const std = @import("std"); const web_engine_tool = @import("src/tooling/web_engine.zig"); fn repositoryScriptcBin(b: *std.Build) []const u8 { return b.pathFromRoot(if (b.graph.host.result.os.tag == .windows) "packages/core/node_modules/.bin/scriptc.cmd" else "packages/core/node_modules/.bin/scriptc"); } const PlatformOption = enum { auto, null, macos, linux, windows, }; const TraceOption = enum { off, events, runtime, all, }; const WebEngineOption = enum { system, chromium, }; const PackageTarget = enum { macos, windows, linux, ios, android, }; const SigningMode = enum { none, adhoc, identity, }; pub const AppOptions = @import("build/app.zig").AppOptions; pub const addApp = @import("build/app.zig").addApp; pub const AppArtifacts = @import("build/app.zig").AppArtifacts; pub const addAppArtifacts = @import("build/app.zig").addAppArtifacts; pub const MobileLibOptions = @import("build/app.zig").MobileLibOptions; pub const addMobileLib = @import("build/app.zig").addMobileLib; const mobile_export_symbol_names = @import("build/app.zig").mobile_export_symbol_names; test "service archive support matches ScriptC localized object formats" { const app_build = @import("build/app.zig"); const host = @import("builtin").target; const resolved = struct { fn target(os: std.Target.Os.Tag, arch: std.Target.Cpu.Arch, abi: std.Target.Abi) std.Build.ResolvedTarget { var result = host; result.os.tag = os; result.cpu.arch = arch; result.abi = abi; return .{ .query = .{ .os_tag = os, .cpu_arch = arch, .abi = abi }, .result = result, }; } }.target; var macos_host = host; macos_host.os.tag = .macos; macos_host.cpu.arch = .aarch64; macos_host.abi = .none; try std.testing.expect(app_build.serviceArchiveSupported(macos_host, resolved(.windows, .x86_64, .gnu))); try std.testing.expect(!app_build.serviceArchiveSupported(macos_host, resolved(.windows, .x86_64, .msvc))); try std.testing.expect(!app_build.serviceArchiveSupported(macos_host, resolved(.windows, .aarch64, .gnu))); try std.testing.expect(app_build.serviceArchiveSupported(macos_host, resolved(.linux, .x86_64, .musl))); try std.testing.expect(app_build.serviceArchiveSupported(macos_host, resolved(.linux, .aarch64, .musl))); try std.testing.expect(!app_build.serviceArchiveSupported(macos_host, resolved(.linux, .riscv64, .musl))); try std.testing.expect(app_build.serviceArchiveSupported(macos_host, resolved(.macos, .x86_64, .none))); var linux_host = host; linux_host.os.tag = .linux; linux_host.cpu.arch = .riscv64; linux_host.abi = .musl; try std.testing.expect(app_build.serviceArchiveSupported(linux_host, .{ .query = .{}, .result = linux_host })); try std.testing.expect(!app_build.serviceArchiveSupported(linux_host, resolved(.macos, .aarch64, .none))); var gnu_linux_host = host; gnu_linux_host.os.tag = .linux; gnu_linux_host.cpu.arch = .x86_64; gnu_linux_host.abi = .gnu; const explicit_same_triple_gnu = resolved(.linux, .x86_64, .gnu); try std.testing.expect(!app_build.scriptcTargetIsCross(gnu_linux_host, explicit_same_triple_gnu)); try std.testing.expect(app_build.linuxGlibcSpellingHitsDefaultFloor(explicit_same_triple_gnu)); try std.testing.expect(!app_build.linuxGlibcSpellingHitsDefaultFloor(.{ .query = .{}, .result = gnu_linux_host })); var windows_host = host; windows_host.os.tag = .windows; windows_host.cpu.arch = .x86_64; windows_host.abi = .gnu; const native_windows_msvc = resolved(.windows, .x86_64, .msvc); try std.testing.expect(!app_build.scriptcTargetIsCross(windows_host, native_windows_msvc)); try std.testing.expect(app_build.scriptcCompileSupported(windows_host, native_windows_msvc)); try std.testing.expect(app_build.serviceArchiveSupported(windows_host, native_windows_msvc)); } pub fn build(b: *std.Build) void { const target = b.standardTargetOptions(.{}); const host_target = b.graph.host; const optimize = b.standardOptimizeOption(.{}); const platform_option = b.option(PlatformOption, "platform", "Desktop backend: auto, null, macos, linux, windows") orelse .auto; const trace_option = b.option(TraceOption, "trace", "Trace output: off, events, runtime, all") orelse .events; _ = b.option(bool, "debug-overlay", "Enable debug overlay output") orelse false; _ = b.option(bool, "automation", "Enable Native SDK automation artifacts") orelse false; _ = b.option(bool, "webview", "Deprecated compatibility flag; native surfaces are always enabled") orelse true; const web_engine_override = b.option(WebEngineOption, "web-engine", "Override app.zon web engine: system, chromium"); const cef_dir_override = b.option([]const u8, "cef-dir", "Override CEF root directory for Chromium builds"); const cef_auto_install_override = b.option(bool, "cef-auto-install", "Override app.zon CEF auto-install setting"); _ = b.option(bool, "js-bridge", "Enable optional JavaScript bridge stubs") orelse false; const package_target = b.option(PackageTarget, "package-target", "Package target: macos, windows, linux, ios, android") orelse .macos; const signing_mode = b.option(SigningMode, "signing", "Signing mode: none, adhoc, identity") orelse .none; const package_version = packageVersion(b); const optimize_name = @tagName(optimize); // Resolve against THIS build's root: as a dependency of a user app the // build runner's cwd is the app project, and a cwd-relative "app.zon" // would read (and panic on) the user's manifest instead of ours. const app_web_engine = web_engine_tool.readManifestConfig(b.allocator, b.graph.io, b.pathFromRoot("app.zon")) catch |err| { std.debug.panic("failed to read the framework's own app.zon web engine config: {s}", .{@errorName(err)}); }; const resolved_web_engine = web_engine_tool.resolve(app_web_engine, .{ .web_engine = if (web_engine_override) |value| webEngineFromBuildOption(value) else null, .cef_dir = cef_dir_override, .cef_auto_install = cef_auto_install_override, }) catch |err| { std.debug.panic("invalid app.zon web engine config: {s}", .{@errorName(err)}); }; const web_engine = buildWebEngineFromResolved(resolved_web_engine.engine); const browser_web_engine: WebEngineOption = web_engine_override orelse .system; const cef_auto_install = resolved_web_engine.cef_auto_install; const selected_platform: PlatformOption = switch (platform_option) { .auto => if (target.result.os.tag == .macos) .macos else if (target.result.os.tag == .linux) .linux else if (target.result.os.tag == .windows) .windows else .null, else => platform_option, }; const cef_dir = cef_dir_override orelse defaultCefDir(selected_platform, resolved_web_engine.cef_dir); if (selected_platform == .macos and target.result.os.tag != .macos) { @panic("-Dplatform=macos requires a macOS target"); } if (selected_platform == .linux and target.result.os.tag != .linux) { @panic("-Dplatform=linux requires a Linux target"); } if (selected_platform == .windows and target.result.os.tag != .windows) { @panic("-Dplatform=windows requires a Windows target"); } if (web_engine == .chromium and selected_platform != .macos) { @panic("-Dweb-engine=chromium currently requires -Dplatform=macos"); } const geometry_mod = module(b, target, optimize, "src/primitives/geometry/root.zig"); const assets_mod = module(b, target, optimize, "src/primitives/assets/root.zig"); const app_dirs_mod = module(b, target, optimize, "src/primitives/app_dirs/root.zig"); const trace_mod = module(b, target, optimize, "src/primitives/trace/root.zig"); const app_manifest_mod = module(b, target, optimize, "src/primitives/app_manifest/root.zig"); const diagnostics_mod = module(b, target, optimize, "src/primitives/diagnostics/root.zig"); const platform_info_mod = module(b, target, optimize, "src/primitives/platform_info/root.zig"); const json_mod = module(b, target, optimize, "src/primitives/json/root.zig"); const app_runner_assets_mod = module(b, target, optimize, "src/app_runner/app_assets.zig"); const canvas_mod = module(b, target, optimize, "src/primitives/canvas/root.zig"); canvas_mod.addImport("geometry", geometry_mod); canvas_mod.addImport("json", json_mod); if (target.result.os.tag == .macos) { // The estimator-vs-CoreText agreement test (text_metrics_tests.zig) // shapes the bundled face through CoreText; apps already link these // transitively via AppKit. canvas_mod.linkFramework("CoreFoundation", .{}); canvas_mod.linkFramework("CoreGraphics", .{}); canvas_mod.linkFramework("CoreText", .{}); canvas_mod.linkSystemLibrary("c", .{}); } const debug_mod = module(b, target, optimize, "src/debug/root.zig"); debug_mod.addImport("app_dirs", app_dirs_mod); debug_mod.addImport("trace", trace_mod); const geometry_tests = testArtifact(b, geometry_mod); const assets_tests = testArtifact(b, assets_mod); const app_dirs_tests = testArtifact(b, app_dirs_mod); const trace_tests = testArtifact(b, trace_mod); const app_manifest_tests = testArtifact(b, app_manifest_mod); const diagnostics_tests = testArtifact(b, diagnostics_mod); const platform_info_tests = testArtifact(b, platform_info_mod); const json_tests = testArtifact(b, json_mod); const app_runner_assets_tests = testArtifact(b, app_runner_assets_mod); const canvas_tests = testArtifact(b, canvas_mod); const desktop_mod = module(b, target, optimize, "src/root.zig"); desktop_mod.addImport("geometry", geometry_mod); desktop_mod.addImport("app_dirs", app_dirs_mod); desktop_mod.addImport("assets", assets_mod); desktop_mod.addImport("trace", trace_mod); desktop_mod.addImport("app_manifest", app_manifest_mod); desktop_mod.addImport("diagnostics", diagnostics_mod); desktop_mod.addImport("platform_info", platform_info_mod); desktop_mod.addImport("json", json_mod); desktop_mod.addImport("canvas", canvas_mod); desktop_mod.addImport("terminal_vt", terminalVtModule(b, target, optimize)); desktop_mod.addIncludePath(b.path("third_party/sqlite")); desktop_mod.addCSourceFile(.{ .file = b.path("third_party/sqlite/sqlite3.c"), // Mobile -Dtargets (the mobile e2e battery) compile the // amalgamation against the platform SDK/NDK sysroot; desktop // targets keep Zig's ordinary libc discovery. .flags = if (target.result.os.tag == .ios or target.result.abi.isAndroid()) @import("build/app.zig").sqliteCFlags(b, target) else sqliteCompileFlags(), }); const app_runner_window_placement_mod = module(b, target, optimize, "src/app_runner/window_placement.zig"); app_runner_window_placement_mod.addImport("native_sdk", desktop_mod); const app_runner_window_placement_tests = testArtifact(b, app_runner_window_placement_mod); const app_runner_options = b.addOptions(); app_runner_options.addOption([]const u8, "platform", "null"); app_runner_options.addOption([]const u8, "trace", "off"); app_runner_options.addOption([]const u8, "web_engine", "system"); app_runner_options.addOption(bool, "debug_overlay", false); app_runner_options.addOption(bool, "automation", false); app_runner_options.addOption(bool, "web_layer", false); const app_runner_mod = module(b, target, optimize, "src/app_runner/root.zig"); app_runner_mod.addImport("native_sdk", desktop_mod); app_runner_mod.addImport("build_options", app_runner_options.createModule()); app_runner_mod.addImport("app_manifest_zon", b.createModule(.{ .root_source_file = b.path("tests/app-runner/menu_commands_fixture.zon") })); const app_runner_migrations_mod = module(b, target, optimize, "src/app_runner/no_migrations.zig"); app_runner_migrations_mod.addImport("native_sdk", desktop_mod); app_runner_mod.addImport("relational_migrations", app_runner_migrations_mod); const app_runner_tests = testArtifact(b, app_runner_mod); const app_runner_test_run = b.addRunArtifact(app_runner_tests); const app_runner_test_step = b.step("test-app-runner", "Run framework app-runner manifest fallback tests"); app_runner_test_step.dependOn(&app_runner_test_run.step); desktop_mod.link_libc = true; if (target.result.os.tag == .macos) { const flags: []const []const u8 = if (b.sysroot) |sysroot| &.{ "-fobjc-arc", "-fno-sanitize=builtin", "-ObjC", "-mmacosx-version-min=11.0", "-isysroot", sysroot, b.fmt("-I{s}/usr/include", .{sysroot}) } else &.{ "-fobjc-arc", "-fno-sanitize=builtin", "-ObjC", "-mmacosx-version-min=11.0" }; desktop_mod.addCSourceFile(.{ .file = b.path("src/platform/macos/image_fit_test.m"), .flags = flags }); desktop_mod.linkFramework("Foundation", .{}); desktop_mod.linkFramework("ImageIO", .{}); desktop_mod.linkSystemLibrary("objc", .{}); } const desktop_tests = testArtifact(b, desktop_mod); const desktop_test_shards = desktopTestShardArtifacts(b, desktop_mod); // Tier-5 crash battery: a child uses the public streamed sink, signals // after a chunk is durable only in the atomic temporary, then the parent // kills it and verifies the destination still names the old generation. const file_crash_helper_mod = module(b, target, optimize, "src/runtime/file_effect_crash_helper.zig"); file_crash_helper_mod.addImport("native_sdk", desktop_mod); const file_crash_helper = b.addExecutable(.{ .name = "file-effect-crash-helper", .root_module = file_crash_helper_mod }); const file_crash_tests_mod = module(b, target, optimize, "src/runtime/file_effect_crash_tests.zig"); file_crash_tests_mod.addImport("native_sdk", desktop_mod); const file_crash_options = b.addOptions(); file_crash_options.addOptionPath("helper_executable", file_crash_helper.getEmittedBin()); file_crash_tests_mod.addOptions("file_crash_options", file_crash_options); const file_crash_tests = testArtifact(b, file_crash_tests_mod); const file_crash_run = b.addRunArtifact(file_crash_tests); const file_crash_step = b.step("test-file-effect-crash", "Kill a streamed writer before close and verify atomic destination visibility"); file_crash_step.dependOn(&file_crash_run.step); const tier5_tests = filteredTestArtifact(b, desktop_mod, "storage-tier-5-tests", &.{ "runtime.effects_file_tests.test", "runtime.file_access.test", "runtime.session_record.test.recorder moves streamed file chunks", "runtime.session_tests.test.a multi-megabyte file stream", }); const tier5_run = b.addRunArtifact(tier5_tests); const tier5_step = b.step("test-storage-tier-5", "Run file streaming, bounds, replay/blob, gating, and crash-atomicity batteries"); tier5_step.dependOn(&tier5_run.step); tier5_step.dependOn(&file_crash_run.step); // SQLite is capability-shed from ordinary app artifacts. Its focused // engine/store suite gets a dedicated module that explicitly compiles the // vendored amalgamation, so framework tests cover it without making every // unrelated example carry the database object. const record_store_mod = module(b, target, optimize, "src/runtime/record_store.zig"); record_store_mod.addIncludePath(b.path("third_party/sqlite")); record_store_mod.addCSourceFile(.{ .file = b.path("third_party/sqlite/sqlite3.c"), .flags = sqliteCompileFlags(), }); record_store_mod.link_libc = true; const record_store_tests = testArtifact(b, record_store_mod); // The embeddable static library's root module carries only the C ABI // exports (fixed WebView shell host); user-app canvas libraries are // produced by `addMobileLib` from src/embed/app_exports.zig instead. const embed_exports_mod = module(b, target, optimize, "src/embed/c_exports.zig"); embed_exports_mod.addImport("native_sdk", desktop_mod); embed_exports_mod.export_symbol_names = &mobile_export_symbol_names; const embed_lib = b.addLibrary(.{ .linkage = .static, .name = "native-sdk", .root_module = embed_exports_mod, // The embed C ABI (`native_sdk_app_viewport`) is exactly the // f32-heavy SysV signature Zig 0.16.0's self-hosted x86_64 backend // miscompiles (see useLlvmWorkaround in build/app.zig): without // this, Debug x86_64 libs (Android emulators, Intel simulators) // hand clang hosts corrupted inset/keyboard floats. addMobileLib // already forces LLVM there; the fixed-shell lib must match. .use_llvm = @import("build/app.zig").useLlvmWorkaround(target), }); b.installArtifact(embed_lib); const automation_protocol_mod = module(b, target, optimize, "src/automation/protocol.zig"); const automation_protocol_tests = testArtifact(b, automation_protocol_mod); // The app-icon pipeline as a standalone module: tooling needs only // the vector core + PNG codec slice of canvas, not the full canvas // module (which links platform frameworks on macOS and would weigh // down the cross-compiled CLI). const app_icon_mod = module(b, target, optimize, "src/primitives/canvas/app_icon.zig"); app_icon_mod.addImport("geometry", geometry_mod); // The iOS and Android host sources as embedded bytes: the tooling // module writes and compiles them for `native dev|package --target // ios|android`. const ios_host_mod = module(b, target, optimize, "src/platform/ios/files.zig"); const android_host_mod = module(b, target, optimize, "src/platform/android/files.zig"); const tooling_mod = module(b, target, optimize, "src/tooling/root.zig"); tooling_mod.addImport("assets", assets_mod); tooling_mod.addImport("app_dirs", app_dirs_mod); tooling_mod.addImport("app_manifest", app_manifest_mod); tooling_mod.addImport("diagnostics", diagnostics_mod); tooling_mod.addImport("debug", debug_mod); tooling_mod.addImport("platform_info", platform_info_mod); tooling_mod.addImport("trace", trace_mod); tooling_mod.addImport("app_icon", app_icon_mod); tooling_mod.addImport("ios_host", ios_host_mod); tooling_mod.addImport("android_host", android_host_mod); tooling_mod.addImport("sqlite_engine", module(b, target, optimize, "src/runtime/sqlite_engine.zig")); tooling_mod.addIncludePath(b.path("third_party/sqlite")); tooling_mod.addCSourceFile(.{ .file = b.path("third_party/sqlite/sqlite3.c"), .flags = sqliteCompileFlags(), }); tooling_mod.link_libc = true; const tooling_tests = testArtifact(b, tooling_mod); // Ejected-component identity proofs: a separate test module because // the canonical component sources under src/tooling/components/ // import `native_sdk` exactly as they will inside an app after // `native eject component ` copies them there. const eject_components_mod = module(b, target, optimize, "src/tooling/components/identity_tests.zig"); eject_components_mod.addImport("native_sdk", desktop_mod); const eject_components_tests = testArtifact(b, eject_components_mod); // corewire, the contract-sidecar shim generator (tools/corewire): // std-only unit suites, one test root per source file (tests live // in the file they cover, and imported files' tests do not run // under an importer's root). The conformance suite — every fixture's // generated mirror validated over its frontend-emitted contract — // rides the ts-core e2e block, since it needs node and the frontend // toolchain. const corewire_sidecar_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/sidecar.zig")); const corewire_emit_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/emit.zig")); const corewire_facade_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/emit_facade.zig")); const corewire_profile_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/emit_profile.zig")); const corewire_service_contract_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/service_contract.zig")); const corewire_service_emit_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/emit_service.zig")); const corewire_shim_rt_tests = testArtifact(b, module(b, target, optimize, "tools/corewire/shim_rt.zig")); // TypeScript-core end-to-end suite: each fixture core is compiled // through the external core compiler AT BUILD TIME (never a // committed archive) and its e2e battery drives the linked archive // through the real runtime via `TsCoreHost` over the generated // mirror. Gated on node plus the package's installed dependencies // (`npm ci` in packages/core — the compiler and the frontend // toolchain arrive together): absent either, the suite is skipped // (the bridge itself stays covered by // src/runtime/ts_core_host_tests.zig against a hand-written // core-ABI module). const ts_core_e2e_tests = tsCoreE2eArtifact(b, target, optimize, desktop_mod, tooling_mod); const ui_markup_mod = module(b, target, optimize, "src/primitives/canvas/ui_markup.zig"); const markup_lsp_mod = module(b, target, optimize, "tools/native-sdk/markup_lsp.zig"); markup_lsp_mod.addImport("ui_markup", ui_markup_mod); const markup_lsp_tests = testArtifact(b, markup_lsp_mod); const automation_cli_mod = module(b, target, optimize, "tools/native-sdk/automation.zig"); automation_cli_mod.addImport("automation_protocol", automation_protocol_mod); automation_cli_mod.addImport("ui_markup", ui_markup_mod); const automation_cli_tests = testArtifact(b, automation_cli_mod); const markup_cli_mod = module(b, target, optimize, "tools/native-sdk/markup.zig"); markup_cli_mod.addImport("ui_markup", ui_markup_mod); markup_cli_mod.addImport("markup_lsp", markup_lsp_mod); const markup_cli_tests = testArtifact(b, markup_cli_mod); // The evals harness's Cmd wire-format decoder (copied next to every // ts-track case harness at grading time). Its own tests run here — // NOT at eval time — because a decoder that lags a // cmd_format_version bump panics mid-eval inside case harnesses, // where the failure reads as the graded app's, not the tooling's. const evals_cmdview_mod = module(b, target, optimize, "evals/harness-lib/cmdview.zig"); const evals_cmdview_tests = testArtifact(b, evals_cmdview_mod); const build_graph_tests = testArtifact(b, module(b, host_target, optimize, "build.zig")); // `native version` names the commit the binary was built from, so // binary/framework skew ("your native binary may be stale") is a // one-command check. Falls back to "unknown" outside a git checkout. const cli_build_info = b.addOptions(); cli_build_info.addOption([]const u8, "build_commit", cliBuildCommit(b)); const cli_mod = module(b, target, optimize, "tools/native-sdk/main.zig"); cli_mod.addImport("tooling", tooling_mod); cli_mod.addImport("automation_protocol", automation_protocol_mod); cli_mod.addImport("ui_markup", ui_markup_mod); cli_mod.addImport("markup_lsp", markup_lsp_mod); cli_mod.addOptions("cli_build_info", cli_build_info); const cli_exe = b.addExecutable(.{ .name = "native", .root_module = cli_mod, }); b.installArtifact(cli_exe); // `zig build cli` builds and installs ONLY the CLI executable. The // release pipeline cross-compiles it for every supported platform // (packages/native-sdk/scripts/build-binaries.sh), and skipping the // framework libraries, examples, and docs artifacts keeps that // eight-target loop fast. const cli_step = b.step("cli", "Build only the native CLI executable (cross-compile friendly)"); cli_step.dependOn(&b.addInstallArtifact(cli_exe, .{}).step); const host_assets_mod = module(b, host_target, optimize, "src/primitives/assets/root.zig"); const host_app_dirs_mod = module(b, host_target, optimize, "src/primitives/app_dirs/root.zig"); const host_app_manifest_mod = module(b, host_target, optimize, "src/primitives/app_manifest/root.zig"); const host_diagnostics_mod = module(b, host_target, optimize, "src/primitives/diagnostics/root.zig"); const host_platform_info_mod = module(b, host_target, optimize, "src/primitives/platform_info/root.zig"); const host_trace_mod = module(b, host_target, optimize, "src/primitives/trace/root.zig"); const host_debug_mod = module(b, host_target, optimize, "src/debug/root.zig"); host_debug_mod.addImport("app_dirs", host_app_dirs_mod); host_debug_mod.addImport("trace", host_trace_mod); const host_automation_protocol_mod = module(b, host_target, optimize, "src/automation/protocol.zig"); const host_geometry_mod = module(b, host_target, optimize, "src/primitives/geometry/root.zig"); const host_app_icon_mod = module(b, host_target, optimize, "src/primitives/canvas/app_icon.zig"); host_app_icon_mod.addImport("geometry", host_geometry_mod); const host_ios_host_mod = module(b, host_target, optimize, "src/platform/ios/files.zig"); const host_android_host_mod = module(b, host_target, optimize, "src/platform/android/files.zig"); const host_tooling_mod = module(b, host_target, optimize, "src/tooling/root.zig"); host_tooling_mod.addImport("assets", host_assets_mod); host_tooling_mod.addImport("app_dirs", host_app_dirs_mod); host_tooling_mod.addImport("app_manifest", host_app_manifest_mod); host_tooling_mod.addImport("diagnostics", host_diagnostics_mod); host_tooling_mod.addImport("debug", host_debug_mod); host_tooling_mod.addImport("platform_info", host_platform_info_mod); host_tooling_mod.addImport("trace", host_trace_mod); host_tooling_mod.addImport("app_icon", host_app_icon_mod); host_tooling_mod.addImport("ios_host", host_ios_host_mod); host_tooling_mod.addImport("android_host", host_android_host_mod); host_tooling_mod.addImport("sqlite_engine", module(b, host_target, optimize, "src/runtime/sqlite_engine.zig")); host_tooling_mod.addIncludePath(b.path("third_party/sqlite")); host_tooling_mod.addCSourceFile(.{ .file = b.path("third_party/sqlite/sqlite3.c"), .flags = sqliteCompileFlags(), }); host_tooling_mod.link_libc = true; const host_ui_markup_mod = module(b, host_target, optimize, "src/primitives/canvas/ui_markup.zig"); const host_markup_lsp_mod = module(b, host_target, optimize, "tools/native-sdk/markup_lsp.zig"); host_markup_lsp_mod.addImport("ui_markup", host_ui_markup_mod); const host_cli_mod = module(b, host_target, optimize, "tools/native-sdk/main.zig"); host_cli_mod.addImport("tooling", host_tooling_mod); host_cli_mod.addImport("automation_protocol", host_automation_protocol_mod); host_cli_mod.addImport("ui_markup", host_ui_markup_mod); host_cli_mod.addImport("markup_lsp", host_markup_lsp_mod); host_cli_mod.addOptions("cli_build_info", cli_build_info); const host_cli_exe = b.addExecutable(.{ .name = "native", .root_module = host_cli_mod, }); // Docs component-preview generator: renders the built-in component // catalog offscreen through the deterministic reference renderer and // writes theme-aware webp pairs plus the markup vocabulary JSON into // docs/. Regenerate with `zig build docs-component-previews`. const docs_previews_mod = module(b, target, optimize, "tools/docs_component_previews.zig"); docs_previews_mod.addImport("native_sdk", desktop_mod); // The eject registry as its own lean module (its imports stay inside // src/tooling/), so the vocab JSON's `ejectable` table is written from // the same rows `native eject component` dispatches on — the docs' // resolves from that JSON and can never drift. docs_previews_mod.addImport("eject_components", module(b, target, optimize, "src/tooling/eject_components.zig")); const docs_previews_exe = b.addExecutable(.{ .name = "docs-component-previews", .root_module = docs_previews_mod, }); const run_docs_previews = b.addRunArtifact(docs_previews_exe); run_docs_previews.addArg(b.pathFromRoot("docs/public/components")); run_docs_previews.addArg(b.pathFromRoot("docs/src/lib/component-vocab.json")); run_docs_previews.has_side_effects = true; const docs_previews_step = b.step("docs-component-previews", "Render built-in component previews and vocab JSON into docs/"); docs_previews_step.dependOn(&run_docs_previews.step); // Render macro-benchmark: deterministic scenarios through the REAL // engine pipeline (UiApp + Runtime + null-platform binary packet // presents), reporting end-to-end and per-stage p50/p90 per // interaction. Baselines should come from // `zig build bench-render -Doptimize=ReleaseFast`. const bench_render_mod = module(b, target, optimize, "tools/bench_render.zig"); bench_render_mod.addImport("native_sdk", desktop_mod); const bench_render_exe = b.addExecutable(.{ .name = "bench-render", .root_module = bench_render_mod, }); const run_bench_render = b.addRunArtifact(bench_render_exe); run_bench_render.has_side_effects = true; // Repo root as cwd so the relative budgets path in the docs/gate // invocation resolves regardless of where `zig build` ran from. run_bench_render.setCwd(b.path(".")); // Ratchet mode: `zig build bench-render -Doptimize=ReleaseFast -- // --check tools/bench-render-budgets.txt` compares the median e2e // p50 of three suite passes against the committed budgets (the // benchmark refuses --check outside ReleaseFast). if (b.args) |bench_args| run_bench_render.addArgs(bench_args); const bench_render_step = b.step("bench-render", "Run the render macro-benchmark (deterministic scenarios; pass -Doptimize=ReleaseFast for baselines, `-- --check tools/bench-render-budgets.txt` for the budget ratchet)"); bench_render_step.dependOn(&run_bench_render.step); // Live docs previews: the same scene catalog compiled to // wasm32-freestanding (tools/docs_wasm_preview.zig) so the docs // upgrade the static webp tiles to interactive engine instances. // ReleaseSmall + strip keep the module small enough to lazy-load. const wasm_target = b.resolveTargetQuery(.{ .cpu_arch = .wasm32, .os_tag = .freestanding }); const wasm_optimize: std.builtin.OptimizeMode = .ReleaseSmall; const wasm_geometry_mod = module(b, wasm_target, wasm_optimize, "src/primitives/geometry/root.zig"); const wasm_json_mod = module(b, wasm_target, wasm_optimize, "src/primitives/json/root.zig"); const wasm_canvas_mod = module(b, wasm_target, wasm_optimize, "src/primitives/canvas/root.zig"); wasm_canvas_mod.addImport("geometry", wasm_geometry_mod); wasm_canvas_mod.addImport("json", wasm_json_mod); const wasm_native_mod = module(b, wasm_target, wasm_optimize, "src/root.zig"); wasm_native_mod.addImport("geometry", wasm_geometry_mod); wasm_native_mod.addImport("json", wasm_json_mod); wasm_native_mod.addImport("canvas", wasm_canvas_mod); wasm_native_mod.addImport("app_dirs", module(b, wasm_target, wasm_optimize, "src/primitives/app_dirs/root.zig")); wasm_native_mod.addImport("assets", module(b, wasm_target, wasm_optimize, "src/primitives/assets/root.zig")); wasm_native_mod.addImport("trace", module(b, wasm_target, wasm_optimize, "src/primitives/trace/root.zig")); wasm_native_mod.addImport("app_manifest", module(b, wasm_target, wasm_optimize, "src/primitives/app_manifest/root.zig")); wasm_native_mod.addImport("diagnostics", module(b, wasm_target, wasm_optimize, "src/primitives/diagnostics/root.zig")); wasm_native_mod.addImport("platform_info", module(b, wasm_target, wasm_optimize, "src/primitives/platform_info/root.zig")); // The docs preview never runs an emulator: the stub keeps the wasm // module free of the ghostty graph (and of pty transports it could // not use anyway). wasm_native_mod.addImport("terminal_vt", module(b, wasm_target, wasm_optimize, "src/runtime/terminal_vt_stub.zig")); const docs_wasm_preview_mod = module(b, wasm_target, wasm_optimize, "tools/docs_wasm_preview.zig"); docs_wasm_preview_mod.addImport("native_sdk", wasm_native_mod); docs_wasm_preview_mod.strip = true; const docs_wasm_preview_exe = b.addExecutable(.{ .name = "component-preview", .root_module = docs_wasm_preview_mod, }); docs_wasm_preview_exe.entry = .disabled; docs_wasm_preview_exe.rdynamic = true; // The engine trades heap for fixed capacity but still builds some // sizable stack temporaries (NullPlatform alone is ~800 KB); the // 1 MB wasm default overflows into linear memory silently. docs_wasm_preview_exe.stack_size = 16 * 1024 * 1024; const copy_docs_wasm_preview = b.addUpdateSourceFiles(); copy_docs_wasm_preview.addCopyFileToSource(docs_wasm_preview_exe.getEmittedBin(), "docs/public/wasm/component-preview.wasm"); const docs_wasm_preview_step = b.step("docs-wasm-preview", "Compile the live component-preview wasm module into docs/public/wasm/"); docs_wasm_preview_step.dependOn(©_docs_wasm_preview.step); const file_contains_checker_mod = module(b, host_target, optimize, "tools/check_file_contains.zig"); const file_contains_checker = b.addExecutable(.{ .name = "check-file-contains", .root_module = file_contains_checker_mod, }); // Registry pin printer: emits the ui_schema table counts and // fingerprints in the exact form ui_schema_tests.zig pins, plus the // next free code per table for reserving codes ahead of parallel // work, plus this build's layout fingerprints (session journal // format, automation protocol). `zig build print-pins` after // registry additions. The journal fingerprint lives in the full // framework module, and the tool runs on the build HOST by // construction (addRunArtifact), so it builds against a host clone // of the framework module — cross-compiled `-Dtarget` builds keep a // runnable print-pins, and the fingerprints are layout identities // (type shapes, never target-sized values), identical either way. const pins_json_mod = module(b, host_target, optimize, "src/primitives/json/root.zig"); const pins_canvas_mod = module(b, host_target, optimize, "src/primitives/canvas/root.zig"); pins_canvas_mod.addImport("geometry", host_geometry_mod); pins_canvas_mod.addImport("json", pins_json_mod); if (host_target.result.os.tag == .macos) { // Same CoreText linkage the target canvas module carries (see // canvas_mod above): the shaping path calls it on macOS hosts. pins_canvas_mod.linkFramework("CoreFoundation", .{}); pins_canvas_mod.linkFramework("CoreGraphics", .{}); pins_canvas_mod.linkFramework("CoreText", .{}); pins_canvas_mod.linkSystemLibrary("c", .{}); } const pins_native_mod = module(b, host_target, optimize, "src/root.zig"); pins_native_mod.addImport("geometry", host_geometry_mod); pins_native_mod.addImport("app_dirs", host_app_dirs_mod); pins_native_mod.addImport("assets", host_assets_mod); pins_native_mod.addImport("trace", host_trace_mod); pins_native_mod.addImport("app_manifest", host_app_manifest_mod); pins_native_mod.addImport("diagnostics", host_diagnostics_mod); pins_native_mod.addImport("platform_info", host_platform_info_mod); pins_native_mod.addImport("json", pins_json_mod); pins_native_mod.addImport("canvas", pins_canvas_mod); // The pin printer reflects registry tables and layout fingerprints — // type shapes, never emulator state — so the stub keeps it light. pins_native_mod.addImport("terminal_vt", module(b, host_target, optimize, "src/runtime/terminal_vt_stub.zig")); const print_pins_mod = module(b, host_target, optimize, "tools/print_pins.zig"); print_pins_mod.addImport("native_sdk", pins_native_mod); const print_pins_exe = b.addExecutable(.