aa5cc2cd6a
This reverts commit 23a4120c57
.
Reason for revert: broke soong_integration
Change-Id: I4d51841756675b3745244d23e13aefda0916614b
501 lines
18 KiB
Go
501 lines
18 KiB
Go
// Copyright 2022 Google Inc. All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package bp2build
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import (
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"fmt"
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"io/ioutil"
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"os"
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"path/filepath"
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"regexp"
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"sort"
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"strconv"
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"strings"
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"sync"
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"sync/atomic"
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"android/soong/shared"
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"github.com/google/blueprint/pathtools"
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)
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// A tree structure that describes what to do at each directory in the created
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// symlink tree. Currently it is used to enumerate which files/directories
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// should be excluded from symlinking. Each instance of "node" represents a file
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// or a directory. If excluded is true, then that file/directory should be
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// excluded from symlinking. Otherwise, the node is not excluded, but one of its
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// descendants is (otherwise the node in question would not exist)
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// This is a version int written to a file called symlink_forest_version at the root of the
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// symlink forest. If the version here does not match the version in the file, then we'll
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// clean the whole symlink forest and recreate it. This number can be bumped whenever there's
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// an incompatible change to the forest layout or a bug in incrementality that needs to be fixed
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// on machines that may still have the bug present in their forest.
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const symlinkForestVersion = 2
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type instructionsNode struct {
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name string
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excluded bool // If false, this is just an intermediate node
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children map[string]*instructionsNode
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}
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type symlinkForestContext struct {
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verbose bool
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topdir string // $TOPDIR
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// State
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wg sync.WaitGroup
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depCh chan string
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mkdirCount atomic.Uint64
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symlinkCount atomic.Uint64
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}
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// Ensures that the node for the given path exists in the tree and returns it.
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func ensureNodeExists(root *instructionsNode, path string) *instructionsNode {
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if path == "" {
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return root
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}
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if path[len(path)-1] == '/' {
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path = path[:len(path)-1] // filepath.Split() leaves a trailing slash
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}
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dir, base := filepath.Split(path)
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// First compute the parent node...
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dn := ensureNodeExists(root, dir)
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// then create the requested node as its direct child, if needed.
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if child, ok := dn.children[base]; ok {
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return child
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} else {
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dn.children[base] = &instructionsNode{base, false, make(map[string]*instructionsNode)}
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return dn.children[base]
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}
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}
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// Turns a list of paths to be excluded into a tree
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func instructionsFromExcludePathList(paths []string) *instructionsNode {
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result := &instructionsNode{"", false, make(map[string]*instructionsNode)}
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for _, p := range paths {
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ensureNodeExists(result, p).excluded = true
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}
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return result
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}
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func mergeBuildFiles(output string, srcBuildFile string, generatedBuildFile string, verbose bool) error {
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srcBuildFileContent, err := os.ReadFile(srcBuildFile)
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if err != nil {
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return err
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}
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generatedBuildFileContent, err := os.ReadFile(generatedBuildFile)
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if err != nil {
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return err
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}
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// There can't be a package() call in both the source and generated BUILD files.
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// bp2build will generate a package() call for licensing information, but if
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// there's no licensing information, it will still generate a package() call
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// that just sets default_visibility=public. If the handcrafted build file
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// also has a package() call, we'll allow it to override the bp2build
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// generated one if it doesn't have any licensing information. If the bp2build
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// one has licensing information and the handcrafted one exists, we'll leave
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// them both in for bazel to throw an error.
