#include #include #include #include #include #include #include #include "gtest/gtest.h" #include "helper.h" #include "odb/db.h" #include "odb/dbSet.h" #include "odb/dbTypes.h" namespace odb { namespace { struct ChipHierarchyFixture : public SimpleDbFixture { ChipHierarchyFixture() { createLibsAndTechs(); createChips(); createChipRegions(); createChipInsts(); } void createLibsAndTechs() { dbDatabase* db = db_.get(); tech1 = dbTech::create(db, "tech1"); layer_l1 = dbTechLayer::create(tech1, "L1", dbTechLayerType::MASTERSLICE); lib1 = dbLib::create(db, "lib1", tech1, ','); tech2 = dbTech::create(db, "tech2"); layer_M1 = dbTechLayer::create(tech2, "M1", dbTechLayerType::MASTERSLICE); lib2 = dbLib::create(db, "lib2", tech2, ','); } void createChips() { dbDatabase* db = db_.get(); system_chip = dbChip::create(db, nullptr, "system_chip", dbChip::ChipType::HIER); system_chip->setWidth(5000); system_chip->setHeight(4000); system_chip->setThickness(500); system_chip->setOffset(Point(10, 0)); cpu_chip = dbChip::create(db, nullptr, "cpu_chip", dbChip::ChipType::HIER); memory_chip = dbChip::create(db, tech1, "memory_chip"); io_chip = dbChip::create(db, tech2, "io_chip"); cache_chip = dbChip::create(db, tech2, "cache_chip"); // Create blocks dbBlock::create(memory_chip, "memory_block"); dbBlock::create(io_chip, "io_block"); } void createChipRegions() { memory_chip_region_r1 = dbChipRegion::create( memory_chip, "R1", dbChipRegion::Side::FRONT, layer_l1); memory_chip_region_r2 = dbChipRegion::create( memory_chip, "R2", dbChipRegion::Side::BACK, layer_l1); memory_chip_region_r3 = dbChipRegion::create( memory_chip, "R3", dbChipRegion::Side::INTERNAL, nullptr); io_chip_region_r1 = dbChipRegion::create( io_chip, "R1", dbChipRegion::Side::FRONT, layer_M1); dbChipRegion::create(cache_chip, "R1", dbChipRegion::Side::BACK, nullptr); // create chip bumps dbMaster* io_master = createMaster1X1(lib2, "io_master", 100, 100, "in", "out"); dbInst* io_cell = dbInst::create(io_chip->getBlock(), io_master, "io_bump"); io_bump = dbChipBump::create(io_chip_region_r1, io_cell); io_master = createMaster1X1(lib1, "io_master", 100, 100, "in", "out"); io_cell = dbInst::create(memory_chip->getBlock(), io_master, "io_bump"); dbChipBump::create(memory_chip_region_r1, io_cell); } void createChipInsts() { cpu_inst = dbChipInst::create(system_chip, cpu_chip, "cpu_inst"); memory_inst = dbChipInst::create(system_chip, memory_chip, "memory_inst"); io_inst = dbChipInst::create(system_chip, io_chip, "io_inst"); // Create cache instance in CPU chip (nested hierarchy) cache_inst = dbChipInst::create(cpu_chip, cache_chip, "cache_inst"); // Position components memory_inst->setLoc(Point3D(2500, 500, 0)); cache_inst->setLoc(Point3D(100, 100, 50)); cache_inst->setOrient(dbOrientType3D("MZ_MY_R90")); } dbTech* tech1; dbTech* tech2; dbLib* lib1; dbLib* lib2; dbTechLayer* layer_l1; dbTechLayer* layer_M1; dbChip* system_chip; dbChip* cpu_chip; dbChip* memory_chip; dbChip* io_chip; dbChip* cache_chip; dbChipInst* cpu_inst; dbChipInst* memory_inst; dbChipInst* io_inst; dbChipInst* cache_inst; dbChipRegion* memory_chip_region_r1; dbChipRegion* memory_chip_region_r2; dbChipRegion* memory_chip_region_r3; dbChipRegion* io_chip_region_r1; dbChipBump* io_bump; }; TEST_F(ChipHierarchyFixture, test_chip_creation) { EXPECT_EQ(db_->getChips().size(), 