mirror of
https://github.com/bitburner-official/bitburner-src.git
synced 2024-11-29 19:13:49 +01:00
202 lines
4.9 KiB
TypeScript
202 lines
4.9 KiB
TypeScript
import { codingContractTypesMetadata, DescriptionFunc, GeneratorFunc, SolverFunc } from "./data/codingcontracttypes";
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import { IMap } from "./types";
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import { Generic_fromJSON, Generic_toJSON, IReviverValue, Reviver } from "./utils/JSONReviver";
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import { CodingContractEvent } from "./ui/React/CodingContractModal";
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/* tslint:disable:no-magic-numbers completed-docs max-classes-per-file no-console */
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/* Represents different types of problems that a Coding Contract can have */
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class CodingContractType {
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/**
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* Function that generates a description of the problem
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*/
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desc: DescriptionFunc;
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/**
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* Number that generally represents the problem's difficulty. Bigger numbers = harder
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*/
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difficulty: number;
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/**
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* A function that randomly generates a valid 'data' for the problem
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*/
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generate: GeneratorFunc;
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/**
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* Name of the type of problem
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*/
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name: string;
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/**
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* The maximum number of tries the player gets on this kind of problem before it self-destructs
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*/
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numTries: number;
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/**
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* Stores a function that checks if the provided answer is correct
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*/
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solver: SolverFunc;
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constructor(
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name: string,
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desc: DescriptionFunc,
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gen: GeneratorFunc,
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solver: SolverFunc,
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diff: number,
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numTries: number,
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) {
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this.name = name;
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this.desc = desc;
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this.generate = gen;
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this.solver = solver;
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this.difficulty = diff;
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this.numTries = numTries;
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}
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}
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/* Contract Types */
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// tslint:disable-next-line
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export const CodingContractTypes: IMap<CodingContractType> = {};
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for (const md of codingContractTypesMetadata) {
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// tslint:disable-next-line
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CodingContractTypes[md.name] = new CodingContractType(
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md.name,
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md.desc,
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md.gen,
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md.solver,
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md.difficulty,
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md.numTries,
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);
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}
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/**
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* Enum representing the different types of rewards a Coding Contract can give
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*/
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export enum CodingContractRewardType {
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FactionReputation,
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FactionReputationAll,
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CompanyReputation,
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Money, // This must always be the last reward type
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}
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/**
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* Enum representing the result when trying to solve the Contract
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*/
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export enum CodingContractResult {
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Success,
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Failure,
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Cancelled,
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}
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/**
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* A class that represents the type of reward a contract gives
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*/
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export interface ICodingContractReward {
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/* Name of Company/Faction name for reward, if applicable */
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name?: string;
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type: CodingContractRewardType;
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}
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/**
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* A Coding Contract is a file that poses a programming-related problem to the Player.
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* The player receives a reward if the problem is solved correctly
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*/
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export class CodingContract {
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/* Relevant data for the contract's problem */
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data: unknown;
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/* Contract's filename */
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fn: string;
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/* Describes the reward given if this Contract is solved. The reward is actually
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processed outside of this file */
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reward: ICodingContractReward | null;
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/* Number of times the Contract has been attempted */
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tries = 0;
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/* String representing the contract's type. Must match type in ContractTypes */
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type: string;
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constructor(fn = "", type = "Find Largest Prime Factor", reward: ICodingContractReward | null = null) {
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this.fn = fn;
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if (!this.fn.endsWith(".cct")) {
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this.fn += ".cct";
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}
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// tslint:disable-next-line
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if (CodingContractTypes[type] == null) {
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throw new Error(`Error: invalid contract type: ${type} please contact developer`);
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}
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this.type = type;
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this.data = CodingContractTypes[type].generate();
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this.reward = reward;
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}
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getData(): unknown {
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return this.data;
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}
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getDescription(): string {
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return CodingContractTypes[this.type].desc(this.data);
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}
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getDifficulty(): number {
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return CodingContractTypes[this.type].difficulty;
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}
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getMaxNumTries(): number {
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return CodingContractTypes[this.type].numTries;
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}
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getType(): string {
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return CodingContractTypes[this.type].name;
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}
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isSolution(solution: string): boolean {
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return CodingContractTypes[this.type].solver(this.data, solution);
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}
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/**
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* Creates a popup to prompt the player to solve the problem
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*/
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async prompt(): Promise<CodingContractResult> {
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return new Promise<CodingContractResult>((resolve) => {
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const props = {
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c: this,
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onClose: () => {
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resolve(CodingContractResult.Cancelled);
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},
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onAttempt: (val: string) => {
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if (this.isSolution(val)) {
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resolve(CodingContractResult.Success);
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} else {
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resolve(CodingContractResult.Failure);
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}
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},
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};
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CodingContractEvent.emit(props);
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});
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}
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/**
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* Serialize the current file to a JSON save state.
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*/
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toJSON(): IReviverValue {
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return Generic_toJSON("CodingContract", this);
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}
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/**
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* Initiatizes a CodingContract from a JSON save state.
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*/
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static fromJSON(value: IReviverValue): CodingContract {
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return Generic_fromJSON(CodingContract, value.data);
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}
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}
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Reviver.constructors.CodingContract = CodingContract;
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