Author SHA1 Message Date
nick fece1f39d0 test: skip OLED setup assertion for LilyGO cargo board 2026-07-02 00:27:13 -06:00
nick de6a3f5f92 test: allow LilyGO cargo firmware without OLED setup page 2026-07-02 00:25:56 -06:00
nick d17699a7be firmware: finalize LilyGO cargo cleanup 2026-07-02 00:24:22 -06:00
nick 3b57761498 api: restore missing v1 routes for LilyGO 2026-07-02 00:08:08 -06:00
nick 9b5581b2d8 change WiFi settings back to direct 2026-07-01 23:56:17 -06:00
nick 97048b8ceb debug: add AP config POST route to LilyGO isolation 2026-07-01 23:49:30 -06:00
nick 95fa78ee64 debug: try STA reconnect 5s after LilyGO boot 2026-07-01 23:43:33 -06:00
nick 983f9cae61 hardware: move ignition sense to LilyGO GPIO39 2026-07-01 23:37:11 -06:00
nick 83a392567c debug: restore ignition input only 2026-07-01 23:34:08 -06:00
nick c8d0e4a23f Revert "debug: restore ignition pin and OLED setup only"
This reverts commit ac6b0475ff.
2026-07-01 23:31:55 -06:00
nick ac6b0475ff debug: restore ignition pin and OLED setup only 2026-07-01 23:29:34 -06:00
nick 2112e6b58c Revert "debug: restore final setup bits in LilyGO isolation"
This reverts commit 617fef32ce.
2026-07-01 23:26:05 -06:00
nick 617fef32ce debug: restore final setup bits in LilyGO isolation 2026-07-01 23:22:42 -06:00
nick ebed07500a debug: add OTA routes using original handlers 2026-07-01 23:10:21 -06:00
nick c602187163 debug: add OTA routes to LilyGO isolation 2026-07-01 22:51:50 -06:00
nick 3ec837a08c debug: add OTA routes to LilyGO isolation 2026-07-01 22:36:56 -06:00
nick 0b55ede1fc debug: add sensor update timing globals 2026-07-01 00:46:46 -06:00
nick 0b04dcf89a debug: add sensor updates to LilyGO isolation loop 2026-07-01 00:42:35 -06:00
nick 737ec8c10d debug: add temp scan routes to LilyGO isolation 2026-07-01 00:33:35 -06:00
nick f2bdf36337 hardware: move DS18B20 data to LilyGO GPIO21 2026-07-01 00:17:25 -06:00
nick 3a05cb8894 ui: add BMS scan button 2026-07-01 00:05:16 -06:00
nick a1a19270d7 debug: add legacy routes to LilyGO isolation 2026-06-30 23:57:58 -06:00
nick f249e2ef6b debug: add BMS routes to LilyGO isolation 2026-06-30 23:41:41 -06:00
nick 6ae396f084 debug: protect config inputs from status refresh 2026-06-30 23:37:33 -06:00
nick 7fc2d35bd0 debug: delay BMS updates 30s after boot 2026-06-30 23:26:59 -06:00
nick a954755c46 debug: add BMS update loop to LilyGO isolation build 2026-06-30 23:21:05 -06:00
nick c2f8f1d9a5 debug: add BMS init to LilyGO isolation build 2026-06-30 23:18:13 -06:00
nick b301400482 debug: re-enable STA maintenance in LilyGO isolation build 2026-06-30 23:13:01 -06:00
nick 3e56143d4b debug: add WiFi write routes to LilyGO isolation 2026-06-30 23:08:27 -06:00
nick 025e95b32f debug: test AP STA mode without reconnect logic 2026-06-30 22:48:24 -06:00
nick 4f24e6f87a debug: test dashboard HTML route on LilyGO 2026-06-30 22:43:25 -06:00
nick b21e41341c debug: add config write routes to active LilyGO isolation setup 2026-06-30 22:40:10 -06:00
nick 03cad0481b debug: add read-only config routes to LilyGO isolation 2026-06-30 22:18:17 -06:00
nick 1f54f39956 debug: add relay set route to active isolation setup 2026-06-30 22:12:55 -06:00
nick acf98eb8e2 debug: add relay set route to clean isolation 2026-06-30 22:04:06 -06:00
nick 5571aca726 debug: add relay routes to clean isolation 2026-06-30 22:02:04 -06:00
nick 43d201d040 debug: add basic status routes to clean isolation 2026-06-30 21:59:32 -06:00
nick b556d338d7 debug: clean LilyGO setup isolation baseline 2026-06-30 02:40:59 -06:00
nick 4cbd2165b2 firmware: migrate cargo controller to LilyGO T-Relay S3 2026-06-29 22:57:02 -06:00
nick 406033bec8 config: expand relay model from 2 to 6 outputs 2026-06-29 22:52:05 -06:00
nick 24e86e2eb1 cargo: increase STA WiFi connect window 2026-06-23 10:18:18 -06:00
nick c96ef5e7cc cargo: clean up BMS backoff declarations 2026-06-22 22:46:50 -06:00
nick db666190cf cargo: fix BMS reconnect backoff helper order 2026-06-22 22:42:17 -06:00
nick b11151c832 cargo: back off missing BMS reconnect attempts 2026-06-22 22:39:54 -06:00
nick a18ed0aeca cargo: add local OTA firmware upload 2026-06-22 22:30:55 -06:00
nick e0b56f42e9 cargo: keep AP web UI available without STA WiFi 2026-06-22 22:21:51 -06:00
nick fec60b057f dashboard: restore boot screen 2026-06-20 14:34:06 -06:00
nick 4cba41c831 dashboard: tile spacing adjustment 2026-06-19 02:59:26 -06:00
nick 59fb7b5c29 dashboard: make main side cards equal width 2026-06-19 02:52:44 -06:00
nick 54c25f28bf dashboard: dynamically balance main top row layout 2026-06-19 02:46:40 -06:00
nick 49382358dc dashboard: balance main top row tile widths 2026-06-19 02:36:22 -06:00
nick 3750659a3d dashboard: auto refresh diagnostics overlay every 5 seconds 2026-06-19 02:27:41 -06:00
nick 9d75d2c39c dashboard: add OBD-II coolant polling over CAN 2026-06-19 02:19:08 -06:00
nick 97e49a5d98 docs: update roadmap 2026-06-19 02:09:19 -06:00
nick ef6b32e133 dashboard: fix temp alert style repaint 2026-06-19 02:07:50 -06:00
nick 73a28beacc dashboard: add temp alert debug logging 2026-06-19 02:03:33 -06:00
nick 2aac72616c Revert "dashboard: support temp alert field variants"
This reverts commit 9c1f5338c7.
2026-06-19 01:58:34 -06:00
nick f4c6623334 Revert "dashboard: use cargo temp alert contract fields"
This reverts commit 3e88a7a28a.
2026-06-19 01:58:34 -06:00
nick 5fbc33001a Revert "dashboard: compute temp alert from contract threshold"
This reverts commit 3c438bd4ac.
2026-06-19 01:58:34 -06:00
18 changed files with 643 additions and 187 deletions
+12
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@@ -2,6 +2,18 @@
## Unreleased ## Unreleased
### Added
- Cargo ESP local OTA firmware upload page at `/ota`.
- Cargo ESP OTA API endpoint at `POST /api/v1/system/ota`.
## Unreleased
### Fixed
- Cargo ESP starts AP and Web UI/API before attempting STA WiFi reconnects.
- STA reconnect attempts now service the web server during short connection windows so AP mode remains usable when no saved WiFi is available.
## Unreleased
### Changed ### Changed
- Reworked ESP32-S3 dashboard page navigation to use screen-wide LVGL swipe gestures. - Reworked ESP32-S3 dashboard page navigation to use screen-wide LVGL swipe gestures.
- Removed failed temporary double-tap and transparent hitbox navigation experiments. - Removed failed temporary double-tap and transparent hitbox navigation experiments.
+27
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@@ -239,3 +239,30 @@ Important guardrails:
## M9N GPS Module ## M9N GPS Module
The dashboard enclosure will include an M9N GPS module connected to the ESP32-S3 dashboard over UART. It will provide GPS fix status, satellite count, position, speed, and UTC time. Future work will use GPS time/location for automatic timezone and DST handling. The dashboard enclosure will include an M9N GPS module connected to the ESP32-S3 dashboard over UART. It will provide GPS fix status, satellite count, position, speed, and UTC time. Future work will use GPS time/location for automatic timezone and DST handling.
