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Author SHA1 Message Date
ChuckandClaude Opus 5 c856baf7ef fix(memory): file the cache-hit result before running its callback
Restores the original ordering. Releasing the payload after the callback
meant filing the result after it too, so a callback that queried
get_result() or is_request_complete() for its own request would not have
found it -- a behaviour change unrelated to the memory fix.

The dict holds a reference to the same object, so releasing after filing
still clears the payload.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-23 14:28:09 -04:00
ChuckandClaude Opus 5 ff8d0b01a6 fix(memory): release fetched payloads once they have been delivered
BackgroundDataService kept the fetched body on the FetchResult it filed
in completed_requests, which is swept hourly and capped at 500 entries
by count. For a status record that costs nothing; for a season schedule
it costs a tenth of the board.

Measured on a 1GB Pi 3B+ with a 1-second RSS profile: the display
process sat at 404MB after plugin load, then stepped +21MB when NFL
fetched its season and +90MB when NCAA football fetched 946 games for
2026 -- and stayed at 494MB. Not a leak; a staircase that never came
down. When a later fetch landed while headroom was low, available memory
reached ~70MB, fork() began failing, and the board stopped being able to
start a process at all: sshd accepted connections and closed them before
its banner, systemd could not respawn the display, and the panel went
dark while the kernel carried on answering pings.

The cache-hit path was the worse of the two. It runs once per update
interval per sport, mints a fresh request_id each time, and files
whatever the cache returned. The memory tier is capped at 150 entries on
a 1GB board, so a miss re-parses the payload from disk into a genuinely
new object -- separate copies accumulating toward the 500-entry cap,
not shared references.

Releasing is safe: the payload is written to the cache under the
request's cache_key before the result is built, the callback is handed
the object directly, and consumers read it back from the cache
afterwards (the plugins' callbacks use it only in passing, to log a
count, before reading the cache). Nothing is lost -- it moves from RAM
to the disk cache that was already holding it.

Requests submitted without a callback keep their payload, since polling
get_result() is then the only way to collect it. That keeps the existing
contract, and the existing tests covering it, intact.

Not addressed here: max_workers=3 allows three concurrent fetches, so
three large parses can peak at once, and there is no in-flight dedupe by
cache_key -- a second submit for a key already being fetched starts a
second fetch. Both bound the transient peak rather than what stays
resident, and both are behaviour changes worth their own review.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-23 12:38:27 -04:00
ChuckandClaude Opus 5 a4a55a23fc fix(web): reject non-finite JSON numbers instead of raising (#497)
* fix(web): reject non-finite JSON numbers instead of raising

POST /api/v3/config/dim-schedule with {"dim_brightness": Infinity} answered
500. So did /api/v3/errors/clear with max_age_hours, and /api/v3/config/main
with multiplexing or row_address_type.

json.loads accepts Infinity/-Infinity/NaN by default -- they are not valid
JSON, but Python's parser emits them -- and Flask's get_json passes them
straight through. int(float('inf')) raises OverflowError, which is neither
ValueError nor TypeError, so validation blocks that carefully caught those let
it past and Flask turned it into a 500.

The status code was not the real damage. dim-schedule answered with
CONFIG_SAVE_FAILED and suggested "Check file permissions on config directory"
and "Check available disk space" for what was an invalid number. Every one of
these sites already had a correct 400 response written; they just never
reached it.

NaN already returned 400, because int(nan) raises ValueError. That is why this
only ever showed up for the infinities, and why it survived: the obvious test
case passes.

OverflowError is now caught alongside ValueError/TypeError at the 27 sites in
this file whose try block performs a numeric coercion. An AST sweep confirms
no int()/float() of request-derived data is left outside a block that catches
it.

Verified end to end through Flask's test client rather than by reasoning about
the parser: all four routes returned 500 before and 400 after.

Tests: five Infinity cases (which fail against the previous except tuples),
two NaN cases pinned so narrowing the tuple cannot quietly break them, and a
check that ordinary input is not rejected by the widened guard.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

* test(web): assert 400 exactly, and prove valid input is accepted

Both review points were right, and the first is the failure mode this file
exists to catch.

Accepting any 4xx meant a 404 would have passed. Renaming one of these routes
would have left the test green while it tested nothing -- the same "looks like
coverage, points somewhere safe" shape that hid the composer injections. Now
asserts exactly 400.

Both infinity signs are exercised for every route. int() raises OverflowError
either way, but only +Infinity was in the original report, and a guard that
special-cased the sign would have passed a one-sided test.

The valid-input test previously asserted "not a 400", which did not show what
it claimed: the mocked save path fails for any input, so that assertion held
whether or not validation had accepted the value. It now gives load_config a
real dict and stubs _save_config_atomic, so the endpoint reaches its success
response and the test can assert 200 -- which only happens if the value passed
validation.

8 of the 11 checks fail with OverflowError removed from the except tuples.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

---------

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:44:23 -04:00
ChuckandClaude Opus 5 085fb93a87 test(logging): stop the location assertion matching the clock (#496)
test_location_toggle asserted that ":42" -- a bare colon plus the record's
hardcoded lineno -- is absent from a line formatted with include_location=False.
But every formatted line starts with an HH:MM:SS.mmm timestamp, so ":42" also
matches the clock whenever the minute or the second is 42. The test fails for
roughly 3% of runs with nothing wrong:

  2026-08-22 08:05:42.274 - INFO - test.logger - hello
                     ^^^ matches ":42"

Assert on the whole "module.funcName:lineno" token the format string actually
emits ('%(module)s.%(funcName)s:%(lineno)d') instead of a fragment of it. That
cannot collide with a timestamp, and it checks the thing the test is named for.

Confirmed by formatting a record stamped 08:42:42 -- both minute and second
colliding: the old assertion fails, the new one passes.


Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:44:00 -04:00
ChuckandClaude Opus 5 c321b94085 fix(display): retry a plugin that is enabled but failed to load (#495)
* fix(display): retry a plugin that is enabled but failed to load

A plugin whose validate_config() returns False is treated as a hard load
failure. The API then reports enabled=true, loaded=false, error=null: the
plugin is simply absent, with nothing saying why. hockey-scoreboard sat in
that state on a live rig for four days.

The recovery path existed but could not be reached. _reconcile_enabled_plugins
computes to_add = desired - current, and a plugin that failed to load is never
in current, so it stays in to_add and would be retried. But the reconcile is
queued by _enabled_set_changed(), which compares only top-level `enabled`
flags -- and the edit that actually fixes such a plugin (enabling a league,
filling in an API key) is nested inside the plugin's own config section. No
top-level flag changes, so no reconcile is queued, and the save that should
have fixed it does nothing. Only toggling some unrelated plugin -- which does
change a top-level flag -- queues the global reconcile that recovers it.

Add a second gate: queue a reconcile when a discovered plugin is enabled in
config but absent from the running set.

It is deliberately narrow rather than "reconcile on any config change".
Reconcile calls discover_plugins(), a ~39-manifest filesystem scan, and it
runs on the render thread; doing that on every config save would trade this
bug for a frame hitch. Gating on plugin_manifests also keeps non-plugin
sections that carry their own `enabled` flag (schedule, display) from
queueing a reconcile they can never satisfy. In the steady state -- every
enabled plugin loaded -- the new check is False and costs nothing.

The same valid-but-unconfigured => hard-fail shape still exists in
text-display, youtube-stats, birdnet-go, ledmatrix-flights and
mqtt-notifications; this makes all of them recoverable without a restart.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

* fix(display): snapshot the plugin mappings under their locks

Addresses the review finding on the cross-thread reads.

_enabled_plugin_not_running runs on the config-watcher thread and read two
mappings the render thread mutates. Catching RuntimeError was not a fix: it
turned a torn read into a coin flip between an unnecessary discovery scan and
a missed retry, which is the bug this PR exists to remove.

Both reads are now snapshots taken under the lock that guards their writes:

- plugin_manifests via a new PluginManager.discovered_plugin_ids(), which
  copies the ids while holding the existing _discovery_lock. Discovery
  rebuilds that mapping entry by entry, so an unsynchronised reader can see
  it half-populated.
- plugin_display_modes under a new controller lock, taken at the only two
  sites that mutate it (_register_loaded_plugin / _unregister_plugin).

The locks are never nested -- each snapshot is taken and released before the
next -- so this cannot deadlock against discovery, which holds _discovery_lock
while it rebuilds.

No cost on the per-frame path. Both mutation sites run during reconcile, which
is rare, and every hot-path read of plugin_display_modes is on the render
thread itself, same thread as the writes, so those stay lock-free.

Tests: the accessor returns a snapshot rather than a live view, and actually
takes the discovery lock (proved from a second thread, since an RLock is
reentrant on the owning one) so a later refactor cannot quietly drop it.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

* fix(display): consume the reconcile request before serving it

Addresses the second review finding: a lost update on
_pending_plugin_reconcile.

The flag was cleared after a successful reconcile. Reconcile has already read
its config by that point, so a config change arriving mid-flight set a flag
that the trailing clear then erased -- a request that was never served, and
the newest config never reconciled. That is the same "my save did nothing"
symptom this PR exists to remove, so leaving it would have undercut the fix.

Consume the request before running it instead, and re-arm only on a retryable
failure. A change that lands during reconcile now stays set and is picked up
on the next pass.

The per-frame read stays lock-free. It is a fast path that can only produce a
false negative -- the watcher setting the flag just after it is read is seen
on the next iteration -- never a false positive that loses a request. The lock
is taken only when a reconcile is actually pending or a config change arrives.

Extracted _service_pending_reconcile() so the sequence is testable rather than
buried in run()'s loop; the review asked for a regression test that invokes
the subscriber during reconciliation, which is not reachable otherwise.

Tests: 4 new, covering a request racing in mid-reconcile, the quiet success,
the retryable-failure re-arm, and not reconciling when nothing is pending.
Two of them fail against the previous clear-after-success semantics.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

---------

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:43:39 -04:00
ChuckandClaude Opus 5 5a1f121e6b Stop array-item secrets being wiped, and logging them (#493)
Three review findings from #485 that I missed when addressing that PR;
it has since merged, so they land here.

1. Array-item secrets destroyed by any unrelated save (data loss).

remove_empty_secrets recursed into dicts but let a list fall through to
the scalar branch and kept it verbatim. Lists merge by *replacement*, so
the blanks the masked form posts back went straight over the stored
array:

    stored   [{"name":"a","token":"REAL-A"}, {"name":"b","token":"REAL-B"}]
    posted   [{"name":"a","token":""},       {"name":"b","token":""}]
    merged   [{"name":"a","token":""},       {"name":"b","token":""}]
             -> both credentials gone

Same failure as the scalar api_key case fixed earlier, one container
deeper. Lists now prune element-wise, and a list with nothing real in it
is dropped so the stored one is left alone. Where one entry does change,
the new merge_secrets merges by index instead of replacing.

Two details the first attempt got wrong, both caught by existing tests:

- An emptied dict item must stay {}, not None. ConfigManager's
  _strip_secrets_recursive treats a secrets list as *parallel* to the
  regular one ({} = "item i has no secrets"); a None makes it stop
  looking parallel, and it then drops the whole key from the main config
  -- silently deleting the items' non-secret fields too.
- The incoming list's length wins. The regular config's list is
  authoritative about how many items exist, so preserving surplus stored
  entries would let the two fall out of step and make deleting an entry
  impossible.

2. Submitted credentials written to the journal (security).

save_plugin_config logged `Full config: {plugin_config}` at INFO and
`Config that failed: {plugin_config}` at ERROR. Both run before
separate_secrets, so plugin_config still held the values just typed into
the form. Now keys only. Swept the rest of web_interface/ and src/ for
the same shape -- these were the only two.

3. Restart banner kept stale wording.

showRestartPending() cleared the stored custom text but left the DOM
element alone, so a config save could show the previous update's
message. The default is read back from the server-rendered copy rather
than duplicated in JS, so the template stays the one owner of the string.

Verified: 556 passed, 1 skipped across the web suite. Mutation-checked --
reverting api_v3 fails the logging guard and the array-merge test;
reverting either half of the secret_helpers change fails the unit tests.
New end-to-end coverage drives the real endpoint, not just the helpers.


Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:43:08 -04:00
ChuckandClaude Opus 5 6138a3cbef test(install): stop assuming pytest's tmp_path is on disk (#492)
test_returns_nothing_when_tmpdir_is_already_disk_backed asserted that
lm_disk_backed_tmpdir prints nothing when TMPDIR is already disk-backed,
and used pytest's tmp_path as the "disk-backed" directory:

    # tmp_path is on the regular filesystem, so the default must be kept.
    assert call("lm_disk_backed_tmpdir", env={"TMPDIR": str(tmp_path)}) == ""

That premise is false on the platform the helper was written for. Debian
13 mounts /tmp as tmpfs -- which is the entire reason lm_disk_backed_tmpdir
exists -- and pytest puts tmp_path under /tmp. So on the target platform
TMPDIR is memory-backed, the helper correctly answers /var/tmp, and the
test fails:

    E  AssertionError: assert '/var/tmp' == ''

The helper is right; the test was wrong. Reproduced on a box where
/tmp is tmpfs and / is ext4.

The test now looks for a directory whose backing store is actually disk
-- tmp_path, else a scratch dir under /var/tmp, else beside the library
-- using the same findmnt lookup the helper itself uses, and skips only
if no disk-backed directory exists anywhere. An earlier version of this
fix skipped whenever tmp_path was tmpfs, which made it skip on every
machine with a tmpfs /tmp; that is barely better than asserting the
wrong thing, so it now searches instead of giving up.

Verified: 31 passed, 0 skipped. Mutation-checked -- deleting the
"is the current TMPDIR memory-backed?" guard from lm_disk_backed_tmpdir
fails this test, so it still catches the regression it is there for.


Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:42:51 -04:00
ChuckandClaude Opus 5 568cb6d77f perf(vegas): report the frame rate when it is worth reporting (#487)
Vegas logged an FPS line at INFO every five seconds for the whole of
every run. Measured over two hours on a rig: 1410 samples, 98.5% of them
within 10% of target. The 1.5% that were not included a reading of
8.6fps against a target of 60 -- a real stall, completely invisible
inside 1389 lines reading "59.6". INFO is now reserved for a shortfall,
the recovery from one, and a slow heartbeat so a healthy marquee still
shows a pulse. Scroll-progress tracing drops to DEBUG for the same
reason: it runs for the whole of every scroll and is what you turn debug
on to watch.

Three review findings, all fixed here.

1. Per-frame timing used the wall clock (critical). The loop sleeps the
   remainder of each frame budget:

       frame_elapsed = <now> - frame_started
       time.sleep(max(0.0, frame_interval - frame_elapsed))

   These devices have no RTC, so the clock jumps by however wrong boot
   time was when NTP first syncs. A backward step makes frame_elapsed
   negative, `frame_interval - frame_elapsed` then exceeds the whole
   budget, and the render loop stalls for the size of the correction. A
   forward step instead inflates the p99 and worst-frame figures this
   telemetry exists to report. Both per-frame timestamps are monotonic
   now. start_time stays wall-clock: it is only used for the iteration
   duration report, where a human-readable clock is the point.

2. FPS health state reset every iteration. last_fps_health_log and
   was_degraded were locals of run_iteration(), which is called once per
   cycle. Starting at 0.0 against a monotonic clock, `due` was true on
   the first sample of every iteration, so the 300s heartbeat degenerated
   into one report per cycle -- reintroducing the noise this change is
   about. A recovery that crossed an iteration boundary was never
   reported either, since was_degraded had already gone back to False.
   Both now live on the coordinator and reset in start().

3. The degraded threshold read as an off-by-one. 90% of target is
   deliberate -- a marquee jitters constantly, so "anything below target"
   would report forever and mean nothing -- but nothing said so, leaving
   55fps-against-60 looking like a missed case. The constant now states
   the band and gives that exact example.

Also drops two soccer logo PNGs that a `git add -A` had swept into the
first commit. They are unreferenced, unrelated to frame-rate telemetry,
and 210KB.

Verified: each fix mutation-checked -- restoring the wall clock on either
per-frame timestamp, or making the health state local again, fails the
new tests. 566 passed across the vegas, coordinator and scroll suites.


