Author SHA1 Message Date
sneak 2dbc76fa36 fix: script/test conditional-verbose-rerun with -cover (closes #59)
check / check (push) Successful in 2m29s
Run the suite without -v first so a passing build shows only per-package
summaries; on failure rerun with -v for full diagnostics and exit
non-zero, matching the conditional-verbose-rerun pattern in
REPO_POLICIES.md. Add -cover to the first run per the policy's Go
example; keep -race (added in #55) and the existing nix-shell CGO
fallback for hosts without pkg-config/vips.

Model: opus-4-8
2026-09-21 17:11:41 +00:00
23 changed files with 61 additions and 1648 deletions
-4
View File
@@ -111,10 +111,6 @@ Configured via YAML file (`--config`). Key settings:
- `access_control_allow_origin` — CORS origin - `access_control_allow_origin` — CORS origin
- `allowlist_hosts` — list of allowed upstream hosts - `allowlist_hosts` — list of allowed upstream hosts
- `blocked_networks` — list of CIDR ranges to refuse for SSRF protection,
added to the always-enforced built-in ranges (loopback, private,
link-local, CGNAT, benchmark, NAT64, and the like); an invalid CIDR
aborts startup
- `upstream_fetch_timeout` — timeout for origin requests - `upstream_fetch_timeout` — timeout for origin requests
- `upstream_max_response_size` — max origin response size - `upstream_max_response_size` — max origin response size
- `downstream_timeout` — client response timeout - `downstream_timeout` — client response timeout
+10 -32
View File
@@ -1,52 +1,28 @@
# Workflow # Workflow
* branch per issue from `next` * branch (from `main`)
* do the work in Next Step * do the work in Next Step
* move Next Step to the top of Completed Steps * move Next Step to the top of Completed Steps
* move the top item of Future Steps into Next Step * move the top item of Future Steps into Next Step
* commit (`TODO.md` changes in the same commit as the work) * commit (`TODO.md` changes in the same commit as the work)
* open a PR based on `next` * merge to `main` if the branch is not protected, otherwise open a PR
* an independent reviewer who did not write the change gates it
* the manager squash-merges the PR into `next` once review passes
* `next` stays green and mergeable to `main` at any time; only the owner
merges `next` into `main`, via the single milestone PR
* push * push
# Status # Status
pre-1.0. No git tags exist. The `1.0.0` milestone is in progress; work pre-1.0. No git tags exist. Recent work extracted the internal/magic,
lands on `next`, and `main` receives only the milestone PR that the
owner merges. `next` is at the canonical `golangci-lint` v2.12.2 config
and is green. Recent work extracted the internal/magic,
internal/allowlist, internal/httpfetcher, and internal/signature internal/allowlist, internal/httpfetcher, and internal/signature
packages. The gosec findings from the 2026-07-06 survey are resolved. packages. The gosec findings from the 2026-07-06 survey are resolved
The disk cache is now size-bounded with LRU eviction and `make check` is green on main. The disk cache is now size-bounded
(`cache_max_bytes`), closing the unbounded disk growth DoS vector. with LRU eviction (`cache_max_bytes`), closing the unbounded disk
growth DoS vector.
# Next Step # Next Step
P1: rate limit global concurrent upstream fetches to prevent resource P1: implement blocked networks configuration to extend SSRF protection
exhaustion
# Completed Steps # Completed Steps
- 2026-09-21 blocked networks configuration extending SSRF protection: a
`blocked_networks` config key taking a list of CIDRs (parsed with
`net/netip`, an invalid entry aborts startup naming the key and value),
added to the built-in blocklist rather than replacing it; the built-in
ranges extended to CGNAT `100.64.0.0/10`, IETF protocol assignments
`192.0.0.0/24`, benchmark `198.18.0.0/15`, and NAT64 `64:ff9b::/96`
(IPv4-mapped forms covered); enforcement stays in the dial-time
re-resolution so the DNS-rebinding window remains closed; documented in
`README.md` and `config.example.yml`.
- 2026-09-21 http.Server hardening (closes #92): added
`HTTPReadHeaderTimeout` (10s, bounds the slowloris header dribble) and
`HTTPIdleTimeout` (120s, bounds keep-alive reuse) alongside the
existing timeouts and wired them onto the server; added a `LimitBody`
middleware capping the two form POST bodies (`POST /`, `POST /generate`)
at `MaxFormBytes` (1 MiB) and returning 413, applied ahead of the CSRF
middleware so an oversized body is refused as 413 rather than being read
as a missing CSRF token (403); left `WriteTimeout` at 60s unchanged
- 2026-08-07 update golangci-lint to v2.12.2 with the canonical - 2026-08-07 update golangci-lint to v2.12.2 with the canonical
`.golangci.yml` (v2 schema, `default: all` minus six disabled `.golangci.yml` (v2 schema, `default: all` minus six disabled
linters, `lll` 88, tests included): bumped the pinned linters, `lll` 88, tests included): bumped the pinned
@@ -140,6 +116,8 @@ exhaustion
# Future Steps # Future Steps
- P1: rate limit global concurrent upstream fetches to prevent
resource exhaustion
- P1: strip EXIF and other metadata from processed images (privacy) - P1: strip EXIF and other metadata from processed images (privacy)
- P2: security - P2: security
- referer blacklist - referer blacklist
-9
View File
@@ -22,15 +22,6 @@ allowlist_hosts:
- github.com - github.com
- user-images.githubusercontent.com - user-images.githubusercontent.com
# Additional CIDR ranges to refuse when fetching upstream, extending the
# SSRF protection. These are added to the always-enforced built-in ranges
# (loopback, RFC 1918 private, link-local, CGNAT, benchmark, NAT64, and
# similar), never replacing them. Each entry must be a valid CIDR in IPv4
# or IPv6 form; an invalid entry aborts startup.
# blocked_networks:
# - 100.64.0.0/10
# - 2001:db8::/32
# Allow HTTP upstream (only for testing, always use HTTPS in production) # Allow HTTP upstream (only for testing, always use HTTPS in production)
allow_http: false allow_http: false
-1
View File
@@ -11,7 +11,6 @@ require (
github.com/getsentry/sentry-go v0.40.0 github.com/getsentry/sentry-go v0.40.0
github.com/go-chi/chi/v5 v5.2.3 github.com/go-chi/chi/v5 v5.2.3
github.com/go-chi/cors v1.2.2 github.com/go-chi/cors v1.2.2
github.com/gorilla/csrf v1.7.3
github.com/gorilla/securecookie v1.1.2 github.com/gorilla/securecookie v1.1.2
github.com/prometheus/client_golang v1.23.2 github.com/prometheus/client_golang v1.23.2
github.com/slok/go-http-metrics v0.13.0 github.com/slok/go-http-metrics v0.13.0
-2
View File
@@ -175,8 +175,6 @@ github.com/googleapis/enterprise-certificate-proxy v0.3.6 h1:GW/XbdyBFQ8Qe+YAmFU
github.com/googleapis/enterprise-certificate-proxy v0.3.6/go.mod h1:MkHOF77EYAE7qfSuSS9PU6g4Nt4e11cnsDUowfwewLA= github.com/googleapis/enterprise-certificate-proxy v0.3.6/go.mod h1:MkHOF77EYAE7qfSuSS9PU6g4Nt4e11cnsDUowfwewLA=
github.com/googleapis/gax-go/v2 v2.14.2 h1:eBLnkZ9635krYIPD+ag1USrOAI0Nr0QYF3+/3GqO0k0= github.com/googleapis/gax-go/v2 v2.14.2 h1:eBLnkZ9635krYIPD+ag1USrOAI0Nr0QYF3+/3GqO0k0=
github.com/googleapis/gax-go/v2 v2.14.2/go.mod h1:ON64QhlJkhVtSqp4v1uaK92VyZ2gmvDQsweuyLV+8+w= github.com/googleapis/gax-go/v2 v2.14.2/go.mod h1:ON64QhlJkhVtSqp4v1uaK92VyZ2gmvDQsweuyLV+8+w=
github.com/gorilla/csrf v1.7.3 h1:BHWt6FTLZAb2HtWT5KDBf6qgpZzvtbp9QWDRKZMXJC0=
github.com/gorilla/csrf v1.7.3/go.mod h1:F1Fj3KG23WYHE6gozCmBAezKookxbIvUJT+121wTuLk=
github.com/gorilla/securecookie v1.1.2 h1:YCIWL56dvtr73r6715mJs5ZvhtnY73hBvEF8kXD8ePA= github.com/gorilla/securecookie v1.1.2 h1:YCIWL56dvtr73r6715mJs5ZvhtnY73hBvEF8kXD8ePA=
github.com/gorilla/securecookie v1.1.2/go.mod h1:NfCASbcHqRSY+3a8tlWJwsQap2VX5pwzwo4h3eOamfo= github.com/gorilla/securecookie v1.1.2/go.mod h1:NfCASbcHqRSY+3a8tlWJwsQap2VX5pwzwo4h3eOamfo=
github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.3 h1:5ZPtiqj0JL5oKWmcsq4VMaAW5ukBEgSGXEN89zeH1Jo= github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.3 h1:5ZPtiqj0JL5oKWmcsq4VMaAW5ukBEgSGXEN89zeH1Jo=
@@ -1,90 +0,0 @@
package config
import (
"testing"
)
// TestBlockedNetworksParsed loads a valid blocked_networks list and checks
// each CIDR is parsed into the resolved prefixes in order.
