## 后端改动 - 添加 Project.envPresets 字段(JSON 格式) - 移除 Deployment.env 字段,统一使用 envVars - 更新部署 DTO,支持 envVars (Record<string, string>) - pipeline-runner 支持解析并注入 envVars 到环境 - 移除稀疏检出模板和相关环境变量 - 优化代码格式(Biome lint & format) ## 前端改动 - 新增 EnvPresetsEditor 组件(支持单选/多选/输入框类型) - 项目创建/编辑界面集成环境预设编辑器 - 部署界面基于预设动态生成环境变量表单 - 移除稀疏检出表单项 - 项目详情页添加环境变量预设配置 tab - 优化部署界面布局(基本参数 & 环境变量分区) ## 文档 - 添加完整文档目录结构(docs/) - 创建设计文档 design-0005(部署流程重构) - 添加 API 文档、架构设计文档等 ## 数据库 - 执行 prisma db push 同步 schema 变更
1168 lines
33 KiB
TypeScript
1168 lines
33 KiB
TypeScript
/* !!! This is code generated by Prisma. Do not edit directly. !!! */
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/* eslint-disable */
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// biome-ignore-all lint: generated file
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// @ts-nocheck
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/*
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* WARNING: This is an internal file that is subject to change!
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*
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* 🛑 Under no circumstances should you import this file directly! 🛑
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*
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* All exports from this file are wrapped under a `Prisma` namespace object in the client.ts file.
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* While this enables partial backward compatibility, it is not part of the stable public API.
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*
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* If you are looking for your Models, Enums, and Input Types, please import them from the respective
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* model files in the `model` directory!
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*/
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import * as runtime from '@prisma/client/runtime/client';
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import type * as Prisma from '../models.ts';
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import { type PrismaClient } from './class.ts';
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export type * from '../models.ts';
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export type DMMF = typeof runtime.DMMF;
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export type PrismaPromise<T> = runtime.Types.Public.PrismaPromise<T>;
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/**
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* Prisma Errors
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*/
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export const PrismaClientKnownRequestError =
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runtime.PrismaClientKnownRequestError;
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export type PrismaClientKnownRequestError =
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runtime.PrismaClientKnownRequestError;
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export const PrismaClientUnknownRequestError =
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runtime.PrismaClientUnknownRequestError;
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export type PrismaClientUnknownRequestError =
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runtime.PrismaClientUnknownRequestError;
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export const PrismaClientRustPanicError = runtime.PrismaClientRustPanicError;
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export type PrismaClientRustPanicError = runtime.PrismaClientRustPanicError;
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export const PrismaClientInitializationError =
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runtime.PrismaClientInitializationError;
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export type PrismaClientInitializationError =
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runtime.PrismaClientInitializationError;
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export const PrismaClientValidationError = runtime.PrismaClientValidationError;
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export type PrismaClientValidationError = runtime.PrismaClientValidationError;
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/**
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* Re-export of sql-template-tag
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*/
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export const sql = runtime.sqltag;
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export const empty = runtime.empty;
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export const join = runtime.join;
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export const raw = runtime.raw;
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export const Sql = runtime.Sql;
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export type Sql = runtime.Sql;
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/**
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* Decimal.js
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*/
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export const Decimal = runtime.Decimal;
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export type Decimal = runtime.Decimal;
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export type DecimalJsLike = runtime.DecimalJsLike;
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/**
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* Extensions
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*/
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export type Extension = runtime.Types.Extensions.UserArgs;
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export const getExtensionContext = runtime.Extensions.getExtensionContext;
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export type Args<T, F extends runtime.Operation> = runtime.Types.Public.Args<
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T,
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F
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>;
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export type Payload<
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T,
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F extends runtime.Operation = never,
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> = runtime.Types.Public.Payload<T, F>;
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export type Result<
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T,
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A,
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F extends runtime.Operation,
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> = runtime.Types.Public.Result<T, A, F>;
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export type Exact<A, W> = runtime.Types.Public.Exact<A, W>;
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export type PrismaVersion = {
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client: string;
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engine: string;
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};
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/**
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* Prisma Client JS version: 7.0.0
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* Query Engine version: 0c19ccc313cf9911a90d99d2ac2eb0280c76c513
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*/
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export const prismaVersion: PrismaVersion = {
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client: '7.0.0',
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engine: '0c19ccc313cf9911a90d99d2ac2eb0280c76c513',
