verilog_data-1 / The-OpenROAD-Project_OpenROAD /src /odb /test /cpp /TestSwapMasterUnusedPort.cpp
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// SPDX-License-Identifier: BSD-3-Clause
// Copyright (c) 2023-2025, The OpenROAD Authors
#include <cstdio>
#include <string>
#include "db_sta/dbNetwork.hh"
#include "gtest/gtest.h"
#include "odb/db.h"
#include "odb/dbTypes.h"
#include "tst/fixture.h"
#include "utl/Logger.h"
namespace odb {
class TestSwapMasterUnusedPort : public tst::Fixture
{
protected:
void SetUp() override
{
const std::string nangate_lef
= getFilePath("_main/test/Nangate45/Nangate45.lef");
const std::string nangate_lib
= getFilePath("_main/test/Nangate45/Nangate45_typ.lib");
lib_ = loadTechAndLib("Nangate45", "Nangate45", nangate_lef);
readLiberty(nangate_lib);
odb::dbChip* chip = odb::dbChip::create(db_.get(), db_->getTech());
block_ = odb::dbBlock::create(chip, "top");
block_->setDieArea(odb::Rect(0, 0, 1000, 1000));
// register proper callbacks for timer like read_def
sta_->postReadDef(block_);
// Enable hierarchy
auto* db_network = sta_->getDbNetwork();
db_network->setHierarchy();
db_network->setBlock(block_);
}
odb::dbLib* lib_ = nullptr;
odb::dbChip* chip_ = nullptr;
odb::dbBlock* block_ = nullptr;
};
// Test Case: Swap Master with Unused Ports
//
// This test verifies that internal nets are correctly created and connected
// even when the corresponding module ports are UNCONNECTED (unused) at the
// instance level.
//
// Scenario:
// 1. Define 'module_A' (Original Master)
// 2. Define 'module_B' (New Master)
// - Both have an input port 'in1' that is internally connected to logic.
// 3. Instantiate 'module_A' as 'inst_1'.
// - LEAVE 'in1' UNCONNECTED at the top level.
// 4. Swap 'inst_1' master to 'module_B'.
// 5. Verify that inside 'inst_1' (now module_B), the internal net for 'in1'
// exists and connects the port to the internal instance.
// because it's connected to a port, but boundary stitching doesn't happen
// because the port is unused.
//
// Test Case Scenario:
//
// 1. Initial State (inst_1 : module_A)
// Top Block
// +--------------------------------+
// | |
// | inst_1 (module_A) |
// | +------------------------+ |
// | | in1 (Unused Port) | |
// | | | | |
// | | v | |
// | | [BUF] (buf_a) | |
// | | | | |
// | +----|-------------------+ |
// | | |
// +--------|-----------------------+
// ^
// |
// (No Connection at Top)
//
// 2. After Swap (inst_1 : module_B)
// - Expected: Internal Net (in1 -> buf_b) must exist even if in1 is unused.
TEST_F(TestSwapMasterUnusedPort, SwapMasterUnusedPortInternalConn)
{
// Enable sanity checker for swapMaster
logger_.setDebugLevel(utl::ODB, "replace_design_check_sanity", 1);
auto* buf_master = lib_->findMaster("BUF_X1");
ASSERT_NE(buf_master, nullptr);
// 1. Create module_A (Original)
auto* module_a = odb::dbModule::create(block_, "module_A");
auto* modbterm_a_in1 = odb::dbModBTerm::create(module_a, "in1");
modbterm_a_in1->setIoType(odb::dbIoType::INPUT);
// Create internal logic for A: in1 -> BUF -> (internal net)
auto* buf_a
= odb::dbInst::create(block_, buf_master, "buf_a", false, module_a);
auto* net_in1_a = odb::dbModNet::create(module_a, "net_in1");
modbterm_a_in1->connect(net_in1_a);
// Explicitly create flat net for module_A internal connection
auto* flat_net_in1_a = odb::dbNet::create(block_, "module_A_net_in1");
buf_a->findITerm("A")->connect(flat_net_in1_a);
// Sync ModNet with FlatNet connections
net_in1_a->connectTermsOf(flat_net_in1_a);
// 2. Create module_B (New Master)
auto* module_b = odb::dbModule::create(block_, "module_B");
auto* modbterm_b_in1 = odb::dbModBTerm::create(module_b, "in1");
modbterm_b_in1->setIoType(odb::dbIoType::INPUT);
// Create internal logic for B: in1 -> BUF -> (internal net)
// Logic is same/similar, just different master name to trigger swap logic
auto* buf_b
= odb::dbInst::create(block_, buf_master, "buf_b", false, module_b);
auto* net_in1_b = odb::dbModNet::create(module_b, "net_in1");
modbterm_b_in1->connect(net_in1_b);
// Explicitly create flat net for module_B internal connection
auto* flat_net_in1_b = odb::dbNet::create(block_, "module_B_net_in1");
buf_b->findITerm("A")->connect(flat_net_in1_b);
// Sync ModNet with FlatNet connections
net_in1_b->connectTermsOf(flat_net_in1_b);
// Force isInternalTo() to return false by connecting to a Top Block BTerm.
// This simulates the condition where a net is considered "External"
// (connected to port) causing copyModuleInsts to skip it in the buggy
// version.
auto* dummy_bterm
= odb::dbBTerm::create(flat_net_in1_b, "dummy_bterm_force_external");
dummy_bterm->setIoType(odb::dbIoType::OUTPUT);
// 3. Instantiate module_A as inst_1
auto* top_module = block_->getTopModule();
auto* inst_1 = odb::dbModInst::create(top_module, module_a, "inst_1");
// CRITICAL: We do NOT connect inst_1/in1 to anything at the top level.
// It is an "Unused Port".
// Only create the ITerm, but don't connect it to a top-level ModNet.
auto* moditerm_in1 = odb::dbModITerm::create(inst_1, "in1");
moditerm_in1->setChildModBTerm(modbterm_a_in1);
modbterm_a_in1->setParentModITerm(moditerm_in1);
// 4. Swap Master to module_B
auto* new_inst_1 = inst_1->swapMaster(module_b);
ASSERT_NE(new_inst_1, nullptr);
// 5. Verification
auto* new_master
= new_inst_1->getMaster(); // This is the uniquified module_B
// Find the internal instance in the new module
// Name should be "inst_1/buf_b" (assuming flattening naming convention)
auto* new_buf_b = new_master->findDbInst("inst_1/buf_b");
ASSERT_NE(new_buf_b, nullptr);
// Check the 'A' pin of the buffer. It should be connected to the internal net
// for 'in1'.
auto* iterm_A = new_buf_b->findITerm("A");
ASSERT_NE(iterm_A, nullptr);
auto* connected_net = iterm_A->getNet();
EXPECT_NE(connected_net, nullptr)
<< "Internal pin 'A' of buffer is floating! Internal net for unused port "
"'in1' was likely not created.";
}
} // namespace odb