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// SPDX-License-Identifier: BSD-3-Clause
// Copyright (c) 2026, The OpenROAD Authors
// Covers the one thing no fixture could do before: load the same netlist both
// hierarchically and flat, in one process, and emit each.
#include <cstdlib>
#include <fstream>
#include <iterator>
#include <string>
#include "TestNetlists.h"
#include "gtest/gtest.h"
#include "tst/db_fixture.h"
#include "tst/loaded_design.h"
namespace tst {
namespace {
std::string workDir()
{
const char* tmp = std::getenv("TEST_TMPDIR");
return tmp != nullptr ? tmp : ".";
}
std::string readAll(const std::string& path)
{
std::ifstream in(path);
return std::string((std::istreambuf_iterator<char>(in)),
std::istreambuf_iterator<char>());
}
// top instantiates block1/block2, each with a DFF. Written out once per call
// so a test that emits into the same work dir cannot read a stale copy.
std::string netlistPath()
{
return writeNetlist(workDir(), "loaded_design_hier_in.v", kHierNetlist);
}
TEST(TestLoadedDesign, HierarchicalLinkEmitsNestedModules)
{
LoadedDesign d(Technology::kNangate45, netlistPath(), "top", true);
EXPECT_TRUE(d.hasHierarchy());
const std::string out = workDir() + "/loaded_design_hier.v";
d.writeVerilog(out);
const std::string v = readAll(out);
// The submodules survive as modules, and their instances are not flattened.
EXPECT_NE(v.find("module block1"), std::string::npos);
EXPECT_NE(v.find("block1 b1"), std::string::npos);
EXPECT_EQ(v.find("\\b1/r1 "), std::string::npos);
}
TEST(TestLoadedDesign, FlatLinkEmitsOneModuleWithEscapedNames)
{
LoadedDesign d(Technology::kNangate45, netlistPath(), "top", false);
EXPECT_FALSE(d.hasHierarchy());
const std::string out = workDir() + "/loaded_design_flat.v";
d.writeVerilog(out);
const std::string v = readAll(out);
// One module, with the hierarchy folded into escaped instance names.
EXPECT_EQ(v.find("module block1"), std::string::npos);
EXPECT_NE(v.find("\\b1/r1 "), std::string::npos);
}
// The reason LoadedDesign is not a gtest fixture: both loads in one test body.
TEST(TestLoadedDesign, BothLinkModesInOneProcess)
{
LoadedDesign hier(Technology::kNangate45, netlistPath(), "top", true);
const std::string hier_out = workDir() + "/both_hier.v";
hier.writeVerilog(hier_out);
LoadedDesign flat(Technology::kNangate45, netlistPath(), "top", false);
const std::string flat_out = workDir() + "/both_flat.v";
flat.writeVerilog(flat_out);
// Same input, two link modes, structurally different Verilog -- which is
// exactly the surface the conformance checks look at.
EXPECT_NE(readAll(hier_out), readAll(flat_out));
}
} // namespace
} // namespace tst