swh:1:snp:eb70f1f85391e4b077c211bec36af0061c4bf937
Tip revision: bf393fd73bfb1f33fd53057818d2417a7d1df4d9 authored by Valentin Lorentz on 02 September 2019, 09:28:07 UTC
Add support for origin_url in origin_metadata_*.
Add support for origin_url in origin_metadata_*.
Tip revision: bf393fd
in_memory.py
# Copyright (C) 2015-2019 The Software Heritage developers
# See the AUTHORS file at the top-level directory of this distribution
# License: GNU General Public License version 3, or any later version
# See top-level LICENSE file for more information
import os
import re
import bisect
import dateutil
import collections
from collections import defaultdict
import copy
import datetime
import itertools
import random
import warnings
import attr
from swh.model.model import \
Content, Directory, Revision, Release, Snapshot, OriginVisit, Origin
from swh.model.hashutil import DEFAULT_ALGORITHMS
from swh.objstorage import get_objstorage
from swh.objstorage.exc import ObjNotFoundError
from .journal_writer import get_journal_writer
# Max block size of contents to return
BULK_BLOCK_CONTENT_LEN_MAX = 10000
def now():
return datetime.datetime.now(tz=datetime.timezone.utc)
ENABLE_ORIGIN_IDS = \
os.environ.get('SWH_STORAGE_IN_MEMORY_ENABLE_ORIGIN_IDS', 'true') == 'true'
class Storage:
def __init__(self, journal_writer=None):
self._contents = {}
self._content_indexes = defaultdict(lambda: defaultdict(set))
self._skipped_contents = {}
self._skipped_content_indexes = defaultdict(lambda: defaultdict(set))
self.reset()
if journal_writer:
self.journal_writer = get_journal_writer(**journal_writer)
else:
self.journal_writer = None
def reset(self):
self._directories = {}
self._revisions = {}
self._releases = {}
self._snapshots = {}
self._origins = {}
self._origins_by_id = []
self._origin_visits = {}
self._persons = []
self._origin_metadata = defaultdict(list)
self._tools = {}
self._metadata_providers = {}
self._objects = defaultdict(list)
# ideally we would want a skip list for both fast inserts and searches
self._sorted_sha1s = []
self.objstorage = get_objstorage('memory', {})
def check_config(self, *, check_write):
"""Check that the storage is configured and ready to go."""
return True
def _content_add(self, contents, with_data):
if self.journal_writer:
for content in contents:
content = attr.evolve(content, data=None)
self.journal_writer.write_addition('content', content)
content_with_data = []
content_without_data = []
for content in contents:
if content.status is None:
content.status = 'visible'
if content.length is None:
content.length = -1
if content.status == 'visible':
content_with_data.append(content)
elif content.status == 'absent':
content_without_data.append(content)
count_content_added, count_content_bytes_added = \
self._content_add_present(content_with_data, with_data)
count_skipped_content_added = self._content_add_absent(
content_without_data
)
summary = {
'content:add': count_content_added,
'skipped_content:add': count_skipped_content_added,
}
if with_data:
summary['content:add:bytes'] = count_content_bytes_added
return summary
def _content_add_present(self, contents, with_data):
count_content_added = 0
count_content_bytes_added = 0
for content in contents:
key = self._content_key(content)
if key in self._contents:
continue
for algorithm in DEFAULT_ALGORITHMS:
hash_ = content.get_hash(algorithm)
if hash_ in self._content_indexes[algorithm]\
and (algorithm not in {'blake2s256', 'sha256'}):
from . import HashCollision
raise HashCollision(algorithm, hash_, key)
for algorithm in DEFAULT_ALGORITHMS:
hash_ = content.get_hash(algorithm)
self._content_indexes[algorithm][hash_].add(key)
self._objects[content.sha1_git].append(
('content', content.sha1))
self._contents[key] = content
bisect.insort(self._sorted_sha1s, content.sha1)
count_content_added += 1
if with_data:
content_data = self._contents[key].data
self._contents[key].data = None
count_content_bytes_added += len(content_data)
self.objstorage.add(content_data, content.sha1)
return (count_content_added, count_content_bytes_added)
def _content_add_absent(self, contents):
count = 0
skipped_content_missing = self.skipped_content_missing(contents)
for content in skipped_content_missing:
key = self._content_key(content)
for algo in DEFAULT_ALGORITHMS:
self._skipped_content_indexes[algo][content.get_hash(algo)] \
.add(key)
self._skipped_contents[key] = content
count += 1
return count
def content_add(self, content):
"""Add content blobs to the storage
Args:
content (iterable): iterable of dictionaries representing
individual pieces of content to add. Each dictionary has the
following keys:
- data (bytes): the actual content
- length (int): content length (default: -1)
- one key for each checksum algorithm in
:data:`swh.model.hashutil.DEFAULT_ALGORITHMS`, mapped to the
corresponding checksum
- status (str): one of visible, hidden, absent
- reason (str): if status = absent, the reason why
- origin (int): if status = absent, the origin we saw the
content in
Raises:
HashCollision in case of collision
Returns:
Summary dict with the following key and associated values:
content:add: New contents added
content_bytes:add: Sum of the contents' length data
skipped_content:add: New skipped contents (no data) added
"""
content = [Content.from_dict(c) for c in content]
now = datetime.datetime.now(tz=datetime.timezone.utc)
for item in content:
item.ctime = now
return self._content_add(content, with_data=True)
def content_add_metadata(self, content):
"""Add content metadata to the storage (like `content_add`, but
without inserting to the objstorage).