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packageRegex := regexp.MustCompile(`(?m)^package\s*\(`)
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packageDefaultVisibilityRegex := regexp.MustCompile(`(?m)^package\s*\(\s*default_visibility\s*=\s*\[\s*"//visibility:public",?\s*]\s*\)`)
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if packageRegex.Find(srcBuildFileContent) != nil {
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if verbose && packageDefaultVisibilityRegex.Find(generatedBuildFileContent) != nil {
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fmt.Fprintf(os.Stderr, "Both '%s' and '%s' have a package() target, removing the first one\n",
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generatedBuildFile, srcBuildFile)
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}
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generatedBuildFileContent = packageDefaultVisibilityRegex.ReplaceAll(generatedBuildFileContent, []byte{})
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}
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newContents := generatedBuildFileContent
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if newContents[len(newContents)-1] != '\n' {
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newContents = append(newContents, '\n')
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}
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newContents = append(newContents, srcBuildFileContent...)
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// Say you run bp2build 4 times:
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// - The first time there's only an Android.bp file. bp2build will convert it to a build file
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// under out/soong/bp2build, then symlink from the forest to that generated file
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// - Then you add a handcrafted BUILD file in the same directory. bp2build will merge this with
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// the generated one, and write the result to the output file in the forest. But the output
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// file was a symlink to out/soong/bp2build from the previous step! So we erroneously update
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// the file in out/soong/bp2build instead. So far this doesn't cause any problems...
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// - You run a 3rd bp2build with no relevant changes. Everything continues to work.
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// - You then add a comment to the handcrafted BUILD file. This causes a merge with the
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// generated file again. But since we wrote to the generated file in step 2, the generated
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// file has an old copy of the handcrafted file in it! This probably causes duplicate bazel
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// targets.
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// To solve this, if we see that the output file is a symlink from a previous build, remove it.
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stat, err := os.Lstat(output)
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if err != nil && !os.IsNotExist(err) {
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return err
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} else if err == nil {
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if stat.Mode()&os.ModeSymlink == os.ModeSymlink {
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if verbose {
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fmt.Fprintf(os.Stderr, "Removing symlink so that we can replace it with a merged file: %s\n", output)
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}
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err = os.Remove(output)
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if err != nil {
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return err
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}
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}
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}
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return pathtools.WriteFileIfChanged(output, newContents, 0666)
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}
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// Calls readdir() and returns it as a map from the basename of the files in dir
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// to os.FileInfo.
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func readdirToMap(dir string) map[string]os.FileInfo {
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entryList, err := ioutil.ReadDir(dir)
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result := make(map[string]os.FileInfo)
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if err != nil {
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if os.IsNotExist(err) {
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// It's okay if a directory doesn't exist; it just means that one of the
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// trees to be merged contains parts the other doesn't
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return result
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} else {
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fmt.Fprintf(os.Stderr, "Cannot readdir '%s': %s\n", dir, err)
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os.Exit(1)
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}
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}
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for _, fi := range entryList {
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result[fi.Name()] = fi
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}
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return result
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}
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// Creates a symbolic link at dst pointing to src
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func symlinkIntoForest(topdir, dst, src string) uint64 {
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srcPath := shared.JoinPath(topdir, src)
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dstPath := shared.JoinPath(topdir, dst)
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// Check if a symlink already exists.
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if dstInfo, err := os.Lstat(dstPath); err != nil {
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if !os.IsNotExist(err) {
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fmt.Fprintf(os.Stderr, "Failed to lstat '%s': %s", dst, err)
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os.Exit(1)
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}
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} else {
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if dstInfo.Mode()&os.ModeSymlink != 0 {
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// Assume that the link's target is correct, i.e. no manual tampering.
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// E.g. OUT_DIR could have been previously used with a different source tree check-out!
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return 0
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} else {
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if err := os.RemoveAll(dstPath); err != nil {
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fmt.Fprintf(os.Stderr, "Failed to remove '%s': %s", dst, err)
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os.Exit(1)
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}
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}
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}
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// Create symlink.
