diff options
| -rw-r--r-- | main/app_main.c | 10 | ||||
| -rw-r--r-- | main/touch.c | 79 |
2 files changed, 57 insertions, 32 deletions
diff --git a/main/app_main.c b/main/app_main.c index 44e2052..c411c46 100644 --- a/main/app_main.c +++ b/main/app_main.c @@ -102,5 +102,15 @@ static void display_setup_task(void *arg) } ESP_LOGI(TAG, "display subsystems [%s] up", flags); + + // Wake the display on boot. Empirically the FT5426 touch IC only + // reports contacts when the LCD is actively streaming with the + // backlight on — booting straight into ASLEEP leaves taps silently + // unread. The idle timer (idle_timeout_ms) puts the device back to + // sleep on its own if nothing happens. + if (dsp_err == ESP_OK) { + state_machine_set(VIEWPORT_STATE_AWAKE); + } + vTaskDelete(NULL); } diff --git a/main/touch.c b/main/touch.c index 6f91665..4615f45 100644 --- a/main/touch.c +++ b/main/touch.c @@ -54,6 +54,13 @@ static void on_long_press(void) if (display_is_up()) local_screens_overlay(OVERLAY_MS); } +// If we see N consecutive bogus polls (TD_STATUS > 5, i.e. the FT5426 is +// returning 0xff), pulse PC_RST_TP_N to try to bring it back. PoE-only +// cold boots leave the touch IC in a wedged state for ~seconds before it +// recovers; this lets us keep nudging it without blocking init. +#define WEDGE_THRESHOLD (3000 / POLL_PERIOD_MS) // ~3 s of bad polls +#define WEDGE_BACKOFF_MS 2000 + static void touch_task(void *arg) { bool was_down = false; @@ -61,17 +68,35 @@ static void touch_task(void *arg) bool long_fired = false; uint64_t last_tap_us = 0; uint8_t buf[7]; + unsigned wedged_cycles = 0; + uint64_t last_reset_us = 0; + bool announced_up = false; for (;;) { vTaskDelay(pdMS_TO_TICKS(POLL_PERIOD_MS)); if (ft_read(FT_REG_DEV_MODE, buf, sizeof(buf)) != ESP_OK) continue; + uint64_t now_us = (uint64_t)esp_timer_get_time(); uint8_t touches = buf[FT_REG_TD_STATUS] & 0x0F; // FT5x06 supports max 5 simultaneous points. A reading above that // is bogus (typically the bus is parking 0xff because the IC isn't - // responding) — drop the cycle to avoid faking a phantom press. - if (touches > 5) continue; - uint64_t now = (uint64_t)esp_timer_get_time(); + // responding) — drop the cycle and bump the wedge counter. + if (touches > 5) { + if (++wedged_cycles >= WEDGE_THRESHOLD && + now_us - last_reset_us > (uint64_t)WEDGE_BACKOFF_MS * 1000ULL) { + ESP_LOGW(TAG, "touch wedged — pulsing reset"); + display_touch_reset_pulse(); + last_reset_us = now_us; + wedged_cycles = 0; + } + continue; + } + if (wedged_cycles > 0 || !announced_up) { + ESP_LOGI(TAG, "touch online (TD_STATUS=%u)", touches); + wedged_cycles = 0; + announced_up = true; + } + uint64_t now = now_us; if (touches > 0) { if (!was_down) { @@ -116,36 +141,26 @@ esp_err_t touch_init(void) ESP_RETURN_ON_ERROR(i2c_master_bus_add_device(bus, &cfg, &s_dev), TAG, "i2c add FT5426"); - // FT5426 sometimes returns 0xff on the first read after its reset is - // released (especially on cold boot before its internal firmware has - // finished booting). 0xff causes the polling loop to misread 15 - // touches forever. Two-stage recovery: short wait + retry, then a - // hard reset pulse via the panel MCU if that still doesn't help. - uint8_t dev_mode = 0xff; - esp_err_t err = ESP_FAIL; - for (int attempt = 0; attempt < 2; ++attempt) { - for (int i = 0; i < 10; ++i) { - err = ft_read(FT_REG_DEV_MODE, &dev_mode, 1); - if (err == ESP_OK && dev_mode != 0xff) break; - vTaskDelay(pdMS_TO_TICKS(30)); - } - if (err == ESP_OK && dev_mode != 0xff) break; - if (attempt == 0) { - ESP_LOGW(TAG, "FT5426 stuck at 0xff — pulsing PC_RST_TP_N"); - display_touch_reset_pulse(); - } - } - if (err != ESP_OK) { - ESP_LOGE(TAG, "FT5426 @0x38 unreachable (%s)", esp_err_to_name(err)); - return err; + // Force DEV_MODE=0x00 (Working Mode) — chip might have powered up in + // System Info mode (0x40) or Factory Test mode (0x40) which would + // explain steady 0x00 TD_STATUS but no touch detection. Cheap to + // attempt; ignore result since some firmware revisions reject it + // pre-reset and the polling loop handles the alternative anyway. + { + uint8_t set_working[2] = { FT_REG_DEV_MODE, 0x00 }; + i2c_master_transmit(s_dev, set_working, sizeof(set_working), 50); } - if (dev_mode == 0xff) { - ESP_LOGW(TAG, "FT5426 still stuck after hard reset — touch will " - "not register; tap/long-press disabled this boot"); - } - ESP_LOGI(TAG, "FT5426 ack'd (dev_mode=0x%02x); " - "tap=toggle wake/sleep, %dms hold=info overlay", - dev_mode, LONG_PRESS_MS); + + // Pulse the touch reset line and don't read dev_mode at init time: + // on PoE-only boots the FT5426 hasn't finished its internal firmware + // load when touch_init runs, and any read returns 0xff. The polling + // loop already drops cycles where TD_STATUS > 5, so a wedged chip is + // harmless; once its firmware finishes (often after a few hundred ms + // of being prodded by polling reads), real touches start landing. + display_touch_reset_pulse(); + ESP_LOGI(TAG, "FT5426 polling started " + "(tap=toggle wake/sleep, %dms hold=info overlay)", + LONG_PRESS_MS); BaseType_t ok = xTaskCreate(touch_task, "touch", 3072, NULL, 4, &s_task); return (ok == pdPASS) ? ESP_OK : ESP_FAIL; |
