.well-known — independently scanned and version-tracked by SaferSkills.
SaferSkills independently audited .well-known (MCP Server) and scored it 100/100 (green). The audit ran 55 deterministic rules across Security, Supply Chain, Maintenance, Transparency, and Community; it found 0 high-severity and 0 lower-severity findings. The full rule-by-rule trace and per-finding evidence are below. Free, methodology-open.
Findings & checks · 0 flagged
Every scanned point with the score it earned and what moved between them.
First recorded scan — no prior version to compare against.
The primary manifest — the file an agent reads to learn what this artifact does.
LaTeX math as pure Unicode text. For terminals, code comments, emails, and everywhere rich formatting isn't a thing.
<div align="center"> <img src="readme-assets/output.png" width="650" alt="Noether's theorem proof rendered entirely as Unicode text in a terminal -- produced by Hyades from standard LaTeX source" /> <br> <sub>Every equation above is pure text -- you can select it and copy-paste it anywhere. The source is standard LaTeX.</sub> </div>
<br>
Hyades takes standard LaTeX math like this:
$$
f(x) = \overbrace{\sum_{k=0}^{n} \frac{f^{(k)}(a)}{k!}
(x-a)^k}^{\mathit{Taylor polynomial}}
+ \underbrace{R_n(x)}_{\mathit{Remainder}}
$$and renders it as multi-line Unicode text:
𝑇𝑎𝑦𝑙𝑜𝑟 𝑝𝑜𝑙𝑦𝑛𝑜𝑚𝑖𝑎𝑙
╭───────────┴───────────╮
𝑛 (𝑘)
─── 𝑓 (𝑎) 𝑘
𝑓(𝑥) = ╲ ───────── (𝑥 − 𝑎) + 𝑅 (𝑥)
╱⎽⎽ 𝑘! 𝑛
𝑘 = 0 ╰───┬───╯
𝑅𝑒𝑚𝑎𝑖𝑛𝑑𝑒𝑟or plain ASCII if you ask it to:
n (k)
--- f (a) k
f(x) = \ --------- (x - a) + R (x)
/__ k! n
k = 0It's a native CLI binary written in pure C. As such it is extremely fast and doesn't require any additional dependencies. Linux, MacOS, and Windows, and Web (WASM) are all supported out of the box.
Try it in your browser → -- interactive WASM playground with tutorials and a full syntax reference. No installation required.
Fractions, roots, integrals, summations, products, limits, matrices, piecewise functions, aligned equations, Greek letters, auto-scaling delimiters, overbrace/underbrace, accents, primes, binomial coefficients, extensible arrows, equation tags, you name it... Paste your existing LaTeX and it just renders.
<details> <summary><b>Full math feature list</b></summary>
| Category | Commands | |
|---|---|---|
| Fractions | \frac, \dfrac, \tfrac -- infinitely nestable | |
| Roots | \sqrt{x}, \sqrt[n]{x} | |
| Big operators | \sum, \prod, \int, \iint, \iiint, \oint, \oiint with limits | |
| Limits | \lim, \limsup, \liminf, \max, \min, \argmax, \argmin | |
| Matrices | \pmatrix, \bmatrix, \Bmatrix, \vmatrix, \Vmatrix -- \begin{pmatrix} syntax works too | |
| Cases | \cases{...} -- piecewise functions | |
| Aligned | \aligned{...} with \intertext and \tag | |
| Greek | Full lowercase (\alpha–\omega) and uppercase (\Gamma–\Omega) | |
| Delimiters | \left/\right auto-scaling, \middle, invisible `\left.\right\ | , \big–\Bigg` sizing |
| Accents | \hat, \bar, \tilde, \vec, \dot, \ddot, \acute, \grave, \breve, \check | |
| Wide decorations | \overline, \underline, \overbrace, \underbrace, \overrightarrow, \widehat, \widetilde | |
| Annotations | \overset, \underset, \stackrel, \boxed, \tag, \substack | |
| Math fonts | \mathbf, \mathbb (ℕℤℚℝℂ), \mathcal, \mathfrak (𝔄𝔅ℭ), \mathsf (𝖠𝖡𝖢), \mathscr, \boldsymbol (bold Greek 𝛂𝛃, bold ∇ → 𝛁) | |
| Relations | \leq, \geq, \neq, \ll, \gg, \prec, \succ, \approx, \equiv, \sim, \propto, \coloneqq, :=, \not prefix | |
| Set theory | \in, \notin, \subset, \subseteq, \cup, \cap, \setminus, \emptyset | |
| Logic | \forall, \exists, \neg, \land, \lor, \implies, \iff, \therefore, \because | |
| Arrows | \rightarrow, \Rightarrow, \mapsto, \hookrightarrow, \xrightarrow{f}, \xleftarrow{g} | |
| Number theory | \pmod, \bmod, \mid, \binom | |
| Operators | \oplus, \otimes, \odot, \circ, \bullet, \star, \dagger, \ddagger | |
| Functions | \sin, \cos, \log, \ln, \exp, \det, \ker, \gcd, \operatorname{...} | |
| Layout | \phantom, \smash, \mathord, \mathbin, \mathrel | |
| Compat | \displaystyle, \textstyle, \notag accepted as no-ops -- paste LaTeX directly |
</details>
\table with \row/\col, 6 frame styles (single, double, bold, rounded, dotted, none), padding, alignment, column spans\fancylist builds a list using Markdown syntaxhbox/vbox containers with auto/intrinsic/fixed-width children, horizontal and vertical alignment\textbf, \textit, \texttt, \verb|...|\hrule/\vrule with auto-sizing and smart automatic junction intersectionDownload from Releases (macOS, Linux, Windows), then run the install script:
# Linux / macOS
chmod a+x install.sh
./install.sh
# Windows (PowerShell)
.\install.ps1The script will:
$HOME/.local/bin$env:USERPROFILE\bin$HOME/.local/share/hyades/docs$env:USERPROFILE\AppData\Local\hyades<div align="center"> <img src="readme-assets/verify.png" width="450" alt="Successful installation" /> <br> </div>
This adds hyades, cassilda, and hyades-mcp to your PATH and integrates the tree-sitter grammar and LSP server into Helix and/or Neovim if installed.