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if err := os.Symlink(srcPath, dstPath); err != nil {
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fmt.Fprintf(os.Stderr, "Cannot create symlink at '%s' pointing to '%s': %s", dst, src, err)
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os.Exit(1)
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}
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return 1
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}
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func isDir(path string, fi os.FileInfo) bool {
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if (fi.Mode() & os.ModeSymlink) != os.ModeSymlink {
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return fi.IsDir()
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}
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fi2, statErr := os.Stat(path)
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if statErr == nil {
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return fi2.IsDir()
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}
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// Check if this is a dangling symlink. If so, treat it like a file, not a dir.
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_, lstatErr := os.Lstat(path)
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if lstatErr != nil {
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fmt.Fprintf(os.Stderr, "Cannot stat or lstat '%s': %s\n%s\n", path, statErr, lstatErr)
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os.Exit(1)
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}
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return false
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}
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// maybeCleanSymlinkForest will remove the whole symlink forest directory if the version recorded
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// in the symlink_forest_version file is not equal to symlinkForestVersion.
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func maybeCleanSymlinkForest(topdir, forest string, verbose bool) error {
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versionFilePath := shared.JoinPath(topdir, forest, "symlink_forest_version")
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versionFileContents, err := os.ReadFile(versionFilePath)
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if err != nil && !os.IsNotExist(err) {
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return err
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}
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versionFileString := strings.TrimSpace(string(versionFileContents))
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symlinkForestVersionString := strconv.Itoa(symlinkForestVersion)
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if err != nil || versionFileString != symlinkForestVersionString {
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if verbose {
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fmt.Fprintf(os.Stderr, "Old symlink_forest_version was %q, current is %q. Cleaning symlink forest before recreating...\n", versionFileString, symlinkForestVersionString)
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}
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err = os.RemoveAll(shared.JoinPath(topdir, forest))
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if err != nil {
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return err
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}
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}
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return nil
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}
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// maybeWriteVersionFile will write the symlink_forest_version file containing symlinkForestVersion
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// if it doesn't exist already. If it exists we know it must contain symlinkForestVersion because
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// we checked for that already in maybeCleanSymlinkForest
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func maybeWriteVersionFile(topdir, forest string) error {
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versionFilePath := shared.JoinPath(topdir, forest, "symlink_forest_version")
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_, err := os.Stat(versionFilePath)
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if err != nil {
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if !os.IsNotExist(err) {
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return err
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}
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err = os.WriteFile(versionFilePath, []byte(strconv.Itoa(symlinkForestVersion)+"\n"), 0666)
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if err != nil {
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return err
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}
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}
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return nil
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}
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// Recursively plants a symlink forest at forestDir. The symlink tree will
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// contain every file in buildFilesDir and srcDir excluding the files in
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// instructions. Collects every directory encountered during the traversal of
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// srcDir .
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func plantSymlinkForestRecursive(context *symlinkForestContext, instructions *instructionsNode, forestDir string, buildFilesDir string, srcDir string) {
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defer context.wg.Done()
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if instructions != nil && instructions.excluded {
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// Excluded paths are skipped at the level of the non-excluded parent.
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fmt.Fprintf(os.Stderr, "may not specify a root-level exclude directory '%s'", srcDir)
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os.Exit(1)
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}
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// We don't add buildFilesDir here because the bp2build files marker files is
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// already a dependency which covers it. If we ever wanted to turn this into
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// a generic symlink forest creation tool, we'd need to add it, too.
