv4_mod_level2_inst_o0_mnet_);
inv4_2_op_->connect(inv4_mod_level2_inst_o1_mnet_);
inv4_3_op_->connect(inv4_mod_level2_inst_o2_mnet_);
inv4_4_op_->connect(inv4_mod_level2_inst_o3_mnet_);
inv4_mod_level2_master_i0_port_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_mod_level2_master_o0_port_->connect(inv4_mod_level2_inst_o0_mnet_);
inv4_mod_level2_master_o1_port_->connect(inv4_mod_level2_inst_o1_mnet_);
inv4_mod_level2_master_o2_port_->connect(inv4_mod_level2_inst_o2_mnet_);
inv4_mod_level2_master_o3_port_->connect(inv4_mod_level2_inst_o3_mnet_);
// First make the flat view connectivity
ip0_net_ = dbNet::create(block_, "ip0_flat_net", false);
inv_op_net_ = dbNet::create(block_, "inv_op_flat_net", false);
op0_net_ = dbNet::create(block_, "op0_flat_net", false);
op1_net_ = dbNet::create(block_, "op1_flat_net", false);
op2_net_ = dbNet::create(block_, "op2_flat_net", false);
op3_net_ = dbNet::create(block_, "op3_flat_net", false);
//
// connections to the primary (root) ports
// Note: a bterm without a parent is a root port.
//
ip0_bterm_ = dbBTerm::create(ip0_net_, "ip0");
op0_bterm_ = dbBTerm::create(op0_net_, "op0");
op1_bterm_ = dbBTerm::create(op1_net_, "op1");
op2_bterm_ = dbBTerm::create(op2_net_, "op2");
op3_bterm_ = dbBTerm::create(op3_net_, "op3");
op0_bterm_->connect(inv4_mod_level2_inst_o0_mnet_);
op1_bterm_->connect(inv4_mod_level2_inst_o1_mnet_);
op2_bterm_->connect(inv4_mod_level2_inst_o2_mnet_);
op3_bterm_->connect(inv4_mod_level2_inst_o3_mnet_);
// flat connections:
// inverter 1 in module inv1_1
inv1_1_inst_ip0_->connect(ip0_net_);
inv1_1_inst_op0_->connect(inv_op_net_);
// now the 4 inverters in inv4_1
inv4_1_ip_->connect(inv_op_net_);
inv4_2_ip_->connect(inv_op_net_);
inv4_3_ip_->connect(inv_op_net_);
inv4_4_ip_->connect(inv_op_net_);
// now core to external connections
inv4_1_op_->connect(op0_net_);
inv4_2_op_->connect(op1_net_);
inv4_3_op_->connect(op2_net_);
inv4_4_op_->connect(op3_net_);
if (kDebugMsgs) {
std::stringstream str_str;
DbStrDebugHierarchy(block_, str_str);
printf("The Flat design created %s\n", str_str.str().c_str());
}
// Now build the hierarchical "overlay"
// What we are doing here is adding the modnets which hook up
// wire in hierarchy for inv1
// Contents of inv1 (modnets from ports to internals).
inv1_mod_i0_modnet_
= dbModNet::create(inv1_mod_master_, "inv1_mod_i0_mnet");
inv1_mod_o0_modnet_
= dbModNet::create(inv1_mod_master_, "inv1_mod_o0_mnet");
// connection from port to net in module
inv1_mod_i0_port_->connect(inv1_mod_i0_modnet_);
// connection to inverter ip
inv1_1_inst_ip0_->connect(inv1_mod_i0_modnet_);
// from inverter op to port
inv1_1_inst_op0_->connect(inv1_mod_o0_modnet_);
inv1_mod_o0_port_->connect(inv1_mod_o0_modnet_);
// Instantiation of inv1 connections to top level (root bterms to modnets,
// modnets to moditerms on inv1).
root_inv1_i0_mnet_ = dbModNet::create(root_mod_, "inv1_inst_i0_mnet");
root_inv1_o0_mnet_ = dbModNet::create(root_mod_, "inv1_inst_o0_mnet");
inv1_mod_inst_i0_miterm_->connect(root_inv1_i0_mnet_);
inv1_mod_inst_o0_miterm_->connect(root_inv1_o0_mnet_);
// top level connections for inv1.