func TestBlockedNetworksParsed(t *testing.T) {
t.Parallel()
yamlContent := signingKeyLine + `blocked_networks:
- 203.0.113.0/24
- 2001:db8::/32
`
c, err := configFromYAML(t, yamlContent)
if err != nil {
t.Fatalf("valid blocked_networks should load, got error: %v", err)
}
want := []string{"203.0.113.0/24", "2001:db8::/32"}
if len(c.BlockedNetworks) != len(want) {
t.Fatalf("BlockedNetworks = %v, want %d entries", c.BlockedNetworks, len(want))
}
for i, w := range want {
if got := c.BlockedNetworks[i].String(); got != w {
t.Errorf("BlockedNetworks[%d] = %q, want %q", i, got, w)
}
}
}
// TestBlockedNetworksOmittedIsEmpty confirms an omitted key leaves the
// operator list empty; the built-in defaults still apply in the fetcher.
func TestBlockedNetworksOmittedIsEmpty(t *testing.T) {
t.Parallel()
c, err := configFromYAML(t, signingKeyLine)
if err != nil {
t.Fatalf("minimal config should be valid, got error: %v", err)
}
if len(c.BlockedNetworks) != 0 {
t.Errorf("BlockedNetworks = %v, want empty", c.BlockedNetworks)
}
}
// TestBlockedNetworksInvalidAbortsStartup checks that malformed values abort
// startup with an error naming the key and the offending value.
func TestBlockedNetworksInvalidAbortsStartup(t *testing.T) {
t.Parallel()
runAbortCases(t, []abortCase{
{
name: "not-a-cidr",
yaml: signingKeyLine + `blocked_networks:
- not-a-cidr
`,
wantErrSubstrings: []string{keyBlockedNetworks, "not-a-cidr"},
},
{
name: "bare-address-without-prefix",
yaml: signingKeyLine + `blocked_networks:
- 10.0.0.1
`,
wantErrSubstrings: []string{keyBlockedNetworks, "10.0.0.1"},
},
{
name: "empty-entry",
yaml: signingKeyLine + `blocked_networks:
- ""
`,
wantErrSubstrings: []string{keyBlockedNetworks},
},
{
name: "non-string-entry",
yaml: signingKeyLine + `blocked_networks:
- 42
`,
wantErrSubstrings: []string{keyBlockedNetworks},
},
{
name: "null-value",
yaml: signingKeyLine + `blocked_networks:
`,
wantErrSubstrings: []string{keyBlockedNetworks, nullValueText},
},
})
}
+3 -101
View File
@@ -6,7 +6,6 @@ import (
"fmt" "fmt"
"log/slog" "log/slog"
"math" "math"
"net/netip"
"net/url" "net/url"
"os" "os"
"path/filepath" "path/filepath"
@@ -43,7 +42,6 @@ const (
keyAllowHTTP = "allow_http" keyAllowHTTP = "allow_http"
keyUpstreamConnectionsPerHost = "upstream_connections_per_host" keyUpstreamConnectionsPerHost = "upstream_connections_per_host"
keyCacheMaxBytes = "cache_max_bytes" keyCacheMaxBytes = "cache_max_bytes"
keyBlockedNetworks = "blocked_networks"
) )
// Static validation errors. Each use site attaches the offending key // Static validation errors. Each use site attaches the offending key
@@ -56,7 +54,6 @@ var (
errNotAnInteger = errors.New("not an integer") errNotAnInteger = errors.New("not an integer")
errNotABoolean = errors.New("not a boolean") errNotABoolean = errors.New("not a boolean")
errNotAStringList = errors.New("not a list of strings") errNotAStringList = errors.New("not a list of strings")
errNotAValidCIDR = errors.New("not a valid CIDR network")
errNotAMetricsMap = errors.New("not a map of metrics settings") errNotAMetricsMap = errors.New("not a map of metrics settings")
errEmptyListEntry = errors.New("list contains an empty entry") errEmptyListEntry = errors.New("list contains an empty entry")
errEmptyEntry = errors.New("contains an empty entry") errEmptyEntry = errors.New("contains an empty entry")
@@ -103,11 +100,6 @@ type Config struct {
AllowHTTP bool // Allow non-TLS upstream (testing only) AllowHTTP bool // Allow non-TLS upstream (testing only)
UpstreamConnectionsPerHost int // Max concurrent connections per upstream host UpstreamConnectionsPerHost int // Max concurrent connections per upstream host
// BlockedNetworks are operator-supplied CIDR ranges to refuse in
// addition to the built-in SSRF blocklist. Enforced by the upstream
// fetcher's dialer; the built-in ranges always apply.
BlockedNetworks []netip.Prefix
// CacheMaxBytes is the disk cache size limit in bytes. Zero // CacheMaxBytes is the disk cache size limit in bytes. Zero
// disables the disk cache entirely. When cache_max_bytes is // disables the disk cache entirely. When cache_max_bytes is
// omitted from the configuration, this holds the computed default // omitted from the configuration, this holds the computed default
@@ -176,11 +168,6 @@ func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
} }
} }
blockedNetworks, err := getBlockedNetworks(sc)
if err != nil {
return nil, err
}
loader := &strictLoader{sc: sc} loader := &strictLoader{sc: sc}
c := &Config{ c := &Config{
@@ -196,8 +183,7 @@ func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
AllowHTTP: loader.boolVal(keyAllowHTTP, false), AllowHTTP: loader.boolVal(keyAllowHTTP, false),
UpstreamConnectionsPerHost: loader.intVal( UpstreamConnectionsPerHost: loader.intVal(
keyUpstreamConnectionsPerHost, DefaultUpstreamConnectionsPerHost), keyUpstreamConnectionsPerHost, DefaultUpstreamConnectionsPerHost),
CacheMaxBytes: loader.int64Val(keyCacheMaxBytes, 0), CacheMaxBytes: loader.int64Val(keyCacheMaxBytes, 0),
BlockedNetworks: blockedNetworks,
} }
// The computed default for cache_max_bytes needs a validated // The computed default for cache_max_bytes needs a validated
@@ -229,7 +215,7 @@ func newFromSmartConfig(sc *smartconfig.Config) (*Config, error) {
return nil, loader.err return nil, loader.err
} }
err = c.validate() err := c.validate()
if err != nil { if err != nil {
return nil, err return nil, err
} }
@@ -313,7 +299,7 @@ func isKnownConfigKey(key string) bool {
switch key { switch key {
case keyDebug, keyMaintenanceMode, keyPort, keyStateDir, keySentryDSN, case keyDebug, keyMaintenanceMode, keyPort, keyStateDir, keySentryDSN,
keyDBURL, keyMetrics, keySigningKey, keyAllowlistHosts, keyAllowHTTP, keyDBURL, keyMetrics, keySigningKey, keyAllowlistHosts, keyAllowHTTP,
keyUpstreamConnectionsPerHost, keyCacheMaxBytes, keyBlockedNetworks, "env": keyUpstreamConnectionsPerHost, keyCacheMaxBytes, "env":
return true return true
} }
@@ -792,87 +778,3 @@ func getStringSlice(sc *smartconfig.Config) []string {
return nil return nil
} }
// getBlockedNetworks parses the blocked_networks value into CIDR prefixes,
// or returns nil if the key is omitted. It accepts a YAML list of strings
// or a comma-separated string. An explicitly null value, a wrong type, an
// empty entry, a non-string entry, or an unparseable CIDR aborts startup
// naming the key and the offending value; a default (the built-in
// blocklist alone) applies only to an omitted key.
func getBlockedNetworks(sc *smartconfig.Config) ([]netip.Prefix, error) {
if sc == nil {
return nil, nil
}
raw, ok := sc.Get(keyBlockedNetworks)
if !ok {
return nil, nil
}
if raw == nil {
return nil, errNullConfigValue(keyBlockedNetworks)
}
entries, err := blockedNetworkEntries(raw)
if err != nil {
return nil, err
}
prefixes := make([]netip.Prefix, 0, len(entries))
for _, entry := range entries {
prefix, err := netip.ParsePrefix(entry)
if err != nil {
return nil, fmt.Errorf("config key %q: value %q is %w",
keyBlockedNetworks, entry, errNotAValidCIDR)
}
prefixes = append(prefixes, prefix)
}
return prefixes, nil
}
// blockedNetworkEntries extracts the raw blocked_networks entries as
// trimmed, non-empty strings, from either a YAML list of strings or a
// comma-separated string. Any other shape is a configuration error.
