Deterministic Critical Chain Project Management (CCPM) scheduler: validate a project network, build a resource-leveled buffered schedule, verify it, and plot a buffer-aware Gantt chart. Library + CLI, designed for both humans and AI agents.
Project description
ccpm-scheduler
Deterministic Critical Chain Project Management (CCPM) scheduling as a Python library and CLI — built for humans, AI agents, and integration with project management tools.
Give ccpm-scheduler a project network (tasks, dependencies, duration estimates, resource assignments) plus resource availability, and it produces a proper Critical Chain schedule:
- Resource-Leveled: Resolves resource contention so no resource is over-allocated.
- As-Late-As-Possible (ALAP) Scheduling: Eliminates Parkinson's Law by scheduling non-critical work to finish just when needed.
- Protected by Buffers: Insulates project completion with a Project Buffer and protects merge points with Feeding Buffers.
- Buffer-Aware Visualizations: Generates rich Gantt charts (
.png) and interactive standalone web dependency graphs (.html). - Fully Deterministic: The same input always produces byte-identical schedule outputs — ideal for automation, scripting, and CI/CD pipelines.
Quickstart
Installation
Install via pip or run instantly with uv:
# Install via pip
pip install ccpm-scheduler
# Or run directly without installation via uv
uvx ccpm-scheduler --help
Status & Roadmap
All primary development phases outlined in PLAN.md (Phases 1 through 6) are fully complete, including:
- Behaviour-preserving core engine and typed data model.
- Agent-friendly CLI with machine-readable
--jsoncontracts. - Integration with AI agents (Claude skills) and GUI planners (our-planner).
- Selectable buffer-sizing methods (
capCut & Paste,hchain50% chain,rsemroot-squared error).
Future Direction: Fractional Resource Assignments
Currently, ccpm-scheduler enforces whole-resource allocations (1.0 capacity per task). Fractional resource assignments (e.g. allocating 0.5 FTE of a resource to a task) are identified as the primary area for future improvement. Future decisions on fractional leveling algorithms will be guided by feedback from real-world usage and community input.
CLI Usage
Built for humans and AI agents: exit codes form a strict contract (0 = ok, 1 = validation or schedule issue with structured report, 2 = usage error), --json prints machine-readable JSON documents, and outputs are strictly deterministic.
# 1. Validate a project network
ccpm-scheduler validate tasks.csv resources.csv calendar.csv
# 2. Build a resource-leveled, buffered schedule
ccpm-scheduler build tasks.csv resources.csv --calendar calendar.csv \
--out-dir plan --title "Website relaunch" --buffer-method cap
# 3. Verify schedule integrity against project constraints
ccpm-scheduler check plan/schedule.csv tasks.csv resources.csv calendar.csv
# 4. Plot a buffer-aware Gantt chart with resource utilization
ccpm-scheduler plot plan/schedule.csv plan/gantt.png --resources resources.csv
# 5. Generate an interactive web graph visualization
ccpm-scheduler graph plan/schedule.csv plan/project-network.html \
--tasks tasks.csv --title "Website relaunch"
# 6. Inspect machine-readable JSON Schemas
ccpm-scheduler schema network
JSON Input & Pipe Support
Networks can be passed as CSV files or as a single JSON document (via file path or - for stdin):
echo '{"tasks": [...], "resources": [...]}' | ccpm-scheduler build - --json
Library API
Import ccpm-scheduler directly into Python applications:
from ccpm_scheduler import (
load_network,
validate_network,
build_schedule,
check_schedule,
plot_schedule,
)
# Load network from CSV or JSON
network = load_network("tasks.csv", "resources.csv", "calendar.csv")
# Validate network rules (cycle detection, resource assignment, duration checks)
report = validate_network(network)
if report.ok:
# Build schedule using Cut & Paste (cap) buffer sizing
result = build_schedule(network, title="My Project", buffer_method="cap")
# Verify schedule rules
assert check_schedule(result.schedule, network).ok
# Plot Gantt chart
plot_schedule(
result.schedule,
"gantt.png",
resources=network.resources,
calendar=network.calendar,
)
print(result.stats.status_line("My Project"))
File Contracts
Input Format
tasks.csv:id, name, realistic_duration, optimal_duration (optional), predecessor_ids, resource_ids, url (optional)realistic_duration: Estimate including safety margin.optimal_duration: Padding-free duration. If omitted, the classic 50% safety cut is applied automatically.predecessor_ids: Semicolon-separated links (A,A:SS+2,A:FF,A:SF).resource_ids: Semicolon-separated resource IDs assigned to the task.
resources.csv:id, name, capacity, url (optional)(capacity defaults to 1).calendar.csv(optional):resource_id, from, to, capacity: Overrides resource capacity on half-open day intervals[from, to).
Output Format
schedule.csv: Scheduled tasks and buffers with start/finish dates, chain designations (critical,feeding-n), and link attachments (:PB,:FB).summary.md: Project summary documenting critical chain duration, project buffer size, feeding buffers, promised completion date, and buffer calculation method (cap,hchain,rsem).gantt.png: High-resolution Gantt chart showing critical chain, feeding chains, buffers, dependencies, and daily resource utilization.project-network.html: Standalone interactive HTML graph (Vis-network) allowing zooming, panning, node dragging, and resource filtering.
Development & Testing
We welcome contributions! The repository uses uv for fast dependency management and prek for git pre-commit checks.
Development Setup
# Clone the repository
git clone https://github.com/rnwolf/ccpm-scheduler.git
cd ccpm-scheduler
# Install development dependencies in virtualenv
uv sync
# Run the test suite with coverage report
uv run pytest
# Run pre-commit checks (ruff check & ruff format)
prek run --all-files
Dev Dependencies & Tooling
- Test Runner & Coverage:
pytest,pytest-cov(unit, integration, and CLI contract testing with coverage reports). - Property-Based Testing:
hypothesis(generates random DAG project networks to test scheduling invariants). - Linter & Formatter:
ruff(fast linting and code formatting). - Pre-commit Hooks:
prek(verifies ruff rules before git commits).
Feedback, Suggestions & Issues
If you encounter tool errors, engine bugs, or have suggestions for improvements (such as real-world use cases for fractional resource assignments), please open an issue on GitHub:
When reporting bugs, please attach your project input (tasks.csv, resources.csv, or anonymized JSON) and the error report emitted by --json to help us diagnose and resolve the issue quickly.
License
Dual-licensed under either of MIT or Apache License 2.0, at your option.
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