Skip to main content

raygeo

PyPI CI

A high-performance 2D/3D geometry library for Python, built in Rust with PyO3.

raygeo provides vector path construction, polygon boolean operations, curve fitting, path transformations, and geometric queries — all backed by a native Rust extension.

Showcase

Concave hull, arc fitting, nesting, directional bites, raster power modulation, smoothing, linearization, HSM peeling, cylindrical transform, conical helix, 3D polyline offset, and 3D fillet polyline

Installation

pip install raygeo

Requires Python 3.10+ and a compatible platform (Linux, Windows, macOS Intel, or macOS Apple Silicon). Pre-compiled wheels are available on PyPI.

Quick Start

Building Paths

The Geometry class is the core abstraction. It stores a vector path as a sequence of move, line, arc, and cubic Bezier commands. All mutating methods return self for chaining:

from raygeo.geo import Geometry

# Create a 10x10 square
g = Geometry()
g.move_to(0, 0)
g.line_to(10, 0)
g.line_to(10, 10)
g.line_to(0, 10)
g.close_path()

print(g.area())    # 100.0
print(g.rect())    # (0.0, 0.0, 10.0, 10.0)
print(g.is_closed())  # True

Builder methods can be chained:

g = Geometry()
g.move_to(0, 0).line_to(10, 0).line_to(10, 10).line_to(0, 10).close_path()

You can also create paths from point lists:

triangle = Geometry.from_points([(0, 0), (10, 0), (5, 8.66)])

Arcs and Bezier Curves

g = Geometry()
g.move_to(0, 0)
g.arc_to(10, 0, i=5, j=0, clockwise=False)  # semicircular arc
g.close_path()

# Bezier curves
g2 = Geometry()
g2.move_to(0, 0)
g2.bezier_to(10, 0, c1x=3, c1y=5, c2x=7, c2y=5)

# Convert arcs to Bezier curves (for non-uniform scaling)
g3 = Geometry()
g3.move_to(0, 0)
g3.arc_to_as_bezier(10, 0, i=5, j=0)
g3.upgrade_to_scalable()

Path Analysis

print(g.distance())       # total path length
print(g.area())           # signed enclosed area
print(g.rect())           # bounding box (x_min, y_min, x_max, y_max)
print(g.is_closed())      # path closure check
print(g.segments())       # split into sub-paths

# Find closest point on path
result = g.find_closest_point(5, 5)  # (segment_index, t, (x, y)) or None

# Point and tangent at parameter t on a segment
point = g.get_point_at(segment_index=0, t=0.5)
tangent = g.get_tangent_at(segment_index=0, t=0.5)

Transformations

All transformation methods mutate the geometry in place and return self, allowing chaining. Use .copy() first if you need to preserve the original:

import numpy as np
from raygeo.geo import Geometry

g = Geometry.from_points([(0, 0), (10, 0), (10, 10), (0, 10)])

# Offset (grow/shrink) — mutates in place
g.grow(1.0)   # offset outward by 1 unit (each side moves by the amount)
print(g.area())  # 144.0 — 12×12

# Use .copy() to preserve the original
original = Geometry.from_points([(0, 0), (10, 0), (10, 10), (0, 10)])
shrunk = original.copy()
shrunk.grow(-1.0)  # offset inward by 1 unit

# Affine transform (4x4 matrix) — mutates in place
matrix = [
    [1, 0, 0, 5],  # translate x by 5
    [0, 1, 0, 3],  # translate y by 3
    [0, 0, 1, 0],
    [0, 0, 0, 1],
]
g.transform(matrix)

# Map geometry into a frame — mutates in place
g.map_to_frame(
    origin=(0, 0),
    p_width=(100, 0),
    p_height=(0, 100),
)

g.flip_x()  # negate all x coordinates
g.flip_y()  # negate all y coordinates

# Chaining is possible since all methods return self
g2 = Geometry.from_points([(0, 0), (10, 0), (10, 10), (0, 10)])
g2.transform(matrix).flip_x().grow(1.0)

Contour Operations

All contour methods mutate the geometry in place and return self:

