package app import ( "bytes" "os" "path/filepath" "strings" "testing" "time" "gitea.westgate.pw/ShadowsOverWestgate/sow-tools/internal/pipeline" ) func TestRunBuildTopPackageUsesCachedCompiledOutputs(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "build")) mkdirAll(t, filepath.Join(root, ".cache", "2da")) mkdirAll(t, filepath.Join(root, "topdata", "assets", "gui")) mkdirAll(t, filepath.Join(root, "topdata", "data", "repadjust")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: test_module topdata: source: topdata build: .cache package_hak: sow_top.hak package_tlk: sow_tlk.tlk `) writeFile(t, filepath.Join(root, ".cache", "2da", "repadjust.2da"), "2DA V2.0\n\n Label\n0 TEST_LABEL\n") writeFile(t, filepath.Join(root, "build", "sow_tlk.tlk"), "compiled tlk") writeFile(t, filepath.Join(root, "topdata", "assets", "gui", "testicon.png"), "icon-data") writeFile(t, filepath.Join(root, "topdata", "data", "repadjust", "base.json"), `{ "output": "repadjust.2da", "columns": ["Label"], "rows": [{"id": 0, "Label": "TEST_LABEL"}] }`+"\n") sourceTime := time.Now().Add(-2 * time.Hour) outputTime := time.Now().Add(-1 * time.Hour) setTreeTime(t, filepath.Join(root, "topdata"), sourceTime) setFileTime(t, filepath.Join(root, ".cache", "2da", "repadjust.2da"), outputTime) setFileTime(t, filepath.Join(root, "build", "sow_tlk.tlk"), outputTime) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"build-top-package"}, } if err := runBuildTopPackage(ctx); err != nil { t.Fatalf("runBuildTopPackage failed: %v", err) } output := stdout.String() if !strings.Contains(output, "top package hak: build/sow_top.hak") { t.Fatalf("expected build-top-package output, got %q", output) } if strings.Contains(output, "[build-top-package]") { t.Fatalf("did not expect raw progress lines in normal output, got %q", output) } if _, err := os.Stat(filepath.Join(root, "build", "sow_top.hak")); err != nil { t.Fatalf("expected packaged hak output: %v", err) } } func TestRunBuildHAKsEmitsCompactSummary(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "assets", "envi", "music", "westgate")) mkdirAll(t, filepath.Join(root, "build")) mkdirAll(t, filepath.Join(root, "src")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src assets: assets build: build haks: - name: envi priority: 1 max_bytes: 1048576 split: false include: - envi/** `) writeFile(t, filepath.Join(root, "assets", "envi", "music", "westgate", "AleandAnecdotes.mp3"), "source-mp3") writeFile(t, filepath.Join(root, "assets", "envi", "music", "westgate", "CREDITS.md"), "# NWN Music Pack Credits\n\n| Artist | Title | Output File | Original File | Album | Date | License / Copyright | Notes |\n|---|---|---|---|---|---|---|---|\n| Darren Curtis | Ale and Anecdotes | `mus_wg_andnc.bmu` | `AleandAnecdotes.mp3` | Darren's Commercially Free Music | | Darren Curtis Music | |\n") ffprobePath := filepath.Join(root, "ffprobe") writeFile(t, ffprobePath, "#!/bin/sh\nprintf '%s\\n' '{\"format\":{\"tags\":{\"artist\":\"Unknown\",\"title\":\"Broken Metadata\"}}}'\n") if err := os.Chmod(ffprobePath, 0o755); err != nil { t.Fatalf("chmod ffprobe: %v", err) } ffmpegPath := filepath.Join(root, "ffmpeg") writeFile(t, ffmpegPath, "#!