{ .name = "print-pins", .root_module = print_pins_mod, }); const run_print_pins = b.addRunArtifact(print_pins_exe); run_print_pins.has_side_effects = true; const print_pins_step = b.step("print-pins", "Print registry counts and fingerprints in pin-ready form"); print_pins_step.dependOn(&run_print_pins.step); const platform_arg = switch (selected_platform) { .auto => unreachable, .null => "null", .macos => "macos", .linux => "linux", .windows => "windows", }; const test_step = b.step("test", "Run package and framework tests"); test_step.dependOn(&b.addRunArtifact(build_graph_tests).step); test_step.dependOn(&b.addRunArtifact(geometry_tests).step); test_step.dependOn(&b.addRunArtifact(assets_tests).step); test_step.dependOn(&b.addRunArtifact(app_dirs_tests).step); test_step.dependOn(&b.addRunArtifact(trace_tests).step); test_step.dependOn(&b.addRunArtifact(app_manifest_tests).step); test_step.dependOn(&b.addRunArtifact(diagnostics_tests).step); test_step.dependOn(&b.addRunArtifact(platform_info_tests).step); test_step.dependOn(&b.addRunArtifact(json_tests).step); test_step.dependOn(&b.addRunArtifact(app_runner_assets_tests).step); test_step.dependOn(&b.addRunArtifact(app_runner_window_placement_tests).step); test_step.dependOn(&app_runner_test_run.step); test_step.dependOn(&b.addRunArtifact(canvas_tests).step); test_step.dependOn(&b.addRunArtifact(record_store_tests).step); test_step.dependOn(&file_crash_run.step); for (desktop_test_shards) |shard_tests| { test_step.dependOn(&b.addRunArtifact(shard_tests).step); } test_step.dependOn(&b.addRunArtifact(automation_protocol_tests).step); test_step.dependOn(&b.addRunArtifact(tooling_tests).step); test_step.dependOn(&b.addRunArtifact(eject_components_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_sidecar_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_emit_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_facade_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_profile_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_service_contract_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_service_emit_tests).step); test_step.dependOn(&b.addRunArtifact(corewire_shim_rt_tests).step); const ts_services_e2e_step = b.step("test-ts-services-e2e", "Run both TypeScript service carriers end to end: the out-of-process child (crash recovery, timeout, replay) and the in-process pool (parallel keys, FIFO, trap isolation, replay)"); if (ts_core_e2e_tests) |ts_core_artifacts| { const ts_core_e2e_step = b.step("test-ts-core-e2e", "Run the TypeScript-core end-to-end suites over externally compiled fixture cores (requires node and `npm ci` in packages/core)"); const host_e2e_run = b.addRunArtifact(ts_core_artifacts.host); const persist_e2e_run = b.addRunArtifact(ts_core_artifacts.persist); const markup_e2e_run = b.addRunArtifact(ts_core_artifacts.markup); const kanban_e2e_run = b.addRunArtifact(ts_core_artifacts.kanban); const soundboard_e2e_run = b.addRunArtifact(ts_core_artifacts.soundboard); const monitor_e2e_run = b.addRunArtifact(ts_core_artifacts.system_monitor); const scaffold_ide_e2e_run = b.addRunArtifact(ts_core_artifacts.scaffold_ide); // The suite scaffolds and typechecks real trees under .zig-cache; // no build inputs/outputs to hash, so always run it. scaffold_ide_e2e_run.has_side_effects = true; const ai_chat_e2e_run = b.addRunArtifact(ts_core_artifacts.ai_chat); const feed_reader_e2e_run = b.addRunArtifact(ts_core_artifacts.feed_reader); const services_e2e_run = b.addRunArtifact(ts_core_artifacts.services); ts_services_e2e_step.dependOn(&feed_reader_e2e_run.step); ts_services_e2e_step.dependOn(&services_e2e_run.step); // The same fixture through the in-process carrier (ServicePool over // the linked service archive): parallel keys, per-key FIFO, // cooperative cancellation/deadlines, trap isolation, streaming, // and replay without initializing the archive. const services_pool_e2e_run: ?*std.Build.Step.Run = if (ts_core_artifacts.services_pool) |pool_tests| pool: { const run = b.addRunArtifact(pool_tests); ts_services_e2e_step.dependOn(&run.step); break :pool run; } else null; // Service carrier benchmark: cold start, warm round-trip latency // for small and large payloads, and queued throughput, through the // production carrier bindings of BOTH carriers — the out-of-process // child and the in-process pool — against one bytes-echo service // (see tools/bench_service_host.zig). const bench_service_host_run = b.addRunArtifact(ts_core_artifacts.service_host_bench); bench_service_host_run.has_side_effects = true; // Repo root as cwd so the generated service executable path and the // benchmark's scratch directory resolve regardless of where // `zig build` ran from. bench_service_host_run.setCwd(b.path(".")); const bench_service_host_step = b.step("bench-service-host", "Run the service carrier benchmark over both carriers (cold start, round-trip latency, queued throughput; requires node and `npm ci` in packages/core; pass -Doptimize=ReleaseFast for baselines)"); bench_service_host_step.dependOn(&bench_service_host_run.step); const sidecar_conformance_run = b.addRunArtifact(ts_core_artifacts.sidecar_conformance); const sidecar_conformance_step = b.step("sidecar-conformance", "Validate corewire-generated mirrors over every fixture's frontend-emitted contract (requires node)"); sidecar_conformance_step.dependOn(&sidecar_conformance_run.step); // ABI-law suites over real compiled cores: the broad markup fixture // plus the focused mixed bare-Model/[Model, Cmd] return regression. const abi_laws_run = b.addRunArtifact(ts_core_artifacts.external_core_abi_laws); const mixed_return_abi_run = b.addRunArtifact(ts_core_artifacts.mixed_return_abi_laws); const abi_laws_step = b.step("test-external-core-abi", "Run the compiled-core ABI-law suites, including mixed update returns (requires node and `npm ci` in packages/core)"); abi_laws_step.dependOn(&abi_laws_run.step); abi_laws_step.dependOn(&mixed_return_abi_run.step); test_step.dependOn(&abi_laws_run.step); test_step.dependOn(&mixed_return_abi_run.step); // The cross-execution battery staging: the host-fixture and // markup batteries (update/snapshot/effects and the markup view // over genuinely compiled cores) plus, where the target admits // the in-process archive, the service pool battery, installed // under /e2e for execution on the target machine. Pair // with -Dtarget and -p; scripts/cross-e2e.sh is the driver. const cross_e2e_step = b.step("stage-cross-e2e", "Install the TS-core e2e batteries under /e2e for execution on the build target (pair with -Dtarget and -p; see scripts/cross-e2e.sh)"); const e2e_dir: std.Build.Step.InstallArtifact.Options.Dir = .{ .override = .{ .custom = "e2e" } }; cross_e2e_step.dependOn(&b.addInstallArtifact(ts_core_artifacts.host, .{ .dest_dir = e2e_dir }).step); cross_e2e_step.dependOn(&b.addInstallArtifact(ts_core_artifacts.markup, .{ .dest_dir = e2e_dir }).step); if (ts_core_artifacts.services_pool) |pool_tests| { cross_e2e_step.dependOn(&b.addInstallArtifact(pool_tests, .{ .dest_dir = e2e_dir }).step); } // The mobile execution battery staging: one static library the // platform toolchain (xcrun clang / NDK clang) links around a tiny // harness for execution on the simulator or emulator. Registered // only for a mobile -Dtarget; scripts/mobile-e2e.sh is the driver. if (ts_core_artifacts.mobile_battery) |battery| { const mobile_e2e_step = b.step("stage-mobile-e2e", "Install the TS mobile e2e battery archive under /e2e (pair with -Dtarget=aarch64-ios-simulator or aarch64-linux-android and -p; see scripts/mobile-e2e.sh)"); mobile_e2e_step.dependOn(&b.addInstallFileWithDir(battery, .{ .custom = "e2e" }, "libts-mobile-e2e.a").step); } // The corpus contract artifacts an external core toolchain // consumes: per fixture, the frontend-emitted contract sidecar // (after projection), the generated entry module, and the // compiler profile that builds it, under zig-out/core-contracts. const contracts_step = b.step("stage-core-contracts", "Install each ts-core fixture's contract sidecar, generated entry module, and compiler profile under zig-out/core-contracts (requires node)"); for (ts_core_artifacts.core_contracts) |contract| { const dir: std.Build.InstallDir = .{ .custom = b.fmt("core-contracts/{s}", .{contract.name}) }; contracts_step.dependOn(&b.addInstallFileWithDir(contract.sidecar, dir, "core.contract.json").step); contracts_step.dependOn(&b.addInstallFileWithDir(contract.facade, dir, "core_facade.ts").step); contracts_step.dependOn(&b.addInstallFileWithDir(contract.profile, dir, "core_profile.json").step); } ts_core_e2e_step.dependOn(&host_e2e_run.step); ts_core_e2e_step.dependOn(&persist_e2e_run.step); ts_core_e2e_step.dependOn(&markup_e2e_run.step); ts_core_e2e_step.dependOn(&kanban_e2e_run.step); ts_core_e2e_step.dependOn(&soundboard_e2e_run.step); ts_core_e2e_step.dependOn(&monitor_e2e_run.step); ts_core_e2e_step.dependOn(&scaffold_ide_e2e_run.step); ts_core_e2e_step.dependOn(&ai_chat_e2e_run.step); ts_core_e2e_step.dependOn(&feed_reader_e2e_run.step); ts_core_e2e_step.dependOn(&services_e2e_run.step); if (services_pool_e2e_run) |run| ts_core_e2e_step.dependOn(&run.step); test_step.dependOn(&host_e2e_run.step); test_step.dependOn(&persist_e2e_run.step); test_step.dependOn(&markup_e2e_run.step); test_step.dependOn(&kanban_e2e_run.step); test_step.dependOn(&soundboard_e2e_run.step); test_step.dependOn(&monitor_e2e_run.step); test_step.dependOn(&scaffold_ide_e2e_run.step); test_step.dependOn(&ai_chat_e2e_run.step); test_step.dependOn(&feed_reader_e2e_run.step); test_step.dependOn(&services_e2e_run.step); if (services_pool_e2e_run) |run| test_step.dependOn(&run.step); test_step.dependOn(&sidecar_conformance_run.step); } test_step.dependOn(&b.addRunArtifact(markup_lsp_tests).step); test_step.dependOn(&b.addRunArtifact(automation_cli_tests).step); test_step.dependOn(&b.addRunArtifact(markup_cli_tests).step); test_step.dependOn(&b.addRunArtifact(evals_cmdview_tests).step); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-package-types", "Verify package TypeScript platform feature names", &.{ .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "NativeSdkCommandInfo" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "list(): Promise" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "NativeSdkCreateWebViewViewOptions" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "Stable runtime view id" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "update(label: string" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "focus(options: string | NativeSdkViewSelector)" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "close(options: string | NativeSdkViewSelector)" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "kind: \"webview\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "url: string" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "NativeSdkPlatformFeatureSelector" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "supports(value: NativeSdkPlatformFeature | NativeSdkPlatformFeatureSelector)" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"native_control_commands\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"nativeControlCommands\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"recent_documents\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"recentDocuments\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"file_drops\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"fileDrops\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"app_activation_events\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"appActivationEvents\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"gpu_surfaces\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "\"gpuSurfaces\"" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "gpuFirstFrameLatencyNs: number" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "gpuBackend: NativeSdkGpuSurfaceBackend;" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "export type NativeSdkGpuSurfaceBackendRequest = \"metal\" | \"software\";" }, .{ .path = "packages/native-sdk/native-sdk.d.ts", .pattern = "gpuBackend?: NativeSdkGpuSurfaceBackendRequest;" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-ts-toolchain-twins", "Verify the CLI's toolchain-resolution gate and its direct-`zig build` twin stay in lockstep (both resolve the aliased real compiler @typescript/old from packages/core — the same origin runtime imports it from — hold its resolved version against the manifest-read pin, never probe a stray compat wrapper, and teach instead of panicking)", &.{ // The resolution twins probe the aliased REAL compiler // (@typescript/old — the package typed_ast.ts and ts_run.mjs // actually load) — manifest AND entrypoint, in lockstep. The // @typescript/typescript6 wrapper is never probed: nothing // imports it at run time, and validating it false-rejects // healthy conflict trees. .{ .path = "src/tooling/ts_core.zig", .pattern = "\"node_modules\", \"@typescript\", \"old\", \"package.json\"" }, .{ .path = "src/tooling/ts_core.zig", .pattern = "\"node_modules\", \"@typescript\", \"old\", \"lib\", \"typescript.js\"" }, .{ .path = "build/app.zig", .pattern = "\"node_modules\", \"@typescript\", \"old\", \"package.json\"" }, .{ .path = "build/app.zig", .pattern = "\"node_modules\", \"@typescript\", \"old\", \"lib\", \"typescript.js\"" }, // The doctrine both twins document at their predicates: validate // only what runtime loads, from runtime's own walk origin, and // leave the declared-but-unimported wrapper out of the verdict. .{ .path = "src/tooling/ts_core.zig", .pattern = "Validation tracks ONLY what runtime loads" }, .{ .path = "src/tooling/ts_core.zig", .pattern = "deliberately NOT probed" }, .{ .path = "build/app.zig", .pattern = "Validation tracks ONLY what runtime loads" }, .{ .path = "build/app.zig", .pattern = "deliberately NOT probed" }, // The reciprocal cross-references that keep the twins findable // from each other. .{ .path = "src/tooling/ts_core.zig", .pattern = "build/app.zig's tsToolchainResolution" }, .{ .path = "build/app.zig", .pattern = "transpilerResolution, this predicate's deliberate twin" }, // The version pin: both twins read the alias's RESOLVED // package.json version and hold it against the exact // `npm:typescript@X.Y.Z` pin read from the SDK's own // packages/core/package.json (never hardcoded), and both carry // the mismatch outcome plus its teaching naming the two versions. .{ .path = "src/tooling/ts_core.zig", .pattern = "parseAliasedCompilerPin" }, .{ .path = "src/tooling/ts_core.zig", .pattern = "version_mismatch" }, .{ .path = "src/tooling/ts_core.zig", .pattern = "npm:typescript@{s}" }, .{ .path = "build/app.zig", .pattern = "tsPinnedCompilerVersion" }, .{ .path = "build/app.zig", .pattern = "version_mismatch" }, .{ .path = "build/app.zig", .pattern = "npm:typescript@{s}" }, // The teachings: the checkout's one production-config-safe npm ci // command in both surfaces, the reinstall for npm layouts, and the // build graph's clean configure-time failure (never a panic). .{ .path = "src/tooling/ts_core.zig", .pattern = "pub const npm_ci_teaching_command = \"npm ci --include=dev\";" }, .{ .path = "src/tooling/ts_core.zig", .pattern = "reinstall @native-sdk/cli" }, .{ .path = "build/app.zig", .pattern = "npm ci --include=dev" }, .{ .path = "build/app.zig", .pattern = "cannot resolve its TypeScript toolchain" }, .{ .path = "build/app.zig", .pattern = "std.process.exit(1);" }, // SQLite schema generation shares node/toolchain resolution but // never the TS-core-only src/app.native shape assertion: Zig cores // may own their view in code while still embedding migrations. .{ .path = "build/app.zig", .pattern = "return tsToolingPreflight(b, dep, .app_core);" }, .{ .path = "build/app.zig", .pattern = "const node = tsToolingPreflight(b, dep, .sqlite_schema);" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-scriptc-pin-cache-inputs", "Verify both TypeScript service build graphs invalidate frontend contracts when the exact scriptc pin changes", &.{ .{ .path = "build.zig", .pattern = "if (spec.emit_services) check.addFileInput(b.path(\"packages/core/package.json\"));" }, .{ .path = "build/app.zig", .pattern = "if (has_services) check.addFileInput(dep.path(\"packages/core/package.json\"));" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-ts-build-invalidation-boundaries", "Verify generated TypeScript contracts stabilize by content and service implementation inputs cannot dirty the core compiler lane", &.{ .{ .path = "build/app.zig", .pattern = "pub fn stabilizeGeneratedFile" }, .{ .path = "build/app.zig", .pattern = "const contract = stabilizeGeneratedFile(b, contract_raw, \"core.contract.json\", build_trace);" }, .{ .path = "build/app.zig", .pattern = "break :services_contract stabilizeGeneratedFile(b, raw, \"services.contract.json\", build_trace);" }, .{ .path = "build/app.zig", .pattern = "addAppCoreTsDirInputs(b, stage_run, appPath(b, app_root, \"src\"));" }, .{ .path = "build/app.zig", .pattern = "addStagedCoreSdkInputs(b, dep.builder, stage_run);" }, .{ .path = "build/app.zig", .pattern = "for ([_][]const u8{ \"text.ts\", \"events.ts\" }) |source|" }, .{ .path = "build.zig", .pattern = "app_build.addStagedCoreSdkInputs(b, b, stage_run);" }, .{ .path = "packages/core/scripts/stage_external_core.mjs", .pattern = "for (const sdkFile of [\"text.ts\", \"events.ts\"])" }, .{ .path = "build/app.zig", .pattern = "if (std.mem.startsWith(u8, normalized, \"services/\")) continue;" }, .{ .path = "tools/corewire/emit_service.zig", .pattern = "native-sdk.services.abi.v3" }, .{ .path = "tools/corewire/emit_service.zig", .pattern = "implementation-only fingerprint" }, .{ .path = "build/app.zig", .pattern = "link_mod.addObject(markupDataObject(b, target, app_optimize, stage.markup_c));" }, .{ .path = "build/app.zig", .pattern = "addPlatformLinkSearchPaths(b, selected_platform, web_engine, cef_dir, link_mod);" }, .{ .path = "build/app.zig", .pattern = "mod.addFrameworkPath(.{ .cwd_relative = b.pathJoin(&.{ sysroot, \"System/Library/Frameworks\" }) });" }, .{ .path = "build/app.zig", .pattern = "b.fmt(\"{s}-app-code\", .{app_options.name})" }, .{ .path = "src/app_runner/ts_core_main.zig", .pattern = "extern const native_sdk_app_markup: u8;" }, .{ .path = "packages/core/scripts/embed_markup_c.mjs", .pattern = "const unsigned char native_sdk_app_markup[]" }, .{ .path = "build/app.zig", .pattern = "node_modules\", \"scriptc\", \"dist\", \"bootstrap.js\"" }, .{ .path = "build/app.zig", .pattern = "setEnvironmentVariable(\"SCRIPTC_TIMING\", \"1\")" }, .{ .path = "build/app.zig", .pattern = "service_compile.addArg(\"--compiler-package-origin\")" }, .{ .path = "build/app.zig", .pattern = "compile.addArg(\"--compiler-package-origin\")" }, .{ .path = "packages/core/scripts/run_external_core_compiler.mjs", .pattern = "publishedScriptcArgv(args[\"compiler-package-origin\"])" }, .{ .path = "packages/core/scripts/run_external_service_compiler.mjs", .pattern = "publishedScriptcArgv(args[\"compiler-package-origin\"])" }, .{ .path = "build/app.zig", .pattern = "addFileInput(dep.path(\"packages/core/scripts/compiler_command.mjs\"))" }, .{ .path = "packages/core/scripts/run_external_core_compiler.mjs", .pattern = "compilerArgv(args.compiler)" }, .{ .path = "packages/core/scripts/run_external_service_compiler.mjs", .pattern = "compilerArgv(args.compiler)" }, .{ .path = "packages/core/scripts/compiler_command.mjs", .pattern = "npmTarget !== null" }, .{ .path = "build.zig", .pattern = "fn repositoryScriptcBin" }, .{ .path = "build.zig", .pattern = "packages/core/node_modules/.bin/scriptc.cmd" }, .{ .path = "build.zig", .pattern = "compile.addArgs(&.{ \"--compiler\", repositoryScriptcBin(b) });" }, .{ .path = "src/tooling/verbs.zig", .pattern = "Zig's full summary reports each named build step's duration" }, .{ .path = "src/tooling/verbs.zig", .pattern = "fn rebuildPathIgnored" }, .{ .path = "src/tooling/verbs.zig", .pattern = "var walker = try root.walkSelectively(allocator);" }, .{ .path = "src/tooling/verbs.zig", .pattern = "if (!rebuildPathIgnored(path)) try walker.enter(io, entry);" }, .{ .path = "tools/native-sdk/main.zig", .pattern = "--explain-rebuild" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-scriptc-cross-target-plumbing", "Verify core and service archives share the target-aware ScriptC lane, and every direct Windows archive consumer links its runtime import libraries", &.{ .{ .path = "build/app.zig", .pattern = ".linux => !cross or target.result.cpu.arch == .x86_64 or target.result.cpu.arch == .aarch64" }, .{ .path = "build/app.zig", .pattern = ".windows => !cross or target.result.abi == .gnu" }, .{ .path = "build/app.zig", .pattern = ".windows => target.result.cpu.arch == .x86_64" }, .{ .path = "build/app.zig", .pattern = "if (linuxGlibcSpellingHitsDefaultFloor(target)) {" }, .{ .path = "build.zig", .pattern = "if (!app_build.linuxGlibcSpellingHitsDefaultFloor(target)) return;" }, .{ .path = "build/app.zig", .pattern = "scriptcPlatformTriple(b, target),\n // Keep the core and service archives on the same cross compiler" }, .{ .path = "build.zig", .pattern = "app_build.scriptcPlatformTriple(b, target),\n \"--zig-exe\",\n b.graph.zig_exe," }, .{ .path = "build.zig", .pattern = "compile.addArgs(&.{ \"--host-platform\", host_platform, \"--target-platform\", app_build.scriptcPlatformTriple(b, target), \"--zig-exe\", b.graph.zig_exe });\n app_build.addScriptcAndroidNdk(b, compile, target);\n addScriptcGlibcFloorTeaching(b, target, &compile.step);" }, .{ .path = "build.zig", .pattern = "app_build.scriptcPlatformTriple(b, target),\n \"--zig-exe\",\n b.graph.zig_exe,\n });\n app_build.addScriptcAndroidNdk(b, compile, target);\n addScriptcGlibcFloorTeaching(b, target, &compile.step);" }, .{ .path = "build.zig", .pattern = "abi_laws_mod.addObjectFile(markup_fixture.archive);\n addScriptcArchiveSystemLibs(abi_laws_mod, target);" }, // Both drivers map the build graph's Zig triple onto the compiler's // own mobile spellings and thread the NDK like --zig-exe. .{ .path = "packages/core/scripts/run_external_core_compiler.mjs", .pattern = "SCRIPTC_TARGET: scriptcTarget" }, .{ .path = "packages/core/scripts/run_external_service_compiler.mjs", .pattern = "SCRIPTC_TARGET: scriptcTarget" }, .{ .path = "packages/core/scripts/run_external_core_compiler.mjs", .pattern = "ANDROID_NDK_ROOT: args[\"android-ndk\"]" }, .{ .path = "packages/core/scripts/run_external_service_compiler.mjs", .pattern = "ANDROID_NDK_ROOT: args[\"android-ndk\"]" }, .{ .path = "build/app.zig", .pattern = ".ios => host.os.tag == .macos and target.result.cpu.arch == .aarch64" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-app-test-entry-analysis", "Verify the managed app test step force-analyzes the entry point (UiApp.create's Model-defaults rule must teach at `native test`, not ambush at `native build`)", &.{ .{ .path = "build/app.zig", .pattern = "app_analysis.zig" }, .{ .path = "build/app.zig", .pattern = "if (@hasDecl(app, \"main\")) _ = &app.main;" }, .{ .path = "build/app.zig", .pattern = "test_step.dependOn(&analysis_obj.step);" }, .{ .path = "src/runtime/ui_app.zig", .pattern = "has no default value - give every Model field a default" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-owned-runner-window-placement", "Verify owned example runners preserve explicit origins and distinguish successful state restoration", &.{ .{ .path = "examples/hello/src/runner.zig", .pattern = ".initial_placement = if (@hasField(@TypeOf(window), \"x\") or @hasField(@TypeOf(window), \"y\")) .explicit else .default" }, .{ .path = "examples/hello/src/runner.zig", .pattern = "window.initial_placement = .restored;" }, .{ .path = "examples/hello/src/runner.zig", .pattern = "app_info.main_window.initial_placement = .restored;" }, .{ .path = "examples/capabilities/src/runner.zig", .pattern = "info.main_window.default_frame = manifestShellStartupFrame(info.main_window.default_frame);" }, .{ .path = "examples/capabilities/src/runner.zig", .pattern = "info.main_window.restore_state = manifestShellStartupRestoreState(info.main_window.restore_state);" }, .{ .path = "examples/capabilities/src/runner.zig", .pattern = "info.main_window.restore_policy = manifestShellStartupRestorePolicy(info.main_window.restore_policy);" }, .{ .path = "examples/capabilities/src/runner.zig", .pattern = "info.main_window.initial_placement = manifestShellStartupInitialPlacement(info.main_window.initial_placement);" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-macos-window-placement-contracts", "Verify both macOS hosts use the primary display and restore persisted content frames without titlebar growth", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "return [NSScreen screens].firstObject ?: [NSScreen mainScreen];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "return [NSScreen screens].firstObject ?: [NSScreen mainScreen];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[window frameRectForContentRect:restoredContentFrame]" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[window frameRectForContentRect:restoredContentFrame]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[window setFrame:restoredWindowFrame display:NO];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[window setFrame:restoredWindowFrame display:NO];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[window setFrame:NativeSdkCenterFrameOnScreen(window.frame, primaryScreen) display:NO];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[window setFrame:NativeSdkCenterFrameOnScreen(window.frame, primaryScreen) display:NO];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "else if (initialPlacement == 1) {\n // Fresh authored dimensions are content size" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "else if (initialPlacement == 1) {\n // AppKit adds titlebar chrome" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[window setFrame:NativeSdkConstrainFrame(window.frame) display:NO];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[window setFrame:NativeSdkConstrainFrame(window.frame) display:NO];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "initWithFrame:window.contentView.bounds" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "initWithFrame:window.contentView.bounds" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-bridge-view-selector-helpers", "Verify injected view helpers accept string selectors", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "viewSelectorPayload(options)" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "viewSelectorPayload(options)" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "viewSelectorPayload(options)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "viewSelectorPayload(options)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "focus:function(options){return invoke('native-sdk.view.focus',viewSelectorPayload(options))" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "focus:function(options){return invoke('native-sdk.view.focus',viewSelectorPayload(options))" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "focus:function(options){return invoke('native-sdk.view.focus',viewSelectorPayload(options))" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "focus:function(options){return invoke('native-sdk.view.focus',viewSelectorPayload(options))" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "close:function(options){return invoke('native-sdk.view.close',viewSelectorPayload(options))" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "close:function(options){return invoke('native-sdk.view.close',viewSelectorPayload(options))" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "close:function(options){return invoke('native-sdk.view.close',viewSelectorPayload(options))" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "close:function(options){return invoke('native-sdk.view.close',viewSelectorPayload(options))" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-docs-command-contracts", "Verify command docs match native view update contracts", &.{ .{ .path = "docs/src/app/docs/commands/page.mdx", .pattern = ".text = \"Refreshed\"" }, .{ .path = "docs/src/app/docs/commands/page.mdx", .pattern = "const commands = await window.zero.commands.list();" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-docs-native-view-contracts", "Verify native surface docs describe view identity", &.{ .{ .path = "docs/src/app/docs/native-surfaces/page.mdx", .pattern = "ViewInfo.id" }, .{ .path = "docs/src/app/docs/native-surfaces/page.mdx", .pattern = "window.zero.views.update(\"status\"" }, .{ .path = "docs/src/app/docs/native-surfaces/page.mdx", .pattern = "first-frame latency budget" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-docs-shell-manifest-contracts", "Verify app.zon docs describe shell compatibility window labels", &.{ .{ .path = "docs/src/app/docs/app-zon/page.mdx", .pattern = "labels must stay unique across both lists" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-docs-media-producer-contracts", "Verify the media producer docs' typed callback stays mirrored by the compile-shaped pin in media_surface_tests.zig", &.{ .{ .path = "docs/src/app/docs/media-producers/page.mdx", .pattern = "producer: media.MediaSurfaceProducer" }, .{ .path = "src/runtime/media_surface_tests.zig", .pattern = "producer: media.MediaSurfaceProducer" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-session-replay-image-codec", "Verify the replay runner installs the host image codec headlessly (the desktop arms cannot link in unit tests; the null-fallback arm is covered in session_tests.zig)", &.{ .{ .path = "src/app_runner/root.zig", .pattern = "native_sdk.platform.installHeadlessImageCodec(build_options.platform, null_platform, &replay_platform.services);" }, .{ .path = "src/platform/macos/root.zig", .pattern = "pub fn installHeadlessImageCodec(services: *platform_mod.PlatformServices) void {\n services.decode_image_fn = decodeImage;\n}" }, .{ .path = "src/platform/linux/root.zig", .pattern = "pub fn installHeadlessImageCodec(services: *platform_mod.PlatformServices) void {\n services.decode_image_fn = decodeImage;\n}" }, .{ .path = "src/platform/windows/root.zig", .pattern = "pub fn installHeadlessImageCodec(services: *platform_mod.PlatformServices) void {\n services.decode_image_fn = decodeImage;\n}" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-js-view-helper-contracts", "Verify injected view helpers support label-first updates", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "update:function(options,patch)" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "update:function(options,patch)" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "update:function(options,patch)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "update:function(options,patch)" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-linux-gpu-frame-emission-below-paint", "Verify the Linux GPU frame emission is scheduled below layout and paint priorities", &.{ // A saturated demand-driven frame loop (cycle cost > frame // interval => every present re-arms at delay 0) scheduled at // G_PRIORITY_DEFAULT would be ready on every main-loop // iteration and starve GTK's layout/paint sources: presents // land and queue_draw keeps inviting a repaint, but the glass // freezes on stale pixels for as long as the loop stays armed. // The emission must stay below GDK_PRIORITY_REDRAW so every // presented frame paints before the next frame event. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "view->gpu_emit_source = g_timeout_add_full(G_PRIORITY_DEFAULT_IDLE," }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "paint (GDK_PRIORITY_REDRAW," }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "static void native_sdk_gpu_surface_schedule_frame_emission" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-linux-audio-buffering-clears-on-noop-resume", "Verify the Linux audio buffering flag drops when the 100% resume completes synchronously", &.{ // The buffering flag normally drops at the PLAYING // state-changed message. When the refill's earlier PAUSED // request never completed, the 100% resume is a no-op that // posts no message; a non-ASYNC set_state result is the only // signal, and the flag must drop on it or it rides every // position tick for the rest of the track. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "const int change = gst->element_set_state(audio->playbin, NATIVE_SDK_GST_STATE_PLAYING);" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "change != NATIVE_SDK_GST_STATE_CHANGE_ASYNC" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "#define NATIVE_SDK_GST_STATE_CHANGE_ASYNC 2" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-linux-init-close-policy-refusal", "Verify the Linux platform init refuses a .hide main window with the one shared teaching (the pre-created startup window never passes the runtime's create gate, so a silent drop here meant quit-on-close for direct-SDK users)", &.{ // The gate itself is unit-tested cross-host (it is extern-free); // this pins its WIRING into initWithOptions, which only a Linux // link can execute. .{ .path = "src/platform/linux/root.zig", .pattern = "try refuseUnsupportedMainWindowClosePolicy(window_options);" }, // One message, all seams: the platform-init refusal and the // generated runner's comptime refusal teach with the same text. .{ .path = "src/platform/linux/root.zig", .pattern = "close_policy \\\"hide\\\" is not supported on linux: the GTK host has no status item (tray), so nothing could bring the hidden window back - declare \\\"quit\\\" (the default), or scope the .hide declaration to macos/windows builds" }, .{ .path = "src/app_runner/root.zig", .pattern = "close_policy \\\"hide\\\" is not supported on linux: the GTK host has no status item (tray), so nothing could bring the hidden window back - declare \\\"quit\\\" (the default), or scope the .hide declaration to macos/windows builds" }, .{ .path = "src/tooling/templates.zig", .pattern = "close_policy \\\\\\\"hide\\\\\\\" is not supported on linux" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-macos-close-clears-policy-hidden", "Verify every macOS close exit leaves the policy-hidden set before its open=false emit (both hosts derive the frame event's hidden flag from set membership, and the Dock reopen re-shows every member — a close exit that skips the cleanup emits {open=false, hidden=true} and lets the reopen resurrect an app-closed window)", &.{ // AppKit: every close routes through NSWindow close/performClose, // so the delegate's windowWillClose is the one cleanup site. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self.host.policyHiddenWindows removeObject:@(self.windowId)];\n [self.host emitWindowFrameForWindowId:self.windowId open:NO];" }, // CEF: the delegate cleanup covers the [window close] fallback, // and the app-driven close of a browser-bearing window exits // through orderOut WITHOUT reaching windowWillClose — that // branch must do the set cleanup itself, before its emit. .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[self.host.policyHiddenWindows removeObject:@(self.windowId)];\n [self.host emitWindowFrameForWindowId:self.windowId open:NO];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[self.policyHiddenWindows removeObject:@(windowId)];\n [window orderOut:nil];\n [self emitWindowFrameForWindowId:windowId open:NO];" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-macos-cef-window-verbs-synchronous", "Verify the CEF host's show and minimize verbs run synchronously on the main thread, the close verb's discipline (a dispatch_async show returns success while the window is still in policyHiddenWindows — the runtime's post-success focus flip then emits {focused:true, hidden:true} until the queued block lands — and a show-then-close in one dispatch re-orders: the queued show lands AFTER the synchronous close and puts a retained ordered-out closed window back on the glass)", &.{ // The show verb: direct on main, dispatch_sync hop otherwise, // with the window lookup INSIDE the block so a window closed // before an off-main hop lands is a no-op, not a resurrection. .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if ([NSThread isMainThread]) {\n showBlock();\n } else {\n dispatch_sync(dispatch_get_main_queue(), showBlock);\n }" }, // The minimize twin (a queued miniaturize captured past a // synchronous close genies an app-closed window into the Dock). .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if ([NSThread isMainThread]) {\n miniaturizeBlock();\n } else {\n dispatch_sync(dispatch_get_main_queue(), miniaturizeBlock);\n }" }, // The C shims return success only after the synchronous verb — // no dispatch_async between the lookup and the method call. .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if (!object.windows[@(window_id)]) return 0;\n [object miniaturizeWindowWithId:window_id];\n return 1;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[object showWindowWithId:window_id];\n return 1;" }, // The AppKit host's twins are already synchronous direct calls // (its runtime callbacks arrive on the main thread); these pins // hold that symmetry. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[object showWindowWithId:window_id];\n return 1;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[object miniaturizeWindowWithId:window_id];\n return 1;" }, }); // The embedded-WebView layer must stay real AND declare-to-use: the // standard build graph puts the vendored WebView2 SDK header on the // include path exactly when app.zon declares web use (`if // (web_layer)`), and only the native-only branch passes the stub // define. In the guard the stub define is tested FIRST, before // header visibility: on a machine where the WebView2 SDK headers are // reachable through the system include paths, an // include-path-decides guard would compile the full layer into a // native-only build and reintroduce the WebView2Loader.dll reference // its executable must not carry. Without the define the header is // required — a web build that cannot see it fails at compile time // instead of quietly shipping the stubbed host (whose WebView loads // report WebViewNotFound at runtime). addFileContainsCheckStep(b, file_contains_checker, test_step, "test-windows-webview2-vendor", "Verify the vendored WebView2 SDK stays wired into every web-declaring Windows build graph", &.{ .{ .path = "third_party/webview2/include/WebView2.h", .pattern = "CreateCoreWebView2EnvironmentWithOptions" }, .{ .path = "third_party/webview2/include/EventToken.h", .pattern = "EventRegistrationToken" }, .{ .path = "third_party/webview2/LICENSE.txt", .pattern = "Redistribution and use in source and binary forms" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "#if defined(NATIVE_SDK_ALLOW_WEBVIEW2_STUB)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "#elif __has_include() && __has_include()" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "#error \"WebView2.h not found" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "LoadLibraryW(L\"WebView2Loader.dll\")" }, .{ .path = "build/app.zig", .pattern = ".system => if (web_layer) {" }, .{ .path = "build/app.zig", .pattern = "app_mod.addIncludePath(dep.path(\"third_party/webview2/include\"));" }, .{ .path = "build/app.zig", .pattern = "third_party/webview2/x64/WebView2Loader.dll" }, .{ .path = "build/app.zig", .pattern = "\"-DNATIVE_SDK_ALLOW_WEBVIEW2_STUB\"" }, .{ .path = "src/tooling/templates.zig", .pattern = "third_party/webview2/include" }, .{ .path = "src/tooling/templates.zig", .pattern = "third_party/webview2/x64/WebView2Loader.dll" }, }); // The Linux mirror of the Windows seam: the stub define wins over // header visibility (a native-only build never reintroduces the // libwebkitgtk link even where the dev package is installed), the // header is required for web builds, and both build graphs compile // gtk_host.c with the stub and drop the webkitgtk-6.0 link when the // web layer is excluded. addFileContainsCheckStep(b, file_contains_checker, test_step, "test-linux-webkitgtk-seam", "Verify the WebKitGTK compile seam stays wired through the GTK host and both Linux build graphs", &.{ .{ .path = "src/platform/linux/gtk_host.c", .pattern = "#if defined(NATIVE_SDK_ALLOW_WEBKITGTK_STUB)" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "#elif __has_include()" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "#error \"webkit/webkit.h not found" }, .{ .path = "build/app.zig", .pattern = "\"-DNATIVE_SDK_ALLOW_WEBKITGTK_STUB\"" }, .{ .path = "src/tooling/templates.zig", .pattern = "\"-DNATIVE_SDK_ALLOW_WEBKITGTK_STUB\"" }, }); addLayoutCheckStep(b, test_step, "test-windows-webview2-loader-layout", "Verify the vendored WebView2 loader binaries are present", &.{ "third_party/webview2/x64/WebView2Loader.dll", "third_party/webview2/arm64/WebView2Loader.dll", }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-windows-packaged-assets-webview2", "Verify Windows packaged assets are served through WebView2 request interception", &.{ .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "constexpr const char *kAssetVirtualOrigin = \"https://native-sdk-app.localhost\";" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "return virtualAssetEntryUrl(webview.asset_entry);" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "AddWebResourceRequestedFilter(L\"https://native-sdk-app.localhost/*\"" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "assetWebResourceResponse(environment_ref.Get(), found->second, uri)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "bridgeOriginForWebViewUrl(source_webview->second, source_url)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "webview.spa_fallback = spa_fallback != 0;" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-macos-cef-packaged-assets-webviews", "Verify macOS CEF child WebViews resolve packaged asset URLs before loading", &.{ .{ .path = "src/platform/macos/cef_host.mm", .pattern = "self.assetRoots = [[NSMutableDictionary alloc] init];" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "resolvedWebViewURLString:(NSString *)url windowId:(uint64_t)windowId" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "CefBrowserHost::CreateBrowser(windowInfo, client.get(), std::string(resolvedURL.UTF8String)" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "self.webviewPendingURLs[[self webViewKeyForWindow:windowId label:label]] = resolvedURL;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "bridgeOriginForWindowId:window_id_ webViewLabel:labelString sourceURL:sourceURLString" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-native-accessibility-roles", "Verify AppKit native views publish accessibility roles", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkAccessibilityRoleForNativeViewKind" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSAccessibilityToolbarRole" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSAccessibilityProgressIndicatorRole" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "view.accessibilityRole = NativeSdkAccessibilityRoleForNativeViewKind(kind)" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-audio-capture-start-stop-serialized", "Verify asynchronous ScreenCaptureKit startup cannot publish a stream after stop returns", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "@property(nonatomic, strong) NSLock *lifecycleLock;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[strongSelf.lifecycleLock lock];\n if (![strongSelf.target isCaptureActive]) {\n [strongSelf.lifecycleLock unlock];\n return;\n }\n strongSelf.stream = stream;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self.lifecycleLock lock];\n SCStream *stream = self.stream;\n self.stream = nil;\n [self.lifecycleLock unlock];" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-input-repaints-retained-canvas", "Verify GPU input wakes retained canvas frames", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)requestRetainedCanvasFrame" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self requestRetainedCanvasFrame];" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-pinch-terminal-delta", "Verify the macOS pinch stream forwards a terminal Ended/Cancelled magnification as a change before the end marker", &.{ // AppKit documents every magnifyWithEvent: as carrying the // magnification since the previous event — the terminal one // included. The Ended/Cancelled branch must forward a nonzero // terminal magnification as PINCH_CHANGE before PINCH_END (zero // magnification: end only), or the cumulative product of // (1 + delta) diverges from what the OS delivered. Cancelled // deliberately shares the path: pinch applies deltas // incrementally with no rollback. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (phase & (NSEventPhaseEnded | NSEventPhaseCancelled)) {" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self emitPinchChangeForEvent:event];\n [self emitPinchInputEventWithKind:NATIVE_SDK_APPKIT_GPU_INPUT_PINCH_END event:event magnification:0];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "PINCH_END event:event magnification:0];" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-pinch-magnification-doctrine", "Verify the macOS host forwards raw NSEvent.magnification as the multiplicative pinch delta (the engine convention), with the per-event floor", &.{ // The reading of NSEvent.magnification is SETTLED and this step // exists to keep it settled: Apple's API-reference prose says // "add", Apple's own Event Handling Guide example multiplies, // and every browser engine (WebKit, Chromium) treats raw // magnification as the multiplicative per-event delta. The // doctrine comment at magnifyWithEvent: carries the receipts; // these pins hold both the comment and the code to it. Any // sum-based "additive normalization" of magnification must // change emitPinchChangeForEvent:'s pinned body — and thereby // fail this step, on purpose. Re-read the doctrine comment // before touching either. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "m_magnification += m_magnification * scaleWithResistance;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "pinch_update.scale = event.magnification + 1.0;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "Ruling: raw event.magnification IS the multiplicative per-event" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "Do NOT reintroduce a running-sum" }, // The raw forwarding, pinned as one body: the only transform // between the OS and the wire is the per-event floor (a single // magnification at or below -1 would emit a factor <= 0 — a // zoom inverted through zero scale, physically impossible). .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static const double NativeSdkPinchMagnificationFloor = -1.0 + 0x1p-10;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "return magnification < NativeSdkPinchMagnificationFloor ? NativeSdkPinchMagnificationFloor : magnification;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)emitPinchChangeForEvent:(NSEvent *)event {\n const double magnification = NativeSdkClampedPinchMagnification(event.magnification);\n if (magnification == 0) return;\n [self emitPinchInputEventWithKind:NATIVE_SDK_APPKIT_GPU_INPUT_PINCH_CHANGE event:event magnification:magnification];\n}" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-input-paces-retained-canvas", "Verify GPU input frame requests are paced to the display interval", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkRetainedFrameIntervalNanoseconds" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "retainedFrameLastEmitNs" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "queuePointerMotionInputEvent:(NSEvent *)event" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "pendingPointerMotionKind = kind" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitQueuedPointerMotionInputEvent" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "queueScrollInputEvent:(NSEvent *)event" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "pendingScrollDeltaY += deltaY" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitQueuedScrollInputEvent" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "dispatch_after(dispatch_time(DISPATCH_TIME_NOW" }, // The single per-surface frame-event scheduler: every producer // (requests, completions, occluded completions) coalesces into // one paced emission per display interval. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)scheduleFrameEventEmission" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)emitScheduledFrameEvent" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-quit-stop-queued", "Verify the quit verb's stop is queued to the next loop turn on every synchronous-emit host (a synchronous emitShutdown nests the shutdown dispatch inside the requesting command's dispatch, seals the session journal before the command commits, and replay diverges)", &.{ // macOS (AppKit and CEF hosts): the main-queue hop, with the // pre-run-loop inline fallback the failed-START precedent needs. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (!NSApp.running) {" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if (!NSApp.running) {" }, // Linux: the idle hop — the same seam the wake and // frame-request paths ride. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "static gboolean native_sdk_stop_idle(gpointer data)" }, .{ .path = "src/platform/linux/gtk_host.c", .pattern = "g_idle_add(native_sdk_stop_idle, host);" }, // Windows was queued from the start: stop posts, the loop // exits, and the shutdown emits after the loop at top level. .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "void native_sdk_windows_stop(Host *host) {" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "PostQuitMessage(0);" }, // The runtime ordering the queue protects: the recorder seals // on the shutdown dispatch's exit, and the modeled host's // queued seam keeps the runtime suites honest about it. .{ .path = "src/runtime/flow.zig", .pattern = "if (event_value == .app_shutdown) recorder.finish();" }, .{ .path = "src/platform/null_platform.zig", .pattern = "pub fn takeQueuedQuit" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-quit-pre-run-pending", "Verify a PRE-RUN quit verb on the macOS hosts parks as a pending flag drained at top level, never the inline emit (an inline pre-run emit nests the shutdown inside the boot dispatch that requested it — the recorder seals the journal before that dispatch commits, the same bug the running-path queue fixes)", &.{ // The quit verb's own landing point: pre-run it PARKS — the // inline emitShutdown+stop stays exclusive to // native_sdk_appkit_stop, the host-side failure request the // failed-START precedent rides (runWithCallback's didShutdown // check). .{ .path = "src/platform/macos/appkit_host.m", .pattern = "void native_sdk_appkit_request_stop(native_sdk_appkit_host_t *host) {" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "object.pendingPreRunStop = YES;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "void native_sdk_appkit_request_stop(native_sdk_appkit_host_t *host) {" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "object.pendingPreRunStop = YES;" }, // The drains: after the START dispatch (at the didShutdown // decision point) and after the remaining pre-run dispatches // (appearance/resize/window-frame, and AppKit's synchronous // first canvas frame) — emitShutdown + stop at TOP LEVEL, once. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (BOOL)drainPendingPreRunStop {\n if (!self.pendingPreRunStop) return NO;\n self.pendingPreRunStop = NO;\n if (self.didShutdown) return NO;\n [self emitShutdown];\n [self stop];\n return YES;\n}" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self drainPendingPreRunStop];\n // A failed START handler requests shutdown synchronously" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if ([self drainPendingPreRunStop]) return;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "- (BOOL)drainPendingPreRunStop {\n if (!self.pendingPreRunStop) return NO;\n self.pendingPreRunStop = NO;\n if (self.didShutdown) return NO;\n [self emitShutdown];\n [self stop];\n return YES;\n}" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "[self drainPendingPreRunStop];\n // A failed START handler requests shutdown synchronously" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if ([self drainPendingPreRunStop]) {\n shutdownCefIfNeeded();\n return;\n }" }, // The Zig split: the quit verb rides request_stop; the failed // emit keeps the byte-for-byte host-side stop. .{ .path = "src/platform/macos/root.zig", .pattern = "native_sdk_appkit_request_stop(self.host);" }, .{ .path = "src/platform/macos/root.zig", .pattern = "if (self.self) |mac| native_sdk_appkit_stop(mac.host);" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-gtk-stop-idle-tracked", "Verify the GTK quit-stop idle source is tracked on the host, coalesced while pending, skipped after shutdown, and removed at destroy (an untracked second g_idle_add leaves a source holding a freed host after the loop quits)", &.{ .{ .path = "src/platform/linux/gtk_host.c", .pattern = "guint stop_idle_source;" }, // The idle retires its own tracking before it emits. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "host->stop_idle_source = 0;\n if (!host->did_shutdown) {" }, // Coalesce + post-shutdown skip, then the tracked add. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "if (host->did_shutdown || host->stop_idle_source) return;\n host->stop_idle_source = g_idle_add(native_sdk_stop_idle, host);" }, // Destroy removes a still-pending stop turn. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "if (host->stop_idle_source) {\n g_source_remove(host->stop_idle_source);\n host->stop_idle_source = 0;\n }" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-gpu-occluded-frame-heartbeat", "Verify occluded windows throttle frame completions to a heartbeat and restore full cadence on reveal", &.{ // macOS: occluded surfaces pace logical completions on the ~1 Hz // heartbeat (never stopping — on_frame-driven models stay gently // current), de-occlusion supersedes the parked emission for an // immediate return to the display grid, and heartbeat completions // are flagged so the runtime never stamps input latency from them. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkOccludedFrameHeartbeatNs = 1000000000ull" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (BOOL)occludedFramePacingActive" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "heartbeatPaced ? NativeSdkOccludedFrameHeartbeatNs" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "self.frameEventEmissionGeneration += 1" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "occluded:[self occludedFramePacingActive]" }, // Exempt producers (a real present's completion, an input's // responding frame) fire at grid promptness — neither can // sustain a spin. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "scheduleFrameEventEmissionForPresentCompletion:YES" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)noteGpuSurfaceInputActivity" }, // Windows: the same throttle keyed on the two reliable // occlusion facts — minimize (IsIconic) and the close_policy // .hide hide (policy_hidden: a hidden menu-bar app must not // spin its frame loop or its spectrum emissions full-rate for // days). Restore re-arms the pending one-shot timer at the // frame-grid delay through WM_SIZE, re-show through the show // verb (SW_SHOW dispatches no WM_SIZE), and the input / // first-present exemptions ride one prompt-frame flag. .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "kGpuOccludedHeartbeatNs = 1000000000ull" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "gpuSurfaceOccludedPacingActive" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "owner->second.policy_hidden) return true;" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "IsIconic(root)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "!IsIconic(entry.second.hwnd) && !entry.second.policy_hidden" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "Re-show returns full frame cadence without dropping a beat" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "gpu_prompt_frame_pending" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "native_sdk_windows_note_gpu_surface_input" }, // The runtime side of the measurement honesty: occluded logical // completions resolve pending inputs without a latency stamp, // and every dispatched input notes the host for a prompt // responding frame. .{ .path = "src/runtime/gpu_surface_events.zig", .pattern = "resolveGpuSurfaceInputForOccludedFrame" }, .{ .path = "src/runtime/gpu_surface_events.zig", .pattern = "noteGpuSurfaceInput" }, // GTK: no reliable cross-backend occlusion signal — the decision // to leave full cadence is documented at the scheduler, not // implicit. .{ .path = "src/platform/linux/gtk_host.c", .pattern = "No occluded/minimized throttle here, DELIBERATELY" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-drawable-integral-pixels", "Verify AppKit GPU surfaces use integral drawable pixels", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "ceil(size.width * scale)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "ceil(size.height * scale)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "self.metalLayer.drawableSize = drawableSize" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-resize-repaints-retained-canvas", "Verify AppKit GPU resize requests a correctly sized retained frame", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "_metalLayer.contentsGravity = kCAGravityTopLeft" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (changed) {" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[self requestRetainedCanvasFrame];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "canvasTextureMatchesDrawable" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-transforms", "Verify AppKit GPU packet presenter applies command transforms", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketApplyTransform(command[@\"transform\"])" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[affine setTransformStruct:transform]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[affine concat]" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-paths", "Verify AppKit GPU packet presenter draws path commands", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[kind isEqualToString:@\"path\"]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[verb isEqualToString:@\"quad_to\"]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[kind isEqualToString:@\"fill_path\"]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[kind isEqualToString:@\"stroke_path\"]" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-corner-radii", "Verify AppKit GPU packet presenter honors per-corner radii", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketRoundedRectPath" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "CGFloat topRight = NativeSdkPacketRadiusAt(radiusValue, 1, maxRadius)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "CGFloat bottomLeft = NativeSdkPacketRadiusAt(radiusValue, 3, maxRadius)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "return NativeSdkPacketRoundedRectPath(rect, shape[@\"radius\"])" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-load-frames", "Verify AppKit GPU packet presenter handles retained load frames", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "canvasPacketPixels" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[loadAction isEqualToString:@\"load\"]" }, // Retained-backing discipline: dirty updates require the validity // flag, and every present that mutates the backing clears it until // the draw succeeds — a failed draw can never leak stale pixels // around a later scissor. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "!self.canvasPacketPixelsValid" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "self.canvasPacketPixelsValid = YES" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "hasDirtyRect:uploadDirtyRect" }, }); // Version prose is machine-checked: the wire-format v2/v3 drift (spec // comments and changelog naming a version the constant had moved past) // shipped once, so the constant and every prose site that names the // version are pinned together. Bumping `binary_packet_version` fails // this step until the encoder comment, the host decoder comment, and // the patterns below move with it. addFileContainsCheckStep(b, file_contains_checker, test_step, "test-wire-format-version-prose", "Verify wire-format version prose matches the packet version constant", &.{ .{ .path = "src/primitives/canvas/serialization.zig", .pattern = "pub const binary_packet_version: u8 = 5;" }, .{ .path = "src/primitives/canvas/serialization.zig", .pattern = "Compact binary gpu-surface packet encoding (wire format v5)." }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "Compact binary gpu-surface packet decoding (wire format v5)." }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "Compact binary gpu-surface packet decoding (wire format v5)." }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-windows-gpu-packet-presenter", "Verify Windows uses retained Direct2D packets with recovery, bounded resources, and dirty-region pixel fallback", &.{ .{ .path = "src/platform/windows/root.zig", .pattern = ".present_gpu_surface_packet_binary_fn = presentGpuSurfacePacketBinary" }, .{ .path = "src/platform/windows/root.zig", .pattern = ".backend = if (event.gpu_backend == 1) .direct2d else .software" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "view.gpu_surface->present(request, &info)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "InvalidateRect(view.hwnd, &info.dirty_rects[index], FALSE)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "for (size_t y_index = y0; y_index < y1; ++y_index)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "InvalidateRect(view.hwnd, partial_update ? &dirty_pixels : nullptr, FALSE)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "D2D1_RENDER_TARGET_TYPE_HARDWARE" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "retained_commands_ = std::move(next_retained)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "PushAxisAlignedClip(d2dRect(requested)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "const float expansion = effect.spread + blur" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "releaseImageBitmap(action.id)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "resumeAndDrawBlur" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "const Rect target = blurTarget(*command, outer_clip)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "blur_snapshot_->CopyFromBitmap" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "command.effect.blur * transformScale(command.transform)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "D2D1_EXTEND_MODE_CLAMP" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "!GetClientRect(view.hwnd, &client) || !PtInRect(&client, sample)" }, .{ .path = "src/platform/windows/gpu_surface_renderer.cpp", .pattern = "draw_line(text.text, text.origin.x, text.origin.y)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "gpuSurfaceUpdateRegionRects" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "info.dirty_rect_count > 0" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "view->gpu_force_full_repaint_pending = true" }, .{ .path = "src/platform/windows/root.zig", .pattern = ".canvas_frame_full_repaint = event.force_full_repaint != 0" }, .{ .path = ".github/scripts/windows-canvas-smoke.sh", .pattern = "gpu_backend=direct2d" }, .{ .path = ".github/scripts/windows-effects-smoke.sh", .pattern = "gpu_backend=direct2d" }, .{ .path = "build/app.zig", .pattern = "app_mod.linkSystemLibrary(\"d2d1\", .{})" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-blur-effects", "Verify AppKit GPU packet presenter applies blur effects", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketApplyBlur" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "CGBitmapContextGetData(context)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkGaussianBoxRadii" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "vImageBoxConvolve_ARGB8888" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSIntersectionRect(rect, clipRect)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketTransformRect(transformValue, NativeSdkPacketRect(effect[@\"rect\"]))" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "return NativeSdkPacketApplyBlur(effect, opacity, context, scale, transformValue, hasClip, clipRect)" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-text-layout", "Verify AppKit GPU packet presenter honors text layout metadata", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSMutableParagraphStyle" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketTextLineBreakMode" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketTextAlignment" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketNumber(layout[@\"maxWidth\"], 0)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[value drawWithRect:NSMakeRect(origin.x, origin.y - size, textWidth, textHeight)" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-font-assets", "Verify AppKit GPU packet text registers bundled font assets", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "#import " }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "CTFontManagerRegisterFontsForURL" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "@[ @\"fonts\", @\"Fonts\", @\"assets/fonts\" ]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkRegisterBundledFonts();" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkPacketPreferredFont(text, size)" }, .{ .path = "src/tooling/templates.zig", .pattern = "app_mod.linkFramework(\"CoreText\", .{});" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-packet-span-fonts", "Verify AppKit packet text resolves reserved span font ids to real weighted and italic faces", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSFont *NativeSdkItalicSansFont(NSFont *font)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSFont *NativeSdkWeightedSansFont(" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkWeightedSansFont(@[ @\"Geist-Medium\", @\"Geist Medium\" ], base, NSFontWeightMedium, NO, size)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkWeightedSansFont(@[ @\"Geist-Bold\", @\"Geist Bold\" ], base, NSFontWeightBold, YES, size)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkItalicSansFont(base)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkItalicSansFont(NativeSdkWeightedSansFont(@[ @\"Geist-Bold\", @\"Geist Bold\" ], base, NSFontWeightBold, YES, size))" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-registered-font-cache-eviction", "Verify the AppKit host invalidates BOTH per-process registered-font caches at registration (the caches are per-process while font-id permanence is per-runtime, so a new runtime re-registering an id must never resolve the previous runtime's face or its measured widths): the NSFont size cache by prefix eviction and the measured-width NSCache by a process-global registration token in its key", &.{ // No SDK test tier links appkit_host.m (only managed app builds // compile it), so the eviction wiring is pinned textually like // the other AppKit host contracts: the shared accessor both the // resolve and registration paths use, the prefix eviction inside // register_font, and the honest lifetime comment. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSMutableDictionary *NativeSdkRegisteredFontSizeCache(void)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSString *stalePrefix = [NSString stringWithFormat:@\"%llu/\", (unsigned long long)font_id];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if ([cachedKey hasPrefix:stalePrefix]) [sizeCache removeObjectForKey:cachedKey];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "an id is only permanent within" }, // The width-cache half: NSCache cannot enumerate keys, so the // measured-width cache is invalidated by a registration token // drawn from one process-global monotonic counter (tokens never // repeat, which is what lets unregister DELETE an id's record // instead of retaining a bumped one per retired id) — the token // table, the fresh stamp inside register_font, and the // token-carrying key inside measure_text. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSMutableDictionary *NativeSdkRegisteredFontTokens(void)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "unsigned long long token = ++NativeSdkRegisteredFontTokenCounter;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkRegisteredFontTokens()[@(font_id)] = @(token);" }, // The stamp is also the registration's OWNERSHIP token: register // reports it to the caller (`*out_token`), the runtime stores it // beside the captured unregister owner, and unregister removes // the id's state only while the id's current registration still // carries it — an older runtime's deinit must never tear down a // newer runtime's live face under a shared id (ids are // per-runtime, host font state is per-process, last wins). .{ .path = "src/platform/macos/appkit_host.m", .pattern = "*out_token = token;" }, // The token and the registered face reach measure_text from ONE // critical section (the snapshot helper): separate acquisitions // let a registration land between the token read and the face // resolution, pairing token 0 with the new registered face and // caching registered widths under the reusable token-0 key — // stale registered widths served after teardown. The snapshot // signature and its measure_text call site are pinned so the // two-acquisition shape cannot quietly return. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSFont *NativeSdkRegisteredFontSnapshot(unsigned long long value, CGFloat size, unsigned long long *out_token)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSFont *registered = NativeSdkRegisteredFontSnapshot((unsigned long long)font_id, clamped, &token);" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSFont *font = registered ?: NativeSdkBuiltInFontForFontId(font_id, clamped);" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[NSString stringWithFormat:@\"%llu/%llu/%.3f/%@\", (unsigned long long)font_id, token, (double)clamped, value]" }, // The width-cache WRITE is token-rechecked. Shaping runs outside // the guard, so an unregister can land inside the shaping window: // it clears the whole width cache (its only possible eviction), // and an unconditional post-shape write would then repopulate the // cleared cache with a retired-token entry — unreachable for // serving (tokens never repeat) but resident until memory // pressure, breaking the zero-retained-state teardown the clear // exists to guarantee. measure_text therefore re-enters the // descriptor guard after shaping and writes only while the id's // current token still equals the snapshotted one; token 0 // (built-in resolution — never registered, so never cleared) // caches without the recheck. Both branches are pinned so the // unconditional-write shape cannot quietly return. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (token == 0) {" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSNumber *currentToken = NativeSdkRegisteredFontTokens()[@(font_id)];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (currentToken && currentToken.unsignedLongLongValue == token) {" }, // The teardown half: Runtime.deinit returns the host-side // registration through the unregister owner each font entry // captured at registration time (never live `options.platform`, // which is publicly mutable), and the ObjC removal drops the // descriptor, the size-cache entries, AND the token record — // zero retained state per retired id. Pinned like the // registration half (appkit_host.m has no SDK test tier); the // capture and the deinit call site are pinned too so the seam // can never silently lose its one caller or regress to the live // read, and the embed cycle and platform-swap tests assert both // behaviorally against null platform recorders. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "int native_sdk_appkit_unregister_font(uint64_t font_id, uint64_t token) {" }, // The token-match guard itself: reverting removal to id-keyed // (deleting whatever the id currently holds, whoever registered // it) must fail here — the embed suite's survives-teardown test // pins the same guard behaviorally against the null platform's // host-font mirror. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (!current || current.unsignedLongLongValue != token) return 1;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[NativeSdkRegisteredFontTokens() removeObjectForKey:@(font_id)];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[table removeObjectForKey:@(font_id)];" }, // Teardown must also CLEAR the measured-width NSCache: a // retiring token's entries can never be served again (tokens // never repeat) but they stay resident until memory pressure, // and NSCache cannot enumerate keys, so the whole-cache clear on // the token-matched path is the only release. Pinned textually // because no behavioral tier can observe it — only managed app // builds compile appkit_host.m, so no SDK test can watch the // ObjC cache empty. The shared accessor and its measure_text // call site are pinned with the clear so the cache cannot // quietly retreat to a function-local static the unregister // path has no way to reach. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "static NSCache *NativeSdkMeasuredWidthCache(void)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "[NativeSdkMeasuredWidthCache() removeAllObjects];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSCache *widthCache = NativeSdkMeasuredWidthCache();" }, .{ .path = "src/runtime/canvas_fonts.zig", .pattern = ".host_unregister_fn = services.unregister_gpu_surface_font_fn," }, .{ .path = "src/runtime/canvas_fonts.zig", .pattern = ".host_registration_token = host_token," }, .{ .path = "src/runtime/core.zig", .pattern = "host_unregister_fn(entry.host_unregister_context, entry.id, entry.host_registration_token) catch {};" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-cursor-bridge", "Verify AppKit GPU widgets apply retained cursor intent", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "native_sdk_appkit_set_view_cursor" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "resetCursorRects" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSTrackingMouseMoved" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NATIVE_SDK_APPKIT_GPU_INPUT_POINTER_CANCEL" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "_surfaceCursor = cursor ?: [NSCursor arrowCursor]" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSCursor pointingHandCursor" }, // A full-bounds canvas cursor rect geometrically overlaps a // higher-layer webview even though hit testing does not. The // workbench needs both halves: subtract the overlay from the // cursor rects and refuse a direct canvas cursor set there. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSMutableArray *visibleCursorRects" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "surfaceView.coveredMouseRects = coveredRects" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (!covered && NSPointInRect(mousePoint, self.bounds)) [_surfaceCursor set]" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-accessibility-actions", "Verify AppKit GPU widget accessibility actions route to the runtime", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityPerformPress" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitWidgetAccessibilityActionWithId" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NATIVE_SDK_APPKIT_EVENT_WIDGET_ACCESSIBILITY_ACTION" }, // The per-element action gate: without it AppKit derives the // advertised action list from the CLASS's selectors, so every // widget element (a static label included) offers // press/increment/decrement/cancel and performing an // unsupported one reports success while actuating nothing. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "isAccessibilitySelectorAllowed" }, // An assistive client's AXFocused WRITE must move the app's // real focus, not just flip a flag on the snapshot element. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "setAccessibilityFocused" }, // Native Edit-menu validation follows the retained editor's actual // history directions instead of merely checking text focus. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "focusedText.canUndo" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "focusedText.canRedo" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-accessibility-text-ranges", "Verify AppKit GPU widget accessibility publishes text selection ranges", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilitySelectedTextRange" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilitySelectedTextRanges" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityVisibleCharacterRange" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-accessibility-grid-metrics", "Verify AppKit GPU widget accessibility publishes grid and scroll metrics", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityRowIndexRange" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityColumnIndexRange" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityRowCount" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityMaxValue" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-ime-bridge", "Verify AppKit GPU widgets route native text input and IME composition", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSTextInputClient" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "insertText:(id)string replacementRange" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "setMarkedText:(id)string selectedRange" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NATIVE_SDK_APPKIT_GPU_INPUT_IME_SET_COMPOSITION" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-windows-gpu-widget-ime-bridge", "Verify the Windows GPU host routes WM_IME composition onto the shared IME event kinds", &.{ .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "case WM_IME_STARTCOMPOSITION:" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "case WM_IME_COMPOSITION:" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "case WM_IME_ENDCOMPOSITION:" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "kGpuInputImeSetComposition = 8" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "kGpuInputImeCommitComposition = 9" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "kGpuInputImeCancelComposition = 10" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "gpuImeCommitAction(pending, result)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "ISC_SHOWUICOMPOSITIONWINDOW" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-windows-view-frame-rounding", "Verify Windows native view frames accumulate logical coordinates before rounding and declare the full DPI awareness fallback chain", &.{ // The frame policy: every physical edge is the once-rounded // product of an ACCUMULATED logical coordinate and the window // scale, with width/height as edge differences. Per-level // rounding drifts from the round of the sum (the static_asserts // beside nativeViewCoord carry the numeric proof, compiled on // every Windows host build). .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "static void nativeViewLogicalOrigin(Host *host, const NativeView &view, double *logical_x, double *logical_y)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "frame.right = nativeViewCoord((logical_x + view.width) * scale);" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "static_assert(nativeViewCoord(10.4 * 1.5) + nativeViewCoord(10.4 * 1.5) == 32 && nativeViewCoord((10.4 + 10.4) * 1.5) == 31," }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "MoveWindow(view.hwnd, frame.left, frame.top, frame.right - frame.left, frame.bottom - frame.top, TRUE);" }, // The embedded manifest's DPI declarations: the ordered // dpiAwareness list degrades PerMonitorV2 to PerMonitor, and the // legacy dpiAware element covers systems that ignore dpiAwareness // entirely. .{ .path = "assets/native-sdk.manifest", .pattern = "true/pm" }, .{ .path = "assets/native-sdk.manifest", .pattern = "PerMonitorV2, PerMonitor" }, // The host's runtime DPI resolution mirrors that manifest chain: // GetDpiForWindow, then shcore's GetDpiForMonitor (per-monitor v1), // then the system DPI. Without the per-monitor-v1 and system rungs // an aware process on a pre-1607 system would render at real // physical pixels while the host still scaled everything at 1x. .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "GetProcAddress(shcore, \"GetDpiForMonitor\")" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "MonitorFromWindow(hwnd, MONITOR_DEFAULTTONEAREST)" }, .{ .path = "src/platform/windows/webview2_host.cpp", .pattern = "return systemDpi();" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-gpu-widget-text-command-bridge", "Verify AppKit GPU text widgets route native text commands", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)selectAll:(id)sender" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "@selector(selectAll:)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitSyntheticKeyDownWithKey:@\"a\" modifiers:(NativeSdkShortcutModifierPrimary | NativeSdkShortcutModifierCommand)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)undo:(id)sender" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "- (void)redo:(id)sender" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitSyntheticKeyDownWithKey:@\"z\" modifiers:(NativeSdkShortcutModifierPrimary | NativeSdkShortcutModifierCommand)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "emitSyntheticKeyDownWithKey:@\"z\" modifiers:(NativeSdkShortcutModifierPrimary | NativeSdkShortcutModifierCommand | NativeSdkShortcutModifierShift)" }, // Modified horizontal navigation must bypass AppKit's selector // rewrite: the shared editor consumes the raw modifiers, and a // terminal translates them to its shell/protocol bindings. .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NativeSdkTextNavigationNeedsRawKeyEvent(event)" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NSEventModifierFlagCommand | NSEventModifierFlagOption" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-widget-accessibility-hierarchy", "Verify AppKit preserves retained-widget accessibility parentage", &.{ .{ .path = "src/platform/macos/appkit_host.h", .pattern = "uint64_t parent_id;" }, .{ .path = "src/platform/macos/root.zig", .pattern = ".parent_id = node.parent_id orelse 0" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "element.accessibilityParent = parent;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "parent.accessibilityChildren = [childrenByParentId objectForKey:parentId];" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "return self.widgetAccessibilityRootElements ?: @[];" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-appearance-bridge", "Verify AppKit reports system light and dark appearance changes", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "effectiveAppearance" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityDisplayShouldReduceMotion" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "accessibilityDisplayShouldIncreaseContrast" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "NATIVE_SDK_APPKIT_EVENT_APPEARANCE_CHANGED" }, .{ .path = "src/platform/macos/root.zig", .pattern = ".reduce_motion = event.reduce_motion != 0" }, .{ .path = "src/platform/macos/root.zig", .pattern = ".high_contrast = event.high_contrast != 0" }, .{ .path = "src/platform/macos/root.zig", .pattern = ".appearance_changed => state.emit" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-appkit-tray-segment-source-selection", "Verify both macOS tray hosts keep segmented selection model-owned", &.{ .{ .path = "src/platform/macos/appkit_host.m", .pattern = "@property(nonatomic, assign) NSInteger sourceSelectedSegment;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "if (options[i].selected != 0) control.sourceSelectedSegment = (NSInteger)i;" }, .{ .path = "src/platform/macos/appkit_host.m", .pattern = "for (NSInteger index = 0; index < control.segmentCount; index++) {\n [control setSelected:index == sourceSelected forSegment:index];\n }\n self.trayCallback" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "@property(nonatomic, assign) NSInteger sourceSelectedSegment;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "if (options[i].selected != 0) control.sourceSelectedSegment = (NSInteger)i;" }, .{ .path = "src/platform/macos/cef_host.mm", .pattern = "for (NSInteger index = 0; index < control.segmentCount; index++) {\n [control setSelected:index == sourceSelected forSegment:index];\n }\n self.trayCallback" }, }); addFileContainsCheckStep(b, file_contains_checker, test_step, "test-docs-builtin-bridge-policy", "Verify bridge policy docs include guarded dialog commands", &.{ .{ .path = "docs/src/app/docs/security/page.mdx", .pattern = ".{ .name = \"native-sdk.dialog.saveFile\"" }, .{ .path = "docs/src/app/docs/bridge/builtin-commands/page.mdx", .pattern = ".{ .name = \"native-sdk.dialog.saveFile\"" }, }); addTestStep(b, "test-geometry", "Run geometry module tests", geometry_tests); addTestStep(b, "test-assets", "Run assets module tests", assets_tests); addTestStep(b, "test-app-dirs", "Run app directory module tests", app_dirs_tests); addTestStep(b, "test-trace", "Run trace module tests", trace_tests); addTestStep(b, "test-app-manifest", "Run app manifest module tests", app_manifest_tests); addTestStep(b, "test-diagnostics", "Run diagnostics module tests", diagnostics_tests); addTestStep(b, "test-platform-info", "Run platform info module tests", platform_info_tests); addTestStep(b, "test-json", "Run JSON primitive tests", json_tests); addTestStep(b, "test-app-runner-window-placement", "Run app-runner window placement decision tests", app_runner_window_placement_tests); addTestStep(b, "test-canvas", "Run canvas display list tests", canvas_tests); addTestStep(b, "test-desktop", "Run Native SDK framework tests", desktop_tests); for (desktop_test_shard_specs, desktop_test_shards) |spec, shard_tests| { addTestStep(b, b.fmt("test-desktop-{s}", .{spec.name}), spec.description, shard_tests); } // The font-registry suite as its own step so CI lanes on real // Windows hardware can run it natively: the whole font pipeline // (TrueType parsing, glyph rasterization, the reference renderer) // is platform-neutral Zig, and this suite's Chinese-receipt test // registers a committed CJK face through the app-fonts seam and // proves the rendered string is real glyphs, not tofu — running it // on a Windows runner makes that a Windows-native receipt. The same // tests also run inside `zig build test` via the canvas-frame shard. addTestStep(b, "test-canvas-fonts", "Run the runtime font-registry tests (includes the registered-CJK Chinese receipt)", filteredTestArtifact(b, desktop_mod, "canvas-fonts-tests", &.{"runtime.canvas_font_tests.test"})); // The console-attachment regression is Windows-only, so the general // Linux `zig build test` lane can only compile and skip it. Expose the // exact test as a focused step for the real-Windows CI runner; this // keeps CREATE_NO_WINDOW behavior covered without making that runner // execute the entire framework runtime suite. addTestStep(b, "test-windows-effects-no-console", "Verify Windows effect spawns run without an attached console", filteredTestArtifact(b, desktop_mod, "windows-effects-no-console-tests", &.{"runtime.effects_tests.test.Windows background spawns run without an attached console"})); addTestStep(b, "test-automation-protocol", "Run automation protocol tests", automation_protocol_tests); addTestStep(b, "test-automation-cli", "Run native automate CLI tests", automation_cli_tests); addTestStep(b, "test-markup-cli", "Run native markup CLI tests", markup_cli_tests); addTestStep(b, "test-evals-cmdview", "Run the evals harness Cmd wire decoder tests", evals_cmdview_tests); addTestStep(b, "test-tooling", "Run Native SDK tooling tests", tooling_tests); addTestStep(b, "test-eject-components", "Run ejected-component widget-identity tests", eject_components_tests); const run_hello = b.addSystemCommand(&.{ "zig", "build", "run", b.fmt("-Dplatform={s}", .{platform_arg}), b.fmt("-Dtrace={s}", .{@tagName(trace_option)}) }); run_hello.setCwd(b.path("examples/hello")); const run_hello_step = b.step("run-hello", "Run the native-sdk hello WebView example"); run_hello_step.dependOn(&run_hello.step); const run_webview = b.addSystemCommand(&.{ "zig", "build", "run", b.fmt("-Dplatform={s}", .{platform_arg}), b.fmt("-Dtrace={s}", .{@tagName(trace_option)}), b.fmt("-Dweb-engine={s}", .{@tagName(web_engine)}), b.fmt("-Dcef-dir={s}", .{exampleCefDir(b, cef_dir)}) }); run_webview.setCwd(b.path("examples/webview")); const run_webview_step = b.step("run-webview", "Run the native-sdk WebView example"); run_webview_step.dependOn(&run_webview.step); const browser_cef_dir = cef_dir_override orelse defaultCefDir(selected_platform, "third_party/cef/macos"); const run_browser = b.addSystemCommand(&.{ "zig", "build", "run", b.fmt("-Dplatform={s}", .{platform_arg}), b.fmt("-Dtrace={s}", .{@tagName(trace_option)}), b.fmt("-Dweb-engine={s}", .{@tagName(browser_web_engine)}), b.fmt("-Dcef-dir={s}", .{exampleCefDir(b, browser_cef_dir)}) }); run_browser.setCwd(b.path("examples/browser")); const run_browser_step = b.step("run-browser", "Run the native-sdk browser example"); run_browser_step.dependOn(&run_browser.step); const build_webview_system = b.addSystemCommand(&.{ "zig", "build", b.fmt("-Dplatform={s}", .{platform_arg}), "-Dweb-engine=system" }); build_webview_system.setCwd(b.path("examples/webview")); const webview_system_link_step = b.step("test-webview-system-link", "Build the WebView example with the system engine"); webview_system_link_step.dependOn(&build_webview_system.step); const build_browser_system = b.addSystemCommand(&.{ "zig", "build", b.fmt("-Dplatform={s}", .{platform_arg}), "-Dweb-engine=system" }); build_browser_system.setCwd(b.path("examples/browser")); const browser_system_link_step = b.step("test-browser-system-link", "Build the browser example with the system engine"); browser_system_link_step.dependOn(&build_browser_system.step); // Windows web-layer PE cross-audit: the declare-to-use inference, // proven on real executables from any host via cross-compile. // ui-inbox's manifest declares no web use, so its exe must carry no // WebView2Loader.dll reference (the whole embedded layer compiles // out) and no loader may land beside it; the webview example declares // the "webview" capability, so its exe must keep the reference. The // loader string lives as UTF-16 in the host, so the audit is a // dedicated scanner (tools/audit_web_layer.zig), not a text grep. const web_layer_auditor = b.addExecutable(.{ .name = "audit-web-layer", .root_module = module(b, host_target, optimize, "tools/audit_web_layer.zig"), }); // A loader installed by a build predating the inference would fail // the absence check below without being this build's fault; clear it // so the assertion tests what THIS build installs. const clean_native_only_loader = b.addSystemCommand(&.{ "sh", "-c", "rm -f examples/ui-inbox/zig-out/bin/WebView2Loader.dll" }); const build_native_only_windows = b.addSystemCommand(&.{ "zig", "build", "-Dtarget=x86_64-windows-gnu", "-Dplatform=windows" }); build_native_only_windows.setCwd(b.path("examples/ui-inbox")); build_native_only_windows.step.dependOn(&clean_native_only_loader.step); const build_webview_windows = b.addSystemCommand(&.{ "zig", "build", "-Dtarget=x86_64-windows-gnu", "-Dplatform=windows", "-Dweb-engine=system" }); build_webview_windows.setCwd(b.path("examples/webview")); const audit_native_only_exe = b.addRunArtifact(web_layer_auditor); audit_native_only_exe.addArgs(&.{ "examples/ui-inbox/zig-out/bin/ui-inbox.exe", "absent" }); audit_native_only_exe.has_side_effects = true; audit_native_only_exe.step.dependOn(&build_native_only_windows.step); const audit_webview_exe = b.addRunArtifact(web_layer_auditor); audit_webview_exe.addArgs(&.{ "examples/webview/zig-out/bin/webview.exe", "present" }); audit_webview_exe.has_side_effects = true; audit_webview_exe.step.dependOn(&build_webview_windows.step); const audit_native_only_loader = b.addSystemCommand(&.{ "sh", "-c", \\test ! -f examples/ui-inbox/zig-out/bin/WebView2Loader.dll || { \\ echo "web-layer audit FAILED: the native-only build installed WebView2Loader.dll" >&2 \\ exit 1 \\} }); audit_native_only_loader.step.dependOn(&build_native_only_windows.step); const web_layer_audit_step = b.step("test-windows-web-layer-audit", "Cross-compile a native-only and a web example for Windows and audit the web layer in each exe"); web_layer_audit_step.dependOn(&audit_native_only_exe.step); web_layer_audit_step.dependOn(&audit_webview_exe.step); web_layer_audit_step.dependOn(&audit_native_only_loader.step); // Linux web-layer ELF cross-audit: the same declare-to-use proof on // real Linux executables. Unlike the Windows step this cannot // cross-compile from any host — the GTK host needs the system GTK4 // (and, for the web example, WebKitGTK) development headers — so the // step runs on Linux with both packages installed and proves the // SEAM, not the environment: the native-only exe must carry no // libwebkitgtk DT_NEEDED entry and no webkit_/jsc_ dynamic symbol // even though the dev package was right there, while the web example // must keep them. The environment half (a native-only app building // on a runner with no WebKitGTK dev package at all) is proven by the // linux-canvas-smoke CI job. const build_native_only_linux = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=linux" }); build_native_only_linux.setCwd(b.path("examples/ui-inbox")); const build_webview_linux = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=linux", "-Dweb-engine=system" }); build_webview_linux.setCwd(b.path("examples/webview")); const audit_native_only_elf = b.addRunArtifact(web_layer_auditor); audit_native_only_elf.addArgs(&.{ "examples/ui-inbox/zig-out/bin/ui-inbox", "absent" }); audit_native_only_elf.has_side_effects = true; audit_native_only_elf.step.dependOn(&build_native_only_linux.step); const audit_webview_elf = b.addRunArtifact(web_layer_auditor); audit_webview_elf.addArgs(&.{ "examples/webview/zig-out/bin/webview", "present" }); audit_webview_elf.has_side_effects = true; audit_webview_elf.step.dependOn(&build_webview_linux.step); const linux_web_layer_audit_step = b.step("test-linux-web-layer-audit", "Build a native-only and a web example for Linux (Linux host with GTK4 + WebKitGTK dev packages) and audit the web layer in each ELF"); linux_web_layer_audit_step.dependOn(&audit_native_only_elf.step); linux_web_layer_audit_step.dependOn(&audit_webview_elf.step); const frontend_examples_step = b.step("test-examples-frontends", "Run frontend example tests"); _ = addExampleTestStep(b, host_cli_exe, frontend_examples_step, "test-example-next", "Run Next example tests", "examples/next", .owned); _ = addExampleTestStep(b, host_cli_exe, frontend_examples_step, "test-example-react", "Run React example tests", "examples/react", .owned); _ = addExampleTestStep(b, host_cli_exe, frontend_examples_step, "test-example-svelte", "Run Svelte example tests", "examples/svelte", .owned); _ = addExampleTestStep(b, host_cli_exe, frontend_examples_step, "test-example-vue", "Run Vue example tests", "examples/vue", .owned); addFileContainsCheckStep(b, file_contains_checker, frontend_examples_step, "test-example-frontend-positioning", "Verify frontend example native shell positioning", &.{ .{ .path = "examples/next/README.md", .pattern = "opens the native app shell with WebView content." }, .{ .path = "examples/react/README.md", .pattern = "opens the native app shell with WebView content." }, .{ .path = "examples/svelte/README.md", .pattern = "opens the native app shell with WebView content." }, .{ .path = "examples/vue/README.md", .pattern = "opens the native app shell with WebView content." }, }); const native_examples_step = b.step("test-examples-native", "Run native-first example tests"); const native_example_shard_steps = [_]*std.Build.Step{ b.step("test-examples-native-shard-1", "Run the first native-first example test shard"), b.step("test-examples-native-shard-2", "Run the second native-first example test shard"), b.step("test-examples-native-shard-3", "Run the third native-first example test shard"), b.step("test-examples-native-shard-4", "Run the fourth native-first example test shard"), }; const native_example_steps = [_]*std.Build.Step{ addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-command-app", "Run command app example tests", "examples/command-app", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-native-shell", "Run native shell example tests", "examples/native-shell", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-native-panels", "Run native panels example tests", "examples/native-panels", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-gpu-surface", "Run GPU surface example tests", "examples/gpu-surface", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-gpu-dashboard", "Run GPU dashboard example tests", "examples/gpu-dashboard", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-gpu-components", "Run GPU components example tests", "examples/gpu-components", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-record-store", "Run record-store example tests", "examples/record-store", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-relational-notes", "Run relational notes example tests", "examples/relational-notes", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-ui-inbox", "Run ui builder inbox example tests", "examples/ui-inbox", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-kanban", "Run ui builder kanban example tests", "examples/kanban", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-habits", "Run markup habits example tests", "examples/habits", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-soundboard", "Run soundboard example tests", "examples/soundboard", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-video-player", "Run video player example tests", "examples/video-player", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-soundboard-ts", "Run soundboard-ts example tests", "examples/soundboard-ts", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-voice-memo", "Run voice memo example tests", "examples/voice-memo", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-deck", "Run deck example tests", "examples/deck", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-markdown-viewer", "Run markdown viewer example tests", "examples/markdown-viewer", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-code-editor", "Run code editor example tests", "examples/code-editor", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-calculator", "Run calculator example tests", "examples/calculator", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-notes", "Run notes example tests", "examples/notes", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-split-collapse", "Run split collapse example tests", "examples/split-collapse", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-system-monitor", "Run system monitor example tests", "examples/system-monitor", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-terminal", "Run terminal example tests", "examples/terminal", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-workbench", "Run workbench example tests", "examples/workbench", .owned), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-system-monitor-ts", "Run system-monitor-ts example tests", "examples/system-monitor-ts", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-effects-probe", "Run effects probe example tests", "examples/effects-probe", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-channel-monitor", "Run channel monitor example tests", "examples/channel-monitor", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-menu-bar", "Run menu-bar lifecycle example tests", "examples/menu-bar", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-feed", "Run feed example tests", "examples/feed", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-service-feed-reader", "Run TypeScript service feed-reader example tests", "examples/service-feed-reader", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-canvas-preview", "Run canvas preview example tests", "examples/canvas-preview", .managed), addExampleTestStep(b, host_cli_exe, native_examples_step, "test-example-capabilities", "Run capabilities example tests", "examples/capabilities", .owned), }; for (native_example_shard_steps) |shard_step| { native_examples_step.dependOn(shard_step); } for (native_example_steps, 0..) |example_step, index| { native_example_shard_steps[index % native_example_shard_steps.len].dependOn(example_step); } // Keep this companion check in the same shard as capabilities. The // aggregate step depends on every shard, so `test-examples-native` // retains exactly the same coverage as before. addFileContainsCheckStep(b, file_contains_checker, native_example_shard_steps[2], "test-example-capabilities-events", "Verify capabilities example event bridge names", &.{ .{ .path = "examples/capabilities/src/main.zig", .pattern = "native-sdk:drop:files" }, }); const mobile_examples_step = b.step("test-examples-mobile", "Verify mobile example project layouts"); addLayoutCheckStep(b, mobile_examples_step, "test-example-ios-layout", "Verify iOS example layout", &.{ "examples/ios/README.md", "examples/ios/app.zon", "examples/ios/NativeSdkIOSExample.xcodeproj/project.pbxproj", "examples/ios/NativeSdkIOSExample/AppDelegate.swift", "examples/ios/NativeSdkIOSExample/SceneDelegate.swift", "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", "examples/ios/NativeSdkIOSExample/native_sdk.h", "examples/ios/NativeSdkIOSExample/NativeSdkDyldShim.c", }); addLayoutCheckStep(b, mobile_examples_step, "test-example-android-layout", "Verify Android example layout", &.{ "examples/android/README.md", "examples/android/app.zon", "examples/android/settings.gradle", "examples/android/build.gradle", "examples/android/app/build.gradle", "examples/android/app/src/main/AndroidManifest.xml", "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", "examples/android/app/src/main/cpp/CMakeLists.txt", "examples/android/app/src/main/cpp/native_sdk_jni.c", "examples/android/app/src/main/cpp/native_sdk.h", }); addLayoutCheckStep(b, mobile_examples_step, "test-example-mobile-shell-layout", "Verify shared mobile-shell metadata", &.{ "examples/mobile-shell/README.md", "examples/mobile-shell/app.zon", }); // Host-tier packaged project pin: `native package --target ios` must // keep emitting the complete, deterministic Xcode project (toolkit // host sources, Info.plist, asset catalog, scheme) — drift is caught // here. --binary stubs the embed library with the fixed-shell lib so // the check needs no iOS cross-compile. const package_ios_layout_run = b.addRunArtifact(host_cli_exe); package_ios_layout_run.setCwd(b.path("examples/calculator")); package_ios_layout_run.setEnvironmentVariable("NATIVE_SDK_PATH", b.pathFromRoot(".")); package_ios_layout_run.addArgs(&.{ "package", "--target", "ios", "--output", "zig-out/package/test-ios-layout", "--binary" }); package_ios_layout_run.addFileArg(embed_lib.getEmittedBin()); package_ios_layout_run.has_side_effects = true; const package_ios_layout_step = b.step("test-package-ios-layout", "Verify the generated iOS host project layout"); const package_ios_layout_paths = [_][]const u8{ "examples/calculator/zig-out/package/test-ios-layout/calculator.xcodeproj/project.pbxproj", "examples/calculator/zig-out/package/test-ios-layout/calculator.xcodeproj/xcshareddata/xcschemes/calculator.xcscheme", "examples/calculator/zig-out/package/test-ios-layout/Host/uikit_host.m", "examples/calculator/zig-out/package/test-ios-layout/Host/native_sdk_app.h", "examples/calculator/zig-out/package/test-ios-layout/Host/apple_image_fit.h", "examples/calculator/zig-out/package/test-ios-layout/Host/Info.plist", "examples/calculator/zig-out/package/test-ios-layout/Assets.xcassets/AppIcon.appiconset/AppIcon.png", "examples/calculator/zig-out/package/test-ios-layout/Assets.xcassets/AppIcon.appiconset/Contents.json", "examples/calculator/zig-out/package/test-ios-layout/Libraries/libnative-sdk.a", "examples/calculator/zig-out/package/test-ios-layout/README.md", "examples/calculator/zig-out/package/test-ios-layout/package-manifest.zon", }; for (package_ios_layout_paths) |path| { const check = b.addSystemCommand(&.{ "test", "-f", path }); check.step.dependOn(&package_ios_layout_run.step); package_ios_layout_step.dependOn(&check.step); mobile_examples_step.dependOn(&check.step); } const package_ios_layout_contents = [_]FileContainsCheck{ .{ .path = "examples/calculator/zig-out/package/test-ios-layout/calculator.xcodeproj/project.pbxproj", .pattern = "PRODUCT_BUNDLE_IDENTIFIER = \"dev.native-sdk.calculator\";" }, .{ .path = "examples/calculator/zig-out/package/test-ios-layout/Host/Info.plist", .pattern = "UILaunchScreen" }, .{ .path = "examples/calculator/zig-out/package/test-ios-layout/Host/uikit_host.m", .pattern = "native_sdk_app_render_pixels" }, }; for (package_ios_layout_contents) |check_value| { const check = b.addRunArtifact(file_contains_checker); check.setCwd(b.path(".")); check.addArg(check_value.path); check.addArg(check_value.pattern); check.step.dependOn(&package_ios_layout_run.step); package_ios_layout_step.dependOn(&check.step); mobile_examples_step.dependOn(&check.step); } // Host-tier packaged project pin, Android: `native package --target // android` must keep emitting the complete generated host project // (toolkit host sources, app.zon-derived manifest, launcher icons) — // drift is caught here. --binary stubs the embed library with the // fixed-shell lib so the check needs no Android cross-compile, and // ANDROID_HOME points at a nonexistent SDK so the deterministic // project-only path runs everywhere (the APK assembly is exercised // by the live loops, not CI). const package_android_layout_run = b.addRunArtifact(host_cli_exe); package_android_layout_run.setCwd(b.path("examples/calculator")); package_android_layout_run.setEnvironmentVariable("NATIVE_SDK_PATH", b.pathFromRoot(".")); package_android_layout_run.setEnvironmentVariable("ANDROID_HOME", b.pathFromRoot("zig-out/no-android-sdk")); package_android_layout_run.addArgs(&.{ "package", "--target", "android", "--output", "zig-out/package/test-android-layout", "--binary" }); package_android_layout_run.addFileArg(embed_lib.getEmittedBin()); package_android_layout_run.has_side_effects = true; const package_android_layout_step = b.step("test-package-android-layout", "Verify the generated Android host project layout"); const package_android_layout_paths = [_][]const u8{ "examples/calculator/zig-out/package/test-android-layout/AndroidManifest.xml", "examples/calculator/zig-out/package/test-android-layout/Host/NativeSdkActivity.java", "examples/calculator/zig-out/package/test-android-layout/Host/android_host.c", "examples/calculator/zig-out/package/test-android-layout/Host/native_sdk_app.h", "examples/calculator/zig-out/package/test-android-layout/res/mipmap-mdpi/ic_launcher.png", "examples/calculator/zig-out/package/test-android-layout/res/mipmap-xxxhdpi/ic_launcher.png", "examples/calculator/zig-out/package/test-android-layout/Libraries/libnative-sdk.a", "examples/calculator/zig-out/package/test-android-layout/README.md", "examples/calculator/zig-out/package/test-android-layout/package-manifest.zon", }; for (package_android_layout_paths) |path| { const check = b.addSystemCommand(&.{ "test", "-f", path }); check.step.dependOn(&package_android_layout_run.step); package_android_layout_step.dependOn(&check.step); mobile_examples_step.dependOn(&check.step); } const package_android_layout_contents = [_]FileContainsCheck{ .{ .path = "examples/calculator/zig-out/package/test-android-layout/AndroidManifest.xml", .pattern = "package=\"dev.native_sdk.calculator\"" }, .{ .path = "examples/calculator/zig-out/package/test-android-layout/AndroidManifest.xml", .pattern = "dev.native_sdk.host.NativeSdkActivity" }, .{ .path = "examples/calculator/zig-out/package/test-android-layout/Host/NativeSdkActivity.java", .pattern = "InputMethodManager" }, .