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The SSRF blocklist had no escape hatch, so the thing webhooker is mostly for — taking a public webhook and forwarding it to something on your own network — could not be configured at all. Every private address, Docker sibling and loopback service was permanently unreachable as a delivery destination. ALLOWED_EGRESS_CIDRS (default empty) names blocks that delivery targets may reach despite the default blocklist. It is an allowlist and only ever adds destinations: there is no boolean, and no value disables SSRF protection wholesale. Empty, it adds nothing and the guard permits and refuses the same addresses it did before, save the two spellings named below. A small set of addresses is refused before the allowlist is consulted, so no supplied CIDR opens one — not the exact address, not a supernet, not 0.0.0.0/0 or ::/0. alwaysBlockedNetworks in internal/delivery/ssrf.go is the authoritative list and states the membership criterion in full; it is deliberately not copied here, because a copy drifts out of date. In short: the provider fixes the address, so a host route for it collides with nothing the operator runs, and reaching it discloses credentials or user data. A publicly routable address never qualifies however well it meets both — nothing in this set can be reopened, so blocking one here would leave the operator no escape hatch at all. Those belong in blockedNetworks, which an allowlist can override. Every entry is already inside the default blocklist, which is what makes it unconditional rather than newly blocked, with two exceptions that are the one behaviour change visible when the allowlist is unset: ::a9fe:a9fe and 64:ff9b::a9fe:a9fe, the IPv4-compatible and NAT64 spellings of 169.254.169.254, were reachable before and are refused now. net.IPNet.Contains normalises only the IPv4-mapped form via To4(), so 169.254.0.0/16 never matched those two. The ten it does cover now report a metadata error rather than the generic private-range one. The policy now lives in one function, Guard.checkIP, which both target-creation validation and the delivery dialer call. The two paths previously decided separately, which is how they came to disagree about a destination. The guard is built once from config and injected via fx into both the handlers and the delivery engine, so there is a single instance and a single answer. A set-but-unparseable value aborts startup naming the variable, reusing the existing envPrefixList parser. A non-empty list is logged at startup with the blocks spelled out, not counted, so the hole is visible in the log of any deployment that has one. Tests: an allowlisted loopback CIDR both validates and delivers to a live server (and the same URL still fails without the allowlist); a private address outside the listed block stays refused on both paths; every unconditionally blocked address stays refused on both paths under an allowlist that covers it, and the set itself is pinned entry by entry; public addresses are unaffected either way; and config coverage for parsing, startup abort, and the warning's contents.
291 lines
7.3 KiB
Go
291 lines
7.3 KiB
Go
// Package handlers provides HTTP request handlers for the
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// webhooker web UI and API.
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package handlers
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import (
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"bytes"
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"context"
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"encoding/json"
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"errors"
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"html/template"
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"log/slog"
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"net/http"
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"sync/atomic"
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"go.uber.org/fx"
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"sneak.berlin/go/webhooker/internal/database"
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"sneak.berlin/go/webhooker/internal/delivery"
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"sneak.berlin/go/webhooker/internal/globals"
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"sneak.berlin/go/webhooker/internal/healthcheck"
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"sneak.berlin/go/webhooker/internal/logger"
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"sneak.berlin/go/webhooker/internal/metrics"
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"sneak.berlin/go/webhooker/internal/middleware"
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"sneak.berlin/go/webhooker/internal/session"
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"sneak.berlin/go/webhooker/templates"
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)
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const (
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// maxBodyShift is the bit shift for 1 MB body limit.
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maxBodyShift = 20
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// recentEventLimit is the number of recent events to show.
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recentEventLimit = 20
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// paginationPerPage is the number of items per page.
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paginationPerPage = 25
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// tmplKeyError is the template data key for an error message.
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tmplKeyError = "Error"
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// tmplKeyWebhook is the template data key for a webhook.
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tmplKeyWebhook = "Webhook"
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)
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// errInvalidPassword is returned when a password does not match.
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var errInvalidPassword = errors.New("invalid password")
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// errVerificationBusy is returned when no password-verification slot
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// became free before the wait elapsed, so no password was verified.
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var errVerificationBusy = errors.New(
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"password verification capacity exhausted",
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)
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//nolint:revive // HandlersParams is a standard fx naming convention.
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type HandlersParams struct {
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fx.In
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Logger *logger.Logger
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Globals *globals.Globals
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Database *database.Database
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WebhookDBMgr *database.WebhookDBManager
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Healthcheck *healthcheck.Healthcheck
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Session *session.Session
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Middleware *middleware.Middleware
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Notifier delivery.Notifier
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Evictor delivery.WebhookEvictor
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SSRFGuard *delivery.Guard
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}
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// Handlers provides HTTP handler methods for all application
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// routes.
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type Handlers struct {
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params *HandlersParams
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log *slog.Logger
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hc *healthcheck.Healthcheck
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db *database.Database
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dbMgr *database.WebhookDBManager
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session *session.Session
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mw *middleware.Middleware
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notifier delivery.Notifier
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evictor delivery.WebhookEvictor
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mtr *metrics.Set
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templates map[string]*template.Template
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// ssrf validates submitted target URLs. It is the same guard
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// the delivery engine dials through, so a URL accepted here
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// is one delivery will actually attempt.
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ssrf *delivery.Guard
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// dummyVerifications counts the equivalent-cost verifications
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// charged for usernames that do not exist. It exists so a test
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// can prove that path runs without measuring wall-clock time.