# Split into separate closed contours (returns list, does not mutate)
contours = g.split_into_contours()

# Split into disconnected components (returns list, does not mutate)
components = g.split_into_components()

# Separate holes from solids (returns tuple, does not mutate)
inner, outer = g.split_inner_and_outer_contours()

# Normalize winding orders — mutates in place
g.normalize_winding_orders()

# Filter to only external contours — mutates in place
g.filter_to_external_contours()

# Remove shared edges between sub-paths — mutates in place
g.remove_inner_edges()

Polygon Operations

The geo.shape.polygon submodule provides polygon-specific operations powered by Clipper2:

from raygeo.geo import Geometry
from raygeo.geo.shape.polygon import (
    get_polygon_area,
    get_polygon_bounds,
    offset_polygon,
    get_polygons_union,
    get_polygons_intersection,
    get_polygons_difference,
    is_point_inside_polygon,
    polygons_intersect,
    get_polygon_convex_hull,
)

square = [(0, 0), (10, 0), (10, 10), (0, 10)]
circle_approx = [(5 + 5 * math.cos(a), 5 + 5 * math.sin(a))
                 for a in [i * math.pi / 20 for i in range(40)]]

get_polygon_area(square)                # 100.0
get_polygon_bounds(square)              # (0.0, 0.0, 10.0, 10.0)
is_point_inside_polygon((5, 5), square) # True

# Boolean operations
union = get_polygons_union([square, circle_approx])
intersection = get_polygons_intersection(square, circle_approx)
difference = get_polygons_difference(square, circle_approx)

# Offset
inflated = offset_polygon(square, 2.0)

# NumPy variants are also available (suffixed with _numpy)
import numpy as np
sq_np = np.array(square)
get_polygon_area(sq_np)  # also works with numpy arrays

Curve Fitting

All fitting methods mutate the geometry in place and return self:

from raygeo.geo import Geometry

# Simplify a path
g.simplify(tolerance=0.1)

# Convert curves to line segments
g.linearize(tolerance=0.01)

# Fit arcs and beziers to linear data
g.fit_arcs(tolerance=0.5)
g.fit_curves(tolerance=0.5, beziers=True, arcs=True)

# Convert geometry to polygons (returns list, does not mutate)
polygons = g.to_polygons(tolerance=0.01)

Self-Intersection Detection

g.has_self_intersections()          # check for self-intersections
g.intersects_with(other_geometry)   # check intersection with another geometry
g.encloses(other_geometry)          # check if this fully encloses another

Serialization

# Serialize to dict (JSON-safe)
data = g.to_dict()

# Deserialize from dict
g2 = Geometry.from_dict(data)

# Pickle support (via __reduce_ex__)
import pickle
g3 = pickle.loads(pickle.dumps(g))

Documentation

Full API reference documentation is generated from the source type stubs. Run make docs to build it locally — this produces Markdown pages in docs/api/ with inline visual examples.

The docs are also published online with the RayForge Developer Docs.

Development

Prerequisites

  • Rust toolchain (latest stable)
  • Python 3.10+
  • maturin (pip install maturin)
  • Node.js (only needed for make lint-python, which runs pyright via npx)

Quick Start

# Create and activate a virtual environment (Unix)
python -m venv .venv
source .venv/bin/activate   # on Windows: .venv\Scripts\activate

# Install build tool and build the extension
pip install maturin pytest
make dev                   # builds Rust extension and installs into venv

# Run tests
make test

# Full check (lint + test)
make check

Available Make Targets

Target Description
make dev Build and install into the active venv
make build Build release wheel to dist/
make test Run pytest
make lint Lint Rust + Python (including pyright)
make format Auto-format Rust + Python
make check Lint + test
make stubs Regenerate .pyi type stubs
make docs Build API docs with inline visual examples
make visual Launch Streamlit visual test playground

Visual Testing

The make visual target launches an interactive Streamlit playground with real-time plots for geometry construction, polygon booleans, curve fitting, image processing, SVG parsing, tab operations, overscan, lead- in/out, merging, rasterization, concave hull, and nesting.

pip install -e ".[visual]"
make visual

See Visual Testing for a full walkthrough of every page and its controls.

CLI Tools

The raygeo command provides subcommands for tracing, inspecting, and profiling adaptive clearing runs.

pip install -e ".[cli]"
raygeo trace /tmp/trace.bin --scenario centre-island
raygeo inspect /tmp/trace.bin

See CLI Tools for full usage documentation.

License

MIT

Download files

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

Source Distribution

raygeo-1.27.1.tar.gz (31.4 MB view details)

Uploaded Source

Built Distributions

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

raygeo-1.27.1-cp311-abi3-win_amd64.whl (3.5 MB view details)

Uploaded CPython 3.11+Windows x86-64

raygeo-1.27.1-cp311-abi3-manylinux_2_35_x86_64.whl (3.8 MB view details)

Uploaded CPython 3.11+manylinux: glibc 2.35+ x86-64

raygeo-1.27.1-cp311-abi3-macosx_11_0_arm64.whl (3.5 MB view details)

Uploaded CPython 3.11+macOS 11.0+ ARM64

raygeo-1.27.1-cp311-abi3-macosx_10_12_x86_64.whl (3.6 MB view details)

Uploaded CPython 3.11+macOS 10.12+ x86-64

File details

Details for the file raygeo-1.27.1.tar.gz.

