package controller import ( "errors" "fmt" "io" "log" "net/http" "strings" "time" "github.com/QuantumNous/new-api/common" "github.com/QuantumNous/new-api/constant" taskdto "github.com/QuantumNous/new-api/dto" "github.com/QuantumNous/new-api/logger" "github.com/QuantumNous/new-api/middleware" "github.com/QuantumNous/new-api/model" pluginruntime "github.com/QuantumNous/new-api/pkg/jsplugin" perfmetrics "github.com/QuantumNous/new-api/pkg/perf_metrics" "github.com/QuantumNous/new-api/relay" "github.com/QuantumNous/new-api/relay/channel/task/taskcommon" relaycommon "github.com/QuantumNous/new-api/relay/common" relayconstant "github.com/QuantumNous/new-api/relay/constant" "github.com/QuantumNous/new-api/relay/helper" "github.com/QuantumNous/new-api/relaykit/dto" "github.com/QuantumNous/new-api/relaykit/types" "github.com/QuantumNous/new-api/service" "github.com/QuantumNous/new-api/setting" "github.com/QuantumNous/new-api/setting/operation_setting" "github.com/bytedance/gopkg/util/gopool" "github.com/samber/lo" "github.com/gin-gonic/gin" "github.com/gorilla/websocket" ) func relayHandler(c *gin.Context, info *relaycommon.RelayInfo) *types.NewAPIError { var err *types.NewAPIError switch info.RelayMode { case relayconstant.RelayModeImagesGenerations, relayconstant.RelayModeImagesEdits: err = relay.ImageHelper(c, info) case relayconstant.RelayModeAudioSpeech: fallthrough case relayconstant.RelayModeAudioTranslation: fallthrough case relayconstant.RelayModeAudioTranscription: err = relay.AudioHelper(c, info) case relayconstant.RelayModeRerank: err = relay.RerankHelper(c, info) case relayconstant.RelayModeEmbeddings: err = relay.EmbeddingHelper(c, info) case relayconstant.RelayModeResponses, relayconstant.RelayModeResponsesCompact: err = relay.ResponsesHelper(c, info) case relayconstant.RelayModeAlphaSearch: err = relay.AlphaSearchHelper(c, info) default: err = relay.TextHelper(c, info) } return err } func geminiRelayHandler(c *gin.Context, info *relaycommon.RelayInfo) *types.NewAPIError { var err *types.NewAPIError if strings.Contains(c.Request.URL.Path, "embed") { err = relay.GeminiEmbeddingHandler(c, info) } else { err = relay.GeminiHelper(c, info) } return err } func Relay(c *gin.Context, relayFormat types.RelayFormat) { requestId := c.GetString(common.RequestIdKey) //group := common.GetContextKeyString(c, constant.ContextKeyUsingGroup) //originalModel := common.GetContextKeyString(c, constant.ContextKeyOriginalModel) var ( newAPIError *types.NewAPIError ws *websocket.Conn ) if relayFormat == types.RelayFormatOpenAIRealtime { var err error ws, err = upgrader.Upgrade(c.Writer, c.Request, nil) if err != nil { helper.WssError(c, ws, types.NewError(err, types.ErrorCodeGetChannelFailed, types.ErrOptionWithSkipRetry()).ToOpenAIError()) return } defer ws.Close() } defer func() { if newAPIError != nil { logger.LogError(c, fmt.Sprintf("relay error: %s", common.LocalLogPreview(newAPIError.Error()))) newAPIError.SetMessage(common.MessageWithRequestId(newAPIError.Error(), requestId)) switch relayFormat { case types.RelayFormatOpenAIRealtime: helper.WssError(c, ws, newAPIError.ToOpenAIError()) case types.RelayFormatClaude: c.JSON(newAPIError.StatusCode, gin.H{ "type": "error", "error": newAPIError.ToClaudeError(), }) default: c.JSON(newAPIError.StatusCode, gin.H{ "error": newAPIError.ToOpenAIError(), }) } } }() request, err := helper.GetAndValidateRequest(c, relayFormat) if err != nil { // Map "request body too large" to 413 so clients can handle it correctly if common.IsRequestBodyTooLargeError(err) || errors.Is(err, common.ErrRequestBodyTooLarge) { newAPIError = types.NewErrorWithStatusCode(err, types.ErrorCodeReadRequestBodyFailed, http.StatusRequestEntityTooLarge, types.ErrOptionWithSkipRetry()) } else { newAPIError = types.NewError(err, types.ErrorCodeInvalidRequest) } return } relayInfo, err := relaycommon.GenRelayInfo(c, relayFormat, request, ws) if err != nil { newAPIError = types.NewError(err, types.ErrorCodeGenRelayInfoFailed) return } needSensitiveCheck := setting.ShouldCheckPromptSensitive() needCountToken := constant.CountToken // Avoid building huge CombineText (strings.Join) when token counting and sensitive check are both disabled. var meta *types.TokenCountMeta if needSensitiveCheck || needCountToken { meta = request.GetTokenCountMeta() } else { meta = fastTokenCountMetaForPricing(request) } if needSensitiveCheck && meta != nil { contains, words := service.CheckSensitiveText(meta.CombineText) if contains { logger.LogWarn(c, fmt.Sprintf("user sensitive words detected: %s", strings.Join(words, ", "))) newAPIError = types.NewError(err, types.ErrorCodeSensitiveWordsDetected) return } } tokens, err := service.EstimateRequestToken(c, meta, relayInfo) if err != nil { newAPIError = types.NewError(err, types.ErrorCodeCountTokenFailed) return } relayInfo.SetEstimatePromptTokens(tokens) priceData, err := helper.ModelPriceHelper(c, relayInfo, tokens, meta) if err != nil { newAPIError = types.NewError(err, types.ErrorCodeModelPriceError, types.ErrOptionWithStatusCode(http.StatusBadRequest)) return } // common.SetContextKey(c, constant.ContextKeyTokenCountMeta, meta) if priceData.FreeModel { logger.LogInfo(c, fmt.Sprintf("模型 %s 免费,跳过预扣费", relayInfo.OriginModelName)) } else { newAPIError = service.PreConsumeBilling(c, priceData.QuotaToPreConsume, relayInfo) if newAPIError != nil { return } } defer func() { // Only return quota if downstream failed and quota was actually pre-consumed if newAPIError != nil { newAPIError = service.NormalizeViolationFeeError(newAPIError) if relayInfo.Billing != nil { relayInfo.Billing.Refund(c) } service.ChargeViolationFeeIfNeeded(c, relayInfo, newAPIError) } }() retryParam := &service.RetryParam{ Ctx: c, TokenGroup: relayInfo.TokenGroup, ModelName: relayInfo.OriginModelName, RequestPath: c.Request.URL.Path, Retry: common.GetPointer(0), } relayInfo.RetryIndex = 0 relayInfo.LastError = nil for ; retryParam.GetRetry() <= common.RetryTimes; retryParam.IncreaseRetry() { relayInfo.RetryIndex = retryParam.GetRetry() channel, channelErr := getChannel(c, relayInfo, retryParam) if channelErr != nil { logger.LogError(c, channelErr.Error()) newAPIError = channelErr break } addUsedChannel(c, channel.Id) if billingErr := service.PrepareTieredBillingForSelectedGroup(c, relayInfo); billingErr != nil { newAPIError = billingErr break } bodyStorage, bodyErr := common.GetBodyStorage(c) if bodyErr != nil { // Ensure consistent 413 for oversized bodies even when error occurs later (e.g., retry path) if common.IsRequestBodyTooLargeError(bodyErr) || errors.Is(bodyErr, common.ErrRequestBodyTooLarge) { newAPIError = types.NewErrorWithStatusCode(bodyErr, types.ErrorCodeReadRequestBodyFailed, http.StatusRequestEntityTooLarge, types.ErrOptionWithSkipRetry()) } else { newAPIError = types.NewErrorWithStatusCode(bodyErr, types.ErrorCodeReadRequestBodyFailed, http.StatusBadRequest, types.ErrOptionWithSkipRetry()) } break } c.Request.Body = io.NopCloser(bodyStorage) switch relayFormat { case types.RelayFormatOpenAIRealtime: newAPIError = relay.WssHelper(c, relayInfo) case types.RelayFormatClaude: newAPIError = relay.ClaudeHelper(c, relayInfo) case types.RelayFormatGemini: newAPIError = geminiRelayHandler(c, relayInfo) default: newAPIError = relayHandler(c, relayInfo) } if newAPIError == nil { relayInfo.LastError = nil return } newAPIError = service.NormalizeViolationFeeError(newAPIError) relayInfo.LastError = newAPIError processChannelError(c, *types.NewChannelError(channel.Id, channel.Type, channel.Name, channel.ChannelInfo.IsMultiKey, common.GetContextKeyString(c, constant.ContextKeyChannelKey), channel.GetAutoBan()), newAPIError) if !shouldRetry(c, newAPIError, common.RetryTimes-retryParam.GetRetry()) { break } } useChannel := c.GetStringSlice("use_channel") if len(useChannel) > 1 { retryLogStr := fmt.Sprintf("重试:%s", strings.Trim(strings.Join(strings.Fields(fmt.Sprint(useChannel)), "->"), "[]")) logger.LogInfo(c, retryLogStr) } if newAPIError != nil { gopool.Go(func() { perfmetrics.RecordRelaySample(relayInfo, false, 0) }) } } var upgrader = websocket.Upgrader{ Subprotocols: []string{"realtime"}, // WS 握手支持的协议,如果有使用 Sec-WebSocket-Protocol,则必须在此声明对应的 Protocol TODO add other protocol CheckOrigin: func(r *http.Request) bool { return true // 允许跨域 }, } func addUsedChannel(c *gin.Context, channelId int) { useChannel := c.GetStringSlice("use_channel") useChannel = append(useChannel, fmt.Sprintf("%d", channelId)) c.Set("use_channel", useChannel) } func fastTokenCountMetaForPricing(request dto.Request) *types.TokenCountMeta { if request == nil { return &types.TokenCountMeta{} } meta := &types.TokenCountMeta{ TokenType: types.TokenTypeTokenizer, } switch r := request.(type) { case *dto.GeneralOpenAIRequest: maxCompletionTokens := lo.FromPtrOr(r.MaxCompletionTokens, uint(0)) maxTokens := lo.FromPtrOr(r.MaxTokens, uint(0)) if maxCompletionTokens > maxTokens { meta.MaxTokens = int(maxCompletionTokens) } else { meta.MaxTokens = int(maxTokens) } case *dto.OpenAIResponsesRequest: meta.MaxTokens = int(lo.FromPtrOr(r.MaxOutputTokens, uint(0))) case *dto.ClaudeRequest: meta.MaxTokens = int(lo.FromPtr(r.MaxTokens)) case *dto.ImageRequest: // Pricing for image requests depends on ImagePriceRatio; safe to compute even when CountToken is disabled. return r.GetTokenCountMeta() default: // Best-effort: leave CombineText empty to avoid large allocations. } return meta } func getChannel(c *gin.Context, info *relaycommon.RelayInfo, retryParam *service.RetryParam) (*model.Channel, *types.NewAPIError) { if info.ChannelMeta == nil { autoBan := c.GetBool("auto_ban") autoBanInt := 1 if !autoBan { autoBanInt = 0 } return &model.Channel{ Id: c.GetInt("channel_id"), Type: c.GetInt("channel_type"), Name: c.GetString("channel_name"), AutoBan: &autoBanInt, }, nil } channel, selectGroup, err := service.CacheGetRandomSatisfiedChannel(retryParam) if err != nil { return nil, types.NewError(fmt.Errorf("获取分组 %s 下模型 %s 的可用渠道失败(retry): %s", selectGroup, info.OriginModelName, err.Error()), types.ErrorCodeGetChannelFailed, types.ErrOptionWithSkipRetry()) } if channel == nil { return nil, types.NewError(fmt.Errorf("分组 %s 下模型 %s 的可用渠道不存在(retry)", selectGroup, info.OriginModelName), types.ErrorCodeGetChannelFailed, types.ErrOptionWithSkipRetry()) } info.PriceData.GroupRatioInfo = helper.HandleGroupRatio(c, info) newAPIError := middleware.SetupContextForSelectedChannel(c, channel, info.OriginModelName) if newAPIError != nil { return nil, newAPIError } return channel, nil } func shouldRetry(c *gin.Context, openaiErr *types.NewAPIError, retryTimes int) bool { if openaiErr == nil { return false } if service.ShouldSkipRetryAfterChannelAffinityFailure(c) { return false } if types.IsChannelError(openaiErr) { return true } if types.IsSkipRetryError(openaiErr) { return false } if retryTimes <= 0 { return false } if service.GetChannelConstraints(c).SuppressesRetry() { return