Add batch 1 (YosysHQ_picorv32, alexforencich_verilog-ethernet, The-OpenROAD-Project_OpenROAD, darklife_darkriscv, corundum_corundum)
f61bac1 verified Download The-OpenROAD-Project_OpenROAD/src/syn/test/graph_test.cc from SAIFIINDUSTRIES/verilog_data-1: direct link, hf CLI and curl.
- Browser
- Download file 12 kB
-
https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-1/resolve/main/The-OpenROAD-Project_OpenROAD/src/syn/test/graph_test.cc
- Command line
-
hf download hf://datasets/SAIFIINDUSTRIES/verilog_data-1/The-OpenROAD-Project_OpenROAD/src/syn/test/graph_test.cc
-
curl -L -o graph_test.cc https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-1/resolve/main/The-OpenROAD-Project_OpenROAD/src/syn/test/graph_test.cc
12 kB
| // SPDX-License-Identifier: BSD-3-Clause | |
| // Copyright (c) 2026, The OpenROAD Authors | |
| // ABC (pulled in transitively via //src/syn/src/ir → TritModel) ships its | |
| // own main() that wins over gtest_main. Provide our own to force the gtest | |
| // entry point. | |
| int main(int argc, char** argv) | |
| { | |
| testing::InitGoogleTest(&argc, argv); | |
| return RUN_ALL_TESTS(); | |
| } | |
| namespace syn { | |
| struct GraphTestAccess | |
| { | |
| static size_t tableSize(const Graph& g) { return g.tableSize(); } | |
| static Net netFromId(NetTableId id) { return Net(id); } | |
| }; | |
| TEST(GraphTest, AddNotFineDispatch) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle na = g.add<Not>(a); | |
| EXPECT_EQ(na.width(), 1u); | |
| EXPECT_EQ(g.findOne<NotFine>()->outputWidth(), 1u); | |
| } | |
| TEST(GraphTest, AddNotWideDispatch) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle na = g.add<Not>(a); | |
| EXPECT_EQ(na.width(), 4u); | |
| EXPECT_EQ(g.findOne<NotWide>()->outputWidth(), 4u); | |
| } | |
| TEST(GraphTest, AddAndFineDispatch) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle b = g.add<Input>("b", 1); | |
| Bundle c = g.add<And>(a, b); | |
| EXPECT_EQ(c.width(), 1u); | |
| EXPECT_EQ(g.findOne<AndFine>()->outputWidth(), 1u); | |
| } | |
| TEST(GraphTest, AddAndWideDispatch) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle b = g.add<Input>("b", 4); | |
| Bundle c = g.add<And>(a, b); | |
| EXPECT_EQ(c.width(), 4u); | |
| EXPECT_EQ(g.findOne<AndWide>()->outputWidth(), 4u); | |
| } | |
| TEST(GraphTest, AddAdcWide) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 8); | |
| Bundle b = g.add<Input>("b", 8); | |
| Bundle sum = g.add<Adc>(a, b, Net::zero()); | |
| EXPECT_EQ(sum.width(), 9u); | |
| EXPECT_EQ(g.findOne<AdcWide>()->outputWidth(), 9u); | |
| } | |
| TEST(GraphTest, AddOutput) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle na = g.add<Not>(a); | |
| Bundle out = g.add<Output>("out", na); | |
| EXPECT_EQ(out.width(), 1u); | |
| EXPECT_EQ(g.findOne<Output>()->name(), "out"); | |
| } | |
| TEST(GraphTest, EqSingleBitOutput) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle b = g.add<Input>("b", 4); | |
| Bundle eq = g.add<Eq>(a, b); | |
| EXPECT_EQ(eq.width(), 1u); | |
| EXPECT_EQ(g.findOne<Eq>()->outputWidth(), 1u); | |
| } | |
| TEST(GraphTest, MuxFineDispatch) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle b = g.add<Input>("b", 1); | |
| Bundle sel = g.add<Input>("sel", 1); | |
| Bundle m = g.add<Mux>(sel[0], a, b); | |
| EXPECT_EQ(m.width(), 1u); | |
| EXPECT_EQ(g.findOne<MuxFine>()->outputWidth(), 1u); | |
| } | |