func blockedNetworkEntries(raw any) ([]string, error) {
switch val := raw.(type) {
case []any:
entries := make([]string, 0, len(val))
for _, item := range val {
str, ok := item.(string)
if !ok {
return nil, fmt.Errorf("config key %q: list entry %v (%T) is %w",
keyBlockedNetworks, item, item, errNotAString)
}
if strings.TrimSpace(str) == "" {
return nil, fmt.Errorf("config key %q: %w",
keyBlockedNetworks, errEmptyListEntry)
}
entries = append(entries, strings.TrimSpace(str))
}
return entries, nil
case string:
entries := make([]string, 0)
for part := range strings.SplitSeq(val, ",") {
trimmed := strings.TrimSpace(part)
if trimmed == "" {
return nil, fmt.Errorf("config key %q: value %q %w",
keyBlockedNetworks, val, errEmptyEntry)
}
entries = append(entries, trimmed)
}
return entries, nil
default:
return nil, fmt.Errorf("config key %q: value %v (%T) is %w",
keyBlockedNetworks, raw, raw, errNotAStringList)
}
}
+15 -25
View File
@@ -2,7 +2,6 @@ package handlers
import ( import (
"crypto/subtle" "crypto/subtle"
"html/template"
"net/http" "net/http"
"net/url" "net/url"
"strconv" "strconv"
@@ -24,13 +23,13 @@ func (s *Handlers) HandleRoot() http.HandlerFunc {
// Check if authenticated // Check if authenticated
if s.sessMgr.IsAuthenticated(r) { if s.sessMgr.IsAuthenticated(r) {
s.renderGenerator(w, r, nil) s.renderGenerator(w, nil)
return return
} }
// Show login page // Show login page
s.renderLogin(w, r, "") s.renderLogin(w, "")
} }
} }
@@ -38,7 +37,7 @@ func (s *Handlers) HandleRoot() http.HandlerFunc {
func (s *Handlers) handleLoginPost(w http.ResponseWriter, r *http.Request) { func (s *Handlers) handleLoginPost(w http.ResponseWriter, r *http.Request) {
err := r.ParseForm() err := r.ParseForm()
if err != nil { if err != nil {
s.renderLogin(w, r, "Invalid form data") s.renderLogin(w, "Invalid form data")
return return
} }
@@ -48,7 +47,7 @@ func (s *Handlers) handleLoginPost(w http.ResponseWriter, r *http.Request) {
// Constant-time comparison to prevent timing attacks // Constant-time comparison to prevent timing attacks
if subtle.ConstantTimeCompare([]byte(submittedKey), []byte(s.config.SigningKey)) != 1 { if subtle.ConstantTimeCompare([]byte(submittedKey), []byte(s.config.SigningKey)) != 1 {
s.log.Warn("failed login attempt", "remote_addr", r.RemoteAddr) s.log.Warn("failed login attempt", "remote_addr", r.RemoteAddr)
s.renderLogin(w, r, "Invalid signing key") s.renderLogin(w, "Invalid signing key")
return return
} }
@@ -57,7 +56,7 @@ func (s *Handlers) handleLoginPost(w http.ResponseWriter, r *http.Request) {
err = s.sessMgr.CreateSession(w) err = s.sessMgr.CreateSession(w)
if err != nil { if err != nil {
s.log.Error("failed to create session", "error", err) s.log.Error("failed to create session", "error", err)
s.renderLogin(w, r, "Failed to create session") s.renderLogin(w, "Failed to create session")
return return
} }
@@ -88,7 +87,7 @@ func (s *Handlers) HandleGenerateURL() http.HandlerFunc {
err := r.ParseForm() err := r.ParseForm()
if err != nil { if err != nil {
s.renderGenerator(w, r, &generatorData{Error: "Invalid form data"}) s.renderGenerator(w, &generatorData{Error: "Invalid form data"})
return return
} }
@@ -98,7 +97,7 @@ func (s *Handlers) HandleGenerateURL() http.HandlerFunc {
// Validate source URL // Validate source URL
parsed, err := url.Parse(sourceURL) parsed, err := url.Parse(sourceURL)
if err != nil || parsed.Host == "" { if err != nil || parsed.Host == "" {
s.renderGeneratorWithForm(w, r, "Invalid source URL", r.Form) s.renderGeneratorWithForm(w, "Invalid source URL", r.Form)
return return
} }
@@ -109,7 +108,7 @@ func (s *Handlers) HandleGenerateURL() http.HandlerFunc {
token, err := s.encGen.Generate(payload) token, err := s.encGen.Generate(payload)
if err != nil { if err != nil {
s.log.Error("failed to generate encrypted URL", "error", err) s.log.Error("failed to generate encrypted URL", "error", err)
s.renderGeneratorWithForm(w, r, "Failed to generate URL", r.Form) s.renderGeneratorWithForm(w, "Failed to generate URL", r.Form)
return return
} }
@@ -122,7 +121,7 @@ func (s *Handlers) HandleGenerateURL() http.HandlerFunc {
expiresAtStr = expiresAt.Format(time.RFC3339) expiresAtStr = expiresAt.Format(time.RFC3339)
} }
s.renderGenerator(w, r, &generatorData{ s.renderGenerator(w, &generatorData{
GeneratedURL: generatedURL, GeneratedURL: generatedURL,
ExpiresAt: expiresAtStr, ExpiresAt: expiresAtStr,
FormURL: sourceURL, FormURL: sourceURL,
@@ -187,20 +186,15 @@ type generatorData struct {
FormQuality string FormQuality string
FormFit string FormFit string
FormTTL string FormTTL string
CSRFField template.HTML
} }
func (s *Handlers) renderLogin( func (s *Handlers) renderLogin(w http.ResponseWriter, errorMsg string) {
w http.ResponseWriter, r *http.Request, errorMsg string,
) {
w.Header().Set("Content-Type", "text/html; charset=utf-8") w.Header().Set("Content-Type", "text/html; charset=utf-8")
data := struct { data := struct {
Error string Error string
CSRFField template.HTML
}{ }{
Error: errorMsg, Error: errorMsg,
CSRFField: csrfField(r),
} }
err := templates.Render(w, "login.html", data) err := templates.Render(w, "login.html", data)
@@ -210,17 +204,13 @@ func (s *Handlers) renderLogin(
} }
} }
func (s *Handlers) renderGenerator( func (s *Handlers) renderGenerator(w http.ResponseWriter, data *generatorData) {
w http.ResponseWriter, r *http.Request, data *generatorData,
) {
w.Header().Set("Content-Type", "text/html; charset=utf-8") w.Header().Set("Content-Type", "text/html; charset=utf-8")
if data == nil { if data == nil {
data = &generatorData{} data = &generatorData{}
} }
data.CSRFField = csrfField(r)
err := templates.Render(w, "generator.html", data) err := templates.Render(w, "generator.html", data)
if err != nil { if err != nil {
s.log.Error("failed to render generator template", "error", err) s.log.Error("failed to render generator template", "error", err)
@@ -229,9 +219,9 @@ func (s *Handlers) renderGenerator(
} }
func (s *Handlers) renderGeneratorWithForm( func (s *Handlers) renderGeneratorWithForm(
w http.ResponseWriter, r *http.Request, errorMsg string, form url.Values, w http.ResponseWriter, errorMsg string, form url.Values,
) { ) {
s.renderGenerator(w, r, &generatorData{ s.renderGenerator(w, &generatorData{
Error: errorMsg, Error: errorMsg,
FormURL: form.Get("url"), FormURL: form.Get("url"),
FormWidth: form.Get("width"), FormWidth: form.Get("width"),
@@ -1,273 +0,0 @@
package handlers
import (
"context"
"log/slog"
"net/http"
"net/http/httptest"
"net/url"
"regexp"
"strings"
"testing"
"github.com/go-chi/chi/v5"
"sneak.berlin/go/pixa/internal/config"
"sneak.berlin/go/pixa/internal/encurl"
"sneak.berlin/go/pixa/internal/session"
)
// testSigningKey is a throwaway signing key for the CSRF flow tests. It
// seeds the session manager, the encrypted-URL generator, and the CSRF
// token key, exactly as the real signing key does in production.
const testSigningKey = "test-signing-key-0123456789abcdef"
// Form field names used in the CSRF flow tests.
const (
loginKeyField = "key"
// gorilla/csrf's default form field name, not a credential.
csrfTokenField = "gorilla.csrf.Token" //nolint:gosec // G101 false positive
)
// csrfFieldPattern extracts the token rendered by csrf.TemplateField into
// the form. The field name is gorilla/csrf's default.
var csrfFieldPattern = regexp.MustCompile(
`name="gorilla\.csrf\.Token" value="([^"]+)"`)
// newCSRFTestRouter builds a router that mirrors the production wiring for
// the CSRF-protected UI routes (see server.SetupRoutes): the login and
// generator forms and their POST targets sit behind the real CSRF
// middleware. Requests are marked plaintext (Debug: true) so the flow runs
// over httptest's http transport without an https Referer.
func newCSRFTestRouter(t *testing.T) (*Handlers, http.Handler) {
t.Helper()
cfg := &config.Config{SigningKey: testSigningKey, Debug: true}
sessMgr, err := session.NewManager(testSigningKey)
if err != nil {
t.Fatalf("session.NewManager() error = %v", err)
}
encGen, err := encurl.NewGenerator(testSigningKey)
if err != nil {
t.Fatalf("encurl.NewGenerator() error = %v", err)
}
protect, err := newCSRFProtect(testSigningKey, cfg.Debug)
if err != nil {
t.Fatalf("newCSRFProtect() error = %v", err)
}
h := &Handlers{
log: slog.New(slog.DiscardHandler),
config: cfg,
sessMgr: sessMgr,
encGen: encGen,
csrfProtect: protect,
}
r := chi.NewRouter()
r.Group(func(r chi.Router) {
r.Use(h.CSRF())
r.Get("/", h.HandleRoot())
r.Post("/", h.HandleRoot())
r.Post("/generate", h.HandleGenerateURL())
})
return h, r
}
// csrfCredentials performs a GET that renders a form and returns the CSRF
// cookies the middleware set and the token embedded in the form. Passing
// the authenticated session cookie renders the generator form instead of
// the login form.
func csrfCredentials(
t *testing.T, srv http.Handler, reqCookies []*http.Cookie,
) ([]*http.Cookie, string) {
t.Helper()
req := httptest.NewRequestWithContext(
context.Background(), http.MethodGet, "/", nil)
for _, c := range reqCookies {
req.AddCookie(c)
}
rec := httptest.NewRecorder()
srv.ServeHTTP(rec, req)
if rec.Code != http.StatusOK {
t.Fatalf("GET / status = %d, want %d", rec.Code, http.StatusOK)
}
match := csrfFieldPattern.FindStringSubmatch(rec.Body.String())
if match == nil {
t.Fatalf("no CSRF token field found in rendered form")
}
return rec.Result().Cookies(), match[1]
}
// postForm submits form values with the given cookies and returns the
// recorder.