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context.depCh <- srcDir
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srcDirMap := readdirToMap(shared.JoinPath(context.topdir, srcDir))
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buildFilesMap := readdirToMap(shared.JoinPath(context.topdir, buildFilesDir))
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renamingBuildFile := false
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if _, ok := srcDirMap["BUILD"]; ok {
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if _, ok := srcDirMap["BUILD.bazel"]; !ok {
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if _, ok := buildFilesMap["BUILD.bazel"]; ok {
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renamingBuildFile = true
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srcDirMap["BUILD.bazel"] = srcDirMap["BUILD"]
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delete(srcDirMap, "BUILD")
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if instructions != nil {
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if _, ok := instructions.children["BUILD"]; ok {
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instructions.children["BUILD.bazel"] = instructions.children["BUILD"]
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delete(instructions.children, "BUILD")
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}
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}
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}
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}
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}
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allEntries := make([]string, 0, len(srcDirMap)+len(buildFilesMap))
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for n := range srcDirMap {
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allEntries = append(allEntries, n)
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}
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for n := range buildFilesMap {
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if _, ok := srcDirMap[n]; !ok {
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allEntries = append(allEntries, n)
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}
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}
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// Tests read the error messages generated, so ensure their order is deterministic
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sort.Strings(allEntries)
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fullForestPath := shared.JoinPath(context.topdir, forestDir)
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createForestDir := false
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if fi, err := os.Lstat(fullForestPath); err != nil {
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if os.IsNotExist(err) {
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createForestDir = true
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} else {
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fmt.Fprintf(os.Stderr, "Could not read info for '%s': %s\n", forestDir, err)
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}
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} else if fi.Mode()&os.ModeDir == 0 {
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if err := os.RemoveAll(fullForestPath); err != nil {
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fmt.Fprintf(os.Stderr, "Failed to remove '%s': %s", forestDir, err)
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os.Exit(1)
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}
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createForestDir = true
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}
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if createForestDir {
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if err := os.MkdirAll(fullForestPath, 0777); err != nil {
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fmt.Fprintf(os.Stderr, "Could not mkdir '%s': %s\n", forestDir, err)
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os.Exit(1)
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}
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context.mkdirCount.Add(1)
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}
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// Start with a list of items that already exist in the forest, and remove
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// each element as it is processed in allEntries. Any remaining items in
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// forestMapForDeletion must be removed. (This handles files which were
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// removed since the previous forest generation).
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forestMapForDeletion := readdirToMap(shared.JoinPath(context.topdir, forestDir))
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for _, f := range allEntries {
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if f[0] == '.' {
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continue // Ignore dotfiles
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}
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delete(forestMapForDeletion, f)
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// todo add deletionCount metric
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// The full paths of children in the input trees and in the output tree
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forestChild := shared.JoinPath(forestDir, f)
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srcChild := shared.JoinPath(srcDir, f)
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if f == "BUILD.bazel" && renamingBuildFile {
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srcChild = shared.JoinPath(srcDir, "BUILD")
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}
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buildFilesChild := shared.JoinPath(buildFilesDir, f)
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// Descend in the instruction tree if it exists
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var instructionsChild *instructionsNode
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if instructions != nil {
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instructionsChild = instructions.children[f]
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}
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srcChildEntry, sExists := srcDirMap[f]
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buildFilesChildEntry, bExists := buildFilesMap[f]
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if instructionsChild != nil && instructionsChild.excluded {
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if bExists {
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context.symlinkCount.Add(symlinkIntoForest(context.topdir, forestChild, buildFilesChild))
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}
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continue
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}
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sDir := sExists && isDir(shared.JoinPath(context.topdir, srcChild), srcChildEntry)
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bDir := bExists && isDir(shared.JoinPath(context.topdir, buildFilesChild), buildFilesChildEntry)
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if !sExists {
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if bDir && instructionsChild != nil {
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// Not in the source tree, but we have to exclude something from under
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// this subtree, so descend
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context.wg.Add(1)
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go plantSymlinkForestRecursive(context, instructionsChild, forestChild, buildFilesChild, srcChild)
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} else {
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// Not in the source tree, symlink BUILD file
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context.symlinkCount.Add(symlinkIntoForest(context.topdir, forestChild, buildFilesChild))
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}
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} else if !bExists {
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if sDir && instructionsChild != nil {
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// Not in the build file tree, but we have to exclude something from
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// under this subtree, so descend
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context.wg.Add(1)
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go plantSymlinkForestRecursive(context, instructionsChild, forestChild, buildFilesChild, srcChild)
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} else {
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// Not in the build file tree, symlink source tree, carry on
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context.symlinkCount.Add(symlinkIntoForest(context.topdir, forestChild, srcChild))
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}
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} else if sDir && bDir {
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// Both are directories. Descend.