Args:
content (iterable): iterable of dictionaries representing
individual pieces of content to add. Each dictionary has the
following keys:
- length (int): content length (default: -1)
- one key for each checksum algorithm in
:data:`swh.model.hashutil.DEFAULT_ALGORITHMS`, mapped to the
corresponding checksum
- status (str): one of visible, hidden, absent
- reason (str): if status = absent, the reason why
- origin (int): if status = absent, the origin we saw the
content in
- ctime (datetime): time of insertion in the archive
Raises:
HashCollision in case of collision
Returns:
Summary dict with the following key and associated values:
content:add: New contents added
skipped_content:add: New skipped contents (no data) added
"""
content = [Content.from_dict(c) for c in content]
return self._content_add(content, with_data=False)
def content_get(self, content):
"""Retrieve in bulk contents and their data.
This function may yield more blobs than provided sha1 identifiers,
in case they collide.
Args:
content: iterables of sha1
Yields:
Dict[str, bytes]: Generates streams of contents as dict with their
raw data:
- sha1 (bytes): content id
- data (bytes): content's raw data
Raises:
ValueError in case of too much contents are required.
cf. BULK_BLOCK_CONTENT_LEN_MAX
"""
# FIXME: Make this method support slicing the `data`.
if len(content) > BULK_BLOCK_CONTENT_LEN_MAX:
raise ValueError(
"Sending at most %s contents." % BULK_BLOCK_CONTENT_LEN_MAX)
for obj_id in content:
try:
data = self.objstorage.get(obj_id)
except ObjNotFoundError:
yield None
continue
yield {'sha1': obj_id, 'data': data}
def content_get_range(self, start, end, limit=1000, db=None, cur=None):
"""Retrieve contents within range [start, end] bound by limit.
Note that this function may return more than one blob per hash. The
limit is enforced with multiplicity (ie. two blobs with the same hash
will count twice toward the limit).
Args:
**start** (bytes): Starting identifier range (expected smaller
than end)
**end** (bytes): Ending identifier range (expected larger
than start)
**limit** (int): Limit result (default to 1000)
Returns:
a dict with keys:
- contents [dict]: iterable of contents in between the range.
- next (bytes): There remains content in the range
starting from this next sha1
"""
if limit is None:
raise ValueError('Development error: limit should not be None')
from_index = bisect.bisect_left(self._sorted_sha1s, start)
sha1s = itertools.islice(self._sorted_sha1s, from_index, None)
sha1s = ((sha1, content_key)
for sha1 in sha1s
for content_key in self._content_indexes['sha1'][sha1])
matched = []
next_content = None
for sha1, key in sha1s:
if sha1 > end:
break
if len(matched) >= limit:
next_content = sha1
break
matched.append(self._contents[key].to_dict())
return {
'contents': matched,
'next': next_content,
}
def content_get_metadata(self, content):
"""Retrieve content metadata in bulk
Args:
content: iterable of content identifiers (sha1)
Returns:
an iterable with content metadata corresponding to the given ids
"""
# FIXME: the return value should be a mapping from search key to found
# content*s*
for sha1 in content:
if sha1 in self._content_indexes['sha1']:
objs = self._content_indexes['sha1'][sha1]
# FIXME: rather than selecting one of the objects with that
# hash, we should return all of them. See:
# https://forge.softwareheritage.org/D645?id=1994#inline-3389
key = random.sample(objs, 1)[0]
d = self._contents[key].to_dict()
del d['ctime']
yield d
else:
# FIXME: should really be None
yield {
'sha1': sha1,
'sha1_git': None,
'sha256': None,
'blake2s256': None,
'length': None,
'status': None,
}
def content_find(self, content):
if not set(content).intersection(DEFAULT_ALGORITHMS):
raise ValueError('content keys must contain at least one of: '
'%s' % ', '.join(sorted(DEFAULT_ALGORITHMS)))
found = []
for algo in DEFAULT_ALGORITHMS:
hash = content.get(algo)
if hash and hash in self._content_indexes[algo]:
found.append(self._content_indexes[algo][hash])
if not found:
return []
keys = list(set.intersection(*found))
return [self._contents[key].to_dict() for key in keys]
def content_missing(self, content, key_hash='sha1'):
"""List content missing from storage
Args:
contents ([dict]): iterable of dictionaries whose keys are
either 'length' or an item of
:data:`swh.model.hashutil.ALGORITHMS`;
mapped to the corresponding checksum
(or length).
key_hash (str): name of the column to use as hash id
result (default: 'sha1')
Returns:
iterable ([bytes]): missing content ids (as per the
key_hash column)
"""
for cont in content:
for (algo, hash_) in cont.items():
if algo not in DEFAULT_ALGORITHMS:
continue
if hash_ not in self._content_indexes.get(algo, []):
yield cont[key_hash]
break
else:
for result in self.content_find(cont):
if result['status'] == 'missing':
yield cont[key_hash]
def content_missing_per_sha1(self, contents):
"""List content missing from storage based only on sha1.
Args:
contents: Iterable of sha1 to check for absence.
Returns:
iterable: missing ids
Raises:
TODO: an exception when we get a hash collision.