5); EXPECT_EQ(db_->findChip("system_chip"), system_chip); EXPECT_EQ(db_->findChip("cpu_chip"), cpu_chip); EXPECT_EQ(db_->findChip("memory_chip"), memory_chip); EXPECT_EQ(db_->findChip("io_chip"), io_chip); EXPECT_EQ(db_->findChip("cache_chip"), cache_chip); EXPECT_EQ(db_->findChip("dummy_chip"), nullptr); EXPECT_EQ(db_->getChip(), system_chip); // Test dbChip methods EXPECT_STREQ(system_chip->getName(), "system_chip"); EXPECT_EQ(system_chip->getChipType(), dbChip::ChipType::HIER); EXPECT_EQ(cache_chip->getChipType(), dbChip::ChipType::DIE); EXPECT_EQ(system_chip->getOffset(), Point(10, 0)); EXPECT_EQ(system_chip->getWidth(), 5000); EXPECT_EQ(system_chip->getHeight(), 4000); EXPECT_EQ(system_chip->getThickness(), 500); // Test dbDatabase methods db_->setTopChip(cpu_chip); EXPECT_EQ(db_->getChip(), cpu_chip); dbChip::destroy(cpu_chip); EXPECT_EQ(db_->getChips().size(), 4); EXPECT_EQ(db_->findChip("cpu_chip"), nullptr); EXPECT_EQ(db_->getChip(), nullptr); EXPECT_THROW(dbChipInst::create(system_chip, cpu_chip, "cpu_inst"), std::exception); } TEST_F(ChipHierarchyFixture, test_chip_hierarchy) { // Test system level chip instances dbSet system_chipinsts = system_chip->getChipInsts(); EXPECT_EQ(system_chipinsts.size(), 3); // Test CPU level chip instances (nested) dbSet cpu_chipinsts = cpu_chip->getChipInsts(); EXPECT_EQ(cpu_chipinsts.size(), 1); // Verify the cache instance is in the CPU chip bool found_cache = false; for (auto ci : cpu_chipinsts) { if (ci == cache_inst) { found_cache = true; EXPECT_EQ(ci->getParentChip(), cpu_chip); EXPECT_EQ(ci->getMasterChip(), cache_chip); break; } } EXPECT_TRUE(found_cache); // Test that other chips have no instances EXPECT_EQ(memory_chip->getChipInsts().size(), 0); EXPECT_EQ(io_chip->getChipInsts().size(), 0); EXPECT_EQ(cache_chip->getChipInsts().size(), 0); // Verify parent-child relationships EXPECT_EQ(cpu_inst->getParentChip(), system_chip); EXPECT_EQ(memory_inst->getParentChip(), system_chip); EXPECT_EQ(io_inst->getParentChip(), system_chip); EXPECT_EQ(cache_inst->getParentChip(), cpu_chip); EXPECT_EQ(system_chip->findChipInst("cpu_inst"), cpu_inst); EXPECT_EQ(cpu_chip->findChipInst("cache_inst"), cache_inst); EXPECT_EQ(system_chip->findChipInst("cache_inst"), nullptr); // Verify master relationships EXPECT_EQ(cpu_inst->getMasterChip(), cpu_chip); EXPECT_EQ(memory_inst->getMasterChip(), memory_chip); EXPECT_EQ(io_inst->getMasterChip(), io_chip); EXPECT_EQ(cache_inst->getMasterChip(), cache_chip); // Test positioning Point3D memory_loc = memory_inst->getLoc(); EXPECT_EQ(memory_loc.x(), 2500); EXPECT_EQ(memory_loc.y(), 500); EXPECT_EQ(memory_loc.z(), 0); EXPECT_EQ(memory_inst->getOrient().getOrientType2D(), dbOrientType::R0); EXPECT_FALSE(memory_inst->getOrient().isMirrorZ()); EXPECT_EQ(memory_inst->getOrient().getString(), "R0"); Point3D cache_loc = cache_inst->getLoc(); EXPECT_EQ(cache_loc.x(), 100); EXPECT_EQ(cache_loc.y(), 100); EXPECT_EQ(cache_loc.z(), 50); EXPECT_EQ(cache_inst->getOrient().getOrientType2D(), dbOrientType::MYR90); EXPECT_TRUE(cache_inst->getOrient().isMirrorZ()); EXPECT_EQ(cache_inst->getOrient().getString(), "MZ_MY_R90"); } TEST_F(ChipHierarchyFixture, test_chip_complex_destroy) { // Test destroying nested hierarchy EXPECT_EQ(cpu_chip->getChipInsts().size(), 1); // Destroy cache instance first dbChipInst::destroy(cache_inst); EXPECT_EQ(cpu_chip->getChipInsts().size(), 