* test(relayconvert): add golden snapshot matrix and relaykit boundary guard Phase 0 of the relaykit extraction plan: pin byte-level output of every registered (from,to) request/response/stream conversion route, and forbid kit-bound packages from growing host-only imports. * wip(relayconvert): drop gin.Context from converter signatures; add convmeta draft Phase 1 in progress: relayconvert now takes context.Context; host media resolver adapts gin.Context back at the service boundary. * refactor(relayconvert): decouple converters from RelayInfo, gin, and settings Phase 1 of the relaykit extraction plan: - converters now depend on convmeta.Meta (implemented by RelayInfo) instead of *relaycommon.RelayInfo; ClaudeConvertInfo and the format guesser move to convmeta with aliases left behind - host settings reach converters via a convmeta.Options snapshot built in RelayInfo.ConvOptions; no more model_setting/reasoning global reads inside the conversion layer - effort-suffix helpers move to service/relayconvert/reasoning (old package forwards); chat-to-responses upgrade policy moves to service (host routing logic, not conversion) - golden conversion matrix unchanged * test(relayconvert): tighten boundary — kit packages now free of gin/setting imports * refactor(dto): drop gin and logger dependencies Phase 2 (part 1): dto.Request.IsStream now takes *http.Request instead of *gin.Context (Gemini's impl reads query/path off the std request); dto's three logger calls become common.SysError. Boundary test allowlist is now empty — kit-bound packages import no gin/setting/logger/model. * refactor(kit): extract dependency-free kitutil; dto/types/relayconvert stop importing common Phase 2 of the relaykit extraction plan: - new service/relayconvert/kitutil holds the pure helpers the kit needs (JSON wrappers, pointer/string/uuid/timestamp utils, MaskSensitiveInfo, pluggable LogInfo/LogError hooks, Debug flag) - dto, types, and all relayconvert packages now use kitutil; their only remaining internal deps are dto/types/constant - common keeps every original symbol (MaskSensitiveInfo delegates to kitutil) so host code is untouched; main.go routes kit logging into common.SysLog/SysError and mirrors DebugEnabled - golden conversion matrix unchanged * refactor(kit): move EndpointType/FinishReason to types; OpenRouter dialect via Options Kit packages (dto/types/relayconvert/reasonmap) no longer import constant: - EndpointType and finish-reason values live in types; constant re-exports - the OpenRouter special-case in claude->openai request conversion reads Options.OpenRouterDialect, set by the host from the channel type; InitChannelMeta invalidates the cached snapshot on channel switch * refactor: extract relaykit submodule (dto/types/relayconvert/reasonmap) Phase 3 of the relaykit extraction plan: - new go module github.com/QuantumNous/new-api/relaykit containing dto (minus task family), types, relayconvert (with convmeta/kitutil/reasoning), and reasonmap; host consumes it via require + replace, go.work for dev - task-family dto (task/suno/midjourney/video) stays in the host dto package; dual-consumer host files alias it as taskdto - relaykit builds and tests standalone (GOWORK=off): no host imports, no gin, no DB, no settings - golden conversion matrix unchanged * build(docker): copy relaykit/go.mod before go mod download The local-replace submodule's go.mod must exist inside the build context for the main module graph to resolve. * fix: address relaykit extraction regressions * fix: address relaykit review regressions * docs: document Meta nil receiver contract * fix(relaykit): fail OpenAI→Claude conversion without max_tokens; reject negative default_max_tokens The Claude Messages API requires max_tokens (omitting it is a 400 "Field required"), but with a nil Options.Claude.DefaultMaxTokens hook the converters silently emitted a request the upstream is guaranteed to reject. Both OpenAI Chat and Responses → Claude conversions now return sharedclaude.ErrMissingMaxTokens when no path (client value, default hook, thinking-adapter floor) supplied one. Unreachable in the host, which always configures the hook. Host side, claude.default_max_tokens now rejects negative values at the option API before persisting — they would wrap into huge unsigned values during conversion. Zero stays allowed: the current API treats max_tokens: 0 as cache pre-warming. * fix: make Gemini safety settings read path race-free
499 lines
16 KiB
Go
499 lines
16 KiB
Go
package service
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import (
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"bytes"
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"context"
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"io"
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"net/http"
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"sync"
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"testing"
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"time"
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"github.com/QuantumNous/new-api/common"
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"github.com/QuantumNous/new-api/constant"
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taskdto "github.com/QuantumNous/new-api/dto"
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"github.com/QuantumNous/new-api/model"
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relaycommon "github.com/QuantumNous/new-api/relay/common"
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"github.com/QuantumNous/new-api/relaykit/dto"
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"github.com/bytedance/gopkg/util/gopool"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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type taskPollingFetchAdaptor struct {
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mu sync.Mutex
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taskIDs []string
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fetched chan string
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blockTaskID string
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blockStarted chan struct{}
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releaseBlock chan struct{}
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blockOnce sync.Once
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}
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type sunoFailurePollingAdaptor struct {
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failReason string
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}
