Fast, insightful and highly customizable Git history analysis.

Vadim Markovtsev 23865aad23 Fix Travis build 8 anos atrás
cmd d4ad0b076c Survive submodule removal 8 anos atrás
.gitignore cce947b98a Initial commit 8 anos atrás
.travis.yml 23865aad23 Fix Travis build 8 anos atrás
LICENSE cce947b98a Initial commit 8 anos atrás
README.md 6ac86f4c4b Update README.md 8 anos atrás
analyser.go d4ad0b076c Survive submodule removal 8 anos atrás
file.go 0bc941f975 Fix the bug with deleting at 0 time 8 anos atrás
file_test.go 0bc941f975 Fix the bug with deleting at 0 time 8 anos atrás
git-git.png a8b665a65d Add readme swag 8 anos atrás
labours.py 2ab12f7f1f Add the resampling support to labours.py 8 anos atrás
rbtree.go a3ee37f91f Initial files 8 anos atrás

README.md

Build Status

Hercules

This tool calculates the lines burnout stats in a Git repository. Exactly the same what git-of-theseus does actually, but using go-git. Why? source{d} builds it's own data pipeline to process every git repository in the world and the calculation of the annual burnout ratio will be embedded into it. This project is the open source implementation of the specific git blame flavour on top of go-git. It is done incrementally using the custom RB tree tracking algorithm, only the last modification date is recorded.

There are two tools: hercules and labours.py. The first is the program written in Go which collects the burnout stats from a Git repository. The second is the Python script which draws the stack area plot. They are normally used together through a pipe. hercules prints text results. The first line is three numbers: UNIX timestamp which corresponds to the time the repository was created, granularity and sampling. Granularity is the number of days each band in the stack consists of. For example, to get the annual burnout plot, set granularity to 365. Sampling is the frequency with which the burnout is snapshotted. The smaller the value, the more smooth is the plot but the more work is done.

git/git image

git/git burndown (granularity 365, sampling 30, no resampling)

Installation

You are going to need Go and Python 2 or 3.

go get gopkg.in/src-d/hercules.v1/cmd/hercules
pip install pandas seaborn
wget https://github.com/src-d/hercules/raw/master/labours.py

Usage

# Use "memory" go-git backend and display the plot. This is the fastest but the repository data must fit into RAM.
hercules https://github.com/src-d/go-git | python3 labours.py --resample month
# Use "file system" go-git backend and print the raw data.
hercules /path/to/cloned/go-git
# Use "file system" go-git backend, cache the cloned repository to /tmp/repo-cache and display the plot.
hercules https://github.com/git/git /tmp/repo-cache | python3 labours.py --resample month

# Now something fun
# Get the linear history from git rev-list, reverse it
# Pipe to hercules, produce the snapshots for every 30 days grouped by 30 days
# Save the raw data to cache.txt, so that later simply cat cache.txt | python3 labours.py
# Pipe the raw data to labours.py, set text font size to 16pt, use Agg matplotlib backend and save the plot to output.png
git rev-list HEAD | tac | hercules -commits - https://github.com/git/git | tee cache.txt | python3 labours.py --font-size 16 --backend Agg --output git.png

Caveats

  1. Currently, go-git's "file system" backend does not cache anything in memory. Every object retrieval operation decompresses the packfiles, parses them, etc. Effectively, the performance slowdown is 10x. This will be fixed in the future.

License

MIT.