Add batch 1 (YosysHQ_picorv32, alexforencich_verilog-ethernet, The-OpenROAD-Project_OpenROAD, darklife_darkriscv, corundum_corundum)
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| namespace odb { | |
| namespace { | |
| static const std::string prefix("_main/src/odb/test/"); | |
| class DbvFixture : public tst::DbFixture | |
| { | |
| protected: | |
| DbvFixture() | |
| { | |
| dbTech::create(db_.get(), "tech"); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example.3dbx"); | |
| parser.readDbx(path); | |
| } | |
| }; | |
| TEST_F(DbvFixture, test_3dbv) | |
| { | |
| // Test that database precision was set correctly | |
| EXPECT_EQ(db_->getDbuPerMicron(), 2000); | |
| auto chips = db_->getChips(); | |
| EXPECT_EQ(chips.size(), 2); | |
| auto chip = *chips.begin(); | |
| EXPECT_STREQ(chip->getName(), "SoC"); | |
| EXPECT_EQ(chip->getChipType(), dbChip::ChipType::DIE); | |
| // Test chip dimensions (converted to DBU) | |
| int expected_width = 955 * db_->getDbuPerMicron(); | |
| int expected_height = 1082 * db_->getDbuPerMicron(); | |
| int expected_thickness = 300 * db_->getDbuPerMicron(); | |
| EXPECT_EQ(chip->getWidth(), expected_width); | |
| EXPECT_EQ(chip->getHeight(), expected_height); | |
| EXPECT_EQ(chip->getThickness(), expected_thickness); | |
| // Test chip properties | |
| EXPECT_NEAR(chip->getShrink(), 1.0, 0.001); | |
| EXPECT_EQ(chip->isTsv(), false); | |
| // Test chip regions were created | |
| auto regions = chip->getChipRegions(); | |
| EXPECT_EQ(regions.size(), 2); | |
| auto region = chip->findChipRegion("back_reg"); | |
| ASSERT_NE(region, nullptr); | |
| EXPECT_EQ(region->getSide(), dbChipRegion::Side::BACK); | |
| // Test region bounding box | |
| Rect region_box = region->getBox(); | |
| int expected_x1 = 0 * db_->getDbuPerMicron(); | |
| int expected_y1 = 0 * db_->getDbuPerMicron(); | |
| int expected_x2 = 955 * db_->getDbuPerMicron(); | |
| int expected_y2 = 1082 * db_->getDbuPerMicron(); | |
| EXPECT_EQ(region_box.xMin(), expected_x1); | |
| EXPECT_EQ(region_box.yMin(), expected_y1); | |
| EXPECT_EQ(region_box.xMax(), expected_x2); | |
| EXPECT_EQ(region_box.yMax(), expected_y2); | |
| } | |
| TEST_F(DbvFixture, test_3dbx) | |
| { | |
| auto chip_insts = db_->getChipInsts(); | |
| EXPECT_EQ(chip_insts.size(), 2); | |
| auto soc_inst = db_->getChip()->findChipInst("soc_inst"); | |
| auto soc_inst_duplicate = db_->getChip()->findChipInst("soc_inst_duplicate"); | |
| EXPECT_EQ(soc_inst->getName(), "soc_inst"); | |
| EXPECT_STREQ(soc_inst->getMasterChip()->getName(), "SoC"); | |
| EXPECT_STREQ(soc_inst->getParentChip()->getName(), "TopDesign"); | |
| EXPECT_EQ(soc_inst_duplicate->getName(), "soc_inst_duplicate"); | |
| EXPECT_STREQ(soc_inst_duplicate->getMasterChip()->getName(), "SoC"); | |
| EXPECT_STREQ(soc_inst_duplicate->getParentChip()->getName(), "TopDesign"); | |