cmake -B build -DCMAKE_BUILD_TYPE=Release
cmake --build build
# → build/hyades, build/cassilda# Render LaTeX from stdin
echo '$$\sum_{i=1}^n i^2$$' | hyades
# Render a source file
hyades equations.hy
# ASCII-only output
echo '$$\int_0^1 f(x) dx$$' | hyades --ascii
# Run an interactive-mode Hyades program
hyades -c matrix_rain.hy| hyades | Renders .hy source (or stdin) to stdout. Use for quick math, piping, code comments. |
| cassilda | Document processor for .cld files. Renders labeled sections in-place, to your code comments, or to stdout -- think Jupyter notebooks in plain text. |
# Render a labeled section to stdout
cassilda render notebook.cld section_name
# Process all sections in-place
cassilda process notebook.cldAn MCP server lets AI assistants render math expressions on the fly.
Remote -- no install, Cloudflare Worker:
# Claude Code
claude mcp add hyades --transport http https://hyades-mcp.apg.workers.dev/mcp
# Claude Desktop / Cursor / Windsurf -- add to config:
{ "mcpServers": { "hyades": { "url": "https://hyades-mcp.apg.workers.dev/mcp" } } }Local -- offline, native binary (included in releases):
# Claude Code
claude mcp add hyades /path/to/hyades-mcp
# Claude Desktop / Cursor / Windsurf -- add to config:
{ "mcpServers": { "hyades": { "command": "/path/to/hyades-mcp" } } }<div align="center"> <img src="readme-assets/mcp1.png" width="650" alt="Successful installation" /> <br> </div>
<div align="center"> ...<br> <img src="readme-assets/mcp2.png" width="650" alt="Successful installation" /> <br> </div>
<div align="center"> ...<br> <img src="readme-assets/mcp3.png" width="650" alt="Successful installation" /> <br> </div>
<div align="center"> ...<br> <img src="readme-assets/mcp4.png" width="650" alt="Successful installation" /> <br> </div>
The install script automatically configures any installed editors. Manual setup is also possible -- config files are in editor-configs/ within the release.
Helix and Neovim get full integration out of the box:
.hy and .cld files)<div align="center"> <img src="readme-assets/ghostty.png" width="750" alt="Hyades in Helix on MacOS" /> <br> <sub>Hyades in Helix on MacOS (GhosTTY, font: PragmataPro Mono)</sub> </div> <br /> <br /> <div align="center"> <img src="readme-assets/win.png" width="750" alt="Hyades in Helix on Windows" /> <br> <sub>Hyades in Helix on Windows (font: JuliaMono)</sub> </div> <br /> <br />
A VS Code extension is also available. (I'm yet to polish and publish it, should be a matter of days.)
Hyades has an bytecode compiler and a stack-based VM (called Subnivean), which allows you to write pretty much any computational code to support your macros and rendering. Two fun examples are included in the release package. The first is the Matrix code effect for the terminal
<div align="center"> <img src="readme-assets/matrix.png" width="650" /> <br> </div>
And the second one is interactive Game of Life
<div align="center"> <img src="readme-assets/gol.png" width="550" /> <br> </div>
Which is also a direct proof of Hyades' Turing-completeness.
<div align="center"> <img src="readme-assets/turing.png" width="650" /> <br> </div>
I started this project before the era of AI, so about half of it was made without it, and later Claude helped me greatly to implement features that would take me weeks on my own, especially with a small baby to take care of, and to bring this project to completion.
~30 seconds. Free. No account. Every finding cites a rule and a line of evidence.