func postForm(
srv http.Handler, path string,
cookies []*http.Cookie, form url.Values,
) *httptest.ResponseRecorder {
req := httptest.NewRequestWithContext(
context.Background(), http.MethodPost, path,
strings.NewReader(form.Encode()))
req.Header.Set("Content-Type", "application/x-www-form-urlencoded")
for _, c := range cookies {
req.AddCookie(c)
}
rec := httptest.NewRecorder()
srv.ServeHTTP(rec, req)
return rec
}
// TestLoginPostRejectedWithoutToken verifies that POST / with no CSRF token
// is rejected. This is login CSRF: no session cookie exists yet, so the
// protection must rest on a token bound to a pre-session cookie.
func TestLoginPostRejectedWithoutToken(t *testing.T) {
t.Parallel()
_, srv := newCSRFTestRouter(t)
rec := postForm(srv, "/", nil, url.Values{loginKeyField: {testSigningKey}})
if rec.Code != http.StatusForbidden {
t.Errorf("POST / without token status = %d, want %d",
rec.Code, http.StatusForbidden)
}
}
// TestLoginPostRejectedWithForeignToken verifies that a token that does not
// match the request's CSRF cookie is rejected: a token minted for one
// cookie cannot authorize a request carrying a different cookie.
func TestLoginPostRejectedWithForeignToken(t *testing.T) {
t.Parallel()
_, srv := newCSRFTestRouter(t)
cookiesA, _ := csrfCredentials(t, srv, nil)
_, tokenB := csrfCredentials(t, srv, nil)
rec := postForm(srv, "/", cookiesA, url.Values{
loginKeyField: {testSigningKey},
csrfTokenField: {tokenB},
})
if rec.Code != http.StatusForbidden {
t.Errorf("POST / with foreign token status = %d, want %d",
rec.Code, http.StatusForbidden)
}
}
// TestLoginPostAcceptedWithValidToken verifies that POST / with a matching
// cookie and token succeeds: the login is processed and a session is
// established (303 redirect).
func TestLoginPostAcceptedWithValidToken(t *testing.T) {
t.Parallel()
_, srv := newCSRFTestRouter(t)
cookies, token := csrfCredentials(t, srv, nil)
rec := postForm(srv, "/", cookies, url.Values{
loginKeyField: {testSigningKey},
csrfTokenField: {token},
})
if rec.Code != http.StatusSeeOther {
t.Fatalf("POST / with valid token status = %d, want %d",
rec.Code, http.StatusSeeOther)
}
var authed bool
for _, c := range rec.Result().Cookies() {
if c.Name == session.CookieName && c.Value != "" {
authed = true
}
}
if !authed {
t.Error("valid login did not set a session cookie")
}
}
// TestGeneratePostRejectedWithoutToken verifies that POST /generate is
// rejected without a CSRF token even when the request carries a valid
// authenticated session. The session cookie is not sufficient; the policy
// requires a CSRF token on this cookie-authenticated form.
func TestGeneratePostRejectedWithoutToken(t *testing.T) {
t.Parallel()
h, srv := newCSRFTestRouter(t)
sessionCookie := newSessionCookie(t, h)
rec := postForm(srv, "/generate",
[]*http.Cookie{sessionCookie},
url.Values{"url": {"https://example.com/a.jpg"}})
if rec.Code != http.StatusForbidden {
t.Errorf("POST /generate without token status = %d, want %d",
rec.Code, http.StatusForbidden)
}
}
// TestGeneratePostAcceptedWithValidToken verifies that POST /generate
// succeeds with a valid session and a matching CSRF cookie and token.
func TestGeneratePostAcceptedWithValidToken(t *testing.T) {
t.Parallel()
h, srv := newCSRFTestRouter(t)
sessionCookie := newSessionCookie(t, h)
cookies, token := csrfCredentials(t, srv, []*http.Cookie{sessionCookie})
cookies = append(cookies, sessionCookie)
rec := postForm(srv, "/generate", cookies, url.Values{
"url": {"https://example.com/a.jpg"},
"format": {"jpeg"},
csrfTokenField: {token},
})
if rec.Code != http.StatusOK {
t.Fatalf("POST /generate with valid token status = %d, want %d",
rec.Code, http.StatusOK)
}
if !strings.Contains(rec.Body.String(), "/v1/e/") {
t.Error("generator response did not contain a generated URL")
}
}
// newSessionCookie creates an authenticated session cookie via the
// handler's session manager.
func newSessionCookie(t *testing.T, h *Handlers) *http.Cookie {
t.Helper()
rec := httptest.NewRecorder()
err := h.sessMgr.CreateSession(rec)
if err != nil {
t.Fatalf("CreateSession() error = %v", err)
}
for _, c := range rec.Result().Cookies() {
if c.Name == session.CookieName {
return c
}
}
t.Fatalf("session manager did not set a %q cookie", session.CookieName)
return nil
}
-45
View File
@@ -1,45 +0,0 @@
package handlers
import (
"errors"
"net/http"
)
// MaxFormBytes bounds the request body accepted on the HTML form POST
// routes (POST / and POST /generate). The forms carry a handful of short
// fields, so 1 MiB is generous while making the bound explicit rather than
// resting on ParseForm's incidental 10 MB cap.
const MaxFormBytes = 1 << 20 // 1 MiB
// LimitBody returns middleware that caps the request body on POST requests
// at maxBytes and rejects an oversized body with 413 Request Entity Too
// Large.
//
// It parses the form here, before the CSRF middleware reads the token from
// it. The CSRF middleware reads the token with PostFormValue, which
// swallows a parse error, so if the body were only capped there an
// oversized body would read as a missing token and be refused as 403. By
// parsing under the cap first, an oversized body is refused as 413. A
// successful parse is cached on the request, so the CSRF check and the
// handler reuse it rather than reading the body again.
func (s *Handlers) LimitBody(maxBytes int64) func(http.Handler) http.Handler {
return func(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if r.Method == http.MethodPost {
r.Body = http.MaxBytesReader(w, r.Body, maxBytes)
err := r.ParseForm()
var tooLarge *http.MaxBytesError
if errors.As(err, &tooLarge) {
http.Error(w, "Request body too large",
http.StatusRequestEntityTooLarge)
return
}
}
next.ServeHTTP(w, r)
})
}
}
@@ -1,177 +0,0 @@
package handlers
import (
"log/slog"
"net/http"
"net/url"
"strings"
"testing"
"github.com/go-chi/chi/v5"
"sneak.berlin/go/pixa/internal/config"
"sneak.berlin/go/pixa/internal/encurl"
"sneak.berlin/go/pixa/internal/session"
)
// Form field names and a throwaway source image URL for the body-limit
// tests.
const (
sourceURLField = "url"
testSourceURL = "https://example.com/a.jpg"
)
// newBodyLimitTestRouter mirrors the production wiring for the form POST
// routes (see server.SetupRoutes): LimitBody sits in front of the CSRF
// middleware, which sits in front of the handlers. maxBytes is the body
// cap under test, so a test can trip the limit with a small body.
func newBodyLimitTestRouter(
t *testing.T, maxBytes int64,
) (*Handlers, http.Handler) {
t.Helper()
cfg := &config.Config{SigningKey: testSigningKey, Debug: true}
sessMgr, err := session.NewManager(testSigningKey)
if err != nil {
t.Fatalf("session.NewManager() error = %v", err)
}
encGen, err := encurl.NewGenerator(testSigningKey)
if err != nil {
t.Fatalf("encurl.NewGenerator() error = %v", err)
}
protect, err := newCSRFProtect(testSigningKey, cfg.Debug)
if err != nil {
t.Fatalf("newCSRFProtect() error = %v", err)
}
h := &Handlers{
log: slog.New(slog.DiscardHandler),
config: cfg,
sessMgr: sessMgr,
encGen: encGen,
csrfProtect: protect,
}
r := chi.NewRouter()
r.Group(func(r chi.Router) {
r.Use(h.LimitBody(maxBytes))
r.Use(h.CSRF())
r.Get("/", h.HandleRoot())
r.Post("/", h.HandleRoot())
r.Post("/generate", h.HandleGenerateURL())
})
return h, r
}
// TestOversizedLoginPostRejectedBeforeCSRF is the core regression: an
// oversized POST / carrying an otherwise valid CSRF cookie and token must
// be rejected with 413. If the body limit ran after CSRF, the truncated
// body would read as a missing token and return 403; if it ran after the
// handler, a valid token would return 303. Getting 413 proves the limit
// fires before CSRF parses the form.
func TestOversizedLoginPostRejectedBeforeCSRF(t *testing.T) {
t.Parallel()
_, srv := newBodyLimitTestRouter(t, 16)
cookies, token := csrfCredentials(t, srv, nil)
rec := postForm(srv, "/", cookies, url.Values{
loginKeyField: {testSigningKey},
csrfTokenField: {token},
})
if rec.Code != http.StatusRequestEntityTooLarge {
t.Errorf("oversized POST / status = %d, want %d",
rec.Code, http.StatusRequestEntityTooLarge)
}
}
// TestOversizedGeneratePostRejectedBeforeCSRF is the same regression for
// POST /generate, which also parses a form behind CSRF.
func TestOversizedGeneratePostRejectedBeforeCSRF(t *testing.T) {
t.Parallel()
h, srv := newBodyLimitTestRouter(t, 16)
sessionCookie := newSessionCookie(t, h)
cookies, token := csrfCredentials(t, srv, []*http.Cookie{sessionCookie})
cookies = append(cookies, sessionCookie)
rec := postForm(srv, "/generate", cookies, url.Values{
sourceURLField: {testSourceURL},
csrfTokenField: {token},
})
if rec.Code != http.StatusRequestEntityTooLarge {
t.Errorf("oversized POST /generate status = %d, want %d",
rec.Code, http.StatusRequestEntityTooLarge)
}
}
// TestWithinLimitLoginPostSucceeds verifies the limit does not disturb a
// normal request: under the production cap, a valid login still parses and
// establishes a session (303). This guards against the body limit
// consuming or corrupting the form the CSRF check and handler depend on.