| EXPECT_EQ(soc_inst->getLoc().x(), 100.0 * db_->getDbuPerMicron()); | |
| EXPECT_EQ(soc_inst->getLoc().y(), 200.0 * db_->getDbuPerMicron()); | |
| EXPECT_EQ(soc_inst->getLoc().z(), 0.0); | |
| EXPECT_EQ(soc_inst->getOrient().getString(), "R0"); | |
| EXPECT_EQ(soc_inst_duplicate->getLoc().x(), 100.0 * db_->getDbuPerMicron()); | |
| EXPECT_EQ(soc_inst_duplicate->getLoc().y(), 200.0 * db_->getDbuPerMicron()); | |
| EXPECT_EQ(soc_inst_duplicate->getLoc().z(), 300.0 * db_->getDbuPerMicron()); | |
| EXPECT_EQ(soc_inst_duplicate->getOrient().getString(), "MZ"); | |
| auto connections = db_->getChipConns(); | |
| EXPECT_EQ(connections.size(), 2); | |
| auto itr = connections.begin(); | |
| auto connection = *itr++; | |
| EXPECT_EQ(connection->getName(), "soc_to_soc"); | |
| EXPECT_EQ(connection->getTopRegion()->getChipInst()->getName(), | |
| "soc_inst_duplicate"); | |
| EXPECT_EQ(connection->getBottomRegion()->getChipInst()->getName(), | |
| "soc_inst"); | |
| EXPECT_EQ(connection->getThickness(), 0); | |
| connection = *itr; | |
| EXPECT_EQ(connection->getName(), "soc_to_virtual"); | |
| EXPECT_EQ(connection->getTopRegion()->getChipInst()->getName(), "soc_inst"); | |
| EXPECT_EQ(connection->getTopRegionPath().size(), 1); | |
| EXPECT_EQ(connection->getTopRegionPath()[0]->getName(), "soc_inst"); | |
| EXPECT_EQ(connection->getTopRegion()->getChipRegion()->getName(), "back_reg"); | |
| EXPECT_EQ(connection->getBottomRegionPath().size(), 0); | |
| EXPECT_EQ(connection->getBottomRegion(), nullptr); | |
| EXPECT_EQ(connection->getThickness(), 0.0); | |
| } | |
| TEST_F(DbvFixture, test_bump_map_parser) | |
| { | |
| auto region = db_->findChip("SoC")->findChipRegion("back_reg"); | |
| ASSERT_NE(region, nullptr); | |
| EXPECT_EQ(region->getChipBumps().size(), 2); | |
| auto bump = *region->getChipBumps().begin(); | |
| EXPECT_EQ(bump->getInst()->getName(), "bump1"); | |
| EXPECT_EQ(bump->getInst()->getMaster()->getName(), "BUMP"); | |
| const double bump_size2 = 29.0 / 2; | |
| EXPECT_EQ(bump->getInst()->getOrigin().x(), | |
| (100.0 - bump_size2) * db_->getDbuPerMicron()); | |
| EXPECT_EQ(bump->getInst()->getOrigin().y(), | |
| (200.0 - bump_size2) * db_->getDbuPerMicron()); | |
| EXPECT_EQ(bump->getNet(), nullptr); | |
| EXPECT_EQ(bump->getBTerm(), nullptr); | |
| auto soc_inst = db_->getChip()->findChipInst("soc_inst"); | |
| auto region_inst = soc_inst->findChipRegionInst("back_reg"); | |
| ASSERT_NE(region_inst, nullptr); | |
| EXPECT_EQ(region_inst->getChipBumpInsts().size(), 2); | |
| auto bump_inst = *region_inst->getChipBumpInsts().begin(); | |
| EXPECT_EQ(bump_inst->getChipBump(), bump); | |
| EXPECT_EQ(bump_inst->getChipRegionInst(), region_inst); | |
| } | |
| TEST_F(SimpleDbFixture, test_bump_map_reader) | |
| { | |
| createSimpleDB(); | |
| db_->setDbuPerMicron(1000); | |
| // Create BUMP master | |