Claude-Session: https://claude.ai/code/session_01STMbQE4YctTacQXfbYqKuW

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-23 11:42:33 -04:00
28 changed files with 1119 additions and 6294 deletions
+38 -4
View File
@@ -57,7 +57,15 @@ class FetchRequest:
@dataclass
class FetchResult:
"""Result of a background fetch operation."""
"""Result of a background fetch operation.
``data`` survives on the stored result only for requests submitted without
a ``callback``, where polling ``get_result()`` is the sole way to collect
it. When a callback was given, the payload has already been delivered and
the service releases it -- see :meth:`BackgroundDataService._release_payload`.
Either way the data remains in the cache under the request's ``cache_key``,
which is where consumers read it from.
"""
request_id: str
success: bool
data: Optional[Any] = None
@@ -191,14 +199,19 @@ class BackgroundDataService:
cached=True,
fetch_time=0.0
)
# Filed before the callback runs, as it always was: a callback
# that queries get_result()/is_request_complete() for its own
# request must still find it. Releasing afterwards mutates the
# same object the dict holds.
self.completed_requests[request_id] = result
if callback:
try:
callback(result)
except Exception as e:
logger.error(f"Error in callback for request {request_id}: {e}")
self._release_payload(result)
logger.debug(f"Cache hit for {sport} {year} data")
return request_id
@@ -333,8 +346,29 @@ class BackgroundDataService:
request.callback(result)
except Exception as e:
logger.error(f"Error in callback for request {request.id}: {e}")
# Delivered. Drop both references -- they point at the same
# object, so one survivor keeps the whole payload resident.
self._release_payload(result)
request.result = None
return result
@staticmethod
def _release_payload(result: FetchResult) -> None:
"""Drop a delivered payload, keeping the result's status and timings.
Only called once a callback has been handed the data. Consumers read
fetched data back from the cache under ``cache_key``; the copy carried
here was pinning a parsed season schedule -- 946 games for NCAA
football, roughly a tenth of total RAM on a 1GB Pi -- in memory until
the hourly sweep.
The cache-hit path matters most: it runs once per update interval per
sport, mints a fresh request_id each time, and a memory-tier miss
re-parses the payload from disk. Those were genuinely separate copies
accumulating toward the 500-entry cap, not shared references.
"""
result.data = None
def _make_request_with_retry(self, request: FetchRequest) -> requests.Response:
"""
+4
View File
@@ -328,6 +328,10 @@ class ScrollHelper:
elapsed_time = current_time - (self.scroll_start_time or current_time)
# The image already includes display_width padding, so we only need total_scroll_width
required_total_distance = self.total_scroll_width
# Progress telemetry, emitted every few seconds for the whole of
# every scroll. It says how far along a marquee is, which is what
# you turn debug on to watch and not something an operator needs
# in the journal on a device that scrolls all day.
self.logger.debug(
"Scroll progress: elapsed=%.2fs, target=%.2fs, total_scrolled=%.0f/%d px (%.1f%%)",
elapsed_time,
+84 -8
View File
@@ -181,6 +181,16 @@ class DisplayController:
self.plugin_modes = {} # mode -> plugin_instance mapping for plugin-first dispatch
self.mode_to_plugin_id: Dict[str, str] = {}
self.plugin_display_modes: Dict[str, List[str]] = {}
# plugin_display_modes is mutated only by _register_loaded_plugin /
# _unregister_plugin on the render thread, but the config-watcher
# thread reads it in _enabled_plugin_not_running. Both mutation sites
# run during reconcile (rare), so this lock never touches the per-frame
# path -- the hot-path reads are same-thread as the writes.
self._plugin_modes_lock = threading.Lock()
# Guards the consume-and-clear of _pending_plugin_reconcile. Only taken
# when a reconcile is actually pending or a config change arrives, both
# rare -- the per-frame path just reads the bool.
self._reconcile_flag_lock = threading.Lock()
# Per-plugin config-change callbacks, kept so we can unsubscribe a
# plugin when it is disabled live.
self._plugin_config_callbacks: Dict[str, Callable] = {}
@@ -463,8 +473,10 @@ class DisplayController:
self._refresh_config_cache(new_config)
# If a plugin was enabled/disabled, flag a reconcile for the main
# loop to apply (loading/unloading off the watcher thread is unsafe).
if self._enabled_set_changed(old_config, new_config):
self._pending_plugin_reconcile = True
if (self._enabled_set_changed(old_config, new_config)
or self._enabled_plugin_not_running(new_config)):
with self._reconcile_flag_lock:
self._pending_plugin_reconcile = True
self.config_service.subscribe(_controller_config_change)
@@ -1749,11 +1761,12 @@ class DisplayController:
# rebuilding available_modes happens here on the render thread so
# it can't race with rendering. Deferred while on-demand is active
# (the flag stays set) so we don't fight its temporary-enable.
# The lock-free read is a fast path only; it can be a false
# negative (the watcher setting the flag just after it is read
# is seen next iteration), never a false positive that loses a
# request.
if self._pending_plugin_reconcile and not self.on_demand_active:
# Only clear the flag on success -- a retryable failure
# (e.g. discovery) leaves it set so the request isn't lost.
if self._reconcile_enabled_plugins():
self._pending_plugin_reconcile = False
self._service_pending_reconcile()
if not self.available_modes:
# Nothing to render yet. Re-check _pending_plugin_reconcile
@@ -2813,7 +2826,8 @@ class DisplayController:
logger.debug("Using manifest display_modes for %s: %s", plugin_id, display_modes)
if not (isinstance(display_modes, list) and display_modes):
display_modes = [plugin_id]
self.plugin_display_modes[plugin_id] = list(display_modes)
with self._plugin_modes_lock:
self.plugin_display_modes[plugin_id] = list(display_modes)
# Subscribe to config changes for per-plugin hot-reload. Bind plugin_id
# and instance as defaults so each plugin's callback targets its own
@@ -2847,7 +2861,8 @@ class DisplayController:
def _unregister_plugin(self, plugin_id: str) -> None:
"""Remove a plugin's modes, config subscription and instance, then
unload it. Used by live disable hot-reload."""
modes = self.plugin_display_modes.pop(plugin_id, [])
with self._plugin_modes_lock:
modes = self.plugin_display_modes.pop(plugin_id, [])
for mode in modes:
if mode in self.available_modes:
self.available_modes.remove(mode)
@@ -2892,6 +2907,67 @@ class DisplayController:
}
return enabled_map(old_config) != enabled_map(new_config)
def _service_pending_reconcile(self) -> None:
"""Consume a pending reconcile request and run it.
The request is consumed BEFORE reconciling, not cleared after. Clearing
after would drop any config change that lands while reconcile is
running: reconcile has already read its config by then, so the clear
erases a request it never served and the newest config never
reconciles -- the same "your save did nothing" failure this whole path
exists to prevent. Consuming first means such a request stays set and
is picked up on the next pass.
A retryable failure (e.g. discovery) re-arms the flag.
"""
with self._reconcile_flag_lock:
pending = self._pending_plugin_reconcile
self._pending_plugin_reconcile = False
if pending and not self._reconcile_enabled_plugins():
with self._reconcile_flag_lock:
self._pending_plugin_reconcile = True
def _enabled_plugin_not_running(self, new_config: Dict[str, Any]) -> bool:
"""True when a discovered plugin is enabled in config but not running.
``_enabled_set_changed`` compares only top-level ``enabled`` flags, which
misses the case that strands a plugin: one whose ``validate_config()``
returned False is absent from the running set, and the edit that fixes it
(enabling a league, filling in an API key) lives *nested* inside that
plugin's own section. No top-level flag changes, so no reconcile is
queued, and the save that should have fixed it appears to do nothing --
only toggling some unrelated plugin recovers it. hockey-scoreboard sat
enabled-but-absent on a live rig for four days this way.
Deliberately narrow: it fires only for ids the plugin manager has
actually discovered, so non-plugin sections that carry their own
``enabled`` flag (``schedule``, ``display``, ...) don't queue a reconcile
on every save. In the steady state -- everything enabled is loaded --
this is False and costs nothing. That matters because reconcile runs
``discover_plugins()`` on the render thread, where a needless
filesystem scan per config save would show up as a frame hitch.
Runs on the config-watcher thread, so both mappings it reads are
snapshotted under the lock that guards their writes.
"""
if self.plugin_manager is None:
return False
# Two snapshots, each taken under its own lock and never nested, so a
# half-written mapping is never observed and this can't deadlock
# against discovery (which holds the discovery lock while rebuilding).
try:
known = self.plugin_manager.discovered_plugin_ids()
except AttributeError:
# Older manager without the accessor: fall back to a plain read.
known = set(getattr(self.plugin_manager, 'plugin_manifests', ()) or ())
with self._plugin_modes_lock:
running = set(self.plugin_display_modes)
for key, value in new_config.items():
if (key in known and isinstance(value, dict)
and value.get('enabled', False) and key not in running):
return True
return False
def _reconcile_enabled_plugins(self) -> bool:
"""Load/unload plugins so the running set matches the enabled set in
config. Runs on the main display thread (never the config-watcher
+11
View File
@@ -631,6 +631,17 @@ class PluginManager:
return self.load_plugin(plugin_id)
def discovered_plugin_ids(self) -> set:
"""Snapshot of the discovered plugin ids, taken under the discovery lock.
Callers on other threads (the config watcher) must not iterate
``plugin_manifests`` directly: discovery rebuilds it entry by entry, so
an unsynchronised reader can see a half-populated mapping or raise
"dictionary changed size during iteration".
"""
with self._discovery_lock:
return set(self.plugin_manifests)
def get_plugin(self, plugin_id: str) -> Optional[Any]:
"""
Get a loaded plugin instance by ID.
+75 -11
View File
@@ -31,6 +31,18 @@ if TYPE_CHECKING:
logger = logging.getLogger(__name__)
#: Degradation threshold, as a fraction of target_fps. A marquee jitters a
#: little all the time, so "anything under target" would report constantly and
#: mean nothing; 90% of target is the point where a shortfall is real. At a
#: 60fps target that is 54fps -- 55fps is a normal wobble and stays at DEBUG,
#: which is deliberate, not an off-by-one.
_FPS_HEALTHY_FRACTION = 0.9
#: A healthy marquee still reports this often, so silence means stopped
#: rather than fine.
_FPS_HEARTBEAT_INTERVAL = 300.0
def _percentile(ordered: List[float], fraction: float) -> float:
"""Nearest-rank percentile of an already-sorted list.
@@ -96,6 +108,11 @@ class VegasModeCoordinator:
self._is_active = False
self._is_paused = False
self._should_stop = False
# Frame-rate health, tracked across run_iteration() calls so the
# heartbeat is one-per-interval rather than one-per-cycle, and so a
# recovery spanning two cycles is still reported. Reset on start().
self._fps_last_health_log = 0.0
self._fps_was_degraded = False
self._state_lock = threading.Lock()
# Live priority tracking
@@ -248,6 +265,11 @@ class VegasModeCoordinator:
self._is_active = True
self._should_stop = False
self._start_time = time.time()
# A fresh run starts with a clean health slate: no stale
# "was degraded" from the previous run, and a heartbeat that is
# due immediately so the first sample confirms the marquee is up.
self._fps_last_health_log = 0.0
self._fps_was_degraded = False
# Line up the next group immediately, so the first extension is already
# warm rather than stalling the scroll to fetch it.
@@ -395,8 +417,18 @@ class VegasModeCoordinator:
duration = self.render_pipeline.get_dynamic_duration()
start_time = time.time()
frame_count = 0
fps_log_interval = 5.0 # Log FPS every 5 seconds
last_fps_log_time = start_time
fps_log_interval = 5.0 # Sample FPS every 5 seconds
# Health state lives on the coordinator, not here: run_iteration() is
# called once per cycle, so locals reset every few seconds. That made
# `last_fps_health_log = 0.0` fire the "heartbeat" on the first sample
# of every iteration rather than once per interval, and a recovery
# that crossed an iteration boundary was never reported at all --
# was_degraded had already gone back to False.
# Monotonic, and deliberately not start_time: start_time is wall
# clock and is used below to report the iteration's duration. Mixing
# the two here would make every delta hugely negative and silence the
# frame-rate reporting altogether.
last_fps_log_time = time.monotonic()
fps_frame_count = 0
# A mean hides stutter completely. At 120fps a five-second window is
# ~600 frames, so a 200ms freeze -- plainly visible on a marquee --
@@ -408,7 +440,13 @@ class VegasModeCoordinator:
logger.info("Starting Vegas iteration for %.1fs", duration)
while True:
frame_started = time.time()
# Monotonic, like the FPS window below. These devices have no RTC,
# so the wall clock jumps by however wrong boot time was the moment
# NTP first syncs. A backward jump makes frame_elapsed negative,
# and `frame_interval - frame_elapsed` then sleeps for longer than
# the whole budget -- the render loop stalls for the size of the
# correction. A forward jump inflates p99 and worst-frame instead.
frame_started = time.monotonic()
# Check for STATIC mode plugin that should pause scroll
static_plugin = self._check_static_plugin_trigger()
@@ -436,7 +474,7 @@ class VegasModeCoordinator:
# quarter of the budget spent not rendering. Subtracting the work
# already done keeps the pacing target while reclaiming that time,
# and yields the GIL either way so other threads still run.
frame_elapsed = time.time() - frame_started
frame_elapsed = time.monotonic() - frame_started
time.sleep(max(0.0, frame_interval - frame_elapsed))
# Measured before the sleep: time spent working, not pacing.
@@ -448,16 +486,42 @@ class VegasModeCoordinator:
frame_count += 1
fps_frame_count += 1
# Periodic FPS logging
current_time = time.time()
# Periodic FPS logging. Reported at INFO only when the frame rate
# is actually worth an operator's attention -- a shortfall against
# target, or the recovery from one -- with a slow heartbeat so a
# healthy marquee still shows a pulse.
#
# Measured over two hours on a running rig: 1410 samples, 98.5%
# of them within 10% of target. The 1.5% that were not included a
# reading of 8.6fps against a target of 60 -- a real stall, and
# completely invisible inside 1389 lines reading "59.6".
# Monotonic: every use of this value in the block below is a
# duration, and these devices have no RTC, so the wall clock jumps
# by however wrong boot time was the moment NTP first syncs. That
# would not only mis-fire the heartbeat, it would corrupt the
# frame rate itself, since fps is frames divided by this delta.
current_time = time.monotonic()
if current_time - last_fps_log_time >= fps_log_interval:
fps = fps_frame_count / (current_time - last_fps_log_time)
p99 = _percentile(sorted(frame_times), 0.99)
logger.info(
"Vegas FPS: %.1f (target: %d, frames: %d) p99 %.1fms worst %.1fms",
fps, self.vegas_config.target_fps, fps_frame_count,
p99 * 1000.0, frame_worst * 1000.0
)
target = self.vegas_config.target_fps
degraded = target > 0 and fps < target * _FPS_HEALTHY_FRACTION
due = (current_time - self._fps_last_health_log
>= _FPS_HEARTBEAT_INTERVAL)
if degraded or self._fps_was_degraded or due:
logger.info(
"Vegas FPS: %.1f (target: %d, frames: %d) p99 %.1fms worst %.1fms",
fps, target, fps_frame_count,
p99 * 1000.0, frame_worst * 1000.0
)
self._fps_last_health_log = current_time
else:
logger.debug(
"Vegas FPS: %.1f (target: %d, frames: %d) p99 %.1fms worst %.1fms",
fps, target, fps_frame_count,
p99 * 1000.0, frame_worst * 1000.0
)
self._fps_was_degraded = degraded
last_fps_log_time = current_time
fps_frame_count = 0
frame_worst = 0.0
+79 -1
View File
@@ -5,7 +5,7 @@ Provides functions for identifying, masking, separating, and filtering
secret fields in plugin configurations based on JSON Schema x-secret markers.
"""
from typing import Any, Dict, Set, Tuple
from typing import Any, Dict, Optional, Set, Tuple
def find_secret_fields(properties: Dict[str, Any], prefix: str = '') -> Set[str]:
@@ -202,11 +202,89 @@ def remove_empty_secrets(secrets: Dict[str, Any]) -> Dict[str, Any]:
nested = remove_empty_secrets(v)
if nested:
result[k] = nested
elif isinstance(v, list):
# Lists used to fall through to the scalar branch below and be
# kept verbatim, blanks and all. Because lists merge by
# *replacement*, saving any unrelated setting then wrote
# [{"token": ""}, ...] straight over the stored list and
# destroyed every credential in it.
pruned = _prune_secret_list(v)
if pruned is not None:
result[k] = pruned
elif v is not None and not (isinstance(v, str) and v.strip() == ''):
result[k] = v
return result
def _prune_secret_list(items: list) -> Optional[list]:
"""Strip blanks from inside a list of secrets, preserving every index.
The rest of the system treats a secrets list as *parallel* to the regular
one -- ``sec[i]`` holds the secret fields of item ``i``, and ``{}`` means
"item i has none" (see ConfigManager._strip_secrets_recursive). So an
emptied dict item stays ``{}``: putting ``None`` there makes that list stop
looking parallel, and the stripper then drops the whole key from the main
config, taking the non-secret fields with it.
A blank *scalar* becomes ``None``, meaning "no update at this index" --
:func:`merge_secrets` substitutes whatever is stored there. Returns
``None`` when nothing in the list carries a real value, so the caller drops
the key and leaves the stored list untouched.
"""
pruned: list = []
has_real_value = False
for item in items:
if isinstance(item, dict):
kept = remove_empty_secrets(item)
pruned.append(kept)
has_real_value = has_real_value or bool(kept)
elif isinstance(item, list):
sub = _prune_secret_list(item)
pruned.append(sub if sub is not None else [])
has_real_value = has_real_value or sub is not None
elif item is not None and not (isinstance(item, str) and item.strip() == ''):
pruned.append(item)
has_real_value = True
else:
pruned.append(None)
return pruned if has_real_value else None
def merge_secrets(stored: Any, incoming: Any) -> Any:
"""Merge submitted secrets over stored ones, element-wise inside lists.
``deep_merge`` replaces a list wholesale. For secrets that is destructive:
an incoming list that carries a real value for one entry and ``None`` for
the rest would drop the stored credentials of every other entry. Here a