"""
for content in contents:
if content not in self._content_indexes['sha1']:
yield content
def skipped_content_missing(self, contents):
"""List all skipped_content missing from storage
Args:
contents: Iterable of sha1 to check for skipped content entry
Returns:
iterable: dict of skipped content entry
"""
for content in contents:
for (key, algorithm) in self._content_key_algorithm(content):
if algorithm == 'blake2s256':
continue
if key not in self._skipped_content_indexes[algorithm]:
# index must contain hashes of algos except blake2s256
# else the content is considered skipped
yield content
break
def directory_add(self, directories):
"""Add directories to the storage
Args:
directories (iterable): iterable of dictionaries representing the
individual directories to add. Each dict has the following
keys:
- id (sha1_git): the id of the directory to add
- entries (list): list of dicts for each entry in the
directory. Each dict has the following keys:
- name (bytes)
- type (one of 'file', 'dir', 'rev'): type of the
directory entry (file, directory, revision)
- target (sha1_git): id of the object pointed at by the
directory entry
- perms (int): entry permissions
Returns:
Summary dict of keys with associated count as values:
directory:add: Number of directories actually added
"""
if self.journal_writer:
self.journal_writer.write_additions('directory', directories)
directories = [Directory.from_dict(d) for d in directories]
count = 0
for directory in directories:
if directory.id not in self._directories:
count += 1
self._directories[directory.id] = directory
self._objects[directory.id].append(
('directory', directory.id))
return {'directory:add': count}
def directory_missing(self, directories):
"""List directories missing from storage
Args:
directories (iterable): an iterable of directory ids
Yields:
missing directory ids
"""
for id in directories:
if id not in self._directories:
yield id
def _join_dentry_to_content(self, dentry):
keys = (
'status',
'sha1',
'sha1_git',
'sha256',
'length',
)
ret = dict.fromkeys(keys)
ret.update(dentry)
if ret['type'] == 'file':
# TODO: Make it able to handle more than one content
content = self.content_find({'sha1_git': ret['target']})
if content:
content = content[0]
for key in keys:
ret[key] = content[key]
return ret
def _directory_ls(self, directory_id, recursive, prefix=b''):
if directory_id in self._directories:
for entry in self._directories[directory_id].entries:
ret = self._join_dentry_to_content(entry.to_dict())
ret['name'] = prefix + ret['name']
ret['dir_id'] = directory_id
yield ret
if recursive and ret['type'] == 'dir':
yield from self._directory_ls(
ret['target'], True, prefix + ret['name'] + b'/')
def directory_ls(self, directory, recursive=False):
"""Get entries for one directory.
Args:
- directory: the directory to list entries from.
- recursive: if flag on, this list recursively from this directory.
Returns:
List of entries for such directory.
If `recursive=True`, names in the path of a dir/file not at the
root are concatenated with a slash (`/`).
"""
yield from self._directory_ls(directory, recursive)
def directory_entry_get_by_path(self, directory, paths):
"""Get the directory entry (either file or dir) from directory with path.
Args:
- directory: sha1 of the top level directory
- paths: path to lookup from the top level directory. From left
(top) to right (bottom).
Returns:
The corresponding directory entry if found, None otherwise.
"""
return self._directory_entry_get_by_path(directory, paths, b'')
def _directory_entry_get_by_path(self, directory, paths, prefix):
if not paths:
return
contents = list(self.directory_ls(directory))
if not contents:
return
def _get_entry(entries, name):
for entry in entries:
if entry['name'] == name:
entry = entry.copy()
entry['name'] = prefix + entry['name']
return entry
first_item = _get_entry(contents, paths[0])
if len(paths) == 1:
return first_item
if not first_item or first_item['type'] != 'dir':
return
return self._directory_entry_get_by_path(
first_item['target'], paths[1:], prefix + paths[0] + b'/')
def revision_add(self, revisions):
"""Add revisions to the storage
Args:
revisions (Iterable[dict]): iterable of dictionaries representing
the individual revisions to add. Each dict has the following
keys:
- **id** (:class:`sha1_git`): id of the revision to add
- **date** (:class:`dict`): date the revision was written
- **committer_date** (:class:`dict`): date the revision got
added to the origin
- **type** (one of 'git', 'tar'): type of the
revision added
- **directory** (:class:`sha1_git`): the directory the
revision points at
- **message** (:class:`bytes`): the message associated with
the revision
- **author** (:class:`Dict[str, bytes]`): dictionary with
keys: name, fullname, email
- **committer** (:class:`Dict[str, bytes]`): dictionary with
keys: name, fullname, email
- **metadata** (:class:`jsonb`): extra information as
dictionary
- **synthetic** (:class:`bool`): revision's nature (tarball,
directory creates synthetic revision`)
- **parents** (:class:`list[sha1_git]`): the parents of
this revision
date dictionaries have the form defined in :mod:`swh.model`.
Returns:
Summary dict of keys with associated count as values
revision_added: New objects actually stored in db
"""
if self.journal_writer:
self.journal_writer.write_additions('revision', revisions)
revisions = [Revision.from_dict(rev) for rev in revisions]
count = 0
for revision in revisions:
if revision.id not in self._revisions:
revision.committer = self._person_add(revision.committer)
revision.author = self._person_add(revision.author)
self._revisions[revision.id] = revision
self._objects[revision.id].append(
('revision', revision.id))
count += 1
return {'revision:add': count}
def revision_missing(self, revisions):
"""List revisions missing from storage
Args:
revisions (iterable): revision ids
Yields:
missing revision ids
"""
for id in revisions:
if id not in self._revisions:
yield id
def revision_get(self, revisions):
for id in revisions:
if id in self._revisions:
yield self._revisions.get(id).to_dict()
else:
yield None
def _get_parent_revs(self, rev_id, seen, limit):
if limit and len(seen) >= limit:
return
if rev_id in seen or rev_id not in self._revisions:
return
seen.add(rev_id)
yield self._revisions[rev_id].to_dict()
for parent in self._revisions[rev_id].parents:
yield from self._get_parent_revs(parent, seen, limit)
def revision_log(self, revisions, limit=None):
"""Fetch revision entry from the given root revisions.
Args:
revisions: array of root revision to lookup
limit: limitation on the output result. Default to None.
Yields:
List of revision log from such revisions root.
"""
seen = set()
for rev_id in revisions:
yield from self._get_parent_revs(rev_id, seen, limit)
def revision_shortlog(self, revisions, limit=None):
"""Fetch the shortlog for the given revisions
Args:
revisions: list of root revisions to lookup
limit: depth limitation for the output
Yields:
a list of (id, parents) tuples.
