Share one fetch and transcode among concurrent misses (closes #65) #160

Open
clawbot wants to merge 2 commits from issue-65-share-concurrent-misses into next
Showing only changes of commit bcd5363d99 - Show all commits
@@ -0,0 +1,444 @@
package imgcache
import (
"bytes"
"context"
"errors"
"image/jpeg"
"io"
"io/fs"
"strings"
"sync"
"sync/atomic"
"testing"
"time"
"sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/magic"
)
// arrivalWait is how long a test gives requests it has started to reach the
// point where they wait for a held fetch.
const arrivalWait = 100 * time.Millisecond
// heldFetcher counts the fetches it is asked for and holds each one until
// releaseFetches is called, so that a test can have requests arrive while a
// fetch is in progress. started receives once for every fetch.
type heldFetcher struct {
upstream httpfetcher.Fetcher
fetches atomic.Int32
started chan struct{}
release chan struct{}
releaseOnce sync.Once
}
func (f *heldFetcher) Fetch(
ctx context.Context, url string,
) (*httpfetcher.FetchResult, error) {
f.fetches.Add(1)
f.started <- struct{}{}
select {
case <-f.release:
case <-ctx.Done():
return nil, ctx.Err()
}
return f.upstream.Fetch(ctx, url)
}
// releaseFetches lets every held fetch, and every later one, go on.
func (f *heldFetcher) releaseFetches() {
f.releaseOnce.Do(func() { close(f.release) })
}
// setupHeldFetchService returns a test service whose fetches go through a
// heldFetcher. Its database is limited to one connection: each connection to
// an in-memory SQLite database opens a new, empty one, so requests running at
// once must share the connection that holds the schema.
func setupHeldFetchService(t *testing.T) (*Service, *TestFixtures, *heldFetcher) {
t.Helper()
svc, fixtures := SetupTestService(t)
svc.cache.db.SetMaxOpenConns(1)
fetcher := &heldFetcher{
upstream: svc.fetcher,
started: make(chan struct{}, 100),
release: make(chan struct{}),
}
svc.fetcher = fetcher
t.Cleanup(fetcher.releaseFetches)
return svc, fixtures, fetcher
}
// photoVariant asks for the test photo, 100x100, at 50x25 as a JPEG of the
// given quality and fit mode. Each call returns a new request, as Get writes
// to the request it is given.
func photoVariant(fixtures *TestFixtures, quality int, fit FitMode) *ImageRequest {
return &ImageRequest{
SourceHost: fixtures.GoodHost,
SourcePath: testPathPhoto,
Size: Size{Width: 50, Height: 25},
Format: FormatJPEG,
Quality: quality,
FitMode: fit,
}
}
// getResult is what one Get call returned, with the image read out.
type getResult struct {
image []byte
err error
}
// startGet calls Get in a goroutine of its own and delivers what it returned
// on the channel.
func startGet(
ctx context.Context, svc *Service, req *ImageRequest,
) <-chan getResult {
results := make(chan getResult, 1)
go func() {
resp, err := svc.Get(ctx, req)
if err != nil {
results <- getResult{err: err}
return
}
defer func() { _ = resp.Content.Close() }()
image, err := io.ReadAll(resp.Content)
results <- getResult{image: image, err: err}
}()
return results
}
// jpegSize returns the width and height of the JPEG image in data, or 0 and 0
// if data is not one.
func jpegSize(data []byte) (int, int) {
config, err := jpeg.DecodeConfig(bytes.NewReader(data))
if err != nil {
return 0, 0
}
return config.Width, config.Height
}
// TestService_Get_ConcurrentMissesShareOneFetch starts several requests for
// one uncached variant while the first one's fetch is held. Between them they
// must fetch the source once and transcode it once, every one must be answered
// with the same 50x25 JPEG, and each must count one miss.