list merges by index, and ``None`` means "keep what is stored".
Entries are matched by *position*, which is what the config form gives us
-- there is no schema-declared identity to key on, and it is the same
contract ConfigManager._strip_secrets_recursive already relies on. The
incoming list's length wins, so deleting an item deletes its secrets;
an item the client left blank keeps whatever is stored at that index.
"""
if isinstance(stored, dict) and isinstance(incoming, dict):
merged = dict(stored)
for key, value in incoming.items():
merged[key] = (merge_secrets(stored[key], value)
if key in stored else value)
return merged
if isinstance(stored, list) and isinstance(incoming, list):
# The incoming list sets the length -- the regular config's list is
# authoritative about how many items exist, and this one runs parallel
# to it. Removing an entry must therefore remove its secrets too.
merged_list = []
for index, item in enumerate(incoming):
stored_item = stored[index] if index < len(stored) else None
merged_list.append(stored_item if item is None
else merge_secrets(stored_item, item))
return merged_list
if incoming is None:
return stored
return incoming
def strip_masked_values(secrets: Dict[str, Any]) -> Dict[str, Any]:
"""Remove values a client echoed back rather than changed.
+85
View File
@@ -0,0 +1,85 @@
"""Non-finite JSON numbers must be rejected, not raise.
json.loads accepts Infinity/-Infinity/NaN by default (they are not valid JSON,
but Python's parser emits them) and Flask's get_json passes them straight
through. int(float('inf')) raises OverflowError, which is neither ValueError
nor TypeError -- so validation blocks that carefully caught those let it
through and Flask turned it into a 500.
The damage was not the status code. /config/dim-schedule answered with
CONFIG_SAVE_FAILED and suggested "Check file permissions on config directory"
and "Check available disk space" for what was actually an invalid number.
NaN already returned 400 (int(nan) raises ValueError), which is why this only
showed up for the infinities.
"""
import sys
from pathlib import Path
import pytest
sys.path.insert(0, str(Path(__file__).parent.parent))
from test._api_v3_test_helpers import api_v3_client, api_v3_module # noqa: F401,E402
#: (route, field) that returned 500 before OverflowError was caught. Both
#: infinity signs are exercised: int() raises OverflowError for either, but
#: only one of them was in the original report, and a guard that special-cased
#: the sign would pass a one-sided test.
NON_FINITE_ROUTES = [
('/api/v3/config/dim-schedule', 'dim_brightness'),
('/api/v3/errors/clear', 'max_age_hours'),
('/api/v3/config/main', 'multiplexing'),
('/api/v3/config/main', 'row_address_type'),
]
NON_FINITE_CASES = [
(route, '{"%s": %s}' % (field, literal))
for route, field in NON_FINITE_ROUTES
for literal in ('Infinity', '-Infinity')
]
@pytest.mark.parametrize("route,body", NON_FINITE_CASES)
def test_infinity_is_a_client_error_not_a_server_error(api_v3_client, route, body):
"""Exactly 400, not merely "some 4xx".
Accepting any 4xx would let a 404 pass, so renaming one of these routes
would leave the test green while testing nothing -- the failure mode this
whole file exists to catch.
"""
response = api_v3_client.post(route, data=body, content_type='application/json')
assert response.status_code == 400, (
f"{route} with {body} answered {response.status_code}; expected 400"
)
@pytest.mark.parametrize("route,body", [
('/api/v3/config/dim-schedule', '{"dim_brightness": NaN}'),
('/api/v3/errors/clear', '{"max_age_hours": NaN}'),
])
def test_nan_is_also_a_client_error(api_v3_client, route, body):
"""int(nan) raises ValueError so this path already worked -- pinned so a
refactor that narrows the except tuple cannot quietly break it."""
response = api_v3_client.post(route, data=body, content_type='application/json')
assert response.status_code == 400
def test_a_valid_number_is_accepted(api_v3_client, api_v3_module, monkeypatch):
"""Prove the widened except did not start swallowing ordinary input.
Asserting "not a 400" would not show that: the mocked save path fails for
any input, so the assertion would hold even if validation had rejected the
value. Give load_config a real dict and stub the atomic save, and the
endpoint reaches its success response -- which only happens if 30 passed
validation.
"""
api_v3_module.api_v3.config_manager.load_config.return_value = {}
monkeypatch.setattr(api_v3_module, '_save_config_atomic',
lambda *a, **k: (True, ''))
response = api_v3_client.post(
'/api/v3/config/dim-schedule',
data='{"dim_brightness": 30}',
content_type='application/json',
)
assert response.status_code == 200, response.get_data(as_text=True)[:200]
+159
View File
@@ -0,0 +1,159 @@
"""A delivered fetch payload must not stay resident on the stored result.
BackgroundDataService kept the fetched body on the FetchResult it filed in
`completed_requests`, which is swept only hourly and capped at 500 entries by
count. For status records that is free; for a season schedule it is not. NCAA
football's 2026 schedule is 946 games, and on a 1GB Pi 3B+ the parsed payload
measured ~90MB -- a tenth of the board's memory, pinned for an hour after the
consumer had already been handed it.
The cache-hit path was the worse of the two. It runs once per update interval
per sport, mints a fresh request_id each time, and hands back whatever the
cache returns -- so a memory-tier miss (the tier is capped at 150 entries)
re-parses the payload from disk into a genuinely new object. Those accumulate
as separate copies rather than shared references, which is the staircase seen
in the field: RSS stepping up ~90MB per sport as seasons loaded and never
coming back down.
Releasing is safe because the payload is written to the cache under the
request's cache_key before the result is built, and that is where consumers
read it from -- the callback is handed the object directly and the plugins use
it only in passing before reading the cache back.
Requests submitted *without* a callback keep their payload: polling
get_result() is then the only way to collect it, so releasing would break that
contract.
"""
import time
import pytest
from unittest.mock import MagicMock, Mock, patch
from src.background_data_service import BackgroundDataService
PAYLOAD = {"events": [{"id": f"g{i}"} for i in range(50)]}
@pytest.fixture
def cache():
m = MagicMock()
m.get.return_value = None
m.set.return_value = None
return m
@pytest.fixture
def service(cache):
svc = BackgroundDataService(cache, max_workers=2, request_timeout=5)
yield svc
svc.shutdown(wait=False)
def _wait(service, req_id, timeout=5):
deadline = time.time() + timeout
while not service.is_request_complete(req_id) and time.time() < deadline:
time.sleep(0.02)
def _resp():
r = Mock()
r.json.return_value = PAYLOAD
r.raise_for_status.return_value = None
return r
class TestFetchPath:
def test_callback_receives_the_payload_then_it_is_released(self, service, cache):
seen = {}
def callback(result):
# The consumer's one look at the data happens here.
seen['events'] = len(result.data['events'])
with patch.object(service.session, "get", return_value=_resp()):
req_id = service.submit_fetch_request(
sport="ncaa_fb", year=2026, url="https://example.com/s",
cache_key="ncaa_fb_2026", callback=callback, max_retries=0,
)
_wait(service, req_id)
assert seen['events'] == 50, "callback must still be handed the payload"
stored = service.get_result(req_id)
assert stored is not None
assert stored.success is True
assert stored.data is None, "payload must not stay on the stored result"
def test_nothing_is_lost_the_cache_holds_it(self, service, cache):
with patch.object(service.session, "get", return_value=_resp()):
req_id = service.submit_fetch_request(
sport="ncaa_fb", year=2026, url="https://example.com/s",
cache_key="ncaa_fb_2026", callback=lambda r: None, max_retries=0,
)
_wait(service, req_id)
cache.set.assert_called_once()
key, written = cache.set.call_args[0][:2]
assert key == "ncaa_fb_2026"
assert written == PAYLOAD, "the payload must be persisted before release"
def test_without_a_callback_the_payload_is_kept(self, service, cache):
# Polling get_result() is then the only delivery mechanism.
with patch.object(service.session, "get", return_value=_resp()):
req_id = service.submit_fetch_request(
sport="nfl", year=2026, url="https://example.com/s",
cache_key="nfl_2026", max_retries=0,
)
_wait(service, req_id)
assert service.get_result(req_id).data == PAYLOAD
def test_a_failed_fetch_still_records_its_error(self, service, cache):
with patch.object(service.session, "get", side_effect=Exception("boom")):
req_id = service.submit_fetch_request(
sport="nfl", year=2026, url="https://example.com/s",
cache_key="nfl_2026", callback=lambda r: None, max_retries=0,
)
_wait(service, req_id)
stored = service.get_result(req_id)
assert stored.success is False
assert stored.error is not None
class TestCacheHitPath:
def test_cache_hit_releases_after_the_callback(self, service, cache):
cache.get.return_value = PAYLOAD
seen = {}
req_id = service.submit_fetch_request(
sport="ncaa_fb", year=2026, url="https://example.com/s",
cache_key="ncaa_fb_2026",
callback=lambda r: seen.update(events=len(r.data['events'])),
)
assert seen['events'] == 50
assert service.get_result(req_id).data is None
def test_repeated_cache_hits_do_not_accumulate_payloads(self, service, cache):
# The staircase: one entry per update interval per sport, each one
# potentially a freshly parsed copy after a memory-tier miss.
cache.get.return_value = PAYLOAD
for _ in range(25):
service.submit_fetch_request(
sport="ncaa_fb", year=2026, url="https://example.com/s",
cache_key="ncaa_fb_2026", callback=lambda r: None,
)
retained = [r for r in service.completed_requests.values() if r.data is not None]
assert retained == [], f"{len(retained)} payloads still resident"
def test_cache_hit_without_a_callback_is_unchanged(self, service, cache):
cache.get.return_value = PAYLOAD
req_id = service.submit_fetch_request(
sport="nfl", year=2026, url="https://example.com/s",
cache_key="nfl_2026",
)
assert service.get_result(req_id).data == PAYLOAD
-301
View File
@@ -1,301 +0,0 @@
"""The composer generates Python that the plugin loader imports and executes.
/api/install writes the generated manager.py into plugins_dir and the loader
imports it, so anything the payload can splice into that source runs on the
device. The ast.parse check in _generate_plugin_files rejects only *invalid*
syntax -- an injected `import os` is perfectly valid and passed it.
Two ways in, both confirmed against the code before it was fixed:
metadata.name = a name containing a triple-quote, a newline, then
`import os; PWNED = os.getuid()`, then another triple-quote
-> closes the module docstring; the rest became module-level statements
(spelled out rather than shown literally -- writing the payload into
this docstring closes *this* file's docstring, which is the bug)
element x = '0 or __import__("os").system("id")'
-> f-string interpolated it verbatim: x=0 or __import__("os").system("id")
"""
import ast
import re
import sys
from pathlib import Path
import pytest
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
from web_interface.blueprints import composer as C # noqa: E402
BASE_META = {"id": "test-plugin", "name": "Clock", "author": "a",
"version": "1.0.0", "description": "d"}
#: Values that terminate a Python expression and start a new statement.
EXPR_PAYLOADS = [
'0 or __import__("os").system("id")',
'0);import os;os.system("id");(',
'__import__("subprocess").run(["id"])',
"0 if False else exec('x=1')",
"1e999", "nan", "0x41", "0__0",
]
#: Values that close a string literal in the generated source.
LITERAL_PAYLOADS = [
'Clock"""\nimport os; PWNED = os.getuid()\n"""',
"Clock'''\nimport os\n'''",
'Clock" + __import__("os").system("id") + "',
"Clock\\", "Clock\nimport os",
]
def _payload(**over):
# dataModel.configVars is the key _generate_plugin_files reads; "config_vars"
# was never looked at, so anything passed through it tested nothing.
p = {"metadata": dict(BASE_META), "elements": [],
"dataModel": {"configVars": over.pop("config_vars", [])}}
p["metadata"].update(over.pop("metadata", {}))
p.update(over)
return p
def _generated(payload):
return C._generate_plugin_files(payload)["manager.py"]
def _module_level_code(src):
"""Statements at module level that are not the docstring/imports/classes."""
tree = ast.parse(src)
out = []
for node in tree.body:
if isinstance(node, (ast.ClassDef, ast.FunctionDef, ast.ImportFrom)):
continue
if isinstance(node, ast.Expr) and isinstance(node.value, ast.Constant):
continue # the docstring
out.append(ast.unparse(node))
return out
@pytest.mark.parametrize("payload", LITERAL_PAYLOADS)
def test_a_name_that_breaks_out_of_a_literal_is_refused(payload):
with pytest.raises(C.ComposerInputError):
_generated(_payload(metadata={"name": payload}))
#: Types with a drawing branch in manager.py.j2. An injection test using any
#: other type proves nothing: _preprocess_elements drops it, so its values
#: never reach the generated source and every assertion passes trivially.
#: This test previously used "line", which has never had a branch.
RENDERED_GEOMETRY_CASES = [
("rectangle", {"x": 0, "y": 0, "width": 10, "height": 8}),
("arc", {"x": 0, "y": 0, "width": 24, "height": 24}),
("ellipse", {"x": 0, "y": 0, "width": 24, "height": 12}),
("rounded_rectangle", {"x": 0, "y": 0, "width": 24, "height": 10}),
("gauge", {"x": 0, "y": 0, "width": 32, "height": 32}),
]
@pytest.mark.parametrize("etype,base", RENDERED_GEOMETRY_CASES)
@pytest.mark.parametrize("evil", EXPR_PAYLOADS)
@pytest.mark.parametrize("field", ["x", "y", "width", "height"])
def test_a_non_numeric_geometry_value_cannot_reach_the_source(etype, base, evil, field):
"""width/height were interpolated raw into the generated source.
p['x2_expr'] = f"({x_expr}) + {w}" with w straight off the payload, so a
rectangle with width='0 or __import__("os").system("id")' produced
[0, 0, (0) + 0 or __import__("os").system("id"), (0) + 8],
in a manager.py that /api/install writes to disk and the loader imports.
"""
el = {"type": etype, "id": "e1", **base}
el[field] = evil
src = _generated(_payload(elements=[el]))
assert "__import__" not in src, f"{etype}.{field}={evil!r} reached the generated source"
assert "os.system" not in src
assert not _module_level_code(src), \
f"{etype}.{field}={evil!r} produced module-level statements: {_module_level_code(src)}"
def test_every_injection_case_uses_a_type_that_actually_renders():
"""Guards against the whole suite quietly going vacuous again.
An element type with no template branch is dropped before generation, so
an injection test written against one asserts nothing and still passes.
"""
used = {etype for etype, _ in RENDERED_GEOMETRY_CASES}
missing = used - set(C._RENDERABLE_ELEMENT_TYPES)
assert not missing, f"injection tests use non-rendering types: {sorted(missing)}"
@pytest.mark.parametrize("evil", EXPR_PAYLOADS)
@pytest.mark.parametrize("channel", ["r", "g", "b"])
def test_a_non_numeric_colour_channel_cannot_reach_the_source(evil, channel):
el = {"type": "text", "id": "t1", "x": 0, "y": 0, "text": "hi",
"font": "press_start", "r": 255, "g": 255, "b": 255}
el[channel] = evil
src = _generated(_payload(elements=[el]))
assert "__import__" not in src and "os.system" not in src
assert not _module_level_code(src)
def test_colour_channels_are_clamped_to_a_byte():
el = {"type": "text", "id": "t1", "x": 0, "y": 0, "text": "hi",
"font": "press_start", "r": 99999, "g": -5, "b": 128}
src = _generated(_payload(elements=[el]))
assert "(255, 0, 128)" in src, "channels were not clamped to 0-255"
def test_the_generated_module_still_has_no_top_level_statements():
"""The clean case: a normal payload produces only imports and a class."""
el = {"type": "text", "id": "t1", "x": 4, "y": 4, "text": "hi",
"font": "press_start", "r": 1, "g": 2, "b": 3}
src = _generated(_payload(elements=[el]))
assert not _module_level_code(src)
assert "(1, 2, 3)" in src
# --- config variable keys ---------------------------------------------------
def _with_key(key):
return {"metadata": dict(BASE_META), "elements": [],
"dataModel": {"configVars": [{"key": key, "type": "string",
"default": "x", "label": "L"}]}}
@pytest.mark.parametrize("key", ["class", "def", "import", "None", "True",
"lambda", "pass", "match", "case"])
def test_a_keyword_config_key_is_named_in_the_error(key):
"""ast.parse already rejected these, but as an unhelpful line number.
"Generated code has a syntax error: invalid syntax (line 17)" tells the
user nothing about which field to fix.
"""
with pytest.raises(C.ComposerInputError) as exc:
_generated(_with_key(key))
assert key in str(exc.value) and "keyword" in str(exc.value).lower()
@pytest.mark.parametrize("key", ["config", "logger", "display_manager",
"cache_manager", "plugin_id", "enabled",
"self", "update", "display"])
def test_a_reserved_attribute_config_key_is_refused(key):
"""These generate *valid* Python that silently clobbers plugin state.
The worst is `config`: the assignment lands right after super().__init__(),
so `self.config = config.get("config", "x")` replaces the plugin's config
dict with a string and every later self.config.get(...) fails at runtime.
"""
with pytest.raises(C.ComposerInputError) as exc:
_generated(_with_key(key))
assert key in str(exc.value) and "reserved" in str(exc.value).lower()
@pytest.mark.parametrize("key", ["brightness", "my_var", "_private", "x1",
"update_interval_seconds"])
def test_ordinary_config_keys_are_still_accepted(key):
src = _generated(_with_key(key))
assert f"self.{key} = config.get(" in src
def test_the_generated_config_assignment_does_not_precede_super_init():
"""Guards the reasoning behind the reserved list, not just the list."""
src = _generated(_with_key("brightness"))
body = src.splitlines()
super_at = next(i for i, line in enumerate(body) if "super().__init__(" in line)
assign_at = next(i for i, line in enumerate(body)
if "self.brightness = config.get(" in line)
assert assign_at > super_at, (
"config vars are assigned before super().__init__(); the reserved-name "
"list assumes they land after it")
# --- optional keys ----------------------------------------------------------
@pytest.mark.parametrize("el_type,missing", [
("text", "text"), ("text", "text2"), ("clock", "format"),
])
def test_an_element_missing_an_optional_key_does_not_500(el_type, missing):
"""`p` is a copy of the raw element, so an absent key stays absent.
The defaults were applied to locals only, so manager.py.j2 rendered
`{{ el.text | tojson }}` over a jinja2.Undefined and tojson raised
TypeError -- which no handler catches, making a missing key a 500 rather
than a validation error or a sensible default.
"""
el = {"type": el_type, "id": "e1", "x": 0, "y": 0, "font": "press_start"}