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};
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/**
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* Utility Types
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*/
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export type Bytes = runtime.Bytes;
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export type JsonObject = runtime.JsonObject;
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export type JsonArray = runtime.JsonArray;
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export type JsonValue = runtime.JsonValue;
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export type InputJsonObject = runtime.InputJsonObject;
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export type InputJsonArray = runtime.InputJsonArray;
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export type InputJsonValue = runtime.InputJsonValue;
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export const NullTypes = {
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DbNull: runtime.NullTypes.DbNull as new (
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secret: never,
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) => typeof runtime.DbNull,
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JsonNull: runtime.NullTypes.JsonNull as new (
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secret: never,
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) => typeof runtime.JsonNull,
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AnyNull: runtime.NullTypes.AnyNull as new (
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secret: never,
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) => typeof runtime.AnyNull,
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};
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/**
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* Helper for filtering JSON entries that have `null` on the database (empty on the db)
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*
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* @see https://www.prisma.io/docs/concepts/components/prisma-client/working-with-fields/working-with-json-fields#filtering-on-a-json-field
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*/
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export const DbNull = runtime.DbNull;
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/**
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* Helper for filtering JSON entries that have JSON `null` values (not empty on the db)
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*
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* @see https://www.prisma.io/docs/concepts/components/prisma-client/working-with-fields/working-with-json-fields#filtering-on-a-json-field
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*/
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export const JsonNull = runtime.JsonNull;
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/**
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* Helper for filtering JSON entries that are `Prisma.DbNull` or `Prisma.JsonNull`
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*
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* @see https://www.prisma.io/docs/concepts/components/prisma-client/working-with-fields/working-with-json-fields#filtering-on-a-json-field
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*/
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export const AnyNull = runtime.AnyNull;
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type SelectAndInclude = {
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select: any;
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include: any;
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};
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type SelectAndOmit = {
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select: any;
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omit: any;
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};
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/**
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* From T, pick a set of properties whose keys are in the union K
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*/
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type Prisma__Pick<T, K extends keyof T> = {
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[P in K]: T[P];
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};
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export type Enumerable<T> = T | Array<T>;
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/**
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* Subset
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* @desc From `T` pick properties that exist in `U`. Simple version of Intersection
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*/
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export type Subset<T, U> = {
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[key in keyof T]: key extends keyof U ? T[key] : never;
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};
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/**
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* SelectSubset
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* @desc From `T` pick properties that exist in `U`. Simple version of Intersection.
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* Additionally, it validates, if both select and include are present. If the case, it errors.
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*/
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export type SelectSubset<T, U> = {
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[key in keyof T]: key extends keyof U ? T[key] : never;
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} & (T extends SelectAndInclude
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? 'Please either choose `select` or `include`.'
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: T extends SelectAndOmit
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? 'Please either choose `select` or `omit`.'
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: {});
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/**
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* Subset + Intersection
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* @desc From `T` pick properties that exist in `U` and intersect `K`
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*/
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export type SubsetIntersection<T, U, K> = {
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[key in keyof T]: key extends keyof U ? T[key] : never;
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} & K;
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type Without<T, U> = { [P in Exclude<keyof T, keyof U>]?: never };
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/**
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* XOR is needed to have a real mutually exclusive union type
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* https://stackoverflow.com/questions/42123407/does-typescript-support-mutually-exclusive-types
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*/
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export type XOR<T, U> = T extends object
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? U extends object
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? (Without<T, U> & U) | (Without<U, T> & T)
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: U
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: T;
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/**
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* Is T a Record?