false } code := openaiErr.StatusCode if code >= 200 && code < 300 { return false } if code < 100 || code > 599 { return true } if operation_setting.IsAlwaysSkipRetryCode(openaiErr.GetErrorCode()) { return false } return operation_setting.ShouldRetryByStatusCode(code) } func processChannelError(c *gin.Context, channelError types.ChannelError, err *types.NewAPIError) { logger.LogError(c, fmt.Sprintf("channel error (channel #%d, status code: %d): %s", channelError.ChannelId, err.StatusCode, common.LocalLogPreview(err.Error()))) // 不要使用context获取渠道信息,异步处理时可能会出现渠道信息不一致的情况 // do not use context to get channel info, there may be inconsistent channel info when processing asynchronously if service.ShouldDisableChannel(err) && channelError.AutoBan { gopool.Go(func() { service.DisableChannel(channelError, err.ErrorWithStatusCode()) }) } if constant.ErrorLogEnabled && types.IsRecordErrorLog(err) { // 保存错误日志到mysql中 userId := c.GetInt("id") tokenName := c.GetString("token_name") modelName := c.GetString("original_model") tokenId := c.GetInt("token_id") userGroup := c.GetString("group") channelId := c.GetInt("channel_id") other := make(map[string]interface{}) if c.Request != nil && c.Request.URL != nil { other["request_path"] = c.Request.URL.Path } other["error_type"] = err.GetErrorType() other["error_code"] = err.GetErrorCode() other["status_code"] = err.StatusCode other["channel_id"] = channelId other["channel_name"] = c.GetString("channel_name") other["channel_type"] = c.GetInt("channel_type") adminInfo := make(map[string]interface{}) adminInfo["use_channel"] = c.GetStringSlice("use_channel") isMultiKey := common.GetContextKeyBool(c, constant.ContextKeyChannelIsMultiKey) if isMultiKey { adminInfo["is_multi_key"] = true adminInfo["multi_key_index"] = common.GetContextKeyInt(c, constant.ContextKeyChannelMultiKeyIndex) } service.AppendChannelAffinityAdminInfo(c, adminInfo) other["admin_info"] = adminInfo service.AppendTaskPluginContextAuditInfo(c, other) startTime := common.GetContextKeyTime(c, constant.ContextKeyRequestStartTime) if startTime.IsZero() { startTime = time.Now() } useTimeSeconds := int(time.Since(startTime).Seconds()) model.RecordErrorLog(c, userId, channelId, modelName, tokenName, err.MaskSensitiveErrorWithStatusCode(), tokenId, useTimeSeconds, common.GetContextKeyBool(c, constant.ContextKeyIsStream), userGroup, other) } } func RelayMidjourney(c *gin.Context) { relayInfo, err := relaycommon.GenRelayInfo(c, types.RelayFormatMjProxy, nil, nil) if err != nil { c.JSON(http.StatusInternalServerError, gin.H{ "description": fmt.Sprintf("failed to generate relay info: %s", err.Error()), "type": "upstream_error", "code": 4, }) return } var mjErr *taskdto.MidjourneyResponse switch relayInfo.RelayMode { case relayconstant.RelayModeMidjourneyNotify: mjErr = relay.RelayMidjourneyNotify(c) case relayconstant.RelayModeMidjourneyTaskFetch, relayconstant.RelayModeMidjourneyTaskFetchByCondition: mjErr = relay.RelayMidjourneyTask(c, relayInfo.RelayMode) case relayconstant.RelayModeMidjourneyTaskImageSeed: mjErr = relay.RelayMidjourneyTaskImageSeed(c) case relayconstant.RelayModeSwapFace: mjErr = relay.RelaySwapFace(c, relayInfo) default: mjErr = relay.RelayMidjourneySubmit(c, relayInfo) } //err = relayMidjourneySubmit(c, relayMode) log.Println(mjErr) if mjErr != nil { statusCode := http.StatusBadRequest if mjErr.Code == 30 { mjErr.Result = "当前分组负载已饱和,请稍后再试,或升级账户以提升服务质量。" statusCode = http.StatusTooManyRequests } c.JSON(statusCode, gin.H{ "description": fmt.Sprintf("%s %s", mjErr.Description, mjErr.Result), "type": "upstream_error", "code": mjErr.Code, }) channelId := c.GetInt("channel_id") logger.LogError(c, fmt.Sprintf("relay error (channel #%d, status code %d): %s", channelId, statusCode, fmt.Sprintf("%s %s", mjErr.Description, mjErr.Result))) } } func RelayNotImplemented(c *gin.Context) { err := types.OpenAIError{ Message: "API not implemented", Type: "new_api_error", Param: "", Code: "api_not_implemented", } c.JSON(http.StatusNotImplemented, gin.H{ "error": err, }) } func RelayNotFound(c *gin.Context) { err := types.OpenAIError{ Message: fmt.Sprintf("Invalid URL (%s %s)", c.Request.Method, c.Request.URL.Path), Type: "invalid_request_error", Param: "", Code: "", } c.JSON(http.StatusNotFound, gin.H{ "error": err, }) } // RelayTaskPluginEndpoint keeps unclaimed shared-endpoint traffic on its // existing handler while claimed requests enter the generation-pinned // host-owned protocol bridge. func RelayTaskPluginEndpoint(c *gin.Context, fallback gin.HandlerFunc) { pinnedValue, exists := c.Get(pluginruntime.ContextKeyPinnedEndpoint) if !exists { fallback(c) return } pinned, ok := pinnedValue.(pluginruntime.PinnedEndpoint) if !ok || pinned.Plugin == nil || pinned.Generation == nil { c.JSON(http.StatusInternalServerError, gin.H{ "error": gin.H{ "message": "Task protocol request failed", "type": "new_api_error", "code": "task_protocol_error", }, }) return } if pinned.Protocol != "openai_responses" { fallback(c) return } serveTaskPluginProtocol(c, pinned, defaultPluginProtocolBridgeDeps()) } func RelayTaskFetch(c *gin.Context) { relayInfo, err := relaycommon.GenRelayInfo(c, types.RelayFormatTask, nil, nil) if err != nil { c.JSON(http.StatusInternalServerError, &taskdto.TaskError{ Code: "gen_relay_info_failed", Message: err.Error(), StatusCode: http.StatusInternalServerError, }) return } if taskErr := relay.RelayTaskFetch(c, relayInfo.RelayMode); taskErr != nil { respondTaskError(c, taskErr) } } type taskSubmissionOutcome struct { Result *relay.TaskSubmitResult Task *model.Task RelayInfo *relaycommon.RelayInfo } func RelayTask(c *gin.Context) { relayInfo, err := relaycommon.GenRelayInfo(c, types.RelayFormatTask, nil, nil) if err != nil { respondTaskSubmissionError(c, &taskdto.TaskError{ Code: "gen_relay_info_failed", Message: err.Error(), StatusCode: http.StatusInternalServerError, }) return } if action := c.GetString("task_action"); action != "" { relayInfo.Action = action } if taskErr := relay.ResolveOriginTask(c, relayInfo); taskErr != nil { respondTaskSubmissionError(c, taskErr) return } if taskErr := relay.ApplyOriginTaskAffinity(c, relayInfo); taskErr != nil { respondTaskSubmissionError(c, taskErr) return } outcome, taskErr := executeTaskSubmission(c, relayInfo) if taskErr != nil { respondTaskSubmissionError(c, taskErr) return } presentTaskSubmission(c, outcome) } // executeTaskSubmission owns the retry, billing, and persistence lifecycle. // It deliberately performs no client response writes so JSON and protocol // presenters share the same durable task barrier. Its cancellation semantics // come from c.Request.Context: native task endpoints use the client context, // while the Responses bridge supplies an independently bounded context. func executeTaskSubmission(c *gin.Context, relayInfo *relaycommon.RelayInfo) (*taskSubmissionOutcome, *taskdto.TaskError) { return executeTaskSubmissionWith(c, relayInfo, relay.RelayTaskSubmit) } type taskSubmitAttempt func(*gin.Context, *relaycommon.RelayInfo) (*relay.TaskSubmitResult, *taskdto.TaskError) func executeTaskSubmissionWith( c *gin.Context, relayInfo *relaycommon.RelayInfo, submit taskSubmitAttempt, ) (*taskSubmissionOutcome, *taskdto.TaskError) { diagnostics := newTaskPluginSubmitDiagnostics(c) diagnostics.start(relayInfo) var result *relay.TaskSubmitResult var taskErr *taskdto.TaskError durable := false stage := "start" defer func() { if !durable && relayInfo.Billing != nil { diagnostics.refund(stage) relayInfo.Billing.Refund(c) } }() stage = "before_attempt" if requestErr := c.Request.Context().Err(); requestErr != nil { diagnostics.cancelled("before_attempt", 0) return nil, service.TaskErrorWrapperLocal(requestErr, "request_cancelled", http.StatusRequestTimeout) } retryParam := &service.RetryParam{ Ctx: c, TokenGroup: relayInfo.TokenGroup, ModelName: relayInfo.OriginModelName, RequestPath: c.Request.URL.Path, Retry: common.GetPointer(0), } for ; retryParam.GetRetry() <= common.RetryTimes; retryParam.IncreaseRetry() { stage = "select_channel" if requestErr := c.Request.Context().Err(); requestErr != nil { diagnostics.cancelled("before_attempt", retryParam.GetRetry()+1) taskErr = service.TaskErrorWrapperLocal(requestErr, "request_cancelled", http.StatusRequestTimeout) break } var channel *model.Channel if lockedCh, ok := relayInfo.LockedChannel.(*model.Channel); ok && lockedCh != nil { channel = lockedCh if retryParam.GetRetry() > 0 { if setupErr := middleware.SetupContextForSelectedChannel(c, channel, relayInfo.OriginModelName); setupErr != nil { taskErr = service.TaskErrorWrapperLocal(setupErr.Err, "setup_locked_channel_failed", http.StatusInternalServerError) break } } } else { var channelErr *types.NewAPIError channel, channelErr = getChannel(c, relayInfo, retryParam) if channelErr != nil { logger.LogError(c, channelErr.Error()) taskErr = service.TaskErrorWrapperLocal(channelErr.Err, "get_channel_failed", http.StatusInternalServerError) break } } diagnostics.attempt(retryParam.GetRetry()+1, channel, relayInfo.LockedChannel != nil) addUsedChannel(c, channel.Id) bodyStorage, bodyErr := common.GetBodyStorage(c) if bodyErr != nil { stage = "read_body" if common.IsRequestBodyTooLargeError(bodyErr) || errors.Is(bodyErr, common.ErrRequestBodyTooLarge) { taskErr = service.TaskErrorWrapperLocal(bodyErr, "read_request_body_failed", http.StatusRequestEntityTooLarge) } else { taskErr = service.TaskErrorWrapperLocal(bodyErr, "read_request_body_failed", http.StatusBadRequest) } break } c.Request.Body = io.NopCloser(bodyStorage) stage = "submit" result, taskErr = submit(c, relayInfo) if requestErr := c.Request.Context().Err(); requestErr != nil { diagnostics.cancelled("after_submit", retryParam.GetRetry()+1) taskErr = service.TaskErrorWrapperLocal(requestErr, "request_cancelled", http.StatusRequestTimeout) break } if taskErr == nil { diagnostics.attemptSucceeded(retryParam.GetRetry()+1, result) break } if !taskErr.LocalError { processChannelError(c, *types.NewChannelError(channel.Id, channel.Type, channel.Name, channel.ChannelInfo.IsMultiKey, common.GetContextKeyString(c, constant.ContextKeyChannelKey), channel.GetAutoBan()), types.NewOpenAIError(taskErr.Error, types.ErrorCodeBadResponseStatusCode, taskErr.StatusCode)) } willRetry := shouldRetryTaskRelay(c, channel.Id, taskErr, common.RetryTimes-retryParam.GetRetry()) diagnostics.attemptFailed(retryParam.GetRetry()+1, channel, taskErr, willRetry) if !willRetry { break } } useChannel := c.GetStringSlice("use_channel") if len(useChannel) > 1 { retryLogStr := fmt.Sprintf("重试:%s", strings.Trim(strings.Join(strings.Fields(fmt.Sprint(useChannel)), "->"), "[]")) logger.LogInfo(c, retryLogStr) } if taskErr != nil { diagnostics.failed(stage, "task_error", taskErr, false) return nil, taskErr } if result == nil { taskErr = service.TaskErrorWrapperLocal(errors.New("task submission returned no