// root input to instance, via a modnet.
ip0_bterm_->connect(root_inv1_i0_mnet_);
// note the output from out inverter module is inv1_inst_o0_mnet
// which now needs to be hooked up the inv4 hierarchy.
// The inv4 hierarchy connections
// inv1 -> inv4 connection
inv4_mod_level0_inst_i0_miterm_->connect(root_inv1_o0_mnet_);
// level 0 is top of hierarchy, in root
// the level 0 instance -> root connections
root_inv4_o0_mnet_ = dbModNet::create(root_mod_, "inv4_inst_o0_mnet");
inv4_mod_level0_inst_o0_miterm_->connect(root_inv4_o0_mnet_);
op0_bterm_->connect(root_inv4_o0_mnet_);
root_inv4_o1_mnet_ = dbModNet::create(root_mod_, "inv4_inst_o1_mnet");
inv4_mod_level0_inst_o1_miterm_->connect(root_inv4_o1_mnet_);
op1_bterm_->connect(root_inv4_o1_mnet_);
root_inv4_o2_mnet_ = dbModNet::create(root_mod_, "inv4_inst_o2_mnet");
inv4_mod_level0_inst_o2_miterm_->connect(root_inv4_o2_mnet_);
op2_bterm_->connect(root_inv4_o2_mnet_);
root_inv4_o3_mnet_ = dbModNet::create(root_mod_, "inv4_inst_o3_mnet");
inv4_mod_level0_inst_o3_miterm_->connect(root_inv4_o3_mnet_);
op3_bterm_->connect(root_inv4_o3_mnet_);
// level 1 is next level down
// The level 1 instance connections within the scope of the
// inv4_mod_level0_master
inv4_mod_level1_inst_i0_mnet_ = dbModNet::create(
inv4_mod_level0_master_, "inv4_mod_level1_inst_i0_mnet");
inv4_mod_level1_inst_i0_miterm_->connect(inv4_mod_level1_inst_i0_mnet_);
inv4_mod_level0_master_i0_port_->connect(inv4_mod_level1_inst_i0_mnet_);
inv4_mod_level1_inst_o0_mnet_ = dbModNet::create(
inv4_mod_level0_master_, "inv4_mod_level1_inst_o0_mnet");
inv4_mod_level1_inst_o0_miterm_->connect(inv4_mod_level1_inst_o0_mnet_);
inv4_mod_level0_master_o0_port_->connect(inv4_mod_level1_inst_o0_mnet_);
inv4_mod_level1_inst_o1_mnet_ = dbModNet::create(
inv4_mod_level0_master_, "inv4_mod_level1_inst_o1_mnet");
inv4_mod_level1_inst_o1_miterm_->connect(inv4_mod_level1_inst_o1_mnet_);
inv4_mod_level0_master_o1_port_->connect(inv4_mod_level1_inst_o1_mnet_);
inv4_mod_level1_inst_o2_mnet_ = dbModNet::create(
inv4_mod_level0_master_, "inv4_mod_level1_inst_o2_mnet");
inv4_mod_level1_inst_o2_miterm_->connect(inv4_mod_level1_inst_o2_mnet_);
inv4_mod_level0_master_o2_port_->connect(inv4_mod_level1_inst_o2_mnet_);
inv4_mod_level1_inst_o3_mnet_ = dbModNet::create(
inv4_mod_level0_master_, "inv4_mod_level1_inst_o3_mnet");
inv4_mod_level1_inst_o3_miterm_->connect(inv4_mod_level1_inst_o3_mnet_);
inv4_mod_level0_master_o3_port_->connect(inv4_mod_level1_inst_o3_mnet_);
// The level 2 instance connections within the scope of the
// inv4_mod_level1_master level 2 is the cell which contains the 4 inverters
inv4_mod_level2_inst_i0_mnet_ = dbModNet::create(
inv4_mod_level1_master_, "inv4_mod_level2_inst_i0_mnet");