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func (a *sunoFailurePollingAdaptor) Init(_ *relaycommon.RelayInfo) {}
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func (a *sunoFailurePollingAdaptor) FetchTask(_ string, _ string, body map[string]any, _ string) (*http.Response, error) {
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taskIDs, _ := body["ids"].([]string)
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items := make([]taskdto.SunoDataResponse, 0, len(taskIDs))
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for _, taskID := range taskIDs {
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items = append(items, taskdto.SunoDataResponse{
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TaskID: taskID,
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Status: string(model.TaskStatusFailure),
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FailReason: a.failReason,
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FinishTime: time.Now().Unix(),
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})
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}
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responseBody, err := common.Marshal(taskdto.TaskResponse[[]taskdto.SunoDataResponse]{
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Code: taskdto.TaskSuccessCode,
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Data: items,
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})
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if err != nil {
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return nil, err
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}
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return &http.Response{
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StatusCode: http.StatusOK,
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Body: io.NopCloser(bytes.NewReader(responseBody)),
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}, nil
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}
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func (a *sunoFailurePollingAdaptor) ParseTaskResult([]byte) (*relaycommon.TaskInfo, error) {
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return nil, nil
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}
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func (a *sunoFailurePollingAdaptor) AdjustBillingOnComplete(_ *model.Task, _ *relaycommon.TaskInfo) int {
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return 0
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}
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func (a *taskPollingFetchAdaptor) Init(_ *relaycommon.RelayInfo) {}
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func (a *taskPollingFetchAdaptor) FetchTask(_ string, _ string, body map[string]any, _ string) (*http.Response, error) {
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taskID, _ := body["task_id"].(string)
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if taskID == a.blockTaskID && a.releaseBlock != nil {
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a.blockOnce.Do(func() {
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if a.blockStarted != nil {
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close(a.blockStarted)
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}
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})
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<-a.releaseBlock
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}
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a.mu.Lock()
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a.taskIDs = append(a.taskIDs, taskID)
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a.mu.Unlock()
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if a.fetched != nil {
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select {
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case a.fetched <- taskID:
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default:
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}
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}
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response := taskdto.TaskResponse[model.Task]{
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Code: taskdto.TaskSuccessCode,
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Data: model.Task{
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TaskID: taskID,
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Status: model.TaskStatusInProgress,
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Progress: "30%",
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},
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}
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responseBody, err := common.Marshal(response)
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if err != nil {
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return nil, err
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}
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return &http.Response{
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StatusCode: http.StatusOK,
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Body: io.NopCloser(bytes.NewReader(responseBody)),
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}, nil
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}
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func (a *taskPollingFetchAdaptor) ParseTaskResult([]byte) (*relaycommon.TaskInfo, error) {
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return &relaycommon.TaskInfo{Status: model.TaskStatusInProgress}, nil
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}
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func (a *taskPollingFetchAdaptor) AdjustBillingOnComplete(_ *model.Task, _ *relaycommon.TaskInfo) int {
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return 0
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}
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func (a *taskPollingFetchAdaptor) fetchCount() int {
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a.mu.Lock()
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defer a.mu.Unlock()
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return len(a.taskIDs)
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}
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func (a *taskPollingFetchAdaptor) fetchedTaskIDs() []string {
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a.mu.Lock()
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defer a.mu.Unlock()
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return append([]string(nil), a.taskIDs...)