result"), "task_submit_failed", http.StatusInternalServerError) diagnostics.failed("submit", "missing_result", taskErr, false) return nil, taskErr } if requestErr := c.Request.Context().Err(); requestErr != nil { diagnostics.cancelled("before_reserve", retryParam.GetRetry()+1) return nil, service.TaskErrorWrapperLocal(requestErr, "request_cancelled", http.StatusRequestTimeout) } // Reserve any submit-time upward billing adjustment before persistence. // This keeps insertion failures fully refundable while ensuring settlement // after the barrier normally has a zero positive delta. if relayInfo.Billing != nil { stage = "reserve" diagnostics.reserve("reserve_start", result.Quota) if reserveErr := relayInfo.Billing.Reserve(result.Quota); reserveErr != nil { common.SysError("reserve adjusted task billing error: " + reserveErr.Error()) taskErr = service.TaskErrorWrapperLocal(errors.New("insufficient quota for adjusted task cost"), string(types.ErrorCodeInsufficientUserQuota), http.StatusForbidden) diagnostics.failed("reserve", "insufficient_quota", taskErr, false) return nil, taskErr } diagnostics.reserve("reserve_complete", result.Quota) } if requestErr := c.Request.Context().Err(); requestErr != nil { diagnostics.cancelled("before_insert", retryParam.GetRetry()+1) return nil, service.TaskErrorWrapperLocal(requestErr, "request_cancelled", http.StatusRequestTimeout) } stage = "insert" task := model.InitTask(result.Platform, relayInfo) task.PrivateData.Execution = service.TaskExecutionSnapshotFromContext(c) task.PrivateData.UpstreamTaskID = result.UpstreamTaskID task.PrivateData.BillingSource = relayInfo.BillingSource task.PrivateData.SubscriptionId = relayInfo.SubscriptionId task.PrivateData.TokenId = relayInfo.TokenId task.PrivateData.NodeName = common.NodeName task.PrivateData.BillingContext = &model.TaskBillingContext{ ModelPrice: relayInfo.PriceData.ModelPrice, GroupRatio: relayInfo.PriceData.GroupRatioInfo.GroupRatio, ModelRatio: relayInfo.PriceData.ModelRatio, OtherRatios: relayInfo.PriceData.OtherRatios(), OriginModelName: relayInfo.OriginModelName, PerCallBilling: common.StringsContains(constant.TaskPricePatches, relayInfo.OriginModelName) || relayInfo.PriceData.UsePrice, TieredSnapshot: relayInfo.TieredBillingSnapshot, } task.Quota = result.Quota task.Data = result.TaskData task.Action = relayInfo.Action if immediate := result.Immediate; immediate != nil { task.Status = model.TaskStatus(immediate.Status) task.Progress = immediate.Progress if immediate.Status == model.TaskStatusSuccess || immediate.Status == model.TaskStatusFailure { task.FinishTime = time.Now().Unix() } if immediate.Status == model.TaskStatusFailure { task.FailReason = immediate.Reason } if immediate.Url != "" { task.PrivateData.ResultURL = immediate.Url } else if immediate.Status == model.TaskStatusSuccess { task.PrivateData.ResultURL = taskcommon.BuildProxyURL(task.TaskID) } } diagnostics.insertStart(task) if insertErr := task.InsertWithContext(c.Request.Context()); insertErr != nil { common.SysError("insert task error: " + insertErr.Error()) taskErr = service.TaskErrorWrapperLocal(errors.New("failed to persist task"), "task_insert_failed", http.StatusInternalServerError) diagnostics.failed("insert", "database_error", taskErr, false) return nil, taskErr } durable = true stage = "settle" diagnostics.durable(task) diagnostics.settleStart(task, result.Quota) if settleErr := service.SettleBilling(c, relayInfo, result.Quota); settleErr != nil { common.SysError("settle task billing error: " + settleErr.Error()) taskErr = service.TaskErrorWrapperLocal(errors.New("failed to settle task