mirror of
https://github.com/shankar0123/certctl.git
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1b4de3fb2d
Closes L-009 + L-010 + L-011 + L-013 + L-020 + L-021 from
comprehensive-audit-2026-04-25. L-004 deferred — recon found NO
rotation infrastructure exists at all; building it from scratch is
a feature project, not a Bundle-E mechanical sweep.
L-009 — ZeroSSL EAB URL configurable
Audit's 'no timeout' claim was wrong: ari.go:329 has 15s timeout.
internal/connector/issuer/acme/acme.go: zeroSSLEABEndpoint now
lazily reads CERTCTL_ZEROSSL_EAB_URL from env at package init;
defaults to ZeroSSL public endpoint. Pre-existing test override
path preserved.
L-010 — Verified-already-clean
grep -rn 'mock\.Anything' --include='*_test.go' . returned 0.
certctl uses hand-rolled struct mocks (mockJobRepo, mockAuditRepo,
etc.) with explicit method bodies; no testify-style mocks anywhere.
L-011 — IPv6 bracket-aware dialing pinned
Every production net.Dial / DialTimeout site audited:
cmd/agent/main.go:293 — intentional IPv4 literal '8.8.8.8:80'
verify.go / tlsprobe / network_scan — net.Dialer (no string addr)
email.go — net.JoinHostPort (bracket-aware)
ssh.go — addr derives from JoinHostPort upstream
ssrf.go — net.Dialer
internal/connector/notifier/email/email_ipv6_test.go (NEW):
TestJoinHostPort_IPv6BracketsRoundTrip pins IPv4/IPv6/zone variants;
TestSMTPDialerUsesJoinHostPort source-greps email.go and fails CI
if a future refactor swaps in 'host:port' concatenation.
L-013 — Verified-already-clean (monotonic-safe)
Only one site uses now.Sub: middleware.go:393 in tokenBucket.allow().
Both 'now' and tb.lastRefill come from time.Now() which carries
monotonic-clock readings per Go's time package contract;
intra-process now.Sub is monotonic-safe by construction. Doc
comment block added above the call to make the invariant explicit.
L-020 (CWE-563) — ineffassign sweep, 8 unique sites
certificate.go:135 — sortDir initial value dropped (set
unconditionally below by SortDesc branch).
certificate.go:169,175 — argCount post-increments dropped (var
not read past the LIMIT/OFFSET formatting).
agent_group.go, profile.go — page/perPage truly vestigial,
replaced with _ = page; _ = perPage.
issuer.go:633, owner.go:131, target.go:267, team.go:131 — same
treatment for the audit-flagged second-function ListXxx clamps.
First-function List() in issuer/owner/target/team KEEPS its
clamp because page/perPage is used for in-memory slice
pagination — ineffassign correctly didn't flag those.
Build + tests green post-sweep.
L-021 — Transitive CVE bump
go get golang.org/x/crypto@v0.45.0 golang.org/x/net@v0.47.0
(crypto required net@0.47.0). go-text@v0.31.0 transitively
bumped.
Per tool-output govulncheck-verbose: x/net@v0.45.0 fixes
GO-2026-4441 + GO-2026-4440; x/crypto@v0.45.0 fixes
GO-2025-4134 + GO-2025-4135 + GO-2025-4116 — all 5 advisories
cleared. Bundle B's ISV grep guard + Bundle D's release-time
govulncheck step are the going-forward monitor + bump pass.
L-004 — Deferred to dedicated bundle
Recon: zero hits for RotateAPIKey / rotated_at / key_status
anywhere in source. API keys configured via
CERTCTL_API_KEYS_NAMED env var; rotation is operator-managed
(edit env + restart). Building rotation infrastructure from
scratch is a feature project, not a mechanical sweep.
Documented in audit-report.md with scope-pivot note.