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dummyVerifications atomic.Uint64
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}
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// parsePageTemplate parses a page-specific template set from the
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// embedded FS. Each page template is combined with the shared
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// base, htmlheader, and navbar templates. The page file must be
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// listed first so that its root action ({{template "base" .}})
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// becomes the template set's entry point.
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func parsePageTemplate(pageFile string) *template.Template {
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return template.Must(
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template.ParseFS(
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templates.Templates,
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pageFile,
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"base.html",
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"htmlheader.html",
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"navbar.html",
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),
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)
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}
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// New creates a Handlers instance, parsing all page templates at
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// startup.
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func New(
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lc fx.Lifecycle,
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params HandlersParams,
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) (*Handlers, error) {
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s := new(Handlers)
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s.params = ¶ms
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s.log = params.Logger.Get()
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s.hc = params.Healthcheck
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s.db = params.Database
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s.dbMgr = params.WebhookDBMgr
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s.session = params.Session
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s.mw = params.Middleware
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s.notifier = params.Notifier
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s.evictor = params.Evictor
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s.mtr = metrics.Default()
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s.ssrf = params.SSRFGuard
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// Parse all page templates once at startup
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s.templates = map[string]*template.Template{
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"login.html": parsePageTemplate("login.html"),
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"profile.html": parsePageTemplate("profile.html"),
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"sources_list.html": parsePageTemplate("sources_list.html"),
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"sources_new.html": parsePageTemplate("sources_new.html"),
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"source_detail.html": parsePageTemplate("source_detail.html"),
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"source_edit.html": parsePageTemplate("source_edit.html"),
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"source_logs.html": parsePageTemplate("source_logs.html"),
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"target_edit.html": parsePageTemplate("target_edit.html"),
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}
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lc.Append(fx.Hook{
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OnStart: func(_ context.Context) error {
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return nil
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},
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})
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return s, nil
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}
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func (s *Handlers) respondJSON(
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w http.ResponseWriter,
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_ *http.Request,
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data any,
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status int,
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) {
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w.Header().Set("Content-Type", "application/json")
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w.WriteHeader(status)
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if data != nil {
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err := json.NewEncoder(w).Encode(data)
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if err != nil {
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s.log.Error("json encode error", "error", err)
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}
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}
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}
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// serverError logs an error and sends a 500 response.
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func (s *Handlers) serverError(
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w http.ResponseWriter, msg string, err error,
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) {
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s.log.Error(msg, "error", err)
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http.Error(
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w, "Internal server error",
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http.StatusInternalServerError,
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)
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}
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// UserInfo represents user information for templates
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type UserInfo struct {
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ID string
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Username string
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}
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// templateDataWrapper wraps non-map data with common fields.
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type templateDataWrapper struct {
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User *UserInfo
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CSRFToken string
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Data any
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}
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// getUserInfo extracts user info from the session.
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func (s *Handlers) getUserInfo(
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r *http.Request,
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) *UserInfo {
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sess, err := s.session.Get(r)
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if err != nil || !s.session.IsAuthenticated(sess) {
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return nil
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}
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username, ok := s.session.GetUsername(sess)
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if !ok {
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return nil
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}
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userID, ok := s.session.GetUserID(sess)
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if !ok {
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return nil
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}
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return &UserInfo{ID: userID, Username: username}
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}
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// renderTemplate renders a pre-parsed template with common
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// data
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func (s *Handlers) renderTemplate(
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w http.ResponseWriter,
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r *http.Request,
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pageTemplate string,
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data any,
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) {
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tmpl, ok := s.templates[pageTemplate]
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if !ok {
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s.log.Error(
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"template not found",
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"template", pageTemplate,
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)
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http.Error(
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w, "Internal server error",
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http.StatusInternalServerError,
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)
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return
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}
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userInfo := s.getUserInfo(r)
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csrfToken := middleware.CSRFToken(r)
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if m, ok := data.(map[string]any); ok {
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m["User"] = userInfo
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m["CSRFToken"] = csrfToken
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s.executeTemplate(w, tmpl, m)
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return
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}
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wrapper := templateDataWrapper{
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User: userInfo,
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CSRFToken: csrfToken,
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Data: data,
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}
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s.executeTemplate(w, tmpl, wrapper)
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}
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// executeTemplate renders the template into a buffer and writes to
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// the response only once rendering has fully succeeded. Executing
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// straight into the ResponseWriter commits a partial body and a 200
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// status before a mid-render error can be reported, leaving no way
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// to serve a 500. Buffering makes a page's rendered size resident
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// memory per concurrent viewer, so every page owes it a bound: the
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// event log caps each stored body at maxRenderedBodyBytes for exactly
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// this reason.
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func (s *Handlers) executeTemplate(
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w http.ResponseWriter,
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tmpl *template.Template,
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data any,
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) {
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var buf bytes.Buffer
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err := tmpl.Execute(&buf, data)
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if err != nil {
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s.log.Error(
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"failed to execute template", "error", err,
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)
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http.Error(
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w, "Internal server error",
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http.StatusInternalServerError,
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)
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return
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}
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w.Header().Set("Content-Type", "text/html; charset=utf-8")
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_, err = buf.WriteTo(w)
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if err != nil {
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s.log.Error(
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"failed to write rendered page", "error", err,
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)
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}
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}
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