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Author SHA1 Message Date
J. Nick Koston 7d12b984a8 [core] address review polish on main-loop decoupling
Doc and test updates from a code review of this PR:

- Correct the `tail_us == 0 on Phase A-only ticks` claim in the
  Application::loop() comment and the RuntimeStatsCollector::record_loop_active
  docstring. `loop_tail_start_us` is set to `loop_before_end_us`, and
  `loop_now_us` is sampled later, so `tail_us` on Phase A-only ticks is
  the small gate-check + record prefix — tiny but non-zero.
  (Also flagged by Copilot on application.h:623 and runtime_stats.h:45.)

- Call out ESP8266 as the floor case in the WDT_FEED_INTERVAL_MS margin
  table. Its soft WDT (~1.6 s) is the tightest margin at ~5x, so future
  changes to the constant need to preserve comfortable headroom there.

- Tighten the test lower bound at tests/integration/test_loop_interval_decoupling.py
  from `2 <= loop_delta <= 6` to `3 <= loop_delta <= 6`. Allowing 2 would
  let a >50% slowdown from the 4-in-2s nominal pass as CI jitter, which
  undermines the regression signal. 3 keeps the test honest while still
  absorbing realistic CI jitter.

- Add a second integration test
  (test_loop_interval_default_not_pulled_forward) that covers the inverse
  direction: at the default loop_interval_ with a fast scheduler item
  (5 ms — well under the old delay_time/2 = 8 ms floor), the component
  phase must still run at ~62 Hz, not the pre-fix ~128 Hz. This locks
  down the original 128 Hz → 62 Hz regression that motivated the PR.
2026-04-18 17:32:29 -05:00
J. Nick Koston a0ac226e6c [core] decouple main loop cadence from scheduler wake timing
Restructures Application::loop() into two independent phases to stop the
scheduler from silently pulling the component loop cadence forward.

Before: Application::loop() bounded its sleep by
  min(loop_interval_ - elapsed, next_schedule_in())
with a delay_time/2 floor. Any scheduler item due sooner than
loop_interval_/2 dragged the whole component phase with it. On a typical
ESP32 config with default loop_interval_=16ms, combined scheduler
activity from api / esp32_ble / esp32_ble_tracker / debug was keeping
every component's loop() running at ~128 Hz instead of the documented
~62 Hz.

This has become more visible recently as more components convert to
PollingComponent (which uses set_interval internally) and more in-tree
code uses set_interval / set_timeout directly. Adding or removing any
scheduled item silently changed every other component's loop cadence.
App.set_loop_interval() for power savings was also silently defeated.

After:
- Phase A (every tick): drain wake notifications, run scheduler.call(),
  feed WDT
- Phase B (gated by loop_interval_ or HighFrequencyLoopRequester):
  iterate registered components and update last_loop_

Sleep = min(time-until-next-component-phase, next_schedule_in()). When
a scheduler event wakes us early, Phase A services it and the component
phase stays gated independently. loop_interval_ is now a true minimum
interval between component phases.

The delay_time/2 floor is removed. Any legitimate need to wake faster
than loop_interval_ has proper mechanisms:
- HighFrequencyLoopRequester for sustained fast-loop needs
- Application::wake_loop_threadsafe() from any context (new in 2026.4.0)
  for one-shot wake-on-event

Also guards against set_interval(0) misuse — it asks the main loop to
spin forever, which was never the intended API. Warns at creation time
pointing authors at HighFrequencyLoopRequester. set_timeout(0)/defer()
is unaffected; zero-delay one-shots remain legitimate.

Runtime stats: process_pending_stats is now called on every tick (not
just when the component phase runs) so log_interval_ isn't quantized to
the component-phase cadence. Added an inline fast-path gate in
runtime_stats.h that early-outs unless now >= next_log_time_, keeping
Application::loop() slim; the log_stats_ work stays out-of-line.

Ordering constraints preserved:
- defer() callbacks still FIFO before components same-tick (Phase A
  runs before Phase B)
- Scheduled items still execute before components when both due
- Scheduled callbacks still run on main thread only
- loop_component_start_time_ is still set fresh at each component's loop
- WDT is still fed at least once per tick
2026-04-16 14:27:39 -10:00