inv4_mod_level2_inst_i0_miterm_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_mod_level1_master_i0_port_->connect(inv4_mod_level2_inst_i0_mnet_);
inv4_mod_level2_inst_o0_mnet_ = dbModNet::create(
inv4_mod_level1_master_, "inv4_mod_level2_inst_o0_mnet");
inv4_mod_level2_inst_o0_miterm_->connect(inv4_mod_level2_inst_o0_mnet_);
inv4_mod_level1_master_o0_port_->connect(inv4_mod_level2_inst_o0_mnet_);
inv4_mod_level2_inst_o1_mnet_ = dbModNet::create(
inv4_mod_level1_master_, "inv4_mod_level2_inst_o1_mnet");
inv4_mod_level2_inst_o1_miterm_->connect(inv4_mod_level2_inst_o1_mnet_);
inv4_mod_level1_master_o1_port_->connect(inv4_mod_level2_inst_o1_mnet_);
inv4_mod_level2_inst_o2_mnet_ = dbModNet::create(
inv4_mod_level1_master_, "inv4_mod_level2_inst_o2_mnet");
inv4_mod_level2_inst_o2_miterm_->connect(inv4_mod_level2_inst_o2_mnet_);
inv4_mod_level1_master_o2_port_->connect(inv4_mod_level2_inst_o2_mnet_);
inv4_mod_level2_inst_o3_mnet_ = dbModNet::create(
inv4_mod_level1_master_, "inv4_mod_level2_inst_o3_mnet");
inv4_mod_level2_inst_o3_miterm_->connect(inv4_mod_level2_inst_o3_mnet_);
inv4_mod_level1_master_o3_port_->connect(inv4_mod_level2_inst_o3_mnet_);
if (kDebugMsgs) {
std::stringstream full_design;
DbStrDebugHierarchy(block_, full_design);
printf("The design created (flat and hierarchical) %s\n",
full_design.str().c_str());
}
}
sta::LibertyLibrary* library_;
sta::dbNetwork* db_network_;
dbBlock* block_;
odb::dbLib* lib_;
dbModule* root_mod_;
dbMTerm* root_mod_i0_mterm_;
dbMTerm* root_mod_i1_mterm_;
dbMTerm* root_mod_i2_mterm_;
dbMTerm* root_mod_i3_mterm_;
dbMTerm* root_mod_o0_mterm_;
dbBTerm* root_mod_i0_bterm_;
dbBTerm* root_mod_i1_bterm_;
dbBTerm* root_mod_i2_bterm_;
dbBTerm* root_mod_i3_bterm_;
dbBTerm* root_mod_o0_bterm_;
dbModule* inv1_mod_master_;
dbModInst* inv1_mod_inst_;
dbModITerm* inv1_mod_inst_i0_miterm_;
dbModITerm* inv1_mod_inst_o0_miterm_;
dbModBTerm* inv1_mod_i0_port_;
dbModBTerm* inv1_mod_o0_port_;
dbModNet* inv1_mod_i0_modnet_;
dbModNet* inv1_mod_o0_modnet_;
dbModule* inv4_mod_level0_master_;
dbModule* inv4_mod_level1_master_;
dbModule* inv4_mod_level2_master_;
dbModBTerm* inv4_mod_level0_master_i0_port_;
dbModBTerm* inv4_mod_level0_master_o0_port_;
dbModBTerm* inv4_mod_level0_master_o1_port_;
dbModBTerm* inv4_mod_level0_master_o2_port_;
dbModBTerm* inv4_mod_level0_master_o3_port_;
dbModBTerm* inv4_mod_level1_master_i0_port_;
dbModBTerm* inv4_mod_level1_master_o0_port_;
dbModBTerm* inv4_mod_level1_master_o1_port_;
dbModBTerm* inv4_mod_level1_master_o2_port_;
dbModBTerm* inv4_mod_level1_master_o3_port_;
dbModBTerm* inv4_mod_level2_master_i0_port_;
dbModBTerm* inv4_mod_level2_master_o0_port_;
dbModBTerm* inv4_mod_level2_master_o1_port_;
dbModBTerm* inv4_mod_level2_master_o2_port_;
dbModBTerm* inv4_mod_level2_master_o3_port_;
dbModInst* inv4_mod_level0_inst_;
