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# Copyright (C) 2015-2024 RhodeCode GmbH
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#
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# This program is free software: you can redistribute it and/or modify
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# it under the terms of the GNU Affero General Public License, version 3
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# (only), as published by the Free Software Foundation.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU Affero General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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# This program is dual-licensed. If you wish to learn more about the
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# RhodeCode Enterprise Edition, including its added features, Support services,
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# and proprietary license terms, please see https://rhodecode.com/licenses/
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import functools
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import logging
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import os
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import threading
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import time
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import decorator
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from dogpile.cache import CacheRegion
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import rhodecode
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from rhodecode.lib.hash_utils import sha1
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from rhodecode.lib.str_utils import safe_bytes
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from rhodecode.lib.type_utils import str2bool # noqa :required by imports from .utils
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from . import region_meta
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log = logging.getLogger(__name__)
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def isCython(func):
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"""
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Private helper that checks if a function is a cython function.
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"""
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return func.__class__.__name__ == 'cython_function_or_method'
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class RhodeCodeCacheRegion(CacheRegion):
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def __repr__(self):
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return f'{self.__class__}(name={self.name})'
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def conditional_cache_on_arguments(
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self, namespace=None,
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expiration_time=None,
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should_cache_fn=None,
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to_str=str,
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function_key_generator=None,
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condition=True):
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"""
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Custom conditional decorator, that will not touch any dogpile internals if
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condition isn't meet. This works a bit different from should_cache_fn
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And it's faster in cases we don't ever want to compute cached values
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"""
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expiration_time_is_callable = callable(expiration_time)
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if not namespace:
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namespace = getattr(self, '_default_namespace', None)
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if function_key_generator is None:
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function_key_generator = self.function_key_generator
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def get_or_create_for_user_func(func_key_generator, user_func, *arg, **kw):
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if not condition:
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log.debug('Calling un-cached method:%s', user_func.__name__)
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start = time.time()
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result = user_func(*arg, **kw)
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total = time.time() - start
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log.debug('un-cached method:%s took %.4fs', user_func.__name__, total)
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return result
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key = func_key_generator(*arg, **kw)
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timeout = expiration_time() if expiration_time_is_callable \
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else expiration_time
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log.debug('Calling cached method:`%s`', user_func.__name__)
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return self.get_or_create(key, user_func, timeout, should_cache_fn, (arg, kw))
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def cache_decorator(user_func):
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if to_str is str:
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# backwards compatible
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key_generator = function_key_generator(namespace, user_func)
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else:
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key_generator = function_key_generator(namespace, user_func, to_str=to_str)
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def refresh(*arg, **kw):
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"""
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Like invalidate, but regenerates the value instead
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"""
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key = key_generator(*arg, **kw)
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value = user_func(*arg, **kw)
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self.set(key, value)
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return value
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def invalidate(*arg, **kw):
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key = key_generator(*arg, **kw)
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self.delete(key)
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def set_(value, *arg, **kw):
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key = key_generator(*arg, **kw)
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self.set(key, value)
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def get(*arg, **kw):
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key = key_generator(*arg, **kw)
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return self.get(key)
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user_func.set = set_
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user_func.invalidate = invalidate
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user_func.get = get
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user_func.refresh = refresh
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user_func.key_generator = key_generator
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user_func.original = user_func
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# Use `decorate` to preserve the signature of :param:`user_func`.
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return decorator.decorate(user_func, functools.partial(
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get_or_create_for_user_func, key_generator))
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return cache_decorator
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def make_region(*arg, **kw):
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return RhodeCodeCacheRegion(*arg, **kw)
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def get_default_cache_settings(settings, prefixes=None):
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prefixes = prefixes or []
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cache_settings = {}
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for key in settings.keys():
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for prefix in prefixes:
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if key.startswith(prefix):
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name = key.split(prefix)[1].strip()
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val = settings[key]
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if isinstance(val, str):
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val = val.strip()
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cache_settings[name] = val
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return cache_settings
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def compute_key_from_params(*args):
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"""
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Helper to compute key from given params to be used in cache manager
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"""
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return sha1(safe_bytes("_".join(map(str, args))))
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def custom_key_generator(backend, namespace, fn):
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func_name = fn.__name__
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def generate_key(*args):
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backend_pref = getattr(backend, 'key_prefix', None) or 'backend_prefix'
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namespace_pref = namespace or 'default_namespace'
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arg_key = compute_key_from_params(*args)
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final_key = f"{backend_pref}:{namespace_pref}:{func_name}_{arg_key}"
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return final_key
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return generate_key
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def backend_key_generator(backend):
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"""
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Special wrapper that also sends over the backend to the key generator
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"""
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def wrapper(namespace, fn):
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return custom_key_generator(backend, namespace, fn)
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return wrapper
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def get_or_create_region(region_name, region_namespace: str = None, use_async_runner=False):
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from .backends import FileNamespaceBackend
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from . import async_creation_runner
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region_obj = region_meta.dogpile_cache_regions.get(region_name)
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if not region_obj:
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reg_keys = list(region_meta.dogpile_cache_regions.keys())
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raise OSError(f'Region `{region_name}` not in configured: {reg_keys}.')
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region_uid_name = f'{region_name}:{region_namespace}'
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# Special case for ONLY the FileNamespaceBackend backend. We register one-file-per-region
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if isinstance(region_obj.actual_backend, FileNamespaceBackend):
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if not region_namespace:
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raise ValueError(f'{FileNamespaceBackend} used requires to specify region_namespace param')
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region_exist = region_meta.dogpile_cache_regions.get(region_namespace)
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if region_exist:
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log.debug('Using already configured region: %s', region_namespace)
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return region_exist
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expiration_time = region_obj.expiration_time
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cache_dir = region_meta.dogpile_config_defaults['cache_dir']
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namespace_cache_dir = cache_dir
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# we default the namespace_cache_dir to our default cache dir.
