Files
pixa/internal/handlers/handlers.go
T
clawbot cca2e3f926
check / check (push) Failing after 2s
Test the image proxy flow end to end (closes #80)
TestImageProxyFlow in internal/server starts the database, handlers and
middleware from the constructors pixad uses, with a fresh state
directory, and replaces only the upstream origin with an httptest
server. For a resize with a format change and for orig it checks a 200
MISS with the right type and size, then a HIT after one upstream request,
and the files and rows the cache keeps. Two optional test seams make
that possible: httpfetcher.Config.DialContext and handlers.Params.Fetcher.
pixad sets neither and the config file and environment cannot, and tests
show production still uses the checked dialer and builds its own fetcher.

Model: opus-5-5
2026-10-04 23:24:46 +02:00

197 lines
5.6 KiB
Go

// Package handlers provides HTTP request handlers.
package handlers
import (
"context"
"encoding/json"
"log/slog"
"net/http"
"time"
"go.uber.org/fx"
"sneak.berlin/go/pixa/internal/allowlist"
"sneak.berlin/go/pixa/internal/config"
"sneak.berlin/go/pixa/internal/database"
"sneak.berlin/go/pixa/internal/encurl"
"sneak.berlin/go/pixa/internal/healthcheck"
"sneak.berlin/go/pixa/internal/httpfetcher"
"sneak.berlin/go/pixa/internal/imgcache"
"sneak.berlin/go/pixa/internal/logger"
"sneak.berlin/go/pixa/internal/session"
)
// Params defines dependencies for Handlers.
type Params struct {
fx.In
Logger *logger.Logger
Healthcheck *healthcheck.Healthcheck
Database *database.Database
Config *config.Config
// Fetcher, when provided, fetches upstream images in place of the
// fetcher the handlers build from the config. Only tests provide one;
// pixad does not.
Fetcher httpfetcher.Fetcher `optional:"true"`
}
// Handlers provides HTTP request handlers.
type Handlers struct {
log *slog.Logger
hc *healthcheck.Healthcheck
db *database.Database
config *config.Config
fetcher httpfetcher.Fetcher
imgSvc *imgcache.Service
imgCache *imgcache.Cache
sessMgr *session.Manager
encGen *encurl.Generator
csrfProtect func(http.Handler) http.Handler
// refererBlocklist matches the hosts of referer_blocklist; its IsAllowed
// reports whether a URL's host is on that list.
refererBlocklist *allowlist.HostAllowList
}
// New creates a new Handlers instance.
func New(lc fx.Lifecycle, params Params) (*Handlers, error) {
csrfProtect, err := newCSRFProtect(params.Config.SigningKey, params.Config.Debug)
if err != nil {
return nil, err
}
s := &Handlers{
log: params.Logger.Get(),
hc: params.Healthcheck,
db: params.Database,
config: params.Config,
fetcher: params.Fetcher,
csrfProtect: csrfProtect,
refererBlocklist: allowlist.New(params.Config.RefererBlocklist),
}
lc.Append(fx.Hook{
//nolint:contextcheck // the eviction loop outlives OnStart; OnStop cancels it
OnStart: func(_ context.Context) error {
return s.initImageService()
},
OnStop: func(ctx context.Context) error {
if s.imgCache == nil {
return nil
}
return s.imgCache.StopEviction(ctx)
},
})
return s, nil
}
// WaitForProcessing waits until no image is being processed, or until ctx
// ends, and returns how many images were still being processed then.
func (s *Handlers) WaitForProcessing(ctx context.Context) int {
return s.imgSvc.WaitForProcessing(ctx)
}
// newCacheConfig builds the image cache's configuration from cfg.
// cache_max_bytes: 0 disables the disk cache entirely; any other value
// is the eviction limit in bytes; when it is omitted, the cache works
// out the default limit itself.
func newCacheConfig(cfg *config.Config, log *slog.Logger) imgcache.CacheConfig {
return imgcache.CacheConfig{
StateDir: cfg.StateDir,
CacheTTL: imgcache.DefaultCacheTTL,
NegativeTTL: imgcache.DefaultNegativeTTL,
MaxBytes: cfg.CacheMaxBytes,
UseDefaultMaxBytes: !cfg.CacheMaxBytesExplicit,
DisableDiskCache: cfg.CacheMaxBytesExplicit && cfg.CacheMaxBytes == 0,
Logger: log,
}
}
// initImageService initializes the image cache and service.
func (s *Handlers) initImageService() error {
cache, err := imgcache.NewCache(s.db.DB(), newCacheConfig(s.config, s.log))
if err != nil {
return err
}
s.imgCache = cache
// Background eviction: startup reconciliation, then periodic and
// write-pressure passes. No-op when the disk cache is disabled.
cache.StartEviction(imgcache.DefaultEvictionInterval)
// Create the fetcher config
fetcherCfg := httpfetcher.DefaultConfig()
fetcherCfg.AllowHTTP = s.config.AllowHTTP
fetcherCfg.Timeout = s.config.UpstreamFetchTimeout
fetcherCfg.MaxResponseSize = s.config.UpstreamMaxResponseSize
if s.config.UpstreamConnectionsPerHost > 0 {
fetcherCfg.MaxConnectionsPerHost = s.config.UpstreamConnectionsPerHost
}
fetcherCfg.MaxConnections = s.config.UpstreamConnections
fetcherCfg.BlockedNetworks = s.config.BlockedNetworks
// Create the service. With no fetcher provided, it builds its own from
// fetcherCfg.
svc, err := imgcache.NewService(&imgcache.ServiceConfig{
Cache: cache,
FetcherConfig: fetcherCfg,
Fetcher: s.fetcher,
SigningKey: s.config.SigningKey,
Allowlist: s.config.AllowlistHosts,
MaxConcurrentProcessing: s.config.MaxConcurrentProcessing,
Logger: s.log,
})
if err != nil {
return err
}
s.imgSvc = svc
s.log.Info("image service initialized")
// Initialize session manager (signing key is validated at config load
// time). Session cookies are always Secure/HttpOnly/SameSite=Strict.
sessMgr, err := session.NewManager(s.config.SigningKey)
if err != nil {
return err
}
s.sessMgr = sessMgr
// Initialize encrypted URL generator
encGen, err := encurl.NewGenerator(s.config.SigningKey)
if err != nil {
return err
}
s.encGen = encGen
s.log.Info("session manager and URL generator initialized")
return nil
}
func (s *Handlers) respondJSON(w http.ResponseWriter, data any, status int) {
w.Header().Set("Content-Type", "application/json")
w.WriteHeader(status)
if data != nil {
err := json.NewEncoder(w).Encode(data)
if err != nil {
s.log.Error("json encode error", "error", err)
}
}
}
func (s *Handlers) respondError(w http.ResponseWriter, message string, status int) {
s.respondJSON(w, map[string]any{
"error": message,
"status": status,
"timestamp": time.Now().UTC().Format(time.RFC3339),
}, status)
}