* refactor: apply biome formatting to packages/features (batch 1 - small subdirs) Format small subdirectories in packages/features: di, flags, holidays, oauth, settings, users, assignment-reason, selectedCalendar, hashedLink, host, form, form-builder, availability, data-table, pbac, schedules, troubleshooter, eventtypes, calendar-subscription, and root-level files. Also includes straggler apps/web BookEventForm.tsx. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * refactor: apply biome formatting to packages/features (batch 2 - medium subdirs) Format medium subdirectories in packages/features: auth, credentials, calendars, routing-forms, routing-trace, attributes, watchlist, calAIPhone, tasker, and webhooks. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * refactor: apply biome formatting to packages/features (batch 3 - bookings + insights) Format bookings and insights subdirectories in packages/features. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * refactor: apply biome formatting to packages/features (batch 4 - ee) Format packages/features/ee subdirectory covering billing, workflows, organizations, teams, managed-event-types, round-robin, dsync, integration-attribute-sync, and payments. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * refactor: apply biome formatting to packages/features (batch 5 - booking-audit part 1) Format booking-audit di, actions, common, dto, repository, and types subdirectories in packages/features/booking-audit. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> * refactor: apply biome formatting to packages/features (batch 6 - booking-audit part 2) Format booking-audit service subdirectory in packages/features/booking-audit. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.6 <noreply@anthropic.com>
239 lines
6.1 KiB
TypeScript
239 lines
6.1 KiB
TypeScript
import { prisma } from "@calcom/prisma";
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import type { PrismaClient } from "@calcom/prisma";
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import { Prisma } from "@calcom/prisma/client";
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import { type TaskTypes } from "./tasker";
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import { scanWorkflowBodySchema } from "./tasks/scanWorkflowBody";
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const whereSucceeded: Prisma.TaskWhereInput = {
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succeededAt: { not: null },
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};
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const whereMaxAttemptsReached: Prisma.TaskWhereInput = {
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attempts: {
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equals: {
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// @ts-expect-error prisma is tripping: '_ref' does not exist in type 'FieldRef<"Task", "Int">'
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_ref: "maxAttempts",
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_container: "Task",
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},
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},
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};
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/** This is a function to ensure new Date is always fresh */
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const makeWhereUpcomingTasks = (): Prisma.TaskWhereInput => ({
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// Get only tasks that have not succeeded yet
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succeededAt: null,
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// Get only tasks that are scheduled to run now or in the past
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scheduledAt: {
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lt: new Date(),
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},
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// Get only tasks where maxAttemps has not been reached
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attempts: {
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lt: {
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// @ts-expect-error prisma is tripping: '_ref' does not exist in type 'FieldRef<"Task", "Int">'
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_ref: "maxAttempts",
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_container: "Task",
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},
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},
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});
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type Dependencies = {
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prismaClient: PrismaClient;
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};
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export class TaskRepository {
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constructor(private readonly deps: Dependencies) {}
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async create(
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type: TaskTypes,
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payload: string,
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options: { scheduledAt?: Date; maxAttempts?: number; referenceUid?: string } = {}
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) {
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const { scheduledAt, maxAttempts, referenceUid } = options;
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console.info("Creating task", { type, payload, scheduledAt, maxAttempts });
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const newTask = await this.deps.prismaClient.task.create({
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data: {
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payload,
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type,
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scheduledAt,
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maxAttempts,
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referenceUid,
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},
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});
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return newTask.id;
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}
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async getNextBatch() {
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console.info("Getting next batch of tasks", makeWhereUpcomingTasks());
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return this.deps.prismaClient.task.findMany({
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where: makeWhereUpcomingTasks(),
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orderBy: {
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scheduledAt: "asc",
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},
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take: 1000,
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});
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}
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async getFailed() {
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return this.deps.prismaClient.task.findMany({
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where: whereMaxAttemptsReached,
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});
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}
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async getSucceeded() {
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return this.deps.prismaClient.task.findMany({
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where: whereSucceeded,
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});
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}
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async count() {
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return this.deps.prismaClient.task.count();
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}
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async countUpcoming() {
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return this.deps.prismaClient.task.count({
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where: makeWhereUpcomingTasks(),
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});
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}
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async countFailed() {
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return this.deps.prismaClient.task.count({
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where: whereMaxAttemptsReached,
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});
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}
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async countSucceeded() {
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return this.deps.prismaClient.task.count({
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where: whereSucceeded,
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});