/bin/sh\nfor last; do :; done\nprintf 'bmu-data' > \"$last\"\n") if err := os.Chmod(ffmpegPath, 0o755); err != nil { t.Fatalf("chmod ffmpeg: %v", err) } t.Setenv("SOW_FFMPEG", ffmpegPath) t.Setenv("SOW_FFPROBE", ffprobePath) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"build-haks"}, } if err := runBuildHAKs(ctx); err != nil { t.Fatalf("runBuildHAKs failed: %v", err) } output := stdout.String() if !strings.Contains(output, "Build HAKs ----------") { t.Fatalf("expected build header, got %q", output) } if !strings.Contains(output, "mapped: 1 music file(s); use --verbose to list mappings") { t.Fatalf("expected compact mapping summary, got %q", output) } if strings.Contains(output, "AleandAnecdotes.mp3 -> mus_wg_andnc.bmu") { t.Fatalf("did not expect verbose mapping in normal mode, got %q", output) } if !strings.Contains(output, "manifest: build/haks.json") { t.Fatalf("expected relative manifest path, got %q", output) } } func setTreeTime(t *testing.T, root string, modTime time.Time) { t.Helper() err := filepath.WalkDir(root, func(path string, d os.DirEntry, walkErr error) error { if walkErr != nil { return walkErr } return os.Chtimes(path, modTime, modTime) }) if err != nil { t.Fatalf("set tree time under %s: %v", root, err) } } func TestRunBuildHAKsVerboseListsMappings(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "assets", "envi", "music", "westgate")) mkdirAll(t, filepath.Join(root, "build")) mkdirAll(t, filepath.Join(root, "src")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src assets: assets build: build haks: - name: envi priority: 1 max_bytes: 1048576 split: false include: - envi/** `) writeFile(t, filepath.Join(root, "assets", "envi", "music", "westgate", "AleandAnecdotes.mp3"), "source-mp3") writeFile(t, filepath.Join(root, "assets", "envi", "music", "westgate", "CREDITS.md"), "# NWN Music Pack Credits\n\n| Artist | Title | Output File | Original File | Album | Date | License / Copyright | Notes |\n|---|---|---|---|---|---|---|---|\n| Darren Curtis | Ale and Anecdotes | `mus_wg_andnc.bmu` | `AleandAnecdotes.mp3` | Darren's Commercially Free Music | | Darren Curtis Music | |\n") ffprobePath := filepath.Join(root, "ffprobe") writeFile(t, ffprobePath, "#!/bin/sh\nprintf '%s\\n' '{\"format\":{\"tags\":{\"artist\":\"Unknown\",\"title\":\"Broken Metadata\"}}}'\n") if err := os.Chmod(ffprobePath, 0o755); err != nil { t.Fatalf("chmod ffprobe: %v", err) } ffmpegPath := filepath.Join(root, "ffmpeg") writeFile(t, ffmpegPath, "#!/bin/sh\nfor last; do :; done\nprintf 'bmu-data' > \"$last\"\n") if err := os.Chmod(ffmpegPath, 0o755); err != nil { t.Fatalf("chmod ffmpeg: %v", err) } t.Setenv("SOW_FFMPEG", ffmpegPath) t.Setenv("SOW_FFPROBE", ffprobePath) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"build-haks", "--verbose"}, } if err := runBuildHAKs(ctx); err != nil { t.Fatalf("runBuildHAKs failed: %v", err) } output := stdout.String() if !strings.Contains(output, "mappings:") { t.Fatalf("expected verbose mappings header, got %q", output) } if !strings.Contains(output, "AleandAnecdotes.mp3 -> mus_wg_andnc.bmu") { t.Fatalf("expected verbose mapping output, got %q", output) } if !strings.Contains(output, "wrote: envi (1 assets)") { t.Fatalf("expected verbose archive action, got %q", output) } } func TestTopdataConsoleSuppressesProgressInNormalMode(t *testing.T) { var stdout bytes.Buffer console := &topdataConsole{ stdout: &stdout, projectRoot: "/workspace/project", projectName: "Test Module", commandName: "build-topdata", commandLabel: "Build Topdata", level: logLevelNormal, } console.progress("Packaging compiled topdata resources into sow_top.hak...") if stdout.String() != "" { t.Fatalf("expected no normal-mode progress output, got %q", stdout.String()) } } func TestSpinnerEnabledForHonorsPlainTTYMode(t *testing.T) { t.Setenv("SOW_TOOLS_TTY_MODE", "plain") if spinnerEnabledFor(&bytes.Buffer{}, logLevelNormal) { t.Fatal("expected plain tty mode to disable spinner output") } } func TestTopdataConsoleDebugProgressAndRelativePaths(t *testing.T) { var stdout bytes.Buffer console := &topdataConsole{ stdout: &stdout, projectRoot: "/workspace/project", projectName: "Test Module", commandName: "deploy-wiki", commandLabel: "Deploy Wiki", level: logLevelDebug, } console.progress("NodeBB wiki plan: create 1, update 2, skip 3, stale 4, archive 5, purge 6, drift 0") console.emitWikiDeployResult(10, 1, 2, 3, 4, 5, 6, 0, "/workspace/project/build/wiki/deploy-manifest.json") output := stdout.String() if !strings.Contains(output, "[debug] NodeBB wiki plan: create 1, update 2, skip 3, stale 4, archive 5, purge 6, drift 0") { t.Fatalf("expected debug progress line, got %q", output) } if !strings.Contains(output, "archived: 5") { t.Fatalf("expected archived deploy count, got %q", output) } if !strings.Contains(output, "purged: 6") { t.Fatalf("expected purged deploy count, got %q", output) } if !strings.Contains(output, "manifest: build/wiki/deploy-manifest.json") { t.Fatalf("expected relative deploy manifest path, got %q", output) } } func TestParseDeployWikiHelpListsPurgeStalePolicy(t *testing.T) { _, err := parseDeployWikiArgs("deploy-wiki", []string{"--help"}) if err == nil || !strings.Contains(err.Error(), "--stale-policy ") { t.Fatalf("expected deploy-wiki help to list purge stale policy, got %v", err) } } func TestProjectConsoleSuppressesBuildModuleProgressInNormalMode(t *testing.T) { var stdout bytes.Buffer console := &projectConsole{ stdout: &stdout, projectRoot: "/workspace/project", projectName: "Test Module", commandName: "build-module", commandLabel: "Build Module", level: logLevelNormal, } console.progress("Writing module archive...") if stdout.String() != "" { t.Fatalf("expected no normal-mode progress output, got %q", stdout.String()) } } func TestProjectConsoleEmitsRelativePaths(t *testing.T) { var stdout bytes.Buffer console := &projectConsole{ stdout: &stdout, projectRoot: "/workspace/project", projectName: "Test Module", commandName: "compare", commandLabel: "Compare", level: logLevelNormal, } console.emitCompareResult(pipeline.CompareResult{ ModulePath: "/workspace/project/build/test.mod", HAKPaths: []string{"/workspace/project/build/core.hak"}, Checked: 42, }) output := stdout.String() if !strings.Contains(output, "module: build/test.mod") { t.Fatalf("expected relative module path, got %q", output) } } func TestRunBuildModuleToolkitPreflightRefreshesManifestAndSkipsBrokenCompiler(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "src", "module")) mkdirAll(t, filepath.Join(root, "src", "placeables")) mkdirAll(t, filepath.Join(root, "src", "scripts")) mkdirAll(t, filepath.Join(root, "build")) mkdirAll(t, filepath.Join(root, "scripts")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src build: build scripts: compiler: search: - tools/script-compiler/nwn_script_comp `) writeFile(t, filepath.Join(root, "src", "module", "module.ifo.json"), `{ "file_type": "IFO ", "file_version": "V3.2", "root": { "struct_type": 0, "fields": [ {"label": "Mod_Name", "type": "CExoString", "value": "Test Module"} ] } } `) writeFile(t, filepath.Join(root, "src", "placeables", "thing.utp.json"), `{ "file_type": "UTP ", "file_version": "V3.2", "root": { "struct_type": 0, "fields": [ {"label": "OnUsed", "type": "ResRef", "value": "use_thing"} ] } } `) writeFile(t, filepath.Join(root, "src", "scripts", "use_thing.nss"), "void main() {}\n") writeFile(t, filepath.Join(root, "scripts", "fetch-hak-manifest.sh"), "#!