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Add batch 1 (YosysHQ_picorv32, alexforencich_verilog-ethernet, The-OpenROAD-Project_OpenROAD, darklife_darkriscv, corundum_corundum)
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// SPDX-License-Identifier: BSD-3-Clause
// Copyright (c) 2026, The OpenROAD Authors
#include "gtest/gtest.h"
#include "odb/db.h"
#include "odb/dbWireCodec.h"
#include "odb/wOrder.h"
#include "tst/fixture.h"
namespace odb {
class TestOrderWires : public tst::Fixture
{
protected:
struct InputBumpNet
{
dbNet* net;
dbITerm* receiver_iterm;
dbITerm* bump_iterm;
int receiver_x;
int receiver_y;
int bump_x;
int bump_y;
};
void SetUp() override
{
loadTechAndLib(
"tech", "Nangate45.lef", "_main/test/Nangate45/Nangate45.lef");
dbChip* chip = dbChip::create(db_.get(), db_->getTech());
block_ = dbBlock::create(chip, "top");
}
InputBumpNet buildInputBumpNet()
{
InputBumpNet bump_net;
dbInst* bump = makeInst(block_,
db_->findMaster("INV_X1"),
"bump",
{.location = {50000, 10000},
.status = dbPlacementStatus::PLACED,
.iterms = {{"net", "A"}}});
// Note that here we could use any type of logical cell.
dbInst* receiver = makeInst(block_,
db_->findMaster("INV_X1"),
"receiver",
{.location = {10000, 10000},
.status = dbPlacementStatus::PLACED,
.iterms = {{"net", "A"}}});
// The bterm associated to the bump has no geometry.
dbBTerm* bterm
= makeBTerm(block_, "net", {.io_type = dbIoType::INPUT, .bpins = {}});
bump_net.net = block_->findNet("net");
bump_net.receiver_iterm = receiver->findITerm("A");
bump_net.bump_iterm = bump->findITerm("A");
dbChipRegion* chip_region = dbChipRegion::create(
db_->getChip(), "R1", dbChipRegion::Side::FRONT, nullptr);
dbChipBump* chip_bump = dbChipBump::create(chip_region, bump);
chip_bump->setNet(bump_net.net);
chip_bump->setBTerm(bterm);
bump_net.receiver_iterm->getAvgXY(&bump_net.receiver_x,
&bump_net.receiver_y);
bump_net.bump_iterm->getAvgXY(&bump_net.bump_x, &bump_net.bump_y);
return bump_net;
}
dbBlock* block_;
};
TEST_F(TestOrderWires, InputBumpNetWithPatchAtTheBeginning)
{
const InputBumpNet bump_net = buildInputBumpNet();
dbTechLayer* metal1 = db_->getTech()->findLayer("metal1");
dbWire* wire = dbWire::create(bump_net.net);
dbWireEncoder encoder;
encoder.begin(wire);
// First path: a lone patch RECT, making a wire point without edges.
encoder.newPath(metal1, dbWireType::ROUTED);
encoder.addPoint(bump_net.bump_x, bump_net.bump_y);
encoder.addRect(-70, -70, 70, 70);
// Second path: a real segment from the receiver pin to the bump pad.
encoder.newPath(metal1, dbWireType::ROUTED);
encoder.addPoint(bump_net.receiver_x, bump_net.receiver_y);
encoder.addPoint(bump_net.bump_x, bump_net.bump_y);
encoder.end();
orderWires(&logger_, block_);
EXPECT_TRUE(bump_net.net->isWireOrdered());
dbWireDecoder decoder;
decoder.begin(bump_net.net->getWire());
EXPECT_EQ(decoder.next(), dbWireDecoder::PATH);
// Operation codes of the bump pin.
EXPECT_EQ(decoder.next(), dbWireDecoder::POINT);
int x, y;
decoder.getPoint(x, y);
EXPECT_EQ(x, bump_net.bump_x);
EXPECT_EQ(y, bump_net.bump_y);
EXPECT_EQ(decoder.next(), dbWireDecoder::ITERM);
EXPECT_EQ(decoder.getITerm(), bump_net.bump_iterm);
// Operation codes of the receiver.
EXPECT_EQ(decoder.next(), dbWireDecoder::POINT);
decoder.getPoint(x, y);
EXPECT_EQ(x, bump_net.receiver_x);
EXPECT_EQ(y, bump_net.receiver_y);
EXPECT_EQ(decoder.next(), dbWireDecoder::ITERM);
EXPECT_EQ(decoder.getITerm(), bump_net.receiver_iterm);
EXPECT_EQ(decoder.next(), dbWireDecoder::END_DECODE);
}
} // namespace odb