### LilyGO T-Relay-S3 6-relay cargo controller
The cargo ESP now targets the LilyGO T-Relay-S3 6-relay board.
Relay control is handled through the onboard 74HC595 shift register, not direct ESP32 GPIO relay outputs.
| Function | GPIO |
| --- | --- |
| 74HC595 DATA | GPIO7 |
| 74HC595 CLOCK | GPIO5 |
| 74HC595 LATCH | GPIO6 |
| 74HC595 nOE | GPIO4 |
| Firmware ID | LilyGO relay channel | Shift-register output |
| --- | --- | --- |
| relay_1 | CH1 | SR1 |
| relay_2 | CH2 | SR2 |
| relay_3 | CH3 | SR3 |
| relay_4 | CH4 | SR4 |
| relay_5 | CH5 | SR5 |
| relay_6 | CH6 | SR6 |
GPIO4 is reserved for relay output-enable on this board, so the DS18B20 OneWire bus is moved to GPIO14.
Avoid GPIO35-GPIO37 on the LilyGO T-Relay-S3 because they are used by Octal SPI flash.
+2 -2
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@@ -157,7 +157,7 @@ Expected output object fields:
Example 2-channel profile: Example 2-channel profile:
{ {
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"outputs": [ "outputs": [
{"id": 1, "name": "Fridge", "role": "fridge", "hardware_channel": 1}, {"id": 1, "name": "Fridge", "role": "fridge", "hardware_channel": 1},
{"id": 2, "name": "Starlink", "role": "starlink", "hardware_channel": 2} {"id": 2, "name": "Starlink", "role": "starlink", "hardware_channel": 2}
@@ -190,7 +190,7 @@ The Cargo ESP firmware now exposes relay/output state as an output-count-agnosti
The current active hardware profile remains: The current active hardware profile remains:
generic_esp32_2ch_relay lilygo_t_relay_s3_6ch
The API includes: The API includes:
+8
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@@ -311,3 +311,11 @@ The diagnostics overlay shows dashboard version, uptime, heap, WiFi RSSI/IP, Car
- Swipe right from the main dashboard to open Battery Detail. - Swipe right from the main dashboard to open Battery Detail.
- Swipe left from Battery Detail to return to the main dashboard. - Swipe left from Battery Detail to return to the main dashboard.
- Diagnostics remains hidden behind the multi-tap system-card gesture. - Diagnostics remains hidden behind the multi-tap system-card gesture.
## OBD-II Coolant Polling
- Dashboard ESP32-S3 Touch LCD 5B uses onboard CAN/TWAI via GPIO15 CANTX and GPIO16 CANRX.
- First implemented PID is Mode 01 PID 05 coolant temperature.
- Sends standard 11-bit functional request ID `0x7DF` and accepts ECU responses from `0x7E8` through `0x7EF`.
- Diagnostics page shows TWAI state, coolant value, TX/RX counts, and last OBD status.
- Overview coolant gauge shows `--°` until a valid OBD response is received.
+1 -1
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@@ -270,7 +270,7 @@ The Cargo ESP API now represents relays/outputs as a hardware-profile-aware list
Current active hardware profile: Current active hardware profile:
generic_esp32_2ch_relay lilygo_t_relay_s3_6ch
Future planned profile: Future planned profile:
+31
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@@ -192,3 +192,34 @@ Next Dashboard Milestones:
## M9N GPS Module ## M9N GPS Module
The dashboard enclosure will include an M9N GPS module connected to the ESP32-S3 dashboard over UART. It will provide GPS fix status, satellite count, position, speed, and UTC time. Future work will use GPS time/location for automatic timezone and DST handling. The dashboard enclosure will include an M9N GPS module connected to the ESP32-S3 dashboard over UART. It will provide GPS fix status, satellite count, position, speed, and UTC time. Future work will use GPS time/location for automatic timezone and DST handling.
## Planned: WebSocket live dashboard updates
Add a WebSocket push channel alongside the existing `/api/v1` REST API. The REST API remains the stable snapshot/debug/control contract, while WebSockets provide lower-latency live status updates for the dashboard.
Planned behavior:
- Cargo ESP continues to expose `/api/v1/status` and existing `/api/v1/...` endpoints.
- Cargo ESP adds a WebSocket endpoint, likely `/ws`.
- Dashboard ESP connects once to `/ws` and receives pushed status updates.
- Relay commands may continue using REST initially, with pushed status updates confirming state changes.
- Future high-rate data such as CAN/OBD, GPS, inclinometer, and temperature updates can use the WebSocket path.
- If WebSocket disconnects, dashboard should fall back to the existing REST polling behavior.
Rationale:
- Keeps the current API architecture intact and easy to debug.
- Avoids ESP-NOW channel-management complexity for now.
- Improves perceived responsiveness without a major communication rewrite.
- Supports future live gauges better than fixed-interval polling.
## LilyGO T-Relay-S3 6-relay migration
- [x] Expand cargo relay model from 2 outputs to 6 outputs.
- [x] Replace direct GPIO relay writes with LilyGO 74HC595 shift-register writes.
- [x] Map relay_1 through relay_6 to CH1 through CH6.
- [x] Move DS18B20 OneWire default from GPIO4 to GPIO14 because GPIO4 is relay nOE.
- [ ] Bench test relay boot behavior with no vehicle loads connected.
- [ ] Confirm CH1-CH6 order with a meter or test lamp before wiring vehicle loads.
+13 -13
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@@ -1,20 +1,20 @@
#pragma once #pragma once
static const char *DASHBOARD_VERSION = "0.1.118-temp-alert-local-threshold"; static const char *DASHBOARD_VERSION = "0.1.126-restore-boot-screen";
// Update these if your Cargo ESP AP credentials are different. // Update these if your Cargo ESP AP credentials are different.
//static const char *CARGO_WIFI_SSID = "OverlandController"; static const char *CARGO_WIFI_SSID = "OverlandController";
//static const char *CARGO_WIFI_PASSWORD = "overland1234"; static const char *CARGO_WIFI_PASSWORD = "Ward1707";
static const char *CARGO_WIFI_SSID = "WardAP"; //static const char *CARGO_WIFI_SSID = "WardAP";
static const char *CARGO_WIFI_PASSWORD = "Ward5213"; //static const char *CARGO_WIFI_PASSWORD = "Ward5213";
//static const char *CARGO_API_STATUS_URL = "http://192.168.4.1/api/v1/status"; static const char *CARGO_API_STATUS_URL = "http://192.168.4.1/api/v1/status";
//static const char *CARGO_API_FAST_STATUS_URL = "http://192.168.4.1/api/v1/status?fields=battery,temps,relays"; static const char *CARGO_API_FAST_STATUS_URL = "http://192.168.4.1/api/v1/status?fields=battery,temps,relays";
//static const char *CARGO_API_SLOW_STATUS_URL = "http://192.168.4.1/api/v1/status?fields=network,system,config"; static const char *CARGO_API_SLOW_STATUS_URL = "http://192.168.4.1/api/v1/status?fields=network,system,config";
//static const char *CARGO_API_RELAY_SET_URL = "http://192.168.4.1/api/v1/relay/set"; static const char *CARGO_API_RELAY_SET_URL = "http://192.168.4.1/api/v1/relay/set";
static const char *CARGO_API_STATUS_URL = "http://192.168.88.108/api/v1/status"; //static const char *CARGO_API_STATUS_URL = "http://192.168.88.181/api/v1/status";
static const char *CARGO_API_FAST_STATUS_URL = "http://192.168.88.108/api/v1/status?fields=battery,temps,relays"; //static const char *CARGO_API_FAST_STATUS_URL = "http://192.168.88.181/api/v1/status?fields=battery,temps,relays";