| dbLib* lib = db_->findLib("lib1"); | |
| dbTechLayer* bot_layer | |
| = dbTechLayer::create(lib->getTech(), "BOT", dbTechLayerType::ROUTING); | |
| dbTechLayer* layer | |
| = dbTechLayer::create(lib->getTech(), "TOP", dbTechLayerType::ROUTING); | |
| dbMaster* master = dbMaster::create(lib, "BUMP"); | |
| master->setWidth(10000); | |
| master->setHeight(10000); | |
| master->setOrigin(5000, 5000); | |
| master->setType(dbMasterType::COVER_BUMP); | |
| dbMTerm* term | |
| = dbMTerm::create(master, "PAD", dbIoType::INOUT, dbSigType::SIGNAL); | |
| dbMPin* bot_pin = dbMPin::create(term); | |
| dbBox::create(bot_pin, bot_layer, -1000, -1000, 1000, 1000); | |
| dbMPin* pin = dbMPin::create(term); | |
| dbBox::create(pin, layer, -2000, -2000, 2000, 2000); | |
| master->setFrozen(); | |
| // Create BTerms | |
| dbBlock* block = db_->getChip()->getBlock(); | |
| dbBTerm* SIG1 = dbBTerm::create(dbNet::create(block, "SIG1"), "SIG1"); | |
| dbBTerm* SIG2 = dbBTerm::create(dbNet::create(block, "SIG2"), "SIG2"); | |
| block->setDieArea(Rect(0, 0, 500, 500)); | |
| EXPECT_EQ(block->getInsts().size(), 0); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example1.bmap"); | |
| parser.readBMap(path); | |
| // Check bumps were created | |
| EXPECT_EQ(block->getInsts().size(), 2); | |
| dbInst* inst1 = block->findInst("bump1"); | |
| EXPECT_EQ(inst1->getBBox()->getBox().xCenter(), 100 * 1000); | |
| EXPECT_EQ(inst1->getBBox()->getBox().yCenter(), 200 * 1000); | |
| dbInst* inst2 = block->findInst("bump2"); | |
| EXPECT_EQ(inst2->getBBox()->getBox().xCenter(), 150 * 1000); | |
| EXPECT_EQ(inst2->getBBox()->getBox().yCenter(), 200 * 1000); | |
| // Check that BPins where added | |
| EXPECT_EQ(SIG1->getBPins().size(), 1); | |
| EXPECT_EQ(SIG2->getBPins().size(), 1); | |
| EXPECT_EQ(SIG1->getBPins().begin()->getBoxes().size(), 1); | |
| EXPECT_EQ(SIG2->getBPins().begin()->getBoxes().size(), 1); | |
| // Check bPin shape and layer | |
| dbBox* sig1_box = *SIG1->getBPins().begin()->getBoxes().begin(); | |
| dbBox* sig2_box = *SIG2->getBPins().begin()->getBoxes().begin(); | |
| EXPECT_EQ(sig1_box->getTechLayer(), layer); | |
| EXPECT_EQ(sig1_box->getBox().xMin(), 98000); | |
| EXPECT_EQ(sig1_box->getBox().yMin(), 198000); | |
| EXPECT_EQ(sig1_box->getBox().xMax(), 102000); | |
| EXPECT_EQ(sig1_box->getBox().yMax(), 202000); | |
| EXPECT_EQ(sig2_box->getTechLayer(), layer); | |
| EXPECT_EQ(sig2_box->getBox().xMin(), 148000); | |
| EXPECT_EQ(sig2_box->getBox().yMin(), 198000); | |
| EXPECT_EQ(sig2_box->getBox().xMax(), 152000); | |
| EXPECT_EQ(sig2_box->getBox().yMax(), 202000); | |
| } | |
| TEST_F(SimpleDbFixture, test_bump_map_reader_rounding) | |
| { | |
| createSimpleDB(); | |
| db_->setDbuPerMicron(1000); | |
| // Create BUMP master | |
| dbLib* lib = db_->findLib("lib1"); | |
| dbTechLayer* bot_layer | |