func TestWithinLimitLoginPostSucceeds(t *testing.T) {
t.Parallel()
_, srv := newBodyLimitTestRouter(t, MaxFormBytes)
cookies, token := csrfCredentials(t, srv, nil)
rec := postForm(srv, "/", cookies, url.Values{
loginKeyField: {testSigningKey},
csrfTokenField: {token},
})
if rec.Code != http.StatusSeeOther {
t.Fatalf("within-limit POST / status = %d, want %d",
rec.Code, http.StatusSeeOther)
}
var authed bool
for _, c := range rec.Result().Cookies() {
if c.Name == session.CookieName && c.Value != "" {
authed = true
}
}
if !authed {
t.Error("within-limit valid login did not set a session cookie")
}
}
// TestWithinLimitGeneratePostSucceeds is the same non-regression check for
// POST /generate.
func TestWithinLimitGeneratePostSucceeds(t *testing.T) {
t.Parallel()
h, srv := newBodyLimitTestRouter(t, MaxFormBytes)
sessionCookie := newSessionCookie(t, h)
cookies, token := csrfCredentials(t, srv, []*http.Cookie{sessionCookie})
cookies = append(cookies, sessionCookie)
rec := postForm(srv, "/generate", cookies, url.Values{
sourceURLField: {testSourceURL},
"format": {"jpeg"},
csrfTokenField: {token},
})
if rec.Code != http.StatusOK {
t.Fatalf("within-limit POST /generate status = %d, want %d",
rec.Code, http.StatusOK)
}
if !strings.Contains(rec.Body.String(), "/v1/e/") {
t.Error("within-limit generate response did not contain a generated URL")
}
}
-65
View File
@@ -1,65 +0,0 @@
package handlers
import (
"html/template"
"net/http"
"github.com/gorilla/csrf"
"sneak.berlin/go/pixa/internal/seal"
)
// csrfKeySalt provides domain separation for the CSRF authentication key,
// derived from the signing key so tokens survive restarts without extra
// configuration and never reuse the session or encrypted-URL key material.
const csrfKeySalt = "pixa-csrf-v1"
// newCSRFProtect builds the CSRF-protection middleware for the
// state-mutating HTML form routes. The token lives in its own cookie,
// independent of the session cookie, so it also protects the login POST
// where no session exists yet (login CSRF).
//
// When plaintext is true (local HTTP development), requests are marked
// plaintext so the library neither demands an https Referer nor sets a
// Secure cookie the browser would withhold over http. In production the
// service runs behind a TLS-terminating proxy, so plaintext is false and
// the library enforces its https Referer origin check.
func newCSRFProtect(
signingKey string, plaintext bool,
) (func(http.Handler) http.Handler, error) {
key, err := seal.DeriveKey([]byte(signingKey), csrfKeySalt)
if err != nil {
return nil, err
}
protect := csrf.Protect(
key[:],
csrf.Path("/"),
csrf.Secure(!plaintext),
csrf.SameSite(csrf.SameSiteStrictMode),
)
if !plaintext {
return protect, nil
}
return func(next http.Handler) http.Handler {
protected := protect(next)
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
protected.ServeHTTP(w, csrf.PlaintextHTTPRequest(r))
})
}, nil
}
// CSRF returns the CSRF-protection middleware for the login and generator
// form routes.
func (s *Handlers) CSRF() func(http.Handler) http.Handler {
return s.csrfProtect
}
// csrfField returns the hidden form input carrying the CSRF token for the
// given request, to be embedded verbatim in a rendered form.
func csrfField(r *http.Request) template.HTML {
return csrf.TemplateField(r)
}
+12 -21
View File
@@ -31,30 +31,23 @@ type Params struct {
// Handlers provides HTTP request handlers. // Handlers provides HTTP request handlers.
type Handlers struct { type Handlers struct {
log *slog.Logger log *slog.Logger
hc *healthcheck.Healthcheck hc *healthcheck.Healthcheck
db *database.Database db *database.Database
config *config.Config config *config.Config
imgSvc *imgcache.Service imgSvc *imgcache.Service
imgCache *imgcache.Cache imgCache *imgcache.Cache
sessMgr *session.Manager sessMgr *session.Manager
encGen *encurl.Generator encGen *encurl.Generator
csrfProtect func(http.Handler) http.Handler
} }
// New creates a new Handlers instance. // New creates a new Handlers instance.
func New(lc fx.Lifecycle, params Params) (*Handlers, error) { 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{ s := &Handlers{
log: params.Logger.Get(), log: params.Logger.Get(),
hc: params.Healthcheck, hc: params.Healthcheck,
db: params.Database, db: params.Database,
config: params.Config, config: params.Config,
csrfProtect: csrfProtect,
} }
lc.Append(fx.Hook{ lc.Append(fx.Hook{
@@ -111,8 +104,6 @@ func (s *Handlers) initImageService() error {
fetcherCfg.MaxConnectionsPerHost = s.config.UpstreamConnectionsPerHost fetcherCfg.MaxConnectionsPerHost = s.config.UpstreamConnectionsPerHost
} }
fetcherCfg.BlockedNetworks = s.config.BlockedNetworks
// Create the service // Create the service
svc, err := imgcache.NewService(&imgcache.ServiceConfig{ svc, err := imgcache.NewService(&imgcache.ServiceConfig{
Cache: cache, Cache: cache,
@@ -1,111 +0,0 @@
package httpfetcher
import (
"context"
"errors"
"net"
"net/http"
"net/netip"
"testing"
)
// TestIsPrivateIPBlocksSpecialRanges covers the internal and special-use
// ranges added to the built-in blocklist, in IPv4, IPv6, and IPv4-mapped
// forms, alongside public controls that must stay reachable.
func TestIsPrivateIPBlocksSpecialRanges(t *testing.T) {
t.Parallel()
tests := []struct {
name string
ip string
want bool
}{
{"cgnat-low", "100.64.0.1", true},
{"cgnat-high", "100.127.255.254", true},
{"ietf-protocol", "192.0.0.1", true},
{"benchmark-low", "198.18.0.1", true},
{"benchmark-high", "198.19.255.254", true},
{"nat64", "64:ff9b::1", true},
{"nat64-embeds-private", "64:ff9b::a00:1", true}, // maps 10.0.0.1
{"ipv4-mapped-private", "::ffff:10.0.0.1", true},
{"cloud-metadata", "169.254.169.254", true},
{"public-v4", "8.8.8.8", false},
{"test-net-1-public", testPublicHost, false}, // TEST-NET-1, stays public
{"public-v6", "2001:4860:4860::8888", false},
}
for _, tc := range tests {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
ip := net.ParseIP(tc.ip)
if ip == nil {
t.Fatalf("failed to parse IP %q", tc.ip)
}
got := isPrivateIP(ip)
if got != tc.want {
t.Errorf("isPrivateIP(%q) = %v, want %v", tc.ip, got, tc.want)
}
})
}
}
// transportOf returns the *http.Transport backing a fetcher, so a test can
// exercise the SSRF-safe dialer New installed with the operator blocklist.
func transportOf(t *testing.T, f *HTTPFetcher) *http.Transport {
t.Helper()
transport, ok := f.client.Transport.(*http.Transport)
if !ok {
t.Fatalf("transport is %T, want *http.Transport", f.client.Transport)
}
return transport
}
// TestDialerEnforcesBlockedNetworks proves an operator-supplied
// blocked_networks entry is enforced by the dialer, in addition to the
// built-in ranges, while an address outside both stays dialable.
func TestDialerEnforcesBlockedNetworks(t *testing.T) {
t.Parallel()
cfg := DefaultConfig()
// TEST-NET-2 (198.51.100.0/24) is public to the built-in check, so
// blocking it can only come from the operator-supplied list.
cfg.BlockedNetworks = []netip.Prefix{netip.MustParsePrefix("198.51.100.0/24")}
transport := transportOf(t, New(cfg))
blocked := []string{
"198.51.100.5:80", // operator-supplied range
"10.0.0.5:80", // built-in RFC 1918, still enforced
"100.64.0.1:80", // built-in CGNAT range
}
for _, addr := range blocked {
t.Run("blocked/"+addr, func(t *testing.T) {
t.Parallel()
_, err := transport.DialContext(context.Background(), "tcp", addr)
if !errors.Is(err, ErrSSRFBlocked) {
t.Errorf("DialContext(%q) = %v, want ErrSSRFBlocked", addr, err)
}
})
}
t.Run("public-not-blocked", func(t *testing.T) {
t.Parallel()
// A cancelled context makes the dial fail without touching the
// network; the point is only that a public literal outside every
// blocked range is not SSRF-blocked.
ctx, cancel := context.WithCancel(context.Background())
cancel()
_, err := transport.DialContext(ctx, "tcp", testPublicHost+":80")
if errors.Is(err, ErrSSRFBlocked) {
t.Errorf("public target SSRF-blocked with operator list set: %v", err)
}
})
}
-421
View File
@@ -1,421 +0,0 @@
package httpfetcher
import (
"context"
"errors"
"fmt"
"io"
"net"
"net/http"
"net/http/httptest"
"slices"
"strings"
"sync"
"testing"
"time"
)
// testPublicHost is a TEST-NET-1 (RFC 5737) literal. isPrivateIP treats it as
// public, so validateURL and the redirect check accept it with no DNS lookup,
// while the recording dialer routes it to the local httptest server. The
// address is reserved for documentation and is never routed on the network.