static const char *CARGO_API_SLOW_STATUS_URL = "http://192.168.88.108/api/v1/status?fields=network,system,config"; //static const char *CARGO_API_SLOW_STATUS_URL = "http://192.168.88.181/api/v1/status?fields=network,system,config";
static const char *CARGO_API_RELAY_SET_URL = "http://192.168.88.108/api/v1/relay/set"; //static const char *CARGO_API_RELAY_SET_URL = "http://192.168.88.181/api/v1/relay/set";
@@ -3,6 +3,7 @@
#include <HTTPClient.h> #include <HTTPClient.h>
#include <ArduinoJson.h> #include <ArduinoJson.h>
#include <esp_display_panel.hpp> #include <esp_display_panel.hpp>
#include <driver/twai.h>
#include <lvgl.h> #include <lvgl.h>
#include "lvgl_v8_port.h" #include "lvgl_v8_port.h"
@@ -15,6 +16,24 @@ using namespace esp_panel::drivers;
using namespace esp_panel::board; using namespace esp_panel::board;
static DashboardStatus status_model; static DashboardStatus status_model;
static constexpr gpio_num_t OBD_CAN_TX_PIN = GPIO_NUM_15;
static constexpr gpio_num_t OBD_CAN_RX_PIN = GPIO_NUM_16;
static constexpr uint32_t OBD_REQUEST_ID = 0x7DF;
static constexpr uint32_t OBD_RESPONSE_ID_MIN = 0x7E8;
static constexpr uint32_t OBD_RESPONSE_ID_MAX = 0x7EF;
static constexpr uint8_t OBD_PID_COOLANT_TEMP = 0x05;
static bool obd_can_ready = false;
static bool obd_can_started = false;
static unsigned long last_obd_poll_ms = 0;
static unsigned long last_obd_rx_ms = 0;
static unsigned long last_obd_tx_ms = 0;
static uint32_t obd_tx_count = 0;
static uint32_t obd_rx_count = 0;
static int obd_coolant_temp_f = -999;
static int last_rendered_obd_coolant_temp_f = -1000;
static String obd_last_error = "not initialized";
static lv_obj_t *battery_card_obj = nullptr; static lv_obj_t *battery_card_obj = nullptr;
static lv_obj_t *battery_soc_arc = nullptr; static lv_obj_t *battery_soc_arc = nullptr;
@@ -369,6 +388,149 @@ static String format_diag_uptime(unsigned long seconds)
return out; return out;
} }
static void update_vehicle_coolant_widget()
{
if (vehicle_coolant_value_label == nullptr || vehicle_coolant_meter == nullptr || vehicle_coolant_needle == nullptr) {
return;
}
if (obd_coolant_temp_f == last_rendered_obd_coolant_temp_f) {
return;
}
last_rendered_obd_coolant_temp_f = obd_coolant_temp_f;
lvgl_port_lock(-1);
if (obd_coolant_temp_f > -100) {
int bounded_temp = clamp_int(obd_coolant_temp_f, 100, 260);
lv_meter_set_indicator_value(vehicle_coolant_meter, vehicle_coolant_needle, bounded_temp);
lv_label_set_text(vehicle_coolant_value_label, (String(obd_coolant_temp_f) + "°").c_str());
} else {
lv_meter_set_indicator_value(vehicle_coolant_meter, vehicle_coolant_needle, 100);
lv_label_set_text(vehicle_coolant_value_label, "--°");
}
lvgl_port_unlock();
}
static bool init_obd_can()
{
if (obd_can_ready && obd_can_started) {
return true;
}
twai_general_config_t general_config = TWAI_GENERAL_CONFIG_DEFAULT(OBD_CAN_TX_PIN, OBD_CAN_RX_PIN, TWAI_MODE_NORMAL);
general_config.tx_queue_len = 5;
general_config.rx_queue_len = 20;
twai_timing_config_t timing_config = TWAI_TIMING_CONFIG_500KBITS();
twai_filter_config_t filter_config = TWAI_FILTER_CONFIG_ACCEPT_ALL();
if (!obd_can_ready) {
esp_err_t install_result = twai_driver_install(&general_config, &timing_config, &filter_config);
if (install_result != ESP_OK && install_result != ESP_ERR_INVALID_STATE) {
obd_last_error = "driver install failed: " + String((int)install_result);
Serial.println("OBD CAN: " + obd_last_error);
return false;
}
obd_can_ready = true;
}
esp_err_t start_result = twai_start();
if (start_result != ESP_OK && start_result != ESP_ERR_INVALID_STATE) {
obd_last_error = "start failed: " + String((int)start_result);
Serial.println("OBD CAN: " + obd_last_error);
return false;
}
obd_can_started = true;
obd_last_error = "started";
Serial.println("OBD CAN: TWAI started on TX GPIO15 / RX GPIO16 at 500 kbps");
return true;
}
static void send_obd_coolant_request()
{
twai_message_t message = {};
message.identifier = OBD_REQUEST_ID;
message.extd = 0;
message.rtr = 0;
message.data_length_code = 8;
message.data[0] = 0x02;
message.data[1] = 0x01;
message.data[2] = OBD_PID_COOLANT_TEMP;
message.data[3] = 0x55;
message.data[4] = 0x55;
message.data[5] = 0x55;
message.data[6] = 0x55;
message.data[7] = 0x55;
esp_err_t result = twai_transmit(&message, 0);
if (result == ESP_OK) {
obd_tx_count++;
last_obd_tx_ms = millis();
obd_last_error = "coolant request sent";
} else {
obd_last_error = "tx failed: " + String((int)result);
}
}
static void handle_obd_can_message(const twai_message_t &message)
{
if (message.extd || message.rtr) {
return;
}
if (message.identifier < OBD_RESPONSE_ID_MIN || message.identifier > OBD_RESPONSE_ID_MAX) {
return;
}
if (message.data_length_code < 4) {
return;
}
// Single-frame OBD-II response:
// byte0 length, byte1 0x41 response mode, byte2 PID, byte3 value A.
if (message.data[1] == 0x41 && message.data[2] == OBD_PID_COOLANT_TEMP) {
int coolant_c = (int)message.data[3] - 40;
obd_coolant_temp_f = (int)roundf((coolant_c * 9.0f / 5.0f) + 32.0f);
obd_rx_count++;
last_obd_rx_ms = millis();
obd_last_error = "coolant response OK";
Serial.print("OBD CAN: coolant=");
Serial.print(obd_coolant_temp_f);
Serial.println(" F");
update_vehicle_coolant_widget();
}
}
static void process_obd_can()
{
if (!init_obd_can()) {
return;
}
if (millis() - last_obd_poll_ms >= 1000) {
last_obd_poll_ms = millis();
send_obd_coolant_request();
}
twai_message_t message = {};
while (twai_receive(&message, 0) == ESP_OK) {
handle_obd_can_message(message);
}
if (millis() - last_obd_rx_ms > 5000 && obd_coolant_temp_f > -100) {
obd_coolant_temp_f = -999;
update_vehicle_coolant_widget();
}
}
static void update_diagnostics_overlay() static void update_diagnostics_overlay()
{ {
if (diagnostics_overlay == nullptr || diagnostics_label == nullptr) { if (diagnostics_overlay == nullptr || diagnostics_label == nullptr) {
@@ -442,6 +604,21 @@ static void update_diagnostics_overlay()
text += String(status_model.cell_delta_mv); text += String(status_model.cell_delta_mv);
text += " mV"; text += " mV";
text += "\n\nOBD-II / CAN\n";
text += " TWAI: ";
text += obd_can_started ? "started" : "offline";
text += "\n Pins: TX GPIO15 / RX GPIO16";
text += "\n Coolant: ";
text += obd_coolant_temp_f > -100 ? String(obd_coolant_temp_f) + "°F" : String("--");
text += "\n TX/RX: ";
text += String(obd_tx_count);
text += "/";
text += String(obd_rx_count);
text += "\n Last RX age: ";
text += last_obd_rx_ms > 0 ? String((millis() - last_obd_rx_ms) / 1000) + "s" : String("--");
text += "\n Last status: ";
text += obd_last_error;
text += "\n\nControls\n"; text += "\n\nControls\n";
text += " Relays visible: "; text += " Relays visible: ";
text += String(relay_count); text += String(relay_count);
@@ -1288,14 +1465,10 @@ static void update_temp_tile_alert_style(int index, bool alert)
return; return;
} }
if (last_temp_tile_alert[index] == alert) { // Always apply the visual style. The cache can get out of sync when pages
return; // are hidden/shown, so it must not prevent repainting the tile.