| = dbTechLayer::create(lib->getTech(), "BOT", dbTechLayerType::ROUTING); | |
| dbTechLayer* layer | |
| = dbTechLayer::create(lib->getTech(), "TOP", dbTechLayerType::ROUTING); | |
| dbMaster* master = dbMaster::create(lib, "BUMP"); | |
| master->setWidth(10000); | |
| master->setHeight(10000); | |
| master->setOrigin(5000, 5000); | |
| master->setType(dbMasterType::COVER_BUMP); | |
| dbMTerm* term | |
| = dbMTerm::create(master, "PAD", dbIoType::INOUT, dbSigType::SIGNAL); | |
| dbMPin* bot_pin = dbMPin::create(term); | |
| dbBox::create(bot_pin, bot_layer, -1000, -1000, 1000, 1000); | |
| dbMPin* pin = dbMPin::create(term); | |
| dbBox::create(pin, layer, -2000, -2000, 2000, 2000); | |
| master->setFrozen(); | |
| dbBlock* block = db_->getChip()->getBlock(); | |
| block->setDieArea(Rect(0, 0, 500, 500)); | |
| EXPECT_EQ(block->getInsts().size(), 0); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example4.bmap"); | |
| parser.readBMap(path); | |
| // Check bumps were created | |
| EXPECT_EQ(block->getInsts().size(), 2); | |
| dbInst* inst1 = block->findInst("bump1"); | |
| EXPECT_EQ(inst1->getBBox()->getBox().xCenter(), 1036800); | |
| EXPECT_EQ(inst1->getBBox()->getBox().yCenter(), 5991840); | |
| dbInst* inst2 = block->findInst("bump2"); | |
| EXPECT_EQ(inst2->getBBox()->getBox().xCenter(), 1041120); | |
| EXPECT_EQ(inst2->getBBox()->getBox().yCenter(), 5991840); | |
| } | |
| TEST_F(SimpleDbFixture, test_bump_map_reader_netsonly) | |
| { | |
| createSimpleDB(); | |
| db_->setDbuPerMicron(1000); | |
| // Create BUMP master | |
| dbLib* lib = db_->findLib("lib1"); | |
| dbTechLayer* bot_layer | |
| = dbTechLayer::create(lib->getTech(), "BOT", dbTechLayerType::ROUTING); | |
| dbTechLayer* layer | |
| = dbTechLayer::create(lib->getTech(), "TOP", dbTechLayerType::ROUTING); | |
| dbMaster* master = dbMaster::create(lib, "BUMP"); | |
| master->setWidth(10000); | |
| master->setHeight(10000); | |
| master->setOrigin(5000, 5000); | |
| master->setType(dbMasterType::COVER_BUMP); | |
| dbMTerm* term | |
| = dbMTerm::create(master, "PAD", dbIoType::INOUT, dbSigType::SIGNAL); | |
| dbMPin* bot_pin = dbMPin::create(term); | |
| dbBox::create(bot_pin, bot_layer, -1000, -1000, 1000, 1000); | |
| dbMPin* pin = dbMPin::create(term); | |
| dbBox::create(pin, layer, -2000, -2000, 2000, 2000); | |
| master->setFrozen(); | |
| // Create BTerms | |
| dbBlock* block = db_->getChip()->getBlock(); | |
| dbBTerm* SIG1 = dbBTerm::create(dbNet::create(block, "SIG1"), "SIG1"); | |
| dbBTerm* SIG2 = dbBTerm::create(dbNet::create(block, "SIG2"), "SIG2"); | |
| block->setDieArea(Rect(0, 0, 500, 500)); | |
| EXPECT_EQ(block->getInsts().size(), 0); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example2.bmap"); | |
| parser.readBMap(path); | |
| // Check bumps were created | |
| EXPECT_EQ(block->getInsts().size(), 2); | |