0); // Now destroy CPU instance from system EXPECT_EQ(system_chip->getChipInsts().size(), 3); dbChipInst::destroy(cpu_inst); EXPECT_EQ(system_chip->getChipInsts().size(), 2); // Verify remaining system instances bool found_memory = false, found_io = false; for (auto ci : system_chip->getChipInsts()) { if (ci == memory_inst) { found_memory = true; } if (ci == io_inst) { found_io = true; } } EXPECT_TRUE(found_memory); EXPECT_TRUE(found_io); // Clean up remaining instances dbChipInst::destroy(memory_inst); dbChipInst::destroy(io_inst); EXPECT_EQ(db_->getChipBumpInsts().size(), 0); EXPECT_EQ(db_->getChipRegionInsts().size(), 0); EXPECT_EQ(system_chip->getChipInsts().size(), 0); EXPECT_EQ(system_chip->findChipInst("cpu_inst"), nullptr); EXPECT_EQ(system_chip->findChipInst("io_inst"), nullptr); } TEST_F(ChipHierarchyFixture, test_chip_regions) { auto iterateChipRegions = [](dbChip* chip, std::set region_names) { EXPECT_EQ(chip->getChipRegions().size(), region_names.size()); for (auto region : chip->getChipRegions()) { EXPECT_NE(region_names.find(region->getName()), region_names.end()); } }; auto iterateChipRegionInsts = [](dbChipInst* chipinst, std::set region_names) { EXPECT_EQ(chipinst->getRegions().size(), region_names.size()); for (auto region : chipinst->getRegions()) { EXPECT_NE(region_names.find(region->getChipRegion()->getName()), region_names.end()); } }; // Test dbChipRegion methods EXPECT_EQ(memory_chip_region_r1->getName(), "R1"); EXPECT_EQ(memory_chip_region_r1->getSide(), dbChipRegion::Side::FRONT); EXPECT_EQ(memory_chip_region_r1->getLayer(), layer_l1); EXPECT_EQ(memory_chip_region_r1->getChip(), memory_chip); EXPECT_EQ(memory_chip_region_r3->getSide(), dbChipRegion::Side::INTERNAL); EXPECT_EQ(memory_chip_region_r3->getLayer(), nullptr); // Test dbChip::findChipRegion EXPECT_EQ(memory_chip->findChipRegion("R1"), memory_chip_region_r1); EXPECT_EQ(memory_chip->findChipRegion("R2"), memory_chip_region_r2); EXPECT_EQ(memory_chip->findChipRegion("R3"), memory_chip_region_r3); EXPECT_EQ(memory_chip->findChipRegion("R4"), nullptr); // Test dbChipInst::findChipRegionInst EXPECT_EQ(memory_inst->findChipRegionInst("R1")->getChipRegion(), memory_chip_region_r1); EXPECT_EQ(memory_inst->findChipRegionInst("R2")->getChipRegion(), memory_chip_region_r2); EXPECT_EQ(memory_inst->findChipRegionInst("R3")->getChipRegion(), memory_chip_region_r3); EXPECT_EQ(memory_inst->findChipRegionInst("R4"), nullptr); iterateChipRegions(memory_chip, {"R1", "R2", "R3"}); iterateChipRegionInsts(memory_inst, {"R1", "R2", "R3"}); iterateChipRegions(io_chip, {"R1"}); EXPECT_THROW( dbChipRegion::create(cpu_chip, "R1", dbChipRegion::Side::FRONT, layer_l1), std::exception); EXPECT_THROW( dbChipRegion::create( memory_chip, "region_M1", dbChipRegion::Side::FRONT, layer_M1), std::exception); } TEST_F(ChipHierarchyFixture, test_chip_conns) { dbChipRegionInst* cache_region_inst_r1 = (dbChipRegionInst*) (*cache_inst->getRegions().begin()); dbChipRegionInst* memory_region_inst_r1 = nullptr; for (auto region : memory_inst->getRegions()) { if (region->getChipRegion() == memory_chip_region_r1) { memory_region_inst_r1 = region; break; } } ASSERT_NE(memory_region_inst_r1, nullptr); odb::dbChipConn* conn = odb::dbChipConn::create("CONN1", system_chip, {cpu_inst, cache_inst}, cache_region_inst_r1, {memory_inst}, memory_region_inst_r1); EXPECT_EQ(conn->getName(), "CONN1"); EXPECT_EQ(conn->getTopRegion(), cache_region_inst_r1); EXPECT_EQ(conn->getBottomRegion(), memory_region_inst_r1); EXPECT_EQ(conn->getTopRegionPath().size(), 2); EXPECT_EQ(conn->getBottomRegionPath().size(), 1); EXPECT_EQ(conn->getTopRegionPath()[0], cpu_inst); EXPECT_EQ(conn->getTopRegionPath()[1], cache_inst); EXPECT_EQ(conn->getBottomRegionPath()[0], memory_inst); EXPECT_EQ(db_->getChipConns().size(), 1); EXPECT_EQ(system_chip->getChipConns().size(), 1); dbChipConn::destroy(conn); EXPECT_EQ(db_->getChipConns().size(), 0); EXPECT_EQ(system_chip->getChipConns().size(), 0); EXPECT_THROW(odb::dbChipConn::create("CONN2", system_chip, {cache_inst}, cache_region_inst_r1, {memory_inst}, memory_region_inst_r1), std::exception); EXPECT_THROW(odb::dbChipConn::create("CONN2", system_chip, {cache_inst}, memory_region_inst_r1, {memory_inst}, cache_region_inst_r1), std::exception); } TEST_F(ChipHierarchyFixture, test_chip_bumps) { EXPECT_EQ(io_bump->getInst()->getName(), "io_bump"); EXPECT_EQ(io_bump->getChip(), io_chip); EXPECT_EQ(io_bump->getChipRegion(), io_chip_region_r1); EXPECT_EQ(io_bump->getNet(), nullptr); EXPECT_EQ(io_bump->getBTerm(), nullptr); dbNet* net = dbNet::create(io_chip->getBlock(), "net1"); dbBTerm* bterm = dbBTerm::create(net, "bterm1"); // Before setBTerm, getChipBump returns nullptr EXPECT_EQ(bterm->getChipBump(), nullptr); io_bump->setNet(net); io_bump->setBTerm(bterm); EXPECT_EQ(io_bump->getNet(), net); EXPECT_EQ(io_bump->getBTerm(), bterm); // After setBTerm, getChipBump returns the bump (back-reference) EXPECT_EQ(bterm->getChipBump(), io_bump); EXPECT_EQ(io_chip_region_r1->getChipBumps().size(), 1); EXPECT_EQ(*io_chip_region_r1->getChipBumps().begin(), io_bump); EXPECT_EQ(db_->getChipBumpInsts().size(), 2); EXPECT_EQ(io_inst->getRegions().size(), 1); auto io_inst_region_r1 = *io_inst->getRegions().begin(); EXPECT_EQ(io_inst_region_r1->getChipBumpInsts().size(), 1); auto io_inst_region_r1_bump_inst = *io_inst_region_r1->getChipBumpInsts().begin(); EXPECT_EQ(io_inst_region_r1_bump_inst->getChipBump(), io_bump); EXPECT_EQ(io_bump->getInst()->getChipBump(), io_bump); EXPECT_EQ(io_inst_region_r1_bump_inst->getChipRegionInst(), io_inst_region_r1); // test chip nets dbChipNet* chip_net = dbChipNet::create(system_chip, "net1"); EXPECT_EQ(chip_net->getChip(), system_chip); EXPECT_EQ(chip_net->getNumBumpInsts(), 0); EXPECT_EQ(system_chip->getChipNets().size(), 1); EXPECT_EQ(db_->getChipNets().size(), 1); chip_net->addBumpInst(io_inst_region_r1_bump_inst, {io_inst}); dbChipRegionInst* memory_inst_region_r1 = nullptr; for (auto region : memory_inst->getRegions()) { if (region->getChipRegion() == memory_chip_region_r1) { memory_inst_region_r1 = region; break; } } EXPECT_EQ(memory_inst_region_r1->getChipBumpInsts().size(), 1); auto memory_inst_region_r1_bump_inst = (*memory_inst_region_r1->getChipBumpInsts().begin()); chip_net->addBumpInst(memory_inst_region_r1_bump_inst, {memory_inst}); EXPECT_EQ(chip_net->getNumBumpInsts(), 2); std::vector path; EXPECT_EQ(chip_net->getBumpInst(0, path), io_inst_region_r1_bump_inst); EXPECT_EQ(path.size(), 1); EXPECT_EQ(path[0], io_inst); dbInst* io_cell = memory_chip->getBlock()->findInst("io_bump"); EXPECT_THROW(dbChipBump::create(io_chip_region_r1, io_cell), std::exception); } TEST_F(SimpleDbFixture, test_chip_bump_bterm_serialization) { createSimpleDB(); dbChip* chip = db_->getChip(); dbBlock* block = chip->getBlock(); // Create a chip region and a bump backed by an inst dbChipRegion* region = dbChipRegion::create( chip, "bump_region", dbChipRegion::Side::BACK, nullptr); dbLib* lib = db_->findLib("lib1"); dbMaster* bump_master = dbMaster::create(lib, "BUMP_CELL"); bump_master->setType(dbMasterType::COVER_BUMP); bump_master->setFrozen(); dbInst* bump_inst = dbInst::create(block, bump_master, "bump1"); dbChipBump* bump = dbChipBump::create(region, bump_inst); ASSERT_NE(bump, nullptr); // Associate a bterm with the bump dbBTerm* bterm = dbBTerm::create(dbNet::create(block, "SIG1"), "SIG1"); bump->setBTerm(bterm); ASSERT_EQ(bterm->getChipBump(), bump); // Write the database to a temp file std::filesystem::create_directory("results"); const std::string tmp_path = "results/test_chip_bump_bterm_serialization.odb"; { std::ofstream out; out.exceptions(std::ifstream::failbit | std::ifstream::badbit | std::ios::eofbit); out.open(tmp_path, std::ios::binary); db_->write(out); } // Read it back into a fresh database dbDatabase* db2 = dbDatabase::create(); { std::ifstream in; in.exceptions(std::ifstream::failbit | std::ifstream::badbit | std::ios::eofbit); in.open(tmp_path, std::ios::binary); db2->read(in); } // Locate the deserialized objects dbBlock* block2 = db2->getChip()->getBlock(); ASSERT_NE(block2, nullptr); dbBTerm* bterm2 = block2->findBTerm("SIG1"); ASSERT_NE(bterm2, nullptr); dbChipRegion* region2 = db2->getChip()->findChipRegion("bump_region"); ASSERT_NE(region2, nullptr); ASSERT_EQ(region2->getChipBumps().size(), 1); dbChipBump* bump2 = *region2->getChipBumps().begin(); ASSERT_NE(bump2, nullptr); // Verify the back-reference survived serialization EXPECT_EQ(bterm2->getChipBump(), bump2); EXPECT_EQ(bump2->getBTerm(), bterm2); } TEST_F(ChipHierarchyFixture, test_chip_parasitics) { auto io_bump_inst = *(*io_inst->getRegions().begin())->getChipBumpInsts().begin(); dbChipRegionInst* memory_region = nullptr; for (auto region : memory_inst->getRegions()) { if (region->getChipRegion() == memory_chip_region_r1) { memory_region = region; break; } } ASSERT_NE(memory_region, nullptr); auto memory_bump_inst = *memory_region->getChipBumpInsts().begin(); dbChipNet* net = dbChipNet::create(system_chip, "net1"); net->addBumpInst(io_bump_inst, {io_inst}); net->addBumpInst(memory_bump_inst, {memory_inst}); dbChipCapNode* source = dbChipCapNode::create(net); source->setCapacitance(1.5); source->setChipBumpInst(io_bump_inst); dbChipCapNode* target = dbChipCapNode::create(net); target->setChipBumpInst(memory_bump_inst); EXPECT_EQ(net->getChipCapNodes().size(), 2); EXPECT_FLOAT_EQ(source->getCapacitance(), 1.5); EXPECT_EQ(source->getChipBumpInst(), io_bump_inst); EXPECT_EQ(source->getChipNet(), net); // getBTerm resolves through the bump, and is null until the bump has one. EXPECT_EQ(source->getBTerm(), nullptr); dbBTerm* bterm = dbBTerm::create(dbNet::create(io_chip->getBlock(), "sig"), "sig"); io_bump->setBTerm(bterm); EXPECT_EQ(source->getBTerm(), bterm); dbChipRSeg* r_seg = dbChipRSeg::create(net, source, target); r_seg->setResistance(0.097); EXPECT_EQ(net->getChipRSegs().size(), 1); EXPECT_FLOAT_EQ(r_seg->getResistance(), 