File metadata

  • Download URL: raygeo-1.27.1.tar.gz
  • Upload date:
  • Size: 31.4 MB
  • Tags: Source
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/7.0.0 CPython/3.13.14

File hashes

Hashes for raygeo-1.27.1.tar.gz
Algorithm Hash digest
SHA256 f16207d6c1aa2f61877ac8d7f93b11d8b2ddc249798636a636f449aaef4a73a2
MD5 a064ec6fc174305566d0a0ab40779bc2
BLAKE2b-256 6d58a81a5c733117a4df1e2f1f6952dbb47989d541e8c18239b1ace038258947

See more details on using hashes here.

Provenance

The following attestation bundles were made for raygeo-1.27.1.tar.gz:

Publisher: release.yml on barebaric/raygeo

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file raygeo-1.27.1-cp311-abi3-win_amd64.whl.

File metadata

  • Download URL: raygeo-1.27.1-cp311-abi3-win_amd64.whl
  • Upload date:
  • Size: 3.5 MB
  • Tags: CPython 3.11+, Windows x86-64
  • Uploaded using Trusted Publishing? Yes
  • Uploaded via: twine/7.0.0 CPython/3.13.14

File hashes

Hashes for raygeo-1.27.1-cp311-abi3-win_amd64.whl
Algorithm Hash digest
SHA256 f9a56c10a3ec441fa9d7628e7e7deb848269ab6ab2f116e32b330c7b114826b1
MD5 cc5b80244ce72c06fb3b53437924804a
BLAKE2b-256 b305049f7ea296f8d02fe8eb6bc3286b816b117d58e41aea463f9300f174c52c

See more details on using hashes here.

Provenance

The following attestation bundles were made for raygeo-1.27.1-cp311-abi3-win_amd64.whl:

Publisher: release.yml on barebaric/raygeo

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file raygeo-1.27.1-cp311-abi3-manylinux_2_35_x86_64.whl.

File metadata

File hashes

Hashes for raygeo-1.27.1-cp311-abi3-manylinux_2_35_x86_64.whl
Algorithm Hash digest
SHA256 c1db7722775db370c1fb4bb759ccf5123b3918d8bd6f7738f1cb85cc2dc7da02
MD5 f40447967ff96698a9e342259bbbfb20
BLAKE2b-256 11437edc8db4de74c55f29a2440ebaa383a10106b6cd256411db4244ad2bc36e

See more details on using hashes here.

Provenance

The following attestation bundles were made for raygeo-1.27.1-cp311-abi3-manylinux_2_35_x86_64.whl:

Publisher: release.yml on barebaric/raygeo

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file raygeo-1.27.1-cp311-abi3-macosx_11_0_arm64.whl.

File metadata

File hashes

Hashes for raygeo-1.27.1-cp311-abi3-macosx_11_0_arm64.whl
Algorithm Hash digest
SHA256 76fb9671309ad65613c1fe717853f124128c4d660d1456d4e4f5b8adc02f4ee9
MD5 0ee71a504f131ff0b20281cad94a7002
BLAKE2b-256 bf7f2e5b0b16541768f26e776fc5058926bc7adcd2b02cf0f689ffc811e81505

See more details on using hashes here.

Provenance

The following attestation bundles were made for raygeo-1.27.1-cp311-abi3-macosx_11_0_arm64.whl:

Publisher: release.yml on barebaric/raygeo

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

File details

Details for the file raygeo-1.27.1-cp311-abi3-macosx_10_12_x86_64.whl.

File metadata

File hashes

Hashes for raygeo-1.27.1-cp311-abi3-macosx_10_12_x86_64.whl
Algorithm Hash digest
SHA256 c7969fba18985594da6240988d5ffcb5c9934252ad7043d4d4c4be2a82036e77
MD5 3cfef78dd58eb73ed7e9fc6bb306d586
BLAKE2b-256 55c6ea365076c30e760df83982cc12cafdcaeaca9ae1fdbfdcdbcd27a6b42083

See more details on using hashes here.

Provenance

The following attestation bundles were made for raygeo-1.27.1-cp311-abi3-macosx_10_12_x86_64.whl:

Publisher: release.yml on barebaric/raygeo

Attestations: Values shown here reflect the state when the release was signed and may no longer be current.

Release history Release notifications | RSS feed

Supported by

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