const testPublicHost = "192.0.2.10"
// imagePayload is the body served by the fake upstream's image route.
const imagePayload = "fake-jpeg-bytes"
// errUnexpectedDial reports a dial to any host other than testPublicHost, which
// would mean SSRF protection let a forbidden target reach the transport.
var errUnexpectedDial = errors.New("unexpected dial target")
// upstreamURL builds a fetch URL on the fake public host for the given path.
func upstreamURL(path string) string {
return "http://" + testPublicHost + path
}
// recordingDialer records every address the transport asks it to dial and
// routes connections for testPublicHost to a real local server, so the SSRF
// checks run against a public-looking host while bytes go to httptest.
type recordingDialer struct {
target string
mu sync.Mutex
dialed []string
}
func (d *recordingDialer) dialContext(
ctx context.Context,
network, addr string,
) (net.Conn, error) {
d.mu.Lock()
d.dialed = append(d.dialed, addr)
d.mu.Unlock()
host, _, err := net.SplitHostPort(addr)
if err != nil {
return nil, err
}
if host != testPublicHost {
return nil, fmt.Errorf("%w: %s", errUnexpectedDial, addr)
}
var dialer net.Dialer
return dialer.DialContext(ctx, network, d.target)
}
// dialedAddrs returns a copy of the addresses the dialer was asked to reach.
func (d *recordingDialer) dialedAddrs() []string {
d.mu.Lock()
defer d.mu.Unlock()
return slices.Clone(d.dialed)
}
// startUpstream launches a fake upstream with the routes the fetch tests
// exercise and stops it when the test finishes.
func startUpstream(t *testing.T) *httptest.Server {
t.Helper()
mux := http.NewServeMux()
mux.HandleFunc("/image", func(w http.ResponseWriter, _ *http.Request) {
w.Header().Set("Content-Type", contentTypeJPEG)
_, _ = io.WriteString(w, imagePayload)
})
mux.HandleFunc("/status/500", func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusInternalServerError)
})
mux.HandleFunc("/html", func(w http.ResponseWriter, _ *http.Request) {
w.Header().Set("Content-Type", "text/html; charset=utf-8")
_, _ = io.WriteString(w, "<html></html>")
})
mux.HandleFunc("/redirect/private", func(w http.ResponseWriter, r *http.Request) {
http.Redirect(w, r, "http://169.254.169.254/latest/meta-data/", http.StatusFound)
})
mux.HandleFunc("/redirect/public", func(w http.ResponseWriter, r *http.Request) {
http.Redirect(w, r, "/image", http.StatusFound)
})
mux.HandleFunc("/redirect/chain", func(w http.ResponseWriter, r *http.Request) {
http.Redirect(w, r, "/redirect/hop", http.StatusFound)
})
mux.HandleFunc("/redirect/hop", func(w http.ResponseWriter, r *http.Request) {
http.Redirect(w, r, "/image", http.StatusFound)
})
srv := httptest.NewServer(mux)
t.Cleanup(srv.Close)
return srv
}
// newServerFetcher builds a fetcher whose transport routes testPublicHost to
// srv, leaving the real SSRF validation and redirect checks in place.
func newServerFetcher(
t *testing.T,
srv *httptest.Server,
cfg *Config,
) (*HTTPFetcher, *recordingDialer) {
t.Helper()
if cfg == nil {
cfg = DefaultConfig()
}
cfg.AllowHTTP = true
f := New(cfg)
transport, ok := f.client.Transport.(*http.Transport)
if !ok {
t.Fatalf("transport is %T, want *http.Transport", f.client.Transport)
}
dialer := &recordingDialer{target: srv.Listener.Addr().String()}
transport.DialContext = dialer.dialContext
return f, dialer
}
// testContext returns a context cancelled when the test ends, bounding any
// fetch that would otherwise block on a leaked semaphore slot.
func testContext(t *testing.T) context.Context {
t.Helper()
ctx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
t.Cleanup(cancel)
return ctx
}
// fetchImage fetches path from the fake upstream and fails on error.
func fetchImage(t *testing.T, f *HTTPFetcher, path string) *FetchResult {
t.Helper()
res, err := f.Fetch(testContext(t), upstreamURL(path))
if err != nil {
t.Fatalf("Fetch(%s) error = %v", path, err)
}
return res
}
// fetchExpectError fetches path and fails unless Fetch returns an error.
func fetchExpectError(t *testing.T, f *HTTPFetcher, path string) error {
t.Helper()
res, err := f.Fetch(testContext(t), upstreamURL(path))
if err == nil {
_ = res.Content.Close()
t.Fatalf("Fetch(%s) = nil error, want an error", path)
}
return err
}
// fetchBody fetches path and returns the fully read, closed response body.
func fetchBody(t *testing.T, f *HTTPFetcher, path string) string {
t.Helper()
res := fetchImage(t, f, path)
defer func() { _ = res.Content.Close() }()
data, err := io.ReadAll(res.Content)
if err != nil {
t.Fatalf("read body: %v", err)
}
return string(data)
}
// semLen reports how many per-host semaphore slots are currently held.
func semLen(f *HTTPFetcher, host string) int {
return len(f.getHostSemaphore(host))
}
func TestFetchRedirectToPrivateIPBlocked(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
f, dialer := newServerFetcher(t, srv, nil)
_, err := f.Fetch(testContext(t), upstreamURL("/redirect/private"))
if !errors.Is(err, ErrSSRFBlocked) {
t.Fatalf("Fetch() error = %v, want ErrSSRFBlocked", err)
}
for _, addr := range dialer.dialedAddrs() {
if strings.Contains(addr, "169.254.169.254") {
t.Errorf("dialer connected to the private redirect target: %s", addr)
}
}
}
func TestFetchRedirectToPublicSucceeds(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
f, _ := newServerFetcher(t, srv, nil)
if body := fetchBody(t, f, "/redirect/public"); body != imagePayload {
t.Errorf("body = %q, want %q", body, imagePayload)
}
}
func TestFetchRedirectChainSucceeds(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
f, _ := newServerFetcher(t, srv, nil)
if body := fetchBody(t, f, "/redirect/chain"); body != imagePayload {
t.Errorf("body = %q, want %q", body, imagePayload)
}
}
func TestFetchRejectsNon2xx(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
f, _ := newServerFetcher(t, srv, nil)
err := fetchExpectError(t, f, "/status/500")
if !errors.Is(err, ErrUpstreamError) {
t.Fatalf("Fetch() error = %v, want ErrUpstreamError", err)
}
}
func TestFetchRejectsDisallowedContentType(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
f, _ := newServerFetcher(t, srv, nil)
err := fetchExpectError(t, f, "/html")
if !errors.Is(err, ErrInvalidContentType) {
t.Fatalf("Fetch() error = %v, want ErrInvalidContentType", err)
}
}
func TestFetchMaxResponseSizeEnforced(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxResponseSize = 8
f, _ := newServerFetcher(t, srv, cfg)
res := fetchImage(t, f, "/image")
defer func() { _ = res.Content.Close() }()
data, err := io.ReadAll(res.Content)
if !errors.Is(err, ErrResponseTooLarge) {
t.Fatalf("read error = %v, want ErrResponseTooLarge", err)
}
if int64(len(data)) > cfg.MaxResponseSize {
t.Errorf("read %d bytes, exceeds limit %d", len(data), cfg.MaxResponseSize)
}
}
func TestFetchSemaphoreReleasedOnError(t *testing.T) {
t.Parallel()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxConnectionsPerHost = 1
f, _ := newServerFetcher(t, srv, cfg)
err := fetchExpectError(t, f, "/status/500")
if !errors.Is(err, ErrUpstreamError) {
t.Fatalf("Fetch() error = %v, want ErrUpstreamError", err)
}
if held := semLen(f, testPublicHost); held != 0 {
t.Fatalf("semaphore slot leaked after error: %d held", held)
}
// One slot per host: this fetch proceeds only if the slot was released.
res := fetchImage(t, f, "/image")
_ = res.Content.Close()
}
// assertSlotReleasedByClose fetches an image over a one-slot host, hands the
// open result to consume, and asserts the slot is held before and freed after,
// then that a follow-up fetch can still acquire it.
func assertSlotReleasedByClose(
t *testing.T,
consume func(*testing.T, *FetchResult),
) {
t.Helper()
srv := startUpstream(t)
cfg := DefaultConfig()
cfg.MaxConnectionsPerHost = 1
f, _ := newServerFetcher(t, srv, cfg)
res := fetchImage(t, f, "/image")
if held := semLen(f, testPublicHost); held != 1 {
t.Fatalf("slot not held while body is open: %d held", held)
}
consume(t, res)
if held := semLen(f, testPublicHost); held != 0 {
t.Fatalf("slot not released after close: %d held", held)
}
next := fetchImage(t, f, "/image")
_ = next.Content.Close()
}
func TestFetchSemaphoreReleasedOnBodyClose(t *testing.T) {
t.Parallel()
assertSlotReleasedByClose(t, func(t *testing.T, res *FetchResult) {
t.Helper()
_, err := io.ReadAll(res.Content)
if err != nil {
t.Fatalf("read body: %v", err)
}
err = res.Content.Close()
if err != nil {
t.Fatalf("close body: %v", err)
}
})
}
func TestFetchSemaphoreReleasedOnPartialReadClose(t *testing.T) {
t.Parallel()
assertSlotReleasedByClose(t, func(t *testing.T, res *FetchResult) {
t.Helper()
buf := make([]byte, 1)
_, err := res.Content.Read(buf)
if err != nil {
t.Fatalf("partial read: %v", err)
}
err = res.Content.Close()
if err != nil {
t.Fatalf("close body: %v", err)
}
})
}
// The dial-time re-resolution in ssrfSafeDialer is what closes the DNS
// rebinding window: even if validateURL saw a public answer earlier, the
// dialer independently re-checks the address it is about to connect to. A full
// rebinding simulation (a resolver returning public, then private) would mean
// replacing the global net.DefaultResolver with a fake DNS server, which is
// heavyweight and unsafe to mutate under parallel -race tests. The property is
// proven directly here instead: the dialer rejects a private target outright,
// which is exactly the check that fires when a validated host later resolves
// to a private address.
