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// SPDX-License-Identifier: BSD-3-Clause
// Copyright (c) 2023-2025, The OpenROAD Authors
#include <exception>
#include <memory>
#include <string>
#include "MplTest.h"
#include "gtest/gtest.h"
#include "odb/db.h"
#include "odb/dbTypes.h"
#include "snapper.h"
namespace mpl {
namespace {
class TestSnapper : public MplTest
{
protected:
void SetUp() override
{
MplTest::SetUp();
snapper_ = std::make_unique<Snapper>(&logger_);
}
std::unique_ptr<Snapper> snapper_;
};
// Snaps both directions to the manucfaturing grid, choosing the closest
// position
TEST_F(TestSnapper, ManufacturingGrid)
{
db_->getTech()->setManufacturingGrid(10);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1014, 1019);
snapper_->setMacro(macro);
snapper_->snapMacro();
// Closest grid position to 1014
EXPECT_EQ(macro->getOrigin().x(), 1010);
// Closest grid position to 1019
EXPECT_EQ(macro->getOrigin().y(), 1020);
}
// Snaps a macro using one horizontal layer, aligning one pin
TEST_F(TestSnapper, SingleLayer)
{
db_->getTech()->setManufacturingGrid(1);
const int track_pitch = 36;
odb::dbTechLayer* horizontal_layer = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer);
track->addGridPatternY(0, die_height_ / track_pitch, track_pitch);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin_x = 0;
const int pin_y = 0;
odb::dbMTerm* mterm = odb::dbMTerm::create(
macro_master, "pin", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin = odb::dbMPin::create(mterm);
odb::dbBox::create(mpin,
horizontal_layer,
pin_x,
pin_y,
pin_x + pin_height,
pin_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
snapper_->snapMacro();
// Snapped to manufacturing grid
EXPECT_EQ(macro->getOrigin().x(), 1500);
// 1523 (origin) + 25 (pin center) equals 1548 which is
// a multiple of 36 (pin is aligned to track)
EXPECT_EQ(macro->getOrigin().y(), 1523);
}
// Snaps a macro with two pins, with pins in different layers but same direction
TEST_F(TestSnapper, DoubleLayer)
{
db_->getTech()->setManufacturingGrid(1);
const int track1_pitch = 36;
odb::dbTechLayer* horizontal_layer1 = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer1->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track1
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer1);
track1->addGridPatternY(0, die_height_ / track1_pitch, track1_pitch);
const int track2_pitch = 48;
odb::dbTechLayer* horizontal_layer2 = odb::dbTechLayer::create(
db_->getTech(), "H2", odb::dbTechLayerType::DEFAULT);
horizontal_layer2->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track2
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer2);
track2->addGridPatternY(0, die_height_ / track2_pitch, track2_pitch);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin1_x = 0;
const int pin1_y = 0;
odb::dbMTerm* mterm1 = odb::dbMTerm::create(
macro_master, "pin1", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin1 = odb::dbMPin::create(mterm1);
odb::dbBox::create(mpin1,
horizontal_layer1,
pin1_x,
pin1_y,
pin1_x + pin_height,
pin1_y + pin_width);
const int pin2_x = 0;
const int pin2_y = 48;
odb::dbMTerm* mterm2 = odb::dbMTerm::create(
macro_master, "pin2", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin2 = odb::dbMPin::create(mterm2);
odb::dbBox::create(mpin2,
horizontal_layer2,
pin2_x,
pin2_y,
pin2_x + pin_height,
pin2_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
snapper_->snapMacro();
// Snapped to manufacturing grid
EXPECT_EQ(macro->getOrigin().x(), 1500);
// 1559 (origin) + 25 (pin1 center) equals 1584 which is
// a multiple of 36 (pin is aligned to track1)
// 1559 (origin) + 73 (pin2 center) equals 1632 which is
// a multiple of 48 (pin is aligned to track2)
EXPECT_EQ(macro->getOrigin().y(), 1559);
}
TEST_F(TestSnapper, MultiPitchPattern)
{
db_->getTech()->setManufacturingGrid(1);
const int track_pitch1 = 36;
const int track_pitch2 = 48;