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}
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func seedTaskPollingChannel(t *testing.T, id int, disableSleep bool) {
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t.Helper()
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ch := &model.Channel{
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Id: id,
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Type: constant.ChannelTypeKling,
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Name: "polling_channel",
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Key: "sk-test",
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Status: common.ChannelStatusEnabled,
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}
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if disableSleep {
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ch.SetOtherSettings(dto.ChannelOtherSettings{DisableTaskPollingSleep: true})
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}
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require.NoError(t, model.DB.Create(ch).Error)
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}
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func seedPollingTask(t *testing.T, channelID int, publicID string, upstreamID string) *model.Task {
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t.Helper()
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task := &model.Task{
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TaskID: publicID,
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Platform: constant.TaskPlatform("kling"),
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UserId: 1,
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ChannelId: channelID,
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Action: constant.TaskActionGenerate,
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Status: model.TaskStatusInProgress,
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Progress: "30%",
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CreatedAt: time.Now().Unix(),
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UpdatedAt: time.Now().Unix(),
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PrivateData: model.TaskPrivateData{
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UpstreamTaskID: upstreamID,
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},
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}
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require.NoError(t, model.DB.Create(task).Error)
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return task
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}
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func TestUpdateVideoTasksDefaultSleepWaitsBetweenTasks(t *testing.T) {
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truncate(t)
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const channelID = 101
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seedTaskPollingChannel(t, channelID, false)
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first := seedPollingTask(t, channelID, "task_public_1", "upstream_1")
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second := seedPollingTask(t, channelID, "task_public_2", "upstream_2")
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adaptor := &taskPollingFetchAdaptor{}
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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ctx, cancel := context.WithTimeout(context.Background(), 100*time.Millisecond)
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defer cancel()
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err := UpdateVideoTasks(ctx, constant.TaskPlatform("kling"), map[int][]string{
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channelID: {
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first.GetUpstreamTaskID(),
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second.GetUpstreamTaskID(),
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},
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}, map[string]*model.Task{
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first.GetUpstreamTaskID(): first,
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second.GetUpstreamTaskID(): second,
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})
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require.ErrorIs(t, err, context.DeadlineExceeded)
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assert.Equal(t, 1, adaptor.fetchCount())
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}
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func TestUpdateVideoTasksCanSkipPollingSleepPerChannel(t *testing.T) {
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truncate(t)
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const channelID = 102
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seedTaskPollingChannel(t, channelID, true)
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first := seedPollingTask(t, channelID, "task_public_3", "upstream_3")
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second := seedPollingTask(t, channelID, "task_public_4", "upstream_4")
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adaptor := &taskPollingFetchAdaptor{}
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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ctx, cancel := context.WithTimeout(context.Background(), 500*time.Millisecond)
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defer cancel()
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err := UpdateVideoTasks(ctx, constant.TaskPlatform("kling"), map[int][]string{
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channelID: {
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first.GetUpstreamTaskID(),
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second.GetUpstreamTaskID(),
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},
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}, map[string]*model.Task{
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first.GetUpstreamTaskID(): first,
