Files
mangaBookmark/backend/internal/session/session.go
T
sulthan 180ee78b1f Add comix.to and kagane.to support (#13)
Tracks read progress on comix.to and kagane.to alongside asura and demonic, in both the userscript and the backend.

Implements `docs/superpowers/plans/2026-08-03-comix-kagane-support.md`.

## Userscript

- `comix` adapter — `/title/<id>-<slug>`; only the id prefix is identity (the slug follows the title). No `og:image`, so the cover is matched by `alt`.
- `kagane` adapter — reader URLs are uuids with no chapter number, so it comes out of `og:title`; anchor scanning is structurally impossible, replaced by `latestChapterFromApi` against kagane's same-origin JSON API.
- `seriesId` threaded through `latestChapterFromAnchors` so comix can scope its scan to its own series and a recommendation strip cannot win the maximum.
- `@match` for both hosts, panel chips, v1.6.0.

## Backend

- `latestChapterFrom` cases: comix parses the SSR JSON state blob (`latestChapterUrl`, scoped to the series id); kagane parses API JSON (`chapter_no`).
- Poller allowlist extended; `Poller.BrowserFetch` with `fetcherFor(site)` routes kagane to a browser fetcher. Nil means kagane is not polled at all — never a fallback to the TLS fetcher, which would only ever retrieve a challenge page.
- `BrowserFetcher`: chromedp against a `headless-shell` sidecar. kagane sits behind a Cloudflare JS challenge that no TLS fingerprint clears, and the request is made inside the page rather than by replaying `cf_clearance`.
- `BROWSER_WS_URL` wiring, sidecar in both compose files (no `ports:`, dedicated non-external network), Dockerfile on `golang:1.26-alpine` — chromedp requires go 1.26.
- Web UI `--comix` / `--kagane` tokens in both colour branches.

## Notes for review

- `series_url` is client-supplied and a headless browser is a strong SSRF primitive, so kagane's host is pinned twice: in `fetchableSeriesURL` and again in `kaganeAPIURL`.
- Three chained defects found during verification made the browser path dead under Compose (sidecar flag collision, Chrome's Host-header DNS-rebinding check, the wrong chromedp option). Fixed; the compose comments record the wrong configurations too, so they don't get "simplified" back.
- `ALLOWED_ORIGINS` now includes both new origins. Without it every write from comix/kagane silently fails CORS preflight, parks in the retry queue, and drops at the cap.

## Verification

221 backend tests, 32 userscript tests, static `CGO_ENABLED=0` build, both compose configs.

Two gaps, both real:

1. The userscript on live pages via Violentmonkey needs a human browser profile — not run. Check: comix series page (title/cover, no chapter), comix chapter page (records the number; an *older* chapter must not regress it), comix SPA navigation without reload, kagane series page (og:image cover), kagane reader (number from `og:title`), both chips opening the right sites.
2. The kagane browser path has not completed end-to-end anywhere. Dial/navigate/fetch is confirmed, but Cloudflare 403'd headless-shell's Chrome on every attempt from the dev sandbox, and comix's poll-through-Docker was blocked by that environment's TLS interception. Both environment-dependent rather than branch defects — the first real deploy is the actual verification.

Reviewed-on: #13
Co-authored-by: Sulthan Zaki <sultankiki05@gmail.com>
Co-committed-by: Sulthan Zaki <sultankiki05@gmail.com>
2026-08-03 19:53:45 +07:00