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*/
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type IsObject<T extends any> = T extends Array<any>
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? False
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: T extends Date
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? False
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: T extends Uint8Array
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? False
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: T extends BigInt
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? False
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: T extends object
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? True
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: False;
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/**
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* If it's T[], return T
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*/
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export type UnEnumerate<T extends unknown> = T extends Array<infer U> ? U : T;
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/**
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* From ts-toolbelt
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*/
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type __Either<O extends object, K extends Key> = Omit<O, K> &
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{
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// Merge all but K
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[P in K]: Prisma__Pick<O, P & keyof O>; // With K possibilities
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}[K];
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type EitherStrict<O extends object, K extends Key> = Strict<__Either<O, K>>;
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type EitherLoose<O extends object, K extends Key> = ComputeRaw<__Either<O, K>>;
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type _Either<O extends object, K extends Key, strict extends Boolean> = {
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1: EitherStrict<O, K>;
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0: EitherLoose<O, K>;
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}[strict];
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export type Either<
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O extends object,
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K extends Key,
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strict extends Boolean = 1,
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> = O extends unknown ? _Either<O, K, strict> : never;
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export type Union = any;
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export type PatchUndefined<O extends object, O1 extends object> = {
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[K in keyof O]: O[K] extends undefined ? At<O1, K> : O[K];
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} & {};
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/** Helper Types for "Merge" **/
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export type IntersectOf<U extends Union> = (
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U extends unknown
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? (k: U) => void
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: never
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) extends (k: infer I) => void
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? I
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: never;
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export type Overwrite<O extends object, O1 extends object> = {
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[K in keyof O]: K extends keyof O1 ? O1[K] : O[K];
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} & {};
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type _Merge<U extends object> = IntersectOf<
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Overwrite<
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U,
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{
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[K in keyof U]-?: At<U, K>;
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}
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>
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>;
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type Key = string | number | symbol;
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type AtStrict<O extends object, K extends Key> = O[K & keyof O];
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type AtLoose<O extends object, K extends Key> = O extends unknown
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? AtStrict<O, K>
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: never;
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export type At<O extends object, K extends Key, strict extends Boolean = 1> = {
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1: AtStrict<O, K>;
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0: AtLoose<O, K>;
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}[strict];
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export type ComputeRaw<A extends any> = A extends Function
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? A
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: {
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[K in keyof A]: A[K];
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} & {};
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export type OptionalFlat<O> = {
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[K in keyof O]?: O[K];
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} & {};
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type _Record<K extends keyof any, T> = {
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[P in K]: T;
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};
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// cause typescript not to expand types and preserve names
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type NoExpand<T> = T extends unknown ? T : never;
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// this type assumes the passed object is entirely optional
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export type AtLeast<O extends object, K extends string> = NoExpand<
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O extends unknown
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?
