GSH (Gleam Shell)
Copyright 2026 v4rm4n
Licensed under the Apache License, Version 2.0 (the “License”); you may not use this file except in compliance with the License. You may obtain a copy of the License at here. Unless required by applicable law or agreed to in writing, software distributed under the License is distributed on an “AS IS” BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License.
GSH is an interactive REPL for the Gleam Programming Language written in Gleam and Erlang.
Installation
Add gsh to your project as a dependency:
gleam add gsh
⚠ This was previously
gleam add gsh --dev⚠
Usage
gsh can either be used as a standalone REPL or a live-app bootloader.
Standalone
gleam run -m gsh
Call functions from GSH
Erlang/OTP 28 [erts-16.1.2] [source] [64-bit] [smp:16:16] [ds:16:16:10] [async-threads:1] [jit:ns]
Interactive Gleam (GSH 1.1.1) - press Ctrl+C to exit (type h() ENTER for help)
gsh(1)> import your_app/config
ok
gsh(2)> config.load()
Runtime Error: "error:undef"
gsh(3)> :cc
Compiling your_app
Compiled in 0.25s
Ok (Imports hot-reloaded)
gsh(4)> config.load()
Config("0.1.0", "0.0.0.0", 8000) : Config
gsh(5)>
App loader
gleam run -m gsh -- my_app worker_pool bg_module_1
Built-in Commands
GSH includes several built-in commands to manage your session:
:h- Show the help menu:v- Show the current GSH version:b- List all currently active variable bindings:hs- Show the history of executed commands:cc- Recompile the host Gleam project without leaving the shell:c- Clear the terminal screen (or Ctrl + L)pid()- Create a pid from a string (e.g. pid(“<0.34.0>”)):h <module/function>- Retrieve module/function documentation:q- Exit the shell
Target limitations
Note: GSH is heavily tied to the Erlang VM (BEAM) for state persistence and dynamic evaluation. It does not support the JavaScript target.
Why a REPL?
After using Elixir’s iex, OCaml’s utop or even Rust’s evcxr. I really wanted to build a tool for Gleam that gets me closer to the BEAM. GSH, expanded as Gleam SHell is a materialization of that dream.
REPL use cases
- Function & module debugging with mock data.
- Interaction with actors & the supervision tree.
- Quick scratch-pad for validating logic & trivial constructs.
- Working with the Gleam ecosystem and libraries.
Demo
-
Tab-completion with auto suggestions

-
Input/Output syntax highlighting + Multi-line + Pattern matching

-
Processes & built-ins (pid)