func TestService_Get_ConcurrentMissesShareOneFetch(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
const requests = 8
pending := make([]<-chan getResult, 0, requests)
for range requests {
pending = append(pending,
startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover)))
}
<-fetcher.started
time.Sleep(arrivalWait)
fetcher.releaseFetches()
var first []byte
for i, results := range pending {
got := <-results
if got.err != nil {
t.Fatalf("request %d: Get() error = %v", i, got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("request %d: image is %dx%d, want a 50x25 JPEG", i, width, height)
}
if first == nil {
first = got.image
} else if !bytes.Equal(got.image, first) {
t.Errorf("request %d: image differs from request 0's", i)
}
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("%d requests made %d upstream fetches, want 1", requests, fetches)
}
// NewTestFS builds the same files the test service's fetcher serves.
testFS, _ := NewTestFS(t)
photo, err := fs.ReadFile(testFS, fixtures.GoodHostJPEG)
if err != nil {
t.Fatal(err)
}
want := cacheStatsCounters{0, requests, 1, int64(len(photo)), 1}
if got := readCacheStatsCounters(t, svc.cache); got != want {
t.Errorf("counters = %+v, want %+v", got, want)
}
}
// TestService_Get_ConcurrentVariantsStayApart requests three variants of the
// test photo at once that differ only in quality or fit. Each must be made by
// a fetch and a transcode of its own, and each answer must be its own variant.
func TestService_Get_ConcurrentVariantsStayApart(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
cover := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
lowQuality := startGet(t.Context(), svc, photoVariant(fixtures, 40, FitCover))
contain := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitContain))
for range 3 {
select {
case <-fetcher.started:
case <-time.After(5 * time.Second):
t.Fatal("fewer fetches started than variants requested: " +
"variants differing in quality or fit were merged")
}
}
fetcher.releaseFetches()
images := make(map[string][]byte)
for _, variant := range []struct {
name string
results <-chan getResult
width, height int
}{
{"q=85 fit=cover", cover, 50, 25},
{"q=40 fit=cover", lowQuality, 50, 25},
{"q=85 fit=contain", contain, 25, 25},
} {
got := <-variant.results
if got.err != nil {
t.Fatalf("%s: Get() error = %v", variant.name, got.err)
}
width, height := jpegSize(got.image)
if width != variant.width || height != variant.height {
t.Errorf("%s: image is %dx%d, want a %dx%d JPEG", variant.name,
width, height, variant.width, variant.height)
}
images[variant.name] = got.image
}
if bytes.Equal(images["q=85 fit=cover"], images["q=40 fit=cover"]) {
t.Error("q=40 was answered with the q=85 image")
}
}
// TestService_Get_WaiterStopsWhenItsContextEnds has a second request for a
// variant join the first one's held fetch, then ends the second request's
// context. The second request must return at once with the context's error,
// while the fetch is still held, and the first must still be answered.
func TestService_Get_WaiterStopsWhenItsContextEnds(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
first := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
<-fetcher.started
waiterCtx, cancelWaiter := context.WithCancel(t.Context())
waiter := startGet(waiterCtx, svc, photoVariant(fixtures, 85, FitCover))
time.Sleep(arrivalWait)
cancelWaiter()
select {
case got := <-waiter:
if !errors.Is(got.err, context.Canceled) {
t.Errorf("waiting request: Get() error = %v, want %v",
got.err, context.Canceled)
}
case <-time.After(time.Second):
t.Fatal("waiting request did not return when its context ended")
}
fetcher.releaseFetches()
got := <-first
if got.err != nil {
t.Fatalf("first request: Get() error = %v", got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("first request: image is %dx%d, want a 50x25 JPEG", width, height)
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("upstream fetches = %d, want 1", fetches)
}
}
// TestService_Get_FirstRequestLeavingKeepsTheWork ends the context of the
// request whose fetch is held, after a second request has joined it. The fetch
// and transcode must go on and answer the second request. The first request
// waits for its own work, as every request did before misses were shared, and
// is answered too.