"""
yield from ((rev['id'], rev['parents'])
for rev in self.revision_log(revisions, limit))
def release_add(self, releases):
"""Add releases to the storage
Args:
releases (Iterable[dict]): iterable of dictionaries representing
the individual releases to add. Each dict has the following
keys:
- **id** (:class:`sha1_git`): id of the release to add
- **revision** (:class:`sha1_git`): id of the revision the
release points to
- **date** (:class:`dict`): the date the release was made
- **name** (:class:`bytes`): the name of the release
- **comment** (:class:`bytes`): the comment associated with
the release
- **author** (:class:`Dict[str, bytes]`): dictionary with
keys: name, fullname, email
the date dictionary has the form defined in :mod:`swh.model`.
Returns:
Summary dict of keys with associated count as values
release:add: New objects contents actually stored in db
"""
if self.journal_writer:
self.journal_writer.write_additions('release', releases)
releases = [Release.from_dict(rel) for rel in releases]
count = 0
for rel in releases:
if rel.id not in self._releases:
if rel.author:
self._person_add(rel.author)
self._objects[rel.id].append(
('release', rel.id))
self._releases[rel.id] = rel
count += 1
return {'release:add': count}
def release_missing(self, releases):
"""List releases missing from storage
Args:
releases: an iterable of release ids
Returns:
a list of missing release ids
"""
yield from (rel for rel in releases if rel not in self._releases)
def release_get(self, releases):
"""Given a list of sha1, return the releases's information
Args:
releases: list of sha1s
Yields:
dicts with the same keys as those given to `release_add`
(or ``None`` if a release does not exist)
"""
for rel_id in releases:
if rel_id in self._releases:
yield self._releases[rel_id].to_dict()
else:
yield None
def snapshot_add(self, snapshots):
"""Add a snapshot to the storage
Args:
snapshot ([dict]): the snapshots to add, containing the
following keys:
- **id** (:class:`bytes`): id of the snapshot
- **branches** (:class:`dict`): branches the snapshot contains,
mapping the branch name (:class:`bytes`) to the branch target,
itself a :class:`dict` (or ``None`` if the branch points to an
unknown object)
- **target_type** (:class:`str`): one of ``content``,
``directory``, ``revision``, ``release``,
``snapshot``, ``alias``
- **target** (:class:`bytes`): identifier of the target
(currently a ``sha1_git`` for all object kinds, or the name
of the target branch for aliases)
Raises:
ValueError: if the origin's or visit's identifier does not exist.
Returns:
Summary dict of keys with associated count as values
snapshot_added: Count of object actually stored in db
"""
count = 0
snapshots = (Snapshot.from_dict(d) for d in snapshots)
snapshots = (snap for snap in snapshots
if snap.id not in self._snapshots)
for snapshot in snapshots:
if self.journal_writer:
self.journal_writer.write_addition('snapshot', snapshot)
sorted_branch_names = sorted(snapshot.branches)
self._snapshots[snapshot.id] = (snapshot, sorted_branch_names)
self._objects[snapshot.id].append(('snapshot', snapshot.id))
count += 1
return {'snapshot:add': count}
def snapshot_get(self, snapshot_id):
"""Get the content, possibly partial, of a snapshot with the given id
The branches of the snapshot are iterated in the lexicographical
order of their names.
.. warning:: At most 1000 branches contained in the snapshot will be
returned for performance reasons. In order to browse the whole
set of branches, the method :meth:`snapshot_get_branches`
should be used instead.
Args:
snapshot_id (bytes): identifier of the snapshot
Returns:
dict: a dict with three keys:
* **id**: identifier of the snapshot
* **branches**: a dict of branches contained in the snapshot
whose keys are the branches' names.
* **next_branch**: the name of the first branch not returned
or :const:`None` if the snapshot has less than 1000
branches.
"""
return self.snapshot_get_branches(snapshot_id)
def snapshot_get_by_origin_visit(self, origin, visit):
"""Get the content, possibly partial, of a snapshot for the given origin visit
The branches of the snapshot are iterated in the lexicographical
order of their names.
.. warning:: At most 1000 branches contained in the snapshot will be
returned for performance reasons. In order to browse the whole
set of branches, the method :meth:`snapshot_get_branches`
should be used instead.
Args:
origin (int): the origin's identifier
visit (int): the visit's identifier
Returns:
dict: None if the snapshot does not exist;
a dict with three keys otherwise:
* **id**: identifier of the snapshot
* **branches**: a dict of branches contained in the snapshot
whose keys are the branches' names.
* **next_branch**: the name of the first branch not returned
or :const:`None` if the snapshot has less than 1000
branches.
"""
origin_url = self._get_origin_url(origin)
if not origin_url:
return
if origin_url not in self._origins or \
visit > len(self._origin_visits[origin_url]):
return None
snapshot_id = self._origin_visits[origin_url][visit-1].snapshot
if snapshot_id:
return self.snapshot_get(snapshot_id)
else:
return None
def snapshot_get_latest(self, origin, allowed_statuses=None):
"""Get the content, possibly partial, of the latest snapshot for the
given origin, optionally only from visits that have one of the given
allowed_statuses
The branches of the snapshot are iterated in the lexicographical
order of their names.
.. warning:: At most 1000 branches contained in the snapshot will be
returned for performance reasons. In order to browse the whole
set of branches, the methods :meth:`origin_visit_get_latest`
and :meth:`snapshot_get_branches` should be used instead.
Args:
origin (Union[str,int]): the origin's URL or identifier
allowed_statuses (list of str): list of visit statuses considered
to find the latest snapshot for the origin. For instance,
``allowed_statuses=['full']`` will only consider visits that
have successfully run to completion.
Returns:
dict: a dict with three keys:
* **id**: identifier of the snapshot
* **branches**: a dict of branches contained in the snapshot
whose keys are the branches' names.
* **next_branch**: the name of the first branch not returned
or :const:`None` if the snapshot has less than 1000
branches.
