Files
remark42/backend/app/store/image/image.go
T
2022-04-26 00:25:09 -05:00

378 lines
11 KiB
Go

// Package image handles storing, resizing and retrieval of images
// Provides Store with Save and Load implementations on top of local file system and bolt db.
// Service object encloses Store and add common methods, this is the one consumer should use.
package image
//go:generate sh -c "mockery -inpkg -name Store -print > /tmp/mock.tmp && mv /tmp/mock.tmp image_mock.go"
import (
"bytes"
"context"
"crypto/sha1" //nolint:gosec // not used for cryptography
"encoding/base64"
"fmt"
"image"
// support gif and jpeg images decoding
_ "image/gif"
_ "image/jpeg"
"image/png"
"io"
"net/http"
"net/url"
"path"
"strings"
"sync"
"sync/atomic"
"time"
"github.com/PuerkitoBio/goquery"
log "github.com/go-pkgz/lgr"
"github.com/hashicorp/go-multierror"
"github.com/rs/xid"
"golang.org/x/image/draw"
)
// Service wraps Store with common functions needed for any store implementation
// It also provides async Submit with func param retrieving all submitting IDs.
// Submitted IDs committed (i.e. moved from staging to final) on ServiceParams.EditDuration expiration.
type Service struct {
ServiceParams
store Store
wg sync.WaitGroup
submitCh chan submitReq
once sync.Once
term int32 // term value used atomically to detect emergency termination
submitCount int32 // atomic increment for counting submitted images
}
// ServiceParams contains externally adjustable parameters of Service
type ServiceParams struct {
EditDuration time.Duration // edit period for comments
ImageAPI string // image api matching path
ProxyAPI string // proxy api matching path
MaxSize int
MaxHeight int
MaxWidth int
}
// StoreInfo contains image store meta information
type StoreInfo struct {
FirstStagingImageTS time.Time
}
// To regenerate mock run from this directory:
// sh -c "mockery -inpkg -name Store -print > /tmp/image-mock.tmp && mv /tmp/image-mock.tmp image_mock.go"
// Store defines interface for saving and loading pictures.
// Declares two-stage save with Commit. Save stores to staging area and Commit moves to the final location.
// Two-stage commit scheme is used for not storing images which are uploaded but later never used in the comments,
// e.g. when somebody uploaded a picture but did not sent the comment.
type Store interface {
Info() (StoreInfo, error) // get meta information about storage
Save(id string, img []byte) error // store image with passed id to staging
Load(id string) ([]byte, error) // load image by ID
ResetCleanupTimer(id string) error // resets cleanup timer for the image, called on comment preview
Commit(id string) error // move image from staging to permanent
Cleanup(ctx context.Context, ttl time.Duration) error // run removal loop for old images on staging
}
const submitQueueSize = 5000
type submitReq struct {
idsFn func() (ids []string)
TS time.Time
}
// NewService returns new Service instance
func NewService(s Store, p ServiceParams) *Service {
return &Service{ServiceParams: p, store: s}
}
// SubmitAndCommit multiple ids immediately
func (s *Service) SubmitAndCommit(idsFn func() []string) error {
errs := new(multierror.Error)
for _, id := range idsFn() {
err := s.store.Commit(id)
if err != nil {
errs = multierror.Append(errs, fmt.Errorf("failed to commit image %s: %w", id, err))
}
}
return errs.ErrorOrNil()
}
// Submit multiple ids via function for delayed commit
func (s *Service) Submit(idsFn func() []string) {
if idsFn == nil || s == nil {
return
}
s.once.Do(func() {
log.Printf("[DEBUG] image submitter activated")
s.submitCh = make(chan submitReq, submitQueueSize)
s.wg.Add(1)
go func() {
defer s.wg.Done()
for req := range s.submitCh {
// wait for EditDuration expiration with emergency pass on term
for atomic.LoadInt32(&s.term) == 0 && time.Since(req.TS) <= s.EditDuration {