189 lines
5.9 KiB
Go

package session
import (
"crypto/hmac"
"crypto/sha256"
"crypto/subtle"
"encoding/base64"
"net"
"net/http"
"strconv"
"strings"
"sync"
"time"
)
const (
CookieName = "mangabm_session"
// 60 days: long enough that a phone stays logged in between reading spells.
sessionTTL = 60 * 24 * time.Hour
// Domain separation, so the session key can never collide with any other
// use of the secrets it is derived from. Changing this string logs
// everyone out.
sessionKeyPurpose = "mangabm-web-session-v1"
)
// Key derives the cookie-signing key from both secrets. Sessions are
// stateless — there is no session table — so rotating either API_TOKEN or
// WEB_PASSWORD invalidates every outstanding cookie at once. The \x00
// separator prevents the concatenation ambiguity a bare apiToken+webPassword
// would have (e.g. "ab"+"c" colliding with "a"+"bc").
func Key(apiToken, webPassword string) []byte {
sum := sha256.Sum256([]byte(apiToken + "\x00" + webPassword + sessionKeyPurpose))
return sum[:]
}
// Sign encodes "<expiryMs>.<base64url HMAC(expiryMs)>".
func Sign(key []byte, expiryMs int64) string {
payload := strconv.FormatInt(expiryMs, 10)
return payload + "." + sessionMAC(key, payload)
}
func sessionMAC(key []byte, payload string) string {
mac := hmac.New(sha256.New, key)
mac.Write([]byte(payload))
return base64.RawURLEncoding.EncodeToString(mac.Sum(nil))
}
// Verify checks shape, then expiry, then the signature — in that order.
// The signature comparison is constant-time; the checks before it only look at
// data the holder already supplied, so their timing leaks nothing.
func Verify(key []byte, value string, nowMs int64) bool {
payload, sig, ok := strings.Cut(value, ".")
if !ok {
return false
}
expiry, err := strconv.ParseInt(payload, 10, 64)
if err != nil || expiry <= nowMs {
return false
}
want := sessionMAC(key, payload)
return subtle.ConstantTimeCompare([]byte(sig), []byte(want)) == 1
}
// isHTTPS reports whether the browser's connection is encrypted. Behind Traefik
// the Go server itself speaks plain HTTP, so the forwarded header is the only
// signal; without this check the Secure cookie would never be set in
// production, and setting it unconditionally would break http://localhost dev.
func isHTTPS(r *http.Request) bool {
return r.TLS != nil || r.Header.Get("X-Forwarded-Proto") == "https"
}
func SetCookie(w http.ResponseWriter, r *http.Request, key []byte) {
http.SetCookie(w, &http.Cookie{
Name: CookieName,
Value: Sign(key, time.Now().Add(sessionTTL).UnixMilli()),
Path: "/",
MaxAge: int(sessionTTL / time.Second),
HttpOnly: true,
Secure: isHTTPS(r),
SameSite: http.SameSiteLaxMode,
})
}
func ClearCookie(w http.ResponseWriter, r *http.Request) {
http.SetCookie(w, &http.Cookie{
Name: CookieName,
Value: "",
Path: "/",
MaxAge: -1,
HttpOnly: true,
Secure: isHTTPS(r),
SameSite: http.SameSiteLaxMode,
})
}
const (
MaxFailures = 10
Window = 20 * time.Minute
)
// ClientIP returns the address the reverse proxy actually observed.
//
// Traefik appends the peer address to whatever X-Forwarded-For the client sent,
// so the leftmost entry is attacker-controlled and the rightmost is not. Go's
// Header.Get would only read the first header line, which a client can preempt
// by sending its own; Values covers every line so the true last hop is found.
// RemoteAddr is useless behind the proxy — it is always the Traefik container —
// so it serves only as the direct-connection fallback for local development.
func ClientIP(r *http.Request) string {
if vals := r.Header.Values("X-Forwarded-For"); len(vals) > 0 {
hops := strings.Split(vals[len(vals)-1], ",")
if ip := strings.TrimSpace(hops[len(hops)-1]); ip != "" {
return ip
}
}
host, _, err := net.SplitHostPort(r.RemoteAddr)
if err != nil {
return r.RemoteAddr
}
return host
}
// LoginLimiter throttles password guessing: MaxFailures failures inside a
// rolling Window blocks further attempts from that IP until the oldest one
// ages out. There is no permanent ban and no unlock step.
//
// Behind carrier-grade NAT this budget is shared with every other subscriber on
// the same public address, so a stranger can lock the owner out for up to one
// window. That is accepted: the block self-heals, and ten attempts is generous
// for a mistyped password.
//
// State is in memory and per-process, so a restart clears it. Entries are
// pruned lazily on access; for a single-user deployment the map cannot grow
// past the handful of addresses that ever attempt a login.
type LoginLimiter struct {
mu sync.Mutex
failures map[string][]time.Time
}
func NewLoginLimiter() *LoginLimiter {
return &LoginLimiter{failures: make(map[string][]time.Time)}
}
// retryAfter returns how long ip must wait, or zero when it may try now.
func (l *LoginLimiter) RetryAfter(ip string, now time.Time) time.Duration {
l.mu.Lock()
defer l.mu.Unlock()
recent := l.pruneLocked(ip, now)
if len(recent) < MaxFailures {
return 0
}
return recent[0].Add(Window).Sub(now)
}
func (l *LoginLimiter) Fail(ip string, now time.Time) {
l.mu.Lock()
defer l.mu.Unlock()
l.failures[ip] = append(l.pruneLocked(ip, now), now)
}
func (l *LoginLimiter) Reset(ip string) {
l.mu.Lock()
defer l.mu.Unlock()
delete(l.failures, ip)
}
// pruneLocked drops attempts older than the window and returns what is left.
// The caller must hold l.mu.
func (l *LoginLimiter) pruneLocked(ip string, now time.Time) []time.Time {
cutoff := now.Add(-Window)
// In-place filter: kept reuses the backing array of the slice being
// ranged over. Safe to alias because append writes at index len(kept),
// which is always <= the range index i, and element i is read before
// that write — the write cursor can never overtake the read cursor.
kept := l.failures[ip][:0]
for _, at := range l.failures[ip] {
if at.After(cutoff) {
kept = append(kept, at)
}
}
if len(kept) == 0 {
delete(l.failures, ip)
return nil
}
l.failures[ip] = kept
return kept
}