Skip to main content

Flexible multi-segmented and curved arrows for Python visualizations.

Project description

ArrowETC

Documentation Status PyPI CI

ArrowETC is a Python library for building flexible, multi-segmented arrows with explicit vertex control — perfect for precise, publication-quality diagrams. It was designed as a drop-in replacement for matplotlib’s FancyArrow and FancyArrowPatch, providing far greater control over arrow geometry, corners, and paths.

📚 Documentation: Read the Docs

Motivation

While FancyArrow and FancyArrowPatch in matplotlib offer basic arrow-drawing capabilities, they suffer from limited control: they don’t expose explicit vertex data, they lack support for multi-segment paths, and they provide no access to corner calculations for sharp mitered joints or smooth curves.

ArrowETC was created to overcome these limitations by giving full access to the arrow’s properties, allowing:

  • Multi-segmented arrows with arbitrary bends.
  • Accurate miter or curved joints.
  • Optional smooth Bezier curves through control points.
  • Easy addition of custom arrowheads with precise placement.
  • Metadata about segment lengths and angles for advanced use.

This was essential for building LogicTreeETC, a Python framework for generating logic and decision trees with annotated boxes connected by precise arrows representing information flow (e.g., suggested study paths or process flows).


Features

  • Straight or curved arrows: Draw arrows as straight lines or smooth Bezier curves through path points.
  • Multi-bend support: Create arrows with multiple corners and arbitrary joint angles.
  • Precise arrowheads: Add flared arrowheads with geometry matched to the arrow shaft.
  • Explicit geometry access: Retrieve each polygon vertex for alignment, collision detection, or annotation.
  • Matplotlib-ready: Output vertices directly usable in your matplotlib plots.

Installation

ArrowETC requires Python 3.7+ and the packages numpy, matplotlib, and scipy. Install via pip:

pip install ArrowETC

Examples

Below are practical examples showcasing what ArrowETC can do. These scripts generate images demonstrating straight, multi-segmented, and curved arrows with various configurations:

Basic arrow with head

Draws a straight vertical arrow with an arrowhead at the tip. This demonstrates the simplest use of ArrowETC as a direct replacement for matplotlib’s FancyArrow.

path = [(0, 0), (0, 4)]
arrow = ArrowETC(path, arrow_width=0.5, arrow_head=True)
arrow.save_arrow("resources/basic_arrow_with_head.png")

basic arrow with head

Multi-segment arrow with head

Draws an arrow that bends twice — showcasing ArrowETC’s support for arbitrarily segmented arrows with mitered joints.

path = [(0, 0), (0, 4), (5, 4), (5, -2)]
arrow = ArrowETC(path, arrow_width=0.5, arrow_head=True)
arrow.save_arrow(base_path / "multi_segment_arrow_with_head.png", fc="magenta", lw=1)

multi segment arrow with head

Obtuse angle arrow

Illustrates how ArrowETC handles obtuse bends smoothly with obtuse corners.

path = [(0, 0), (4, 0), (8, 2)]
arrow = ArrowETC(path, arrow_width=0.5, arrow_head=True)
arrow.save_arrow(base_path / "obtuse_arrow_with_head.png", fc="orange", ec="cyan", lw=1.2)

obtuse arrow with head

Acute angle arrow

Shows an arrow with an acute angle, where the shaft sharply turns — highlighting ArrowETC’s ability to produce clean miters even for tight angles.

path = [(0, 0), (4, 0), (1, 4)]
arrow = ArrowETC(path, arrow_width=0.5, arrow_head=True)
arrow.save_arrow(base_path / "acute_arrow_with_head.png")

acute arrow with head

More complex multi-segmented arrow

Shows how the ArrowETC object can handle more complicated paths.

path = [(0, 0), (1, 2), (2, -1), (4, -2), (5, 0), (7, 0)]
arrow = ArrowETC(path, arrow_head=True, arrow_width=0.2)
arrow.save_arrow(base_path / "many_segments_with_head.png", lw=1.2)

more complex multi-segmented arrow

Multi-segmented arrow without arrowhead

Creates a segmented rectangular “pipe” without an arrowhead, useful for process diagrams or connectors where a directional tip is unnecessary.