func TestService_Get_FirstRequestLeavingKeepsTheWork(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
firstCtx, cancelFirst := context.WithCancel(t.Context())
first := startGet(firstCtx, svc, photoVariant(fixtures, 85, FitCover))
<-fetcher.started
second := startGet(t.Context(), svc, photoVariant(fixtures, 85, FitCover))
time.Sleep(arrivalWait)
cancelFirst()
fetcher.releaseFetches()
for name, results := range map[string]<-chan getResult{
"first request": first, "second request": second,
} {
got := <-results
if got.err != nil {
t.Fatalf("%s: Get() error = %v", name, got.err)
}
if width, height := jpegSize(got.image); width != 50 || height != 25 {
t.Errorf("%s: image is %dx%d, want a 50x25 JPEG", name, width, height)
}
}
if fetches := fetcher.fetches.Load(); fetches != 1 {
t.Errorf("upstream fetches = %d, want 1", fetches)
}
}
// TestService_Get_ConcurrentMissesShareAFailure has several requests for an
// image that cannot be served arrive while its fetch is held: the one fetch
// answers all of them with its error. The request after them is answered from
// the negative cache when the failure is kept there, and fetches again when it
// is not.
func TestService_Get_ConcurrentMissesShareAFailure(t *testing.T) {
t.Parallel()
tests := []struct {
name string
path string
wantErr error // what every request at once gets
wantNextErr error // what the request after them gets
wantFetches int32 // fetches once the request after them is answered
}{
{"upstream answers 404, kept in the negative cache",
"/images/missing.jpg", httpfetcher.ErrUpstreamError,
ErrNegativeCached, 1},
{"source fails the magic byte check, not kept",
"/images/text.png", magic.ErrUnknownFormat, magic.ErrUnknownFormat, 2},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
request := func() *ImageRequest {
req := photoVariant(fixtures, 85, FitCover)
req.SourcePath = tc.path
return req
}
pending := make([]<-chan getResult, 0, 4)
for range 4 {
pending = append(pending, startGet(t.Context(), svc, request()))
}
<-fetcher.started
time.Sleep(arrivalWait)
fetcher.releaseFetches()
for i, results := range pending {
if got := <-results; !errors.Is(got.err, tc.wantErr) {
t.Errorf("request %d: Get() error = %v, want %v", i, got.err, tc.wantErr)
}
}
_, err := svc.Get(t.Context(), request())
if !errors.Is(err, tc.wantNextErr) {
t.Errorf("next request: Get() error = %v, want %v", err, tc.wantNextErr)
}
if fetches := fetcher.fetches.Load(); fetches != tc.wantFetches {
t.Errorf("upstream fetches = %d, want %d", fetches, tc.wantFetches)
}
})
}
}
// TestService_Get_EndedRequestFetchesNothing checks that a request whose
// context has already ended when it misses the cache starts no fetch.
func TestService_Get_EndedRequestFetchesNothing(t *testing.T) {
t.Parallel()
svc, fixtures, fetcher := setupHeldFetchService(t)
ctx, cancel := context.WithCancel(t.Context())
cancel()
_, err := svc.Get(ctx, photoVariant(fixtures, 85, FitCover))
if !errors.Is(err, context.Canceled) {
t.Errorf("Get() error = %v, want %v", err, context.Canceled)
}
if fetches := fetcher.fetches.Load(); fetches != 0 {
t.Errorf("upstream fetches = %d, want 0", fetches)
}
}
// panickingFetcher panics on every fetch.
type panickingFetcher struct{}
func (panickingFetcher) Fetch(
context.Context, string,
) (*httpfetcher.FetchResult, error) {
panic("upstream fetcher panicked")
}
// TestService_Get_PanicBecomesAnError checks that a panic while a variant is
// being made reaches its request as an error naming the panic, instead of
// being raised again.
func TestService_Get_PanicBecomesAnError(t *testing.T) {
t.Parallel()
svc, fixtures := SetupTestService(t)
svc.fetcher = panickingFetcher{}
var err error
func() {
defer func() {
if recovered := recover(); recovered != nil {
t.Fatalf("Get() panicked: %v", recovered)
}
}()
_, err = svc.Get(t.Context(), photoVariant(fixtures, 85, FitCover))
}()
if err == nil || !strings.Contains(err.Error(), "upstream fetcher panicked") {
t.Errorf("Get() error = %v, want one naming the panic", err)
}
}