roulette/cmd/files.go

572 lines
11 KiB
Go

/*
Copyright © 2023 Seednode <seednode@seedno.de>
*/
package cmd
import (
"errors"
"fmt"
"math/big"
"regexp"
"crypto/rand"
"os"
"path/filepath"
"runtime"
"strconv"
"strings"
"sync"
"time"
"seedno.de/seednode/roulette/types"
)
type maxConcurrency int
const (
// avoid hitting default open file descriptor limits (1024)
maxDirectoryScans maxConcurrency = 32
maxFileScans maxConcurrency = 256
)
type regexes struct {
alphanumeric *regexp.Regexp
filename *regexp.Regexp
}
type concurrency struct {
directoryScans chan int
fileScans chan int
}
type scanStats struct {
filesMatched int
filesSkipped int
directoriesMatched int
directoriesSkipped int
}
type splitPath struct {
base string
number int
extension string
}
func (splitPath *splitPath) increment() {
splitPath.number = splitPath.number + 1
}
func (splitPath *splitPath) decrement() {
splitPath.number = splitPath.number - 1
}
func humanReadableSize(bytes int) string {
const unit = 1000
if bytes < unit {
return fmt.Sprintf("%d B", bytes)
}
div, exp := int64(unit), 0
for n := bytes / unit; n >= unit; n /= unit {
div *= unit
exp++
}
return fmt.Sprintf("%.1f %cB",
float64(bytes)/float64(div), "KMGTPE"[exp])
}
func preparePath(path string) string {
if runtime.GOOS == "windows" {
return fmt.Sprintf("%s/%s", mediaPrefix, filepath.ToSlash(path))
}
return mediaPrefix + path
}
func newFile(paths []string, filters *filters, sortOrder string, regexes *regexes, cache *fileCache, formats *types.Types) (string, error) {
path, err := pickFile(paths, filters, sortOrder, cache, formats)
if err != nil {
return "", err
}
splitPath, err := split(path, regexes)
if err != nil {
return "", err
}
splitPath.number = 1
switch {
case sortOrder == "asc":
path, err = tryExtensions(splitPath, formats)
if err != nil {
return "", err
}
case sortOrder == "desc":
for {
splitPath.increment()
path, err = tryExtensions(splitPath, formats)
if err != nil {
return "", err
}
if path == "" {
splitPath.decrement()
path, err = tryExtensions(splitPath, formats)
if err != nil {
return "", err
}
break
}
}
}
return path, nil
}
func nextFile(path, sortOrder string, regexes *regexes, formats *types.Types) (string, error) {
splitPath, err := split(path, regexes)
if err != nil {
return "", err
}
switch {
case sortOrder == "asc":
splitPath.increment()
case sortOrder == "desc":
splitPath.decrement()
default:
return "", nil
}
fileName, err := tryExtensions(splitPath, formats)
if err != nil {
return "", err
}
return fileName, err
}
func split(path string, regexes *regexes) (*splitPath, error) {
p := splitPath{}
var err error
split := regexes.filename.FindAllStringSubmatch(path, -1)
if len(split) < 1 || len(split[0]) < 3 {
return &splitPath{}, nil
}
p.base = split[0][1]
p.number, err = strconv.Atoi(split[0][2])
if err != nil {
return &splitPath{}, err
}
p.extension = split[0][3]
return &p, nil
}
func tryExtensions(splitPath *splitPath, formats *types.Types) (string, error) {
var fileName string
for extension := range formats.Extensions {
fileName = fmt.Sprintf("%s%.3d%s", splitPath.base, splitPath.number, extension)
exists, err := fileExists(fileName)
if err != nil {
return "", err
}
if exists {
return fileName, nil
}
}
return "", nil
}
func fileExists(path string) (bool, error) {
_, err := os.Stat(path)
switch {
case err == nil:
return true, nil
case errors.Is(err, os.ErrNotExist):
return false, nil
default:
return false, err
}
}
func pathIsValid(path string, paths []string) bool {
var matchesPrefix = false
