// SPDX-License-Identifier: BSD-3-Clause // Copyright (c) 2026, The OpenROAD Authors #include #include #include #include "MplTest.h" #include "gtest/gtest.h" #include "mpl/rtl_mp.h" #include "odb/db.h" #include "odb/dbTypes.h" #include "odb/geom.h" namespace mpl { namespace { class TestBlockMacroChannels : public MplTest { protected: void SetUp() override { MplTest::SetUp(); macro_placer_ = std::make_unique(db_.get(), /*sta=*/nullptr, &logger_, /*tritonpart=*/nullptr); odb::dbLib* library = db_->findLib("lib"); macro_master_ = odb::dbMaster::create(library, "block_master"); macro_master_->setType(odb::dbMasterType::BLOCK); macro_master_->setWidth(master_width_); macro_master_->setHeight(master_height_); macro_master_->setFrozen(); } odb::dbInst* createFixedMacro(const std::string& name, const int origin_x, const int origin_y) { odb::dbInst* instance = odb::dbInst::create( db_->getChip()->getBlock(), macro_master_, name.c_str()); instance->setLocation(origin_x, origin_y); instance->setPlacementStatus(odb::dbPlacementStatus::FIRM); return instance; } std::vector getBlockages() const { std::vector rectangles; for (odb::dbBlockage* blockage : db_->getChip()->getBlock()->getBlockages()) { rectangles.push_back(blockage->getBBox()->getBox()); } return rectangles; } const int master_width_ = 100000; const int master_height_ = 100000; const int macro_x_ = 50000; const int macro_y_ = 50000; std::unique_ptr macro_placer_; odb::dbMaster* macro_master_ = nullptr; }; // DEF halo only: blockage equals master bbox expanded by the DEF halo. TEST_F(TestBlockMacroChannels, DefHaloOnly) { odb::dbInst* instance = createFixedMacro("macro", macro_x_, macro_y_); instance->setHalo(5000, 5000, 5000, 5000, /*is_soft=*/false); macro_placer_->blockMacroChannels(); const std::vector blockages = getBlockages(); ASSERT_EQ(blockages.size(), 1); EXPECT_EQ(blockages[0], odb::Rect(45000, 45000, 155000, 155000)); } // Base halo is floored by the DEF halo per side: the larger of the two wins. TEST_F(TestBlockMacroChannels, BaseHaloFloorsDefHalo) { odb::dbInst* instance = createFixedMacro("macro", macro_x_, macro_y_); instance->setHalo(5000, 5000, 5000, 5000, /*is_soft=*/false); macro_placer_->setBaseHalo(10000, 1000, 10000, 1000); macro_placer_->blockMacroChannels(); const std::vector blockages = getBlockages(); ASSERT_EQ(blockages.size(), 1); // Horizontal: base 10000 > DEF 5000. Vertical: DEF 5000 > base 1000. EXPECT_EQ(blockages[0], odb::Rect(40000, 45000, 160000, 155000)); } // Per-macro halo has top priority over both the base halo and the DEF halo. TEST_F(TestBlockMacroChannels, PerMacroHaloOverrides) { odb::dbInst* instance = createFixedMacro("macro", macro_x_, macro_y_); instance->setHalo(5000, 5000, 5000, 5000, /*is_soft=*/false); macro_placer_->setBaseHalo(10000, 10000, 10000, 10000); macro_placer_->setMacroHalo(instance, 20000, 20000, 20000, 20000); macro_placer_->blockMacroChannels(); const std::vector blockages = getBlockages(); ASSERT_EQ(blockages.size(), 1); EXPECT_EQ(blockages[0], odb::Rect(30000, 30000, 170000, 170000)); } // Macros with a soft DEF halo are skipped even when a base halo is set. TEST_F(TestBlockMacroChannels, SoftDefHaloSkipped) { odb::dbInst* instance = createFixedMacro("macro", macro_x_, macro_y_); instance->setHalo(5000, 5000, 5000, 5000, /*is_soft=*/true); macro_placer_->setBaseHalo(10000, 10000, 10000, 10000); macro_placer_->blockMacroChannels(); EXPECT_TRUE(getBlockages().empty()); } // When the macro has no DEF halo, the base halo alone defines the blockage. TEST_F(TestBlockMacroChannels, BaseHaloOnly) { createFixedMacro("macro", macro_x_, macro_y_); macro_placer_->setBaseHalo(8000, 4000, 6000, 2000); macro_placer_->blockMacroChannels(); const std::vector blockages = getBlockages(); ASSERT_EQ(blockages.size(), 1); EXPECT_EQ(blockages[0], odb::Rect(42000, 46000, 156000, 152000)); } // Unplaced macros are ignored. TEST_F(TestBlockMacroChannels, UnplacedMacroSkipped) { odb::dbInst::create(db_->getChip()->getBlock(), macro_master_, "macro"); macro_placer_->blockMacroChannels(); EXPECT_TRUE(getBlockages().empty()); } // Placed macros are ignored: MPL can still move them as they're not fixed. TEST_F(TestBlockMacroChannels, PlacedMacroSkipped) { odb::dbInst* instance = odb::dbInst::create(db_->getChip()->getBlock(), macro_master_, "macro"); instance->setLocation(macro_x_, macro_y_); instance->setPlacementStatus(odb::dbPlacementStatus::PLACED); macro_placer_->blockMacroChannels(); EXPECT_TRUE(getBlockages().empty()); } } // namespace } // namespace mpl