dbModInst* inv4_mod_level1_inst_;
dbModInst* inv4_mod_level2_inst_;
dbModITerm* inv4_mod_level0_inst_i0_miterm_;
dbModITerm* inv4_mod_level0_inst_o0_miterm_;
dbModITerm* inv4_mod_level0_inst_o1_miterm_;
dbModITerm* inv4_mod_level0_inst_o2_miterm_;
dbModITerm* inv4_mod_level0_inst_o3_miterm_;
dbModITerm* inv4_mod_level1_inst_i0_miterm_;
dbModITerm* inv4_mod_level1_inst_o0_miterm_;
dbModITerm* inv4_mod_level1_inst_o1_miterm_;
dbModITerm* inv4_mod_level1_inst_o2_miterm_;
dbModITerm* inv4_mod_level1_inst_o3_miterm_;
dbModITerm* inv4_mod_level2_inst_i0_miterm_;
dbModITerm* inv4_mod_level2_inst_o0_miterm_;
dbModITerm* inv4_mod_level2_inst_o1_miterm_;
dbModITerm* inv4_mod_level2_inst_o2_miterm_;
dbModITerm* inv4_mod_level2_inst_o3_miterm_;
dbInst* inv1_1_;
dbInst* inv4_1_;
dbInst* inv4_2_;
dbInst* inv4_3_;
dbInst* inv4_4_;
dbNet* ip0_net_;
dbNet* inv_op_net_;
dbNet* op0_net_;
dbNet* op1_net_;
dbNet* op2_net_;
dbNet* op3_net_;
dbBTerm* ip0_bterm_;
dbBTerm* op0_bterm_;
dbBTerm* op1_bterm_;
dbBTerm* op2_bterm_;
dbBTerm* op3_bterm_;
dbModITerm* inv1_1_ip_;
dbModITerm* inv1_1_op_;
dbModNet* root_inv1_i0_mnet_;
dbModNet* root_inv1_o0_mnet_;
dbModNet* root_inv4_o0_mnet_;
dbModNet* root_inv4_o1_mnet_;
dbModNet* root_inv4_o2_mnet_;
dbModNet* root_inv4_o3_mnet_;
// first input inv4_mod_level_i0 comes from root_inv1_o0_modnet
dbModNet* inv4_mod_level0_inst_o0_mnet_;
dbModNet* inv4_mod_level0_inst_o1_mnet_;
dbModNet* inv4_mod_level0_inst_o2_mnet_;
dbModNet* inv4_mod_level0_inst_o3_mnet_;
dbModNet* inv4_mod_level1_inst_i0_mnet_;
dbModNet* inv4_mod_level1_inst_o0_mnet_;
dbModNet* inv4_mod_level1_inst_o1_mnet_;
dbModNet* inv4_mod_level1_inst_o2_mnet_;
dbModNet* inv4_mod_level1_inst_o3_mnet_;
dbModNet* inv4_mod_level2_inst_i0_mnet_;
dbModNet* inv4_mod_level2_inst_o0_mnet_;
dbModNet* inv4_mod_level2_inst_o1_mnet_;
dbModNet* inv4_mod_level2_inst_o2_mnet_;
dbModNet* inv4_mod_level2_inst_o3_mnet_;
dbITerm* inv1_1_inst_ip0_;
dbITerm* inv1_1_inst_op0_;
dbITerm* inv4_1_ip_;
dbITerm* inv4_2_ip_;
dbITerm* inv4_3_ip_;
dbITerm* inv4_4_ip_;
dbITerm* inv4_1_op_;
dbITerm* inv4_2_op_;
dbITerm* inv4_3_op_;
dbITerm* inv4_4_op_;
};
TEST_F(TestHconn, ConnectionMade)
{
if (kDebugMsgs) {
std::stringstream str_str_initial;
DbStrDebugHierarchy(block_, str_str_initial);
printf("The initial design: %s\n", str_str_initial.str().c_str());
}
// ECO test: get initial state before we start modifying
// the design. Then at end we undo everything and
// validate initial state preserved
size_t initial_db_net_count = block_->getNets().size();
size_t initial_mod_net_count = block_->getModNets().size();
odb::dbDatabase::beginEco(block_);
//
//
// Hierarchical connection test case:
//----------------------------------
//
// add a new inverter to inv1 and connect to the fanout of the
// existing one.
