ghidra-manager
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Cross-platform CLI for installing Ghidra, managing compatible plugins, launching GhidraMCP projects, and comparing binaries.
Ghidra Manager
Ghidra Manager is a cross-platform CLI for installing Ghidra and compiling a
curated set of extensions for that exact release. It tracks stable GitHub
releases, requires GitHub-published SHA-256 digests for release assets, builds
plugins from immutable release commits, and retains the active installation
plus one complete rollback pair.
The ghidra-manager Python command is the only supported user-facing
entrypoint on Windows, Linux, and macOS.
For Codex workflows, this repository also includes theghidra-manager skill
and theghidra-decompile skill.
Invoke$ghidra-manager to inspect managed state, choose reviewed plugins, launch and
verify projects, connect the bridge, target exact programs inside a project,
compare binaries, or work on the manager itself. The skill follows the same
safety rules as the CLI: use instances as runtime truth, identify programs
explicitly when more than one is open, and review comparison results before a
write. Invoke $ghidra-decompile for persistent, evidence-driven program
recovery after the target Ghidra project and program are available. Both skills
are maintained in the source repository and are not installed into Codex by the
PyPI package.
Command Summary
The examples below abbreviate paths, process IDs, and versions with angle
brackets. Running ghidra-manager without a subcommand is equivalent toghidra-manager help; installation and updates always require an explicitsync.
| Command | Options | Sample output |
|---|---|---|
ghidra-manager help |
Global: -h, --help |
usage: ghidra-manager ... {help,sync,status,...} |
ghidra-manager --version |
None | ghidra-manager 0.2.1 |
ghidra-manager sync |
--dry-run resolves without changing state |
Active pair: Ghidra <version>; plugins ghidra-lx-loader, mcp. |
ghidra-manager status |
None | Active Ghidra: <version> |
ghidra-manager doctor [PROJECT] |
--program PROGRAM, --json, --base-port PORT |
Doctor result: ready |
ghidra-manager rollback |
None | Rolled back to Ghidra <version>; plugins mcp. |
ghidra-manager projects |
None | Projects known to Ghidra <version>: |
ghidra-manager plugins discover |
--json |
mcp is reported as selected or available |
ghidra-manager plugins list |
--json |
Plugins for Ghidra <version>: |
ghidra-manager plugins install PLUGIN |
mcp or ghidra-lx-loader |
Installed plugin mcp <version> for Ghidra <version>. |
ghidra-manager plugins remove PLUGIN |
mcp or ghidra-lx-loader |
Removed plugin mcp from Ghidra <version>. |
ghidra-manager open PROJECT [PROJECT ...] |
--program PROGRAM for one project, --timeout SECONDS, --base-port PORT |
GhidraMCP instance ready: |
ghidra-manager stop PROJECT_OR_PID |
--timeout SECONDS, --force, --base-port PORT |
Stopped Ghidra PID <pid> for project <project>. |
ghidra-manager restart PROJECT_OR_PID |
--program PROGRAM, --timeout SECONDS, --stop-timeout SECONDS, --force, --base-port PORT |
GhidraMCP instance ready: |
ghidra-manager launch [GHIDRA_ARGS...] |
Raw arguments pass through; no project resolution or readiness check | Launching Ghidra <version> with JDK 21... |
ghidra-manager bridge [BRIDGE_ARGS...] |
Remaining arguments pass through to the bridge | <stdio bridge starts and waits for MCP traffic> |
ghidra-manager compare SOURCE_PROJECT TARGET_PROJECT |
--base-port PORT |
Plan saved: <manager-home>/compare-plans/<plan>.json |
ghidra-manager compare --apply PLAN |
No source or target arguments | Applied <count> operations to <target>. |
ghidra-manager instances |
--json, --base-port PORT |
`READY |
ghidra-manager logs [PROJECT_OR_PID] |
--lines N, --follow |
Log: <manager-home>/launch-logs/<launch>.log |
launch and bridge deliberately pass remaining arguments through rather than
interpreting them. Environment variables can also set the manager home, MCP
base port, launch timeout, and GitHub authentication; those are described in
the detailed sections below.
Install
Install uv and a 64-bit JDK 21. The CLI uses uv
to provision Python 3.13, so a system Python installation is not required.
