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import json
import locale
import os
import re
import subprocess
from collections import namedtuple
from dataclasses import dataclass
from pathlib import Path
import requests
@dataclass
class CategoryGroup:
name: str
categories: list
frontend_categories = [
"meta",
"nn",
"linalg",
"cpp",
"python",
"complex",
"vmap",
"autograd",
"build",
"memory_format",
"foreach",
"dataloader",
"sparse",
"nested tensor",
"optimizer",
]
pytorch_2_categories = [
"dynamo",
"inductor",
]
# These will all get mapped to quantization
quantization = CategoryGroup(
name="quantization",
categories=[
"quantization",
"AO frontend",
"AO Pruning",
],
)
# Distributed has a number of release note labels we want to map to one
distributed = CategoryGroup(
name="distributed",
categories=[
"distributed",
"distributed (c10d)",
"distributed (composable)",
"distributed (ddp)",
"distributed (fsdp)",
"distributed (rpc)",
"distributed (sharded)",
],
)
categories = (
[
"Uncategorized",
"lazy",
"hub",
"mobile",
"jit",
"visualization",
"onnx",
"caffe2",
"amd",
"rocm",
"cuda",
"cpu",
"cudnn",
"xla",
"benchmark",
"profiler",
"performance_as_product",
"package",
"dispatcher",
"releng",
"fx",
"code_coverage",
"vulkan",
"skip",
"composability",
# 2.0 release
"mps",
"intel",
"functorch",
"gnn",
"distributions",
"serialization",
]
+ [f"{category}_frontend" for category in frontend_categories]
+ pytorch_2_categories
+ [quantization.name]
+ [distributed.name]
)
topics = [
"bc breaking",
"deprecation",
"new features",
"improvements",
"bug fixes",
"performance",
"docs",
"devs",
"Untopiced",
"not user facing",
"security",
]
Features = namedtuple(
"Features",
["title", "body", "pr_number", "files_changed", "labels", "author", "accepters"],
)
def dict_to_features(dct):
return Features(
title=dct["title"],
body=dct["body"],
pr_number=dct["pr_number"],
files_changed=dct["files_changed"],
labels=dct["labels"],
author=dct["author"],
accepters=tuple(dct["accepters"]),
)
def features_to_dict(features):
return dict(features._asdict())
def run(command):
"""Returns (return-code, stdout, stderr)"""
p = subprocess.Popen(
command, stdout=subprocess.PIPE, stderr=subprocess.PIPE, shell=True
)
output, err = p.communicate()
rc = p.returncode
enc = locale.getpreferredencoding()
output = output.decode(enc)
err = err.decode(enc)
return rc, output.strip(), err.strip()
def commit_body(commit_hash):
cmd = f"git log -n 1 --pretty=format:%b {commit_hash}"
ret, out, err = run(cmd)
return out if ret == 0 else None
def commit_title(commit_hash):
cmd = f"git log -n 1 --pretty=format:%s {commit_hash}"
ret, out, err = run(cmd)
return out if ret == 0 else None
def commit_files_changed(commit_hash):
cmd = f"git diff-tree --no-commit-id --name-only -r {commit_hash}"
ret, out, err = run(cmd)
return out.split("\n") if ret == 0 else None
def parse_pr_number(body, commit_hash, title):
regex = r"Pull Request resolved: https://github.com/pytorch/pytorch/pull/([0-9]+)"
matches = re.findall(regex, body)
if len(matches) == 0:
if "revert" not in title.lower() and "updating submodules" not in title.lower():
print(f"[{commit_hash}: {title}] Could not parse PR number, ignoring PR")
return None
if len(matches) > 1:
print(f"[{commit_hash}: {title}] Got two PR numbers, using the first one")
return matches[0]
return matches[0]
def get_ghstack_token():
pattern = "github_oauth = (.*)"
with open(Path("~/.ghstackrc").expanduser(), "r+") as f:
config = f.read()
matches = re.findall(pattern, config)
if len(matches) == 0:
raise RuntimeError("Can't find a github oauth token")
return matches[0]
def get_token():
env_token = os.environ.get("GITHUB_TOKEN")
if env_token is not None:
print("using GITHUB_TOKEN from environment variable")
return env_token
else:
return get_ghstack_token()
token = get_token()
headers = {"Authorization": f"token {token}"}
def run_query(query):
request = requests.post(
"https://api.github.com/graphql", json={"query": query}, headers=headers
)
if request.status_code == 200:
return request.json()
else:
raise Exception( # noqa: TRY002
f"Query failed to run by returning code of {request.status_code}. {request.json()}"
)
_ERRORS = []
_MAX_ERROR_LEN = 20
def github_data(pr_number):
query = (
"""
{
repository(owner: "pytorch", name: "pytorch") {
pullRequest(number: %s ) {
author {
login
}
reviews(last: 5, states: APPROVED) {
nodes {
author {
login
}
}
}
labels(first: 10) {
edges {
node {
name
}
}
}
}
}
}
""" # noqa: UP031
% pr_number
)
query = run_query(query)
if query.get("errors"):
global _ERRORS
_ERRORS.append(query.get("errors"))
if len(_ERRORS) < _MAX_ERROR_LEN:
return [], "None", ()
else:
raise Exception( # noqa: TRY002
f"Got {_MAX_ERROR_LEN} errors: {_ERRORS}, please check if"
" there is something wrong"
)
edges = query["data"]["repository"]["pullRequest"]["labels"]["edges"]
labels = [edge["node"]["name"] for edge in edges]
author = query["data"]["repository"]["pullRequest"]["author"]["login"]
nodes = query["data"]["repository"]["pullRequest"]["reviews"]["nodes"]
# using set to dedup multiple accepts from same accepter
accepters = {node["author"]["login"] for node in nodes}
accepters = tuple(sorted(accepters))
return labels, author, accepters
def get_features(commit_hash):
title, body, files_changed = (
commit_title(commit_hash),
commit_body(commit_hash),
commit_files_changed(commit_hash),
)
pr_number = parse_pr_number(body, commit_hash, title)
labels = []
author = ""
accepters = ()
if pr_number is not None:
labels, author, accepters = github_data(pr_number)
result = Features(title, body, pr_number, files_changed, labels, author, accepters)
return result
_commit_data_cache = None
def get_commit_data_cache(path="results/data.json"):
global _commit_data_cache
if _commit_data_cache is None:
_commit_data_cache = _CommitDataCache(path)
return _commit_data_cache
class _CommitDataCache:
def __init__(self, path):
self.path = path
self.data = {}
if os.path.exists(path):
self.data = self.read_from_disk()
else:
os.makedirs(Path(path).parent, exist_ok=True)
def get(self, commit):
if commit not in self.data.keys():
# Fetch and cache the data
self.data[commit] = get_features(commit)
self.write_to_disk()
return self.data[commit]
def read_from_disk(self):
with open(self.path) as f:
data = json.load(f)
data = {commit: dict_to_features(dct) for commit, dct in data.items()}
return data
def write_to_disk(self):
data = {commit: features._asdict() for commit, features in self.data.items()}
with open(self.path, "w") as f:
json.dump(data, f)
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