| name | md-analysis-planner |
| description | Plan molecular dynamics post-processing for materials simulations, including RDF, MSD and diffusion, VACF/VDOS, coordination numbers, bond-angle distributions, stress-strain curves, equilibration detection, PBC unwrapping, and trajectory format choices. Use before writing MD analysis scripts or trusting trajectory-derived results.
|
| allowed-tools | Read, Bash, Write, Grep, Glob |
| metadata | {"author":"HeshamFS","version":"1.2.2","security_tier":"high","security_reviewed":true,"tested_with":["claude-code"],"last_evaluated":"2026-06-23","eval_cases":3,"last_reviewed":"2026-06-24","standards":["Yeh & Hummer (2004), 1/L finite-size diffusion correction (xi ~= 2.837, cubic box)","Einstein relation for self-diffusion, D = lim MSD/(2*d*t)","Allen & Tildesley, Computer Simulation of Liquids (RDF, coordination, VACF/VDOS, block averaging)","Flyvbjerg & Petersen (1989), block-averaging error estimation"]} |
MD Analysis Planner
Goal
Choose the right MD trajectory analyses and prerequisites before writing post-processing code.
Requirements
- Python 3.10+
- No external dependencies
- Works on Linux, macOS, and Windows
Inputs to Gather
| Input | Description | Example |
|---|
| System | Material or molecular system | oxide glass, liquid water |
| Goals | Analysis goals | rdf,diffusion,coordination |
| Trajectory format | Dump, DCD, XYZ, H5MD, etc. | LAMMPS dump |
| Velocities | Whether velocities are stored | true |
| Stress | Whether stress/virial is stored | true |
| Unwrap needed | Whether atoms cross PBC | true |
| Timestep | fs per saved frame | 10 |
Decision Guidance
- Use RDF and coordination for local structure.
- Use MSD for diffusion, but unwrap trajectories and verify diffusive regime.
- Use VACF/VDOS only when velocities or reliable finite-difference velocities exist.
- Use stress-strain only if stress/virial and deformation history are available.
- Always perform equilibration checks before fitting transport or thermodynamic properties.
Script Outputs
scripts/md_analysis_planner.py emits these fields (JSON under results):
| Field | Description |
|---|
analysis_plan | One entry per goal: goal, method, and status |
required_data | Sorted, de-duplicated data needed across all goals |
equilibration_checks | Standard pre-fit equilibration checklist |
pbc_handling | unwrap_needed, minimum_action, format_note |
warnings | Safety-critical caveats and blockers |
Status values
status is one of, from most to least severe: blocked > needs time axis >
needs review > ready. A more-severe status is never demoted by a less-severe
one. For example, a VACF/VDOS goal with no stored velocities reports blocked
even when the timestep is also missing (both warnings are still emitted).
Default (non-JSON) output
Without --json the script prints the plan lines, a Required data: list, a
one-line PBC: note, and a Warnings: section (also mirrored to stderr) so the
safety-critical caveats are visible even when stdout is piped.
Workflow
python3 skills/simulation-workflow/md-analysis-planner/scripts/md_analysis_planner.py \
--system "oxide glass" \
--goals rdf,coordination,bond-angle \
--trajectory-format dump \
--unwrap-needed \
--timestep-fs 10 \
--json
Error Handling
If velocities, stress, or timestep information is missing, downgrade dependent
analyses and report warnings. The script exits with code 2 and a message on
stderr for invalid input (empty system, no goals, non-positive or non-finite
timestep, or inputs exceeding the size caps below).
Limitations
This skill plans analysis and prerequisites; it does not parse large trajectories directly.
Verification checklist
Do not trust trajectory-derived results until each applicable item below is
recorded against the planner's own output:
Common pitfalls & rationalizations
| Tempting shortcut | Why it's wrong / what to do |
|---|
| "MSD vs time looks straight, so it's diffusive — just fit a line." | A straight-looking MSD can still include ballistic/sub-diffusive transients. Confirm the log-log slope is ~1 over the fit window first, then fit D = lim MSD/(2dt). |
| "D from the simulation is the diffusion coefficient." | PBC self-diffusion is system-size dependent. Apply the Yeh-Hummer 1/L correction with the actual box length L and viscosity eta; report D_0, not D_PBC. |
| "Positions are in the dump, so MSD is fine." | Wrapped coordinates make atoms jump across the box and corrupt displacements. When unwrap_needed is true, unwrap using cell + image flags before any displacement analysis. |
| "No velocities stored, but I can get VACF/VDOS from positions." | The planner marks VACF/VDOS blocked without velocities for a reason. A finite-difference velocity estimate must be explicitly justified (frame spacing, aliasing); otherwise the result is unreliable. |
| "The run finished, so I can fit transport properties on the whole trajectory." | Run completion is not equilibration. Discard the startup transient and verify temperature/pressure plateaus (the equilibration_checks) before fitting. |
| "One window gave a clean number, no need for error bars." | A single window hides correlation-driven variance. Use block averaging or independent trajectories so every transport/thermodynamic value carries an uncertainty. |
Security
Input Validation
Inputs are scalar CLI values and booleans only. plan_md_analysis validates and
bounds every field before use; any violation raises ValueError, which main
catches to print a message on stderr and exit with code 2:
system must be non-empty (after stripping) and at most 256 characters.
- At most 64 goals are allowed; each goal at most 256 characters.
trajectory_format at most 256 characters.
timestep_fs, if given, must be a positive, finite number (math.isfinite
and > 0).
Goals are not allowlisted: an unrecognized goal is not rejected but is reported
with status needs review and an "unknown goal" warning. The --has-velocities,
--has-stress, and --unwrap-needed flags are plain booleans and need no
validation.
File Access
The script reads and writes no files; all I/O is stdin/args -> stdout (plain
text or JSON), with warnings additionally mirrored to stderr. It takes no path
arguments and opens no trajectory or output files, so there is no filesystem
sandboxing concern. There are no per-file size limits because no files are read;
input size is instead capped by the field/goal limits above.
Tool Restrictions
Frontmatter allowed-tools is Read, Bash, Write, Grep, Glob:
Bash is used only to run the bundled scripts/md_analysis_planner.py.
Read, Write, Grep, and Glob are used only to inspect, edit, and search
this skill's own files (the script, references, and SKILL.md) when authoring
analysis plans; they are not used to touch trajectory data.
Safety Measures
- No use of
eval, exec, os.system, or dynamic imports.
- The script spawns no subprocesses and executes no external analysis programs;
it only parses arguments with
argparse and computes a plan in-process.
- Output is structured JSON produced via
json.dumps (or deterministic plain
text), never interpolated shell.
- Denial-of-service caps (
MAX_GOALS = 64, MAX_SYSTEM_LEN = 256,
MAX_FIELD_LEN = 256) bound the work so a planning helper never materializes
pathological input.
References
- See
references/md_analysis_checks.md for analysis prerequisites and failure modes.
Version History
- 1.2.0: Add deterministic
script_checks to all three eval cases that pin the
exact planner output (statuses, sorted required_data, PBC note, and the
specific diffusive-regime / Yeh-Hummer / blocked-not-demoted warnings) so the
evals discriminate the skill from a from-memory baseline.
- 1.1.0: Fix status demotion (blocked never downgraded to needs time axis),
surface warnings/required-data/PBC in non-JSON mode, add diffusive-regime and
Yeh-Hummer finite-size guidance, and enforce documented input caps.
- 1.0.0: Initial MD analysis planning skill.