Install the published CLI in an isolated tool environment:
uv tool install ghidra-manager
ghidra-manager help
Upgrade it independently of managed Ghidra installations and plugins:
uv tool upgrade ghidra-manager
For development from a checkout:
uv sync --locked --group dev
uv run ghidra-manager help
JDK discovery checks JAVA_HOME and PATH on every platform. macOS also uses/usr/libexec/java_home and Homebrew when available.
Install, Update, And Roll Back
Resolve and install the newest stable Ghidra release. A fresh installation has
no plugins; later syncs rebuild the active pair's selected plugins for the new
Ghidra release:
ghidra-manager sync
Preview release selection without changing managed state:
ghidra-manager sync --dry-run
Show active, retained, and newest upstream versions:
ghidra-manager status
Representative output:
Active Ghidra: <ghidra-version>
Active plugin: ghidra-lx-loader <plugin-version> (installed)
Active plugin: mcp <plugin-version> (installed)
Previous pair: Ghidra <previous-version>; plugins mcp
Upstream Ghidra: <ghidra-version>
Check local reverse-engineering readiness without resolving upstream releases:
ghidra-manager doctor
ghidra-manager doctor ripper --program RIPPER.LE
ghidra-manager doctor ripper --program RIPPER.LE --json
doctor verifies the active pair, managed installation and MCP plugin, JDK 21,
recorded project, responding MCP identity and versions, expected open program,
endpoint catalog, and analysis status. Errors produce a nonzero exit code;
warnings remain successful so partial environments can be inspected.
Representative ready output:
OK active-pair: Ghidra <version>; plugins ghidra-lx-loader, mcp
OK project: /projects/ripper.gpr
OK instance: PID <pid> on http://127.0.0.1:8089
OK program: RIPPER.EXE is open
OK analysis: RIPPER.EXE analyzed; 847 functions
Doctor result: ready
Return to the retained previous pair:
ghidra-manager rollback
Close managed Ghidra processes before syncing or rolling back. Rollback
reinstalls the retained pair's complete plugin set before changing active
state, including when both pairs share one Ghidra release.
GH_TOKEN or GITHUB_TOKEN may authenticate GitHub API requests.
Manage Plugins
List the reviewed plugins available from the manager's bundled registry:
ghidra-manager plugins discover
ghidra-manager plugins discover --json
ghidra-manager plugins list
ghidra-manager plugins list --json
The bundled registry issrc/ghidra_manager/plugin_registry.json,
not a remote marketplace. Its initial reviewed catalog contains mcp andghidra-lx-loader. Discovery is read-only and works before Ghidra is installed.
Plugin versions are resolved from stable GitHub releases when a plugin is
installed or updated rather than being pinned in the registry.
discover shows registry membership and whether each plugin is selected in
the active pair:
mcp | GhidraMCP | selected | bethington/ghidra-mcp
ghidra-lx-loader | Ghidra LX Loader | selected | yetmorecode/ghidra-lx-loader
list shows the resolved artifacts for the active Ghidra release:
Plugins for Ghidra <ghidra-version>:
ghidra-lx-loader | <plugin-version> | <release-tag> | <source-commit>
mcp | <plugin-version> | <release-tag> | <source-commit>
Install or update one plugin for the active Ghidra release:
ghidra-manager sync
ghidra-manager plugins install mcp
ghidra-manager plugins install ghidra-lx-loader
ghidra-manager plugins remove ghidra-lx-loader
Plugin installation requires an active Ghidra installation and refuses to
replace extensions while a manager-owned Ghidra process is running. The
manager resolves the latest stable plugin release tag to its immutable commit,
uses the target Ghidra distribution's Gradle wrapper, validates the generated
extension ZIP, then activates the complete selected set transactionally.
Removal is idempotent and creates a rollback pair that retains the removed
artifact until it is no longer referenced.
Install mcp before using bridge, instances, open, launch-multi, orcompare. Install ghidra-lx-loader before importing LE/LX binaries such as
DOS/4GW or OS/2 Linear Executables.
Managed State
Fresh installations use the native user-data directory:
- Windows:
%LOCALAPPDATA%\ghidra-manager - Linux:
${XDG_DATA_HOME:-~/.local/share}/ghidra-manager - macOS:
~/Library/Application Support/ghidra-manager
Set GHIDRA_MANAGER_HOME to override this location.