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| (K extends keyof O ? { [P in K]: O[P] } & O : O)
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| ({ [P in keyof O as P extends K ? P : never]-?: O[P] } & O)
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: never
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>;
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type _Strict<U, _U = U> = U extends unknown
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? U & OptionalFlat<_Record<Exclude<Keys<_U>, keyof U>, never>>
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: never;
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export type Strict<U extends object> = ComputeRaw<_Strict<U>>;
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/** End Helper Types for "Merge" **/
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export type Merge<U extends object> = ComputeRaw<_Merge<Strict<U>>>;
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export type Boolean = True | False;
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export type True = 1;
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export type False = 0;
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export type Not<B extends Boolean> = {
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0: 1;
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1: 0;
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}[B];
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export type Extends<A1 extends any, A2 extends any> = [A1] extends [never]
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? 0 // anything `never` is false
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: A1 extends A2
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? 1
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: 0;
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export type Has<U extends Union, U1 extends Union> = Not<
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Extends<Exclude<U1, U>, U1>
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>;
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export type Or<B1 extends Boolean, B2 extends Boolean> = {
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0: {
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0: 0;
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1: 1;
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};
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1: {
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0: 1;
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1: 1;
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};
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}[B1][B2];
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export type Keys<U extends Union> = U extends unknown ? keyof U : never;
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export type GetScalarType<T, O> = O extends object
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? {
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[P in keyof T]: P extends keyof O ? O[P] : never;
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}
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: never;
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type FieldPaths<
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T,
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U = Omit<T, '_avg' | '_sum' | '_count' | '_min' | '_max'>,
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> = IsObject<T> extends True ? U : T;
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export type GetHavingFields<T> = {
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[K in keyof T]: Or<
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Or<Extends<'OR', K>, Extends<'AND', K>>,
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Extends<'NOT', K>
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> extends True
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? // infer is only needed to not hit TS limit
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// based on the brilliant idea of Pierre-Antoine Mills
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// https://github.com/microsoft/TypeScript/issues/30188#issuecomment-478938437
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T[K] extends infer TK
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? GetHavingFields<
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UnEnumerate<TK> extends object ? Merge<UnEnumerate<TK>> : never
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>
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: never
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: {} extends FieldPaths<T[K]>
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? never
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: K;
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}[keyof T];
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/**
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* Convert tuple to union
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*/
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type _TupleToUnion<T> = T extends (infer E)[] ? E : never;
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type TupleToUnion<K extends readonly any[]> = _TupleToUnion<K>;
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export type MaybeTupleToUnion<T> = T extends any[] ? TupleToUnion<T> : T;
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/**
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* Like `Pick`, but additionally can also accept an array of keys
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*/
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export type PickEnumerable<
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T,
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K extends Enumerable<keyof T> | keyof T,
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> = Prisma__Pick<T, MaybeTupleToUnion<K>>;
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/**
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* Exclude all keys with underscores
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*/
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export type ExcludeUnderscoreKeys<T extends string> = T extends `_${string}`
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? never
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: T;
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export type FieldRef<Model, FieldType> = runtime.FieldRef<Model, FieldType>;
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type FieldRefInputType<Model, FieldType> = Model extends never