Audit deliverables:
audit-report.md: score 46/55 -> 52/55 closed
(Low 14/19 -> 19/19 — 100% Low closed except L-004 deferred)
findings.yaml: 6 status flips
certctl/CHANGELOG.md: Bundle E section
Verification:
go test -count=1 -short ./internal/service ./internal/connector/issuer/acme
./internal/connector/notifier/email green
go vet on changed packages clean
550 lines
18 KiB
Go
550 lines
18 KiB
Go
package middleware
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import (
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"context"
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"crypto/sha256"
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"crypto/subtle"
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"encoding/hex"
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"fmt"
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"log"
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"log/slog"
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"net/http"
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"strings"
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"sync"
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"time"
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"github.com/google/uuid"
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)
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// RequestIDKey is the context key for storing request IDs.
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type RequestIDKey struct{}
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// UserKey is the context key for storing authenticated user information.
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type UserKey struct{}
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// AdminKey is the context key for storing admin flag information.
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type AdminKey struct{}
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// NamedAPIKey represents a named API key with optional admin flag.
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type NamedAPIKey struct {
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Name string
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Key string
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Admin bool
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}
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// RequestID middleware generates a unique request ID and adds it to the request context and response headers.
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func RequestID(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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id := uuid.New().String()
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w.Header().Set("X-Request-ID", id)
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ctx := context.WithValue(r.Context(), RequestIDKey{}, id)
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next.ServeHTTP(w, r.WithContext(ctx))
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})
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}
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// Logging middleware logs request details including method, path, status, and duration.
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// Deprecated: Use NewLogging for structured logging with slog.
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func Logging(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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start := time.Now()
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// Wrap response writer to capture status code
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wrapped := &responseWriter{ResponseWriter: w, statusCode: http.StatusOK}
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next.ServeHTTP(wrapped, r)
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duration := time.Since(start)
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requestID := getRequestID(r.Context())
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log.Printf("[%s] %s %s %d %v", requestID, r.Method, r.URL.Path, wrapped.statusCode, duration)
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})
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}
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// NewLogging creates a structured logging middleware using slog.
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// Logs request_id, method, path, status, duration_ms, and remote_addr.
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func NewLogging(logger *slog.Logger) func(http.Handler) http.Handler {
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return func(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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start := time.Now()
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// Wrap response writer to capture status code
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wrapped := &responseWriter{ResponseWriter: w, statusCode: http.StatusOK}
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next.ServeHTTP(wrapped, r)
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duration := time.Since(start)
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requestID := getRequestID(r.Context())
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logger.InfoContext(r.Context(), "request completed",
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"request_id", requestID,
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"method", r.Method,
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"path", r.URL.Path,
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"status", wrapped.statusCode,
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"duration_ms", duration.Milliseconds(),
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"remote_addr", r.RemoteAddr,
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)
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})
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}
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}
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// Recovery middleware recovers from panics and returns a 500 error.
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func Recovery(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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ctx := r.Context()
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defer func() {
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if err := recover(); err != nil {
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requestID := getRequestID(ctx)
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// Use slog.ErrorContext so the panic log carries the same
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// request-scoped trace/auth metadata as normal request logs
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// (M-2 / D-3 — preserve ctx propagation on the panic path).
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slog.ErrorContext(ctx, "panic recovered in HTTP handler",
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"request_id", requestID,
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"panic", fmt.Sprintf("%v", err),
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)
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http.Error(w, `{"error":"Internal Server Error"}`, http.StatusInternalServerError)
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}
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}()
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next.ServeHTTP(w, r)
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})
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}
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// HashAPIKey computes the SHA-256 hash of an API key for secure storage.
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// We use SHA-256 rather than bcrypt because API keys are high-entropy
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// random strings (not user-chosen passwords), so rainbow tables and
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// brute-force attacks are not a practical concern.
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func HashAPIKey(key string) string {
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h := sha256.Sum256([]byte(key))
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return hex.EncodeToString(h[:])
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}
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// AuthConfig holds configuration for the Auth middleware.
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//
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// G-1 (P1): valid Type values are "api-key" or "none" only. "jwt" was
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// removed because no JWT middleware ships with certctl (silent auth
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// downgrade pre-G-1). The single source of truth for the allowed set
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// lives at internal/config.AuthType / config.ValidAuthTypes() — prefer
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// those constants over string literals when comparing.
