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// Copyright (c) 2023-2026, The OpenROAD Authors
//
// Tests for VerilogWriter path-length filtering:
// - bumps with path.size() == 1 (direct child) must appear in output
// - bumps with path.size() > 1 (nested child) must be silently skipped
#include <fstream>
#include <iterator>
#include <string>
#include "gtest/gtest.h"
#include "odb/3dblox.h"
#include "odb/db.h"
#include "odb/geom.h"
#include "tst/db_fixture.h"
namespace odb {
namespace {
// Helper to read an entire file into a string.
static std::string readFileContent(const std::string& path)
{
std::ifstream file(path);
return std::string(std::istreambuf_iterator<char>(file),
std::istreambuf_iterator<char>());
}
class VerilogWriterFixture : public tst::DbFixture
{
protected:
VerilogWriterFixture()
{
tech_ = dbTech::create(db_.get(), "tech");
dbTechLayer::create(tech_, "layer1", dbTechLayerType::ROUTING);
// HIER top chip (the module being written).
top_chip_
= dbChip::create(db_.get(), nullptr, "TopChip", dbChip::ChipType::HIER);
// DIE chip used as the master for instances.
chip1_ = dbChip::create(db_.get(), tech_, "Chip1", dbChip::ChipType::DIE);
chip1_->setWidth(2000);
chip1_->setHeight(2000);
chip1_->setThickness(500);
dbBlock::create(chip1_, "block1");
// A second DIE chip, only needed to form multi-element path vectors.
chip2_ = dbChip::create(db_.get(), tech_, "Chip2", dbChip::ChipType::DIE);
chip2_->setWidth(1500);
chip2_->setHeight(1500);
chip2_->setThickness(500);
dbBlock::create(chip2_, "block2");
// Front region on chip1 where bumps will be placed.
dbChipRegion* r1_fr = dbChipRegion::create(
chip1_, "r1_fr", dbChipRegion::Side::FRONT, nullptr);
r1_fr->setBox(Rect(0, 0, 2000, 2000));
// Shared bump master for physical bump cells.
lib_ = dbLib::create(db_.get(), "bump_lib", tech_, ',');
bump_master_ = dbMaster::create(lib_, "bump_pad");
bump_master_->setWidth(100);
bump_master_->setHeight(100);
bump_master_->setType(dbMasterType::CORE);
dbMTerm::create(bump_master_, "pad", dbIoType::INOUT, dbSigType::SIGNAL);
bump_master_->setFrozen();
}
// Create a bump on a chip region and attach a named BTerm (Verilog port).
// Must be called BEFORE creating any dbChipInst that uses this chip,
// so the bump inst is propagated into the region inst at create time.
dbChipBump* createBump(dbChip* chip,
dbChipRegion* region,
const char* bump_name,
int x,
int y)
{
dbBlock* block = chip->getBlock();
dbTechLayer* layer = tech_->findLayer("layer1");
// Physical placement cell for the bump.
dbInst* inst = dbInst::create(block, bump_master_, bump_name);
inst->setOrigin(x, y);
inst->setPlacementStatus(dbPlacementStatus::PLACED);
// Chip-level bump object.
dbChipBump* chip_bump = dbChipBump::create(region, inst);
// Net + BTerm — the BTerm name becomes the Verilog port name.
const std::string net_name = std::string(bump_name) + "_net";
dbNet* net = dbNet::create(block, net_name.c_str());
dbBTerm* bterm = dbBTerm::create(net, bump_name);
bterm->setIoType(dbIoType::INOUT);
// BPin geometry required for placement checks.
dbBPin* bpin = dbBPin::create(bterm);
bpin->setPlacementStatus(dbPlacementStatus::PLACED);
dbBox::create(bpin, layer, x, y, x + 100, y + 100);
chip_bump->setNet(net);
chip_bump->setBTerm(bterm);
return chip_bump;
}
// Write the top chip's Verilog to a fixed temp file and return the path.
std::string writeVerilog()
{
const std::string filename = "/tmp/odb_test_verilog_writer.v";
ThreeDBlox writer(&logger_, db_.get());
writer.writeVerilog(filename, top_chip_);
return filename;
}
dbTech* tech_;
dbChip* top_chip_;
dbChip* chip1_;
dbChip* chip2_;
dbLib* lib_;
dbMaster* bump_master_;
};
// A bump registered with path.size() == 1 (direct child of the HIER chip)
// must produce a port connection in the Verilog output.
TEST_F(VerilogWriterFixture, test_direct_child_written)
{
// Create bump BEFORE the chip inst so it is propagated into the region inst.
dbChipRegion* r1_fr = chip1_->findChipRegion("r1_fr");
createBump(chip1_, r1_fr, "port_a", 100, 100);
dbChipInst* inst1 = dbChipInst::create(top_chip_, chip1_, "inst1");
inst1->setLoc(Point3D(0, 0, 0));
inst1->setOrient(dbOrientType3D(dbOrientType::R0, false));
// Retrieve the bump inst auto-created on the region inst.
dbChipRegionInst* ri1 = inst1->findChipRegionInst("r1_fr");
ASSERT_NE(ri1, nullptr);
dbChipBumpInst* bump_inst = *ri1->getChipBumpInsts().begin();
ASSERT_NE(bump_inst, nullptr);
// Wire the bump to a net via a direct (path length 1) path.
dbChipNet* chip_net = dbChipNet::create(top_chip_, "net_signal");
chip_net->addBumpInst(bump_inst, {inst1});
const std::string filename = writeVerilog();
const std::string content = readFileContent(filename);
// The port connection must appear in the output.
EXPECT_NE(content.find(".port_a(net_signal)"), std::string::npos);
}
// A bump registered with path.size() > 1 (nested child) must be silently
// skipped; no port connection should appear in the Verilog output.
TEST_F(VerilogWriterFixture, test_nested_child_skipped)
{
// Create bump BEFORE the chip inst so it is propagated into the region inst.
dbChipRegion* r1_fr = chip1_->findChipRegion("r1_fr");
createBump(chip1_, r1_fr, "port_b", 200, 200);
dbChipInst* inst1 = dbChipInst::create(top_chip_, chip1_, "inst1");
inst1->setLoc(Point3D(0, 0, 0));
inst1->setOrient(dbOrientType3D(dbOrientType::R0, false));
// inst2 is used only to form a path vector of length 2.
dbChipInst* inst2 = dbChipInst::create(top_chip_, chip2_, "inst2");
inst2->setLoc(Point3D(0, 0, 500));
inst2->setOrient(dbOrientType3D(dbOrientType::R0, false));
dbChipRegionInst* ri1 = inst1->findChipRegionInst("r1_fr");
ASSERT_NE(ri1, nullptr);
dbChipBumpInst* bump_inst = *ri1->getChipBumpInsts().begin();
ASSERT_NE(bump_inst, nullptr);
// Path of length 2 — nested child; writer must skip this bump.
dbChipNet* chip_net = dbChipNet::create(top_chip_, "net_deep");
chip_net->addBumpInst(bump_inst, {inst1, inst2});
const std::string filename = writeVerilog();
const std::string content = readFileContent(filename);
// No port connection should appear for the skipped bump.
EXPECT_EQ(content.find(".port_b"), std::string::npos);
}
} // namespace
} // namespace odb
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