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Bearer keys (dlk_...) are checked per request against their owner's current account (ban, lock, demotion, sign out everywhere stop or narrow them at once) and their scope: permission routes need the permission in scope, read-only keys only read, level-only routes need an all-permission key, and session-only paths (sign-in, password, 2FA, key management) are never reachable with a key. Per-key rate limit and daily quota with 429 and X-RateLimit/X-Quota/Retry-After headers; usage is written in batches every minute. WebSocket subscriptions honour the scope too. Routes to list, make, rotate and revoke keys; staff with api_keys_manage can see and revoke others' keys under the rank rules. POST /api/auth/token now makes an all-permission key. Audit entries for create/rotate/revoke/denied, and actions done with a key are attributed to "user (key name)". Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com>
115 lines
4.2 KiB
C++
115 lines
4.2 KiB
C++
#include "AuthTokenHandler.h"
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#include "ApiKeyService.h"
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#include "DashboardAuthService.h"
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#include "Game.h"
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#include "Logger.h"
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#include "HTTPContext.h"
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#include "Web.h"
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std::string AuthTokenHandler::ExtractCookie(const std::string& cookieHeader, const std::string& name) {
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// Match whole cookie names only so "xdashboardToken" does not satisfy "dashboardToken"
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size_t pos = 0;
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while (pos < cookieHeader.size()) {
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while (pos < cookieHeader.size() && (cookieHeader[pos] == ' ' || cookieHeader[pos] == ';')) pos++;
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const size_t end = std::min(cookieHeader.find(';', pos), cookieHeader.size());
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const std::string_view pair(cookieHeader.data() + pos, end - pos);
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const size_t eq = pair.find('=');
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if (eq != std::string_view::npos && pair.substr(0, eq) == name) {
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const auto value = pair.substr(eq + 1);
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std::string decoded;
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decoded.reserve(value.size());
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for (size_t i = 0; i < value.size(); ++i) {
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if (value[i] == '%' && i + 2 < value.size()) {
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char* endptr = nullptr;
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const std::string hex(value.substr(i + 1, 2));
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const auto code = std::strtol(hex.c_str(), &endptr, 16);
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if (endptr == hex.c_str() + 2) {
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decoded += static_cast<char>(code);
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i += 2;
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continue;
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}
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}
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decoded += value[i];
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}
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return decoded;
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}
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pos = end + 1;
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}
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return "";
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}
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std::string AuthTokenHandler::ExtractTokenFromAuthHeader(const std::string& authHeader) {
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if (authHeader.starts_with("Bearer ")) return authHeader.substr(7);
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if (authHeader.starts_with("Token ")) return authHeader.substr(6);
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return "";
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}
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std::string AuthTokenHandler::ExtractToken(const std::string& cookieHeader, const std::string& authHeader, eTokenSource& source) {
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auto token = ExtractTokenFromAuthHeader(authHeader);
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if (!token.empty()) {
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source = eTokenSource::HEADER;
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return token;
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}
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token = ExtractCookie(cookieHeader, COOKIE_NAME);
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source = token.empty() ? eTokenSource::NONE : eTokenSource::COOKIE;
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return token;
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}
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AuthTokenHandler::TokenValidationResult AuthTokenHandler::ValidateToken(const std::string& token) {
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TokenValidationResult result;
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if (token.empty()) {
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result.errorMessage = "No token provided";
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return result;
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}
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if (!DashboardAuthService::VerifyToken(token, result.username, result.gmLevel, result.accountId)) {
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result.errorMessage = "Invalid or expired token";
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return result;
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}
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result.isValid = true;
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return result;
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}
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bool AuthTokenHandler::ProcessHTTPContext(HTTPContext& context, HTTPReply& reply) {
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eTokenSource source = eTokenSource::NONE;
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const auto token = ExtractToken(context.GetHeader("Cookie"), context.GetHeader("Authorization"), source);
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if (token.empty()) return true;
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// API keys: their scope and limits are checked here; a key over its limits is refused outright
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if (source == eTokenSource::HEADER && ApiKeyService::LooksLikeKey(token)) {
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const auto keyResult = ApiKeyService::Authenticate(token, context, reply);
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if (keyResult == ApiKeyService::eResult::INVALID) LOG_DEBUG("API key validation failed from %s", context.clientIP.c_str());
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return keyResult != ApiKeyService::eResult::REFUSED;
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}
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const auto result = ValidateToken(token);
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if (!result.isValid) {
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LOG_DEBUG("Authentication token validation failed: %s", result.errorMessage.c_str());
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return true; // Let routes decide if auth is required
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}
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context.isAuthenticated = true;
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context.authenticatedUser = result.username;
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context.accountId = result.accountId;
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context.gmLevel = result.gmLevel;
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context.userData["auth_source"] = source == eTokenSource::COOKIE ? "cookie" : "header";
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if (DashboardAuthService::NeedsTwoFactorSetup(result.accountId, result.gmLevel)) context.userData["needs_2fa"] = "1";
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return true;
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}
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std::string AuthTokenHandler::BuildSessionCookie(const std::string& token, bool rememberMe, bool secure) {
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std::string cookie = std::string("Set-Cookie: ") + COOKIE_NAME + "=" + token + "; Path=/; HttpOnly; SameSite=Strict";
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if (rememberMe) cookie += "; Max-Age=" + std::to_string(30 * 24 * 60 * 60);
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if (secure) cookie += "; Secure";
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return cookie;
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}
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std::string AuthTokenHandler::BuildClearSessionCookie(bool secure) {
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std::string cookie = std::string("Set-Cookie: ") + COOKIE_NAME + "=; Path=/; HttpOnly; SameSite=Strict; Max-Age=0";
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if (secure) cookie += "; Secure";
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return cookie;
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}
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