| dbInst* inst1 = block->findInst("bump1"); | |
| EXPECT_EQ(inst1->getBBox()->getBox().xCenter(), 100 * 1000); | |
| EXPECT_EQ(inst1->getBBox()->getBox().yCenter(), 200 * 1000); | |
| dbInst* inst2 = block->findInst("bump2"); | |
| EXPECT_EQ(inst2->getBBox()->getBox().xCenter(), 150 * 1000); | |
| EXPECT_EQ(inst2->getBBox()->getBox().yCenter(), 200 * 1000); | |
| // Check that BPins where added | |
| EXPECT_EQ(SIG1->getBPins().size(), 1); | |
| EXPECT_EQ(SIG2->getBPins().size(), 1); | |
| EXPECT_EQ(SIG1->getBPins().begin()->getBoxes().size(), 1); | |
| EXPECT_EQ(SIG2->getBPins().begin()->getBoxes().size(), 1); | |
| // Check bPin shape and layer | |
| dbBox* sig1_box = *SIG1->getBPins().begin()->getBoxes().begin(); | |
| dbBox* sig2_box = *SIG2->getBPins().begin()->getBoxes().begin(); | |
| EXPECT_EQ(sig1_box->getTechLayer(), layer); | |
| EXPECT_EQ(sig1_box->getBox().xMin(), 98000); | |
| EXPECT_EQ(sig1_box->getBox().yMin(), 198000); | |
| EXPECT_EQ(sig1_box->getBox().xMax(), 102000); | |
| EXPECT_EQ(sig1_box->getBox().yMax(), 202000); | |
| EXPECT_EQ(sig2_box->getTechLayer(), layer); | |
| EXPECT_EQ(sig2_box->getBox().xMin(), 148000); | |
| EXPECT_EQ(sig2_box->getBox().yMin(), 198000); | |
| EXPECT_EQ(sig2_box->getBox().xMax(), 152000); | |
| EXPECT_EQ(sig2_box->getBox().yMax(), 202000); | |
| } | |
| TEST_F(SimpleDbFixture, test_bump_map_reader_multiple_bterms) | |
| { | |
| createSimpleDB(); | |
| db_->setDbuPerMicron(1000); | |
| // Create BUMP master | |
| dbLib* lib = db_->findLib("lib1"); | |
| dbTechLayer* bot_layer | |
| = dbTechLayer::create(lib->getTech(), "BOT", dbTechLayerType::ROUTING); | |
| dbTechLayer* layer | |
| = dbTechLayer::create(lib->getTech(), "TOP", dbTechLayerType::ROUTING); | |
| dbMaster* master = dbMaster::create(lib, "BUMP"); | |
| master->setWidth(10000); | |
| master->setHeight(10000); | |
| master->setOrigin(5000, 5000); | |
| master->setType(dbMasterType::COVER_BUMP); | |
| dbMTerm* term | |
| = dbMTerm::create(master, "PAD", dbIoType::INOUT, dbSigType::SIGNAL); | |
| dbMPin* bot_pin = dbMPin::create(term); | |
| dbBox::create(bot_pin, bot_layer, -1000, -1000, 1000, 1000); | |
| dbMPin* pin = dbMPin::create(term); | |
| dbBox::create(pin, layer, -2000, -2000, 2000, 2000); | |
| master->setFrozen(); | |
| // Create BTerms | |
| dbBlock* block = db_->getChip()->getBlock(); | |
| dbNet* net = dbNet::create(block, "SIG1"); | |
| dbBTerm::create(net, "TERM1"); | |
| dbBTerm::create(net, "TERM2"); | |
| block->setDieArea(Rect(0, 0, 500, 500)); | |
| EXPECT_EQ(block->getInsts().size(), 0); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example3.bmap"); | |
| EXPECT_THROW(parser.readBMap(path), std::runtime_error); | |
| } | |
| TEST_F(SimpleDbFixture, test_bump_map_reader_no_bterms) | |
| { | |
| createSimpleDB(); | |
| db_->setDbuPerMicron(1000); | |
| // Create BUMP master | |