{ .path = "examples/calculator/zig-out/package/test-android-layout/Host/android_host.c", .pattern = "native_sdk_app_render_pixels" }, }; for (package_android_layout_contents) |check_value| { const check = b.addRunArtifact(file_contains_checker); check.setCwd(b.path(".")); check.addArg(check_value.path); check.addArg(check_value.pattern); check.step.dependOn(&package_android_layout_run.step); package_android_layout_step.dependOn(&check.step); mobile_examples_step.dependOn(&check.step); } addFileContainsCheckStep(b, file_contains_checker, mobile_examples_step, "test-example-mobile-shell-metadata", "Verify shared mobile-shell metadata values", &.{ .{ .path = "examples/mobile-shell/app.zon", .pattern = ".platforms = .{ \"ios\", \"android\" }" }, .{ .path = "examples/mobile-shell/app.zon", .pattern = ".capabilities = .{ \"webview\", \"native_views\", \"native_module\" }" }, .{ .path = "examples/mobile-shell/app.zon", .pattern = ".id = \"mobile.back\"" }, .{ .path = "examples/mobile-shell/app.zon", .pattern = ".id = \"mobile.refresh\"" }, .{ .path = "examples/mobile-shell/app.zon", .pattern = ".label = \"mobile-header\"" }, .{ .path = "examples/mobile-shell/app.zon", .pattern = ".label = \"workspace\", .kind = \"webview\"" }, }); addFileContainsCheckStep(b, file_contains_checker, mobile_examples_step, "test-example-mobile-host-commands", "Verify mobile host command metadata values", &.{ .{ .path = "examples/ios/app.zon", .pattern = ".id = \"mobile.back\"" }, .{ .path = "examples/ios/app.zon", .pattern = ".id = \"mobile.refresh\"" }, .{ .path = "examples/ios/app.zon", .pattern = ".label = \"mobile-header\"" }, .{ .path = "examples/android/app.zon", .pattern = ".id = \"mobile.back\"" }, .{ .path = "examples/android/app.zon", .pattern = ".id = \"mobile.refresh\"" }, .{ .path = "examples/android/app.zon", .pattern = ".label = \"mobile-header\"" }, }); addFileContainsCheckStep(b, file_contains_checker, mobile_examples_step, "test-example-android-widget-ime", "Verify Android retained widget IME and action bridge", &.{ .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "override fun onCreateInputConnection" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "nativeIme(nativeApp, kind, text, cursor)" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "WIDGET_ACTION_KIND_SET_COMPOSITION = 7" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "WIDGET_ACTION_DRAG = 1 shl 8" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "WIDGET_ACTION_DROP_FILES = 1 shl 9" }, }); addFileContainsCheckStep(b, file_contains_checker, mobile_examples_step, "test-example-mobile-widget-abi", "Verify mobile examples use stable widget ABI lookups", &.{ .{ .path = "examples/ios/NativeSdkIOSExample/native_sdk.h", .pattern = "native_sdk_viewport_state_t" }, .{ .path = "examples/ios/NativeSdkIOSExample/native_sdk.h", .pattern = "NATIVE_SDK_WIDGET_ROLE_RADIOGROUP = 21" }, .{ .path = "examples/ios/NativeSdkIOSExample/native_sdk.h", .pattern = "native_sdk_app_scroll" }, .{ .path = "examples/ios/NativeSdkIOSExample/native_sdk.h", .pattern = "native_sdk_app_set_text_measure" }, .{ .path = "examples/android/app/src/main/cpp/native_sdk.h", .pattern = "NATIVE_SDK_WIDGET_ROLE_RADIOGROUP = 21" }, .{ .path = "examples/android/app/src/main/cpp/native_sdk.h", .pattern = "native_sdk_app_set_text_measure" }, .{ .path = "examples/mobile-canvas/ios/native_sdk_app.h", .pattern = "native_sdk_app_set_text_measure" }, .{ .path = "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", .pattern = "native_sdk_app_widget_semantics_by_id" }, .{ .path = "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", .pattern = "NATIVE_SDK_WIDGET_ROLE_RADIO" }, .{ .path = "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", .pattern = "childrenByParentId[node.parentId, default: []].append(element)" }, .{ .path = "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", .pattern = "parent.accessibilityContainerType = .semanticGroup" }, .{ .path = "examples/ios/NativeSdkIOSExample/NativeSdkHostViewController.swift", .pattern = "parent.isAccessibilityElement = false" }, .{ .path = "examples/android/app/src/main/cpp/native_sdk.h", .pattern = "native_sdk_app_widget_semantics_by_id" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "nativeScroll(nativeApp" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "WIDGET_ROLE_RADIOGROUP -> \"android.widget.RadioGroup\"" }, .{ .path = "examples/android/app/src/main/java/dev/native_sdk/examples/android/MainActivity.kt", .pattern = "nativeWidgetSemanticsByIdFields" }, .{ .path = "examples/android/app/src/main/cpp/native_sdk_jni.c", .pattern = "native_sdk_app_widget_semantics_by_id" }, .{ .path = "examples/android/app/src/main/cpp/native_sdk_jni.c", .pattern = "native_sdk_app_scroll" }, }); addFileContainsCheckStep(b, file_contains_checker, mobile_examples_step, "test-example-mobile-canvas-span-fonts", "Verify the iOS embed shim measures reserved span font ids with the macOS face mapping", &.{ .{ .path = "examples/mobile-canvas/ios/main.m", .pattern = "static UIFont *NativeSdkItalicSansFont(UIFont *font)" }, .{ .path = "examples/mobile-canvas/ios/main.m", .pattern = "static UIFont *NativeSdkWeightedSansFont(" }, .{ .path = "examples/mobile-canvas/ios/main.m", .pattern = "NativeSdkWeightedSansFont(@[ @\"Geist-Medium\", @\"Geist Medium\" ], UIFontWeightMedium, size)" }, .{ .path = "examples/mobile-canvas/ios/main.m", .pattern = "NativeSdkWeightedSansFont(@[ @\"Geist-Bold\", @\"Geist Bold\" ], UIFontWeightBold, size)" }, .{ .path = "examples/mobile-canvas/ios/main.m", .pattern = "NativeSdkItalicSansFont(NativeSdkWeightedSansFont(@[ @\"Geist-Bold\", @\"Geist Bold\" ], UIFontWeightBold, size))" }, }); const build_mobile_canvas_lib = b.addSystemCommand(&.{ "zig", "build", "lib" }); build_mobile_canvas_lib.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_lib_step = b.step("test-example-mobile-canvas-lib", "Build the mobile-canvas embed static library through addMobileLib"); mobile_canvas_lib_step.dependOn(&build_mobile_canvas_lib.step); mobile_examples_step.dependOn(&build_mobile_canvas_lib.step); const build_mobile_canvas_store_lib = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dstore=true" }); build_mobile_canvas_store_lib.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_store_lib_step = b.step("test-example-mobile-canvas-lib-store", "Build a record-store-capable mobile embed static library"); mobile_canvas_store_lib_step.dependOn(&build_mobile_canvas_store_lib.step); mobile_examples_step.dependOn(&build_mobile_canvas_store_lib.step); const build_mobile_canvas_relational_lib = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dsqlite=true", "--prefix", "zig-out/test-relational" }); build_mobile_canvas_relational_lib.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_relational_lib_step = b.step("test-example-mobile-canvas-lib-sqlite", "Build a relational-SQLite-capable mobile embed static library"); mobile_canvas_relational_lib_step.dependOn(&build_mobile_canvas_relational_lib.step); mobile_examples_step.dependOn(&build_mobile_canvas_relational_lib.step); const build_mobile_canvas_both_storage_lib = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dstore=true", "-Dsqlite=true", "--prefix", "zig-out/test-both-storage" }); build_mobile_canvas_both_storage_lib.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_both_storage_lib_step = b.step("test-example-mobile-canvas-lib-storage", "Build both SQLite-backed mobile tiers with one vendored engine object"); mobile_canvas_both_storage_lib_step.dependOn(&build_mobile_canvas_both_storage_lib.step); mobile_examples_step.dependOn(&build_mobile_canvas_both_storage_lib.step); // Android cross-compile proofs: the capability-free archive remains pure // Zig, while the store variant must discover the NDK sysroot and compile // the vendored SQLite amalgamation for bionic. Keeping both catches a // capability branch that a host-only store build cannot exercise. const build_mobile_canvas_lib_android = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dtarget=aarch64-linux-android" }); build_mobile_canvas_lib_android.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_lib_android_step = b.step("test-example-mobile-canvas-lib-android", "Cross-compile the mobile-canvas embed static library for aarch64-linux-android"); mobile_canvas_lib_android_step.dependOn(&build_mobile_canvas_lib_android.step); mobile_examples_step.dependOn(&build_mobile_canvas_lib_android.step); const build_mobile_canvas_store_lib_android = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dstore=true", "-Dtarget=aarch64-linux-android", "--prefix", "zig-out/test-android-store", }); build_mobile_canvas_store_lib_android.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_store_lib_android_step = b.step("test-example-mobile-canvas-lib-android-store", "Cross-compile SQLite-backed mobile storage for aarch64-linux-android"); mobile_canvas_store_lib_android_step.dependOn(&build_mobile_canvas_store_lib_android.step); mobile_examples_step.dependOn(&build_mobile_canvas_store_lib_android.step); // Apple SDK headers only exist on macOS. This is still part of the local // mobile aggregate there, and CI invokes the named step on its macOS tier. if (b.graph.host.result.os.tag == .macos) { const build_mobile_canvas_store_lib_ios = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dstore=true", "-Dtarget=aarch64-ios-simulator", "--prefix", "zig-out/test-ios-store", }); build_mobile_canvas_store_lib_ios.setCwd(b.path("examples/mobile-canvas")); const build_mobile_canvas_store_lib_ios_device = b.addSystemCommand(&.{ "zig", "build", "lib", "-Dstore=true", "-Dtarget=aarch64-ios", "--prefix", "zig-out/test-ios-device-store", }); build_mobile_canvas_store_lib_ios_device.setCwd(b.path("examples/mobile-canvas")); const mobile_canvas_store_lib_ios_step = b.step("test-example-mobile-canvas-lib-ios-store", "Cross-compile SQLite-backed mobile storage for iOS simulator and device"); mobile_canvas_store_lib_ios_step.dependOn(&build_mobile_canvas_store_lib_ios.step); mobile_canvas_store_lib_ios_step.dependOn(&build_mobile_canvas_store_lib_ios_device.step); mobile_examples_step.dependOn(&build_mobile_canvas_store_lib_ios.step); mobile_examples_step.dependOn(&build_mobile_canvas_store_lib_ios_device.step); } const examples_step = b.step("test-examples", "Run all example tests and layout checks"); examples_step.dependOn(frontend_examples_step); examples_step.dependOn(native_examples_step); examples_step.dependOn(mobile_examples_step); const build_webview_cef = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=macos", "-Dweb-engine=chromium", b.fmt("-Dcef-dir={s}", .{exampleCefDir(b, cef_dir)}) }); build_webview_cef.setCwd(b.path("examples/webview")); const webview_cef_link_step = b.step("test-webview-cef-link", "Build the WebView example with Chromium/CEF"); webview_cef_link_step.dependOn(&build_webview_cef.step); const webview_smoke_step = b.step("test-webview-smoke", "Run macOS WebView automation smoke test"); const webview_smoke_build = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Djs-bridge=true" }); webview_smoke_build.setCwd(b.path("examples/webview")); const webview_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/webview \\app="zig-out/bin/webview" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\request='{"id":"smoke","command":"native.ping","payload":{"source":"smoke"}}' \\response_file=".zig-cache/native-sdk-automation/bridge-response.txt" \\mkdir -p .zig-cache/native-sdk-automation \\rm -f .zig-cache/native-sdk-automation/snapshot.txt .zig-cache/native-sdk-automation/windows.txt .zig-cache/native-sdk-automation/command*.txt "$response_file" \\printf 'bridge %s\n' "$request" > .zig-cache/native-sdk-automation/command-1.txt \\"$app" > .zig-cache/native-sdk-webview-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-webview-smoke.log) ----" >&2; cat .zig-cache/native-sdk-webview-smoke.log >&2 2>/dev/null || true; fi' EXIT \\snapshot="$("$cli" automate wait 2>&1)" \\case "$snapshot" in *"ready=true"*) ;; *) echo "automation snapshot was not ready" >&2; exit 1 ;; esac \\attempts=0 \\while [ "$attempts" -lt 50 ] && ! grep -q 'name="webview.load"' .zig-cache/native-sdk-webview-smoke.log; do attempts=$((attempts + 1)); sleep 0.1; done \\grep -q 'name="webview.load"' .zig-cache/native-sdk-webview-smoke.log || { echo "main window never loaded its webview source (blank window)" >&2; exit 1; } \\if grep -q 'name="dispatch.error"' .zig-cache/native-sdk-webview-smoke.log; then echo "runtime recorded a dispatch error during startup" >&2; exit 1; fi \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "native.ping did not succeed: $response" >&2; exit 1 ;; esac \\case "$response" in *'pong from Zig'*) ;; *) echo "native.ping response was unexpected: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-create","command":"native-sdk.webview.create","payload":{"label":"smoke","url":"https://example.com","frame":{"x":24,"y":24,"width":320,"height":220}}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "webview create did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-resize","command":"native-sdk.webview.setFrame","payload":{"label":"smoke","frame":{"x":36,"y":36,"width":420,"height":260}}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "webview resize did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-navigate","command":"native-sdk.webview.navigate","payload":{"label":"smoke","url":"https://example.com/?smoke=1"}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "webview navigate did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-close","command":"native-sdk.webview.close","payload":{"label":"smoke"}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "webview close did not succeed: $response" >&2; exit 1 ;; esac \\echo "webview smoke ok" , "sh", }); webview_smoke_run.addFileArg(cli_exe.getEmittedBin()); webview_smoke_run.step.dependOn(&webview_smoke_build.step); webview_smoke_run.step.dependOn(&cli_exe.step); webview_smoke_step.dependOn(&webview_smoke_run.step); const native_shell_smoke_step = b.step("test-native-shell-smoke", "Run macOS native-shell automation smoke test"); const native_shell_smoke_build = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Djs-bridge=true" }); native_shell_smoke_build.setCwd(b.path("examples/native-shell")); const native_shell_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/native-shell \\app="zig-out/bin/native-shell" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\response_file="$automation_dir/bridge-response.txt" \\mkdir -p "$automation_dir" \\rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir"/command*.txt "$response_file" \\"$app" > .zig-cache/native-sdk-native-shell-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-native-shell-smoke.log) ----" >&2; cat .zig-cache/native-sdk-native-shell-smoke.log >&2 2>/dev/null || true; fi' EXIT \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "native-shell automation snapshot was not ready" >&2; exit 1 ;; esac \\snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\case "$snapshot" in *'window @w1 "Native SDK Native Shell"'*) ;; *) echo "native-shell window was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/toolbar kind=toolbar'*) ;; *) echo "toolbar view was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/sidebar kind=sidebar'*) ;; *) echo "sidebar view was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/main kind=webview'*) ;; *) echo "main WebView was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/statusbar kind=statusbar'*) ;; *) echo "statusbar view was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/refresh-icon kind=icon_button'*'accessibility_label="Refresh workspace"'*) ;; *) echo "refresh icon accessibility metadata was missing from snapshot" >&2; exit 1 ;; esac \\"$cli" automate focus refresh-button >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ focus_line="$(printf '%s\n' "$snapshot" | grep -F 'view @w1/refresh-button kind=button' || true)" \\ case "$focus_line" in *'focused=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$focus_line" in *'focused=true'*) ;; *) echo "native-shell refresh button did not receive focus" >&2; exit 1 ;; esac \\"$cli" automate focus-next >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ focus_line="$(printf '%s\n' "$snapshot" | grep -F 'view @w1/palette-button kind=button' || true)" \\ case "$focus_line" in *'focused=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$focus_line" in *'focused=true'*) ;; *) echo "native-shell focus-next did not move focus to palette button" >&2; exit 1 ;; esac \\"$cli" automate focus-previous >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ focus_line="$(printf '%s\n' "$snapshot" | grep -F 'view @w1/refresh-button kind=button' || true)" \\ case "$focus_line" in *'focused=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$focus_line" in *'focused=true'*) ;; *) echo "native-shell focus-previous did not return focus to refresh button" >&2; exit 1 ;; esac \\"$cli" automate resize 900 640 >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'window @w1 "Native SDK Native Shell" bounds=('*' 900x640)'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'window @w1 "Native SDK Native Shell" bounds=('*' 900x640)'*) ;; *) echo "native-shell window resize was not reflected in snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/toolbar kind=toolbar'*'bounds=(0,0 900x52)'*) ;; *) echo "native-shell toolbar did not relayout after resize" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/main kind=webview'*'bounds=(240,52 660x548)'*) ;; *) echo "native-shell main WebView did not relayout after resize" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/statusbar kind=statusbar'*'bounds=(240,600 660x40)'*) ;; *) echo "native-shell statusbar did not relayout after resize" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"native-shell-refresh","command":"native-sdk.command.invoke","payload":{"name":"app.refresh"}}' > "$automation_dir/command-1.txt" \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*'"name":"app.refresh"'*'"source":"bridge"'*) ;; *) echo "native-shell command bridge did not succeed: $response" >&2; exit 1 ;; esac \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'Refreshed from bridge. Count 1.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'Refreshed from bridge. Count 1.'*) ;; *) echo "native-shell status view did not reflect bridge refresh" >&2; exit 1 ;; esac \\"$cli" automate menu-command app.refresh >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'Refreshed from menu. Count 2.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'Refreshed from menu. Count 2.'*) ;; *) echo "native-shell menu command did not update status" >&2; exit 1 ;; esac \\"$cli" automate native-command app.refresh refresh-button >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'Refreshed from toolbar. Count 3.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'Refreshed from toolbar. Count 3.'*) ;; *) echo "native-shell toolbar command did not update status" >&2; exit 1 ;; esac \\"$cli" automate shortcut app.refresh >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'Refreshed from shortcut. Count 4.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'Refreshed from shortcut. Count 4.'*) ;; *) echo "native-shell shortcut command did not update status" >&2; exit 1 ;; esac \\"$cli" automate menu-command app.preview.open >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'view @w1/preview kind=webview'*'bounds=(520,96 320x220)'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/preview kind=webview'*'bounds=(520,96 320x220)'*) ;; *) echo "native-shell preview WebView was not created" >&2; exit 1 ;; esac \\"$cli" automate menu-command app.preview.close >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'view @w1/preview kind=webview'*) ;; *) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/preview kind=webview'*) echo "native-shell preview WebView was not closed" >&2; exit 1 ;; *) ;; esac \\echo "native-shell smoke ok" , "sh", }); native_shell_smoke_run.addFileArg(cli_exe.getEmittedBin()); native_shell_smoke_run.step.dependOn(&native_shell_smoke_build.step); native_shell_smoke_run.step.dependOn(&cli_exe.step); native_shell_smoke_step.dependOn(&native_shell_smoke_run.step); const menu_bar_smoke_step = b.step("test-menu-bar-smoke", "Run zero-config TypeScript app-menu automation smoke test"); const menu_bar_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); menu_bar_smoke_build.setCwd(b.path("examples/menu-bar")); const menu_bar_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/menu-bar \\app="zig-out/bin/menu-bar" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir"/command*.txt \\"$app" > .zig-cache/native-sdk-menu-bar-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-menu-bar-smoke.log) ----" >&2; cat .zig-cache/native-sdk-menu-bar-smoke.log >&2 2>/dev/null || true; fi' EXIT \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "menu-bar automation snapshot was not ready" >&2; exit 1 ;; esac \\before="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\case "$before" in *'command id="player.next" title="Next Track" enabled=true checked=false'*) ;; *) echo "app.zon command catalog was not loaded by the zero-config runner" >&2; exit 1 ;; esac \\case "$before" in *'app-menu title="Player" items=6'*) ;; *) echo "app.zon Player menu was not loaded by the zero-config runner" >&2; exit 1 ;; esac \\case "$before" in *'app-menu-item label="Next Track" command="player.next" enabled=true checked=false key="n" modifiers=(primary=true,command=false,control=false,option=false,shift=false)'*) ;; *) echo "app.zon player.next menu item was not loaded by the zero-config runner" >&2; exit 1 ;; esac \\case "$before" in \\ *'Ambient Coast'*) expected='Night Drive' ;; \\ *'Night Drive'*) expected='Paper Planes' ;; \\ *'Paper Planes'*) expected='Ambient Coast' ;; \\ *) echo "menu-bar snapshot did not expose the current TypeScript model track" >&2; exit 1 ;; \\esac \\"$cli" automate menu-command player.next >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *"$expected"*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *"$expected"*) ;; *) echo "app.zon menu command did not reach the zero-config TypeScript commandMsg mapper" >&2; exit 1 ;; esac \\echo "menu-bar smoke ok" , "sh", }); menu_bar_smoke_run.addFileArg(cli_exe.getEmittedBin()); menu_bar_smoke_run.step.dependOn(&menu_bar_smoke_build.step); menu_bar_smoke_run.step.dependOn(&cli_exe.step); menu_bar_smoke_step.dependOn(&menu_bar_smoke_run.step); const gpu_surface_smoke_step = b.step("test-gpu-surface-smoke", "Run macOS GPU surface automation smoke test"); // The GPU smoke apps are managed examples (no build.zig of their own), // so their binaries come from the CLI verb. -Doptimize=Debug keeps the // smoke binary at the debug shape the in-dir builds used (`native // build` injects ReleaseFast when no optimize flag is passed). const gpu_surface_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); gpu_surface_smoke_build.setCwd(b.path("examples/gpu-surface")); const gpu_surface_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/gpu-surface \\app="zig-out/bin/gpu-surface" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\# Startup latencies are load-sensitive on shared CI/agent machines. \\# NATIVE_SDK_SMOKE_BUDGET_MS raises the first-frame latency budget (default \\# stays 150 ms) and the automation-ready ceiling (default stays \\# 500 ms; the ceiling never drops below it) without weakening the \\# local defaults; every correctness assertion stays strict. \\smoke_budget_ms="${NATIVE_SDK_SMOKE_BUDGET_MS:-150}" \\case "$smoke_budget_ms" in ''|*[!0-9]*) echo "NATIVE_SDK_SMOKE_BUDGET_MS must be a positive integer of milliseconds: $smoke_budget_ms" >&2; exit 1 ;; esac \\if [ "$smoke_budget_ms" -le 0 ]; then echo "NATIVE_SDK_SMOKE_BUDGET_MS must be a positive integer of milliseconds: $smoke_budget_ms" >&2; exit 1; fi \\smoke_budget_ns=$((smoke_budget_ms * 1000000)) \\ready_budget_ms="$smoke_budget_ms" \\if [ "$ready_budget_ms" -lt 500 ]; then ready_budget_ms=500; fi \\ready_budget_ns=$((ready_budget_ms * 1000000)) \\rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir"/command*.txt \\"$app" > .zig-cache/native-sdk-gpu-surface-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-gpu-surface-smoke.log) ----" >&2; cat .zig-cache/native-sdk-gpu-surface-smoke.log >&2 2>/dev/null || true; fi' EXIT \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "gpu-surface automation snapshot was not ready" >&2; exit 1 ;; esac \\ready_uptime="$(printf '%s\n' "$ready" | sed -n 's/.*runtime_uptime_ns=\([0-9][0-9]*\).*/\1/p')" \\case "$ready_uptime" in ''|*[!0-9]*) echo "gpu-surface automation ready uptime was missing" >&2; exit 1 ;; esac \\if [ "$ready_uptime" -le 0 ] || [ "$ready_uptime" -gt "$ready_budget_ns" ]; then echo "gpu-surface automation ready exceeded $ready_budget_ms ms: $ready_uptime ns" >&2; exit 1; fi \\snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\case "$snapshot" in *'window @w1 "Native SDK GPU Surface"'*) ;; *) echo "gpu-surface window was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/canvas kind=gpu_surface'*'accessibility_label="Animated GPU surface"'*) ;; *) echo "gpu_surface view was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/inspector kind=webview'*) ;; *) echo "inspector WebView was missing from snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/toolbar kind=toolbar'*) ;; *) echo "toolbar view was missing from snapshot" >&2; exit 1 ;; esac \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'GPU frame 1 from canvas.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'GPU frame 1 from canvas.'*) ;; *) echo "gpu-surface frame event did not reach the runtime" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/canvas kind=gpu_surface'*'gpu_nonblank=true'*) ;; *) echo "gpu-surface frame was not verified as nonblank" >&2; exit 1 ;; esac \\first_frame_latency="$(printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/canvas kind=gpu_surface.* gpu_first_frame_latency_ns=\([0-9][0-9]*\).*/\1/p')" \\case "$first_frame_latency" in ''|*[!0-9]*) echo "gpu-surface first frame latency was missing" >&2; exit 1 ;; esac \\if [ "$first_frame_latency" -le 0 ] || [ "$first_frame_latency" -gt "$smoke_budget_ns" ]; then echo "gpu-surface first frame exceeded $smoke_budget_ms ms: $first_frame_latency ns" >&2; exit 1; fi \\# The runtime publishes its own fixed 150 ms budget verdict. Within that \\# budget the verdict must agree exactly; beyond it (reachable only when \\# NATIVE_SDK_SMOKE_BUDGET_MS > 150) the runtime must report the overrun honestly. \\if [ "$first_frame_latency" -le 150000000 ]; then \\ case "$snapshot" in *'view @w1/canvas kind=gpu_surface'*'gpu_first_frame_latency_budget_ns=150000000'*'gpu_first_frame_latency_budget_exceeded=0'*'gpu_first_frame_latency_budget_ok=true'*) ;; *) echo "gpu-surface first frame exceeded the latency budget" >&2; exit 1 ;; esac \\else \\ case "$snapshot" in *'view @w1/canvas kind=gpu_surface'*'gpu_first_frame_latency_budget_ns=150000000'*'gpu_first_frame_latency_budget_ok=false'*) ;; *) echo "gpu-surface runtime did not report the first-frame budget overrun" >&2; exit 1 ;; esac \\fi \\"$cli" automate native-command gpu.refresh refresh >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'GPU surface refreshed from toolbar. Count 1.'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'view @w1/status-label kind=label'*'GPU surface refreshed from toolbar. Count 1.'*) ;; *) echo "gpu-surface refresh command did not update status" >&2; exit 1 ;; esac \\"$cli" automate resize 960 620 >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'window @w1 "Native SDK GPU Surface" bounds=('*' 960x620)'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'window @w1 "Native SDK GPU Surface" bounds=('*' 960x620)'*) ;; *) echo "gpu-surface window resize was not reflected in snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/canvas kind=gpu_surface'*'bounds=(0,0 680x534)'*) ;; *) echo "gpu_surface view did not relayout after resize" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/inspector kind=webview'*'bounds=(680,52 280x534)'*) ;; *) echo "inspector WebView did not relayout after resize" >&2; exit 1 ;; esac \\echo "gpu-surface smoke ok" , "sh", }); gpu_surface_smoke_run.addFileArg(cli_exe.getEmittedBin()); gpu_surface_smoke_run.step.dependOn(&gpu_surface_smoke_build.step); gpu_surface_smoke_run.step.dependOn(&cli_exe.step); gpu_surface_smoke_step.dependOn(&gpu_surface_smoke_run.step); const writeback_smoke_step = b.step("test-writeback-smoke", "Run macOS provenance + write-back automation smoke test"); // Debug on purpose: the write-back loop lives on the markup // interpreter + hot-reload watch, which apps enable in Debug // (including the generated TS-core wiring) - the release engine is // compiled and watchless by design. const writeback_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); writeback_smoke_build.setCwd(b.path("examples/kanban")); const writeback_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/kanban \\app="zig-out/bin/kanban" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\rm -f "$automation_dir/snapshot.txt" "$automation_dir"/command*.txt "$automation_dir/provenance.txt" \\# The smoke edits src/app.native through the write-back verb and restores \\# it through the same verb; the trap restores from the backup on ANY \\# failure so an aborted run never leaves the example dirty. \\cp src/app.native .zig-cache/app.native.smoke-backup \\"$app" > .zig-cache/native-sdk-writeback-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; cp .zig-cache/app.native.smoke-backup src/app.native; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-writeback-smoke.log) ----" >&2; cat .zig-cache/native-sdk-writeback-smoke.log >&2 2>/dev/null || true; fi' EXIT \\"$cli" automate assert --timeout-ms 30000 'ready=true' >/dev/null \\snapshot="$(cat "$automation_dir/snapshot.txt")" \\button_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/kanban-canvas#\([0-9][0-9]*\) role=button name="Add card".*/\1/p' | head -n 1)" \\case "$button_id" in ''|*[!0-9]*) echo "writeback smoke: Add card button id was missing from the snapshot" >&2; exit 1 ;; esac \\heading_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/kanban-canvas#\([0-9][0-9]*\) role=text name="Todo".*/\1/p' | head -n 1)" \\case "$heading_id" in ''|*[!0-9]*) echo "writeback smoke: Todo heading id was missing from the snapshot" >&2; exit 1 ;; esac \\# 1. Provenance: the button reports its authored span in the root file. \\provenance="$("$cli" automate provenance kanban-canvas "$button_id" 2>/dev/null)" \\case "$provenance" in *"authored=markup"*"root=src/app.native"*) ;; *) echo "writeback smoke: button provenance was not markup-authored: $provenance" >&2; exit 1 ;; esac \\case "$provenance" in *"node file=src/app.native"*) ;; *) echo "writeback smoke: button provenance named the wrong file: $provenance" >&2; exit 1 ;; esac \\# 2. Loop provenance: the boot view is deliberately self-contained, \\# so a card title reports its node in app.native plus its iteration key. \\card_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/kanban-canvas#\([0-9][0-9]*\) role=text name="Retry failed agent runs".*/\1/p' | head -n 1)" \\case "$card_id" in ''|*[!0-9]*) echo "writeback smoke: card text id was missing from the snapshot" >&2; exit 1 ;; esac \\card_provenance="$("$cli" automate provenance kanban-canvas "$card_id" 2>/dev/null)" \\case "$card_provenance" in *"node file=src/app.native"*) ;; *) echo "writeback smoke: card provenance named the wrong file: $card_provenance" >&2; exit 1 ;; esac \\case "$card_provenance" in *"keys="*) ;; *) echo "writeback smoke: card provenance missed the iteration key: $card_provenance" >&2; exit 1 ;; esac \\# 3. Write-back: flip the Todo heading through the verb; the app's own \\# hot-reload watch picks the file change up and repaints. \\"$cli" automate edit kanban-canvas "$heading_id" set-text "Backlog" >/dev/null 2>&1 \\"$cli" automate assert --timeout-ms 15000 'role=text name="Backlog"' >/dev/null \\# The file diff is byte-exact: exactly the heading bytes changed. \\sed 's/>TodoBacklog .zig-cache/app.native.smoke-expected \\cmp -s .zig-cache/app.native.smoke-expected src/app.native || { echo "writeback smoke: the edit was not minimal-diff" >&2; exit 1; } \\# 4. Flip it back through the same verb: the structural id survived the \\# reload (text is not identity), and the file restores byte-identical. \\"$cli" automate edit kanban-canvas "$heading_id" set-text "Todo" >/dev/null 2>&1 \\"$cli" automate assert --timeout-ms 15000 'role=text name="Todo"' >/dev/null \\cmp -s .zig-cache/app.native.smoke-backup src/app.native || { echo "writeback smoke: the flip-back did not restore the file byte-identically" >&2; exit 1; } \\# 5. Refusal: an edit that fails validation leaves the file untouched. \\if "$cli" automate edit kanban-canvas "$button_id" set-attr bogus 1 >/dev/null 2>&1; then echo "writeback smoke: an invalid edit was not refused" >&2; exit 1; fi \\cmp -s .zig-cache/app.native.smoke-backup src/app.native || { echo "writeback smoke: a refused edit touched the file" >&2; exit 1; } \\echo "writeback smoke ok" , "sh", }); writeback_smoke_run.addFileArg(cli_exe.getEmittedBin()); writeback_smoke_run.step.dependOn(&writeback_smoke_build.step); writeback_smoke_run.step.dependOn(&cli_exe.step); writeback_smoke_step.dependOn(&writeback_smoke_run.step); const gpu_dashboard_smoke_step = b.step("test-gpu-dashboard-smoke", "Run macOS GPU dashboard automation smoke test"); const gpu_dashboard_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); gpu_dashboard_smoke_build.setCwd(b.path("examples/gpu-dashboard")); const gpu_dashboard_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/gpu-dashboard \\app="zig-out/bin/gpu-dashboard" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\# First-frame latency is load-sensitive: a cold file cache or CI/agent \\# machine contention can blow the 150 ms budget while the frame itself \\# is presented and correct. Load tolerance without weakening the proof: \\# (a) NATIVE_SDK_SMOKE_BUDGET_MS raises the smoke's latency budget (default \\# stays 150 ms) and the automation-ready ceiling (default stays \\# 500 ms; the ceiling never drops below it), and \\# (b) a budget-only overrun relaunches the app once and re-measures. \\# Every correctness assertion (frame presented, packet-representable, \\# retained content, widget semantics) stays strict on whichever launch \\# survives, and the runtime's own fixed 150 ms budget verdict is still \\# asserted verbatim whenever the measured latency is within 150 ms. \\smoke_budget_ms="${NATIVE_SDK_SMOKE_BUDGET_MS:-150}" \\case "$smoke_budget_ms" in ''|*[!0-9]*) echo "NATIVE_SDK_SMOKE_BUDGET_MS must be a positive integer of milliseconds: $smoke_budget_ms" >&2; exit 1 ;; esac \\if [ "$smoke_budget_ms" -le 0 ]; then echo "NATIVE_SDK_SMOKE_BUDGET_MS must be a positive integer of milliseconds: $smoke_budget_ms" >&2; exit 1; fi \\smoke_budget_ns=$((smoke_budget_ms * 1000000)) \\ready_budget_ms="$smoke_budget_ms" \\if [ "$ready_budget_ms" -lt 500 ]; then ready_budget_ms=500; fi \\ready_budget_ns=$((ready_budget_ms * 1000000)) \\# gpu-dashboard is a native-only app (nothing in app.zon declares web \\# use), so its macOS host must never boot the WebKit stack: WKWebView \\# instantiation spawns com.apple.WebKit.