"""
origin_url = self._get_origin_url(origin)
if not origin_url:
return
visit = self.origin_visit_get_latest(
origin_url,
allowed_statuses=allowed_statuses,
require_snapshot=True)
if visit and visit['snapshot']:
snapshot = self.snapshot_get(visit['snapshot'])
if not snapshot:
raise ValueError(
'last origin visit references an unknown snapshot')
return snapshot
def snapshot_count_branches(self, snapshot_id, db=None, cur=None):
"""Count the number of branches in the snapshot with the given id
Args:
snapshot_id (bytes): identifier of the snapshot
Returns:
dict: A dict whose keys are the target types of branches and
values their corresponding amount
"""
(snapshot, _) = self._snapshots[snapshot_id]
return collections.Counter(branch.target_type.value if branch else None
for branch in snapshot.branches.values())
def snapshot_get_branches(self, snapshot_id, branches_from=b'',
branches_count=1000, target_types=None):
"""Get the content, possibly partial, of a snapshot with the given id
The branches of the snapshot are iterated in the lexicographical
order of their names.
Args:
snapshot_id (bytes): identifier of the snapshot
branches_from (bytes): optional parameter used to skip branches
whose name is lesser than it before returning them
branches_count (int): optional parameter used to restrain
the amount of returned branches
target_types (list): optional parameter used to filter the
target types of branch to return (possible values that can be
contained in that list are `'content', 'directory',
'revision', 'release', 'snapshot', 'alias'`)
Returns:
dict: None if the snapshot does not exist;
a dict with three keys otherwise:
* **id**: identifier of the snapshot
* **branches**: a dict of branches contained in the snapshot
whose keys are the branches' names.
* **next_branch**: the name of the first branch not returned
or :const:`None` if the snapshot has less than
`branches_count` branches after `branches_from` included.
"""
res = self._snapshots.get(snapshot_id)
if res is None:
return None
(snapshot, sorted_branch_names) = res
from_index = bisect.bisect_left(
sorted_branch_names, branches_from)
if target_types:
next_branch = None
branches = {}
for branch_name in sorted_branch_names[from_index:]:
branch = snapshot.branches[branch_name]
if branch and branch.target_type.value in target_types:
if len(branches) < branches_count:
branches[branch_name] = branch
else:
next_branch = branch_name
break
else:
# As there is no 'target_types', we can do that much faster
to_index = from_index + branches_count
returned_branch_names = sorted_branch_names[from_index:to_index]
branches = {branch_name: snapshot.branches[branch_name]
for branch_name in returned_branch_names}
if to_index >= len(sorted_branch_names):
next_branch = None
else:
next_branch = sorted_branch_names[to_index]
branches = {name: branch.to_dict() if branch else None
for (name, branch) in branches.items()}
return {
'id': snapshot_id,
'branches': branches,
'next_branch': next_branch,
}
def object_find_by_sha1_git(self, ids, db=None, cur=None):
"""Return the objects found with the given ids.
Args:
ids: a generator of sha1_gits
Returns:
dict: a mapping from id to the list of objects found. Each object
found is itself a dict with keys:
- sha1_git: the input id
- type: the type of object found
- id: the id of the object found
- object_id: the numeric id of the object found.
"""
ret = {}
for id_ in ids:
objs = self._objects.get(id_, [])
ret[id_] = [{
'sha1_git': id_,
'type': obj[0],
'id': obj[1],
'object_id': id_,
} for obj in objs]
return ret
def _convert_origin(self, t):
if t is None:
return None
(origin_id, origin) = t
origin = origin.to_dict()
if ENABLE_ORIGIN_IDS:
origin['id'] = origin_id
return origin
def origin_get(self, origins):
"""Return origins, either all identified by their ids or all
identified by tuples (type, url).
If the url is given and the type is omitted, one of the origins with
that url is returned.
Args:
origin: a list of dictionaries representing the individual
origins to find.
These dicts have either the key url (and optionally type):
- type (FIXME: enum TBD): the origin type ('git', 'wget', ...)
- url (bytes): the url the origin points to
or the id:
- id (int): the origin's identifier
Returns:
dict: the origin dictionary with the keys:
- id: origin's id
- type: origin's type
- url: origin's url
Raises:
ValueError: if the keys does not match (url and type) nor id.
"""
if isinstance(origins, dict):
# Old API
return_single = True
origins = [origins]
else:
return_single = False
# Sanity check to be error-compatible with the pgsql backend
if any('id' in origin for origin in origins) \
and not all('id' in origin for origin in origins):
raise ValueError(
'Either all origins or none at all should have an "id".')
if any('url' in origin for origin in origins) \
and not all('url' in origin for origin in origins):
raise ValueError(
'Either all origins or none at all should have '
'an "url" key.')
results = []
for origin in origins:
result = None
if 'id' in origin:
assert ENABLE_ORIGIN_IDS, 'origin ids are disabled'
if origin['id'] <= len(self._origins_by_id):
result = self._origins[self._origins_by_id[origin['id']-1]]
elif 'url' in origin:
if origin['url'] in self._origins:
result = self._origins[origin['url']]
else:
raise ValueError(
'Origin must have either id or url.')
results.append(self._convert_origin(result))
if return_single:
assert len(results) == 1
return results[0]
else:
return results
def origin_get_range(self, origin_from=1, origin_count=100):
"""Retrieve ``origin_count`` origins whose ids are greater
or equal than ``origin_from``.
Origins are sorted by id before retrieving them.
Args:
origin_from (int): the minimum id of origins to retrieve
origin_count (int): the maximum number of origins to retrieve
Yields:
dicts containing origin information as returned
by :meth:`swh.storage.in_memory.Storage.origin_get`.