| dbLib* lib = db_->findLib("lib1"); | |
| dbTechLayer* bot_layer | |
| = dbTechLayer::create(lib->getTech(), "BOT", dbTechLayerType::ROUTING); | |
| dbTechLayer* layer | |
| = dbTechLayer::create(lib->getTech(), "TOP", dbTechLayerType::ROUTING); | |
| dbMaster* master = dbMaster::create(lib, "BUMP"); | |
| master->setWidth(10000); | |
| master->setHeight(10000); | |
| master->setOrigin(5000, 5000); | |
| master->setType(dbMasterType::COVER_BUMP); | |
| dbMTerm* term | |
| = dbMTerm::create(master, "PAD", dbIoType::INOUT, dbSigType::SIGNAL); | |
| dbMPin* bot_pin = dbMPin::create(term); | |
| dbBox::create(bot_pin, bot_layer, -1000, -1000, 1000, 1000); | |
| dbMPin* pin = dbMPin::create(term); | |
| dbBox::create(pin, layer, -2000, -2000, 2000, 2000); | |
| master->setFrozen(); | |
| // Create BTerms | |
| dbBlock* block = db_->getChip()->getBlock(); | |
| dbNet::create(block, "SIG1"); | |
| block->setDieArea(Rect(0, 0, 500, 500)); | |
| EXPECT_EQ(block->getInsts().size(), 0); | |
| ThreeDBlox parser(&logger_, db_.get()); | |
| std::string path = getFilePath(prefix + "data/example3.bmap"); | |
| EXPECT_THROW(parser.readBMap(path), std::runtime_error); | |
| } | |
| TEST_F(SimpleDbFixture, test_bterm_get_chip_bump) | |
| { | |
| createSimpleDB(); | |
| dbChip* chip = db_->getChip(); | |
| dbBlock* block = chip->getBlock(); | |
| // Create a chip region on the chip | |
| dbChipRegion* region = dbChipRegion::create( | |
| chip, "bump_region", dbChipRegion::Side::BACK, nullptr); | |
| ASSERT_NE(region, nullptr); | |
| // Create an inst to back the bump | |
| 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"); | |
| ASSERT_NE(bump_inst, nullptr); | |
| // Create a chip bump | |
| dbChipBump* bump = dbChipBump::create(region, bump_inst); | |
| ASSERT_NE(bump, nullptr); | |
| // Create bterms: one that will be associated with the bump, one that won't | |
| dbBTerm* sig1 = dbBTerm::create(dbNet::create(block, "SIG1"), "SIG1"); | |
| dbBTerm* sig2 = dbBTerm::create(dbNet::create(block, "SIG2"), "SIG2"); | |
| ASSERT_NE(sig1, nullptr); | |
| ASSERT_NE(sig2, nullptr); | |
| // Before setBTerm: both bterms return nullptr for getChipBump | |
| EXPECT_EQ(sig1->getChipBump(), nullptr); | |
| EXPECT_EQ(sig2->getChipBump(), nullptr); | |
| // Associate sig1 with the bump | |
| bump->setBTerm(sig1); | |
| // After setBTerm: sig1 returns the bump, sig2 still returns nullptr | |
| EXPECT_EQ(sig1->getChipBump(), bump); | |
| EXPECT_EQ(sig2->getChipBump(), nullptr); | |
| // Verify the reverse link is also consistent | |
| EXPECT_EQ(bump->getBTerm(), sig1); | |
| EXPECT_EQ(bump->getChipRegion(), region); | |
| } | |
| // --------------------------------------------------------------------------- | |
| // Path Assertion Parser Tests | |
| // --------------------------------------------------------------------------- | |