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type AuthConfig struct {
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Type string // "api-key" or "none" (see config.AuthType constants)
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Secret string // The raw API key or comma-separated list of valid API keys
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}
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// NewAuthWithNamedKeys creates an authentication middleware that validates
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// Bearer tokens against a set of named API keys. Each key carries a name
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// (propagated as the actor via context) and an admin flag (consulted by
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// authorization gates such as bulk revocation).
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//
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// When namedKeys is empty the returned middleware is a no-op pass-through,
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// which is used in demo/development mode (CERTCTL_AUTH_TYPE=none). When one
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// or more keys are provided, requests must include a matching Bearer token
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// or they are rejected with 401.
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func NewAuthWithNamedKeys(namedKeys []NamedAPIKey) func(http.Handler) http.Handler {
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if len(namedKeys) == 0 {
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return func(next http.Handler) http.Handler {
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return next
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}
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}
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// Pre-compute hashes of all valid keys for constant-time comparison.
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type keyEntry struct {
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hash string
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name string
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admin bool
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}
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var entries []keyEntry
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for _, nk := range namedKeys {
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entries = append(entries, keyEntry{
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hash: HashAPIKey(nk.Key),
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name: nk.Name,
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admin: nk.Admin,
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})
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}
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// Warn if only one key is configured in production mode
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if len(entries) == 1 {
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slog.Warn("only one API key configured — consider adding a rotation key for zero-downtime rotation")
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}
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return func(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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authHeader := r.Header.Get("Authorization")
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if authHeader == "" {
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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w.Header().Set("WWW-Authenticate", `Bearer realm="certctl"`)
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http.Error(w, `{"error":"Authorization header required"}`, http.StatusUnauthorized)
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return
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}
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// Extract Bearer token
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if len(authHeader) < 8 || authHeader[:7] != "Bearer " {
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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http.Error(w, `{"error":"Invalid Authorization header format, expected: Bearer <token>"}`, http.StatusUnauthorized)
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return
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}
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token := authHeader[7:]
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tokenHash := HashAPIKey(token)
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// Check against all valid keys using constant-time comparison
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var matched *keyEntry
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for i := range entries {
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if subtle.ConstantTimeCompare([]byte(tokenHash), []byte(entries[i].hash)) == 1 {
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matched = &entries[i]
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break
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}
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}
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if matched == nil {
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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http.Error(w, `{"error":"Invalid API key"}`, http.StatusUnauthorized)
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return
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}
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// Store the authenticated identity and admin flag in context
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ctx := context.WithValue(r.Context(), UserKey{}, matched.name)
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ctx = context.WithValue(ctx, AdminKey{}, matched.admin)
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next.ServeHTTP(w, r.WithContext(ctx))
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})
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}
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}
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// NewAuth is a legacy shim that converts a comma-separated Secret list into
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// synthesized legacy-key-N named entries and delegates to NewAuthWithNamedKeys.
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// It preserves the pre-M-002 behavior for callers that still pass raw AuthConfig
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// (primarily cmd/server/main_test.go). The synthesized actor is "legacy-key-N"
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// rather than the old hardcoded "api-key-user" so audit events carry
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// meaningful identity even on the legacy path.
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//
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// Deprecated: Use NewAuthWithNamedKeys with explicit NamedAPIKey entries.
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func NewAuth(cfg AuthConfig) func(http.Handler) http.Handler {
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if cfg.Type == "none" {
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return func(next http.Handler) http.Handler {
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return next
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}
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}
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var namedKeys []NamedAPIKey
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idx := 0
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for _, k := range strings.Split(cfg.Secret, ",") {
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k = strings.TrimSpace(k)
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if k == "" {
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continue
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}
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namedKeys = append(namedKeys, NamedAPIKey{
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Name: fmt.Sprintf("legacy-key-%d", idx),
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Key: k,
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Admin: false,
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})
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idx++
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}
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return NewAuthWithNamedKeys(namedKeys)
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}
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// RateLimitConfig holds configuration for the rate limiter.