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}
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async retry({
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taskId,
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lastError,
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minRetryIntervalMins,
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}: {
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taskId: string;
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lastError?: string;
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minRetryIntervalMins?: number | null;
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}) {
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const failedAttemptTime = new Date();
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const updatedScheduledAt = minRetryIntervalMins
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? new Date(failedAttemptTime.getTime() + 1000 * 60 * minRetryIntervalMins)
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: undefined;
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return this.deps.prismaClient.task.update({
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where: {
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id: taskId,
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},
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data: {
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attempts: { increment: 1 },
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lastError,
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lastFailedAttemptAt: failedAttemptTime,
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...(updatedScheduledAt && {
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scheduledAt: updatedScheduledAt,
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}),
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},
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});
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}
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async succeed(taskId: string) {
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return this.deps.prismaClient.task.update({
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where: {
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id: taskId,
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},
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data: {
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attempts: { increment: 1 },
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succeededAt: new Date(),
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},
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});
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}
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/**
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* Update the payload of a task
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*
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* @param taskId - The ID of the task to update
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* @param newPayload - The new payload string
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*/
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async updatePayload(taskId: string, newPayload: string) {
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return this.deps.prismaClient.task.update({
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where: {
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id: taskId,
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},
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data: {
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payload: newPayload,
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},
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});
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}
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async cancel(taskId: string) {
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return this.deps.prismaClient.task.delete({
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where: {
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id: taskId,
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},
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});
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}
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async cancelWithReference(referenceUid: string, type: TaskTypes): Promise<{ id: string } | null> {
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// prismaClient.task.delete throws an error if the task does not exist, so we catch it and return null
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try {
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return await this.deps.prismaClient.task.delete({
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where: {
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referenceUid_type: {
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referenceUid,
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type,
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},
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},
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select: {
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id: true,
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},
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});
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} catch (error) {
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if (error instanceof Prisma.PrismaClientKnownRequestError && error.code === "P2025") {
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// P2025 is the error code for "Record to delete does not exist"
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console.warn(`Task with reference ${referenceUid} and type ${type} does not exist. No action taken.`);
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return null;
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}
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throw error;
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}
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}
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async cleanup() {
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// TODO: Uncomment this later
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// return this.deps.prismaClient.task.deleteMany({
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// where: {
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// OR: [
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// // Get tasks that have succeeded
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// whereSucceeded,
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// // Get tasks where maxAttemps has been reached
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// whereMaxAttemptsReached,
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// ],
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// },
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// });
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}
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async hasNewerScanTaskForStepId(workflowStepId: number, createdAt: string) {
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const tasks = await this.deps.prismaClient.$queryRaw<{ payload: string }[]>`
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SELECT "payload"
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FROM "Task"
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WHERE "type" = 'scanWorkflowBody'
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AND "succeededAt" IS NULL
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AND (payload::jsonb ->> 'workflowStepId')::int = ${workflowStepId}
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`;
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return tasks.some((task) => {
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try {
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const parsed = scanWorkflowBodySchema.parse(JSON.parse(task.payload));
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if (!parsed.createdAt) return false;
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return new Date(parsed.createdAt) > new Date(createdAt);
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} catch {
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return false;
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}
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});
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}
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}
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// Export singleton instance for backward compatibility
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// This allows existing code using Task.create(), Task.succeed(), etc. to continue working
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export const Task = new TaskRepository({ prismaClient: prisma });
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