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Inspect Flow

Inspect Flow

Workflow orchestration for Inspect AI that enables you to define, run, and manage evaluations at scale — from configuration through to production.

Why Inspect Flow?

As evaluation workflows grow in complexity—running multiple tasks across different models with varying parameters, then reviewing, validating, and promoting results—managing these experiments becomes challenging. Inspect Flow addresses this by providing:

  1. Declarative Configuration: Define complex evaluations with tasks, models, and parameters in type-safe schemas
  2. Repeatable & Shareable: Encapsulated definitions of tasks, models, configurations, and Python dependencies ensure experiments can be reliably repeated and shared
  3. Powerful Defaults: Define defaults once and reuse them everywhere with automatic inheritance
  4. Parameter Sweeping: Matrix patterns for systematic exploration across tasks, models, and hyperparameters
  5. Post-Evaluation Workflows: Tag, validate, and promote evaluation logs with composable steps

Inspect Flow is designed for researchers and engineers running systematic AI evaluations who need to scale beyond ad-hoc scripts.

Getting Started

Prerequisites

Before using Inspect Flow, you should:

Installation

pip install inspect-flow

Optional: VS Code extension

Optionally install the Inspect AI VS Code Extension which includes features for viewing evaluation log files.

Basic Example

FlowSpec is the main entrypoint for defining evaluation runs. At its core, it takes a list of tasks to run. Here's a simple example that runs two evaluations:

from inspect_flow import FlowSpec, FlowTask

FlowSpec(
    log_dir="logs",
    tasks=[
        FlowTask(
            name="inspect_evals/gpqa_diamond",
            model="openai/gpt-4o",
        ),
        FlowTask(
            name="inspect_evals/mmlu_0_shot",
            model="openai/gpt-4o",
        ),
    ],
)

To run the evaluations, run the following command in your shell:

flow run config.py

By default, Flow runs in-process using your current Python environment, so the task and model dependencies (like the inspect-evals and openai Python packages) need to be installed in it. To run in an isolated, reproducible virtual environment instead—where those dependencies are inferred and installed automatically—use the --venv flag (or set execution_type="venv"). See Execution modes for details.

This will run both tasks and display progress in your terminal.

Progress bar in terminal

Python API

You can run evaluations from Python instead of the command line.

from inspect_flow import FlowSpec, FlowTask
from inspect_flow.api import run

spec = FlowSpec(
    log_dir="logs",
    tasks=[
        FlowTask(
            name="inspect_evals/gpqa_diamond",
            model="openai/gpt-4o",
        ),
        FlowTask(
            name="inspect_evals/mmlu_0_shot",
            model="openai/gpt-4o",
        ),
    ],
)
run(spec=spec)

Matrix Functions

Often you'll want to evaluate multiple tasks across multiple models. Rather than manually defining every combination, use tasks_matrix to generate all task-model pairs:

from inspect_flow import FlowSpec, tasks_matrix

FlowSpec(
    log_dir="logs",
    tasks=tasks_matrix(
        task=[
            "inspect_evals/gpqa_diamond",
            "inspect_evals/mmlu_0_shot",
        ],
        model=[
            "openai/gpt-5",
            "openai/gpt-5-mini",
        ],
    ),
)

To preview the expanded config before running it, you can run the following command in your shell to ensure the generated config is the one that you intend to run.

flow config matrix.py

This command outputs the expanded configuration showing all 4 task-model combinations (2 tasks × 2 models).

log_dir: logs
dependencies:
- inspect-evals
tasks:
- name: inspect_evals/gpqa_diamond
  model:
    name: openai/gpt-5
- name: inspect_evals/gpqa_diamond
  model:
    name: openai/gpt-5-mini
- name: inspect_evals/mmlu_0_shot
  model:
    name: openai/gpt-5
- name: inspect_evals/mmlu_0_shot
  model:
    name: openai/gpt-5-mini

Flow provides additional matrix functions (models_matrix, configs_matrix) for sweeping over model settings, generation configs, and more. See Matrixing for details.

Run Evaluations

Before running evaluations, preview what would run with --dry-run:

flow run matrix.py --dry-run

This performs the full setup process—importing tasks from the registry, applying all defaults, expanding all matrix functions, and checking for existing logs—showing exactly what would run, but stops before actually running the evaluations.

To run the config:

flow run matrix.py

When complete, you'll find a link to the logs at the bottom of the task results summary.

Log path printed in terminal

To view logs interactively, run:

inspect view --log-dir logs

Eval logs rendered by Inspect View

After Running

Once evaluations complete, use steps to operate on the resulting logs. For example, tag logs after reviewing them:

flow step tag logs/ --add reviewed --reason "Manually inspected"

Use flow check to verify the completeness of a spec against a log directory — for example, checking how much of a production directory has been filled:

flow check matrix.py --log-dir s3://bucket/prod/logs

Steps can be composed into full workflows — filtering, tagging, and copying logs between directories. See Steps for custom steps, filters, and an end-to-end example.

Learning More

See the following articles to learn more about using Flow:

  • Spec: Flow type system, config structure and basics.
  • Defaults: Define defaults once and reuse them everywhere with automatic inheritance.
  • Matrixing: Systematic parameter exploration with matrix and with functions.
  • Steps: Post-evaluation workflows — tag, validate, and promote logs with composable steps.
  • Reference: Detailed documentation on the Flow Python API and CLI commands.

Development

To work on development of Inspect Flow, clone the repository and install with the -e flag and [dev, doc] optional dependencies:

git clone https://github.com/meridianlabs-ai/inspect_flow
cd inspect_flow
uv sync
source .venv/bin/activate

Optionally install pre-commit hooks via

make hooks

Run linting, formatting, and tests via

make check
make test

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