* XPC helpers. They are \\# launchd-parented (not app children), so the honest cheap probe is \\# the machine-wide helper set before launch vs at the end of the \\# session — a NEW helper during this headless smoke window means the \\# lazy main-WebView path regressed (the failure lists the processes \\# so a coincidental web app launched mid-smoke is tellable apart). \\webkit_helpers() { pgrep -f 'com\.apple\.WebKit\.(WebContent|Networking|GPU)' 2>/dev/null | tr '\n' ' '; } \\webkit_before="$(webkit_helpers)" \\pid="" \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-gpu-dashboard-smoke.log) ----" >&2; cat .zig-cache/native-sdk-gpu-dashboard-smoke.log >&2 2>/dev/null || true; fi' EXIT \\stop_app() { \\ kill "$pid" >/dev/null 2>&1 || true \\ wait "$pid" >/dev/null 2>&1 || true \\ pid="" \\} \\launch_and_measure_first_frame() { \\ rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir"/command*.txt \\ "$app" > .zig-cache/native-sdk-gpu-dashboard-smoke.log 2>&1 & \\ pid=$! \\ ready="$("$cli" automate wait 2>&1)" \\ case "$ready" in *"ready=true"*) ;; *) echo "gpu-dashboard automation snapshot was not ready" >&2; exit 1 ;; esac \\ ready_uptime="$(printf '%s\n' "$ready" | sed -n 's/.*runtime_uptime_ns=\([0-9][0-9]*\).*/\1/p')" \\ case "$ready_uptime" in ''|*[!0-9]*) echo "gpu-dashboard automation ready uptime was missing" >&2; exit 1 ;; esac \\ if [ "$ready_uptime" -le 0 ] || [ "$ready_uptime" -gt "$ready_budget_ns" ]; then echo "gpu-dashboard automation ready exceeded $ready_budget_ms ms: $ready_uptime ns" >&2; exit 1; fi \\ attempts=0 \\ while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'window @w1 "Native SDK GPU Dashboard"'*'view @w1/dashboard-canvas kind=gpu_surface'*'accessibility_label="Native-rendered product dashboard canvas"'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\ done \\ case "$snapshot" in *'window @w1 "Native SDK GPU Dashboard"'*) ;; *) echo "gpu-dashboard window was missing from snapshot" >&2; exit 1 ;; esac \\ case "$snapshot" in *'view @w1/main kind=webview'*) echo "dashboard should not create an implicit main WebView" >&2; exit 1 ;; *) ;; esac \\ case "$snapshot" in *'source kind=html bytes=0'*) echo "dashboard should not publish an empty default WebView source" >&2; exit 1 ;; *) ;; esac \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'accessibility_label="Native-rendered product dashboard canvas"'*) ;; *) echo "dashboard GPU canvas was missing from snapshot" >&2; exit 1 ;; esac \\ attempts=0 \\ while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'gpu_nonblank=true'*'canvas_commands=68'*'canvas_frame_gpu_packet_unsupported=0'*'canvas_frame_gpu_packet_representable=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\ done \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'gpu_nonblank=true'*'canvas_commands=68'*'canvas_frame_gpu_packet_unsupported=0'*'canvas_frame_gpu_packet_representable=true'*) ;; *) echo "dashboard GPU canvas did not present the retained display list as a packet" >&2; exit 1 ;; esac \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'canvas_commands=68'*'widget_semantics=48'*) ;; *) echo "dashboard GPU canvas was missing retained commands or widget semantics" >&2; exit 1 ;; esac \\ first_frame_latency="$(printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/dashboard-canvas kind=gpu_surface.* gpu_first_frame_latency_ns=\([0-9][0-9]*\).*/\1/p')" \\ case "$first_frame_latency" in ''|*[!0-9]*) echo "dashboard GPU first frame latency was missing" >&2; exit 1 ;; esac \\ if [ "$first_frame_latency" -le 0 ]; then echo "dashboard GPU first frame latency was not recorded" >&2; exit 1; fi \\} \\launch_and_measure_first_frame \\if [ "$first_frame_latency" -gt "$smoke_budget_ns" ]; then \\ echo "dashboard GPU first frame exceeded $smoke_budget_ms ms ($first_frame_latency ns); relaunching once to rule out machine load" >&2 \\ stop_app \\ launch_and_measure_first_frame \\fi \\if [ "$first_frame_latency" -gt "$smoke_budget_ns" ]; then echo "dashboard GPU first frame exceeded $smoke_budget_ms ms on both launches: $first_frame_latency ns" >&2; exit 1; fi \\# The runtime publishes its own fixed 150 ms budget verdict. Within that \\# budget the verdict must agree exactly; beyond it (reachable only when \\# NATIVE_SDK_SMOKE_BUDGET_MS > 150) the runtime must report the overrun honestly. \\if [ "$first_frame_latency" -le 150000000 ]; then \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'gpu_first_frame_latency_budget_ns=150000000'*'gpu_first_frame_latency_budget_exceeded=0'*'gpu_first_frame_latency_budget_ok=true'*) ;; *) echo "dashboard GPU first frame exceeded the latency budget" >&2; exit 1 ;; esac \\else \\ case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'gpu_first_frame_latency_budget_ns=150000000'*'gpu_first_frame_latency_budget_ok=false'*) ;; *) echo "dashboard runtime did not report the first-frame budget overrun" >&2; exit 1 ;; esac \\fi \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'role=text name="Canvas frame:'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\widget_line() { \\ printf '%s\n' "$snapshot" | grep -F "$1" | head -1 \\} \\line="$(widget_line 'role=tab name="Dashboard mode"')" \\case "$line" in *'actions=[focus,press,select]'*) ;; *) echo "dashboard toolbar mode semantics were missing" >&2; exit 1 ;; esac \\line="$(widget_line 'role=button name="Refresh dashboard"')" \\case "$line" in *'actions=[focus,press]'*) ;; *) echo "dashboard toolbar refresh semantics were missing" >&2; exit 1 ;; esac \\# CoreText-backed layout metrics: the refresh button must be sized by the \\# platform text measure provider, not the deterministic estimator \\# (estimateTextWidthForFont sizes "Refresh" at 14px to 51.842 -> 75.841995 wide). \\case "$line" in *'75.841995x34'*) echo "dashboard refresh button was sized by the estimator; platform text measurement is inactive" >&2; exit 1 ;; esac \\refresh_width="$(printf '%s\n' "$line" | sed -n 's/.*bounds=([0-9.,-]* \([0-9.]*\)x[0-9.]*).*/\1/p')" \\case "$refresh_width" in ''|*[!0-9.]*) echo "dashboard refresh button width was missing" >&2; exit 1 ;; esac \\if [ "$(printf '%s\n' "$refresh_width < 50 || $refresh_width > 110" | bc)" -eq 1 ]; then echo "dashboard refresh button width was implausible: $refresh_width" >&2; exit 1; fi \\line="$(widget_line 'role=button name="Live render status"')" \\case "$line" in *'actions=[focus,press]'*) ;; *) echo "dashboard live render button semantics were missing" >&2; exit 1 ;; esac \\line="$(widget_line 'role=textbox name="Forecast amount"')" \\case "$line" in *'text="$13.4M"'*) ;; *) echo "dashboard forecast textbox semantics were missing" >&2; exit 1 ;; esac \\line="$(widget_line 'role=dialog name="Revenue filter popover"')" \\case "$line" in '') echo "dashboard popover semantics were missing" >&2; exit 1 ;; esac \\line="$(widget_line 'role=text name="Canvas frame:')" \\case "$line" in *'packet ok'*) ;; *) echo "dashboard canvas status semantics were missing" >&2; exit 1 ;; esac \\gpu_frame_from_snapshot() { \\ printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/dashboard-canvas kind=gpu_surface.* gpu_frame=\([0-9][0-9]*\).*/\1/p' \\} \\canvas_revision_from_snapshot() { \\ printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/dashboard-canvas kind=gpu_surface.* canvas_revision=\([0-9][0-9]*\).*/\1/p' \\} \\snapshot_contains() { \\ case "$snapshot" in *"$1"*) return 0 ;; *) return 1 ;; esac \\} \\canvas_revision_before_resize="$(canvas_revision_from_snapshot)" \\case "$canvas_revision_before_resize" in ''|*[!0-9]*) echo "dashboard canvas revision was missing before resize" >&2; exit 1 ;; esac \\"$cli" automate resize 1120 700 >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ case "$snapshot" in *'window @w1 "Native SDK GPU Dashboard" bounds=('*' 1120x700)'*'view @w1/dashboard-canvas kind=gpu_surface'*'bounds=(0,0 1120x700)'*'gpu_nonblank=true'*'canvas_commands=68'*'canvas_frame_gpu_packet_unsupported=0'*'canvas_frame_gpu_packet_representable=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$snapshot" in *'window @w1 "Native SDK GPU Dashboard" bounds=('*' 1120x700)'*) ;; *) echo "dashboard window resize was not reflected in snapshot" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'bounds=(0,0 1120x700)'*) ;; *) echo "dashboard GPU canvas did not relayout after resize" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'gpu_nonblank=true'*'canvas_commands=68'*'canvas_frame_gpu_packet_unsupported=0'*'canvas_frame_gpu_packet_representable=true'*) ;; *) echo "dashboard GPU canvas did not remain packet-renderable after resize" >&2; exit 1 ;; esac \\canvas_revision_after_resize="$(canvas_revision_from_snapshot)" \\case "$canvas_revision_after_resize" in ''|*[!0-9]*) echo "dashboard canvas revision was missing after resize" >&2; exit 1 ;; esac \\if [ "$canvas_revision_after_resize" -lt "$canvas_revision_before_resize" ]; then echo "dashboard canvas revision went backwards after resize: $canvas_revision_before_resize -> $canvas_revision_after_resize" >&2; exit 1; fi \\gpu_frame_before="$(gpu_frame_from_snapshot)" \\case "$gpu_frame_before" in ''|*[!0-9]*) gpu_frame_before=0 ;; esac \\gpu_frame_after="$gpu_frame_before" \\switch_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/dashboard-canvas#\([0-9][0-9]*\) role=switch name="Auto refresh".*/\1/p' | head -1)" \\case "$switch_id" in ''|*[!0-9]*) echo "dashboard auto refresh switch id was missing from snapshot" >&2; exit 1 ;; esac \\"$cli" automate widget-click dashboard-canvas "$switch_id" >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\ gpu_frame_after="$(gpu_frame_from_snapshot)" \\ case "$gpu_frame_after" in ''|*[!0-9]*) gpu_frame_after=0 ;; esac \\ if [ "$gpu_frame_after" -gt "$gpu_frame_before" ]; then \\ if snapshot_contains 'Auto refresh off.' && snapshot_contains 'view @w1/dashboard-canvas kind=gpu_surface' && snapshot_contains 'canvas_frame_full_repaint=false' && snapshot_contains 'canvas_frame_pipeline_uploads=0' && snapshot_contains 'canvas_frame_glyph_uploads=0' && snapshot_contains 'canvas_frame_text_uploads=0' && snapshot_contains 'canvas_frame_gpu_packet_unsupported=0' && snapshot_contains 'canvas_frame_gpu_packet_representable=true'; then \\ switch_line="$(printf '%s\n' "$snapshot" | grep -F 'role=switch name="Auto refresh"' | head -1)" \\ case "$switch_line" in *'value=0'*) break ;; esac \\ fi \\ fi \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\if [ "$gpu_frame_after" -le "$gpu_frame_before" ]; then echo "dashboard switch click did not request a GPU frame" >&2; exit 1; fi \\case "$snapshot" in *'Auto refresh off.'*) ;; *) echo "dashboard switch click did not update status" >&2; exit 1 ;; esac \\switch_line="$(printf '%s\n' "$snapshot" | grep -F 'role=switch name="Auto refresh"' | head -1)" \\case "$switch_line" in *'value=0'*) ;; *) echo "dashboard switch click did not route through pointer input" >&2; exit 1 ;; esac \\case "$snapshot" in *'view @w1/dashboard-canvas kind=gpu_surface'*'canvas_frame_full_repaint=false'*'canvas_frame_pipeline_uploads=0'*'canvas_frame_glyph_uploads=0'*'canvas_frame_text_uploads=0'*'canvas_frame_gpu_packet_unsupported=0'*'canvas_frame_gpu_packet_representable=true'*) ;; *) echo "dashboard switch click did not present an incremental GPU packet without interaction-time uploads" >&2; exit 1 ;; esac \\input_timestamp="$(printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/dashboard-canvas kind=gpu_surface.* gpu_input_timestamp_ns=\([0-9][0-9]*\).*/\1/p')" \\case "$input_timestamp" in ''|*[!0-9]*) echo "dashboard GPU input timestamp was missing after widget interaction" >&2; exit 1 ;; esac \\if [ "$input_timestamp" -le 0 ]; then echo "dashboard GPU input timestamp was not recorded" >&2; exit 1; fi \\input_latency="$(printf '%s\n' "$snapshot" | sed -n 's/.*view @w1\/dashboard-canvas kind=gpu_surface.* gpu_input_latency_ns=\([0-9][0-9]*\).*/\1/p')" \\case "$input_latency" in ''|*[!0-9]*) echo "dashboard GPU input latency was missing after widget interaction" >&2; exit 1 ;; esac \\# --- Incremental pixel equivalence: relaunch under the host's verify \\# mode, where every scissored dirty update is byte-compared against a \\# from-scratch full redraw of the retained command list. Clicks, the \\# live-pulse animation, and a mid-animation resize drive scissored \\# patches; the verify counters must show checks with zero mismatches. \\stop_app \\rm -f "$automation_dir/snapshot.txt" "$automation_dir"/command*.txt \\verify_log=".zig-cache/native-sdk-gpu-dashboard-verify.log" \\NATIVE_SDK_GPU_VERIFY_INCREMENTAL=1 "$app" > "$verify_log" 2>&1 & \\pid=$! \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "gpu-dashboard verify relaunch was not ready" >&2; exit 1 ;; esac \\snapshot="$(cat "$automation_dir/snapshot.txt" 2>/dev/null || true)" \\switch_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/dashboard-canvas#\([0-9][0-9]*\) role=switch name="Auto refresh".*/\1/p' | head -1)" \\live_id="$(printf '%s\n' "$snapshot" | sed -n 's/.*widget @w1\/dashboard-canvas#\([0-9][0-9]*\) role=button name="Live render status".*/\1/p' | head -1)" \\case "$switch_id" in ''|*[!0-9]*) echo "dashboard verify switch id was missing" >&2; exit 1 ;; esac \\case "$live_id" in ''|*[!0-9]*) echo "dashboard verify live button id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-click dashboard-canvas "$switch_id" >/dev/null 2>&1 \\sleep 0.4 \\"$cli" automate widget-click dashboard-canvas "$live_id" >/dev/null 2>&1 \\sleep 0.3 \\"$cli" automate resize 1120 700 >/dev/null 2>&1 \\sleep 0.5 \\"$cli" automate widget-click dashboard-canvas "$live_id" >/dev/null 2>&1 \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ if grep -q "gpu incremental verify view=dashboard-canvas checks=" "$verify_log" 2>/dev/null; then break; fi \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\if ! grep -q "gpu incremental verify view=dashboard-canvas checks=" "$verify_log" 2>/dev/null; then echo "dashboard verify mode recorded no incremental checks" >&2; exit 1; fi \\if grep -q "verify MISMATCH" "$verify_log" 2>/dev/null; then echo "dashboard incremental present diverged from a full redraw:" >&2; grep "verify MISMATCH" "$verify_log" >&2; exit 1; fi \\if grep "gpu incremental verify view=dashboard-canvas checks=" "$verify_log" | grep -qv "mismatches=0"; then echo "dashboard incremental verify reported mismatches" >&2; exit 1; fi \\# The whole session ran (two launches, clicks, resizes): a native-only \\# macOS app must have spawned ZERO new WebKit helper processes. \\webkit_after="$(webkit_helpers)" \\new_webkit="" \\for helper_pid in $webkit_after; do \\ case " $webkit_before " in *" $helper_pid "*) ;; *) new_webkit="$new_webkit $helper_pid" ;; esac \\done \\if [ -n "$new_webkit" ]; then \\ echo "native-only gpu-dashboard session spawned WebKit helper processes:$new_webkit" >&2 \\ for helper_pid in $new_webkit; do ps -p "$helper_pid" -o pid,ppid,command >&2 || true; done \\ exit 1 \\fi \\echo "zero new WebKit helper processes during the native-only session" \\echo "gpu-dashboard smoke ok" , "sh", }); gpu_dashboard_smoke_run.addFileArg(cli_exe.getEmittedBin()); gpu_dashboard_smoke_run.step.dependOn(&gpu_dashboard_smoke_build.step); gpu_dashboard_smoke_run.step.dependOn(&cli_exe.step); gpu_dashboard_smoke_step.dependOn(&gpu_dashboard_smoke_run.step); // Percentile performance check — a single-sample gate was noise-dominated, // so this asserts p90 over N launches. Deliberately NOT part of // `zig build test` or the fast gate tier: N launches are slow and the // numbers only mean something on a controlled machine. Runs via // `scripts/gate.sh full --perf` locally and a dedicated macos-14 CI job. // Knobs: NATIVE_SDK_PERF_LAUNCHES, NATIVE_SDK_PERF_INTERACTIONS, NATIVE_SDK_PERF_BUDGET_MS, // NATIVE_SDK_PERF_INPUT_BUDGET_MS, and NATIVE_SDK_PERF_ANIMATION_* — see // scripts/perf-gpu-dashboard.sh. const gpu_dashboard_perf_step = b.step("test-gpu-dashboard-perf", "Run macOS GPU dashboard percentile performance check (N launches; slow)"); const gpu_dashboard_perf_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); gpu_dashboard_perf_build.setCwd(b.path("examples/gpu-dashboard")); const gpu_dashboard_perf_run = b.addSystemCommand(&.{ "sh", "scripts/perf-gpu-dashboard.sh" }); gpu_dashboard_perf_run.addFileArg(cli_exe.getEmittedBin()); gpu_dashboard_perf_run.step.dependOn(&gpu_dashboard_perf_build.step); gpu_dashboard_perf_run.step.dependOn(&cli_exe.step); gpu_dashboard_perf_step.dependOn(&gpu_dashboard_perf_run.step); const canvas_preview_smoke_step = b.step("test-canvas-preview-smoke", "Run macOS canvas + webview (both-in-one-window) automation smoke test"); const canvas_preview_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); canvas_preview_smoke_build.setCwd(b.path("examples/canvas-preview")); const canvas_preview_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/canvas-preview \\app="zig-out/bin/canvas-preview" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir"/command*.txt "$automation_dir/screenshot-preview-canvas.png" \\"$app" > .zig-cache/native-sdk-canvas-preview-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-canvas-preview-smoke.log) ----" >&2; cat .zig-cache/native-sdk-canvas-preview-smoke.log >&2 2>/dev/null || true; fi' EXIT \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "canvas-preview automation snapshot was not ready" >&2; exit 1 ;; esac \\# Both architectures live in window 1: a presenting Metal canvas and \\# a live WKWebView on a real https URL — with no implicit main webview. \\"$cli" automate assert 'view @w1/preview-canvas kind=gpu_surface.*gpu_nonblank=true' 'view @w1/preview kind=webview.*url="https://example.com/"' \\"$cli" automate assert --absent 'view @w1/main kind=webview' 'source kind=html bytes=0' \\# The webview pane is snapped to the canvas anchor widget: right of \\# the 224pt sidebar, below the 56pt toolbar. \\preview_line="$(grep 'view @w1/preview kind=webview' "$automation_dir/snapshot.txt" | head -1)" \\preview_x="$(printf '%s\n' "$preview_line" | sed -n 's/.*bounds=(\([0-9.]*\),.*/\1/p')" \\case "$preview_x" in ''|*[!0-9.]*) echo "canvas-preview webview x was missing" >&2; exit 1 ;; esac \\if [ "$(printf '%s\n' "$preview_x < 224" | bc)" -eq 1 ]; then echo "canvas-preview webview was not snapped right of the sidebar: x=$preview_x" >&2; exit 1; fi \\# Navigation from a Msg: the app command switches the model URL and \\# the runtime navigates the platform webview. \\"$cli" automate native-command app.docs >/dev/null 2>&1 \\"$cli" automate assert 'view @w1/preview kind=webview.*url="https://native-sdk.dev/"' 'name="URL: https://native-sdk.dev/"' \\# Resize keeps the pane snapped to the anchor widget's new frame: \\# the panel right of the 224pt sidebar and below the 56pt toolbar. \\"$cli" automate resize 1200 800 >/dev/null 2>&1 \\"$cli" automate assert 'window @w1 "Native SDK Canvas Preview" bounds=.*1200x800' 'view @w1/preview kind=webview.*bounds=.224,56 976x744' \\# Canvas screenshot evidence (reference-rendered PNG of the chrome). \\"$cli" automate screenshot preview-canvas >/dev/null 2>&1 \\test -s "$automation_dir/screenshot-preview-canvas.png" || { echo "canvas-preview screenshot was empty" >&2; exit 1; } \\echo "canvas-preview smoke ok" , "sh", }); canvas_preview_smoke_run.addFileArg(cli_exe.getEmittedBin()); canvas_preview_smoke_run.step.dependOn(&canvas_preview_smoke_build.step); canvas_preview_smoke_run.step.dependOn(&cli_exe.step); canvas_preview_smoke_step.dependOn(&canvas_preview_smoke_run.step); const gpu_components_smoke_step = b.step("test-gpu-components-smoke", "Run the TypeScript component gallery automation smoke test"); const gpu_components_smoke_build = managedExampleRun(b, cli_exe, &.{ "build", "-Dplatform=macos", "-Dweb-engine=system", "-Dautomation=true", "-Doptimize=Debug" }); gpu_components_smoke_build.setCwd(b.path("examples/gpu-components")); const gpu_components_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/gpu-components \\app="zig-out/bin/gpu-components" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\automation_dir=".zig-cache/native-sdk-automation" \\mkdir -p "$automation_dir" \\rm -f "$automation_dir/snapshot.txt" "$automation_dir/accessibility.txt" "$automation_dir/windows.txt" "$automation_dir/screenshot-components-canvas.png" "$automation_dir/screenshot-components-house.png" "$automation_dir/screenshot-components-geist.png" "$automation_dir"/command*.txt \\"$app" > .zig-cache/native-sdk-gpu-components-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-gpu-components-smoke.log) ----" >&2; cat .zig-cache/native-sdk-gpu-components-smoke.log >&2 2>/dev/null || true; fi' EXIT \\ready="$("$cli" automate wait 2>&1)" \\case "$ready" in *"ready=true"*) ;; *) echo "gpu-components automation snapshot was not ready" >&2; exit 1 ;; esac \\snapshot="$automation_dir/snapshot.txt" \\widget_id() { \\ role="$1" \\ name="$2" \\ sed -n "s/.*widget @w1\\/components-canvas#\\([0-9][0-9]*\\) role=$role name=\\\"$name\\\".*/\\1/p" "$snapshot" | head -1 \\} \\attempts=0 \\while [ "$attempts" -lt 50 ]; do \\ ready_snapshot="$(cat "$snapshot" 2>/dev/null || true)" \\ case "$ready_snapshot" in *'view @w1/components-canvas kind=gpu_surface'*'gpu_nonblank=true'*'canvas_frame_gpu_packet_representable=true'*) break ;; esac \\ attempts=$((attempts + 1)) \\ sleep 0.1 \\done \\case "$ready_snapshot" in *'window @w1 "Native SDK GPU Components"'*) ;; *) echo "gpu-components window was missing" >&2; exit 1 ;; esac \\case "$ready_snapshot" in *'view @w1/components-canvas kind=gpu_surface'*'gpu_nonblank=true'*'canvas_frame_gpu_packet_representable=true'*) ;; *) echo "component gallery GPU surface was not ready" >&2; exit 1 ;; esac \\case "$ready_snapshot" in *'view @w1/main kind=webview'*) echo "component gallery created an implicit WebView" >&2; exit 1 ;; *) ;; esac \\"$cli" automate assert 'role=tree name="Components"' 'role=treeitem name="Components".*state=\[expanded\]' 'role=treeitem name="Accordion".*state=\[selected\]' 'role=group name="Details".*state=\[selected,expanded\]' 'name="Accordion details are visible. The model owns this expanded state."' \\"$cli" automate assert 'role=group name="Theme pack"' 'role=group name="Color scheme"' 'role=group name="Theme accent"' 'role=button name="Default".*state=\[selected\]' 'role=button name="Geist"' 'role=button name="System".*state=\[selected\]' 'role=button name="Pink"' 'role=button name="Teal"' \\"$cli" automate screenshot components-canvas >/dev/null 2>&1 \\cp "$automation_dir/screenshot-components-canvas.png" "$automation_dir/screenshot-components-house.png" \\rm -f "$automation_dir/screenshot-components-canvas.png" \\theme_geist_id="$(widget_id button Geist)" \\case "$theme_geist_id" in ''|*[!0-9]*) echo "Geist theme toggle id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-click components-canvas "$theme_geist_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=button name="Geist".*state=\[[^]]*selected' \\"$cli" automate screenshot components-canvas >/dev/null 2>&1 \\cp "$automation_dir/screenshot-components-canvas.png" "$automation_dir/screenshot-components-geist.png" \\test -s "$automation_dir/screenshot-components-house.png" || { echo "house theme screenshot was empty" >&2; exit 1; } \\test -s "$automation_dir/screenshot-components-geist.png" || { echo "Geist theme screenshot was empty" >&2; exit 1; } \\if cmp -s "$automation_dir/screenshot-components-house.png" "$automation_dir/screenshot-components-geist.png"; then echo "theme toggle did not change rendered pixels" >&2; exit 1; fi \\accordion_id="$(widget_id group Details)" \\case "$accordion_id" in ''|*[!0-9]*) echo "accordion id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-action components-canvas "$accordion_id" toggle >/dev/null 2>&1 \\"$cli" automate assert --absent 'name="Accordion details are visible. The model owns this expanded state."' \\"$cli" automate widget-action components-canvas "$accordion_id" toggle >/dev/null 2>&1 \\"$cli" automate assert 'name="Accordion details are visible. The model owns this expanded state."' \\accordion_row_id="$(widget_id treeitem Accordion)" \\case "$accordion_row_id" in ''|*[!0-9]*) echo "accordion navigation id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-action components-canvas "$accordion_row_id" focus >/dev/null 2>&1 \\arrow_count=0 \\while [ "$arrow_count" -lt 33 ]; do \\ "$cli" automate widget-key components-canvas arrowdown >/dev/null 2>&1 \\ arrow_count=$((arrow_count + 1)) \\done \\"$cli" automate assert 'role=treeitem name="Tree".*state=\[[^]]*selected' 'role=text name="Tree"' \\scroll_line="$(grep 'name="Scrollable component tree"' "$snapshot" | head -1)" \\case "$scroll_line" in *'scroll=[offset=0,'*) echo "tree selection did not scroll the final row into view" >&2; exit 1 ;; *'scroll=[offset='*) ;; *) echo "component tree scroll semantics were missing" >&2; exit 1 ;; esac \\"$cli" automate widget-key components-canvas arrowleft >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas arrowleft >/dev/null 2>&1 \\"$cli" automate assert --absent 'role=treeitem name="Accordion"' \\"$cli" automate widget-key components-canvas arrowright >/dev/null 2>&1 \\"$cli" automate assert 'role=treeitem name="Accordion"' \\dropdown_row_id="$(widget_id treeitem "Dropdown Menu")" \\case "$dropdown_row_id" in ''|*[!0-9]*) echo "dropdown navigation id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-action components-canvas "$dropdown_row_id" press >/dev/null 2>&1 \\"$cli" automate assert 'role=text name="Dropdown Menu"' 'role=button name="Actions"' \\actions_id="$(widget_id button Actions)" \\case "$actions_id" in ''|*[!0-9]*) echo "dropdown trigger id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-click components-canvas "$actions_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=menu name=""' 'role=menuitem name="Duplicate"' 'role=menuitem name="Rename"' 'role=menuitem name="Download"' 'role=menuitem name="Delete"' \\"$cli" automate widget-key components-canvas arrowdown >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas arrowdown >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas enter >/dev/null 2>&1 \\"$cli" automate assert --absent 'role=menu name=""' 'role=menuitem name="Duplicate"' \\"$cli" automate assert 'role=text name="Last action: Rename"' \\"$cli" automate widget-click components-canvas "$actions_id" >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas arrowup >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas enter >/dev/null 2>&1 \\"$cli" automate assert 'role=text name="Last action: Delete"' \\select_row_id="$(widget_id treeitem Select)" \\case "$select_row_id" in ''|*[!0-9]*) echo "select navigation id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-action components-canvas "$select_row_id" press >/dev/null 2>&1 \\"$cli" automate assert 'role=text name="Select"' 'role=button name="Environment selector"' \\select_id="$(widget_id button "Environment selector")" \\case "$select_id" in ''|*[!0-9]*) echo "select trigger id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-click components-canvas "$select_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=menuitem name="Production".*state=\[selected\]' 'role=menuitem name="Staging"' 'role=menuitem name="Development"' \\"$cli" automate widget-key components-canvas arrowdown >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas arrowdown >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas enter >/dev/null 2>&1 \\"$cli" automate assert --absent 'role=menu name=""' \\"$cli" automate widget-click components-canvas "$select_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=menuitem name="Staging".*state=\[selected\]' \\"$cli" automate widget-key components-canvas arrowup >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas arrowup >/dev/null 2>&1 \\"$cli" automate widget-key components-canvas enter >/dev/null 2>&1 \\"$cli" automate widget-click components-canvas "$select_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=menuitem name="Production".*state=\[selected\]' \\"$cli" automate widget-key components-canvas escape >/dev/null 2>&1 \\"$cli" automate assert --absent 'role=menu name=""' \\navigation_scroll_id="$(widget_id group "Scrollable component tree")" \\case "$navigation_scroll_id" in ''|*[!0-9]*) echo "component navigation scroll id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-wheel components-canvas "$navigation_scroll_id" 220 >/dev/null 2>&1 \\switch_row_id="$(widget_id treeitem Switch)" \\case "$switch_row_id" in ''|*[!0-9]*) echo "switch navigation id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-action components-canvas "$switch_row_id" press >/dev/null 2>&1 \\"$cli" automate assert 'role=text name="Switch"' 'role=switch name="Notifications".*value=1' 'role=switch name="Airplane mode".*value=0' \\airplane_id="$(widget_id switch "Airplane mode")" \\case "$airplane_id" in ''|*[!0-9]*) echo "airplane mode switch id was missing" >&2; exit 1 ;; esac \\"$cli" automate widget-click components-canvas "$airplane_id" >/dev/null 2>&1 \\"$cli" automate assert 'role=switch name="Notifications".*value=1' 'role=switch name="Airplane mode".*value=1' \\"$cli" automate screenshot components-canvas >/dev/null 2>&1 \\test -s "$automation_dir/screenshot-components-canvas.png" || { echo "component gallery screenshot was empty" >&2; exit 1; } \\echo "gpu-components smoke ok" , "sh", }); gpu_components_smoke_run.addFileArg(cli_exe.getEmittedBin()); gpu_components_smoke_run.step.dependOn(&gpu_components_smoke_build.step); gpu_components_smoke_run.step.dependOn(&cli_exe.step); gpu_components_smoke_step.dependOn(&gpu_components_smoke_run.step); const webview_cef_smoke_step = b.step("test-webview-cef-smoke", "Run macOS Chromium WebView automation smoke test"); const webview_cef_smoke_build = b.addSystemCommand(&.{ "zig", "build", "-Dplatform=macos", "-Dweb-engine=chromium", b.fmt("-Dcef-dir={s}", .{exampleCefDir(b, cef_dir)}), "-Dautomation=true", "-Djs-bridge=true" }); webview_cef_smoke_build.setCwd(b.path("examples/webview")); const webview_cef_smoke_run = b.addSystemCommand(&.{ "sh", "-c", \\set -eu \\cd examples/webview \\app="zig-out/bin/webview" \\cli="$1" \\case "$cli" in /*) ;; *) cli="../../$cli" ;; esac \\request='{"id":"ping","command":"native.ping","payload":{"source":"cef-smoke"}}' \\response_file=".zig-cache/native-sdk-automation/bridge-response.txt" \\mkdir -p .zig-cache/native-sdk-automation \\rm -f .zig-cache/native-sdk-automation/snapshot.txt .zig-cache/native-sdk-automation/windows.txt .zig-cache/native-sdk-automation/command*.txt "$response_file" \\printf 'bridge %s\n' "$request" > .zig-cache/native-sdk-automation/command-1.txt \\"$app" > .zig-cache/native-sdk-webview-cef-smoke.log 2>&1 & \\pid=$! \\trap 'status=$?; kill "$pid" >/dev/null 2>&1 || true; wait "$pid" >/dev/null 2>&1 || true; if [ "$status" -ne 0 ]; then echo "---- app log (.zig-cache/native-sdk-webview-cef-smoke.log) ----" >&2; cat .zig-cache/native-sdk-webview-cef-smoke.log >&2 2>/dev/null || true; fi' EXIT \\snapshot="$("$cli" automate wait 2>&1)" \\case "$snapshot" in *"ready=true"*) ;; *) echo "automation snapshot was not ready" >&2; exit 1 ;; esac \\attempts=0 \\while [ "$attempts" -lt 50 ] && ! grep -q 'name="webview.load"' .zig-cache/native-sdk-webview-cef-smoke.log; do attempts=$((attempts + 1)); sleep 0.1; done \\grep -q 'name="webview.load"' .zig-cache/native-sdk-webview-cef-smoke.log || { echo "main window never loaded its webview source (blank window)" >&2; exit 1; } \\if grep -q 'name="dispatch.error"' .zig-cache/native-sdk-webview-cef-smoke.log; then echo "runtime recorded a dispatch error during startup" >&2; exit 1; fi \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*'pong from Zig'*) ;; *) echo "native.ping response was unexpected: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-create","command":"native-sdk.webview.create","payload":{"label":"smoke","url":"https://example.com","frame":{"x":24,"y":24,"width":320,"height":220}}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "cef webview create did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-resize","command":"native-sdk.webview.setFrame","payload":{"label":"smoke","frame":{"x":36,"y":36,"width":420,"height":260}}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "cef webview resize did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-navigate","command":"native-sdk.webview.navigate","payload":{"label":"smoke","url":"https://example.com/?smoke=1"}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "cef webview navigate did not succeed: $response" >&2; exit 1 ;; esac \\rm -f "$response_file" \\printf 'bridge %s\n' '{"id":"webview-close","command":"native-sdk.webview.close","payload":{"label":"smoke"}}' > .zig-cache/native-sdk-automation/command-1.txt \\attempts=0 \\while [ "$attempts" -lt 50 ] && [ ! -s "$response_file" ]; do attempts=$((attempts + 1)); sleep 0.1; done \\response="$(cat "$response_file" 2>/dev/null || true)" \\case "$response" in *'"ok":true'*) ;; *) echo "cef webview close did not succeed: $response" >&2; exit 1 ;; esac \\echo "cef webview smoke ok" , "sh", }); webview_cef_smoke_run.addFileArg(cli_exe.getEmittedBin()); webview_cef_smoke_run.step.dependOn(&webview_cef_smoke_build.step); webview_cef_smoke_run.step.dependOn(&cli_exe.step); webview_cef_smoke_step.dependOn(&webview_cef_smoke_run.step); const dev_run = b.addSystemCommand(&.{ "zig", "build", "run", b.fmt("-Dplatform={s}", .{platform_arg}) }); dev_run.setCwd(b.path("examples/webview")); const dev_step = b.step("dev", "Run managed frontend dev server and native shell"); dev_step.dependOn(&dev_run.step); const lib_step = b.step("lib", "Build native-sdk embeddable static library"); lib_step.dependOn(&b.addInstallArtifact(embed_lib, .{}).step); const doctor_run = b.addRunArtifact(host_cli_exe); doctor_run.addArg("doctor"); const doctor_step = b.step("doctor", "Print native-sdk platform diagnostics"); doctor_step.dependOn(&doctor_run.step); const validate_run = b.addRunArtifact(host_cli_exe); validate_run.addArgs(&.{ "validate", "app.zon" }); const validate_step = b.step("validate", "Validate app.zon"); validate_step.dependOn(&validate_run.step); const bundle_run = b.addRunArtifact(host_cli_exe); bundle_run.addArgs(&.{ "bundle-assets", "app.zon", "assets", "zig-out/assets" }); const bundle_step = b.step("bundle-assets", "Bundle app assets"); bundle_step.dependOn(&bundle_run.step); const package_run = b.addRunArtifact(host_cli_exe); package_run.addArgs(&.{ "package", "--target", @tagName(package_target), "--output", b.fmt("zig-out/package/native-sdk-{s}-{s}-{s}{s}", .{ package_version, @tagName(package_target), optimize_name, packageSuffix(package_target) }), "--binary", }); package_run.addFileArg(embed_lib.getEmittedBin()); package_run.addArgs(&.{ "--manifest", "app.zon", "--assets", "assets", "--optimize", optimize_name, "--signing", @tagName(signing_mode), "--web-engine", @tagName(web_engine), "--cef-dir", cef_dir }); if (cef_auto_install) package_run.addArg("--cef-auto-install"); package_run.step.dependOn(&embed_lib.step); package_run.step.dependOn(&bundle_run.step); const package_step = b.step("package", "Create local package artifact"); package_step.dependOn(&package_run.step); const package_cef_run = b.addRunArtifact(host_cli_exe); package_cef_run.addArgs(&.{ "package", "--target", "macos", "--output", b.fmt("zig-out/package/native-sdk-cef-smoke-{s}.app", .{optimize_name}), "--binary", }); package_cef_run.addFileArg(embed_lib.getEmittedBin()); package_cef_run.addArgs(&.{ "--manifest", "app.zon", "--assets", "assets", "--optimize", optimize_name, "--web-engine", "chromium", "--cef-dir", cef_dir }); if (cef_auto_install) package_cef_run.addArg("--cef-auto-install"); package_cef_run.step.dependOn(&embed_lib.step); package_cef_run.step.dependOn(&bundle_run.step); const package_cef_check = b.addSystemCommand(&.