// remove the driver of the 4th inverter in inv4_4 leaf
// and connect to it via hierarchy
//
//
// Before
//--inv1_1 -----------inv4_1_ip0
// |----------inv4_2_ip0
// |----------inv4_3_ip0
// |----------inv4_4_ip0
//
//
// After:
//
//--inv1_1-----------inv4_1_ip0
// |----------inv4_2_ip0
// |----------inv4_3_ip0
//
//--inv1_2---------inv4_4_ip0
//
//
//
// Objects referenced in "before"
//
// inv1_1 -- dbInst in inv1_1
// inv1_1_inst_op0 -- op iterm on inv1
// inv1_mod_master -- dbModule parent for inv1_1
// inv4_mod_level2_master -- dbModule parent for leaf level inverters in inv4
// inv4_4_ip0 -- ip iterm on 4th inverter
//
//
//
// first create the new inverter in inv1_mod_master
// and get its pins ready for connection.
// Note we are declaring these new objects outside
// of the test struct so it is obvious what is in the test harness
// and what is in the test
//
dbInst* inv1_2 = dbInst::create(block_,
lib_->findMaster("INV_X1"),
"inv1_mod_inst/inst2",
false,
inv1_mod_master_);
dbITerm* inv1_2_inst_ip0 = inv1_2->findITerm("A");
dbITerm* inv1_2_inst_op0 = inv1_2->findITerm("ZN");
// Plumb in the new input of the inverter
// This is the ip0_net, which is hooked to the top level bterm.
// And to the top level modnet (which connects the modbterm on
// inv1_mod_master) to the inverter. Note the dual connection:
// one flat, one hierarchical.
inv1_2_inst_ip0->connect(ip0_net_); // flat world
inv1_2_inst_ip0->connect(inv1_mod_i0_modnet_); // hierarchical world
// now disconnect the 4th inverter in inv4_4 (this is in level 2, the 3rd
// level, of the hierarchy).
// This kills both the dbNet (flat) connection
// and the dbModNet (hierarchical) connection.
inv4_4_ip_->disconnect();
//
// Make the flat connection.
// We keep two worlds: the modnet world
// and the dbNet world. The modnet world
// exists at the edges eg where a module ports
//(dbModITerms) connect to core gates (eg dbITerms).
//
// The flat world is always there.
//
//
std::string flat_net_name = inv1_2->getName() + inv4_4_ip_->getName('/');
std::string hier_net_name = "test_hier_" + flat_net_name;
dbNet* flat_net = dbNet::create(block_, flat_net_name.c_str(), false);
inv1_2_inst_op0->connect(flat_net);
inv4_4_ip_->connect(flat_net);
//
// The hierarchical test: connect the output of the inverter in
// inv1_2_inst_op0 to the input of the inverter inv4_4_ip0;
//
db_network_->hierarchicalConnect(
inv1_2_inst_op0, inv4_4_ip_, hier_net_name.c_str());
// A full flat-net path must produce local hierarchy port names.