"""
origin_from = max(origin_from, 1)
if origin_from <= len(self._origins_by_id):
max_idx = origin_from + origin_count - 1
if max_idx > len(self._origins_by_id):
max_idx = len(self._origins_by_id)
for idx in range(origin_from-1, max_idx):
yield self._convert_origin(
self._origins[self._origins_by_id[idx]])
def origin_search(self, url_pattern, offset=0, limit=50,
regexp=False, with_visit=False, db=None, cur=None):
"""Search for origins whose urls contain a provided string pattern
or match a provided regular expression.
The search is performed in a case insensitive way.
Args:
url_pattern (str): the string pattern to search for in origin urls
offset (int): number of found origins to skip before returning
results
limit (int): the maximum number of found origins to return
regexp (bool): if True, consider the provided pattern as a regular
expression and return origins whose urls match it
with_visit (bool): if True, filter out origins with no visit
Returns:
An iterable of dict containing origin information as returned
by :meth:`swh.storage.storage.Storage.origin_get`.
"""
origins = map(self._convert_origin, self._origins.values())
if regexp:
pat = re.compile(url_pattern)
origins = [orig for orig in origins if pat.search(orig['url'])]
else:
origins = [orig for orig in origins if url_pattern in orig['url']]
if with_visit:
origins = [orig for orig in origins
if len(self._origin_visits[orig['url']]) > 0]
if ENABLE_ORIGIN_IDS:
origins.sort(key=lambda origin: origin['id'])
return origins[offset:offset+limit]
def origin_count(self, url_pattern, regexp=False, with_visit=False,
db=None, cur=None):
"""Count origins whose urls contain a provided string pattern
or match a provided regular expression.
The pattern search in origin urls is performed in a case insensitive
way.
Args:
url_pattern (str): the string pattern to search for in origin urls
regexp (bool): if True, consider the provided pattern as a regular
expression and return origins whose urls match it
with_visit (bool): if True, filter out origins with no visit
Returns:
int: The number of origins matching the search criterion.
"""
return len(self.origin_search(url_pattern, regexp=regexp,
with_visit=with_visit,
limit=len(self._origins)))
def origin_add(self, origins):
"""Add origins to the storage
Args:
origins: list of dictionaries representing the individual origins,
with the following keys:
- type: the origin type ('git', 'svn', 'deb', ...)
- url (bytes): the url the origin points to
Returns:
list: given origins as dict updated with their id
"""
origins = copy.deepcopy(origins)
for origin in origins:
if ENABLE_ORIGIN_IDS:
origin['id'] = self.origin_add_one(origin)
else:
self.origin_add_one(origin)
return origins
def origin_add_one(self, origin):
"""Add origin to the storage
Args:
origin: dictionary representing the individual origin to add. This
dict has the following keys:
- type (FIXME: enum TBD): the origin type ('git', 'wget', ...)
- url (bytes): the url the origin points to
Returns:
the id of the added origin, or of the identical one that already
exists.
"""
origin = Origin.from_dict(origin)
if origin.url in self._origins:
if ENABLE_ORIGIN_IDS:
(origin_id, _) = self._origins[origin.url]
else:
if self.journal_writer:
self.journal_writer.write_addition('origin', origin)
if ENABLE_ORIGIN_IDS:
# origin ids are in the range [1, +inf[
origin_id = len(self._origins) + 1
self._origins_by_id.append(origin.url)
assert len(self._origins_by_id) == origin_id
else:
origin_id = None
self._origins[origin.url] = (origin_id, origin)
self._origin_visits[origin.url] = []
self._objects[origin.url].append(('origin', origin.url))
if ENABLE_ORIGIN_IDS:
return origin_id
else:
return origin.url
def fetch_history_start(self, origin_id):
"""Add an entry for origin origin_id in fetch_history. Returns the id
of the added fetch_history entry
"""
assert not ENABLE_ORIGIN_IDS, 'origin ids are disabled'
pass
def fetch_history_end(self, fetch_history_id, data):
"""Close the fetch_history entry with id `fetch_history_id`, replacing
its data with `data`.
"""
pass
def fetch_history_get(self, fetch_history_id):
"""Get the fetch_history entry with id `fetch_history_id`.
"""
raise NotImplementedError('fetch_history_get is deprecated, use '
'origin_visit_get instead.')
def origin_visit_add(self, origin, date=None, type=None, *, ts=None):
"""Add an origin_visit for the origin at date with status 'ongoing'.
For backward compatibility, `type` is optional and defaults to
the origin's type.
Args:
origin (Union[int,str]): visited origin's identifier or URL
date: timestamp of such visit
type (str): the type of loader used for the visit (hg, git, ...)
Returns:
dict: dictionary with keys origin and visit where:
- origin: origin's identifier
- visit: the visit's identifier for the new visit occurrence
"""
if ts is None:
if date is None:
raise TypeError('origin_visit_add expected 2 arguments.')
else:
assert date is None
warnings.warn("argument 'ts' of origin_visit_add was renamed "
"to 'date' in v0.0.109.",
DeprecationWarning)
date = ts
origin_url = self._get_origin_url(origin)
if origin_url is None:
raise ValueError('Unknown origin.')
if isinstance(date, str):
date = dateutil.parser.parse(date)
elif not isinstance(date, datetime.datetime):
raise TypeError('date must be a datetime or a string.')
visit_ret = None
if origin_url in self._origins:
(origin_id, origin) = self._origins[origin_url]
# visit ids are in the range [1, +inf[
visit_id = len(self._origin_visits[origin_url]) + 1
status = 'ongoing'
visit = OriginVisit(
origin=origin,
date=date,
type=type or origin.type,
status=status,
snapshot=None,
metadata=None,
visit=visit_id,
)
self._origin_visits[origin_url].append(visit)
visit_ret = {
'origin': origin_id if ENABLE_ORIGIN_IDS else origin.url,
'visit': visit_id,
}
self._objects[(origin_url, visit_id)].append(
('origin_visit', None))
if self.journal_writer:
self.journal_writer.write_addition('origin_visit', visit)
return visit_ret
def origin_visit_update(self, origin, visit_id, status=None,
metadata=None, snapshot=None):
"""Update an origin_visit's status.