{ "sh", "-c", b.fmt( \\set -e \\app="zig-out/package/native-sdk-cef-smoke-{s}.app" \\test -d "$app/Contents/Frameworks/Chromium Embedded Framework.framework" \\test -f "$app/Contents/Frameworks/Chromium Embedded Framework.framework/Resources/icudtl.dat" \\test -f "$app/Contents/Frameworks/Chromium Embedded Framework.framework/Libraries/libGLESv2.dylib" \\test -f "$app/Contents/Resources/package-manifest.zon" \\echo "cef package layout ok" , .{optimize_name}), }); package_cef_check.step.dependOn(&package_cef_run.step); const package_cef_smoke_step = b.step("test-package-cef-layout", "Verify macOS Chromium package layout"); package_cef_smoke_step.dependOn(&package_cef_check.step); // Signed-package seal pin: package an ad-hoc signed bundle and prove // the signature survives packaging intact with codesign's own strict // verifier. This is the regression gate for the ordering bug where a // file written into Contents/Resources AFTER signing invalidated the // resource seal ("file added"), turning every quarantined install // into Gatekeeper's "damaged — move to Trash" dialog. The bundle // carries the CLI as its executable (packaging only needs a real // Mach-O to sign); the check skips loudly on hosts without codesign // (any non-macOS machine) instead of pretending to have verified. // Signing that claims to sign now fails the package on hosts that // cannot run codesign (that IS the fix this step gates), so only a // macOS host requests adhoc here; elsewhere the package stays // unsigned and the check script below skips loudly as before. const package_signing_mode: []const u8 = if (b.graph.host.result.os.tag == .macos) "adhoc" else "none"; const package_signing_run = b.addRunArtifact(host_cli_exe); package_signing_run.addArgs(&.{ "package", "--target", "macos", "--output", "zig-out/package/native-sdk-signing-verify.app", "--binary" }); package_signing_run.addFileArg(host_cli_exe.getEmittedBin()); package_signing_run.addArgs(&.{ "--manifest", "app.zon", "--assets", "assets", "--optimize", optimize_name, "--signing", package_signing_mode }); package_signing_run.has_side_effects = true; const package_signing_check = b.addSystemCommand(&.{ "sh", "-c", \\set -e \\app="zig-out/package/native-sdk-signing-verify.app" \\if ! command -v codesign >/dev/null 2>&1; then \\ echo "codesign unavailable on this host; skipping signed-package verification" \\ exit 0 \\fi \\codesign --verify --strict --deep "$app" \\grep -q "ad-hoc signed" "$app/Contents/Resources/signing-plan.txt" \\echo "signed package verify ok" , }); package_signing_check.step.dependOn(&package_signing_run.step); const package_signing_step = b.step("test-package-signing", "Verify an ad-hoc signed macOS package passes codesign --verify --strict"); package_signing_step.dependOn(&package_signing_check.step); const package_windows_run = b.addRunArtifact(host_cli_exe); package_windows_run.addArgs(&.{ "package-windows", "--output", b.fmt("zig-out/package/native-sdk-{s}-windows-Debug", .{package_version}), "--manifest", "app.zon", "--assets", "assets" }); const package_windows_step = b.step("package-windows", "Create local Windows artifact directory"); package_windows_step.dependOn(&package_windows_run.step); const package_linux_run = b.addRunArtifact(host_cli_exe); package_linux_run.addArgs(&.{ "package-linux", "--output", b.fmt("zig-out/package/native-sdk-{s}-linux-Debug", .{package_version}), "--manifest", "app.zon", "--assets", "assets" }); const package_linux_step = b.step("package-linux", "Create local Linux artifact directory"); package_linux_step.dependOn(&package_linux_run.step); const package_ios_run = b.addRunArtifact(host_cli_exe); package_ios_run.addArgs(&.{ "package-ios", "--output", b.fmt("zig-out/mobile/native-sdk-{s}-ios-Debug", .{package_version}), "--manifest", "app.zon", "--assets", "assets" }); const package_ios_step = b.step("package-ios", "Create local iOS host skeleton"); package_ios_step.dependOn(&package_ios_run.step); const package_android_run = b.addRunArtifact(host_cli_exe); package_android_run.addArgs(&.{ "package-android", "--output", b.fmt("zig-out/mobile/native-sdk-{s}-android-Debug", .{package_version}), "--manifest", "app.zon", "--assets", "assets" }); const package_android_step = b.step("package-android", "Create local Android host project"); package_android_step.dependOn(&package_android_run.step); // Default app icon: rendered from vector geometry (tools/ // generate_app_icon.zig) through the SDK's own path rasterizer, so // the checked-in .icns/.ico/.png/.svg all regenerate from source. // The built-in app-icon pipeline assembles and round-trip-validates // the containers itself (no external tools, any host OS), and the // CLI's embedded scaffold copies are kept in sync. const generate_icon_step = b.step("generate-icon", "Regenerate the default app icon (.icns/.ico/.png/.svg) from vector source"); const generate_icon_mod = module(b, target, optimize, "tools/generate_app_icon.zig"); generate_icon_mod.addImport("native_sdk", desktop_mod); const generate_icon_exe = b.addExecutable(.{ .name = "generate-app-icon", .root_module = generate_icon_mod, }); const generate_icon_run = b.addRunArtifact(generate_icon_exe); generate_icon_run.addArgs(&.{ "assets/icon.icns", "assets/icon.png", "assets/icon.ico", "assets/icon.svg", "src/tooling/default_icon.icns", "src/tooling/default_icon.png", "zig-out/icon-full-bleed.png", // The one committed full-bleed copy: the notes example's raw // one-image icon source (it demos the packaging mask + inset), // regenerated here so it can never drift from the default. "examples/notes/assets/icon.png", }); generate_icon_run.has_side_effects = true; generate_icon_step.dependOn(&generate_icon_run.step); const notarize_run = b.addRunArtifact(host_cli_exe); notarize_run.addArgs(&.{ "package", "--target", "macos", "--output", b.fmt("zig-out/package/native-sdk-{s}-macos-{s}.app", .{ package_version, optimize_name }), "--binary", }); notarize_run.addFileArg(embed_lib.getEmittedBin()); notarize_run.addArgs(&.{ "--manifest", "app.zon", "--assets", "assets", "--optimize", optimize_name, "--signing", "identity", "--web-engine", @tagName(web_engine), "--cef-dir", cef_dir }); if (cef_auto_install) notarize_run.addArg("--cef-auto-install"); notarize_run.step.dependOn(&embed_lib.step); notarize_run.step.dependOn(&bundle_run.step); const notarize_step = b.step("notarize", "Package, sign with identity, and notarize for macOS distribution"); notarize_step.dependOn(¬arize_run.step); // Run the same styled archive path app developers get from // `native package --archive`: generated/custom background, Applications // alias, Finder geometry, then compressed UDZO output. Keeping this as a // CLI invocation means the repository helper cannot drift into producing // a plainer image than the product surface it documents. const dmg_run = b.addRunArtifact(host_cli_exe); dmg_run.addArgs(&.{ "package", "--target", "macos", "--output", b.fmt("zig-out/package/native-sdk-{s}-macos-{s}.app", .{ package_version, optimize_name }), "--binary", }); dmg_run.addFileArg(embed_lib.getEmittedBin()); dmg_run.addArgs(&.{ "--manifest", "app.zon", "--assets", "assets", "--optimize", optimize_name, "--signing", @tagName(signing_mode), "--web-engine", @tagName(web_engine), "--cef-dir", cef_dir, "--archive" }); if (cef_auto_install) dmg_run.addArg("--cef-auto-install"); dmg_run.step.dependOn(&embed_lib.step); dmg_run.step.dependOn(&bundle_run.step); dmg_run.has_side_effects = true; const dmg_step = b.step("dmg", "Create a styled macOS .dmg with a drag-to-Applications layout"); dmg_step.dependOn(&dmg_run.step); const cef_bundle_script = b.addSystemCommand(&.{ "sh", "-c", b.fmt( \\set -e \\rm -rf "zig-out/Frameworks/Chromium Embedded Framework.framework" "zig-out/bin/Frameworks/Chromium Embedded Framework.framework" ".zig-cache/o/Frameworks/Chromium Embedded Framework.framework" \\mkdir -p "zig-out/Frameworks" "zig-out/bin/Frameworks" ".zig-cache/o/Frameworks" \\cp -R "{s}/Release/Chromium Embedded Framework.framework" "zig-out/Frameworks/" \\cp -R "{s}/Release/Chromium Embedded Framework.framework" "zig-out/bin/Frameworks/" \\cp -R "{s}/Release/Chromium Embedded Framework.framework" ".zig-cache/o/Frameworks/" \\if [ -d "{s}/Resources" ]; then \\ mkdir -p "zig-out/bin/Resources/cef" \\ cp -R "{s}/Resources/"* "zig-out/bin/Resources/cef/" \\fi \\echo "CEF framework copied for local dev runs" , .{ cef_dir, cef_dir, cef_dir, cef_dir, cef_dir }), }); const cef_bundle_step = b.step("cef-bundle", "Copy CEF framework and resources into zig-out/bin/ for local dev runs"); if (cef_auto_install) { const cef_bundle_auto = b.addRunArtifact(host_cli_exe); cef_bundle_auto.addArgs(&.{ "cef", "install", "--dir", cef_dir }); cef_bundle_script.step.dependOn(&cef_bundle_auto.step); } cef_bundle_step.dependOn(&cef_bundle_script.step); } fn sqliteCompileFlags() []const []const u8 { return &.{ "-DSQLITE_THREADSAFE=2", "-DSQLITE_OMIT_LOAD_EXTENSION", "-DSQLITE_DQS=0", "-DSQLITE_ENABLE_FTS5", "-DSQLITE_ENABLE_JSON1", "-DSQLITE_ENABLE_UPDATE_HOOK", "-DSQLITE_DEFAULT_WAL_SYNCHRONOUS=1", "-DSQLITE_DEFAULT_MEMSTATUS=0", }; } fn module(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, path: []const u8) *std.Build.Module { return b.createModule(.{ .root_source_file = b.path(path), .target = target, .optimize = optimize, }); } /// The framework module's `terminal_vt` import for THIS repository's own /// builds: always the stub. The emulator (libghostty-vt) is pinned by /// the APPS that want live `` sessions, never by this package /// — a pin in `build.zig.zon` is materialized into every consumer's /// package directory even when lazy and unused, and ghostty's own graph /// walks translate_c/wuffs and pulls harfbuzz, which is exactly what a /// scaffolded app must never carry. `AppOptions.terminal_sessions` /// resolves the app's own pin (see build/app.zig), and the terminal /// examples own the enabled path's test coverage. fn terminalVtModule(b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode) *std.Build.Module { return module(b, target, optimize, "src/runtime/terminal_vt_stub.zig"); } /// The short commit hash of the framework checkout the CLI is built /// from, for `native version` staleness checks. "unknown" when /// git is unavailable (e.g. building from a package tarball). fn cliBuildCommit(b: *std.Build) []const u8 { var code: u8 = undefined; const output = b.runAllowFail(&.{ "git", "rev-parse", "--short", "HEAD" }, &code, .ignore) catch return "unknown"; const trimmed = std.mem.trim(u8, output, " \n\r\t"); if (trimmed.len == 0) return "unknown"; return trimmed; } fn testArtifact(b: *std.Build, mod: *std.Build.Module) *std.Build.Step.Compile { return filteredTestArtifact(b, mod, "test", &.{}); } /// The two transpiled-core end-to-end test binaries: the host/markup /// fixture suite (tests/ts-core) and the soundboard-ts example suite — /// the launch-gate port driven as a REAL app (its committed core, its /// shipping markup). Each runs the @native-sdk/core transpiler (node) /// over the TS core at build time, pairs the emitted core with its rt /// kernel in one generated module, and compiles the Zig test root /// against it plus the framework. Returns null — the suites are /// skipped, not failed — when node or the transpiler package's /// installed dependency (`npm ci` in packages/core) is missing. const TsCoreE2eArtifacts = struct { host: *std.Build.Step.Compile, persist: *std.Build.Step.Compile, /// The markup battery is its own binary: the compiled-core symbol /// set is a fixed-prefix C ABI, so one process carries ONE archive /// — every fixture battery links exactly its own core. markup: *std.Build.Step.Compile, kanban: *std.Build.Step.Compile, soundboard: *std.Build.Step.Compile, system_monitor: *std.Build.Step.Compile, /// The stock-IDE contract: a fresh scaffold (and the committed TS /// example ports) typecheck under the REAL tsc with zero injected /// paths, and builds keep working with node_modules deleted. scaffold_ide: *std.Build.Step.Compile, ai_chat: *std.Build.Step.Compile, /// The complete services loop over examples/service-feed-reader: a real /// loopback Cmd.fetch, the generated typed client into a real service /// child, the shipping markup, and record→replay without either. feed_reader: *std.Build.Step.Compile, /// The phase-1 service seam: a real compiled core plus a real plain-scriptc /// service executable driven through the out-of-process carrier. services: *std.Build.Step.Compile, /// The in-process service carrier: the same fixture compiled as a /// thread-instanced library archive, linked into this battery and driven /// through ServicePool (parallel keys, per-key FIFO, cooperative /// cancellation/deadlines, trap isolation, streaming, replay). Null when /// the target cannot carry the archive (cross or non-desktop builds). services_pool: ?*std.Build.Step.Compile, /// The mobile execution battery: the pool fixture's core and service /// archives linked into one static library exporting `nsme_run`, so /// the platform toolchain links a runnable harness for the simulator /// or emulator (scripts/mobile-e2e.sh). Present only for a mobile /// -Dtarget; the Android archive is flattened to plain objects (Zig's /// ELF static-library emission nests archive inputs). mobile_battery: ?std.Build.LazyPath, /// The service-host carrier benchmark: a bytes-echo service compiled /// through the same lane, driven directly through the production /// carrier bindings of BOTH carriers (cold start, round-trip latency, /// queued throughput). service_host_bench: *std.Build.Step.Compile, /// Sidecar-shim conformance (tests/sidecar): every fixture's /// generated mirror validated over its frontend-emitted contract /// (plus the hand-written ground-truth sidecars), and every shim /// fully analyzed and linked against the stub core. sidecar_conformance: *std.Build.Step.Compile, /// The ABI-law suite over a REAL compiled core: the markup /// fixture's archive driven directly through the C ABI bindings /// (boot fence, collect invariant, deterministic re-init, channel /// envelopes, integer classes). external_core_abi_laws: *std.Build.Step.Compile, /// The mixed-return ABI regression: a real compiled core whose update /// returns both bare Model and [Model, Cmd] through the generated facade. mixed_return_abi_laws: *std.Build.Step.Compile, /// Per-fixture contract artifacts for an external core toolchain: /// the effective contract sidecar and its TypeScript facade/profile /// projections, installed by the stage-core-contracts step. core_contracts: []const CoreContract, }; const CoreContract = struct { name: []const u8, sidecar: std.Build.LazyPath, facade: std.Build.LazyPath, profile: std.Build.LazyPath, }; fn tsCoreE2eArtifact( b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, desktop_mod: *std.Build.Module, tooling_mod: *std.Build.Module, ) ?TsCoreE2eArtifacts { const node = b.findProgram(&.{"node"}, &.{}) catch return null; // Both toolchains arrive with one `npm ci` in packages/core: the // frontend's TypeScript compiler and the external core compiler // (unless NATIVE_SDK_CORE_COMPILER points at the pinned release's // command directly). b.build_root.handle.access( b.graph.io, "packages/core/node_modules/@typescript/old", .{}, ) catch return null; if (b.graph.environ_map.get("NATIVE_SDK_CORE_COMPILER") == null) { b.build_root.handle.access( b.graph.io, repositoryScriptcBin(b), .{}, ) catch return null; } // corewire (the contract-sidecar mirror/facade/profile generator), // compiled for the build host: the fixture compiles and the // conformance shims all run it, including under a cross -Dtarget // (the batteries compile for the target; this tool never does). const corewire_mod = b.createModule(.{ .root_source_file = b.path("tools/corewire/main.zig"), .target = b.graph.host, .optimize = optimize, }); const corewire_exe = b.addExecutable(.{ .name = "corewire", .root_module = corewire_mod, .use_llvm = @import("build/app.zig").useLlvmWorkaround(b.graph.host), }); // Each fixture core compiles through the external core compiler at // build time; the battery drives the linked archive through the // generated mirror. The compiled-core symbol set is a fixed-prefix // C ABI, so one process carries ONE archive — each battery below is // its own binary linking exactly its own core. The tests/ts-core // fixtures are single-file cores, staged into their own // compile-source directories. const host_src = b.addWriteFiles(); _ = host_src.addCopyFile(b.path("tests/ts-core/fixture.ts"), "fixture.ts"); const host_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tests/ts-core/fixture.ts", .src_dir = host_src.getDirectory(), .name = "host_fixture_core", .store_capability = true, .relational_capability = true, .credentials_capability = true, // The fixture drives pastBytes to the f64-exact boundary (2^53): // no honest i64 declaration exists there, so the compiled // projection carries the slot as f64. .f64_slots = &.{"Model.pastBytes"}, }); const fixture_mod = host_fixture.module; const persist_src = b.addWriteFiles(); _ = persist_src.addCopyFile(b.path("tests/ts-core/persist_fixture.ts"), "persist_fixture.ts"); const persist_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tests/ts-core/persist_fixture.ts", .src_dir = persist_src.getDirectory(), .name = "persist_fixture_core", .persist_capability = true, }); const persist_mod = module(b, target, optimize, "tests/ts-core/persist_e2e_tests.zig"); persist_mod.addImport("native_sdk", desktop_mod); persist_mod.addImport("ts_persist_core", persist_fixture.module); const markup_src = b.addWriteFiles(); _ = markup_src.addCopyFile(b.path("tests/ts-core/markup_fixture.ts"), "markup_fixture.ts"); const markup_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tests/ts-core/markup_fixture.ts", .src_dir = markup_src.getDirectory(), .name = "markup_core", }); const markup_fixture_mod = markup_fixture.module; const mixed_return_src = b.addWriteFiles(); _ = mixed_return_src.addCopyFile(b.path("tests/ts-core/mixed_return_fixture.ts"), "mixed_return_fixture.ts"); const mixed_return_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tests/ts-core/mixed_return_fixture.ts", .src_dir = mixed_return_src.getDirectory(), .name = "mixed_return_core", }); const e2e_mod = module(b, target, optimize, "tests/ts-core/host_e2e_tests.zig"); e2e_mod.addImport("native_sdk", desktop_mod); e2e_mod.addImport("ts_core_fixture", fixture_mod); // The markup battery: the .native view + automation + record/replay // guarantees over the markup fixture's compiled core. const markup_e2e_mod = module(b, target, optimize, "tests/ts-core/markup_e2e_tests.zig"); markup_e2e_mod.addImport("native_sdk", desktop_mod); markup_e2e_mod.addImport("ts_markup_fixture", markup_fixture_mod); // The rewritten Kanban example's real TypeScript core and self-contained // shipping markup. Its battery drives native multi-file drops through // the generated dropMsg adapter and then moves the created cards. const kanban_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "examples/kanban/src/core.ts", .src_dir = b.path("examples/kanban/src"), .name = "kanban_core", }); const kanban_core_mod = kanban_fixture.module; const kanban_stage = b.addWriteFiles(); const kanban_root = kanban_stage.addCopyFile(b.path("tests/ts-core/kanban_e2e_tests.zig"), "kanban_e2e_tests.zig"); _ = kanban_stage.addCopyFile(b.path("examples/kanban/src/app.native"), "app.native"); const kanban_mod = b.createModule(.{ .root_source_file = kanban_root, .target = target, .optimize = optimize, }); kanban_mod.addImport("native_sdk", desktop_mod); kanban_mod.addImport("ts_kanban_core", kanban_core_mod); // The soundboard-ts example's core and markup, tested as one app: // the test root stages beside a copy of the example's app.native so // the compiled markup engine builds the SHIPPING view over the // core's model. const soundboard_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "examples/soundboard-ts/src/core.ts", .src_dir = b.path("examples/soundboard-ts/src"), .name = "soundboard_core", }); const soundboard_core_mod = soundboard_fixture.module; const soundboard_stage = b.addWriteFiles(); const soundboard_root = soundboard_stage.addCopyFile(b.path("tests/ts-core/soundboard_e2e_tests.zig"), "soundboard_e2e_tests.zig"); _ = soundboard_stage.addCopyFile(b.path("examples/soundboard-ts/src/app.native"), "app.native"); const soundboard_mod = b.createModule(.{ .root_source_file = soundboard_root, .target = target, .optimize = optimize, }); soundboard_mod.addImport("native_sdk", desktop_mod); soundboard_mod.addImport("ts_soundboard_core", soundboard_core_mod); // The system-monitor-ts example's core and markup, tested the same // way — plus the ORIGINAL Zig example's committed sampler captures, // staged as fixtures so both ports parse the same recorded truth. const monitor_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "examples/system-monitor-ts/src/core.ts", .src_dir = b.path("examples/system-monitor-ts/src"), .name = "system_monitor_core", }); const monitor_core_mod = monitor_fixture.module; const monitor_stage = b.addWriteFiles(); const monitor_root = monitor_stage.addCopyFile(b.path("tests/ts-core/system_monitor_e2e_tests.zig"), "system_monitor_e2e_tests.zig"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor-ts/src/app.native"), "app.native"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor-ts/src/windows/settings.native"), "settings.native"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor-ts/src/windows/components/sampling.native"), "components/sampling.native"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor/src/fixtures/sysctl.txt"), "fixtures/sysctl.txt"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor/src/fixtures/ps.txt"), "fixtures/ps.txt"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor/src/fixtures/vm_stat.txt"), "fixtures/vm_stat.txt"); _ = monitor_stage.addCopyFile(b.path("examples/system-monitor/src/fixtures/ps-edge.txt"), "fixtures/ps-edge.txt"); const monitor_mod = b.createModule(.{ .root_source_file = monitor_root, .target = target, .optimize = optimize, }); monitor_mod.addImport("native_sdk", desktop_mod); monitor_mod.addImport("ts_system_monitor_core", monitor_core_mod); // The stock-IDE suite runs the CLI's scaffold + editor-package plumbing // (the tooling module) and shells out to node for the real tsc. const scaffold_ide_mod = module(b, target, optimize, "tests/ts-core/scaffold_ide_e2e_tests.zig"); scaffold_ide_mod.addImport("tooling", tooling_mod); // The Chatbot example's core and markup, tested the same way: // the chat client for an OpenAI-compatible endpoint, driven through // the fake fetch feed (no network) with its shipping markup. const ai_chat_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "examples/chatbot/src/core.ts", .src_dir = b.path("examples/chatbot/src"), .name = "ai_chat_core", }); const ai_chat_core_mod = ai_chat_fixture.module; const ai_chat_stage = b.addWriteFiles(); const ai_chat_root = ai_chat_stage.addCopyFile(b.path("tests/ts-core/ai_chat_e2e_tests.zig"), "ai_chat_e2e_tests.zig"); _ = ai_chat_stage.addCopyFile(b.path("examples/chatbot/src/app.native"), "app.native"); const ai_chat_mod = b.createModule(.{ .root_source_file = ai_chat_root, .target = target, .optimize = optimize, }); ai_chat_mod.addImport("native_sdk", desktop_mod); ai_chat_mod.addImport("ts_ai_chat_core", ai_chat_core_mod); // The service-feed-reader example's core, service child, and shipping // markup, tested as one app: a real buffered Cmd.fetch against a // loopback fixture, the generated typed client into the real child, // and record→replay with neither the service nor the network present. const feed_reader_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "examples/service-feed-reader/src/core.ts", .src_dir = b.path("examples/service-feed-reader/src"), .name = "feed_reader_core", .emit_services = true, }); const feed_reader_service = externalServiceFixture( b, target, optimize, node, corewire_exe, b.path("examples/service-feed-reader/src"), feed_reader_fixture.services_contract.?, "feed_reader_services", ); const feed_reader_stage = b.addWriteFiles(); const feed_reader_root = feed_reader_stage.addCopyFile(b.path("tests/ts-services/feed_reader_e2e_tests.zig"), "feed_reader_e2e_tests.zig"); _ = feed_reader_stage.addCopyFile(b.path("examples/service-feed-reader/src/app.native"), "app.native"); _ = feed_reader_stage.addCopyFile(b.path("examples/service-feed-reader/fixtures/feed.xml"), "fixture_feed.xml"); const feed_reader_mod = b.createModule(.{ .root_source_file = feed_reader_root, .target = target, .optimize = optimize, }); feed_reader_mod.addImport("native_sdk", desktop_mod); feed_reader_mod.addImport("ts_feed_reader_core", feed_reader_fixture.module); feed_reader_mod.addImport("ts_feed_reader_registry", feed_reader_service.registry); const feed_reader_options = b.addOptions(); feed_reader_options.addOptionPath("service_executable", feed_reader_service.executable); feed_reader_mod.addOptions("ts_feed_reader_options", feed_reader_options); // Phase-1 TypeScript services, end to end: the frontend emits BOTH // sidecars from one checked two-class program; corewire derives the // registry/host only from the service sidecar; plain scriptc compiles the // child executable; and the Zig battery drives that executable through // the production ServiceHost + effects/session boundary. const services_fixture = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tests/ts-services/ok/src/core.ts", .src_dir = b.path("tests/ts-services/ok/src"), .name = "services_fixture_core", .emit_services = true, .service_packages = &.{"escape-string-regexp|5.0.0|705f4bb4b92fd3469e264a93f2a2e4b24cf7e663d73a5318abaf29ee72674f6d"}, }); const service_host_fixture = externalServiceFixture( b, target, optimize, node, corewire_exe, b.path("tests/ts-services/ok/src"), services_fixture.services_contract.?, "ts_services_fixture_services", ); const services_e2e_mod = module(b, target, optimize, "tests/ts-services/service_e2e_tests.zig"); services_e2e_mod.addImport("native_sdk", desktop_mod); services_e2e_mod.addImport("ts_services_core", services_fixture.module); services_e2e_mod.addImport("ts_services_registry", service_host_fixture.registry); const service_test_options = b.addOptions(); service_test_options.addOptionPath("service_executable", service_host_fixture.executable); service_test_options.addOption([]const u8, "node_executable", node); services_e2e_mod.addOptions("ts_services_options", service_test_options); // The same fixture against the in-process carrier: the service archive // links into the battery beside the fixture core's archive (distinct // symbol prefixes), and ServicePool drives it through the identical // TsUiApp/Effects seam. const services_pool_mod: ?*std.Build.Module = if (service_host_fixture.archive) |service_archive| pool: { const pool_mod = module(b, target, optimize, "tests/ts-services/service_pool_e2e_tests.zig"); pool_mod.addImport("native_sdk", desktop_mod); pool_mod.addImport("ts_services_core", services_fixture.module); pool_mod.addImport("ts_services_registry", service_host_fixture.registry); pool_mod.link_libc = true; pool_mod.addObjectFile(service_archive); addScriptcArchiveSystemLibs(pool_mod, target); break :pool pool_mod; } else null; // The mobile execution battery: a static library over the same pool // fixture, linked into a runnable harness by the platform toolchain — // the same link pattern embedding apps use for the embed library. The // Android objects are PIC like the embed library's (the harness there // is a bionic executable; a future .so embedding needs it regardless). const battery_target_is_mobile = target.result.os.tag == .ios or target.result.abi.isAndroid(); const mobile_battery: ?std.Build.LazyPath = if (battery_target_is_mobile and service_host_fixture.archive != null) battery: { const battery_mod = b.createModule(.{ .root_source_file = b.path("tests/ts-services/mobile_e2e_battery.zig"), .target = target, .optimize = optimize, .pic = if (target.result.abi.isAndroid()) true else null, }); battery_mod.addImport("native_sdk", desktop_mod); battery_mod.addImport("ts_services_core", services_fixture.module); battery_mod.addImport("ts_services_registry", service_host_fixture.registry); battery_mod.link_libc = true; battery_mod.addObjectFile(service_host_fixture.archive.?); const battery_lib = b.addLibrary(.{ .linkage = .static, .name = "ts-mobile-e2e", .root_module = battery_mod, .use_llvm = @import("build/app.zig").useLlvmWorkaround(target), }); if (target.result.abi.isAndroid()) { // Flatten the nested TypeScript archives (Zig's ELF static-lib // emission stores .a inputs as members) so the NDK link consumes // plain objects — the same normalization the app lane applies. const merge = b.addSystemCommand(&.{node}); merge.addFileArg(b.path("packages/core/scripts/merge_static_archives.mjs")); merge.addArgs(&.{ "--zig", b.graph.zig_exe, "--format", "gnu" }); merge.addArg("--out"); const merged = merge.addOutputFileArg("libts-mobile-e2e.a"); merge.addArg("--in"); merge.addFileArg(battery_lib.getEmittedBin()); break :battery merged; } break :battery battery_lib.getEmittedBin(); } else null; // Service-host carrier benchmark: the same production service lane // (frontend contract -> corewire host/registry -> exact-pinned // plain-scriptc executable) over a bytes-echo operation that returns // its request unchanged, so tools/bench_service_host.zig measures the // carrier — lazy spawn, framing, pipes, worker queueing — and never a // workload. const service_bench_core = externalCoreFixtureModule(b, target, optimize, node, corewire_exe, .{ .entry = "tools/service-host-bench/src/core.ts", .src_dir = b.path("tools/service-host-bench/src"), .name = "service_host_bench_core", .emit_services = true, }); const service_bench_fixture = externalServiceFixture( b, target, optimize, node, corewire_exe, b.path("tools/service-host-bench/src"), service_bench_core.services_contract.?, "service_host_bench_services", ); const service_bench_mod = module(b, target, optimize, "tools/bench_service_host.zig"); service_bench_mod.addImport("native_sdk", desktop_mod); service_bench_mod.addImport("service_registry", service_bench_fixture.registry); const service_bench_options = b.addOptions(); service_bench_options.addOptionPath("service_executable", service_bench_fixture.executable); service_bench_options.addOption(bool, "has_archive", service_bench_fixture.archive != null); service_bench_mod.addOptions("bench_options", service_bench_options); if (service_bench_fixture.archive) |bench_archive| { // The in-process carrier's half of the benchmark: the same echo // service as a linked archive, driven through ServicePool. service_bench_mod.link_libc = true; service_bench_mod.addObjectFile(bench_archive); addScriptcArchiveSystemLibs(service_bench_mod, target); } const service_bench_exe = b.addExecutable(.{ .name = "bench-service-host", .root_module = service_bench_mod, }); // Sidecar-shim conformance: a corewire-generated mirror per corpus // fixture. The markup fixture's sidecar is the committed // hand-written one (independent ground truth for the schema); the // rest are the frontend-emitted contracts from the fixture compiles // above, so corpus mirrors cannot go stale against their cores. const conformance_mod = module(b, target, optimize, "tests/sidecar/conformance_tests.zig"); conformance_mod.addImport("native_sdk", desktop_mod); // The canonical value encoder the envelope and snapshot axes compare // against (the same module the generated shims stage). conformance_mod.addImport("corewire_rt", module(b, target, optimize, "tools/corewire/shim_rt.zig")); conformance_mod.addImport("shim_markup_core", sidecarShimModule(b, target, optimize, corewire_exe, b.path("tests/sidecar/markup_fixture.contract.json"))); // Compile-cost guard: this generated mirror carries 160 realistically // named Msg arms and must need no quota setting in app or test code. conformance_mod.addImport("shim_wide_core", sidecarShimModule(b, target, optimize, corewire_exe, b.path("tests/sidecar/wide_msg_fixture.contract.json"))); // The integer-class fixture: a hand-written sidecar attesting mixed // i64/u64 slot classes, so the suite drives boundary and full-range // integer values through a generated mirror's decode paths. conformance_mod.addImport("shim_integer_core", sidecarShimModule(b, target, optimize, corewire_exe, b.path("tests/sidecar/integer_fixture.contract.json"))); const conformance_fixtures = [_]struct { shim_import: []const u8, contract_name: []const u8, core: ExternalCoreFixture, /// Attested integer slots the compiled projection carries as f64 /// (values that reach the f64-exact boundary have no honest i64 /// declaration on that side). f64_slots: []const []const u8 = &.{}, }{ .{ .shim_import = "shim_host_core", .contract_name = "host-fixture", .core = host_fixture, .f64_slots = &.{"Model.pastBytes"} }, .{ .shim_import = "shim_kanban_core", .contract_name = "kanban", .core = kanban_fixture }, .{ .shim_import = "shim_soundboard_core", .contract_name = "soundboard", .core = soundboard_fixture }, .{ .shim_import = "shim_monitor_core", .contract_name = "system-monitor", .core = monitor_fixture }, .{ .shim_import = "shim_ai_chat_core", .contract_name = "ai-chat", .core = ai_chat_fixture }, }; // The corpus contract artifacts an external core toolchain consumes // (stage-core-contracts): the effective sidecar plus its generated // entry module and compiler profile, per fixture. Every corewire // consumer reads the FRONTEND-emitted contract. var core_contracts: std.ArrayList(CoreContract) = .empty; { const projections = facadeProjections(b, corewire_exe, markup_fixture.contract, &.{}); core_contracts.append(b.allocator, .{ .name = "markup-fixture", .sidecar = projections.sidecar, .facade = projections.facade, .profile = projections.profile, }) catch @panic("OOM"); } for (conformance_fixtures) |fixture| { conformance_mod.addImport(fixture.shim_import, sidecarShimModule(b, target, optimize, corewire_exe, fixture.core.contract)); const projections = facadeProjections(b, corewire_exe, fixture.core.contract, fixture.f64_slots); core_contracts.append(b.allocator, .{ .name = fixture.contract_name, .sidecar = projections.sidecar, .facade = projections.facade, .profile = projections.profile, }) catch @panic("OOM"); } // The ABI-law suite (tests/sidecar/external_core_abi_tests.zig): // the executable half of the conformance story — the markup // fixture's REAL archive driven directly through the C ABI // bindings, beside a FRESH generated mirror (the conformance // binary's mirror links the stub core's exports — one process // cannot carry both symbol sets). The mirror generates from the // archive's OWN co-emitted sidecar, so its boot fence checks the // compile's real build_id against the identity getters. const abi_laws_mod = module(b, target, optimize, "tests/sidecar/external_core_abi_tests.zig"); abi_laws_mod.link_libc = true; abi_laws_mod.addImport("corewire_rt", module(b, target, optimize, "tools/corewire/shim_rt.zig")); abi_laws_mod.addImport("core_abi", module(b, target, optimize, "tools/corewire/core_abi.zig")); abi_laws_mod.addImport("shim_core", sidecarShimModule(b, target, optimize, corewire_exe, markup_fixture.sidecar)); abi_laws_mod.addObjectFile(markup_fixture.archive); addScriptcArchiveSystemLibs(abi_laws_mod, target); const mixed_return_abi_mod = module(b, target, optimize, "tests/sidecar/mixed_return_abi_tests.zig"); mixed_return_abi_mod.addImport("mixed_return_core", mixed_return_fixture.module); return .