for i := 0; i < len(paths); i++ {
if strings.HasPrefix(path, paths[i]) {
matchesPrefix = true
}
}
switch {
case Verbose && !matchesPrefix:
fmt.Printf("%s | Error: Failed to serve file outside specified path(s): %s\n",
time.Now().Format(logDate),
path,
)
return false
case !matchesPrefix:
return false
default:
return true
}
}
func pathHasSupportedFiles(path string, formats *types.Types) (bool, error) {
hasRegisteredFiles := make(chan bool, 1)
err := filepath.WalkDir(path, func(p string, info os.DirEntry, err error) error {
if err != nil {
return err
}
switch {
case !Recursive && info.IsDir() && p != path:
return filepath.SkipDir
case !info.IsDir() && formats.Validate(p):
hasRegisteredFiles <- true
return filepath.SkipAll
}
return err
})
if err != nil {
return false, err
}
select {
case <-hasRegisteredFiles:
return true, nil
default:
return false, nil
}
}
func pathCount(path string) (int, int, error) {
var directories = 0
var files = 0
nodes, err := os.ReadDir(path)
if err != nil {
return 0, 0, err
}
for _, node := range nodes {
if node.IsDir() {
directories++
} else {
files++
}
}
return files, directories, nil
}
func scanPath(path string, fileChannel chan<- string, statChannel chan<- *scanStats, errorChannel chan<- error, concurrency *concurrency, formats *types.Types) {
var wg sync.WaitGroup
stats := &scanStats{
filesMatched: 0,
filesSkipped: 0,
directoriesMatched: 0,
directoriesSkipped: 0,
}
err := filepath.WalkDir(path, func(p string, info os.DirEntry, err error) error {
if err != nil {
return err
}
switch {
case !Recursive && info.IsDir() && p != path:
return filepath.SkipDir
case !info.IsDir():
wg.Add(1)
concurrency.fileScans <- 1
go func() {
defer func() {
<-concurrency.fileScans
wg.Done()
}()
path, err := normalizePath(p)
if err != nil {
errorChannel <- err
}
if !formats.Validate(path) {
stats.filesSkipped = stats.filesSkipped + 1
return
}
fileChannel <- path
stats.filesMatched = stats.filesMatched + 1
}()
case info.IsDir():
files, directories, err := pathCount(p)
if err != nil {
errorChannel <- err
}
if files > 0 && (files < int(MinimumFileCount)) || (files > int(MaximumFileCount)) {
// This count will not otherwise include the parent directory itself, so increment by one
stats.directoriesSkipped = stats.directoriesSkipped + directories + 1
stats.filesSkipped = stats.filesSkipped + files
return filepath.SkipDir
}
stats.directoriesMatched = stats.directoriesMatched + 1
}
return err
})
wg.Wait()
statChannel <- stats
if err != nil {
errorChannel <- err
}
}
func scanPaths(paths []string, sort string, cache *fileCache, formats *types.Types) ([]string, error) {
var list []string
fileChannel := make(chan string)
statChannel := make(chan *scanStats)
errorChannel := make(chan error)
done := make(chan bool, 1)
stats := &scanStats{
filesMatched: 0,
filesSkipped: 0,
directoriesMatched: 0,
directoriesSkipped: 0,
}
concurrency := &concurrency{
directoryScans: make(chan int, maxDirectoryScans),
fileScans: make(chan int, maxFileScans),
}
var wg sync.WaitGroup
startTime := time.Now()
for i := 0; i < len(paths); i++ {
wg.Add(1)
concurrency.directoryScans <- 1
go func(i int) {
defer func() {
<-concurrency.directoryScans
wg.Done()
}()
scanPath(paths[i], fileChannel, statChannel, errorChannel, concurrency, formats)
}(i)
}
go func() {
wg.Wait()
done <- true
}()
Poll:
for {
select {
case p := <-fileChannel:
list = append(list, p)
case s := <-statChannel:
stats.filesMatched = stats.filesMatched + s.filesMatched
stats.filesSkipped = stats.filesSkipped + s.filesSkipped