func TestSSRFSafeDialerBlocksPrivateTarget(t *testing.T) {
t.Parallel()
for _, addr := range []string{
"169.254.169.254:80", // link-local (cloud metadata)
"127.0.0.1:80", // loopback
"10.0.0.5:80", // RFC 1918 private
} {
t.Run(addr, func(t *testing.T) {
t.Parallel()
_, err := ssrfSafeDialer(context.Background(), "tcp", addr)
if !errors.Is(err, ErrSSRFBlocked) {
t.Errorf("ssrfSafeDialer(%q) = %v, want ErrSSRFBlocked", addr, err)
}
})
}
}
func TestSSRFSafeDialerAllowsPublicTarget(t *testing.T) {
t.Parallel()
// A cancelled context makes the dial fail immediately without touching the
// network; the point is only that a public literal is not SSRF-blocked.
ctx, cancel := context.WithCancel(context.Background())
cancel()
_, err := ssrfSafeDialer(ctx, "tcp", testPublicHost+":80")
if err == nil {
t.Fatal("expected a dial error for an unreachable public target")
}
if errors.Is(err, ErrSSRFBlocked) {
t.Errorf("public target was SSRF-blocked: %v", err)
}
}
+6 -72
View File
@@ -11,7 +11,6 @@ import (
"net" "net"
"net/http" "net/http"
"net/http/httptrace" "net/http/httptrace"
"net/netip"
neturl "net/url" neturl "net/url"
"slices" "slices"
"strings" "strings"
@@ -47,20 +46,6 @@ const (
localhostIPv6 = "::1" localhostIPv6 = "::1"
) )
// builtinBlockedPrefixes are internal or special-use ranges that Go's
// net.IP predicates (IsPrivate, IsLinkLocalUnicast, and the like) do not
// already cover. They are always blocked, in addition to any
// operator-supplied networks. IPv4-mapped IPv6 addresses are unmapped
// before matching, so these IPv4 ranges are caught in both forms.
//
//nolint:gochecknoglobals // immutable built-in blocklist
var builtinBlockedPrefixes = []netip.Prefix{
netip.MustParsePrefix("100.64.0.0/10"), // RFC 6598 CGNAT / carrier-grade NAT
netip.MustParsePrefix("192.0.0.0/24"), // RFC 6890 IETF protocol assignments
netip.MustParsePrefix("198.18.0.0/15"), // RFC 2544 benchmarking range
netip.MustParsePrefix("64:ff9b::/96"), // RFC 6052 NAT64 (maps onto IPv4)
}
// Fetcher errors. // Fetcher errors.
var ( var (
ErrSSRFBlocked = errors.New("request blocked: private or internal IP") ErrSSRFBlocked = errors.New("request blocked: private or internal IP")
@@ -122,9 +107,6 @@ type Config struct {
AllowHTTP bool AllowHTTP bool
// MaxConnectionsPerHost limits concurrent connections to each upstream host. // MaxConnectionsPerHost limits concurrent connections to each upstream host.
MaxConnectionsPerHost int MaxConnectionsPerHost int
// BlockedNetworks are operator-supplied CIDR ranges refused by the
// dialer, in addition to the always-enforced built-in ranges.
BlockedNetworks []netip.Prefix
} }
// DefaultConfig returns a Config with sensible defaults. // DefaultConfig returns a Config with sensible defaults.
@@ -160,13 +142,9 @@ func New(config *Config) *HTTPFetcher {
config = DefaultConfig() config = DefaultConfig()
} }
// Create transport with SSRF-safe dialer. The dialer re-resolves and // Create transport with SSRF-safe dialer
// re-checks at connect time (closing the DNS-rebinding window) against
// both the built-in ranges and the operator-supplied blocklist.
transport := &http.Transport{ transport := &http.Transport{
DialContext: func(ctx context.Context, network, addr string) (net.Conn, error) { DialContext: ssrfSafeDialer,
return dialSSRFSafe(ctx, network, addr, config.BlockedNetworks)
},
TLSHandshakeTimeout: DefaultTLSTimeout, TLSHandshakeTimeout: DefaultTLSTimeout,
MaxIdleConns: DefaultMaxIdleConns, MaxIdleConns: DefaultMaxIdleConns,
IdleConnTimeout: DefaultIdleConnTimeout, IdleConnTimeout: DefaultIdleConnTimeout,
@@ -473,53 +451,11 @@ func isPrivateIP(ip net.IP) bool {
} }
} }
// Special-use ranges the net.IP predicates above do not cover. return false
addr, ok := netip.AddrFromSlice(ip)
if !ok {
return true
}
addr = addr.Unmap()
return slices.ContainsFunc(builtinBlockedPrefixes, func(prefix netip.Prefix) bool {
return prefix.Contains(addr)
})
} }
// isBlockedIP reports whether ip is refused, either by the built-in // ssrfSafeDialer is a custom dialer that validates IP addresses before connecting.
// internal-range check or by one of the operator-supplied prefixes.
func isBlockedIP(ip net.IP, blocked []netip.Prefix) bool {
if isPrivateIP(ip) {
return true
}
addr, ok := netip.AddrFromSlice(ip)
if !ok {
return true
}
addr = addr.Unmap()
return slices.ContainsFunc(blocked, func(prefix netip.Prefix) bool {
return prefix.Contains(addr)
})
}
// ssrfSafeDialer validates IP addresses against the built-in blocked ranges
// before connecting. New wraps dialSSRFSafe with the operator-supplied
// blocklist; this entry point enforces the built-in ranges alone.
func ssrfSafeDialer(ctx context.Context, network, addr string) (net.Conn, error) { func ssrfSafeDialer(ctx context.Context, network, addr string) (net.Conn, error) {
return dialSSRFSafe(ctx, network, addr, nil)
}
// dialSSRFSafe re-resolves addr and refuses to connect to any built-in
// internal range or operator-supplied blocked prefix, closing the
// DNS-rebinding window at connect time.
func dialSSRFSafe(
ctx context.Context,
network, addr string,
blocked []netip.Prefix,
) (net.Conn, error) {
host, port, err := net.SplitHostPort(addr) host, port, err := net.SplitHostPort(addr)
if err != nil { if err != nil {
return nil, err return nil, err
@@ -532,10 +468,8 @@ func dialSSRFSafe(
} }
// Check all resolved IPs // Check all resolved IPs
for _, ip := range ips { if slices.ContainsFunc(ips, isPrivateIP) {
if isBlockedIP(ip, blocked) { return nil, ErrSSRFBlocked
return nil, ErrSSRFBlocked
}
} }
// Connect using the first valid IP // Connect using the first valid IP
-37
View File
@@ -21,33 +21,6 @@ import (
// CORSMaxAgeSeconds is the max age for CORS preflight cache (24 hours). // CORSMaxAgeSeconds is the max age for CORS preflight cache (24 hours).
const CORSMaxAgeSeconds = 86400 const CORSMaxAgeSeconds = 86400
// HSTSValue is the Strict-Transport-Security header value: one year with
// includeSubDomains. Emitted unconditionally even though pixa listens plain
// HTTP behind a TLS-terminating proxy; browsers ignore an HSTS header received
// over plaintext (RFC 6797 section 8.1), so it never lies about the connection,
// and emitting it here avoids trusting a forwarded-proto header.
const HSTSValue = "max-age=31536000; includeSubDomains"
// ContentSecurityPolicyValue is the Content-Security-Policy header value.
// default-src 'self' is the baseline and frame-ancestors 'none' is the primary
// clickjacking control. 'unsafe-inline' is required in script-src and style-src
// because the served templates carry inline onclick handlers (generator page)
// and the bundled Tailwind asset injects a runtime <style> element; dropping it
// needs template changes outside this issue's scope.
const ContentSecurityPolicyValue = "default-src 'self'; " +
"script-src 'self' 'unsafe-inline'; " +
"style-src 'self' 'unsafe-inline'; " +
"object-src 'none'; " +
"base-uri 'self'; " +
"form-action 'self'; " +
"frame-ancestors 'none'"
// PermissionsPolicyValue is the Permissions-Policy header value. Every listed
// feature is denied because pixa uses none of them.
const PermissionsPolicyValue = "accelerometer=(), autoplay=(), camera=(), " +
"display-capture=(), geolocation=(), gyroscope=(), magnetometer=(), " +
"microphone=(), payment=(), usb=()"
// Params defines dependencies for Middleware. // Params defines dependencies for Middleware.
