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| namespace odb { | |
| class TestDbNet : public tst::Fixture | |
| { | |
| protected: | |
| struct ComplexHierarchy | |
| { | |
| dbNet* the_net = nullptr; | |
| odb::PtrSet<odb::dbModNet> expected_modnets; | |
| }; | |
| struct SingleModuleCollision | |
| { | |
| dbModule* module = nullptr; | |
| dbModInst* mod_inst = nullptr; | |
| dbInst* leaf_inst = nullptr; | |
| dbNet* flat_net = nullptr; | |
| }; | |
| void SetUp() override | |
| { | |
| library_ = readLiberty("_main/test/Nangate45/Nangate45_typ.lib"); | |
| loadTechAndLib( | |
| "tech", "Nangate45.lef", "_main/test/Nangate45/Nangate45.lef"); | |
| dbChip* chip = dbChip::create(db_.get(), db_->getTech()); | |
| block_ = dbBlock::create(chip, "top"); | |
| } | |
| ComplexHierarchy SetUpComplexHierarchy(const std::string& net_name, | |
| const std::string& top_mod_net_name) | |
| { | |
| ComplexHierarchy hierarchy; | |
| // ARRANGE | |
| // Create a hierarchy: | |
| // top_mod | |
| // |-- l1_inst_A (l1_mod_A) | |
| // | |-- l2_inst_A1 (l2_mod_A1) | |
| // | | +-- leaf_inst_1 (AND2_X1) | |
| // | +-- l2_inst_A2 (l2_mod_A2) | |
| // | +-- leaf_inst_2 (OR2_X1) | |
| // |-- l1_inst_B (l1_mod_B) | |
| // | +-- leaf_inst_3 (INV_X1) | |
| // +-- leaf_inst_4 (AND2_X1) | |
| auto* top_mod = block_->getTopModule(); | |
| auto* l1_mod_A = dbModule::create(block_, "l1_mod_A"); | |
| auto* l1_mod_B = dbModule::create(block_, "l1_mod_B"); | |
| auto* l2_mod_A1 = dbModule::create(block_, "l2_mod_A1"); | |
| auto* l2_mod_A2 = dbModule::create(block_, "l2_mod_A2"); | |
| auto* l1_inst_A = dbModInst::create(top_mod, l1_mod_A, "l1_inst_A"); | |
| auto* l1_inst_B = dbModInst::create(top_mod, l1_mod_B, "l1_inst_B"); | |
| auto* l2_inst_A1 = dbModInst::create(l1_mod_A, l2_mod_A1, "l2_inst_A1"); | |
| auto* l2_inst_A2 = dbModInst::create(l1_mod_A, l2_mod_A2, "l2_inst_A2"); | |
| auto* and2_master = db_->findMaster("AND2_X1"); | |
| auto* or2_master = db_->findMaster("OR2_X1"); | |
| auto* inv1_master = db_->findMaster("INV_X1"); | |
| auto* leaf_inst_1 | |
| = dbInst::create(block_, and2_master, "leaf_inst_1", false, l2_mod_A1); | |
| auto* leaf_inst_2 | |
| = dbInst::create(block_, or2_master, "leaf_inst_2", false, l2_mod_A2); | |
| auto* leaf_inst_3 | |
| = dbInst::create(block_, inv1_master, "leaf_inst_3", false, l1_mod_B); | |
| auto* leaf_inst_4 | |
| = dbInst::create(block_, and2_master, "leaf_inst_4", false, top_mod); | |
| hierarchy.the_net = dbNet::create(block_, net_name.c_str()); | |
| auto* in_bterm = dbBTerm::create(hierarchy.the_net, "in_port"); | |
| in_bterm->setIoType(dbIoType::INPUT); | |
| auto* out_bterm = dbBTerm::create(hierarchy.the_net, "out_port"); | |
| out_bterm->setIoType(dbIoType::OUTPUT); | |
| auto* top_mod_net = dbModNet::create(top_mod, top_mod_net_name.c_str()); | |
| hierarchy.expected_modnets.insert(top_mod_net); | |
| auto* l1_mod_A_net = dbModNet::create(l1_mod_A, "l1_mod_A_net"); | |
| hierarchy.expected_modnets.insert(l1_mod_A_net); | |
| auto* l1_mod_B_net = dbModNet::create(l1_mod_B, "l1_mod_B_net"); | |
| hierarchy.expected_modnets.insert(l1_mod_B_net); | |
| auto* l2_mod_A1_net = dbModNet::create(l2_mod_A1, "l2_mod_A1_net"); | |
| hierarchy.expected_modnets.insert(l2_mod_A1_net); | |
| auto* l2_mod_A2_net = dbModNet::create(l2_mod_A2, "l2_mod_A2_net"); | |
| hierarchy.expected_modnets.insert(l2_mod_A2_net); | |
| in_bterm->connect(top_mod_net); | |
| out_bterm->connect(top_mod_net); | |
| leaf_inst_1->findITerm("A1")->connect(hierarchy.the_net, l2_mod_A1_net); | |
| leaf_inst_2->findITerm("A2")->connect(hierarchy.the_net, l2_mod_A2_net); | |
| leaf_inst_3->findITerm("A")->connect(hierarchy.the_net, l1_mod_B_net); | |
| leaf_inst_4->findITerm("A1")->connect(hierarchy.the_net, top_mod_net); | |