0.097); EXPECT_EQ(r_seg->getSourceCapNode(), source); EXPECT_EQ(r_seg->getTargetCapNode(), target); EXPECT_EQ(r_seg->getChipNet(), net); // create() rejects null, identical, and foreign-net cap nodes. EXPECT_THROW(dbChipRSeg::create(net, nullptr, target), std::exception); EXPECT_THROW(dbChipRSeg::create(net, source, source), std::exception); dbChipNet* other_net = dbChipNet::create(system_chip, "net2"); dbChipCapNode* other_cap_node = dbChipCapNode::create(other_net); EXPECT_THROW(dbChipRSeg::create(net, source, other_cap_node), std::exception); // A null net returns null rather than dereferencing it. EXPECT_EQ(dbChipCapNode::create(nullptr), nullptr); EXPECT_EQ(dbChipRSeg::create(nullptr, source, target), nullptr); // destroy() unlinks from the net's lists. dbChipRSeg::destroy(r_seg); EXPECT_EQ(net->getChipRSegs().size(), 0); dbChipCapNode::destroy(source); EXPECT_EQ(net->getChipCapNodes().size(), 1); } TEST_F(ChipHierarchyFixture, test_chip_rseg_outlives_cap_node) { dbChipNet* net = dbChipNet::create(system_chip, "net1"); dbChipCapNode* source = dbChipCapNode::create(net); dbChipCapNode* target = dbChipCapNode::create(net); dbChipRSeg* r_seg = dbChipRSeg::create(net, source, target); // A cap node freed before the r-seg must not corrupt destroy()/getChipNet(): // both resolve the net directly, not through the (now gone) cap node. dbChipCapNode::destroy(source); EXPECT_EQ(r_seg->getChipNet(), net); dbChipRSeg::destroy(r_seg); EXPECT_EQ(net->getChipRSegs().size(), 0); } TEST_F(ChipHierarchyFixture, test_chip_net_destroys_parasitics) { dbChipNet* net = dbChipNet::create(system_chip, "net1"); dbChipCapNode* source = dbChipCapNode::create(net); dbChipCapNode* target = dbChipCapNode::create(net); dbChipRSeg::create(net, source, target); EXPECT_EQ(system_chip->getChipCapNodes().size(), 2); EXPECT_EQ(system_chip->getChipRSegs().size(), 1); dbChipNet::destroy(net); EXPECT_EQ(system_chip->getChipCapNodes().size(), 0); EXPECT_EQ(system_chip->getChipRSegs().size(), 0); } TEST_F(SimpleDbFixture, test_chip_parasitics_serialization) { createSimpleDB(); dbChip* chip = db_->getChip(); dbChipNet* net = dbChipNet::create(chip, "net1"); dbChipCapNode* source = dbChipCapNode::create(net); source->setCapacitance(2.5); dbChipCapNode* target = dbChipCapNode::create(net); dbChipRSeg* r_seg = dbChipRSeg::create(net, source, target); r_seg->setResistance(0.097); std::filesystem::create_directory("results"); const std::string tmp_path = "results/test_chip_parasitics_serialization.odb"; { std::ofstream out; out.exceptions(std::ifstream::failbit | std::ifstream::badbit | std::ios::eofbit); out.open(tmp_path, std::ios::binary); db_->write(out); } dbDatabase* db2 = dbDatabase::create(); { std::ifstream in; in.exceptions(std::ifstream::failbit | std::ifstream::badbit | std::ios::eofbit); in.open(tmp_path, std::ios::binary); db2->read(in); } dbChip* chip2 = db2->getChip(); ASSERT_NE(chip2, nullptr); ASSERT_EQ(chip2->getChipNets().size(), 1); dbChipNet* net2 = *chip2->getChipNets().begin(); ASSERT_EQ(net2->getChipCapNodes().size(), 2); ASSERT_EQ(net2->getChipRSegs().size(), 1); dbChipRSeg* r_seg2 = *net2->getChipRSegs().begin(); EXPECT_FLOAT_EQ(r_seg2->getResistance(), 0.097); EXPECT_FLOAT_EQ(r_seg2->getSourceCapNode()->getCapacitance(), 2.5); EXPECT_EQ(r_seg2->getSourceCapNode()->getChipNet(), net2); EXPECT_EQ(r_seg2->getTargetCapNode()->getChipNet(), net2); } } // namespace } // namespace odb