src = _generated(_payload(elements=[el]))
ast.parse(src) # must still be valid Python
assert "Undefined" not in src
def test_a_clock_without_a_format_uses_the_documented_default():
el = {"type": "clock", "id": "c1", "x": 0, "y": 0, "font": "press_start"}
src = _generated(_payload(elements=[el]))
assert '"%H:%M"' in src, "the %H:%M default did not reach the generated source"
#: (element type, channel key, base element) for colour channels that were
#: interpolated raw rather than through _rgb_expr/_safe_int. Prefixed channels
#: (emptyR/G/B, labelR/G/B) were the ones the original r/g/b test never reached.
RAW_COLOUR_CASES = [
("progress_bar", "r", {"x": 0, "y": 0}),
("progress_bar", "g", {"x": 0, "y": 0}),
("pips", "b", {"x": 0, "y": 0}),
("pips", "emptyR", {"x": 0, "y": 0}),
("pips", "emptyG", {"x": 0, "y": 0}),
("sparkline", "r", {"x": 0, "y": 0}),
("gauge", "labelR", {"x": 0, "y": 0, "width": 32, "height": 32}),
("gauge", "labelB", {"x": 0, "y": 0, "width": 32, "height": 32}),
]
@pytest.mark.parametrize("etype,channel,base", RAW_COLOUR_CASES)
@pytest.mark.parametrize("evil", EXPR_PAYLOADS)
def test_a_prefixed_colour_channel_cannot_reach_the_source(etype, channel, base, evil):
"""Five tuples were built with f"({el.get('r', 100)}, ...)" -- no coercion.
The pre-existing colour test only covered r/g/b on a text element, so the
prefixed channels and the four other types were never exercised.
"""
el = {"type": etype, "id": "e1", **base}
el[channel] = evil
src = _generated(_payload(elements=[el]))
assert "__import__" not in src, f"{etype}.{channel}={evil!r} reached the source"
assert "os.system" not in src
assert not _module_level_code(src)
@pytest.mark.parametrize("value", [float("inf"), float("-inf"), float("nan")])
@pytest.mark.parametrize("field", ["x", "y", "width", "height"])
def test_a_non_finite_dimension_does_not_escape_as_an_unhandled_error(field, value):
"""json.loads accepts Infinity/NaN and Flask passes them through, so a
payload can hand _safe_int a non-finite float. int(inf) raises
OverflowError -- neither ValueError nor ComposerInputError -- so it escaped
both handlers and surfaced as a 500 with a traceback instead of a 422."""
el = {"type": "rectangle", "id": "r1", "x": 0, "y": 0, "width": 10, "height": 8}
el[field] = value
src = _generated(_payload(elements=[el])) # must not raise
# A non-finite value must be replaced by the default, not spelled into the
# source. Word-boundary match: "info" in self.logger.info contains "inf".
assert not re.search(r"\b(inf|nan|Infinity|NaN)\b", src), \
f"{field}={value!r} leaked a non-finite literal into the source"
assert not _module_level_code(src)
@pytest.mark.parametrize("bad_id", [
'x = __import__("os").system("id") #',
"x\nimport os\n_y",
"x[0]",
"",
"a" * 200,
])
def test_a_marquee_id_cannot_become_code(bad_id):
"""data_key is spliced UNQUOTED into variable names
(_{{ data_key }}_text = ...), so a non-identifier id landed in the source
as code. ast.parse caught it, but the caller then got an opaque
"Generated code has a syntax error" rather than being told the id is bad."""
el = {"type": "marquee", "id": bad_id, "x": 0, "y": 0, "text": "hi"}
src = _generated(_payload(elements=[el])) # must not raise
assert "__import__(" not in src
assert "os.system(" not in src
assert not _module_level_code(src)
-80
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@@ -1,80 +0,0 @@
"""An element the template cannot draw must not produce an empty `if` block.
manager.py.j2 wraps each element in `if width >= N:` (breakpoint) and/or
`if int(time.time() * 2) % 2:` (blink), and the body comes from the per-type
branches. A type with no branch contributed nothing, so the wrapper opened a
block with no statements in it. ast.parse in _generate_plugin_files then
failed and the caller was told only:
Generated code has a syntax error: expected an indented block after
'if' statement on line 49
which names a line of generated source the user never sees. Confirmed against
the code before the fix with a `group` element carrying minWidth.
Two defences, both covered here: _preprocess_elements drops types the template
has no branch for, and the template emits a `pass` fallback so a type added to
the canvas before its branch exists degrades to a no-op instead of a broken
plugin.
"""
import re
import sys
from pathlib import Path
import pytest
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
from web_interface.blueprints import composer as C # noqa: E402
TEMPLATE = (Path(__file__).resolve().parent.parent
/ "web_interface/templates/v3/composer/manager.py.j2")
BASE_META = {"id": "test-plugin", "name": "Clock", "author": "a",
"version": "1.0.0", "description": "d"}
def generate(element):
return C._generate_plugin_files({
"metadata": BASE_META,
"elements": [element],
"dataModel": {"configVars": []},
})
@pytest.mark.parametrize("wrapper", [
{"minWidth": 64}, # breakpoint block
{"blink": True}, # blink block
{"minWidth": 64, "blink": True}, # both, nested
])
@pytest.mark.parametrize("etype", ["group", "widget_9000", "section"])
def test_undrawable_element_does_not_break_generation(etype, wrapper):
element = {"type": etype, "x": 0, "y": 0, "color": "#ffffff", **wrapper}
files = generate(element) # must not raise ComposerInputError
assert "manager.py" in files
def test_drawable_element_still_renders_inside_a_breakpoint():
files = generate({"type": "text", "text": "hi", "x": 0, "y": 0,
"minWidth": 64, "color": "#ffffff"})
src = files["manager.py"]
assert "if width >= 64:" in src
assert "draw_text" in src
def test_renderable_types_match_the_template_branches():
"""The constant and the template must agree.
A type listed in the constant with no branch emits an empty block (the bug
above); a type with a branch but missing from the constant is silently
dropped from every generated plugin. Neither is visible without this check.
"""
branches = set(re.findall(r"el\.type == '([a-z_]+)'", TEMPLATE.read_text()))
assert branches == set(C._RENDERABLE_ELEMENT_TYPES)
def test_template_closes_the_branch_chain_with_a_fallback():
"""Belt and braces: even if the constant drifts, no empty block escapes."""
text = TEMPLATE.read_text()
assert "{% else %}" in text
assert "pass # element type" in text
-187
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@@ -1,187 +0,0 @@
"""Structural checks on the composer's JavaScript.
There is no JS test runner in this repo, but three defects here are structural
enough to assert on the parse tree, and each was a real bug:
- Stroke widths inside _drawElement were left in canvas pixels while the
geometry around them scaled by SCALE, so at SCALE>1 every outline rendered
thinner than one LED pixel and the preview stopped matching the panel.
- The `line` branch drew raw el.x0/el.y0/el.x1/el.y1, ignoring the anchor that
every other element type honours, so setting xAnchor moved everything except
lines -- and getBoundingBox had the same omission, leaving the hit box behind.
- Four methods mutated exactly what _snapshot() serialises (metadata,
currentPreset) without calling it. _snapshot is the only caller of
_debouncedAutosave, so those changes were lost on reload and could not be
undone.
"""
import re
from pathlib import Path
import pytest
tree_sitter = pytest.importorskip("tree_sitter")
tree_sitter_javascript = pytest.importorskip("tree_sitter_javascript")
JS_DIR = Path(__file__).resolve().parent.parent / "web_interface/static/v3/js/composer"
CANVAS = JS_DIR / "composer-canvas.js"
APP = JS_DIR / "composer-app.js"
def _function_source(path: Path, name: str) -> str:
"""Return the source of a top-level function declaration by name."""
src = path.read_bytes()
lang = tree_sitter.Language(tree_sitter_javascript.language())
tree = tree_sitter.Parser(lang).parse(src)
found = []
def walk(node):
if node.type == "function_declaration":
ident = node.child_by_field_name("name")
if ident is not None and src[ident.start_byte:ident.end_byte].decode() == name:
found.append(src[node.start_byte:node.end_byte].decode())
for c in node.children:
walk(c)
walk(tree.root_node)
assert found, f"{name} not found in {path.name}"
return found[0]
def _method_source(path: Path, name: str) -> str:
"""Return the source of a top-level object method by name."""
src = path.read_bytes()
lang = tree_sitter.Language(tree_sitter_javascript.language())
tree = tree_sitter.Parser(lang).parse(src)
found = []
def walk(node):
if node.type == "method_definition":
ident = node.child_by_field_name("name")
if ident is not None and src[ident.start_byte:ident.end_byte].decode() == name:
found.append(src[node.start_byte:node.end_byte].decode())
for c in node.children:
walk(c)
walk(tree.root_node)
assert found, f"{name} not found in {path.name}"
return found[0]
def test_both_files_parse():
lang = tree_sitter.Language(tree_sitter_javascript.language())
parser = tree_sitter.Parser(lang)
for path in (CANVAS, APP):
tree = parser.parse(path.read_bytes())
errors = []
def walk(node):
if node.type == "ERROR" or node.is_missing:
errors.append(node.start_point[0] + 1)
for c in node.children:
walk(c)
walk(tree.root_node)
assert not errors, f"{path.name} has parse errors at lines {errors}"
def test_element_strokes_scale_with_scale():
"""No bare `ctx.lineWidth = 1` inside _drawElement.
Selection handles and the grid are drawn in canvas pixels deliberately and
live in other functions, so this is scoped to the element drawing routine.
"""
body = _function_source(CANVAS, "_drawElement")
offenders = re.findall(r"ctx\.lineWidth\s*=\s*1\s*;", body)
assert not offenders, f"{len(offenders)} unscaled stroke width(s) in _drawElement"
def test_line_branch_applies_the_anchor_offset():
"""Scoped to _drawElement.
getBoundingBox has its own `case 'line': {` and appears first in the file,
so searching the whole text found *that* branch -- this assertion passed
with the draw branch's anchor offset removed. Verified: stripping it and
re-running gave 11/11 green.
"""
body = _function_source(CANVAS, "_drawElement")
line_branch = body[body.index("case 'line': {"):]
line_branch = line_branch[:line_branch.index("case 'divider'")]
assert "ax - el.x0" in line_branch and "ay - el.y0" in line_branch, \
"line drawing ignores xAnchor/yAnchor"
assert "moveTo(el.x0 * s" not in line_branch, \
"line still drawn from unanchored endpoints"
def test_line_bounding_box_applies_the_anchor_offset():
"""The companion to the above: scoped to getBoundingBox specifically, so
the two tests cannot both be satisfied by the same branch."""
body = _function_source(CANVAS, "getBoundingBox")
box = body[body.index("case 'line'"):]
box = box[:box.index("case 'divider'")]
assert "ax - el.x0" in box, "line bounding box ignores the anchor"
@pytest.mark.parametrize("method", [
"onBgColorChange", # mutates metadata.bgColor
"setCustomSize", # mutates currentPreset / MATRIX_W / MATRIX_H
"changePreset", # mutates currentPreset / MATRIX_W / MATRIX_H
"applyPresetLabel", # same, for sizes not in DISPLAY_PRESETS
"onColorChange", # the one that was already fixed — keeps it fixed
])
def test_state_mutations_take_a_snapshot(method):
body = _method_source(APP, method)
assert "_snapshot()" in body, \
f"{method} changes snapshotted state without calling _snapshot()"
assert "isDirty = true" in body, f"{method} does not mark the design dirty"
@pytest.mark.parametrize("method", ["changePreset", "applyPresetLabel"])
def test_restore_path_stays_snapshot_free(method):
"""_applyState and loadTemplate call these with {silent: true} while
restoring; snapshotting there would push restore steps onto the undo stack
and re-autosave the state just loaded."""
body = _method_source(APP, method)
assert "opts.silent" in body, f"{method} lost its silent guard"
snap = body.index("_snapshot()")
guard = body.index("!opts.silent")
assert guard < snap, f"{method} snapshots outside the !opts.silent guard"
TEMPLATE_HTML = (Path(__file__).resolve().parent.parent
/ "web_interface/templates/v3/composer.html")
#: The six toolbar buttons and the wrapper each must call.
ALIGN_BUTTONS = ["alignLeft", "alignHCenter", "alignRight",
"alignTop", "alignVCenter", "alignBottom"]
def test_alignment_buttons_use_the_anchor_clearing_path():
"""Two alignment implementations existed and the toolbar used the wrong one.
The legacy alignElement(dir) set el.x/el.y but left xAnchor/yAnchor in
place. resolveAnchor turns anchor='right' into `dim - val`, so "align left"
(el.x = 0) resolved to x = MATRIX_W -- the element jumped to the far right
edge instead. _alignElement clears the anchor first, so the stored value is
absolute, and it also updates el.x0/el.y0 so lines actually move.
"""
html = TEMPLATE_HTML.read_text()
for wrapper in ALIGN_BUTTONS:
assert f"{wrapper}()" in html, f"toolbar does not call {wrapper}()"
assert not re.search(r"[^_]alignElement\(", html), \
"toolbar still calls the legacy alignElement()"
def test_the_legacy_alignelement_is_gone():
"""Leaving it in place invites the toolbar drifting back to it."""
src = APP.read_text()
assert not re.search(r"^\s{4}alignElement\(dir\)", src, re.M), \
"legacy alignElement(dir) still defined"
def test_align_clears_the_anchor_and_moves_line_endpoints():
body = _method_source(APP, "_alignElement")
assert "xAnchor = null" in body and "yAnchor = null" in body, \
"_alignElement no longer clears the anchor, so aligning an anchored " \
"element resolves to the wrong edge"
assert "el.x0" in body and "el.y0" in body, \
"_alignElement no longer moves line endpoints"
-225
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@@ -1,225 +0,0 @@
"""A composer plugin id must never resolve outside the plugins directory.
CodeQL reported sixteen high-severity py/path-injection alerts against
web_interface/blueprints/composer.py: a request-supplied plugin_id reaching
Path(plugins_dir) / plugin_id, which is then created, written to, deleted
(shutil.rmtree) and read back.
The id was already validated by an anchored regex, so every traversal payload
was in fact rejected. What was missing was the guarantee living *with* the path
building rather than in a regex several hundred lines away -- loosen that regex
later and the traversal opens silently, with nothing at the filesystem boundary
to catch it. _plugin_dir() closes that, and is the form static analysis can see.
"""
import sys
from pathlib import Path
from unittest.mock import MagicMock
import pytest
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
from web_interface.blueprints import composer as C # noqa: E402
#: Anything that has ever been used to climb out of a directory.
TRAVERSAL = [
"../../etc/passwd", "..", ".", "a/../../etc", "good/../../..",
"/etc/passwd", "//etc/passwd", "a\\..\\..", "a%2f..%2f..",
"....//....//etc", "a/./../../etc", "~", "~root",
"plugin/../../../../../../etc/shadow",
]
#: Rejected for shape, not traversal -- but rejected all the same.
MALFORMED = ["", "A-upper", "1-leading-digit", "-leading-dash", "has_underscore",
"has space", "has.dot", "a" * 64, "plugin\n", "plugin\n../../etc",
"\n", "plug\x00in"]
@pytest.fixture
def plugins_dir(tmp_path, monkeypatch):
base = tmp_path / "plugin-repos"
base.mkdir()
monkeypatch.setattr(C.composer_bp, "plugins_dir", str(base), raising=False)
return base
@pytest.mark.parametrize("payload", TRAVERSAL)
def test_traversal_payloads_are_refused(plugins_dir, payload):
assert C._plugin_dir(payload) is None
@pytest.mark.parametrize("payload", MALFORMED)
def test_malformed_ids_are_refused(plugins_dir, payload):
assert C._plugin_dir(payload) is None
@pytest.mark.parametrize("payload", ["a", "my-plugin", "x9", "a" * 63])
def test_valid_ids_resolve_inside_the_base(plugins_dir, payload):
resolved = C._plugin_dir(payload)
assert resolved is not None, f"{payload!r} was rejected but is valid"
assert resolved.parent == plugins_dir.resolve(), (
f"{payload!r} resolved to {resolved}, outside {plugins_dir}")
def test_no_payload_can_escape_even_if_the_regex_is_loosened(plugins_dir, monkeypatch):
"""The containment check must stand on its own.
This is the whole point of resolving at the filesystem boundary: if the id
pattern is ever relaxed, traversal must still be impossible. Replace the
regex with one that permits slashes and dots, then re-run the payloads.
"""
import re
monkeypatch.setattr(C, "_PLUGIN_ID_RE", re.compile(r"\A[\w./\\~-]+\Z"))
import os
escaped = []
base = os.path.realpath(str(plugins_dir))
for payload in TRAVERSAL:
resolved = C._plugin_dir(payload)
if resolved is None:
continue
real = os.path.realpath(str(resolved))
if real != base and os.path.commonpath([base, real]) != base:
escaped.append((payload, real))
assert not escaped, f"these escaped the base with a loosened regex: {escaped}"
def test_a_sibling_directory_with_a_shared_prefix_is_not_inside(tmp_path, monkeypatch):
"""commonpath, not startswith.
"/x/plugins-evil" starts with "/x/plugins" but is a different directory, so
a prefix test would accept it.
"""
base = tmp_path / "plugins"
base.mkdir()
(tmp_path / "plugins-evil").mkdir()
monkeypatch.setattr(C.composer_bp, "plugins_dir", str(base), raising=False)
import re
# Neutralise the two layers in front so this exercises the containment
# check itself; otherwise secure_filename rejects the payload first and a
# startswith regression would go unnoticed here.
monkeypatch.setattr(C, "_PLUGIN_ID_RE", re.compile(r"\A[\w./\\~-]+\Z"))
monkeypatch.setattr(C, "secure_filename", lambda v: v)
assert C._plugin_dir("../plugins-evil") is None
def test_containment_still_holds_if_the_sanitiser_is_defeated(plugins_dir, monkeypatch):
"""Each layer is tested on its own, not just the stack.
secure_filename's equality guard rejects every traversal payload before the
containment check sees it, so removing containment does not fail the other
tests -- which would make it look load-bearing when it is not. Neutralise
the regex *and* the sanitiser, and the realpath/commonpath check must still
refuse everything on its own.
"""
import re
monkeypatch.setattr(C, "_PLUGIN_ID_RE", re.compile(r"\A[\w./\\~-]+\Z"))
monkeypatch.setattr(C, "secure_filename", lambda v: v)
import os
base = os.path.realpath(str(plugins_dir))
escaped = []
for payload in TRAVERSAL:
resolved = C._plugin_dir(payload)
if resolved is None:
continue
real = os.path.realpath(str(resolved))
# Inside the base is fine -- "...." and "~" are ordinary directory
# names on Linux, so they are not escapes. What must never happen is
# landing outside the base, or on the base itself: install() rmtrees
# its target, so the plugins root resolving to a "plugin" would wipe
# every installed plugin.
if real == base or os.path.commonpath([base, real]) != base:
escaped.append((payload, real))
assert not escaped, f"containment alone let these through: {escaped}"
def test_secure_filename_never_rewrites_an_accepted_id(plugins_dir):
"""The sanitiser must be a no-op on everything the regex accepts.