EXPECT_NE(inv1_mod_master_->findModBTerm("A_o"), nullptr);
if (kDebugMsgs) {
std::stringstream str_str_final;
DbStrDebugHierarchy(block_, str_str_final);
printf("The final design: %s\n", str_str_final.str().c_str());
}
// Example of how to turn on the call backs for all the bterms/iterms
// used by the sta
dbSet<dbModNet> mod_nets = block_->getModNets();
for (auto mnet : mod_nets) {
sta::NetSet visited_nets;
// given one mod net go get all its low level objects to
// issue call back on
sta::Net* cur_net = db_network_->dbToSta(mnet);
sta::NetConnectedPinIterator* npi
= db_network_->connectedPinIterator(cur_net);
while (npi->hasNext()) {
const sta::Pin* cur_pin = npi->next();
odb::dbModITerm* moditerm;
odb::dbITerm* iterm;
odb::dbBTerm* bterm;
db_network_->staToDb(cur_pin, iterm, bterm, moditerm);
if (iterm) {
db_network_->connectPinAfter(const_cast<sta::Pin*>(cur_pin));
sta_->connectPinAfter(const_cast<sta::Pin*>(cur_pin));
}
if (bterm) {
db_network_->connectPinAfter(const_cast<sta::Pin*>(cur_pin));
sta_->connectPinAfter(const_cast<sta::Pin*>(cur_pin));
}
if (moditerm) {
;
}
}
}
// Get the final design state statistics
size_t final_db_net_count = block_->getNets().size();
size_t final_mod_net_count = block_->getModNets().size();
EXPECT_EQ(initial_db_net_count, 6);
EXPECT_EQ(initial_mod_net_count, 23);
EXPECT_EQ(final_mod_net_count, 28);
EXPECT_EQ(final_db_net_count, 7);
//
// Journalling test.
// Undo everything and check initial state preserved
//
odb::dbDatabase::undoEco(block_);
size_t restored_db_net_count = block_->getNets().size();
size_t restored_mod_net_count = block_->getModNets().size();
EXPECT_EQ(restored_mod_net_count, initial_mod_net_count);
EXPECT_EQ(restored_db_net_count, initial_db_net_count);
// Test deletion of a dbModInst
size_t num_mod_insts_before_delete = block_->getModInsts().size();
size_t num_mod_iterms_before_delete = block_->getModITerms().size();
dbModInst::destroy(inv1_mod_inst_);
size_t num_mod_insts_after_delete = block_->getModInsts().size();
size_t num_mod_iterms_after_delete = block_->getModITerms().size();
// Test deletion of a dbModule
size_t num_mods_before_delete = block_->getModules().size();
size_t num_mod_bterms_before_delete = block_->getModBTerms().size();
dbModule::destroy(inv1_mod_master_);
size_t num_mods_after_delete = block_->getModules().size();
size_t num_mod_bterms_after_delete = block_->getModBTerms().size();
// we have killed one module instance
EXPECT_EQ((num_mods_before_delete - num_mods_after_delete), 1);
// we have killed one module
EXPECT_EQ((num_mod_insts_before_delete - num_mod_insts_after_delete), 1);
// we are deleting an inverter, so expect to delete 2 ports
EXPECT_EQ((num_mod_bterms_before_delete - num_mod_bterms_after_delete), 2);
// and the number of moditerms reduced should be the same (2)
EXPECT_EQ((num_mod_iterms_before_delete - num_mod_iterms_after_delete),
(num_mod_bterms_before_delete - num_mod_bterms_after_delete));
}
TEST_F(TestHconn, BracketedConnectionName)
{
dbInst* source_inst = dbInst::create(block_,
lib_->findMaster("INV_X1"),
"inv1_mod_inst/bracket_source",
false,
inv1_mod_master_);
dbITerm* source_pin = source_inst->findITerm("ZN");
ASSERT_NE(source_pin, nullptr);
source_inst->findITerm("A")->connect(ip0_net_);
source_inst->findITerm("A")->connect(inv1_mod_i0_modnet_);
inv4_4_ip_->disconnect();
dbNet* flat_net = dbNet::create(block_, "path\\/data\\[5\\]", false);
ASSERT_NE(flat_net, nullptr);
source_pin->connect(flat_net);
inv4_4_ip_->connect(flat_net);
db_network_->hierarchicalConnect(
source_pin, inv4_4_ip_, "path\\/data\\[5\\]");
EXPECT_EQ(inv1_mod_master_->findModBTerm("path\\/data\\[5\\]_o"), nullptr);
EXPECT_NE(inv1_mod_master_->findModBTerm("path\\/data_5__o"), nullptr);
EXPECT_EQ(inv4_mod_level2_master_->findModBTerm("path\\/data\\[5\\]_i"),
nullptr);
EXPECT_NE(inv4_mod_level2_master_->findModBTerm("path\\/data_5__i"), nullptr);
}
} // namespace odb
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