| auto* l2_mod_A1_bterm = dbModBTerm::create(l2_mod_A1, "p0"); | |
| l2_mod_A1_bterm->connect(l2_mod_A1_net); | |
| auto* l2_inst_A1_iterm | |
| = dbModITerm::create(l2_inst_A1, "p0", l2_mod_A1_bterm); | |
| l2_inst_A1_iterm->connect(l1_mod_A_net); | |
| auto* l2_mod_A2_bterm = dbModBTerm::create(l2_mod_A2, "p0"); | |
| l2_mod_A2_bterm->connect(l2_mod_A2_net); | |
| auto* l2_inst_A2_iterm | |
| = dbModITerm::create(l2_inst_A2, "p0", l2_mod_A2_bterm); | |
| l2_inst_A2_iterm->connect(l1_mod_A_net); | |
| auto* l1_mod_A_bterm = dbModBTerm::create(l1_mod_A, "p0"); | |
| l1_mod_A_bterm->connect(l1_mod_A_net); | |
| auto* l1_inst_A_iterm = dbModITerm::create(l1_inst_A, "p0", l1_mod_A_bterm); | |
| l1_inst_A_iterm->connect(top_mod_net); | |
| auto* l1_mod_B_bterm = dbModBTerm::create(l1_mod_B, "p0"); | |
| l1_mod_B_bterm->connect(l1_mod_B_net); | |
| auto* l1_inst_B_iterm = dbModITerm::create(l1_inst_B, "p0", l1_mod_B_bterm); | |
| l1_inst_B_iterm->connect(top_mod_net); | |
| return hierarchy; | |
| } | |
| SingleModuleCollision SetUpSingleModuleCollision( | |
| const std::string& module_name, | |
| const std::string& inst_name, | |
| const std::string& net_base_name) | |
| { | |
| SingleModuleCollision collision; | |
| db_->setHierarchy(true); | |
| auto* top_mod = block_->getTopModule(); | |
| collision.module = dbModule::create(block_, module_name.c_str()); | |
| collision.mod_inst | |
| = dbModInst::create(top_mod, collision.module, inst_name.c_str()); | |
| auto* inv_master = db_->findMaster("INV_X1"); | |
| collision.leaf_inst = dbInst::create(block_, | |
| inv_master, | |
| (inst_name + "_leaf").c_str(), | |
| false, | |
| collision.module); | |
| collision.flat_net | |
| = dbNet::create(block_, (inst_name + "/" + net_base_name).c_str()); | |
| collision.leaf_inst->findITerm("A")->connect(collision.flat_net); | |
| return collision; | |
| } | |
| dbBlock* block_; | |
| sta::LibertyLibrary* library_; | |
| }; | |
| // Test a multi-level hierarchy where a dbNet is connected to multiple | |
| // bterms and iterms across the hierarchy. | |
| // We expect to find all the modnets connected up through the hierarchy. | |
| TEST_F(TestDbNet, FindRelatedModNetsComplex) | |
| { | |
| // ARRANGE | |
| const auto hierarchy = SetUpComplexHierarchy("the_net", "top_mod_net"); | |
| // ACTION | |
| odb::PtrSet<odb::dbModNet> related_modnets; | |
| hierarchy.the_net->findRelatedModNets(related_modnets); | |
| // ASSERT | |
| ASSERT_EQ(related_modnets.size(), hierarchy.expected_modnets.size()); | |
| for (auto* expected_net : hierarchy.expected_modnets) { | |
| EXPECT_NE(related_modnets.find(expected_net), related_modnets.end()) | |
| << "Missing " << expected_net->getName(); | |
| } | |
| } | |
| // Test that calling the function on a net with no modnet connections | |
| // returns an empty set. | |
| TEST_F(TestDbNet, FindRelatedModNetsNone) | |
| { | |
| // ARRANGE | |
| auto* net = dbNet::create(block_, "net_no_modnet"); | |
| auto* inst = dbInst::create(block_, db_->findMaster("AND2_X1"), "i1"); | |
| inst->findITerm("A1")->connect(net); | |
| // ACTION | |
| odb::PtrSet<odb::dbModNet> related_modnets; | |
| net->findRelatedModNets(related_modnets); | |
| // ASSERT | |
| EXPECT_TRUE(related_modnets.empty()); | |
| } | |
| // Test that calling the function with a pre-filled set clears it first. | |
| TEST_F(TestDbNet, FindRelatedModNetsClearsSet) | |
| { | |
| // ARRANGE | |
| auto* net = dbNet::create(block_, "some_net"); | |
| auto* top_mod = block_->getTopModule(); | |
| auto* dummy_mod_net = dbModNet::create(top_mod, "dummy"); | |
| odb::PtrSet<odb::dbModNet> related_modnets; | |
| related_modnets.insert(dummy_mod_net); | |
| // ACTION | |
| net->findRelatedModNets(related_modnets); | |
| // ASSERT | |
| EXPECT_TRUE(related_modnets.empty()); | |