| class PathAssertionFixture : public tst::DbFixture | |
| { | |
| protected: | |
| ThreeDBlox parser_{&logger_, db_.get()}; | |
| }; | |
| TEST_F(PathAssertionFixture, test_path_assertions_from_file) | |
| { | |
| std::string path = getFilePath(prefix + "data/path_assertions.3dbx"); | |
| parser_.readDbx(path); | |
| dbChip* chip = db_->findChip("TopDesign"); | |
| ASSERT_NE(chip, nullptr); | |
| auto chip_paths = chip->getChipPaths(); | |
| ASSERT_EQ(chip_paths.size(), 2); | |
| // Build a map for lookup by name | |
| std::map<std::string, dbChipPath*> paths_by_name; | |
| for (auto* p : chip_paths) { | |
| paths_by_name[p->getName()] = p; | |
| } | |
| // Path1: 3 entries, one negated | |
| ASSERT_EQ(paths_by_name.count("Path1"), 1u); | |
| const std::vector<dbChipPath::Entry> e1 | |
| = paths_by_name["Path1"]->getEntries(); | |
| ASSERT_EQ(e1.size(), 3u); | |
| ASSERT_NE(e1[0].region, nullptr); | |
| ASSERT_EQ(e1[0].chip_inst_path.size(), 1u); | |
| EXPECT_EQ(e1[0].chip_inst_path[0]->getName(), "soc_inst"); | |
| EXPECT_EQ(e1[0].region->getChipRegion()->getName(), "front_reg"); | |
| EXPECT_FALSE(e1[0].negated); | |
| ASSERT_NE(e1[1].region, nullptr); | |
| ASSERT_EQ(e1[1].chip_inst_path.size(), 1u); | |
| EXPECT_EQ(e1[1].chip_inst_path[0]->getName(), "soc_inst_duplicate"); | |
| EXPECT_EQ(e1[1].region->getChipRegion()->getName(), "back_reg"); | |
| EXPECT_TRUE(e1[1].negated); | |
| ASSERT_NE(e1[2].region, nullptr); | |
| ASSERT_EQ(e1[2].chip_inst_path.size(), 1u); | |
| EXPECT_EQ(e1[2].chip_inst_path[0]->getName(), "soc_inst_duplicate"); | |
| EXPECT_EQ(e1[2].region->getChipRegion()->getName(), "front_reg"); | |
| EXPECT_FALSE(e1[2].negated); | |
| // Path2: 2 entries, none negated | |
| ASSERT_EQ(paths_by_name.count("Path2"), 1u); | |
| const std::vector<dbChipPath::Entry> e2 | |
| = paths_by_name["Path2"]->getEntries(); | |
| ASSERT_EQ(e2.size(), 2u); | |
| ASSERT_NE(e2[0].region, nullptr); | |
| ASSERT_EQ(e2[0].chip_inst_path.size(), 1u); | |
| EXPECT_EQ(e2[0].chip_inst_path[0]->getName(), "soc_inst"); | |
| EXPECT_EQ(e2[0].region->getChipRegion()->getName(), "back_reg"); | |
| EXPECT_FALSE(e2[0].negated); | |
| ASSERT_NE(e2[1].region, nullptr); | |
| ASSERT_EQ(e2[1].chip_inst_path.size(), 1u); | |
| EXPECT_EQ(e2[1].chip_inst_path[0]->getName(), "soc_inst_duplicate"); | |
| EXPECT_EQ(e2[1].region->getChipRegion()->getName(), "back_reg"); | |
| EXPECT_FALSE(e2[1].negated); | |
| } | |
| TEST_F(PathAssertionFixture, test_path_assertions_no_path_block) | |
| { | |
| std::string path = getFilePath(prefix + "data/example.3dbx"); | |
| parser_.readDbx(path); | |
| dbChip* chip = db_->findChip("TopDesign"); | |
| ASSERT_NE(chip, nullptr); | |
| EXPECT_EQ(chip->getChipPaths().size(), 0u); | |
| } | |
| // Test that chip_inst_path correctly disambiguates the same | |