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? never
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: FieldRef<Model, FieldType>;
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export const ModelName = {
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Project: 'Project',
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User: 'User',
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Pipeline: 'Pipeline',
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Step: 'Step',
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Deployment: 'Deployment',
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} as const;
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export type ModelName = (typeof ModelName)[keyof typeof ModelName];
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export interface TypeMapCb<GlobalOmitOptions = {}>
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extends runtime.Types.Utils.Fn<
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{ extArgs: runtime.Types.Extensions.InternalArgs },
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runtime.Types.Utils.Record<string, any>
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> {
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returns: TypeMap<this['params']['extArgs'], GlobalOmitOptions>;
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}
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export type TypeMap<
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ExtArgs extends
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runtime.Types.Extensions.InternalArgs = runtime.Types.Extensions.DefaultArgs,
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GlobalOmitOptions = {},
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> = {
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globalOmitOptions: {
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omit: GlobalOmitOptions;
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};
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meta: {
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modelProps: 'project' | 'user' | 'pipeline' | 'step' | 'deployment';
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txIsolationLevel: TransactionIsolationLevel;
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};
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model: {
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Project: {
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payload: Prisma.$ProjectPayload<ExtArgs>;
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fields: Prisma.ProjectFieldRefs;
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operations: {
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findUnique: {
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args: Prisma.ProjectFindUniqueArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload> | null;
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};
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findUniqueOrThrow: {
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args: Prisma.ProjectFindUniqueOrThrowArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
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findFirst: {
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args: Prisma.ProjectFindFirstArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload> | null;
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};
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findFirstOrThrow: {
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args: Prisma.ProjectFindFirstOrThrowArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
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findMany: {
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args: Prisma.ProjectFindManyArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>[];
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};
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create: {
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args: Prisma.ProjectCreateArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
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createMany: {
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args: Prisma.ProjectCreateManyArgs<ExtArgs>;
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result: BatchPayload;
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};
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createManyAndReturn: {
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args: Prisma.ProjectCreateManyAndReturnArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>[];
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};
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delete: {
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args: Prisma.ProjectDeleteArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
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update: {
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args: Prisma.ProjectUpdateArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
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deleteMany: {
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args: Prisma.ProjectDeleteManyArgs<ExtArgs>;
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result: BatchPayload;
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};
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updateMany: {
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args: Prisma.ProjectUpdateManyArgs<ExtArgs>;
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result: BatchPayload;
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};
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updateManyAndReturn: {
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args: Prisma.ProjectUpdateManyAndReturnArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>[];
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};
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upsert: {
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args: Prisma.ProjectUpsertArgs<ExtArgs>;
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result: runtime.Types.Utils.PayloadToResult<Prisma.$ProjectPayload>;
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};
|
|
aggregate: {
|
|
args: Prisma.ProjectAggregateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.AggregateProject>;
|
|
};
|
|
groupBy: {
|
|
args: Prisma.ProjectGroupByArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.ProjectGroupByOutputType>[];
|
|
};
|
|
count: {
|
|
args: Prisma.ProjectCountArgs<ExtArgs>;
|
|
result:
|
|
| runtime.Types.Utils.Optional<Prisma.ProjectCountAggregateOutputType>