Args:
origin (Union[int,str]): visited origin's identifier or URL
visit_id (int): visit's identifier
status: visit's new status
metadata: data associated to the visit
snapshot (sha1_git): identifier of the snapshot to add to
the visit
Returns:
None
"""
origin_url = self._get_origin_url(origin)
if origin_url is None:
raise ValueError('Unknown origin.')
try:
visit = self._origin_visits[origin_url][visit_id-1]
except IndexError:
raise ValueError('Unknown visit_id for this origin') \
from None
updates = {}
if status:
updates['status'] = status
if metadata:
updates['metadata'] = metadata
if snapshot:
updates['snapshot'] = snapshot
visit = attr.evolve(visit, **updates)
if self.journal_writer:
(_, origin) = self._origins[origin_url]
self.journal_writer.write_update('origin_visit', visit)
self._origin_visits[origin_url][visit_id-1] = visit
if origin_url not in self._origin_visits or \
visit_id > len(self._origin_visits[origin_url]):
return
def origin_visit_upsert(self, visits):
"""Add a origin_visits with a specific id and with all its data.
If there is already an origin_visit with the same
`(origin_url, visit_id)`, updates it instead of inserting a new one.
Args:
visits: iterable of dicts with keys:
origin: dict with keys either `id` or `url`
visit: origin visit id
type: type of loader used for the visit
date: timestamp of such visit
status: Visit's new status
metadata: Data associated to the visit
snapshot (sha1_git): identifier of the snapshot to add to
the visit
"""
visits = [OriginVisit.from_dict(d) for d in visits]
if self.journal_writer:
for visit in visits:
(_, visit.origin) = self._origins[visit.origin.url]
self.journal_writer.write_addition('origin_visit', visit)
for visit in visits:
visit_id = visit.visit
origin_url = visit.origin.url
self._objects[(origin_url, visit_id)].append(
('origin_visit', None))
while len(self._origin_visits[origin_url]) <= visit_id:
self._origin_visits[origin_url].append(None)
self._origin_visits[origin_url][visit_id-1] = visit
def _convert_visit(self, visit):
if visit is None:
return
(origin_id, origin) = self._origins[visit.origin.url]
visit = visit.to_dict()
if ENABLE_ORIGIN_IDS:
visit['origin'] = origin_id
else:
visit['origin'] = origin.url
return visit
def origin_visit_get(self, origin, last_visit=None, limit=None):
"""Retrieve all the origin's visit's information.
Args:
origin (int): the origin's identifier
last_visit (int): visit's id from which listing the next ones,
default to None
limit (int): maximum number of results to return,
default to None
Yields:
List of visits.
"""
origin_url = self._get_origin_url(origin)
if origin_url in self._origin_visits:
visits = self._origin_visits[origin_url]
if last_visit is not None:
visits = visits[last_visit:]
if limit is not None:
visits = visits[:limit]
for visit in visits:
if not visit:
continue
visit_id = visit.visit
yield self._convert_visit(
self._origin_visits[origin_url][visit_id-1])
def origin_visit_find_by_date(self, origin, visit_date):
"""Retrieves the origin visit whose date is closest to the provided
timestamp.
In case of a tie, the visit with largest id is selected.
Args:
origin (str): The occurrence's origin (URL).
target (datetime): target timestamp
Returns:
A visit.
"""
origin_url = self._get_origin_url(origin)
if origin_url in self._origin_visits:
visits = self._origin_visits[origin_url]
visit = min(
visits,
key=lambda v: (abs(v.date - visit_date), -v.visit))
return self._convert_visit(visit)
def origin_visit_get_by(self, origin, visit):
"""Retrieve origin visit's information.
Args:
origin (int): the origin's identifier
Returns:
The information on that particular (origin, visit) or None if
it does not exist
"""
origin_url = self._get_origin_url(origin)
if origin_url in self._origin_visits and \
visit <= len(self._origin_visits[origin_url]):
return self._convert_visit(
self._origin_visits[origin_url][visit-1])
def origin_visit_get_latest(
self, origin, allowed_statuses=None, require_snapshot=False):
"""Get the latest origin visit for the given origin, optionally
looking only for those with one of the given allowed_statuses
or for those with a known snapshot.
Args:
origin (str): the origin's URL
allowed_statuses (list of str): list of visit statuses considered
to find the latest visit. For instance,
``allowed_statuses=['full']`` will only consider visits that
have successfully run to completion.
require_snapshot (bool): If True, only a visit with a snapshot
will be returned.
Returns:
dict: a dict with the following keys:
origin: the URL of the origin
visit: origin visit id
type: type of loader used for the visit
date: timestamp of such visit
status: Visit's new status
metadata: Data associated to the visit
snapshot (Optional[sha1_git]): identifier of the snapshot
associated to the visit
"""
res = self._origins.get(origin)
if not res:
return
(_, origin) = res
visits = self._origin_visits[origin.url]
if allowed_statuses is not None:
visits = [visit for visit in visits
if visit.status in allowed_statuses]
if require_snapshot:
visits = [visit for visit in visits
if visit.snapshot]
visit = max(
visits, key=lambda v: (v.date, v.visit), default=None)
return self._convert_visit(visit)
def stat_counters(self):
"""compute statistics about the number of tuples in various tables
Returns:
dict: a dictionary mapping textual labels (e.g., content) to
integer values (e.g., the number of tuples in table content)
"""
keys = (
'content',
'directory',
'origin',
'origin_visit',
'person',
'release',
'revision',
'skipped_content',
'snapshot'
)
stats = {key: 0 for key in keys}
stats.update(collections.Counter(
obj_type
for (obj_type, obj_id)
in itertools.chain(*self._objects.values())))
return stats
def refresh_stat_counters(self):
"""Recomputes the statistics for `stat_counters`."""
pass
def origin_metadata_add(self, origin_id, ts, provider, tool, metadata,
db=None, cur=None):
""" Add an origin_metadata for the origin at ts with provenance and
metadata.