Latest Bugfixes
State issues
- Automatic Stale Binding Pruning (:cc): Fixed compilation failures after host-code hot-reloading where historical variable assignments referenced renamed or removed host functions.
evaluator.gleamnow intercepts compiler failures, isolates broken historical bindings, and purges them from session scope automatically.
// Defined here
gsh(7)> let resp = client.check_ip("8.8.8.8", ctx)
Ok(Response(...)) : Result(Response(String), IpqsError)
// check_ip --> renamed to --> do_check_ip
gsh(20)> client.do_check_ip("8.8.8.8", ctx)
error: Unknown module value
┌─ REPL:26:23
│
26 │ let resp = client.check_ip("8.8.8.8", ctx)
│ ^^^^^^^^ Did you mean `do_check_ip`?
The module `example/integrations/ipqs/client` does not have a `check_ip`
value.
- Lexical Scope Resynchronization: Replaced manual state tracking with dynamic
active_bindingspropagation ingsh.gleam, ensuring session state stays synchronized across hot-code swaps without dropping active shell history.
gsh(8)> client.do_check_ip("8.8.8.8", ctx)
Ok(IpQualityScore(True, "Success", 0, "US", "California", "Mountain View", "Google DNS", False, "America/Los_Angeles", "dns.google", False, False, False, False, False, False, False, "N/A", 37.38999939, -122.06999969)) : Result(IpQualityScore, IpqsError)
[debug] latency: 2119.150ms | bindings: 2 | imports: 3
gsh(9)> :cc
Compiling t4z3r
Compiled in 0.22s
// do_check_ip --> renamed to --> check_ip
Ok (Imports hot-reloaded)
gsh(10)> client.check_ip("8.8.8.8", ctx)
Ok(IpQualityScore(True, "Success", 0, "US", "California", "Mountain View", "Google DNS", False, "America/Los_Angeles", "dns.google", False, False, False, False, False, False, False, "N/A", 37.38999939, -122.06999969))
[debug] latency: 1847.289ms | bindings: 2 | imports: 3
Latency & Type Resolution (Hot/Cold Path)
- Replaced Subprocess Overhead: Gated gleam export package-interface calls behind needs_export (
is_import||is_type||is_function). This eliminated the synchronous ~250ms CLI process on standard expressions, bringing Hot Path evaluation down to ~20ms. - Added Fast Fallback Inference: Implemented
infer_or_get_typein types.gleam to instantly parse primitives (Int,Float,Bool,String), operators, and custom constructors locally without spawning an OS shell.
Compiler Directory & Path Scrubbing
- Replaced File Location (test/ \rightarrow src/): Moved temporary
gsh_eval_X.gleamoutputs tosrc/so the compiler includes them inpackage_interface.json. - Cleaned Up Output Scrubbing: Updated
formatter.gleamto strip./src/path prefixes from compiler error traces (rendering asREPL:line:col), and updated startup sweeps ingsh.gleamto purge leftover orphan files fromsrc/.
Terminal Rendering & Output Alignment
- Eliminated Blank Line Bugs: Updated debug_output formatting logic in
evaluator.gleamso"\n"isn’t concatenated when debug mode is disabled.
Error Formatting & Decoder Fixes
-
Dev Dependency Warning Suppressor: Added
filter_dev_dep_errorstoformatter.gleamto strip out compiler warnings triggered when dynamicsrc/application modules import internal gsh runtime packages. -
Aligned Decoder Error Types: Replaced
Nilmismatch errors inrunner.gleamwithsimplifile.FileErrortypes to ensure compiler type parity across disk reads.
How it works
In-RAM Fast Compilation Pipeline (Sub-20ms Latency)
Rather than spawning heavy OS subprocesses with gleam build or writing .beam files to disk, GSH compiles and executes code directly in memory:
-
Fast AST Emission: Executes gleam compile-package –no-beam to instantly convert Gleam code into raw Erlang (.erl) source, bypassing disk artifact writes.
-
Native In-VM Bytecode Loading: Uses an Erlang FFI bridge (compile:file with [binary] + code:load_binary) to compile .erl files directly into RAM and hot-load the bytecode into the running VM.
-
Result: Evaluation latency drops from ~375ms down to ~18ms (~20x speedup), delivering real-time interactive feedback below human perception thresholds.
Single Persistent Node & Side-Effect Memoization
GSH runs inside a single, long-lived Erlang VM node. To prevent historic variable assignments from re-executing side effects (like spawning processes, printing logs, or hitting a database) during session re-evaluations:
-
Each
letbinding is automatically wrapped in a type-safe Process Dictionary cache. -
Subsequent prompts reuse the cached memory pointer, ensuring side-effecting code executes exactly once.
Stateful Lexical Scope Tracking
Session scope is tracked in an explicit ShellState record across evaluations. GSH dynamically merges, prunes, and re-injects:
-
Active variable bindings and shadowed variables
-
Global module imports and custom type definitions
-
Interactive function declarations and command history
Raw Terminal TUI & I/O Engine
Powered by etch_erlang, GSH toggles terminal raw mode on the fly to support character-by-character key handling, live TAB completion, multiline syntax buffering (...>), and ANSI color formatting without corrupting background process stdout.
Feature set comparison with iex
| Feature | GSH (Gleam Shell) | IEx (Interactive Elixir) |
|---|---|---|
| Live App Bootstrapping | gleam run -m gsh -- app | iex -S mix |
| Syntax | Gleam (Rust-like, strict types) | Elixir (Ruby-like, dynamic) |
| Syntax Highlighting | Yes (ANSI-based) | Yes (Configurable ANSI) |
| Type System | Static (recompiles on the fly) | Dynamic |
| Evaluation Engine | File-backed generation + Hot code reload | Direct Erlang AST evaluation |
| Side-Effect Safety | Yes (Process Dictionary memoization) | Yes (Native to AST loop) |
| VM State Persistence | Yes (Actors, PIDs, ETS stay alive) | Yes |
| Fault Tolerance | Yes (Catches Badarg / VM crashes) | Yes |
| Multiline Input | Yes (Buffer completion) | Yes (Native AST parsing) |
| Built-in Helpers | pid() (easily extensible) | h(), i(), v(), pid(), etc. |
| Autocomplete | Keywords, bound vars, module exports | Deeply context-aware + docstrings |
Elixir-Style Live Documentation (h command)
By combining intelligent package path resolution with a live glexer token stream, the shell locates raw .gleam source files, lexes them on the fly, and extracts both module-level documentation and function signatures. This brings the legendary, tactile developer experience of Elixir’s iex to Gleam, allowing developers to read rich, ANSI-formatted markdown documentation directly in the REPL without requiring modifications to the Gleam compiler.
Acknowledgments
GSH stands on the shoulders of some excellent Gleam libraries:
- etch_erlang for non-blocking raw terminal events.
- contour for beautiful ANSI syntax highlighting.
- shellout for seamless Gleam compiler orchestration.
Contributing
Contributions are massively appreciated! A REPL would be a nice to have tool in the Gleam ecosystem, and there is plenty of room to grow.
License
This project is licensed under the Apache-2.0.