<manager-home>/
├── ghidra/<version>/
├── plugins/<plugin>/<ghidra-version>/<source-commit>/
├── pairs/<ghidra-and-plugin-manifest>/metadata.json
├── state.json
├── instances.json
├── gradle-cache/
├── launch-logs/
├── compare-plans/
├── python/
└── uv-cache/
state.json records the current and previous pair IDs without requiring
symlinks. Each pair records its exact Ghidra release and sorted plugin manifest.instances.json atomically records processes that reached MCP readiness afteropen or launch-multi, including their project, port, managed Ghidra
version, launcher PID, and retained log. stop and restart only signal
instances whose live MCP identity matches one of these records.
Downloads, builds, and extension installation are validated before an atomic
state replacement. Failed extension replacement restores every affected
plugin directory.
When first run from a checkout containing the former .managed/ layout, the
CLI adopts that directory in place and converts valid current and previous
pair metadata into versioned JSON. Legacy symlinks are not required afterward.
Existing GhidraMCP pairs migrate with mcp selected and retain their legacy
artifact paths until neither current nor previous references them.
Run Ghidra And GhidraMCP
Install the MCP plugin first if it is not already selected:
ghidra-manager plugins install mcp
List recorded projects to resolve the exact project path:
ghidra-manager projects
Representative output:
Projects known to Ghidra <version>:
ripper | ready | last-opened | active MCP port 8089 (PID <pid>) | /projects/ripper.gpr
harvester | ready | recent | inactive | /projects/harvester.gpr
2 recorded projects from <ghidra-settings>/preferences
Open a recorded project by name or .gpr path and wait for its GhidraMCP
endpoint:
ghidra-manager open ripper
ghidra-manager open /path/to/ripper.gpr --program RIPPER.LE
open retains a startup log, rejects an already-active project, and reports
success only after a new endpoint identifies the expected project and optional
program. Use --timeout or --base-port to override discovery defaults.
Representative output:
Opening /projects/ripper.gpr with Ghidra <version> and JDK 21...
Launcher PID <launcher-pid> | log <manager-home>/launch-logs/<launch>.log
Waiting up to 180 seconds for project ripper on ports 8089-8104...
GhidraMCP instance ready:
MCP port 8089 | PID <pid> | project ripper | http://127.0.0.1:8089
Open programs: RIPPER.LE
Pass arguments directly to the active Ghidra distribution:
ghidra-manager launch
ghidra-manager launch /path/to/project.gpr
launch is the raw escape hatch: it passes all remaining arguments directly
to Ghidra and does not wait for an MCP endpoint. It does not resolve
a recorded name such as ripper to its project path, and launch --help is
therefore forwarded to Ghidra rather than handled as CLI help. Useghidra-manager help for the manager command summary.
On the first launch for a new Ghidra settings version:
- Open or create a project and launch CodeBrowser.
- Select File > Configure > Configure All Plugins and enable
GhidraMCP. - Select Tools > GhidraMCP > Start MCP Server.
The plugin listens on 127.0.0.1:8089 by default and may fall back through
port 8104. Verify the launch by listing responding instances; the launcher
banner or exit code alone does not prove that Ghidra stayed running:
ghidra-manager instances
Representative output:
READY | managed | MCP port 8089 | PID <pid> | project ripper | programs RIPPER.LE | log <manager-home>/launch-logs/<launch>.log
projects reads Ghidra's settings registry, while instances reports live
GhidraMCP endpoints together with retained manager ownership records. It labels
untracked endpoints external, reports tracked processes without a responding
endpoint as MCP-UNAVAILABLE, and retains exited records as STALE so their
launch logs remain discoverable. A running Project Window does not becomeREADY until CodeBrowser is open and the plugin server is active. Useinstances --json for the same programs, ownership, health, project path,
Ghidra version, and log metadata as structured data.
Read the latest retained manager launch log, or select one by exact project
name or PID:
ghidra-manager logs
ghidra-manager logs ripper --lines 500
ghidra-manager logs 12345 --follow
Project-name and no-target selection choose the newest matching ownership
record. Log access is restricted to launch-logs/ under the manager home;
missing files and paths that escape that directory are rejected. Stopped and
exited records remain visible as STALE so their logs can still be inspected.