odb::dbTechLayer* horizontal_layer = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer);
track->addGridPatternY(0, die_height_ / track_pitch1, track_pitch1);
track->addGridPatternY(0, die_height_ / track_pitch2, track_pitch2);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin1_x = 0;
const int pin1_y = 0;
// Pins 1 and 2 follow the first pattern
odb::dbMTerm* mterm1 = odb::dbMTerm::create(
macro_master, "pin1", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin1 = odb::dbMPin::create(mterm1);
odb::dbBox::create(mpin1,
horizontal_layer,
pin1_x,
pin1_y,
pin1_x + pin_height,
pin1_y + pin_width);
const int pin2_x = 0;
const int pin2_y = 72;
odb::dbMTerm* mterm2 = odb::dbMTerm::create(
macro_master, "pin2", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin2 = odb::dbMPin::create(mterm2);
odb::dbBox::create(mpin2,
horizontal_layer,
pin2_x,
pin2_y,
pin2_x + pin_height,
pin2_y + pin_width);
// Pins 3 and 4 follow the second pattern
const int pin3_x = 0;
const int pin3_y = 216;
odb::dbMTerm* mterm3 = odb::dbMTerm::create(
macro_master, "pin3", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin3 = odb::dbMPin::create(mterm3);
odb::dbBox::create(mpin3,
horizontal_layer,
pin3_x,
pin3_y,
pin3_x + pin_height,
pin3_y + pin_width);
const int pin4_x = 0;
const int pin4_y = 312;
odb::dbMTerm* mterm4 = odb::dbMTerm::create(
macro_master, "pin4", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin4 = odb::dbMPin::create(mterm4);
odb::dbBox::create(mpin4,
horizontal_layer,
pin4_x,
pin4_y,
pin4_x + pin_height,
pin4_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
snapper_->snapMacro();
EXPECT_EQ(macro->getOrigin().x(), 1500);
// 1487 (origin) + 25 (pin1 center) equals 1512 which is
// a multiple of 36 (pin is aligned to pattern1)
// 1487 (origin) + 241 (pin3 center) equals 1728 which is
// a multiple of 48 (pin is aligned to pattern2)
EXPECT_EQ(macro->getOrigin().y(), 1487);
}
TEST_F(TestSnapper, MultiOriginPattern)
{
db_->getTech()->setManufacturingGrid(1);
const int track_pitch = 36;
const int track_origin1 = 5;
const int track_origin2 = 7;
odb::dbTechLayer* horizontal_layer = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer);
track->addGridPatternY(track_origin1, die_height_ / track_pitch, track_pitch);
track->addGridPatternY(track_origin2, die_height_ / track_pitch, track_pitch);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin1_x = 0;
const int pin1_y = 0;
// Pins 1 and 2 follow the first pattern
odb::dbMTerm* mterm1 = odb::dbMTerm::create(
macro_master, "pin1", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin1 = odb::dbMPin::create(mterm1);
odb::dbBox::create(mpin1,
horizontal_layer,
pin1_x,
pin1_y,
pin1_x + pin_height,
pin1_y + pin_width);
const int pin2_x = 0;
const int pin2_y = 72;
odb::dbMTerm* mterm2 = odb::dbMTerm::create(
macro_master, "pin2", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin2 = odb::dbMPin::create(mterm2);
odb::dbBox::create(mpin2,
horizontal_layer,
pin2_x,
pin2_y,
pin2_x + pin_height,
pin2_y + pin_width);
// Pins 3 and 4 follow the second pattern
const int pin3_x = 0;
const int pin3_y = 146;
odb::dbMTerm* mterm3 = odb::dbMTerm::create(
macro_master, "pin3", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin3 = odb::dbMPin::create(mterm3);
odb::dbBox::create(mpin3,
horizontal_layer,
pin3_x,
pin3_y,
pin3_x + pin_height,
pin3_y + pin_width);
const int pin4_x = 0;
const int pin4_y = 218;
odb::dbMTerm* mterm4 = odb::dbMTerm::create(
macro_master, "pin4", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin4 = odb::dbMPin::create(mterm4);
odb::dbBox::create(mpin4,
horizontal_layer,
pin4_x,
pin4_y,
pin4_x + pin_height,
pin4_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
snapper_->snapMacro();
EXPECT_EQ(macro->getOrigin().x(), 1500);
// 1528 (origin) + 25 (pin1 center) - 5 (pattern1 origin) equals 1548 which is
// a multiple of 36 (pin is aligned to pattern1)