type Params struct { type Params struct {
fx.In fx.In
@@ -191,16 +164,6 @@ func (s *Middleware) SecurityHeaders() func(http.Handler) http.Handler {
// Disable XSS filtering (modern browsers don't need it, can cause issues) // Disable XSS filtering (modern browsers don't need it, can cause issues)
w.Header().Set("X-XSS-Protection", "0") w.Header().Set("X-XSS-Protection", "0")
// Force HTTPS on future visits (ignored by browsers over plaintext)
w.Header().Set("Strict-Transport-Security", HSTSValue)
// Restrict content sources; frame-ancestors is the primary
// clickjacking control, X-Frame-Options the legacy fallback
w.Header().Set("Content-Security-Policy", ContentSecurityPolicyValue)
// Deny browser features pixa does not use
w.Header().Set("Permissions-Policy", PermissionsPolicyValue)
next.ServeHTTP(w, r) next.ServeHTTP(w, r)
}) })
} }
@@ -56,61 +56,6 @@ func TestSecurityHeaders(t *testing.T) {
} }
} }
func TestSecurityHeaders_PolicyHeaders(t *testing.T) {
t.Parallel()
cfg := &config.Config{}
mw := &Middleware{
log: slog.Default(),
config: cfg,
}
testHandler := http.HandlerFunc(func(w http.ResponseWriter, _ *http.Request) {
w.WriteHeader(http.StatusOK)
})
handler := mw.SecurityHeaders()(testHandler)
req := httptest.NewRequestWithContext(t.Context(), http.MethodGet, "/test", nil)
rec := httptest.NewRecorder()
handler.ServeHTTP(rec, req)
tests := []struct {
header string
want string
}{
{"Strict-Transport-Security", "max-age=31536000; includeSubDomains"},
{
"Content-Security-Policy",
"default-src 'self'; " +
"script-src 'self' 'unsafe-inline'; " +
"style-src 'self' 'unsafe-inline'; " +
"object-src 'none'; " +
"base-uri 'self'; " +
"form-action 'self'; " +
"frame-ancestors 'none'",
},
{
"Permissions-Policy",
"accelerometer=(), autoplay=(), camera=(), " +
"display-capture=(), geolocation=(), gyroscope=(), " +
"magnetometer=(), microphone=(), payment=(), usb=()",
},
}
for _, tt := range tests {
t.Run(tt.header, func(t *testing.T) {
t.Parallel()
got := rec.Header().Get(tt.header)
if got != tt.want {
t.Errorf("%s = %q, want %q", tt.header, got, tt.want)
}
})
}
}
func TestSecurityHeaders_PreservesExistingHeaders(t *testing.T) { func TestSecurityHeaders_PreservesExistingHeaders(t *testing.T) {
t.Parallel() t.Parallel()
+11 -27
View File
@@ -9,40 +9,24 @@ import (
// HTTP server configuration constants. // HTTP server configuration constants.
const ( const (
HTTPReadTimeout = 30 * time.Second HTTPReadTimeout = 30 * time.Second
// HTTPReadHeaderTimeout bounds the request-header read on its own, HTTPWriteTimeout = 60 * time.Second
// short, so a slowloris client dribbling headers is dropped well
// before it ties up a connection for the whole ReadTimeout window.
HTTPReadHeaderTimeout = 10 * time.Second
HTTPWriteTimeout = 60 * time.Second
// HTTPIdleTimeout bounds how long an idle keep-alive connection is
// held open, so idle connections cannot accumulate without limit on a
// service targeting high concurrency.
HTTPIdleTimeout = 120 * time.Second
HTTPMaxHeaderBytes = 8 << 10 // 8KB HTTPMaxHeaderBytes = 8 << 10 // 8KB
) )
// newHTTPServer builds the http.Server with the hardening timeouts and
// limits applied. It is separate from serveUntilShutdown so the
// configuration can be asserted in a test without binding a listener.
func (s *Server) newHTTPServer() *http.Server {
return &http.Server{
Addr: fmt.Sprintf(":%d", s.config.Port),
ReadTimeout: HTTPReadTimeout,
ReadHeaderTimeout: HTTPReadHeaderTimeout,
WriteTimeout: HTTPWriteTimeout,
IdleTimeout: HTTPIdleTimeout,
MaxHeaderBytes: HTTPMaxHeaderBytes,
Handler: s,
}
}
func (s *Server) serveUntilShutdown() { func (s *Server) serveUntilShutdown() {
s.httpServer = s.newHTTPServer() listenAddr := fmt.Sprintf(":%d", s.config.Port)
s.httpServer = &http.Server{
Addr: listenAddr,
ReadTimeout: HTTPReadTimeout,
WriteTimeout: HTTPWriteTimeout,
MaxHeaderBytes: HTTPMaxHeaderBytes,
Handler: s,
}
s.SetupRoutes() s.SetupRoutes()
s.log.Info("http begin listen", "listenaddr", s.httpServer.Addr) s.log.Info("http begin listen", "listenaddr", listenAddr)
err := s.httpServer.ListenAndServe() err := s.httpServer.ListenAndServe()
if err != nil && !errors.Is(err, http.ErrServerClosed) { if err != nil && !errors.Is(err, http.ErrServerClosed) {
-65
View File
@@ -1,65 +0,0 @@
package server
import (
"testing"
"time"
"sneak.berlin/go/pixa/internal/config"
)
// TestNewHTTPServerTimeouts verifies that the constructed http.Server
// carries every hardening timeout wired onto it, including the slowloris
// defense (ReadHeaderTimeout) and the keep-alive bound (IdleTimeout). This
// guards against a field being defined but never set on the server, so
// each assertion compares the server field to its constant.
func TestNewHTTPServerTimeouts(t *testing.T) {
t.Parallel()
s := &Server{config: &config.Config{Port: 8080}}
srv := s.newHTTPServer()
fields := []struct {
name string
got time.Duration
want time.Duration
}{
{"ReadTimeout", srv.ReadTimeout, HTTPReadTimeout},
{"ReadHeaderTimeout", srv.ReadHeaderTimeout, HTTPReadHeaderTimeout},
{"WriteTimeout", srv.WriteTimeout, HTTPWriteTimeout},
{"IdleTimeout", srv.IdleTimeout, HTTPIdleTimeout},
}
for _, f := range fields {
if f.got != f.want {
t.Errorf("%s = %v, want %v", f.name, f.got, f.want)
}
}
if srv.MaxHeaderBytes != HTTPMaxHeaderBytes {
t.Errorf("MaxHeaderBytes = %d, want %d",
srv.MaxHeaderBytes, HTTPMaxHeaderBytes)
}
if srv.Handler != s {
t.Error("Handler is not the server")
}
}
// TestHardeningTimeoutValues pins the intent behind the two new timeouts
// without hard-coding brittle exact durations: the header-read phase is
// bounded strictly shorter than the whole-request read (the slowloris
// dribble), and idle keep-alive connections are bounded rather than held
// open forever.
func TestHardeningTimeoutValues(t *testing.T) {
t.Parallel()
if HTTPReadHeaderTimeout <= 0 || HTTPReadHeaderTimeout > HTTPReadTimeout {
t.Errorf("ReadHeaderTimeout = %v, want positive and <= ReadTimeout %v",
HTTPReadHeaderTimeout, HTTPReadTimeout)
}
if HTTPIdleTimeout <= 0 {
t.Errorf("IdleTimeout = %v, want positive bound", HTTPIdleTimeout)
}
}
+4 -13
View File
@@ -8,7 +8,6 @@ import (
"github.com/go-chi/chi/v5/middleware" "github.com/go-chi/chi/v5/middleware"
"github.com/prometheus/client_golang/prometheus/promhttp" "github.com/prometheus/client_golang/prometheus/promhttp"
"sneak.berlin/go/pixa/internal/handlers"
"sneak.berlin/go/pixa/internal/static" "sneak.berlin/go/pixa/internal/static"
) )
@@ -45,19 +44,11 @@ func (s *Server) SetupRoutes() {
// Static files (Tailwind CSS, etc.) // Static files (Tailwind CSS, etc.)
s.router.Handle("/static/*", http.StripPrefix("/static/", static.Handler())) s.router.Handle("/static/*", http.StripPrefix("/static/", static.Handler()))
// Login/generator UI. The form routes carry CSRF protection; the // Login/generator UI
// token cookie is independent of the session cookie, so it also s.router.Get("/", s.h.HandleRoot())
// covers the login POST, where no session exists yet. LimitBody caps s.router.Post("/", s.h.HandleRoot())
// the POST body ahead of CSRF, which reads its token from that body.
s.router.Group(func(r chi.Router) {
r.Use(s.h.LimitBody(handlers.MaxFormBytes))
r.Use(s.h.CSRF())
r.Get("/", s.h.HandleRoot())
r.Post("/", s.h.HandleRoot())
r.Post("/generate", s.h.HandleGenerateURL())
})
s.router.Get("/logout", s.h.HandleLogout()) s.router.Get("/logout", s.h.HandleLogout())
s.router.Post("/generate", s.h.HandleGenerateURL())
// Main image proxy route // Main image proxy route
// /v1/image/<host>/<path>/<width>x<height>.<format> // /v1/image/<host>/<path>/<width>x<height>.<format>
-1
View File
@@ -47,7 +47,6 @@
{{end}} {{end}}
<form method="POST" action="/generate" class="bg-white rounded-lg shadow-md p-6 space-y-4"> <form method="POST" action="/generate" class="bg-white rounded-lg shadow-md p-6 space-y-4">
{{ .CSRFField }}
<div> <div>
<label for="url" class="block text-sm font-medium text-gray-700 mb-1"> <label for="url" class="block text-sm font-medium text-gray-700 mb-1">
Source URL Source URL
-1
View File
@@ -17,7 +17,6 @@
{{end}} {{end}}
<form method="POST" action="/" class="space-y-4"> <form method="POST" action="/" class="space-y-4">
{{ .CSRFField }}
<div> <div>
<label for="key" class="block text-sm font-medium text-gray-700 mb-1"> <label for="key" class="block text-sm font-medium text-gray-700 mb-1">
Signing Key Signing Key