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second.GetUpstreamTaskID(): second,
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})
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require.NoError(t, err)
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assert.Equal(t, 2, adaptor.fetchCount())
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}
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func TestUpdateVideoTasksDefaultSleepDoesNotBlockOtherChannels(t *testing.T) {
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truncate(t)
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const firstChannelID = 201
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const secondChannelID = 202
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seedTaskPollingChannel(t, firstChannelID, false)
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seedTaskPollingChannel(t, secondChannelID, false)
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firstChannelFirst := seedPollingTask(t, firstChannelID, "task_public_5", "upstream_a_1")
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firstChannelSecond := seedPollingTask(t, firstChannelID, "task_public_6", "upstream_a_2")
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secondChannelFirst := seedPollingTask(t, secondChannelID, "task_public_7", "upstream_b_1")
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secondChannelSecond := seedPollingTask(t, secondChannelID, "task_public_8", "upstream_b_2")
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adaptor := &taskPollingFetchAdaptor{}
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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ctx, cancel := context.WithTimeout(context.Background(), 50*time.Millisecond)
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defer cancel()
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err := UpdateVideoTasks(ctx, constant.TaskPlatform("kling"), map[int][]string{
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firstChannelID: {
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firstChannelFirst.GetUpstreamTaskID(),
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firstChannelSecond.GetUpstreamTaskID(),
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},
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secondChannelID: {
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secondChannelFirst.GetUpstreamTaskID(),
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secondChannelSecond.GetUpstreamTaskID(),
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},
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}, map[string]*model.Task{
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firstChannelFirst.GetUpstreamTaskID(): firstChannelFirst,
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firstChannelSecond.GetUpstreamTaskID(): firstChannelSecond,
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secondChannelFirst.GetUpstreamTaskID(): secondChannelFirst,
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secondChannelSecond.GetUpstreamTaskID(): secondChannelSecond,
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})
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require.ErrorIs(t, err, context.DeadlineExceeded)
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assert.ElementsMatch(t, []string{"upstream_a_1", "upstream_b_1"}, adaptor.fetchedTaskIDs())
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}
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func TestUpdateVideoTasksSlowChannelDoesNotBlockOtherChannels(t *testing.T) {
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truncate(t)
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const slowChannelID = 251
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const fastChannelID = 252
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seedTaskPollingChannel(t, slowChannelID, false)
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seedTaskPollingChannel(t, fastChannelID, true)
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slowTask := seedPollingTask(t, slowChannelID, "task_public_slow", "upstream_slow_1")
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fastFirst := seedPollingTask(t, fastChannelID, "task_public_fast_1", "upstream_fast_parallel_1")
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fastSecond := seedPollingTask(t, fastChannelID, "task_public_fast_2", "upstream_fast_parallel_2")
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adaptor := &taskPollingFetchAdaptor{
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fetched: make(chan string, 4),
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blockTaskID: slowTask.GetUpstreamTaskID(),
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blockStarted: make(chan struct{}),
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releaseBlock: make(chan struct{}),
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}
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var releaseOnce sync.Once
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releaseBlockedTask := func() {
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releaseOnce.Do(func() {
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close(adaptor.releaseBlock)
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})
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}
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t.Cleanup(releaseBlockedTask)
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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errCh := make(chan error, 1)
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gopool.Go(func() {
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errCh <- UpdateVideoTasks(context.Background(), constant.TaskPlatform("kling"), map[int][]string{
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slowChannelID: {
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slowTask.GetUpstreamTaskID(),
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},
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fastChannelID: {