| TEST(GraphTest, BufferFineAccessor) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle buf = g.add<Buffer>(a); | |
| auto [inst, offset] = g.resolve(buf[0]); | |
| EXPECT_EQ(offset, 0u); | |
| auto& buffer = *static_cast<const Buffer*>(inst); | |
| BundleView va = buffer.a(); | |
| EXPECT_EQ(va.width(), 1u); | |
| EXPECT_EQ(va[0], a[0]); | |
| } | |
| TEST(GraphTest, BufferWideAccessor) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle buf = g.add<Buffer>(a); | |
| auto [inst, offset] = g.resolve(buf[0]); | |
| EXPECT_EQ(offset, 0u); | |
| auto& buffer = *static_cast<const Buffer*>(inst); | |
| BundleView va = buffer.a(); | |
| EXPECT_EQ(va.width(), 4u); | |
| for (uint32_t i = 0; i < 4; ++i) { | |
| EXPECT_EQ(va[i], a[i]); | |
| } | |
| } | |
| TEST(GraphTest, AndBaseAccessors) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle b = g.add<Input>("b", 1); | |
| Bundle c = g.add<And>(a, b); | |
| auto [inst, offset] = g.resolve(c[0]); | |
| auto& and_inst = *static_cast<const And*>(inst); | |
| EXPECT_EQ(and_inst.a().width(), 1u); | |
| EXPECT_EQ(and_inst.a()[0], a[0]); | |
| EXPECT_EQ(and_inst.b().width(), 1u); | |
| EXPECT_EQ(and_inst.b()[0], b[0]); | |
| } | |
| TEST(GraphTest, AndWideBaseAccessors) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle b = g.add<Input>("b", 4); | |
| Bundle c = g.add<And>(a, b); | |
| auto [inst, offset] = g.resolve(c[0]); | |
| EXPECT_EQ(offset, 0u); | |
| auto& and_inst = *static_cast<const And*>(inst); | |
| EXPECT_EQ(and_inst.a().width(), 4u); | |
| EXPECT_EQ(and_inst.b().width(), 4u); | |
| for (uint32_t i = 0; i < 4; ++i) { | |
| EXPECT_EQ(and_inst.a()[i], a[i]); | |
| EXPECT_EQ(and_inst.b()[i], b[i]); | |
| } | |
| } | |
| TEST(GraphTest, MuxBaseAccessors) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle b = g.add<Input>("b", 1); | |
| Bundle sel = g.add<Input>("sel", 1); | |
| Bundle m = g.add<Mux>(sel[0], a, b); | |
| auto [inst, offset] = g.resolve(m[0]); | |
| auto& mux = *static_cast<const Mux*>(inst); | |
| EXPECT_EQ(mux.sel(), sel[0]); | |
| EXPECT_EQ(mux.a()[0], a[0]); | |
| EXPECT_EQ(mux.b()[0], b[0]); | |
| } | |
| TEST(GraphTest, AdcBaseAccessors) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 8); | |
| Bundle b = g.add<Input>("b", 8); | |
| Bundle sum = g.add<Adc>(a, b, Net::zero()); | |
| auto [inst, offset] = g.resolve(sum[0]); | |
| EXPECT_EQ(offset, 0u); | |
| auto& adc = *static_cast<const Adc*>(inst); | |
| EXPECT_EQ(adc.a().width(), 8u); | |
| EXPECT_EQ(adc.b().width(), 8u); | |
| EXPECT_EQ(adc.cin(), Net::zero()); | |
| } | |
| // ============================================================ | |
| // normalize() DCE tests | |
| // ============================================================ | |
| TEST(GraphTest, NormalizeRemovesUnusedInstance) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle b = g.add<Input>("b", 4); | |
| Bundle unused = g.add<And>(a, b); // not connected to output | |
| Bundle na = g.add<Not>(a); | |
| g.add<Output>("out", na); | |
| (void) unused; | |
| size_t before = GraphTestAccess::tableSize(g); | |
| g.normalize(); | |
| size_t after = GraphTestAccess::tableSize(g); | |
| // The And and input "b" are unreferenced → should shrink the table. | |
| EXPECT_LT(after, before); | |
| } | |
| TEST(GraphTest, NormalizePreservesOutput) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 1); | |
| Bundle na = g.add<Not>(a); | |