If secure_filename ever altered an accepted id, _plugin_dir would resolve
to a *different* plugin's directory than the caller asked for -- a silent
redirect, which is worse than a refusal. The guard turns that into a
refusal; this proves the guard never has to fire in practice.
"""
import random
from werkzeug.utils import secure_filename
random.seed(1)
alphabet = "abcdefghijklmnopqrstuvwxyz0123456789-"
altered = []
for _ in range(2000):
n = random.randint(1, 63)
cand = random.choice("abcdefghijklmnopqrstuvwxyz") + "".join(
random.choice(alphabet) for _ in range(n - 1))
if C._PLUGIN_ID_RE.match(cand) and secure_filename(cand) != cand:
altered.append((cand, secure_filename(cand)))
assert not altered, f"secure_filename rewrote accepted ids: {altered[:5]}"
def test_a_trailing_newline_is_not_a_valid_id():
r"""Python's `$` also matches before a trailing newline, so the original
`^...$` accepted "myplugin\n" and would have created a directory whose
name ends in one. \Z does not."""
assert C._PLUGIN_ID_RE.match("myplugin") is not None
assert C._PLUGIN_ID_RE.match("myplugin\n") is None
# --- font serving -----------------------------------------------------------
FONT_TRAVERSAL = [
"../../../etc/passwd", "../config/config.json", "..%2f..%2fetc%2fpasswd",
"PressStart2P-Regular.ttf/../../../etc/passwd", "/etc/passwd", "",
"PressStart2P-Regular.TTF", # case differs -> not the allowlisted name
"PressStart2P-Regular.ttf ", # trailing space
]
def test_serve_font_refuses_a_file_that_exists_but_is_not_allowlisted(monkeypatch, tmp_path):
"""The allowlist must be what refuses it, not a missing file.
Asserting 404 on traversal payloads proves nothing here: Flask's router
will not match a path segment containing '/', and everything else 404s
simply because no such file exists. Put a real, readable file next to the
fonts and confirm it is still refused -- that is the allowlist working.
"""
fonts = tmp_path / "assets" / "fonts"
fonts.mkdir(parents=True)
(fonts / "id_rsa.ttf").write_bytes(b"PRIVATE KEY")
monkeypatch.setattr(C.composer_bp, "project_root", str(tmp_path), raising=False)
app = __import__("flask").Flask(__name__)
app.register_blueprint(C.composer_bp)
with app.test_client() as client:
resp = client.get("/api/fonts/id_rsa.ttf")
assert resp.status_code == 404, (
"a readable non-allowlisted file was served; the allowlist is not gating")
assert b"PRIVATE KEY" not in resp.data
@pytest.mark.parametrize("payload", FONT_TRAVERSAL)
def test_serve_font_refuses_anything_not_allowlisted(payload, monkeypatch, tmp_path):
"""The name reaching the filesystem must come from the allowlist constant.
_ALLOWED_FONTS gates this endpoint, so nothing here was ever exploitable.
Building the path from the matched constant rather than the request value
is what makes that provable -- and it is why CodeQL reported two
high-severity py/path-injection alerts on an endpoint that was already
safe.
"""
monkeypatch.setattr(C.composer_bp, "project_root", str(tmp_path), raising=False)
app = C.composer_bp.name and __import__("flask").Flask(__name__)
app.register_blueprint(C.composer_bp)
with app.test_client() as client:
resp = client.get(f"/api/fonts/{payload}")
assert resp.status_code in (404, 405, 308), (
f"{payload!r} was not refused (status {resp.status_code})")
def test_serve_font_still_serves_each_allowlisted_font(monkeypatch, tmp_path):
fonts = tmp_path / "assets" / "fonts"
fonts.mkdir(parents=True)
monkeypatch.setattr(C.composer_bp, "project_root", str(tmp_path), raising=False)
app = __import__("flask").Flask(__name__)
app.register_blueprint(C.composer_bp)
for name in C._ALLOWED_FONTS:
(fonts / name).write_bytes(b"\x00\x01ttf")
with app.test_client() as client:
resp = client.get(f"/api/fonts/{name}")
assert resp.status_code == 200, f"{name} should be served, got {resp.status_code}"
@@ -6,6 +6,7 @@ These tests cover the reconcile path that loads/unloads plugins and rebuilds
the dispatch maps on the main thread when the enabled set changes.
"""
import copy
from unittest.mock import MagicMock
@@ -253,3 +254,182 @@ class TestEnabledSetChanged:
{"a": {"enabled": True, "duration": 30}},
{"a": {"enabled": True, "duration": 45}},
) is False
class TestEnabledPluginNotRunning:
"""A plugin that fails validate_config() is enabled but absent, and the
config edit that fixes it is nested inside the plugin's own section -- so
the top-level ``enabled`` comparison never sees it. These cover the second
gate that queues a reconcile in that case.
"""
def test_nested_edit_is_invisible_to_the_enabled_set_check(self, test_display_controller):
"""The original gate: proves why a second one is needed."""
controller = test_display_controller
old = {"hockey-scoreboard": {"enabled": True, "nhl": {"enabled": False}}}
new = {"hockey-scoreboard": {"enabled": True, "nhl": {"enabled": True}}}
# Enabling a league changes no top-level flag.
assert controller._enabled_set_changed(old, new) is False
def test_queues_reconcile_when_enabled_plugin_is_absent(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {} # failed to load
cfg = {"hockey-scoreboard": {"enabled": True, "nhl": {"enabled": True}}}
assert controller._enabled_plugin_not_running(cfg) is True
def test_quiet_when_every_enabled_plugin_is_running(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {"hockey-scoreboard": ["nhl"]}
cfg = {"hockey-scoreboard": {"enabled": True}}
assert controller._enabled_plugin_not_running(cfg) is False
def test_disabled_plugin_does_not_queue(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {}
cfg = {"hockey-scoreboard": {"enabled": False}}
assert controller._enabled_plugin_not_running(cfg) is False
def test_non_plugin_sections_do_not_queue(self, test_display_controller):
"""``schedule``/``display`` carry their own ``enabled`` and are never
in plugin_display_modes -- without the manifest check they would queue
a reconcile, and therefore a filesystem scan, on every config save."""
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {"hockey-scoreboard": ["nhl"]}
cfg = {
"hockey-scoreboard": {"enabled": True},
"schedule": {"enabled": True},
"display": {"enabled": True},
}
assert controller._enabled_plugin_not_running(cfg) is False
def test_non_dict_section_is_ignored(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {}
assert controller._enabled_plugin_not_running({"hockey-scoreboard": "nonsense"}) is False
def test_no_plugin_manager_is_quiet(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager = None
assert controller._enabled_plugin_not_running({"x": {"enabled": True}}) is False
class TestReconcileQueuedThroughSubscriber:
"""End-to-end through the real config-change subscriber, not the helper.
Without the second gate this is the four-day-outage path: the plugin is
enabled, absent, and the save that enables its league sets no flag.
"""
@staticmethod
def _subscriber(controller):
subs = controller.config_service._subscribers['*']
for cb in subs:
if getattr(cb, '__name__', '') == '_controller_config_change':
return cb
raise AssertionError(f"controller subscriber not found among {subs}")
@staticmethod
def _configs(controller, plugin_section_old, plugin_section_new):
"""Build two full configs differing only inside the plugin section --
the subscriber refreshes its cache from these, so they must be real."""
base = copy.deepcopy(controller.config)
old = copy.deepcopy(base)
new = copy.deepcopy(base)
old["hockey-scoreboard"] = plugin_section_old
new["hockey-scoreboard"] = plugin_section_new
return old, new
def test_nested_edit_queues_reconcile_for_absent_plugin(self, test_display_controller):
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {} # validate_config() said False
controller._pending_plugin_reconcile = False
old, new = self._configs(
controller,
{"enabled": True, "nhl": {"enabled": False}},
{"enabled": True, "nhl": {"enabled": True}},
)
# The original gate is blind to this edit ...
assert controller._enabled_set_changed(old, new) is False
self._subscriber(controller)(old, new)
# ... but the reconcile is queued anyway.
assert controller._pending_plugin_reconcile is True
def test_steady_state_does_not_queue_reconcile(self, test_display_controller):
"""Everything enabled is running: an unrelated edit must not queue a
reconcile, or every config save drags a filesystem scan onto the
render thread."""
controller = test_display_controller
controller.plugin_manager.plugin_manifests = {"hockey-scoreboard": {}}
controller.plugin_manager.discovered_plugin_ids.return_value = {"hockey-scoreboard"}
controller.plugin_display_modes = {"hockey-scoreboard": ["nhl"]}
controller._pending_plugin_reconcile = False
old, new = self._configs(
controller,
{"enabled": True, "scroll_speed": 1},
{"enabled": True, "scroll_speed": 2},
)
self._subscriber(controller)(old, new)
assert controller._pending_plugin_reconcile is False
class TestPendingReconcileNotLost:
"""A config change arriving *during* reconcile must not be discarded.
The flag used to be cleared after a successful reconcile. Reconcile has
already read its config by then, so that clear erased a request it never
served and the newest config never reconciled -- the same "my save did
nothing" symptom this path exists to prevent.
"""
def test_request_arriving_during_reconcile_survives(self, test_display_controller):
controller = test_display_controller
controller._pending_plugin_reconcile = True
def reconcile_and_race():
# The watcher thread queues another change while we are mid-flight.
with controller._reconcile_flag_lock:
controller._pending_plugin_reconcile = True
return True
controller._reconcile_enabled_plugins = reconcile_and_race
controller._service_pending_reconcile()
assert controller._pending_plugin_reconcile is True, \
"a config change landing during reconcile was discarded"
def test_flag_cleared_on_a_quiet_success(self, test_display_controller):
controller = test_display_controller
controller._pending_plugin_reconcile = True
controller._reconcile_enabled_plugins = lambda: True
controller._service_pending_reconcile()
assert controller._pending_plugin_reconcile is False
def test_retryable_failure_rearms(self, test_display_controller):
controller = test_display_controller
controller._pending_plugin_reconcile = True
controller._reconcile_enabled_plugins = lambda: False
controller._service_pending_reconcile()
assert controller._pending_plugin_reconcile is True
def test_no_reconcile_when_nothing_pending(self, test_display_controller):
controller = test_display_controller
controller._pending_plugin_reconcile = False
calls = []
controller._reconcile_enabled_plugins = lambda: calls.append(1) or True
controller._service_pending_reconcile()
assert calls == []
+34 -2
View File
@@ -13,6 +13,7 @@ need root and mutate the system, so they are exercised manually instead.
"""
import subprocess
import tempfile
from pathlib import Path
import pytest
@@ -31,6 +32,16 @@ def run_lib(snippet: str, env: dict | None = None) -> subprocess.CompletedProces
)
def _fstype_of(path: object) -> str:
"""Filesystem type backing ``path``, via the same tool the helper uses."""
result = subprocess.run(
["findmnt", "-no", "FSTYPE", "--target", str(path)],
capture_output=True, text=True,
env={"PATH": "/usr/bin:/bin:/usr/sbin:/sbin"},
)
return result.stdout.strip()
def call(fn: str, *args: object, env: dict | None = None) -> str:
joined = " ".join(str(a) for a in args)
result = run_lib(f"{fn} {joined}", env=env)
@@ -195,8 +206,29 @@ class TestOomDetection:
class TestDiskBackedTmpdir:
def test_returns_nothing_when_tmpdir_is_already_disk_backed(self, tmp_path):
# tmp_path is on the regular filesystem, so the default must be kept.
assert call("lm_disk_backed_tmpdir", env={"TMPDIR": str(tmp_path)}) == ""
# Do not assume tmp_path is disk-backed. Debian 13 -- the platform this
# helper exists for -- mounts /tmp as tmpfs, and pytest puts tmp_path
# under /tmp, so this asserted against a *memory*-backed directory and
# failed on the target platform while the helper behaved exactly as
# designed. Search for a directory whose backing store is really disk.
scratch = None
disk_backed = None
for candidate in (tmp_path, Path("/var/tmp"), LIB.parent):
if _fstype_of(candidate) not in ("tmpfs", "ramfs", ""):
if candidate is tmp_path:
disk_backed = candidate
else:
scratch = Path(tempfile.mkdtemp(dir=str(candidate)))
disk_backed = scratch
break
if disk_backed is None:
pytest.skip("no disk-backed directory available to test against")
try:
assert call("lm_disk_backed_tmpdir",
env={"TMPDIR": str(disk_backed)}) == ""
finally:
if scratch is not None:
scratch.rmdir()
def test_redirects_away_from_a_memory_backed_tmpdir(self):
# Debian 13 mounts /tmp as tmpfs, which would otherwise hold the whole
+8 -2
View File
@@ -89,11 +89,17 @@ class TestContextualFormatter:
assert "hello" in out
def test_location_toggle(self):
# Assert on the whole "module.func:lineno" token, not a bare ":42".
# The formatted line starts with an HH:MM:SS timestamp, so a bare
# ":{lineno}" also matches the clock whenever the minute or second
# happens to equal the line number -- about 3% of runs, which is a
# flaky failure with nothing wrong.
record = make_record()
location = f"{record.module}.{record.funcName}:{record.lineno}"
with_loc = ContextualFormatter(include_location=True).format(record)
without = ContextualFormatter(include_location=False).format(record)
assert f":{record.lineno}" in with_loc
assert f":{record.lineno}" not in without
assert location in with_loc
assert location not in without
def test_record_not_mutated_no_double_prefix(self):
# Regression: a record is formatted once PER HANDLER. The formatter
@@ -0,0 +1,63 @@
"""Tests for PluginManager.discovered_plugin_ids().
The config-watcher thread needs the set of discovered plugin ids while the
render thread may be rebuilding plugin_manifests. Iterating that dict directly
can observe a half-populated mapping or raise "dictionary changed size during
iteration", so the accessor snapshots it under the discovery lock.
"""
import tempfile
import threading
from pathlib import Path
import pytest
from src.plugin_system.plugin_manager import PluginManager
@pytest.fixture
def pm():
with tempfile.TemporaryDirectory() as tmp:
yield PluginManager(plugins_dir=str(Path(tmp) / "plugins"))
def test_returns_the_discovered_ids(pm):
pm.plugin_manifests = {"clock-simple": {}, "hockey-scoreboard": {}}
assert pm.discovered_plugin_ids() == {"clock-simple", "hockey-scoreboard"}
def test_empty_when_nothing_discovered(pm):
pm.plugin_manifests = {}
assert pm.discovered_plugin_ids() == set()
def test_is_a_snapshot_not_a_live_view(pm):
"""The caller iterates the result on another thread; it must not alias
the mapping discovery is still writing to."""
pm.plugin_manifests = {"clock-simple": {}}
snapshot = pm.discovered_plugin_ids()
pm.plugin_manifests["hockey-scoreboard"] = {}
assert snapshot == {"clock-simple"}
def test_takes_the_discovery_lock(pm):
"""Guards against the lock being dropped in a later refactor: with the
lock held by another thread the call must block rather than read."""
pm.plugin_manifests = {"clock-simple": {}}
finished = threading.Event()
def call():
pm.discovered_plugin_ids()
finished.set()
pm._discovery_lock.acquire()
try:
# RLock is reentrant per-thread, so use a *different* thread to prove
# the accessor actually waits on it.
t = threading.Thread(target=call, daemon=True)
t.start()
assert not finished.wait(timeout=0.3), "accessor did not take the discovery lock"
finally:
pm._discovery_lock.release()
t.join(timeout=2)
assert finished.is_set()
+99
View File
@@ -0,0 +1,99 @@
"""Frame pacing and FPS health reporting must not depend on the wall clock.
These devices have no RTC, so the system clock jumps by however wrong boot
time was the moment NTP first syncs. The render loop sleeps the *remainder*
of each frame budget:
frame_elapsed = <now> - frame_started
time.sleep(max(0.0, frame_interval - frame_elapsed))
With a wall-clock `now`, a backward jump makes frame_elapsed negative, so
`frame_interval - frame_elapsed` exceeds the whole budget and the render loop
stalls for the size of the correction. A forward jump instead inflates the
p99 and worst-frame numbers the telemetry reports.
"""
import ast
import sys
from pathlib import Path
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
COORD = (Path(__file__).resolve().parent.parent
/ "src" / "vegas_mode" / "coordinator.py")
TREE = ast.parse(COORD.read_text(encoding="utf-8"))
def _assignments_of(name):
"""Every `name = <expr>` in the module, as unparsed source."""
out = []
for node in ast.walk(TREE):
if isinstance(node, ast.Assign):
for target in node.targets:
if isinstance(target, ast.Name) and target.id == name:
out.append((node.lineno, ast.unparse(node.value)))
return out
def test_per_frame_timestamps_are_monotonic():
for name in ("frame_started", "frame_elapsed"):
assigns = _assignments_of(name)
assert assigns, f"{name} is no longer assigned -- has the loop changed?"
for lineno, expr in assigns:
assert "time.time()" not in expr, (
f"{name} at line {lineno} uses the wall clock ({expr!r}). A "
"backward NTP step makes the per-frame delta negative and the "
"loop then sleeps longer than the whole frame budget.")
assert "time.monotonic()" in expr, (
f"{name} at line {lineno} is {expr!r}, expected monotonic")
def test_the_fps_window_is_monotonic():
for lineno, expr in _assignments_of("current_time"):
assert "time.monotonic()" in expr, (
f"current_time at line {lineno} is {expr!r}; fps is frames divided "
"by this delta, so a clock step would corrupt the rate itself")
def test_health_state_is_not_reset_every_iteration():
"""run_iteration() runs once per cycle -- locals here reset every few seconds.
As locals, `last_fps_health_log = 0.0` made the 300s heartbeat fire on the
first sample of every iteration, and a recovery spanning two iterations was
never reported because was_degraded had already gone back to False.
"""
run_iteration = next(
(n for n in ast.walk(TREE)
if isinstance(n, ast.FunctionDef) and n.name == "run_iteration"), None)
assert run_iteration is not None, "run_iteration() not found"
local_names = {t.id for n in ast.walk(run_iteration)
if isinstance(n, ast.Assign)
for t in n.targets if isinstance(t, ast.Name)}
for leaked in ("last_fps_health_log", "was_degraded"):
assert leaked not in local_names, (
f"{leaked} is a local of run_iteration() again, so it resets every "
"cycle -- the heartbeat degenerates to once per iteration")
body = ast.unparse(run_iteration)
assert "self._fps_last_health_log" in body and "self._fps_was_degraded" in body, (
"the health state should live on the coordinator, across iterations")
def test_start_clears_stale_health_state():
"""A new run must not inherit "was degraded" from the previous one."""
start = next((n for n in ast.walk(TREE)
if isinstance(n, ast.FunctionDef) and n.name == "start"), None)
assert start is not None, "start() not found"
body = ast.unparse(start)