{ .host = filteredTestArtifact(b, e2e_mod, "ts-core-e2e-tests", &.{}), .persist = filteredTestArtifact(b, persist_mod, "ts-persist-e2e-tests", &.{}), .markup = filteredTestArtifact(b, markup_e2e_mod, "ts-markup-e2e-tests", &.{}), .kanban = filteredTestArtifact(b, kanban_mod, "ts-kanban-e2e-tests", &.{}), .soundboard = filteredTestArtifact(b, soundboard_mod, "ts-soundboard-e2e-tests", &.{}), .system_monitor = filteredTestArtifact(b, monitor_mod, "ts-system-monitor-e2e-tests", &.{}), .scaffold_ide = filteredTestArtifact(b, scaffold_ide_mod, "ts-scaffold-ide-e2e-tests", &.{}), .ai_chat = filteredTestArtifact(b, ai_chat_mod, "ts-ai-chat-e2e-tests", &.{}), .feed_reader = filteredTestArtifact(b, feed_reader_mod, "ts-feed-reader-e2e-tests", &.{}), .services = filteredTestArtifact(b, services_e2e_mod, "ts-services-e2e-tests", &.{}), .services_pool = if (services_pool_mod) |pool_mod| filteredTestArtifact(b, pool_mod, "ts-services-pool-e2e-tests", &.{}) else null, .mobile_battery = mobile_battery, .service_host_bench = service_bench_exe, .sidecar_conformance = filteredTestArtifact(b, conformance_mod, "sidecar-conformance-tests", &.{}), .external_core_abi_laws = filteredTestArtifact(b, abi_laws_mod, "external-core-abi-tests", &.{}), .mixed_return_abi_laws = filteredTestArtifact(b, mixed_return_abi_mod, "mixed-return-abi-tests", &.{}), .core_contracts = core_contracts.toOwnedSlice(b.allocator) catch @panic("OOM"), }; } /// System import libraries scriptc's compiled-archive runtime reaches on /// Windows targets — core and service archives alike (Winsock, adapter /// enumeration, and crypto-backed randomness). No-op elsewhere; the /// archives' other dependencies are libc's. The app lane's twin is the /// Windows platform block in build/app.zig. fn addScriptcArchiveSystemLibs(mod: *std.Build.Module, target: std.Build.ResolvedTarget) void { if (target.result.os.tag != .windows) return; mod.linkSystemLibrary("ws2_32", .{}); mod.linkSystemLibrary("iphlpapi", .{}); mod.linkSystemLibrary("advapi32", .{}); } /// Attach ScriptC's explicit-Linux-target glibc-floor teaching to an actual /// compile step. A target can match the host triple and still need the teaching /// because Zig's explicitly spelled `-gnu` target uses its default glibc floor. /// The root graph constructs fixture lanes even for unrelated selections such /// as the release pipeline's cross-compiled `zig build cli`; making the /// teaching a dependency preserves those CLI-only builds while still refusing /// the unsupported target before a selected ScriptC compile does any work. fn addScriptcGlibcFloorTeaching(b: *std.Build, target: std.Build.ResolvedTarget, step: *std.Build.Step) void { const app_build = @import("build/app.zig"); if (!app_build.linuxGlibcSpellingHitsDefaultFloor(target)) return; step.dependOn(&b.addFail(app_build.scriptcLinuxGlibcSpellingTeaching(b, target)).step); } const ExternalServiceFixture = struct { executable: std.Build.LazyPath, /// The in-process carrier's library archive (thread-instanced, /// runtime-localized), compiled from the same staged tree. Present /// wherever the pinned compiler's localized-archive matrix covers the /// pairing (native Linux, cross-Linux x86_64/aarch64, Windows x86_64, /// or macOS from a macOS host — see build/app.zig /// serviceArchiveSupported); null elsewhere, and for explicitly spelled /// linux-gnu targets below the glibc 2.36 runtime floor. archive: ?std.Build.LazyPath, registry: *std.Build.Module, }; /// Compile one fixture's service class through the production phase-1 lane: /// service sidecar -> corewire host/registry -> ordinary source stage (plus /// the pinned compiler's tagged-throw compatibility lowering) -> exact pinned /// scriptc outputs (the child executable, plus the in-process library archive /// wherever the compiler's localized-archive matrix covers the host/target /// pairing). No author source is re-read for dispatch facts after the sidecar /// emission. fn externalServiceFixture( b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, node: []const u8, corewire_exe: *std.Build.Step.Compile, src_dir: std.Build.LazyPath, contract: std.Build.LazyPath, name: []const u8, ) ExternalServiceFixture { const app_build = @import("build/app.zig"); const emit_archive = app_build.serviceArchiveSupported(b.graph.host.result, target); const project = b.addRunArtifact(corewire_exe); project.addArg("--services-sidecar"); project.addFileArg(contract); project.addArg("--service-host-main"); const host_main = project.addOutputFileArg("service_host_main.ts"); project.addArg("--service-registry"); const registry_source = project.addOutputFileArg("services.zig"); project.addArg("--service-inproc-main"); const inproc_main = project.addOutputFileArg("service_inproc_main.ts"); project.addArg("--service-inproc-profile"); const inproc_profile = project.addOutputFileArg("service_profile.json"); const stage = b.addSystemCommand(&.{node}); stage.addFileArg(b.path("packages/core/scripts/stage_external_services.mjs")); stage.addArg("--src"); stage.addDirectoryArg(src_dir); stage.addArg("--host-main"); stage.addFileArg(host_main); stage.addArg("--inproc-main"); stage.addFileArg(inproc_main); stage.addArg("--inproc-profile"); stage.addFileArg(inproc_profile); stage.addArg("--contract"); stage.addFileArg(contract); stage.addArg("--out"); const stage_dir = stage.addOutputDirectoryArg("services-stage"); // A LazyPath directory records only its producer dependency; source-tree // content does not otherwise participate in Run's cache key. Service // files are discovered recursively by the staging script, so rerun this // cheap copy step whenever the lane is requested rather than risk a stale // compiled host after an author edits a nested service module. stage.has_side_effects = true; const compile = b.addSystemCommand(&.{node}); compile.addFileArg(b.path("packages/core/scripts/run_external_service_compiler.mjs")); compile.addFileInput(b.path("packages/core/scripts/compiler_command.mjs")); compile.addArg("--stage"); compile.addDirectoryArg(stage_dir); compile.addArg("--manifest"); compile.addFileArg(b.path("packages/core/package.json")); compile.addArg("--contract"); compile.addFileArg(contract); // Mobile targets are archive-only (no child process exists there): the // driver refuses --out-exe, so the child-carrier batteries get a stub // path they never execute for those targets. const mobile_target = target.result.os.tag == .ios or target.result.abi.isAndroid(); const executable: std.Build.LazyPath = if (mobile_target) b.addWriteFiles().add(b.fmt("{s}-unavailable-on-mobile", .{name}), "") else exe: { compile.addArg("--out-exe"); const suffix = if (target.result.os.tag == .windows) ".exe" else ""; break :exe compile.addOutputFileArg(b.fmt("{s}{s}", .{ name, suffix })); }; const archive: ?std.Build.LazyPath = if (emit_archive) archive: { compile.addArg("--out-archive"); break :archive compile.addOutputFileArg(b.fmt("lib{s}.a", .{name})); } else null; const host_platform = b.fmt("{t}-{t}-{t}", .{ b.graph.host.result.cpu.arch, b.graph.host.result.os.tag, b.graph.host.result.abi }); compile.addArgs(&.{ "--host-platform", host_platform, "--target-platform", app_build.scriptcPlatformTriple(b, target), "--zig-exe", b.graph.zig_exe }); app_build.addScriptcAndroidNdk(b, compile, target); addScriptcGlibcFloorTeaching(b, target, &compile.step); if (b.graph.environ_map.get("NATIVE_SDK_CORE_COMPILER")) |override| { compile.addArgs(&.{ "--compiler", override }); } else { compile.addArgs(&.{ "--compiler", repositoryScriptcBin(b) }); } return .{ .executable = executable, .archive = archive, .registry = b.createModule(.{ .root_source_file = registry_source, .target = target, .optimize = optimize, }), }; } const FacadeProjections = struct { sidecar: std.Build.LazyPath, facade: std.Build.LazyPath, profile: std.Build.LazyPath, }; /// A sidecar's compiled-core projections: the effective contract after /// caller-stated demotions, the generated entry module (core_facade.ts), and /// the compiler profile that builds it (core_profile.json), emitted by one /// corewire invocation so no staged sibling can describe a different layout. fn facadeProjections( b: *std.Build, corewire_exe: *std.Build.Step.Compile, sidecar_json: std.Build.LazyPath, f64_slots: []const []const u8, ) FacadeProjections { const generate = b.addRunArtifact(corewire_exe); generate.addArg("--sidecar"); generate.addFileArg(sidecar_json); generate.addArg("--facade"); const facade = generate.addOutputFileArg("core_facade.ts"); generate.addArg("--profile"); const profile = generate.addOutputFileArg("core_profile.json"); generate.addArg("--effective-sidecar"); const sidecar = generate.addOutputFileArg("core.contract.json"); for (f64_slots) |slot| { generate.addArg("--f64-slot"); generate.addArg(slot); } return .{ .sidecar = sidecar, .facade = facade, .profile = profile }; } /// One fixture's generated-mirror module: run corewire over the /// sidecar, stage the emitted core_shim.zig as core.zig beside its two /// staged runtime files (shim_rt.zig, core_abi.zig) — the same staging /// shape the transpiler lane gives its emitted core and rt.zig. fn sidecarShimModule( b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, corewire_exe: *std.Build.Step.Compile, sidecar_json: std.Build.LazyPath, ) *std.Build.Module { const generate = b.addRunArtifact(corewire_exe); generate.addArg("--sidecar"); generate.addFileArg(sidecar_json); generate.addArg("--out"); const generated = generate.addOutputFileArg("core_shim.zig"); const staged = b.addWriteFiles(); const shim_root = staged.addCopyFile(generated, "core.zig"); _ = staged.addCopyFile(b.path("tools/corewire/shim_rt.zig"), "shim_rt.zig"); _ = staged.addCopyFile(b.path("tools/corewire/core_abi.zig"), "core_abi.zig"); return b.createModule(.{ .root_source_file = shim_root, .target = target, .optimize = optimize, }); } /// One externally compiled TS fixture core: the corewire-generated /// mirror over the fixture's compiled archive, staged as one module in /// the app lane's exact shape (core.zig + its shim runtime), with the /// archive linked behind it — plus the frontend-emitted contract /// sidecar (the document corewire's projections consume) and the /// archive's own co-emitted sidecar. const ExternalCoreFixture = struct { module: *std.Build.Module, /// The frontend-emitted contract (stage-core-contracts, the /// conformance shims). contract: std.Build.LazyPath, /// The compiled-core archive (already linked into `module`; the /// ABI-law suite links it directly). archive: std.Build.LazyPath, /// The archive's OWN co-emitted contract sidecar — the document its /// mirror must generate from (the boot identity fence pairs them). sidecar: std.Build.LazyPath, /// Present only for a two-class fixture that asks the frontend to emit the /// service registry sidecar from the same checked program. services_contract: ?std.Build.LazyPath, }; const ExternalCoreFixtureSpec = struct { /// The entry module, build-root-relative (the contract's stated /// entry spelling). entry: []const u8, /// The compile-source directory holding the core's whole import /// graph (an example's src/, or a staged single-file fixture dir). src_dir: std.Build.LazyPath, /// The archive's symbol-safe stem (`lib.a`). name: []const u8, /// The fixture stands in for an app whose manifest declares Tier 1. persist_capability: bool = false, /// The fixture stands in for an app whose manifest declares Tier 2. store_capability: bool = false, /// The fixture stands in for an app whose manifest declares Tier 3. relational_capability: bool = false, /// The fixture stands in for an app whose manifest declares the Tier-4 /// build capability and its matching core-effect permission. credentials_capability: bool = false, /// Attested integer slots the compiled projection carries as f64 /// (values that reach the f64-exact boundary have no honest i64 /// declaration on that side) — corewire's --f64-slot demotions, /// applied to the compile profile and every downstream projection. f64_slots: []const []const u8 = &.{}, emit_services: bool = false, service_packages: []const []const u8 = &.{}, }; /// Compile one TS fixture core through the external core compiler at /// build time — the same pipeline the app lane runs (build/app.zig /// tsCoreStage): frontend check + contract, corewire facade/profile /// projection, compile-tree staging, the exact-pinned compile, and the /// mirror generated from the co-emitted sidecar. fn externalCoreFixtureModule( b: *std.Build, target: std.Build.ResolvedTarget, optimize: std.builtin.OptimizeMode, node: []const u8, corewire_exe: *std.Build.Step.Compile, spec: ExternalCoreFixtureSpec, ) ExternalCoreFixture { const app_build = @import("build/app.zig"); // The frontend, in check-only mode: the subset checker gates the // compile, and the contract sidecar states the build-root-relative // entry spelling. The frontend reads its own sources, the SDK // modules, and the core's WHOLE import graph at run time; declare // them all so edits re-check the fixture (every sibling .ts of the // entry is a superset of the reachable imports: over-approximation // only re-runs the check, never misses a stale input). const check = b.addSystemCommand(&.{node}); check.addFileArg(b.path("packages/core/src/cli.ts")); check.addFileArg(b.path(spec.entry)); check.addArg("--contract"); const contract_raw = check.addOutputFileArg("core.contract.json"); const contract = app_build.stabilizeGeneratedFile(b, contract_raw, "core.contract.json", false); check.addArg("--contract-entry"); check.addArg(spec.entry); const services_contract: ?std.Build.LazyPath = if (spec.emit_services) services: { check.addArg("--services-contract"); const raw = check.addOutputFileArg("services.contract.json"); break :services app_build.stabilizeGeneratedFile(b, raw, "services.contract.json", false); } else null; for (spec.service_packages) |package_entry| check.addArgs(&.{ "--service-package", package_entry }); const services_client: ?std.Build.LazyPath = if (services_contract) |service_contract| client: { const service_project = b.addRunArtifact(corewire_exe); service_project.addArg("--services-sidecar"); service_project.addFileArg(service_contract); service_project.addArg("--service-client"); const client_raw = service_project.addOutputFileArg("services.gen.ts"); break :client app_build.stabilizeGeneratedFile(b, client_raw, "services.gen.ts", false); } else null; if (spec.persist_capability) check.addArgs(&.{ "--capability", "persist" }); if (spec.store_capability) check.addArgs(&.{ "--capability", "store" }); if (spec.relational_capability) check.addArgs(&.{ "--capability", "sqlite" }); if (spec.credentials_capability) check.addArgs(&.{ "--capability", "credentials", "--permission", "credentials" }); if (std.mem.eql(u8, spec.entry, "tests/ts-core/fixture.ts")) check.addArgs(&.{ "--permission", "filesystem" }); tsCoreAddDirInputs(b, check, "packages/core/sdk"); tsCoreAddDirInputs(b, check, std.fs.path.dirname(spec.entry) orelse "."); const frontend_sources = [_][]const u8{ "checker.ts", "cli.ts", "contract.ts", "diagnostics.ts", "frontend.ts", "infer.ts", "modules.ts", "service_contract.ts", "sqlite_codegen.ts", "sqlite_cli.ts", "sqlite_runtime_policy.ts", "typed_ast.ts", "types.ts", "wyhash.ts", }; for (frontend_sources) |source| { check.addFileInput(b.path(b.fmt("packages/core/src/{s}", .{source}))); } // Service contracts echo the exact scriptc pin read from this manifest. // Declare that runtime read explicitly so a compiler bump invalidates a // warm build cache before the compile lane checks the echoed version. if (spec.emit_services) check.addFileInput(b.path("packages/core/package.json")); // corewire projects the generated compile entry and its profile in // one invocation, so the profile's entry spelling and the facade // file can never skew. const project = b.addRunArtifact(corewire_exe); project.addArg("--sidecar"); project.addFileArg(contract); project.addArg("--facade"); const facade = project.addOutputFileArg("core_facade.ts"); project.addArg("--profile"); const profile = project.addOutputFileArg("core_profile.json"); for (spec.f64_slots) |slot| { project.addArg("--f64-slot"); project.addArg(slot); } // The compile stage: author sources + staged SDK + static surface + // generated entry/profile, one scratch tree. const stage_run = b.addSystemCommand(&.{node}); stage_run.addFileArg(b.path("packages/core/scripts/stage_external_core.mjs")); stage_run.addArg("--src"); stage_run.addDirectoryArg(spec.src_dir); stage_run.addArg("--sdk"); stage_run.addDirectoryArg(b.path("packages/core/sdk")); stage_run.addArg("--static"); stage_run.addFileArg(b.path("packages/core/compile-surface/core.ts")); stage_run.addArg("--facade"); stage_run.addFileArg(facade); stage_run.addArg("--profile"); stage_run.addFileArg(profile); if (services_client) |client| { stage_run.addArg("--services-client"); stage_run.addFileArg(client); } tsCoreAddCoreDirInputs(b, stage_run, std.fs.path.dirname(spec.entry) orelse "."); app_build.addStagedCoreSdkInputs(b, b, stage_run); stage_run.addArg("--out"); const stage_dir = stage_run.addOutputDirectoryArg("stage"); // The external compile: driver-verified against the SDK's exact // pin, archive normalized, the co-emitted sidecar captured. const compile = b.addSystemCommand(&.{node}); compile.addFileArg(b.path("packages/core/scripts/run_external_core_compiler.mjs")); compile.addFileInput(b.path("packages/core/scripts/compiler_command.mjs")); compile.addArg("--stage"); compile.addDirectoryArg(stage_dir); compile.addArgs(&.{ "--name", spec.name }); compile.addArg("--manifest"); compile.addFileArg(b.path("packages/core/package.json")); compile.addArg("--frontend-sidecar"); compile.addFileArg(contract); compile.addArg("--out-archive"); const archive = compile.addOutputFileArg(b.fmt("lib{s}.a", .{spec.name})); compile.addArg("--out-sidecar"); const compiled_sidecar = compile.addOutputFileArg("core.contract.json"); compile.addArgs(&.{ "--host-platform", b.fmt("{t}-{t}-{t}", .{ b.graph.host.result.cpu.arch, b.graph.host.result.os.tag, b.graph.host.result.abi }), "--target-platform", app_build.scriptcPlatformTriple(b, target), "--zig-exe", b.graph.zig_exe, }); app_build.addScriptcAndroidNdk(b, compile, target); addScriptcGlibcFloorTeaching(b, target, &compile.step); if (b.graph.environ_map.get("NATIVE_SDK_CORE_COMPILER")) |override| { // The development override: point at any toolchain command; the // driver still refuses a release other than the SDK's pin. compile.addArgs(&.{ "--compiler", override }); } else { compile.addArgs(&.{ "--compiler", repositoryScriptcBin(b) }); } // The mirror, generated from the archive's OWN co-emitted contract, // staged in the app lane's module shape with the archive linked // behind it (the compiler's runtime needs libc). const mirror = b.addRunArtifact(corewire_exe); mirror.addArg("--sidecar"); mirror.addFileArg(compiled_sidecar); mirror.addArg("--out"); const shim = mirror.addOutputFileArg("core_shim.zig"); const staged = b.addWriteFiles(); const shim_root = staged.addCopyFile(shim, "core.zig"); _ = staged.addCopyFile(b.path("tools/corewire/shim_rt.zig"), "shim_rt.zig"); _ = staged.addCopyFile(b.path("tools/corewire/core_abi.zig"), "core_abi.zig"); const mod = b.createModule(.{ .root_source_file = shim_root, .target = target, .optimize = optimize, }); mod.link_libc = true; mod.addObjectFile(archive); addScriptcArchiveSystemLibs(mod, target); return .{ .module = mod, .contract = contract, .archive = archive, .sidecar = compiled_sidecar, .services_contract = services_contract, }; } /// Declare every .ts file under `dir_path` (relative to the build root) as a /// file input of the transpile step — the recursive multi-file staleness set. /// Service modules live below src/services/, so a flat scan would let their /// generated contract stay stale in a warm fixture build. fn tsCoreAddDirInputs(b: *std.Build, transpile: *std.Build.Step.Run, dir_path: []const u8) void { var dir = b.build_root.handle.openDir(b.graph.io, dir_path, .{ .iterate = true }) catch return; defer dir.close(b.graph.io); var walker = dir.walk(b.allocator) catch return; defer walker.deinit(); while (walker.next(b.graph.io) catch null) |entry| { if (entry.kind != .file) continue; if (!std.mem.endsWith(u8, entry.basename, ".ts")) continue; transpile.addFileInput(b.path(b.fmt("{s}/{s}", .{ dir_path, entry.path }))); } } /// The source set stage_external_core.mjs copies: every ordinary `.ts` file, /// excluding the independent services compiler class and declaration files. fn tsCoreAddCoreDirInputs(b: *std.Build, stage: *std.Build.Step.Run, dir_path: []const u8) void { var dir = b.build_root.handle.openDir(b.graph.io, dir_path, .{ .iterate = true }) catch return; defer dir.close(b.graph.io); var walker = dir.walk(b.allocator) catch return; defer walker.deinit(); while (walker.next(b.graph.io) catch null) |entry| { if (entry.kind != .file or !std.mem.endsWith(u8, entry.basename, ".ts") or std.mem.endsWith(u8, entry.basename, ".d.ts")) continue; const normalized = b.dupe(entry.path); for (normalized) |*char| if (char.* == '\\') { char.* = '/'; }; if (std.mem.startsWith(u8, normalized, "services/")) continue; stage.addFileInput(b.path(b.fmt("{s}/{s}", .{ dir_path, entry.path }))); } } fn filteredTestArtifact(b: *std.Build, mod: *std.Build.Module, name: []const u8, filters: []const []const u8) *std.Build.Step.Compile { // use_llvm: Zig 0.16.0's self-hosted x86_64 backend miscompiles the // SysV C ABI for f32-heavy signatures (native_sdk_app_viewport); see // useLlvmWorkaround in build/app.zig for the full story and repro. const use_llvm = if (mod.resolved_target) |target| @import("build/app.zig").useLlvmWorkaround(target) else null; return b.addTest(.{ .name = name, .root_module = mod, .filters = filters, .use_llvm = use_llvm }); } /// One slice of the framework test suite, selected by test-name filters. /// The framework module compiles into a single test binary whose ~580 /// tests run serially in one process, which made that binary the longest /// step in `zig build test` by a wide margin — the rest of the suite is /// dozens of binaries that each finish in well under a second. The /// aggregate `test` step therefore runs the framework module as one /// filtered binary per family below, so the build runner executes the /// families concurrently and the suite finishes with the slowest family /// instead of the sum of all of them. `zig build test-desktop` still runs /// the unfiltered binary when a single process is easier to debug, and /// each family has its own `test-desktop-` step. const DesktopTestShard = struct { /// Suffix for the artifact name and the `test-desktop-` step. name: []const u8, description: []const u8, /// A test file's namespace is routed to the first shard in /// `desktop_test_shard_specs` with a matching prefix, so earlier /// entries carve their family out of the later, broader ones and /// the final empty prefix collects every namespace left over. prefixes: []const []const u8, }; const desktop_test_shard_specs = [_]DesktopTestShard{ .{ .name = "canvas-widget", .description = "Run framework canvas widget tests", .prefixes = &.{"runtime.canvas_widget"}, }, .{ .name = "canvas-frame", .description = "Run framework canvas frame, budget, image, and font tests", .prefixes = &.{"runtime.canvas"}, }, .{ .name = "ui-shell", .description = "Run framework UI app and shell layout tests", .prefixes = &.{ "runtime.ui_app", "runtime.shell" }, }, .{ .name = "runtime-core", .description = "Run framework runtime core, effects, session, and bridge tests", .prefixes = &.{"runtime."}, }, .{ .name = "platform", .description = "Run framework platform, automation, embed, and remaining tests", .prefixes = &.{""}, }, }; /// A framework source file that declares top-level tests, described by /// the dotted namespace the test runner uses in fully-qualified test /// names: tests in src/runtime/effects_tests.zig are named /// "runtime.effects_tests.test.". const DesktopTestFile = struct { namespace: []const u8, /// Names of the file's `test ""` declarations, in source order. /// Unnamed `test { ... }` blocks are not listed: the test runner /// exempts them from filtering, so they run in every shard. That is /// deliberate — those blocks are the aggregators whose references /// make the compiler discover the named tests in the first place, /// and their bodies are empty at run time. named_tests: []const []const u8, }; /// Test binaries for the framework module, one per shard spec. Filters /// are derived from the source tree at configure time: every framework /// file with a top-level `test` declaration contributes its namespace as /// a filter ("runtime.effects_tests.test") to exactly one shard, so a /// new test file is picked up — and routed to a shard by prefix — the /// moment it exists, and a file can never silently fall out of /// `zig build test` because a hand-kept list went stale. fn desktopTestShardArtifacts(b: *std.Build, mod: *std.Build.Module) [desktop_test_shard_specs.len]*std.Build.Step.Compile { const files = desktopTestFiles(b); var filters: [desktop_test_shard_specs.len]std.ArrayList([]const u8) = @splat(.empty); for (files) |file| { const shard = desktopTestShardIndex(file.namespace); if (std.mem.eql(u8, file.namespace, "root")) { // Filters match anywhere in a fully-qualified name, and the // module root's namespace ("root") is a dotted suffix of // every other root.zig namespace ("runtime.root", // "platform.root", ...), so a bare "root.test" filter would // pull those files' tests into this shard as well. Filter // the module root by exact test name instead. for (file.named_tests) |test_name| { filters[shard].append(b.allocator, b.fmt("root.test.{s}", .{test_name})) catch @panic("OOM"); } continue; } filters[shard].append(b.allocator, b.fmt("{s}.test", .{file.namespace})) catch @panic("OOM"); // The same suffix hazard across two shards would run the longer // file's tests twice per `zig build test`. Refuse the layout up // front so the collision is resolved when the file is added, not // when a duplicated test starts flaking. for (files) |other| { if (desktopTestShardIndex(other.namespace) == shard) continue; if (std.mem.endsWith(u8, other.namespace, b.fmt(".{s}", .{file.namespace}))) { std.debug.panic( "framework test shards: namespace {s} is a dotted suffix of {s} in another shard; their name filters would overlap. Adjust desktop_test_shard_specs so both land in one shard.", .{ file.namespace, other.namespace }, ); } } } var artifacts: [desktop_test_shard_specs.len]*std.Build.Step.Compile = undefined; for (&artifacts, desktop_test_shard_specs, filters) |*artifact, spec, shard_filters| { artifact.* = filteredTestArtifact(b, mod, b.fmt("desktop-{s}-tests", .{spec.name}), shard_filters.items); } return artifacts; } fn desktopTestShardIndex(namespace: []const u8) usize { for (desktop_test_shard_specs, 0..) |spec, index| { for (spec.prefixes) |prefix| { if (std.mem.startsWith(u8, namespace, prefix)) return index; } } unreachable; // the final shard's empty prefix matches every namespace } /// Scans the framework source tree for files declaring top-level tests, /// sorted by namespace so the generated filters — and therefore the /// shard binaries' cache manifests — do not churn with directory /// iteration order. src/primitives and src/tooling are separate modules /// with their own test binaries; everything else under src/ belongs to /// the framework module rooted at src/root.zig. fn desktopTestFiles(b: *std.Build) []const DesktopTestFile { const gpa = b.allocator; const io = b.graph.io; var files: std.ArrayList(DesktopTestFile) = .empty; var src_dir = b.build_root.handle.openDir(io, "src", .{ .iterate = true }) catch |err| std.debug.panic("framework test shards: unable to open src/: {s}", .{@errorName(err)}); defer src_dir.close(io); var walker = src_dir.walk(gpa) catch @panic("OOM"); defer walker.deinit(); while (walker.next(io) catch |err| std.debug.panic("framework test shards: unable to walk src/: {s}", .{@errorName(err)})) |entry| { if (entry.kind == .directory) { if (entry.depth() == 1 and (std.mem.eql(u8, entry.basename, "primitives") or std.mem.eql(u8, entry.basename, "tooling"))) { walker.leave(io); } continue; } if (entry.kind != .file or !std.mem.endsWith(u8, entry.basename, ".zig")) continue; const source = entry.dir.readFileAlloc(io, entry.basename, gpa, .limited(16 * 1024 * 1024)) catch |err| std.debug.panic("framework test shards: unable to read src/{s}: {s}", .{ entry.path, @errorName(err) }); var named_tests: std.ArrayList([]const u8) = .empty; var has_tests = false; var lines = std.mem.splitScalar(u8, source, '\n'); while (lines.next()) |line| { // Only column-zero declarations: a test nested inside a // container would carry that container's namespace, which // these filters would not match. if (!std.mem.startsWith(u8, line, "test ")) continue; has_tests = true; const rest = line["test ".len..]; if (rest.len > 0 and rest[0] == '"') { if (std.mem.indexOfScalar(u8, rest[1..], '"')) |end| { named_tests.append(gpa, rest[1 .. 1 + end]) catch @panic("OOM"); } } } if (!has_tests) continue; const namespace = gpa.dupe(u8, entry.path[0 .. entry.path.len - ".zig".len]) catch @panic("OOM"); std.mem.replaceScalar(u8, namespace, std.fs.path.sep, '.'); files.append(gpa, .{ .namespace = namespace, .named_tests = named_tests.items }) catch @panic("OOM"); } const sorted = files.items; std.mem.sort(DesktopTestFile, sorted, {}, struct { fn lessThan(_: void, lhs: DesktopTestFile, rhs: DesktopTestFile) bool { return std.mem.lessThan(u8, lhs.namespace, rhs.namespace); } }.lessThan); return sorted; } fn addTestStep(b: *std.Build, name: []const u8, description: []const u8, artifact: *std.Build.Step.Compile) void { const step = b.step(name, description); step.dependOn(&b.addRunArtifact(artifact).step); } /// How an example's build is driven. `managed` examples carry only /// app.zon + src (+ assets): the `native` CLI synthesizes their build /// graph, so their suites run through the CLI verbs — exactly what a user /// gets from `native init`. `owned` examples keep a build.zig of their own /// (extra steps or flags the generated graph does not provide) and are /// driven through plain in-dir `zig build`. const ExampleBuildShape = enum { managed, owned }; fn addExampleTestStep(b: *std.Build, cli_exe: *std.Build.Step.Compile, group: *std.Build.Step, name: []const u8, description: []const u8, example_path: []const u8, shape: ExampleBuildShape) *std.Build.Step { const run = switch (shape) { .owned => b.addSystemCommand(&.{ "zig", "build", "test", "-Dplatform=null" }), .managed => managedExampleRun(b, cli_exe, &.{ "test", "-Dplatform=null" }), }; run.setCwd(b.path(example_path)); // Every example suite must actually run every time: the child build owns // its own caching, and this outer step's argv never changes when example // or framework sources do, so letting the step cache would skip real // tests. But a side-effect run that also inherits stdio holds the build // runner's global stderr lock for the child's entire lifetime, which // executes the example suites strictly one at a time. Capturing both // streams keeps the always-run semantics while releasing that lock, so // independent examples run concurrently (bounded by the runner's job // pool, one worker per CPU — cold child builds peak well under 1 GB // each, so a machine-wide pool of them fits in memory). On failure the // captured stderr is reported under this step's name, so a failing // example still names itself. run.has_side_effects = true; _ = run.captureStdOut(.{}); _ = run.captureStdErr(.{}); // Concurrent children all spawn the same binary, so carry the step name // into the run: a failure line then reads "test-example- failure" // instead of nineteen indistinguishable "run exe native" entries. run.setName(name); const step = b.step(name, description); step.dependOn(&run.step); group.dependOn(&run.step); return step; } /// Run a `native` CLI verb (argv tail) against a managed example. The CLI /// artifact runs from the build cache, where its executable location does /// not reveal the framework checkout, so NATIVE_SDK_PATH pins the generated /// graph's framework dependency to this repository. fn managedExampleRun(b: *std.Build, cli_exe: *std.Build.Step.Compile, argv_tail: []const []const u8) *std.Build.Step.Run { const run = b.addRunArtifact(cli_exe); run.addArgs(argv_tail); run.setEnvironmentVariable("NATIVE_SDK_PATH", b.pathFromRoot(".")); return run; } fn addLayoutCheckStep(b: *std.Build, group: *std.Build.Step, name: []const u8, description: []const u8, paths: []const []const u8) void { const step = b.step(name, description); for (paths) |path| { const check = b.addSystemCommand(&.{ "test", "-f", path }); step.dependOn(&check.step); group.dependOn(&check.step); } } const FileContainsCheck = struct { path: []const u8, pattern: []const u8, }; fn addFileContainsCheckStep(b: *std.Build, checker: *std.Build.Step.Compile, group: *std.Build.Step, name: []const u8, description: []const u8, checks: []const FileContainsCheck) void { const step = b.step(name, description); for (checks) |check_value| { const check = b.addRunArtifact(checker); // The checked paths are relative to this build script. Run steps // otherwise inherit the invoking process's cwd, and `zig build test` // is also invoked from zero-config app directories that resolve up // to this build.zig (scaffolded workspaces, examples) — from there // the relative paths would point into the app, not the repo. check.setCwd(b.path(".")); check.addArg(check_value.path); check.addArg(check_value.pattern); step.dependOn(&check.step); group.dependOn(&check.step); } } fn packageSuffix(target: PackageTarget) []const u8 { return switch (target) { .macos => ".app", .windows, .linux, .ios, .android => "", }; } fn packageVersion(b: *std.Build) []const u8 { var file = std.Io.Dir.cwd().openFile(b.graph.io, "build.zig.zon", .{}) catch return "0.1.0"; defer file.close(b.graph.io); var buffer: [4096]u8 = undefined; const len = file.readPositionalAll(b.graph.io, &buffer, 0) catch return "0.1.0"; const bytes = buffer[0..len]; const marker = ".version = \""; const start = std.mem.indexOf(u8, bytes, marker) orelse return "0.1.0"; const value_start = start + marker.len; const value_end = std.mem.indexOfScalarPos(u8, bytes, value_start, '"') orelse return "0.1.0"; return b.allocator.dupe(u8, bytes[value_start..value_end]) catch return "0.1.0"; } fn defaultCefDir(platform: PlatformOption, configured: []const u8) []const u8 { if (!std.mem.eql(u8, configured, web_engine_tool.default_cef_dir)) return configured; return switch (platform) { .linux => "third_party/cef/linux", .windows => "third_party/cef/windows", else => configured, }; } /// CEF dir for a sub-build whose cwd is an example directory (two levels /// below the repo root). Relative paths are resolved by the example's /// build against its own root, so the repo-root-relative default must be /// rebased; absolute overrides pass through, but the example build.zigs /// reject them (b.path panics), so callers should prefer relative paths. fn exampleCefDir(b: *std.Build, cef_dir: []const u8) []const u8 { if (std.fs.path.isAbsolute(cef_dir)) return cef_dir; return b.fmt("../../{s}", .{cef_dir}); } fn webEngineFromBuildOption(option: WebEngineOption) web_engine_tool.Engine { return switch (option) { .system => .system, .chromium => .chromium, }; } fn buildWebEngineFromResolved(engine: web_engine_tool.Engine) WebEngineOption { return switch (engine) { .system => .system, .chromium => .chromium, }; }