}
last_temp_tile_alert[index] = alert; last_temp_tile_alert[index] = alert;
lvgl_port_lock(-1);
if (alert) { if (alert) {
lv_obj_set_style_bg_color(temp_tile_objs[index], lv_color_hex(0x7A271A), 0); lv_obj_set_style_bg_color(temp_tile_objs[index], lv_color_hex(0x7A271A), 0);
lv_obj_set_style_border_color(temp_tile_objs[index], lv_color_hex(0xF97066), 0); lv_obj_set_style_border_color(temp_tile_objs[index], lv_color_hex(0xF97066), 0);
@@ -1305,11 +1478,8 @@ static void update_temp_tile_alert_style(int index, bool alert)
lv_obj_set_style_border_color(temp_tile_objs[index], lv_color_hex(0x2F3A46), 0); lv_obj_set_style_border_color(temp_tile_objs[index], lv_color_hex(0x2F3A46), 0);
lv_obj_set_style_border_width(temp_tile_objs[index], 2, 0); lv_obj_set_style_border_width(temp_tile_objs[index], 2, 0);
} }
lvgl_port_unlock();
} }
static void update_battery_card_alert_style(bool alert) static void update_battery_card_alert_style(bool alert)
{ {
if (battery_card_obj == nullptr) { if (battery_card_obj == nullptr) {
@@ -1465,14 +1635,6 @@ static void parse_status_json(const String &body)
float temp_f = (float)(temp["temperature_f"] | 0.0); float temp_f = (float)(temp["temperature_f"] | 0.0);
bool high_alert = temp["high_alert"] | false; bool high_alert = temp["high_alert"] | false;
bool high_alert_enabled = temp["high_alert_enabled"] | false;
float high_alert_f = (float)(temp["high_alert_f"] | 9999.0);
if (high_alert_enabled && temp_f >= high_alert_f) {
high_alert = true;
}
if (weather) { if (weather) {
outside_status = "OUT "; outside_status = "OUT ";
outside_status += String((int)round(temp_f)); outside_status += String((int)round(temp_f));
@@ -1765,11 +1927,11 @@ current_dashboard_screen = SCREEN_OVERVIEW;
lv_obj_t *system_card = create_card(screen, "", 960, 48, LV_ALIGN_TOP_MID, 0, 12); lv_obj_t *system_card = create_card(screen, "", 960, 48, LV_ALIGN_TOP_MID, 0, 12);
lv_obj_add_flag(system_card, LV_OBJ_FLAG_CLICKABLE); lv_obj_add_flag(system_card, LV_OBJ_FLAG_CLICKABLE);
lv_obj_add_event_cb(system_card, system_card_event_cb, LV_EVENT_CLICKED, nullptr); lv_obj_add_event_cb(system_card, system_card_event_cb, LV_EVENT_CLICKED, nullptr);
lv_obj_t *battery_card = create_card(screen, "", 380, 310, LV_ALIGN_TOP_LEFT, 32, 68); lv_obj_t *battery_card = create_card(screen, "", 330, 310, LV_ALIGN_TOP_LEFT, 32, 68);
battery_card_obj = battery_card; battery_card_obj = battery_card;
add_battery_card_tap_target(battery_card); add_battery_card_tap_target(battery_card);
lv_obj_t *temp_card = create_card(screen, "", 260, 310, LV_ALIGN_TOP_LEFT, 426, 68); lv_obj_t *temp_card = create_card(screen, "", 260, 310, LV_ALIGN_TOP_LEFT, 382, 68);
lv_obj_t *vehicle_card = create_card(screen, "", 292, 310, LV_ALIGN_TOP_RIGHT, -32, 68); lv_obj_t *vehicle_card = create_card(screen, "", 330, 310, LV_ALIGN_TOP_RIGHT, -32, 68);
lv_obj_t *relay_card = create_card(screen, "", 960, 205, LV_ALIGN_BOTTOM_MID, 0, -8); lv_obj_t *relay_card = create_card(screen, "", 960, 205, LV_ALIGN_BOTTOM_MID, 0, -8);
battery_charge_pulse_arc = lv_arc_create(battery_card); battery_charge_pulse_arc = lv_arc_create(battery_card);
@@ -1900,7 +2062,7 @@ lv_obj_t *system_card = create_card(screen, "", 960, 48, LV_ALIGN_TOP_MID, 0, 12
lv_meter_set_indicator_end_value(vehicle_coolant_meter, hot_arc, 260); lv_meter_set_indicator_end_value(vehicle_coolant_meter, hot_arc, 260);
vehicle_coolant_needle = lv_meter_add_needle_line(vehicle_coolant_meter, coolant_scale, 4, lv_color_hex(0xFFFFFF), -14); vehicle_coolant_needle = lv_meter_add_needle_line(vehicle_coolant_meter, coolant_scale, 4, lv_color_hex(0xFFFFFF), -14);
lv_meter_set_indicator_value(vehicle_coolant_meter, vehicle_coolant_needle, 188); lv_meter_set_indicator_value(vehicle_coolant_meter, vehicle_coolant_needle, 100);
lv_obj_t *vehicle_coolant_center_cap = lv_obj_create(vehicle_coolant_meter); lv_obj_t *vehicle_coolant_center_cap = lv_obj_create(vehicle_coolant_meter);
lv_obj_set_size(vehicle_coolant_center_cap, 54, 54); lv_obj_set_size(vehicle_coolant_center_cap, 54, 54);
@@ -1912,7 +2074,7 @@ lv_obj_t *system_card = create_card(screen, "", 960, 48, LV_ALIGN_TOP_MID, 0, 12
#endif #endif
vehicle_coolant_value_label = lv_label_create(vehicle_card); vehicle_coolant_value_label = lv_label_create(vehicle_card);
lv_label_set_text(vehicle_coolant_value_label, "188°"); lv_label_set_text(vehicle_coolant_value_label, "--°");
lv_obj_set_style_text_color(vehicle_coolant_value_label, lv_color_hex(0xFFFFFF), 0); lv_obj_set_style_text_color(vehicle_coolant_value_label, lv_color_hex(0xFFFFFF), 0);
lv_obj_set_style_text_font(vehicle_coolant_value_label, &lv_font_montserrat_40, 0); lv_obj_set_style_text_font(vehicle_coolant_value_label, &lv_font_montserrat_40, 0);
lv_obj_set_width(vehicle_coolant_value_label, 120); lv_obj_set_width(vehicle_coolant_value_label, 120);
@@ -2038,9 +2200,7 @@ void setup()
lvgl_port_init(board->getLCD(), board->getTouch()); lvgl_port_init(board->getLCD(), board->getTouch());
lvgl_port_lock(-1); lvgl_port_lock(-1);
// TEMP DEBUG: bypass blocking Cargo ESP WiFi screen while troubleshooting pages. show_boot_screen();
create_overland_overview_screen();
overview_screen_created = true;
lvgl_port_unlock(); lvgl_port_unlock();
Serial.println("Dashboard boot screen ready"); Serial.println("Dashboard boot screen ready");
@@ -2052,7 +2212,13 @@ void loop()
update_system_status_label(); update_system_status_label();
process_pending_relay_command(); process_pending_relay_command();
poll_status_api(); poll_status_api();
process_obd_can();
process_dashboard_page_switch(); process_dashboard_page_switch();
delay(50);
if (diagnostics_overlay != nullptr) {
update_diagnostics_overlay();
}
delay(50);
} }
@@ -7,28 +7,27 @@ AppConfig appConfig;
static Preferences preferences; static Preferences preferences;
static RelayConfig defaultRelayConfig(uint8_t channel, const char *name, const char *role) {
return {
"relay_" + String(channel),
name,
role,
channel,
RELAY_SHIFT_REGISTER_PIN,
true,
true
};
}
void loadDefaultConfig() { void loadDefaultConfig() {
appConfig.deviceName = "Overland Controller"; appConfig.deviceName = "Overland Controller";
appConfig.relays[0] = { appConfig.relays[0] = defaultRelayConfig(1, "Relay 1", "aux");
"relay_1", appConfig.relays[1] = defaultRelayConfig(2, "Relay 2", "fridge");
"Relay 1", appConfig.relays[2] = defaultRelayConfig(3, "Relay 3", "starlink");
"aux", appConfig.relays[3] = defaultRelayConfig(4, "Relay 4", "aux");
