stonedog-remembers
A small, message-driven state management library for Python, inspired by the
predictable state-container pattern popularized by Redux. It gives you a
centralized, observable bag of state that you read and write through simple
dot-path keys (e.g. "job.bins"), with change events you can subscribe to
and optional JSON persistence.
It ships two front ends over the same dot-path engine:
Store— a synchronous store. Best for ordinary synchronous code that just wants central, observable runtime state without an event loop.StonedogRemembers— an asyncio, Redux-style store driven by an action queue and an event queue. Best for long-running async applications.
Both share the exported helpers get_nested_value(path, data) and
set_nested_value(path, value, data).
Installation
pip install stonedog-remembers
The import name is stonedog_remembers:
from stonedog_remembers import Store, StonedogRemembers, get_nested_value, set_nested_value
Dot-path convention
State is a nested dict, and every read/write addresses a value by a
dot-separated path:
"user.theme"→state["user"]["theme"]- numeric segments index into lists:
"items.0.name"→state["items"][0]["name"] - reads of a missing or non-traversable path return
None(or your supplied default onStore.get). - a stored
Noneis not the same as a missing path.Store.getreturnsNonefor a value somebody stored, and your default only when there is no value there at all — useStore.has(path)to ask which. (get_nested_valuestill returnsNonefor both; it is public API and unchanged.) - writes auto-create intermediate dicts as needed. A write fails
(returns
False) only if a segment can't be traversed or assigned — e.g. a list index out of range, or trying to descend into a scalar.
Quickstart — Store (synchronous)
from stonedog_remembers import Store
store = Store({"job": {"bins": 10, "sorted": 0}})
# read / write by dot-path
store.set("job.sorted", 1) # -> True
store.get("job.sorted") # -> 1
store.get("job.missing", default=0) # -> 0 (missing path falls back)
# writes auto-create intermediate dicts
store.set("machine.state", "CARD_READY")
store.get_state() # deep copy of the whole state
# subscribe to change events; subscribe() returns an unsubscribe function
def on_change(event):
print(event["path"], event["old_value"], "->", event["new_value"])
unsubscribe = store.subscribe(on_change)
store.set("job.sorted", 2) # -> on_change fires
unsubscribe() # stop receiving events
Persistence
Store reads and writes plain JSON:
store.save("state.json") # write current state to disk
restored = Store(state_file="state.json") # load state at construction
restored.get("job.bins") # -> 10
# a Store created with state_file remembers it, so save() needs no argument
live = Store(state_file="state.json")
live.set("job.sorted", 5)
live.save() # persists back to state.json
Loading never raises. A missing file, malformed JSON, an unreadable file, a path that is a directory, or a JSON document that is not an object all start from an empty state with a log line — so a first run "just works" and a constructor is not something every caller has to wrap.
Saving is atomic. The state is written to a temporary file in the target's
own directory, flushed, and then os.replaced over the target, so a reader sees
either the old file or the new one and never a half-written one. The obvious
implementation — open(target, "w") — truncates before writing, so anything
that goes wrong after that leaves an empty file where the state used to be. That
is the one unacceptable failure for a state library, because it destroys data
that was already safe. The temporary file is in the target's directory
deliberately: os.replace across filesystems fails with EXDEV.
Saving still raises. A save that cannot write is a fact you need. If
persistence is a convenience in your program rather than a requirement, catch
OSError and carry on — that is a decision only the caller can make, and a
library that made it for you would lose data silently.
Atomic is not synchronised. Two processes saving at once both write complete, valid files and the second wins entirely. That is last-writer-wins, not corruption; this class does not lock.
Quickstart — StonedogRemembers (asynchronous)
StonedogRemembers processes actions off a queue and emits events onto
another queue. You dispatch SET_STATE actions and consume STATE_CHANGED
events.
import asyncio
from stonedog_remembers import StonedogRemembers
async def main():
store = StonedogRemembers("initial_state.json")
await store.load_initial_state() # empty state if the file is absent
store.start_processing() # start the background action processor
# observe state changes
events = store.subscribe_events() # an asyncio.Queue of event dicts
await store.dispatch({
"type": StonedogRemembers.ACTION_TYPE_SET_STATE, # "SET_STATE"
"path": "user.theme",
"value": "dark",
})
event = await events.get()
# {'type': 'STATE_CHANGED', 'path': 'user.theme',
# 'old_value': None, 'new_value': 'dark', 'action_source': {...}}
print(event["path"], "->", event["new_value"])
print(store.get_current_state()) # deep copy of the whole state
await store.stop_processing()
asyncio.run(main())
The subscribe / events model
Storenotifies synchronously: eachset()that changes state calls every subscriber callback with aSTATE_CHANGEDevent ({"type", "path", "old_value", "new_value"}). A raising subscriber is logged and isolated — it won't break the store or other subscribers.StonedogRemembersis asynchronous:subscribe_events()returns anasyncio.Queue. Each appliedSET_STATEputs aSTATE_CHANGEDevent (which also carriesaction_source) on that queue for your consumer coroutine toawait. Actions with nopath, unknown action types, and writes that can't be applied are ignored and emit no event.
Development
This is a Poetry (PEP 621) project. Tests run under pytest with a coverage gate:
pip install pytest pytest-asyncio pytest-cov
pytest # runs the suite and enforces >=90% line coverage
pythonpath = ["src"] is set in pyproject.toml, so tests import
stonedog_remembers directly without a manual PYTHONPATH.
License
MIT
Renamed from roz-remembers
This library was published as roz-remembers through 0.2.0. It is the same
library under the StoneDogCode name: the distribution is now
stonedog-remembers, the import is stonedog_remembers, and the async store
class is StonedogRemembers.
from roz_remembers import RozRemembers # before
from stonedog_remembers import StonedogRemembers # now
RozRemembers remains exported as a deprecated alias — it is the same object,
not a subclass, so isinstance checks and the ACTION_TYPE_* / EVENT_TYPE_*
class attributes behave identically either way.
The old roz-remembers distribution
stays on PyPI so existing installs keep working, but it receives no further
releases.
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