|
|
| number;
|
|
};
|
|
};
|
|
};
|
|
User: {
|
|
payload: Prisma.$UserPayload<ExtArgs>;
|
|
fields: Prisma.UserFieldRefs;
|
|
operations: {
|
|
findUnique: {
|
|
args: Prisma.UserFindUniqueArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload> | null;
|
|
};
|
|
findUniqueOrThrow: {
|
|
args: Prisma.UserFindUniqueOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
findFirst: {
|
|
args: Prisma.UserFindFirstArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload> | null;
|
|
};
|
|
findFirstOrThrow: {
|
|
args: Prisma.UserFindFirstOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
findMany: {
|
|
args: Prisma.UserFindManyArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>[];
|
|
};
|
|
create: {
|
|
args: Prisma.UserCreateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
createMany: {
|
|
args: Prisma.UserCreateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
createManyAndReturn: {
|
|
args: Prisma.UserCreateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>[];
|
|
};
|
|
delete: {
|
|
args: Prisma.UserDeleteArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
update: {
|
|
args: Prisma.UserUpdateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
deleteMany: {
|
|
args: Prisma.UserDeleteManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateMany: {
|
|
args: Prisma.UserUpdateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateManyAndReturn: {
|
|
args: Prisma.UserUpdateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>[];
|
|
};
|
|
upsert: {
|
|
args: Prisma.UserUpsertArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$UserPayload>;
|
|
};
|
|
aggregate: {
|
|
args: Prisma.UserAggregateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.AggregateUser>;
|
|
};
|
|
groupBy: {
|
|
args: Prisma.UserGroupByArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.UserGroupByOutputType>[];
|
|
};
|
|
count: {
|
|
args: Prisma.UserCountArgs<ExtArgs>;
|
|
result:
|
|
| runtime.Types.Utils.Optional<Prisma.UserCountAggregateOutputType>
|
|
| number;
|
|
};
|
|
};
|
|
};
|
|
Pipeline: {
|
|
payload: Prisma.$PipelinePayload<ExtArgs>;
|
|
fields: Prisma.PipelineFieldRefs;
|
|
operations: {
|
|
findUnique: {
|
|
args: Prisma.PipelineFindUniqueArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload> | null;
|
|
};
|
|
findUniqueOrThrow: {
|
|
args: Prisma.PipelineFindUniqueOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
findFirst: {
|
|
args: Prisma.PipelineFindFirstArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload> | null;
|
|
};
|
|
findFirstOrThrow: {
|
|
args: Prisma.PipelineFindFirstOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
findMany: {
|
|
args: Prisma.PipelineFindManyArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>[];
|
|
};
|
|
create: {
|
|
args: Prisma.PipelineCreateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
createMany: {
|
|
args: Prisma.PipelineCreateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
createManyAndReturn: {
|
|
args: Prisma.PipelineCreateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>[];
|
|
};
|
|
delete: {
|
|
args: Prisma.PipelineDeleteArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
update: {
|
|
args: Prisma.PipelineUpdateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
deleteMany: {
|
|
args: Prisma.PipelineDeleteManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateMany: {
|
|
args: Prisma.PipelineUpdateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateManyAndReturn: {
|
|
args: Prisma.PipelineUpdateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>[];
|
|
};
|
|
upsert: {
|
|
args: Prisma.PipelineUpsertArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$PipelinePayload>;
|
|
};
|
|
aggregate: {
|
|
args: Prisma.PipelineAggregateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.AggregatePipeline>;
|
|
};
|
|
groupBy: {
|
|
args: Prisma.PipelineGroupByArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.PipelineGroupByOutputType>[];
|
|
};
|
|
count: {
|
|
args: Prisma.PipelineCountArgs<ExtArgs>;
|
|
result:
|
|
| runtime.Types.Utils.Optional<Prisma.PipelineCountAggregateOutputType>
|
|
| number;
|
|
};
|
|
};
|
|
};
|
|
Step: {
|
|
payload: Prisma.$StepPayload<ExtArgs>;
|
|
fields: Prisma.StepFieldRefs;
|
|
operations: {
|
|
findUnique: {
|
|
args: Prisma.StepFindUniqueArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload> | null;
|
|
};
|
|
findUniqueOrThrow: {
|
|
args: Prisma.StepFindUniqueOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
findFirst: {
|
|
args: Prisma.StepFindFirstArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload> | null;
|
|
};
|
|
findFirstOrThrow: {
|
|
args: Prisma.StepFindFirstOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
findMany: {
|
|
args: Prisma.StepFindManyArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>[];
|
|
};
|
|
create: {
|
|
args: Prisma.StepCreateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
createMany: {
|
|
args: Prisma.StepCreateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
createManyAndReturn: {
|
|
args: Prisma.StepCreateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>[];
|
|
};
|
|
delete: {
|
|
args: Prisma.StepDeleteArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
update: {
|
|
args: Prisma.StepUpdateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
deleteMany: {
|
|
args: Prisma.StepDeleteManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateMany: {
|
|
args: Prisma.StepUpdateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateManyAndReturn: {
|
|
args: Prisma.StepUpdateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>[];
|
|
};
|
|
upsert: {
|
|
args: Prisma.StepUpsertArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$StepPayload>;
|
|
};
|
|
aggregate: {
|
|
args: Prisma.StepAggregateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.AggregateStep>;
|
|
};
|
|
groupBy: {
|
|
args: Prisma.StepGroupByArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.StepGroupByOutputType>[];
|
|
};
|
|
count: {
|
|
args: Prisma.StepCountArgs<ExtArgs>;
|
|
result:
|
|
| runtime.Types.Utils.Optional<Prisma.StepCountAggregateOutputType>
|
|
| number;
|
|
};
|
|
};
|
|
};
|
|
Deployment: {
|
|
payload: Prisma.$DeploymentPayload<ExtArgs>;
|
|
fields: Prisma.DeploymentFieldRefs;
|
|
operations: {
|
|
findUnique: {
|
|
args: Prisma.DeploymentFindUniqueArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload> | null;
|
|
};
|
|
findUniqueOrThrow: {
|
|
args: Prisma.DeploymentFindUniqueOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
findFirst: {
|
|
args: Prisma.DeploymentFindFirstArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload> | null;
|
|
};