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fastFirst.GetUpstreamTaskID(),
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fastSecond.GetUpstreamTaskID(),
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},
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}, map[string]*model.Task{
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slowTask.GetUpstreamTaskID(): slowTask,
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fastFirst.GetUpstreamTaskID(): fastFirst,
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fastSecond.GetUpstreamTaskID(): fastSecond,
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})
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})
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select {
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case <-adaptor.blockStarted:
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case <-time.After(500 * time.Millisecond):
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t.Fatal("slow channel did not start blocking")
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}
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require.Eventually(t, func() bool {
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fetchedTaskIDs := adaptor.fetchedTaskIDs()
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return len(fetchedTaskIDs) == 2 &&
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fetchedTaskIDs[0] == fastFirst.GetUpstreamTaskID() &&
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fetchedTaskIDs[1] == fastSecond.GetUpstreamTaskID()
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}, 500*time.Millisecond, 10*time.Millisecond)
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releaseBlockedTask()
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require.NoError(t, <-errCh)
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assert.ElementsMatch(t, []string{
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slowTask.GetUpstreamTaskID(),
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fastFirst.GetUpstreamTaskID(),
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fastSecond.GetUpstreamTaskID(),
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}, adaptor.fetchedTaskIDs())
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}
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func TestUpdateVideoTasksMixedChannelSleepSettings(t *testing.T) {
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truncate(t)
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const sleepyChannelID = 301
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const fastChannelID = 302
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seedTaskPollingChannel(t, sleepyChannelID, false)
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seedTaskPollingChannel(t, fastChannelID, true)
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sleepyFirst := seedPollingTask(t, sleepyChannelID, "task_public_9", "upstream_sleepy_1")
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sleepySecond := seedPollingTask(t, sleepyChannelID, "task_public_10", "upstream_sleepy_2")
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fastFirst := seedPollingTask(t, fastChannelID, "task_public_11", "upstream_fast_1")
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fastSecond := seedPollingTask(t, fastChannelID, "task_public_12", "upstream_fast_2")
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adaptor := &taskPollingFetchAdaptor{}
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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ctx, cancel := context.WithTimeout(context.Background(), 100*time.Millisecond)
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defer cancel()
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err := UpdateVideoTasks(ctx, constant.TaskPlatform("kling"), map[int][]string{
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sleepyChannelID: {
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sleepyFirst.GetUpstreamTaskID(),
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sleepySecond.GetUpstreamTaskID(),
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},
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fastChannelID: {
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fastFirst.GetUpstreamTaskID(),
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fastSecond.GetUpstreamTaskID(),
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},
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}, map[string]*model.Task{
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sleepyFirst.GetUpstreamTaskID(): sleepyFirst,
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sleepySecond.GetUpstreamTaskID(): sleepySecond,
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fastFirst.GetUpstreamTaskID(): fastFirst,
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fastSecond.GetUpstreamTaskID(): fastSecond,
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})
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require.ErrorIs(t, err, context.DeadlineExceeded)
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assert.ElementsMatch(t, []string{"upstream_sleepy_1", "upstream_fast_1", "upstream_fast_2"}, adaptor.fetchedTaskIDs())
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}
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func TestUpdateSunoTasksStalePollsRefundExactlyOnce(t *testing.T) {
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truncate(t)
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const userID, tokenID, channelID = 401, 401, 401
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const initialUserQuota, initialTokenQuota, taskQuota = 10_000, 6_000, 2_500
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const publicTaskID, upstreamTaskID = "suno_public_refund_once", "suno_upstream_refund_once"
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seedUser(t, userID, initialUserQuota)
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seedToken(t, tokenID, userID, "sk-suno-refund-once", initialTokenQuota)
