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tests: conditionalize tests based on presence of revlogs for files...
tests: conditionalize tests based on presence of revlogs for files ~85 tests don't like our non-revlog file store for various reasons. This commit introduces hghave functionality for declaring and querying repository features. By default, we assume repositories have revlog-based file storage. But if the HGREPOFEATURES environment variable is set, we can override the default set of repository features. If you run the test harness with our simplestorerepo extension and an environment variable set to the proper value, you can override the hghave defaults to agree with simplestorerepo's version of reality. Various tests have been modified so behavior dependent on revlog-based file storage is marked as such. This fixes a handful of test failures with our custom file storage extension. But dozens remain. The point of this commit is to demonstrate how tests will need to be modified to account for custom storage implementations. TBH, I'm not convinced hghave is the proper layer for repository feature detection. I /think/ we'll eventually want something in run-tests.py itself. But that would require inventing a new primitive in the test harness. This is all very alpha at the moment. So I think hghave is an acceptable place to hang this feature detection. I think the right time to be thinking about integrating this into run-tests.py is *after* we have a stable alternate storage implementation in core. For now, let's try to make progress towards the idea of an alternate storage backend. Differential Revision: https://phab.mercurial-scm.org/D3030

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store.py
155 lines | 5.3 KiB | text/x-python | PythonLexer
# This software may be used and distributed according to the terms of the
# GNU General Public License version 2 or any later version.
# based on bundleheads extension by Gregory Szorc <gps@mozilla.com>
from __future__ import absolute_import
import abc
import hashlib
import os
import subprocess
import tempfile
NamedTemporaryFile = tempfile.NamedTemporaryFile
class BundleWriteException(Exception):
pass
class BundleReadException(Exception):
pass
class abstractbundlestore(object):
"""Defines the interface for bundle stores.
A bundle store is an entity that stores raw bundle data. It is a simple
key-value store. However, the keys are chosen by the store. The keys can
be any Python object understood by the corresponding bundle index (see
``abstractbundleindex`` below).
"""
__metaclass__ = abc.ABCMeta
@abc.abstractmethod
def write(self, data):
"""Write bundle data to the store.
This function receives the raw data to be written as a str.
Throws BundleWriteException
The key of the written data MUST be returned.
"""
@abc.abstractmethod
def read(self, key):
"""Obtain bundle data for a key.
Returns None if the bundle isn't known.
Throws BundleReadException
The returned object should be a file object supporting read()
and close().
"""
class filebundlestore(object):
"""bundle store in filesystem
meant for storing bundles somewhere on disk and on network filesystems
"""
def __init__(self, ui, repo):
self.ui = ui
self.repo = repo
self.storepath = ui.configpath('scratchbranch', 'storepath')
if not self.storepath:
self.storepath = self.repo.vfs.join("scratchbranches",
"filebundlestore")
if not os.path.exists(self.storepath):
os.makedirs(self.storepath)
def _dirpath(self, hashvalue):
"""First two bytes of the hash are the name of the upper
level directory, next two bytes are the name of the
next level directory"""
return os.path.join(self.storepath, hashvalue[0:2], hashvalue[2:4])
def _filepath(self, filename):
return os.path.join(self._dirpath(filename), filename)
def write(self, data):
filename = hashlib.sha1(data).hexdigest()
dirpath = self._dirpath(filename)
if not os.path.exists(dirpath):
os.makedirs(dirpath)
with open(self._filepath(filename), 'w') as f:
f.write(data)
return filename
def read(self, key):
try:
f = open(self._filepath(key), 'r')
except IOError:
return None
return f.read()
class externalbundlestore(abstractbundlestore):
def __init__(self, put_binary, put_args, get_binary, get_args):
"""
`put_binary` - path to binary file which uploads bundle to external
storage and prints key to stdout
`put_args` - format string with additional args to `put_binary`
{filename} replacement field can be used.
`get_binary` - path to binary file which accepts filename and key
(in that order), downloads bundle from store and saves it to file
`get_args` - format string with additional args to `get_binary`.
{filename} and {handle} replacement field can be used.
"""
self.put_args = put_args
self.get_args = get_args
self.put_binary = put_binary
self.get_binary = get_binary
def _call_binary(self, args):
p = subprocess.Popen(
args, stdout=subprocess.PIPE, stderr=subprocess.PIPE,
close_fds=True)
stdout, stderr = p.communicate()
returncode = p.returncode
return returncode, stdout, stderr
def write(self, data):
# Won't work on windows because you can't open file second time without
# closing it
with NamedTemporaryFile() as temp:
temp.write(data)
temp.flush()
temp.seek(0)
formatted_args = [arg.format(filename=temp.name)
for arg in self.put_args]
returncode, stdout, stderr = self._call_binary(
[self.put_binary] + formatted_args)
if returncode != 0:
raise BundleWriteException(
'Failed to upload to external store: %s' % stderr)
stdout_lines = stdout.splitlines()
if len(stdout_lines) == 1:
return stdout_lines[0]
else:
raise BundleWriteException(
'Bad output from %s: %s' % (self.put_binary, stdout))
def read(self, handle):
# Won't work on windows because you can't open file second time without
# closing it
with NamedTemporaryFile() as temp:
formatted_args = [arg.format(filename=temp.name, handle=handle)
for arg in self.get_args]
returncode, stdout, stderr = self._call_binary(
[self.get_binary] + formatted_args)
if returncode != 0:
raise BundleReadException(
'Failed to download from external store: %s' % stderr)
return temp.read()