Skip to main content

pure_eval

Build Status Coverage Status Supports Python versions 3.7+

This is a Python package that lets you safely evaluate certain AST nodes without triggering arbitrary code that may have unwanted side effects.

It can be installed from PyPI:

pip install pure_eval

To demonstrate usage, suppose we have an object defined as follows:

class Rectangle:
    def __init__(self, width, height):
        self.width = width
        self.height = height

    @property
    def area(self):
        print("Calculating area...")
        return self.width * self.height


rect = Rectangle(3, 5)

Given the rect object, we want to evaluate whatever expressions we can in this source code:

source = "(rect.width, rect.height, rect.area)"

This library works with the AST, so let's parse the source code and peek inside:

import ast

tree = ast.parse(source)
the_tuple = tree.body[0].value
for node in the_tuple.elts:
    print(ast.dump(node))

Output:

Attribute(value=Name(id='rect', ctx=Load()), attr='width', ctx=Load())
Attribute(value=Name(id='rect', ctx=Load()), attr='height', ctx=Load())
Attribute(value=Name(id='rect', ctx=Load()), attr='area', ctx=Load())

Now to actually use the library. First construct an Evaluator:

from pure_eval import Evaluator

evaluator = Evaluator({"rect": rect})

The argument to Evaluator should be a mapping from variable names to their values. Or if you have access to the stack frame where rect is defined, you can instead use:

evaluator = Evaluator.from_frame(frame)

Now to evaluate some nodes, using evaluator[node]:

print("rect.width:", evaluator[the_tuple.elts[0]])
print("rect:", evaluator[the_tuple.elts[0].value])

Output:

rect.width: 3
rect: <__main__.Rectangle object at 0x105b0dd30>

OK, but you could have done the same thing with eval. The useful part is that it will refuse to evaluate the property rect.area because that would trigger unknown code. If we try, it'll raise a CannotEval exception.

from pure_eval import CannotEval

try:
    print("rect.area:", evaluator[the_tuple.elts[2]])  # fails
except CannotEval as e:
    print(e)  # prints CannotEval

To find all the expressions that can be evaluated in a tree:

for node, value in evaluator.find_expressions(tree):
    print(ast.dump(node), value)

Output:

Attribute(value=Name(id='rect', ctx=Load()), attr='width', ctx=Load()) 3
Attribute(value=Name(id='rect', ctx=Load()), attr='height', ctx=Load()) 5
Name(id='rect', ctx=Load()) <__main__.Rectangle object at 0x105568d30>
Name(id='rect', ctx=Load()) <__main__.Rectangle object at 0x105568d30>
Name(id='rect', ctx=Load()) <__main__.Rectangle object at 0x105568d30>

Note that this includes rect three times, once for each appearance in the source code. Since all these nodes are equivalent, we can group them together:

from pure_eval import group_expressions

for nodes, values in group_expressions(evaluator.find_expressions(tree)):
    print(len(nodes), "nodes with value:", values)

Output:

1 nodes with value: 3
1 nodes with value: 5
3 nodes with value: <__main__.Rectangle object at 0x10d374d30>

If we want to list all the expressions in a tree, we may want to filter out certain expressions whose values are obvious. For example, suppose we have a function foo:

def foo():
    pass

If we refer to foo by its name as usual, then that's not interesting:

from pure_eval import is_expression_interesting

node = ast.parse('foo').body[0].value
print(ast.dump(node))
print(is_expression_interesting(node, foo))

Output:

Name(id='foo', ctx=Load())
False

But if we refer to it by a different name, then it's interesting:

node = ast.parse('bar').body[0].value
print(ast.dump(node))
print(is_expression_interesting(node, foo))

Output:

Name(id='bar', ctx=Load())
True

In general is_expression_interesting returns False for the following values:

  • Literals (e.g. 123, 'abc', [1, 2, 3], {'a': (), 'b': ([1, 2], [3])})
  • Variables or attributes whose name is equal to the value's __name__, such as foo above or self.foo if it was a method.
  • Builtins (e.g. len) referred to by their usual name.

To make things easier, you can combine finding expressions, grouping them, and filtering out the obvious ones with:

evaluator.interesting_expressions_grouped(root)

To get the source code of an AST node, I recommend asttokens.

Here's a complete example that brings it all together:

from asttokens import ASTTokens
from pure_eval import Evaluator

source = """
x = 1
d = {x: 2}
y = d[x]
"""

names = {}
exec(source, names)
atok = ASTTokens(source, parse=True)
for nodes, value in Evaluator(names).interesting_expressions_grouped(atok.tree):
    print(atok.get_text(nodes[0]), "=", value)

Output:

x = 1
d = {1: 2}
y = 2
d[x] = 2

Release files for pure-eval 0.2.4

For a detailed explanation of source distributions (sdists) and built distributions (wheels), please see the package formats documentation.

Source distribution (sdist)

Source distribution for pure-eval 0.2.4
File Size Uploaded
pure_eval-0.2.4.tar.gz 20.6 kB Details

Built distribution (wheel)

Table of built distributions (wheels) for pure-eval 0.2.4
File Interpreter ABI Platform
pure_eval-0.2.4-py3-none-any.whl Python 3 none any Details

Total release size: 32.5 kB

Release files / pure_eval-0.2.4.tar.gz

Download URL pure_eval-0.2.4.tar.gz
Size 20.6 kB
Tags Source
SHA-256 checksum
How to use checksums
260c2774686e651b79f8b8e7fc9d80b3599ea6a66334b47d5f4abb69fc2c0ea1
BLAKE2b-256 checksum
How to use checksums
da9fabfd2959e9261dd5217ca8551d4de211ca6ab26fe9b72cf44731ff6c4442
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
No
Uploaded via twine/7.0.0 CPython/3.13.0

Release files / pure_eval-0.2.4-py3-none-any.whl

Download URL pure_eval-0.2.4-py3-none-any.whl
Size 11.9 kB
Tags Python 3
SHA-256 checksum
How to use checksums
96cae060a313cfaad51bb761278bfb0e62dc0248d9315a81173752dc546cd37a
BLAKE2b-256 checksum
How to use checksums
6d1883376915176eb058cb86470eb7396388a13350b09a8f233a79303bbcbc5b
Upload date
Uploaded using Trusted Publishing?
What is trusted publishing?
No
Uploaded via twine/7.0.0 CPython/3.13.0

Release history Release notifications | RSS feed

This release

0.2.4 This release

2 release files

0.2.3

2 release files

0.2.2

2 release files

0.2.1

2 release files

0.2.0

1 release file

0.1.1

1 release file

0.1.0

1 release file

0.0.3

1 release file

0.0.2

1 release file

0.0.1

1 release file

Anthropic, PBC Visionary sponsor Bloomberg Visionary sponsor Hudson River Trading Visionary sponsor Meta Visionary sponsor NVIDIA Visionary sponsor Microsoft Sustainability sponsor Depot Continuous Integration AWS Cloud computing and Security Sponsor Datadog Monitoring Fastly CDN Google Download Analytics Sentry Error logging StatusPage Status page