|
|
findFirstOrThrow: {
|
|
args: Prisma.DeploymentFindFirstOrThrowArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
findMany: {
|
|
args: Prisma.DeploymentFindManyArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>[];
|
|
};
|
|
create: {
|
|
args: Prisma.DeploymentCreateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
createMany: {
|
|
args: Prisma.DeploymentCreateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
createManyAndReturn: {
|
|
args: Prisma.DeploymentCreateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>[];
|
|
};
|
|
delete: {
|
|
args: Prisma.DeploymentDeleteArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
update: {
|
|
args: Prisma.DeploymentUpdateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
deleteMany: {
|
|
args: Prisma.DeploymentDeleteManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateMany: {
|
|
args: Prisma.DeploymentUpdateManyArgs<ExtArgs>;
|
|
result: BatchPayload;
|
|
};
|
|
updateManyAndReturn: {
|
|
args: Prisma.DeploymentUpdateManyAndReturnArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>[];
|
|
};
|
|
upsert: {
|
|
args: Prisma.DeploymentUpsertArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.PayloadToResult<Prisma.$DeploymentPayload>;
|
|
};
|
|
aggregate: {
|
|
args: Prisma.DeploymentAggregateArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.AggregateDeployment>;
|
|
};
|
|
groupBy: {
|
|
args: Prisma.DeploymentGroupByArgs<ExtArgs>;
|
|
result: runtime.Types.Utils.Optional<Prisma.DeploymentGroupByOutputType>[];
|
|
};
|
|
count: {
|
|
args: Prisma.DeploymentCountArgs<ExtArgs>;
|
|
result:
|
|
| runtime.Types.Utils.Optional<Prisma.DeploymentCountAggregateOutputType>
|
|
| number;
|
|
};
|
|
};
|
|
};
|
|
};
|
|
} & {
|
|
other: {
|
|
payload: any;
|
|
operations: {
|
|
$executeRaw: {
|
|
args: [query: TemplateStringsArray | Sql, ...values: any[]];
|
|
result: any;
|
|
};
|
|
$executeRawUnsafe: {
|
|
args: [query: string, ...values: any[]];
|
|
result: any;
|
|
};
|
|
$queryRaw: {
|
|
args: [query: TemplateStringsArray | Sql, ...values: any[]];
|
|
result: any;
|
|
};
|
|
$queryRawUnsafe: {
|
|
args: [query: string, ...values: any[]];
|
|
result: any;
|
|
};
|
|
};
|
|
};
|
|
};
|
|
|
|
/**
|
|
* Enums
|
|
*/
|
|
|
|
export const TransactionIsolationLevel = runtime.makeStrictEnum({
|
|
Serializable: 'Serializable',
|
|
} as const);
|
|
|
|
export type TransactionIsolationLevel =
|
|
(typeof TransactionIsolationLevel)[keyof typeof TransactionIsolationLevel];
|
|
|
|
export const ProjectScalarFieldEnum = {
|
|
id: 'id',
|
|
name: 'name',
|
|
description: 'description',
|
|
repository: 'repository',
|
|
projectDir: 'projectDir',
|
|
envPresets: 'envPresets',
|
|
valid: 'valid',
|
|
createdAt: 'createdAt',
|
|
updatedAt: 'updatedAt',
|
|
createdBy: 'createdBy',
|
|
updatedBy: 'updatedBy',
|
|
} as const;
|
|
|
|
export type ProjectScalarFieldEnum =
|
|
(typeof ProjectScalarFieldEnum)[keyof typeof ProjectScalarFieldEnum];
|
|
|
|
export const UserScalarFieldEnum = {
|
|
id: 'id',
|
|
username: 'username',
|
|
login: 'login',
|
|
email: 'email',
|
|
avatar_url: 'avatar_url',
|
|
active: 'active',
|
|
valid: 'valid',
|
|
createdAt: 'createdAt',
|
|
updatedAt: 'updatedAt',
|
|
createdBy: 'createdBy',
|
|
updatedBy: 'updatedBy',
|
|
} as const;
|
|
|
|
export type UserScalarFieldEnum =
|
|
(typeof UserScalarFieldEnum)[keyof typeof UserScalarFieldEnum];
|
|
|
|
export const PipelineScalarFieldEnum = {
|
|
id: 'id',
|
|
name: 'name',
|
|
description: 'description',
|
|
valid: 'valid',
|
|
createdAt: 'createdAt',
|
|
updatedAt: 'updatedAt',
|
|
createdBy: 'createdBy',
|
|
updatedBy: 'updatedBy',
|
|
projectId: 'projectId',
|
|
} as const;
|
|
|
|
export type PipelineScalarFieldEnum =
|
|
(typeof PipelineScalarFieldEnum)[keyof typeof PipelineScalarFieldEnum];
|
|
|
|
export const StepScalarFieldEnum = {
|
|
id: 'id',
|
|
name: 'name',
|
|
order: 'order',
|
|
script: 'script',
|
|
valid: 'valid',
|
|
createdAt: 'createdAt',
|
|
updatedAt: 'updatedAt',
|
|
createdBy: 'createdBy',
|
|
updatedBy: 'updatedBy',
|
|
pipelineId: 'pipelineId',
|
|
} as const;
|
|
|
|
export type StepScalarFieldEnum =
|
|
(typeof StepScalarFieldEnum)[keyof typeof StepScalarFieldEnum];
|
|
|
|
export const DeploymentScalarFieldEnum = {
|
|
id: 'id',
|
|
branch: 'branch',
|
|
envVars: 'envVars',
|
|
status: 'status',
|
|
commitHash: 'commitHash',
|
|
commitMessage: 'commitMessage',
|
|
buildLog: 'buildLog',
|
|
sparseCheckoutPaths: 'sparseCheckoutPaths',
|
|
startedAt: 'startedAt',
|
|
finishedAt: 'finishedAt',
|
|
valid: 'valid',
|
|
createdAt: 'createdAt',
|
|
updatedAt: 'updatedAt',
|
|
createdBy: 'createdBy',
|
|
updatedBy: 'updatedBy',
|
|
projectId: 'projectId',
|
|
pipelineId: 'pipelineId',
|
|
} as const;
|
|
|
|
export type DeploymentScalarFieldEnum =
|
|
(typeof DeploymentScalarFieldEnum)[keyof typeof DeploymentScalarFieldEnum];
|
|
|
|
export const SortOrder = {
|
|
asc: 'asc',
|
|
desc: 'desc',
|
|
} as const;
|
|
|
|
export type SortOrder = (typeof SortOrder)[keyof typeof SortOrder];
|
|
|
|
export const NullsOrder = {
|
|
first: 'first',
|
|
last: 'last',
|
|
} as const;
|
|
|
|
export type NullsOrder = (typeof NullsOrder)[keyof typeof NullsOrder];
|
|
|
|
/**
|
|
* Field references
|
|
*/
|
|
|
|
/**
|
|
* Reference to a field of type 'Int'
|
|
*/
|
|
export type IntFieldRefInput<$PrismaModel> = FieldRefInputType<
|
|
$PrismaModel,
|
|
'Int'
|
|
>;
|
|
|
|
/**
|
|
* Reference to a field of type 'String'
|
|
*/
|
|
export type StringFieldRefInput<$PrismaModel> = FieldRefInputType<
|
|
$PrismaModel,
|
|
'String'
|
|
>;
|
|
|
|
/**
|
|
* Reference to a field of type 'DateTime'
|
|
*/
|
|
export type DateTimeFieldRefInput<$PrismaModel> = FieldRefInputType<
|
|
$PrismaModel,
|
|
'DateTime'
|
|
>;
|
|
|
|
/**
|
|
* Reference to a field of type 'Boolean'
|
|
*/
|
|
export type BooleanFieldRefInput<$PrismaModel> = FieldRefInputType<
|
|
$PrismaModel,
|
|
'Boolean'
|
|
>;
|
|
|
|
/**
|
|
* Reference to a field of type 'Float'
|
|
*/
|
|
export type FloatFieldRefInput<$PrismaModel> = FieldRefInputType<
|
|
$PrismaModel,
|
|
'Float'
|
|
>;
|
|
|
|
/**
|
|
* Batch Payload for updateMany & deleteMany & createMany
|
|
*/
|
|
export type BatchPayload = {
|
|
count: number;
|
|
};
|
|
|
|
export const defineExtension = runtime.Extensions
|
|
.defineExtension as unknown as runtime.Types.Extensions.ExtendsHook<
|
|
'define',
|
|
TypeMapCb,
|
|
runtime.Types.Extensions.DefaultArgs
|
|
>;
|
|
export type DefaultPrismaClient = PrismaClient;
|
|
export type ErrorFormat = 'pretty' | 'colorless' | 'minimal';
|
|
export type PrismaClientOptions = (
|
|
| {
|
|
/**
|
|
* Instance of a Driver Adapter, e.g., like one provided by `@prisma/adapter-pg`.
