MathJSON Solver
Heads up: Version 2 introduces a breaking change (see CHANGELOG.md) as part of steering back towards greater compatibility with CortexJS MathJSON:
Logis now log base 10 instead of natural log. Stuck on pre-2.0.0 expressions but want the functions added in 2.x? Passlegacy_v1=Truetocreate_solver()(see Migrating from 1.x) instead of hand-migrating every expression. Bugfix releases for the 1.x line also continue on the1.xbranch.
A reliable Python library for numerically evaluating mathematical expressions in MathJSON format. Perfect for applications that need to safely execute user-provided formulas, calculate dynamic equations, or process mathematical data.
What is MathJSON? MathJSON represents mathematical expressions as JSON arrays, like ["Add", 1, 2, 3] for 1+2+3. This format is safe, structured, and easy to generate programmatically.
Table of Contents
- Installation
- Quick Start
- Migrating from 1.x
- Supported Operations
- Error Handling
- Use Cases
- Testing
- Community
- Contributing
- Related Projects
Installation
pip install mathjson-solver
Requirements: Python 3.7+
Optional: numpy (only required for TrapezoidalIntegrate function)
Quick Start
from mathjson_solver import create_solver, MathJSONException
# Define variables and create solver
parameters = {"x": 2, "y": 3}
solver = create_solver(parameters)
# Evaluate expressions
basic_math = solver(["Add", "x", "y", 4])
print(basic_math) # 9 (because 2+3+4=9)
# More complex expressions
result = solver(["Multiply", ["Add", "x", 1], ["Subtract", "y", 1]])
print(result) # 6 (because (2+1) * (3-1) = 6)
# Handle errors gracefully
try:
solver(["Divide", 1, 0])
except MathJSONException as e:
print(f"Math error: {e}")
# Math error: Problem in Divide. ['Divide', 1, 0]. division by zero
Think Functional: MathJSON Solver embraces functional programming principles. Instead of writing loops and modifying variables, you compose expressions that transform data. Functions like Map, Reduce, and Filter let you process arrays elegantly, while immutable operations ensure predictable, side-effect-free calculations. Don't worry if you're new to functional programming — the examples will guide you naturally into this powerful paradigm.
# Functional approach: transform data with expressions
solver(["Map", ["Array", 1, 2, 3, 4], ["Multiply"], 2]) # [2, 4, 6, 8]
solver(["Reduce", ["Array", 1, 2, 3, 4], 0, ["Add", "acc", "item"],
["Variable", "acc"], ["Variable", "item"], ["Variable", "i"]]) # 10
# CortexJS-style forms also work: a lambda via Function, and a 2-argument Reduce
solver(["Map", ["Array", 1, 2, 3, 4], ["Function", ["Multiply", "_", 2]]]) # [2, 4, 6, 8]
solver(["Reduce", ["Array", 1, 2, 3, 4], ["Add"]]) # 10
Migrating from 1.x
Version 2.0.0's only breaking change is Log: pre-2.0.0 it was always natural log, ["Log", x] == math.log(x). From 2.0.0 on it matches CortexJS — ["Log", x] is log base 10, ["Log", x, b] is log base b — and natural log moved to Ln.
If you have existing expressions built for 1.x and don't want to hand-edit every Log node just to pick up functions added in 2.x (Product, the CortexJS forms of If/Map/Filter/Reduce, the new aliases, etc.), pass legacy_v1=True when creating the solver. It rewrites every ["Log", x] to ["Ln", x] before evaluating, so old expressions keep producing the same results without modification:
solver = create_solver(parameters, legacy_v1=True)
solver(["Log", 8]) # 2.0794... (natural log, matching pre-2.0.0 behavior)
You can also run the rewrite yourself and inspect or store the translated expression:
from mathjson_solver import translate_v1_mathjson
translate_v1_mathjson(["Add", ["Log", 8], 1]) # ["Add", ["Ln", 8], 1]
legacy_v1=True only affects Log. Every other 1.x expression already evaluates identically on 2.x without any translation.