| g.add<Output>("out", na); | |
| size_t before = GraphTestAccess::tableSize(g); | |
| g.normalize(); | |
| // Everything is reachable, so table size should not grow. | |
| EXPECT_LE(GraphTestAccess::tableSize(g), before); | |
| } | |
| TEST(GraphTest, NormalizePreservesDff) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle clk = g.add<Input>("clk", 1); | |
| g.add<Dff>(a, | |
| ControlNet::pos(clk[0]), | |
| ControlNet::zero(), | |
| ControlNet::zero(), | |
| ControlNet::zero(), | |
| Const::zero(4), | |
| Const::zero(4), | |
| Const::zero(4)); | |
| // Dff has effects → kept even without Output. | |
| size_t before = GraphTestAccess::tableSize(g); | |
| g.normalize(); | |
| // Nothing is unreachable, so the table shouldn't shrink much. | |
| EXPECT_LE(GraphTestAccess::tableSize(g), before); | |
| } | |
| TEST(GraphTest, NormalizeEmpty) | |
| { | |
| Graph g; | |
| // No instances beyond constants. | |
| g.normalize(); | |
| // Constants still there. | |
| EXPECT_GE(GraphTestAccess::tableSize(g), 3u); | |
| } | |
| TEST(GraphTest, NormalizePreservesConstants) | |
| { | |
| Graph g; | |
| g.add<Output>("out", Bundle::zero(1)); | |
| g.normalize(); | |
| // Constants are always preserved at fixed indices. | |
| EXPECT_TRUE(g.resolve(Net::zero()).first->is<TieLow>()); | |
| EXPECT_TRUE(g.resolve(Net::one()).first->is<TieHigh>()); | |
| EXPECT_TRUE(g.resolve(Net::undef()).first->is<TieX>()); | |
| } | |
| TEST(GraphTest, NormalizeTransitiveReachability) | |
| { | |
| Graph g; | |
| Bundle a = g.add<Input>("a", 4); | |
| Bundle b = g.add<Input>("b", 4); | |
| Bundle c = g.add<And>(a, b); | |
| Bundle d = g.add<Not>(c); | |
| g.add<Output>("out", d); | |
| // Unreferenced combinational gate — no path to an effects root, so | |
| // normalize should DCE it. (Inputs are preserved as port boundaries | |
| // even when unused, so an Input isn't a valid DCE witness.) | |
| Bundle unused = g.add<Or>(a, b); | |
| (void) unused; | |
| g.normalize(); | |
| bool has_or = false; | |
| g.forEachInstance([&](const Instance* inst) { | |
| if (inst->is<Or>()) { | |
| has_or = true; | |
| } | |
| }); | |
| EXPECT_FALSE(has_or); | |
| } | |
| // ============================================================ | |
| // normalize tests | |
| // ============================================================ | |
| TEST(GraphTest, NormalizePreserveWide) | |
| { | |
| // Create a combinational loop via forward reference. | |
| // Use wide instances (8-bit) with only partial bits used in the output | |
| // to exercise per-bit liveness and slicing. | |
| std::istringstream is( | |
| "%3:4 = input \"a\"\n" | |
| "%7:4 = not %3:4\n" | |
| "%11:0 = output \"out\" %7:4\n"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->dump(std::cout); | |
| g->normalize(); | |
| std::ostringstream os; | |
| g->dump(os); | |
| EXPECT_EQ(os.str(), | |
| R"(%3:4 = input "a" | |
| %7:0 = output "out" %8:4 | |
| %8:4 = not %3:4 | |
| )"); | |
| } | |
| TEST(GraphTest, NormalizeWithCycle) | |
| { | |
| // Create a combinational loop via forward reference. | |
| // Use wide instances (8-bit) with only partial bits used in the output | |
| // to exercise per-bit liveness and slicing. | |
| std::istringstream is( | |
| "%3:8 = input \"a\"\n" | |
| "%11:8 = and %3:8 %19:8\n" | |
| "%19:8 = or %11:8 %3:8\n" | |
| "%27:0 = output \"out\" %19+0:4\n"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->normalize(); | |