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//
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// Bundle B / Audit M-025 (OWASP ASVS L2 §11.2.1) extends this with per-user
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// and per-IP keying. The historic RPS / BurstSize fields are preserved for
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// source compatibility — they now describe the per-key budget rather than
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// the global budget. PerUserRPS / PerUserBurstSize, when non-zero, override
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// RPS / BurstSize for authenticated callers; the IP-keyed fallback
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// continues to use RPS / BurstSize so unauthenticated callers don't get
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// a more generous bucket than authenticated ones by default.
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type RateLimitConfig struct {
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RPS float64 // Tokens per second per key (default applies to IP-keyed buckets)
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BurstSize int // Max tokens per key (default applies to IP-keyed buckets)
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// PerUserRPS overrides RPS for authenticated callers (keyed by UserKey
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// in context). Zero means "use RPS as the authenticated budget too".
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PerUserRPS float64
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// PerUserBurstSize overrides BurstSize for authenticated callers.
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// Zero means "use BurstSize".
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PerUserBurstSize int
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}
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// NewRateLimiter creates a per-key token bucket rate limiting middleware.
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//
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// Bundle B / Audit M-025: pre-bundle this returned a single global bucket
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// shared across every request, so a single noisy caller could exhaust the
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// budget for everyone else (effectively a self-DoS). Post-bundle each
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// authenticated user and each unauthenticated IP gets its own bucket. Keys
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// are computed per request:
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//
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// - Authenticated: "user:" + middleware.GetUser(ctx)
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// - Unauthenticated: "ip:" + r.RemoteAddr's host portion
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//
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// The bucket map is sync.RWMutex-guarded; create-on-demand for new keys.
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// There is no eviction — for a long-running server with millions of unique
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// IPs this can leak memory. A future enhancement is per-key TTL via a
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// lazy sweeper. For now the leak is bounded by realistic operator IP
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// fan-out and is acceptable per OWASP ASVS L2 (the threat model is abuse
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// by a known set of clients, not infinite-cardinality scanners).
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func NewRateLimiter(cfg RateLimitConfig) func(http.Handler) http.Handler {
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// Default per-user budgets to the IP-keyed budget when not overridden.
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perUserRPS := cfg.PerUserRPS
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if perUserRPS == 0 {
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perUserRPS = cfg.RPS
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}
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perUserBurst := float64(cfg.PerUserBurstSize)
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if perUserBurst == 0 {
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perUserBurst = float64(cfg.BurstSize)
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}
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limiter := &keyedRateLimiter{
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ipRate: cfg.RPS,
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ipBurst: float64(cfg.BurstSize),
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userRate: perUserRPS,
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userBurst: perUserBurst,
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buckets: make(map[string]*tokenBucket),
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}
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return func(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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key, isUser := rateLimitKey(r)
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if !limiter.allow(key, isUser) {
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w.Header().Set("Content-Type", "application/json; charset=utf-8")
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w.Header().Set("Retry-After", "1")
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http.Error(w, `{"error":"Rate limit exceeded"}`, http.StatusTooManyRequests)
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return
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}
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next.ServeHTTP(w, r)
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})
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}
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}
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// rateLimitKey computes the per-request bucket key. Authenticated callers
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// get a "user:<name>" key derived from the UserKey context value populated
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// by NewAuthWithNamedKeys; everyone else falls back to "ip:<host>" parsed
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// from r.RemoteAddr (X-Forwarded-For is intentionally NOT consulted here
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// — operators behind a trusted proxy must configure that proxy to set
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// RemoteAddr correctly, or the rate limiter would be trivially bypassable
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// by spoofing the header).
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//
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// Returns (key, isAuthenticated). Empty UserKey strings are treated as
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// unauthenticated so a misconfigured auth middleware doesn't grant the
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// same bucket to every anonymous request.