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baseURL := "https://suno.invalid"
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require.NoError(t, model.DB.Create(&model.Channel{
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Id: channelID,
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Type: constant.ChannelTypeSunoAPI,
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Name: "suno_refund_once",
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Key: "sk-suno-channel",
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Status: common.ChannelStatusEnabled,
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BaseURL: &baseURL,
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}).Error)
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task := makeTask(userID, channelID, taskQuota, tokenID, BillingSourceWallet, 0)
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task.TaskID = publicTaskID
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task.Platform = constant.TaskPlatformSuno
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task.Status = model.TaskStatusInProgress
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task.Progress = "50%"
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task.SubmitTime = time.Now().Unix()
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task.PrivateData.UpstreamTaskID = upstreamTaskID
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require.NoError(t, model.DB.Create(task).Error)
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var firstPollTask model.Task
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var staleSecondPollTask model.Task
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require.NoError(t, model.DB.First(&firstPollTask, task.ID).Error)
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require.NoError(t, model.DB.First(&staleSecondPollTask, task.ID).Error)
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adaptor := &sunoFailurePollingAdaptor{failReason: "upstream failed"}
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previousFactory := GetTaskAdaptorFunc
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GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor { return adaptor }
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t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
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require.NoError(t, updateSunoTasks(context.Background(), channelID, []string{upstreamTaskID}, map[string]*model.Task{
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upstreamTaskID: &firstPollTask,
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}))
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require.NoError(t, updateSunoTasks(context.Background(), channelID, []string{upstreamTaskID}, map[string]*model.Task{
|
|
upstreamTaskID: &staleSecondPollTask,
|
|
}))
|
|
|
|
var reloaded model.Task
|
|
require.NoError(t, model.DB.First(&reloaded, task.ID).Error)
|
|
assert.EqualValues(t, model.TaskStatusFailure, reloaded.Status)
|
|
assert.Zero(t, reloaded.Quota)
|
|
assert.Equal(t, initialUserQuota+taskQuota, getUserQuota(t, userID))
|
|
assert.Equal(t, initialTokenQuota+taskQuota, getTokenRemainQuota(t, tokenID))
|
|
assert.Equal(t, int64(1), countLogs(t))
|
|
}
|
|
|
|
func TestRunTaskPollingOnceDoesNotRefundHistoricalFailedTask(t *testing.T) {
|
|
truncate(t)
|
|
|
|
const userID, initialQuota, taskQuota = 402, 10_000, 1_200
|
|
seedUser(t, userID, initialQuota)
|
|
|
|
task := makeTask(userID, 0, taskQuota, 0, BillingSourceWallet, 0)
|
|
task.TaskID = "historical_failed_already_refunded"
|
|
task.Status = model.TaskStatusFailure
|
|
task.Progress = "100%"
|
|
task.SubmitTime = time.Now().Add(-90 * 24 * time.Hour).Unix()
|
|
task.UpdatedAt = time.Now().Add(-time.Minute).Unix()
|
|
require.NoError(t, model.DB.Create(task).Error)
|
|
|
|
previousFactory := GetTaskAdaptorFunc
|
|
GetTaskAdaptorFunc = func(constant.TaskPlatform) TaskPollingAdaptor {
|
|
return &taskPollingFetchAdaptor{}
|
|
}
|
|
t.Cleanup(func() { GetTaskAdaptorFunc = previousFactory })
|
|
|
|
summary := RunTaskPollingOnce(context.Background(), nil)
|
|
|
|
assert.Zero(t, summary.UnfinishedTasks)
|
|
assert.Equal(t, initialQuota, getUserQuota(t, userID))
|
|
assert.Equal(t, taskQuota, getTaskQuota(t, task.ID))
|
|
assert.Equal(t, int64(0), countLogs(t))
|
|
}
|
|
|
|
func TestSweepTimedOutTasksHonorsRefundRolloutBoundary(t *testing.T) {
|
|
truncate(t)
|
|
|
|
const (
|
|
userID = 403
|
|
initialQuota = 10_000
|
|
legacyTaskQuota = 1_800
|
|
modernTaskQuota = 1_200
|
|
)
|
|
seedUser(t, userID, initialQuota)
|
|
|
|
legacyTask := makeTask(userID, 0, legacyTaskQuota, 0, BillingSourceWallet, 0)
|
|
legacyTask.TaskID = "legacy_timeout_without_refund"
|
|
legacyTask.Progress = "50%"
|
|
legacyTask.SubmitTime = 1771718399 // 2026-02-21 23:59:59 UTC
|
|
require.NoError(t, model.DB.Create(legacyTask).Error)
|
|
|
|
modernTask := makeTask(userID, 0, modernTaskQuota, 0, BillingSourceWallet, 0)
|
|
modernTask.TaskID = "modern_timeout_with_refund"
|
|
modernTask.Progress = "50%"
|
|
modernTask.SubmitTime = 1771718400 // 2026-02-22 00:00:00 UTC
|
|
require.NoError(t, model.DB.Create(modernTask).Error)
|
|
|
|
previousTimeout := constant.TaskTimeoutMinutes
|
|
constant.TaskTimeoutMinutes = 1
|
|
t.Cleanup(func() { constant.TaskTimeoutMinutes = previousTimeout })
|
|
|
|
sweepTimedOutTasks(context.Background())
|
|
|
|
var reloadedLegacy model.Task
|
|
var reloadedModern model.Task
|
|
require.NoError(t, model.DB.First(&reloadedLegacy, legacyTask.ID).Error)
|
|
require.NoError(t, model.DB.First(&reloadedModern, modernTask.ID).Error)
|
|
assert.EqualValues(t, model.TaskStatusFailure, reloadedLegacy.Status)
|
|
assert.EqualValues(t, model.TaskStatusFailure, reloadedModern.Status)
|
|
assert.Zero(t, reloadedLegacy.Quota)
|
|
assert.Zero(t, reloadedModern.Quota)
|
|
assert.Contains(t, reloadedLegacy.FailReason, "旧系统遗留任务")
|
|
assert.Contains(t, reloadedModern.FailReason, "任务超时")
|
|
assert.Equal(t, initialQuota+modernTaskQuota, getUserQuota(t, userID))
|
|
assert.Equal(t, int64(1), countLogs(t))
|
|
}
|