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# however, if this backend is configured with filename= param, we prioritize that
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# so all caches within that particular region, even those namespaced end up in the same path
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if region_obj.actual_backend.filename:
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namespace_cache_dir = os.path.dirname(region_obj.actual_backend.filename)
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if not os.path.isdir(namespace_cache_dir):
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os.makedirs(namespace_cache_dir)
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new_region = make_region(
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name=region_uid_name,
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function_key_generator=backend_key_generator(region_obj.actual_backend)
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)
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namespace_filename = os.path.join(
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namespace_cache_dir, f"{region_name}_{region_namespace}.cache_db")
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# special type that allows 1db per namespace
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new_region.configure(
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backend='dogpile.cache.rc.file_namespace',
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expiration_time=expiration_time,
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arguments={"filename": namespace_filename}
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)
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# create and save in region caches
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log.debug('configuring new region: %s', region_uid_name)
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region_obj = region_meta.dogpile_cache_regions[region_namespace] = new_region
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region_obj._default_namespace = region_namespace
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if use_async_runner:
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region_obj.async_creation_runner = async_creation_runner
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return region_obj
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def clear_cache_namespace(cache_region: str | RhodeCodeCacheRegion, cache_namespace_uid: str, method: str) -> int:
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from . import CLEAR_DELETE, CLEAR_INVALIDATE
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if not isinstance(cache_region, RhodeCodeCacheRegion):
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cache_region = get_or_create_region(cache_region, cache_namespace_uid)
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log.debug('clearing cache region: %s [prefix:%s] with method=%s',
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cache_region, cache_namespace_uid, method)
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num_affected_keys = 0
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if method == CLEAR_INVALIDATE:
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# NOTE: The CacheRegion.invalidate() method’s default mode of
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# operation is to set a timestamp local to this CacheRegion in this Python process only.
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# It does not impact other Python processes or regions as the timestamp is only stored locally in memory.
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cache_region.invalidate(hard=True)
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if method == CLEAR_DELETE:
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num_affected_keys = cache_region.backend.delete_multi_by_prefix(prefix=cache_namespace_uid)
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return num_affected_keys
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class ActiveRegionCache(object):
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def __init__(self, context, cache_data: dict):
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self.context = context
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self.cache_data = cache_data
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@property
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def state_uid(self) -> str:
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return self.cache_data['cache_state_uid']
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class InvalidationContext(object):
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"""
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usage::
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from rhodecode.lib import rc_cache
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repo_namespace_key = 'some-cache-for-repo-id-100'
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inv_context_manager = rc_cache.InvalidationContext(key=repo_namespace_key)
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def cache_generator(_state_uid):
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@region.conditional_cache_on_arguments(namespace='some-common-namespace-100')
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def _dummy_func(*args):
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# compute heavy function
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return _state_uid, 'result'
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return _dummy_func
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with inv_context_manager as invalidation_context:
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cache_state_uid = invalidation_context.state_uid
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cache_func = cache_generator(cache_state_uid)
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previous_state_uid, result = cache_func(*call_args)
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should_invalidate = previous_state_uid != cache_state_uid
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if should_invalidate:
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_, result = cache_func.refresh(*call_args)
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# To send global invalidation signal, simply run
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CacheKey.set_invalidate(repo_namespace_key)
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"""
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def __repr__(self):
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return f'<InvalidationContext:{self.cache_key}>'
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def __init__(self, key, raise_exception=False, thread_scoped=None):
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self.cache_key = key
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self.raise_exception = raise_exception
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self.proc_id = rhodecode.ConfigGet().get_str('instance_id') or 'DEFAULT'
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self.thread_id = 'global'
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if thread_scoped is None:
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# if we set "default" we can override this via .ini settings
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thread_scoped = rhodecode.ConfigGet().get_bool('cache_thread_scoped')
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# Append the thread id to the cache key if this invalidation context
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# should be scoped to the current thread.
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if thread_scoped is True:
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self.thread_id = threading.current_thread().ident
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self.proc_key = f'proc:{self.proc_id}|thread:{self.thread_id}|key:{self.cache_key}'
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self.compute_time = 0
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def get_or_create_cache_obj(self):
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from rhodecode.model.db import CacheKey, Session, IntegrityError
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cache_obj = CacheKey.get_active_cache(self.cache_key)
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log.debug('Fetched cache obj %s using %s cache key.', cache_obj, self.cache_key)
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if not cache_obj:
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# generate new UID for non-existing cache object
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cache_state_uid = CacheKey.generate_new_state_uid()
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cache_obj = CacheKey(self.cache_key, cache_args=f'repo_state:{self._start_time}',
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cache_state_uid=cache_state_uid, cache_active=True)
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try:
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Session().add(cache_obj)
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Session().commit()
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except IntegrityError:
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# if we catch integrity error, it means we inserted this object
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# assumption is that's really an edge race-condition case and
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# it's safe is to skip it
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Session().rollback()
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except Exception:
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log.exception('Failed to commit on cache key update')
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Session().rollback()
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if self.raise_exception:
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raise
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return cache_obj
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def __enter__(self):
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log.debug('Entering cache invalidation check context: %s', self)
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self._start_time = time.time()
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self.cache_obj = self.get_or_create_cache_obj()
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cache_data = self.cache_obj.get_dict()
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return ActiveRegionCache(context=self, cache_data=cache_data)
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def __exit__(self, exc_type, exc_val, exc_tb):
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# save compute time
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self.compute_time = time.time() - self._start_time
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