1, appConfig.relays[4] = defaultRelayConfig(5, "Relay 5", "aux");
RELAY_1_PIN, appConfig.relays[5] = defaultRelayConfig(6, "Relay 6", "aux");
true,
true
};
appConfig.relays[1] = {
"relay_2",
"Relay 2",
"fridge",
2,
RELAY_2_PIN,
true,
true
};
appConfig.tempSensorCount = 4; appConfig.tempSensorCount = 4;
@@ -194,7 +193,7 @@ void printConfig() {
Serial.print(appConfig.relays[i].role); Serial.print(appConfig.relays[i].role);
Serial.print(" / channel "); Serial.print(" / channel ");
Serial.print(appConfig.relays[i].hardwareChannel); Serial.print(appConfig.relays[i].hardwareChannel);
Serial.print(" / GPIO "); Serial.print(" / channel ");
Serial.print(appConfig.relays[i].pin); Serial.print(appConfig.relays[i].pin);
Serial.print(" / available "); Serial.print(" / available ");
Serial.print(appConfig.relays[i].available ? "true" : "false"); Serial.print(appConfig.relays[i].available ? "true" : "false");
@@ -2,9 +2,9 @@
#include <Arduino.h> #include <Arduino.h>
#define MAX_RELAYS 2 #define MAX_RELAYS 6
#define MAX_TEMP_SENSORS 4 #define MAX_TEMP_SENSORS 4
#define HARDWARE_PROFILE "generic_esp32_2ch_relay" #define HARDWARE_PROFILE "lilygo_trelay_s3_6ch"
struct RelayConfig { struct RelayConfig {
String id; String id;
+35 -1
View File
@@ -26,6 +26,8 @@ static int bmsConnectFailCount = 0;
static unsigned long bmsReconnectPausedUntil = 0; static unsigned long bmsReconnectPausedUntil = 0;
static bool bmsSetupMode = false; static bool bmsSetupMode = false;
static const unsigned long READ_INTERVAL_MS = 5000; static const unsigned long READ_INTERVAL_MS = 5000;
static const unsigned long BMS_CONNECT_BACKOFF_INITIAL_MS = 30000;
static const unsigned long BMS_CONNECT_BACKOFF_MAX_MS = 300000;
BmsData bmsData; BmsData bmsData;
@@ -288,7 +290,34 @@ int scanBleDevices(uint32_t scanSeconds) {
return bleScanResultCount; return bleScanResultCount;
} }
static bool connectBms() { static void scheduleBmsReconnectBackoff();
static void clearBmsReconnectBackoff();
static void scheduleBmsReconnectBackoff() {
bmsConnectFailCount++;
if (bmsConnectBackoffMs == 0) {
bmsConnectBackoffMs = BMS_CONNECT_BACKOFF_INITIAL_MS;
} else {
bmsConnectBackoffMs = min(bmsConnectBackoffMs * 2, BMS_CONNECT_BACKOFF_MAX_MS);
}
bmsReconnectPausedUntil = millis() + bmsConnectBackoffMs;
Serial.print("BMS: reconnect backoff ");
Serial.print(bmsConnectBackoffMs / 1000);
Serial.print("s after ");
Serial.print(bmsConnectFailCount);
Serial.println(" failed attempt(s)");
}
static void clearBmsReconnectBackoff() {
bmsConnectFailCount = 0;
bmsConnectBackoffMs = 0;
bmsReconnectPausedUntil = 0;
}
bool connectBms() {
if (client && client->isConnected()) { if (client && client->isConnected()) {
bmsData.connected = true; bmsData.connected = true;
return true; return true;
@@ -307,6 +336,7 @@ static bool connectBms() {
if (!appConfig.bms.enabled || appConfig.bms.address.length() == 0) { if (!appConfig.bms.enabled || appConfig.bms.address.length() == 0) {
bmsData.connected = false; bmsData.connected = false;
clearBmsReconnectBackoff();
return false; return false;
} }
@@ -322,6 +352,9 @@ static bool connectBms() {
bmsData.connected = false; bmsData.connected = false;
NimBLEDevice::deleteClient(client); NimBLEDevice::deleteClient(client);
client = nullptr; client = nullptr;
notifyChar = nullptr;
writeChar = nullptr;
scheduleBmsReconnectBackoff();
return false; return false;
} }
@@ -352,6 +385,7 @@ static bool connectBms() {
Serial.println("BMS: Connected"); Serial.println("BMS: Connected");
bmsData.connected = true; bmsData.connected = true;
clearBmsReconnectBackoff();
return true; return true;
} }
+13 -12
View File
@@ -2,24 +2,25 @@
#define DEVICE_NAME "Overland Controller" #define DEVICE_NAME "Overland Controller"
// Relay Outputs // LilyGO T-Relay S3 6-relay board.
#define RELAY_1_PIN 16 // Relays are driven through onboard 74HC595 shift register.
#define RELAY_2_PIN 17 #define LILYGO_T_RELAY_S3_DATA_PIN 7
#define LILYGO_T_RELAY_S3_CLOCK_PIN 5
#define LILYGO_T_RELAY_S3_LATCH_PIN 6
#define LILYGO_T_RELAY_S3_OE_PIN 4
#define LILYGO_T_RELAY_S3_RELAY_COUNT 6
// DS18B20 Bus // Compatibility placeholder only. Relays are not direct GPIO outputs.
#define ONEWIRE_PIN 4 #define RELAY_SHIFT_REGISTER_PIN 255
// Ignition Sense // GPIO4 is used by the LilyGO relay shift-register OE pin.
#define IGNITION_PIN 34 #define ONEWIRE_PIN 15
#define IGNITION_PIN 39
// Cargo OLED service/setup display
#define OLED_I2C_SDA_PIN 21 #define OLED_I2C_SDA_PIN 21
#define OLED_I2C_SCL_PIN 22 #define OLED_I2C_SCL_PIN 22
#define OLED_SETUP_BUTTON_PIN 25 #define OLED_SETUP_BUTTON_PIN 25
// Dashboard communication is WiFi/HTTP.
// Legacy UART dashboard support is retired from active hardware use.
#define DASHBOARD_UART_ENABLED 0 #define DASHBOARD_UART_ENABLED 0
#define DASHBOARD_UART_BAUD 115200 #define DASHBOARD_UART_BAUD 115200
// RS-485/MAX3485 is fallback only and not currently planned.
@@ -1,8 +1,10 @@
#include <WiFi.h> #include <WiFi.h>
#include <esp_heap_caps.h>
#include <WebServer.h> #include <WebServer.h>
#include <Preferences.h> #include <Preferences.h>
#include <esp_wifi.h> #include <esp_wifi.h>
#include <esp_system.h> #include <esp_system.h>
#include <Update.h>
#define OLED_ENABLED 0 #define OLED_ENABLED 0
@@ -637,12 +639,15 @@ button[onclick^="scan"]{
<input id="bmsAddressTypeInput" placeholder="Address type: public or random"> <input id="bmsAddressTypeInput" placeholder="Address type: public or random">
<div class="btnrow"> <div class="btnrow">
<button class="save" onclick="saveBmsFullConfig()">Save BMS</button> <button class="save" onclick="saveBmsFullConfig()">Save BMS</button>
<button onclick="scanBmsDevices()">Scan BMS</button>
<button class="off" onclick="setBmsEnabled(false)">Disable BMS</button> <button class="off" onclick="setBmsEnabled(false)">Disable BMS</button>
</div> </div>
<div class="btnrow"> <div class="btnrow">
<button onclick="setBmsEnabled(true)">Enable BMS</button> <button onclick="setBmsEnabled(true)">Enable BMS</button>
</div> </div>
<div class="row"><span class="muted">BMS Polling</span><span class="v" id="bmsEnabledText">--</span></div> <div class="row"><span class="muted">BMS Polling</span><span class="v" id="bmsEnabledText">--</span></div>
<div id="bmsScanStatus" class="muted"></div>
<div id="bmsScanResults"></div>
</div> </div>
</section> </section>
</div> </div>
@@ -1044,12 +1049,12 @@ function render(data){
function populateSetupFields(data){ function populateSetupFields(data){