/usr/bin/env sh\nset -eu\nmkdir -p \"$(dirname \"$1\")\"\nprintf '{\"module_haks\":[\"sow_core\"],\"haks\":[]}\n' >\"$1\"\n") if err := os.Chmod(filepath.Join(root, "scripts", "fetch-hak-manifest.sh"), 0o755); err != nil { t.Fatalf("chmod fetch-hak-manifest.sh: %v", err) } badCompiler := filepath.Join(root, "bad-compiler.sh") writeFile(t, badCompiler, "#!/usr/bin/env sh\nexit 1\n") if err := os.Chmod(badCompiler, 0o755); err != nil { t.Fatalf("chmod bad compiler: %v", err) } t.Setenv("SOW_NWN_SCRIPT_COMPILER", badCompiler) t.Setenv("SOW_MODULE_SKIP_NSS_COMPILATION", "") var stdout bytes.Buffer var stderr bytes.Buffer ctx := context{ stdout: &stdout, stderr: &stderr, cwd: root, args: []string{"build-module"}, } if err := runBuildModule(ctx); err != nil { t.Fatalf("runBuildModule failed: %v", err) } moduleSource := mustReadFile(t, filepath.Join(root, "src", "module", "module.ifo.json")) if !strings.Contains(moduleSource, "\"Mod_HakList\"") || !strings.Contains(moduleSource, "\"sow_core\"") { t.Fatalf("expected manifest-applied module source, got %q", moduleSource) } if _, err := os.Stat(filepath.Join(root, ".cache", "ncs", "use_thing.ncs")); !os.IsNotExist(err) { t.Fatalf("expected broken explicit compiler to skip compilation, got err=%v", err) } if !strings.Contains(stdout.String(), "script compilation: skipped") { t.Fatalf("expected skip-compilation summary in output, got %q", stdout.String()) } if strings.Contains(stdout.String(), "[build-module]") { t.Fatalf("did not expect raw build-module progress in normal output, got %q", stdout.String()) } } func TestRunBuildModuleToolkitPreflightInstallsCompilerWhenNeeded(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "src", "module")) mkdirAll(t, filepath.Join(root, "src", "placeables")) mkdirAll(t, filepath.Join(root, "src", "scripts")) mkdirAll(t, filepath.Join(root, "build")) mkdirAll(t, filepath.Join(root, "scripts")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src build: build scripts: compiler: search: - tools/script-compiler/nwn_script_comp `) writeFile(t, filepath.Join(root, "src", "module", "module.ifo.json"), `{ "file_type": "IFO ", "file_version": "V3.2", "root": { "struct_type": 0, "fields": [ {"label": "Mod_Name", "type": "CExoString", "value": "Test Module"} ] } } `) writeFile(t, filepath.Join(root, "src", "placeables", "thing.utp.json"), `{ "file_type": "UTP ", "file_version": "V3.2", "root": { "struct_type": 0, "fields": [ {"label": "OnUsed", "type": "ResRef", "value": "use_thing"} ] } } `) writeFile(t, filepath.Join(root, "src", "scripts", "use_thing.nss"), "void main() {}\n") writeFile(t, filepath.Join(root, "scripts", "fetch-hak-manifest.sh"), "#!/usr/bin/env sh\nset -eu\nmkdir -p \"$(dirname \"$1\")\"\nprintf '{\"module_haks\":[\"sow_core\"],\"haks\":[]}\n' >\"$1\"\n") writeFile(t, filepath.Join(root, "scripts", "install-script-compiler.sh"), "#!/usr/bin/env sh\nset -eu\ninstall_dir=\"${SOW_SCRIPT_COMPILER_INSTALL_DIR:-./tools/script-compiler}\"\nmkdir -p \"$install_dir\"\ncat >\"$install_dir/nwn_script_comp\" <<'SH'\n#!/usr/bin/env sh\nset -eu\nif [ \"${1:-}\" = \"--help\" ]; then\n exit 0\nfi\nout=\"\"\nsrc=\"\"\nwhile [ \"$#\" -gt 0 ]; do\n case \"$1\" in\n -o)\n out=\"$2\"\n shift 2\n ;;\n --dirs)\n shift 2\n ;;\n *)\n src=\"$1\"\n shift\n ;;\n esac\ndone\nprintf 'compiled:%s\\n' \"$(basename \"$src\")\" >\"$out\"\nSH\nchmod +x \"$install_dir/nwn_script_comp\"\nprintf 'installed: %s\\n' \"$install_dir\"\n") if err := os.Chmod(filepath.Join(root, "scripts", "fetch-hak-manifest.sh"), 0o755); err != nil { t.Fatalf("chmod fetch-hak-manifest.sh: %v", err) } if err := os.Chmod(filepath.Join(root, "scripts", "install-script-compiler.sh"), 0o755); err != nil { t.Fatalf("chmod install-script-compiler.sh: %v", err) } t.Setenv("SOW_NWN_SCRIPT_COMPILER", "") t.Setenv("SOW_MODULE_SKIP_NSS_COMPILATION", "") var stdout bytes.Buffer var stderr bytes.Buffer ctx := context{ stdout: &stdout, stderr: &stderr, cwd: root, args: []string{"build-module"}, } if err := runBuildModule(ctx); err != nil { t.Fatalf("runBuildModule failed: %v\nstdout:\n%s\nstderr:\n%s", err, stdout.String(), stderr.String()) } compiledScript := filepath.Join(root, ".cache", "ncs", "use_thing.ncs") if _, err := os.Stat(compiledScript); err != nil { t.Fatalf("expected installed compiler to compile script: %v", err) } if !strings.Contains(stdout.String(), "script compilation: installed") { t.Fatalf("expected install summary in output, got %q", stdout.String()) } if strings.Contains(stdout.String(), "[build-module]") { t.Fatalf("did not expect raw build-module progress in normal output, got %q", stdout.String()) } } func TestRunMusicScanUsesConfiguredDatasetsWithoutWriting(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "assets", "audio", "westgate")) mkdirAll(t, filepath.Join(root, "build")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: assets: assets build: build music: datasets: westgate_audio: source: audio/westgate output: generated/music prefix: wg_ `) writeFile(t, filepath.Join(root, "assets", "audio", "westgate", "Theme Song.mp3"), "source-mp3") var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"music", "scan", "--dataset", "westgate_audio"}, } if err := runMusic(ctx); err != nil { t.Fatalf("runMusic failed: %v", err) } output := stdout.String() if !strings.Contains(output, "music scan") || !strings.Contains(output, "tracks: 1") { t.Fatalf("unexpected music scan output: %q", output) } if _, err := os.Stat(filepath.Join(root, ".cache", "credits")); !os.IsNotExist(err) { t.Fatalf("music scan should not write credits artifacts, stat err=%v", err) } } func TestRunMusicListDatasets(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "assets")) mkdirAll(t, filepath.Join(root, "build")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: assets: assets music: datasets: westgate_audio: source: audio/westgate output: generated/music prefix: wg_ `) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"music", "list-datasets"}, } if err := runMusic(ctx); err != nil { t.Fatalf("runMusic failed: %v", err) } if !strings.Contains(stdout.String(), "westgate_audio: source=audio/westgate output=generated/music prefix=wg_") { t.Fatalf("unexpected dataset list: %q", stdout.String()) } } func TestRunConfigEffectiveJSONShowsDefaultsAndProvenance(t *testing.T) { root := t.TempDir() writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src `) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"config", "effective", "--json"}, } if err := runConfig(ctx); err != nil { t.Fatalf("runConfig failed: %v", err) } output := stdout.String() if !strings.Contains(output, `"hak_manifest": "haks.json"`) { t.Fatalf("expected HAK manifest default in effective config, got %q", output) } if !strings.Contains(output, `"paths.build":`) || !strings.Contains(output, `"toolkit default"`) { t.Fatalf("expected default provenance in effective config, got %q", output) } } func TestRunConfigExplainReportsYAMLSource(t *testing.T) { root := t.TempDir() writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: build: output `) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"config", "explain", "paths.build"}, } if err := runConfig(ctx); err != nil { t.Fatalf("runConfig failed: %v", err) } output := stdout.String() if !strings.Contains(output, "value: \"output\"") { t.Fatalf("expected