stats.directoriesMatched = stats.directoriesMatched + s.directoriesMatched
stats.directoriesSkipped = stats.directoriesSkipped + s.directoriesSkipped
case e := <-errorChannel:
return []string{}, e
case <-done:
break Poll
}
}
if stats.filesMatched < 1 {
fmt.Println("No files matched")
return []string{}, nil
}
if Verbose {
fmt.Printf("%s | Indexed %d/%d files across %d/%d directories in %s\n",
time.Now().Format(logDate),
stats.filesMatched,
stats.filesMatched+stats.filesSkipped,
stats.directoriesMatched,
stats.directoriesMatched+stats.directoriesSkipped,
time.Since(startTime),
)
}
return list, nil
}
func fileList(paths []string, filters *filters, sort string, cache *fileCache, formats *types.Types) ([]string, error) {
switch {
case Cache && !cache.isEmpty() && filters.isEmpty():
return cache.List(), nil
case Cache && !cache.isEmpty() && !filters.isEmpty():
return filters.apply(cache.List()), nil
case Cache && cache.isEmpty() && !filters.isEmpty():
list, err := scanPaths(paths, sort, cache, formats)
if err != nil {
return []string{}, err
}
cache.set(list)
return filters.apply(cache.List()), nil
case Cache && cache.isEmpty() && filters.isEmpty():
list, err := scanPaths(paths, sort, cache, formats)
if err != nil {
return []string{}, err
}
cache.set(list)
return cache.List(), nil
case !Cache && !filters.isEmpty():
list, err := scanPaths(paths, sort, cache, formats)
if err != nil {
return []string{}, err
}
return filters.apply(list), nil
default:
list, err := scanPaths(paths, sort, cache, formats)
if err != nil {
return []string{}, err
}
return list, nil
}
}
func pickFile(args []string, filters *filters, sort string, cache *fileCache, formats *types.Types) (string, error) {
list, err := fileList(args, filters, sort, cache, formats)
if err != nil {
return "", err
}
fileCount := len(list)
if fileCount < 1 {
return "", ErrNoMediaFound
}
r, err := rand.Int(rand.Reader, big.NewInt(int64(fileCount)))
if err != nil {
return "", err
}
val, err := strconv.Atoi(strconv.FormatInt(r.Int64(), 10))
if err != nil {
return "", err
}
return list[val], nil
}
func normalizePath(path string) (string, error) {
homeDir, err := os.UserHomeDir()
if err != nil {
return "", err
}
if path == "~" {
path = homeDir
} else if strings.HasPrefix(path, "~/") {
path = filepath.Join(homeDir, path[2:])
}
path, err = filepath.EvalSymlinks(path)
if err != nil {
return "", err
}
absolutePath, err := filepath.Abs(path)
if err != nil {
return "", err
}
return absolutePath, nil
}
func validatePaths(args []string, formats *types.Types) ([]string, error) {
var paths []string
var pathList strings.Builder
pathList.WriteString("Paths:\n")
for i := 0; i < len(args); i++ {
path, err := normalizePath(args[i])
if err != nil {
return nil, err
}
pathMatches := (args[i] == path)
hasSupportedFiles, err := pathHasSupportedFiles(path, formats)
if err != nil {
return nil, err
}
var addPath bool = false
switch {
case pathMatches && hasSupportedFiles:
pathList.WriteString(fmt.Sprintf("%s\n", args[i]))
addPath = true
case !pathMatches && hasSupportedFiles:
pathList.WriteString(fmt.Sprintf("%s (resolved to %s)\n", args[i], path))
addPath = true
case pathMatches && !hasSupportedFiles:
pathList.WriteString(fmt.Sprintf("%s [No supported files found]\n", args[i]))
case !pathMatches && !hasSupportedFiles:
pathList.WriteString(fmt.Sprintf("%s (resolved to %s) [No supported files found]\n", args[i], path))
}
if addPath {
paths = append(paths, path)
}
}
if len(paths) > 0 {
fmt.Println(pathList.String())
}
return paths, nil
}