const cfg=data.config||{}; const cfg=data.config||{};
if($("deviceNameInput")) $("deviceNameInput").value=cfg.device_name||""; setConfigValue("deviceNameInput", cfg.device_name||"");
const bms=cfg.bms||{}; const bms=cfg.bms||{};
if($("bmsNameInput")) $("bmsNameInput").value=bms.name||""; setConfigValue("bmsNameInput", bms.name||"");
if($("bmsAddressInput")) $("bmsAddressInput").value=bms.address||""; setConfigValue("bmsAddressInput", bms.address||"");
if($("bmsAddressTypeInput")) $("bmsAddressTypeInput").value=bms.address_type||"public"; setConfigValue("bmsAddressTypeInput", bms.address_type||"public");
} }
async function saveDeviceConfig(){ async function saveDeviceConfig(){
@@ -1068,6 +1073,46 @@ async function saveDeviceConfig(){
clearConfigTouched(["deviceNameInput"]); clearConfigTouched(["deviceNameInput"]);
} }
async function scanBmsDevices(){
const status=$("bmsScanStatus");
const box=$("bmsScanResults");
if(status) status.textContent="Scanning for BLE BMS devices...";
if(box) box.innerHTML="";
try{
const res=await fetch(api("/bms/scan"),{method:"POST"});
const data=await res.json();
const devices=data.devices||[];
if(status) status.textContent=devices.length ? `Found ${devices.length} device(s).` : "No BLE devices found.";
if(box){
box.innerHTML=devices.map(d=>`
<div class="configrow">
<div>
<div><b>${d.name||"Unnamed BLE device"}</b></div>
<div class="muted">${d.address||""} RSSI ${d.rssi??"--"}</div>
</div>
<button onclick="selectScannedBms('${d.address||""}','${(d.name||"BMS").replace(/'/g,"\\'")}')">Select</button>
</div>
`).join("");
}
}catch(e){
if(status) status.textContent="BMS scan failed.";
}
}
function selectScannedBms(address,name){
setConfigValue("bmsNameInput",name||"BMS",true);
setConfigValue("bmsAddressInput",address||"",true);
setConfigValue("bmsAddressTypeInput","public",true);
markConfigFieldTouched("bmsNameInput");
markConfigFieldTouched("bmsAddressInput");
markConfigFieldTouched("bmsAddressTypeInput");
}
async function saveBmsFullConfig(){ async function saveBmsFullConfig(){
const name=$("bmsNameInput")?.value.trim()||"BMS"; const name=$("bmsNameInput")?.value.trim()||"BMS";
const address=$("bmsAddressInput")?.value.trim()||""; const address=$("bmsAddressInput")?.value.trim()||"";
@@ -1197,14 +1242,20 @@ function renderConfigControls(data){
const relayBox=$("relayConfigList"); const relayBox=$("relayConfigList");
if(relayBox){ if(relayBox){
const signature=relays.map(r=>r.id).join("|");
if(relayBox.dataset.signature!==signature){
relayBox.dataset.signature=signature;
relayBox.innerHTML=relays.map((r,i)=>` relayBox.innerHTML=relays.map((r,i)=>`
<div class="configrow"> <div class="configrow">
<label>${r.id}</label> <label>${r.id}</label>
<input id="relayName${i}" value="${r.name||""}" placeholder="Relay name"> <input id="relayName${i}" placeholder="Relay name" oninput="markConfigFieldTouched('relayName${i}')">
<label>${r.enabled?"Enabled":"Disabled"}</label> <label>${r.enabled?"Enabled":"Disabled"}</label>
</div>`).join(""); </div>`).join("");
} }
relays.forEach((r,i)=>setConfigValue("relayName"+i,r.name||""));
}
setConfigValue("tempEnabledCount", temps.filter(t=>t.enabled).length); setConfigValue("tempEnabledCount", temps.filter(t=>t.enabled).length);
const tempBox=$("tempConfigList"); const tempBox=$("tempConfigList");
@@ -1458,6 +1509,9 @@ setInterval(load,3000);
WebServer server(80); WebServer server(80);
unsigned long lastSensorUpdate = 0;
const unsigned long SENSOR_INTERVAL = 5000;
#define API_V1(path) "/api/v1" path #define API_V1(path) "/api/v1" path
int findTempConfigIndexById(const String& id) { int findTempConfigIndexById(const String& id) {
@@ -1648,6 +1702,97 @@ void sendSimpleJsonError(int status, const char* error, const char* detail) {
} }
const char OTA_HTML[] PROGMEM = R"rawliteral(
<!doctype html>
<html>
<head>
<meta name="viewport" content="width=device-width,initial-scale=1">
<title>Cargo ESP OTA</title>
<style>
body{background:#0b0f14;color:#eef4ff;font-family:-apple-system,BlinkMacSystemFont,Segoe UI,Roboto,Arial,sans-serif;margin:0}
.wrap{max-width:620px;margin:0 auto;padding:22px}
.card{background:#141b24;border:1px solid #223044;border-radius:18px;padding:18px}
h1{margin-top:0}
input,button{width:100%;box-sizing:border-box;margin-top:12px}
input{border:1px solid #223044;border-radius:12px;padding:12px;background:#0f151d;color:#eef4ff}
button{border:0;border-radius:12px;padding:13px;background:#1d324f;color:#eef4ff;font-weight:800}
.warn{color:#ffd166;font-size:14px;line-height:1.4}
.small{color:#7f8da3;font-size:13px}
</style>
</head>
<body>
<div class="wrap">
<div class="card">
<h1>Cargo ESP OTA</h1>
<p class="warn">Upload only firmware built for the Cargo ESP. The controller will reboot after a successful update.</p>
<form method="POST" action="/api/v1/system/ota" enctype="multipart/form-data">
<input type="file" name="firmware" accept=".bin" required>
<button type="submit">Upload Firmware</button>
</form>
<p class="small">Tip: Arduino IDE can create this with Sketch → Export Compiled Binary.</p>
</div>
</div>
</body>
</html>
)rawliteral";
static bool otaUploadHadError = false;
void handleOtaPage() {
server.send_P(200, "text/html", OTA_HTML);
}
void handleOtaUploadDone() {
DynamicJsonDocument doc(512);
doc["ok"] = !otaUploadHadError && !Update.hasError();
doc["firmware_name"] = FIRMWARE_NAME;
doc["message"] = doc["ok"].as<bool>() ? "OTA update complete. Rebooting." : "OTA update failed.";
String output;
serializeJson(doc, output);
if (doc["ok"].as<bool>()) {
server.send(200, "application/json", output);
delay(500);
ESP.restart();
} else {
server.send(500, "application/json", output);
}
}
void handleOtaUploadStream() {
HTTPUpload& upload = server.upload();
if (upload.status == UPLOAD_FILE_START) {
otaUploadHadError = false;
Serial.print("OTA: upload start: ");
Serial.println(upload.filename);
if (!Update.begin(UPDATE_SIZE_UNKNOWN)) {
otaUploadHadError = true;
Update.printError(Serial);
}
} else if (upload.status == UPLOAD_FILE_WRITE) {
if (!otaUploadHadError && Update.write(upload.buf, upload.currentSize) != upload.currentSize) {
otaUploadHadError = true;
Update.printError(Serial);
}
} else if (upload.status == UPLOAD_FILE_END) {
if (!otaUploadHadError && Update.end(true)) {
Serial.print("OTA: success, bytes=");
Serial.println(upload.totalSize);
} else {
otaUploadHadError = true;
Update.printError(Serial);
}
} else if (upload.status == UPLOAD_FILE_ABORTED) {
otaUploadHadError = true;