configured build value, got %q", output) } if !strings.Contains(output, "source: yaml") { t.Fatalf("expected YAML source, got %q", output) } } func TestRunConfigValidateDoesNotScanSourceInventory(t *testing.T) { root := t.TempDir() mkdirAll(t, filepath.Join(root, "build")) writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: missing-src build: build `) var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"config", "validate"}, } if err := runConfig(ctx); err != nil { t.Fatalf("runConfig failed: %v", err) } if !strings.Contains(stdout.String(), "config: ok") { t.Fatalf("expected config validation output, got %q", stdout.String()) } } func TestRunConfigSourcesListsActiveOverrides(t *testing.T) { root := t.TempDir() writeFile(t, filepath.Join(root, "nwn-tool.yaml"), ` module: name: Test Module resref: testmod paths: source: src `) t.Setenv("SOW_BUILD_HAKS_KEEP_EXISTING", "1") var stdout bytes.Buffer ctx := context{ stdout: &stdout, stderr: &bytes.Buffer{}, cwd: root, args: []string{"config", "sources"}, } if err := runConfig(ctx); err != nil { t.Fatalf("runConfig failed: %v", err) } output := stdout.String() if !strings.Contains(output, "active overrides:") { t.Fatalf("expected active overrides section, got %q", output) } if !strings.Contains(output, "build.keep_existing_haks=1") { t.Fatalf("expected keep existing override, got %q", output) } } func TestInlineFlagParsersRejectEmptyValues(t *testing.T) { if _, err := parseBuildHAKArgs([]string{"--hak="}); err == nil || !strings.Contains(err.Error(), "--hak requires a value") { t.Fatalf("expected empty --hak inline value error, got %v", err) } if _, err := parseMusicCommandArgs([]string{"--dataset="}); err == nil || !strings.Contains(err.Error(), "--dataset requires a value") { t.Fatalf("expected empty --dataset inline value error, got %v", err) } if _, err := parseDeployWikiArgs("deploy-wiki", []string{"--endpoint="}); err == nil || !strings.Contains(err.Error(), "--endpoint requires a value") { t.Fatalf("expected empty --endpoint inline value error, got %v", err) } if _, err := parseBuildChangelogArgs("build-changelog", []string{"--output="}); err == nil || !strings.Contains(err.Error(), "--output requires a value") { t.Fatalf("expected empty --output inline value error, got %v", err) } } func TestParseBuildChangelogArgsAcceptsInlineValues(t *testing.T) { opts, err := parseBuildChangelogArgs("build-changelog", []string{ "--config=scripts/changelog.json", "--output=CHANGELOG.md", "--current-tag=v2", "--previous-tag=v1", "--api-base-url=https://gitea.example/api/v1", "--token=secret", }) if err != nil { t.Fatalf("parseBuildChangelogArgs failed: %v", err) } if opts.configPath != "scripts/changelog.json" || opts.outputPath != "CHANGELOG.md" || opts.currentTag != "v2" || opts.previousTag != "v1" || opts.apiBaseURL != "https://gitea.example/api/v1" || opts.token != "secret" { t.Fatalf("unexpected changelog opts: %#v", opts) } } func mkdirAll(t *testing.T, path string) { t.Helper() if err := os.MkdirAll(path, 0o755); err != nil { t.Fatalf("mkdir %s: %v", path, err) } } func writeFile(t *testing.T, path, content string) { t.Helper() if err := os.WriteFile(path, []byte(content), 0o644); err != nil { t.Fatalf("write %s: %v", path, err) } } func setFileTime(t *testing.T, path string, modTime time.Time) { t.Helper() if err := os.Chtimes(path, modTime, modTime); err != nil { t.Fatalf("set file time %s: %v", path, err) } } func mustReadFile(t *testing.T, path string) string { t.Helper() raw, err := os.ReadFile(path) if err != nil { t.Fatalf("read %s: %v", path, err) } return string(raw) }