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fix(packages): ignore nested Package.swift (#38788)
Nested `Package.swift` files overwrote the real package manifest. The parser matched on the base name and kept the last entry in ZIP order. `apple/swift-collections` ships `Benchmarks/Package.swift` and `Utils/Debugger/FormatterFixtures/Package.swift`. The latter sorts after the root `Package.swift`, so the registry stored a fixture manifest with the wrong `swift-tools-version`, causing a toolchain mismatch and a failed build. GRDB, swift-markdown, swift-syntax, sentry-cocoa and SDWebImage share this layout. The parser now keeps only manifests from the shallowest directory holding one. That covers both a package at the archive root and the single top level directory `swift package archive-source` produces. At equal depth the first directory by name wins, so an archive always yields the same metadata. A nested manifest above the size limit no longer rejects the upload. Co-authored-by: silverwind <me@silverwind.io>
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@@ -123,11 +123,26 @@ func ParsePackage(sr io.ReaderAt, size int64, mr io.Reader) (*Package, error) {
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},
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}
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// Nested packages (test fixtures, examples, benchmarks) ship their own manifests, which must not
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// replace the package manifest. The package sits at the archive root or in a single top level
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// directory, so keep only the shallowest manifest directory, breaking ties by name for stability.
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var manifestFiles []*zip.File
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manifestDir, manifestDepth := "", 0
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for _, file := range zr.File {
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manifestMatch := manifestPattern.FindStringSubmatch(path.Base(file.Name))
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if len(manifestMatch) == 0 {
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if strings.HasSuffix(file.Name, "/") || !manifestPattern.MatchString(path.Base(file.Name)) {
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continue
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}
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dir, depth := path.Dir(file.Name), strings.Count(file.Name, "/")
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switch {
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case manifestFiles == nil || depth < manifestDepth || (depth == manifestDepth && dir < manifestDir):
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manifestDir, manifestDepth, manifestFiles = dir, depth, []*zip.File{file}
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case dir == manifestDir:
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manifestFiles = append(manifestFiles, file)
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}
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}
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for _, file := range manifestFiles {
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manifestMatch := manifestPattern.FindStringSubmatch(path.Base(file.Name))
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if file.UncompressedSize64 > maxManifestFileSize {
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return nil, ErrManifestFileTooLarge
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@@ -4,6 +4,7 @@
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package swift
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import (
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"archive/zip"
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"bytes"
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"strings"
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"testing"
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@@ -24,6 +25,18 @@ const (
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packageLicense = "MIT"
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)
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// writeOrderedZipArchive writes name/content pairs in the given order, which map based test.WriteZipArchive cannot do
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func writeOrderedZipArchive(entries [][2]string) *bytes.Buffer {
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buf := &bytes.Buffer{}
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zw := zip.NewWriter(buf)
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for _, entry := range entries {
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w, _ := zw.Create(entry[0])
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_, _ = w.Write([]byte(entry[1]))
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}
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_ = zw.Close()
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return buf
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}
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func TestParsePackage(t *testing.T) {
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t.Run("MissingManifestFile", func(t *testing.T) {
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data := test.WriteZipArchive(map[string]string{"dummy.txt": ""})
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@@ -65,6 +78,77 @@ func TestParsePackage(t *testing.T) {
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assert.Equal(t, content2, m.Content)
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})
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t.Run("IgnoresNestedManifests", func(t *testing.T) {
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rootManifest := "// swift-tools-version:5.7\n//\n// Package.swift"
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rootAltManifest := "// swift-tools-version:5.5\n//\n// Package@swift-5.5.swift"
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rootPatchAltManifest := "// swift-tools-version:5.7.1\n//\n// Package@swift-5.7.1.swift"
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nestedManifest := "// swift-tools-version:6.3\n//\n// nested fixture package"
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data := writeOrderedZipArchive([][2]string{
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{"Package.swift", rootManifest},
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{"Package@swift-5.5.swift", rootAltManifest},
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{"Package@swift-5.7.1.swift", rootPatchAltManifest},
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{"Benchmarks/Package.swift", nestedManifest},
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{"Utils/Fixtures/PlainPackage/Package.swift", nestedManifest},
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})
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p, err := ParsePackage(bytes.NewReader(data.Bytes()), int64(data.Len()), nil)
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assert.NotNil(t, p)
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assert.NoError(t, err)
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assert.Len(t, p.Metadata.Manifests, 3)
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assert.Equal(t, rootManifest, p.Metadata.Manifests[""].Content)
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assert.Equal(t, "5.7", p.Metadata.Manifests[""].ToolsVersion)
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assert.Equal(t, rootAltManifest, p.Metadata.Manifests["5.5"].Content)
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assert.Equal(t, rootPatchAltManifest, p.Metadata.Manifests["5.7.1"].Content)
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})
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t.Run("IgnoresNestedManifestsInPrefixedArchive", func(t *testing.T) {
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rootManifest := "// swift-tools-version:5.7\n//\n// Package.swift"
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// `swift package archive-source` produces archives with a single top level directory
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data := writeOrderedZipArchive([][2]string{
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{"gitea-1.0.1/Package.swift", rootManifest},
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{"gitea-1.0.1/Tests/Fixtures/Package.swift", "// swift-tools-version:6.3"},
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})
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p, err := ParsePackage(bytes.NewReader(data.Bytes()), int64(data.Len()), nil)
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assert.NotNil(t, p)
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assert.NoError(t, err)
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assert.Len(t, p.Metadata.Manifests, 1)
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assert.Equal(t, rootManifest, p.Metadata.Manifests[""].Content)
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})
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t.Run("AltManifestOnlyInRootDirectory", func(t *testing.T) {
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// a deeper Package.swift belongs to a nested package and must not stand in for the missing root manifest
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data := test.WriteZipArchive(map[string]string{
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"Package@swift-5.5.swift": "// swift-tools-version:5.5",
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"Sub/Package.swift": "// swift-tools-version:5.7",
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})
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p, err := ParsePackage(bytes.NewReader(data.Bytes()), int64(data.Len()), nil)
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assert.Nil(t, p)
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assert.ErrorIs(t, err, ErrMissingManifestFile)
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})
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t.Run("ManifestDirectoryTieBreak", func(t *testing.T) {
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contentA := "// swift-tools-version:5.7\n// A"
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contentB := "// swift-tools-version:5.7\n// B"
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// at equal depth the name decides, never the archive order
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data := writeOrderedZipArchive([][2]string{
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{"a/Package.swift", contentA},
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{"b/Package.swift", contentB},
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})
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p, err := ParsePackage(bytes.NewReader(data.Bytes()), int64(data.Len()), nil)
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assert.NotNil(t, p)
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assert.NoError(t, err)
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assert.Len(t, p.Metadata.Manifests, 1)
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assert.Equal(t, contentA, p.Metadata.Manifests[""].Content)
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})
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t.Run("WithMetadata", func(t *testing.T) {
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data := test.WriteZipArchive(map[string]string{
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"Package.swift": "// swift-tools-version:5.7\n//\n// Package.swift",
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