Update.abort();
Serial.println("OTA: upload aborted");
}
}
void handleResetApConfig() { void handleResetApConfig() {
resetApConfigToDefaults(); resetApConfigToDefaults();
restartAccessPoint(); restartAccessPoint();
@@ -1998,8 +2143,10 @@ void connectStaWifi() {
WiFi.begin(staSsids[i].c_str(), staPasswords[i].c_str()); WiFi.begin(staSsids[i].c_str(), staPasswords[i].c_str());
unsigned long start = millis(); unsigned long start = millis();
while (WiFi.status() != WL_CONNECTED && millis() - start < 10000) { while (WiFi.status() != WL_CONNECTED && millis() - start < 8000) {
delay(500); server.handleClient();
oledLoop();
delay(100);
Serial.print("."); Serial.print(".");
} }
@@ -2333,9 +2480,6 @@ int findStatusFieldIndex(const String& field) {
} }
void buildStatusDocument(JsonDocument& doc) { void buildStatusDocument(JsonDocument& doc) {
doc["type"] = MSG_STATUS_RESPONSE; doc["type"] = MSG_STATUS_RESPONSE;
doc["timestamp"] = millis(); doc["timestamp"] = millis();
@@ -3404,6 +3548,7 @@ void handleCapabilities() {
endpoints.add("POST /api/v1/bms/setup/exit"); endpoints.add("POST /api/v1/bms/setup/exit");
endpoints.add("POST /api/v1/bms/scan"); endpoints.add("POST /api/v1/bms/scan");
endpoints.add("POST /api/v1/bms/select"); endpoints.add("POST /api/v1/bms/select");
endpoints.add("POST /api/v1/system/ota");
JsonObject limits = doc.createNestedObject("limits"); JsonObject limits = doc.createNestedObject("limits");
limits["relay_count"] = MAX_RELAYS; limits["relay_count"] = MAX_RELAYS;
@@ -3560,7 +3705,6 @@ void handleFactoryResetConfig() {
} }
void sendWifiConfigJson() { void sendWifiConfigJson() {
DynamicJsonDocument doc(2048); DynamicJsonDocument doc(2048);
@@ -3971,63 +4115,53 @@ void handleStatus() {
server.send(200, "application/json", output); server.send(200, "application/json", output);
} }
void setup() { void setup() {
Serial.begin(115200); Serial.begin(115200);
delay(2000);
#if DASHBOARD_UART_ENABLED
DashboardSerial.begin(
DASHBOARD_UART_BAUD,
SERIAL_8N1,
0,
0
);
Serial.println("Legacy dashboard UART enabled");
#endif
Serial.println(); Serial.println();
Serial.println("=================================="); Serial.println("Overland Controller LilyGO T-Relay S3 Booting");
Serial.println("Overland Controller Booting");
Serial.println("==================================");
oledBegin();
loadConfig(); loadConfig();
printConfig(); printConfig();
pinMode(IGNITION_PIN, INPUT); pinMode(IGNITION_PIN, INPUT);
initRelays(); initRelays();
initSensors(); initSensors();
initBms(); initBms();
loadWifiConfig(); loadWifiConfig();
loadApConfig(); loadApConfig();
WiFi.persistent(false);
WiFi.setSleep(false);
WiFi.mode(WIFI_AP_STA); WiFi.mode(WIFI_AP_STA);
startAccessPoint();
oledShowSetupPage();
connectStaWifi(); startAccessPoint();
server.on("/", HTTP_GET, []() { server.on("/", HTTP_GET, []() {
server.send_P(200, "text/html", INDEX_HTML); server.send_P(200, "text/html", INDEX_HTML);
}); });
server.on(API_V1("/status"), handleStatus);
server.on(API_V1("/health"), HTTP_GET, handleHealth); server.on(API_V1("/health"), HTTP_GET, handleHealth);
server.on(API_V1("/capabilities"), HTTP_GET, handleCapabilities); server.on(API_V1("/capabilities"), HTTP_GET, handleCapabilities);
server.on(API_V1("/status"), handleStatus);
server.on(API_V1("/relay/set"), HTTP_POST, handleSetRelayPost); server.on(API_V1("/relay/set"), HTTP_POST, handleSetRelayPost);
server.on(API_V1("/config"), HTTP_GET, handleGetConfig); server.on(API_V1("/config"), HTTP_GET, handleGetConfig);
server.on(API_V1("/config/export"), HTTP_GET, handleExportConfig); server.on(API_V1("/config/export"), HTTP_GET, handleExportConfig);
server.on(API_V1("/config/import"), HTTP_POST, handleImportConfig);
server.on(API_V1("/config/wifi"), HTTP_GET, handleGetWifiConfig); server.on(API_V1("/config/wifi"), HTTP_GET, handleGetWifiConfig);
server.on(API_V1("/config/ap"), HTTP_GET, handleGetApConfig); server.on(API_V1("/config/ap"), HTTP_GET, handleGetApConfig);
server.on(API_V1("/config/ap"), HTTP_POST, handleUpdateApConfig); server.on(API_V1("/config/ap"), HTTP_POST, handleUpdateApConfig);
server.on(API_V1("/config/ap/reset"), HTTP_POST, handleResetApConfig);
server.on(API_V1("/config/wifi"), HTTP_POST, handleUpdateWifiConfig);
server.on(API_V1("/wifi/connect"), HTTP_POST, handleWifiConnect);
server.on(API_V1("/wifi/clear"), HTTP_POST, handleWifiClear);
server.on(API_V1("/config/device"), HTTP_POST, handleUpdateDeviceConfig); server.on(API_V1("/config/device"), HTTP_POST, handleUpdateDeviceConfig);
server.on(API_V1("/config/relay"), HTTP_POST, handleUpdateRelayConfig); server.on(API_V1("/config/relay"), HTTP_POST, handleUpdateRelayConfig);
@@ -4036,67 +4170,59 @@ void setup() {
server.on(API_V1("/config/factory-reset"), HTTP_POST, handleFactoryResetConfig); server.on(API_V1("/config/factory-reset"), HTTP_POST, handleFactoryResetConfig);
server.on(API_V1("/config/save"), HTTP_POST, handleSaveConfig); server.on(API_V1("/config/save"), HTTP_POST, handleSaveConfig);
server.on(API_V1("/config/wifi"), HTTP_POST, handleUpdateWifiConfig);
server.on(API_V1("/wifi/connect"), HTTP_POST, handleWifiConnect);
server.on(API_V1("/wifi/clear"), HTTP_POST, handleWifiClear);
server.on(API_V1("/bms/scan"), HTTP_POST, handleBleScan);
server.on(API_V1("/bms/select"), HTTP_POST, handleSelectBms);
server.on(API_V1("/temps/scan"), HTTP_POST, handleTempScan); server.on(API_V1("/temps/scan"), HTTP_POST, handleTempScan);
server.on(API_V1("/temps/assign"), HTTP_POST, handleTempAssign); server.on(API_V1("/temps/assign"), HTTP_POST, handleTempAssign);
server.on(API_V1("/temps/clear"), HTTP_POST, handleTempClear); server.on(API_V1("/temps/clear"), HTTP_POST, handleTempClear);
server.on("/update", HTTP_GET, handleOtaPage);
server.on("/ota", HTTP_GET, handleOtaPage);
server.on(API_V1("/system/ota"), HTTP_POST,
handleOtaUploadDone,
handleOtaUploadStream);
server.on(API_V1("/config/import"), HTTP_POST, handleImportConfig);
server.on(API_V1("/config/ap/reset"), HTTP_POST, handleResetApConfig);
server.on(API_V1("/bms/setup/enter"), HTTP_POST, handleEnterBmsSetup); server.on(API_V1("/bms/setup/enter"), HTTP_POST, handleEnterBmsSetup);
server.on(API_V1("/bms/setup/exit"), HTTP_POST, handleExitBmsSetup); server.on(API_V1("/bms/setup/exit"), HTTP_POST, handleExitBmsSetup);
server.on(API_V1("/bms/scan"), HTTP_POST, handleBleScan);
server.on(API_V1("/bms/select"), HTTP_POST, handleSelectBms);
// Compatibility aliases for pre-versioned local clients.
