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The Landscape of Malicious Open Source Packages: 2025 Mid‑Year Threat Report
A look at the top trends in how threat actors are weaponizing open source packages to deliver malware and persist across the software supply chain.
code-complexity
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Measure the churn/complexity score. Higher values mean hotspots where refactorings should happen.
Measure the churn/complexity score. Higher scores reveal hotspots where refactorings should happen.
Quoting Michael Feathers (source here):
Often when we refactor, we look at local areas of code. If we take a wider view, using information from our version control systems, we can get a better sense of the effects of our refactoring efforts.
Note: code-complexity
currently measures complexity using either:
$ npx code-complexity <path-to-git-directory or URL> [options]
Usage: code-complexity <target> [options]
Measure the churn/complexity score. Higher values mean hotspots where refactorings should happen.
Options:
-V, --version output the version number
--filter <strings> list of globs (comma separated) to filter
-cs, --complexity-strategy [strategy] choose the complexity strategy to analyze your codebase with (allowed values: sloc, cyclomatic, halstead).
-f, --format [format] format results using table, json or csv
-l, --limit [limit] limit the number of files to output
-i, --since [since] limit analysis to commits more recent in age than date
-u, --until [until] limit analysis to commits older in age than date
-s, --sort [sort] sort results (allowed valued: score, churn, complexity or file)
-d, --directories display values for directories instead of files
-h, --help display help for command
Examples:
$ code-complexity .
$ code-complexity https://github.com/simonrenoult/code-complexity
$ code-complexity foo --limit 3
$ code-complexity ../foo --sort score
$ code-complexity /foo/bar --filter 'src/**,!src/front/**'
$ code-complexity . --limit 10 --sort score
$ code-complexity . --limit 10 --directories
$ code-complexity . --limit 10 --sort score -cs halstead
$ code-complexity . --since=2021-06-01 --limit 100
$ code-complexity . --since=2021-04-01 --until=2021-07-01
$ npx code-complexity https://github.com/simonrenoult/code-complexity --sort=score --limit=3
┌──────────────────────────────┬────────────┬───────┬───────┐
│ file │ complexity │ churn │ score │
├──────────────────────────────┼────────────┼───────┼───────┤
│ src/cli.ts │ 103 │ 8 │ 824 │
├──────────────────────────────┼────────────┼───────┼───────┤
│ test/code-complexity.test.ts │ 107 │ 7 │ 749 │
├──────────────────────────────┼────────────┼───────┼───────┤
│ .idea/workspace.xml │ 123 │ 6 │ 738 │
└──────────────────────────────┴────────────┴───────┴───────┘
A special thanks to a few contributors that helped me make code-complexity
better.
ENOBUFS
(and apologies for stealing your code).FAQs
Measure the churn/complexity score. Higher values mean hotspots where refactorings should happen.
The npm package code-complexity receives a total of 1,368 weekly downloads. As such, code-complexity popularity was classified as popular.
We found that code-complexity demonstrated a not healthy version release cadence and project activity because the last version was released a year ago. It has 1 open source maintainer collaborating on the project.
Did you know?
Socket for GitHub automatically highlights issues in each pull request and monitors the health of all your open source dependencies. Discover the contents of your packages and block harmful activity before you install or update your dependencies.
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