Deterministic day-count, accrued interest, holiday calendar, business-day, and payment schedule calculations with ISDA/ICMA conventions.
Copy the AI prompt to install this server into Claude Code, Cursor, or another agent β or use 1-click editor setup below.
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π‘ Paste the JSON block into your client's configuration file under mcpServers, then restart the application.
Inspect callable tools, capabilities, and parameters exposed to AI agents by Shikamaru.
Provably correct day-count, holiday-calendar, business-day, and payment-schedule calculations. A small, dependency-light TypeScript library and an MCP server, so an AI agent can get the exact date or number instead of guessing.
LLMs are unreliable at date and money math: they pick the wrong day-count convention, forget market holidays, and miscompute accrued interest. shikamaru does it deterministically and proves it against published reference values. Do not let a model guess your interest accrual or your settlement date.
us-federal, nyse, sifma-us, target, uk.Calendars are published rules plus a short pinned table of historical one-off closures, current as of this version. Rules generate correct dates arbitrarily far forward; one-off closures (a mourning day, a proclaimed extra holiday) are added when announced and ship in a patch release. A scheduled CI run re-checks every calendar against the latest QuantLib weekly, so drift is detected, not discovered.
Dates are strict ISO YYYY-MM-DD. Rate is an annual decimal (0.05 = 5%).
From source (local dev):
Or launch the published package directly:
Point any MCP client (Claude Desktop, an IDE, etc.) at that command over stdio.
Claude Code users can also install it as a plugin, which registers the MCP server automatically:
The test suite exercises the server end to end in memory, covering tool listing, read-only annotations, structured output against each output schema, and a call to every tool. For an interactive check, use the official MCP Inspector:
It opens a local UI, connects over stdio, lists the tools, and lets you call them. Sanity check: day_count_fraction with start 2003-11-01, end 2004-05-01, convention ACT/ACT ISDA returns about 0.4977.
Conventions follow the ISDA 2006 definitions; calendars follow their published sources (OPM, NYSE rules, SIFMA recommendations, ECB TARGET rules, gov.uk proclamations). The test suite checks published reference vectors (ISDA worked examples, official holiday lists, the OpenGamma conventions guide), property checks, and differential batteries against QuantLib, the de-facto reference: day-count fractions, full per-calendar holiday lists across decades, business-day adjustment and advancing, schedules compared date by date, and ACT/ACT ICMA fractions including stubs.
To (re)generate the QuantLib batteries (needs Python + pip):
This writes test/vectors/quantlib.json and test/vectors/quantlib-calendar.json (commit both). npm test then checks shikamaru against every QuantLib value. CI regenerates the batteries from the latest QuantLib on every push AND on a weekly schedule (the drift watchdog), so a real-world calendar change surfaces as a red run even when the repo is quiet. The proof is the product.
MIT. Copyright (c) 2026 Jay Ofemi.
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