Add batch 1 (YosysHQ_picorv32, alexforencich_verilog-ethernet, The-OpenROAD-Project_OpenROAD, darklife_darkriscv, corundum_corundum)
f61bac1 verified Download The-OpenROAD-Project_OpenROAD/src/web/test/cpp/TestSnap.cpp from SAIFIINDUSTRIES/verilog_data-1: direct link, hf CLI and curl.
- Browser
- Download file 9.63 kB
-
https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-1/resolve/main/The-OpenROAD-Project_OpenROAD/src/web/test/cpp/TestSnap.cpp
- Command line
-
hf download hf://datasets/SAIFIINDUSTRIES/verilog_data-1/The-OpenROAD-Project_OpenROAD/src/web/test/cpp/TestSnap.cpp
-
curl -L -o TestSnap.cpp https://huggingface.co/datasets/SAIFIINDUSTRIES/verilog_data-1/resolve/main/The-OpenROAD-Project_OpenROAD/src/web/test/cpp/TestSnap.cpp
9.63 kB
| // SPDX-License-Identifier: BSD-3-Clause | |
| // Copyright (c) 2026, The OpenROAD Authors | |
| namespace web { | |
| namespace { | |
| // Helper to extract payload as string. | |
| std::string payloadStr(const WebSocketResponse& resp) | |
| { | |
| return std::string(resp.payload.begin(), resp.payload.end()); | |
| } | |
| // Helper to parse a JSON literal into a boost::json::object for tests. | |
| boost::json::object parseObj(std::string_view json) | |
| { | |
| return boost::json::parse(json).as_object(); | |
| } | |
| // βββ TileGenerator::snapAt tests βββββββββββββββββββββββββββββββββββββββββββββ | |
| class SnapTest : public tst::Nangate45Fixture | |
| { | |
| protected: | |
| void SetUp() override | |
| { | |
| block_->setDieArea(odb::Rect(0, 0, 100000, 100000)); | |
| block_->setCoreArea(odb::Rect(0, 0, 100000, 100000)); | |
| } | |
| void makeTileGen() | |
| { | |
| tile_gen_ = std::make_unique<TileGenerator>( | |
| getDb(), /*sta=*/nullptr, getLogger()); | |
| } | |
| odb::dbInst* placeInst(const char* master_name, | |
| const char* inst_name, | |
| int x, | |
| int y) | |
| { | |
| odb::dbMaster* master = lib_->findMaster(master_name); | |
| EXPECT_NE(master, nullptr); | |
| odb::dbInst* inst = odb::dbInst::create(block_, master, inst_name); | |
| inst->setLocation(x, y); | |
| inst->setPlacementStatus(odb::dbPlacementStatus::PLACED); | |
| return inst; | |
| } | |
| std::unique_ptr<TileGenerator> tile_gen_; | |
| }; | |
| TEST_F(SnapTest, NoBlockReturnsNotFound) | |
| { | |
| // Create a generator with a valid db but then clear the block's die area | |
| // to create an empty design. | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers{"metal1"}; | |
| auto result | |
| = tile_gen_->snapAt(50000, 50000, 1000, 10, true, true, vis, layers); | |
| // With an empty design (no instances, no routing), snap should not find | |
| // anything except possibly the die area edges. | |
| // We just verify it doesn't crash and returns a valid result. | |
| EXPECT_TRUE(result.found || !result.found); // no crash | |
| } | |
| TEST_F(SnapTest, SnapNearInstanceEdge) | |
| { | |
| // Place an instance at (0,0). BUF_X16 has a known size in Nangate45. | |
| placeInst("BUF_X16", "buf1", 0, 0); | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers; | |
| // Query near the origin where the instance is placed. | |
| // The die area edge is at x=0 and y=0 which should be findable. | |
| auto result = tile_gen_->snapAt(100, 100, 5000, 50, true, true, vis, layers); | |
| // Should find at least the die area boundary. | |
| EXPECT_TRUE(result.found); | |
| EXPECT_LT(result.distance, 5000); | |
| } | |
| TEST_F(SnapTest, SnapWithHorizontalConstraint) | |
| { | |
| placeInst("BUF_X16", "buf1", 0, 0); | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers; | |