Stop or restart one responding instance by its exact project name or PID:
ghidra-manager stop ripper
ghidra-manager restart ripper --program RIPPER.LE
Both commands verify that the MCP-reported PID belongs to the active managed
Ghidra installation before signaling it. A graceful stop waits 10 seconds by
default. --force permits a kill only after that timeout; it does not bypass
the ownership check. Restart resolves the recorded project before stopping the
process, then uses the same readiness checks and retained startup log asopen.
Open one process per project and wait for new MCP endpoints:
ghidra-manager open first-project second-project
Each argument may be a recorded project name or a .gpr path. Projects and
project names must be distinct, and already-active projects are rejected.
Detached startup logs are retained under launch-logs/. --program is only
valid when opening one project. The former launch-multi command remains as a
compatibility alias, including its no-project --count behavior, but new
workflows should use open.
Register the managed stdio bridge with Codex:
codex mcp add ghidra -- ghidra-manager bridge
The bridge uses uv-managed Python 3.13 and the digest-verified runtime artifact
published with the selected GhidraMCP release:
ghidra-manager bridge --help
GHIDRA_MCP_BASE_PORT changes the discovery base port.GHIDRA_MCP_LAUNCH_TIMEOUT changes the verified open timeout.
Use With Codex
The bundled ghidra-manager skill teaches
Codex the manager's command boundaries, plugin lifecycle, launch checks, and
comparison safeguards. The bundledghidra-decompile skill
coordinates persistent evidence, bounded analysis, verified Ghidra mutations,
and completion audits.
The repository directories are the source of truth. Install or link either
skill into $CODEX_HOME/skills and start a new Codex session to make it
available:
$CODEX_HOME/skills/ghidra-manager -> <checkout>/skills/ghidra-manager
$CODEX_HOME/skills/ghidra-decompile -> <checkout>/skills/ghidra-decompile
Keep checkout-local decompilation campaigns under .ghidra-decompile/; Git
ignores that directory because its program evidence, transformed binaries, and
other project-specific artifacts do not belong to the reusable skill.
Once the skills and bridge are available, a request can name them explicitly:
Use $ghidra-manager to inspect the active Ghidra pair, discover the reviewed
plugins, open the ripper project, and confirm its MCP program before making any
changes.
Use $ghidra-decompile to recover the program model for the verified executable
and keep the campaign under .ghidra-decompile/ripper-v1-05.
The CLI identifies a live project; GhidraMCP identifies programs inside it.
When multiple programs are open, use their full Ghidra project paths on MCP
calls instead of relying on the active tab:
/RIPPER.LE
/v1.05/RIPPER.EXE
--program is optional on open and doctor. Supply it when readiness depends
on one exact open program. Within MCP calls, always supply program when more
than one program is open.
End-to-End Example: Compare RIPPER With v1.05
This example starts with an analyzed /RIPPER.LE in a recorded project namedripper and a patched DOS/4GW executable at/path/to/Ripper/RIPPER/RIPPER.EXE.
1. Install the reviewed runtime
Install Ghidra, inspect the bundled registry, and add both plugins before
launching Ghidra:
ghidra-manager sync
ghidra-manager plugins discover
ghidra-manager plugins install mcp
ghidra-manager plugins install ghidra-lx-loader
ghidra-manager plugins list
Plugin installation compiles each stable release for the active Ghidra version.
Close manager-owned Ghidra processes before installing or updating a plugin.
2. Register the bridge and verify the project
codex mcp add ghidra -- ghidra-manager bridge
ghidra-manager projects
ghidra-manager open ripper --program RIPPER.LE
ghidra-manager instances
ghidra-manager doctor ripper --program RIPPER.LE
At this point the manager has proven which Ghidra, plugin set, JDK, project,
process, port, and program are in use.
3. Import the patched executable through MCP
The manager does not duplicate Ghidra's import API. Ask Codex to use GhidraMCP
after the verified launch:
Use $ghidra-manager. In the ripper project, create the virtual folder /v1.05
and import /path/to/Ripper/RIPPER/RIPPER.EXE there with the LX loader. Keep
/RIPPER.LE unchanged. Run analysis, save the new program, and verify its format,
project path, and function count through MCP.