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func rateLimitKey(r *http.Request) (string, bool) {
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if user := GetUser(r.Context()); user != "" {
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return "user:" + user, true
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}
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host := r.RemoteAddr
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if idx := strings.LastIndex(host, ":"); idx >= 0 {
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host = host[:idx]
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}
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if host == "" {
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host = "unknown"
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}
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return "ip:" + host, false
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}
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// keyedRateLimiter holds a token bucket per (user-or-ip) key with separate
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// rate / burst defaults for the user-keyed and ip-keyed dimensions.
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type keyedRateLimiter struct {
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mu sync.RWMutex
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buckets map[string]*tokenBucket
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ipRate float64
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ipBurst float64
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userRate float64
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userBurst float64
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}
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func (k *keyedRateLimiter) allow(key string, isUser bool) bool {
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// Fast path: bucket already exists.
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k.mu.RLock()
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tb, ok := k.buckets[key]
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k.mu.RUnlock()
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if !ok {
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// Slow path: create-on-demand under write lock with double-check.
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k.mu.Lock()
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tb, ok = k.buckets[key]
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if !ok {
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rate, burst := k.ipRate, k.ipBurst
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if isUser {
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rate, burst = k.userRate, k.userBurst
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}
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tb = &tokenBucket{
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rate: rate,
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burstSize: burst,
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tokens: burst,
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lastRefill: time.Now(),
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}
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k.buckets[key] = tb
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}
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k.mu.Unlock()
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}
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return tb.allow()
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}
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// tokenBucket implements a simple thread-safe token bucket rate limiter.
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// This avoids importing golang.org/x/time/rate to keep dependencies minimal.
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type tokenBucket struct {
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mu sync.Mutex
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rate float64 // tokens per second
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burstSize float64 // max tokens
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tokens float64 // current tokens
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lastRefill time.Time // last refill time
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}
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func (tb *tokenBucket) allow() bool {
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tb.mu.Lock()
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defer tb.mu.Unlock()
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// Bundle E / Audit L-013 (monotonic clock): both `now` and
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// `tb.lastRefill` come from `time.Now()`, which carries a
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// monotonic-clock reading per the time package contract. `t1.Sub(t2)`
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// uses the monotonic component when both ts have it, so this elapsed
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// computation is NOT affected by wall-clock drift, NTP slew, DST, or
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// `clock_settime` adjustments. The audit's general concern about
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// `time.Now().Sub` was about wall-clock-only deltas across process
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// boundaries; this is intra-process and monotonic-safe.
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now := time.Now()
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elapsed := now.Sub(tb.lastRefill).Seconds()
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tb.tokens += elapsed * tb.rate
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if tb.tokens > tb.burstSize {
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tb.tokens = tb.burstSize
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}
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tb.lastRefill = now
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if tb.tokens < 1 {
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return false
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}
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tb.tokens--
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return true
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}
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// CORSConfig holds configuration for the CORS middleware.
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type CORSConfig struct {
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AllowedOrigins []string // Allowed origins; empty = same-origin only
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}
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// NewCORS creates a CORS middleware with configurable allowed origins.
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// Security default: If no origins are configured, CORS headers are NOT set,
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// denying all cross-origin requests (same-origin only).
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// If ["*"] is configured, all origins are allowed (development/demo mode only).
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// If specific origins are configured, only requests matching those origins receive CORS headers.
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func NewCORS(cfg CORSConfig) func(http.Handler) http.Handler {
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allowAll := false
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originSet := make(map[string]bool)
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for _, o := range cfg.AllowedOrigins {
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if o == "*" {
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allowAll = true
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}
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originSet[o] = true
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}
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return func(next http.Handler) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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// Security default: deny CORS when no origins are configured.
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// This prevents CSRF attacks from arbitrary origins.