| // horizontal=true, vertical=false β only horizontal edges (top/bottom) | |
| auto result | |
| = tile_gen_->snapAt(50000, 100, 5000, 50, true, false, vis, layers); | |
| if (result.found) { | |
| // A horizontal-only snap should return an edge where y1 == y2 | |
| EXPECT_EQ(result.edge.first.y(), result.edge.second.y()); | |
| } | |
| } | |
| TEST_F(SnapTest, SnapWithVerticalConstraint) | |
| { | |
| placeInst("BUF_X16", "buf1", 0, 0); | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers; | |
| // horizontal=false, vertical=true β only vertical edges (left/right) | |
| auto result | |
| = tile_gen_->snapAt(100, 50000, 5000, 50, false, true, vis, layers); | |
| if (result.found) { | |
| // A vertical-only snap should return an edge where x1 == x2 | |
| EXPECT_EQ(result.edge.first.x(), result.edge.second.x()); | |
| } | |
| } | |
| TEST_F(SnapTest, SnapAtCenterReportsFarDistance) | |
| { | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers; | |
| // Die area (0,0)-(100000,100000). At center the nearest edge is 50000 away. | |
| // Snap always finds the die area edge, but the distance should be large. | |
| auto result = tile_gen_->snapAt(50000, 50000, 10, 5, true, true, vis, layers); | |
| EXPECT_TRUE(result.found); | |
| EXPECT_GE(result.distance, 49000); | |
| } | |
| TEST_F(SnapTest, DieAreaEdgeSnap) | |
| { | |
| makeTileGen(); | |
| TileVisibility vis; | |
| std::set<std::string> layers; | |
| // Die area is (0,0)β(100000,100000). Bottom edge is at y=0. | |
| // Query just above the bottom edge. | |
| auto result = tile_gen_->snapAt(50000, 50, 1000, 10, true, true, vis, layers); | |
| EXPECT_TRUE(result.found); | |
| // The bottom edge is horizontal at y=0. | |
| EXPECT_EQ(result.edge.first.y(), 0); | |
| EXPECT_EQ(result.edge.second.y(), 0); | |
| } | |
| TEST_F(SnapTest, VisibilityFilterHidesStdcells) | |
| { | |
| placeInst("BUF_X16", "buf1", 0, 0); | |
| makeTileGen(); | |
| TileVisibility vis; | |
| vis.stdcells = true; | |
| std::set<std::string> layers; | |
| // With stdcells visible, should find instance edges near origin. | |
| auto result_visible | |
| = tile_gen_->snapAt(100, 100, 5000, 50, true, true, vis, layers); | |
| vis.stdcells = false; | |
| auto result_hidden | |
| = tile_gen_->snapAt(100, 100, 5000, 50, true, true, vis, layers); | |
| // Both may find die area edges, but the instance edges should be different. | |
| // At minimum, both calls should not crash. | |
| EXPECT_TRUE(result_visible.found); | |
| EXPECT_TRUE(result_hidden.found); | |
| } | |
| // βββ handleSnap request handler tests ββββββββββββββββββββββββββββββββββββββββ | |
| class SnapHandlerTest : public tst::Nangate45Fixture | |
| { | |
| protected: | |
| void SetUp() override | |
| { | |
| block_->setDieArea(odb::Rect(0, 0, 100000, 100000)); | |
| block_->setCoreArea(odb::Rect(0, 0, 100000, 100000)); | |
| placeInst("BUF_X16", "buf1", 0, 0); | |
| gen_ = std::make_shared<TileGenerator>( | |
| getDb(), /*sta=*/nullptr, getLogger()); | |
| tcl_eval_ = std::make_shared<TclEvaluator>(/*interp=*/nullptr, getLogger()); | |
| handler_ = std::make_unique<SelectHandler>(gen_, tcl_eval_); | |
| } | |
| odb::dbInst* placeInst(const char* master_name, | |
| const char* inst_name, | |
| int x, | |
| int y) | |
| { | |
| odb::dbMaster* master = lib_->findMaster(master_name); | |
| EXPECT_NE(master, nullptr); | |
| odb::dbInst* inst = odb::dbInst::create(block_, master, inst_name); | |
| inst->setLocation(x, y); | |
| inst->setPlacementStatus(odb::dbPlacementStatus::PLACED); | |