Args:
origin_id (int): the origin's id for which the metadata is added
ts (datetime): timestamp of the found metadata
provider: id of the provider of metadata (ex:'hal')
tool: id of the tool used to extract metadata
metadata (jsonb): the metadata retrieved at the time and location
"""
if isinstance(origin_id, str):
origin = self.origin_get({'url': origin_id})
if not origin:
return
origin_id = origin['id']
if isinstance(ts, str):
ts = dateutil.parser.parse(ts)
origin_metadata = {
'origin_id': origin_id,
'discovery_date': ts,
'tool_id': tool,
'metadata': metadata,
'provider_id': provider,
}
self._origin_metadata[origin_id].append(origin_metadata)
return None
def origin_metadata_get_by(self, origin_id, provider_type=None, db=None,
cur=None):
"""Retrieve list of all origin_metadata entries for the origin_id
Args:
origin_id (int): the unique origin's identifier
provider_type (str): (optional) type of provider
Returns:
list of dicts: the origin_metadata dictionary with the keys:
- origin_id (int): origin's identifier
- discovery_date (datetime): timestamp of discovery
- tool_id (int): metadata's extracting tool
- metadata (jsonb)
- provider_id (int): metadata's provider
- provider_name (str)
- provider_type (str)
- provider_url (str)
"""
if isinstance(origin_id, str):
origin = self.origin_get({'url': origin_id})
if not origin:
return
origin_id = origin['id']
metadata = []
for item in self._origin_metadata[origin_id]:
item = copy.deepcopy(item)
provider = self.metadata_provider_get(item['provider_id'])
for attr_name in ('name', 'type', 'url'):
item['provider_' + attr_name] = \
provider['provider_' + attr_name]
metadata.append(item)
return metadata
def tool_add(self, tools):
"""Add new tools to the storage.
Args:
tools (iterable of :class:`dict`): Tool information to add to
storage. Each tool is a :class:`dict` with the following keys:
- name (:class:`str`): name of the tool
- version (:class:`str`): version of the tool
- configuration (:class:`dict`): configuration of the tool,
must be json-encodable
Returns:
:class:`dict`: All the tools inserted in storage
(including the internal ``id``). The order of the list is not
guaranteed to match the order of the initial list.
"""
inserted = []
for tool in tools:
key = self._tool_key(tool)
assert 'id' not in tool
record = copy.deepcopy(tool)
record['id'] = key # TODO: remove this
if key not in self._tools:
self._tools[key] = record
inserted.append(copy.deepcopy(self._tools[key]))
return inserted
def tool_get(self, tool):
"""Retrieve tool information.
Args:
tool (dict): Tool information we want to retrieve from storage.
The dicts have the same keys as those used in :func:`tool_add`.
Returns:
dict: The full tool information if it exists (``id`` included),
None otherwise.
"""
return self._tools.get(self._tool_key(tool))
def metadata_provider_add(self, provider_name, provider_type, provider_url,
metadata):
"""Add a metadata provider.
Args:
provider_name (str): Its name
provider_type (str): Its type
provider_url (str): Its URL
metadata: JSON-encodable object
Returns:
an identifier of the provider
"""
provider = {
'provider_name': provider_name,
'provider_type': provider_type,
'provider_url': provider_url,
'metadata': metadata,
}
key = self._metadata_provider_key(provider)
provider['id'] = key
self._metadata_providers[key] = provider
return key
def metadata_provider_get(self, provider_id, db=None, cur=None):
"""Get a metadata provider
Args:
provider_id: Its identifier, as given by `metadata_provider_add`.
Returns:
dict: same as `metadata_provider_add`;
or None if it does not exist.
"""
return self._metadata_providers.get(provider_id)
def metadata_provider_get_by(self, provider, db=None, cur=None):
"""Get a metadata provider
Args:
provider_name: Its name
provider_url: Its URL
Returns:
dict: same as `metadata_provider_add`;
or None if it does not exist.
"""
key = self._metadata_provider_key(provider)
return self._metadata_providers.get(key)
def _get_origin_url(self, origin):
if isinstance(origin, str):
return origin
elif isinstance(origin, int):
if origin <= len(self._origins_by_id):
return self._origins_by_id[origin-1]
else:
return None
else:
raise TypeError('origin must be a string or an integer.')
def _person_add(self, person):
"""Add a person in storage.
Note: Private method, do not use outside of this class.
Args:
person: dictionary with keys fullname, name and email.
"""
key = ('person', person.fullname)
if key not in self._objects:
person_id = len(self._persons) + 1
self._persons.append(person)
self._objects[key].append(('person', person_id))
else:
person_id = self._objects[key][0][1]
person = self._persons[person_id-1]
return person
@staticmethod
def _content_key(content):
"""A stable key for a content"""
return tuple(getattr(content, key)
for key in sorted(DEFAULT_ALGORITHMS))
@staticmethod
def _content_key_algorithm(content):
""" A stable key and the algorithm for a content"""
if isinstance(content, Content):
content = content.to_dict()
return tuple((content.get(key), key)
for key in sorted(DEFAULT_ALGORITHMS))
@staticmethod
def _tool_key(tool):
return '%r %r %r' % (tool['name'], tool['version'],
tuple(sorted(tool['configuration'].items())))
@staticmethod
def _metadata_provider_key(provider):
return '%r %r' % (provider['provider_name'], provider['provider_url'])