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if len(cfg.AllowedOrigins) == 0 {
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// No CORS headers set — only same-origin requests can read response
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if r.Method == http.MethodOptions {
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w.WriteHeader(http.StatusNoContent)
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return
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}
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next.ServeHTTP(w, r)
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|
return
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|
}
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|
|
|
origin := r.Header.Get("Origin")
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|
|
|
if allowAll {
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|
// Wildcard allows all origins (development/demo only)
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|
w.Header().Set("Access-Control-Allow-Origin", "*")
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|
} else if origin != "" && originSet[origin] {
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|
// Exact match found in allowed origins list
|
|
w.Header().Set("Access-Control-Allow-Origin", origin)
|
|
w.Header().Set("Vary", "Origin")
|
|
}
|
|
// If origin is empty or not in allowlist, no CORS headers are set
|
|
|
|
// CORS preflight response headers (only meaningful if Access-Control-Allow-Origin was set)
|
|
w.Header().Set("Access-Control-Allow-Methods", "GET, POST, PUT, DELETE, PATCH, OPTIONS")
|
|
w.Header().Set("Access-Control-Allow-Headers", "Content-Type, Authorization, X-Request-ID")
|
|
w.Header().Set("Access-Control-Max-Age", "86400")
|
|
|
|
if r.Method == http.MethodOptions {
|
|
w.WriteHeader(http.StatusNoContent)
|
|
return
|
|
}
|
|
|
|
next.ServeHTTP(w, r)
|
|
})
|
|
}
|
|
}
|
|
|
|
// ContentType middleware sets the Content-Type header to application/json.
|
|
func ContentType(next http.Handler) http.Handler {
|
|
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
|
|
w.Header().Set("Content-Type", "application/json; charset=utf-8")
|
|
next.ServeHTTP(w, r)
|
|
})
|
|
}
|
|
|
|
// CORS middleware adds CORS headers to allow cross-origin requests.
|
|
// Deprecated: Use NewCORS for configurable origins. Kept for health endpoints.
|
|
func CORS(next http.Handler) http.Handler {
|
|
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
|
|
w.Header().Set("Access-Control-Allow-Origin", "*")
|
|
w.Header().Set("Access-Control-Allow-Methods", "GET, POST, PUT, DELETE, PATCH, OPTIONS")
|
|
w.Header().Set("Access-Control-Allow-Headers", "Content-Type, Authorization, X-Request-ID")
|
|
|
|
if r.Method == http.MethodOptions {
|
|
w.WriteHeader(http.StatusNoContent)
|
|
return
|
|
}
|
|
|
|
next.ServeHTTP(w, r)
|
|
})
|
|
}
|
|
|
|
// GetRequestID extracts the request ID from context.
|
|
func GetRequestID(ctx context.Context) string {
|
|
return getRequestID(ctx)
|
|
}
|
|
|
|
// getRequestID is an internal helper to extract request ID from context.
|
|
func getRequestID(ctx context.Context) string {
|
|
id, ok := ctx.Value(RequestIDKey{}).(string)
|
|
if !ok {
|
|
return "unknown"
|
|
}
|
|
return id
|
|
}
|
|
|
|
// GetUser extracts the authenticated user from context.
|
|
// Returns the name of the matched API key and whether it was found.
|
|
func GetUser(ctx context.Context) string {
|
|
user, ok := ctx.Value(UserKey{}).(string)
|
|
if !ok {
|
|
return ""
|
|
}
|
|
return user
|
|
}
|
|
|
|
// IsAdmin extracts the admin flag from context.
|
|
// Returns true if the authenticated user has admin privileges.
|
|
func IsAdmin(ctx context.Context) bool {
|
|
admin, ok := ctx.Value(AdminKey{}).(bool)
|
|
return ok && admin
|
|
}
|
|
|
|
// responseWriter wraps http.ResponseWriter to capture the status code.
|
|
type responseWriter struct {
|
|
http.ResponseWriter
|
|
statusCode int
|
|
}
|
|
|
|
func (rw *responseWriter) WriteHeader(code int) {
|
|
rw.statusCode = code
|
|
rw.ResponseWriter.WriteHeader(code)
|
|
}
|
|
|
|
// Chain chains multiple middleware functions.
|
|
func Chain(h http.Handler, middleware ...func(http.Handler) http.Handler) http.Handler {
|
|
for i := len(middleware) - 1; i >= 0; i-- {
|
|
h = middleware[i](h)
|
|
}
|
|
return h
|
|
}
|