// 1528 (origin) + 171 (pin3 center) - 7 (pattern2 origin) equals 1692 which
// is a multiple of 36 (pin is aligned to pattern2)
EXPECT_EQ(macro->getOrigin().y(), 1528);
}
// Snaps a macro using one horizontal layer, aligning one pin while the other is
// unalignable
TEST_F(TestSnapper, SingleLayerWithUnalignablePin)
{
db_->getTech()->setManufacturingGrid(1);
const int track_pitch = 36;
odb::dbTechLayer* horizontal_layer = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer->setDirection(odb::dbTechLayerDir::HORIZONTAL);
odb::dbTrackGrid* track
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer);
track->addGridPatternY(0, die_height_ / track_pitch, track_pitch);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin1_x = 0;
const int pin1_y = 0;
odb::dbMTerm* mterm1 = odb::dbMTerm::create(
macro_master, "pin1", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin1 = odb::dbMPin::create(mterm1);
odb::dbBox::create(mpin1,
horizontal_layer,
pin1_x,
pin1_y,
pin1_x + pin_height,
pin1_y + pin_width);
const int pin2_x = 0;
const int pin2_y = 50;
odb::dbMTerm* mterm2 = odb::dbMTerm::create(
macro_master, "pin2", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin2 = odb::dbMPin::create(mterm2);
odb::dbBox::create(mpin2,
horizontal_layer,
pin2_x,
pin2_y,
pin2_x + pin_height,
pin2_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
testing::internal::CaptureStdout();
snapper_->snapMacro();
std::string snap_warning = testing::internal::GetCapturedStdout();
std::string expected_warning
= "[WARNING MPL-0002] Could not align all pins of the macro macro to the "
"track-grid. 1 out of 2 pins were aligned.\n";
// Snapped to manufacturing grid
EXPECT_EQ(macro->getOrigin().x(), 1500);
// 1523 (origin) + 25 (pin center) equals 1548 which is
// a multiple of 36 (pin is aligned to track)
EXPECT_EQ(macro->getOrigin().y(), 1523);
EXPECT_EQ(snap_warning, expected_warning);
}
// Snaps a macro using one horizontal layer, aligning one pin while the other is
// unalignable and the layer is RightWayOnlyGrid, which should throw an
// exception if a pin is unaligned
TEST_F(TestSnapper, SingleLayerWithUnalignablePinThrowsException)
{
db_->getTech()->setManufacturingGrid(1);
const int track_pitch = 36;
odb::dbTechLayer* horizontal_layer = odb::dbTechLayer::create(
db_->getTech(), "H1", odb::dbTechLayerType::DEFAULT);
horizontal_layer->setDirection(odb::dbTechLayerDir::HORIZONTAL);
horizontal_layer->setRightWayOnGridOnly(true);
odb::dbTrackGrid* track
= odb::dbTrackGrid::create(db_->getChip()->getBlock(), horizontal_layer);
track->addGridPatternY(0, die_height_ / track_pitch, track_pitch);
odb::dbMaster* macro_master
= odb::dbMaster::create(db_->findLib("lib"), "macro_master");
macro_master->setHeight(10000);
macro_master->setWidth(10000);
macro_master->setType(odb::dbMasterType::BLOCK);
const int pin_height = 20;
const int pin_width = 50;
const int pin1_x = 0;
const int pin1_y = 0;
odb::dbMTerm* mterm1 = odb::dbMTerm::create(
macro_master, "pin1", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin1 = odb::dbMPin::create(mterm1);
odb::dbBox::create(mpin1,
horizontal_layer,
pin1_x,
pin1_y,
pin1_x + pin_height,
pin1_y + pin_width);
const int pin2_x = 0;
const int pin2_y = 50;
odb::dbMTerm* mterm2 = odb::dbMTerm::create(
macro_master, "pin2", odb::dbIoType::INPUT, odb::dbSigType::SIGNAL);
odb::dbMPin* mpin2 = odb::dbMPin::create(mterm2);
odb::dbBox::create(mpin2,
horizontal_layer,
pin2_x,
pin2_y,
pin2_x + pin_height,
pin2_y + pin_width);
macro_master->setFrozen();
odb::dbInst* macro
= odb::dbInst::create(db_->getChip()->getBlock(), macro_master, "macro");
macro->setOrigin(1500, 1500);
snapper_->setMacro(macro);
try {
snapper_->snapMacro();
FAIL() << "Expected exception MPL-0005";
} catch (const std::exception& e) {
EXPECT_STREQ(e.what(), "MPL-0005");
} catch (...) {
FAIL() << "Unexpected exception (other than MPL-0005)";
}
}
} // namespace
} // namespace mpl