| // dbChipRegionInst in a folded model with multiple hierarchy levels. | |
| // | |
| // Hierarchy: | |
| // TopDesign (HIER) | |
| // βββ hier1 (SubHier, HIER) | |
| // β βββ die_inst (LeafChip, DIE) β region r1 | |
| // βββ hier2 (SubHier, HIER) | |
| // βββ die_inst (LeafChip, DIE) β region r1 | |
| // | |
| // hier1/die_inst and hier2/die_inst share the same dbChipRegionInst | |
| // for r1, so chip_inst_path is required to distinguish them. | |
| TEST_F(PathAssertionFixture, test_path_assertions_folded_model) | |
| { | |
| // Build hierarchy programmatically | |
| dbTech* tech = dbTech::create(db_.get(), "test_tech"); | |
| dbChip* leaf_chip | |
| = dbChip::create(db_.get(), tech, "LeafChip", dbChip::ChipType::DIE); | |
| ASSERT_NE(leaf_chip, nullptr); | |
| leaf_chip->setWidth(100); | |
| leaf_chip->setHeight(100); | |
| leaf_chip->setThickness(50); | |
| dbChipRegion::create(leaf_chip, "r1", dbChipRegion::Side::FRONT, nullptr); | |
| dbChip* sub_hier | |
| = dbChip::create(db_.get(), nullptr, "SubHier", dbChip::ChipType::HIER); | |
| ASSERT_NE(sub_hier, nullptr); | |
| dbChipInst* die_inst = dbChipInst::create(sub_hier, leaf_chip, "die_inst"); | |
| ASSERT_NE(die_inst, nullptr); | |
| dbChip* top | |
| = dbChip::create(db_.get(), nullptr, "Top", dbChip::ChipType::HIER); | |
| ASSERT_NE(top, nullptr); | |
| dbChipInst* hier1 = dbChipInst::create(top, sub_hier, "hier1"); | |
| dbChipInst* hier2 = dbChipInst::create(top, sub_hier, "hier2"); | |
| ASSERT_NE(hier1, nullptr); | |
| ASSERT_NE(hier2, nullptr); | |
| // Both hier1/die_inst and hier2/die_inst share the same dbChipRegionInst | |
| dbChipRegionInst* region_inst = die_inst->findChipRegionInst("r1"); | |
| ASSERT_NE(region_inst, nullptr); | |
| // Create a path assertion with entries for both hierarchical paths | |
| dbChipPath* chip_path = dbChipPath::create(top, "Path1"); | |
| chip_path->addEntry({hier1, die_inst}, region_inst, false); | |
| chip_path->addEntry({hier2, die_inst}, region_inst, true); | |
| // Verify entries | |
| std::vector<dbChipPath::Entry> entries = chip_path->getEntries(); | |
| ASSERT_EQ(entries.size(), 2u); | |
| // Both entries point to the same region inst (folded model) | |
| EXPECT_EQ(entries[0].region, entries[1].region); | |
| EXPECT_EQ(entries[0].region, region_inst); | |
| // But they have different chip_inst_path to disambiguate | |
| ASSERT_EQ(entries[0].chip_inst_path.size(), 2u); | |
| EXPECT_EQ(entries[0].chip_inst_path[0]->getName(), "hier1"); | |
| EXPECT_EQ(entries[0].chip_inst_path[1]->getName(), "die_inst"); | |
| EXPECT_FALSE(entries[0].negated); | |
| ASSERT_EQ(entries[1].chip_inst_path.size(), 2u); | |
| EXPECT_EQ(entries[1].chip_inst_path[0]->getName(), "hier2"); | |
| EXPECT_EQ(entries[1].chip_inst_path[1]->getName(), "die_inst"); | |
| EXPECT_TRUE(entries[1].negated); | |
| } | |
| } // namespace | |
| } // namespace odb | |