path = [(0, 0), (0, -10), (10, -10), (10, 0)]
arrow = ArrowETC(path, arrow_width=1, arrow_head=False)
arrow.save_arrow(base_path / "multi_segment_no_head.png")

multi segment no head

Basic Bezier arrow with head

Uses a smooth Bezier curve instead of straight segments.

path = [(0, 0), (4, 0), (8, 2)]
arrow = ArrowETC(path, arrow_width=0.5, arrow_head=True, bezier=True)
arrow.save_arrow(base_path / "basic_bezier_with_head.png", fc="orange", ec="cyan", lw=1.2)

basic bezier with head

Complex Bezier arrows

  • Low bezier_n: bezier_n=400 — demonstrates how too few sample points can distort the arrowhead or tip on sharp, complex curves.
path = [(0, 0), (4, -5), (8, 2), (16, -8)]
arrow = ArrowETC(path, arrow_width=1, arrow_head=True, bezier=True)
arrow.save_arrow(base_path / "crazier_bezier_with_head-low_n.png", lw=1.2)

crazier bezier with head - low n

  • High bezier_n: bezier_n=800 — shows a smooth, high-resolution arrow even along aggressive curves, fixing tip skew.
path = [(0, 0), (4, -5), (8, 2), (14, -8)]
arrow = ArrowETC(path, arrow_width=1, arrow_head=True, bezier=True, bezier_n=800)
arrow.save_arrow(base_path / "crazier_bezier_with_head-high_n.png", lw=1.2)

crazier bezier with head - high n


These examples illustrate how ArrowETC can handle everything from straight connectors to advanced, smooth curved paths — making it an ideal replacement for matplotlib’s limited arrow types, and a powerful tool for your custom diagrams.

For reference, all example scripts are included in the examples/ directory. The generated images are saved in the resources/ directory.


Why these examples matter

They demonstrate ArrowETC’s key advantages:

  • Precise control of arrow geometry, including segment corners.
  • Support for multi-segment and curved paths beyond what FancyArrow/FancyArrowPatch allow.
  • Integration-ready arrow metadata for downstream tasks, e.g., logic trees using LogicTreeETC.

License

This project is licensed under a CC0 License. See LICENSE file for details.

Project details


Download files

Download the file for your platform. If you're not sure which to choose, learn more about installing packages.

Source Distribution

arrowetc-0.0.2.dev1.tar.gz (11.6 kB view details)

Uploaded Source

Built Distribution

If you're not sure about the file name format, learn more about wheel file names.

arrowetc-0.0.2.dev1-py3-none-any.whl (10.8 kB view details)

Uploaded Python 3

File details

Details for the file arrowetc-0.0.2.dev1.tar.gz.

File metadata

  • Download URL: arrowetc-0.0.2.dev1.tar.gz
  • Upload date:
  • Size: 11.6 kB
  • Tags: Source
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/6.1.0 CPython/3.11.2

File hashes

Hashes for arrowetc-0.0.2.dev1.tar.gz
Algorithm Hash digest
SHA256 9413153e6815fb7394464a0b057e8e0f8431651fdb47c8fb417a0319b0804836
MD5 766be9535d36eaa917ef634a6deef32e
BLAKE2b-256 00ec63d2b0e312331025aebf905ce95fb254a04d3f775a617e5463c8eded31c0

See more details on using hashes here.

File details

Details for the file arrowetc-0.0.2.dev1-py3-none-any.whl.

File metadata

  • Download URL: arrowetc-0.0.2.dev1-py3-none-any.whl
  • Upload date:
  • Size: 10.8 kB
  • Tags: Python 3
  • Uploaded using Trusted Publishing? No
  • Uploaded via: twine/6.1.0 CPython/3.11.2

File hashes

Hashes for arrowetc-0.0.2.dev1-py3-none-any.whl
Algorithm Hash digest
SHA256 1badfc1ba5c8b0923db88bd3a2cdc743eadffb747b9e467e6f77825aca1f40d0
MD5 b38e68e11a483db4c16a745d1a4ae9e6
BLAKE2b-256 657c4f52ab39d66dd67586ceee21ff61f4d4f104895a2095cbc884f43273cc27

See more details on using hashes here.

Supported by

AWS Cloud computing and Security Sponsor Datadog Monitoring Depot Continuous Integration Fastly CDN Google Download Analytics Pingdom Monitoring Sentry Error logging StatusPage Status page