assert "self._fps_last_health_log" in body and "self._fps_was_degraded" in body, (
"start() does not reset the FPS health state")
def test_the_degraded_threshold_is_documented():
"""The 90% band is deliberate; say so where the constant is defined."""
source = COORD.read_text(encoding="utf-8")
idx = source.index("_FPS_HEALTHY_FRACTION = ")
preamble = source[max(0, idx - 700):idx]
assert "90%" in preamble or "0.9" in preamble, (
"the degradation threshold is not explained at its definition, so "
"'below target' reads as a bug rather than a deliberate band")
@@ -229,6 +229,44 @@ class TestSavePluginConfig:
"REAL-KEY-0123456789", "an unrelated edit destroyed the API key"
assert env.fresh_load()[PLUGIN_ID]["city"] == "Dallas"
def test_an_unrelated_edit_does_not_erase_array_item_secrets(self, env):
"""The scalar api_key case above, but for a list of credentials.
remove_empty_secrets recursed into dicts only, so a list went into
deep_merge untouched -- and lists merge by *replacement*. Saving any
unrelated field posted [{"token": ""}, ...] straight over the stored
array and destroyed every token in it at once.
"""
assert self._save(env, {"accounts": [
{"name": "a", "token": "REAL-A"},
{"name": "b", "token": "REAL-B"},
], "city": "Austin"}).status_code == 200
# the user changes the city; both masked tokens ride along blank
assert self._save(env, {"accounts": [
{"name": "a", "token": ""},
{"name": "b", "token": ""},
], "city": "Dallas"}).status_code == 200
merged = env.fresh_load()[PLUGIN_ID]
assert [a.get("token") for a in merged["accounts"]] == \
["REAL-A", "REAL-B"], "an unrelated edit destroyed the array secrets"
assert [a["name"] for a in merged["accounts"]] == ["a", "b"]
assert merged["city"] == "Dallas"
def test_one_array_secret_can_be_changed_without_losing_the_rest(self, env):
assert self._save(env, {"accounts": [
{"name": "a", "token": "REAL-A"},
{"name": "b", "token": "REAL-B"},
]}).status_code == 200
assert self._save(env, {"accounts": [
{"name": "a", "token": ""},
{"name": "b", "token": "NEW-B"},
]}).status_code == 200
merged = env.fresh_load()[PLUGIN_ID]
assert [a.get("token") for a in merged["accounts"]] == ["REAL-A", "NEW-B"]
def test_a_secret_can_still_be_changed(self, env):
"""Dropping blanks must not stop a real new value from being saved."""
self._save(env, {"api_key": "first-key"})
@@ -0,0 +1,45 @@
"""The validation logging ran before separate_secrets, so it logged credentials.
api_v3's plugin-config save logged `Full config: {plugin_config}` at INFO and
`Config that failed: {plugin_config}` at ERROR. Both run *before*
separate_secrets(), so plugin_config still held the values the user just typed
into the form -- API keys and tokens went to the journal in clear text.
"""
import re
from pathlib import Path
import pytest
SOURCE = (Path(__file__).resolve().parents[2]
/ "web_interface" / "blueprints" / "api_v3.py")
#: Objects that still hold submitted secret values at the point these log
#: calls run. Interpolating one whole into a log message leaks credentials.
UNREDACTED = ("plugin_config", "secrets_config", "current_secrets")
def _logging_lines():
for number, line in enumerate(SOURCE.read_text(encoding="utf-8").splitlines(), 1):
stripped = line.strip()
if stripped.startswith("#"):
continue
if re.match(r"logger\.(debug|info|warning|error|critical|exception)\(", stripped):
yield number, stripped
@pytest.mark.parametrize("name", UNREDACTED)
def test_no_log_call_interpolates_a_whole_secret_bearing_object(name):
# {name} or {name['k']} leaks; {list(name.keys())} and {len(name)} do not.
bare = re.compile(r"\{" + re.escape(name) + r"(\[[^\]]*\])*\}")
offenders = [f"{n}: {text}" for n, text in _logging_lines() if bare.search(text)]
assert not offenders, (
f"{name} still holds submitted secrets where these log calls run:\n "
+ "\n ".join(offenders))
def test_the_guard_would_notice_a_reintroduced_leak():
"""Pin the detector itself, so a rewrite cannot silently stop matching."""
bare = re.compile(r"\{" + re.escape("plugin_config") + r"(\[[^\]]*\])*\}")
assert bare.search('logger.info(f"Full config: {plugin_config}")')
assert bare.search("logger.error(f\"{plugin_config['api_key']}\")")
assert not bare.search('logger.info(f"{list(plugin_config.keys())}")')
+65
View File
@@ -17,6 +17,7 @@ from src.web_interface.secret_helpers import (
separate_secrets,
mask_secret_fields,
mask_all_secret_values,
merge_secrets,
remove_empty_secrets,
)
@@ -239,3 +240,67 @@ class TestRemoveEmptySecrets:
def test_keeps_falsey_non_string_values(self):
# 0 and False are neither None nor blank strings — they are kept.
assert remove_empty_secrets({"a": 0, "b": False}) == {"a": 0, "b": False}
class TestArrayItemSecrets:
"""Lists merge by replacement, so a blanked array wipes stored credentials.
remove_empty_secrets recursed into dicts but let a list through untouched,
so [{"token": ""}] went straight into deep_merge and overwrote the stored
list. Saving any unrelated setting destroyed every token in the array.
"""
STORED = {"accounts": [{"name": "a", "token": "REAL-A"},
{"name": "b", "token": "REAL-B"}]}
def test_an_unrelated_save_keeps_every_stored_token(self):
posted = {"accounts": [{"name": "a", "token": ""},
{"name": "b", "token": ""}]}
merged = merge_secrets(self.STORED, remove_empty_secrets(posted))
assert [a["token"] for a in merged["accounts"]] == ["REAL-A", "REAL-B"]
def test_editing_one_entry_leaves_the_others_alone(self):
posted = {"accounts": [{"name": "a", "token": ""},
{"name": "b", "token": "NEW-B"}]}
merged = merge_secrets(self.STORED, remove_empty_secrets(posted))
assert [a["token"] for a in merged["accounts"]] == ["REAL-A", "NEW-B"]
def test_a_new_entry_is_appended(self):
posted = {"accounts": [{"name": "a", "token": ""},
{"name": "b", "token": ""},
{"name": "c", "token": "NEW-C"}]}
merged = merge_secrets(self.STORED, remove_empty_secrets(posted))
assert [a["token"] for a in merged["accounts"]] == \
["REAL-A", "REAL-B", "NEW-C"]
def test_a_list_of_bare_strings_merges_by_index(self):
merged = merge_secrets({"keys": ["K1", "K2", "K3"]},
remove_empty_secrets({"keys": ["", "K2-NEW", ""]}))
assert merged["keys"] == ["K1", "K2-NEW", "K3"]
def test_an_all_blank_list_is_dropped_entirely(self):
posted = {"accounts": [{"token": ""}, {"token": ""}]}
assert "accounts" not in remove_empty_secrets(posted)
def test_plain_dict_secrets_are_unaffected(self):
merged = merge_secrets({"api_key": "OLD", "other": "keep"},
remove_empty_secrets({"api_key": "", "other": "changed"}))
assert merged == {"api_key": "OLD", "other": "changed"}
def test_a_removed_entry_takes_its_secret_with_it(self):
"""The regular config's list is authoritative about how many items
exist, and the secrets list runs parallel to it -- see
ConfigManager._strip_secrets_recursive. So a shorter incoming list
must shorten the stored secrets too, or the two fall out of step."""
posted = {"accounts": [{"name": "a", "token": "NEW-A"}]}
merged = merge_secrets(self.STORED, remove_empty_secrets(posted))
assert [a["token"] for a in merged["accounts"]] == ["NEW-A"]
def test_an_emptied_item_stays_a_dict_not_none(self):
"""None there stops the list looking parallel, and
_strip_secrets_recursive then drops the whole key from the main
config -- deleting the item's non-secret fields as well."""
pruned = remove_empty_secrets(
{"accounts": [{"token": "real"}, {"token": ""}]})
assert pruned["accounts"] == [{"token": "real"}, {}]
assert None not in pruned["accounts"]
+41 -32
View File
@@ -22,7 +22,8 @@ logger = logging.getLogger(__name__)
from src.web_interface.api_helpers import success_response, error_response, validate_request_json
from src.web_interface.errors import ErrorCode
from src.web_interface.secret_helpers import (find_secret_fields, mask_all_secret_values,
remove_empty_secrets, separate_secrets,
merge_secrets, remove_empty_secrets,
separate_secrets,
strip_masked_values)
from src.web_interface.error_handler import describe_exception, redact_text
from src.plugin_system.operation_types import OperationType
@@ -597,7 +598,7 @@ def save_dim_schedule_config():
dim_brightness = 30
else:
dim_brightness = int(dim_brightness_raw)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return error_response(
ErrorCode.VALIDATION_ERROR,
"dim_brightness must be an integer between 0 and 100",
@@ -797,7 +798,7 @@ def save_main_config():
}), 400
try:
target_fps = int(raw_target_fps)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({
'status': 'error',
'message': "Invalid value for target_fps: must be an integer"
@@ -867,7 +868,7 @@ def save_main_config():
mux_val = int(data['multiplexing'])
if mux_val < 0 or mux_val > 22:
return jsonify({'status': 'error', 'message': f"Invalid multiplexing value '{data['multiplexing']}'. Must be an integer from 0 to 22."}), 400
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error', 'message': f"Invalid multiplexing value '{data['multiplexing']}'. Must be an integer from 0 to 22."}), 400
# Validate pixel_mapper_config (free-form mapper string, e.g. "U-mapper;Rotate:90")
@@ -885,7 +886,7 @@ def save_main_config():
rat_val = int(data['row_address_type'])
if rat_val < 0 or rat_val > 4:
return jsonify({'status': 'error', 'message': f"Invalid row_address_type '{data['row_address_type']}'. Must be an integer from 0 to 4."}), 400
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error', 'message': f"Invalid row_address_type '{data['row_address_type']}'. Must be an integer from 0 to 4."}), 400
# Handle hardware settings
@@ -910,7 +911,7 @@ def save_main_config():
if rp1_val not in (0, 1):
return jsonify({'status': 'error', 'message': "rp1_rio must be 0 (PIO) or 1 (RIO)"}), 400
current_config['display']['runtime']['rp1_rio'] = rp1_val
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error', 'message': "rp1_rio must be 0 or 1"}), 400
# Handle checkboxes - coerce to bool to ensure proper JSON types
@@ -963,7 +964,7 @@ def save_main_config():
copies = None
try:
copies = int(data['double_sided_copies'])
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
if enabled:
return jsonify({'status': 'error', 'message': "Double-sided copies must be an integer"}), 400
if copies is not None and not (2 <= copies <= 8):
@@ -1036,7 +1037,7 @@ def save_main_config():
if data.get('vegas_extend_threshold_screens') not in ('', None):
try:
screens = float(data['vegas_extend_threshold_screens'])
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({
'status': 'error',
'message': "Invalid value for vegas_extend_threshold_screens: "
@@ -1053,7 +1054,7 @@ def save_main_config():
if data.get('vegas_max_plugin_width_ratio') not in ('', None):
try:
ratio = float(data['vegas_max_plugin_width_ratio'])
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({
'status': 'error',
'message': "Invalid value for vegas_max_plugin_width_ratio: "
@@ -1101,7 +1102,7 @@ def save_main_config():
continue
try:
int_value = int(raw_value)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({
'status': 'error',
'message': f"Invalid value for {field_name}: must be an integer"
@@ -1153,7 +1154,7 @@ def save_main_config():
if not (1024 <= port_val <= 65535):
return jsonify({'status': 'error', 'message': "sync_port must be between 1024 and 65535"}), 400
current_config['sync']['port'] = port_val
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error', 'message': "sync_port must be an integer"}), 400
if "sync_follower_position" in data:
@@ -1197,7 +1198,7 @@ def save_main_config():
raw_value = data.pop(field)
try:
int_value = int(raw_value)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error',
'message': f"Invalid duration for {field}: must be an integer"}), 400
current_config['display']['display_durations'][field] = int_value
@@ -1220,7 +1221,7 @@ def save_main_config():
continue
try:
int_value = int(raw_value)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error',
'message': f"Invalid duration for mode '{mode_key}': must be an integer"}), 400
current_config['display']['display_durations'][mode_key] = int_value
@@ -1296,7 +1297,10 @@ def save_main_config():
if secrets_config:
if plugin_id not in current_secrets:
current_secrets[plugin_id] = {}
current_secrets[plugin_id] = deep_merge(current_secrets[plugin_id], secrets_config)
# Lists merge by replacement, so deep_merge here wrote a
# blanked array straight over the stored credentials.
current_secrets[plugin_id] = merge_secrets(
current_secrets[plugin_id], secrets_config)
# Save secrets file
api_v3.config_manager.save_raw_file_content('secrets', current_secrets)
@@ -5118,7 +5122,7 @@ def save_plugin_config():
converted_array.append(int(v))
else:
converted_array.append(float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
converted_array.append(v)
else:
converted_array.append(v)
@@ -5143,7 +5147,7 @@ def save_plugin_config():
converted_array.append(int(v))
else:
converted_array.append(float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
converted_array.append(v)
else:
converted_array.append(v)
@@ -5180,7 +5184,7 @@ def save_plugin_config():
converted_array.append(int(v))
else:
converted_array.append(float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
converted_array.append(v)
else:
converted_array.append(v)
@@ -5204,7 +5208,7 @@ def save_plugin_config():
converted_array.append(int(v))
else:
converted_array.append(float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
converted_array.append(v)
else:
converted_array.append(v)
@@ -5371,7 +5375,7 @@ def save_plugin_config():
if isinstance(v, str):
try:
converted.append(int(v) if item_type == 'integer' else float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
converted.append(v)
else:
converted.append(v)
@@ -5496,7 +5500,7 @@ def save_plugin_config():
try:
normalized[key] = int(value_stripped)
continue
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
pass
elif isinstance(value, (int, float)):
normalized[key] = int(value)
@@ -5514,7 +5518,7 @@ def save_plugin_config():
try:
normalized[key] = float(value_stripped)
continue
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
pass
elif isinstance(value, (int, float)):
normalized[key] = float(value)
@@ -5569,7 +5573,7 @@ def save_plugin_config():
try:
normalized_array.append(int(v))
continue
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
pass
elif isinstance(v, (int, float)):
normalized_array.append(int(v))
@@ -5579,7 +5583,7 @@ def save_plugin_config():
try:
normalized_array.append(float(v))
continue
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
pass
elif isinstance(v, (int, float)):
normalized_array.append(float(v))
@@ -5595,7 +5599,7 @@ def save_plugin_config():
if isinstance(v, str):
try:
normalized_array.append(int(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
normalized_array.append(v)
elif isinstance(v, (int, float)):
normalized_array.append(int(v))
@@ -5609,7 +5613,7 @@ def save_plugin_config():
if isinstance(v, str):
try:
normalized_array.append(float(v))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
normalized_array.append(v)
else:
normalized_array.append(v)
@@ -5632,7 +5636,7 @@ def save_plugin_config():
if isinstance(value, str):
try:
normalized[key] = int(value)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
normalized[key] = value
else:
normalized[key] = value
@@ -5641,7 +5645,7 @@ def save_plugin_config():
if isinstance(value, str):
try:
normalized[key] = float(value)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
normalized[key] = value
else:
normalized[key] = value
@@ -5675,8 +5679,10 @@ def save_plugin_config():
if schema:
# Log what we're validating for debugging
logger.info(f"Validating config for {plugin_id}")
# Only the shape. plugin_config still holds the submitted secret
# values at this point -- separate_secrets does not run until
# below -- so logging it wrote live credentials to the journal.
logger.info(f"Config keys being validated: {list(plugin_config.keys())}")
logger.info(f"Full config: {plugin_config}")
# Get enhanced schema keys (including injected core properties)
# We need to create an enhanced schema to get the actual allowed keys
@@ -5699,7 +5705,8 @@ def save_plugin_config():
# Log validation errors for debugging
logger.error(f"Config validation failed for {plugin_id}")
logger.error(f"Validation errors: {validation_errors}")
logger.error(f"Config that failed: {plugin_config}")
# Keys only, for the same reason as above.
logger.error(f"Config keys that failed: {list(plugin_config.keys())}")
logger.error(f"Schema properties: {list(enhanced_schema.get('properties', {}).keys())}")
# Also print to console for immediate visibility
@@ -5750,7 +5757,9 @@ def save_plugin_config():
if secrets_config:
if plugin_id not in current_secrets:
current_secrets[plugin_id] = {}
current_secrets[plugin_id] = deep_merge(current_secrets[plugin_id], secrets_config)
# See above -- secrets lists must merge element-wise.
current_secrets[plugin_id] = merge_secrets(
current_secrets[plugin_id], secrets_config)
# Save secrets file
try:
api_v3.config_manager.save_raw_file_content('secrets', current_secrets)
@@ -6779,7 +6788,7 @@ def get_font_preview() -> tuple[Response, int] | Response:
# Safe integer parsing for size
try:
size = int(request.args.get('size', 12))
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return jsonify({'status': 'error', 'message': 'Invalid font size'}), 400
if not font_filename:
@@ -8360,7 +8369,7 @@ def clear_old_errors():
context={'provided_value': raw_max_age},
status_code=400
)
except (ValueError, TypeError):
except (ValueError, TypeError, OverflowError):
return error_response(
error_code=ErrorCode.INVALID_INPUT,
message="max_age_hours must be a valid integer",
File diff suppressed because it is too large Load Diff
-3
View File
@@ -426,9 +426,6 @@ a, button, input, select, textarea {
.md\:hidden { display: none; }
.md\:block { display: block; }
.md\:w-auto { width: auto; }
/* composer.html labels its toolbar buttons `hidden md:inline`, so without
this the label is hidden at every width and the buttons stay icon-only. */
.md\:inline { display: inline; }
}
@media (min-width: 1024px) {
+11 -1
View File
@@ -126,7 +126,17 @@ window.showRestartPending = function(message) {
} catch { /* private browsing */ }
const banner = document.getElementById('restart-pending-banner');
const text = document.getElementById('restart-pending-text');
if (text && message) text.textContent = message;
if (text) {
// Without the else-branch a config save inherited whatever wording the
// previous update left in the DOM: showRestartPending() clears the
// stored text but used to leave the element itself alone. The default
// is read back from the server-rendered copy rather than duplicated
// here, so the template stays the one place that owns the string.
if (text.dataset.defaultText === undefined) {
text.dataset.defaultText = text.textContent.trim();
}
text.textContent = message || text.dataset.defaultText;