| } | |
| TEST_F(TestDbNet, InsertBufferIgnoresSupplyInputs) | |
| { | |
| dbMaster* inv_master = db_->findMaster("INV_X1"); | |
| ASSERT_NE(inv_master, nullptr); | |
| dbMaster* buffer_master | |
| = dbMaster::create(inv_master->getLib(), "BUF_WITH_INPUT_SUPPLIES"); | |
| buffer_master->setWidth(inv_master->getWidth()); | |
| buffer_master->setHeight(inv_master->getHeight()); | |
| buffer_master->setType(dbMasterType::CORE); | |
| dbMTerm* buffer_input | |
| = dbMTerm::create(buffer_master, "A", dbIoType::INPUT, dbSigType::SIGNAL); | |
| dbMTerm* buffer_output = dbMTerm::create( | |
| buffer_master, "Z", dbIoType::OUTPUT, dbSigType::SIGNAL); | |
| dbMTerm::create(buffer_master, "VDD", dbIoType::INPUT, dbSigType::POWER); | |
| dbMTerm::create(buffer_master, "VSS", dbIoType::INPUT, dbSigType::GROUND); | |
| buffer_master->setFrozen(); | |
| dbInst* driver = dbInst::create(block_, inv_master, "driver"); | |
| dbInst* load = dbInst::create(block_, inv_master, "load"); | |
| dbITerm* driver_output = driver->findITerm("ZN"); | |
| dbITerm* load_input = load->findITerm("A"); | |
| ASSERT_NE(driver_output, nullptr); | |
| ASSERT_NE(load_input, nullptr); | |
| dbNet* net = dbNet::create(block_, "signal"); | |
| driver_output->connect(net); | |
| load_input->connect(net); | |
| dbInst* buffer | |
| = net->insertBufferBeforeLoad(load_input, buffer_master, nullptr, "buf"); | |
| ASSERT_NE(buffer, nullptr); | |
| EXPECT_EQ(buffer->getITerm(buffer_input)->getNet(), net); | |
| dbNet* buffered_net = buffer->getITerm(buffer_output)->getNet(); | |
| ASSERT_NE(buffered_net, nullptr); | |
| EXPECT_NE(buffered_net, net); | |
| EXPECT_EQ(load_input->getNet(), buffered_net); | |
| EXPECT_EQ(buffer->findITerm("VDD")->getNet(), nullptr); | |
| EXPECT_EQ(buffer->findITerm("VSS")->getNet(), nullptr); | |
| } | |
| // Test that the net is renamed to the name of the highest-level modnet | |
| TEST_F(TestDbNet, RenameWithModNetInHighestHier) | |
| { | |
| // ARRANGE | |
| const auto hierarchy | |
| = SetUpComplexHierarchy("original_name", "top_level_name"); | |
| // ACTION | |
| hierarchy.the_net->renameWithModNetInHighestHier(); | |
| // ASSERT | |
| EXPECT_EQ(hierarchy.the_net->getName(), "top_level_name"); | |
| } | |
| // Test that the net name is unchanged if there are no hierarchical connections | |
| TEST_F(TestDbNet, RenameWithModNetNoHier) | |
| { | |
| // ARRANGE | |
| auto* net = dbNet::create(block_, "original_name"); | |
| auto* inst = dbInst::create(block_, db_->findMaster("AND2_X1"), "i1"); | |
| inst->findITerm("A1")->connect(net); | |
| // ACTION | |
| net->renameWithModNetInHighestHier(); | |
| // ASSERT | |
| EXPECT_EQ(net->getName(), "original_name"); | |
| } | |
| TEST_F(TestDbNet, FlatNetNameCollisionWithBareModNetThrows) | |
| { | |
| const auto collision = SetUpSingleModuleCollision("child_mod", "u0", "sig"); | |
| auto* orphan_modnet = dbModNet::create(collision.module, "tmp_modnet"); | |
| ASSERT_NE(orphan_modnet, nullptr); | |
| orphan_modnet->rename("sig"); | |
| EXPECT_STREQ(orphan_modnet->getConstName(), "sig"); | |
| EXPECT_THROW(collision.flat_net->checkSanityNameCollision(), | |
| std::runtime_error); | |
| EXPECT_THROW(orphan_modnet->checkSanityNameCollision(), std::runtime_error); | |
| } | |
| TEST_F(TestDbNet, FlatNetNameCollisionWithBareModBTermThrows) | |
| { | |
| const auto collision | |
| = SetUpSingleModuleCollision("child_mod_bterm", "u1", "sig"); | |
| auto* orphan_bterm = dbModBTerm::create(collision.module, "sig"); | |
| ASSERT_NE(orphan_bterm, nullptr); | |
| orphan_bterm->setIoType(dbIoType::INPUT); | |
| EXPECT_EQ(orphan_bterm->getModNet(), nullptr); | |
| EXPECT_THROW(collision.flat_net->checkSanityNameCollision(), | |
| std::runtime_error); | |
| } | |
| } // namespace odb | |