Supported Operations
The library supports a comprehensive set of mathematical operations:
- Arithmetic: Add, Sum, Subtract, Multiply, Divide, Negate, Power, Square, Root, Sqrt, Abs, Round, Floor, Ceil
- Trigonometry: Sin, Cos, Tan, Arcsin, Arccos, Arctan, Arctan2, Cot, Sec, Csc (+ inverses), Sinh, Cosh, Tanh, Coth, Sech, Csch (+ inverses), Hypot, Sinc
- Logarithms: Log (base 10, or base b), Log2/Lb, Log10/Lg, Ln (natural log), LogOnePlus, Exp
- Comparison: Equal, StrictEqual, NotEqual, Greater, GreaterEqual, Less, LessEqual
- Logic & Sets: Any, All, Not, And, Or, Xor, Nand, Nor, Implies, Equivalent, In, NotIn, ContainsAnyOf, ContainsAllOf, ContainsNoneOf
- Statistics: Average/Mean, Max, Min (both list and variadic forms), Median, Variance, StandardDeviation, Length/Count
- Functional Programming: Map/StrictMap, Reduce, Filter, Product (all also accept CortexJS calling conventions, including
Functionlambdas) - Arrays: Array/List creation, GenerateRange, Range, AtIndex, At, Slice, Appended, First, Last, Rest, Most, Reverse, Sort, Unique, Join, Zip, IsEmpty, CumulativeSum, CumulativeProduct
- Control Flow: If statements (Python pair form and CortexJS flat form), Switch-Case/Which, Constants definition
- Type Conversion: Int, Float, Str, IsDefined
- Date/Time: Strptime, Strftime, Today, Now, TimeDelta functions (Weeks, Days, Hours, Minutes)
- Number Theory: Chop, Mod, Clamp, GCD, LCM, Factorial, Binomial, IsPrime, Erf, Erfc
- Integration: TrapezoidalIntegrate (requires numpy), Interp, FindIntervalIndex, Variable references
- Advanced: HasMatchingSublist for pattern matching
- Constants: Pi, Degrees, ExponentialE, GoldenRatio
View complete documentation with examples →
Error Handling
MathJSON Solver raises MathJSONException for invalid expressions or mathematical errors:
from mathjson_solver import create_solver, MathJSONException
solver = create_solver({})
# Handle specific math errors
try:
result = solver(["Sqrt", -1]) # Invalid: square root of negative
except MathJSONException as e:
print(f"Cannot evaluate: {e}")
# Handle malformed expressions
try:
result = solver(["UnknownFunction", 1, 2])
except MathJSONException as e:
print(f"Unsupported operation: {e}")
Use Cases
- Dynamic Formulas: Let users create custom calculations in web applications
- Scientific Computing: Evaluate mathematical models with variable parameters
- Business Logic: Process complex pricing rules or scoring algorithms
- Data Processing: Apply mathematical transformations to datasets
- Health Applications: Calculate medical scores, dosages, or risk assessments
Testing
Install development dependencies and run tests:
# Install pytest if not already installed
pip install pytest
# Run tests from project directory
pytest
# Run with coverage
pytest --cov=mathjson_solver
Community
- Questions & Discussion: GitHub Issues
- Bug Reports & Feature Requests: GitHub Issues
- Documentation: Complete Function Reference
Contributing
We welcome contributions! Please feel free to:
- Report bugs or request features via GitHub Issues
- Submit pull requests with improvements
Related Projects
We also created londec — evaluate tree-structured conditions against an ordered history of events. It uses mathjson-solver internally.
License
References
This library implements the MathJSON format as defined by the CortexJS Compute Engine. Since 2.0.0, mathjson-solver has been steering towards greater compatibility with CortexJS's calling conventions and function set — while remaining an independent Python implementation, not a port or dependency of CortexJS.
Scope: mathjson-solver targets compatibility with CortexJS's array-form calling conventions and standard function names — not the full Compute Engine, which is a symbolic CAS.
Made with ❤️ by Longenesis
Download files
Download the file for your platform. If you're not sure which to choose, learn more about installing packages.
Source Distribution
Built Distribution
Filter files by name, interpreter, ABI, and platform.
If you're not sure about the file name format, learn more about wheel file names.
Copy a direct link to the current filters
File details
Details for the file mathjson_solver-2.2.0.tar.gz.
File metadata
- Download URL: mathjson_solver-2.2.0.tar.gz
- Upload date:
- Size: 52.6 kB
- Tags: Source
- Uploaded using Trusted Publishing? No
- Uploaded via:
twine/7.0.0 CPython/3.14.4
File hashes
| Algorithm | Hash digest | |
|---|---|---|
| SHA256 |
76251bd23b950fce13bb982d743a7cba2ccd07032bc73ba8e61664514947934f
|
|
| MD5 |
6081322b1b3aaed51f47088739bfad4e
|
|
| BLAKE2b-256 |
9bfab0475d3c0c3aeb45344d7f281bed2a12dc905c368a9c1c276dca5c7ebf44
|
File details
Details for the file mathjson_solver-2.2.0-py3-none-any.whl.
File metadata
- Download URL: mathjson_solver-2.2.0-py3-none-any.whl
- Upload date:
- Size: 18.3 kB
- Tags: Python 3
- Uploaded using Trusted Publishing? No
- Uploaded via:
twine/7.0.0 CPython/3.14.4
File hashes
| Algorithm | Hash digest | |
|---|---|---|
| SHA256 |
bcb32904a1047e1d9433473416d309181a6bb9837aa2fd9459fc5a5e10864960
|
|
| MD5 |
c66b3242ce905934af53b9e7e4a97377
|
|
| BLAKE2b-256 |
23fdd58b2a82a1cf40882c50baf6abefd605fb8e60d1293112cdc9b8a166db7d
|