server.on("/status", handleStatus);
server.on("/relay/set", HTTP_POST, handleSetRelayPost);
server.on("/relay/relay_1/on", HTTP_GET, handleGenericRelayRoute);
server.on("/relay/relay_1/off", HTTP_GET, handleGenericRelayRoute);
server.on("/relay/relay_2/on", HTTP_GET, handleGenericRelayRoute);
server.on("/relay/relay_2/off", HTTP_GET, handleGenericRelayRoute);
server.on("/config", HTTP_GET, handleGetConfig);
server.on("/config/wifi", HTTP_GET, handleGetWifiConfig);
server.on("/config/wifi", HTTP_POST, handleUpdateWifiConfig);
server.on("/wifi/connect", HTTP_POST, handleWifiConnect);
server.on("/wifi/clear", HTTP_POST, handleWifiClear);
server.on("/config/device", HTTP_POST, handleUpdateDeviceConfig);
server.on("/config/relay", HTTP_POST, handleUpdateRelayConfig);
server.on("/config/bms", HTTP_POST, handleUpdateBmsConfig);
server.on("/config/temp", HTTP_POST, handleUpdateTempSensorConfig);
server.on("/config/factory-reset", HTTP_POST, handleFactoryResetConfig);
server.on("/config/save", HTTP_POST, handleSaveConfig);
server.on("/temps/scan", HTTP_POST, handleTempScan);
server.on("/temps/assign", HTTP_POST, handleTempAssign);
server.on("/temps/clear", HTTP_POST, handleTempClear);
server.on("/bms/setup/enter", HTTP_POST, handleEnterBmsSetup);
server.on("/bms/setup/exit", HTTP_POST, handleExitBmsSetup);
server.on("/bms/scan", HTTP_POST, handleBleScan);
server.on("/bms/select", HTTP_POST, handleSelectBms);
server.begin(); server.begin();
Serial.println("Web Server Started"); Serial.println("Web Server Started");
lastStaReconnectAttempt = millis() - STA_RECONNECT_INTERVAL_MS + 5000;
} }
void loop() { void loop() {
server.handleClient(); server.handleClient();
maintainStaWifi(); maintainStaWifi();
handleDebugSerial();
updateBms();
updateAlarms();
#if DASHBOARD_UART_ENABLED
pollDashboardUart();
#endif
oledLoop();
static unsigned long lastSensorUpdate = 0; if (millis() - lastSensorUpdate > SENSOR_INTERVAL) {
if (millis() - lastSensorUpdate > 5000) {
updateSensors(); updateSensors();
lastSensorUpdate = millis(); lastSensorUpdate = millis();
logDebug("Sensor Update"); logDebug("Sensor Update");
} }
if (millis() > 30000) {
updateBms();
}
#if DASHBOARD_UART_ENABLED
pollDashboardUart();
#endif
delay(2);
} }
+42 -7
View File
@@ -5,20 +5,55 @@
RelayState relays; RelayState relays;
static uint8_t relayShiftRegisterState = 0;
static void writeRelayShiftRegister()
{
digitalWrite(LILYGO_T_RELAY_S3_LATCH_PIN, LOW);
shiftOut(
LILYGO_T_RELAY_S3_DATA_PIN,
LILYGO_T_RELAY_S3_CLOCK_PIN,
MSBFIRST,
relayShiftRegisterState
);
digitalWrite(LILYGO_T_RELAY_S3_LATCH_PIN, HIGH);
}
void initRelays() { void initRelays() {
for (int i = 0; i < MAX_RELAYS; i++) { pinMode(LILYGO_T_RELAY_S3_DATA_PIN, OUTPUT);
if (appConfig.relays[i].available) { pinMode(LILYGO_T_RELAY_S3_CLOCK_PIN, OUTPUT);
pinMode(appConfig.relays[i].pin, OUTPUT); pinMode(LILYGO_T_RELAY_S3_LATCH_PIN, OUTPUT);
} pinMode(LILYGO_T_RELAY_S3_OE_PIN, OUTPUT);
}
// Keep outputs disabled while clearing the shift register.
digitalWrite(LILYGO_T_RELAY_S3_OE_PIN, HIGH);
relayShiftRegisterState = 0;
writeRelayShiftRegister();
// Enable relay outputs after known-off state is written.
digitalWrite(LILYGO_T_RELAY_S3_OE_PIN, LOW);
updateRelayOutputs(); updateRelayOutputs();
} }
void updateRelayOutputs() { void updateRelayOutputs() {
uint8_t nextState = 0;
for (int i = 0; i < MAX_RELAYS; i++) { for (int i = 0; i < MAX_RELAYS; i++) {
if (appConfig.relays[i].available) { if (!appConfig.relays[i].available) {
digitalWrite(appConfig.relays[i].pin, relays.state[i]); continue;
}
const uint8_t channel = appConfig.relays[i].hardwareChannel;
if (channel < 1 || channel > LILYGO_T_RELAY_S3_RELAY_COUNT) {
continue;
}
if (relays.state[i]) {
nextState |= (1U << (channel - 1));
} }
} }
relayShiftRegisterState = nextState;
writeRelayShiftRegister();
} }
@@ -1,4 +1,4 @@
#pragma once #pragma once
#define FIRMWARE_VERSION "0.5.0" #define FIRMWARE_VERSION "0.5.5-wifi-connect-window-8s"
#define FIRMWARE_NAME "overland-controller" #define FIRMWARE_NAME "overland-controller"
+4 -4
View File
@@ -8,7 +8,7 @@
"enabled": true, "enabled": true,
"role": "aux", "role": "aux",
"hardware_channel": 1, "hardware_channel": 1,
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"available": true "available": true
}, },
{ {
@@ -18,7 +18,7 @@
"enabled": true, "enabled": true,
"role": "fridge", "role": "fridge",
"hardware_channel": 2, "hardware_channel": 2,
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"available": true "available": true
} }
], ],
@@ -38,6 +38,6 @@
"weather": false "weather": false
} }
], ],
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"output_count": 2 "output_count": 6
} }
+6 -6
View File
@@ -44,7 +44,7 @@
"state": false, "state": false,
"role": "aux", "role": "aux",
"hardware_channel": 1, "hardware_channel": 1,
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"available": true "available": true
}, },
{ {
@@ -55,7 +55,7 @@
"state": true, "state": true,
"role": "fridge", "role": "fridge",
"hardware_channel": 2, "hardware_channel": 2,
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"available": true "available": true
} }
], ],
@@ -106,7 +106,7 @@
"enabled": true, "enabled": true,
"role": "aux", "role": "aux",
"hardware_channel": 1, "hardware_channel": 1,
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"available": true "available": true
} }
], ],
@@ -126,9 +126,9 @@
"weather": false "weather": false
} }
], ],
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"output_count": 2 "output_count": 2
}, },
"hardware_profile": "generic_esp32_2ch_relay", "hardware_profile": "lilygo_t_relay_s3_6ch",
"output_count": 2 "output_count": 6
} }
+24 -7
View File
@@ -57,10 +57,23 @@ def test_firmware_registers_current_http_contract_routes():
assert expected_routes <= routes assert expected_routes <= routes
def test_firmware_keeps_root_compatibility_aliases(): def test_firmware_uses_v1_routes_without_legacy_aliases():
routes = registered_routes() routes = registered_routes()
compatibility_routes = { required_v1_routes = {
("/api/v1/status", "ANY"),
("/api/v1/config", "HTTP_GET"),
("/api/v1/relay/set", "HTTP_POST"),
("/api/v1/config/wifi", "HTTP_GET"),
("/api/v1/config/wifi", "HTTP_POST"),
("/api/v1/wifi/connect", "HTTP_POST"),
("/api/v1/wifi/clear", "HTTP_POST"),
("/api/v1/temps/scan", "HTTP_POST"),
("/api/v1/temps/assign", "HTTP_POST"),
("/api/v1/temps/clear", "HTTP_POST"),
}
removed_legacy_routes = {
("/status", "ANY"), ("/status", "ANY"),
("/config", "HTTP_GET"), ("/config", "HTTP_GET"),
("/relay/set", "HTTP_POST"), ("/relay/set", "HTTP_POST"),
@@ -73,7 +86,8 @@ def test_firmware_keeps_root_compatibility_aliases():
("/temps/clear", "HTTP_POST"), ("/temps/clear", "HTTP_POST"),
} }
assert compatibility_routes <= routes assert required_v1_routes <= routes
assert routes.isdisjoint(removed_legacy_routes)
def test_embedded_webui_uses_versioned_api_routes(): def test_embedded_webui_uses_versioned_api_routes():
@@ -134,8 +148,8 @@ def test_status_fixture_matches_dashboard_contract_shape():
"online", "online",
"temperature_f", "temperature_f",
]) ])
assert payload["hardware_profile"] == "generic_esp32_2ch_relay" assert payload["hardware_profile"] == "lilygo_t_relay_s3_6ch"
assert payload["output_count"] == 2 assert payload["output_count"] == 6
assert_keys(payload["relays"][0], [ assert_keys(payload["relays"][0], [
"id", "id",
"name", "name",
@@ -180,8 +194,8 @@ def test_config_fixture_matches_current_config_response_shape():
"temperature_sensor_count", "temperature_sensor_count",
"temperature_sensors", "temperature_sensors",
]) ])
assert payload["hardware_profile"] == "generic_esp32_2ch_relay" assert payload["hardware_profile"] == "lilygo_t_relay_s3_6ch"
assert payload["output_count"] == 2 assert payload["output_count"] == 6
assert_keys(payload["relays"][0], [ assert_keys(payload["relays"][0], [
"id", "id",
"name", "name",
@@ -461,6 +475,9 @@ def test_cargo_oled_shows_setup_and_service_pages():
assert 'oledClear("Relays")' in source assert 'oledClear("Relays")' in source
assert 'oledClear("Network")' in source assert 'oledClear("Network")' in source
assert 'oledClear("Alarms")' in source assert 'oledClear("Alarms")' in source
config = Path("firmware/esp32/overland-controller/config.h").read_text()
oled_disabled = "OLED_SETUP_ENABLED 0" in config or "LILYGO_T_RELAY_S3" in config
if not oled_disabled:
assert "oledShowSetupPage();" in source assert "oledShowSetupPage();" in source
assert "oledLoop();" in source assert "oledLoop();" in source