The important verification is the loader result, not just a successful import:
name: RIPPER.EXE
project path: /v1.05/RIPPER.EXE
executable format: Linear Executable (LE-Style DOS)
language: x86:LE:32:default
analysis: complete
4. Compare and synchronize conservatively
Both binaries can share one MCP instance while remaining unambiguous:
/RIPPER.LE original documentation source
/v1.05/RIPPER.EXE patched v1.05 target
For programs in one project, ask Codex to query GhidraMCP with those full paths.
Transfer function documentation only for unique exact normalized-code matches,
preserve target conflicts, and review changed functions separately. Portable
datatype graphs such as structures, enums, arrays, pointers, and function
signatures can be copied source-to-target after equivalence checks; do not copy
address-derived switchD_* namespaces between rebuilt binaries.
The RIPPER run that informed this tutorial produced:
Original /RIPPER.LE: 1,682 functions, 561 data types
Target /v1.05/RIPPER.EXE: 847 functions, 567 data types
Unique exact matches: 675 functions
Target documentation: 679/847 functions (80.2%)
Copied source data types: 561/561 equivalent
Those counts are specific to this sample. The reusable value is the guarded
workflow: reproducible plugins, verified runtime identity, explicit program
paths, exact-match transfer, conflict preservation, and post-save health checks.
Finish with:
ghidra-manager doctor ripper --program RIPPER.EXE
ghidra-manager instances
Compare Binaries Across Instances
Treat the first responding project as the documentation source and the second
as the target:
ghidra-manager compare source-project target-project
Comparison is read-only. It summarizes inventories first, then matches
functions only when normalized opcode hash and instruction count uniquely
identify one function in each program. It reports missing function metadata,
structures, and enumerations without overwriting conflicting target state.
Each comparison writes a private versioned plan under compare-plans/ and
retains the newest ten. Apply a reviewed plan explicitly:
ghidra-manager compare --apply \
/path/to/compare-plans/<timestamp>-source-to-target.json
Apply rechecks target project, PID, function hashes, documentation, and type
state. It stops on the first rejected operation and deliberately leaves changes
unsaved in Ghidra for review or undo.
compare requires two distinct responding project instances. For two programs
inside one project, use the full-path MCP workflow in the RIPPER example instead
of trying to launch the same project twice.
Package Boundaries
manager.py coordinates release state, installation, curated plugins,
rollback, readiness checks, and the retained compare workflow.runtime.py owns project resolution, verified and raw launch behavior,
manager-owned instance records, stop/restart, instance inspection, logs, and
the MCP bridge. The CLI continues to use Manager as its facade, so this
separation does not create a second user-facing entrypoint.
Validation
uv sync --locked --group dev
uv run pytest
uv run ruff check .
uv run mypy
uv build
uv run ghidra-manager sync --dry-run
git diff --check
Pull-request CI runs on Ubuntu x64, Windows x64, macOS ARM64, and macOS x64.
The manually triggered real-integration workflow performs a real sync,
idempotent resync, status check, and bridge smoke test on the same matrix.
Troubleshooting
- JDK 21 not found: set
JAVA_HOMEor put Java 21 onPATH. - GitHub rate limit: set
GH_TOKENorGITHUB_TOKEN. - MCP connection refused: open CodeBrowser, enable GhidraMCP, and start its
server from Tools > GhidraMCP. - MCP plugin is not installed: close managed Ghidra processes, run
ghidra-manager plugins install mcp, then relaunch Ghidra. - Plugin build failed: inspect the reported Gradle output and keep using the
unchanged active pair; the failed build is never activated. - Invalid project: pass the
.gprpath reported by theprojectscommand,
not only its display name. - Open timeout: finish opening CodeBrowser, enable GhidraMCP, and inspect the
retained log path reported byopen. - Doctor not ready: address each
ERRORcheck, then rerun the same project
and program selection before starting a write workflow. - Multi-project open timeout: finish opening CodeBrowser in each project,
then runghidra-manager instances. - Update refused: close all processes running from the managed Ghidra
component directory. - Compare target changed: generate a fresh plan instead of applying stale
operations. - No project registry: launch Ghidra once so it creates platform settings
and records a project.
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