Files
webhooker/internal/handlers/handlers.go
sneak 6fce522016
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Verify login credentials before spending rate-limit budget (closes #150)
With TRUSTED_PROXIES empty behind the reverse proxy production is
required to run behind, every login POST keyed on the proxy's address
and shared one 5/minute bucket. A stranger sending five POSTs a
minute -- 0.08 requests per second, from anywhere -- kept that bucket
permanently full, and the operator's own correct password was answered
429 indefinitely with no second administrative path.

The login POST no longer has a pre-emptive limiter. The handler
verifies credentials first and spends budget only on a FAILED attempt,
so a correct password is never throttled whatever the counters hold.
Three things follow, and are implemented together because the first is
unsafe without the other two:

- Failures are counted per (client bucket, submitted username), five
  per minute, after which further failures get 429 with a Retry-After.
  A successful login clears the counter, so mistyping and then
  succeeding does not leave the operator throttled.
- Both key sets are capped at 1024 entries. The submitted username is
  attacker-controlled, so past the first cap failures fall back to a
  counter keyed on the client alone, and past both caps a failure is
  answered as throttled without being recorded. Tracked state stays
  under half a megabyte and does not grow with invented usernames.
- Concurrent Argon2id verifications are capped at two, a 128 MB
  ceiling at 64 MB per hash, and the queue for those slots is capped
  at 16 waiters. Every password-hashing endpoint takes a slot,
  including the password-change endpoint, which holds one across both
  its hashes. A request that waits five seconds without a slot is
  answered 503, and one that arrives with the queue already full is
  shed with 503 immediately rather than joining it. Bounding the wait
  alone would not bound memory, and the queue depth is sized from what
  a parked waiter measurably retains rather than from the 1 MB body
  cap, which bounds only the raw body read. The body-cap, CSRF and
  form-parsing middleware all run before the guard, so a waiter holds
  its parsed form plus its request header block for the whole wait.
  Measured on the pinned go1.26.1 toolchain as the HeapAlloc delta
  across two GCs with 64 waiters parked in the handler: an ordinary
  two-field login form retains ~0 MB, a 1 MB urlencoded body at Go's
  10,000-parameter parse cap retains 2.82 MB (3.09 MB with %41
  escapes), and the ~0.9 MB of headers the 1 MB header cap allows
  takes it to 4.18 MB. The retained parse and the header block
  dominate, not the raw body. So 16 waiters: 16 x 4.18 MB is about
  67 MB of committed queue memory, and two slots drain a full 16-deep
  queue in about 0.6 s, far inside the deadline. Peak commitment for
  the endpoint is about 203 MB — 128 MB of Argon2id plus the 18
  requests holding a parsed form, 16 queued and the 2 being hashed, at
  about 75 MB. That 203 MB is live commitment, not resident size: the
  Go collector lets the heap reach roughly twice the live set before
  collecting, and the review measured a peak HeapAlloc of 392 MB under
  18 adversarial requests, so the README says to provision on the
  order of 400 MB.

An unknown username is verified against a dummy hash instead of
returning early, so a nonexistent account costs the same time as a
real one and the response cannot be used to enumerate usernames.

The password-change limiter is unchanged: RequireAuth runs ahead of
it, so only a request already carrying a valid session reaches its
bucket.

Two consequences are documented rather than fixed, because they follow
from the shape the issue asks for. Online guessing throughput rises
from 5 a minute to roughly 27 a second, about 2.3 million a day: the
credential check always precedes the counter, so the 429 is a label on
the response rather than a gate in front of the hash, and what bounds
brute force is the semaphore. And under a sustained flood the residual
exposure is a loss of login availability, not merely of latency --
above about 27 requests a second most attempts are shed with 503, so a
determined flood still denies login for as long as it runs. It costs
roughly 400x more to run, nothing accumulates, and the first attempt
after it stops succeeds. Restarting the service does not help: the
counters a restart clears are not what is saturated.

Also adds the missing test for the third bucketKey call site, where
the peer is a trusted proxy but the forwarded chain names no client.
Every existing test of that fallback uses an IPv4 proxy, where
bucketKey is the identity function, so dropping the /64 masking there
left the suite green.

README and the TRUSTED_PROXIES startup warning updated: a shared
bucket now costs precision, not the availability of the admin path.
2026-08-17 23:46:44 +00:00