| std::ostringstream os; | |
| g->dump(os); | |
| EXPECT_EQ(os.str(), | |
| R"(%3:8 = input "a" | |
| %11:0 = output "out" [ %23 %20 %17 %14 ] | |
| %12:1 = loop_breaker %14 | |
| %13:1 = and %3 %12 | |
| %14:1 = or %13 %3 | |
| %15:1 = loop_breaker %17 | |
| %16:1 = and %3+1:1 %15 | |
| %17:1 = or %16 %3+1:1 | |
| %18:1 = loop_breaker %20 | |
| %19:1 = and %3+2:1 %18 | |
| %20:1 = or %19 %3+2:1 | |
| %21:1 = loop_breaker %23 | |
| %22:1 = and %3+3:1 %21 | |
| %23:1 = or %22 %3+3:1 | |
| )"); | |
| } | |
| TEST(GraphTest, NormalizeRemovesBuffers) | |
| { | |
| // buf → not chain: normalize should eliminate the buffer. | |
| std::istringstream is( | |
| "%3:4 = input \"a\"\n" | |
| "%7:4 = buf %3:4\n" | |
| "%11:4 = not %7:4\n" | |
| "%15:0 = output \"out\" %11:4\n"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->normalize(); | |
| g->assertNone<Buffer>(); | |
| } | |
| TEST(GraphTest, NormalizeRemovesLoopBreakers) | |
| { | |
| // A loop_breaker with no actual cycle should be eliminated. | |
| std::istringstream is( | |
| "%3:1 = input \"a\"\n" | |
| "%4:1 = loop_breaker %3\n" | |
| "%5:1 = not %4\n" | |
| "%6:0 = output \"out\" %5\n"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->normalize(); | |
| g->assertNone<LoopBreaker>(); | |
| } | |
| TEST(GraphTest, NormalizeRemovesUnusedSlices) | |
| { | |
| // A loop_breaker with no actual cycle should be eliminated. | |
| std::istringstream is( | |
| R"(%3:8 = input "a" | |
| %11:0 = output "out" [ %16+0:2 ] | |
| %12:4 = xor %3:4 %3+4:4 | |
| %16:2 = not %12:2 | |
| )"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->normalize(); | |
| EXPECT_EQ(g->findOne<Xor>()->outputWidth(), 2); | |
| } | |
| // A mapped flop (Other/Target with state) in a feedback loop | |
| // should NOT produce a loop_breaker — the flop breaks the loop. | |
| TEST(GraphTest, NormalizeNoLoopBreakerForMappedFlop) | |
| { | |
| // Build: input "d" → Other("DFF") → q → Not → d_next → Other.D | |
| // The Other cell has an output Q and an input D forming a feedback | |
| // loop through the Not gate. Since Other hasState(), normalize | |
| // should treat it like a Dff and not insert a loop_breaker. | |
| std::istringstream is(R"( | |
| %3:1 = input "clk" | |
| %4:1 = other "DFF" { | |
| input "D" = %5 | |
| input "CLK" = %3 | |
| %4:1 = output "Q" | |
| } | |
| %5:1 = not %4 | |
| %6:0 = output "out" %4 | |
| )"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| g->normalize(); | |
| g->assertNone<LoopBreaker>(); | |
| } | |
| // ============================================================ | |
| // replace() tests | |
| // ============================================================ | |
| TEST(GraphTest, ReplaceSpanningMultipleInstances) | |
| { | |
| // Replace a range that spans bits from two different heap instances. | |
| std::istringstream is( | |
| "%3:8 = input \"a\"\n" | |
| "%11:4 = not %3:4\n" | |
| "%15:4 = not %3+4:4\n" | |
| "%19:4 = not %11:4\n" | |
| "%23:4 = not %15:4\n" | |
| "%27:0 = output \"out\" [ %23:4 %19:4 ]\n"); | |
| std::unique_ptr<Graph> g = Graph::parse(is); | |
| // Replace nets 21-24 (bits 2-3 of %19:4, bits 0-1 of %23:4) | |
| // with nets 5-8 (bits 2-5 of input "a"). | |
| g->forceReplace(BundleView(GraphTestAccess::netFromId(21), 4), | |
| BundleView(GraphTestAccess::netFromId(5), 4)); | |
| g->checkConsistency(); | |
| } | |
| } // namespace syn | |