| return inst; | |
| } | |
| std::shared_ptr<TileGenerator> gen_; | |
| std::shared_ptr<TclEvaluator> tcl_eval_; | |
| std::unique_ptr<SelectHandler> handler_; | |
| }; | |
| TEST_F(SnapHandlerTest, SnapReturnsJson) | |
| { | |
| WebSocketRequest req; | |
| req.id = 100; | |
| req.type = WebSocketRequest::kSnap; | |
| req.json = parseObj( | |
| R"({"dbu_x":50000,"dbu_y":50,"radius":1000,"point_threshold":10,"horizontal":true,"vertical":true,"visible_layers":[]})"); | |
| auto resp = handler_->handleSnap(req); | |
| EXPECT_EQ(resp.id, 100u); | |
| EXPECT_EQ(resp.type, WebSocketResponse::kJson); // JSON | |
| std::string json = payloadStr(resp); | |
| EXPECT_NE(json.find("\"found\""), std::string::npos); | |
| } | |
| TEST_F(SnapHandlerTest, SnapFoundContainsEdge) | |
| { | |
| WebSocketRequest req; | |
| req.id = 101; | |
| req.type = WebSocketRequest::kSnap; | |
| // Query near die area bottom edge at y=0. | |
| req.json = parseObj( | |
| R"({"dbu_x":50000,"dbu_y":50,"radius":1000,"point_threshold":10,"horizontal":true,"vertical":true,"visible_layers":[]})"); | |
| auto resp = handler_->handleSnap(req); | |
| EXPECT_EQ(resp.type, WebSocketResponse::kJson); | |
| std::string json = payloadStr(resp); | |
| // Should find the die area bottom edge. | |
| EXPECT_NE(json.find("\"found\":true"), std::string::npos); | |
| EXPECT_NE(json.find("\"edge\""), std::string::npos); | |
| EXPECT_NE(json.find("\"is_point\""), std::string::npos); | |
| } | |
| TEST_F(SnapHandlerTest, SnapAlwaysFindsEdgeDueToChipBoundary) | |
| { | |
| WebSocketRequest req; | |
| req.id = 102; | |
| req.type = WebSocketRequest::kSnap; | |
| // Center of design -- die area edges are always checked so snap always | |
| // finds something (the closest die boundary). | |
| req.json = parseObj( | |
| R"({"dbu_x":50000,"dbu_y":50000,"radius":10,"point_threshold":5,"horizontal":true,"vertical":true,"visible_layers":[]})"); | |
| auto resp = handler_->handleSnap(req); | |
| EXPECT_EQ(resp.type, WebSocketResponse::kJson); | |
| std::string json = payloadStr(resp); | |
| EXPECT_NE(json.find("\"found\":true"), std::string::npos); | |
| EXPECT_NE(json.find("\"edge\""), std::string::npos); | |
| } | |
| TEST_F(SnapHandlerTest, SnapDispatchesCorrectly) | |
| { | |
| // Verify that dispatch_request routes SNAP type (even though SNAP goes | |
| // through SelectHandler, not dispatch_request -- just verify SNAP type | |
| // is recognized and doesn't error out through the general path). | |
| WebSocketRequest req; | |
| req.id = 103; | |
| req.type = WebSocketRequest::kSnap; | |
| req.json = parseObj( | |
| R"({"dbu_x":100,"dbu_y":100,"radius":5000,"point_threshold":50,"horizontal":true,"vertical":true,"visible_layers":[]})"); | |
| auto resp = handler_->handleSnap(req); | |
| EXPECT_EQ(resp.id, 103u); | |
| EXPECT_NE(resp.type, WebSocketResponse::kError); // not error | |
| } | |
| TEST_F(SnapHandlerTest, TechResponseIncludesDbuPerMicron) | |
| { | |
| // The TECH response should include dbu_per_micron which is needed by the | |
| // ruler for distance calculations. | |
| TileHandler tile_handler(gen_); | |
| SessionState state; | |
| WebSocketRequest req; | |
| req.id = 104; | |
| req.type = WebSocketRequest::kTech; | |
| auto resp = tile_handler.handleTile(req, state); | |
| EXPECT_EQ(resp.type, WebSocketResponse::kJson); | |
| std::string json = payloadStr(resp); | |
| EXPECT_NE(json.find("\"dbu_per_micron\""), std::string::npos); | |
| } | |
| } // namespace | |
| } // namespace web | |