billing"), "task_billing_settlement_failed", http.StatusInternalServerError) diagnostics.failed("settle", "billing_error", taskErr, true) return nil, taskErr } service.LogTaskConsumption(c, relayInfo, task) diagnostics.complete(task, result.Quota) return &taskSubmissionOutcome{Result: result, Task: task, RelayInfo: relayInfo}, nil } func presentTaskSubmission(c *gin.Context, outcome *taskSubmissionOutcome) { diagnostics := newTaskPluginSubmitDiagnostics(c) otherRatios := outcome.RelayInfo.PriceData.OtherRatios() if otherRatios == nil { otherRatios = map[string]float64{} } if ratiosJSON, err := common.Marshal(otherRatios); err == nil { c.Header("X-New-Api-Other-Ratios", string(ratiosJSON)) } if pinnedValue, exists := c.Get(pluginruntime.ContextKeyPinnedRoute); exists { if pinned, ok := pinnedValue.(pluginruntime.PinnedRoute); ok && pinned.Plugin != nil && pinned.Route.Render != "" { view, err := service.BuildTaskPluginView(outcome.Task) requestValue, _ := c.Get(pluginruntime.ContextKeyRouteRequest) requestContext, _ := requestValue.(pluginruntime.RouteRequestContext) if err == nil { viewValue, valueErr := taskPluginProtocolJSONValue(view) if valueErr == nil { if body, callErr := pinned.Plugin.Engine.CallPath(c.Request.Context(), "native", []string{pinned.Route.Render}, requestContext.JSValue(), viewValue); callErr == nil { diagnostics.present(outcome.Task, "native_presenter") c.JSON(http.StatusOK, body) return } else { logger.LogError(c, "task plugin native submit presenter failed: "+callErr.Error()) } } else { logger.LogError(c, "encode task plugin native submit view failed: "+valueErr.Error()) } } else { logger.LogError(c, "build task plugin native submit view failed: "+err.Error()) } } } if pinnedValue, exists := c.Get(pluginruntime.ContextKeyPinnedEndpoint); exists { if pinned, ok := pinnedValue.(pluginruntime.PinnedEndpoint); ok && pinned.Protocol == "openai_video" && pinned.Operation.Name == "create" { diagnostics.present(outcome.Task, "openai_video_create") c.JSON(http.StatusOK, outcome.Task.ToOpenAIVideo()) return } } createdAt := outcome.Task.CreatedAt if createdAt == 0 { createdAt = outcome.Task.SubmitTime } diagnostics.present(outcome.Task, "host_fallback") c.JSON(http.StatusOK, map[string]any{ "id": outcome.Task.TaskID, "task_id": outcome.Task.TaskID, "status": "queued", "model": outcome.RelayInfo.OriginModelName, "created_at": createdAt, }) } func respondTaskSubmissionError(c *gin.Context, taskErr *taskdto.TaskError) { newTaskPluginSubmitDiagnostics(c).presentError(taskErr) if middleware.RespondTaskPluginError(c, taskErr) { return } respondTaskError(c, taskErr) } // respondTaskError 统一输出 Task 错误响应(含 429 限流提示改写) func respondTaskError(c *gin.Context, taskErr *taskdto.TaskError) { if taskErr.StatusCode == http.StatusTooManyRequests { taskErr.Message = "当前分组上游负载已饱和,请稍后再试" } c.JSON(taskErr.StatusCode, taskErr) } func shouldRetryTaskRelay(c *gin.Context, channelId int, taskErr *taskdto.TaskError, retryTimes int) bool { if taskErr == nil { return false } if service.ShouldSkipRetryAfterChannelAffinityFailure(c) { return false } if retryTimes <= 0 { return false } if service.GetChannelConstraints(c).SuppressesRetry() { return false } if taskErr.StatusCode == http.StatusTooManyRequests { return true } if taskErr.StatusCode == 307 { return true } if taskErr.StatusCode/100 == 5 { // 超时不重试 if operation_setting.IsAlwaysSkipRetryStatusCode(taskErr.StatusCode) { return false } return true } if taskErr.StatusCode == http.StatusBadRequest { return false } if taskErr.StatusCode == 408 { // azure处理超时不重试 return false } if taskErr.LocalError { return false } if taskErr.StatusCode/100 == 2 { return false } return true }