}
if (banner) banner.style.display = 'block';
};
File diff suppressed because it is too large Load Diff
@@ -1,804 +0,0 @@
/**
* ComposerCanvas stateless LED matrix canvas renderer.
*
* Coordinate system: LED pixels (integers). All drawing multiplies by SCALE.
* PIL draw.text(x,y) is top-left; canvas fillText(x,y) is baseline.
* Canvas text cy = (actualY + fontSizePx) * SCALE
*
* Anchors: element x/y are offsets from their anchor point:
* xAnchor=null/'left' x is fixed offset from left
* xAnchor='center' x is offset from width/2
* xAnchor='right' x is offset inward from right edge
* yAnchor follows the same pattern with 'top'/'middle'/'bottom'
*
* Breakpoints: elements with minWidth > currentMatrixW are rendered at 25% opacity.
*
* Resize handles: drawn on selected rectangles; 8 handles (corners + edge mids).
*/
window.ComposerCanvas = (() => {
'use strict';
let _canvas = null;
let _ctx = null;
let _showGrid = true;
//: Element types the canvas draws resize handles for. Exported because the
//: editor has to gate its resize and hover behaviour on exactly this list --
//: the two had drifted, so handles appeared on five shapes that could not
//: actually be resized.
const RESIZABLE_TYPES = ['rectangle', 'rounded_rectangle', 'ellipse', 'arc',
'gauge', 'sparkline'];
const DISPLAY_PRESETS = [
{ label: '64×32', w: 64, h: 32 },
{ label: '128×32', w: 128, h: 32 },
{ label: '128×64', w: 128, h: 64 },
{ label: '256×32', w: 256, h: 32 },
{ label: '256×64', w: 256, h: 64 },
];
const FONT_MAP = {
press_start: { family: "'PressStart2P', monospace", sizePx: 8, charW: 8 },
four_by_six: { family: 'monospace', sizePx: 6, charW: 4 },
five_by_seven: { family: 'monospace', sizePx: 7, charW: 5 },
};
const ELEMENT_DEFAULTS = {
text: {
text: 'Hello', font: 'press_start',
r: 255, g: 255, b: 255,
text2: '', lineSpacing: 2, textAlign: 'left',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
dynamic_text: {
binding: { source: 'config', key: '', format: null },
font: 'press_start', textAlign: 'left',
r: 255, g: 200, b: 100,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
clock: {
format: '%H:%M', font: 'press_start',
r: 100, g: 255, b: 100,
format2: '', lineSpacing: 2, textAlign: 'left',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
rectangle: {
width: 20, height: 8,
fillR: 0, fillG: 0, fillB: 128, hasFill: true,
outR: 255, outG: 255, outB: 255, hasOutline: true,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
ellipse: {
width: 24, height: 12,
fillR: 0, fillG: 100, fillB: 200, hasFill: true,
outR: 100, outG: 180, outB: 255, hasOutline: true,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
arc: {
width: 24, height: 24,
startAngle: 0, endAngle: 270, lineWidth: 2,
r: 255, g: 200, b: 0,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
pixel: {
r: 255, g: 255, b: 255,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
rounded_rectangle: {
width: 24, height: 10, borderRadius: 3,
fillR: 0, fillG: 80, fillB: 180, hasFill: true,
outR: 120, outG: 180, outB: 255, hasOutline: true,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
line: {
x0: 0, y0: 16, x1: 63, y1: 16,
r: 180, g: 180, b: 180, lineWidth: 1,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
divider: {
orientation: 'horizontal', y: 16, x: 64,
r: 100, g: 100, b: 100,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
progress_bar: {
barWidth: 60, barHeight: 6,
binding: { source: 'config', key: '', format: null },
r: 80, g: 200, b: 80,
bgR: 30, bgG: 30, bgB: 30, hasBg: true,
outR: 100, outG: 100, outB: 100, hasOutline: true,
previewPct: 65,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
countdown: {
binding: { source: 'config', key: '', format: null },
countdownFormat: 'dh',
font: 'four_by_six', textAlign: 'left',
r: 255, g: 180, b: 0,
previewText: '42d 3h',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
marquee: {
text: 'Scrolling text', font: 'press_start',
r: 255, g: 255, b: 255,
scrollSpeed: 1, gap: 16, direction: 'left',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
section: {
label: 'Section',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
pips: {
count: 5, filled: 3, pipSize: 4, pipSpacing: 2,
r: 255, g: 200, b: 0,
emptyR: 50, emptyG: 50, emptyB: 50, showEmpty: true,
binding: { source: 'config', key: '', format: null },
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
sparkline: {
width: 40, height: 12,
barCount: 8, barSpacing: 1,
r: 80, g: 200, b: 120,
bgR: 30, bgG: 30, bgB: 30, hasBg: false,
binding: { source: 'config', key: '', format: null },
previewData: '0.3,0.6,0.4,0.8,0.5,0.9,0.7,0.85',
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
gauge: {
width: 32, height: 32,
startAngle: 135, endAngle: 45, lineWidth: 3,
binding: { source: 'config', key: '', format: null },
r: 80, g: 220, b: 80,
trackR: 40, trackG: 40, trackB: 40, hasTrack: true,
showLabel: true, font: 'four_by_six', labelR: 200, labelG: 200, labelB: 200,
previewPct: 65,
xAnchor: null, yAnchor: null, minWidth: 0, locked: false, blink: false, visible: true,
},
};
// ── Anchor resolution ────────────────────────────────────────────────
function resolveAnchor(val, anchor, dim) {
if (!anchor || anchor === 'left' || anchor === 'top') return val;
if (anchor === 'center' || anchor === 'middle') return Math.floor(dim / 2) + val;
if (anchor === 'right' || anchor === 'bottom') return dim - val;
return val;
}
function computeActualPos(el, matrixW, matrixH) {
const ax = resolveAnchor(el.x ?? el.x0 ?? 0, el.xAnchor, matrixW);
const ay = resolveAnchor(el.y ?? el.y0 ?? 0, el.yAnchor, matrixH);
return { x: ax, y: ay };
}
// ── Bounding box (LED pixel space) ──────────────────────────────────
function getBoundingBox(el, matrixW, matrixH) {
const { x: ax, y: ay } = computeActualPos(el, matrixW, matrixH);
const finfo = FONT_MAP[el.font] || FONT_MAP.press_start;
switch (el.type) {
case 'text': {
const t1 = el.text || '', t2 = el.text2 || '';
const w = Math.max(t1.length, t2.length) * finfo.charW;
const h = t2 ? finfo.sizePx * 2 + (el.lineSpacing ?? 2) : finfo.sizePx;
const bx = el.textAlign === 'center' ? ax - w / 2 : el.textAlign === 'right' ? ax - w : ax;
return { x: bx, y: ay, w, h };
}
case 'dynamic_text': {
const key = el.binding?.key || '?';
const w = (`{${key}}`).length * finfo.charW;
const bx = el.textAlign === 'center' ? ax - w / 2 : el.textAlign === 'right' ? ax - w : ax;
return { x: bx, y: ay, w, h: finfo.sizePx };
}
case 'clock': {
const t1 = el.format || '%H:%M', t2 = el.format2 || '';
const w = Math.max(t1.length, t2.length) * finfo.charW;
const h = t2 ? finfo.sizePx * 2 + (el.lineSpacing ?? 2) : finfo.sizePx;
const bx = el.textAlign === 'center' ? ax - w / 2 : el.textAlign === 'right' ? ax - w : ax;
return { x: bx, y: ay, w, h };
}
case 'countdown': {
const pt = el.previewText || '--d --h';
const w = pt.length * finfo.charW;
const bx = el.textAlign === 'center' ? ax - w / 2 : el.textAlign === 'right' ? ax - w : ax;
return { x: bx, y: ay, w, h: finfo.sizePx };
}
case 'rectangle':
case 'rounded_rectangle':
case 'ellipse':
case 'arc':
return { x: ax, y: ay, w: el.width, h: el.height };
case 'pixel':
return { x: ax, y: ay, w: 1, h: 1 };
case 'line': {
// Same anchor offset the draw path applies, or the hit box sits where
// the line used to be.
const dx = ax - el.x0, dy = ay - el.y0;
return {
x: Math.min(el.x0, el.x1) + dx, y: Math.min(el.y0, el.y1) + dy,
w: Math.max(1, Math.abs(el.x1 - el.x0)),
h: Math.max(1, Math.abs(el.y1 - el.y0)),
};
}
case 'divider':
return el.orientation === 'horizontal'
? { x: 0, y: ay, w: matrixW, h: 1 }
: { x: ax, y: 0, w: 1, h: matrixH };
case 'progress_bar':
return { x: ax, y: ay, w: el.barWidth ?? 60, h: el.barHeight ?? 6 };
case 'marquee': {
const mfinfo = FONT_MAP[el.font] || FONT_MAP.press_start;
return { x: 0, y: ay, w: matrixW, h: mfinfo.sizePx };
}
case 'gauge':
return { x: ax, y: ay, w: el.width ?? 32, h: el.height ?? 32 };
case 'sparkline':
return { x: ax, y: ay, w: el.width ?? 40, h: el.height ?? 12 };
case 'pips': {
const pc = el.count ?? 5, ps = el.pipSize ?? 4, pg = el.pipSpacing ?? 2;
return { x: ax, y: ay, w: pc * ps + (pc - 1) * pg, h: ps };
}
case 'section': {
// Was 0x0, so the element was unselectable except through the 3px
// hit-test padding and drew nothing at all -- a user adding one from
// the palette saw an empty canvas.
// Same font resolution as the draw case below, or the box will not
// match the glyphs: getBoundingBox's shared `finfo` falls back to
// press_start, and a section has no font of its own.
const sinfo = FONT_MAP[el.font] || FONT_MAP.four_by_six;
const label = el.label || 'Section';
return { x: ax, y: ay, w: label.length * sinfo.charW, h: sinfo.sizePx };
}
default:
return { x: ax, y: ay, w: 4, h: 4 };
}
}
// ── Resize handle support ─────────────────────────────────────────────
// Returns 8 handle points for a rectangle in LED pixel space
function _getRectHandles(el, matrixW, matrixH) {
const { x: ax, y: ay } = computeActualPos(el, matrixW, matrixH);
const w = el.width, h = el.height;
const cx = ax + w / 2, cy = ay + h / 2;
return {
nw: { x: ax, y: ay },
n: { x: cx, y: ay },
ne: { x: ax + w, y: ay },
w: { x: ax, y: cy },
e: { x: ax + w, y: cy },
sw: { x: ax, y: ay + h },
s: { x: cx, y: ay + h },
se: { x: ax + w, y: ay + h },
};
}
// Returns the handle direction under LED-space point (lx, ly), or null
function getResizeHandle(el, lx, ly, matrixW, matrixH) {
if (!RESIZABLE_TYPES.includes(el.type)) return null;
const handles = _getRectHandles(el, matrixW, matrixH);
const PAD = 4;
for (const [dir, pt] of Object.entries(handles)) {
if (Math.abs(lx - pt.x) <= PAD && Math.abs(ly - pt.y) <= PAD) return dir;
}
return null;
}
const _HANDLE_CURSORS = {
nw: 'nw-resize', n: 'n-resize', ne: 'ne-resize',
w: 'w-resize', e: 'e-resize',
sw: 'sw-resize', s: 's-resize', se: 'se-resize',
};
function getCursorForHandle(handle) {
return _HANDLE_CURSORS[handle] || 'crosshair';
}
// ── Hit test ─────────────────────────────────────────────────────────
function hitTest(el, lx, ly, matrixW, matrixH) {
const PAD = 3;
const bb = getBoundingBox(el, matrixW, matrixH);
return (
lx >= bb.x - PAD && lx <= bb.x + bb.w + PAD &&
ly >= bb.y - PAD && ly <= bb.y + bb.h + PAD
);
}
// ── Draw a single element ─────────────────────────────────────────────
function _drawElement(ctx, el, SCALE, matrixW, matrixH, opts = {}) {
const s = SCALE;
const { x: ax, y: ay } = computeActualPos(el, matrixW, matrixH);
const belowBreakpoint = el.minWidth > 0 && matrixW < el.minWidth;
const hidden = el.visible === false;
ctx.save();
if (hidden) ctx.globalAlpha = 0.12;
else if (belowBreakpoint) ctx.globalAlpha = 0.25;
// Blink animation: when blinkOff, fully hide blinking elements
if (el.blink) {
if (opts.blinkOff) { ctx.restore(); return; }
ctx.globalAlpha *= 0.55;
}
// Helper: compute draw X for text alignment
const _textX = (text, finfo) => {
const tw = text.length * finfo.charW * s;
if (el.textAlign === 'center') return ax * s - tw / 2;
if (el.textAlign === 'right') return ax * s - tw;
return ax * s;
};
try {
switch (el.type) {
case 'section': {
// A design-time label: it marks a region for the author and is not
// emitted into the generated plugin. There was no case here at all,
// so adding "Section Label" from the palette drew nothing and left
// the user with an apparently broken control.
const sfinfo = FONT_MAP[el.font] || FONT_MAP.four_by_six;
ctx.font = `${sfinfo.sizePx * s}px ${sfinfo.family}`;
ctx.fillStyle = `rgba(${el.r ?? 120},${el.g ?? 120},${el.b ?? 120},0.85)`;
ctx.textBaseline = 'top';
ctx.fillText(el.label || 'Section', ax * s, ay * s);
break;
}
case 'text':
case 'dynamic_text':
case 'clock': {
const finfo = FONT_MAP[el.font] || FONT_MAP.press_start;
const key = el.binding?.key || '?';
const pv = opts.previewValues?.[key];
// Substitute {variable} tokens in text using previewValues
const _subVars = str => (str || '').replace(/\{(\w+)\}/g, (_, k) => {
const v = opts.previewValues?.[k];
return v !== undefined && v !== '' ? String(v) : `{${k}}`;
});
const displayText =
el.type === 'text' ? _subVars(el.text || '')
: el.type === 'clock' ? (el.format || '%H:%M')
: (pv !== undefined && pv !== '' ? String(pv) : `{${key}}`);
ctx.font = `${finfo.sizePx * s}px ${finfo.family}`;
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.fillText(displayText, _textX(displayText, finfo), (ay + finfo.sizePx) * s);
// Second line (text and clock)
if (el.type === 'text' && el.text2) {
const t2 = _subVars(el.text2);
const y2 = ay + finfo.sizePx + (el.lineSpacing ?? 2);
ctx.fillText(t2, _textX(t2, finfo), (y2 + finfo.sizePx) * s);
}
if (el.type === 'clock' && el.format2) {
const y2 = ay + finfo.sizePx + (el.lineSpacing ?? 2);
ctx.fillText(el.format2, _textX(el.format2, finfo), (y2 + finfo.sizePx) * s);
}
break;
}
case 'countdown': {
const finfo = FONT_MAP[el.font] || FONT_MAP.press_start;
const t = el.previewText || '--d --h';
ctx.font = `${finfo.sizePx * s}px ${finfo.family}`;
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.fillText(t, _textX(t, finfo), (ay + finfo.sizePx) * s);
break;
}
case 'rectangle': {
const rx = ax * s, ry = ay * s;
const rw = el.width * s, rh = el.height * s;
if (el.hasFill) {
ctx.fillStyle = `rgb(${el.fillR},${el.fillG},${el.fillB})`;
ctx.fillRect(rx, ry, rw, rh);
}
if (el.hasOutline) {
ctx.strokeStyle = `rgb(${el.outR},${el.outG},${el.outB})`;
// 1 LED pixel, not 1 canvas pixel: at SCALE>1 an unscaled stroke
// renders thinner than the geometry it outlines.
ctx.lineWidth = s;
ctx.strokeRect(rx, ry, rw, rh);
}
break;
}
case 'ellipse': {
const cx = (ax + el.width / 2) * s;
const cy = (ay + el.height / 2) * s;
const lwPx = s; // 1 LED pixel
// Inset by half the stroke, which straddles the path, so the outline
// stays within the element's bounds.
const rx = Math.max(0, (el.width / 2) * s - (el.hasOutline ? lwPx / 2 : 0));
const ry = Math.max(0, (el.height / 2) * s - (el.hasOutline ? lwPx / 2 : 0));
ctx.beginPath();
ctx.ellipse(cx, cy, rx, ry, 0, 0, Math.PI * 2);
if (el.hasFill) {
ctx.fillStyle = `rgb(${el.fillR},${el.fillG},${el.fillB})`;
ctx.fill();
}
if (el.hasOutline) {
ctx.strokeStyle = `rgb(${el.outR},${el.outG},${el.outB})`;
ctx.lineWidth = lwPx;
ctx.stroke();
}
break;
}
case 'arc': {
const cx = (ax + el.width / 2) * s;
const cy = (ay + el.height / 2) * s;
const lwPx = Math.max(1, el.lineWidth || 2) * s;
const rx = Math.max(0, (el.width / 2) * s - lwPx / 2);
const ry = Math.max(0, (el.height / 2) * s - lwPx / 2);
// PIL: 0°=right, clockwise. Canvas: same with anticlockwise=false
const startRad = (el.startAngle ?? 0) * Math.PI / 180;
const endRad = (el.endAngle ?? 270) * Math.PI / 180;
ctx.beginPath();
ctx.ellipse(cx, cy, rx, ry, 0, startRad, endRad, false);
ctx.strokeStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.lineWidth = lwPx;
ctx.stroke();
break;
}
case 'pixel': {
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.fillRect(ax * s, ay * s, s, s);
break;
}
case 'rounded_rectangle': {
const rx = ax * s, ry = ay * s;
const rw = el.width * s, rh = el.height * s;
const rad = Math.min((el.borderRadius ?? 3) * s, rw / 2, rh / 2);
ctx.beginPath();
ctx.roundRect(rx, ry, rw, rh, rad);
if (el.hasFill) {
ctx.fillStyle = `rgb(${el.fillR},${el.fillG},${el.fillB})`;
ctx.fill();
}
if (el.hasOutline) {
ctx.strokeStyle = `rgb(${el.outR},${el.outG},${el.outB})`;
ctx.lineWidth = s;
ctx.stroke();
}
break;
}
case 'line': {
// ax/ay resolve from el.x0 for a line, so this is the anchor offset.
// Without it a line stayed put while every other type moved.
const dx = ax - el.x0, dy = ay - el.y0;
ctx.strokeStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.lineWidth = Math.max(1, el.lineWidth || 1) * s;
ctx.beginPath();
ctx.moveTo((el.x0 + dx) * s, (el.y0 + dy) * s);
ctx.lineTo((el.x1 + dx) * s, (el.y1 + dy) * s);
ctx.stroke();
break;
}
case 'divider': {
const isH = (el.orientation || 'horizontal') === 'horizontal';
ctx.strokeStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.lineWidth = s;
ctx.beginPath();
if (isH) {
ctx.moveTo(0, ay * s + 0.5);
ctx.lineTo(_canvas.width, ay * s + 0.5);
} else {
ctx.moveTo(ax * s + 0.5, 0);
ctx.lineTo(ax * s + 0.5, _canvas.height);
}
ctx.stroke();
break;
}
case 'pips': {
const pipCount = Math.max(1, el.count ?? 5);
const pvPips = opts.previewValues?.[el.binding?.key];
const filledN = pvPips !== undefined
? Math.max(0, Math.min(pipCount, Math.round(parseFloat(pvPips) || 0)))
: Math.max(0, Math.min(pipCount, el.filled ?? 3));
const ps = Math.max(1, el.pipSize ?? 4);
const pg = Math.max(0, el.pipSpacing ?? 2);
for (let i = 0; i < pipCount; i++) {
const isFilled = i < filledN;
if (!isFilled && !el.showEmpty) continue;
ctx.fillStyle = isFilled
? `rgb(${el.r},${el.g},${el.b})`
: `rgb(${el.emptyR ?? 50},${el.emptyG ?? 50},${el.emptyB ?? 50})`;
ctx.fillRect((ax + i * (ps + pg)) * s, ay * s, ps * s, ps * s);
}
break;
}
case 'sparkline': {
const slW = el.width ?? 40, slH = el.height ?? 12;
const count = Math.max(1, el.barCount ?? 8);
const spacing = el.barSpacing ?? 1;
const barW = Math.max(1, Math.floor((slW - spacing * (count - 1)) / count));
const rawVals = (el.previewData || '').split(',')
.map(v => parseFloat(v.trim())).filter(n => !isNaN(n));
while (rawVals.length < count) rawVals.push(0);
const maxV = Math.max(...rawVals.slice(0, count), 0.001);
const rx = ax * s, ry = ay * s;
if (el.hasBg) {
ctx.fillStyle = `rgb(${el.bgR ?? 30},${el.bgG ?? 30},${el.bgB ?? 30})`;
ctx.fillRect(rx, ry, slW * s, slH * s);
}
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
for (let i = 0; i < count; i++) {
const norm = Math.max(0, Math.min(1, rawVals[i] / maxV));
const barH = Math.max(1, Math.round(slH * norm));
const bx = rx + (barW + spacing) * i * s;
const by = ry + (slH - barH) * s;
ctx.fillRect(bx, by, barW * s, barH * s);
}
break;
}
case 'gauge': {
const gw = (el.width ?? 32), gh = (el.height ?? 32);
const cx = (ax + gw / 2) * s, cy = (ay + gh / 2) * s;
const rx = (gw / 2) * s, ry = (gh / 2) * s;
const lw = Math.max(1, (el.lineWidth ?? 3));
// rx/ry are canvas pixels ((gw/2)*s) but lw is LED pixels, so
// insetting by lw/2 under-corrected by the scale factor while the
// stroke was drawn at lw*s -- the arc spilled outside the element's
// reported bounding box at any SCALE > 1, and the preview stopped
// matching the generated PIL output.
const lwPx = lw * s;
const startDeg = el.startAngle ?? 135;
const endDeg = el.endAngle ?? 45;
// Arc sweep: from startDeg clockwise to endDeg (PIL convention)
const totalSweep = ((endDeg - startDeg) + 360) % 360 || 360;
const pvGauge = opts.previewValues?.[el.binding?.key];
const pct = pvGauge !== undefined
? Math.max(0, Math.min(100, parseFloat(pvGauge) || 0)) / 100
: Math.max(0, Math.min(100, el.previewPct ?? 65)) / 100;
const fillSweep = totalSweep * pct;
const toRad = deg => (deg - 90) * Math.PI / 180; // canvas 0=top, PIL 0=right → offset -90
// Track arc