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context.wg.Add(1)
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go plantSymlinkForestRecursive(context, instructionsChild, forestChild, buildFilesChild, srcChild)
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} else if !sDir && !bDir {
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// Neither is a directory. Merge them.
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srcBuildFile := shared.JoinPath(context.topdir, srcChild)
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generatedBuildFile := shared.JoinPath(context.topdir, buildFilesChild)
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// The Android.bp file that codegen used to produce `buildFilesChild` is
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// already a dependency, we can ignore `buildFilesChild`.
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context.depCh <- srcChild
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if err := mergeBuildFiles(shared.JoinPath(context.topdir, forestChild), srcBuildFile, generatedBuildFile, context.verbose); err != nil {
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fmt.Fprintf(os.Stderr, "Error merging %s and %s: %s",
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srcBuildFile, generatedBuildFile, err)
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os.Exit(1)
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}
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} else {
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// Both exist and one is a file. This is an error.
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fmt.Fprintf(os.Stderr,
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"Conflict in workspace symlink tree creation: both '%s' and '%s' exist and exactly one is a directory\n",
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srcChild, buildFilesChild)
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os.Exit(1)
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}
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}
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// Remove all files in the forest that exist in neither the source
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// tree nor the build files tree. (This handles files which were removed
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// since the previous forest generation).
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for f := range forestMapForDeletion {
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var instructionsChild *instructionsNode
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if instructions != nil {
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instructionsChild = instructions.children[f]
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}
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if instructionsChild != nil && instructionsChild.excluded {
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// This directory may be excluded because bazel writes to it under the
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// forest root. Thus this path is intentionally left alone.
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continue
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}
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forestChild := shared.JoinPath(context.topdir, forestDir, f)
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if err := os.RemoveAll(forestChild); err != nil {
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fmt.Fprintf(os.Stderr, "Failed to remove '%s/%s': %s", forestDir, f, err)
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os.Exit(1)
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}
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}
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}
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// PlantSymlinkForest Creates a symlink forest by merging the directory tree at "buildFiles" and
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// "srcDir" while excluding paths listed in "exclude". Returns the set of paths
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// under srcDir on which readdir() had to be called to produce the symlink
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// forest.
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func PlantSymlinkForest(verbose bool, topdir string, forest string, buildFiles string, exclude []string) (deps []string, mkdirCount, symlinkCount uint64) {
|
|
context := &symlinkForestContext{
|
|
verbose: verbose,
|
|
topdir: topdir,
|
|
depCh: make(chan string),
|
|
mkdirCount: atomic.Uint64{},
|
|
symlinkCount: atomic.Uint64{},
|
|
}
|
|
|
|
err := maybeCleanSymlinkForest(topdir, forest, verbose)
|
|
if err != nil {
|
|
fmt.Fprintln(os.Stderr, err)
|
|
os.Exit(1)
|
|
}
|
|
|
|
instructions := instructionsFromExcludePathList(exclude)
|
|
go func() {
|
|
context.wg.Add(1)
|
|
plantSymlinkForestRecursive(context, instructions, forest, buildFiles, ".")
|
|
context.wg.Wait()
|
|
close(context.depCh)
|
|
}()
|
|
|
|
for dep := range context.depCh {
|
|
deps = append(deps, dep)
|
|
}
|
|
|
|
err = maybeWriteVersionFile(topdir, forest)
|
|
if err != nil {
|
|
fmt.Fprintln(os.Stderr, err)
|
|
os.Exit(1)
|
|
}
|
|
|
|
return deps, context.mkdirCount.Load(), context.symlinkCount.Load()
|
|
}
|