280 lines
6.9 KiB
Go

// Package handlers provides HTTP request handlers for the
// webhooker web UI and API.
package handlers
import (
"bytes"
"context"
"encoding/json"
"errors"
"html/template"
"log/slog"
"net/http"
"sync/atomic"
"go.uber.org/fx"
"sneak.berlin/go/webhooker/internal/database"
"sneak.berlin/go/webhooker/internal/delivery"
"sneak.berlin/go/webhooker/internal/globals"
"sneak.berlin/go/webhooker/internal/healthcheck"
"sneak.berlin/go/webhooker/internal/logger"
"sneak.berlin/go/webhooker/internal/middleware"
"sneak.berlin/go/webhooker/internal/session"
"sneak.berlin/go/webhooker/templates"
)
const (
// maxBodyShift is the bit shift for 1 MB body limit.
maxBodyShift = 20
// recentEventLimit is the number of recent events to show.
recentEventLimit = 20
// paginationPerPage is the number of items per page.
paginationPerPage = 25
// tmplKeyError is the template data key for an error message.
tmplKeyError = "Error"
// tmplKeyWebhook is the template data key for a webhook.
tmplKeyWebhook = "Webhook"
)
// errInvalidPassword is returned when a password does not match.
var errInvalidPassword = errors.New("invalid password")
// errVerificationBusy is returned when no password-verification slot
// became free before the wait elapsed, so no password was verified.
var errVerificationBusy = errors.New(
"password verification capacity exhausted",
)
//nolint:revive // HandlersParams is a standard fx naming convention.
type HandlersParams struct {
fx.In
Logger *logger.Logger
Globals *globals.Globals
Database *database.Database
WebhookDBMgr *database.WebhookDBManager
Healthcheck *healthcheck.Healthcheck
Session *session.Session
Middleware *middleware.Middleware
Notifier delivery.Notifier
Evictor delivery.WebhookEvictor
}
// Handlers provides HTTP handler methods for all application
// routes.
type Handlers struct {
params *HandlersParams
log *slog.Logger
hc *healthcheck.Healthcheck
db *database.Database
dbMgr *database.WebhookDBManager
session *session.Session
mw *middleware.Middleware
notifier delivery.Notifier
evictor delivery.WebhookEvictor
templates map[string]*template.Template
// dummyVerifications counts the equivalent-cost verifications
// charged for usernames that do not exist. It exists so a test
// can prove that path runs without measuring wall-clock time.
dummyVerifications atomic.Uint64
}
// parsePageTemplate parses a page-specific template set from the
// embedded FS. Each page template is combined with the shared
// base, htmlheader, and navbar templates. The page file must be
// listed first so that its root action ({{template "base" .}})
// becomes the template set's entry point.
func parsePageTemplate(pageFile string) *template.Template {
return template.Must(
template.ParseFS(
templates.Templates,
pageFile,
"base.html",
"htmlheader.html",
"navbar.html",
),
)
}
// New creates a Handlers instance, parsing all page templates at
// startup.
func New(
lc fx.Lifecycle,
params HandlersParams,
) (*Handlers, error) {
s := new(Handlers)
s.params = &params
s.log = params.Logger.Get()
s.hc = params.Healthcheck
s.db = params.Database
s.dbMgr = params.WebhookDBMgr
s.session = params.Session
s.mw = params.Middleware
s.notifier = params.Notifier
s.evictor = params.Evictor
// Parse all page templates once at startup
s.templates = map[string]*template.Template{
"login.html": parsePageTemplate("login.html"),
"profile.html": parsePageTemplate("profile.html"),
"sources_list.html": parsePageTemplate("sources_list.html"),
"sources_new.html": parsePageTemplate("sources_new.html"),
"source_detail.html": parsePageTemplate("source_detail.html"),
"source_edit.html": parsePageTemplate("source_edit.html"),
"source_logs.html": parsePageTemplate("source_logs.html"),
}
lc.Append(fx.Hook{
OnStart: func(_ context.Context) error {
return nil
},
})
return s, nil
}
func (s *Handlers) respondJSON(
w http.ResponseWriter,
_ *http.Request,
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)
}
}
}
// serverError logs an error and sends a 500 response.
func (s *Handlers) serverError(
w http.ResponseWriter, msg string, err error,
) {
s.log.Error(msg, "error", err)
http.Error(
w, "Internal server error",
http.StatusInternalServerError,
)
}
// UserInfo represents user information for templates
type UserInfo struct {
ID string
Username string
}
// templateDataWrapper wraps non-map data with common fields.
type templateDataWrapper struct {
User *UserInfo
CSRFToken string
Data any
}
// getUserInfo extracts user info from the session.
func (s *Handlers) getUserInfo(
r *http.Request,
) *UserInfo {
sess, err := s.session.Get(r)
if err != nil || !s.session.IsAuthenticated(sess) {
return nil
}
username, ok := s.session.GetUsername(sess)
if !ok {
return nil
}
userID, ok := s.session.GetUserID(sess)
if !ok {
return nil
}
return &UserInfo{ID: userID, Username: username}
}
// renderTemplate renders a pre-parsed template with common
// data
func (s *Handlers) renderTemplate(
w http.ResponseWriter,
r *http.Request,
pageTemplate string,
data any,
) {
tmpl, ok := s.templates[pageTemplate]
if !ok {
s.log.Error(
"template not found",
"template", pageTemplate,
)
http.Error(
w, "Internal server error",
http.StatusInternalServerError,
)
return
}
userInfo := s.getUserInfo(r)
csrfToken := middleware.CSRFToken(r)
if m, ok := data.(map[string]any); ok {
m["User"] = userInfo
m["CSRFToken"] = csrfToken
s.executeTemplate(w, tmpl, m)
return
}
wrapper := templateDataWrapper{
User: userInfo,
CSRFToken: csrfToken,
Data: data,
}
s.executeTemplate(w, tmpl, wrapper)
}
// executeTemplate renders the template into a buffer and writes to
// the response only once rendering has fully succeeded. Executing
// straight into the ResponseWriter commits a partial body and a 200
// status before a mid-render error can be reported, leaving no way
// to serve a 500. Buffering makes a page's rendered size resident
// memory per concurrent viewer, so every page owes it a bound: the
// event log caps each stored body at maxRenderedBodyBytes for exactly
// this reason.
func (s *Handlers) executeTemplate(
w http.ResponseWriter,
tmpl *template.Template,
data any,
) {
var buf bytes.Buffer
err := tmpl.Execute(&buf, data)
if err != nil {
s.log.Error(
"failed to execute template", "error", err,
)
http.Error(
w, "Internal server error",
http.StatusInternalServerError,
)
return
}
w.Header().Set("Content-Type", "text/html; charset=utf-8")
_, err = buf.WriteTo(w)
if err != nil {
s.log.Error(
"failed to write rendered page", "error", err,
)
}
}