time.Sleep(time.Millisecond * 10) // small sleep to relive busy wait but keep reactive for term (close)
}
err := s.SubmitAndCommit(req.idsFn)
if err != nil {
log.Printf("[WARN] image commit error %v", err)
}
atomic.AddInt32(&s.submitCount, -1)
}
log.Printf("[INFO] image submitter terminated")
}()
})
atomic.AddInt32(&s.submitCount, 1)
// reset cleanup timer before submitting the images
// to prevent them from being cleaned up while waiting for EditDuration to expire
for _, imgID := range idsFn() {
_ = s.store.ResetCleanupTimer(imgID)
}
s.submitCh <- submitReq{idsFn: idsFn, TS: time.Now()}
}
// ExtractPictures gets list of images from the doc html and convert from urls to ids, i.e. user/pic.png
func (s *Service) ExtractPictures(commentHTML string) (ids []string) {
doc, err := goquery.NewDocumentFromReader(strings.NewReader(commentHTML))
if err != nil {
log.Printf("[ERROR] can't parse commentHTML to parse images: %q, error: %v", commentHTML, err)
return nil
}
doc.Find("img").Each(func(i int, sl *goquery.Selection) {
if im, ok := sl.Attr("src"); ok {
if strings.Contains(im, s.ImageAPI) {
elems := strings.Split(im, "/")
if len(elems) >= 2 {
id := elems[len(elems)-2] + "/" + elems[len(elems)-1]
ids = append(ids, id)
}
}
if strings.Contains(im, s.ProxyAPI) {
proxiedURL, err := url.Parse(im)
if err != nil {
return
}
imgURL, err := base64.URLEncoding.DecodeString(proxiedURL.Query().Get("src"))
if err != nil {
return
}
imgID, err := CachedImgID(string(imgURL))
if err != nil {
return
}
ids = append(ids, imgID)
}
}
})
return ids
}
// Cleanup runs periodic cleanup with 1.5*ServiceParams.EditDuration. Blocking loop, should be called inside of goroutine by consumer
func (s *Service) Cleanup(ctx context.Context) {
cleanupTTL := s.EditDuration * 15 / 10 // cleanup images older than 1.5 * EditDuration
log.Printf("[INFO] start pictures cleanup, staging ttl=%v", cleanupTTL)
for {
select {
case <-ctx.Done():
log.Printf("[INFO] cleanup terminated, %v", ctx.Err())
return
case <-time.After(cleanupTTL):
if err := s.store.Cleanup(ctx, cleanupTTL); err != nil {
log.Printf("[WARN] failed to cleanup, %v", err)
}
}
}
}
// ResetCleanupTimer resets cleanup timer for the image
func (s *Service) ResetCleanupTimer(id string) error {
return s.store.ResetCleanupTimer(id)
}
// Info returns meta information about storage
func (s *Service) Info() (StoreInfo, error) {
return s.store.Info()
}
// Close flushes all in-progress submits and enforces waiting commits
func (s *Service) Close(ctx context.Context) {
log.Printf("[INFO] close image service ")
waitForTerm := func(ctx context.Context) {
ticker := time.NewTicker(10 * time.Millisecond)
defer ticker.Stop()
for {
select {
case <-ctx.Done():
return
case <-ticker.C:
if atomic.LoadInt32(&s.submitCount) == 0 {
return
}
}
}
}
atomic.StoreInt32(&s.term, 1) // enforce non-delayed commits for all ids left in submitCh
waitForTerm(ctx)
if s.submitCh != nil {
close(s.submitCh)
}
s.wg.Wait()
}
// Load wraps storage Load function.
func (s *Service) Load(id string) ([]byte, error) {
return s.store.Load(id)
}
// Save wraps storage Save function, validating and resizing the image before calling it.
func (s *Service) Save(userID string, r io.Reader) (id string, err error) {
id = path.Join(userID, guid())
return id, s.SaveWithID(id, r)
}
// SaveWithID wraps storage Save function, validating and resizing the image before calling it.
func (s *Service) SaveWithID(id string, r io.Reader) error {
img, err := s.prepareImage(r)
if err != nil {
return err
}
return s.store.Save(id, img)
}
// ImgContentType returns content type for provided image
func (s *Service) ImgContentType(img []byte) string {
contentType := http.DetectContentType(img)
if contentType == "application/octet-stream" {
// replace generic fallback with one which make sense in our scenario
return "image/*"
}
return contentType
}
// prepareImage calls readAndValidateImage and resize on provided image.