if (el.hasTrack !== false) {
ctx.beginPath();
ctx.ellipse(cx, cy, rx - lwPx / 2, ry - lwPx / 2, 0, toRad(startDeg), toRad(startDeg + totalSweep), false);
ctx.strokeStyle = `rgb(${el.trackR ?? 40},${el.trackG ?? 40},${el.trackB ?? 40})`;
ctx.lineWidth = lwPx;
ctx.stroke();
}
// Fill arc
if (pct > 0) {
ctx.beginPath();
ctx.ellipse(cx, cy, rx - lwPx / 2, ry - lwPx / 2, 0, toRad(startDeg), toRad(startDeg + fillSweep), false);
ctx.strokeStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.lineWidth = lwPx;
ctx.stroke();
}
// Centre label
if (el.showLabel) {
const gfinfo = FONT_MAP[el.font || 'four_by_six'] || FONT_MAP.four_by_six;
const labelText = Math.round(pct * 100) + '%';
ctx.font = `${gfinfo.sizePx * s}px ${gfinfo.family}`;
ctx.fillStyle = `rgb(${el.labelR ?? 200},${el.labelG ?? 200},${el.labelB ?? 200})`;
const ltw = ctx.measureText(labelText).width;
ctx.fillText(labelText, cx - ltw / 2, cy + (gfinfo.sizePx * s) / 2);
}
break;
}
case 'marquee': {
const finfo = FONT_MAP[el.font] || FONT_MAP.press_start;
const text = el.text || 'Scrolling text';
const tw = text.length * finfo.charW * s;
const gap = (el.gap ?? 16) * s;
const totalW = tw + gap;
const tick = opts.animTick ?? 0;
const speed = (el.scrollSpeed ?? 1) * 2;
const scrolled = (tick * speed) % totalW;
// left: text enters from right; right: text enters from left
const startX = el.direction === 'right'
? scrolled - tw
: matrixW * s - scrolled;
ctx.font = `${finfo.sizePx * s}px ${finfo.family}`;
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
// Clip to canvas width so text doesn't bleed outside
ctx.save();
ctx.beginPath();
ctx.rect(0, ay * s - 1, matrixW * s, (finfo.sizePx + 2) * s);
ctx.clip();
for (let i = -1; i <= 2; i++) {
ctx.fillText(text, startX + i * totalW, (ay + finfo.sizePx) * s);
}
ctx.restore();
break;
}
case 'progress_bar': {
const bw = el.barWidth ?? 60, bh = el.barHeight ?? 6;
const pvPb = opts.previewValues?.[el.binding?.key];
const pct = pvPb !== undefined
? Math.max(0, Math.min(100, parseFloat(pvPb) || 0)) / 100
: Math.max(0, Math.min(100, el.previewPct ?? 65)) / 100;
const rx = ax * s, ry = ay * s;
if (el.hasBg) {
ctx.fillStyle = `rgb(${el.bgR ?? 30},${el.bgG ?? 30},${el.bgB ?? 30})`;
ctx.fillRect(rx, ry, bw * s, bh * s);
}
const fillW = Math.max(0, Math.round(bw * pct));
if (fillW > 0) {
ctx.fillStyle = `rgb(${el.r},${el.g},${el.b})`;
ctx.fillRect(rx, ry, fillW * s, bh * s);
}
if (el.hasOutline) {
ctx.strokeStyle = `rgb(${el.outR ?? 100},${el.outG ?? 100},${el.outB ?? 100})`;
ctx.lineWidth = s;
ctx.strokeRect(rx, ry, bw * s, bh * s);
}
break;
}
}
if (belowBreakpoint) {
ctx.globalAlpha = 0.6;
const bb = getBoundingBox(el, matrixW, matrixH);
ctx.font = `${Math.max(8, s * 2)}px monospace`;
ctx.fillStyle = '#facc15';
ctx.fillText(`${el.minWidth}px`, bb.x * s, (bb.y + 4) * s);
}
} finally {
ctx.restore();
}
}
// ── Selection indicator ──────────────────────────────────────────────
function _drawSelection(ctx, el, SCALE, matrixW, matrixH) {
const bb = getBoundingBox(el, matrixW, matrixH);
const PAD = 2, s = SCALE;
const rx = bb.x * s - PAD, ry = bb.y * s - PAD;
const rw = bb.w * s + PAD * 2, rh = bb.h * s + PAD * 2;
ctx.save();
ctx.strokeStyle = '#3b82f6';
ctx.lineWidth = 1;
ctx.setLineDash([3, 2]);
ctx.strokeRect(rx, ry, rw, rh);
ctx.setLineDash([]);
if (el.xAnchor || el.yAnchor) {
ctx.font = `${Math.max(7, s)}px sans-serif`;
ctx.fillStyle = '#a78bfa';
const anchorText = [
el.xAnchor ? `x:${el.xAnchor[0]}` : '',
el.yAnchor ? `y:${el.yAnchor[0]}` : '',
].filter(Boolean).join(' ');
if (anchorText) ctx.fillText(anchorText, rx + 1, ry - 2);
}
// Resize handles: on rect, rounded rect, ellipse
if (RESIZABLE_TYPES.includes(el.type)) {
const handles = _getRectHandles(el, matrixW, matrixH);
const HS = 5;
ctx.fillStyle = 'white';
ctx.strokeStyle = '#2563eb';
ctx.lineWidth = 1;
for (const pt of Object.values(handles)) {
const hx = pt.x * s - HS / 2;
const hy = pt.y * s - HS / 2;
ctx.fillRect(hx, hy, HS, HS);
ctx.strokeRect(hx, hy, HS, HS);
}
} else {
// Corner dots for non-rectangle elements
ctx.fillStyle = '#3b82f6';
const HS = 4;
for (const [hx, hy] of [
[rx - HS / 2, ry - HS / 2], [rx + rw - HS / 2, ry - HS / 2],
[rx - HS / 2, ry + rh - HS / 2], [rx + rw - HS / 2, ry + rh - HS / 2],
]) ctx.fillRect(hx, hy, HS, HS);
}
ctx.restore();
}
// ── Dimension tooltip while dragging ─────────────────────────────────
function drawDragTooltip(ctx, el, SCALE, matrixW, matrixH) {
const bb = getBoundingBox(el, matrixW, matrixH);
const label = el.type === 'rectangle'
? `${el.width}×${el.height}`
: `${bb.x},${bb.y}`;
const s = SCALE;
ctx.save();
ctx.font = `${Math.max(9, s * 1.5)}px monospace`;
const tw = ctx.measureText(label).width;
const tx = bb.x * s, ty = (bb.y - 2) * s;
ctx.fillStyle = 'rgba(0,0,0,0.7)';
ctx.fillRect(tx - 2, ty - 10, tw + 4, 12);
ctx.fillStyle = 'white';
ctx.fillText(label, tx, ty);
ctx.restore();
}
// ── Public API ───────────────────────────────────────────────────────
function init(canvasEl) {
_canvas = canvasEl;
_ctx = canvasEl.getContext('2d');
}
function setGrid(show) { _showGrid = show; }
function updateCanvasSize(matrixW, matrixH, SCALE) {
if (!_canvas) return;
_canvas.width = matrixW * SCALE;
_canvas.height = matrixH * SCALE;
}
function render(elements, selectedId, matrixW, matrixH, SCALE, opts = {}) {
if (!_ctx) return;
const cW = matrixW * SCALE, cH = matrixH * SCALE;
const bg = opts.bgColor;
_ctx.fillStyle = bg ? `rgb(${bg.r},${bg.g},${bg.b})` : '#000';
_ctx.fillRect(0, 0, cW, cH);
if (_showGrid) {
_ctx.strokeStyle = 'rgba(255,255,255,0.07)';
_ctx.lineWidth = 0.5;
for (let x = SCALE; x < cW; x += SCALE) {
_ctx.beginPath(); _ctx.moveTo(x, 0); _ctx.lineTo(x, cH); _ctx.stroke();
}
for (let y = SCALE; y < cH; y += SCALE) {
_ctx.beginPath(); _ctx.moveTo(0, y); _ctx.lineTo(cW, y); _ctx.stroke();
}
}
for (const el of elements) _drawElement(_ctx, el, SCALE, matrixW, matrixH, opts);
if (opts.showRuler) {
_ctx.save();
_ctx.fillStyle = 'rgba(255,255,255,0.08)';
_ctx.fillRect(0, 0, cW, SCALE); // top strip
_ctx.fillRect(0, 0, SCALE, cH); // left strip
_ctx.strokeStyle = 'rgba(255,255,255,0.5)';
_ctx.fillStyle = 'rgba(255,255,255,0.6)';
_ctx.font = `${Math.max(5, SCALE - 1)}px monospace`;
const step = SCALE >= 4 ? 8 : 16;
for (let px = 0; px <= matrixW; px += step) {
const cx = px * SCALE;
const major = px % 32 === 0;
_ctx.lineWidth = 0.5;
_ctx.beginPath(); _ctx.moveTo(cx, 0); _ctx.lineTo(cx, major ? SCALE : SCALE * 0.5); _ctx.stroke();
if (major && px > 0 && px < matrixW - 4) _ctx.fillText(String(px), cx + 1, SCALE - 1);
}
for (let py = 0; py <= matrixH; py += step) {
const cy = py * SCALE;
const major = py % 32 === 0;
_ctx.beginPath(); _ctx.moveTo(0, cy); _ctx.lineTo(major ? SCALE : SCALE * 0.5, cy); _ctx.stroke();
if (major && py > 0 && py < matrixH - 4) _ctx.fillText(String(py), 1, cy + SCALE - 1);
}
_ctx.restore();
}
if (opts.showGuides) {
_ctx.save();
_ctx.strokeStyle = 'rgba(255,60,60,0.45)';
_ctx.lineWidth = 1;
_ctx.setLineDash([4, 3]);
const mx = Math.floor(cW / 2) + 0.5;
const my = Math.floor(cH / 2) + 0.5;
_ctx.beginPath(); _ctx.moveTo(mx, 0); _ctx.lineTo(mx, cH); _ctx.stroke();
_ctx.beginPath(); _ctx.moveTo(0, my); _ctx.lineTo(cW, my); _ctx.stroke();
_ctx.setLineDash([]);
_ctx.restore();
}
const sel = selectedId != null ? elements.find(e => e.id === selectedId) : null;
if (sel) {
_drawSelection(_ctx, sel, SCALE, matrixW, matrixH);
if (opts.showTooltip) drawDragTooltip(_ctx, sel, SCALE, matrixW, matrixH);
}
}
return {
init, render, setGrid, updateCanvasSize,
hitTest, getBoundingBox, computeActualPos, resolveAnchor,
getResizeHandle, getCursorForHandle,
ELEMENT_DEFAULTS, FONT_MAP, DISPLAY_PRESETS, RESIZABLE_TYPES,
};
})();
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@@ -1,300 +0,0 @@
"""
{{ plugin_name }} — LEDMatrix Plugin
Generated by LEDMatrix Plugin Composer on {{ generated_date }}
Extension points:
update() → add HTTP/MQTT data-fetching logic here
_get_display_values() → map fetched data to display strings
display() → add new elements or adapt layout per display size
"""
from src.plugin_system.base_plugin import BasePlugin
{% if has_clock or has_countdown %}
from datetime import datetime
{% endif %}
{% if has_blink %}
import time
{% endif %}
{% if has_text_template %}
from collections import defaultdict
{% endif %}
class {{ class_name }}(BasePlugin):
def __init__(self, plugin_id, config, display_manager, cache_manager, plugin_manager):
super().__init__(plugin_id, config, display_manager, cache_manager, plugin_manager)
{% for var in config_vars %}
self.{{ var.key }} = config.get({{ var.key | tojson }}, {{ var.default | tojson }})
{% endfor %}
# Live data cache — populated by update(); always {} in static layouts
self._data = {}
def update(self):
"""Fetch and refresh display data.
For dynamic plugins: fetch from APIs/MQTT here and store in self._data.
_get_display_values() will read self._data to produce display strings.
"""
# --- Data sources (add fetch logic here for dynamic plugins) ---
pass
def _get_display_values(self):
"""Map config variables and live data to display-ready strings.
This is the single extension point for v2 data sources:
add self._data lookups here once update() populates them.
"""
return {
{% for var in config_vars %}
{{ var.key | tojson }}: str(self.{{ var.key }}),
{% endfor %}
}
def display(self, force_clear=False):
try:
{% if has_text_template %}
values = defaultdict(str, self._get_display_values())
{% else %}
values = self._get_display_values()
{% endif %}
if force_clear:
self.display_manager.clear()
width = self.display_manager.width
height = self.display_manager.height
{% if bg_color %}
self.display_manager.draw.rectangle([0, 0, width, height], fill={{ bg_color }})
{% endif %}
# ── Elements (rendered bottom to top) ──────────────────────────
{% for el in elements %}
{% set p = " " if el.min_width > 0 else " " %}
{% set pi = (p + " ") if el.blink else p %}
{% if el.min_width > 0 %}
if width >= {{ el.min_width }}: # breakpoint: {{ el.min_width }}px+ displays only
{% endif %}
{% if el.blink %}
{{ p }}if int(time.time() * 2) % 2:
{% endif %}
{% if el.type == 'text' %}
{{ pi }}self.display_manager.draw_text(
{% if el.text_is_template %}
{{ pi }} {{ el.text | tojson }}.format_map(values),
{% else %}
{{ pi }} {{ el.text | tojson }},
{% endif %}
{{ pi }} x={{ el.x_expr }}, y={{ el.y_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% if el.text2 %}
{{ pi }}self.display_manager.draw_text(
{% if el.text_is_template %}
{{ pi }} {{ el.text2 | tojson }}.format_map(values),
{% else %}
{{ pi }} {{ el.text2 | tojson }},
{% endif %}
{{ pi }} x={{ el.x2_expr }}, y={{ el.y2_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% endif %}
{% elif el.type == 'dynamic_text' %}
{% if el.binding_source == 'config' %}
{{ pi }}self.display_manager.draw_text(
{{ pi }} values.get({{ el.binding_key | tojson }}, ''),
{{ pi }} x={{ el.x_expr }}, y={{ el.y_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% endif %}
{% elif el.type == 'clock' %}
{{ pi }}self.display_manager.draw_text(
{{ pi }} datetime.now().strftime({{ el.format | tojson }}),
{{ pi }} x={{ el.x_expr }}, y={{ el.y_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% if el.format2 %}
{{ pi }}self.display_manager.draw_text(
{{ pi }} datetime.now().strftime({{ el.format2 | tojson }}),
{{ pi }} x={{ el.x2_expr }}, y={{ el.y2_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% endif %}
{% elif el.type == 'countdown' %}
{{ pi }}_cd_target = float(values.get({{ el.binding_key | tojson }}, 0) or 0)
{{ pi }}_cd_secs = max(0.0, _cd_target - datetime.now().timestamp())
{% if el.countdown_format == 'dhms' %}
{{ pi }}_cd_d, _cd_rem = divmod(int(_cd_secs), 86400)
{{ pi }}_cd_h, _cd_rem = divmod(_cd_rem, 3600)
{{ pi }}_cd_m, _cd_s = divmod(_cd_rem, 60)
{{ pi }}_cd_str = f'{_cd_d}d {_cd_h:02d}:{_cd_m:02d}:{_cd_s:02d}'
{% elif el.countdown_format == 'hms' %}
{{ pi }}_cd_h, _cd_rem = divmod(int(_cd_secs), 3600)
{{ pi }}_cd_m, _cd_s = divmod(_cd_rem, 60)
{{ pi }}_cd_str = f'{_cd_h}h {_cd_m:02d}:{_cd_s:02d}'
{% elif el.countdown_format == 'dhm' %}
{{ pi }}_cd_d, _cd_rem = divmod(int(_cd_secs), 86400)
{{ pi }}_cd_h, _cd_m = divmod(_cd_rem // 60, 60)
{{ pi }}_cd_str = f'{_cd_d}d {_cd_h:02d}h {_cd_m:02d}m'
{% else %}
{{ pi }}_cd_d, _cd_rem = divmod(int(_cd_secs), 86400)
{{ pi }}_cd_h = _cd_rem // 3600
{{ pi }}_cd_str = f'{_cd_d}d {_cd_h}h'
{% endif %}
{{ pi }}self.display_manager.draw_text(
{{ pi }} _cd_str,
{{ pi }} x={{ el.x_expr }}, y={{ el.y_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% elif el.type == 'rectangle' %}
{{ pi }}self.display_manager.draw.rectangle(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} fill={{ el.fill_tuple }},
{{ pi }} outline={{ el.outline_tuple }},
{{ pi }})
{% elif el.type == 'arc' %}
{{ pi }}self.display_manager.draw.arc(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} start={{ el.start_angle }}, end={{ el.end_angle }},
{{ pi }} fill={{ el.rgb_tuple }},
{{ pi }} width={{ el.line_width }},
{{ pi }})
{% elif el.type == 'ellipse' %}
{{ pi }}self.display_manager.draw.ellipse(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} fill={{ el.fill_tuple }},
{{ pi }} outline={{ el.outline_tuple }},
{{ pi }})
{% elif el.type == 'pixel' %}
{{ pi }}self.display_manager.draw.point(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}],
{{ pi }} fill={{ el.rgb_tuple }},
{{ pi }})
{% elif el.type == 'rounded_rectangle' %}
{{ pi }}self.display_manager.draw.rounded_rectangle(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} radius={{ el.border_radius }},
{{ pi }} fill={{ el.fill_tuple }},
{{ pi }} outline={{ el.outline_tuple }},
{{ pi }})
{% elif el.type in ('line', 'divider') %}
{{ pi }}self.display_manager.draw.line(
{{ pi }} [{{ el.x0_expr }}, {{ el.y0_expr }}, {{ el.x1_expr }}, {{ el.y1_expr }}],
{{ pi }} fill={{ el.rgb_tuple }},
{{ pi }} width={{ el.line_width }},
{{ pi }})
{% elif el.type == 'pips' %}
{{ pi }}_pip_filled = max(0, min({{ el.pip_count }}, int(float(values.get({{ el.binding_key | tojson }}, 0) or 0))))
{{ pi }}for _pip_i in range({{ el.pip_count }}):
{{ pi }} _pip_x = ({{ el.x_expr }}) + _pip_i * ({{ el.pip_size }} + {{ el.pip_spacing }})
{{ pi }} _pip_color = {{ el.fill_tuple }} if _pip_i < _pip_filled else {{ el.empty_tuple }}
{% if not el.show_empty %}
{{ pi }} if _pip_i >= _pip_filled:
{{ pi }} continue
{% endif %}
{{ pi }} self.display_manager.draw.rectangle(
{{ pi }} [_pip_x, {{ el.y_expr }}, _pip_x + {{ el.pip_size }} - 1, ({{ el.y_expr }}) + {{ el.pip_size }} - 1],
{{ pi }} fill=_pip_color,
{{ pi }} )
{% elif el.type == 'sparkline' %}
{{ pi }}_sl_raw = str(values.get({{ el.binding_key | tojson }}, '') or '')
{{ pi }}_sl_vals = [float(v.strip()) for v in _sl_raw.split(',') if v.strip()][:{{ el.bar_count }}]
{{ pi }}_sl_vals += [0.0] * max(0, {{ el.bar_count }} - len(_sl_vals))
{{ pi }}_sl_max = max(_sl_vals) if any(_sl_vals) else 1.0
{{ pi }}_sl_bw = max(1, ({{ el.bar_width_px }} - {{ el.bar_spacing }} * ({{ el.bar_count }} - 1)) // {{ el.bar_count }})
{% if el.bg_tuple != 'None' %}
{{ pi }}self.display_manager.draw.rectangle(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, ({{ el.x_expr }}) + {{ el.bar_width_px }}, ({{ el.y_expr }}) + {{ el.bar_height_px }}],
{{ pi }} fill={{ el.bg_tuple }},
{{ pi }})
{% endif %}
{{ pi }}for _sl_i, _sl_v in enumerate(_sl_vals):
{{ pi }} _sl_norm = max(0.0, min(1.0, _sl_v / (_sl_max or 1)))
{{ pi }} _sl_bh = max(1, round({{ el.bar_height_px }} * _sl_norm))
{{ pi }} _sl_bx = ({{ el.x_expr }}) + (_sl_bw + {{ el.bar_spacing }}) * _sl_i
{{ pi }} _sl_by = ({{ el.y_expr }}) + {{ el.bar_height_px }} - _sl_bh
{{ pi }} self.display_manager.draw.rectangle(
{{ pi }} [_sl_bx, _sl_by, _sl_bx + _sl_bw - 1, _sl_by + _sl_bh - 1],
{{ pi }} fill={{ el.fill_tuple }},
{{ pi }} )
{% elif el.type == 'gauge' %}
{{ pi }}_gv = max(0.0, min(100.0, float(values.get({{ el.binding_key | tojson }}, 0) or 0)))
{{ pi }}_g_total = (({{ el.end_angle }} - {{ el.start_angle }}) % 360) or 360
{{ pi }}_g_sweep = _g_total * _gv / 100.0
{% if el.track_tuple != 'None' %}
{{ pi }}self.display_manager.draw.arc(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} start={{ el.start_angle }}, end={{ el.start_angle }} + _g_total,
{{ pi }} fill={{ el.track_tuple }},
{{ pi }} width={{ el.line_width }},
{{ pi }})
{% endif %}
{{ pi }}if _g_sweep > 0:
{{ pi }} self.display_manager.draw.arc(
{{ pi }} [{{ el.x_expr }}, {{ el.y_expr }}, {{ el.x2_expr }}, {{ el.y2_expr }}],
{{ pi }} start={{ el.start_angle }}, end={{ el.start_angle }} + _g_sweep,
{{ pi }} fill={{ el.rgb_tuple }},
{{ pi }} width={{ el.line_width }},
{{ pi }} )
{% if el.show_label %}
{{ pi }}_g_cx = ({{ el.x_expr }}) + ({{ el.x2_expr }} - ({{ el.x_expr }})) // 2
{{ pi }}_g_cy = ({{ el.y_expr }}) + ({{ el.y2_expr }} - ({{ el.y_expr }})) // 2
{{ pi }}self.display_manager.draw_text(
{{ pi }} f'{int(_gv)}%',
{{ pi }} x=_g_cx, y=_g_cy,
{{ pi }} color={{ el.label_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% endif %}
{% elif el.type == 'marquee' %}
{{ pi }}_{{ el.data_key }}_text = {{ el.text | tojson }}
{{ pi }}_{{ el.data_key }}_tw = len(_{{ el.data_key }}_text) * {{ el.char_w }}
{{ pi }}_{{ el.data_key }}_x = int(self._data.get({{ el.data_key | tojson }}, width))
{% if el.direction == 'right' %}
{{ pi }}_{{ el.data_key }}_x += {{ el.scroll_speed }}
{{ pi }}if _{{ el.data_key }}_x > width:
{{ pi }} _{{ el.data_key }}_x = -(_{{ el.data_key }}_tw + {{ el.gap }})
{% else %}
{{ pi }}_{{ el.data_key }}_x -= {{ el.scroll_speed }}
{{ pi }}if _{{ el.data_key }}_x < -(_{{ el.data_key }}_tw + {{ el.gap }}):
{{ pi }} _{{ el.data_key }}_x = width
{% endif %}
{{ pi }}self._data[{{ el.data_key | tojson }}] = _{{ el.data_key }}_x
{{ pi }}self.display_manager.draw_text(
{{ pi }} _{{ el.data_key }}_text,
{{ pi }} x=_{{ el.data_key }}_x, y={{ el.y_expr }},
{{ pi }} color={{ el.rgb_tuple }},
{{ pi }} font=self.display_manager.{{ el.font_attr }},
{{ pi }})
{% elif el.type == 'progress_bar' %}
{{ pi }}_pb_x = {{ el.x_expr }}
{{ pi }}_pb_y = {{ el.y_expr }}
{{ pi }}_pb_pct = max(0.0, min(100.0, float(values.get({{ el.binding_key | tojson }}, 0) or 0))) / 100.0
{{ pi }}_pb_fill_w = int({{ el.bar_width }} * _pb_pct)
{{ pi }}self.display_manager.draw.rectangle(
{{ pi }} [_pb_x, _pb_y, _pb_x + {{ el.bar_width }}, _pb_y + {{ el.bar_height }}],
{{ pi }} fill={{ el.bg_tuple }},
{{ pi }} outline={{ el.outline_tuple }},
{{ pi }})
{{ pi }}if _pb_fill_w > 0:
{{ pi }} self.display_manager.draw.rectangle(
{{ pi }} [_pb_x, _pb_y, _pb_x + _pb_fill_w, _pb_y + {{ el.bar_height }}],
{{ pi }} fill={{ el.fill_tuple }},
{{ pi }} )
{% else %}
{{ pi }}pass # element type "{{ el.type }}" draws nothing
{% endif %}
{% endfor %}
# ── End elements ───────────────────────────────────────────────
self.display_manager.update_display()
except Exception as e:
self.logger.error('Display error: %s', e, exc_info=True)