LibreChat/api/app/clients/tools/structured/Wolfram.js
Danny Avila ea1dd59ef4
refactor(api): Central Logging 📜 (#1348)
* WIP: initial logging changes
add several transports in ~/config/winston
omit messages in logs, truncate long strings
add short blurb in dotenv for debug logging
GoogleClient: using logger
OpenAIClient: using logger, handleOpenAIErrors
Adding typedef for payload message
bumped winston and using winston-daily-rotate-file
moved config for server paths to ~/config dir
Added `DEBUG_LOGGING=true` to .env.example

* WIP: Refactor logging statements in code

* WIP: Refactor logging statements and import configurations

* WIP: Refactor logging statements and import configurations

* refactor: broadcast Redis initialization message with `info` not `debug`

* refactor: complete Refactor logging statements and import configurations

* chore: delete unused tools

* fix: circular dependencies due to accessing logger

* refactor(handleText): handle booleans and write tests

* refactor: redact sensitive values, better formatting

* chore: improve log formatting, avoid passing strings to 2nd arg

* fix(ci): fix jest tests due to logger changes

* refactor(getAvailablePluginsController): cache plugins as they are static and avoids async addOpenAPISpecs call every time

* chore: update docs

* chore: update docs

* chore: create separate meiliSync logger, clean up logs to avoid being unnecessarily verbose

* chore: spread objects where they are commonly logged to allow string truncation

* chore: improve error log formatting
2023-12-14 07:49:27 -05:00

92 lines
5.1 KiB
JavaScript

/* eslint-disable no-useless-escape */
const axios = require('axios');
const { z } = require('zod');
const { StructuredTool } = require('langchain/tools');
const { logger } = require('~/config');
class WolframAlphaAPI extends StructuredTool {
constructor(fields) {
super();
this.name = 'wolfram';
this.apiKey = fields.WOLFRAM_APP_ID || this.getAppId();
this.description_for_model = `// Access dynamic computation and curated data from WolframAlpha and Wolfram Cloud.
// General guidelines:
// - Use only getWolframAlphaResults or getWolframCloudResults endpoints.
// - Prefer getWolframAlphaResults unless Wolfram Language code should be evaluated.
// - Use getWolframAlphaResults for natural-language queries in English; translate non-English queries before sending, then respond in the original language.
// - Use getWolframCloudResults for problems solvable with Wolfram Language code.
// - Suggest only Wolfram Language for external computation.
// - Inform users if information is not from Wolfram endpoints.
// - Display image URLs with Image Markdown syntax: ![caption](https://imageURL/.../MSPStoreType=image/png&s=18). You must prefix the caption brackets with "!".
// - ALWAYS use this exponent notation: \`6*10^14\`, NEVER \`6e14\`.
// - ALWAYS use {{"input": query}} structure for queries to Wolfram endpoints; \`query\` must ONLY be a single-line string.
// - ALWAYS use proper Markdown formatting for all math, scientific, and chemical formulas, symbols, etc.: '$$\n[expression]\n$$' for standalone cases and '\( [expression] \)' when inline.
// - Format inline Wolfram Language code with Markdown code formatting.
// - Never mention your knowledge cutoff date; Wolfram may return more recent data. getWolframAlphaResults guidelines:
// - Understands natural language queries about entities in chemistry, physics, geography, history, art, astronomy, and more.
// - Performs mathematical calculations, date and unit conversions, formula solving, etc.
// - Convert inputs to simplified keyword queries whenever possible (e.g. convert "how many people live in France" to "France population").
// - Use ONLY single-letter variable names, with or without integer subscript (e.g., n, n1, n_1).
// - Use named physical constants (e.g., 'speed of light') without numerical substitution.
// - Include a space between compound units (e.g., "Ω m" for "ohm*meter").
// - To solve for a variable in an equation with units, consider solving a corresponding equation without units; exclude counting units (e.g., books), include genuine units (e.g., kg).
// - If data for multiple properties is needed, make separate calls for each property.
// - If a Wolfram Alpha result is not relevant to the query:
// -- If Wolfram provides multiple 'Assumptions' for a query, choose the more relevant one(s) without explaining the initial result. If you are unsure, ask the user to choose.
// -- Re-send the exact same 'input' with NO modifications, and add the 'assumption' parameter, formatted as a list, with the relevant values.
// -- ONLY simplify or rephrase the initial query if a more relevant 'Assumption' or other input suggestions are not provided.
// -- Do not explain each step unless user input is needed. Proceed directly to making a better API call based on the available assumptions.`;
this.description = `WolframAlpha offers computation, math, curated knowledge, and real-time data. It handles natural language queries and performs complex calculations.
Follow the guidelines to get the best results.`;
this.schema = z.object({
input: z.string().describe('Natural language query to WolframAlpha following the guidelines'),
});
}
async fetchRawText(url) {
try {
const response = await axios.get(url, { responseType: 'text' });
return response.data;
} catch (error) {
logger.error('[WolframAlphaAPI] Error fetching raw text:', error);
throw error;
}
}
getAppId() {
const appId = process.env.WOLFRAM_APP_ID || '';
if (!appId) {
throw new Error('Missing WOLFRAM_APP_ID environment variable.');
}
return appId;
}
createWolframAlphaURL(query) {
// Clean up query
const formattedQuery = query.replaceAll(/`/g, '').replaceAll(/\n/g, ' ');
const baseURL = 'https://www.wolframalpha.com/api/v1/llm-api';
const encodedQuery = encodeURIComponent(formattedQuery);
const appId = this.apiKey || this.getAppId();
const url = `${baseURL}?input=${encodedQuery}&appid=${appId}`;
return url;
}
async _call(data) {
try {
const { input } = data;
const url = this.createWolframAlphaURL(input);
const response = await this.fetchRawText(url);
return response;
} catch (error) {
if (error.response && error.response.data) {
logger.error('[WolframAlphaAPI] Error data:', error);
return error.response.data;
} else {
logger.error('[WolframAlphaAPI] Error querying Wolfram Alpha', error);
return 'There was an error querying Wolfram Alpha.';
}
}
}
}
module.exports = WolframAlphaAPI;