func (s *Service) prepareImage(r io.Reader) ([]byte, error) {
data, err := readAndValidateImage(r, s.MaxSize)
if err != nil {
return nil, fmt.Errorf("can't load image: %w", err)
}
data = resize(data, s.MaxWidth, s.MaxHeight)
return data, nil
}
// resize an image of supported format (PNG, JPG, GIF) to the size of "limit" px of
// the biggest side (width or height) preserving aspect ratio.
// Returns original data if resizing is not needed or failed.
// If resized the result will be for png format
func resize(data []byte, limitW, limitH int) []byte {
if data == nil || limitW <= 0 || limitH <= 0 {
return data
}
src, _, err := image.Decode(bytes.NewBuffer(data))
if err != nil {
log.Printf("[WARN] can't decode image, %s", err)
return data
}
bounds := src.Bounds()
w, h := bounds.Dx(), bounds.Dy()
if w <= limitW && h <= limitH || w <= 0 || h <= 0 {
log.Printf("[DEBUG] resizing image is smaller that the limit or has 0 size")
return data
}
newW, newH := getProportionalSizes(w, h, limitW, limitH)
m := image.NewRGBA(image.Rect(0, 0, newW, newH))
draw.CatmullRom.Scale(m, m.Bounds(), src, src.Bounds(), draw.Src, nil)
var out bytes.Buffer
if err = png.Encode(&out, m); err != nil {
log.Printf("[WARN] can't encode resized image to png, %s", err)
return data
}
return out.Bytes()
}
// getProportionalSizes returns width and height resized by both dimensions proportionally
func getProportionalSizes(srcW, srcH, limitW, limitH int) (resW, resH int) {
if srcW <= limitW && srcH <= limitH {
return srcW, srcH
}
ratioW := float64(srcW) / float64(limitW)
propH := float64(srcH) / ratioW
ratioH := float64(srcH) / float64(limitH)
propW := float64(srcW) / ratioH
if int(propH) > limitH {
return int(propW), limitH
}
return limitW, int(propH)
}
// check if file f is a valid image format, i.e. gif, png, jpeg or webp and reads up to maxSize.
func readAndValidateImage(r io.Reader, maxSize int) ([]byte, error) {
isValidImage := func(b []byte) bool {
ct := http.DetectContentType(b)
return ct == "image/gif" || ct == "image/png" || ct == "image/jpeg" || ct == "image/webp"
}
lr := io.LimitReader(r, int64(maxSize)+1)
data, err := io.ReadAll(lr)
if err != nil {
return nil, err
}
if len(data) > maxSize {
return nil, fmt.Errorf("file is too large (limit=%d)", maxSize)
}
// read header first, needs it to check if data is valid png/gif/jpeg
if !isValidImage(data[:512]) {
return nil, fmt.Errorf("file format not allowed")
}
return data, nil
}
// guid makes a globally unique id
func guid() string {
return xid.New().String()
}
// Sha1Str converts provided string to sha1
func Sha1Str(s string) string {
return fmt.Sprintf("%x", sha1.Sum([]byte(s))) //nolint:gosec // not used for cryptography
}
// CachedImgID generates ID for a cached image.
// ID would look like: "cached_images/<sha1-of-image-url-hostname>-<sha1-of-image-entire-url>"
// <sha1-of-image-url-hostname> - would allow us to identify all images from particular site if ever needed
// <sha1-of-image-entire-url> - would allow us to avoid storing duplicates of the same image
// (as accurate as deduplication based on potentially mutable url can be)
func CachedImgID(imgURL string) (string, error) {
parsedURL, err := url.Parse(imgURL)
if err != nil {
return "", fmt.Errorf("can parse url %s: %w", imgURL, err)
}
return fmt.Sprintf("cached_images/%s-%s", Sha1Str(parsedURL.Hostname()), Sha1Str(imgURL)), nil
}