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Commits
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89847ed06e | ||
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0eceb1d5e2 |
@@ -10,6 +10,20 @@ Format follows [Keep a Changelog](https://keepachangelog.com/en/1.1.0/). Version
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---
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## [0.6.7-oled-edition] — 2026-05-23
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UF2s attached to [the GitHub release](https://github.com/MarcelineVPQ/DS5Dongle-OLED-Edition/releases/tag/v0.6.7-oled-edition) (built by `.github/workflows/release.yml`).
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### Changed
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- **Charge ETA now shows a provisional estimate immediately on plug-in.** Instead of sitting on `~--m` for the ~15-20 min until the first 10% step is timed, the Status screen shows a default-rate estimate `~Nm?` (the trailing `?` marks it provisional) the moment charging starts. The `?` drops and the number switches to the measured rate once a clean 10% step completes. Default is ~15 min per 10% step (`kDefaultStepUs`), taper-weighted exactly like the measured path, so the provisional figure is in the right ballpark and self-corrects.
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### Companion web tool
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- `DS5Dongle-OLED-Config-Web` gains **lightbar controls** (mode dropdown + four favorite-color pickers) in the config view, the provisional charge-ETA token in the OLED preview to match this firmware, and translations for two preview notes that were English-only. Build housekeeping: `tsconfig.tsbuildinfo` is no longer tracked.
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---
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## [0.6.6-oled-edition] — 2026-05-23
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Community-issue follow-ups: configurable OLED idle-ladder thresholds (#5) and a diagnostic counter clarifying the trigger-flow numbers (#6). UF2s attached to [the GitHub release](https://github.com/MarcelineVPQ/DS5Dongle-OLED-Edition/releases/tag/v0.6.6-oled-edition) (built by `.github/workflows/release.yml`). The companion `DS5Dongle-OLED-Config-Web` config tool gains matching screen-timeout controls and is synced to the v0.6.5+ `Config_body` layout (fixes a latent issue where saving via the old web tool would zero the lightbar fields).
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+32
-12
@@ -535,12 +535,20 @@ void handle_buttons() {
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// step's taper weight); the remaining steps are then re-weighted. This makes
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// the estimate consistent whether the user plugged in near-empty or near-full.
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struct ChargeEta {
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bool charging; // pstate == 1 (so the token shows only while charging)
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bool valid; // at least one full step timed → minutes is meaningful
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int minutes; // estimated minutes to 100%
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bool charging; // pstate == 1 (so the token shows only while charging)
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bool valid; // minutes is meaningful (provisional or measured)
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bool provisional; // true until a full step is timed — using the default rate
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int minutes; // estimated minutes to 100%
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};
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ChargeEta g_charge_eta{};
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// Default bulk-step duration used for a provisional estimate before any real
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// step has been timed, so the token shows "~Nm?" immediately on plug-in instead
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// of sitting on "~--m" for ~15-20 min. Tuned to an observed ~15 min per 10% on
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// this dongle's charge current; it self-corrects to the measured rate (and drops
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// the "?") as soon as the first clean step completes.
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constexpr float kDefaultStepUs = 15.0f * 60.0f * 1000000.0f;
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// Relative time the step *ending* at `to_level` (10% units, 1..10) takes vs a
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// bulk step. Tuned to the Li-ion CV taper: ~80% onward stretches out.
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static float charge_step_weight(int to_level) {
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@@ -605,20 +613,30 @@ void sample_charge_eta() {
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}
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g_charge_eta.charging = true;
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if (ring_count > 0 && cur_step < 10) {
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float bulk = 0.0f;
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for (int i = 0; i < ring_count; i++) bulk += ring[i];
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bulk /= (float)ring_count;
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if (cur_step < 10) {
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// Use the measured rate once we have a timed step; until then fall back
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// to the default rate and flag the estimate provisional (renders "?").
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const bool measured = (ring_count > 0);
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float bulk;
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if (measured) {
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bulk = 0.0f;
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for (int i = 0; i < ring_count; i++) bulk += ring[i];
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bulk /= (float)ring_count;
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} else {
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bulk = kDefaultStepUs;
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}
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float rem_us = 0.0f;
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for (int L = cur_step + 1; L <= 10; L++) rem_us += bulk * charge_step_weight(L);
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int mins = (int)(rem_us / 60000000.0f + 0.5f);
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if (mins < 0) mins = 0;
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if (mins > 999) mins = 999;
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g_charge_eta.valid = true;
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g_charge_eta.provisional = !measured;
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g_charge_eta.minutes = mins;
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} else {
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// cur_step == 10 → essentially full; nothing meaningful to count down.
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g_charge_eta.valid = (cur_step >= 10);
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g_charge_eta.valid = true;
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g_charge_eta.provisional = false;
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g_charge_eta.minutes = 0;
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}
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}
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@@ -655,13 +673,15 @@ __attribute__((noinline)) void render_screen() {
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draw_text(kContentX, 18, bbuf);
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draw_battery_icon(36, 18, pct);
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// Charge ETA, right of the battery icon (icon ends at x≈90). Shown
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// only while charging: "~43m" once a step has been timed, "~--m" while
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// still calibrating the first step. See sample_charge_eta().
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// Charge ETA, right of the battery icon (icon ends at x≈90). Shown only
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// while charging: "~43m?" is the provisional default-rate estimate shown
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// immediately on plug-in; the "?" drops to "~43m" once a real 10% step
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// has been timed and the measured rate takes over. See sample_charge_eta().
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if (g_charge_eta.charging) {
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char ebuf[8];
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if (g_charge_eta.valid)
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snprintf(ebuf, sizeof(ebuf), "~%dm", g_charge_eta.minutes);
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snprintf(ebuf, sizeof(ebuf), "~%dm%s", g_charge_eta.minutes,
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g_charge_eta.provisional ? "?" : "");
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else
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snprintf(ebuf, sizeof(ebuf), "~--m");
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draw_text(94, 18, ebuf);
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