|
|
*/
|
|
adapter: runtime.SqlDriverAdapterFactory;
|
|
accelerateUrl?: never;
|
|
}
|
|
| {
|
|
/**
|
|
* Prisma Accelerate URL allowing the client to connect through Accelerate instead of a direct database.
|
|
*/
|
|
accelerateUrl: string;
|
|
adapter?: never;
|
|
}
|
|
) & {
|
|
/**
|
|
* @default "colorless"
|
|
*/
|
|
errorFormat?: ErrorFormat;
|
|
/**
|
|
* @example
|
|
* ```
|
|
* // Shorthand for `emit: 'stdout'`
|
|
* log: ['query', 'info', 'warn', 'error']
|
|
*
|
|
* // Emit as events only
|
|
* log: [
|
|
* { emit: 'event', level: 'query' },
|
|
* { emit: 'event', level: 'info' },
|
|
* { emit: 'event', level: 'warn' }
|
|
* { emit: 'event', level: 'error' }
|
|
* ]
|
|
*
|
|
* / Emit as events and log to stdout
|
|
* og: [
|
|
* { emit: 'stdout', level: 'query' },
|
|
* { emit: 'stdout', level: 'info' },
|
|
* { emit: 'stdout', level: 'warn' }
|
|
* { emit: 'stdout', level: 'error' }
|
|
*
|
|
* ```
|
|
* Read more in our [docs](https://www.prisma.io/docs/reference/tools-and-interfaces/prisma-client/logging#the-log-option).
|
|
*/
|
|
log?: (LogLevel | LogDefinition)[];
|
|
/**
|
|
* The default values for transactionOptions
|
|
* maxWait ?= 2000
|
|
* timeout ?= 5000
|
|
*/
|
|
transactionOptions?: {
|
|
maxWait?: number;
|
|
timeout?: number;
|
|
isolationLevel?: TransactionIsolationLevel;
|
|
};
|
|
/**
|
|
* Global configuration for omitting model fields by default.
|
|
*
|
|
* @example
|
|
* ```
|
|
* const prisma = new PrismaClient({
|
|
* omit: {
|
|
* user: {
|
|
* password: true
|
|
* }
|
|
* }
|
|
* })
|
|
* ```
|
|
*/
|
|
omit?: GlobalOmitConfig;
|
|
};
|
|
export type GlobalOmitConfig = {
|
|
project?: Prisma.ProjectOmit;
|
|
user?: Prisma.UserOmit;
|
|
pipeline?: Prisma.PipelineOmit;
|
|
step?: Prisma.StepOmit;
|
|
deployment?: Prisma.DeploymentOmit;
|
|
};
|
|
|
|
/* Types for Logging */
|
|
export type LogLevel = 'info' | 'query' | 'warn' | 'error';
|
|
export type LogDefinition = {
|
|
level: LogLevel;
|
|
emit: 'stdout' | 'event';
|
|
};
|
|
|
|
export type CheckIsLogLevel<T> = T extends LogLevel ? T : never;
|
|
|
|
export type GetLogType<T> = CheckIsLogLevel<
|
|
T extends LogDefinition ? T['level'] : T
|
|
>;
|
|
|
|
export type GetEvents<T extends any[]> = T extends Array<
|
|
LogLevel | LogDefinition
|
|
>
|
|
? GetLogType<T[number]>
|
|
: never;
|
|
|
|
export type QueryEvent = {
|
|
timestamp: Date;
|
|
query: string;
|
|
params: string;
|
|
duration: number;
|
|
target: string;
|
|
};
|
|
|
|
export type LogEvent = {
|
|
timestamp: Date;
|
|
message: string;
|
|
target: string;
|
|
};
|
|
/* End Types for Logging */
|
|
|
|
export type PrismaAction =
|
|
| 'findUnique'
|
|
| 'findUniqueOrThrow'
|
|
| 'findMany'
|
|
| 'findFirst'
|
|
| 'findFirstOrThrow'
|
|
| 'create'
|
|
| 'createMany'
|
|
| 'createManyAndReturn'
|
|
| 'update'
|
|
| 'updateMany'
|
|
| 'updateManyAndReturn'
|
|
| 'upsert'
|
|
| 'delete'
|
|
| 'deleteMany'
|
|
| 'executeRaw'
|
|
| 'queryRaw'
|
|
| 'aggregate'
|
|
| 'count'
|
|
| 'runCommandRaw'
|
|
| 'findRaw'
|
|
| 'groupBy';
|
|
|
|
/**
|
|
* `PrismaClient` proxy available in interactive transactions.
|
|
*/
|
|
export type TransactionClient = Omit<
|
|
DefaultPrismaClient,
|
|
runtime.ITXClientDenyList
|
|
>;
|